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isp_netbsd.c revision 1.39.2.3
      1  1.39.2.3  nathanw /* $NetBSD: isp_netbsd.c,v 1.39.2.3 2001/08/24 00:09:27 nathanw Exp $ */
      2      1.30   mjacob /*
      3      1.30   mjacob  * This driver, which is contained in NetBSD in the files:
      4      1.30   mjacob  *
      5      1.30   mjacob  *	sys/dev/ic/isp.c
      6      1.34      wiz  *	sys/dev/ic/isp_inline.h
      7      1.34      wiz  *	sys/dev/ic/isp_netbsd.c
      8      1.34      wiz  *	sys/dev/ic/isp_netbsd.h
      9      1.34      wiz  *	sys/dev/ic/isp_target.c
     10      1.34      wiz  *	sys/dev/ic/isp_target.h
     11      1.34      wiz  *	sys/dev/ic/isp_tpublic.h
     12      1.34      wiz  *	sys/dev/ic/ispmbox.h
     13      1.34      wiz  *	sys/dev/ic/ispreg.h
     14      1.34      wiz  *	sys/dev/ic/ispvar.h
     15      1.30   mjacob  *	sys/microcode/isp/asm_sbus.h
     16      1.30   mjacob  *	sys/microcode/isp/asm_1040.h
     17      1.30   mjacob  *	sys/microcode/isp/asm_1080.h
     18      1.30   mjacob  *	sys/microcode/isp/asm_12160.h
     19      1.30   mjacob  *	sys/microcode/isp/asm_2100.h
     20      1.30   mjacob  *	sys/microcode/isp/asm_2200.h
     21      1.30   mjacob  *	sys/pci/isp_pci.c
     22      1.30   mjacob  *	sys/sbus/isp_sbus.c
     23      1.30   mjacob  *
     24      1.30   mjacob  * Is being actively maintained by Matthew Jacob (mjacob (at) netbsd.org).
     25      1.30   mjacob  * This driver also is shared source with FreeBSD, OpenBSD, Linux, Solaris,
     26      1.30   mjacob  * Linux versions. This tends to be an interesting maintenance problem.
     27      1.30   mjacob  *
     28      1.30   mjacob  * Please coordinate with Matthew Jacob on changes you wish to make here.
     29      1.30   mjacob  */
     30       1.1   mjacob /*
     31       1.1   mjacob  * Platform (NetBSD) dependent common attachment code for Qlogic adapters.
     32      1.15   mjacob  * Matthew Jacob <mjacob (at) nas.nasa.gov>
     33      1.15   mjacob  */
     34      1.15   mjacob /*
     35      1.15   mjacob  * Copyright (C) 1997, 1998, 1999 National Aeronautics & Space Administration
     36       1.1   mjacob  * All rights reserved.
     37       1.1   mjacob  *
     38       1.1   mjacob  * Redistribution and use in source and binary forms, with or without
     39       1.1   mjacob  * modification, are permitted provided that the following conditions
     40       1.1   mjacob  * are met:
     41       1.1   mjacob  * 1. Redistributions of source code must retain the above copyright
     42      1.15   mjacob  *    notice, this list of conditions and the following disclaimer.
     43       1.1   mjacob  * 2. Redistributions in binary form must reproduce the above copyright
     44       1.1   mjacob  *    notice, this list of conditions and the following disclaimer in the
     45       1.1   mjacob  *    documentation and/or other materials provided with the distribution.
     46       1.1   mjacob  * 3. The name of the author may not be used to endorse or promote products
     47      1.15   mjacob  *    derived from this software without specific prior written permission
     48       1.1   mjacob  *
     49      1.15   mjacob  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     50      1.15   mjacob  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     51      1.15   mjacob  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     52      1.15   mjacob  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     53      1.15   mjacob  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     54      1.15   mjacob  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     55      1.15   mjacob  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     56      1.15   mjacob  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     57      1.15   mjacob  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     58      1.15   mjacob  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     59       1.1   mjacob  */
     60       1.1   mjacob 
     61       1.1   mjacob #include <dev/ic/isp_netbsd.h>
     62      1.17   mjacob #include <sys/scsiio.h>
     63       1.1   mjacob 
     64      1.27   mjacob 
     65      1.27   mjacob /*
     66      1.27   mjacob  * Set a timeout for the watchdogging of a command.
     67      1.27   mjacob  *
     68      1.27   mjacob  * The dimensional analysis is
     69      1.27   mjacob  *
     70      1.27   mjacob  *	milliseconds * (seconds/millisecond) * (ticks/second) = ticks
     71      1.27   mjacob  *
     72      1.27   mjacob  *			=
     73      1.27   mjacob  *
     74      1.27   mjacob  *	(milliseconds / 1000) * hz = ticks
     75      1.27   mjacob  *
     76      1.27   mjacob  *
     77      1.27   mjacob  * For timeouts less than 1 second, we'll get zero. Because of this, and
     78      1.27   mjacob  * because we want to establish *our* timeout to be longer than what the
     79      1.27   mjacob  * firmware might do, we just add 3 seconds at the back end.
     80      1.27   mjacob  */
     81      1.27   mjacob #define	_XT(xs)	((((xs)->timeout/1000) * hz) + (3 * hz))
     82      1.26   mjacob 
     83  1.39.2.3  nathanw static void isp_config_interrupts(struct device *);
     84  1.39.2.2  nathanw static void ispminphys_1020(struct buf *);
     85  1.39.2.1  nathanw static void ispminphys(struct buf *);
     86  1.39.2.2  nathanw static INLINE void ispcmd(struct ispsoftc *, XS_T *);
     87  1.39.2.2  nathanw static void isprequest(struct scsipi_channel *, scsipi_adapter_req_t, void *);
     88  1.39.2.2  nathanw static int
     89  1.39.2.2  nathanw ispioctl(struct scsipi_channel *, u_long, caddr_t, int, struct proc *);
     90       1.1   mjacob 
     91  1.39.2.2  nathanw static void isp_polled_cmd(struct ispsoftc *, XS_T *);
     92  1.39.2.1  nathanw static void isp_dog(void *);
     93  1.39.2.2  nathanw static void isp_create_fc_worker(void *);
     94  1.39.2.2  nathanw static void isp_fc_worker(void *);
     95      1.10   mjacob 
     96       1.1   mjacob /*
     97       1.1   mjacob  * Complete attachment of hardware, include subdevices.
     98       1.1   mjacob  */
     99       1.1   mjacob void
    100  1.39.2.1  nathanw isp_attach(struct ispsoftc *isp)
    101       1.1   mjacob {
    102       1.1   mjacob 	isp->isp_state = ISP_RUNSTATE;
    103  1.39.2.2  nathanw 
    104  1.39.2.2  nathanw 	isp->isp_osinfo._adapter.adapt_dev = &isp->isp_osinfo._dev;
    105  1.39.2.2  nathanw 	isp->isp_osinfo._adapter.adapt_nchannels = IS_DUALBUS(isp) ? 2 : 1;
    106  1.39.2.2  nathanw 	isp->isp_osinfo._adapter.adapt_openings = isp->isp_maxcmds;
    107  1.39.2.2  nathanw 	/*
    108  1.39.2.2  nathanw 	 * It's not stated whether max_periph is limited by SPI
    109  1.39.2.2  nathanw 	 * tag uage, but let's assume that it is.
    110  1.39.2.2  nathanw 	 */
    111  1.39.2.2  nathanw 	isp->isp_osinfo._adapter.adapt_max_periph = min(isp->isp_maxcmds, 255);
    112  1.39.2.2  nathanw 	isp->isp_osinfo._adapter.adapt_ioctl = ispioctl;
    113  1.39.2.2  nathanw 	isp->isp_osinfo._adapter.adapt_request = isprequest;
    114  1.39.2.2  nathanw 	if (isp->isp_type <= ISP_HA_SCSI_1020A) {
    115  1.39.2.2  nathanw 		isp->isp_osinfo._adapter.adapt_minphys = ispminphys_1020;
    116  1.39.2.2  nathanw 	} else {
    117  1.39.2.2  nathanw 		isp->isp_osinfo._adapter.adapt_minphys = ispminphys;
    118  1.39.2.2  nathanw 	}
    119  1.39.2.2  nathanw 
    120  1.39.2.2  nathanw 	isp->isp_osinfo._chan.chan_adapter = &isp->isp_osinfo._adapter;
    121  1.39.2.2  nathanw 	isp->isp_osinfo._chan.chan_bustype = &scsi_bustype;
    122  1.39.2.2  nathanw 	isp->isp_osinfo._chan.chan_channel = 0;
    123  1.39.2.2  nathanw 
    124      1.28   mjacob 	/*
    125      1.28   mjacob 	 * Until the midlayer is fixed to use REPORT LUNS, limit to 8 luns.
