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if_sip.c revision 1.2.2.6
      1  1.2.2.6   bouyer /*	$NetBSD: if_sip.c,v 1.2.2.6 2001/03/27 15:32:07 bouyer Exp $	*/
      2      1.1  thorpej 
      3      1.1  thorpej /*-
      4      1.1  thorpej  * Copyright (c) 1999 Network Computer, Inc.
      5      1.1  thorpej  * All rights reserved.
      6      1.1  thorpej  *
      7      1.1  thorpej  * Redistribution and use in source and binary forms, with or without
      8      1.1  thorpej  * modification, are permitted provided that the following conditions
      9      1.1  thorpej  * are met:
     10      1.1  thorpej  * 1. Redistributions of source code must retain the above copyright
     11      1.1  thorpej  *    notice, this list of conditions and the following disclaimer.
     12      1.1  thorpej  * 2. Redistributions in binary form must reproduce the above copyright
     13      1.1  thorpej  *    notice, this list of conditions and the following disclaimer in the
     14      1.1  thorpej  *    documentation and/or other materials provided with the distribution.
     15      1.1  thorpej  * 3. Neither the name of Network Computer, Inc. nor the names of its
     16      1.1  thorpej  *    contributors may be used to endorse or promote products derived
     17      1.1  thorpej  *    from this software without specific prior written permission.
     18      1.1  thorpej  *
     19      1.1  thorpej  * THIS SOFTWARE IS PROVIDED BY NETWORK COMPUTER, INC. AND CONTRIBUTORS
     20      1.1  thorpej  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21      1.1  thorpej  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22      1.1  thorpej  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23      1.1  thorpej  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24      1.1  thorpej  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25      1.1  thorpej  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26      1.1  thorpej  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27      1.1  thorpej  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28      1.1  thorpej  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29      1.1  thorpej  * POSSIBILITY OF SUCH DAMAGE.
     30      1.1  thorpej  */
     31      1.1  thorpej 
     32      1.1  thorpej /*
     33  1.2.2.1   bouyer  * Device driver for the Silicon Integrated Systems SiS 900 and
     34  1.2.2.1   bouyer  * SiS 7016 10/100 PCI Ethernet controllers.
     35      1.1  thorpej  *
     36      1.1  thorpej  * Written by Jason R. Thorpe for Network Computer, Inc.
     37      1.1  thorpej  */
     38      1.1  thorpej 
     39      1.1  thorpej #include "opt_inet.h"
     40      1.1  thorpej #include "opt_ns.h"
     41      1.1  thorpej #include "bpfilter.h"
     42      1.1  thorpej 
     43      1.1  thorpej #include <sys/param.h>
     44      1.1  thorpej #include <sys/systm.h>
     45  1.2.2.1   bouyer #include <sys/callout.h>
     46      1.1  thorpej #include <sys/mbuf.h>
     47      1.1  thorpej #include <sys/malloc.h>
     48      1.1  thorpej #include <sys/kernel.h>
     49      1.1  thorpej #include <sys/socket.h>
     50      1.1  thorpej #include <sys/ioctl.h>
     51      1.1  thorpej #include <sys/errno.h>
     52      1.1  thorpej #include <sys/device.h>
     53      1.1  thorpej #include <sys/queue.h>
     54      1.1  thorpej 
     55  1.2.2.1   bouyer #include <uvm/uvm_extern.h>		/* for PAGE_SIZE */
     56      1.1  thorpej 
     57      1.1  thorpej #include <net/if.h>
     58      1.1  thorpej #include <net/if_dl.h>
     59      1.1  thorpej #include <net/if_media.h>
     60      1.1  thorpej #include <net/if_ether.h>
     61      1.1  thorpej 
     62      1.1  thorpej #if NBPFILTER > 0
     63      1.1  thorpej #include <net/bpf.h>
     64      1.1  thorpej #endif
     65      1.1  thorpej 
     66      1.1  thorpej #ifdef INET
     67      1.1  thorpej #include <netinet/in.h>
     68      1.1  thorpej #include <netinet/if_inarp.h>
     69      1.1  thorpej #endif
     70      1.1  thorpej 
     71      1.1  thorpej #ifdef NS
     72      1.1  thorpej #include <netns/ns.h>
     73      1.1  thorpej #include <netns/ns_if.h>
     74      1.1  thorpej #endif
     75      1.1  thorpej 
     76      1.1  thorpej #include <machine/bus.h>
     77      1.1  thorpej #include <machine/intr.h>
     78  1.2.2.1   bouyer #include <machine/endian.h>
     79      1.1  thorpej 
     80  1.2.2.1   bouyer #include <dev/mii/mii.h>
     81      1.1  thorpej #include <dev/mii/miivar.h>
     82      1.1  thorpej 
     83      1.1  thorpej #include <dev/pci/pcireg.h>
     84      1.1  thorpej #include <dev/pci/pcivar.h>
     85      1.1  thorpej #include <dev/pci/pcidevs.h>
     86      1.1  thorpej 
     87      1.1  thorpej #include <dev/pci/if_sipreg.h>
     88      1.1  thorpej 
     89      1.1  thorpej /*
     90      1.1  thorpej  * Transmit descriptor list size.  This is arbitrary, but allocate
     91      1.1  thorpej  * enough descriptors for 64 pending transmissions, and 16 segments
     92      1.1  thorpej  * per packet.  This MUST work out to a power of 2.
     93      1.1  thorpej  */
     94      1.1  thorpej #define	SIP_NTXSEGS		16
     95      1.1  thorpej 
     96      1.1  thorpej #define	SIP_TXQUEUELEN		64
     97      1.1  thorpej #define	SIP_NTXDESC		(SIP_TXQUEUELEN * SIP_NTXSEGS)
     98      1.1  thorpej #define	SIP_NTXDESC_MASK	(SIP_NTXDESC - 1)
     99      1.1  thorpej #define	SIP_NEXTTX(x)		(((x) + 1) & SIP_NTXDESC_MASK)
    100      1.1  thorpej 
    101      1.1  thorpej /*
    102      1.1  thorpej  * Receive descriptor list size.  We have one Rx buffer per incoming
    103      1.1  thorpej  * packet, so this logic is a little simpler.
    104      1.1  thorpej  */
    105      1.1  thorpej #define	SIP_NRXDESC		64
    106      1.1  thorpej #define	SIP_NRXDESC_MASK	(SIP_NRXDESC - 1)
    107      1.1  thorpej #define	SIP_NEXTRX(x)		(((x) + 1) & SIP_NRXDESC_MASK)
    108      1.1  thorpej 
    109      1.1  thorpej /*
    110      1.1  thorpej  * Control structures are DMA'd to the SiS900 chip.  We allocate them in
    111      1.1  thorpej  * a single clump that maps to a single DMA segment to make several things
    112      1.1  thorpej  * easier.
    113      1.1  thorpej  */
    114      1.1  thorpej struct sip_control_data {
    115      1.1  thorpej 	/*
    116      1.1  thorpej 	 * The transmit descriptors.
    117      1.1  thorpej 	 */
    118      1.1  thorpej 	struct sip_desc scd_txdescs[SIP_NTXDESC];
    119      1.1  thorpej 
    120      1.1  thorpej 	/*
    121      1.1  thorpej 	 * The receive descriptors.
    122      1.1  thorpej 	 */
    123      1.1  thorpej 	struct sip_desc scd_rxdescs[SIP_NRXDESC];
    124      1.1  thorpej };
    125      1.1  thorpej 
    126      1.1  thorpej #define	SIP_CDOFF(x)	offsetof(struct sip_control_data, x)
    127      1.1  thorpej #define	SIP_CDTXOFF(x)	SIP_CDOFF(scd_txdescs[(x)])
    128      1.1  thorpej #define	SIP_CDRXOFF(x)	SIP_CDOFF(scd_rxdescs[(x)])
    129      1.1  thorpej 
    130      1.1  thorpej /*
    131      1.1  thorpej  * Software state for transmit jobs.
    132      1.1  thorpej  */
    133      1.1  thorpej struct sip_txsoft {
    134      1.1  thorpej 	struct mbuf *txs_mbuf;		/* head of our mbuf chain */
    135      1.1  thorpej 	bus_dmamap_t txs_dmamap;	/* our DMA map */
    136      1.1  thorpej 	int txs_firstdesc;		/* first descriptor in packet */
    137      1.1  thorpej 	int txs_lastdesc;		/* last descriptor in packet */
    138      1.1  thorpej 	SIMPLEQ_ENTRY(sip_txsoft) txs_q;
    139      1.1  thorpej };
    140      1.1  thorpej 
    141      1.1  thorpej SIMPLEQ_HEAD(sip_txsq, sip_txsoft);
    142      1.1  thorpej 
    143      1.1  thorpej /*
    144      1.1  thorpej  * Software state for receive jobs.
    145      1.1  thorpej  */
    146      1.1  thorpej struct sip_rxsoft {
    147      1.1  thorpej 	struct mbuf *rxs_mbuf;		/* head of our mbuf chain */
    148      1.1  thorpej 	bus_dmamap_t rxs_dmamap;	/* our DMA map */
    149      1.1  thorpej };
    150      1.1  thorpej 
    151      1.1  thorpej /*
    152      1.1  thorpej  * Software state per device.
    153      1.1  thorpej  */
    154      1.1  thorpej struct sip_softc {
    155      1.1  thorpej 	struct device sc_dev;		/* generic device information */
    156      1.1  thorpej 	bus_space_tag_t sc_st;		/* bus space tag */
    157      1.1  thorpej 	bus_space_handle_t sc_sh;	/* bus space handle */
    158      1.1  thorpej 	bus_dma_tag_t sc_dmat;		/* bus DMA tag */
    159      1.1  thorpej 	struct ethercom sc_ethercom;	/* ethernet common data */
    160      1.1  thorpej 	void *sc_sdhook;		/* shutdown hook */
    161      1.1  thorpej 
    162  1.2.2.1   bouyer 	const struct sip_product *sc_model; /* which model are we? */
    163  1.2.2.1   bouyer 
    164      1.1  thorpej 	void *sc_ih;			/* interrupt cookie */
    165      1.1  thorpej 
    166      1.1  thorpej 	struct mii_data sc_mii;		/* MII/media information */
    167      1.1  thorpej 
    168  1.2.2.1   bouyer 	struct callout sc_tick_ch;	/* tick callout */
    169  1.2.2.1   bouyer 
    170      1.1  thorpej 	bus_dmamap_t sc_cddmamap;	/* control data DMA map */
    171      1.1  thorpej #define	sc_cddma	sc_cddmamap->dm_segs[0].ds_addr
    172      1.1  thorpej 
    173      1.1  thorpej 	/*
    174      1.1  thorpej 	 * Software state for transmit and receive descriptors.
    175      1.1  thorpej 	 */
    176      1.1  thorpej 	struct sip_txsoft sc_txsoft[SIP_TXQUEUELEN];
    177      1.1  thorpej 	struct sip_rxsoft sc_rxsoft[SIP_NRXDESC];
    178      1.1  thorpej 
    179      1.1  thorpej 	/*
    180      1.1  thorpej 	 * Control data structures.
    181      1.1  thorpej 	 */
    182      1.1  thorpej 	struct sip_control_data *sc_control_data;
    183      1.1  thorpej #define	sc_txdescs	sc_control_data->scd_txdescs
    184      1.1  thorpej #define	sc_rxdescs	sc_control_data->scd_rxdescs
    185      1.1  thorpej 
    186      1.1  thorpej 	u_int32_t sc_txcfg;		/* prototype TXCFG register */
    187      1.1  thorpej 	u_int32_t sc_rxcfg;		/* prototype RXCFG register */
    188      1.1  thorpej 	u_int32_t sc_imr;		/* prototype IMR register */
    189      1.1  thorpej 	u_int32_t sc_rfcr;		/* prototype RFCR register */
    190      1.1  thorpej 
    191      1.1  thorpej 	u_int32_t sc_tx_fill_thresh;	/* transmit fill threshold */
    192      1.1  thorpej 	u_int32_t sc_tx_drain_thresh;	/* transmit drain threshold */
    193      1.1  thorpej 
    194      1.1  thorpej 	u_int32_t sc_rx_drain_thresh;	/* receive drain threshold */
    195      1.1  thorpej 
    196      1.1  thorpej 	int	sc_flags;		/* misc. flags; see below */
    197      1.1  thorpej 
    198      1.1  thorpej 	int	sc_txfree;		/* number of free Tx descriptors */
    199      1.1  thorpej 	int	sc_txnext;		/* next ready Tx descriptor */
    200      1.1  thorpej 
    201      1.1  thorpej 	struct sip_txsq sc_txfreeq;	/* free Tx descsofts */
    202      1.1  thorpej 	struct sip_txsq sc_txdirtyq;	/* dirty Tx descsofts */
    203      1.1  thorpej 
    204      1.1  thorpej 	int	sc_rxptr;		/* next ready Rx descriptor/descsoft */
    205      1.1  thorpej };
    206      1.1  thorpej 
    207      1.1  thorpej /* sc_flags */
    208      1.1  thorpej #define	SIPF_PAUSED	0x00000001	/* paused (802.3x flow control) */
    209      1.1  thorpej 
    210      1.1  thorpej #define	SIP_CDTXADDR(sc, x)	((sc)->sc_cddma + SIP_CDTXOFF((x)))
    211      1.1  thorpej #define	SIP_CDRXADDR(sc, x)	((sc)->sc_cddma + SIP_CDRXOFF((x)))
    212      1.1  thorpej 
    213      1.1  thorpej #define	SIP_CDTXSYNC(sc, x, n, ops)					\
    214      1.1  thorpej do {									\
    215      1.1  thorpej 	int __x, __n;							\
    216      1.1  thorpej 									\
    217      1.1  thorpej 	__x = (x);							\
    218      1.1  thorpej 	__n = (n);							\
    219      1.1  thorpej 									\
    220      1.1  thorpej 	/* If it will wrap around, sync to the end of the ring. */	\
    221      1.1  thorpej 	if ((__x + __n) > SIP_NTXDESC) {				\
    222      1.1  thorpej 		bus_dmamap_sync((sc)->sc_dmat, (sc)->sc_cddmamap,	\
    223      1.1  thorpej 		    SIP_CDTXOFF(__x), sizeof(struct sip_desc) *		\
    224      1.1  thorpej 		    (SIP_NTXDESC - __x), (ops));			\
    225      1.1  thorpej 		__n -= (SIP_NTXDESC - __x);				\
    226      1.1  thorpej 		__x = 0;						\
    227      1.1  thorpej 	}								\
    228      1.1  thorpej 									\
    229      1.1  thorpej 	/* Now sync whatever is left. */				\
    230      1.1  thorpej 	bus_dmamap_sync((sc)->sc_dmat, (sc)->sc_cddmamap,		\
    231      1.1  thorpej 	    SIP_CDTXOFF(__x), sizeof(struct sip_desc) * __n, (ops));	\
    232      1.1  thorpej } while (0)
    233      1.1  thorpej 
    234      1.1  thorpej #define	SIP_CDRXSYNC(sc, x, ops)					\
    235      1.1  thorpej 	bus_dmamap_sync((sc)->sc_dmat, (sc)->sc_cddmamap,		\
    236      1.1  thorpej 	    SIP_CDRXOFF((x)), sizeof(struct sip_desc), (ops))
    237      1.1  thorpej 
    238      1.1  thorpej /*
    239      1.1  thorpej  * Note we rely on MCLBYTES being a power of two below.
    240      1.1  thorpej  */
    241      1.1  thorpej #define	SIP_INIT_RXDESC(sc, x)						\
    242      1.1  thorpej do {									\
    243      1.1  thorpej 	struct sip_rxsoft *__rxs = &(sc)->sc_rxsoft[(x)];		\
    244      1.1  thorpej 	struct sip_desc *__sipd = &(sc)->sc_rxdescs[(x)];		\
    245      1.1  thorpej 									\
    246  1.2.2.1   bouyer 	__sipd->sipd_link = htole32(SIP_CDRXADDR((sc), SIP_NEXTRX((x)))); \
    247  1.2.2.1   bouyer 	__sipd->sipd_bufptr = htole32(__rxs->rxs_dmamap->dm_segs[0].ds_addr); \
    248  1.2.2.1   bouyer 	__sipd->sipd_cmdsts = htole32(CMDSTS_INTR |			\
    249  1.2.2.1   bouyer 	    ((MCLBYTES - 1) & CMDSTS_SIZE_MASK));			\
    250      1.1  thorpej 	SIP_CDRXSYNC((sc), (x), BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE); \
    251      1.1  thorpej } while (0)
    252      1.1  thorpej 
    253  1.2.2.1   bouyer #define SIP_TIMEOUT 1000
    254  1.2.2.1   bouyer 
    255      1.1  thorpej void	sip_start __P((struct ifnet *));
    256      1.1  thorpej void	sip_watchdog __P((struct ifnet *));
    257      1.1  thorpej int	sip_ioctl __P((struct ifnet *, u_long, caddr_t));
    258  1.2.2.1   bouyer int	sip_init __P((struct ifnet *));
    259  1.2.2.1   bouyer void	sip_stop __P((struct ifnet *, int));
    260      1.1  thorpej 
    261      1.1  thorpej void	sip_shutdown __P((void *));
    262      1.1  thorpej 
    263      1.1  thorpej void	sip_reset __P((struct sip_softc *));
    264      1.2  thorpej void	sip_rxdrain __P((struct sip_softc *));
    265      1.1  thorpej int	sip_add_rxbuf __P((struct sip_softc *, int));
    266      1.1  thorpej void	sip_read_eeprom __P((struct sip_softc *, int, int, u_int16_t *));
    267      1.1  thorpej void	sip_tick __P((void *));
    268      1.1  thorpej 
    269  1.2.2.1   bouyer void	sip_sis900_set_filter __P((struct sip_softc *));
    270  1.2.2.1   bouyer void	sip_dp83815_set_filter __P((struct sip_softc *));
    271  1.2.2.1   bouyer 
    272  1.2.2.5   bouyer void	sip_sis900_read_macaddr __P((struct sip_softc *, u_int8_t *));
    273  1.2.2.5   bouyer void	sip_dp83815_read_macaddr __P((struct sip_softc *, u_int8_t *));
    274  1.2.2.5   bouyer 
    275      1.1  thorpej int	sip_intr __P((void *));
    276      1.1  thorpej void	sip_txintr __P((struct sip_softc *));
    277      1.1  thorpej void	sip_rxintr __P((struct sip_softc *));
    278      1.1  thorpej 
    279  1.2.2.1   bouyer int	sip_sis900_mii_readreg __P((struct device *, int, int));
    280  1.2.2.1   bouyer void	sip_sis900_mii_writereg __P((struct device *, int, int, int));
    281  1.2.2.1   bouyer void	sip_sis900_mii_statchg __P((struct device *));
    282  1.2.2.1   bouyer 
    283  1.2.2.1   bouyer int	sip_dp83815_mii_readreg __P((struct device *, int, int));
    284  1.2.2.1   bouyer void	sip_dp83815_mii_writereg __P((struct device *, int, int, int));
    285  1.2.2.1   bouyer void	sip_dp83815_mii_statchg __P((struct device *));
    286      1.1  thorpej 
    287      1.1  thorpej int	sip_mediachange __P((struct ifnet *));
    288      1.1  thorpej void	sip_mediastatus __P((struct ifnet *, struct ifmediareq *));
    289      1.1  thorpej 
    290      1.1  thorpej int	sip_match __P((struct device *, struct cfdata *, void *));
    291      1.1  thorpej void	sip_attach __P((struct device *, struct device *, void *));
    292      1.1  thorpej 
    293      1.2  thorpej int	sip_copy_small = 0;
    294      1.2  thorpej 
    295      1.1  thorpej struct cfattach sip_ca = {
    296      1.1  thorpej 	sizeof(struct sip_softc), sip_match, sip_attach,
    297      1.1  thorpej };
    298      1.1  thorpej 
    299  1.2.2.1   bouyer /*
    300  1.2.2.1   bouyer  * Descriptions of the variants of the SiS900.
