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seeq8005.c revision 1.59.2.3
      1  1.59.2.2    martin /* $NetBSD: seeq8005.c,v 1.59.2.3 2020/04/13 08:04:22 martin Exp $ */
      2       1.1     bjh21 
      3       1.1     bjh21 /*
      4      1.27     bjh21  * Copyright (c) 2000, 2001 Ben Harris
      5      1.11     bjh21  * Copyright (c) 1995-1998 Mark Brinicombe
      6       1.1     bjh21  * All rights reserved.
      7       1.1     bjh21  *
      8       1.1     bjh21  * Redistribution and use in source and binary forms, with or without
      9       1.1     bjh21  * modification, are permitted provided that the following conditions
     10       1.1     bjh21  * are met:
     11       1.1     bjh21  * 1. Redistributions of source code must retain the above copyright
     12       1.1     bjh21  *    notice, this list of conditions and the following disclaimer.
     13       1.1     bjh21  * 2. Redistributions in binary form must reproduce the above copyright
     14       1.1     bjh21  *    notice, this list of conditions and the following disclaimer in the
     15       1.1     bjh21  *    documentation and/or other materials provided with the distribution.
     16       1.1     bjh21  * 3. All advertising materials mentioning features or use of this software
     17       1.1     bjh21  *    must display the following acknowledgement:
     18      1.11     bjh21  *	This product includes software developed by Mark Brinicombe
     19      1.11     bjh21  *	for the NetBSD Project.
     20       1.1     bjh21  * 4. The name of the company nor the name of the author may be used to
     21       1.1     bjh21  *    endorse or promote products derived from this software without specific
     22       1.1     bjh21  *    prior written permission.
     23       1.1     bjh21  *
     24       1.1     bjh21  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
     25       1.1     bjh21  * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
     26       1.1     bjh21  * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     27       1.1     bjh21  * IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT,
     28       1.1     bjh21  * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
     29       1.1     bjh21  * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
     30       1.1     bjh21  * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     31       1.1     bjh21  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     32       1.1     bjh21  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     33       1.1     bjh21  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     34       1.1     bjh21  * SUCH DAMAGE.
     35       1.1     bjh21  */
     36       1.1     bjh21 /*
     37       1.2     bjh21  * seeq8005.c - SEEQ 8005 device driver
     38       1.2     bjh21  */
     39       1.2     bjh21 /*
     40      1.24     bjh21  * This driver currently supports the following chips:
     41       1.2     bjh21  * SEEQ 8005 Advanced Ethernet Data Link Controller
     42      1.20     bjh21  * SEEQ 80C04 Ethernet Data Link Controller
     43      1.20     bjh21  * SEEQ 80C04A AutoDUPLEX CMOS Ethernet Data Link Controller
     44       1.2     bjh21  */
     45       1.2     bjh21 /*
     46      1.11     bjh21  * More information on the 8004 and 8005 AEDLC controllers can be found in
     47      1.11     bjh21  * the SEEQ Technology Inc 1992 Data Comm Devices data book.
     48      1.11     bjh21  *
     49      1.11     bjh21  * This data book may no longer be available as these are rather old chips
     50      1.11     bjh21  * (1991 - 1993)
     51      1.11     bjh21  */
     52      1.11     bjh21 /*
     53       1.2     bjh21  * This driver is based on the arm32 ea(4) driver, hence the names of many
     54       1.2     bjh21  * of the functions.
     55       1.1     bjh21  */
     56       1.1     bjh21 /*
     57       1.1     bjh21  * Bugs/possible improvements:
     58       1.1     bjh21  *	- Does not currently support DMA
     59       1.1     bjh21  *	- Does not transmit multiple packets in one go
     60       1.1     bjh21  *	- Does not support 8-bit busses
     61       1.1     bjh21  */
     62       1.1     bjh21 
     63      1.31     lukem #include <sys/cdefs.h>
     64  1.59.2.2    martin __KERNEL_RCSID(0, "$NetBSD: seeq8005.c,v 1.59.2.3 2020/04/13 08:04:22 martin Exp $");
     65      1.31     lukem 
     66       1.1     bjh21 #include <sys/param.h>
     67       1.1     bjh21 #include <sys/systm.h>
     68       1.1     bjh21 #include <sys/endian.h>
     69       1.1     bjh21 #include <sys/errno.h>
     70       1.1     bjh21 #include <sys/ioctl.h>
     71       1.1     bjh21 #include <sys/mbuf.h>
     72       1.1     bjh21 #include <sys/socket.h>
     73       1.1     bjh21 #include <sys/syslog.h>
     74       1.1     bjh21 #include <sys/device.h>
     75       1.1     bjh21 
     76       1.1     bjh21 #include <net/if.h>
     77       1.1     bjh21 #include <net/if_dl.h>
     78       1.1     bjh21 #include <net/if_types.h>
     79       1.1     bjh21 #include <net/if_ether.h>
     80      1.11     bjh21 #include <net/if_media.h>
     81       1.1     bjh21 #include <net/bpf.h>
     82       1.1     bjh21 
     83      1.53  riastrad #include <sys/rndsource.h>
     84      1.30     bjh21 
     85      1.42        ad #include <sys/bus.h>
     86      1.42        ad #include <sys/intr.h>
     87       1.1     bjh21 
     88       1.1     bjh21 #include <dev/ic/seeq8005reg.h>
     89       1.1     bjh21 #include <dev/ic/seeq8005var.h>
     90       1.1     bjh21 
     91      1.10     bjh21 /*#define SEEQ_DEBUG*/
     92       1.1     bjh21 
     93       1.1     bjh21 /* for debugging convenience */
     94      1.16     bjh21 #ifdef SEEQ8005_DEBUG
     95      1.11     bjh21 #define SEEQ_DEBUG_MISC		1
     96      1.11     bjh21 #define SEEQ_DEBUG_TX		2
     97      1.11     bjh21 #define SEEQ_DEBUG_RX		4
     98      1.11     bjh21 #define SEEQ_DEBUG_PKT		8
     99      1.11     bjh21 #define SEEQ_DEBUG_TXINT	16
    100      1.11     bjh21 #define SEEQ_DEBUG_RXINT	32
    101      1.16     bjh21 int seeq8005_debug = 0;
    102      1.16     bjh21 #define DPRINTF(f, x) { if (seeq8005_debug & (f)) printf x; }
    103       1.1     bjh21 #else
    104      1.11     bjh21 #define DPRINTF(f, x)
    105       1.1     bjh21 #endif
    106      1.11     bjh21 
    107      1.51     skrll #ifndef EA_TX_BUFFER_SIZE
    108      1.51     skrll #define EA_TX_BUFFER_SIZE		0x800		/* (> ETHER_MAX_LEN) */
    109      1.51     skrll #endif
    110      1.51     skrll #ifndef EA_TX_BUFFER_COUNT
    111      1.51     skrll #define EA_TX_BUFFER_COUNT		1		/* (> 0) */
    112      1.51     skrll #endif
    113       1.1     bjh21 
    114      1.24     bjh21 #define SEEQ_READ16(sc, iot, ioh, reg)					\
    115      1.24     bjh21 	((sc)->sc_flags & SF_8BIT ?					\
    116      1.24     bjh21 	    (bus_space_read_1((iot), (ioh), (reg)) |			\
    117      1.24     bjh21 	     (bus_space_read_1((iot), (ioh), (reg) + 1) << 8)) :	\
    118      1.24     bjh21 	    (bus_space_read_2((iot), (ioh), (reg))))
    119      1.24     bjh21 
    120      1.24     bjh21 #define SEEQ_WRITE16(sc, iot, ioh, reg, val) do {			\
    121      1.24     bjh21 	if ((sc)->sc_flags & SF_8BIT) {					\
    122      1.24     bjh21 		bus_space_write_1((iot), (ioh), (reg), (val) & 0xff);	\
    123      1.24     bjh21 		bus_space_write_1((iot), (ioh), (reg) + 1, (val) >> 8);	\
    124      1.24     bjh21 	} else								\
    125      1.24     bjh21 		bus_space_write_2((iot), (ioh), (reg), (val));		\
    126      1.24     bjh21 } while (/*CONSTCOND*/0)
    127      1.24     bjh21 
    128       1.1     bjh21 /*
    129       1.1     bjh21  * prototypes
    130       1.1     bjh21  */
    131       1.1     bjh21 
    132       1.5     bjh21 static int ea_init(struct ifnet *);
    133      1.39  christos static int ea_ioctl(struct ifnet *, u_long, void *);
    134       1.1     bjh21 static void ea_start(struct ifnet *);
    135       1.1     bjh21 static void ea_watchdog(struct ifnet *);
    136       1.1     bjh21 static void ea_chipreset(struct seeq8005_softc *);
    137       1.1     bjh21 static void ea_ramtest(struct seeq8005_softc *);
    138       1.1     bjh21 static int ea_stoptx(struct seeq8005_softc *);
    139       1.1     bjh21 static int ea_stoprx(struct seeq8005_softc *);
    140       1.5     bjh21 static void ea_stop(struct ifnet *, int);
    141       1.1     bjh21 static void ea_await_fifo_empty(struct seeq8005_softc *);
    142       1.1     bjh21 static void ea_await_fifo_full(struct seeq8005_softc *);
    143      1.11     bjh21 static void ea_writebuf(struct seeq8005_softc *, u_char *, int, size_t);
    144      1.11     bjh21 static void ea_readbuf(struct seeq8005_softc *, u_char *, int, size_t);
    145       1.3     bjh21 static void ea_select_buffer(struct seeq8005_softc *, int);
    146  1.59.2.1  christos static void ea_set_address(struct seeq8005_softc *, int, const uint8_t *);
    147      1.11     bjh21 static void ea_read(struct seeq8005_softc *, int, int);
    148      1.11     bjh21 static struct mbuf *ea_get(struct seeq8005_softc *, int, int, struct ifnet *);
    149      1.20     bjh21 static void ea_txint(struct seeq8005_softc *);
    150      1.20     bjh21 static void ea_rxint(struct seeq8005_softc *);
    151      1.49     skrll static void ea_txpacket(struct seeq8005_softc *);
    152      1.12     bjh21 static int ea_writembuf(struct seeq8005_softc *, struct mbuf *, int);
    153       1.5     bjh21 static void ea_mc_reset(struct seeq8005_softc *);
    154      1.11     bjh21 static void ea_mc_reset_8004(struct seeq8005_softc *);
    155      1.11     bjh21 static void ea_mc_reset_8005(struct seeq8005_softc *);
    156      1.11     bjh21 static int ea_mediachange(struct ifnet *);
    157      1.11     bjh21 static void ea_mediastatus(struct ifnet *, struct ifmediareq *);
    158       1.1     bjh21 
    159      1.47    martin static u_char* padbuf = NULL;
    160      1.35    bouyer 
    161       1.1     bjh21 
    162       1.1     bjh21 /*
    163       1.1     bjh21  * Attach chip.
