isp_target.c revision 290775
1/*-
2 *  Copyright (c) 1997-2009 by Matthew Jacob
3 *  All rights reserved.
4 *
5 *  Redistribution and use in source and binary forms, with or without
6 *  modification, are permitted provided that the following conditions
7 *  are met:
8 *
9 *  1. Redistributions of source code must retain the above copyright
10 *     notice, this list of conditions and the following disclaimer.
11 *  2. Redistributions in binary form must reproduce the above copyright
12 *     notice, this list of conditions and the following disclaimer in the
13 *     documentation and/or other materials provided with the distribution.
14 *
15 *  THIS SOFTWARE IS PROVIDED BY AUTHOR AND CONTRIBUTORS ``AS IS'' AND
16 *  ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
17 *  IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
18 *  ARE DISCLAIMED.  IN NO EVENT SHALL AUTHOR OR CONTRIBUTORS BE LIABLE
19 *  FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
20 *  DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
21 *  OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
22 *  HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
23 *  LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
24 *  OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
25 *  SUCH DAMAGE.
26 *
27 */
28/*
29 * Machine and OS Independent Target Mode Code for the Qlogic SCSI/FC adapters.
30 */
31/*
32 * Bug fixes gratefully acknowledged from:
33 *	Oded Kedem <oded@kashya.com>
34 */
35/*
36 * Include header file appropriate for platform we're building on.
37 */
38
39#ifdef	__NetBSD__
40#include <dev/ic/isp_netbsd.h>
41#endif
42#ifdef	__FreeBSD__
43#include <sys/cdefs.h>
44__FBSDID("$FreeBSD: stable/10/sys/dev/isp/isp_target.c 290775 2015-11-13 19:23:22Z mav $");
45#include <dev/isp/isp_freebsd.h>
46#endif
47#ifdef	__OpenBSD__
48#include <dev/ic/isp_openbsd.h>
49#endif
50#ifdef	__linux__
51#include "isp_linux.h"
52#endif
53
54#ifdef	ISP_TARGET_MODE
55static const char atiocope[] = "ATIO returned for lun %d because it was in the middle of Bus Device Reset on bus %d";
56static const char atior[] = "ATIO returned on for lun %d on from loopid %d because a Bus Reset occurred on bus %d";
57static const char rqo[] = "%s: Request Queue Overflow";
58
59static void isp_got_msg(ispsoftc_t *, in_entry_t *);
60static void isp_got_msg_fc(ispsoftc_t *, in_fcentry_t *);
61static void isp_got_tmf_24xx(ispsoftc_t *, at7_entry_t *);
62static void isp_handle_atio(ispsoftc_t *, at_entry_t *);
63static void isp_handle_atio2(ispsoftc_t *, at2_entry_t *);
64static void isp_handle_ctio(ispsoftc_t *, ct_entry_t *);
65static void isp_handle_ctio2(ispsoftc_t *, ct2_entry_t *);
66static void isp_handle_ctio7(ispsoftc_t *, ct7_entry_t *);
67static void isp_handle_24xx_inotify(ispsoftc_t *, in_fcentry_24xx_t *);
68
69/*
70 * The Qlogic driver gets an interrupt to look at response queue entries.
71 * Some of these are status completions for initiatior mode commands, but
72 * if target mode is enabled, we get a whole wad of response queue entries
73 * to be handled here.
74 *
75 * Basically the split into 3 main groups: Lun Enable/Modification responses,
76 * SCSI Command processing, and Immediate Notification events.
77 *
78 * You start by writing a request queue entry to enable target mode (and
79 * establish some resource limitations which you can modify later).
80 * The f/w responds with a LUN ENABLE or LUN MODIFY response with
81 * the status of this action. If the enable was successful, you can expect...
82 *
83 * Response queue entries with SCSI commands encapsulate show up in an ATIO
84 * (Accept Target IO) type- sometimes with enough info to stop the command at
85 * this level. Ultimately the driver has to feed back to the f/w's request
86 * queue a sequence of CTIOs (continue target I/O) that describe data to
87 * be moved and/or status to be sent) and finally finishing with sending
88 * to the f/w's response queue an ATIO which then completes the handshake
89 * with the f/w for that command. There's a lot of variations on this theme,
90 * including flags you can set in the CTIO for the Qlogic 2X00 fibre channel
91 * cards that 'auto-replenish' the f/w's ATIO count, but this is the basic
92 * gist of it.
93 *
94 * The third group that can show up in the response queue are Immediate
95 * Notification events. These include things like notifications of SCSI bus
96 * resets, or Bus Device Reset messages or other messages received. This
97 * a classic oddbins area. It can get  a little weird because you then turn
98 * around and acknowledge the Immediate Notify by writing an entry onto the
99 * request queue and then the f/w turns around and gives you an acknowledgement
100 * to *your* acknowledgement on the response queue (the idea being to let
101 * the f/w tell you when the event is *really* over I guess).
102 *
103 */
104
105
106/*
107 * A new response queue entry has arrived. The interrupt service code
108 * has already swizzled it into the platform dependent from canonical form.
109 *
110 * Because of the way this driver is designed, unfortunately most of the
111 * actual synchronization work has to be done in the platform specific
112 * code- we have no synchroniation primitives in the common code.
113 */
114
115int
116isp_target_notify(ispsoftc_t *isp, void *vptr, uint32_t *optrp)
117{
118	uint16_t status;
119	uint32_t seqid;
120	union {
121		at_entry_t	*atiop;
122		at2_entry_t	*at2iop;
123		at2e_entry_t	*at2eiop;
124		at7_entry_t	*at7iop;
125		ct_entry_t	*ctiop;
126		ct2_entry_t	*ct2iop;
127		ct2e_entry_t	*ct2eiop;
128		ct7_entry_t	*ct7iop;
129		lun_entry_t	*lunenp;
130		in_entry_t	*inotp;
131		in_fcentry_t	*inot_fcp;
132		in_fcentry_e_t	*inote_fcp;
133		in_fcentry_24xx_t *inot_24xx;
134		na_entry_t	*nackp;
135		na_fcentry_t	*nack_fcp;
136		na_fcentry_e_t	*nacke_fcp;
137		na_fcentry_24xx_t *nack_24xx;
138		isphdr_t	*hp;
139		abts_t		*abts;
140		abts_rsp_t	*abts_rsp;
141		els_t		*els;
142		void *		*vp;
143#define	atiop		unp.atiop
144#define	at2iop		unp.at2iop
145#define	at2eiop		unp.at2eiop
146#define	at7iop		unp.at7iop
147#define	ctiop		unp.ctiop
148#define	ct2iop		unp.ct2iop
149#define	ct2eiop		unp.ct2eiop
150#define	ct7iop		unp.ct7iop
151#define	lunenp		unp.lunenp
152#define	inotp		unp.inotp
153#define	inot_fcp	unp.inot_fcp
154#define	inote_fcp	unp.inote_fcp
155#define	inot_24xx	unp.inot_24xx
156#define	nackp		unp.nackp
157#define	nack_fcp	unp.nack_fcp
158#define	nacke_fcp	unp.nacke_fcp
159#define	nack_24xx	unp.nack_24xx
160#define	abts		unp.abts
161#define	abts_rsp	unp.abts_rsp
162#define els		unp.els
163#define	hdrp		unp.hp
164	} unp;
165	uint8_t local[QENTRY_LEN];
166	uint16_t iid;
167	int bus, type, level, rval = 1;
168	isp_notify_t notify;
169
170	type = isp_get_response_type(isp, (isphdr_t *)vptr);
171	unp.vp = vptr;
172
173	ISP_TDQE(isp, "isp_target_notify", (int) *optrp, vptr);
174
175	switch (type) {
176	case RQSTYPE_ATIO:
177		if (IS_24XX(isp)) {
178			int len;
179
180			isp_get_atio7(isp, at7iop, (at7_entry_t *) local);
181			at7iop = (at7_entry_t *) local;
182			/*
183			 * Check for and do something with commands whose
184			 * IULEN extends past a single queue entry.
185			 */
186			len = at7iop->at_ta_len & 0xfffff;
187			if (len > (QENTRY_LEN - 8)) {
188				len -= (QENTRY_LEN - 8);
189				isp_prt(isp, ISP_LOGINFO, "long IU length (%d) ignored", len);
190				while (len > 0) {
191					*optrp =  ISP_NXT_QENTRY(*optrp, RESULT_QUEUE_LEN(isp));
192					len -= QENTRY_LEN;
193				}
194			}
195			/*
196			 * Check for a task management function
197			 */
198			if (at7iop->at_cmnd.fcp_cmnd_task_management) {
199				isp_got_tmf_24xx(isp, at7iop);
200				break;
201			}
202			/*
203			 * Just go straight to outer layer for this one.
