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isp_target.c revision 1.10.2.2
      1  1.10.2.2  nathanw /* $NetBSD: isp_target.c,v 1.10.2.2 2001/06/21 20:02:44 nathanw Exp $ */
      2       1.9   mjacob /*
      3       1.9   mjacob  * This driver, which is contained in NetBSD in the files:
      4       1.9   mjacob  *
      5       1.9   mjacob  *	sys/dev/ic/isp.c
      6      1.10      wiz  *	sys/dev/ic/isp_inline.h
      7      1.10      wiz  *	sys/dev/ic/isp_netbsd.c
      8      1.10      wiz  *	sys/dev/ic/isp_netbsd.h
      9      1.10      wiz  *	sys/dev/ic/isp_target.c
     10      1.10      wiz  *	sys/dev/ic/isp_target.h
     11      1.10      wiz  *	sys/dev/ic/isp_tpublic.h
     12      1.10      wiz  *	sys/dev/ic/ispmbox.h
     13      1.10      wiz  *	sys/dev/ic/ispreg.h
     14      1.10      wiz  *	sys/dev/ic/ispvar.h
     15       1.9   mjacob  *	sys/microcode/isp/asm_sbus.h
     16       1.9   mjacob  *	sys/microcode/isp/asm_1040.h
     17       1.9   mjacob  *	sys/microcode/isp/asm_1080.h
     18       1.9   mjacob  *	sys/microcode/isp/asm_12160.h
     19       1.9   mjacob  *	sys/microcode/isp/asm_2100.h
     20       1.9   mjacob  *	sys/microcode/isp/asm_2200.h
     21       1.9   mjacob  *	sys/pci/isp_pci.c
     22       1.9   mjacob  *	sys/sbus/isp_sbus.c
     23       1.9   mjacob  *
     24       1.9   mjacob  * Is being actively maintained by Matthew Jacob (mjacob (at) netbsd.org).
     25       1.9   mjacob  * This driver also is shared source with FreeBSD, OpenBSD, Linux, Solaris,
     26       1.9   mjacob  * Linux versions. This tends to be an interesting maintenance problem.
     27       1.9   mjacob  *
     28       1.9   mjacob  * Please coordinate with Matthew Jacob on changes you wish to make here.
     29       1.9   mjacob  */
     30       1.1   mjacob /*
     31       1.1   mjacob  * Machine and OS Independent Target Mode Code for the Qlogic SCSI/FC adapters.
     32       1.1   mjacob  *
     33  1.10.2.1  nathanw  * Copyright (c) 1999, 2000, 2001 by Matthew Jacob
     34       1.1   mjacob  * All rights reserved.
     35       1.1   mjacob  * mjacob (at) feral.com
     36       1.1   mjacob  *
     37       1.1   mjacob  * Redistribution and use in source and binary forms, with or without
     38       1.1   mjacob  * modification, are permitted provided that the following conditions
     39       1.1   mjacob  * are met:
     40       1.1   mjacob  * 1. Redistributions of source code must retain the above copyright
     41       1.1   mjacob  *    notice immediately at the beginning of the file, without modification,
     42       1.1   mjacob  *    this list of conditions, and the following disclaimer.
     43  1.10.2.1  nathanw  * 2. The name of the author may not be used to endorse or promote products
     44       1.1   mjacob  *    derived from this software without specific prior written permission.
     45       1.1   mjacob  *
     46       1.1   mjacob  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
     47       1.1   mjacob  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     48       1.1   mjacob  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     49       1.1   mjacob  * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE FOR
     50       1.1   mjacob  * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     51       1.1   mjacob  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     52       1.1   mjacob  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     53       1.1   mjacob  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     54       1.1   mjacob  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     55       1.1   mjacob  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     56       1.1   mjacob  * SUCH DAMAGE.
     57       1.1   mjacob  */
     58       1.1   mjacob 
     59       1.1   mjacob /*
     60       1.1   mjacob  * Include header file appropriate for platform we're building on.
     61       1.1   mjacob  */
     62       1.1   mjacob 
     63       1.1   mjacob #ifdef	__NetBSD__
     64       1.1   mjacob #include <dev/ic/isp_netbsd.h>
     65       1.1   mjacob #endif
     66       1.1   mjacob #ifdef	__FreeBSD__
     67       1.1   mjacob #include <dev/isp/isp_freebsd.h>
     68       1.1   mjacob #endif
     69       1.1   mjacob #ifdef	__OpenBSD__
     70       1.1   mjacob #include <dev/ic/isp_openbsd.h>
     71       1.1   mjacob #endif
     72       1.1   mjacob #ifdef	__linux__
     73       1.1   mjacob #include "isp_linux.h"
     74       1.1   mjacob #endif
     75       1.1   mjacob 
     76       1.1   mjacob #ifdef	ISP_TARGET_MODE
     77  1.10.2.1  nathanw static const char atiocope[] =
     78       1.7   mjacob     "ATIO returned for lun %d because it was in the middle of Bus Device Reset";
     79  1.10.2.1  nathanw static const char atior[] =
     80       1.7   mjacob     "ATIO returned for lun %d from initiator %d because a Bus Reset occurred";
     81       1.1   mjacob 
     82  1.10.2.1  nathanw static void isp_got_msg(struct ispsoftc *, int, in_entry_t *);
     83  1.10.2.1  nathanw static void isp_got_msg_fc(struct ispsoftc *, int, in_fcentry_t *);
     84  1.10.2.1  nathanw static void isp_notify_ack(struct ispsoftc *, void *);
     85       1.1   mjacob static void isp_handle_atio(struct ispsoftc *, at_entry_t *);
     86       1.1   mjacob static void isp_handle_atio2(struct ispsoftc *, at2_entry_t *);
     87       1.1   mjacob static void isp_handle_ctio(struct ispsoftc *, ct_entry_t *);
     88       1.1   mjacob static void isp_handle_ctio2(struct ispsoftc *, ct2_entry_t *);
     89       1.1   mjacob 
     90       1.1   mjacob /*
     91       1.1   mjacob  * The Qlogic driver gets an interrupt to look at response queue entries.
     92       1.1   mjacob  * Some of these are status completions for initiatior mode commands, but
     93       1.1   mjacob  * if target mode is enabled, we get a whole wad of response queue entries
     94       1.1   mjacob  * to be handled here.
     95       1.1   mjacob  *
     96       1.1   mjacob  * Basically the split into 3 main groups: Lun Enable/Modification responses,
     97       1.1   mjacob  * SCSI Command processing, and Immediate Notification events.
     98       1.1   mjacob  *
     99       1.1   mjacob  * You start by writing a request queue entry to enable target mode (and
    100       1.1   mjacob  * establish some resource limitations which you can modify later).
    101       1.1   mjacob  * The f/w responds with a LUN ENABLE or LUN MODIFY response with
    102       1.1   mjacob  * the status of this action. If the enable was successful, you can expect...
    103       1.1   mjacob  *
    104       1.1   mjacob  * Response queue entries with SCSI commands encapsulate show up in an ATIO
    105       1.1   mjacob  * (Accept Target IO) type- sometimes with enough info to stop the command at
    106       1.1   mjacob  * this level. Ultimately the driver has to feed back to the f/w's request
    107       1.1   mjacob  * queue a sequence of CTIOs (continue target I/O) that describe data to
    108       1.1   mjacob  * be moved and/or status to be sent) and finally finishing with sending
    109       1.1   mjacob  * to the f/w's response queue an ATIO which then completes the handshake
    110       1.1   mjacob  * with the f/w for that command. There's a lot of variations on this theme,
    111       1.1   mjacob  * including flags you can set in the CTIO for the Qlogic 2X00 fibre channel
    112       1.1   mjacob  * cards that 'auto-replenish' the f/w's ATIO count, but this is the basic
    113       1.1   mjacob  * gist of it.
    114       1.1   mjacob  *
    115       1.1   mjacob  * The third group that can show up in the response queue are Immediate
    116       1.1   mjacob  * Notification events. These include things like notifications of SCSI bus
    117       1.1   mjacob  * resets, or Bus Device Reset messages or other messages received. This
    118  1.10.2.1  nathanw  * a classic oddbins area. It can get  a little weird because you then turn
    119       1.1   mjacob  * around and acknowledge the Immediate Notify by writing an entry onto the
    120       1.1   mjacob  * request queue and then the f/w turns around and gives you an acknowledgement
    121       1.1   mjacob  * to *your* acknowledgement on the response queue (the idea being to let
    122       1.1   mjacob  * the f/w tell you when the event is *really* over I guess).
    123       1.1   mjacob  *
    124       1.1   mjacob  */
    125       1.1   mjacob 
    126       1.1   mjacob 
    127       1.1   mjacob /*
    128       1.1   mjacob  * A new response queue entry has arrived. The interrupt service code
    129       1.1   mjacob  * has already swizzled it into the platform dependent from canonical form.
    130       1.1   mjacob  *
    131       1.1   mjacob  * Because of the way this driver is designed, unfortunately most of the
    132       1.1   mjacob  * actual synchronization work has to be done in the platform specific
    133       1.1   mjacob  * code- we have no synchroniation primitives in the common code.