    164       1.1     bjh21  */
    165       1.1     bjh21 
    166       1.1     bjh21 void
    167  1.59.2.1  christos seeq8005_attach(struct seeq8005_softc *sc, const uint8_t *myaddr, int *media,
    168      1.11     bjh21     int nmedia, int defmedia)
    169       1.1     bjh21 {
    170  1.59.2.1  christos 	device_t dev = sc->sc_dev;
    171       1.1     bjh21 	struct ifnet *ifp = &sc->sc_ethercom.ec_if;
    172      1.24     bjh21 	bus_space_tag_t iot = sc->sc_iot;
    173      1.24     bjh21 	bus_space_handle_t ioh = sc->sc_ioh;
    174       1.2     bjh21 	u_int id;
    175       1.2     bjh21 
    176      1.11     bjh21 	KASSERT(myaddr != NULL);
    177       1.2     bjh21 	printf(" address %s", ether_sprintf(myaddr));
    178       1.2     bjh21 
    179       1.3     bjh21 	/* Stop the board. */
    180       1.3     bjh21 
    181       1.3     bjh21 	ea_chipreset(sc);
    182       1.3     bjh21 
    183      1.24     bjh21 	/* Work out data bus width. */
    184      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_RX_PTR, 0x1234);
    185      1.25     bjh21 	if (SEEQ_READ16(sc, iot, ioh, SEEQ_RX_PTR) != 0x1234) {
    186      1.24     bjh21 		/* Try 8-bit mode */
    187      1.24     bjh21 		sc->sc_flags |= SF_8BIT;
    188      1.24     bjh21 		SEEQ_WRITE16(sc, iot, ioh, SEEQ_RX_PTR, 0x1234);
    189      1.25     bjh21 		if (SEEQ_READ16(sc, iot, ioh, SEEQ_RX_PTR) != 0x1234) {
    190      1.43    cegger 			aprint_normal("\n");
    191  1.59.2.1  christos 			aprint_error_dev(dev,
    192  1.59.2.1  christos 			    "Cannot determine data bus width\n");
    193      1.24     bjh21 			return;
    194      1.24     bjh21 		}
    195      1.24     bjh21 	}
    196      1.24     bjh21 
    197      1.24     bjh21 	printf(", %d-bit", sc->sc_flags & SF_8BIT ? 8 : 16);
    198      1.24     bjh21 
    199       1.2     bjh21 	/* Get the product ID */
    200      1.37     perry 
    201      1.10     bjh21 	ea_select_buffer(sc, SEEQ_BUFCODE_PRODUCTID);
    202      1.24     bjh21 	id = SEEQ_READ16(sc, sc->sc_iot, sc->sc_ioh, SEEQ_BUFWIN);
    203       1.2     bjh21 
    204      1.11     bjh21 	switch (id & SEEQ_PRODUCTID_MASK) {
    205      1.11     bjh21 	case SEEQ_PRODUCTID_8004:
    206      1.11     bjh21 		sc->sc_variant = SEEQ_8004;
    207      1.20     bjh21 		switch (id & SEEQ_PRODUCTID_REV_MASK) {
    208      1.20     bjh21 		case SEEQ_PRODUCTID_REV_80C04:
    209      1.20     bjh21 			printf(", SEEQ 80C04\n");
    210      1.20     bjh21 			break;
    211      1.20     bjh21 		case SEEQ_PRODUCTID_REV_80C04A:
    212      1.20     bjh21 			printf(", SEEQ 80C04A\n");
    213      1.20     bjh21 			break;
    214      1.20     bjh21 		default:
    215      1.20     bjh21 			/* Unknown SEEQ 8004 variants */
    216      1.20     bjh21 			printf(", SEEQ 8004 rev %x\n",
    217      1.20     bjh21 			    id & SEEQ_PRODUCTID_REV_MASK);
    218      1.20     bjh21 			break;
    219      1.20     bjh21 		}
    220      1.11     bjh21 		break;
    221      1.11     bjh21 	default:	/* XXX */
    222      1.11     bjh21 		sc->sc_variant = SEEQ_8005;
    223      1.20     bjh21 		printf(", SEEQ 8005\n");
    224      1.11     bjh21 		break;
    225      1.11     bjh21 	}
    226      1.11     bjh21 
    227      1.11     bjh21 	/* Both the 8004 and 8005 are designed for 64K Buffer memory */
    228      1.11     bjh21 	sc->sc_buffersize = SEEQ_MAX_BUFFER_SIZE;
    229      1.11     bjh21 
    230      1.11     bjh21 	/*
    231      1.11     bjh21 	 * Set up tx and rx buffers.
    232      1.11     bjh21 	 *
    233      1.51     skrll 	 * We set aside EA_TX_BUFFER_SIZE * EA_TX_BUFFER_COUNT for TX
    234      1.11     bjh21 	 * buffers and the rest for RX buffers
    235      1.11     bjh21 	 */
    236      1.51     skrll 	sc->sc_tx_bufs = EA_TX_BUFFER_COUNT;
    237      1.51     skrll 	sc->sc_tx_bufsize = sc->sc_tx_bufs * EA_TX_BUFFER_SIZE;
    238      1.11     bjh21 	sc->sc_rx_bufsize = sc->sc_buffersize - sc->sc_tx_bufsize;
    239      1.11     bjh21 	sc->sc_enabled = 0;
    240      1.11     bjh21 
    241      1.11     bjh21 	/* Test the RAM */
    242      1.11     bjh21 	ea_ramtest(sc);
    243      1.11     bjh21 
    244      1.11     bjh21 	printf("%s: %dKB packet memory, txbuf=%dKB (%d buffers), rxbuf=%dKB",
    245  1.59.2.1  christos 	    device_xname(dev), sc->sc_buffersize >> 10,
    246      1.37     perry 	    sc->sc_tx_bufsize >> 10, sc->sc_tx_bufs, sc->sc_rx_bufsize >> 10);
    247       1.1     bjh21 
    248      1.35    bouyer 	if (padbuf == NULL) {
    249      1.35    bouyer 		padbuf = malloc(ETHER_MIN_LEN - ETHER_CRC_LEN, M_DEVBUF,
    250  1.59.2.3    martin 		    M_ZERO | M_WAITOK);
    251      1.35    bouyer 	}
    252      1.35    bouyer 
    253       1.1     bjh21 	/* Initialise ifnet structure. */
    254       1.1     bjh21 
    255  1.59.2.1  christos 	strlcpy(ifp->if_xname, device_xname(dev), IFNAMSIZ);
    256       1.1     bjh21 	ifp->if_softc = sc;
    257       1.1     bjh21 	ifp->if_start = ea_start;
    258       1.1     bjh21 	ifp->if_ioctl = ea_ioctl;
    259       1.5     bjh21 	ifp->if_init = ea_init;
    260       1.5     bjh21 	ifp->if_stop = ea_stop;
    261       1.1     bjh21 	ifp->if_watchdog = ea_watchdog;
    262  1.59.2.1  christos 	ifp->if_flags = IFF_BROADCAST | IFF_MULTICAST;
    263      1.11     bjh21 	if (sc->sc_variant == SEEQ_8004)
    264      1.11     bjh21 		ifp->if_flags |= IFF_SIMPLEX;
    265       1.7   thorpej 	IFQ_SET_READY(&ifp->if_snd);
    266       1.1     bjh21 
    267      1.11     bjh21 	/* Initialize media goo. */
    268      1.11     bjh21 	ifmedia_init(&sc->sc_media, 0, ea_mediachange, ea_mediastatus);
    269      1.11     bjh21 	if (media != NULL) {
    270      1.11     bjh21 		int i;
    271      1.11     bjh21 
    272      1.11     bjh21 		for (i = 0; i < nmedia; i++)
    273      1.11     bjh21 			ifmedia_add(&sc->sc_media, media[i], 0, NULL);
    274      1.11     bjh21 		ifmedia_set(&sc->sc_media, defmedia);
    275      1.11     bjh21 	} else {
    276  1.59.2.1  christos 		ifmedia_add(&sc->sc_media, IFM_ETHER | IFM_MANUAL, 0, NULL);
    277  1.59.2.1  christos 		ifmedia_set(&sc->sc_media, IFM_ETHER | IFM_MANUAL);
    278      1.11     bjh21 	}
    279      1.11     bjh21 
    280      1.27     bjh21 	/* We can support 802.1Q VLAN-sized frames. */
    281      1.27     bjh21 	sc->sc_ethercom.ec_capabilities |= ETHERCAP_VLAN_MTU;
    282      1.27     bjh21 
    283       1.1     bjh21 	/* Now we can attach the interface. */
    284       1.1     bjh21 
    285       1.1     bjh21 	if_attach(ifp);
    286       1.1     bjh21 	ether_ifattach(ifp, myaddr);
    287       1.1     bjh21 
    288      1.11     bjh21 	printf("\n");
    289      1.30     bjh21 
    290      1.30     bjh21 	/* After \n because it can print a line of its own. */
    291  1.59.2.1  christos 	rnd_attach_source(&sc->rnd_source, device_xname(dev),
    292      1.52       tls 	    RND_TYPE_NET, RND_FLAG_DEFAULT);
    293      1.11     bjh21 }
    294      1.11     bjh21 
    295      1.11     bjh21 /*
    296      1.11     bjh21  * Media change callback.
    297      1.11     bjh21  */
    298      1.11     bjh21 static int
    299      1.11     bjh21 ea_mediachange(struct ifnet *ifp)
    300      1.11     bjh21 {
    301      1.11     bjh21 	struct seeq8005_softc *sc = ifp->if_softc;
    302       1.8     bjh21 
    303      1.11     bjh21 	if (sc->sc_mediachange)
    304  1.59.2.1  christos 		return (*sc->sc_mediachange)(sc);
    305  1.59.2.1  christos 	return EINVAL;
    306       1.1     bjh21 }
    307       1.1     bjh21 
    308      1.11     bjh21 /*
    309      1.11     bjh21  * Media status callback.
    310      1.11     bjh21  */
    311      1.11     bjh21 static void
    312      1.11     bjh21 ea_mediastatus(struct ifnet *ifp, struct ifmediareq *ifmr)
    313      1.11     bjh21 {
    314      1.11     bjh21 	struct seeq8005_softc *sc = ifp->if_softc;
    315      1.11     bjh21 
    316      1.11     bjh21 	if (sc->sc_enabled == 0) {
    317      1.11     bjh21 		ifmr->ifm_active = IFM_ETHER | IFM_NONE;
    318      1.11     bjh21 		ifmr->ifm_status = 0;
    319      1.11     bjh21 		return;
    320      1.11     bjh21 	}
    321      1.11     bjh21 
    322      1.11     bjh21 	if (sc->sc_mediastatus)
    323      1.11     bjh21 		(*sc->sc_mediastatus)(sc, ifmr);
    324      1.11     bjh21 }
    325       1.1     bjh21 
    326       1.1     bjh21 /*
    327       1.1     bjh21  * Test the RAM on the ethernet card.
    328       1.1     bjh21  */
    329       1.1     bjh21 
    330       1.1     bjh21 void
    331       1.1     bjh21 ea_ramtest(struct seeq8005_softc *sc)
    332       1.1     bjh21 {
    333       1.1     bjh21 	bus_space_tag_t iot = sc->sc_iot;
    334       1.1     bjh21 	bus_space_handle_t ioh = sc->sc_ioh;
    335       1.1     bjh21 	int loop;
    336       1.1     bjh21 	u_int sum = 0;
    337       1.1     bjh21 
    338       1.1     bjh21 	/*
    339       1.1     bjh21 	 * Test the buffer memory on the board.
    340       1.1     bjh21 	 * Write simple pattens to it and read them back.
    341       1.1     bjh21 	 */
    342       1.1     bjh21 
    343       1.1     bjh21 	/* Set up the whole buffer RAM for writing */
    344       1.1     bjh21 
    345      1.10     bjh21 	ea_select_buffer(sc, SEEQ_BUFCODE_TX_EAP);
    346      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_BUFWIN, (SEEQ_MAX_BUFFER_SIZE >> 8) - 1);
    347      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_TX_PTR, 0x0000);
    348      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_RX_PTR, SEEQ_MAX_BUFFER_SIZE - 2);
    349       1.1     bjh21 
    350  1.59.2.1  christos #define SEEQ_RAMTEST_LOOP(value)					\
    351       1.3     bjh21 do {									\
    352       1.3     bjh21 	/* Set the write start address and write a pattern */		\
    353       1.3     bjh21 	ea_writebuf(sc, NULL, 0x0000, 0);				\
    354      1.10     bjh21 	for (loop = 0; loop < SEEQ_MAX_BUFFER_SIZE; loop += 2)		\
    355      1.24     bjh21 		SEEQ_WRITE16(sc, iot, ioh, SEEQ_BUFWIN, (value));	\
    356       1.3     bjh21 									\
    357       1.3     bjh21 	/* Set the read start address and verify the pattern */		\
    358       1.3     bjh21 	ea_readbuf(sc, NULL, 0x0000, 0);				\
    359      1.10     bjh21 	for (loop = 0; loop < SEEQ_MAX_BUFFER_SIZE; loop += 2)		\
    360  1.59.2.1  christos 		if (SEEQ_READ16(sc, iot, ioh, SEEQ_BUFWIN) != (value))	\
    361       1.3     bjh21 			++sum;						\
    362       1.3     bjh21 } while (/*CONSTCOND*/0)
    363       1.3     bjh21 
    364      1.10     bjh21 	SEEQ_RAMTEST_LOOP(loop);
    365      1.10     bjh21 	SEEQ_RAMTEST_LOOP(loop ^ (SEEQ_MAX_BUFFER_SIZE - 1));
    366      1.10     bjh21 	SEEQ_RAMTEST_LOOP(0xaa55);
    367      1.10     bjh21 	SEEQ_RAMTEST_LOOP(0x55aa);
    368       1.1     bjh21 
    369       1.1     bjh21 	/* Report */
    370       1.1     bjh21 
    371       1.2     bjh21 	if (sum > 0)
    372  1.59.2.1  christos 		aprint_error_dev(sc->sc_dev,
    373  1.59.2.1  christos 		    "buffer RAM failed self test, %d faults\n", sum);
    374       1.1     bjh21 }
    375       1.1     bjh21 
    376       1.1     bjh21 
    377       1.1     bjh21 /*
    378       1.1     bjh21  * Stop the tx interface.
