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if_msk.c revision 1.10.6.1
      1  1.10.6.1      matt /* $NetBSD: if_msk.c,v 1.10.6.1 2007/11/06 23:29:02 matt Exp $ */
      2       1.5   msaitoh /*	$OpenBSD: if_msk.c,v 1.42 2007/01/17 02:43:02 krw Exp $	*/
      3       1.1       riz 
      4       1.1       riz /*
      5       1.1       riz  * Copyright (c) 1997, 1998, 1999, 2000
      6       1.1       riz  *	Bill Paul <wpaul (at) ctr.columbia.edu>.  All rights reserved.
      7       1.1       riz  *
      8       1.1       riz  * Redistribution and use in source and binary forms, with or without
      9       1.1       riz  * modification, are permitted provided that the following conditions
     10       1.1       riz  * are met:
     11       1.1       riz  * 1. Redistributions of source code must retain the above copyright
     12       1.1       riz  *    notice, this list of conditions and the following disclaimer.
     13       1.1       riz  * 2. Redistributions in binary form must reproduce the above copyright
     14       1.1       riz  *    notice, this list of conditions and the following disclaimer in the
     15       1.1       riz  *    documentation and/or other materials provided with the distribution.
     16       1.1       riz  * 3. All advertising materials mentioning features or use of this software
     17       1.1       riz  *    must display the following acknowledgement:
     18       1.1       riz  *	This product includes software developed by Bill Paul.
     19       1.1       riz  * 4. Neither the name of the author nor the names of any co-contributors
     20       1.1       riz  *    may be used to endorse or promote products derived from this software
     21       1.1       riz  *    without specific prior written permission.
     22       1.1       riz  *
     23       1.1       riz  * THIS SOFTWARE IS PROVIDED BY Bill Paul AND CONTRIBUTORS ``AS IS'' AND
     24       1.1       riz  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     25       1.1       riz  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     26       1.1       riz  * ARE DISCLAIMED.  IN NO EVENT SHALL Bill Paul OR THE VOICES IN HIS HEAD
     27       1.1       riz  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     28       1.1       riz  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     29       1.1       riz  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     30       1.1       riz  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     31       1.1       riz  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     32       1.1       riz  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
     33       1.1       riz  * THE POSSIBILITY OF SUCH DAMAGE.
     34       1.1       riz  *
     35       1.1       riz  * $FreeBSD: /c/ncvs/src/sys/pci/if_sk.c,v 1.20 2000/04/22 02:16:37 wpaul Exp $
     36       1.1       riz  */
     37       1.1       riz 
     38       1.1       riz /*
     39       1.1       riz  * Copyright (c) 2003 Nathan L. Binkert <binkertn (at) umich.edu>
     40       1.1       riz  *
     41       1.1       riz  * Permission to use, copy, modify, and distribute this software for any
     42       1.1       riz  * purpose with or without fee is hereby granted, provided that the above
     43       1.1       riz  * copyright notice and this permission notice appear in all copies.
     44       1.1       riz  *
     45       1.1       riz  * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
     46       1.1       riz  * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
     47       1.1       riz  * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
     48       1.1       riz  * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
     49       1.1       riz  * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
     50       1.1       riz  * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
     51       1.1       riz  * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
     52       1.1       riz  */
     53       1.1       riz 
     54      1.10       dsl #include <sys/cdefs.h>
     55      1.10       dsl 
     56       1.1       riz #include "bpfilter.h"
     57       1.1       riz #include "rnd.h"
     58       1.1       riz 
     59       1.1       riz #include <sys/param.h>
     60       1.1       riz #include <sys/systm.h>
     61       1.1       riz #include <sys/sockio.h>
     62       1.1       riz #include <sys/mbuf.h>
     63       1.1       riz #include <sys/malloc.h>
     64       1.1       riz #include <sys/kernel.h>
     65       1.1       riz #include <sys/socket.h>
     66       1.1       riz #include <sys/device.h>
     67       1.1       riz #include <sys/queue.h>
     68       1.1       riz #include <sys/callout.h>
     69       1.1       riz #include <sys/sysctl.h>
     70       1.1       riz #include <sys/endian.h>
     71       1.1       riz #ifdef __NetBSD__
     72       1.1       riz  #define letoh16 htole16
     73       1.1       riz  #define letoh32 htole32
     74       1.1       riz #endif
     75       1.1       riz 
     76       1.1       riz #include <net/if.h>
     77       1.1       riz #include <net/if_dl.h>
     78       1.1       riz #include <net/if_types.h>
     79       1.1       riz 
     80       1.1       riz #include <net/if_media.h>
     81       1.1       riz 
     82       1.1       riz #if NBPFILTER > 0
     83       1.1       riz #include <net/bpf.h>
     84       1.1       riz #endif
     85       1.1       riz #if NRND > 0
     86       1.1       riz #include <sys/rnd.h>
     87       1.1       riz #endif
     88       1.1       riz 
     89       1.1       riz #include <dev/mii/mii.h>
     90       1.1       riz #include <dev/mii/miivar.h>
     91       1.1       riz #include <dev/mii/brgphyreg.h>
     92       1.1       riz 
     93       1.1       riz #include <dev/pci/pcireg.h>
     94       1.1       riz #include <dev/pci/pcivar.h>
     95       1.1       riz #include <dev/pci/pcidevs.h>
     96       1.1       riz 
     97       1.1       riz #include <dev/pci/if_skreg.h>
     98       1.1       riz #include <dev/pci/if_mskvar.h>
     99       1.1       riz 
    100       1.1       riz int mskc_probe(struct device *, struct cfdata *, void *);
    101       1.1       riz void mskc_attach(struct device *, struct device *self, void *aux);
    102       1.1       riz void mskc_shutdown(void *);
    103       1.1       riz int msk_probe(struct device *, struct cfdata *, void *);
    104       1.1       riz void msk_attach(struct device *, struct device *self, void *aux);
    105       1.1       riz int mskcprint(void *, const char *);
    106       1.1       riz int msk_intr(void *);
    107       1.1       riz void msk_intr_yukon(struct sk_if_softc *);
    108       1.1       riz __inline int msk_rxvalid(struct sk_softc *, u_int32_t, u_int32_t);
    109       1.1       riz void msk_rxeof(struct sk_if_softc *, u_int16_t, u_int32_t);
    110       1.6   msaitoh void msk_txeof(struct sk_if_softc *, int);
    111       1.1       riz int msk_encap(struct sk_if_softc *, struct mbuf *, u_int32_t *);
    112       1.1       riz void msk_start(struct ifnet *);
    113       1.8  christos int msk_ioctl(struct ifnet *, u_long, void *);
    114       1.1       riz int msk_init(struct ifnet *);
    115       1.1       riz void msk_init_yukon(struct sk_if_softc *);
    116       1.1       riz void msk_stop(struct ifnet *, int);
    117       1.1       riz void msk_watchdog(struct ifnet *);
    118       1.1       riz int msk_ifmedia_upd(struct ifnet *);
    119       1.1       riz void msk_ifmedia_sts(struct ifnet *, struct ifmediareq *);
    120       1.1       riz void msk_reset(struct sk_softc *);
    121       1.1       riz int msk_newbuf(struct sk_if_softc *, int, struct mbuf *, bus_dmamap_t);
    122       1.1       riz int msk_alloc_jumbo_mem(struct sk_if_softc *);
    123       1.1       riz void *msk_jalloc(struct sk_if_softc *);
    124       1.8  christos void msk_jfree(struct mbuf *, void *, size_t, void *);
    125       1.1       riz int msk_init_rx_ring(struct sk_if_softc *);
    126       1.1       riz int msk_init_tx_ring(struct sk_if_softc *);
    127       1.1       riz 
    128       1.1       riz void msk_update_int_mod(struct sk_softc *);
    129       1.1       riz 
    130       1.5   msaitoh int msk_miibus_readreg(struct device *, int, int);
    131       1.5   msaitoh void msk_miibus_writereg(struct device *, int, int, int);
    132       1.5   msaitoh void msk_miibus_statchg(struct device *);
    133       1.1       riz 
    134       1.8  christos void msk_setfilt(struct sk_if_softc *, void *, int);
    135       1.1       riz void msk_setmulti(struct sk_if_softc *);
    136       1.1       riz void msk_setpromisc(struct sk_if_softc *);
    137       1.5   msaitoh void msk_tick(void *);
    138       1.1       riz 
    139       1.1       riz /* #define MSK_DEBUG 1 */
    140       1.1       riz #ifdef MSK_DEBUG
    141       1.1       riz #define DPRINTF(x)	if (mskdebug) printf x
    142       1.1       riz #define DPRINTFN(n,x)	if (mskdebug >= (n)) printf x
    143       1.1       riz int	mskdebug = MSK_DEBUG;
    144       1.1       riz 
    145       1.1       riz void msk_dump_txdesc(struct msk_tx_desc *, int);
    146       1.1       riz void msk_dump_mbuf(struct mbuf *);
    147       1.1       riz void msk_dump_bytes(const char *, int);
    148       1.1       riz #else
    149       1.1       riz #define DPRINTF(x)
    150       1.1       riz #define DPRINTFN(n,x)
    151       1.1       riz #endif
    152       1.1       riz 
    153       1.1       riz static int msk_sysctl_handler(SYSCTLFN_PROTO);
    154       1.1       riz static int msk_root_num;
    155       1.1       riz 
    156       1.1       riz /* supported device vendors */
    157       1.1       riz static const struct msk_product {
    158       1.1       riz         pci_vendor_id_t         msk_vendor;
    159       1.1       riz         pci_product_id_t        msk_product;
    160       1.1       riz } msk_products[] = {
    161       1.5   msaitoh 	{ PCI_VENDOR_DLINK,		PCI_PRODUCT_DLINK_DGE550SX },
    162       1.5   msaitoh 	{ PCI_VENDOR_DLINK,		PCI_PRODUCT_DLINK_DGE560SX },
    163       1.5   msaitoh 	{ PCI_VENDOR_DLINK,		PCI_PRODUCT_DLINK_DGE560T },
    164       1.5   msaitoh 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKON_1 },
    165       1.5   msaitoh 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKON_C032 },
    166       1.5   msaitoh 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKON_C033 },
    167       1.5   msaitoh 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKON_C034 },
    168       1.5   msaitoh 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKON_C036 },
    169       1.5   msaitoh 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKON_C042 },
    170  1.10.6.1      matt 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKON_CO55 },
    171       1.1       riz 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKON_8035 },
    172       1.1       riz 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKON_8036 },
    173       1.1       riz 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKON_8038 },
    174       1.5   msaitoh 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKON_8039 },
    175       1.5   msaitoh 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKON_8050 },
    176       1.1       riz 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKON_8052 },
    177       1.1       riz 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKON_8053 },
    178       1.5   msaitoh 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKON_8055 },
    179       1.5   msaitoh 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKON_8056 },
    180       1.1       riz 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKONII_8021CU },
    181       1.5   msaitoh 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKONII_8021X },
    182       1.1       riz 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKONII_8022CU },
    183       1.1       riz 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKONII_8022X },
    184       1.1       riz 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKONII_8061CU },
    185       1.5   msaitoh 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKONII_8061X },
    186       1.1       riz 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKONII_8062CU },
    187       1.1       riz 	{ PCI_VENDOR_MARVELL,		PCI_PRODUCT_MARVELL_YUKONII_8062X },
    188       1.1       riz 	{ PCI_VENDOR_SCHNEIDERKOCH,	PCI_PRODUCT_SCHNEIDERKOCH_SK_9SXX },
    189       1.1       riz 	{ PCI_VENDOR_SCHNEIDERKOCH,	PCI_PRODUCT_SCHNEIDERKOCH_SK_9E21 }
    190       1.1       riz };
    191       1.1       riz 
    192       1.1       riz static inline u_int32_t
    193       1.1       riz sk_win_read_4(struct sk_softc *sc, u_int32_t reg)
    194       1.1       riz {
    195       1.1       riz 	return CSR_READ_4(sc, reg);
    196       1.1       riz }
    197       1.1       riz 
    198       1.1       riz static inline u_int16_t
    199       1.1       riz sk_win_read_2(struct sk_softc *sc, u_int32_t reg)
    200       1.1       riz {
    201       1.1       riz 	return CSR_READ_2(sc, reg);
    202       1.1       riz }
    203       1.1       riz 
    204       1.1       riz static inline u_int8_t
    205       1.1       riz sk_win_read_1(struct sk_softc *sc, u_int32_t reg)
    206       1.1       riz {
    207       1.1       riz 	return CSR_READ_1(sc, reg);
    208       1.1       riz }
    209       1.1       riz 
    210       1.1       riz static inline void
    211       1.1       riz sk_win_write_4(struct sk_softc *sc, u_int32_t reg, u_int32_t x)
    212       1.1       riz {
    213       1.1       riz 	CSR_WRITE_4(sc, reg, x);
    214       1.1       riz }
    215       1.1       riz 
    216       1.1       riz static inline void
    217       1.1       riz sk_win_write_2(struct sk_softc *sc, u_int32_t reg, u_int16_t x)
    218       1.1       riz {
    219       1.1       riz 	CSR_WRITE_2(sc, reg, x);
    220       1.1       riz }
    221       1.1       riz 
    222       1.1       riz static inline void
    223       1.1       riz sk_win_write_1(struct sk_softc *sc, u_int32_t reg, u_int8_t x)
    224       1.1       riz {
    225       1.1       riz 	CSR_WRITE_1(sc, reg, x);
    226       1.1       riz }
    227       1.1       riz 
    228       1.1       riz int
    229       1.5   msaitoh msk_miibus_readreg(struct device *dev, int phy, int reg)
    230       1.1       riz {
    231       1.1       riz 	struct sk_if_softc *sc_if = (struct sk_if_softc *)dev;
    232       1.1       riz 	u_int16_t val;
    233       1.1       riz 	int i;
    234       1.1       riz 
    235       1.1       riz         SK_YU_WRITE_2(sc_if, YUKON_SMICR, YU_SMICR_PHYAD(phy) |
    236       1.1       riz 		      YU_SMICR_REGAD(reg) | YU_SMICR_OP_READ);
    237       1.1       riz 
    238       1.1       riz 	for (i = 0; i < SK_TIMEOUT; i++) {
    239       1.1       riz 		DELAY(1);
    240       1.1       riz 		val = SK_YU_READ_2(sc_if, YUKON_SMICR);
    241       1.1       riz 		if (val & YU_SMICR_READ_VALID)
    242       1.1       riz 			break;
    243       1.1       riz 	}
    244       1.1       riz 
    245       1.1       riz 	if (i == SK_TIMEOUT) {
    246       1.1       riz 		aprint_error("%s: phy failed to come ready\n",
    247       1.1       riz 		       sc_if->sk_dev.dv_xname);
    248       1.1       riz 		return (0);
    249       1.1       riz 	}
    250       1.1       riz 
    251       1.5   msaitoh  	DPRINTFN(9, ("msk_miibus_readreg: i=%d, timeout=%d\n", i,
    252       1.1       riz 		     SK_TIMEOUT));
    253       1.1       riz 
    254       1.1       riz         val = SK_YU_READ_2(sc_if, YUKON_SMIDR);
    255       1.1       riz 
    256       1.5   msaitoh 	DPRINTFN(9, ("msk_miibus_readreg phy=%d, reg=%#x, val=%#x\n",
    257       1.1       riz 		     phy, reg, val));
    258       1.1       riz 
    259       1.1       riz 	return (val);
    260       1.1       riz }
    261       1.1       riz 
    262       1.1       riz void
    263       1.5   msaitoh msk_miibus_writereg(struct device *dev, int phy, int reg, int val)
    264       1.1       riz {
    265       1.1       riz 	struct sk_if_softc *sc_if = (struct sk_if_softc *)dev;
    266       1.1       riz 	int i;
    267       1.1       riz 
    268       1.5   msaitoh 	DPRINTFN(9, ("msk_miibus_writereg phy=%d reg=%#x val=%#x\n",
    269       1.1       riz 		     phy, reg, val));
    270       1.1       riz 
    271       1.1       riz 	SK_YU_WRITE_2(sc_if, YUKON_SMIDR, val);
    272       1.1       riz 	SK_YU_WRITE_2(sc_if, YUKON_SMICR, YU_SMICR_PHYAD(phy) |
    273       1.1       riz 		      YU_SMICR_REGAD(reg) | YU_SMICR_OP_WRITE);
    274       1.1       riz 
    275       1.1       riz 	for (i = 0; i < SK_TIMEOUT; i++) {
    276       1.1       riz 		DELAY(1);
    277       1.4   msaitoh 		if (!(SK_YU_READ_2(sc_if, YUKON_SMICR) & YU_SMICR_BUSY))
    278       1.1       riz 			break;
    279       1.1       riz 	}
    280       1.1       riz 
    281       1.1       riz 	if (i == SK_TIMEOUT)
    282       1.1       riz 		aprint_error("%s: phy write timed out\n", sc_if->sk_dev.dv_xname);
    283       1.1       riz }
    284       1.1       riz 
    285       1.1       riz void
    286       1.5   msaitoh msk_miibus_statchg(struct device *dev)
    287       1.1       riz {
    288       1.5   msaitoh 	struct sk_if_softc *sc_if = (struct sk_if_softc *)dev;
    289       1.5   msaitoh 	struct mii_data *mii = &sc_if->sk_mii;
    290       1.5   msaitoh 	struct ifmedia_entry *ife = mii->mii_media.ifm_cur;
    291       1.5   msaitoh 	int gpcr;
    292       1.5   msaitoh 
    293       1.5   msaitoh 	gpcr = SK_YU_READ_2(sc_if, YUKON_GPCR);
    294       1.5   msaitoh 	gpcr &= (YU_GPCR_TXEN | YU_GPCR_RXEN);
    295       1.5   msaitoh 
    296       1.5   msaitoh 	if (IFM_SUBTYPE(ife->ifm_media) != IFM_AUTO) {
    297       1.5   msaitoh 		/* Set speed. */
    298       1.5   msaitoh 		gpcr |= YU_GPCR_SPEED_DIS;
    299       1.5   msaitoh 		switch (IFM_SUBTYPE(mii->mii_media_active)) {
    300       1.5   msaitoh 		case IFM_1000_SX:
    301       1.5   msaitoh 		case IFM_1000_LX:
    302       1.5   msaitoh 		case IFM_1000_CX:
    303       1.5   msaitoh 		case IFM_1000_T:
    304       1.5   msaitoh 			gpcr |= (YU_GPCR_GIG | YU_GPCR_SPEED);
    305       1.5   msaitoh 			break;
    306       1.5   msaitoh 		case IFM_100_TX:
    307       1.5   msaitoh 			gpcr |= YU_GPCR_SPEED;
    308       1.5   msaitoh 			break;
    309       1.5   msaitoh 		}
    310       1.5   msaitoh 
    311       1.5   msaitoh 		/* Set duplex. */
    312       1.5   msaitoh 		gpcr |= YU_GPCR_DPLX_DIS;
    313       1.5   msaitoh 		if ((mii->mii_media_active & IFM_GMASK) == IFM_FDX)
    314       1.5   msaitoh 			gpcr |= YU_GPCR_DUPLEX;
    315       1.5   msaitoh 
    316       1.5   msaitoh 		/* Disable flow control. */
    317       1.5   msaitoh 		gpcr |= YU_GPCR_FCTL_DIS;
    318       1.5   msaitoh 		gpcr |= (YU_GPCR_FCTL_TX_DIS | YU_GPCR_FCTL_RX_DIS);
    319       1.5   msaitoh 	}
    320       1.5   msaitoh 
    321       1.5   msaitoh 	SK_YU_WRITE_2(sc_if, YUKON_GPCR, gpcr);
    322       1.5   msaitoh 
    323       1.5   msaitoh 	DPRINTFN(9, ("msk_miibus_statchg: gpcr=%x\n",
    324       1.1       riz 		     SK_YU_READ_2(((struct sk_if_softc *)dev), YUKON_GPCR)));
    325       1.1       riz }
    326       1.1       riz 
    327       1.1       riz #define HASH_BITS	6
    328       1.1       riz 
    329       1.1       riz void
    330       1.8  christos msk_setfilt(struct sk_if_softc *sc_if, void *addrv, int slot)
    331       1.1       riz {
    332       1.8  christos 	char *addr = addrv;
    333       1.1       riz 	int base = XM_RXFILT_ENTRY(slot);
    334       1.1       riz 
    335       1.1       riz 	SK_XM_WRITE_2(sc_if, base, *(u_int16_t *)(&addr[0]));
    336       1.1       riz 	SK_XM_WRITE_2(sc_if, base + 2, *(u_int16_t *)(&addr[2]));
    337       1.1       riz 	SK_XM_WRITE_2(sc_if, base + 4, *(u_int16_t *)(&addr[4]));
    338       1.1       riz }
    339       1.1       riz 
    340       1.1       riz void
    341       1.1       riz msk_setmulti(struct sk_if_softc *sc_if)
    342       1.1       riz {
    343       1.1       riz 	struct ifnet *ifp= &sc_if->sk_ethercom.ec_if;
    344       1.1       riz 	u_int32_t hashes[2] = { 0, 0 };
    345       1.1       riz 	int h;
    346       1.1       riz 	struct ethercom *ec = &sc_if->sk_ethercom;
    347       1.1       riz 	struct ether_multi *enm;
    348       1.1       riz 	struct ether_multistep step;
    349       1.6   msaitoh 	u_int16_t reg;
    350       1.1       riz 
    351       1.1       riz 	/* First, zot all the existing filters. */
    352       1.1       riz 	SK_YU_WRITE_2(sc_if, YUKON_MCAH1, 0);
    353       1.1       riz 	SK_YU_WRITE_2(sc_if, YUKON_MCAH2, 0);
    354       1.1       riz 	SK_YU_WRITE_2(sc_if, YUKON_MCAH3, 0);
    355       1.1       riz 	SK_YU_WRITE_2(sc_if, YUKON_MCAH4, 0);
    356       1.1       riz 
    357       1.1       riz 
    358       1.1       riz 	/* Now program new ones. */
    359       1.6   msaitoh 	reg = SK_YU_READ_2(sc_if, YUKON_RCR);
    360       1.6   msaitoh 	reg |= YU_RCR_UFLEN;
    361       1.1       riz allmulti:
    362       1.1       riz 	if (ifp->if_flags & IFF_ALLMULTI || ifp->if_flags & IFF_PROMISC) {
    363       1.6   msaitoh 		if ((ifp->if_flags & IFF_PROMISC) != 0)
    364       1.6   msaitoh 			reg &= ~(YU_RCR_UFLEN | YU_RCR_MUFLEN);
    365       1.6   msaitoh 		else if ((ifp->if_flags & IFF_ALLMULTI) != 0) {
    366       1.6   msaitoh 			hashes[0] = 0xFFFFFFFF;
    367       1.6   msaitoh 			hashes[1] = 0xFFFFFFFF;
    368       1.6   msaitoh 		}
    369       1.1       riz 	} else {
    370       1.1       riz 		/* First find the tail of the list. */
    371       1.1       riz 		ETHER_FIRST_MULTI(step, ec, enm);
    372       1.1       riz 		while (enm != NULL) {
    373       1.1       riz 			if (bcmp(enm->enm_addrlo, enm->enm_addrhi,
    374       1.1       riz 				 ETHER_ADDR_LEN)) {
    375       1.1       riz 				ifp->if_flags |= IFF_ALLMULTI;
    376       1.1       riz 				goto allmulti;
    377       1.1       riz 			}
    378       1.5   msaitoh 			h = ether_crc32_be(enm->enm_addrlo, ETHER_ADDR_LEN) &
    379       1.5   msaitoh 			    ((1 << HASH_BITS) - 1);
    380       1.1       riz 			if (h < 32)
    381       1.1       riz 				hashes[0] |= (1 << h);
    382       1.1       riz 			else
    383       1.1       riz 				hashes[1] |= (1 << (h - 32));
    384       1.1       riz 
    385       1.1       riz 			ETHER_NEXT_MULTI(step, enm);
    386       1.1       riz 		}
    387       1.6   msaitoh 		reg |= YU_RCR_MUFLEN;
    388       1.1       riz 	}
    389       1.1       riz 
    390       1.1       riz 	SK_YU_WRITE_2(sc_if, YUKON_MCAH1, hashes[0] & 0xffff);
    391       1.1       riz 	SK_YU_WRITE_2(sc_if, YUKON_MCAH2, (hashes[0] >> 16) & 0xffff);
    392       1.1       riz 	SK_YU_WRITE_2(sc_if, YUKON_MCAH3, hashes[1] & 0xffff);
    393       1.1       riz 	SK_YU_WRITE_2(sc_if, YUKON_MCAH4, (hashes[1] >> 16) & 0xffff);
    394       1.6   msaitoh 	SK_YU_WRITE_2(sc_if, YUKON_RCR, reg);
    395       1.1       riz }
    396       1.1       riz 
    397       1.1       riz void
    398       1.1       riz msk_setpromisc(struct sk_if_softc *sc_if)
    399       1.1       riz {
    400       1.1       riz 	struct ifnet *ifp = &sc_if->sk_ethercom.ec_if;
    401       1.1       riz 
    402       1.1       riz 	if (ifp->if_flags & IFF_PROMISC)
    403       1.1       riz 		SK_YU_CLRBIT_2(sc_if, YUKON_RCR,
    404       1.1       riz 		    YU_RCR_UFLEN | YU_RCR_MUFLEN);
    405       1.1       riz 	else
    406       1.1       riz 		SK_YU_SETBIT_2(sc_if, YUKON_RCR,
    407       1.1       riz 		    YU_RCR_UFLEN | YU_RCR_MUFLEN);
    408       1.1       riz }
    409       1.1       riz 
    410       1.1       riz int
    411       1.1       riz msk_init_rx_ring(struct sk_if_softc *sc_if)
    412       1.1       riz {
    413       1.1       riz 	struct msk_chain_data	*cd = &sc_if->sk_cdata;
    414       1.1       riz 	struct msk_ring_data	*rd = sc_if->sk_rdata;
    415       1.1       riz 	int			i, nexti;
    416       1.1       riz 
    417       1.1       riz 	bzero((char *)rd->sk_rx_ring,
    418       1.1       riz 	    sizeof(struct msk_rx_desc) * MSK_RX_RING_CNT);
    419       1.1       riz 
    420       1.1       riz 	for (i = 0; i < MSK_RX_RING_CNT; i++) {
    421       1.1       riz 		cd->sk_rx_chain[i].sk_le = &rd->sk_rx_ring[i];
    422       1.1       riz 		if (i == (MSK_RX_RING_CNT - 1))
    423       1.1       riz 			nexti = 0;
    424       1.1       riz 		else
    425       1.1       riz 			nexti = i + 1;
    426       1.1       riz 		cd->sk_rx_chain[i].sk_next = &cd->sk_rx_chain[nexti];
    427       1.1       riz 	}
    428       1.1       riz 
    429       1.1       riz 	for (i = 0; i < MSK_RX_RING_CNT; i++) {
    430       1.1       riz 		if (msk_newbuf(sc_if, i, NULL,
    431       1.1       riz 		    sc_if->sk_cdata.sk_rx_jumbo_map) == ENOBUFS) {
    432       1.1       riz 			aprint_error("%s: failed alloc of %dth mbuf\n",
    433       1.1       riz 			    sc_if->sk_dev.dv_xname, i);
    434       1.1       riz 			return (ENOBUFS);
    435       1.1       riz 		}
    436       1.1       riz 	}
    437       1.1       riz 
    438       1.1       riz 	sc_if->sk_cdata.sk_rx_prod = MSK_RX_RING_CNT - 1;
    439       1.1       riz 	sc_if->sk_cdata.sk_rx_cons = 0;
    440       1.1       riz 
    441       1.1       riz 	return (0);
    442       1.1       riz }
    443       1.1       riz 
    444       1.1       riz int
    445       1.1       riz msk_init_tx_ring(struct sk_if_softc *sc_if)
    446       1.1       riz {
    447       1.1       riz 	struct sk_softc		*sc = sc_if->sk_softc;
    448       1.1       riz 	struct msk_chain_data	*cd = &sc_if->sk_cdata;
    449       1.1       riz 	struct msk_ring_data	*rd = sc_if->sk_rdata;
    450       1.1       riz 	bus_dmamap_t		dmamap;
    451       1.1       riz 	struct sk_txmap_entry	*entry;
    452       1.1       riz 	int			i, nexti;
    453       1.1       riz 
    454       1.1       riz 	bzero((char *)sc_if->sk_rdata->sk_tx_ring,
    455       1.1       riz 	    sizeof(struct msk_tx_desc) * MSK_TX_RING_CNT);
    456       1.1       riz 
    457       1.1       riz 	SIMPLEQ_INIT(&sc_if->sk_txmap_head);
    458       1.1       riz 	for (i = 0; i < MSK_TX_RING_CNT; i++) {
    459       1.1       riz 		cd->sk_tx_chain[i].sk_le = &rd->sk_tx_ring[i];
    460       1.1       riz 		if (i == (MSK_TX_RING_CNT - 1))
    461       1.1       riz 			nexti = 0;
    462       1.1       riz 		else
    463       1.1       riz 			nexti = i + 1;
    464       1.1       riz 		cd->sk_tx_chain[i].sk_next = &cd->sk_tx_chain[nexti];
    465       1.1       riz 
    466       1.1       riz 		if (bus_dmamap_create(sc->sc_dmatag, SK_JLEN, SK_NTXSEG,
    467       1.1       riz 		   SK_JLEN, 0, BUS_DMA_NOWAIT, &dmamap))
    468       1.1       riz 			return (ENOBUFS);
    469       1.1       riz 
    470       1.1       riz 		entry = malloc(sizeof(*entry), M_DEVBUF, M_NOWAIT);
    471       1.1       riz 		if (!entry) {
    472       1.1       riz 			bus_dmamap_destroy(sc->sc_dmatag, dmamap);
    473       1.1       riz 			return (ENOBUFS);
    474       1.1       riz 		}
    475       1.1       riz 		entry->dmamap = dmamap;
    476       1.1       riz 		SIMPLEQ_INSERT_HEAD(&sc_if->sk_txmap_head, entry, link);
    477       1.1       riz 	}
    478       1.1       riz 
    479       1.1       riz 	sc_if->sk_cdata.sk_tx_prod = 0;
    480       1.1       riz 	sc_if->sk_cdata.sk_tx_cons = 0;
    481       1.1       riz 	sc_if->sk_cdata.sk_tx_cnt = 0;
    482       1.1       riz 
    483       1.1       riz 	MSK_CDTXSYNC(sc_if, 0, MSK_TX_RING_CNT,
    484       1.1       riz 	    BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
    485       1.1       riz 
    486       1.1       riz 	return (0);
    487       1.1       riz }
    488       1.1       riz 
    489       1.1       riz int
    490       1.1       riz msk_newbuf(struct sk_if_softc *sc_if, int i, struct mbuf *m,
    491       1.1       riz 	  bus_dmamap_t dmamap)
    492       1.1       riz {
    493       1.1       riz 	struct mbuf		*m_new = NULL;
    494       1.1       riz 	struct sk_chain		*c;
    495       1.1       riz 	struct msk_rx_desc	*r;
    496       1.1       riz 
    497       1.1       riz 	if (m == NULL) {
    498       1.8  christos 		void *buf = NULL;
    499       1.1       riz 
    500       1.1       riz 		MGETHDR(m_new, M_DONTWAIT, MT_DATA);
    501       1.1       riz 		if (m_new == NULL)
    502       1.1       riz 			return (ENOBUFS);
    503       1.1       riz 
    504       1.1       riz 		/* Allocate the jumbo buffer */
    505       1.1       riz 		buf = msk_jalloc(sc_if);
    506       1.1       riz 		if (buf == NULL) {
    507       1.1       riz 			m_freem(m_new);
    508       1.1       riz 			DPRINTFN(1, ("%s jumbo allocation failed -- packet "
    509       1.1       riz 			    "dropped!\n", sc_if->sk_ethercom.ec_if.if_xname));
    510       1.1       riz 			return (ENOBUFS);
    511       1.1       riz 		}
    512       1.1       riz 
    513       1.1       riz 		/* Attach the buffer to the mbuf */
    514       1.1       riz 		m_new->m_len = m_new->m_pkthdr.len = SK_JLEN;
    515       1.1       riz 		MEXTADD(m_new, buf, SK_JLEN, 0, msk_jfree, sc_if);
    516       1.1       riz 	} else {
    517       1.1       riz 		/*
    518       1.1       riz 	 	 * We're re-using a previously allocated mbuf;
    519       1.1       riz 		 * be sure to re-init pointers and lengths to
    520       1.1       riz 		 * default values.
    521       1.1       riz 		 */
    522       1.1       riz 		m_new = m;
    523       1.1       riz 		m_new->m_len = m_new->m_pkthdr.len = SK_JLEN;
    524       1.1       riz 		m_new->m_data = m_new->m_ext.ext_buf;
    525       1.1       riz 	}
    526       1.1       riz 	m_adj(m_new, ETHER_ALIGN);
    527       1.1       riz 
    528       1.1       riz 	c = &sc_if->sk_cdata.sk_rx_chain[i];
    529       1.1       riz 	r = c->sk_le;
    530       1.1       riz 	c->sk_mbuf = m_new;
    531       1.1       riz 	r->sk_addr = htole32(dmamap->dm_segs[0].ds_addr +
    532       1.1       riz 	    (((vaddr_t)m_new->m_data
    533       1.1       riz              - (vaddr_t)sc_if->sk_cdata.sk_jumbo_buf)));
    534       1.1       riz 	r->sk_len = htole16(SK_JLEN);
    535       1.1       riz 	r->sk_ctl = 0;
    536       1.1       riz 	r->sk_opcode = SK_Y2_RXOPC_PACKET | SK_Y2_RXOPC_OWN;
    537       1.1       riz 
    538       1.1       riz 	MSK_CDRXSYNC(sc_if, i, BUS_DMASYNC_PREWRITE|BUS_DMASYNC_PREREAD);
    539       1.1       riz 
    540       1.1       riz 	return (0);
    541       1.1       riz }
    542       1.1       riz 
    543       1.1       riz /*
    544       1.1       riz  * Memory management for jumbo frames.
    545       1.1       riz  */
    546       1.1       riz 
    547       1.1       riz int
    548       1.1       riz msk_alloc_jumbo_mem(struct sk_if_softc *sc_if)
    549       1.1       riz {
    550       1.1       riz 	struct sk_softc		*sc = sc_if->sk_softc;
    551       1.8  christos 	char *ptr, *kva;
    552       1.1       riz 	bus_dma_segment_t	seg;
    553       1.1       riz 	int		i, rseg, state, error;
    554       1.1       riz 	struct sk_jpool_entry   *entry;
    555       1.1       riz 
    556       1.1       riz 	state = error = 0;
    557       1.1       riz 
    558       1.1       riz 	/* Grab a big chunk o' storage. */
    559       1.1       riz 	if (bus_dmamem_alloc(sc->sc_dmatag, MSK_JMEM, PAGE_SIZE, 0,
    560       1.1       riz 			     &seg, 1, &rseg, BUS_DMA_NOWAIT)) {
    561       1.1       riz 		aprint_error(": can't alloc rx buffers");
    562       1.1       riz 		return (ENOBUFS);
    563       1.1       riz 	}
    564       1.1       riz 
    565       1.1       riz 	state = 1;
    566       1.8  christos 	if (bus_dmamem_map(sc->sc_dmatag, &seg, rseg, MSK_JMEM, (void **)&kva,
    567       1.1       riz 			   BUS_DMA_NOWAIT)) {
    568       1.1       riz 		aprint_error(": can't map dma buffers (%d bytes)", MSK_JMEM);
    569       1.1       riz 		error = ENOBUFS;
    570       1.1       riz 		goto out;
    571       1.1       riz 	}
    572       1.1       riz 
    573       1.1       riz 	state = 2;
    574       1.1       riz 	if (bus_dmamap_create(sc->sc_dmatag, MSK_JMEM, 1, MSK_JMEM, 0,
    575       1.1       riz 	    BUS_DMA_NOWAIT, &sc_if->sk_cdata.sk_rx_jumbo_map)) {
    576       1.1       riz 		aprint_error(": can't create dma map");
    577       1.1       riz 		error = ENOBUFS;
    578       1.1       riz 		goto out;
    579       1.1       riz 	}
    580       1.1       riz 
    581       1.1       riz 	state = 3;
    582       1.1       riz 	if (bus_dmamap_load(sc->sc_dmatag, sc_if->sk_cdata.sk_rx_jumbo_map,
    583       1.1       riz 			    kva, MSK_JMEM, NULL, BUS_DMA_NOWAIT)) {
    584       1.1       riz 		aprint_error(": can't load dma map");
    585       1.1       riz 		error = ENOBUFS;
    586       1.1       riz 		goto out;
    587       1.1       riz 	}
    588       1.1       riz 
    589       1.1       riz 	state = 4;
    590       1.8  christos 	sc_if->sk_cdata.sk_jumbo_buf = (void *)kva;
    591       1.8  christos 	DPRINTFN(1,("msk_jumbo_buf = %p\n", (void *)sc_if->sk_cdata.sk_jumbo_buf));
    592       1.1       riz 
    593       1.1       riz 	LIST_INIT(&sc_if->sk_jfree_listhead);
    594       1.1       riz 	LIST_INIT(&sc_if->sk_jinuse_listhead);
    595       1.1       riz 
    596       1.1       riz 	/*
    597       1.1       riz 	 * Now divide it up into 9K pieces and save the addresses
    598       1.1       riz 	 * in an array.
    599       1.1       riz 	 */
    600       1.1       riz 	ptr = sc_if->sk_cdata.sk_jumbo_buf;
    601       1.1       riz 	for (i = 0; i < MSK_JSLOTS; i++) {
    602       1.1       riz 		sc_if->sk_cdata.sk_jslots[i] = ptr;
    603       1.1       riz 		ptr += SK_JLEN;
    604       1.1       riz 		entry = malloc(sizeof(struct sk_jpool_entry),
    605       1.1       riz 		    M_DEVBUF, M_NOWAIT);
    606       1.1       riz 		if (entry == NULL) {
    607       1.5   msaitoh 			sc_if->sk_cdata.sk_jumbo_buf = NULL;
    608       1.1       riz 			aprint_error(": no memory for jumbo buffer queue!");
    609       1.1       riz 			error = ENOBUFS;
    610       1.1       riz 			goto out;
    611       1.1       riz 		}
    612       1.1       riz 		entry->slot = i;
    613       1.5   msaitoh 		LIST_INSERT_HEAD(&sc_if->sk_jfree_listhead,
    614       1.1       riz 				 entry, jpool_entries);
    615       1.1       riz 	}
    616       1.1       riz out:
    617       1.1       riz 	if (error != 0) {
    618       1.1       riz 		switch (state) {
    619       1.1       riz 		case 4:
    620       1.1       riz 			bus_dmamap_unload(sc->sc_dmatag,
    621       1.1       riz 			    sc_if->sk_cdata.sk_rx_jumbo_map);
    622       1.1       riz 		case 3:
    623       1.1       riz 			bus_dmamap_destroy(sc->sc_dmatag,
    624       1.1       riz 			    sc_if->sk_cdata.sk_rx_jumbo_map);
    625       1.1       riz 		case 2:
    626       1.1       riz 			bus_dmamem_unmap(sc->sc_dmatag, kva, MSK_JMEM);
    627       1.1       riz 		case 1:
    628       1.1       riz 			bus_dmamem_free(sc->sc_dmatag, &seg, rseg);
    629       1.1       riz 			break;
    630       1.1       riz 		default:
    631       1.1       riz 			break;
    632       1.1       riz 		}
    633       1.1       riz 	}
    634       1.1       riz 
    635       1.1       riz 	return (error);
    636       1.1       riz }
    637       1.1       riz 
    638       1.1       riz /*
    639       1.1       riz  * Allocate a jumbo buffer.
    640       1.1       riz  */
    641       1.1       riz void *
    642       1.1       riz msk_jalloc(struct sk_if_softc *sc_if)
    643       1.1       riz {
    644       1.1       riz 	struct sk_jpool_entry   *entry;
    645       1.1       riz 
    646       1.1       riz 	entry = LIST_FIRST(&sc_if->sk_jfree_listhead);
    647       1.1       riz 
    648       1.1       riz 	if (entry == NULL)
    649       1.1       riz 		return (NULL);
    650       1.1       riz 
    651       1.1       riz 	LIST_REMOVE(entry, jpool_entries);
    652       1.1       riz 	LIST_INSERT_HEAD(&sc_if->sk_jinuse_listhead, entry, jpool_entries);
    653       1.1       riz 	return (sc_if->sk_cdata.sk_jslots[entry->slot]);
    654       1.1       riz }
    655       1.1       riz 
    656       1.1       riz /*
    657       1.1       riz  * Release a jumbo buffer.
