xref: /netbsd-src/sys/dev/usb/if_aue.c (revision 08c81a9c2dc8c7300e893321eb65c0925d60871c)
1 /*	$NetBSD: if_aue.c,v 1.80 2002/07/25 06:45:38 matt Exp $	*/
2 /*
3  * Copyright (c) 1997, 1998, 1999, 2000
4  *	Bill Paul <wpaul@ee.columbia.edu>.  All rights reserved.
5  *
6  * Redistribution and use in source and binary forms, with or without
7  * modification, are permitted provided that the following conditions
8  * are met:
9  * 1. Redistributions of source code must retain the above copyright
10  *    notice, this list of conditions and the following disclaimer.
11  * 2. Redistributions in binary form must reproduce the above copyright
12  *    notice, this list of conditions and the following disclaimer in the
13  *    documentation and/or other materials provided with the distribution.
14  * 3. All advertising materials mentioning features or use of this software
15  *    must display the following acknowledgement:
16  *	This product includes software developed by Bill Paul.
17  * 4. Neither the name of the author nor the names of any co-contributors
18  *    may be used to endorse or promote products derived from this software
19  *    without specific prior written permission.
20  *
21  * THIS SOFTWARE IS PROVIDED BY Bill Paul AND CONTRIBUTORS ``AS IS'' AND
22  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
23  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
24  * ARE DISCLAIMED.  IN NO EVENT SHALL Bill Paul OR THE VOICES IN HIS HEAD
25  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
26  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
27  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
28  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
29  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
30  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
31  * THE POSSIBILITY OF SUCH DAMAGE.
32  *
33  * $FreeBSD: src/sys/dev/usb/if_aue.c,v 1.11 2000/01/14 01:36:14 wpaul Exp $
34  */
35 
36 /*
37  * ADMtek AN986 Pegasus and AN8511 Pegasus II USB to ethernet driver.
38  * Datasheet is available from http://www.admtek.com.tw.
39  *
40  * Written by Bill Paul <wpaul@ee.columbia.edu>
41  * Electrical Engineering Department
42  * Columbia University, New York City
43  */
44 
45 /*
46  * The Pegasus chip uses four USB "endpoints" to provide 10/100 ethernet
47  * support: the control endpoint for reading/writing registers, burst
48  * read endpoint for packet reception, burst write for packet transmission
49  * and one for "interrupts." The chip uses the same RX filter scheme
50  * as the other ADMtek ethernet parts: one perfect filter entry for the
51  * the station address and a 64-bit multicast hash table. The chip supports
52  * both MII and HomePNA attachments.
53  *
54  * Since the maximum data transfer speed of USB is supposed to be 12Mbps,
55  * you're never really going to get 100Mbps speeds from this device. I
56  * think the idea is to allow the device to connect to 10 or 100Mbps
57  * networks, not necessarily to provide 100Mbps performance. Also, since
58  * the controller uses an external PHY chip, it's possible that board
59  * designers might simply choose a 10Mbps PHY.
60  *
61  * Registers are accessed using usbd_do_request(). Packet transfers are
62  * done using usbd_transfer() and friends.
63  */
64 
65 /*
66  * Ported to NetBSD and somewhat rewritten by Lennart Augustsson.
67  */
68 
69 /*
70  * TODO:
71  * better error messages from rxstat
72  * split out if_auevar.h
73  * add thread to avoid register reads from interrupt context
74  * more error checks
75  * investigate short rx problem
76  * proper cleanup on errors
77  */
78 
79 #include <sys/cdefs.h>
80 __KERNEL_RCSID(0, "$NetBSD: if_aue.c,v 1.80 2002/07/25 06:45:38 matt Exp $");
81 
82 #if defined(__NetBSD__)
83 #include "opt_inet.h"
84 #include "opt_ns.h"
85 #include "bpfilter.h"
86 #include "rnd.h"
87 #elif defined(__OpenBSD__)
88 #include "bpfilter.h"
89 #endif /* defined(__OpenBSD__) */
90 
91 #include <sys/param.h>
92 #include <sys/systm.h>
93 #include <sys/sockio.h>
94 #include <sys/lock.h>
95 #include <sys/mbuf.h>
96 #include <sys/malloc.h>
97 #include <sys/kernel.h>
98 #include <sys/socket.h>
99 
100 #include <sys/device.h>
101 #if NRND > 0
102 #include <sys/rnd.h>
103 #endif
104 
105 #include <net/if.h>
106 #if defined(__NetBSD__)
107 #include <net/if_arp.h>
108 #endif
109 #include <net/if_dl.h>
110 #include <net/if_media.h>
111 
112 #define BPF_MTAP(ifp, m) bpf_mtap((ifp)->if_bpf, (m))
113 
114 #if NBPFILTER > 0
115 #include <net/bpf.h>
116 #endif
117 
118 #if defined(__NetBSD__)
119 #include <net/if_ether.h>
120 #ifdef INET
121 #include <netinet/in.h>
122 #include <netinet/if_inarp.h>
123 #endif
124 #endif /* defined(__NetBSD__) */
125 
126 #if defined(__OpenBSD__)
127 #ifdef INET
128 #include <netinet/in.h>
129 #include <netinet/in_systm.h>
130 #include <netinet/in_var.h>
131 #include <netinet/ip.h>
132 #include <netinet/if_ether.h>
133 #endif
134 #endif /* defined(__OpenBSD__) */
135 
136 #ifdef NS
137 #include <netns/ns.h>
138 #include <netns/ns_if.h>
139 #endif
140 
141 #include <dev/mii/mii.h>
142 #include <dev/mii/miivar.h>
143 
144 #include <dev/usb/usb.h>
145 #include <dev/usb/usbdi.h>
146 #include <dev/usb/usbdi_util.h>
147 #include <dev/usb/usbdevs.h>
148 
149 #include <dev/usb/if_auereg.h>
150 
151 #ifdef AUE_DEBUG
152 #define DPRINTF(x)	if (auedebug) logprintf x
153 #define DPRINTFN(n,x)	if (auedebug >= (n)) logprintf x
154 int	auedebug = 0;
155 #else
156 #define DPRINTF(x)
157 #define DPRINTFN(n,x)
158 #endif
159 
160 /*
161  * Various supported device vendors/products.
162  */
163 struct aue_type {
164 	struct usb_devno	aue_dev;
165 	u_int16_t		aue_flags;
166 #define LSYS	0x0001		/* use Linksys reset */
167 #define PNA	0x0002		/* has Home PNA */
168 #define PII	0x0004		/* Pegasus II chip */
169 };
170 
171 Static const struct aue_type aue_devs[] = {
172  {{ USB_VENDOR_3COM,		USB_PRODUCT_3COM_3C460B},         PII },
173  {{ USB_VENDOR_ABOCOM,		USB_PRODUCT_ABOCOM_XX1},	  PNA|PII },
174  {{ USB_VENDOR_ABOCOM,		USB_PRODUCT_ABOCOM_XX2},	  PII },
175  {{ USB_VENDOR_ABOCOM,		USB_PRODUCT_ABOCOM_UFE1000},	  LSYS },
176  {{ USB_VENDOR_ABOCOM,		USB_PRODUCT_ABOCOM_XX4},	  PNA },
177  {{ USB_VENDOR_ABOCOM,		USB_PRODUCT_ABOCOM_XX5},	  PNA },
178  {{ USB_VENDOR_ABOCOM,		USB_PRODUCT_ABOCOM_XX6},	  PII },
179  {{ USB_VENDOR_ABOCOM,		USB_PRODUCT_ABOCOM_XX7},	  PII },
180  {{ USB_VENDOR_ABOCOM,		USB_PRODUCT_ABOCOM_XX8},	  PII },
181  {{ USB_VENDOR_ABOCOM,		USB_PRODUCT_ABOCOM_XX9},	  PNA },
182  {{ USB_VENDOR_ABOCOM,		USB_PRODUCT_ABOCOM_XX10},	  0 },
183  {{ USB_VENDOR_ABOCOM,		USB_PRODUCT_ABOCOM_DSB650TX_PNA}, 0 },
184  {{ USB_VENDOR_ACCTON,		USB_PRODUCT_ACCTON_USB320_EC},	  0 },
185  {{ USB_VENDOR_ACCTON,		USB_PRODUCT_ACCTON_SS1001},	  PII },
186  {{ USB_VENDOR_ADMTEK,		USB_PRODUCT_ADMTEK_PEGASUS},	  PNA },
187  {{ USB_VENDOR_ADMTEK,		USB_PRODUCT_ADMTEK_PEGASUSII},	  PII },
188  {{ USB_VENDOR_BELKIN,		USB_PRODUCT_BELKIN_USB2LAN},	  PII },
189  {{ USB_VENDOR_BILLIONTON,	USB_PRODUCT_BILLIONTON_USB100},	  0 },
190  {{ USB_VENDOR_BILLIONTON,	USB_PRODUCT_BILLIONTON_USBLP100}, PNA },
