i82596.c revision 1.16.6.1       1  1.16.6.1  jmcneill /* $NetBSD: i82596.c,v 1.16.6.1 2007/09/03 16:48:03 jmcneill Exp $ */
      2       1.1     jkunz 
      3       1.1     jkunz /*
      4       1.1     jkunz  * Copyright (c) 2003 Jochen Kunz.
      5       1.1     jkunz  * All rights reserved.
      6       1.1     jkunz  *
      7       1.1     jkunz  * Redistribution and use in source and binary forms, with or without
      8       1.1     jkunz  * modification, are permitted provided that the following conditions
      9       1.1     jkunz  * are met:
     10       1.1     jkunz  * 1. Redistributions of source code must retain the above copyright
     11       1.1     jkunz  *    notice, this list of conditions and the following disclaimer.
     12       1.1     jkunz  * 2. Redistributions in binary form must reproduce the above copyright
     13       1.1     jkunz  *    notice, this list of conditions and the following disclaimer in the
     14       1.1     jkunz  *    documentation and/or other materials provided with the distribution.
     15       1.1     jkunz  * 3. The name of Jochen Kunz may not be used to endorse or promote
     16       1.1     jkunz  *    products derived from this software without specific prior
     17       1.1     jkunz  *    written permission.
     18       1.1     jkunz  *
     19       1.1     jkunz  * THIS SOFTWARE IS PROVIDED BY JOCHEN KUNZ
     20       1.1     jkunz  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21       1.1     jkunz  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22       1.1     jkunz  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL JOCHEN KUNZ
     23       1.1     jkunz  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24       1.1     jkunz  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25       1.1     jkunz  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26       1.1     jkunz  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27       1.1     jkunz  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28       1.1     jkunz  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29       1.1     jkunz  * POSSIBILITY OF SUCH DAMAGE.
     30       1.1     jkunz  */
     31       1.1     jkunz 
     32       1.1     jkunz /*
     33      1.14     skrll  * Driver for the Intel i82596CA and i82596DX/SX 10MBit/s Ethernet chips.
     34      1.14     skrll  *
     35       1.1     jkunz  * It operates the i82596 in 32-Bit Linear Mode, opposed to the old i82586
     36       1.8     perry  * ie(4) driver (src/sys/dev/ic/i82586.c), that degrades the i82596 to
     37       1.1     jkunz  * i82586 compatibility mode.
     38      1.13     skrll  *
     39      1.14     skrll  * Documentation about these chips can be found at
     40      1.14     skrll  *
     41      1.14     skrll  *	http://developer.intel.com/design/network/datashts/290218.htm
     42      1.14     skrll  *	http://developer.intel.com/design/network/datashts/290219.htm
     43       1.1     jkunz  */
     44       1.1     jkunz 
     45       1.1     jkunz #include <sys/cdefs.h>
     46  1.16.6.1  jmcneill __KERNEL_RCSID(0, "$NetBSD: i82596.c,v 1.16.6.1 2007/09/03 16:48:03 jmcneill Exp $");
     47       1.1     jkunz 
     48       1.1     jkunz /* autoconfig and device stuff */
     49       1.1     jkunz #include <sys/param.h>
     50       1.1     jkunz #include <sys/device.h>
     51       1.1     jkunz #include <sys/conf.h>
     52       1.1     jkunz #include "locators.h"
     53       1.1     jkunz #include "ioconf.h"
     54       1.1     jkunz 
     55       1.1     jkunz /* bus_space / bus_dma etc. */
     56       1.1     jkunz #include <machine/bus.h>
     57       1.1     jkunz #include <machine/intr.h>
     58       1.1     jkunz 
     59       1.1     jkunz /* general system data and functions */
     60       1.1     jkunz #include <sys/systm.h>
     61       1.1     jkunz #include <sys/ioctl.h>
     62       1.1     jkunz 
     63       1.1     jkunz /* tsleep / sleep / wakeup */
     64       1.1     jkunz #include <sys/proc.h>
     65       1.1     jkunz /* hz for above */
     66       1.1     jkunz #include <sys/kernel.h>
     67       1.1     jkunz 
     68       1.1     jkunz /* network stuff */
     69       1.1     jkunz #include <net/if.h>
     70       1.1     jkunz #include <net/if_dl.h>
     71       1.1     jkunz #include <net/if_media.h>
     72       1.1     jkunz #include <net/if_ether.h>
     73       1.1     jkunz #include <sys/socket.h>
     74       1.1     jkunz #include <sys/mbuf.h>
     75       1.1     jkunz 
     76       1.1     jkunz #include "bpfilter.h"
     77       1.8     perry #if NBPFILTER > 0
     78       1.1     jkunz #include <net/bpf.h>
     79       1.8     perry #endif
     80       1.1     jkunz 
     81       1.1     jkunz #include <dev/ic/i82596reg.h>
     82       1.1     jkunz #include <dev/ic/i82596var.h>
     83       1.1     jkunz 
     84       1.1     jkunz /* Supported chip variants */
     85      1.10     skrll const char *i82596_typenames[] = { "unknown", "DX/SX", "CA" };
     86       1.1     jkunz 
     87       1.1     jkunz /* media change and status callback */
     88       1.1     jkunz static int iee_mediachange(struct ifnet *);
     89       1.1     jkunz static void iee_mediastatus(struct ifnet *, struct ifmediareq *);
     90       1.1     jkunz 
     91       1.1     jkunz /* interface routines to upper protocols */
     92       1.1     jkunz static void iee_start(struct ifnet *);			/* initiate output */
     93      1.15  christos static int iee_ioctl(struct ifnet *, u_long, void *);	/* ioctl routine */
     94       1.1     jkunz static int iee_init(struct ifnet *);			/* init routine */
     95       1.1     jkunz static void iee_stop(struct ifnet *, int);		/* stop routine */
     96       1.1     jkunz static void iee_watchdog(struct ifnet *);		/* timer routine */
     97       1.1     jkunz 
     98       1.1     jkunz /* internal helper functions */
     99       1.7   tsutsui static void iee_cb_setup(struct iee_softc *, uint32_t);
    100       1.1     jkunz 
    101       1.1     jkunz /*
    102      1.13     skrll  * Things a MD frontend has to provide:
    103      1.13     skrll  *
    104      1.13     skrll  * The functions via function pointers in the softc:
    105      1.13     skrll  *	int (*sc_iee_cmd)(struct iee_softc *sc, uint32_t cmd);
    106      1.13     skrll  *	int (*sc_iee_reset)(struct iee_softc *sc);
    107      1.13     skrll  *	void (*sc_mediastatus)(struct ifnet *, struct ifmediareq *);
    108      1.13     skrll  *	int (*sc_mediachange)(struct ifnet *);
    109      1.13     skrll  *
    110      1.13     skrll  * sc_iee_cmd(): send a command to the i82596 by writing the cmd parameter
    111      1.13     skrll  *	to the SCP cmd word and issuing a Channel Attention.
    112      1.13     skrll  * sc_iee_reset(): initiate a reset, supply the address of the SCP to the
    113      1.13     skrll  *	chip, wait for the chip to initialize and ACK interrupts that
    114      1.13     skrll  *	this may have caused by calling (sc->sc_iee_cmd)(sc, IEE_SCB_ACK);
    115      1.13     skrll  * This functions must carefully bus_dmamap_sync() all data they have touched!
    116      1.13     skrll  *
    117      1.13     skrll  * sc_mediastatus() and sc_mediachange() are just MD hooks to the according
    118      1.13     skrll  * MI functions. The MD frontend may set this pointers to NULL when they
    119      1.13     skrll  * are not needed.
    120      1.13     skrll  *
    121      1.13     skrll  * sc->sc_type has to be set to I82596_UNKNOWN or I82596_DX or I82596_CA.
    122      1.13     skrll  * This is for printing out the correct chip type at attach time only. The
    123      1.13     skrll  * MI backend doesn't distinguish different chip types when programming
    124      1.13     skrll  * the chip.
    125      1.13     skrll  *
    126      1.13     skrll  * sc->sc_flags has to be set to 0 on little endian hardware and to
    127      1.13     skrll  * IEE_NEED_SWAP on big endian hardware, when endianess conversion is not
    128      1.13     skrll  * done by the bus attachment. Usually you need to set IEE_NEED_SWAP
    129      1.13     skrll  * when IEE_SYSBUS_BE is set in the sysbus byte.
    130      1.13     skrll  *
    131      1.13     skrll  * sc->sc_cl_align must be set to 1 or to the cache line size. When set to
    132      1.13     skrll  * 1 no special alignment of DMA descriptors is done. If sc->sc_cl_align != 1
    133      1.13     skrll  * it forces alignment of the data structures in the shared memory to a multiple
    134      1.13     skrll  * of sc->sc_cl_align. This is needed on archs like hp700 that have non DMA
    135      1.13     skrll  * I/O coherent caches and are unable to map the shared memory uncachable.
