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if_de.c revision 1.32
      1  1.32     ragge /*	$NetBSD: if_de.c,v 1.32 2017/05/22 17:22:29 ragge Exp $	*/
      2   1.5     ragge 
      3   1.1     ragge /*
      4   1.1     ragge  * Copyright (c) 1982, 1986, 1989 Regents of the University of California.
      5  1.15       agc  * All rights reserved.
      6  1.15       agc  *
      7  1.15       agc  *
      8  1.15       agc  * Redistribution and use in source and binary forms, with or without
      9  1.15       agc  * modification, are permitted provided that the following conditions
     10  1.15       agc  * are met:
     11  1.15       agc  * 1. Redistributions of source code must retain the above copyright
     12  1.15       agc  *    notice, this list of conditions and the following disclaimer.
     13  1.15       agc  * 2. Redistributions in binary form must reproduce the above copyright
     14  1.15       agc  *    notice, this list of conditions and the following disclaimer in the
     15  1.15       agc  *    documentation and/or other materials provided with the distribution.
     16  1.15       agc  * 3. Neither the name of the University nor the names of its contributors
     17  1.15       agc  *    may be used to endorse or promote products derived from this software
     18  1.15       agc  *    without specific prior written permission.
     19  1.15       agc  *
     20  1.15       agc  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     21  1.15       agc  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     22  1.15       agc  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     23  1.15       agc  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     24  1.15       agc  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     25  1.15       agc  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     26  1.15       agc  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     27  1.15       agc  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     28  1.15       agc  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     29  1.15       agc  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     30  1.15       agc  * SUCH DAMAGE.
     31  1.15       agc  *
     32  1.15       agc  *	@(#)if_de.c	7.12 (Berkeley) 12/16/90
     33  1.15       agc  */
     34  1.15       agc 
     35  1.15       agc /*
     36   1.1     ragge  * Copyright (c) 2000 Ludd, University of Lule}, Sweden.
     37   1.1     ragge  * All rights reserved.
     38   1.1     ragge  *
     39   1.1     ragge  *
     40   1.1     ragge  * Redistribution and use in source and binary forms, with or without
     41   1.1     ragge  * modification, are permitted provided that the following conditions
     42   1.1     ragge  * are met:
     43   1.1     ragge  * 1. Redistributions of source code must retain the above copyright
     44   1.1     ragge  *    notice, this list of conditions and the following disclaimer.
     45   1.1     ragge  * 2. Redistributions in binary form must reproduce the above copyright
     46   1.1     ragge  *    notice, this list of conditions and the following disclaimer in the
     47   1.1     ragge  *    documentation and/or other materials provided with the distribution.
     48   1.1     ragge  *
     49   1.1     ragge  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     50   1.1     ragge  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     51   1.1     ragge  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     52   1.1     ragge  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     53   1.1     ragge  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     54   1.1     ragge  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     55   1.1     ragge  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     56   1.1     ragge  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     57   1.1     ragge  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     58   1.1     ragge  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     59   1.1     ragge  * SUCH DAMAGE.
     60   1.1     ragge  */
     61   1.1     ragge 
     62   1.1     ragge /*
     63   1.1     ragge  * DEC DEUNA interface
     64   1.1     ragge  *
     65   1.1     ragge  *	Lou Salkind
     66   1.1     ragge  *	New York University
     67   1.1     ragge  *
     68   1.2     ragge  *	Rewritten by Ragge 30 April 2000 to match new world.
     69   1.1     ragge  *
     70   1.1     ragge  * TODO:
     71   1.1     ragge  *	timeout routine (get statistics)
     72   1.1     ragge  */
     73  1.11     lukem 
     74  1.11     lukem #include <sys/cdefs.h>
     75  1.32     ragge __KERNEL_RCSID(0, "$NetBSD: if_de.c,v 1.32 2017/05/22 17:22:29 ragge Exp $");
     76   1.1     ragge 
     77   1.1     ragge #include "opt_inet.h"
     78   1.1     ragge 
     79   1.1     ragge #include <sys/param.h>
     80   1.1     ragge #include <sys/systm.h>
     81   1.1     ragge #include <sys/mbuf.h>
     82   1.1     ragge #include <sys/buf.h>
     83   1.1     ragge #include <sys/protosw.h>
     84   1.1     ragge #include <sys/socket.h>
     85   1.1     ragge #include <sys/ioctl.h>
     86   1.1     ragge #include <sys/errno.h>
     87   1.1     ragge #include <sys/syslog.h>
     88   1.1     ragge #include <sys/device.h>
     89   1.1     ragge 
     90   1.1     ragge #include <net/if.h>
     91   1.1     ragge #include <net/if_ether.h>
     92   1.1     ragge #include <net/if_dl.h>
     93   1.1     ragge 
     94   1.1     ragge #ifdef INET
     95   1.1     ragge #include <netinet/in.h>
     96   1.1     ragge #include <netinet/if_inarp.h>
     97   1.1     ragge #endif
     98   1.1     ragge 
     99   1.2     ragge #include <net/bpf.h>
    100   1.2     ragge #include <net/bpfdesc.h>
    101   1.1     ragge 
    102  1.22        ad #include <sys/bus.h>
    103   1.1     ragge 
    104   1.1     ragge #include <dev/qbus/ubavar.h>
    105   1.1     ragge #include <dev/qbus/if_dereg.h>
    106  1.10     ragge #include <dev/qbus/if_uba.h>
    107   1.1     ragge 
    108   1.1     ragge #include "ioconf.h"
    109   1.1     ragge 
    110   1.1     ragge /*
    111   1.1     ragge  * Be careful with transmit/receive buffers, each entry steals 4 map
    112   1.1     ragge  * registers, and there is only 496 on one unibus...
