xref: /freebsd/sys/dev/fxp/if_fxp.c (revision b184b38e2b9e21afd6f3cbdeba70fea8db5bcdb6)
1a17c678eSDavid Greenman /*
2a17c678eSDavid Greenman  * Copyright (c) 1995, David Greenman
3a17c678eSDavid Greenman  * All rights reserved.
4a17c678eSDavid Greenman  *
5ba8c6fd5SDavid Greenman  * Modifications to support NetBSD and media selection:
6ba8c6fd5SDavid Greenman  * Copyright (c) 1997 Jason R. Thorpe.  All rights reserved.
7ba8c6fd5SDavid Greenman  *
8a17c678eSDavid Greenman  * Redistribution and use in source and binary forms, with or without
9a17c678eSDavid Greenman  * modification, are permitted provided that the following conditions
10a17c678eSDavid Greenman  * are met:
11a17c678eSDavid Greenman  * 1. Redistributions of source code must retain the above copyright
12a17c678eSDavid Greenman  *    notice unmodified, this list of conditions, and the following
13a17c678eSDavid Greenman  *    disclaimer.
14a17c678eSDavid Greenman  * 2. Redistributions in binary form must reproduce the above copyright
15a17c678eSDavid Greenman  *    notice, this list of conditions and the following disclaimer in the
16a17c678eSDavid Greenman  *    documentation and/or other materials provided with the distribution.
17a17c678eSDavid Greenman  *
18a17c678eSDavid Greenman  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
19a17c678eSDavid Greenman  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
20a17c678eSDavid Greenman  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
21a17c678eSDavid Greenman  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
22a17c678eSDavid Greenman  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
23a17c678eSDavid Greenman  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
24a17c678eSDavid Greenman  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
25a17c678eSDavid Greenman  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
26a17c678eSDavid Greenman  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
27a17c678eSDavid Greenman  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
28a17c678eSDavid Greenman  * SUCH DAMAGE.
29a17c678eSDavid Greenman  *
30c3aac50fSPeter Wemm  * $FreeBSD$
31a17c678eSDavid Greenman  */
32a17c678eSDavid Greenman 
33a17c678eSDavid Greenman /*
34ae12cddaSDavid Greenman  * Intel EtherExpress Pro/100B PCI Fast Ethernet driver
35a17c678eSDavid Greenman  */
36a17c678eSDavid Greenman 
37a17c678eSDavid Greenman #include <sys/param.h>
38a17c678eSDavid Greenman #include <sys/systm.h>
39a17c678eSDavid Greenman #include <sys/mbuf.h>
40a17c678eSDavid Greenman #include <sys/malloc.h>
41a17c678eSDavid Greenman #include <sys/kernel.h>
424458ac71SBruce Evans #include <sys/socket.h>
43a17c678eSDavid Greenman 
44a17c678eSDavid Greenman #include <net/if.h>
45397f9dfeSDavid Greenman #include <net/if_dl.h>
46ba8c6fd5SDavid Greenman #include <net/if_media.h>
47a17c678eSDavid Greenman 
48a17c678eSDavid Greenman #ifdef NS
49a17c678eSDavid Greenman #include <netns/ns.h>
50a17c678eSDavid Greenman #include <netns/ns_if.h>
51a17c678eSDavid Greenman #endif
52a17c678eSDavid Greenman 
53a17c678eSDavid Greenman #include <net/bpf.h>
54a17c678eSDavid Greenman 
55ba8c6fd5SDavid Greenman #if defined(__NetBSD__)
56ba8c6fd5SDavid Greenman 
57ba8c6fd5SDavid Greenman #include <sys/ioctl.h>
58ba8c6fd5SDavid Greenman #include <sys/errno.h>
59ba8c6fd5SDavid Greenman #include <sys/device.h>
60ba8c6fd5SDavid Greenman 
61ba8c6fd5SDavid Greenman #include <net/if_dl.h>
62ba8c6fd5SDavid Greenman #include <net/if_ether.h>
63ba8c6fd5SDavid Greenman 
64ba8c6fd5SDavid Greenman #include <netinet/if_inarp.h>
65ba8c6fd5SDavid Greenman 
66ba8c6fd5SDavid Greenman #include <vm/vm.h>
67ba8c6fd5SDavid Greenman 
68ba8c6fd5SDavid Greenman #include <machine/cpu.h>
69ba8c6fd5SDavid Greenman #include <machine/bus.h>
70ba8c6fd5SDavid Greenman #include <machine/intr.h>
71ba8c6fd5SDavid Greenman 
72ba8c6fd5SDavid Greenman #include <dev/pci/if_fxpreg.h>
73ba8c6fd5SDavid Greenman #include <dev/pci/if_fxpvar.h>
74ba8c6fd5SDavid Greenman 
75ba8c6fd5SDavid Greenman #include <dev/pci/pcivar.h>
76ba8c6fd5SDavid Greenman #include <dev/pci/pcireg.h>
77ba8c6fd5SDavid Greenman #include <dev/pci/pcidevs.h>
78ba8c6fd5SDavid Greenman 
79ba8c6fd5SDavid Greenman 
80ba8c6fd5SDavid Greenman #else /* __FreeBSD__ */
81ba8c6fd5SDavid Greenman 
82ba8c6fd5SDavid Greenman #include <sys/sockio.h>
836182fdbdSPeter Wemm #include <sys/bus.h>
846182fdbdSPeter Wemm #include <machine/bus.h>
856182fdbdSPeter Wemm #include <sys/rman.h>
866182fdbdSPeter Wemm #include <machine/resource.h>
8787807fdeSChuck Paterson #include <sys/proc.h>
880f4dc94cSChuck Paterson #include <machine/mutex.h>
89ba8c6fd5SDavid Greenman 
901d5e9e22SEivind Eklund #include <net/ethernet.h>
911d5e9e22SEivind Eklund #include <net/if_arp.h>
92ba8c6fd5SDavid Greenman 
93dfe61cf1SDavid Greenman #include <vm/vm.h>		/* for vtophys */
94efeaf95aSDavid Greenman #include <vm/pmap.h>		/* for vtophys */
95dfe61cf1SDavid Greenman #include <machine/clock.h>	/* for DELAY */
96a17c678eSDavid Greenman 
97a17c678eSDavid Greenman #include <pci/pcivar.h>
98df373873SWes Peters #include <pci/pcireg.h>		/* for PCIM_CMD_xxx */
99a17c678eSDavid Greenman #include <pci/if_fxpreg.h>
100ba8c6fd5SDavid Greenman #include <pci/if_fxpvar.h>
101a17c678eSDavid Greenman 
102ba8c6fd5SDavid Greenman #endif /* __NetBSD__ */
103a17c678eSDavid Greenman 
1044fc1dda9SAndrew Gallatin #ifdef __alpha__		/* XXX */
1054fc1dda9SAndrew Gallatin /* XXX XXX NEED REAL DMA MAPPING SUPPORT XXX XXX */
1064fc1dda9SAndrew Gallatin #undef vtophys
1074fc1dda9SAndrew Gallatin #define	vtophys(va)	alpha_XXX_dmamap((vm_offset_t)(va))
1084fc1dda9SAndrew Gallatin #endif /* __alpha__ */
1094fc1dda9SAndrew Gallatin 
110ba8c6fd5SDavid Greenman /*
111ba8c6fd5SDavid Greenman  * NOTE!  On the Alpha, we have an alignment constraint.  The
112ba8c6fd5SDavid Greenman  * card DMAs the packet immediately following the RFA.  However,
113ba8c6fd5SDavid Greenman  * the first thing in the packet is a 14-byte Ethernet header.
114ba8c6fd5SDavid Greenman  * This means that the packet is misaligned.  To compensate,
115ba8c6fd5SDavid Greenman  * we actually offset the RFA 2 bytes into the cluster.  This
116ba8c6fd5SDavid Greenman  * alignes the packet after the Ethernet header at a 32-bit
117ba8c6fd5SDavid Greenman  * boundary.  HOWEVER!  This means that the RFA is misaligned!
118ba8c6fd5SDavid Greenman  */
119ba8c6fd5SDavid Greenman #define	RFA_ALIGNMENT_FUDGE	2
120ba8c6fd5SDavid Greenman 
121ba8c6fd5SDavid Greenman /*
122ba8c6fd5SDavid Greenman  * Inline function to copy a 16-bit aligned 32-bit quantity.
123ba8c6fd5SDavid Greenman  */
124ba8c6fd5SDavid Greenman static __inline void fxp_lwcopy __P((volatile u_int32_t *,
125ba8c6fd5SDavid Greenman 	volatile u_int32_t *));
126ba8c6fd5SDavid Greenman static __inline void
127ba8c6fd5SDavid Greenman fxp_lwcopy(src, dst)
128ba8c6fd5SDavid Greenman 	volatile u_int32_t *src, *dst;
129ba8c6fd5SDavid Greenman {
130aed53495SDavid Greenman #ifdef __i386__
131aed53495SDavid Greenman 	*dst = *src;
132aed53495SDavid Greenman #else
133fe08c21aSMatthew Dillon 	volatile u_int16_t *a = (volatile u_int16_t *)src;
134fe08c21aSMatthew Dillon 	volatile u_int16_t *b = (volatile u_int16_t *)dst;
135ba8c6fd5SDavid Greenman 
136ba8c6fd5SDavid Greenman 	b[0] = a[0];
137ba8c6fd5SDavid Greenman 	b[1] = a[1];
138aed53495SDavid Greenman #endif
139ba8c6fd5SDavid Greenman }
140a17c678eSDavid Greenman 
141a17c678eSDavid Greenman /*
142a17c678eSDavid Greenman  * Template for default configuration parameters.
143a17c678eSDavid Greenman  * See struct fxp_cb_config for the bit definitions.
144a17c678eSDavid Greenman  */
145a17c678eSDavid Greenman static u_char fxp_cb_config_template[] = {
146a17c678eSDavid Greenman 	0x0, 0x0,		/* cb_status */
147a17c678eSDavid Greenman 	0x80, 0x2,		/* cb_command */
148a17c678eSDavid Greenman 	0xff, 0xff, 0xff, 0xff,	/* link_addr */
149a17c678eSDavid Greenman 	0x16,	/*  0 */
150a17c678eSDavid Greenman 	0x8,	/*  1 */
151a17c678eSDavid Greenman 	0x0,	/*  2 */
152a17c678eSDavid Greenman 	0x0,	/*  3 */
153a17c678eSDavid Greenman 	0x0,	/*  4 */
154a17c678eSDavid Greenman 	0x80,	/*  5 */
155a17c678eSDavid Greenman 	0xb2,	/*  6 */
156a17c678eSDavid Greenman 	0x3,	/*  7 */
157a17c678eSDavid Greenman 	0x1,	/*  8 */
158a17c678eSDavid Greenman 	0x0,	/*  9 */
159a17c678eSDavid Greenman 	0x26,	/* 10 */
160a17c678eSDavid Greenman 	0x0,	/* 11 */
161a17c678eSDavid Greenman 	0x60,	/* 12 */
162a17c678eSDavid Greenman 	0x0,	/* 13 */
163a17c678eSDavid Greenman 	0xf2,	/* 14 */
164a17c678eSDavid Greenman 	0x48,	/* 15 */
165a17c678eSDavid Greenman 	0x0,	/* 16 */
166a17c678eSDavid Greenman 	0x40,	/* 17 */
167a17c678eSDavid Greenman 	0xf3,	/* 18 */
168a17c678eSDavid Greenman 	0x0,	/* 19 */
169a17c678eSDavid Greenman 	0x3f,	/* 20 */
170397f9dfeSDavid Greenman 	0x5	/* 21 */
171a17c678eSDavid Greenman };
172a17c678eSDavid Greenman 
173ba8c6fd5SDavid Greenman /* Supported media types. */
174ba8c6fd5SDavid Greenman struct fxp_supported_media {
175ba8c6fd5SDavid Greenman 	const int	fsm_phy;	/* PHY type */
176ba8c6fd5SDavid Greenman 	const int	*fsm_media;	/* the media array */
177ba8c6fd5SDavid Greenman 	const int	fsm_nmedia;	/* the number of supported media */
178ba8c6fd5SDavid Greenman 	const int	fsm_defmedia;	/* default media for this PHY */
179ba8c6fd5SDavid Greenman };
180ba8c6fd5SDavid Greenman 
181303b270bSEivind Eklund static const int fxp_media_standard[] = {
182ba8c6fd5SDavid Greenman 	IFM_ETHER|IFM_10_T,
183ba8c6fd5SDavid Greenman 	IFM_ETHER|IFM_10_T|IFM_FDX,
184ba8c6fd5SDavid Greenman 	IFM_ETHER|IFM_100_TX,
185ba8c6fd5SDavid Greenman 	IFM_ETHER|IFM_100_TX|IFM_FDX,
186ba8c6fd5SDavid Greenman 	IFM_ETHER|IFM_AUTO,
187ba8c6fd5SDavid Greenman };
188ba8c6fd5SDavid Greenman #define	FXP_MEDIA_STANDARD_DEFMEDIA	(IFM_ETHER|IFM_AUTO)
189ba8c6fd5SDavid Greenman 
190303b270bSEivind Eklund static const int fxp_media_default[] = {
191ba8c6fd5SDavid Greenman 	IFM_ETHER|IFM_MANUAL,		/* XXX IFM_AUTO ? */
192ba8c6fd5SDavid Greenman };
193ba8c6fd5SDavid Greenman #define	FXP_MEDIA_DEFAULT_DEFMEDIA	(IFM_ETHER|IFM_MANUAL)
194ba8c6fd5SDavid Greenman 
195303b270bSEivind Eklund static const struct fxp_supported_media fxp_media[] = {
196ba8c6fd5SDavid Greenman 	{ FXP_PHY_DP83840, fxp_media_standard,
197ba8c6fd5SDavid Greenman 	  sizeof(fxp_media_standard) / sizeof(fxp_media_standard[0]),
198ba8c6fd5SDavid Greenman 	  FXP_MEDIA_STANDARD_DEFMEDIA },
199ba8c6fd5SDavid Greenman 	{ FXP_PHY_DP83840A, fxp_media_standard,
200ba8c6fd5SDavid Greenman 	  sizeof(fxp_media_standard) / sizeof(fxp_media_standard[0]),
201ba8c6fd5SDavid Greenman 	  FXP_MEDIA_STANDARD_DEFMEDIA },
20292924291SDavid Greenman 	{ FXP_PHY_82553A, fxp_media_standard,
20392924291SDavid Greenman 	  sizeof(fxp_media_standard) / sizeof(fxp_media_standard[0]),
20492924291SDavid Greenman 	  FXP_MEDIA_STANDARD_DEFMEDIA },
20592924291SDavid Greenman 	{ FXP_PHY_82553C, fxp_media_standard,
20692924291SDavid Greenman 	  sizeof(fxp_media_standard) / sizeof(fxp_media_standard[0]),
20792924291SDavid Greenman 	  FXP_MEDIA_STANDARD_DEFMEDIA },
208ba8c6fd5SDavid Greenman 	{ FXP_PHY_82555, fxp_media_standard,
209ba8c6fd5SDavid Greenman 	  sizeof(fxp_media_standard) / sizeof(fxp_media_standard[0]),
210ba8c6fd5SDavid Greenman 	  FXP_MEDIA_STANDARD_DEFMEDIA },
21192924291SDavid Greenman 	{ FXP_PHY_82555B, fxp_media_standard,
21292924291SDavid Greenman 	  sizeof(fxp_media_standard) / sizeof(fxp_media_standard[0]),
21392924291SDavid Greenman 	  FXP_MEDIA_STANDARD_DEFMEDIA },
214ba8c6fd5SDavid Greenman 	{ FXP_PHY_80C24, fxp_media_default,
215ba8c6fd5SDavid Greenman 	  sizeof(fxp_media_default) / sizeof(fxp_media_default[0]),
216ba8c6fd5SDavid Greenman 	  FXP_MEDIA_DEFAULT_DEFMEDIA },
217ba8c6fd5SDavid Greenman };
218ba8c6fd5SDavid Greenman #define	NFXPMEDIA (sizeof(fxp_media) / sizeof(fxp_media[0]))
219ba8c6fd5SDavid Greenman 
220ba8c6fd5SDavid Greenman static int fxp_mediachange	__P((struct ifnet *));
221ba8c6fd5SDavid Greenman static void fxp_mediastatus	__P((struct ifnet *, struct ifmediareq *));
222303b270bSEivind Eklund static void fxp_set_media	__P((struct fxp_softc *, int));
223c1087c13SBruce Evans static __inline void fxp_scb_wait __P((struct fxp_softc *));
2247dced78aSDavid Greenman static __inline void fxp_dma_wait __P((volatile u_int16_t *, struct fxp_softc *sc));
225ba8c6fd5SDavid Greenman static FXP_INTR_TYPE fxp_intr	__P((void *));
226a17c678eSDavid Greenman static void fxp_start		__P((struct ifnet *));
227ba8c6fd5SDavid Greenman static int fxp_ioctl		__P((struct ifnet *,
228ba8c6fd5SDavid Greenman 				     FXP_IOCTLCMD_TYPE, caddr_t));
229fb583156SDavid Greenman static void fxp_init		__P((void *));
2304a5f1499SDavid Greenman static void fxp_stop		__P((struct fxp_softc *));
2314a5f1499SDavid Greenman static void fxp_watchdog	__P((struct ifnet *));
232a17c678eSDavid Greenman static int fxp_add_rfabuf	__P((struct fxp_softc *, struct mbuf *));
233ba8c6fd5SDavid Greenman static int fxp_mdi_read		__P((struct fxp_softc *, int, int));
234ba8c6fd5SDavid Greenman static void fxp_mdi_write	__P((struct fxp_softc *, int, int, int));
235e9bf2fa7SDavid Greenman static void fxp_autosize_eeprom __P((struct fxp_softc *));
236ba8c6fd5SDavid Greenman static void fxp_read_eeprom	__P((struct fxp_softc *, u_int16_t *,
237ba8c6fd5SDavid Greenman 				     int, int));
238ba8c6fd5SDavid Greenman static int fxp_attach_common	__P((struct fxp_softc *, u_int8_t *));
239303b270bSEivind Eklund static void fxp_stats_update	__P((void *));
240397f9dfeSDavid Greenman static void fxp_mc_setup	__P((struct fxp_softc *));
241a17c678eSDavid Greenman 
242a17c678eSDavid Greenman /*
243f9be9005SDavid Greenman  * Set initial transmit threshold at 64 (512 bytes). This is
244f9be9005SDavid Greenman  * increased by 64 (512 bytes) at a time, to maximum of 192
245f9be9005SDavid Greenman  * (1536 bytes), if an underrun occurs.
246f9be9005SDavid Greenman  */
247f9be9005SDavid Greenman static int tx_threshold = 64;
248f9be9005SDavid Greenman 
249f9be9005SDavid Greenman /*
250a17c678eSDavid Greenman  * Number of transmit control blocks. This determines the number
251a17c678eSDavid Greenman  * of transmit buffers that can be chained in the CB list.
252a17c678eSDavid Greenman  * This must be a power of two.
253a17c678eSDavid Greenman  */
2541cd443acSDavid Greenman #define FXP_NTXCB	128
255a17c678eSDavid Greenman 
256a17c678eSDavid Greenman /*
2573114fdb4SDavid Greenman  * Number of completed TX commands at which point an interrupt
2583114fdb4SDavid Greenman  * will be generated to garbage collect the attached buffers.
2593114fdb4SDavid Greenman  * Must be at least one less than FXP_NTXCB, and should be
2603114fdb4SDavid Greenman  * enough less so that the transmitter doesn't becomes idle
2613114fdb4SDavid Greenman  * during the buffer rundown (which would reduce performance).
2623114fdb4SDavid Greenman  */
2633114fdb4SDavid Greenman #define FXP_CXINT_THRESH 120
2643114fdb4SDavid Greenman 
2653114fdb4SDavid Greenman /*
266a17c678eSDavid Greenman  * TxCB list index mask. This is used to do list wrap-around.
267a17c678eSDavid Greenman  */
268a17c678eSDavid Greenman #define FXP_TXCB_MASK	(FXP_NTXCB - 1)
269a17c678eSDavid Greenman 
270a17c678eSDavid Greenman /*
271a17c678eSDavid Greenman  * Number of receive frame area buffers. These are large so chose
272a17c678eSDavid Greenman  * wisely.