191  {{ USB_VENDOR_BILLIONTON,	USB_PRODUCT_BILLIONTON_USBEL100}, 0 },
192  {{ USB_VENDOR_BILLIONTON,	USB_PRODUCT_BILLIONTON_USBE100},  PII },
193  {{ USB_VENDOR_COREGA,		USB_PRODUCT_COREGA_FETHER_USB_TX}, 0 },
194  {{ USB_VENDOR_COREGA,		USB_PRODUCT_COREGA_FETHER_USB_TXS},PII },
195  {{ USB_VENDOR_DLINK,		USB_PRODUCT_DLINK_DSB650TX4},	  LSYS|PII },
196  {{ USB_VENDOR_DLINK,		USB_PRODUCT_DLINK_DSB650TX1},	  LSYS },
197  {{ USB_VENDOR_DLINK,		USB_PRODUCT_DLINK_DSB650TX},	  LSYS },
198  {{ USB_VENDOR_DLINK,		USB_PRODUCT_DLINK_DSB650TX_PNA},  PNA },
199  {{ USB_VENDOR_DLINK,		USB_PRODUCT_DLINK_DSB650TX3},	  LSYS|PII },
200  {{ USB_VENDOR_DLINK,		USB_PRODUCT_DLINK_DSB650TX2},	  LSYS|PII },
201  {{ USB_VENDOR_DLINK,		USB_PRODUCT_DLINK_DSB650},	  0 },
202  {{ USB_VENDOR_ELECOM,		USB_PRODUCT_ELECOM_LDUSBTX0},	  0 },
203  {{ USB_VENDOR_ELECOM,		USB_PRODUCT_ELECOM_LDUSBTX1},	  0 },
204  {{ USB_VENDOR_ELECOM,		USB_PRODUCT_ELECOM_LDUSBTX2},	  0 },
205  {{ USB_VENDOR_ELECOM,		USB_PRODUCT_ELECOM_LDUSBTX3},	  PII },
206  {{ USB_VENDOR_ELECOM,		USB_PRODUCT_ELECOM_LDUSBLTX},	  PII },
207  {{ USB_VENDOR_ELSA,		USB_PRODUCT_ELSA_USB2ETHERNET},	  0 },
208  {{ USB_VENDOR_IODATA,		USB_PRODUCT_IODATA_USBETTX},	  0 },
209  {{ USB_VENDOR_IODATA,		USB_PRODUCT_IODATA_USBETTXS},	  PII },
210  {{ USB_VENDOR_KINGSTON,	USB_PRODUCT_KINGSTON_KNU101TX},   0 },
211  {{ USB_VENDOR_LINKSYS,		USB_PRODUCT_LINKSYS_USB10TX1},	  LSYS|PII },
212  {{ USB_VENDOR_LINKSYS,		USB_PRODUCT_LINKSYS_USB10T},	  LSYS },
213  {{ USB_VENDOR_LINKSYS,		USB_PRODUCT_LINKSYS_USB100TX},	  LSYS },
214  {{ USB_VENDOR_LINKSYS,		USB_PRODUCT_LINKSYS_USB100H1},	  LSYS|PNA },
215  {{ USB_VENDOR_LINKSYS,		USB_PRODUCT_LINKSYS_USB10TA},	  LSYS },
216  {{ USB_VENDOR_LINKSYS,		USB_PRODUCT_LINKSYS_USB10TX2},	  LSYS|PII },
217  {{ USB_VENDOR_MELCO, 		USB_PRODUCT_MELCO_LUATX1}, 	  0 },
218  {{ USB_VENDOR_MELCO, 		USB_PRODUCT_MELCO_LUATX5}, 	  0 },
219  {{ USB_VENDOR_MELCO, 		USB_PRODUCT_MELCO_LUA2TX5}, 	  PII },
220  {{ USB_VENDOR_SIEMENS,		USB_PRODUCT_SIEMENS_SPEEDSTREAM}, PII },
221  {{ USB_VENDOR_SMARTBRIDGES,	USB_PRODUCT_SMARTBRIDGES_SMARTNIC},PII },
222  {{ USB_VENDOR_SMC,		USB_PRODUCT_SMC_2202USB},	  0 },
223  {{ USB_VENDOR_SMC,		USB_PRODUCT_SMC_2206USB},	  PII },
224  {{ USB_VENDOR_SOHOWARE,	USB_PRODUCT_SOHOWARE_NUB100},	  0 },
225 };
226 #define aue_lookup(v, p) ((struct aue_type *)usb_lookup(aue_devs, v, p))
227 
228 USB_DECLARE_DRIVER(aue);
229 
230 Static void aue_reset_pegasus_II(struct aue_softc *sc);
231 Static int aue_tx_list_init(struct aue_softc *);
232 Static int aue_rx_list_init(struct aue_softc *);
233 Static int aue_newbuf(struct aue_softc *, struct aue_chain *, struct mbuf *);
234 Static int aue_send(struct aue_softc *, struct mbuf *, int);
235 Static void aue_intr(usbd_xfer_handle, usbd_private_handle, usbd_status);
236 Static void aue_rxeof(usbd_xfer_handle, usbd_private_handle, usbd_status);
237 Static void aue_txeof(usbd_xfer_handle, usbd_private_handle, usbd_status);
238 Static void aue_tick(void *);
239 Static void aue_tick_task(void *);
240 Static void aue_start(struct ifnet *);
241 Static int aue_ioctl(struct ifnet *, u_long, caddr_t);
242 Static void aue_init(void *);
243 Static void aue_stop(struct aue_softc *);
244 Static void aue_watchdog(struct ifnet *);
245 Static int aue_openpipes(struct aue_softc *);
246 Static int aue_ifmedia_upd(struct ifnet *);
247 Static void aue_ifmedia_sts(struct ifnet *, struct ifmediareq *);
248 
249 Static int aue_eeprom_getword(struct aue_softc *, int);
250 Static void aue_read_mac(struct aue_softc *, u_char *);
251 Static int aue_miibus_readreg(device_ptr_t, int, int);
252 Static void aue_miibus_writereg(device_ptr_t, int, int, int);
253 Static void aue_miibus_statchg(device_ptr_t);
254 
255 Static void aue_lock_mii(struct aue_softc *);
256 Static void aue_unlock_mii(struct aue_softc *);
257 
258 Static void aue_setmulti(struct aue_softc *);
259 Static u_int32_t aue_crc(caddr_t);
260 Static void aue_reset(struct aue_softc *);
261 
262 Static int aue_csr_read_1(struct aue_softc *, int);
263 Static int aue_csr_write_1(struct aue_softc *, int, int);
264 Static int aue_csr_read_2(struct aue_softc *, int);
265 Static int aue_csr_write_2(struct aue_softc *, int, int);
266 
267 #define AUE_SETBIT(sc, reg, x)				\
268 	aue_csr_write_1(sc, reg, aue_csr_read_1(sc, reg) | (x))
269 
270 #define AUE_CLRBIT(sc, reg, x)				\
271 	aue_csr_write_1(sc, reg, aue_csr_read_1(sc, reg) & ~(x))
272 
273 Static int
274 aue_csr_read_1(struct aue_softc *sc, int reg)
275 {
276 	usb_device_request_t	req;
277 	usbd_status		err;
278 	uByte			val = 0;
279 
280 	if (sc->aue_dying)
281 		return (0);
282 
283 	req.bmRequestType = UT_READ_VENDOR_DEVICE;
284 	req.bRequest = AUE_UR_READREG;
285 	USETW(req.wValue, 0);
286 	USETW(req.wIndex, reg);
287 	USETW(req.wLength, 1);
288 
289 	err = usbd_do_request(sc->aue_udev, &req, &val);
290 
291 	if (err) {
292 		DPRINTF(("%s: aue_csr_read_1: reg=0x%x err=%s\n",
293 			 USBDEVNAME(sc->aue_dev), reg, usbd_errstr(err)));
294 		return (0);
295 	}
296 
297 	return (val);
298 }
299 
300 Static int
301 aue_csr_read_2(struct aue_softc *sc, int reg)
302 {
303 	usb_device_request_t	req;
304 	usbd_status		err;
305 	uWord			val;
306 
307 	if (sc->aue_dying)
308 		return (0);
309 
310 	req.bmRequestType = UT_READ_VENDOR_DEVICE;
311 	req.bRequest = AUE_UR_READREG;
312 	USETW(req.wValue, 0);
313 	USETW(req.wIndex, reg);
314 	USETW(req.wLength, 2);
315 
316 	err = usbd_do_request(sc->aue_udev, &req, &val);
317 
318 	if (err) {
319 		DPRINTF(("%s: aue_csr_read_2: reg=0x%x err=%s\n",
320 			 USBDEVNAME(sc->aue_dev), reg, usbd_errstr(err)));
321 		return (0);
322 	}
323 
324 	return (UGETW(val));
325 }
326 
327 Static int
328 aue_csr_write_1(struct aue_softc *sc, int reg, int aval)
329 {
330 	usb_device_request_t	req;
331 	usbd_status		err;
332 	uByte			val;
333 
334 	if (sc->aue_dying)
335 		return (0);
336 
337 	val = aval;
338 	req.bmRequestType = UT_WRITE_VENDOR_DEVICE;
339 	req.bRequest = AUE_UR_WRITEREG;
340 	USETW(req.wValue, val);
341 	USETW(req.wIndex, reg);
342 	USETW(req.wLength, 1);
343 
344 	err = usbd_do_request(sc->aue_udev, &req, &val);
345 
346 	if (err) {
347 		DPRINTF(("%s: aue_csr_write_1: reg=0x%x err=%s\n",
348 			 USBDEVNAME(sc->aue_dev), reg, usbd_errstr(err)));
349 		return (-1);
350 	}
351 
352 	return (0);
353 }
354 
355 Static int
356 aue_csr_write_2(struct aue_softc *sc, int reg, int aval)
357 {
358 	usb_device_request_t	req;
359 	usbd_status		err;
360 	uWord			val;
361 
362 	if (sc->aue_dying)
363 		return (0);
364 
365 	USETW(val, aval);
366 	req.bmRequestType = UT_WRITE_VENDOR_DEVICE;
367 	req.bRequest = AUE_UR_WRITEREG;
368 	USETW(req.wValue, aval);
369 	USETW(req.wIndex, reg);
370 	USETW(req.wLength, 2);
371 
372 	err = usbd_do_request(sc->aue_udev, &req, &val);
373 
374 	if (err) {
375 		DPRINTF(("%s: aue_csr_write_2: reg=0x%x err=%s\n",
376 			 USBDEVNAME(sc->aue_dev), reg, usbd_errstr(err)));
377 		return (-1);
378 	}
379 
380 	return (0);
381 }
382 
383 /*
384  * Read a word of data stored in the EEPROM at address 'addr.'
