xref: /freebsd/sys/dev/lge/if_lge.c (revision 5f96beb9e08be2b08309a6b98967246b64272ade)
1c678bc4fSBill Paul /*
2c678bc4fSBill Paul  * Copyright (c) 2001 Wind River Systems
3c678bc4fSBill Paul  * Copyright (c) 1997, 1998, 1999, 2000, 2001
4c678bc4fSBill Paul  *	Bill Paul <william.paul@windriver.com>.  All rights reserved.
5c678bc4fSBill Paul  *
6c678bc4fSBill Paul  * Redistribution and use in source and binary forms, with or without
7c678bc4fSBill Paul  * modification, are permitted provided that the following conditions
8c678bc4fSBill Paul  * are met:
9c678bc4fSBill Paul  * 1. Redistributions of source code must retain the above copyright
10c678bc4fSBill Paul  *    notice, this list of conditions and the following disclaimer.
11c678bc4fSBill Paul  * 2. Redistributions in binary form must reproduce the above copyright
12c678bc4fSBill Paul  *    notice, this list of conditions and the following disclaimer in the
13c678bc4fSBill Paul  *    documentation and/or other materials provided with the distribution.
14c678bc4fSBill Paul  * 3. All advertising materials mentioning features or use of this software
15c678bc4fSBill Paul  *    must display the following acknowledgement:
16c678bc4fSBill Paul  *	This product includes software developed by Bill Paul.
17c678bc4fSBill Paul  * 4. Neither the name of the author nor the names of any co-contributors
18c678bc4fSBill Paul  *    may be used to endorse or promote products derived from this software
19c678bc4fSBill Paul  *    without specific prior written permission.
20c678bc4fSBill Paul  *
21c678bc4fSBill Paul  * THIS SOFTWARE IS PROVIDED BY Bill Paul AND CONTRIBUTORS ``AS IS'' AND
22c678bc4fSBill Paul  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
23c678bc4fSBill Paul  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
24c678bc4fSBill Paul  * ARE DISCLAIMED.  IN NO EVENT SHALL Bill Paul OR THE VOICES IN HIS HEAD
25c678bc4fSBill Paul  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
26c678bc4fSBill Paul  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
27c678bc4fSBill Paul  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
28c678bc4fSBill Paul  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
29c678bc4fSBill Paul  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
30c678bc4fSBill Paul  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
31c678bc4fSBill Paul  * THE POSSIBILITY OF SUCH DAMAGE.
32c678bc4fSBill Paul  */
33c678bc4fSBill Paul 
34aad970f1SDavid E. O'Brien #include <sys/cdefs.h>
35aad970f1SDavid E. O'Brien __FBSDID("$FreeBSD$");
36aad970f1SDavid E. O'Brien 
37c678bc4fSBill Paul /*
38c678bc4fSBill Paul  * Level 1 LXT1001 gigabit ethernet driver for FreeBSD. Public
39c678bc4fSBill Paul  * documentation not available, but ask me nicely.
40c678bc4fSBill Paul  *
41c678bc4fSBill Paul  * The Level 1 chip is used on some D-Link, SMC and Addtron NICs.
42c678bc4fSBill Paul  * It's a 64-bit PCI part that supports TCP/IP checksum offload,
43c678bc4fSBill Paul  * VLAN tagging/insertion, GMII and TBI (1000baseX) ports. There
44c678bc4fSBill Paul  * are three supported methods for data transfer between host and
45c678bc4fSBill Paul  * NIC: programmed I/O, traditional scatter/gather DMA and Packet
46c678bc4fSBill Paul  * Propulsion Technology (tm) DMA. The latter mechanism is a form
47c678bc4fSBill Paul  * of double buffer DMA where the packet data is copied to a
48c678bc4fSBill Paul  * pre-allocated DMA buffer who's physical address has been loaded
49c678bc4fSBill Paul  * into a table at device initialization time. The rationale is that
50c678bc4fSBill Paul  * the virtual to physical address translation needed for normal
51c678bc4fSBill Paul  * scatter/gather DMA is more expensive than the data copy needed
52c678bc4fSBill Paul  * for double buffering. This may be true in Windows NT and the like,
53c678bc4fSBill Paul  * but it isn't true for us, at least on the x86 arch. This driver
54c678bc4fSBill Paul  * uses the scatter/gather I/O method for both TX and RX.
55c678bc4fSBill Paul  *
56c678bc4fSBill Paul  * The LXT1001 only supports TCP/IP checksum offload on receive.
57c678bc4fSBill Paul  * Also, the VLAN tagging is done using a 16-entry table which allows
58c678bc4fSBill Paul  * the chip to perform hardware filtering based on VLAN tags. Sadly,
59c678bc4fSBill Paul  * our vlan support doesn't currently play well with this kind of
60c678bc4fSBill Paul  * hardware support.
61c678bc4fSBill Paul  *
62c678bc4fSBill Paul  * Special thanks to:
63c678bc4fSBill Paul  * - Jeff James at Intel, for arranging to have the LXT1001 manual
64c678bc4fSBill Paul  *   released (at long last)
65c678bc4fSBill Paul  * - Beny Chen at D-Link, for actually sending it to me
66c678bc4fSBill Paul  * - Brad Short and Keith Alexis at SMC, for sending me sample
67c678bc4fSBill Paul  *   SMC9462SX and SMC9462TX adapters for testing
68c678bc4fSBill Paul  * - Paul Saab at Y!, for not killing me (though it remains to be seen
69c678bc4fSBill Paul  *   if in fact he did me much of a favor)
70c678bc4fSBill Paul  */
71c678bc4fSBill Paul 
72c678bc4fSBill Paul #include <sys/param.h>
73c678bc4fSBill Paul #include <sys/systm.h>
74c678bc4fSBill Paul #include <sys/sockio.h>
75c678bc4fSBill Paul #include <sys/mbuf.h>
76c678bc4fSBill Paul #include <sys/malloc.h>
77c678bc4fSBill Paul #include <sys/kernel.h>
78c678bc4fSBill Paul #include <sys/socket.h>
79c678bc4fSBill Paul 
80c678bc4fSBill Paul #include <net/if.h>
81c678bc4fSBill Paul #include <net/if_arp.h>
82c678bc4fSBill Paul #include <net/ethernet.h>
83c678bc4fSBill Paul #include <net/if_dl.h>
84c678bc4fSBill Paul #include <net/if_media.h>
85c678bc4fSBill Paul 
86c678bc4fSBill Paul #include <net/bpf.h>
87c678bc4fSBill Paul 
88c678bc4fSBill Paul #include <vm/vm.h>              /* for vtophys */
89c678bc4fSBill Paul #include <vm/pmap.h>            /* for vtophys */
90c678bc4fSBill Paul #include <machine/clock.h>      /* for DELAY */
91c678bc4fSBill Paul #include <machine/bus_pio.h>
92c678bc4fSBill Paul #include <machine/bus_memio.h>
93c678bc4fSBill Paul #include <machine/bus.h>
94c678bc4fSBill Paul #include <machine/resource.h>
95c678bc4fSBill Paul #include <sys/bus.h>
96c678bc4fSBill Paul #include <sys/rman.h>
97c678bc4fSBill Paul 
98c678bc4fSBill Paul #include <dev/mii/mii.h>
99c678bc4fSBill Paul #include <dev/mii/miivar.h>
100c678bc4fSBill Paul 
101d2c5276dSWarner Losh #include <dev/pci/pcireg.h>
102d2c5276dSWarner Losh #include <dev/pci/pcivar.h>
103c678bc4fSBill Paul 
104c678bc4fSBill Paul #define LGE_USEIOSPACE
105c678bc4fSBill Paul 
106c678bc4fSBill Paul #include <dev/lge/if_lgereg.h>
107c678bc4fSBill Paul 
108c678bc4fSBill Paul /* "controller miibus0" required.  See GENERIC if you get errors here. */
109c678bc4fSBill Paul #include "miibus_if.h"
110c678bc4fSBill Paul 
111c678bc4fSBill Paul /*
112c678bc4fSBill Paul  * Various supported device vendors/types and their names.
113c678bc4fSBill Paul  */
114c678bc4fSBill Paul static struct lge_type lge_devs[] = {
115c678bc4fSBill Paul 	{ LGE_VENDORID, LGE_DEVICEID, "Level 1 Gigabit Ethernet" },
116c678bc4fSBill Paul 	{ 0, 0, NULL }
117c678bc4fSBill Paul };
118c678bc4fSBill Paul 
119e51a25f8SAlfred Perlstein static int lge_probe(device_t);
120e51a25f8SAlfred Perlstein static int lge_attach(device_t);
121e51a25f8SAlfred Perlstein static int lge_detach(device_t);
122c678bc4fSBill Paul 
123e51a25f8SAlfred Perlstein static int lge_alloc_jumbo_mem(struct lge_softc *);
124e51a25f8SAlfred Perlstein static void lge_free_jumbo_mem(struct lge_softc *);
125e51a25f8SAlfred Perlstein static void *lge_jalloc(struct lge_softc *);
126914596abSAlfred Perlstein static void lge_jfree(void *, void *);
127c678bc4fSBill Paul 
1289bee8811SAlfred Perlstein static int lge_newbuf(struct lge_softc *, struct lge_rx_desc *, struct mbuf *);
1299bee8811SAlfred Perlstein static int lge_encap(struct lge_softc *, struct mbuf *, u_int32_t *);
130e51a25f8SAlfred Perlstein static void lge_rxeof(struct lge_softc *, int);
131e51a25f8SAlfred Perlstein static void lge_rxeoc(struct lge_softc *);
132e51a25f8SAlfred Perlstein static void lge_txeof(struct lge_softc *);
133e51a25f8SAlfred Perlstein static void lge_intr(void *);
134e51a25f8SAlfred Perlstein static void lge_tick(void *);
135e51a25f8SAlfred Perlstein static void lge_start(struct ifnet *);
136e51a25f8SAlfred Perlstein static int lge_ioctl(struct ifnet *, u_long, caddr_t);
137e51a25f8SAlfred Perlstein static void lge_init(void *);
138e51a25f8SAlfred Perlstein static void lge_stop(struct lge_softc *);
139e51a25f8SAlfred Perlstein static void lge_watchdog(struct ifnet *);
140e51a25f8SAlfred Perlstein static void lge_shutdown(device_t);
141e51a25f8SAlfred Perlstein static int lge_ifmedia_upd(struct ifnet *);
142e51a25f8SAlfred Perlstein static void lge_ifmedia_sts(struct ifnet *, struct ifmediareq *);
143c678bc4fSBill Paul 
144e51a25f8SAlfred Perlstein static void lge_eeprom_getword(struct lge_softc *, int, u_int16_t *);
145e51a25f8SAlfred Perlstein static void lge_read_eeprom(struct lge_softc *, caddr_t, int, int, int);
146c678bc4fSBill Paul 
147e51a25f8SAlfred Perlstein static int lge_miibus_readreg(device_t, int, int);
148e51a25f8SAlfred Perlstein static int lge_miibus_writereg(device_t, int, int, int);
149e51a25f8SAlfred Perlstein static void lge_miibus_statchg(device_t);
150c678bc4fSBill Paul 
151e51a25f8SAlfred Perlstein static void lge_setmulti(struct lge_softc *);
152a55a017fSDavid E. O'Brien static uint32_t lge_mchash(const uint8_t *);
153e51a25f8SAlfred Perlstein static void lge_reset(struct lge_softc *);
154e51a25f8SAlfred Perlstein static int lge_list_rx_init(struct lge_softc *);
155e51a25f8SAlfred Perlstein static int lge_list_tx_init(struct lge_softc *);
156c678bc4fSBill Paul 
157c678bc4fSBill Paul #ifdef LGE_USEIOSPACE
158c678bc4fSBill Paul #define LGE_RES			SYS_RES_IOPORT
159c678bc4fSBill Paul #define LGE_RID			LGE_PCI_LOIO
160c678bc4fSBill Paul #else
161c678bc4fSBill Paul #define LGE_RES			SYS_RES_MEMORY
162c678bc4fSBill Paul #define LGE_RID			LGE_PCI_LOMEM
163c678bc4fSBill Paul #endif
164c678bc4fSBill Paul 
165c678bc4fSBill Paul static device_method_t lge_methods[] = {
166c678bc4fSBill Paul 	/* Device interface */
167c678bc4fSBill Paul 	DEVMETHOD(device_probe,		lge_probe),
168c678bc4fSBill Paul 	DEVMETHOD(device_attach,	lge_attach),
169c678bc4fSBill Paul 	DEVMETHOD(device_detach,	lge_detach),
170c678bc4fSBill Paul 	DEVMETHOD(device_shutdown,	lge_shutdown),
171c678bc4fSBill Paul 
172c678bc4fSBill Paul 	/* bus interface */
173c678bc4fSBill Paul 	DEVMETHOD(bus_print_child,	bus_generic_print_child),
174c678bc4fSBill Paul 	DEVMETHOD(bus_driver_added,	bus_generic_driver_added),
175c678bc4fSBill Paul 
176c678bc4fSBill Paul 	/* MII interface */
177c678bc4fSBill Paul 	DEVMETHOD(miibus_readreg,	lge_miibus_readreg),
178c678bc4fSBill Paul 	DEVMETHOD(miibus_writereg,	lge_miibus_writereg),
179c678bc4fSBill Paul 	DEVMETHOD(miibus_statchg,	lge_miibus_statchg),
180c678bc4fSBill Paul 
181c678bc4fSBill Paul 	{ 0, 0 }
182c678bc4fSBill Paul };
183c678bc4fSBill Paul 
184c678bc4fSBill Paul static driver_t lge_driver = {
185c678bc4fSBill Paul 	"lge",
186c678bc4fSBill Paul 	lge_methods,
187c678bc4fSBill Paul 	sizeof(struct lge_softc)
188c678bc4fSBill Paul };
189c678bc4fSBill Paul 
190c678bc4fSBill Paul static devclass_t lge_devclass;
191c678bc4fSBill Paul 
192f246e4a1SMatthew N. Dodd DRIVER_MODULE(lge, pci, lge_driver, lge_devclass, 0, 0);
193c678bc4fSBill Paul DRIVER_MODULE(miibus, lge, miibus_driver, miibus_devclass, 0, 0);
194f246e4a1SMatthew N. Dodd MODULE_DEPEND(lge, pci, 1, 1, 1);
195f246e4a1SMatthew N. Dodd MODULE_DEPEND(lge, ether, 1, 1, 1);
196f246e4a1SMatthew N. Dodd MODULE_DEPEND(lge, miibus, 1, 1, 1);
197c678bc4fSBill Paul 
198c678bc4fSBill Paul #define LGE_SETBIT(sc, reg, x)				\
199c678bc4fSBill Paul 	CSR_WRITE_4(sc, reg,				\
200c678bc4fSBill Paul 		CSR_READ_4(sc, reg) | (x))
201c678bc4fSBill Paul 
202c678bc4fSBill Paul #define LGE_CLRBIT(sc, reg, x)				\
203c678bc4fSBill Paul 	CSR_WRITE_4(sc, reg,				\
204c678bc4fSBill Paul 		CSR_READ_4(sc, reg) & ~(x))
205c678bc4fSBill Paul 
206c678bc4fSBill Paul #define SIO_SET(x)					\
207c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_MEAR, CSR_READ_4(sc, LGE_MEAR) | x)
208c678bc4fSBill Paul 
209c678bc4fSBill Paul #define SIO_CLR(x)					\
210c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_MEAR, CSR_READ_4(sc, LGE_MEAR) & ~x)
211c678bc4fSBill Paul 
212c678bc4fSBill Paul /*
213c678bc4fSBill Paul  * Read a word of data stored in the EEPROM at address 'addr.'