204			 */
205			isp_async(isp, ISPASYNC_TARGET_ACTION, local);
206		} else {
207			isp_get_atio(isp, atiop, (at_entry_t *) local);
208			isp_handle_atio(isp, (at_entry_t *) local);
209		}
210		break;
211
212	case RQSTYPE_CTIO:
213		isp_get_ctio(isp, ctiop, (ct_entry_t *) local);
214		isp_handle_ctio(isp, (ct_entry_t *) local);
215		break;
216
217	case RQSTYPE_ATIO2:
218		if (ISP_CAP_2KLOGIN(isp)) {
219			isp_get_atio2e(isp, at2eiop, (at2e_entry_t *) local);
220		} else {
221			isp_get_atio2(isp, at2iop, (at2_entry_t *) local);
222		}
223		isp_handle_atio2(isp, (at2_entry_t *) local);
224		break;
225
226	case RQSTYPE_CTIO3:
227	case RQSTYPE_CTIO2:
228		if (ISP_CAP_2KLOGIN(isp)) {
229			isp_get_ctio2e(isp, ct2eiop, (ct2e_entry_t *) local);
230		} else {
231			isp_get_ctio2(isp, ct2iop, (ct2_entry_t *) local);
232		}
233		isp_handle_ctio2(isp, (ct2_entry_t *) local);
234		break;
235
236	case RQSTYPE_CTIO7:
237		isp_get_ctio7(isp, ct7iop, (ct7_entry_t *) local);
238		isp_handle_ctio7(isp, (ct7_entry_t *) local);
239		break;
240
241	case RQSTYPE_ENABLE_LUN:
242	case RQSTYPE_MODIFY_LUN:
243		isp_get_enable_lun(isp, lunenp, (lun_entry_t *) local);
244		isp_async(isp, ISPASYNC_TARGET_ACTION, local);
245		break;
246
247	case RQSTYPE_NOTIFY:
248		bus = 0;
249		if (IS_24XX(isp)) {
250			isp_get_notify_24xx(isp, inot_24xx, (in_fcentry_24xx_t *)local);
251			inot_24xx = (in_fcentry_24xx_t *) local;
252			isp_handle_24xx_inotify(isp, inot_24xx);
253			break;
254		}
255		if (IS_FC(isp)) {
256			if (ISP_CAP_2KLOGIN(isp)) {
257				in_fcentry_e_t *ecp = (in_fcentry_e_t *)local;
258				isp_get_notify_fc_e(isp, inote_fcp, ecp);
259				iid = ecp->in_iid;
260				status = ecp->in_status;
261				seqid = ecp->in_seqid;
262			} else {
263				in_fcentry_t *fcp = (in_fcentry_t *)local;
264				isp_get_notify_fc(isp, inot_fcp, fcp);
265				iid = fcp->in_iid;
266				status = fcp->in_status;
267				seqid = fcp->in_seqid;
268			}
269		} else {
270			in_entry_t *inp = (in_entry_t *)local;
271			isp_get_notify(isp, inotp, inp);
272			status = inp->in_status & 0xff;
273			seqid = inp->in_seqid;
274			iid = inp->in_iid;
275			if (IS_DUALBUS(isp)) {
276				bus = GET_BUS_VAL(inp->in_iid);
277				SET_BUS_VAL(inp->in_iid, 0);
278			}
279		}
280
281		isp_prt(isp, ISP_LOGTDEBUG0, "Immediate Notify On Bus %d, status=0x%x seqid=0x%x", bus, status, seqid);
282
283		switch (status) {
284		case IN_MSG_RECEIVED:
285		case IN_IDE_RECEIVED:
286			if (IS_FC(isp)) {
287				isp_got_msg_fc(isp, (in_fcentry_t *)local);
288			} else {
289				isp_got_msg(isp, (in_entry_t *)local);
290			}
291			break;
292		case IN_RSRC_UNAVAIL:
293			isp_prt(isp, ISP_LOGINFO, "Firmware out of ATIOs");
294			isp_async(isp, ISPASYNC_TARGET_NOTIFY_ACK, local);
295			break;
296
297		case IN_RESET:
298			ISP_MEMZERO(&notify, sizeof (isp_notify_t));
299			notify.nt_hba = isp;
300			notify.nt_wwn = INI_ANY;
301			notify.nt_tgt = TGT_ANY;
302			notify.nt_nphdl = iid;
303			notify.nt_sid = PORT_ANY;
304			notify.nt_did = PORT_ANY;
305			notify.nt_lun = LUN_ANY;
306			notify.nt_tagval = TAG_ANY;
307			notify.nt_tagval |= (((uint64_t)(isp->isp_serno++)) << 32);
308			notify.nt_ncode = NT_BUS_RESET;
309			notify.nt_need_ack = 1;
310			notify.nt_lreserved = local;
311			isp_async(isp, ISPASYNC_TARGET_NOTIFY, &notify);
312			break;
313
314		case IN_PORT_LOGOUT:
315			ISP_MEMZERO(&notify, sizeof (isp_notify_t));
316			notify.nt_hba = isp;
317			notify.nt_wwn = INI_ANY;
318			notify.nt_nphdl = iid;
319			notify.nt_sid = PORT_ANY;
320			notify.nt_did = PORT_ANY;
321			notify.nt_ncode = NT_LOGOUT;
322			notify.nt_need_ack = 1;
323			notify.nt_lreserved = local;
324			isp_async(isp, ISPASYNC_TARGET_NOTIFY, &notify);
325			break;
326
327		case IN_ABORT_TASK:
328			ISP_MEMZERO(&notify, sizeof (isp_notify_t));
329			notify.nt_hba = isp;
330			notify.nt_wwn = INI_ANY;
331			notify.nt_nphdl = iid;
332			notify.nt_sid = PORT_ANY;
333			notify.nt_did = PORT_ANY;
334			notify.nt_ncode = NT_ABORT_TASK;
335			notify.nt_need_ack = 1;
336			notify.nt_lreserved = local;
337			isp_async(isp, ISPASYNC_TARGET_NOTIFY, &notify);
338			break;
339
340		case IN_GLOBAL_LOGO:
341			isp_prt(isp, ISP_LOGTINFO, "%s: all ports logged out", __func__);
342			ISP_MEMZERO(&notify, sizeof (isp_notify_t));
343			notify.nt_hba = isp;
344			notify.nt_wwn = INI_ANY;
345			notify.nt_nphdl = NIL_HANDLE;
346			notify.nt_sid = PORT_ANY;
347			notify.nt_did = PORT_ANY;
348			notify.nt_ncode = NT_GLOBAL_LOGOUT;
349			notify.nt_need_ack = 1;
350			notify.nt_lreserved = local;
351			isp_async(isp, ISPASYNC_TARGET_NOTIFY, &notify);
352			break;
353
354		case IN_PORT_CHANGED:
355			isp_prt(isp, ISP_LOGTINFO, "%s: port changed", __func__);
356			ISP_MEMZERO(&notify, sizeof (isp_notify_t));
357			notify.nt_hba = isp;
358			notify.nt_wwn = INI_ANY;
359			notify.nt_nphdl = NIL_HANDLE;
360			notify.nt_sid = PORT_ANY;
361			notify.nt_did = PORT_ANY;
362			notify.nt_ncode = NT_CHANGED;
363			notify.nt_need_ack = 1;
364			notify.nt_lreserved = local;
365			isp_async(isp, ISPASYNC_TARGET_NOTIFY, &notify);
366			break;
367
368		default:
369			ISP_SNPRINTF(local, sizeof local, "%s: unknown status to RQSTYPE_NOTIFY (0x%x)", __func__, status);
370			isp_print_bytes(isp, local, QENTRY_LEN, vptr);
371			isp_async(isp, ISPASYNC_TARGET_NOTIFY_ACK, local);
372			break;
373		}
374		break;
375
376	case RQSTYPE_NOTIFY_ACK:
377		/*
378		 * The ISP is acknowledging our acknowledgement of an
379		 * Immediate Notify entry for some asynchronous event.
380		 */
381		if (IS_24XX(isp)) {
382			isp_get_notify_ack_24xx(isp, nack_24xx, (na_fcentry_24xx_t *) local);
383			nack_24xx = (na_fcentry_24xx_t *) local;
384			if (nack_24xx->na_status != NA_OK) {
385				level = ISP_LOGINFO;
386			} else {
387				level = ISP_LOGTDEBUG1;
388			}
389			isp_prt(isp, level, "Notify Ack Status=0x%x; Subcode 0x%x seqid=0x%x", nack_24xx->na_status, nack_24xx->na_status_subcode, nack_24xx->na_rxid);
390		} else if (IS_FC(isp)) {
391			if (ISP_CAP_2KLOGIN(isp)) {
392				isp_get_notify_ack_fc_e(isp, nacke_fcp, (na_fcentry_e_t *)local);
393			} else {
394				isp_get_notify_ack_fc(isp, nack_fcp, (na_fcentry_t *)local);
395			}
396			nack_fcp = (na_fcentry_t *)local;
397			if (nack_fcp->na_status != NA_OK) {
398				level = ISP_LOGINFO;
399			} else {
400				level = ISP_LOGTDEBUG1;
401			}
402			isp_prt(isp, level, "Notify Ack Status=0x%x seqid 0x%x", nack_fcp->na_status, nack_fcp->na_seqid);
403		} else {
404			isp_get_notify_ack(isp, nackp, (na_entry_t *)local);
405			nackp = (na_entry_t *)local;
406			if (nackp->na_status != NA_OK) {
407				level = ISP_LOGINFO;
408			} else {
409				level = ISP_LOGTDEBUG1;
410			}
411			isp_prt(isp, level, "Notify Ack event 0x%x status=0x%x seqid 0x%x", nackp->na_event, nackp->na_status, nackp->na_seqid);
412		}
413		break;
414
415	case RQSTYPE_ABTS_RCVD:
416		isp_get_abts(isp, abts, (abts_t *)local);
417		isp_async(isp, ISPASYNC_TARGET_ACTION, &local);
418		break;
419	case RQSTYPE_ABTS_RSP:
420		isp_get_abts_rsp(isp, abts_rsp, (abts_rsp_t *)local);
421		abts_rsp = (abts_rsp_t *) local;
422		if (abts_rsp->abts_rsp_status) {
423			level = ISP_LOGINFO;
424		} else {
425			level = ISP_LOGTDEBUG0;
426		}
427		isp_prt(isp, level, "ABTS RSP response[0x%x]: status=0x%x sub=(0x%x 0x%x)", abts_rsp->abts_rsp_rxid_task, abts_rsp->abts_rsp_status,
428		    abts_rsp->abts_rsp_payload.rsp.subcode1, abts_rsp->abts_rsp_payload.rsp.subcode2);
429		break;
430	default:
431		isp_prt(isp, ISP_LOGERR, "%s: unknown entry type 0x%x", __func__, type);
432		rval = 0;
433		break;
434	}
435#undef	atiop
436#undef	at2iop
437#undef	at2eiop
438#undef	at7iop
439#undef	ctiop
440#undef	ct2iop
441#undef	ct2eiop
442#undef	ct7iop
443#undef	lunenp
444#undef	inotp
445#undef	inot_fcp
446#undef	inote_fcp
447#undef	inot_24xx
448#undef	nackp
449#undef	nack_fcp
450#undef	nacke_fcp
451#undef	hack_24xx
452#undef	abts
453#undef	abts_rsp
454#undef	els
455#undef	hdrp
456	return (rval);
457}
458
459
460/*
461 * Toggle (on/off) target mode for bus/target/lun.
462 *
463 * The caller has checked for overlap and legality.
464 *
465 * Note that not all of bus, target or lun can be paid attention to.
466 * Note also that this action will not be complete until the f/w writes
467 * a response entry. The caller is responsible for synchronizing with this.