385  */
386 Static int
387 aue_eeprom_getword(struct aue_softc *sc, int addr)
388 {
389 	int		i;
390 
391 	aue_csr_write_1(sc, AUE_EE_REG, addr);
392 	aue_csr_write_1(sc, AUE_EE_CTL, AUE_EECTL_READ);
393 
394 	for (i = 0; i < AUE_TIMEOUT; i++) {
395 		if (aue_csr_read_1(sc, AUE_EE_CTL) & AUE_EECTL_DONE)
396 			break;
397 	}
398 
399 	if (i == AUE_TIMEOUT) {
400 		printf("%s: EEPROM read timed out\n",
401 		    USBDEVNAME(sc->aue_dev));
402 	}
403 
404 	return (aue_csr_read_2(sc, AUE_EE_DATA));
405 }
406 
407 /*
408  * Read the MAC from the EEPROM.  It's at offset 0.
409  */
410 Static void
411 aue_read_mac(struct aue_softc *sc, u_char *dest)
412 {
413 	int			i;
414 	int			off = 0;
415 	int			word;
416 
417 	DPRINTFN(5,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__));
418 
419 	for (i = 0; i < 3; i++) {
420 		word = aue_eeprom_getword(sc, off + i);
421 		dest[2 * i] = (u_char)word;
422 		dest[2 * i + 1] = (u_char)(word >> 8);
423 	}
424 }
425 
426 /* Get exclusive access to the MII registers */
427 Static void
428 aue_lock_mii(struct aue_softc *sc)
429 {
430 	sc->aue_refcnt++;
431 	lockmgr(&sc->aue_mii_lock, LK_EXCLUSIVE, NULL);
432 }
433 
434 Static void
435 aue_unlock_mii(struct aue_softc *sc)
436 {
437 	lockmgr(&sc->aue_mii_lock, LK_RELEASE, NULL);
438 	if (--sc->aue_refcnt < 0)
439 		usb_detach_wakeup(USBDEV(sc->aue_dev));
440 }
441 
442 Static int
443 aue_miibus_readreg(device_ptr_t dev, int phy, int reg)
444 {
445 	struct aue_softc	*sc = USBGETSOFTC(dev);
446 	int			i;
447 	u_int16_t		val;
448 
449 	if (sc->aue_dying) {
450 #ifdef DIAGNOSTIC
451 		printf("%s: dying\n", USBDEVNAME(sc->aue_dev));
452 #endif
453 		return 0;
454 	}
455 
456 #if 0
457 	/*
458 	 * The Am79C901 HomePNA PHY actually contains
459 	 * two transceivers: a 1Mbps HomePNA PHY and a
460 	 * 10Mbps full/half duplex ethernet PHY with
461 	 * NWAY autoneg. However in the ADMtek adapter,
462 	 * only the 1Mbps PHY is actually connected to
463 	 * anything, so we ignore the 10Mbps one. It
464 	 * happens to be configured for MII address 3,
465 	 * so we filter that out.
466 	 */
467 	if (sc->aue_vendor == USB_VENDOR_ADMTEK &&
468 	    sc->aue_product == USB_PRODUCT_ADMTEK_PEGASUS) {
469 		if (phy == 3)
470 			return (0);
471 	}
472 #endif
473 
474 	aue_lock_mii(sc);
475 	aue_csr_write_1(sc, AUE_PHY_ADDR, phy);
476 	aue_csr_write_1(sc, AUE_PHY_CTL, reg | AUE_PHYCTL_READ);
477 
478 	for (i = 0; i < AUE_TIMEOUT; i++) {
479 		if (aue_csr_read_1(sc, AUE_PHY_CTL) & AUE_PHYCTL_DONE)
480 			break;
481 	}
482 
483 	if (i == AUE_TIMEOUT) {
484 		printf("%s: MII read timed out\n", USBDEVNAME(sc->aue_dev));
485 	}
486 
487 	val = aue_csr_read_2(sc, AUE_PHY_DATA);
488 
489 	DPRINTFN(11,("%s: %s: phy=%d reg=%d => 0x%04x\n",
490 		     USBDEVNAME(sc->aue_dev), __func__, phy, reg, val));
491 
492 	aue_unlock_mii(sc);
493 	return (val);
494 }
495 
496 Static void
497 aue_miibus_writereg(device_ptr_t dev, int phy, int reg, int data)
498 {
499 	struct aue_softc	*sc = USBGETSOFTC(dev);
500 	int			i;
501 
502 #if 0
503 	if (sc->aue_vendor == USB_VENDOR_ADMTEK &&
504 	    sc->aue_product == USB_PRODUCT_ADMTEK_PEGASUS) {
505 		if (phy == 3)
506 			return;
507 	}
508 #endif
509 
510 	DPRINTFN(11,("%s: %s: phy=%d reg=%d data=0x%04x\n",
511 		     USBDEVNAME(sc->aue_dev), __func__, phy, reg, data));
512 
513 	aue_lock_mii(sc);
514 	aue_csr_write_2(sc, AUE_PHY_DATA, data);
515 	aue_csr_write_1(sc, AUE_PHY_ADDR, phy);
516 	aue_csr_write_1(sc, AUE_PHY_CTL, reg | AUE_PHYCTL_WRITE);
517 
518 	for (i = 0; i < AUE_TIMEOUT; i++) {
519 		if (aue_csr_read_1(sc, AUE_PHY_CTL) & AUE_PHYCTL_DONE)
520 			break;
521 	}
522 
523 	if (i == AUE_TIMEOUT) {
524 		printf("%s: MII read timed out\n",
525 		    USBDEVNAME(sc->aue_dev));
526 	}
527 	aue_unlock_mii(sc);
528 }
529 
530 Static void
531 aue_miibus_statchg(device_ptr_t dev)
532 {
533 	struct aue_softc	*sc = USBGETSOFTC(dev);
534 	struct mii_data		*mii = GET_MII(sc);
535 
536 	DPRINTFN(5,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__));
537 
538 	aue_lock_mii(sc);
539 	AUE_CLRBIT(sc, AUE_CTL0, AUE_CTL0_RX_ENB | AUE_CTL0_TX_ENB);
540 
541 	if (IFM_SUBTYPE(mii->mii_media_active) == IFM_100_TX) {
542 		AUE_SETBIT(sc, AUE_CTL1, AUE_CTL1_SPEEDSEL);
543 	} else {
544 		AUE_CLRBIT(sc, AUE_CTL1, AUE_CTL1_SPEEDSEL);
545 	}
546 
547 	if ((mii->mii_media_active & IFM_GMASK) == IFM_FDX)
548 		AUE_SETBIT(sc, AUE_CTL1, AUE_CTL1_DUPLEX);
549 	else
550 		AUE_CLRBIT(sc, AUE_CTL1, AUE_CTL1_DUPLEX);
551 
552 	AUE_SETBIT(sc, AUE_CTL0, AUE_CTL0_RX_ENB | AUE_CTL0_TX_ENB);
553 	aue_unlock_mii(sc);
554 
555 	/*
556 	 * Set the LED modes on the LinkSys adapter.
557 	 * This turns on the 'dual link LED' bin in the auxmode
558 	 * register of the Broadcom PHY.
