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if_ate.c revision 1.23.20.1
      1  1.23.20.1  minoura /*	$NetBSD: if_ate.c,v 1.23.20.1 2000/06/22 17:07:10 minoura Exp $	*/
      2       1.19    perry 
      3        1.1  mycroft /*
      4        1.1  mycroft  * All Rights Reserved, Copyright (C) Fujitsu Limited 1995
      5        1.1  mycroft  *
      6        1.1  mycroft  * This software may be used, modified, copied, distributed, and sold, in
      7        1.1  mycroft  * both source and binary form provided that the above copyright, these
      8        1.1  mycroft  * terms and the following disclaimer are retained.  The name of the author
      9        1.1  mycroft  * and/or the contributor may not be used to endorse or promote products
     10        1.1  mycroft  * derived from this software without specific prior written permission.
     11        1.1  mycroft  *
     12        1.1  mycroft  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND THE CONTRIBUTOR ``AS IS'' AND
     13        1.1  mycroft  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     14        1.1  mycroft  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     15        1.1  mycroft  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR THE CONTRIBUTOR BE LIABLE
     16        1.1  mycroft  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     17        1.1  mycroft  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     18        1.1  mycroft  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION.
     19        1.1  mycroft  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     20        1.1  mycroft  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     21        1.1  mycroft  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     22        1.1  mycroft  * SUCH DAMAGE.
     23        1.1  mycroft  */
     24        1.1  mycroft 
     25        1.1  mycroft /*
     26        1.1  mycroft  * Portions copyright (C) 1993, David Greenman.  This software may be used,
     27        1.1  mycroft  * modified, copied, distributed, and sold, in both source and binary form
     28        1.1  mycroft  * provided that the above copyright and these terms are retained.  Under no
     29        1.1  mycroft  * circumstances is the author responsible for the proper functioning of this
     30        1.1  mycroft  * software, nor does the author assume any responsibility for damages
     31        1.1  mycroft  * incurred with its use.
     32        1.1  mycroft  */
     33        1.1  mycroft 
     34        1.1  mycroft #include <sys/param.h>
     35        1.1  mycroft #include <sys/systm.h>
     36       1.21    enami #include <sys/device.h>
     37        1.1  mycroft #include <sys/socket.h>
     38        1.1  mycroft #include <sys/syslog.h>
     39        1.1  mycroft 
     40        1.1  mycroft #include <net/if.h>
     41       1.17       is #include <net/if_ether.h>
     42       1.21    enami #include <net/if_media.h>
     43        1.1  mycroft 
     44       1.21    enami #include <machine/bus.h>
     45       1.13  mycroft #include <machine/intr.h>
     46        1.1  mycroft 
     47        1.3      cgd #include <dev/ic/mb86960reg.h>
     48       1.21    enami #include <dev/ic/mb86960var.h>
     49        1.1  mycroft 
     50       1.21    enami #include <dev/isa/isavar.h>
     51       1.21    enami #include <dev/isa/if_fereg.h>	/* XXX */
     52        1.1  mycroft 
     53       1.21    enami int	ate_match __P((struct device *, struct cfdata *, void *));
