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cs89x0.c revision 1.12.2.1.2.1
      1      1.12.2.1      tron /*	$NetBSD: cs89x0.c,v 1.12.2.1.2.1 2005/01/24 21:43:45 he Exp $	*/
      2           1.1      yamt 
      3           1.1      yamt /*
      4           1.1      yamt  * Copyright 1997
      5           1.1      yamt  * Digital Equipment Corporation. All rights reserved.
      6           1.1      yamt  *
      7           1.1      yamt  * This software is furnished under license and may be used and
      8           1.1      yamt  * copied only in accordance with the following terms and conditions.
      9           1.1      yamt  * Subject to these conditions, you may download, copy, install,
     10           1.1      yamt  * use, modify and distribute this software in source and/or binary
     11           1.1      yamt  * form. No title or ownership is transferred hereby.
     12           1.1      yamt  *
     13           1.1      yamt  * 1) Any source code used, modified or distributed must reproduce
     14           1.1      yamt  *    and retain this copyright notice and list of conditions as
     15           1.1      yamt  *    they appear in the source file.
     16           1.1      yamt  *
     17           1.1      yamt  * 2) No right is granted to use any trade name, trademark, or logo of
     18           1.1      yamt  *    Digital Equipment Corporation. Neither the "Digital Equipment
     19           1.1      yamt  *    Corporation" name nor any trademark or logo of Digital Equipment
     20           1.1      yamt  *    Corporation may be used to endorse or promote products derived
     21           1.1      yamt  *    from this software without the prior written permission of
     22           1.1      yamt  *    Digital Equipment Corporation.
     23           1.1      yamt  *
     24           1.1      yamt  * 3) This software is provided "AS-IS" and any express or implied
     25           1.1      yamt  *    warranties, including but not limited to, any implied warranties
     26           1.1      yamt  *    of merchantability, fitness for a particular purpose, or
     27           1.1      yamt  *    non-infringement are disclaimed. In no event shall DIGITAL be
     28           1.1      yamt  *    liable for any damages whatsoever, and in particular, DIGITAL
     29           1.1      yamt  *    shall not be liable for special, indirect, consequential, or
     30           1.1      yamt  *    incidental damages or damages for lost profits, loss of
     31           1.1      yamt  *    revenue or loss of use, whether such damages arise in contract,
     32           1.1      yamt  *    negligence, tort, under statute, in equity, at law or otherwise,
     33           1.1      yamt  *    even if advised of the possibility of such damage.
     34           1.1      yamt  */
     35           1.1      yamt 
     36           1.1      yamt /*
     37           1.1      yamt **++
     38           1.1      yamt **  FACILITY
     39           1.1      yamt **
     40           1.1      yamt **     Device Driver for the Crystal CS8900 ISA Ethernet Controller.
     41           1.1      yamt **
     42           1.1      yamt **  ABSTRACT
     43           1.1      yamt **
     44           1.1      yamt **     This module provides standard ethernet access for INET protocols
     45           1.1      yamt **     only.
     46           1.1      yamt **
     47           1.1      yamt **  AUTHORS
     48           1.1      yamt **
     49           1.1      yamt **     Peter Dettori     SEA - Software Engineering.
     50           1.1      yamt **
     51           1.1      yamt **  CREATION DATE:
     52           1.1      yamt **
     53           1.1      yamt **     13-Feb-1997.
     54           1.1      yamt **
     55           1.1      yamt **  MODIFICATION HISTORY (Digital):
     56           1.1      yamt **
     57           1.1      yamt **     Revision 1.27  1998/01/20  17:59:40  cgd
     58           1.1      yamt **     update for moved headers
     59           1.1      yamt **
     60           1.1      yamt **     Revision 1.26  1998/01/12  19:29:36  cgd
     61           1.1      yamt **     use arm32/isa versions of isadma code.
     62           1.1      yamt **
     63           1.1      yamt **     Revision 1.25  1997/12/12  01:35:27  cgd
     64           1.1      yamt **     convert to use new arp code (from Brini)
     65           1.1      yamt **
     66           1.1      yamt **     Revision 1.24  1997/12/10  22:31:56  cgd
     67           1.1      yamt **     trim some fat (get rid of ability to explicitly supply enet addr, since
     68           1.1      yamt **     it was never used and added a bunch of code which really doesn't belong in
     69           1.1      yamt **     an enet driver), and clean up slightly.
     70           1.1      yamt **
     71           1.1      yamt **     Revision 1.23  1997/10/06  16:42:12  cgd
     72           1.1      yamt **     copyright notices
     73           1.1      yamt **
     74           1.1      yamt **     Revision 1.22  1997/06/20  19:38:01  chaiken
     75           1.1      yamt **     fixes some smartcard problems
     76           1.1      yamt **
     77           1.1      yamt **     Revision 1.21  1997/06/10 02:56:20  grohn
     78           1.1      yamt **     Added call to ledNetActive
     79           1.1      yamt **
     80           1.1      yamt **     Revision 1.20  1997/06/05 00:47:06  dettori
     81           1.1      yamt **     Changed cs_process_rx_dma to reset and re-initialise the
     82           1.1      yamt **     ethernet chip when DMA gets out of sync, or mbufs
     83           1.1      yamt **     can't be allocated.
     84           1.1      yamt **
     85           1.1      yamt **     Revision 1.19  1997/06/03 03:09:58  dettori
     86           1.1      yamt **     Turn off sc_txbusy flag when a transmit underrun
     87           1.1      yamt **     occurs.
     88           1.1      yamt **
     89           1.1      yamt **     Revision 1.18  1997/06/02 00:04:35  dettori
     90           1.1      yamt **     redefined the transmit table to get around the nfs_timer bug while we are
     91           1.1      yamt **     looking into it further.
     92           1.1      yamt **
     93           1.1      yamt **     Also changed interrupts from EDGE to LEVEL.
     94           1.1      yamt **
     95           1.1      yamt **     Revision 1.17  1997/05/27 23:31:01  dettori
     96           1.1      yamt **     Pulled out changes to DMAMODE defines.
     97           1.1      yamt **
     98           1.1      yamt **     Revision 1.16  1997/05/23 04:25:16  cgd
     99           1.1      yamt **     reformat log so it fits in 80cols
    100           1.1      yamt **
    101           1.1      yamt **     Revision 1.15  1997/05/23  04:22:18  cgd
    102           1.1      yamt **     remove the existing copyright notice (which Peter Dettori indicated
    103           1.1      yamt **     was incorrect, copied from an existing NetBSD file only so that the
    104           1.1      yamt **     file would have a copyright notice on it, and which he'd intended to
    105           1.1      yamt **     replace).  Replace it with a Digital copyright notice, cloned from
    106           1.1      yamt **     ess.c.  It's not really correct either (it indicates that the source
    107           1.1      yamt **     is Digital confidential!), but is better than nothing and more
    108           1.1      yamt **     correct than what was there before.
    109           1.1      yamt **
    110           1.1      yamt **     Revision 1.14  1997/05/23  04:12:50  cgd
    111           1.1      yamt **     use an adaptive transmit start algorithm: start by telling the chip
    112           1.1      yamt **     to start transmitting after 381 bytes have been fed to it.  if that
    113           1.1      yamt **     gets transmit underruns, ramp down to 1021 bytes then "whole
    114           1.1      yamt **     packet."  If successful at a given level for a while, try the next
    115           1.1      yamt **     more agressive level.  This code doesn't ever try to start
    116           1.1      yamt **     transmitting after 5 bytes have been sent to the NIC, because
    117           1.1      yamt **     that underruns rather regularly.  The back-off and ramp-up mechanism
    118           1.1      yamt **     could probably be tuned a little bit, but this works well enough to
    119           1.1      yamt **     support > 1MB/s transmit rates on a clear ethernet (which is about
    120           1.1      yamt **     20-25% better than the driver had previously been getting).
    121           1.1      yamt **
    122           1.1      yamt **     Revision 1.13  1997/05/22  21:06:54  cgd
    123           1.1      yamt **     redo cs_copy_tx_frame() from scratch.  It had a fatal flaw: it was blindly
    124           1.1      yamt **     casting from u_int8_t * to u_int16_t * without worrying about alignment
    125           1.1      yamt **     issues.  This would cause bogus data to be spit out for mbufs with
    126           1.1      yamt **     misaligned data.  For instance, it caused the following bits to appear
    127           1.1      yamt **     on the wire:
    128           1.1      yamt **     	... etBND 1S2C .SHA(K) R ...
    129           1.1      yamt **     	    11112222333344445555
    130           1.1      yamt **     which should have appeared as:
    131           1.1      yamt **     	... NetBSD 1.2C (SHARK) ...
    132           1.1      yamt **     	    11112222333344445555
    133           1.1      yamt **     Note the apparent 'rotate' of the bytes in the word, which was due to
    134           1.1      yamt **     incorrect unaligned accesses.  This data corruption was the cause of
    135           1.1      yamt **     incoming telnet/rlogin hangs.
    136           1.1      yamt **
    137           1.1      yamt **     Revision 1.12  1997/05/22  01:55:32  cgd
    138           1.1      yamt **     reformat log so it fits in 80cols
    139           1.1      yamt **
    140           1.1      yamt **     Revision 1.11  1997/05/22  01:50:27  cgd
    141           1.1      yamt **     * enable input packet address checking in the BPF+IFF_PROMISCUOUS case,
    142           1.1      yamt **       so packets aimed at other hosts don't get sent to ether_input().
    143           1.1      yamt **     * Add a static const char *rcsid initialized with an RCS Id tag, so that
    144           1.1      yamt **       you can easily tell (`strings`) what version of the driver is in your
    145           1.1      yamt **       kernel binary.
    146           1.1      yamt **     * get rid of ether_cmp().  It was inconsistently used, not necessarily
    147           1.1      yamt **       safe, and not really a performance win anyway.  (It was only used when
    148           1.1      yamt **       setting up the multicast logical address filter, which is an
    149           1.1      yamt **       infrequent event.  It could have been used in the IFF_PROMISCUOUS
    150           1.1      yamt **       address check above, but the benefit of it vs. memcmp would be
    151           1.1      yamt **       inconsequential, there.)  Use memcmp() instead.
    152           1.1      yamt **     * restructure csStartOuput to avoid the following bugs in the case where
    153           1.1      yamt **       txWait was being set:
    154           1.1      yamt **         * it would accidentally drop the outgoing packet if told to wait
    155           1.1      yamt **           but the outgoing packet queue was empty.
    156           1.1      yamt **         * it would bpf_mtap() the outgoing packet multiple times (once for
    157           1.1      yamt **           each time it was told to wait), and would also recalculate
    158           1.1      yamt **           the length of the outgoing packet each time it was told to
    159           1.1      yamt **           wait.
    160           1.1      yamt **       While there, rename txWait to txLoop, since with the new structure of
    161           1.1      yamt **       the code, the latter name makes more sense.
    162           1.1      yamt **
    163           1.1      yamt **     Revision 1.10  1997/05/19  02:03:20  cgd
    164           1.1      yamt **     Set RX_CTL in cs_set_ladr_filt(), rather than cs_initChip().  cs_initChip()
    165           1.1      yamt **     is the only caller of cs_set_ladr_filt(), and always calls it, so this
    166           1.1      yamt **     ends up being logically the same.  In cs_set_ladr_filt(), if IFF_PROMISC
    167           1.1      yamt **     is set, enable promiscuous mode (and set IFF_ALLMULTI), otherwise behave
    168           1.1      yamt **     as before.
    169           1.1      yamt **
    170           1.1      yamt **     Revision 1.9  1997/05/19  01:45:37  cgd
    171           1.1      yamt **     create a new function, cs_ether_input(), which does received-packet
    172           1.1      yamt **     BPF and ether_input processing.  This code used to be in three places,
    173           1.1      yamt **     and centralizing it will make adding IFF_PROMISC support much easier.
    174           1.1      yamt **     Also, in cs_copy_tx_frame(), put it some (currently disabled) code to
    175           1.1      yamt **     do copies with bus_space_write_region_2().  It's more correct, and
    176           1.1      yamt **     potentially more efficient.  That function needs to be gutted (to
    177           1.1      yamt **     deal properly with alignment issues, which it currently does wrong),
    178           1.1      yamt **     however, and the change doesn't gain much, so there's no point in
    179           1.1      yamt **     enabling it now.
    180           1.1      yamt **
    181           1.1      yamt **     Revision 1.8  1997/05/19  01:17:10  cgd
    182           1.1      yamt **     fix a comment re: the setting of the TxConfig register.  Clean up
    183           1.1      yamt **     interface counter maintenance (make it use standard idiom).
    184           1.1      yamt **
    185           1.1      yamt **--
    186           1.1      yamt */
    187           1.1      yamt 
    188           1.1      yamt #include <sys/cdefs.h>
    189      1.12.2.1      tron __KERNEL_RCSID(0, "$NetBSD: cs89x0.c,v 1.12.2.1.2.1 2005/01/24 21:43:45 he Exp $");
    190           1.1      yamt 
    191           1.1      yamt #include "opt_inet.h"
    192           1.1      yamt 
    193           1.1      yamt #include <sys/param.h>
    194           1.1      yamt #include <sys/systm.h>
    195           1.1      yamt #include <sys/mbuf.h>
    196           1.1      yamt #include <sys/syslog.h>
    197           1.1      yamt #include <sys/socket.h>
    198           1.1      yamt #include <sys/device.h>
    199           1.1      yamt #include <sys/malloc.h>
    200           1.1      yamt #include <sys/ioctl.h>
    201           1.1      yamt #include <sys/errno.h>
    202           1.1      yamt 
    203           1.1      yamt #include "rnd.h"
    204           1.1      yamt #if NRND > 0
    205           1.1      yamt #include <sys/rnd.h>
    206           1.1      yamt #endif
    207           1.1      yamt 
    208           1.1      yamt #include <net/if.h>
    209           1.1      yamt #include <net/if_ether.h>
    210           1.1      yamt #include <net/if_media.h>
    211           1.1      yamt #ifdef INET
    212           1.1      yamt #include <netinet/in.h>
    213           1.1      yamt #include <netinet/if_inarp.h>
    214           1.1      yamt #endif
    215           1.1      yamt 
    216           1.1      yamt #include "bpfilter.h"
    217           1.1      yamt #if NBPFILTER > 0
    218           1.1      yamt #include <net/bpf.h>
    219           1.1      yamt #include <net/bpfdesc.h>
    220           1.1      yamt #endif
    221           1.1      yamt 
    222           1.1      yamt #include <uvm/uvm_extern.h>
    223           1.1      yamt 
    224           1.1      yamt #include <machine/bus.h>
    225           1.1      yamt #include <machine/intr.h>
    226           1.1      yamt 
    227           1.1      yamt #include <dev/ic/cs89x0reg.h>
    228           1.1      yamt #include <dev/ic/cs89x0var.h>
    229           1.1      yamt 
    230           1.1      yamt #ifdef SHARK
    231           1.3     pooka #include <shark/shark/sequoia.h>
    232           1.1      yamt #endif
    233           1.1      yamt 
    234           1.1      yamt /*
    235           1.1      yamt  * MACRO DEFINITIONS
    236           1.1      yamt  */
    237           1.1      yamt #define CS_OUTPUT_LOOP_MAX 100	/* max times round notorious tx loop */
    238           1.1      yamt 
    239           1.1      yamt /*
    240           1.1      yamt  * FUNCTION PROTOTYPES
    241           1.1      yamt  */
    242           1.5  augustss void	cs_get_default_media(struct cs_softc *);
    243           1.5  augustss int	cs_get_params(struct cs_softc *);
    244           1.5  augustss int	cs_get_enaddr(struct cs_softc *);
    245           1.5  augustss int	cs_reset_chip(struct cs_softc *);
    246           1.5  augustss void	cs_reset(void *);
    247           1.5  augustss int	cs_ioctl(struct ifnet *, u_long, caddr_t);
    248           1.5  augustss void	cs_initChip(struct cs_softc *);
    249           1.5  augustss void	cs_buffer_event(struct cs_softc *, u_int16_t);
    250           1.5  augustss void	cs_transmit_event(struct cs_softc *, u_int16_t);
    251           1.5  augustss void	cs_receive_event(struct cs_softc *, u_int16_t);
    252           1.5  augustss void	cs_process_receive(struct cs_softc *);
    253           1.5  augustss void	cs_process_rx_early(struct cs_softc *);
    254           1.5  augustss void	cs_start_output(struct ifnet *);
    255           1.5  augustss void	cs_copy_tx_frame(struct cs_softc *, struct mbuf *);
    256           1.5  augustss void	cs_set_ladr_filt(struct cs_softc *, struct ethercom *);
    257           1.5  augustss u_int16_t cs_hash_index(char *);
    258           1.5  augustss void	cs_counter_event(struct cs_softc *, u_int16_t);
    259           1.5  augustss 
    260           1.5  augustss int	cs_mediachange(struct ifnet *);
    261           1.5  augustss void	cs_mediastatus(struct ifnet *, struct ifmediareq *);
    262           1.5  augustss 
    263           1.5  augustss static int cs_enable(struct cs_softc *);
    264           1.5  augustss static void cs_disable(struct cs_softc *);
    265           1.5  augustss static void cs_stop(struct ifnet *, int);
    266           1.5  augustss static void cs_power(int, void *);
    267           1.1      yamt 
    268           1.1      yamt /*
    269           1.1      yamt  * GLOBAL DECLARATIONS
    270           1.1      yamt  */
    271           1.1      yamt 
    272           1.1      yamt /*
    273           1.1      yamt  * Xmit-early table.