    134       1.1   mjacob  */
    135       1.1   mjacob 
    136       1.1   mjacob int
    137  1.10.2.1  nathanw isp_target_notify(struct ispsoftc *isp, void *vptr, u_int16_t *optrp)
    138       1.1   mjacob {
    139       1.1   mjacob 	u_int16_t status, seqid;
    140       1.1   mjacob 	union {
    141       1.1   mjacob 		at_entry_t	*atiop;
    142       1.1   mjacob 		at2_entry_t	*at2iop;
    143       1.1   mjacob 		ct_entry_t	*ctiop;
    144       1.1   mjacob 		ct2_entry_t	*ct2iop;
    145       1.1   mjacob 		lun_entry_t	*lunenp;
    146       1.1   mjacob 		in_entry_t	*inotp;
    147       1.1   mjacob 		in_fcentry_t	*inot_fcp;
    148       1.1   mjacob 		na_entry_t	*nackp;
    149       1.1   mjacob 		na_fcentry_t	*nack_fcp;
    150       1.1   mjacob 		isphdr_t	*hp;
    151       1.1   mjacob 		void *		*vp;
    152       1.1   mjacob #define	atiop		unp.atiop
    153       1.1   mjacob #define	at2iop		unp.at2iop
    154       1.1   mjacob #define	ctiop		unp.ctiop
    155       1.1   mjacob #define	ct2iop		unp.ct2iop
    156       1.1   mjacob #define	lunenp		unp.lunenp
    157       1.1   mjacob #define	inotp		unp.inotp
    158       1.1   mjacob #define	inot_fcp	unp.inot_fcp
    159       1.1   mjacob #define	nackp		unp.nackp
    160       1.1   mjacob #define	nack_fcp	unp.nack_fcp
    161       1.1   mjacob #define	hdrp		unp.hp
    162       1.1   mjacob 	} unp;
    163       1.1   mjacob 	int bus, rval = 0;
    164       1.1   mjacob 
    165       1.1   mjacob 	unp.vp = vptr;
    166       1.1   mjacob 
    167       1.1   mjacob 	ISP_TDQE(isp, "isp_target_notify", (int) *optrp, vptr);
    168       1.1   mjacob 
    169       1.1   mjacob 	switch(hdrp->rqs_entry_type) {
    170       1.1   mjacob 	case RQSTYPE_ATIO:
    171       1.1   mjacob 		isp_handle_atio(isp, atiop);
    172       1.1   mjacob 		break;
    173       1.1   mjacob 	case RQSTYPE_CTIO:
    174       1.1   mjacob 		isp_handle_ctio(isp, ctiop);
    175       1.1   mjacob 		break;
    176       1.1   mjacob 	case RQSTYPE_ATIO2:
    177       1.1   mjacob 		isp_handle_atio2(isp, at2iop);
    178       1.1   mjacob 		break;
    179       1.1   mjacob 	case RQSTYPE_CTIO2:
    180       1.1   mjacob 		isp_handle_ctio2(isp, ct2iop);
    181       1.1   mjacob 		break;
    182       1.1   mjacob 	case RQSTYPE_ENABLE_LUN:
    183       1.1   mjacob 	case RQSTYPE_MODIFY_LUN:
    184       1.1   mjacob 		(void) isp_async(isp, ISPASYNC_TARGET_ACTION, vptr);
    185       1.1   mjacob 		break;
    186       1.1   mjacob 
    187       1.1   mjacob 	case RQSTYPE_NOTIFY:
    188       1.1   mjacob 		/*
    189       1.1   mjacob 		 * Either the ISP received a SCSI message it can't
    190       1.1   mjacob 		 * handle, or it's returning an Immed. Notify entry
    191       1.1   mjacob 		 * we sent. We can send Immed. Notify entries to
    192       1.1   mjacob 		 * increment the firmware's resource count for them
    193       1.1   mjacob 		 * (we set this initially in the Enable Lun entry).
    194       1.1   mjacob 		 */
    195       1.3   mjacob 		bus = 0;
    196       1.1   mjacob 		if (IS_FC(isp)) {
    197       1.1   mjacob 			status = inot_fcp->in_status;
    198       1.1   mjacob 			seqid = inot_fcp->in_seqid;
    199       1.1   mjacob 		} else {
    200       1.1   mjacob 			status = inotp->in_status & 0xff;
    201       1.1   mjacob 			seqid = inotp->in_seqid;
    202       1.3   mjacob 			if (IS_DUALBUS(isp)) {
    203       1.3   mjacob 				bus = (inotp->in_iid & 0x80) >> 7;
    204       1.3   mjacob 				inotp->in_iid &= ~0x80;
    205       1.3   mjacob 			}
    206       1.1   mjacob 		}
    207       1.7   mjacob 		isp_prt(isp, ISP_LOGTDEBUG1,
    208       1.7   mjacob 		    "Immediate Notify, status=0x%x seqid=0x%x", status, seqid);
    209       1.1   mjacob 		switch (status) {
    210       1.1   mjacob 		case IN_RESET:
    211       1.1   mjacob 			(void) isp_async(isp, ISPASYNC_BUS_RESET, &bus);
    212       1.1   mjacob 			break;
    213       1.1   mjacob 		case IN_MSG_RECEIVED:
    214       1.1   mjacob 		case IN_IDE_RECEIVED:
    215       1.1   mjacob 			if (IS_FC(isp)) {
    216       1.1   mjacob 				isp_got_msg_fc(isp, bus, vptr);
    217       1.1   mjacob 			} else {
    218       1.1   mjacob 				isp_got_msg(isp, bus, vptr);
    219       1.1   mjacob 			}
    220       1.1   mjacob 			break;
    221       1.1   mjacob 		case IN_RSRC_UNAVAIL:
    222       1.7   mjacob 			isp_prt(isp, ISP_LOGWARN, "Firmware out of ATIOs");
    223       1.1   mjacob 			break;
    224       1.1   mjacob 		case IN_ABORT_TASK:
    225       1.7   mjacob 			isp_prt(isp, ISP_LOGWARN,
    226       1.7   mjacob 			    "Abort Task for Initiator %d RX_ID 0x%x",
    227       1.7   mjacob 			    inot_fcp->in_iid, seqid);
    228       1.1   mjacob 			break;
    229       1.1   mjacob 		case IN_PORT_LOGOUT:
    230       1.7   mjacob 			isp_prt(isp, ISP_LOGWARN,
    231       1.7   mjacob 			    "Port Logout for Initiator %d RX_ID 0x%x",
    232       1.7   mjacob 			    inot_fcp->in_iid, seqid);
    233       1.1   mjacob 			break;
    234       1.1   mjacob 		case IN_PORT_CHANGED:
    235       1.7   mjacob 			isp_prt(isp, ISP_LOGWARN,
    236       1.7   mjacob 			    "Port Changed for Initiator %d RX_ID 0x%x",
    237       1.7   mjacob 			    inot_fcp->in_iid, seqid);
    238       1.1   mjacob 			break;
    239       1.1   mjacob 		case IN_GLOBAL_LOGO:
    240       1.7   mjacob 			isp_prt(isp, ISP_LOGWARN, "All ports logged out");
    241       1.1   mjacob 			break;
    242       1.1   mjacob 		default:
    243       1.7   mjacob 			isp_prt(isp, ISP_LOGERR,
    244       1.7   mjacob 			    "bad status (0x%x) in isp_target_notify", status);
    245       1.1   mjacob 			break;
    246       1.1   mjacob 		}
    247       1.1   mjacob 		isp_notify_ack(isp, vptr);
    248       1.1   mjacob 		break;
    249       1.1   mjacob 
    250       1.1   mjacob 	case RQSTYPE_NOTIFY_ACK:
    251       1.1   mjacob 		/*
    252       1.1   mjacob 		 * The ISP is acknowledging our acknowledgement of an
    253       1.1   mjacob 		 * Immediate Notify entry for some asynchronous event.
    254       1.1   mjacob 		 */
    255       1.1   mjacob 		if (IS_FC(isp)) {
    256       1.7   mjacob 			isp_prt(isp, ISP_LOGTDEBUG1,
    257       1.7   mjacob 			    "Notify Ack status=0x%x seqid 0x%x",
    258       1.7   mjacob 			    nack_fcp->na_status, nack_fcp->na_seqid);
    259       1.1   mjacob 		} else {
    260       1.7   mjacob 			isp_prt(isp, ISP_LOGTDEBUG1,
    261       1.7   mjacob 			    "Notify Ack event 0x%x status=0x%x seqid 0x%x",
    262       1.7   mjacob 			    nackp->na_event, nackp->na_status, nackp->na_seqid);
    263       1.1   mjacob 		}
    264       1.1   mjacob 		break;
    265       1.1   mjacob 	default:
    266       1.7   mjacob 		isp_prt(isp, ISP_LOGERR,
    267       1.7   mjacob 		    "Unknown entry type 0x%x in isp_target_notify",
    268       1.7   mjacob 		    hdrp->rqs_entry_type);
    269       1.1   mjacob 		rval = -1;
    270       1.1   mjacob 		break;
    271       1.1   mjacob 	}
    272       1.1   mjacob #undef	atiop
    273       1.1   mjacob #undef	at2iop
    274       1.1   mjacob #undef	ctiop
    275       1.1   mjacob #undef	ct2iop
    276       1.1   mjacob #undef	lunenp
    277       1.1   mjacob #undef	inotp
    278       1.1   mjacob #undef	inot_fcp
    279       1.1   mjacob #undef	nackp
    280       1.1   mjacob #undef	nack_fcp
    281       1.1   mjacob #undef	hdrp
    282       1.1   mjacob 	return (rval);
    283       1.1   mjacob }
    284       1.1   mjacob 
    285       1.1   mjacob 
    286       1.1   mjacob /*
    287       1.1   mjacob  * Toggle (on/off) target mode for bus/target/lun
    288       1.1   mjacob  *
    289       1.1   mjacob  * The caller has checked for overlap and legality.
    290       1.1   mjacob  *
    291       1.1   mjacob  * Note that not all of bus, target or lun can be paid attention to.
    292       1.1   mjacob  * Note also that this action will not be complete until the f/w writes
    293       1.1   mjacob  * response entry. The caller is responsible for synchronizing this.