273a17c678eSDavid Greenman  */
2746f5818b0SDavid Greenman #define FXP_NRFABUFS	64
275a17c678eSDavid Greenman 
276dfe61cf1SDavid Greenman /*
277397f9dfeSDavid Greenman  * Maximum number of seconds that the receiver can be idle before we
278397f9dfeSDavid Greenman  * assume it's dead and attempt to reset it by reprogramming the
279397f9dfeSDavid Greenman  * multicast filter. This is part of a work-around for a bug in the
280397f9dfeSDavid Greenman  * NIC. See fxp_stats_update().
281397f9dfeSDavid Greenman  */
282397f9dfeSDavid Greenman #define FXP_MAX_RX_IDLE	15
283397f9dfeSDavid Greenman 
284397f9dfeSDavid Greenman /*
285dfe61cf1SDavid Greenman  * Wait for the previous command to be accepted (but not necessarily
286dfe61cf1SDavid Greenman  * completed).
287dfe61cf1SDavid Greenman  */
288c1087c13SBruce Evans static __inline void
289ba8c6fd5SDavid Greenman fxp_scb_wait(sc)
290ba8c6fd5SDavid Greenman 	struct fxp_softc *sc;
291a17c678eSDavid Greenman {
292a17c678eSDavid Greenman 	int i = 10000;
293a17c678eSDavid Greenman 
2947dced78aSDavid Greenman 	while (CSR_READ_1(sc, FXP_CSR_SCB_COMMAND) && --i)
2957dced78aSDavid Greenman 		DELAY(2);
2967dced78aSDavid Greenman 	if (i == 0)
2977dced78aSDavid Greenman 		printf(FXP_FORMAT ": SCB timeout\n", FXP_ARGS(sc));
2987dced78aSDavid Greenman }
2997dced78aSDavid Greenman 
3007dced78aSDavid Greenman static __inline void
3017dced78aSDavid Greenman fxp_dma_wait(status, sc)
3027dced78aSDavid Greenman 	volatile u_int16_t *status;
3037dced78aSDavid Greenman 	struct fxp_softc *sc;
3047dced78aSDavid Greenman {
3057dced78aSDavid Greenman 	int i = 10000;
3067dced78aSDavid Greenman 
3077dced78aSDavid Greenman 	while (!(*status & FXP_CB_STATUS_C) && --i)
3087dced78aSDavid Greenman 		DELAY(2);
3097dced78aSDavid Greenman 	if (i == 0)
3107dced78aSDavid Greenman 		printf(FXP_FORMAT ": DMA timeout\n", FXP_ARGS(sc));
311a17c678eSDavid Greenman }
312a17c678eSDavid Greenman 
313ba8c6fd5SDavid Greenman /*************************************************************
314ba8c6fd5SDavid Greenman  * Operating system-specific autoconfiguration glue
315ba8c6fd5SDavid Greenman  *************************************************************/
316ba8c6fd5SDavid Greenman 
317ba8c6fd5SDavid Greenman #if defined(__NetBSD__)
318ba8c6fd5SDavid Greenman 
319ba8c6fd5SDavid Greenman #ifdef __BROKEN_INDIRECT_CONFIG
320ba8c6fd5SDavid Greenman static int fxp_match __P((struct device *, void *, void *));
321ba8c6fd5SDavid Greenman #else
322ba8c6fd5SDavid Greenman static int fxp_match __P((struct device *, struct cfdata *, void *));
323ba8c6fd5SDavid Greenman #endif
324ba8c6fd5SDavid Greenman static void fxp_attach __P((struct device *, struct device *, void *));
325ba8c6fd5SDavid Greenman 
326ba8c6fd5SDavid Greenman static void	fxp_shutdown __P((void *));
327ba8c6fd5SDavid Greenman 
328ba8c6fd5SDavid Greenman /* Compensate for lack of a generic ether_ioctl() */
329ba8c6fd5SDavid Greenman static int	fxp_ether_ioctl __P((struct ifnet *,
330ba8c6fd5SDavid Greenman 				    FXP_IOCTLCMD_TYPE, caddr_t));
331ba8c6fd5SDavid Greenman #define	ether_ioctl	fxp_ether_ioctl
332ba8c6fd5SDavid Greenman 
333ba8c6fd5SDavid Greenman struct cfattach fxp_ca = {
334ba8c6fd5SDavid Greenman 	sizeof(struct fxp_softc), fxp_match, fxp_attach
335ba8c6fd5SDavid Greenman };
336ba8c6fd5SDavid Greenman 
337ba8c6fd5SDavid Greenman struct cfdriver fxp_cd = {
338ba8c6fd5SDavid Greenman 	NULL, "fxp", DV_IFNET
339ba8c6fd5SDavid Greenman };
340ba8c6fd5SDavid Greenman 
341ba8c6fd5SDavid Greenman /*
342ba8c6fd5SDavid Greenman  * Check if a device is an 82557.
343ba8c6fd5SDavid Greenman  */
344ba8c6fd5SDavid Greenman static int
345ba8c6fd5SDavid Greenman fxp_match(parent, match, aux)
346ba8c6fd5SDavid Greenman 	struct device *parent;
347ba8c6fd5SDavid Greenman #ifdef __BROKEN_INDIRECT_CONFIG
348ba8c6fd5SDavid Greenman 	void *match;
349ba8c6fd5SDavid Greenman #else
350ba8c6fd5SDavid Greenman 	struct cfdata *match;
351ba8c6fd5SDavid Greenman #endif
352ba8c6fd5SDavid Greenman 	void *aux;
353ba8c6fd5SDavid Greenman {
354ba8c6fd5SDavid Greenman 	struct pci_attach_args *pa = aux;
355ba8c6fd5SDavid Greenman 
356ba8c6fd5SDavid Greenman 	if (PCI_VENDOR(pa->pa_id) != PCI_VENDOR_INTEL)
357ba8c6fd5SDavid Greenman 		return (0);
358ba8c6fd5SDavid Greenman 
359ba8c6fd5SDavid Greenman 	switch (PCI_PRODUCT(pa->pa_id)) {
360ba8c6fd5SDavid Greenman 	case PCI_PRODUCT_INTEL_82557:
361ba8c6fd5SDavid Greenman 		return (1);
362ba8c6fd5SDavid Greenman 	}
363ba8c6fd5SDavid Greenman 
364ba8c6fd5SDavid Greenman 	return (0);
365ba8c6fd5SDavid Greenman }
366ba8c6fd5SDavid Greenman 
367ba8c6fd5SDavid Greenman static void
368ba8c6fd5SDavid Greenman fxp_attach(parent, self, aux)
369ba8c6fd5SDavid Greenman 	struct device *parent, *self;
370ba8c6fd5SDavid Greenman 	void *aux;
371ba8c6fd5SDavid Greenman {
372ba8c6fd5SDavid Greenman 	struct fxp_softc *sc = (struct fxp_softc *)self;
373ba8c6fd5SDavid Greenman 	struct pci_attach_args *pa = aux;
374ba8c6fd5SDavid Greenman 	pci_chipset_tag_t pc = pa->pa_pc;
375ba8c6fd5SDavid Greenman 	pci_intr_handle_t ih;
376ba8c6fd5SDavid Greenman 	const char *intrstr = NULL;
377ba8c6fd5SDavid Greenman 	u_int8_t enaddr[6];
378ba8c6fd5SDavid Greenman 	struct ifnet *ifp;
379ba8c6fd5SDavid Greenman 
380ba8c6fd5SDavid Greenman 	/*
381ba8c6fd5SDavid Greenman 	 * Map control/status registers.
382ba8c6fd5SDavid Greenman 	 */
383ba8c6fd5SDavid Greenman 	if (pci_mapreg_map(pa, FXP_PCI_MMBA, PCI_MAPREG_TYPE_MEM, 0,
384ba8c6fd5SDavid Greenman 	    &sc->sc_st, &sc->sc_sh, NULL, NULL)) {
385ba8c6fd5SDavid Greenman 		printf(": can't map registers\n");
386ba8c6fd5SDavid Greenman 		return;
387ba8c6fd5SDavid Greenman 	}
388ba8c6fd5SDavid Greenman 	printf(": Intel EtherExpress Pro 10/100B Ethernet\n");
389ba8c6fd5SDavid Greenman 
390ba8c6fd5SDavid Greenman 	/*
391ba8c6fd5SDavid Greenman 	 * Allocate our interrupt.
392ba8c6fd5SDavid Greenman 	 */
393ba8c6fd5SDavid Greenman 	if (pci_intr_map(pc, pa->pa_intrtag, pa->pa_intrpin,
394ba8c6fd5SDavid Greenman 	    pa->pa_intrline, &ih)) {
395ba8c6fd5SDavid Greenman 		printf("%s: couldn't map interrupt\n", sc->sc_dev.dv_xname);
396ba8c6fd5SDavid Greenman 		return;
397ba8c6fd5SDavid Greenman 	}
398ba8c6fd5SDavid Greenman 	intrstr = pci_intr_string(pc, ih);
399ba8c6fd5SDavid Greenman 	sc->sc_ih = pci_intr_establish(pc, ih, IPL_NET, fxp_intr, sc);
400ba8c6fd5SDavid Greenman 	if (sc->sc_ih == NULL) {
401ba8c6fd5SDavid Greenman 		printf("%s: couldn't establish interrupt",
402ba8c6fd5SDavid Greenman 		    sc->sc_dev.dv_xname);
403ba8c6fd5SDavid Greenman 		if (intrstr != NULL)
404ba8c6fd5SDavid Greenman 			printf(" at %s", intrstr);
405ba8c6fd5SDavid Greenman 		printf("\n");
406ba8c6fd5SDavid Greenman 		return;
407ba8c6fd5SDavid Greenman 	}
408ba8c6fd5SDavid Greenman 	printf("%s: interrupting at %s\n", sc->sc_dev.dv_xname, intrstr);
409ba8c6fd5SDavid Greenman 
410ba8c6fd5SDavid Greenman 	/* Do generic parts of attach. */
411ba8c6fd5SDavid Greenman 	if (fxp_attach_common(sc, enaddr)) {
412ba8c6fd5SDavid Greenman 		/* Failed! */
413ba8c6fd5SDavid Greenman 		return;
414ba8c6fd5SDavid Greenman 	}
415ba8c6fd5SDavid Greenman 
416ba8c6fd5SDavid Greenman 	printf("%s: Ethernet address %s%s\n", sc->sc_dev.dv_xname,
417ba8c6fd5SDavid Greenman 	    ether_sprintf(enaddr), sc->phy_10Mbps_only ? ", 10Mbps" : "");
418ba8c6fd5SDavid Greenman 
419ba8c6fd5SDavid Greenman 	ifp = &sc->sc_ethercom.ec_if;
420ba8c6fd5SDavid Greenman 	bcopy(sc->sc_dev.dv_xname, ifp->if_xname, IFNAMSIZ);
421ba8c6fd5SDavid Greenman 	ifp->if_softc = sc;
422ba8c6fd5SDavid Greenman 	ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
423ba8c6fd5SDavid Greenman 	ifp->if_ioctl = fxp_ioctl;
424ba8c6fd5SDavid Greenman 	ifp->if_start = fxp_start;
425ba8c6fd5SDavid Greenman 	ifp->if_watchdog = fxp_watchdog;
426ba8c6fd5SDavid Greenman 
427ba8c6fd5SDavid Greenman 	/*
428ba8c6fd5SDavid Greenman 	 * Attach the interface.
429ba8c6fd5SDavid Greenman 	 */
430ba8c6fd5SDavid Greenman 	if_attach(ifp);
431483b9871SDavid Greenman 	/*
4323114fdb4SDavid Greenman 	 * Let the system queue as many packets as we have available
4333114fdb4SDavid Greenman 	 * TX descriptors.
434483b9871SDavid Greenman 	 */
4353114fdb4SDavid Greenman 	ifp->if_snd.ifq_maxlen = FXP_NTXCB - 1;
436ba8c6fd5SDavid Greenman 	ether_ifattach(ifp, enaddr);
437ba8c6fd5SDavid Greenman 	bpfattach(&sc->sc_ethercom.ec_if.if_bpf, ifp, DLT_EN10MB,
438ba8c6fd5SDavid Greenman 	    sizeof(struct ether_header));
439ba8c6fd5SDavid Greenman 
440ba8c6fd5SDavid Greenman 	/*
441ba8c6fd5SDavid Greenman 	 * Add shutdown hook so that DMA is disabled prior to reboot. Not
442ba8c6fd5SDavid Greenman 	 * doing do could allow DMA to corrupt kernel memory during the
443ba8c6fd5SDavid Greenman 	 * reboot before the driver initializes.
444ba8c6fd5SDavid Greenman 	 */
445ba8c6fd5SDavid Greenman 	shutdownhook_establish(fxp_shutdown, sc);
446ba8c6fd5SDavid Greenman }
447ba8c6fd5SDavid Greenman 
448ba8c6fd5SDavid Greenman /*
449ba8c6fd5SDavid Greenman  * Device shutdown routine. Called at system shutdown after sync. The
450ba8c6fd5SDavid Greenman  * main purpose of this routine is to shut off receiver DMA so that
451ba8c6fd5SDavid Greenman  * kernel memory doesn't get clobbered during warmboot.
452ba8c6fd5SDavid Greenman  */
453ba8c6fd5SDavid Greenman static void
454ba8c6fd5SDavid Greenman fxp_shutdown(sc)
455ba8c6fd5SDavid Greenman 	void *sc;
456ba8c6fd5SDavid Greenman {
457ba8c6fd5SDavid Greenman 	fxp_stop((struct fxp_softc *) sc);
458ba8c6fd5SDavid Greenman }
459ba8c6fd5SDavid Greenman 
460ba8c6fd5SDavid Greenman static int
461ba8c6fd5SDavid Greenman fxp_ether_ioctl(ifp, cmd, data)
462ba8c6fd5SDavid Greenman 	struct ifnet *ifp;
463ba8c6fd5SDavid Greenman 	FXP_IOCTLCMD_TYPE cmd;
464ba8c6fd5SDavid Greenman 	caddr_t data;
465ba8c6fd5SDavid Greenman {
466ba8c6fd5SDavid Greenman 	struct ifaddr *ifa = (struct ifaddr *) data;
467ba8c6fd5SDavid Greenman 	struct fxp_softc *sc = ifp->if_softc;
468ba8c6fd5SDavid Greenman 
469ba8c6fd5SDavid Greenman 	switch (cmd) {
470ba8c6fd5SDavid Greenman 	case SIOCSIFADDR:
471ba8c6fd5SDavid Greenman 		ifp->if_flags |= IFF_UP;
472ba8c6fd5SDavid Greenman 
473ba8c6fd5SDavid Greenman 		switch (ifa->ifa_addr->sa_family) {
474ba8c6fd5SDavid Greenman #ifdef INET
475ba8c6fd5SDavid Greenman 		case AF_INET:
476ba8c6fd5SDavid Greenman 			fxp_init(sc);
477ba8c6fd5SDavid Greenman 			arp_ifinit(ifp, ifa);
478ba8c6fd5SDavid Greenman 			break;
479ba8c6fd5SDavid Greenman #endif
480ba8c6fd5SDavid Greenman #ifdef NS
481ba8c6fd5SDavid Greenman 		case AF_NS:
482ba8c6fd5SDavid Greenman 		    {
483ba8c6fd5SDavid Greenman 			 register struct ns_addr *ina = &IA_SNS(ifa)->sns_addr;
484ba8c6fd5SDavid Greenman 
485ba8c6fd5SDavid Greenman 			 if (ns_nullhost(*ina))
486ba8c6fd5SDavid Greenman 				ina->x_host = *(union ns_host *)
487ba8c6fd5SDavid Greenman 				    LLADDR(ifp->if_sadl);
488ba8c6fd5SDavid Greenman 			 else
489ba8c6fd5SDavid Greenman 				bcopy(ina->x_host.c_host, LLADDR(ifp->if_sadl),
490ba8c6fd5SDavid Greenman 				    ifp->if_addrlen);
491ba8c6fd5SDavid Greenman 			 /* Set new address. */
492ba8c6fd5SDavid Greenman 			 fxp_init(sc);
493ba8c6fd5SDavid Greenman 			 break;
494ba8c6fd5SDavid Greenman 		    }
495ba8c6fd5SDavid Greenman #endif
496ba8c6fd5SDavid Greenman 		default:
497ba8c6fd5SDavid Greenman 			fxp_init(sc);
498ba8c6fd5SDavid Greenman 			break;
499ba8c6fd5SDavid Greenman 		}
500ba8c6fd5SDavid Greenman 		break;
501ba8c6fd5SDavid Greenman 
502ba8c6fd5SDavid Greenman 	default:
503ba8c6fd5SDavid Greenman 		return (EINVAL);
504ba8c6fd5SDavid Greenman 	}
505ba8c6fd5SDavid Greenman 
506ba8c6fd5SDavid Greenman 	return (0);
507ba8c6fd5SDavid Greenman }
508ba8c6fd5SDavid Greenman 
509ba8c6fd5SDavid Greenman #else /* __FreeBSD__ */
510ba8c6fd5SDavid Greenman 
511dfe61cf1SDavid Greenman /*
512dfe61cf1SDavid Greenman  * Return identification string if this is device is ours.
513dfe61cf1SDavid Greenman  */
5146182fdbdSPeter Wemm static int
5156182fdbdSPeter Wemm fxp_probe(device_t dev)
516a17c678eSDavid Greenman {
51755ce7b51SDavid Greenman 	if (pci_get_vendor(dev) == FXP_VENDORID_INTEL) {
51855ce7b51SDavid Greenman 		switch (pci_get_device(dev)) {
51955ce7b51SDavid Greenman 
52055ce7b51SDavid Greenman 		case FXP_DEVICEID_i82557:
52155ce7b51SDavid Greenman 			device_set_desc(dev, "Intel Pro 10/100B/100+ Ethernet");
5226182fdbdSPeter Wemm 			return 0;
52355ce7b51SDavid Greenman 		case FXP_DEVICEID_i82559:
524dd68ef16SPeter Wemm 			device_set_desc(dev, "Intel InBusiness 10/100 Ethernet");
525dd68ef16SPeter Wemm 			return 0;
52655ce7b51SDavid Greenman 		case FXP_DEVICEID_i82559ER:
52755ce7b51SDavid Greenman 			device_set_desc(dev, "Intel Embedded 10/100 Ethernet");
52855ce7b51SDavid Greenman 			return 0;
52955ce7b51SDavid Greenman 		default:
53055ce7b51SDavid Greenman 			break;
53155ce7b51SDavid Greenman 		}
532dd68ef16SPeter Wemm 	}
533a17c678eSDavid Greenman 
5346182fdbdSPeter Wemm 	return ENXIO;
5356182fdbdSPeter Wemm }
5366182fdbdSPeter Wemm 
5376182fdbdSPeter Wemm static int
5386182fdbdSPeter Wemm fxp_attach(device_t dev)
539a17c678eSDavid Greenman {
5406182fdbdSPeter Wemm 	int error = 0;
5416182fdbdSPeter Wemm 	struct fxp_softc *sc = device_get_softc(dev);
542ba8c6fd5SDavid Greenman 	struct ifnet *ifp;
5430f4dc94cSChuck Paterson 	FXP_SPLVAR(s)
544df373873SWes Peters 	u_long val;
5456182fdbdSPeter Wemm 	int rid;
546a17c678eSDavid Greenman 
5470f4dc94cSChuck Paterson #if !defined(__NetBSD__)
5480f4dc94cSChuck Paterson 	mtx_init(&sc->sc_mtx, "fxp", MTX_DEF);
5490f4dc94cSChuck Paterson #endif
5506c951b44SJustin T. Gibbs 	callout_handle_init(&sc->stat_ch);
551a17c678eSDavid Greenman 
5520f4dc94cSChuck Paterson 	FXP_LOCK(sc, s);
553a17c678eSDavid Greenman 
554dfe61cf1SDavid Greenman 	/*
555df373873SWes Peters 	 * Enable bus mastering.