    379       1.1     bjh21  *
    380       1.1     bjh21  * Returns 0 if the tx was already stopped or 1 if it was active
    381       1.1     bjh21  */
    382       1.1     bjh21 
    383       1.1     bjh21 static int
    384       1.1     bjh21 ea_stoptx(struct seeq8005_softc *sc)
    385       1.1     bjh21 {
    386       1.1     bjh21 	bus_space_tag_t iot = sc->sc_iot;
    387       1.1     bjh21 	bus_space_handle_t ioh = sc->sc_ioh;
    388       1.1     bjh21 	int timeout;
    389       1.1     bjh21 	int status;
    390       1.1     bjh21 
    391      1.16     bjh21 	DPRINTF(SEEQ_DEBUG_TX, ("ea_stoptx()\n"));
    392      1.11     bjh21 
    393      1.11     bjh21 	sc->sc_enabled = 0;
    394       1.1     bjh21 
    395      1.24     bjh21 	status = SEEQ_READ16(sc, iot, ioh, SEEQ_STATUS);
    396      1.10     bjh21 	if (!(status & SEEQ_STATUS_TX_ON))
    397       1.1     bjh21 		return 0;
    398       1.1     bjh21 
    399       1.1     bjh21 	/* Stop any tx and wait for confirmation */
    400      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_COMMAND,
    401  1.59.2.1  christos 	    sc->sc_command | SEEQ_CMD_TX_OFF);
    402       1.1     bjh21 
    403       1.1     bjh21 	timeout = 20000;
    404       1.1     bjh21 	do {
    405      1.24     bjh21 		status = SEEQ_READ16(sc, iot, ioh, SEEQ_STATUS);
    406      1.11     bjh21 		delay(1);
    407      1.10     bjh21 	} while ((status & SEEQ_STATUS_TX_ON) && --timeout > 0);
    408  1.59.2.1  christos 	if (timeout == 0)
    409      1.11     bjh21 		log(LOG_ERR, "%s: timeout waiting for tx termination\n",
    410      1.50     skrll 		    device_xname(sc->sc_dev));
    411       1.1     bjh21 
    412       1.1     bjh21 	/* Clear any pending tx interrupt */
    413      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_COMMAND,
    414      1.10     bjh21 		   sc->sc_command | SEEQ_CMD_TX_INTACK);
    415       1.1     bjh21 	return 1;
    416       1.1     bjh21 }
    417       1.1     bjh21 
    418       1.1     bjh21 
    419       1.1     bjh21 /*
    420       1.1     bjh21  * Stop the rx interface.
    421       1.1     bjh21  *
    422       1.1     bjh21  * Returns 0 if the tx was already stopped or 1 if it was active
    423       1.1     bjh21  */
    424       1.1     bjh21 
    425       1.1     bjh21 static int
    426       1.1     bjh21 ea_stoprx(struct seeq8005_softc *sc)
    427       1.1     bjh21 {
    428       1.1     bjh21 	bus_space_tag_t iot = sc->sc_iot;
    429       1.1     bjh21 	bus_space_handle_t ioh = sc->sc_ioh;
    430       1.1     bjh21 	int timeout;
    431       1.1     bjh21 	int status;
    432       1.1     bjh21 
    433      1.16     bjh21 	DPRINTF(SEEQ_DEBUG_RX, ("ea_stoprx()\n"));
    434       1.1     bjh21 
    435      1.24     bjh21 	status = SEEQ_READ16(sc, iot, ioh, SEEQ_STATUS);
    436      1.10     bjh21 	if (!(status & SEEQ_STATUS_RX_ON))
    437       1.1     bjh21 		return 0;
    438       1.1     bjh21 
    439       1.1     bjh21 	/* Stop any rx and wait for confirmation */
    440       1.1     bjh21 
    441      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_COMMAND,
    442      1.10     bjh21 			  sc->sc_command | SEEQ_CMD_RX_OFF);
    443       1.1     bjh21 
    444       1.1     bjh21 	timeout = 20000;
    445       1.1     bjh21 	do {
    446      1.24     bjh21 		status = SEEQ_READ16(sc, iot, ioh, SEEQ_STATUS);
    447      1.51     skrll 		delay(1);
    448      1.10     bjh21 	} while ((status & SEEQ_STATUS_RX_ON) && --timeout > 0);
    449       1.1     bjh21 	if (timeout == 0)
    450      1.11     bjh21 		log(LOG_ERR, "%s: timeout waiting for rx termination\n",
    451      1.50     skrll 		    device_xname(sc->sc_dev));
    452       1.1     bjh21 
    453       1.1     bjh21 	/* Clear any pending rx interrupt */
    454       1.1     bjh21 
    455      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_COMMAND,
    456      1.10     bjh21 		   sc->sc_command | SEEQ_CMD_RX_INTACK);
    457       1.1     bjh21 	return 1;
    458       1.1     bjh21 }
    459       1.1     bjh21 
    460       1.1     bjh21 
    461       1.1     bjh21 /*
    462       1.1     bjh21  * Stop interface.
    463       1.1     bjh21  * Stop all IO and shut the interface down
    464       1.1     bjh21  */
    465       1.1     bjh21 
    466      1.34     bjh21 /* ARGSUSED */
    467       1.1     bjh21 static void
    468       1.5     bjh21 ea_stop(struct ifnet *ifp, int disable)
    469       1.1     bjh21 {
    470       1.5     bjh21 	struct seeq8005_softc *sc = ifp->if_softc;
    471       1.1     bjh21 	bus_space_tag_t iot = sc->sc_iot;
    472       1.1     bjh21 	bus_space_handle_t ioh = sc->sc_ioh;
    473      1.37     perry 
    474      1.16     bjh21 	DPRINTF(SEEQ_DEBUG_MISC, ("ea_stop()\n"));
    475       1.1     bjh21 
    476       1.1     bjh21 	/* Stop all IO */
    477       1.1     bjh21 	ea_stoptx(sc);
    478       1.1     bjh21 	ea_stoprx(sc);
    479       1.1     bjh21 
    480       1.1     bjh21 	/* Disable rx and tx interrupts */
    481      1.48  christos 	sc->sc_command &= ~(SEEQ_CMD_RX_INTEN | SEEQ_CMD_TX_INTEN);
    482       1.1     bjh21 
    483       1.1     bjh21 	/* Clear any pending interrupts */
    484      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_COMMAND,
    485  1.59.2.1  christos 	    sc->sc_command | SEEQ_CMD_RX_INTACK | SEEQ_CMD_TX_INTACK |
    486  1.59.2.1  christos 	    SEEQ_CMD_DMA_INTACK | SEEQ_CMD_BW_INTACK);
    487      1.11     bjh21 
    488      1.11     bjh21 	if (sc->sc_variant == SEEQ_8004) {
    489      1.11     bjh21 		/* Put the chip to sleep */
    490      1.11     bjh21 		ea_select_buffer(sc, SEEQ_BUFCODE_CONFIG3);
    491      1.24     bjh21 		SEEQ_WRITE16(sc, iot, ioh, SEEQ_BUFWIN,
    492      1.11     bjh21 		    sc->sc_config3 | SEEQ_CFG3_SLEEP);
    493      1.11     bjh21 	}
    494       1.1     bjh21 
    495       1.1     bjh21 	/* Cancel any watchdog timer */
    496      1.48  christos 	sc->sc_ethercom.ec_if.if_timer = 0;
    497       1.1     bjh21 }
    498       1.1     bjh21 
    499       1.1     bjh21 
    500       1.1     bjh21 /*
    501       1.1     bjh21  * Reset the chip
    502       1.1     bjh21  * Following this the software registers are reset
    503       1.1     bjh21  */
    504       1.1     bjh21 
    505       1.1     bjh21 static void
    506       1.1     bjh21 ea_chipreset(struct seeq8005_softc *sc)
    507       1.1     bjh21 {
    508       1.1     bjh21 	bus_space_tag_t iot = sc->sc_iot;
    509       1.1     bjh21 	bus_space_handle_t ioh = sc->sc_ioh;
    510       1.1     bjh21 
    511      1.16     bjh21 	DPRINTF(SEEQ_DEBUG_MISC, ("ea_chipreset()\n"));
    512       1.1     bjh21 
    513       1.1     bjh21 	/* Reset the controller. Min of 4us delay here */
    514       1.1     bjh21 
    515      1.24     bjh21 	/*
    516      1.24     bjh21 	 * This can be called before we know whether the chip is in 8- or
    517      1.24     bjh21 	 * 16-bit mode, so we do a reset in both modes.  The 16-bit reset is
    518      1.24     bjh21 	 * harmless in 8-bit mode, so we do that second.
    519      1.24     bjh21 	 */
    520      1.24     bjh21 
    521      1.24     bjh21 	/* In 16-bit mode, this will munge the PreamSelect bit. */
    522      1.24     bjh21 	bus_space_write_1(iot, ioh, SEEQ_CONFIG2 + 1, SEEQ_CFG2_RESET >> 8);
    523      1.24     bjh21 	delay(4);
    524      1.24     bjh21 	/* In 8-bit mode, this will zero the bottom half of config reg 2. */
    525      1.10     bjh21 	bus_space_write_2(iot, ioh, SEEQ_CONFIG2, SEEQ_CFG2_RESET);
    526       1.3     bjh21 	delay(4);
    527       1.1     bjh21 
    528       1.1     bjh21 	sc->sc_command = 0;
    529       1.1     bjh21 	sc->sc_config1 = 0;
    530       1.1     bjh21 	sc->sc_config2 = 0;
    531      1.11     bjh21 	sc->sc_config3 = 0;
    532       1.1     bjh21 }
    533       1.1     bjh21 
    534       1.1     bjh21 
    535       1.1     bjh21 /*
    536       1.1     bjh21  * If the DMA FIFO's in write mode, wait for it to empty.  Needed when
    537       1.1     bjh21  * switching the FIFO from write to read.  We also use it when changing
    538       1.1     bjh21  * the address for writes.
    539       1.1     bjh21  */
    540       1.1     bjh21 static void
    541       1.1     bjh21 ea_await_fifo_empty(struct seeq8005_softc *sc)
    542       1.1     bjh21 {
    543       1.1     bjh21 	bus_space_tag_t iot = sc->sc_iot;
    544       1.1     bjh21 	bus_space_handle_t ioh = sc->sc_ioh;
    545       1.1     bjh21 	int timeout;
    546      1.37     perry 
    547       1.1     bjh21 	timeout = 20000;
    548      1.24     bjh21 	if ((SEEQ_READ16(sc, iot, ioh, SEEQ_STATUS) &
    549      1.10     bjh21 	     SEEQ_STATUS_FIFO_DIR) != 0)
    550       1.1     bjh21 		return; /* FIFO is reading anyway. */
    551      1.18     bjh21 	while (--timeout > 0)
    552      1.24     bjh21 		if (SEEQ_READ16(sc, iot, ioh, SEEQ_STATUS) &
    553      1.18     bjh21 		    SEEQ_STATUS_FIFO_EMPTY)
    554      1.18     bjh21 			return;
    555  1.59.2.1  christos 	log(LOG_ERR, "%s: DMA FIFO failed to empty\n",
    556  1.59.2.1  christos 	    device_xname(sc->sc_dev));
    557       1.1     bjh21 }
    558       1.1     bjh21 
    559       1.1     bjh21 /*
    560       1.1     bjh21  * Wait for the DMA FIFO to fill before reading from it.
