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if_tl.c revision 1.4
      1  1.4  thorpej /*	$NetBSD: if_tl.c,v 1.4 1997/11/17 01:58:29 thorpej Exp $	*/
      2  1.1   bouyer 
      3  1.1   bouyer /*
      4  1.1   bouyer  * Copyright (c) 1997 Manuel Bouyer.  All rights reserved.
      5  1.1   bouyer  *
      6  1.1   bouyer  * Redistribution and use in source and binary forms, with or without
      7  1.1   bouyer  * modification, are permitted provided that the following conditions
      8  1.1   bouyer  * are met:
      9  1.1   bouyer  * 1. Redistributions of source code must retain the above copyright
     10  1.1   bouyer  *    notice, this list of conditions and the following disclaimer.
     11  1.1   bouyer  * 2. Redistributions in binary form must reproduce the above copyright
     12  1.1   bouyer  *    notice, this list of conditions and the following disclaimer in the
     13  1.1   bouyer  *    documentation and/or other materials provided with the distribution.
     14  1.1   bouyer  * 3. All advertising materials mentioning features or use of this software
     15  1.1   bouyer  *    must display the following acknowledgement:
     16  1.1   bouyer  *  This product includes software developed by Manuel Bouyer.
     17  1.1   bouyer  * 4. The name of the author may not be used to endorse or promote products
     18  1.1   bouyer  *    derived from this software without specific prior written permission.
     19  1.1   bouyer  *
     20  1.1   bouyer  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     21  1.1   bouyer  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     22  1.1   bouyer  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     23  1.1   bouyer  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     24  1.1   bouyer  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     25  1.1   bouyer  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     26  1.1   bouyer  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     27  1.1   bouyer  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     28  1.1   bouyer  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     29  1.1   bouyer  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     30  1.1   bouyer  */
     31  1.1   bouyer 
     32  1.1   bouyer /*
     33  1.2   bouyer  * Texas Instruments ThunderLAN ethernet controller
     34  1.1   bouyer  * ThunderLAN Programmer's Guide (TI Literature Number SPWU013A)
     35  1.1   bouyer  * available from www.ti.com
     36  1.1   bouyer  */
     37  1.1   bouyer 
     38  1.1   bouyer #undef TLDEBUG
     39  1.1   bouyer #define TL_PRIV_STATS
     40  1.1   bouyer #undef TLDEBUG_RX
     41  1.1   bouyer #undef TLDEBUG_TX
     42  1.1   bouyer #undef TLDEBUG_ADDR
     43  1.1   bouyer 
     44  1.1   bouyer #include <sys/param.h>
     45  1.1   bouyer #include <sys/systm.h>
     46  1.1   bouyer #include <sys/mbuf.h>
     47  1.1   bouyer #include <sys/protosw.h>
     48  1.1   bouyer #include <sys/socket.h>
     49  1.1   bouyer #include <sys/ioctl.h>
     50  1.1   bouyer #include <sys/errno.h>
     51  1.1   bouyer #include <sys/malloc.h>
     52  1.1   bouyer #include <sys/kernel.h>
     53  1.1   bouyer #include <sys/proc.h>	/* only for declaration of wakeup() used by vm.h */
     54  1.1   bouyer #include <sys/device.h>
     55  1.1   bouyer 
     56  1.1   bouyer #include <net/if.h>
     57  1.1   bouyer #if defined(SIOCSIFMEDIA)
     58  1.1   bouyer #include <net/if_media.h>
     59  1.1   bouyer #endif
     60  1.1   bouyer #include <net/if_types.h>
     61  1.1   bouyer #include <net/if_dl.h>
     62  1.1   bouyer #include <net/route.h>
     63  1.1   bouyer #include <net/netisr.h>
     64  1.1   bouyer 
     65  1.1   bouyer #include "bpfilter.h"
     66  1.1   bouyer #if NBPFILTER > 0
     67  1.1   bouyer #include <net/bpf.h>
     68  1.1   bouyer #include <net/bpfdesc.h>
     69  1.1   bouyer #endif
     70  1.1   bouyer 
     71  1.1   bouyer #ifdef INET
     72  1.1   bouyer #include <netinet/in.h>
     73  1.1   bouyer #include <netinet/in_systm.h>
     74  1.1   bouyer #include <netinet/in_var.h>
     75  1.1   bouyer #include <netinet/ip.h>
     76  1.1   bouyer #endif
     77  1.1   bouyer 
     78  1.1   bouyer #ifdef NS
     79  1.1   bouyer #include <netns/ns.h>
     80  1.1   bouyer #include <netns/ns_if.h>
     81  1.1   bouyer #endif
     82  1.1   bouyer 
     83  1.1   bouyer #include <vm/vm.h>
     84  1.1   bouyer #include <vm/vm_param.h>
     85  1.1   bouyer #include <vm/vm_kern.h>
     86  1.1   bouyer 
     87  1.1   bouyer #if defined(__NetBSD__)
     88  1.1   bouyer #include <net/if_ether.h>
     89  1.1   bouyer #if defined(INET)
     90  1.1   bouyer #include <netinet/if_inarp.h>
     91  1.1   bouyer #endif
     92  1.4  thorpej 
     93  1.1   bouyer #include <machine/bus.h>
     94  1.1   bouyer #include <machine/intr.h>
     95  1.4  thorpej 
     96  1.1   bouyer #include <dev/pci/pcireg.h>
     97  1.1   bouyer #include <dev/pci/pcivar.h>
     98  1.1   bouyer #include <dev/pci/pcidevs.h>
     99  1.1   bouyer #include <dev/i2c/i2c_bus.h>
    100  1.1   bouyer #include <dev/i2c/i2c_eeprom.h>
    101  1.1   bouyer #include <dev/mii/mii_adapter.h>
    102  1.1   bouyer #include <dev/mii/mii_adapters_id.h>
    103  1.1   bouyer #include <dev/pci/if_tlregs.h>
    104  1.1   bouyer #endif /* __NetBSD__ */
    105  1.1   bouyer 
    106  1.1   bouyer /* number of transmit/receive buffers */
    107  1.1   bouyer #ifndef TL_NBUF
    108  1.1   bouyer #define TL_NBUF 10
    109  1.1   bouyer #endif
    110  1.1   bouyer 
    111  1.1   bouyer /* number of seconds the link can be idle */
    112  1.1   bouyer #ifndef TL_IDLETIME
    113  1.1   bouyer #define TL_IDLETIME 10
    114  1.1   bouyer #endif
    115  1.1   bouyer 
    116  1.1   bouyer struct tl_softc {
    117  1.1   bouyer 	struct device sc_dev;		/* base device */
    118  1.1   bouyer 	bus_space_tag_t tl_bustag;
    119  1.1   bouyer 	bus_space_handle_t tl_bushandle; /* CSR region handle */
    120  1.1   bouyer 	void* tl_ih;
    121  1.1   bouyer 	struct ethercom tl_ec;
    122  1.1   bouyer 	u_int8_t tl_enaddr[ETHER_ADDR_LEN];	/* hardware adress */
    123  1.1   bouyer 	struct ifmedia tl_ifmedia;
    124  1.1   bouyer 	u_int16_t tl_flags;
    125  1.1   bouyer #define TL_IFACT 0x0001 /* chip has interface activity */
    126  1.1   bouyer 	u_int8_t tl_lasttx; /* we were without input this many seconds */
    127  1.1   bouyer 	i2c_adapter_t i2cbus;		/* i2c bus, for eeprom */
    128  1.1   bouyer 	mii_data_t mii;				/* mii bus */
    129  1.1   bouyer 	struct Rx_list *Rx_list;	/* Receive and transmit lists */
    130  1.1   bouyer 	struct Tx_list *Tx_list;
    131  1.1   bouyer 	struct Rx_list *active_Rx, *last_Rx;
    132  1.1   bouyer 	struct Tx_list *active_Tx, *last_Tx;
    133  1.1   bouyer 	struct Tx_list *Free_Tx;
    134  1.1   bouyer 	int opkt;			/* used to detect link up/down for AUI/BNC */
    135  1.1   bouyer 	int stats_exesscoll; /* idem */
    136  1.1   bouyer #ifdef TL_PRIV_STATS
    137  1.1   bouyer 	int ierr_overr;
    138  1.1   bouyer 	int ierr_code;
    139  1.1   bouyer 	int ierr_crc;
    140  1.1   bouyer 	int ierr_nomem;
    141  1.1   bouyer 	int oerr_underr;
    142  1.1   bouyer 	int oerr_deffered;
    143  1.1   bouyer 	int oerr_coll;
    144  1.1   bouyer 	int oerr_multicoll;
    145  1.1   bouyer 	int oerr_latecoll;
    146  1.1   bouyer 	int oerr_exesscoll;
    147  1.1   bouyer 	int oerr_carrloss;
    148  1.1   bouyer 	int oerr_mcopy;
    149  1.1   bouyer #endif
    150  1.1   bouyer };
    151  1.1   bouyer #define tl_if            tl_ec.ec_if
    152  1.1   bouyer #define tl_bpf   tl_if.if_bpf
    153  1.1   bouyer 
    154  1.1   bouyer typedef struct tl_softc tl_softc_t;
    155  1.1   bouyer typedef u_long ioctl_cmd_t;
    156  1.1   bouyer 
    157  1.1   bouyer #define TL_HR_READ(sc, reg) \
    158  1.1   bouyer 	bus_space_read_4(sc->tl_bustag, sc->tl_bushandle, (reg))
    159  1.1   bouyer #define TL_HR_READ_BYTE(sc, reg) \
    160  1.1   bouyer 	bus_space_read_1(sc->tl_bustag, sc->tl_bushandle, (reg))
    161  1.1   bouyer #define TL_HR_WRITE(sc, reg, data) \
    162  1.1   bouyer 	bus_space_write_4(sc->tl_bustag, sc->tl_bushandle, (reg), (data))
    163  1.1   bouyer #define TL_HR_WRITE_BYTE(sc, reg, data) \
    164  1.1   bouyer 	bus_space_write_1(sc->tl_bustag, sc->tl_bushandle, (reg), (data))
    165  1.1   bouyer #define ETHER_MIN_TX (ETHERMIN + sizeof(struct ether_header))
    166  1.1   bouyer 
    167  1.4  thorpej static int tl_pci_match __P((struct device *, void *, void *));
    168  1.1   bouyer static void tl_pci_attach __P((struct device *, struct device *, void *));
    169  1.1   bouyer static int tl_intr __P((void *));
    170  1.1   bouyer 
    171  1.1   bouyer static int tl_ifioctl __P((struct ifnet *, ioctl_cmd_t, caddr_t));
    172  1.1   bouyer static int tl_mediachange __P((struct ifnet *));
    173  1.1   bouyer static void tl_mediastatus __P((struct ifnet *, struct ifmediareq *));
    174  1.1   bouyer static void tl_ifwatchdog __P((struct ifnet *));
    175  1.1   bouyer static void tl_shutdown __P((void*));
    176  1.1   bouyer 
    177  1.1   bouyer static void tl_ifstart __P((struct ifnet *));
    178  1.1   bouyer static void tl_reset __P((tl_softc_t*));
    179  1.1   bouyer static int  tl_init __P((tl_softc_t*));
    180  1.1   bouyer static void tl_restart __P((void  *));
    181  1.1   bouyer static int  tl_add_RxBuff __P((struct Rx_list*, struct mbuf*));
    182  1.1   bouyer static void tl_read_stats __P((tl_softc_t*));
    183  1.1   bouyer static void tl_ticks __P((void*));
    184  1.1   bouyer static int tl_multicast_hash __P((u_int8_t*));
    185  1.1   bouyer static void tl_addr_filter __P((tl_softc_t*));
    186  1.1   bouyer 
    187  1.1   bouyer static u_int32_t tl_intreg_read __P((tl_softc_t*, u_int32_t));
    188  1.1   bouyer static void tl_intreg_write __P((tl_softc_t*, u_int32_t, u_int32_t));
    189  1.1   bouyer static u_int8_t tl_intreg_read_byte __P((tl_softc_t*, u_int32_t));
    190  1.1   bouyer static void tl_intreg_write_byte __P((tl_softc_t*, u_int32_t, u_int8_t));
    191  1.1   bouyer 
    192  1.1   bouyer 
    193  1.1   bouyer #if defined(TLDEBUG_RX)
    194  1.1   bouyer static void ether_printheader __P((struct ether_header*));
    195  1.1   bouyer #endif
    196  1.1   bouyer 
    197  1.1   bouyer void tl_mii_set __P((void*, u_int8_t));
    198  1.1   bouyer void tl_mii_clr __P((void*, u_int8_t));
    199  1.1   bouyer int tl_mii_read __P((void*, u_int8_t));
    200  1.1   bouyer 