559 	 */
560 	if (!sc->aue_dying && (sc->aue_flags & LSYS)) {
561 		u_int16_t auxmode;
562 		auxmode = aue_miibus_readreg(dev, 0, 0x1b);
563 		aue_miibus_writereg(dev, 0, 0x1b, auxmode | 0x04);
564 	}
565 	DPRINTFN(5,("%s: %s: exit\n", USBDEVNAME(sc->aue_dev), __func__));
566 }
567 
568 #define AUE_POLY	0xEDB88320
569 #define AUE_BITS	6
570 
571 Static u_int32_t
572 aue_crc(caddr_t addr)
573 {
574 	u_int32_t		idx, bit, data, crc;
575 
576 	/* Compute CRC for the address value. */
577 	crc = 0xFFFFFFFF; /* initial value */
578 
579 	for (idx = 0; idx < 6; idx++) {
580 		for (data = *addr++, bit = 0; bit < 8; bit++, data >>= 1)
581 			crc = (crc >> 1) ^ (((crc ^ data) & 1) ? AUE_POLY : 0);
582 	}
583 
584 	return (crc & ((1 << AUE_BITS) - 1));
585 }
586 
587 Static void
588 aue_setmulti(struct aue_softc *sc)
589 {
590 	struct ifnet		*ifp;
591 	struct ether_multi	*enm;
592 	struct ether_multistep	step;
593 	u_int32_t		h = 0, i;
594 
595 	DPRINTFN(5,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__));
596 
597 	ifp = GET_IFP(sc);
598 
599 	if (ifp->if_flags & IFF_PROMISC) {
600 allmulti:
601 		ifp->if_flags |= IFF_ALLMULTI;
602 		AUE_SETBIT(sc, AUE_CTL0, AUE_CTL0_ALLMULTI);
603 		return;
604 	}
605 
606 	AUE_CLRBIT(sc, AUE_CTL0, AUE_CTL0_ALLMULTI);
607 
608 	/* first, zot all the existing hash bits */
609 	for (i = 0; i < 8; i++)
610 		aue_csr_write_1(sc, AUE_MAR0 + i, 0);
611 
612 	/* now program new ones */
613 #if defined(__NetBSD__)
614 	ETHER_FIRST_MULTI(step, &sc->aue_ec, enm);
615 #else
616 	ETHER_FIRST_MULTI(step, &sc->arpcom, enm);
617 #endif
618 	while (enm != NULL) {
619 		if (memcmp(enm->enm_addrlo,
620 		    enm->enm_addrhi, ETHER_ADDR_LEN) != 0)
621 			goto allmulti;
622 
623 		h = aue_crc(enm->enm_addrlo);
624 		AUE_SETBIT(sc, AUE_MAR + (h >> 3), 1 << (h & 0x7));
625 		ETHER_NEXT_MULTI(step, enm);
626 	}
627 
628 	ifp->if_flags &= ~IFF_ALLMULTI;
629 }
630 
631 Static void
632 aue_reset_pegasus_II(struct aue_softc *sc)
633 {
634 	/* Magic constants taken from Linux driver. */
635 	aue_csr_write_1(sc, AUE_REG_1D, 0);
636 	aue_csr_write_1(sc, AUE_REG_7B, 2);
637 #if 0
638 	if ((sc->aue_flags & HAS_HOME_PNA) && mii_mode)
639 		aue_csr_write_1(sc, AUE_REG_81, 6);
640 	else
641 #endif
642 		aue_csr_write_1(sc, AUE_REG_81, 2);
643 }
644 
645 Static void
646 aue_reset(struct aue_softc *sc)
647 {
648 	int		i;
649 
650 	DPRINTFN(2,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__));
651 
652 	AUE_SETBIT(sc, AUE_CTL1, AUE_CTL1_RESETMAC);
653 
654 	for (i = 0; i < AUE_TIMEOUT; i++) {
655 		if (!(aue_csr_read_1(sc, AUE_CTL1) & AUE_CTL1_RESETMAC))
656 			break;
657 	}
658 
659 	if (i == AUE_TIMEOUT)
660 		printf("%s: reset failed\n", USBDEVNAME(sc->aue_dev));
661 
662 #if 0
663 	/* XXX what is mii_mode supposed to be */
664 	if (sc->aue_mii_mode && (sc->aue_flags & PNA))
665 		aue_csr_write_1(sc, AUE_GPIO1, 0x34);
666 	else
667 		aue_csr_write_1(sc, AUE_GPIO1, 0x26);
668 #endif
669 
670 	/*
671 	 * The PHY(s) attached to the Pegasus chip may be held
672 	 * in reset until we flip on the GPIO outputs. Make sure
673 	 * to set the GPIO pins high so that the PHY(s) will
674 	 * be enabled.
675 	 *
676 	 * Note: We force all of the GPIO pins low first, *then*
677 	 * enable the ones we want.
678   	 */
679 	if (sc->aue_flags & LSYS) {
680 		/* Grrr. LinkSys has to be different from everyone else. */
681 		aue_csr_write_1(sc, AUE_GPIO0,
682 		    AUE_GPIO_SEL0 | AUE_GPIO_SEL1);
683 	} else {
684 		aue_csr_write_1(sc, AUE_GPIO0,
685 		    AUE_GPIO_OUT0 | AUE_GPIO_SEL0);
686 	}
687   	aue_csr_write_1(sc, AUE_GPIO0,
688 	    AUE_GPIO_OUT0 | AUE_GPIO_SEL0 | AUE_GPIO_SEL1);
689 
690 	if (sc->aue_flags & PII)
691 		aue_reset_pegasus_II(sc);
692 
693 	/* Wait a little while for the chip to get its brains in order. */
694 	delay(10000);		/* XXX */
695 }
696 
697 /*
698  * Probe for a Pegasus chip.
699  */
700 USB_MATCH(aue)
701 {
702 	USB_MATCH_START(aue, uaa);
703 
704 	if (uaa->iface != NULL)
705 		return (UMATCH_NONE);
706 
707 	return (aue_lookup(uaa->vendor, uaa->product) != NULL ?
708 		UMATCH_VENDOR_PRODUCT : UMATCH_NONE);
709 }
710 
711 /*
712  * Attach the interface. Allocate softc structures, do ifmedia
713  * setup and ethernet/BPF attach.
714  */
715 USB_ATTACH(aue)
716 {
717 	USB_ATTACH_START(aue, sc, uaa);
718 	char			devinfo[1024];
719 	int			s;
720 	u_char			eaddr[ETHER_ADDR_LEN];
721 	struct ifnet		*ifp;
722 	struct mii_data		*mii;
723 	usbd_device_handle	dev = uaa->device;
724 	usbd_interface_handle	iface;
725 	usbd_status		err;
726 	usb_interface_descriptor_t	*id;
727 	usb_endpoint_descriptor_t	*ed;
728 	int			i;
729 
730 	DPRINTFN(5,(" : aue_attach: sc=%p", sc));
731 
732 	usbd_devinfo(dev, 0, devinfo);
733 	USB_ATTACH_SETUP;
734 	printf("%s: %s\n", USBDEVNAME(sc->aue_dev), devinfo);
735 
736 	err = usbd_set_config_no(dev, AUE_CONFIG_NO, 1);
737 	if (err) {
738 		printf("%s: setting config no failed\n",
739 		    USBDEVNAME(sc->aue_dev));
740 		USB_ATTACH_ERROR_RETURN;
741 	}
742 
743 	usb_init_task(&sc->aue_tick_task, aue_tick_task, sc);
744 	usb_init_task(&sc->aue_stop_task, (void (*)(void *))aue_stop, sc);
745 	lockinit(&sc->aue_mii_lock, PZERO, "auemii", 0, 0);
746 
747 	err = usbd_device2interface_handle(dev, AUE_IFACE_IDX, &iface);
748 	if (err) {
749 		printf("%s: getting interface handle failed\n",
750 		    USBDEVNAME(sc->aue_dev));
751 		USB_ATTACH_ERROR_RETURN;
752 	}
753 
754 	sc->aue_flags = aue_lookup(uaa->vendor, uaa->product)->aue_flags;
755 
756 	sc->aue_udev = dev;
757 	sc->aue_iface = iface;
758 	sc->aue_product = uaa->product;
759 	sc->aue_vendor = uaa->vendor;
760 
761 	id = usbd_get_interface_descriptor(iface);
762 
763 	/* Find endpoints. */
764 	for (i = 0; i < id->bNumEndpoints; i++) {
765 		ed = usbd_interface2endpoint_descriptor(iface, i);
766 		if (ed == NULL) {
767 			printf("%s: couldn't get endpoint descriptor %d\n",
768 			    USBDEVNAME(sc->aue_dev), i);
769 			USB_ATTACH_ERROR_RETURN;
770 		}
771 		if (UE_GET_DIR(ed->bEndpointAddress) == UE_DIR_IN &&
772 		    UE_GET_XFERTYPE(ed->bmAttributes) == UE_BULK) {
773 			sc->aue_ed[AUE_ENDPT_RX] = ed->bEndpointAddress;
774 		} else if (UE_GET_DIR(ed->bEndpointAddress) == UE_DIR_OUT &&
775 			   UE_GET_XFERTYPE(ed->bmAttributes) == UE_BULK) {
776 			sc->aue_ed[AUE_ENDPT_TX] = ed->bEndpointAddress;
777 		} else if (UE_GET_DIR(ed->bEndpointAddress) == UE_DIR_IN &&
778 			   UE_GET_XFERTYPE(ed->bmAttributes) == UE_INTERRUPT) {
779 			sc->aue_ed[AUE_ENDPT_INTR] = ed->bEndpointAddress;
780 		}
781 	}
782 
783 	if (sc->aue_ed[AUE_ENDPT_RX] == 0 || sc->aue_ed[AUE_ENDPT_TX] == 0 ||
784 	    sc->aue_ed[AUE_ENDPT_INTR] == 0) {
785 		printf("%s: missing endpoint\n", USBDEVNAME(sc->aue_dev));
786 		USB_ATTACH_ERROR_RETURN;
787 	}
788 
789 
790 	s = splnet();
791 
792 	/* Reset the adapter. */
793 	aue_reset(sc);
794 
795 	/*
796 	 * Get station address from the EEPROM.
797 	 */
798 	aue_read_mac(sc, eaddr);
799 
800 	/*
801 	 * A Pegasus chip was detected. Inform the world.