468 */
469int
470isp_lun_cmd(ispsoftc_t *isp, int cmd, int bus, int lun, int cmd_cnt, int inot_cnt)
471{
472	lun_entry_t el;
473	void *outp;
474
475	ISP_MEMZERO(&el, sizeof (el));
476	if (IS_DUALBUS(isp)) {
477		el.le_rsvd = (bus & 0x1) << 7;
478	}
479	el.le_cmd_count = (cmd_cnt < 0)? -cmd_cnt : cmd_cnt;
480	el.le_in_count = (inot_cnt < 0)? -inot_cnt : inot_cnt;
481	if (cmd == RQSTYPE_ENABLE_LUN) {
482		if (IS_SCSI(isp)) {
483			el.le_flags = LUN_TQAE|LUN_DISAD;
484			el.le_cdb6len = 12;
485			el.le_cdb7len = 12;
486		}
487	} else if (cmd == RQSTYPE_MODIFY_LUN) {
488		if (cmd_cnt == 0 && inot_cnt == 0) {
489			isp_prt(isp, ISP_LOGWARN, "makes no sense to modify a lun with both command and immediate notify counts as zero");
490			return (0);
491		}
492		if (cmd_cnt < 0)
493			el.le_ops |= LUN_CCDECR;
494		else
495			el.le_ops |= LUN_CCINCR;
496		if (inot_cnt < 0)
497			el.le_ops |= LUN_INDECR;
498		else
499			el.le_ops |= LUN_ININCR;
500	} else {
501		isp_prt(isp, ISP_LOGWARN, "unknown cmd (0x%x) in %s", cmd, __func__);
502		return (-1);
503	}
504	el.le_header.rqs_entry_type = cmd;
505	el.le_header.rqs_entry_count = 1;
506	if (IS_SCSI(isp)) {
507		el.le_tgt = SDPARAM(isp, bus)->isp_initiator_id;
508		el.le_lun = lun;
509	} else if (ISP_CAP_SCCFW(isp) == 0) {
510		el.le_lun = lun;
511	}
512	el.le_timeout = 30;
513
514	outp = isp_getrqentry(isp);
515	if (outp == NULL) {
516		isp_prt(isp, ISP_LOGERR, rqo, __func__);
517		return (-1);
518	}
519	isp_put_enable_lun(isp, &el, outp);
520	ISP_TDQE(isp, "isp_lun_cmd", isp->isp_reqidx, &el);
521	ISP_SYNC_REQUEST(isp);
522	return (0);
523}
524
525int
526isp_target_put_entry(ispsoftc_t *isp, void *ap)
527{
528	void *outp;
529	uint8_t etype = ((isphdr_t *) ap)->rqs_entry_type;
530
531	outp = isp_getrqentry(isp);
532	if (outp == NULL) {
533		isp_prt(isp, ISP_LOGWARN, rqo, __func__);
534		return (-1);
535	}
536	switch (etype) {
537	case RQSTYPE_ATIO:
538		isp_put_atio(isp, (at_entry_t *) ap, (at_entry_t *) outp);
539		break;
540	case RQSTYPE_ATIO2:
541		if (ISP_CAP_2KLOGIN(isp)) {
542			isp_put_atio2e(isp, (at2e_entry_t *) ap, (at2e_entry_t *) outp);
543		} else {
544			isp_put_atio2(isp, (at2_entry_t *) ap, (at2_entry_t *) outp);
545		}
546		break;
547	case RQSTYPE_CTIO:
548		isp_put_ctio(isp, (ct_entry_t *) ap, (ct_entry_t *) outp);
549		break;
550	case RQSTYPE_CTIO2:
551		if (ISP_CAP_2KLOGIN(isp)) {
552			isp_put_ctio2e(isp, (ct2e_entry_t *) ap, (ct2e_entry_t *) outp);
553		} else {
554			isp_put_ctio2(isp, (ct2_entry_t *) ap, (ct2_entry_t *) outp);
555		}
556		break;
557	case RQSTYPE_CTIO7:
558		isp_put_ctio7(isp, (ct7_entry_t *) ap, (ct7_entry_t *) outp);
559		break;
560	default:
561		isp_prt(isp, ISP_LOGERR, "%s: Unknown type 0x%x", __func__, etype);
562		return (-1);
563	}
564	ISP_TDQE(isp, __func__, isp->isp_reqidx, ap);
565	ISP_SYNC_REQUEST(isp);
566	return (0);
567}
568
569int
570isp_target_put_atio(ispsoftc_t *isp, void *arg)
571{
572	union {
573		at_entry_t _atio;
574		at2_entry_t _atio2;
575		at2e_entry_t _atio2e;
576	} atun;
577
578	ISP_MEMZERO(&atun, sizeof atun);
579	if (IS_FC(isp)) {
580		at2_entry_t *aep = arg;
581		atun._atio2.at_header.rqs_entry_type = RQSTYPE_ATIO2;
582		atun._atio2.at_header.rqs_entry_count = 1;
583		if (ISP_CAP_SCCFW(isp)) {
584			atun._atio2.at_scclun = aep->at_scclun;
585		} else {
586			atun._atio2.at_lun = (uint8_t) aep->at_lun;
587		}
588		if (ISP_CAP_2KLOGIN(isp)) {
589			atun._atio2e.at_iid = ((at2e_entry_t *)aep)->at_iid;
590		} else {
591			atun._atio2.at_iid = aep->at_iid;
592		}
593		atun._atio2.at_rxid = aep->at_rxid;
594		atun._atio2.at_status = CT_OK;
595	} else {
596		at_entry_t *aep = arg;
597		atun._atio.at_header.rqs_entry_type = RQSTYPE_ATIO;
598		atun._atio.at_header.rqs_entry_count = 1;
599		atun._atio.at_handle = aep->at_handle;
600		atun._atio.at_iid = aep->at_iid;
601		atun._atio.at_tgt = aep->at_tgt;
602		atun._atio.at_lun = aep->at_lun;
603		atun._atio.at_tag_type = aep->at_tag_type;
604		atun._atio.at_tag_val = aep->at_tag_val;
605		atun._atio.at_status = (aep->at_flags & AT_TQAE);
606		atun._atio.at_status |= CT_OK;
607	}
608	return (isp_target_put_entry(isp, &atun));
609}
610
611/*
612 * Command completion- both for handling cases of no resources or
613 * no blackhole driver, or other cases where we have to, inline,
614 * finish the command sanely, or for normal command completion.
615 *
616 * The 'completion' code value has the scsi status byte in the low 8 bits.
617 * If status is a CHECK CONDITION and bit 8 is nonzero, then bits 12..15 have
618 * the sense key and  bits 16..23 have the ASCQ and bits 24..31 have the ASC
619 * values.
620 *
621 * NB: the key, asc, ascq, cannot be used for parallel SCSI as it doesn't
622 * NB: inline SCSI sense reporting. As such, we lose this information. XXX.
623 *
624 * For both parallel && fibre channel, we use the feature that does
625 * an automatic resource autoreplenish so we don't have then later do
626 * put of an atio to replenish the f/w's resource count.
627 */
628
629int
630isp_endcmd(ispsoftc_t *isp, ...)
631{
632	uint32_t code, hdl;
633	uint8_t sts;
634	union {
635		ct_entry_t _ctio;
636		ct2_entry_t _ctio2;
637		ct2e_entry_t _ctio2e;
638		ct7_entry_t _ctio7;
639	} un;
640	va_list ap;
641
642	ISP_MEMZERO(&un, sizeof un);
643
644	if (IS_24XX(isp)) {
645		int vpidx, nphdl;
646		at7_entry_t *aep;
647		ct7_entry_t *cto = &un._ctio7;
648
649		va_start(ap, isp);
650		aep = va_arg(ap, at7_entry_t *);
651		nphdl = va_arg(ap, int);
652		/*
653		 * Note that vpidx may equal 0xff (unknown) here
654		 */
655		vpidx = va_arg(ap, int);
656		code = va_arg(ap, uint32_t);
657		hdl = va_arg(ap, uint32_t);
658		va_end(ap);
659		isp_prt(isp, ISP_LOGTDEBUG0, "%s: [RX_ID 0x%x] chan %d code %x", __func__, aep->at_rxid, vpidx, code);
660
661		sts = code & 0xff;
662		cto->ct_header.rqs_entry_type = RQSTYPE_CTIO7;
663		cto->ct_header.rqs_entry_count = 1;
664		cto->ct_nphdl = nphdl;
665		cto->ct_rxid = aep->at_rxid;
666		cto->ct_iid_lo = (aep->at_hdr.s_id[1] << 8) | aep->at_hdr.s_id[2];
667		cto->ct_iid_hi = aep->at_hdr.s_id[0];
668		cto->ct_oxid = aep->at_hdr.ox_id;
669		cto->ct_scsi_status = sts;
670		cto->ct_vpidx = vpidx;
671		cto->ct_flags = CT7_NOACK;
672		if (code & ECMD_TERMINATE) {
673			cto->ct_flags |= CT7_TERMINATE;
674		} else if (code & ECMD_SVALID) {
675			cto->ct_flags |= CT7_FLAG_MODE1 | CT7_SENDSTATUS;
676			cto->ct_scsi_status |= (FCP_SNSLEN_VALID << 8);
677			cto->rsp.m1.ct_resplen = cto->ct_senselen = min(16, MAXRESPLEN_24XX);
678			ISP_MEMZERO(cto->rsp.m1.ct_resp, sizeof (cto->rsp.m1.ct_resp));
679			cto->rsp.m1.ct_resp[0] = 0xf0;
680			cto->rsp.m1.ct_resp[2] = (code >> 12) & 0xf;
681			cto->rsp.m1.ct_resp[7] = 8;
682			cto->rsp.m1.ct_resp[12] = (code >> 16) & 0xff;
683			cto->rsp.m1.ct_resp[13] = (code >> 24) & 0xff;
684		} else {
685			cto->ct_flags |= CT7_FLAG_MODE1 | CT7_SENDSTATUS;
686		}
687		if (aep->at_cmnd.cdb_dl.sf.fcp_cmnd_dl) {
688			cto->ct_resid = aep->at_cmnd.cdb_dl.sf.fcp_cmnd_dl;
689			if (cto->ct_resid < 0) {
690				 cto->ct_scsi_status |= (FCP_RESID_OVERFLOW << 8);
691			} else if (cto->ct_resid > 0) {
692				 cto->ct_scsi_status |= (FCP_RESID_UNDERFLOW << 8);
693			}
694		}
695		cto->ct_syshandle = hdl;
696	} else if (IS_FC(isp)) {
697		at2_entry_t *aep;
698		ct2_entry_t *cto = &un._ctio2;