    294       1.1   mjacob  */
    295       1.1   mjacob int
    296  1.10.2.1  nathanw isp_lun_cmd(struct ispsoftc *isp, int cmd, int bus, int tgt, int lun,
    297  1.10.2.2  nathanw     int cmd_cnt, int inot_cnt, u_int32_t opaque)
    298       1.1   mjacob {
    299       1.1   mjacob 	lun_entry_t el;
    300       1.1   mjacob 	u_int16_t iptr, optr;
    301       1.1   mjacob 	void *outp;
    302       1.1   mjacob 
    303       1.1   mjacob 
    304       1.1   mjacob 	MEMZERO(&el, sizeof (el));
    305       1.3   mjacob 	if (IS_DUALBUS(isp)) {
    306       1.3   mjacob 		el.le_rsvd = (bus & 0x1) << 7;
    307       1.3   mjacob 	}
    308  1.10.2.2  nathanw 	el.le_cmd_count = cmd_cnt;
    309  1.10.2.2  nathanw 	el.le_in_count = inot_cnt;
    310       1.1   mjacob 	if (cmd == RQSTYPE_ENABLE_LUN) {
    311       1.1   mjacob 		if (IS_SCSI(isp)) {
    312       1.5   mjacob 			el.le_flags = LUN_TQAE|LUN_DISAD;
    313       1.1   mjacob 			el.le_cdb6len = 12;
    314       1.1   mjacob 			el.le_cdb7len = 12;
    315       1.1   mjacob 		}
    316       1.1   mjacob 	} else if (cmd == -RQSTYPE_ENABLE_LUN) {
    317       1.1   mjacob 		cmd = RQSTYPE_ENABLE_LUN;
    318       1.1   mjacob 		el.le_cmd_count = 0;
    319       1.1   mjacob 		el.le_in_count = 0;
    320       1.1   mjacob 	} else if (cmd == -RQSTYPE_MODIFY_LUN) {
    321       1.1   mjacob 		cmd = RQSTYPE_MODIFY_LUN;
    322       1.1   mjacob 		el.le_ops = LUN_CCDECR | LUN_INDECR;
    323       1.1   mjacob 	} else {
    324       1.1   mjacob 		el.le_ops = LUN_CCINCR | LUN_ININCR;
    325       1.1   mjacob 	}
    326       1.1   mjacob 	el.le_header.rqs_entry_type = cmd;
    327       1.1   mjacob 	el.le_header.rqs_entry_count = 1;
    328       1.1   mjacob 	el.le_reserved = opaque;
    329       1.1   mjacob 	if (IS_SCSI(isp)) {
    330       1.1   mjacob 		el.le_tgt = tgt;
    331       1.1   mjacob 		el.le_lun = lun;
    332       1.5   mjacob 	} else if (isp->isp_maxluns <= 16) {
    333       1.1   mjacob 		el.le_lun = lun;
    334       1.1   mjacob 	}
    335  1.10.2.1  nathanw 	el.le_timeout = 2;
    336       1.1   mjacob 
    337       1.1   mjacob 	if (isp_getrqentry(isp, &iptr, &optr, &outp)) {
    338       1.7   mjacob 		isp_prt(isp, ISP_LOGWARN,
    339       1.7   mjacob 		    "Request Queue Overflow in isp_lun_cmd");
    340       1.1   mjacob 		return (-1);
    341       1.1   mjacob 	}
    342       1.1   mjacob 	ISP_SWIZ_ENABLE_LUN(isp, outp, &el);
    343       1.1   mjacob 	ISP_TDQE(isp, "isp_lun_cmd", (int) optr, &el);
    344       1.1   mjacob 	ISP_ADD_REQUEST(isp, iptr);
    345       1.1   mjacob 	return (0);
    346       1.1   mjacob }
    347       1.1   mjacob 
    348       1.1   mjacob 
    349       1.1   mjacob int
    350  1.10.2.1  nathanw isp_target_put_entry(struct ispsoftc *isp, void *ap)
    351       1.1   mjacob {
    352       1.1   mjacob 	void *outp;
    353       1.1   mjacob 	u_int16_t iptr, optr;
    354       1.1   mjacob 	u_int8_t etype = ((isphdr_t *) ap)->rqs_entry_type;
    355       1.1   mjacob 
    356       1.1   mjacob 	if (isp_getrqentry(isp, &iptr, &optr, &outp)) {
    357       1.7   mjacob 		isp_prt(isp, ISP_LOGWARN,
    358       1.7   mjacob 		    "Request Queue Overflow in isp_target_put_entry");
    359       1.1   mjacob 		return (-1);
    360       1.1   mjacob 	}
    361       1.1   mjacob 	switch (etype) {
    362       1.1   mjacob 	case RQSTYPE_ATIO:
    363       1.1   mjacob 		ISP_SWIZ_ATIO(isp, outp, ap);
    364       1.1   mjacob 		break;
    365       1.1   mjacob 	case RQSTYPE_ATIO2:
    366       1.1   mjacob 		ISP_SWIZ_ATIO2(isp, outp, ap);
    367       1.1   mjacob 		break;
    368       1.1   mjacob 	case RQSTYPE_CTIO:
    369       1.1   mjacob 		ISP_SWIZ_CTIO(isp, outp, ap);
    370       1.1   mjacob 		break;
    371       1.1   mjacob 	case RQSTYPE_CTIO2:
    372       1.1   mjacob 		ISP_SWIZ_CTIO2(isp, outp, ap);
    373       1.1   mjacob 		break;
    374       1.1   mjacob 	default:
    375       1.7   mjacob 		isp_prt(isp, ISP_LOGERR,
    376       1.7   mjacob 		    "Unknown type 0x%x in isp_put_entry", etype);
    377       1.1   mjacob 		return (-1);
    378       1.1   mjacob 	}
    379       1.1   mjacob 
    380       1.1   mjacob 	ISP_TDQE(isp, "isp_target_put_entry", (int) optr, ap);;
    381       1.1   mjacob 
    382       1.1   mjacob 	ISP_ADD_REQUEST(isp, iptr);
    383       1.1   mjacob 	return (0);
    384       1.1   mjacob }
    385       1.1   mjacob 
    386       1.1   mjacob int
    387  1.10.2.1  nathanw isp_target_put_atio(struct ispsoftc *isp, void *arg)
    388       1.1   mjacob {
    389       1.1   mjacob 	union {
    390       1.1   mjacob 		at_entry_t _atio;
    391       1.1   mjacob 		at2_entry_t _atio2;
    392       1.1   mjacob 	} atun;
    393       1.1   mjacob 
    394       1.1   mjacob 	MEMZERO(&atun, sizeof atun);
    395       1.1   mjacob 	if (IS_FC(isp)) {
    396  1.10.2.1  nathanw 		at2_entry_t *aep = arg;
    397       1.1   mjacob 		atun._atio2.at_header.rqs_entry_type = RQSTYPE_ATIO2;
    398       1.1   mjacob 		atun._atio2.at_header.rqs_entry_count = 1;
    399       1.5   mjacob 		if (isp->isp_maxluns > 16) {
    400  1.10.2.1  nathanw 			atun._atio2.at_scclun = (u_int16_t) aep->at_scclun;
    401       1.5   mjacob 		} else {
    402  1.10.2.1  nathanw 			atun._atio2.at_lun = (u_int8_t) aep->at_scclun;
    403       1.5   mjacob 		}
    404       1.1   mjacob 		atun._atio2.at_status = CT_OK;
    405       1.1   mjacob 	} else {
    406  1.10.2.1  nathanw 		at_entry_t *aep = arg;
    407       1.1   mjacob 		atun._atio.at_header.rqs_entry_type = RQSTYPE_ATIO;
    408       1.1   mjacob 		atun._atio.at_header.rqs_entry_count = 1;
    409  1.10.2.1  nathanw 		atun._atio.at_handle = aep->at_handle;
    410  1.10.2.1  nathanw 		atun._atio.at_iid = aep->at_iid;
    411  1.10.2.1  nathanw 		atun._atio.at_tgt = aep->at_tgt;
    412  1.10.2.1  nathanw 		atun._atio.at_lun = aep->at_lun;
    413  1.10.2.1  nathanw 		atun._atio.at_tag_type = aep->at_tag_type;
    414  1.10.2.1  nathanw 		atun._atio.at_tag_val = aep->at_tag_val;
    415  1.10.2.1  nathanw 		atun._atio.at_status = (aep->at_flags & AT_TQAE);
    416  1.10.2.1  nathanw 		atun._atio.at_status |= CT_OK;
    417       1.1   mjacob 	}
    418       1.1   mjacob 	return (isp_target_put_entry(isp, &atun));
    419       1.1   mjacob }
    420       1.1   mjacob 
    421       1.1   mjacob /*
    422       1.1   mjacob  * Command completion- both for handling cases of no resources or
    423       1.1   mjacob  * no blackhole driver, or other cases where we have to, inline,
    424       1.1   mjacob  * finish the command sanely, or for normal command completion.
    425       1.1   mjacob  *
    426       1.1   mjacob  * The 'completion' code value has the scsi status byte in the low 8 bits.
    427       1.1   mjacob  * If status is a CHECK CONDITION and bit 8 is nonzero, then bits 12..15 have
    428       1.1   mjacob  * the sense key and  bits 16..23 have the ASCQ and bits 24..31 have the ASC
    429       1.1   mjacob  * values.
    430       1.1   mjacob  *
    431       1.1   mjacob  * NB: the key, asc, ascq, cannot be used for parallel SCSI as it doesn't
    432  1.10.2.1  nathanw  * NB: inline SCSI sense reporting. As such, we lose this information. XXX.
    433       1.1   mjacob  *
    434       1.1   mjacob  * For both parallel && fibre channel, we use the feature that does
    435       1.1   mjacob  * an automatic resource autoreplenish so we don't have then later do
    436       1.1   mjacob  * put of an atio to replenish the f/w's resource count.