802 	 */
803 	ifp = GET_IFP(sc);
804 	printf("%s: Ethernet address %s\n", USBDEVNAME(sc->aue_dev),
805 	    ether_sprintf(eaddr));
806 
807 	/* Initialize interface info.*/
808 	ifp->if_softc = sc;
809 	ifp->if_mtu = ETHERMTU;
810 	ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
811 	ifp->if_ioctl = aue_ioctl;
812 	ifp->if_start = aue_start;
813 	ifp->if_watchdog = aue_watchdog;
814 #if defined(__OpenBSD__)
815 	ifp->if_snd.ifq_maxlen = IFQ_MAXLEN;
816 #endif
817 	strncpy(ifp->if_xname, USBDEVNAME(sc->aue_dev), IFNAMSIZ);
818 
819 	IFQ_SET_READY(&ifp->if_snd);
820 
821 	/* Initialize MII/media info. */
822 	mii = &sc->aue_mii;
823 	mii->mii_ifp = ifp;
824 	mii->mii_readreg = aue_miibus_readreg;
825 	mii->mii_writereg = aue_miibus_writereg;
826 	mii->mii_statchg = aue_miibus_statchg;
827 	mii->mii_flags = MIIF_AUTOTSLEEP;
828 	ifmedia_init(&mii->mii_media, 0, aue_ifmedia_upd, aue_ifmedia_sts);
829 	mii_attach(self, mii, 0xffffffff, MII_PHY_ANY, MII_OFFSET_ANY, 0);
830 	if (LIST_FIRST(&mii->mii_phys) == NULL) {
831 		ifmedia_add(&mii->mii_media, IFM_ETHER | IFM_NONE, 0, NULL);
832 		ifmedia_set(&mii->mii_media, IFM_ETHER | IFM_NONE);
833 	} else
834 		ifmedia_set(&mii->mii_media, IFM_ETHER | IFM_AUTO);
835 
836 	/* Attach the interface. */
837 	if_attach(ifp);
838 	Ether_ifattach(ifp, eaddr);
839 #if NRND > 0
840 	rnd_attach_source(&sc->rnd_source, USBDEVNAME(sc->aue_dev),
841 	    RND_TYPE_NET, 0);
842 #endif
843 
844 	usb_callout_init(sc->aue_stat_ch);
845 
846 	sc->aue_attached = 1;
847 	splx(s);
848 
849 	usbd_add_drv_event(USB_EVENT_DRIVER_ATTACH, sc->aue_udev,
850 			   USBDEV(sc->aue_dev));
851 
852 	USB_ATTACH_SUCCESS_RETURN;
853 }
854 
855 USB_DETACH(aue)
856 {
857 	USB_DETACH_START(aue, sc);
858 	struct ifnet		*ifp = GET_IFP(sc);
859 	int			s;
860 
861 	DPRINTFN(2,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__));
862 
863 	if (!sc->aue_attached) {
864 		/* Detached before attached finished, so just bail out. */
865 		return (0);
866 	}
867 
868 	usb_uncallout(sc->aue_stat_ch, aue_tick, sc);
869 	/*
870 	 * Remove any pending tasks.  They cannot be executing because they run
871 	 * in the same thread as detach.
872 	 */
873 	usb_rem_task(sc->aue_udev, &sc->aue_tick_task);
874 	usb_rem_task(sc->aue_udev, &sc->aue_stop_task);
875 
876 	s = splusb();
877 
878 	if (ifp->if_flags & IFF_RUNNING)
879 		aue_stop(sc);
880 
881 #if defined(__NetBSD__)
882 #if NRND > 0
883 	rnd_detach_source(&sc->rnd_source);
884 #endif
885 	mii_detach(&sc->aue_mii, MII_PHY_ANY, MII_OFFSET_ANY);
886 	ifmedia_delete_instance(&sc->aue_mii.mii_media, IFM_INST_ANY);
887 	ether_ifdetach(ifp);
888 #endif /* __NetBSD__ */
889 
890 	if_detach(ifp);
891 
892 #ifdef DIAGNOSTIC
893 	if (sc->aue_ep[AUE_ENDPT_TX] != NULL ||
894 	    sc->aue_ep[AUE_ENDPT_RX] != NULL ||
895 	    sc->aue_ep[AUE_ENDPT_INTR] != NULL)
896 		printf("%s: detach has active endpoints\n",
897 		       USBDEVNAME(sc->aue_dev));
898 #endif
899 
900 	sc->aue_attached = 0;
901 
902 	if (--sc->aue_refcnt >= 0) {
903 		/* Wait for processes to go away. */
904 		usb_detach_wait(USBDEV(sc->aue_dev));
905 	}
906 	splx(s);
907 
908 	usbd_add_drv_event(USB_EVENT_DRIVER_DETACH, sc->aue_udev,
909 			   USBDEV(sc->aue_dev));
910 
911 	return (0);
912 }
913 
914 int
915 aue_activate(device_ptr_t self, enum devact act)
916 {
917 	struct aue_softc *sc = (struct aue_softc *)self;
918 
919 	DPRINTFN(2,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__));
920 
921 	switch (act) {
922 	case DVACT_ACTIVATE:
923 		return (EOPNOTSUPP);
924 		break;
925 
926 	case DVACT_DEACTIVATE:
927 		if_deactivate(&sc->aue_ec.ec_if);
928 		sc->aue_dying = 1;
929 		break;
930 	}
931 	return (0);
932 }
933 
934 /*
935  * Initialize an RX descriptor and attach an MBUF cluster.
936  */
937 Static int
938 aue_newbuf(struct aue_softc *sc, struct aue_chain *c, struct mbuf *m)
939 {
940 	struct mbuf		*m_new = NULL;
941 
942 	DPRINTFN(10,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev),__func__));
943 
944 	if (m == NULL) {
945 		MGETHDR(m_new, M_DONTWAIT, MT_DATA);
946 		if (m_new == NULL) {
947 			printf("%s: no memory for rx list "
948 			    "-- packet dropped!\n", USBDEVNAME(sc->aue_dev));
949 			return (ENOBUFS);
950 		}
951 
952 		MCLGET(m_new, M_DONTWAIT);
953 		if (!(m_new->m_flags & M_EXT)) {
954 			printf("%s: no memory for rx list "
955 			    "-- packet dropped!\n", USBDEVNAME(sc->aue_dev));
956 			m_freem(m_new);
957 			return (ENOBUFS);
958 		}
959 		m_new->m_len = m_new->m_pkthdr.len = MCLBYTES;
960 	} else {
961 		m_new = m;
962 		m_new->m_len = m_new->m_pkthdr.len = MCLBYTES;
963 		m_new->m_data = m_new->m_ext.ext_buf;
964 	}
965 
966 	m_adj(m_new, ETHER_ALIGN);
967 	c->aue_mbuf = m_new;
968 
969 	return (0);
970 }
971 
972 Static int
973 aue_rx_list_init(struct aue_softc *sc)
974 {
975 	struct aue_cdata	*cd;
976 	struct aue_chain	*c;
977 	int			i;
978 
979 	DPRINTFN(5,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__));
980 
981 	cd = &sc->aue_cdata;
982 	for (i = 0; i < AUE_RX_LIST_CNT; i++) {
983 		c = &cd->aue_rx_chain[i];
984 		c->aue_sc = sc;
985 		c->aue_idx = i;
986 		if (aue_newbuf(sc, c, NULL) == ENOBUFS)
987 			return (ENOBUFS);
988 		if (c->aue_xfer == NULL) {
989 			c->aue_xfer = usbd_alloc_xfer(sc->aue_udev);
990 			if (c->aue_xfer == NULL)
991 				return (ENOBUFS);
992 			c->aue_buf = usbd_alloc_buffer(c->aue_xfer, AUE_BUFSZ);
993 			if (c->aue_buf == NULL)
994 				return (ENOBUFS); /* XXX free xfer */
995 		}
996 	}
997 
998 	return (0);
999 }
1000 
1001 Static int
1002 aue_tx_list_init(struct aue_softc *sc)
1003 {
1004 	struct aue_cdata	*cd;
1005 	struct aue_chain	*c;
1006 	int			i;
1007 
1008 	DPRINTFN(5,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__));
1009 
1010 	cd = &sc->aue_cdata;
1011 	for (i = 0; i < AUE_TX_LIST_CNT; i++) {
1012 		c = &cd->aue_tx_chain[i];
1013 		c->aue_sc = sc;
1014 		c->aue_idx = i;
1015 		c->aue_mbuf = NULL;
1016 		if (c->aue_xfer == NULL) {
1017 			c->aue_xfer = usbd_alloc_xfer(sc->aue_udev);
1018 			if (c->aue_xfer == NULL)
1019 				return (ENOBUFS);
1020 			c->aue_buf = usbd_alloc_buffer(c->aue_xfer, AUE_BUFSZ);
1021 			if (c->aue_buf == NULL)
1022 				return (ENOBUFS);
1023 		}
1024 	}
1025 
1026 	return (0);
1027 }
1028 
1029 Static void
1030 aue_intr(usbd_xfer_handle xfer, usbd_private_handle priv, usbd_status status)
1031 {
1032 	struct aue_softc	*sc = priv;
1033 	struct ifnet		*ifp = GET_IFP(sc);
1034 	struct aue_intrpkt	*p = &sc->aue_cdata.aue_ibuf;
1035 
1036 	DPRINTFN(15,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev),__func__));
1037 
1038 	if (sc->aue_dying)
1039 		return;
1040 
1041 	if (!(ifp->if_flags & IFF_RUNNING))
1042 		return;
1043 
1044 	if (status != USBD_NORMAL_COMPLETION) {
1045 		if (status == USBD_NOT_STARTED || status == USBD_CANCELLED) {
1046 			return;
1047 		}
1048 		sc->aue_intr_errs++;
1049 		if (usbd_ratecheck(&sc->aue_rx_notice)) {
1050 			printf("%s: %u usb errors on intr: %s\n",
1051 			    USBDEVNAME(sc->aue_dev), sc->aue_intr_errs,
1052 			    usbd_errstr(status));
1053 			sc->aue_intr_errs = 0;
1054 		}
1055 		if (status == USBD_STALLED)
1056 			usbd_clear_endpoint_stall(sc->aue_ep[AUE_ENDPT_RX]);
1057 		return;
1058 	}
1059 
1060 	if (p->aue_txstat0)
1061 		ifp->if_oerrors++;
1062 
1063 	if (p->aue_txstat0 & (AUE_TXSTAT0_LATECOLL | AUE_TXSTAT0_EXCESSCOLL))
1064 		ifp->if_collisions++;
1065 }
1066 
1067 /*
1068  * A frame has been uploaded: pass the resulting mbuf chain up to
1069  * the higher level protocols.