    136      1.13     skrll  * (At least pre PA7100LC CPUs are unable to map memory uncachable.)
    137      1.13     skrll  *
    138      1.13     skrll  * sc->sc_cl_align MUST BE INITIALIZED BEFORE THE FOLLOWING MACROS ARE USED:
    139      1.13     skrll  * SC_* IEE_*_SZ IEE_*_OFF IEE_SHMEM_MAX (shell style glob(3) pattern)
    140      1.13     skrll  *
    141      1.13     skrll  * The MD frontend has to allocate a piece of DMA memory at least of
    142      1.13     skrll  * IEE_SHMEM_MAX bytes size. All communication with the chip is done via
    143      1.13     skrll  * this shared memory. If possible map this memory non-cachable on
    144      1.13     skrll  * archs with non DMA I/O coherent caches. The base of the memory needs
    145      1.13     skrll  * to be aligned to an even address if sc->sc_cl_align == 1 and aligned
    146      1.13     skrll  * to a cache line if sc->sc_cl_align != 1.
    147      1.13     skrll  *
    148      1.13     skrll  * An interrupt with iee_intr() as handler must be established.
    149      1.13     skrll  *
    150      1.13     skrll  * Call void iee_attach(struct iee_softc *sc, uint8_t *ether_address,
    151      1.13     skrll  * int *media, int nmedia, int defmedia); when everything is set up. First
    152      1.13     skrll  * parameter is a pointer to the MI softc, ether_address is an array that
    153      1.13     skrll  * contains the ethernet address. media is an array of the media types
    154      1.13     skrll  * provided by the hardware. The members of this array are supplied to
    155      1.13     skrll  * ifmedia_add() in sequence. nmedia is the count of elements in media.
    156      1.13     skrll  * defmedia is the default media that is set via ifmedia_set().
    157      1.13     skrll  * nmedia and defmedia are ignored when media == NULL.
    158      1.13     skrll  *
    159      1.13     skrll  * The MD backend may call iee_detach() to detach the device.
    160      1.13     skrll  *
    161      1.13     skrll  * See sys/arch/hp700/gsc/if_iee_gsc.c for an example.
    162      1.13     skrll  */
    163       1.1     jkunz 
    164       1.1     jkunz 
    165       1.1     jkunz /*
    166      1.13     skrll  * How frame reception is done:
    167      1.13     skrll  * Each Receive Frame Descriptor has one associated Receive Buffer Descriptor.
    168      1.13     skrll  * Each RBD points to the data area of an mbuf cluster. The RFDs are linked
    169      1.13     skrll  * together in a circular list. sc->sc_rx_done is the count of RFDs in the
    170      1.13     skrll  * list already processed / the number of the RFD that has to be checked for
    171      1.13     skrll  * a new frame first at the next RX interrupt. Upon successful reception of
    172      1.13     skrll  * a frame the mbuf cluster is handled to upper protocol layers, a new mbuf
    173      1.13     skrll  * cluster is allocated and the RFD / RBD are reinitialized accordingly.
    174      1.13     skrll  *
    175      1.13     skrll  * When a RFD list overrun occurred the whole RFD and RBD lists are reinitialized
    176      1.13     skrll  * and frame reception is started again.
    177      1.13     skrll  */
    178       1.1     jkunz int
    179       1.1     jkunz iee_intr(void *intarg)
    180       1.1     jkunz {
    181       1.1     jkunz 	struct iee_softc *sc = intarg;
    182       1.1     jkunz 	struct ifnet *ifp = &sc->sc_ethercom.ec_if;
    183       1.1     jkunz 	struct iee_rfd *rfd;
    184       1.1     jkunz 	struct iee_rbd *rbd;
    185       1.1     jkunz 	bus_dmamap_t rx_map;
    186       1.1     jkunz 	struct mbuf *rx_mbuf;
    187       1.1     jkunz 	struct mbuf *new_mbuf;
    188       1.1     jkunz 	int scb_status;
    189       1.1     jkunz 	int scb_cmd;
    190       1.6   tsutsui 	int n, col;
    191       1.1     jkunz 
    192       1.1     jkunz 	if ((ifp->if_flags & IFF_RUNNING) == 0) {
    193       1.1     jkunz 		(sc->sc_iee_cmd)(sc, IEE_SCB_ACK);
    194       1.1     jkunz 		return(1);
    195       1.1     jkunz 	}
    196       1.1     jkunz 	bus_dmamap_sync(sc->sc_dmat, sc->sc_shmem_map, 0, IEE_SHMEM_MAX,
    197       1.1     jkunz 	    BUS_DMASYNC_POSTREAD);
    198       1.1     jkunz 	scb_status = SC_SCB->scb_status;
    199       1.1     jkunz 	scb_cmd = SC_SCB->scb_cmd;
    200       1.1     jkunz 	rfd = SC_RFD(sc->sc_rx_done);
    201       1.2     jkunz 	while ((rfd->rfd_status & IEE_RFD_C) != 0) {
    202       1.1     jkunz 		/* At least one packet was received. */
    203       1.1     jkunz 		rbd = SC_RBD(sc->sc_rx_done);
    204       1.1     jkunz 		rx_map = sc->sc_rx_map[sc->sc_rx_done];
    205       1.1     jkunz 		rx_mbuf = sc->sc_rx_mbuf[sc->sc_rx_done];
    206       1.1     jkunz 		SC_RBD((sc->sc_rx_done + IEE_NRFD - 1) % IEE_NRFD)->rbd_size
    207       1.1     jkunz 		    &= ~IEE_RBD_EL;
    208       1.1     jkunz 		if ((rfd->rfd_status & IEE_RFD_OK) == 0
    209       1.1     jkunz 		    || (rbd->rbd_count & IEE_RBD_EOF) == 0
    210       1.1     jkunz 		    || (rbd->rbd_count & IEE_RBD_F) == 0){
    211       1.1     jkunz 			/* Receive error, skip frame and reuse buffer. */
    212       1.1     jkunz 			rfd->rfd_status = 0;
    213       1.1     jkunz 			rbd->rbd_count = 0;
    214       1.1     jkunz 			rbd->rbd_size = IEE_RBD_EL | rx_map->dm_segs[0].ds_len;
    215       1.1     jkunz 			printf("%s: iee_intr: receive error %d, rfd_status="
    216       1.8     perry 			    "0x%.4x, rfd_count=0x%.4x\n", sc->sc_dev.dv_xname,
    217       1.1     jkunz 			    ++sc->sc_rx_err, rfd->rfd_status, rbd->rbd_count);
    218       1.1     jkunz 			sc->sc_rx_done = (sc->sc_rx_done + 1) % IEE_NRFD;
    219       1.1     jkunz 			continue;
    220       1.1     jkunz 		}
    221       1.1     jkunz 		rfd->rfd_status = 0;
    222       1.1     jkunz 		bus_dmamap_sync(sc->sc_dmat, rx_map, 0, rx_mbuf->m_ext.ext_size,
    223       1.1     jkunz 		    BUS_DMASYNC_POSTREAD);
    224       1.8     perry 		rx_mbuf->m_pkthdr.len = rx_mbuf->m_len =
    225       1.1     jkunz 		    rbd->rbd_count & IEE_RBD_COUNT;
    226       1.1     jkunz 		rx_mbuf->m_pkthdr.rcvif = ifp;
    227       1.1     jkunz 		MGETHDR(new_mbuf, M_DONTWAIT, MT_DATA);
    228       1.1     jkunz 		if (new_mbuf == NULL) {
    229       1.1     jkunz 			printf("%s: iee_intr: can't allocate mbuf\n",
    230       1.1     jkunz 			    sc->sc_dev.dv_xname);
    231       1.1     jkunz 			break;
    232       1.1     jkunz 		}
    233       1.1     jkunz 		MCLAIM(new_mbuf, &sc->sc_ethercom.ec_rx_mowner);
    234       1.1     jkunz 		MCLGET(new_mbuf, M_DONTWAIT);
    235       1.1     jkunz 		if ((new_mbuf->m_flags & M_EXT) == 0) {
    236       1.8     perry 			printf("%s: iee_intr: can't alloc mbuf cluster\n",
    237       1.1     jkunz 			    sc->sc_dev.dv_xname);
    238       1.1     jkunz 			m_freem(new_mbuf);
    239       1.1     jkunz 			break;
    240       1.1     jkunz 		}
    241       1.1     jkunz 		bus_dmamap_unload(sc->sc_dmat, rx_map);
    242       1.8     perry 		if (bus_dmamap_load(sc->sc_dmat, rx_map,
    243       1.8     perry 		    new_mbuf->m_ext.ext_buf, new_mbuf->m_ext.ext_size,
    244       1.1     jkunz 		    NULL, BUS_DMA_READ | BUS_DMA_NOWAIT) != 0)
    245       1.1     jkunz 			panic("%s: iee_intr: can't load RX DMA map\n",
    246       1.1     jkunz 			    sc->sc_dev.dv_xname);
    247       1.1     jkunz 		bus_dmamap_sync(sc->sc_dmat, rx_map, 0,
    248       1.1     jkunz 		    new_mbuf->m_ext.ext_size, BUS_DMASYNC_PREREAD);
    249       1.1     jkunz #if NBPFILTER > 0
    250       1.1     jkunz 		if (ifp->if_bpf != 0)