    437       1.1   mjacob  */
    438       1.1   mjacob 
    439       1.1   mjacob int
    440  1.10.2.1  nathanw isp_endcmd(struct ispsoftc *isp, void *arg, u_int32_t code, u_int16_t hdl)
    441       1.1   mjacob {
    442       1.1   mjacob 	int sts;
    443       1.1   mjacob 	union {
    444       1.1   mjacob 		ct_entry_t _ctio;
    445       1.1   mjacob 		ct2_entry_t _ctio2;
    446       1.1   mjacob 	} un;
    447       1.1   mjacob 
    448       1.1   mjacob 	MEMZERO(&un, sizeof un);
    449       1.1   mjacob 	sts = code & 0xff;
    450       1.1   mjacob 
    451       1.1   mjacob 	if (IS_FC(isp)) {
    452       1.1   mjacob 		at2_entry_t *aep = arg;
    453       1.1   mjacob 		ct2_entry_t *cto = &un._ctio2;
    454       1.1   mjacob 
    455       1.1   mjacob 		cto->ct_header.rqs_entry_type = RQSTYPE_CTIO2;
    456       1.1   mjacob 		cto->ct_header.rqs_entry_count = 1;
    457       1.1   mjacob 		cto->ct_iid = aep->at_iid;
    458       1.5   mjacob 		if (isp->isp_maxluns <= 16) {
    459       1.5   mjacob 			cto->ct_lun = aep->at_lun;
    460       1.5   mjacob 		}
    461       1.1   mjacob 		cto->ct_rxid = aep->at_rxid;
    462       1.2   mjacob 		cto->rsp.m1.ct_scsi_status = sts & 0xff;
    463       1.1   mjacob 		cto->ct_flags = CT2_SENDSTATUS | CT2_NO_DATA | CT2_FLAG_MODE1;
    464       1.1   mjacob 		if (hdl == 0) {
    465       1.1   mjacob 			cto->ct_flags |= CT2_CCINCR;
    466       1.1   mjacob 		}
    467       1.1   mjacob 		if (aep->at_datalen) {
    468       1.1   mjacob 			cto->ct_resid = aep->at_datalen;
    469  1.10.2.2  nathanw 			cto->rsp.m1.ct_scsi_status |= CT2_DATA_UNDER;
    470       1.1   mjacob 		}
    471       1.2   mjacob 		if ((sts & 0xff) == SCSI_CHECK && (sts & ECMD_SVALID)) {
    472       1.1   mjacob 			cto->rsp.m1.ct_resp[0] = 0xf0;
    473       1.1   mjacob 			cto->rsp.m1.ct_resp[2] = (code >> 12) & 0xf;
    474       1.1   mjacob 			cto->rsp.m1.ct_resp[7] = 8;
    475       1.1   mjacob 			cto->rsp.m1.ct_resp[12] = (code >> 24) & 0xff;
    476       1.1   mjacob 			cto->rsp.m1.ct_resp[13] = (code >> 16) & 0xff;
    477       1.1   mjacob 			cto->rsp.m1.ct_senselen = 16;
    478  1.10.2.2  nathanw 			cto->rsp.m1.ct_scsi_status |= CT2_SNSLEN_VALID;
    479       1.1   mjacob 		}
    480  1.10.2.1  nathanw 		cto->ct_syshandle = hdl;
    481       1.1   mjacob 	} else {
    482       1.1   mjacob 		at_entry_t *aep = arg;
    483       1.1   mjacob 		ct_entry_t *cto = &un._ctio;
    484       1.1   mjacob 
    485       1.1   mjacob 		cto->ct_header.rqs_entry_type = RQSTYPE_CTIO;
    486       1.1   mjacob 		cto->ct_header.rqs_entry_count = 1;
    487  1.10.2.1  nathanw 		cto->ct_fwhandle = aep->at_handle;
    488       1.1   mjacob 		cto->ct_iid = aep->at_iid;
    489       1.1   mjacob 		cto->ct_tgt = aep->at_tgt;
    490       1.1   mjacob 		cto->ct_lun = aep->at_lun;
    491       1.1   mjacob 		cto->ct_tag_type = aep->at_tag_type;
    492       1.1   mjacob 		cto->ct_tag_val = aep->at_tag_val;
    493  1.10.2.1  nathanw 		if (aep->at_flags & AT_TQAE) {
    494  1.10.2.1  nathanw 			cto->ct_flags |= CT_TQAE;
    495  1.10.2.1  nathanw 		}
    496       1.1   mjacob 		cto->ct_flags = CT_SENDSTATUS | CT_NO_DATA;
    497       1.1   mjacob 		if (hdl == 0) {
    498       1.1   mjacob 			cto->ct_flags |= CT_CCINCR;
    499       1.1   mjacob 		}
    500       1.1   mjacob 		cto->ct_scsi_status = sts;
    501  1.10.2.1  nathanw 		cto->ct_syshandle = hdl;
    502       1.1   mjacob 	}
    503       1.1   mjacob 	return (isp_target_put_entry(isp, &un));
    504       1.1   mjacob }
    505       1.1   mjacob 
    506       1.1   mjacob void
    507  1.10.2.1  nathanw isp_target_async(struct ispsoftc *isp, int bus, int event)
    508       1.1   mjacob {
    509       1.1   mjacob 	tmd_event_t evt;
    510       1.1   mjacob 	tmd_msg_t msg;
    511       1.1   mjacob 
    512       1.1   mjacob 	switch (event) {
    513       1.1   mjacob 	/*
    514       1.1   mjacob 	 * These three we handle here to propagate an effective bus reset
    515       1.1   mjacob 	 * upstream, but these do not require any immediate notify actions
    516       1.1   mjacob 	 * so we return when done.
    517       1.1   mjacob 	 */
    518       1.1   mjacob 	case ASYNC_LIP_OCCURRED:
    519       1.1   mjacob 	case ASYNC_LOOP_UP:
    520       1.1   mjacob 	case ASYNC_LOOP_DOWN:
    521       1.1   mjacob 		evt.ev_bus = bus;
    522       1.1   mjacob 		evt.ev_event = event;
    523       1.1   mjacob 		(void) isp_async(isp, ISPASYNC_TARGET_EVENT, &evt);
    524       1.1   mjacob 		return;
    525       1.1   mjacob 
    526       1.1   mjacob 	case ASYNC_LOOP_RESET:
    527       1.1   mjacob 	case ASYNC_BUS_RESET:
    528       1.1   mjacob 	case ASYNC_TIMEOUT_RESET:
    529       1.1   mjacob 		if (IS_FC(isp)) {
    530       1.1   mjacob 			return;	/* we'll be getting an inotify instead */
    531       1.1   mjacob 		}
    532       1.1   mjacob 		evt.ev_bus = bus;
    533       1.1   mjacob 		evt.ev_event = event;
    534       1.1   mjacob 		(void) isp_async(isp, ISPASYNC_TARGET_EVENT, &evt);
    535       1.1   mjacob 		break;
    536       1.1   mjacob 	case ASYNC_DEVICE_RESET:
    537       1.1   mjacob 		/*
    538       1.1   mjacob 		 * Bus Device Reset resets a specific target, so
    539       1.1   mjacob 		 * we pass this as a synthesized message.
    540       1.1   mjacob 		 */
    541       1.1   mjacob 		MEMZERO(&msg, sizeof msg);
    542       1.1   mjacob 		if (IS_FC(isp)) {
    543       1.8   mjacob 			msg.nt_iid = FCPARAM(isp)->isp_loopid;
    544       1.1   mjacob 		} else {
    545       1.8   mjacob 			msg.nt_iid = SDPARAM(isp)->isp_initiator_id;
    546       1.1   mjacob 		}
    547       1.1   mjacob 		msg.nt_bus = bus;
    548       1.1   mjacob 		msg.nt_msg[0] = MSG_BUS_DEV_RESET;
    549       1.1   mjacob 		(void) isp_async(isp, ISPASYNC_TARGET_MESSAGE, &msg);
    550       1.1   mjacob 		break;
    551       1.1   mjacob 	default:
    552       1.7   mjacob 		isp_prt(isp, ISP_LOGERR,
    553       1.7   mjacob 		    "isp_target_async: unknown event 0x%x", event);
    554       1.1   mjacob 		break;
    555       1.1   mjacob 	}
    556       1.6   mjacob 	if (isp->isp_state == ISP_RUNSTATE)
    557       1.6   mjacob 		isp_notify_ack(isp, NULL);
    558       1.1   mjacob }
    559       1.1   mjacob 
    560       1.1   mjacob 
    561       1.1   mjacob /*
    562       1.1   mjacob  * Process a received message.
    563       1.1   mjacob  * The ISP firmware can handle most messages, there are only
    564       1.1   mjacob  * a few that we need to deal with:
    565       1.1   mjacob  * - abort: clean up the current command
    566       1.1   mjacob  * - abort tag and clear queue
    567       1.1   mjacob  */
    568       1.1   mjacob 
    569       1.1   mjacob static void
    570  1.10.2.1  nathanw isp_got_msg(struct ispsoftc *isp, int bus, in_entry_t *inp)
    571       1.1   mjacob {
    572       1.1   mjacob 	u_int8_t status = inp->in_status & ~QLTM_SVALID;
    573       1.1   mjacob 
    574       1.1   mjacob 	if (status == IN_IDE_RECEIVED || status == IN_MSG_RECEIVED) {
    575       1.1   mjacob 		tmd_msg_t msg;
    576       1.1   mjacob 
    577       1.1   mjacob 		MEMZERO(&msg, sizeof (msg));
    578       1.1   mjacob 		msg.nt_bus = bus;
    579       1.1   mjacob 		msg.nt_iid = inp->in_iid;
    580       1.1   mjacob 		msg.nt_tgt = inp->in_tgt;
    581       1.1   mjacob 		msg.nt_lun = inp->in_lun;
    582       1.1   mjacob 		msg.nt_tagtype = inp->in_tag_type;
    583       1.1   mjacob 		msg.nt_tagval = inp->in_tag_val;
    584       1.1   mjacob 		MEMCPY(msg.nt_msg, inp->in_msg, IN_MSGLEN);
    585       1.1   mjacob 		(void) isp_async(isp, ISPASYNC_TARGET_MESSAGE, &msg);
    586       1.1   mjacob 	} else {
    587       1.7   mjacob 		isp_prt(isp, ISP_LOGERR,
    588       1.7   mjacob 		    "unknown immediate notify status 0x%x", inp->in_status);
    589       1.1   mjacob 	}
    590       1.1   mjacob }
    591       1.1   mjacob 
    592       1.1   mjacob /*
    593       1.1   mjacob  * Synthesize a message from the task management flags in a FCP_CMND_IU.