1070  */
1071 Static void
1072 aue_rxeof(usbd_xfer_handle xfer, usbd_private_handle priv, usbd_status status)
1073 {
1074 	struct aue_chain	*c = priv;
1075 	struct aue_softc	*sc = c->aue_sc;
1076 	struct ifnet		*ifp = GET_IFP(sc);
1077 	struct mbuf		*m;
1078 	u_int32_t		total_len;
1079 	struct aue_rxpkt	r;
1080 	int			s;
1081 
1082 	DPRINTFN(10,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev),__func__));
1083 
1084 	if (sc->aue_dying)
1085 		return;
1086 
1087 	if (!(ifp->if_flags & IFF_RUNNING))
1088 		return;
1089 
1090 	if (status != USBD_NORMAL_COMPLETION) {
1091 		if (status == USBD_NOT_STARTED || status == USBD_CANCELLED)
1092 			return;
1093 		sc->aue_rx_errs++;
1094 		if (usbd_ratecheck(&sc->aue_rx_notice)) {
1095 			printf("%s: %u usb errors on rx: %s\n",
1096 			    USBDEVNAME(sc->aue_dev), sc->aue_rx_errs,
1097 			    usbd_errstr(status));
1098 			sc->aue_rx_errs = 0;
1099 		}
1100 		if (status == USBD_STALLED)
1101 			usbd_clear_endpoint_stall(sc->aue_ep[AUE_ENDPT_RX]);
1102 		goto done;
1103 	}
1104 
1105 	usbd_get_xfer_status(xfer, NULL, NULL, &total_len, NULL);
1106 
1107 	memcpy(mtod(c->aue_mbuf, char *), c->aue_buf, total_len);
1108 
1109 	if (total_len <= 4 + ETHER_CRC_LEN) {
1110 		ifp->if_ierrors++;
1111 		goto done;
1112 	}
1113 
1114 	memcpy(&r, c->aue_buf + total_len - 4, sizeof(r));
1115 
1116 	/* Turn off all the non-error bits in the rx status word. */
1117 	r.aue_rxstat &= AUE_RXSTAT_MASK;
1118 	if (r.aue_rxstat) {
1119 		ifp->if_ierrors++;
1120 		goto done;
1121 	}
1122 
1123 	/* No errors; receive the packet. */
1124 	m = c->aue_mbuf;
1125 	total_len -= ETHER_CRC_LEN + 4;
1126 	m->m_pkthdr.len = m->m_len = total_len;
1127 	ifp->if_ipackets++;
1128 
1129 	m->m_pkthdr.rcvif = ifp;
1130 
1131 	s = splnet();
1132 
1133 	/* XXX ugly */
1134 	if (aue_newbuf(sc, c, NULL) == ENOBUFS) {
1135 		ifp->if_ierrors++;
1136 		goto done1;
1137 	}
1138 
1139 #if NBPFILTER > 0
1140 	/*
1141 	 * Handle BPF listeners. Let the BPF user see the packet, but
1142 	 * don't pass it up to the ether_input() layer unless it's
1143 	 * a broadcast packet, multicast packet, matches our ethernet
1144 	 * address or the interface is in promiscuous mode.
1145 	 */
1146 	if (ifp->if_bpf)
1147 		BPF_MTAP(ifp, m);
1148 #endif
1149 
1150 	DPRINTFN(10,("%s: %s: deliver %d\n", USBDEVNAME(sc->aue_dev),
1151 		    __func__, m->m_len));
1152 	IF_INPUT(ifp, m);
1153  done1:
1154 	splx(s);
1155 
1156  done:
1157 
1158 	/* Setup new transfer. */
1159 	usbd_setup_xfer(xfer, sc->aue_ep[AUE_ENDPT_RX],
1160 	    c, c->aue_buf, AUE_BUFSZ,
1161 	    USBD_SHORT_XFER_OK | USBD_NO_COPY,
1162 	    USBD_NO_TIMEOUT, aue_rxeof);
1163 	usbd_transfer(xfer);
1164 
1165 	DPRINTFN(10,("%s: %s: start rx\n", USBDEVNAME(sc->aue_dev),
1166 		    __func__));
1167 }
1168 
1169 /*
1170  * A frame was downloaded to the chip. It's safe for us to clean up
1171  * the list buffers.
1172  */
1173 
1174 Static void
1175 aue_txeof(usbd_xfer_handle xfer, usbd_private_handle priv, usbd_status status)
1176 {
1177 	struct aue_chain	*c = priv;
1178 	struct aue_softc	*sc = c->aue_sc;
1179 	struct ifnet		*ifp = GET_IFP(sc);
1180 	int			s;
1181 
1182 	if (sc->aue_dying)
1183 		return;
1184 
1185 	s = splnet();
1186 
1187 	DPRINTFN(10,("%s: %s: enter status=%d\n", USBDEVNAME(sc->aue_dev),
1188 		    __func__, status));
1189 
1190 	ifp->if_timer = 0;
1191 	ifp->if_flags &= ~IFF_OACTIVE;
1192 
1193 	if (status != USBD_NORMAL_COMPLETION) {
1194 		if (status == USBD_NOT_STARTED || status == USBD_CANCELLED) {
1195 			splx(s);
1196 			return;
1197 		}
1198 		ifp->if_oerrors++;
1199 		printf("%s: usb error on tx: %s\n", USBDEVNAME(sc->aue_dev),
1200 		    usbd_errstr(status));
1201 		if (status == USBD_STALLED)
1202 			usbd_clear_endpoint_stall(sc->aue_ep[AUE_ENDPT_TX]);
1203 		splx(s);
1204 		return;
1205 	}
1206 
1207 	ifp->if_opackets++;
1208 
1209 	m_freem(c->aue_mbuf);
1210 	c->aue_mbuf = NULL;
1211 
1212 	if (IFQ_IS_EMPTY(&ifp->if_snd) == 0)
1213 		aue_start(ifp);
1214 
1215 	splx(s);
1216 }
1217 
1218 Static void
1219 aue_tick(void *xsc)
1220 {
1221 	struct aue_softc	*sc = xsc;
1222 
1223 	DPRINTFN(15,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev),__func__));
1224 
1225 	if (sc == NULL)
1226 		return;
1227 
1228 	if (sc->aue_dying)
1229 		return;
1230 
1231 	/* Perform periodic stuff in process context. */
1232 	usb_add_task(sc->aue_udev, &sc->aue_tick_task);
1233 }
1234 
1235 Static void
1236 aue_tick_task(void *xsc)
1237 {
1238 	struct aue_softc	*sc = xsc;
1239 	struct ifnet		*ifp;
1240 	struct mii_data		*mii;
1241 	int			s;
1242 
1243 	DPRINTFN(15,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev),__func__));
1244 
1245 	if (sc->aue_dying)
1246 		return;
1247 
1248 	ifp = GET_IFP(sc);
1249 	mii = GET_MII(sc);
1250 	if (mii == NULL)
1251 		return;
1252 
1253 	s = splnet();
1254 
1255 	mii_tick(mii);
1256 	if (!sc->aue_link) {
1257 		mii_pollstat(mii); /* XXX FreeBSD has removed this call */
1258 		if (mii->mii_media_status & IFM_ACTIVE &&
1259 		    IFM_SUBTYPE(mii->mii_media_active) != IFM_NONE) {
1260 			DPRINTFN(2,("%s: %s: got link\n",
1261 				    USBDEVNAME(sc->aue_dev),__func__));
1262 			sc->aue_link++;
1263 			if (IFQ_IS_EMPTY(&ifp->if_snd) == 0)
1264 				aue_start(ifp);
1265 		}
1266 	}
1267 
1268 	usb_callout(sc->aue_stat_ch, hz, aue_tick, sc);
1269 
1270 	splx(s);
1271 }
1272 
1273 Static int
1274 aue_send(struct aue_softc *sc, struct mbuf *m, int idx)
1275 {
1276 	int			total_len;
1277 	struct aue_chain	*c;
1278 	usbd_status		err;
1279 
1280 	DPRINTFN(10,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev),__func__));
1281 
1282 	c = &sc->aue_cdata.aue_tx_chain[idx];
1283 
1284 	/*
1285 	 * Copy the mbuf data into a contiguous buffer, leaving two
1286 	 * bytes at the beginning to hold the frame length.
1287 	 */
1288 	m_copydata(m, 0, m->m_pkthdr.len, c->aue_buf + 2);
1289 	c->aue_mbuf = m;
1290 
1291 	/*
1292 	 * The ADMtek documentation says that the packet length is
1293 	 * supposed to be specified in the first two bytes of the
1294 	 * transfer, however it actually seems to ignore this info
1295 	 * and base the frame size on the bulk transfer length.