    274           1.1      yamt  *
    275           1.1      yamt  * To get better performance, we tell the chip to start packet
    276           1.1      yamt  * transmission before the whole packet is copied to the chip.
    277           1.1      yamt  * However, this can fail under load.  When it fails, we back off
    278           1.1      yamt  * to a safer setting for a little while.
    279           1.1      yamt  *
    280           1.1      yamt  * txcmd is the value of txcmd used to indicate when to start transmission.
    281           1.1      yamt  * better is the next 'better' state in the table.
    282           1.1      yamt  * better_count is the number of output packets before transition to the
    283           1.1      yamt  *   better state.
    284           1.1      yamt  * worse is the next 'worse' state in the table.
    285           1.1      yamt  *
    286           1.1      yamt  * Transition to the next worse state happens automatically when a
    287           1.1      yamt  * transmittion underrun occurs.
    288           1.1      yamt  */
    289           1.1      yamt struct cs_xmit_early {
    290           1.1      yamt 	u_int16_t       txcmd;
    291           1.1      yamt 	int             better;
    292           1.1      yamt 	int             better_count;
    293           1.1      yamt 	int             worse;
    294           1.1      yamt } cs_xmit_early_table[3] = {
    295           1.1      yamt 	{ TX_CMD_START_381,	0,	INT_MAX,	1, },
    296           1.1      yamt 	{ TX_CMD_START_1021,	0,	50000,		2, },
    297           1.1      yamt 	{ TX_CMD_START_ALL,	1,	5000,		2, },
    298           1.1      yamt };
    299           1.1      yamt 
    300           1.1      yamt int cs_default_media[] = {
    301           1.1      yamt 	IFM_ETHER|IFM_10_2,
    302           1.1      yamt 	IFM_ETHER|IFM_10_5,
    303           1.1      yamt 	IFM_ETHER|IFM_10_T,
    304           1.1      yamt 	IFM_ETHER|IFM_10_T|IFM_FDX,
    305           1.1      yamt };
    306           1.1      yamt int cs_default_nmedia = sizeof(cs_default_media) / sizeof(cs_default_media[0]);
    307           1.1      yamt 
    308           1.1      yamt int
    309           1.5  augustss cs_attach(struct cs_softc *sc, u_int8_t *enaddr, int *media,
    310           1.5  augustss 	  int nmedia, int defmedia)
    311           1.1      yamt {
    312           1.1      yamt 	struct ifnet *ifp = &sc->sc_ethercom.ec_if;
    313           1.1      yamt 	const char *chipname, *medname;
    314           1.1      yamt 	u_int16_t reg;
    315           1.1      yamt 	int i;
    316           1.1      yamt 
    317           1.1      yamt 	/* Start out in IO mode */
    318           1.1      yamt 	sc->sc_memorymode = FALSE;
    319           1.1      yamt 
    320           1.1      yamt 	/* make sure we're right */
    321           1.1      yamt 	for (i = 0; i < 10000; i++) {
    322           1.1      yamt 		reg = CS_READ_PACKET_PAGE(sc, PKTPG_EISA_NUM);
    323           1.1      yamt 		if (reg == EISA_NUM_CRYSTAL) {
    324           1.1      yamt 			break;
    325           1.1      yamt 		}
    326           1.1      yamt 	}
    327           1.1      yamt 	if (i == 10000) {
    328           1.1      yamt 		printf("%s: wrong id(0x%x)\n", sc->sc_dev.dv_xname, reg);
    329           1.1      yamt 		return 1; /* XXX should panic? */
    330           1.1      yamt 	}
    331           1.1      yamt 
    332           1.1      yamt 	reg = CS_READ_PACKET_PAGE(sc, PKTPG_PRODUCT_ID);
    333           1.1      yamt 	sc->sc_prodid = reg & PROD_ID_MASK;
    334           1.1      yamt 	sc->sc_prodrev = (reg & PROD_REV_MASK) >> 8;
    335           1.1      yamt 
    336           1.1      yamt 	switch (sc->sc_prodid) {
    337           1.1      yamt 	case PROD_ID_CS8900:
    338           1.1      yamt 		chipname = "CS8900";
    339           1.1      yamt 		break;
    340           1.1      yamt 	case PROD_ID_CS8920:
    341           1.1      yamt 		chipname = "CS8920";
    342           1.1      yamt 		break;
    343           1.1      yamt 	case PROD_ID_CS8920M:
    344           1.1      yamt 		chipname = "CS8920M";
    345           1.1      yamt 		break;
    346           1.1      yamt 	default:
    347           1.1      yamt 		panic("cs_attach: impossible");
    348           1.1      yamt 	}
    349           1.1      yamt 
    350           1.1      yamt 	/*
    351           1.1      yamt 	 * the first thing to do is check that the mbuf cluster size is
    352           1.1      yamt 	 * greater than the MTU for an ethernet frame. The code depends on
    353           1.1      yamt 	 * this and to port this to a OS where this was not the case would
    354           1.1      yamt 	 * not be straightforward.
    355           1.2      yamt 	 *
    356           1.2      yamt 	 * we need 1 byte spare because our
    357           1.2      yamt 	 * packet read loop can overrun.
    358           1.2      yamt 	 * and we may need pad bytes to align ip header.
    359           1.1      yamt 	 */
    360           1.2      yamt 	if (MCLBYTES < ETHER_MAX_LEN + 1 +
    361           1.2      yamt 		ALIGN(sizeof(struct ether_header)) - sizeof(struct ether_header)) {
    362           1.1      yamt 		printf("%s: MCLBYTES too small for Ethernet frame\n",
    363           1.1      yamt 		    sc->sc_dev.dv_xname);
    364           1.1      yamt 		return 1;
    365           1.1      yamt 	}
    366           1.1      yamt 
    367           1.1      yamt 	/* Start out not transmitting */
    368           1.1      yamt 	sc->sc_txbusy = FALSE;
    369           1.1      yamt 
    370           1.1      yamt 	/* Set up early transmit threshhold */
    371           1.1      yamt 	sc->sc_xe_ent = 0;
    372           1.1      yamt 	sc->sc_xe_togo = cs_xmit_early_table[sc->sc_xe_ent].better_count;
    373           1.1      yamt 
    374           1.1      yamt 	/* Initialize ifnet structure. */
    375           1.1      yamt 	strcpy(ifp->if_xname, sc->sc_dev.dv_xname);
    376           1.1      yamt 	ifp->if_softc = sc;
    377           1.1      yamt 	ifp->if_start = cs_start_output;
    378           1.1      yamt 	ifp->if_init = cs_init;
    379           1.1      yamt 	ifp->if_ioctl = cs_ioctl;
    380           1.1      yamt 	ifp->if_stop = cs_stop;
    381           1.1      yamt 	ifp->if_watchdog = NULL;	/* no watchdog at this stage */
    382           1.1      yamt 	ifp->if_flags = IFF_SIMPLEX | IFF_NOTRAILERS |
    383           1.1      yamt 	    IFF_BROADCAST | IFF_MULTICAST;
    384           1.1      yamt 	IFQ_SET_READY(&ifp->if_snd);
    385           1.1      yamt 
    386           1.1      yamt 	/* Initialize ifmedia structures. */
    387           1.1      yamt 	ifmedia_init(&sc->sc_media, 0, cs_mediachange, cs_mediastatus);
    388           1.1      yamt 
    389           1.1      yamt 	if (media != NULL) {
    390           1.1      yamt 		for (i = 0; i < nmedia; i++)
    391           1.1      yamt 			ifmedia_add(&sc->sc_media, media[i], 0, NULL);
    392           1.1      yamt 		ifmedia_set(&sc->sc_media, defmedia);
    393           1.1      yamt 	} else {
    394           1.1      yamt 		for (i = 0; i < cs_default_nmedia; i++)
    395           1.1      yamt 			ifmedia_add(&sc->sc_media, cs_default_media[i],
    396           1.1      yamt 			    0, NULL);
    397           1.1      yamt 		cs_get_default_media(sc);
    398           1.1      yamt 	}
    399           1.1      yamt 
    400           1.1      yamt 	if ((sc->sc_cfgflags & CFGFLG_NOT_EEPROM) == 0) {
    401           1.1      yamt 		/* Get parameters from the EEPROM */
    402           1.1      yamt 		if (cs_get_params(sc) == CS_ERROR) {
    403           1.1      yamt 			printf("%s: unable to get settings from EEPROM\n",
    404           1.1      yamt 			    sc->sc_dev.dv_xname);
    405           1.1      yamt 			return 1;
    406           1.1      yamt 		}
    407           1.1      yamt 	}
    408           1.1      yamt 
    409           1.1      yamt 	if (enaddr != NULL)
    410           1.1      yamt 		memcpy(sc->sc_enaddr, enaddr, sizeof(sc->sc_enaddr));
    411           1.1      yamt 	else if ((sc->sc_cfgflags & CFGFLG_NOT_EEPROM) == 0) {
    412           1.1      yamt 		/* Get and store the Ethernet address */
    413           1.1      yamt 		if (cs_get_enaddr(sc) == CS_ERROR) {
    414           1.1      yamt 			printf("%s: unable to read Ethernet address\n",
    415           1.1      yamt 			    sc->sc_dev.dv_xname);
    416           1.1      yamt 			return 1;
    417           1.1      yamt 		}
    418           1.1      yamt 	} else {
    419           1.6  augustss #if 1
    420           1.6  augustss 		int i;
    421           1.6  augustss 		uint v;
    422           1.6  augustss 
    423           1.6  augustss 		for (i = 0; i < 6; i += 2) {
    424           1.6  augustss 			v = CS_READ_PACKET_PAGE(sc, PKTPG_IND_ADDR + i);
    425           1.6  augustss 			sc->sc_enaddr[i + 0] = v;
    426           1.6  augustss 			sc->sc_enaddr[i + 1] = v >> 8;
    427           1.6  augustss 		}
    428           1.6  augustss #else
    429           1.1      yamt 		printf("%s: no Ethernet address!\n", sc->sc_dev.dv_xname);
    430           1.1      yamt 		return 1;
    431           1.6  augustss #endif
    432           1.1      yamt 	}
    433           1.1      yamt 
    434           1.1      yamt 	switch (IFM_SUBTYPE(sc->sc_media.ifm_cur->ifm_media)) {
    435           1.1      yamt 	case IFM_10_2:
    436           1.1      yamt 		medname = "BNC";
    437           1.1      yamt 		break;
    438           1.1      yamt 	case IFM_10_5:
    439           1.1      yamt 		medname = "AUI";
    440           1.1      yamt 		break;
    441           1.1      yamt 	case IFM_10_T:
    442           1.1      yamt 		if (sc->sc_media.ifm_cur->ifm_media & IFM_FDX)
    443           1.1      yamt 			medname = "UTP <full-duplex>";
    444           1.1      yamt 		else
    445           1.1      yamt 			medname = "UTP";
    446           1.1      yamt 		break;
    447           1.1      yamt 	default:
    448           1.1      yamt 		panic("cs_attach: impossible");
    449           1.1      yamt 	}
    450           1.1      yamt 	printf("%s: %s rev. %c, address %s, media %s\n", sc->sc_dev.dv_xname,
    451           1.1      yamt 	    chipname, sc->sc_prodrev + 'A', ether_sprintf(sc->sc_enaddr),
    452           1.1      yamt 	    medname);
    453           1.1      yamt 
    454           1.1      yamt 	if (sc->sc_dma_attach)
    455           1.1      yamt 		(*sc->sc_dma_attach)(sc);
    456           1.1      yamt 
    457           1.1      yamt 	sc->sc_sh = shutdownhook_establish(cs_reset, sc);
    458           1.1      yamt 	if (sc->sc_sh == NULL) {
    459           1.1      yamt 		printf("%s: unable to establish shutdownhook\n",
    460           1.1      yamt 		    sc->sc_dev.dv_xname);
    461           1.1      yamt 		cs_detach(sc);
    462           1.1      yamt 		return 1;
    463           1.1      yamt 	}
    464           1.1      yamt 
    465           1.1      yamt 	/* Attach the interface. */
    466           1.1      yamt 	if_attach(ifp);
    467           1.1      yamt 	ether_ifattach(ifp, sc->sc_enaddr);
    468           1.1      yamt 
    469           1.1      yamt #if NRND > 0
    470           1.1      yamt 	rnd_attach_source(&sc->rnd_source, sc->sc_dev.dv_xname,
    471           1.1      yamt 			  RND_TYPE_NET, 0);
    472           1.1      yamt #endif
    473           1.1      yamt 	sc->sc_cfgflags |= CFGFLG_ATTACHED;
    474           1.1      yamt 
    475           1.1      yamt 	/* Reset the chip */
    476           1.1      yamt 	if (cs_reset_chip(sc) == CS_ERROR) {
    477           1.1      yamt 		printf("%s: reset failed\n", sc->sc_dev.dv_xname);
    478           1.1      yamt 		cs_detach(sc);
    479           1.1      yamt 		return 1;
    480           1.1      yamt 	}
    481           1.1      yamt 
    482           1.1      yamt 	sc->sc_powerhook = powerhook_establish(cs_power, sc);
    483           1.1      yamt 	if (sc->sc_powerhook == 0)
    484           1.1      yamt 		printf("%s: warning: powerhook_establish failed\n",
    485           1.1      yamt 			sc->sc_dev.dv_xname);
    486           1.1      yamt 
    487           1.1      yamt 	return 0;
    488           1.1      yamt }
    489           1.1      yamt 
    490           1.1      yamt int
    491           1.5  augustss cs_detach(struct cs_softc *sc)
    492           1.1      yamt {
    493           1.1      yamt 	struct ifnet *ifp = &sc->sc_ethercom.ec_if;
    494           1.1      yamt 
    495           1.1      yamt 	if (sc->sc_powerhook) {
    496           1.1      yamt 		powerhook_disestablish(sc->sc_powerhook);
    497           1.1      yamt 		sc->sc_powerhook = 0;
    498           1.1      yamt 	}
    499           1.1      yamt 
    500           1.1      yamt 	if (sc->sc_cfgflags & CFGFLG_ATTACHED) {
    501           1.1      yamt #if NRND > 0
    502           1.1      yamt 		rnd_detach_source(&sc->rnd_source);
    503           1.1      yamt #endif
    504           1.1      yamt 		ether_ifdetach(ifp);
    505           1.1      yamt 		if_detach(ifp);
    506           1.1      yamt 		sc->sc_cfgflags &= ~CFGFLG_ATTACHED;
    507           1.1      yamt 	}
    508           1.1      yamt 
    509           1.1      yamt 	if (sc->sc_sh != NULL)
    510           1.1      yamt 		shutdownhook_disestablish(sc->sc_sh);
    511           1.1      yamt 
    512           1.1      yamt #if 0
    513           1.1      yamt 	/*
    514           1.1      yamt 	 * XXX not necessary
    515           1.1      yamt 	 */
    516           1.1      yamt 	if (sc->sc_cfgflags & CFGFLG_DMA_MODE) {
    517           1.1      yamt 		isa_dmamem_unmap(sc->sc_ic, sc->sc_drq, sc->sc_dmabase, sc->sc_dmasize);
    518           1.1      yamt 		isa_dmamem_free(sc->sc_ic, sc->sc_drq, sc->sc_dmaaddr, sc->sc_dmasize);
    519           1.1      yamt 		isa_dmamap_destroy(sc->sc_ic, sc->sc_drq);
    520           1.1      yamt 		sc->sc_cfgflags &= ~CFGFLG_DMA_MODE;
    521           1.1      yamt 	}
    522           1.1      yamt #endif
    523           1.1      yamt 
    524           1.1      yamt 	return 0;
    525           1.1      yamt }
    526           1.1      yamt 
    527           1.1      yamt void
    528           1.5  augustss cs_get_default_media(struct cs_softc *sc)
    529           1.1      yamt {
    530           1.1      yamt 	u_int16_t adp_cfg, xmit_ctl;
    531           1.1      yamt 
    532           1.6  augustss 	if (cs_verify_eeprom(sc) == CS_ERROR) {
    533           1.1      yamt 		printf("%s: cs_get_default_media: EEPROM missing or bad\n",
    534           1.1      yamt 		    sc->sc_dev.dv_xname);
    535           1.1      yamt 		goto fakeit;
    536           1.1      yamt 	}
    537           1.1      yamt 