    113   1.1     ragge  */
    114  1.10     ragge #define NRCV	7	/* number of receive buffers (must be > 1) */
    115  1.10     ragge #define NXMT	3	/* number of transmit buffers */
    116   1.1     ragge 
    117   1.1     ragge /*
    118   1.1     ragge  * Structure containing the elements that must be in DMA-safe memory.
    119   1.1     ragge  */
    120   1.1     ragge struct	de_cdata {
    121   1.1     ragge 	/* the following structures are always mapped in */
    122   1.1     ragge 	struct	de_pcbb dc_pcbb;	/* port control block */
    123   1.1     ragge 	struct	de_ring dc_xrent[NXMT]; /* transmit ring entrys */
    124   1.1     ragge 	struct	de_ring dc_rrent[NRCV]; /* receive ring entrys */
    125   1.1     ragge 	struct	de_udbbuf dc_udbbuf;	/* UNIBUS data buffer */
    126   1.1     ragge 	/* end mapped area */
    127   1.1     ragge };
    128   1.1     ragge 
    129   1.1     ragge /*
    130   1.1     ragge  * Ethernet software status per interface.
    131   1.1     ragge  *
    132   1.1     ragge  * Each interface is referenced by a network interface structure,
    133   1.1     ragge  * ds_if, which the routing code uses to locate the interface.
    134   1.1     ragge  * This structure contains the output queue for the interface, its address, ...
    135   1.1     ragge  * We also have, for each interface, a UBA interface structure, which
    136   1.1     ragge  * contains information about the UNIBUS resources held by the interface:
    137   1.1     ragge  * map registers, buffered data paths, etc.  Information is cached in this
    138   1.1     ragge  * structure for use by the if_uba.c routines in running the interface
    139   1.1     ragge  * efficiently.
    140   1.1     ragge  */
    141   1.1     ragge struct	de_softc {
    142  1.23      matt 	device_t sc_dev;		/* Configuration common part */
    143  1.23      matt 	struct uba_softc *sc_uh;	/* our parent */
    144  1.23      matt 	struct evcnt sc_intrcnt;	/* Interrupt counting */
    145  1.23      matt 	struct ethercom sc_ec;		/* Ethernet common part */
    146   1.1     ragge #define sc_if	sc_ec.ec_if		/* network-visible interface */
    147   1.1     ragge 	bus_space_tag_t sc_iot;
    148   1.1     ragge 	bus_addr_t sc_ioh;
    149   1.1     ragge 	bus_dma_tag_t sc_dmat;
    150  1.23      matt 	int sc_flags;
    151  1.10     ragge #define	DSF_MAPPED	1
    152   1.9     ragge 	struct ubinfo sc_ui;
    153   1.1     ragge 	struct de_cdata *sc_dedata;	/* Control structure */
    154   1.1     ragge 	struct de_cdata *sc_pdedata;	/* Bus-mapped control structure */
    155  1.23      matt 	struct ifubinfo sc_ifuba;	/* UNIBUS resources */
    156  1.23      matt 	struct ifrw sc_ifr[NRCV];	/* UNIBUS receive buffer maps */
    157  1.23      matt 	struct ifxmt sc_ifw[NXMT];	/* UNIBUS receive buffer maps */
    158  1.23      matt 
    159  1.23      matt 	int sc_xindex;			/* UNA index into transmit chain */
    160  1.23      matt 	int sc_rindex;			/* UNA index into receive chain */
    161  1.23      matt 	int sc_xfree;			/* index for next transmit buffer */
    162  1.23      matt 	int sc_nxmit;			/* # of transmits in progress */
    163   1.2     ragge 	void *sc_sh;			/* shutdownhook cookie */
    164   1.1     ragge };
    165   1.1     ragge 
    166  1.23      matt static	int dematch(device_t, cfdata_t, void *);
    167  1.23      matt static	void deattach(device_t, device_t, void *);
    168  1.17     ragge static	void dewait(struct de_softc *, const char *);
    169  1.10     ragge static	int deinit(struct ifnet *);
    170  1.21  christos static	int deioctl(struct ifnet *, u_long, void *);
    171  1.27    cegger static	void dereset(device_t);
    172  1.10     ragge static	void destop(struct ifnet *, int);
    173   1.1     ragge static	void destart(struct ifnet *);
    174   1.1     ragge static	void derecv(struct de_softc *);
    175   1.1     ragge static	void deintr(void *);
    176   1.2     ragge static	void deshutdown(void *);
    177   1.1     ragge 
    178  1.23      matt CFATTACH_DECL_NEW(de, sizeof(struct de_softc),
    179  1.14   thorpej     dematch, deattach, NULL, NULL);
    180   1.1     ragge 
    181   1.1     ragge #define DE_WCSR(csr, val) \
    182   1.1     ragge 	bus_space_write_2(sc->sc_iot, sc->sc_ioh, csr, val)
    183   1.1     ragge #define DE_WLOW(val) \
    184   1.1     ragge 	bus_space_write_1(sc->sc_iot, sc->sc_ioh, DE_PCSR0, val)
    185   1.1     ragge #define DE_WHIGH(val) \
    186   1.1     ragge 	bus_space_write_1(sc->sc_iot, sc->sc_ioh, DE_PCSR0 + 1, val)
    187   1.1     ragge #define DE_RCSR(csr) \
    188   1.1     ragge 	bus_space_read_2(sc->sc_iot, sc->sc_ioh, csr)
    189   1.1     ragge 
    190   1.1     ragge #define LOWORD(x)	((int)(x) & 0xffff)
    191   1.1     ragge #define HIWORD(x)	(((int)(x) >> 16) & 0x3)
    192   1.1     ragge /*
    193   1.1     ragge  * Interface exists: make available by filling in network interface
    194   1.1     ragge  * record.  System will initialize the interface when it is ready
    195   1.1     ragge  * to accept packets.  We get the ethernet address here.
