xref: /freebsd/sys/dev/mpr/mpr_sas.c (revision 3921a9f75cdd1db5f277a655710d9de1ce316c2c)
1991554f2SKenneth D. Merry /*-
2991554f2SKenneth D. Merry  * Copyright (c) 2009 Yahoo! Inc.
3a2c14879SStephen McConnell  * Copyright (c) 2011-2015 LSI Corp.
47a2a6a1aSStephen McConnell  * Copyright (c) 2013-2016 Avago Technologies
5991554f2SKenneth D. Merry  * All rights reserved.
6991554f2SKenneth D. Merry  *
7991554f2SKenneth D. Merry  * Redistribution and use in source and binary forms, with or without
8991554f2SKenneth D. Merry  * modification, are permitted provided that the following conditions
9991554f2SKenneth D. Merry  * are met:
10991554f2SKenneth D. Merry  * 1. Redistributions of source code must retain the above copyright
11991554f2SKenneth D. Merry  *    notice, this list of conditions and the following disclaimer.
12991554f2SKenneth D. Merry  * 2. Redistributions in binary form must reproduce the above copyright
13991554f2SKenneth D. Merry  *    notice, this list of conditions and the following disclaimer in the
14991554f2SKenneth D. Merry  *    documentation and/or other materials provided with the distribution.
15991554f2SKenneth D. Merry  *
16991554f2SKenneth D. Merry  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
17991554f2SKenneth D. Merry  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18991554f2SKenneth D. Merry  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19991554f2SKenneth D. Merry  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
20991554f2SKenneth D. Merry  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21991554f2SKenneth D. Merry  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22991554f2SKenneth D. Merry  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23991554f2SKenneth D. Merry  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24991554f2SKenneth D. Merry  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25991554f2SKenneth D. Merry  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26991554f2SKenneth D. Merry  * SUCH DAMAGE.
27a2c14879SStephen McConnell  *
28a2c14879SStephen McConnell  * Avago Technologies (LSI) MPT-Fusion Host Adapter FreeBSD
29a2c14879SStephen McConnell  *
30991554f2SKenneth D. Merry  */
31991554f2SKenneth D. Merry 
32991554f2SKenneth D. Merry #include <sys/cdefs.h>
33991554f2SKenneth D. Merry __FBSDID("$FreeBSD$");
34991554f2SKenneth D. Merry 
35a2c14879SStephen McConnell /* Communications core for Avago Technologies (LSI) MPT3 */
36991554f2SKenneth D. Merry 
37991554f2SKenneth D. Merry /* TODO Move headers to mprvar */
38991554f2SKenneth D. Merry #include <sys/types.h>
39991554f2SKenneth D. Merry #include <sys/param.h>
40991554f2SKenneth D. Merry #include <sys/systm.h>
41991554f2SKenneth D. Merry #include <sys/kernel.h>
42991554f2SKenneth D. Merry #include <sys/selinfo.h>
43991554f2SKenneth D. Merry #include <sys/module.h>
44991554f2SKenneth D. Merry #include <sys/bus.h>
45991554f2SKenneth D. Merry #include <sys/conf.h>
46991554f2SKenneth D. Merry #include <sys/bio.h>
47991554f2SKenneth D. Merry #include <sys/malloc.h>
48991554f2SKenneth D. Merry #include <sys/uio.h>
49991554f2SKenneth D. Merry #include <sys/sysctl.h>
50991554f2SKenneth D. Merry #include <sys/endian.h>
51991554f2SKenneth D. Merry #include <sys/queue.h>
52991554f2SKenneth D. Merry #include <sys/kthread.h>
53991554f2SKenneth D. Merry #include <sys/taskqueue.h>
54991554f2SKenneth D. Merry #include <sys/sbuf.h>
55991554f2SKenneth D. Merry 
56991554f2SKenneth D. Merry #include <machine/bus.h>
57991554f2SKenneth D. Merry #include <machine/resource.h>
58991554f2SKenneth D. Merry #include <sys/rman.h>
59991554f2SKenneth D. Merry 
60991554f2SKenneth D. Merry #include <machine/stdarg.h>
61991554f2SKenneth D. Merry 
62991554f2SKenneth D. Merry #include <cam/cam.h>
63991554f2SKenneth D. Merry #include <cam/cam_ccb.h>
64991554f2SKenneth D. Merry #include <cam/cam_debug.h>
65991554f2SKenneth D. Merry #include <cam/cam_sim.h>
66991554f2SKenneth D. Merry #include <cam/cam_xpt_sim.h>
67991554f2SKenneth D. Merry #include <cam/cam_xpt_periph.h>
68991554f2SKenneth D. Merry #include <cam/cam_periph.h>
69991554f2SKenneth D. Merry #include <cam/scsi/scsi_all.h>
70991554f2SKenneth D. Merry #include <cam/scsi/scsi_message.h>
71991554f2SKenneth D. Merry #if __FreeBSD_version >= 900026
72991554f2SKenneth D. Merry #include <cam/scsi/smp_all.h>
73991554f2SKenneth D. Merry #endif
74991554f2SKenneth D. Merry 
7567feec50SStephen McConnell #include <dev/nvme/nvme.h>
7667feec50SStephen McConnell 
77991554f2SKenneth D. Merry #include <dev/mpr/mpi/mpi2_type.h>
78991554f2SKenneth D. Merry #include <dev/mpr/mpi/mpi2.h>
79991554f2SKenneth D. Merry #include <dev/mpr/mpi/mpi2_ioc.h>
80991554f2SKenneth D. Merry #include <dev/mpr/mpi/mpi2_sas.h>
8167feec50SStephen McConnell #include <dev/mpr/mpi/mpi2_pci.h>
82991554f2SKenneth D. Merry #include <dev/mpr/mpi/mpi2_cnfg.h>
83991554f2SKenneth D. Merry #include <dev/mpr/mpi/mpi2_init.h>
84991554f2SKenneth D. Merry #include <dev/mpr/mpi/mpi2_tool.h>
85991554f2SKenneth D. Merry #include <dev/mpr/mpr_ioctl.h>
86991554f2SKenneth D. Merry #include <dev/mpr/mprvar.h>
87991554f2SKenneth D. Merry #include <dev/mpr/mpr_table.h>
88991554f2SKenneth D. Merry #include <dev/mpr/mpr_sas.h>
89991554f2SKenneth D. Merry 
90991554f2SKenneth D. Merry #define MPRSAS_DISCOVERY_TIMEOUT	20
91991554f2SKenneth D. Merry #define MPRSAS_MAX_DISCOVERY_TIMEOUTS	10 /* 200 seconds */
92991554f2SKenneth D. Merry 
93991554f2SKenneth D. Merry /*
94991554f2SKenneth D. Merry  * static array to check SCSI OpCode for EEDP protection bits
95991554f2SKenneth D. Merry  */
96991554f2SKenneth D. Merry #define	PRO_R MPI2_SCSIIO_EEDPFLAGS_CHECK_REMOVE_OP
97991554f2SKenneth D. Merry #define	PRO_W MPI2_SCSIIO_EEDPFLAGS_INSERT_OP
98991554f2SKenneth D. Merry #define	PRO_V MPI2_SCSIIO_EEDPFLAGS_INSERT_OP
99991554f2SKenneth D. Merry static uint8_t op_code_prot[256] = {
100991554f2SKenneth D. Merry 	0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
101991554f2SKenneth D. Merry 	0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
102991554f2SKenneth D. Merry 	0, 0, 0, 0, 0, 0, 0, 0, PRO_R, 0, PRO_W, 0, 0, 0, PRO_W, PRO_V,
103991554f2SKenneth D. Merry 	0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
104991554f2SKenneth D. Merry 	0, PRO_W, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
105991554f2SKenneth D. Merry 	0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
106991554f2SKenneth D. Merry 	0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
107991554f2SKenneth D. Merry 	0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
108991554f2SKenneth D. Merry 	0, 0, 0, 0, 0, 0, 0, 0, PRO_R, 0, PRO_W, 0, 0, 0, PRO_W, PRO_V,
109991554f2SKenneth D. Merry 	0, 0, 0, PRO_W, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
110991554f2SKenneth D. Merry 	0, 0, 0, 0, 0, 0, 0, 0, PRO_R, 0, PRO_W, 0, 0, 0, PRO_W, PRO_V,
111991554f2SKenneth D. Merry 	0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
112991554f2SKenneth D. Merry 	0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
113991554f2SKenneth D. Merry 	0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
114991554f2SKenneth D. Merry 	0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
115991554f2SKenneth D. Merry 	0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0
116991554f2SKenneth D. Merry };
117991554f2SKenneth D. Merry 
118991554f2SKenneth D. Merry MALLOC_DEFINE(M_MPRSAS, "MPRSAS", "MPR SAS memory");
119991554f2SKenneth D. Merry 
120991554f2SKenneth D. Merry static void mprsas_remove_device(struct mpr_softc *, struct mpr_command *);
121991554f2SKenneth D. Merry static void mprsas_remove_complete(struct mpr_softc *, struct mpr_command *);
122991554f2SKenneth D. Merry static void mprsas_action(struct cam_sim *sim, union ccb *ccb);
123991554f2SKenneth D. Merry static void mprsas_poll(struct cam_sim *sim);
124991554f2SKenneth D. Merry static void mprsas_scsiio_timeout(void *data);
1257a2a6a1aSStephen McConnell static void mprsas_abort_complete(struct mpr_softc *sc, struct mpr_command *cm);
126991554f2SKenneth D. Merry static void mprsas_action_scsiio(struct mprsas_softc *, union ccb *);
127991554f2SKenneth D. Merry static void mprsas_scsiio_complete(struct mpr_softc *, struct mpr_command *);
128991554f2SKenneth D. Merry static void mprsas_action_resetdev(struct mprsas_softc *, union ccb *);
1297a2a6a1aSStephen McConnell static void mprsas_resetdev_complete(struct mpr_softc *, struct mpr_command *);
130991554f2SKenneth D. Merry static int mprsas_send_abort(struct mpr_softc *sc, struct mpr_command *tm,
131991554f2SKenneth D. Merry     struct mpr_command *cm);
132991554f2SKenneth D. Merry static void mprsas_async(void *callback_arg, uint32_t code,
133991554f2SKenneth D. Merry     struct cam_path *path, void *arg);
134991554f2SKenneth D. Merry #if (__FreeBSD_version < 901503) || \
135991554f2SKenneth D. Merry     ((__FreeBSD_version >= 1000000) && (__FreeBSD_version < 1000006))
136991554f2SKenneth D. Merry static void mprsas_check_eedp(struct mpr_softc *sc, struct cam_path *path,
137991554f2SKenneth D. Merry     struct ccb_getdev *cgd);
138991554f2SKenneth D. Merry static void mprsas_read_cap_done(struct cam_periph *periph,
139991554f2SKenneth D. Merry     union ccb *done_ccb);
140991554f2SKenneth D. Merry #endif
141991554f2SKenneth D. Merry static int mprsas_send_portenable(struct mpr_softc *sc);
142991554f2SKenneth D. Merry static void mprsas_portenable_complete(struct mpr_softc *sc,
143991554f2SKenneth D. Merry     struct mpr_command *cm);
144991554f2SKenneth D. Merry 
145991554f2SKenneth D. Merry #if __FreeBSD_version >= 900026
1467a2a6a1aSStephen McConnell static void mprsas_smpio_complete(struct mpr_softc *sc, struct mpr_command *cm);
1477a2a6a1aSStephen McConnell static void mprsas_send_smpcmd(struct mprsas_softc *sassc, union ccb *ccb,
1487a2a6a1aSStephen McConnell     uint64_t sasaddr);
149a2c14879SStephen McConnell static void mprsas_action_smpio(struct mprsas_softc *sassc, union ccb *ccb);
150a2c14879SStephen McConnell #endif //FreeBSD_version >= 900026
151991554f2SKenneth D. Merry 
152991554f2SKenneth D. Merry struct mprsas_target *
153991554f2SKenneth D. Merry mprsas_find_target_by_handle(struct mprsas_softc *sassc, int start,
154991554f2SKenneth D. Merry     uint16_t handle)
155991554f2SKenneth D. Merry {
156991554f2SKenneth D. Merry 	struct mprsas_target *target;
157991554f2SKenneth D. Merry 	int i;
158991554f2SKenneth D. Merry 
159991554f2SKenneth D. Merry 	for (i = start; i < sassc->maxtargets; i++) {
160991554f2SKenneth D. Merry 		target = &sassc->targets[i];
161991554f2SKenneth D. Merry 		if (target->handle == handle)
162991554f2SKenneth D. Merry 			return (target);
163991554f2SKenneth D. Merry 	}
164991554f2SKenneth D. Merry 
165991554f2SKenneth D. Merry 	return (NULL);
166991554f2SKenneth D. Merry }
167991554f2SKenneth D. Merry 
168991554f2SKenneth D. Merry /* we need to freeze the simq during attach and diag reset, to avoid failing
169991554f2SKenneth D. Merry  * commands before device handles have been found by discovery.  Since
170991554f2SKenneth D. Merry  * discovery involves reading config pages and possibly sending commands,
171991554f2SKenneth D. Merry  * discovery actions may continue even after we receive the end of discovery
172991554f2SKenneth D. Merry  * event, so refcount discovery actions instead of assuming we can unfreeze
173991554f2SKenneth D. Merry  * the simq when we get the event.
