xref: /freebsd/sys/dev/fxp/if_fxp.c (revision 507feeafadb20a1fae64ae76c5cb42deead7ff98)
1f7788e8eSJonathan Lemon /*-
2a17c678eSDavid Greenman  * Copyright (c) 1995, David Greenman
33bd07cfdSJonathan Lemon  * Copyright (c) 2001 Jonathan Lemon <jlemon@freebsd.org>
4a17c678eSDavid Greenman  * All rights reserved.
5a17c678eSDavid Greenman  *
6a17c678eSDavid Greenman  * Redistribution and use in source and binary forms, with or without
7a17c678eSDavid Greenman  * modification, are permitted provided that the following conditions
8a17c678eSDavid Greenman  * are met:
9a17c678eSDavid Greenman  * 1. Redistributions of source code must retain the above copyright
10a17c678eSDavid Greenman  *    notice unmodified, this list of conditions, and the following
11a17c678eSDavid Greenman  *    disclaimer.
12a17c678eSDavid Greenman  * 2. Redistributions in binary form must reproduce the above copyright
13a17c678eSDavid Greenman  *    notice, this list of conditions and the following disclaimer in the
14a17c678eSDavid Greenman  *    documentation and/or other materials provided with the distribution.
15a17c678eSDavid Greenman  *
16a17c678eSDavid Greenman  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
17a17c678eSDavid Greenman  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18a17c678eSDavid Greenman  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19a17c678eSDavid Greenman  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
20a17c678eSDavid Greenman  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21a17c678eSDavid Greenman  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22a17c678eSDavid Greenman  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23a17c678eSDavid Greenman  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24a17c678eSDavid Greenman  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25a17c678eSDavid Greenman  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26a17c678eSDavid Greenman  * SUCH DAMAGE.
27a17c678eSDavid Greenman  *
28a17c678eSDavid Greenman  */
29a17c678eSDavid Greenman 
30aad970f1SDavid E. O'Brien #include <sys/cdefs.h>
31aad970f1SDavid E. O'Brien __FBSDID("$FreeBSD$");
32aad970f1SDavid E. O'Brien 
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>
3983e6547dSMaxime Henrion #include <sys/endian.h>
40a17c678eSDavid Greenman #include <sys/mbuf.h>
41f7788e8eSJonathan Lemon 		/* #include <sys/mutex.h> */
42a17c678eSDavid Greenman #include <sys/kernel.h>
43fe12f24bSPoul-Henning Kamp #include <sys/module.h>
444458ac71SBruce Evans #include <sys/socket.h>
4572a32a26SJonathan Lemon #include <sys/sysctl.h>
46a17c678eSDavid Greenman 
47a17c678eSDavid Greenman #include <net/if.h>
48397f9dfeSDavid Greenman #include <net/if_dl.h>
49ba8c6fd5SDavid Greenman #include <net/if_media.h>
50a17c678eSDavid Greenman 
51a17c678eSDavid Greenman #include <net/bpf.h>
52ba8c6fd5SDavid Greenman #include <sys/sockio.h>
536182fdbdSPeter Wemm #include <sys/bus.h>
546182fdbdSPeter Wemm #include <machine/bus.h>
556182fdbdSPeter Wemm #include <sys/rman.h>
566182fdbdSPeter Wemm #include <machine/resource.h>
57ba8c6fd5SDavid Greenman 
581d5e9e22SEivind Eklund #include <net/ethernet.h>
591d5e9e22SEivind Eklund #include <net/if_arp.h>
60ba8c6fd5SDavid Greenman 
61f7788e8eSJonathan Lemon #include <machine/clock.h>	/* for DELAY */
62a17c678eSDavid Greenman 
63e8c8b728SJonathan Lemon #include <net/if_types.h>
64e8c8b728SJonathan Lemon #include <net/if_vlan_var.h>
65e8c8b728SJonathan Lemon 
66c8bca6dcSBill Paul #ifdef FXP_IP_CSUM_WAR
67c8bca6dcSBill Paul #include <netinet/in.h>
68c8bca6dcSBill Paul #include <netinet/in_systm.h>
69c8bca6dcSBill Paul #include <netinet/ip.h>
70c8bca6dcSBill Paul #include <machine/in_cksum.h>
71c8bca6dcSBill Paul #endif
72c8bca6dcSBill Paul 
734fbd232cSWarner Losh #include <dev/pci/pcivar.h>
744fbd232cSWarner Losh #include <dev/pci/pcireg.h>		/* for PCIM_CMD_xxx */
75a17c678eSDavid Greenman 
76f7788e8eSJonathan Lemon #include <dev/mii/mii.h>
77f7788e8eSJonathan Lemon #include <dev/mii/miivar.h>
78f7788e8eSJonathan Lemon 
79f7788e8eSJonathan Lemon #include <dev/fxp/if_fxpreg.h>
80f7788e8eSJonathan Lemon #include <dev/fxp/if_fxpvar.h>
8172a32a26SJonathan Lemon #include <dev/fxp/rcvbundl.h>
82f7788e8eSJonathan Lemon 
83f246e4a1SMatthew N. Dodd MODULE_DEPEND(fxp, pci, 1, 1, 1);
84f246e4a1SMatthew N. Dodd MODULE_DEPEND(fxp, ether, 1, 1, 1);
85f7788e8eSJonathan Lemon MODULE_DEPEND(fxp, miibus, 1, 1, 1);
86f7788e8eSJonathan Lemon #include "miibus_if.h"
874fc1dda9SAndrew Gallatin 
88ba8c6fd5SDavid Greenman /*
89ba8c6fd5SDavid Greenman  * NOTE!  On the Alpha, we have an alignment constraint.  The
90ba8c6fd5SDavid Greenman  * card DMAs the packet immediately following the RFA.  However,
91ba8c6fd5SDavid Greenman  * the first thing in the packet is a 14-byte Ethernet header.
92ba8c6fd5SDavid Greenman  * This means that the packet is misaligned.  To compensate,
93ba8c6fd5SDavid Greenman  * we actually offset the RFA 2 bytes into the cluster.  This
94ba8c6fd5SDavid Greenman  * alignes the packet after the Ethernet header at a 32-bit
95ba8c6fd5SDavid Greenman  * boundary.  HOWEVER!  This means that the RFA is misaligned!
96ba8c6fd5SDavid Greenman  */
97ba8c6fd5SDavid Greenman #define	RFA_ALIGNMENT_FUDGE	2
98ba8c6fd5SDavid Greenman 
99ba8c6fd5SDavid Greenman /*
100f7788e8eSJonathan Lemon  * Set initial transmit threshold at 64 (512 bytes). This is
101f7788e8eSJonathan Lemon  * increased by 64 (512 bytes) at a time, to maximum of 192
102f7788e8eSJonathan Lemon  * (1536 bytes), if an underrun occurs.
103f7788e8eSJonathan Lemon  */
104f7788e8eSJonathan Lemon static int tx_threshold = 64;
105f7788e8eSJonathan Lemon 
106f7788e8eSJonathan Lemon /*
107f7788e8eSJonathan Lemon  * The configuration byte map has several undefined fields which
108f7788e8eSJonathan Lemon  * must be one or must be zero.  Set up a template for these bits
109f7788e8eSJonathan Lemon  * only, (assuming a 82557 chip) leaving the actual configuration
110f7788e8eSJonathan Lemon  * to fxp_init.
111f7788e8eSJonathan Lemon  *
112f7788e8eSJonathan Lemon  * See struct fxp_cb_config for the bit definitions.
113f7788e8eSJonathan Lemon  */
114f7788e8eSJonathan Lemon static u_char fxp_cb_config_template[] = {
115f7788e8eSJonathan Lemon 	0x0, 0x0,		/* cb_status */
116f7788e8eSJonathan Lemon 	0x0, 0x0,		/* cb_command */
117f7788e8eSJonathan Lemon 	0x0, 0x0, 0x0, 0x0,	/* link_addr */
118f7788e8eSJonathan Lemon 	0x0,	/*  0 */
119f7788e8eSJonathan Lemon 	0x0,	/*  1 */
120f7788e8eSJonathan Lemon 	0x0,	/*  2 */
121f7788e8eSJonathan Lemon 	0x0,	/*  3 */
122f7788e8eSJonathan Lemon 	0x0,	/*  4 */
123f7788e8eSJonathan Lemon 	0x0,	/*  5 */
124f7788e8eSJonathan Lemon 	0x32,	/*  6 */
125f7788e8eSJonathan Lemon 	0x0,	/*  7 */
126f7788e8eSJonathan Lemon 	0x0,	/*  8 */
127f7788e8eSJonathan Lemon 	0x0,	/*  9 */
128f7788e8eSJonathan Lemon 	0x6,	/* 10 */
129f7788e8eSJonathan Lemon 	0x0,	/* 11 */
130f7788e8eSJonathan Lemon 	0x0,	/* 12 */
131f7788e8eSJonathan Lemon 	0x0,	/* 13 */
132f7788e8eSJonathan Lemon 	0xf2,	/* 14 */
133f7788e8eSJonathan Lemon 	0x48,	/* 15 */
134f7788e8eSJonathan Lemon 	0x0,	/* 16 */
135f7788e8eSJonathan Lemon 	0x40,	/* 17 */
136f7788e8eSJonathan Lemon 	0xf0,	/* 18 */
137f7788e8eSJonathan Lemon 	0x0,	/* 19 */
138f7788e8eSJonathan Lemon 	0x3f,	/* 20 */
139f7788e8eSJonathan Lemon 	0x5	/* 21 */
140f7788e8eSJonathan Lemon };
141f7788e8eSJonathan Lemon 
142f7788e8eSJonathan Lemon struct fxp_ident {
14374d1ed23SMaxime Henrion 	uint16_t	devid;
144f19fc5d8SJohn Polstra 	int16_t		revid;		/* -1 matches anything */
145f7788e8eSJonathan Lemon 	char 		*name;
146f7788e8eSJonathan Lemon };
147f7788e8eSJonathan Lemon 
148f7788e8eSJonathan Lemon /*
149f7788e8eSJonathan Lemon  * Claim various Intel PCI device identifiers for this driver.  The
150f7788e8eSJonathan Lemon  * sub-vendor and sub-device field are extensively used to identify
151f7788e8eSJonathan Lemon  * particular variants, but we don't currently differentiate between
152f7788e8eSJonathan Lemon  * them.
153f7788e8eSJonathan Lemon  */
154f7788e8eSJonathan Lemon static struct fxp_ident fxp_ident_table[] = {
155f19fc5d8SJohn Polstra     { 0x1029,	-1,	"Intel 82559 PCI/CardBus Pro/100" },
156f19fc5d8SJohn Polstra     { 0x1030,	-1,	"Intel 82559 Pro/100 Ethernet" },
157f19fc5d8SJohn Polstra     { 0x1031,	-1,	"Intel 82801CAM (ICH3) Pro/100 VE Ethernet" },
158f19fc5d8SJohn Polstra     { 0x1032,	-1,	"Intel 82801CAM (ICH3) Pro/100 VE Ethernet" },
159f19fc5d8SJohn Polstra     { 0x1033,	-1,	"Intel 82801CAM (ICH3) Pro/100 VM Ethernet" },
160f19fc5d8SJohn Polstra     { 0x1034,	-1,	"Intel 82801CAM (ICH3) Pro/100 VM Ethernet" },
161f19fc5d8SJohn Polstra     { 0x1035,	-1,	"Intel 82801CAM (ICH3) Pro/100 Ethernet" },
162f19fc5d8SJohn Polstra     { 0x1036,	-1,	"Intel 82801CAM (ICH3) Pro/100 Ethernet" },
163f19fc5d8SJohn Polstra     { 0x1037,	-1,	"Intel 82801CAM (ICH3) Pro/100 Ethernet" },
164f19fc5d8SJohn Polstra     { 0x1038,	-1,	"Intel 82801CAM (ICH3) Pro/100 VM Ethernet" },
165f19fc5d8SJohn Polstra     { 0x1039,	-1,	"Intel 82801DB (ICH4) Pro/100 VE Ethernet" },
166f19fc5d8SJohn Polstra     { 0x103A,	-1,	"Intel 82801DB (ICH4) Pro/100 Ethernet" },
167f19fc5d8SJohn Polstra     { 0x103B,	-1,	"Intel 82801DB (ICH4) Pro/100 VM Ethernet" },
168f19fc5d8SJohn Polstra     { 0x103C,	-1,	"Intel 82801DB (ICH4) Pro/100 Ethernet" },
169f19fc5d8SJohn Polstra     { 0x103D,	-1,	"Intel 82801DB (ICH4) Pro/100 VE Ethernet" },
170f19fc5d8SJohn Polstra     { 0x103E,	-1,	"Intel 82801DB (ICH4) Pro/100 VM Ethernet" },
171f19fc5d8SJohn Polstra     { 0x1050,	-1,	"Intel 82801BA (D865) Pro/100 VE Ethernet" },
172c2b37819SWarner Losh     { 0x1051,	-1,	"Intel 82562ET (ICH5/ICH5R) Pro/100 VE Ethernet" },
173f19fc5d8SJohn Polstra     { 0x1059,	-1,	"Intel 82551QM Pro/100 M Mobile Connection" },
174048ca166SMaxime Henrion     { 0x1064,	-1,	"Intel 82562EZ (ICH6)" },
17529a8929dSMaxime Henrion     { 0x1068,	-1,	"Intel 82801FBM (ICH6-M) Pro/100 VE Ethernet" },
176f19fc5d8SJohn Polstra     { 0x1209,	-1,	"Intel 82559ER Embedded 10/100 Ethernet" },
177f19fc5d8SJohn Polstra     { 0x1229,	0x01,	"Intel 82557 Pro/100 Ethernet" },
178f19fc5d8SJohn Polstra     { 0x1229,	0x02,	"Intel 82557 Pro/100 Ethernet" },
179f19fc5d8SJohn Polstra     { 0x1229,	0x03,	"Intel 82557 Pro/100 Ethernet" },
180f19fc5d8SJohn Polstra     { 0x1229,	0x04,	"Intel 82558 Pro/100 Ethernet" },
181f19fc5d8SJohn Polstra     { 0x1229,	0x05,	"Intel 82558 Pro/100 Ethernet" },
182f19fc5d8SJohn Polstra     { 0x1229,	0x06,	"Intel 82559 Pro/100 Ethernet" },
183f19fc5d8SJohn Polstra     { 0x1229,	0x07,	"Intel 82559 Pro/100 Ethernet" },
184f19fc5d8SJohn Polstra     { 0x1229,	0x08,	"Intel 82559 Pro/100 Ethernet" },
185f19fc5d8SJohn Polstra     { 0x1229,	0x09,	"Intel 82559ER Pro/100 Ethernet" },
186f19fc5d8SJohn Polstra     { 0x1229,	0x0c,	"Intel 82550 Pro/100 Ethernet" },
187f19fc5d8SJohn Polstra     { 0x1229,	0x0d,	"Intel 82550 Pro/100 Ethernet" },
188f19fc5d8SJohn Polstra     { 0x1229,	0x0e,	"Intel 82550 Pro/100 Ethernet" },
189f19fc5d8SJohn Polstra     { 0x1229,	0x0f,	"Intel 82551 Pro/100 Ethernet" },
190f19fc5d8SJohn Polstra     { 0x1229,	0x10,	"Intel 82551 Pro/100 Ethernet" },
191f19fc5d8SJohn Polstra     { 0x1229,	-1,	"Intel 82557/8/9 Pro/100 Ethernet" },
192f19fc5d8SJohn Polstra     { 0x2449,	-1,	"Intel 82801BA/CAM (ICH2/3) Pro/100 Ethernet" },
193f19fc5d8SJohn Polstra     { 0,	-1,	NULL },
194f7788e8eSJonathan Lemon };
195f7788e8eSJonathan Lemon 
196c8bca6dcSBill Paul #ifdef FXP_IP_CSUM_WAR
197c8bca6dcSBill Paul #define FXP_CSUM_FEATURES    (CSUM_IP | CSUM_TCP | CSUM_UDP)
198c8bca6dcSBill Paul #else
199c8bca6dcSBill Paul #define FXP_CSUM_FEATURES    (CSUM_TCP | CSUM_UDP)
200c8bca6dcSBill Paul #endif
201c8bca6dcSBill Paul 
202f7788e8eSJonathan Lemon static int		fxp_probe(device_t dev);
203f7788e8eSJonathan Lemon static int		fxp_attach(device_t dev);
204f7788e8eSJonathan Lemon static int		fxp_detach(device_t dev);
205f7788e8eSJonathan Lemon static int		fxp_shutdown(device_t dev);
206f7788e8eSJonathan Lemon static int		fxp_suspend(device_t dev);
207f7788e8eSJonathan Lemon static int		fxp_resume(device_t dev);
208f7788e8eSJonathan Lemon 
209f7788e8eSJonathan Lemon static void		fxp_intr(void *xsc);
2104953bccaSNate Lawson static void		fxp_intr_body(struct fxp_softc *sc, struct ifnet *ifp,
21174d1ed23SMaxime Henrion 			    uint8_t statack, int count);
212f7788e8eSJonathan Lemon static void 		fxp_init(void *xsc);
2134953bccaSNate Lawson static void 		fxp_init_body(struct fxp_softc *sc);
214f7788e8eSJonathan Lemon static void 		fxp_tick(void *xsc);
215f7788e8eSJonathan Lemon static void 		fxp_start(struct ifnet *ifp);
2164953bccaSNate Lawson static void 		fxp_start_body(struct ifnet *ifp);
21740c20505SMaxime Henrion static int		fxp_encap(struct fxp_softc *sc, struct mbuf *m_head);
218f7788e8eSJonathan Lemon static void		fxp_stop(struct fxp_softc *sc);
219f7788e8eSJonathan Lemon static void 		fxp_release(struct fxp_softc *sc);
220f7788e8eSJonathan Lemon static int		fxp_ioctl(struct ifnet *ifp, u_long command,
221f7788e8eSJonathan Lemon 			    caddr_t data);
222f7788e8eSJonathan Lemon static void 		fxp_watchdog(struct ifnet *ifp);
223b2badf02SMaxime Henrion static int		fxp_add_rfabuf(struct fxp_softc *sc,
224b2badf02SMaxime Henrion     			    struct fxp_rx *rxp);
22509882363SJonathan Lemon static int		fxp_mc_addrs(struct fxp_softc *sc);
226f7788e8eSJonathan Lemon static void		fxp_mc_setup(struct fxp_softc *sc);
22774d1ed23SMaxime Henrion static uint16_t		fxp_eeprom_getword(struct fxp_softc *sc, int offset,
228f7788e8eSJonathan Lemon 			    int autosize);
22900c4116bSJonathan Lemon static void 		fxp_eeprom_putword(struct fxp_softc *sc, int offset,
23074d1ed23SMaxime Henrion 			    uint16_t data);
231f7788e8eSJonathan Lemon static void		fxp_autosize_eeprom(struct fxp_softc *sc);
232f7788e8eSJonathan Lemon static void		fxp_read_eeprom(struct fxp_softc *sc, u_short *data,
233f7788e8eSJonathan Lemon 			    int offset, int words);
23400c4116bSJonathan Lemon static void		fxp_write_eeprom(struct fxp_softc *sc, u_short *data,
23500c4116bSJonathan Lemon 			    int offset, int words);
236f7788e8eSJonathan Lemon static int		fxp_ifmedia_upd(struct ifnet *ifp);
237f7788e8eSJonathan Lemon static void		fxp_ifmedia_sts(struct ifnet *ifp,
238f7788e8eSJonathan Lemon 			    struct ifmediareq *ifmr);
239f7788e8eSJonathan Lemon static int		fxp_serial_ifmedia_upd(struct ifnet *ifp);
240f7788e8eSJonathan Lemon static void		fxp_serial_ifmedia_sts(struct ifnet *ifp,
241f7788e8eSJonathan Lemon 			    struct ifmediareq *ifmr);
242f7788e8eSJonathan Lemon static volatile int	fxp_miibus_readreg(device_t dev, int phy, int reg);
243f7788e8eSJonathan Lemon static void		fxp_miibus_writereg(device_t dev, int phy, int reg,
244f7788e8eSJonathan Lemon 			    int value);
24572a32a26SJonathan Lemon static void		fxp_load_ucode(struct fxp_softc *sc);
24672a32a26SJonathan Lemon static int		sysctl_int_range(SYSCTL_HANDLER_ARGS,
24772a32a26SJonathan Lemon 			    int low, int high);
24872a32a26SJonathan Lemon static int		sysctl_hw_fxp_bundle_max(SYSCTL_HANDLER_ARGS);
24972a32a26SJonathan Lemon static int		sysctl_hw_fxp_int_delay(SYSCTL_HANDLER_ARGS);
25028935f27SMaxime Henrion static void 		fxp_scb_wait(struct fxp_softc *sc);
25128935f27SMaxime Henrion static void		fxp_scb_cmd(struct fxp_softc *sc, int cmd);
25228935f27SMaxime Henrion static void		fxp_dma_wait(struct fxp_softc *sc,
25374d1ed23SMaxime Henrion     			    volatile uint16_t *status, bus_dma_tag_t dmat,
254209b07bcSMaxime Henrion 			    bus_dmamap_t map);
255f7788e8eSJonathan Lemon 
256f7788e8eSJonathan Lemon static device_method_t fxp_methods[] = {
257f7788e8eSJonathan Lemon 	/* Device interface */
258f7788e8eSJonathan Lemon 	DEVMETHOD(device_probe,		fxp_probe),
259f7788e8eSJonathan Lemon 	DEVMETHOD(device_attach,	fxp_attach),
260f7788e8eSJonathan Lemon 	DEVMETHOD(device_detach,	fxp_detach),
261f7788e8eSJonathan Lemon 	DEVMETHOD(device_shutdown,	fxp_shutdown),
262f7788e8eSJonathan Lemon 	DEVMETHOD(device_suspend,	fxp_suspend),
263f7788e8eSJonathan Lemon 	DEVMETHOD(device_resume,	fxp_resume),
264f7788e8eSJonathan Lemon 
265f7788e8eSJonathan Lemon 	/* MII interface */
266f7788e8eSJonathan Lemon 	DEVMETHOD(miibus_readreg,	fxp_miibus_readreg),
267f7788e8eSJonathan Lemon 	DEVMETHOD(miibus_writereg,	fxp_miibus_writereg),
268f7788e8eSJonathan Lemon 
269f7788e8eSJonathan Lemon 	{ 0, 0 }
270f7788e8eSJonathan Lemon };
271f7788e8eSJonathan Lemon 
272f7788e8eSJonathan Lemon static driver_t fxp_driver = {
273f7788e8eSJonathan Lemon 	"fxp",
274f7788e8eSJonathan Lemon 	fxp_methods,
275f7788e8eSJonathan Lemon 	sizeof(struct fxp_softc),
276f7788e8eSJonathan Lemon };
277f7788e8eSJonathan Lemon 
278f7788e8eSJonathan Lemon static devclass_t fxp_devclass;
279f7788e8eSJonathan Lemon 
280f246e4a1SMatthew N. Dodd DRIVER_MODULE(fxp, pci, fxp_driver, fxp_devclass, 0, 0);
281347934faSWarner Losh DRIVER_MODULE(fxp, cardbus, fxp_driver, fxp_devclass, 0, 0);
282f7788e8eSJonathan Lemon DRIVER_MODULE(miibus, fxp, miibus_driver, miibus_devclass, 0, 0);
283f7788e8eSJonathan Lemon 
284f7788e8eSJonathan Lemon /*
285dfe61cf1SDavid Greenman  * Wait for the previous command to be accepted (but not necessarily
286dfe61cf1SDavid Greenman  * completed).
287dfe61cf1SDavid Greenman  */
28828935f27SMaxime Henrion static void
289f7788e8eSJonathan Lemon fxp_scb_wait(struct fxp_softc *sc)
290a17c678eSDavid Greenman {
291a17c678eSDavid Greenman 	int i = 10000;
292a17c678eSDavid Greenman 
2937dced78aSDavid Greenman 	while (CSR_READ_1(sc, FXP_CSR_SCB_COMMAND) && --i)
2947dced78aSDavid Greenman 		DELAY(2);
2957dced78aSDavid Greenman 	if (i == 0)
29600c4116bSJonathan Lemon 		device_printf(sc->dev, "SCB timeout: 0x%x 0x%x 0x%x 0x%x\n",
297e8c8b728SJonathan Lemon 		    CSR_READ_1(sc, FXP_CSR_SCB_COMMAND),
298e8c8b728SJonathan Lemon 		    CSR_READ_1(sc, FXP_CSR_SCB_STATACK),
299e8c8b728SJonathan Lemon 		    CSR_READ_1(sc, FXP_CSR_SCB_RUSCUS),
300e8c8b728SJonathan Lemon 		    CSR_READ_2(sc, FXP_CSR_FLOWCONTROL));
3017dced78aSDavid Greenman }
3027dced78aSDavid Greenman 
30328935f27SMaxime Henrion static void
3042e2b8238SJonathan Lemon fxp_scb_cmd(struct fxp_softc *sc, int cmd)
3052e2b8238SJonathan Lemon {
3062e2b8238SJonathan Lemon 
3072e2b8238SJonathan Lemon 	if (cmd == FXP_SCB_COMMAND_CU_RESUME && sc->cu_resume_bug) {
3082e2b8238SJonathan Lemon 		CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND, FXP_CB_COMMAND_NOP);
3092e2b8238SJonathan Lemon 		fxp_scb_wait(sc);
3102e2b8238SJonathan Lemon 	}
3112e2b8238SJonathan Lemon 	CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND, cmd);
3122e2b8238SJonathan Lemon }
3132e2b8238SJonathan Lemon 
31428935f27SMaxime Henrion static void
31574d1ed23SMaxime Henrion fxp_dma_wait(struct fxp_softc *sc, volatile uint16_t *status,
316209b07bcSMaxime Henrion     bus_dma_tag_t dmat, bus_dmamap_t map)
3177dced78aSDavid Greenman {
3187dced78aSDavid Greenman 	int i = 10000;
3197dced78aSDavid Greenman 
320209b07bcSMaxime Henrion 	bus_dmamap_sync(dmat, map, BUS_DMASYNC_POSTREAD);
321209b07bcSMaxime Henrion 	while (!(le16toh(*status) & FXP_CB_STATUS_C) && --i) {
3227dced78aSDavid Greenman 		DELAY(2);
323209b07bcSMaxime Henrion 		bus_dmamap_sync(dmat, map, BUS_DMASYNC_POSTREAD);
324209b07bcSMaxime Henrion 	}
3257dced78aSDavid Greenman 	if (i == 0)
326f7788e8eSJonathan Lemon 		device_printf(sc->dev, "DMA timeout\n");
327a17c678eSDavid Greenman }
328a17c678eSDavid Greenman 
329dfe61cf1SDavid Greenman /*
33028935f27SMaxime Henrion  * Return identification string if this device is ours.