214c678bc4fSBill Paul  */
2159bee8811SAlfred Perlstein static void
2169bee8811SAlfred Perlstein lge_eeprom_getword(sc, addr, dest)
217c678bc4fSBill Paul 	struct lge_softc	*sc;
218c678bc4fSBill Paul 	int			addr;
219c678bc4fSBill Paul 	u_int16_t		*dest;
220c678bc4fSBill Paul {
221c678bc4fSBill Paul 	register int		i;
222c678bc4fSBill Paul 	u_int32_t		val;
223c678bc4fSBill Paul 
224c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_EECTL, LGE_EECTL_CMD_READ|
225c678bc4fSBill Paul 	    LGE_EECTL_SINGLEACCESS|((addr >> 1) << 8));
226c678bc4fSBill Paul 
227c678bc4fSBill Paul 	for (i = 0; i < LGE_TIMEOUT; i++)
228c678bc4fSBill Paul 		if (!(CSR_READ_4(sc, LGE_EECTL) & LGE_EECTL_CMD_READ))
229c678bc4fSBill Paul 			break;
230c678bc4fSBill Paul 
231c678bc4fSBill Paul 	if (i == LGE_TIMEOUT) {
232c678bc4fSBill Paul 		printf("lge%d: EEPROM read timed out\n", sc->lge_unit);
233c678bc4fSBill Paul 		return;
234c678bc4fSBill Paul 	}
235c678bc4fSBill Paul 
236c678bc4fSBill Paul 	val = CSR_READ_4(sc, LGE_EEDATA);
237c678bc4fSBill Paul 
238c678bc4fSBill Paul 	if (addr & 1)
239c678bc4fSBill Paul 		*dest = (val >> 16) & 0xFFFF;
240c678bc4fSBill Paul 	else
241c678bc4fSBill Paul 		*dest = val & 0xFFFF;
242c678bc4fSBill Paul 
243c678bc4fSBill Paul 	return;
244c678bc4fSBill Paul }
245c678bc4fSBill Paul 
246c678bc4fSBill Paul /*
247c678bc4fSBill Paul  * Read a sequence of words from the EEPROM.
248c678bc4fSBill Paul  */
2499bee8811SAlfred Perlstein static void
2509bee8811SAlfred Perlstein lge_read_eeprom(sc, dest, off, cnt, swap)
251c678bc4fSBill Paul 	struct lge_softc	*sc;
252c678bc4fSBill Paul 	caddr_t			dest;
253c678bc4fSBill Paul 	int			off;
254c678bc4fSBill Paul 	int			cnt;
255c678bc4fSBill Paul 	int			swap;
256c678bc4fSBill Paul {
257c678bc4fSBill Paul 	int			i;
258c678bc4fSBill Paul 	u_int16_t		word = 0, *ptr;
259c678bc4fSBill Paul 
260c678bc4fSBill Paul 	for (i = 0; i < cnt; i++) {
261c678bc4fSBill Paul 		lge_eeprom_getword(sc, off + i, &word);
262c678bc4fSBill Paul 		ptr = (u_int16_t *)(dest + (i * 2));
263c678bc4fSBill Paul 		if (swap)
264c678bc4fSBill Paul 			*ptr = ntohs(word);
265c678bc4fSBill Paul 		else
266c678bc4fSBill Paul 			*ptr = word;
267c678bc4fSBill Paul 	}
268c678bc4fSBill Paul 
269c678bc4fSBill Paul 	return;
270c678bc4fSBill Paul }
271c678bc4fSBill Paul 
2729bee8811SAlfred Perlstein static int
2739bee8811SAlfred Perlstein lge_miibus_readreg(dev, phy, reg)
274c678bc4fSBill Paul 	device_t		dev;
275c678bc4fSBill Paul 	int			phy, reg;
276c678bc4fSBill Paul {
277c678bc4fSBill Paul 	struct lge_softc	*sc;
278c678bc4fSBill Paul 	int			i;
279c678bc4fSBill Paul 
280c678bc4fSBill Paul 	sc = device_get_softc(dev);
281c678bc4fSBill Paul 
282c678bc4fSBill Paul 	/*
283c678bc4fSBill Paul 	 * If we have a non-PCS PHY, pretend that the internal
284c678bc4fSBill Paul 	 * autoneg stuff at PHY address 0 isn't there so that
285c678bc4fSBill Paul 	 * the miibus code will find only the GMII PHY.
286c678bc4fSBill Paul 	 */
287c678bc4fSBill Paul 	if (sc->lge_pcs == 0 && phy == 0)
288c678bc4fSBill Paul 		return(0);
289c678bc4fSBill Paul 
290c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_GMIICTL, (phy << 8) | reg | LGE_GMIICMD_READ);
291c678bc4fSBill Paul 
292c678bc4fSBill Paul 	for (i = 0; i < LGE_TIMEOUT; i++)
293c678bc4fSBill Paul 		if (!(CSR_READ_4(sc, LGE_GMIICTL) & LGE_GMIICTL_CMDBUSY))
294c678bc4fSBill Paul 			break;
295c678bc4fSBill Paul 
296c678bc4fSBill Paul 	if (i == LGE_TIMEOUT) {
297c678bc4fSBill Paul 		printf("lge%d: PHY read timed out\n", sc->lge_unit);
298c678bc4fSBill Paul 		return(0);
299c678bc4fSBill Paul 	}
300c678bc4fSBill Paul 
301c678bc4fSBill Paul 	return(CSR_READ_4(sc, LGE_GMIICTL) >> 16);
302c678bc4fSBill Paul }
303c678bc4fSBill Paul 
3049bee8811SAlfred Perlstein static int
3059bee8811SAlfred Perlstein lge_miibus_writereg(dev, phy, reg, data)
306c678bc4fSBill Paul 	device_t		dev;
307c678bc4fSBill Paul 	int			phy, reg, data;
308c678bc4fSBill Paul {
309c678bc4fSBill Paul 	struct lge_softc	*sc;
310c678bc4fSBill Paul 	int			i;
311c678bc4fSBill Paul 
312c678bc4fSBill Paul 	sc = device_get_softc(dev);
313c678bc4fSBill Paul 
314c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_GMIICTL,
315c678bc4fSBill Paul 	    (data << 16) | (phy << 8) | reg | LGE_GMIICMD_WRITE);
316c678bc4fSBill Paul 
317c678bc4fSBill Paul 	for (i = 0; i < LGE_TIMEOUT; i++)
318c678bc4fSBill Paul 		if (!(CSR_READ_4(sc, LGE_GMIICTL) & LGE_GMIICTL_CMDBUSY))
319c678bc4fSBill Paul 			break;
320c678bc4fSBill Paul 
321c678bc4fSBill Paul 	if (i == LGE_TIMEOUT) {
322c678bc4fSBill Paul 		printf("lge%d: PHY write timed out\n", sc->lge_unit);
323c678bc4fSBill Paul 		return(0);
324c678bc4fSBill Paul 	}
325c678bc4fSBill Paul 
326c678bc4fSBill Paul 	return(0);
327c678bc4fSBill Paul }
328c678bc4fSBill Paul 
3299bee8811SAlfred Perlstein static void
3309bee8811SAlfred Perlstein lge_miibus_statchg(dev)
331c678bc4fSBill Paul 	device_t		dev;
332c678bc4fSBill Paul {
333c678bc4fSBill Paul 	struct lge_softc	*sc;
334c678bc4fSBill Paul 	struct mii_data		*mii;
335c678bc4fSBill Paul 
336c678bc4fSBill Paul 	sc = device_get_softc(dev);
337c678bc4fSBill Paul 	mii = device_get_softc(sc->lge_miibus);
338c678bc4fSBill Paul 
339c678bc4fSBill Paul 	LGE_CLRBIT(sc, LGE_GMIIMODE, LGE_GMIIMODE_SPEED);
340c678bc4fSBill Paul 	switch (IFM_SUBTYPE(mii->mii_media_active)) {
341b418ad5cSPoul-Henning Kamp 	case IFM_1000_T:
342c678bc4fSBill Paul 	case IFM_1000_SX:
343c678bc4fSBill Paul 		LGE_SETBIT(sc, LGE_GMIIMODE, LGE_SPEED_1000);
344c678bc4fSBill Paul 		break;
345c678bc4fSBill Paul 	case IFM_100_TX:
346c678bc4fSBill Paul 		LGE_SETBIT(sc, LGE_GMIIMODE, LGE_SPEED_100);
347c678bc4fSBill Paul 		break;
348c678bc4fSBill Paul 	case IFM_10_T:
349c678bc4fSBill Paul 		LGE_SETBIT(sc, LGE_GMIIMODE, LGE_SPEED_10);
350c678bc4fSBill Paul 		break;
351c678bc4fSBill Paul 	default:
352c678bc4fSBill Paul 		/*
353c678bc4fSBill Paul 		 * Choose something, even if it's wrong. Clearing
354c678bc4fSBill Paul 		 * all the bits will hose autoneg on the internal
355c678bc4fSBill Paul 		 * PHY.
