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sgec.c revision 1.26
      1  1.26     perry /*      $NetBSD: sgec.c,v 1.26 2005/02/27 00:27:02 perry Exp $ */
      2   1.1     ragge /*
      3   1.1     ragge  * Copyright (c) 1999 Ludd, University of Lule}, Sweden. All rights reserved.
      4   1.1     ragge  *
      5   1.1     ragge  * Redistribution and use in source and binary forms, with or without
      6   1.1     ragge  * modification, are permitted provided that the following conditions
      7   1.1     ragge  * are met:
      8   1.1     ragge  * 1. Redistributions of source code must retain the above copyright
      9   1.1     ragge  *    notice, this list of conditions and the following disclaimer.
     10   1.1     ragge  * 2. Redistributions in binary form must reproduce the above copyright
     11   1.1     ragge  *    notice, this list of conditions and the following disclaimer in the
     12   1.1     ragge  *    documentation and/or other materials provided with the distribution.
     13   1.1     ragge  * 3. All advertising materials mentioning features or use of this software
     14   1.1     ragge  *    must display the following acknowledgement:
     15  1.26     perry  *      This product includes software developed at Ludd, University of
     16   1.1     ragge  *      Lule}, Sweden and its contributors.
     17   1.1     ragge  * 4. The name of the author may not be used to endorse or promote products
     18   1.1     ragge  *    derived from this software without specific prior written permission
     19   1.1     ragge  *
     20   1.1     ragge  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     21   1.1     ragge  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     22   1.1     ragge  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     23   1.1     ragge  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     24   1.1     ragge  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     25   1.1     ragge  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     26   1.1     ragge  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     27   1.1     ragge  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     28   1.1     ragge  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     29   1.1     ragge  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     30   1.1     ragge  */
     31   1.1     ragge 
     32   1.1     ragge /*
     33   1.1     ragge  * Driver for the SGEC (Second Generation Ethernet Controller), sitting
     34  1.26     perry  * on for example the VAX 4000/300 (KA670).
     35   1.1     ragge  *
     36   1.1     ragge  * The SGEC looks like a mixture of the DEQNA and the TULIP. Fun toy.
     37   1.1     ragge  *
     38   1.1     ragge  * Even though the chip is capable to use virtual addresses (read the
     39   1.1     ragge  * System Page Table directly) this driver doesn't do so, and there
     40   1.1     ragge  * is no benefit in doing it either in NetBSD of today.
     41   1.1     ragge  *
     42   1.1     ragge  * Things that is still to do:
     43   1.1     ragge  *	Collect statistics.
     44   1.1     ragge  *	Use imperfect filtering when many multicast addresses.
     45   1.1     ragge  */
     46  1.18     lukem 
     47  1.18     lukem #include <sys/cdefs.h>
     48  1.26     perry __KERNEL_RCSID(0, "$NetBSD: sgec.c,v 1.26 2005/02/27 00:27:02 perry Exp $");
     49   1.1     ragge 
     50   1.1     ragge #include "opt_inet.h"
     51   1.1     ragge #include "bpfilter.h"
     52   1.1     ragge 
     53   1.1     ragge #include <sys/param.h>
     54   1.1     ragge #include <sys/mbuf.h>
     55   1.1     ragge #include <sys/socket.h>
     56   1.1     ragge #include <sys/device.h>
     57   1.1     ragge #include <sys/systm.h>
     58   1.1     ragge #include <sys/sockio.h>
     59   1.1     ragge 
     60   1.9   thorpej #include <uvm/uvm_extern.h>
     61   1.9   thorpej 
     62   1.1     ragge #include <net/if.h>
     63   1.1     ragge #include <net/if_ether.h>
     64   1.1     ragge #include <net/if_dl.h>
     65   1.1     ragge 
     66   1.1     ragge #include <netinet/in.h>
     67   1.1     ragge #include <netinet/if_inarp.h>
     68   1.1     ragge 
     69   1.1     ragge #if NBPFILTER > 0
     70   1.1     ragge #include <net/bpf.h>
     71   1.1     ragge #include <net/bpfdesc.h>
     72   1.1     ragge #endif
     73   1.1     ragge 
     74   1.1     ragge #include <machine/bus.h>
     75   1.1     ragge 
     76   1.1     ragge #include <dev/ic/sgecreg.h>
     77   1.1     ragge #include <dev/ic/sgecvar.h>
     78   1.1     ragge 
     79  1.25     perry static	void	zeinit(struct ze_softc *);
     80  1.25     perry static	void	zestart(struct ifnet *);
     81  1.25     perry static	int	zeioctl(struct ifnet *, u_long, caddr_t);
     82  1.25     perry static	int	ze_add_rxbuf(struct ze_softc *, int);
     83  1.25     perry static	void	ze_setup(struct ze_softc *);
     84  1.25     perry static	void	zetimeout(struct ifnet *);
     85  1.25     perry static	int	zereset(struct ze_softc *);
     86   1.1     ragge 
     87   1.1     ragge #define	ZE_WCSR(csr, val) \
     88   1.1     ragge 	bus_space_write_4(sc->sc_iot, sc->sc_ioh, csr, val)
     89   1.1     ragge #define	ZE_RCSR(csr) \
     90   1.1     ragge 	bus_space_read_4(sc->sc_iot, sc->sc_ioh, csr)
     91   1.1     ragge 
     92   1.1     ragge /*
     93   1.1     ragge  * Interface exists: make available by filling in network interface
     94   1.1     ragge  * record.  System will initialize the interface when it is ready
     95   1.1     ragge  * to accept packets.