331dfe61cf1SDavid Greenman  */
3326182fdbdSPeter Wemm static int
3336182fdbdSPeter Wemm fxp_probe(device_t dev)
334a17c678eSDavid Greenman {
33574d1ed23SMaxime Henrion 	uint16_t devid;
33674d1ed23SMaxime Henrion 	uint8_t revid;
337f7788e8eSJonathan Lemon 	struct fxp_ident *ident;
338f7788e8eSJonathan Lemon 
33955ce7b51SDavid Greenman 	if (pci_get_vendor(dev) == FXP_VENDORID_INTEL) {
340f7788e8eSJonathan Lemon 		devid = pci_get_device(dev);
341f19fc5d8SJohn Polstra 		revid = pci_get_revid(dev);
342f7788e8eSJonathan Lemon 		for (ident = fxp_ident_table; ident->name != NULL; ident++) {
343f19fc5d8SJohn Polstra 			if (ident->devid == devid &&
344f19fc5d8SJohn Polstra 			    (ident->revid == revid || ident->revid == -1)) {
345f7788e8eSJonathan Lemon 				device_set_desc(dev, ident->name);
346538565c4SWarner Losh 				return (BUS_PROBE_DEFAULT);
34755ce7b51SDavid Greenman 			}
348dd68ef16SPeter Wemm 		}
349f7788e8eSJonathan Lemon 	}
350f7788e8eSJonathan Lemon 	return (ENXIO);
3516182fdbdSPeter Wemm }
3526182fdbdSPeter Wemm 
353b2badf02SMaxime Henrion static void
354b2badf02SMaxime Henrion fxp_dma_map_addr(void *arg, bus_dma_segment_t *segs, int nseg, int error)
355b2badf02SMaxime Henrion {
35674d1ed23SMaxime Henrion 	uint32_t *addr;
357b2badf02SMaxime Henrion 
358b2badf02SMaxime Henrion 	if (error)
359b2badf02SMaxime Henrion 		return;
360b2badf02SMaxime Henrion 
361b2badf02SMaxime Henrion 	KASSERT(nseg == 1, ("too many DMA segments, %d should be 1", nseg));
362b2badf02SMaxime Henrion 	addr = arg;
363b2badf02SMaxime Henrion 	*addr = segs->ds_addr;
364b2badf02SMaxime Henrion }
365b2badf02SMaxime Henrion 
3666182fdbdSPeter Wemm static int
3676182fdbdSPeter Wemm fxp_attach(device_t dev)
368a17c678eSDavid Greenman {
3696720ebccSMaxime Henrion 	struct fxp_softc *sc;
3706720ebccSMaxime Henrion 	struct fxp_cb_tx *tcbp;
3716720ebccSMaxime Henrion 	struct fxp_tx *txp;
372b2badf02SMaxime Henrion 	struct fxp_rx *rxp;
3736720ebccSMaxime Henrion 	struct ifnet *ifp;
37474d1ed23SMaxime Henrion 	uint32_t val;
37574d1ed23SMaxime Henrion 	uint16_t data, myea[ETHER_ADDR_LEN / 2];
37640c20505SMaxime Henrion 	int i, rid, m1, m2, prefer_iomap;
3776720ebccSMaxime Henrion 	int error, s;
378a17c678eSDavid Greenman 
3796720ebccSMaxime Henrion 	error = 0;
3806720ebccSMaxime Henrion 	sc = device_get_softc(dev);
381f7788e8eSJonathan Lemon 	sc->dev = dev;
38245276e4aSSam Leffler 	callout_init(&sc->stat_ch, CALLOUT_MPSAFE);
3836008862bSJohn Baldwin 	mtx_init(&sc->sc_mtx, device_get_nameunit(dev), MTX_NETWORK_LOCK,
3844953bccaSNate Lawson 	    MTX_DEF);
3854953bccaSNate Lawson 	ifmedia_init(&sc->sc_media, 0, fxp_serial_ifmedia_upd,
3864953bccaSNate Lawson 	    fxp_serial_ifmedia_sts);
387a17c678eSDavid Greenman 
388f7788e8eSJonathan Lemon 	s = splimp();
389a17c678eSDavid Greenman 
390dfe61cf1SDavid Greenman 	/*
3912bce79a2SMaxim Sobolev 	 * Enable bus mastering.
392df373873SWes Peters 	 */
393cf0d8a1eSMaxim Sobolev 	pci_enable_busmaster(dev);
3949fa6ccfbSMatt Jacob 	val = pci_read_config(dev, PCIR_COMMAND, 2);
39579495006SWarner Losh 
396df373873SWes Peters 	/*
3979fa6ccfbSMatt Jacob 	 * Figure out which we should try first - memory mapping or i/o mapping?
3989fa6ccfbSMatt Jacob 	 * We default to memory mapping. Then we accept an override from the
3999fa6ccfbSMatt Jacob 	 * command line. Then we check to see which one is enabled.
400dfe61cf1SDavid Greenman 	 */
4019fa6ccfbSMatt Jacob 	m1 = PCIM_CMD_MEMEN;
4029fa6ccfbSMatt Jacob 	m2 = PCIM_CMD_PORTEN;
4032a05a4ebSMatt Jacob 	prefer_iomap = 0;
4042a05a4ebSMatt Jacob 	if (resource_int_value(device_get_name(dev), device_get_unit(dev),
4052a05a4ebSMatt Jacob 	    "prefer_iomap", &prefer_iomap) == 0 && prefer_iomap != 0) {
4069fa6ccfbSMatt Jacob 		m1 = PCIM_CMD_PORTEN;
4079fa6ccfbSMatt Jacob 		m2 = PCIM_CMD_MEMEN;
4089fa6ccfbSMatt Jacob 	}
4099fa6ccfbSMatt Jacob 
410533294b9SMatthew N. Dodd 	sc->rtp = (m1 == PCIM_CMD_MEMEN)? SYS_RES_MEMORY : SYS_RES_IOPORT;
4119fa6ccfbSMatt Jacob 	sc->rgd = (m1 == PCIM_CMD_MEMEN)? FXP_PCI_MMBA : FXP_PCI_IOBA;
4125f96beb9SNate Lawson 	sc->mem = bus_alloc_resource_any(dev, sc->rtp, &sc->rgd, RF_ACTIVE);
413533294b9SMatthew N. Dodd 	if (sc->mem == NULL) {
4149fa6ccfbSMatt Jacob 		sc->rtp =
4159fa6ccfbSMatt Jacob 		    (m2 == PCIM_CMD_MEMEN)? SYS_RES_MEMORY : SYS_RES_IOPORT;
4169fa6ccfbSMatt Jacob 		sc->rgd = (m2 == PCIM_CMD_MEMEN)? FXP_PCI_MMBA : FXP_PCI_IOBA;
4175f96beb9SNate Lawson 		sc->mem = bus_alloc_resource_any(dev, sc->rtp, &sc->rgd,
4185f96beb9SNate Lawson                                             RF_ACTIVE);
4199fa6ccfbSMatt Jacob 	}
4209fa6ccfbSMatt Jacob 
4216182fdbdSPeter Wemm 	if (!sc->mem) {
4226182fdbdSPeter Wemm 		error = ENXIO;
423a17c678eSDavid Greenman 		goto fail;
424a17c678eSDavid Greenman         }
4259fa6ccfbSMatt Jacob 	if (bootverbose) {
4269fa6ccfbSMatt Jacob 		device_printf(dev, "using %s space register mapping\n",
4279fa6ccfbSMatt Jacob 		   sc->rtp == SYS_RES_MEMORY? "memory" : "I/O");
4289fa6ccfbSMatt Jacob 	}
4294fc1dda9SAndrew Gallatin 
4304fc1dda9SAndrew Gallatin 	sc->sc_st = rman_get_bustag(sc->mem);
4314fc1dda9SAndrew Gallatin 	sc->sc_sh = rman_get_bushandle(sc->mem);
432a17c678eSDavid Greenman 
433a17c678eSDavid Greenman 	/*
434dfe61cf1SDavid Greenman 	 * Allocate our interrupt.
435dfe61cf1SDavid Greenman 	 */
4366182fdbdSPeter Wemm 	rid = 0;
4375f96beb9SNate Lawson 	sc->irq = bus_alloc_resource_any(dev, SYS_RES_IRQ, &rid,
4386182fdbdSPeter Wemm 				 RF_SHAREABLE | RF_ACTIVE);
4396182fdbdSPeter Wemm 	if (sc->irq == NULL) {
4406182fdbdSPeter Wemm 		device_printf(dev, "could not map interrupt\n");
4416182fdbdSPeter Wemm 		error = ENXIO;
4426182fdbdSPeter Wemm 		goto fail;
4436182fdbdSPeter Wemm 	}
4446182fdbdSPeter Wemm 
445f7788e8eSJonathan Lemon 	/*
446f7788e8eSJonathan Lemon 	 * Reset to a stable state.
447f7788e8eSJonathan Lemon 	 */
448f7788e8eSJonathan Lemon 	CSR_WRITE_4(sc, FXP_CSR_PORT, FXP_PORT_SELECTIVE_RESET);
449f7788e8eSJonathan Lemon 	DELAY(10);
450f7788e8eSJonathan Lemon 
451f7788e8eSJonathan Lemon 	/*
452f7788e8eSJonathan Lemon 	 * Find out how large of an SEEPROM we have.
453f7788e8eSJonathan Lemon 	 */
454f7788e8eSJonathan Lemon 	fxp_autosize_eeprom(sc);
455f7788e8eSJonathan Lemon 
456f7788e8eSJonathan Lemon 	/*
45793b6e2e6SMaxime Henrion 	 * Find out the chip revision; lump all 82557 revs together.
45893b6e2e6SMaxime Henrion 	 */
45993b6e2e6SMaxime Henrion 	fxp_read_eeprom(sc, &data, 5, 1);
46093b6e2e6SMaxime Henrion 	if ((data >> 8) == 1)
46193b6e2e6SMaxime Henrion 		sc->revision = FXP_REV_82557;
46293b6e2e6SMaxime Henrion 	else
46393b6e2e6SMaxime Henrion 		sc->revision = pci_get_revid(dev);
46493b6e2e6SMaxime Henrion 
46593b6e2e6SMaxime Henrion 	/*
4663bd07cfdSJonathan Lemon 	 * Determine whether we must use the 503 serial interface.
467f7788e8eSJonathan Lemon 	 */
468f7788e8eSJonathan Lemon 	fxp_read_eeprom(sc, &data, 6, 1);
46993b6e2e6SMaxime Henrion 	if (sc->revision == FXP_REV_82557 && (data & FXP_PHY_DEVICE_MASK) != 0
4704ed53076SMaxime Henrion 	    && (data & FXP_PHY_SERIAL_ONLY))
471dedabebfSJonathan Lemon 		sc->flags |= FXP_FLAG_SERIAL_MEDIA;
472f7788e8eSJonathan Lemon 
4730f1db1d6SMaxime Henrion 	SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev),
4740f1db1d6SMaxime Henrion 	    SYSCTL_CHILDREN(device_get_sysctl_tree(dev)),
47550a33b6aSPawel Jakub Dawidek 	    OID_AUTO, "int_delay", CTLTYPE_INT | CTLFLAG_RW,
476858b84f5SPoul-Henning Kamp 	    &sc->tunable_int_delay, 0, sysctl_hw_fxp_int_delay, "I",
47772a32a26SJonathan Lemon 	    "FXP driver receive interrupt microcode bundling delay");
4780f1db1d6SMaxime Henrion 	SYSCTL_ADD_PROC(device_get_sysctl_ctx(dev),
4790f1db1d6SMaxime Henrion 	    SYSCTL_CHILDREN(device_get_sysctl_tree(dev)),
48050a33b6aSPawel Jakub Dawidek 	    OID_AUTO, "bundle_max", CTLTYPE_INT | CTLFLAG_RW,
481858b84f5SPoul-Henning Kamp 	    &sc->tunable_bundle_max, 0, sysctl_hw_fxp_bundle_max, "I",
48272a32a26SJonathan Lemon 	    "FXP driver receive interrupt microcode bundle size limit");
4830f1db1d6SMaxime Henrion 	SYSCTL_ADD_INT(device_get_sysctl_ctx(dev),
4840f1db1d6SMaxime Henrion 	    SYSCTL_CHILDREN(device_get_sysctl_tree(dev)),
4850f1db1d6SMaxime Henrion 	    OID_AUTO, "rnr", CTLFLAG_RD, &sc->rnr, 0,
4860f1db1d6SMaxime Henrion 	    "FXP RNR events");
4870f1db1d6SMaxime Henrion 	SYSCTL_ADD_INT(device_get_sysctl_ctx(dev),
4880f1db1d6SMaxime Henrion 	    SYSCTL_CHILDREN(device_get_sysctl_tree(dev)),
4890f1db1d6SMaxime Henrion 	    OID_AUTO, "noflow", CTLFLAG_RW, &sc->tunable_noflow, 0,
4900f1db1d6SMaxime Henrion 	    "FXP flow control disabled");
49172a32a26SJonathan Lemon 
49272a32a26SJonathan Lemon 	/*
49372a32a26SJonathan Lemon 	 * Pull in device tunables.
49472a32a26SJonathan Lemon 	 */
49572a32a26SJonathan Lemon 	sc->tunable_int_delay = TUNABLE_INT_DELAY;
49672a32a26SJonathan Lemon 	sc->tunable_bundle_max = TUNABLE_BUNDLE_MAX;
49703edfff3SRobert Watson 	sc->tunable_noflow = 1;
49872a32a26SJonathan Lemon 	(void) resource_int_value(device_get_name(dev), device_get_unit(dev),
49972a32a26SJonathan Lemon 	    "int_delay", &sc->tunable_int_delay);
50072a32a26SJonathan Lemon 	(void) resource_int_value(device_get_name(dev), device_get_unit(dev),
50172a32a26SJonathan Lemon 	    "bundle_max", &sc->tunable_bundle_max);
5020f1db1d6SMaxime Henrion 	(void) resource_int_value(device_get_name(dev), device_get_unit(dev),
5030f1db1d6SMaxime Henrion 	    "noflow", &sc->tunable_noflow);
5040f1db1d6SMaxime Henrion 	sc->rnr = 0;
50572a32a26SJonathan Lemon 
50672a32a26SJonathan Lemon 	/*
5072e2b8238SJonathan Lemon 	 * Enable workarounds for certain chip revision deficiencies.
50800c4116bSJonathan Lemon 	 *
50972a32a26SJonathan Lemon 	 * Systems based on the ICH2/ICH2-M chip from Intel, and possibly
51072a32a26SJonathan Lemon 	 * some systems based a normal 82559 design, have a defect where
51172a32a26SJonathan Lemon 	 * the chip can cause a PCI protocol violation if it receives
51200c4116bSJonathan Lemon 	 * a CU_RESUME command when it is entering the IDLE state.  The
51300c4116bSJonathan Lemon 	 * workaround is to disable Dynamic Standby Mode, so the chip never
51400c4116bSJonathan Lemon 	 * deasserts CLKRUN#, and always remains in an active state.
51500c4116bSJonathan Lemon 	 *
51600c4116bSJonathan Lemon 	 * See Intel 82801BA/82801BAM Specification Update, Errata #30.
5172e2b8238SJonathan Lemon 	 */
5182e2b8238SJonathan Lemon 	i = pci_get_device(dev);
51972a32a26SJonathan Lemon 	if (i == 0x2449 || (i > 0x1030 && i < 0x1039) ||
52072a32a26SJonathan Lemon 	    sc->revision >= FXP_REV_82559_A0) {
52100c4116bSJonathan Lemon 		fxp_read_eeprom(sc, &data, 10, 1);
52200c4116bSJonathan Lemon 		if (data & 0x02) {			/* STB enable */
52374d1ed23SMaxime Henrion 			uint16_t cksum;
52400c4116bSJonathan Lemon 			int i;
52500c4116bSJonathan Lemon 
52600c4116bSJonathan Lemon 			device_printf(dev,
527001cfa92SJonathan Lemon 			    "Disabling dynamic standby mode in EEPROM\n");
52800c4116bSJonathan Lemon 			data &= ~0x02;
52900c4116bSJonathan Lemon 			fxp_write_eeprom(sc, &data, 10, 1);
53000c4116bSJonathan Lemon 			device_printf(dev, "New EEPROM ID: 0x%x\n", data);
53100c4116bSJonathan Lemon 			cksum = 0;
53200c4116bSJonathan Lemon 			for (i = 0; i < (1 << sc->eeprom_size) - 1; i++) {
53300c4116bSJonathan Lemon 				fxp_read_eeprom(sc, &data, i, 1);
53400c4116bSJonathan Lemon 				cksum += data;
53500c4116bSJonathan Lemon 			}
53600c4116bSJonathan Lemon 			i = (1 << sc->eeprom_size) - 1;
53700c4116bSJonathan Lemon 			cksum = 0xBABA - cksum;
53800c4116bSJonathan Lemon 			fxp_read_eeprom(sc, &data, i, 1);
53900c4116bSJonathan Lemon 			fxp_write_eeprom(sc, &cksum, i, 1);
54000c4116bSJonathan Lemon 			device_printf(dev,
54100c4116bSJonathan Lemon 			    "EEPROM checksum @ 0x%x: 0x%x -> 0x%x\n",
54200c4116bSJonathan Lemon 			    i, data, cksum);
54300c4116bSJonathan Lemon #if 1
54400c4116bSJonathan Lemon 			/*
54500c4116bSJonathan Lemon 			 * If the user elects to continue, try the software
54600c4116bSJonathan Lemon 			 * workaround, as it is better than nothing.
54700c4116bSJonathan Lemon 			 */
5482e2b8238SJonathan Lemon 			sc->flags |= FXP_FLAG_CU_RESUME_BUG;
54900c4116bSJonathan Lemon #endif
55000c4116bSJonathan Lemon 		}
55100c4116bSJonathan Lemon 	}
5522e2b8238SJonathan Lemon 
5532e2b8238SJonathan Lemon 	/*
5543bd07cfdSJonathan Lemon 	 * If we are not a 82557 chip, we can enable extended features.
5553bd07cfdSJonathan Lemon 	 */
55672a32a26SJonathan Lemon 	if (sc->revision != FXP_REV_82557) {
5573bd07cfdSJonathan Lemon 		/*
55874396a0aSJonathan Lemon 		 * If MWI is enabled in the PCI configuration, and there
55974396a0aSJonathan Lemon 		 * is a valid cacheline size (8 or 16 dwords), then tell
56074396a0aSJonathan Lemon 		 * the board to turn on MWI.
5613bd07cfdSJonathan Lemon 		 */
56274396a0aSJonathan Lemon 		if (val & PCIM_CMD_MWRICEN &&
56374396a0aSJonathan Lemon 		    pci_read_config(dev, PCIR_CACHELNSZ, 1) != 0)
5643bd07cfdSJonathan Lemon 			sc->flags |= FXP_FLAG_MWI_ENABLE;
5653bd07cfdSJonathan Lemon 
5663bd07cfdSJonathan Lemon 		/* turn on the extended TxCB feature */
5673bd07cfdSJonathan Lemon 		sc->flags |= FXP_FLAG_EXT_TXCB;
56844e0bc11SYaroslav Tykhiy 
56944e0bc11SYaroslav Tykhiy 		/* enable reception of long frames for VLAN */
57044e0bc11SYaroslav Tykhiy 		sc->flags |= FXP_FLAG_LONG_PKT_EN;
57144e0bc11SYaroslav Tykhiy 	} else {
57244e0bc11SYaroslav Tykhiy 		/* a hack to get long VLAN frames on a 82557 */
57344e0bc11SYaroslav Tykhiy 		sc->flags |= FXP_FLAG_SAVE_BAD;
5743bd07cfdSJonathan Lemon 	}
5753bd07cfdSJonathan Lemon 
5763bd07cfdSJonathan Lemon 	/*
577c8bca6dcSBill Paul 	 * Enable use of extended RFDs and TCBs for 82550
578c8bca6dcSBill Paul 	 * and later chips. Note: we need extended TXCB support
579c8bca6dcSBill Paul 	 * too, but that's already enabled by the code above.
580c8bca6dcSBill Paul 	 * Be careful to do this only on the right devices.
581c8bca6dcSBill Paul 	 */
582507feeafSMaxime Henrion 	if (sc->revision == FXP_REV_82550 || sc->revision == FXP_REV_82550_C ||
583507feeafSMaxime Henrion 	    sc->revision == FXP_REV_82551_E || sc->revision == FXP_REV_82551_F
584507feeafSMaxime Henrion 	    || sc->revision == FXP_REV_82551_10) {
585c8bca6dcSBill Paul 		sc->rfa_size = sizeof (struct fxp_rfa);
586c8bca6dcSBill Paul 		sc->tx_cmd = FXP_CB_COMMAND_IPCBXMIT;
587c8bca6dcSBill Paul 		sc->flags |= FXP_FLAG_EXT_RFA;
588c8bca6dcSBill Paul 	} else {
589c8bca6dcSBill Paul 		sc->rfa_size = sizeof (struct fxp_rfa) - FXP_RFAX_LEN;
590c8bca6dcSBill Paul 		sc->tx_cmd = FXP_CB_COMMAND_XMIT;
591c8bca6dcSBill Paul 	}
592c8bca6dcSBill Paul 
593c8bca6dcSBill Paul 	/*
594b2badf02SMaxime Henrion 	 * Allocate DMA tags and DMA safe memory.
595b2badf02SMaxime Henrion 	 */
59640c20505SMaxime Henrion 	sc->maxtxseg = FXP_NTXSEG;
59740c20505SMaxime Henrion 	if (sc->flags & FXP_FLAG_EXT_RFA)
59840c20505SMaxime Henrion 		sc->maxtxseg--;
599b2badf02SMaxime Henrion 	error = bus_dma_tag_create(NULL, 2, 0, BUS_SPACE_MAXADDR_32BIT,
60040c20505SMaxime Henrion 	    BUS_SPACE_MAXADDR, NULL, NULL, MCLBYTES * sc->maxtxseg,
60140c20505SMaxime Henrion 	    sc->maxtxseg, MCLBYTES, 0, busdma_lock_mutex, &Giant,
60240c20505SMaxime Henrion 	    &sc->fxp_mtag);
603b2badf02SMaxime Henrion 	if (error) {
604b2badf02SMaxime Henrion 		device_printf(dev, "could not allocate dma tag\n");
605b2badf02SMaxime Henrion 		goto fail;
606b2badf02SMaxime Henrion 	}
607b2badf02SMaxime Henrion 
608b2badf02SMaxime Henrion 	error = bus_dma_tag_create(NULL, 4, 0, BUS_SPACE_MAXADDR_32BIT,
609b2badf02SMaxime Henrion 	    BUS_SPACE_MAXADDR, NULL, NULL, sizeof(struct fxp_stats), 1,
610f6b1c44dSScott Long 	    sizeof(struct fxp_stats), 0, busdma_lock_mutex, &Giant,
611f6b1c44dSScott Long 	    &sc->fxp_stag);
612b2badf02SMaxime Henrion 	if (error) {
613b2badf02SMaxime Henrion 		device_printf(dev, "could not allocate dma tag\n");
614b2badf02SMaxime Henrion 		goto fail;
615b2badf02SMaxime Henrion 	}
616b2badf02SMaxime Henrion 
617b2badf02SMaxime Henrion 	error = bus_dmamem_alloc(sc->fxp_stag, (void **)&sc->fxp_stats,
618aafb3ebbSMaxime Henrion 	    BUS_DMA_NOWAIT | BUS_DMA_ZERO, &sc->fxp_smap);
619b2badf02SMaxime Henrion 	if (error)
6204953bccaSNate Lawson 		goto fail;
621b2badf02SMaxime Henrion 	error = bus_dmamap_load(sc->fxp_stag, sc->fxp_smap, sc->fxp_stats,
622b2badf02SMaxime Henrion 	    sizeof(struct fxp_stats), fxp_dma_map_addr, &sc->stats_addr, 0);
623b2badf02SMaxime Henrion 	if (error) {
624b2badf02SMaxime Henrion 		device_printf(dev, "could not map the stats buffer\n");
625b2badf02SMaxime Henrion 		goto fail;
626b2badf02SMaxime Henrion 	}
627b2badf02SMaxime Henrion 
628b2badf02SMaxime Henrion 	error = bus_dma_tag_create(NULL, 4, 0, BUS_SPACE_MAXADDR_32BIT,
629b2badf02SMaxime Henrion 	    BUS_SPACE_MAXADDR, NULL, NULL, FXP_TXCB_SZ, 1,
630f6b1c44dSScott Long 	    FXP_TXCB_SZ, 0, busdma_lock_mutex, &Giant, &sc->cbl_tag);
631b2badf02SMaxime Henrion 	if (error) {
632b2badf02SMaxime Henrion 		device_printf(dev, "could not allocate dma tag\n");
633b2badf02SMaxime Henrion 		goto fail;
634b2badf02SMaxime Henrion 	}
635b2badf02SMaxime Henrion 
636b2badf02SMaxime Henrion 	error = bus_dmamem_alloc(sc->cbl_tag, (void **)&sc->fxp_desc.cbl_list,
637aafb3ebbSMaxime Henrion 	    BUS_DMA_NOWAIT | BUS_DMA_ZERO, &sc->cbl_map);
638b2badf02SMaxime Henrion 	if (error)
6394953bccaSNate Lawson 		goto fail;
640b2badf02SMaxime Henrion 
641b2badf02SMaxime Henrion 	error = bus_dmamap_load(sc->cbl_tag, sc->cbl_map,
642b2badf02SMaxime Henrion 	    sc->fxp_desc.cbl_list, FXP_TXCB_SZ, fxp_dma_map_addr,
643b2badf02SMaxime Henrion 	    &sc->fxp_desc.cbl_addr, 0);
644b2badf02SMaxime Henrion 	if (error) {
645b2badf02SMaxime Henrion 		device_printf(dev, "could not map DMA memory\n");
646b2badf02SMaxime Henrion 		goto fail;
647b2badf02SMaxime Henrion 	}
648b2badf02SMaxime Henrion 
649b2badf02SMaxime Henrion 	error = bus_dma_tag_create(NULL, 4, 0, BUS_SPACE_MAXADDR_32BIT,
650b2badf02SMaxime Henrion 	    BUS_SPACE_MAXADDR, NULL, NULL, sizeof(struct fxp_cb_mcs), 1,
651f6b1c44dSScott Long 	    sizeof(struct fxp_cb_mcs), 0, busdma_lock_mutex, &Giant,
652f6b1c44dSScott Long 	    &sc->mcs_tag);
653b2badf02SMaxime Henrion 	if (error) {
654b2badf02SMaxime Henrion 		device_printf(dev, "could not allocate dma tag\n");
655b2badf02SMaxime Henrion 		goto fail;
656b2badf02SMaxime Henrion 	}
657b2badf02SMaxime Henrion 
658b2badf02SMaxime Henrion 	error = bus_dmamem_alloc(sc->mcs_tag, (void **)&sc->mcsp,
659b2badf02SMaxime Henrion 	    BUS_DMA_NOWAIT, &sc->mcs_map);
660b2badf02SMaxime Henrion 	if (error)
6614953bccaSNate Lawson 		goto fail;
662b2badf02SMaxime Henrion 	error = bus_dmamap_load(sc->mcs_tag, sc->mcs_map, sc->mcsp,
663b2badf02SMaxime Henrion 	    sizeof(struct fxp_cb_mcs), fxp_dma_map_addr, &sc->mcs_addr, 0);
664b2badf02SMaxime Henrion 	if (error) {
665b2badf02SMaxime Henrion 		device_printf(dev, "can't map the multicast setup command\n");
666b2badf02SMaxime Henrion 		goto fail;
667b2badf02SMaxime Henrion 	}
668b2badf02SMaxime Henrion 
669b2badf02SMaxime Henrion 	/*
6706720ebccSMaxime Henrion 	 * Pre-allocate the TX DMA maps and setup the pointers to
6716720ebccSMaxime Henrion 	 * the TX command blocks.