699
700		va_start(ap, isp);
701		aep = va_arg(ap, at2_entry_t *);
702		code = va_arg(ap, uint32_t);
703		hdl = va_arg(ap, uint32_t);
704		va_end(ap);
705
706		isp_prt(isp, ISP_LOGTDEBUG0, "%s: [RX_ID 0x%x] code %x", __func__, aep->at_rxid, code);
707
708		sts = code & 0xff;
709		cto->ct_header.rqs_entry_type = RQSTYPE_CTIO2;
710		cto->ct_header.rqs_entry_count = 1;
711		if (ISP_CAP_SCCFW(isp) == 0) {
712			cto->ct_lun = aep->at_lun;
713		}
714		if (ISP_CAP_2KLOGIN(isp)) {
715			un._ctio2e.ct_iid = ((at2e_entry_t *)aep)->at_iid;
716		} else {
717			cto->ct_iid = aep->at_iid;
718		}
719		cto->ct_rxid = aep->at_rxid;
720		cto->rsp.m1.ct_scsi_status = sts;
721		cto->ct_flags = CT2_SENDSTATUS | CT2_NO_DATA | CT2_FLAG_MODE1;
722		if (hdl == 0) {
723			cto->ct_flags |= CT2_CCINCR;
724		}
725		if (aep->at_datalen) {
726			cto->ct_resid = aep->at_datalen;
727			cto->rsp.m1.ct_scsi_status |= CT2_DATA_UNDER;
728		}
729		if (sts == SCSI_CHECK && (code & ECMD_SVALID)) {
730			cto->rsp.m1.ct_resp[0] = 0xf0;
731			cto->rsp.m1.ct_resp[2] = (code >> 12) & 0xf;
732			cto->rsp.m1.ct_resp[7] = 8;
733			cto->rsp.m1.ct_resp[12] = (code >> 24) & 0xff;
734			cto->rsp.m1.ct_resp[13] = (code >> 16) & 0xff;
735			cto->rsp.m1.ct_senselen = 16;
736			cto->rsp.m1.ct_scsi_status |= CT2_SNSLEN_VALID;
737		}
738		cto->ct_syshandle = hdl;
739	} else {
740		at_entry_t *aep;
741		ct_entry_t *cto = &un._ctio;
742
743		va_start(ap, isp);
744		aep = va_arg(ap, at_entry_t *);
745		code = va_arg(ap, uint32_t);
746		hdl = va_arg(ap, uint32_t);
747		va_end(ap);
748		isp_prt(isp, ISP_LOGTDEBUG0, "%s: [IID %d] code %x", __func__, aep->at_iid, code);
749		sts = code;
750
751		cto->ct_header.rqs_entry_type = RQSTYPE_CTIO;
752		cto->ct_header.rqs_entry_count = 1;
753		cto->ct_fwhandle = aep->at_handle;
754		cto->ct_iid = aep->at_iid;
755		cto->ct_tgt = aep->at_tgt;
756		cto->ct_lun = aep->at_lun;
757		cto->ct_tag_type = aep->at_tag_type;
758		cto->ct_tag_val = aep->at_tag_val;
759		if (aep->at_flags & AT_TQAE) {
760			cto->ct_flags |= CT_TQAE;
761		}
762		cto->ct_flags = CT_SENDSTATUS | CT_NO_DATA;
763		if (hdl == 0) {
764			cto->ct_flags |= CT_CCINCR;
765		}
766		cto->ct_scsi_status = sts;
767		cto->ct_syshandle = hdl;
768	}
769	return (isp_target_put_entry(isp, &un));
770}
771
772/*
773 * These are either broadcast events or specifically CTIO fast completion
774 */
775
776int
777isp_target_async(ispsoftc_t *isp, int bus, int event)
778{
779	isp_notify_t notify;
780
781	ISP_MEMZERO(&notify, sizeof (isp_notify_t));
782	notify.nt_hba = isp;
783	notify.nt_wwn = INI_ANY;
784	notify.nt_nphdl = NIL_HANDLE;
785	notify.nt_sid = PORT_ANY;
786	notify.nt_did = PORT_ANY;
787	notify.nt_tgt = TGT_ANY;
788	notify.nt_channel = bus;
789	notify.nt_lun = LUN_ANY;
790	notify.nt_tagval = TAG_ANY;
791	notify.nt_tagval |= (((uint64_t)(isp->isp_serno++)) << 32);
792
793	switch (event) {
794	case ASYNC_LOOP_UP:
795	case ASYNC_PTPMODE:
796		isp_prt(isp, ISP_LOGTDEBUG0, "%s: LOOP UP", __func__);
797		notify.nt_ncode = NT_LINK_UP;
798		isp_async(isp, ISPASYNC_TARGET_NOTIFY, &notify);
799		break;
800	case ASYNC_LOOP_DOWN:
801		isp_prt(isp, ISP_LOGTDEBUG0, "%s: LOOP DOWN", __func__);
802		notify.nt_ncode = NT_LINK_DOWN;
803		isp_async(isp, ISPASYNC_TARGET_NOTIFY, &notify);
804		break;
805	case ASYNC_LIP_ERROR:
806	case ASYNC_LIP_F8:
807	case ASYNC_LIP_OCCURRED:
808	case ASYNC_LOOP_RESET:
809		isp_prt(isp, ISP_LOGTDEBUG0, "%s: LIP RESET", __func__);
810		notify.nt_ncode = NT_LIP_RESET;
811		isp_async(isp, ISPASYNC_TARGET_NOTIFY, &notify);
812		break;
813	case ASYNC_BUS_RESET:
814	case ASYNC_TIMEOUT_RESET:	/* XXX: where does this come from ? */
815		isp_prt(isp, ISP_LOGTDEBUG0, "%s: BUS RESET", __func__);
816		notify.nt_ncode = NT_BUS_RESET;
817		isp_async(isp, ISPASYNC_TARGET_NOTIFY, &notify);
818		break;
819	case ASYNC_DEVICE_RESET:
820		isp_prt(isp, ISP_LOGTDEBUG0, "%s: DEVICE RESET", __func__);
821		notify.nt_ncode = NT_TARGET_RESET;
822		isp_async(isp, ISPASYNC_TARGET_NOTIFY, &notify);
823		break;
824	case ASYNC_CTIO_DONE:
825	{
826		uint8_t storage[QENTRY_LEN];
827		isp_prt(isp, ISP_LOGTDEBUG0, "%s: CTIO DONE", __func__);
828		memset(storage, 0, QENTRY_LEN);
829		if (IS_24XX(isp)) {
830			ct7_entry_t *ct = (ct7_entry_t *) storage;
831			ct->ct_header.rqs_entry_type = RQSTYPE_CTIO7;
832			ct->ct_nphdl = CT7_OK;
833			ct->ct_syshandle = bus;
834			ct->ct_flags = CT7_SENDSTATUS;
835		} else if (IS_FC(isp)) {
836            		/* This should also suffice for 2K login code */
837			ct2_entry_t *ct = (ct2_entry_t *) storage;
838			ct->ct_header.rqs_entry_type = RQSTYPE_CTIO2;
839			ct->ct_status = CT_OK;
840			ct->ct_syshandle = bus;
841			ct->ct_flags = CT2_SENDSTATUS|CT2_FASTPOST;
842		} else {
843			ct_entry_t *ct = (ct_entry_t *) storage;
844			ct->ct_header.rqs_entry_type = RQSTYPE_CTIO;
845			ct->ct_status = CT_OK;
846			ct->ct_syshandle = bus;
847			/* we skip fwhandle here */
848			ct->ct_fwhandle = 0;
849			ct->ct_flags = CT_SENDSTATUS;
850		}
851		isp_async(isp, ISPASYNC_TARGET_ACTION, storage);
852		break;
853	}
854	default:
855		isp_prt(isp, ISP_LOGERR, "%s: unknown event 0x%x", __func__, event);
856		if (isp->isp_state == ISP_RUNSTATE) {
857			isp_async(isp, ISPASYNC_TARGET_NOTIFY_ACK, NULL);
858		}
859		break;
860	}
861	return (0);
862}
863
864
865/*
866 * Process a received message.
867 * The ISP firmware can handle most messages, there are only
868 * a few that we need to deal with:
869 * - abort: clean up the current command
870 * - abort tag and clear queue
871 */
872
873static void
874isp_got_msg(ispsoftc_t *isp, in_entry_t *inp)
875{
876	isp_notify_t notify;
877	uint8_t status = inp->in_status & ~QLTM_SVALID;
878
879	ISP_MEMZERO(&notify, sizeof (notify));
880	notify.nt_hba = isp;
881	notify.nt_wwn = INI_ANY;
882	notify.nt_nphdl = GET_IID_VAL(inp->in_iid);
883	notify.nt_sid = PORT_ANY;
884	notify.nt_did = PORT_ANY;
885	notify.nt_channel = GET_BUS_VAL(inp->in_iid);
886	notify.nt_tgt = inp->in_tgt;
887	notify.nt_lun = inp->in_lun;
888	IN_MAKE_TAGID(notify.nt_tagval, inp);
889	notify.nt_tagval |= (((uint64_t)(isp->isp_serno++)) << 32);
890	notify.nt_lreserved = inp;
891
892	if (status == IN_IDE_RECEIVED || status == IN_MSG_RECEIVED) {
893		switch (inp->in_msg[0]) {
894		case MSG_ABORT:
895			notify.nt_ncode = NT_ABORT_TASK_SET;
896			break;
897		case MSG_BUS_DEV_RESET:
898			notify.nt_ncode = NT_TARGET_RESET;
899			break;
900		case MSG_ABORT_TAG:
901			notify.nt_ncode = NT_ABORT_TASK;
902			break;
903		case MSG_CLEAR_QUEUE:
904			notify.nt_ncode = NT_CLEAR_TASK_SET;
905			break;
906		case MSG_REL_RECOVERY:
907			notify.nt_ncode = NT_CLEAR_ACA;
908			break;
909		case MSG_TERM_IO_PROC:
910			notify.nt_ncode = NT_ABORT_TASK;
911			break;
912		case MSG_LUN_RESET:
913			notify.nt_ncode = NT_LUN_RESET;
914			break;
915		default:
916			isp_prt(isp, ISP_LOGERR, "%s: unhandled message 0x%x", __func__, inp->in_msg[0]);
917			isp_async(isp, ISPASYNC_TARGET_NOTIFY_ACK, inp);
918			return;
919		}
920		isp_async(isp, ISPASYNC_TARGET_NOTIFY, &notify);
921	} else {
922		isp_prt(isp, ISP_LOGERR, "%s: unknown immediate notify status 0x%x", __func__, inp->in_status);
923		isp_async(isp, ISPASYNC_TARGET_NOTIFY_ACK, inp);
924	}
925}
926
927/*
928 * Synthesize a message from the task management flags in a FCP_CMND_IU.