    301  1.2.2.1   bouyer  */
    302  1.2.2.1   bouyer struct sip_variant {
    303  1.2.2.1   bouyer 	int	(*sipv_mii_readreg) __P((struct device *, int, int));
    304  1.2.2.1   bouyer 	void	(*sipv_mii_writereg) __P((struct device *, int, int, int));
    305  1.2.2.1   bouyer 	void	(*sipv_mii_statchg) __P((struct device *));
    306  1.2.2.1   bouyer 	void	(*sipv_set_filter) __P((struct sip_softc *));
    307  1.2.2.5   bouyer 	void	(*sipv_read_macaddr) __P((struct sip_softc *, u_int8_t *));
    308  1.2.2.1   bouyer };
    309  1.2.2.1   bouyer 
    310  1.2.2.1   bouyer const struct sip_variant sip_variant_sis900 = {
    311  1.2.2.1   bouyer 	sip_sis900_mii_readreg, sip_sis900_mii_writereg,
    312  1.2.2.5   bouyer 	    sip_sis900_mii_statchg, sip_sis900_set_filter,
    313  1.2.2.5   bouyer 	    sip_sis900_read_macaddr
    314  1.2.2.1   bouyer };
    315  1.2.2.1   bouyer 
    316  1.2.2.1   bouyer const struct sip_variant sip_variant_dp83815 = {
    317  1.2.2.1   bouyer 	sip_dp83815_mii_readreg, sip_dp83815_mii_writereg,
    318  1.2.2.5   bouyer 	    sip_dp83815_mii_statchg, sip_dp83815_set_filter,
    319  1.2.2.5   bouyer 	    sip_dp83815_read_macaddr
    320  1.2.2.1   bouyer };
    321  1.2.2.1   bouyer 
    322  1.2.2.1   bouyer /*
    323  1.2.2.1   bouyer  * Devices supported by this driver.
    324  1.2.2.1   bouyer  */
    325  1.2.2.1   bouyer const struct sip_product {
    326  1.2.2.1   bouyer 	pci_vendor_id_t		sip_vendor;
    327  1.2.2.1   bouyer 	pci_product_id_t	sip_product;
    328  1.2.2.1   bouyer 	const char		*sip_name;
    329  1.2.2.1   bouyer 	const struct sip_variant *sip_variant;
    330  1.2.2.1   bouyer } sip_products[] = {
    331  1.2.2.1   bouyer 	{ PCI_VENDOR_SIS,	PCI_PRODUCT_SIS_900,
    332  1.2.2.1   bouyer 	  "SiS 900 10/100 Ethernet",
    333  1.2.2.1   bouyer 	  &sip_variant_sis900 },
    334  1.2.2.1   bouyer 	{ PCI_VENDOR_SIS,	PCI_PRODUCT_SIS_7016,
    335  1.2.2.1   bouyer 	  "SiS 7016 10/100 Ethernet",
    336  1.2.2.1   bouyer 	  &sip_variant_sis900 },
    337  1.2.2.1   bouyer 
    338  1.2.2.1   bouyer 	{ PCI_VENDOR_NS,	PCI_PRODUCT_NS_DP83815,
    339  1.2.2.1   bouyer 	  "NatSemi DP83815 10/100 Ethernet",
    340  1.2.2.1   bouyer 	  &sip_variant_dp83815 },
    341  1.2.2.1   bouyer 
    342  1.2.2.1   bouyer 	{ 0,			0,
    343  1.2.2.1   bouyer 	  NULL,
    344  1.2.2.1   bouyer 	  NULL },
    345  1.2.2.1   bouyer };
    346  1.2.2.1   bouyer 
    347      1.1  thorpej const struct sip_product *sip_lookup __P((const struct pci_attach_args *));
    348      1.1  thorpej 
    349      1.1  thorpej const struct sip_product *
    350      1.1  thorpej sip_lookup(pa)
    351      1.1  thorpej 	const struct pci_attach_args *pa;
    352      1.1  thorpej {
    353      1.1  thorpej 	const struct sip_product *sip;
    354      1.1  thorpej 
    355      1.1  thorpej 	for (sip = sip_products; sip->sip_name != NULL; sip++) {
    356      1.1  thorpej 		if (PCI_VENDOR(pa->pa_id) == sip->sip_vendor &&
    357      1.1  thorpej 		    PCI_PRODUCT(pa->pa_id) == sip->sip_product)
    358      1.1  thorpej 			return (sip);
    359      1.1  thorpej 	}
    360      1.1  thorpej 	return (NULL);
    361      1.1  thorpej }
    362      1.1  thorpej 
    363      1.1  thorpej int
    364      1.1  thorpej sip_match(parent, cf, aux)
    365      1.1  thorpej 	struct device *parent;
    366      1.1  thorpej 	struct cfdata *cf;
    367      1.1  thorpej 	void *aux;
    368      1.1  thorpej {
    369      1.1  thorpej 	struct pci_attach_args *pa = aux;
    370      1.1  thorpej 
    371      1.1  thorpej 	if (sip_lookup(pa) != NULL)
    372      1.1  thorpej 		return (1);
    373      1.1  thorpej 
    374      1.1  thorpej 	return (0);
    375      1.1  thorpej }
    376      1.1  thorpej 
    377      1.1  thorpej void
    378      1.1  thorpej sip_attach(parent, self, aux)
    379      1.1  thorpej 	struct device *parent, *self;
    380      1.1  thorpej 	void *aux;
    381      1.1  thorpej {
    382      1.1  thorpej 	struct sip_softc *sc = (struct sip_softc *) self;
    383      1.1  thorpej 	struct pci_attach_args *pa = aux;
    384      1.1  thorpej 	struct ifnet *ifp = &sc->sc_ethercom.ec_if;
    385      1.1  thorpej 	pci_chipset_tag_t pc = pa->pa_pc;
    386      1.1  thorpej 	pci_intr_handle_t ih;
    387      1.1  thorpej 	const char *intrstr = NULL;
    388      1.1  thorpej 	bus_space_tag_t iot, memt;
    389      1.1  thorpej 	bus_space_handle_t ioh, memh;
    390      1.1  thorpej 	bus_dma_segment_t seg;
    391      1.1  thorpej 	int ioh_valid, memh_valid;
    392      1.1  thorpej 	int i, rseg, error;
    393      1.1  thorpej 	const struct sip_product *sip;
    394      1.1  thorpej 	pcireg_t pmode;
    395  1.2.2.1   bouyer 	u_int8_t enaddr[ETHER_ADDR_LEN];
    396  1.2.2.1   bouyer 	int pmreg;
    397  1.2.2.1   bouyer 
    398  1.2.2.1   bouyer 	callout_init(&sc->sc_tick_ch);
    399      1.1  thorpej 
    400      1.1  thorpej 	sip = sip_lookup(pa);
    401      1.1  thorpej 	if (sip == NULL) {
    402      1.1  thorpej 		printf("\n");
    403      1.1  thorpej 		panic("sip_attach: impossible");
    404      1.1  thorpej 	}
    405      1.1  thorpej 
    406      1.1  thorpej 	printf(": %s\n", sip->sip_name);
    407      1.1  thorpej 
    408  1.2.2.1   bouyer 	sc->sc_model = sip;
    409  1.2.2.1   bouyer 
    410      1.1  thorpej 	/*
    411      1.1  thorpej 	 * Map the device.
    412      1.1  thorpej 	 */
    413      1.1  thorpej 	ioh_valid = (pci_mapreg_map(pa, SIP_PCI_CFGIOA,
    414      1.1  thorpej 	    PCI_MAPREG_TYPE_IO, 0,
    415      1.1  thorpej 	    &iot, &ioh, NULL, NULL) == 0);
    416      1.1  thorpej 	memh_valid = (pci_mapreg_map(pa, SIP_PCI_CFGMA,
    417      1.1  thorpej 	    PCI_MAPREG_TYPE_MEM|PCI_MAPREG_MEM_TYPE_32BIT, 0,
    418      1.1  thorpej 	    &memt, &memh, NULL, NULL) == 0);
    419      1.1  thorpej 
    420      1.1  thorpej 	if (memh_valid) {
    421      1.1  thorpej 		sc->sc_st = memt;
    422      1.1  thorpej 		sc->sc_sh = memh;
    423      1.1  thorpej 	} else if (ioh_valid) {
    424      1.1  thorpej 		sc->sc_st = iot;
    425      1.1  thorpej 		sc->sc_sh = ioh;
    426      1.1  thorpej 	} else {
    427      1.1  thorpej 		printf("%s: unable to map device registers\n",
    428      1.1  thorpej 		    sc->sc_dev.dv_xname);
    429      1.1  thorpej 		return;
    430      1.1  thorpej 	}
    431      1.1  thorpej 
    432      1.1  thorpej 	sc->sc_dmat = pa->pa_dmat;
    433      1.1  thorpej 
    434      1.1  thorpej 	/* Enable bus mastering. */
    435      1.1  thorpej 	pci_conf_write(pc, pa->pa_tag, PCI_COMMAND_STATUS_REG,
    436      1.1  thorpej 	    pci_conf_read(pc, pa->pa_tag, PCI_COMMAND_STATUS_REG) |
    437      1.1  thorpej 	    PCI_COMMAND_MASTER_ENABLE);
    438      1.1  thorpej 
    439      1.1  thorpej 	/* Get it out of power save mode if needed. */
    440  1.2.2.1   bouyer 	if (pci_get_capability(pc, pa->pa_tag, PCI_CAP_PWRMGMT, &pmreg, 0)) {
    441  1.2.2.1   bouyer 		pmode = pci_conf_read(pc, pa->pa_tag, pmreg + 4) & 0x3;
    442      1.1  thorpej 		if (pmode == 3) {
    443      1.1  thorpej 			/*
    444      1.1  thorpej 			 * The card has lost all configuration data in
    445      1.1  thorpej 			 * this state, so punt.
    446      1.1  thorpej 			 */
    447      1.1  thorpej 			printf("%s: unable to wake up from power state D3\n",
    448      1.1  thorpej 			    sc->sc_dev.dv_xname);
    449      1.1  thorpej 			return;
    450      1.1  thorpej 		}
    451      1.1  thorpej 		if (pmode != 0) {
    452      1.1  thorpej 			printf("%s: waking up from power state D%d\n",
    453      1.1  thorpej 			    sc->sc_dev.dv_xname, pmode);
    454  1.2.2.1   bouyer 			pci_conf_write(pc, pa->pa_tag, pmreg + 4, 0);
    455      1.1  thorpej 		}
    456      1.1  thorpej 	}
    457      1.1  thorpej 
    458      1.1  thorpej 	/*
    459      1.1  thorpej 	 * Map and establish our interrupt.
    460      1.1  thorpej 	 */
    461  1.2.2.3   bouyer 	if (pci_intr_map(pa, &ih)) {
    462      1.1  thorpej 		printf("%s: unable to map interrupt\n", sc->sc_dev.dv_xname);
    463      1.1  thorpej 		return;
    464      1.1  thorpej 	}
    465      1.1  thorpej 	intrstr = pci_intr_string(pc, ih);
    466      1.1  thorpej 	sc->sc_ih = pci_intr_establish(pc, ih, IPL_NET, sip_intr, sc);
    467      1.1  thorpej 	if (sc->sc_ih == NULL) {
    468      1.1  thorpej 		printf("%s: unable to establish interrupt",
    469      1.1  thorpej 		    sc->sc_dev.dv_xname);
    470      1.1  thorpej 		if (intrstr != NULL)
    471      1.1  thorpej 			printf(" at %s", intrstr);
    472      1.1  thorpej 		printf("\n");
    473      1.1  thorpej 		return;
    474      1.1  thorpej 	}
    475      1.1  thorpej 	printf("%s: interrupting at %s\n", sc->sc_dev.dv_xname, intrstr);
    476      1.1  thorpej 
    477      1.1  thorpej 	SIMPLEQ_INIT(&sc->sc_txfreeq);
    478      1.1  thorpej 	SIMPLEQ_INIT(&sc->sc_txdirtyq);
    479      1.1  thorpej 
    480      1.1  thorpej 	/*
    481      1.1  thorpej 	 * Allocate the control data structures, and create and load the
    482      1.1  thorpej 	 * DMA map for it.
    483      1.1  thorpej 	 */
    484      1.1  thorpej 	if ((error = bus_dmamem_alloc(sc->sc_dmat,
    485      1.1  thorpej 	    sizeof(struct sip_control_data), PAGE_SIZE, 0, &seg, 1, &rseg,
    486      1.1  thorpej 	    0)) != 0) {
    487      1.1  thorpej 		printf("%s: unable to allocate control data, error = %d\n",
    488      1.1  thorpej 		    sc->sc_dev.dv_xname, error);
    489      1.1  thorpej 		goto fail_0;
    490      1.1  thorpej 	}
    491      1.1  thorpej 
    492      1.1  thorpej 	if ((error = bus_dmamem_map(sc->sc_dmat, &seg, rseg,
    493      1.1  thorpej 	    sizeof(struct sip_control_data), (caddr_t *)&sc->sc_control_data,
    494      1.1  thorpej 	    BUS_DMA_COHERENT)) != 0) {
    495      1.1  thorpej 		printf("%s: unable to map control data, error = %d\n",
    496      1.1  thorpej 		    sc->sc_dev.dv_xname, error);
    497      1.1  thorpej 		goto fail_1;
    498      1.1  thorpej 	}
    499      1.1  thorpej 
    500      1.1  thorpej 	if ((error = bus_dmamap_create(sc->sc_dmat,
    501      1.1  thorpej 	    sizeof(struct sip_control_data), 1,
    502      1.1  thorpej 	    sizeof(struct sip_control_data), 0, 0, &sc->sc_cddmamap)) != 0) {
    503      1.1  thorpej 		printf("%s: unable to create control data DMA map, "
    504      1.1  thorpej 		    "error = %d\n", sc->sc_dev.dv_xname, error);
    505      1.1  thorpej 		goto fail_2;
    506      1.1  thorpej 	}
    507      1.1  thorpej 
    508      1.1  thorpej 	if ((error = bus_dmamap_load(sc->sc_dmat, sc->sc_cddmamap,
    509      1.1  thorpej 	    sc->sc_control_data, sizeof(struct sip_control_data), NULL,
    510      1.1  thorpej 	    0)) != 0) {
    511      1.1  thorpej 		printf("%s: unable to load control data DMA map, error = %d\n",
    512      1.1  thorpej 		    sc->sc_dev.dv_xname, error);
    513      1.1  thorpej 		goto fail_3;
    514      1.1  thorpej 	}
    515      1.1  thorpej 
    516      1.1  thorpej 	/*
    517      1.1  thorpej 	 * Create the transmit buffer DMA maps.
    518      1.1  thorpej 	 */
    519      1.1  thorpej 	for (i = 0; i < SIP_TXQUEUELEN; i++) {
    520      1.1  thorpej 		if ((error = bus_dmamap_create(sc->sc_dmat, MCLBYTES,
    521      1.1  thorpej 		    SIP_NTXSEGS, MCLBYTES, 0, 0,
    522      1.1  thorpej 		    &sc->sc_txsoft[i].txs_dmamap)) != 0) {
    523      1.1  thorpej 			printf("%s: unable to create tx DMA map %d, "
    524      1.1  thorpej 			    "error = %d\n", sc->sc_dev.dv_xname, i, error);
    525      1.1  thorpej 			goto fail_4;
    526      1.1  thorpej 		}
    527      1.1  thorpej 	}
    528      1.1  thorpej 
    529      1.1  thorpej 	/*
    530      1.1  thorpej 	 * Create the receive buffer DMA maps.
    531      1.1  thorpej 	 */
    532      1.1  thorpej 	for (i = 0; i < SIP_NRXDESC; i++) {
    533      1.1  thorpej 		if ((error = bus_dmamap_create(sc->sc_dmat, MCLBYTES, 1,
    534      1.1  thorpej 		    MCLBYTES, 0, 0, &sc->sc_rxsoft[i].rxs_dmamap)) != 0) {
    535      1.1  thorpej 			printf("%s: unable to create rx DMA map %d, "
    536      1.1  thorpej 			    "error = %d\n", sc->sc_dev.dv_xname, i, error);
    537      1.1  thorpej 			goto fail_5;
    538      1.1  thorpej 		}
    539      1.2  thorpej 		sc->sc_rxsoft[i].rxs_mbuf = NULL;
    540      1.1  thorpej 	}
    541      1.1  thorpej 
    542      1.1  thorpej 	/*
    543      1.1  thorpej 	 * Reset the chip to a known state.
    544      1.1  thorpej 	 */
    545      1.1  thorpej 	sip_reset(sc);
    546      1.1  thorpej 
    547      1.1  thorpej 	/*
    548      1.1  thorpej 	 * Read the Ethernet address from the EEPROM.
    549      1.1  thorpej 	 */
    550  1.2.2.5   bouyer 	sip->sip_variant->sipv_read_macaddr(sc, enaddr);
    551      1.1  thorpej 
    552      1.1  thorpej 	printf("%s: Ethernet address %s\n", sc->sc_dev.dv_xname,
    553  1.2.2.1   bouyer 	    ether_sprintf(enaddr));
    554      1.1  thorpej 
    555      1.1  thorpej 	/*
    556      1.1  thorpej 	 * Initialize our media structures and probe the MII.
    557      1.1  thorpej 	 */
    558      1.1  thorpej 	sc->sc_mii.mii_ifp = ifp;
    559  1.2.2.1   bouyer 	sc->sc_mii.mii_readreg = sip->sip_variant->sipv_mii_readreg;
    560  1.2.2.1   bouyer 	sc->sc_mii.mii_writereg = sip->sip_variant->sipv_mii_writereg;
    561  1.2.2.1   bouyer 	sc->sc_mii.mii_statchg = sip->sip_variant->sipv_mii_statchg;
    562      1.1  thorpej 	ifmedia_init(&sc->sc_mii.mii_media, 0, sip_mediachange,
    563      1.1  thorpej 	    sip_mediastatus);
    564  1.2.2.1   bouyer 	mii_attach(&sc->sc_dev, &sc->sc_mii, 0xffffffff, MII_PHY_ANY,
    565  1.2.2.1   bouyer 	    MII_OFFSET_ANY, 0);
    566      1.1  thorpej 	if (LIST_FIRST(&sc->sc_mii.mii_phys) == NULL) {
    567      1.1  thorpej 		ifmedia_add(&sc->sc_mii.mii_media, IFM_ETHER|IFM_NONE, 0, NULL);
    568      1.1  thorpej 		ifmedia_set(&sc->sc_mii.mii_media, IFM_ETHER|IFM_NONE);
    569      1.1  thorpej 	} else
    570      1.1  thorpej 		ifmedia_set(&sc->sc_mii.mii_media, IFM_ETHER|IFM_AUTO);
    571      1.1  thorpej 
    572      1.1  thorpej 	ifp = &sc->sc_ethercom.ec_if;
    573      1.1  thorpej 	strcpy(ifp->if_xname, sc->sc_dev.dv_xname);
    574      1.1  thorpej 	ifp->if_softc = sc;
    575      1.1  thorpej 	ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
    576      1.1  thorpej 	ifp->if_ioctl = sip_ioctl;
    577      1.1  thorpej 	ifp->if_start = sip_start;
    578      1.1  thorpej 	ifp->if_watchdog = sip_watchdog;
    579  1.2.2.1   bouyer 	ifp->if_init = sip_init;
    580  1.2.2.1   bouyer 	ifp->if_stop = sip_stop;
    581  1.2.2.3   bouyer 	IFQ_SET_READY(&ifp->if_snd);
    582      1.1  thorpej 
    583      1.1  thorpej 	/*
    584      1.1  thorpej 	 * Attach the interface.