    658       1.1       riz  */
    659       1.1       riz void
    660       1.8  christos msk_jfree(struct mbuf *m, void *buf, size_t size, void *arg)
    661       1.1       riz {
    662       1.1       riz 	struct sk_jpool_entry *entry;
    663       1.1       riz 	struct sk_if_softc *sc;
    664       1.1       riz 	int i, s;
    665       1.1       riz 
    666       1.1       riz 	/* Extract the softc struct pointer. */
    667       1.1       riz 	sc = (struct sk_if_softc *)arg;
    668       1.1       riz 
    669       1.1       riz 	if (sc == NULL)
    670       1.1       riz 		panic("msk_jfree: can't find softc pointer!");
    671       1.1       riz 
    672       1.1       riz 	/* calculate the slot this buffer belongs to */
    673       1.1       riz 	i = ((vaddr_t)buf
    674       1.1       riz 	     - (vaddr_t)sc->sk_cdata.sk_jumbo_buf) / SK_JLEN;
    675       1.1       riz 
    676       1.1       riz 	if ((i < 0) || (i >= MSK_JSLOTS))
    677       1.6   msaitoh 		panic("msk_jfree: asked to free buffer that we don't manage!");
    678       1.1       riz 
    679       1.1       riz 	s = splvm();
    680       1.1       riz 	entry = LIST_FIRST(&sc->sk_jinuse_listhead);
    681       1.1       riz 	if (entry == NULL)
    682       1.1       riz 		panic("msk_jfree: buffer not in use!");
    683       1.1       riz 	entry->slot = i;
    684       1.1       riz 	LIST_REMOVE(entry, jpool_entries);
    685       1.1       riz 	LIST_INSERT_HEAD(&sc->sk_jfree_listhead, entry, jpool_entries);
    686       1.1       riz 
    687       1.1       riz 	if (__predict_true(m != NULL))
    688       1.1       riz 		pool_cache_put(&mbpool_cache, m);
    689       1.1       riz 	splx(s);
    690       1.1       riz }
    691       1.1       riz 
    692       1.1       riz /*
    693       1.1       riz  * Set media options.
    694       1.1       riz  */
    695       1.1       riz int
    696       1.1       riz msk_ifmedia_upd(struct ifnet *ifp)
    697       1.1       riz {
    698       1.1       riz 	struct sk_if_softc *sc_if = ifp->if_softc;
    699       1.1       riz 
    700       1.1       riz 	mii_mediachg(&sc_if->sk_mii);
    701       1.1       riz 	return (0);
    702       1.1       riz }
    703       1.1       riz 
    704       1.1       riz /*
    705       1.1       riz  * Report current media status.
    706       1.1       riz  */
    707       1.1       riz void
    708       1.1       riz msk_ifmedia_sts(struct ifnet *ifp, struct ifmediareq *ifmr)
    709       1.1       riz {
    710       1.1       riz 	struct sk_if_softc *sc_if = ifp->if_softc;
    711       1.1       riz 
    712       1.1       riz 	mii_pollstat(&sc_if->sk_mii);
    713       1.1       riz 	ifmr->ifm_active = sc_if->sk_mii.mii_media_active;
    714       1.1       riz 	ifmr->ifm_status = sc_if->sk_mii.mii_media_status;
    715       1.1       riz }
    716       1.1       riz 
    717       1.1       riz int
    718       1.8  christos msk_ioctl(struct ifnet *ifp, u_long command, void *data)
    719       1.1       riz {
    720       1.1       riz 	struct sk_if_softc *sc_if = ifp->if_softc;
    721       1.1       riz 	struct ifreq *ifr = (struct ifreq *) data;
    722       1.1       riz 	struct mii_data *mii;
    723       1.1       riz 	int s, error = 0;
    724       1.1       riz 
    725       1.1       riz 	s = splnet();
    726       1.1       riz 
    727       1.1       riz 	switch(command) {
    728       1.5   msaitoh 	case SIOCSIFMTU:
    729       1.5   msaitoh 		if (ifr->ifr_mtu < ETHERMIN)
    730       1.5   msaitoh 			return EINVAL;
    731       1.5   msaitoh 		else if (sc_if->sk_softc->sk_type != SK_YUKON_FE) {
    732       1.5   msaitoh 			if (ifr->ifr_mtu > SK_JUMBO_MTU)
    733       1.5   msaitoh 				error = EINVAL;
    734       1.5   msaitoh 		} else if (ifr->ifr_mtu > ETHERMTU)
    735       1.5   msaitoh 			error = EINVAL;
    736       1.5   msaitoh 		ifp->if_mtu = ifr->ifr_mtu;
    737       1.5   msaitoh 		break;
    738       1.1       riz 	case SIOCGIFMEDIA:
    739       1.1       riz 	case SIOCSIFMEDIA:
    740       1.1       riz 		DPRINTFN(2,("msk_ioctl: SIOC[GS]IFMEDIA\n"));
    741       1.1       riz 		mii = &sc_if->sk_mii;
    742       1.1       riz 		error = ifmedia_ioctl(ifp, ifr, &mii->mii_media, command);
    743       1.1       riz 		DPRINTFN(2,("msk_ioctl: SIOC[GS]IFMEDIA done\n"));
    744       1.1       riz 		break;
    745       1.1       riz 	default:
    746       1.1       riz 		DPRINTFN(2, ("msk_ioctl ETHER\n"));
    747       1.1       riz 		error = ether_ioctl(ifp, command, data);
    748       1.1       riz 
    749       1.1       riz 		if (error == ENETRESET) {
    750       1.1       riz 			/*
    751       1.1       riz 			 * Multicast list has changed; set the hardware
    752       1.1       riz 			 * filter accordingly.
    753       1.1       riz 			 */
    754       1.1       riz 			if (ifp->if_flags & IFF_RUNNING)
    755       1.1       riz 				msk_setmulti(sc_if);
    756       1.1       riz 			error = 0;
    757       1.1       riz 		}
    758       1.1       riz 		break;
    759       1.1       riz 	}
    760       1.1       riz 
    761       1.1       riz 	splx(s);
    762       1.1       riz 	return (error);
    763       1.1       riz }
    764       1.1       riz 
    765       1.1       riz void
    766       1.1       riz msk_update_int_mod(struct sk_softc *sc)
    767       1.1       riz {
    768       1.5   msaitoh 	u_int32_t imtimer_ticks;
    769       1.1       riz 
    770       1.1       riz 	/*
    771       1.1       riz  	 * Configure interrupt moderation. The moderation timer
    772       1.1       riz 	 * defers interrupts specified in the interrupt moderation
    773       1.1       riz 	 * timer mask based on the timeout specified in the interrupt
    774       1.1       riz 	 * moderation timer init register. Each bit in the timer
    775       1.1       riz 	 * register represents one tick, so to specify a timeout in
    776       1.1       riz 	 * microseconds, we have to multiply by the correct number of
    777       1.1       riz 	 * ticks-per-microsecond.
    778       1.1       riz 	 */
    779       1.1       riz 	switch (sc->sk_type) {
    780       1.1       riz 	case SK_YUKON_EC:
    781       1.6   msaitoh 	case SK_YUKON_EC_U:
    782       1.5   msaitoh 		imtimer_ticks = SK_IMTIMER_TICKS_YUKON_EC;
    783       1.1       riz 		break;
    784       1.6   msaitoh 	case SK_YUKON_FE:
    785       1.6   msaitoh 		imtimer_ticks = SK_IMTIMER_TICKS_YUKON_FE;
    786       1.6   msaitoh 		break;
    787       1.6   msaitoh 	case SK_YUKON_XL:
    788       1.6   msaitoh 		imtimer_ticks = SK_IMTIMER_TICKS_YUKON_XL;
    789       1.6   msaitoh 		break;
    790       1.1       riz 	default:
    791       1.5   msaitoh 		imtimer_ticks = SK_IMTIMER_TICKS_YUKON;
    792       1.1       riz 	}
    793       1.1       riz 	aprint_verbose("%s: interrupt moderation is %d us\n",
    794       1.1       riz 	    sc->sk_dev.dv_xname, sc->sk_int_mod);
    795       1.1       riz         sk_win_write_4(sc, SK_IMTIMERINIT, SK_IM_USECS(sc->sk_int_mod));
    796       1.1       riz         sk_win_write_4(sc, SK_IMMR, SK_ISR_TX1_S_EOF|SK_ISR_TX2_S_EOF|
    797       1.1       riz 	    SK_ISR_RX1_EOF|SK_ISR_RX2_EOF);
    798       1.1       riz         sk_win_write_1(sc, SK_IMTIMERCTL, SK_IMCTL_START);
    799       1.1       riz 	sc->sk_int_mod_pending = 0;
    800       1.1       riz }
    801       1.1       riz 
    802       1.1       riz static int
    803       1.1       riz msk_lookup(const struct pci_attach_args *pa)
    804       1.1       riz {
    805       1.1       riz 	const struct msk_product *pmsk;
    806       1.1       riz 
    807       1.1       riz 	for ( pmsk = &msk_products[0]; pmsk->msk_vendor != 0; pmsk++) {
    808       1.1       riz 		if (PCI_VENDOR(pa->pa_id) == pmsk->msk_vendor &&
    809       1.1       riz 		    PCI_PRODUCT(pa->pa_id) == pmsk->msk_product)
    810       1.1       riz 			return 1;
    811       1.1       riz 	}
    812       1.1       riz 	return 0;
    813       1.1       riz }
    814       1.1       riz 
    815       1.1       riz /*
    816       1.1       riz  * Probe for a SysKonnect GEnesis chip. Check the PCI vendor and device
    817       1.1       riz  * IDs against our list and return a device name if we find a match.
    818       1.1       riz  */
    819       1.1       riz int
    820       1.3  christos mskc_probe(struct device *parent, struct cfdata *match,
    821       1.2  christos     void *aux)
    822       1.1       riz {
    823       1.1       riz 	struct pci_attach_args *pa = (struct pci_attach_args *)aux;
    824       1.1       riz 
    825       1.1       riz 	return msk_lookup(pa);
    826       1.1       riz }
    827       1.1       riz 
    828       1.1       riz /*
    829       1.1       riz  * Force the GEnesis into reset, then bring it out of reset.
    830       1.1       riz  */
    831       1.1       riz void msk_reset(struct sk_softc *sc)
    832       1.1       riz {
    833       1.5   msaitoh 	u_int32_t imtimer_ticks, reg1;
    834       1.1       riz 	int reg;
    835       1.1       riz 
    836       1.1       riz 	DPRINTFN(2, ("msk_reset\n"));
    837       1.1       riz 
    838       1.1       riz 	CSR_WRITE_1(sc, SK_CSR, SK_CSR_SW_RESET);
    839       1.1       riz 	CSR_WRITE_1(sc, SK_CSR, SK_CSR_MASTER_RESET);
    840       1.1       riz 
    841       1.1       riz 	DELAY(1000);
    842       1.1       riz 	CSR_WRITE_1(sc, SK_CSR, SK_CSR_SW_UNRESET);
    843       1.1       riz 	DELAY(2);
    844       1.1       riz 	CSR_WRITE_1(sc, SK_CSR, SK_CSR_MASTER_UNRESET);
    845       1.5   msaitoh 	sk_win_write_1(sc, SK_TESTCTL1, 2);
    846       1.5   msaitoh 
    847       1.5   msaitoh 	reg1 = sk_win_read_4(sc, SK_Y2_PCI_REG(SK_PCI_OURREG1));
    848       1.5   msaitoh 	if (sc->sk_type == SK_YUKON_XL && sc->sk_rev > SK_YUKON_XL_REV_A1)
    849       1.5   msaitoh 		reg1 |= (SK_Y2_REG1_PHY1_COMA | SK_Y2_REG1_PHY2_COMA);
    850       1.5   msaitoh 	else
    851       1.5   msaitoh 		reg1 &= ~(SK_Y2_REG1_PHY1_COMA | SK_Y2_REG1_PHY2_COMA);
    852       1.5   msaitoh 	sk_win_write_4(sc, SK_Y2_PCI_REG(SK_PCI_OURREG1), reg1);
    853       1.5   msaitoh 
    854       1.5   msaitoh 	if (sc->sk_type == SK_YUKON_XL && sc->sk_rev > SK_YUKON_XL_REV_A1)
    855       1.5   msaitoh 		sk_win_write_1(sc, SK_Y2_CLKGATE,
    856       1.5   msaitoh 		    SK_Y2_CLKGATE_LINK1_GATE_DIS |
    857       1.5   msaitoh 		    SK_Y2_CLKGATE_LINK2_GATE_DIS |
    858       1.5   msaitoh 		    SK_Y2_CLKGATE_LINK1_CORE_DIS |
    859       1.5   msaitoh 		    SK_Y2_CLKGATE_LINK2_CORE_DIS |
    860       1.5   msaitoh 		    SK_Y2_CLKGATE_LINK1_PCI_DIS | SK_Y2_CLKGATE_LINK2_PCI_DIS);
    861       1.5   msaitoh 	else
    862       1.5   msaitoh 		sk_win_write_1(sc, SK_Y2_CLKGATE, 0);
    863       1.5   msaitoh 
    864       1.5   msaitoh 	CSR_WRITE_2(sc, SK_LINK_CTRL, SK_LINK_RESET_SET);
    865       1.5   msaitoh 	CSR_WRITE_2(sc, SK_LINK_CTRL + SK_WIN_LEN, SK_LINK_RESET_SET);
    866       1.5   msaitoh 	DELAY(1000);
    867       1.1       riz 	CSR_WRITE_2(sc, SK_LINK_CTRL, SK_LINK_RESET_CLEAR);
    868       1.5   msaitoh 	CSR_WRITE_2(sc, SK_LINK_CTRL + SK_WIN_LEN, SK_LINK_RESET_CLEAR);
    869       1.5   msaitoh 
    870       1.5   msaitoh 	sk_win_write_1(sc, SK_TESTCTL1, 1);
    871       1.1       riz 
    872       1.1       riz 	DPRINTFN(2, ("msk_reset: sk_csr=%x\n", CSR_READ_1(sc, SK_CSR)));
    873       1.1       riz 	DPRINTFN(2, ("msk_reset: sk_link_ctrl=%x\n",
    874       1.1       riz 		     CSR_READ_2(sc, SK_LINK_CTRL)));
    875       1.1       riz 
    876       1.1       riz 	/* Disable ASF */
    877       1.1       riz 	CSR_WRITE_1(sc, SK_Y2_ASF_CSR, SK_Y2_ASF_RESET);
    878       1.1       riz 	CSR_WRITE_2(sc, SK_CSR, SK_CSR_ASF_OFF);
    879       1.1       riz 
    880       1.1       riz 	/* Clear I2C IRQ noise */
    881       1.1       riz 	CSR_WRITE_4(sc, SK_I2CHWIRQ, 1);
    882       1.1       riz 
    883       1.1       riz 	/* Disable hardware timer */
    884       1.1       riz 	CSR_WRITE_1(sc, SK_TIMERCTL, SK_IMCTL_STOP);
    885       1.1       riz 	CSR_WRITE_1(sc, SK_TIMERCTL, SK_IMCTL_IRQ_CLEAR);
    886       1.1       riz 
    887       1.1       riz 	/* Disable descriptor polling */
    888       1.1       riz 	CSR_WRITE_4(sc, SK_DPT_TIMER_CTRL, SK_DPT_TCTL_STOP);
    889       1.1       riz 
    890       1.1       riz 	/* Disable time stamps */
    891       1.1       riz 	CSR_WRITE_1(sc, SK_TSTAMP_CTL, SK_TSTAMP_STOP);
    892       1.1       riz 	CSR_WRITE_1(sc, SK_TSTAMP_CTL, SK_TSTAMP_IRQ_CLEAR);
    893       1.1       riz 
    894       1.1       riz 	/* Enable RAM interface */
    895       1.1       riz 	sk_win_write_1(sc, SK_RAMCTL, SK_RAMCTL_UNRESET);
    896       1.1       riz 	for (reg = SK_TO0;reg <= SK_TO11; reg++)
    897       1.1       riz 		sk_win_write_1(sc, reg, 36);
    898       1.5   msaitoh 	sk_win_write_1(sc, SK_RAMCTL + (SK_WIN_LEN / 2), SK_RAMCTL_UNRESET);
    899       1.5   msaitoh 	for (reg = SK_TO0;reg <= SK_TO11; reg++)
    900       1.5   msaitoh 		sk_win_write_1(sc, reg + (SK_WIN_LEN / 2), 36);
    901       1.1       riz 
    902       1.1       riz 	/*
    903       1.1       riz 	 * Configure interrupt moderation. The moderation timer
    904       1.1       riz 	 * defers interrupts specified in the interrupt moderation
    905       1.1       riz 	 * timer mask based on the timeout specified in the interrupt
    906       1.1       riz 	 * moderation timer init register. Each bit in the timer
    907       1.1       riz 	 * register represents one tick, so to specify a timeout in
    908       1.1       riz 	 * microseconds, we have to multiply by the correct number of
    909       1.1       riz 	 * ticks-per-microsecond.
    910       1.1       riz 	 */
    911       1.1       riz 	switch (sc->sk_type) {
    912       1.1       riz 	case SK_YUKON_EC:
    913       1.6   msaitoh 	case SK_YUKON_EC_U:
    914       1.6   msaitoh 		imtimer_ticks = SK_IMTIMER_TICKS_YUKON_EC;
    915       1.6   msaitoh 		break;
    916       1.6   msaitoh 	case SK_YUKON_FE:
    917       1.6   msaitoh 		imtimer_ticks = SK_IMTIMER_TICKS_YUKON_FE;
    918       1.6   msaitoh 		break;
    919       1.1       riz 	case SK_YUKON_XL:
    920       1.6   msaitoh 		imtimer_ticks = SK_IMTIMER_TICKS_YUKON_XL;
    921       1.1       riz 		break;
    922       1.1       riz 	default:
    923       1.5   msaitoh 		imtimer_ticks = SK_IMTIMER_TICKS_YUKON;
    924       1.1       riz 	}
    925       1.1       riz 
    926       1.1       riz 	/* Reset status ring. */
    927       1.1       riz 	bzero((char *)sc->sk_status_ring,
    928       1.1       riz 	    MSK_STATUS_RING_CNT * sizeof(struct msk_status_desc));
    929       1.1       riz 	sc->sk_status_idx = 0;
    930       1.1       riz 
    931       1.1       riz 	sk_win_write_4(sc, SK_STAT_BMU_CSR, SK_STAT_BMU_RESET);
    932       1.1       riz 	sk_win_write_4(sc, SK_STAT_BMU_CSR, SK_STAT_BMU_UNRESET);
    933       1.1       riz 
    934       1.1       riz 	sk_win_write_2(sc, SK_STAT_BMU_LIDX, MSK_STATUS_RING_CNT - 1);
    935       1.1       riz 	sk_win_write_4(sc, SK_STAT_BMU_ADDRLO,
    936       1.1       riz 	    sc->sk_status_map->dm_segs[0].ds_addr);
    937       1.1       riz 	sk_win_write_4(sc, SK_STAT_BMU_ADDRHI,
    938       1.1       riz 	    (u_int64_t)sc->sk_status_map->dm_segs[0].ds_addr >> 32);
    939       1.6   msaitoh 	if ((sc->sk_workaround & SK_STAT_BMU_FIFOIWM) != 0) {
    940       1.6   msaitoh 		sk_win_write_2(sc, SK_STAT_BMU_TX_THRESH, SK_STAT_BMU_TXTHIDX_MSK);
    941       1.6   msaitoh 		sk_win_write_1(sc, SK_STAT_BMU_FIFOWM, 0x21);
    942       1.6   msaitoh 		sk_win_write_1(sc, SK_STAT_BMU_FIFOIWM, 0x07);
    943       1.6   msaitoh 	} else {
    944       1.6   msaitoh 		sk_win_write_2(sc, SK_STAT_BMU_TX_THRESH, 0x000a);
    945       1.6   msaitoh 		sk_win_write_1(sc, SK_STAT_BMU_FIFOWM, 0x10);
    946       1.6   msaitoh 		sk_win_write_1(sc, SK_STAT_BMU_FIFOIWM,
    947       1.6   msaitoh 		    ((sc->sk_workaround & SK_WA_4109) != 0) ? 0x10 : 0x04);
    948       1.6   msaitoh 		sk_win_write_4(sc, SK_Y2_ISR_ITIMERINIT, 0x0190); /* 3.2us on Yukon-EC */
    949       1.6   msaitoh 	}
    950       1.1       riz 
    951       1.1       riz #if 0
    952       1.1       riz 	sk_win_write_4(sc, SK_Y2_LEV_ITIMERINIT, SK_IM_USECS(100));
    953       1.6   msaitoh #endif
    954       1.1       riz 	sk_win_write_4(sc, SK_Y2_TX_ITIMERINIT, SK_IM_USECS(1000));
    955       1.1       riz 
    956       1.1       riz 	sk_win_write_4(sc, SK_STAT_BMU_CSR, SK_STAT_BMU_ON);
    957       1.1       riz 
    958       1.1       riz 	sk_win_write_1(sc, SK_Y2_LEV_ITIMERCTL, SK_IMCTL_START);
    959       1.1       riz 	sk_win_write_1(sc, SK_Y2_TX_ITIMERCTL, SK_IMCTL_START);
    960       1.1       riz 	sk_win_write_1(sc, SK_Y2_ISR_ITIMERCTL, SK_IMCTL_START);
    961       1.1       riz 
    962       1.1       riz 	msk_update_int_mod(sc);
    963       1.1       riz }
    964       1.1       riz 
    965       1.1       riz int
    966       1.3  christos msk_probe(struct device *parent, struct cfdata *match,
    967       1.2  christos     void *aux)
    968       1.1       riz {
    969       1.1       riz 	struct skc_attach_args *sa = aux;
    970       1.1       riz 
    971       1.1       riz 	if (sa->skc_port != SK_PORT_A && sa->skc_port != SK_PORT_B)
    972       1.1       riz 		return (0);
    973       1.1       riz 
    974       1.1       riz 	switch (sa->skc_type) {
    975       1.1       riz 	case SK_YUKON_XL:
    976       1.1       riz 	case SK_YUKON_EC_U:
    977       1.1       riz 	case SK_YUKON_EC:
    978       1.1       riz 	case SK_YUKON_FE:
    979       1.1       riz 		return (1);
    980       1.1       riz 	}
    981       1.1       riz 
    982       1.1       riz 	return (0);
    983       1.1       riz }
    984       1.1       riz 
    985       1.1       riz /*
    986       1.1       riz  * Each XMAC chip is attached as a separate logical IP interface.