    201  1.1   bouyer void tl_i2c_set __P((void*, u_int8_t));
    202  1.1   bouyer void tl_i2c_clr __P((void*, u_int8_t));
    203  1.1   bouyer int tl_i2c_read __P((void*, u_int8_t));
    204  1.1   bouyer 
    205  1.1   bouyer static __inline void netsio_clr __P((tl_softc_t*, u_int8_t));
    206  1.1   bouyer static __inline void netsio_set __P((tl_softc_t*, u_int8_t));
    207  1.1   bouyer static __inline u_int8_t netsio_read __P((tl_softc_t*, u_int8_t));
    208  1.1   bouyer static __inline void netsio_clr(sc, bits)
    209  1.1   bouyer 	tl_softc_t* sc;
    210  1.1   bouyer 	u_int8_t bits;
    211  1.1   bouyer {
    212  1.1   bouyer 	tl_intreg_write_byte(sc, TL_INT_NET + TL_INT_NetSio,
    213  1.1   bouyer 		tl_intreg_read_byte(sc, TL_INT_NET + TL_INT_NetSio) & (~bits));
    214  1.1   bouyer }
    215  1.1   bouyer static __inline void netsio_set(sc, bits)
    216  1.1   bouyer 	tl_softc_t* sc;
    217  1.1   bouyer 	u_int8_t bits;
    218  1.1   bouyer {
    219  1.1   bouyer 	tl_intreg_write_byte(sc, TL_INT_NET + TL_INT_NetSio,
    220  1.1   bouyer 		tl_intreg_read_byte(sc, TL_INT_NET + TL_INT_NetSio) | bits);
    221  1.1   bouyer }
    222  1.1   bouyer static __inline u_int8_t netsio_read(sc, bits)
    223  1.1   bouyer 	tl_softc_t* sc;
    224  1.1   bouyer 	u_int8_t bits;
    225  1.1   bouyer {
    226  1.4  thorpej 	return (tl_intreg_read_byte(sc, TL_INT_NET + TL_INT_NetSio) & bits);
    227  1.1   bouyer }
    228  1.1   bouyer 
    229  1.1   bouyer struct cfattach tl_ca = {
    230  1.4  thorpej 	sizeof(tl_softc_t), tl_pci_match, tl_pci_attach
    231  1.1   bouyer };
    232  1.1   bouyer 
    233  1.1   bouyer struct cfdriver tl_cd = {
    234  1.1   bouyer 	0, "tl", DV_IFNET
    235  1.1   bouyer };
    236  1.1   bouyer 
    237  1.4  thorpej struct tl_product_desc {
    238  1.4  thorpej 	u_int32_t tp_product;
    239  1.4  thorpej 	u_int32_t tp_adapter;
    240  1.4  thorpej 	const char *tp_desc;
    241  1.4  thorpej };
    242  1.4  thorpej 
    243  1.4  thorpej const struct tl_product_desc tl_compaq_products[] = {
    244  1.4  thorpej 	{ PCI_PRODUCT_COMPAQ_N100TX, COMPAQ_NETLIGENT_10_100,
    245  1.4  thorpej 	  "Compaq Netelligent 10/100 TX" },
    246  1.4  thorpej 	{ PCI_PRODUCT_COMPAQ_N10T, COMPAQ_NETLIGENT_10,
    247  1.4  thorpej 	  "Compaq Netelligent 10 T" },
    248  1.4  thorpej 	{ PCI_PRODUCT_COMPAQ_IntNF3P, COMPAQ_INT_NETFLEX,
    249  1.4  thorpej 	  "Compaq Integrated NetFlex 3/P" },
    250  1.4  thorpej 	{ PCI_PRODUCT_COMPAQ_IntPL100TX, COMPAQ_INT_NETLIGENT_10_100,
    251  1.4  thorpej 	  "Compaq ProLiant Integrated Netelligent 10/100 TX" },
    252  1.4  thorpej 	{ PCI_PRODUCT_COMPAQ_DPNet100TX, COMPAQ_DUAL_NETLIGENT_10_100,
    253  1.4  thorpej 	  "Compaq Dual Port Netelligent 10/100 TX" },
    254  1.4  thorpej 	{ PCI_PRODUCT_COMPAQ_DP4000, COMPAQ_DSKP4000,
    255  1.4  thorpej 	  "Compaq Deskpro 4000 5233MMX" },
    256  1.4  thorpej 	{ PCI_PRODUCT_COMPAQ_NF3P_BNC, COMPAQ_NETFLEX_BNC,
    257  1.4  thorpej 	  "Compaq NetFlex 3/P w/ BNC" },
    258  1.4  thorpej 	{ PCI_PRODUCT_COMPAQ_NF3P, COMPAQ_NETFLEX,
    259  1.4  thorpej 	  "Compaq NetFlex 3/P" },
    260  1.4  thorpej 	{ 0, 0, NULL },
    261  1.4  thorpej };
    262  1.4  thorpej 
    263  1.4  thorpej const struct tl_product_desc tl_ti_products[] = {
    264  1.4  thorpej 	{ PCI_PRODUCT_TI_TLAN, TI_TLAN,
    265  1.4  thorpej 	  "Texas Instruments ThunderLAN" },
    266  1.4  thorpej 	{ 0, 0, NULL },
    267  1.4  thorpej };
    268  1.4  thorpej 
    269  1.4  thorpej struct tl_vendor_desc {
    270  1.4  thorpej 	u_int32_t tv_vendor;
    271  1.4  thorpej 	const struct tl_product_desc *tv_products;
    272  1.4  thorpej };
    273  1.4  thorpej 
    274  1.4  thorpej const struct tl_vendor_desc tl_vendors[] = {
    275  1.4  thorpej 	{ PCI_VENDOR_COMPAQ, tl_compaq_products },
    276  1.4  thorpej 	{ PCI_VENDOR_TI, tl_ti_products },
    277  1.4  thorpej 	{ 0, NULL },
    278  1.4  thorpej };
    279  1.4  thorpej 
    280  1.4  thorpej const struct tl_product_desc *tl_lookup_product __P((u_int32_t));
    281  1.4  thorpej 
    282  1.4  thorpej const struct tl_product_desc *
    283  1.4  thorpej tl_lookup_product(id)
    284  1.4  thorpej 	u_int32_t id;
    285  1.4  thorpej {
    286  1.4  thorpej 	const struct tl_product_desc *tp;
    287  1.4  thorpej 	const struct tl_vendor_desc *tv;
    288  1.4  thorpej 
    289  1.4  thorpej 	for (tv = tl_vendors; tv->tv_products != NULL; tv++)
    290  1.4  thorpej 		if (PCI_VENDOR(id) == tv->tv_vendor)
    291  1.4  thorpej 			break;
    292  1.4  thorpej 
    293  1.4  thorpej 	if ((tp = tv->tv_products) == NULL)
    294  1.4  thorpej 		return (NULL);
    295  1.4  thorpej 
    296  1.4  thorpej 	for (; tp->tp_desc != NULL; tp++)
    297  1.4  thorpej 		if (PCI_PRODUCT(id) == tp->tp_product)
    298  1.4  thorpej 			break;
    299  1.4  thorpej 
    300  1.4  thorpej 	if (tp->tp_desc == NULL)
    301  1.4  thorpej 		return (NULL);
    302  1.4  thorpej 
    303  1.4  thorpej 	return (tp);
    304  1.4  thorpej }
    305  1.4  thorpej 
    306  1.1   bouyer static char *nullbuf;
    307  1.1   bouyer 
    308  1.1   bouyer static int
    309  1.4  thorpej tl_pci_match(parent, match, aux)
    310  1.1   bouyer 	struct device *parent;
    311  1.1   bouyer 	void *match;
    312  1.1   bouyer 	void *aux;
    313  1.1   bouyer {
    314  1.1   bouyer 	struct pci_attach_args *pa = (struct pci_attach_args *) aux;
    315  1.1   bouyer 
    316  1.4  thorpej 	if (tl_lookup_product(pa->pa_id) != NULL)
    317  1.4  thorpej 		return (1);
    318  1.4  thorpej 
    319  1.4  thorpej 	return (0);
    320  1.1   bouyer }
    321  1.1   bouyer 
    322  1.1   bouyer static void
    323  1.1   bouyer tl_pci_attach(parent, self, aux)
    324  1.1   bouyer 	struct device * parent;
    325  1.1   bouyer 	struct device * self;
    326  1.1   bouyer 	void * aux;
    327  1.1   bouyer {
    328  1.1   bouyer 	tl_softc_t *sc = (tl_softc_t *)self;
    329  1.1   bouyer 	struct pci_attach_args * const pa = (struct pci_attach_args *) aux;
    330  1.4  thorpej 	const struct tl_product_desc *tp;
    331  1.1   bouyer 	struct ifnet * const ifp = &sc->tl_if;
    332  1.1   bouyer 	bus_space_tag_t iot, memt;
    333  1.1   bouyer 	bus_space_handle_t ioh, memh;
    334  1.1   bouyer 	pci_intr_handle_t intrhandle;
    335  1.4  thorpej 	const char *intrstr;
    336  1.4  thorpej 	int i, tmp, ioh_valid, memh_valid;
    337  1.4  thorpej 	pcireg_t csr;
    338  1.4  thorpej 
    339  1.4  thorpej 	printf("\n");
    340  1.4  thorpej 
    341  1.4  thorpej 	/* Map the card space. */
    342  1.4  thorpej 	ioh_valid = (pci_mapreg_map(pa, PCI_CBIO, PCI_MAPREG_TYPE_IO, 0,
    343  1.4  thorpej 	    &iot, &ioh, NULL, NULL) == 0);
    344  1.4  thorpej 	memh_valid = (pci_mapreg_map(pa, PCI_CBMA,
    345  1.4  thorpej 	    PCI_MAPREG_TYPE_MEM | PCI_MAPREG_MEM_TYPE_32BIT,
    346  1.4  thorpej 	    0, &memt, &memh, NULL, NULL) == 0);
    347  1.4  thorpej 
    348  1.4  thorpej 	if (memh_valid) {
    349  1.4  thorpej 		sc->tl_bustag = memt;
    350  1.4  thorpej 		sc->tl_bushandle = memh;
    351  1.4  thorpej 	} else if (ioh_valid) {
    352  1.4  thorpej 		sc->tl_bustag = iot;
    353  1.4  thorpej 		sc->tl_bushandle = ioh;
    354  1.1   bouyer 	} else {
    355  1.4  thorpej 		printf("%s: unable to map device registers\n",
    356  1.4  thorpej 		    sc->sc_dev.dv_xname);
    357  1.4  thorpej 		return;
    358  1.1   bouyer 	}
    359  1.1   bouyer 
    360  1.4  thorpej 	/* Enable the device. */
    361  1.4  thorpej 	csr = pci_conf_read(pa->pa_pc, pa->pa_tag, PCI_COMMAND_STATUS_REG);
    362  1.4  thorpej 	pci_conf_write(pa->pa_pc, pa->pa_tag, PCI_COMMAND_STATUS_REG,
    363  1.4  thorpej 	    csr | PCI_COMMAND_MASTER_ENABLE);
    364  1.4  thorpej 
    365  1.4  thorpej 	tp = tl_lookup_product(pa->pa_id);
    366  1.4  thorpej 	if (tp == NULL)
    367  1.4  thorpej 		panic("tl_pci_attach: impossible");
    368  1.1   bouyer 
    369  1.4  thorpej 	printf("%s: %s\n", sc->sc_dev.dv_xname, tp->tp_desc);
    370  1.4  thorpej 	sc->mii.adapter_id = tp->tp_adapter;
    371  1.1   bouyer 
    372  1.1   bouyer 	tl_reset(sc);
    373  1.1   bouyer 
    374  1.1   bouyer 	/* fill in the i2c struct */
    375  1.1   bouyer 	sc->i2cbus.adapter_softc = sc;
    376  1.1   bouyer 	sc->i2cbus.set_bit = tl_i2c_set;
    377  1.1   bouyer 	sc->i2cbus.clr_bit = tl_i2c_clr;
    378  1.1   bouyer 	sc->i2cbus.read_bit = tl_i2c_read;
    379  1.1   bouyer 
    380  1.1   bouyer #ifdef TLDEBUG
    381  1.1   bouyer 	printf("default values of INTreg: 0x%x\n",
    382  1.1   bouyer 		tl_intreg_read(sc, TL_INT_Defaults));
    383  1.1   bouyer #endif
    384  1.1   bouyer 
    385  1.1   bouyer 	/* read mac addr */
    386  1.1   bouyer 	for (i=0; i<ETHER_ADDR_LEN; i++) {
    387  1.1   bouyer 		tmp = i2c_eeprom_read(&sc->i2cbus, 0x83 + i);
    388  1.1   bouyer 		if (tmp < 0) {
    389  1.4  thorpej 			printf("%s: error reading Ethernet adress\n",
    390  1.4  thorpej 			    sc->sc_dev.dv_xname);
    391  1.1   bouyer 			return;
    392  1.1   bouyer 		} else {
    393  1.1   bouyer 			sc->tl_enaddr[i] = tmp;
    394  1.1   bouyer 		}
    395  1.1   bouyer 	}
    396  1.4  thorpej 	printf("%s: Ethernet address %s\n", sc->sc_dev.dv_xname,
    397  1.1   bouyer 		ether_sprintf(sc->tl_enaddr));
    398  1.1   bouyer 
    399  1.4  thorpej 	/* Map and establish interrupts */
    400  1.4  thorpej 	if (pci_intr_map(pa->pa_pc, pa->pa_intrtag, pa->pa_intrpin,
    401  1.4  thorpej 		pa->pa_intrline, &intrhandle)) {
    402  1.4  thorpej 		printf("%s: couldn't map interrupt\n", sc->sc_dev.dv_xname);
    403  1.4  thorpej 		return;
    404  1.4  thorpej 	}
    405  1.4  thorpej 	intrstr = pci_intr_string(pa->pa_pc, intrhandle);
    406  1.4  thorpej 	sc->tl_ih = pci_intr_establish(pa->pa_pc, intrhandle, IPL_NET,
    407  1.4  thorpej 		tl_intr, sc);
    408  1.4  thorpej 	if (sc->tl_ih == NULL) {
    409  1.4  thorpej 		printf("%s: couldn't establish interrupt",
    410  1.4  thorpej 		    sc->sc_dev.dv_xname);
    411  1.4  thorpej 		if (intrstr != NULL)
    412  1.4  thorpej 			printf(" at %s", intrstr);
    413  1.4  thorpej 		printf("\n");
    414  1.4  thorpej 		return;
    415  1.4  thorpej 	}
    416  1.4  thorpej 	printf("%s: interrupting at %s\n", sc->sc_dev.dv_xname, intrstr);
    417  1.4  thorpej 
    418  1.4  thorpej 	/*
    419  1.4  thorpej 	 * Add shutdown hook so that DMA is disabled prior to reboot. Not
    420  1.4  thorpej 	 * doing do could allow DMA to corrupt kernel memory during the
    421  1.4  thorpej 	 * reboot before the driver initializes.