    585      1.1  thorpej 	 */
    586      1.1  thorpej 	if_attach(ifp);
    587  1.2.2.1   bouyer 	ether_ifattach(ifp, enaddr);
    588      1.1  thorpej 
    589      1.1  thorpej 	/*
    590      1.1  thorpej 	 * Make sure the interface is shutdown during reboot.
    591      1.1  thorpej 	 */
    592      1.1  thorpej 	sc->sc_sdhook = shutdownhook_establish(sip_shutdown, sc);
    593      1.1  thorpej 	if (sc->sc_sdhook == NULL)
    594      1.1  thorpej 		printf("%s: WARNING: unable to establish shutdown hook\n",
    595      1.1  thorpej 		    sc->sc_dev.dv_xname);
    596      1.1  thorpej 	return;
    597      1.1  thorpej 
    598      1.1  thorpej 	/*
    599      1.1  thorpej 	 * Free any resources we've allocated during the failed attach
    600      1.1  thorpej 	 * attempt.  Do this in reverse order and fall through.
    601      1.1  thorpej 	 */
    602      1.1  thorpej  fail_5:
    603      1.1  thorpej 	for (i = 0; i < SIP_NRXDESC; i++) {
    604      1.1  thorpej 		if (sc->sc_rxsoft[i].rxs_dmamap != NULL)
    605      1.1  thorpej 			bus_dmamap_destroy(sc->sc_dmat,
    606      1.1  thorpej 			    sc->sc_rxsoft[i].rxs_dmamap);
    607      1.1  thorpej 	}
    608      1.1  thorpej  fail_4:
    609      1.1  thorpej 	for (i = 0; i < SIP_TXQUEUELEN; i++) {
    610      1.1  thorpej 		if (sc->sc_txsoft[i].txs_dmamap != NULL)
    611      1.1  thorpej 			bus_dmamap_destroy(sc->sc_dmat,
    612      1.1  thorpej 			    sc->sc_txsoft[i].txs_dmamap);
    613      1.1  thorpej 	}
    614      1.1  thorpej 	bus_dmamap_unload(sc->sc_dmat, sc->sc_cddmamap);
    615      1.1  thorpej  fail_3:
    616      1.1  thorpej 	bus_dmamap_destroy(sc->sc_dmat, sc->sc_cddmamap);
    617      1.1  thorpej  fail_2:
    618      1.1  thorpej 	bus_dmamem_unmap(sc->sc_dmat, (caddr_t)sc->sc_control_data,
    619      1.1  thorpej 	    sizeof(struct sip_control_data));
    620      1.1  thorpej  fail_1:
    621      1.1  thorpej 	bus_dmamem_free(sc->sc_dmat, &seg, rseg);
    622      1.1  thorpej  fail_0:
    623      1.1  thorpej 	return;
    624      1.1  thorpej }
    625      1.1  thorpej 
    626      1.1  thorpej /*
    627      1.1  thorpej  * sip_shutdown:
    628      1.1  thorpej  *
    629      1.1  thorpej  *	Make sure the interface is stopped at reboot time.
    630      1.1  thorpej  */
    631      1.1  thorpej void
    632      1.1  thorpej sip_shutdown(arg)
    633      1.1  thorpej 	void *arg;
    634      1.1  thorpej {
    635      1.1  thorpej 	struct sip_softc *sc = arg;
    636      1.1  thorpej 
    637  1.2.2.1   bouyer 	sip_stop(&sc->sc_ethercom.ec_if, 1);
    638      1.1  thorpej }
    639      1.1  thorpej 
    640      1.1  thorpej /*
    641      1.1  thorpej  * sip_start:		[ifnet interface function]
    642      1.1  thorpej  *
    643      1.1  thorpej  *	Start packet transmission on the interface.
    644      1.1  thorpej  */
    645      1.1  thorpej void
    646      1.1  thorpej sip_start(ifp)
    647      1.1  thorpej 	struct ifnet *ifp;
    648      1.1  thorpej {
    649      1.1  thorpej 	struct sip_softc *sc = ifp->if_softc;
    650      1.1  thorpej 	struct mbuf *m0, *m;
    651      1.1  thorpej 	struct sip_txsoft *txs;
    652      1.1  thorpej 	bus_dmamap_t dmamap;
    653      1.1  thorpej 	int error, firsttx, nexttx, lasttx, ofree, seg;
    654      1.1  thorpej 
    655      1.1  thorpej 	/*
    656      1.1  thorpej 	 * If we've been told to pause, don't transmit any more packets.
    657      1.1  thorpej 	 */
    658      1.1  thorpej 	if (sc->sc_flags & SIPF_PAUSED)
    659      1.1  thorpej 		ifp->if_flags |= IFF_OACTIVE;
    660      1.1  thorpej 
    661      1.1  thorpej 	if ((ifp->if_flags & (IFF_RUNNING|IFF_OACTIVE)) != IFF_RUNNING)
    662      1.1  thorpej 		return;
    663      1.1  thorpej 
    664      1.1  thorpej 	/*
    665      1.1  thorpej 	 * Remember the previous number of free descriptors and
    666      1.1  thorpej 	 * the first descriptor we'll use.
    667      1.1  thorpej 	 */
    668      1.1  thorpej 	ofree = sc->sc_txfree;
    669      1.1  thorpej 	firsttx = sc->sc_txnext;
    670      1.1  thorpej 
    671      1.1  thorpej 	/*
    672      1.1  thorpej 	 * Loop through the send queue, setting up transmit descriptors
    673      1.1  thorpej 	 * until we drain the queue, or use up all available transmit
    674      1.1  thorpej 	 * descriptors.
    675      1.1  thorpej 	 */
    676      1.1  thorpej 	while ((txs = SIMPLEQ_FIRST(&sc->sc_txfreeq)) != NULL &&
    677      1.1  thorpej 	       sc->sc_txfree != 0) {
    678      1.1  thorpej 		/*
    679      1.1  thorpej 		 * Grab a packet off the queue.
    680      1.1  thorpej 		 */
    681  1.2.2.3   bouyer 		IFQ_POLL(&ifp->if_snd, m0);
    682      1.1  thorpej 		if (m0 == NULL)
    683      1.1  thorpej 			break;
    684  1.2.2.3   bouyer 		m = NULL;
    685      1.1  thorpej 
    686      1.1  thorpej 		dmamap = txs->txs_dmamap;
    687      1.1  thorpej 
    688      1.1  thorpej 		/*
    689      1.1  thorpej 		 * Load the DMA map.  If this fails, the packet either
    690      1.1  thorpej 		 * didn't fit in the alloted number of segments, or we
    691      1.1  thorpej 		 * were short on resources.  In this case, we'll copy
    692      1.1  thorpej 		 * and try again.
    693      1.1  thorpej 		 */
    694      1.1  thorpej 		if (bus_dmamap_load_mbuf(sc->sc_dmat, dmamap, m0,
    695      1.1  thorpej 		    BUS_DMA_NOWAIT) != 0) {
    696      1.1  thorpej 			MGETHDR(m, M_DONTWAIT, MT_DATA);
    697      1.1  thorpej 			if (m == NULL) {
    698      1.1  thorpej 				printf("%s: unable to allocate Tx mbuf\n",
    699      1.1  thorpej 				    sc->sc_dev.dv_xname);
    700      1.1  thorpej 				break;
    701      1.1  thorpej 			}
    702      1.1  thorpej 			if (m0->m_pkthdr.len > MHLEN) {
    703      1.1  thorpej 				MCLGET(m, M_DONTWAIT);
    704      1.1  thorpej 				if ((m->m_flags & M_EXT) == 0) {
    705      1.1  thorpej 					printf("%s: unable to allocate Tx "
    706      1.1  thorpej 					    "cluster\n", sc->sc_dev.dv_xname);
    707      1.1  thorpej 					m_freem(m);
    708      1.1  thorpej 					break;
    709      1.1  thorpej 				}
    710      1.1  thorpej 			}
    711      1.1  thorpej 			m_copydata(m0, 0, m0->m_pkthdr.len, mtod(m, caddr_t));
    712      1.1  thorpej 			m->m_pkthdr.len = m->m_len = m0->m_pkthdr.len;
    713      1.1  thorpej 			error = bus_dmamap_load_mbuf(sc->sc_dmat, dmamap,
    714  1.2.2.3   bouyer 			    m, BUS_DMA_NOWAIT);
    715      1.1  thorpej 			if (error) {
    716      1.1  thorpej 				printf("%s: unable to load Tx buffer, "
    717      1.1  thorpej 				    "error = %d\n", sc->sc_dev.dv_xname, error);
    718      1.1  thorpej 				break;
    719      1.1  thorpej 			}
    720      1.1  thorpej 		}
    721      1.1  thorpej 
    722      1.1  thorpej 		/*
    723      1.1  thorpej 		 * Ensure we have enough descriptors free to describe
    724      1.1  thorpej 		 * the packet.
    725      1.1  thorpej 		 */
    726      1.1  thorpej 		if (dmamap->dm_nsegs > sc->sc_txfree) {
    727      1.1  thorpej 			/*
    728      1.1  thorpej 			 * Not enough free descriptors to transmit this
    729      1.1  thorpej 			 * packet.  We haven't committed anything yet,
    730      1.1  thorpej 			 * so just unload the DMA map, put the packet
    731      1.1  thorpej 			 * back on the queue, and punt.  Notify the upper
    732      1.1  thorpej 			 * layer that there are not more slots left.
    733      1.1  thorpej 			 *
    734      1.1  thorpej 			 * XXX We could allocate an mbuf and copy, but
    735      1.1  thorpej 			 * XXX is it worth it?
    736      1.1  thorpej 			 */
    737      1.1  thorpej 			ifp->if_flags |= IFF_OACTIVE;
    738      1.1  thorpej 			bus_dmamap_unload(sc->sc_dmat, dmamap);
    739  1.2.2.3   bouyer 			if (m != NULL)
    740  1.2.2.3   bouyer 				m_freem(m);
    741      1.1  thorpej 			break;
    742  1.2.2.3   bouyer 		}
    743  1.2.2.3   bouyer 
    744  1.2.2.3   bouyer 		IFQ_DEQUEUE(&ifp->if_snd, m0);
    745  1.2.2.3   bouyer 		if (m != NULL) {
    746  1.2.2.3   bouyer 			m_freem(m0);
    747  1.2.2.3   bouyer 			m0 = m;
    748      1.1  thorpej 		}
    749      1.1  thorpej 
    750      1.1  thorpej 		/*
    751      1.1  thorpej 		 * WE ARE NOW COMMITTED TO TRANSMITTING THE PACKET.
    752      1.1  thorpej 		 */
    753      1.1  thorpej 
    754      1.1  thorpej 		/* Sync the DMA map. */
    755      1.1  thorpej 		bus_dmamap_sync(sc->sc_dmat, dmamap, 0, dmamap->dm_mapsize,
    756      1.1  thorpej 		    BUS_DMASYNC_PREWRITE);
    757      1.1  thorpej 
    758      1.1  thorpej 		/*
    759      1.1  thorpej 		 * Initialize the transmit descriptors.
    760      1.1  thorpej 		 */
    761      1.1  thorpej 		for (nexttx = sc->sc_txnext, seg = 0;
    762      1.1  thorpej 		     seg < dmamap->dm_nsegs;
    763      1.1  thorpej 		     seg++, nexttx = SIP_NEXTTX(nexttx)) {
    764      1.1  thorpej 			/*
    765      1.1  thorpej 			 * If this is the first descriptor we're
    766      1.1  thorpej 			 * enqueueing, don't set the OWN bit just
    767      1.1  thorpej 			 * yet.  That could cause a race condition.
    768      1.1  thorpej 			 * We'll do it below.
    769      1.1  thorpej 			 */
    770      1.1  thorpej 			sc->sc_txdescs[nexttx].sipd_bufptr =
    771  1.2.2.1   bouyer 			    htole32(dmamap->dm_segs[seg].ds_addr);
    772      1.1  thorpej 			sc->sc_txdescs[nexttx].sipd_cmdsts =
    773  1.2.2.1   bouyer 			    htole32((nexttx == firsttx ? 0 : CMDSTS_OWN) |
    774  1.2.2.1   bouyer 			    CMDSTS_MORE | dmamap->dm_segs[seg].ds_len);
    775      1.1  thorpej 			lasttx = nexttx;
    776      1.1  thorpej 		}
    777      1.1  thorpej 
    778      1.1  thorpej 		/* Clear the MORE bit on the last segment. */
    779  1.2.2.1   bouyer 		sc->sc_txdescs[lasttx].sipd_cmdsts &= htole32(~CMDSTS_MORE);
    780      1.1  thorpej 
    781      1.1  thorpej 		/* Sync the descriptors we're using. */
    782      1.1  thorpej 		SIP_CDTXSYNC(sc, sc->sc_txnext, dmamap->dm_nsegs,
    783      1.1  thorpej 		    BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
    784      1.1  thorpej 
    785      1.1  thorpej 		/*
    786      1.1  thorpej 		 * Store a pointer to the packet so we can free it later,
    787      1.1  thorpej 		 * and remember what txdirty will be once the packet is
    788      1.1  thorpej 		 * done.
    789      1.1  thorpej 		 */
    790      1.1  thorpej 		txs->txs_mbuf = m0;
    791      1.1  thorpej 		txs->txs_firstdesc = sc->sc_txnext;
    792      1.1  thorpej 		txs->txs_lastdesc = lasttx;
    793      1.1  thorpej 
    794      1.1  thorpej 		/* Advance the tx pointer. */
    795      1.1  thorpej 		sc->sc_txfree -= dmamap->dm_nsegs;
    796      1.1  thorpej 		sc->sc_txnext = nexttx;
    797      1.1  thorpej 
    798      1.1  thorpej 		SIMPLEQ_REMOVE_HEAD(&sc->sc_txfreeq, txs, txs_q);
    799      1.1  thorpej 		SIMPLEQ_INSERT_TAIL(&sc->sc_txdirtyq, txs, txs_q);
    800      1.1  thorpej 
    801      1.1  thorpej #if NBPFILTER > 0
    802      1.1  thorpej 		/*
    803      1.1  thorpej 		 * Pass the packet to any BPF listeners.
    804      1.1  thorpej 		 */
    805      1.1  thorpej 		if (ifp->if_bpf)
    806      1.1  thorpej 			bpf_mtap(ifp->if_bpf, m0);
    807      1.1  thorpej #endif /* NBPFILTER > 0 */
    808      1.1  thorpej 	}
    809      1.1  thorpej 
    810      1.1  thorpej 	if (txs == NULL || sc->sc_txfree == 0) {
    811      1.1  thorpej 		/* No more slots left; notify upper layer. */
    812      1.1  thorpej 		ifp->if_flags |= IFF_OACTIVE;
    813      1.1  thorpej 	}
    814      1.1  thorpej 
    815      1.1  thorpej 	if (sc->sc_txfree != ofree) {
    816      1.1  thorpej 		/*
    817      1.1  thorpej 		 * Cause a descriptor interrupt to happen on the
    818      1.1  thorpej 		 * last packet we enqueued.
    819      1.1  thorpej 		 */
    820  1.2.2.1   bouyer 		sc->sc_txdescs[lasttx].sipd_cmdsts |= htole32(CMDSTS_INTR);
    821      1.1  thorpej 		SIP_CDTXSYNC(sc, lasttx, 1,
    822      1.1  thorpej 		    BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
    823      1.1  thorpej 
    824      1.1  thorpej 		/*
    825      1.1  thorpej 		 * The entire packet chain is set up.  Give the
    826      1.1  thorpej 		 * first descrptor to the chip now.
    827      1.1  thorpej 		 */
    828  1.2.2.1   bouyer 		sc->sc_txdescs[firsttx].sipd_cmdsts |= htole32(CMDSTS_OWN);
    829      1.1  thorpej 		SIP_CDTXSYNC(sc, firsttx, 1,
    830      1.1  thorpej 		    BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
    831      1.1  thorpej 
    832      1.1  thorpej 		/* Start the transmit process. */
    833      1.1  thorpej 		if ((bus_space_read_4(sc->sc_st, sc->sc_sh, SIP_CR) &
    834      1.1  thorpej 		     CR_TXE) == 0) {
    835      1.1  thorpej 			bus_space_write_4(sc->sc_st, sc->sc_sh, SIP_TXDP,
    836      1.1  thorpej 			    SIP_CDTXADDR(sc, firsttx));
    837      1.1  thorpej 			bus_space_write_4(sc->sc_st, sc->sc_sh, SIP_CR, CR_TXE);
    838      1.1  thorpej 		}
    839      1.1  thorpej 
    840      1.1  thorpej 		/* Set a watchdog timer in case the chip flakes out. */
    841      1.1  thorpej 		ifp->if_timer = 5;
    842      1.1  thorpej 	}
    843      1.1  thorpej }
    844      1.1  thorpej 
    845      1.1  thorpej /*
    846      1.1  thorpej  * sip_watchdog:	[ifnet interface function]
    847      1.1  thorpej  *
    848      1.1  thorpej  *	Watchdog timer handler.
    849      1.1  thorpej  */
    850      1.1  thorpej void
    851      1.1  thorpej sip_watchdog(ifp)
    852      1.1  thorpej 	struct ifnet *ifp;
    853      1.1  thorpej {
    854      1.1  thorpej 	struct sip_softc *sc = ifp->if_softc;
    855      1.1  thorpej 
    856      1.1  thorpej 	/*
    857      1.1  thorpej 	 * The chip seems to ignore the CMDSTS_INTR bit sometimes!
    858      1.1  thorpej 	 * If we get a timeout, try and sweep up transmit descriptors.
    859      1.1  thorpej 	 * If we manage to sweep them all up, ignore the lack of
    860      1.1  thorpej 	 * interrupt.