    594       1.1   mjacob  */
    595       1.1   mjacob static void
    596  1.10.2.1  nathanw isp_got_msg_fc(struct ispsoftc *isp, int bus, in_fcentry_t *inp)
    597       1.1   mjacob {
    598  1.10.2.1  nathanw 	static const char f1[] = "%s from iid %d lun %d seq 0x%x";
    599  1.10.2.1  nathanw 	static const char f2[] =
    600       1.7   mjacob 	    "unknown %s 0x%x lun %d iid %d task flags 0x%x seq 0x%x\n";
    601       1.1   mjacob 
    602       1.1   mjacob 	if (inp->in_status != IN_MSG_RECEIVED) {
    603       1.7   mjacob 		isp_prt(isp, ISP_LOGINFO, f2, "immediate notify status",
    604       1.1   mjacob 		    inp->in_status, inp->in_lun, inp->in_iid,
    605       1.1   mjacob 		    inp->in_task_flags,  inp->in_seqid);
    606       1.1   mjacob 	} else {
    607       1.1   mjacob 		tmd_msg_t msg;
    608       1.1   mjacob 
    609       1.1   mjacob 		MEMZERO(&msg, sizeof (msg));
    610       1.1   mjacob 		msg.nt_bus = bus;
    611       1.1   mjacob 		msg.nt_iid = inp->in_iid;
    612       1.5   mjacob 		if (isp->isp_maxluns > 16) {
    613       1.5   mjacob 			msg.nt_lun = inp->in_scclun;
    614       1.5   mjacob 		} else {
    615       1.5   mjacob 			msg.nt_lun = inp->in_lun;
    616       1.5   mjacob 		}
    617       1.1   mjacob 		msg.nt_tagval = inp->in_seqid;
    618       1.1   mjacob 
    619       1.1   mjacob 		if (inp->in_task_flags & TASK_FLAGS_ABORT_TASK) {
    620       1.7   mjacob 			isp_prt(isp, ISP_LOGINFO, f1, "ABORT TASK",
    621       1.1   mjacob 			    inp->in_iid, inp->in_lun, inp->in_seqid);
    622       1.1   mjacob 			msg.nt_msg[0] = MSG_ABORT_TAG;
    623       1.1   mjacob 		} else if (inp->in_task_flags & TASK_FLAGS_CLEAR_TASK_SET) {
    624       1.7   mjacob 			isp_prt(isp, ISP_LOGINFO, f1, "CLEAR TASK SET",
    625       1.1   mjacob 			    inp->in_iid, inp->in_lun, inp->in_seqid);
    626       1.1   mjacob 			msg.nt_msg[0] = MSG_CLEAR_QUEUE;
    627       1.1   mjacob 		} else if (inp->in_task_flags & TASK_FLAGS_TARGET_RESET) {
    628       1.7   mjacob 			isp_prt(isp, ISP_LOGINFO, f1, "TARGET RESET",
    629       1.1   mjacob 			    inp->in_iid, inp->in_lun, inp->in_seqid);
    630       1.1   mjacob 			msg.nt_msg[0] = MSG_BUS_DEV_RESET;
    631       1.1   mjacob 		} else if (inp->in_task_flags & TASK_FLAGS_CLEAR_ACA) {
    632       1.7   mjacob 			isp_prt(isp, ISP_LOGINFO, f1, "CLEAR ACA",
    633       1.1   mjacob 			    inp->in_iid, inp->in_lun, inp->in_seqid);
    634       1.1   mjacob 			/* ???? */
    635       1.1   mjacob 			msg.nt_msg[0] = MSG_REL_RECOVERY;
    636       1.1   mjacob 		} else if (inp->in_task_flags & TASK_FLAGS_TERMINATE_TASK) {
    637       1.7   mjacob 			isp_prt(isp, ISP_LOGINFO, f1, "TERMINATE TASK",
    638       1.1   mjacob 			    inp->in_iid, inp->in_lun, inp->in_seqid);
    639       1.1   mjacob 			msg.nt_msg[0] = MSG_TERM_IO_PROC;
    640       1.1   mjacob 		} else {
    641       1.7   mjacob 			isp_prt(isp, ISP_LOGWARN, f2, "task flag",
    642       1.1   mjacob 			    inp->in_status, inp->in_lun, inp->in_iid,
    643       1.1   mjacob 			    inp->in_task_flags,  inp->in_seqid);
    644       1.1   mjacob 		}
    645       1.1   mjacob 		if (msg.nt_msg[0]) {
    646       1.1   mjacob 			(void) isp_async(isp, ISPASYNC_TARGET_MESSAGE, &msg);
    647       1.1   mjacob 		}
    648       1.1   mjacob 	}
    649       1.1   mjacob }
    650       1.1   mjacob 
    651       1.1   mjacob static void
    652  1.10.2.1  nathanw isp_notify_ack(struct ispsoftc *isp, void *arg)
    653       1.1   mjacob {
    654       1.1   mjacob 	char storage[QENTRY_LEN];
    655       1.1   mjacob 	u_int16_t iptr, optr;
    656       1.1   mjacob 	void *outp;
    657       1.1   mjacob 
    658       1.1   mjacob 	if (isp_getrqentry(isp, &iptr, &optr, &outp)) {
    659       1.7   mjacob 		isp_prt(isp, ISP_LOGWARN,
    660       1.7   mjacob 		    "Request Queue Overflow For isp_notify_ack");
    661       1.1   mjacob 		return;
    662       1.1   mjacob 	}
    663       1.1   mjacob 
    664       1.2   mjacob 	MEMZERO(storage, QENTRY_LEN);
    665       1.1   mjacob 
    666       1.1   mjacob 	if (IS_FC(isp)) {
    667       1.1   mjacob 		na_fcentry_t *na = (na_fcentry_t *) storage;
    668       1.1   mjacob 		if (arg) {
    669       1.1   mjacob 			in_fcentry_t *inp = arg;
    670       1.2   mjacob 			MEMCPY(storage, arg, sizeof (isphdr_t));
    671       1.1   mjacob 			na->na_iid = inp->in_iid;
    672       1.5   mjacob 			if (isp->isp_maxluns > 16) {
    673       1.5   mjacob 				na->na_lun = inp->in_scclun;
    674       1.5   mjacob 			} else {
    675       1.5   mjacob 				na->na_lun = inp->in_lun;
    676       1.5   mjacob 			}
    677       1.1   mjacob 			na->na_task_flags = inp->in_task_flags;
    678       1.1   mjacob 			na->na_seqid = inp->in_seqid;
    679       1.1   mjacob 			na->na_flags = NAFC_RCOUNT;
    680       1.1   mjacob 			if (inp->in_status == IN_RESET) {
    681       1.1   mjacob 				na->na_flags |= NAFC_RST_CLRD;
    682       1.1   mjacob 			}
    683       1.1   mjacob 		} else {
    684       1.1   mjacob 			na->na_flags = NAFC_RST_CLRD;
    685       1.1   mjacob 		}
    686       1.4       he 		na->na_header.rqs_entry_type = RQSTYPE_NOTIFY_ACK;
    687       1.4       he 		na->na_header.rqs_entry_count = 1;
    688       1.1   mjacob 		ISP_SWIZ_NOT_ACK_FC(isp, outp, na);
    689       1.1   mjacob 	} else {
    690       1.1   mjacob 		na_entry_t *na = (na_entry_t *) storage;
    691       1.1   mjacob 		if (arg) {
    692       1.1   mjacob 			in_entry_t *inp = arg;
    693       1.2   mjacob 			MEMCPY(storage, arg, sizeof (isphdr_t));
    694       1.1   mjacob 			na->na_iid = inp->in_iid;
    695       1.1   mjacob 			na->na_lun = inp->in_lun;
    696       1.1   mjacob 			na->na_tgt = inp->in_tgt;
    697       1.1   mjacob 			na->na_seqid = inp->in_seqid;
    698       1.1   mjacob 			if (inp->in_status == IN_RESET) {
    699       1.4       he 				na->na_event = NA_RST_CLRD;
    700       1.1   mjacob 			}
    701       1.1   mjacob 		} else {
    702       1.4       he 			na->na_event = NA_RST_CLRD;
    703       1.1   mjacob 		}
    704       1.4       he 		na->na_header.rqs_entry_type = RQSTYPE_NOTIFY_ACK;
    705       1.4       he 		na->na_header.rqs_entry_count = 1;
    706       1.1   mjacob 		ISP_SWIZ_NOT_ACK(isp, outp, na);
    707       1.1   mjacob 	}
    708       1.1   mjacob 	ISP_TDQE(isp, "isp_notify_ack", (int) optr, storage);
    709       1.1   mjacob 	ISP_ADD_REQUEST(isp, iptr);
    710       1.1   mjacob }
    711       1.1   mjacob 
    712       1.1   mjacob static void
    713  1.10.2.1  nathanw isp_handle_atio(struct ispsoftc *isp, at_entry_t *aep)
    714       1.1   mjacob {
    715       1.1   mjacob 	int lun;
    716       1.1   mjacob 	lun = aep->at_lun;
    717       1.1   mjacob 	/*
    718       1.1   mjacob 	 * The firmware status (except for the QLTM_SVALID bit) indicates
    719       1.1   mjacob 	 * why this ATIO was sent to us.
    720       1.1   mjacob 	 *
    721       1.1   mjacob 	 * If QLTM_SVALID is set, the firware has recommended Sense Data.
    722       1.1   mjacob 	 *
    723       1.1   mjacob 	 * If the DISCONNECTS DISABLED bit is set in the flags field,
    724       1.1   mjacob 	 * we're still connected on the SCSI bus - i.e. the initiator
    725       1.1   mjacob 	 * did not set DiscPriv in the identify message. We don't care
    726       1.1   mjacob 	 * about this so it's ignored.