    561       1.1     bjh21  */
    562       1.1     bjh21 static void
    563       1.1     bjh21 ea_await_fifo_full(struct seeq8005_softc *sc)
    564       1.1     bjh21 {
    565       1.1     bjh21 	bus_space_tag_t iot = sc->sc_iot;
    566       1.1     bjh21 	bus_space_handle_t ioh = sc->sc_ioh;
    567       1.1     bjh21 	int timeout;
    568       1.1     bjh21 
    569       1.1     bjh21 	timeout = 20000;
    570      1.18     bjh21 	while (--timeout > 0)
    571      1.24     bjh21 		if (SEEQ_READ16(sc, iot, ioh, SEEQ_STATUS) &
    572      1.18     bjh21 		    SEEQ_STATUS_FIFO_FULL)
    573      1.18     bjh21 			return;
    574      1.50     skrll 	log(LOG_ERR, "%s: DMA FIFO failed to fill\n", device_xname(sc->sc_dev));
    575       1.1     bjh21 }
    576       1.1     bjh21 
    577       1.1     bjh21 /*
    578       1.1     bjh21  * write to the buffer memory on the interface
    579       1.1     bjh21  *
    580       1.1     bjh21  * The buffer address is set to ADDR.
    581       1.1     bjh21  * If len != 0 then data is copied from the address starting at buf
    582       1.1     bjh21  * to the interface buffer.
    583  1.59.2.1  christos  * BUF must be usable as a uint16_t *.
    584       1.1     bjh21  * If LEN is odd, it must be safe to overwrite one extra byte.
    585       1.1     bjh21  */
    586       1.1     bjh21 
    587       1.1     bjh21 static void
    588      1.11     bjh21 ea_writebuf(struct seeq8005_softc *sc, u_char *buf, int addr, size_t len)
    589       1.1     bjh21 {
    590       1.1     bjh21 	bus_space_tag_t iot = sc->sc_iot;
    591       1.1     bjh21 	bus_space_handle_t ioh = sc->sc_ioh;
    592       1.1     bjh21 
    593      1.16     bjh21 	DPRINTF(SEEQ_DEBUG_MISC, ("writebuf: st=%04x\n",
    594      1.24     bjh21 	    SEEQ_READ16(sc, iot, ioh, SEEQ_STATUS)));
    595       1.1     bjh21 
    596       1.1     bjh21 #ifdef DIAGNOSTIC
    597  1.59.2.1  christos 	if (__predict_false(!ALIGNED_POINTER(buf, uint16_t)))
    598      1.50     skrll 		panic("%s: unaligned writebuf", device_xname(sc->sc_dev));
    599      1.10     bjh21 	if (__predict_false(addr >= SEEQ_MAX_BUFFER_SIZE))
    600      1.50     skrll 		panic("%s: writebuf out of range", device_xname(sc->sc_dev));
    601      1.14     bjh21 #endif
    602       1.1     bjh21 
    603      1.11     bjh21 	if (addr != -1) {
    604      1.11     bjh21 		ea_await_fifo_empty(sc);
    605       1.1     bjh21 
    606      1.11     bjh21 		ea_select_buffer(sc, SEEQ_BUFCODE_LOCAL_MEM);
    607      1.24     bjh21 		SEEQ_WRITE16(sc, iot, ioh, SEEQ_COMMAND,
    608      1.11     bjh21 		    sc->sc_command | SEEQ_CMD_FIFO_WRITE);
    609      1.51     skrll 
    610      1.51     skrll 		ea_await_fifo_empty(sc);
    611      1.51     skrll 
    612      1.24     bjh21 		SEEQ_WRITE16(sc, iot, ioh, SEEQ_DMA_ADDR, addr);
    613      1.11     bjh21 	}
    614       1.1     bjh21 
    615      1.24     bjh21 	if (len > 0) {
    616      1.24     bjh21 		if (sc->sc_flags & SF_8BIT)
    617      1.24     bjh21 			bus_space_write_multi_1(iot, ioh, SEEQ_BUFWIN,
    618  1.59.2.1  christos 			    (uint8_t *)buf, len);
    619      1.24     bjh21 		else
    620      1.24     bjh21 			bus_space_write_multi_2(iot, ioh, SEEQ_BUFWIN,
    621      1.34     bjh21 			    /* LINTED: alignment checked above */
    622  1.59.2.1  christos 			    (uint16_t *)buf, len / 2);
    623      1.24     bjh21 	}
    624      1.33     bjh21 	if (!(sc->sc_flags & SF_8BIT) && len % 2) {
    625      1.33     bjh21 		/* Write the last byte */
    626      1.33     bjh21 		bus_space_write_2(iot, ioh, SEEQ_BUFWIN, buf[len - 1]);
    627      1.33     bjh21 	}
    628       1.1     bjh21 	/* Leave FIFO to empty in the background */
    629       1.1     bjh21 }
    630       1.1     bjh21 
    631       1.1     bjh21 
    632       1.1     bjh21 /*
    633       1.1     bjh21  * read from the buffer memory on the interface
    634       1.1     bjh21  *
    635       1.1     bjh21  * The buffer address is set to ADDR.
    636       1.1     bjh21  * If len != 0 then data is copied from the interface buffer to the
    637       1.1     bjh21  * address starting at buf.
    638  1.59.2.1  christos  * BUF must be usable as a uint16_t *.
    639       1.1     bjh21  * If LEN is odd, it must be safe to overwrite one extra byte.
    640       1.1     bjh21  */
    641       1.1     bjh21 
    642       1.1     bjh21 static void
    643      1.11     bjh21 ea_readbuf(struct seeq8005_softc *sc, u_char *buf, int addr, size_t len)
    644       1.1     bjh21 {
    645       1.1     bjh21 	bus_space_tag_t iot = sc->sc_iot;
    646       1.1     bjh21 	bus_space_handle_t ioh = sc->sc_ioh;
    647      1.19     bjh21 	int runup;
    648       1.1     bjh21 
    649      1.16     bjh21 	DPRINTF(SEEQ_DEBUG_MISC, ("readbuf: st=%04x addr=%04x len=%d\n",
    650      1.24     bjh21 	    SEEQ_READ16(sc, iot, ioh, SEEQ_STATUS), addr, len));
    651       1.1     bjh21 
    652       1.1     bjh21 #ifdef DIAGNOSTIC
    653  1.59.2.1  christos 	if (__predict_false(!ALIGNED_POINTER(buf, uint16_t)))
    654      1.50     skrll 		panic("%s: unaligned readbuf", device_xname(sc->sc_dev));
    655      1.14     bjh21 	if (__predict_false(addr >= SEEQ_MAX_BUFFER_SIZE))
    656      1.50     skrll 		panic("%s: readbuf out of range", device_xname(sc->sc_dev));
    657       1.1     bjh21 #endif
    658       1.1     bjh21 
    659      1.11     bjh21 	if (addr != -1) {
    660      1.19     bjh21 		/*
    661      1.19     bjh21 		 * SEEQ 80C04 bug:
    662      1.19     bjh21 		 * Starting reading from certain addresses seems to cause
    663      1.19     bjh21 		 * us to get bogus results, so we avoid them.
    664      1.19     bjh21 		 */
    665      1.19     bjh21 		runup = 0;
    666      1.19     bjh21 		if (sc->sc_variant == SEEQ_8004 &&
    667      1.19     bjh21 		    ((addr & 0x00ff) == 0x00ea ||
    668      1.19     bjh21 		     (addr & 0x00ff) == 0x00ee ||
    669      1.19     bjh21 		     (addr & 0x00ff) == 0x00f0))
    670      1.19     bjh21 			runup = (addr & 0x00ff) - 0x00e8;
    671      1.19     bjh21 
    672      1.11     bjh21 		ea_await_fifo_empty(sc);
    673       1.1     bjh21 
    674      1.11     bjh21 		ea_select_buffer(sc, SEEQ_BUFCODE_LOCAL_MEM);
    675      1.21     bjh21 
    676      1.21     bjh21 		/*
    677      1.21     bjh21 		 * 80C04 bug workaround.  I found this in the old arm32 "eb"
    678      1.21     bjh21 		 * driver.  I've no idea what it does, but it seems to stop
    679      1.21     bjh21 		 * the chip mangling data so often.
    680      1.21     bjh21 		 */
    681      1.24     bjh21 		SEEQ_WRITE16(sc, iot, ioh, SEEQ_COMMAND,
    682      1.21     bjh21 		    sc->sc_command | SEEQ_CMD_FIFO_WRITE);
    683      1.21     bjh21 		ea_await_fifo_empty(sc);
    684      1.21     bjh21 
    685      1.24     bjh21 		SEEQ_WRITE16(sc, iot, ioh, SEEQ_DMA_ADDR, addr - runup);
    686      1.24     bjh21 		SEEQ_WRITE16(sc, iot, ioh, SEEQ_COMMAND,
    687      1.11     bjh21 		    sc->sc_command | SEEQ_CMD_FIFO_READ);
    688       1.1     bjh21 
    689      1.11     bjh21 		ea_await_fifo_full(sc);
    690      1.19     bjh21 		while (runup > 0) {
    691      1.34     bjh21 			/* LINTED: Reading a volatile _does_ have an effect */
    692      1.24     bjh21 			(void)SEEQ_READ16(sc, iot, ioh, SEEQ_BUFWIN);
    693      1.19     bjh21 			runup -= 2;
    694      1.19     bjh21 		}
    695      1.11     bjh21 	}
    696       1.1     bjh21 
    697      1.24     bjh21 	if (len > 0) {
    698      1.24     bjh21 		if (sc->sc_flags & SF_8BIT)
    699      1.24     bjh21 			bus_space_read_multi_1(iot, ioh, SEEQ_BUFWIN,
    700  1.59.2.1  christos 			    (uint8_t *)buf, len);
    701      1.24     bjh21 		else
    702      1.24     bjh21 			bus_space_read_multi_2(iot, ioh, SEEQ_BUFWIN,
    703      1.34     bjh21 			    /* LINTED: pointer alignment checked above */
    704  1.59.2.1  christos 			    (uint16_t *)buf, len / 2);
    705      1.33     bjh21 	}
    706      1.33     bjh21 	if (!(sc->sc_flags & SF_8BIT) && len % 2) {
    707      1.33     bjh21 		/* Read the last byte */
    708      1.33     bjh21 		buf[len - 1] = bus_space_read_2(iot, ioh, SEEQ_BUFWIN);
    709      1.24     bjh21 	}
    710       1.1     bjh21 }
    711       1.1     bjh21 
    712       1.3     bjh21 static void
    713       1.3     bjh21 ea_select_buffer(struct seeq8005_softc *sc, int bufcode)
    714       1.3     bjh21 {
    715       1.3     bjh21 
    716      1.24     bjh21 	SEEQ_WRITE16(sc, sc->sc_iot, sc->sc_ioh, SEEQ_CONFIG1,
    717       1.3     bjh21 			  sc->sc_config1 | bufcode);
    718       1.3     bjh21 }
    719       1.1     bjh21 
    720       1.5     bjh21 /* Must be called at splnet */
    721       1.5     bjh21 static void
    722  1.59.2.1  christos ea_set_address(struct seeq8005_softc *sc, int which, const uint8_t *ea)
    723       1.5     bjh21 {
    724       1.5     bjh21 	int i;
    725       1.5     bjh21 
    726      1.10     bjh21 	ea_select_buffer(sc, SEEQ_BUFCODE_STATION_ADDR0 + which);
    727       1.5     bjh21 	for (i = 0; i < ETHER_ADDR_LEN; ++i)
    728  1.59.2.1  christos 		SEEQ_WRITE16(sc, sc->sc_iot, sc->sc_ioh, SEEQ_BUFWIN, ea[i]);
    729       1.5     bjh21 }
    730       1.5     bjh21 
    731       1.1     bjh21 /*
    732       1.1     bjh21  * Initialize interface.