    196   1.1     ragge  */
    197   1.1     ragge void
    198  1.23      matt deattach(device_t parent, device_t self, void *aux)
    199   1.1     ragge {
    200   1.1     ragge 	struct uba_attach_args *ua = aux;
    201  1.20   thorpej 	struct de_softc *sc = device_private(self);
    202   1.1     ragge 	struct ifnet *ifp = &sc->sc_if;
    203   1.1     ragge 	u_int8_t myaddr[ETHER_ADDR_LEN];
    204  1.10     ragge 	int csr1, error;
    205  1.17     ragge 	const char *c;
    206   1.1     ragge 
    207  1.23      matt 	sc->sc_dev = self;
    208  1.23      matt 	sc->sc_uh = device_private(parent);
    209   1.1     ragge 	sc->sc_iot = ua->ua_iot;
    210   1.1     ragge 	sc->sc_ioh = ua->ua_ioh;
    211   1.1     ragge 	sc->sc_dmat = ua->ua_dmat;
    212   1.1     ragge 
    213   1.1     ragge 	/*
    214   1.1     ragge 	 * What kind of a board is this?
    215   1.1     ragge 	 * The error bits 4-6 in pcsr1 are a device id as long as
    216   1.1     ragge 	 * the high byte is zero.
    217   1.1     ragge 	 */
    218   1.1     ragge 	csr1 = DE_RCSR(DE_PCSR1);
    219   1.1     ragge 	if (csr1 & 0xff60)
    220   1.1     ragge 		c = "broken";
    221   1.1     ragge 	else if (csr1 & 0x10)
    222   1.1     ragge 		c = "delua";
    223   1.1     ragge 	else
    224   1.1     ragge 		c = "deuna";
    225   1.1     ragge 
    226   1.1     ragge 	/*
    227   1.1     ragge 	 * Reset the board and temporarily map
    228   1.1     ragge 	 * the pcbb buffer onto the Unibus.
    229   1.1     ragge 	 */
    230   1.1     ragge 	DE_WCSR(DE_PCSR0, 0);		/* reset INTE */
    231   1.1     ragge 	DELAY(100);
    232   1.1     ragge 	DE_WCSR(DE_PCSR0, PCSR0_RSET);
    233   1.2     ragge 	dewait(sc, "reset");
    234   1.1     ragge 
    235   1.9     ragge 	sc->sc_ui.ui_size = sizeof(struct de_cdata);
    236  1.23      matt 	if ((error = ubmemalloc(sc->sc_uh, &sc->sc_ui, 0)))
    237  1.10     ragge 		return printf(": failed ubmemalloc(), error = %d\n", error);
    238   1.9     ragge 	sc->sc_dedata = (struct de_cdata *)sc->sc_ui.ui_vaddr;
    239   1.2     ragge 
    240   1.1     ragge 	/*
    241   1.1     ragge 	 * Tell the DEUNA about our PCB
    242   1.1     ragge 	 */
    243  1.10     ragge 	DE_WCSR(DE_PCSR2, LOWORD(sc->sc_ui.ui_baddr));
    244  1.10     ragge 	DE_WCSR(DE_PCSR3, HIWORD(sc->sc_ui.ui_baddr));
    245   1.1     ragge 	DE_WLOW(CMD_GETPCBB);
    246   1.2     ragge 	dewait(sc, "pcbb");
    247   1.1     ragge 
    248   1.1     ragge 	sc->sc_dedata->dc_pcbb.pcbb0 = FC_RDPHYAD;
    249   1.1     ragge 	DE_WLOW(CMD_GETCMD);
    250   1.2     ragge 	dewait(sc, "read addr ");
    251   1.1     ragge 
    252  1.26   tsutsui 	memcpy(myaddr, (void *)&sc->sc_dedata->dc_pcbb.pcbb2, sizeof (myaddr));
    253  1.23      matt 	printf(": %s, hardware address %s\n", c, ether_sprintf(myaddr));
    254   1.1     ragge 
    255  1.16    simonb 	uba_intr_establish(ua->ua_icookie, ua->ua_cvec, deintr, sc,
    256   1.5     ragge 	    &sc->sc_intrcnt);
    257  1.23      matt 	uba_reset_establish(dereset, sc->sc_dev);
    258   1.4      matt 	evcnt_attach_dynamic(&sc->sc_intrcnt, EVCNT_TYPE_INTR, ua->ua_evcnt,
    259  1.23      matt 	    device_xname(sc->sc_dev), "intr");
    260   1.1     ragge 
    261  1.23      matt 	strcpy(ifp->if_xname, device_xname(sc->sc_dev));
    262   1.1     ragge 	ifp->if_softc = sc;
    263   1.5     ragge 	ifp->if_flags = IFF_BROADCAST|IFF_SIMPLEX|IFF_MULTICAST|IFF_ALLMULTI;