    727       1.1   mjacob 	 */
    728       1.1   mjacob 
    729       1.1   mjacob 	switch(aep->at_status & ~QLTM_SVALID) {
    730       1.1   mjacob 	case AT_PATH_INVALID:
    731       1.1   mjacob 		/*
    732       1.1   mjacob 		 * ATIO rejected by the firmware due to disabled lun.
    733       1.1   mjacob 		 */
    734       1.7   mjacob 		isp_prt(isp, ISP_LOGERR,
    735       1.7   mjacob 		    "rejected ATIO for disabled lun %d", lun);
    736       1.1   mjacob 		break;
    737       1.1   mjacob 	case AT_NOCAP:
    738       1.1   mjacob 		/*
    739       1.1   mjacob 		 * Requested Capability not available
    740       1.1   mjacob 		 * We sent an ATIO that overflowed the firmware's
    741       1.1   mjacob 		 * command resource count.
    742       1.1   mjacob 		 */
    743       1.7   mjacob 		isp_prt(isp, ISP_LOGERR,
    744       1.7   mjacob 		    "rejected ATIO for lun %d because of command count"
    745       1.7   mjacob 		    " overflow", lun);
    746       1.1   mjacob 		break;
    747       1.1   mjacob 
    748       1.1   mjacob 	case AT_BDR_MSG:
    749       1.1   mjacob 		/*
    750       1.1   mjacob 		 * If we send an ATIO to the firmware to increment
    751       1.1   mjacob 		 * its command resource count, and the firmware is
    752       1.1   mjacob 		 * recovering from a Bus Device Reset, it returns
    753       1.1   mjacob 		 * the ATIO with this status. We set the command
    754       1.1   mjacob 		 * resource count in the Enable Lun entry and no
    755       1.1   mjacob 		 * not increment it. Therefore we should never get
    756       1.1   mjacob 		 * this status here.
    757       1.1   mjacob 		 */
    758       1.7   mjacob 		isp_prt(isp, ISP_LOGERR, atiocope, lun);
    759       1.1   mjacob 		break;
    760       1.1   mjacob 
    761       1.1   mjacob 	case AT_CDB:		/* Got a CDB */
    762       1.1   mjacob 	case AT_PHASE_ERROR:	/* Bus Phase Sequence Error */
    763       1.1   mjacob 		/*
    764       1.1   mjacob 		 * Punt to platform specific layer.
    765       1.1   mjacob 		 */
    766       1.1   mjacob 		(void) isp_async(isp, ISPASYNC_TARGET_ACTION, aep);
    767       1.1   mjacob 		break;
    768       1.1   mjacob 
    769       1.1   mjacob 	case AT_RESET:
    770       1.1   mjacob 		/*
    771       1.1   mjacob 		 * A bus reset came along an blew away this command. Why
    772       1.1   mjacob 		 * they do this in addition the async event code stuff,
    773       1.1   mjacob 		 * I dunno.
    774       1.1   mjacob 		 *
    775       1.1   mjacob 		 * Ignore it because the async event will clear things
    776       1.1   mjacob 		 * up for us.
    777       1.1   mjacob 		 */
    778       1.7   mjacob 		isp_prt(isp, ISP_LOGWARN, atior, lun, aep->at_iid);
    779       1.1   mjacob 		break;
    780       1.1   mjacob 
    781       1.1   mjacob 
    782       1.1   mjacob 	default:
    783       1.7   mjacob 		isp_prt(isp, ISP_LOGERR,
    784       1.7   mjacob 		    "Unknown ATIO status 0x%x from initiator %d for lun %d",
    785       1.7   mjacob 		    aep->at_status, aep->at_iid, lun);
    786  1.10.2.1  nathanw 		(void) isp_target_put_atio(isp, aep);
    787       1.1   mjacob 		break;
    788       1.1   mjacob 	}
    789       1.1   mjacob }
    790       1.1   mjacob 
    791       1.1   mjacob static void
    792  1.10.2.1  nathanw isp_handle_atio2(struct ispsoftc *isp, at2_entry_t *aep)
    793       1.1   mjacob {
    794       1.1   mjacob 	int lun;
    795       1.5   mjacob 
    796       1.5   mjacob 	if (isp->isp_maxluns > 16) {
    797       1.5   mjacob 		lun = aep->at_scclun;
    798       1.5   mjacob 	} else {
    799       1.5   mjacob 		lun = aep->at_lun;
    800       1.5   mjacob 	}
    801       1.5   mjacob 
    802       1.1   mjacob 	/*
    803       1.1   mjacob 	 * The firmware status (except for the QLTM_SVALID bit) indicates
    804       1.1   mjacob 	 * why this ATIO was sent to us.
    805       1.1   mjacob 	 *
    806       1.1   mjacob 	 * If QLTM_SVALID is set, the firware has recommended Sense Data.
    807       1.1   mjacob 	 *
    808       1.1   mjacob 	 * If the DISCONNECTS DISABLED bit is set in the flags field,
    809       1.1   mjacob 	 * we're still connected on the SCSI bus - i.e. the initiator
    810       1.1   mjacob 	 * did not set DiscPriv in the identify message. We don't care
    811       1.1   mjacob 	 * about this so it's ignored.
    812       1.1   mjacob 	 */
    813       1.1   mjacob 
    814       1.1   mjacob 	switch(aep->at_status & ~QLTM_SVALID) {
    815       1.1   mjacob 	case AT_PATH_INVALID:
    816       1.1   mjacob 		/*
    817       1.1   mjacob 		 * ATIO rejected by the firmware due to disabled lun.
    818       1.1   mjacob 		 */
    819       1.7   mjacob 		isp_prt(isp, ISP_LOGERR,
    820       1.7   mjacob 		    "rejected ATIO2 for disabled lun %d", lun);
    821       1.1   mjacob 		break;
    822       1.1   mjacob 	case AT_NOCAP:
    823       1.1   mjacob 		/*
    824       1.1   mjacob 		 * Requested Capability not available
    825       1.1   mjacob 		 * We sent an ATIO that overflowed the firmware's
    826       1.1   mjacob 		 * command resource count.
    827       1.1   mjacob 		 */
    828       1.7   mjacob 		isp_prt(isp, ISP_LOGERR,
    829       1.7   mjacob 		    "rejected ATIO2 for lun %d- command count overflow", lun);
    830       1.1   mjacob 		break;
    831       1.1   mjacob 
    832       1.1   mjacob 	case AT_BDR_MSG:
    833       1.1   mjacob 		/*
    834       1.1   mjacob 		 * If we send an ATIO to the firmware to increment
    835       1.1   mjacob 		 * its command resource count, and the firmware is
    836       1.1   mjacob 		 * recovering from a Bus Device Reset, it returns
    837       1.1   mjacob 		 * the ATIO with this status. We set the command
    838       1.1   mjacob 		 * resource count in the Enable Lun entry and no
    839       1.1   mjacob 		 * not increment it. Therefore we should never get
    840       1.1   mjacob 		 * this status here.
    841       1.1   mjacob 		 */
    842       1.7   mjacob 		isp_prt(isp, ISP_LOGERR, atiocope, lun);
    843       1.1   mjacob 		break;
    844       1.1   mjacob 
    845       1.1   mjacob 	case AT_CDB:		/* Got a CDB */
    846       1.1   mjacob 		/*
    847       1.1   mjacob 		 * Punt to platform specific layer.
    848       1.1   mjacob 		 */
    849       1.1   mjacob 		(void) isp_async(isp, ISPASYNC_TARGET_ACTION, aep);
    850       1.1   mjacob 		break;
    851       1.1   mjacob 
    852       1.1   mjacob 	case AT_RESET:
    853       1.1   mjacob 		/*
    854       1.1   mjacob 		 * A bus reset came along an blew away this command. Why
    855       1.1   mjacob 		 * they do this in addition the async event code stuff,
    856       1.1   mjacob 		 * I dunno.
    857       1.1   mjacob 		 *
    858       1.1   mjacob 		 * Ignore it because the async event will clear things
    859       1.1   mjacob 		 * up for us.
    860       1.1   mjacob 		 */
    861       1.7   mjacob 		isp_prt(isp, ISP_LOGERR, atior, lun, aep->at_iid);
    862       1.1   mjacob 		break;
    863       1.1   mjacob 
    864       1.1   mjacob 
    865       1.1   mjacob 	default:
    866       1.7   mjacob 		isp_prt(isp, ISP_LOGERR,
    867       1.7   mjacob 		    "Unknown ATIO2 status 0x%x from initiator %d for lun %d",
    868       1.7   mjacob 		    aep->at_status, aep->at_iid, lun);
    869  1.10.2.1  nathanw 		(void) isp_target_put_atio(isp, aep);
    870       1.1   mjacob 		break;
    871       1.1   mjacob 	}
    872       1.1   mjacob }
    873       1.1   mjacob 
    874       1.1   mjacob static void
    875  1.10.2.1  nathanw isp_handle_ctio(struct ispsoftc *isp, ct_entry_t *ct)
    876       1.1   mjacob {
    877  1.10.2.1  nathanw 	void *xs;
    878       1.7   mjacob 	int pl = ISP_LOGTDEBUG2;
    879       1.1   mjacob 	char *fmsg = NULL;
    880       1.1   mjacob 
    881  1.10.2.1  nathanw 	if (ct->ct_syshandle) {
    882  1.10.2.1  nathanw 		xs = isp_find_xs(isp, ct->ct_syshandle);
    883       1.1   mjacob 		if (xs == NULL)
    884       1.7   mjacob 			pl = ISP_LOGALL;
    885       1.1   mjacob 	} else {
    886       1.1   mjacob 		xs = NULL;
    887       1.1   mjacob 	}
    888       1.1   mjacob 
    889       1.1   mjacob 	switch(ct->ct_status & ~QLTM_SVALID) {
    890       1.1   mjacob 	case CT_OK:
    891       1.1   mjacob 		/*
    892       1.1   mjacob 		 * There are generally 3 possibilities as to why we'd get
    893       1.1   mjacob 		 * this condition:
    894       1.1   mjacob 		 * 	We disconnected after receiving a CDB.