556df373873SWes Peters 	 */
5576182fdbdSPeter Wemm 	val = pci_read_config(dev, PCIR_COMMAND, 2);
558df373873SWes Peters 	val |= (PCIM_CMD_MEMEN|PCIM_CMD_BUSMASTEREN);
5596182fdbdSPeter Wemm 	pci_write_config(dev, PCIR_COMMAND, val, 2);
560df373873SWes Peters 
561df373873SWes Peters 	/*
562dfe61cf1SDavid Greenman 	 * Map control/status registers.
563dfe61cf1SDavid Greenman 	 */
5646182fdbdSPeter Wemm 	rid = FXP_PCI_MMBA;
5656182fdbdSPeter Wemm 	sc->mem = bus_alloc_resource(dev, SYS_RES_MEMORY, &rid,
5666182fdbdSPeter Wemm 				     0, ~0, 1, RF_ACTIVE);
5676182fdbdSPeter Wemm 	if (!sc->mem) {
5686182fdbdSPeter Wemm 		device_printf(dev, "could not map memory\n");
5696182fdbdSPeter Wemm 		error = ENXIO;
570a17c678eSDavid Greenman 		goto fail;
571a17c678eSDavid Greenman         }
5724fc1dda9SAndrew Gallatin 
5734fc1dda9SAndrew Gallatin 	sc->sc_st = rman_get_bustag(sc->mem);
5744fc1dda9SAndrew Gallatin 	sc->sc_sh = rman_get_bushandle(sc->mem);
575a17c678eSDavid Greenman 
576a17c678eSDavid Greenman 	/*
577dfe61cf1SDavid Greenman 	 * Allocate our interrupt.
578dfe61cf1SDavid Greenman 	 */
5796182fdbdSPeter Wemm 	rid = 0;
5806182fdbdSPeter Wemm 	sc->irq = bus_alloc_resource(dev, SYS_RES_IRQ, &rid, 0, ~0, 1,
5816182fdbdSPeter Wemm 				 RF_SHAREABLE | RF_ACTIVE);
5826182fdbdSPeter Wemm 	if (sc->irq == NULL) {
5836182fdbdSPeter Wemm 		device_printf(dev, "could not map interrupt\n");
5846182fdbdSPeter Wemm 		error = ENXIO;
5856182fdbdSPeter Wemm 		goto fail;
5866182fdbdSPeter Wemm 	}
5876182fdbdSPeter Wemm 
588566643e3SDoug Rabson 	error = bus_setup_intr(dev, sc->irq, INTR_TYPE_NET,
589566643e3SDoug Rabson 			       fxp_intr, sc, &sc->ih);
5906182fdbdSPeter Wemm 	if (error) {
5916182fdbdSPeter Wemm 		device_printf(dev, "could not setup irq\n");
592a17c678eSDavid Greenman 		goto fail;
593a17c678eSDavid Greenman 	}
594a17c678eSDavid Greenman 
595ba8c6fd5SDavid Greenman 	/* Do generic parts of attach. */
596ba8c6fd5SDavid Greenman 	if (fxp_attach_common(sc, sc->arpcom.ac_enaddr)) {
597ba8c6fd5SDavid Greenman 		/* Failed! */
5986182fdbdSPeter Wemm 		bus_teardown_intr(dev, sc->irq, sc->ih);
5996182fdbdSPeter Wemm 		bus_release_resource(dev, SYS_RES_IRQ, 0, sc->irq);
6006182fdbdSPeter Wemm 		bus_release_resource(dev, SYS_RES_MEMORY, FXP_PCI_MMBA, sc->mem);
6016182fdbdSPeter Wemm 		error = ENXIO;
602ba8c6fd5SDavid Greenman 		goto fail;
603a17c678eSDavid Greenman 	}
604a17c678eSDavid Greenman 
6056182fdbdSPeter Wemm 	device_printf(dev, "Ethernet address %6D%s\n",
606ba8c6fd5SDavid Greenman 	    sc->arpcom.ac_enaddr, ":", sc->phy_10Mbps_only ? ", 10Mbps" : "");
607dccee1a1SDavid Greenman 
608a17c678eSDavid Greenman 	ifp = &sc->arpcom.ac_if;
6096182fdbdSPeter Wemm 	ifp->if_unit = device_get_unit(dev);
610a17c678eSDavid Greenman 	ifp->if_name = "fxp";
611a17c678eSDavid Greenman 	ifp->if_output = ether_output;
612a330e1f1SGary Palmer 	ifp->if_baudrate = 100000000;
613fb583156SDavid Greenman 	ifp->if_init = fxp_init;
614ba8c6fd5SDavid Greenman 	ifp->if_softc = sc;
615ba8c6fd5SDavid Greenman 	ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
616ba8c6fd5SDavid Greenman 	ifp->if_ioctl = fxp_ioctl;
617ba8c6fd5SDavid Greenman 	ifp->if_start = fxp_start;
618ba8c6fd5SDavid Greenman 	ifp->if_watchdog = fxp_watchdog;
619a17c678eSDavid Greenman 
620dfe61cf1SDavid Greenman 	/*
621dfe61cf1SDavid Greenman 	 * Attach the interface.
622dfe61cf1SDavid Greenman 	 */
62321b8ebd9SArchie Cobbs 	ether_ifattach(ifp, ETHER_BPF_SUPPORTED);
624483b9871SDavid Greenman 	/*
6253114fdb4SDavid Greenman 	 * Let the system queue as many packets as we have available
6263114fdb4SDavid Greenman 	 * TX descriptors.
627483b9871SDavid Greenman 	 */
6283114fdb4SDavid Greenman 	ifp->if_snd.ifq_maxlen = FXP_NTXCB - 1;
6294a684684SDavid Greenman 
6300f4dc94cSChuck Paterson 	FXP_UNLOCK(sc, s);
6316182fdbdSPeter Wemm 	return 0;
632a17c678eSDavid Greenman 
633a17c678eSDavid Greenman  fail:
6340f4dc94cSChuck Paterson 	FXP_UNLOCK(sc, s);
6350f4dc94cSChuck Paterson 	mtx_destroy(&sc->sc_mtx);
6366182fdbdSPeter Wemm 	return error;
6376182fdbdSPeter Wemm }
6386182fdbdSPeter Wemm 
6396182fdbdSPeter Wemm /*
6406182fdbdSPeter Wemm  * Detach interface.
6416182fdbdSPeter Wemm  */
6426182fdbdSPeter Wemm static int
6436182fdbdSPeter Wemm fxp_detach(device_t dev)
6446182fdbdSPeter Wemm {
6456182fdbdSPeter Wemm 	struct fxp_softc *sc = device_get_softc(dev);
6460f4dc94cSChuck Paterson 	FXP_SPLVAR(s)
6476182fdbdSPeter Wemm 
6480f4dc94cSChuck Paterson 	FXP_LOCK(sc, s);
6496182fdbdSPeter Wemm 
6506182fdbdSPeter Wemm 	/*
6516182fdbdSPeter Wemm 	 * Close down routes etc.
6526182fdbdSPeter Wemm 	 */
65321b8ebd9SArchie Cobbs 	ether_ifdetach(&sc->arpcom.ac_if, ETHER_BPF_SUPPORTED);
6546182fdbdSPeter Wemm 
6556182fdbdSPeter Wemm 	/*
6566182fdbdSPeter Wemm 	 * Stop DMA and drop transmit queue.
6576182fdbdSPeter Wemm 	 */
6586182fdbdSPeter Wemm 	fxp_stop(sc);
6596182fdbdSPeter Wemm 
6606182fdbdSPeter Wemm 	/*
6616182fdbdSPeter Wemm 	 * Deallocate resources.
6626182fdbdSPeter Wemm 	 */
6636182fdbdSPeter Wemm 	bus_teardown_intr(dev, sc->irq, sc->ih);
6646182fdbdSPeter Wemm 	bus_release_resource(dev, SYS_RES_IRQ, 0, sc->irq);
6656182fdbdSPeter Wemm 	bus_release_resource(dev, SYS_RES_MEMORY, FXP_PCI_MMBA, sc->mem);
6666182fdbdSPeter Wemm 
6676182fdbdSPeter Wemm 	/*
6686182fdbdSPeter Wemm 	 * Free all the receive buffers.
6696182fdbdSPeter Wemm 	 */
6706182fdbdSPeter Wemm 	if (sc->rfa_headm != NULL)
6716182fdbdSPeter Wemm 		m_freem(sc->rfa_headm);
6726182fdbdSPeter Wemm 
6736182fdbdSPeter Wemm 	/*
6746182fdbdSPeter Wemm 	 * Free all media structures.
6756182fdbdSPeter Wemm 	 */
6766182fdbdSPeter Wemm 	ifmedia_removeall(&sc->sc_media);
6776182fdbdSPeter Wemm 
6786182fdbdSPeter Wemm 	/*
6796182fdbdSPeter Wemm 	 * Free anciliary structures.
6806182fdbdSPeter Wemm 	 */
6816182fdbdSPeter Wemm 	free(sc->cbl_base, M_DEVBUF);
6826182fdbdSPeter Wemm 	free(sc->fxp_stats, M_DEVBUF);
6836182fdbdSPeter Wemm 	free(sc->mcsp, M_DEVBUF);
6846182fdbdSPeter Wemm 
6850f4dc94cSChuck Paterson 	FXP_UNLOCK(sc, s);
6866182fdbdSPeter Wemm 
6876182fdbdSPeter Wemm 	return 0;
688a17c678eSDavid Greenman }
689a17c678eSDavid Greenman 
690a17c678eSDavid Greenman /*
6914a684684SDavid Greenman  * Device shutdown routine. Called at system shutdown after sync. The
692a17c678eSDavid Greenman  * main purpose of this routine is to shut off receiver DMA so that
693a17c678eSDavid Greenman  * kernel memory doesn't get clobbered during warmboot.
694a17c678eSDavid Greenman  */
6956182fdbdSPeter Wemm static int
6966182fdbdSPeter Wemm fxp_shutdown(device_t dev)
697a17c678eSDavid Greenman {
6986182fdbdSPeter Wemm 	/*
6996182fdbdSPeter Wemm 	 * Make sure that DMA is disabled prior to reboot. Not doing
7006182fdbdSPeter Wemm 	 * do could allow DMA to corrupt kernel memory during the
7016182fdbdSPeter Wemm 	 * reboot before the driver initializes.
7026182fdbdSPeter Wemm 	 */
7036182fdbdSPeter Wemm 	fxp_stop((struct fxp_softc *) device_get_softc(dev));
7046182fdbdSPeter Wemm 	return 0;
705a17c678eSDavid Greenman }
706a17c678eSDavid Greenman 
7077dced78aSDavid Greenman /*
7087dced78aSDavid Greenman  * Device suspend routine.  Stop the interface and save some PCI
7097dced78aSDavid Greenman  * settings in case the BIOS doesn't restore them properly on
7107dced78aSDavid Greenman  * resume.
7117dced78aSDavid Greenman  */
7127dced78aSDavid Greenman static int
7137dced78aSDavid Greenman fxp_suspend(device_t dev)
7147dced78aSDavid Greenman {
7157dced78aSDavid Greenman 	struct fxp_softc *sc = device_get_softc(dev);
7162053b07dSDavid Greenman 	int i;
7172053b07dSDavid Greenman 	FXP_SPLVAR(s)
7187dced78aSDavid Greenman 
7192053b07dSDavid Greenman 	FXP_LOCK(sc, s);
7207dced78aSDavid Greenman 
7217dced78aSDavid Greenman 	fxp_stop(sc);
7227dced78aSDavid Greenman 
7237dced78aSDavid Greenman 	for (i=0; i<5; i++)
7247dced78aSDavid Greenman 		sc->saved_maps[i] = pci_read_config(dev, PCIR_MAPS + i*4, 4);
7257dced78aSDavid Greenman 	sc->saved_biosaddr = pci_read_config(dev, PCIR_BIOS, 4);
7267dced78aSDavid Greenman 	sc->saved_intline = pci_read_config(dev, PCIR_INTLINE, 1);
7277dced78aSDavid Greenman 	sc->saved_cachelnsz = pci_read_config(dev, PCIR_CACHELNSZ, 1);
7287dced78aSDavid Greenman 	sc->saved_lattimer = pci_read_config(dev, PCIR_LATTIMER, 1);
7297dced78aSDavid Greenman 
7307dced78aSDavid Greenman 	sc->suspended = 1;
7317dced78aSDavid Greenman 
7322053b07dSDavid Greenman 	FXP_UNLOCK(sc, s);
7337dced78aSDavid Greenman 
7347dced78aSDavid Greenman 	return 0;
7357dced78aSDavid Greenman }
7367dced78aSDavid Greenman 
7377dced78aSDavid Greenman /*
7387dced78aSDavid Greenman  * Device resume routine.  Restore some PCI settings in case the BIOS
7397dced78aSDavid Greenman  * doesn't, re-enable busmastering, and restart the interface if
7407dced78aSDavid Greenman  * appropriate.
7417dced78aSDavid Greenman  */
7427dced78aSDavid Greenman static int
7437dced78aSDavid Greenman fxp_resume(device_t dev)
7447dced78aSDavid Greenman {
7457dced78aSDavid Greenman 	struct fxp_softc *sc = device_get_softc(dev);
7467dced78aSDavid Greenman 	struct ifnet *ifp = &sc->sc_if;
7477dced78aSDavid Greenman 	u_int16_t pci_command;
7482053b07dSDavid Greenman 	int i;
7492053b07dSDavid Greenman 	FXP_SPLVAR(s)
7507dced78aSDavid Greenman 
7512053b07dSDavid Greenman 	FXP_LOCK(sc, s);
7527dced78aSDavid Greenman 
7537dced78aSDavid Greenman 	/* better way to do this? */
7547dced78aSDavid Greenman 	for (i=0; i<5; i++)
7557dced78aSDavid Greenman 		pci_write_config(dev, PCIR_MAPS + i*4, sc->saved_maps[i], 4);
7567dced78aSDavid Greenman 	pci_write_config(dev, PCIR_BIOS, sc->saved_biosaddr, 4);
7577dced78aSDavid Greenman 	pci_write_config(dev, PCIR_INTLINE, sc->saved_intline, 1);
7587dced78aSDavid Greenman 	pci_write_config(dev, PCIR_CACHELNSZ, sc->saved_cachelnsz, 1);
7597dced78aSDavid Greenman 	pci_write_config(dev, PCIR_LATTIMER, sc->saved_lattimer, 1);
7607dced78aSDavid Greenman 
7617dced78aSDavid Greenman 	/* reenable busmastering */
7627dced78aSDavid Greenman 	pci_command = pci_read_config(dev, PCIR_COMMAND, 2);
7637dced78aSDavid Greenman 	pci_command |= (PCIM_CMD_MEMEN|PCIM_CMD_BUSMASTEREN);
7647dced78aSDavid Greenman 	pci_write_config(dev, PCIR_COMMAND, pci_command, 2);
7657dced78aSDavid Greenman 
7667dced78aSDavid Greenman 	CSR_WRITE_4(sc, FXP_CSR_PORT, FXP_PORT_SELECTIVE_RESET);
7677dced78aSDavid Greenman 	DELAY(10);
7687dced78aSDavid Greenman 
7697dced78aSDavid Greenman 	/* reinitialize interface if necessary */
7707dced78aSDavid Greenman 	if (ifp->if_flags & IFF_UP)
7717dced78aSDavid Greenman 		fxp_init(sc);
7727dced78aSDavid Greenman 
7737dced78aSDavid Greenman 	sc->suspended = 0;
7747dced78aSDavid Greenman 
7752053b07dSDavid Greenman 	FXP_UNLOCK(sc, s);
7767dced78aSDavid Greenman 
7777dced78aSDavid Greenman 	return 0;
7787dced78aSDavid Greenman }
7797dced78aSDavid Greenman 
7806182fdbdSPeter Wemm static device_method_t fxp_methods[] = {
7816182fdbdSPeter Wemm 	/* Device interface */
7826182fdbdSPeter Wemm 	DEVMETHOD(device_probe,		fxp_probe),
7836182fdbdSPeter Wemm 	DEVMETHOD(device_attach,	fxp_attach),
7846182fdbdSPeter Wemm 	DEVMETHOD(device_detach,	fxp_detach),
7856182fdbdSPeter Wemm 	DEVMETHOD(device_shutdown,	fxp_shutdown),
7867dced78aSDavid Greenman 	DEVMETHOD(device_suspend,	fxp_suspend),
7877dced78aSDavid Greenman 	DEVMETHOD(device_resume,	fxp_resume),
7886182fdbdSPeter Wemm 
7896182fdbdSPeter Wemm 	{ 0, 0 }
7906182fdbdSPeter Wemm };
7916182fdbdSPeter Wemm 
7926182fdbdSPeter Wemm static driver_t fxp_driver = {
7936182fdbdSPeter Wemm 	"fxp",
7946182fdbdSPeter Wemm 	fxp_methods,
7956182fdbdSPeter Wemm 	sizeof(struct fxp_softc),
7966182fdbdSPeter Wemm };
7976182fdbdSPeter Wemm 
7986182fdbdSPeter Wemm static devclass_t fxp_devclass;
7996182fdbdSPeter Wemm 
8009e4c647cSBill Paul DRIVER_MODULE(if_fxp, pci, fxp_driver, fxp_devclass, 0, 0);
8016182fdbdSPeter Wemm 
802ba8c6fd5SDavid Greenman #endif /* __NetBSD__ */
803ba8c6fd5SDavid Greenman 
804ba8c6fd5SDavid Greenman /*************************************************************
805ba8c6fd5SDavid Greenman  * End of operating system-specific autoconfiguration glue
806ba8c6fd5SDavid Greenman  *************************************************************/
807ba8c6fd5SDavid Greenman 
808ba8c6fd5SDavid Greenman /*
809ba8c6fd5SDavid Greenman  * Do generic parts of attach.
810ba8c6fd5SDavid Greenman  */
811ba8c6fd5SDavid Greenman static int
812ba8c6fd5SDavid Greenman fxp_attach_common(sc, enaddr)
813ba8c6fd5SDavid Greenman 	struct fxp_softc *sc;
814ba8c6fd5SDavid Greenman 	u_int8_t *enaddr;
815ba8c6fd5SDavid Greenman {
816ba8c6fd5SDavid Greenman 	u_int16_t data;
817ba8c6fd5SDavid Greenman 	int i, nmedia, defmedia;
818ba8c6fd5SDavid Greenman 	const int *media;
819ba8c6fd5SDavid Greenman 
820ba8c6fd5SDavid Greenman 	/*
821ba8c6fd5SDavid Greenman 	 * Reset to a stable state.
822ba8c6fd5SDavid Greenman 	 */
823ba8c6fd5SDavid Greenman 	CSR_WRITE_4(sc, FXP_CSR_PORT, FXP_PORT_SELECTIVE_RESET);
824ba8c6fd5SDavid Greenman 	DELAY(10);
825ba8c6fd5SDavid Greenman 
826ba8c6fd5SDavid Greenman 	sc->cbl_base = malloc(sizeof(struct fxp_cb_tx) * FXP_NTXCB,
827ba8c6fd5SDavid Greenman 	    M_DEVBUF, M_NOWAIT);
828ba8c6fd5SDavid Greenman 	if (sc->cbl_base == NULL)
829ba8c6fd5SDavid Greenman 		goto fail;
83091aa9f90SDavid Greenman 	bzero(sc->cbl_base, sizeof(struct fxp_cb_tx) * FXP_NTXCB);
831ba8c6fd5SDavid Greenman 
832ba8c6fd5SDavid Greenman 	sc->fxp_stats = malloc(sizeof(struct fxp_stats), M_DEVBUF, M_NOWAIT);
833ba8c6fd5SDavid Greenman 	if (sc->fxp_stats == NULL)
834ba8c6fd5SDavid Greenman 		goto fail;
835ba8c6fd5SDavid Greenman 	bzero(sc->fxp_stats, sizeof(struct fxp_stats));
836ba8c6fd5SDavid Greenman 
837397f9dfeSDavid Greenman 	sc->mcsp = malloc(sizeof(struct fxp_cb_mcs), M_DEVBUF, M_NOWAIT);
838397f9dfeSDavid Greenman 	if (sc->mcsp == NULL)
839397f9dfeSDavid Greenman 		goto fail;
840397f9dfeSDavid Greenman 
841ba8c6fd5SDavid Greenman 	/*
842ba8c6fd5SDavid Greenman 	 * Pre-allocate our receive buffers.