     54       1.21    enami void	ate_attach __P((struct device *, struct device *, void *));
     55        1.1  mycroft 
     56       1.21    enami struct ate_softc {
     57       1.21    enami 	struct	mb86960_softc sc_mb86960;	/* real "mb86960" softc */
     58        1.1  mycroft 
     59       1.21    enami 	/* ISA-specific goo. */
     60       1.21    enami 	void	*sc_ih;				/* interrupt cookie */
     61       1.21    enami };
     62        1.1  mycroft 
     63       1.21    enami struct cfattach ate_ca = {
     64       1.21    enami 	sizeof(struct ate_softc), ate_match, ate_attach
     65        1.1  mycroft };
     66        1.1  mycroft 
     67       1.21    enami #if NetBSD <= 199712
     68       1.21    enami struct cfdriver ate_cd = {
     69       1.21    enami 	NULL, "ate", DV_IFNET
     70        1.1  mycroft };
     71        1.1  mycroft #endif
     72        1.1  mycroft 
     73       1.21    enami struct fe_simple_probe_struct {
     74       1.21    enami 	u_char port;	/* Offset from the base I/O address. */
     75       1.21    enami 	u_char mask;	/* Bits to be checked. */
     76       1.21    enami 	u_char bits;	/* Values to be compared against. */
     77        1.1  mycroft };
     78        1.1  mycroft 
     79       1.21    enami static __inline__ int fe_simple_probe __P((bus_space_tag_t,
     80       1.21    enami     bus_space_handle_t, struct fe_simple_probe_struct const *));
     81       1.21    enami static __inline__ void ate_strobe __P((bus_space_tag_t, bus_space_handle_t));
     82       1.21    enami static void ate_read_eeprom __P((bus_space_tag_t, bus_space_handle_t,
     83       1.21    enami     u_char *));
     84       1.21    enami static int ate_find __P((bus_space_tag_t, bus_space_handle_t, int *,
     85       1.21    enami     int *));
     86       1.21    enami static int ate_detect __P((bus_space_tag_t, bus_space_handle_t,
     87       1.21    enami     u_int8_t enaddr[ETHER_ADDR_LEN]));
     88        1.1  mycroft 
     89       1.21    enami static int const ate_iomap[8] = {
     90       1.21    enami 	0x260, 0x280, 0x2A0, 0x240, 0x340, 0x320, 0x380, 0x300
     91       1.21    enami };
     92       1.21    enami #define NATE_IOMAP (sizeof (ate_iomap) / sizeof (ate_iomap[0]))
     93       1.21    enami #define ATE_NPORTS 0x20
     94        1.1  mycroft 
     95        1.1  mycroft /*
     96        1.1  mycroft  * Hardware probe routines.
     97        1.1  mycroft  */
     98        1.1  mycroft 
     99        1.1  mycroft /*
    100        1.1  mycroft  * Determine if the device is present.
    101        1.1  mycroft  */
    102        1.1  mycroft int
    103       1.21    enami ate_match(parent, match, aux)
    104        1.1  mycroft 	struct device *parent;
    105       1.21    enami 	struct cfdata *match;
    106       1.21    enami 	void *aux;
    107        1.1  mycroft {
    108        1.1  mycroft 	struct isa_attach_args *ia = aux;
    109       1.21    enami 	bus_space_tag_t iot = ia->ia_iot;
    110       1.21    enami 	bus_space_handle_t ioh;
    111       1.21    enami 	int i, iobase, irq, rv = 0;
    112       1.21    enami 	u_int8_t myea[ETHER_ADDR_LEN];
    113       1.21    enami 
    114       1.21    enami 	/* Disallow wildcarded values. */
    115       1.21    enami 	if (ia->ia_iobase == ISACF_PORT_DEFAULT)
    116       1.21    enami 		return (0);
    117       1.21    enami 
    118       1.21    enami 	/*
    119       1.21    enami 	 * See if the sepcified address is valid for MB86965A JLI mode.