    538           1.6  augustss 	if (cs_read_eeprom(sc, EEPROM_ADPTR_CFG, &adp_cfg) == CS_ERROR) {
    539           1.1      yamt 		printf("%s: unable to read adapter config from EEPROM\n",
    540           1.1      yamt 		    sc->sc_dev.dv_xname);
    541           1.1      yamt 		goto fakeit;
    542           1.1      yamt 	}
    543           1.1      yamt 
    544           1.6  augustss 	if (cs_read_eeprom(sc, EEPROM_XMIT_CTL, &xmit_ctl) == CS_ERROR) {
    545           1.1      yamt 		printf("%s: unable to read transmit control from EEPROM\n",
    546           1.1      yamt 		    sc->sc_dev.dv_xname);
    547           1.1      yamt 		goto fakeit;
    548           1.1      yamt 	}
    549           1.1      yamt 
    550           1.1      yamt 	switch (adp_cfg & ADPTR_CFG_MEDIA) {
    551           1.1      yamt 	case ADPTR_CFG_AUI:
    552           1.1      yamt 		ifmedia_set(&sc->sc_media, IFM_ETHER|IFM_10_5);
    553           1.1      yamt 		break;
    554           1.1      yamt 	case ADPTR_CFG_10BASE2:
    555           1.1      yamt 		ifmedia_set(&sc->sc_media, IFM_ETHER|IFM_10_2);
    556           1.1      yamt 		break;
    557           1.1      yamt 	case ADPTR_CFG_10BASET:
    558           1.1      yamt 	default:
    559           1.1      yamt 		if (xmit_ctl & XMIT_CTL_FDX)
    560           1.1      yamt 			ifmedia_set(&sc->sc_media, IFM_ETHER|IFM_10_T|IFM_FDX);
    561           1.1      yamt 		else
    562           1.1      yamt 			ifmedia_set(&sc->sc_media, IFM_ETHER|IFM_10_T);
    563           1.1      yamt 		break;
    564           1.1      yamt 	}
    565           1.1      yamt 	return;
    566           1.1      yamt 
    567           1.1      yamt  fakeit:
    568           1.1      yamt 	printf("%s: WARNING: default media setting may be inaccurate\n",
    569           1.1      yamt 	    sc->sc_dev.dv_xname);
    570           1.1      yamt 	/* XXX Arbitrary... */
    571           1.1      yamt 	ifmedia_set(&sc->sc_media, IFM_ETHER|IFM_10_T);
    572           1.1      yamt }
    573           1.1      yamt 
    574           1.1      yamt int
    575           1.5  augustss cs_get_params(struct cs_softc *sc)
    576           1.1      yamt {
    577           1.1      yamt 	u_int16_t isaConfig;
    578           1.1      yamt 	u_int16_t adapterConfig;
    579           1.1      yamt 
    580           1.6  augustss 	if (cs_verify_eeprom(sc) == CS_ERROR) {
    581           1.1      yamt 		printf("%s: cs_get_params: EEPROM missing or bad\n",
    582           1.1      yamt 		    sc->sc_dev.dv_xname);
    583           1.1      yamt 		return (CS_ERROR);
    584           1.1      yamt 	}
    585           1.1      yamt 
    586           1.1      yamt 	/* Get ISA configuration from the EEPROM */
    587           1.6  augustss 	if (cs_read_eeprom(sc, EEPROM_ISA_CFG, &isaConfig) == CS_ERROR)
    588           1.1      yamt 		goto eeprom_bad;
    589           1.1      yamt 
    590           1.1      yamt 	/* Get adapter configuration from the EEPROM */
    591           1.6  augustss 	if (cs_read_eeprom(sc, EEPROM_ADPTR_CFG, &adapterConfig) == CS_ERROR)
    592           1.1      yamt 		goto eeprom_bad;
    593           1.1      yamt 
    594           1.1      yamt 	/* Copy the USE_SA flag */
    595           1.1      yamt 	if (isaConfig & ISA_CFG_USE_SA)
    596           1.1      yamt 		sc->sc_cfgflags |= CFGFLG_USE_SA;
    597           1.1      yamt 
    598           1.1      yamt 	/* Copy the IO Channel Ready flag */
    599           1.1      yamt 	if (isaConfig & ISA_CFG_IOCHRDY)
    600           1.1      yamt 		sc->sc_cfgflags |= CFGFLG_IOCHRDY;
    601           1.1      yamt 
    602           1.1      yamt 	/* Copy the DC/DC Polarity flag */
    603           1.1      yamt 	if (adapterConfig & ADPTR_CFG_DCDC_POL)
    604           1.1      yamt 		sc->sc_cfgflags |= CFGFLG_DCDC_POL;
    605           1.1      yamt 
    606           1.1      yamt 	return (CS_OK);
    607           1.1      yamt 
    608           1.1      yamt  eeprom_bad:
    609           1.1      yamt 	printf("%s: cs_get_params: unable to read from EEPROM\n",
    610           1.1      yamt 	    sc->sc_dev.dv_xname);
    611           1.1      yamt 	return (CS_ERROR);
    612           1.1      yamt }
    613           1.1      yamt 
    614           1.1      yamt int
    615           1.5  augustss cs_get_enaddr(struct cs_softc *sc)
    616           1.1      yamt {
    617           1.1      yamt 	u_int16_t *myea;
    618           1.1      yamt 
    619           1.6  augustss 	if (cs_verify_eeprom(sc) == CS_ERROR) {
    620           1.1      yamt 		printf("%s: cs_get_enaddr: EEPROM missing or bad\n",
    621           1.1      yamt 		    sc->sc_dev.dv_xname);
    622           1.1      yamt 		return (CS_ERROR);
    623           1.1      yamt 	}
    624           1.1      yamt 
    625           1.1      yamt 	myea = (u_int16_t *)sc->sc_enaddr;
    626           1.1      yamt 
    627           1.1      yamt 	/* Get Ethernet address from the EEPROM */
    628           1.1      yamt 	/* XXX this will likely lose on a big-endian machine. -- cgd */
    629           1.6  augustss 	if (cs_read_eeprom(sc, EEPROM_IND_ADDR_H, &myea[0]) == CS_ERROR)
    630           1.1      yamt 		goto eeprom_bad;
    631           1.6  augustss 	if (cs_read_eeprom(sc, EEPROM_IND_ADDR_M, &myea[1]) == CS_ERROR)
    632           1.1      yamt 		goto eeprom_bad;
    633           1.6  augustss 	if (cs_read_eeprom(sc, EEPROM_IND_ADDR_L, &myea[2]) == CS_ERROR)
    634           1.1      yamt 		goto eeprom_bad;
    635           1.1      yamt 
    636           1.1      yamt 	return (CS_OK);
    637           1.1      yamt 
    638           1.1      yamt  eeprom_bad:
    639           1.1      yamt 	printf("%s: cs_get_enaddr: unable to read from EEPROM\n",
    640           1.1      yamt 	    sc->sc_dev.dv_xname);
    641           1.1      yamt 	return (CS_ERROR);
    642           1.1      yamt }
    643           1.1      yamt 
    644           1.1      yamt int
    645           1.5  augustss cs_reset_chip(struct cs_softc *sc)
    646           1.1      yamt {
    647           1.1      yamt 	int intState;
    648           1.1      yamt 	int x;
    649           1.1      yamt 
    650           1.1      yamt 	/* Disable interrupts at the CPU so reset command is atomic */
    651           1.1      yamt 	intState = splnet();
    652           1.1      yamt 
    653           1.1      yamt 	/*
    654           1.1      yamt 	 * We are now resetting the chip
    655           1.1      yamt 	 *
    656           1.1      yamt 	 * A spurious interrupt is generated by the chip when it is reset. This
    657           1.1      yamt 	 * variable informs the interrupt handler to ignore this interrupt.
    658           1.1      yamt 	 */
    659           1.1      yamt 	sc->sc_resetting = TRUE;
    660           1.1      yamt 
    661           1.1      yamt 	/* Issue a reset command to the chip */
    662           1.1      yamt 	CS_WRITE_PACKET_PAGE(sc, PKTPG_SELF_CTL, SELF_CTL_RESET);
    663           1.1      yamt 
    664           1.1      yamt 	/* Re-enable interrupts at the CPU */
    665           1.1      yamt 	splx(intState);
    666           1.1      yamt 
    667           1.1      yamt 	/* The chip is always in IO mode after a reset */
    668           1.1      yamt 	sc->sc_memorymode = FALSE;
    669           1.1      yamt 
    670           1.1      yamt 	/* If transmission was in progress, it is not now */
    671           1.1      yamt 	sc->sc_txbusy = FALSE;
    672           1.1      yamt 
    673           1.1      yamt 	/*
    674           1.1      yamt 	 * there was a delay(125); here, but it seems uneccesary 125 usec is
    675           1.1      yamt 	 * 1/8000 of a second, not 1/8 of a second. the data sheet advises
    676           1.1      yamt 	 * 1/10 of a second here, but the SI_BUSY and INIT_DONE loops below
    677           1.1      yamt 	 * should be sufficient.
    678           1.1      yamt 	 */
    679           1.1      yamt 
    680           1.1      yamt 	/* Transition SBHE to switch chip from 8-bit to 16-bit */
    681           1.6  augustss 	IO_READ_1(sc, PORT_PKTPG_PTR + 0);
    682           1.6  augustss 	IO_READ_1(sc, PORT_PKTPG_PTR + 1);
    683           1.6  augustss 	IO_READ_1(sc, PORT_PKTPG_PTR + 0);
    684           1.6  augustss 	IO_READ_1(sc, PORT_PKTPG_PTR + 1);
    685           1.1      yamt 
    686           1.1      yamt 	/* Wait until the EEPROM is not busy */
    687           1.1      yamt 	for (x = 0; x < MAXLOOP; x++) {
    688           1.1      yamt 		if (!(CS_READ_PACKET_PAGE(sc, PKTPG_SELF_ST) & SELF_ST_SI_BUSY))
    689           1.1      yamt 			break;
    690           1.1      yamt 	}
    691           1.1      yamt 
    692           1.1      yamt 	if (x == MAXLOOP)
    693           1.1      yamt 		return CS_ERROR;
    694           1.1      yamt 
    695           1.1      yamt 	/* Wait until initialization is done */
    696           1.1      yamt 	for (x = 0; x < MAXLOOP; x++) {
    697           1.1      yamt 		if (CS_READ_PACKET_PAGE(sc, PKTPG_SELF_ST) & SELF_ST_INIT_DONE)
    698           1.1      yamt 			break;
    699           1.1      yamt 	}
    700           1.1      yamt 
    701           1.1      yamt 	if (x == MAXLOOP)
    702           1.1      yamt 		return CS_ERROR;
    703           1.1      yamt 
    704           1.1      yamt 	/* Reset is no longer in progress */
    705           1.1      yamt 	sc->sc_resetting = FALSE;
    706           1.1      yamt 
    707           1.1      yamt 	return CS_OK;
    708           1.1      yamt }
    709           1.1      yamt 
    710           1.1      yamt int
    711           1.6  augustss cs_verify_eeprom(struct cs_softc *sc)
    712           1.1      yamt {
    713           1.1      yamt 	u_int16_t self_status;
    714           1.1      yamt 
    715           1.1      yamt 	/* Verify that the EEPROM is present and OK */
    716           1.6  augustss 	self_status = CS_READ_PACKET_PAGE_IO(sc, PKTPG_SELF_ST);
    717           1.1      yamt 	if (((self_status & SELF_ST_EEP_PRES) &&
    718           1.1      yamt 	     (self_status & SELF_ST_EEP_OK)) == 0)
    719           1.1      yamt 		return (CS_ERROR);
    720           1.1      yamt 
    721           1.1      yamt 	return (CS_OK);
    722           1.1      yamt }
    723           1.1      yamt 
    724           1.1      yamt int
    725           1.6  augustss cs_read_eeprom(struct cs_softc *sc, int offset, u_int16_t *pValue)
    726           1.1      yamt {
    727           1.1      yamt 	int x;
    728           1.1      yamt 
    729           1.1      yamt 	/* Ensure that the EEPROM is not busy */
    730           1.1      yamt 	for (x = 0; x < MAXLOOP; x++) {
    731           1.6  augustss 		if (!(CS_READ_PACKET_PAGE_IO(sc, PKTPG_SELF_ST) &
    732           1.1      yamt 		      SELF_ST_SI_BUSY))
    733           1.1      yamt 			break;
    734           1.1      yamt 	}
    735           1.1      yamt 
    736           1.1      yamt 	if (x == MAXLOOP)
    737           1.1      yamt 		return (CS_ERROR);
    738           1.1      yamt 
    739           1.1      yamt 	/* Issue the command to read the offset within the EEPROM */
    740           1.6  augustss 	CS_WRITE_PACKET_PAGE_IO(sc, PKTPG_EEPROM_CMD,
    741           1.1      yamt 	    offset | EEPROM_CMD_READ);
    742           1.1      yamt 
    743           1.1      yamt 	/* Wait until the command is completed */
    744           1.1      yamt 	for (x = 0; x < MAXLOOP; x++) {
    745           1.6  augustss 		if (!(CS_READ_PACKET_PAGE_IO(sc, PKTPG_SELF_ST) &
    746           1.1      yamt 		      SELF_ST_SI_BUSY))
    747           1.1      yamt 			break;
    748           1.1      yamt 	}
    749           1.1      yamt 
    750           1.1      yamt 	if (x == MAXLOOP)
    751           1.1      yamt 		return (CS_ERROR);
    752           1.1      yamt 
    753           1.1      yamt 	/* Get the EEPROM data from the EEPROM Data register */
    754           1.6  augustss 	*pValue = CS_READ_PACKET_PAGE_IO(sc, PKTPG_EEPROM_DATA);
    755           1.1      yamt 
    756           1.1      yamt 	return (CS_OK);
    757           1.1      yamt }
    758           1.1      yamt 
    759           1.1      yamt void
    760           1.5  augustss cs_initChip(struct cs_softc *sc)
    761           1.1      yamt {
    762           1.1      yamt 	u_int16_t busCtl;
    763           1.1      yamt 	u_int16_t selfCtl;
    764           1.6  augustss 	u_int16_t v;
    765           1.1      yamt 	u_int16_t isaId;
    766           1.6  augustss 	int i;
    767           1.1      yamt 	int media = IFM_SUBTYPE(sc->sc_media.ifm_cur->ifm_media);
    768           1.1      yamt 
    769           1.1      yamt 	/* Disable reception and transmission of frames */
    770           1.1      yamt 	CS_WRITE_PACKET_PAGE(sc, PKTPG_LINE_CTL,
    771           1.1      yamt 	    CS_READ_PACKET_PAGE(sc, PKTPG_LINE_CTL) &
    772           1.1      yamt 	    ~LINE_CTL_RX_ON & ~LINE_CTL_TX_ON);
    773           1.1      yamt 
    774           1.1      yamt 	/* Disable interrupt at the chip */
    775           1.1      yamt 	CS_WRITE_PACKET_PAGE(sc, PKTPG_BUS_CTL,
    776           1.1      yamt 	    CS_READ_PACKET_PAGE(sc, PKTPG_BUS_CTL) & ~BUS_CTL_INT_ENBL);
    777           1.1      yamt 
    778           1.1      yamt 	/* If IOCHRDY is enabled then clear the bit in the busCtl register */
    779           1.1      yamt 	busCtl = CS_READ_PACKET_PAGE(sc, PKTPG_BUS_CTL);
    780           1.1      yamt 	if (sc->sc_cfgflags & CFGFLG_IOCHRDY) {
    781           1.1      yamt 		CS_WRITE_PACKET_PAGE(sc, PKTPG_BUS_CTL,
    782           1.1      yamt 		    busCtl & ~BUS_CTL_IOCHRDY);
    783           1.1      yamt 	} else {
    784           1.1      yamt 		CS_WRITE_PACKET_PAGE(sc, PKTPG_BUS_CTL,
    785           1.1      yamt 		    busCtl | BUS_CTL_IOCHRDY);
    786           1.1      yamt 	}
    787           1.1      yamt 
    788           1.1      yamt 	/* Set the Line Control register to match the media type */
    789           1.1      yamt 	if (media == IFM_10_T)
    790           1.1      yamt 		CS_WRITE_PACKET_PAGE(sc, PKTPG_LINE_CTL, LINE_CTL_10BASET);
    791           1.1      yamt 	else
    792           1.1      yamt 		CS_WRITE_PACKET_PAGE(sc, PKTPG_LINE_CTL, LINE_CTL_AUI_ONLY);
    793           1.1      yamt 
    794           1.1      yamt 	/*
    795           1.1      yamt 	 * Set the BSTATUS/HC1 pin to be used as HC1.  HC1 is used to
    796           1.1      yamt 	 * enable the DC/DC converter
    797           1.1      yamt 	 */
    798           1.1      yamt 	selfCtl = SELF_CTL_HC1E;
    799           1.1      yamt 
    800           1.1      yamt 	/* If the media type is 10Base2 */
    801           1.1      yamt 	if (media == IFM_10_2) {
    802           1.1      yamt 		/*
    803           1.1      yamt 		 * Enable the DC/DC converter if it has a low enable.