174991554f2SKenneth D. Merry  */
175991554f2SKenneth D. Merry void
176991554f2SKenneth D. Merry mprsas_startup_increment(struct mprsas_softc *sassc)
177991554f2SKenneth D. Merry {
178991554f2SKenneth D. Merry 	MPR_FUNCTRACE(sassc->sc);
179991554f2SKenneth D. Merry 
180991554f2SKenneth D. Merry 	if ((sassc->flags & MPRSAS_IN_STARTUP) != 0) {
181991554f2SKenneth D. Merry 		if (sassc->startup_refcount++ == 0) {
182991554f2SKenneth D. Merry 			/* just starting, freeze the simq */
183991554f2SKenneth D. Merry 			mpr_dprint(sassc->sc, MPR_INIT,
184991554f2SKenneth D. Merry 			    "%s freezing simq\n", __func__);
185a371d6f9SKenneth D. Merry #if (__FreeBSD_version >= 1000039) || \
186a371d6f9SKenneth D. Merry     ((__FreeBSD_version < 1000000) && (__FreeBSD_version >= 902502))
187991554f2SKenneth D. Merry 			xpt_hold_boot();
188991554f2SKenneth D. Merry #endif
189991554f2SKenneth D. Merry 			xpt_freeze_simq(sassc->sim, 1);
190991554f2SKenneth D. Merry 		}
191991554f2SKenneth D. Merry 		mpr_dprint(sassc->sc, MPR_INIT, "%s refcount %u\n", __func__,
192991554f2SKenneth D. Merry 		    sassc->startup_refcount);
193991554f2SKenneth D. Merry 	}
194991554f2SKenneth D. Merry }
195991554f2SKenneth D. Merry 
196991554f2SKenneth D. Merry void
197991554f2SKenneth D. Merry mprsas_release_simq_reinit(struct mprsas_softc *sassc)
198991554f2SKenneth D. Merry {
199991554f2SKenneth D. Merry 	if (sassc->flags & MPRSAS_QUEUE_FROZEN) {
200991554f2SKenneth D. Merry 		sassc->flags &= ~MPRSAS_QUEUE_FROZEN;
201991554f2SKenneth D. Merry 		xpt_release_simq(sassc->sim, 1);
202991554f2SKenneth D. Merry 		mpr_dprint(sassc->sc, MPR_INFO, "Unfreezing SIM queue\n");
203991554f2SKenneth D. Merry 	}
204991554f2SKenneth D. Merry }
205991554f2SKenneth D. Merry 
206991554f2SKenneth D. Merry void
207991554f2SKenneth D. Merry mprsas_startup_decrement(struct mprsas_softc *sassc)
208991554f2SKenneth D. Merry {
209991554f2SKenneth D. Merry 	MPR_FUNCTRACE(sassc->sc);
210991554f2SKenneth D. Merry 
211991554f2SKenneth D. Merry 	if ((sassc->flags & MPRSAS_IN_STARTUP) != 0) {
212991554f2SKenneth D. Merry 		if (--sassc->startup_refcount == 0) {
213991554f2SKenneth D. Merry 			/* finished all discovery-related actions, release
214991554f2SKenneth D. Merry 			 * the simq and rescan for the latest topology.
215991554f2SKenneth D. Merry 			 */
216991554f2SKenneth D. Merry 			mpr_dprint(sassc->sc, MPR_INIT,
217991554f2SKenneth D. Merry 			    "%s releasing simq\n", __func__);
218991554f2SKenneth D. Merry 			sassc->flags &= ~MPRSAS_IN_STARTUP;
219991554f2SKenneth D. Merry 			xpt_release_simq(sassc->sim, 1);
220a371d6f9SKenneth D. Merry #if (__FreeBSD_version >= 1000039) || \
221a371d6f9SKenneth D. Merry     ((__FreeBSD_version < 1000000) && (__FreeBSD_version >= 902502))
222991554f2SKenneth D. Merry 			xpt_release_boot();
223991554f2SKenneth D. Merry #else
224991554f2SKenneth D. Merry 			mprsas_rescan_target(sassc->sc, NULL);
225991554f2SKenneth D. Merry #endif
226991554f2SKenneth D. Merry 		}
227991554f2SKenneth D. Merry 		mpr_dprint(sassc->sc, MPR_INIT, "%s refcount %u\n", __func__,
228991554f2SKenneth D. Merry 		    sassc->startup_refcount);
229991554f2SKenneth D. Merry 	}
230991554f2SKenneth D. Merry }
231991554f2SKenneth D. Merry 
232b7f1ee79SScott Long /*
233b7f1ee79SScott Long  * The firmware requires us to stop sending commands when we're doing task
234b7f1ee79SScott Long  * management.
235991554f2SKenneth D. Merry  * use.
236b7f1ee79SScott Long  * XXX The logic for serializing the device has been made lazy and moved to
237b7f1ee79SScott Long  * mprsas_prepare_for_tm().
238991554f2SKenneth D. Merry  */
239991554f2SKenneth D. Merry struct mpr_command *
240991554f2SKenneth D. Merry mprsas_alloc_tm(struct mpr_softc *sc)
241991554f2SKenneth D. Merry {
242991554f2SKenneth D. Merry 	struct mpr_command *tm;
243991554f2SKenneth D. Merry 
244991554f2SKenneth D. Merry 	MPR_FUNCTRACE(sc);
245991554f2SKenneth D. Merry 	tm = mpr_alloc_high_priority_command(sc);
246991554f2SKenneth D. Merry 	return tm;
247991554f2SKenneth D. Merry }
248991554f2SKenneth D. Merry 
249991554f2SKenneth D. Merry void
250991554f2SKenneth D. Merry mprsas_free_tm(struct mpr_softc *sc, struct mpr_command *tm)
251991554f2SKenneth D. Merry {
25288619392SStephen McConnell 	int target_id = 0xFFFFFFFF;
25388619392SStephen McConnell 
254a2c14879SStephen McConnell 	MPR_FUNCTRACE(sc);
255991554f2SKenneth D. Merry 	if (tm == NULL)
256991554f2SKenneth D. Merry 		return;
257991554f2SKenneth D. Merry 
258a2c14879SStephen McConnell 	/*
259a2c14879SStephen McConnell 	 * For TM's the devq is frozen for the device.  Unfreeze it here and
260a2c14879SStephen McConnell 	 * free the resources used for freezing the devq.  Must clear the
261a2c14879SStephen McConnell 	 * INRESET flag as well or scsi I/O will not work.
262991554f2SKenneth D. Merry 	 */
263a2c14879SStephen McConnell 	if (tm->cm_targ != NULL) {
264a2c14879SStephen McConnell 		tm->cm_targ->flags &= ~MPRSAS_TARGET_INRESET;
26588619392SStephen McConnell 		target_id = tm->cm_targ->tid;
266991554f2SKenneth D. Merry 	}
267a2c14879SStephen McConnell 	if (tm->cm_ccb) {
268a2c14879SStephen McConnell 		mpr_dprint(sc, MPR_INFO, "Unfreezing devq for target ID %d\n",
26988619392SStephen McConnell 		    target_id);
270a2c14879SStephen McConnell 		xpt_release_devq(tm->cm_ccb->ccb_h.path, 1, TRUE);
271a2c14879SStephen McConnell 		xpt_free_path(tm->cm_ccb->ccb_h.path);
272a2c14879SStephen McConnell 		xpt_free_ccb(tm->cm_ccb);
273a2c14879SStephen McConnell 	}
274991554f2SKenneth D. Merry 
275991554f2SKenneth D. Merry 	mpr_free_high_priority_command(sc, tm);
276991554f2SKenneth D. Merry }
277991554f2SKenneth D. Merry 
278991554f2SKenneth D. Merry void
279991554f2SKenneth D. Merry mprsas_rescan_target(struct mpr_softc *sc, struct mprsas_target *targ)
280991554f2SKenneth D. Merry {
281991554f2SKenneth D. Merry 	struct mprsas_softc *sassc = sc->sassc;
282991554f2SKenneth D. Merry 	path_id_t pathid;
283991554f2SKenneth D. Merry 	target_id_t targetid;
284991554f2SKenneth D. Merry 	union ccb *ccb;
285991554f2SKenneth D. Merry 
286991554f2SKenneth D. Merry 	MPR_FUNCTRACE(sc);
287991554f2SKenneth D. Merry 	pathid = cam_sim_path(sassc->sim);
288991554f2SKenneth D. Merry 	if (targ == NULL)
289991554f2SKenneth D. Merry 		targetid = CAM_TARGET_WILDCARD;
290991554f2SKenneth D. Merry 	else
291991554f2SKenneth D. Merry 		targetid = targ - sassc->targets;
292991554f2SKenneth D. Merry 
293991554f2SKenneth D. Merry 	/*
294991554f2SKenneth D. Merry 	 * Allocate a CCB and schedule a rescan.
295991554f2SKenneth D. Merry 	 */
296991554f2SKenneth D. Merry 	ccb = xpt_alloc_ccb_nowait();
297991554f2SKenneth D. Merry 	if (ccb == NULL) {
298991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_ERROR, "unable to alloc CCB for rescan\n");
299991554f2SKenneth D. Merry 		return;
300991554f2SKenneth D. Merry 	}
301991554f2SKenneth D. Merry 
302a2c14879SStephen McConnell 	if (xpt_create_path(&ccb->ccb_h.path, NULL, pathid, targetid,
303a2c14879SStephen McConnell 	    CAM_LUN_WILDCARD) != CAM_REQ_CMP) {
304991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_ERROR, "unable to create path for rescan\n");
305991554f2SKenneth D. Merry 		xpt_free_ccb(ccb);
306991554f2SKenneth D. Merry 		return;
307991554f2SKenneth D. Merry 	}
308991554f2SKenneth D. Merry 
309991554f2SKenneth D. Merry 	if (targetid == CAM_TARGET_WILDCARD)
310991554f2SKenneth D. Merry 		ccb->ccb_h.func_code = XPT_SCAN_BUS;
311991554f2SKenneth D. Merry 	else
312991554f2SKenneth D. Merry 		ccb->ccb_h.func_code = XPT_SCAN_TGT;
313991554f2SKenneth D. Merry 
314991554f2SKenneth D. Merry 	mpr_dprint(sc, MPR_TRACE, "%s targetid %u\n", __func__, targetid);
315991554f2SKenneth D. Merry 	xpt_rescan(ccb);
316991554f2SKenneth D. Merry }
317991554f2SKenneth D. Merry 
318991554f2SKenneth D. Merry static void
319991554f2SKenneth D. Merry mprsas_log_command(struct mpr_command *cm, u_int level, const char *fmt, ...)