     96   1.1     ragge  */
     97   1.1     ragge void
     98   1.1     ragge sgec_attach(sc)
     99   1.1     ragge 	struct ze_softc *sc;
    100   1.1     ragge {
    101   1.1     ragge 	struct	ifnet *ifp = (struct ifnet *)&sc->sc_if;
    102   1.1     ragge 	struct	ze_tdes *tp;
    103   1.1     ragge 	struct	ze_rdes *rp;
    104   1.1     ragge 	bus_dma_segment_t seg;
    105   1.1     ragge 	int i, rseg, error;
    106   1.1     ragge 
    107   1.1     ragge         /*
    108   1.1     ragge          * Allocate DMA safe memory for descriptors and setup memory.
    109   1.1     ragge          */
    110   1.1     ragge 	if ((error = bus_dmamem_alloc(sc->sc_dmat,
    111   1.9   thorpej 	    sizeof(struct ze_cdata), PAGE_SIZE, 0, &seg, 1, &rseg,
    112   1.1     ragge 	    BUS_DMA_NOWAIT)) != 0) {
    113   1.1     ragge 		printf(": unable to allocate control data, error = %d\n",
    114   1.1     ragge 		    error);
    115   1.1     ragge 		goto fail_0;
    116   1.1     ragge 	}
    117   1.1     ragge 
    118   1.1     ragge 	if ((error = bus_dmamem_map(sc->sc_dmat, &seg, rseg,
    119   1.1     ragge 	    sizeof(struct ze_cdata), (caddr_t *)&sc->sc_zedata,
    120   1.1     ragge 	    BUS_DMA_NOWAIT|BUS_DMA_COHERENT)) != 0) {
    121   1.1     ragge 		printf(": unable to map control data, error = %d\n", error);
    122   1.1     ragge 		goto fail_1;
    123   1.1     ragge 	}
    124   1.1     ragge 
    125   1.1     ragge 	if ((error = bus_dmamap_create(sc->sc_dmat,
    126   1.1     ragge 	    sizeof(struct ze_cdata), 1,
    127   1.1     ragge 	    sizeof(struct ze_cdata), 0, BUS_DMA_NOWAIT,
    128   1.1     ragge 	    &sc->sc_cmap)) != 0) {
    129   1.1     ragge 		printf(": unable to create control data DMA map, error = %d\n",
    130   1.1     ragge 		    error);
    131   1.1     ragge 		goto fail_2;
    132   1.1     ragge 	}
    133   1.1     ragge 
    134   1.1     ragge 	if ((error = bus_dmamap_load(sc->sc_dmat, sc->sc_cmap,
    135   1.1     ragge 	    sc->sc_zedata, sizeof(struct ze_cdata), NULL,
    136   1.1     ragge 	    BUS_DMA_NOWAIT)) != 0) {
    137   1.1     ragge 		printf(": unable to load control data DMA map, error = %d\n",
    138   1.1     ragge 		    error);
    139   1.1     ragge 		goto fail_3;
    140   1.1     ragge 	}
    141   1.1     ragge 
    142   1.1     ragge 	/*
    143   1.1     ragge 	 * Zero the newly allocated memory.
    144   1.1     ragge 	 */
    145  1.16   thorpej 	memset(sc->sc_zedata, 0, sizeof(struct ze_cdata));
    146   1.1     ragge 	/*
    147   1.1     ragge 	 * Create the transmit descriptor DMA maps.
    148   1.1     ragge 	 */
    149   1.1     ragge 	for (i = 0; i < TXDESCS; i++) {
    150   1.1     ragge 		if ((error = bus_dmamap_create(sc->sc_dmat, MCLBYTES,
    151   1.1     ragge 		    1, MCLBYTES, 0, BUS_DMA_NOWAIT|BUS_DMA_ALLOCNOW,
    152   1.1     ragge 		    &sc->sc_xmtmap[i]))) {
    153   1.1     ragge 			printf(": unable to create tx DMA map %d, error = %d\n",
    154   1.1     ragge 			    i, error);
    155   1.1     ragge 			goto fail_4;
    156   1.1     ragge 		}
    157   1.1     ragge 	}
    158   1.1     ragge 
    159   1.1     ragge 	/*
    160   1.1     ragge 	 * Create receive buffer DMA maps.
    161   1.1     ragge 	 */
    162   1.1     ragge 	for (i = 0; i < RXDESCS; i++) {
    163   1.1     ragge 		if ((error = bus_dmamap_create(sc->sc_dmat, MCLBYTES, 1,
    164   1.1     ragge 		    MCLBYTES, 0, BUS_DMA_NOWAIT,
    165   1.1     ragge 		    &sc->sc_rcvmap[i]))) {
    166   1.1     ragge 			printf(": unable to create rx DMA map %d, error = %d\n",
    167   1.1     ragge 			    i, error);
    168   1.1     ragge 			goto fail_5;
    169   1.1     ragge 		}
    170   1.1     ragge 	}
    171   1.1     ragge 	/*
    172   1.1     ragge 	 * Pre-allocate the receive buffers.
    173   1.1     ragge 	 */
    174   1.1     ragge 	for (i = 0; i < RXDESCS; i++) {
    175   1.1     ragge 		if ((error = ze_add_rxbuf(sc, i)) != 0) {
    176   1.1     ragge 			printf(": unable to allocate or map rx buffer %d\n,"
    177   1.1     ragge 			    " error = %d\n", i, error);
    178   1.1     ragge 			goto fail_6;
    179   1.1     ragge 		}
    180   1.1     ragge 	}
    181   1.5      matt 
    182   1.5      matt 	/* For vmstat -i
    183   1.5      matt 	 */
    184   1.6      matt 	evcnt_attach_dynamic(&sc->sc_intrcnt, EVCNT_TYPE_INTR, NULL,
    185   1.6      matt 		sc->sc_dev.dv_xname, "intr");
    186   1.1     ragge 
    187   1.1     ragge 	/*
    188   1.1     ragge 	 * Create ring loops of the buffer chains.
    189   1.1     ragge 	 * This is only done once.