    861      1.1  thorpej 	 */
    862      1.1  thorpej 	sip_txintr(sc);
    863      1.1  thorpej 
    864      1.1  thorpej 	if (sc->sc_txfree != SIP_NTXDESC) {
    865      1.1  thorpej 		printf("%s: device timeout\n", sc->sc_dev.dv_xname);
    866      1.1  thorpej 		ifp->if_oerrors++;
    867      1.1  thorpej 
    868      1.1  thorpej 		/* Reset the interface. */
    869  1.2.2.1   bouyer 		(void) sip_init(ifp);
    870      1.1  thorpej 	} else if (ifp->if_flags & IFF_DEBUG)
    871      1.1  thorpej 		printf("%s: recovered from device timeout\n",
    872      1.1  thorpej 		    sc->sc_dev.dv_xname);
    873      1.1  thorpej 
    874      1.1  thorpej 	/* Try to get more packets going. */
    875      1.1  thorpej 	sip_start(ifp);
    876      1.1  thorpej }
    877      1.1  thorpej 
    878      1.1  thorpej /*
    879      1.1  thorpej  * sip_ioctl:		[ifnet interface function]
    880      1.1  thorpej  *
    881      1.1  thorpej  *	Handle control requests from the operator.
    882      1.1  thorpej  */
    883      1.1  thorpej int
    884      1.1  thorpej sip_ioctl(ifp, cmd, data)
    885      1.1  thorpej 	struct ifnet *ifp;
    886      1.1  thorpej 	u_long cmd;
    887      1.1  thorpej 	caddr_t data;
    888      1.1  thorpej {
    889      1.1  thorpej 	struct sip_softc *sc = ifp->if_softc;
    890      1.1  thorpej 	struct ifreq *ifr = (struct ifreq *)data;
    891  1.2.2.1   bouyer 	int s, error;
    892      1.1  thorpej 
    893      1.1  thorpej 	s = splnet();
    894      1.1  thorpej 
    895      1.1  thorpej 	switch (cmd) {
    896  1.2.2.1   bouyer 	case SIOCSIFMEDIA:
    897  1.2.2.1   bouyer 	case SIOCGIFMEDIA:
    898  1.2.2.1   bouyer 		error = ifmedia_ioctl(ifp, ifr, &sc->sc_mii.mii_media, cmd);
    899      1.1  thorpej 		break;
    900      1.1  thorpej 
    901  1.2.2.1   bouyer 	default:
    902  1.2.2.1   bouyer 		error = ether_ioctl(ifp, cmd, data);
    903      1.1  thorpej 		if (error == ENETRESET) {
    904      1.1  thorpej 			/*
    905      1.1  thorpej 			 * Multicast list has changed; set the hardware filter
    906      1.1  thorpej 			 * accordingly.
    907      1.1  thorpej 			 */
    908  1.2.2.1   bouyer 			(*sc->sc_model->sip_variant->sipv_set_filter)(sc);
    909      1.1  thorpej 			error = 0;
    910      1.1  thorpej 		}
    911      1.1  thorpej 		break;
    912      1.1  thorpej 	}
    913      1.1  thorpej 
    914      1.1  thorpej 	/* Try to get more packets going. */
    915      1.1  thorpej 	sip_start(ifp);
    916      1.1  thorpej 
    917      1.1  thorpej 	splx(s);
    918      1.1  thorpej 	return (error);
    919      1.1  thorpej }
    920      1.1  thorpej 
    921      1.1  thorpej /*
    922      1.1  thorpej  * sip_intr:
    923      1.1  thorpej  *
    924      1.1  thorpej  *	Interrupt service routine.
    925      1.1  thorpej  */
    926      1.1  thorpej int
    927      1.1  thorpej sip_intr(arg)
    928      1.1  thorpej 	void *arg;
    929      1.1  thorpej {
    930      1.1  thorpej 	struct sip_softc *sc = arg;
    931      1.1  thorpej 	struct ifnet *ifp = &sc->sc_ethercom.ec_if;
    932      1.1  thorpej 	u_int32_t isr;
    933      1.1  thorpej 	int handled = 0;
    934      1.1  thorpej 
    935      1.1  thorpej 	for (;;) {
    936      1.1  thorpej 		/* Reading clears interrupt. */
    937      1.1  thorpej 		isr = bus_space_read_4(sc->sc_st, sc->sc_sh, SIP_ISR);
    938      1.1  thorpej 		if ((isr & sc->sc_imr) == 0)
    939      1.1  thorpej 			break;
    940      1.1  thorpej 
    941      1.1  thorpej 		handled = 1;
    942      1.1  thorpej 
    943      1.1  thorpej 		if (isr & (ISR_RXORN|ISR_RXIDLE|ISR_RXDESC)) {
    944      1.1  thorpej 			/* Grab any new packets. */
    945      1.1  thorpej 			sip_rxintr(sc);
    946      1.1  thorpej 
    947      1.1  thorpej 			if (isr & ISR_RXORN) {
    948      1.1  thorpej 				printf("%s: receive FIFO overrun\n",
    949      1.1  thorpej 				    sc->sc_dev.dv_xname);
    950      1.1  thorpej 
    951      1.1  thorpej 				/* XXX adjust rx_drain_thresh? */
    952      1.1  thorpej 			}
    953      1.1  thorpej 
    954      1.1  thorpej 			if (isr & ISR_RXIDLE) {
    955      1.1  thorpej 				printf("%s: receive ring overrun\n",
    956      1.1  thorpej 				    sc->sc_dev.dv_xname);
    957      1.1  thorpej 
    958      1.1  thorpej 				/* Get the receive process going again. */
    959      1.1  thorpej 				bus_space_write_4(sc->sc_st, sc->sc_sh,
    960      1.1  thorpej 				    SIP_RXDP, SIP_CDRXADDR(sc, sc->sc_rxptr));
    961      1.1  thorpej 				bus_space_write_4(sc->sc_st, sc->sc_sh,
    962      1.1  thorpej 				    SIP_CR, CR_RXE);
    963      1.1  thorpej 			}
    964      1.1  thorpej 		}
    965      1.1  thorpej 
    966      1.1  thorpej 		if (isr & (ISR_TXURN|ISR_TXDESC)) {
    967      1.1  thorpej 			/* Sweep up transmit descriptors. */
    968      1.1  thorpej 			sip_txintr(sc);
    969      1.1  thorpej 
    970      1.1  thorpej 			if (isr & ISR_TXURN) {
    971      1.1  thorpej 				u_int32_t thresh;
    972      1.1  thorpej 
    973      1.1  thorpej 				printf("%s: transmit FIFO underrun",
    974      1.1  thorpej 				    sc->sc_dev.dv_xname);
    975      1.1  thorpej 
    976      1.1  thorpej 				thresh = sc->sc_tx_drain_thresh + 1;
    977      1.1  thorpej 				if (thresh <= TXCFG_DRTH &&
    978      1.1  thorpej 				    (thresh * 32) <= (SIP_TXFIFO_SIZE -
    979      1.1  thorpej 				     (sc->sc_tx_fill_thresh * 32))) {
    980      1.1  thorpej 					printf("; increasing Tx drain "
    981      1.1  thorpej 					    "threshold to %u bytes\n",
    982      1.1  thorpej 					    thresh * 32);
    983      1.1  thorpej 					sc->sc_tx_drain_thresh = thresh;
    984  1.2.2.1   bouyer 					(void) sip_init(ifp);
    985      1.1  thorpej 				} else {
    986  1.2.2.1   bouyer 					(void) sip_init(ifp);
    987      1.1  thorpej 					printf("\n");
    988      1.1  thorpej 				}
    989      1.1  thorpej 			}
    990      1.1  thorpej 		}
    991      1.1  thorpej 
    992      1.1  thorpej 		if (sc->sc_imr & (ISR_PAUSE_END|ISR_PAUSE_ST)) {
    993      1.1  thorpej 			if (isr & ISR_PAUSE_ST) {
    994      1.1  thorpej 				sc->sc_flags |= SIPF_PAUSED;
    995      1.1  thorpej 				ifp->if_flags |= IFF_OACTIVE;
    996      1.1  thorpej 			}
    997      1.1  thorpej 			if (isr & ISR_PAUSE_END) {
    998      1.1  thorpej 				sc->sc_flags &= ~SIPF_PAUSED;
    999      1.1  thorpej 				ifp->if_flags &= ~IFF_OACTIVE;
   1000      1.1  thorpej 			}
   1001      1.1  thorpej 		}
   1002      1.1  thorpej 
   1003      1.1  thorpej 		if (isr & ISR_HIBERR) {
   1004      1.1  thorpej #define	PRINTERR(bit, str)						\
   1005      1.1  thorpej 			if (isr & (bit))				\
   1006      1.1  thorpej 				printf("%s: %s\n", sc->sc_dev.dv_xname, str)
   1007      1.1  thorpej 			PRINTERR(ISR_DPERR, "parity error");
   1008      1.1  thorpej 			PRINTERR(ISR_SSERR, "system error");
   1009      1.1  thorpej 			PRINTERR(ISR_RMABT, "master abort");
   1010      1.1  thorpej 			PRINTERR(ISR_RTABT, "target abort");
   1011      1.1  thorpej 			PRINTERR(ISR_RXSOVR, "receive status FIFO overrun");
   1012  1.2.2.1   bouyer 			(void) sip_init(ifp);
   1013      1.1  thorpej #undef PRINTERR
   1014      1.1  thorpej 		}
   1015      1.1  thorpej 	}
   1016      1.1  thorpej 
   1017      1.1  thorpej 	/* Try to get more packets going. */
   1018      1.1  thorpej 	sip_start(ifp);
   1019      1.1  thorpej 
   1020      1.1  thorpej 	return (handled);
   1021      1.1  thorpej }
   1022      1.1  thorpej 
   1023      1.1  thorpej /*
   1024      1.1  thorpej  * sip_txintr:
   1025      1.1  thorpej  *
   1026      1.1  thorpej  *	Helper; handle transmit interrupts.
   1027      1.1  thorpej  */
   1028      1.1  thorpej void
   1029      1.1  thorpej sip_txintr(sc)
   1030      1.1  thorpej 	struct sip_softc *sc;
   1031      1.1  thorpej {
   1032      1.1  thorpej 	struct ifnet *ifp = &sc->sc_ethercom.ec_if;
   1033      1.1  thorpej 	struct sip_txsoft *txs;
   1034      1.1  thorpej 	u_int32_t cmdsts;
   1035      1.1  thorpej 
   1036      1.1  thorpej 	if ((sc->sc_flags & SIPF_PAUSED) == 0)
   1037      1.1  thorpej 		ifp->if_flags &= ~IFF_OACTIVE;
   1038      1.1  thorpej 
   1039      1.1  thorpej 	/*
   1040      1.1  thorpej 	 * Go through our Tx list and free mbufs for those
   1041      1.1  thorpej 	 * frames which have been transmitted.
   1042      1.1  thorpej 	 */
   1043      1.1  thorpej 	while ((txs = SIMPLEQ_FIRST(&sc->sc_txdirtyq)) != NULL) {
   1044      1.1  thorpej 		SIP_CDTXSYNC(sc, txs->txs_firstdesc, txs->txs_dmamap->dm_nsegs,
   1045      1.1  thorpej 		    BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE);
   1046      1.1  thorpej 
   1047  1.2.2.1   bouyer 		cmdsts = le32toh(sc->sc_txdescs[txs->txs_lastdesc].sipd_cmdsts);
   1048      1.1  thorpej 		if (cmdsts & CMDSTS_OWN)
   1049      1.1  thorpej 			break;
   1050      1.1  thorpej 
   1051      1.1  thorpej 		SIMPLEQ_REMOVE_HEAD(&sc->sc_txdirtyq, txs, txs_q);
   1052      1.1  thorpej 
   1053      1.1  thorpej 		sc->sc_txfree += txs->txs_dmamap->dm_nsegs;
   1054      1.1  thorpej 
   1055      1.1  thorpej 		bus_dmamap_sync(sc->sc_dmat, txs->txs_dmamap,
   1056      1.1  thorpej 		    0, txs->txs_dmamap->dm_mapsize, BUS_DMASYNC_POSTWRITE);
   1057      1.1  thorpej 		bus_dmamap_unload(sc->sc_dmat, txs->txs_dmamap);
   1058      1.1  thorpej 		m_freem(txs->txs_mbuf);
   1059      1.1  thorpej 		txs->txs_mbuf = NULL;
   1060      1.1  thorpej 
   1061      1.1  thorpej 		SIMPLEQ_INSERT_TAIL(&sc->sc_txfreeq, txs, txs_q);
   1062      1.1  thorpej 
   1063      1.1  thorpej 		/*
   1064      1.1  thorpej 		 * Check for errors and collisions.
   1065      1.1  thorpej 		 */
   1066      1.1  thorpej 		if (cmdsts &
   1067      1.1  thorpej 		    (CMDSTS_Tx_TXA|CMDSTS_Tx_TFU|CMDSTS_Tx_ED|CMDSTS_Tx_EC)) {
   1068      1.1  thorpej 			if (ifp->if_flags & IFF_DEBUG) {
   1069      1.1  thorpej 				if (CMDSTS_Tx_ED)
   1070      1.1  thorpej 					printf("%s: excessive deferral\n",
   1071      1.1  thorpej 					    sc->sc_dev.dv_xname);
   1072      1.1  thorpej 				if (CMDSTS_Tx_EC) {
   1073      1.1  thorpej 					printf("%s: excessive collisions\n",
   1074      1.1  thorpej 					    sc->sc_dev.dv_xname);
   1075      1.1  thorpej 					ifp->if_collisions += 16;
   1076      1.1  thorpej 				}
   1077      1.1  thorpej 			}
   1078      1.1  thorpej 		} else {
   1079      1.1  thorpej 			/* Packet was transmitted successfully. */
   1080      1.1  thorpej 			ifp->if_opackets++;
   1081      1.1  thorpej 			ifp->if_collisions += CMDSTS_COLLISIONS(cmdsts);
   1082      1.1  thorpej 		}
   1083      1.1  thorpej 	}
   1084      1.1  thorpej 
   1085      1.1  thorpej 	/*
   1086      1.1  thorpej 	 * If there are no more pending transmissions, cancel the watchdog
   1087      1.1  thorpej 	 * timer.
   1088      1.1  thorpej 	 */
   1089      1.1  thorpej 	if (txs == NULL)
   1090      1.1  thorpej 		ifp->if_timer = 0;
   1091      1.1  thorpej }
   1092      1.1  thorpej 
   1093      1.1  thorpej /*
   1094      1.1  thorpej  * sip_rxintr:
   1095      1.1  thorpej  *
   1096      1.1  thorpej  *	Helper; handle receive interrupts.
   1097      1.1  thorpej  */
   1098      1.1  thorpej void
   1099      1.1  thorpej sip_rxintr(sc)
   1100      1.1  thorpej 	struct sip_softc *sc;
   1101      1.1  thorpej {
   1102      1.1  thorpej 	struct ifnet *ifp = &sc->sc_ethercom.ec_if;
   1103      1.1  thorpej 	struct sip_rxsoft *rxs;
   1104      1.1  thorpej 	struct mbuf *m;
   1105      1.1  thorpej 	u_int32_t cmdsts;
   1106      1.1  thorpej 	int i, len;
   1107      1.1  thorpej 
   1108      1.1  thorpej 	for (i = sc->sc_rxptr;; i = SIP_NEXTRX(i)) {
   1109      1.1  thorpej 		rxs = &sc->sc_rxsoft[i];
   1110      1.1  thorpej 
   1111      1.1  thorpej 		SIP_CDRXSYNC(sc, i, BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE);
   1112      1.1  thorpej 
   1113  1.2.2.1   bouyer 		cmdsts = le32toh(sc->sc_rxdescs[i].sipd_cmdsts);
   1114      1.1  thorpej 
   1115      1.1  thorpej 		/*
   1116      1.1  thorpej 		 * NOTE: OWN is set if owned by _consumer_.  We're the
   1117      1.1  thorpej 		 * consumer of the receive ring, so if the bit is clear,
   1118      1.1  thorpej 		 * we have processed all of the packets.
   1119      1.1  thorpej 		 */
   1120      1.1  thorpej 		if ((cmdsts & CMDSTS_OWN) == 0) {
   1121      1.1  thorpej 			/*
   1122      1.1  thorpej 			 * We have processed all of the receive buffers.
   1123      1.1  thorpej 			 */
   1124      1.1  thorpej 			break;
   1125      1.1  thorpej 		}
   1126      1.1  thorpej 
   1127      1.1  thorpej 		/*
   1128      1.1  thorpej 		 * If any collisions were seen on the wire, count one.
   1129      1.1  thorpej 		 */
   1130      1.1  thorpej 		if (cmdsts & CMDSTS_Rx_COL)
   1131      1.1  thorpej 			ifp->if_collisions++;
   1132      1.1  thorpej 
   1133      1.1  thorpej 		/*
   1134      1.1  thorpej 		 * If an error occurred, update stats, clear the status
   1135      1.1  thorpej 		 * word, and leave the packet buffer in place.  It will
   1136      1.1  thorpej 		 * simply be reused the next time the ring comes around.
   1137      1.1  thorpej 		 */
   1138      1.1  thorpej 		if (cmdsts & (CMDSTS_Rx_RXA|CMDSTS_Rx_LONG|CMDSTS_Rx_RUNT|
   1139      1.1  thorpej 		    CMDSTS_Rx_ISE|CMDSTS_Rx_CRCE|CMDSTS_Rx_FAE)) {
   1140      1.1  thorpej 			ifp->if_ierrors++;
   1141      1.1  thorpej 			if ((cmdsts & CMDSTS_Rx_RXA) != 0 &&
   1142      1.1  thorpej 			    (cmdsts & CMDSTS_Rx_RXO) == 0) {
   1143      1.1  thorpej 				/* Receive overrun handled elsewhere. */
   1144      1.1  thorpej 				printf("%s: receive descriptor error\n",
   1145      1.1  thorpej 				    sc->sc_dev.dv_xname);
   1146      1.1  thorpej 			}
   1147      1.1  thorpej #define	PRINTERR(bit, str)						\
   1148      1.1  thorpej 			if (cmdsts & (bit))				\
   1149      1.1  thorpej 				printf("%s: %s\n", sc->sc_dev.dv_xname, str)
   1150      1.1  thorpej 			PRINTERR(CMDSTS_Rx_LONG, "packet too long");
   1151      1.1  thorpej 			PRINTERR(CMDSTS_Rx_RUNT, "runt packet");
   1152      1.1  thorpej 			PRINTERR(CMDSTS_Rx_ISE, "invalid symbol error");
   1153      1.1  thorpej 			PRINTERR(CMDSTS_Rx_CRCE, "CRC error");
   1154      1.1  thorpej 			PRINTERR(CMDSTS_Rx_FAE, "frame alignment error");
   1155      1.1  thorpej #undef PRINTERR
   1156      1.1  thorpej 			SIP_INIT_RXDESC(sc, i);
   1157      1.1  thorpej 			continue;
   1158      1.1  thorpej 		}
   1159      1.1  thorpej 
   1160      1.1  thorpej 		bus_dmamap_sync(sc->sc_dmat, rxs->rxs_dmamap, 0,
   1161      1.1  thorpej 		    rxs->rxs_dmamap->dm_mapsize, BUS_DMASYNC_POSTREAD);
   1162      1.1  thorpej 
   1163      1.1  thorpej 		/*
   1164      1.1  thorpej 		 * No errors; receive the packet.  Note, the SiS 900
   1165  1.2.2.1   bouyer 		 * includes the CRC with every packet.