    251       1.1     jkunz 			bpf_mtap(ifp->if_bpf, rx_mbuf);
    252       1.1     jkunz #endif /* NBPFILTER > 0 */
    253       1.1     jkunz 		(*ifp->if_input)(ifp, rx_mbuf);
    254       1.1     jkunz 		ifp->if_ipackets++;
    255       1.1     jkunz 		sc->sc_rx_mbuf[sc->sc_rx_done] = new_mbuf;
    256       1.1     jkunz 		rbd->rbd_count = 0;
    257       1.1     jkunz 		rbd->rbd_size = IEE_RBD_EL | rx_map->dm_segs[0].ds_len;
    258       1.1     jkunz 		rbd->rbd_rb_addr = rx_map->dm_segs[0].ds_addr;
    259       1.1     jkunz 		sc->sc_rx_done = (sc->sc_rx_done + 1) % IEE_NRFD;
    260       1.1     jkunz 		rfd = SC_RFD(sc->sc_rx_done);
    261       1.1     jkunz 	}
    262       1.1     jkunz 	if ((scb_status & IEE_SCB_RUS) == IEE_SCB_RUS_NR1
    263       1.1     jkunz 	    || (scb_status & IEE_SCB_RUS) == IEE_SCB_RUS_NR2
    264       1.1     jkunz 	    || (scb_status & IEE_SCB_RUS) == IEE_SCB_RUS_NR3) {
    265       1.1     jkunz 		/* Receive Overrun, reinit receive ring buffer. */
    266       1.1     jkunz 		for (n = 0 ; n < IEE_NRFD ; n++) {
    267       1.1     jkunz 			SC_RFD(n)->rfd_cmd = IEE_RFD_SF;
    268       1.1     jkunz 			SC_RFD(n)->rfd_link_addr = IEE_PHYS_SHMEM(IEE_RFD_OFF
    269       1.1     jkunz 			    + IEE_RFD_SZ * ((n + 1) % IEE_NRFD));
    270       1.8     perry 			SC_RBD(n)->rbd_next_rbd = IEE_PHYS_SHMEM(IEE_RBD_OFF
    271       1.1     jkunz 			    + IEE_RBD_SZ * ((n + 1) % IEE_NRFD));
    272       1.8     perry 			SC_RBD(n)->rbd_size = IEE_RBD_EL |
    273       1.1     jkunz 			    sc->sc_rx_map[n]->dm_segs[0].ds_len;
    274       1.8     perry 			SC_RBD(n)->rbd_rb_addr =
    275       1.1     jkunz 			    sc->sc_rx_map[n]->dm_segs[0].ds_addr;
    276       1.1     jkunz 		}
    277       1.1     jkunz 		SC_RFD(0)->rfd_rbd_addr = IEE_PHYS_SHMEM(IEE_RBD_OFF);
    278       1.1     jkunz 		sc->sc_rx_done = 0;
    279       1.8     perry 		bus_dmamap_sync(sc->sc_dmat, sc->sc_shmem_map, IEE_RFD_OFF,
    280       1.1     jkunz 		    IEE_RFD_LIST_SZ + IEE_RBD_LIST_SZ, BUS_DMASYNC_PREWRITE);
    281       1.1     jkunz 		(sc->sc_iee_cmd)(sc, IEE_SCB_RUC_ST);
    282       1.8     perry 		printf("%s: iee_intr: receive ring buffer overrun\n",
    283       1.1     jkunz 		    sc->sc_dev.dv_xname);
    284       1.2     jkunz 	}
    285       1.1     jkunz 
    286       1.8     perry 	if (sc->sc_next_cb != 0
    287       1.2     jkunz 	    && (SC_CB(sc->sc_next_cb - 1)->cb_status & IEE_CB_C) != 0) {
    288       1.1     jkunz 		/* CMD list finished */
    289       1.1     jkunz 		ifp->if_timer = 0;
    290       1.1     jkunz 		if (sc->sc_next_tbd != 0) {
    291      1.12     skrll 			/* A TX CMD list finished, cleanup */
    292       1.1     jkunz 			for (n = 0 ; n < sc->sc_next_cb ; n++) {
    293       1.1     jkunz 				m_freem(sc->sc_tx_mbuf[n]);
    294       1.1     jkunz 				sc->sc_tx_mbuf[n] = NULL;
    295       1.1     jkunz 				bus_dmamap_unload(sc->sc_dmat,sc->sc_tx_map[n]);
    296       1.8     perry 				if ((SC_CB(n)->cb_status & IEE_CB_COL) != 0 &&
    297       1.1     jkunz 				    (SC_CB(n)->cb_status & IEE_CB_MAXCOL) == 0)
    298       1.6   tsutsui 					col = 16;
    299       1.1     jkunz 				else
    300       1.8     perry 					col = SC_CB(n)->cb_status
    301       1.1     jkunz 					    & IEE_CB_MAXCOL;
    302       1.6   tsutsui 				sc->sc_tx_col += col;
    303       1.6   tsutsui 				if ((SC_CB(n)->cb_status & IEE_CB_OK) != 0) {
    304       1.6   tsutsui 					ifp->if_opackets++;
    305       1.6   tsutsui 					ifp->if_collisions += col;
    306       1.6   tsutsui 				}
    307       1.1     jkunz 			}
    308       1.1     jkunz 			sc->sc_next_tbd = 0;
    309       1.1     jkunz 			ifp->if_flags &= ~IFF_OACTIVE;
    310       1.1     jkunz 		}
    311       1.1     jkunz 		for (n = 0 ; n < sc->sc_next_cb ; n++) {
    312       1.1     jkunz 			/* Check if a CMD failed, but ignore TX errors. */
    313       1.1     jkunz 			if ((SC_CB(n)->cb_cmd & IEE_CB_CMD) != IEE_CB_CMD_TR
    314       1.2     jkunz 			    && ((SC_CB(n)->cb_status & IEE_CB_OK) == 0))
    315       1.8     perry 				printf("%s: iee_intr: scb_status=0x%x "
    316       1.1     jkunz 				    "scb_cmd=0x%x failed command %d: "
    317       1.8     perry 				    "cb_status[%d]=0x%.4x cb_cmd[%d]=0x%.4x\n",
    318       1.8     perry 				    sc->sc_dev.dv_xname, scb_status, scb_cmd,
    319       1.1     jkunz 				    ++sc->sc_cmd_err, n, SC_CB(n)->cb_status,
    320       1.1     jkunz 				    n, SC_CB(n)->cb_cmd);
    321       1.1     jkunz 		}
    322       1.1     jkunz 		sc->sc_next_cb = 0;
    323       1.1     jkunz 		if ((sc->sc_flags & IEE_WANT_MCAST) != 0) {
    324       1.8     perry 			iee_cb_setup(sc, IEE_CB_CMD_MCS | IEE_CB_S | IEE_CB_EL
    325       1.1     jkunz 			    | IEE_CB_I);
    326       1.1     jkunz 			(sc->sc_iee_cmd)(sc, IEE_SCB_CUC_EXE);
    327       1.1     jkunz 		} else
    328      1.12     skrll 			/* Try to get deferred packets going. */
    329       1.1     jkunz 			iee_start(ifp);
    330       1.1     jkunz 	}
    331       1.1     jkunz 	if (IEE_SWAP(SC_SCB->scb_crc_err) != sc->sc_crc_err) {
    332       1.1     jkunz 		sc->sc_crc_err = IEE_SWAP(SC_SCB->scb_crc_err);
    333       1.8     perry 		printf("%s: iee_intr: crc_err=%d\n", sc->sc_dev.dv_xname,
    334       1.1     jkunz 		    sc->sc_crc_err);
    335       1.1     jkunz 	}
    336       1.1     jkunz 	if (IEE_SWAP(SC_SCB->scb_align_err) != sc->sc_align_err) {
    337       1.1     jkunz 		sc->sc_align_err = IEE_SWAP(SC_SCB->scb_align_err);
    338       1.8     perry 		printf("%s: iee_intr: align_err=%d\n", sc->sc_dev.dv_xname,
    339       1.1     jkunz 		    sc->sc_align_err);
    340       1.1     jkunz 	}
    341       1.1     jkunz 	if (IEE_SWAP(SC_SCB->scb_resource_err) != sc->sc_resource_err) {
    342       1.1     jkunz 		sc->sc_resource_err = IEE_SWAP(SC_SCB->scb_resource_err);
    343       1.8     perry 		printf("%s: iee_intr: resource_err=%d\n", sc->sc_dev.dv_xname,
    344       1.1     jkunz 		    sc->sc_resource_err);
    345       1.1     jkunz 	}
    346       1.1     jkunz 	if (IEE_SWAP(SC_SCB->scb_overrun_err) != sc->sc_overrun_err) {
    347       1.1     jkunz 		sc->sc_overrun_err = IEE_SWAP(SC_SCB->scb_overrun_err);
    348       1.8     perry 		printf("%s: iee_intr: overrun_err=%d\n", sc->sc_dev.dv_xname,
    349       1.1     jkunz 		    sc->sc_overrun_err);
    350       1.1     jkunz 	}
    351       1.1     jkunz 	if (IEE_SWAP(SC_SCB->scb_rcvcdt_err) != sc->sc_rcvcdt_err) {
    352       1.1     jkunz 		sc->sc_rcvcdt_err = IEE_SWAP(SC_SCB->scb_rcvcdt_err);
    353       1.8     perry 		printf("%s: iee_intr: rcvcdt_err=%d\n", sc->sc_dev.dv_xname,
    354       1.1     jkunz 		    sc->sc_rcvcdt_err);
    355       1.1     jkunz 	}
    356       1.1     jkunz 	if (IEE_SWAP(SC_SCB->scb_short_fr_err) != sc->sc_short_fr_err) {
    357       1.1     jkunz 		sc->sc_short_fr_err = IEE_SWAP(SC_SCB->scb_short_fr_err);
    358       1.8     perry 		printf("%s: iee_intr: short_fr_err=%d\n", sc->sc_dev.dv_xname,
    359       1.1     jkunz 		    sc->sc_short_fr_err);
    360       1.1     jkunz 	}
    361       1.8     perry 	bus_dmamap_sync(sc->sc_dmat, sc->sc_shmem_map, 0, IEE_SHMEM_MAX,
    362       1.2     jkunz 	    BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
    363       1.1     jkunz 	(sc->sc_iee_cmd)(sc, IEE_SCB_ACK);
    364       1.1     jkunz 	return(1);
    365       1.1     jkunz }
    366       1.1     jkunz 
    367       1.1     jkunz 
    368       1.1     jkunz 
    369       1.1     jkunz /*
    370      1.13     skrll  * How Command Block List Processing is done.