    120       1.21    enami 	 */
    121       1.21    enami 	for (i = 0; i < NATE_IOMAP; i++)
    122       1.21    enami 		if (ate_iomap[i] == ia->ia_iobase)
    123       1.21    enami 			break;
    124       1.21    enami 	if (i == NATE_IOMAP) {
    125       1.23    enami #ifdef ATE_DEBUG
    126       1.21    enami 		printf("ate_match: unknown iobase 0x%x\n", ia->ia_iobase);
    127       1.21    enami #endif
    128       1.21    enami 		return (0);
    129       1.21    enami 	}
    130       1.21    enami 
    131       1.21    enami 	/* Map i/o space. */
    132       1.21    enami 	if (bus_space_map(iot, ia->ia_iobase, ATE_NPORTS, 0, &ioh)) {
    133       1.23    enami #ifdef ATE_DEBUG
    134       1.21    enami 		printf("ate_match: couldn't map iospace 0x%x\n",
    135       1.21    enami 		    ia->ia_iobase);
    136       1.21    enami #endif
    137       1.21    enami 		return (0);
    138       1.21    enami 	}
    139        1.1  mycroft 
    140       1.21    enami 	if (ate_find(iot, ioh, &iobase, &irq) == 0) {
    141       1.23    enami #ifdef ATE_DEBUG
    142       1.21    enami 		printf("ate_match: ate_find failed\n");
    143        1.1  mycroft #endif
    144       1.21    enami 		goto out;
    145       1.21    enami 	}
    146       1.21    enami 
    147       1.21    enami 	if (iobase != ia->ia_iobase) {
    148       1.23    enami #ifdef ATE_DEBUG
    149       1.21    enami 		printf("ate_match: unexpected iobase in board: 0x%x\n",
    150       1.21    enami 		    ia->ia_iobase);
    151       1.21    enami #endif
    152       1.21    enami 		goto out;
    153       1.21    enami 	}
    154       1.21    enami 
    155       1.21    enami 	if (ate_detect(iot, ioh, myea) == 0) { /* XXX necessary? */
    156       1.23    enami #ifdef ATE_DEBUG
    157       1.21    enami 		printf("ate_match: ate_detect failed\n");
    158       1.21    enami #endif
    159       1.21    enami 		goto out;
    160       1.21    enami 	}
    161       1.21    enami 
    162       1.21    enami 	if (ia->ia_irq != ISACF_IRQ_DEFAULT) {
    163       1.21    enami 		if (ia->ia_irq != irq) {
    164       1.21    enami 			printf("ate_match: irq mismatch; "
    165       1.21    enami 			    "kernel configured %d != board configured %d\n",
    166       1.21    enami 			    ia->ia_irq, irq);
    167       1.21    enami 			goto out;
    168       1.21    enami 		}
    169       1.21    enami 	} else
    170       1.21    enami 		ia->ia_irq = irq;
    171        1.1  mycroft 
    172       1.21    enami 	ia->ia_iosize = ATE_NPORTS;
    173       1.21    enami 	ia->ia_msize = 0;
    174       1.21    enami 	rv = 1;
    175        1.1  mycroft 
    176       1.21    enami  out:
    177       1.21    enami 	bus_space_unmap(iot, ioh, ATE_NPORTS);
    178       1.21    enami 	return (rv);
    179        1.1  mycroft }
    180        1.1  mycroft 
    181        1.1  mycroft /*
    182        1.1  mycroft  * Check for specific bits in specific registers have specific values.
    183        1.1  mycroft  */
    184       1.21    enami static __inline__ int
    185       1.21    enami fe_simple_probe (iot, ioh, sp)
    186       1.21    enami 	bus_space_tag_t iot;
    187       1.21    enami 	bus_space_handle_t ioh;
    188       1.21    enami 	struct fe_simple_probe_struct const *sp;
    189        1.1  mycroft {
    190       1.21    enami 	u_int8_t val;
    191       1.21    enami 	struct fe_simple_probe_struct const *p;
    192        1.1  mycroft 
    193        1.1  mycroft 	for (p = sp; p->mask != 0; p++) {
    194       1.21    enami 		val = bus_space_read_1(iot, ioh, p->port);
    195       1.21    enami 		if ((val & p->mask) != p->bits) {
    196       1.23    enami #ifdef ATE_DEBUG
    197       1.21    enami 			printf("fe_simple_probe: %x & %x != %x\n",
    198       1.21    enami 			    val, p->mask, p->bits);
    199       1.21    enami #endif
    200        1.1  mycroft 			return (0);
    201        1.1  mycroft 		}
    202        1.1  mycroft 	}
    203       1.21    enami 
    204        1.1  mycroft 	return (1);
    205        1.1  mycroft }
    206        1.1  mycroft 
    207        1.1  mycroft /*
    208        1.1  mycroft  * Routines to read all bytes from the config EEPROM through MB86965A.