    190   1.1     ragge 	 */
    191   1.1     ragge 	sc->sc_pzedata = (struct ze_cdata *)sc->sc_cmap->dm_segs[0].ds_addr;
    192   1.1     ragge 
    193   1.1     ragge 	rp = sc->sc_zedata->zc_recv;
    194   1.1     ragge 	rp[RXDESCS].ze_framelen = ZE_FRAMELEN_OW;
    195   1.1     ragge 	rp[RXDESCS].ze_rdes1 = ZE_RDES1_CA;
    196   1.1     ragge 	rp[RXDESCS].ze_bufaddr = (char *)sc->sc_pzedata->zc_recv;
    197   1.1     ragge 
    198   1.1     ragge 	tp = sc->sc_zedata->zc_xmit;
    199   1.1     ragge 	tp[TXDESCS].ze_tdr = ZE_TDR_OW;
    200   1.1     ragge 	tp[TXDESCS].ze_tdes1 = ZE_TDES1_CA;
    201   1.1     ragge 	tp[TXDESCS].ze_bufaddr = (char *)sc->sc_pzedata->zc_xmit;
    202   1.1     ragge 
    203   1.1     ragge 	if (zereset(sc))
    204   1.1     ragge 		return;
    205   1.1     ragge 
    206   1.1     ragge 	strcpy(ifp->if_xname, sc->sc_dev.dv_xname);
    207   1.1     ragge 	ifp->if_softc = sc;
    208   1.1     ragge 	ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
    209   1.1     ragge 	ifp->if_start = zestart;
    210   1.1     ragge 	ifp->if_ioctl = zeioctl;
    211   1.1     ragge 	ifp->if_watchdog = zetimeout;
    212  1.11   thorpej 	IFQ_SET_READY(&ifp->if_snd);
    213   1.1     ragge 
    214   1.1     ragge 	/*
    215   1.1     ragge 	 * Attach the interface.
    216   1.1     ragge 	 */
    217   1.1     ragge 	if_attach(ifp);
    218   1.1     ragge 	ether_ifattach(ifp, sc->sc_enaddr);
    219   1.1     ragge 
    220   1.1     ragge 	printf("\n%s: hardware address %s\n", sc->sc_dev.dv_xname,
    221   1.1     ragge 	    ether_sprintf(sc->sc_enaddr));
    222   1.1     ragge 	return;
    223   1.1     ragge 
    224   1.1     ragge 	/*
    225   1.1     ragge 	 * Free any resources we've allocated during the failed attach
    226   1.1     ragge 	 * attempt.  Do this in reverse order and fall through.
    227   1.1     ragge 	 */
    228   1.1     ragge  fail_6:
    229   1.1     ragge 	for (i = 0; i < RXDESCS; i++) {
    230   1.1     ragge 		if (sc->sc_rxmbuf[i] != NULL) {
    231   1.1     ragge 			bus_dmamap_unload(sc->sc_dmat, sc->sc_xmtmap[i]);
    232   1.1     ragge 			m_freem(sc->sc_rxmbuf[i]);
    233   1.1     ragge 		}
    234   1.1     ragge 	}
    235   1.1     ragge  fail_5:
    236   1.1     ragge 	for (i = 0; i < RXDESCS; i++) {
    237   1.1     ragge 		if (sc->sc_xmtmap[i] != NULL)
    238   1.1     ragge 			bus_dmamap_destroy(sc->sc_dmat, sc->sc_xmtmap[i]);
    239   1.1     ragge 	}
    240   1.1     ragge  fail_4:
    241   1.1     ragge 	for (i = 0; i < TXDESCS; i++) {
    242   1.1     ragge 		if (sc->sc_rcvmap[i] != NULL)
    243   1.1     ragge 			bus_dmamap_destroy(sc->sc_dmat, sc->sc_rcvmap[i]);
    244   1.1     ragge 	}
    245   1.1     ragge 	bus_dmamap_unload(sc->sc_dmat, sc->sc_cmap);
    246   1.1     ragge  fail_3:
    247   1.1     ragge 	bus_dmamap_destroy(sc->sc_dmat, sc->sc_cmap);
    248   1.1     ragge  fail_2:
    249   1.1     ragge 	bus_dmamem_unmap(sc->sc_dmat, (caddr_t)sc->sc_zedata,
    250   1.1     ragge 	    sizeof(struct ze_cdata));
    251   1.1     ragge  fail_1:
    252   1.1     ragge 	bus_dmamem_free(sc->sc_dmat, &seg, rseg);
    253   1.1     ragge  fail_0:
    254   1.1     ragge 	return;
    255   1.1     ragge }
    256   1.1     ragge 
    257   1.1     ragge /*
    258   1.1     ragge  * Initialization of interface.
    259   1.1     ragge  */
    260   1.1     ragge void
    261   1.1     ragge zeinit(sc)
    262   1.1     ragge 	struct ze_softc *sc;
    263   1.1     ragge {
    264   1.1     ragge 	struct ifnet *ifp = (struct ifnet *)&sc->sc_if;
    265   1.1     ragge 	struct ze_cdata *zc = sc->sc_zedata;
    266   1.1     ragge 	int i;
    267   1.1     ragge 
    268   1.1     ragge 	/*
    269   1.1     ragge 	 * Reset the interface.
    270   1.1     ragge 	 */
    271   1.1     ragge 	if (zereset(sc))
    272   1.1     ragge 		return;
    273   1.1     ragge 
    274   1.1     ragge 	sc->sc_nexttx = sc->sc_inq = sc->sc_lastack = 0;
    275   1.1     ragge 	/*
    276   1.1     ragge 	 * Release and init transmit descriptors.