    126      1.28   mjacob 	 */
    127  1.39.2.2  nathanw 	isp->isp_osinfo._chan.chan_nluns = min(isp->isp_maxluns, 8);
    128       1.1   mjacob 
    129      1.15   mjacob 	if (IS_FC(isp)) {
    130  1.39.2.2  nathanw 		isp->isp_osinfo._chan.chan_ntargets = MAX_FC_TARG;
    131  1.39.2.2  nathanw 		isp->isp_osinfo._chan.chan_id = MAX_FC_TARG;
    132  1.39.2.2  nathanw 		isp->isp_osinfo.threadwork = 1;
    133  1.39.2.2  nathanw 		/*
    134  1.39.2.2  nathanw 		 * Note that isp_create_fc_worker won't get called
    135  1.39.2.2  nathanw 		 * until much much later (after proc0 is created).
    136  1.39.2.2  nathanw 		 */
    137  1.39.2.2  nathanw 		kthread_create(isp_create_fc_worker, isp);
    138       1.1   mjacob 	} else {
    139  1.39.2.2  nathanw 		int bus = 0;
    140      1.14   mjacob 		sdparam *sdp = isp->isp_param;
    141  1.39.2.2  nathanw 
    142  1.39.2.2  nathanw 		isp->isp_osinfo._chan.chan_ntargets = MAX_TARGETS;
    143  1.39.2.2  nathanw 		isp->isp_osinfo._chan.chan_id = sdp->isp_initiator_id;
    144      1.17   mjacob 		isp->isp_osinfo.discovered[0] = 1 << sdp->isp_initiator_id;
    145      1.21   mjacob 		if (IS_DUALBUS(isp)) {
    146  1.39.2.2  nathanw 			isp->isp_osinfo._chan_b = isp->isp_osinfo._chan;
    147      1.14   mjacob 			sdp++;
    148      1.18   mjacob 			isp->isp_osinfo.discovered[1] =
    149      1.18   mjacob 			    1 << sdp->isp_initiator_id;
    150  1.39.2.2  nathanw 			isp->isp_osinfo._chan_b.chan_id = sdp->isp_initiator_id;
    151  1.39.2.2  nathanw 			isp->isp_osinfo._chan_b.chan_channel = 1;
    152      1.14   mjacob 		}
    153      1.28   mjacob 		ISP_LOCK(isp);
    154      1.14   mjacob 		(void) isp_control(isp, ISPCTL_RESET_BUS, &bus);
    155      1.21   mjacob 		if (IS_DUALBUS(isp)) {
    156      1.14   mjacob 			bus++;
    157      1.14   mjacob 			(void) isp_control(isp, ISPCTL_RESET_BUS, &bus);
    158      1.14   mjacob 		}
    159      1.29   mjacob 		ISP_UNLOCK(isp);
    160      1.11   mjacob 	}
    161      1.10   mjacob 
    162  1.39.2.3  nathanw 
    163      1.10   mjacob 	/*
    164  1.39.2.3  nathanw          * Defer enabling mailbox interrupts until later.
    165  1.39.2.3  nathanw          */
    166  1.39.2.3  nathanw         config_interrupts((struct device *) isp, isp_config_interrupts);
    167      1.28   mjacob 
    168      1.28   mjacob 	/*
    169       1.8   mjacob 	 * And attach children (if any).
    170       1.8   mjacob 	 */
    171  1.39.2.2  nathanw 	config_found((void *)isp, &isp->isp_chanA, scsiprint);
    172      1.21   mjacob 	if (IS_DUALBUS(isp)) {
    173  1.39.2.2  nathanw 		config_found((void *)isp, &isp->isp_chanB, scsiprint);
    174      1.14   mjacob 	}
    175       1.1   mjacob }
    176       1.1   mjacob 
    177  1.39.2.3  nathanw 
    178  1.39.2.3  nathanw static void
    179  1.39.2.3  nathanw isp_config_interrupts(struct device *self)
    180  1.39.2.3  nathanw {
    181  1.39.2.3  nathanw         struct ispsoftc *isp = (struct ispsoftc *) self;
    182  1.39.2.3  nathanw 
    183  1.39.2.3  nathanw 	/*
    184  1.39.2.3  nathanw 	 * After this point, we'll be doing the new configuration
    185  1.39.2.3  nathanw 	 * schema which allows interrups, so we can do tsleep/wakeup
    186  1.39.2.3  nathanw 	 * for mailbox stuff at that point.
    187  1.39.2.3  nathanw 	 */
    188  1.39.2.3  nathanw 	isp->isp_osinfo.no_mbox_ints = 0;
    189  1.39.2.3  nathanw }
    190  1.39.2.3  nathanw 
    191  1.39.2.3  nathanw 
    192       1.1   mjacob /*
    193       1.1   mjacob  * minphys our xfers
    194       1.1   mjacob  */
    195       1.1   mjacob 
    196       1.1   mjacob static void
    197  1.39.2.2  nathanw ispminphys_1020(struct buf *bp)
    198       1.1   mjacob {
    199       1.1   mjacob 	if (bp->b_bcount >= (1 << 24)) {
    200       1.1   mjacob 		bp->b_bcount = (1 << 24);
    201       1.1   mjacob 	}
    202       1.1   mjacob 	minphys(bp);
    203       1.1   mjacob }
    204       1.1   mjacob 
    205  1.39.2.2  nathanw static void
    206  1.39.2.2  nathanw ispminphys(struct buf *bp)
    207  1.39.2.2  nathanw {
    208  1.39.2.2  nathanw 	if (bp->b_bcount >= (1 << 30)) {
    209  1.39.2.2  nathanw 		bp->b_bcount = (1 << 30);
    210  1.39.2.2  nathanw 	}
    211  1.39.2.2  nathanw 	minphys(bp);
    212  1.39.2.2  nathanw }
    213  1.39.2.2  nathanw 
    214      1.17   mjacob static int
    215  1.39.2.2  nathanw ispioctl(struct scsipi_channel *chan, u_long cmd, caddr_t addr, int flag,
    216  1.39.2.2  nathanw 	struct proc *p)
    217      1.17   mjacob {
    218  1.39.2.2  nathanw 	struct ispsoftc *isp = (void *)chan->chan_adapter->adapt_dev;
    219  1.39.2.2  nathanw 	int retval = ENOTTY;
    220      1.17   mjacob 
    221      1.17   mjacob 	switch (cmd) {
    222  1.39.2.2  nathanw 	case SCBUSIORESET:
    223  1.39.2.2  nathanw 		ISP_LOCK(isp);
    224  1.39.2.2  nathanw 		if (isp_control(isp, ISPCTL_RESET_BUS, &chan->chan_channel))
    225  1.39.2.2  nathanw 			retval = EIO;
    226  1.39.2.2  nathanw 		else
    227  1.39.2.2  nathanw 			retval = 0;
    228  1.39.2.2  nathanw 		ISP_UNLOCK(isp);
    229  1.39.2.2  nathanw 		break;
    230  1.39.2.2  nathanw 	case ISP_SDBLEV:
    231      1.29   mjacob 	{
    232  1.39.2.2  nathanw 		int olddblev = isp->isp_dblev;
    233  1.39.2.2  nathanw 		isp->isp_dblev = *(int *)addr;
    234  1.39.2.2  nathanw 		*(int *)addr = olddblev;
    235      1.29   mjacob 		retval = 0;
    236      1.29   mjacob 		break;
    237      1.29   mjacob 	}
    238  1.39.2.2  nathanw 	case ISP_RESETHBA:
    239  1.39.2.2  nathanw 		ISP_LOCK(isp);
    240  1.39.2.2  nathanw 		isp_reinit(isp);
    241  1.39.2.2  nathanw 		ISP_UNLOCK(isp);
    242  1.39.2.2  nathanw 		retval = 0;
    243  1.39.2.2  nathanw 		break;
    244  1.39.2.2  nathanw 	case ISP_FC_RESCAN:
    245  1.39.2.2  nathanw 		if (IS_FC(isp)) {
    246  1.39.2.2  nathanw 			ISP_LOCK(isp);
    247  1.39.2.2  nathanw 			if (isp_fc_runstate(isp, 5 * 1000000)) {
    248  1.39.2.2  nathanw 				retval = EIO;
    249  1.39.2.2  nathanw 			} else {
    250  1.39.2.2  nathanw 				retval = 0;
    251  1.39.2.2  nathanw 			}
    252  1.39.2.2  nathanw 			ISP_UNLOCK(isp);
    253  1.39.2.2  nathanw 		}
    254  1.39.2.2  nathanw 		break;
    255  1.39.2.2  nathanw 	case ISP_FC_LIP:
    256  1.39.2.2  nathanw 		if (IS_FC(isp)) {
    257  1.39.2.2  nathanw 			ISP_LOCK(isp);
    258  1.39.2.2  nathanw 			if (isp_control(isp, ISPCTL_SEND_LIP, 0)) {
    259  1.39.2.2  nathanw 				retval = EIO;
    260  1.39.2.2  nathanw 			} else {
    261  1.39.2.2  nathanw 				retval = 0;
    262  1.39.2.2  nathanw 			}
    263  1.39.2.2  nathanw 			ISP_UNLOCK(isp);
    264  1.39.2.2  nathanw 		}
    265  1.39.2.2  nathanw 		break;
    266  1.39.2.2  nathanw 	case ISP_FC_GETDINFO:
    267  1.39.2.2  nathanw 	{
    268  1.39.2.2  nathanw 		struct isp_fc_device *ifc = (struct isp_fc_device *) addr;
    269  1.39.2.2  nathanw 		struct lportdb *lp;
    270  1.39.2.2  nathanw 
    271  1.39.2.2  nathanw 		if (ifc->loopid < 0 || ifc->loopid >= MAX_FC_TARG) {
    272  1.39.2.2  nathanw 			retval = EINVAL;
    273  1.39.2.2  nathanw 			break;
    274  1.39.2.2  nathanw 		}
    275  1.39.2.2  nathanw 		ISP_LOCK(isp);
    276  1.39.2.2  nathanw 		lp = &FCPARAM(isp)->portdb[ifc->loopid];
    277  1.39.2.2  nathanw 		if (lp->valid) {
    278  1.39.2.2  nathanw 			ifc->loopid = lp->loopid;
    279  1.39.2.2  nathanw 			ifc->portid = lp->portid;
    280  1.39.2.2  nathanw 			ifc->node_wwn = lp->node_wwn;
    281  1.39.2.2  nathanw 			ifc->port_wwn = lp->port_wwn;
    282      1.17   mjacob 			retval = 0;
    283  1.39.2.2  nathanw 		} else {
    284  1.39.2.2  nathanw 			retval = ENODEV;
    285  1.39.2.2  nathanw 		}
    286  1.39.2.2  nathanw 		ISP_UNLOCK(isp);
    287      1.17   mjacob 		break;
    288  1.39.2.2  nathanw 	}
    289      1.17   mjacob 	default:
    290      1.17   mjacob 		break;
    291       1.3   mjacob 	}
    292      1.17   mjacob 	return (retval);
    293      1.17   mjacob }
    294      1.17   mjacob 
    295  1.39.2.2  nathanw static INLINE void
    296  1.39.2.2  nathanw ispcmd(struct ispsoftc *isp, XS_T *xs)
    297      1.17   mjacob {
    298  1.39.2.2  nathanw 	ISP_LOCK(isp);
    299      1.11   mjacob 	if (isp->isp_state < ISP_RUNSTATE) {
    300      1.11   mjacob 		DISABLE_INTS(isp);
    301      1.11   mjacob 		isp_init(isp);
    302  1.39.2.2  nathanw 		if (isp->isp_state != ISP_INITSTATE) {
    303      1.11   mjacob 			ENABLE_INTS(isp);
    304  1.39.2.2  nathanw 			ISP_UNLOCK(isp);
    305  1.39.2.2  nathanw 			XS_SETERR(xs, HBA_BOTCH);
    306  1.39.2.2  nathanw 			scsipi_done(xs);
    307  1.39.2.2  nathanw 			return;
    308  1.39.2.2  nathanw 		}
    309  1.39.2.2  nathanw 		isp->isp_state = ISP_RUNSTATE;
    310      1.11   mjacob 		ENABLE_INTS(isp);
    311  1.39.2.2  nathanw 	}
    312      1.10   mjacob 	/*
    313  1.39.2.2  nathanw 	 * Handle the case of a FC card where the FC thread hasn't
    314  1.39.2.2  nathanw 	 * fired up yet and we have loop state to clean up. If we
    315  1.39.2.2  nathanw 	 * can't clear things up and we've never seen loop up, bounce
    316  1.39.2.2  nathanw 	 * the command.
    317      1.10   mjacob 	 */
    318  1.39.2.2  nathanw 	if (IS_FC(isp) && isp->isp_osinfo.threadwork &&
    319  1.39.2.2  nathanw 	    isp->isp_osinfo.thread == 0) {
    320  1.39.2.2  nathanw 		volatile u_int8_t ombi = isp->isp_osinfo.no_mbox_ints;
    321  1.39.2.2  nathanw 		int delay_time;
    322  1.39.2.2  nathanw 
    323      1.16  thorpej 		if (xs->xs_control & XS_CTL_POLL) {
    324  1.39.2.2  nathanw 			isp->isp_osinfo.no_mbox_ints = 1;
    325      1.10   mjacob 		}
    326  1.39.2.2  nathanw 
    327  1.39.2.2  nathanw 		if (isp->isp_osinfo.loop_checked == 0) {
    328  1.39.2.2  nathanw 			delay_time = 10 * 1000000;
    329  1.39.2.2  nathanw 			isp->isp_osinfo.loop_checked = 1;
    330  1.39.2.2  nathanw 		} else {
    331  1.39.2.2  nathanw 			delay_time = 250000;
    332  1.39.2.2  nathanw 		}
    333  1.39.2.2  nathanw 
    334  1.39.2.2  nathanw 		if (isp_fc_runstate(isp, delay_time) != 0) {
    335  1.39.2.2  nathanw 			if (xs->xs_control & XS_CTL_POLL) {
    336  1.39.2.2  nathanw 				isp->isp_osinfo.no_mbox_ints = ombi;
    337  1.39.2.2  nathanw 			}
    338  1.39.2.2  nathanw 			if (FCPARAM(isp)->loop_seen_once == 0) {
    339  1.39.2.2  nathanw 				XS_SETERR(xs, HBA_SELTIMEOUT);
    340  1.39.2.2  nathanw 				scsipi_done(xs);
    341  1.39.2.2  nathanw 				ISP_UNLOCK(isp);
    342  1.39.2.2  nathanw 				return;
    343  1.39.2.2  nathanw 			}
    344  1.39.2.2  nathanw 			/*
    345  1.39.2.2  nathanw 			 * Otherwise, fall thru to be queued up for later.
    346  1.39.2.2  nathanw 			 */
    347  1.39.2.2  nathanw 		} else {
    348  1.39.2.2  nathanw 			int wasblocked =
    349  1.39.2.2  nathanw 			    (isp->isp_osinfo.blocked || isp->isp_osinfo.paused);
    350  1.39.2.2  nathanw 			isp->isp_osinfo.threadwork = 0;
    351  1.39.2.2  nathanw 			isp->isp_osinfo.blocked =
    352  1.39.2.2  nathanw 			    isp->isp_osinfo.paused = 0;
    353  1.39.2.2  nathanw 			if (wasblocked) {
    354  1.39.2.2  nathanw 				scsipi_channel_thaw(&isp->isp_chanA, 1);
    355  1.39.2.2  nathanw 			}
    356  1.39.2.2  nathanw 		}
    357  1.39.2.2  nathanw 		if (xs->xs_control & XS_CTL_POLL) {
    358  1.39.2.2  nathanw 			isp->isp_osinfo.no_mbox_ints = ombi;
    359  1.39.2.2  nathanw 		}
    360  1.39.2.2  nathanw 	}
    361  1.39.2.2  nathanw 
    362  1.39.2.2  nathanw 	if (isp->isp_osinfo.paused) {
    363  1.39.2.2  nathanw 		isp_prt(isp, ISP_LOGWARN, "I/O while paused");
    364  1.39.2.2  nathanw 		xs->error = XS_RESOURCE_SHORTAGE;
    365  1.39.2.2  nathanw 		scsipi_done(xs);
    366  1.39.2.2  nathanw 		ISP_UNLOCK(isp);
    367  1.39.2.2  nathanw 		return;
    368  1.39.2.2  nathanw 	}
    369  1.39.2.2  nathanw 	if (isp->isp_osinfo.blocked) {
    370  1.39.2.2  nathanw 		isp_prt(isp, ISP_LOGWARN, "I/O while blocked");
    371  1.39.2.2  nathanw 		xs->error = XS_REQUEUE;
    372  1.39.2.2  nathanw 		scsipi_done(xs);
    373  1.39.2.2  nathanw 		ISP_UNLOCK(isp);
    374  1.39.2.2  nathanw 		return;
    375      1.10   mjacob 	}
    376      1.17   mjacob 
    377      1.26   mjacob 	if (xs->xs_control & XS_CTL_POLL) {
    378      1.28   mjacob 		volatile u_int8_t ombi = isp->isp_osinfo.no_mbox_ints;
    379      1.28   mjacob 		isp->isp_osinfo.no_mbox_ints = 1;
    380  1.39.2.2  nathanw 		isp_polled_cmd(isp, xs);
    381      1.28   mjacob 		isp->isp_osinfo.no_mbox_ints = ombi;
    382  1.39.2.2  nathanw 		ISP_UNLOCK(isp);