    264   1.1     ragge 	ifp->if_ioctl = deioctl;
    265   1.1     ragge 	ifp->if_start = destart;
    266  1.10     ragge 	ifp->if_init = deinit;
    267  1.10     ragge 	ifp->if_stop = destop;
    268   1.8   thorpej 	IFQ_SET_READY(&ifp->if_snd);
    269   1.8   thorpej 
    270   1.1     ragge 	if_attach(ifp);
    271   1.1     ragge 	ether_ifattach(ifp, myaddr);
    272  1.23      matt 	ubmemfree(sc->sc_uh, &sc->sc_ui);
    273   1.7   thorpej 
    274   1.2     ragge 	sc->sc_sh = shutdownhook_establish(deshutdown, sc);
    275  1.10     ragge }
    276   1.1     ragge 
    277  1.10     ragge void
    278  1.10     ragge destop(struct ifnet *ifp, int a)
    279  1.10     ragge {
    280  1.10     ragge 	struct de_softc *sc = ifp->if_softc;
    281  1.10     ragge 
    282  1.10     ragge 	DE_WLOW(0);
    283  1.10     ragge 	DELAY(5000);
    284  1.10     ragge 	DE_WLOW(PCSR0_RSET);
    285   1.1     ragge }
    286   1.1     ragge 
    287  1.10     ragge 
    288   1.1     ragge /*
    289   1.1     ragge  * Reset of interface after UNIBUS reset.
    290   1.1     ragge  */
    291   1.1     ragge void
    292  1.23      matt dereset(device_t dev)
    293   1.1     ragge {
    294   1.1     ragge 	struct de_softc *sc = (void *)dev;
    295   1.1     ragge 
    296   1.1     ragge 	sc->sc_if.if_flags &= ~(IFF_RUNNING | IFF_OACTIVE);
    297  1.10     ragge 	sc->sc_flags &= ~DSF_MAPPED;
    298   1.5     ragge 	sc->sc_pdedata = NULL;	/* All mappings lost */
    299   1.1     ragge 	DE_WCSR(DE_PCSR0, PCSR0_RSET);
    300   1.2     ragge 	dewait(sc, "reset");
    301  1.10     ragge 	deinit(&sc->sc_if);
    302   1.1     ragge }
    303   1.1     ragge 
    304   1.1     ragge /*
    305   1.1     ragge  * Initialization of interface; clear recorded pending
    306   1.1     ragge  * operations, and reinitialize UNIBUS usage.
    307   1.1     ragge  */
    308  1.10     ragge int
    309  1.10     ragge deinit(struct ifnet *ifp)
    310   1.1     ragge {
    311  1.10     ragge 	struct de_softc *sc = ifp->if_softc;
    312   1.2     ragge 	struct de_cdata *dc, *pdc;
    313  1.10     ragge 	struct ifrw *ifrw;
    314  1.10     ragge 	struct ifxmt *ifxp;
    315  1.10     ragge 	struct de_ring *rp;
    316  1.10     ragge 	int s, error;
    317  1.10     ragge 
    318  1.10     ragge 	if (ifp->if_flags & IFF_RUNNING)
    319  1.10     ragge 		return 0;
    320  1.10     ragge 	if ((sc->sc_flags & DSF_MAPPED) == 0) {
    321  1.23      matt 		if (if_ubaminit(&sc->sc_ifuba, sc->sc_uh, MCLBYTES,
    322  1.23      matt 				sc->sc_ifr, NRCV, sc->sc_ifw, NXMT)) {
    323  1.23      matt 			aprint_error_dev(sc->sc_dev, " can't initialize\n");
    324  1.10     ragge 			ifp->if_flags &= ~IFF_UP;
    325  1.10     ragge 			return 0;
    326  1.10     ragge 		}
    327  1.10     ragge 		sc->sc_ui.ui_size = sizeof(struct de_cdata);
    328  1.23      matt 		if ((error = ubmemalloc(sc->sc_uh, &sc->sc_ui, 0))) {
    329  1.23      matt 			aprint_error(": unable to ubmemalloc(), error = %d\n",
    330  1.23      matt 			    error);
    331  1.10     ragge 			return 0;
    332  1.10     ragge 		}
    333  1.10     ragge 		sc->sc_pdedata = (struct de_cdata *)sc->sc_ui.ui_baddr;
    334  1.10     ragge 		sc->sc_dedata = (struct de_cdata *)sc->sc_ui.ui_vaddr;
    335  1.10     ragge 		sc->sc_flags |= DSF_MAPPED;
    336  1.10     ragge 	}