    422  1.4  thorpej 	 */
    423  1.4  thorpej 	(void) shutdownhook_establish(tl_shutdown, sc);
    424  1.4  thorpej 
    425  1.1   bouyer 	sc->mii.adapter_softc = sc;
    426  1.1   bouyer 	sc->mii.mii_setbit = tl_mii_set;
    427  1.1   bouyer 	sc->mii.mii_clrbit = tl_mii_clr;
    428  1.1   bouyer 	sc->mii.mii_readbit = tl_mii_read;
    429  1.1   bouyer 	sc->mii.mii_readreg = NULL; /* Let generic MII function handle that */
    430  1.1   bouyer 	sc->mii.mii_writereg = NULL;
    431  1.1   bouyer 	if (config_found(self, (void*)&sc->mii, NULL) == NULL) {
    432  1.1   bouyer 		printf("%s: no mii configured\n", sc->sc_dev.dv_xname);
    433  1.1   bouyer 		return;
    434  1.1   bouyer 	}
    435  1.1   bouyer 
    436  1.1   bouyer 	ifmedia_init(&sc->tl_ifmedia, 0, tl_mediachange, tl_mediastatus);
    437  1.1   bouyer 	mii_media_add(&sc->tl_ifmedia, &sc->mii);
    438  1.1   bouyer 	ifmedia_set(&sc->tl_ifmedia, IFM_ETHER | IFM_NONE);
    439  1.1   bouyer 
    440  1.1   bouyer 	bcopy(sc->sc_dev.dv_xname, sc->tl_if.if_xname, IFNAMSIZ);
    441  1.1   bouyer 	sc->tl_if.if_softc = sc;
    442  1.1   bouyer 	ifp->if_flags = IFF_BROADCAST|IFF_SIMPLEX|IFF_NOTRAILERS|IFF_MULTICAST;
    443  1.1   bouyer 	ifp->if_ioctl = tl_ifioctl;
    444  1.1   bouyer 	ifp->if_start = tl_ifstart;
    445  1.1   bouyer 	ifp->if_watchdog = tl_ifwatchdog;
    446  1.1   bouyer 	ifp->if_timer = 0;
    447  1.1   bouyer 	if_attach(ifp);
    448  1.1   bouyer 	ether_ifattach(&(sc)->tl_if, (sc)->tl_enaddr);
    449  1.1   bouyer #if NBPFILTER > 0
    450  1.1   bouyer 	bpfattach(&sc->tl_bpf, &sc->tl_if, DLT_EN10MB,
    451  1.1   bouyer 		sizeof(struct ether_header));
    452  1.1   bouyer #endif
    453  1.1   bouyer 	sc->mii.mii_media_active = IFM_NONE;
    454  1.1   bouyer }
    455  1.1   bouyer 
    456  1.1   bouyer static void
    457  1.1   bouyer tl_reset(sc)
    458  1.1   bouyer 	tl_softc_t *sc;
    459  1.1   bouyer {
    460  1.1   bouyer 	int i;
    461  1.1   bouyer 
    462  1.1   bouyer 	/* read stats */
    463  1.1   bouyer 	if (sc->tl_if.if_flags & IFF_RUNNING) {
    464  1.1   bouyer 		untimeout(tl_ticks, sc);
    465  1.1   bouyer 		tl_read_stats(sc);
    466  1.1   bouyer 	}
    467  1.1   bouyer 	/* Reset adapter */
    468  1.1   bouyer 	TL_HR_WRITE(sc, TL_HOST_CMD,
    469  1.1   bouyer 		TL_HR_READ(sc, TL_HOST_CMD) | HOST_CMD_Ad_Rst);
    470  1.1   bouyer 	DELAY(100000);
    471  1.1   bouyer 	/* Disable interrupts */
    472  1.1   bouyer 	TL_HR_WRITE(sc, TL_HOST_CMD, HOST_CMD_IntOff);
    473  1.1   bouyer 	/* setup aregs & hash */
    474  1.1   bouyer 	for (i = TL_INT_Areg0; i <= TL_INT_HASH2; i = i + 4)
    475  1.1   bouyer 		tl_intreg_write(sc, i, 0);
    476  1.1   bouyer #ifdef TLDEBUG_ADDR
    477  1.1   bouyer 	printf("Areg & hash registers: \n");
    478  1.1   bouyer 	for (i = TL_INT_Areg0; i <= TL_INT_HASH2; i = i + 4)
    479  1.1   bouyer 		printf("    reg %x: %x\n", i, tl_intreg_read(sc, i));
    480  1.1   bouyer #endif
    481  1.1   bouyer 	/* Setup NetConfig */
    482  1.1   bouyer 	tl_intreg_write(sc, TL_INT_NetConfig,
    483  1.1   bouyer 		TL_NETCONFIG_1F | TL_NETCONFIG_1chn | TL_NETCONFIG_PHY_EN);
    484  1.1   bouyer 	/* Bsize: accept default */
    485  1.1   bouyer 	/* TX commit in Acommit: accept default */
    486  1.1   bouyer 	/* Load Ld_tmr and Ld_thr */
    487  1.1   bouyer 	/* Ld_tmr = 3 */
    488  1.1   bouyer 	TL_HR_WRITE(sc, TL_HOST_CMD, 0x3 | HOST_CMD_LdTmr);
    489  1.1   bouyer 	/* Ld_thr = 0 */
    490  1.1   bouyer 	TL_HR_WRITE(sc, TL_HOST_CMD, 0x0 | HOST_CMD_LdThr);
    491  1.1   bouyer 	/* Unreset MII */
    492  1.1   bouyer 	netsio_set(sc, TL_NETSIO_NMRST);
    493  1.1   bouyer 	DELAY(100000);
    494  1.1   bouyer 	sc->mii.mii_media_status &= ~IFM_ACTIVE;
    495  1.1   bouyer 	sc->tl_flags = 0;
    496  1.1   bouyer 	sc->opkt = 0;
    497  1.1   bouyer 	sc->stats_exesscoll = 0;
    498  1.1   bouyer }
    499  1.1   bouyer 
    500  1.1   bouyer static void tl_shutdown(v)
    501  1.1   bouyer 	void *v;
    502  1.1   bouyer {
    503  1.1   bouyer 	tl_softc_t *sc = v;
    504  1.1   bouyer 	struct Tx_list *Tx;
    505  1.1   bouyer 	int i;
    506  1.1   bouyer 
    507  1.1   bouyer 	if ((sc->tl_if.if_flags & IFF_RUNNING) == 0)
    508  1.1   bouyer 		return;
    509  1.1   bouyer 	/* disable interrupts */
    510  1.1   bouyer 	TL_HR_WRITE(sc, TL_HOST_CMD,
    511  1.1   bouyer 		HOST_CMD_IntOff);
    512  1.1   bouyer 	/* stop TX and RX channels */
    513  1.1   bouyer 	TL_HR_WRITE(sc, TL_HOST_CMD,
    514  1.1   bouyer 		HOST_CMD_STOP | HOST_CMD_RT | HOST_CMD_Nes);
    515  1.1   bouyer 	TL_HR_WRITE(sc, TL_HOST_CMD, HOST_CMD_STOP);
    516  1.1   bouyer 	DELAY(100000);
    517  1.1   bouyer 
    518  1.1   bouyer 	/* stop statistics reading loop, read stats */
    519  1.1   bouyer 	untimeout(tl_ticks, sc);
    520  1.1   bouyer 	tl_read_stats(sc);
    521  1.1   bouyer 
    522  1.1   bouyer 	/* deallocate memory allocations */
    523  1.1   bouyer 	for (i=0; i< TL_NBUF; i++) {
    524  1.1   bouyer 		if (sc->Rx_list[i].m)
    525  1.1   bouyer 			m_freem(sc->Rx_list[i].m);
    526  1.1   bouyer 			sc->Rx_list[i].m = NULL;
    527  1.1   bouyer 	}
    528  1.1   bouyer 	free(sc->Rx_list, M_DEVBUF);
    529  1.1   bouyer 	sc->Rx_list = NULL;
    530  1.1   bouyer 	while ((Tx = sc->active_Tx) != NULL) {
    531  1.1   bouyer 		Tx->hw_list.stat = 0;
    532  1.1   bouyer 		m_freem(Tx->m);
    533  1.1   bouyer 		sc->active_Tx = Tx->next;
    534  1.1   bouyer 		Tx->next = sc->Free_Tx;
    535  1.1   bouyer 		sc->Free_Tx = Tx;
    536  1.1   bouyer 	}
    537  1.1   bouyer 	sc->last_Tx = NULL;
    538  1.1   bouyer 	free(sc->Tx_list, M_DEVBUF);
    539  1.1   bouyer 	sc->Tx_list = NULL;
    540  1.1   bouyer 	if (nullbuf)
    541  1.1   bouyer 		free(nullbuf, M_DEVBUF);
    542  1.1   bouyer 	nullbuf = NULL;
    543  1.1   bouyer 	sc->tl_if.if_flags &= ~(IFF_RUNNING | IFF_OACTIVE);
    544  1.1   bouyer 	sc->mii.mii_media_status &= ~IFM_ACTIVE;
    545  1.1   bouyer 	sc->tl_flags = 0;
    546  1.1   bouyer }
    547  1.1   bouyer 
    548  1.1   bouyer static void tl_restart(v)
    549  1.1   bouyer 	void *v;
    550  1.1   bouyer {
    551  1.1   bouyer 	tl_init(v);
    552  1.1   bouyer }
    553  1.1   bouyer 
    554  1.1   bouyer static int tl_init(sc)
    555  1.1   bouyer 	tl_softc_t *sc;
    556  1.1   bouyer {
    557  1.1   bouyer 	struct ifnet *ifp = &sc->tl_if;
    558  1.1   bouyer 	int i, s;
    559  1.1   bouyer 
    560  1.1   bouyer 	s = splimp();
    561  1.1   bouyer 	/* cancel any pending IO */
    562  1.1   bouyer 	tl_shutdown(sc);
    563  1.1   bouyer 	tl_reset(sc);
    564  1.1   bouyer 	if ((sc->tl_if.if_flags & IFF_UP) == 0) {
    565  1.1   bouyer 		splx(s);
    566  1.1   bouyer 		return 0;
    567  1.1   bouyer 	}
    568  1.1   bouyer 	/* Set various register to reasonable value */
    569  1.1   bouyer 	/* setup NetCmd in promisc mode if needed */
    570  1.1   bouyer 	i = (ifp->if_flags & IFF_PROMISC) ? TL_NETCOMMAND_CAF : 0;
    571  1.1   bouyer 	tl_intreg_write_byte(sc, TL_INT_NET + TL_INT_NetCmd,
    572  1.1   bouyer 		TL_NETCOMMAND_NRESET | TL_NETCOMMAND_NWRAP | i);
    573  1.1   bouyer 	/* Max receive size : MCLBYTES */
    574  1.1   bouyer 	tl_intreg_write_byte(sc, TL_INT_MISC + TL_MISC_MaxRxL, MCLBYTES & 0xff);
    575  1.1   bouyer 	tl_intreg_write_byte(sc, TL_INT_MISC + TL_MISC_MaxRxH,
    576  1.1   bouyer 		(MCLBYTES >> 8) & 0xff);
    577  1.1   bouyer 
    578  1.1   bouyer 	/* init MAC addr */
    579  1.1   bouyer 	for (i = 0; i < ETHER_ADDR_LEN; i++)
    580  1.1   bouyer 		tl_intreg_write_byte(sc, TL_INT_Areg0 + i , sc->tl_enaddr[i]);
    581  1.1   bouyer 	/* add multicast filters */
    582  1.1   bouyer 	tl_addr_filter(sc);
    583  1.1   bouyer #ifdef TLDEBUG_ADDR
    584  1.1   bouyer 	printf("Wrote Mac addr, Areg & hash registers are now: \n");
    585  1.1   bouyer 	for (i = TL_INT_Areg0; i <= TL_INT_HASH2; i = i + 4)
    586  1.1   bouyer 		printf("    reg %x: %x\n", i, tl_intreg_read(sc, i));
    587  1.1   bouyer #endif
    588  1.1   bouyer 
    589  1.1   bouyer 	/* Pre-allocate receivers mbuf, make the lists */
    590  1.1   bouyer 	sc->Rx_list = malloc(sizeof(struct Rx_list) * TL_NBUF, M_DEVBUF, M_NOWAIT);
    591  1.1   bouyer 	sc->Tx_list = malloc(sizeof(struct Tx_list) * TL_NBUF, M_DEVBUF, M_NOWAIT);
    592  1.1   bouyer 	if (sc->Rx_list == NULL || sc->Tx_list == NULL) {
    593  1.1   bouyer 		printf("%s: out of memory for lists\n", sc->sc_dev.dv_xname);
    594  1.1   bouyer 		sc->tl_if.if_flags &= ~IFF_UP;
    595  1.1   bouyer 		splx(s);
    596  1.1   bouyer 		return ENOMEM;
    597  1.1   bouyer 	}
    598  1.1   bouyer 	for (i=0; i< TL_NBUF; i++) {
    599  1.1   bouyer 		if(tl_add_RxBuff(&sc->Rx_list[i], NULL) == 0) {
    600  1.1   bouyer 			printf("%s: out of mbuf for receive list\n", sc->sc_dev.dv_xname);
    601  1.1   bouyer 			sc->tl_if.if_flags &= ~IFF_UP;
    602  1.1   bouyer 			splx(s);
    603  1.1   bouyer 			return ENOMEM;
    604  1.1   bouyer 		}