843ba8c6fd5SDavid Greenman 	 */
844ba8c6fd5SDavid Greenman 	for (i = 0; i < FXP_NRFABUFS; i++) {
845ba8c6fd5SDavid Greenman 		if (fxp_add_rfabuf(sc, NULL) != 0) {
846ba8c6fd5SDavid Greenman 			goto fail;
847ba8c6fd5SDavid Greenman 		}
848ba8c6fd5SDavid Greenman 	}
849ba8c6fd5SDavid Greenman 
850ba8c6fd5SDavid Greenman 	/*
851e9bf2fa7SDavid Greenman 	 * Find out how large of an SEEPROM we have.
852e9bf2fa7SDavid Greenman 	 */
853e9bf2fa7SDavid Greenman 	fxp_autosize_eeprom(sc);
854e9bf2fa7SDavid Greenman 
855e9bf2fa7SDavid Greenman 	/*
856ba8c6fd5SDavid Greenman 	 * Get info about the primary PHY
857ba8c6fd5SDavid Greenman 	 */
858ba8c6fd5SDavid Greenman 	fxp_read_eeprom(sc, (u_int16_t *)&data, 6, 1);
859ba8c6fd5SDavid Greenman 	sc->phy_primary_addr = data & 0xff;
860ba8c6fd5SDavid Greenman 	sc->phy_primary_device = (data >> 8) & 0x3f;
861ba8c6fd5SDavid Greenman 	sc->phy_10Mbps_only = data >> 15;
862ba8c6fd5SDavid Greenman 
863ba8c6fd5SDavid Greenman 	/*
864ba8c6fd5SDavid Greenman 	 * Read MAC address.
865ba8c6fd5SDavid Greenman 	 */
866ba8c6fd5SDavid Greenman 	fxp_read_eeprom(sc, (u_int16_t *)enaddr, 0, 3);
867ba8c6fd5SDavid Greenman 
868ba8c6fd5SDavid Greenman 	/*
869ba8c6fd5SDavid Greenman 	 * Initialize the media structures.
870ba8c6fd5SDavid Greenman 	 */
871ba8c6fd5SDavid Greenman 
872ba8c6fd5SDavid Greenman 	media = fxp_media_default;
873ba8c6fd5SDavid Greenman 	nmedia = sizeof(fxp_media_default) / sizeof(fxp_media_default[0]);
874ba8c6fd5SDavid Greenman 	defmedia = FXP_MEDIA_DEFAULT_DEFMEDIA;
875ba8c6fd5SDavid Greenman 
876ba8c6fd5SDavid Greenman 	for (i = 0; i < NFXPMEDIA; i++) {
877ba8c6fd5SDavid Greenman 		if (sc->phy_primary_device == fxp_media[i].fsm_phy) {
878ba8c6fd5SDavid Greenman 			media = fxp_media[i].fsm_media;
879ba8c6fd5SDavid Greenman 			nmedia = fxp_media[i].fsm_nmedia;
880ba8c6fd5SDavid Greenman 			defmedia = fxp_media[i].fsm_defmedia;
881ba8c6fd5SDavid Greenman 		}
882ba8c6fd5SDavid Greenman 	}
883ba8c6fd5SDavid Greenman 
884ba8c6fd5SDavid Greenman 	ifmedia_init(&sc->sc_media, 0, fxp_mediachange, fxp_mediastatus);
885ba8c6fd5SDavid Greenman 	for (i = 0; i < nmedia; i++) {
886ba8c6fd5SDavid Greenman 		if (IFM_SUBTYPE(media[i]) == IFM_100_TX && sc->phy_10Mbps_only)
887ba8c6fd5SDavid Greenman 			continue;
888ba8c6fd5SDavid Greenman 		ifmedia_add(&sc->sc_media, media[i], 0, NULL);
889ba8c6fd5SDavid Greenman 	}
890ba8c6fd5SDavid Greenman 	ifmedia_set(&sc->sc_media, defmedia);
891ba8c6fd5SDavid Greenman 
892ba8c6fd5SDavid Greenman 	return (0);
893ba8c6fd5SDavid Greenman 
894ba8c6fd5SDavid Greenman  fail:
895ba8c6fd5SDavid Greenman 	printf(FXP_FORMAT ": Failed to malloc memory\n", FXP_ARGS(sc));
896ba8c6fd5SDavid Greenman 	if (sc->cbl_base)
897ba8c6fd5SDavid Greenman 		free(sc->cbl_base, M_DEVBUF);
898ba8c6fd5SDavid Greenman 	if (sc->fxp_stats)
899ba8c6fd5SDavid Greenman 		free(sc->fxp_stats, M_DEVBUF);
900397f9dfeSDavid Greenman 	if (sc->mcsp)
901397f9dfeSDavid Greenman 		free(sc->mcsp, M_DEVBUF);
902ba8c6fd5SDavid Greenman 	/* frees entire chain */
903ba8c6fd5SDavid Greenman 	if (sc->rfa_headm)
904ba8c6fd5SDavid Greenman 		m_freem(sc->rfa_headm);
905ba8c6fd5SDavid Greenman 
906ba8c6fd5SDavid Greenman 	return (ENOMEM);
907ba8c6fd5SDavid Greenman }
908ba8c6fd5SDavid Greenman 
909ba8c6fd5SDavid Greenman /*
910e9bf2fa7SDavid Greenman  * From NetBSD:
911e9bf2fa7SDavid Greenman  *
912e9bf2fa7SDavid Greenman  * Figure out EEPROM size.
913e9bf2fa7SDavid Greenman  *
914e9bf2fa7SDavid Greenman  * 559's can have either 64-word or 256-word EEPROMs, the 558
915e9bf2fa7SDavid Greenman  * datasheet only talks about 64-word EEPROMs, and the 557 datasheet
916e9bf2fa7SDavid Greenman  * talks about the existance of 16 to 256 word EEPROMs.
917e9bf2fa7SDavid Greenman  *
918e9bf2fa7SDavid Greenman  * The only known sizes are 64 and 256, where the 256 version is used
919e9bf2fa7SDavid Greenman  * by CardBus cards to store CIS information.
920e9bf2fa7SDavid Greenman  *
921e9bf2fa7SDavid Greenman  * The address is shifted in msb-to-lsb, and after the last
922e9bf2fa7SDavid Greenman  * address-bit the EEPROM is supposed to output a `dummy zero' bit,
923e9bf2fa7SDavid Greenman  * after which follows the actual data. We try to detect this zero, by
924e9bf2fa7SDavid Greenman  * probing the data-out bit in the EEPROM control register just after
925e9bf2fa7SDavid Greenman  * having shifted in a bit. If the bit is zero, we assume we've
926e9bf2fa7SDavid Greenman  * shifted enough address bits. The data-out should be tri-state,
927e9bf2fa7SDavid Greenman  * before this, which should translate to a logical one.
928e9bf2fa7SDavid Greenman  *
929e9bf2fa7SDavid Greenman  * Other ways to do this would be to try to read a register with known
930e9bf2fa7SDavid Greenman  * contents with a varying number of address bits, but no such
931e9bf2fa7SDavid Greenman  * register seem to be available. The high bits of register 10 are 01
932e9bf2fa7SDavid Greenman  * on the 558 and 559, but apparently not on the 557.
933e9bf2fa7SDavid Greenman  *
934e9bf2fa7SDavid Greenman  * The Linux driver computes a checksum on the EEPROM data, but the
935e9bf2fa7SDavid Greenman  * value of this checksum is not very well documented.
936e9bf2fa7SDavid Greenman  */
937e9bf2fa7SDavid Greenman static void
938e9bf2fa7SDavid Greenman fxp_autosize_eeprom(sc)
939e9bf2fa7SDavid Greenman 	struct fxp_softc *sc;
940e9bf2fa7SDavid Greenman {
941e9bf2fa7SDavid Greenman 	u_int16_t reg;
942e9bf2fa7SDavid Greenman 	int x;
943e9bf2fa7SDavid Greenman 
944e9bf2fa7SDavid Greenman 	CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, FXP_EEPROM_EECS);
945e9bf2fa7SDavid Greenman 	/*
946e9bf2fa7SDavid Greenman 	 * Shift in read opcode.
947e9bf2fa7SDavid Greenman 	 */
948e9bf2fa7SDavid Greenman 	for (x = 3; x > 0; x--) {
949e9bf2fa7SDavid Greenman 		if (FXP_EEPROM_OPC_READ & (1 << (x - 1))) {
950e9bf2fa7SDavid Greenman 			reg = FXP_EEPROM_EECS | FXP_EEPROM_EEDI;
951e9bf2fa7SDavid Greenman 		} else {
952e9bf2fa7SDavid Greenman 			reg = FXP_EEPROM_EECS;
953e9bf2fa7SDavid Greenman 		}
954e9bf2fa7SDavid Greenman 		CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg);
955e9bf2fa7SDavid Greenman 		CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL,
956e9bf2fa7SDavid Greenman 		    reg | FXP_EEPROM_EESK);
957e9bf2fa7SDavid Greenman 		DELAY(1);
958e9bf2fa7SDavid Greenman 		CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg);
959e9bf2fa7SDavid Greenman 		DELAY(1);
960e9bf2fa7SDavid Greenman 	}
961e9bf2fa7SDavid Greenman 	/*
962e9bf2fa7SDavid Greenman 	 * Shift in address.
963e9bf2fa7SDavid Greenman 	 * Wait for the dummy zero following a correct address shift.
964e9bf2fa7SDavid Greenman 	 */
965e9bf2fa7SDavid Greenman 	for (x = 1; x <= 8; x++) {
966e9bf2fa7SDavid Greenman 		CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, FXP_EEPROM_EECS);
967e9bf2fa7SDavid Greenman 		CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL,
968e9bf2fa7SDavid Greenman 			FXP_EEPROM_EECS | FXP_EEPROM_EESK);
969e9bf2fa7SDavid Greenman 		DELAY(1);
970e9bf2fa7SDavid Greenman 		if ((CSR_READ_2(sc, FXP_CSR_EEPROMCONTROL) & FXP_EEPROM_EEDO) == 0)
971e9bf2fa7SDavid Greenman 			break;
972e9bf2fa7SDavid Greenman 		CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, FXP_EEPROM_EECS);
973e9bf2fa7SDavid Greenman 		DELAY(1);
974e9bf2fa7SDavid Greenman 	}
975e9bf2fa7SDavid Greenman 	CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, 0);
976e9bf2fa7SDavid Greenman 	DELAY(1);
977e9bf2fa7SDavid Greenman 	sc->eeprom_size = x;
978e9bf2fa7SDavid Greenman }
979e9bf2fa7SDavid Greenman /*
980ba8c6fd5SDavid Greenman  * Read from the serial EEPROM. Basically, you manually shift in
981ba8c6fd5SDavid Greenman  * the read opcode (one bit at a time) and then shift in the address,
982ba8c6fd5SDavid Greenman  * and then you shift out the data (all of this one bit at a time).
983ba8c6fd5SDavid Greenman  * The word size is 16 bits, so you have to provide the address for
984ba8c6fd5SDavid Greenman  * every 16 bits of data.
985ba8c6fd5SDavid Greenman  */
986ba8c6fd5SDavid Greenman static void
987ba8c6fd5SDavid Greenman fxp_read_eeprom(sc, data, offset, words)
988ba8c6fd5SDavid Greenman 	struct fxp_softc *sc;
989ba8c6fd5SDavid Greenman 	u_short *data;
990ba8c6fd5SDavid Greenman 	int offset;
991ba8c6fd5SDavid Greenman 	int words;
992ba8c6fd5SDavid Greenman {
993ba8c6fd5SDavid Greenman 	u_int16_t reg;
994ba8c6fd5SDavid Greenman 	int i, x;
995ba8c6fd5SDavid Greenman 
996ba8c6fd5SDavid Greenman 	for (i = 0; i < words; i++) {
997ba8c6fd5SDavid Greenman 		CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, FXP_EEPROM_EECS);
998ba8c6fd5SDavid Greenman 		/*
999ba8c6fd5SDavid Greenman 		 * Shift in read opcode.
1000ba8c6fd5SDavid Greenman 		 */
1001ba8c6fd5SDavid Greenman 		for (x = 3; x > 0; x--) {
1002ba8c6fd5SDavid Greenman 			if (FXP_EEPROM_OPC_READ & (1 << (x - 1))) {
1003ba8c6fd5SDavid Greenman 				reg = FXP_EEPROM_EECS | FXP_EEPROM_EEDI;
1004ba8c6fd5SDavid Greenman 			} else {
1005ba8c6fd5SDavid Greenman 				reg = FXP_EEPROM_EECS;
1006ba8c6fd5SDavid Greenman 			}
1007ba8c6fd5SDavid Greenman 			CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg);
1008ba8c6fd5SDavid Greenman 			CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL,
1009ba8c6fd5SDavid Greenman 			    reg | FXP_EEPROM_EESK);
1010ba8c6fd5SDavid Greenman 			DELAY(1);
1011ba8c6fd5SDavid Greenman 			CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg);
1012ba8c6fd5SDavid Greenman 			DELAY(1);
1013ba8c6fd5SDavid Greenman 		}
1014ba8c6fd5SDavid Greenman 		/*
1015ba8c6fd5SDavid Greenman 		 * Shift in address.
1016ba8c6fd5SDavid Greenman 		 */
1017e9bf2fa7SDavid Greenman 		for (x = sc->eeprom_size; x > 0; x--) {
1018ba8c6fd5SDavid Greenman 			if ((i + offset) & (1 << (x - 1))) {
1019ba8c6fd5SDavid Greenman 				reg = FXP_EEPROM_EECS | FXP_EEPROM_EEDI;
1020ba8c6fd5SDavid Greenman 			} else {
1021ba8c6fd5SDavid Greenman 				reg = FXP_EEPROM_EECS;
1022ba8c6fd5SDavid Greenman 			}
1023ba8c6fd5SDavid Greenman 			CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg);
1024ba8c6fd5SDavid Greenman 			CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL,
1025ba8c6fd5SDavid Greenman 			    reg | FXP_EEPROM_EESK);
1026ba8c6fd5SDavid Greenman 			DELAY(1);
1027ba8c6fd5SDavid Greenman 			CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg);
1028ba8c6fd5SDavid Greenman 			DELAY(1);
1029ba8c6fd5SDavid Greenman 		}
1030ba8c6fd5SDavid Greenman 		reg = FXP_EEPROM_EECS;
1031ba8c6fd5SDavid Greenman 		data[i] = 0;
1032ba8c6fd5SDavid Greenman 		/*
1033ba8c6fd5SDavid Greenman 		 * Shift out data.
1034ba8c6fd5SDavid Greenman 		 */
1035ba8c6fd5SDavid Greenman 		for (x = 16; x > 0; x--) {
1036ba8c6fd5SDavid Greenman 			CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL,
1037ba8c6fd5SDavid Greenman 			    reg | FXP_EEPROM_EESK);
1038ba8c6fd5SDavid Greenman 			DELAY(1);
1039ba8c6fd5SDavid Greenman 			if (CSR_READ_2(sc, FXP_CSR_EEPROMCONTROL) &
1040ba8c6fd5SDavid Greenman 			    FXP_EEPROM_EEDO)
1041ba8c6fd5SDavid Greenman 				data[i] |= (1 << (x - 1));
1042ba8c6fd5SDavid Greenman 			CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg);
1043ba8c6fd5SDavid Greenman 			DELAY(1);
1044ba8c6fd5SDavid Greenman 		}
1045ba8c6fd5SDavid Greenman 		CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, 0);
1046ba8c6fd5SDavid Greenman 		DELAY(1);
1047ba8c6fd5SDavid Greenman 	}
1048ba8c6fd5SDavid Greenman }
1049ba8c6fd5SDavid Greenman 
1050a17c678eSDavid Greenman /*
1051a17c678eSDavid Greenman  * Start packet transmission on the interface.
1052a17c678eSDavid Greenman  */
1053a17c678eSDavid Greenman static void
1054a17c678eSDavid Greenman fxp_start(ifp)
1055a17c678eSDavid Greenman 	struct ifnet *ifp;
1056a17c678eSDavid Greenman {
10579b44ff22SGarrett Wollman 	struct fxp_softc *sc = ifp->if_softc;
1058a17c678eSDavid Greenman 	struct fxp_cb_tx *txp;
1059a17c678eSDavid Greenman 
10600f4dc94cSChuck Paterson #if !defined(__NetBSD__)
10610f4dc94cSChuck Paterson 	FXP_LOCK(sc, s);
10620f4dc94cSChuck Paterson #endif
1063a17c678eSDavid Greenman 	/*
1064483b9871SDavid Greenman 	 * See if we need to suspend xmit until the multicast filter
1065483b9871SDavid Greenman 	 * has been reprogrammed (which can only be done at the head
1066483b9871SDavid Greenman 	 * of the command chain).
1067a17c678eSDavid Greenman 	 */
10680f4dc94cSChuck Paterson 	if (sc->need_mcsetup) {
10690f4dc94cSChuck Paterson 		FXP_UNLOCK(sc, s);
1070a17c678eSDavid Greenman 		return;
10710f4dc94cSChuck Paterson 	}
10721cd443acSDavid Greenman 
1073483b9871SDavid Greenman 	txp = NULL;
1074483b9871SDavid Greenman 
1075483b9871SDavid Greenman 	/*
1076483b9871SDavid Greenman 	 * We're finished if there is nothing more to add to the list or if
1077483b9871SDavid Greenman 	 * we're all filled up with buffers to transmit.
10783114fdb4SDavid Greenman 	 * NOTE: One TxCB is reserved to guarantee that fxp_mc_setup() can add
10793114fdb4SDavid Greenman 	 *       a NOP command when needed.
1080483b9871SDavid Greenman 	 */
10813114fdb4SDavid Greenman 	while (ifp->if_snd.ifq_head != NULL && sc->tx_queued < FXP_NTXCB - 1) {
1082483b9871SDavid Greenman 		struct mbuf *m, *mb_head;
1083483b9871SDavid Greenman 		int segment;
1084483b9871SDavid Greenman 
1085dfe61cf1SDavid Greenman 		/*
1086dfe61cf1SDavid Greenman 		 * Grab a packet to transmit.
1087dfe61cf1SDavid Greenman 		 */
10886318197eSDavid Greenman 		IF_DEQUEUE(&ifp->if_snd, mb_head);
1089a17c678eSDavid Greenman 
1090dfe61cf1SDavid Greenman 		/*
1091483b9871SDavid Greenman 		 * Get pointer to next available tx desc.
1092dfe61cf1SDavid Greenman 		 */
1093a17c678eSDavid Greenman 		txp = sc->cbl_last->next;
1094a17c678eSDavid Greenman 
1095a17c678eSDavid Greenman 		/*
1096a17c678eSDavid Greenman 		 * Go through each of the mbufs in the chain and initialize
1097483b9871SDavid Greenman 		 * the transmit buffer descriptors with the physical address
1098a17c678eSDavid Greenman 		 * and size of the mbuf.
1099a17c678eSDavid Greenman 		 */
110023a0ed7cSDavid Greenman tbdinit:
1101a17c678eSDavid Greenman 		for (m = mb_head, segment = 0; m != NULL; m = m->m_next) {
1102a17c678eSDavid Greenman 			if (m->m_len != 0) {
1103a17c678eSDavid Greenman 				if (segment == FXP_NTXSEG)
1104a17c678eSDavid Greenman 					break;
1105a17c678eSDavid Greenman 				txp->tbd[segment].tb_addr =
1106a17c678eSDavid Greenman 				    vtophys(mtod(m, vm_offset_t));
1107a17c678eSDavid Greenman 				txp->tbd[segment].tb_size = m->m_len;
1108a17c678eSDavid Greenman 				segment++;
1109a17c678eSDavid Greenman 			}
1110a17c678eSDavid Greenman 		}
1111fb583156SDavid Greenman 		if (m != NULL) {
111223a0ed7cSDavid Greenman 			struct mbuf *mn;
111323a0ed7cSDavid Greenman 
1114a17c678eSDavid Greenman 			/*
1115a17c678eSDavid Greenman 			 * We ran out of segments. We have to recopy this mbuf
1116483b9871SDavid Greenman 			 * chain first. Bail out if we can't get the new buffers.