672b2badf02SMaxime Henrion 	 */
6736720ebccSMaxime Henrion 	txp = sc->fxp_desc.tx_list;
6746720ebccSMaxime Henrion 	tcbp = sc->fxp_desc.cbl_list;
6754cec1653SMaxime Henrion 	for (i = 0; i < FXP_NTXCB; i++) {
6766720ebccSMaxime Henrion 		txp[i].tx_cb = tcbp + i;
6776720ebccSMaxime Henrion 		error = bus_dmamap_create(sc->fxp_mtag, 0, &txp[i].tx_map);
678b2badf02SMaxime Henrion 		if (error) {
679b2badf02SMaxime Henrion 			device_printf(dev, "can't create DMA map for TX\n");
680b2badf02SMaxime Henrion 			goto fail;
681b2badf02SMaxime Henrion 		}
682b2badf02SMaxime Henrion 	}
683b2badf02SMaxime Henrion 	error = bus_dmamap_create(sc->fxp_mtag, 0, &sc->spare_map);
684b2badf02SMaxime Henrion 	if (error) {
685b2badf02SMaxime Henrion 		device_printf(dev, "can't create spare DMA map\n");
686b2badf02SMaxime Henrion 		goto fail;
687b2badf02SMaxime Henrion 	}
688b2badf02SMaxime Henrion 
689b2badf02SMaxime Henrion 	/*
690b2badf02SMaxime Henrion 	 * Pre-allocate our receive buffers.
691b2badf02SMaxime Henrion 	 */
692b2badf02SMaxime Henrion 	sc->fxp_desc.rx_head = sc->fxp_desc.rx_tail = NULL;
693b2badf02SMaxime Henrion 	for (i = 0; i < FXP_NRFABUFS; i++) {
694b2badf02SMaxime Henrion 		rxp = &sc->fxp_desc.rx_list[i];
695b2badf02SMaxime Henrion 		error = bus_dmamap_create(sc->fxp_mtag, 0, &rxp->rx_map);
696b2badf02SMaxime Henrion 		if (error) {
697b2badf02SMaxime Henrion 			device_printf(dev, "can't create DMA map for RX\n");
698b2badf02SMaxime Henrion 			goto fail;
699b2badf02SMaxime Henrion 		}
7004953bccaSNate Lawson 		if (fxp_add_rfabuf(sc, rxp) != 0) {
7014953bccaSNate Lawson 			error = ENOMEM;
7024953bccaSNate Lawson 			goto fail;
7034953bccaSNate Lawson 		}
704b2badf02SMaxime Henrion 	}
705b2badf02SMaxime Henrion 
706b2badf02SMaxime Henrion 	/*
707f7788e8eSJonathan Lemon 	 * Read MAC address.
708f7788e8eSJonathan Lemon 	 */
70983e6547dSMaxime Henrion 	fxp_read_eeprom(sc, myea, 0, 3);
71083e6547dSMaxime Henrion 	sc->arpcom.ac_enaddr[0] = myea[0] & 0xff;
71183e6547dSMaxime Henrion 	sc->arpcom.ac_enaddr[1] = myea[0] >> 8;
71283e6547dSMaxime Henrion 	sc->arpcom.ac_enaddr[2] = myea[1] & 0xff;
71383e6547dSMaxime Henrion 	sc->arpcom.ac_enaddr[3] = myea[1] >> 8;
71483e6547dSMaxime Henrion 	sc->arpcom.ac_enaddr[4] = myea[2] & 0xff;
71583e6547dSMaxime Henrion 	sc->arpcom.ac_enaddr[5] = myea[2] >> 8;
716f7788e8eSJonathan Lemon 	if (bootverbose) {
7172e2b8238SJonathan Lemon 		device_printf(dev, "PCI IDs: %04x %04x %04x %04x %04x\n",
718f7788e8eSJonathan Lemon 		    pci_get_vendor(dev), pci_get_device(dev),
7192e2b8238SJonathan Lemon 		    pci_get_subvendor(dev), pci_get_subdevice(dev),
7202e2b8238SJonathan Lemon 		    pci_get_revid(dev));
72172a32a26SJonathan Lemon 		fxp_read_eeprom(sc, &data, 10, 1);
72272a32a26SJonathan Lemon 		device_printf(dev, "Dynamic Standby mode is %s\n",
72372a32a26SJonathan Lemon 		    data & 0x02 ? "enabled" : "disabled");
724f7788e8eSJonathan Lemon 	}
725f7788e8eSJonathan Lemon 
726f7788e8eSJonathan Lemon 	/*
727f7788e8eSJonathan Lemon 	 * If this is only a 10Mbps device, then there is no MII, and
728f7788e8eSJonathan Lemon 	 * the PHY will use a serial interface instead.
729f7788e8eSJonathan Lemon 	 *
730f7788e8eSJonathan Lemon 	 * The Seeq 80c24 AutoDUPLEX(tm) Ethernet Interface Adapter
731f7788e8eSJonathan Lemon 	 * doesn't have a programming interface of any sort.  The
732f7788e8eSJonathan Lemon 	 * media is sensed automatically based on how the link partner
733f7788e8eSJonathan Lemon 	 * is configured.  This is, in essence, manual configuration.
734f7788e8eSJonathan Lemon 	 */
735f7788e8eSJonathan Lemon 	if (sc->flags & FXP_FLAG_SERIAL_MEDIA) {
736f7788e8eSJonathan Lemon 		ifmedia_add(&sc->sc_media, IFM_ETHER|IFM_MANUAL, 0, NULL);
737f7788e8eSJonathan Lemon 		ifmedia_set(&sc->sc_media, IFM_ETHER|IFM_MANUAL);
738f7788e8eSJonathan Lemon 	} else {
739f7788e8eSJonathan Lemon 		if (mii_phy_probe(dev, &sc->miibus, fxp_ifmedia_upd,
740f7788e8eSJonathan Lemon 		    fxp_ifmedia_sts)) {
741f7788e8eSJonathan Lemon 	                device_printf(dev, "MII without any PHY!\n");
7426182fdbdSPeter Wemm 			error = ENXIO;
743ba8c6fd5SDavid Greenman 			goto fail;
744a17c678eSDavid Greenman 		}
745f7788e8eSJonathan Lemon 	}
746dccee1a1SDavid Greenman 
747a17c678eSDavid Greenman 	ifp = &sc->arpcom.ac_if;
7489bf40edeSBrooks Davis 	if_initname(ifp, device_get_name(dev), device_get_unit(dev));
749a330e1f1SGary Palmer 	ifp->if_baudrate = 100000000;
750fb583156SDavid Greenman 	ifp->if_init = fxp_init;
751ba8c6fd5SDavid Greenman 	ifp->if_softc = sc;
752ba8c6fd5SDavid Greenman 	ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
753ba8c6fd5SDavid Greenman 	ifp->if_ioctl = fxp_ioctl;
754ba8c6fd5SDavid Greenman 	ifp->if_start = fxp_start;
755ba8c6fd5SDavid Greenman 	ifp->if_watchdog = fxp_watchdog;
756a17c678eSDavid Greenman 
7575fe9116bSYaroslav Tykhiy 	ifp->if_capabilities = ifp->if_capenable = 0;
7585fe9116bSYaroslav Tykhiy 
759c8bca6dcSBill Paul 	/* Enable checksum offload for 82550 or better chips */
760c8bca6dcSBill Paul 	if (sc->flags & FXP_FLAG_EXT_RFA) {
761c8bca6dcSBill Paul 		ifp->if_hwassist = FXP_CSUM_FEATURES;
7625fe9116bSYaroslav Tykhiy 		ifp->if_capabilities |= IFCAP_HWCSUM;
7635fe9116bSYaroslav Tykhiy 		ifp->if_capenable |= IFCAP_HWCSUM;
764c8bca6dcSBill Paul 	}
765c8bca6dcSBill Paul 
766fb917226SRuslan Ermilov #ifdef DEVICE_POLLING
767fb917226SRuslan Ermilov 	/* Inform the world we support polling. */
768fb917226SRuslan Ermilov 	ifp->if_capabilities |= IFCAP_POLLING;
769fb917226SRuslan Ermilov 	ifp->if_capenable |= IFCAP_POLLING;
770fb917226SRuslan Ermilov #endif
771fb917226SRuslan Ermilov 
772dfe61cf1SDavid Greenman 	/*
7734953bccaSNate Lawson 	 * Attach the interface.
7744953bccaSNate Lawson 	 */
7754953bccaSNate Lawson 	ether_ifattach(ifp, sc->arpcom.ac_enaddr);
7764953bccaSNate Lawson 
7774953bccaSNate Lawson 	/*
778e8c8b728SJonathan Lemon 	 * Tell the upper layer(s) we support long frames.
7795fe9116bSYaroslav Tykhiy 	 * Must appear after the call to ether_ifattach() because
7805fe9116bSYaroslav Tykhiy 	 * ether_ifattach() sets ifi_hdrlen to the default value.
781e8c8b728SJonathan Lemon 	 */
782e8c8b728SJonathan Lemon 	ifp->if_data.ifi_hdrlen = sizeof(struct ether_vlan_header);
783673d9191SSam Leffler 	ifp->if_capabilities |= IFCAP_VLAN_MTU;
78444e0bc11SYaroslav Tykhiy 	ifp->if_capenable |= IFCAP_VLAN_MTU; /* the hw bits already set */
785e8c8b728SJonathan Lemon 
786483b9871SDavid Greenman 	/*
7873114fdb4SDavid Greenman 	 * Let the system queue as many packets as we have available
7883114fdb4SDavid Greenman 	 * TX descriptors.
789483b9871SDavid Greenman 	 */
7907929aa03SMax Laier 	IFQ_SET_MAXLEN(&ifp->if_snd, FXP_NTXCB - 1);
7917929aa03SMax Laier 	ifp->if_snd.ifq_drv_maxlen = FXP_NTXCB - 1;
7927929aa03SMax Laier 	IFQ_SET_READY(&ifp->if_snd);
7934a684684SDavid Greenman 
794201afb0eSMaxime Henrion 	/*
7954953bccaSNate Lawson 	 * Hook our interrupt after all initialization is complete.
796201afb0eSMaxime Henrion 	 */
797b237430cSSam Leffler 	error = bus_setup_intr(dev, sc->irq, INTR_TYPE_NET | INTR_MPSAFE,
798201afb0eSMaxime Henrion 			       fxp_intr, sc, &sc->ih);
799201afb0eSMaxime Henrion 	if (error) {
800201afb0eSMaxime Henrion 		device_printf(dev, "could not setup irq\n");
8014953bccaSNate Lawson 		ether_ifdetach(&sc->arpcom.ac_if);
802201afb0eSMaxime Henrion 		goto fail;
803201afb0eSMaxime Henrion 	}
804201afb0eSMaxime Henrion 
805a17c678eSDavid Greenman fail:
806f7788e8eSJonathan Lemon 	splx(s);
8074953bccaSNate Lawson 	if (error)
808f7788e8eSJonathan Lemon 		fxp_release(sc);
809f7788e8eSJonathan Lemon 	return (error);
810f7788e8eSJonathan Lemon }
811f7788e8eSJonathan Lemon 
812f7788e8eSJonathan Lemon /*
8134953bccaSNate Lawson  * Release all resources.  The softc lock should not be held and the
8144953bccaSNate Lawson  * interrupt should already be torn down.
815f7788e8eSJonathan Lemon  */
816f7788e8eSJonathan Lemon static void
817f7788e8eSJonathan Lemon fxp_release(struct fxp_softc *sc)
818f7788e8eSJonathan Lemon {
819b2badf02SMaxime Henrion 	struct fxp_rx *rxp;
820b2badf02SMaxime Henrion 	struct fxp_tx *txp;
821b2badf02SMaxime Henrion 	int i;
822b2badf02SMaxime Henrion 
82367fc050fSMaxime Henrion 	FXP_LOCK_ASSERT(sc, MA_NOTOWNED);
824670f5d73SMaxime Henrion 	KASSERT(sc->ih == NULL,
825670f5d73SMaxime Henrion 	    ("fxp_release() called with intr handle still active"));
8264953bccaSNate Lawson 	if (sc->miibus)
8274953bccaSNate Lawson 		device_delete_child(sc->dev, sc->miibus);
8284953bccaSNate Lawson 	bus_generic_detach(sc->dev);
8294953bccaSNate Lawson 	ifmedia_removeall(&sc->sc_media);
830b2badf02SMaxime Henrion 	if (sc->fxp_desc.cbl_list) {
831b2badf02SMaxime Henrion 		bus_dmamap_unload(sc->cbl_tag, sc->cbl_map);
832b2badf02SMaxime Henrion 		bus_dmamem_free(sc->cbl_tag, sc->fxp_desc.cbl_list,
833b2badf02SMaxime Henrion 		    sc->cbl_map);
834b2badf02SMaxime Henrion 	}
835b2badf02SMaxime Henrion 	if (sc->fxp_stats) {
836b2badf02SMaxime Henrion 		bus_dmamap_unload(sc->fxp_stag, sc->fxp_smap);
837b2badf02SMaxime Henrion 		bus_dmamem_free(sc->fxp_stag, sc->fxp_stats, sc->fxp_smap);
838b2badf02SMaxime Henrion 	}
839b2badf02SMaxime Henrion 	if (sc->mcsp) {
840b2badf02SMaxime Henrion 		bus_dmamap_unload(sc->mcs_tag, sc->mcs_map);
841b2badf02SMaxime Henrion 		bus_dmamem_free(sc->mcs_tag, sc->mcsp, sc->mcs_map);
842b2badf02SMaxime Henrion 	}
843f7788e8eSJonathan Lemon 	if (sc->irq)
844f7788e8eSJonathan Lemon 		bus_release_resource(sc->dev, SYS_RES_IRQ, 0, sc->irq);
845f7788e8eSJonathan Lemon 	if (sc->mem)
846f7788e8eSJonathan Lemon 		bus_release_resource(sc->dev, sc->rtp, sc->rgd, sc->mem);
847b983c7b3SMaxime Henrion 	if (sc->fxp_mtag) {
848b983c7b3SMaxime Henrion 		for (i = 0; i < FXP_NRFABUFS; i++) {
849b983c7b3SMaxime Henrion 			rxp = &sc->fxp_desc.rx_list[i];
850b983c7b3SMaxime Henrion 			if (rxp->rx_mbuf != NULL) {
851b983c7b3SMaxime Henrion 				bus_dmamap_sync(sc->fxp_mtag, rxp->rx_map,
852b983c7b3SMaxime Henrion 				    BUS_DMASYNC_POSTREAD);
853b983c7b3SMaxime Henrion 				bus_dmamap_unload(sc->fxp_mtag, rxp->rx_map);
854b983c7b3SMaxime Henrion 				m_freem(rxp->rx_mbuf);
855b983c7b3SMaxime Henrion 			}
856b983c7b3SMaxime Henrion 			bus_dmamap_destroy(sc->fxp_mtag, rxp->rx_map);
857b983c7b3SMaxime Henrion 		}
858b983c7b3SMaxime Henrion 		bus_dmamap_destroy(sc->fxp_mtag, sc->spare_map);
859b983c7b3SMaxime Henrion 		for (i = 0; i < FXP_NTXCB; i++) {
860b983c7b3SMaxime Henrion 			txp = &sc->fxp_desc.tx_list[i];
861b983c7b3SMaxime Henrion 			if (txp->tx_mbuf != NULL) {
862b983c7b3SMaxime Henrion 				bus_dmamap_sync(sc->fxp_mtag, txp->tx_map,
863b983c7b3SMaxime Henrion 				    BUS_DMASYNC_POSTWRITE);
864b983c7b3SMaxime Henrion 				bus_dmamap_unload(sc->fxp_mtag, txp->tx_map);
865b983c7b3SMaxime Henrion 				m_freem(txp->tx_mbuf);
866b983c7b3SMaxime Henrion 			}
867b983c7b3SMaxime Henrion 			bus_dmamap_destroy(sc->fxp_mtag, txp->tx_map);
868b983c7b3SMaxime Henrion 		}
869c4bf1e90SMaxime Henrion 		bus_dma_tag_destroy(sc->fxp_mtag);
870b983c7b3SMaxime Henrion 	}
871c4bf1e90SMaxime Henrion 	if (sc->fxp_stag)
872c4bf1e90SMaxime Henrion 		bus_dma_tag_destroy(sc->fxp_stag);
873b2badf02SMaxime Henrion 	if (sc->cbl_tag)
874b2badf02SMaxime Henrion 		bus_dma_tag_destroy(sc->cbl_tag);
875b2badf02SMaxime Henrion 	if (sc->mcs_tag)
876b2badf02SMaxime Henrion 		bus_dma_tag_destroy(sc->mcs_tag);
87772a32a26SJonathan Lemon 
8780f4dc94cSChuck Paterson 	mtx_destroy(&sc->sc_mtx);
8796182fdbdSPeter Wemm }
8806182fdbdSPeter Wemm 
8816182fdbdSPeter Wemm /*
8826182fdbdSPeter Wemm  * Detach interface.
8836182fdbdSPeter Wemm  */
8846182fdbdSPeter Wemm static int
8856182fdbdSPeter Wemm fxp_detach(device_t dev)
8866182fdbdSPeter Wemm {
8876182fdbdSPeter Wemm 	struct fxp_softc *sc = device_get_softc(dev);
888f7788e8eSJonathan Lemon 	int s;
8896182fdbdSPeter Wemm 
8904953bccaSNate Lawson 	FXP_LOCK(sc);
891f7788e8eSJonathan Lemon 	s = splimp();
89232cd7a9cSWarner Losh 
8931d2945d5SWarner Losh 	sc->suspended = 1;	/* Do same thing as we do for suspend */
8946182fdbdSPeter Wemm 	/*
895f7788e8eSJonathan Lemon 	 * Close down routes etc.
8966182fdbdSPeter Wemm 	 */
897673d9191SSam Leffler 	ether_ifdetach(&sc->arpcom.ac_if);
89820f0c80fSMaxime Henrion 
89920f0c80fSMaxime Henrion 	/*
90032cd7a9cSWarner Losh 	 * Stop DMA and drop transmit queue, but disable interrupts first.
90120f0c80fSMaxime Henrion 	 */
90220f0c80fSMaxime Henrion 	CSR_WRITE_1(sc, FXP_CSR_SCB_INTRCNTL, FXP_SCB_INTR_DISABLE);
90320f0c80fSMaxime Henrion 	fxp_stop(sc);
90432cd7a9cSWarner Losh 	FXP_UNLOCK(sc);
90520f0c80fSMaxime Henrion 
9066182fdbdSPeter Wemm 	/*
9074953bccaSNate Lawson 	 * Unhook interrupt before dropping lock. This is to prevent
9084953bccaSNate Lawson 	 * races with fxp_intr().
9096182fdbdSPeter Wemm 	 */
9104953bccaSNate Lawson 	bus_teardown_intr(sc->dev, sc->irq, sc->ih);
9114953bccaSNate Lawson 	sc->ih = NULL;
9126182fdbdSPeter Wemm 
913f7788e8eSJonathan Lemon 	splx(s);
9146182fdbdSPeter Wemm 
915f7788e8eSJonathan Lemon 	/* Release our allocated resources. */
916f7788e8eSJonathan Lemon 	fxp_release(sc);
917f7788e8eSJonathan Lemon 	return (0);
918a17c678eSDavid Greenman }
919a17c678eSDavid Greenman 
920a17c678eSDavid Greenman /*
9214a684684SDavid Greenman  * Device shutdown routine. Called at system shutdown after sync. The
922a17c678eSDavid Greenman  * main purpose of this routine is to shut off receiver DMA so that
923a17c678eSDavid Greenman  * kernel memory doesn't get clobbered during warmboot.
924a17c678eSDavid Greenman  */
9256182fdbdSPeter Wemm static int
9266182fdbdSPeter Wemm fxp_shutdown(device_t dev)
927a17c678eSDavid Greenman {
9286182fdbdSPeter Wemm 	/*
9296182fdbdSPeter Wemm 	 * Make sure that DMA is disabled prior to reboot. Not doing
9306182fdbdSPeter Wemm 	 * do could allow DMA to corrupt kernel memory during the
9316182fdbdSPeter Wemm 	 * reboot before the driver initializes.
9326182fdbdSPeter Wemm 	 */
9336182fdbdSPeter Wemm 	fxp_stop((struct fxp_softc *) device_get_softc(dev));
934f7788e8eSJonathan Lemon 	return (0);
935a17c678eSDavid Greenman }
936a17c678eSDavid Greenman 
9377dced78aSDavid Greenman /*
9387dced78aSDavid Greenman  * Device suspend routine.  Stop the interface and save some PCI
9397dced78aSDavid Greenman  * settings in case the BIOS doesn't restore them properly on
9407dced78aSDavid Greenman  * resume.
9417dced78aSDavid Greenman  */
9427dced78aSDavid Greenman static int
9437dced78aSDavid Greenman fxp_suspend(device_t dev)
9447dced78aSDavid Greenman {
9457dced78aSDavid Greenman 	struct fxp_softc *sc = device_get_softc(dev);
946f7788e8eSJonathan Lemon 	int i, s;
9477dced78aSDavid Greenman 
9484953bccaSNate Lawson 	FXP_LOCK(sc);
949f7788e8eSJonathan Lemon 	s = splimp();
9507dced78aSDavid Greenman 
9517dced78aSDavid Greenman 	fxp_stop(sc);
9527dced78aSDavid Greenman 
9537dced78aSDavid Greenman 	for (i = 0; i < 5; i++)
954e27951b2SJohn Baldwin 		sc->saved_maps[i] = pci_read_config(dev, PCIR_BAR(i), 4);
9557dced78aSDavid Greenman 	sc->saved_biosaddr = pci_read_config(dev, PCIR_BIOS, 4);
9567dced78aSDavid Greenman 	sc->saved_intline = pci_read_config(dev, PCIR_INTLINE, 1);
9577dced78aSDavid Greenman 	sc->saved_cachelnsz = pci_read_config(dev, PCIR_CACHELNSZ, 1);
9587dced78aSDavid Greenman 	sc->saved_lattimer = pci_read_config(dev, PCIR_LATTIMER, 1);
9597dced78aSDavid Greenman 
9607dced78aSDavid Greenman 	sc->suspended = 1;
9617dced78aSDavid Greenman 
9624953bccaSNate Lawson 	FXP_UNLOCK(sc);
963f7788e8eSJonathan Lemon 	splx(s);
964f7788e8eSJonathan Lemon 	return (0);
9657dced78aSDavid Greenman }
9667dced78aSDavid Greenman 
9677dced78aSDavid Greenman /*
9687dced78aSDavid Greenman  * Device resume routine.  Restore some PCI settings in case the BIOS
9697dced78aSDavid Greenman  * doesn't, re-enable busmastering, and restart the interface if
9707dced78aSDavid Greenman  * appropriate.
9717dced78aSDavid Greenman  */
9727dced78aSDavid Greenman static int
9737dced78aSDavid Greenman fxp_resume(device_t dev)
9747dced78aSDavid Greenman {
9757dced78aSDavid Greenman 	struct fxp_softc *sc = device_get_softc(dev);
9767dced78aSDavid Greenman 	struct ifnet *ifp = &sc->sc_if;
97774d1ed23SMaxime Henrion 	uint16_t pci_command;
978f7788e8eSJonathan Lemon 	int i, s;
9797dced78aSDavid Greenman 
9804953bccaSNate Lawson 	FXP_LOCK(sc);
981f7788e8eSJonathan Lemon 	s = splimp();
98279495006SWarner Losh 
9837dced78aSDavid Greenman 	/* better way to do this? */
9847dced78aSDavid Greenman 	for (i = 0; i < 5; i++)
985e27951b2SJohn Baldwin 		pci_write_config(dev, PCIR_BAR(i), sc->saved_maps[i], 4);
9867dced78aSDavid Greenman 	pci_write_config(dev, PCIR_BIOS, sc->saved_biosaddr, 4);
9877dced78aSDavid Greenman 	pci_write_config(dev, PCIR_INTLINE, sc->saved_intline, 1);
9887dced78aSDavid Greenman 	pci_write_config(dev, PCIR_CACHELNSZ, sc->saved_cachelnsz, 1);
9897dced78aSDavid Greenman 	pci_write_config(dev, PCIR_LATTIMER, sc->saved_lattimer, 1);
9907dced78aSDavid Greenman 
9917dced78aSDavid Greenman 	/* reenable busmastering */
9927dced78aSDavid Greenman 	pci_command = pci_read_config(dev, PCIR_COMMAND, 2);
9937dced78aSDavid Greenman 	pci_command |= (PCIM_CMD_MEMEN|PCIM_CMD_BUSMASTEREN);
9947dced78aSDavid Greenman 	pci_write_config(dev, PCIR_COMMAND, pci_command, 2);
9957dced78aSDavid Greenman 
9967dced78aSDavid Greenman 	CSR_WRITE_4(sc, FXP_CSR_PORT, FXP_PORT_SELECTIVE_RESET);
9977dced78aSDavid Greenman 	DELAY(10);
9987dced78aSDavid Greenman 
9997dced78aSDavid Greenman 	/* reinitialize interface if necessary */
10007dced78aSDavid Greenman 	if (ifp->if_flags & IFF_UP)
10014953bccaSNate Lawson 		fxp_init_body(sc);
10027dced78aSDavid Greenman 
10037dced78aSDavid Greenman 	sc->suspended = 0;
10047dced78aSDavid Greenman 
10054953bccaSNate Lawson 	FXP_UNLOCK(sc);
1006f7788e8eSJonathan Lemon 	splx(s);
1007ba8c6fd5SDavid Greenman 	return (0);
1008f7788e8eSJonathan Lemon }
1009ba8c6fd5SDavid Greenman 
101000c4116bSJonathan Lemon static void
101100c4116bSJonathan Lemon fxp_eeprom_shiftin(struct fxp_softc *sc, int data, int length)
101200c4116bSJonathan Lemon {
101374d1ed23SMaxime Henrion 	uint16_t reg;
101400c4116bSJonathan Lemon 	int x;
101500c4116bSJonathan Lemon 
101600c4116bSJonathan Lemon 	/*
101700c4116bSJonathan Lemon 	 * Shift in data.