    383  1.39.2.2  nathanw 		return;
    384       1.1   mjacob 	}
    385       1.1   mjacob 
    386  1.39.2.2  nathanw 	switch (isp_start(xs)) {
    387      1.26   mjacob 	case CMD_QUEUED:
    388      1.26   mjacob 		if (xs->timeout) {
    389      1.26   mjacob 			callout_reset(&xs->xs_callout, _XT(xs), isp_dog, xs);
    390      1.26   mjacob 		}
    391      1.26   mjacob 		break;
    392      1.26   mjacob 	case CMD_EAGAIN:
    393  1.39.2.2  nathanw 		isp->isp_osinfo.paused = 1;
    394  1.39.2.2  nathanw 		xs->error = XS_RESOURCE_SHORTAGE;
    395  1.39.2.2  nathanw 		scsipi_channel_freeze(&isp->isp_chanA, 1);
    396  1.39.2.2  nathanw 		if (IS_DUALBUS(isp)) {
    397  1.39.2.2  nathanw 			scsipi_channel_freeze(&isp->isp_chanB, 1);
    398  1.39.2.2  nathanw 		}
    399  1.39.2.2  nathanw 		scsipi_done(xs);
    400      1.26   mjacob 		break;
    401      1.26   mjacob 	case CMD_RQLATER:
    402  1.39.2.2  nathanw 		/*
    403  1.39.2.2  nathanw 		 * We can only get RQLATER from FC devices (1 channel only)
    404  1.39.2.2  nathanw 		 *
    405  1.39.2.2  nathanw 		 * Also, if we've never seen loop up, bounce the command
    406  1.39.2.2  nathanw 		 * (somebody has booted with no FC cable connected)
    407  1.39.2.2  nathanw 		 */
    408  1.39.2.2  nathanw 		if (FCPARAM(isp)->loop_seen_once == 0) {
    409  1.39.2.2  nathanw 			XS_SETERR(xs, HBA_SELTIMEOUT);
    410  1.39.2.2  nathanw 			scsipi_done(xs);
    411  1.39.2.2  nathanw 			break;
    412  1.39.2.2  nathanw 		}
    413  1.39.2.2  nathanw 		if (isp->isp_osinfo.blocked == 0) {
    414  1.39.2.2  nathanw 			isp->isp_osinfo.blocked = 1;
    415  1.39.2.2  nathanw 			scsipi_channel_freeze(&isp->isp_chanA, 1);
    416  1.39.2.2  nathanw 		}
    417  1.39.2.2  nathanw 		xs->error = XS_REQUEUE;
    418  1.39.2.2  nathanw 		scsipi_done(xs);
    419      1.26   mjacob 		break;
    420      1.26   mjacob 	case CMD_COMPLETE:
    421  1.39.2.2  nathanw 		scsipi_done(xs);
    422      1.26   mjacob 		break;
    423      1.26   mjacob 	}
    424  1.39.2.2  nathanw 	ISP_UNLOCK(isp);
    425      1.26   mjacob }
    426      1.26   mjacob 
    427  1.39.2.2  nathanw static void
    428  1.39.2.2  nathanw isprequest(struct scsipi_channel *chan, scsipi_adapter_req_t req, void *arg)
    429  1.39.2.2  nathanw {
    430  1.39.2.2  nathanw 	struct ispsoftc *isp = (void *)chan->chan_adapter->adapt_dev;
    431  1.39.2.2  nathanw 
    432  1.39.2.2  nathanw 	switch (req) {
    433  1.39.2.2  nathanw 	case ADAPTER_REQ_RUN_XFER:
    434  1.39.2.2  nathanw 		ispcmd(isp, (XS_T *) arg);
    435  1.39.2.2  nathanw 		break;
    436  1.39.2.2  nathanw 
    437  1.39.2.2  nathanw 	case ADAPTER_REQ_GROW_RESOURCES:
    438  1.39.2.2  nathanw 		/* Not supported. */
    439  1.39.2.2  nathanw 		break;
    440  1.39.2.2  nathanw 
    441  1.39.2.2  nathanw 	case ADAPTER_REQ_SET_XFER_MODE:
    442  1.39.2.2  nathanw 	if (IS_SCSI(isp)) {
    443  1.39.2.2  nathanw 		struct scsipi_xfer_mode *xm = arg;
    444  1.39.2.2  nathanw 		int dflags = 0;
    445  1.39.2.2  nathanw 		sdparam *sdp = SDPARAM(isp);
    446  1.39.2.2  nathanw 
    447  1.39.2.2  nathanw 		sdp += chan->chan_channel;
    448  1.39.2.2  nathanw 		if (xm->xm_mode & PERIPH_CAP_TQING)
    449  1.39.2.2  nathanw 			dflags |= DPARM_TQING;
    450  1.39.2.2  nathanw 		if (xm->xm_mode & PERIPH_CAP_WIDE16)
    451  1.39.2.2  nathanw 			dflags |= DPARM_WIDE;
    452  1.39.2.2  nathanw 		if (xm->xm_mode & PERIPH_CAP_SYNC)
    453  1.39.2.2  nathanw 			dflags |= DPARM_SYNC;
    454  1.39.2.2  nathanw 		ISP_LOCK(isp);
    455  1.39.2.2  nathanw 		sdp->isp_devparam[xm->xm_target].dev_flags |= dflags;
    456  1.39.2.2  nathanw 		dflags = sdp->isp_devparam[xm->xm_target].dev_flags;
    457  1.39.2.2  nathanw 		sdp->isp_devparam[xm->xm_target].dev_update = 1;
    458  1.39.2.2  nathanw 		isp->isp_update |= (1 << chan->chan_channel);
    459  1.39.2.2  nathanw 		ISP_UNLOCK(isp);
    460  1.39.2.2  nathanw 		isp_prt(isp, ISP_LOGDEBUG1,
    461  1.39.2.2  nathanw 		    "ispioctl: device flags 0x%x for %d.%d.X",
    462  1.39.2.2  nathanw 		    dflags, chan->chan_channel, xm->xm_target);
    463  1.39.2.2  nathanw 		break;
    464  1.39.2.2  nathanw 	}
    465  1.39.2.2  nathanw 	default:
    466  1.39.2.2  nathanw 		break;
    467  1.39.2.2  nathanw 	}
    468  1.39.2.2  nathanw }
    469  1.39.2.2  nathanw 
    470  1.39.2.2  nathanw static void
    471  1.39.2.1  nathanw isp_polled_cmd(struct ispsoftc *isp, XS_T *xs)
    472      1.26   mjacob {
    473      1.26   mjacob 	int result;
    474      1.26   mjacob 	int infinite = 0, mswait;
    475      1.26   mjacob 
    476      1.28   mjacob 	result = isp_start(xs);
    477      1.26   mjacob 
    478      1.17   mjacob 	switch (result) {
    479      1.17   mjacob 	case CMD_QUEUED:
    480      1.17   mjacob 		break;
    481      1.17   mjacob 	case CMD_RQLATER:
    482  1.39.2.2  nathanw 		if (XS_NOERR(xs)) {
    483  1.39.2.2  nathanw 			xs->error = XS_REQUEUE;
    484  1.39.2.2  nathanw 		}
    485      1.17   mjacob 	case CMD_EAGAIN:
    486      1.17   mjacob 		if (XS_NOERR(xs)) {
    487  1.39.2.2  nathanw 			xs->error = XS_RESOURCE_SHORTAGE;
    488      1.17   mjacob 		}
    489  1.39.2.2  nathanw 		/* FALLTHROUGH */
    490      1.17   mjacob 	case CMD_COMPLETE:
    491  1.39.2.2  nathanw 		scsipi_done(xs);
    492  1.39.2.2  nathanw 		return;
    493      1.17   mjacob 
    494      1.17   mjacob 	}
    495      1.26   mjacob 
    496       1.1   mjacob 	/*
    497       1.1   mjacob 	 * If we can't use interrupts, poll on completion.
    498       1.1   mjacob 	 */
    499      1.26   mjacob 	if ((mswait = XS_TIME(xs)) == 0)
    500      1.26   mjacob 		infinite = 1;
    501      1.26   mjacob 
    502      1.26   mjacob 	while (mswait || infinite) {
    503      1.26   mjacob 		if (isp_intr((void *)isp)) {
    504      1.26   mjacob 			if (XS_CMD_DONE_P(xs)) {
    505      1.26   mjacob 				break;
    506       1.1   mjacob 			}
    507       1.1   mjacob 		}
    508      1.28   mjacob 		USEC_DELAY(1000);
    509      1.26   mjacob 		mswait -= 1;
    510      1.26   mjacob 	}
    511      1.26   mjacob 
    512      1.26   mjacob 	/*
    513      1.26   mjacob 	 * If no other error occurred but we didn't finish,
    514      1.26   mjacob 	 * something bad happened.