    337   1.1     ragge 
    338   1.1     ragge 	/*
    339   1.1     ragge 	 * Tell the DEUNA about our PCB
    340   1.1     ragge 	 */
    341   1.1     ragge 	DE_WCSR(DE_PCSR2, LOWORD(sc->sc_pdedata));
    342   1.1     ragge 	DE_WCSR(DE_PCSR3, HIWORD(sc->sc_pdedata));
    343   1.1     ragge 	DE_WLOW(0);		/* reset INTE */
    344   1.1     ragge 	DELAY(500);
    345   1.1     ragge 	DE_WLOW(CMD_GETPCBB);
    346   1.2     ragge 	dewait(sc, "pcbb");
    347   1.1     ragge 
    348   1.1     ragge 	dc = sc->sc_dedata;
    349   1.2     ragge 	pdc = sc->sc_pdedata;
    350   1.1     ragge 	/* set the transmit and receive ring header addresses */
    351   1.1     ragge 	dc->dc_pcbb.pcbb0 = FC_WTRING;
    352   1.2     ragge 	dc->dc_pcbb.pcbb2 = LOWORD(&pdc->dc_udbbuf);
    353   1.2     ragge 	dc->dc_pcbb.pcbb4 = HIWORD(&pdc->dc_udbbuf);
    354   1.1     ragge 
    355   1.2     ragge 	dc->dc_udbbuf.b_tdrbl = LOWORD(&pdc->dc_xrent[0]);
    356   1.2     ragge 	dc->dc_udbbuf.b_tdrbh = HIWORD(&pdc->dc_xrent[0]);
    357   1.1     ragge 	dc->dc_udbbuf.b_telen = sizeof (struct de_ring) / sizeof(u_int16_t);
    358   1.1     ragge 	dc->dc_udbbuf.b_trlen = NXMT;
    359   1.2     ragge 	dc->dc_udbbuf.b_rdrbl = LOWORD(&pdc->dc_rrent[0]);
    360   1.2     ragge 	dc->dc_udbbuf.b_rdrbh = HIWORD(&pdc->dc_rrent[0]);
    361   1.1     ragge 	dc->dc_udbbuf.b_relen = sizeof (struct de_ring) / sizeof(u_int16_t);
    362   1.1     ragge 	dc->dc_udbbuf.b_rrlen = NRCV;
    363   1.1     ragge 
    364   1.1     ragge 	DE_WLOW(CMD_GETCMD);
    365   1.2     ragge 	dewait(sc, "wtring");
    366   1.1     ragge 
    367   1.5     ragge 	sc->sc_dedata->dc_pcbb.pcbb0 = FC_WTMODE;
    368   1.5     ragge 	sc->sc_dedata->dc_pcbb.pcbb2 = MOD_TPAD|MOD_HDX|MOD_DRDC|MOD_ENAL;
    369   1.5     ragge 	DE_WLOW(CMD_GETCMD);
    370   1.5     ragge 	dewait(sc, "wtmode");
    371   1.1     ragge 
    372   1.5     ragge 	/* set up the receive and transmit ring entries */
    373  1.10     ragge 	ifxp = &sc->sc_ifw[0];
    374  1.10     ragge 	for (rp = &dc->dc_xrent[0]; rp < &dc->dc_xrent[NXMT]; rp++) {
    375  1.10     ragge 		rp->r_segbl = LOWORD(ifxp->ifw_info);
    376  1.10     ragge 		rp->r_segbh = HIWORD(ifxp->ifw_info);
    377  1.10     ragge 		rp->r_flags = 0;
    378  1.10     ragge 		ifxp++;
    379  1.10     ragge 	}
    380  1.10     ragge 	ifrw = &sc->sc_ifr[0];
    381  1.10     ragge 	for (rp = &dc->dc_rrent[0]; rp < &dc->dc_rrent[NRCV]; rp++) {
    382  1.10     ragge 		rp->r_slen = MCLBYTES - 2;
    383  1.10     ragge 		rp->r_segbl = LOWORD(ifrw->ifrw_info);
    384  1.10     ragge 		rp->r_segbh = HIWORD(ifrw->ifrw_info);
    385  1.10     ragge 		rp->r_flags = RFLG_OWN;
    386  1.10     ragge 		ifrw++;
    387  1.10     ragge 	}
    388   1.1     ragge 
    389   1.1     ragge 	/* start up the board (rah rah) */
    390   1.1     ragge 	s = splnet();
    391   1.5     ragge 	sc->sc_rindex = sc->sc_xindex = sc->sc_xfree = sc->sc_nxmit = 0;
    392   1.1     ragge 	sc->sc_if.if_flags |= IFF_RUNNING;
    393   1.5     ragge 	DE_WLOW(PCSR0_INTE);			/* avoid interlock */
    394   1.5     ragge 	destart(&sc->sc_if);		/* queue output packets */
    395   1.1     ragge 	DE_WLOW(CMD_START|PCSR0_INTE);
    396   1.1     ragge 	splx(s);
    397  1.10     ragge 	return 0;
    398   1.1     ragge }
    399   1.1     ragge 
    400   1.1     ragge /*
    401   1.1     ragge  * Setup output on interface.