101800c4116bSJonathan Lemon 	 */
101900c4116bSJonathan Lemon 	for (x = 1 << (length - 1); x; x >>= 1) {
102000c4116bSJonathan Lemon 		if (data & x)
102100c4116bSJonathan Lemon 			reg = FXP_EEPROM_EECS | FXP_EEPROM_EEDI;
102200c4116bSJonathan Lemon 		else
102300c4116bSJonathan Lemon 			reg = FXP_EEPROM_EECS;
102400c4116bSJonathan Lemon 		CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg);
102500c4116bSJonathan Lemon 		DELAY(1);
102600c4116bSJonathan Lemon 		CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg | FXP_EEPROM_EESK);
102700c4116bSJonathan Lemon 		DELAY(1);
102800c4116bSJonathan Lemon 		CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg);
102900c4116bSJonathan Lemon 		DELAY(1);
103000c4116bSJonathan Lemon 	}
103100c4116bSJonathan Lemon }
103200c4116bSJonathan Lemon 
1033f7788e8eSJonathan Lemon /*
1034f7788e8eSJonathan Lemon  * Read from the serial EEPROM. Basically, you manually shift in
1035f7788e8eSJonathan Lemon  * the read opcode (one bit at a time) and then shift in the address,
1036f7788e8eSJonathan Lemon  * and then you shift out the data (all of this one bit at a time).
1037f7788e8eSJonathan Lemon  * The word size is 16 bits, so you have to provide the address for
1038f7788e8eSJonathan Lemon  * every 16 bits of data.
1039f7788e8eSJonathan Lemon  */
104074d1ed23SMaxime Henrion static uint16_t
1041f7788e8eSJonathan Lemon fxp_eeprom_getword(struct fxp_softc *sc, int offset, int autosize)
1042f7788e8eSJonathan Lemon {
104374d1ed23SMaxime Henrion 	uint16_t reg, data;
1044f7788e8eSJonathan Lemon 	int x;
1045ba8c6fd5SDavid Greenman 
1046f7788e8eSJonathan Lemon 	CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, FXP_EEPROM_EECS);
1047f7788e8eSJonathan Lemon 	/*
1048f7788e8eSJonathan Lemon 	 * Shift in read opcode.
1049f7788e8eSJonathan Lemon 	 */
105000c4116bSJonathan Lemon 	fxp_eeprom_shiftin(sc, FXP_EEPROM_OPC_READ, 3);
1051f7788e8eSJonathan Lemon 	/*
1052f7788e8eSJonathan Lemon 	 * Shift in address.
1053f7788e8eSJonathan Lemon 	 */
1054f7788e8eSJonathan Lemon 	data = 0;
1055f7788e8eSJonathan Lemon 	for (x = 1 << (sc->eeprom_size - 1); x; x >>= 1) {
1056f7788e8eSJonathan Lemon 		if (offset & x)
1057f7788e8eSJonathan Lemon 			reg = FXP_EEPROM_EECS | FXP_EEPROM_EEDI;
1058f7788e8eSJonathan Lemon 		else
1059f7788e8eSJonathan Lemon 			reg = FXP_EEPROM_EECS;
1060f7788e8eSJonathan Lemon 		CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg);
1061f7788e8eSJonathan Lemon 		DELAY(1);
1062f7788e8eSJonathan Lemon 		CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg | FXP_EEPROM_EESK);
1063f7788e8eSJonathan Lemon 		DELAY(1);
1064f7788e8eSJonathan Lemon 		CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg);
1065f7788e8eSJonathan Lemon 		DELAY(1);
1066f7788e8eSJonathan Lemon 		reg = CSR_READ_2(sc, FXP_CSR_EEPROMCONTROL) & FXP_EEPROM_EEDO;
1067f7788e8eSJonathan Lemon 		data++;
1068f7788e8eSJonathan Lemon 		if (autosize && reg == 0) {
1069f7788e8eSJonathan Lemon 			sc->eeprom_size = data;
1070f7788e8eSJonathan Lemon 			break;
1071f7788e8eSJonathan Lemon 		}
1072f7788e8eSJonathan Lemon 	}
1073f7788e8eSJonathan Lemon 	/*
1074f7788e8eSJonathan Lemon 	 * Shift out data.
1075f7788e8eSJonathan Lemon 	 */
1076f7788e8eSJonathan Lemon 	data = 0;
1077f7788e8eSJonathan Lemon 	reg = FXP_EEPROM_EECS;
1078f7788e8eSJonathan Lemon 	for (x = 1 << 15; x; x >>= 1) {
1079f7788e8eSJonathan Lemon 		CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg | FXP_EEPROM_EESK);
1080f7788e8eSJonathan Lemon 		DELAY(1);
1081f7788e8eSJonathan Lemon 		if (CSR_READ_2(sc, FXP_CSR_EEPROMCONTROL) & FXP_EEPROM_EEDO)
1082f7788e8eSJonathan Lemon 			data |= x;
1083f7788e8eSJonathan Lemon 		CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg);
1084f7788e8eSJonathan Lemon 		DELAY(1);
1085f7788e8eSJonathan Lemon 	}
1086f7788e8eSJonathan Lemon 	CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, 0);
1087f7788e8eSJonathan Lemon 	DELAY(1);
1088f7788e8eSJonathan Lemon 
1089f7788e8eSJonathan Lemon 	return (data);
1090ba8c6fd5SDavid Greenman }
1091ba8c6fd5SDavid Greenman 
109200c4116bSJonathan Lemon static void
109374d1ed23SMaxime Henrion fxp_eeprom_putword(struct fxp_softc *sc, int offset, uint16_t data)
109400c4116bSJonathan Lemon {
109500c4116bSJonathan Lemon 	int i;
109600c4116bSJonathan Lemon 
109700c4116bSJonathan Lemon 	/*
109800c4116bSJonathan Lemon 	 * Erase/write enable.
109900c4116bSJonathan Lemon 	 */
110000c4116bSJonathan Lemon 	CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, FXP_EEPROM_EECS);
110100c4116bSJonathan Lemon 	fxp_eeprom_shiftin(sc, 0x4, 3);
110200c4116bSJonathan Lemon 	fxp_eeprom_shiftin(sc, 0x03 << (sc->eeprom_size - 2), sc->eeprom_size);
110300c4116bSJonathan Lemon 	CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, 0);
110400c4116bSJonathan Lemon 	DELAY(1);
110500c4116bSJonathan Lemon 	/*
110600c4116bSJonathan Lemon 	 * Shift in write opcode, address, data.
110700c4116bSJonathan Lemon 	 */
110800c4116bSJonathan Lemon 	CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, FXP_EEPROM_EECS);
110900c4116bSJonathan Lemon 	fxp_eeprom_shiftin(sc, FXP_EEPROM_OPC_WRITE, 3);
111000c4116bSJonathan Lemon 	fxp_eeprom_shiftin(sc, offset, sc->eeprom_size);
111100c4116bSJonathan Lemon 	fxp_eeprom_shiftin(sc, data, 16);
111200c4116bSJonathan Lemon 	CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, 0);
111300c4116bSJonathan Lemon 	DELAY(1);
111400c4116bSJonathan Lemon 	/*
111500c4116bSJonathan Lemon 	 * Wait for EEPROM to finish up.
111600c4116bSJonathan Lemon 	 */
111700c4116bSJonathan Lemon 	CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, FXP_EEPROM_EECS);
111800c4116bSJonathan Lemon 	DELAY(1);
111900c4116bSJonathan Lemon 	for (i = 0; i < 1000; i++) {
112000c4116bSJonathan Lemon 		if (CSR_READ_2(sc, FXP_CSR_EEPROMCONTROL) & FXP_EEPROM_EEDO)
112100c4116bSJonathan Lemon 			break;
112200c4116bSJonathan Lemon 		DELAY(50);
112300c4116bSJonathan Lemon 	}
112400c4116bSJonathan Lemon 	CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, 0);
112500c4116bSJonathan Lemon 	DELAY(1);
112600c4116bSJonathan Lemon 	/*
112700c4116bSJonathan Lemon 	 * Erase/write disable.
112800c4116bSJonathan Lemon 	 */
112900c4116bSJonathan Lemon 	CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, FXP_EEPROM_EECS);
113000c4116bSJonathan Lemon 	fxp_eeprom_shiftin(sc, 0x4, 3);
113100c4116bSJonathan Lemon 	fxp_eeprom_shiftin(sc, 0, sc->eeprom_size);
113200c4116bSJonathan Lemon 	CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, 0);
113300c4116bSJonathan Lemon 	DELAY(1);
113400c4116bSJonathan Lemon }
113500c4116bSJonathan Lemon 
1136ba8c6fd5SDavid Greenman /*
1137e9bf2fa7SDavid Greenman  * From NetBSD:
1138e9bf2fa7SDavid Greenman  *
1139e9bf2fa7SDavid Greenman  * Figure out EEPROM size.
1140e9bf2fa7SDavid Greenman  *
1141e9bf2fa7SDavid Greenman  * 559's can have either 64-word or 256-word EEPROMs, the 558
1142e9bf2fa7SDavid Greenman  * datasheet only talks about 64-word EEPROMs, and the 557 datasheet
1143e9bf2fa7SDavid Greenman  * talks about the existance of 16 to 256 word EEPROMs.
1144e9bf2fa7SDavid Greenman  *
1145e9bf2fa7SDavid Greenman  * The only known sizes are 64 and 256, where the 256 version is used
1146e9bf2fa7SDavid Greenman  * by CardBus cards to store CIS information.
1147e9bf2fa7SDavid Greenman  *
1148e9bf2fa7SDavid Greenman  * The address is shifted in msb-to-lsb, and after the last
1149e9bf2fa7SDavid Greenman  * address-bit the EEPROM is supposed to output a `dummy zero' bit,
1150e9bf2fa7SDavid Greenman  * after which follows the actual data. We try to detect this zero, by
1151e9bf2fa7SDavid Greenman  * probing the data-out bit in the EEPROM control register just after
1152e9bf2fa7SDavid Greenman  * having shifted in a bit. If the bit is zero, we assume we've
1153e9bf2fa7SDavid Greenman  * shifted enough address bits. The data-out should be tri-state,
1154e9bf2fa7SDavid Greenman  * before this, which should translate to a logical one.
1155e9bf2fa7SDavid Greenman  */
1156e9bf2fa7SDavid Greenman static void
1157f7788e8eSJonathan Lemon fxp_autosize_eeprom(struct fxp_softc *sc)
1158e9bf2fa7SDavid Greenman {
1159e9bf2fa7SDavid Greenman 
1160f7788e8eSJonathan Lemon 	/* guess maximum size of 256 words */
1161f7788e8eSJonathan Lemon 	sc->eeprom_size = 8;
1162f7788e8eSJonathan Lemon 
1163f7788e8eSJonathan Lemon 	/* autosize */
1164f7788e8eSJonathan Lemon 	(void) fxp_eeprom_getword(sc, 0, 1);
1165e9bf2fa7SDavid Greenman }
1166f7788e8eSJonathan Lemon 
1167ba8c6fd5SDavid Greenman static void
1168f7788e8eSJonathan Lemon fxp_read_eeprom(struct fxp_softc *sc, u_short *data, int offset, int words)
1169ba8c6fd5SDavid Greenman {
1170f7788e8eSJonathan Lemon 	int i;
1171ba8c6fd5SDavid Greenman 
1172f7788e8eSJonathan Lemon 	for (i = 0; i < words; i++)
1173f7788e8eSJonathan Lemon 		data[i] = fxp_eeprom_getword(sc, offset + i, 0);
1174ba8c6fd5SDavid Greenman }
1175ba8c6fd5SDavid Greenman 
117600c4116bSJonathan Lemon static void
117700c4116bSJonathan Lemon fxp_write_eeprom(struct fxp_softc *sc, u_short *data, int offset, int words)
117800c4116bSJonathan Lemon {
117900c4116bSJonathan Lemon 	int i;
118000c4116bSJonathan Lemon 
118100c4116bSJonathan Lemon 	for (i = 0; i < words; i++)
118200c4116bSJonathan Lemon 		fxp_eeprom_putword(sc, offset + i, data[i]);
118300c4116bSJonathan Lemon }
118400c4116bSJonathan Lemon 
1185a17c678eSDavid Greenman /*
11864953bccaSNate Lawson  * Grab the softc lock and call the real fxp_start_body() routine
1187a17c678eSDavid Greenman  */
1188a17c678eSDavid Greenman static void
1189f7788e8eSJonathan Lemon fxp_start(struct ifnet *ifp)
1190a17c678eSDavid Greenman {
11919b44ff22SGarrett Wollman 	struct fxp_softc *sc = ifp->if_softc;
11924953bccaSNate Lawson 
11934953bccaSNate Lawson 	FXP_LOCK(sc);
11944953bccaSNate Lawson 	fxp_start_body(ifp);
11954953bccaSNate Lawson 	FXP_UNLOCK(sc);
11964953bccaSNate Lawson }
11974953bccaSNate Lawson 
11984953bccaSNate Lawson /*
11994953bccaSNate Lawson  * Start packet transmission on the interface.
12004953bccaSNate Lawson  * This routine must be called with the softc lock held, and is an
12014953bccaSNate Lawson  * internal entry point only.
12024953bccaSNate Lawson  */
12034953bccaSNate Lawson static void
12044953bccaSNate Lawson fxp_start_body(struct ifnet *ifp)
12054953bccaSNate Lawson {
12064953bccaSNate Lawson 	struct fxp_softc *sc = ifp->if_softc;
1207b2badf02SMaxime Henrion 	struct mbuf *mb_head;
120840c20505SMaxime Henrion 	int error, txqueued;
1209a17c678eSDavid Greenman 
121067fc050fSMaxime Henrion 	FXP_LOCK_ASSERT(sc, MA_OWNED);
121140c20505SMaxime Henrion 
1212a17c678eSDavid Greenman 	/*
1213483b9871SDavid Greenman 	 * See if we need to suspend xmit until the multicast filter
1214483b9871SDavid Greenman 	 * has been reprogrammed (which can only be done at the head
1215483b9871SDavid Greenman 	 * of the command chain).
1216a17c678eSDavid Greenman 	 */
121740c20505SMaxime Henrion 	if (sc->need_mcsetup)
1218a17c678eSDavid Greenman 		return;
1219483b9871SDavid Greenman 
1220483b9871SDavid Greenman 	/*
1221483b9871SDavid Greenman 	 * We're finished if there is nothing more to add to the list or if
1222483b9871SDavid Greenman 	 * we're all filled up with buffers to transmit.
12233114fdb4SDavid Greenman 	 * NOTE: One TxCB is reserved to guarantee that fxp_mc_setup() can add
12243114fdb4SDavid Greenman 	 *       a NOP command when needed.
1225483b9871SDavid Greenman 	 */
122640c20505SMaxime Henrion 	txqueued = 0;
12277929aa03SMax Laier 	while (!IFQ_DRV_IS_EMPTY(&ifp->if_snd) &&
12287929aa03SMax Laier 	    sc->tx_queued < FXP_NTXCB - 1) {
1229483b9871SDavid Greenman 
1230dfe61cf1SDavid Greenman 		/*
1231dfe61cf1SDavid Greenman 		 * Grab a packet to transmit.
1232dfe61cf1SDavid Greenman 		 */
12337929aa03SMax Laier 		IFQ_DRV_DEQUEUE(&ifp->if_snd, mb_head);
12347929aa03SMax Laier 		if (mb_head == NULL)
12357929aa03SMax Laier 			break;
1236a17c678eSDavid Greenman 
123740c20505SMaxime Henrion 		error = fxp_encap(sc, mb_head);
123840c20505SMaxime Henrion 		if (error)
123940c20505SMaxime Henrion 			break;
124040c20505SMaxime Henrion 		txqueued = 1;
124140c20505SMaxime Henrion 	}
124240c20505SMaxime Henrion 	bus_dmamap_sync(sc->cbl_tag, sc->cbl_map, BUS_DMASYNC_PREWRITE);
124340c20505SMaxime Henrion 
124440c20505SMaxime Henrion 	/*
124540c20505SMaxime Henrion 	 * We're finished. If we added to the list, issue a RESUME to get DMA
124640c20505SMaxime Henrion 	 * going again if suspended.
124740c20505SMaxime Henrion 	 */
124840c20505SMaxime Henrion 	if (txqueued) {
124940c20505SMaxime Henrion 		fxp_scb_wait(sc);
125040c20505SMaxime Henrion 		fxp_scb_cmd(sc, FXP_SCB_COMMAND_CU_RESUME);
125140c20505SMaxime Henrion 	}
125240c20505SMaxime Henrion }
125340c20505SMaxime Henrion 
125440c20505SMaxime Henrion static int
125540c20505SMaxime Henrion fxp_encap(struct fxp_softc *sc, struct mbuf *m_head)
125640c20505SMaxime Henrion {
125740c20505SMaxime Henrion 	struct ifnet *ifp;
125840c20505SMaxime Henrion 	struct mbuf *m;
125940c20505SMaxime Henrion 	struct fxp_tx *txp;
126040c20505SMaxime Henrion 	struct fxp_cb_tx *cbp;
126140c20505SMaxime Henrion 	bus_dma_segment_t segs[FXP_NTXSEG];
126240c20505SMaxime Henrion 	int chainlen, error, i, nseg;
126340c20505SMaxime Henrion 
126440c20505SMaxime Henrion 	FXP_LOCK_ASSERT(sc, MA_OWNED);
126540c20505SMaxime Henrion 	ifp = &sc->sc_if;
126640c20505SMaxime Henrion 
1267dfe61cf1SDavid Greenman 	/*
1268483b9871SDavid Greenman 	 * Get pointer to next available tx desc.
1269dfe61cf1SDavid Greenman 	 */
1270b2badf02SMaxime Henrion 	txp = sc->fxp_desc.tx_last->tx_next;
1271c8bca6dcSBill Paul 
1272c8bca6dcSBill Paul 	/*
1273a35e7eaaSDon Lewis 	 * A note in Appendix B of the Intel 8255x 10/100 Mbps
1274a35e7eaaSDon Lewis 	 * Ethernet Controller Family Open Source Software
1275a35e7eaaSDon Lewis 	 * Developer Manual says:
1276a35e7eaaSDon Lewis 	 *   Using software parsing is only allowed with legal
1277a35e7eaaSDon Lewis 	 *   TCP/IP or UDP/IP packets.
1278a35e7eaaSDon Lewis 	 *   ...
1279a35e7eaaSDon Lewis 	 *   For all other datagrams, hardware parsing must
1280a35e7eaaSDon Lewis 	 *   be used.
1281a35e7eaaSDon Lewis 	 * Software parsing appears to truncate ICMP and
1282a35e7eaaSDon Lewis 	 * fragmented UDP packets that contain one to three
1283a35e7eaaSDon Lewis 	 * bytes in the second (and final) mbuf of the packet.
1284a35e7eaaSDon Lewis 	 */
1285a35e7eaaSDon Lewis 	if (sc->flags & FXP_FLAG_EXT_RFA)
1286a35e7eaaSDon Lewis 		txp->tx_cb->ipcb_ip_activation_high =
1287a35e7eaaSDon Lewis 		    FXP_IPCB_HARDWAREPARSING_ENABLE;
1288a35e7eaaSDon Lewis 
1289a35e7eaaSDon Lewis 	/*
1290c8bca6dcSBill Paul 	 * Deal with TCP/IP checksum offload. Note that
1291c8bca6dcSBill Paul 	 * in order for TCP checksum offload to work,
1292c8bca6dcSBill Paul 	 * the pseudo header checksum must have already
1293c8bca6dcSBill Paul 	 * been computed and stored in the checksum field
1294c8bca6dcSBill Paul 	 * in the TCP header. The stack should have
1295c8bca6dcSBill Paul 	 * already done this for us.
1296c8bca6dcSBill Paul 	 */
129740c20505SMaxime Henrion 	if (m_head->m_pkthdr.csum_flags) {
129840c20505SMaxime Henrion 		if (m_head->m_pkthdr.csum_flags & CSUM_DELAY_DATA) {
1299b2badf02SMaxime Henrion 			txp->tx_cb->ipcb_ip_schedule =
1300c8bca6dcSBill Paul 			    FXP_IPCB_TCPUDP_CHECKSUM_ENABLE;
130140c20505SMaxime Henrion 			if (m_head->m_pkthdr.csum_flags & CSUM_TCP)
1302b2badf02SMaxime Henrion 				txp->tx_cb->ipcb_ip_schedule |=
1303c8bca6dcSBill Paul 				    FXP_IPCB_TCP_PACKET;
1304c8bca6dcSBill Paul 		}
130540c20505SMaxime Henrion 
1306c8bca6dcSBill Paul #ifdef FXP_IP_CSUM_WAR
1307c8bca6dcSBill Paul 		/*
1308c8bca6dcSBill Paul 		 * XXX The 82550 chip appears to have trouble
1309c8bca6dcSBill Paul 		 * dealing with IP header checksums in very small
1310c8bca6dcSBill Paul 		 * datagrams, namely fragments from 1 to 3 bytes
1311c8bca6dcSBill Paul 		 * in size. For example, say you want to transmit
1312c8bca6dcSBill Paul 		 * a UDP packet of 1473 bytes. The packet will be
1313c8bca6dcSBill Paul 		 * fragmented over two IP datagrams, the latter
1314c8bca6dcSBill Paul 		 * containing only one byte of data. The 82550 will
1315c8bca6dcSBill Paul 		 * botch the header checksum on the 1-byte fragment.
1316c8bca6dcSBill Paul 		 * As long as the datagram contains 4 or more bytes
1317c8bca6dcSBill Paul 		 * of data, you're ok.
1318c8bca6dcSBill Paul 		 *
1319c8bca6dcSBill Paul                  * The following code attempts to work around this
1320c8bca6dcSBill Paul 		 * problem: if the datagram is less than 38 bytes
1321c8bca6dcSBill Paul 		 * in size (14 bytes ether header, 20 bytes IP header,
1322c8bca6dcSBill Paul 		 * plus 4 bytes of data), we punt and compute the IP
1323c8bca6dcSBill Paul 		 * header checksum by hand. This workaround doesn't
1324c8bca6dcSBill Paul 		 * work very well, however, since it can be fooled
1325c8bca6dcSBill Paul 		 * by things like VLAN tags and IP options that make
1326c8bca6dcSBill Paul 		 * the header sizes/offsets vary.
1327c8bca6dcSBill Paul 		 */
1328c8bca6dcSBill Paul 
132940c20505SMaxime Henrion 		if (m_head->m_pkthdr.csum_flags & CSUM_IP) {
133040c20505SMaxime Henrion 			if (m_head->m_pkthdr.len < 38) {
1331c8bca6dcSBill Paul 				struct ip *ip;
133240c20505SMaxime Henrion 				m_head->m_data += ETHER_HDR_LEN;
1333c8bca6dcSBill Paul 				ip = mtod(mb_head, struct ip *);
133440c20505SMaxime Henrion 				ip->ip_sum = in_cksum(mb_head, ip->ip_hl << 2);
133540c20505SMaxime Henrion 				m_head->m_data -= ETHER_HDR_LEN;
1336c8bca6dcSBill Paul 			} else {
1337b2badf02SMaxime Henrion 				txp->tx_cb->ipcb_ip_activation_high =
1338c8bca6dcSBill Paul 				    FXP_IPCB_HARDWAREPARSING_ENABLE;
1339b2badf02SMaxime Henrion 				txp->tx_cb->ipcb_ip_schedule |=
1340c8bca6dcSBill Paul 				    FXP_IPCB_IP_CHECKSUM_ENABLE;
1341c8bca6dcSBill Paul 			}
1342c8bca6dcSBill Paul 		}
1343c8bca6dcSBill Paul #endif
1344c8bca6dcSBill Paul 	}
1345c8bca6dcSBill Paul 
134640c20505SMaxime Henrion 	chainlen = 0;
134740c20505SMaxime Henrion 	for (m = m_head; m != NULL && chainlen <= sc->maxtxseg; m = m->m_next)
134840c20505SMaxime Henrion 		chainlen++;
134940c20505SMaxime Henrion 	if (chainlen > sc->maxtxseg) {
135023a0ed7cSDavid Greenman 		struct mbuf *mn;
135123a0ed7cSDavid Greenman 
1352a17c678eSDavid Greenman 		/*
13533bd07cfdSJonathan Lemon 		 * We ran out of segments. We have to recopy this
13543bd07cfdSJonathan Lemon 		 * mbuf chain first. Bail out if we can't get the
13553bd07cfdSJonathan Lemon 		 * new buffers.
1356a17c678eSDavid Greenman 		 */
135740c20505SMaxime Henrion 		mn = m_defrag(m_head, M_DONTWAIT);
135823a0ed7cSDavid Greenman 		if (mn == NULL) {
135940c20505SMaxime Henrion 			m_freem(m_head);
136040c20505SMaxime Henrion 			return (-1);
13611104779bSMike Silbersack 		} else {
136240c20505SMaxime Henrion 			m_head = mn;
13631104779bSMike Silbersack 		}
136440c20505SMaxime Henrion 	}
136540c20505SMaxime Henrion 
136640c20505SMaxime Henrion 	/*
136740c20505SMaxime Henrion 	 * Go through each of the mbufs in the chain and initialize
136840c20505SMaxime Henrion 	 * the transmit buffer descriptors with the physical address
136940c20505SMaxime Henrion 	 * and size of the mbuf.