    515      1.26   mjacob 	 */
    516      1.26   mjacob 	if (XS_CMD_DONE_P(xs) == 0) {
    517      1.26   mjacob 		if (isp_control(isp, ISPCTL_ABORT_CMD, xs)) {
    518      1.28   mjacob 			isp_reinit(isp);
    519      1.26   mjacob 		}
    520      1.26   mjacob 		if (XS_NOERR(xs)) {
    521      1.26   mjacob 			XS_SETERR(xs, HBA_BOTCH);
    522      1.26   mjacob 		}
    523       1.1   mjacob 	}
    524  1.39.2.2  nathanw 	scsipi_done(xs);
    525       1.1   mjacob }
    526       1.1   mjacob 
    527      1.26   mjacob void
    528  1.39.2.1  nathanw isp_done(XS_T *xs)
    529       1.1   mjacob {
    530      1.26   mjacob 	XS_CMD_S_DONE(xs);
    531      1.26   mjacob 	if (XS_CMD_WDOG_P(xs) == 0) {
    532      1.26   mjacob 		struct ispsoftc *isp = XS_ISP(xs);
    533      1.26   mjacob 		callout_stop(&xs->xs_callout);
    534      1.26   mjacob 		if (XS_CMD_GRACE_P(xs)) {
    535      1.28   mjacob 			isp_prt(isp, ISP_LOGDEBUG1,
    536      1.28   mjacob 			    "finished command on borrowed time");
    537       1.1   mjacob 		}
    538      1.26   mjacob 		XS_CMD_S_CLEAR(xs);
    539  1.39.2.2  nathanw 		/*
    540  1.39.2.2  nathanw 		 * Fixup- if we get a QFULL, we need
    541  1.39.2.2  nathanw 		 * to set XS_BUSY as the error.
    542  1.39.2.2  nathanw 		 */
    543  1.39.2.2  nathanw 		if (xs->status == SCSI_QUEUE_FULL) {
    544  1.39.2.2  nathanw 			xs->error = XS_BUSY;
    545  1.39.2.2  nathanw 		}
    546  1.39.2.2  nathanw 		if (isp->isp_osinfo.paused) {
    547  1.39.2.2  nathanw 			isp->isp_osinfo.paused = 0;
    548  1.39.2.2  nathanw 			scsipi_channel_timed_thaw(&isp->isp_chanA);
    549  1.39.2.2  nathanw 			if (IS_DUALBUS(isp)) {
    550  1.39.2.2  nathanw 				scsipi_channel_timed_thaw(&isp->isp_chanB);
    551  1.39.2.2  nathanw 			}
    552  1.39.2.2  nathanw 		}
    553      1.26   mjacob 		scsipi_done(xs);
    554       1.1   mjacob 	}
    555       1.8   mjacob }
    556       1.8   mjacob 
    557       1.8   mjacob static void
    558  1.39.2.1  nathanw isp_dog(void *arg)
    559       1.8   mjacob {
    560      1.28   mjacob 	XS_T *xs = arg;
    561      1.26   mjacob 	struct ispsoftc *isp = XS_ISP(xs);
    562  1.39.2.1  nathanw 	u_int16_t handle;
    563       1.8   mjacob 
    564      1.30   mjacob 	ISP_ILOCK(isp);
    565       1.8   mjacob 	/*
    566      1.26   mjacob 	 * We've decided this command is dead. Make sure we're not trying
    567      1.26   mjacob 	 * to kill a command that's already dead by getting it's handle and
    568      1.26   mjacob 	 * and seeing whether it's still alive.
    569      1.26   mjacob 	 */
    570      1.26   mjacob 	handle = isp_find_handle(isp, xs);
    571      1.26   mjacob 	if (handle) {
    572      1.26   mjacob 		u_int16_t r, r1, i;
    573      1.26   mjacob 
    574      1.26   mjacob 		if (XS_CMD_DONE_P(xs)) {
    575      1.28   mjacob 			isp_prt(isp, ISP_LOGDEBUG1,
    576      1.28   mjacob 			    "watchdog found done cmd (handle 0x%x)", handle);
    577      1.30   mjacob 			ISP_IUNLOCK(isp);
    578      1.26   mjacob 			return;
    579      1.26   mjacob 		}
    580      1.26   mjacob 
    581      1.26   mjacob 		if (XS_CMD_WDOG_P(xs)) {
    582      1.28   mjacob 			isp_prt(isp, ISP_LOGDEBUG1,
    583      1.28   mjacob 			    "recursive watchdog (handle 0x%x)", handle);
    584      1.30   mjacob 			ISP_IUNLOCK(isp);
    585      1.26   mjacob 			return;
    586      1.26   mjacob 		}
    587      1.26   mjacob 
    588      1.26   mjacob 		XS_CMD_S_WDOG(xs);
    589      1.26   mjacob 
    590      1.26   mjacob 		i = 0;
    591      1.26   mjacob 		do {
    592      1.26   mjacob 			r = ISP_READ(isp, BIU_ISR);
    593      1.28   mjacob 			USEC_DELAY(1);
    594      1.26   mjacob 			r1 = ISP_READ(isp, BIU_ISR);
    595      1.26   mjacob 		} while (r != r1 && ++i < 1000);
    596      1.26   mjacob 
    597      1.26   mjacob 		if (INT_PENDING(isp, r) && isp_intr(isp) && XS_CMD_DONE_P(xs)) {
    598      1.28   mjacob 			isp_prt(isp, ISP_LOGDEBUG1, "watchdog cleanup (%x, %x)",
    599      1.28   mjacob 			    handle, r);
    600      1.26   mjacob 			XS_CMD_C_WDOG(xs);
    601      1.26   mjacob 			isp_done(xs);
    602      1.26   mjacob 		} else if (XS_CMD_GRACE_P(xs)) {
    603      1.28   mjacob 			isp_prt(isp, ISP_LOGDEBUG1, "watchdog timeout (%x, %x)",
    604      1.28   mjacob 			    handle, r);
    605      1.26   mjacob 			/*
    606      1.26   mjacob 			 * Make sure the command is *really* dead before we
    607      1.26   mjacob 			 * release the handle (and DMA resources) for reuse.
    608      1.26   mjacob 			 */
    609      1.26   mjacob 			(void) isp_control(isp, ISPCTL_ABORT_CMD, arg);
    610      1.26   mjacob 
    611      1.26   mjacob 			/*
    612      1.26   mjacob 			 * After this point, the comamnd is really dead.
    613      1.26   mjacob 			 */
    614      1.26   mjacob 			if (XS_XFRLEN(xs)) {
    615      1.26   mjacob 				ISP_DMAFREE(isp, xs, handle);
    616      1.26   mjacob 			}
    617      1.26   mjacob 			isp_destroy_handle(isp, handle);
    618      1.26   mjacob 			XS_SETERR(xs, XS_TIMEOUT);
    619      1.26   mjacob 			XS_CMD_S_CLEAR(xs);
    620      1.26   mjacob 			isp_done(xs);
    621      1.26   mjacob 		} else {
    622      1.26   mjacob 			u_int16_t iptr, optr;
    623      1.26   mjacob 			ispreq_t *mp;
    624      1.28   mjacob 			isp_prt(isp, ISP_LOGDEBUG2,
    625      1.28   mjacob 			    "possible command timeout (%x, %x)", handle, r);
    626      1.26   mjacob 			XS_CMD_C_WDOG(xs);
    627      1.26   mjacob 			callout_reset(&xs->xs_callout, hz, isp_dog, xs);
    628      1.26   mjacob 			if (isp_getrqentry(isp, &iptr, &optr, (void **) &mp)) {
    629      1.33   mjacob 				ISP_UNLOCK(isp);
    630      1.26   mjacob 				return;
    631      1.26   mjacob 			}
    632      1.26   mjacob 			XS_CMD_S_GRACE(xs);
    633      1.26   mjacob 			MEMZERO((void *) mp, sizeof (*mp));
    634      1.26   mjacob 			mp->req_header.rqs_entry_count = 1;
    635      1.26   mjacob 			mp->req_header.rqs_entry_type = RQSTYPE_MARKER;
    636      1.26   mjacob 			mp->req_modifier = SYNC_ALL;
    637      1.26   mjacob 			mp->req_target = XS_CHANNEL(xs) << 7;
    638      1.26   mjacob 			ISP_SWIZZLE_REQUEST(isp, mp);
    639      1.26   mjacob 			ISP_ADD_REQUEST(isp, iptr);
    640       1.8   mjacob 		}
    641      1.30   mjacob 	} else {
    642      1.30   mjacob 		isp_prt(isp, ISP_LOGDEBUG0, "watchdog with no command");
    643       1.8   mjacob 	}
    644      1.30   mjacob 	ISP_IUNLOCK(isp);
    645       1.8   mjacob }
    646       1.8   mjacob 
    647       1.8   mjacob /*
    648  1.39.2.2  nathanw  * Fibre Channel state cleanup thread
    649  1.39.2.2  nathanw  */
    650  1.39.2.2  nathanw static void
    651  1.39.2.2  nathanw isp_create_fc_worker(void *arg)
    652  1.39.2.2  nathanw {
    653  1.39.2.2  nathanw 	struct ispsoftc *isp = arg;
    654  1.39.2.2  nathanw 
    655  1.39.2.2  nathanw 	if (kthread_create1(isp_fc_worker, isp, &isp->isp_osinfo.thread,
    656  1.39.2.2  nathanw 	    "%s:fc_thrd", isp->isp_name)) {
    657  1.39.2.2  nathanw 		isp_prt(isp, ISP_LOGERR, "unable to create FC worker thread");
    658  1.39.2.2  nathanw 		panic("isp_create_fc_worker");
    659  1.39.2.2  nathanw 	}
    660  1.39.2.2  nathanw 
    661  1.39.2.2  nathanw }
    662  1.39.2.2  nathanw 
    663  1.39.2.2  nathanw static void
    664  1.39.2.2  nathanw isp_fc_worker(void *arg)
    665  1.39.2.2  nathanw {
    666  1.39.2.2  nathanw 	void scsipi_run_queue(struct scsipi_channel *);
    667  1.39.2.2  nathanw 	struct ispsoftc *isp = arg;
    668  1.39.2.2  nathanw 
    669  1.39.2.2  nathanw 	for (;;) {
    670  1.39.2.2  nathanw 		int s;
    671  1.39.2.2  nathanw 
    672  1.39.2.2  nathanw 		/*
    673  1.39.2.2  nathanw 		 * Note we do *not* use the ISP_LOCK/ISP_UNLOCK macros here.