356c678bc4fSBill Paul 		 */
357c678bc4fSBill Paul 		LGE_SETBIT(sc, LGE_GMIIMODE, LGE_SPEED_1000);
358c678bc4fSBill Paul 		break;
359c678bc4fSBill Paul 	}
360c678bc4fSBill Paul 
361c678bc4fSBill Paul 	if ((mii->mii_media_active & IFM_GMASK) == IFM_FDX) {
362c678bc4fSBill Paul 		LGE_SETBIT(sc, LGE_GMIIMODE, LGE_GMIIMODE_FDX);
363c678bc4fSBill Paul 	} else {
364c678bc4fSBill Paul 		LGE_CLRBIT(sc, LGE_GMIIMODE, LGE_GMIIMODE_FDX);
365c678bc4fSBill Paul 	}
366c678bc4fSBill Paul 
367c678bc4fSBill Paul 	return;
368c678bc4fSBill Paul }
369c678bc4fSBill Paul 
370a55a017fSDavid E. O'Brien static uint32_t
371aa825502SDavid E. O'Brien lge_mchash(addr)
372a55a017fSDavid E. O'Brien 	const uint8_t *addr;
373c678bc4fSBill Paul {
374a55a017fSDavid E. O'Brien 	uint32_t crc, carry;
375aa825502SDavid E. O'Brien 	int idx, bit;
376a55a017fSDavid E. O'Brien 	uint8_t data;
377c678bc4fSBill Paul 
378c678bc4fSBill Paul 	/* Compute CRC for the address value. */
379c678bc4fSBill Paul 	crc = 0xFFFFFFFF; /* initial value */
380c678bc4fSBill Paul 
381aa825502SDavid E. O'Brien 	for (idx = 0; idx < 6; idx++) {
382aa825502SDavid E. O'Brien 		for (data = *addr++, bit = 0; bit < 8; bit++, data >>= 1) {
383aa825502SDavid E. O'Brien 			carry = ((crc & 0x80000000) ? 1 : 0) ^ (data & 0x01);
384c678bc4fSBill Paul 			crc <<= 1;
385c678bc4fSBill Paul 			if (carry)
386c678bc4fSBill Paul 				crc = (crc ^ 0x04c11db6) | carry;
387c678bc4fSBill Paul 		}
388c678bc4fSBill Paul 	}
389c678bc4fSBill Paul 
390c678bc4fSBill Paul 	/*
391c678bc4fSBill Paul 	 * return the filter bit position
392c678bc4fSBill Paul 	 */
393c678bc4fSBill Paul 	return((crc >> 26) & 0x0000003F);
394c678bc4fSBill Paul }
395c678bc4fSBill Paul 
3969bee8811SAlfred Perlstein static void
3979bee8811SAlfred Perlstein lge_setmulti(sc)
398c678bc4fSBill Paul 	struct lge_softc	*sc;
399c678bc4fSBill Paul {
400c678bc4fSBill Paul 	struct ifnet		*ifp;
401c678bc4fSBill Paul 	struct ifmultiaddr	*ifma;
402c678bc4fSBill Paul 	u_int32_t		h = 0, hashes[2] = { 0, 0 };
403c678bc4fSBill Paul 
404c678bc4fSBill Paul 	ifp = &sc->arpcom.ac_if;
405c678bc4fSBill Paul 
406c678bc4fSBill Paul 	/* Make sure multicast hash table is enabled. */
407c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_MODE1, LGE_MODE1_SETRST_CTL1|LGE_MODE1_RX_MCAST);
408c678bc4fSBill Paul 
409c678bc4fSBill Paul 	if (ifp->if_flags & IFF_ALLMULTI || ifp->if_flags & IFF_PROMISC) {
410c678bc4fSBill Paul 		CSR_WRITE_4(sc, LGE_MAR0, 0xFFFFFFFF);
411c678bc4fSBill Paul 		CSR_WRITE_4(sc, LGE_MAR1, 0xFFFFFFFF);
412c678bc4fSBill Paul 		return;
413c678bc4fSBill Paul 	}
414c678bc4fSBill Paul 
415c678bc4fSBill Paul 	/* first, zot all the existing hash bits */
416c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_MAR0, 0);
417c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_MAR1, 0);
418c678bc4fSBill Paul 
419c678bc4fSBill Paul 	/* now program new ones */
420c678bc4fSBill Paul 	TAILQ_FOREACH(ifma, &ifp->if_multiaddrs, ifma_link) {
421c678bc4fSBill Paul 		if (ifma->ifma_addr->sa_family != AF_LINK)
422c678bc4fSBill Paul 			continue;
423aa825502SDavid E. O'Brien 		h = lge_mchash(LLADDR((struct sockaddr_dl *)ifma->ifma_addr));
424c678bc4fSBill Paul 		if (h < 32)
425c678bc4fSBill Paul 			hashes[0] |= (1 << h);
426c678bc4fSBill Paul 		else
427c678bc4fSBill Paul 			hashes[1] |= (1 << (h - 32));
428c678bc4fSBill Paul 	}
429c678bc4fSBill Paul 
430c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_MAR0, hashes[0]);
431c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_MAR1, hashes[1]);
432c678bc4fSBill Paul 
433c678bc4fSBill Paul 	return;
434c678bc4fSBill Paul }
435c678bc4fSBill Paul 
4369bee8811SAlfred Perlstein static void
4379bee8811SAlfred Perlstein lge_reset(sc)
438c678bc4fSBill Paul 	struct lge_softc	*sc;
439c678bc4fSBill Paul {
440c678bc4fSBill Paul 	register int		i;
441c678bc4fSBill Paul 
442c678bc4fSBill Paul 	LGE_SETBIT(sc, LGE_MODE1, LGE_MODE1_SETRST_CTL0|LGE_MODE1_SOFTRST);
443c678bc4fSBill Paul 
444c678bc4fSBill Paul 	for (i = 0; i < LGE_TIMEOUT; i++) {
445c678bc4fSBill Paul 		if (!(CSR_READ_4(sc, LGE_MODE1) & LGE_MODE1_SOFTRST))
446c678bc4fSBill Paul 			break;
447c678bc4fSBill Paul 	}
448c678bc4fSBill Paul 
449c678bc4fSBill Paul 	if (i == LGE_TIMEOUT)
450c678bc4fSBill Paul 		printf("lge%d: reset never completed\n", sc->lge_unit);
451c678bc4fSBill Paul 
452c678bc4fSBill Paul 	/* Wait a little while for the chip to get its brains in order. */
453c678bc4fSBill Paul 	DELAY(1000);
454c678bc4fSBill Paul 
455c678bc4fSBill Paul         return;
456c678bc4fSBill Paul }
457c678bc4fSBill Paul 
458c678bc4fSBill Paul /*
459c678bc4fSBill Paul  * Probe for a Level 1 chip. Check the PCI vendor and device
460c678bc4fSBill Paul  * IDs against our list and return a device name if we find a match.
461c678bc4fSBill Paul  */
4629bee8811SAlfred Perlstein static int
4639bee8811SAlfred Perlstein lge_probe(dev)
464c678bc4fSBill Paul 	device_t		dev;
465c678bc4fSBill Paul {
466c678bc4fSBill Paul 	struct lge_type		*t;
467c678bc4fSBill Paul 
468c678bc4fSBill Paul 	t = lge_devs;
469c678bc4fSBill Paul 
470c678bc4fSBill Paul 	while(t->lge_name != NULL) {
471c678bc4fSBill Paul 		if ((pci_get_vendor(dev) == t->lge_vid) &&
472c678bc4fSBill Paul 		    (pci_get_device(dev) == t->lge_did)) {
473c678bc4fSBill Paul 			device_set_desc(dev, t->lge_name);
474c678bc4fSBill Paul 			return(0);
475c678bc4fSBill Paul 		}
476c678bc4fSBill Paul 		t++;
477c678bc4fSBill Paul 	}
478c678bc4fSBill Paul 
479c678bc4fSBill Paul 	return(ENXIO);
480c678bc4fSBill Paul }
481c678bc4fSBill Paul 
482c678bc4fSBill Paul /*
483c678bc4fSBill Paul  * Attach the interface. Allocate softc structures, do ifmedia
484c678bc4fSBill Paul  * setup and ethernet/BPF attach.
485c678bc4fSBill Paul  */
4869bee8811SAlfred Perlstein static int
4879bee8811SAlfred Perlstein lge_attach(dev)
488c678bc4fSBill Paul 	device_t		dev;
489c678bc4fSBill Paul {
490c678bc4fSBill Paul 	int			s;
491c678bc4fSBill Paul 	u_char			eaddr[ETHER_ADDR_LEN];
492c678bc4fSBill Paul 	struct lge_softc	*sc;
493c678bc4fSBill Paul 	struct ifnet		*ifp;
494c678bc4fSBill Paul 	int			unit, error = 0, rid;
495c678bc4fSBill Paul 
496c678bc4fSBill Paul 	s = splimp();
497c678bc4fSBill Paul 
498c678bc4fSBill Paul 	sc = device_get_softc(dev);
499c678bc4fSBill Paul 	unit = device_get_unit(dev);
500c678bc4fSBill Paul 	bzero(sc, sizeof(struct lge_softc));
501fa4b32faSWarner Losh #ifndef BURN_BRIDGES
502c678bc4fSBill Paul 	/*
503c678bc4fSBill Paul 	 * Handle power management nonsense.
504c678bc4fSBill Paul 	 */
505c678bc4fSBill Paul 	if (pci_get_powerstate(dev) != PCI_POWERSTATE_D0) {
506c678bc4fSBill Paul 		u_int32_t		iobase, membase, irq;
507c678bc4fSBill Paul 
508c678bc4fSBill Paul 		/* Save important PCI config data. */
509c678bc4fSBill Paul 		iobase = pci_read_config(dev, LGE_PCI_LOIO, 4);
510c678bc4fSBill Paul 		membase = pci_read_config(dev, LGE_PCI_LOMEM, 4);
511c678bc4fSBill Paul 		irq = pci_read_config(dev, LGE_PCI_INTLINE, 4);
512c678bc4fSBill Paul 
513c678bc4fSBill Paul 		/* Reset the power state. */
514c678bc4fSBill Paul 		printf("lge%d: chip is in D%d power mode "
515c678bc4fSBill Paul 		    "-- setting to D0\n", unit,
516c678bc4fSBill Paul 		    pci_get_powerstate(dev));
517c678bc4fSBill Paul 		pci_set_powerstate(dev, PCI_POWERSTATE_D0);
518c678bc4fSBill Paul 
519c678bc4fSBill Paul 		/* Restore PCI config data. */
520c678bc4fSBill Paul 		pci_write_config(dev, LGE_PCI_LOIO, iobase, 4);
521c678bc4fSBill Paul 		pci_write_config(dev, LGE_PCI_LOMEM, membase, 4);
522c678bc4fSBill Paul 		pci_write_config(dev, LGE_PCI_INTLINE, irq, 4);
523c678bc4fSBill Paul 	}
524fa4b32faSWarner Losh #endif
525c678bc4fSBill Paul 	/*
526c678bc4fSBill Paul 	 * Map control/status registers.
527c678bc4fSBill Paul 	 */
528c678bc4fSBill Paul 	pci_enable_busmaster(dev);
529c678bc4fSBill Paul 
530c678bc4fSBill Paul 	rid = LGE_RID;
5315f96beb9SNate Lawson 	sc->lge_res = bus_alloc_resource_any(dev, LGE_RES, &rid, RF_ACTIVE);
532c678bc4fSBill Paul 
533c678bc4fSBill Paul 	if (sc->lge_res == NULL) {
534c678bc4fSBill Paul 		printf("lge%d: couldn't map ports/memory\n", unit);
535c678bc4fSBill Paul 		error = ENXIO;
536c678bc4fSBill Paul 		goto fail;
537c678bc4fSBill Paul 	}
538c678bc4fSBill Paul 
539c678bc4fSBill Paul 	sc->lge_btag = rman_get_bustag(sc->lge_res);
540c678bc4fSBill Paul 	sc->lge_bhandle = rman_get_bushandle(sc->lge_res);
541c678bc4fSBill Paul 
542c678bc4fSBill Paul 	/* Allocate interrupt */
543c678bc4fSBill Paul 	rid = 0;
5445f96beb9SNate Lawson 	sc->lge_irq = bus_alloc_resource_any(dev, SYS_RES_IRQ, &rid,
545c678bc4fSBill Paul 	    RF_SHAREABLE | RF_ACTIVE);
546c678bc4fSBill Paul 
547c678bc4fSBill Paul 	if (sc->lge_irq == NULL) {
548c678bc4fSBill Paul 		printf("lge%d: couldn't map interrupt\n", unit);
549c678bc4fSBill Paul 		bus_release_resource(dev, LGE_RES, LGE_RID, sc->lge_res);
550c678bc4fSBill Paul 		error = ENXIO;
551c678bc4fSBill Paul 		goto fail;
552c678bc4fSBill Paul 	}
553c678bc4fSBill Paul 
554c678bc4fSBill Paul 	error = bus_setup_intr(dev, sc->lge_irq, INTR_TYPE_NET,
555c678bc4fSBill Paul 	    lge_intr, sc, &sc->lge_intrhand);
556c678bc4fSBill Paul 
557c678bc4fSBill Paul 	if (error) {
558c678bc4fSBill Paul 		bus_release_resource(dev, SYS_RES_IRQ, 0, sc->lge_irq);
559c678bc4fSBill Paul 		bus_release_resource(dev, LGE_RES, LGE_RID, sc->lge_res);
560c678bc4fSBill Paul 		printf("lge%d: couldn't set up irq\n", unit);
561c678bc4fSBill Paul 		goto fail;
562c678bc4fSBill Paul 	}
563c678bc4fSBill Paul 
564c678bc4fSBill Paul 	/* Reset the adapter. */
565c678bc4fSBill Paul 	lge_reset(sc);
566c678bc4fSBill Paul 
567c678bc4fSBill Paul 	/*
568c678bc4fSBill Paul 	 * Get station address from the EEPROM.