137040c20505SMaxime Henrion 	 */
137140c20505SMaxime Henrion 	error = bus_dmamap_load_mbuf_sg(sc->fxp_mtag, txp->tx_map,
137240c20505SMaxime Henrion 	    m_head, segs, &nseg, 0);
1373b2badf02SMaxime Henrion 	if (error) {
137440c20505SMaxime Henrion 		device_printf(sc->dev, "can't map mbuf (error %d)\n", error);
137540c20505SMaxime Henrion 		m_freem(m_head);
137640c20505SMaxime Henrion 		return (-1);
137723a0ed7cSDavid Greenman 	}
137823a0ed7cSDavid Greenman 
137940c20505SMaxime Henrion 	KASSERT(nseg <= sc->maxtxseg, ("too many DMA segments"));
1380b2badf02SMaxime Henrion 
138140c20505SMaxime Henrion 	cbp = txp->tx_cb;
138240c20505SMaxime Henrion 	for (i = 0; i < nseg; i++) {
138340c20505SMaxime Henrion 		KASSERT(segs[i].ds_len <= MCLBYTES, ("segment size too large"));
138440c20505SMaxime Henrion 		/*
138540c20505SMaxime Henrion 		 * If this is an 82550/82551, then we're using extended
138640c20505SMaxime Henrion 		 * TxCBs _and_ we're using checksum offload. This means
138740c20505SMaxime Henrion 		 * that the TxCB is really an IPCB. One major difference
138840c20505SMaxime Henrion 		 * between the two is that with plain extended TxCBs,
138940c20505SMaxime Henrion 		 * the bottom half of the TxCB contains two entries from
139040c20505SMaxime Henrion 		 * the TBD array, whereas IPCBs contain just one entry:
139140c20505SMaxime Henrion 		 * one entry (8 bytes) has been sacrificed for the TCP/IP
139240c20505SMaxime Henrion 		 * checksum offload control bits. So to make things work
139340c20505SMaxime Henrion 		 * right, we have to start filling in the TBD array
139440c20505SMaxime Henrion 		 * starting from a different place depending on whether
139540c20505SMaxime Henrion 		 * the chip is an 82550/82551 or not.
139640c20505SMaxime Henrion 		 */
139740c20505SMaxime Henrion 		if (sc->flags & FXP_FLAG_EXT_RFA) {
139840c20505SMaxime Henrion 			cbp->tbd[i + 1].tb_addr = htole32(segs[i].ds_addr);
139940c20505SMaxime Henrion 			cbp->tbd[i + 1].tb_size = htole32(segs[i].ds_len);
140040c20505SMaxime Henrion 		} else {
140140c20505SMaxime Henrion 			cbp->tbd[i].tb_addr = htole32(segs[i].ds_addr);
140240c20505SMaxime Henrion 			cbp->tbd[i].tb_size = htole32(segs[i].ds_len);
140340c20505SMaxime Henrion 		}
140440c20505SMaxime Henrion 	}
140540c20505SMaxime Henrion 	cbp->tbd_number = nseg;
140640c20505SMaxime Henrion 
140740c20505SMaxime Henrion 	bus_dmamap_sync(sc->fxp_mtag, txp->tx_map, BUS_DMASYNC_PREWRITE);
140840c20505SMaxime Henrion 	txp->tx_mbuf = m_head;
1409b2badf02SMaxime Henrion 	txp->tx_cb->cb_status = 0;
1410b2badf02SMaxime Henrion 	txp->tx_cb->byte_count = 0;
14113114fdb4SDavid Greenman 	if (sc->tx_queued != FXP_CXINT_THRESH - 1) {
1412b2badf02SMaxime Henrion 		txp->tx_cb->cb_command =
141383e6547dSMaxime Henrion 		    htole16(sc->tx_cmd | FXP_CB_COMMAND_SF |
141483e6547dSMaxime Henrion 		    FXP_CB_COMMAND_S);
14153114fdb4SDavid Greenman 	} else {
1416b2badf02SMaxime Henrion 		txp->tx_cb->cb_command =
141783e6547dSMaxime Henrion 		    htole16(sc->tx_cmd | FXP_CB_COMMAND_SF |
141883e6547dSMaxime Henrion 		    FXP_CB_COMMAND_S | FXP_CB_COMMAND_I);
14193114fdb4SDavid Greenman 		/*
14203bd07cfdSJonathan Lemon 		 * Set a 5 second timer just in case we don't hear
14213bd07cfdSJonathan Lemon 		 * from the card again.
14223114fdb4SDavid Greenman 		 */
14233114fdb4SDavid Greenman 		ifp->if_timer = 5;
14243114fdb4SDavid Greenman 	}
1425b2badf02SMaxime Henrion 	txp->tx_cb->tx_threshold = tx_threshold;
1426a17c678eSDavid Greenman 
1427a17c678eSDavid Greenman 	/*
1428483b9871SDavid Greenman 	 * Advance the end of list forward.
1429a17c678eSDavid Greenman 	 */
143006175228SAndrew Gallatin 
143150d81222SMaxime Henrion #ifdef __alpha__
143206175228SAndrew Gallatin 	/*
143306175228SAndrew Gallatin 	 * On platforms which can't access memory in 16-bit
143406175228SAndrew Gallatin 	 * granularities, we must prevent the card from DMA'ing
143506175228SAndrew Gallatin 	 * up the status while we update the command field.
143606175228SAndrew Gallatin 	 * This could cause us to overwrite the completion status.
143714fd1071SMaxime Henrion 	 * XXX This is probably bogus and we're _not_ looking
143814fd1071SMaxime Henrion 	 * for atomicity here.
143906175228SAndrew Gallatin 	 */
144014fd1071SMaxime Henrion 	atomic_clear_16(&sc->fxp_desc.tx_last->tx_cb->cb_command,
1441bafb64afSMaxime Henrion 	    htole16(FXP_CB_COMMAND_S));
144250d81222SMaxime Henrion #else
144340c20505SMaxime Henrion 	sc->fxp_desc.tx_last->tx_cb->cb_command &= htole16(~FXP_CB_COMMAND_S);
144450d81222SMaxime Henrion #endif /*__alpha__*/
1445b2badf02SMaxime Henrion 	sc->fxp_desc.tx_last = txp;
1446a17c678eSDavid Greenman 
1447a17c678eSDavid Greenman 	/*
14481cd443acSDavid Greenman 	 * Advance the beginning of the list forward if there are
1449b2badf02SMaxime Henrion 	 * no other packets queued (when nothing is queued, tx_first
1450483b9871SDavid Greenman 	 * sits on the last TxCB that was sent out).
1451a17c678eSDavid Greenman 	 */
14521cd443acSDavid Greenman 	if (sc->tx_queued == 0)
1453b2badf02SMaxime Henrion 		sc->fxp_desc.tx_first = txp;
1454a17c678eSDavid Greenman 
14551cd443acSDavid Greenman 	sc->tx_queued++;
14561cd443acSDavid Greenman 
1457a17c678eSDavid Greenman 	/*
1458a17c678eSDavid Greenman 	 * Pass packet to bpf if there is a listener.
1459a17c678eSDavid Greenman 	 */
146040c20505SMaxime Henrion 	BPF_MTAP(ifp, m_head);
146140c20505SMaxime Henrion 	return (0);
1462a17c678eSDavid Greenman }
1463a17c678eSDavid Greenman 
1464e4fc250cSLuigi Rizzo #ifdef DEVICE_POLLING
1465e4fc250cSLuigi Rizzo static poll_handler_t fxp_poll;
1466e4fc250cSLuigi Rizzo 
1467e4fc250cSLuigi Rizzo static void
1468e4fc250cSLuigi Rizzo fxp_poll(struct ifnet *ifp, enum poll_cmd cmd, int count)
1469e4fc250cSLuigi Rizzo {
1470e4fc250cSLuigi Rizzo 	struct fxp_softc *sc = ifp->if_softc;
147174d1ed23SMaxime Henrion 	uint8_t statack;
1472e4fc250cSLuigi Rizzo 
14734953bccaSNate Lawson 	FXP_LOCK(sc);
1474fb917226SRuslan Ermilov 	if (!(ifp->if_capenable & IFCAP_POLLING)) {
1475fb917226SRuslan Ermilov 		ether_poll_deregister(ifp);
1476fb917226SRuslan Ermilov 		cmd = POLL_DEREGISTER;
1477fb917226SRuslan Ermilov 	}
1478e4fc250cSLuigi Rizzo 	if (cmd == POLL_DEREGISTER) {	/* final call, enable interrupts */
1479e4fc250cSLuigi Rizzo 		CSR_WRITE_1(sc, FXP_CSR_SCB_INTRCNTL, 0);
14804953bccaSNate Lawson 		FXP_UNLOCK(sc);
1481e4fc250cSLuigi Rizzo 		return;
1482e4fc250cSLuigi Rizzo 	}
1483e4fc250cSLuigi Rizzo 	statack = FXP_SCB_STATACK_CXTNO | FXP_SCB_STATACK_CNA |
1484e4fc250cSLuigi Rizzo 	    FXP_SCB_STATACK_FR;
1485e4fc250cSLuigi Rizzo 	if (cmd == POLL_AND_CHECK_STATUS) {
148674d1ed23SMaxime Henrion 		uint8_t tmp;
14876481f301SPeter Wemm 
1488e4fc250cSLuigi Rizzo 		tmp = CSR_READ_1(sc, FXP_CSR_SCB_STATACK);
14894953bccaSNate Lawson 		if (tmp == 0xff || tmp == 0) {
14904953bccaSNate Lawson 			FXP_UNLOCK(sc);
1491e4fc250cSLuigi Rizzo 			return; /* nothing to do */
14924953bccaSNate Lawson 		}
1493e4fc250cSLuigi Rizzo 		tmp &= ~statack;
1494e4fc250cSLuigi Rizzo 		/* ack what we can */
1495e4fc250cSLuigi Rizzo 		if (tmp != 0)
1496e4fc250cSLuigi Rizzo 			CSR_WRITE_1(sc, FXP_CSR_SCB_STATACK, tmp);
1497e4fc250cSLuigi Rizzo 		statack |= tmp;
1498e4fc250cSLuigi Rizzo 	}
14994953bccaSNate Lawson 	fxp_intr_body(sc, ifp, statack, count);
15004953bccaSNate Lawson 	FXP_UNLOCK(sc);
1501e4fc250cSLuigi Rizzo }
1502e4fc250cSLuigi Rizzo #endif /* DEVICE_POLLING */
1503e4fc250cSLuigi Rizzo 
1504a17c678eSDavid Greenman /*
15059c7d2607SDavid Greenman  * Process interface interrupts.
1506a17c678eSDavid Greenman  */
150794927790SDavid Greenman static void
1508f7788e8eSJonathan Lemon fxp_intr(void *xsc)
1509a17c678eSDavid Greenman {
1510f7788e8eSJonathan Lemon 	struct fxp_softc *sc = xsc;
15114953bccaSNate Lawson 	struct ifnet *ifp = &sc->sc_if;
151274d1ed23SMaxime Henrion 	uint8_t statack;
15130f4dc94cSChuck Paterson 
15144953bccaSNate Lawson 	FXP_LOCK(sc);
1515704d1965SWarner Losh 	if (sc->suspended) {
1516704d1965SWarner Losh 		FXP_UNLOCK(sc);
1517704d1965SWarner Losh 		return;
1518704d1965SWarner Losh 	}
1519704d1965SWarner Losh 
1520e4fc250cSLuigi Rizzo #ifdef DEVICE_POLLING
15214953bccaSNate Lawson 	if (ifp->if_flags & IFF_POLLING) {
15224953bccaSNate Lawson 		FXP_UNLOCK(sc);
1523e4fc250cSLuigi Rizzo 		return;
15244953bccaSNate Lawson 	}
1525fb917226SRuslan Ermilov 	if ((ifp->if_capenable & IFCAP_POLLING) &&
1526fb917226SRuslan Ermilov 	    ether_poll_register(fxp_poll, ifp)) {
1527e4fc250cSLuigi Rizzo 		/* disable interrupts */
1528e4fc250cSLuigi Rizzo 		CSR_WRITE_1(sc, FXP_CSR_SCB_INTRCNTL, FXP_SCB_INTR_DISABLE);
15294953bccaSNate Lawson 		FXP_UNLOCK(sc);
1530c660bdfaSJohn Baldwin 		fxp_poll(ifp, 0, 1);
1531e4fc250cSLuigi Rizzo 		return;
1532e4fc250cSLuigi Rizzo 	}
1533e4fc250cSLuigi Rizzo #endif
1534b184b38eSDavid Greenman 	while ((statack = CSR_READ_1(sc, FXP_CSR_SCB_STATACK)) != 0) {
1535a17c678eSDavid Greenman 		/*
153611457bbfSJonathan Lemon 		 * It should not be possible to have all bits set; the
153711457bbfSJonathan Lemon 		 * FXP_SCB_INTR_SWI bit always returns 0 on a read.  If
153811457bbfSJonathan Lemon 		 * all bits are set, this may indicate that the card has
153911457bbfSJonathan Lemon 		 * been physically ejected, so ignore it.
154011457bbfSJonathan Lemon 		 */
15414953bccaSNate Lawson 		if (statack == 0xff) {
15424953bccaSNate Lawson 			FXP_UNLOCK(sc);
154311457bbfSJonathan Lemon 			return;
15444953bccaSNate Lawson 		}
154511457bbfSJonathan Lemon 
154611457bbfSJonathan Lemon 		/*
1547a17c678eSDavid Greenman 		 * First ACK all the interrupts in this pass.
1548a17c678eSDavid Greenman 		 */
1549ba8c6fd5SDavid Greenman 		CSR_WRITE_1(sc, FXP_CSR_SCB_STATACK, statack);
15504953bccaSNate Lawson 		fxp_intr_body(sc, ifp, statack, -1);
1551e4fc250cSLuigi Rizzo 	}
15524953bccaSNate Lawson 	FXP_UNLOCK(sc);
1553e4fc250cSLuigi Rizzo }
1554e4fc250cSLuigi Rizzo 
1555e4fc250cSLuigi Rizzo static void
1556b2badf02SMaxime Henrion fxp_txeof(struct fxp_softc *sc)
1557b2badf02SMaxime Henrion {
1558b2badf02SMaxime Henrion 	struct fxp_tx *txp;
1559b2badf02SMaxime Henrion 
1560b2badf02SMaxime Henrion 	bus_dmamap_sync(sc->cbl_tag, sc->cbl_map, BUS_DMASYNC_PREREAD);
1561b2badf02SMaxime Henrion 	for (txp = sc->fxp_desc.tx_first; sc->tx_queued &&
156283e6547dSMaxime Henrion 	    (le16toh(txp->tx_cb->cb_status) & FXP_CB_STATUS_C) != 0;
1563b2badf02SMaxime Henrion 	    txp = txp->tx_next) {
1564b2badf02SMaxime Henrion 		if (txp->tx_mbuf != NULL) {
1565b2badf02SMaxime Henrion 			bus_dmamap_sync(sc->fxp_mtag, txp->tx_map,
1566b2badf02SMaxime Henrion 			    BUS_DMASYNC_POSTWRITE);
1567b2badf02SMaxime Henrion 			bus_dmamap_unload(sc->fxp_mtag, txp->tx_map);
1568b2badf02SMaxime Henrion 			m_freem(txp->tx_mbuf);
1569b2badf02SMaxime Henrion 			txp->tx_mbuf = NULL;
1570b2badf02SMaxime Henrion 			/* clear this to reset csum offload bits */
1571b2badf02SMaxime Henrion 			txp->tx_cb->tbd[0].tb_addr = 0;
1572b2badf02SMaxime Henrion 		}
1573b2badf02SMaxime Henrion 		sc->tx_queued--;
1574b2badf02SMaxime Henrion 	}
1575b2badf02SMaxime Henrion 	sc->fxp_desc.tx_first = txp;
1576b2badf02SMaxime Henrion 	bus_dmamap_sync(sc->cbl_tag, sc->cbl_map, BUS_DMASYNC_PREWRITE);
1577b2badf02SMaxime Henrion }
1578b2badf02SMaxime Henrion 
1579b2badf02SMaxime Henrion static void
158074d1ed23SMaxime Henrion fxp_intr_body(struct fxp_softc *sc, struct ifnet *ifp, uint8_t statack,
15814953bccaSNate Lawson     int count)
1582e4fc250cSLuigi Rizzo {
15832b5989e9SLuigi Rizzo 	struct mbuf *m;
1584b2badf02SMaxime Henrion 	struct fxp_rx *rxp;
15852b5989e9SLuigi Rizzo 	struct fxp_rfa *rfa;
15862b5989e9SLuigi Rizzo 	int rnr = (statack & FXP_SCB_STATACK_RNR) ? 1 : 0;
15872b5989e9SLuigi Rizzo 
158867fc050fSMaxime Henrion 	FXP_LOCK_ASSERT(sc, MA_OWNED);
15892b5989e9SLuigi Rizzo 	if (rnr)
15900f1db1d6SMaxime Henrion 		sc->rnr++;
1591947e3815SIan Dowse #ifdef DEVICE_POLLING
1592947e3815SIan Dowse 	/* Pick up a deferred RNR condition if `count' ran out last time. */
1593947e3815SIan Dowse 	if (sc->flags & FXP_FLAG_DEFERRED_RNR) {
1594947e3815SIan Dowse 		sc->flags &= ~FXP_FLAG_DEFERRED_RNR;
1595947e3815SIan Dowse 		rnr = 1;
1596947e3815SIan Dowse 	}
1597947e3815SIan Dowse #endif
1598a17c678eSDavid Greenman 
1599a17c678eSDavid Greenman 	/*
16003114fdb4SDavid Greenman 	 * Free any finished transmit mbuf chains.
160106936301SBill Paul 	 *
160206936301SBill Paul 	 * Handle the CNA event likt a CXTNO event. It used to
160306936301SBill Paul 	 * be that this event (control unit not ready) was not
160406936301SBill Paul 	 * encountered, but it is now with the SMPng modifications.
160506936301SBill Paul 	 * The exact sequence of events that occur when the interface
160606936301SBill Paul 	 * is brought up are different now, and if this event
160706936301SBill Paul 	 * goes unhandled, the configuration/rxfilter setup sequence
160806936301SBill Paul 	 * can stall for several seconds. The result is that no
160906936301SBill Paul 	 * packets go out onto the wire for about 5 to 10 seconds
161006936301SBill Paul 	 * after the interface is ifconfig'ed for the first time.
16113114fdb4SDavid Greenman 	 */
161206936301SBill Paul 	if (statack & (FXP_SCB_STATACK_CXTNO | FXP_SCB_STATACK_CNA)) {
1613b2badf02SMaxime Henrion 		fxp_txeof(sc);
16143114fdb4SDavid Greenman 
161541aa0ba2SLuigi Rizzo 		ifp->if_timer = 0;
1616e2102ae4SMike Silbersack 		if (sc->tx_queued == 0) {
16173114fdb4SDavid Greenman 			if (sc->need_mcsetup)
16183114fdb4SDavid Greenman 				fxp_mc_setup(sc);
1619e2102ae4SMike Silbersack 		}
16203114fdb4SDavid Greenman 		/*
16213114fdb4SDavid Greenman 		 * Try to start more packets transmitting.
16223114fdb4SDavid Greenman 		 */
16237929aa03SMax Laier 		if (!IFQ_DRV_IS_EMPTY(&ifp->if_snd))
16244953bccaSNate Lawson 			fxp_start_body(ifp);
16253114fdb4SDavid Greenman 	}
16262b5989e9SLuigi Rizzo 
16272b5989e9SLuigi Rizzo 	/*
16282b5989e9SLuigi Rizzo 	 * Just return if nothing happened on the receive side.
16292b5989e9SLuigi Rizzo 	 */
1630947e3815SIan Dowse 	if (!rnr && (statack & FXP_SCB_STATACK_FR) == 0)
16312b5989e9SLuigi Rizzo 		return;
16322b5989e9SLuigi Rizzo 
16333114fdb4SDavid Greenman 	/*
1634a17c678eSDavid Greenman 	 * Process receiver interrupts. If a no-resource (RNR)
1635a17c678eSDavid Greenman 	 * condition exists, get whatever packets we can and
1636a17c678eSDavid Greenman 	 * re-start the receiver.
1637947e3815SIan Dowse 	 *
16382b5989e9SLuigi Rizzo 	 * When using polling, we do not process the list to completion,
16392b5989e9SLuigi Rizzo 	 * so when we get an RNR interrupt we must defer the restart
16402b5989e9SLuigi Rizzo 	 * until we hit the last buffer with the C bit set.
16412b5989e9SLuigi Rizzo 	 * If we run out of cycles and rfa_headm has the C bit set,
1642947e3815SIan Dowse 	 * record the pending RNR in the FXP_FLAG_DEFERRED_RNR flag so
1643947e3815SIan Dowse 	 * that the info will be used in the subsequent polling cycle.
1644a17c678eSDavid Greenman 	 */
16452b5989e9SLuigi Rizzo 	for (;;) {
1646b2badf02SMaxime Henrion 		rxp = sc->fxp_desc.rx_head;
1647b2badf02SMaxime Henrion 		m = rxp->rx_mbuf;
1648ba8c6fd5SDavid Greenman 		rfa = (struct fxp_rfa *)(m->m_ext.ext_buf +
1649ba8c6fd5SDavid Greenman 		    RFA_ALIGNMENT_FUDGE);
1650b2badf02SMaxime Henrion 		bus_dmamap_sync(sc->fxp_mtag, rxp->rx_map,
1651b2badf02SMaxime Henrion 		    BUS_DMASYNC_POSTREAD);
1652a17c678eSDavid Greenman 
1653e4fc250cSLuigi Rizzo #ifdef DEVICE_POLLING /* loop at most count times if count >=0 */
1654947e3815SIan Dowse 		if (count >= 0 && count-- == 0) {
1655947e3815SIan Dowse 			if (rnr) {
1656947e3815SIan Dowse 				/* Defer RNR processing until the next time. */
1657947e3815SIan Dowse 				sc->flags |= FXP_FLAG_DEFERRED_RNR;
1658947e3815SIan Dowse 				rnr = 0;
1659947e3815SIan Dowse 			}
16602b5989e9SLuigi Rizzo 			break;
1661947e3815SIan Dowse 		}
16622b5989e9SLuigi Rizzo #endif /* DEVICE_POLLING */
16632b5989e9SLuigi Rizzo 
166483e6547dSMaxime Henrion 		if ((le16toh(rfa->rfa_status) & FXP_RFA_STATUS_C) == 0)
16652b5989e9SLuigi Rizzo 			break;
16662b5989e9SLuigi Rizzo 
1667dfe61cf1SDavid Greenman 		/*
1668b2badf02SMaxime Henrion 		 * Advance head forward.
1669dfe61cf1SDavid Greenman 		 */
1670b2badf02SMaxime Henrion 		sc->fxp_desc.rx_head = rxp->rx_next;
1671a17c678eSDavid Greenman 
1672dfe61cf1SDavid Greenman 		/*
1673ba8c6fd5SDavid Greenman 		 * Add a new buffer to the receive chain.
1674ba8c6fd5SDavid Greenman 		 * If this fails, the old buffer is recycled
1675ba8c6fd5SDavid Greenman 		 * instead.
1676dfe61cf1SDavid Greenman 		 */
1677b2badf02SMaxime Henrion 		if (fxp_add_rfabuf(sc, rxp) == 0) {
1678aed53495SDavid Greenman 			int total_len;
1679a17c678eSDavid Greenman 
1680e8c8b728SJonathan Lemon 			/*
16812b5989e9SLuigi Rizzo 			 * Fetch packet length (the top 2 bits of
16822b5989e9SLuigi Rizzo 			 * actual_size are flags set by the controller
16832b5989e9SLuigi Rizzo 			 * upon completion), and drop the packet in case
16842b5989e9SLuigi Rizzo 			 * of bogus length or CRC errors.
1685e8c8b728SJonathan Lemon 			 */
1686bafb64afSMaxime Henrion 			total_len = le16toh(rfa->actual_size) & 0x3fff;
16872b5989e9SLuigi Rizzo 			if (total_len < sizeof(struct ether_header) ||
16882b5989e9SLuigi Rizzo 			    total_len > MCLBYTES - RFA_ALIGNMENT_FUDGE -
1689b2badf02SMaxime Henrion 				sc->rfa_size ||
169083e6547dSMaxime Henrion 			    le16toh(rfa->rfa_status) & FXP_RFA_STATUS_CRC) {
1691e8c8b728SJonathan Lemon 				m_freem(m);
16922b5989e9SLuigi Rizzo 				continue;
1693e8c8b728SJonathan Lemon 			}
1694920b58e8SBrooks Davis 
1695c8bca6dcSBill Paul                         /* Do IP checksum checking. */
169683e6547dSMaxime Henrion 			if (le16toh(rfa->rfa_status) & FXP_RFA_STATUS_PARSE) {
1697c8bca6dcSBill Paul 				if (rfa->rfax_csum_sts &
1698c8bca6dcSBill Paul 				    FXP_RFDX_CS_IP_CSUM_BIT_VALID)
1699c8bca6dcSBill Paul 					m->m_pkthdr.csum_flags |=
1700c8bca6dcSBill Paul 					    CSUM_IP_CHECKED;
1701c8bca6dcSBill Paul 				if (rfa->rfax_csum_sts &
1702c8bca6dcSBill Paul 				    FXP_RFDX_CS_IP_CSUM_VALID)
1703c8bca6dcSBill Paul 					m->m_pkthdr.csum_flags |=
1704c8bca6dcSBill Paul 					    CSUM_IP_VALID;
1705c8bca6dcSBill Paul 				if ((rfa->rfax_csum_sts &
1706c8bca6dcSBill Paul 				    FXP_RFDX_CS_TCPUDP_CSUM_BIT_VALID) &&
1707c8bca6dcSBill Paul 				    (rfa->rfax_csum_sts &
1708c8bca6dcSBill Paul 				    FXP_RFDX_CS_TCPUDP_CSUM_VALID)) {
1709c8bca6dcSBill Paul 					m->m_pkthdr.csum_flags |=
1710c8bca6dcSBill Paul 					    CSUM_DATA_VALID|CSUM_PSEUDO_HDR;
1711c8bca6dcSBill Paul 					m->m_pkthdr.csum_data = 0xffff;
1712c8bca6dcSBill Paul 				}
1713c8bca6dcSBill Paul 			}
1714c8bca6dcSBill Paul 
17152e2de7f2SArchie Cobbs 			m->m_pkthdr.len = m->m_len = total_len;
1716673d9191SSam Leffler 			m->m_pkthdr.rcvif = ifp;
1717673d9191SSam Leffler 
171805fb8c3fSNate Lawson 			/*
171905fb8c3fSNate Lawson 			 * Drop locks before calling if_input() since it
172005fb8c3fSNate Lawson 			 * may re-enter fxp_start() in the netisr case.
172105fb8c3fSNate Lawson 			 * This would result in a lock reversal.  Better
172205fb8c3fSNate Lawson 			 * performance might be obtained by chaining all
172305fb8c3fSNate Lawson 			 * packets received, dropping the lock, and then
172405fb8c3fSNate Lawson 			 * calling if_input() on each one.