    804           1.1      yamt 		 */
    805           1.1      yamt 		if ((sc->sc_cfgflags & CFGFLG_DCDC_POL) == 0)
    806           1.1      yamt 			/*
    807           1.1      yamt 			 * Set the HCB1 bit, which causes the HC1 pin to go
    808           1.1      yamt 			 * low.
    809           1.1      yamt 			 */
    810           1.1      yamt 			selfCtl |= SELF_CTL_HCB1;
    811           1.1      yamt 	} else { /* Media type is 10BaseT or AUI */
    812           1.1      yamt 		/*
    813           1.1      yamt 		 * Disable the DC/DC converter if it has a high enable.
    814           1.1      yamt 		 */
    815           1.1      yamt 		if ((sc->sc_cfgflags & CFGFLG_DCDC_POL) != 0) {
    816           1.1      yamt 			/*
    817           1.1      yamt 			 * Set the HCB1 bit, which causes the HC1 pin to go
    818           1.1      yamt 			 * low.
    819           1.1      yamt 			 */
    820           1.1      yamt 			selfCtl |= SELF_CTL_HCB1;
    821           1.1      yamt 		}
    822           1.1      yamt 	}
    823           1.1      yamt 	CS_WRITE_PACKET_PAGE(sc, PKTPG_SELF_CTL, selfCtl);
    824           1.1      yamt 
    825           1.1      yamt 	/* enable normal link pulse */
    826           1.1      yamt 	if (sc->sc_prodid == PROD_ID_CS8920 || sc->sc_prodid == PROD_ID_CS8920M)
    827           1.1      yamt 		CS_WRITE_PACKET_PAGE(sc, PKTPG_AUTONEG_CTL, AUTOCTL_NLP_ENABLE);
    828           1.1      yamt 
    829           1.1      yamt 	/* Enable full-duplex, if appropriate */
    830           1.1      yamt 	if (sc->sc_media.ifm_cur->ifm_media & IFM_FDX)
    831           1.1      yamt 		CS_WRITE_PACKET_PAGE(sc, PKTPG_TEST_CTL, TEST_CTL_FDX);
    832           1.1      yamt 
    833           1.1      yamt 	/* RX_CTL set in cs_set_ladr_filt(), below */
    834           1.1      yamt 
    835           1.1      yamt 	/* enable all transmission interrupts */
    836           1.1      yamt 	CS_WRITE_PACKET_PAGE(sc, PKTPG_TX_CFG, TX_CFG_ALL_IE);
    837           1.1      yamt 
    838           1.1      yamt 	/* Accept all receive interrupts */
    839           1.1      yamt 	CS_WRITE_PACKET_PAGE(sc, PKTPG_RX_CFG, RX_CFG_ALL_IE);
    840           1.1      yamt 
    841           1.1      yamt 	/*
    842           1.1      yamt 	 * Configure Operational Modes
    843           1.1      yamt 	 *
    844           1.1      yamt 	 * I have turned off the BUF_CFG_RX_MISS_IE, to speed things up, this is
    845           1.1      yamt 	 * a better way to do it because the card has a counter which can be
    846           1.7       wiz 	 * read to update the RX_MISS counter. This saves many interrupts.
    847           1.1      yamt 	 *
    848           1.7       wiz 	 * I have turned on the tx and rx overflow interrupts to counter using
    849           1.1      yamt 	 * the receive miss interrupt. This is a better estimate of errors
    850           1.1      yamt 	 * and requires lower system overhead.
    851           1.1      yamt 	 */
    852           1.1      yamt 	CS_WRITE_PACKET_PAGE(sc, PKTPG_BUF_CFG, BUF_CFG_TX_UNDR_IE |
    853           1.1      yamt 			  BUF_CFG_RX_DMA_IE);
    854           1.1      yamt 
    855           1.1      yamt 	if (sc->sc_dma_chipinit)
    856           1.1      yamt 		(*sc->sc_dma_chipinit)(sc);
    857           1.1      yamt 
    858           1.1      yamt 	/* If memory mode is enabled */
    859           1.1      yamt 	if (sc->sc_cfgflags & CFGFLG_MEM_MODE) {
    860           1.1      yamt 		/* If external logic is present for address decoding */
    861           1.1      yamt 		if (CS_READ_PACKET_PAGE(sc, PKTPG_SELF_ST) & SELF_ST_EL_PRES) {
    862           1.1      yamt 			/*
    863           1.1      yamt 			 * Program the external logic to decode address bits
    864           1.1      yamt 			 * SA20-SA23
    865           1.1      yamt 			 */
    866           1.1      yamt 			CS_WRITE_PACKET_PAGE(sc, PKTPG_EEPROM_CMD,
    867           1.1      yamt 			    ((sc->sc_pktpgaddr & 0xffffff) >> 20) |
    868           1.1      yamt 			    EEPROM_CMD_ELSEL);
    869           1.1      yamt 		}
    870           1.1      yamt 
    871           1.1      yamt 		/*
    872           1.1      yamt 		 * Write the packet page base physical address to the memory
    873           1.1      yamt 		 * base register.
    874           1.1      yamt 		 */
    875           1.1      yamt 		CS_WRITE_PACKET_PAGE(sc, PKTPG_MEM_BASE + 0,
    876           1.1      yamt 		    sc->sc_pktpgaddr & 0xFFFF);
    877           1.1      yamt 		CS_WRITE_PACKET_PAGE(sc, PKTPG_MEM_BASE + 2,
    878           1.1      yamt 		    sc->sc_pktpgaddr >> 16);
    879           1.1      yamt 		busCtl = BUS_CTL_MEM_MODE;
    880           1.1      yamt 
    881           1.1      yamt 		/* tell the chip to read the addresses off the SA pins */
    882           1.1      yamt 		if (sc->sc_cfgflags & CFGFLG_USE_SA) {
    883           1.1      yamt 			busCtl |= BUS_CTL_USE_SA;
    884           1.1      yamt 		}
    885           1.1      yamt 		CS_WRITE_PACKET_PAGE(sc, PKTPG_BUS_CTL,
    886           1.1      yamt 		    CS_READ_PACKET_PAGE(sc, PKTPG_BUS_CTL) | busCtl);
    887           1.1      yamt 
    888           1.1      yamt 		/* We are in memory mode now! */
    889           1.1      yamt 		sc->sc_memorymode = TRUE;
    890           1.1      yamt 
    891           1.1      yamt 		/*
    892           1.1      yamt 		 * wait here (10ms) for the chip to swap over. this is the
    893           1.1      yamt 		 * maximum time that this could take.
    894           1.1      yamt 		 */
    895           1.1      yamt 		delay(10000);
    896           1.1      yamt 
    897           1.1      yamt 		/* Verify that we can read from the chip */
    898           1.1      yamt 		isaId = CS_READ_PACKET_PAGE(sc, PKTPG_EISA_NUM);
    899           1.1      yamt 
    900           1.1      yamt 		/*
    901           1.1      yamt 		 * As a last minute sanity check before actually using mapped
    902           1.1      yamt 		 * memory we verify that we can read the isa number from the
    903           1.1      yamt 		 * chip in memory mode.
    904           1.1      yamt 		 */
    905           1.1      yamt 		if (isaId != EISA_NUM_CRYSTAL) {
    906           1.1      yamt 			printf("%s: failed to enable memory mode\n",
    907           1.1      yamt 			    sc->sc_dev.dv_xname);
    908           1.1      yamt 			sc->sc_memorymode = FALSE;
    909           1.1      yamt 		} else {
    910           1.1      yamt 			/*
    911           1.1      yamt 			 * we are in memory mode so if we aren't using DMA,
    912           1.1      yamt 			 * then program the chip to interrupt early.
    913           1.1      yamt 			 */
    914           1.1      yamt 			if ((sc->sc_cfgflags & CFGFLG_DMA_MODE) == 0) {
    915           1.1      yamt 				CS_WRITE_PACKET_PAGE(sc, PKTPG_BUF_CFG,
    916           1.1      yamt 				    BUF_CFG_RX_DEST_IE |
    917           1.1      yamt 				    BUF_CFG_RX_MISS_OVER_IE |
    918           1.1      yamt 				    BUF_CFG_TX_COL_OVER_IE);
    919           1.1      yamt 			}
    920           1.1      yamt 		}
    921           1.1      yamt 
    922           1.1      yamt 	}
    923           1.1      yamt 
    924           1.1      yamt 	/* Put Ethernet address into the Individual Address register */
    925           1.6  augustss 	for (i = 0; i < 6; i += 2) {
    926           1.6  augustss 		v = sc->sc_enaddr[i + 0] | (sc->sc_enaddr[i + 1]) << 8;
    927           1.6  augustss 		CS_WRITE_PACKET_PAGE(sc, PKTPG_IND_ADDR + i, v);
    928           1.6  augustss 	}
    929           1.1      yamt 
    930           1.1      yamt 	if (sc->sc_irq != -1) {
    931           1.1      yamt 		/* Set the interrupt level in the chip */
    932           1.1      yamt 		if (sc->sc_prodid == PROD_ID_CS8900) {
    933           1.1      yamt 			if (sc->sc_irq == 5) {
    934           1.1      yamt 				CS_WRITE_PACKET_PAGE(sc, PKTPG_INT_NUM, 3);
    935           1.1      yamt 			} else {
    936           1.1      yamt 				CS_WRITE_PACKET_PAGE(sc, PKTPG_INT_NUM, (sc->sc_irq) - 10);
    937           1.1      yamt 			}
    938           1.1      yamt 		}
    939           1.1      yamt 		else { /* CS8920 */
    940           1.1      yamt 			CS_WRITE_PACKET_PAGE(sc, PKTPG_8920_INT_NUM, sc->sc_irq);
    941           1.1      yamt 		}
    942           1.1      yamt 	}
    943           1.1      yamt 
    944           1.1      yamt 	/* write the multicast mask to the address filter register */
    945           1.1      yamt 	cs_set_ladr_filt(sc, &sc->sc_ethercom);
    946           1.1      yamt 
    947           1.1      yamt 	/* Enable reception and transmission of frames */
    948           1.1      yamt 	CS_WRITE_PACKET_PAGE(sc, PKTPG_LINE_CTL,
    949           1.1      yamt 	    CS_READ_PACKET_PAGE(sc, PKTPG_LINE_CTL) |
    950           1.1      yamt 	    LINE_CTL_RX_ON | LINE_CTL_TX_ON);
    951           1.1      yamt 
    952           1.1      yamt 	/* Enable interrupt at the chip */
    953           1.1      yamt 	CS_WRITE_PACKET_PAGE(sc, PKTPG_BUS_CTL,
    954           1.1      yamt 	    CS_READ_PACKET_PAGE(sc, PKTPG_BUS_CTL) | BUS_CTL_INT_ENBL);
    955           1.1      yamt }
    956           1.1      yamt 
    957           1.1      yamt int
    958           1.5  augustss cs_init(struct ifnet *ifp)
    959           1.1      yamt {
    960           1.1      yamt 	int intState;
    961           1.1      yamt 	int error = CS_OK;
    962           1.1      yamt 	struct cs_softc *sc = ifp->if_softc;
    963           1.1      yamt 
    964           1.1      yamt 	if (cs_enable(sc))
    965           1.1      yamt 		goto out;
    966           1.1      yamt 
    967           1.1      yamt 	cs_stop(ifp, 0);
    968           1.1      yamt 
    969           1.1      yamt 	intState = splnet();
    970           1.1      yamt 
    971           1.1      yamt #if 0
    972           1.1      yamt 	/* Mark the interface as down */
    973           1.1      yamt 	sc->sc_ethercom.ec_if.if_flags &= ~(IFF_UP | IFF_RUNNING);
    974           1.1      yamt #endif
    975           1.1      yamt 
    976           1.1      yamt #ifdef CS_DEBUG
    977           1.1      yamt 	/* Enable debugging */
    978           1.1      yamt 	sc->sc_ethercom.ec_if.if_flags |= IFF_DEBUG;
    979           1.1      yamt #endif
    980           1.1      yamt 
    981           1.1      yamt 	/* Reset the chip */
    982           1.1      yamt 	if ((error = cs_reset_chip(sc)) == CS_OK) {
    983           1.1      yamt 		/* Initialize the chip */
    984           1.1      yamt 		cs_initChip(sc);
    985           1.1      yamt 
    986           1.1      yamt 		/* Mark the interface as running */
    987           1.1      yamt 		sc->sc_ethercom.ec_if.if_flags |= IFF_RUNNING;
    988           1.1      yamt 		sc->sc_ethercom.ec_if.if_flags &= ~IFF_OACTIVE;
    989           1.1      yamt 		sc->sc_ethercom.ec_if.if_timer = 0;
    990           1.1      yamt 
    991           1.1      yamt 		/* Assume we have carrier until we are told otherwise. */
    992           1.1      yamt 		sc->sc_carrier = 1;
    993           1.1      yamt 	} else {
    994           1.1      yamt 		printf("%s: unable to reset chip\n", sc->sc_dev.dv_xname);
    995           1.1      yamt 	}
    996           1.1      yamt 
    997           1.1      yamt 	splx(intState);
    998           1.1      yamt out:
    999           1.1      yamt 	if (error == CS_OK)
   1000           1.1      yamt 		return 0;
   1001           1.1      yamt 	return EIO;
   1002           1.1      yamt }
   1003           1.1      yamt 
   1004           1.1      yamt void
   1005           1.5  augustss cs_set_ladr_filt(struct cs_softc *sc, struct ethercom *ec)
   1006           1.1      yamt {
   1007           1.1      yamt 	struct ifnet *ifp = &ec->ec_if;
   1008           1.1      yamt 	struct ether_multi *enm;
   1009           1.1      yamt 	struct ether_multistep step;
   1010           1.1      yamt 	u_int16_t af[4];
   1011           1.1      yamt 	u_int16_t port, mask, index;
   1012           1.1      yamt 
   1013           1.1      yamt 	/*
   1014           1.1      yamt          * Set up multicast address filter by passing all multicast addresses
   1015           1.1      yamt          * through a crc generator, and then using the high order 6 bits as an
   1016           1.1      yamt          * index into the 64 bit logical address filter.  The high order bit
   1017           1.1      yamt          * selects the word, while the rest of the bits select the bit within
   1018           1.1      yamt          * the word.