569c678bc4fSBill Paul 	 */
570c678bc4fSBill Paul 	lge_read_eeprom(sc, (caddr_t)&eaddr[0], LGE_EE_NODEADDR_0, 1, 0);
571c678bc4fSBill Paul 	lge_read_eeprom(sc, (caddr_t)&eaddr[2], LGE_EE_NODEADDR_1, 1, 0);
572c678bc4fSBill Paul 	lge_read_eeprom(sc, (caddr_t)&eaddr[4], LGE_EE_NODEADDR_2, 1, 0);
573c678bc4fSBill Paul 
574c678bc4fSBill Paul 	sc->lge_unit = unit;
575c678bc4fSBill Paul 	callout_handle_init(&sc->lge_stat_ch);
576c678bc4fSBill Paul 	bcopy(eaddr, (char *)&sc->arpcom.ac_enaddr, ETHER_ADDR_LEN);
577c678bc4fSBill Paul 
578c678bc4fSBill Paul 	sc->lge_ldata = contigmalloc(sizeof(struct lge_list_data), M_DEVBUF,
579c678bc4fSBill Paul 	    M_NOWAIT, 0, 0xffffffff, PAGE_SIZE, 0);
580c678bc4fSBill Paul 
581c678bc4fSBill Paul 	if (sc->lge_ldata == NULL) {
582c678bc4fSBill Paul 		printf("lge%d: no memory for list buffers!\n", unit);
583c678bc4fSBill Paul 		bus_teardown_intr(dev, sc->lge_irq, sc->lge_intrhand);
584c678bc4fSBill Paul 		bus_release_resource(dev, SYS_RES_IRQ, 0, sc->lge_irq);
585c678bc4fSBill Paul 		bus_release_resource(dev, LGE_RES, LGE_RID, sc->lge_res);
586c678bc4fSBill Paul 		error = ENXIO;
587c678bc4fSBill Paul 		goto fail;
588c678bc4fSBill Paul 	}
589c678bc4fSBill Paul 	bzero(sc->lge_ldata, sizeof(struct lge_list_data));
590c678bc4fSBill Paul 
591c678bc4fSBill Paul 	/* Try to allocate memory for jumbo buffers. */
592c678bc4fSBill Paul 	if (lge_alloc_jumbo_mem(sc)) {
593c678bc4fSBill Paul 		printf("lge%d: jumbo buffer allocation failed\n",
594c678bc4fSBill Paul                     sc->lge_unit);
595c678bc4fSBill Paul 		contigfree(sc->lge_ldata,
596c678bc4fSBill Paul 		    sizeof(struct lge_list_data), M_DEVBUF);
597c678bc4fSBill Paul 		bus_teardown_intr(dev, sc->lge_irq, sc->lge_intrhand);
598c678bc4fSBill Paul 		bus_release_resource(dev, SYS_RES_IRQ, 0, sc->lge_irq);
599c678bc4fSBill Paul 		bus_release_resource(dev, LGE_RES, LGE_RID, sc->lge_res);
600c678bc4fSBill Paul 		error = ENXIO;
601c678bc4fSBill Paul 		goto fail;
602c678bc4fSBill Paul 	}
603c678bc4fSBill Paul 
604c678bc4fSBill Paul 	ifp = &sc->arpcom.ac_if;
605c678bc4fSBill Paul 	ifp->if_softc = sc;
6069bf40edeSBrooks Davis 	if_initname(ifp, device_get_name(dev), device_get_unit(dev));
607c678bc4fSBill Paul 	ifp->if_mtu = ETHERMTU;
608c678bc4fSBill Paul 	ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
609c678bc4fSBill Paul 	ifp->if_ioctl = lge_ioctl;
610c678bc4fSBill Paul 	ifp->if_output = ether_output;
611c678bc4fSBill Paul 	ifp->if_start = lge_start;
612c678bc4fSBill Paul 	ifp->if_watchdog = lge_watchdog;
613c678bc4fSBill Paul 	ifp->if_init = lge_init;
614c678bc4fSBill Paul 	ifp->if_baudrate = 1000000000;
615c678bc4fSBill Paul 	ifp->if_snd.ifq_maxlen = LGE_TX_LIST_CNT - 1;
616ed63a3c7SJonathan Lemon 	ifp->if_capabilities = IFCAP_RXCSUM;
617ed63a3c7SJonathan Lemon 	ifp->if_capenable = ifp->if_capabilities;
618c678bc4fSBill Paul 
619c678bc4fSBill Paul 	if (CSR_READ_4(sc, LGE_GMIIMODE) & LGE_GMIIMODE_PCSENH)
620c678bc4fSBill Paul 		sc->lge_pcs = 1;
621c678bc4fSBill Paul 	else
622c678bc4fSBill Paul 		sc->lge_pcs = 0;
623c678bc4fSBill Paul 
624c678bc4fSBill Paul 	/*
625c678bc4fSBill Paul 	 * Do MII setup.
626c678bc4fSBill Paul 	 */
627c678bc4fSBill Paul 	if (mii_phy_probe(dev, &sc->lge_miibus,
628c678bc4fSBill Paul 	    lge_ifmedia_upd, lge_ifmedia_sts)) {
629c678bc4fSBill Paul 		printf("lge%d: MII without any PHY!\n", sc->lge_unit);
630c678bc4fSBill Paul 		contigfree(sc->lge_ldata,
631c678bc4fSBill Paul 		    sizeof(struct lge_list_data), M_DEVBUF);
632c678bc4fSBill Paul 		lge_free_jumbo_mem(sc);
633c678bc4fSBill Paul 		bus_teardown_intr(dev, sc->lge_irq, sc->lge_intrhand);
634c678bc4fSBill Paul 		bus_release_resource(dev, SYS_RES_IRQ, 0, sc->lge_irq);
635c678bc4fSBill Paul 		bus_release_resource(dev, LGE_RES, LGE_RID, sc->lge_res);
636c678bc4fSBill Paul 		error = ENXIO;
637c678bc4fSBill Paul 		goto fail;
638c678bc4fSBill Paul 	}
639c678bc4fSBill Paul 
640c678bc4fSBill Paul 	/*
641c678bc4fSBill Paul 	 * Call MI attach routine.
642c678bc4fSBill Paul 	 */
643673d9191SSam Leffler 	ether_ifattach(ifp, eaddr);
644c678bc4fSBill Paul 	callout_handle_init(&sc->lge_stat_ch);
645c678bc4fSBill Paul 
646c678bc4fSBill Paul fail:
647c678bc4fSBill Paul 	splx(s);
648c678bc4fSBill Paul 	return(error);
649c678bc4fSBill Paul }
650c678bc4fSBill Paul 
6519bee8811SAlfred Perlstein static int
6529bee8811SAlfred Perlstein lge_detach(dev)
653c678bc4fSBill Paul 	device_t		dev;
654c678bc4fSBill Paul {
655c678bc4fSBill Paul 	struct lge_softc	*sc;
656c678bc4fSBill Paul 	struct ifnet		*ifp;
657c678bc4fSBill Paul 	int			s;
658c678bc4fSBill Paul 
659c678bc4fSBill Paul 	s = splimp();
660c678bc4fSBill Paul 
661c678bc4fSBill Paul 	sc = device_get_softc(dev);
662c678bc4fSBill Paul 	ifp = &sc->arpcom.ac_if;
663c678bc4fSBill Paul 
664c678bc4fSBill Paul 	lge_reset(sc);
665c678bc4fSBill Paul 	lge_stop(sc);
666673d9191SSam Leffler 	ether_ifdetach(ifp);
667c678bc4fSBill Paul 
668c678bc4fSBill Paul 	bus_generic_detach(dev);
669c678bc4fSBill Paul 	device_delete_child(dev, sc->lge_miibus);
670c678bc4fSBill Paul 
671c678bc4fSBill Paul 	bus_teardown_intr(dev, sc->lge_irq, sc->lge_intrhand);
672c678bc4fSBill Paul 	bus_release_resource(dev, SYS_RES_IRQ, 0, sc->lge_irq);
673c678bc4fSBill Paul 	bus_release_resource(dev, LGE_RES, LGE_RID, sc->lge_res);
674c678bc4fSBill Paul 
675c678bc4fSBill Paul 	contigfree(sc->lge_ldata, sizeof(struct lge_list_data), M_DEVBUF);
676c678bc4fSBill Paul 	lge_free_jumbo_mem(sc);
677c678bc4fSBill Paul 
678c678bc4fSBill Paul 	splx(s);
679c678bc4fSBill Paul 
680c678bc4fSBill Paul 	return(0);
681c678bc4fSBill Paul }
682c678bc4fSBill Paul 
683c678bc4fSBill Paul /*
684c678bc4fSBill Paul  * Initialize the transmit descriptors.
685c678bc4fSBill Paul  */
6869bee8811SAlfred Perlstein static int
6879bee8811SAlfred Perlstein lge_list_tx_init(sc)
688c678bc4fSBill Paul 	struct lge_softc	*sc;
689c678bc4fSBill Paul {
690c678bc4fSBill Paul 	struct lge_list_data	*ld;
691c678bc4fSBill Paul 	struct lge_ring_data	*cd;
692c678bc4fSBill Paul 	int			i;
693c678bc4fSBill Paul 
694c678bc4fSBill Paul 	cd = &sc->lge_cdata;
695c678bc4fSBill Paul 	ld = sc->lge_ldata;
696c678bc4fSBill Paul 	for (i = 0; i < LGE_TX_LIST_CNT; i++) {
697c678bc4fSBill Paul 		ld->lge_tx_list[i].lge_mbuf = NULL;
698c678bc4fSBill Paul 		ld->lge_tx_list[i].lge_ctl = 0;
699c678bc4fSBill Paul 	}
700c678bc4fSBill Paul 
701c678bc4fSBill Paul 	cd->lge_tx_prod = cd->lge_tx_cons = 0;
702c678bc4fSBill Paul 
703c678bc4fSBill Paul 	return(0);
704c678bc4fSBill Paul }
705c678bc4fSBill Paul 
706c678bc4fSBill Paul 
707c678bc4fSBill Paul /*
708c678bc4fSBill Paul  * Initialize the RX descriptors and allocate mbufs for them. Note that
709c678bc4fSBill Paul  * we arralge the descriptors in a closed ring, so that the last descriptor
710c678bc4fSBill Paul  * points back to the first.
711c678bc4fSBill Paul  */
7129bee8811SAlfred Perlstein static int
7139bee8811SAlfred Perlstein lge_list_rx_init(sc)
714c678bc4fSBill Paul 	struct lge_softc	*sc;
715c678bc4fSBill Paul {
716c678bc4fSBill Paul 	struct lge_list_data	*ld;
717c678bc4fSBill Paul 	struct lge_ring_data	*cd;
718c678bc4fSBill Paul 	int			i;
719c678bc4fSBill Paul 
720c678bc4fSBill Paul 	ld = sc->lge_ldata;
721c678bc4fSBill Paul 	cd = &sc->lge_cdata;
722c678bc4fSBill Paul 
723c678bc4fSBill Paul 	cd->lge_rx_prod = cd->lge_rx_cons = 0;
724c678bc4fSBill Paul 
725c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_RXDESC_ADDR_HI, 0);
726c678bc4fSBill Paul 
727c678bc4fSBill Paul 	for (i = 0; i < LGE_RX_LIST_CNT; i++) {
728c678bc4fSBill Paul 		if (CSR_READ_1(sc, LGE_RXCMDFREE_8BIT) == 0)
729c678bc4fSBill Paul 			break;
730c678bc4fSBill Paul 		if (lge_newbuf(sc, &ld->lge_rx_list[i], NULL) == ENOBUFS)
731c678bc4fSBill Paul 			return(ENOBUFS);
732c678bc4fSBill Paul 	}
733c678bc4fSBill Paul 
734c678bc4fSBill Paul 	/* Clear possible 'rx command queue empty' interrupt. */
735c678bc4fSBill Paul 	CSR_READ_4(sc, LGE_ISR);
736c678bc4fSBill Paul 
737c678bc4fSBill Paul 	return(0);
738c678bc4fSBill Paul }
739c678bc4fSBill Paul 
740c678bc4fSBill Paul /*
741c678bc4fSBill Paul  * Initialize an RX descriptor and attach an MBUF cluster.
742c678bc4fSBill Paul  */
7439bee8811SAlfred Perlstein static int
7449bee8811SAlfred Perlstein lge_newbuf(sc, c, m)
745c678bc4fSBill Paul 	struct lge_softc	*sc;
746c678bc4fSBill Paul 	struct lge_rx_desc	*c;
747c678bc4fSBill Paul 	struct mbuf		*m;
748c678bc4fSBill Paul {
749c678bc4fSBill Paul 	struct mbuf		*m_new = NULL;
750c678bc4fSBill Paul 	caddr_t			*buf = NULL;
751c678bc4fSBill Paul 
752c678bc4fSBill Paul 	if (m == NULL) {
753a163d034SWarner Losh 		MGETHDR(m_new, M_DONTWAIT, MT_DATA);
754c678bc4fSBill Paul 		if (m_new == NULL) {
755c678bc4fSBill Paul 			printf("lge%d: no memory for rx list "
756c678bc4fSBill Paul 			    "-- packet dropped!\n", sc->lge_unit);
757c678bc4fSBill Paul 			return(ENOBUFS);
758c678bc4fSBill Paul 		}
759c678bc4fSBill Paul 
760c678bc4fSBill Paul 		/* Allocate the jumbo buffer */
761c678bc4fSBill Paul 		buf = lge_jalloc(sc);
762c678bc4fSBill Paul 		if (buf == NULL) {
763c678bc4fSBill Paul #ifdef LGE_VERBOSE
764c678bc4fSBill Paul 			printf("lge%d: jumbo allocation failed "
765c678bc4fSBill Paul 			    "-- packet dropped!\n", sc->lge_unit);
766c678bc4fSBill Paul #endif
767c678bc4fSBill Paul 			m_freem(m_new);
768c678bc4fSBill Paul 			return(ENOBUFS);
769c678bc4fSBill Paul 		}
770c678bc4fSBill Paul 		/* Attach the buffer to the mbuf */
771c678bc4fSBill Paul 		m_new->m_data = (void *)buf;
7727437599fSBill Paul 		m_new->m_len = m_new->m_pkthdr.len = LGE_JUMBO_FRAMELEN;
7737437599fSBill Paul 		MEXTADD(m_new, buf, LGE_JUMBO_FRAMELEN, lge_jfree,
774c678bc4fSBill Paul 		    (struct lge_softc *)sc, 0, EXT_NET_DRV);
775c678bc4fSBill Paul 	} else {
776c678bc4fSBill Paul 		m_new = m;
7777437599fSBill Paul 		m_new->m_len = m_new->m_pkthdr.len = LGE_JUMBO_FRAMELEN;
778c678bc4fSBill Paul 		m_new->m_data = m_new->m_ext.ext_buf;
779c678bc4fSBill Paul 	}
780c678bc4fSBill Paul 
781c678bc4fSBill Paul 	/*
782c678bc4fSBill Paul 	 * Adjust alignment so packet payload begins on a
783c678bc4fSBill Paul 	 * longword boundary. Mandatory for Alpha, useful on
784c678bc4fSBill Paul 	 * x86 too.
785c678bc4fSBill Paul 	*/
786c678bc4fSBill Paul 	m_adj(m_new, ETHER_ALIGN);
787c678bc4fSBill Paul 
788c678bc4fSBill Paul 	c->lge_mbuf = m_new;
789c678bc4fSBill Paul 	c->lge_fragptr_hi = 0;
790c678bc4fSBill Paul 	c->lge_fragptr_lo = vtophys(mtod(m_new, caddr_t));
791c678bc4fSBill Paul 	c->lge_fraglen = m_new->m_len;
792c678bc4fSBill Paul 	c->lge_ctl = m_new->m_len | LGE_RXCTL_WANTINTR | LGE_FRAGCNT(1);
793c678bc4fSBill Paul 	c->lge_sts = 0;
794c678bc4fSBill Paul 
795c678bc4fSBill Paul 	/*
796c678bc4fSBill Paul 	 * Put this buffer in the RX command FIFO. To do this,
797c678bc4fSBill Paul 	 * we just write the physical address of the descriptor
798c678bc4fSBill Paul 	 * into the RX descriptor address registers. Note that
799c678bc4fSBill Paul 	 * there are two registers, one high DWORD and one low
800c678bc4fSBill Paul 	 * DWORD, which lets us specify a 64-bit address if
801c678bc4fSBill Paul 	 * desired. We only use a 32-bit address for now.