320991554f2SKenneth D. Merry {
321991554f2SKenneth D. Merry 	struct sbuf sb;
322991554f2SKenneth D. Merry 	va_list ap;
323991554f2SKenneth D. Merry 	char str[192];
324991554f2SKenneth D. Merry 	char path_str[64];
325991554f2SKenneth D. Merry 
326991554f2SKenneth D. Merry 	if (cm == NULL)
327991554f2SKenneth D. Merry 		return;
328991554f2SKenneth D. Merry 
329991554f2SKenneth D. Merry 	/* No need to be in here if debugging isn't enabled */
330991554f2SKenneth D. Merry 	if ((cm->cm_sc->mpr_debug & level) == 0)
331991554f2SKenneth D. Merry 		return;
332991554f2SKenneth D. Merry 
333991554f2SKenneth D. Merry 	sbuf_new(&sb, str, sizeof(str), 0);
334991554f2SKenneth D. Merry 
335991554f2SKenneth D. Merry 	va_start(ap, fmt);
336991554f2SKenneth D. Merry 
337991554f2SKenneth D. Merry 	if (cm->cm_ccb != NULL) {
338991554f2SKenneth D. Merry 		xpt_path_string(cm->cm_ccb->csio.ccb_h.path, path_str,
339991554f2SKenneth D. Merry 		    sizeof(path_str));
340991554f2SKenneth D. Merry 		sbuf_cat(&sb, path_str);
341991554f2SKenneth D. Merry 		if (cm->cm_ccb->ccb_h.func_code == XPT_SCSI_IO) {
342991554f2SKenneth D. Merry 			scsi_command_string(&cm->cm_ccb->csio, &sb);
343991554f2SKenneth D. Merry 			sbuf_printf(&sb, "length %d ",
344991554f2SKenneth D. Merry 			    cm->cm_ccb->csio.dxfer_len);
345991554f2SKenneth D. Merry 		}
346991554f2SKenneth D. Merry 	} else {
347991554f2SKenneth D. Merry 		sbuf_printf(&sb, "(noperiph:%s%d:%u:%u:%u): ",
348991554f2SKenneth D. Merry 		    cam_sim_name(cm->cm_sc->sassc->sim),
349991554f2SKenneth D. Merry 		    cam_sim_unit(cm->cm_sc->sassc->sim),
350991554f2SKenneth D. Merry 		    cam_sim_bus(cm->cm_sc->sassc->sim),
351991554f2SKenneth D. Merry 		    cm->cm_targ ? cm->cm_targ->tid : 0xFFFFFFFF,
352991554f2SKenneth D. Merry 		    cm->cm_lun);
353991554f2SKenneth D. Merry 	}
354991554f2SKenneth D. Merry 
355991554f2SKenneth D. Merry 	sbuf_printf(&sb, "SMID %u ", cm->cm_desc.Default.SMID);
356991554f2SKenneth D. Merry 	sbuf_vprintf(&sb, fmt, ap);
357991554f2SKenneth D. Merry 	sbuf_finish(&sb);
358c11c484fSScott Long 	mpr_print_field(cm->cm_sc, "%s", sbuf_data(&sb));
359991554f2SKenneth D. Merry 
360991554f2SKenneth D. Merry 	va_end(ap);
361991554f2SKenneth D. Merry }
362991554f2SKenneth D. Merry 
363991554f2SKenneth D. Merry static void
364991554f2SKenneth D. Merry mprsas_remove_volume(struct mpr_softc *sc, struct mpr_command *tm)
365991554f2SKenneth D. Merry {
366991554f2SKenneth D. Merry 	MPI2_SCSI_TASK_MANAGE_REPLY *reply;
367991554f2SKenneth D. Merry 	struct mprsas_target *targ;
368991554f2SKenneth D. Merry 	uint16_t handle;
369991554f2SKenneth D. Merry 
370991554f2SKenneth D. Merry 	MPR_FUNCTRACE(sc);
371991554f2SKenneth D. Merry 
372991554f2SKenneth D. Merry 	reply = (MPI2_SCSI_TASK_MANAGE_REPLY *)tm->cm_reply;
373991554f2SKenneth D. Merry 	handle = (uint16_t)(uintptr_t)tm->cm_complete_data;
374991554f2SKenneth D. Merry 	targ = tm->cm_targ;
375991554f2SKenneth D. Merry 
376991554f2SKenneth D. Merry 	if (reply == NULL) {
377991554f2SKenneth D. Merry 		/* XXX retry the remove after the diag reset completes? */
378991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_FAULT, "%s NULL reply resetting device "
379991554f2SKenneth D. Merry 		    "0x%04x\n", __func__, handle);
380991554f2SKenneth D. Merry 		mprsas_free_tm(sc, tm);
381991554f2SKenneth D. Merry 		return;
382991554f2SKenneth D. Merry 	}
383991554f2SKenneth D. Merry 
384d3f6eabfSStephen McConnell 	if ((le16toh(reply->IOCStatus) & MPI2_IOCSTATUS_MASK) !=
385d3f6eabfSStephen McConnell 	    MPI2_IOCSTATUS_SUCCESS) {
38658581c13SStephen McConnell 		mpr_dprint(sc, MPR_ERROR, "IOCStatus = 0x%x while resetting "
387d3f6eabfSStephen McConnell 		    "device 0x%x\n", le16toh(reply->IOCStatus), handle);
388991554f2SKenneth D. Merry 	}
389991554f2SKenneth D. Merry 
390991554f2SKenneth D. Merry 	mpr_dprint(sc, MPR_XINFO, "Reset aborted %u commands\n",
391d3f6eabfSStephen McConnell 	    le32toh(reply->TerminationCount));
392991554f2SKenneth D. Merry 	mpr_free_reply(sc, tm->cm_reply_data);
393991554f2SKenneth D. Merry 	tm->cm_reply = NULL;	/* Ensures the reply won't get re-freed */
394991554f2SKenneth D. Merry 
395991554f2SKenneth D. Merry 	mpr_dprint(sc, MPR_XINFO, "clearing target %u handle 0x%04x\n",
396991554f2SKenneth D. Merry 	    targ->tid, handle);
397991554f2SKenneth D. Merry 
398991554f2SKenneth D. Merry 	/*
399991554f2SKenneth D. Merry 	 * Don't clear target if remove fails because things will get confusing.
400991554f2SKenneth D. Merry 	 * Leave the devname and sasaddr intact so that we know to avoid reusing
401991554f2SKenneth D. Merry 	 * this target id if possible, and so we can assign the same target id
402991554f2SKenneth D. Merry 	 * to this device if it comes back in the future.
403991554f2SKenneth D. Merry 	 */
404d3f6eabfSStephen McConnell 	if ((le16toh(reply->IOCStatus) & MPI2_IOCSTATUS_MASK) ==
405d3f6eabfSStephen McConnell 	    MPI2_IOCSTATUS_SUCCESS) {
406991554f2SKenneth D. Merry 		targ = tm->cm_targ;
407991554f2SKenneth D. Merry 		targ->handle = 0x0;
408991554f2SKenneth D. Merry 		targ->encl_handle = 0x0;
409991554f2SKenneth D. Merry 		targ->encl_level_valid = 0x0;
410991554f2SKenneth D. Merry 		targ->encl_level = 0x0;
411991554f2SKenneth D. Merry 		targ->connector_name[0] = ' ';
412991554f2SKenneth D. Merry 		targ->connector_name[1] = ' ';
413991554f2SKenneth D. Merry 		targ->connector_name[2] = ' ';
414991554f2SKenneth D. Merry 		targ->connector_name[3] = ' ';
415991554f2SKenneth D. Merry 		targ->encl_slot = 0x0;
416991554f2SKenneth D. Merry 		targ->exp_dev_handle = 0x0;
417991554f2SKenneth D. Merry 		targ->phy_num = 0x0;
418991554f2SKenneth D. Merry 		targ->linkrate = 0x0;
419991554f2SKenneth D. Merry 		targ->devinfo = 0x0;
420991554f2SKenneth D. Merry 		targ->flags = 0x0;
421991554f2SKenneth D. Merry 		targ->scsi_req_desc_type = 0;
422991554f2SKenneth D. Merry 	}
423991554f2SKenneth D. Merry 
424991554f2SKenneth D. Merry 	mprsas_free_tm(sc, tm);
425991554f2SKenneth D. Merry }
426991554f2SKenneth D. Merry 
427991554f2SKenneth D. Merry 
428991554f2SKenneth D. Merry /*
429991554f2SKenneth D. Merry  * No Need to call "MPI2_SAS_OP_REMOVE_DEVICE" For Volume removal.
430991554f2SKenneth D. Merry  * Otherwise Volume Delete is same as Bare Drive Removal.
431991554f2SKenneth D. Merry  */
432991554f2SKenneth D. Merry void
433991554f2SKenneth D. Merry mprsas_prepare_volume_remove(struct mprsas_softc *sassc, uint16_t handle)
434991554f2SKenneth D. Merry {
435991554f2SKenneth D. Merry 	MPI2_SCSI_TASK_MANAGE_REQUEST *req;
436991554f2SKenneth D. Merry 	struct mpr_softc *sc;
437991554f2SKenneth D. Merry 	struct mpr_command *cm;
438991554f2SKenneth D. Merry 	struct mprsas_target *targ = NULL;
439991554f2SKenneth D. Merry 
440991554f2SKenneth D. Merry 	MPR_FUNCTRACE(sassc->sc);
441991554f2SKenneth D. Merry 	sc = sassc->sc;
442991554f2SKenneth D. Merry 
443991554f2SKenneth D. Merry 	targ = mprsas_find_target_by_handle(sassc, 0, handle);
444991554f2SKenneth D. Merry 	if (targ == NULL) {
445991554f2SKenneth D. Merry 		/* FIXME: what is the action? */
446991554f2SKenneth D. Merry 		/* We don't know about this device? */
447991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_ERROR,
448991554f2SKenneth D. Merry 		   "%s %d : invalid handle 0x%x \n", __func__,__LINE__, handle);
449991554f2SKenneth D. Merry 		return;
450991554f2SKenneth D. Merry 	}
451991554f2SKenneth D. Merry 
452991554f2SKenneth D. Merry 	targ->flags |= MPRSAS_TARGET_INREMOVAL;
453991554f2SKenneth D. Merry 
454991554f2SKenneth D. Merry 	cm = mprsas_alloc_tm(sc);
455991554f2SKenneth D. Merry 	if (cm == NULL) {
456991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_ERROR,
457991554f2SKenneth D. Merry 		    "%s: command alloc failure\n", __func__);
458991554f2SKenneth D. Merry 		return;
459991554f2SKenneth D. Merry 	}
460991554f2SKenneth D. Merry 
461991554f2SKenneth D. Merry 	mprsas_rescan_target(sc, targ);
462991554f2SKenneth D. Merry 
463991554f2SKenneth D. Merry 	req = (MPI2_SCSI_TASK_MANAGE_REQUEST *)cm->cm_req;
464991554f2SKenneth D. Merry 	req->DevHandle = targ->handle;
465991554f2SKenneth D. Merry 	req->Function = MPI2_FUNCTION_SCSI_TASK_MGMT;
466991554f2SKenneth D. Merry 	req->TaskType = MPI2_SCSITASKMGMT_TASKTYPE_TARGET_RESET;
467991554f2SKenneth D. Merry 
468991554f2SKenneth D. Merry 	/* SAS Hard Link Reset / SATA Link Reset */
469991554f2SKenneth D. Merry 	req->MsgFlags = MPI2_SCSITASKMGMT_MSGFLAGS_LINK_RESET;
470991554f2SKenneth D. Merry 
471991554f2SKenneth D. Merry 	cm->cm_targ = targ;
472991554f2SKenneth D. Merry 	cm->cm_data = NULL;
473991554f2SKenneth D. Merry 	cm->cm_complete = mprsas_remove_volume;
474991554f2SKenneth D. Merry 	cm->cm_complete_data = (void *)(uintptr_t)handle;
475a2c14879SStephen McConnell 
476a2c14879SStephen McConnell 	mpr_dprint(sc, MPR_INFO, "%s: Sending reset for target ID %d\n",
477a2c14879SStephen McConnell 	    __func__, targ->tid);
478a2c14879SStephen McConnell 	mprsas_prepare_for_tm(sc, cm, targ, CAM_LUN_WILDCARD);
479a2c14879SStephen McConnell 
480991554f2SKenneth D. Merry 	mpr_map_command(sc, cm);
481991554f2SKenneth D. Merry }
482991554f2SKenneth D. Merry 
483991554f2SKenneth D. Merry /*
48467feec50SStephen McConnell  * The firmware performs debounce on the link to avoid transient link errors
48567feec50SStephen McConnell  * and false removals.  When it does decide that link has been lost and a
48667feec50SStephen McConnell  * device needs to go away, it expects that the host will perform a target reset
48767feec50SStephen McConnell  * and then an op remove.  The reset has the side-effect of aborting any
48867feec50SStephen McConnell  * outstanding requests for the device, which is required for the op-remove to
48967feec50SStephen McConnell  * succeed.  It's not clear if the host should check for the device coming back
49067feec50SStephen McConnell  * alive after the reset.