   1019           1.1      yamt          */
   1020           1.1      yamt 	if (ifp->if_flags & IFF_PROMISC) {
   1021           1.1      yamt 		/* accept all valid frames. */
   1022           1.1      yamt 		CS_WRITE_PACKET_PAGE(sc, PKTPG_RX_CTL,
   1023           1.1      yamt 		    RX_CTL_PROMISC_A | RX_CTL_RX_OK_A |
   1024           1.1      yamt 		    RX_CTL_IND_A | RX_CTL_BCAST_A | RX_CTL_MCAST_A);
   1025           1.1      yamt 		ifp->if_flags |= IFF_ALLMULTI;
   1026           1.1      yamt 		return;
   1027           1.1      yamt 	}
   1028           1.1      yamt 
   1029           1.1      yamt 	/*
   1030           1.1      yamt 	 * accept frames if a. crc valid, b. individual address match c.
   1031           1.1      yamt 	 * broadcast address,and d. multicast addresses matched in the hash
   1032           1.1      yamt 	 * filter
   1033           1.1      yamt 	 */
   1034           1.1      yamt 	CS_WRITE_PACKET_PAGE(sc, PKTPG_RX_CTL,
   1035           1.1      yamt 	    RX_CTL_RX_OK_A | RX_CTL_IND_A | RX_CTL_BCAST_A | RX_CTL_MCAST_A);
   1036           1.1      yamt 
   1037           1.1      yamt 
   1038           1.1      yamt 	/*
   1039           1.1      yamt 	 * start off with all multicast flag clear, set it if we need to
   1040           1.1      yamt 	 * later, otherwise we will leave it.
   1041           1.1      yamt 	 */
   1042           1.1      yamt 	ifp->if_flags &= ~IFF_ALLMULTI;
   1043           1.1      yamt 	af[0] = af[1] = af[2] = af[3] = 0x0000;
   1044           1.1      yamt 
   1045           1.1      yamt 	/*
   1046           1.1      yamt 	 * Loop through all the multicast addresses unless we get a range of
   1047           1.1      yamt 	 * addresses, in which case we will just accept all packets.
   1048           1.1      yamt 	 * Justification for this is given in the next comment.
   1049           1.1      yamt 	 */
   1050           1.1      yamt 	ETHER_FIRST_MULTI(step, ec, enm);
   1051           1.1      yamt 	while (enm != NULL) {
   1052           1.1      yamt 		if (memcmp(enm->enm_addrlo, enm->enm_addrhi,
   1053           1.1      yamt 		    sizeof enm->enm_addrlo)) {
   1054           1.1      yamt 			/*
   1055           1.1      yamt 	                 * We must listen to a range of multicast addresses.
   1056           1.1      yamt 	                 * For now, just accept all multicasts, rather than
   1057           1.1      yamt 	                 * trying to set only those filter bits needed to match
   1058           1.1      yamt 	                 * the range.  (At this time, the only use of address
   1059           1.1      yamt 	                 * ranges is for IP multicast routing, for which the
   1060           1.1      yamt 	                 * range is big enough to require all bits set.)
   1061           1.1      yamt 	                 */
   1062           1.1      yamt 			ifp->if_flags |= IFF_ALLMULTI;
   1063           1.1      yamt 			af[0] = af[1] = af[2] = af[3] = 0xffff;
   1064           1.1      yamt 			break;
   1065           1.1      yamt 		} else {
   1066           1.1      yamt 			/*
   1067           1.1      yamt 	                 * we have got an individual address so just set that
   1068           1.1      yamt 	                 * bit.
   1069           1.1      yamt 	                 */
   1070           1.1      yamt 			index = cs_hash_index(enm->enm_addrlo);
   1071           1.1      yamt 
   1072           1.1      yamt 			/* Set the bit the Logical address filter. */
   1073           1.1      yamt 			port = (u_int16_t) (index >> 4);
   1074           1.1      yamt 			mask = (u_int16_t) (1 << (index & 0xf));
   1075           1.1      yamt 			af[port] |= mask;
   1076           1.1      yamt 
   1077           1.1      yamt 			ETHER_NEXT_MULTI(step, enm);
   1078           1.1      yamt 		}
   1079           1.1      yamt 	}
   1080           1.1      yamt 
   1081           1.1      yamt 	/* now program the chip with the addresses */
   1082           1.1      yamt 	CS_WRITE_PACKET_PAGE(sc, PKTPG_LOG_ADDR + 0, af[0]);
   1083           1.1      yamt 	CS_WRITE_PACKET_PAGE(sc, PKTPG_LOG_ADDR + 2, af[1]);
   1084           1.1      yamt 	CS_WRITE_PACKET_PAGE(sc, PKTPG_LOG_ADDR + 4, af[2]);
   1085           1.1      yamt 	CS_WRITE_PACKET_PAGE(sc, PKTPG_LOG_ADDR + 6, af[3]);
   1086           1.1      yamt 	return;
   1087           1.1      yamt }
   1088           1.1      yamt 
   1089           1.1      yamt u_int16_t
   1090           1.5  augustss cs_hash_index(char *addr)
   1091           1.1      yamt {
   1092           1.4   thorpej 	uint32_t crc;
   1093           1.4   thorpej 	uint16_t hash_code;
   1094           1.1      yamt 
   1095           1.4   thorpej 	crc = ether_crc32_le(addr, ETHER_ADDR_LEN);
   1096           1.1      yamt 
   1097           1.4   thorpej 	hash_code = crc >> 26;
   1098           1.4   thorpej 	return (hash_code);
   1099           1.1      yamt }
   1100           1.1      yamt 
   1101           1.1      yamt void
   1102           1.5  augustss cs_reset(void *arg)
   1103           1.1      yamt {
   1104           1.1      yamt 	struct cs_softc *sc = arg;
   1105           1.1      yamt 
   1106           1.1      yamt 	/* Mark the interface as down */
   1107           1.1      yamt 	sc->sc_ethercom.ec_if.if_flags &= ~IFF_RUNNING;
   1108           1.1      yamt 
   1109           1.1      yamt 	/* Reset the chip */
   1110           1.1      yamt 	cs_reset_chip(sc);
   1111           1.1      yamt }
   1112           1.1      yamt 
   1113           1.1      yamt int
   1114           1.5  augustss cs_ioctl(struct ifnet *ifp, u_long cmd, caddr_t data)
   1115           1.1      yamt {
   1116           1.1      yamt 	struct cs_softc *sc = ifp->if_softc;
   1117           1.1      yamt 	struct ifreq *ifr = (struct ifreq *) data;
   1118           1.1      yamt 	int state;
   1119           1.1      yamt 	int result;
   1120           1.1      yamt 
   1121           1.1      yamt 	state = splnet();
   1122           1.1      yamt 
   1123           1.1      yamt 	result = 0;		/* only set if something goes wrong */
   1124           1.1      yamt 
   1125           1.1      yamt 	switch (cmd) {
   1126           1.1      yamt 	case SIOCGIFMEDIA:
   1127           1.1      yamt 	case SIOCSIFMEDIA:
   1128           1.1      yamt 		result = ifmedia_ioctl(ifp, ifr, &sc->sc_media, cmd);
   1129           1.1      yamt 		break;
   1130           1.1      yamt 
   1131           1.1      yamt 	default:
   1132           1.1      yamt 		result = ether_ioctl(ifp, cmd, data);
   1133           1.1      yamt 		if (result == ENETRESET) {
   1134  1.12.2.1.2.1        he 			if (ifp->if_flags & IFF_RUNNING) {
   1135           1.1      yamt 				/*
   1136           1.1      yamt 				 * Multicast list has changed.  Set the
   1137           1.1      yamt 				 * hardware filter accordingly.
   1138           1.1      yamt 				 */
   1139           1.1      yamt 				cs_set_ladr_filt(sc, &sc->sc_ethercom);
   1140           1.1      yamt 			}
   1141           1.1      yamt 			result = 0;
   1142           1.1      yamt 		}
   1143           1.1      yamt 		break;
   1144           1.1      yamt 	}
   1145           1.1      yamt 
   1146           1.1      yamt 	splx(state);
   1147           1.1      yamt 
   1148           1.1      yamt 	return result;
   1149           1.1      yamt }
   1150           1.1      yamt 
   1151           1.1      yamt int
   1152           1.5  augustss cs_mediachange(struct ifnet *ifp)
   1153           1.1      yamt {
   1154           1.1      yamt 
   1155           1.1      yamt 	/*
   1156           1.1      yamt 	 * Current media is already set up.  Just reset the interface
   1157           1.1      yamt 	 * to let the new value take hold.
   1158           1.1      yamt 	 */
   1159           1.1      yamt 	cs_init(ifp);
   1160           1.1      yamt 	return (0);
   1161           1.1      yamt }
   1162           1.1      yamt 
   1163           1.1      yamt void
   1164           1.5  augustss cs_mediastatus(struct ifnet *ifp, struct ifmediareq *ifmr)
   1165           1.1      yamt {
   1166           1.1      yamt 	struct cs_softc *sc = ifp->if_softc;
   1167           1.1      yamt 
   1168           1.1      yamt 	/*
   1169           1.1      yamt 	 * The currently selected media is always the active media.
   1170           1.1      yamt 	 */
   1171           1.1      yamt 	ifmr->ifm_active = sc->sc_media.ifm_cur->ifm_media;
   1172           1.1      yamt 
   1173           1.1      yamt 	if (ifp->if_flags & IFF_UP) {
   1174           1.1      yamt 		/* Interface up, status is valid. */
   1175           1.1      yamt 		ifmr->ifm_status = IFM_AVALID |
   1176           1.1      yamt 		    (sc->sc_carrier ? IFM_ACTIVE : 0);
   1177           1.1      yamt 	}
   1178           1.1      yamt 		else ifmr->ifm_status = 0;
   1179           1.1      yamt }
   1180           1.1      yamt 
   1181           1.1      yamt int
   1182           1.5  augustss cs_intr(void *arg)
   1183           1.1      yamt {
   1184           1.1      yamt 	struct cs_softc *sc = arg;
   1185           1.1      yamt 	u_int16_t Event;
   1186           1.1      yamt #if NRND > 0
   1187           1.1      yamt 	u_int16_t rndEvent;
   1188           1.1      yamt #endif
   1189           1.1      yamt 
   1190           1.6  augustss /*printf("cs_intr %p\n", sc);*/
   1191           1.1      yamt 	/* Ignore any interrupts that happen while the chip is being reset */
   1192           1.1      yamt 	if (sc->sc_resetting) {
   1193           1.1      yamt 		printf("%s: cs_intr: reset in progress\n",
   1194           1.1      yamt 		    sc->sc_dev.dv_xname);
   1195           1.1      yamt 		return 1;
   1196           1.1      yamt 	}
   1197           1.1      yamt 
   1198           1.1      yamt 	/* Read an event from the Interrupt Status Queue */
   1199           1.1      yamt 	if (sc->sc_memorymode)
   1200           1.1      yamt 		Event = CS_READ_PACKET_PAGE(sc, PKTPG_ISQ);
   1201           1.1      yamt 	else
   1202           1.1      yamt 		Event = CS_READ_PORT(sc, PORT_ISQ);
   1203           1.1      yamt 
   1204           1.1      yamt 	if ((Event & REG_NUM_MASK) == 0 || Event == 0xffff)
   1205           1.1      yamt 		return 0;	/* not ours */
   1206           1.1      yamt 
   1207           1.1      yamt #if NRND > 0
   1208           1.1      yamt 	rndEvent = Event;
   1209           1.1      yamt #endif
   1210           1.1      yamt 
   1211           1.1      yamt 	/* Process all the events in the Interrupt Status Queue */
   1212           1.1      yamt 	while ((Event & REG_NUM_MASK) != 0 && Event != 0xffff) {
   1213           1.1      yamt 		/* Dispatch to an event handler based on the register number */
   1214           1.1      yamt 		switch (Event & REG_NUM_MASK) {
   1215           1.1      yamt 		case REG_NUM_RX_EVENT:
   1216           1.1      yamt 			cs_receive_event(sc, Event);
   1217           1.1      yamt 			break;
   1218           1.1      yamt 		case REG_NUM_TX_EVENT:
   1219           1.1      yamt 			cs_transmit_event(sc, Event);
   1220           1.1      yamt 			break;
   1221           1.1      yamt 		case REG_NUM_BUF_EVENT:
   1222           1.1      yamt 			cs_buffer_event(sc, Event);
   1223           1.1      yamt 			break;
   1224           1.1      yamt 		case REG_NUM_TX_COL:
   1225           1.1      yamt 		case REG_NUM_RX_MISS:
   1226           1.1      yamt 			cs_counter_event(sc, Event);
   1227           1.1      yamt 			break;
   1228           1.1      yamt 		default:
   1229           1.1      yamt 			printf("%s: unknown interrupt event 0x%x\n",
   1230           1.1      yamt 			    sc->sc_dev.dv_xname, Event);
   1231           1.1      yamt 			break;
   1232           1.1      yamt 		}
   1233           1.1      yamt 
   1234           1.1      yamt 		/* Read another event from the Interrupt Status Queue */
   1235           1.1      yamt 		if (sc->sc_memorymode)
   1236           1.1      yamt 			Event = CS_READ_PACKET_PAGE(sc, PKTPG_ISQ);
   1237           1.1      yamt 		else
   1238           1.1      yamt 			Event = CS_READ_PORT(sc, PORT_ISQ);
   1239           1.1      yamt 	}
   1240           1.1      yamt 
   1241           1.7       wiz 	/* have handled the interrupt */
   1242           1.1      yamt #if NRND > 0
   1243           1.1      yamt 	rnd_add_uint32(&sc->rnd_source, rndEvent);
   1244           1.1      yamt #endif
   1245           1.1      yamt 	return 1;
   1246           1.1      yamt }
   1247           1.1      yamt 
   1248           1.1      yamt void
   1249           1.5  augustss cs_counter_event(struct cs_softc *sc, u_int16_t cntEvent)
   1250           1.1      yamt {
   1251           1.1      yamt 	struct ifnet *ifp;
   1252           1.1      yamt 	u_int16_t errorCount;
   1253           1.1      yamt 
   1254           1.1      yamt 	ifp = &sc->sc_ethercom.ec_if;
   1255           1.1      yamt 
   1256           1.1      yamt 	switch (cntEvent & REG_NUM_MASK) {
   1257           1.1      yamt 	case REG_NUM_TX_COL:
   1258           1.1      yamt 		/*
   1259           1.1      yamt 		 * the count should be read before an overflow occurs.