1117a17c678eSDavid Greenman 			 */
111823a0ed7cSDavid Greenman 			MGETHDR(mn, M_DONTWAIT, MT_DATA);
111923a0ed7cSDavid Greenman 			if (mn == NULL) {
112023a0ed7cSDavid Greenman 				m_freem(mb_head);
1121483b9871SDavid Greenman 				break;
1122a17c678eSDavid Greenman 			}
112323a0ed7cSDavid Greenman 			if (mb_head->m_pkthdr.len > MHLEN) {
112423a0ed7cSDavid Greenman 				MCLGET(mn, M_DONTWAIT);
112523a0ed7cSDavid Greenman 				if ((mn->m_flags & M_EXT) == 0) {
112623a0ed7cSDavid Greenman 					m_freem(mn);
112723a0ed7cSDavid Greenman 					m_freem(mb_head);
1128483b9871SDavid Greenman 					break;
112923a0ed7cSDavid Greenman 				}
113023a0ed7cSDavid Greenman 			}
1131ba8c6fd5SDavid Greenman 			m_copydata(mb_head, 0, mb_head->m_pkthdr.len,
1132ba8c6fd5SDavid Greenman 			    mtod(mn, caddr_t));
113323a0ed7cSDavid Greenman 			mn->m_pkthdr.len = mn->m_len = mb_head->m_pkthdr.len;
113423a0ed7cSDavid Greenman 			m_freem(mb_head);
113523a0ed7cSDavid Greenman 			mb_head = mn;
113623a0ed7cSDavid Greenman 			goto tbdinit;
113723a0ed7cSDavid Greenman 		}
113823a0ed7cSDavid Greenman 
113923a0ed7cSDavid Greenman 		txp->tbd_number = segment;
11401cd443acSDavid Greenman 		txp->mb_head = mb_head;
1141a17c678eSDavid Greenman 		txp->cb_status = 0;
11423114fdb4SDavid Greenman 		if (sc->tx_queued != FXP_CXINT_THRESH - 1) {
1143a17c678eSDavid Greenman 			txp->cb_command =
1144a17c678eSDavid Greenman 			    FXP_CB_COMMAND_XMIT | FXP_CB_COMMAND_SF | FXP_CB_COMMAND_S;
11453114fdb4SDavid Greenman 		} else {
11463114fdb4SDavid Greenman 			txp->cb_command =
11473114fdb4SDavid Greenman 			    FXP_CB_COMMAND_XMIT | FXP_CB_COMMAND_SF | FXP_CB_COMMAND_S | FXP_CB_COMMAND_I;
11483114fdb4SDavid Greenman 			/*
11493114fdb4SDavid Greenman 			 * Set a 5 second timer just in case we don't hear from the
11503114fdb4SDavid Greenman 			 * card again.
11513114fdb4SDavid Greenman 			 */
11523114fdb4SDavid Greenman 			ifp->if_timer = 5;
11533114fdb4SDavid Greenman 		}
1154f9be9005SDavid Greenman 		txp->tx_threshold = tx_threshold;
1155a17c678eSDavid Greenman 
1156a17c678eSDavid Greenman 		/*
1157483b9871SDavid Greenman 		 * Advance the end of list forward.
1158a17c678eSDavid Greenman 		 */
115906175228SAndrew Gallatin 
116006175228SAndrew Gallatin #ifdef __alpha__
116106175228SAndrew Gallatin 		/*
116206175228SAndrew Gallatin 		 * On platforms which can't access memory in 16-bit
116306175228SAndrew Gallatin 		 * granularities, we must prevent the card from DMA'ing
116406175228SAndrew Gallatin 		 * up the status while we update the command field.
116506175228SAndrew Gallatin 		 * This could cause us to overwrite the completion status.
116606175228SAndrew Gallatin 		 */
116706175228SAndrew Gallatin 		atomic_clear_short(&sc->cbl_last->cb_command,
116806175228SAndrew Gallatin 		    FXP_CB_COMMAND_S);
116906175228SAndrew Gallatin #else
1170a17c678eSDavid Greenman 		sc->cbl_last->cb_command &= ~FXP_CB_COMMAND_S;
117106175228SAndrew Gallatin #endif /*__alpha__*/
1172a17c678eSDavid Greenman 		sc->cbl_last = txp;
1173a17c678eSDavid Greenman 
1174a17c678eSDavid Greenman 		/*
11751cd443acSDavid Greenman 		 * Advance the beginning of the list forward if there are
11761cd443acSDavid Greenman 		 * no other packets queued (when nothing is queued, cbl_first
1177483b9871SDavid Greenman 		 * sits on the last TxCB that was sent out).
1178a17c678eSDavid Greenman 		 */
11791cd443acSDavid Greenman 		if (sc->tx_queued == 0)
1180a17c678eSDavid Greenman 			sc->cbl_first = txp;
1181a17c678eSDavid Greenman 
11821cd443acSDavid Greenman 		sc->tx_queued++;
11831cd443acSDavid Greenman 
1184a17c678eSDavid Greenman 		/*
1185a17c678eSDavid Greenman 		 * Pass packet to bpf if there is a listener.
1186a17c678eSDavid Greenman 		 */
1187fb583156SDavid Greenman 		if (ifp->if_bpf)
1188ba8c6fd5SDavid Greenman 			bpf_mtap(FXP_BPFTAP_ARG(ifp), mb_head);
1189483b9871SDavid Greenman 	}
1190483b9871SDavid Greenman 
1191483b9871SDavid Greenman 	/*
1192483b9871SDavid Greenman 	 * We're finished. If we added to the list, issue a RESUME to get DMA
1193483b9871SDavid Greenman 	 * going again if suspended.
1194483b9871SDavid Greenman 	 */
1195483b9871SDavid Greenman 	if (txp != NULL) {
1196483b9871SDavid Greenman 		fxp_scb_wait(sc);
1197483b9871SDavid Greenman 		CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND, FXP_SCB_COMMAND_CU_RESUME);
1198483b9871SDavid Greenman 	}
11990f4dc94cSChuck Paterson #if !defined(__NetBSD__)
12000f4dc94cSChuck Paterson 	FXP_UNLOCK(sc, s);
12010f4dc94cSChuck Paterson #endif
1202a17c678eSDavid Greenman }
1203a17c678eSDavid Greenman 
1204a17c678eSDavid Greenman /*
12059c7d2607SDavid Greenman  * Process interface interrupts.
1206a17c678eSDavid Greenman  */
1207ba8c6fd5SDavid Greenman static FXP_INTR_TYPE
1208a17c678eSDavid Greenman fxp_intr(arg)
1209a17c678eSDavid Greenman 	void *arg;
1210a17c678eSDavid Greenman {
1211a17c678eSDavid Greenman 	struct fxp_softc *sc = arg;
1212ba8c6fd5SDavid Greenman 	struct ifnet *ifp = &sc->sc_if;
12131cd443acSDavid Greenman 	u_int8_t statack;
121404ea20fcSDavid Greenman 	FXP_SPLVAR(s)
1215ba8c6fd5SDavid Greenman #if defined(__NetBSD__)
1216ba8c6fd5SDavid Greenman 	int claimed = 0;
121704ea20fcSDavid Greenman #endif
12180f4dc94cSChuck Paterson 
12190f4dc94cSChuck Paterson 	FXP_LOCK(sc, s);
1220a17c678eSDavid Greenman 
1221b184b38eSDavid Greenman 	if (sc->suspended) {
1222b184b38eSDavid Greenman 		FXP_UNLOCK(sc, s);
1223b184b38eSDavid Greenman 		return;
1224b184b38eSDavid Greenman 	}
1225b184b38eSDavid Greenman 
1226b184b38eSDavid Greenman 	while ((statack = CSR_READ_1(sc, FXP_CSR_SCB_STATACK)) != 0) {
1227ba8c6fd5SDavid Greenman #if defined(__NetBSD__)
1228ba8c6fd5SDavid Greenman 		claimed = 1;
1229ba8c6fd5SDavid Greenman #endif
1230a17c678eSDavid Greenman 		/*
1231a17c678eSDavid Greenman 		 * First ACK all the interrupts in this pass.
1232a17c678eSDavid Greenman 		 */
1233ba8c6fd5SDavid Greenman 		CSR_WRITE_1(sc, FXP_CSR_SCB_STATACK, statack);
1234a17c678eSDavid Greenman 
1235a17c678eSDavid Greenman 		/*
12363114fdb4SDavid Greenman 		 * Free any finished transmit mbuf chains.
123706936301SBill Paul 		 *
123806936301SBill Paul 		 * Handle the CNA event likt a CXTNO event. It used to
123906936301SBill Paul 		 * be that this event (control unit not ready) was not
124006936301SBill Paul 		 * encountered, but it is now with the SMPng modifications.
124106936301SBill Paul 		 * The exact sequence of events that occur when the interface
124206936301SBill Paul 		 * is brought up are different now, and if this event
124306936301SBill Paul 		 * goes unhandled, the configuration/rxfilter setup sequence
124406936301SBill Paul 		 * can stall for several seconds. The result is that no
124506936301SBill Paul 		 * packets go out onto the wire for about 5 to 10 seconds
124606936301SBill Paul 		 * after the interface is ifconfig'ed for the first time.
12473114fdb4SDavid Greenman 		 */
124806936301SBill Paul 		if (statack & (FXP_SCB_STATACK_CXTNO | FXP_SCB_STATACK_CNA)) {
12493114fdb4SDavid Greenman 			struct fxp_cb_tx *txp;
12503114fdb4SDavid Greenman 
12513114fdb4SDavid Greenman 			for (txp = sc->cbl_first; sc->tx_queued &&
12523114fdb4SDavid Greenman 			    (txp->cb_status & FXP_CB_STATUS_C) != 0;
12533114fdb4SDavid Greenman 			    txp = txp->next) {
12543114fdb4SDavid Greenman 				if (txp->mb_head != NULL) {
12553114fdb4SDavid Greenman 					m_freem(txp->mb_head);
12563114fdb4SDavid Greenman 					txp->mb_head = NULL;
12573114fdb4SDavid Greenman 				}
12583114fdb4SDavid Greenman 				sc->tx_queued--;
12593114fdb4SDavid Greenman 			}
12603114fdb4SDavid Greenman 			sc->cbl_first = txp;
12613114fdb4SDavid Greenman 			ifp->if_timer = 0;
12623114fdb4SDavid Greenman 			if (sc->tx_queued == 0) {
12633114fdb4SDavid Greenman 				if (sc->need_mcsetup)
12643114fdb4SDavid Greenman 					fxp_mc_setup(sc);
12653114fdb4SDavid Greenman 			}
12663114fdb4SDavid Greenman 			/*
12673114fdb4SDavid Greenman 			 * Try to start more packets transmitting.
12683114fdb4SDavid Greenman 			 */
12693114fdb4SDavid Greenman 			if (ifp->if_snd.ifq_head != NULL)
12703114fdb4SDavid Greenman 				fxp_start(ifp);
12713114fdb4SDavid Greenman 		}
12723114fdb4SDavid Greenman 		/*
1273a17c678eSDavid Greenman 		 * Process receiver interrupts. If a no-resource (RNR)
1274a17c678eSDavid Greenman 		 * condition exists, get whatever packets we can and
1275a17c678eSDavid Greenman 		 * re-start the receiver.
1276a17c678eSDavid Greenman 		 */
1277a17c678eSDavid Greenman 		if (statack & (FXP_SCB_STATACK_FR | FXP_SCB_STATACK_RNR)) {
1278a17c678eSDavid Greenman 			struct mbuf *m;
1279a17c678eSDavid Greenman 			struct fxp_rfa *rfa;
1280a17c678eSDavid Greenman rcvloop:
1281a17c678eSDavid Greenman 			m = sc->rfa_headm;
1282ba8c6fd5SDavid Greenman 			rfa = (struct fxp_rfa *)(m->m_ext.ext_buf +
1283ba8c6fd5SDavid Greenman 			    RFA_ALIGNMENT_FUDGE);
1284a17c678eSDavid Greenman 
1285a17c678eSDavid Greenman 			if (rfa->rfa_status & FXP_RFA_STATUS_C) {
1286dfe61cf1SDavid Greenman 				/*
1287dfe61cf1SDavid Greenman 				 * Remove first packet from the chain.
1288dfe61cf1SDavid Greenman 				 */
1289a17c678eSDavid Greenman 				sc->rfa_headm = m->m_next;
1290a17c678eSDavid Greenman 				m->m_next = NULL;
1291a17c678eSDavid Greenman 
1292dfe61cf1SDavid Greenman 				/*
1293ba8c6fd5SDavid Greenman 				 * Add a new buffer to the receive chain.
1294ba8c6fd5SDavid Greenman 				 * If this fails, the old buffer is recycled
1295ba8c6fd5SDavid Greenman 				 * instead.
1296dfe61cf1SDavid Greenman 				 */
1297a17c678eSDavid Greenman 				if (fxp_add_rfabuf(sc, m) == 0) {
1298a17c678eSDavid Greenman 					struct ether_header *eh;
1299aed53495SDavid Greenman 					int total_len;
1300a17c678eSDavid Greenman 
1301ba8c6fd5SDavid Greenman 					total_len = rfa->actual_size &
1302ba8c6fd5SDavid Greenman 					    (MCLBYTES - 1);
1303ba8c6fd5SDavid Greenman 					if (total_len <
1304ba8c6fd5SDavid Greenman 					    sizeof(struct ether_header)) {
130506339180SDavid Greenman 						m_freem(m);
130606339180SDavid Greenman 						goto rcvloop;
130706339180SDavid Greenman 					}
1308a17c678eSDavid Greenman 					m->m_pkthdr.rcvif = ifp;
13092e2de7f2SArchie Cobbs 					m->m_pkthdr.len = m->m_len = total_len;
1310a17c678eSDavid Greenman 					eh = mtod(m, struct ether_header *);
1311ba8c6fd5SDavid Greenman 					m->m_data +=
1312ba8c6fd5SDavid Greenman 					    sizeof(struct ether_header);
1313ab090e5bSLuigi Rizzo 					m->m_len -=
1314ab090e5bSLuigi Rizzo 					    sizeof(struct ether_header);
1315ab090e5bSLuigi Rizzo 					m->m_pkthdr.len = m->m_len;
1316a17c678eSDavid Greenman 					ether_input(ifp, eh, m);
1317a17c678eSDavid Greenman 				}
1318a17c678eSDavid Greenman 				goto rcvloop;
1319a17c678eSDavid Greenman 			}
1320a17c678eSDavid Greenman 			if (statack & FXP_SCB_STATACK_RNR) {
1321ba8c6fd5SDavid Greenman 				fxp_scb_wait(sc);
1322ba8c6fd5SDavid Greenman 				CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL,
1323ba8c6fd5SDavid Greenman 				    vtophys(sc->rfa_headm->m_ext.ext_buf) +
1324ba8c6fd5SDavid Greenman 					RFA_ALIGNMENT_FUDGE);
1325ba8c6fd5SDavid Greenman 				CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND,
1326ba8c6fd5SDavid Greenman 				    FXP_SCB_COMMAND_RU_START);
1327a17c678eSDavid Greenman 			}
1328a17c678eSDavid Greenman 		}
1329a17c678eSDavid Greenman 	}
1330ba8c6fd5SDavid Greenman #if defined(__NetBSD__)
1331ba8c6fd5SDavid Greenman 	return (claimed);
13320f4dc94cSChuck Paterson #else
13330f4dc94cSChuck Paterson 	FXP_UNLOCK(sc, s);
1334ba8c6fd5SDavid Greenman #endif
1335a17c678eSDavid Greenman }
1336a17c678eSDavid Greenman 
1337dfe61cf1SDavid Greenman /*
1338dfe61cf1SDavid Greenman  * Update packet in/out/collision statistics. The i82557 doesn't
1339dfe61cf1SDavid Greenman  * allow you to access these counters without doing a fairly
1340dfe61cf1SDavid Greenman  * expensive DMA to get _all_ of the statistics it maintains, so
1341dfe61cf1SDavid Greenman  * we do this operation here only once per second. The statistics
1342dfe61cf1SDavid Greenman  * counters in the kernel are updated from the previous dump-stats
1343dfe61cf1SDavid Greenman  * DMA and then a new dump-stats DMA is started. The on-chip
1344dfe61cf1SDavid Greenman  * counters are zeroed when the DMA completes. If we can't start
1345dfe61cf1SDavid Greenman  * the DMA immediately, we don't wait - we just prepare to read
1346dfe61cf1SDavid Greenman  * them again next time.
1347dfe61cf1SDavid Greenman  */
1348303b270bSEivind Eklund static void
1349a17c678eSDavid Greenman fxp_stats_update(arg)
1350a17c678eSDavid Greenman 	void *arg;
1351a17c678eSDavid Greenman {
1352a17c678eSDavid Greenman 	struct fxp_softc *sc = arg;
1353ba8c6fd5SDavid Greenman 	struct ifnet *ifp = &sc->sc_if;
1354a17c678eSDavid Greenman 	struct fxp_stats *sp = sc->fxp_stats;
1355c8cc6fcaSDavid Greenman 	struct fxp_cb_tx *txp;
13560f4dc94cSChuck Paterson 	FXP_SPLVAR(s)
1357a17c678eSDavid Greenman 
1358a17c678eSDavid Greenman 	ifp->if_opackets += sp->tx_good;
1359a17c678eSDavid Greenman 	ifp->if_collisions += sp->tx_total_collisions;
1360397f9dfeSDavid Greenman 	if (sp->rx_good) {
1361397f9dfeSDavid Greenman 		ifp->if_ipackets += sp->rx_good;
1362397f9dfeSDavid Greenman 		sc->rx_idle_secs = 0;
1363397f9dfeSDavid Greenman 	} else {
1364c8cc6fcaSDavid Greenman 		/*
1365c8cc6fcaSDavid Greenman 		 * Receiver's been idle for another second.
1366c8cc6fcaSDavid Greenman 		 */
1367397f9dfeSDavid Greenman 		sc->rx_idle_secs++;
1368397f9dfeSDavid Greenman 	}
13693ba65732SDavid Greenman 	ifp->if_ierrors +=
13703ba65732SDavid Greenman 	    sp->rx_crc_errors +
13713ba65732SDavid Greenman 	    sp->rx_alignment_errors +
13723ba65732SDavid Greenman 	    sp->rx_rnr_errors +
13736e39e599SDavid Greenman 	    sp->rx_overrun_errors;
1374a17c678eSDavid Greenman 	/*
1375f9be9005SDavid Greenman 	 * If any transmit underruns occured, bump up the transmit
1376f9be9005SDavid Greenman 	 * threshold by another 512 bytes (64 * 8).
1377f9be9005SDavid Greenman 	 */
1378f9be9005SDavid Greenman 	if (sp->tx_underruns) {
1379f9be9005SDavid Greenman 		ifp->if_oerrors += sp->tx_underruns;
1380f9be9005SDavid Greenman 		if (tx_threshold < 192)
1381f9be9005SDavid Greenman 			tx_threshold += 64;
1382f9be9005SDavid Greenman 	}
13830f4dc94cSChuck Paterson 	FXP_LOCK(sc, s);
1384397f9dfeSDavid Greenman 	/*
1385c8cc6fcaSDavid Greenman 	 * Release any xmit buffers that have completed DMA. This isn't
1386c8cc6fcaSDavid Greenman 	 * strictly necessary to do here, but it's advantagous for mbufs
1387c8cc6fcaSDavid Greenman 	 * with external storage to be released in a timely manner rather
1388c8cc6fcaSDavid Greenman 	 * than being defered for a potentially long time. This limits
1389c8cc6fcaSDavid Greenman 	 * the delay to a maximum of one second.