    277   1.1     ragge 	 */
    278   1.1     ragge 	for (i = 0; i < TXDESCS; i++) {
    279   1.1     ragge 		if (sc->sc_txmbuf[i]) {
    280   1.1     ragge 			bus_dmamap_unload(sc->sc_dmat, sc->sc_xmtmap[i]);
    281   1.1     ragge 			m_freem(sc->sc_txmbuf[i]);
    282   1.1     ragge 			sc->sc_txmbuf[i] = 0;
    283   1.1     ragge 		}
    284   1.1     ragge 		zc->zc_xmit[i].ze_tdr = 0; /* Clear valid bit */
    285   1.1     ragge 	}
    286   1.1     ragge 
    287   1.1     ragge 
    288   1.1     ragge 	/*
    289   1.1     ragge 	 * Init receive descriptors.
    290   1.1     ragge 	 */
    291   1.1     ragge 	for (i = 0; i < RXDESCS; i++)
    292   1.1     ragge 		zc->zc_recv[i].ze_framelen = ZE_FRAMELEN_OW;
    293   1.1     ragge 	sc->sc_nextrx = 0;
    294   1.1     ragge 
    295   1.1     ragge 	ZE_WCSR(ZE_CSR6, ZE_NICSR6_IE|ZE_NICSR6_BL_8|ZE_NICSR6_ST|
    296   1.1     ragge 	    ZE_NICSR6_SR|ZE_NICSR6_DC);
    297   1.1     ragge 
    298   1.1     ragge 	ifp->if_flags |= IFF_RUNNING;
    299   1.1     ragge 	ifp->if_flags &= ~IFF_OACTIVE;
    300   1.1     ragge 
    301   1.1     ragge 	/*
    302   1.1     ragge 	 * Send a setup frame.
    303   1.1     ragge 	 * This will start the transmit machinery as well.
    304   1.1     ragge 	 */
    305   1.1     ragge 	ze_setup(sc);
    306   1.1     ragge 
    307   1.1     ragge }
    308   1.1     ragge 
    309   1.1     ragge /*
    310   1.1     ragge  * Start output on interface.
    311   1.1     ragge  */
    312   1.1     ragge void
    313   1.1     ragge zestart(ifp)
    314   1.1     ragge 	struct ifnet *ifp;
    315   1.1     ragge {
    316   1.1     ragge 	struct ze_softc *sc = ifp->if_softc;
    317   1.1     ragge 	struct ze_cdata *zc = sc->sc_zedata;
    318   1.1     ragge 	paddr_t	buffer;
    319   1.1     ragge 	struct mbuf *m, *m0;
    320  1.13     ragge 	int idx, len, i, totlen, error;
    321   1.4      matt 	int old_inq = sc->sc_inq;
    322   1.1     ragge 	short orword;
    323   1.1     ragge 
    324   1.1     ragge 	while (sc->sc_inq < (TXDESCS - 1)) {
    325   1.1     ragge 
    326   1.1     ragge 		if (sc->sc_setup) {
    327   1.1     ragge 			ze_setup(sc);
    328   1.1     ragge 			continue;
    329   1.1     ragge 		}
    330   1.1     ragge 		idx = sc->sc_nexttx;
    331  1.11   thorpej 		IFQ_POLL(&sc->sc_if.if_snd, m);
    332   1.1     ragge 		if (m == 0)
    333   1.1     ragge 			goto out;
    334   1.1     ragge 		/*
    335   1.1     ragge 		 * Count number of mbufs in chain.
    336   1.1     ragge 		 * Always do DMA directly from mbufs, therefore the transmit
    337   1.1     ragge 		 * ring is really big.
    338   1.1     ragge 		 */
    339   1.1     ragge 		for (m0 = m, i = 0; m0; m0 = m0->m_next)
    340   1.1     ragge 			if (m0->m_len)
    341   1.1     ragge 				i++;
    342   1.1     ragge 		if (i >= TXDESCS)
    343   1.1     ragge 			panic("zestart"); /* XXX */
    344   1.1     ragge 
    345   1.1     ragge 		if ((i + sc->sc_inq) >= (TXDESCS - 1)) {
    346   1.1     ragge 			ifp->if_flags |= IFF_OACTIVE;
    347   1.1     ragge 			goto out;
    348   1.1     ragge 		}
    349  1.26     perry 
    350   1.1     ragge #if NBPFILTER > 0
    351   1.1     ragge 		if (ifp->if_bpf)
    352   1.1     ragge 			bpf_mtap(ifp->if_bpf, m);
    353   1.1     ragge #endif
    354   1.1     ragge 		/*
    355   1.1     ragge 		 * m now points to a mbuf chain that can be loaded.
    356   1.1     ragge 		 * Loop around and set it.
    357   1.1     ragge 		 */
    358   1.1     ragge 		totlen = 0;
    359   1.1     ragge 		for (m0 = m; m0; m0 = m0->m_next) {
    360   1.1     ragge 			error = bus_dmamap_load(sc->sc_dmat, sc->sc_xmtmap[idx],
    361  1.17   thorpej 			    mtod(m0, void *), m0->m_len, 0, BUS_DMA_WRITE);
    362   1.1     ragge 			buffer = sc->sc_xmtmap[idx]->dm_segs[0].ds_addr;
    363   1.1     ragge 			len = m0->m_len;
    364   1.1     ragge 			if (len == 0)
    365   1.1     ragge 				continue;
    366   1.1     ragge 
    367   1.1     ragge 			totlen += len;
    368   1.1     ragge 			/* Word alignment calc */
    369   1.1     ragge 			orword = 0;
    370   1.1     ragge 			if (totlen == len)
    371   1.1     ragge 				orword = ZE_TDES1_FS;
    372   1.1     ragge 			if (totlen == m->m_pkthdr.len) {
    373   1.1     ragge 				orword |= ZE_TDES1_LS;
    374   1.1     ragge 				sc->sc_txmbuf[idx] = m;
    375   1.1     ragge 			}
    376   1.1     ragge 			zc->zc_xmit[idx].ze_bufsize = len;
    377   1.1     ragge 			zc->zc_xmit[idx].ze_bufaddr = (char *)buffer;
    378   1.1     ragge 			zc->zc_xmit[idx].ze_tdes1 = orword | ZE_TDES1_IC;
    379   1.1     ragge 			zc->zc_xmit[idx].ze_tdr = ZE_TDR_OW;
    380   1.1     ragge 
    381   1.1     ragge 			if (++idx == TXDESCS)
    382   1.1     ragge 				idx = 0;
    383   1.1     ragge 			sc->sc_inq++;
    384   1.1     ragge 		}
    385  1.11   thorpej 		IFQ_DEQUEUE(&ifp->if_snd, m);
    386   1.1     ragge #ifdef DIAGNOSTIC
    387   1.1     ragge 		if (totlen != m->m_pkthdr.len)
    388   1.1     ragge 			panic("zestart: len fault");
    389   1.1     ragge #endif
    390   1.1     ragge 
    391   1.1     ragge 		/*
    392   1.1     ragge 		 * Kick off the transmit logic, if it is stopped.