    605  1.1   bouyer 		if (i > 0) { /* chain the list */
    606  1.1   bouyer 			sc->Rx_list[i-1].next = &sc->Rx_list[i];
    607  1.1   bouyer 			sc->Rx_list[i-1].hw_list.fwd = vtophys(&sc->Rx_list[i].hw_list);
    608  1.1   bouyer #ifdef DIAGNOSTIC
    609  1.1   bouyer 			if (sc->Rx_list[i-1].hw_list.fwd & 0x7)
    610  1.1   bouyer 				printf("%s: physical addr 0x%x of list not properly aligned\n",
    611  1.1   bouyer 					sc->sc_dev.dv_xname, sc->Rx_list[i-1].hw_list.fwd);
    612  1.1   bouyer #endif
    613  1.1   bouyer 			sc->Tx_list[i-1].next = &sc->Tx_list[i];
    614  1.1   bouyer 		}
    615  1.1   bouyer 	}
    616  1.1   bouyer 	sc->Rx_list[TL_NBUF-1].next = NULL;
    617  1.1   bouyer 	sc->Rx_list[TL_NBUF-1].hw_list.fwd = 0;
    618  1.1   bouyer 	sc->Tx_list[TL_NBUF-1].next = NULL;
    619  1.1   bouyer 
    620  1.1   bouyer 	sc->active_Rx = &sc->Rx_list[0];
    621  1.1   bouyer 	sc->last_Rx   = &sc->Rx_list[TL_NBUF-1];
    622  1.1   bouyer 	sc->active_Tx = sc->last_Tx = NULL;
    623  1.1   bouyer 	sc->Free_Tx   = &sc->Tx_list[0];
    624  1.1   bouyer 
    625  1.1   bouyer 	nullbuf = malloc(ETHER_MIN_TX, M_DEVBUF, M_NOWAIT);
    626  1.1   bouyer 	if (nullbuf == NULL) {
    627  1.1   bouyer 		printf("%s: can't allocate space for pad buffer\n",
    628  1.1   bouyer 			sc->sc_dev.dv_xname);
    629  1.1   bouyer 		sc->tl_if.if_flags &= ~IFF_UP;
    630  1.1   bouyer 		splx(s);
    631  1.1   bouyer 		return ENOMEM;
    632  1.1   bouyer 	}
    633  1.1   bouyer 	bzero(nullbuf, ETHER_MIN_TX);
    634  1.1   bouyer 
    635  1.1   bouyer 	/* set media if needed */
    636  1.1   bouyer 	if (IFM_SUBTYPE(sc->mii.mii_media_active) != IFM_NONE) {
    637  1.1   bouyer 		mii_mediachg(&sc->mii);
    638  1.1   bouyer 	}
    639  1.1   bouyer 
    640  1.1   bouyer 	/* start ticks calls */
    641  1.1   bouyer 	timeout(tl_ticks, sc, hz);
    642  1.1   bouyer 	/* write adress of Rx list and enable interrupts */
    643  1.1   bouyer 	TL_HR_WRITE(sc, TL_HOST_CH_PARM, vtophys(&sc->Rx_list[0].hw_list));
    644  1.1   bouyer 	TL_HR_WRITE(sc, TL_HOST_CMD,
    645  1.1   bouyer 		HOST_CMD_GO | HOST_CMD_RT | HOST_CMD_Nes | HOST_CMD_IntOn);
    646  1.1   bouyer 	sc->tl_if.if_flags |= IFF_RUNNING;
    647  1.1   bouyer 	sc->tl_if.if_flags &= ~IFF_OACTIVE;
    648  1.1   bouyer 	return 0;
    649  1.1   bouyer }
    650  1.1   bouyer 
    651  1.1   bouyer 
    652  1.1   bouyer static u_int32_t
    653  1.1   bouyer tl_intreg_read(sc, reg)
    654  1.1   bouyer 	tl_softc_t *sc;
    655  1.1   bouyer 	u_int32_t reg;
    656  1.1   bouyer {
    657  1.1   bouyer 	TL_HR_WRITE(sc, TL_HOST_INTR_DIOADR, reg & TL_HOST_DIOADR_MASK);
    658  1.1   bouyer 	return TL_HR_READ(sc, TL_HOST_DIO_DATA);
    659  1.1   bouyer }
    660  1.1   bouyer 
    661  1.1   bouyer static u_int8_t
    662  1.1   bouyer tl_intreg_read_byte(sc, reg)
    663  1.1   bouyer 	tl_softc_t *sc;
    664  1.1   bouyer 	u_int32_t reg;
    665  1.1   bouyer {
    666  1.1   bouyer 	TL_HR_WRITE(sc, TL_HOST_INTR_DIOADR,
    667  1.1   bouyer 		(reg & (~0x07)) & TL_HOST_DIOADR_MASK);
    668  1.1   bouyer 	return TL_HR_READ_BYTE(sc, TL_HOST_DIO_DATA + (reg & 0x07));
    669  1.1   bouyer }
    670  1.1   bouyer 
    671  1.1   bouyer static void
    672  1.1   bouyer tl_intreg_write(sc, reg, val)
    673  1.1   bouyer 	tl_softc_t *sc;
    674  1.1   bouyer 	u_int32_t reg;
    675  1.1   bouyer 	u_int32_t val;
    676  1.1   bouyer {
    677  1.1   bouyer 	TL_HR_WRITE(sc, TL_HOST_INTR_DIOADR, reg & TL_HOST_DIOADR_MASK);
    678  1.1   bouyer 	TL_HR_WRITE(sc, TL_HOST_DIO_DATA, val);
    679  1.1   bouyer }
    680  1.1   bouyer 
    681  1.1   bouyer static void
    682  1.1   bouyer tl_intreg_write_byte(sc, reg, val)
    683  1.1   bouyer 	tl_softc_t *sc;
    684  1.1   bouyer 	u_int32_t reg;
    685  1.1   bouyer 	u_int8_t val;
    686  1.1   bouyer {
    687  1.1   bouyer 	TL_HR_WRITE(sc, TL_HOST_INTR_DIOADR,
    688  1.1   bouyer 		(reg & (~0x03)) & TL_HOST_DIOADR_MASK);
    689  1.1   bouyer 	TL_HR_WRITE_BYTE(sc, TL_HOST_DIO_DATA + (reg & 0x03), val);
    690  1.1   bouyer }
    691  1.1   bouyer 
    692  1.1   bouyer void tl_mii_set(v, bit)
    693  1.1   bouyer 	void *v;
    694  1.1   bouyer 	u_int8_t bit;
    695  1.1   bouyer {
    696  1.1   bouyer 	tl_softc_t *sc = v;
    697  1.1   bouyer 
    698  1.1   bouyer 	switch (bit) {
    699  1.1   bouyer 	case MII_DATA:
    700  1.1   bouyer 		netsio_set(sc, TL_NETSIO_MDATA);
    701  1.1   bouyer 		break;
    702  1.1   bouyer 	case MII_CLOCK:
    703  1.1   bouyer 		netsio_set(sc, TL_NETSIO_MCLK);
    704  1.1   bouyer 		break;
    705  1.1   bouyer 	case MII_TXEN:
    706  1.1   bouyer 		netsio_set(sc, TL_NETSIO_MTXEN);
    707  1.1   bouyer 		break;
    708  1.1   bouyer 	default:
    709  1.1   bouyer 		printf("tl_mii_set: unknown bit %d\n", bit);
    710  1.1   bouyer 	}
    711  1.1   bouyer }
    712  1.1   bouyer 
    713  1.1   bouyer void tl_mii_clr(v, bit)
    714  1.1   bouyer 	void *v;
    715  1.1   bouyer 	u_int8_t bit;
    716  1.1   bouyer {
    717  1.1   bouyer 	tl_softc_t *sc = v;
    718  1.1   bouyer 
    719  1.1   bouyer 	switch (bit) {
    720  1.1   bouyer 	case MII_DATA:
    721  1.1   bouyer 		netsio_clr(sc, TL_NETSIO_MDATA);
    722  1.1   bouyer 		break;
    723  1.1   bouyer 	case MII_CLOCK:
    724  1.1   bouyer 		netsio_clr(sc, TL_NETSIO_MCLK);
    725  1.1   bouyer 		break;
    726  1.1   bouyer 	case MII_TXEN:
    727  1.1   bouyer 		netsio_clr(sc, TL_NETSIO_MTXEN);
    728  1.1   bouyer 		break;
    729  1.1   bouyer 	default:
    730  1.1   bouyer 		printf("tl_mii_clr: unknown bit %d\n", bit);
    731  1.1   bouyer 	}
    732  1.1   bouyer 	return;
    733  1.1   bouyer }
    734  1.1   bouyer 
    735  1.1   bouyer int tl_mii_read(v, bit)
    736  1.1   bouyer 	void *v;
    737  1.1   bouyer 	u_int8_t bit;
    738  1.1   bouyer {
    739  1.1   bouyer 	tl_softc_t *sc = v;
    740  1.1   bouyer 
    741  1.1   bouyer 	switch (bit) {
    742  1.1   bouyer 	case MII_DATA:
    743  1.1   bouyer 		return netsio_read(sc, TL_NETSIO_MDATA);
    744  1.1   bouyer 		break;
    745  1.1   bouyer 	case MII_CLOCK:
    746  1.1   bouyer 		return netsio_read(sc, TL_NETSIO_MCLK);
    747  1.1   bouyer 		break;
    748  1.1   bouyer 	case MII_TXEN:
    749  1.1   bouyer 		return netsio_read(sc, TL_NETSIO_MTXEN);
    750  1.1   bouyer 		break;
    751  1.1   bouyer 	default:
    752  1.1   bouyer 		printf("tl_mii_read: unknown bit %d\n", bit);
    753  1.1   bouyer 		return -1;
    754  1.1   bouyer 	}
    755  1.1   bouyer }
    756  1.1   bouyer 
    757  1.1   bouyer void tl_i2c_set(v, bit)
    758  1.1   bouyer 	void *v;
    759  1.1   bouyer 	u_int8_t bit;
    760  1.1   bouyer {
    761  1.1   bouyer 	tl_softc_t *sc = v;
    762  1.1   bouyer 
    763  1.1   bouyer 	switch (bit) {
    764  1.1   bouyer 	case I2C_DATA:
    765  1.1   bouyer 		netsio_set(sc, TL_NETSIO_EDATA);
    766  1.1   bouyer 		break;
    767  1.1   bouyer 	case I2C_CLOCK:
    768  1.1   bouyer 		netsio_set(sc, TL_NETSIO_ECLOCK);
    769  1.1   bouyer 		break;
    770  1.1   bouyer 	case I2C_TXEN:
    771  1.1   bouyer 		netsio_set(sc, TL_NETSIO_ETXEN);
    772  1.1   bouyer 		break;
    773  1.1   bouyer 	default:
    774  1.1   bouyer 		printf("tl_i2c_set: unknown bit %d\n", bit);
    775  1.1   bouyer 	}
    776  1.1   bouyer 	return;
    777  1.1   bouyer }
    778  1.1   bouyer 
    779  1.1   bouyer void tl_i2c_clr(v, bit)
    780  1.1   bouyer 	void *v;
    781  1.1   bouyer 	u_int8_t bit;
    782  1.1   bouyer {
    783  1.1   bouyer 	tl_softc_t *sc = v;
    784  1.1   bouyer 
    785  1.1   bouyer 	switch (bit) {
    786  1.1   bouyer 	case I2C_DATA:
    787  1.1   bouyer 		netsio_clr(sc, TL_NETSIO_EDATA);
    788  1.1   bouyer 		break;
    789  1.1   bouyer 	case I2C_CLOCK:
    790  1.1   bouyer 		netsio_clr(sc, TL_NETSIO_ECLOCK);
    791  1.1   bouyer 		break;
    792  1.1   bouyer 	case I2C_TXEN:
    793  1.1   bouyer 		netsio_clr(sc, TL_NETSIO_ETXEN);
    794  1.1   bouyer 		break;
    795  1.1   bouyer 	default:
    796  1.1   bouyer 		printf("tl_i2c_clr: unknown bit %d\n", bit);
    797  1.1   bouyer 	}
    798  1.1   bouyer 	return;
    799  1.1   bouyer }
    800  1.1   bouyer 
    801  1.1   bouyer int tl_i2c_read(v, bit)
    802  1.1   bouyer 	void *v;
    803  1.1   bouyer 	u_int8_t bit;
    804  1.1   bouyer {
    805  1.1   bouyer 	tl_softc_t *sc = v;
    806  1.1   bouyer 
    807  1.1   bouyer 	switch (bit) {
    808  1.1   bouyer 	case I2C_DATA:
    809  1.1   bouyer 		return netsio_read(sc, TL_NETSIO_EDATA);
    810  1.1   bouyer 		break;
    811  1.1   bouyer 	case I2C_CLOCK:
    812  1.1   bouyer 		return netsio_read(sc, TL_NETSIO_ECLOCK);
    813  1.1   bouyer 		break;
    814  1.1   bouyer 	case I2C_TXEN:
    815  1.1   bouyer 		return netsio_read(sc, TL_NETSIO_ETXEN);
    816  1.1   bouyer 		break;
    817  1.1   bouyer 	default:
    818  1.1   bouyer 		printf("tl_i2c_read: unknown bit %d\n", bit);
    819  1.1   bouyer 		return -1;
    820  1.1   bouyer 	}