    371      1.13     skrll  *
    372      1.13     skrll  * A running CBL is never manipulated. If there is a CBL already running,
    373      1.13     skrll  * further CMDs are deferred until the current list is done. A new list is
    374      1.13     skrll  * setup when the old one has finished.
    375      1.13     skrll  * This eases programming. To manipulate a running CBL it is necessary to
    376      1.13     skrll  * suspend the Command Unit to avoid race conditions. After a suspend
    377      1.13     skrll  * is sent we have to wait for an interrupt that ACKs the suspend. Then
    378      1.13     skrll  * we can manipulate the CBL and resume operation. I am not sure that this
    379      1.13     skrll  * is more effective then the current, much simpler approach. => KISS
    380      1.13     skrll  * See i82596CA data sheet page 26.
    381      1.13     skrll  *
    382      1.13     skrll  * A CBL is running or on the way to be set up when (sc->sc_next_cb != 0).
    383      1.13     skrll  *
    384      1.13     skrll  * A CBL may consist of TX CMDs, and _only_ TX CMDs.
    385      1.13     skrll  * A TX CBL is running or on the way to be set up when
    386      1.13     skrll  * ((sc->sc_next_cb != 0) && (sc->sc_next_tbd != 0)).
    387      1.13     skrll  *
    388      1.13     skrll  * A CBL may consist of other non-TX CMDs like IAS or CONF, and _only_
    389      1.13     skrll  * non-TX CMDs.
    390      1.13     skrll  *
    391      1.13     skrll  * This comes mostly through the way how an Ethernet driver works and
    392      1.13     skrll  * because running CBLs are not manipulated when they are on the way. If
    393      1.13     skrll  * if_start() is called there will be TX CMDs enqueued so we have a running
    394      1.13     skrll  * CBL and other CMDs from e.g. if_ioctl() will be deferred and vice versa.
    395      1.13     skrll  *
    396      1.13     skrll  * The Multicast Setup Command is special. A MCS needs more space than
    397      1.13     skrll  * a single CB has. Actual space requirement depends on the length of the
    398      1.13     skrll  * multicast list. So we always defer MCS until other CBLs are finished,
    399      1.13     skrll  * then we setup a CONF CMD in the first CB. The CONF CMD is needed to
    400      1.13     skrll  * turn ALLMULTI on the hardware on or off. The MCS is the 2nd CB and may
    401      1.13     skrll  * use all the remaining space in the CBL and the Transmit Buffer Descriptor
    402      1.13     skrll  * List. (Therefore CBL and TBDL must be continuous in physical and virtual
    403      1.13     skrll  * memory. This is guaranteed through the definitions of the list offsets
    404      1.13     skrll  * in i82596reg.h and because it is only a single DMA segment used for all
    405      1.13     skrll  * lists.) When ALLMULTI is enabled via the CONF CMD, the MCS is run with
    406      1.13     skrll  * a multicast list length of 0, thus disabling the multicast filter.
    407      1.13     skrll  * A deferred MCS is signaled via ((sc->sc_flags & IEE_WANT_MCAST) != 0)
    408      1.13     skrll  */
    409       1.1     jkunz void
    410       1.7   tsutsui iee_cb_setup(struct iee_softc *sc, uint32_t cmd)
    411       1.1     jkunz {
    412       1.1     jkunz 	struct iee_cb *cb = SC_CB(sc->sc_next_cb);
    413       1.1     jkunz 	struct ifnet *ifp = &sc->sc_ethercom.ec_if;
    414       1.1     jkunz 	struct ether_multistep step;
    415       1.1     jkunz 	struct ether_multi *enm;
    416       1.1     jkunz 
    417       1.1     jkunz 	memset(cb, 0, IEE_CB_SZ);
    418       1.1     jkunz 	cb->cb_cmd = cmd;
    419       1.1     jkunz 	switch(cmd & IEE_CB_CMD) {
    420       1.1     jkunz 	case IEE_CB_CMD_NOP:	/* NOP CMD */
    421       1.1     jkunz 		break;
    422       1.1     jkunz 	case IEE_CB_CMD_IAS:	/* Individual Address Setup */
    423  1.16.6.1  jmcneill 		memcpy(__UNVOLATILE(cb->cb_ind_addr), CLLADDR(ifp->if_sadl),
    424       1.1     jkunz 		    ETHER_ADDR_LEN);
    425       1.1     jkunz 		break;
    426       1.1     jkunz 	case IEE_CB_CMD_CONF:	/* Configure */
    427       1.9        he 		memcpy(__UNVOLATILE(cb->cb_cf), sc->sc_cf, sc->sc_cf[0]
    428       1.1     jkunz 		    & IEE_CF_0_CNT_M);
    429       1.1     jkunz 		break;
    430       1.1     jkunz 	case IEE_CB_CMD_MCS:	/* Multicast Setup */
    431       1.1     jkunz 		if (sc->sc_next_cb != 0) {
    432       1.1     jkunz 			sc->sc_flags |= IEE_WANT_MCAST;
    433       1.1     jkunz 			return;
    434       1.1     jkunz 		}
    435       1.1     jkunz 		sc->sc_flags &= ~IEE_WANT_MCAST;
    436       1.1     jkunz 		if ((sc->sc_cf[8] & IEE_CF_8_PRM) != 0) {
    437       1.1     jkunz 			/* Need no multicast filter in promisc mode. */
    438       1.8     perry 			iee_cb_setup(sc, IEE_CB_CMD_CONF | IEE_CB_S | IEE_CB_EL
    439       1.1     jkunz 			    | IEE_CB_I);
    440       1.1     jkunz 			return;
    441       1.1     jkunz 		}
    442       1.1     jkunz 		/* Leave room for a CONF CMD to en/dis-able ALLMULTI mode */
    443       1.1     jkunz 		cb = SC_CB(sc->sc_next_cb + 1);
    444       1.1     jkunz 		cb->cb_cmd = cmd;
    445       1.1     jkunz 		cb->cb_mcast.mc_size = 0;
    446       1.1     jkunz 		ETHER_FIRST_MULTI(step, &sc->sc_ethercom, enm);
    447       1.1     jkunz 		while (enm != NULL) {
    448       1.8     perry 			if (memcmp(enm->enm_addrlo, enm->enm_addrhi,
    449       1.8     perry 			    ETHER_ADDR_LEN) != 0 || cb->cb_mcast.mc_size
    450       1.1     jkunz 			    * ETHER_ADDR_LEN + 2 * IEE_CB_SZ
    451       1.1     jkunz 			    > IEE_CB_LIST_SZ + IEE_TBD_LIST_SZ) {
    452       1.1     jkunz 				cb->cb_mcast.mc_size = 0;
    453       1.1     jkunz 				break;
    454       1.1     jkunz 			}
    455       1.9        he 			memcpy(__UNVOLATILE(&cb->cb_mcast.mc_addrs[
    456       1.9        he 			    cb->cb_mcast.mc_size * ETHER_ADDR_LEN]),
    457       1.1     jkunz 			    enm->enm_addrlo, ETHER_ADDR_LEN);
    458       1.1     jkunz 			ETHER_NEXT_MULTI(step, enm);
    459       1.1     jkunz 			cb->cb_mcast.mc_size++;
    460       1.1     jkunz 		}
    461       1.1     jkunz 		if (cb->cb_mcast.mc_size == 0) {
    462       1.1     jkunz 			/* Can't do exact mcast filtering, do ALLMULTI mode. */
    463       1.1     jkunz 			ifp->if_flags |= IFF_ALLMULTI;
    464       1.1     jkunz 			sc->sc_cf[11] &= ~IEE_CF_11_MCALL;
    465       1.1     jkunz 		} else {
    466       1.1     jkunz 			/* disable ALLMULTI and load mcast list */
    467       1.1     jkunz 			ifp->if_flags &= ~IFF_ALLMULTI;
    468       1.1     jkunz 			sc->sc_cf[11] |= IEE_CF_11_MCALL;
    469       1.1     jkunz 			/* Mcast setup may need more then IEE_CB_SZ bytes. */