    987       1.1       riz  * Single port cards will have only one logical interface of course.
    988       1.1       riz  */
    989       1.1       riz void
    990       1.1       riz msk_attach(struct device *parent, struct device *self, void *aux)
    991       1.1       riz {
    992       1.1       riz 	struct sk_if_softc *sc_if = (struct sk_if_softc *) self;
    993       1.1       riz 	struct sk_softc *sc = (struct sk_softc *)parent;
    994       1.1       riz 	struct skc_attach_args *sa = aux;
    995       1.1       riz 	struct ifnet *ifp;
    996       1.8  christos 	void *kva;
    997       1.1       riz 	bus_dma_segment_t seg;
    998       1.1       riz 	int i, rseg;
    999       1.1       riz 	u_int32_t chunk, val;
   1000       1.1       riz 
   1001       1.1       riz 	sc_if->sk_port = sa->skc_port;
   1002       1.1       riz 	sc_if->sk_softc = sc;
   1003       1.1       riz 	sc->sk_if[sa->skc_port] = sc_if;
   1004       1.1       riz 
   1005       1.1       riz 	DPRINTFN(2, ("begin msk_attach: port=%d\n", sc_if->sk_port));
   1006       1.1       riz 
   1007       1.1       riz 	/*
   1008       1.1       riz 	 * Get station address for this interface. Note that
   1009       1.1       riz 	 * dual port cards actually come with three station
   1010       1.1       riz 	 * addresses: one for each port, plus an extra. The
   1011       1.1       riz 	 * extra one is used by the SysKonnect driver software
   1012       1.1       riz 	 * as a 'virtual' station address for when both ports
   1013       1.1       riz 	 * are operating in failover mode. Currently we don't
   1014       1.1       riz 	 * use this extra address.
   1015       1.1       riz 	 */
   1016       1.1       riz 	for (i = 0; i < ETHER_ADDR_LEN; i++)
   1017       1.1       riz 		sc_if->sk_enaddr[i] =
   1018       1.1       riz 		    sk_win_read_1(sc, SK_MAC0_0 + (sa->skc_port * 8) + i);
   1019       1.1       riz 
   1020       1.1       riz 	aprint_normal(": Ethernet address %s\n",
   1021       1.1       riz 	    ether_sprintf(sc_if->sk_enaddr));
   1022       1.1       riz 
   1023       1.1       riz 	/*
   1024       1.1       riz 	 * Set up RAM buffer addresses. The NIC will have a certain
   1025       1.1       riz 	 * amount of SRAM on it, somewhere between 512K and 2MB. We
   1026       1.1       riz 	 * need to divide this up a) between the transmitter and
   1027       1.1       riz  	 * receiver and b) between the two XMACs, if this is a
   1028       1.1       riz 	 * dual port NIC. Our algorithm is to divide up the memory
   1029       1.1       riz 	 * evenly so that everyone gets a fair share.
   1030       1.1       riz 	 *
   1031       1.1       riz 	 * Just to be contrary, Yukon2 appears to have separate memory
   1032       1.1       riz 	 * for each MAC.
   1033       1.1       riz 	 */
   1034       1.1       riz 	chunk = sc->sk_ramsize  - (sc->sk_ramsize + 2) / 3;
   1035       1.1       riz 	val = sc->sk_rboff / sizeof(u_int64_t);
   1036       1.1       riz 	sc_if->sk_rx_ramstart = val;
   1037       1.1       riz 	val += (chunk / sizeof(u_int64_t));
   1038       1.1       riz 	sc_if->sk_rx_ramend = val - 1;
   1039       1.1       riz 	chunk = sc->sk_ramsize - chunk;
   1040       1.1       riz 	sc_if->sk_tx_ramstart = val;
   1041       1.1       riz 	val += (chunk / sizeof(u_int64_t));
   1042       1.1       riz 	sc_if->sk_tx_ramend = val - 1;
   1043       1.1       riz 
   1044       1.1       riz 	DPRINTFN(2, ("msk_attach: rx_ramstart=%#x rx_ramend=%#x\n"
   1045       1.1       riz 		     "           tx_ramstart=%#x tx_ramend=%#x\n",
   1046       1.1       riz 		     sc_if->sk_rx_ramstart, sc_if->sk_rx_ramend,
   1047       1.1       riz 		     sc_if->sk_tx_ramstart, sc_if->sk_tx_ramend));
   1048       1.1       riz 
   1049       1.1       riz 	/* Allocate the descriptor queues. */
   1050       1.1       riz 	if (bus_dmamem_alloc(sc->sc_dmatag, sizeof(struct msk_ring_data),
   1051       1.1       riz 	    PAGE_SIZE, 0, &seg, 1, &rseg, BUS_DMA_NOWAIT)) {
   1052       1.1       riz 		aprint_error(": can't alloc rx buffers\n");
   1053       1.1       riz 		goto fail;
   1054       1.1       riz 	}
   1055       1.1       riz 	if (bus_dmamem_map(sc->sc_dmatag, &seg, rseg,
   1056       1.1       riz 	    sizeof(struct msk_ring_data), &kva, BUS_DMA_NOWAIT)) {
   1057       1.1       riz 		aprint_error(": can't map dma buffers (%zu bytes)\n",
   1058       1.1       riz 		       sizeof(struct msk_ring_data));
   1059       1.1       riz 		goto fail_1;
   1060       1.1       riz 	}
   1061       1.1       riz 	if (bus_dmamap_create(sc->sc_dmatag, sizeof(struct msk_ring_data), 1,
   1062       1.1       riz 	    sizeof(struct msk_ring_data), 0, BUS_DMA_NOWAIT,
   1063       1.1       riz             &sc_if->sk_ring_map)) {
   1064       1.1       riz 		aprint_error(": can't create dma map\n");
   1065       1.1       riz 		goto fail_2;
   1066       1.1       riz 	}
   1067       1.1       riz 	if (bus_dmamap_load(sc->sc_dmatag, sc_if->sk_ring_map, kva,
   1068       1.1       riz 	    sizeof(struct msk_ring_data), NULL, BUS_DMA_NOWAIT)) {
   1069       1.1       riz 		aprint_error(": can't load dma map\n");
   1070       1.1       riz 		goto fail_3;
   1071       1.1       riz 	}
   1072       1.1       riz         sc_if->sk_rdata = (struct msk_ring_data *)kva;
   1073       1.1       riz 	bzero(sc_if->sk_rdata, sizeof(struct msk_ring_data));
   1074       1.1       riz 
   1075       1.1       riz 	ifp = &sc_if->sk_ethercom.ec_if;
   1076       1.1       riz 	/* Try to allocate memory for jumbo buffers. */
   1077       1.1       riz 	if (msk_alloc_jumbo_mem(sc_if)) {
   1078       1.1       riz 		aprint_error(": jumbo buffer allocation failed\n");
   1079       1.1       riz 		goto fail_3;
   1080       1.1       riz 	}
   1081       1.1       riz 	sc_if->sk_ethercom.ec_capabilities = ETHERCAP_VLAN_MTU
   1082       1.1       riz 		| ETHERCAP_JUMBO_MTU;
   1083       1.1       riz 
   1084       1.1       riz 	ifp->if_softc = sc_if;
   1085       1.1       riz 	ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
   1086       1.1       riz 	ifp->if_ioctl = msk_ioctl;
   1087       1.1       riz 	ifp->if_start = msk_start;
   1088       1.1       riz 	ifp->if_stop = msk_stop;
   1089       1.1       riz 	ifp->if_init = msk_init;
   1090       1.1       riz 	ifp->if_watchdog = msk_watchdog;
   1091       1.1       riz 	ifp->if_baudrate = 1000000000;
   1092       1.1       riz 	IFQ_SET_MAXLEN(&ifp->if_snd, MSK_TX_RING_CNT - 1);
   1093       1.1       riz 	IFQ_SET_READY(&ifp->if_snd);
   1094       1.1       riz 	strcpy(ifp->if_xname, sc_if->sk_dev.dv_xname);
   1095       1.1       riz 
   1096       1.1       riz 	/*
   1097       1.1       riz 	 * Do miibus setup.
   1098       1.1       riz 	 */
   1099       1.1       riz 	msk_init_yukon(sc_if);
   1100       1.1       riz 
   1101       1.1       riz  	DPRINTFN(2, ("msk_attach: 1\n"));
   1102       1.1       riz 
   1103       1.1       riz 	sc_if->sk_mii.mii_ifp = ifp;
   1104       1.5   msaitoh 	sc_if->sk_mii.mii_readreg = msk_miibus_readreg;
   1105       1.5   msaitoh 	sc_if->sk_mii.mii_writereg = msk_miibus_writereg;
   1106       1.5   msaitoh 	sc_if->sk_mii.mii_statchg = msk_miibus_statchg;
   1107       1.1       riz 
   1108       1.1       riz 	ifmedia_init(&sc_if->sk_mii.mii_media, 0,
   1109       1.1       riz 	    msk_ifmedia_upd, msk_ifmedia_sts);
   1110       1.1       riz 	mii_attach(self, &sc_if->sk_mii, 0xffffffff, MII_PHY_ANY,
   1111       1.5   msaitoh 	    MII_OFFSET_ANY, MIIF_DOPAUSE|MIIF_FORCEANEG);
   1112       1.1       riz 	if (LIST_FIRST(&sc_if->sk_mii.mii_phys) == NULL) {
   1113       1.1       riz 		aprint_error("%s: no PHY found!\n", sc_if->sk_dev.dv_xname);
   1114       1.1       riz 		ifmedia_add(&sc_if->sk_mii.mii_media, IFM_ETHER|IFM_MANUAL,
   1115       1.1       riz 			    0, NULL);
   1116       1.1       riz 		ifmedia_set(&sc_if->sk_mii.mii_media, IFM_ETHER|IFM_MANUAL);
   1117       1.1       riz 	} else
   1118       1.1       riz 		ifmedia_set(&sc_if->sk_mii.mii_media, IFM_ETHER|IFM_AUTO);
   1119       1.1       riz 
   1120       1.9        ad 	callout_init(&sc_if->sk_tick_ch, 0);
   1121       1.5   msaitoh 	callout_setfunc(&sc_if->sk_tick_ch, msk_tick, sc_if);
   1122       1.1       riz 	callout_schedule(&sc_if->sk_tick_ch, hz);
   1123       1.1       riz 
   1124       1.1       riz 	/*
   1125       1.1       riz 	 * Call MI attach routines.
   1126       1.1       riz 	 */
   1127       1.1       riz 	if_attach(ifp);
   1128       1.1       riz 	ether_ifattach(ifp, sc_if->sk_enaddr);
   1129       1.1       riz 
   1130       1.1       riz 	shutdownhook_establish(mskc_shutdown, sc);
   1131       1.1       riz 
   1132       1.1       riz #if NRND > 0
   1133       1.1       riz 	rnd_attach_source(&sc->rnd_source, sc->sk_dev.dv_xname,
   1134       1.1       riz 		RND_TYPE_NET, 0);
   1135       1.1       riz #endif
   1136       1.1       riz 
   1137       1.1       riz 	DPRINTFN(2, ("msk_attach: end\n"));
   1138       1.1       riz 	return;
   1139       1.1       riz 
   1140       1.1       riz fail_3:
   1141       1.1       riz 	bus_dmamap_destroy(sc->sc_dmatag, sc_if->sk_ring_map);
   1142       1.1       riz fail_2:
   1143       1.1       riz 	bus_dmamem_unmap(sc->sc_dmatag, kva, sizeof(struct msk_ring_data));
   1144       1.1       riz fail_1:
   1145       1.1       riz 	bus_dmamem_free(sc->sc_dmatag, &seg, rseg);
   1146       1.1       riz fail:
   1147       1.1       riz 	sc->sk_if[sa->skc_port] = NULL;
   1148       1.1       riz }
   1149       1.1       riz 
   1150       1.1       riz int
   1151       1.1       riz mskcprint(void *aux, const char *pnp)
   1152       1.1       riz {
   1153       1.1       riz 	struct skc_attach_args *sa = aux;
   1154       1.1       riz 
   1155       1.1       riz 	if (pnp)
   1156       1.1       riz 		aprint_normal("sk port %c at %s",
   1157       1.1       riz 		    (sa->skc_port == SK_PORT_A) ? 'A' : 'B', pnp);
   1158       1.1       riz 	else
   1159       1.1       riz 		aprint_normal(" port %c", (sa->skc_port == SK_PORT_A) ? 'A' : 'B');
   1160       1.1       riz 	return (UNCONF);
   1161       1.1       riz }
   1162       1.1       riz 
   1163       1.1       riz /*
   1164       1.1       riz  * Attach the interface. Allocate softc structures, do ifmedia
   1165       1.1       riz  * setup and ethernet/BPF attach.
   1166       1.1       riz  */
   1167       1.1       riz void
   1168       1.3  christos mskc_attach(struct device *parent, struct device *self, void *aux)
   1169       1.1       riz {
   1170       1.1       riz 	struct sk_softc *sc = (struct sk_softc *)self;
   1171       1.1       riz 	struct pci_attach_args *pa = aux;
   1172       1.1       riz 	struct skc_attach_args skca;
   1173       1.1       riz 	pci_chipset_tag_t pc = pa->pa_pc;
   1174       1.1       riz 	pcireg_t command, memtype;
   1175       1.1       riz 	pci_intr_handle_t ih;
   1176       1.1       riz 	const char *intrstr = NULL;
   1177       1.1       riz 	bus_size_t size;
   1178       1.1       riz 	int rc, sk_nodenum;
   1179       1.1       riz 	u_int8_t hw, skrs;
   1180       1.1       riz 	const char *revstr = NULL;
   1181       1.1       riz 	const struct sysctlnode *node;
   1182       1.8  christos 	void *kva;
   1183       1.1       riz 	bus_dma_segment_t seg;
   1184       1.1       riz 	int rseg;
   1185       1.1       riz 
   1186       1.1       riz 	DPRINTFN(2, ("begin mskc_attach\n"));
   1187       1.1       riz 
   1188       1.1       riz 	/*
   1189       1.1       riz 	 * Handle power management nonsense.
   1190       1.1       riz 	 */
   1191       1.1       riz 	command = pci_conf_read(pc, pa->pa_tag, SK_PCI_CAPID) & 0x000000FF;
   1192       1.1       riz 
   1193       1.1       riz 	if (command == 0x01) {
   1194       1.1       riz 		command = pci_conf_read(pc, pa->pa_tag, SK_PCI_PWRMGMTCTRL);
   1195       1.1       riz 		if (command & SK_PSTATE_MASK) {
   1196       1.1       riz 			u_int32_t		iobase, membase, irq;
   1197       1.1       riz 
   1198       1.1       riz 			/* Save important PCI config data. */
   1199       1.1       riz 			iobase = pci_conf_read(pc, pa->pa_tag, SK_PCI_LOIO);
   1200       1.1       riz 			membase = pci_conf_read(pc, pa->pa_tag, SK_PCI_LOMEM);
   1201       1.1       riz 			irq = pci_conf_read(pc, pa->pa_tag, SK_PCI_INTLINE);
   1202       1.1       riz 
   1203       1.1       riz 			/* Reset the power state. */
   1204       1.1       riz 			aprint_normal("%s chip is in D%d power mode "
   1205       1.1       riz 			    "-- setting to D0\n", sc->sk_dev.dv_xname,
   1206       1.1       riz 			    command & SK_PSTATE_MASK);
   1207       1.1       riz 			command &= 0xFFFFFFFC;
   1208       1.1       riz 			pci_conf_write(pc, pa->pa_tag,
   1209       1.1       riz 			    SK_PCI_PWRMGMTCTRL, command);
   1210       1.1       riz 
   1211       1.1       riz 			/* Restore PCI config data. */
   1212       1.1       riz 			pci_conf_write(pc, pa->pa_tag, SK_PCI_LOIO, iobase);
   1213       1.1       riz 			pci_conf_write(pc, pa->pa_tag, SK_PCI_LOMEM, membase);
   1214       1.1       riz 			pci_conf_write(pc, pa->pa_tag, SK_PCI_INTLINE, irq);
   1215       1.1       riz 		}
   1216       1.1       riz 	}
   1217       1.1       riz 
   1218       1.1       riz 	/*
   1219       1.1       riz 	 * Map control/status registers.