    821  1.1   bouyer }
    822  1.1   bouyer 
    823  1.1   bouyer static int
    824  1.1   bouyer tl_intr(v)
    825  1.1   bouyer 	void *v;
    826  1.1   bouyer {
    827  1.1   bouyer 	tl_softc_t *sc = v;
    828  1.1   bouyer 	struct ifnet *ifp = &sc->tl_if;
    829  1.1   bouyer 	struct Rx_list *Rx;
    830  1.1   bouyer 	struct Tx_list *Tx;
    831  1.1   bouyer 	struct mbuf *m;
    832  1.1   bouyer 	u_int32_t int_type, int_reg;
    833  1.1   bouyer 	int ack = 0;
    834  1.1   bouyer 	int size;
    835  1.1   bouyer 
    836  1.1   bouyer 	int_reg = TL_HR_READ(sc, TL_HOST_INTR_DIOADR);
    837  1.1   bouyer 	int_type = int_reg  & TL_INTR_MASK;
    838  1.1   bouyer 	if (int_type == 0)
    839  1.1   bouyer 		return 0;
    840  1.1   bouyer #if defined(TLDEBUG_RX) || defined(TLDEBUG_TX)
    841  1.1   bouyer 	printf("%s: interrupt type %x, intr_reg %x\n", sc->sc_dev.dv_xname,
    842  1.1   bouyer 		int_type, int_reg);
    843  1.1   bouyer #endif
    844  1.1   bouyer 	/* disable interrupts */
    845  1.1   bouyer 	TL_HR_WRITE(sc, TL_HOST_CMD, HOST_CMD_IntOff);
    846  1.1   bouyer 	switch(int_type & TL_INTR_MASK) {
    847  1.1   bouyer 	case TL_INTR_RxEOF:
    848  1.1   bouyer 		while(sc->active_Rx->hw_list.stat & TL_RX_CSTAT_CPLT) {
    849  1.1   bouyer 			/* dequeue and requeue at end of list */
    850  1.1   bouyer 			ack++;
    851  1.1   bouyer 			Rx = sc->active_Rx;
    852  1.1   bouyer 			sc->active_Rx = Rx->next;
    853  1.1   bouyer 			m = Rx->m;
    854  1.1   bouyer 			size = Rx->hw_list.stat >> 16;
    855  1.1   bouyer #ifdef TLDEBUG_RX
    856  1.1   bouyer 			printf("tl_intr: RX list complete, Rx %p, size=%d\n", Rx, size);
    857  1.1   bouyer #endif
    858  1.1   bouyer 			if (tl_add_RxBuff(Rx, m ) == 0) {
    859  1.1   bouyer 				/* No new mbuf, reuse the same. This means that this packet
    860  1.1   bouyer 					is lost */
    861  1.1   bouyer 				m = NULL;
    862  1.1   bouyer #ifdef TL_PRIV_STATS
    863  1.1   bouyer 				sc->ierr_nomem++;
    864  1.1   bouyer #endif
    865  1.1   bouyer #ifdef TLDEBUG
    866  1.1   bouyer 				printf("%s: out of mbuf, lost input packet\n",
    867  1.1   bouyer 					sc->sc_dev.dv_xname);
    868  1.1   bouyer #endif
    869  1.1   bouyer 			}
    870  1.1   bouyer 			Rx->next = NULL;
    871  1.1   bouyer 			Rx->hw_list.fwd = 0;
    872  1.1   bouyer 			sc->last_Rx->hw_list.fwd = vtophys(&Rx->hw_list);
    873  1.1   bouyer #ifdef DIAGNOSTIC
    874  1.1   bouyer 			if (sc->last_Rx->hw_list.fwd & 0x7)
    875  1.1   bouyer 				printf("%s: physical addr 0x%x of list not properly aligned\n",
    876  1.1   bouyer 					sc->sc_dev.dv_xname, sc->last_Rx->hw_list.fwd);
    877  1.1   bouyer #endif
    878  1.1   bouyer 			sc->last_Rx->next = Rx;
    879  1.1   bouyer 			sc->last_Rx = Rx;
    880  1.1   bouyer 
    881  1.1   bouyer 			/* deliver packet */
    882  1.1   bouyer 			if (m) {
    883  1.1   bouyer 				struct ether_header *eh;
    884  1.1   bouyer 				if (size < sizeof(struct ether_header)) {
    885  1.1   bouyer 					m_freem(m);
    886  1.1   bouyer 					continue;
    887  1.1   bouyer 				}
    888  1.1   bouyer 				m->m_pkthdr.rcvif = ifp;
    889  1.1   bouyer 				m->m_pkthdr.len = m->m_len =
    890  1.1   bouyer 					size - sizeof(struct ether_header);
    891  1.1   bouyer 				eh = mtod(m, struct ether_header *);
    892  1.1   bouyer #ifdef TLDEBUG_RX
    893  1.1   bouyer 				printf("tl_intr: Rx packet:\n");
    894  1.1   bouyer 				ether_printheader(eh);
    895  1.1   bouyer #endif
    896  1.1   bouyer #if NBPFILTER > 0
    897  1.1   bouyer 				if (ifp->if_bpf) {
    898  1.1   bouyer 					bpf_tap(ifp->if_bpf,
    899  1.1   bouyer 						mtod(m, caddr_t),
    900  1.1   bouyer 						size);
    901  1.1   bouyer 					/*
    902  1.1   bouyer 				 	* Only pass this packet up
    903  1.1   bouyer 				 	* if it is for us.
    904  1.1   bouyer 				 	*/
    905  1.1   bouyer 					if ((ifp->if_flags & IFF_PROMISC) &&
    906  1.1   bouyer 						(eh->ether_dhost[0] & 1) == 0 && /* !mcast and !bcast */
    907  1.1   bouyer 						bcmp(eh->ether_dhost, LLADDR(ifp->if_sadl),
    908  1.1   bouyer 							sizeof(eh->ether_dhost)) != 0) {
    909  1.1   bouyer 						m_freem(m);
    910  1.1   bouyer 						continue;
    911  1.1   bouyer 					}
    912  1.1   bouyer 				}
    913  1.1   bouyer #endif /* NBPFILTER > 0 */
    914  1.1   bouyer 				m->m_data += sizeof(struct ether_header);
    915  1.1   bouyer 				ether_input(ifp, eh, m);
    916  1.1   bouyer 			}
    917  1.1   bouyer 		}
    918  1.1   bouyer #ifdef TLDEBUG_RX
    919  1.1   bouyer 		printf("TL_INTR_RxEOF: ack %d\n", ack);
    920  1.1   bouyer #else
    921  1.1   bouyer 		if (ack == 0) {
    922  1.1   bouyer 			printf("%s: EOF intr without anything to read !\n",
    923  1.1   bouyer 				sc->sc_dev.dv_xname);
    924  1.1   bouyer 			tl_reset(sc);
    925  1.1   bouyer 			/* shedule reinit of the board */
    926  1.1   bouyer 			timeout(tl_restart, sc, 1);
    927  1.1   bouyer 			return(1);
    928  1.1   bouyer 		}
    929  1.1   bouyer #endif
    930  1.1   bouyer 		break;
    931  1.1   bouyer 	case TL_INTR_RxEOC:
    932  1.1   bouyer 		ack++;
    933  1.1   bouyer #ifdef TLDEBUG_RX
    934  1.1   bouyer 		printf("TL_INTR_RxEOC: ack %d\n", ack);
    935  1.1   bouyer #endif
    936  1.1   bouyer #ifdef DIAGNOSTIC
    937  1.1   bouyer 		if (sc->active_Rx->hw_list.stat & TL_RX_CSTAT_CPLT) {
    938  1.1   bouyer 			printf("%s: Rx EOC interrupt and active Rx list not cleared\n",
    939  1.1   bouyer 				sc->sc_dev.dv_xname);
    940  1.1   bouyer 			return 0;
    941  1.1   bouyer 		} else
    942  1.1   bouyer #endif
    943  1.1   bouyer 		{
    944  1.1   bouyer 		/* write adress of Rx list and send Rx GO command, ack interrupt
    945  1.1   bouyer 		 and enable interrupts in one command */
    946  1.1   bouyer 		TL_HR_WRITE(sc, TL_HOST_CH_PARM,
    947  1.1   bouyer 			vtophys(&sc->active_Rx->hw_list));
    948  1.1   bouyer 		TL_HR_WRITE(sc, TL_HOST_CMD,
    949  1.1   bouyer 			HOST_CMD_GO | HOST_CMD_RT | HOST_CMD_Nes | ack | int_type |
    950  1.1   bouyer 			HOST_CMD_ACK | HOST_CMD_IntOn);
    951  1.1   bouyer 		return 1;
    952  1.1   bouyer 		}
    953  1.1   bouyer 	case TL_INTR_TxEOF:
    954  1.1   bouyer 	case TL_INTR_TxEOC:
    955  1.1   bouyer 		while ((Tx = sc->active_Tx) != NULL) {
    956  1.1   bouyer 			if((Tx->hw_list.stat & TL_TX_CSTAT_CPLT) == 0)
    957  1.1   bouyer 				break;
    958  1.1   bouyer 			ack++;
    959  1.1   bouyer #ifdef TLDEBUG_TX
    960  1.1   bouyer 			printf("TL_INTR_TxEOC: list 0x%xp done\n", vtophys(&Tx->hw_list));
    961  1.1   bouyer #endif
    962  1.1   bouyer 			Tx->hw_list.stat = 0;
    963  1.1   bouyer 			m_freem(Tx->m);
    964  1.1   bouyer 			Tx->m = NULL;
    965  1.1   bouyer 			sc->active_Tx = Tx->next;
    966  1.1   bouyer 			if (sc->active_Tx == NULL)
    967  1.1   bouyer 				sc->last_Tx = NULL;
    968  1.1   bouyer 			Tx->next = sc->Free_Tx;
    969  1.1   bouyer 			sc->Free_Tx = Tx;
    970  1.1   bouyer 		}
    971  1.1   bouyer 		/* if this was an EOC, ACK immediatly */
    972  1.1   bouyer 		if (int_type == TL_INTR_TxEOC) {
    973  1.1   bouyer #ifdef TLDEBUG_TX
    974  1.1   bouyer 			printf("TL_INTR_TxEOC: ack %d (will be set to 1)\n", ack);
    975  1.1   bouyer #endif
    976  1.1   bouyer 			TL_HR_WRITE(sc, TL_HOST_CMD, 1 | int_type | HOST_CMD_ACK |
    977  1.1   bouyer 				HOST_CMD_IntOn);
    978  1.1   bouyer 			if ( sc->active_Tx != NULL) { /* needs a Tx go command */
    979  1.1   bouyer 				TL_HR_WRITE(sc, TL_HOST_CH_PARM,
    980  1.1   bouyer 					vtophys(&sc->active_Tx->hw_list));
    981  1.1   bouyer 				TL_HR_WRITE(sc, TL_HOST_CMD, HOST_CMD_GO);
    982  1.1   bouyer 			}
    983  1.1   bouyer 			sc->tl_if.if_timer = 0;
    984  1.1   bouyer 			if (sc->tl_if.if_snd.ifq_head != NULL)
    985  1.1   bouyer 				tl_ifstart(&sc->tl_if);
    986  1.1   bouyer 			return 1;
    987  1.1   bouyer 		}
    988  1.1   bouyer #ifdef TLDEBUG
    989  1.1   bouyer 		else {
    990  1.1   bouyer 			printf("TL_INTR_TxEOF: ack %d\n", ack);
    991  1.1   bouyer 		}
    992  1.1   bouyer #endif
    993  1.1   bouyer 		sc->tl_if.if_timer = 0;
    994  1.1   bouyer 		if (sc->tl_if.if_snd.ifq_head != NULL)
    995  1.1   bouyer 			tl_ifstart(&sc->tl_if);
    996  1.1   bouyer 		break;
    997  1.1   bouyer 	case TL_INTR_Stat:
    998  1.1   bouyer 		ack++;
    999  1.1   bouyer #ifdef TLDEBUG
   1000  1.1   bouyer 		printf("TL_INTR_Stat: ack %d\n", ack);
   1001  1.1   bouyer #endif
   1002  1.1   bouyer 		tl_read_stats(sc);
   1003  1.1   bouyer 		break;
   1004  1.1   bouyer 	case TL_INTR_Adc:
   1005  1.1   bouyer 		if (int_reg & TL_INTVec_MASK) {
   1006  1.1   bouyer 			/* adapter check conditions */
   1007  1.1   bouyer 			printf("%s: check condition, intvect=0x%x, ch_param=0x%x\n",
   1008  1.1   bouyer 				sc->sc_dev.dv_xname, int_reg & TL_INTVec_MASK,
   1009  1.1   bouyer 				TL_HR_READ(sc, TL_HOST_CH_PARM));
   1010  1.1   bouyer 			tl_reset(sc);