491991554f2SKenneth D. Merry  */
492991554f2SKenneth D. Merry void
493991554f2SKenneth D. Merry mprsas_prepare_remove(struct mprsas_softc *sassc, uint16_t handle)
494991554f2SKenneth D. Merry {
495991554f2SKenneth D. Merry 	MPI2_SCSI_TASK_MANAGE_REQUEST *req;
496991554f2SKenneth D. Merry 	struct mpr_softc *sc;
497991554f2SKenneth D. Merry 	struct mpr_command *cm;
498991554f2SKenneth D. Merry 	struct mprsas_target *targ = NULL;
499991554f2SKenneth D. Merry 
500991554f2SKenneth D. Merry 	MPR_FUNCTRACE(sassc->sc);
501991554f2SKenneth D. Merry 
502991554f2SKenneth D. Merry 	sc = sassc->sc;
503991554f2SKenneth D. Merry 
504991554f2SKenneth D. Merry 	targ = mprsas_find_target_by_handle(sassc, 0, handle);
505991554f2SKenneth D. Merry 	if (targ == NULL) {
506991554f2SKenneth D. Merry 		/* FIXME: what is the action? */
507991554f2SKenneth D. Merry 		/* We don't know about this device? */
508991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_ERROR, "%s : invalid handle 0x%x \n",
509991554f2SKenneth D. Merry 		    __func__, handle);
510991554f2SKenneth D. Merry 		return;
511991554f2SKenneth D. Merry 	}
512991554f2SKenneth D. Merry 
513991554f2SKenneth D. Merry 	targ->flags |= MPRSAS_TARGET_INREMOVAL;
514991554f2SKenneth D. Merry 
515991554f2SKenneth D. Merry 	cm = mprsas_alloc_tm(sc);
516991554f2SKenneth D. Merry 	if (cm == NULL) {
517991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_ERROR, "%s: command alloc failure\n",
518991554f2SKenneth D. Merry 		    __func__);
519991554f2SKenneth D. Merry 		return;
520991554f2SKenneth D. Merry 	}
521991554f2SKenneth D. Merry 
522991554f2SKenneth D. Merry 	mprsas_rescan_target(sc, targ);
523991554f2SKenneth D. Merry 
524991554f2SKenneth D. Merry 	req = (MPI2_SCSI_TASK_MANAGE_REQUEST *)cm->cm_req;
525991554f2SKenneth D. Merry 	memset(req, 0, sizeof(*req));
526991554f2SKenneth D. Merry 	req->DevHandle = htole16(targ->handle);
527991554f2SKenneth D. Merry 	req->Function = MPI2_FUNCTION_SCSI_TASK_MGMT;
528991554f2SKenneth D. Merry 	req->TaskType = MPI2_SCSITASKMGMT_TASKTYPE_TARGET_RESET;
529991554f2SKenneth D. Merry 
530991554f2SKenneth D. Merry 	/* SAS Hard Link Reset / SATA Link Reset */
531991554f2SKenneth D. Merry 	req->MsgFlags = MPI2_SCSITASKMGMT_MSGFLAGS_LINK_RESET;
532991554f2SKenneth D. Merry 
533991554f2SKenneth D. Merry 	cm->cm_targ = targ;
534991554f2SKenneth D. Merry 	cm->cm_data = NULL;
535991554f2SKenneth D. Merry 	cm->cm_complete = mprsas_remove_device;
536991554f2SKenneth D. Merry 	cm->cm_complete_data = (void *)(uintptr_t)handle;
537a2c14879SStephen McConnell 
538a2c14879SStephen McConnell 	mpr_dprint(sc, MPR_INFO, "%s: Sending reset for target ID %d\n",
539a2c14879SStephen McConnell 	    __func__, targ->tid);
540a2c14879SStephen McConnell 	mprsas_prepare_for_tm(sc, cm, targ, CAM_LUN_WILDCARD);
541a2c14879SStephen McConnell 
542991554f2SKenneth D. Merry 	mpr_map_command(sc, cm);
543991554f2SKenneth D. Merry }
544991554f2SKenneth D. Merry 
545991554f2SKenneth D. Merry static void
546991554f2SKenneth D. Merry mprsas_remove_device(struct mpr_softc *sc, struct mpr_command *tm)
547991554f2SKenneth D. Merry {
548991554f2SKenneth D. Merry 	MPI2_SCSI_TASK_MANAGE_REPLY *reply;
549991554f2SKenneth D. Merry 	MPI2_SAS_IOUNIT_CONTROL_REQUEST *req;
550991554f2SKenneth D. Merry 	struct mprsas_target *targ;
551991554f2SKenneth D. Merry 	struct mpr_command *next_cm;
552991554f2SKenneth D. Merry 	uint16_t handle;
553991554f2SKenneth D. Merry 
554991554f2SKenneth D. Merry 	MPR_FUNCTRACE(sc);
555991554f2SKenneth D. Merry 
556991554f2SKenneth D. Merry 	reply = (MPI2_SCSI_TASK_MANAGE_REPLY *)tm->cm_reply;
557991554f2SKenneth D. Merry 	handle = (uint16_t)(uintptr_t)tm->cm_complete_data;
558991554f2SKenneth D. Merry 	targ = tm->cm_targ;
559991554f2SKenneth D. Merry 
560991554f2SKenneth D. Merry 	/*
561991554f2SKenneth D. Merry 	 * Currently there should be no way we can hit this case.  It only
562991554f2SKenneth D. Merry 	 * happens when we have a failure to allocate chain frames, and
563991554f2SKenneth D. Merry 	 * task management commands don't have S/G lists.
564991554f2SKenneth D. Merry 	 */
565991554f2SKenneth D. Merry 	if ((tm->cm_flags & MPR_CM_FLAGS_ERROR_MASK) != 0) {
566991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_ERROR, "%s: cm_flags = %#x for remove of "
567991554f2SKenneth D. Merry 		    "handle %#04x! This should not happen!\n", __func__,
568991554f2SKenneth D. Merry 		    tm->cm_flags, handle);
569991554f2SKenneth D. Merry 	}
570991554f2SKenneth D. Merry 
571991554f2SKenneth D. Merry 	if (reply == NULL) {
572991554f2SKenneth D. Merry 		/* XXX retry the remove after the diag reset completes? */
573991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_FAULT, "%s NULL reply resetting device "
574991554f2SKenneth D. Merry 		    "0x%04x\n", __func__, handle);
575991554f2SKenneth D. Merry 		mprsas_free_tm(sc, tm);
576991554f2SKenneth D. Merry 		return;
577991554f2SKenneth D. Merry 	}
578991554f2SKenneth D. Merry 
579d3f6eabfSStephen McConnell 	if ((le16toh(reply->IOCStatus) & MPI2_IOCSTATUS_MASK) !=
580d3f6eabfSStephen McConnell 	    MPI2_IOCSTATUS_SUCCESS) {
58158581c13SStephen McConnell 		mpr_dprint(sc, MPR_ERROR, "IOCStatus = 0x%x while resetting "
582991554f2SKenneth D. Merry 		    "device 0x%x\n", le16toh(reply->IOCStatus), handle);
583991554f2SKenneth D. Merry 	}
584991554f2SKenneth D. Merry 
585991554f2SKenneth D. Merry 	mpr_dprint(sc, MPR_XINFO, "Reset aborted %u commands\n",
586991554f2SKenneth D. Merry 	    le32toh(reply->TerminationCount));
587991554f2SKenneth D. Merry 	mpr_free_reply(sc, tm->cm_reply_data);
588991554f2SKenneth D. Merry 	tm->cm_reply = NULL;	/* Ensures the reply won't get re-freed */
589991554f2SKenneth D. Merry 
590991554f2SKenneth D. Merry 	/* Reuse the existing command */
591991554f2SKenneth D. Merry 	req = (MPI2_SAS_IOUNIT_CONTROL_REQUEST *)tm->cm_req;
592991554f2SKenneth D. Merry 	memset(req, 0, sizeof(*req));
593991554f2SKenneth D. Merry 	req->Function = MPI2_FUNCTION_SAS_IO_UNIT_CONTROL;
594991554f2SKenneth D. Merry 	req->Operation = MPI2_SAS_OP_REMOVE_DEVICE;
595991554f2SKenneth D. Merry 	req->DevHandle = htole16(handle);
596991554f2SKenneth D. Merry 	tm->cm_data = NULL;
597991554f2SKenneth D. Merry 	tm->cm_desc.Default.RequestFlags = MPI2_REQ_DESCRIPT_FLAGS_DEFAULT_TYPE;
598991554f2SKenneth D. Merry 	tm->cm_complete = mprsas_remove_complete;
599991554f2SKenneth D. Merry 	tm->cm_complete_data = (void *)(uintptr_t)handle;
600991554f2SKenneth D. Merry 
601991554f2SKenneth D. Merry 	mpr_map_command(sc, tm);
602991554f2SKenneth D. Merry 
603a2c14879SStephen McConnell 	mpr_dprint(sc, MPR_INFO, "clearing target %u handle 0x%04x\n",
604991554f2SKenneth D. Merry 	    targ->tid, handle);
605991554f2SKenneth D. Merry 	if (targ->encl_level_valid) {
606a2c14879SStephen McConnell 		mpr_dprint(sc, MPR_INFO, "At enclosure level %d, slot %d, "
607991554f2SKenneth D. Merry 		    "connector name (%4s)\n", targ->encl_level, targ->encl_slot,
608991554f2SKenneth D. Merry 		    targ->connector_name);
609991554f2SKenneth D. Merry 	}
610991554f2SKenneth D. Merry 	TAILQ_FOREACH_SAFE(tm, &targ->commands, cm_link, next_cm) {
611991554f2SKenneth D. Merry 		union ccb *ccb;
612991554f2SKenneth D. Merry 
613991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_XINFO, "Completing missed command %p\n", tm);
614991554f2SKenneth D. Merry 		ccb = tm->cm_complete_data;
615a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_DEV_NOT_THERE);
616991554f2SKenneth D. Merry 		mprsas_scsiio_complete(sc, tm);
617991554f2SKenneth D. Merry 	}
618991554f2SKenneth D. Merry }
619991554f2SKenneth D. Merry 
620991554f2SKenneth D. Merry static void
621991554f2SKenneth D. Merry mprsas_remove_complete(struct mpr_softc *sc, struct mpr_command *tm)
622991554f2SKenneth D. Merry {
623991554f2SKenneth D. Merry 	MPI2_SAS_IOUNIT_CONTROL_REPLY *reply;
624991554f2SKenneth D. Merry 	uint16_t handle;
625991554f2SKenneth D. Merry 	struct mprsas_target *targ;
626991554f2SKenneth D. Merry 	struct mprsas_lun *lun;
627991554f2SKenneth D. Merry 
628991554f2SKenneth D. Merry 	MPR_FUNCTRACE(sc);
629991554f2SKenneth D. Merry 
630991554f2SKenneth D. Merry 	reply = (MPI2_SAS_IOUNIT_CONTROL_REPLY *)tm->cm_reply;
631991554f2SKenneth D. Merry 	handle = (uint16_t)(uintptr_t)tm->cm_complete_data;
632991554f2SKenneth D. Merry 
633991554f2SKenneth D. Merry 	/*
634991554f2SKenneth D. Merry 	 * Currently there should be no way we can hit this case.  It only
635991554f2SKenneth D. Merry 	 * happens when we have a failure to allocate chain frames, and
636991554f2SKenneth D. Merry 	 * task management commands don't have S/G lists.