929 */
930static void
931isp_got_msg_fc(ispsoftc_t *isp, in_fcentry_t *inp)
932{
933	isp_notify_t notify;
934	static const char f1[] = "%s from N-port handle 0x%x lun %d seq 0x%x";
935	static const char f2[] = "unknown %s 0x%x lun %d N-Port handle 0x%x task flags 0x%x seq 0x%x\n";
936	uint16_t seqid, loopid;
937
938	ISP_MEMZERO(&notify, sizeof (isp_notify_t));
939	notify.nt_hba = isp;
940	notify.nt_wwn = INI_ANY;
941	if (ISP_CAP_2KLOGIN(isp)) {
942		notify.nt_nphdl = ((in_fcentry_e_t *)inp)->in_iid;
943		loopid = ((in_fcentry_e_t *)inp)->in_iid;
944		seqid = ((in_fcentry_e_t *)inp)->in_seqid;
945	} else {
946		notify.nt_nphdl = inp->in_iid;
947		loopid = inp->in_iid;
948		seqid = inp->in_seqid;
949	}
950	notify.nt_sid = PORT_ANY;
951	notify.nt_did = PORT_ANY;
952
953	/* nt_tgt set in outer layers */
954	if (ISP_CAP_SCCFW(isp)) {
955		notify.nt_lun = inp->in_scclun;
956	} else {
957		notify.nt_lun = inp->in_lun;
958	}
959	notify.nt_tagval = seqid;
960	notify.nt_tagval |= (((uint64_t)(isp->isp_serno++)) << 32);
961	notify.nt_need_ack = 1;
962	notify.nt_lreserved = inp;
963
964	if (inp->in_status != IN_MSG_RECEIVED) {
965		isp_prt(isp, ISP_LOGINFO, f2, "immediate notify status", inp->in_status, notify.nt_lun, loopid, inp->in_task_flags, inp->in_seqid);
966		isp_async(isp, ISPASYNC_TARGET_NOTIFY_ACK, inp);
967		return;
968	}
969
970	if (inp->in_task_flags & TASK_FLAGS_ABORT_TASK_SET) {
971		isp_prt(isp, ISP_LOGINFO, f1, "ABORT TASK SET", loopid, notify.nt_lun, inp->in_seqid);
972		notify.nt_ncode = NT_ABORT_TASK_SET;
973	} else if (inp->in_task_flags & TASK_FLAGS_CLEAR_TASK_SET) {
974		isp_prt(isp, ISP_LOGINFO, f1, "CLEAR TASK SET", loopid, notify.nt_lun, inp->in_seqid);
975		notify.nt_ncode = NT_CLEAR_TASK_SET;
976	} else if (inp->in_task_flags & TASK_FLAGS_LUN_RESET) {
977		isp_prt(isp, ISP_LOGINFO, f1, "LUN RESET", loopid, notify.nt_lun, inp->in_seqid);
978		notify.nt_ncode = NT_LUN_RESET;
979	} else if (inp->in_task_flags & TASK_FLAGS_TARGET_RESET) {
980		isp_prt(isp, ISP_LOGINFO, f1, "TARGET RESET", loopid, notify.nt_lun, inp->in_seqid);
981		notify.nt_ncode = NT_TARGET_RESET;
982	} else if (inp->in_task_flags & TASK_FLAGS_CLEAR_ACA) {
983		isp_prt(isp, ISP_LOGINFO, f1, "CLEAR ACA", loopid, notify.nt_lun, inp->in_seqid);
984		notify.nt_ncode = NT_CLEAR_ACA;
985	} else {
986		isp_prt(isp, ISP_LOGWARN, f2, "task flag", inp->in_status, notify.nt_lun, loopid, inp->in_task_flags,  inp->in_seqid);
987		isp_async(isp, ISPASYNC_TARGET_NOTIFY_ACK, inp);
988		return;
989	}
990	isp_async(isp, ISPASYNC_TARGET_NOTIFY, &notify);
991}
992
993static void
994isp_got_tmf_24xx(ispsoftc_t *isp, at7_entry_t *aep)
995{
996	isp_notify_t notify;
997	static const char f1[] = "%s from PortID 0x%06x lun %d seq 0x%08x";
998	static const char f2[] = "unknown Task Flag 0x%x lun %d PortID 0x%x tag 0x%08x";
999	uint16_t chan;
1000	uint32_t sid, did;
1001
1002	ISP_MEMZERO(&notify, sizeof (isp_notify_t));
1003	notify.nt_hba = isp;
1004	notify.nt_wwn = INI_ANY;
1005	notify.nt_lun = (aep->at_cmnd.fcp_cmnd_lun[0] << 8) | (aep->at_cmnd.fcp_cmnd_lun[1]);
1006	notify.nt_tagval = aep->at_rxid;
1007	notify.nt_tagval |= (((uint64_t)(isp->isp_serno++)) << 32);
1008	notify.nt_lreserved = aep;
1009	sid = (aep->at_hdr.s_id[0] << 16) | (aep->at_hdr.s_id[1] <<  8) | (aep->at_hdr.s_id[2]);
1010
1011	/* Channel has to derived from D_ID */
1012	did = (aep->at_hdr.d_id[0] << 16) | (aep->at_hdr.d_id[1] << 8) | aep->at_hdr.d_id[2];
1013	for (chan = 0; chan < isp->isp_nchan; chan++) {
1014		if (FCPARAM(isp, chan)->isp_portid == did) {
1015			break;
1016		}
1017	}
1018	if (chan == isp->isp_nchan) {
1019		isp_prt(isp, ISP_LOGWARN, "%s: D_ID 0x%x not found on any channel", __func__, did);
1020		/* just drop on the floor */
1021		return;
1022	}
1023	notify.nt_nphdl = NIL_HANDLE; /* unknown here */
1024	notify.nt_sid = sid;
1025	notify.nt_did = did;
1026	notify.nt_channel = chan;
1027	if (aep->at_cmnd.fcp_cmnd_task_management & FCP_CMND_TMF_QUERY_TASK_SET) {
1028		isp_prt(isp, ISP_LOGINFO, f1, "QUERY TASK SET", sid, notify.nt_lun, aep->at_rxid);
1029		notify.nt_ncode = NT_QUERY_TASK_SET;
1030	} else if (aep->at_cmnd.fcp_cmnd_task_management & FCP_CMND_TMF_ABORT_TASK_SET) {
1031		isp_prt(isp, ISP_LOGINFO, f1, "ABORT TASK SET", sid, notify.nt_lun, aep->at_rxid);
1032		notify.nt_ncode = NT_ABORT_TASK_SET;
1033	} else if (aep->at_cmnd.fcp_cmnd_task_management & FCP_CMND_TMF_CLEAR_TASK_SET) {
1034		isp_prt(isp, ISP_LOGINFO, f1, "CLEAR TASK SET", sid, notify.nt_lun, aep->at_rxid);
1035		notify.nt_ncode = NT_CLEAR_TASK_SET;
1036	} else if (aep->at_cmnd.fcp_cmnd_task_management & FCP_CMND_TMF_QUERY_ASYNC_EVENT) {
1037		isp_prt(isp, ISP_LOGINFO, f1, "QUERY ASYNC EVENT", sid, notify.nt_lun, aep->at_rxid);
1038		notify.nt_ncode = NT_QUERY_ASYNC_EVENT;
1039	} else if (aep->at_cmnd.fcp_cmnd_task_management & FCP_CMND_TMF_LUN_RESET) {
1040		isp_prt(isp, ISP_LOGINFO, f1, "LUN RESET", sid, notify.nt_lun, aep->at_rxid);
1041		notify.nt_ncode = NT_LUN_RESET;
1042	} else if (aep->at_cmnd.fcp_cmnd_task_management & FCP_CMND_TMF_TGT_RESET) {
1043		isp_prt(isp, ISP_LOGINFO, f1, "TARGET RESET", sid, notify.nt_lun, aep->at_rxid);
1044		notify.nt_ncode = NT_TARGET_RESET;
1045	} else if (aep->at_cmnd.fcp_cmnd_task_management & FCP_CMND_TMF_CLEAR_ACA) {
1046		isp_prt(isp, ISP_LOGINFO, f1, "CLEAR ACA", sid, notify.nt_lun, aep->at_rxid);
1047		notify.nt_ncode = NT_CLEAR_ACA;
1048	} else {
1049		isp_prt(isp, ISP_LOGWARN, f2, aep->at_cmnd.fcp_cmnd_task_management, notify.nt_lun, sid, aep->at_rxid);
1050		notify.nt_ncode = NT_UNKNOWN;
1051		return;
1052	}
1053	isp_async(isp, ISPASYNC_TARGET_NOTIFY, &notify);
1054}
1055
1056int
1057isp_notify_ack(ispsoftc_t *isp, void *arg)
1058{
1059	char storage[QENTRY_LEN];
1060	void *outp;
1061
1062	/*
1063	 * This is in case a Task Management Function ends up here.
1064	 */
1065	if (IS_24XX(isp) && arg != NULL && (((isphdr_t *)arg)->rqs_entry_type == RQSTYPE_ATIO)) {
1066		at7_entry_t *aep = arg;
1067		return (isp_endcmd(isp, aep, NIL_HANDLE, 0, 0, 0));
1068	}
1069
1070	outp = isp_getrqentry(isp);
1071	if (outp == NULL) {
1072		isp_prt(isp, ISP_LOGWARN, rqo, __func__);
1073		return (1);
1074	}
1075
1076	ISP_MEMZERO(storage, QENTRY_LEN);
1077
1078	if (IS_24XX(isp)) {
1079		na_fcentry_24xx_t *na = (na_fcentry_24xx_t *) storage;
1080		na->na_header.rqs_entry_type = RQSTYPE_NOTIFY_ACK;
1081		na->na_header.rqs_entry_count = 1;
1082		if (arg) {
1083			in_fcentry_24xx_t *in = arg;
1084			na->na_nphdl = in->in_nphdl;
1085			na->na_flags = in->in_flags;
1086			na->na_status = in->in_status;
1087			na->na_status_subcode = in->in_status_subcode;
1088			na->na_rxid = in->in_rxid;
1089			na->na_oxid = in->in_oxid;
1090			na->na_vpidx = in->in_vpidx;
1091			if (in->in_status == IN24XX_SRR_RCVD) {
1092				na->na_srr_rxid = in->in_srr_rxid;
1093				na->na_srr_reloff_hi = in->in_srr_reloff_hi;
1094				na->na_srr_reloff_lo = in->in_srr_reloff_lo;
1095				na->na_srr_iu = in->in_srr_iu;
1096				/*
1097				 * Whether we're accepting the SRR or rejecting
1098				 * it is determined by looking at the in_reserved
1099				 * field in the original notify structure.