   1220       1.1       riz 	 */
   1221       1.1       riz 
   1222       1.1       riz 	memtype = pci_mapreg_type(pc, pa->pa_tag, SK_PCI_LOMEM);
   1223       1.1       riz 	switch (memtype) {
   1224       1.1       riz 	case PCI_MAPREG_TYPE_MEM | PCI_MAPREG_MEM_TYPE_32BIT:
   1225       1.1       riz 	case PCI_MAPREG_TYPE_MEM | PCI_MAPREG_MEM_TYPE_64BIT:
   1226       1.1       riz 		if (pci_mapreg_map(pa, SK_PCI_LOMEM,
   1227       1.1       riz 				   memtype, 0, &sc->sk_btag, &sc->sk_bhandle,
   1228       1.1       riz 				   NULL, &size) == 0)
   1229       1.1       riz 			break;
   1230       1.1       riz 	default:
   1231       1.1       riz 		aprint_error(": can't map mem space\n");
   1232       1.1       riz 		return;
   1233       1.1       riz 	}
   1234       1.1       riz 
   1235       1.1       riz 	sc->sc_dmatag = pa->pa_dmat;
   1236       1.1       riz 
   1237       1.1       riz 	sc->sk_type = sk_win_read_1(sc, SK_CHIPVER);
   1238       1.1       riz 	sc->sk_rev = (sk_win_read_1(sc, SK_CONFIG) >> 4);
   1239       1.1       riz 
   1240       1.1       riz 	/* bail out here if chip is not recognized */
   1241       1.5   msaitoh 	if (!(SK_IS_YUKON2(sc))) {
   1242       1.1       riz 		aprint_error(": unknown chip type: %d\n", sc->sk_type);
   1243       1.1       riz 		goto fail_1;
   1244       1.1       riz 	}
   1245       1.1       riz 	DPRINTFN(2, ("mskc_attach: allocate interrupt\n"));
   1246       1.1       riz 
   1247       1.1       riz 	/* Allocate interrupt */
   1248       1.1       riz 	if (pci_intr_map(pa, &ih)) {
   1249       1.1       riz 		aprint_error(": couldn't map interrupt\n");
   1250       1.1       riz 		goto fail_1;
   1251       1.1       riz 	}
   1252       1.1       riz 
   1253       1.1       riz 	intrstr = pci_intr_string(pc, ih);
   1254       1.1       riz 	sc->sk_intrhand = pci_intr_establish(pc, ih, IPL_NET, msk_intr, sc);
   1255       1.1       riz 	if (sc->sk_intrhand == NULL) {
   1256       1.1       riz 		aprint_error(": couldn't establish interrupt");
   1257       1.1       riz 		if (intrstr != NULL)
   1258       1.1       riz 			aprint_error(" at %s", intrstr);
   1259       1.1       riz 		aprint_error("\n");
   1260       1.1       riz 		goto fail_1;
   1261       1.1       riz 	}
   1262       1.1       riz 
   1263       1.1       riz 	if (bus_dmamem_alloc(sc->sc_dmatag,
   1264       1.1       riz 	    MSK_STATUS_RING_CNT * sizeof(struct msk_status_desc),
   1265       1.1       riz 	    PAGE_SIZE, 0, &seg, 1, &rseg, BUS_DMA_NOWAIT)) {
   1266       1.1       riz 		aprint_error(": can't alloc status buffers\n");
   1267       1.1       riz 		goto fail_2;
   1268       1.1       riz 	}
   1269       1.1       riz 
   1270       1.1       riz 	if (bus_dmamem_map(sc->sc_dmatag, &seg, rseg,
   1271       1.1       riz 	    MSK_STATUS_RING_CNT * sizeof(struct msk_status_desc),
   1272       1.1       riz 	    &kva, BUS_DMA_NOWAIT)) {
   1273       1.1       riz 		aprint_error(": can't map dma buffers (%zu bytes)\n",
   1274       1.1       riz 		    MSK_STATUS_RING_CNT * sizeof(struct msk_status_desc));
   1275       1.1       riz 		goto fail_3;
   1276       1.1       riz 	}
   1277       1.1       riz 	if (bus_dmamap_create(sc->sc_dmatag,
   1278       1.1       riz 	    MSK_STATUS_RING_CNT * sizeof(struct msk_status_desc), 1,
   1279       1.1       riz 	    MSK_STATUS_RING_CNT * sizeof(struct msk_status_desc), 0,
   1280       1.1       riz 	    BUS_DMA_NOWAIT, &sc->sk_status_map)) {
   1281       1.1       riz 		aprint_error(": can't create dma map\n");
   1282       1.1       riz 		goto fail_4;
   1283       1.1       riz 	}
   1284       1.1       riz 	if (bus_dmamap_load(sc->sc_dmatag, sc->sk_status_map, kva,
   1285       1.1       riz 	    MSK_STATUS_RING_CNT * sizeof(struct msk_status_desc),
   1286       1.1       riz 	    NULL, BUS_DMA_NOWAIT)) {
   1287       1.1       riz 		aprint_error(": can't load dma map\n");
   1288       1.1       riz 		goto fail_5;
   1289       1.1       riz 	}
   1290       1.1       riz 	sc->sk_status_ring = (struct msk_status_desc *)kva;
   1291       1.1       riz 	bzero(sc->sk_status_ring,
   1292       1.1       riz 	    MSK_STATUS_RING_CNT * sizeof(struct msk_status_desc));
   1293       1.1       riz 
   1294       1.1       riz 	/* Reset the adapter. */
   1295       1.1       riz 	msk_reset(sc);
   1296       1.1       riz 
   1297       1.1       riz 	skrs = sk_win_read_1(sc, SK_EPROM0);
   1298       1.1       riz 	if (skrs == 0x00)
   1299       1.1       riz 		sc->sk_ramsize = 0x20000;
   1300       1.1       riz 	else
   1301       1.1       riz 		sc->sk_ramsize = skrs * (1<<12);
   1302       1.1       riz 	sc->sk_rboff = SK_RBOFF_0;
   1303       1.1       riz 
   1304       1.1       riz 	DPRINTFN(2, ("mskc_attach: ramsize=%d (%dk), rboff=%d\n",
   1305       1.1       riz 		     sc->sk_ramsize, sc->sk_ramsize / 1024,
   1306       1.1       riz 		     sc->sk_rboff));
   1307       1.1       riz 
   1308       1.1       riz 	switch (sc->sk_type) {
   1309       1.1       riz 	case SK_YUKON_XL:
   1310       1.5   msaitoh 		sc->sk_name = "Yukon-2 XL";
   1311       1.1       riz 		break;
   1312       1.1       riz 	case SK_YUKON_EC_U:
   1313       1.5   msaitoh 		sc->sk_name = "Yukon-2 EC Ultra";
   1314       1.1       riz 		break;
   1315       1.1       riz 	case SK_YUKON_EC:
   1316       1.5   msaitoh 		sc->sk_name = "Yukon-2 EC";
   1317       1.1       riz 		break;
   1318       1.1       riz 	case SK_YUKON_FE:
   1319       1.5   msaitoh 		sc->sk_name = "Yukon-2 FE";
   1320       1.1       riz 		break;
   1321       1.1       riz 	default:
   1322       1.5   msaitoh 		sc->sk_name = "Yukon (Unknown)";
   1323       1.1       riz 	}
   1324       1.1       riz 
   1325       1.1       riz 	if (sc->sk_type == SK_YUKON_XL) {
   1326       1.1       riz 		switch (sc->sk_rev) {
   1327       1.1       riz 		case SK_YUKON_XL_REV_A0:
   1328       1.6   msaitoh 			sc->sk_workaround = 0;
   1329       1.1       riz 			revstr = "A0";
   1330       1.1       riz 			break;
   1331       1.1       riz 		case SK_YUKON_XL_REV_A1:
   1332       1.6   msaitoh 			sc->sk_workaround = SK_WA_4109;
   1333       1.1       riz 			revstr = "A1";
   1334       1.1       riz 			break;
   1335       1.1       riz 		case SK_YUKON_XL_REV_A2:
   1336       1.6   msaitoh 			sc->sk_workaround = SK_WA_4109;
   1337       1.1       riz 			revstr = "A2";
   1338       1.1       riz 			break;
   1339       1.1       riz 		case SK_YUKON_XL_REV_A3:
   1340       1.6   msaitoh 			sc->sk_workaround = SK_WA_4109;
   1341       1.1       riz 			revstr = "A3";
   1342       1.1       riz 			break;
   1343       1.1       riz 		default:
   1344       1.6   msaitoh 			sc->sk_workaround = 0;
   1345       1.6   msaitoh 			break;
   1346       1.1       riz 		}
   1347       1.1       riz 	}
   1348       1.1       riz 
   1349       1.1       riz 	if (sc->sk_type == SK_YUKON_EC) {
   1350       1.1       riz 		switch (sc->sk_rev) {
   1351       1.1       riz 		case SK_YUKON_EC_REV_A1:
   1352       1.6   msaitoh 			sc->sk_workaround = SK_WA_43_418 | SK_WA_4109;
   1353       1.1       riz 			revstr = "A1";
   1354       1.1       riz 			break;
   1355       1.1       riz 		case SK_YUKON_EC_REV_A2:
   1356       1.6   msaitoh 			sc->sk_workaround = SK_WA_4109;
   1357       1.1       riz 			revstr = "A2";
   1358       1.1       riz 			break;
   1359       1.1       riz 		case SK_YUKON_EC_REV_A3:
   1360       1.6   msaitoh 			sc->sk_workaround = SK_WA_4109;
   1361       1.1       riz 			revstr = "A3";
   1362       1.1       riz 			break;
   1363       1.1       riz 		default:
   1364       1.6   msaitoh 			sc->sk_workaround = 0;
   1365       1.6   msaitoh 			break;
   1366       1.6   msaitoh 		}
   1367       1.6   msaitoh 	}
   1368       1.6   msaitoh 
   1369       1.6   msaitoh 	if (sc->sk_type == SK_YUKON_FE) {
   1370       1.6   msaitoh 		sc->sk_workaround = SK_WA_4109;
   1371       1.6   msaitoh 		switch (sc->sk_rev) {
   1372       1.6   msaitoh 		case SK_YUKON_FE_REV_A1:
   1373       1.6   msaitoh 			revstr = "A1";
   1374       1.6   msaitoh 			break;
   1375       1.6   msaitoh 		case SK_YUKON_FE_REV_A2:
   1376       1.6   msaitoh 			revstr = "A2";
   1377       1.6   msaitoh 			break;
   1378       1.6   msaitoh 		default:
   1379       1.6   msaitoh 			sc->sk_workaround = 0;
   1380       1.6   msaitoh 			break;
   1381       1.1       riz 		}
   1382       1.1       riz 	}
   1383       1.1       riz 
   1384       1.1       riz 	if (sc->sk_type == SK_YUKON_EC_U) {
   1385       1.6   msaitoh 		sc->sk_workaround = SK_WA_4109;
   1386       1.1       riz 		switch (sc->sk_rev) {
   1387       1.1       riz 		case SK_YUKON_EC_U_REV_A0:
   1388       1.1       riz 			revstr = "A0";
   1389       1.1       riz 			break;
   1390       1.1       riz 		case SK_YUKON_EC_U_REV_A1:
   1391       1.1       riz 			revstr = "A1";
   1392       1.1       riz 			break;
   1393       1.6   msaitoh 		case SK_YUKON_EC_U_REV_B0:
   1394       1.6   msaitoh 			revstr = "B0";
   1395       1.6   msaitoh 			break;
   1396       1.1       riz 		default:
   1397       1.6   msaitoh 			sc->sk_workaround = 0;
   1398       1.6   msaitoh 			break;
   1399       1.1       riz 		}
   1400       1.1       riz 	}
   1401       1.1       riz 
   1402       1.1       riz 	/* Announce the product name. */
   1403       1.1       riz 	aprint_normal(", %s", sc->sk_name);
   1404       1.1       riz 	if (revstr != NULL)
   1405       1.1       riz 		aprint_normal(" rev. %s", revstr);
   1406       1.1       riz 	aprint_normal(" (0x%x): %s\n", sc->sk_rev, intrstr);
   1407       1.1       riz 
   1408       1.1       riz 	sc->sk_macs = 1;
   1409       1.1       riz 
   1410       1.1       riz 	hw = sk_win_read_1(sc, SK_Y2_HWRES);
   1411       1.1       riz 	if ((hw & SK_Y2_HWRES_LINK_MASK) == SK_Y2_HWRES_LINK_DUAL) {
   1412       1.1       riz 		if ((sk_win_read_1(sc, SK_Y2_CLKGATE) &
   1413       1.1       riz 		    SK_Y2_CLKGATE_LINK2_INACTIVE) == 0)
   1414       1.1       riz 			sc->sk_macs++;
   1415       1.1       riz 	}
   1416       1.1       riz 
   1417       1.1       riz 	skca.skc_port = SK_PORT_A;
   1418       1.1       riz 	skca.skc_type = sc->sk_type;
   1419       1.1       riz 	skca.skc_rev = sc->sk_rev;
   1420       1.1       riz 	(void)config_found(&sc->sk_dev, &skca, mskcprint);
   1421       1.1       riz 
   1422       1.1       riz 	if (sc->sk_macs > 1) {
   1423       1.1       riz 		skca.skc_port = SK_PORT_B;
   1424       1.1       riz 		skca.skc_type = sc->sk_type;
   1425       1.1       riz 		skca.skc_rev = sc->sk_rev;
   1426       1.1       riz 		(void)config_found(&sc->sk_dev, &skca, mskcprint);
   1427       1.1       riz 	}
   1428       1.1       riz 
   1429       1.1       riz 	/* Turn on the 'driver is loaded' LED. */
   1430       1.1       riz 	CSR_WRITE_2(sc, SK_LED, SK_LED_GREEN_ON);
   1431       1.1       riz 
   1432       1.1       riz 	/* skc sysctl setup */
   1433       1.1       riz 
   1434       1.1       riz 	sc->sk_int_mod = SK_IM_DEFAULT;
   1435       1.1       riz 	sc->sk_int_mod_pending = 0;
   1436       1.1       riz 
   1437       1.1       riz 	if ((rc = sysctl_createv(&sc->sk_clog, 0, NULL, &node,
   1438       1.1       riz 	    0, CTLTYPE_NODE, sc->sk_dev.dv_xname,
   1439       1.1       riz 	    SYSCTL_DESCR("mskc per-controller controls"),
   1440       1.1       riz 	    NULL, 0, NULL, 0, CTL_HW, msk_root_num, CTL_CREATE,
   1441       1.1       riz 	    CTL_EOL)) != 0) {
   1442       1.1       riz 		aprint_normal("%s: couldn't create sysctl node\n",
   1443       1.1       riz 		    sc->sk_dev.dv_xname);
   1444       1.1       riz 		goto fail_6;
   1445       1.1       riz 	}
   1446       1.1       riz 
   1447       1.1       riz 	sk_nodenum = node->sysctl_num;
   1448       1.1       riz 
   1449       1.1       riz 	/* interrupt moderation time in usecs */
   1450       1.1       riz 	if ((rc = sysctl_createv(&sc->sk_clog, 0, NULL, &node,
   1451       1.1       riz 	    CTLFLAG_READWRITE,
   1452       1.1       riz 	    CTLTYPE_INT, "int_mod",
   1453       1.1       riz 	    SYSCTL_DESCR("msk interrupt moderation timer"),
   1454       1.1       riz 	    msk_sysctl_handler, 0, sc,
   1455       1.1       riz 	    0, CTL_HW, msk_root_num, sk_nodenum, CTL_CREATE,
   1456       1.1       riz 	    CTL_EOL)) != 0) {
   1457       1.1       riz 		aprint_normal("%s: couldn't create int_mod sysctl node\n",
   1458       1.1       riz 		    sc->sk_dev.dv_xname);
   1459       1.1       riz 		goto fail_6;
   1460       1.1       riz 	}
   1461       1.1       riz 
   1462       1.1       riz 	return;
   1463       1.1       riz 
   1464       1.1       riz  fail_6:
   1465       1.1       riz 	bus_dmamap_unload(sc->sc_dmatag, sc->sk_status_map);
   1466       1.1       riz fail_5:
   1467       1.1       riz 	bus_dmamap_destroy(sc->sc_dmatag, sc->sk_status_map);
   1468       1.1       riz fail_4:
   1469       1.1       riz 	bus_dmamem_unmap(sc->sc_dmatag, kva,
   1470       1.1       riz 	    MSK_STATUS_RING_CNT * sizeof(struct msk_status_desc));
   1471       1.1       riz fail_3:
   1472       1.1       riz 	bus_dmamem_free(sc->sc_dmatag, &seg, rseg);
   1473       1.1       riz fail_2:
   1474       1.1       riz 	pci_intr_disestablish(pc, sc->sk_intrhand);
   1475       1.1       riz fail_1:
   1476       1.1       riz 	bus_space_unmap(sc->sk_btag, sc->sk_bhandle, size);
   1477       1.1       riz }
   1478       1.1       riz 
   1479       1.1       riz int
   1480       1.1       riz msk_encap(struct sk_if_softc *sc_if, struct mbuf *m_head, u_int32_t *txidx)
   1481       1.1       riz {
   1482       1.1       riz 	struct sk_softc		*sc = sc_if->sk_softc;
   1483       1.1       riz 	struct msk_tx_desc		*f = NULL;
   1484       1.5   msaitoh 	u_int32_t		frag, cur;
   1485       1.1       riz 	int			i;
   1486       1.1       riz 	struct sk_txmap_entry	*entry;
   1487       1.1       riz 	bus_dmamap_t		txmap;
   1488       1.1       riz 
   1489       1.1       riz 	DPRINTFN(2, ("msk_encap\n"));
   1490       1.1       riz 
   1491       1.1       riz 	entry = SIMPLEQ_FIRST(&sc_if->sk_txmap_head);
   1492       1.1       riz 	if (entry == NULL) {
   1493       1.1       riz 		DPRINTFN(2, ("msk_encap: no txmap available\n"));
   1494       1.1       riz 		return (ENOBUFS);
   1495       1.1       riz 	}
   1496       1.1       riz 	txmap = entry->dmamap;
   1497       1.1       riz 
   1498       1.1       riz 	cur = frag = *txidx;
   1499       1.1       riz 
   1500       1.1       riz #ifdef MSK_DEBUG
   1501       1.1       riz 	if (mskdebug >= 2)
   1502       1.1       riz 		msk_dump_mbuf(m_head);
   1503       1.1       riz #endif
   1504       1.1       riz 
   1505       1.1       riz 	/*
   1506       1.1       riz 	 * Start packing the mbufs in this chain into
   1507       1.1       riz 	 * the fragment pointers. Stop when we run out
   1508       1.1       riz 	 * of fragments or hit the end of the mbuf chain.
   1509       1.1       riz 	 */
   1510       1.1       riz 	if (bus_dmamap_load_mbuf(sc->sc_dmatag, txmap, m_head,
   1511       1.1       riz 	    BUS_DMA_NOWAIT)) {
   1512       1.1       riz 		DPRINTFN(2, ("msk_encap: dmamap failed\n"));
   1513       1.1       riz 		return (ENOBUFS);
   1514       1.1       riz 	}
   1515       1.1       riz 
   1516       1.5   msaitoh 	if (txmap->dm_nsegs > (MSK_TX_RING_CNT - sc_if->sk_cdata.sk_tx_cnt - 2)) {
   1517       1.5   msaitoh 		DPRINTFN(2, ("msk_encap: too few descriptors free\n"));
   1518       1.5   msaitoh 		bus_dmamap_unload(sc->sc_dmatag, txmap);
   1519       1.5   msaitoh 		return (ENOBUFS);
   1520       1.5   msaitoh 	}
   1521       1.5   msaitoh 
   1522       1.1       riz 	DPRINTFN(2, ("msk_encap: dm_nsegs=%d\n", txmap->dm_nsegs));
   1523       1.1       riz 
   1524       1.1       riz 	/* Sync the DMA map. */
   1525       1.1       riz 	bus_dmamap_sync(sc->sc_dmatag, txmap, 0, txmap->dm_mapsize,
   1526       1.1       riz 	    BUS_DMASYNC_PREWRITE);
   1527       1.1       riz 
   1528       1.1       riz 	for (i = 0; i < txmap->dm_nsegs; i++) {
   1529       1.1       riz 		f = &sc_if->sk_rdata->sk_tx_ring[frag];
   1530       1.1       riz 		f->sk_addr = htole32(txmap->dm_segs[i].ds_addr);
   1531       1.1       riz 		f->sk_len = htole16(txmap->dm_segs[i].ds_len);
   1532       1.1       riz 		f->sk_ctl = 0;
   1533       1.5   msaitoh 		if (i == 0)
   1534       1.1       riz 			f->sk_opcode = SK_Y2_TXOPC_PACKET;
   1535       1.1       riz 		else
   1536       1.1       riz 			f->sk_opcode = SK_Y2_TXOPC_BUFFER | SK_Y2_TXOPC_OWN;
   1537       1.1       riz 		cur = frag;
   1538       1.1       riz 		SK_INC(frag, MSK_TX_RING_CNT);
   1539       1.1       riz 	}
   1540       1.1       riz 
   1541       1.1       riz 	sc_if->sk_cdata.sk_tx_chain[cur].sk_mbuf = m_head;
   1542       1.1       riz 	SIMPLEQ_REMOVE_HEAD(&sc_if->sk_txmap_head, link);
   1543       1.1       riz 
   1544       1.1       riz 	sc_if->sk_cdata.sk_tx_map[cur] = entry;
   1545       1.1       riz 	sc_if->sk_rdata->sk_tx_ring[cur].sk_ctl |= SK_Y2_TXCTL_LASTFRAG;
   1546       1.1       riz 
   1547       1.1       riz 	/* Sync descriptors before handing to chip */
   1548       1.1       riz 	MSK_CDTXSYNC(sc_if, *txidx, txmap->dm_nsegs,
   1549       1.1       riz             BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
   1550       1.1       riz 
   1551       1.1       riz 	sc_if->sk_rdata->sk_tx_ring[*txidx].sk_opcode |= SK_Y2_TXOPC_OWN;
   1552       1.1       riz 
   1553       1.1       riz 	/* Sync first descriptor to hand it off */
   1554       1.1       riz 	MSK_CDTXSYNC(sc_if, *txidx, 1,
   1555       1.1       riz 	    BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
   1556       1.1       riz 
   1557       1.5   msaitoh 	sc_if->sk_cdata.sk_tx_cnt += txmap->dm_nsegs;
   1558       1.1       riz 
   1559       1.1       riz #ifdef MSK_DEBUG
   1560       1.1       riz 	if (mskdebug >= 2) {
   1561       1.1       riz 		struct msk_tx_desc *le;
   1562       1.1       riz 		u_int32_t idx;
   1563       1.1       riz 		for (idx = *txidx; idx != frag; SK_INC(idx, MSK_TX_RING_CNT)) {
   1564       1.1       riz 			le = &sc_if->sk_rdata->sk_tx_ring[idx];
   1565       1.1       riz 			msk_dump_txdesc(le, idx);
   1566       1.1       riz 		}
   1567       1.1       riz 	}
   1568       1.1       riz #endif
   1569       1.1       riz 
   1570       1.1       riz 	*txidx = frag;
   1571       1.1       riz 
   1572       1.1       riz 	DPRINTFN(2, ("msk_encap: completed successfully\n"));
   1573       1.1       riz 
   1574       1.1       riz 	return (0);
   1575       1.1       riz }
   1576       1.1       riz 
   1577       1.1       riz void
   1578       1.1       riz msk_start(struct ifnet *ifp)
   1579       1.1       riz {
   1580       1.1       riz         struct sk_if_softc	*sc_if = ifp->if_softc;
   1581       1.1       riz         struct mbuf		*m_head = NULL;
   1582       1.1       riz         u_int32_t		idx = sc_if->sk_cdata.sk_tx_prod;
   1583       1.1       riz 	int			pkts = 0;
   1584       1.1       riz 
   1585       1.1       riz 	DPRINTFN(2, ("msk_start\n"));
   1586       1.1       riz 
   1587       1.1       riz 	while (sc_if->sk_cdata.sk_tx_chain[idx].sk_mbuf == NULL) {
   1588       1.1       riz 		IFQ_POLL(&ifp->if_snd, m_head);
   1589       1.1       riz 		if (m_head == NULL)
   1590       1.1       riz 			break;
   1591       1.1       riz 
   1592       1.1       riz 		/*
   1593       1.1       riz 		 * Pack the data into the transmit ring. If we
   1594       1.1       riz 		 * don't have room, set the OACTIVE flag and wait
   1595       1.1       riz 		 * for the NIC to drain the ring.