637991554f2SKenneth D. Merry 	 */
638991554f2SKenneth D. Merry 	if ((tm->cm_flags & MPR_CM_FLAGS_ERROR_MASK) != 0) {
639991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_XINFO, "%s: cm_flags = %#x for remove of "
640991554f2SKenneth D. Merry 		    "handle %#04x! This should not happen!\n", __func__,
641991554f2SKenneth D. Merry 		    tm->cm_flags, handle);
642991554f2SKenneth D. Merry 		mprsas_free_tm(sc, tm);
643991554f2SKenneth D. Merry 		return;
644991554f2SKenneth D. Merry 	}
645991554f2SKenneth D. Merry 
646991554f2SKenneth D. Merry 	if (reply == NULL) {
647991554f2SKenneth D. Merry 		/* most likely a chip reset */
648991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_FAULT, "%s NULL reply removing device "
649991554f2SKenneth D. Merry 		    "0x%04x\n", __func__, handle);
650991554f2SKenneth D. Merry 		mprsas_free_tm(sc, tm);
651991554f2SKenneth D. Merry 		return;
652991554f2SKenneth D. Merry 	}
653991554f2SKenneth D. Merry 
654991554f2SKenneth D. Merry 	mpr_dprint(sc, MPR_XINFO, "%s on handle 0x%04x, IOCStatus= 0x%x\n",
655991554f2SKenneth D. Merry 	    __func__, handle, le16toh(reply->IOCStatus));
656991554f2SKenneth D. Merry 
657991554f2SKenneth D. Merry 	/*
658991554f2SKenneth D. Merry 	 * Don't clear target if remove fails because things will get confusing.
659991554f2SKenneth D. Merry 	 * Leave the devname and sasaddr intact so that we know to avoid reusing
660991554f2SKenneth D. Merry 	 * this target id if possible, and so we can assign the same target id
661991554f2SKenneth D. Merry 	 * to this device if it comes back in the future.
662991554f2SKenneth D. Merry 	 */
663d3f6eabfSStephen McConnell 	if ((le16toh(reply->IOCStatus) & MPI2_IOCSTATUS_MASK) ==
664d3f6eabfSStephen McConnell 	    MPI2_IOCSTATUS_SUCCESS) {
665991554f2SKenneth D. Merry 		targ = tm->cm_targ;
666991554f2SKenneth D. Merry 		targ->handle = 0x0;
667991554f2SKenneth D. Merry 		targ->encl_handle = 0x0;
668991554f2SKenneth D. Merry 		targ->encl_level_valid = 0x0;
669991554f2SKenneth D. Merry 		targ->encl_level = 0x0;
670991554f2SKenneth D. Merry 		targ->connector_name[0] = ' ';
671991554f2SKenneth D. Merry 		targ->connector_name[1] = ' ';
672991554f2SKenneth D. Merry 		targ->connector_name[2] = ' ';
673991554f2SKenneth D. Merry 		targ->connector_name[3] = ' ';
674991554f2SKenneth D. Merry 		targ->encl_slot = 0x0;
675991554f2SKenneth D. Merry 		targ->exp_dev_handle = 0x0;
676991554f2SKenneth D. Merry 		targ->phy_num = 0x0;
677991554f2SKenneth D. Merry 		targ->linkrate = 0x0;
678991554f2SKenneth D. Merry 		targ->devinfo = 0x0;
679991554f2SKenneth D. Merry 		targ->flags = 0x0;
680991554f2SKenneth D. Merry 		targ->scsi_req_desc_type = 0;
681991554f2SKenneth D. Merry 
682991554f2SKenneth D. Merry 		while (!SLIST_EMPTY(&targ->luns)) {
683991554f2SKenneth D. Merry 			lun = SLIST_FIRST(&targ->luns);
684991554f2SKenneth D. Merry 			SLIST_REMOVE_HEAD(&targ->luns, lun_link);
685991554f2SKenneth D. Merry 			free(lun, M_MPR);
686991554f2SKenneth D. Merry 		}
687991554f2SKenneth D. Merry 	}
688991554f2SKenneth D. Merry 
689991554f2SKenneth D. Merry 	mprsas_free_tm(sc, tm);
690991554f2SKenneth D. Merry }
691991554f2SKenneth D. Merry 
692991554f2SKenneth D. Merry static int
693991554f2SKenneth D. Merry mprsas_register_events(struct mpr_softc *sc)
694991554f2SKenneth D. Merry {
695991554f2SKenneth D. Merry 	uint8_t events[16];
696991554f2SKenneth D. Merry 
697991554f2SKenneth D. Merry 	bzero(events, 16);
698991554f2SKenneth D. Merry 	setbit(events, MPI2_EVENT_SAS_DEVICE_STATUS_CHANGE);
699991554f2SKenneth D. Merry 	setbit(events, MPI2_EVENT_SAS_DISCOVERY);
700991554f2SKenneth D. Merry 	setbit(events, MPI2_EVENT_SAS_BROADCAST_PRIMITIVE);
701991554f2SKenneth D. Merry 	setbit(events, MPI2_EVENT_SAS_INIT_DEVICE_STATUS_CHANGE);
702991554f2SKenneth D. Merry 	setbit(events, MPI2_EVENT_SAS_INIT_TABLE_OVERFLOW);
703991554f2SKenneth D. Merry 	setbit(events, MPI2_EVENT_SAS_TOPOLOGY_CHANGE_LIST);
704991554f2SKenneth D. Merry 	setbit(events, MPI2_EVENT_SAS_ENCL_DEVICE_STATUS_CHANGE);
705991554f2SKenneth D. Merry 	setbit(events, MPI2_EVENT_IR_CONFIGURATION_CHANGE_LIST);
706991554f2SKenneth D. Merry 	setbit(events, MPI2_EVENT_IR_VOLUME);
707991554f2SKenneth D. Merry 	setbit(events, MPI2_EVENT_IR_PHYSICAL_DISK);
708991554f2SKenneth D. Merry 	setbit(events, MPI2_EVENT_IR_OPERATION_STATUS);
709991554f2SKenneth D. Merry 	setbit(events, MPI2_EVENT_TEMP_THRESHOLD);
7105f5baf0eSAlexander Motin 	setbit(events, MPI2_EVENT_SAS_DEVICE_DISCOVERY_ERROR);
71167feec50SStephen McConnell 	if (sc->facts->MsgVersion >= MPI2_VERSION_02_06) {
7122bbc5fcbSStephen McConnell 		setbit(events, MPI2_EVENT_ACTIVE_CABLE_EXCEPTION);
71367feec50SStephen McConnell 		if (sc->mpr_flags & MPR_FLAGS_GEN35_IOC) {
71467feec50SStephen McConnell 			setbit(events, MPI2_EVENT_PCIE_DEVICE_STATUS_CHANGE);
71567feec50SStephen McConnell 			setbit(events, MPI2_EVENT_PCIE_ENUMERATION);
71667feec50SStephen McConnell 			setbit(events, MPI2_EVENT_PCIE_TOPOLOGY_CHANGE_LIST);
71767feec50SStephen McConnell 		}
71867feec50SStephen McConnell 	}
719991554f2SKenneth D. Merry 
720991554f2SKenneth D. Merry 	mpr_register_events(sc, events, mprsas_evt_handler, NULL,
721991554f2SKenneth D. Merry 	    &sc->sassc->mprsas_eh);
722991554f2SKenneth D. Merry 
723991554f2SKenneth D. Merry 	return (0);
724991554f2SKenneth D. Merry }
725991554f2SKenneth D. Merry 
726991554f2SKenneth D. Merry int
727991554f2SKenneth D. Merry mpr_attach_sas(struct mpr_softc *sc)
728991554f2SKenneth D. Merry {
729991554f2SKenneth D. Merry 	struct mprsas_softc *sassc;
730991554f2SKenneth D. Merry 	cam_status status;
73162a09ee9SAlexander Motin 	int unit, error = 0, reqs;
732991554f2SKenneth D. Merry 
733991554f2SKenneth D. Merry 	MPR_FUNCTRACE(sc);
734757ff642SScott Long 	mpr_dprint(sc, MPR_INIT, "%s entered\n", __func__);
735991554f2SKenneth D. Merry 
736991554f2SKenneth D. Merry 	sassc = malloc(sizeof(struct mprsas_softc), M_MPR, M_WAITOK|M_ZERO);
737991554f2SKenneth D. Merry 	if (!sassc) {
738757ff642SScott Long 		mpr_dprint(sc, MPR_INIT|MPR_ERROR,
739757ff642SScott Long 		    "Cannot allocate SAS subsystem memory\n");
740991554f2SKenneth D. Merry 		return (ENOMEM);
741991554f2SKenneth D. Merry 	}
742991554f2SKenneth D. Merry 
743991554f2SKenneth D. Merry 	/*
744a2c14879SStephen McConnell 	 * XXX MaxTargets could change during a reinit.  Since we don't
745991554f2SKenneth D. Merry 	 * resize the targets[] array during such an event, cache the value
746991554f2SKenneth D. Merry 	 * of MaxTargets here so that we don't get into trouble later.  This
747991554f2SKenneth D. Merry 	 * should move into the reinit logic.