172505fb8c3fSNate Lawson 			 */
172605fb8c3fSNate Lawson 			FXP_UNLOCK(sc);
1727673d9191SSam Leffler 			(*ifp->if_input)(ifp, m);
172805fb8c3fSNate Lawson 			FXP_LOCK(sc);
1729a17c678eSDavid Greenman 		}
1730a17c678eSDavid Greenman 	}
17312b5989e9SLuigi Rizzo 	if (rnr) {
1732ba8c6fd5SDavid Greenman 		fxp_scb_wait(sc);
1733ba8c6fd5SDavid Greenman 		CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL,
1734b2badf02SMaxime Henrion 		    sc->fxp_desc.rx_head->rx_addr);
17352e2b8238SJonathan Lemon 		fxp_scb_cmd(sc, FXP_SCB_COMMAND_RU_START);
1736a17c678eSDavid Greenman 	}
1737a17c678eSDavid Greenman }
1738a17c678eSDavid Greenman 
1739dfe61cf1SDavid Greenman /*
1740dfe61cf1SDavid Greenman  * Update packet in/out/collision statistics. The i82557 doesn't
1741dfe61cf1SDavid Greenman  * allow you to access these counters without doing a fairly
1742dfe61cf1SDavid Greenman  * expensive DMA to get _all_ of the statistics it maintains, so
1743dfe61cf1SDavid Greenman  * we do this operation here only once per second. The statistics
1744dfe61cf1SDavid Greenman  * counters in the kernel are updated from the previous dump-stats
1745dfe61cf1SDavid Greenman  * DMA and then a new dump-stats DMA is started. The on-chip
1746dfe61cf1SDavid Greenman  * counters are zeroed when the DMA completes. If we can't start
1747dfe61cf1SDavid Greenman  * the DMA immediately, we don't wait - we just prepare to read
1748dfe61cf1SDavid Greenman  * them again next time.
1749dfe61cf1SDavid Greenman  */
1750303b270bSEivind Eklund static void
1751f7788e8eSJonathan Lemon fxp_tick(void *xsc)
1752a17c678eSDavid Greenman {
1753f7788e8eSJonathan Lemon 	struct fxp_softc *sc = xsc;
1754ba8c6fd5SDavid Greenman 	struct ifnet *ifp = &sc->sc_if;
1755a17c678eSDavid Greenman 	struct fxp_stats *sp = sc->fxp_stats;
1756f7788e8eSJonathan Lemon 	int s;
1757a17c678eSDavid Greenman 
17584953bccaSNate Lawson 	FXP_LOCK(sc);
17594953bccaSNate Lawson 	s = splimp();
1760b2badf02SMaxime Henrion 	bus_dmamap_sync(sc->fxp_stag, sc->fxp_smap, BUS_DMASYNC_POSTREAD);
176183e6547dSMaxime Henrion 	ifp->if_opackets += le32toh(sp->tx_good);
176283e6547dSMaxime Henrion 	ifp->if_collisions += le32toh(sp->tx_total_collisions);
1763397f9dfeSDavid Greenman 	if (sp->rx_good) {
176483e6547dSMaxime Henrion 		ifp->if_ipackets += le32toh(sp->rx_good);
1765397f9dfeSDavid Greenman 		sc->rx_idle_secs = 0;
1766397f9dfeSDavid Greenman 	} else {
1767c8cc6fcaSDavid Greenman 		/*
1768c8cc6fcaSDavid Greenman 		 * Receiver's been idle for another second.
1769c8cc6fcaSDavid Greenman 		 */
1770397f9dfeSDavid Greenman 		sc->rx_idle_secs++;
1771397f9dfeSDavid Greenman 	}
17723ba65732SDavid Greenman 	ifp->if_ierrors +=
177383e6547dSMaxime Henrion 	    le32toh(sp->rx_crc_errors) +
177483e6547dSMaxime Henrion 	    le32toh(sp->rx_alignment_errors) +
177583e6547dSMaxime Henrion 	    le32toh(sp->rx_rnr_errors) +
177683e6547dSMaxime Henrion 	    le32toh(sp->rx_overrun_errors);
1777a17c678eSDavid Greenman 	/*
1778f9be9005SDavid Greenman 	 * If any transmit underruns occured, bump up the transmit
1779f9be9005SDavid Greenman 	 * threshold by another 512 bytes (64 * 8).
1780f9be9005SDavid Greenman 	 */
1781f9be9005SDavid Greenman 	if (sp->tx_underruns) {
178283e6547dSMaxime Henrion 		ifp->if_oerrors += le32toh(sp->tx_underruns);
1783f9be9005SDavid Greenman 		if (tx_threshold < 192)
1784f9be9005SDavid Greenman 			tx_threshold += 64;
1785f9be9005SDavid Greenman 	}
17864953bccaSNate Lawson 
1787397f9dfeSDavid Greenman 	/*
1788c8cc6fcaSDavid Greenman 	 * Release any xmit buffers that have completed DMA. This isn't
1789c8cc6fcaSDavid Greenman 	 * strictly necessary to do here, but it's advantagous for mbufs
1790c8cc6fcaSDavid Greenman 	 * with external storage to be released in a timely manner rather
1791c8cc6fcaSDavid Greenman 	 * than being defered for a potentially long time. This limits
1792c8cc6fcaSDavid Greenman 	 * the delay to a maximum of one second.
1793c8cc6fcaSDavid Greenman 	 */
1794b2badf02SMaxime Henrion 	fxp_txeof(sc);
1795b2badf02SMaxime Henrion 
1796c8cc6fcaSDavid Greenman 	/*
1797397f9dfeSDavid Greenman 	 * If we haven't received any packets in FXP_MAC_RX_IDLE seconds,
1798397f9dfeSDavid Greenman 	 * then assume the receiver has locked up and attempt to clear
1799397f9dfeSDavid Greenman 	 * the condition by reprogramming the multicast filter. This is
1800397f9dfeSDavid Greenman 	 * a work-around for a bug in the 82557 where the receiver locks
1801397f9dfeSDavid Greenman 	 * up if it gets certain types of garbage in the syncronization
1802397f9dfeSDavid Greenman 	 * bits prior to the packet header. This bug is supposed to only
1803397f9dfeSDavid Greenman 	 * occur in 10Mbps mode, but has been seen to occur in 100Mbps
1804397f9dfeSDavid Greenman 	 * mode as well (perhaps due to a 10/100 speed transition).
1805397f9dfeSDavid Greenman 	 */
1806397f9dfeSDavid Greenman 	if (sc->rx_idle_secs > FXP_MAX_RX_IDLE) {
1807397f9dfeSDavid Greenman 		sc->rx_idle_secs = 0;
1808397f9dfeSDavid Greenman 		fxp_mc_setup(sc);
1809397f9dfeSDavid Greenman 	}
1810f9be9005SDavid Greenman 	/*
18113ba65732SDavid Greenman 	 * If there is no pending command, start another stats
18123ba65732SDavid Greenman 	 * dump. Otherwise punt for now.
1813a17c678eSDavid Greenman 	 */
1814397f9dfeSDavid Greenman 	if (CSR_READ_1(sc, FXP_CSR_SCB_COMMAND) == 0) {
1815a17c678eSDavid Greenman 		/*
1816397f9dfeSDavid Greenman 		 * Start another stats dump.
1817a17c678eSDavid Greenman 		 */
1818b2badf02SMaxime Henrion 		bus_dmamap_sync(sc->fxp_stag, sc->fxp_smap,
1819b2badf02SMaxime Henrion 		    BUS_DMASYNC_PREREAD);
18202e2b8238SJonathan Lemon 		fxp_scb_cmd(sc, FXP_SCB_COMMAND_CU_DUMPRESET);
1821dfe61cf1SDavid Greenman 	} else {
1822dfe61cf1SDavid Greenman 		/*
1823dfe61cf1SDavid Greenman 		 * A previous command is still waiting to be accepted.
1824dfe61cf1SDavid Greenman 		 * Just zero our copy of the stats and wait for the
18253ba65732SDavid Greenman 		 * next timer event to update them.
1826dfe61cf1SDavid Greenman 		 */
1827dfe61cf1SDavid Greenman 		sp->tx_good = 0;
1828f9be9005SDavid Greenman 		sp->tx_underruns = 0;
1829dfe61cf1SDavid Greenman 		sp->tx_total_collisions = 0;
18303ba65732SDavid Greenman 
1831dfe61cf1SDavid Greenman 		sp->rx_good = 0;
18323ba65732SDavid Greenman 		sp->rx_crc_errors = 0;
18333ba65732SDavid Greenman 		sp->rx_alignment_errors = 0;
18343ba65732SDavid Greenman 		sp->rx_rnr_errors = 0;
18353ba65732SDavid Greenman 		sp->rx_overrun_errors = 0;
1836dfe61cf1SDavid Greenman 	}
1837f7788e8eSJonathan Lemon 	if (sc->miibus != NULL)
1838f7788e8eSJonathan Lemon 		mii_tick(device_get_softc(sc->miibus));
18394953bccaSNate Lawson 
1840a17c678eSDavid Greenman 	/*
1841a17c678eSDavid Greenman 	 * Schedule another timeout one second from now.
1842a17c678eSDavid Greenman 	 */
184345276e4aSSam Leffler 	callout_reset(&sc->stat_ch, hz, fxp_tick, sc);
18444953bccaSNate Lawson 	FXP_UNLOCK(sc);
18454953bccaSNate Lawson 	splx(s);
1846a17c678eSDavid Greenman }
1847a17c678eSDavid Greenman 
1848a17c678eSDavid Greenman /*
1849a17c678eSDavid Greenman  * Stop the interface. Cancels the statistics updater and resets
1850a17c678eSDavid Greenman  * the interface.
1851a17c678eSDavid Greenman  */
1852a17c678eSDavid Greenman static void
1853f7788e8eSJonathan Lemon fxp_stop(struct fxp_softc *sc)
1854a17c678eSDavid Greenman {
1855ba8c6fd5SDavid Greenman 	struct ifnet *ifp = &sc->sc_if;
1856b2badf02SMaxime Henrion 	struct fxp_tx *txp;
18573ba65732SDavid Greenman 	int i;
1858a17c678eSDavid Greenman 
18597dced78aSDavid Greenman 	ifp->if_flags &= ~(IFF_RUNNING | IFF_OACTIVE);
18607dced78aSDavid Greenman 	ifp->if_timer = 0;
18617dced78aSDavid Greenman 
1862e4fc250cSLuigi Rizzo #ifdef DEVICE_POLLING
1863e4fc250cSLuigi Rizzo 	ether_poll_deregister(ifp);
1864e4fc250cSLuigi Rizzo #endif
1865a17c678eSDavid Greenman 	/*
1866a17c678eSDavid Greenman 	 * Cancel stats updater.
1867a17c678eSDavid Greenman 	 */
186845276e4aSSam Leffler 	callout_stop(&sc->stat_ch);
18693ba65732SDavid Greenman 
18703ba65732SDavid Greenman 	/*
187172a32a26SJonathan Lemon 	 * Issue software reset, which also unloads the microcode.
18723ba65732SDavid Greenman 	 */
187372a32a26SJonathan Lemon 	sc->flags &= ~FXP_FLAG_UCODE;
187409882363SJonathan Lemon 	CSR_WRITE_4(sc, FXP_CSR_PORT, FXP_PORT_SOFTWARE_RESET);
187572a32a26SJonathan Lemon 	DELAY(50);
1876a17c678eSDavid Greenman 
18773ba65732SDavid Greenman 	/*
18783ba65732SDavid Greenman 	 * Release any xmit buffers.
18793ba65732SDavid Greenman 	 */
1880b2badf02SMaxime Henrion 	txp = sc->fxp_desc.tx_list;
1881da91462dSDavid Greenman 	if (txp != NULL) {
1882da91462dSDavid Greenman 		for (i = 0; i < FXP_NTXCB; i++) {
1883b2badf02SMaxime Henrion  			if (txp[i].tx_mbuf != NULL) {
1884b2badf02SMaxime Henrion 				bus_dmamap_sync(sc->fxp_mtag, txp[i].tx_map,
1885b2badf02SMaxime Henrion 				    BUS_DMASYNC_POSTWRITE);
1886b2badf02SMaxime Henrion 				bus_dmamap_unload(sc->fxp_mtag, txp[i].tx_map);
1887b2badf02SMaxime Henrion 				m_freem(txp[i].tx_mbuf);
1888b2badf02SMaxime Henrion 				txp[i].tx_mbuf = NULL;
1889c8bca6dcSBill Paul 				/* clear this to reset csum offload bits */
1890b2badf02SMaxime Henrion 				txp[i].tx_cb->tbd[0].tb_addr = 0;
1891da91462dSDavid Greenman 			}
1892da91462dSDavid Greenman 		}
18933ba65732SDavid Greenman 	}
1894b2badf02SMaxime Henrion 	bus_dmamap_sync(sc->cbl_tag, sc->cbl_map, BUS_DMASYNC_PREWRITE);
18953ba65732SDavid Greenman 	sc->tx_queued = 0;
1896a17c678eSDavid Greenman }
1897a17c678eSDavid Greenman 
1898a17c678eSDavid Greenman /*
1899a17c678eSDavid Greenman  * Watchdog/transmission transmit timeout handler. Called when a
1900a17c678eSDavid Greenman  * transmission is started on the interface, but no interrupt is
1901a17c678eSDavid Greenman  * received before the timeout. This usually indicates that the
1902a17c678eSDavid Greenman  * card has wedged for some reason.
1903a17c678eSDavid Greenman  */
1904a17c678eSDavid Greenman static void
1905f7788e8eSJonathan Lemon fxp_watchdog(struct ifnet *ifp)
1906a17c678eSDavid Greenman {
1907ba8c6fd5SDavid Greenman 	struct fxp_softc *sc = ifp->if_softc;
1908ba8c6fd5SDavid Greenman 
19094953bccaSNate Lawson 	FXP_LOCK(sc);
1910f7788e8eSJonathan Lemon 	device_printf(sc->dev, "device timeout\n");
19114a5f1499SDavid Greenman 	ifp->if_oerrors++;
1912a17c678eSDavid Greenman 
19134953bccaSNate Lawson 	fxp_init_body(sc);
19144953bccaSNate Lawson 	FXP_UNLOCK(sc);
1915a17c678eSDavid Greenman }
1916a17c678eSDavid Greenman 
19174953bccaSNate Lawson /*
19184953bccaSNate Lawson  * Acquire locks and then call the real initialization function.  This
19194953bccaSNate Lawson  * is necessary because ether_ioctl() calls if_init() and this would
19204953bccaSNate Lawson  * result in mutex recursion if the mutex was held.
19214953bccaSNate Lawson  */
1922a17c678eSDavid Greenman static void
1923f7788e8eSJonathan Lemon fxp_init(void *xsc)
1924a17c678eSDavid Greenman {
1925fb583156SDavid Greenman 	struct fxp_softc *sc = xsc;
19264953bccaSNate Lawson 
19274953bccaSNate Lawson 	FXP_LOCK(sc);
19284953bccaSNate Lawson 	fxp_init_body(sc);
19294953bccaSNate Lawson 	FXP_UNLOCK(sc);
19304953bccaSNate Lawson }
19314953bccaSNate Lawson 
19324953bccaSNate Lawson /*
19334953bccaSNate Lawson  * Perform device initialization. This routine must be called with the
19344953bccaSNate Lawson  * softc lock held.
19354953bccaSNate Lawson  */
19364953bccaSNate Lawson static void
19374953bccaSNate Lawson fxp_init_body(struct fxp_softc *sc)
19384953bccaSNate Lawson {
1939ba8c6fd5SDavid Greenman 	struct ifnet *ifp = &sc->sc_if;
1940a17c678eSDavid Greenman 	struct fxp_cb_config *cbp;
1941a17c678eSDavid Greenman 	struct fxp_cb_ias *cb_ias;
1942b2badf02SMaxime Henrion 	struct fxp_cb_tx *tcbp;
1943b2badf02SMaxime Henrion 	struct fxp_tx *txp;
194409882363SJonathan Lemon 	struct fxp_cb_mcs *mcsp;
1945f7788e8eSJonathan Lemon 	int i, prm, s;
1946a17c678eSDavid Greenman 
194767fc050fSMaxime Henrion 	FXP_LOCK_ASSERT(sc, MA_OWNED);
1948f7788e8eSJonathan Lemon 	s = splimp();
1949a17c678eSDavid Greenman 	/*
19503ba65732SDavid Greenman 	 * Cancel any pending I/O
1951a17c678eSDavid Greenman 	 */
19523ba65732SDavid Greenman 	fxp_stop(sc);
1953a17c678eSDavid Greenman 
1954a17c678eSDavid Greenman 	prm = (ifp->if_flags & IFF_PROMISC) ? 1 : 0;
1955a17c678eSDavid Greenman 
1956a17c678eSDavid Greenman 	/*
1957a17c678eSDavid Greenman 	 * Initialize base of CBL and RFA memory. Loading with zero
1958a17c678eSDavid Greenman 	 * sets it up for regular linear addressing.
1959a17c678eSDavid Greenman 	 */
1960ba8c6fd5SDavid Greenman 	CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, 0);
19612e2b8238SJonathan Lemon 	fxp_scb_cmd(sc, FXP_SCB_COMMAND_CU_BASE);
1962a17c678eSDavid Greenman 
1963ba8c6fd5SDavid Greenman 	fxp_scb_wait(sc);
19642e2b8238SJonathan Lemon 	fxp_scb_cmd(sc, FXP_SCB_COMMAND_RU_BASE);
1965a17c678eSDavid Greenman 
1966a17c678eSDavid Greenman 	/*
1967a17c678eSDavid Greenman 	 * Initialize base of dump-stats buffer.
1968a17c678eSDavid Greenman 	 */
1969ba8c6fd5SDavid Greenman 	fxp_scb_wait(sc);
1970b2badf02SMaxime Henrion 	bus_dmamap_sync(sc->fxp_stag, sc->fxp_smap, BUS_DMASYNC_PREREAD);
1971b2badf02SMaxime Henrion 	CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, sc->stats_addr);
19722e2b8238SJonathan Lemon 	fxp_scb_cmd(sc, FXP_SCB_COMMAND_CU_DUMP_ADR);
1973a17c678eSDavid Greenman 
1974a17c678eSDavid Greenman 	/*
197572a32a26SJonathan Lemon 	 * Attempt to load microcode if requested.
197672a32a26SJonathan Lemon 	 */
197772a32a26SJonathan Lemon 	if (ifp->if_flags & IFF_LINK0 && (sc->flags & FXP_FLAG_UCODE) == 0)
197872a32a26SJonathan Lemon 		fxp_load_ucode(sc);
197972a32a26SJonathan Lemon 
198072a32a26SJonathan Lemon 	/*
198109882363SJonathan Lemon 	 * Initialize the multicast address list.
198209882363SJonathan Lemon 	 */
198309882363SJonathan Lemon 	if (fxp_mc_addrs(sc)) {
198409882363SJonathan Lemon 		mcsp = sc->mcsp;
198509882363SJonathan Lemon 		mcsp->cb_status = 0;
198683e6547dSMaxime Henrion 		mcsp->cb_command =
198783e6547dSMaxime Henrion 		    htole16(FXP_CB_COMMAND_MCAS | FXP_CB_COMMAND_EL);
198883e6547dSMaxime Henrion 		mcsp->link_addr = 0xffffffff;
198909882363SJonathan Lemon 		/*
199009882363SJonathan Lemon 	 	 * Start the multicast setup command.
199109882363SJonathan Lemon 		 */
199209882363SJonathan Lemon 		fxp_scb_wait(sc);
1993b2badf02SMaxime Henrion 		bus_dmamap_sync(sc->mcs_tag, sc->mcs_map, BUS_DMASYNC_PREWRITE);
1994b2badf02SMaxime Henrion 		CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, sc->mcs_addr);
199509882363SJonathan Lemon 		fxp_scb_cmd(sc, FXP_SCB_COMMAND_CU_START);
199609882363SJonathan Lemon 		/* ...and wait for it to complete. */
1997209b07bcSMaxime Henrion 		fxp_dma_wait(sc, &mcsp->cb_status, sc->mcs_tag, sc->mcs_map);
1998b2badf02SMaxime Henrion 		bus_dmamap_sync(sc->mcs_tag, sc->mcs_map,
1999b2badf02SMaxime Henrion 		    BUS_DMASYNC_POSTWRITE);
200009882363SJonathan Lemon 	}
200109882363SJonathan Lemon 
200209882363SJonathan Lemon 	/*
2003a17c678eSDavid Greenman 	 * We temporarily use memory that contains the TxCB list to
2004a17c678eSDavid Greenman 	 * construct the config CB. The TxCB list memory is rebuilt
2005a17c678eSDavid Greenman 	 * later.
2006a17c678eSDavid Greenman 	 */
2007b2badf02SMaxime Henrion 	cbp = (struct fxp_cb_config *)sc->fxp_desc.cbl_list;
2008a17c678eSDavid Greenman 
2009a17c678eSDavid Greenman 	/*
2010a17c678eSDavid Greenman 	 * This bcopy is kind of disgusting, but there are a bunch of must be
2011a17c678eSDavid Greenman 	 * zero and must be one bits in this structure and this is the easiest
2012a17c678eSDavid Greenman 	 * way to initialize them all to proper values.
2013a17c678eSDavid Greenman 	 */
2014b2badf02SMaxime Henrion 	bcopy(fxp_cb_config_template, cbp, sizeof(fxp_cb_config_template));
2015a17c678eSDavid Greenman 
2016a17c678eSDavid Greenman 	cbp->cb_status =	0;
201783e6547dSMaxime Henrion 	cbp->cb_command =	htole16(FXP_CB_COMMAND_CONFIG |
201883e6547dSMaxime Henrion 	    FXP_CB_COMMAND_EL);
201983e6547dSMaxime Henrion 	cbp->link_addr =	0xffffffff;	/* (no) next command */
20202c6c0947SMaxime Henrion 	cbp->byte_count =	sc->flags & FXP_FLAG_EXT_RFA ? 32 : 22;
2021001696daSDavid Greenman 	cbp->rx_fifo_limit =	8;	/* rx fifo threshold (32 bytes) */
2022001696daSDavid Greenman 	cbp->tx_fifo_limit =	0;	/* tx fifo threshold (0 bytes) */
2023a17c678eSDavid Greenman 	cbp->adaptive_ifs =	0;	/* (no) adaptive interframe spacing */
2024f7788e8eSJonathan Lemon 	cbp->mwi_enable =	sc->flags & FXP_FLAG_MWI_ENABLE ? 1 : 0;
2025f7788e8eSJonathan Lemon 	cbp->type_enable =	0;	/* actually reserved */
2026f7788e8eSJonathan Lemon 	cbp->read_align_en =	sc->flags & FXP_FLAG_READ_ALIGN ? 1 : 0;
2027f7788e8eSJonathan Lemon 	cbp->end_wr_on_cl =	sc->flags & FXP_FLAG_WRITE_ALIGN ? 1 : 0;
2028001696daSDavid Greenman 	cbp->rx_dma_bytecount =	0;	/* (no) rx DMA max */
2029001696daSDavid Greenman 	cbp->tx_dma_bytecount =	0;	/* (no) tx DMA max */
2030f7788e8eSJonathan Lemon 	cbp->dma_mbce =		0;	/* (disable) dma max counters */
2031a17c678eSDavid Greenman 	cbp->late_scb =		0;	/* (don't) defer SCB update */
2032f7788e8eSJonathan Lemon 	cbp->direct_dma_dis =	1;	/* disable direct rcv dma mode */
2033f7788e8eSJonathan Lemon 	cbp->tno_int_or_tco_en =0;	/* (disable) tx not okay interrupt */
20343114fdb4SDavid Greenman 	cbp->ci_int =		1;	/* interrupt on CU idle */
2035f7788e8eSJonathan Lemon 	cbp->ext_txcb_dis = 	sc->flags & FXP_FLAG_EXT_TXCB ? 0 : 1;
2036f7788e8eSJonathan Lemon 	cbp->ext_stats_dis = 	1;	/* disable extended counters */
2037f7788e8eSJonathan Lemon 	cbp->keep_overrun_rx = 	0;	/* don't pass overrun frames to host */
20388ef1f631SYaroslav Tykhiy 	cbp->save_bf =		sc->flags & FXP_FLAG_SAVE_BAD ? 1 : prm;
2039a17c678eSDavid Greenman 	cbp->disc_short_rx =	!prm;	/* discard short packets */
2040f7788e8eSJonathan Lemon 	cbp->underrun_retry =	1;	/* retry mode (once) on DMA underrun */
2041f7788e8eSJonathan Lemon 	cbp->two_frames =	0;	/* do not limit FIFO to 2 frames */
2042f7788e8eSJonathan Lemon 	cbp->dyn_tbd =		0;	/* (no) dynamic TBD mode */
2043c8bca6dcSBill Paul 	cbp->ext_rfa =		sc->flags & FXP_FLAG_EXT_RFA ? 1 : 0;
2044f7788e8eSJonathan Lemon 	cbp->mediatype =	sc->flags & FXP_FLAG_SERIAL_MEDIA ? 0 : 1;
2045f7788e8eSJonathan Lemon 	cbp->csma_dis =		0;	/* (don't) disable link */
2046f7788e8eSJonathan Lemon 	cbp->tcp_udp_cksum =	0;	/* (don't) enable checksum */
2047f7788e8eSJonathan Lemon 	cbp->vlan_tco =		0;	/* (don't) enable vlan wakeup */
2048f7788e8eSJonathan Lemon 	cbp->link_wake_en =	0;	/* (don't) assert PME# on link change */
2049f7788e8eSJonathan Lemon 	cbp->arp_wake_en =	0;	/* (don't) assert PME# on arp */
2050f7788e8eSJonathan Lemon 	cbp->mc_wake_en =	0;	/* (don't) enable PME# on mcmatch */
2051a17c678eSDavid Greenman 	cbp->nsai =		1;	/* (don't) disable source addr insert */
2052a17c678eSDavid Greenman 	cbp->preamble_length =	2;	/* (7 byte) preamble */
2053a17c678eSDavid Greenman 	cbp->loopback =		0;	/* (don't) loopback */
2054a17c678eSDavid Greenman 	cbp->linear_priority =	0;	/* (normal CSMA/CD operation) */
2055a17c678eSDavid Greenman 	cbp->linear_pri_mode =	0;	/* (wait after xmit only) */
2056a17c678eSDavid Greenman 	cbp->interfrm_spacing =	6;	/* (96 bits of) interframe spacing */
2057a17c678eSDavid Greenman 	cbp->promiscuous =	prm;	/* promiscuous mode */
2058a17c678eSDavid Greenman 	cbp->bcast_disable =	0;	/* (don't) disable broadcasts */
2059f7788e8eSJonathan Lemon 	cbp->wait_after_win =	0;	/* (don't) enable modified backoff alg*/
2060f7788e8eSJonathan Lemon 	cbp->ignore_ul =	0;	/* consider U/L bit in IA matching */
2061f7788e8eSJonathan Lemon 	cbp->crc16_en =		0;	/* (don't) enable crc-16 algorithm */
2062f7788e8eSJonathan Lemon 	cbp->crscdt =		sc->flags & FXP_FLAG_SERIAL_MEDIA ? 1 : 0;
2063f7788e8eSJonathan Lemon 
2064a17c678eSDavid Greenman 	cbp->stripping =	!prm;	/* truncate rx packet to byte count */
2065a17c678eSDavid Greenman 	cbp->padding =		1;	/* (do) pad short tx packets */
2066a17c678eSDavid Greenman 	cbp->rcv_crc_xfer =	0;	/* (don't) xfer CRC to host */
2067f7788e8eSJonathan Lemon 	cbp->long_rx_en =	sc->flags & FXP_FLAG_LONG_PKT_EN ? 1 : 0;
2068f7788e8eSJonathan Lemon 	cbp->ia_wake_en =	0;	/* (don't) wake up on address match */
2069f7788e8eSJonathan Lemon 	cbp->magic_pkt_dis =	0;	/* (don't) disable magic packet */
2070f7788e8eSJonathan Lemon 					/* must set wake_en in PMCSR also */
2071a17c678eSDavid Greenman 	cbp->force_fdx =	0;	/* (don't) force full duplex */
20723ba65732SDavid Greenman 	cbp->fdx_pin_en =	1;	/* (enable) FDX# pin */
2073a17c678eSDavid Greenman 	cbp->multi_ia =		0;	/* (don't) accept multiple IAs */
2074f7788e8eSJonathan Lemon 	cbp->mc_all =		sc->flags & FXP_FLAG_ALL_MCAST ? 1 : 0;
2075c8bca6dcSBill Paul 	cbp->gamla_rx =		sc->flags & FXP_FLAG_EXT_RFA ? 1 : 0;
2076a17c678eSDavid Greenman 
20770f1db1d6SMaxime Henrion 	if (sc->tunable_noflow || sc->revision == FXP_REV_82557) {
20783bd07cfdSJonathan Lemon 		/*
20793bd07cfdSJonathan Lemon 		 * The 82557 has no hardware flow control, the values
20803bd07cfdSJonathan Lemon 		 * below are the defaults for the chip.