   1596       1.1       riz 		 */
   1597       1.1       riz 		if (msk_encap(sc_if, m_head, &idx)) {
   1598       1.1       riz 			ifp->if_flags |= IFF_OACTIVE;
   1599       1.1       riz 			break;
   1600       1.1       riz 		}
   1601       1.1       riz 
   1602       1.1       riz 		/* now we are committed to transmit the packet */
   1603       1.1       riz 		IFQ_DEQUEUE(&ifp->if_snd, m_head);
   1604       1.1       riz 		pkts++;
   1605       1.1       riz 
   1606       1.1       riz 		/*
   1607       1.1       riz 		 * If there's a BPF listener, bounce a copy of this frame
   1608       1.1       riz 		 * to him.
   1609       1.1       riz 		 */
   1610       1.1       riz #if NBPFILTER > 0
   1611       1.1       riz 		if (ifp->if_bpf)
   1612       1.1       riz 			bpf_mtap(ifp->if_bpf, m_head);
   1613       1.1       riz #endif
   1614       1.1       riz 	}
   1615       1.1       riz 	if (pkts == 0)
   1616       1.1       riz 		return;
   1617       1.1       riz 
   1618       1.1       riz 	/* Transmit */
   1619       1.1       riz 	if (idx != sc_if->sk_cdata.sk_tx_prod) {
   1620       1.1       riz 		sc_if->sk_cdata.sk_tx_prod = idx;
   1621       1.1       riz 		SK_IF_WRITE_2(sc_if, 1, SK_TXQA1_Y2_PREF_PUTIDX, idx);
   1622       1.1       riz 
   1623       1.1       riz 		/* Set a timeout in case the chip goes out to lunch. */
   1624       1.1       riz 		ifp->if_timer = 5;
   1625       1.1       riz 	}
   1626       1.1       riz }
   1627       1.1       riz 
   1628       1.1       riz void
   1629       1.1       riz msk_watchdog(struct ifnet *ifp)
   1630       1.1       riz {
   1631       1.1       riz 	struct sk_if_softc *sc_if = ifp->if_softc;
   1632       1.6   msaitoh 	u_int32_t reg;
   1633       1.6   msaitoh 	int idx;
   1634       1.1       riz 
   1635       1.1       riz 	/*
   1636       1.1       riz 	 * Reclaim first as there is a possibility of losing Tx completion
   1637       1.1       riz 	 * interrupts.
   1638       1.1       riz 	 */
   1639       1.6   msaitoh 	if (sc_if->sk_port == SK_PORT_A)
   1640       1.6   msaitoh 		reg = SK_STAT_BMU_TXA1_RIDX;
   1641       1.6   msaitoh 	else
   1642       1.6   msaitoh 		reg = SK_STAT_BMU_TXA2_RIDX;
   1643       1.6   msaitoh 
   1644       1.6   msaitoh 	idx = sk_win_read_2(sc_if->sk_softc, reg);
   1645       1.6   msaitoh 	if (sc_if->sk_cdata.sk_tx_cons != idx) {
   1646       1.6   msaitoh 		msk_txeof(sc_if, idx);
   1647       1.6   msaitoh 		if (sc_if->sk_cdata.sk_tx_cnt != 0) {
   1648       1.6   msaitoh 			aprint_error("%s: watchdog timeout\n", sc_if->sk_dev.dv_xname);
   1649       1.6   msaitoh 
   1650       1.6   msaitoh 			ifp->if_oerrors++;
   1651       1.6   msaitoh 
   1652       1.6   msaitoh 			/* XXX Resets both ports; we shouldn't do that. */
   1653       1.6   msaitoh 			msk_reset(sc_if->sk_softc);
   1654       1.6   msaitoh 			msk_init(ifp);
   1655       1.6   msaitoh 		}
   1656       1.1       riz 	}
   1657       1.1       riz }
   1658       1.1       riz 
   1659       1.1       riz void
   1660       1.1       riz mskc_shutdown(void *v)
   1661       1.1       riz {
   1662       1.1       riz 	struct sk_softc		*sc = v;
   1663       1.1       riz 
   1664       1.1       riz 	DPRINTFN(2, ("msk_shutdown\n"));
   1665       1.1       riz 
   1666       1.1       riz 	/* Turn off the 'driver is loaded' LED. */
   1667       1.1       riz 	CSR_WRITE_2(sc, SK_LED, SK_LED_GREEN_OFF);
   1668       1.1       riz 
   1669       1.1       riz 	msk_reset(sc);
   1670       1.1       riz }
   1671       1.1       riz 
   1672       1.1       riz __inline int
   1673       1.3  christos msk_rxvalid(struct sk_softc *sc, u_int32_t stat, u_int32_t len)
   1674       1.1       riz {
   1675       1.1       riz 	if ((stat & (YU_RXSTAT_CRCERR | YU_RXSTAT_LONGERR |
   1676       1.1       riz 	    YU_RXSTAT_MIIERR | YU_RXSTAT_BADFC | YU_RXSTAT_GOODFC |
   1677       1.1       riz 	    YU_RXSTAT_JABBER)) != 0 ||
   1678       1.1       riz 	    (stat & YU_RXSTAT_RXOK) != YU_RXSTAT_RXOK ||
   1679       1.1       riz 	    YU_RXSTAT_BYTES(stat) != len)
   1680       1.1       riz 		return (0);
   1681       1.1       riz 
   1682       1.1       riz 	return (1);
   1683       1.1       riz }
   1684       1.1       riz 
   1685       1.1       riz void
   1686       1.1       riz msk_rxeof(struct sk_if_softc *sc_if, u_int16_t len, u_int32_t rxstat)
   1687       1.1       riz {
   1688       1.1       riz 	struct sk_softc		*sc = sc_if->sk_softc;
   1689       1.1       riz 	struct ifnet		*ifp = &sc_if->sk_ethercom.ec_if;
   1690       1.1       riz 	struct mbuf		*m;
   1691       1.1       riz 	struct sk_chain		*cur_rx;
   1692       1.1       riz 	int			cur, total_len = len;
   1693       1.1       riz 	bus_dmamap_t		dmamap;
   1694       1.1       riz 
   1695       1.1       riz 	DPRINTFN(2, ("msk_rxeof\n"));
   1696       1.1       riz 
   1697       1.1       riz 	cur = sc_if->sk_cdata.sk_rx_cons;
   1698       1.1       riz 	SK_INC(sc_if->sk_cdata.sk_rx_cons, MSK_RX_RING_CNT);
   1699       1.1       riz 	SK_INC(sc_if->sk_cdata.sk_rx_prod, MSK_RX_RING_CNT);
   1700       1.1       riz 
   1701       1.1       riz 	/* Sync the descriptor */
   1702       1.1       riz 	MSK_CDRXSYNC(sc_if, cur, BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE);
   1703       1.1       riz 
   1704       1.1       riz 	cur_rx = &sc_if->sk_cdata.sk_rx_chain[cur];
   1705       1.1       riz 	dmamap = sc_if->sk_cdata.sk_rx_jumbo_map;
   1706       1.1       riz 
   1707       1.1       riz 	bus_dmamap_sync(sc_if->sk_softc->sc_dmatag, dmamap, 0,
   1708       1.1       riz 	    dmamap->dm_mapsize, BUS_DMASYNC_POSTREAD);
   1709       1.1       riz 
   1710       1.1       riz 	m = cur_rx->sk_mbuf;
   1711       1.1       riz 	cur_rx->sk_mbuf = NULL;
   1712       1.1       riz 
   1713       1.1       riz 	if (total_len < SK_MIN_FRAMELEN ||
   1714       1.1       riz 	    total_len > SK_JUMBO_FRAMELEN ||
   1715       1.1       riz 	    msk_rxvalid(sc, rxstat, total_len) == 0) {
   1716       1.1       riz 		ifp->if_ierrors++;
   1717       1.1       riz 		msk_newbuf(sc_if, cur, m, dmamap);
   1718       1.1       riz 		return;
   1719       1.1       riz 	}
   1720       1.1       riz 
   1721       1.1       riz 	/*
   1722       1.1       riz 	 * Try to allocate a new jumbo buffer. If that fails, copy the
   1723       1.1       riz 	 * packet to mbufs and put the jumbo buffer back in the ring
   1724       1.1       riz 	 * so it can be re-used. If allocating mbufs fails, then we
   1725       1.1       riz 	 * have to drop the packet.
   1726       1.1       riz 	 */
   1727       1.1       riz 	if (msk_newbuf(sc_if, cur, NULL, dmamap) == ENOBUFS) {
   1728       1.1       riz 		struct mbuf		*m0;
   1729       1.1       riz 		m0 = m_devget(mtod(m, char *) - ETHER_ALIGN,
   1730       1.1       riz 		    total_len + ETHER_ALIGN, 0, ifp, NULL);
   1731       1.1       riz 		msk_newbuf(sc_if, cur, m, dmamap);
   1732       1.1       riz 		if (m0 == NULL) {
   1733       1.1       riz 			ifp->if_ierrors++;
   1734       1.1       riz 			return;
   1735       1.1       riz 		}
   1736       1.1       riz 		m_adj(m0, ETHER_ALIGN);
   1737       1.1       riz 		m = m0;
   1738       1.1       riz 	} else {
   1739       1.1       riz 		m->m_pkthdr.rcvif = ifp;
   1740       1.1       riz 		m->m_pkthdr.len = m->m_len = total_len;
   1741       1.1       riz 	}
   1742       1.1       riz 
   1743       1.1       riz 	ifp->if_ipackets++;
   1744       1.1       riz 
   1745       1.1       riz #if NBPFILTER > 0
   1746       1.1       riz 	if (ifp->if_bpf)
   1747       1.1       riz 		bpf_mtap(ifp->if_bpf, m);
   1748       1.1       riz #endif
   1749       1.1       riz 
   1750       1.1       riz 	/* pass it on. */
   1751       1.1       riz 	(*ifp->if_input)(ifp, m);
   1752       1.1       riz }
   1753       1.1       riz 
   1754       1.1       riz void
   1755       1.6   msaitoh msk_txeof(struct sk_if_softc *sc_if, int idx)
   1756       1.1       riz {
   1757       1.1       riz 	struct sk_softc		*sc = sc_if->sk_softc;
   1758       1.1       riz 	struct msk_tx_desc	*cur_tx;
   1759       1.1       riz 	struct ifnet		*ifp = &sc_if->sk_ethercom.ec_if;
   1760       1.6   msaitoh 	u_int32_t		sk_ctl;
   1761       1.1       riz 	struct sk_txmap_entry	*entry;
   1762       1.6   msaitoh 	int			cons, prog;
   1763       1.1       riz 
   1764       1.1       riz 	DPRINTFN(2, ("msk_txeof\n"));
   1765       1.1       riz 
   1766       1.1       riz 	/*
   1767       1.1       riz 	 * Go through our tx ring and free mbufs for those
   1768       1.1       riz 	 * frames that have been sent.
   1769       1.1       riz 	 */
   1770       1.6   msaitoh 	cons = sc_if->sk_cdata.sk_tx_cons;
   1771       1.6   msaitoh 	prog = 0;
   1772       1.6   msaitoh 	while (cons != idx) {
   1773       1.6   msaitoh 		if (sc_if->sk_cdata.sk_tx_cnt <= 0)
   1774       1.6   msaitoh 			break;
   1775       1.6   msaitoh 		prog++;
   1776       1.6   msaitoh 		MSK_CDTXSYNC(sc_if, cons, 1,
   1777       1.1       riz 		    BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE);
   1778       1.1       riz 
   1779       1.6   msaitoh 		cur_tx = &sc_if->sk_rdata->sk_tx_ring[cons];
   1780       1.5   msaitoh 		sk_ctl = cur_tx->sk_ctl;
   1781       1.1       riz #ifdef MSK_DEBUG
   1782       1.1       riz 		if (mskdebug >= 2)
   1783       1.6   msaitoh 			msk_dump_txdesc(cur_tx, cons);
   1784       1.1       riz #endif
   1785       1.5   msaitoh 		if (sk_ctl & SK_Y2_TXCTL_LASTFRAG)
   1786       1.1       riz 			ifp->if_opackets++;
   1787       1.6   msaitoh 		if (sc_if->sk_cdata.sk_tx_chain[cons].sk_mbuf != NULL) {
   1788       1.6   msaitoh 			entry = sc_if->sk_cdata.sk_tx_map[cons];
   1789       1.1       riz 
   1790       1.1       riz 			bus_dmamap_sync(sc->sc_dmatag, entry->dmamap, 0,
   1791       1.1       riz 			    entry->dmamap->dm_mapsize, BUS_DMASYNC_POSTWRITE);
   1792       1.1       riz 
   1793       1.1       riz 			bus_dmamap_unload(sc->sc_dmatag, entry->dmamap);
   1794       1.1       riz 			SIMPLEQ_INSERT_TAIL(&sc_if->sk_txmap_head, entry,
   1795       1.1       riz 					  link);
   1796       1.6   msaitoh 			sc_if->sk_cdata.sk_tx_map[cons] = NULL;
   1797       1.6   msaitoh 			m_freem(sc_if->sk_cdata.sk_tx_chain[cons].sk_mbuf);
   1798       1.6   msaitoh 			sc_if->sk_cdata.sk_tx_chain[cons].sk_mbuf = NULL;
   1799       1.1       riz 		}
   1800       1.1       riz 		sc_if->sk_cdata.sk_tx_cnt--;
   1801       1.6   msaitoh 		SK_INC(cons, MSK_TX_RING_CNT);
   1802       1.1       riz 	}
   1803       1.1       riz 	ifp->if_timer = sc_if->sk_cdata.sk_tx_cnt > 0 ? 5 : 0;
   1804       1.1       riz 
   1805       1.1       riz 	if (sc_if->sk_cdata.sk_tx_cnt < MSK_TX_RING_CNT - 2)
   1806       1.1       riz 		ifp->if_flags &= ~IFF_OACTIVE;
   1807       1.1       riz 
   1808       1.6   msaitoh 	if (prog > 0)
   1809       1.6   msaitoh 		sc_if->sk_cdata.sk_tx_cons = cons;
   1810       1.1       riz }
   1811       1.1       riz 
   1812       1.1       riz void
   1813       1.5   msaitoh msk_tick(void *xsc_if)
   1814       1.1       riz {
   1815       1.1       riz 	struct sk_if_softc *sc_if = xsc_if;
   1816       1.1       riz 	struct mii_data *mii = &sc_if->sk_mii;
   1817       1.1       riz 
   1818       1.1       riz 	mii_tick(mii);
   1819       1.1       riz 	callout_schedule(&sc_if->sk_tick_ch, hz);
   1820       1.1       riz }
   1821       1.1       riz 
   1822       1.1       riz void
   1823       1.1       riz msk_intr_yukon(struct sk_if_softc *sc_if)
   1824       1.1       riz {
   1825       1.1       riz 	u_int8_t status;
   1826       1.1       riz 
   1827       1.1       riz 	status = SK_IF_READ_1(sc_if, 0, SK_GMAC_ISR);
   1828       1.1       riz 	/* RX overrun */
   1829       1.1       riz 	if ((status & SK_GMAC_INT_RX_OVER) != 0) {
   1830       1.1       riz 		SK_IF_WRITE_1(sc_if, 0, SK_RXMF1_CTRL_TEST,
   1831       1.1       riz 		    SK_RFCTL_RX_FIFO_OVER);
   1832       1.1       riz 	}
   1833       1.1       riz 	/* TX underrun */
   1834       1.1       riz 	if ((status & SK_GMAC_INT_TX_UNDER) != 0) {
   1835       1.6   msaitoh 		SK_IF_WRITE_1(sc_if, 0, SK_TXMF1_CTRL_TEST,
   1836       1.1       riz 		    SK_TFCTL_TX_FIFO_UNDER);
   1837       1.1       riz 	}
   1838       1.1       riz 
   1839       1.1       riz 	DPRINTFN(2, ("msk_intr_yukon status=%#x\n", status));
   1840       1.1       riz }
   1841       1.1       riz 