    733       1.1     bjh21  *
    734       1.1     bjh21  * This should leave the interface in a state for packet reception and
    735       1.1     bjh21  * transmission.
    736       1.1     bjh21  */
    737       1.1     bjh21 
    738       1.1     bjh21 static int
    739       1.5     bjh21 ea_init(struct ifnet *ifp)
    740       1.1     bjh21 {
    741       1.5     bjh21 	struct seeq8005_softc *sc = ifp->if_softc;
    742       1.1     bjh21 	bus_space_tag_t iot = sc->sc_iot;
    743       1.1     bjh21 	bus_space_handle_t ioh = sc->sc_ioh;
    744       1.5     bjh21 	int s;
    745       1.1     bjh21 
    746      1.16     bjh21 	DPRINTF(SEEQ_DEBUG_MISC, ("ea_init()\n"));
    747       1.1     bjh21 
    748       1.1     bjh21 	s = splnet();
    749       1.1     bjh21 
    750       1.1     bjh21 	/* First, reset the board. */
    751       1.1     bjh21 
    752       1.3     bjh21 	ea_chipreset(sc);
    753       1.3     bjh21 
    754       1.3     bjh21 	/* Set up defaults for the registers */
    755       1.3     bjh21 
    756      1.11     bjh21 	sc->sc_command = 0;
    757      1.11     bjh21 	sc->sc_config1 = 0;
    758       1.3     bjh21 #if BYTE_ORDER == BIG_ENDIAN
    759      1.11     bjh21 	sc->sc_config2 = SEEQ_CFG2_BYTESWAP;
    760       1.3     bjh21 #else
    761       1.3     bjh21 	sc->sc_config2 = 0;
    762       1.3     bjh21 #endif
    763      1.11     bjh21 	sc->sc_config3 = 0;
    764       1.1     bjh21 
    765      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_COMMAND, sc->sc_command);
    766      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_CONFIG1, sc->sc_config1);
    767      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_CONFIG2, sc->sc_config2);
    768      1.11     bjh21 	if (sc->sc_variant == SEEQ_8004) {
    769      1.11     bjh21 		ea_select_buffer(sc, SEEQ_BUFCODE_CONFIG3);
    770      1.24     bjh21 		SEEQ_WRITE16(sc, iot, ioh, SEEQ_BUFWIN, sc->sc_config3);
    771      1.11     bjh21 	}
    772      1.11     bjh21 
    773      1.11     bjh21 	/* Write the station address - the receiver must be off */
    774  1.59.2.1  christos 	ea_set_address(sc, 0, (const uint8_t *)CLLADDR(ifp->if_sadl));
    775       1.3     bjh21 
    776       1.3     bjh21 	/* Split board memory into Rx and Tx. */
    777      1.10     bjh21 	ea_select_buffer(sc, SEEQ_BUFCODE_TX_EAP);
    778      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_BUFWIN, (sc->sc_tx_bufsize>> 8) - 1);
    779       1.3     bjh21 
    780      1.27     bjh21 	if (sc->sc_variant == SEEQ_8004) {
    781      1.27     bjh21 		/* Make the interface IFF_SIMPLEX. */
    782      1.11     bjh21 		sc->sc_config2 |= SEEQ_CFG2_RX_TX_DISABLE;
    783      1.27     bjh21 		/* Enable reception of long packets (for vlan(4)). */
    784      1.27     bjh21 		sc->sc_config2 |= SEEQ_CFG2_PASS_LONGSHORT;
    785      1.27     bjh21 	}
    786       1.1     bjh21 
    787       1.1     bjh21 	/* Configure rx. */
    788      1.13     bjh21 	ea_mc_reset(sc);
    789       1.1     bjh21 	if (ifp->if_flags & IFF_PROMISC)
    790      1.10     bjh21 		sc->sc_config1 = SEEQ_CFG1_PROMISCUOUS;
    791      1.13     bjh21 	else if ((ifp->if_flags & IFF_ALLMULTI) || sc->sc_variant == SEEQ_8004)
    792      1.10     bjh21 		sc->sc_config1 = SEEQ_CFG1_MULTICAST;
    793       1.1     bjh21 	else
    794      1.10     bjh21 		sc->sc_config1 = SEEQ_CFG1_BROADCAST;
    795      1.10     bjh21 	sc->sc_config1 |= SEEQ_CFG1_STATION_ADDR0;
    796      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_CONFIG1, sc->sc_config1);
    797       1.3     bjh21 
    798       1.3     bjh21 	/* Setup the Rx pointers */
    799      1.11     bjh21 	sc->sc_rx_ptr = sc->sc_tx_bufsize;
    800       1.3     bjh21 
    801      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_RX_PTR, sc->sc_rx_ptr);
    802      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_RX_END, sc->sc_rx_ptr >> 8);
    803       1.3     bjh21 
    804       1.3     bjh21 
    805       1.3     bjh21 	/* Place a NULL header at the beginning of the receive area */
    806       1.3     bjh21 	ea_writebuf(sc, NULL, sc->sc_rx_ptr, 0);
    807      1.37     perry 
    808      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_BUFWIN, 0x0000);
    809      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_BUFWIN, 0x0000);
    810       1.1     bjh21 
    811       1.3     bjh21 
    812       1.1     bjh21 	/* Configure TX. */
    813      1.16     bjh21 	DPRINTF(SEEQ_DEBUG_MISC, ("Configuring tx...\n"));
    814       1.1     bjh21 
    815      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_TX_PTR, 0x0000);
    816       1.1     bjh21 
    817      1.10     bjh21 	sc->sc_config2 |= SEEQ_CFG2_OUTPUT;
    818      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_CONFIG2, sc->sc_config2);
    819       1.1     bjh21 
    820      1.11     bjh21 	/* Reset tx buffer pointers */
    821      1.11     bjh21 	sc->sc_tx_cur = 0;
    822      1.11     bjh21 	sc->sc_tx_used = 0;
    823      1.11     bjh21 	sc->sc_tx_next = 0;
    824       1.1     bjh21 
    825       1.1     bjh21 	/* Place a NULL header at the beginning of the transmit area */
    826       1.1     bjh21 	ea_writebuf(sc, NULL, 0x0000, 0);
    827      1.37     perry 
    828      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_BUFWIN, 0x0000);
    829      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_BUFWIN, 0x0000);
    830       1.1     bjh21 
    831      1.10     bjh21 	sc->sc_command |= SEEQ_CMD_TX_INTEN;
    832      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_COMMAND, sc->sc_command);
    833       1.1     bjh21 
    834      1.11     bjh21 	/* Turn on Rx */
    835      1.11     bjh21 	sc->sc_command |= SEEQ_CMD_RX_INTEN;
    836      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_COMMAND,
    837      1.11     bjh21 			  sc->sc_command | SEEQ_CMD_RX_ON);
    838      1.11     bjh21 
    839      1.49     skrll 	/* TX_ON gets set by ea_txpacket when there's something to transmit. */
    840       1.1     bjh21 
    841       1.1     bjh21 
    842       1.1     bjh21 	/* Set flags appropriately. */
    843       1.1     bjh21 	ifp->if_flags |= IFF_RUNNING;
    844       1.1     bjh21 	ifp->if_flags &= ~IFF_OACTIVE;
    845      1.11     bjh21 	sc->sc_enabled = 1;
    846       1.1     bjh21 
    847       1.1     bjh21 	/* And start output. */
    848       1.1     bjh21 	ea_start(ifp);
    849       1.1     bjh21 
    850       1.1     bjh21 	splx(s);
    851       1.1     bjh21 	return 0;
    852       1.1     bjh21 }
    853       1.1     bjh21 
    854       1.1     bjh21 /*
    855       1.1     bjh21  * Start output on interface. Get datagrams from the queue and output them,
    856       1.1     bjh21  * giving the receiver a chance between datagrams. Call only from splnet or
    857       1.1     bjh21  * interrupt level!
    858       1.1     bjh21  */
    859       1.1     bjh21 
    860       1.1     bjh21 static void
    861       1.1     bjh21 ea_start(struct ifnet *ifp)
    862       1.1     bjh21 {
    863       1.1     bjh21 	struct seeq8005_softc *sc = ifp->if_softc;
    864       1.1     bjh21 	int s;
    865       1.1     bjh21 
    866       1.1     bjh21 	s = splnet();
    867      1.16     bjh21 	DPRINTF(SEEQ_DEBUG_TX, ("ea_start()...\n"));
    868       1.1     bjh21 
    869      1.14     bjh21 	/*
    870      1.14     bjh21 	 * Don't do anything if output is active.  seeq8005intr() will call
    871      1.49     skrll 	 * us (actually ea_txpacket()) back when the card's ready for more
    872      1.14     bjh21 	 * frames.
    873      1.14     bjh21 	 */
    874      1.54  christos 	if (ifp->if_flags & IFF_OACTIVE) {
    875      1.54  christos 		splx(s);
    876       1.1     bjh21 		return;
    877      1.54  christos 	}
    878       1.1     bjh21 
    879       1.1     bjh21 	/* Mark interface as output active */
    880      1.37     perry 
    881       1.1     bjh21 	ifp->if_flags |= IFF_OACTIVE;
    882       1.1     bjh21 
    883       1.1     bjh21 	/* tx packets */
    884       1.1     bjh21 
    885      1.49     skrll 	ea_txpacket(sc);
    886       1.1     bjh21 	splx(s);
    887       1.1     bjh21 }
    888       1.1     bjh21 
    889       1.1     bjh21 
    890       1.1     bjh21 /*
    891       1.1     bjh21  * Transfer a packet to the interface buffer and start transmission
    892       1.1     bjh21  *
    893       1.1     bjh21  * Called at splnet()
    894       1.1     bjh21  */
    895      1.37     perry 
    896      1.48  christos static void
    897      1.49     skrll ea_txpacket(struct seeq8005_softc *sc)
    898       1.1     bjh21 {
    899       1.1     bjh21 	bus_space_tag_t iot = sc->sc_iot;
    900       1.1     bjh21 	bus_space_handle_t ioh = sc->sc_ioh;
    901      1.12     bjh21 	struct mbuf *m0;
    902       1.1     bjh21 	struct ifnet *ifp;
    903       1.1     bjh21 
    904       1.1     bjh21 	ifp = &sc->sc_ethercom.ec_if;
    905       1.1     bjh21 
    906       1.1     bjh21 	/* Dequeue the next packet. */
    907       1.7   thorpej 	IFQ_DEQUEUE(&ifp->if_snd, m0);
    908       1.1     bjh21 
    909       1.1     bjh21 	/* If there's nothing to send, return. */
    910      1.51     skrll 	if (m0 == NULL) {
    911       1.1     bjh21 		ifp->if_flags &= ~IFF_OACTIVE;
    912      1.10     bjh21 		sc->sc_config2 |= SEEQ_CFG2_OUTPUT;
    913      1.24     bjh21 		SEEQ_WRITE16(sc, iot, ioh, SEEQ_CONFIG2, sc->sc_config2);
    914      1.16     bjh21 		DPRINTF(SEEQ_DEBUG_TX, ("tx finished\n"));
    915       1.1     bjh21 		return;
    916       1.1     bjh21 	}
    917       1.1     bjh21 
    918       1.1     bjh21 	/* Give the packet to the bpf, if any. */
    919      1.59   msaitoh 	bpf_mtap(ifp, m0, BPF_D_OUT);
    920       1.1     bjh21 
    921      1.16     bjh21 	DPRINTF(SEEQ_DEBUG_TX, ("Tx new packet\n"));
    922       1.1     bjh21 
    923      1.10     bjh21 	sc->sc_config2 &= ~SEEQ_CFG2_OUTPUT;
    924      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_CONFIG2, sc->sc_config2);
    925       1.1     bjh21 
    926      1.12     bjh21 	ea_writembuf(sc, m0, 0x0000);
    927      1.12     bjh21 	m_freem(m0);
    928      1.12     bjh21 
    929      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_TX_PTR, 0x0000);
    930      1.12     bjh21 
    931      1.12     bjh21 	/* Now transmit the datagram. */
    932      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_COMMAND,
    933      1.12     bjh21 			  sc->sc_command | SEEQ_CMD_TX_ON);
    934      1.15     bjh21 
    935      1.15     bjh21 	/* Make sure we notice if the chip goes silent on us. */
    936      1.15     bjh21 	ifp->if_timer = 5;
    937      1.15     bjh21 
    938      1.16     bjh21 	DPRINTF(SEEQ_DEBUG_TX,
    939      1.24     bjh21 	    ("st=%04x\n", SEEQ_READ16(sc, iot, ioh, SEEQ_STATUS)));
    940      1.16     bjh21 	DPRINTF(SEEQ_DEBUG_TX, ("tx: queued\n"));
    941      1.12     bjh21 }
    942      1.12     bjh21 
    943      1.12     bjh21 /*
    944      1.12     bjh21  * Copy a packet from an mbuf to the transmit buffer on the card.