1296 	 */
1297 	c->aue_buf[0] = (u_int8_t)m->m_pkthdr.len;
1298 	c->aue_buf[1] = (u_int8_t)(m->m_pkthdr.len >> 8);
1299 	total_len = m->m_pkthdr.len + 2;
1300 
1301 	usbd_setup_xfer(c->aue_xfer, sc->aue_ep[AUE_ENDPT_TX],
1302 	    c, c->aue_buf, total_len, USBD_FORCE_SHORT_XFER | USBD_NO_COPY,
1303 	    AUE_TX_TIMEOUT, aue_txeof);
1304 
1305 	/* Transmit */
1306 	err = usbd_transfer(c->aue_xfer);
1307 	if (err != USBD_IN_PROGRESS) {
1308 		printf("%s: aue_send error=%s\n", USBDEVNAME(sc->aue_dev),
1309 		       usbd_errstr(err));
1310 		/* Stop the interface from process context. */
1311 		usb_add_task(sc->aue_udev, &sc->aue_stop_task);
1312 		return (EIO);
1313 	}
1314 	DPRINTFN(5,("%s: %s: send %d bytes\n", USBDEVNAME(sc->aue_dev),
1315 		    __func__, total_len));
1316 
1317 	sc->aue_cdata.aue_tx_cnt++;
1318 
1319 	return (0);
1320 }
1321 
1322 Static void
1323 aue_start(struct ifnet *ifp)
1324 {
1325 	struct aue_softc	*sc = ifp->if_softc;
1326 	struct mbuf		*m_head = NULL;
1327 
1328 	DPRINTFN(5,("%s: %s: enter, link=%d\n", USBDEVNAME(sc->aue_dev),
1329 		    __func__, sc->aue_link));
1330 
1331 	if (sc->aue_dying)
1332 		return;
1333 
1334 	if (!sc->aue_link)
1335 		return;
1336 
1337 	if (ifp->if_flags & IFF_OACTIVE)
1338 		return;
1339 
1340 	IFQ_POLL(&ifp->if_snd, m_head);
1341 	if (m_head == NULL)
1342 		return;
1343 
1344 	if (aue_send(sc, m_head, 0)) {
1345 		ifp->if_flags |= IFF_OACTIVE;
1346 		return;
1347 	}
1348 
1349 	IFQ_DEQUEUE(&ifp->if_snd, m_head);
1350 
1351 #if NBPFILTER > 0
1352 	/*
1353 	 * If there's a BPF listener, bounce a copy of this frame
1354 	 * to him.
1355 	 */
1356 	if (ifp->if_bpf)
1357 		BPF_MTAP(ifp, m_head);
1358 #endif
1359 
1360 	ifp->if_flags |= IFF_OACTIVE;
1361 
1362 	/*
1363 	 * Set a timeout in case the chip goes out to lunch.
1364 	 */
1365 	ifp->if_timer = 5;
1366 }
1367 
1368 Static void
1369 aue_init(void *xsc)
1370 {
1371 	struct aue_softc	*sc = xsc;
1372 	struct ifnet		*ifp = GET_IFP(sc);
1373 	struct mii_data		*mii = GET_MII(sc);
1374 	int			i, s;
1375 	u_char			*eaddr;
1376 
1377 	DPRINTFN(5,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__));
1378 
1379 	if (sc->aue_dying)
1380 		return;
1381 
1382 	if (ifp->if_flags & IFF_RUNNING)
1383 		return;
1384 
1385 	s = splnet();
1386 
1387 	/*
1388 	 * Cancel pending I/O and free all RX/TX buffers.
1389 	 */
1390 	aue_reset(sc);
1391 
1392 #if defined(__OpenBSD__)
1393 	eaddr = sc->arpcom.ac_enaddr;
1394 #elif defined(__NetBSD__)
1395 	eaddr = LLADDR(ifp->if_sadl);
1396 #endif /* defined(__NetBSD__) */
1397 	for (i = 0; i < ETHER_ADDR_LEN; i++)
1398 		aue_csr_write_1(sc, AUE_PAR0 + i, eaddr[i]);
1399 
1400 	 /* If we want promiscuous mode, set the allframes bit. */
1401 	if (ifp->if_flags & IFF_PROMISC)
1402 		AUE_SETBIT(sc, AUE_CTL2, AUE_CTL2_RX_PROMISC);
1403 	else
1404 		AUE_CLRBIT(sc, AUE_CTL2, AUE_CTL2_RX_PROMISC);
1405 
1406 	/* Init TX ring. */
1407 	if (aue_tx_list_init(sc) == ENOBUFS) {
1408 		printf("%s: tx list init failed\n", USBDEVNAME(sc->aue_dev));
1409 		splx(s);
1410 		return;
1411 	}
1412 
1413 	/* Init RX ring. */
1414 	if (aue_rx_list_init(sc) == ENOBUFS) {
1415 		printf("%s: rx list init failed\n", USBDEVNAME(sc->aue_dev));
1416 		splx(s);
1417 		return;
1418 	}
1419 
1420 	/* Load the multicast filter. */
1421 	aue_setmulti(sc);
1422 
1423 	/* Enable RX and TX */
1424 	aue_csr_write_1(sc, AUE_CTL0, AUE_CTL0_RXSTAT_APPEND | AUE_CTL0_RX_ENB);
1425 	AUE_SETBIT(sc, AUE_CTL0, AUE_CTL0_TX_ENB);
1426 	AUE_SETBIT(sc, AUE_CTL2, AUE_CTL2_EP3_CLR);
1427 
1428 	mii_mediachg(mii);
1429 
1430 	if (sc->aue_ep[AUE_ENDPT_RX] == NULL) {
1431 		if (aue_openpipes(sc)) {
1432 			splx(s);
1433 			return;
1434 		}
1435 	}
1436 
1437 	ifp->if_flags |= IFF_RUNNING;
1438 	ifp->if_flags &= ~IFF_OACTIVE;
1439 
1440 	splx(s);
1441 
1442 	usb_callout(sc->aue_stat_ch, hz, aue_tick, sc);
1443 }
1444 
1445 Static int
1446 aue_openpipes(struct aue_softc *sc)
1447 {
1448 	struct aue_chain	*c;
1449 	usbd_status		err;
1450 	int i;
1451 
1452 	/* Open RX and TX pipes. */
1453 	err = usbd_open_pipe(sc->aue_iface, sc->aue_ed[AUE_ENDPT_RX],
1454 	    USBD_EXCLUSIVE_USE, &sc->aue_ep[AUE_ENDPT_RX]);
1455 	if (err) {
1456 		printf("%s: open rx pipe failed: %s\n",
1457 		    USBDEVNAME(sc->aue_dev), usbd_errstr(err));
1458 		return (EIO);
1459 	}
1460 	err = usbd_open_pipe(sc->aue_iface, sc->aue_ed[AUE_ENDPT_TX],
1461 	    USBD_EXCLUSIVE_USE, &sc->aue_ep[AUE_ENDPT_TX]);
1462 	if (err) {
1463 		printf("%s: open tx pipe failed: %s\n",
1464 		    USBDEVNAME(sc->aue_dev), usbd_errstr(err));
1465 		return (EIO);
1466 	}
1467 	err = usbd_open_pipe_intr(sc->aue_iface, sc->aue_ed[AUE_ENDPT_INTR],
1468 	    USBD_EXCLUSIVE_USE, &sc->aue_ep[AUE_ENDPT_INTR], sc,
1469 	    &sc->aue_cdata.aue_ibuf, AUE_INTR_PKTLEN, aue_intr,
1470 	    AUE_INTR_INTERVAL);
1471 	if (err) {
1472 		printf("%s: open intr pipe failed: %s\n",
1473 		    USBDEVNAME(sc->aue_dev), usbd_errstr(err));
1474 		return (EIO);
1475 	}
1476 
1477 	/* Start up the receive pipe. */
1478 	for (i = 0; i < AUE_RX_LIST_CNT; i++) {
1479 		c = &sc->aue_cdata.aue_rx_chain[i];
1480 		usbd_setup_xfer(c->aue_xfer, sc->aue_ep[AUE_ENDPT_RX],
1481 		    c, c->aue_buf, AUE_BUFSZ,
1482 		    USBD_SHORT_XFER_OK | USBD_NO_COPY, USBD_NO_TIMEOUT,
1483 		    aue_rxeof);
1484 		(void)usbd_transfer(c->aue_xfer); /* XXX */
1485 		DPRINTFN(5,("%s: %s: start read\n", USBDEVNAME(sc->aue_dev),
1486 			    __func__));
1487 
1488 	}
1489 	return (0);
1490 }
1491 
1492 /*
1493  * Set media options.
1494  */
1495 Static int
1496 aue_ifmedia_upd(struct ifnet *ifp)
1497 {
1498 	struct aue_softc	*sc = ifp->if_softc;
1499 	struct mii_data		*mii = GET_MII(sc);
1500 
1501 	DPRINTFN(5,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__));
1502 
1503 	if (sc->aue_dying)
1504 		return (0);
1505 
1506 	sc->aue_link = 0;
1507 	if (mii->mii_instance) {
1508 		struct mii_softc	*miisc;
1509 		for (miisc = LIST_FIRST(&mii->mii_phys); miisc != NULL;
1510 		    miisc = LIST_NEXT(miisc, mii_list))
1511 			 mii_phy_reset(miisc);
1512 	}
1513 	mii_mediachg(mii);
1514 
1515 	return (0);
1516 }
1517 
1518 /*
1519  * Report current media status.