    674  1.39.2.2  nathanw 		 */
    675  1.39.2.2  nathanw 		s = splbio();
    676  1.39.2.2  nathanw 		while (isp->isp_osinfo.threadwork) {
    677  1.39.2.2  nathanw 			isp->isp_osinfo.threadwork = 0;
    678  1.39.2.2  nathanw 			if (isp_fc_runstate(isp, 10 * 1000000) == 0) {
    679  1.39.2.2  nathanw 				break;
    680  1.39.2.2  nathanw 			}
    681  1.39.2.2  nathanw 			isp->isp_osinfo.threadwork = 1;
    682  1.39.2.2  nathanw 			splx(s);
    683  1.39.2.2  nathanw 			delay(500 * 1000);
    684  1.39.2.2  nathanw 			s = splbio();
    685  1.39.2.2  nathanw 		}
    686  1.39.2.2  nathanw 		if (FCPARAM(isp)->isp_fwstate != FW_READY ||
    687  1.39.2.2  nathanw 		    FCPARAM(isp)->isp_loopstate != LOOP_READY) {
    688  1.39.2.2  nathanw 			isp_prt(isp, ISP_LOGINFO, "isp_fc_runstate in vain");
    689  1.39.2.2  nathanw 			isp->isp_osinfo.threadwork = 1;
    690  1.39.2.2  nathanw 			splx(s);
    691  1.39.2.2  nathanw 			continue;
    692  1.39.2.2  nathanw 		}
    693  1.39.2.2  nathanw 
    694  1.39.2.2  nathanw 		if (isp->isp_osinfo.blocked) {
    695  1.39.2.2  nathanw 			isp->isp_osinfo.blocked = 0;
    696  1.39.2.2  nathanw 			isp_prt(isp, /* ISP_LOGDEBUG0 */ ISP_LOGALL, "restarting queues (freeze count %d)", isp->isp_chanA.chan_qfreeze);
    697  1.39.2.2  nathanw 
    698  1.39.2.2  nathanw 			scsipi_channel_thaw(&isp->isp_chanA, 1);
    699  1.39.2.2  nathanw 		}
    700  1.39.2.2  nathanw 
    701  1.39.2.2  nathanw 		if (isp->isp_osinfo.thread == NULL)
    702  1.39.2.2  nathanw 			break;
    703  1.39.2.2  nathanw 
    704  1.39.2.2  nathanw 		(void) tsleep(&isp->isp_osinfo.thread, PRIBIO, "fcclnup", 0);
    705  1.39.2.2  nathanw 
    706  1.39.2.2  nathanw 		splx(s);
    707  1.39.2.2  nathanw 	}
    708  1.39.2.2  nathanw 
    709  1.39.2.2  nathanw 	/* In case parent is waiting for us to exit. */
    710  1.39.2.2  nathanw 	wakeup(&isp->isp_osinfo.thread);
    711  1.39.2.2  nathanw 
    712  1.39.2.2  nathanw 	kthread_exit(0);
    713  1.39.2.2  nathanw }
    714  1.39.2.2  nathanw 
    715  1.39.2.2  nathanw /*
    716       1.8   mjacob  * Free any associated resources prior to decommissioning and
    717       1.8   mjacob  * set the card to a known state (so it doesn't wake up and kick
    718       1.8   mjacob  * us when we aren't expecting it to).
    719       1.8   mjacob  *
    720       1.8   mjacob  * Locks are held before coming here.
    721       1.8   mjacob  */
    722       1.8   mjacob void
    723  1.39.2.1  nathanw isp_uninit(struct ispsoftc *isp)
    724       1.8   mjacob {
    725      1.28   mjacob 	isp_lock(isp);
    726       1.8   mjacob 	/*
    727       1.8   mjacob 	 * Leave with interrupts disabled.
    728       1.8   mjacob 	 */
    729       1.8   mjacob 	DISABLE_INTS(isp);
    730      1.28   mjacob 	isp_unlock(isp);
    731       1.9   mjacob }
    732       1.9   mjacob 
    733       1.9   mjacob int
    734  1.39.2.1  nathanw isp_async(struct ispsoftc *isp, ispasync_t cmd, void *arg)
    735       1.9   mjacob {
    736      1.14   mjacob 	int bus, tgt;
    737  1.39.2.2  nathanw 
    738       1.9   mjacob 	switch (cmd) {
    739       1.9   mjacob 	case ISPASYNC_NEW_TGT_PARAMS:
    740      1.17   mjacob 	if (IS_SCSI(isp) && isp->isp_dblev) {
    741      1.17   mjacob 		sdparam *sdp = isp->isp_param;
    742  1.39.2.2  nathanw 		int flags;
    743  1.39.2.2  nathanw 		struct scsipi_xfer_mode xm;
    744      1.17   mjacob 
    745      1.17   mjacob 		tgt = *((int *) arg);
    746      1.17   mjacob 		bus = (tgt >> 16) & 0xffff;
    747      1.17   mjacob 		tgt &= 0xffff;
    748      1.21   mjacob 		sdp += bus;
    749      1.17   mjacob 		flags = sdp->isp_devparam[tgt].cur_dflags;
    750      1.21   mjacob 
    751  1.39.2.2  nathanw 		xm.xm_mode = 0;
    752  1.39.2.2  nathanw 		xm.xm_period = sdp->isp_devparam[tgt].cur_period;
    753  1.39.2.2  nathanw 		xm.xm_offset = sdp->isp_devparam[tgt].cur_offset;
    754  1.39.2.2  nathanw 		xm.xm_target = tgt;
    755  1.39.2.2  nathanw 
    756  1.39.2.2  nathanw 		if ((flags & DPARM_SYNC) && xm.xm_period && xm.xm_offset)
    757  1.39.2.2  nathanw 			xm.xm_mode |= PERIPH_CAP_SYNC;
    758  1.39.2.2  nathanw 		if (flags & DPARM_WIDE)
    759  1.39.2.2  nathanw 			xm.xm_mode |= PERIPH_CAP_WIDE16;
    760  1.39.2.2  nathanw 		if (flags & DPARM_TQING)
    761  1.39.2.2  nathanw 			xm.xm_mode |= PERIPH_CAP_TQING;
    762  1.39.2.2  nathanw 		scsipi_async_event(bus? &isp->isp_chanB : &isp->isp_chanA,
    763  1.39.2.2  nathanw 		    ASYNC_EVENT_XFER_MODE, &xm);
    764      1.11   mjacob 		break;
    765      1.17   mjacob 	}
    766      1.11   mjacob 	case ISPASYNC_BUS_RESET:
    767  1.39.2.2  nathanw 		bus = *((int *) arg);
    768  1.39.2.2  nathanw 		scsipi_async_event(bus? &isp->isp_chanB : &isp->isp_chanA,
    769  1.39.2.2  nathanw 		    ASYNC_EVENT_RESET, NULL);
    770      1.28   mjacob 		isp_prt(isp, ISP_LOGINFO, "SCSI bus %d reset detected", bus);
    771      1.11   mjacob 		break;
    772  1.39.2.2  nathanw 	case ISPASYNC_LIP:
    773  1.39.2.2  nathanw 		/*
    774  1.39.2.2  nathanw 		 * Don't do queue freezes or blockage until we have the
    775  1.39.2.2  nathanw 		 * thread running that can unfreeze/unblock us.