    945      1.12     bjh21  *
    946      1.12     bjh21  * Puts a valid Tx header at the start of the packet, and a null header at
    947      1.12     bjh21  * the end.
    948      1.12     bjh21  */
    949      1.12     bjh21 static int
    950      1.12     bjh21 ea_writembuf(struct seeq8005_softc *sc, struct mbuf *m0, int bufstart)
    951      1.12     bjh21 {
    952      1.12     bjh21 	struct mbuf *m;
    953      1.12     bjh21 	int len, nextpacket;
    954  1.59.2.1  christos 	uint8_t hdr[4];
    955      1.12     bjh21 
    956       1.1     bjh21 	/*
    957      1.12     bjh21 	 * Copy the datagram to the packet buffer.
    958       1.1     bjh21 	 */
    959       1.1     bjh21 	len = 0;
    960       1.1     bjh21 	for (m = m0; m; m = m->m_next) {
    961       1.1     bjh21 		if (m->m_len == 0)
    962       1.1     bjh21 			continue;
    963      1.34     bjh21 		ea_writebuf(sc, mtod(m, u_char *), bufstart + 4 + len,
    964      1.22     bjh21 		    m->m_len);
    965       1.1     bjh21 		len += m->m_len;
    966       1.1     bjh21 	}
    967       1.1     bjh21 
    968      1.35    bouyer 	if (len < ETHER_MIN_LEN) {
    969      1.35    bouyer 		ea_writebuf(sc, padbuf, bufstart + 4 + len,
    970      1.35    bouyer 		    ETHER_MIN_LEN - len);
    971      1.35    bouyer 		len = ETHER_MIN_LEN;
    972      1.35    bouyer 	}
    973       1.1     bjh21 
    974       1.1     bjh21 	/* Follow it with a NULL packet header */
    975      1.22     bjh21 	memset(hdr, 0, 4);
    976      1.22     bjh21 	ea_writebuf(sc, hdr, bufstart + 4 + len, 4);
    977       1.1     bjh21 
    978      1.12     bjh21 	/* Ok we now have a packet len bytes long in our packet buffer */
    979      1.16     bjh21 	DPRINTF(SEEQ_DEBUG_TX, ("ea_writembuf: length=%d\n", len));
    980       1.1     bjh21 
    981       1.1     bjh21 	/* Write the packet header */
    982      1.51     skrll 	nextpacket = bufstart + len + 4;
    983       1.1     bjh21 	hdr[0] = (nextpacket >> 8) & 0xff;
    984       1.1     bjh21 	hdr[1] = nextpacket & 0xff;
    985      1.10     bjh21 	hdr[2] = SEEQ_PKTCMD_TX | SEEQ_PKTCMD_DATA_FOLLOWS |
    986      1.10     bjh21 		SEEQ_TXCMD_XMIT_SUCCESS_INT | SEEQ_TXCMD_COLLISION_INT;
    987      1.48  christos 	hdr[3] = 0; /* Status byte -- will be updated by hardware. */
    988      1.51     skrll 	ea_writebuf(sc, hdr, bufstart, 4);
    989       1.1     bjh21 
    990      1.12     bjh21 	return len;
    991       1.1     bjh21 }
    992       1.1     bjh21 
    993       1.1     bjh21 /*
    994       1.1     bjh21  * Ethernet controller interrupt.
    995       1.1     bjh21  */
    996       1.1     bjh21 
    997       1.1     bjh21 int
    998       1.1     bjh21 seeq8005intr(void *arg)
    999       1.1     bjh21 {
   1000       1.1     bjh21 	struct seeq8005_softc *sc = arg;
   1001       1.1     bjh21 	bus_space_tag_t iot = sc->sc_iot;
   1002       1.1     bjh21 	bus_space_handle_t ioh = sc->sc_ioh;
   1003      1.11     bjh21 	int status, handled;
   1004       1.1     bjh21 
   1005       1.1     bjh21 	handled = 0;
   1006       1.1     bjh21 
   1007       1.1     bjh21 	/* Get the controller status */
   1008      1.24     bjh21 	status = SEEQ_READ16(sc, iot, ioh, SEEQ_STATUS);
   1009       1.1     bjh21 
   1010       1.1     bjh21 	/* Tx interrupt ? */
   1011      1.10     bjh21 	if (status & SEEQ_STATUS_TX_INT) {
   1012       1.1     bjh21 		handled = 1;
   1013       1.1     bjh21 
   1014       1.1     bjh21 		/* Acknowledge the interrupt */
   1015      1.24     bjh21 		SEEQ_WRITE16(sc, iot, ioh, SEEQ_COMMAND,
   1016      1.10     bjh21 				  sc->sc_command | SEEQ_CMD_TX_INTACK);
   1017       1.1     bjh21 
   1018      1.20     bjh21 		ea_txint(sc);
   1019       1.1     bjh21 	}
   1020       1.1     bjh21 
   1021       1.1     bjh21 
   1022       1.1     bjh21 	/* Rx interrupt ? */
   1023      1.10     bjh21 	if (status & SEEQ_STATUS_RX_INT) {
   1024       1.1     bjh21 		handled = 1;
   1025       1.1     bjh21 
   1026       1.1     bjh21 		/* Acknowledge the interrupt */
   1027      1.24     bjh21 		SEEQ_WRITE16(sc, iot, ioh, SEEQ_COMMAND,
   1028      1.10     bjh21 				  sc->sc_command | SEEQ_CMD_RX_INTACK);
   1029       1.1     bjh21 
   1030       1.1     bjh21 		/* Processes the received packets */
   1031      1.20     bjh21 		ea_rxint(sc);
   1032      1.20     bjh21 	}
   1033       1.1     bjh21 
   1034      1.30     bjh21 	if (handled)
   1035      1.30     bjh21 		rnd_add_uint32(&sc->rnd_source, status);
   1036      1.46       tls 
   1037      1.20     bjh21 	return handled;
   1038      1.20     bjh21 }
   1039       1.1     bjh21 
   1040      1.20     bjh21 static void
   1041      1.20     bjh21 ea_txint(struct seeq8005_softc *sc)
   1042      1.20     bjh21 {
   1043      1.20     bjh21 	struct ifnet *ifp = &sc->sc_ethercom.ec_if;
   1044      1.20     bjh21 	bus_space_tag_t iot = sc->sc_iot;
   1045      1.20     bjh21 	bus_space_handle_t ioh = sc->sc_ioh;
   1046  1.59.2.1  christos 	uint8_t txhdr[4];
   1047      1.20     bjh21 	u_int txstatus;
   1048      1.20     bjh21 
   1049      1.20     bjh21 	ea_readbuf(sc, txhdr, 0x0000, 4);
   1050      1.20     bjh21 
   1051      1.20     bjh21 	DPRINTF(SEEQ_DEBUG_TX, ("txstatus=%02x %02x %02x %02x\n",
   1052      1.20     bjh21 	    txhdr[0], txhdr[1], txhdr[2], txhdr[3]));
   1053      1.20     bjh21 	txstatus = txhdr[3];
   1054      1.20     bjh21 
   1055      1.20     bjh21 	/*
   1056      1.20     bjh21 	 * If SEEQ_TXSTAT_COLLISION is set then we received at least
   1057      1.20     bjh21 	 * one collision. On the 8004 we can find out exactly how many
   1058      1.20     bjh21 	 * collisions occurred.
   1059      1.20     bjh21 	 *
   1060      1.20     bjh21 	 * The SEEQ_PKTSTAT_DONE will be set if the transmission has
   1061      1.20     bjh21 	 * completed.
   1062      1.20     bjh21 	 *
   1063      1.20     bjh21 	 * If SEEQ_TXSTAT_COLLISION16 is set then 16 collisions
   1064      1.20     bjh21 	 * occurred and the packet transmission was aborted.
   1065      1.20     bjh21 	 * This situation is untested as present.
   1066      1.20     bjh21 	 *
   1067      1.27     bjh21 	 * The SEEQ_TXSTAT_BABBLE is untested as it should only be set
   1068      1.27     bjh21 	 * when we deliberately transmit oversized packets (e.g. for
   1069      1.27     bjh21 	 * 802.1Q).
   1070      1.20     bjh21 	 */
   1071      1.20     bjh21 	if (txstatus & SEEQ_TXSTAT_COLLISION) {
   1072      1.20     bjh21 		switch (sc->sc_variant) {
   1073      1.20     bjh21 		case SEEQ_8004: {
   1074      1.20     bjh21 			int colls;
   1075      1.20     bjh21 
   1076      1.20     bjh21 			/*
   1077      1.20     bjh21 			 * The 8004 contains a 4 bit collision count
   1078      1.20     bjh21 			 * in the status register.