   1166      1.1  thorpej 		 */
   1167  1.2.2.1   bouyer 		len = CMDSTS_SIZE(cmdsts);
   1168      1.1  thorpej 
   1169      1.1  thorpej #ifdef __NO_STRICT_ALIGNMENT
   1170      1.1  thorpej 		/*
   1171      1.2  thorpej 		 * If the packet is small enough to fit in a
   1172      1.2  thorpej 		 * single header mbuf, allocate one and copy
   1173      1.2  thorpej 		 * the data into it.  This greatly reduces
   1174      1.2  thorpej 		 * memory consumption when we receive lots
   1175      1.2  thorpej 		 * of small packets.
   1176      1.2  thorpej 		 *
   1177      1.2  thorpej 		 * Otherwise, we add a new buffer to the receive
   1178      1.2  thorpej 		 * chain.  If this fails, we drop the packet and
   1179      1.2  thorpej 		 * recycle the old buffer.
   1180      1.1  thorpej 		 */
   1181      1.2  thorpej 		if (sip_copy_small != 0 && len <= MHLEN) {
   1182      1.2  thorpej 			MGETHDR(m, M_DONTWAIT, MT_DATA);
   1183      1.2  thorpej 			if (m == NULL)
   1184      1.2  thorpej 				goto dropit;
   1185      1.2  thorpej 			memcpy(mtod(m, caddr_t),
   1186      1.2  thorpej 			    mtod(rxs->rxs_mbuf, caddr_t), len);
   1187      1.1  thorpej 			SIP_INIT_RXDESC(sc, i);
   1188      1.1  thorpej 			bus_dmamap_sync(sc->sc_dmat, rxs->rxs_dmamap, 0,
   1189      1.2  thorpej 			    rxs->rxs_dmamap->dm_mapsize,
   1190      1.2  thorpej 			    BUS_DMASYNC_PREREAD);
   1191      1.2  thorpej 		} else {
   1192      1.2  thorpej 			m = rxs->rxs_mbuf;
   1193      1.2  thorpej 			if (sip_add_rxbuf(sc, i) != 0) {
   1194      1.2  thorpej  dropit:
   1195      1.2  thorpej 				ifp->if_ierrors++;
   1196      1.2  thorpej 				SIP_INIT_RXDESC(sc, i);
   1197      1.2  thorpej 				bus_dmamap_sync(sc->sc_dmat,
   1198      1.2  thorpej 				    rxs->rxs_dmamap, 0,
   1199      1.2  thorpej 				    rxs->rxs_dmamap->dm_mapsize,
   1200      1.2  thorpej 				    BUS_DMASYNC_PREREAD);
   1201      1.2  thorpej 				continue;
   1202      1.2  thorpej 			}
   1203      1.1  thorpej 		}
   1204      1.1  thorpej #else
   1205      1.1  thorpej 		/*
   1206      1.1  thorpej 		 * The SiS 900's receive buffers must be 4-byte aligned.
   1207      1.1  thorpej 		 * But this means that the data after the Ethernet header
   1208      1.1  thorpej 		 * is misaligned.  We must allocate a new buffer and
   1209      1.1  thorpej 		 * copy the data, shifted forward 2 bytes.
   1210      1.1  thorpej 		 */
   1211      1.1  thorpej 		MGETHDR(m, M_DONTWAIT, MT_DATA);
   1212      1.1  thorpej 		if (m == NULL) {
   1213      1.1  thorpej  dropit:
   1214      1.1  thorpej 			ifp->if_ierrors++;
   1215      1.1  thorpej 			SIP_INIT_RXDESC(sc, i);
   1216      1.1  thorpej 			bus_dmamap_sync(sc->sc_dmat, rxs->rxs_dmamap, 0,
   1217      1.1  thorpej 			    rxs->rxs_dmamap->dm_mapsize, BUS_DMASYNC_PREREAD);
   1218      1.1  thorpej 			continue;
   1219      1.1  thorpej 		}
   1220      1.1  thorpej 		if (len > (MHLEN - 2)) {
   1221      1.1  thorpej 			MCLGET(m, M_DONTWAIT);
   1222      1.1  thorpej 			if ((m->m_flags & M_EXT) == 0) {
   1223      1.1  thorpej 				m_freem(m);
   1224      1.1  thorpej 				goto dropit;
   1225      1.1  thorpej 			}
   1226      1.1  thorpej 		}
   1227      1.1  thorpej 		m->m_data += 2;
   1228      1.1  thorpej 
   1229      1.1  thorpej 		/*
   1230      1.1  thorpej 		 * Note that we use clusters for incoming frames, so the
   1231      1.1  thorpej 		 * buffer is virtually contiguous.
   1232      1.1  thorpej 		 */
   1233      1.1  thorpej 		memcpy(mtod(m, caddr_t), mtod(rxs->rxs_mbuf, caddr_t), len);
   1234      1.1  thorpej 
   1235      1.1  thorpej 		/* Allow the receive descriptor to continue using its mbuf. */
   1236      1.1  thorpej 		SIP_INIT_RXDESC(sc, i);
   1237      1.1  thorpej 		bus_dmamap_sync(sc->sc_dmat, rxs->rxs_dmamap, 0,
   1238      1.1  thorpej 		    rxs->rxs_dmamap->dm_mapsize, BUS_DMASYNC_PREREAD);
   1239      1.1  thorpej #endif /* __NO_STRICT_ALIGNMENT */
   1240      1.1  thorpej 
   1241      1.1  thorpej 		ifp->if_ipackets++;
   1242  1.2.2.1   bouyer 		m->m_flags |= M_HASFCS;
   1243      1.1  thorpej 		m->m_pkthdr.rcvif = ifp;
   1244      1.1  thorpej 		m->m_pkthdr.len = m->m_len = len;
   1245      1.1  thorpej 
   1246      1.1  thorpej #if NBPFILTER > 0
   1247      1.1  thorpej 		/*
   1248      1.1  thorpej 		 * Pass this up to any BPF listeners, but only
   1249      1.1  thorpej 		 * pass if up the stack if it's for us.
   1250      1.1  thorpej 		 */
   1251  1.2.2.1   bouyer 		if (ifp->if_bpf)
   1252      1.1  thorpej 			bpf_mtap(ifp->if_bpf, m);
   1253      1.1  thorpej #endif /* NBPFILTER > 0 */
   1254      1.1  thorpej 
   1255      1.1  thorpej 		/* Pass it on. */
   1256      1.1  thorpej 		(*ifp->if_input)(ifp, m);
   1257      1.1  thorpej 	}
   1258      1.1  thorpej 
   1259      1.1  thorpej 	/* Update the receive pointer. */
   1260      1.1  thorpej 	sc->sc_rxptr = i;
   1261      1.1  thorpej }
   1262      1.1  thorpej 
   1263      1.1  thorpej /*
   1264      1.1  thorpej  * sip_tick:
   1265      1.1  thorpej  *
   1266      1.1  thorpej  *	One second timer, used to tick the MII.
   1267      1.1  thorpej  */
   1268      1.1  thorpej void
   1269      1.1  thorpej sip_tick(arg)
   1270      1.1  thorpej 	void *arg;
   1271      1.1  thorpej {
   1272      1.1  thorpej 	struct sip_softc *sc = arg;
   1273      1.1  thorpej 	int s;
   1274      1.1  thorpej 
   1275      1.1  thorpej 	s = splnet();
   1276      1.1  thorpej 	mii_tick(&sc->sc_mii);
   1277      1.1  thorpej 	splx(s);
   1278      1.1  thorpej 
   1279  1.2.2.1   bouyer 	callout_reset(&sc->sc_tick_ch, hz, sip_tick, sc);
   1280      1.1  thorpej }
   1281      1.1  thorpej 
   1282      1.1  thorpej /*
   1283      1.1  thorpej  * sip_reset:
   1284      1.1  thorpej  *
   1285      1.1  thorpej  *	Perform a soft reset on the SiS 900.
   1286      1.1  thorpej  */
   1287      1.1  thorpej void
   1288      1.1  thorpej sip_reset(sc)
   1289      1.1  thorpej 	struct sip_softc *sc;
   1290      1.1  thorpej {
   1291      1.1  thorpej 	bus_space_tag_t st = sc->sc_st;
   1292      1.1  thorpej 	bus_space_handle_t sh = sc->sc_sh;
   1293      1.1  thorpej 	int i;
   1294      1.1  thorpej 
   1295      1.1  thorpej 	bus_space_write_4(st, sh, SIP_CR, CR_RST);
   1296      1.1  thorpej 
   1297  1.2.2.1   bouyer 	for (i = 0; i < SIP_TIMEOUT; i++) {
   1298  1.2.2.1   bouyer 		if ((bus_space_read_4(st, sh, SIP_CR) & CR_RST) == 0)
   1299  1.2.2.1   bouyer 			break;
   1300      1.1  thorpej 		delay(2);
   1301      1.1  thorpej 	}
   1302      1.1  thorpej 
   1303  1.2.2.1   bouyer 	if (i == SIP_TIMEOUT)
   1304  1.2.2.1   bouyer 		printf("%s: reset failed to complete\n", sc->sc_dev.dv_xname);
   1305  1.2.2.1   bouyer 
   1306  1.2.2.1   bouyer 	delay(1000);
   1307      1.1  thorpej }
   1308      1.1  thorpej 
   1309      1.1  thorpej /*
   1310  1.2.2.1   bouyer  * sip_init:		[ ifnet interface function ]
   1311      1.1  thorpej  *
   1312      1.1  thorpej  *	Initialize the interface.  Must be called at splnet().
   1313      1.1  thorpej  */
   1314      1.2  thorpej int
   1315  1.2.2.1   bouyer sip_init(ifp)
   1316  1.2.2.1   bouyer 	struct ifnet *ifp;
   1317      1.1  thorpej {
   1318  1.2.2.1   bouyer 	struct sip_softc *sc = ifp->if_softc;
   1319      1.1  thorpej 	bus_space_tag_t st = sc->sc_st;
   1320      1.1  thorpej 	bus_space_handle_t sh = sc->sc_sh;
   1321      1.1  thorpej 	struct sip_txsoft *txs;
   1322      1.2  thorpej 	struct sip_rxsoft *rxs;
   1323      1.1  thorpej 	struct sip_desc *sipd;
   1324      1.1  thorpej 	u_int32_t cfg;
   1325      1.2  thorpej 	int i, error = 0;
   1326      1.1  thorpej 
   1327      1.1  thorpej 	/*
   1328      1.1  thorpej 	 * Cancel any pending I/O.
   1329      1.1  thorpej 	 */
   1330  1.2.2.1   bouyer 	sip_stop(ifp, 0);
   1331      1.1  thorpej 
   1332      1.1  thorpej 	/*
   1333      1.1  thorpej 	 * Reset the chip to a known state.
   1334      1.1  thorpej 	 */
   1335      1.1  thorpej 	sip_reset(sc);
   1336      1.1  thorpej 
   1337  1.2.2.5   bouyer 	if (   sc->sc_model->sip_vendor == PCI_VENDOR_NS
   1338  1.2.2.5   bouyer 	    && sc->sc_model->sip_product == PCI_PRODUCT_NS_DP83815) {
   1339  1.2.2.5   bouyer 		/*
   1340  1.2.2.5   bouyer 		 * DP83815 manual, page 78:
   1341  1.2.2.5   bouyer 		 *    4.4 Recommended Registers Configuration
   1342  1.2.2.5   bouyer 		 *    For optimum performance of the DP83815, version noted
   1343  1.2.2.5   bouyer 		 *    as DP83815CVNG (SRR = 203h), the listed register
   1344  1.2.2.5   bouyer 		 *    modifications must be followed in sequence...
   1345  1.2.2.5   bouyer 		 *
   1346  1.2.2.5   bouyer 		 * It's not clear if this should be 302h or 203h because that
   1347  1.2.2.5   bouyer 		 * chip name is listed as SRR 302h in the description of the
   1348  1.2.2.5   bouyer 		 * SRR register.  However, my revision 302h DP83815 on the
   1349  1.2.2.5   bouyer 		 * Netgear FA311 purchased in 02/2001 needs these settings
   1350  1.2.2.5   bouyer 		 * to avoid tons of errors in AcceptPerfectMatch (non-
   1351  1.2.2.5   bouyer 		 * IFF_PROMISC) mode.  I do not know if other revisions need
   1352  1.2.2.5   bouyer 		 * this set or not.  [briggs -- 09 March 2001]
   1353  1.2.2.5   bouyer 		 *
   1354  1.2.2.5   bouyer 		 * Note that only the low-order 12 bits of 0xe4 are documented
   1355  1.2.2.5   bouyer 		 * and that this sets reserved bits in that register.
   1356  1.2.2.5   bouyer 		 */
   1357  1.2.2.5   bouyer 		cfg = bus_space_read_4(st, sh, SIP_NS_SRR);
   1358  1.2.2.5   bouyer 		if (cfg == 0x302) {
   1359  1.2.2.5   bouyer 			bus_space_write_4(st, sh, 0x00cc, 0x0001);
   1360  1.2.2.5   bouyer 			bus_space_write_4(st, sh, 0x00e4, 0x189C);
   1361  1.2.2.5   bouyer 			bus_space_write_4(st, sh, 0x00fc, 0x0000);
   1362  1.2.2.5   bouyer 			bus_space_write_4(st, sh, 0x00f4, 0x5040);
   1363  1.2.2.5   bouyer 			bus_space_write_4(st, sh, 0x00f8, 0x008c);
   1364  1.2.2.5   bouyer 		}
   1365  1.2.2.5   bouyer 	}
   1366  1.2.2.5   bouyer 
   1367      1.1  thorpej 	/*
   1368      1.1  thorpej 	 * Initialize the transmit descriptor ring.
   1369      1.1  thorpej 	 */
   1370      1.1  thorpej 	for (i = 0; i < SIP_NTXDESC; i++) {
   1371      1.1  thorpej 		sipd = &sc->sc_txdescs[i];
   1372      1.1  thorpej 		memset(sipd, 0, sizeof(struct sip_desc));
   1373  1.2.2.1   bouyer 		sipd->sipd_link = htole32(SIP_CDTXADDR(sc, SIP_NEXTTX(i)));
   1374      1.1  thorpej 	}
   1375      1.1  thorpej 	SIP_CDTXSYNC(sc, 0, SIP_NTXDESC,
   1376      1.1  thorpej 	    BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
   1377      1.1  thorpej 	sc->sc_txfree = SIP_NTXDESC;
   1378      1.1  thorpej 	sc->sc_txnext = 0;
   1379      1.1  thorpej 
   1380      1.1  thorpej 	/*
   1381      1.1  thorpej 	 * Initialize the transmit job descriptors.
   1382      1.1  thorpej 	 */
   1383      1.1  thorpej 	SIMPLEQ_INIT(&sc->sc_txfreeq);
   1384      1.1  thorpej 	SIMPLEQ_INIT(&sc->sc_txdirtyq);
   1385      1.1  thorpej 	for (i = 0; i < SIP_TXQUEUELEN; i++) {
   1386      1.1  thorpej 		txs = &sc->sc_txsoft[i];
   1387      1.1  thorpej 		txs->txs_mbuf = NULL;
   1388      1.1  thorpej 		SIMPLEQ_INSERT_TAIL(&sc->sc_txfreeq, txs, txs_q);
   1389      1.1  thorpej 	}
   1390      1.1  thorpej 
   1391      1.1  thorpej 	/*
   1392      1.1  thorpej 	 * Initialize the receive descriptor and receive job
   1393      1.2  thorpej 	 * descriptor rings.
   1394      1.1  thorpej 	 */
   1395      1.2  thorpej 	for (i = 0; i < SIP_NRXDESC; i++) {
   1396      1.2  thorpej 		rxs = &sc->sc_rxsoft[i];
   1397      1.2  thorpej 		if (rxs->rxs_mbuf == NULL) {
   1398      1.2  thorpej 			if ((error = sip_add_rxbuf(sc, i)) != 0) {
   1399      1.2  thorpej 				printf("%s: unable to allocate or map rx "
   1400      1.2  thorpej 				    "buffer %d, error = %d\n",
   1401      1.2  thorpej 				    sc->sc_dev.dv_xname, i, error);
   1402      1.2  thorpej 				/*
   1403      1.2  thorpej 				 * XXX Should attempt to run with fewer receive
   1404      1.2  thorpej 				 * XXX buffers instead of just failing.
   1405      1.2  thorpej 				 */
   1406      1.2  thorpej 				sip_rxdrain(sc);
   1407      1.2  thorpej 				goto out;
   1408      1.2  thorpej 			}
   1409      1.2  thorpej 		}
   1410      1.2  thorpej 	}
   1411      1.1  thorpej 	sc->sc_rxptr = 0;
   1412      1.1  thorpej 
   1413      1.1  thorpej 	/*
   1414      1.1  thorpej 	 * Initialize the configuration register: aggressive PCI
   1415      1.1  thorpej 	 * bus request algorithm, default backoff, default OW timer,
   1416      1.1  thorpej 	 * default parity error detection.
   1417      1.1  thorpej 	 */
   1418      1.1  thorpej 	cfg = 0;
   1419      1.1  thorpej #if BYTE_ORDER == BIG_ENDIAN
   1420      1.1  thorpej 	/*
   1421      1.1  thorpej 	 * ...descriptors in big-endian mode.
   1422      1.1  thorpej 	 */
   1423  1.2.2.1   bouyer #if 0
   1424  1.2.2.1   bouyer 	/* "Big endian mode" does not work properly. */
   1425      1.1  thorpej 	cfg |= CFG_BEM;
   1426      1.1  thorpej #endif
   1427  1.2.2.1   bouyer #endif
   1428      1.1  thorpej 	bus_space_write_4(st, sh, SIP_CFG, cfg);
   1429      1.1  thorpej 
   1430      1.1  thorpej 	/*
   1431      1.1  thorpej 	 * Initialize the transmit fill and drain thresholds if
   1432      1.1  thorpej 	 * we have never done so.
   1433      1.1  thorpej 	 */
   1434      1.1  thorpej 	if (sc->sc_tx_fill_thresh == 0) {
   1435      1.1  thorpej 		/*
   1436      1.1  thorpej 		 * XXX This value should be tuned.  This is the
   1437      1.1  thorpej 		 * minimum (32 bytes), and we may be able to
   1438      1.1  thorpej 		 * improve performance by increasing it.
   1439      1.1  thorpej 		 */
   1440      1.1  thorpej 		sc->sc_tx_fill_thresh = 1;
   1441      1.1  thorpej 	}
   1442      1.1  thorpej 	if (sc->sc_tx_drain_thresh == 0) {
   1443      1.1  thorpej 		/*
   1444  1.2.2.2   bouyer 		 * Start at a drain threshold of 512 bytes.  We will
   1445      1.1  thorpej 		 * increase it if a DMA underrun occurs.
   1446      1.1  thorpej 		 *
   1447      1.1  thorpej 		 * XXX The minimum value of this variable should be
   1448      1.1  thorpej 		 * tuned.  We may be able to improve performance
   1449      1.1  thorpej 		 * by starting with a lower value.  That, however,
   1450      1.1  thorpej 		 * may trash the first few outgoing packets if the
   1451      1.1  thorpej 		 * PCI bus is saturated.
   1452      1.1  thorpej 		 */
   1453  1.2.2.2   bouyer 		sc->sc_tx_drain_thresh = 512 / 32;
   1454      1.1  thorpej 	}
   1455      1.1  thorpej 
   1456      1.1  thorpej 	/*
   1457      1.1  thorpej 	 * Initialize the prototype TXCFG register.