   1011  1.1   bouyer 			/* shedule reinit of the board */
   1012  1.1   bouyer 			timeout(tl_restart, sc, 1);
   1013  1.1   bouyer 			return(1);
   1014  1.1   bouyer 		} else {
   1015  1.1   bouyer 			u_int8_t netstat;
   1016  1.1   bouyer 			/* Network status */
   1017  1.1   bouyer 			netstat = tl_intreg_read_byte(sc, TL_INT_NET+TL_INT_NetSts);
   1018  1.1   bouyer 			printf("%s: network status, NetSts=%x\n",
   1019  1.1   bouyer 				sc->sc_dev.dv_xname, netstat);
   1020  1.1   bouyer 			/* Ack interrupts */
   1021  1.1   bouyer 			tl_intreg_write_byte(sc, TL_INT_NET+TL_INT_NetSts, netstat);
   1022  1.1   bouyer 			ack++;
   1023  1.1   bouyer 		}
   1024  1.1   bouyer 		break;
   1025  1.1   bouyer 	default:
   1026  1.1   bouyer 		printf("%s: unhandled interrupt code %x!\n",
   1027  1.1   bouyer 			sc->sc_dev.dv_xname, int_type);
   1028  1.1   bouyer 		ack++;
   1029  1.1   bouyer 	}
   1030  1.1   bouyer 
   1031  1.1   bouyer 	if (ack) {
   1032  1.1   bouyer 		/* Ack the interrupt and enable interrupts */
   1033  1.1   bouyer 		TL_HR_WRITE(sc, TL_HOST_CMD, ack | int_type | HOST_CMD_ACK |
   1034  1.1   bouyer 			HOST_CMD_IntOn);
   1035  1.1   bouyer 		return 1;
   1036  1.1   bouyer 	}
   1037  1.1   bouyer 	/* ack = 0 ; interrupt was perhaps not our. Just enable interrupts */
   1038  1.1   bouyer 	TL_HR_WRITE(sc, TL_HOST_CMD, HOST_CMD_IntOn);
   1039  1.1   bouyer 	return 0;
   1040  1.1   bouyer }
   1041  1.1   bouyer 
   1042  1.1   bouyer static int
   1043  1.1   bouyer tl_ifioctl(ifp, cmd, data)
   1044  1.1   bouyer     struct ifnet *ifp;
   1045  1.1   bouyer 	ioctl_cmd_t cmd;
   1046  1.1   bouyer 	caddr_t data;
   1047  1.1   bouyer {
   1048  1.1   bouyer 	struct tl_softc *sc = ifp->if_softc;
   1049  1.1   bouyer 	struct ifreq *ifr = (struct ifreq *)data;
   1050  1.1   bouyer 	int s, error;
   1051  1.1   bouyer 
   1052  1.1   bouyer 	s = splimp();
   1053  1.1   bouyer 	switch(cmd) {
   1054  1.1   bouyer 	case SIOCSIFADDR: {
   1055  1.1   bouyer 		struct ifaddr *ifa = (struct ifaddr *)data;
   1056  1.1   bouyer 		sc->tl_if.if_flags |= IFF_UP;
   1057  1.1   bouyer 		if ((error = tl_init(sc)) != NULL) {
   1058  1.1   bouyer 			sc->tl_if.if_flags &= ~IFF_UP;
   1059  1.1   bouyer 			break;
   1060  1.1   bouyer 		}
   1061  1.1   bouyer 		switch (ifa->ifa_addr->sa_family) {
   1062  1.1   bouyer #ifdef INET
   1063  1.1   bouyer 		case AF_INET:
   1064  1.1   bouyer 			arp_ifinit(ifp, ifa);
   1065  1.1   bouyer 			break;
   1066  1.1   bouyer #endif
   1067  1.1   bouyer #ifdef NS
   1068  1.1   bouyer 		case AF_NS: {
   1069  1.1   bouyer 			struct ns_addr *ina = &IA_SNS(ifa)->sns_addr;
   1070  1.1   bouyer 
   1071  1.1   bouyer 			if (ns_nullhost(*ina))
   1072  1.1   bouyer 				ina->x_host  = *(union ns_host*) LLADDR(ifp->if_sadl);
   1073  1.1   bouyer 			else
   1074  1.1   bouyer 				bcopy(ina->x_host.c_host, LLADDR(ifp->if_sadl),
   1075  1.1   bouyer 					ifp->if_addrlen);
   1076  1.1   bouyer 			break;
   1077  1.1   bouyer 		}
   1078  1.1   bouyer #endif
   1079  1.1   bouyer 		default:
   1080  1.1   bouyer 			break;
   1081  1.1   bouyer 		}
   1082  1.1   bouyer 	break;
   1083  1.1   bouyer 	}
   1084  1.1   bouyer 	case SIOCSIFFLAGS:
   1085  1.1   bouyer 	{
   1086  1.1   bouyer 		u_int8_t reg;
   1087  1.1   bouyer 		/*
   1088  1.1   bouyer 		 * If interface is marked up and not running, then start it.
   1089  1.1   bouyer 		 * If it is marked down and running, stop it.
   1090  1.1   bouyer 		 */
   1091  1.1   bouyer 		if (ifp->if_flags & IFF_UP) {
   1092  1.1   bouyer 			if ((ifp->if_flags & IFF_RUNNING) == 0) {
   1093  1.1   bouyer 				error = tl_init(sc);
   1094  1.1   bouyer 				/* all flags have been handled by init */
   1095  1.1   bouyer 				break;
   1096  1.1   bouyer 			}
   1097  1.1   bouyer 			error = 0;
   1098  1.1   bouyer 			reg = tl_intreg_read_byte(sc, TL_INT_NET + TL_INT_NetCmd);
   1099  1.1   bouyer 			if (ifp->if_flags & IFF_PROMISC)
   1100  1.1   bouyer 				reg |= TL_NETCOMMAND_CAF;
   1101  1.1   bouyer 			else
   1102  1.1   bouyer 				reg &= ~TL_NETCOMMAND_CAF;
   1103  1.1   bouyer 			tl_intreg_write_byte(sc, TL_INT_NET + TL_INT_NetCmd, reg);
   1104  1.1   bouyer #ifdef TL_PRIV_STATS
   1105  1.1   bouyer 			if (ifp->if_flags & IFF_LINK0) {
   1106  1.1   bouyer 				ifp->if_flags &= ~IFF_LINK0;
   1107  1.1   bouyer 				printf("%s errors statistics\n", sc->sc_dev.dv_xname);
   1108  1.1   bouyer 				printf("    %4d RX buffer overrun\n",sc->ierr_overr);
   1109  1.1   bouyer 				printf("    %4d RX code error\n", sc->ierr_code);
   1110  1.1   bouyer 				printf("    %4d RX crc error\n", sc->ierr_crc);
   1111  1.1   bouyer 				printf("    %4d RX out of memory\n", sc->ierr_nomem);
   1112  1.1   bouyer 				printf("    %4d TX buffer underrun\n", sc->oerr_underr);
   1113  1.1   bouyer 				printf("    %4d TX deffered frames\n", sc->oerr_deffered);
   1114  1.1   bouyer 				printf("    %4d TX single collisions\n", sc->oerr_coll);
   1115  1.1   bouyer 				printf("    %4d TX multi collisions\n", sc->oerr_multicoll);
   1116  1.1   bouyer 				printf("    %4d TX exessive collisions\n", sc->oerr_exesscoll);
   1117  1.1   bouyer 				printf("    %4d TX late collisions\n", sc->oerr_latecoll);
   1118  1.1   bouyer 				printf("    %4d TX carrier loss\n", sc->oerr_carrloss);
   1119  1.1   bouyer 				printf("    %4d TX mbuf copy\n", sc->oerr_mcopy);
   1120  1.1   bouyer 			}
   1121  1.1   bouyer #endif
   1122  1.1   bouyer 		} else {
   1123  1.1   bouyer 			if (ifp->if_flags & IFF_RUNNING)
   1124  1.1   bouyer 				tl_shutdown(sc);
   1125  1.1   bouyer 			error = 0;
   1126  1.1   bouyer 		}
   1127  1.1   bouyer 		break;
   1128  1.1   bouyer 	}
   1129  1.1   bouyer 	case SIOCADDMULTI:
   1130  1.1   bouyer 	case SIOCDELMULTI:
   1131  1.1   bouyer 		/*
   1132  1.1   bouyer 		 * Update multicast listeners
   1133  1.1   bouyer 		 */
   1134  1.1   bouyer 		if (cmd == SIOCADDMULTI)
   1135  1.1   bouyer 			error = ether_addmulti(ifr, &sc->tl_ec);
   1136  1.1   bouyer 		else
   1137  1.1   bouyer 			error = ether_delmulti(ifr, &sc->tl_ec);
   1138  1.1   bouyer 		if (error == ENETRESET) {
   1139  1.1   bouyer 			tl_addr_filter(sc);
   1140  1.1   bouyer 			error = 0;
   1141  1.1   bouyer 		}
   1142  1.1   bouyer 		break;
   1143  1.1   bouyer 	case SIOCSIFMEDIA:
   1144  1.1   bouyer 	case SIOCGIFMEDIA:
   1145  1.1   bouyer 		error = ifmedia_ioctl(ifp, ifr, &sc->tl_ifmedia, cmd);
   1146  1.1   bouyer 		break;
   1147  1.1   bouyer 	default:
   1148  1.1   bouyer 		error = EINVAL;
   1149  1.1   bouyer 	}
   1150  1.1   bouyer 	splx(s);
   1151  1.1   bouyer 	return error;
   1152  1.1   bouyer }
   1153  1.1   bouyer 
   1154  1.1   bouyer static void
   1155  1.1   bouyer tl_ifstart(ifp)
   1156  1.1   bouyer 	struct ifnet *ifp;
   1157  1.1   bouyer {
   1158  1.1   bouyer 	tl_softc_t *sc = ifp->if_softc;
   1159  1.1   bouyer 	struct mbuf *m, *mb_head;
   1160  1.1   bouyer 	struct Tx_list *Tx;
   1161  1.1   bouyer 	int segment, size;
   1162  1.1   bouyer 
   1163  1.1   bouyer txloop:
   1164  1.1   bouyer 	/* If we don't have more space ... */
   1165  1.1   bouyer 	if (sc->Free_Tx == NULL) {
   1166  1.1   bouyer #ifdef TLDEBUG
   1167  1.1   bouyer 		printf("tl_ifstart: No free TX list\n");
   1168  1.1   bouyer #endif
   1169  1.1   bouyer 		return;
   1170  1.1   bouyer 	}
   1171  1.1   bouyer 	/* Grab a paquet for output */
   1172  1.1   bouyer 	IF_DEQUEUE(&ifp->if_snd, mb_head);
   1173  1.1   bouyer 	if (mb_head == NULL) {
   1174  1.1   bouyer #ifdef TLDEBUG_TX
   1175  1.1   bouyer 		printf("tl_ifstart: nothing to send\n");
   1176  1.1   bouyer #endif
   1177  1.1   bouyer 		return;
   1178  1.1   bouyer 	}
   1179  1.1   bouyer 	Tx = sc->Free_Tx;
   1180  1.1   bouyer 	sc->Free_Tx = Tx->next;
   1181  1.1   bouyer 	/*
   1182  1.1   bouyer 	 * Go through each of the mbufs in the chain and initialize
   1183  1.1   bouyer 	 * the transmit list descriptors with the physical address
   1184  1.1   bouyer 	 * and size of the mbuf.
   1185  1.1   bouyer 	 */
   1186  1.1   bouyer tbdinit:
   1187  1.1   bouyer 	bzero(Tx, sizeof(struct Tx_list));
   1188  1.1   bouyer 	Tx->m = mb_head;
   1189  1.1   bouyer 	size = 0;
   1190  1.1   bouyer 	for (m = mb_head, segment = 0; m != NULL ; m = m->m_next) {
   1191  1.1   bouyer 		if (m->m_len != 0) {
   1192  1.1   bouyer 			if (segment == TL_NSEG)
   1193  1.1   bouyer 				break;
   1194  1.1   bouyer 			size += m->m_len;
   1195  1.1   bouyer 			Tx->hw_list.seg[segment].data_addr =
   1196  1.1   bouyer 				vtophys(mtod(m, vm_offset_t));
   1197  1.1   bouyer 			Tx->hw_list.seg[segment].data_count = m->m_len;
   1198  1.1   bouyer 			segment++;
   1199  1.1   bouyer 		}
   1200  1.1   bouyer 	}
   1201  1.1   bouyer 	if (m != NULL || (size < ETHER_MIN_TX && segment == TL_NSEG)) {
   1202  1.1   bouyer 		/*
   1203  1.1   bouyer 		 * We ran out of segments, or we will. We have to recopy this mbuf
   1204  1.1   bouyer 		 * chain first.