748991554f2SKenneth D. Merry 	 */
749327f2e6cSStephen McConnell 	sassc->maxtargets = sc->facts->MaxTargets + sc->facts->MaxVolumes;
750991554f2SKenneth D. Merry 	sassc->targets = malloc(sizeof(struct mprsas_target) *
751991554f2SKenneth D. Merry 	    sassc->maxtargets, M_MPR, M_WAITOK|M_ZERO);
752991554f2SKenneth D. Merry 	if (!sassc->targets) {
753757ff642SScott Long 		mpr_dprint(sc, MPR_INIT|MPR_ERROR,
754757ff642SScott Long 		    "Cannot allocate SAS target memory\n");
755991554f2SKenneth D. Merry 		free(sassc, M_MPR);
756991554f2SKenneth D. Merry 		return (ENOMEM);
757991554f2SKenneth D. Merry 	}
758991554f2SKenneth D. Merry 	sc->sassc = sassc;
759991554f2SKenneth D. Merry 	sassc->sc = sc;
760991554f2SKenneth D. Merry 
76162a09ee9SAlexander Motin 	reqs = sc->num_reqs - sc->num_prireqs - 1;
76262a09ee9SAlexander Motin 	if ((sassc->devq = cam_simq_alloc(reqs)) == NULL) {
763757ff642SScott Long 		mpr_dprint(sc, MPR_INIT|MPR_ERROR, "Cannot allocate SIMQ\n");
764991554f2SKenneth D. Merry 		error = ENOMEM;
765991554f2SKenneth D. Merry 		goto out;
766991554f2SKenneth D. Merry 	}
767991554f2SKenneth D. Merry 
768991554f2SKenneth D. Merry 	unit = device_get_unit(sc->mpr_dev);
769991554f2SKenneth D. Merry 	sassc->sim = cam_sim_alloc(mprsas_action, mprsas_poll, "mpr", sassc,
77062a09ee9SAlexander Motin 	    unit, &sc->mpr_mtx, reqs, reqs, sassc->devq);
771991554f2SKenneth D. Merry 	if (sassc->sim == NULL) {
772757ff642SScott Long 		mpr_dprint(sc, MPR_INIT|MPR_ERROR, "Cannot allocate SIM\n");
773991554f2SKenneth D. Merry 		error = EINVAL;
774991554f2SKenneth D. Merry 		goto out;
775991554f2SKenneth D. Merry 	}
776991554f2SKenneth D. Merry 
777991554f2SKenneth D. Merry 	TAILQ_INIT(&sassc->ev_queue);
778991554f2SKenneth D. Merry 
779991554f2SKenneth D. Merry 	/* Initialize taskqueue for Event Handling */
780991554f2SKenneth D. Merry 	TASK_INIT(&sassc->ev_task, 0, mprsas_firmware_event_work, sc);
781991554f2SKenneth D. Merry 	sassc->ev_tq = taskqueue_create("mpr_taskq", M_NOWAIT | M_ZERO,
782991554f2SKenneth D. Merry 	    taskqueue_thread_enqueue, &sassc->ev_tq);
783c2a0f07aSAlexander Motin 	taskqueue_start_threads(&sassc->ev_tq, 1, PRIBIO, "%s taskq",
784991554f2SKenneth D. Merry 	    device_get_nameunit(sc->mpr_dev));
785991554f2SKenneth D. Merry 
786991554f2SKenneth D. Merry 	mpr_lock(sc);
787991554f2SKenneth D. Merry 
788991554f2SKenneth D. Merry 	/*
789991554f2SKenneth D. Merry 	 * XXX There should be a bus for every port on the adapter, but since
790991554f2SKenneth D. Merry 	 * we're just going to fake the topology for now, we'll pretend that
791991554f2SKenneth D. Merry 	 * everything is just a target on a single bus.
792991554f2SKenneth D. Merry 	 */
793991554f2SKenneth D. Merry 	if ((error = xpt_bus_register(sassc->sim, sc->mpr_dev, 0)) != 0) {
794757ff642SScott Long 		mpr_dprint(sc, MPR_INIT|MPR_ERROR,
795757ff642SScott Long 		    "Error %d registering SCSI bus\n", error);
796991554f2SKenneth D. Merry 		mpr_unlock(sc);
797991554f2SKenneth D. Merry 		goto out;
798991554f2SKenneth D. Merry 	}
799991554f2SKenneth D. Merry 
800991554f2SKenneth D. Merry 	/*
801a2c14879SStephen McConnell 	 * Assume that discovery events will start right away.
802991554f2SKenneth D. Merry 	 *
803991554f2SKenneth D. Merry 	 * Hold off boot until discovery is complete.
804991554f2SKenneth D. Merry 	 */
805991554f2SKenneth D. Merry 	sassc->flags |= MPRSAS_IN_STARTUP | MPRSAS_IN_DISCOVERY;
806991554f2SKenneth D. Merry 	sc->sassc->startup_refcount = 0;
807991554f2SKenneth D. Merry 	mprsas_startup_increment(sassc);
808991554f2SKenneth D. Merry 
809a2c14879SStephen McConnell 	callout_init(&sassc->discovery_callout, 1 /*mpsafe*/);
810991554f2SKenneth D. Merry 
811991554f2SKenneth D. Merry 	/*
812991554f2SKenneth D. Merry 	 * Register for async events so we can determine the EEDP
813991554f2SKenneth D. Merry 	 * capabilities of devices.
814991554f2SKenneth D. Merry 	 */
815991554f2SKenneth D. Merry 	status = xpt_create_path(&sassc->path, /*periph*/NULL,
816991554f2SKenneth D. Merry 	    cam_sim_path(sc->sassc->sim), CAM_TARGET_WILDCARD,
817991554f2SKenneth D. Merry 	    CAM_LUN_WILDCARD);
818991554f2SKenneth D. Merry 	if (status != CAM_REQ_CMP) {
819757ff642SScott Long 		mpr_dprint(sc, MPR_INIT|MPR_ERROR,
820757ff642SScott Long 		    "Error %#x creating sim path\n", status);
821991554f2SKenneth D. Merry 		sassc->path = NULL;
822991554f2SKenneth D. Merry 	} else {
823991554f2SKenneth D. Merry 		int event;
824991554f2SKenneth D. Merry 
825991554f2SKenneth D. Merry #if (__FreeBSD_version >= 1000006) || \
826991554f2SKenneth D. Merry     ((__FreeBSD_version >= 901503) && (__FreeBSD_version < 1000000))
827991554f2SKenneth D. Merry 		event = AC_ADVINFO_CHANGED | AC_FOUND_DEVICE;
828991554f2SKenneth D. Merry #else
829991554f2SKenneth D. Merry 		event = AC_FOUND_DEVICE;
830991554f2SKenneth D. Merry #endif
83107aa4de1SKenneth D. Merry 
83207aa4de1SKenneth D. Merry 		/*
83307aa4de1SKenneth D. Merry 		 * Prior to the CAM locking improvements, we can't call
83407aa4de1SKenneth D. Merry 		 * xpt_register_async() with a particular path specified.
83507aa4de1SKenneth D. Merry 		 *
83607aa4de1SKenneth D. Merry 		 * If a path isn't specified, xpt_register_async() will
83707aa4de1SKenneth D. Merry 		 * generate a wildcard path and acquire the XPT lock while
83807aa4de1SKenneth D. Merry 		 * it calls xpt_action() to execute the XPT_SASYNC_CB CCB.
83907aa4de1SKenneth D. Merry 		 * It will then drop the XPT lock once that is done.
84007aa4de1SKenneth D. Merry 		 *
84107aa4de1SKenneth D. Merry 		 * If a path is specified for xpt_register_async(), it will
84207aa4de1SKenneth D. Merry 		 * not acquire and drop the XPT lock around the call to
84307aa4de1SKenneth D. Merry 		 * xpt_action().  xpt_action() asserts that the caller
84407aa4de1SKenneth D. Merry 		 * holds the SIM lock, so the SIM lock has to be held when
84507aa4de1SKenneth D. Merry 		 * calling xpt_register_async() when the path is specified.
84607aa4de1SKenneth D. Merry 		 *
84707aa4de1SKenneth D. Merry 		 * But xpt_register_async calls xpt_for_all_devices(),
84807aa4de1SKenneth D. Merry 		 * which calls xptbustraverse(), which will acquire each
84907aa4de1SKenneth D. Merry 		 * SIM lock.  When it traverses our particular bus, it will
85007aa4de1SKenneth D. Merry 		 * necessarily acquire the SIM lock, which will lead to a
85107aa4de1SKenneth D. Merry 		 * recursive lock acquisition.
85207aa4de1SKenneth D. Merry 		 *
85307aa4de1SKenneth D. Merry 		 * The CAM locking changes fix this problem by acquiring
85407aa4de1SKenneth D. Merry 		 * the XPT topology lock around bus traversal in
85507aa4de1SKenneth D. Merry 		 * xptbustraverse(), so the caller can hold the SIM lock
85607aa4de1SKenneth D. Merry 		 * and it does not cause a recursive lock acquisition.
85707aa4de1SKenneth D. Merry 		 *
85807aa4de1SKenneth D. Merry 		 * These __FreeBSD_version values are approximate, especially
85907aa4de1SKenneth D. Merry 		 * for stable/10, which is two months later than the actual
86007aa4de1SKenneth D. Merry 		 * change.
86107aa4de1SKenneth D. Merry 		 */
86207aa4de1SKenneth D. Merry 
86307aa4de1SKenneth D. Merry #if (__FreeBSD_version < 1000703) || \
86407aa4de1SKenneth D. Merry     ((__FreeBSD_version >= 1100000) && (__FreeBSD_version < 1100002))
86507aa4de1SKenneth D. Merry 		mpr_unlock(sc);
86607aa4de1SKenneth D. Merry 		status = xpt_register_async(event, mprsas_async, sc,
86707aa4de1SKenneth D. Merry 					    NULL);
86807aa4de1SKenneth D. Merry 		mpr_lock(sc);
86907aa4de1SKenneth D. Merry #else
870991554f2SKenneth D. Merry 		status = xpt_register_async(event, mprsas_async, sc,
871991554f2SKenneth D. Merry 					    sassc->path);
87207aa4de1SKenneth D. Merry #endif
87307aa4de1SKenneth D. Merry 
874991554f2SKenneth D. Merry 		if (status != CAM_REQ_CMP) {
875991554f2SKenneth D. Merry 			mpr_dprint(sc, MPR_ERROR,
876991554f2SKenneth D. Merry 			    "Error %#x registering async handler for "
877991554f2SKenneth D. Merry 			    "AC_ADVINFO_CHANGED events\n", status);
878991554f2SKenneth D. Merry 			xpt_free_path(sassc->path);
879991554f2SKenneth D. Merry 			sassc->path = NULL;
880991554f2SKenneth D. Merry 		}
881991554f2SKenneth D. Merry 	}
882991554f2SKenneth D. Merry 	if (status != CAM_REQ_CMP) {
883991554f2SKenneth D. Merry 		/*
884991554f2SKenneth D. Merry 		 * EEDP use is the exception, not the rule.
885991554f2SKenneth D. Merry 		 * Warn the user, but do not fail to attach.
886991554f2SKenneth D. Merry 		 */
887991554f2SKenneth D. Merry 		mpr_printf(sc, "EEDP capabilities disabled.\n");
888991554f2SKenneth D. Merry 	}
889991554f2SKenneth D. Merry 
890991554f2SKenneth D. Merry 	mpr_unlock(sc);
891991554f2SKenneth D. Merry 
892991554f2SKenneth D. Merry 	mprsas_register_events(sc);
893991554f2SKenneth D. Merry out:
894991554f2SKenneth D. Merry 	if (error)
895991554f2SKenneth D. Merry 		mpr_detach_sas(sc);
896757ff642SScott Long 
897757ff642SScott Long 	mpr_dprint(sc, MPR_INIT, "%s exit, error= %d\n", __func__, error);
898991554f2SKenneth D. Merry 	return (error);
899991554f2SKenneth D. Merry }
900991554f2SKenneth D. Merry 
901991554f2SKenneth D. Merry int
902991554f2SKenneth D. Merry mpr_detach_sas(struct mpr_softc *sc)
903991554f2SKenneth D. Merry {
904991554f2SKenneth D. Merry 	struct mprsas_softc *sassc;
905991554f2SKenneth D. Merry 	struct mprsas_lun *lun, *lun_tmp;
906991554f2SKenneth D. Merry 	struct mprsas_target *targ;
907991554f2SKenneth D. Merry 	int i;
908991554f2SKenneth D. Merry 
909991554f2SKenneth D. Merry 	MPR_FUNCTRACE(sc);
910991554f2SKenneth D. Merry 
911991554f2SKenneth D. Merry 	if (sc->sassc == NULL)
912991554f2SKenneth D. Merry 		return (0);
913991554f2SKenneth D. Merry 
914991554f2SKenneth D. Merry 	sassc = sc->sassc;
915991554f2SKenneth D. Merry 	mpr_deregister_events(sc, sassc->mprsas_eh);
916991554f2SKenneth D. Merry 
917991554f2SKenneth D. Merry 	/*
918991554f2SKenneth D. Merry 	 * Drain and free the event handling taskqueue with the lock
919991554f2SKenneth D. Merry 	 * unheld so that any parallel processing tasks drain properly
920991554f2SKenneth D. Merry 	 * without deadlocking.