1520  */
1521 Static void
1522 aue_ifmedia_sts(struct ifnet *ifp, struct ifmediareq *ifmr)
1523 {
1524 	struct aue_softc	*sc = ifp->if_softc;
1525 	struct mii_data		*mii = GET_MII(sc);
1526 
1527 	DPRINTFN(5,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__));
1528 
1529 	mii_pollstat(mii);
1530 	ifmr->ifm_active = mii->mii_media_active;
1531 	ifmr->ifm_status = mii->mii_media_status;
1532 }
1533 
1534 Static int
1535 aue_ioctl(struct ifnet *ifp, u_long command, caddr_t data)
1536 {
1537 	struct aue_softc	*sc = ifp->if_softc;
1538 	struct ifaddr 		*ifa = (struct ifaddr *)data;
1539 	struct ifreq		*ifr = (struct ifreq *)data;
1540 	struct mii_data		*mii;
1541 	int			s, error = 0;
1542 
1543 	if (sc->aue_dying)
1544 		return (EIO);
1545 
1546 	s = splnet();
1547 
1548 	switch(command) {
1549 	case SIOCSIFADDR:
1550 		ifp->if_flags |= IFF_UP;
1551 		aue_init(sc);
1552 
1553 		switch (ifa->ifa_addr->sa_family) {
1554 #ifdef INET
1555 		case AF_INET:
1556 #if defined(__NetBSD__)
1557 			arp_ifinit(ifp, ifa);
1558 #else
1559 			arp_ifinit(&sc->arpcom, ifa);
1560 #endif
1561 			break;
1562 #endif /* INET */
1563 #ifdef NS
1564 		case AF_NS:
1565 		    {
1566 			struct ns_addr *ina = &IA_SNS(ifa)->sns_addr;
1567 
1568 			if (ns_nullhost(*ina))
1569 				ina->x_host = *(union ns_host *)
1570 					LLADDR(ifp->if_sadl);
1571 			else
1572 				memcpy(LLADDR(ifp->if_sadl),
1573 				       ina->x_host.c_host,
1574 				       ifp->if_addrlen);
1575 			break;
1576 		    }
1577 #endif /* NS */
1578 		}
1579 		break;
1580 
1581 	case SIOCSIFMTU:
1582 		if (ifr->ifr_mtu > ETHERMTU)
1583 			error = EINVAL;
1584 		else
1585 			ifp->if_mtu = ifr->ifr_mtu;
1586 		break;
1587 
1588 	case SIOCSIFFLAGS:
1589 		if (ifp->if_flags & IFF_UP) {
1590 			if (ifp->if_flags & IFF_RUNNING &&
1591 			    ifp->if_flags & IFF_PROMISC &&
1592 			    !(sc->aue_if_flags & IFF_PROMISC)) {
1593 				AUE_SETBIT(sc, AUE_CTL2, AUE_CTL2_RX_PROMISC);
1594 			} else if (ifp->if_flags & IFF_RUNNING &&
1595 			    !(ifp->if_flags & IFF_PROMISC) &&
1596 			    sc->aue_if_flags & IFF_PROMISC) {
1597 				AUE_CLRBIT(sc, AUE_CTL2, AUE_CTL2_RX_PROMISC);
1598 			} else if (!(ifp->if_flags & IFF_RUNNING))
1599 				aue_init(sc);
1600 		} else {
1601 			if (ifp->if_flags & IFF_RUNNING)
1602 				aue_stop(sc);
1603 		}
1604 		sc->aue_if_flags = ifp->if_flags;
1605 		error = 0;
1606 		break;
1607 	case SIOCADDMULTI:
1608 	case SIOCDELMULTI:
1609 		error = (command == SIOCADDMULTI) ?
1610 			ether_addmulti(ifr, &sc->aue_ec) :
1611 			ether_delmulti(ifr, &sc->aue_ec);
1612 		if (error == ENETRESET) {
1613 			aue_init(sc);
1614 		}
1615 		aue_setmulti(sc);
1616 		error = 0;
1617 		break;
1618 	case SIOCGIFMEDIA:
1619 	case SIOCSIFMEDIA:
1620 		mii = GET_MII(sc);
1621 		error = ifmedia_ioctl(ifp, ifr, &mii->mii_media, command);
1622 		break;
1623 	default:
1624 		error = EINVAL;
1625 		break;
1626 	}
1627 
1628 	splx(s);
1629 
1630 	return (error);
1631 }
1632 
1633 Static void
1634 aue_watchdog(struct ifnet *ifp)
1635 {
1636 	struct aue_softc	*sc = ifp->if_softc;
1637 	struct aue_chain	*c;
1638 	usbd_status		stat;
1639 	int			s;
1640 
1641 	DPRINTFN(5,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__));
1642 
1643 	ifp->if_oerrors++;
1644 	printf("%s: watchdog timeout\n", USBDEVNAME(sc->aue_dev));
1645 
1646 	s = splusb();
1647 	c = &sc->aue_cdata.aue_tx_chain[0];
1648 	usbd_get_xfer_status(c->aue_xfer, NULL, NULL, NULL, &stat);
1649 	aue_txeof(c->aue_xfer, c, stat);
1650 
1651 	if (IFQ_IS_EMPTY(&ifp->if_snd) == 0)
1652 		aue_start(ifp);
1653 	splx(s);
1654 }
1655 
1656 /*
1657  * Stop the adapter and free any mbufs allocated to the
1658  * RX and TX lists.
1659  */
1660 Static void
1661 aue_stop(struct aue_softc *sc)
1662 {
1663 	usbd_status		err;
1664 	struct ifnet		*ifp;
1665 	int			i;
1666 
1667 	DPRINTFN(5,("%s: %s: enter\n", USBDEVNAME(sc->aue_dev), __func__));
1668 
1669 	ifp = GET_IFP(sc);
1670 	ifp->if_timer = 0;
1671 
1672 	aue_csr_write_1(sc, AUE_CTL0, 0);
1673 	aue_csr_write_1(sc, AUE_CTL1, 0);
1674 	aue_reset(sc);
1675 	usb_uncallout(sc->aue_stat_ch, aue_tick, sc);
1676 
1677 	/* Stop transfers. */
1678 	if (sc->aue_ep[AUE_ENDPT_RX] != NULL) {
1679 		err = usbd_abort_pipe(sc->aue_ep[AUE_ENDPT_RX]);
1680 		if (err) {
1681 			printf("%s: abort rx pipe failed: %s\n",
1682 			    USBDEVNAME(sc->aue_dev), usbd_errstr(err));
1683 		}
1684 		err = usbd_close_pipe(sc->aue_ep[AUE_ENDPT_RX]);
1685 		if (err) {
1686 			printf("%s: close rx pipe failed: %s\n",
1687 			    USBDEVNAME(sc->aue_dev), usbd_errstr(err));
1688 		}
1689 		sc->aue_ep[AUE_ENDPT_RX] = NULL;
1690 	}
1691 
1692 	if (sc->aue_ep[AUE_ENDPT_TX] != NULL) {
1693 		err = usbd_abort_pipe(sc->aue_ep[AUE_ENDPT_TX]);
1694 		if (err) {
1695 			printf("%s: abort tx pipe failed: %s\n",
1696 			    USBDEVNAME(sc->aue_dev), usbd_errstr(err));
1697 		}
1698 		err = usbd_close_pipe(sc->aue_ep[AUE_ENDPT_TX]);
1699 		if (err) {
1700 			printf("%s: close tx pipe failed: %s\n",
1701 			    USBDEVNAME(sc->aue_dev), usbd_errstr(err));
1702 		}
1703 		sc->aue_ep[AUE_ENDPT_TX] = NULL;
1704 	}
1705 
1706 	if (sc->aue_ep[AUE_ENDPT_INTR] != NULL) {
1707 		err = usbd_abort_pipe(sc->aue_ep[AUE_ENDPT_INTR]);
1708 		if (err) {
1709 			printf("%s: abort intr pipe failed: %s\n",
1710 			    USBDEVNAME(sc->aue_dev), usbd_errstr(err));
1711 		}
1712 		err = usbd_close_pipe(sc->aue_ep[AUE_ENDPT_INTR]);
1713 		if (err) {
1714 			printf("%s: close intr pipe failed: %s\n",
1715 			    USBDEVNAME(sc->aue_dev), usbd_errstr(err));
1716 		}
1717 		sc->aue_ep[AUE_ENDPT_INTR] = NULL;
1718 	}
1719 
1720 	/* Free RX resources. */
1721 	for (i = 0; i < AUE_RX_LIST_CNT; i++) {
1722 		if (sc->aue_cdata.aue_rx_chain[i].aue_mbuf != NULL) {
1723 			m_freem(sc->aue_cdata.aue_rx_chain[i].aue_mbuf);
1724 			sc->aue_cdata.aue_rx_chain[i].aue_mbuf = NULL;
1725 		}
1726 		if (sc->aue_cdata.aue_rx_chain[i].aue_xfer != NULL) {
1727 			usbd_free_xfer(sc->aue_cdata.aue_rx_chain[i].aue_xfer);
1728 			sc->aue_cdata.aue_rx_chain[i].aue_xfer = NULL;
1729 		}
1730 	}
1731 
1732 	/* Free TX resources. */
1733 	for (i = 0; i < AUE_TX_LIST_CNT; i++) {
1734 		if (sc->aue_cdata.aue_tx_chain[i].aue_mbuf != NULL) {
1735 			m_freem(sc->aue_cdata.aue_tx_chain[i].aue_mbuf);
1736 			sc->aue_cdata.aue_tx_chain[i].aue_mbuf = NULL;
1737 		}
1738 		if (sc->aue_cdata.aue_tx_chain[i].aue_xfer != NULL) {
1739 			usbd_free_xfer(sc->aue_cdata.aue_tx_chain[i].aue_xfer);
1740 			sc->aue_cdata.aue_tx_chain[i].aue_xfer = NULL;
1741 		}
1742 	}
1743 
1744 	sc->aue_link = 0;
1745 
1746 	ifp->if_flags &= ~(IFF_RUNNING | IFF_OACTIVE);
1747 }
1748