    470       1.8     perry 			bus_dmamap_sync(sc->sc_dmat, sc->sc_shmem_map,
    471       1.8     perry 			    IEE_CB_OFF, IEE_CB_LIST_SZ + IEE_TBD_LIST_SZ,
    472       1.1     jkunz 			    BUS_DMASYNC_PREWRITE);
    473       1.1     jkunz 		}
    474       1.1     jkunz 		iee_cb_setup(sc, IEE_CB_CMD_CONF);
    475       1.1     jkunz 		break;
    476       1.1     jkunz 	case IEE_CB_CMD_TR:	/* Transmit */
    477       1.1     jkunz 		cb->cb_transmit.tx_tbd_addr = IEE_PHYS_SHMEM(IEE_TBD_OFF
    478       1.1     jkunz 		    + IEE_TBD_SZ * sc->sc_next_tbd);
    479      1.12     skrll 		cb->cb_cmd |= IEE_CB_SF; /* Always use Flexible Mode. */
    480       1.1     jkunz 		break;
    481       1.1     jkunz 	case IEE_CB_CMD_TDR:	/* Time Domain Reflectometry */
    482       1.1     jkunz 		break;
    483       1.1     jkunz 	case IEE_CB_CMD_DUMP:	/* Dump */
    484       1.1     jkunz 		break;
    485       1.1     jkunz 	case IEE_CB_CMD_DIAG:	/* Diagnose */
    486       1.1     jkunz 		break;
    487       1.1     jkunz 	default:
    488       1.1     jkunz 		/* can't happen */
    489       1.1     jkunz 		break;
    490       1.1     jkunz 	}
    491       1.8     perry 	cb->cb_link_addr = IEE_PHYS_SHMEM(IEE_CB_OFF + IEE_CB_SZ *
    492       1.1     jkunz 	    (sc->sc_next_cb + 1));
    493       1.8     perry 	bus_dmamap_sync(sc->sc_dmat, sc->sc_shmem_map, IEE_CB_OFF
    494       1.1     jkunz 	    + IEE_CB_SZ * sc->sc_next_cb, IEE_CB_SZ, BUS_DMASYNC_PREWRITE);
    495       1.1     jkunz 	sc->sc_next_cb++;
    496       1.1     jkunz 	ifp->if_timer = 5;
    497       1.1     jkunz 	return;
    498       1.1     jkunz }
    499       1.1     jkunz 
    500       1.1     jkunz 
    501       1.1     jkunz 
    502       1.1     jkunz void
    503       1.8     perry iee_attach(struct iee_softc *sc, uint8_t *eth_addr, int *media, int nmedia,
    504       1.1     jkunz     int defmedia)
    505       1.1     jkunz {
    506       1.1     jkunz 	struct ifnet *ifp = &sc->sc_ethercom.ec_if;
    507       1.1     jkunz 	int n;
    508       1.1     jkunz 
    509       1.1     jkunz 	/* Set pointer to Intermediate System Configuration Pointer. */
    510       1.1     jkunz 	/* Phys. addr. in big endian order. (Big endian as defined by Intel.) */
    511       1.1     jkunz 	SC_SCP->scp_iscp_addr = IEE_SWAP(IEE_PHYS_SHMEM(IEE_ISCP_OFF));
    512       1.1     jkunz 	/* Set pointer to System Control Block. */
    513       1.1     jkunz 	/* Phys. addr. in big endian order. (Big endian as defined by Intel.) */
    514       1.1     jkunz 	SC_ISCP->iscp_scb_addr = IEE_SWAP(IEE_PHYS_SHMEM(IEE_SCB_OFF));
    515       1.1     jkunz 	/* Set pointer to Receive Frame Area. (physical address) */
    516       1.1     jkunz 	SC_SCB->scb_rfa_addr = IEE_PHYS_SHMEM(IEE_RFD_OFF);
    517       1.1     jkunz 	/* Set pointer to Command Block. (physical address) */
    518       1.1     jkunz 	SC_SCB->scb_cmd_blk_addr = IEE_PHYS_SHMEM(IEE_CB_OFF);
    519       1.1     jkunz 
    520       1.1     jkunz 	ifmedia_init(&sc->sc_ifmedia, 0, iee_mediachange, iee_mediastatus);
    521       1.1     jkunz 	if (media != NULL) {
    522       1.1     jkunz 		for (n = 0 ; n < nmedia ; n++)
    523       1.1     jkunz 			ifmedia_add(&sc->sc_ifmedia, media[n], 0, NULL);
    524       1.1     jkunz 		ifmedia_set(&sc->sc_ifmedia, defmedia);
    525       1.1     jkunz 	} else {
    526       1.1     jkunz 		ifmedia_add(&sc->sc_ifmedia, IFM_ETHER | IFM_NONE, 0, NULL);
    527       1.1     jkunz 		ifmedia_set(&sc->sc_ifmedia, IFM_ETHER | IFM_NONE);
    528       1.1     jkunz 	}
    529       1.1     jkunz 
    530       1.1     jkunz 	ifp->if_softc = sc;
    531       1.1     jkunz 	strcpy(ifp->if_xname, sc->sc_dev.dv_xname);
    532       1.1     jkunz 	ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
    533       1.1     jkunz 	ifp->if_start = iee_start;	/* initiate output routine */
    534       1.1     jkunz 	ifp->if_ioctl = iee_ioctl;	/* ioctl routine */
    535       1.1     jkunz 	ifp->if_init = iee_init;	/* init routine */
    536       1.1     jkunz 	ifp->if_stop = iee_stop;	/* stop routine */
    537       1.1     jkunz 	ifp->if_watchdog = iee_watchdog;	/* timer routine */
    538       1.1     jkunz 	IFQ_SET_READY(&ifp->if_snd);
    539       1.1     jkunz 	/* iee supports IEEE 802.1Q Virtual LANs, see vlan(4). */
    540       1.1     jkunz 	sc->sc_ethercom.ec_capabilities |= ETHERCAP_VLAN_MTU;
    541       1.1     jkunz 
    542       1.1     jkunz 	if_attach(ifp);
    543       1.1     jkunz 	ether_ifattach(ifp, eth_addr);
    544       1.1     jkunz 
    545       1.1     jkunz 	aprint_normal(": Intel 82596%s address %s\n",
    546       1.1     jkunz 	    i82596_typenames[ sc->sc_type], ether_sprintf(eth_addr));
    547       1.1     jkunz 
    548       1.1     jkunz 	for (n = 0 ; n < IEE_NCB ; n++)
    549       1.1     jkunz 		sc->sc_tx_map[n] = NULL;
    550       1.1     jkunz 	for (n = 0 ; n < IEE_NRFD ; n++) {
    551       1.1     jkunz 		sc->sc_rx_mbuf[n] = NULL;
    552       1.1     jkunz 		sc->sc_rx_map[n] = NULL;
    553       1.1     jkunz 	}
    554       1.1     jkunz 	sc->sc_tx_timeout = 0;
    555       1.1     jkunz 	sc->sc_setup_timeout = 0;
    556       1.1     jkunz 	(sc->sc_iee_reset)(sc);
    557       1.1     jkunz 	return;
    558       1.1     jkunz }
    559       1.1     jkunz 
    560       1.1     jkunz 
    561       1.1     jkunz 
    562       1.1     jkunz void
    563       1.1     jkunz iee_detach(struct iee_softc *sc, int flags)
    564       1.1     jkunz {
    565       1.1     jkunz 	struct ifnet *ifp = &sc->sc_ethercom.ec_if;
    566       1.1     jkunz 
    567       1.1     jkunz 	if ((ifp->if_flags & IFF_RUNNING) != 0)
    568       1.1     jkunz 		iee_stop(ifp, 1);
    569       1.1     jkunz 	ether_ifdetach(ifp);
    570       1.1     jkunz 	if_detach(ifp);
    571       1.1     jkunz 	return;
    572       1.1     jkunz }
    573       1.1     jkunz 
    574       1.1     jkunz 
    575       1.1     jkunz 
    576       1.1     jkunz /* media change and status callback */
    577       1.1     jkunz int
    578       1.1     jkunz iee_mediachange(struct ifnet *ifp)
    579       1.1     jkunz {
    580       1.1     jkunz 	struct iee_softc *sc = ifp->if_softc;
    581       1.8     perry 
    582       1.1     jkunz 	if (sc->sc_mediachange != NULL)
    583       1.1     jkunz 		return ((sc->sc_mediachange)(ifp));
    584       1.1     jkunz 	return(0);
    585       1.1     jkunz }
    586       1.1     jkunz 
    587       1.1     jkunz 
    588       1.1     jkunz 
    589       1.1     jkunz void
    590       1.1     jkunz iee_mediastatus(struct ifnet *ifp, struct ifmediareq *ifmreq)
    591       1.1     jkunz {
    592       1.1     jkunz 	struct iee_softc *sc = ifp->if_softc;
    593       1.1     jkunz 