    402   1.1     ragge  * Get another datagram to send off of the interface queue,
    403   1.1     ragge  * and map it to the interface before starting the output.
    404   1.1     ragge  * Must be called from ipl >= our interrupt level.
    405   1.1     ragge  */
    406   1.1     ragge void
    407   1.1     ragge destart(struct ifnet *ifp)
    408   1.1     ragge {
    409   1.1     ragge 	struct de_softc *sc = ifp->if_softc;
    410   1.2     ragge 	struct de_cdata *dc;
    411  1.10     ragge 	struct de_ring *rp;
    412   1.2     ragge 	struct mbuf *m;
    413  1.10     ragge 	int nxmit, len;
    414   1.1     ragge 
    415   1.1     ragge 	/*
    416   1.1     ragge 	 * the following test is necessary, since
    417   1.1     ragge 	 * the code is not reentrant and we have
    418   1.1     ragge 	 * multiple transmission buffers.
    419   1.1     ragge 	 */
    420   1.5     ragge 	if (sc->sc_if.if_flags & IFF_OACTIVE)
    421   1.1     ragge 		return;
    422   1.2     ragge 	dc = sc->sc_dedata;
    423   1.5     ragge 	for (nxmit = sc->sc_nxmit; nxmit < NXMT; nxmit++) {
    424   1.8   thorpej 		IFQ_DEQUEUE(&ifp->if_snd, m);
    425   1.1     ragge 		if (m == 0)
    426   1.5     ragge 			break;
    427  1.10     ragge 
    428  1.10     ragge 		rp = &dc->dc_xrent[sc->sc_xfree];
    429   1.5     ragge 		if (rp->r_flags & XFLG_OWN)
    430   1.5     ragge 			panic("deuna xmit in progress");
    431  1.29     joerg 		bpf_mtap(ifp, m);
    432   1.5     ragge 
    433  1.10     ragge 		len = if_ubaput(&sc->sc_ifuba, &sc->sc_ifw[sc->sc_xfree], m);
    434  1.10     ragge 		rp->r_slen = len;
    435  1.10     ragge 		rp->r_tdrerr = 0;
    436  1.10     ragge 		rp->r_flags = XFLG_STP|XFLG_ENP|XFLG_OWN;
    437  1.10     ragge 
    438   1.5     ragge 		sc->sc_xfree++;
    439   1.5     ragge 		if (sc->sc_xfree == NXMT)
    440   1.5     ragge 			sc->sc_xfree = 0;
    441   1.5     ragge 	}
    442  1.10     ragge 	if (sc->sc_nxmit != nxmit) {
    443   1.5     ragge 		sc->sc_nxmit = nxmit;
    444   1.5     ragge 		if (ifp->if_flags & IFF_RUNNING)
    445   1.5     ragge 			DE_WLOW(PCSR0_INTE|CMD_PDMD);
    446   1.1     ragge 	}
    447   1.1     ragge }
    448   1.1     ragge 
    449   1.1     ragge /*
    450   1.1     ragge  * Command done interrupt.
    451   1.1     ragge  */
    452   1.1     ragge void
    453   1.1     ragge deintr(void *arg)
    454   1.1     ragge {
    455  1.10     ragge 	struct ifxmt *ifxp;
    456   1.5     ragge 	struct de_cdata *dc;
    457   1.1     ragge 	struct de_softc *sc = arg;
    458   1.5     ragge 	struct de_ring *rp;
    459   1.5     ragge 	short csr0;
    460   1.1     ragge 
    461   1.1     ragge 	/* save flags right away - clear out interrupt bits */
    462   1.1     ragge 	csr0 = DE_RCSR(DE_PCSR0);
    463   1.1     ragge 	DE_WHIGH(csr0 >> 8);
    464   1.1     ragge 
    465   1.1     ragge 
    466   1.5     ragge 	sc->sc_if.if_flags |= IFF_OACTIVE;	/* prevent entering destart */
    467   1.5     ragge 	/*
    468   1.5     ragge 	 * if receive, put receive buffer on mbuf
    469   1.5     ragge 	 * and hang the request again
    470   1.5     ragge 	 */
    471   1.5     ragge 	derecv(sc);
    472   1.1     ragge 
    473   1.1     ragge 	/*
    474   1.1     ragge 	 * Poll transmit ring and check status.
    475   1.5     ragge 	 * Be careful about loopback requests.
    476   1.1     ragge 	 * Then free buffer space and check for
    477   1.1     ragge 	 * more transmit requests.