1100				 */
1101				if (in->in_reserved) {
1102					na->na_srr_flags = 1;
1103					na->na_srr_reject_vunique = 0;
1104					na->na_srr_reject_code = 9;		/* unable to perform this command at this time */
1105					na->na_srr_reject_explanation = 0x2a;	/* unable to supply the requested data */
1106				}
1107			}
1108		}
1109		isp_put_notify_24xx_ack(isp, na, (na_fcentry_24xx_t *)outp);
1110	} else if (IS_FC(isp)) {
1111		na_fcentry_t *na = (na_fcentry_t *) storage;
1112		int iid = 0;
1113
1114		if (arg) {
1115			in_fcentry_t *inp = arg;
1116			ISP_MEMCPY(storage, arg, sizeof (isphdr_t));
1117			if (ISP_CAP_2KLOGIN(isp)) {
1118				((na_fcentry_e_t *)na)->na_iid = ((in_fcentry_e_t *)inp)->in_iid;
1119				iid = ((na_fcentry_e_t *)na)->na_iid;
1120			} else {
1121				na->na_iid = inp->in_iid;
1122				iid = na->na_iid;
1123			}
1124			na->na_task_flags = inp->in_task_flags & TASK_FLAGS_RESERVED_MASK;
1125			na->na_seqid = inp->in_seqid;
1126			na->na_status = inp->in_status;
1127			na->na_flags = NAFC_RCOUNT;
1128			if (inp->in_status == IN_RESET) {
1129				na->na_flags = NAFC_RST_CLRD;	/* We do not modify resource counts for LIP resets */
1130			}
1131			if (inp->in_status == IN_MSG_RECEIVED) {
1132				na->na_flags |= NAFC_TVALID;
1133				na->na_response = 0;	/* XXX SUCCEEDED XXX */
1134			}
1135		} else {
1136			na->na_flags = NAFC_RST_CLRD;
1137		}
1138		na->na_header.rqs_entry_type = RQSTYPE_NOTIFY_ACK;
1139		na->na_header.rqs_entry_count = 1;
1140		if (ISP_CAP_2KLOGIN(isp)) {
1141			isp_put_notify_ack_fc_e(isp, (na_fcentry_e_t *) na, (na_fcentry_e_t *)outp);
1142		} else {
1143			isp_put_notify_ack_fc(isp, na, (na_fcentry_t *)outp);
1144		}
1145		isp_prt(isp, ISP_LOGTDEBUG0, "notify ack loopid %u seqid %x flags %x tflags %x response %x", iid, na->na_seqid,
1146		    na->na_flags, na->na_task_flags, na->na_response);
1147	} else {
1148		na_entry_t *na = (na_entry_t *) storage;
1149		if (arg) {
1150			in_entry_t *inp = arg;
1151			ISP_MEMCPY(storage, arg, sizeof (isphdr_t));
1152			na->na_iid = inp->in_iid;
1153			na->na_lun = inp->in_lun;
1154			na->na_tgt = inp->in_tgt;
1155			na->na_seqid = inp->in_seqid;
1156			if (inp->in_status == IN_RESET) {
1157				na->na_event = NA_RST_CLRD;
1158			}
1159		} else {
1160			na->na_event = NA_RST_CLRD;
1161		}
1162		na->na_header.rqs_entry_type = RQSTYPE_NOTIFY_ACK;
1163		na->na_header.rqs_entry_count = 1;
1164		isp_put_notify_ack(isp, na, (na_entry_t *)outp);
1165		isp_prt(isp, ISP_LOGTDEBUG0, "notify ack loopid %u lun %u tgt %u seqid %x event %x", na->na_iid, na->na_lun, na->na_tgt, na->na_seqid, na->na_event);
1166	}
1167	ISP_TDQE(isp, "isp_notify_ack", isp->isp_reqidx, storage);
1168	ISP_SYNC_REQUEST(isp);
1169	return (0);
1170}
1171
1172int
1173isp_acknak_abts(ispsoftc_t *isp, void *arg, int errno)
1174{
1175	char storage[QENTRY_LEN];
1176	uint16_t tmpw;
1177	uint8_t tmpb;
1178	abts_t *abts = arg;
1179	abts_rsp_t *rsp = (abts_rsp_t *) storage;
1180	void *outp;
1181
1182	if (!IS_24XX(isp)) {
1183		isp_prt(isp, ISP_LOGERR, "%s: called for non-24XX card", __func__);
1184		return (0);
1185	}
1186
1187	if (abts->abts_header.rqs_entry_type != RQSTYPE_ABTS_RCVD) {
1188		isp_prt(isp, ISP_LOGERR, "%s: called for non-ABTS entry (0x%x)", __func__, abts->abts_header.rqs_entry_type);
1189		return (0);
1190	}
1191
1192	outp = isp_getrqentry(isp);
1193	if (outp == NULL) {
1194		isp_prt(isp, ISP_LOGWARN, rqo, __func__);
1195		return (1);
1196	}
1197
1198	ISP_MEMCPY(rsp, abts, QENTRY_LEN);
1199	rsp->abts_rsp_header.rqs_entry_type = RQSTYPE_ABTS_RSP;
1200
1201	/*
1202	 * Swap destination and source for response.
1203	 */
1204	rsp->abts_rsp_r_ctl = BA_ACC;
1205	tmpw = rsp->abts_rsp_did_lo;
1206	tmpb = rsp->abts_rsp_did_hi;
1207	rsp->abts_rsp_did_lo = rsp->abts_rsp_sid_lo;
1208	rsp->abts_rsp_did_hi = rsp->abts_rsp_sid_hi;
1209	rsp->abts_rsp_sid_lo = tmpw;
1210	rsp->abts_rsp_sid_hi = tmpb;
1211
1212	rsp->abts_rsp_f_ctl_hi ^= 0x80; 	/* invert Exchange Context */
1213	rsp->abts_rsp_f_ctl_hi &= ~0x7f;	/* clear Sequence Initiator and other bits */
1214	rsp->abts_rsp_f_ctl_hi |= 0x10;		/* abort the whole exchange */
1215	rsp->abts_rsp_f_ctl_hi |= 0x8;		/* last data frame of sequence */
1216	rsp->abts_rsp_f_ctl_hi |= 0x1;		/* transfer Sequence Initiative */
1217	rsp->abts_rsp_f_ctl_lo = 0;
1218
1219	if (errno == 0) {
1220		uint16_t rx_id, ox_id;
1221
1222		rx_id = rsp->abts_rsp_rx_id;
1223		ox_id = rsp->abts_rsp_ox_id;
1224		ISP_MEMZERO(&rsp->abts_rsp_payload.ba_acc, sizeof (rsp->abts_rsp_payload.ba_acc));
1225                isp_prt(isp, ISP_LOGTINFO, "[0x%x] ABTS of 0x%x being BA_ACC'd", rsp->abts_rsp_rxid_abts, rsp->abts_rsp_rxid_task);
1226                rsp->abts_rsp_payload.ba_acc.aborted_rx_id = rx_id;
1227                rsp->abts_rsp_payload.ba_acc.aborted_ox_id = ox_id;
1228                rsp->abts_rsp_payload.ba_acc.high_seq_cnt = 0xffff;
1229	} else {
1230		ISP_MEMZERO(&rsp->abts_rsp_payload.ba_rjt, sizeof (rsp->abts_rsp_payload.ba_acc));
1231		switch (errno) {
1232		case ENOMEM:
1233			rsp->abts_rsp_payload.ba_rjt.reason = 5;	/* Logical Unit Busy */
1234			break;
1235		default:
1236			rsp->abts_rsp_payload.ba_rjt.reason = 9;	/* Unable to perform command request */
1237			break;
1238		}
1239	}
1240
1241	/*
1242	 * The caller will have set response values as appropriate
1243	 * in the ABTS structure just before calling us.
1244	 */
1245	isp_put_abts_rsp(isp, rsp, (abts_rsp_t *)outp);
1246	ISP_TDQE(isp, "isp_acknak_abts", isp->isp_reqidx, storage);
1247	ISP_SYNC_REQUEST(isp);
1248	return (0);
1249}
1250
1251static void
1252isp_handle_atio(ispsoftc_t *isp, at_entry_t *aep)
1253{
1254	int lun;
1255	lun = aep->at_lun;
1256	/*
1257	 * The firmware status (except for the QLTM_SVALID bit) indicates
1258	 * why this ATIO was sent to us.
1259	 *
1260	 * If QLTM_SVALID is set, the firware has recommended Sense Data.
1261	 *
1262	 * If the DISCONNECTS DISABLED bit is set in the flags field,
1263	 * we're still connected on the SCSI bus - i.e. the initiator
1264	 * did not set DiscPriv in the identify message. We don't care
1265	 * about this so it's ignored.
1266	 */
1267
1268	switch (aep->at_status & ~QLTM_SVALID) {
1269	case AT_PATH_INVALID:
1270		/*
1271		 * ATIO rejected by the firmware due to disabled lun.
1272		 */
1273		isp_prt(isp, ISP_LOGERR, "rejected ATIO for disabled lun %d", lun);
1274		break;
1275	case AT_NOCAP:
1276		/*
1277		 * Requested Capability not available
1278		 * We sent an ATIO that overflowed the firmware's
1279		 * command resource count.
1280		 */
1281		isp_prt(isp, ISP_LOGERR, "rejected ATIO for lun %d because of command count overflow", lun);
1282		break;
1283
1284	case AT_BDR_MSG:
1285		/*
1286		 * If we send an ATIO to the firmware to increment
1287		 * its command resource count, and the firmware is
1288		 * recovering from a Bus Device Reset, it returns
1289		 * the ATIO with this status. We set the command
1290		 * resource count in the Enable Lun entry and do
1291		 * not increment it. Therefore we should never get
1292		 * this status here.
1293		 */
1294		isp_prt(isp, ISP_LOGERR, atiocope, lun, GET_BUS_VAL(aep->at_iid));
1295		break;
1296
1297	case AT_CDB:		/* Got a CDB */
1298	case AT_PHASE_ERROR:	/* Bus Phase Sequence Error */
1299		/*
1300		 * Punt to platform specific layer.
1301		 */
1302		isp_async(isp, ISPASYNC_TARGET_ACTION, aep);
1303		break;
1304
1305	case AT_RESET:
1306		/*
1307		 * A bus reset came along and blew away this command. Why
1308		 * they do this in addition the async event code stuff,
1309		 * I dunno.
1310		 *
1311		 * Ignore it because the async event will clear things
1312		 * up for us.
1313		 */
1314		isp_prt(isp, ISP_LOGWARN, atior, lun, GET_IID_VAL(aep->at_iid), GET_BUS_VAL(aep->at_iid));
1315		break;
1316
1317
1318	default:
1319		isp_prt(isp, ISP_LOGERR, "Unknown ATIO status 0x%x from loopid %d for lun %d", aep->at_status, aep->at_iid, lun);
1320		(void) isp_target_put_atio(isp, aep);
1321		break;
1322	}
1323}
1324
1325static void
1326isp_handle_atio2(ispsoftc_t *isp, at2_entry_t *aep)
1327{
1328	int lun, iid;
1329
1330	if (ISP_CAP_SCCFW(isp)) {
1331		lun = aep->at_scclun;
1332	} else {
1333		lun = aep->at_lun;
1334	}
1335
1336	if (ISP_CAP_2KLOGIN(isp)) {
1337		iid = ((at2e_entry_t *)aep)->at_iid;
1338	} else {
1339		iid = aep->at_iid;
1340	}
1341
1342	/*
1343	 * The firmware status (except for the QLTM_SVALID bit) indicates
1344	 * why this ATIO was sent to us.
1345	 *
1346	 * If QLTM_SVALID is set, the firware has recommended Sense Data.
1347	 *
1348	 * If the DISCONNECTS DISABLED bit is set in the flags field,
1349	 * we're still connected on the SCSI bus - i.e. the initiator
1350	 * did not set DiscPriv in the identify message. We don't care
1351	 * about this so it's ignored.
1352	 */
1353
1354	switch (aep->at_status & ~QLTM_SVALID) {
1355	case AT_PATH_INVALID:
1356		/*
1357		 * ATIO rejected by the firmware due to disabled lun.
1358		 */
1359		isp_prt(isp, ISP_LOGERR, "rejected ATIO2 for disabled lun %d", lun);
1360		break;
1361	case AT_NOCAP:
1362		/*
1363		 * Requested Capability not available
1364		 * We sent an ATIO that overflowed the firmware's
1365		 * command resource count.