    594       1.1     jkunz 	if (sc->sc_mediastatus != NULL)
    595       1.1     jkunz 		return ((sc->sc_mediastatus)(ifp, ifmreq));
    596       1.1     jkunz 	return;
    597       1.1     jkunz }
    598       1.1     jkunz 
    599       1.1     jkunz 
    600       1.1     jkunz 
    601       1.1     jkunz /* initiate output routine */
    602       1.1     jkunz void
    603       1.1     jkunz iee_start(struct ifnet *ifp)
    604       1.1     jkunz {
    605       1.1     jkunz 	struct iee_softc *sc = ifp->if_softc;
    606       1.1     jkunz 	struct mbuf *m = NULL;
    607       1.1     jkunz 	int t;
    608       1.1     jkunz 	int n;
    609       1.1     jkunz 
    610       1.1     jkunz 	if (sc->sc_next_cb != 0)
    611      1.12     skrll 		/* There is already a CMD running. Defer packet enqueuing. */
    612       1.1     jkunz 		return;
    613       1.1     jkunz 	for (t = 0 ; t < IEE_NCB ; t++) {
    614       1.1     jkunz 		IFQ_DEQUEUE(&ifp->if_snd, sc->sc_tx_mbuf[t]);
    615       1.1     jkunz 		if (sc->sc_tx_mbuf[t] == NULL)
    616       1.1     jkunz 			break;
    617       1.1     jkunz 		if (bus_dmamap_load_mbuf(sc->sc_dmat, sc->sc_tx_map[t],
    618       1.1     jkunz 		    sc->sc_tx_mbuf[t], BUS_DMA_WRITE | BUS_DMA_NOWAIT) != 0) {
    619       1.1     jkunz 			/*
    620       1.8     perry 			 * The packet needs more TBD then we support.
    621       1.8     perry 			 * Copy the packet into a mbuf cluster to get it out.
    622       1.1     jkunz 			 */
    623       1.8     perry 			printf("%s: iee_start: failed to load DMA map\n",
    624       1.1     jkunz 			    sc->sc_dev.dv_xname);
    625       1.1     jkunz 			MGETHDR(m, M_DONTWAIT, MT_DATA);
    626       1.1     jkunz 			if (m == NULL) {
    627       1.1     jkunz 				printf("%s: iee_start: can't allocate mbuf\n",
    628       1.1     jkunz 				    sc->sc_dev.dv_xname);
    629       1.1     jkunz 				m_freem(sc->sc_tx_mbuf[t]);
    630       1.1     jkunz 				t--;
    631       1.1     jkunz 				continue;
    632       1.1     jkunz 			}
    633       1.1     jkunz 			MCLAIM(m, &sc->sc_ethercom.ec_rx_mowner);
    634       1.1     jkunz 			MCLGET(m, M_DONTWAIT);
    635       1.1     jkunz 			if ((m->m_flags & M_EXT) == 0) {
    636       1.1     jkunz 				printf("%s: iee_start: can't allocate mbuf "
    637       1.1     jkunz 				    "cluster\n", sc->sc_dev.dv_xname);
    638       1.1     jkunz 				m_freem(sc->sc_tx_mbuf[t]);
    639       1.1     jkunz 				m_freem(m);
    640       1.1     jkunz 				t--;
    641       1.1     jkunz 				continue;
    642       1.1     jkunz 			}
    643       1.8     perry 			m_copydata(sc->sc_tx_mbuf[t], 0,
    644      1.15  christos 			    sc->sc_tx_mbuf[t]->m_pkthdr.len, mtod(m, void *));
    645       1.1     jkunz 			m->m_pkthdr.len = sc->sc_tx_mbuf[t]->m_pkthdr.len;
    646       1.1     jkunz 			m->m_len = sc->sc_tx_mbuf[t]->m_pkthdr.len;
    647       1.1     jkunz 			m_freem(sc->sc_tx_mbuf[t]);
    648       1.1     jkunz 			sc->sc_tx_mbuf[t] = m;
    649       1.1     jkunz 			if(bus_dmamap_load_mbuf(sc->sc_dmat, sc->sc_tx_map[t],
    650       1.1     jkunz 		    	    m, BUS_DMA_WRITE | BUS_DMA_NOWAIT) != 0) {
    651       1.1     jkunz 				printf("%s: iee_start: can't load TX DMA map\n",
    652       1.1     jkunz 				    sc->sc_dev.dv_xname);
    653       1.1     jkunz 				m_freem(sc->sc_tx_mbuf[t]);
    654       1.1     jkunz 				t--;
    655       1.1     jkunz 				continue;
    656       1.1     jkunz 			}
    657       1.1     jkunz 		}
    658       1.1     jkunz 		for (n = 0 ; n < sc->sc_tx_map[t]->dm_nsegs ; n++) {
    659       1.1     jkunz 			SC_TBD(sc->sc_next_tbd + n)->tbd_tb_addr =
    660       1.1     jkunz 			    sc->sc_tx_map[t]->dm_segs[n].ds_addr;
    661       1.1     jkunz 			SC_TBD(sc->sc_next_tbd + n)->tbd_size =
    662       1.1     jkunz 			    sc->sc_tx_map[t]->dm_segs[n].ds_len;
    663       1.1     jkunz 			SC_TBD(sc->sc_next_tbd + n)->tbd_link_addr =
    664       1.8     perry 			    IEE_PHYS_SHMEM(IEE_TBD_OFF + IEE_TBD_SZ
    665       1.1     jkunz 			    * (sc->sc_next_tbd + n + 1));
    666       1.1     jkunz 		}
    667       1.1     jkunz 		SC_TBD(sc->sc_next_tbd + n - 1)->tbd_size |= IEE_CB_EL;
    668       1.1     jkunz 		bus_dmamap_sync(sc->sc_dmat, sc->sc_tx_map[t], 0,
    669       1.1     jkunz 		    sc->sc_tx_map[t]->dm_mapsize, BUS_DMASYNC_PREWRITE);
    670       1.1     jkunz 		IFQ_POLL(&ifp->if_snd, m);
    671       1.1     jkunz 		if (m == NULL)
    672       1.1     jkunz 			iee_cb_setup(sc, IEE_CB_CMD_TR | IEE_CB_S | IEE_CB_EL
    673       1.1     jkunz 			    | IEE_CB_I);
    674       1.1     jkunz 		else
    675       1.1     jkunz 			iee_cb_setup(sc, IEE_CB_CMD_TR);
    676       1.1     jkunz 		sc->sc_next_tbd += n;
    677       1.1     jkunz #if NBPFILTER > 0
    678       1.1     jkunz 		/* Pass packet to bpf if someone listens. */
    679       1.1     jkunz 		if (ifp->if_bpf)
    680       1.1     jkunz 			bpf_mtap(ifp->if_bpf, sc->sc_tx_mbuf[t]);
    681       1.1     jkunz #endif
    682       1.1     jkunz 	}
    683       1.1     jkunz 	if (t == 0)
    684       1.1     jkunz 		/* No packets got set up for TX. */
    685       1.1     jkunz 		return;
    686       1.1     jkunz 	if (t == IEE_NCB)
    687       1.1     jkunz 		ifp->if_flags |= IFF_OACTIVE;
    688       1.1     jkunz 	bus_dmamap_sync(sc->sc_dmat, sc->sc_shmem_map, IEE_CB_SZ,
    689       1.1     jkunz 	    IEE_CB_LIST_SZ + IEE_TBD_LIST_SZ, BUS_DMASYNC_PREWRITE);
    690       1.1     jkunz 	(sc->sc_iee_cmd)(sc, IEE_SCB_CUC_EXE);
    691       1.1     jkunz 	return;
    692       1.1     jkunz }
    693       1.1     jkunz 
    694       1.1     jkunz 
    695       1.1     jkunz 
    696       1.1     jkunz /* ioctl routine */
    697       1.1     jkunz int
    698      1.15  christos iee_ioctl(struct ifnet *ifp, u_long cmd, void *data)
    699       1.1     jkunz {
    700       1.1     jkunz 	struct iee_softc *sc = ifp->if_softc;
    701       1.1     jkunz 	int s;
    702       1.1     jkunz 	int err;
    703       1.1     jkunz 
    704       1.1     jkunz 	s = splnet();
    705       1.4   thorpej 	switch (cmd) {
    706       1.4   thorpej 	case SIOCSIFMEDIA:
    707       1.4   thorpej 	case SIOCGIFMEDIA:
    708       1.4   thorpej 		err = ifmedia_ioctl(ifp, (struct ifreq *) data,
    709       1.4   thorpej 		    &sc->sc_ifmedia, cmd);
    710       1.4   thorpej 		break;
    711       1.4   thorpej 
    712       1.4   thorpej 	default:
    713       1.1     jkunz 		err = ether_ioctl(ifp, cmd, data);
    714       1.4   thorpej 		if (err == ENETRESET) {
    715       1.4   thorpej 			/*
    716       1.4   thorpej 			 * Multicast list as changed; set the hardware filter
    717       1.4   thorpej 			 * accordingly.