   1205  1.1   bouyer 		 */
   1206  1.1   bouyer 		struct mbuf *mn;
   1207  1.1   bouyer #ifdef TLDEBUG_TX
   1208  1.1   bouyer 		printf("tl_ifstart: need to copy mbuf\n");
   1209  1.1   bouyer #endif
   1210  1.1   bouyer #ifdef TL_PRIV_STATS
   1211  1.1   bouyer 		sc->oerr_mcopy++;
   1212  1.1   bouyer #endif
   1213  1.1   bouyer 		MGETHDR(mn, M_DONTWAIT, MT_DATA);
   1214  1.1   bouyer 		if (mn == NULL) {
   1215  1.1   bouyer 			m_freem(mb_head);
   1216  1.1   bouyer 			goto bad;
   1217  1.1   bouyer 		}
   1218  1.1   bouyer 		if (mb_head->m_pkthdr.len > MHLEN) {
   1219  1.1   bouyer 			MCLGET(mn, M_DONTWAIT);
   1220  1.1   bouyer 			if ((mn->m_flags & M_EXT) == 0) {
   1221  1.1   bouyer 				m_freem(mn);
   1222  1.1   bouyer 				m_freem(mb_head);
   1223  1.1   bouyer 				goto bad;
   1224  1.1   bouyer 			}
   1225  1.1   bouyer 		}
   1226  1.1   bouyer 		m_copydata(mb_head, 0, mb_head->m_pkthdr.len,
   1227  1.1   bouyer 			mtod(mn, caddr_t));
   1228  1.1   bouyer 		mn->m_pkthdr.len = mn->m_len = mb_head->m_pkthdr.len;
   1229  1.1   bouyer 		m_freem(mb_head);
   1230  1.1   bouyer 		mb_head = mn;
   1231  1.1   bouyer 		goto tbdinit;
   1232  1.1   bouyer 	}
   1233  1.1   bouyer 	/* We are at end of mbuf chain. check the size and
   1234  1.1   bouyer 	 * see if it needs to be extended
   1235  1.1   bouyer  	 */
   1236  1.1   bouyer 	if (size < ETHER_MIN_TX) {
   1237  1.1   bouyer #ifdef DIAGNOSTIC
   1238  1.1   bouyer 		if (segment >= TL_NSEG) {
   1239  1.1   bouyer 			panic("tl_ifstart: to much segmets (%d)\n", segment);
   1240  1.1   bouyer 		}
   1241  1.1   bouyer #endif
   1242  1.1   bouyer 		/*
   1243  1.1   bouyer 	 	 * add the nullbuf in the seg
   1244  1.1   bouyer 	 	 */
   1245  1.1   bouyer 		Tx->hw_list.seg[segment].data_count =
   1246  1.1   bouyer 			ETHER_MIN_TX - size;
   1247  1.1   bouyer 		Tx->hw_list.seg[segment].data_addr =
   1248  1.1   bouyer 			vtophys(nullbuf);
   1249  1.1   bouyer 		size = ETHER_MIN_TX;
   1250  1.1   bouyer 		segment++;
   1251  1.1   bouyer 	}
   1252  1.1   bouyer 	/* The list is done, finish the list init */
   1253  1.1   bouyer 	Tx->hw_list.seg[segment-1].data_count |=
   1254  1.1   bouyer 		TL_LAST_SEG;
   1255  1.1   bouyer 	Tx->hw_list.stat = (size << 16) | 0x3000;
   1256  1.1   bouyer #ifdef TLDEBUG_TX
   1257  1.1   bouyer 	printf("%s: sending, Tx : stat = 0x%x\n", sc->sc_dev.dv_xname,
   1258  1.1   bouyer 		Tx->hw_list.stat);
   1259  1.1   bouyer #if 0
   1260  1.1   bouyer 	for(segment = 0; segment < TL_NSEG; segment++) {
   1261  1.1   bouyer 		printf("    seg %d addr 0x%x len 0x%x\n",
   1262  1.1   bouyer 			segment,
   1263  1.1   bouyer 			Tx->hw_list.seg[segment].data_addr,
   1264  1.1   bouyer 			Tx->hw_list.seg[segment].data_count);
   1265  1.1   bouyer 	}
   1266  1.1   bouyer #endif
   1267  1.1   bouyer #endif
   1268  1.1   bouyer 	sc->opkt++;
   1269  1.1   bouyer 	if (sc->active_Tx == NULL) {
   1270  1.1   bouyer 		sc->active_Tx = sc->last_Tx = Tx;
   1271  1.1   bouyer #ifdef TLDEBUG_TX
   1272  1.1   bouyer 		printf("%s: Tx GO, addr=0x%x\n", sc->sc_dev.dv_xname,
   1273  1.1   bouyer 			vtophys(&Tx->hw_list));
   1274  1.1   bouyer #endif
   1275  1.1   bouyer 		TL_HR_WRITE(sc, TL_HOST_CH_PARM, vtophys(&Tx->hw_list));
   1276  1.1   bouyer 		TL_HR_WRITE(sc, TL_HOST_CMD, HOST_CMD_GO);
   1277  1.1   bouyer 	} else {
   1278  1.1   bouyer #ifdef TLDEBUG_TX
   1279  1.1   bouyer 		printf("%s: Tx addr=0x%x queued\n", sc->sc_dev.dv_xname,
   1280  1.1   bouyer 			vtophys(&Tx->hw_list));
   1281  1.1   bouyer #endif
   1282  1.1   bouyer 		sc->last_Tx->hw_list.fwd = vtophys(&Tx->hw_list);
   1283  1.1   bouyer 		sc->last_Tx->next = Tx;
   1284  1.1   bouyer 		sc->last_Tx = Tx;
   1285  1.1   bouyer #ifdef DIAGNOSTIC
   1286  1.1   bouyer 		if (sc->last_Tx->hw_list.fwd & 0x7)
   1287  1.1   bouyer 				printf("%s: physical addr 0x%x of list not properly aligned\n",
   1288  1.1   bouyer 					sc->sc_dev.dv_xname, sc->last_Rx->hw_list.fwd);
   1289  1.1   bouyer #endif
   1290  1.1   bouyer 	}
   1291  1.1   bouyer #if NBPFILTER > 0
   1292  1.1   bouyer 	/* Pass packet to bpf if there is a listener */
   1293  1.1   bouyer 	if (ifp->if_bpf)
   1294  1.1   bouyer 		bpf_mtap(ifp->if_bpf, mb_head);
   1295  1.1   bouyer #endif
   1296  1.1   bouyer 	/* Set a 5 second timer just in case we don't hear from the card again. */
   1297  1.1   bouyer 	ifp->if_timer = 5;
   1298  1.1   bouyer 
   1299  1.1   bouyer 	goto txloop;
   1300  1.1   bouyer bad:
   1301  1.1   bouyer #ifdef TLDEBUG
   1302  1.1   bouyer 	printf("tl_ifstart: Out of mbuf, Tx pkt lost\n");
   1303  1.1   bouyer #endif
   1304  1.1   bouyer 	Tx->next = sc->Free_Tx;
   1305  1.1   bouyer 	sc->Free_Tx = Tx;
   1306  1.1   bouyer 	return;
   1307  1.1   bouyer }
   1308  1.1   bouyer 
   1309  1.1   bouyer static void
   1310  1.1   bouyer tl_ifwatchdog(ifp)
   1311  1.1   bouyer 	struct ifnet *ifp;
   1312  1.1   bouyer {
   1313  1.1   bouyer 	tl_softc_t *sc = ifp->if_softc;
   1314  1.1   bouyer 
   1315  1.1   bouyer 	if ((ifp->if_flags & IFF_RUNNING) == 0)
   1316  1.1   bouyer 		return;
   1317  1.1   bouyer 	printf("%s: device timeout\n", sc->sc_dev.dv_xname);
   1318  1.1   bouyer 	ifp->if_oerrors++;
   1319  1.1   bouyer 	tl_init(sc);
   1320  1.1   bouyer }
   1321  1.1   bouyer 
   1322  1.1   bouyer static int
   1323  1.1   bouyer tl_mediachange(ifp)
   1324  1.1   bouyer 	struct ifnet *ifp;
   1325  1.1   bouyer {
   1326  1.1   bouyer 
   1327  1.1   bouyer 	tl_softc_t *sc = ifp->if_softc;
   1328  1.1   bouyer 	int err;
   1329  1.1   bouyer 	u_int32_t reg;
   1330  1.1   bouyer 	int oldmedia;
   1331  1.1   bouyer #ifdef TLDEBUG
   1332  1.1   bouyer 	printf("tl_mediachange, media %x\n", sc->tl_ifmedia.ifm_media);
   1333  1.1   bouyer #endif
   1334  1.1   bouyer 	oldmedia = sc->mii.mii_media_active;
   1335  1.1   bouyer 	sc->mii.mii_media_active = sc->tl_ifmedia.ifm_media;
   1336  1.1   bouyer 	if ((err = mii_mediachg(&sc->mii)) != 0)
   1337  1.1   bouyer 		sc->mii.mii_media_active = oldmedia;
   1338  1.1   bouyer 	reg = tl_intreg_read_byte(sc, TL_INT_NET + TL_INT_NetCmd);
   1339  1.1   bouyer 	if (sc->mii.mii_media_active & IFM_FDX)
   1340  1.1   bouyer 		reg |= TL_NETCOMMAND_DUPLEX;
   1341  1.1   bouyer 	else
   1342  1.1   bouyer 		reg &= ~TL_NETCOMMAND_DUPLEX;
   1343  1.1   bouyer 	tl_intreg_write_byte(sc, TL_INT_NET + TL_INT_NetCmd, reg);
   1344  1.1   bouyer 	return err;
   1345  1.1   bouyer }
   1346  1.1   bouyer 
   1347  1.1   bouyer static void
   1348  1.1   bouyer tl_mediastatus(ifp, ifmr)
   1349  1.1   bouyer 	struct ifnet *ifp;
   1350  1.1   bouyer 	struct ifmediareq *ifmr;
   1351  1.1   bouyer {
   1352  1.1   bouyer 	tl_softc_t *sc = ifp->if_softc;
   1353  1.1   bouyer 	if (IFM_SUBTYPE(sc->mii.mii_media_active) == IFM_10_2 ||
   1354  1.1   bouyer 		IFM_SUBTYPE(sc->mii.mii_media_active) == IFM_10_5)
   1355  1.1   bouyer 		if (sc->tl_flags & TL_IFACT)
   1356  1.1   bouyer 			sc->mii.mii_media_status = IFM_AVALID | IFM_ACTIVE;
   1357  1.1   bouyer 		else
   1358  1.1   bouyer 			sc->mii.mii_media_status = IFM_AVALID;
   1359  1.1   bouyer 	else
   1360  1.1   bouyer 		mii_pollstat(&sc->mii);
   1361  1.1   bouyer 
   1362  1.1   bouyer 	ifmr->ifm_active = sc->mii.mii_media_active;
   1363  1.1   bouyer 	ifmr->ifm_status = sc->mii.mii_media_status;
   1364  1.1   bouyer }
   1365  1.1   bouyer 
   1366  1.1   bouyer static int tl_add_RxBuff(Rx, oldm)
   1367  1.1   bouyer 	struct Rx_list *Rx;
   1368  1.1   bouyer 	struct mbuf *oldm;
   1369  1.1   bouyer {
   1370  1.1   bouyer 	struct mbuf *m;
   1371  1.1   bouyer 
   1372  1.1   bouyer 	MGETHDR(m, M_DONTWAIT, MT_DATA);
   1373  1.1   bouyer 	if (m != NULL) {
   1374  1.1   bouyer 		MCLGET(m, M_DONTWAIT);
   1375  1.1   bouyer 		if ((m->m_flags & M_EXT) == 0) {
   1376  1.1   bouyer 			m_freem(m);
   1377  1.1   bouyer 			if (oldm == NULL)
   1378  1.1   bouyer 				return 0;
   1379  1.1   bouyer 			m = oldm;
   1380  1.1   bouyer 			m->m_data = m->m_ext.ext_buf;
   1381  1.1   bouyer 		}
   1382  1.1   bouyer 	} else {
   1383  1.1   bouyer 		if (oldm == NULL)
   1384  1.1   bouyer 			return 0;
   1385  1.1   bouyer 		m = oldm;
   1386  1.1   bouyer 		m->m_data = m->m_ext.ext_buf;
   1387  1.1   bouyer 	}
   1388  1.1   bouyer 	/*
   1389  1.1   bouyer 	 * Move the data pointer up so that the incoming data packet
   1390  1.1   bouyer 	 * will be 32-bit aligned.