    776  1.39.2.2  nathanw 		 */
    777  1.39.2.2  nathanw 		if (isp->isp_osinfo.blocked == 0)  {
    778  1.39.2.2  nathanw 			if (isp->isp_osinfo.thread) {
    779  1.39.2.2  nathanw 				isp->isp_osinfo.blocked = 1;
    780  1.39.2.2  nathanw 				scsipi_channel_freeze(&isp->isp_chanA, 1);
    781  1.39.2.2  nathanw 			}
    782  1.39.2.2  nathanw 		}
    783  1.39.2.2  nathanw 		isp_prt(isp, ISP_LOGINFO, "LIP Received");
    784  1.39.2.2  nathanw 		break;
    785  1.39.2.2  nathanw 	case ISPASYNC_LOOP_RESET:
    786  1.39.2.2  nathanw 		/*
    787  1.39.2.2  nathanw 		 * Don't do queue freezes or blockage until we have the
    788  1.39.2.2  nathanw 		 * thread running that can unfreeze/unblock us.
    789  1.39.2.2  nathanw 		 */
    790  1.39.2.2  nathanw 		if (isp->isp_osinfo.blocked == 0) {
    791  1.39.2.2  nathanw 			if (isp->isp_osinfo.thread) {
    792  1.39.2.2  nathanw 				isp->isp_osinfo.blocked = 1;
    793  1.39.2.2  nathanw 				scsipi_channel_freeze(&isp->isp_chanA, 1);
    794  1.39.2.2  nathanw 			}
    795  1.39.2.2  nathanw 		}
    796  1.39.2.2  nathanw 		isp_prt(isp, ISP_LOGINFO, "Loop Reset Received");
    797  1.39.2.2  nathanw 		break;
    798      1.11   mjacob 	case ISPASYNC_LOOP_DOWN:
    799      1.11   mjacob 		/*
    800  1.39.2.2  nathanw 		 * Don't do queue freezes or blockage until we have the
    801  1.39.2.2  nathanw 		 * thread running that can unfreeze/unblock us.
    802      1.11   mjacob 		 */
    803  1.39.2.2  nathanw 		if (isp->isp_osinfo.blocked == 0) {
    804  1.39.2.2  nathanw 			if (isp->isp_osinfo.thread) {
    805  1.39.2.2  nathanw 				isp->isp_osinfo.blocked = 1;
    806  1.39.2.2  nathanw 				scsipi_channel_freeze(&isp->isp_chanA, 1);
    807  1.39.2.2  nathanw 			}
    808  1.39.2.2  nathanw 		}
    809      1.28   mjacob 		isp_prt(isp, ISP_LOGINFO, "Loop DOWN");
    810      1.11   mjacob 		break;
    811      1.11   mjacob         case ISPASYNC_LOOP_UP:
    812  1.39.2.2  nathanw 		/*
    813  1.39.2.2  nathanw 		 * Let the subsequent ISPASYNC_CHANGE_NOTIFY invoke
    814  1.39.2.2  nathanw 		 * the FC worker thread. When the FC worker thread
    815  1.39.2.2  nathanw 		 * is done, let *it* call scsipi_channel_thaw...
    816  1.39.2.2  nathanw 		 */
    817      1.28   mjacob 		isp_prt(isp, ISP_LOGINFO, "Loop UP");
    818      1.11   mjacob 		break;
    819      1.39   mjacob 	case ISPASYNC_PROMENADE:
    820      1.17   mjacob 	if (IS_FC(isp) && isp->isp_dblev) {
    821      1.37   mjacob 		const char fmt[] = "Target %d (Loop 0x%x) Port ID 0x%x "
    822      1.39   mjacob 		    "(role %s) %s\n Port WWN 0x%08x%08x\n Node WWN 0x%08x%08x";
    823      1.15   mjacob 		const static char *roles[4] = {
    824  1.39.2.2  nathanw 		    "None", "Target", "Initiator", "Target/Initiator"
    825      1.11   mjacob 		};
    826      1.15   mjacob 		fcparam *fcp = isp->isp_param;
    827      1.15   mjacob 		int tgt = *((int *) arg);
    828      1.15   mjacob 		struct lportdb *lp = &fcp->portdb[tgt];
    829      1.15   mjacob 
    830      1.28   mjacob 		isp_prt(isp, ISP_LOGINFO, fmt, tgt, lp->loopid, lp->portid,
    831      1.39   mjacob 		    roles[lp->roles & 0x3],
    832      1.39   mjacob 		    (lp->valid)? "Arrived" : "Departed",
    833      1.15   mjacob 		    (u_int32_t) (lp->port_wwn >> 32),
    834      1.15   mjacob 		    (u_int32_t) (lp->port_wwn & 0xffffffffLL),
    835      1.15   mjacob 		    (u_int32_t) (lp->node_wwn >> 32),
    836      1.15   mjacob 		    (u_int32_t) (lp->node_wwn & 0xffffffffLL));
    837      1.11   mjacob 		break;
    838      1.11   mjacob 	}
    839      1.11   mjacob 	case ISPASYNC_CHANGE_NOTIFY:
    840  1.39.2.2  nathanw 		if (arg == ISPASYNC_CHANGE_PDB) {
    841  1.39.2.2  nathanw 			isp_prt(isp, ISP_LOGINFO, "Port Database Changed");
    842  1.39.2.2  nathanw 		} else if (arg == ISPASYNC_CHANGE_SNS) {
    843      1.38   mjacob 			isp_prt(isp, ISP_LOGINFO,
    844      1.38   mjacob 			    "Name Server Database Changed");
    845  1.39.2.2  nathanw 		}
    846  1.39.2.2  nathanw 
    847  1.39.2.2  nathanw 		/*
    848  1.39.2.2  nathanw 		 * We can set blocked here because we know it's now okay
    849  1.39.2.2  nathanw 		 * to try and run isp_fc_runstate (in order to build loop
    850  1.39.2.2  nathanw 		 * state). But we don't try and freeze the midlayer's queue
    851  1.39.2.2  nathanw 		 * if we have no thread that we can wake to later unfreeze
    852  1.39.2.2  nathanw 		 * it.
    853  1.39.2.2  nathanw 		 */
    854  1.39.2.2  nathanw 		if (isp->isp_osinfo.blocked == 0) {
    855  1.39.2.2  nathanw 			isp->isp_osinfo.blocked = 1;
    856  1.39.2.2  nathanw 			if (isp->isp_osinfo.thread) {
    857  1.39.2.2  nathanw 				scsipi_channel_freeze(&isp->isp_chanA, 1);
    858  1.39.2.2  nathanw 			}
    859  1.39.2.2  nathanw 		}
    860  1.39.2.2  nathanw 		/*
    861  1.39.2.2  nathanw 		 * Note that we have work for the thread to do, and
    862  1.39.2.2  nathanw 		 * if the thread is here already, wake it up.