    895       1.1   mjacob 		 * 	We sent or received data.
    896       1.1   mjacob 		 * 	We sent status & command complete.
    897       1.1   mjacob 		 */
    898       1.1   mjacob 
    899       1.4       he 		if (ct->ct_flags & CT_SENDSTATUS) {
    900       1.4       he 			break;
    901       1.4       he 		} else if ((ct->ct_flags & CT_DATAMASK) == CT_NO_DATA) {
    902       1.1   mjacob 			/*
    903       1.1   mjacob 			 * Nothing to do in this case.
    904       1.1   mjacob 			 */
    905       1.7   mjacob 			isp_prt(isp, pl, "CTIO- iid %d disconnected OK",
    906       1.7   mjacob 			    ct->ct_iid);
    907       1.1   mjacob 			return;
    908       1.1   mjacob 		}
    909       1.1   mjacob 		break;
    910       1.1   mjacob 
    911       1.1   mjacob 	case CT_BDR_MSG:
    912       1.1   mjacob 		/*
    913       1.1   mjacob 		 * Bus Device Reset message received or the SCSI Bus has
    914       1.1   mjacob 		 * been Reset; the firmware has gone to Bus Free.
    915       1.1   mjacob 		 *
    916       1.1   mjacob 		 * The firmware generates an async mailbox interupt to
    917       1.1   mjacob 		 * notify us of this and returns outstanding CTIOs with this
    918       1.1   mjacob 		 * status. These CTIOs are handled in that same way as
    919       1.1   mjacob 		 * CT_ABORTED ones, so just fall through here.
    920       1.1   mjacob 		 */
    921       1.1   mjacob 		fmsg = "Bus Device Reset";
    922       1.1   mjacob 		/*FALLTHROUGH*/
    923       1.1   mjacob 	case CT_RESET:
    924       1.1   mjacob 		if (fmsg == NULL)
    925       1.1   mjacob 			fmsg = "Bus Reset";
    926       1.1   mjacob 		/*FALLTHROUGH*/
    927       1.1   mjacob 	case CT_ABORTED:
    928       1.1   mjacob 		/*
    929       1.1   mjacob 		 * When an Abort message is received the firmware goes to
    930       1.1   mjacob 		 * Bus Free and returns all outstanding CTIOs with the status
    931       1.1   mjacob 		 * set, then sends us an Immediate Notify entry.
    932       1.1   mjacob 		 */
    933       1.1   mjacob 		if (fmsg == NULL)
    934       1.1   mjacob 			fmsg = "ABORT TASK sent by Initiator";
    935       1.1   mjacob 
    936       1.7   mjacob 		isp_prt(isp, ISP_LOGWARN, "CTIO destroyed by %s", fmsg);
    937       1.1   mjacob 		break;
    938       1.1   mjacob 
    939       1.1   mjacob 	case CT_INVAL:
    940       1.1   mjacob 		/*
    941       1.1   mjacob 		 * CTIO rejected by the firmware due to disabled lun.
    942       1.1   mjacob 		 * "Cannot Happen".
    943       1.1   mjacob 		 */
    944       1.7   mjacob 		isp_prt(isp, ISP_LOGERR,
    945       1.7   mjacob 		    "Firmware rejected CTIO for disabled lun %d",
    946       1.7   mjacob 		    ct->ct_lun);
    947       1.1   mjacob 		break;
    948       1.1   mjacob 
    949       1.1   mjacob 	case CT_NOPATH:
    950       1.1   mjacob 		/*
    951       1.1   mjacob 		 * CTIO rejected by the firmware due "no path for the
    952       1.1   mjacob 		 * nondisconnecting nexus specified". This means that
    953       1.1   mjacob 		 * we tried to access the bus while a non-disconnecting
    954       1.1   mjacob 		 * command is in process.
    955       1.1   mjacob 		 */
    956       1.7   mjacob 		isp_prt(isp, ISP_LOGERR,
    957       1.7   mjacob 		    "Firmware rejected CTIO for bad nexus %d/%d/%d",
    958       1.7   mjacob 		    ct->ct_iid, ct->ct_tgt, ct->ct_lun);
    959       1.1   mjacob 		break;
    960       1.1   mjacob 
    961       1.1   mjacob 	case CT_RSELTMO:
    962       1.1   mjacob 		fmsg = "Reselection";
    963       1.1   mjacob 		/*FALLTHROUGH*/
    964       1.1   mjacob 	case CT_TIMEOUT:
    965       1.1   mjacob 		if (fmsg == NULL)
    966       1.1   mjacob 			fmsg = "Command";
    967       1.7   mjacob 		isp_prt(isp, ISP_LOGERR, "Firmware timed out on %s", fmsg);
    968       1.1   mjacob 		break;
    969       1.1   mjacob 
    970  1.10.2.1  nathanw 	case	CT_PANIC:
    971  1.10.2.1  nathanw 		if (fmsg == NULL)
    972  1.10.2.1  nathanw 			fmsg = "Unrecoverable Error";
    973  1.10.2.1  nathanw 		/*FALLTHROUGH*/
    974       1.1   mjacob 	case CT_ERR:
    975  1.10.2.1  nathanw 		if (fmsg == NULL)
    976  1.10.2.1  nathanw 			fmsg = "Completed with Error";
    977       1.1   mjacob 		/*FALLTHROUGH*/
    978       1.1   mjacob 	case CT_PHASE_ERROR:
    979       1.1   mjacob 		if (fmsg == NULL)
    980       1.1   mjacob 			fmsg = "Phase Sequence Error";
    981       1.1   mjacob 		/*FALLTHROUGH*/
    982       1.1   mjacob 	case CT_TERMINATED:
    983       1.1   mjacob 		if (fmsg == NULL)
    984       1.1   mjacob 			fmsg = "terminated by TERMINATE TRANSFER";
    985       1.1   mjacob 		/*FALLTHROUGH*/
    986       1.1   mjacob 	case CT_NOACK:
    987       1.1   mjacob 		if (fmsg == NULL)
    988       1.1   mjacob 			fmsg = "unacknowledged Immediate Notify pending";
    989       1.7   mjacob 		isp_prt(isp, ISP_LOGERR, "CTIO returned by f/w- %s", fmsg);
    990       1.1   mjacob 		break;
    991       1.1   mjacob 	default:
    992       1.7   mjacob 		isp_prt(isp, ISP_LOGERR, "Unknown CTIO status 0x%x",
    993       1.1   mjacob 		    ct->ct_status & ~QLTM_SVALID);
    994       1.1   mjacob 		break;
    995       1.1   mjacob 	}
    996       1.1   mjacob 
    997       1.1   mjacob 	if (xs == NULL) {
    998       1.1   mjacob 		/*
    999       1.1   mjacob 		 * There may be more than one CTIO for a data transfer,
   1000       1.1   mjacob 		 * or this may be a status CTIO we're not monitoring.
   1001       1.1   mjacob 		 *
   1002       1.1   mjacob 		 * The assumption is that they'll all be returned in the
   1003       1.1   mjacob 		 * order we got them.
   1004       1.1   mjacob 		 */
   1005  1.10.2.1  nathanw 		if (ct->ct_syshandle == 0) {
   1006       1.1   mjacob 			if ((ct->ct_flags & CT_SENDSTATUS) == 0) {
   1007       1.7   mjacob 				isp_prt(isp, pl,
   1008       1.7   mjacob 				    "intermediate CTIO completed ok");
   1009       1.1   mjacob 			} else {
   1010       1.7   mjacob 				isp_prt(isp, pl,
   1011       1.7   mjacob 				    "unmonitored CTIO completed ok");
   1012       1.1   mjacob 			}
   1013       1.1   mjacob 		} else {
   1014       1.7   mjacob 			isp_prt(isp, pl,
   1015       1.7   mjacob 			    "NO xs for CTIO (handle 0x%x) status 0x%x",
   1016  1.10.2.1  nathanw 			    ct->ct_syshandle, ct->ct_status & ~QLTM_SVALID);
   1017       1.1   mjacob 		}
   1018       1.1   mjacob 	} else {
   1019  1.10.2.2  nathanw 		/*
   1020  1.10.2.2  nathanw 		 * Final CTIO completed. Release DMA resources and
   1021  1.10.2.2  nathanw 		 * notify platform dependent layers.
   1022  1.10.2.2  nathanw 		 */
   1023  1.10.2.2  nathanw 		if ((ct->ct_flags & CT_DATAMASK) != CT_NO_DATA) {
   1024  1.10.2.1  nathanw 			ISP_DMAFREE(isp, xs, ct->ct_syshandle);
   1025       1.1   mjacob 		}
   1026  1.10.2.1  nathanw 		isp_prt(isp, pl, "final CTIO complete");
   1027       1.1   mjacob 		/*
   1028       1.1   mjacob 		 * The platform layer will destroy the handle if appropriate.