   1260           1.1      yamt 		 */
   1261           1.1      yamt 		errorCount = CS_READ_PACKET_PAGE(sc, PKTPG_TX_COL);
   1262           1.1      yamt 		/*
   1263           1.1      yamt 		 * the tramsit event routine always checks the number of
   1264           1.1      yamt 		 * collisions for any packet so we don't increment any
   1265           1.1      yamt 		 * counters here, as they should already have been
   1266           1.1      yamt 		 * considered.
   1267           1.1      yamt 		 */
   1268           1.1      yamt 		break;
   1269           1.1      yamt 	case REG_NUM_RX_MISS:
   1270           1.1      yamt 		/*
   1271           1.1      yamt 		 * the count should be read before an overflow occurs.
   1272           1.1      yamt 		 */
   1273           1.1      yamt 		errorCount = CS_READ_PACKET_PAGE(sc, PKTPG_RX_MISS);
   1274           1.1      yamt 		/*
   1275           1.1      yamt 		 * Increment the input error count, the first 6bits are the
   1276           1.1      yamt 		 * register id.
   1277           1.1      yamt 		 */
   1278           1.1      yamt 		ifp->if_ierrors += ((errorCount & 0xffC0) >> 6);
   1279           1.1      yamt 		break;
   1280           1.1      yamt 	default:
   1281           1.1      yamt 		/* do nothing */
   1282           1.1      yamt 		break;
   1283           1.1      yamt 	}
   1284           1.1      yamt }
   1285           1.1      yamt 
   1286           1.1      yamt void
   1287           1.5  augustss cs_buffer_event(struct cs_softc *sc, u_int16_t bufEvent)
   1288           1.1      yamt {
   1289           1.1      yamt 
   1290           1.1      yamt 	/*
   1291           1.1      yamt 	 * multiple events can be in the buffer event register at one time so
   1292           1.1      yamt 	 * a standard switch statement will not suffice, here every event
   1293           1.1      yamt 	 * must be checked.
   1294           1.1      yamt 	 */
   1295           1.1      yamt 
   1296           1.1      yamt 	/*
   1297           1.1      yamt 	 * if 128 bits have been rxed by the time we get here, the dest event
   1298           1.1      yamt 	 * will be cleared and 128 event will be set.
   1299           1.1      yamt 	 */
   1300           1.1      yamt 	if ((bufEvent & (BUF_EVENT_RX_DEST | BUF_EVENT_RX_128)) != 0) {
   1301           1.1      yamt 		cs_process_rx_early(sc);
   1302           1.1      yamt 	}
   1303           1.1      yamt 
   1304           1.1      yamt 	if (bufEvent & BUF_EVENT_RX_DMA) {
   1305           1.1      yamt 		/* process the receive data */
   1306           1.1      yamt 		if (sc->sc_dma_process_rx)
   1307           1.1      yamt 			(*sc->sc_dma_process_rx)(sc);
   1308           1.1      yamt 		else
   1309           1.1      yamt 			/* should panic? */
   1310           1.9       wiz 			printf("%s: unexpected DMA event\n", sc->sc_dev.dv_xname);
   1311           1.1      yamt 	}
   1312           1.1      yamt 
   1313           1.1      yamt 	if (bufEvent & BUF_EVENT_TX_UNDR) {
   1314           1.1      yamt #if 0
   1315           1.1      yamt 		/*
   1316           1.1      yamt 		 * This can happen occasionally, and it's not worth worrying
   1317           1.1      yamt 		 * about.
   1318           1.1      yamt 		 */
   1319           1.1      yamt 		printf("%s: transmit underrun (%d -> %d)\n",
   1320           1.1      yamt 		    sc->sc_dev.dv_xname, sc->sc_xe_ent,
   1321           1.1      yamt 		    cs_xmit_early_table[sc->sc_xe_ent].worse);
   1322           1.1      yamt #endif
   1323           1.1      yamt 		sc->sc_xe_ent = cs_xmit_early_table[sc->sc_xe_ent].worse;
   1324           1.1      yamt 		sc->sc_xe_togo =
   1325           1.1      yamt 		    cs_xmit_early_table[sc->sc_xe_ent].better_count;
   1326           1.1      yamt 
   1327           1.1      yamt 		/* had an underrun, transmit is finished */
   1328           1.1      yamt 		sc->sc_txbusy = FALSE;
   1329           1.1      yamt 	}
   1330           1.1      yamt 
   1331           1.1      yamt 	if (bufEvent & BUF_EVENT_SW_INT) {
   1332           1.1      yamt 		printf("%s: software initiated interrupt\n",
   1333           1.1      yamt 		    sc->sc_dev.dv_xname);
   1334           1.1      yamt 	}
   1335           1.1      yamt }
   1336           1.1      yamt 
   1337           1.1      yamt void
   1338           1.5  augustss cs_transmit_event(struct cs_softc *sc, u_int16_t txEvent)
   1339           1.1      yamt {
   1340           1.1      yamt 	struct ifnet *ifp = &sc->sc_ethercom.ec_if;
   1341           1.1      yamt 
   1342           1.1      yamt 	/* If there were any errors transmitting this frame */
   1343           1.1      yamt 	if (txEvent & (TX_EVENT_LOSS_CRS | TX_EVENT_SQE_ERR | TX_EVENT_OUT_WIN |
   1344           1.1      yamt 		       TX_EVENT_JABBER | TX_EVENT_16_COLL)) {
   1345           1.1      yamt 		/* Increment the output error count */
   1346           1.1      yamt 		ifp->if_oerrors++;
   1347           1.1      yamt 
   1348           1.1      yamt 		/* Note carrier loss. */
   1349           1.1      yamt 		if (txEvent & TX_EVENT_LOSS_CRS)
   1350           1.1      yamt 			sc->sc_carrier = 0;
   1351           1.1      yamt 
   1352           1.1      yamt 		/* If debugging is enabled then log error messages */
   1353           1.1      yamt 		if (ifp->if_flags & IFF_DEBUG) {
   1354           1.1      yamt 			if (txEvent & TX_EVENT_LOSS_CRS) {
   1355           1.1      yamt 				printf("%s: lost carrier\n",
   1356           1.1      yamt 				    sc->sc_dev.dv_xname);
   1357           1.1      yamt 			}
   1358           1.1      yamt 			if (txEvent & TX_EVENT_SQE_ERR) {
   1359           1.1      yamt 				printf("%s: SQE error\n",
   1360           1.1      yamt 				    sc->sc_dev.dv_xname);
   1361           1.1      yamt 			}
   1362           1.1      yamt 			if (txEvent & TX_EVENT_OUT_WIN) {
   1363           1.1      yamt 				printf("%s: out-of-window collision\n",
   1364           1.1      yamt 				    sc->sc_dev.dv_xname);
   1365           1.1      yamt 			}
   1366           1.1      yamt 			if (txEvent & TX_EVENT_JABBER) {
   1367           1.1      yamt 				printf("%s: jabber\n", sc->sc_dev.dv_xname);
   1368           1.1      yamt 			}
   1369           1.1      yamt 			if (txEvent & TX_EVENT_16_COLL) {
   1370           1.1      yamt 				printf("%s: 16 collisions\n",
   1371           1.1      yamt 				    sc->sc_dev.dv_xname);
   1372           1.1      yamt 			}
   1373           1.1      yamt 		}
   1374           1.1      yamt 	}
   1375           1.1      yamt 	else {
   1376           1.1      yamt 		/* Transmission successful, carrier is up. */
   1377           1.1      yamt 		sc->sc_carrier = 1;
   1378           1.1      yamt #ifdef SHARK
   1379           1.1      yamt 		ledNetActive();
   1380           1.1      yamt #endif
   1381           1.1      yamt 	}
   1382           1.1      yamt 
   1383           1.1      yamt 	/* Add the number of collisions for this frame */
   1384           1.1      yamt 	if (txEvent & TX_EVENT_16_COLL) {
   1385           1.1      yamt 		ifp->if_collisions += 16;
   1386           1.1      yamt 	} else {
   1387           1.1      yamt 		ifp->if_collisions += ((txEvent & TX_EVENT_COLL_MASK) >> 11);
   1388           1.1      yamt 	}
   1389           1.1      yamt 
   1390           1.1      yamt 	ifp->if_opackets++;
   1391           1.1      yamt 
   1392           1.1      yamt 	/* Transmission is no longer in progress */
   1393           1.1      yamt 	sc->sc_txbusy = FALSE;
   1394           1.1      yamt 
   1395           1.1      yamt 	/* If there is more to transmit */
   1396           1.1      yamt 	if (IFQ_IS_EMPTY(&ifp->if_snd) == 0) {
   1397           1.1      yamt 		/* Start the next transmission */
   1398           1.1      yamt 		cs_start_output(ifp);
   1399           1.1      yamt 	}
   1400           1.1      yamt }
   1401           1.1      yamt 
   1402           1.1      yamt void
   1403           1.5  augustss cs_print_rx_errors(struct cs_softc *sc, u_int16_t rxEvent)
   1404           1.1      yamt {
   1405           1.1      yamt 
   1406           1.1      yamt 	if (rxEvent & RX_EVENT_RUNT)
   1407           1.1      yamt 		printf("%s: runt\n", sc->sc_dev.dv_xname);
   1408           1.1      yamt 
   1409           1.1      yamt 	if (rxEvent & RX_EVENT_X_DATA)
   1410           1.1      yamt 		printf("%s: extra data\n", sc->sc_dev.dv_xname);
   1411           1.1      yamt 
   1412           1.1      yamt 	if (rxEvent & RX_EVENT_CRC_ERR) {
   1413           1.1      yamt 		if (rxEvent & RX_EVENT_DRIBBLE)
   1414           1.1      yamt 			printf("%s: alignment error\n", sc->sc_dev.dv_xname);
   1415           1.1      yamt 		else
   1416           1.1      yamt 			printf("%s: CRC error\n", sc->sc_dev.dv_xname);
   1417           1.1      yamt 	} else {
   1418           1.1      yamt 		if (rxEvent & RX_EVENT_DRIBBLE)
   1419           1.1      yamt 			printf("%s: dribble bits\n", sc->sc_dev.dv_xname);
   1420           1.1      yamt 	}
   1421           1.1      yamt }
   1422           1.1      yamt 
   1423           1.1      yamt void
   1424           1.5  augustss cs_receive_event(struct cs_softc *sc, u_int16_t rxEvent)
   1425           1.1      yamt {
   1426           1.1      yamt 	struct ifnet *ifp = &sc->sc_ethercom.ec_if;
   1427           1.1      yamt 
   1428           1.1      yamt 	/* If the frame was not received OK */
   1429           1.1      yamt 	if (!(rxEvent & RX_EVENT_RX_OK)) {
   1430           1.1      yamt 		/* Increment the input error count */
   1431           1.1      yamt 		ifp->if_ierrors++;
   1432           1.1      yamt 
   1433           1.1      yamt 		/*
   1434           1.1      yamt 		 * If debugging is enabled then log error messages.
   1435           1.1      yamt 		 */
   1436           1.1      yamt 		if (ifp->if_flags & IFF_DEBUG) {
   1437           1.1      yamt 			if (rxEvent != REG_NUM_RX_EVENT) {
   1438           1.1      yamt 				cs_print_rx_errors(sc, rxEvent);
   1439           1.1      yamt 
   1440           1.1      yamt 				/*
   1441           1.1      yamt 				 * Must read the length of all received
   1442           1.1      yamt 				 * frames
   1443           1.1      yamt 				 */
   1444           1.1      yamt 				CS_READ_PACKET_PAGE(sc, PKTPG_RX_LENGTH);
   1445           1.1      yamt 
   1446           1.1      yamt 				/* Skip the received frame */
   1447           1.1      yamt 				CS_WRITE_PACKET_PAGE(sc, PKTPG_RX_CFG,
   1448           1.1      yamt 					CS_READ_PACKET_PAGE(sc, PKTPG_RX_CFG) |
   1449           1.1      yamt 						  RX_CFG_SKIP);
   1450           1.1      yamt 			} else {
   1451           1.1      yamt 				printf("%s: implied skip\n",
   1452           1.1      yamt 				    sc->sc_dev.dv_xname);
   1453           1.1      yamt 			}
   1454           1.1      yamt 		}
   1455           1.1      yamt 	} else {
   1456           1.1      yamt 		/*
   1457           1.1      yamt 		 * process the received frame and pass it up to the upper
   1458           1.1      yamt 		 * layers.
   1459           1.1      yamt 		 */
   1460           1.1      yamt 		cs_process_receive(sc);
   1461           1.1      yamt 	}
   1462           1.1      yamt }
   1463           1.1      yamt 
   1464           1.1      yamt void
   1465           1.5  augustss cs_ether_input(struct cs_softc *sc, struct mbuf *m)
   1466           1.1      yamt {
   1467           1.1      yamt 	struct ifnet *ifp = &sc->sc_ethercom.ec_if;
   1468           1.1      yamt 
   1469           1.1      yamt 	ifp->if_ipackets++;
   1470           1.1      yamt 
   1471           1.1      yamt #if NBPFILTER > 0
   1472           1.1      yamt 	/*
   1473           1.1      yamt 	 * Check if there's a BPF listener on this interface.
   1474           1.1      yamt 	 * If so, hand off the raw packet to BPF.