   1458      1.1  thorpej 	 */
   1459      1.1  thorpej 	sc->sc_txcfg = TXCFG_ATP | TXCFG_MXDMA_512 |
   1460      1.1  thorpej 	    (sc->sc_tx_fill_thresh << TXCFG_FLTH_SHIFT) |
   1461      1.1  thorpej 	    sc->sc_tx_drain_thresh;
   1462      1.1  thorpej 	bus_space_write_4(st, sh, SIP_TXCFG, sc->sc_txcfg);
   1463      1.1  thorpej 
   1464      1.1  thorpej 	/*
   1465      1.1  thorpej 	 * Initialize the receive drain threshold if we have never
   1466      1.1  thorpej 	 * done so.
   1467      1.1  thorpej 	 */
   1468      1.1  thorpej 	if (sc->sc_rx_drain_thresh == 0) {
   1469      1.1  thorpej 		/*
   1470      1.1  thorpej 		 * XXX This value should be tuned.  This is set to the
   1471      1.1  thorpej 		 * maximum of 248 bytes, and we may be able to improve
   1472      1.1  thorpej 		 * performance by decreasing it (although we should never
   1473      1.1  thorpej 		 * set this value lower than 2; 14 bytes are required to
   1474      1.1  thorpej 		 * filter the packet).
   1475      1.1  thorpej 		 */
   1476      1.1  thorpej 		sc->sc_rx_drain_thresh = RXCFG_DRTH >> RXCFG_DRTH_SHIFT;
   1477      1.1  thorpej 	}
   1478      1.1  thorpej 
   1479      1.1  thorpej 	/*
   1480      1.1  thorpej 	 * Initialize the prototype RXCFG register.
   1481      1.1  thorpej 	 */
   1482      1.1  thorpej 	sc->sc_rxcfg = RXCFG_MXDMA_512 |
   1483      1.1  thorpej 	    (sc->sc_rx_drain_thresh << RXCFG_DRTH_SHIFT);
   1484      1.1  thorpej 	bus_space_write_4(st, sh, SIP_RXCFG, sc->sc_rxcfg);
   1485      1.1  thorpej 
   1486      1.1  thorpej 	/* Set up the receive filter. */
   1487  1.2.2.1   bouyer 	(*sc->sc_model->sip_variant->sipv_set_filter)(sc);
   1488      1.1  thorpej 
   1489      1.1  thorpej 	/*
   1490      1.1  thorpej 	 * Give the transmit and receive rings to the chip.
   1491      1.1  thorpej 	 */
   1492      1.1  thorpej 	bus_space_write_4(st, sh, SIP_TXDP, SIP_CDTXADDR(sc, sc->sc_txnext));
   1493      1.1  thorpej 	bus_space_write_4(st, sh, SIP_RXDP, SIP_CDRXADDR(sc, sc->sc_rxptr));
   1494      1.1  thorpej 
   1495      1.1  thorpej 	/*
   1496      1.1  thorpej 	 * Initialize the interrupt mask.
   1497      1.1  thorpej 	 */
   1498      1.1  thorpej 	sc->sc_imr = ISR_DPERR|ISR_SSERR|ISR_RMABT|ISR_RTABT|ISR_RXSOVR|
   1499      1.1  thorpej 	    ISR_TXURN|ISR_TXDESC|ISR_RXORN|ISR_RXIDLE|ISR_RXDESC;
   1500      1.1  thorpej 	bus_space_write_4(st, sh, SIP_IMR, sc->sc_imr);
   1501      1.1  thorpej 
   1502      1.1  thorpej 	/*
   1503      1.1  thorpej 	 * Set the current media.  Do this after initializing the prototype
   1504      1.1  thorpej 	 * IMR, since sip_mii_statchg() modifies the IMR for 802.3x flow
   1505      1.1  thorpej 	 * control.
   1506      1.1  thorpej 	 */
   1507      1.1  thorpej 	mii_mediachg(&sc->sc_mii);
   1508      1.1  thorpej 
   1509      1.1  thorpej 	/*
   1510      1.1  thorpej 	 * Enable interrupts.
   1511      1.1  thorpej 	 */
   1512      1.1  thorpej 	bus_space_write_4(st, sh, SIP_IER, IER_IE);
   1513      1.1  thorpej 
   1514      1.1  thorpej 	/*
   1515      1.1  thorpej 	 * Start the transmit and receive processes.
   1516      1.1  thorpej 	 */
   1517      1.1  thorpej 	bus_space_write_4(st, sh, SIP_CR, CR_RXE | CR_TXE);
   1518      1.1  thorpej 
   1519      1.1  thorpej 	/*
   1520      1.1  thorpej 	 * Start the one second MII clock.
   1521      1.1  thorpej 	 */
   1522  1.2.2.1   bouyer 	callout_reset(&sc->sc_tick_ch, hz, sip_tick, sc);
   1523      1.1  thorpej 
   1524      1.1  thorpej 	/*
   1525      1.1  thorpej 	 * ...all done!
   1526      1.1  thorpej 	 */
   1527      1.1  thorpej 	ifp->if_flags |= IFF_RUNNING;
   1528      1.1  thorpej 	ifp->if_flags &= ~IFF_OACTIVE;
   1529      1.2  thorpej 
   1530      1.2  thorpej  out:
   1531      1.2  thorpej 	if (error)
   1532      1.2  thorpej 		printf("%s: interface not running\n", sc->sc_dev.dv_xname);
   1533      1.2  thorpej 	return (error);
   1534      1.2  thorpej }
   1535      1.2  thorpej 
   1536      1.2  thorpej /*
   1537      1.2  thorpej  * sip_drain:
   1538      1.2  thorpej  *
   1539      1.2  thorpej  *	Drain the receive queue.
   1540      1.2  thorpej  */
   1541      1.2  thorpej void
   1542      1.2  thorpej sip_rxdrain(sc)
   1543      1.2  thorpej 	struct sip_softc *sc;
   1544      1.2  thorpej {
   1545      1.2  thorpej 	struct sip_rxsoft *rxs;
   1546      1.2  thorpej 	int i;
   1547      1.2  thorpej 
   1548      1.2  thorpej 	for (i = 0; i < SIP_NRXDESC; i++) {
   1549      1.2  thorpej 		rxs = &sc->sc_rxsoft[i];
   1550      1.2  thorpej 		if (rxs->rxs_mbuf != NULL) {
   1551      1.2  thorpej 			bus_dmamap_unload(sc->sc_dmat, rxs->rxs_dmamap);
   1552      1.2  thorpej 			m_freem(rxs->rxs_mbuf);
   1553      1.2  thorpej 			rxs->rxs_mbuf = NULL;
   1554      1.2  thorpej 		}
   1555      1.2  thorpej 	}
   1556      1.1  thorpej }
   1557      1.1  thorpej 
   1558      1.1  thorpej /*
   1559  1.2.2.1   bouyer  * sip_stop:		[ ifnet interface function ]
   1560      1.1  thorpej  *
   1561      1.1  thorpej  *	Stop transmission on the interface.
   1562      1.1  thorpej  */
   1563      1.1  thorpej void
   1564  1.2.2.1   bouyer sip_stop(ifp, disable)
   1565  1.2.2.1   bouyer 	struct ifnet *ifp;
   1566  1.2.2.1   bouyer 	int disable;
   1567      1.1  thorpej {
   1568  1.2.2.1   bouyer 	struct sip_softc *sc = ifp->if_softc;
   1569      1.1  thorpej 	bus_space_tag_t st = sc->sc_st;
   1570      1.1  thorpej 	bus_space_handle_t sh = sc->sc_sh;
   1571      1.1  thorpej 	struct sip_txsoft *txs;
   1572      1.1  thorpej 	u_int32_t cmdsts = 0;		/* DEBUG */
   1573      1.1  thorpej 
   1574      1.1  thorpej 	/*
   1575      1.1  thorpej 	 * Stop the one second clock.
   1576      1.1  thorpej 	 */
   1577  1.2.2.1   bouyer 	callout_stop(&sc->sc_tick_ch);
   1578  1.2.2.1   bouyer 
   1579  1.2.2.1   bouyer 	/* Down the MII. */
   1580  1.2.2.1   bouyer 	mii_down(&sc->sc_mii);
   1581      1.1  thorpej 
   1582      1.1  thorpej 	/*
   1583      1.1  thorpej 	 * Disable interrupts.
   1584      1.1  thorpej 	 */
   1585      1.1  thorpej 	bus_space_write_4(st, sh, SIP_IER, 0);
   1586      1.1  thorpej 
   1587      1.1  thorpej 	/*
   1588      1.1  thorpej 	 * Stop receiver and transmitter.
   1589      1.1  thorpej 	 */
   1590      1.1  thorpej 	bus_space_write_4(st, sh, SIP_CR, CR_RXD | CR_TXD);
   1591      1.1  thorpej 
   1592      1.1  thorpej 	/*
   1593      1.1  thorpej 	 * Release any queued transmit buffers.
   1594      1.1  thorpej 	 */
   1595      1.1  thorpej 	while ((txs = SIMPLEQ_FIRST(&sc->sc_txdirtyq)) != NULL) {
   1596      1.1  thorpej 		if ((ifp->if_flags & IFF_DEBUG) != 0 &&
   1597      1.1  thorpej 		    SIMPLEQ_NEXT(txs, txs_q) == NULL &&
   1598  1.2.2.1   bouyer 		    (le32toh(sc->sc_txdescs[txs->txs_lastdesc].sipd_cmdsts) &
   1599      1.1  thorpej 		     CMDSTS_INTR) == 0)
   1600      1.1  thorpej 			printf("%s: sip_stop: last descriptor does not "
   1601      1.1  thorpej 			    "have INTR bit set\n", sc->sc_dev.dv_xname);
   1602      1.1  thorpej 		SIMPLEQ_REMOVE_HEAD(&sc->sc_txdirtyq, txs, txs_q);
   1603      1.1  thorpej #ifdef DIAGNOSTIC
   1604      1.1  thorpej 		if (txs->txs_mbuf == NULL) {
   1605      1.1  thorpej 			printf("%s: dirty txsoft with no mbuf chain\n",
   1606      1.1  thorpej 			    sc->sc_dev.dv_xname);
   1607      1.1  thorpej 			panic("sip_stop");
   1608      1.1  thorpej 		}
   1609      1.1  thorpej #endif
   1610      1.1  thorpej 		cmdsts |=		/* DEBUG */
   1611  1.2.2.1   bouyer 		    le32toh(sc->sc_txdescs[txs->txs_lastdesc].sipd_cmdsts);
   1612      1.1  thorpej 		bus_dmamap_unload(sc->sc_dmat, txs->txs_dmamap);
   1613      1.1  thorpej 		m_freem(txs->txs_mbuf);
   1614      1.1  thorpej 		txs->txs_mbuf = NULL;
   1615      1.1  thorpej 		SIMPLEQ_INSERT_TAIL(&sc->sc_txfreeq, txs, txs_q);
   1616      1.2  thorpej 	}
   1617      1.2  thorpej 
   1618  1.2.2.1   bouyer 	if (disable)
   1619      1.2  thorpej 		sip_rxdrain(sc);
   1620      1.1  thorpej 
   1621      1.1  thorpej 	/*
   1622      1.1  thorpej 	 * Mark the interface down and cancel the watchdog timer.
   1623      1.1  thorpej 	 */
   1624      1.1  thorpej 	ifp->if_flags &= ~(IFF_RUNNING | IFF_OACTIVE);
   1625      1.1  thorpej 	ifp->if_timer = 0;
   1626      1.1  thorpej 
   1627      1.1  thorpej 	if ((ifp->if_flags & IFF_DEBUG) != 0 &&
   1628      1.1  thorpej 	    (cmdsts & CMDSTS_INTR) == 0 && sc->sc_txfree != SIP_NTXDESC)
   1629      1.1  thorpej 		printf("%s: sip_stop: no INTR bits set in dirty tx "
   1630      1.1  thorpej 		    "descriptors\n", sc->sc_dev.dv_xname);
   1631      1.1  thorpej }
   1632      1.1  thorpej 
   1633      1.1  thorpej /*
   1634      1.1  thorpej  * sip_read_eeprom:
   1635      1.1  thorpej  *
   1636      1.1  thorpej  *	Read data from the serial EEPROM.
   1637      1.1  thorpej  */
   1638      1.1  thorpej void
   1639      1.1  thorpej sip_read_eeprom(sc, word, wordcnt, data)
   1640      1.1  thorpej 	struct sip_softc *sc;
   1641      1.1  thorpej 	int word, wordcnt;
   1642      1.1  thorpej 	u_int16_t *data;
   1643      1.1  thorpej {
   1644      1.1  thorpej 	bus_space_tag_t st = sc->sc_st;
   1645      1.1  thorpej 	bus_space_handle_t sh = sc->sc_sh;
   1646      1.1  thorpej 	u_int16_t reg;
   1647      1.1  thorpej 	int i, x;
   1648      1.1  thorpej 
   1649      1.1  thorpej 	for (i = 0; i < wordcnt; i++) {
   1650      1.1  thorpej 		/* Send CHIP SELECT. */
   1651      1.1  thorpej 		reg = EROMAR_EECS;
   1652      1.1  thorpej 		bus_space_write_4(st, sh, SIP_EROMAR, reg);
   1653      1.1  thorpej 
   1654      1.1  thorpej 		/* Shift in the READ opcode. */
   1655      1.1  thorpej 		for (x = 3; x > 0; x--) {
   1656      1.1  thorpej 			if (SIP_EEPROM_OPC_READ & (1 << (x - 1)))
   1657      1.1  thorpej 				reg |= EROMAR_EEDI;
   1658      1.1  thorpej 			else
   1659      1.1  thorpej 				reg &= ~EROMAR_EEDI;
   1660      1.1  thorpej 			bus_space_write_4(st, sh, SIP_EROMAR, reg);
   1661      1.1  thorpej 			bus_space_write_4(st, sh, SIP_EROMAR,
   1662      1.1  thorpej 			    reg | EROMAR_EESK);
   1663      1.1  thorpej 			delay(4);
   1664      1.1  thorpej 			bus_space_write_4(st, sh, SIP_EROMAR, reg);
   1665      1.1  thorpej 			delay(4);
   1666      1.1  thorpej 		}
   1667      1.1  thorpej 
   1668      1.1  thorpej 		/* Shift in address. */
   1669      1.1  thorpej 		for (x = 6; x > 0; x--) {
   1670      1.1  thorpej 			if ((word + i) & (1 << (x - 1)))
   1671      1.1  thorpej 				reg |= EROMAR_EEDI;
   1672      1.1  thorpej 			else
   1673      1.1  thorpej 				reg &= ~EROMAR_EEDI;
   1674      1.1  thorpej 			bus_space_write_4(st, sh, SIP_EROMAR, reg);
   1675      1.1  thorpej 			bus_space_write_4(st, sh, SIP_EROMAR,
   1676      1.1  thorpej 			    reg | EROMAR_EESK);
   1677      1.1  thorpej 			delay(4);
   1678      1.1  thorpej 			bus_space_write_4(st, sh, SIP_EROMAR, reg);
   1679      1.1  thorpej 			delay(4);
   1680      1.1  thorpej 		}
   1681      1.1  thorpej 
   1682      1.1  thorpej 		/* Shift out data. */
   1683      1.1  thorpej 		reg = EROMAR_EECS;
   1684      1.1  thorpej 		data[i] = 0;
   1685      1.1  thorpej 		for (x = 16; x > 0; x--) {
   1686      1.1  thorpej 			bus_space_write_4(st, sh, SIP_EROMAR,
   1687      1.1  thorpej 			    reg | EROMAR_EESK);
   1688      1.1  thorpej 			delay(4);
   1689      1.1  thorpej 			if (bus_space_read_4(st, sh, SIP_EROMAR) & EROMAR_EEDO)
   1690      1.1  thorpej 				data[i] |= (1 << (x - 1));
   1691      1.1  thorpej 			bus_space_write_4(st, sh, SIP_EROMAR, reg);
   1692  1.2.2.1   bouyer 			delay(4);
   1693      1.1  thorpej 		}
   1694      1.1  thorpej 
   1695      1.1  thorpej 		/* Clear CHIP SELECT. */
   1696      1.1  thorpej 		bus_space_write_4(st, sh, SIP_EROMAR, 0);
   1697      1.1  thorpej 		delay(4);
   1698      1.1  thorpej 	}
   1699      1.1  thorpej }
   1700      1.1  thorpej 
   1701      1.1  thorpej /*
   1702      1.1  thorpej  * sip_add_rxbuf:
   1703      1.1  thorpej  *
   1704      1.1  thorpej  *	Add a receive buffer to the indicated descriptor.
   1705      1.1  thorpej  */
   1706      1.1  thorpej int
   1707      1.1  thorpej sip_add_rxbuf(sc, idx)
   1708      1.1  thorpej 	struct sip_softc *sc;
   1709      1.1  thorpej 	int idx;
   1710      1.1  thorpej {
   1711      1.1  thorpej 	struct sip_rxsoft *rxs = &sc->sc_rxsoft[idx];
   1712      1.1  thorpej 	struct mbuf *m;
   1713      1.1  thorpej 	int error;
   1714      1.1  thorpej 
   1715      1.1  thorpej 	MGETHDR(m, M_DONTWAIT, MT_DATA);
   1716      1.1  thorpej 	if (m == NULL)
   1717      1.1  thorpej 		return (ENOBUFS);
   1718      1.1  thorpej 
   1719      1.1  thorpej 	MCLGET(m, M_DONTWAIT);
   1720      1.1  thorpej 	if ((m->m_flags & M_EXT) == 0) {
   1721      1.1  thorpej 		m_freem(m);
   1722      1.1  thorpej 		return (ENOBUFS);
   1723      1.1  thorpej 	}
   1724      1.1  thorpej 
   1725      1.1  thorpej 	if (rxs->rxs_mbuf != NULL)
   1726      1.1  thorpej 		bus_dmamap_unload(sc->sc_dmat, rxs->rxs_dmamap);
   1727      1.1  thorpej 
   1728      1.1  thorpej 	rxs->rxs_mbuf = m;
   1729      1.1  thorpej 
   1730      1.1  thorpej 	error = bus_dmamap_load(sc->sc_dmat, rxs->rxs_dmamap,
   1731      1.1  thorpej 	    m->m_ext.ext_buf, m->m_ext.ext_size, NULL, BUS_DMA_NOWAIT);
   1732      1.1  thorpej 	if (error) {
   1733      1.1  thorpej 		printf("%s: can't load rx DMA map %d, error = %d\n",
   1734      1.1  thorpej 		    sc->sc_dev.dv_xname, idx, error);
   1735      1.1  thorpej 		panic("sip_add_rxbuf");		/* XXX */
   1736      1.1  thorpej 	}
   1737      1.1  thorpej 
   1738      1.1  thorpej 	bus_dmamap_sync(sc->sc_dmat, rxs->rxs_dmamap, 0,
   1739      1.1  thorpej 	    rxs->rxs_dmamap->dm_mapsize, BUS_DMASYNC_PREREAD);
   1740      1.1  thorpej 
   1741      1.1  thorpej 	SIP_INIT_RXDESC(sc, idx);
   1742      1.1  thorpej 
   1743      1.1  thorpej 	return (0);
   1744      1.1  thorpej }
   1745      1.1  thorpej 
   1746      1.1  thorpej /*
   1747  1.2.2.1   bouyer  * sip_sis900_set_filter:
   1748      1.1  thorpej  *
   1749      1.1  thorpej  *	Set up the receive filter.