20813bd07cfdSJonathan Lemon 		 */
20823bd07cfdSJonathan Lemon 		cbp->fc_delay_lsb =	0;
20833bd07cfdSJonathan Lemon 		cbp->fc_delay_msb =	0x40;
20843bd07cfdSJonathan Lemon 		cbp->pri_fc_thresh =	3;
20853bd07cfdSJonathan Lemon 		cbp->tx_fc_dis =	0;
20863bd07cfdSJonathan Lemon 		cbp->rx_fc_restop =	0;
20873bd07cfdSJonathan Lemon 		cbp->rx_fc_restart =	0;
20883bd07cfdSJonathan Lemon 		cbp->fc_filter =	0;
20893bd07cfdSJonathan Lemon 		cbp->pri_fc_loc =	1;
20903bd07cfdSJonathan Lemon 	} else {
20913bd07cfdSJonathan Lemon 		cbp->fc_delay_lsb =	0x1f;
20923bd07cfdSJonathan Lemon 		cbp->fc_delay_msb =	0x01;
20933bd07cfdSJonathan Lemon 		cbp->pri_fc_thresh =	3;
20943bd07cfdSJonathan Lemon 		cbp->tx_fc_dis =	0;	/* enable transmit FC */
20953bd07cfdSJonathan Lemon 		cbp->rx_fc_restop =	1;	/* enable FC restop frames */
20963bd07cfdSJonathan Lemon 		cbp->rx_fc_restart =	1;	/* enable FC restart frames */
20973bd07cfdSJonathan Lemon 		cbp->fc_filter =	!prm;	/* drop FC frames to host */
20983bd07cfdSJonathan Lemon 		cbp->pri_fc_loc =	1;	/* FC pri location (byte31) */
20993bd07cfdSJonathan Lemon 	}
21003bd07cfdSJonathan Lemon 
2101a17c678eSDavid Greenman 	/*
2102a17c678eSDavid Greenman 	 * Start the config command/DMA.
2103a17c678eSDavid Greenman 	 */
2104ba8c6fd5SDavid Greenman 	fxp_scb_wait(sc);
2105b2badf02SMaxime Henrion 	bus_dmamap_sync(sc->cbl_tag, sc->cbl_map, BUS_DMASYNC_PREWRITE);
2106b2badf02SMaxime Henrion 	CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, sc->fxp_desc.cbl_addr);
21072e2b8238SJonathan Lemon 	fxp_scb_cmd(sc, FXP_SCB_COMMAND_CU_START);
2108a17c678eSDavid Greenman 	/* ...and wait for it to complete. */
2109209b07bcSMaxime Henrion 	fxp_dma_wait(sc, &cbp->cb_status, sc->cbl_tag, sc->cbl_map);
2110b2badf02SMaxime Henrion 	bus_dmamap_sync(sc->cbl_tag, sc->cbl_map, BUS_DMASYNC_POSTWRITE);
2111a17c678eSDavid Greenman 
2112a17c678eSDavid Greenman 	/*
2113a17c678eSDavid Greenman 	 * Now initialize the station address. Temporarily use the TxCB
2114a17c678eSDavid Greenman 	 * memory area like we did above for the config CB.
2115a17c678eSDavid Greenman 	 */
2116b2badf02SMaxime Henrion 	cb_ias = (struct fxp_cb_ias *)sc->fxp_desc.cbl_list;
2117a17c678eSDavid Greenman 	cb_ias->cb_status = 0;
211883e6547dSMaxime Henrion 	cb_ias->cb_command = htole16(FXP_CB_COMMAND_IAS | FXP_CB_COMMAND_EL);
211983e6547dSMaxime Henrion 	cb_ias->link_addr = 0xffffffff;
2120e609b4d7SMaxime Henrion 	bcopy(sc->arpcom.ac_enaddr, cb_ias->macaddr,
2121a17c678eSDavid Greenman 	    sizeof(sc->arpcom.ac_enaddr));
2122a17c678eSDavid Greenman 
2123a17c678eSDavid Greenman 	/*
2124a17c678eSDavid Greenman 	 * Start the IAS (Individual Address Setup) command/DMA.
2125a17c678eSDavid Greenman 	 */
2126ba8c6fd5SDavid Greenman 	fxp_scb_wait(sc);
2127b2badf02SMaxime Henrion 	bus_dmamap_sync(sc->cbl_tag, sc->cbl_map, BUS_DMASYNC_PREWRITE);
21282e2b8238SJonathan Lemon 	fxp_scb_cmd(sc, FXP_SCB_COMMAND_CU_START);
2129a17c678eSDavid Greenman 	/* ...and wait for it to complete. */
2130209b07bcSMaxime Henrion 	fxp_dma_wait(sc, &cb_ias->cb_status, sc->cbl_tag, sc->cbl_map);
2131b2badf02SMaxime Henrion 	bus_dmamap_sync(sc->cbl_tag, sc->cbl_map, BUS_DMASYNC_POSTWRITE);
2132a17c678eSDavid Greenman 
2133a17c678eSDavid Greenman 	/*
2134a17c678eSDavid Greenman 	 * Initialize transmit control block (TxCB) list.
2135a17c678eSDavid Greenman 	 */
2136b2badf02SMaxime Henrion 	txp = sc->fxp_desc.tx_list;
2137b2badf02SMaxime Henrion 	tcbp = sc->fxp_desc.cbl_list;
2138b2badf02SMaxime Henrion 	bzero(tcbp, FXP_TXCB_SZ);
2139a17c678eSDavid Greenman 	for (i = 0; i < FXP_NTXCB; i++) {
2140b2badf02SMaxime Henrion 		txp[i].tx_mbuf = NULL;
214183e6547dSMaxime Henrion 		tcbp[i].cb_status = htole16(FXP_CB_STATUS_C | FXP_CB_STATUS_OK);
214283e6547dSMaxime Henrion 		tcbp[i].cb_command = htole16(FXP_CB_COMMAND_NOP);
214383e6547dSMaxime Henrion 		tcbp[i].link_addr = htole32(sc->fxp_desc.cbl_addr +
214483e6547dSMaxime Henrion 		    (((i + 1) & FXP_TXCB_MASK) * sizeof(struct fxp_cb_tx)));
21453bd07cfdSJonathan Lemon 		if (sc->flags & FXP_FLAG_EXT_TXCB)
2146b2badf02SMaxime Henrion 			tcbp[i].tbd_array_addr =
214783e6547dSMaxime Henrion 			    htole32(FXP_TXCB_DMA_ADDR(sc, &tcbp[i].tbd[2]));
21483bd07cfdSJonathan Lemon 		else
2149b2badf02SMaxime Henrion 			tcbp[i].tbd_array_addr =
215083e6547dSMaxime Henrion 			    htole32(FXP_TXCB_DMA_ADDR(sc, &tcbp[i].tbd[0]));
2151b2badf02SMaxime Henrion 		txp[i].tx_next = &txp[(i + 1) & FXP_TXCB_MASK];
2152a17c678eSDavid Greenman 	}
2153a17c678eSDavid Greenman 	/*
2154397f9dfeSDavid Greenman 	 * Set the suspend flag on the first TxCB and start the control
2155a17c678eSDavid Greenman 	 * unit. It will execute the NOP and then suspend.
2156a17c678eSDavid Greenman 	 */
215783e6547dSMaxime Henrion 	tcbp->cb_command = htole16(FXP_CB_COMMAND_NOP | FXP_CB_COMMAND_S);
2158b2badf02SMaxime Henrion 	bus_dmamap_sync(sc->cbl_tag, sc->cbl_map, BUS_DMASYNC_PREWRITE);
2159b2badf02SMaxime Henrion 	sc->fxp_desc.tx_first = sc->fxp_desc.tx_last = txp;
2160397f9dfeSDavid Greenman 	sc->tx_queued = 1;
2161a17c678eSDavid Greenman 
2162ba8c6fd5SDavid Greenman 	fxp_scb_wait(sc);
21632e2b8238SJonathan Lemon 	fxp_scb_cmd(sc, FXP_SCB_COMMAND_CU_START);
2164a17c678eSDavid Greenman 
2165a17c678eSDavid Greenman 	/*
2166a17c678eSDavid Greenman 	 * Initialize receiver buffer area - RFA.
2167a17c678eSDavid Greenman 	 */
2168ba8c6fd5SDavid Greenman 	fxp_scb_wait(sc);
2169b2badf02SMaxime Henrion 	CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, sc->fxp_desc.rx_head->rx_addr);
21702e2b8238SJonathan Lemon 	fxp_scb_cmd(sc, FXP_SCB_COMMAND_RU_START);
2171a17c678eSDavid Greenman 
2172dccee1a1SDavid Greenman 	/*
2173ba8c6fd5SDavid Greenman 	 * Set current media.
2174dccee1a1SDavid Greenman 	 */
2175f7788e8eSJonathan Lemon 	if (sc->miibus != NULL)
2176f7788e8eSJonathan Lemon 		mii_mediachg(device_get_softc(sc->miibus));
2177dccee1a1SDavid Greenman 
2178a17c678eSDavid Greenman 	ifp->if_flags |= IFF_RUNNING;
2179a17c678eSDavid Greenman 	ifp->if_flags &= ~IFF_OACTIVE;
2180e8c8b728SJonathan Lemon 
2181e8c8b728SJonathan Lemon 	/*
2182e8c8b728SJonathan Lemon 	 * Enable interrupts.
2183e8c8b728SJonathan Lemon 	 */
21842b5989e9SLuigi Rizzo #ifdef DEVICE_POLLING
21852b5989e9SLuigi Rizzo 	/*
21862b5989e9SLuigi Rizzo 	 * ... but only do that if we are not polling. And because (presumably)
21872b5989e9SLuigi Rizzo 	 * the default is interrupts on, we need to disable them explicitly!
21882b5989e9SLuigi Rizzo 	 */
218962f76486SMaxim Sobolev 	if ( ifp->if_flags & IFF_POLLING )
21902b5989e9SLuigi Rizzo 		CSR_WRITE_1(sc, FXP_CSR_SCB_INTRCNTL, FXP_SCB_INTR_DISABLE);
21912b5989e9SLuigi Rizzo 	else
21922b5989e9SLuigi Rizzo #endif /* DEVICE_POLLING */
2193e8c8b728SJonathan Lemon 	CSR_WRITE_1(sc, FXP_CSR_SCB_INTRCNTL, 0);
2194a17c678eSDavid Greenman 
2195a17c678eSDavid Greenman 	/*
2196a17c678eSDavid Greenman 	 * Start stats updater.
2197a17c678eSDavid Greenman 	 */
219845276e4aSSam Leffler 	callout_reset(&sc->stat_ch, hz, fxp_tick, sc);
21994953bccaSNate Lawson 	splx(s);
2200f7788e8eSJonathan Lemon }
2201f7788e8eSJonathan Lemon 
2202f7788e8eSJonathan Lemon static int
2203f7788e8eSJonathan Lemon fxp_serial_ifmedia_upd(struct ifnet *ifp)
2204f7788e8eSJonathan Lemon {
2205f7788e8eSJonathan Lemon 
2206f7788e8eSJonathan Lemon 	return (0);
2207a17c678eSDavid Greenman }
2208a17c678eSDavid Greenman 
2209303b270bSEivind Eklund static void
2210f7788e8eSJonathan Lemon fxp_serial_ifmedia_sts(struct ifnet *ifp, struct ifmediareq *ifmr)
2211ba8c6fd5SDavid Greenman {
2212ba8c6fd5SDavid Greenman 
2213f7788e8eSJonathan Lemon 	ifmr->ifm_active = IFM_ETHER|IFM_MANUAL;
2214ba8c6fd5SDavid Greenman }
2215ba8c6fd5SDavid Greenman 
2216ba8c6fd5SDavid Greenman /*
2217ba8c6fd5SDavid Greenman  * Change media according to request.
2218ba8c6fd5SDavid Greenman  */
2219f7788e8eSJonathan Lemon static int
2220f7788e8eSJonathan Lemon fxp_ifmedia_upd(struct ifnet *ifp)
2221ba8c6fd5SDavid Greenman {
2222ba8c6fd5SDavid Greenman 	struct fxp_softc *sc = ifp->if_softc;
2223f7788e8eSJonathan Lemon 	struct mii_data *mii;
2224ba8c6fd5SDavid Greenman 
2225f7788e8eSJonathan Lemon 	mii = device_get_softc(sc->miibus);
2226f7788e8eSJonathan Lemon 	mii_mediachg(mii);
2227ba8c6fd5SDavid Greenman 	return (0);
2228ba8c6fd5SDavid Greenman }
2229ba8c6fd5SDavid Greenman 
2230ba8c6fd5SDavid Greenman /*
2231ba8c6fd5SDavid Greenman  * Notify the world which media we're using.
2232ba8c6fd5SDavid Greenman  */
2233f7788e8eSJonathan Lemon static void
2234f7788e8eSJonathan Lemon fxp_ifmedia_sts(struct ifnet *ifp, struct ifmediareq *ifmr)
2235ba8c6fd5SDavid Greenman {
2236ba8c6fd5SDavid Greenman 	struct fxp_softc *sc = ifp->if_softc;
2237f7788e8eSJonathan Lemon 	struct mii_data *mii;
2238ba8c6fd5SDavid Greenman 
2239f7788e8eSJonathan Lemon 	mii = device_get_softc(sc->miibus);
2240f7788e8eSJonathan Lemon 	mii_pollstat(mii);
2241f7788e8eSJonathan Lemon 	ifmr->ifm_active = mii->mii_media_active;
2242f7788e8eSJonathan Lemon 	ifmr->ifm_status = mii->mii_media_status;
22432e2b8238SJonathan Lemon 
22442e2b8238SJonathan Lemon 	if (ifmr->ifm_status & IFM_10_T && sc->flags & FXP_FLAG_CU_RESUME_BUG)
22452e2b8238SJonathan Lemon 		sc->cu_resume_bug = 1;
22462e2b8238SJonathan Lemon 	else
22472e2b8238SJonathan Lemon 		sc->cu_resume_bug = 0;
2248ba8c6fd5SDavid Greenman }
2249ba8c6fd5SDavid Greenman 
2250a17c678eSDavid Greenman /*
2251a17c678eSDavid Greenman  * Add a buffer to the end of the RFA buffer list.
2252a17c678eSDavid Greenman  * Return 0 if successful, 1 for failure. A failure results in
2253a17c678eSDavid Greenman  * adding the 'oldm' (if non-NULL) on to the end of the list -
2254dc733423SDag-Erling Smørgrav  * tossing out its old contents and recycling it.
2255a17c678eSDavid Greenman  * The RFA struct is stuck at the beginning of mbuf cluster and the
2256a17c678eSDavid Greenman  * data pointer is fixed up to point just past it.
2257a17c678eSDavid Greenman  */
2258a17c678eSDavid Greenman static int
2259b2badf02SMaxime Henrion fxp_add_rfabuf(struct fxp_softc *sc, struct fxp_rx *rxp)
2260a17c678eSDavid Greenman {
2261a17c678eSDavid Greenman 	struct mbuf *m;
2262a17c678eSDavid Greenman 	struct fxp_rfa *rfa, *p_rfa;
2263b2badf02SMaxime Henrion 	struct fxp_rx *p_rx;
2264b2badf02SMaxime Henrion 	bus_dmamap_t tmp_map;
2265b2badf02SMaxime Henrion 	int error;
2266a17c678eSDavid Greenman 
2267a163d034SWarner Losh 	m = m_getcl(M_DONTWAIT, MT_DATA, M_PKTHDR);
2268b2badf02SMaxime Henrion 	if (m == NULL)
2269b2badf02SMaxime Henrion 		return (ENOBUFS);
2270ba8c6fd5SDavid Greenman 
2271ba8c6fd5SDavid Greenman 	/*
2272ba8c6fd5SDavid Greenman 	 * Move the data pointer up so that the incoming data packet
2273ba8c6fd5SDavid Greenman 	 * will be 32-bit aligned.
2274ba8c6fd5SDavid Greenman 	 */
2275ba8c6fd5SDavid Greenman 	m->m_data += RFA_ALIGNMENT_FUDGE;
2276ba8c6fd5SDavid Greenman 
2277eadd5e3aSDavid Greenman 	/*
2278eadd5e3aSDavid Greenman 	 * Get a pointer to the base of the mbuf cluster and move
2279eadd5e3aSDavid Greenman 	 * data start past it.
2280eadd5e3aSDavid Greenman 	 */
2281a17c678eSDavid Greenman 	rfa = mtod(m, struct fxp_rfa *);
2282c8bca6dcSBill Paul 	m->m_data += sc->rfa_size;
228383e6547dSMaxime Henrion 	rfa->size = htole16(MCLBYTES - sc->rfa_size - RFA_ALIGNMENT_FUDGE);
2284eadd5e3aSDavid Greenman 
2285a17c678eSDavid Greenman 	rfa->rfa_status = 0;
228683e6547dSMaxime Henrion 	rfa->rfa_control = htole16(FXP_RFA_CONTROL_EL);
2287a17c678eSDavid Greenman 	rfa->actual_size = 0;
2288ba8c6fd5SDavid Greenman 
228928935f27SMaxime Henrion 	/*
229028935f27SMaxime Henrion 	 * Initialize the rest of the RFA.  Note that since the RFA
229128935f27SMaxime Henrion 	 * is misaligned, we cannot store values directly.  We're thus
229228935f27SMaxime Henrion 	 * using the le32enc() function which handles endianness and
229328935f27SMaxime Henrion 	 * is also alignment-safe.
229428935f27SMaxime Henrion 	 */
229583e6547dSMaxime Henrion 	le32enc(&rfa->link_addr, 0xffffffff);
229683e6547dSMaxime Henrion 	le32enc(&rfa->rbd_addr, 0xffffffff);
2297ba8c6fd5SDavid Greenman 
2298b2badf02SMaxime Henrion 	/* Map the RFA into DMA memory. */
2299b2badf02SMaxime Henrion 	error = bus_dmamap_load(sc->fxp_mtag, sc->spare_map, rfa,
2300b2badf02SMaxime Henrion 	    MCLBYTES - RFA_ALIGNMENT_FUDGE, fxp_dma_map_addr,
2301b2badf02SMaxime Henrion 	    &rxp->rx_addr, 0);
2302b2badf02SMaxime Henrion 	if (error) {
2303b2badf02SMaxime Henrion 		m_freem(m);
2304b2badf02SMaxime Henrion 		return (error);
2305b2badf02SMaxime Henrion 	}
2306b2badf02SMaxime Henrion 
2307b2badf02SMaxime Henrion 	bus_dmamap_unload(sc->fxp_mtag, rxp->rx_map);
2308b2badf02SMaxime Henrion 	tmp_map = sc->spare_map;
2309b2badf02SMaxime Henrion 	sc->spare_map = rxp->rx_map;
2310b2badf02SMaxime Henrion 	rxp->rx_map = tmp_map;
2311b2badf02SMaxime Henrion 	rxp->rx_mbuf = m;
2312b2badf02SMaxime Henrion 
2313b983c7b3SMaxime Henrion 	bus_dmamap_sync(sc->fxp_mtag, rxp->rx_map,
2314b983c7b3SMaxime Henrion 	    BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
2315b2badf02SMaxime Henrion 
2316dfe61cf1SDavid Greenman 	/*
2317dfe61cf1SDavid Greenman 	 * If there are other buffers already on the list, attach this
2318dfe61cf1SDavid Greenman 	 * one to the end by fixing up the tail to point to this one.
2319dfe61cf1SDavid Greenman 	 */
2320b2badf02SMaxime Henrion 	if (sc->fxp_desc.rx_head != NULL) {
2321b2badf02SMaxime Henrion 		p_rx = sc->fxp_desc.rx_tail;
2322b2badf02SMaxime Henrion 		p_rfa = (struct fxp_rfa *)
2323b2badf02SMaxime Henrion 		    (p_rx->rx_mbuf->m_ext.ext_buf + RFA_ALIGNMENT_FUDGE);
2324b2badf02SMaxime Henrion 		p_rx->rx_next = rxp;
232583e6547dSMaxime Henrion 		le32enc(&p_rfa->link_addr, rxp->rx_addr);
2326aed53495SDavid Greenman 		p_rfa->rfa_control = 0;
2327b2badf02SMaxime Henrion 		bus_dmamap_sync(sc->fxp_mtag, p_rx->rx_map,
23284cec1653SMaxime Henrion 		    BUS_DMASYNC_PREWRITE);
2329a17c678eSDavid Greenman 	} else {
2330b2badf02SMaxime Henrion 		rxp->rx_next = NULL;
2331b2badf02SMaxime Henrion 		sc->fxp_desc.rx_head = rxp;
2332a17c678eSDavid Greenman 	}
2333b2badf02SMaxime Henrion 	sc->fxp_desc.rx_tail = rxp;
2334b2badf02SMaxime Henrion 	return (0);
2335a17c678eSDavid Greenman }
2336a17c678eSDavid Greenman 
23376ebc3153SDavid Greenman static volatile int
2338f7788e8eSJonathan Lemon fxp_miibus_readreg(device_t dev, int phy, int reg)
2339dccee1a1SDavid Greenman {
2340f7788e8eSJonathan Lemon 	struct fxp_softc *sc = device_get_softc(dev);
2341dccee1a1SDavid Greenman 	int count = 10000;
23426ebc3153SDavid Greenman 	int value;
2343dccee1a1SDavid Greenman 
2344ba8c6fd5SDavid Greenman 	CSR_WRITE_4(sc, FXP_CSR_MDICONTROL,
2345ba8c6fd5SDavid Greenman 	    (FXP_MDI_READ << 26) | (reg << 16) | (phy << 21));
2346dccee1a1SDavid Greenman 
2347ba8c6fd5SDavid Greenman 	while (((value = CSR_READ_4(sc, FXP_CSR_MDICONTROL)) & 0x10000000) == 0
2348ba8c6fd5SDavid Greenman 	    && count--)
23496ebc3153SDavid Greenman 		DELAY(10);
2350dccee1a1SDavid Greenman 
2351dccee1a1SDavid Greenman 	if (count <= 0)
2352f7788e8eSJonathan Lemon 		device_printf(dev, "fxp_miibus_readreg: timed out\n");
2353dccee1a1SDavid Greenman 
23546ebc3153SDavid Greenman 	return (value & 0xffff);
2355dccee1a1SDavid Greenman }
2356dccee1a1SDavid Greenman 
2357dccee1a1SDavid Greenman static void
2358f7788e8eSJonathan Lemon fxp_miibus_writereg(device_t dev, int phy, int reg, int value)
2359dccee1a1SDavid Greenman {
2360f7788e8eSJonathan Lemon 	struct fxp_softc *sc = device_get_softc(dev);
2361dccee1a1SDavid Greenman 	int count = 10000;
2362dccee1a1SDavid Greenman 
2363ba8c6fd5SDavid Greenman 	CSR_WRITE_4(sc, FXP_CSR_MDICONTROL,
2364ba8c6fd5SDavid Greenman 	    (FXP_MDI_WRITE << 26) | (reg << 16) | (phy << 21) |
2365ba8c6fd5SDavid Greenman 	    (value & 0xffff));
2366dccee1a1SDavid Greenman 
2367ba8c6fd5SDavid Greenman 	while ((CSR_READ_4(sc, FXP_CSR_MDICONTROL) & 0x10000000) == 0 &&
2368ba8c6fd5SDavid Greenman 	    count--)
23696ebc3153SDavid Greenman 		DELAY(10);
2370dccee1a1SDavid Greenman 
2371dccee1a1SDavid Greenman 	if (count <= 0)
2372f7788e8eSJonathan Lemon 		device_printf(dev, "fxp_miibus_writereg: timed out\n");
2373dccee1a1SDavid Greenman }
2374dccee1a1SDavid Greenman 
2375dccee1a1SDavid Greenman static int
2376f7788e8eSJonathan Lemon fxp_ioctl(struct ifnet *ifp, u_long command, caddr_t data)
2377a17c678eSDavid Greenman {
23789b44ff22SGarrett Wollman 	struct fxp_softc *sc = ifp->if_softc;
2379a17c678eSDavid Greenman 	struct ifreq *ifr = (struct ifreq *)data;
2380f7788e8eSJonathan Lemon 	struct mii_data *mii;
23818ef1f631SYaroslav Tykhiy 	int flag, mask, s, error = 0;
2382a17c678eSDavid Greenman 
2383704d1965SWarner Losh 	/*
2384704d1965SWarner Losh 	 * Detaching causes us to call ioctl with the mutex owned.  Preclude
2385704d1965SWarner Losh 	 * that by saying we're busy if the lock is already held.