1366		 */
1367		isp_prt(isp, ISP_LOGERR, "rejected ATIO2 for lun %d- command count overflow", lun);
1368		break;
1369
1370	case AT_BDR_MSG:
1371		/*
1372		 * If we send an ATIO to the firmware to increment
1373		 * its command resource count, and the firmware is
1374		 * recovering from a Bus Device Reset, it returns
1375		 * the ATIO with this status. We set the command
1376		 * resource count in the Enable Lun entry and no
1377		 * not increment it. Therefore we should never get
1378		 * this status here.
1379		 */
1380		isp_prt(isp, ISP_LOGERR, atiocope, lun, 0);
1381		break;
1382
1383	case AT_CDB:		/* Got a CDB */
1384		/*
1385		 * Punt to platform specific layer.
1386		 */
1387		isp_async(isp, ISPASYNC_TARGET_ACTION, aep);
1388		break;
1389
1390	case AT_RESET:
1391		/*
1392		 * A bus reset came along an blew away this command. Why
1393		 * they do this in addition the async event code stuff,
1394		 * I dunno.
1395		 *
1396		 * Ignore it because the async event will clear things
1397		 * up for us.
1398		 */
1399		isp_prt(isp, ISP_LOGERR, atior, lun, iid, 0);
1400		break;
1401
1402
1403	default:
1404		isp_prt(isp, ISP_LOGERR, "Unknown ATIO2 status 0x%x from loopid %d for lun %d", aep->at_status, iid, lun);
1405		(void) isp_target_put_atio(isp, aep);
1406		break;
1407	}
1408}
1409
1410static void
1411isp_handle_ctio(ispsoftc_t *isp, ct_entry_t *ct)
1412{
1413	void *xs;
1414	int pl = ISP_LOGTDEBUG2;
1415	char *fmsg = NULL;
1416
1417	if (ct->ct_syshandle) {
1418		xs = isp_find_xs_tgt(isp, ct->ct_syshandle);
1419		if (xs == NULL) {
1420			pl = ISP_LOGALL;
1421		}
1422	} else {
1423		xs = NULL;
1424	}
1425
1426	switch (ct->ct_status & ~QLTM_SVALID) {
1427	case CT_OK:
1428		/*
1429		 * There are generally 3 possibilities as to why we'd get
1430		 * this condition:
1431		 * 	We disconnected after receiving a CDB.
1432		 * 	We sent or received data.
1433		 * 	We sent status & command complete.
1434		 */
1435
1436		if (ct->ct_flags & CT_SENDSTATUS) {
1437			break;
1438		} else if ((ct->ct_flags & CT_DATAMASK) == CT_NO_DATA) {
1439			/*
1440			 * Nothing to do in this case.
1441			 */
1442			isp_prt(isp, pl, "CTIO- iid %d disconnected OK", ct->ct_iid);
1443			return;
1444		}
1445		break;
1446
1447	case CT_BDR_MSG:
1448		/*
1449		 * Bus Device Reset message received or the SCSI Bus has
1450		 * been Reset; the firmware has gone to Bus Free.
1451		 *
1452		 * The firmware generates an async mailbox interrupt to
1453		 * notify us of this and returns outstanding CTIOs with this
1454		 * status. These CTIOs are handled in that same way as
1455		 * CT_ABORTED ones, so just fall through here.
1456		 */
1457		fmsg = "Bus Device Reset";
1458		/*FALLTHROUGH*/
1459	case CT_RESET:
1460		if (fmsg == NULL)
1461			fmsg = "Bus Reset";
1462		/*FALLTHROUGH*/
1463	case CT_ABORTED:
1464		/*
1465		 * When an Abort message is received the firmware goes to
1466		 * Bus Free and returns all outstanding CTIOs with the status
1467		 * set, then sends us an Immediate Notify entry.
1468		 */
1469		if (fmsg == NULL)
1470			fmsg = "ABORT TAG message sent by Initiator";
1471		isp_prt(isp, ISP_LOGTDEBUG0, "CTIO destroyed by %s", fmsg);
1472		break;
1473
1474	case CT_INVAL:
1475		/*
1476		 * CTIO rejected by the firmware due to disabled lun.
1477		 * "Cannot Happen".
1478		 */
1479		isp_prt(isp, ISP_LOGERR, "Firmware rejected CTIO for disabled lun %d", ct->ct_lun);
1480		break;
1481
1482	case CT_NOPATH:
1483		/*
1484		 * CTIO rejected by the firmware due "no path for the
1485		 * nondisconnecting nexus specified". This means that
1486		 * we tried to access the bus while a non-disconnecting
1487		 * command is in process.
1488		 */
1489		isp_prt(isp, ISP_LOGERR, "Firmware rejected CTIO for bad nexus %d/%d/%d", ct->ct_iid, ct->ct_tgt, ct->ct_lun);
1490		break;
1491
1492	case CT_RSELTMO:
1493		fmsg = "Reselection";
1494		/*FALLTHROUGH*/
1495	case CT_TIMEOUT:
1496		if (fmsg == NULL)
1497			fmsg = "Command";
1498		isp_prt(isp, ISP_LOGWARN, "Firmware timed out on %s", fmsg);
1499		break;
1500
1501	case	CT_PANIC:
1502		if (fmsg == NULL)
1503			fmsg = "Unrecoverable Error";
1504		/*FALLTHROUGH*/
1505	case CT_ERR:
1506		if (fmsg == NULL)
1507			fmsg = "Completed with Error";
1508		/*FALLTHROUGH*/
1509	case CT_PHASE_ERROR:
1510		if (fmsg == NULL)
1511			fmsg = "Phase Sequence Error";
1512		/*FALLTHROUGH*/
1513	case CT_TERMINATED:
1514		if (fmsg == NULL)
1515			fmsg = "terminated by TERMINATE TRANSFER";
1516		/*FALLTHROUGH*/
1517	case CT_NOACK:
1518		if (fmsg == NULL)
1519			fmsg = "unacknowledged Immediate Notify pending";
1520		isp_prt(isp, ISP_LOGERR, "CTIO returned by f/w- %s", fmsg);
1521		break;
1522	default:
1523		isp_prt(isp, ISP_LOGERR, "Unknown CTIO status 0x%x", ct->ct_status & ~QLTM_SVALID);
1524		break;
1525	}
1526
1527	if (xs == NULL) {
1528		/*
1529		 * There may be more than one CTIO for a data transfer,
1530		 * or this may be a status CTIO we're not monitoring.
1531		 *
1532		 * The assumption is that they'll all be returned in the
1533		 * order we got them.
1534		 */
1535		if (ct->ct_syshandle == 0) {
1536			if ((ct->ct_flags & CT_SENDSTATUS) == 0) {
1537				isp_prt(isp, pl, "intermediate CTIO completed ok");
1538			} else {
1539				isp_prt(isp, pl, "unmonitored CTIO completed ok");
1540			}
1541		} else {
1542			isp_prt(isp, pl, "NO xs for CTIO (handle 0x%x) status 0x%x", ct->ct_syshandle, ct->ct_status & ~QLTM_SVALID);
1543		}
1544	} else {
1545		/*
1546		 * Final CTIO completed. Release DMA resources and
1547		 * notify platform dependent layers.
1548		 */
1549		if ((ct->ct_flags & CT_DATAMASK) != CT_NO_DATA) {
1550			ISP_DMAFREE(isp, xs, ct->ct_syshandle);
1551		}
1552		isp_prt(isp, pl, "final CTIO complete");
1553		/*
1554		 * The platform layer will destroy the handle if appropriate.
1555		 */
1556		isp_async(isp, ISPASYNC_TARGET_ACTION, ct);
1557	}
1558}
1559
1560static void
1561isp_handle_ctio2(ispsoftc_t *isp, ct2_entry_t *ct)
1562{
1563	void *xs;
1564	int pl = ISP_LOGTDEBUG2;
1565	char *fmsg = NULL;
1566
1567	if (ct->ct_syshandle) {
1568		xs = isp_find_xs_tgt(isp, ct->ct_syshandle);
1569		if (xs == NULL) {
1570			pl = ISP_LOGALL;
1571		}
1572	} else {
1573		xs = NULL;
1574	}
1575
1576	switch (ct->ct_status & ~QLTM_SVALID) {
1577	case CT_BUS_ERROR:
1578		isp_prt(isp, ISP_LOGERR, "PCI DMA Bus Error");
1579		/* FALL Through */
1580	case CT_DATA_OVER:
1581	case CT_DATA_UNDER:
1582	case CT_OK:
1583		/*
1584		 * There are generally 2 possibilities as to why we'd get
1585		 * this condition:
1586		 * 	We sent or received data.
1587		 * 	We sent status & command complete.
1588		 */
1589
1590		break;
1591
1592	case CT_BDR_MSG:
1593		/*
1594		 * Target Reset function received.
1595		 *
1596		 * The firmware generates an async mailbox interrupt to
1597		 * notify us of this and returns outstanding CTIOs with this
1598		 * status. These CTIOs are handled in that same way as
1599		 * CT_ABORTED ones, so just fall through here.
1600		 */
1601		fmsg = "TARGET RESET";
1602		/*FALLTHROUGH*/
1603	case CT_RESET:
1604		if (fmsg == NULL)
1605			fmsg = "LIP Reset";
1606		/*FALLTHROUGH*/
1607	case CT_ABORTED:
1608		/*
1609		 * When an Abort message is received the firmware goes to
1610		 * Bus Free and returns all outstanding CTIOs with the status
1611		 * set, then sends us an Immediate Notify entry.
1612		 */
1613		if (fmsg == NULL) {
1614			fmsg = "ABORT";
1615		}
1616
1617		isp_prt(isp, ISP_LOGTDEBUG0, "CTIO2 destroyed by %s: RX_ID=0x%x", fmsg, ct->ct_rxid);
1618		break;
1619
1620	case CT_INVAL:
1621		/*
1622		 * CTIO rejected by the firmware - invalid data direction.
1623		 */
1624		isp_prt(isp, ISP_LOGERR, "CTIO2 had wrong data direction");
1625		break;
1626
1627	case CT_RSELTMO:
1628		fmsg = "failure to reconnect to initiator";
1629		/*FALLTHROUGH*/
1630	case CT_TIMEOUT:
1631		if (fmsg == NULL)
1632			fmsg = "command";
1633		isp_prt(isp, ISP_LOGWARN, "Firmware timed out on %s", fmsg);
1634		break;
1635
1636	case CT_ERR:
1637		fmsg = "Completed with Error";
1638		/*FALLTHROUGH*/
1639	case CT_LOGOUT:
1640		if (fmsg == NULL)
1641			fmsg = "Port Logout";
1642		/*FALLTHROUGH*/
1643	case CT_PORTUNAVAIL:
1644		if (fmsg == NULL)
1645			fmsg = "Port not available";
1646		/*FALLTHROUGH*/
1647	case CT_PORTCHANGED:
1648		if (fmsg == NULL)
1649			fmsg = "Port Changed";
1650		/*FALLTHROUGH*/
1651	case CT_NOACK:
1652		if (fmsg == NULL)
1653			fmsg = "unacknowledged Immediate Notify pending";
1654		isp_prt(isp, ISP_LOGWARN, "CTIO returned by f/w- %s", fmsg);
1655		break;
1656
1657	case CT_INVRXID:
1658		/*
1659		 * CTIO rejected by the firmware because an invalid RX_ID.