802c678bc4fSBill Paul 	 * Writing to the low DWORD register is what actually
803c678bc4fSBill Paul 	 * causes the command to be issued, so we do that
804c678bc4fSBill Paul 	 * last.
805c678bc4fSBill Paul 	 */
806c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_RXDESC_ADDR_LO, vtophys(c));
807c678bc4fSBill Paul 	LGE_INC(sc->lge_cdata.lge_rx_prod, LGE_RX_LIST_CNT);
808c678bc4fSBill Paul 
809c678bc4fSBill Paul 	return(0);
810c678bc4fSBill Paul }
811c678bc4fSBill Paul 
8129bee8811SAlfred Perlstein static int
8139bee8811SAlfred Perlstein lge_alloc_jumbo_mem(sc)
814c678bc4fSBill Paul 	struct lge_softc	*sc;
815c678bc4fSBill Paul {
816c678bc4fSBill Paul 	caddr_t			ptr;
817c678bc4fSBill Paul 	register int		i;
818c678bc4fSBill Paul 	struct lge_jpool_entry   *entry;
819c678bc4fSBill Paul 
820c678bc4fSBill Paul 	/* Grab a big chunk o' storage. */
821c678bc4fSBill Paul 	sc->lge_cdata.lge_jumbo_buf = contigmalloc(LGE_JMEM, M_DEVBUF,
822c678bc4fSBill Paul 	    M_NOWAIT, 0, 0xffffffff, PAGE_SIZE, 0);
823c678bc4fSBill Paul 
824c678bc4fSBill Paul 	if (sc->lge_cdata.lge_jumbo_buf == NULL) {
825c678bc4fSBill Paul 		printf("lge%d: no memory for jumbo buffers!\n", sc->lge_unit);
826c678bc4fSBill Paul 		return(ENOBUFS);
827c678bc4fSBill Paul 	}
828c678bc4fSBill Paul 
829c678bc4fSBill Paul 	SLIST_INIT(&sc->lge_jfree_listhead);
830c678bc4fSBill Paul 	SLIST_INIT(&sc->lge_jinuse_listhead);
831c678bc4fSBill Paul 
832c678bc4fSBill Paul 	/*
833c678bc4fSBill Paul 	 * Now divide it up into 9K pieces and save the addresses
834c678bc4fSBill Paul 	 * in an array.
835c678bc4fSBill Paul 	 */
836c678bc4fSBill Paul 	ptr = sc->lge_cdata.lge_jumbo_buf;
837c678bc4fSBill Paul 	for (i = 0; i < LGE_JSLOTS; i++) {
838c678bc4fSBill Paul 		sc->lge_cdata.lge_jslots[i] = ptr;
8397437599fSBill Paul 		ptr += LGE_JLEN;
840c678bc4fSBill Paul 		entry = malloc(sizeof(struct lge_jpool_entry),
841c678bc4fSBill Paul 		    M_DEVBUF, M_NOWAIT);
842c678bc4fSBill Paul 		if (entry == NULL) {
843c678bc4fSBill Paul 			printf("lge%d: no memory for jumbo "
844c678bc4fSBill Paul 			    "buffer queue!\n", sc->lge_unit);
845c678bc4fSBill Paul 			return(ENOBUFS);
846c678bc4fSBill Paul 		}
847c678bc4fSBill Paul 		entry->slot = i;
848c678bc4fSBill Paul 		SLIST_INSERT_HEAD(&sc->lge_jfree_listhead,
849c678bc4fSBill Paul 		    entry, jpool_entries);
850c678bc4fSBill Paul 	}
851c678bc4fSBill Paul 
852c678bc4fSBill Paul 	return(0);
853c678bc4fSBill Paul }
854c678bc4fSBill Paul 
8559bee8811SAlfred Perlstein static void
8569bee8811SAlfred Perlstein lge_free_jumbo_mem(sc)
857c678bc4fSBill Paul 	struct lge_softc	*sc;
858c678bc4fSBill Paul {
859c678bc4fSBill Paul 	int			i;
860c678bc4fSBill Paul 	struct lge_jpool_entry	*entry;
861c678bc4fSBill Paul 
862c678bc4fSBill Paul 	for (i = 0; i < LGE_JSLOTS; i++) {
863c678bc4fSBill Paul 		entry = SLIST_FIRST(&sc->lge_jfree_listhead);
864c678bc4fSBill Paul 		SLIST_REMOVE_HEAD(&sc->lge_jfree_listhead, jpool_entries);
8657437599fSBill Paul 		free(entry, M_DEVBUF);
866c678bc4fSBill Paul 	}
867c678bc4fSBill Paul 
868c678bc4fSBill Paul 	contigfree(sc->lge_cdata.lge_jumbo_buf, LGE_JMEM, M_DEVBUF);
869c678bc4fSBill Paul 
870c678bc4fSBill Paul 	return;
871c678bc4fSBill Paul }
872c678bc4fSBill Paul 
873c678bc4fSBill Paul /*
874c678bc4fSBill Paul  * Allocate a jumbo buffer.
875c678bc4fSBill Paul  */
8769bee8811SAlfred Perlstein static void *
8779bee8811SAlfred Perlstein lge_jalloc(sc)
878c678bc4fSBill Paul 	struct lge_softc	*sc;
879c678bc4fSBill Paul {
880c678bc4fSBill Paul 	struct lge_jpool_entry   *entry;
881c678bc4fSBill Paul 
882c678bc4fSBill Paul 	entry = SLIST_FIRST(&sc->lge_jfree_listhead);
883c678bc4fSBill Paul 
884c678bc4fSBill Paul 	if (entry == NULL) {
885c678bc4fSBill Paul #ifdef LGE_VERBOSE
886c678bc4fSBill Paul 		printf("lge%d: no free jumbo buffers\n", sc->lge_unit);
887c678bc4fSBill Paul #endif
888c678bc4fSBill Paul 		return(NULL);
889c678bc4fSBill Paul 	}
890c678bc4fSBill Paul 
891c678bc4fSBill Paul 	SLIST_REMOVE_HEAD(&sc->lge_jfree_listhead, jpool_entries);
892c678bc4fSBill Paul 	SLIST_INSERT_HEAD(&sc->lge_jinuse_listhead, entry, jpool_entries);
893c678bc4fSBill Paul 	return(sc->lge_cdata.lge_jslots[entry->slot]);
894c678bc4fSBill Paul }
895c678bc4fSBill Paul 
896c678bc4fSBill Paul /*
897c678bc4fSBill Paul  * Release a jumbo buffer.
898c678bc4fSBill Paul  */
8999bee8811SAlfred Perlstein static void
9009bee8811SAlfred Perlstein lge_jfree(buf, args)
901914596abSAlfred Perlstein 	void			*buf;
902c678bc4fSBill Paul 	void			*args;
903c678bc4fSBill Paul {
904c678bc4fSBill Paul 	struct lge_softc	*sc;
905c678bc4fSBill Paul 	int		        i;
906c678bc4fSBill Paul 	struct lge_jpool_entry   *entry;
907c678bc4fSBill Paul 
908c678bc4fSBill Paul 	/* Extract the softc struct pointer. */
909c678bc4fSBill Paul 	sc = args;
910c678bc4fSBill Paul 
911c678bc4fSBill Paul 	if (sc == NULL)
912c678bc4fSBill Paul 		panic("lge_jfree: can't find softc pointer!");
913c678bc4fSBill Paul 
914c678bc4fSBill Paul 	/* calculate the slot this buffer belongs to */
915c678bc4fSBill Paul 	i = ((vm_offset_t)buf
916c678bc4fSBill Paul 	     - (vm_offset_t)sc->lge_cdata.lge_jumbo_buf) / LGE_JLEN;
917c678bc4fSBill Paul 
918c678bc4fSBill Paul 	if ((i < 0) || (i >= LGE_JSLOTS))
919c678bc4fSBill Paul 		panic("lge_jfree: asked to free buffer that we don't manage!");
920c678bc4fSBill Paul 
921c678bc4fSBill Paul 	entry = SLIST_FIRST(&sc->lge_jinuse_listhead);
922c678bc4fSBill Paul 	if (entry == NULL)
923c678bc4fSBill Paul 		panic("lge_jfree: buffer not in use!");
924c678bc4fSBill Paul 	entry->slot = i;
925c678bc4fSBill Paul 	SLIST_REMOVE_HEAD(&sc->lge_jinuse_listhead, jpool_entries);
926c678bc4fSBill Paul 	SLIST_INSERT_HEAD(&sc->lge_jfree_listhead, entry, jpool_entries);
927c678bc4fSBill Paul 
928c678bc4fSBill Paul 	return;
929c678bc4fSBill Paul }
930c678bc4fSBill Paul 
931c678bc4fSBill Paul /*
932c678bc4fSBill Paul  * A frame has been uploaded: pass the resulting mbuf chain up to
933c678bc4fSBill Paul  * the higher level protocols.
934c678bc4fSBill Paul  */
9359bee8811SAlfred Perlstein static void
9369bee8811SAlfred Perlstein lge_rxeof(sc, cnt)
937c678bc4fSBill Paul 	struct lge_softc	*sc;
938c678bc4fSBill Paul 	int			cnt;
939c678bc4fSBill Paul {
940c678bc4fSBill Paul         struct mbuf		*m;
941c678bc4fSBill Paul         struct ifnet		*ifp;
942c678bc4fSBill Paul 	struct lge_rx_desc	*cur_rx;
943c678bc4fSBill Paul 	int			c, i, total_len = 0;
944c678bc4fSBill Paul 	u_int32_t		rxsts, rxctl;
945c678bc4fSBill Paul 
946c678bc4fSBill Paul 	ifp = &sc->arpcom.ac_if;
947c678bc4fSBill Paul 
948c678bc4fSBill Paul 	/* Find out how many frames were processed. */
949c678bc4fSBill Paul 	c = cnt;
950c678bc4fSBill Paul 	i = sc->lge_cdata.lge_rx_cons;
951c678bc4fSBill Paul 
952c678bc4fSBill Paul 	/* Suck them in. */
953c678bc4fSBill Paul 	while(c) {
954c678bc4fSBill Paul 		struct mbuf		*m0 = NULL;
955c678bc4fSBill Paul 
956c678bc4fSBill Paul 		cur_rx = &sc->lge_ldata->lge_rx_list[i];
957c678bc4fSBill Paul 		rxctl = cur_rx->lge_ctl;
958c678bc4fSBill Paul 		rxsts = cur_rx->lge_sts;
959c678bc4fSBill Paul 		m = cur_rx->lge_mbuf;
960c678bc4fSBill Paul 		cur_rx->lge_mbuf = NULL;
961c678bc4fSBill Paul 		total_len = LGE_RXBYTES(cur_rx);
962c678bc4fSBill Paul 		LGE_INC(i, LGE_RX_LIST_CNT);
963c678bc4fSBill Paul 		c--;
964c678bc4fSBill Paul 
965c678bc4fSBill Paul 		/*
966c678bc4fSBill Paul 		 * If an error occurs, update stats, clear the
967c678bc4fSBill Paul 		 * status word and leave the mbuf cluster in place:
968c678bc4fSBill Paul 		 * it should simply get re-used next time this descriptor
969c678bc4fSBill Paul 	 	 * comes up in the ring.