   1842       1.1       riz int
   1843       1.1       riz msk_intr(void *xsc)
   1844       1.1       riz {
   1845       1.1       riz 	struct sk_softc		*sc = xsc;
   1846       1.1       riz 	struct sk_if_softc	*sc_if0 = sc->sk_if[SK_PORT_A];
   1847       1.1       riz 	struct sk_if_softc	*sc_if1 = sc->sk_if[SK_PORT_B];
   1848       1.1       riz 	struct ifnet		*ifp0 = NULL, *ifp1 = NULL;
   1849       1.1       riz 	int			claimed = 0;
   1850       1.1       riz 	u_int32_t		status;
   1851       1.1       riz 	struct msk_status_desc	*cur_st;
   1852       1.1       riz 
   1853       1.1       riz 	status = CSR_READ_4(sc, SK_Y2_ISSR2);
   1854       1.1       riz 	if (status == 0) {
   1855       1.1       riz 		CSR_WRITE_4(sc, SK_Y2_ICR, 2);
   1856       1.1       riz 		return (0);
   1857       1.1       riz 	}
   1858       1.1       riz 
   1859       1.1       riz 	status = CSR_READ_4(sc, SK_ISR);
   1860       1.1       riz 
   1861       1.1       riz 	if (sc_if0 != NULL)
   1862       1.1       riz 		ifp0 = &sc_if0->sk_ethercom.ec_if;
   1863       1.1       riz 	if (sc_if1 != NULL)
   1864       1.1       riz 		ifp1 = &sc_if1->sk_ethercom.ec_if;
   1865       1.1       riz 
   1866       1.1       riz 	if (sc_if0 && (status & SK_Y2_IMR_MAC1) &&
   1867       1.1       riz 	    (ifp0->if_flags & IFF_RUNNING)) {
   1868       1.1       riz 		msk_intr_yukon(sc_if0);
   1869       1.1       riz 	}
   1870       1.1       riz 
   1871       1.1       riz 	if (sc_if1 && (status & SK_Y2_IMR_MAC2) &&
   1872       1.1       riz 	    (ifp1->if_flags & IFF_RUNNING)) {
   1873       1.1       riz 		msk_intr_yukon(sc_if1);
   1874       1.1       riz 	}
   1875       1.1       riz 
   1876       1.5   msaitoh 	MSK_CDSTSYNC(sc, sc->sk_status_idx,
   1877       1.5   msaitoh 	    BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE);
   1878       1.5   msaitoh 	cur_st = &sc->sk_status_ring[sc->sk_status_idx];
   1879       1.5   msaitoh 
   1880       1.5   msaitoh 	while (cur_st->sk_opcode & SK_Y2_STOPC_OWN) {
   1881       1.5   msaitoh 		cur_st->sk_opcode &= ~SK_Y2_STOPC_OWN;
   1882       1.5   msaitoh 		switch (cur_st->sk_opcode) {
   1883       1.1       riz 		case SK_Y2_STOPC_RXSTAT:
   1884       1.1       riz 			msk_rxeof(sc->sk_if[cur_st->sk_link],
   1885       1.1       riz 			    letoh16(cur_st->sk_len),
   1886       1.1       riz 			    letoh32(cur_st->sk_status));
   1887       1.1       riz 			SK_IF_WRITE_2(sc->sk_if[cur_st->sk_link], 0,
   1888       1.1       riz 			    SK_RXQ1_Y2_PREF_PUTIDX,
   1889       1.1       riz 			    sc->sk_if[cur_st->sk_link]->sk_cdata.sk_rx_prod);
   1890       1.1       riz 			break;
   1891       1.1       riz 		case SK_Y2_STOPC_TXSTAT:
   1892       1.5   msaitoh 			if (sc_if0)
   1893       1.6   msaitoh 				msk_txeof(sc_if0,
   1894       1.6   msaitoh 				    letoh32(cur_st->sk_status)
   1895       1.6   msaitoh 				    & SK_Y2_ST_TXA1_MSKL);
   1896       1.5   msaitoh 			if (sc_if1)
   1897       1.6   msaitoh 				msk_txeof(sc_if1,
   1898       1.6   msaitoh 				    ((letoh32(cur_st->sk_status)
   1899       1.6   msaitoh 					& SK_Y2_ST_TXA2_MSKL)
   1900       1.6   msaitoh 					>> SK_Y2_ST_TXA2_SHIFTL)
   1901       1.6   msaitoh 				    | ((letoh16(cur_st->sk_len) & SK_Y2_ST_TXA2_MSKH) << SK_Y2_ST_TXA2_SHIFTH));
   1902       1.1       riz 			break;
   1903       1.1       riz 		default:
   1904       1.1       riz 			aprint_error("opcode=0x%x\n", cur_st->sk_opcode);
   1905       1.1       riz 			break;
   1906       1.1       riz 		}
   1907       1.1       riz 		SK_INC(sc->sk_status_idx, MSK_STATUS_RING_CNT);
   1908       1.5   msaitoh 
   1909       1.5   msaitoh 		MSK_CDSTSYNC(sc, sc->sk_status_idx,
   1910       1.5   msaitoh 		    BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE);
   1911       1.5   msaitoh 		cur_st = &sc->sk_status_ring[sc->sk_status_idx];
   1912       1.1       riz 	}
   1913       1.1       riz 
   1914       1.1       riz 	if (status & SK_Y2_IMR_BMU) {
   1915       1.1       riz 		CSR_WRITE_4(sc, SK_STAT_BMU_CSR, SK_STAT_BMU_IRQ_CLEAR);
   1916       1.1       riz 		claimed = 1;
   1917       1.1       riz 	}
   1918       1.1       riz 
   1919       1.1       riz 	CSR_WRITE_4(sc, SK_Y2_ICR, 2);
   1920       1.1       riz 
   1921       1.1       riz 	if (ifp0 != NULL && !IFQ_IS_EMPTY(&ifp0->if_snd))
   1922       1.1       riz 		msk_start(ifp0);
   1923       1.1       riz 	if (ifp1 != NULL && !IFQ_IS_EMPTY(&ifp1->if_snd))
   1924       1.1       riz 		msk_start(ifp1);
   1925       1.1       riz 
   1926       1.1       riz #if NRND > 0
   1927       1.1       riz 	if (RND_ENABLED(&sc->rnd_source))
   1928       1.1       riz 		rnd_add_uint32(&sc->rnd_source, status);
   1929       1.1       riz #endif
   1930       1.1       riz 
   1931       1.1       riz 	if (sc->sk_int_mod_pending)
   1932       1.1       riz 		msk_update_int_mod(sc);
   1933       1.1       riz 
   1934       1.1       riz 	return claimed;
   1935       1.1       riz }
   1936       1.1       riz 
   1937       1.1       riz void
   1938       1.1       riz msk_init_yukon(struct sk_if_softc *sc_if)
   1939       1.1       riz {
   1940       1.5   msaitoh 	u_int32_t		v;
   1941       1.1       riz 	u_int16_t		reg;
   1942       1.1       riz 	struct sk_softc		*sc;
   1943       1.1       riz 	int			i;
   1944       1.1       riz 
   1945       1.1       riz 	sc = sc_if->sk_softc;
   1946       1.1       riz 
   1947       1.1       riz 	DPRINTFN(2, ("msk_init_yukon: start: sk_csr=%#x\n",
   1948       1.1       riz 		     CSR_READ_4(sc_if->sk_softc, SK_CSR)));
   1949       1.1       riz 
   1950       1.1       riz 	DPRINTFN(6, ("msk_init_yukon: 1\n"));
   1951       1.1       riz 
   1952       1.1       riz 	/* GMAC and GPHY Reset */
   1953       1.5   msaitoh 	SK_IF_WRITE_4(sc_if, 0, SK_GMAC_CTRL, SK_GMAC_RESET_SET);
   1954       1.1       riz 	SK_IF_WRITE_4(sc_if, 0, SK_GPHY_CTRL, SK_GPHY_RESET_SET);
   1955       1.1       riz 	DELAY(1000);
   1956       1.1       riz 
   1957       1.1       riz 	DPRINTFN(6, ("msk_init_yukon: 2\n"));
   1958       1.1       riz 
   1959       1.5   msaitoh 	SK_IF_WRITE_4(sc_if, 0, SK_GPHY_CTRL, SK_GPHY_RESET_CLEAR);
   1960       1.1       riz 	SK_IF_WRITE_4(sc_if, 0, SK_GMAC_CTRL, SK_GMAC_LOOP_OFF |
   1961       1.1       riz 		      SK_GMAC_PAUSE_ON | SK_GMAC_RESET_CLEAR);
   1962       1.1       riz 
   1963       1.1       riz 	DPRINTFN(3, ("msk_init_yukon: gmac_ctrl=%#x\n",
   1964       1.1       riz 		     SK_IF_READ_4(sc_if, 0, SK_GMAC_CTRL)));
   1965       1.1       riz 
   1966       1.1       riz 	DPRINTFN(6, ("msk_init_yukon: 3\n"));
   1967       1.1       riz 
   1968       1.1       riz 	/* unused read of the interrupt source register */
   1969       1.1       riz 	DPRINTFN(6, ("msk_init_yukon: 4\n"));
   1970       1.1       riz 	SK_IF_READ_2(sc_if, 0, SK_GMAC_ISR);
   1971       1.1       riz 
   1972       1.1       riz 	DPRINTFN(6, ("msk_init_yukon: 4a\n"));
   1973       1.1       riz 	reg = SK_YU_READ_2(sc_if, YUKON_PAR);
   1974       1.1       riz 	DPRINTFN(6, ("msk_init_yukon: YUKON_PAR=%#x\n", reg));
   1975       1.1       riz 
   1976       1.1       riz 	/* MIB Counter Clear Mode set */
   1977       1.1       riz         reg |= YU_PAR_MIB_CLR;
   1978       1.1       riz 	DPRINTFN(6, ("msk_init_yukon: YUKON_PAR=%#x\n", reg));
   1979       1.1       riz 	DPRINTFN(6, ("msk_init_yukon: 4b\n"));
   1980       1.1       riz 	SK_YU_WRITE_2(sc_if, YUKON_PAR, reg);
   1981       1.1       riz 
   1982       1.1       riz 	/* MIB Counter Clear Mode clear */
   1983       1.1       riz 	DPRINTFN(6, ("msk_init_yukon: 5\n"));
   1984       1.1       riz         reg &= ~YU_PAR_MIB_CLR;
   1985       1.1       riz 	SK_YU_WRITE_2(sc_if, YUKON_PAR, reg);
   1986       1.1       riz 
   1987       1.1       riz 	/* receive control reg */
   1988       1.1       riz 	DPRINTFN(6, ("msk_init_yukon: 7\n"));
   1989       1.1       riz 	SK_YU_WRITE_2(sc_if, YUKON_RCR, YU_RCR_CRCR);
   1990       1.1       riz 
   1991       1.6   msaitoh 	/* transmit control register */
   1992       1.6   msaitoh 	SK_YU_WRITE_2(sc_if, YUKON_TCR, (0x04 << 10));
   1993       1.6   msaitoh 
   1994       1.6   msaitoh 	/* transmit flow control register */
   1995       1.6   msaitoh 	SK_YU_WRITE_2(sc_if, YUKON_TFCR, 0xffff);
   1996       1.6   msaitoh 
   1997       1.1       riz 	/* transmit parameter register */
   1998       1.1       riz 	DPRINTFN(6, ("msk_init_yukon: 8\n"));
   1999       1.1       riz 	SK_YU_WRITE_2(sc_if, YUKON_TPR, YU_TPR_JAM_LEN(0x3) |
   2000       1.6   msaitoh 		      YU_TPR_JAM_IPG(0xb) | YU_TPR_JAM2DATA_IPG(0x1c) | 0x04);
   2001       1.1       riz 
   2002       1.1       riz 	/* serial mode register */
   2003       1.1       riz 	DPRINTFN(6, ("msk_init_yukon: 9\n"));
   2004       1.5   msaitoh 	reg = YU_SMR_DATA_BLIND(0x1c) |
   2005       1.5   msaitoh 	      YU_SMR_MFL_VLAN |
   2006       1.5   msaitoh 	      YU_SMR_IPG_DATA(0x1e);
   2007       1.5   msaitoh 
   2008       1.5   msaitoh 	if (sc->sk_type != SK_YUKON_FE)
   2009       1.5   msaitoh 		reg |= YU_SMR_MFL_JUMBO;
   2010       1.5   msaitoh 
   2011       1.5   msaitoh 	SK_YU_WRITE_2(sc_if, YUKON_SMR, reg);
   2012       1.1       riz 
   2013       1.1       riz 	DPRINTFN(6, ("msk_init_yukon: 10\n"));
   2014       1.1       riz 	/* Setup Yukon's address */
   2015       1.1       riz 	for (i = 0; i < 3; i++) {
   2016       1.1       riz 		/* Write Source Address 1 (unicast filter) */
   2017       1.1       riz 		SK_YU_WRITE_2(sc_if, YUKON_SAL1 + i * 4,
   2018       1.1       riz 			      sc_if->sk_enaddr[i * 2] |
   2019       1.1       riz 			      sc_if->sk_enaddr[i * 2 + 1] << 8);
   2020       1.1       riz 	}
   2021       1.1       riz 
   2022       1.1       riz 	for (i = 0; i < 3; i++) {
   2023       1.1       riz 		reg = sk_win_read_2(sc_if->sk_softc,
   2024       1.1       riz 				    SK_MAC1_0 + i * 2 + sc_if->sk_port * 8);
   2025       1.1       riz 		SK_YU_WRITE_2(sc_if, YUKON_SAL2 + i * 4, reg);
   2026       1.1       riz 	}
   2027       1.1       riz 
   2028       1.1       riz 	/* Set promiscuous mode */
   2029       1.1       riz 	msk_setpromisc(sc_if);
   2030       1.1       riz 
   2031       1.1       riz 	/* Set multicast filter */
   2032       1.1       riz 	DPRINTFN(6, ("msk_init_yukon: 11\n"));
   2033       1.1       riz 	msk_setmulti(sc_if);
   2034       1.1       riz 
   2035       1.1       riz 	/* enable interrupt mask for counter overflows */
   2036       1.1       riz 	DPRINTFN(6, ("msk_init_yukon: 12\n"));
   2037       1.1       riz 	SK_YU_WRITE_2(sc_if, YUKON_TIMR, 0);
   2038       1.1       riz 	SK_YU_WRITE_2(sc_if, YUKON_RIMR, 0);
   2039       1.1       riz 	SK_YU_WRITE_2(sc_if, YUKON_TRIMR, 0);
   2040       1.1       riz 
   2041       1.1       riz 	/* Configure RX MAC FIFO Flush Mask */
   2042       1.1       riz 	v = YU_RXSTAT_FOFL | YU_RXSTAT_CRCERR | YU_RXSTAT_MIIERR |
   2043       1.1       riz 	    YU_RXSTAT_BADFC | YU_RXSTAT_GOODFC | YU_RXSTAT_RUNT |
   2044       1.1       riz 	    YU_RXSTAT_JABBER;
   2045       1.1       riz 	SK_IF_WRITE_2(sc_if, 0, SK_RXMF1_FLUSH_MASK, v);
   2046       1.1       riz 
   2047       1.1       riz 	/* Configure RX MAC FIFO */
   2048       1.1       riz 	SK_IF_WRITE_1(sc_if, 0, SK_RXMF1_CTRL_TEST, SK_RFCTL_RESET_CLEAR);
   2049       1.7   msaitoh 	SK_IF_WRITE_2(sc_if, 0, SK_RXMF1_CTRL_TEST, SK_RFCTL_OPERATION_ON |
   2050       1.7   msaitoh 	    SK_RFCTL_FIFO_FLUSH_ON);
   2051       1.1       riz 
   2052       1.1       riz 	/* Increase flush threshould to 64 bytes */
   2053       1.1       riz 	SK_IF_WRITE_2(sc_if, 0, SK_RXMF1_FLUSH_THRESHOLD,
   2054       1.1       riz 	    SK_RFCTL_FIFO_THRESHOLD + 1);
   2055       1.1       riz 
   2056       1.1       riz 	/* Configure TX MAC FIFO */
   2057       1.1       riz 	SK_IF_WRITE_1(sc_if, 0, SK_TXMF1_CTRL_TEST, SK_TFCTL_RESET_CLEAR);
   2058       1.1       riz 	SK_IF_WRITE_2(sc_if, 0, SK_TXMF1_CTRL_TEST, SK_TFCTL_OPERATION_ON);
   2059       1.1       riz 
   2060       1.1       riz #if 1
   2061       1.1       riz 	SK_YU_WRITE_2(sc_if, YUKON_GPCR, YU_GPCR_TXEN | YU_GPCR_RXEN);
   2062       1.1       riz #endif
   2063       1.1       riz 	DPRINTFN(6, ("msk_init_yukon: end\n"));
   2064       1.1       riz }
   2065       1.1       riz 
   2066       1.1       riz /*
   2067       1.1       riz  * Note that to properly initialize any part of the GEnesis chip,
   2068       1.1       riz  * you first have to take it out of reset mode.