   1475           1.1      yamt 	 */
   1476           1.1      yamt 	if (ifp->if_bpf)
   1477           1.1      yamt 		bpf_mtap(ifp->if_bpf, m);
   1478           1.1      yamt #endif
   1479           1.1      yamt 
   1480           1.1      yamt 	/* Pass the packet up. */
   1481           1.1      yamt 	(*ifp->if_input)(ifp, m);
   1482           1.1      yamt }
   1483           1.1      yamt 
   1484           1.1      yamt void
   1485           1.5  augustss cs_process_receive(struct cs_softc *sc)
   1486           1.1      yamt {
   1487           1.1      yamt 	struct ifnet *ifp;
   1488           1.1      yamt 	struct mbuf *m;
   1489           1.1      yamt 	int totlen;
   1490           1.1      yamt 	u_int16_t *pBuff, *pBuffLimit;
   1491           1.1      yamt 	int pad;
   1492          1.10  christos 	unsigned int frameOffset = 0;	/* XXX: gcc */
   1493           1.1      yamt 
   1494           1.1      yamt #ifdef SHARK
   1495           1.1      yamt 	ledNetActive();
   1496           1.1      yamt #endif
   1497           1.1      yamt 
   1498           1.1      yamt 	ifp = &sc->sc_ethercom.ec_if;
   1499           1.1      yamt 
   1500           1.1      yamt 	/* Received a packet; carrier is up. */
   1501           1.1      yamt 	sc->sc_carrier = 1;
   1502           1.1      yamt 
   1503           1.1      yamt 	if (sc->sc_memorymode) {
   1504           1.1      yamt 		/* Initialize the frame offset */
   1505           1.1      yamt 		frameOffset = PKTPG_RX_LENGTH;
   1506           1.1      yamt 
   1507           1.1      yamt 		/* Get the length of the received frame */
   1508           1.1      yamt 		totlen = CS_READ_PACKET_PAGE(sc, frameOffset);
   1509           1.1      yamt 		frameOffset += 2;
   1510           1.1      yamt 	}
   1511           1.1      yamt 	else {
   1512           1.1      yamt 		/* drop status */
   1513           1.1      yamt 		CS_READ_PORT(sc, PORT_RXTX_DATA);
   1514           1.1      yamt 
   1515           1.1      yamt 		/* Get the length of the received frame */
   1516           1.1      yamt 		totlen = CS_READ_PORT(sc, PORT_RXTX_DATA);
   1517           1.1      yamt 	}
   1518           1.1      yamt 
   1519           1.2      yamt 	if (totlen > ETHER_MAX_LEN) {
   1520      1.12.2.1      tron 		printf("%s: invalid packet length %d\n",
   1521      1.12.2.1      tron 		    sc->sc_dev.dv_xname, totlen);
   1522           1.2      yamt 
   1523           1.2      yamt 		/* skip the received frame */
   1524           1.2      yamt 		CS_WRITE_PACKET_PAGE(sc, PKTPG_RX_CFG,
   1525           1.2      yamt 			CS_READ_PACKET_PAGE(sc, PKTPG_RX_CFG) | RX_CFG_SKIP);
   1526           1.2      yamt 		return;
   1527           1.2      yamt 	}
   1528           1.2      yamt 
   1529           1.1      yamt 	MGETHDR(m, M_DONTWAIT, MT_DATA);
   1530           1.1      yamt 	if (m == 0) {
   1531           1.1      yamt 		printf("%s: cs_process_receive: unable to allocate mbuf\n",
   1532           1.1      yamt 		    sc->sc_dev.dv_xname);
   1533           1.1      yamt 		ifp->if_ierrors++;
   1534           1.1      yamt 		/*
   1535           1.1      yamt 		 * couldn't allocate an mbuf so things are not good, may as
   1536           1.1      yamt 		 * well drop the packet I think.
   1537           1.1      yamt 		 *
   1538           1.1      yamt 		 * have already read the length so we should be right to skip
   1539           1.1      yamt 		 * the packet.
   1540           1.1      yamt 		 */
   1541           1.1      yamt 		CS_WRITE_PACKET_PAGE(sc, PKTPG_RX_CFG,
   1542           1.1      yamt 		    CS_READ_PACKET_PAGE(sc, PKTPG_RX_CFG) | RX_CFG_SKIP);
   1543           1.1      yamt 		return;
   1544           1.1      yamt 	}
   1545           1.1      yamt 	m->m_pkthdr.rcvif = ifp;
   1546           1.1      yamt 	m->m_pkthdr.len = totlen;
   1547           1.1      yamt 
   1548           1.2      yamt 	/* number of bytes to align ip header on word boundary for ipintr */
   1549           1.2      yamt 	pad = ALIGN(sizeof(struct ether_header)) - sizeof(struct ether_header);
   1550           1.2      yamt 
   1551           1.1      yamt 	/*
   1552           1.2      yamt 	 * alloc mbuf cluster if we need.
   1553           1.2      yamt 	 * we need 1 byte spare because following
   1554           1.2      yamt 	 * packet read loop can overrun.
   1555           1.1      yamt 	 */
   1556           1.2      yamt 	if (totlen + pad + 1 > MHLEN) {
   1557           1.2      yamt 		MCLGET(m, M_DONTWAIT);
   1558           1.2      yamt 		if ((m->m_flags & M_EXT) == 0) {
   1559           1.2      yamt 			/* couldn't allocate an mbuf cluster */
   1560           1.2      yamt 			printf("%s: cs_process_receive: unable to allocate a cluster\n",
   1561           1.2      yamt 				sc->sc_dev.dv_xname);
   1562           1.2      yamt 			m_freem(m);
   1563           1.2      yamt 
   1564           1.2      yamt 			/* skip the received frame */
   1565           1.2      yamt 			CS_WRITE_PACKET_PAGE(sc, PKTPG_RX_CFG,
   1566           1.2      yamt 				CS_READ_PACKET_PAGE(sc, PKTPG_RX_CFG) | RX_CFG_SKIP);
   1567           1.2      yamt 			return;
   1568           1.2      yamt 		}
   1569           1.1      yamt 	}
   1570           1.1      yamt 
   1571           1.1      yamt 	/* align ip header on word boundary for ipintr */
   1572           1.1      yamt 	m->m_data += pad;
   1573           1.1      yamt 
   1574           1.2      yamt 	m->m_len = totlen;
   1575           1.1      yamt 	pBuff = mtod(m, u_int16_t *);
   1576           1.1      yamt 
   1577           1.1      yamt 	/* now read the data from the chip */
   1578           1.1      yamt 	if (sc->sc_memorymode) {
   1579           1.2      yamt 		pBuffLimit = pBuff + (totlen + 1) / 2;	/* don't want to go over */
   1580           1.1      yamt 		while (pBuff < pBuffLimit) {
   1581           1.1      yamt 			*pBuff++ = CS_READ_PACKET_PAGE(sc, frameOffset);
   1582           1.1      yamt 			frameOffset += 2;
   1583           1.1      yamt 		}
   1584           1.1      yamt 	}
   1585           1.1      yamt 	else {
   1586           1.6  augustss 		IO_READ_MULTI_2(sc, PORT_RXTX_DATA, pBuff, (totlen + 1)>>1);
   1587           1.1      yamt 	}
   1588           1.1      yamt 
   1589           1.1      yamt 	cs_ether_input(sc, m);
   1590           1.1      yamt }
   1591           1.1      yamt 
   1592           1.1      yamt void
   1593           1.5  augustss cs_process_rx_early(struct cs_softc *sc)
   1594           1.1      yamt {
   1595           1.1      yamt 	struct ifnet *ifp;
   1596           1.1      yamt 	struct mbuf *m;
   1597           1.1      yamt 	u_int16_t frameCount, oldFrameCount;
   1598           1.1      yamt 	u_int16_t rxEvent;
   1599           1.1      yamt 	u_int16_t *pBuff;
   1600           1.1      yamt 	int pad;
   1601           1.1      yamt 	unsigned int frameOffset;
   1602           1.1      yamt 
   1603           1.1      yamt 
   1604           1.1      yamt 	ifp = &sc->sc_ethercom.ec_if;
   1605           1.1      yamt 
   1606           1.1      yamt 	/* Initialize the frame offset */
   1607           1.1      yamt 	frameOffset = PKTPG_RX_FRAME;
   1608           1.1      yamt 	frameCount = 0;
   1609           1.1      yamt 
   1610           1.1      yamt 	MGETHDR(m, M_DONTWAIT, MT_DATA);
   1611           1.1      yamt 	if (m == 0) {
   1612           1.1      yamt 		printf("%s: cs_process_rx_early: unable to allocate mbuf\n",
   1613           1.1      yamt 		    sc->sc_dev.dv_xname);
   1614           1.1      yamt 		ifp->if_ierrors++;
   1615           1.1      yamt 		/*
   1616           1.1      yamt 		 * couldn't allocate an mbuf so things are not good, may as
   1617           1.1      yamt 		 * well drop the packet I think.
   1618           1.1      yamt 		 *
   1619           1.1      yamt 		 * have already read the length so we should be right to skip
   1620           1.1      yamt 		 * the packet.
   1621           1.1      yamt 		 */
   1622           1.1      yamt 		CS_WRITE_PACKET_PAGE(sc, PKTPG_RX_CFG,
   1623           1.1      yamt 		    CS_READ_PACKET_PAGE(sc, PKTPG_RX_CFG) | RX_CFG_SKIP);
   1624           1.1      yamt 		return;
   1625           1.1      yamt 	}
   1626           1.1      yamt 	m->m_pkthdr.rcvif = ifp;
   1627           1.1      yamt 	/*
   1628           1.8       wiz 	 * save processing by always using a mbuf cluster, guaranteed to fit
   1629           1.1      yamt 	 * packet
   1630           1.1      yamt 	 */
   1631           1.1      yamt 	MCLGET(m, M_DONTWAIT);
   1632           1.1      yamt 	if ((m->m_flags & M_EXT) == 0) {
   1633           1.1      yamt 		/* couldn't allocate an mbuf cluster */
   1634           1.1      yamt 		printf("%s: cs_process_rx_early: unable to allocate a cluster\n",
   1635           1.1      yamt 		    sc->sc_dev.dv_xname);
   1636           1.1      yamt 		m_freem(m);
   1637           1.1      yamt 		/* skip the frame */
   1638           1.1      yamt 		CS_WRITE_PACKET_PAGE(sc, PKTPG_RX_CFG,
   1639           1.1      yamt 		    CS_READ_PACKET_PAGE(sc, PKTPG_RX_CFG) | RX_CFG_SKIP);
   1640           1.1      yamt 		return;
   1641           1.1      yamt 	}
   1642           1.1      yamt 
   1643           1.1      yamt 	/* align ip header on word boundary for ipintr */
   1644           1.1      yamt 	pad = ALIGN(sizeof(struct ether_header)) - sizeof(struct ether_header);
   1645           1.1      yamt 	m->m_data += pad;
   1646           1.1      yamt 
   1647           1.1      yamt 	/* set up the buffer pointer to point to the data area */
   1648           1.1      yamt 	pBuff = mtod(m, u_int16_t *);
   1649           1.1      yamt 
   1650           1.1      yamt 	/*
   1651           1.1      yamt 	 * now read the frame byte counter until we have finished reading the
   1652           1.1      yamt 	 * frame
   1653           1.1      yamt 	 */
   1654           1.1      yamt 	oldFrameCount = 0;
   1655           1.1      yamt 	frameCount = CS_READ_PACKET_PAGE(sc, PKTPG_FRAME_BYTE_COUNT);
   1656           1.1      yamt 	while ((frameCount != 0) && (frameCount < MCLBYTES)) {
   1657           1.1      yamt 		for (; oldFrameCount < frameCount; oldFrameCount += 2) {
   1658           1.1      yamt 			*pBuff++ = CS_READ_PACKET_PAGE(sc, frameOffset);
   1659           1.1      yamt 			frameOffset += 2;
   1660           1.1      yamt 		}
   1661           1.1      yamt 
   1662           1.1      yamt 		/* read the new count from the chip */
   1663           1.1      yamt 		frameCount = CS_READ_PACKET_PAGE(sc, PKTPG_FRAME_BYTE_COUNT);
   1664           1.1      yamt 	}
   1665           1.1      yamt 
   1666           1.1      yamt 	/* update the mbuf counts */
   1667           1.1      yamt 	m->m_len = oldFrameCount;
   1668           1.1      yamt 	m->m_pkthdr.len = oldFrameCount;
   1669           1.1      yamt 
   1670           1.1      yamt 	/* now check the Rx Event register */
   1671           1.1      yamt 	rxEvent = CS_READ_PACKET_PAGE(sc, PKTPG_RX_EVENT);
   1672           1.1      yamt 
   1673           1.1      yamt 	if ((rxEvent & RX_EVENT_RX_OK) != 0) {
   1674           1.1      yamt 		/*
   1675           1.1      yamt 		 * do an implied skip, it seems to be more reliable than a
   1676           1.1      yamt 		 * forced skip.
   1677           1.1      yamt 		 */
   1678           1.1      yamt 		rxEvent = CS_READ_PACKET_PAGE(sc, PKTPG_RX_STATUS);
   1679           1.1      yamt 		rxEvent = CS_READ_PACKET_PAGE(sc, PKTPG_RX_LENGTH);
   1680           1.1      yamt 
   1681           1.1      yamt 		/*
   1682           1.1      yamt 		 * now read the RX_EVENT register to perform an implied skip.
   1683           1.1      yamt 		 */
   1684           1.1      yamt 		rxEvent = CS_READ_PACKET_PAGE(sc, PKTPG_RX_EVENT);
   1685           1.1      yamt 
   1686           1.1      yamt 		cs_ether_input(sc, m);
   1687           1.1      yamt 	} else {
   1688           1.1      yamt 		m_freem(m);
   1689           1.1      yamt 		ifp->if_ierrors++;
   1690           1.1      yamt 	}
   1691           1.1      yamt }
   1692           1.1      yamt 
   1693           1.1      yamt void
   1694           1.5  augustss cs_start_output(struct ifnet *ifp)
   1695           1.1      yamt {
   1696           1.1      yamt 	struct cs_softc *sc;
   1697           1.1      yamt 	struct mbuf *pMbuf;
   1698           1.1      yamt 	struct mbuf *pMbufChain;
   1699           1.1      yamt 	u_int16_t BusStatus;
   1700           1.1      yamt 	u_int16_t Length;
   1701           1.1      yamt 	int txLoop = 0;
   1702           1.1      yamt 	int dropout = 0;
   1703           1.1      yamt 
   1704           1.1      yamt 	sc = ifp->if_softc;
   1705           1.1      yamt 
   1706           1.1      yamt 	/* check that the interface is up and running */
   1707           1.1      yamt 	if ((ifp->if_flags & (IFF_RUNNING | IFF_OACTIVE)) != IFF_RUNNING) {
   1708           1.1      yamt 		return;
   1709           1.1      yamt 	}
   1710           1.1      yamt 
   1711           1.1      yamt 	/* Don't interrupt a transmission in progress */
   1712           1.1      yamt 	if (sc->sc_txbusy) {
   1713           1.1      yamt 		return;
   1714           1.1      yamt 	}
   1715           1.1      yamt 
   1716           1.1      yamt 	/* this loop will only run through once if transmission is successful */
   1717           1.1      yamt 	/*
   1718           1.1      yamt 	 * While there are packets to transmit and a transmit is not in
   1719           1.1      yamt 	 * progress
   1720           1.1      yamt 	 */
   1721           1.1      yamt 	while (sc->sc_txbusy == 0 && dropout == 0) {
   1722           1.1      yamt 		IFQ_DEQUEUE(&ifp->if_snd, pMbufChain);
   1723           1.1      yamt 		if (pMbufChain == NULL)
   1724           1.1      yamt 			break;
   1725           1.1      yamt 
   1726           1.1      yamt #if NBPFILTER > 0
   1727           1.1      yamt 		/*
   1728           1.1      yamt 	         * If BPF is listening on this interface, let it see the packet
   1729           1.1      yamt 	         * before we commit it to the wire.
   1730           1.1      yamt 	         */
   1731           1.1      yamt 		if (ifp->if_bpf)
   1732           1.1      yamt 			bpf_mtap(ifp->if_bpf, pMbufChain);
   1733           1.1      yamt #endif
   1734           1.1      yamt 
   1735           1.1      yamt 		/* Find the total length of the data to transmit */
   1736           1.1      yamt 		Length = 0;
   1737           1.1      yamt 		for (pMbuf = pMbufChain; pMbuf != NULL; pMbuf = pMbuf->m_next)
   1738           1.1      yamt 			Length += pMbuf->m_len;
   1739           1.1      yamt 
   1740           1.1      yamt 		do {
   1741           1.1      yamt 			/*
   1742           1.1      yamt 			 * Request that the transmit be started after all
   1743           1.1      yamt 			 * data has been copied
   1744           1.1      yamt 			 *
   1745           1.1      yamt 			 * In IO mode must write to the IO port not the packet
   1746           1.1      yamt 			 * page address
   1747           1.1      yamt 			 *
   1748           1.1      yamt 			 * If this is changed to start transmission after a
   1749           1.1      yamt 			 * small amount of data has been copied you tend to
   1750           1.1      yamt 			 * get packet missed errors i think because the ISA
   1751           1.1      yamt 			 * bus is too slow. Or possibly the copy routine is
   1752           1.1      yamt 			 * not streamlined enough.