970c678bc4fSBill Paul 		 */
971c678bc4fSBill Paul 		if (rxctl & LGE_RXCTL_ERRMASK) {
972c678bc4fSBill Paul 			ifp->if_ierrors++;
973c678bc4fSBill Paul 			lge_newbuf(sc, &LGE_RXTAIL(sc), m);
974c678bc4fSBill Paul 			continue;
975c678bc4fSBill Paul 		}
976c678bc4fSBill Paul 
977c678bc4fSBill Paul 		if (lge_newbuf(sc, &LGE_RXTAIL(sc), NULL) == ENOBUFS) {
978f5eece3fSBosko Milekic 			m0 = m_devget(mtod(m, char *), total_len, ETHER_ALIGN,
979f5eece3fSBosko Milekic 			    ifp, NULL);
980c678bc4fSBill Paul 			lge_newbuf(sc, &LGE_RXTAIL(sc), m);
981c678bc4fSBill Paul 			if (m0 == NULL) {
982c678bc4fSBill Paul 				printf("lge%d: no receive buffers "
983c678bc4fSBill Paul 				    "available -- packet dropped!\n",
984c678bc4fSBill Paul 				    sc->lge_unit);
985c678bc4fSBill Paul 				ifp->if_ierrors++;
986c678bc4fSBill Paul 				continue;
987c678bc4fSBill Paul 			}
988c678bc4fSBill Paul 			m = m0;
989c678bc4fSBill Paul 		} else {
990c678bc4fSBill Paul 			m->m_pkthdr.rcvif = ifp;
991c678bc4fSBill Paul 			m->m_pkthdr.len = m->m_len = total_len;
992c678bc4fSBill Paul 		}
993c678bc4fSBill Paul 
994c678bc4fSBill Paul 		ifp->if_ipackets++;
995c678bc4fSBill Paul 
996c678bc4fSBill Paul 		/* Do IP checksum checking. */
997c678bc4fSBill Paul 		if (rxsts & LGE_RXSTS_ISIP)
998c678bc4fSBill Paul 			m->m_pkthdr.csum_flags |= CSUM_IP_CHECKED;
999c678bc4fSBill Paul 		if (!(rxsts & LGE_RXSTS_IPCSUMERR))
1000c678bc4fSBill Paul 			m->m_pkthdr.csum_flags |= CSUM_IP_VALID;
1001c678bc4fSBill Paul 		if ((rxsts & LGE_RXSTS_ISTCP &&
1002c678bc4fSBill Paul 		    !(rxsts & LGE_RXSTS_TCPCSUMERR)) ||
1003c678bc4fSBill Paul 		    (rxsts & LGE_RXSTS_ISUDP &&
1004c678bc4fSBill Paul 		    !(rxsts & LGE_RXSTS_UDPCSUMERR))) {
1005c678bc4fSBill Paul 			m->m_pkthdr.csum_flags |=
1006c678bc4fSBill Paul 			    CSUM_DATA_VALID|CSUM_PSEUDO_HDR;
1007c9215605SBill Paul 			m->m_pkthdr.csum_data = 0xffff;
1008c678bc4fSBill Paul 		}
1009c9215605SBill Paul 
1010673d9191SSam Leffler 		(*ifp->if_input)(ifp, m);
1011c678bc4fSBill Paul 	}
1012c678bc4fSBill Paul 
1013c678bc4fSBill Paul 	sc->lge_cdata.lge_rx_cons = i;
1014c678bc4fSBill Paul 
1015c678bc4fSBill Paul 	return;
1016c678bc4fSBill Paul }
1017c678bc4fSBill Paul 
101837c84183SPoul-Henning Kamp static void
10199bee8811SAlfred Perlstein lge_rxeoc(sc)
1020c678bc4fSBill Paul 	struct lge_softc	*sc;
1021c678bc4fSBill Paul {
1022c678bc4fSBill Paul 	struct ifnet		*ifp;
1023c678bc4fSBill Paul 
1024c678bc4fSBill Paul 	ifp = &sc->arpcom.ac_if;
1025c678bc4fSBill Paul 	ifp->if_flags &= ~IFF_RUNNING;
1026c678bc4fSBill Paul 	lge_init(sc);
1027c678bc4fSBill Paul 	return;
1028c678bc4fSBill Paul }
1029c678bc4fSBill Paul 
1030c678bc4fSBill Paul /*
1031c678bc4fSBill Paul  * A frame was downloaded to the chip. It's safe for us to clean up
1032c678bc4fSBill Paul  * the list buffers.
1033c678bc4fSBill Paul  */
1034c678bc4fSBill Paul 
10359bee8811SAlfred Perlstein static void
10369bee8811SAlfred Perlstein lge_txeof(sc)
1037c678bc4fSBill Paul 	struct lge_softc	*sc;
1038c678bc4fSBill Paul {
1039c678bc4fSBill Paul 	struct lge_tx_desc	*cur_tx = NULL;
1040c678bc4fSBill Paul 	struct ifnet		*ifp;
1041c678bc4fSBill Paul 	u_int32_t		idx, txdone;
1042c678bc4fSBill Paul 
1043c678bc4fSBill Paul 	ifp = &sc->arpcom.ac_if;
1044c678bc4fSBill Paul 
1045c678bc4fSBill Paul 	/* Clear the timeout timer. */
1046c678bc4fSBill Paul 	ifp->if_timer = 0;
1047c678bc4fSBill Paul 
1048c678bc4fSBill Paul 	/*
1049c678bc4fSBill Paul 	 * Go through our tx list and free mbufs for those
1050c678bc4fSBill Paul 	 * frames that have been transmitted.
1051c678bc4fSBill Paul 	 */
1052c678bc4fSBill Paul 	idx = sc->lge_cdata.lge_tx_cons;
1053c678bc4fSBill Paul 	txdone = CSR_READ_1(sc, LGE_TXDMADONE_8BIT);
1054c678bc4fSBill Paul 
1055c678bc4fSBill Paul 	while (idx != sc->lge_cdata.lge_tx_prod && txdone) {
1056c678bc4fSBill Paul 		cur_tx = &sc->lge_ldata->lge_tx_list[idx];
1057c678bc4fSBill Paul 
1058c678bc4fSBill Paul 		ifp->if_opackets++;
1059c678bc4fSBill Paul 		if (cur_tx->lge_mbuf != NULL) {
1060c678bc4fSBill Paul 			m_freem(cur_tx->lge_mbuf);
1061c678bc4fSBill Paul 			cur_tx->lge_mbuf = NULL;
1062c678bc4fSBill Paul 		}
1063c678bc4fSBill Paul 		cur_tx->lge_ctl = 0;
1064c678bc4fSBill Paul 
1065c678bc4fSBill Paul 		txdone--;
1066c678bc4fSBill Paul 		LGE_INC(idx, LGE_TX_LIST_CNT);
1067c678bc4fSBill Paul 		ifp->if_timer = 0;
1068c678bc4fSBill Paul 	}
1069c678bc4fSBill Paul 
1070c678bc4fSBill Paul 	sc->lge_cdata.lge_tx_cons = idx;
1071c678bc4fSBill Paul 
1072c678bc4fSBill Paul 	if (cur_tx != NULL)
1073c678bc4fSBill Paul 		ifp->if_flags &= ~IFF_OACTIVE;
1074c678bc4fSBill Paul 
1075c678bc4fSBill Paul 	return;
1076c678bc4fSBill Paul }
1077c678bc4fSBill Paul 
10789bee8811SAlfred Perlstein static void
10799bee8811SAlfred Perlstein lge_tick(xsc)
1080c678bc4fSBill Paul 	void			*xsc;
1081c678bc4fSBill Paul {
1082c678bc4fSBill Paul 	struct lge_softc	*sc;
1083c678bc4fSBill Paul 	struct mii_data		*mii;
1084c678bc4fSBill Paul 	struct ifnet		*ifp;
1085c678bc4fSBill Paul 	int			s;
1086c678bc4fSBill Paul 
1087c678bc4fSBill Paul 	s = splimp();
1088c678bc4fSBill Paul 
1089c678bc4fSBill Paul 	sc = xsc;
1090c678bc4fSBill Paul 	ifp = &sc->arpcom.ac_if;
1091c678bc4fSBill Paul 
1092c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_STATSIDX, LGE_STATS_SINGLE_COLL_PKTS);
1093c678bc4fSBill Paul 	ifp->if_collisions += CSR_READ_4(sc, LGE_STATSVAL);
1094c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_STATSIDX, LGE_STATS_MULTI_COLL_PKTS);
1095c678bc4fSBill Paul 	ifp->if_collisions += CSR_READ_4(sc, LGE_STATSVAL);
1096c678bc4fSBill Paul 
1097c678bc4fSBill Paul 	if (!sc->lge_link) {
1098c678bc4fSBill Paul 		mii = device_get_softc(sc->lge_miibus);
1099c678bc4fSBill Paul 		mii_tick(mii);
1100c678bc4fSBill Paul 		if (mii->mii_media_status & IFM_ACTIVE &&
1101c678bc4fSBill Paul 		    IFM_SUBTYPE(mii->mii_media_active) != IFM_NONE) {
1102c678bc4fSBill Paul 			sc->lge_link++;
1103c678bc4fSBill Paul 			if (IFM_SUBTYPE(mii->mii_media_active) == IFM_1000_SX||
1104b418ad5cSPoul-Henning Kamp 			    IFM_SUBTYPE(mii->mii_media_active) == IFM_1000_T)
1105c678bc4fSBill Paul 				printf("lge%d: gigabit link up\n",
1106c678bc4fSBill Paul 				    sc->lge_unit);
1107c678bc4fSBill Paul 			if (ifp->if_snd.ifq_head != NULL)
1108c678bc4fSBill Paul 				lge_start(ifp);
1109c678bc4fSBill Paul 		}
1110c678bc4fSBill Paul 	}
1111c678bc4fSBill Paul 
1112c678bc4fSBill Paul 	sc->lge_stat_ch = timeout(lge_tick, sc, hz);
1113c678bc4fSBill Paul 
1114c678bc4fSBill Paul 	splx(s);
1115c678bc4fSBill Paul 
1116c678bc4fSBill Paul 	return;
1117c678bc4fSBill Paul }
1118c678bc4fSBill Paul 
11199bee8811SAlfred Perlstein static void
11209bee8811SAlfred Perlstein lge_intr(arg)
1121c678bc4fSBill Paul 	void			*arg;
1122c678bc4fSBill Paul {
1123c678bc4fSBill Paul 	struct lge_softc	*sc;
1124c678bc4fSBill Paul 	struct ifnet		*ifp;
1125c678bc4fSBill Paul 	u_int32_t		status;
1126c678bc4fSBill Paul 
1127c678bc4fSBill Paul 	sc = arg;
1128c678bc4fSBill Paul 	ifp = &sc->arpcom.ac_if;
1129c678bc4fSBill Paul 
1130c678bc4fSBill Paul 	/* Supress unwanted interrupts */
1131c678bc4fSBill Paul 	if (!(ifp->if_flags & IFF_UP)) {
1132c678bc4fSBill Paul 		lge_stop(sc);
1133c678bc4fSBill Paul 		return;
1134c678bc4fSBill Paul 	}
1135c678bc4fSBill Paul 
1136c678bc4fSBill Paul 	for (;;) {
1137c678bc4fSBill Paul 		/*
1138c678bc4fSBill Paul 		 * Reading the ISR register clears all interrupts, and
1139c678bc4fSBill Paul 		 * clears the 'interrupts enabled' bit in the IMR
1140c678bc4fSBill Paul 		 * register.
1141c678bc4fSBill Paul 		 */
1142c678bc4fSBill Paul 		status = CSR_READ_4(sc, LGE_ISR);
1143c678bc4fSBill Paul 
1144c678bc4fSBill Paul 		if ((status & LGE_INTRS) == 0)
1145c678bc4fSBill Paul 			break;
1146c678bc4fSBill Paul 
1147c678bc4fSBill Paul 		if ((status & (LGE_ISR_TXCMDFIFO_EMPTY|LGE_ISR_TXDMA_DONE)))
1148c678bc4fSBill Paul 			lge_txeof(sc);
1149c678bc4fSBill Paul 
1150c678bc4fSBill Paul 		if (status & LGE_ISR_RXDMA_DONE)
1151c678bc4fSBill Paul 			lge_rxeof(sc, LGE_RX_DMACNT(status));
1152c678bc4fSBill Paul 
1153c678bc4fSBill Paul 		if (status & LGE_ISR_RXCMDFIFO_EMPTY)
1154c678bc4fSBill Paul 			lge_rxeoc(sc);
1155c678bc4fSBill Paul 
1156c678bc4fSBill Paul 		if (status & LGE_ISR_PHY_INTR) {
1157c678bc4fSBill Paul 			sc->lge_link = 0;
1158c678bc4fSBill Paul 			untimeout(lge_tick, sc, sc->lge_stat_ch);
1159c678bc4fSBill Paul 			lge_tick(sc);
1160c678bc4fSBill Paul 		}
1161c678bc4fSBill Paul 	}
1162c678bc4fSBill Paul 
1163c678bc4fSBill Paul 	/* Re-enable interrupts. */
1164c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_IMR, LGE_IMR_SETRST_CTL0|LGE_IMR_INTR_ENB);
1165c678bc4fSBill Paul 
1166c678bc4fSBill Paul 	if (ifp->if_snd.ifq_head != NULL)
1167c678bc4fSBill Paul 		lge_start(ifp);
1168c678bc4fSBill Paul 
1169c678bc4fSBill Paul 	return;
1170c678bc4fSBill Paul }
1171c678bc4fSBill Paul 
1172c678bc4fSBill Paul /*
1173c678bc4fSBill Paul  * Encapsulate an mbuf chain in a descriptor by coupling the mbuf data
1174c678bc4fSBill Paul  * pointers to the fragment pointers.
1175c678bc4fSBill Paul  */
11769bee8811SAlfred Perlstein static int
11779bee8811SAlfred Perlstein lge_encap(sc, m_head, txidx)
1178c678bc4fSBill Paul 	struct lge_softc	*sc;
1179c678bc4fSBill Paul 	struct mbuf		*m_head;
1180c678bc4fSBill Paul 	u_int32_t		*txidx;
1181c678bc4fSBill Paul {
1182c678bc4fSBill Paul 	struct lge_frag		*f = NULL;
1183c678bc4fSBill Paul 	struct lge_tx_desc	*cur_tx;
1184c678bc4fSBill Paul 	struct mbuf		*m;
1185c678bc4fSBill Paul 	int			frag = 0, tot_len = 0;
1186c678bc4fSBill Paul 
1187c678bc4fSBill Paul 	/*
1188c678bc4fSBill Paul  	 * Start packing the mbufs in this chain into
1189c678bc4fSBill Paul 	 * the fragment pointers. Stop when we run out
1190c678bc4fSBill Paul  	 * of fragments or hit the end of the mbuf chain.