1390c8cc6fcaSDavid Greenman 	 */
1391c8cc6fcaSDavid Greenman 	for (txp = sc->cbl_first; sc->tx_queued &&
1392c8cc6fcaSDavid Greenman 	    (txp->cb_status & FXP_CB_STATUS_C) != 0;
1393c8cc6fcaSDavid Greenman 	    txp = txp->next) {
1394c8cc6fcaSDavid Greenman 		if (txp->mb_head != NULL) {
1395c8cc6fcaSDavid Greenman 			m_freem(txp->mb_head);
1396c8cc6fcaSDavid Greenman 			txp->mb_head = NULL;
1397c8cc6fcaSDavid Greenman 		}
1398c8cc6fcaSDavid Greenman 		sc->tx_queued--;
1399c8cc6fcaSDavid Greenman 	}
1400c8cc6fcaSDavid Greenman 	sc->cbl_first = txp;
1401c8cc6fcaSDavid Greenman 	/*
1402397f9dfeSDavid Greenman 	 * If we haven't received any packets in FXP_MAC_RX_IDLE seconds,
1403397f9dfeSDavid Greenman 	 * then assume the receiver has locked up and attempt to clear
1404397f9dfeSDavid Greenman 	 * the condition by reprogramming the multicast filter. This is
1405397f9dfeSDavid Greenman 	 * a work-around for a bug in the 82557 where the receiver locks
1406397f9dfeSDavid Greenman 	 * up if it gets certain types of garbage in the syncronization
1407397f9dfeSDavid Greenman 	 * bits prior to the packet header. This bug is supposed to only
1408397f9dfeSDavid Greenman 	 * occur in 10Mbps mode, but has been seen to occur in 100Mbps
1409397f9dfeSDavid Greenman 	 * mode as well (perhaps due to a 10/100 speed transition).
1410397f9dfeSDavid Greenman 	 */
1411397f9dfeSDavid Greenman 	if (sc->rx_idle_secs > FXP_MAX_RX_IDLE) {
1412397f9dfeSDavid Greenman 		sc->rx_idle_secs = 0;
1413397f9dfeSDavid Greenman 		fxp_mc_setup(sc);
1414397f9dfeSDavid Greenman 	}
1415f9be9005SDavid Greenman 	/*
14163ba65732SDavid Greenman 	 * If there is no pending command, start another stats
14173ba65732SDavid Greenman 	 * dump. Otherwise punt for now.
1418a17c678eSDavid Greenman 	 */
1419397f9dfeSDavid Greenman 	if (CSR_READ_1(sc, FXP_CSR_SCB_COMMAND) == 0) {
1420a17c678eSDavid Greenman 		/*
1421397f9dfeSDavid Greenman 		 * Start another stats dump.
1422a17c678eSDavid Greenman 		 */
1423ba8c6fd5SDavid Greenman 		CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND,
1424ba8c6fd5SDavid Greenman 		    FXP_SCB_COMMAND_CU_DUMPRESET);
1425dfe61cf1SDavid Greenman 	} else {
1426dfe61cf1SDavid Greenman 		/*
1427dfe61cf1SDavid Greenman 		 * A previous command is still waiting to be accepted.
1428dfe61cf1SDavid Greenman 		 * Just zero our copy of the stats and wait for the
14293ba65732SDavid Greenman 		 * next timer event to update them.
1430dfe61cf1SDavid Greenman 		 */
1431dfe61cf1SDavid Greenman 		sp->tx_good = 0;
1432f9be9005SDavid Greenman 		sp->tx_underruns = 0;
1433dfe61cf1SDavid Greenman 		sp->tx_total_collisions = 0;
14343ba65732SDavid Greenman 
1435dfe61cf1SDavid Greenman 		sp->rx_good = 0;
14363ba65732SDavid Greenman 		sp->rx_crc_errors = 0;
14373ba65732SDavid Greenman 		sp->rx_alignment_errors = 0;
14383ba65732SDavid Greenman 		sp->rx_rnr_errors = 0;
14393ba65732SDavid Greenman 		sp->rx_overrun_errors = 0;
1440dfe61cf1SDavid Greenman 	}
14410f4dc94cSChuck Paterson 	FXP_UNLOCK(sc, s);
1442a17c678eSDavid Greenman 	/*
1443a17c678eSDavid Greenman 	 * Schedule another timeout one second from now.
1444a17c678eSDavid Greenman 	 */
1445397f9dfeSDavid Greenman 	sc->stat_ch = timeout(fxp_stats_update, sc, hz);
1446a17c678eSDavid Greenman }
1447a17c678eSDavid Greenman 
1448a17c678eSDavid Greenman /*
1449a17c678eSDavid Greenman  * Stop the interface. Cancels the statistics updater and resets
1450a17c678eSDavid Greenman  * the interface.
1451a17c678eSDavid Greenman  */
1452a17c678eSDavid Greenman static void
14534a5f1499SDavid Greenman fxp_stop(sc)
14544a5f1499SDavid Greenman 	struct fxp_softc *sc;
1455a17c678eSDavid Greenman {
1456ba8c6fd5SDavid Greenman 	struct ifnet *ifp = &sc->sc_if;
14573ba65732SDavid Greenman 	struct fxp_cb_tx *txp;
14583ba65732SDavid Greenman 	int i;
1459a17c678eSDavid Greenman 
14600f4dc94cSChuck Paterson #if !defined(__NetBSD__)
14610f4dc94cSChuck Paterson 	FXP_LOCK(sc, s);
14620f4dc94cSChuck Paterson #endif
14630f4dc94cSChuck Paterson 
14647dced78aSDavid Greenman 	ifp->if_flags &= ~(IFF_RUNNING | IFF_OACTIVE);
14657dced78aSDavid Greenman 	ifp->if_timer = 0;
14667dced78aSDavid Greenman 
1467a17c678eSDavid Greenman 	/*
1468a17c678eSDavid Greenman 	 * Cancel stats updater.
1469a17c678eSDavid Greenman 	 */
14706c951b44SJustin T. Gibbs 	untimeout(fxp_stats_update, sc, sc->stat_ch);
14713ba65732SDavid Greenman 
14723ba65732SDavid Greenman 	/*
14733ba65732SDavid Greenman 	 * Issue software reset
14743ba65732SDavid Greenman 	 */
1475ba8c6fd5SDavid Greenman 	CSR_WRITE_4(sc, FXP_CSR_PORT, FXP_PORT_SELECTIVE_RESET);
1476a17c678eSDavid Greenman 	DELAY(10);
1477a17c678eSDavid Greenman 
14783ba65732SDavid Greenman 	/*
14793ba65732SDavid Greenman 	 * Release any xmit buffers.
14803ba65732SDavid Greenman 	 */
1481da91462dSDavid Greenman 	txp = sc->cbl_base;
1482da91462dSDavid Greenman 	if (txp != NULL) {
1483da91462dSDavid Greenman 		for (i = 0; i < FXP_NTXCB; i++) {
1484da91462dSDavid Greenman 			if (txp[i].mb_head != NULL) {
1485da91462dSDavid Greenman 				m_freem(txp[i].mb_head);
1486da91462dSDavid Greenman 				txp[i].mb_head = NULL;
1487da91462dSDavid Greenman 			}
1488da91462dSDavid Greenman 		}
14893ba65732SDavid Greenman 	}
14903ba65732SDavid Greenman 	sc->tx_queued = 0;
14913ba65732SDavid Greenman 
14923ba65732SDavid Greenman 	/*
14933ba65732SDavid Greenman 	 * Free all the receive buffers then reallocate/reinitialize
14943ba65732SDavid Greenman 	 */
14953ba65732SDavid Greenman 	if (sc->rfa_headm != NULL)
14963ba65732SDavid Greenman 		m_freem(sc->rfa_headm);
14973ba65732SDavid Greenman 	sc->rfa_headm = NULL;
14983ba65732SDavid Greenman 	sc->rfa_tailm = NULL;
14993ba65732SDavid Greenman 	for (i = 0; i < FXP_NRFABUFS; i++) {
15003ba65732SDavid Greenman 		if (fxp_add_rfabuf(sc, NULL) != 0) {
15013ba65732SDavid Greenman 			/*
15023ba65732SDavid Greenman 			 * This "can't happen" - we're at splimp()
15033ba65732SDavid Greenman 			 * and we just freed all the buffers we need
15043ba65732SDavid Greenman 			 * above.
15053ba65732SDavid Greenman 			 */
15063ba65732SDavid Greenman 			panic("fxp_stop: no buffers!");
15073ba65732SDavid Greenman 		}
15083ba65732SDavid Greenman 	}
15093ba65732SDavid Greenman 
15100f4dc94cSChuck Paterson #if !defined(__NetBSD__)
15110f4dc94cSChuck Paterson 	FXP_UNLOCK(sc, s);
15120f4dc94cSChuck Paterson #endif
1513a17c678eSDavid Greenman }
1514a17c678eSDavid Greenman 
1515a17c678eSDavid Greenman /*
1516a17c678eSDavid Greenman  * Watchdog/transmission transmit timeout handler. Called when a
1517a17c678eSDavid Greenman  * transmission is started on the interface, but no interrupt is
1518a17c678eSDavid Greenman  * received before the timeout. This usually indicates that the
1519a17c678eSDavid Greenman  * card has wedged for some reason.
1520a17c678eSDavid Greenman  */
1521a17c678eSDavid Greenman static void
15224a5f1499SDavid Greenman fxp_watchdog(ifp)
15234a5f1499SDavid Greenman 	struct ifnet *ifp;
1524a17c678eSDavid Greenman {
1525ba8c6fd5SDavid Greenman 	struct fxp_softc *sc = ifp->if_softc;
1526ba8c6fd5SDavid Greenman 
1527397f9dfeSDavid Greenman 	printf(FXP_FORMAT ": device timeout\n", FXP_ARGS(sc));
15284a5f1499SDavid Greenman 	ifp->if_oerrors++;
1529a17c678eSDavid Greenman 
1530ba8c6fd5SDavid Greenman 	fxp_init(sc);
1531a17c678eSDavid Greenman }
1532a17c678eSDavid Greenman 
1533a17c678eSDavid Greenman static void
1534fb583156SDavid Greenman fxp_init(xsc)
1535fb583156SDavid Greenman 	void *xsc;
1536a17c678eSDavid Greenman {
1537fb583156SDavid Greenman 	struct fxp_softc *sc = xsc;
1538ba8c6fd5SDavid Greenman 	struct ifnet *ifp = &sc->sc_if;
1539a17c678eSDavid Greenman 	struct fxp_cb_config *cbp;
1540a17c678eSDavid Greenman 	struct fxp_cb_ias *cb_ias;
1541a17c678eSDavid Greenman 	struct fxp_cb_tx *txp;
15420f4dc94cSChuck Paterson 	int i, prm;
15430f4dc94cSChuck Paterson 	FXP_SPLVAR(s)
1544a17c678eSDavid Greenman 
15450f4dc94cSChuck Paterson 	FXP_LOCK(sc, s);
1546a17c678eSDavid Greenman 	/*
15473ba65732SDavid Greenman 	 * Cancel any pending I/O
1548a17c678eSDavid Greenman 	 */
15493ba65732SDavid Greenman 	fxp_stop(sc);
1550a17c678eSDavid Greenman 
1551a17c678eSDavid Greenman 	prm = (ifp->if_flags & IFF_PROMISC) ? 1 : 0;
1552a17c678eSDavid Greenman 
1553a17c678eSDavid Greenman 	/*
1554a17c678eSDavid Greenman 	 * Initialize base of CBL and RFA memory. Loading with zero
1555a17c678eSDavid Greenman 	 * sets it up for regular linear addressing.
1556a17c678eSDavid Greenman 	 */
1557ba8c6fd5SDavid Greenman 	CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, 0);
1558ba8c6fd5SDavid Greenman 	CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND, FXP_SCB_COMMAND_CU_BASE);
1559a17c678eSDavid Greenman 
1560ba8c6fd5SDavid Greenman 	fxp_scb_wait(sc);
1561ba8c6fd5SDavid Greenman 	CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND, FXP_SCB_COMMAND_RU_BASE);
1562a17c678eSDavid Greenman 
1563a17c678eSDavid Greenman 	/*
1564a17c678eSDavid Greenman 	 * Initialize base of dump-stats buffer.
1565a17c678eSDavid Greenman 	 */
1566ba8c6fd5SDavid Greenman 	fxp_scb_wait(sc);
1567ba8c6fd5SDavid Greenman 	CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, vtophys(sc->fxp_stats));
1568ba8c6fd5SDavid Greenman 	CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND, FXP_SCB_COMMAND_CU_DUMP_ADR);
1569a17c678eSDavid Greenman 
1570a17c678eSDavid Greenman 	/*
1571a17c678eSDavid Greenman 	 * We temporarily use memory that contains the TxCB list to
1572a17c678eSDavid Greenman 	 * construct the config CB. The TxCB list memory is rebuilt
1573a17c678eSDavid Greenman 	 * later.
1574a17c678eSDavid Greenman 	 */
1575a17c678eSDavid Greenman 	cbp = (struct fxp_cb_config *) sc->cbl_base;
1576a17c678eSDavid Greenman 
1577a17c678eSDavid Greenman 	/*
1578a17c678eSDavid Greenman 	 * This bcopy is kind of disgusting, but there are a bunch of must be
1579a17c678eSDavid Greenman 	 * zero and must be one bits in this structure and this is the easiest
1580a17c678eSDavid Greenman 	 * way to initialize them all to proper values.
1581a17c678eSDavid Greenman 	 */
1582d244b0e9SPeter Wemm 	bcopy(fxp_cb_config_template,
1583d244b0e9SPeter Wemm 		(void *)(uintptr_t)(volatile void *)&cbp->cb_status,
1584397f9dfeSDavid Greenman 		sizeof(fxp_cb_config_template));
1585a17c678eSDavid Greenman 
1586a17c678eSDavid Greenman 	cbp->cb_status =	0;
1587a17c678eSDavid Greenman 	cbp->cb_command =	FXP_CB_COMMAND_CONFIG | FXP_CB_COMMAND_EL;
1588a17c678eSDavid Greenman 	cbp->link_addr =	-1;	/* (no) next command */
1589a17c678eSDavid Greenman 	cbp->byte_count =	22;	/* (22) bytes to config */
1590001696daSDavid Greenman 	cbp->rx_fifo_limit =	8;	/* rx fifo threshold (32 bytes) */
1591001696daSDavid Greenman 	cbp->tx_fifo_limit =	0;	/* tx fifo threshold (0 bytes) */
1592a17c678eSDavid Greenman 	cbp->adaptive_ifs =	0;	/* (no) adaptive interframe spacing */
1593001696daSDavid Greenman 	cbp->rx_dma_bytecount =	0;	/* (no) rx DMA max */
1594001696daSDavid Greenman 	cbp->tx_dma_bytecount =	0;	/* (no) tx DMA max */
1595001696daSDavid Greenman 	cbp->dma_bce =		0;	/* (disable) dma max counters */
1596a17c678eSDavid Greenman 	cbp->late_scb =		0;	/* (don't) defer SCB update */
1597a17c678eSDavid Greenman 	cbp->tno_int =		0;	/* (disable) tx not okay interrupt */
15983114fdb4SDavid Greenman 	cbp->ci_int =		1;	/* interrupt on CU idle */
1599a17c678eSDavid Greenman 	cbp->save_bf =		prm;	/* save bad frames */
1600a17c678eSDavid Greenman 	cbp->disc_short_rx =	!prm;	/* discard short packets */
1601a17c678eSDavid Greenman 	cbp->underrun_retry =	1;	/* retry mode (1) on DMA underrun */
1602dccee1a1SDavid Greenman 	cbp->mediatype =	!sc->phy_10Mbps_only; /* interface mode */
1603a17c678eSDavid Greenman 	cbp->nsai =		1;	/* (don't) disable source addr insert */
1604a17c678eSDavid Greenman 	cbp->preamble_length =	2;	/* (7 byte) preamble */
1605a17c678eSDavid Greenman 	cbp->loopback =		0;	/* (don't) loopback */
1606a17c678eSDavid Greenman 	cbp->linear_priority =	0;	/* (normal CSMA/CD operation) */
1607a17c678eSDavid Greenman 	cbp->linear_pri_mode =	0;	/* (wait after xmit only) */
1608a17c678eSDavid Greenman 	cbp->interfrm_spacing =	6;	/* (96 bits of) interframe spacing */
1609a17c678eSDavid Greenman 	cbp->promiscuous =	prm;	/* promiscuous mode */
1610a17c678eSDavid Greenman 	cbp->bcast_disable =	0;	/* (don't) disable broadcasts */
1611001696daSDavid Greenman 	cbp->crscdt =		0;	/* (CRS only) */
1612a17c678eSDavid Greenman 	cbp->stripping =	!prm;	/* truncate rx packet to byte count */
1613a17c678eSDavid Greenman 	cbp->padding =		1;	/* (do) pad short tx packets */
1614a17c678eSDavid Greenman 	cbp->rcv_crc_xfer =	0;	/* (don't) xfer CRC to host */
1615a17c678eSDavid Greenman 	cbp->force_fdx =	0;	/* (don't) force full duplex */
16163ba65732SDavid Greenman 	cbp->fdx_pin_en =	1;	/* (enable) FDX# pin */
1617a17c678eSDavid Greenman 	cbp->multi_ia =		0;	/* (don't) accept multiple IAs */
1618397f9dfeSDavid Greenman 	cbp->mc_all =		sc->all_mcasts;/* accept all multicasts */
1619a17c678eSDavid Greenman 
1620a17c678eSDavid Greenman 	/*
1621a17c678eSDavid Greenman 	 * Start the config command/DMA.
1622a17c678eSDavid Greenman 	 */
1623ba8c6fd5SDavid Greenman 	fxp_scb_wait(sc);
1624397f9dfeSDavid Greenman 	CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, vtophys(&cbp->cb_status));
1625ba8c6fd5SDavid Greenman 	CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND, FXP_SCB_COMMAND_CU_START);
1626a17c678eSDavid Greenman 	/* ...and wait for it to complete. */
16277dced78aSDavid Greenman 	fxp_dma_wait(&cbp->cb_status, sc);
1628a17c678eSDavid Greenman 
1629a17c678eSDavid Greenman 	/*
1630a17c678eSDavid Greenman 	 * Now initialize the station address. Temporarily use the TxCB
1631a17c678eSDavid Greenman 	 * memory area like we did above for the config CB.
1632a17c678eSDavid Greenman 	 */
1633a17c678eSDavid Greenman 	cb_ias = (struct fxp_cb_ias *) sc->cbl_base;
1634a17c678eSDavid Greenman 	cb_ias->cb_status = 0;
1635a17c678eSDavid Greenman 	cb_ias->cb_command = FXP_CB_COMMAND_IAS | FXP_CB_COMMAND_EL;
1636a17c678eSDavid Greenman 	cb_ias->link_addr = -1;
1637ba8c6fd5SDavid Greenman #if defined(__NetBSD__)
1638ba8c6fd5SDavid Greenman 	bcopy(LLADDR(ifp->if_sadl), (void *)cb_ias->macaddr, 6);
1639ba8c6fd5SDavid Greenman #else
1640d244b0e9SPeter Wemm 	bcopy(sc->arpcom.ac_enaddr,
1641d244b0e9SPeter Wemm 	    (void *)(uintptr_t)(volatile void *)cb_ias->macaddr,
1642a17c678eSDavid Greenman 	    sizeof(sc->arpcom.ac_enaddr));
1643ba8c6fd5SDavid Greenman #endif /* __NetBSD__ */
1644a17c678eSDavid Greenman 
1645a17c678eSDavid Greenman 	/*
1646a17c678eSDavid Greenman 	 * Start the IAS (Individual Address Setup) command/DMA.
1647a17c678eSDavid Greenman 	 */
1648ba8c6fd5SDavid Greenman 	fxp_scb_wait(sc);
1649ba8c6fd5SDavid Greenman 	CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND, FXP_SCB_COMMAND_CU_START);
1650a17c678eSDavid Greenman 	/* ...and wait for it to complete. */
16517dced78aSDavid Greenman 	fxp_dma_wait(&cb_ias->cb_status, sc);
1652a17c678eSDavid Greenman 
1653a17c678eSDavid Greenman 	/*
1654a17c678eSDavid Greenman 	 * Initialize transmit control block (TxCB) list.