   1079      1.20     bjh21 			 */
   1080  1.59.2.2    martin #if 0
   1081      1.20     bjh21 			/* This appears to be broken on 80C04.AE */
   1082  1.59.2.2    martin 			if_statadd(ifp, if_collisions,
   1083      1.20     bjh21 			    (txstatus >> SEEQ_TXSTAT_COLLISIONS_SHIFT)
   1084  1.59.2.2    martin 			    & SEEQ_TXSTAT_COLLISION_MASK;
   1085  1.59.2.2    martin #endif
   1086      1.37     perry 
   1087      1.20     bjh21 			/* Use the TX Collision register */
   1088      1.20     bjh21 			ea_select_buffer(sc, SEEQ_BUFCODE_TX_COLLS);
   1089      1.20     bjh21 			colls = bus_space_read_1(iot, ioh, SEEQ_BUFWIN);
   1090  1.59.2.2    martin 			if_statadd(ifp, if_collisions, colls);
   1091      1.20     bjh21 			break;
   1092       1.1     bjh21 		}
   1093      1.20     bjh21 		case SEEQ_8005:
   1094      1.20     bjh21 			/* We known there was at least 1 collision */
   1095  1.59.2.2    martin 			if_statinc(ifp, if_collisions);
   1096      1.20     bjh21 			break;
   1097      1.20     bjh21 		}
   1098      1.20     bjh21 	} else if (txstatus & SEEQ_TXSTAT_COLLISION16) {
   1099      1.20     bjh21 		printf("seeq_intr: col16 %x\n", txstatus);
   1100  1.59.2.2    martin 		if_statadd2(ifp, if_collisions, 16, if_oerrors, 1);
   1101       1.1     bjh21 	}
   1102       1.1     bjh21 
   1103      1.20     bjh21 	/* Have we completed transmission on the packet ? */
   1104      1.20     bjh21 	if (txstatus & SEEQ_PKTSTAT_DONE) {
   1105      1.20     bjh21 		/* Clear watchdog timer. */
   1106      1.20     bjh21 		ifp->if_timer = 0;
   1107      1.20     bjh21 		ifp->if_flags &= ~IFF_OACTIVE;
   1108      1.20     bjh21 
   1109      1.20     bjh21 		/* Update stats */
   1110  1.59.2.2    martin 		if_statinc(ifp, if_opackets);
   1111      1.20     bjh21 
   1112      1.20     bjh21 		/* Tx next packet */
   1113      1.20     bjh21 
   1114      1.49     skrll 		ea_txpacket(sc);
   1115      1.20     bjh21 	}
   1116       1.1     bjh21 }
   1117       1.1     bjh21 
   1118      1.48  christos static void
   1119      1.20     bjh21 ea_rxint(struct seeq8005_softc *sc)
   1120       1.1     bjh21 {
   1121       1.1     bjh21 	bus_space_tag_t iot = sc->sc_iot;
   1122       1.1     bjh21 	bus_space_handle_t ioh = sc->sc_ioh;
   1123       1.1     bjh21 	u_int addr;
   1124       1.1     bjh21 	int len;
   1125       1.1     bjh21 	int ctrl;
   1126       1.1     bjh21 	int ptr;
   1127       1.1     bjh21 	int status;
   1128  1.59.2.1  christos 	uint8_t rxhdr[4];
   1129       1.1     bjh21 	struct ifnet *ifp;
   1130       1.1     bjh21 
   1131       1.1     bjh21 	ifp = &sc->sc_ethercom.ec_if;
   1132       1.1     bjh21 
   1133       1.1     bjh21 
   1134       1.1     bjh21 	/* We start from the last rx pointer position */
   1135       1.1     bjh21 	addr = sc->sc_rx_ptr;
   1136      1.10     bjh21 	sc->sc_config2 &= ~SEEQ_CFG2_OUTPUT;
   1137      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_CONFIG2, sc->sc_config2);
   1138       1.1     bjh21 
   1139       1.1     bjh21 	do {
   1140       1.1     bjh21 		/* Read rx header */
   1141       1.1     bjh21 		ea_readbuf(sc, rxhdr, addr, 4);
   1142      1.37     perry 
   1143       1.1     bjh21 		/* Split the packet header */
   1144       1.1     bjh21 		ptr = (rxhdr[0] << 8) | rxhdr[1];
   1145       1.1     bjh21 		ctrl = rxhdr[2];
   1146       1.1     bjh21 		status = rxhdr[3];
   1147       1.1     bjh21 
   1148      1.16     bjh21 		DPRINTF(SEEQ_DEBUG_RX,
   1149      1.16     bjh21 		    ("addr=%04x ptr=%04x ctrl=%02x status=%02x\n",
   1150      1.16     bjh21 			addr, ptr, ctrl, status));
   1151       1.1     bjh21 
   1152       1.1     bjh21 		/* Zero packet ptr ? then must be null header so exit */
   1153       1.1     bjh21 		if (ptr == 0) break;
   1154       1.1     bjh21 
   1155      1.15     bjh21 		/* Sanity-check the next-packet pointer and flags. */
   1156      1.15     bjh21 		if (__predict_false(ptr < sc->sc_tx_bufsize ||
   1157      1.15     bjh21 		    (ctrl & SEEQ_PKTCMD_TX))) {
   1158  1.59.2.2    martin 			if_statinc(ifp, if_ierrors);
   1159      1.15     bjh21 			log(LOG_ERR,
   1160      1.15     bjh21 			    "%s: Rx chain corrupt at %04x (ptr = %04x)\n",
   1161      1.50     skrll 			    device_xname(sc->sc_dev), addr, ptr);
   1162      1.15     bjh21 			ea_init(ifp);
   1163      1.15     bjh21 			return;
   1164      1.15     bjh21 		}
   1165       1.1     bjh21 
   1166       1.1     bjh21 		/* Get packet length */
   1167      1.48  christos 		len = (ptr - addr) - 4;
   1168       1.1     bjh21 
   1169       1.1     bjh21 		if (len < 0)
   1170      1.11     bjh21 			len += sc->sc_rx_bufsize;
   1171      1.16     bjh21 		DPRINTF(SEEQ_DEBUG_RX, ("len=%04x\n", len));
   1172       1.1     bjh21 
   1173       1.1     bjh21 		/* Has the packet rx completed ? if not then exit */
   1174      1.10     bjh21 		if ((status & SEEQ_PKTSTAT_DONE) == 0)
   1175       1.1     bjh21 			break;
   1176       1.1     bjh21 
   1177       1.1     bjh21 		/*
   1178       1.1     bjh21 		 * Did we have any errors? then note error and go to
   1179       1.1     bjh21 		 * next packet
   1180       1.1     bjh21 		 */
   1181      1.27     bjh21 		if (__predict_false(status &
   1182      1.27     bjh21 			(SEEQ_RXSTAT_CRC_ERROR | SEEQ_RXSTAT_DRIBBLE_ERROR |
   1183      1.27     bjh21 			 SEEQ_RXSTAT_SHORT_FRAME))) {
   1184  1.59.2.2    martin 			if_statinc(ifp, if_ierrors);
   1185       1.1     bjh21 			log(LOG_WARNING,
   1186      1.17     bjh21 			    "%s: rx packet error at %04x (err=%02x)\n",
   1187      1.50     skrll 			    device_xname(sc->sc_dev), addr, status & 0x0f);
   1188      1.19     bjh21 			/* XXX shouldn't need to reset if it's genuine. */
   1189      1.19     bjh21 			ea_init(ifp);
   1190      1.19     bjh21 			return;
   1191       1.1     bjh21 		}
   1192       1.1     bjh21 		/*
   1193      1.27     bjh21 		 * Is the packet too big?  We allow slightly oversize packets
   1194      1.27     bjh21 		 * for vlan(4) and tcpdump purposes, but the rest of the world
   1195      1.27     bjh21 		 * wants incoming packets in a single mbuf cluster.
   1196       1.1     bjh21 		 */
   1197      1.27     bjh21 		if (__predict_false(len > MCLBYTES)) {
   1198  1.59.2.2    martin 			if_statinc(ifp, if_ierrors);
   1199      1.17     bjh21 			log(LOG_ERR,
   1200      1.17     bjh21 			    "%s: rx packet size error at %04x (len=%d)\n",
   1201      1.50     skrll 			    device_xname(sc->sc_dev), addr, len);
   1202       1.5     bjh21 			ea_init(ifp);
   1203       1.1     bjh21 			return;
   1204       1.1     bjh21 		}
   1205       1.1     bjh21 
   1206       1.1     bjh21 		/* Pass data up to upper levels. */
   1207      1.11     bjh21 		ea_read(sc, addr + 4, len);
   1208       1.1     bjh21 
   1209       1.1     bjh21 		addr = ptr;
   1210       1.1     bjh21 	} while (len != 0);
   1211       1.1     bjh21 
   1212      1.10     bjh21 	sc->sc_config2 |= SEEQ_CFG2_OUTPUT;
   1213      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_CONFIG2, sc->sc_config2);
   1214       1.1     bjh21 
   1215      1.16     bjh21 	DPRINTF(SEEQ_DEBUG_RX, ("new rx ptr=%04x\n", addr));
   1216       1.1     bjh21 
   1217       1.1     bjh21 	/* Store new rx pointer */
   1218       1.1     bjh21 	sc->sc_rx_ptr = addr;
   1219      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_RX_END, sc->sc_rx_ptr >> 8);
   1220       1.1     bjh21 
   1221       1.1     bjh21 	/* Make sure the receiver is on */
   1222      1.24     bjh21 	SEEQ_WRITE16(sc, iot, ioh, SEEQ_COMMAND,
   1223      1.10     bjh21 			  sc->sc_command | SEEQ_CMD_RX_ON);
   1224       1.1     bjh21 }
   1225       1.1     bjh21 
   1226       1.1     bjh21 
   1227       1.1     bjh21 /*
   1228       1.1     bjh21  * Pass a packet up to the higher levels.
   1229       1.1     bjh21  */
   1230       1.1     bjh21 
   1231       1.1     bjh21 static void
   1232      1.11     bjh21 ea_read(struct seeq8005_softc *sc, int addr, int len)
   1233       1.1     bjh21 {
   1234       1.1     bjh21 	struct mbuf *m;
   1235       1.1     bjh21 	struct ifnet *ifp;
   1236       1.1     bjh21 
   1237       1.1     bjh21 	ifp = &sc->sc_ethercom.ec_if;
   1238       1.1     bjh21 
   1239       1.1     bjh21 	/* Pull packet off interface. */
   1240      1.11     bjh21 	m = ea_get(sc, addr, len, ifp);
   1241      1.48  christos 	if (m == NULL)
   1242       1.1     bjh21 		return;
   1243       1.1     bjh21 
   1244      1.55     ozaki 	if_percpuq_enqueue(ifp->if_percpuq, m);
   1245       1.1     bjh21 }
   1246       1.1     bjh21 
   1247       1.1     bjh21 /*
   1248       1.1     bjh21  * Pull read data off a interface.  Len is length of data, with local net
   1249       1.1     bjh21  * header stripped.  We copy the data into mbufs.  When full cluster sized
   1250       1.1     bjh21  * units are present we copy into clusters.
   1251       1.1     bjh21  */
   1252       1.1     bjh21 
   1253       1.1     bjh21 struct mbuf *
   1254      1.11     bjh21 ea_get(struct seeq8005_softc *sc, int addr, int totlen, struct ifnet *ifp)
   1255       1.1     bjh21 {
   1256  1.59.2.1  christos 	struct mbuf *top, **mp, *m;
   1257  1.59.2.1  christos 	int len;
   1258  1.59.2.1  christos 	u_int cp, epkt;
   1259  1.59.2.1  christos 
   1260  1.59.2.1  christos 	cp = addr;
   1261  1.59.2.1  christos 	epkt = cp + totlen;
   1262  1.59.2.1  christos 
   1263  1.59.2.1  christos 	MGETHDR(m, M_DONTWAIT, MT_DATA);
   1264  1.59.2.1  christos 	if (m == NULL)
   1265  1.59.2.1  christos 		return NULL;
   1266  1.59.2.1  christos 	m_set_rcvif(m, ifp);
   1267  1.59.2.1  christos 	m->m_pkthdr.len = totlen;
   1268  1.59.2.1  christos 	m->m_len = MHLEN;
   1269  1.59.2.1  christos 	top = NULL;
   1270  1.59.2.1  christos 	mp = &top;
   1271  1.59.2.1  christos 
   1272  1.59.2.1  christos 	while (totlen > 0) {
   1273  1.59.2.1  christos 		if (top) {
   1274  1.59.2.1  christos 			MGET(m, M_DONTWAIT, MT_DATA);
   1275  1.59.2.1  christos 			if (m == NULL) {
   1276  1.59.2.1  christos 				m_freem(top);
   1277  1.59.2.1  christos 				return NULL;
   1278  1.59.2.1  christos 			}
   1279  1.59.2.1  christos 			m->m_len = MLEN;
   1280  1.59.2.1  christos 		}
   1281  1.59.2.1  christos 		len = uimin(totlen, epkt - cp);
   1282  1.59.2.1  christos 		if (len >= MINCLSIZE) {
   1283  1.59.2.1  christos 			MCLGET(m, M_DONTWAIT);
   1284  1.59.2.1  christos 			if (m->m_flags & M_EXT)
   1285  1.59.2.1  christos 				m->m_len = len = uimin(len, MCLBYTES);
   1286  1.59.2.1  christos 			else
   1287  1.59.2.1  christos 				len = m->m_len;
   1288  1.59.2.1  christos 		} else {
   1289  1.59.2.1  christos 			/*
   1290  1.59.2.1  christos 			 * Place initial small packet/header at end of mbuf.