921991554f2SKenneth D. Merry 	 */
922991554f2SKenneth D. Merry 	if (sassc->ev_tq != NULL)
923991554f2SKenneth D. Merry 		taskqueue_free(sassc->ev_tq);
924991554f2SKenneth D. Merry 
925991554f2SKenneth D. Merry 	/* Make sure CAM doesn't wedge if we had to bail out early. */
926991554f2SKenneth D. Merry 	mpr_lock(sc);
927991554f2SKenneth D. Merry 
9283c5ac992SScott Long 	while (sassc->startup_refcount != 0)
9293c5ac992SScott Long 		mprsas_startup_decrement(sassc);
9303c5ac992SScott Long 
931991554f2SKenneth D. Merry 	/* Deregister our async handler */
932991554f2SKenneth D. Merry 	if (sassc->path != NULL) {
933991554f2SKenneth D. Merry 		xpt_register_async(0, mprsas_async, sc, sassc->path);
934991554f2SKenneth D. Merry 		xpt_free_path(sassc->path);
935991554f2SKenneth D. Merry 		sassc->path = NULL;
936991554f2SKenneth D. Merry 	}
937991554f2SKenneth D. Merry 
938991554f2SKenneth D. Merry 	if (sassc->flags & MPRSAS_IN_STARTUP)
939991554f2SKenneth D. Merry 		xpt_release_simq(sassc->sim, 1);
940991554f2SKenneth D. Merry 
941991554f2SKenneth D. Merry 	if (sassc->sim != NULL) {
942991554f2SKenneth D. Merry 		xpt_bus_deregister(cam_sim_path(sassc->sim));
943991554f2SKenneth D. Merry 		cam_sim_free(sassc->sim, FALSE);
944991554f2SKenneth D. Merry 	}
945991554f2SKenneth D. Merry 
946991554f2SKenneth D. Merry 	mpr_unlock(sc);
947991554f2SKenneth D. Merry 
948991554f2SKenneth D. Merry 	if (sassc->devq != NULL)
949991554f2SKenneth D. Merry 		cam_simq_free(sassc->devq);
950991554f2SKenneth D. Merry 
951991554f2SKenneth D. Merry 	for (i = 0; i < sassc->maxtargets; i++) {
952991554f2SKenneth D. Merry 		targ = &sassc->targets[i];
953991554f2SKenneth D. Merry 		SLIST_FOREACH_SAFE(lun, &targ->luns, lun_link, lun_tmp) {
954991554f2SKenneth D. Merry 			free(lun, M_MPR);
955991554f2SKenneth D. Merry 		}
956991554f2SKenneth D. Merry 	}
957991554f2SKenneth D. Merry 	free(sassc->targets, M_MPR);
958991554f2SKenneth D. Merry 	free(sassc, M_MPR);
959991554f2SKenneth D. Merry 	sc->sassc = NULL;
960991554f2SKenneth D. Merry 
961991554f2SKenneth D. Merry 	return (0);
962991554f2SKenneth D. Merry }
963991554f2SKenneth D. Merry 
964991554f2SKenneth D. Merry void
965991554f2SKenneth D. Merry mprsas_discovery_end(struct mprsas_softc *sassc)
966991554f2SKenneth D. Merry {
967991554f2SKenneth D. Merry 	struct mpr_softc *sc = sassc->sc;
968991554f2SKenneth D. Merry 
969991554f2SKenneth D. Merry 	MPR_FUNCTRACE(sc);
970991554f2SKenneth D. Merry 
971991554f2SKenneth D. Merry 	if (sassc->flags & MPRSAS_DISCOVERY_TIMEOUT_PENDING)
972991554f2SKenneth D. Merry 		callout_stop(&sassc->discovery_callout);
973991554f2SKenneth D. Merry 
974327f2e6cSStephen McConnell 	/*
975327f2e6cSStephen McConnell 	 * After discovery has completed, check the mapping table for any
976327f2e6cSStephen McConnell 	 * missing devices and update their missing counts. Only do this once
977327f2e6cSStephen McConnell 	 * whenever the driver is initialized so that missing counts aren't
978327f2e6cSStephen McConnell 	 * updated unnecessarily. Note that just because discovery has
979327f2e6cSStephen McConnell 	 * completed doesn't mean that events have been processed yet. The
980327f2e6cSStephen McConnell 	 * check_devices function is a callout timer that checks if ALL devices
981327f2e6cSStephen McConnell 	 * are missing. If so, it will wait a little longer for events to
982327f2e6cSStephen McConnell 	 * complete and keep resetting itself until some device in the mapping
983327f2e6cSStephen McConnell 	 * table is not missing, meaning that event processing has started.
984327f2e6cSStephen McConnell 	 */
985327f2e6cSStephen McConnell 	if (sc->track_mapping_events) {
986327f2e6cSStephen McConnell 		mpr_dprint(sc, MPR_XINFO | MPR_MAPPING, "Discovery has "
987327f2e6cSStephen McConnell 		    "completed. Check for missing devices in the mapping "
988327f2e6cSStephen McConnell 		    "table.\n");
989327f2e6cSStephen McConnell 		callout_reset(&sc->device_check_callout,
990327f2e6cSStephen McConnell 		    MPR_MISSING_CHECK_DELAY * hz, mpr_mapping_check_devices,
991327f2e6cSStephen McConnell 		    sc);
992327f2e6cSStephen McConnell 	}
993991554f2SKenneth D. Merry }
994991554f2SKenneth D. Merry 
995991554f2SKenneth D. Merry static void
996991554f2SKenneth D. Merry mprsas_action(struct cam_sim *sim, union ccb *ccb)
997991554f2SKenneth D. Merry {
998991554f2SKenneth D. Merry 	struct mprsas_softc *sassc;
999991554f2SKenneth D. Merry 
1000991554f2SKenneth D. Merry 	sassc = cam_sim_softc(sim);
1001991554f2SKenneth D. Merry 
1002991554f2SKenneth D. Merry 	MPR_FUNCTRACE(sassc->sc);
1003a2c14879SStephen McConnell 	mpr_dprint(sassc->sc, MPR_TRACE, "ccb func_code 0x%x\n",
1004991554f2SKenneth D. Merry 	    ccb->ccb_h.func_code);
1005991554f2SKenneth D. Merry 	mtx_assert(&sassc->sc->mpr_mtx, MA_OWNED);
1006991554f2SKenneth D. Merry 
1007991554f2SKenneth D. Merry 	switch (ccb->ccb_h.func_code) {
1008991554f2SKenneth D. Merry 	case XPT_PATH_INQ:
1009991554f2SKenneth D. Merry 	{
1010991554f2SKenneth D. Merry 		struct ccb_pathinq *cpi = &ccb->cpi;
101132b0a21eSStephen McConnell 		struct mpr_softc *sc = sassc->sc;
1012991554f2SKenneth D. Merry 
1013991554f2SKenneth D. Merry 		cpi->version_num = 1;
1014991554f2SKenneth D. Merry 		cpi->hba_inquiry = PI_SDTR_ABLE|PI_TAG_ABLE|PI_WIDE_16;
1015991554f2SKenneth D. Merry 		cpi->target_sprt = 0;
1016a371d6f9SKenneth D. Merry #if (__FreeBSD_version >= 1000039) || \
1017a371d6f9SKenneth D. Merry     ((__FreeBSD_version < 1000000) && (__FreeBSD_version >= 902502))
1018991554f2SKenneth D. Merry 		cpi->hba_misc = PIM_NOBUSRESET | PIM_UNMAPPED | PIM_NOSCAN;
1019991554f2SKenneth D. Merry #else
1020991554f2SKenneth D. Merry 		cpi->hba_misc = PIM_NOBUSRESET | PIM_UNMAPPED;
1021991554f2SKenneth D. Merry #endif
1022991554f2SKenneth D. Merry 		cpi->hba_eng_cnt = 0;
1023991554f2SKenneth D. Merry 		cpi->max_target = sassc->maxtargets - 1;
1024991554f2SKenneth D. Merry 		cpi->max_lun = 255;
1025327f2e6cSStephen McConnell 
1026327f2e6cSStephen McConnell 		/*
1027327f2e6cSStephen McConnell 		 * initiator_id is set here to an ID outside the set of valid
1028327f2e6cSStephen McConnell 		 * target IDs (including volumes).
1029327f2e6cSStephen McConnell 		 */
1030327f2e6cSStephen McConnell 		cpi->initiator_id = sassc->maxtargets;
10314195c7deSAlan Somers 		strlcpy(cpi->sim_vid, "FreeBSD", SIM_IDLEN);
10324195c7deSAlan Somers 		strlcpy(cpi->hba_vid, "Avago Tech", HBA_IDLEN);
10334195c7deSAlan Somers 		strlcpy(cpi->dev_name, cam_sim_name(sim), DEV_IDLEN);
1034991554f2SKenneth D. Merry 		cpi->unit_number = cam_sim_unit(sim);
1035991554f2SKenneth D. Merry 		cpi->bus_id = cam_sim_bus(sim);
1036991554f2SKenneth D. Merry 		/*
1037991554f2SKenneth D. Merry 		 * XXXSLM-I think this needs to change based on config page or
1038991554f2SKenneth D. Merry 		 * something instead of hardcoded to 150000.