    209        1.1  mycroft  * I'm not sure what exactly I'm doing here...  I was told just to follow
    210        1.1  mycroft  * the steps, and it worked.  Could someone tell me why the following
    211        1.1  mycroft  * code works?  (Or, why all similar codes I tried previously doesn't
    212        1.1  mycroft  * work.)  FIXME.
    213        1.1  mycroft  */
    214        1.1  mycroft 
    215       1.21    enami static __inline__ void
    216       1.21    enami ate_strobe (iot, ioh)
    217       1.21    enami 	bus_space_tag_t iot;
    218       1.21    enami 	bus_space_handle_t ioh;
    219        1.1  mycroft {
    220       1.21    enami 
    221        1.1  mycroft 	/*
    222        1.1  mycroft 	 * Output same value twice.  To speed-down execution?
    223        1.1  mycroft 	 */
    224       1.21    enami 	bus_space_write_1(iot, ioh, FE_BMPR16, FE_B16_SELECT);
    225       1.21    enami 	bus_space_write_1(iot, ioh, FE_BMPR16, FE_B16_SELECT);
    226       1.21    enami 	bus_space_write_1(iot, ioh, FE_BMPR16, FE_B16_SELECT | FE_B16_CLOCK);
    227       1.21    enami 	bus_space_write_1(iot, ioh, FE_BMPR16, FE_B16_SELECT | FE_B16_CLOCK);
    228       1.21    enami 	bus_space_write_1(iot, ioh, FE_BMPR16, FE_B16_SELECT);
    229       1.21    enami 	bus_space_write_1(iot, ioh, FE_BMPR16, FE_B16_SELECT);
    230        1.1  mycroft }
    231        1.1  mycroft 
    232       1.21    enami static void
    233       1.21    enami ate_read_eeprom(iot, ioh, data)
    234       1.21    enami 	bus_space_tag_t iot;
    235       1.21    enami 	bus_space_handle_t ioh;
    236        1.1  mycroft 	u_char *data;
    237        1.1  mycroft {
    238       1.21    enami 	int n, count;
    239       1.21    enami 	u_char val, bit;
    240        1.1  mycroft 
    241        1.1  mycroft 	/* Read bytes from EEPROM; two bytes per an iterration. */
    242        1.1  mycroft 	for (n = 0; n < FE_EEPROM_SIZE / 2; n++) {
    243        1.1  mycroft 		/* Reset the EEPROM interface. */
    244       1.21    enami 		bus_space_write_1(iot, ioh, FE_BMPR16, 0x00);
    245       1.21    enami 		bus_space_write_1(iot, ioh, FE_BMPR17, 0x00);
    246       1.21    enami 		bus_space_write_1(iot, ioh, FE_BMPR16, FE_B16_SELECT);
    247        1.1  mycroft 
    248        1.1  mycroft 		/* Start EEPROM access. */
    249       1.21    enami 		bus_space_write_1(iot, ioh, FE_BMPR17, FE_B17_DATA);
    250       1.21    enami 		ate_strobe(iot, ioh);
    251        1.1  mycroft 
    252        1.1  mycroft 		/* Pass the iterration count to the chip. */
    253       1.21    enami 		count = 0x80 | n;
    254        1.1  mycroft 		for (bit = 0x80; bit != 0x00; bit >>= 1) {
    255       1.21    enami 			bus_space_write_1(iot, ioh, FE_BMPR17,
    256       1.21    enami 			    (count & bit) ? FE_B17_DATA : 0);
    257       1.21    enami 			ate_strobe(iot, ioh);
    258        1.1  mycroft 		}