   1291  1.59.2.1  christos 			 */
   1292  1.59.2.1  christos 			if (len < m->m_len) {
   1293  1.59.2.1  christos 				if (top == NULL && len + max_linkhdr <= m->m_len)
   1294  1.59.2.1  christos 					m->m_data += max_linkhdr;
   1295  1.59.2.1  christos 				m->m_len = len;
   1296  1.59.2.1  christos 			} else
   1297  1.59.2.1  christos 				len = m->m_len;
   1298  1.59.2.1  christos 		}
   1299      1.48  christos 		if (top == NULL) {
   1300       1.1     bjh21 			/* Make sure the payload is aligned */
   1301      1.40        he 			char *newdata = (char *)
   1302  1.59.2.1  christos 			    ALIGN((char*)m->m_data +
   1303      1.40        he 				sizeof(struct ether_header)) -
   1304       1.1     bjh21 			    sizeof(struct ether_header);
   1305       1.1     bjh21 			len -= newdata - m->m_data;
   1306       1.1     bjh21 			m->m_len = len;
   1307       1.1     bjh21 			m->m_data = newdata;
   1308       1.1     bjh21 		}
   1309  1.59.2.1  christos 		ea_readbuf(sc, mtod(m, u_char *),
   1310      1.11     bjh21 		    cp < SEEQ_MAX_BUFFER_SIZE ? cp : cp - sc->sc_rx_bufsize,
   1311      1.11     bjh21 		    len);
   1312  1.59.2.1  christos 		cp += len;
   1313  1.59.2.1  christos 		*mp = m;
   1314  1.59.2.1  christos 		mp = &m->m_next;
   1315  1.59.2.1  christos 		totlen -= len;
   1316  1.59.2.1  christos 		if (cp == epkt)
   1317  1.59.2.1  christos 			cp = addr;
   1318  1.59.2.1  christos 	}
   1319       1.1     bjh21 
   1320  1.59.2.1  christos 	return top;
   1321       1.1     bjh21 }
   1322       1.1     bjh21 
   1323       1.1     bjh21 /*
   1324       1.3     bjh21  * Process an ioctl request.  Mostly boilerplate.
   1325       1.1     bjh21  */
   1326       1.1     bjh21 static int
   1327      1.39  christos ea_ioctl(struct ifnet *ifp, u_long cmd, void *data)
   1328       1.1     bjh21 {
   1329       1.1     bjh21 	struct seeq8005_softc *sc = ifp->if_softc;
   1330       1.1     bjh21 	int s, error = 0;
   1331       1.1     bjh21 
   1332       1.1     bjh21 	s = splnet();
   1333       1.1     bjh21 	switch (cmd) {
   1334       1.1     bjh21 
   1335       1.5     bjh21 	default:
   1336       1.5     bjh21 		error = ether_ioctl(ifp, cmd, data);
   1337       1.5     bjh21 		if (error == ENETRESET) {
   1338       1.1     bjh21 			/*
   1339       1.5     bjh21 			 * Multicast list has changed; set the hardware filter
   1340       1.5     bjh21 			 * accordingly.
   1341       1.1     bjh21 			 */
   1342      1.36   thorpej 			if (ifp->if_flags & IFF_RUNNING)
   1343      1.36   thorpej 				ea_mc_reset(sc);
   1344       1.5     bjh21 			error = 0;
   1345       1.1     bjh21 		}
   1346       1.1     bjh21 		break;
   1347       1.1     bjh21 	}
   1348       1.1     bjh21 
   1349       1.1     bjh21 	splx(s);
   1350       1.1     bjh21 	return error;
   1351       1.1     bjh21 }
   1352       1.1     bjh21 
   1353       1.5     bjh21 /* Must be called at splnet() */
   1354      1.11     bjh21 
   1355       1.5     bjh21 static void
   1356       1.5     bjh21 ea_mc_reset(struct seeq8005_softc *sc)
   1357       1.5     bjh21 {
   1358      1.11     bjh21 
   1359      1.11     bjh21 	switch (sc->sc_variant) {
   1360      1.11     bjh21 	case SEEQ_8004:
   1361      1.11     bjh21 		ea_mc_reset_8004(sc);
   1362      1.11     bjh21 		return;
   1363      1.11     bjh21 	case SEEQ_8005:
   1364      1.11     bjh21 		ea_mc_reset_8005(sc);
   1365      1.11     bjh21 		return;
   1366      1.11     bjh21 	}
   1367      1.11     bjh21 }
   1368      1.11     bjh21 
   1369      1.11     bjh21 static void
   1370      1.11     bjh21 ea_mc_reset_8004(struct seeq8005_softc *sc)
   1371      1.11     bjh21 {
   1372      1.11     bjh21 	struct ethercom *ec = &sc->sc_ethercom;
   1373      1.11     bjh21 	struct ifnet *ifp = &ec->ec_if;
   1374      1.11     bjh21 	struct ether_multi *enm;
   1375  1.59.2.1  christos 	uint32_t crc;
   1376  1.59.2.1  christos 	int i;
   1377  1.59.2.1  christos 	struct ether_multistep step;
   1378  1.59.2.1  christos 	uint8_t af[8];
   1379      1.11     bjh21 
   1380      1.11     bjh21 	/*
   1381      1.11     bjh21 	 * Set up multicast address filter by passing all multicast addresses
   1382      1.11     bjh21 	 * through a crc generator, and then using bits 2 - 7 as an index
   1383      1.11     bjh21 	 * into the 64 bit logical address filter.  The high order bits
   1384      1.11     bjh21 	 * selects the word, while the rest of the bits select the bit within
   1385      1.11     bjh21 	 * the word.
   1386      1.11     bjh21 	 */
   1387      1.11     bjh21 
   1388      1.11     bjh21 	if (ifp->if_flags & IFF_PROMISC) {
   1389      1.11     bjh21 		ifp->if_flags |= IFF_ALLMULTI;
   1390      1.11     bjh21 		for (i = 0; i < 8; i++)
   1391      1.11     bjh21 			af[i] = 0xff;
   1392      1.11     bjh21 		return;
   1393      1.11     bjh21 	}
   1394      1.11     bjh21 	for (i = 0; i < 8; i++)
   1395      1.11     bjh21 		af[i] = 0;
   1396  1.59.2.1  christos 
   1397  1.59.2.1  christos 	ETHER_LOCK(ec);
   1398      1.11     bjh21 	ETHER_FIRST_MULTI(step, ec, enm);
   1399      1.11     bjh21 	while (enm != NULL) {
   1400      1.28   thorpej 		if (memcmp(enm->enm_addrlo, enm->enm_addrhi,
   1401      1.11     bjh21 		    sizeof(enm->enm_addrlo)) != 0) {
   1402      1.11     bjh21 			/*
   1403      1.11     bjh21 			 * We must listen to a range of multicast addresses.
   1404      1.11     bjh21 			 * For now, just accept all multicasts, rather than
   1405      1.11     bjh21 			 * trying to set only those filter bits needed to match
   1406      1.11     bjh21 			 * the range.  (At this time, the only use of address
   1407      1.11     bjh21 			 * ranges is for IP multicast routing, for which the
   1408      1.11     bjh21 			 * range is big enough to require all bits set.)
   1409      1.11     bjh21 			 */
   1410      1.11     bjh21 			ifp->if_flags |= IFF_ALLMULTI;
   1411      1.11     bjh21 			for (i = 0; i < 8; i++)
   1412      1.11     bjh21 				af[i] = 0xff;
   1413      1.13     bjh21 			break;
   1414      1.11     bjh21 		}
   1415      1.26     bjh21 
   1416      1.26     bjh21 		crc = ether_crc32_be(enm->enm_addrlo, sizeof(enm->enm_addrlo));
   1417      1.26     bjh21 
   1418      1.11     bjh21 		/* Just want the 6 most significant bits. */
   1419      1.11     bjh21 		crc = (crc >> 2) & 0x3f;
   1420      1.11     bjh21 
   1421      1.11     bjh21 		/* Turn on the corresponding bit in the filter. */
   1422      1.11     bjh21 		af[crc >> 3] |= 1 << (crc & 0x7);
   1423      1.11     bjh21 
   1424      1.11     bjh21 		ETHER_NEXT_MULTI(step, enm);
   1425      1.11     bjh21 	}
   1426  1.59.2.1  christos 	ETHER_UNLOCK(ec);
   1427      1.11     bjh21 	ifp->if_flags &= ~IFF_ALLMULTI;
   1428      1.11     bjh21 
   1429      1.11     bjh21 	ea_select_buffer(sc, SEEQ_BUFCODE_MULTICAST);
   1430      1.11     bjh21 		for (i = 0; i < 8; ++i)
   1431      1.11     bjh21 			bus_space_write_1(sc->sc_iot, sc->sc_ioh,
   1432      1.11     bjh21 			    SEEQ_BUFWIN, af[i]);
   1433      1.11     bjh21 }
   1434      1.11     bjh21 
   1435      1.11     bjh21 static void
   1436      1.11     bjh21 ea_mc_reset_8005(struct seeq8005_softc *sc)
   1437      1.11     bjh21 {
   1438  1.59.2.1  christos 	struct ethercom *ec = &sc->sc_ethercom;
   1439       1.5     bjh21 	struct ether_multi *enm;
   1440       1.5     bjh21 	struct ether_multistep step;
   1441       1.5     bjh21 	int naddr, maxaddrs;
   1442       1.5     bjh21 
   1443       1.5     bjh21 	naddr = 0;
   1444      1.11     bjh21 	maxaddrs = 5;
   1445  1.59.2.1  christos 	ETHER_LOCK(ec);
   1446  1.59.2.1  christos 	ETHER_FIRST_MULTI(step, ec, enm);
   1447       1.5     bjh21 	while (enm != NULL) {
   1448       1.5     bjh21 		/* Have we got space? */
   1449       1.5     bjh21 		if (naddr >= maxaddrs ||
   1450      1.28   thorpej 		    memcmp(enm->enm_addrlo, enm->enm_addrhi, 6) != 0) {
   1451  1.59.2.1  christos 			ec->ec_if.if_flags |= IFF_ALLMULTI;
   1452  1.59.2.1  christos 			ETHER_UNLOCK(ec);
   1453  1.59.2.1  christos 			ea_ioctl(&ec->ec_if, SIOCSIFFLAGS, NULL);
   1454       1.5     bjh21 			return;
   1455       1.5     bjh21 		}
   1456      1.11     bjh21 		ea_set_address(sc, 1 + naddr, enm->enm_addrlo);
   1457      1.11     bjh21 		sc->sc_config1 |= SEEQ_CFG1_STATION_ADDR1 << naddr;
   1458       1.5     bjh21 		naddr++;
   1459       1.5     bjh21 		ETHER_NEXT_MULTI(step, enm);
   1460       1.5     bjh21 	}
   1461  1.59.2.1  christos 	ETHER_UNLOCK(ec);
   1462  1.59.2.1  christos 
   1463       1.5     bjh21 	for (; naddr < maxaddrs; naddr++)
   1464      1.11     bjh21 		sc->sc_config1 &= ~(SEEQ_CFG1_STATION_ADDR1 << naddr);
   1465      1.24     bjh21 	SEEQ_WRITE16(sc, sc->sc_iot, sc->sc_ioh, SEEQ_CONFIG1,
   1466       1.5     bjh21 			  sc->sc_config1);
   1467       1.5     bjh21 }
   1468       1.5     bjh21 
   1469       1.1     bjh21 /*
   1470       1.1     bjh21  * Device timeout routine.
   1471       1.1     bjh21  */
   1472       1.1     bjh21 
   1473       1.1     bjh21 static void
   1474       1.1     bjh21 ea_watchdog(struct ifnet *ifp)
   1475       1.1     bjh21 {
   1476       1.1     bjh21 	struct seeq8005_softc *sc = ifp->if_softc;
   1477       1.1     bjh21 
   1478      1.15     bjh21 	log(LOG_ERR, "%s: lost Tx interrupt (status = 0x%04x)\n",
   1479      1.50     skrll 	    device_xname(sc->sc_dev),
   1480      1.24     bjh21 	    SEEQ_READ16(sc, sc->sc_iot, sc->sc_ioh, SEEQ_STATUS));
   1481  1.59.2.2    martin 	if_statinc(ifp, if_oerrors);
   1482       1.1     bjh21 
   1483       1.1     bjh21 	/* Kick the interface */
   1484       1.1     bjh21 
   1485       1.5     bjh21 	ea_init(ifp);
   1486       1.1     bjh21 
   1487       1.1     bjh21 	ifp->if_timer = 0;
   1488       1.1     bjh21 }
   1489       1.1     bjh21 
   1490      1.48  christos /* End of seeq8005.c */
   1491