1191c678bc4fSBill Paul 	 */
1192c678bc4fSBill Paul 	m = m_head;
1193c678bc4fSBill Paul 	cur_tx = &sc->lge_ldata->lge_tx_list[*txidx];
1194c678bc4fSBill Paul 	frag = 0;
1195c678bc4fSBill Paul 
1196c678bc4fSBill Paul 	for (m = m_head; m != NULL; m = m->m_next) {
1197c678bc4fSBill Paul 		if (m->m_len != 0) {
1198c678bc4fSBill Paul 			tot_len += m->m_len;
1199c678bc4fSBill Paul 			f = &cur_tx->lge_frags[frag];
1200c678bc4fSBill Paul 			f->lge_fraglen = m->m_len;
1201c678bc4fSBill Paul 			f->lge_fragptr_lo = vtophys(mtod(m, vm_offset_t));
1202c678bc4fSBill Paul 			f->lge_fragptr_hi = 0;
1203c678bc4fSBill Paul 			frag++;
1204c678bc4fSBill Paul 		}
1205c678bc4fSBill Paul 	}
1206c678bc4fSBill Paul 
1207c678bc4fSBill Paul 	if (m != NULL)
1208c678bc4fSBill Paul 		return(ENOBUFS);
1209c678bc4fSBill Paul 
1210c678bc4fSBill Paul 	cur_tx->lge_mbuf = m_head;
1211c678bc4fSBill Paul 	cur_tx->lge_ctl = LGE_TXCTL_WANTINTR|LGE_FRAGCNT(frag)|tot_len;
12121c352ef7SBill Paul 	LGE_INC((*txidx), LGE_TX_LIST_CNT);
1213c678bc4fSBill Paul 
1214c678bc4fSBill Paul 	/* Queue for transmit */
1215c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_TXDESC_ADDR_LO, vtophys(cur_tx));
1216c678bc4fSBill Paul 
1217c678bc4fSBill Paul 	return(0);
1218c678bc4fSBill Paul }
1219c678bc4fSBill Paul 
1220c678bc4fSBill Paul /*
1221c678bc4fSBill Paul  * Main transmit routine. To avoid having to do mbuf copies, we put pointers
1222c678bc4fSBill Paul  * to the mbuf data regions directly in the transmit lists. We also save a
1223c678bc4fSBill Paul  * copy of the pointers since the transmit list fragment pointers are
1224c678bc4fSBill Paul  * physical addresses.
1225c678bc4fSBill Paul  */
1226c678bc4fSBill Paul 
12279bee8811SAlfred Perlstein static void
12289bee8811SAlfred Perlstein lge_start(ifp)
1229c678bc4fSBill Paul 	struct ifnet		*ifp;
1230c678bc4fSBill Paul {
1231c678bc4fSBill Paul 	struct lge_softc	*sc;
1232c678bc4fSBill Paul 	struct mbuf		*m_head = NULL;
1233c678bc4fSBill Paul 	u_int32_t		idx;
1234c678bc4fSBill Paul 
1235c678bc4fSBill Paul 	sc = ifp->if_softc;
1236c678bc4fSBill Paul 
1237c678bc4fSBill Paul 	if (!sc->lge_link)
1238c678bc4fSBill Paul 		return;
1239c678bc4fSBill Paul 
1240c678bc4fSBill Paul 	idx = sc->lge_cdata.lge_tx_prod;
1241c678bc4fSBill Paul 
1242c678bc4fSBill Paul 	if (ifp->if_flags & IFF_OACTIVE)
1243c678bc4fSBill Paul 		return;
1244c678bc4fSBill Paul 
1245c678bc4fSBill Paul 	while(sc->lge_ldata->lge_tx_list[idx].lge_mbuf == NULL) {
1246c678bc4fSBill Paul 		if (CSR_READ_1(sc, LGE_TXCMDFREE_8BIT) == 0)
1247c678bc4fSBill Paul 			break;
1248c678bc4fSBill Paul 
1249c678bc4fSBill Paul 		IF_DEQUEUE(&ifp->if_snd, m_head);
1250c678bc4fSBill Paul 		if (m_head == NULL)
1251c678bc4fSBill Paul 			break;
1252c678bc4fSBill Paul 
1253c678bc4fSBill Paul 		if (lge_encap(sc, m_head, &idx)) {
1254c678bc4fSBill Paul 			IF_PREPEND(&ifp->if_snd, m_head);
1255c678bc4fSBill Paul 			ifp->if_flags |= IFF_OACTIVE;
1256c678bc4fSBill Paul 			break;
1257c678bc4fSBill Paul 		}
1258c678bc4fSBill Paul 
1259c678bc4fSBill Paul 		/*
1260c678bc4fSBill Paul 		 * If there's a BPF listener, bounce a copy of this frame
1261c678bc4fSBill Paul 		 * to him.
1262c678bc4fSBill Paul 		 */
1263673d9191SSam Leffler 		BPF_MTAP(ifp, m_head);
1264c678bc4fSBill Paul 	}
1265c678bc4fSBill Paul 
1266c678bc4fSBill Paul 	sc->lge_cdata.lge_tx_prod = idx;
1267c678bc4fSBill Paul 
1268c678bc4fSBill Paul 	/*
1269c678bc4fSBill Paul 	 * Set a timeout in case the chip goes out to lunch.
1270c678bc4fSBill Paul 	 */
1271c678bc4fSBill Paul 	ifp->if_timer = 5;
1272c678bc4fSBill Paul 
1273c678bc4fSBill Paul 	return;
1274c678bc4fSBill Paul }
1275c678bc4fSBill Paul 
12769bee8811SAlfred Perlstein static void
12779bee8811SAlfred Perlstein lge_init(xsc)
1278c678bc4fSBill Paul 	void			*xsc;
1279c678bc4fSBill Paul {
1280c678bc4fSBill Paul 	struct lge_softc	*sc = xsc;
1281c678bc4fSBill Paul 	struct ifnet		*ifp = &sc->arpcom.ac_if;
1282c678bc4fSBill Paul 	struct mii_data		*mii;
1283c678bc4fSBill Paul 	int			s;
1284c678bc4fSBill Paul 
1285c678bc4fSBill Paul 	if (ifp->if_flags & IFF_RUNNING)
1286c678bc4fSBill Paul 		return;
1287c678bc4fSBill Paul 
1288c678bc4fSBill Paul 	s = splimp();
1289c678bc4fSBill Paul 
1290c678bc4fSBill Paul 	/*
1291c678bc4fSBill Paul 	 * Cancel pending I/O and free all RX/TX buffers.
1292c678bc4fSBill Paul 	 */
1293c678bc4fSBill Paul 	lge_stop(sc);
1294c678bc4fSBill Paul 	lge_reset(sc);
1295c678bc4fSBill Paul 
1296c678bc4fSBill Paul 	mii = device_get_softc(sc->lge_miibus);
1297c678bc4fSBill Paul 
1298c678bc4fSBill Paul 	/* Set MAC address */
1299c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_PAR0, *(u_int32_t *)(&sc->arpcom.ac_enaddr[0]));
1300c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_PAR1, *(u_int32_t *)(&sc->arpcom.ac_enaddr[4]));
1301c678bc4fSBill Paul 
1302c678bc4fSBill Paul 	/* Init circular RX list. */
1303c678bc4fSBill Paul 	if (lge_list_rx_init(sc) == ENOBUFS) {
1304c678bc4fSBill Paul 		printf("lge%d: initialization failed: no "
1305c678bc4fSBill Paul 		    "memory for rx buffers\n", sc->lge_unit);
1306c678bc4fSBill Paul 		lge_stop(sc);
1307c678bc4fSBill Paul 		(void)splx(s);
1308c678bc4fSBill Paul 		return;
1309c678bc4fSBill Paul 	}
1310c678bc4fSBill Paul 
1311c678bc4fSBill Paul 	/*
1312c678bc4fSBill Paul 	 * Init tx descriptors.
1313c678bc4fSBill Paul 	 */
1314c678bc4fSBill Paul 	lge_list_tx_init(sc);
1315c678bc4fSBill Paul 
1316c678bc4fSBill Paul 	/* Set initial value for MODE1 register. */
1317c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_MODE1, LGE_MODE1_RX_UCAST|
1318c678bc4fSBill Paul 	    LGE_MODE1_TX_CRC|LGE_MODE1_TXPAD|
1319c678bc4fSBill Paul 	    LGE_MODE1_RX_FLOWCTL|LGE_MODE1_SETRST_CTL0|
1320c678bc4fSBill Paul 	    LGE_MODE1_SETRST_CTL1|LGE_MODE1_SETRST_CTL2);
1321c678bc4fSBill Paul 
1322c678bc4fSBill Paul 	 /* If we want promiscuous mode, set the allframes bit. */
1323c678bc4fSBill Paul 	if (ifp->if_flags & IFF_PROMISC) {
1324c678bc4fSBill Paul 		CSR_WRITE_4(sc, LGE_MODE1,
1325c678bc4fSBill Paul 		    LGE_MODE1_SETRST_CTL1|LGE_MODE1_RX_PROMISC);
1326c678bc4fSBill Paul 	} else {
1327c678bc4fSBill Paul 		CSR_WRITE_4(sc, LGE_MODE1, LGE_MODE1_RX_PROMISC);
1328c678bc4fSBill Paul 	}
1329c678bc4fSBill Paul 
1330c678bc4fSBill Paul 	/*
1331c678bc4fSBill Paul 	 * Set the capture broadcast bit to capture broadcast frames.
1332c678bc4fSBill Paul 	 */
1333c678bc4fSBill Paul 	if (ifp->if_flags & IFF_BROADCAST) {
1334c678bc4fSBill Paul 		CSR_WRITE_4(sc, LGE_MODE1,
1335c678bc4fSBill Paul 		    LGE_MODE1_SETRST_CTL1|LGE_MODE1_RX_BCAST);
1336c678bc4fSBill Paul 	} else {
1337c678bc4fSBill Paul 		CSR_WRITE_4(sc, LGE_MODE1, LGE_MODE1_RX_BCAST);
1338c678bc4fSBill Paul 	}
1339c678bc4fSBill Paul 
1340c678bc4fSBill Paul 	/* Packet padding workaround? */
1341c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_MODE1, LGE_MODE1_SETRST_CTL1|LGE_MODE1_RMVPAD);
1342c678bc4fSBill Paul 
1343c678bc4fSBill Paul 	/* No error frames */
1344c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_MODE1, LGE_MODE1_RX_ERRPKTS);
1345c678bc4fSBill Paul 
1346c678bc4fSBill Paul 	/* Receive large frames */
1347c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_MODE1, LGE_MODE1_SETRST_CTL1|LGE_MODE1_RX_GIANTS);
1348c678bc4fSBill Paul 
1349c678bc4fSBill Paul 	/* Workaround: disable RX/TX flow control */
1350c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_MODE1, LGE_MODE1_TX_FLOWCTL);
1351c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_MODE1, LGE_MODE1_RX_FLOWCTL);
1352c678bc4fSBill Paul 
1353c678bc4fSBill Paul 	/* Make sure to strip CRC from received frames */
1354c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_MODE1, LGE_MODE1_RX_CRC);
1355c678bc4fSBill Paul 
1356c678bc4fSBill Paul 	/* Turn off magic packet mode */
1357c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_MODE1, LGE_MODE1_MPACK_ENB);
1358c678bc4fSBill Paul 
1359c678bc4fSBill Paul 	/* Turn off all VLAN stuff */
1360c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_MODE1, LGE_MODE1_VLAN_RX|LGE_MODE1_VLAN_TX|
1361c678bc4fSBill Paul 	    LGE_MODE1_VLAN_STRIP|LGE_MODE1_VLAN_INSERT);
1362c678bc4fSBill Paul 
1363c678bc4fSBill Paul 	/* Workarond: FIFO overflow */
1364c678bc4fSBill Paul 	CSR_WRITE_2(sc, LGE_RXFIFO_HIWAT, 0x3FFF);
1365c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_IMR, LGE_IMR_SETRST_CTL1|LGE_IMR_RXFIFO_WAT);
1366c678bc4fSBill Paul 
1367c678bc4fSBill Paul 	/*
1368c678bc4fSBill Paul 	 * Load the multicast filter.
1369c678bc4fSBill Paul 	 */
1370c678bc4fSBill Paul 	lge_setmulti(sc);
1371c678bc4fSBill Paul 
1372c678bc4fSBill Paul 	/*
1373c678bc4fSBill Paul 	 * Enable hardware checksum validation for all received IPv4
1374c678bc4fSBill Paul 	 * packets, do not reject packets with bad checksums.
1375c678bc4fSBill Paul 	 */
1376c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_MODE2, LGE_MODE2_RX_IPCSUM|
1377c678bc4fSBill Paul 	    LGE_MODE2_RX_TCPCSUM|LGE_MODE2_RX_UDPCSUM|
1378c678bc4fSBill Paul 	    LGE_MODE2_RX_ERRCSUM);
1379c678bc4fSBill Paul 
1380c678bc4fSBill Paul 	/*
1381c678bc4fSBill Paul 	 * Enable the delivery of PHY interrupts based on
1382c678bc4fSBill Paul 	 * link/speed/duplex status chalges.
1383c678bc4fSBill Paul 	 */
1384c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_MODE1, LGE_MODE1_SETRST_CTL0|LGE_MODE1_GMIIPOLL);
1385c678bc4fSBill Paul 
1386c678bc4fSBill Paul 	/* Enable receiver and transmitter. */
1387c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_RXDESC_ADDR_HI, 0);
1388c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_MODE1, LGE_MODE1_SETRST_CTL1|LGE_MODE1_RX_ENB);
1389c678bc4fSBill Paul 
1390c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_TXDESC_ADDR_HI, 0);
1391c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_MODE1, LGE_MODE1_SETRST_CTL1|LGE_MODE1_TX_ENB);
1392c678bc4fSBill Paul 
1393c678bc4fSBill Paul 	/*
1394c678bc4fSBill Paul 	 * Enable interrupts.