2386704d1965SWarner Losh 	 */
238767fc050fSMaxime Henrion 	if (FXP_LOCKED(sc))
2388704d1965SWarner Losh 		return (EBUSY);
238932cd7a9cSWarner Losh 
23904953bccaSNate Lawson 	FXP_LOCK(sc);
2391f7788e8eSJonathan Lemon 	s = splimp();
2392a17c678eSDavid Greenman 
2393a17c678eSDavid Greenman 	switch (command) {
2394a17c678eSDavid Greenman 	case SIOCSIFFLAGS:
2395f7788e8eSJonathan Lemon 		if (ifp->if_flags & IFF_ALLMULTI)
2396f7788e8eSJonathan Lemon 			sc->flags |= FXP_FLAG_ALL_MCAST;
2397f7788e8eSJonathan Lemon 		else
2398f7788e8eSJonathan Lemon 			sc->flags &= ~FXP_FLAG_ALL_MCAST;
2399a17c678eSDavid Greenman 
2400a17c678eSDavid Greenman 		/*
2401a17c678eSDavid Greenman 		 * If interface is marked up and not running, then start it.
2402a17c678eSDavid Greenman 		 * If it is marked down and running, stop it.
2403a17c678eSDavid Greenman 		 * XXX If it's up then re-initialize it. This is so flags
2404a17c678eSDavid Greenman 		 * such as IFF_PROMISC are handled.
2405a17c678eSDavid Greenman 		 */
2406a17c678eSDavid Greenman 		if (ifp->if_flags & IFF_UP) {
24074953bccaSNate Lawson 			fxp_init_body(sc);
2408a17c678eSDavid Greenman 		} else {
2409a17c678eSDavid Greenman 			if (ifp->if_flags & IFF_RUNNING)
24104a5f1499SDavid Greenman 				fxp_stop(sc);
2411a17c678eSDavid Greenman 		}
2412a17c678eSDavid Greenman 		break;
2413a17c678eSDavid Greenman 
2414a17c678eSDavid Greenman 	case SIOCADDMULTI:
2415a17c678eSDavid Greenman 	case SIOCDELMULTI:
2416f7788e8eSJonathan Lemon 		if (ifp->if_flags & IFF_ALLMULTI)
2417f7788e8eSJonathan Lemon 			sc->flags |= FXP_FLAG_ALL_MCAST;
2418f7788e8eSJonathan Lemon 		else
2419f7788e8eSJonathan Lemon 			sc->flags &= ~FXP_FLAG_ALL_MCAST;
2420a17c678eSDavid Greenman 		/*
2421a17c678eSDavid Greenman 		 * Multicast list has changed; set the hardware filter
2422a17c678eSDavid Greenman 		 * accordingly.
2423a17c678eSDavid Greenman 		 */
2424f7788e8eSJonathan Lemon 		if ((sc->flags & FXP_FLAG_ALL_MCAST) == 0)
2425397f9dfeSDavid Greenman 			fxp_mc_setup(sc);
2426397f9dfeSDavid Greenman 		/*
2427f7788e8eSJonathan Lemon 		 * fxp_mc_setup() can set FXP_FLAG_ALL_MCAST, so check it
2428397f9dfeSDavid Greenman 		 * again rather than else {}.
2429397f9dfeSDavid Greenman 		 */
2430f7788e8eSJonathan Lemon 		if (sc->flags & FXP_FLAG_ALL_MCAST)
24314953bccaSNate Lawson 			fxp_init_body(sc);
2432a17c678eSDavid Greenman 		error = 0;
2433ba8c6fd5SDavid Greenman 		break;
2434ba8c6fd5SDavid Greenman 
2435ba8c6fd5SDavid Greenman 	case SIOCSIFMEDIA:
2436ba8c6fd5SDavid Greenman 	case SIOCGIFMEDIA:
2437f7788e8eSJonathan Lemon 		if (sc->miibus != NULL) {
2438f7788e8eSJonathan Lemon 			mii = device_get_softc(sc->miibus);
2439f7788e8eSJonathan Lemon                         error = ifmedia_ioctl(ifp, ifr,
2440f7788e8eSJonathan Lemon                             &mii->mii_media, command);
2441f7788e8eSJonathan Lemon 		} else {
2442ba8c6fd5SDavid Greenman                         error = ifmedia_ioctl(ifp, ifr, &sc->sc_media, command);
2443f7788e8eSJonathan Lemon 		}
2444a17c678eSDavid Greenman 		break;
2445a17c678eSDavid Greenman 
2446fb917226SRuslan Ermilov 	case SIOCSIFCAP:
24478ef1f631SYaroslav Tykhiy 		mask = ifp->if_capenable ^ ifr->ifr_reqcap;
24488ef1f631SYaroslav Tykhiy 		if (mask & IFCAP_POLLING)
24498ef1f631SYaroslav Tykhiy 			ifp->if_capenable ^= IFCAP_POLLING;
24508ef1f631SYaroslav Tykhiy 		if (mask & IFCAP_VLAN_MTU) {
24518ef1f631SYaroslav Tykhiy 			ifp->if_capenable ^= IFCAP_VLAN_MTU;
24528ef1f631SYaroslav Tykhiy 			if (sc->revision != FXP_REV_82557)
24538ef1f631SYaroslav Tykhiy 				flag = FXP_FLAG_LONG_PKT_EN;
24548ef1f631SYaroslav Tykhiy 			else /* a hack to get long frames on the old chip */
24558ef1f631SYaroslav Tykhiy 				flag = FXP_FLAG_SAVE_BAD;
24568ef1f631SYaroslav Tykhiy 			sc->flags ^= flag;
24578ef1f631SYaroslav Tykhiy 			if (ifp->if_flags & IFF_UP)
24588ef1f631SYaroslav Tykhiy 				fxp_init_body(sc);
24598ef1f631SYaroslav Tykhiy 		}
2460fb917226SRuslan Ermilov 		break;
2461fb917226SRuslan Ermilov 
2462a17c678eSDavid Greenman 	default:
24634953bccaSNate Lawson 		/*
24644953bccaSNate Lawson 		 * ether_ioctl() will eventually call fxp_start() which
24654953bccaSNate Lawson 		 * will result in mutex recursion so drop it first.
24664953bccaSNate Lawson 		 */
24674953bccaSNate Lawson 		FXP_UNLOCK(sc);
2468673d9191SSam Leffler 		error = ether_ioctl(ifp, command, data);
2469a17c678eSDavid Greenman 	}
247067fc050fSMaxime Henrion 	if (FXP_LOCKED(sc))
24714953bccaSNate Lawson 		FXP_UNLOCK(sc);
2472f7788e8eSJonathan Lemon 	splx(s);
2473a17c678eSDavid Greenman 	return (error);
2474a17c678eSDavid Greenman }
2475397f9dfeSDavid Greenman 
2476397f9dfeSDavid Greenman /*
247709882363SJonathan Lemon  * Fill in the multicast address list and return number of entries.
247809882363SJonathan Lemon  */
247909882363SJonathan Lemon static int
248009882363SJonathan Lemon fxp_mc_addrs(struct fxp_softc *sc)
248109882363SJonathan Lemon {
248209882363SJonathan Lemon 	struct fxp_cb_mcs *mcsp = sc->mcsp;
248309882363SJonathan Lemon 	struct ifnet *ifp = &sc->sc_if;
248409882363SJonathan Lemon 	struct ifmultiaddr *ifma;
248509882363SJonathan Lemon 	int nmcasts;
248609882363SJonathan Lemon 
248709882363SJonathan Lemon 	nmcasts = 0;
248809882363SJonathan Lemon 	if ((sc->flags & FXP_FLAG_ALL_MCAST) == 0) {
248909882363SJonathan Lemon #if __FreeBSD_version < 500000
249009882363SJonathan Lemon 		LIST_FOREACH(ifma, &ifp->if_multiaddrs, ifma_link) {
249109882363SJonathan Lemon #else
249209882363SJonathan Lemon 		TAILQ_FOREACH(ifma, &ifp->if_multiaddrs, ifma_link) {
249309882363SJonathan Lemon #endif
249409882363SJonathan Lemon 			if (ifma->ifma_addr->sa_family != AF_LINK)
249509882363SJonathan Lemon 				continue;
249609882363SJonathan Lemon 			if (nmcasts >= MAXMCADDR) {
249709882363SJonathan Lemon 				sc->flags |= FXP_FLAG_ALL_MCAST;
249809882363SJonathan Lemon 				nmcasts = 0;
249909882363SJonathan Lemon 				break;
250009882363SJonathan Lemon 			}
250109882363SJonathan Lemon 			bcopy(LLADDR((struct sockaddr_dl *)ifma->ifma_addr),
2502bafb64afSMaxime Henrion 			    &sc->mcsp->mc_addr[nmcasts][0], ETHER_ADDR_LEN);
250309882363SJonathan Lemon 			nmcasts++;
250409882363SJonathan Lemon 		}
250509882363SJonathan Lemon 	}
2506bafb64afSMaxime Henrion 	mcsp->mc_cnt = htole16(nmcasts * ETHER_ADDR_LEN);
250709882363SJonathan Lemon 	return (nmcasts);
250809882363SJonathan Lemon }
250909882363SJonathan Lemon 
251009882363SJonathan Lemon /*
2511397f9dfeSDavid Greenman  * Program the multicast filter.
2512397f9dfeSDavid Greenman  *
2513397f9dfeSDavid Greenman  * We have an artificial restriction that the multicast setup command
2514397f9dfeSDavid Greenman  * must be the first command in the chain, so we take steps to ensure
25153114fdb4SDavid Greenman  * this. By requiring this, it allows us to keep up the performance of
2516397f9dfeSDavid Greenman  * the pre-initialized command ring (esp. link pointers) by not actually
2517dc733423SDag-Erling Smørgrav  * inserting the mcsetup command in the ring - i.e. its link pointer
2518397f9dfeSDavid Greenman  * points to the TxCB ring, but the mcsetup descriptor itself is not part
2519397f9dfeSDavid Greenman  * of it. We then can do 'CU_START' on the mcsetup descriptor and have it
2520397f9dfeSDavid Greenman  * lead into the regular TxCB ring when it completes.
2521397f9dfeSDavid Greenman  *
2522397f9dfeSDavid Greenman  * This function must be called at splimp.
2523397f9dfeSDavid Greenman  */
2524397f9dfeSDavid Greenman static void
2525f7788e8eSJonathan Lemon fxp_mc_setup(struct fxp_softc *sc)
2526397f9dfeSDavid Greenman {
2527397f9dfeSDavid Greenman 	struct fxp_cb_mcs *mcsp = sc->mcsp;
2528397f9dfeSDavid Greenman 	struct ifnet *ifp = &sc->sc_if;
2529b2badf02SMaxime Henrion 	struct fxp_tx *txp;
25307dced78aSDavid Greenman 	int count;
2531397f9dfeSDavid Greenman 
253267fc050fSMaxime Henrion 	FXP_LOCK_ASSERT(sc, MA_OWNED);
25333114fdb4SDavid Greenman 	/*
25343114fdb4SDavid Greenman 	 * If there are queued commands, we must wait until they are all
25353114fdb4SDavid Greenman 	 * completed. If we are already waiting, then add a NOP command
25363114fdb4SDavid Greenman 	 * with interrupt option so that we're notified when all commands
25373114fdb4SDavid Greenman 	 * have been completed - fxp_start() ensures that no additional
25383114fdb4SDavid Greenman 	 * TX commands will be added when need_mcsetup is true.
25393114fdb4SDavid Greenman 	 */
2540397f9dfeSDavid Greenman 	if (sc->tx_queued) {
25413114fdb4SDavid Greenman 		/*
25423114fdb4SDavid Greenman 		 * need_mcsetup will be true if we are already waiting for the
25433114fdb4SDavid Greenman 		 * NOP command to be completed (see below). In this case, bail.
25443114fdb4SDavid Greenman 		 */
25453114fdb4SDavid Greenman 		if (sc->need_mcsetup)
25463114fdb4SDavid Greenman 			return;
2547397f9dfeSDavid Greenman 		sc->need_mcsetup = 1;
25483114fdb4SDavid Greenman 
25493114fdb4SDavid Greenman 		/*
255072a32a26SJonathan Lemon 		 * Add a NOP command with interrupt so that we are notified
255172a32a26SJonathan Lemon 		 * when all TX commands have been processed.
25523114fdb4SDavid Greenman 		 */
2553b2badf02SMaxime Henrion 		txp = sc->fxp_desc.tx_last->tx_next;
2554b2badf02SMaxime Henrion 		txp->tx_mbuf = NULL;
2555b2badf02SMaxime Henrion 		txp->tx_cb->cb_status = 0;
255683e6547dSMaxime Henrion 		txp->tx_cb->cb_command = htole16(FXP_CB_COMMAND_NOP |
255783e6547dSMaxime Henrion 		    FXP_CB_COMMAND_S | FXP_CB_COMMAND_I);
25583114fdb4SDavid Greenman 		/*
25593114fdb4SDavid Greenman 		 * Advance the end of list forward.
25603114fdb4SDavid Greenman 		 */
256183e6547dSMaxime Henrion 		sc->fxp_desc.tx_last->tx_cb->cb_command &=
256283e6547dSMaxime Henrion 		    htole16(~FXP_CB_COMMAND_S);
25635f361cbeSMaxime Henrion 		bus_dmamap_sync(sc->cbl_tag, sc->cbl_map, BUS_DMASYNC_PREWRITE);
2564b2badf02SMaxime Henrion 		sc->fxp_desc.tx_last = txp;
25653114fdb4SDavid Greenman 		sc->tx_queued++;
25663114fdb4SDavid Greenman 		/*
25673114fdb4SDavid Greenman 		 * Issue a resume in case the CU has just suspended.
25683114fdb4SDavid Greenman 		 */
25693114fdb4SDavid Greenman 		fxp_scb_wait(sc);
25702e2b8238SJonathan Lemon 		fxp_scb_cmd(sc, FXP_SCB_COMMAND_CU_RESUME);
25713114fdb4SDavid Greenman 		/*
25723114fdb4SDavid Greenman 		 * Set a 5 second timer just in case we don't hear from the
25733114fdb4SDavid Greenman 		 * card again.
25743114fdb4SDavid Greenman 		 */
25753114fdb4SDavid Greenman 		ifp->if_timer = 5;
25763114fdb4SDavid Greenman 
2577397f9dfeSDavid Greenman 		return;
2578397f9dfeSDavid Greenman 	}
2579397f9dfeSDavid Greenman 	sc->need_mcsetup = 0;
2580397f9dfeSDavid Greenman 
2581397f9dfeSDavid Greenman 	/*
2582397f9dfeSDavid Greenman 	 * Initialize multicast setup descriptor.
2583397f9dfeSDavid Greenman 	 */
2584397f9dfeSDavid Greenman 	mcsp->cb_status = 0;
258583e6547dSMaxime Henrion 	mcsp->cb_command = htole16(FXP_CB_COMMAND_MCAS |
258683e6547dSMaxime Henrion 	    FXP_CB_COMMAND_S | FXP_CB_COMMAND_I);
258783e6547dSMaxime Henrion 	mcsp->link_addr = htole32(sc->fxp_desc.cbl_addr);
2588b2badf02SMaxime Henrion 	txp = &sc->fxp_desc.mcs_tx;
2589b2badf02SMaxime Henrion 	txp->tx_mbuf = NULL;
2590b2badf02SMaxime Henrion 	txp->tx_cb = (struct fxp_cb_tx *)sc->mcsp;
2591b2badf02SMaxime Henrion 	txp->tx_next = sc->fxp_desc.tx_list;
259209882363SJonathan Lemon 	(void) fxp_mc_addrs(sc);
2593b2badf02SMaxime Henrion 	sc->fxp_desc.tx_first = sc->fxp_desc.tx_last = txp;
2594397f9dfeSDavid Greenman 	sc->tx_queued = 1;
2595397f9dfeSDavid Greenman 
2596397f9dfeSDavid Greenman 	/*
2597397f9dfeSDavid Greenman 	 * Wait until command unit is not active. This should never
2598397f9dfeSDavid Greenman 	 * be the case when nothing is queued, but make sure anyway.
2599397f9dfeSDavid Greenman 	 */
26007dced78aSDavid Greenman 	count = 100;
2601397f9dfeSDavid Greenman 	while ((CSR_READ_1(sc, FXP_CSR_SCB_RUSCUS) >> 6) ==
26027dced78aSDavid Greenman 	    FXP_SCB_CUS_ACTIVE && --count)
26037dced78aSDavid Greenman 		DELAY(10);
26047dced78aSDavid Greenman 	if (count == 0) {
2605f7788e8eSJonathan Lemon 		device_printf(sc->dev, "command queue timeout\n");
26067dced78aSDavid Greenman 		return;
26077dced78aSDavid Greenman 	}
2608397f9dfeSDavid Greenman 
2609397f9dfeSDavid Greenman 	/*
2610397f9dfeSDavid Greenman 	 * Start the multicast setup command.
2611397f9dfeSDavid Greenman 	 */
2612397f9dfeSDavid Greenman 	fxp_scb_wait(sc);
2613b2badf02SMaxime Henrion 	bus_dmamap_sync(sc->mcs_tag, sc->mcs_map, BUS_DMASYNC_PREWRITE);
2614b2badf02SMaxime Henrion 	CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, sc->mcs_addr);
26152e2b8238SJonathan Lemon 	fxp_scb_cmd(sc, FXP_SCB_COMMAND_CU_START);
2616397f9dfeSDavid Greenman 
26173114fdb4SDavid Greenman 	ifp->if_timer = 2;
2618397f9dfeSDavid Greenman 	return;
2619397f9dfeSDavid Greenman }
262072a32a26SJonathan Lemon 
262174d1ed23SMaxime Henrion static uint32_t fxp_ucode_d101a[] = D101_A_RCVBUNDLE_UCODE;
262274d1ed23SMaxime Henrion static uint32_t fxp_ucode_d101b0[] = D101_B0_RCVBUNDLE_UCODE;
262374d1ed23SMaxime Henrion static uint32_t fxp_ucode_d101ma[] = D101M_B_RCVBUNDLE_UCODE;
262474d1ed23SMaxime Henrion static uint32_t fxp_ucode_d101s[] = D101S_RCVBUNDLE_UCODE;
262574d1ed23SMaxime Henrion static uint32_t fxp_ucode_d102[] = D102_B_RCVBUNDLE_UCODE;
262674d1ed23SMaxime Henrion static uint32_t fxp_ucode_d102c[] = D102_C_RCVBUNDLE_UCODE;
2627de571603SMaxime Henrion static uint32_t fxp_ucode_d102e[] = D102_E_RCVBUNDLE_UCODE;
262872a32a26SJonathan Lemon 
262974d1ed23SMaxime Henrion #define UCODE(x)	x, sizeof(x)/sizeof(uint32_t)
263072a32a26SJonathan Lemon 
263172a32a26SJonathan Lemon struct ucode {
263274d1ed23SMaxime Henrion 	uint32_t	revision;
263374d1ed23SMaxime Henrion 	uint32_t	*ucode;
263472a32a26SJonathan Lemon 	int		length;
263572a32a26SJonathan Lemon 	u_short		int_delay_offset;
263672a32a26SJonathan Lemon 	u_short		bundle_max_offset;
263772a32a26SJonathan Lemon } ucode_table[] = {
263872a32a26SJonathan Lemon 	{ FXP_REV_82558_A4, UCODE(fxp_ucode_d101a), D101_CPUSAVER_DWORD, 0 },
263972a32a26SJonathan Lemon 	{ FXP_REV_82558_B0, UCODE(fxp_ucode_d101b0), D101_CPUSAVER_DWORD, 0 },
264072a32a26SJonathan Lemon 	{ FXP_REV_82559_A0, UCODE(fxp_ucode_d101ma),
264172a32a26SJonathan Lemon 	    D101M_CPUSAVER_DWORD, D101M_CPUSAVER_BUNDLE_MAX_DWORD },
264272a32a26SJonathan Lemon 	{ FXP_REV_82559S_A, UCODE(fxp_ucode_d101s),
264372a32a26SJonathan Lemon 	    D101S_CPUSAVER_DWORD, D101S_CPUSAVER_BUNDLE_MAX_DWORD },
264472a32a26SJonathan Lemon 	{ FXP_REV_82550, UCODE(fxp_ucode_d102),
264572a32a26SJonathan Lemon 	    D102_B_CPUSAVER_DWORD, D102_B_CPUSAVER_BUNDLE_MAX_DWORD },
264672a32a26SJonathan Lemon 	{ FXP_REV_82550_C, UCODE(fxp_ucode_d102c),
264772a32a26SJonathan Lemon 	    D102_C_CPUSAVER_DWORD, D102_C_CPUSAVER_BUNDLE_MAX_DWORD },
2648507feeafSMaxime Henrion 	{ FXP_REV_82551_F, UCODE(fxp_ucode_d102e),
2649de571603SMaxime Henrion 	    D102_E_CPUSAVER_DWORD, D102_E_CPUSAVER_BUNDLE_MAX_DWORD },
265072a32a26SJonathan Lemon 	{ 0, NULL, 0, 0, 0 }
265172a32a26SJonathan Lemon };
265272a32a26SJonathan Lemon 
265372a32a26SJonathan Lemon static void
265472a32a26SJonathan Lemon fxp_load_ucode(struct fxp_softc *sc)
265572a32a26SJonathan Lemon {
265672a32a26SJonathan Lemon 	struct ucode *uc;
265772a32a26SJonathan Lemon 	struct fxp_cb_ucode *cbp;
265894a4f968SPyun YongHyeon 	int i;
265972a32a26SJonathan Lemon 
266072a32a26SJonathan Lemon 	for (uc = ucode_table; uc->ucode != NULL; uc++)
266172a32a26SJonathan Lemon 		if (sc->revision == uc->revision)
266272a32a26SJonathan Lemon 			break;
266372a32a26SJonathan Lemon 	if (uc->ucode == NULL)
266472a32a26SJonathan Lemon 		return;
2665b2badf02SMaxime Henrion 	cbp = (struct fxp_cb_ucode *)sc->fxp_desc.cbl_list;
266672a32a26SJonathan Lemon 	cbp->cb_status = 0;
266783e6547dSMaxime Henrion 	cbp->cb_command = htole16(FXP_CB_COMMAND_UCODE | FXP_CB_COMMAND_EL);
266883e6547dSMaxime Henrion 	cbp->link_addr = 0xffffffff;    	/* (no) next command */
266994a4f968SPyun YongHyeon 	for (i = 0; i < uc->length; i++)
267094a4f968SPyun YongHyeon 		cbp->ucode[i] = htole32(uc->ucode[i]);
267172a32a26SJonathan Lemon 	if (uc->int_delay_offset)
267274d1ed23SMaxime Henrion 		*(uint16_t *)&cbp->ucode[uc->int_delay_offset] =
267383e6547dSMaxime Henrion 		    htole16(sc->tunable_int_delay + sc->tunable_int_delay / 2);
267472a32a26SJonathan Lemon 	if (uc->bundle_max_offset)
267574d1ed23SMaxime Henrion 		*(uint16_t *)&cbp->ucode[uc->bundle_max_offset] =
267683e6547dSMaxime Henrion 		    htole16(sc->tunable_bundle_max);
267772a32a26SJonathan Lemon 	/*
267872a32a26SJonathan Lemon 	 * Download the ucode to the chip.
267972a32a26SJonathan Lemon 	 */
268072a32a26SJonathan Lemon 	fxp_scb_wait(sc);
2681b2badf02SMaxime Henrion 	bus_dmamap_sync(sc->cbl_tag, sc->cbl_map, BUS_DMASYNC_PREWRITE);
2682b2badf02SMaxime Henrion 	CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, sc->fxp_desc.cbl_addr);
268372a32a26SJonathan Lemon 	fxp_scb_cmd(sc, FXP_SCB_COMMAND_CU_START);
268472a32a26SJonathan Lemon 	/* ...and wait for it to complete. */
2685209b07bcSMaxime Henrion 	fxp_dma_wait(sc, &cbp->cb_status, sc->cbl_tag, sc->cbl_map);
2686b2badf02SMaxime Henrion 	bus_dmamap_sync(sc->cbl_tag, sc->cbl_map, BUS_DMASYNC_POSTWRITE);
268772a32a26SJonathan Lemon 	device_printf(sc->dev,
268872a32a26SJonathan Lemon 	    "Microcode loaded, int_delay: %d usec  bundle_max: %d\n",
268972a32a26SJonathan Lemon 	    sc->tunable_int_delay,
269072a32a26SJonathan Lemon 	    uc->bundle_max_offset == 0 ? 0 : sc->tunable_bundle_max);
269172a32a26SJonathan Lemon 	sc->flags |= FXP_FLAG_UCODE;
269272a32a26SJonathan Lemon }
269372a32a26SJonathan Lemon 
269472a32a26SJonathan Lemon static int
269572a32a26SJonathan Lemon sysctl_int_range(SYSCTL_HANDLER_ARGS, int low, int high)
269672a32a26SJonathan Lemon {
269772a32a26SJonathan Lemon 	int error, value;
269872a32a26SJonathan Lemon 
269972a32a26SJonathan Lemon 	value = *(int *)arg1;
270072a32a26SJonathan Lemon 	error = sysctl_handle_int(oidp, &value, 0, req);
270172a32a26SJonathan Lemon 	if (error || !req->newptr)
270272a32a26SJonathan Lemon 		return (error);
270372a32a26SJonathan Lemon 	if (value < low || value > high)
270472a32a26SJonathan Lemon 		return (EINVAL);
270572a32a26SJonathan Lemon 	*(int *)arg1 = value;
270672a32a26SJonathan Lemon 	return (0);
270772a32a26SJonathan Lemon }
270872a32a26SJonathan Lemon 
270972a32a26SJonathan Lemon /*
271072a32a26SJonathan Lemon  * Interrupt delay is expressed in microseconds, a multiplier is used
271172a32a26SJonathan Lemon  * to convert this to the appropriate clock ticks before using.
271272a32a26SJonathan Lemon  */
271372a32a26SJonathan Lemon static int
271472a32a26SJonathan Lemon sysctl_hw_fxp_int_delay(SYSCTL_HANDLER_ARGS)
271572a32a26SJonathan Lemon {
271672a32a26SJonathan Lemon 	return (sysctl_int_range(oidp, arg1, arg2, req, 300, 3000));
271772a32a26SJonathan Lemon }
271872a32a26SJonathan Lemon 
271972a32a26SJonathan Lemon static int
272072a32a26SJonathan Lemon sysctl_hw_fxp_bundle_max(SYSCTL_HANDLER_ARGS)
272172a32a26SJonathan Lemon {
272272a32a26SJonathan Lemon 	return (sysctl_int_range(oidp, arg1, arg2, req, 1, 0xffff));
272372a32a26SJonathan Lemon }
2724