    393   1.1     ragge 		 */
    394   1.1     ragge 		if ((ZE_RCSR(ZE_CSR5) & ZE_NICSR5_TS) != ZE_NICSR5_TS_RUN)
    395   1.1     ragge 			ZE_WCSR(ZE_CSR1, -1);
    396   1.1     ragge 		sc->sc_nexttx = idx;
    397   1.1     ragge 	}
    398   1.1     ragge 	if (sc->sc_inq == (TXDESCS - 1))
    399   1.1     ragge 		ifp->if_flags |= IFF_OACTIVE;
    400   1.1     ragge 
    401   1.4      matt out:	if (old_inq < sc->sc_inq)
    402   1.1     ragge 		ifp->if_timer = 5; /* If transmit logic dies */
    403   1.1     ragge }
    404   1.1     ragge 
    405   1.1     ragge int
    406   1.1     ragge sgec_intr(sc)
    407   1.1     ragge 	struct ze_softc *sc;
    408   1.1     ragge {
    409   1.1     ragge 	struct ze_cdata *zc = sc->sc_zedata;
    410   1.1     ragge 	struct ifnet *ifp = &sc->sc_if;
    411   1.1     ragge 	struct mbuf *m;
    412   1.1     ragge 	int csr, len;
    413   1.1     ragge 
    414   1.1     ragge 	csr = ZE_RCSR(ZE_CSR5);
    415   1.1     ragge 	if ((csr & ZE_NICSR5_IS) == 0) /* Wasn't we */
    416   1.1     ragge 		return 0;
    417   1.1     ragge 	ZE_WCSR(ZE_CSR5, csr);
    418   1.1     ragge 
    419  1.24   thorpej 	if (csr & ZE_NICSR5_RI) {
    420   1.1     ragge 		while ((zc->zc_recv[sc->sc_nextrx].ze_framelen &
    421   1.1     ragge 		    ZE_FRAMELEN_OW) == 0) {
    422   1.1     ragge 
    423   1.3      matt 			ifp->if_ipackets++;
    424   1.1     ragge 			m = sc->sc_rxmbuf[sc->sc_nextrx];
    425   1.1     ragge 			len = zc->zc_recv[sc->sc_nextrx].ze_framelen;
    426   1.1     ragge 			ze_add_rxbuf(sc, sc->sc_nextrx);
    427   1.1     ragge 			if (++sc->sc_nextrx == RXDESCS)
    428   1.1     ragge 				sc->sc_nextrx = 0;
    429  1.24   thorpej 			if (len < ETHER_MIN_LEN) {
    430  1.24   thorpej 				ifp->if_ierrors++;
    431  1.24   thorpej 				m_freem(m);
    432  1.24   thorpej 			} else {
    433  1.24   thorpej 				m->m_pkthdr.rcvif = ifp;
    434  1.24   thorpej 				m->m_pkthdr.len = m->m_len =
    435  1.24   thorpej 				    len - ETHER_CRC_LEN;
    436   1.1     ragge #if NBPFILTER > 0
    437  1.24   thorpej 				if (ifp->if_bpf)
    438  1.24   thorpej 					bpf_mtap(ifp->if_bpf, m);
    439   1.1     ragge #endif
    440  1.24   thorpej 				(*ifp->if_input)(ifp, m);
    441  1.24   thorpej 			}
    442   1.1     ragge 		}
    443  1.24   thorpej 	}
    444   1.1     ragge 
    445   1.1     ragge 	if (csr & ZE_NICSR5_TI) {
    446   1.1     ragge 		while ((zc->zc_xmit[sc->sc_lastack].ze_tdr & ZE_TDR_OW) == 0) {
    447   1.1     ragge 			int idx = sc->sc_lastack;
    448   1.1     ragge 
    449   1.1     ragge 			if (sc->sc_lastack == sc->sc_nexttx)
    450   1.1     ragge 				break;
    451   1.1     ragge 			sc->sc_inq--;
    452   1.1     ragge 			if (++sc->sc_lastack == TXDESCS)
    453   1.1     ragge 				sc->sc_lastack = 0;
    454   1.1     ragge 
    455   1.1     ragge 			if ((zc->zc_xmit[idx].ze_tdes1 & ZE_TDES1_DT) ==
    456   1.1     ragge 			    ZE_TDES1_DT_SETUP)
    457   1.1     ragge 				continue;
    458   1.4      matt 			/* XXX collect statistics */
    459   1.4      matt 			if (zc->zc_xmit[idx].ze_tdes1 & ZE_TDES1_LS)
    460   1.4      matt 				ifp->if_opackets++;
    461   1.1     ragge 			bus_dmamap_unload(sc->sc_dmat, sc->sc_xmtmap[idx]);
    462   1.1     ragge 			if (sc->sc_txmbuf[idx]) {
    463   1.1     ragge 				m_freem(sc->sc_txmbuf[idx]);
    464   1.1     ragge 				sc->sc_txmbuf[idx] = 0;
    465   1.1     ragge 			}
    466   1.1     ragge 		}
    467   1.4      matt 		if (sc->sc_inq == 0)
    468   1.4      matt 			ifp->if_timer = 0;
    469   1.1     ragge 		ifp->if_flags &= ~IFF_OACTIVE;
    470   1.1     ragge 		zestart(ifp); /* Put in more in queue */
    471   1.1     ragge 	}
    472   1.1     ragge 	return 1;
    473   1.1     ragge }
    474   1.1     ragge 
    475   1.1     ragge /*
    476   1.1     ragge  * Process an ioctl request.