    478   1.1     ragge 	 */
    479   1.5     ragge 	dc = sc->sc_dedata;
    480   1.5     ragge 	for ( ; sc->sc_nxmit > 0; sc->sc_nxmit--) {
    481   1.5     ragge 		rp = &dc->dc_xrent[sc->sc_xindex];
    482   1.5     ragge 		if (rp->r_flags & XFLG_OWN)
    483   1.2     ragge 			break;
    484  1.10     ragge 
    485   1.5     ragge 		sc->sc_if.if_opackets++;
    486  1.10     ragge 		ifxp = &sc->sc_ifw[sc->sc_xindex];
    487   1.5     ragge 		/* check for unusual conditions */
    488   1.1     ragge 		if (rp->r_flags & (XFLG_ERRS|XFLG_MTCH|XFLG_ONE|XFLG_MORE)) {
    489   1.1     ragge 			if (rp->r_flags & XFLG_ERRS) {
    490   1.5     ragge 				/* output error */
    491   1.5     ragge 				sc->sc_if.if_oerrors++;
    492   1.1     ragge 			} else if (rp->r_flags & XFLG_ONE) {
    493   1.5     ragge 				/* one collision */
    494   1.5     ragge 				sc->sc_if.if_collisions++;
    495   1.1     ragge 			} else if (rp->r_flags & XFLG_MORE) {
    496   1.5     ragge 				/* more than one collision */
    497   1.5     ragge 				sc->sc_if.if_collisions += 2;	/* guess */
    498   1.1     ragge 			}
    499   1.1     ragge 		}
    500  1.10     ragge 		if_ubaend(&sc->sc_ifuba, ifxp);
    501   1.5     ragge 		/* check if next transmit buffer also finished */
    502   1.5     ragge 		sc->sc_xindex++;
    503   1.5     ragge 		if (sc->sc_xindex == NXMT)
    504   1.5     ragge 			sc->sc_xindex = 0;
    505   1.5     ragge 	}
    506   1.5     ragge 	sc->sc_if.if_flags &= ~IFF_OACTIVE;
    507   1.5     ragge 	destart(&sc->sc_if);
    508   1.5     ragge 
    509   1.5     ragge 	if (csr0 & PCSR0_RCBI) {
    510   1.5     ragge 		DE_WLOW(PCSR0_INTE|CMD_PDMD);
    511   1.5     ragge 	}
    512   1.1     ragge }
    513   1.1     ragge 
    514   1.1     ragge /*
    515   1.1     ragge  * Ethernet interface receiver interface.
    516   1.1     ragge  * If input error just drop packet.
    517  1.16    simonb  * Otherwise purge input buffered data path and examine
    518   1.1     ragge  * packet to determine type.  If can't determine length
    519   1.1     ragge  * from type, then have to drop packet.	 Othewise decapsulate
    520   1.1     ragge  * packet based on type and pass to type specific higher-level
    521   1.1     ragge  * input routine.
    522   1.1     ragge  */
    523   1.1     ragge void
    524   1.1     ragge derecv(struct de_softc *sc)
    525   1.1     ragge {
    526   1.1     ragge 	struct ifnet *ifp = &sc->sc_if;
    527   1.1     ragge 	struct de_ring *rp;
    528   1.5     ragge 	struct de_cdata *dc;
    529   1.1     ragge 	struct mbuf *m;
    530   1.1     ragge 	int len;
    531   1.1     ragge 
    532   1.5     ragge 	dc = sc->sc_dedata;
    533   1.5     ragge 	rp = &dc->dc_rrent[sc->sc_rindex];
    534   1.1     ragge 	while ((rp->r_flags & RFLG_OWN) == 0) {
    535   1.5     ragge 		len = (rp->r_lenerr&RERR_MLEN) - ETHER_CRC_LEN;
    536   1.1     ragge 		/* check for errors */
    537   1.1     ragge 		if ((rp->r_flags & (RFLG_ERRS|RFLG_FRAM|RFLG_OFLO|RFLG_CRC)) ||
    538   1.2     ragge 		    (rp->r_lenerr & (RERR_BUFL|RERR_UBTO))) {
    539   1.5     ragge 			sc->sc_if.if_ierrors++;
    540   1.1     ragge 			goto next;
    541   1.1     ragge 		}
    542  1.10     ragge 		m = if_ubaget(&sc->sc_ifuba, &sc->sc_ifr[sc->sc_rindex],
    543  1.10     ragge 		    ifp, len);
    544  1.10     ragge 		if (m == 0) {
    545  1.10     ragge 			sc->sc_if.if_ierrors++;
    546  1.10     ragge 			goto next;
    547  1.10     ragge 		}
    548   1.5     ragge 
    549  1.30     ozaki 		if_percpuq_enqueue(ifp->if_percpuq, m);
    550   1.1     ragge 
    551   1.1     ragge 		/* hang the receive buffer again */
    552   1.1     ragge next:		rp->r_lenerr = 0;
    553   1.1     ragge 		rp->r_flags = RFLG_OWN;
    554   1.1     ragge 
    555   1.1     ragge 		/* check next receive buffer */
    556   1.5     ragge 		sc->sc_rindex++;
    557   1.5     ragge 		if (sc->sc_rindex == NRCV)
    558   1.5     ragge 			sc->sc_rindex = 0;
    559   1.5     ragge 		rp = &dc->dc_rrent[sc->sc_rindex];
    560   1.1     ragge 	}
    561   1.1     ragge }
    562   1.1     ragge 
    563   1.1     ragge /*
    564   1.1     ragge  * Process an ioctl request.