    259       1.21    enami 		bus_space_write_1(iot, ioh, FE_BMPR17, 0x00);
    260        1.1  mycroft 
    261        1.1  mycroft 		/* Read a byte. */
    262        1.1  mycroft 		val = 0;
    263        1.1  mycroft 		for (bit = 0x80; bit != 0x00; bit >>= 1) {
    264       1.21    enami 			ate_strobe(iot, ioh);
    265       1.21    enami 			if (bus_space_read_1(iot, ioh, FE_BMPR17) &
    266       1.21    enami 			    FE_B17_DATA)
    267        1.1  mycroft 				val |= bit;
    268        1.1  mycroft 		}
    269        1.1  mycroft 		*data++ = val;
    270        1.1  mycroft 
    271        1.1  mycroft 		/* Read one more byte. */
    272        1.1  mycroft 		val = 0;
    273        1.1  mycroft 		for (bit = 0x80; bit != 0x00; bit >>= 1) {
    274       1.21    enami 			ate_strobe(iot, ioh);
    275       1.21    enami 			if (bus_space_read_1(iot, ioh, FE_BMPR17) &
    276       1.21    enami 			    FE_B17_DATA)
    277        1.1  mycroft 				val |= bit;
    278        1.1  mycroft 		}
    279        1.1  mycroft 		*data++ = val;
    280        1.1  mycroft 	}
    281        1.1  mycroft 
    282       1.21    enami 	/* Make sure the EEPROM is turned off. */
    283       1.21    enami 	bus_space_write_1(iot, ioh, FE_BMPR16, 0);
    284       1.21    enami 	bus_space_write_1(iot, ioh, FE_BMPR17, 0);
    285       1.21    enami 
    286       1.23    enami #if ATE_DEBUG >= 3
    287        1.1  mycroft 	/* Report what we got. */
    288        1.1  mycroft 	data -= FE_EEPROM_SIZE;
    289       1.21    enami 	log(LOG_INFO, "ate_read_eeprom: EEPROM at %04x:"
    290        1.1  mycroft 	    " %02x%02x%02x%02x %02x%02x%02x%02x -"
    291        1.1  mycroft 	    " %02x%02x%02x%02x %02x%02x%02x%02x -"
    292        1.1  mycroft 	    " %02x%02x%02x%02x %02x%02x%02x%02x -"
    293        1.1  mycroft 	    " %02x%02x%02x%02x %02x%02x%02x%02x\n",
    294       1.21    enami 	    (int) ioh,		/* XXX */
    295        1.1  mycroft 	    data[ 0], data[ 1], data[ 2], data[ 3],
    296        1.1  mycroft 	    data[ 4], data[ 5], data[ 6], data[ 7],
    297        1.1  mycroft 	    data[ 8], data[ 9], data[10], data[11],
    298        1.1  mycroft 	    data[12], data[13], data[14], data[15],
    299        1.1  mycroft 	    data[16], data[17], data[18], data[19],
    300        1.1  mycroft 	    data[20], data[21], data[22], data[23],
    301        1.1  mycroft 	    data[24], data[25], data[26], data[27],
    302        1.1  mycroft 	    data[28], data[29], data[30], data[31]);
    303        1.1  mycroft #endif
    304        1.1  mycroft }
    305        1.1  mycroft 
    306        1.1  mycroft /*
    307        1.1  mycroft  * Hardware (vendor) specific probe routines.
    308        1.1  mycroft  */
    309        1.1  mycroft 
    310        1.1  mycroft /*
    311        1.1  mycroft  * Probe and initialization for Allied-Telesis AT1700/RE2000 series.