1655a17c678eSDavid Greenman 	 */
1656a17c678eSDavid Greenman 
1657a17c678eSDavid Greenman 	txp = sc->cbl_base;
1658a17c678eSDavid Greenman 	bzero(txp, sizeof(struct fxp_cb_tx) * FXP_NTXCB);
1659a17c678eSDavid Greenman 	for (i = 0; i < FXP_NTXCB; i++) {
1660a17c678eSDavid Greenman 		txp[i].cb_status = FXP_CB_STATUS_C | FXP_CB_STATUS_OK;
1661a17c678eSDavid Greenman 		txp[i].cb_command = FXP_CB_COMMAND_NOP;
1662397f9dfeSDavid Greenman 		txp[i].link_addr = vtophys(&txp[(i + 1) & FXP_TXCB_MASK].cb_status);
1663a17c678eSDavid Greenman 		txp[i].tbd_array_addr = vtophys(&txp[i].tbd[0]);
1664a17c678eSDavid Greenman 		txp[i].next = &txp[(i + 1) & FXP_TXCB_MASK];
1665a17c678eSDavid Greenman 	}
1666a17c678eSDavid Greenman 	/*
1667397f9dfeSDavid Greenman 	 * Set the suspend flag on the first TxCB and start the control
1668a17c678eSDavid Greenman 	 * unit. It will execute the NOP and then suspend.
1669a17c678eSDavid Greenman 	 */
1670a17c678eSDavid Greenman 	txp->cb_command = FXP_CB_COMMAND_NOP | FXP_CB_COMMAND_S;
1671a17c678eSDavid Greenman 	sc->cbl_first = sc->cbl_last = txp;
1672397f9dfeSDavid Greenman 	sc->tx_queued = 1;
1673a17c678eSDavid Greenman 
1674ba8c6fd5SDavid Greenman 	fxp_scb_wait(sc);
1675ba8c6fd5SDavid Greenman 	CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND, FXP_SCB_COMMAND_CU_START);
1676a17c678eSDavid Greenman 
1677a17c678eSDavid Greenman 	/*
1678a17c678eSDavid Greenman 	 * Initialize receiver buffer area - RFA.
1679a17c678eSDavid Greenman 	 */
1680ba8c6fd5SDavid Greenman 	fxp_scb_wait(sc);
1681ba8c6fd5SDavid Greenman 	CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL,
1682ba8c6fd5SDavid Greenman 	    vtophys(sc->rfa_headm->m_ext.ext_buf) + RFA_ALIGNMENT_FUDGE);
1683ba8c6fd5SDavid Greenman 	CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND, FXP_SCB_COMMAND_RU_START);
1684a17c678eSDavid Greenman 
1685dccee1a1SDavid Greenman 	/*
1686ba8c6fd5SDavid Greenman 	 * Set current media.
1687dccee1a1SDavid Greenman 	 */
1688ba8c6fd5SDavid Greenman 	fxp_set_media(sc, sc->sc_media.ifm_cur->ifm_media);
1689dccee1a1SDavid Greenman 
1690a17c678eSDavid Greenman 	ifp->if_flags |= IFF_RUNNING;
1691a17c678eSDavid Greenman 	ifp->if_flags &= ~IFF_OACTIVE;
16920f4dc94cSChuck Paterson 	FXP_UNLOCK(sc, s);
1693a17c678eSDavid Greenman 
1694a17c678eSDavid Greenman 	/*
1695a17c678eSDavid Greenman 	 * Start stats updater.
1696a17c678eSDavid Greenman 	 */
16976c951b44SJustin T. Gibbs 	sc->stat_ch = timeout(fxp_stats_update, sc, hz);
1698a17c678eSDavid Greenman }
1699a17c678eSDavid Greenman 
1700303b270bSEivind Eklund static void
1701ba8c6fd5SDavid Greenman fxp_set_media(sc, media)
1702ba8c6fd5SDavid Greenman 	struct fxp_softc *sc;
1703ba8c6fd5SDavid Greenman 	int media;
1704ba8c6fd5SDavid Greenman {
1705ba8c6fd5SDavid Greenman 
1706ba8c6fd5SDavid Greenman 	switch (sc->phy_primary_device) {
1707ba8c6fd5SDavid Greenman 	case FXP_PHY_DP83840:
1708ba8c6fd5SDavid Greenman 	case FXP_PHY_DP83840A:
1709ba8c6fd5SDavid Greenman 		fxp_mdi_write(sc, sc->phy_primary_addr, FXP_DP83840_PCR,
1710ba8c6fd5SDavid Greenman 		    fxp_mdi_read(sc, sc->phy_primary_addr, FXP_DP83840_PCR) |
1711ba8c6fd5SDavid Greenman 		    FXP_DP83840_PCR_LED4_MODE |	/* LED4 always indicates duplex */
1712ba8c6fd5SDavid Greenman 		    FXP_DP83840_PCR_F_CONNECT |	/* force link disconnect bypass */
1713ba8c6fd5SDavid Greenman 		    FXP_DP83840_PCR_BIT10);	/* XXX I have no idea */
1714ba8c6fd5SDavid Greenman 		/* fall through */
171592924291SDavid Greenman 	case FXP_PHY_82553A:
171692924291SDavid Greenman 	case FXP_PHY_82553C: /* untested */
1717ba8c6fd5SDavid Greenman 	case FXP_PHY_82555:
171892924291SDavid Greenman 	case FXP_PHY_82555B:
1719ba8c6fd5SDavid Greenman 		if (IFM_SUBTYPE(media) != IFM_AUTO) {
1720ba8c6fd5SDavid Greenman 			int flags;
1721ba8c6fd5SDavid Greenman 
1722ba8c6fd5SDavid Greenman 			flags = (IFM_SUBTYPE(media) == IFM_100_TX) ?
1723ba8c6fd5SDavid Greenman 			    FXP_PHY_BMCR_SPEED_100M : 0;
1724ba8c6fd5SDavid Greenman 			flags |= (media & IFM_FDX) ?
1725ba8c6fd5SDavid Greenman 			    FXP_PHY_BMCR_FULLDUPLEX : 0;
1726ba8c6fd5SDavid Greenman 			fxp_mdi_write(sc, sc->phy_primary_addr,
1727ba8c6fd5SDavid Greenman 			    FXP_PHY_BMCR,
1728ba8c6fd5SDavid Greenman 			    (fxp_mdi_read(sc, sc->phy_primary_addr,
1729ba8c6fd5SDavid Greenman 			    FXP_PHY_BMCR) &
1730ba8c6fd5SDavid Greenman 			    ~(FXP_PHY_BMCR_AUTOEN | FXP_PHY_BMCR_SPEED_100M |
1731ba8c6fd5SDavid Greenman 			     FXP_PHY_BMCR_FULLDUPLEX)) | flags);
1732ba8c6fd5SDavid Greenman 		} else {
1733ba8c6fd5SDavid Greenman 			fxp_mdi_write(sc, sc->phy_primary_addr,
1734ba8c6fd5SDavid Greenman 			    FXP_PHY_BMCR,
1735ba8c6fd5SDavid Greenman 			    (fxp_mdi_read(sc, sc->phy_primary_addr,
1736ba8c6fd5SDavid Greenman 			    FXP_PHY_BMCR) | FXP_PHY_BMCR_AUTOEN));
1737ba8c6fd5SDavid Greenman 		}
1738ba8c6fd5SDavid Greenman 		break;
1739ba8c6fd5SDavid Greenman 	/*
1740ba8c6fd5SDavid Greenman 	 * The Seeq 80c24 doesn't have a PHY programming interface, so do
1741ba8c6fd5SDavid Greenman 	 * nothing.
1742ba8c6fd5SDavid Greenman 	 */
1743ba8c6fd5SDavid Greenman 	case FXP_PHY_80C24:
1744ba8c6fd5SDavid Greenman 		break;
1745ba8c6fd5SDavid Greenman 	default:
1746ba8c6fd5SDavid Greenman 		printf(FXP_FORMAT
1747ba8c6fd5SDavid Greenman 		    ": warning: unsupported PHY, type = %d, addr = %d\n",
1748ba8c6fd5SDavid Greenman 		     FXP_ARGS(sc), sc->phy_primary_device,
1749ba8c6fd5SDavid Greenman 		     sc->phy_primary_addr);
1750ba8c6fd5SDavid Greenman 	}
1751ba8c6fd5SDavid Greenman }
1752ba8c6fd5SDavid Greenman 
1753ba8c6fd5SDavid Greenman /*
1754ba8c6fd5SDavid Greenman  * Change media according to request.
1755ba8c6fd5SDavid Greenman  */
1756ba8c6fd5SDavid Greenman int
1757ba8c6fd5SDavid Greenman fxp_mediachange(ifp)
1758ba8c6fd5SDavid Greenman 	struct ifnet *ifp;
1759ba8c6fd5SDavid Greenman {
1760ba8c6fd5SDavid Greenman 	struct fxp_softc *sc = ifp->if_softc;
1761ba8c6fd5SDavid Greenman 	struct ifmedia *ifm = &sc->sc_media;
1762ba8c6fd5SDavid Greenman 
1763ba8c6fd5SDavid Greenman 	if (IFM_TYPE(ifm->ifm_media) != IFM_ETHER)
1764ba8c6fd5SDavid Greenman 		return (EINVAL);
1765ba8c6fd5SDavid Greenman 
1766ba8c6fd5SDavid Greenman 	fxp_set_media(sc, ifm->ifm_media);
1767ba8c6fd5SDavid Greenman 	return (0);
1768ba8c6fd5SDavid Greenman }
1769ba8c6fd5SDavid Greenman 
1770ba8c6fd5SDavid Greenman /*
1771ba8c6fd5SDavid Greenman  * Notify the world which media we're using.
1772ba8c6fd5SDavid Greenman  */
1773ba8c6fd5SDavid Greenman void
1774ba8c6fd5SDavid Greenman fxp_mediastatus(ifp, ifmr)
1775ba8c6fd5SDavid Greenman 	struct ifnet *ifp;
1776ba8c6fd5SDavid Greenman 	struct ifmediareq *ifmr;
1777ba8c6fd5SDavid Greenman {
1778ba8c6fd5SDavid Greenman 	struct fxp_softc *sc = ifp->if_softc;
1779a7280784SJulian Elischer 	int flags, stsflags;
1780ba8c6fd5SDavid Greenman 
1781ba8c6fd5SDavid Greenman 	switch (sc->phy_primary_device) {
1782ba8c6fd5SDavid Greenman 	case FXP_PHY_82555:
178335517ab7SDavid Greenman 	case FXP_PHY_82555B:
1784a7280784SJulian Elischer 	case FXP_PHY_DP83840:
1785a7280784SJulian Elischer 	case FXP_PHY_DP83840A:
1786a7280784SJulian Elischer 		ifmr->ifm_status = IFM_AVALID; /* IFM_ACTIVE will be valid */
1787ba8c6fd5SDavid Greenman 		ifmr->ifm_active = IFM_ETHER;
1788a7280784SJulian Elischer 		/*
1789a7280784SJulian Elischer 		 * the following is not an error.
1790a7280784SJulian Elischer 		 * You need to read this register twice to get current
1791a7280784SJulian Elischer 		 * status. This is correct documented behaviour, the
1792a7280784SJulian Elischer 		 * first read gets latched values.
1793a7280784SJulian Elischer 		 */
1794a7280784SJulian Elischer 		stsflags = fxp_mdi_read(sc, sc->phy_primary_addr, FXP_PHY_STS);
1795a7280784SJulian Elischer 		stsflags = fxp_mdi_read(sc, sc->phy_primary_addr, FXP_PHY_STS);
1796a7280784SJulian Elischer 		if (stsflags & FXP_PHY_STS_LINK_STS)
1797a7280784SJulian Elischer 				ifmr->ifm_status |= IFM_ACTIVE;
1798a7280784SJulian Elischer 
1799a7280784SJulian Elischer 		/*
1800a7280784SJulian Elischer 		 * If we are in auto mode, then try report the result.
1801a7280784SJulian Elischer 		 */
1802a7280784SJulian Elischer 		flags = fxp_mdi_read(sc, sc->phy_primary_addr, FXP_PHY_BMCR);
1803f1bf08c2SJulian Elischer 		if (flags & FXP_PHY_BMCR_AUTOEN) {
1804f1bf08c2SJulian Elischer 			ifmr->ifm_active |= IFM_AUTO; /* XXX presently 0 */
1805a7280784SJulian Elischer 			if (stsflags & FXP_PHY_STS_AUTO_DONE) {
1806f1bf08c2SJulian Elischer 				/*
1807a7280784SJulian Elischer 				 * Intel and National parts report
1808a7280784SJulian Elischer 				 * differently on what they found.
1809f1bf08c2SJulian Elischer 				 */
1810f1bf08c2SJulian Elischer 				if ((sc->phy_primary_device == FXP_PHY_82555)
1811f1bf08c2SJulian Elischer 				|| (sc->phy_primary_device == FXP_PHY_82555B)) {
1812f1bf08c2SJulian Elischer 					flags = fxp_mdi_read(sc,
1813a7280784SJulian Elischer 						sc->phy_primary_addr,
1814a7280784SJulian Elischer 						FXP_PHY_USC);
1815f1bf08c2SJulian Elischer 
1816f1bf08c2SJulian Elischer 					if (flags & FXP_PHY_USC_SPEED)
1817f1bf08c2SJulian Elischer 						ifmr->ifm_active |= IFM_100_TX;
1818f1bf08c2SJulian Elischer 					else
1819f1bf08c2SJulian Elischer 						ifmr->ifm_active |= IFM_10_T;
1820f1bf08c2SJulian Elischer 
1821f1bf08c2SJulian Elischer 					if (flags & FXP_PHY_USC_DUPLEX)
1822f1bf08c2SJulian Elischer 						ifmr->ifm_active |= IFM_FDX;
1823a7280784SJulian Elischer 				} else { /* it's National. only know speed  */
1824a7280784SJulian Elischer 					flags = fxp_mdi_read(sc,
1825a7280784SJulian Elischer 						sc->phy_primary_addr,
1826a7280784SJulian Elischer 						FXP_DP83840_PAR);
1827a7280784SJulian Elischer 
1828a7280784SJulian Elischer 					if (flags & FXP_DP83840_PAR_SPEED_10)
1829a7280784SJulian Elischer 						ifmr->ifm_active |= IFM_10_T;
1830a7280784SJulian Elischer 					else
1831a7280784SJulian Elischer 						ifmr->ifm_active |= IFM_100_TX;
1832f1bf08c2SJulian Elischer 				}
1833a7280784SJulian Elischer 			}
1834a7280784SJulian Elischer 		} else { /* in manual mode.. just report what we were set to */
1835ba8c6fd5SDavid Greenman 			if (flags & FXP_PHY_BMCR_SPEED_100M)
1836ba8c6fd5SDavid Greenman 				ifmr->ifm_active |= IFM_100_TX;
1837ba8c6fd5SDavid Greenman 			else
1838ba8c6fd5SDavid Greenman 				ifmr->ifm_active |= IFM_10_T;
1839ba8c6fd5SDavid Greenman 
1840ba8c6fd5SDavid Greenman 			if (flags & FXP_PHY_BMCR_FULLDUPLEX)
1841ba8c6fd5SDavid Greenman 				ifmr->ifm_active |= IFM_FDX;
1842ba8c6fd5SDavid Greenman 		}
1843ba8c6fd5SDavid Greenman 		break;
1844ba8c6fd5SDavid Greenman 
1845ba8c6fd5SDavid Greenman 	case FXP_PHY_80C24:
1846ba8c6fd5SDavid Greenman 	default:
1847ba8c6fd5SDavid Greenman 		ifmr->ifm_active = IFM_ETHER|IFM_MANUAL; /* XXX IFM_AUTO ? */
1848ba8c6fd5SDavid Greenman 	}
1849ba8c6fd5SDavid Greenman }
1850ba8c6fd5SDavid Greenman 
1851a17c678eSDavid Greenman /*
1852a17c678eSDavid Greenman  * Add a buffer to the end of the RFA buffer list.
1853a17c678eSDavid Greenman  * Return 0 if successful, 1 for failure. A failure results in
1854a17c678eSDavid Greenman  * adding the 'oldm' (if non-NULL) on to the end of the list -
1855dc733423SDag-Erling Smørgrav  * tossing out its old contents and recycling it.
1856a17c678eSDavid Greenman  * The RFA struct is stuck at the beginning of mbuf cluster and the
1857a17c678eSDavid Greenman  * data pointer is fixed up to point just past it.
1858a17c678eSDavid Greenman  */
1859a17c678eSDavid Greenman static int
1860a17c678eSDavid Greenman fxp_add_rfabuf(sc, oldm)
1861a17c678eSDavid Greenman 	struct fxp_softc *sc;
1862a17c678eSDavid Greenman 	struct mbuf *oldm;
1863a17c678eSDavid Greenman {
1864ba8c6fd5SDavid Greenman 	u_int32_t v;
1865a17c678eSDavid Greenman 	struct mbuf *m;
1866a17c678eSDavid Greenman 	struct fxp_rfa *rfa, *p_rfa;
1867a17c678eSDavid Greenman 
1868a17c678eSDavid Greenman 	MGETHDR(m, M_DONTWAIT, MT_DATA);
1869a17c678eSDavid Greenman 	if (m != NULL) {
1870a17c678eSDavid Greenman 		MCLGET(m, M_DONTWAIT);
1871a17c678eSDavid Greenman 		if ((m->m_flags & M_EXT) == 0) {
1872a17c678eSDavid Greenman 			m_freem(m);
1873eadd5e3aSDavid Greenman 			if (oldm == NULL)
1874eadd5e3aSDavid Greenman 				return 1;
1875a17c678eSDavid Greenman 			m = oldm;
1876eadd5e3aSDavid Greenman 			m->m_data = m->m_ext.ext_buf;
1877a17c678eSDavid Greenman 		}
1878a17c678eSDavid Greenman 	} else {
1879eadd5e3aSDavid Greenman 		if (oldm == NULL)
1880a17c678eSDavid Greenman 			return 1;
1881eadd5e3aSDavid Greenman 		m = oldm;
1882eadd5e3aSDavid Greenman 		m->m_data = m->m_ext.ext_buf;
1883eadd5e3aSDavid Greenman 	}
1884ba8c6fd5SDavid Greenman 
1885ba8c6fd5SDavid Greenman 	/*
1886ba8c6fd5SDavid Greenman 	 * Move the data pointer up so that the incoming data packet
1887ba8c6fd5SDavid Greenman 	 * will be 32-bit aligned.
1888ba8c6fd5SDavid Greenman 	 */
1889ba8c6fd5SDavid Greenman 	m->m_data += RFA_ALIGNMENT_FUDGE;
1890ba8c6fd5SDavid Greenman 
1891eadd5e3aSDavid Greenman 	/*
1892eadd5e3aSDavid Greenman 	 * Get a pointer to the base of the mbuf cluster and move
1893eadd5e3aSDavid Greenman 	 * data start past it.
1894eadd5e3aSDavid Greenman 	 */
1895a17c678eSDavid Greenman 	rfa = mtod(m, struct fxp_rfa *);
1896eadd5e3aSDavid Greenman 	m->m_data += sizeof(struct fxp_rfa);
18974fc1dda9SAndrew Gallatin 	rfa->size = (u_int16_t)(MCLBYTES - sizeof(struct fxp_rfa) - RFA_ALIGNMENT_FUDGE);
1898eadd5e3aSDavid Greenman 
1899ba8c6fd5SDavid Greenman 	/*
1900ba8c6fd5SDavid Greenman 	 * Initialize the rest of the RFA.  Note that since the RFA
1901ba8c6fd5SDavid Greenman 	 * is misaligned, we cannot store values directly.  Instead,
1902ba8c6fd5SDavid Greenman 	 * we use an optimized, inline copy.
1903ba8c6fd5SDavid Greenman 	 */
19044fc1dda9SAndrew Gallatin 
1905a17c678eSDavid Greenman 	rfa->rfa_status = 0;
1906a17c678eSDavid Greenman 	rfa->rfa_control = FXP_RFA_CONTROL_EL;
1907a17c678eSDavid Greenman 	rfa->actual_size = 0;
1908ba8c6fd5SDavid Greenman 
1909ba8c6fd5SDavid Greenman 	v = -1;
19104fc1dda9SAndrew Gallatin 	fxp_lwcopy(&v, (volatile u_int32_t *) rfa->link_addr);
19114fc1dda9SAndrew Gallatin 	fxp_lwcopy(&v, (volatile u_int32_t *) rfa->rbd_addr);
1912ba8c6fd5SDavid Greenman 
1913dfe61cf1SDavid Greenman 	/*
1914dfe61cf1SDavid Greenman 	 * If there are other buffers already on the list, attach this
1915dfe61cf1SDavid Greenman 	 * one to the end by fixing up the tail to point to this one.