   1029       1.1   mjacob 		 */
   1030  1.10.2.1  nathanw 		(void) isp_async(isp, ISPASYNC_TARGET_ACTION, ct);
   1031       1.1   mjacob 	}
   1032       1.1   mjacob }
   1033       1.1   mjacob 
   1034       1.1   mjacob static void
   1035  1.10.2.1  nathanw isp_handle_ctio2(struct ispsoftc *isp, ct2_entry_t *ct)
   1036       1.1   mjacob {
   1037       1.7   mjacob 	XS_T *xs;
   1038       1.7   mjacob 	int pl = ISP_LOGTDEBUG2;
   1039       1.1   mjacob 	char *fmsg = NULL;
   1040       1.1   mjacob 
   1041  1.10.2.1  nathanw 	if (ct->ct_syshandle) {
   1042  1.10.2.1  nathanw 		xs = isp_find_xs(isp, ct->ct_syshandle);
   1043       1.1   mjacob 		if (xs == NULL)
   1044       1.7   mjacob 			pl = ISP_LOGALL;
   1045       1.1   mjacob 	} else {
   1046       1.1   mjacob 		xs = NULL;
   1047       1.1   mjacob 	}
   1048       1.1   mjacob 
   1049       1.1   mjacob 	switch(ct->ct_status & ~QLTM_SVALID) {
   1050  1.10.2.2  nathanw 	case CT_BUS_ERROR:
   1051  1.10.2.2  nathanw 		isp_prt(isp, ISP_LOGERR, "PCI DMA Bus Error");
   1052  1.10.2.2  nathanw 		/* FALL Through */
   1053  1.10.2.2  nathanw 	case CT_DATA_OVER:
   1054  1.10.2.2  nathanw 	case CT_DATA_UNDER:
   1055       1.1   mjacob 	case CT_OK:
   1056       1.1   mjacob 		/*
   1057       1.1   mjacob 		 * There are generally 2 possibilities as to why we'd get
   1058       1.1   mjacob 		 * this condition:
   1059       1.1   mjacob 		 * 	We sent or received data.
   1060       1.1   mjacob 		 * 	We sent status & command complete.
   1061       1.1   mjacob 		 */
   1062       1.1   mjacob 
   1063       1.1   mjacob 		break;
   1064       1.1   mjacob 
   1065       1.1   mjacob 	case CT_BDR_MSG:
   1066       1.1   mjacob 		/*
   1067  1.10.2.2  nathanw 		 * Target Reset function received.
   1068       1.1   mjacob 		 *
   1069       1.1   mjacob 		 * The firmware generates an async mailbox interupt to
   1070       1.1   mjacob 		 * notify us of this and returns outstanding CTIOs with this
   1071       1.1   mjacob 		 * status. These CTIOs are handled in that same way as
   1072       1.1   mjacob 		 * CT_ABORTED ones, so just fall through here.
   1073       1.1   mjacob 		 */
   1074  1.10.2.2  nathanw 		fmsg = "TARGET RESET Task Management Function Received";
   1075       1.1   mjacob 		/*FALLTHROUGH*/
   1076       1.1   mjacob 	case CT_RESET:
   1077       1.1   mjacob 		if (fmsg == NULL)
   1078  1.10.2.2  nathanw 			fmsg = "LIP Reset";
   1079       1.1   mjacob 		/*FALLTHROUGH*/
   1080       1.1   mjacob 	case CT_ABORTED:
   1081       1.1   mjacob 		/*
   1082       1.1   mjacob 		 * When an Abort message is received the firmware goes to
   1083       1.1   mjacob 		 * Bus Free and returns all outstanding CTIOs with the status
   1084       1.1   mjacob 		 * set, then sends us an Immediate Notify entry.
   1085       1.1   mjacob 		 */
   1086       1.1   mjacob 		if (fmsg == NULL)
   1087  1.10.2.2  nathanw 			fmsg = "ABORT Task Management Function Received";
   1088       1.1   mjacob 
   1089       1.7   mjacob 		isp_prt(isp, ISP_LOGERR, "CTIO2 destroyed by %s", fmsg);
   1090       1.1   mjacob 		break;
   1091       1.1   mjacob 
   1092       1.1   mjacob 	case CT_INVAL:
   1093       1.1   mjacob 		/*
   1094       1.2   mjacob 		 * CTIO rejected by the firmware - invalid data direction.
   1095       1.1   mjacob 		 */
   1096       1.7   mjacob 		isp_prt(isp, ISP_LOGERR, "CTIO2 had wrong data directiond");
   1097       1.1   mjacob 		break;
   1098       1.1   mjacob 
   1099       1.1   mjacob 	case CT_RSELTMO:
   1100  1.10.2.2  nathanw 		fmsg = "failure to reconnect to initiator";
   1101       1.1   mjacob 		/*FALLTHROUGH*/
   1102       1.1   mjacob 	case CT_TIMEOUT:
   1103       1.1   mjacob 		if (fmsg == NULL)
   1104  1.10.2.2  nathanw 			fmsg = "command";
   1105       1.7   mjacob 		isp_prt(isp, ISP_LOGERR, "Firmware timed out on %s", fmsg);
   1106       1.1   mjacob 		break;
   1107       1.1   mjacob 
   1108       1.1   mjacob 	case CT_ERR:
   1109       1.1   mjacob 		fmsg = "Completed with Error";
   1110       1.1   mjacob 		/*FALLTHROUGH*/
   1111       1.1   mjacob 	case CT_LOGOUT:
   1112       1.1   mjacob 		if (fmsg == NULL)
   1113       1.1   mjacob 			fmsg = "Port Logout";
   1114       1.1   mjacob 		/*FALLTHROUGH*/
   1115       1.1   mjacob 	case CT_PORTNOTAVAIL:
   1116       1.1   mjacob 		if (fmsg == NULL)
   1117       1.1   mjacob 			fmsg = "Port not available";
   1118  1.10.2.2  nathanw 	case CT_PORTCHANGED:
   1119  1.10.2.2  nathanw 		if (fmsg == NULL)
   1120  1.10.2.2  nathanw 			fmsg = "Port Changed";
   1121       1.1   mjacob 	case CT_NOACK:
   1122       1.1   mjacob 		if (fmsg == NULL)
   1123       1.1   mjacob 			fmsg = "unacknowledged Immediate Notify pending";
   1124       1.7   mjacob 		isp_prt(isp, ISP_LOGERR, "CTIO returned by f/w- %s", fmsg);
   1125       1.1   mjacob 		break;
   1126       1.1   mjacob 
   1127       1.1   mjacob 	case CT_INVRXID:
   1128       1.1   mjacob 		/*
   1129       1.1   mjacob 		 * CTIO rejected by the firmware because an invalid RX_ID.
   1130       1.1   mjacob 		 * Just print a message.
   1131       1.1   mjacob 		 */
   1132       1.7   mjacob 		isp_prt(isp, ISP_LOGERR,
   1133       1.7   mjacob 		    "CTIO2 completed with Invalid RX_ID 0x%x", ct->ct_rxid);
   1134       1.1   mjacob 		break;
   1135       1.1   mjacob 
   1136       1.1   mjacob 	default:
   1137  1.10.2.1  nathanw 		isp_prt(isp, ISP_LOGERR, "Unknown CTIO2 status 0x%x",
   1138       1.7   mjacob 		    ct->ct_status & ~QLTM_SVALID);
   1139       1.1   mjacob 		break;
   1140       1.1   mjacob 	}
   1141       1.1   mjacob 
   1142       1.1   mjacob 	if (xs == NULL) {
   1143       1.1   mjacob 		/*
   1144       1.1   mjacob 		 * There may be more than one CTIO for a data transfer,
   1145       1.1   mjacob 		 * or this may be a status CTIO we're not monitoring.
   1146       1.1   mjacob 		 *
   1147       1.1   mjacob 		 * The assumption is that they'll all be returned in the
   1148       1.1   mjacob 		 * order we got them.
   1149       1.1   mjacob 		 */
   1150  1.10.2.1  nathanw 		if (ct->ct_syshandle == 0) {
   1151       1.1   mjacob 			if ((ct->ct_flags & CT_SENDSTATUS) == 0) {
   1152       1.7   mjacob 				isp_prt(isp, pl,
   1153       1.7   mjacob 				    "intermediate CTIO completed ok");
   1154       1.1   mjacob 			} else {
   1155       1.7   mjacob 				isp_prt(isp, pl,
   1156       1.7   mjacob 				    "unmonitored CTIO completed ok");
   1157       1.1   mjacob 			}
   1158       1.1   mjacob 		} else {
   1159       1.7   mjacob 			isp_prt(isp, pl,
   1160       1.7   mjacob 			    "NO xs for CTIO (handle 0x%x) status 0x%x",
   1161  1.10.2.1  nathanw 			    ct->ct_syshandle, ct->ct_status & ~QLTM_SVALID);
   1162       1.1   mjacob 		}
   1163       1.1   mjacob 	} else {
   1164  1.10.2.2  nathanw 		if ((ct->ct_flags & CT2_DATAMASK) != CT2_NO_DATA) {
   1165  1.10.2.2  nathanw 			ISP_DMAFREE(isp, xs, ct->ct_syshandle);
   1166  1.10.2.2  nathanw 		}
   1167       1.1   mjacob 		if (ct->ct_flags & CT_SENDSTATUS) {
   1168       1.1   mjacob 			/*
   1169       1.1   mjacob 			 * Sent status and command complete.
   1170       1.1   mjacob 			 *
   1171       1.1   mjacob 			 * We're now really done with this command, so we
   1172       1.1   mjacob 			 * punt to the platform dependent layers because
   1173       1.1   mjacob 			 * only there can we do the appropriate command
   1174       1.1   mjacob 			 * complete thread synchronization.
   1175       1.1   mjacob 			 */
   1176       1.7   mjacob 			isp_prt(isp, pl, "status CTIO complete");
   1177       1.1   mjacob 		} else {
   1178       1.1   mjacob 			/*
   1179       1.1   mjacob 			 * Final CTIO completed. Release DMA resources and
   1180       1.1   mjacob 			 * notify platform dependent layers.
   1181       1.1   mjacob 			 */
   1182       1.7   mjacob 			isp_prt(isp, pl, "data CTIO complete");
   1183       1.1   mjacob 		}
   1184       1.1   mjacob 		(void) isp_async(isp, ISPASYNC_TARGET_ACTION, ct);
   1185       1.1   mjacob 		/*
   1186       1.1   mjacob 		 * The platform layer will destroy the handle if appropriate.
   1187       1.1   mjacob 		 */
   1188       1.1   mjacob 	}
   1189       1.1   mjacob }
   1190       1.1   mjacob #endif
   1191