    477   1.1     ragge  */
    478   1.1     ragge int
    479   1.1     ragge zeioctl(ifp, cmd, data)
    480   1.2  augustss 	struct ifnet *ifp;
    481   1.1     ragge 	u_long cmd;
    482   1.1     ragge 	caddr_t data;
    483   1.1     ragge {
    484   1.1     ragge 	struct ze_softc *sc = ifp->if_softc;
    485   1.1     ragge 	struct ifreq *ifr = (struct ifreq *)data;
    486   1.1     ragge 	struct ifaddr *ifa = (struct ifaddr *)data;
    487   1.1     ragge 	int s = splnet(), error = 0;
    488   1.1     ragge 
    489   1.1     ragge 	switch (cmd) {
    490   1.1     ragge 
    491   1.1     ragge 	case SIOCSIFADDR:
    492   1.1     ragge 		ifp->if_flags |= IFF_UP;
    493   1.1     ragge 		switch(ifa->ifa_addr->sa_family) {
    494   1.1     ragge #ifdef INET
    495   1.1     ragge 		case AF_INET:
    496   1.1     ragge 			zeinit(sc);
    497   1.1     ragge 			arp_ifinit(ifp, ifa);
    498   1.1     ragge 			break;
    499   1.1     ragge #endif
    500   1.1     ragge 		}
    501   1.1     ragge 		break;
    502   1.1     ragge 
    503   1.1     ragge 	case SIOCSIFFLAGS:
    504   1.1     ragge 		if ((ifp->if_flags & IFF_UP) == 0 &&
    505   1.1     ragge 		    (ifp->if_flags & IFF_RUNNING) != 0) {
    506   1.1     ragge 			/*
    507   1.1     ragge 			 * If interface is marked down and it is running,
    508   1.1     ragge 			 * stop it. (by disabling receive mechanism).
    509   1.1     ragge 			 */
    510   1.1     ragge 			ZE_WCSR(ZE_CSR6, ZE_RCSR(ZE_CSR6) &
    511   1.1     ragge 			    ~(ZE_NICSR6_ST|ZE_NICSR6_SR));
    512   1.1     ragge 			ifp->if_flags &= ~IFF_RUNNING;
    513   1.1     ragge 		} else if ((ifp->if_flags & IFF_UP) != 0 &&
    514   1.1     ragge 			   (ifp->if_flags & IFF_RUNNING) == 0) {
    515   1.1     ragge 			/*
    516   1.1     ragge 			 * If interface it marked up and it is stopped, then
    517   1.1     ragge 			 * start it.
    518   1.1     ragge 			 */
    519   1.1     ragge 			zeinit(sc);
    520   1.1     ragge 		} else if ((ifp->if_flags & IFF_UP) != 0) {
    521   1.1     ragge 			/*
    522   1.1     ragge 			 * Send a new setup packet to match any new changes.
    523   1.1     ragge 			 * (Like IFF_PROMISC etc)
    524   1.1     ragge 			 */
    525   1.1     ragge 			ze_setup(sc);
    526   1.1     ragge 		}
    527   1.1     ragge 		break;
    528   1.1     ragge 
    529   1.1     ragge 	case SIOCADDMULTI:
    530   1.1     ragge 	case SIOCDELMULTI:
    531   1.1     ragge 		/*
    532   1.1     ragge 		 * Update our multicast list.
    533   1.1     ragge 		 */
    534   1.1     ragge 		error = (cmd == SIOCADDMULTI) ?
    535   1.1     ragge 			ether_addmulti(ifr, &sc->sc_ec):
    536   1.1     ragge 			ether_delmulti(ifr, &sc->sc_ec);
    537   1.1     ragge 
    538   1.1     ragge 		if (error == ENETRESET) {
    539   1.1     ragge 			/*
    540   1.1     ragge 			 * Multicast list has changed; set the hardware filter
    541   1.1     ragge 			 * accordingly.
    542   1.1     ragge 			 */
    543  1.23   thorpej 			if (ifp->if_flags & IFF_RUNNING)
    544  1.23   thorpej 				ze_setup(sc);
    545   1.1     ragge 			error = 0;
    546   1.1     ragge 		}
    547   1.1     ragge 		break;
    548   1.1     ragge 
    549   1.1     ragge 	default:
    550   1.1     ragge 		error = EINVAL;
    551   1.1     ragge 
    552   1.1     ragge 	}
    553   1.1     ragge 	splx(s);
    554   1.1     ragge 	return (error);
    555   1.1     ragge }
    556   1.1     ragge 
    557   1.1     ragge /*
    558   1.1     ragge  * Add a receive buffer to the indicated descriptor.