    718       1.4   thorpej 			 */
    719       1.4   thorpej 			if (ifp->if_flags & IFF_RUNNING) {
    720       1.4   thorpej 				iee_cb_setup(sc, IEE_CB_CMD_MCS | IEE_CB_S |
    721       1.4   thorpej 				    IEE_CB_EL | IEE_CB_I);
    722       1.4   thorpej 				if ((sc->sc_flags & IEE_WANT_MCAST) == 0)
    723       1.4   thorpej 					(*sc->sc_iee_cmd)(sc, IEE_SCB_CUC_EXE);
    724       1.4   thorpej 			}
    725       1.3   thorpej 			err = 0;
    726       1.4   thorpej 		}
    727       1.4   thorpej 		break;
    728       1.1     jkunz 	}
    729       1.1     jkunz 	splx(s);
    730       1.1     jkunz 	return(err);
    731       1.1     jkunz }
    732       1.1     jkunz 
    733       1.1     jkunz 
    734       1.1     jkunz 
    735       1.1     jkunz /* init routine */
    736       1.1     jkunz int
    737       1.1     jkunz iee_init(struct ifnet *ifp)
    738       1.1     jkunz {
    739       1.1     jkunz 	struct iee_softc *sc = ifp->if_softc;
    740       1.1     jkunz 	int r;
    741       1.1     jkunz 	int t;
    742       1.1     jkunz 	int n;
    743       1.1     jkunz 	int err;
    744       1.1     jkunz 
    745       1.1     jkunz 	sc->sc_next_cb = 0;
    746       1.1     jkunz 	sc->sc_next_tbd = 0;
    747       1.1     jkunz 	sc->sc_flags &= ~IEE_WANT_MCAST;
    748       1.1     jkunz 	sc->sc_rx_done = 0;
    749       1.1     jkunz 	SC_SCB->scb_crc_err = 0;
    750       1.1     jkunz 	SC_SCB->scb_align_err = 0;
    751       1.1     jkunz 	SC_SCB->scb_resource_err = 0;
    752       1.1     jkunz 	SC_SCB->scb_overrun_err = 0;
    753       1.1     jkunz 	SC_SCB->scb_rcvcdt_err = 0;
    754       1.1     jkunz 	SC_SCB->scb_short_fr_err = 0;
    755       1.1     jkunz 	sc->sc_crc_err = 0;
    756       1.1     jkunz 	sc->sc_align_err = 0;
    757       1.1     jkunz 	sc->sc_resource_err = 0;
    758       1.1     jkunz 	sc->sc_overrun_err = 0;
    759       1.1     jkunz 	sc->sc_rcvcdt_err = 0;
    760       1.1     jkunz 	sc->sc_short_fr_err = 0;
    761       1.1     jkunz 	sc->sc_tx_col = 0;
    762       1.1     jkunz 	sc->sc_rx_err = 0;
    763       1.1     jkunz 	sc->sc_cmd_err = 0;
    764       1.1     jkunz 	/* Create Transmit DMA maps. */
    765       1.1     jkunz 	for (t = 0 ; t < IEE_NCB ; t++) {
    766       1.1     jkunz 		if (sc->sc_tx_map[t] == NULL && bus_dmamap_create(sc->sc_dmat,
    767       1.8     perry 		    MCLBYTES, IEE_NTBD, MCLBYTES, 0, BUS_DMA_NOWAIT,
    768       1.1     jkunz 		    &sc->sc_tx_map[t]) != 0) {
    769       1.8     perry 			printf("%s: iee_init: can't create TX DMA map\n",
    770       1.1     jkunz 			    sc->sc_dev.dv_xname);
    771       1.1     jkunz 			for (n = 0 ; n < t ; n++)
    772       1.8     perry 				bus_dmamap_destroy(sc->sc_dmat,
    773       1.1     jkunz 				    sc->sc_tx_map[n]);
    774       1.1     jkunz 			return(ENOBUFS);
    775       1.1     jkunz 		}
    776       1.1     jkunz 	}
    777       1.1     jkunz 	/* Initialize Receive Frame and Receive Buffer Descriptors */
    778       1.1     jkunz 	err = 0;
    779       1.1     jkunz 	memset(SC_RFD(0), 0, IEE_RFD_LIST_SZ);
    780       1.1     jkunz 	memset(SC_RBD(0), 0, IEE_RBD_LIST_SZ);
    781       1.1     jkunz 	for (r = 0 ; r < IEE_NRFD ; r++) {
    782       1.1     jkunz 		SC_RFD(r)->rfd_cmd = IEE_RFD_SF;
    783       1.1     jkunz 		SC_RFD(r)->rfd_link_addr = IEE_PHYS_SHMEM(IEE_RFD_OFF
    784       1.1     jkunz 		    + IEE_RFD_SZ * ((r + 1) % IEE_NRFD));
    785       1.1     jkunz 
    786       1.8     perry 		SC_RBD(r)->rbd_next_rbd = IEE_PHYS_SHMEM(IEE_RBD_OFF
    787       1.1     jkunz 		    + IEE_RBD_SZ * ((r + 1) % IEE_NRFD));
    788       1.1     jkunz 		if (sc->sc_rx_mbuf[r] == NULL) {
    789       1.1     jkunz 			MGETHDR(sc->sc_rx_mbuf[r], M_DONTWAIT, MT_DATA);
    790       1.1     jkunz 			if (sc->sc_rx_mbuf[r] == NULL) {
    791       1.8     perry 				printf("%s: iee_init: can't allocate mbuf\n",
    792       1.1     jkunz 				    sc->sc_dev.dv_xname);
    793       1.1     jkunz 				err = 1;
    794       1.1     jkunz 				break;
    795       1.1     jkunz 			}
    796       1.1     jkunz 			MCLAIM(sc->sc_rx_mbuf[r],&sc->sc_ethercom.ec_rx_mowner);
    797       1.1     jkunz 			MCLGET(sc->sc_rx_mbuf[r], M_DONTWAIT);
    798       1.1     jkunz 			if ((sc->sc_rx_mbuf[r]->m_flags & M_EXT) == 0) {
    799       1.1     jkunz 				printf("%s: iee_init: can't allocate mbuf"
    800       1.1     jkunz 				    " cluster\n", sc->sc_dev.dv_xname);
    801       1.1     jkunz 				m_freem(sc->sc_rx_mbuf[r]);
    802       1.1     jkunz 				err = 1;
    803       1.1     jkunz 				break;
    804       1.1     jkunz 			}
    805       1.1     jkunz 		}
    806       1.1     jkunz 		if (sc->sc_rx_map[r] == NULL && bus_dmamap_create(sc->sc_dmat,
    807       1.8     perry 		    MCLBYTES, 1, MCLBYTES , 0, BUS_DMA_NOWAIT,
    808       1.1     jkunz 		    &sc->sc_rx_map[r]) != 0) {
    809       1.1     jkunz 				printf("%s: iee_init: can't create RX "
    810       1.1     jkunz 				    "DMA map\n", sc->sc_dev.dv_xname);
    811       1.1     jkunz 				m_freem(sc->sc_rx_mbuf[r]);
    812       1.1     jkunz 				err = 1;
    813       1.1     jkunz 				break;
    814       1.1     jkunz 			}
    815       1.1     jkunz 		if (bus_dmamap_load(sc->sc_dmat, sc->sc_rx_map[r],
    816       1.8     perry 		    sc->sc_rx_mbuf[r]->m_ext.ext_buf,
    817       1.1     jkunz 		    sc->sc_rx_mbuf[r]->m_ext.ext_size, NULL,
    818       1.1     jkunz 		    BUS_DMA_READ | BUS_DMA_NOWAIT) != 0) {
    819       1.1     jkunz 			printf("%s: iee_init: can't load RX DMA map\n",
    820       1.1     jkunz 			    sc->sc_dev.dv_xname);
    821       1.1     jkunz 			bus_dmamap_destroy(sc->sc_dmat, sc->sc_rx_map[r]);
    822       1.1     jkunz 			m_freem(sc->sc_rx_mbuf[r]);
    823       1.1     jkunz 			err = 1;
    824       1.1     jkunz 			break;
    825       1.1     jkunz 		}