1395c678bc4fSBill Paul 	 */
1396c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_IMR, LGE_IMR_SETRST_CTL0|
1397c678bc4fSBill Paul 	    LGE_IMR_SETRST_CTL1|LGE_IMR_INTR_ENB|LGE_INTRS);
1398c678bc4fSBill Paul 
1399c678bc4fSBill Paul 	lge_ifmedia_upd(ifp);
1400c678bc4fSBill Paul 
1401c678bc4fSBill Paul 	ifp->if_flags |= IFF_RUNNING;
1402c678bc4fSBill Paul 	ifp->if_flags &= ~IFF_OACTIVE;
1403c678bc4fSBill Paul 
1404c678bc4fSBill Paul 	(void)splx(s);
1405c678bc4fSBill Paul 
1406c678bc4fSBill Paul 	sc->lge_stat_ch = timeout(lge_tick, sc, hz);
1407c678bc4fSBill Paul 
1408c678bc4fSBill Paul 	return;
1409c678bc4fSBill Paul }
1410c678bc4fSBill Paul 
1411c678bc4fSBill Paul /*
1412c678bc4fSBill Paul  * Set media options.
1413c678bc4fSBill Paul  */
14149bee8811SAlfred Perlstein static int
14159bee8811SAlfred Perlstein lge_ifmedia_upd(ifp)
1416c678bc4fSBill Paul 	struct ifnet		*ifp;
1417c678bc4fSBill Paul {
1418c678bc4fSBill Paul 	struct lge_softc	*sc;
1419c678bc4fSBill Paul 	struct mii_data		*mii;
1420c678bc4fSBill Paul 
1421c678bc4fSBill Paul 	sc = ifp->if_softc;
1422c678bc4fSBill Paul 
1423c678bc4fSBill Paul 	mii = device_get_softc(sc->lge_miibus);
1424c678bc4fSBill Paul 	sc->lge_link = 0;
1425c678bc4fSBill Paul 	if (mii->mii_instance) {
1426c678bc4fSBill Paul 		struct mii_softc	*miisc;
1427c678bc4fSBill Paul 		for (miisc = LIST_FIRST(&mii->mii_phys); miisc != NULL;
1428c678bc4fSBill Paul 		    miisc = LIST_NEXT(miisc, mii_list))
1429c678bc4fSBill Paul 			mii_phy_reset(miisc);
1430c678bc4fSBill Paul 	}
1431c678bc4fSBill Paul 	mii_mediachg(mii);
1432c678bc4fSBill Paul 
1433c678bc4fSBill Paul 	return(0);
1434c678bc4fSBill Paul }
1435c678bc4fSBill Paul 
1436c678bc4fSBill Paul /*
1437c678bc4fSBill Paul  * Report current media status.
1438c678bc4fSBill Paul  */
14399bee8811SAlfred Perlstein static void
14409bee8811SAlfred Perlstein lge_ifmedia_sts(ifp, ifmr)
1441c678bc4fSBill Paul 	struct ifnet		*ifp;
1442c678bc4fSBill Paul 	struct ifmediareq	*ifmr;
1443c678bc4fSBill Paul {
1444c678bc4fSBill Paul 	struct lge_softc	*sc;
1445c678bc4fSBill Paul 	struct mii_data		*mii;
1446c678bc4fSBill Paul 
1447c678bc4fSBill Paul 	sc = ifp->if_softc;
1448c678bc4fSBill Paul 
1449c678bc4fSBill Paul 	mii = device_get_softc(sc->lge_miibus);
1450c678bc4fSBill Paul 	mii_pollstat(mii);
1451c678bc4fSBill Paul 	ifmr->ifm_active = mii->mii_media_active;
1452c678bc4fSBill Paul 	ifmr->ifm_status = mii->mii_media_status;
1453c678bc4fSBill Paul 
1454c678bc4fSBill Paul 	return;
1455c678bc4fSBill Paul }
1456c678bc4fSBill Paul 
14579bee8811SAlfred Perlstein static int
14589bee8811SAlfred Perlstein lge_ioctl(ifp, command, data)
1459c678bc4fSBill Paul 	struct ifnet		*ifp;
1460c678bc4fSBill Paul 	u_long			command;
1461c678bc4fSBill Paul 	caddr_t			data;
1462c678bc4fSBill Paul {
1463c678bc4fSBill Paul 	struct lge_softc	*sc = ifp->if_softc;
1464c678bc4fSBill Paul 	struct ifreq		*ifr = (struct ifreq *) data;
1465c678bc4fSBill Paul 	struct mii_data		*mii;
1466c678bc4fSBill Paul 	int			s, error = 0;
1467c678bc4fSBill Paul 
1468c678bc4fSBill Paul 	s = splimp();
1469c678bc4fSBill Paul 
1470c678bc4fSBill Paul 	switch(command) {
1471c678bc4fSBill Paul 	case SIOCSIFMTU:
1472c678bc4fSBill Paul 		if (ifr->ifr_mtu > LGE_JUMBO_MTU)
1473c678bc4fSBill Paul 			error = EINVAL;
1474c678bc4fSBill Paul 		else
1475c678bc4fSBill Paul 			ifp->if_mtu = ifr->ifr_mtu;
1476c678bc4fSBill Paul 		break;
1477c678bc4fSBill Paul 	case SIOCSIFFLAGS:
1478c678bc4fSBill Paul 		if (ifp->if_flags & IFF_UP) {
1479c678bc4fSBill Paul 			if (ifp->if_flags & IFF_RUNNING &&
1480c678bc4fSBill Paul 			    ifp->if_flags & IFF_PROMISC &&
1481c678bc4fSBill Paul 			    !(sc->lge_if_flags & IFF_PROMISC)) {
1482c678bc4fSBill Paul 				CSR_WRITE_4(sc, LGE_MODE1,
1483c678bc4fSBill Paul 				    LGE_MODE1_SETRST_CTL1|
1484c678bc4fSBill Paul 				    LGE_MODE1_RX_PROMISC);
1485c678bc4fSBill Paul 			} else if (ifp->if_flags & IFF_RUNNING &&
1486c678bc4fSBill Paul 			    !(ifp->if_flags & IFF_PROMISC) &&
1487c678bc4fSBill Paul 			    sc->lge_if_flags & IFF_PROMISC) {
1488c678bc4fSBill Paul 				CSR_WRITE_4(sc, LGE_MODE1,
1489c678bc4fSBill Paul 				    LGE_MODE1_RX_PROMISC);
1490c678bc4fSBill Paul 			} else {
1491c678bc4fSBill Paul 				ifp->if_flags &= ~IFF_RUNNING;
1492c678bc4fSBill Paul 				lge_init(sc);
1493c678bc4fSBill Paul 			}
1494c678bc4fSBill Paul 		} else {
1495c678bc4fSBill Paul 			if (ifp->if_flags & IFF_RUNNING)
1496c678bc4fSBill Paul 				lge_stop(sc);
1497c678bc4fSBill Paul 		}
1498c678bc4fSBill Paul 		sc->lge_if_flags = ifp->if_flags;
1499c678bc4fSBill Paul 		error = 0;
1500c678bc4fSBill Paul 		break;
1501c678bc4fSBill Paul 	case SIOCADDMULTI:
1502c678bc4fSBill Paul 	case SIOCDELMULTI:
1503c678bc4fSBill Paul 		lge_setmulti(sc);
1504c678bc4fSBill Paul 		error = 0;
1505c678bc4fSBill Paul 		break;
1506c678bc4fSBill Paul 	case SIOCGIFMEDIA:
1507c678bc4fSBill Paul 	case SIOCSIFMEDIA:
1508c678bc4fSBill Paul 		mii = device_get_softc(sc->lge_miibus);
1509c678bc4fSBill Paul 		error = ifmedia_ioctl(ifp, ifr, &mii->mii_media, command);
1510c678bc4fSBill Paul 		break;
1511c678bc4fSBill Paul 	default:
1512673d9191SSam Leffler 		error = ether_ioctl(ifp, command, data);
1513c678bc4fSBill Paul 		break;
1514c678bc4fSBill Paul 	}
1515c678bc4fSBill Paul 
1516c678bc4fSBill Paul 	(void)splx(s);
1517c678bc4fSBill Paul 
1518c678bc4fSBill Paul 	return(error);
1519c678bc4fSBill Paul }
1520c678bc4fSBill Paul 
15219bee8811SAlfred Perlstein static void
15229bee8811SAlfred Perlstein lge_watchdog(ifp)
1523c678bc4fSBill Paul 	struct ifnet		*ifp;
1524c678bc4fSBill Paul {
1525c678bc4fSBill Paul 	struct lge_softc	*sc;
1526c678bc4fSBill Paul 
1527c678bc4fSBill Paul 	sc = ifp->if_softc;
1528c678bc4fSBill Paul 
1529c678bc4fSBill Paul 	ifp->if_oerrors++;
1530c678bc4fSBill Paul 	printf("lge%d: watchdog timeout\n", sc->lge_unit);
1531c678bc4fSBill Paul 
1532c678bc4fSBill Paul 	lge_stop(sc);
1533c678bc4fSBill Paul 	lge_reset(sc);
1534c678bc4fSBill Paul 	ifp->if_flags &= ~IFF_RUNNING;
1535c678bc4fSBill Paul 	lge_init(sc);
1536c678bc4fSBill Paul 
1537c678bc4fSBill Paul 	if (ifp->if_snd.ifq_head != NULL)
1538c678bc4fSBill Paul 		lge_start(ifp);
1539c678bc4fSBill Paul 
1540c678bc4fSBill Paul 	return;
1541c678bc4fSBill Paul }
1542c678bc4fSBill Paul 
1543c678bc4fSBill Paul /*
1544c678bc4fSBill Paul  * Stop the adapter and free any mbufs allocated to the
1545c678bc4fSBill Paul  * RX and TX lists.
1546c678bc4fSBill Paul  */
15479bee8811SAlfred Perlstein static void
15489bee8811SAlfred Perlstein lge_stop(sc)
1549c678bc4fSBill Paul 	struct lge_softc	*sc;
1550c678bc4fSBill Paul {
1551c678bc4fSBill Paul 	register int		i;
1552c678bc4fSBill Paul 	struct ifnet		*ifp;
1553c678bc4fSBill Paul 
1554c678bc4fSBill Paul 	ifp = &sc->arpcom.ac_if;
1555c678bc4fSBill Paul 	ifp->if_timer = 0;
1556c678bc4fSBill Paul 	untimeout(lge_tick, sc, sc->lge_stat_ch);
1557c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_IMR, LGE_IMR_INTR_ENB);
1558c678bc4fSBill Paul 
1559c678bc4fSBill Paul 	/* Disable receiver and transmitter. */
1560c678bc4fSBill Paul 	CSR_WRITE_4(sc, LGE_MODE1, LGE_MODE1_RX_ENB|LGE_MODE1_TX_ENB);
1561c678bc4fSBill Paul 	sc->lge_link = 0;
1562c678bc4fSBill Paul 
1563c678bc4fSBill Paul 	/*
1564c678bc4fSBill Paul 	 * Free data in the RX lists.
1565c678bc4fSBill Paul 	 */
1566c678bc4fSBill Paul 	for (i = 0; i < LGE_RX_LIST_CNT; i++) {
1567c678bc4fSBill Paul 		if (sc->lge_ldata->lge_rx_list[i].lge_mbuf != NULL) {
1568c678bc4fSBill Paul 			m_freem(sc->lge_ldata->lge_rx_list[i].lge_mbuf);
1569c678bc4fSBill Paul 			sc->lge_ldata->lge_rx_list[i].lge_mbuf = NULL;
1570c678bc4fSBill Paul 		}
1571c678bc4fSBill Paul 	}
1572c678bc4fSBill Paul 	bzero((char *)&sc->lge_ldata->lge_rx_list,
1573c678bc4fSBill Paul 		sizeof(sc->lge_ldata->lge_rx_list));
1574c678bc4fSBill Paul 
1575c678bc4fSBill Paul 	/*
1576c678bc4fSBill Paul 	 * Free the TX list buffers.
1577c678bc4fSBill Paul 	 */
1578c678bc4fSBill Paul 	for (i = 0; i < LGE_TX_LIST_CNT; i++) {
1579c678bc4fSBill Paul 		if (sc->lge_ldata->lge_tx_list[i].lge_mbuf != NULL) {
1580c678bc4fSBill Paul 			m_freem(sc->lge_ldata->lge_tx_list[i].lge_mbuf);
1581c678bc4fSBill Paul 			sc->lge_ldata->lge_tx_list[i].lge_mbuf = NULL;
1582c678bc4fSBill Paul 		}
1583c678bc4fSBill Paul 	}
1584c678bc4fSBill Paul 
1585c678bc4fSBill Paul 	bzero((char *)&sc->lge_ldata->lge_tx_list,
1586c678bc4fSBill Paul 		sizeof(sc->lge_ldata->lge_tx_list));
1587c678bc4fSBill Paul 
1588c678bc4fSBill Paul 	ifp->if_flags &= ~(IFF_RUNNING | IFF_OACTIVE);
1589c678bc4fSBill Paul 
1590c678bc4fSBill Paul 	return;
1591c678bc4fSBill Paul }
1592c678bc4fSBill Paul 
1593c678bc4fSBill Paul /*
1594c678bc4fSBill Paul  * Stop all chip I/O so that the kernel's probe routines don't
1595c678bc4fSBill Paul  * get confused by errant DMAs when rebooting.
1596c678bc4fSBill Paul  */
15979bee8811SAlfred Perlstein static void
15989bee8811SAlfred Perlstein lge_shutdown(dev)
1599c678bc4fSBill Paul 	device_t		dev;
1600c678bc4fSBill Paul {
1601c678bc4fSBill Paul 	struct lge_softc	*sc;
1602c678bc4fSBill Paul 
1603c678bc4fSBill Paul 	sc = device_get_softc(dev);
1604c678bc4fSBill Paul 
1605c678bc4fSBill Paul 	lge_reset(sc);
1606c678bc4fSBill Paul 	lge_stop(sc);
1607c678bc4fSBill Paul 
1608c678bc4fSBill Paul 	return;
1609c678bc4fSBill Paul }
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