    559   1.1     ragge  */
    560   1.1     ragge int
    561   1.1     ragge ze_add_rxbuf(sc, i)
    562   1.1     ragge 	struct ze_softc *sc;
    563   1.1     ragge 	int i;
    564   1.1     ragge {
    565   1.1     ragge 	struct mbuf *m;
    566   1.1     ragge 	struct ze_rdes *rp;
    567   1.1     ragge 	int error;
    568   1.1     ragge 
    569   1.1     ragge 	MGETHDR(m, M_DONTWAIT, MT_DATA);
    570   1.1     ragge 	if (m == NULL)
    571   1.1     ragge 		return (ENOBUFS);
    572   1.1     ragge 
    573  1.22      matt 	MCLAIM(m, &sc->sc_ec.ec_rx_mowner);
    574   1.1     ragge 	MCLGET(m, M_DONTWAIT);
    575   1.1     ragge 	if ((m->m_flags & M_EXT) == 0) {
    576   1.1     ragge 		m_freem(m);
    577   1.1     ragge 		return (ENOBUFS);
    578   1.1     ragge 	}
    579   1.1     ragge 
    580   1.1     ragge 	if (sc->sc_rxmbuf[i] != NULL)
    581   1.1     ragge 		bus_dmamap_unload(sc->sc_dmat, sc->sc_rcvmap[i]);
    582   1.1     ragge 
    583   1.1     ragge 	error = bus_dmamap_load(sc->sc_dmat, sc->sc_rcvmap[i],
    584  1.17   thorpej 	    m->m_ext.ext_buf, m->m_ext.ext_size, NULL,
    585  1.17   thorpej 	    BUS_DMA_READ|BUS_DMA_NOWAIT);
    586   1.1     ragge 	if (error)
    587  1.19    provos 		panic("%s: can't load rx DMA map %d, error = %d",
    588   1.1     ragge 		    sc->sc_dev.dv_xname, i, error);
    589   1.1     ragge 	sc->sc_rxmbuf[i] = m;
    590   1.1     ragge 
    591   1.1     ragge 	bus_dmamap_sync(sc->sc_dmat, sc->sc_rcvmap[i], 0,
    592   1.1     ragge 	    sc->sc_rcvmap[i]->dm_mapsize, BUS_DMASYNC_PREREAD);
    593   1.1     ragge 
    594   1.1     ragge 	/*
    595   1.1     ragge 	 * We know that the mbuf cluster is page aligned. Also, be sure
    596   1.1     ragge 	 * that the IP header will be longword aligned.
    597   1.1     ragge 	 */
    598   1.1     ragge 	m->m_data += 2;
    599   1.1     ragge 	rp = &sc->sc_zedata->zc_recv[i];
    600   1.1     ragge 	rp->ze_bufsize = (m->m_ext.ext_size - 2);
    601   1.1     ragge 	rp->ze_bufaddr = (char *)sc->sc_rcvmap[i]->dm_segs[0].ds_addr + 2;
    602   1.1     ragge 	rp->ze_framelen = ZE_FRAMELEN_OW;
    603   1.1     ragge 
    604   1.1     ragge 	return (0);
    605   1.1     ragge }
    606   1.1     ragge 
    607   1.1     ragge /*
    608   1.1     ragge  * Create a setup packet and put in queue for sending.
    609   1.1     ragge  */
    610   1.1     ragge void
    611   1.1     ragge ze_setup(sc)
    612   1.1     ragge 	struct ze_softc *sc;
    613   1.1     ragge {
    614   1.1     ragge 	struct ether_multi *enm;
    615   1.1     ragge 	struct ether_multistep step;
    616   1.1     ragge 	struct ze_cdata *zc = sc->sc_zedata;
    617   1.1     ragge 	struct ifnet *ifp = &sc->sc_if;
    618   1.1     ragge 	u_int8_t *enaddr = LLADDR(ifp->if_sadl);
    619  1.13     ragge 	int j, idx, reg;
    620   1.1     ragge 
    621   1.1     ragge 	if (sc->sc_inq == (TXDESCS - 1)) {
    622   1.1     ragge 		sc->sc_setup = 1;
    623   1.1     ragge 		return;
    624   1.1     ragge 	}
    625   1.1     ragge 	sc->sc_setup = 0;
    626   1.1     ragge 	/*
    627   1.1     ragge 	 * Init the setup packet with valid info.
    628   1.1     ragge 	 */
    629   1.1     ragge 	memset(zc->zc_setup, 0xff, sizeof(zc->zc_setup)); /* Broadcast */
    630  1.15   thorpej 	memcpy(zc->zc_setup, enaddr, ETHER_ADDR_LEN);
    631   1.1     ragge 
    632   1.1     ragge 	/*
    633  1.26     perry 	 * Multicast handling. The SGEC can handle up to 16 direct
    634   1.1     ragge 	 * ethernet addresses.
    635   1.1     ragge 	 */
    636   1.1     ragge 	j = 16;
    637   1.1     ragge 	ifp->if_flags &= ~IFF_ALLMULTI;
    638   1.1     ragge 	ETHER_FIRST_MULTI(step, &sc->sc_ec, enm);
    639   1.1     ragge 	while (enm != NULL) {
    640  1.14   thorpej 		if (memcmp(enm->enm_addrlo, enm->enm_addrhi, 6)) {
    641   1.1     ragge 			ifp->if_flags |= IFF_ALLMULTI;
    642   1.1     ragge 			break;
    643   1.1     ragge 		}
    644  1.15   thorpej 		memcpy(&zc->zc_setup[j], enm->enm_addrlo, ETHER_ADDR_LEN);
    645   1.1     ragge 		j += 8;
    646   1.1     ragge 		ETHER_NEXT_MULTI(step, enm);
    647   1.1     ragge 		if ((enm != NULL)&& (j == 128)) {
    648   1.1     ragge 			ifp->if_flags |= IFF_ALLMULTI;
    649   1.1     ragge 			break;
    650   1.1     ragge 		}
    651   1.1     ragge 	}
    652   1.7   thorpej 
    653   1.7   thorpej 	/*
    654   1.7   thorpej 	 * ALLMULTI implies PROMISC in this driver.
    655   1.7   thorpej 	 */
    656   1.7   thorpej 	if (ifp->if_flags & IFF_ALLMULTI)
    657   1.7   thorpej 		ifp->if_flags |= IFF_PROMISC;
    658   1.7   thorpej 	else if (ifp->if_pcount == 0)
    659   1.7   thorpej 		ifp->if_flags &= ~IFF_PROMISC;
    660   1.1     ragge 
    661   1.1     ragge 	/*
    662   1.1     ragge 	 * Fiddle with the receive logic.