   2069       1.1       riz  */
   2070       1.1       riz int
   2071       1.1       riz msk_init(struct ifnet *ifp)
   2072       1.1       riz {
   2073       1.1       riz 	struct sk_if_softc	*sc_if = ifp->if_softc;
   2074       1.1       riz 	struct sk_softc		*sc = sc_if->sk_softc;
   2075       1.1       riz 	struct mii_data		*mii = &sc_if->sk_mii;
   2076       1.1       riz 	int			s;
   2077       1.5   msaitoh 	uint32_t		imr, imtimer_ticks;
   2078       1.1       riz 
   2079       1.1       riz 
   2080       1.1       riz 	DPRINTFN(2, ("msk_init\n"));
   2081       1.1       riz 
   2082       1.1       riz 	s = splnet();
   2083       1.1       riz 
   2084       1.1       riz 	/* Cancel pending I/O and free all RX/TX buffers. */
   2085       1.1       riz 	msk_stop(ifp,0);
   2086       1.1       riz 
   2087       1.1       riz 	/* Configure I2C registers */
   2088       1.1       riz 
   2089       1.1       riz 	/* Configure XMAC(s) */
   2090       1.1       riz 	msk_init_yukon(sc_if);
   2091       1.1       riz 	mii_mediachg(mii);
   2092       1.1       riz 
   2093       1.1       riz 	/* Configure transmit arbiter(s) */
   2094       1.1       riz 	SK_IF_WRITE_1(sc_if, 0, SK_TXAR1_COUNTERCTL, SK_TXARCTL_ON);
   2095       1.1       riz #if 0
   2096       1.1       riz 	    SK_TXARCTL_ON|SK_TXARCTL_FSYNC_ON);
   2097       1.1       riz #endif
   2098       1.1       riz 
   2099       1.1       riz 	/* Configure RAMbuffers */
   2100       1.1       riz 	SK_IF_WRITE_4(sc_if, 0, SK_RXRB1_CTLTST, SK_RBCTL_UNRESET);
   2101       1.1       riz 	SK_IF_WRITE_4(sc_if, 0, SK_RXRB1_START, sc_if->sk_rx_ramstart);
   2102       1.1       riz 	SK_IF_WRITE_4(sc_if, 0, SK_RXRB1_WR_PTR, sc_if->sk_rx_ramstart);
   2103       1.1       riz 	SK_IF_WRITE_4(sc_if, 0, SK_RXRB1_RD_PTR, sc_if->sk_rx_ramstart);
   2104       1.1       riz 	SK_IF_WRITE_4(sc_if, 0, SK_RXRB1_END, sc_if->sk_rx_ramend);
   2105       1.1       riz 	SK_IF_WRITE_4(sc_if, 0, SK_RXRB1_CTLTST, SK_RBCTL_ON);
   2106       1.1       riz 
   2107       1.1       riz 	SK_IF_WRITE_4(sc_if, 1, SK_TXRBA1_CTLTST, SK_RBCTL_UNRESET);
   2108       1.1       riz 	SK_IF_WRITE_4(sc_if, 1, SK_TXRBA1_CTLTST, SK_RBCTL_STORENFWD_ON);
   2109       1.1       riz 	SK_IF_WRITE_4(sc_if, 1, SK_TXRBA1_START, sc_if->sk_tx_ramstart);
   2110       1.1       riz 	SK_IF_WRITE_4(sc_if, 1, SK_TXRBA1_WR_PTR, sc_if->sk_tx_ramstart);
   2111       1.1       riz 	SK_IF_WRITE_4(sc_if, 1, SK_TXRBA1_RD_PTR, sc_if->sk_tx_ramstart);
   2112       1.1       riz 	SK_IF_WRITE_4(sc_if, 1, SK_TXRBA1_END, sc_if->sk_tx_ramend);
   2113       1.1       riz 	SK_IF_WRITE_4(sc_if, 1, SK_TXRBA1_CTLTST, SK_RBCTL_ON);
   2114       1.1       riz 
   2115       1.1       riz 	/* Configure BMUs */
   2116       1.1       riz 	SK_IF_WRITE_4(sc_if, 0, SK_RXQ1_BMU_CSR, 0x00000016);
   2117       1.1       riz 	SK_IF_WRITE_4(sc_if, 0, SK_RXQ1_BMU_CSR, 0x00000d28);
   2118       1.1       riz 	SK_IF_WRITE_4(sc_if, 0, SK_RXQ1_BMU_CSR, 0x00000080);
   2119       1.6   msaitoh 	SK_IF_WRITE_2(sc_if, 0, SK_RXQ1_Y2_WM, 0x0600);	/* XXX ??? */
   2120       1.1       riz 
   2121       1.1       riz 	SK_IF_WRITE_4(sc_if, 1, SK_TXQA1_BMU_CSR, 0x00000016);
   2122       1.1       riz 	SK_IF_WRITE_4(sc_if, 1, SK_TXQA1_BMU_CSR, 0x00000d28);
   2123       1.1       riz 	SK_IF_WRITE_4(sc_if, 1, SK_TXQA1_BMU_CSR, 0x00000080);
   2124       1.6   msaitoh 	SK_IF_WRITE_2(sc_if, 1, SK_TXQA1_Y2_WM, 0x0600);	/* XXX ??? */
   2125       1.1       riz 
   2126       1.1       riz 	/* Make sure the sync transmit queue is disabled. */
   2127       1.1       riz 	SK_IF_WRITE_4(sc_if, 1, SK_TXRBS1_CTLTST, SK_RBCTL_RESET);
   2128       1.1       riz 
   2129       1.1       riz 	/* Init descriptors */
   2130       1.1       riz 	if (msk_init_rx_ring(sc_if) == ENOBUFS) {
   2131       1.1       riz 		aprint_error("%s: initialization failed: no "
   2132       1.1       riz 		    "memory for rx buffers\n", sc_if->sk_dev.dv_xname);
   2133       1.1       riz 		msk_stop(ifp,0);
   2134       1.1       riz 		splx(s);
   2135       1.1       riz 		return ENOBUFS;
   2136       1.1       riz 	}
   2137       1.1       riz 
   2138       1.1       riz 	if (msk_init_tx_ring(sc_if) == ENOBUFS) {
   2139       1.1       riz 		aprint_error("%s: initialization failed: no "
   2140       1.1       riz 		    "memory for tx buffers\n", sc_if->sk_dev.dv_xname);
   2141       1.1       riz 		msk_stop(ifp,0);
   2142       1.1       riz 		splx(s);
   2143       1.1       riz 		return ENOBUFS;
   2144       1.1       riz 	}
   2145       1.1       riz 
   2146       1.1       riz 	/* Set interrupt moderation if changed via sysctl. */
   2147       1.1       riz 	switch (sc->sk_type) {
   2148       1.1       riz 	case SK_YUKON_EC:
   2149       1.6   msaitoh 	case SK_YUKON_EC_U:
   2150       1.5   msaitoh 		imtimer_ticks = SK_IMTIMER_TICKS_YUKON_EC;
   2151       1.1       riz 		break;
   2152       1.6   msaitoh 	case SK_YUKON_FE:
   2153       1.6   msaitoh 		imtimer_ticks = SK_IMTIMER_TICKS_YUKON_FE;
   2154       1.6   msaitoh 		break;
   2155       1.6   msaitoh 	case SK_YUKON_XL:
   2156       1.6   msaitoh 		imtimer_ticks = SK_IMTIMER_TICKS_YUKON_XL;
   2157       1.6   msaitoh 		break;
   2158       1.1       riz 	default:
   2159       1.5   msaitoh 		imtimer_ticks = SK_IMTIMER_TICKS_YUKON;
   2160       1.1       riz 	}
   2161       1.1       riz 	imr = sk_win_read_4(sc, SK_IMTIMERINIT);
   2162       1.1       riz 	if (imr != SK_IM_USECS(sc->sk_int_mod)) {
   2163       1.1       riz 		sk_win_write_4(sc, SK_IMTIMERINIT,
   2164       1.1       riz 		    SK_IM_USECS(sc->sk_int_mod));
   2165       1.1       riz 		aprint_verbose("%s: interrupt moderation is %d us\n",
   2166       1.1       riz 		    sc->sk_dev.dv_xname, sc->sk_int_mod);
   2167       1.1       riz 	}
   2168       1.1       riz 
   2169       1.1       riz 	/* Initialize prefetch engine. */
   2170       1.1       riz 	SK_IF_WRITE_4(sc_if, 0, SK_RXQ1_Y2_PREF_CSR, 0x00000001);
   2171       1.1       riz 	SK_IF_WRITE_4(sc_if, 0, SK_RXQ1_Y2_PREF_CSR, 0x00000002);
   2172       1.1       riz 	SK_IF_WRITE_2(sc_if, 0, SK_RXQ1_Y2_PREF_LIDX, MSK_RX_RING_CNT - 1);
   2173       1.1       riz 	SK_IF_WRITE_4(sc_if, 0, SK_RXQ1_Y2_PREF_ADDRLO,
   2174       1.1       riz 	    MSK_RX_RING_ADDR(sc_if, 0));
   2175       1.1       riz 	SK_IF_WRITE_4(sc_if, 0, SK_RXQ1_Y2_PREF_ADDRHI,
   2176       1.1       riz 	    (u_int64_t)MSK_RX_RING_ADDR(sc_if, 0) >> 32);
   2177       1.1       riz 	SK_IF_WRITE_4(sc_if, 0, SK_RXQ1_Y2_PREF_CSR, 0x00000008);
   2178       1.1       riz 	SK_IF_READ_4(sc_if, 0, SK_RXQ1_Y2_PREF_CSR);
   2179       1.1       riz 
   2180       1.1       riz 	SK_IF_WRITE_4(sc_if, 1, SK_TXQA1_Y2_PREF_CSR, 0x00000001);
   2181       1.1       riz 	SK_IF_WRITE_4(sc_if, 1, SK_TXQA1_Y2_PREF_CSR, 0x00000002);
   2182       1.1       riz 	SK_IF_WRITE_2(sc_if, 1, SK_TXQA1_Y2_PREF_LIDX, MSK_TX_RING_CNT - 1);
   2183       1.1       riz 	SK_IF_WRITE_4(sc_if, 1, SK_TXQA1_Y2_PREF_ADDRLO,
   2184       1.1       riz 	    MSK_TX_RING_ADDR(sc_if, 0));
   2185       1.1       riz 	SK_IF_WRITE_4(sc_if, 1, SK_TXQA1_Y2_PREF_ADDRHI,
   2186       1.1       riz 	    (u_int64_t)MSK_TX_RING_ADDR(sc_if, 0) >> 32);
   2187       1.1       riz 	SK_IF_WRITE_4(sc_if, 1, SK_TXQA1_Y2_PREF_CSR, 0x00000008);
   2188       1.1       riz 	SK_IF_READ_4(sc_if, 1, SK_TXQA1_Y2_PREF_CSR);
   2189       1.1       riz 
   2190       1.1       riz 	SK_IF_WRITE_2(sc_if, 0, SK_RXQ1_Y2_PREF_PUTIDX,
   2191       1.1       riz 	    sc_if->sk_cdata.sk_rx_prod);
   2192       1.1       riz 
   2193       1.1       riz 	/* Configure interrupt handling */
   2194       1.1       riz 	if (sc_if->sk_port == SK_PORT_A)
   2195       1.1       riz 		sc->sk_intrmask |= SK_Y2_INTRS1;
   2196       1.1       riz 	else
   2197       1.1       riz 		sc->sk_intrmask |= SK_Y2_INTRS2;
   2198       1.1       riz 	sc->sk_intrmask |= SK_Y2_IMR_BMU;
   2199       1.1       riz 	CSR_WRITE_4(sc, SK_IMR, sc->sk_intrmask);
   2200       1.1       riz 
   2201       1.1       riz 	ifp->if_flags |= IFF_RUNNING;
   2202       1.1       riz 	ifp->if_flags &= ~IFF_OACTIVE;
   2203       1.1       riz 
   2204       1.1       riz 	callout_schedule(&sc_if->sk_tick_ch, hz);
   2205       1.1       riz 
   2206       1.1       riz 	splx(s);
   2207       1.1       riz 	return 0;
   2208       1.1       riz }
   2209       1.1       riz 
   2210       1.1       riz void
   2211       1.3  christos msk_stop(struct ifnet *ifp, int disable)
   2212       1.1       riz {
   2213       1.1       riz 	struct sk_if_softc	*sc_if = ifp->if_softc;
   2214       1.1       riz 	struct sk_softc		*sc = sc_if->sk_softc;
   2215       1.1       riz 	struct sk_txmap_entry	*dma;
   2216       1.1       riz 	int			i;
   2217       1.1       riz 
   2218       1.1       riz 	DPRINTFN(2, ("msk_stop\n"));
   2219       1.1       riz 
   2220       1.1       riz 	callout_stop(&sc_if->sk_tick_ch);
   2221       1.1       riz 
   2222       1.1       riz 	ifp->if_flags &= ~(IFF_RUNNING|IFF_OACTIVE);
   2223       1.1       riz 
   2224       1.1       riz 	/* Stop transfer of Tx descriptors */
   2225       1.1       riz 
   2226       1.1       riz 	/* Stop transfer of Rx descriptors */
   2227       1.1       riz 
   2228       1.1       riz 	/* Turn off various components of this interface. */
   2229       1.1       riz 	SK_XM_SETBIT_2(sc_if, XM_GPIO, XM_GPIO_RESETMAC);
   2230       1.1       riz 	SK_IF_WRITE_1(sc_if,0, SK_RXMF1_CTRL_TEST, SK_RFCTL_RESET_SET);
   2231       1.1       riz 	SK_IF_WRITE_1(sc_if,0, SK_TXMF1_CTRL_TEST, SK_TFCTL_RESET_SET);
   2232       1.1       riz 	SK_IF_WRITE_4(sc_if, 0, SK_RXQ1_BMU_CSR, SK_RXBMU_OFFLINE);
   2233       1.1       riz 	SK_IF_WRITE_4(sc_if, 0, SK_RXRB1_CTLTST, SK_RBCTL_RESET|SK_RBCTL_OFF);
   2234       1.1       riz 	SK_IF_WRITE_4(sc_if, 1, SK_TXQA1_BMU_CSR, SK_TXBMU_OFFLINE);
   2235       1.1       riz 	SK_IF_WRITE_4(sc_if, 1, SK_TXRBA1_CTLTST, SK_RBCTL_RESET|SK_RBCTL_OFF);
   2236       1.1       riz 	SK_IF_WRITE_1(sc_if, 0, SK_TXAR1_COUNTERCTL, SK_TXARCTL_OFF);
   2237       1.1       riz 	SK_IF_WRITE_1(sc_if, 0, SK_RXLED1_CTL, SK_RXLEDCTL_COUNTER_STOP);
   2238       1.5   msaitoh 	SK_IF_WRITE_1(sc_if, 0, SK_TXLED1_CTL, SK_TXLEDCTL_COUNTER_STOP);
   2239       1.1       riz 	SK_IF_WRITE_1(sc_if, 0, SK_LINKLED1_CTL, SK_LINKLED_OFF);
   2240       1.1       riz 	SK_IF_WRITE_1(sc_if, 0, SK_LINKLED1_CTL, SK_LINKLED_LINKSYNC_OFF);
   2241       1.1       riz 
   2242       1.1       riz 	SK_IF_WRITE_4(sc_if, 0, SK_RXQ1_Y2_PREF_CSR, 0x00000001);
   2243       1.1       riz 	SK_IF_WRITE_4(sc_if, 1, SK_TXQA1_Y2_PREF_CSR, 0x00000001);
   2244       1.1       riz 
   2245       1.1       riz 	/* Disable interrupts */
   2246       1.1       riz 	if (sc_if->sk_port == SK_PORT_A)
   2247       1.1       riz 		sc->sk_intrmask &= ~SK_Y2_INTRS1;
   2248       1.1       riz 	else
   2249       1.1       riz 		sc->sk_intrmask &= ~SK_Y2_INTRS2;
   2250       1.1       riz 	CSR_WRITE_4(sc, SK_IMR, sc->sk_intrmask);
   2251       1.1       riz 
   2252       1.1       riz 	SK_XM_READ_2(sc_if, XM_ISR);
   2253       1.1       riz 	SK_XM_WRITE_2(sc_if, XM_IMR, 0xFFFF);
   2254       1.1       riz 
   2255       1.1       riz 	/* Free RX and TX mbufs still in the queues. */
   2256       1.1       riz 	for (i = 0; i < MSK_RX_RING_CNT; i++) {
   2257       1.1       riz 		if (sc_if->sk_cdata.sk_rx_chain[i].sk_mbuf != NULL) {
   2258       1.1       riz 			m_freem(sc_if->sk_cdata.sk_rx_chain[i].sk_mbuf);
   2259       1.1       riz 			sc_if->sk_cdata.sk_rx_chain[i].sk_mbuf = NULL;
   2260       1.1       riz 		}
   2261       1.1       riz 	}
   2262       1.1       riz 
   2263       1.1       riz 	for (i = 0; i < MSK_TX_RING_CNT; i++) {
   2264       1.1       riz 		if (sc_if->sk_cdata.sk_tx_chain[i].sk_mbuf != NULL) {
   2265       1.1       riz 			m_freem(sc_if->sk_cdata.sk_tx_chain[i].sk_mbuf);
   2266       1.1       riz 			sc_if->sk_cdata.sk_tx_chain[i].sk_mbuf = NULL;
   2267       1.1       riz #if 1
   2268       1.1       riz 			SIMPLEQ_INSERT_HEAD(&sc_if->sk_txmap_head,
   2269       1.1       riz 			    sc_if->sk_cdata.sk_tx_map[i], link);
   2270       1.1       riz 			sc_if->sk_cdata.sk_tx_map[i] = 0;
   2271       1.1       riz #endif
   2272       1.1       riz 		}
   2273       1.1       riz 	}
   2274       1.1       riz 
   2275       1.1       riz #if 1
   2276       1.1       riz 	while ((dma = SIMPLEQ_FIRST(&sc_if->sk_txmap_head))) {
   2277       1.1       riz 		SIMPLEQ_REMOVE_HEAD(&sc_if->sk_txmap_head, link);
   2278       1.1       riz 		bus_dmamap_destroy(sc->sc_dmatag, dma->dmamap);
   2279       1.1       riz 		free(dma, M_DEVBUF);
   2280       1.1       riz 	}
   2281       1.1       riz #endif
   2282       1.1       riz }
   2283       1.1       riz 
   2284       1.1       riz CFATTACH_DECL(mskc, sizeof(struct sk_softc), mskc_probe, mskc_attach,
   2285       1.1       riz 	NULL, NULL);
   2286       1.1       riz 
   2287       1.1       riz CFATTACH_DECL(msk, sizeof(struct sk_if_softc), msk_probe, msk_attach,
   2288       1.1       riz 	NULL, NULL);
   2289       1.1       riz 
   2290       1.1       riz #ifdef MSK_DEBUG
   2291       1.1       riz void
   2292       1.1       riz msk_dump_txdesc(struct msk_tx_desc *le, int idx)
   2293       1.1       riz {
   2294       1.1       riz #define DESC_PRINT(X)					\
   2295       1.1       riz 	if (X)					\
   2296       1.1       riz 		printf("txdesc[%d]." #X "=%#x\n",	\
   2297       1.1       riz 		       idx, X);
   2298       1.1       riz 
   2299       1.1       riz 	DESC_PRINT(letoh32(le->sk_addr));
   2300       1.1       riz 	DESC_PRINT(letoh16(le->sk_len));
   2301       1.1       riz 	DESC_PRINT(le->sk_ctl);
   2302       1.1       riz 	DESC_PRINT(le->sk_opcode);
   2303       1.1       riz #undef DESC_PRINT
   2304       1.1       riz }
   2305       1.1       riz 
   2306       1.1       riz void
   2307       1.1       riz msk_dump_bytes(const char *data, int len)
   2308       1.1       riz {
   2309       1.1       riz 	int c, i, j;
   2310       1.1       riz 
   2311       1.1       riz 	for (i = 0; i < len; i += 16) {
   2312       1.1       riz 		printf("%08x  ", i);
   2313       1.1       riz 		c = len - i;
   2314       1.1       riz 		if (c > 16) c = 16;
   2315       1.1       riz 
   2316       1.1       riz 		for (j = 0; j < c; j++) {
   2317       1.1       riz 			printf("%02x ", data[i + j] & 0xff);
   2318       1.1       riz 			if ((j & 0xf) == 7 && j > 0)
   2319       1.1       riz 				printf(" ");
   2320       1.1       riz 		}
   2321       1.1       riz 
   2322       1.1       riz 		for (; j < 16; j++)
   2323       1.1       riz 			printf("   ");
   2324       1.1       riz 		printf("  ");
   2325       1.1       riz 
   2326       1.1       riz 		for (j = 0; j < c; j++) {
   2327       1.1       riz 			int ch = data[i + j] & 0xff;
   2328       1.1       riz 			printf("%c", ' ' <= ch && ch <= '~' ? ch : ' ');
   2329       1.1       riz 		}
   2330       1.1       riz 
   2331       1.1       riz 		printf("\n");
   2332       1.1       riz 
   2333       1.1       riz 		if (c < 16)
   2334       1.1       riz 			break;
   2335       1.1       riz 	}
   2336       1.1       riz }
   2337       1.1       riz 
   2338       1.1       riz void
   2339       1.1       riz msk_dump_mbuf(struct mbuf *m)
   2340       1.1       riz {
   2341       1.1       riz 	int count = m->m_pkthdr.len;
   2342       1.1       riz 
   2343       1.1       riz 	printf("m=%p, m->m_pkthdr.len=%d\n", m, m->m_pkthdr.len);
   2344       1.1       riz 
   2345       1.1       riz 	while (count > 0 && m) {
   2346       1.1       riz 		printf("m=%p, m->m_data=%p, m->m_len=%d\n",
   2347       1.1       riz 		       m, m->m_data, m->m_len);
   2348       1.1       riz 		msk_dump_bytes(mtod(m, char *), m->m_len);
   2349       1.1       riz 
   2350       1.1       riz 		count -= m->m_len;
   2351       1.1       riz 		m = m->m_next;
   2352       1.1       riz 	}
   2353       1.1       riz }
   2354       1.1       riz #endif
   2355       1.1       riz 
   2356       1.1       riz static int
   2357       1.1       riz msk_sysctl_handler(SYSCTLFN_ARGS)
   2358       1.1       riz {
   2359       1.1       riz 	int error, t;
   2360       1.1       riz 	struct sysctlnode node;
   2361       1.1       riz 	struct sk_softc *sc;
   2362       1.1       riz 
   2363       1.1       riz 	node = *rnode;
   2364       1.1       riz 	sc = node.sysctl_data;
   2365       1.1       riz 	t = sc->sk_int_mod;
   2366       1.1       riz 	node.sysctl_data = &t;
   2367       1.1       riz 	error = sysctl_lookup(SYSCTLFN_CALL(&node));
   2368       1.1       riz 	if (error || newp == NULL)
   2369       1.1       riz 		return error;
   2370       1.1       riz 
   2371       1.1       riz 	if (t < SK_IM_MIN || t > SK_IM_MAX)
   2372       1.1       riz 		return EINVAL;
   2373       1.1       riz 
   2374       1.1       riz 	/* update the softc with sysctl-changed value, and mark
   2375       1.1       riz 	   for hardware update */
   2376       1.1       riz 	sc->sk_int_mod = t;
   2377       1.1       riz 	sc->sk_int_mod_pending = 1;
   2378       1.1       riz 	return 0;
   2379       1.1       riz }
   2380       1.1       riz 
   2381       1.1       riz /*
   2382       1.1       riz  * Set up sysctl(3) MIB, hw.sk.* - Individual controllers will be
   2383       1.1       riz  * set up in skc_attach()
   2384       1.1       riz  */
   2385       1.1       riz SYSCTL_SETUP(sysctl_msk, "sysctl msk subtree setup")
   2386       1.1       riz {
   2387       1.1       riz 	int rc;
   2388       1.1       riz 	const struct sysctlnode *node;
   2389       1.1       riz 
   2390       1.1       riz 	if ((rc = sysctl_createv(clog, 0, NULL, NULL,
   2391       1.1       riz 	    0, CTLTYPE_NODE, "hw", NULL,
   2392       1.1       riz 	    NULL, 0, NULL, 0, CTL_HW, CTL_EOL)) != 0) {
   2393       1.1       riz 		goto err;
   2394       1.1       riz 	}
   2395       1.1       riz 
   2396       1.1       riz 	if ((rc = sysctl_createv(clog, 0, NULL, &node,
   2397       1.1       riz 	    0, CTLTYPE_NODE, "msk",
   2398       1.1       riz 	    SYSCTL_DESCR("msk interface controls"),
   2399       1.1       riz 	    NULL, 0, NULL, 0, CTL_HW, CTL_CREATE, CTL_EOL)) != 0) {
   2400       1.1       riz 		goto err;
   2401       1.1       riz 	}
   2402       1.1       riz 
   2403       1.1       riz 	msk_root_num = node->sysctl_num;
   2404       1.1       riz 	return;
   2405       1.1       riz 
   2406       1.1       riz err:
   2407       1.1       riz 	aprint_error("%s: syctl_createv failed (rc = %d)\n", __func__, rc);
   2408       1.1       riz }
   2409