   1391  1.1   bouyer 	 */
   1392  1.1   bouyer 	m->m_data += 2;
   1393  1.1   bouyer 
   1394  1.1   bouyer 	/* (re)init the Rx_list struct */
   1395  1.1   bouyer 
   1396  1.1   bouyer 	Rx->m = m;
   1397  1.1   bouyer 	Rx->hw_list.stat = ((MCLBYTES -2) << 16) | 0x3000;
   1398  1.1   bouyer 	Rx->hw_list.seg.data_count = (MCLBYTES -2);
   1399  1.1   bouyer 	Rx->hw_list.seg.data_addr = vtophys(m->m_data);
   1400  1.1   bouyer 	return (m != oldm);
   1401  1.1   bouyer }
   1402  1.1   bouyer 
   1403  1.1   bouyer static void tl_ticks(v)
   1404  1.1   bouyer 	void *v;
   1405  1.1   bouyer {
   1406  1.1   bouyer 	tl_softc_t *sc = v;
   1407  1.1   bouyer 
   1408  1.1   bouyer 	tl_read_stats(sc);
   1409  1.1   bouyer 	if (sc->opkt > 0) {
   1410  1.1   bouyer 		if (sc->oerr_exesscoll > sc->opkt / 100) { /* exess collisions */
   1411  1.1   bouyer 			if (sc->tl_flags & TL_IFACT) /* only print once */
   1412  1.1   bouyer 						printf("%s: no carrier\n", sc->sc_dev.dv_xname);
   1413  1.1   bouyer 					sc->tl_flags &= ~TL_IFACT;
   1414  1.1   bouyer 				} else
   1415  1.1   bouyer 					sc->tl_flags |= TL_IFACT;
   1416  1.1   bouyer 				sc->oerr_exesscoll = sc->opkt = 0;
   1417  1.1   bouyer 				sc->tl_lasttx = 0;
   1418  1.1   bouyer 			} else {
   1419  1.1   bouyer 				sc->tl_lasttx++;
   1420  1.1   bouyer 				if (sc->tl_lasttx >= TL_IDLETIME) {
   1421  1.1   bouyer 					/*
   1422  1.1   bouyer 					 * No TX activity in the last TL_IDLETIME seconds.
   1423  1.1   bouyer 					 * sends a LLC Class1 TEST pkt
   1424  1.1   bouyer 					 */
   1425  1.1   bouyer 					struct mbuf *m;
   1426  1.1   bouyer 					int s;
   1427  1.1   bouyer 					MGETHDR(m, M_DONTWAIT, MT_DATA);
   1428  1.1   bouyer 					if (m != NULL) {
   1429  1.1   bouyer 		#ifdef TLDEBUG
   1430  1.1   bouyer 						printf("tl_ticks: sending LLC test pkt\n");
   1431  1.1   bouyer 		#endif
   1432  1.1   bouyer 						bcopy(sc->tl_enaddr,
   1433  1.1   bouyer 							mtod(m, struct ether_header *)->ether_dhost, 6);
   1434  1.1   bouyer 						bcopy(sc->tl_enaddr,
   1435  1.1   bouyer 							mtod(m, struct ether_header *)->ether_shost, 6);
   1436  1.1   bouyer 						mtod(m, struct ether_header *)->ether_type = htons(3);
   1437  1.1   bouyer 						mtod(m, unsigned char *)[14] = 0;
   1438  1.1   bouyer 						mtod(m, unsigned char *)[15] = 0;
   1439  1.1   bouyer 						mtod(m, unsigned char *)[16] = 0xE3;
   1440  1.1   bouyer 													/* LLC Class1 TEST (no poll) */
   1441  1.1   bouyer 						m->m_len = m->m_pkthdr.len = sizeof(struct ether_header) + 3;
   1442  1.1   bouyer 						s = splnet();
   1443  1.1   bouyer 						IF_PREPEND(&sc->tl_if.if_snd, m);
   1444  1.1   bouyer 						tl_ifstart(&sc->tl_if);
   1445  1.1   bouyer 						splx(s);
   1446  1.1   bouyer 					}
   1447  1.1   bouyer 				}
   1448  1.1   bouyer 			}
   1449  1.1   bouyer 
   1450  1.1   bouyer 			/* read statistics every seconds */
   1451  1.1   bouyer 			timeout(tl_ticks, v, hz);
   1452  1.1   bouyer 		}
   1453  1.1   bouyer 
   1454  1.1   bouyer 		static void
   1455  1.1   bouyer 		tl_read_stats(sc)
   1456  1.1   bouyer 			tl_softc_t *sc;
   1457  1.1   bouyer 		{
   1458  1.1   bouyer 			u_int32_t reg;
   1459  1.1   bouyer 			int ierr_overr;
   1460  1.1   bouyer 			int ierr_code;
   1461  1.1   bouyer 			int ierr_crc;
   1462  1.1   bouyer 			int oerr_underr;
   1463  1.1   bouyer 			int oerr_deffered;
   1464  1.1   bouyer 			int oerr_coll;
   1465  1.1   bouyer 			int oerr_multicoll;
   1466  1.1   bouyer 			int oerr_exesscoll;
   1467  1.1   bouyer 			int oerr_latecoll;
   1468  1.1   bouyer 			int oerr_carrloss;
   1469  1.1   bouyer 			struct ifnet *ifp = &sc->tl_if;
   1470  1.1   bouyer 
   1471  1.1   bouyer 			reg =  tl_intreg_read(sc, TL_INT_STATS_TX);
   1472  1.1   bouyer 			ifp->if_opackets += reg & 0x00ffffff;
   1473  1.1   bouyer 			oerr_underr = reg >> 24;
   1474  1.1   bouyer 
   1475  1.1   bouyer 			reg =  tl_intreg_read(sc, TL_INT_STATS_RX);
   1476  1.1   bouyer 			ifp->if_ipackets += reg & 0x00ffffff;
   1477  1.1   bouyer 			ierr_overr = reg >> 24;
   1478  1.1   bouyer 
   1479  1.1   bouyer 			reg =  tl_intreg_read(sc, TL_INT_STATS_FERR);
   1480  1.1   bouyer 			ierr_crc = (reg & TL_FERR_CRC) >> 16;
   1481  1.1   bouyer 			ierr_code = (reg & TL_FERR_CODE) >> 24;
   1482  1.1   bouyer 			oerr_deffered = (reg & TL_FERR_DEF);
   1483  1.1   bouyer 
   1484  1.1   bouyer 			reg =  tl_intreg_read(sc, TL_INT_STATS_COLL);
   1485  1.1   bouyer 			oerr_multicoll = (reg & TL_COL_MULTI);
   1486  1.1   bouyer 			oerr_coll = (reg & TL_COL_SINGLE) >> 16;
   1487  1.1   bouyer 
   1488  1.1   bouyer 			reg =  tl_intreg_read(sc, TL_INT_LERR);
   1489  1.1   bouyer 			oerr_exesscoll = (reg & TL_LERR_ECOLL);
   1490  1.1   bouyer 			oerr_latecoll = (reg & TL_LERR_LCOLL) >> 8;
   1491  1.1   bouyer 			oerr_carrloss = (reg & TL_LERR_CL) >> 16;
   1492  1.1   bouyer 
   1493  1.1   bouyer 
   1494  1.1   bouyer 			sc->stats_exesscoll += oerr_exesscoll;
   1495  1.1   bouyer 			ifp->if_oerrors += oerr_underr + oerr_exesscoll + oerr_latecoll +
   1496  1.1   bouyer 				oerr_carrloss;
   1497  1.1   bouyer 			ifp->if_collisions += oerr_coll + oerr_multicoll;
   1498  1.1   bouyer 			ifp->if_ierrors += ierr_overr + ierr_code + ierr_crc;
   1499  1.1   bouyer 
   1500  1.1   bouyer 			if (ierr_overr)
   1501  1.1   bouyer 				printf("%s: receiver ring buffer overrun\n", sc->sc_dev.dv_xname);
   1502  1.1   bouyer 			if (oerr_underr)
   1503  1.1   bouyer 				printf("%s: transmit buffer underrun\n", sc->sc_dev.dv_xname);
   1504  1.1   bouyer 		#ifdef TL_PRIV_STATS
   1505  1.1   bouyer 			sc->ierr_overr		+= ierr_overr;
   1506  1.1   bouyer 			sc->ierr_code		+= ierr_code;
   1507  1.1   bouyer 			sc->ierr_crc		+= ierr_crc;
   1508  1.1   bouyer 			sc->oerr_underr		+= oerr_underr;
   1509  1.1   bouyer 			sc->oerr_deffered	+= oerr_deffered;
   1510  1.1   bouyer 			sc->oerr_coll		+= oerr_coll;
   1511  1.1   bouyer 			sc->oerr_multicoll	+= oerr_multicoll;
   1512  1.1   bouyer 			sc->oerr_exesscoll	+= oerr_exesscoll;
   1513  1.1   bouyer 			sc->oerr_latecoll	+= oerr_latecoll;
   1514  1.1   bouyer 			sc->oerr_carrloss	+= oerr_carrloss;
   1515  1.1   bouyer 		#endif
   1516  1.1   bouyer 		}
   1517  1.1   bouyer 
   1518  1.1   bouyer 		static void tl_addr_filter(sc)
   1519  1.1   bouyer 			tl_softc_t *sc;
   1520  1.1   bouyer 		{
   1521  1.1   bouyer 			struct ether_multistep step;
   1522  1.1   bouyer 			struct ether_multi *enm;
   1523  1.1   bouyer 			u_int32_t hash[2] = {0, 0};
   1524  1.1   bouyer 			int i;
   1525  1.1   bouyer 
   1526  1.1   bouyer 			sc->tl_if.if_flags &= ~IFF_ALLMULTI;
   1527  1.1   bouyer 			ETHER_FIRST_MULTI(step, &sc->tl_ec, enm);
   1528  1.1   bouyer 			while (enm != NULL) {
   1529  1.1   bouyer 		#ifdef TLDEBUG
   1530  1.1   bouyer 				printf("tl_addr_filter: addrs %s %s\n", ether_sprintf(enm->enm_addrlo), ether_sprintf(enm->enm_addrhi));
   1531  1.1   bouyer 		#endif
   1532  1.1   bouyer 				if (memcmp(enm->enm_addrlo, enm->enm_addrhi, 6) == 0) {
   1533  1.1   bouyer 					i = tl_multicast_hash(enm->enm_addrlo);
   1534  1.1   bouyer 					hash[i/32] |= 1 << (i%32);
   1535  1.1   bouyer 				} else {
   1536  1.1   bouyer 					hash[0] = hash[1] = 0xffffffff;
   1537  1.1   bouyer 					sc->tl_if.if_flags |= IFF_ALLMULTI;
   1538  1.1   bouyer 					break;
   1539  1.1   bouyer 				}
   1540  1.1   bouyer 				ETHER_NEXT_MULTI(step, enm);
   1541  1.1   bouyer 			}
   1542  1.1   bouyer 		#ifdef TLDEBUG
   1543  1.1   bouyer 			printf("tl_addr_filer: hash1 %x has2 %x\n", hash[0], hash[1]);
   1544  1.1   bouyer 		#endif
   1545  1.1   bouyer 			tl_intreg_write(sc, TL_INT_HASH1, hash[0]);
   1546  1.1   bouyer 			tl_intreg_write(sc, TL_INT_HASH2, hash[1]);
   1547  1.1   bouyer 		}
   1548  1.1   bouyer 
   1549  1.1   bouyer 		static int tl_multicast_hash(a)
   1550  1.1   bouyer 			u_int8_t *a;
   1551  1.1   bouyer 		{
   1552  1.1   bouyer 			int hash;
   1553  1.1   bouyer 
   1554  1.1   bouyer 		#define DA(addr,bit) (addr[5 - (bit/8)] & (1 << bit%8))
   1555  1.1   bouyer 		#define xor8(a,b,c,d,e,f,g,h) (((a != 0) + (b != 0) + (c != 0) + (d != 0) + (e != 0) + (f != 0) + (g != 0) + (h != 0)) & 1)
   1556  1.1   bouyer 
   1557  1.1   bouyer 			hash  = xor8( DA(a,0), DA(a, 6), DA(a,12), DA(a,18), DA(a,24), DA(a,30),
   1558  1.1   bouyer 				DA(a,36), DA(a,42));
   1559  1.1   bouyer 			hash |= xor8( DA(a,1), DA(a, 7), DA(a,13), DA(a,19), DA(a,25), DA(a,31),
   1560  1.1   bouyer 				DA(a,37), DA(a,43)) << 1;
   1561  1.1   bouyer 			hash |= xor8( DA(a,2), DA(a, 8), DA(a,14), DA(a,20), DA(a,26), DA(a,32),
   1562  1.1   bouyer 				DA(a,38), DA(a,44)) << 2;
   1563  1.1   bouyer 			hash |= xor8( DA(a,3), DA(a, 9), DA(a,15), DA(a,21), DA(a,27), DA(a,33),
   1564  1.1   bouyer 				DA(a,39), DA(a,45)) << 3;
   1565  1.1   bouyer 			hash |= xor8( DA(a,4), DA(a,10), DA(a,16), DA(a,22), DA(a,28), DA(a,34),
   1566  1.1   bouyer 				DA(a,40), DA(a,46)) << 4;
   1567  1.1   bouyer 			hash |= xor8( DA(a,5), DA(a,11), DA(a,17), DA(a,23), DA(a,29), DA(a,35),
   1568  1.1   bouyer 				DA(a,41), DA(a,47)) << 5;
   1569  1.1   bouyer 
   1570  1.1   bouyer 			return hash;
   1571  1.1   bouyer 		}
   1572  1.1   bouyer 
   1573  1.1   bouyer 		#if defined(TLDEBUG_RX)
   1574  1.1   bouyer 		void ether_printheader(eh)
   1575  1.1   bouyer 			struct ether_header *eh;
   1576  1.1   bouyer 		{
   1577  1.1   bouyer 			u_char *c = (char*)eh;
   1578  1.1   bouyer 			int i;
   1579  1.1   bouyer 			for (i=0; i<sizeof(struct ether_header); i++)
   1580  1.1   bouyer 				printf("%x ", (u_int)c[i]);
   1581  1.1   bouyer 			printf("\n");
   1582  1.1   bouyer 		}
   1583  1.1   bouyer #endif
   1584