   1750      1.1  thorpej  */
   1751      1.1  thorpej void
   1752  1.2.2.1   bouyer sip_sis900_set_filter(sc)
   1753      1.1  thorpej 	struct sip_softc *sc;
   1754      1.1  thorpej {
   1755      1.1  thorpej 	bus_space_tag_t st = sc->sc_st;
   1756      1.1  thorpej 	bus_space_handle_t sh = sc->sc_sh;
   1757      1.1  thorpej 	struct ethercom *ec = &sc->sc_ethercom;
   1758      1.1  thorpej 	struct ifnet *ifp = &sc->sc_ethercom.ec_if;
   1759      1.1  thorpej 	struct ether_multi *enm;
   1760      1.1  thorpej 	u_int8_t *cp;
   1761  1.2.2.1   bouyer 	struct ether_multistep step;
   1762      1.1  thorpej 	u_int32_t crc, mchash[8];
   1763      1.1  thorpej 
   1764      1.1  thorpej 	/*
   1765      1.1  thorpej 	 * Initialize the prototype RFCR.
   1766      1.1  thorpej 	 */
   1767      1.1  thorpej 	sc->sc_rfcr = RFCR_RFEN;
   1768      1.1  thorpej 	if (ifp->if_flags & IFF_BROADCAST)
   1769      1.1  thorpej 		sc->sc_rfcr |= RFCR_AAB;
   1770      1.1  thorpej 	if (ifp->if_flags & IFF_PROMISC) {
   1771      1.1  thorpej 		sc->sc_rfcr |= RFCR_AAP;
   1772      1.1  thorpej 		goto allmulti;
   1773      1.1  thorpej 	}
   1774      1.1  thorpej 
   1775      1.1  thorpej 	/*
   1776      1.1  thorpej 	 * Set up the multicast address filter by passing all multicast
   1777      1.1  thorpej 	 * addresses through a CRC generator, and then using the high-order
   1778      1.1  thorpej 	 * 6 bits as an index into the 128 bit multicast hash table (only
   1779      1.1  thorpej 	 * the lower 16 bits of each 32 bit multicast hash register are
   1780      1.1  thorpej 	 * valid).  The high order bits select the register, while the
   1781      1.1  thorpej 	 * rest of the bits select the bit within the register.
   1782      1.1  thorpej 	 */
   1783      1.1  thorpej 
   1784      1.1  thorpej 	memset(mchash, 0, sizeof(mchash));
   1785      1.1  thorpej 
   1786      1.1  thorpej 	ETHER_FIRST_MULTI(step, ec, enm);
   1787      1.1  thorpej 	while (enm != NULL) {
   1788      1.1  thorpej 		if (bcmp(enm->enm_addrlo, enm->enm_addrhi, ETHER_ADDR_LEN)) {
   1789      1.1  thorpej 			/*
   1790      1.1  thorpej 			 * We must listen to a range of multicast addresses.
   1791      1.1  thorpej 			 * For now, just accept all multicasts, rather than
   1792      1.1  thorpej 			 * trying to set only those filter bits needed to match
   1793      1.1  thorpej 			 * the range.  (At this time, the only use of address
   1794      1.1  thorpej 			 * ranges is for IP multicast routing, for which the
   1795      1.1  thorpej 			 * range is big enough to require all bits set.)
   1796      1.1  thorpej 			 */
   1797      1.1  thorpej 			goto allmulti;
   1798      1.1  thorpej 		}
   1799      1.1  thorpej 
   1800  1.2.2.1   bouyer 		crc = ether_crc32_le(enm->enm_addrlo, ETHER_ADDR_LEN);
   1801  1.2.2.1   bouyer 
   1802      1.1  thorpej 		/* Just want the 7 most significant bits. */
   1803      1.1  thorpej 		crc >>= 25;
   1804      1.1  thorpej 
   1805      1.1  thorpej 		/* Set the corresponding bit in the hash table. */
   1806      1.1  thorpej 		mchash[crc >> 4] |= 1 << (crc & 0xf);
   1807      1.1  thorpej 
   1808      1.1  thorpej 		ETHER_NEXT_MULTI(step, enm);
   1809      1.1  thorpej 	}
   1810      1.1  thorpej 
   1811      1.1  thorpej 	ifp->if_flags &= ~IFF_ALLMULTI;
   1812      1.1  thorpej 	goto setit;
   1813      1.1  thorpej 
   1814      1.1  thorpej  allmulti:
   1815      1.1  thorpej 	ifp->if_flags |= IFF_ALLMULTI;
   1816      1.1  thorpej 	sc->sc_rfcr |= RFCR_AAM;
   1817      1.1  thorpej 
   1818      1.1  thorpej  setit:
   1819      1.1  thorpej #define	FILTER_EMIT(addr, data)						\
   1820      1.1  thorpej 	bus_space_write_4(st, sh, SIP_RFCR, (addr));			\
   1821  1.2.2.1   bouyer 	delay(1);							\
   1822  1.2.2.1   bouyer 	bus_space_write_4(st, sh, SIP_RFDR, (data));			\
   1823  1.2.2.1   bouyer 	delay(1)
   1824      1.1  thorpej 
   1825      1.1  thorpej 	/*
   1826      1.1  thorpej 	 * Disable receive filter, and program the node address.
   1827      1.1  thorpej 	 */
   1828      1.1  thorpej 	cp = LLADDR(ifp->if_sadl);
   1829      1.1  thorpej 	FILTER_EMIT(RFCR_RFADDR_NODE0, (cp[1] << 8) | cp[0]);
   1830      1.1  thorpej 	FILTER_EMIT(RFCR_RFADDR_NODE2, (cp[3] << 8) | cp[2]);
   1831      1.1  thorpej 	FILTER_EMIT(RFCR_RFADDR_NODE4, (cp[5] << 8) | cp[4]);
   1832      1.1  thorpej 
   1833      1.1  thorpej 	if ((ifp->if_flags & IFF_ALLMULTI) == 0) {
   1834      1.1  thorpej 		/*
   1835      1.1  thorpej 		 * Program the multicast hash table.
   1836      1.1  thorpej 		 */
   1837      1.1  thorpej 		FILTER_EMIT(RFCR_RFADDR_MC0, mchash[0]);
   1838      1.1  thorpej 		FILTER_EMIT(RFCR_RFADDR_MC1, mchash[1]);
   1839      1.1  thorpej 		FILTER_EMIT(RFCR_RFADDR_MC2, mchash[2]);
   1840      1.1  thorpej 		FILTER_EMIT(RFCR_RFADDR_MC3, mchash[3]);
   1841      1.1  thorpej 		FILTER_EMIT(RFCR_RFADDR_MC4, mchash[4]);
   1842      1.1  thorpej 		FILTER_EMIT(RFCR_RFADDR_MC5, mchash[5]);
   1843      1.1  thorpej 		FILTER_EMIT(RFCR_RFADDR_MC6, mchash[6]);
   1844      1.1  thorpej 		FILTER_EMIT(RFCR_RFADDR_MC7, mchash[7]);
   1845      1.1  thorpej 	}
   1846      1.1  thorpej #undef FILTER_EMIT
   1847      1.1  thorpej 
   1848      1.1  thorpej 	/*
   1849      1.1  thorpej 	 * Re-enable the receiver filter.
   1850      1.1  thorpej 	 */
   1851      1.1  thorpej 	bus_space_write_4(st, sh, SIP_RFCR, sc->sc_rfcr);
   1852      1.1  thorpej }
   1853      1.1  thorpej 
   1854      1.1  thorpej /*
   1855  1.2.2.1   bouyer  * sip_dp83815_set_filter:
   1856  1.2.2.1   bouyer  *
   1857  1.2.2.1   bouyer  *	Set up the receive filter.
   1858  1.2.2.1   bouyer  */
   1859  1.2.2.1   bouyer void
   1860  1.2.2.1   bouyer sip_dp83815_set_filter(sc)
   1861  1.2.2.1   bouyer 	struct sip_softc *sc;
   1862  1.2.2.1   bouyer {
   1863  1.2.2.1   bouyer 	bus_space_tag_t st = sc->sc_st;
   1864  1.2.2.1   bouyer 	bus_space_handle_t sh = sc->sc_sh;
   1865  1.2.2.1   bouyer 	struct ethercom *ec = &sc->sc_ethercom;
   1866  1.2.2.1   bouyer 	struct ifnet *ifp = &sc->sc_ethercom.ec_if;
   1867  1.2.2.1   bouyer 	struct ether_multi *enm;
   1868  1.2.2.1   bouyer 	u_int8_t *cp;
   1869  1.2.2.1   bouyer 	struct ether_multistep step;
   1870  1.2.2.1   bouyer 	u_int32_t crc, mchash[16];
   1871  1.2.2.1   bouyer 	int i;
   1872  1.2.2.1   bouyer 
   1873  1.2.2.1   bouyer 	/*
   1874  1.2.2.1   bouyer 	 * Initialize the prototype RFCR.
   1875  1.2.2.6   bouyer 	 * Enable the receive filter, and accept on
   1876  1.2.2.6   bouyer 	 *    Perfect (destination address) Match
   1877  1.2.2.5   bouyer 	 * If IFF_BROADCAST, also accept all broadcast packets.
   1878  1.2.2.5   bouyer 	 * If IFF_PROMISC, accept all unicast packets (and later, set
   1879  1.2.2.5   bouyer 	 *    IFF_ALLMULTI and accept all multicast, too).
   1880  1.2.2.1   bouyer 	 */
   1881  1.2.2.6   bouyer 	sc->sc_rfcr = RFCR_RFEN | RFCR_APM;
   1882  1.2.2.1   bouyer 	if (ifp->if_flags & IFF_BROADCAST)
   1883  1.2.2.1   bouyer 		sc->sc_rfcr |= RFCR_AAB;
   1884  1.2.2.1   bouyer 	if (ifp->if_flags & IFF_PROMISC) {
   1885  1.2.2.1   bouyer 		sc->sc_rfcr |= RFCR_AAP;
   1886  1.2.2.1   bouyer 		goto allmulti;
   1887  1.2.2.1   bouyer 	}
   1888  1.2.2.1   bouyer 
   1889  1.2.2.1   bouyer 	/*
   1890  1.2.2.1   bouyer 	 * Set up the multicast address filter by passing all multicast
   1891  1.2.2.1   bouyer 	 * addresses through a CRC generator, and then using the high-order
   1892  1.2.2.1   bouyer 	 * 9 bits as an index into the 512 bit multicast hash table.  The
   1893  1.2.2.1   bouyer 	 * high-order bits select the slot, while the rest of the bits
   1894  1.2.2.1   bouyer 	 * select the bit within the slot.  Note that only the low 16-bits
   1895  1.2.2.1   bouyer 	 * of each filter word are used, and there are 64 filter words.
   1896  1.2.2.1   bouyer 	 */
   1897  1.2.2.1   bouyer 
   1898  1.2.2.1   bouyer 	memset(mchash, 0, sizeof(mchash));
   1899  1.2.2.1   bouyer 
   1900  1.2.2.5   bouyer 	ifp->if_flags &= ~IFF_ALLMULTI;
   1901  1.2.2.1   bouyer 	ETHER_FIRST_MULTI(step, ec, enm);
   1902  1.2.2.5   bouyer 	if (enm != NULL) {
   1903  1.2.2.5   bouyer 		while (enm != NULL) {
   1904  1.2.2.5   bouyer 			if (memcmp(enm->enm_addrlo, enm->enm_addrhi,
   1905  1.2.2.5   bouyer 			    ETHER_ADDR_LEN)) {
   1906  1.2.2.1   bouyer 			/*
   1907  1.2.2.1   bouyer 			 * We must listen to a range of multicast addresses.
   1908  1.2.2.1   bouyer 			 * For now, just accept all multicasts, rather than
   1909  1.2.2.1   bouyer 			 * trying to set only those filter bits needed to match
   1910  1.2.2.1   bouyer 			 * the range.  (At this time, the only use of address
   1911  1.2.2.1   bouyer 			 * ranges is for IP multicast routing, for which the
   1912  1.2.2.1   bouyer 			 * range is big enough to require all bits set.)
   1913  1.2.2.1   bouyer 			 */
   1914  1.2.2.5   bouyer 				goto allmulti;
   1915  1.2.2.5   bouyer 			}
   1916  1.2.2.1   bouyer 
   1917  1.2.2.5   bouyer 			crc = ether_crc32_le(enm->enm_addrlo, ETHER_ADDR_LEN);
   1918  1.2.2.1   bouyer 
   1919  1.2.2.5   bouyer 			/* Just want the 9 most significant bits. */
   1920  1.2.2.5   bouyer 			crc >>= 23;
   1921  1.2.2.1   bouyer 
   1922  1.2.2.5   bouyer 			/* Set the corresponding bit in the hash table. */
   1923  1.2.2.5   bouyer 			mchash[crc >> 5] |= 1 << (crc & 0x1f);
   1924  1.2.2.1   bouyer 
   1925  1.2.2.5   bouyer 			ETHER_NEXT_MULTI(step, enm);
   1926  1.2.2.5   bouyer 		}
   1927  1.2.2.1   bouyer 
   1928  1.2.2.5   bouyer 		sc->sc_rfcr |= RFCR_MHEN;
   1929  1.2.2.5   bouyer 	}
   1930  1.2.2.1   bouyer 	goto setit;
   1931  1.2.2.1   bouyer 
   1932  1.2.2.1   bouyer  allmulti:
   1933  1.2.2.1   bouyer 	ifp->if_flags |= IFF_ALLMULTI;
   1934  1.2.2.1   bouyer 	sc->sc_rfcr |= RFCR_AAM;
   1935  1.2.2.1   bouyer 
   1936  1.2.2.1   bouyer  setit:
   1937  1.2.2.1   bouyer #define	FILTER_EMIT(addr, data)						\
   1938  1.2.2.1   bouyer 	bus_space_write_4(st, sh, SIP_RFCR, (addr));			\
   1939  1.2.2.1   bouyer 	delay(1);							\
   1940  1.2.2.1   bouyer 	bus_space_write_4(st, sh, SIP_RFDR, (data));			\
   1941  1.2.2.1   bouyer 	delay(1);
   1942  1.2.2.1   bouyer 
   1943  1.2.2.1   bouyer 	/*
   1944  1.2.2.1   bouyer 	 * Disable receive filter, and program the node address.
   1945  1.2.2.1   bouyer 	 */
   1946  1.2.2.1   bouyer 	cp = LLADDR(ifp->if_sadl);
   1947  1.2.2.5   bouyer 	FILTER_EMIT(RFCR_NS_RFADDR_PMATCH0, (cp[1] << 8) | cp[0]);
   1948  1.2.2.5   bouyer 	FILTER_EMIT(RFCR_NS_RFADDR_PMATCH2, (cp[3] << 8) | cp[2]);
   1949  1.2.2.5   bouyer 	FILTER_EMIT(RFCR_NS_RFADDR_PMATCH4, (cp[5] << 8) | cp[4]);
   1950  1.2.2.1   bouyer 
   1951  1.2.2.1   bouyer 	if ((ifp->if_flags & IFF_ALLMULTI) == 0) {
   1952  1.2.2.1   bouyer 		/*
   1953  1.2.2.1   bouyer 		 * Program the multicast hash table.
   1954  1.2.2.1   bouyer 		 */
   1955  1.2.2.1   bouyer 		for (i = 0; i < 16; i++) {
   1956  1.2.2.1   bouyer 			FILTER_EMIT(RFCR_NS_RFADDR_FILTMEM + (i * 2),
   1957  1.2.2.1   bouyer 			    mchash[i] & 0xffff);
   1958  1.2.2.1   bouyer 			FILTER_EMIT(RFCR_NS_RFADDR_FILTMEM + (i * 2) + 2,
   1959  1.2.2.1   bouyer 			    (mchash[i] >> 16) & 0xffff);
   1960  1.2.2.1   bouyer 		}
   1961  1.2.2.1   bouyer 	}
   1962  1.2.2.1   bouyer #undef FILTER_EMIT
   1963  1.2.2.1   bouyer 
   1964  1.2.2.1   bouyer 	/*
   1965  1.2.2.1   bouyer 	 * Re-enable the receiver filter.
   1966  1.2.2.1   bouyer 	 */
   1967  1.2.2.1   bouyer 	bus_space_write_4(st, sh, SIP_RFCR, sc->sc_rfcr);
   1968  1.2.2.1   bouyer }
   1969  1.2.2.1   bouyer 
   1970  1.2.2.1   bouyer /*
   1971  1.2.2.1   bouyer  * sip_sis900_mii_readreg:	[mii interface function]
   1972      1.1  thorpej  *
   1973      1.1  thorpej  *	Read a PHY register on the MII.
   1974      1.1  thorpej  */
   1975      1.1  thorpej int
   1976  1.2.2.1   bouyer sip_sis900_mii_readreg(self, phy, reg)
   1977      1.1  thorpej 	struct device *self;
   1978      1.1  thorpej 	int phy, reg;
   1979      1.1  thorpej {
   1980      1.1  thorpej 	struct sip_softc *sc = (struct sip_softc *) self;
   1981      1.1  thorpej 	u_int32_t enphy;
   1982      1.1  thorpej 
   1983      1.1  thorpej 	/*
   1984      1.1  thorpej 	 * The SiS 900 has only an internal PHY on the MII.  Only allow
   1985      1.1  thorpej 	 * MII address 0.
   1986      1.1  thorpej 	 */
   1987  1.2.2.1   bouyer 	if (sc->sc_model->sip_product == PCI_PRODUCT_SIS_900 && phy != 0)
   1988      1.1  thorpej 		return (0);
   1989      1.1  thorpej 
   1990      1.1  thorpej 	bus_space_write_4(sc->sc_st, sc->sc_sh, SIP_ENPHY,
   1991  1.2.2.1   bouyer 	    (phy << ENPHY_PHYADDR_SHIFT) | (reg << ENPHY_REGADDR_SHIFT) |
   1992  1.2.2.1   bouyer 	    ENPHY_RWCMD | ENPHY_ACCESS);
   1993      1.1  thorpej 	do {
   1994      1.1  thorpej 		enphy = bus_space_read_4(sc->sc_st, sc->sc_sh, SIP_ENPHY);
   1995      1.1  thorpej 	} while (enphy & ENPHY_ACCESS);
   1996      1.1  thorpej 	return ((enphy & ENPHY_PHYDATA) >> ENPHY_DATA_SHIFT);
   1997      1.1  thorpej }
   1998      1.1  thorpej 
   1999      1.1  thorpej /*
   2000  1.2.2.1   bouyer  * sip_sis900_mii_writereg:	[mii interface function]
   2001      1.1  thorpej  *
   2002      1.1  thorpej  *	Write a PHY register on the MII.
   2003      1.1  thorpej  */
   2004      1.1  thorpej void
   2005  1.2.2.1   bouyer sip_sis900_mii_writereg(self, phy, reg, val)
   2006      1.1  thorpej 	struct device *self;
   2007      1.1  thorpej 	int phy, reg, val;
   2008      1.1  thorpej {
   2009      1.1  thorpej 	struct sip_softc *sc = (struct sip_softc *) self;
   2010      1.1  thorpej 	u_int32_t enphy;
   2011      1.1  thorpej 
   2012      1.1  thorpej 	/*
   2013      1.1  thorpej 	 * The SiS 900 has only an internal PHY on the MII.  Only allow
   2014      1.1  thorpej 	 * MII address 0.