1916dfe61cf1SDavid Greenman 	 */
1917a17c678eSDavid Greenman 	if (sc->rfa_headm != NULL) {
1918ba8c6fd5SDavid Greenman 		p_rfa = (struct fxp_rfa *) (sc->rfa_tailm->m_ext.ext_buf +
1919ba8c6fd5SDavid Greenman 		    RFA_ALIGNMENT_FUDGE);
1920a17c678eSDavid Greenman 		sc->rfa_tailm->m_next = m;
1921ba8c6fd5SDavid Greenman 		v = vtophys(rfa);
19224fc1dda9SAndrew Gallatin 		fxp_lwcopy(&v, (volatile u_int32_t *) p_rfa->link_addr);
1923aed53495SDavid Greenman 		p_rfa->rfa_control = 0;
1924a17c678eSDavid Greenman 	} else {
1925a17c678eSDavid Greenman 		sc->rfa_headm = m;
1926a17c678eSDavid Greenman 	}
1927a17c678eSDavid Greenman 	sc->rfa_tailm = m;
1928a17c678eSDavid Greenman 
1929dfe61cf1SDavid Greenman 	return (m == oldm);
1930a17c678eSDavid Greenman }
1931a17c678eSDavid Greenman 
19326ebc3153SDavid Greenman static volatile int
1933ba8c6fd5SDavid Greenman fxp_mdi_read(sc, phy, reg)
1934ba8c6fd5SDavid Greenman 	struct fxp_softc *sc;
1935dccee1a1SDavid Greenman 	int phy;
1936dccee1a1SDavid Greenman 	int reg;
1937dccee1a1SDavid Greenman {
1938dccee1a1SDavid Greenman 	int count = 10000;
19396ebc3153SDavid Greenman 	int value;
1940dccee1a1SDavid Greenman 
1941ba8c6fd5SDavid Greenman 	CSR_WRITE_4(sc, FXP_CSR_MDICONTROL,
1942ba8c6fd5SDavid Greenman 	    (FXP_MDI_READ << 26) | (reg << 16) | (phy << 21));
1943dccee1a1SDavid Greenman 
1944ba8c6fd5SDavid Greenman 	while (((value = CSR_READ_4(sc, FXP_CSR_MDICONTROL)) & 0x10000000) == 0
1945ba8c6fd5SDavid Greenman 	    && count--)
19466ebc3153SDavid Greenman 		DELAY(10);
1947dccee1a1SDavid Greenman 
1948dccee1a1SDavid Greenman 	if (count <= 0)
1949ba8c6fd5SDavid Greenman 		printf(FXP_FORMAT ": fxp_mdi_read: timed out\n",
1950ba8c6fd5SDavid Greenman 		    FXP_ARGS(sc));
1951dccee1a1SDavid Greenman 
19526ebc3153SDavid Greenman 	return (value & 0xffff);
1953dccee1a1SDavid Greenman }
1954dccee1a1SDavid Greenman 
1955dccee1a1SDavid Greenman static void
1956ba8c6fd5SDavid Greenman fxp_mdi_write(sc, phy, reg, value)
1957ba8c6fd5SDavid Greenman 	struct fxp_softc *sc;
1958dccee1a1SDavid Greenman 	int phy;
1959dccee1a1SDavid Greenman 	int reg;
1960dccee1a1SDavid Greenman 	int value;
1961dccee1a1SDavid Greenman {
1962dccee1a1SDavid Greenman 	int count = 10000;
1963dccee1a1SDavid Greenman 
1964ba8c6fd5SDavid Greenman 	CSR_WRITE_4(sc, FXP_CSR_MDICONTROL,
1965ba8c6fd5SDavid Greenman 	    (FXP_MDI_WRITE << 26) | (reg << 16) | (phy << 21) |
1966ba8c6fd5SDavid Greenman 	    (value & 0xffff));
1967dccee1a1SDavid Greenman 
1968ba8c6fd5SDavid Greenman 	while((CSR_READ_4(sc, FXP_CSR_MDICONTROL) & 0x10000000) == 0 &&
1969ba8c6fd5SDavid Greenman 	    count--)
19706ebc3153SDavid Greenman 		DELAY(10);
1971dccee1a1SDavid Greenman 
1972dccee1a1SDavid Greenman 	if (count <= 0)
1973ba8c6fd5SDavid Greenman 		printf(FXP_FORMAT ": fxp_mdi_write: timed out\n",
1974ba8c6fd5SDavid Greenman 		    FXP_ARGS(sc));
1975dccee1a1SDavid Greenman }
1976dccee1a1SDavid Greenman 
1977dccee1a1SDavid Greenman static int
1978a17c678eSDavid Greenman fxp_ioctl(ifp, command, data)
1979a17c678eSDavid Greenman 	struct ifnet *ifp;
1980ba8c6fd5SDavid Greenman 	FXP_IOCTLCMD_TYPE command;
1981a17c678eSDavid Greenman 	caddr_t data;
1982a17c678eSDavid Greenman {
19839b44ff22SGarrett Wollman 	struct fxp_softc *sc = ifp->if_softc;
1984a17c678eSDavid Greenman 	struct ifreq *ifr = (struct ifreq *)data;
19850f4dc94cSChuck Paterson 	FXP_SPLVAR(s)
19860f4dc94cSChuck Paterson 	int error = 0;
1987a17c678eSDavid Greenman 
19880f4dc94cSChuck Paterson 	FXP_LOCK(sc, s);
1989a17c678eSDavid Greenman 
1990a17c678eSDavid Greenman 	switch (command) {
1991a17c678eSDavid Greenman 
1992a17c678eSDavid Greenman 	case SIOCSIFADDR:
1993ba8c6fd5SDavid Greenman #if !defined(__NetBSD__)
1994a17c678eSDavid Greenman 	case SIOCGIFADDR:
1995fb583156SDavid Greenman 	case SIOCSIFMTU:
1996ba8c6fd5SDavid Greenman #endif
1997fb583156SDavid Greenman 		error = ether_ioctl(ifp, command, data);
1998a17c678eSDavid Greenman 		break;
1999a17c678eSDavid Greenman 
2000a17c678eSDavid Greenman 	case SIOCSIFFLAGS:
2001397f9dfeSDavid Greenman 		sc->all_mcasts = (ifp->if_flags & IFF_ALLMULTI) ? 1 : 0;
2002a17c678eSDavid Greenman 
2003a17c678eSDavid Greenman 		/*
2004a17c678eSDavid Greenman 		 * If interface is marked up and not running, then start it.
2005a17c678eSDavid Greenman 		 * If it is marked down and running, stop it.
2006a17c678eSDavid Greenman 		 * XXX If it's up then re-initialize it. This is so flags
2007a17c678eSDavid Greenman 		 * such as IFF_PROMISC are handled.
2008a17c678eSDavid Greenman 		 */
2009a17c678eSDavid Greenman 		if (ifp->if_flags & IFF_UP) {
2010fb583156SDavid Greenman 			fxp_init(sc);
2011a17c678eSDavid Greenman 		} else {
2012a17c678eSDavid Greenman 			if (ifp->if_flags & IFF_RUNNING)
20134a5f1499SDavid Greenman 				fxp_stop(sc);
2014a17c678eSDavid Greenman 		}
2015a17c678eSDavid Greenman 		break;
2016a17c678eSDavid Greenman 
2017a17c678eSDavid Greenman 	case SIOCADDMULTI:
2018a17c678eSDavid Greenman 	case SIOCDELMULTI:
2019397f9dfeSDavid Greenman 		sc->all_mcasts = (ifp->if_flags & IFF_ALLMULTI) ? 1 : 0;
2020ba8c6fd5SDavid Greenman #if defined(__NetBSD__)
2021ba8c6fd5SDavid Greenman 		error = (command == SIOCADDMULTI) ?
2022ba8c6fd5SDavid Greenman 		    ether_addmulti(ifr, &sc->sc_ethercom) :
2023ba8c6fd5SDavid Greenman 		    ether_delmulti(ifr, &sc->sc_ethercom);
2024ba8c6fd5SDavid Greenman 
2025ba8c6fd5SDavid Greenman 		if (error == ENETRESET) {
2026ba8c6fd5SDavid Greenman 			/*
2027ba8c6fd5SDavid Greenman 			 * Multicast list has changed; set the hardware
2028ba8c6fd5SDavid Greenman 			 * filter accordingly.
2029ba8c6fd5SDavid Greenman 			 */
2030397f9dfeSDavid Greenman 			if (!sc->all_mcasts)
2031397f9dfeSDavid Greenman 				fxp_mc_setup(sc);
2032397f9dfeSDavid Greenman 			/*
2033397f9dfeSDavid Greenman 			 * fxp_mc_setup() can turn on all_mcasts if we run
2034397f9dfeSDavid Greenman 			 * out of space, so check it again rather than else {}.
2035397f9dfeSDavid Greenman 			 */
2036397f9dfeSDavid Greenman 			if (sc->all_mcasts)
2037ba8c6fd5SDavid Greenman 				fxp_init(sc);
2038ba8c6fd5SDavid Greenman 			error = 0;
2039ba8c6fd5SDavid Greenman 		}
2040ba8c6fd5SDavid Greenman #else /* __FreeBSD__ */
2041a17c678eSDavid Greenman 		/*
2042a17c678eSDavid Greenman 		 * Multicast list has changed; set the hardware filter
2043a17c678eSDavid Greenman 		 * accordingly.
2044a17c678eSDavid Greenman 		 */
2045397f9dfeSDavid Greenman 		if (!sc->all_mcasts)
2046397f9dfeSDavid Greenman 			fxp_mc_setup(sc);
2047397f9dfeSDavid Greenman 		/*
2048397f9dfeSDavid Greenman 		 * fxp_mc_setup() can turn on sc->all_mcasts, so check it
2049397f9dfeSDavid Greenman 		 * again rather than else {}.
2050397f9dfeSDavid Greenman 		 */
2051397f9dfeSDavid Greenman 		if (sc->all_mcasts)
2052fb583156SDavid Greenman 			fxp_init(sc);
2053a17c678eSDavid Greenman 		error = 0;
2054ba8c6fd5SDavid Greenman #endif /* __NetBSD__ */
2055ba8c6fd5SDavid Greenman 		break;
2056ba8c6fd5SDavid Greenman 
2057ba8c6fd5SDavid Greenman 	case SIOCSIFMEDIA:
2058ba8c6fd5SDavid Greenman 	case SIOCGIFMEDIA:
2059ba8c6fd5SDavid Greenman 		error = ifmedia_ioctl(ifp, ifr, &sc->sc_media, command);
2060a17c678eSDavid Greenman 		break;
2061a17c678eSDavid Greenman 
2062a17c678eSDavid Greenman 	default:
2063a17c678eSDavid Greenman 		error = EINVAL;
2064a17c678eSDavid Greenman 	}
20650f4dc94cSChuck Paterson 	FXP_UNLOCK(sc, s);
2066a17c678eSDavid Greenman 	return (error);
2067a17c678eSDavid Greenman }
2068397f9dfeSDavid Greenman 
2069397f9dfeSDavid Greenman /*
2070397f9dfeSDavid Greenman  * Program the multicast filter.
2071397f9dfeSDavid Greenman  *
2072397f9dfeSDavid Greenman  * We have an artificial restriction that the multicast setup command
2073397f9dfeSDavid Greenman  * must be the first command in the chain, so we take steps to ensure
20743114fdb4SDavid Greenman  * this. By requiring this, it allows us to keep up the performance of
2075397f9dfeSDavid Greenman  * the pre-initialized command ring (esp. link pointers) by not actually
2076dc733423SDag-Erling Smørgrav  * inserting the mcsetup command in the ring - i.e. its link pointer
2077397f9dfeSDavid Greenman  * points to the TxCB ring, but the mcsetup descriptor itself is not part
2078397f9dfeSDavid Greenman  * of it. We then can do 'CU_START' on the mcsetup descriptor and have it
2079397f9dfeSDavid Greenman  * lead into the regular TxCB ring when it completes.
2080397f9dfeSDavid Greenman  *
2081397f9dfeSDavid Greenman  * This function must be called at splimp.
2082397f9dfeSDavid Greenman  */
2083397f9dfeSDavid Greenman static void
2084397f9dfeSDavid Greenman fxp_mc_setup(sc)
2085397f9dfeSDavid Greenman 	struct fxp_softc *sc;
2086397f9dfeSDavid Greenman {
2087397f9dfeSDavid Greenman 	struct fxp_cb_mcs *mcsp = sc->mcsp;
2088397f9dfeSDavid Greenman 	struct ifnet *ifp = &sc->sc_if;
2089397f9dfeSDavid Greenman 	struct ifmultiaddr *ifma;
2090397f9dfeSDavid Greenman 	int nmcasts;
20917dced78aSDavid Greenman 	int count;
2092397f9dfeSDavid Greenman 
20933114fdb4SDavid Greenman 	/*
20943114fdb4SDavid Greenman 	 * If there are queued commands, we must wait until they are all
20953114fdb4SDavid Greenman 	 * completed. If we are already waiting, then add a NOP command
20963114fdb4SDavid Greenman 	 * with interrupt option so that we're notified when all commands
20973114fdb4SDavid Greenman 	 * have been completed - fxp_start() ensures that no additional
20983114fdb4SDavid Greenman 	 * TX commands will be added when need_mcsetup is true.
20993114fdb4SDavid Greenman 	 */
2100397f9dfeSDavid Greenman 	if (sc->tx_queued) {
21013114fdb4SDavid Greenman 		struct fxp_cb_tx *txp;
21023114fdb4SDavid Greenman 
21033114fdb4SDavid Greenman 		/*
21043114fdb4SDavid Greenman 		 * need_mcsetup will be true if we are already waiting for the
21053114fdb4SDavid Greenman 		 * NOP command to be completed (see below). In this case, bail.
21063114fdb4SDavid Greenman 		 */
21073114fdb4SDavid Greenman 		if (sc->need_mcsetup)
21083114fdb4SDavid Greenman 			return;
2109397f9dfeSDavid Greenman 		sc->need_mcsetup = 1;
21103114fdb4SDavid Greenman 
21113114fdb4SDavid Greenman 		/*
21123114fdb4SDavid Greenman 		 * Add a NOP command with interrupt so that we are notified when all
21133114fdb4SDavid Greenman 		 * TX commands have been processed.
21143114fdb4SDavid Greenman 		 */
21153114fdb4SDavid Greenman 		txp = sc->cbl_last->next;
21163114fdb4SDavid Greenman 		txp->mb_head = NULL;
21173114fdb4SDavid Greenman 		txp->cb_status = 0;
21183114fdb4SDavid Greenman 		txp->cb_command = FXP_CB_COMMAND_NOP | FXP_CB_COMMAND_S | FXP_CB_COMMAND_I;
21193114fdb4SDavid Greenman 		/*
21203114fdb4SDavid Greenman 		 * Advance the end of list forward.
21213114fdb4SDavid Greenman 		 */
21223114fdb4SDavid Greenman 		sc->cbl_last->cb_command &= ~FXP_CB_COMMAND_S;
21233114fdb4SDavid Greenman 		sc->cbl_last = txp;
21243114fdb4SDavid Greenman 		sc->tx_queued++;
21253114fdb4SDavid Greenman 		/*
21263114fdb4SDavid Greenman 		 * Issue a resume in case the CU has just suspended.
21273114fdb4SDavid Greenman 		 */
21283114fdb4SDavid Greenman 		fxp_scb_wait(sc);
21293114fdb4SDavid Greenman 		CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND, FXP_SCB_COMMAND_CU_RESUME);
21303114fdb4SDavid Greenman 		/*
21313114fdb4SDavid Greenman 		 * Set a 5 second timer just in case we don't hear from the
21323114fdb4SDavid Greenman 		 * card again.
21333114fdb4SDavid Greenman 		 */
21343114fdb4SDavid Greenman 		ifp->if_timer = 5;
21353114fdb4SDavid Greenman 
2136397f9dfeSDavid Greenman 		return;
2137397f9dfeSDavid Greenman 	}
2138397f9dfeSDavid Greenman 	sc->need_mcsetup = 0;
2139397f9dfeSDavid Greenman 
2140397f9dfeSDavid Greenman 	/*
2141397f9dfeSDavid Greenman 	 * Initialize multicast setup descriptor.
2142397f9dfeSDavid Greenman 	 */
2143397f9dfeSDavid Greenman 	mcsp->next = sc->cbl_base;
2144397f9dfeSDavid Greenman 	mcsp->mb_head = NULL;
2145397f9dfeSDavid Greenman 	mcsp->cb_status = 0;
21463114fdb4SDavid Greenman 	mcsp->cb_command = FXP_CB_COMMAND_MCAS | FXP_CB_COMMAND_S | FXP_CB_COMMAND_I;
2147397f9dfeSDavid Greenman 	mcsp->link_addr = vtophys(&sc->cbl_base->cb_status);
2148397f9dfeSDavid Greenman 
2149397f9dfeSDavid Greenman 	nmcasts = 0;
2150397f9dfeSDavid Greenman 	if (!sc->all_mcasts) {
2151397f9dfeSDavid Greenman 		for (ifma = ifp->if_multiaddrs.lh_first; ifma != NULL;
2152397f9dfeSDavid Greenman 		    ifma = ifma->ifma_link.le_next) {
2153397f9dfeSDavid Greenman 			if (ifma->ifma_addr->sa_family != AF_LINK)
2154397f9dfeSDavid Greenman 				continue;
2155397f9dfeSDavid Greenman 			if (nmcasts >= MAXMCADDR) {
2156397f9dfeSDavid Greenman 				sc->all_mcasts = 1;
2157397f9dfeSDavid Greenman 				nmcasts = 0;
2158397f9dfeSDavid Greenman 				break;
2159397f9dfeSDavid Greenman 			}
2160397f9dfeSDavid Greenman 			bcopy(LLADDR((struct sockaddr_dl *)ifma->ifma_addr),
2161d244b0e9SPeter Wemm 			    (void *)(uintptr_t)(volatile void *)
2162d244b0e9SPeter Wemm 				&sc->mcsp->mc_addr[nmcasts][0], 6);
2163397f9dfeSDavid Greenman 			nmcasts++;
2164397f9dfeSDavid Greenman 		}
2165397f9dfeSDavid Greenman 	}
2166397f9dfeSDavid Greenman 	mcsp->mc_cnt = nmcasts * 6;
2167397f9dfeSDavid Greenman 	sc->cbl_first = sc->cbl_last = (struct fxp_cb_tx *) mcsp;
2168397f9dfeSDavid Greenman 	sc->tx_queued = 1;
2169397f9dfeSDavid Greenman 
2170397f9dfeSDavid Greenman 	/*
2171397f9dfeSDavid Greenman 	 * Wait until command unit is not active. This should never
2172397f9dfeSDavid Greenman 	 * be the case when nothing is queued, but make sure anyway.
2173397f9dfeSDavid Greenman 	 */
21747dced78aSDavid Greenman 	count = 100;
2175397f9dfeSDavid Greenman 	while ((CSR_READ_1(sc, FXP_CSR_SCB_RUSCUS) >> 6) ==
21767dced78aSDavid Greenman 	    FXP_SCB_CUS_ACTIVE && --count)
21777dced78aSDavid Greenman 		DELAY(10);
21787dced78aSDavid Greenman 	if (count == 0) {
21797dced78aSDavid Greenman 		printf(FXP_FORMAT ": command queue timeout\n", FXP_ARGS(sc));
21807dced78aSDavid Greenman 		return;
21817dced78aSDavid Greenman 	}
2182397f9dfeSDavid Greenman 
2183397f9dfeSDavid Greenman 	/*
2184397f9dfeSDavid Greenman 	 * Start the multicast setup command.
2185397f9dfeSDavid Greenman 	 */
2186397f9dfeSDavid Greenman 	fxp_scb_wait(sc);
2187397f9dfeSDavid Greenman 	CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, vtophys(&mcsp->cb_status));
2188397f9dfeSDavid Greenman 	CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND, FXP_SCB_COMMAND_CU_START);
2189397f9dfeSDavid Greenman 
21903114fdb4SDavid Greenman 	ifp->if_timer = 2;
2191397f9dfeSDavid Greenman 	return;
2192397f9dfeSDavid Greenman }
2193