   1753           1.1      yamt 			 */
   1754           1.1      yamt 			if (sc->sc_memorymode) {
   1755           1.1      yamt 				CS_WRITE_PACKET_PAGE(sc, PKTPG_TX_CMD,
   1756           1.1      yamt 					cs_xmit_early_table[sc->sc_xe_ent].txcmd);
   1757           1.1      yamt 				CS_WRITE_PACKET_PAGE(sc, PKTPG_TX_LENGTH, Length);
   1758           1.1      yamt 			}
   1759           1.1      yamt 			else {
   1760           1.1      yamt 				CS_WRITE_PORT(sc, PORT_TX_CMD,
   1761           1.1      yamt 					cs_xmit_early_table[sc->sc_xe_ent].txcmd);
   1762           1.1      yamt 				CS_WRITE_PORT(sc, PORT_TX_LENGTH, Length);
   1763           1.1      yamt 			}
   1764           1.1      yamt 
   1765           1.1      yamt 			/*
   1766           1.1      yamt 			 * Adjust early-transmit machinery.
   1767           1.1      yamt 			 */
   1768           1.1      yamt 			if (--sc->sc_xe_togo == 0) {
   1769           1.1      yamt 				sc->sc_xe_ent =
   1770           1.1      yamt 				    cs_xmit_early_table[sc->sc_xe_ent].better;
   1771           1.1      yamt 				sc->sc_xe_togo =
   1772           1.1      yamt 			    cs_xmit_early_table[sc->sc_xe_ent].better_count;
   1773           1.1      yamt 			}
   1774           1.1      yamt 			/*
   1775           1.1      yamt 			 * Read the BusStatus register which indicates
   1776           1.1      yamt 			 * success of the request
   1777           1.1      yamt 			 */
   1778           1.1      yamt 			BusStatus = CS_READ_PACKET_PAGE(sc, PKTPG_BUS_ST);
   1779           1.1      yamt 
   1780           1.1      yamt 			/*
   1781           1.1      yamt 			 * If there was an error in the transmit bid free the
   1782           1.1      yamt 			 * mbuf and go on. This is presuming that mbuf is
   1783           1.1      yamt 			 * corrupt.
   1784           1.1      yamt 			 */
   1785           1.1      yamt 			if (BusStatus & BUS_ST_TX_BID_ERR) {
   1786           1.1      yamt 				printf("%s: transmit bid error (too big)",
   1787           1.1      yamt 				    sc->sc_dev.dv_xname);
   1788           1.1      yamt 
   1789           1.1      yamt 				/* Discard the bad mbuf chain */
   1790           1.1      yamt 				m_freem(pMbufChain);
   1791           1.1      yamt 				sc->sc_ethercom.ec_if.if_oerrors++;
   1792           1.1      yamt 
   1793           1.1      yamt 				/* Loop up to transmit the next chain */
   1794           1.1      yamt 				txLoop = 0;
   1795           1.1      yamt 			} else {
   1796           1.1      yamt 				if (BusStatus & BUS_ST_RDY4TXNOW) {
   1797           1.1      yamt 					/*
   1798           1.1      yamt 					 * The chip is ready for transmission
   1799           1.1      yamt 					 * now
   1800           1.1      yamt 					 */
   1801           1.1      yamt 					/*
   1802           1.1      yamt 					 * Copy the frame to the chip to
   1803           1.1      yamt 					 * start transmission
   1804           1.1      yamt 					 */
   1805           1.1      yamt 					cs_copy_tx_frame(sc, pMbufChain);
   1806           1.1      yamt 
   1807           1.1      yamt 					/* Free the mbuf chain */
   1808           1.1      yamt 					m_freem(pMbufChain);
   1809           1.1      yamt 
   1810           1.1      yamt 					/* Transmission is now in progress */
   1811           1.1      yamt 					sc->sc_txbusy = TRUE;
   1812           1.1      yamt 					txLoop = 0;
   1813           1.1      yamt 				} else {
   1814           1.1      yamt 					/*
   1815           1.1      yamt 					 * if we get here we want to try
   1816           1.1      yamt 					 * again with the same mbuf, until
   1817           1.1      yamt 					 * the chip lets us transmit.
   1818           1.1      yamt 					 */
   1819           1.1      yamt 					txLoop++;
   1820           1.1      yamt 					if (txLoop > CS_OUTPUT_LOOP_MAX) {
   1821           1.1      yamt 						/* Free the mbuf chain */
   1822           1.1      yamt 						m_freem(pMbufChain);
   1823           1.1      yamt 						/*
   1824           1.1      yamt 						 * Transmission is not in
   1825           1.1      yamt 						 * progress
   1826           1.1      yamt 						 */
   1827           1.1      yamt 						sc->sc_txbusy = FALSE;
   1828           1.1      yamt 						/*
   1829           1.1      yamt 						 * Increment the output error
   1830           1.1      yamt 						 * count
   1831           1.1      yamt 						 */
   1832           1.1      yamt 						ifp->if_oerrors++;
   1833           1.1      yamt 						/*
   1834           1.1      yamt 						 * exit the routine and drop
   1835           1.1      yamt 						 * the packet.
   1836           1.1      yamt 						 */
   1837           1.1      yamt 						txLoop = 0;
   1838           1.1      yamt 						dropout = 1;
   1839           1.1      yamt 					}
   1840           1.1      yamt 				}
   1841           1.1      yamt 			}
   1842           1.1      yamt 		} while (txLoop);
   1843           1.1      yamt 	}
   1844           1.1      yamt }
   1845           1.1      yamt 
   1846           1.1      yamt void
   1847           1.5  augustss cs_copy_tx_frame(struct cs_softc *sc, struct mbuf *m0)
   1848           1.1      yamt {
   1849           1.1      yamt 	struct mbuf *m;
   1850           1.1      yamt 	int len, leftover, frameoff;
   1851           1.1      yamt 	u_int16_t dbuf;
   1852           1.1      yamt 	u_int8_t *p;
   1853           1.1      yamt #ifdef DIAGNOSTIC
   1854           1.1      yamt 	u_int8_t *lim;
   1855           1.1      yamt #endif
   1856           1.1      yamt 
   1857           1.1      yamt 	/* Initialize frame pointer and data port address */
   1858           1.1      yamt 	frameoff = PKTPG_TX_FRAME;
   1859           1.1      yamt 
   1860           1.1      yamt 	/* start out with no leftover data */
   1861           1.1      yamt 	leftover = 0;
   1862           1.1      yamt 	dbuf = 0;
   1863           1.1      yamt 
   1864           1.1      yamt 	/* Process the chain of mbufs */
   1865           1.1      yamt 	for (m = m0; m != NULL; m = m->m_next) {
   1866           1.1      yamt 		/*
   1867           1.1      yamt 		 * Process all of the data in a single mbuf.
   1868           1.1      yamt 		 */
   1869           1.1      yamt 		p = mtod(m, u_int8_t *);
   1870           1.1      yamt 		len = m->m_len;
   1871           1.1      yamt #ifdef DIAGNOSTIC
   1872           1.1      yamt 		lim = p + len;
   1873           1.1      yamt #endif
   1874           1.1      yamt 
   1875           1.1      yamt 		while (len > 0) {
   1876           1.1      yamt 			if (leftover) {
   1877           1.1      yamt 				/*
   1878           1.1      yamt 				 * Data left over (from mbuf or realignment).
   1879           1.1      yamt 				 * Buffer the next byte, and write it and
   1880           1.1      yamt 				 * the leftover data out.
   1881           1.1      yamt 				 */
   1882           1.1      yamt 				dbuf |= *p++ << 8;
   1883           1.1      yamt 				len--;
   1884           1.1      yamt 				if (sc->sc_memorymode) {
   1885           1.1      yamt 					CS_WRITE_PACKET_PAGE(sc, frameoff, dbuf);
   1886           1.1      yamt 					frameoff += 2;
   1887           1.1      yamt 				}
   1888           1.1      yamt 				else {
   1889           1.1      yamt 					CS_WRITE_PORT(sc, PORT_RXTX_DATA, dbuf);
   1890           1.1      yamt 				}
   1891           1.1      yamt 				leftover = 0;
   1892           1.1      yamt 			} else if ((long) p & 1) {
   1893           1.1      yamt 				/*
   1894           1.1      yamt 				 * Misaligned data.  Buffer the next byte.
   1895           1.1      yamt 				 */
   1896           1.1      yamt 				dbuf = *p++;
   1897           1.1      yamt 				len--;
   1898           1.1      yamt 				leftover = 1;
   1899           1.1      yamt 			} else {
   1900           1.1      yamt 				/*
   1901           1.1      yamt 				 * Aligned data.  This is the case we like.
   1902           1.1      yamt 				 *
   1903           1.1      yamt 				 * Write-region out as much as we can, then
   1904           1.1      yamt 				 * buffer the remaining byte (if any).
   1905           1.1      yamt 				 */
   1906           1.1      yamt 				leftover = len & 1;
   1907           1.1      yamt 				len &= ~1;
   1908           1.1      yamt 				if (sc->sc_memorymode) {
   1909           1.6  augustss 					MEM_WRITE_REGION_2(sc, frameoff,
   1910           1.1      yamt 						(u_int16_t *) p, len >> 1);
   1911           1.1      yamt 					frameoff += len;
   1912           1.1      yamt 				}
   1913           1.1      yamt 				else {
   1914           1.6  augustss 					IO_WRITE_MULTI_2(sc,
   1915           1.1      yamt 						PORT_RXTX_DATA, (u_int16_t *)p, len >> 1);
   1916           1.1      yamt 				}
   1917           1.1      yamt 				p += len;
   1918           1.1      yamt 
   1919           1.1      yamt 				if (leftover)
   1920           1.1      yamt 					dbuf = *p++;
   1921           1.1      yamt 				len = 0;
   1922           1.1      yamt 			}
   1923           1.1      yamt 		}
   1924           1.1      yamt 		if (len < 0)
   1925           1.1      yamt 			panic("cs_copy_tx_frame: negative len");
   1926           1.1      yamt #ifdef DIAGNOSTIC
   1927           1.1      yamt 		if (p != lim)
   1928           1.1      yamt 			panic("cs_copy_tx_frame: p != lim");
   1929           1.1      yamt #endif
   1930           1.1      yamt 	}
   1931           1.1      yamt 	if (leftover) {
   1932           1.1      yamt 		if (sc->sc_memorymode) {
   1933           1.1      yamt 			CS_WRITE_PACKET_PAGE(sc, frameoff, dbuf);
   1934           1.1      yamt 		}
   1935           1.1      yamt 		else {
   1936           1.1      yamt 			CS_WRITE_PORT(sc, PORT_RXTX_DATA, dbuf);
   1937           1.1      yamt 		}
   1938           1.1      yamt 	}
   1939           1.1      yamt }
   1940           1.1      yamt 
   1941           1.1      yamt static int
   1942           1.5  augustss cs_enable(struct cs_softc *sc)
   1943           1.1      yamt {
   1944           1.1      yamt 
   1945           1.4   thorpej 	if (CS_IS_ENABLED(sc) == 0) {
   1946           1.4   thorpej 		if (sc->sc_enable != NULL) {
   1947           1.4   thorpej 			int error;
   1948           1.4   thorpej 
   1949           1.4   thorpej 			error = (*sc->sc_enable)(sc);
   1950           1.4   thorpej 			if (error)
   1951           1.4   thorpej 				return (error);
   1952           1.4   thorpej 		}
   1953           1.1      yamt 		sc->sc_cfgflags |= CFGFLG_ENABLED;
   1954           1.1      yamt 	}
   1955           1.1      yamt 
   1956           1.4   thorpej 	return (0);
   1957           1.1      yamt }
   1958           1.1      yamt 
   1959           1.1      yamt static void
   1960           1.5  augustss cs_disable(struct cs_softc *sc)
   1961           1.1      yamt {
   1962           1.4   thorpej 
   1963           1.4   thorpej 	if (CS_IS_ENABLED(sc)) {
   1964           1.4   thorpej 		if (sc->sc_disable != NULL)
   1965           1.4   thorpej 			(*sc->sc_disable)(sc);
   1966           1.1      yamt 
   1967           1.1      yamt 		sc->sc_cfgflags &= ~CFGFLG_ENABLED;
   1968           1.1      yamt 	}
   1969           1.1      yamt }
   1970           1.1      yamt 
   1971           1.1      yamt static void
   1972           1.5  augustss cs_stop(struct ifnet *ifp, int disable)
   1973           1.1      yamt {
   1974           1.1      yamt 	struct cs_softc *sc = ifp->if_softc;
   1975           1.1      yamt 
   1976           1.1      yamt 	CS_WRITE_PACKET_PAGE(sc, PKTPG_RX_CFG, 0);
   1977           1.1      yamt 	CS_WRITE_PACKET_PAGE(sc, PKTPG_TX_CFG, 0);
   1978           1.1      yamt 	CS_WRITE_PACKET_PAGE(sc, PKTPG_BUF_CFG, 0);
   1979           1.1      yamt 	CS_WRITE_PACKET_PAGE(sc, PKTPG_BUS_CTL, 0);
   1980           1.1      yamt 
   1981           1.1      yamt 	if (disable) {
   1982           1.1      yamt 		cs_disable(sc);
   1983           1.1      yamt 	}
   1984           1.1      yamt 
   1985           1.1      yamt 	ifp->if_flags &= ~(IFF_RUNNING | IFF_OACTIVE);
   1986           1.1      yamt }
   1987           1.1      yamt 
   1988           1.1      yamt int
   1989           1.5  augustss cs_activate(struct device *self, enum devact act)
   1990           1.1      yamt {
   1991           1.1      yamt 	struct cs_softc *sc = (void *)self;
   1992           1.1      yamt 	int s, error = 0;
   1993           1.1      yamt 
   1994           1.1      yamt 	s = splnet();
   1995           1.1      yamt 	switch (act) {
   1996           1.1      yamt 	case DVACT_ACTIVATE:
   1997           1.1      yamt 		error = EOPNOTSUPP;
   1998           1.1      yamt 		break;
   1999           1.1      yamt 
   2000           1.1      yamt 	case DVACT_DEACTIVATE:
   2001           1.1      yamt 		if_deactivate(&sc->sc_ethercom.ec_if);
   2002           1.1      yamt 		break;
   2003           1.1      yamt 	}
   2004           1.1      yamt 	splx(s);
   2005           1.1      yamt 
   2006           1.1      yamt 	return error;
   2007           1.1      yamt }
   2008           1.1      yamt 
   2009           1.1      yamt static void
   2010           1.5  augustss cs_power(int why, void *arg)
   2011           1.1      yamt {
   2012           1.1      yamt 	struct cs_softc *sc = arg;
   2013           1.1      yamt 	struct ifnet *ifp = &sc->sc_ethercom.ec_if;
   2014           1.1      yamt 	int s;
   2015           1.1      yamt 
   2016           1.1      yamt 	s = splnet();
   2017           1.1      yamt 	switch (why) {
   2018           1.1      yamt 	case PWR_STANDBY:
   2019           1.1      yamt 	case PWR_SUSPEND:
   2020           1.1      yamt 		cs_stop(ifp, 0);
   2021           1.1      yamt 		break;
   2022           1.1      yamt 	case PWR_RESUME:
   2023           1.1      yamt 		if (ifp->if_flags & IFF_UP) {
   2024           1.1      yamt 			cs_init(ifp);
   2025           1.1      yamt 		}
   2026           1.1      yamt 		break;
   2027           1.1      yamt 	case PWR_SOFTSUSPEND:
   2028           1.1      yamt 	case PWR_SOFTSTANDBY:
   2029           1.1      yamt 	case PWR_SOFTRESUME:
   2030           1.1      yamt 		break;
   2031           1.1      yamt 	}
   2032           1.1      yamt 	splx(s);
   2033           1.1      yamt }
   2034