    663   1.1     ragge 	 */
    664   1.1     ragge 	reg = ZE_RCSR(ZE_CSR6);
    665   1.1     ragge 	DELAY(10);
    666   1.1     ragge 	ZE_WCSR(ZE_CSR6, reg & ~ZE_NICSR6_SR); /* Stop rx */
    667   1.1     ragge 	reg &= ~ZE_NICSR6_AF;
    668   1.1     ragge 	if (ifp->if_flags & IFF_PROMISC)
    669   1.1     ragge 		reg |= ZE_NICSR6_AF_PROM;
    670   1.1     ragge 	else if (ifp->if_flags & IFF_ALLMULTI)
    671   1.1     ragge 		reg |= ZE_NICSR6_AF_ALLM;
    672   1.1     ragge 	DELAY(10);
    673   1.1     ragge 	ZE_WCSR(ZE_CSR6, reg);
    674   1.1     ragge 	/*
    675   1.1     ragge 	 * Only send a setup packet if needed.
    676   1.1     ragge 	 */
    677   1.1     ragge 	if ((ifp->if_flags & (IFF_PROMISC|IFF_ALLMULTI)) == 0) {
    678   1.1     ragge 		idx = sc->sc_nexttx;
    679   1.1     ragge 		zc->zc_xmit[idx].ze_tdes1 = ZE_TDES1_DT_SETUP;
    680   1.1     ragge 		zc->zc_xmit[idx].ze_bufsize = 128;
    681   1.1     ragge 		zc->zc_xmit[idx].ze_bufaddr = sc->sc_pzedata->zc_setup;
    682   1.1     ragge 		zc->zc_xmit[idx].ze_tdr = ZE_TDR_OW;
    683   1.1     ragge 
    684   1.1     ragge 		if ((ZE_RCSR(ZE_CSR5) & ZE_NICSR5_TS) != ZE_NICSR5_TS_RUN)
    685   1.1     ragge 			ZE_WCSR(ZE_CSR1, -1);
    686   1.1     ragge 
    687   1.1     ragge 		sc->sc_inq++;
    688   1.1     ragge 		if (++sc->sc_nexttx == TXDESCS)
    689   1.1     ragge 			sc->sc_nexttx = 0;
    690   1.1     ragge 	}
    691   1.1     ragge }
    692   1.1     ragge 
    693   1.1     ragge /*
    694   1.1     ragge  * Check for dead transmit logic.
    695   1.1     ragge  */
    696   1.1     ragge void
    697   1.1     ragge zetimeout(ifp)
    698   1.1     ragge 	struct ifnet *ifp;
    699   1.1     ragge {
    700   1.1     ragge 	struct ze_softc *sc = ifp->if_softc;
    701   1.1     ragge 
    702   1.1     ragge 	if (sc->sc_inq == 0)
    703   1.1     ragge 		return;
    704   1.1     ragge 
    705   1.1     ragge 	printf("%s: xmit logic died, resetting...\n", sc->sc_dev.dv_xname);
    706   1.1     ragge 	/*
    707   1.1     ragge 	 * Do a reset of interface, to get it going again.
    708   1.1     ragge 	 * Will it work by just restart the transmit logic?
    709   1.1     ragge 	 */
    710   1.1     ragge 	zeinit(sc);
    711   1.1     ragge }
    712   1.1     ragge 
    713   1.1     ragge /*
    714   1.1     ragge  * Reset chip:
    715   1.1     ragge  * Set/reset the reset flag.
    716   1.1     ragge  *  Write interrupt vector.
    717   1.1     ragge  *  Write ring buffer addresses.
    718   1.1     ragge  *  Write SBR.
    719   1.1     ragge  */
    720   1.1     ragge int
    721   1.1     ragge zereset(sc)
    722   1.1     ragge 	struct ze_softc *sc;
    723   1.1     ragge {
    724  1.13     ragge 	int reg, i;
    725   1.1     ragge 
    726   1.1     ragge 	ZE_WCSR(ZE_CSR6, ZE_NICSR6_RE);
    727   1.1     ragge 	DELAY(50000);
    728   1.1     ragge 	if (ZE_RCSR(ZE_CSR6) & ZE_NICSR5_SF) {
    729   1.1     ragge 		printf("%s: selftest failed\n", sc->sc_dev.dv_xname);
    730   1.1     ragge 		return 1;
    731   1.1     ragge 	}
    732   1.1     ragge 
    733   1.1     ragge 	/*
    734   1.1     ragge 	 * Get the vector that were set at match time, and remember it.
    735   1.1     ragge 	 * WHICH VECTOR TO USE? Take one unused. XXX
    736   1.1     ragge 	 * Funny way to set vector described in the programmers manual.
    737   1.1     ragge 	 */
    738   1.1     ragge 	reg = ZE_NICSR0_IPL14 | sc->sc_intvec | 0x1fff0003; /* SYNC/ASYNC??? */
    739   1.1     ragge 	i = 10;
    740   1.1     ragge 	do {
    741   1.1     ragge 		if (i-- == 0) {
    742   1.1     ragge 			printf("Failing SGEC CSR0 init\n");
    743   1.1     ragge 			return 1;
    744   1.1     ragge 		}
    745   1.1     ragge 		ZE_WCSR(ZE_CSR0, reg);
    746   1.1     ragge 	} while (ZE_RCSR(ZE_CSR0) != reg);
    747   1.1     ragge 
    748   1.1     ragge 	ZE_WCSR(ZE_CSR3, (vaddr_t)sc->sc_pzedata->zc_recv);
    749   1.1     ragge 	ZE_WCSR(ZE_CSR4, (vaddr_t)sc->sc_pzedata->zc_xmit);
    750   1.1     ragge 	return 0;
    751   1.1     ragge }
    752