    863  1.39.2.2  nathanw 		 */
    864  1.39.2.2  nathanw 		isp->isp_osinfo.threadwork++;
    865  1.39.2.2  nathanw 		if (isp->isp_osinfo.thread) {
    866  1.39.2.2  nathanw 			wakeup(&isp->isp_osinfo.thread);
    867      1.38   mjacob 		} else {
    868  1.39.2.2  nathanw 			isp_prt(isp, ISP_LOGDEBUG1, "no FC thread yet");
    869      1.38   mjacob 		}
    870       1.9   mjacob 		break;
    871      1.15   mjacob 	case ISPASYNC_FABRIC_DEV:
    872      1.15   mjacob 	{
    873      1.39   mjacob 		int target, lrange;
    874      1.39   mjacob 		struct lportdb *lp = NULL;
    875      1.39   mjacob 		char *pt;
    876      1.39   mjacob 		sns_ganrsp_t *resp = (sns_ganrsp_t *) arg;
    877      1.15   mjacob 		u_int32_t portid;
    878      1.39   mjacob 		u_int64_t wwpn, wwnn;
    879      1.15   mjacob 		fcparam *fcp = isp->isp_param;
    880      1.15   mjacob 
    881      1.15   mjacob 		portid =
    882      1.15   mjacob 		    (((u_int32_t) resp->snscb_port_id[0]) << 16) |
    883      1.15   mjacob 		    (((u_int32_t) resp->snscb_port_id[1]) << 8) |
    884      1.15   mjacob 		    (((u_int32_t) resp->snscb_port_id[2]));
    885      1.39   mjacob 
    886      1.39   mjacob 		wwpn =
    887      1.15   mjacob 		    (((u_int64_t)resp->snscb_portname[0]) << 56) |
    888      1.15   mjacob 		    (((u_int64_t)resp->snscb_portname[1]) << 48) |
    889      1.15   mjacob 		    (((u_int64_t)resp->snscb_portname[2]) << 40) |
    890      1.15   mjacob 		    (((u_int64_t)resp->snscb_portname[3]) << 32) |
    891      1.15   mjacob 		    (((u_int64_t)resp->snscb_portname[4]) << 24) |
    892      1.15   mjacob 		    (((u_int64_t)resp->snscb_portname[5]) << 16) |
    893      1.15   mjacob 		    (((u_int64_t)resp->snscb_portname[6]) <<  8) |
    894      1.15   mjacob 		    (((u_int64_t)resp->snscb_portname[7]));
    895      1.31   mjacob 
    896      1.39   mjacob 		wwnn =
    897      1.39   mjacob 		    (((u_int64_t)resp->snscb_nodename[0]) << 56) |
    898      1.39   mjacob 		    (((u_int64_t)resp->snscb_nodename[1]) << 48) |
    899      1.39   mjacob 		    (((u_int64_t)resp->snscb_nodename[2]) << 40) |
    900      1.39   mjacob 		    (((u_int64_t)resp->snscb_nodename[3]) << 32) |
    901      1.39   mjacob 		    (((u_int64_t)resp->snscb_nodename[4]) << 24) |
    902      1.39   mjacob 		    (((u_int64_t)resp->snscb_nodename[5]) << 16) |
    903      1.39   mjacob 		    (((u_int64_t)resp->snscb_nodename[6]) <<  8) |
    904      1.39   mjacob 		    (((u_int64_t)resp->snscb_nodename[7]));
    905      1.39   mjacob 		if (portid == 0 || wwpn == 0) {
    906      1.39   mjacob 			break;
    907      1.39   mjacob 		}
    908      1.39   mjacob 
    909      1.39   mjacob 		switch (resp->snscb_port_type) {
    910      1.39   mjacob 		case 1:
    911      1.39   mjacob 			pt = "   N_Port";
    912      1.39   mjacob 			break;
    913      1.39   mjacob 		case 2:
    914      1.39   mjacob 			pt = "  NL_Port";
    915      1.39   mjacob 			break;
    916      1.39   mjacob 		case 3:
    917      1.39   mjacob 			pt = "F/NL_Port";
    918      1.39   mjacob 			break;
    919      1.39   mjacob 		case 0x7f:
    920      1.39   mjacob 			pt = "  Nx_Port";
    921      1.39   mjacob 			break;
    922      1.39   mjacob 		case 0x81:
    923      1.39   mjacob 			pt = "  F_port";
    924      1.39   mjacob 			break;
    925      1.39   mjacob 		case 0x82:
    926      1.39   mjacob 			pt = "  FL_Port";
    927      1.39   mjacob 			break;
    928      1.39   mjacob 		case 0x84:
    929      1.39   mjacob 			pt = "   E_port";
    930      1.39   mjacob 			break;
    931      1.39   mjacob 		default:
    932      1.39   mjacob 			pt = "?";
    933      1.39   mjacob 			break;
    934      1.39   mjacob 		}
    935      1.28   mjacob 		isp_prt(isp, ISP_LOGINFO,
    936      1.39   mjacob 		    "%s @ 0x%x, Node 0x%08x%08x Port %08x%08x",
    937      1.39   mjacob 		    pt, portid, ((u_int32_t) (wwnn >> 32)), ((u_int32_t) wwnn),
    938      1.39   mjacob 		    ((u_int32_t) (wwpn >> 32)), ((u_int32_t) wwpn));
    939      1.39   mjacob 		/*
    940      1.39   mjacob 		 * We're only interested in SCSI_FCP types (for now)
    941      1.39   mjacob 		 */
    942      1.39   mjacob 		if ((resp->snscb_fc4_types[2] & 1) == 0) {
    943      1.39   mjacob 			break;
    944      1.39   mjacob 		}
    945      1.39   mjacob 		if (fcp->isp_topo != TOPO_F_PORT)
    946      1.39   mjacob 			lrange = FC_SNS_ID+1;
    947      1.39   mjacob 		else
    948      1.39   mjacob 			lrange = 0;
    949      1.39   mjacob 		/*
    950      1.39   mjacob 		 * Is it already in our list?
    951      1.39   mjacob 		 */
    952      1.39   mjacob 		for (target = lrange; target < MAX_FC_TARG; target++) {
    953      1.39   mjacob 			if (target >= FL_PORT_ID && target <= FC_SNS_ID) {
    954      1.39   mjacob 				continue;
    955      1.39   mjacob 			}
    956      1.15   mjacob 			lp = &fcp->portdb[target];
    957      1.39   mjacob 			if (lp->port_wwn == wwpn && lp->node_wwn == wwnn) {
    958      1.39   mjacob 				lp->fabric_dev = 1;
    959      1.15   mjacob 				break;
    960      1.39   mjacob 			}
    961      1.15   mjacob 		}
    962      1.15   mjacob 		if (target < MAX_FC_TARG) {
    963      1.15   mjacob 			break;
    964      1.15   mjacob 		}
    965      1.39   mjacob 		for (target = lrange; target < MAX_FC_TARG; target++) {
    966      1.39   mjacob 			if (target >= FL_PORT_ID && target <= FC_SNS_ID) {
    967      1.39   mjacob 				continue;
    968      1.39   mjacob 			}
    969      1.15   mjacob 			lp = &fcp->portdb[target];
    970      1.39   mjacob 			if (lp->port_wwn == 0) {
    971      1.15   mjacob 				break;
    972      1.39   mjacob 			}
    973      1.15   mjacob 		}
    974      1.15   mjacob 		if (target == MAX_FC_TARG) {
    975      1.28   mjacob 			isp_prt(isp, ISP_LOGWARN,
    976      1.28   mjacob 			    "no more space for fabric devices");
    977      1.39   mjacob 			break;
    978      1.15   mjacob 		}
    979      1.39   mjacob 		lp->node_wwn = wwnn;
    980      1.39   mjacob 		lp->port_wwn = wwpn;
    981      1.15   mjacob 		lp->portid = portid;
    982      1.39   mjacob 		lp->fabric_dev = 1;
    983  1.39.2.3  nathanw 		break;
    984  1.39.2.3  nathanw 	}
    985  1.39.2.3  nathanw 	case ISPASYNC_FW_CRASH:
    986  1.39.2.3  nathanw 	{
    987  1.39.2.3  nathanw 		u_int16_t mbox1, mbox6;
    988  1.39.2.3  nathanw 		mbox1 = ISP_READ(isp, OUTMAILBOX1);
    989  1.39.2.3  nathanw 		if (IS_DUALBUS(isp)) {
    990  1.39.2.3  nathanw 			mbox6 = ISP_READ(isp, OUTMAILBOX6);
    991  1.39.2.3  nathanw 		} else {
    992  1.39.2.3  nathanw 			mbox6 = 0;
    993  1.39.2.3  nathanw 		}
    994  1.39.2.3  nathanw                 isp_prt(isp, ISP_LOGERR,
    995  1.39.2.3  nathanw                     "Internal Firmware on bus %d Error @ RISC Address 0x%x",
    996  1.39.2.3  nathanw                     mbox6, mbox1);
    997  1.39.2.3  nathanw 		isp_reinit(isp);
    998      1.15   mjacob 		break;
    999      1.15   mjacob 	}
   1000       1.9   mjacob 	default:
   1001       1.9   mjacob 		break;
   1002       1.9   mjacob 	}
   1003       1.9   mjacob 	return (0);
   1004      1.28   mjacob }
   1005      1.28   mjacob 
   1006      1.28   mjacob #include <machine/stdarg.h>
   1007      1.28   mjacob void
   1008      1.28   mjacob isp_prt(struct ispsoftc *isp, int level, const char *fmt, ...)
   1009      1.28   mjacob {
   1010      1.28   mjacob 	va_list ap;
   1011      1.28   mjacob 	if (level != ISP_LOGALL && (level & isp->isp_dblev) == 0) {
   1012      1.28   mjacob 		return;
   1013      1.28   mjacob 	}
   1014      1.28   mjacob 	printf("%s: ", isp->isp_name);
   1015      1.28   mjacob 	va_start(ap, fmt);
   1016      1.28   mjacob 	vprintf(fmt, ap);
   1017      1.28   mjacob 	va_end(ap);
   1018      1.28   mjacob 	printf("\n");
   1019       1.1   mjacob }
   1020