    312        1.1  mycroft  */
    313       1.21    enami static int
    314       1.21    enami ate_find(iot, ioh, iobase, irq)
    315       1.21    enami 	bus_space_tag_t iot;
    316       1.21    enami 	bus_space_handle_t ioh;
    317       1.21    enami 	int *iobase, *irq;
    318        1.1  mycroft {
    319        1.1  mycroft 	u_char eeprom[FE_EEPROM_SIZE];
    320       1.21    enami 	int n;
    321        1.1  mycroft 
    322        1.1  mycroft 	static int const irqmap[4][4] = {
    323        1.1  mycroft 		{  3,  4,  5,  9 },
    324        1.1  mycroft 		{ 10, 11, 12, 15 },
    325        1.1  mycroft 		{  3, 11,  5, 15 },
    326        1.1  mycroft 		{ 10, 11, 14, 15 },
    327        1.1  mycroft 	};
    328        1.1  mycroft 	static struct fe_simple_probe_struct const probe_table[] = {
    329        1.1  mycroft 		{ FE_DLCR2,  0x70, 0x00 },
    330        1.1  mycroft 		{ FE_DLCR4,  0x08, 0x00 },
    331        1.1  mycroft 		{ FE_DLCR5,  0x80, 0x00 },
    332        1.1  mycroft #if 0
    333        1.1  mycroft 		{ FE_BMPR16, 0x1B, 0x00 },
    334        1.1  mycroft 		{ FE_BMPR17, 0x7F, 0x00 },
    335        1.1  mycroft #endif
    336        1.1  mycroft 		{ 0 }
    337        1.1  mycroft 	};
    338        1.1  mycroft 
    339       1.23    enami #if ATE_DEBUG >= 4
    340       1.21    enami 	log(LOG_INFO, "ate_find: probe (0x%x) for ATI\n", iobase);
    341        1.1  mycroft #if 0
    342       1.21    enami 	fe_dump(LOG_INFO, sc);
    343        1.1  mycroft #endif
    344        1.1  mycroft #endif
    345        1.1  mycroft 
    346        1.1  mycroft 	/*
    347        1.1  mycroft 	 * We should test if MB86965A is on the base address now.
    348        1.1  mycroft 	 * Unfortunately, it is very hard to probe it reliably, since
    349        1.1  mycroft 	 * we have no way to reset the chip under software control.
    350        1.1  mycroft 	 * On cold boot, we could check the "signature" bit patterns
    351        1.1  mycroft 	 * described in the Fujitsu document.  On warm boot, however,
    352        1.1  mycroft 	 * we can predict almost nothing about register values.
    353        1.1  mycroft 	 */
    354       1.21    enami 	if (!fe_simple_probe(iot, ioh, probe_table))
    355        1.1  mycroft 		return (0);
    356        1.1  mycroft 
    357        1.1  mycroft 	/* Check if our I/O address matches config info on 86965. */
    358       1.21    enami 	n = (bus_space_read_1(iot, ioh, FE_BMPR19) & FE_B19_ADDR)
    359       1.21    enami 	    >> FE_B19_ADDR_SHIFT;
    360       1.21    enami 	*iobase = ate_iomap[n];
    361        1.1  mycroft 
    362        1.1  mycroft 	/*
    363        1.1  mycroft 	 * We are now almost sure we have an AT1700 at the given
    364        1.1  mycroft 	 * address.  So, read EEPROM through 86965.  We have to write
    365        1.1  mycroft 	 * into LSI registers to read from EEPROM.  I want to avoid it
    366        1.1  mycroft 	 * at this stage, but I cannot test the presense of the chip
    367        1.1  mycroft 	 * any further without reading EEPROM.  FIXME.
    368        1.1  mycroft 	 */
    369       1.21    enami 	ate_read_eeprom(iot, ioh, eeprom);
    370        1.1  mycroft 
    371        1.1  mycroft 	/* Make sure that config info in EEPROM and 86965 agree. */
    372       1.21    enami 	if (eeprom[FE_EEPROM_CONF] != bus_space_read_1(iot, ioh, FE_BMPR19)) {
    373       1.21    enami #ifdef DIAGNOSTIC
    374       1.21    enami 		printf("ate_find: "
    375       1.21    enami 		    "incorrect configration in eeprom and chip\n");
    376       1.21    enami #endif
    377       1.21    enami 		return (0);
    378        1.1  mycroft 	}
    379        1.1  mycroft 
    380        1.1  mycroft 	/*
    381        1.1  mycroft 	 * Try to determine IRQ settings.
    382        1.1  mycroft 	 * Different models use different ranges of IRQs.