    826       1.1     jkunz 		bus_dmamap_sync(sc->sc_dmat, sc->sc_rx_map[r], 0,
    827       1.1     jkunz 		    sc->sc_rx_mbuf[r]->m_ext.ext_size, BUS_DMASYNC_PREREAD);
    828       1.1     jkunz 		SC_RBD(r)->rbd_size = sc->sc_rx_map[r]->dm_segs[0].ds_len;
    829       1.1     jkunz 		SC_RBD(r)->rbd_rb_addr= sc->sc_rx_map[r]->dm_segs[0].ds_addr;
    830       1.1     jkunz 	}
    831       1.1     jkunz 	SC_RFD(0)->rfd_rbd_addr = IEE_PHYS_SHMEM(IEE_RBD_OFF);
    832       1.1     jkunz 	if (err != 0) {
    833       1.1     jkunz 		for (n = 0 ; n < r; n++) {
    834       1.1     jkunz 			m_freem(sc->sc_rx_mbuf[n]);
    835       1.1     jkunz 			sc->sc_rx_mbuf[n] = NULL;
    836       1.1     jkunz 			bus_dmamap_unload(sc->sc_dmat, sc->sc_rx_map[n]);
    837       1.1     jkunz 			bus_dmamap_destroy(sc->sc_dmat, sc->sc_rx_map[n]);
    838       1.1     jkunz 			sc->sc_rx_map[n] = NULL;
    839       1.1     jkunz 		}
    840       1.1     jkunz 		for (n = 0 ; n < t ; n++) {
    841       1.1     jkunz 			bus_dmamap_destroy(sc->sc_dmat, sc->sc_tx_map[n]);
    842       1.1     jkunz 			sc->sc_tx_map[n] = NULL;
    843       1.1     jkunz 		}
    844       1.1     jkunz 		return(ENOBUFS);
    845       1.1     jkunz 	}
    846       1.1     jkunz 
    847       1.1     jkunz 	(sc->sc_iee_reset)(sc);
    848       1.1     jkunz 	iee_cb_setup(sc, IEE_CB_CMD_IAS);
    849       1.1     jkunz 	sc->sc_cf[0] = IEE_CF_0_DEF | IEE_CF_0_PREF;
    850       1.1     jkunz 	sc->sc_cf[1] = IEE_CF_1_DEF;
    851       1.1     jkunz 	sc->sc_cf[2] = IEE_CF_2_DEF;
    852       1.8     perry 	sc->sc_cf[3] = IEE_CF_3_ADDRLEN_DEF | IEE_CF_3_NSAI
    853       1.1     jkunz 	    | IEE_CF_3_PREAMLEN_DEF;
    854       1.1     jkunz 	sc->sc_cf[4] = IEE_CF_4_DEF;
    855       1.1     jkunz 	sc->sc_cf[5] = IEE_CF_5_DEF;
    856       1.1     jkunz 	sc->sc_cf[6] = IEE_CF_6_DEF;
    857       1.1     jkunz 	sc->sc_cf[7] = IEE_CF_7_DEF;
    858       1.1     jkunz 	sc->sc_cf[8] = IEE_CF_8_DEF;
    859       1.1     jkunz 	sc->sc_cf[9] = IEE_CF_9_DEF;
    860       1.1     jkunz 	sc->sc_cf[10] = IEE_CF_10_DEF;
    861       1.1     jkunz 	sc->sc_cf[11] = IEE_CF_11_DEF & ~IEE_CF_11_LNGFLD;
    862       1.1     jkunz 	sc->sc_cf[12] = IEE_CF_12_DEF;
    863       1.1     jkunz 	sc->sc_cf[13] = IEE_CF_13_DEF;
    864       1.1     jkunz 	iee_cb_setup(sc, IEE_CB_CMD_CONF | IEE_CB_S | IEE_CB_EL);
    865       1.1     jkunz 	SC_SCB->scb_rfa_addr = IEE_PHYS_SHMEM(IEE_RFD_OFF);
    866       1.1     jkunz 	bus_dmamap_sync(sc->sc_dmat, sc->sc_shmem_map, 0, IEE_SHMEM_MAX,
    867       1.1     jkunz 	    BUS_DMASYNC_PREWRITE);
    868       1.1     jkunz 	(sc->sc_iee_cmd)(sc, IEE_SCB_CUC_EXE | IEE_SCB_RUC_ST);
    869       1.1     jkunz 	/* Issue a Channel Attention to ACK interrupts we may have caused. */
    870       1.1     jkunz 	(sc->sc_iee_cmd)(sc, IEE_SCB_ACK);
    871       1.1     jkunz 
    872       1.1     jkunz 	/* Mark the interface as running and ready to RX/TX packets. */
    873       1.1     jkunz 	ifp->if_flags |= IFF_RUNNING;
    874       1.1     jkunz 	ifp->if_flags &= ~IFF_OACTIVE;
    875       1.1     jkunz 	return(0);
    876       1.1     jkunz }
    877       1.1     jkunz 
    878       1.1     jkunz 
    879       1.1     jkunz 
    880       1.1     jkunz /* stop routine */
    881       1.1     jkunz void
    882       1.1     jkunz iee_stop(struct ifnet *ifp, int disable)
    883       1.1     jkunz {
    884       1.1     jkunz 	struct iee_softc *sc = ifp->if_softc;
    885       1.1     jkunz 	int n;
    886       1.1     jkunz 
    887       1.1     jkunz 	ifp->if_flags &= ~IFF_RUNNING;
    888       1.1     jkunz 	ifp->if_flags |= IFF_OACTIVE;
    889       1.1     jkunz 	ifp->if_timer = 0;
    890       1.1     jkunz 	/* Reset the chip to get it quiet. */
    891       1.1     jkunz 	(sc->sc_iee_reset)(ifp->if_softc);
    892       1.1     jkunz 	/* Issue a Channel Attention to ACK interrupts we may have caused. */
    893       1.1     jkunz 	(sc->sc_iee_cmd)(ifp->if_softc, IEE_SCB_ACK);
    894      1.12     skrll 	/* Release any dynamically allocated resources. */
    895       1.1     jkunz 	for (n = 0 ; n < IEE_NCB ; n++) {
    896       1.1     jkunz 		if (sc->sc_tx_map[n] != NULL)
    897       1.1     jkunz 			bus_dmamap_destroy(sc->sc_dmat, sc->sc_tx_map[n]);
    898       1.1     jkunz 		sc->sc_tx_map[n] = NULL;
    899       1.1     jkunz 	}
    900       1.1     jkunz 	for (n = 0 ; n < IEE_NRFD ; n++) {
    901       1.1     jkunz 		if (sc->sc_rx_mbuf[n] != NULL)
    902       1.1     jkunz 			m_freem(sc->sc_rx_mbuf[n]);
    903       1.1     jkunz 		sc->sc_rx_mbuf[n] = NULL;
    904       1.1     jkunz 		if (sc->sc_rx_map[n] != NULL) {
    905       1.1     jkunz 			bus_dmamap_unload(sc->sc_dmat, sc->sc_rx_map[n]);
    906       1.1     jkunz 			bus_dmamap_destroy(sc->sc_dmat, sc->sc_rx_map[n]);
    907       1.1     jkunz 		}
    908       1.1     jkunz 		sc->sc_rx_map[n] = NULL;
    909       1.1     jkunz 	}
    910       1.1     jkunz 	return;
    911       1.1     jkunz }
    912       1.1     jkunz 
    913       1.1     jkunz 
    914       1.1     jkunz 
    915       1.1     jkunz /* timer routine */
    916       1.1     jkunz void
    917       1.1     jkunz iee_watchdog(struct ifnet *ifp)
    918       1.1     jkunz {
    919       1.1     jkunz 	struct iee_softc *sc = ifp->if_softc;
    920       1.1     jkunz 
    921       1.1     jkunz 	(sc->sc_iee_reset)(sc);
    922       1.1     jkunz 	if (sc->sc_next_tbd != 0)
    923       1.8     perry 		printf("%s: iee_watchdog: transmit timeout %d\n",
    924       1.1     jkunz 		    sc->sc_dev.dv_xname, ++sc->sc_tx_timeout);
    925       1.1     jkunz 	else
    926       1.8     perry 		printf("%s: iee_watchdog: setup timeout %d\n",
    927       1.1     jkunz 		    sc->sc_dev.dv_xname, ++sc->sc_setup_timeout);
    928       1.1     jkunz 	iee_init(ifp);
    929       1.1     jkunz 	return;
    930       1.1     jkunz }
    931