   2015      1.1  thorpej 	 */
   2016  1.2.2.1   bouyer 	if (sc->sc_model->sip_product == PCI_PRODUCT_SIS_900 && phy != 0)
   2017      1.1  thorpej 		return;
   2018      1.1  thorpej 
   2019      1.1  thorpej 	bus_space_write_4(sc->sc_st, sc->sc_sh, SIP_ENPHY,
   2020  1.2.2.1   bouyer 	    (val << ENPHY_DATA_SHIFT) | (phy << ENPHY_PHYADDR_SHIFT) |
   2021  1.2.2.1   bouyer 	    (reg << ENPHY_REGADDR_SHIFT) | ENPHY_ACCESS);
   2022      1.1  thorpej 	do {
   2023      1.1  thorpej 		enphy = bus_space_read_4(sc->sc_st, sc->sc_sh, SIP_ENPHY);
   2024      1.1  thorpej 	} while (enphy & ENPHY_ACCESS);
   2025      1.1  thorpej }
   2026      1.1  thorpej 
   2027      1.1  thorpej /*
   2028  1.2.2.1   bouyer  * sip_sis900_mii_statchg:	[mii interface function]
   2029      1.1  thorpej  *
   2030      1.1  thorpej  *	Callback from MII layer when media changes.
   2031      1.1  thorpej  */
   2032      1.1  thorpej void
   2033  1.2.2.1   bouyer sip_sis900_mii_statchg(self)
   2034      1.1  thorpej 	struct device *self;
   2035      1.1  thorpej {
   2036      1.1  thorpej 	struct sip_softc *sc = (struct sip_softc *) self;
   2037      1.1  thorpej 	u_int32_t flowctl;
   2038      1.1  thorpej 
   2039      1.1  thorpej 	/*
   2040      1.1  thorpej 	 * Update TXCFG for full-duplex operation.
   2041      1.1  thorpej 	 */
   2042      1.1  thorpej 	if ((sc->sc_mii.mii_media_active & IFM_FDX) != 0)
   2043      1.1  thorpej 		sc->sc_txcfg |= (TXCFG_CSI | TXCFG_HBI);
   2044      1.1  thorpej 	else
   2045      1.1  thorpej 		sc->sc_txcfg &= ~(TXCFG_CSI | TXCFG_HBI);
   2046      1.1  thorpej 
   2047      1.1  thorpej 	/*
   2048      1.1  thorpej 	 * Update RXCFG for full-duplex or loopback.
   2049      1.1  thorpej 	 */
   2050      1.1  thorpej 	if ((sc->sc_mii.mii_media_active & IFM_FDX) != 0 ||
   2051      1.1  thorpej 	    IFM_SUBTYPE(sc->sc_mii.mii_media_active) == IFM_LOOP)
   2052      1.1  thorpej 		sc->sc_rxcfg |= RXCFG_ATX;
   2053      1.1  thorpej 	else
   2054      1.1  thorpej 		sc->sc_rxcfg &= ~RXCFG_ATX;
   2055      1.1  thorpej 
   2056      1.1  thorpej 	/*
   2057      1.1  thorpej 	 * Update IMR for use of 802.3x flow control.
   2058      1.1  thorpej 	 */
   2059      1.1  thorpej 	if ((sc->sc_mii.mii_media_active & IFM_FLOW) != 0) {
   2060      1.1  thorpej 		sc->sc_imr |= (ISR_PAUSE_END|ISR_PAUSE_ST);
   2061      1.1  thorpej 		flowctl = FLOWCTL_FLOWEN;
   2062      1.1  thorpej 	} else {
   2063      1.1  thorpej 		sc->sc_imr &= ~(ISR_PAUSE_END|ISR_PAUSE_ST);
   2064      1.1  thorpej 		flowctl = 0;
   2065      1.1  thorpej 	}
   2066      1.1  thorpej 
   2067      1.1  thorpej 	bus_space_write_4(sc->sc_st, sc->sc_sh, SIP_TXCFG, sc->sc_txcfg);
   2068      1.1  thorpej 	bus_space_write_4(sc->sc_st, sc->sc_sh, SIP_RXCFG, sc->sc_rxcfg);
   2069      1.1  thorpej 	bus_space_write_4(sc->sc_st, sc->sc_sh, SIP_IMR, sc->sc_imr);
   2070      1.1  thorpej 	bus_space_write_4(sc->sc_st, sc->sc_sh, SIP_FLOWCTL, flowctl);
   2071  1.2.2.1   bouyer }
   2072      1.1  thorpej 
   2073  1.2.2.1   bouyer /*
   2074  1.2.2.1   bouyer  * sip_dp83815_mii_readreg:	[mii interface function]
   2075  1.2.2.1   bouyer  *
   2076  1.2.2.1   bouyer  *	Read a PHY register on the MII.
   2077  1.2.2.1   bouyer  */
   2078  1.2.2.1   bouyer int
   2079  1.2.2.1   bouyer sip_dp83815_mii_readreg(self, phy, reg)
   2080  1.2.2.1   bouyer 	struct device *self;
   2081  1.2.2.1   bouyer 	int phy, reg;
   2082  1.2.2.1   bouyer {
   2083  1.2.2.1   bouyer 	struct sip_softc *sc = (struct sip_softc *) self;
   2084  1.2.2.1   bouyer 	u_int32_t val;
   2085  1.2.2.1   bouyer 
   2086  1.2.2.1   bouyer 	/*
   2087  1.2.2.1   bouyer 	 * The DP83815 only has an internal PHY.  Only allow
   2088  1.2.2.1   bouyer 	 * MII address 0.
   2089  1.2.2.1   bouyer 	 */
   2090  1.2.2.1   bouyer 	if (phy != 0)
   2091  1.2.2.1   bouyer 		return (0);
   2092  1.2.2.1   bouyer 
   2093  1.2.2.1   bouyer 	/*
   2094  1.2.2.1   bouyer 	 * Apparently, after a reset, the DP83815 can take a while
   2095  1.2.2.1   bouyer 	 * to respond.  During this recovery period, the BMSR returns
   2096  1.2.2.1   bouyer 	 * a value of 0.  Catch this -- it's not supposed to happen
   2097  1.2.2.1   bouyer 	 * (the BMSR has some hardcoded-to-1 bits), and wait for the
   2098  1.2.2.1   bouyer 	 * PHY to come back to life.
   2099  1.2.2.1   bouyer 	 *
   2100  1.2.2.1   bouyer 	 * This works out because the BMSR is the first register
   2101  1.2.2.1   bouyer 	 * read during the PHY probe process.
   2102  1.2.2.1   bouyer 	 */
   2103  1.2.2.1   bouyer 	do {
   2104  1.2.2.1   bouyer 		val = bus_space_read_4(sc->sc_st, sc->sc_sh, SIP_NS_PHY(reg));
   2105  1.2.2.1   bouyer 	} while (reg == MII_BMSR && val == 0);
   2106  1.2.2.1   bouyer 
   2107  1.2.2.1   bouyer 	return (val & 0xffff);
   2108  1.2.2.1   bouyer }
   2109  1.2.2.1   bouyer 
   2110  1.2.2.1   bouyer /*
   2111  1.2.2.1   bouyer  * sip_dp83815_mii_writereg:	[mii interface function]
   2112  1.2.2.1   bouyer  *
   2113  1.2.2.1   bouyer  *	Write a PHY register to the MII.
   2114  1.2.2.1   bouyer  */
   2115  1.2.2.1   bouyer void
   2116  1.2.2.1   bouyer sip_dp83815_mii_writereg(self, phy, reg, val)
   2117  1.2.2.1   bouyer 	struct device *self;
   2118  1.2.2.1   bouyer 	int phy, reg, val;
   2119  1.2.2.1   bouyer {
   2120  1.2.2.1   bouyer 	struct sip_softc *sc = (struct sip_softc *) self;
   2121  1.2.2.1   bouyer 
   2122  1.2.2.1   bouyer 	/*
   2123  1.2.2.1   bouyer 	 * The DP83815 only has an internal PHY.  Only allow
   2124  1.2.2.1   bouyer 	 * MII address 0.
   2125  1.2.2.1   bouyer 	 */
   2126  1.2.2.1   bouyer 	if (phy != 0)
   2127  1.2.2.1   bouyer 		return;
   2128  1.2.2.1   bouyer 
   2129  1.2.2.1   bouyer 	bus_space_write_4(sc->sc_st, sc->sc_sh, SIP_NS_PHY(reg), val);
   2130  1.2.2.1   bouyer }
   2131  1.2.2.1   bouyer 
   2132  1.2.2.1   bouyer /*
   2133  1.2.2.1   bouyer  * sip_dp83815_mii_statchg:	[mii interface function]
   2134  1.2.2.1   bouyer  *
   2135  1.2.2.1   bouyer  *	Callback from MII layer when media changes.
   2136  1.2.2.1   bouyer  */
   2137  1.2.2.1   bouyer void
   2138  1.2.2.1   bouyer sip_dp83815_mii_statchg(self)
   2139  1.2.2.1   bouyer 	struct device *self;
   2140  1.2.2.1   bouyer {
   2141  1.2.2.1   bouyer 	struct sip_softc *sc = (struct sip_softc *) self;
   2142  1.2.2.1   bouyer 
   2143  1.2.2.1   bouyer 	/*
   2144  1.2.2.1   bouyer 	 * Update TXCFG for full-duplex operation.
   2145  1.2.2.1   bouyer 	 */
   2146  1.2.2.1   bouyer 	if ((sc->sc_mii.mii_media_active & IFM_FDX) != 0)
   2147  1.2.2.1   bouyer 		sc->sc_txcfg |= (TXCFG_CSI | TXCFG_HBI);
   2148  1.2.2.1   bouyer 	else
   2149  1.2.2.1   bouyer 		sc->sc_txcfg &= ~(TXCFG_CSI | TXCFG_HBI);
   2150  1.2.2.1   bouyer 
   2151  1.2.2.1   bouyer 	/*
   2152  1.2.2.1   bouyer 	 * Update RXCFG for full-duplex or loopback.
   2153  1.2.2.1   bouyer 	 */
   2154  1.2.2.1   bouyer 	if ((sc->sc_mii.mii_media_active & IFM_FDX) != 0 ||
   2155  1.2.2.1   bouyer 	    IFM_SUBTYPE(sc->sc_mii.mii_media_active) == IFM_LOOP)
   2156  1.2.2.1   bouyer 		sc->sc_rxcfg |= RXCFG_ATX;
   2157  1.2.2.1   bouyer 	else
   2158  1.2.2.1   bouyer 		sc->sc_rxcfg &= ~RXCFG_ATX;
   2159  1.2.2.1   bouyer 
   2160  1.2.2.1   bouyer 	/*
   2161  1.2.2.1   bouyer 	 * XXX 802.3x flow control.
   2162  1.2.2.1   bouyer 	 */
   2163  1.2.2.1   bouyer 
   2164  1.2.2.1   bouyer 	bus_space_write_4(sc->sc_st, sc->sc_sh, SIP_TXCFG, sc->sc_txcfg);
   2165  1.2.2.1   bouyer 	bus_space_write_4(sc->sc_st, sc->sc_sh, SIP_RXCFG, sc->sc_rxcfg);
   2166  1.2.2.5   bouyer }
   2167  1.2.2.5   bouyer 
   2168  1.2.2.5   bouyer void
   2169  1.2.2.5   bouyer sip_sis900_read_macaddr(sc, enaddr)
   2170  1.2.2.5   bouyer 	struct sip_softc *sc;
   2171  1.2.2.5   bouyer 	u_int8_t *enaddr;
   2172  1.2.2.5   bouyer {
   2173  1.2.2.5   bouyer 	u_int16_t myea[ETHER_ADDR_LEN / 2];
   2174  1.2.2.5   bouyer 
   2175  1.2.2.5   bouyer 	sip_read_eeprom(sc, SIP_EEPROM_ETHERNET_ID0 >> 1,
   2176  1.2.2.5   bouyer 	    sizeof(myea) / sizeof(myea[0]), myea);
   2177  1.2.2.5   bouyer 
   2178  1.2.2.5   bouyer 	enaddr[0] = myea[0] & 0xff;
   2179  1.2.2.5   bouyer 	enaddr[1] = myea[0] >> 8;
   2180  1.2.2.5   bouyer 	enaddr[2] = myea[1] & 0xff;
   2181  1.2.2.5   bouyer 	enaddr[3] = myea[1] >> 8;
   2182  1.2.2.5   bouyer 	enaddr[4] = myea[2] & 0xff;
   2183  1.2.2.5   bouyer 	enaddr[5] = myea[2] >> 8;
   2184  1.2.2.5   bouyer }
   2185  1.2.2.5   bouyer 
   2186  1.2.2.5   bouyer static u_char bbr4[] = {0,8,4,12,2,10,6,14,1,9,5,13,3,11,7,15};
   2187  1.2.2.5   bouyer #define bbr(v)	((bbr4[(v)&0xf] << 4) | bbr4[((v)>>4) & 0xf])
   2188  1.2.2.5   bouyer 
   2189  1.2.2.5   bouyer void
   2190  1.2.2.5   bouyer sip_dp83815_read_macaddr(sc, enaddr)
   2191  1.2.2.5   bouyer 	struct sip_softc *sc;
   2192  1.2.2.5   bouyer 	u_int8_t *enaddr;
   2193  1.2.2.5   bouyer {
   2194  1.2.2.5   bouyer 	u_int16_t eeprom_data[SIP_DP83815_EEPROM_LENGTH / 2], *ea;
   2195  1.2.2.5   bouyer 	u_int8_t cksum, *e, match;
   2196  1.2.2.5   bouyer 	int i;
   2197  1.2.2.5   bouyer 
   2198  1.2.2.5   bouyer 	sip_read_eeprom(sc, 0, sizeof(eeprom_data) / sizeof(eeprom_data[0]),
   2199  1.2.2.5   bouyer 	    eeprom_data);
   2200  1.2.2.5   bouyer 
   2201  1.2.2.5   bouyer 	match = eeprom_data[SIP_DP83815_EEPROM_CHECKSUM/2] >> 8;
   2202  1.2.2.5   bouyer 	match = ~(match - 1);
   2203  1.2.2.5   bouyer 
   2204  1.2.2.5   bouyer 	cksum = 0x55;
   2205  1.2.2.5   bouyer 	e = (u_int8_t *) eeprom_data;
   2206  1.2.2.5   bouyer 	for (i=0 ; i<SIP_DP83815_EEPROM_CHECKSUM ; i++) {
   2207  1.2.2.5   bouyer 		cksum += *e++;
   2208  1.2.2.5   bouyer 	}
   2209  1.2.2.5   bouyer 	if (cksum != match) {
   2210  1.2.2.5   bouyer 		printf("%s: Checksum (%x) mismatch (%x)",
   2211  1.2.2.5   bouyer 		    sc->sc_dev.dv_xname, cksum, match);
   2212  1.2.2.5   bouyer 	}
   2213  1.2.2.5   bouyer 
   2214  1.2.2.5   bouyer 	/*
   2215  1.2.2.5   bouyer 	 * Unrolled because it makes slightly more sense this way.
   2216  1.2.2.5   bouyer 	 * The DP83815 stores the MAC address in bit 0 of word 6
   2217  1.2.2.5   bouyer 	 * through bit 15 of word 8.
   2218  1.2.2.5   bouyer 	 */
   2219  1.2.2.5   bouyer 	ea = &eeprom_data[6];
   2220  1.2.2.5   bouyer 	enaddr[0] = ((*ea & 0x1) << 7);
   2221  1.2.2.5   bouyer 	ea++;
   2222  1.2.2.5   bouyer 	enaddr[0] |= ((*ea & 0xFE00) >> 9);
   2223  1.2.2.5   bouyer 	enaddr[1] = ((*ea & 0x1FE) >> 1);
   2224  1.2.2.5   bouyer 	enaddr[2] = ((*ea & 0x1) << 7);
   2225  1.2.2.5   bouyer 	ea++;
   2226  1.2.2.5   bouyer 	enaddr[2] |= ((*ea & 0xFE00) >> 9);
   2227  1.2.2.5   bouyer 	enaddr[3] = ((*ea & 0x1FE) >> 1);
   2228  1.2.2.5   bouyer 	enaddr[4] = ((*ea & 0x1) << 7);
   2229  1.2.2.5   bouyer 	ea++;
   2230  1.2.2.5   bouyer 	enaddr[4] |= ((*ea & 0xFE00) >> 9);
   2231  1.2.2.5   bouyer 	enaddr[5] = ((*ea & 0x1FE) >> 1);
   2232  1.2.2.5   bouyer 
   2233  1.2.2.5   bouyer 	/*
   2234  1.2.2.5   bouyer 	 * In case that's not weird enough, we also need to reverse
   2235  1.2.2.5   bouyer 	 * the bits in each byte.  This all actually makes more sense
   2236  1.2.2.5   bouyer 	 * if you think about the EEPROM storage as an array of bits
   2237  1.2.2.5   bouyer 	 * being shifted into bytes, but that's not how we're looking
   2238  1.2.2.5   bouyer 	 * at it here...
   2239  1.2.2.5   bouyer 	 */
   2240  1.2.2.5   bouyer 	for (i=0 ; i<6 ; i++)
   2241  1.2.2.5   bouyer 		enaddr[i] = bbr(enaddr[i]);
   2242      1.1  thorpej }
   2243      1.1  thorpej 
   2244      1.1  thorpej /*
   2245      1.1  thorpej  * sip_mediastatus:	[ifmedia interface function]
   2246      1.1  thorpej  *
   2247      1.1  thorpej  *	Get the current interface media status.
   2248      1.1  thorpej  */
   2249      1.1  thorpej void
   2250      1.1  thorpej sip_mediastatus(ifp, ifmr)
   2251      1.1  thorpej 	struct ifnet *ifp;
   2252      1.1  thorpej 	struct ifmediareq *ifmr;
   2253      1.1  thorpej {
   2254      1.1  thorpej 	struct sip_softc *sc = ifp->if_softc;
   2255      1.1  thorpej 
   2256      1.1  thorpej 	mii_pollstat(&sc->sc_mii);
   2257      1.1  thorpej 	ifmr->ifm_status = sc->sc_mii.mii_media_status;
   2258      1.1  thorpej 	ifmr->ifm_active = sc->sc_mii.mii_media_active;
   2259      1.1  thorpej }
   2260      1.1  thorpej 
   2261      1.1  thorpej /*
   2262      1.1  thorpej  * sip_mediachange:	[ifmedia interface function]
   2263      1.1  thorpej  *
   2264      1.1  thorpej  *	Set hardware to newly-selected media.
   2265      1.1  thorpej  */
   2266      1.1  thorpej int
   2267      1.1  thorpej sip_mediachange(ifp)
   2268      1.1  thorpej 	struct ifnet *ifp;
   2269      1.1  thorpej {
   2270      1.1  thorpej 	struct sip_softc *sc = ifp->if_softc;
   2271      1.1  thorpej 
   2272      1.1  thorpej 	if (ifp->if_flags & IFF_UP)
   2273      1.1  thorpej 		mii_mediachg(&sc->sc_mii);
   2274      1.1  thorpej 	return (0);
   2275      1.1  thorpej }
   2276