    383        1.1  mycroft 	 */
    384       1.21    enami 	n = (bus_space_read_1(iot, ioh, FE_BMPR19) & FE_B19_IRQ)
    385       1.21    enami 	    >> FE_B19_IRQ_SHIFT;
    386        1.1  mycroft 	switch (eeprom[FE_ATI_EEP_REVISION] & 0xf0) {
    387        1.1  mycroft 	case 0x30:
    388       1.21    enami 		*irq = irqmap[3][n];
    389        1.1  mycroft 		break;
    390        1.1  mycroft 	case 0x10:
    391        1.1  mycroft 	case 0x50:
    392       1.21    enami 		*irq = irqmap[2][n];
    393        1.1  mycroft 		break;
    394        1.1  mycroft 	case 0x40:
    395        1.1  mycroft 	case 0x60:
    396        1.1  mycroft 		if (eeprom[FE_ATI_EEP_MAGIC] & 0x04) {
    397       1.21    enami 			*irq = irqmap[1][n];
    398        1.1  mycroft 			break;
    399        1.1  mycroft 		}
    400        1.1  mycroft 	default:
    401       1.21    enami 		*irq = irqmap[0][n];
    402        1.1  mycroft 		break;
    403        1.1  mycroft 	}
    404        1.1  mycroft 
    405       1.21    enami 	return (1);
    406       1.21    enami }
    407        1.1  mycroft 
    408       1.21    enami /*
    409       1.21    enami  * Determine type and ethernet address.
    410       1.21    enami  */
    411       1.21    enami static int
    412       1.21    enami ate_detect(iot, ioh, enaddr)
    413       1.21    enami 	bus_space_tag_t iot;
    414       1.21    enami 	bus_space_handle_t ioh;
    415       1.21    enami 	u_int8_t enaddr[ETHER_ADDR_LEN];
    416       1.21    enami {
    417       1.21    enami 	u_char eeprom[FE_EEPROM_SIZE];
    418       1.21    enami 	int type;
    419        1.1  mycroft 
    420        1.1  mycroft 	/* Get our station address from EEPROM. */
    421       1.21    enami 	ate_read_eeprom(iot, ioh, eeprom);
    422       1.21    enami 	bcopy(eeprom + FE_ATI_EEP_ADDR, enaddr, ETHER_ADDR_LEN);
    423        1.1  mycroft 
    424        1.1  mycroft 	/* Make sure we got a valid station address. */
    425       1.21    enami 	if ((enaddr[0] & 0x03) != 0x00 ||
    426       1.21    enami 	    (enaddr[0] == 0x00 && enaddr[1] == 0x00 && enaddr[2] == 0x00)) {
    427       1.23    enami #ifdef ATE_DEBUG
    428       1.21    enami 		printf("fmv_detect: invalid ethernet address\n");
    429        1.1  mycroft #endif
    430       1.21    enami 		return (0);
    431       1.21    enami 	}
    432        1.1  mycroft 
    433        1.1  mycroft 	/*
    434       1.21    enami 	 * Determine the card type.
    435        1.1  mycroft 	 */
    436       1.21    enami 	switch (eeprom[FE_ATI_EEP_MODEL]) {
    437       1.21    enami 	case FE_ATI_MODEL_AT1700T:
    438       1.21    enami 		type = FE_TYPE_AT1700T;
    439       1.21    enami 		break;
    440       1.21    enami 	case FE_ATI_MODEL_AT1700BT:
    441       1.21    enami 		type = FE_TYPE_AT1700BT;
    442       1.21    enami 		break;
    443       1.21    enami 	case FE_ATI_MODEL_AT1700FT:
    444       1.21    enami 		type = FE_TYPE_AT1700FT;
    445       1.21    enami 		break;
    446       1.21    enami 	case FE_ATI_MODEL_AT1700AT:
    447       1.21    enami 		type = FE_TYPE_AT1700AT;
    448       1.21    enami 		break;
    449       1.21    enami 	default:
    450       1.21    enami 		type = FE_TYPE_RE2000;
    451       1.21    enami 		break;
    452       1.21    enami 	}
    453        1.1  mycroft 
    454       1.21    enami 	return (type);
    455       1.21    enami }
    456        1.1  mycroft 
    457       1.21    enami void