    565   1.1     ragge  */
    566   1.1     ragge int
    567  1.21  christos deioctl(struct ifnet *ifp, u_long cmd, void *data)
    568   1.1     ragge {
    569  1.10     ragge 	int s, error = 0;
    570   1.1     ragge 
    571  1.10     ragge 	s = splnet();
    572   1.1     ragge 
    573  1.10     ragge 	error = ether_ioctl(ifp, cmd, data);
    574  1.10     ragge 	if (error == ENETRESET)
    575  1.10     ragge 		error = 0;
    576   1.2     ragge 
    577   1.1     ragge 	splx(s);
    578   1.1     ragge 	return (error);
    579   1.1     ragge }
    580   1.1     ragge 
    581   1.1     ragge /*
    582   1.1     ragge  * Await completion of the named function
    583   1.1     ragge  * and check for errors.
    584   1.1     ragge  */
    585   1.2     ragge void
    586  1.17     ragge dewait(struct de_softc *sc, const char *fn)
    587   1.1     ragge {
    588  1.23      matt 	int csr0, csr1;
    589   1.1     ragge 
    590   1.1     ragge 	while ((DE_RCSR(DE_PCSR0) & PCSR0_INTR) == 0)
    591   1.1     ragge 		;
    592   1.1     ragge 	csr0 = DE_RCSR(DE_PCSR0);
    593   1.1     ragge 	DE_WHIGH(csr0 >> 8);
    594   1.1     ragge 	if (csr0 & PCSR0_PCEI) {
    595  1.23      matt 		char bits0[64];
    596  1.23      matt 		char bits1[64];
    597  1.23      matt 		csr1 = DE_RCSR(DE_PCSR1);
    598  1.24  christos 		snprintb(bits0, sizeof(bits0), PCSR0_BITS, csr0);
    599  1.24  christos 		snprintb(bits1, sizeof(bits1), PCSR1_BITS, csr1);
    600  1.23      matt 		aprint_error_dev(sc->sc_dev, "%s failed, csr0=%s csr1=%s\n",
    601  1.24  christos 		    fn, bits0, bits1);
    602   1.1     ragge 	}
    603   1.1     ragge }
    604   1.1     ragge 
    605   1.1     ragge int
    606  1.23      matt dematch(device_t parent, cfdata_t cf, void *aux)
    607   1.1     ragge {
    608   1.1     ragge 	struct uba_attach_args *ua = aux;
    609   1.1     ragge 	struct de_softc ssc;
    610   1.1     ragge 	struct de_softc *sc = &ssc;
    611   1.1     ragge 	int i;
    612   1.1     ragge 
    613   1.1     ragge 	sc->sc_iot = ua->ua_iot;
    614   1.1     ragge 	sc->sc_ioh = ua->ua_ioh;
    615   1.1     ragge 	/*
    616   1.1     ragge 	 * Make sure self-test is finished before we screw with the board.
    617   1.1     ragge 	 * Self-test on a DELUA can take 15 seconds (argh).
    618   1.1     ragge 	 */
    619   1.1     ragge 	for (i = 0;
    620   1.1     ragge 	    (i < 160) &&
    621   1.1     ragge 	    (DE_RCSR(DE_PCSR0) & PCSR0_FATI) == 0 &&
    622   1.1     ragge 	    (DE_RCSR(DE_PCSR1) & PCSR1_STMASK) == STAT_RESET;
    623   1.1     ragge 	    ++i)
    624   1.1     ragge 		DELAY(50000);
    625   1.1     ragge 	if (((DE_RCSR(DE_PCSR0) & PCSR0_FATI) != 0) ||
    626   1.1     ragge 	    (((DE_RCSR(DE_PCSR1) & PCSR1_STMASK) != STAT_READY) &&
    627   1.1     ragge 	    ((DE_RCSR(DE_PCSR1) & PCSR1_STMASK) != STAT_RUN)))
    628   1.1     ragge 		return(0);
    629   1.1     ragge 
    630   1.1     ragge 	DE_WCSR(DE_PCSR0, 0);
    631   1.1     ragge 	DELAY(5000);
    632   1.1     ragge 	DE_WCSR(DE_PCSR0, PCSR0_RSET);
    633   1.1     ragge 	while ((DE_RCSR(DE_PCSR0) & PCSR0_INTR) == 0)
    634   1.1     ragge 		;
    635   1.1     ragge 	/* make board interrupt by executing a GETPCBB command */
    636   1.1     ragge 	DE_WCSR(DE_PCSR0, PCSR0_INTE);
    637   1.1     ragge 	DE_WCSR(DE_PCSR2, 0);
    638   1.1     ragge 	DE_WCSR(DE_PCSR3, 0);
    639   1.1     ragge 	DE_WCSR(DE_PCSR0, PCSR0_INTE|CMD_GETPCBB);
    640   1.1     ragge 	DELAY(50000);
    641   1.1     ragge 
    642   1.1     ragge 	return 1;
    643   1.1     ragge }
    644   1.2     ragge 
    645   1.2     ragge void
    646   1.2     ragge deshutdown(void *arg)
    647   1.2     ragge {
    648   1.2     ragge 	struct de_softc *sc = arg;
    649   1.2     ragge 
    650   1.5     ragge 	DE_WCSR(DE_PCSR0, 0);
    651   1.5     ragge 	DELAY(1000);
    652   1.2     ragge 	DE_WCSR(DE_PCSR0, PCSR0_RSET);
    653   1.2     ragge 	dewait(sc, "shutdown");
    654   1.2     ragge }
    655