1660		 * Just print a message.
1661		 */
1662		isp_prt(isp, ISP_LOGWARN, "CTIO2 completed with Invalid RX_ID 0x%x", ct->ct_rxid);
1663		break;
1664
1665	default:
1666		isp_prt(isp, ISP_LOGERR, "Unknown CTIO2 status 0x%x", ct->ct_status & ~QLTM_SVALID);
1667		break;
1668	}
1669
1670	if (xs == NULL) {
1671		/*
1672		 * There may be more than one CTIO for a data transfer,
1673		 * or this may be a status CTIO we're not monitoring.
1674		 *
1675		 * The assumption is that they'll all be returned in the
1676		 * order we got them.
1677		 */
1678		if (ct->ct_syshandle == 0) {
1679			if ((ct->ct_flags & CT2_SENDSTATUS) == 0) {
1680				isp_prt(isp, pl, "intermediate CTIO completed ok");
1681			} else {
1682				isp_prt(isp, pl, "unmonitored CTIO completed ok");
1683			}
1684		} else {
1685			isp_prt(isp, pl, "NO xs for CTIO (handle 0x%x) status 0x%x", ct->ct_syshandle, ct->ct_status & ~QLTM_SVALID);
1686		}
1687	} else {
1688		if ((ct->ct_flags & CT2_DATAMASK) != CT2_NO_DATA) {
1689			ISP_DMAFREE(isp, xs, ct->ct_syshandle);
1690		}
1691		if (ct->ct_flags & CT2_SENDSTATUS) {
1692			/*
1693			 * Sent status and command complete.
1694			 *
1695			 * We're now really done with this command, so we
1696			 * punt to the platform dependent layers because
1697			 * only there can we do the appropriate command
1698			 * complete thread synchronization.
1699			 */
1700			isp_prt(isp, pl, "status CTIO complete");
1701		} else {
1702			/*
1703			 * Final CTIO completed. Release DMA resources and
1704			 * notify platform dependent layers.
1705			 */
1706			isp_prt(isp, pl, "data CTIO complete");
1707		}
1708		isp_async(isp, ISPASYNC_TARGET_ACTION, ct);
1709		/*
1710		 * The platform layer will destroy the handle if appropriate.
1711		 */
1712	}
1713}
1714
1715static void
1716isp_handle_ctio7(ispsoftc_t *isp, ct7_entry_t *ct)
1717{
1718	void *xs;
1719	int pl = ISP_LOGTDEBUG2;
1720	char *fmsg = NULL;
1721
1722	if (ct->ct_syshandle) {
1723		xs = isp_find_xs_tgt(isp, ct->ct_syshandle);
1724		if (xs == NULL) {
1725			pl = ISP_LOGALL;
1726		}
1727	} else {
1728		xs = NULL;
1729	}
1730
1731	switch (ct->ct_nphdl) {
1732	case CT7_BUS_ERROR:
1733		isp_prt(isp, ISP_LOGERR, "PCI DMA Bus Error");
1734		/* FALL Through */
1735	case CT7_DATA_OVER:
1736	case CT7_DATA_UNDER:
1737	case CT7_OK:
1738		/*
1739		 * There are generally 2 possibilities as to why we'd get
1740		 * this condition:
1741		 * 	We sent or received data.
1742		 * 	We sent status & command complete.
1743		 */
1744
1745		break;
1746
1747	case CT7_RESET:
1748		if (fmsg == NULL) {
1749			fmsg = "LIP Reset";
1750		}
1751		/*FALLTHROUGH*/
1752	case CT7_ABORTED:
1753		/*
1754		 * When an Abort message is received the firmware goes to
1755		 * Bus Free and returns all outstanding CTIOs with the status
1756		 * set, then sends us an Immediate Notify entry.
1757		 */
1758		if (fmsg == NULL) {
1759			fmsg = "ABORT";
1760		}
1761		isp_prt(isp, ISP_LOGTDEBUG0, "CTIO7 destroyed by %s: RX_ID=0x%x", fmsg, ct->ct_rxid);
1762		break;
1763
1764	case CT7_TIMEOUT:
1765		if (fmsg == NULL) {
1766			fmsg = "command";
1767		}
1768		isp_prt(isp, ISP_LOGWARN, "Firmware timed out on %s", fmsg);
1769		break;
1770
1771	case CT7_ERR:
1772		fmsg = "Completed with Error";
1773		/*FALLTHROUGH*/
1774	case CT7_LOGOUT:
1775		if (fmsg == NULL) {
1776			fmsg = "Port Logout";
1777		}
1778		/*FALLTHROUGH*/
1779	case CT7_PORTUNAVAIL:
1780		if (fmsg == NULL) {
1781			fmsg = "Port not available";
1782		}
1783		/*FALLTHROUGH*/
1784	case CT7_PORTCHANGED:
1785		if (fmsg == NULL) {
1786			fmsg = "Port Changed";
1787		}
1788		isp_prt(isp, ISP_LOGWARN, "CTIO returned by f/w- %s", fmsg);
1789		break;
1790
1791	case CT7_INVRXID:
1792		/*
1793		 * CTIO rejected by the firmware because an invalid RX_ID.
1794		 * Just print a message.
1795		 */
1796		isp_prt(isp, ISP_LOGWARN, "CTIO7 completed with Invalid RX_ID 0x%x", ct->ct_rxid);
1797		break;
1798
1799	case CT7_REASSY_ERR:
1800		isp_prt(isp, ISP_LOGWARN, "reassembly error");
1801		break;
1802
1803	case CT7_SRR:
1804		isp_prt(isp, ISP_LOGTDEBUG0, "SRR received");
1805		break;
1806
1807	default:
1808		isp_prt(isp, ISP_LOGERR, "Unknown CTIO7 status 0x%x", ct->ct_nphdl);
1809		break;
1810	}
1811
1812	if (xs == NULL) {
1813		/*
1814		 * There may be more than one CTIO for a data transfer,
1815		 * or this may be a status CTIO we're not monitoring.
1816		 *
1817		 * The assumption is that they'll all be returned in the
1818		 * order we got them.
1819		 */
1820		if (ct->ct_syshandle == 0) {
1821			if (ct->ct_flags & CT7_TERMINATE) {
1822				isp_prt(isp, ISP_LOGINFO, "termination of [RX_ID 0x%x] complete", ct->ct_rxid);
1823			} else if ((ct->ct_flags & CT7_SENDSTATUS) == 0) {
1824				isp_prt(isp, pl, "intermediate CTIO completed ok");
1825			} else {
1826				isp_prt(isp, pl, "unmonitored CTIO completed ok");
1827			}
1828		} else {
1829			isp_prt(isp, pl, "NO xs for CTIO (handle 0x%x) status 0x%x", ct->ct_syshandle, ct->ct_nphdl);
1830		}
1831	} else {
1832		if ((ct->ct_flags & CT7_DATAMASK) != CT7_NO_DATA) {
1833			ISP_DMAFREE(isp, xs, ct->ct_syshandle);
1834		}
1835		if (ct->ct_flags & CT7_SENDSTATUS) {
1836			/*
1837			 * Sent status and command complete.
1838			 *
1839			 * We're now really done with this command, so we
1840			 * punt to the platform dependent layers because
1841			 * only there can we do the appropriate command
1842			 * complete thread synchronization.
1843			 */
1844			isp_prt(isp, pl, "status CTIO complete");
1845		} else {
1846			/*
1847			 * Final CTIO completed. Release DMA resources and
1848			 * notify platform dependent layers.
1849			 */
1850			isp_prt(isp, pl, "data CTIO complete");
1851		}
1852		isp_async(isp, ISPASYNC_TARGET_ACTION, ct);
1853		/*
1854		 * The platform layer will destroy the handle if appropriate.
1855		 */
1856	}
1857}
1858
1859static void
1860isp_handle_24xx_inotify(ispsoftc_t *isp, in_fcentry_24xx_t *inot_24xx)
1861{
1862	uint8_t ochan, chan, lochan, hichan;
1863
1864	/*
1865	 * Check to see whether we got a wildcard channel.
1866	 * If so, we have to iterate over all channels.
1867	 */
1868	ochan = chan = ISP_GET_VPIDX(isp, inot_24xx->in_vpidx);
1869	if (chan == 0xff) {
1870		lochan = 0;
1871		hichan = isp->isp_nchan;
1872	} else {
1873		if (chan >= isp->isp_nchan) {
1874			char buf[64];
1875			ISP_SNPRINTF(buf, sizeof buf, "%s: bad channel %d for status 0x%x", __func__, chan, inot_24xx->in_status);
1876			isp_print_bytes(isp, buf, QENTRY_LEN, inot_24xx);
1877			isp_async(isp, ISPASYNC_TARGET_NOTIFY_ACK, inot_24xx);
1878			return;
1879		}
1880		lochan = chan;
1881		hichan = chan + 1;
1882	}
1883	isp_prt(isp, ISP_LOGTDEBUG1, "%s: Immediate Notify Channels %d..%d status=0x%x seqid=0x%x", __func__, lochan, hichan-1, inot_24xx->in_status, inot_24xx->in_rxid);
1884	for (chan = lochan; chan < hichan; chan++) {
1885		switch (inot_24xx->in_status) {
1886		case IN24XX_LIP_RESET:
1887		case IN24XX_LINK_RESET:
1888		case IN24XX_PORT_LOGOUT:
1889		case IN24XX_PORT_CHANGED:
1890		case IN24XX_LINK_FAILED:
1891		case IN24XX_SRR_RCVD:
1892		case IN24XX_ELS_RCVD:
1893			inot_24xx->in_reserved = 0;	/* clear this for later usage */
1894			inot_24xx->in_vpidx = chan;
1895			isp_async(isp, ISPASYNC_TARGET_ACTION, inot_24xx);
1896			break;
1897		default:
1898			isp_prt(isp, ISP_LOGINFO, "%s: unhandled status (0x%x) for chan %d", __func__, inot_24xx->in_status, chan);
1899			isp_async(isp, ISPASYNC_TARGET_NOTIFY_ACK, inot_24xx);
1900			break;
1901		}
1902	}
1903	inot_24xx->in_vpidx = ochan;
1904}
1905#endif
1906