    458       1.21    enami ate_attach(parent, self, aux)
    459       1.21    enami 	struct device *parent, *self;
    460       1.21    enami 	void *aux;
    461       1.21    enami {
    462       1.21    enami 	struct ate_softc *isc = (struct ate_softc *)self;
    463       1.21    enami 	struct mb86960_softc *sc = &isc->sc_mb86960;
    464       1.21    enami 	struct isa_attach_args *ia = aux;
    465       1.21    enami 	bus_space_tag_t iot = ia->ia_iot;
    466       1.21    enami 	bus_space_handle_t ioh;
    467       1.21    enami 	u_int8_t myea[ETHER_ADDR_LEN];
    468       1.21    enami 	const char *typestr;
    469       1.21    enami 	int type;
    470       1.21    enami 
    471       1.21    enami 	printf("\n");
    472       1.21    enami 
    473       1.21    enami 	/* Map i/o space. */
    474       1.21    enami 	if (bus_space_map(iot, ia->ia_iobase, ATE_NPORTS, 0, &ioh)) {
    475       1.21    enami 		printf("%s: can't map i/o space\n", sc->sc_dev.dv_xname);
    476       1.21    enami 		return;
    477       1.21    enami 	}
    478        1.1  mycroft 
    479       1.21    enami 	sc->sc_bst = iot;
    480       1.21    enami 	sc->sc_bsh = ioh;
    481        1.1  mycroft 
    482       1.21    enami 	/* Determine the card type and get ehternet address. */
    483       1.21    enami 	type = ate_detect(iot, ioh, myea);
    484       1.21    enami 	switch (type) {
    485       1.21    enami 	case FE_TYPE_AT1700T:
    486       1.21    enami 		typestr = "AT-1700T";
    487       1.21    enami 		break;
    488       1.21    enami 	case FE_TYPE_AT1700BT:
    489       1.21    enami 		typestr = "AT-1700BT";
    490       1.21    enami 		break;
    491       1.21    enami 	case FE_TYPE_AT1700FT:
    492       1.21    enami 		typestr = "AT-1700FT";
    493       1.21    enami 		break;
    494       1.21    enami 	case FE_TYPE_AT1700AT:
    495       1.21    enami 		typestr = "AT-1700AT";
    496       1.21    enami 		break;
    497       1.21    enami 	case FE_TYPE_RE2000:
    498       1.21    enami 		typestr = "unknown (RE-2000?)";
    499        1.1  mycroft 		break;
    500        1.1  mycroft 
    501        1.1  mycroft 	default:
    502       1.21    enami 	  	/* Unknown card type: maybe a new model, but... */
    503       1.21    enami 		printf("%s: where did the card go?!\n", sc->sc_dev.dv_xname);
    504       1.21    enami 		panic("unknown card");
    505        1.1  mycroft 	}
    506        1.1  mycroft 
    507       1.21    enami 	printf("%s: %s Ethernet\n", sc->sc_dev.dv_xname, typestr);
    508        1.1  mycroft 
    509       1.21    enami 	/* This interface is always enabled. */
    510  1.23.20.1  minoura 	sc->sc_flags |= FE_FLAGS_ENABLED;
    511        1.1  mycroft 
    512        1.1  mycroft 	/*
    513       1.21    enami 	 * Do generic MB86960 attach.
    514        1.1  mycroft 	 */
    515       1.21    enami 	mb86960_attach(sc, MB86960_TYPE_86965, myea);
    516        1.1  mycroft 
    517       1.21    enami 	mb86960_config(sc, NULL, 0, 0);
    518        1.1  mycroft 
    519       1.21    enami 	/* Establish the interrupt handler. */
    520       1.21    enami 	isc->sc_ih = isa_intr_establish(ia->ia_ic, ia->ia_irq, IST_EDGE,
    521       1.21    enami 	    IPL_NET, mb86960_intr, sc);
    522       1.21    enami 	if (isc->sc_ih == NULL)
    523       1.21    enami 		printf("%s: couldn't establish interrupt handler\n",
    524       1.21    enami 		    sc->sc_dev.dv_xname);
    525        1.1  mycroft }
    526