1039991554f2SKenneth D. Merry 		 */
1040991554f2SKenneth D. Merry 		cpi->base_transfer_speed = 150000;
1041991554f2SKenneth D. Merry 		cpi->transport = XPORT_SAS;
1042991554f2SKenneth D. Merry 		cpi->transport_version = 0;
1043991554f2SKenneth D. Merry 		cpi->protocol = PROTO_SCSI;
1044991554f2SKenneth D. Merry 		cpi->protocol_version = SCSI_REV_SPC;
10454f5d6573SAlexander Motin 		cpi->maxio = sc->maxio;
1046a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_REQ_CMP);
1047991554f2SKenneth D. Merry 		break;
1048991554f2SKenneth D. Merry 	}
1049991554f2SKenneth D. Merry 	case XPT_GET_TRAN_SETTINGS:
1050991554f2SKenneth D. Merry 	{
1051991554f2SKenneth D. Merry 		struct ccb_trans_settings	*cts;
1052991554f2SKenneth D. Merry 		struct ccb_trans_settings_sas	*sas;
1053991554f2SKenneth D. Merry 		struct ccb_trans_settings_scsi	*scsi;
1054991554f2SKenneth D. Merry 		struct mprsas_target *targ;
1055991554f2SKenneth D. Merry 
1056991554f2SKenneth D. Merry 		cts = &ccb->cts;
1057991554f2SKenneth D. Merry 		sas = &cts->xport_specific.sas;
1058991554f2SKenneth D. Merry 		scsi = &cts->proto_specific.scsi;
1059991554f2SKenneth D. Merry 
1060991554f2SKenneth D. Merry 		KASSERT(cts->ccb_h.target_id < sassc->maxtargets,
1061991554f2SKenneth D. Merry 		    ("Target %d out of bounds in XPT_GET_TRAN_SETTINGS\n",
1062991554f2SKenneth D. Merry 		    cts->ccb_h.target_id));
1063991554f2SKenneth D. Merry 		targ = &sassc->targets[cts->ccb_h.target_id];
1064991554f2SKenneth D. Merry 		if (targ->handle == 0x0) {
1065a2c14879SStephen McConnell 			mprsas_set_ccbstatus(ccb, CAM_DEV_NOT_THERE);
1066991554f2SKenneth D. Merry 			break;
1067991554f2SKenneth D. Merry 		}
1068991554f2SKenneth D. Merry 
1069991554f2SKenneth D. Merry 		cts->protocol_version = SCSI_REV_SPC2;
1070991554f2SKenneth D. Merry 		cts->transport = XPORT_SAS;
1071991554f2SKenneth D. Merry 		cts->transport_version = 0;
1072991554f2SKenneth D. Merry 
1073991554f2SKenneth D. Merry 		sas->valid = CTS_SAS_VALID_SPEED;
1074991554f2SKenneth D. Merry 		switch (targ->linkrate) {
1075991554f2SKenneth D. Merry 		case 0x08:
1076991554f2SKenneth D. Merry 			sas->bitrate = 150000;
1077991554f2SKenneth D. Merry 			break;
1078991554f2SKenneth D. Merry 		case 0x09:
1079991554f2SKenneth D. Merry 			sas->bitrate = 300000;
1080991554f2SKenneth D. Merry 			break;
1081991554f2SKenneth D. Merry 		case 0x0a:
1082991554f2SKenneth D. Merry 			sas->bitrate = 600000;
1083991554f2SKenneth D. Merry 			break;
108482315915SAlexander Motin 		case 0x0b:
108582315915SAlexander Motin 			sas->bitrate = 1200000;
108682315915SAlexander Motin 			break;
1087991554f2SKenneth D. Merry 		default:
1088991554f2SKenneth D. Merry 			sas->valid = 0;
1089991554f2SKenneth D. Merry 		}
1090991554f2SKenneth D. Merry 
1091991554f2SKenneth D. Merry 		cts->protocol = PROTO_SCSI;
1092991554f2SKenneth D. Merry 		scsi->valid = CTS_SCSI_VALID_TQ;
1093991554f2SKenneth D. Merry 		scsi->flags = CTS_SCSI_FLAGS_TAG_ENB;
1094991554f2SKenneth D. Merry 
1095a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_REQ_CMP);
1096991554f2SKenneth D. Merry 		break;
1097991554f2SKenneth D. Merry 	}
1098991554f2SKenneth D. Merry 	case XPT_CALC_GEOMETRY:
1099991554f2SKenneth D. Merry 		cam_calc_geometry(&ccb->ccg, /*extended*/1);
1100a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_REQ_CMP);
1101991554f2SKenneth D. Merry 		break;
1102991554f2SKenneth D. Merry 	case XPT_RESET_DEV:
11037a2a6a1aSStephen McConnell 		mpr_dprint(sassc->sc, MPR_XINFO, "mprsas_action "
11047a2a6a1aSStephen McConnell 		    "XPT_RESET_DEV\n");
1105991554f2SKenneth D. Merry 		mprsas_action_resetdev(sassc, ccb);
1106991554f2SKenneth D. Merry 		return;
1107991554f2SKenneth D. Merry 	case XPT_RESET_BUS:
1108991554f2SKenneth D. Merry 	case XPT_ABORT:
1109991554f2SKenneth D. Merry 	case XPT_TERM_IO:
11107a2a6a1aSStephen McConnell 		mpr_dprint(sassc->sc, MPR_XINFO, "mprsas_action faking success "
11117a2a6a1aSStephen McConnell 		    "for abort or reset\n");
1112a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_REQ_CMP);
1113991554f2SKenneth D. Merry 		break;
1114991554f2SKenneth D. Merry 	case XPT_SCSI_IO:
1115991554f2SKenneth D. Merry 		mprsas_action_scsiio(sassc, ccb);
1116991554f2SKenneth D. Merry 		return;
1117991554f2SKenneth D. Merry #if __FreeBSD_version >= 900026
1118991554f2SKenneth D. Merry 	case XPT_SMP_IO:
1119991554f2SKenneth D. Merry 		mprsas_action_smpio(sassc, ccb);
1120991554f2SKenneth D. Merry 		return;
1121991554f2SKenneth D. Merry #endif
1122991554f2SKenneth D. Merry 	default:
1123a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_FUNC_NOTAVAIL);
1124991554f2SKenneth D. Merry 		break;
1125991554f2SKenneth D. Merry 	}
1126991554f2SKenneth D. Merry 	xpt_done(ccb);
1127991554f2SKenneth D. Merry 
1128991554f2SKenneth D. Merry }
1129991554f2SKenneth D. Merry 
1130991554f2SKenneth D. Merry static void
1131991554f2SKenneth D. Merry mprsas_announce_reset(struct mpr_softc *sc, uint32_t ac_code,
1132991554f2SKenneth D. Merry     target_id_t target_id, lun_id_t lun_id)
1133991554f2SKenneth D. Merry {
1134991554f2SKenneth D. Merry 	path_id_t path_id = cam_sim_path(sc->sassc->sim);
1135991554f2SKenneth D. Merry 	struct cam_path *path;
1136991554f2SKenneth D. Merry 
1137991554f2SKenneth D. Merry 	mpr_dprint(sc, MPR_XINFO, "%s code %x target %d lun %jx\n", __func__,
1138991554f2SKenneth D. Merry 	    ac_code, target_id, (uintmax_t)lun_id);
1139991554f2SKenneth D. Merry 
1140991554f2SKenneth D. Merry 	if (xpt_create_path(&path, NULL,
1141991554f2SKenneth D. Merry 		path_id, target_id, lun_id) != CAM_REQ_CMP) {
1142991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_ERROR, "unable to create path for reset "
1143991554f2SKenneth D. Merry 		    "notification\n");
1144991554f2SKenneth D. Merry 		return;
1145991554f2SKenneth D. Merry 	}
1146991554f2SKenneth D. Merry 
1147991554f2SKenneth D. Merry 	xpt_async(ac_code, path, NULL);
1148991554f2SKenneth D. Merry 	xpt_free_path(path);
1149991554f2SKenneth D. Merry }
1150991554f2SKenneth D. Merry 
1151991554f2SKenneth D. Merry static void
1152991554f2SKenneth D. Merry mprsas_complete_all_commands(struct mpr_softc *sc)
1153991554f2SKenneth D. Merry {
1154991554f2SKenneth D. Merry 	struct mpr_command *cm;
1155991554f2SKenneth D. Merry 	int i;
1156991554f2SKenneth D. Merry 	int completed;
1157991554f2SKenneth D. Merry 
1158991554f2SKenneth D. Merry 	MPR_FUNCTRACE(sc);
1159991554f2SKenneth D. Merry 	mtx_assert(&sc->mpr_mtx, MA_OWNED);
1160991554f2SKenneth D. Merry 
1161991554f2SKenneth D. Merry 	/* complete all commands with a NULL reply */
1162991554f2SKenneth D. Merry 	for (i = 1; i < sc->num_reqs; i++) {
1163991554f2SKenneth D. Merry 		cm = &sc->commands[i];
1164f0779b04SScott Long 		if (cm->cm_state == MPR_CM_STATE_FREE)
1165f0779b04SScott Long 			continue;
1166f0779b04SScott Long 
1167f0779b04SScott Long 		cm->cm_state = MPR_CM_STATE_BUSY;
1168991554f2SKenneth D. Merry 		cm->cm_reply = NULL;
1169991554f2SKenneth D. Merry 		completed = 0;
1170991554f2SKenneth D. Merry 
11718277ce2bSConrad Meyer 		if (cm->cm_flags & MPR_CM_FLAGS_SATA_ID_TIMEOUT) {
11728277ce2bSConrad Meyer 			MPASS(cm->cm_data);
11738277ce2bSConrad Meyer 			free(cm->cm_data, M_MPR);
11748277ce2bSConrad Meyer 			cm->cm_data = NULL;
11758277ce2bSConrad Meyer 		}
11768277ce2bSConrad Meyer 
1177991554f2SKenneth D. Merry 		if (cm->cm_flags & MPR_CM_FLAGS_POLLED)
1178991554f2SKenneth D. Merry 			cm->cm_flags |= MPR_CM_FLAGS_COMPLETE;
1179991554f2SKenneth D. Merry 
1180991554f2SKenneth D. Merry 		if (cm->cm_complete != NULL) {
1181991554f2SKenneth D. Merry 			mprsas_log_command(cm, MPR_RECOVERY,
11827a2a6a1aSStephen McConnell 			    "completing cm %p state %x ccb %p for diag reset\n",
11837a2a6a1aSStephen McConnell 			    cm, cm->cm_state, cm->cm_ccb);
1184991554f2SKenneth D. Merry 			cm->cm_complete(sc, cm);
1185991554f2SKenneth D. Merry 			completed = 1;
1186f0779b04SScott Long 		} else if (cm->cm_flags & MPR_CM_FLAGS_WAKEUP) {
1187991554f2SKenneth D. Merry 			mprsas_log_command(cm, MPR_RECOVERY,
1188991554f2SKenneth D. Merry 			    "waking up cm %p state %x ccb %p for diag reset\n",
1189991554f2SKenneth D. Merry 			    cm, cm->cm_state, cm->cm_ccb);
1190991554f2SKenneth D. Merry 			wakeup(cm);
1191991554f2SKenneth D. Merry 			completed = 1;
1192991554f2SKenneth D. Merry 		}
1193991554f2SKenneth D. Merry 
1194991554f2SKenneth D. Merry 		if ((completed == 0) && (cm->cm_state != MPR_CM_STATE_FREE)) {
1195991554f2SKenneth D. Merry 			/* this should never happen, but if it does, log */
1196991554f2SKenneth D. Merry 			mprsas_log_command(cm, MPR_RECOVERY,
1197991554f2SKenneth D. Merry 			    "cm %p state %x flags 0x%x ccb %p during diag "
1198991554f2SKenneth D. Merry 			    "reset\n", cm, cm->cm_state, cm->cm_flags,
1199991554f2SKenneth D. Merry 			    cm->cm_ccb);
1200991554f2SKenneth D. Merry 		}
1201991554f2SKenneth D. Merry 	}
1202f0779b04SScott Long 
1203f0779b04SScott Long 	sc->io_cmds_active = 0;
1204991554f2SKenneth D. Merry }
1205991554f2SKenneth D. Merry 
1206991554f2SKenneth D. Merry void
1207991554f2SKenneth D. Merry mprsas_handle_reinit(struct mpr_softc *sc)
1208991554f2SKenneth D. Merry {
1209991554f2SKenneth D. Merry 	int i;
1210991554f2SKenneth D. Merry 
1211991554f2SKenneth D. Merry 	/* Go back into startup mode and freeze the simq, so that CAM
1212991554f2SKenneth D. Merry 	 * doesn't send any commands until after we've rediscovered all
1213991554f2SKenneth D. Merry 	 * targets and found the proper device handles for them.
1214991554f2SKenneth D. Merry 	 *
1215991554f2SKenneth D. Merry 	 * After the reset, portenable will trigger discovery, and after all
1216991554f2SKenneth D. Merry 	 * discovery-related activities have finished, the simq will be
1217991554f2SKenneth D. Merry 	 * released.
1218991554f2SKenneth D. Merry 	 */
1219991554f2SKenneth D. Merry 	mpr_dprint(sc, MPR_INIT, "%s startup\n", __func__);
1220991554f2SKenneth D. Merry 	sc->sassc->flags |= MPRSAS_IN_STARTUP;
1221991554f2SKenneth D. Merry 	sc->sassc->flags |= MPRSAS_IN_DISCOVERY;
1222991554f2SKenneth D. Merry 	mprsas_startup_increment(sc->sassc);
1223991554f2SKenneth D. Merry 
1224991554f2SKenneth D. Merry 	/* notify CAM of a bus reset */
1225991554f2SKenneth D. Merry 	mprsas_announce_reset(sc, AC_BUS_RESET, CAM_TARGET_WILDCARD,
1226991554f2SKenneth D. Merry 	    CAM_LUN_WILDCARD);
1227991554f2SKenneth D. Merry 
1228991554f2SKenneth D. Merry 	/* complete and cleanup after all outstanding commands */
1229991554f2SKenneth D. Merry 	mprsas_complete_all_commands(sc);
1230991554f2SKenneth D. Merry 
1231a2c14879SStephen McConnell 	mpr_dprint(sc, MPR_INIT, "%s startup %u after command completion\n",
1232a2c14879SStephen McConnell 	    __func__, sc->sassc->startup_refcount);
1233991554f2SKenneth D. Merry 
1234991554f2SKenneth D. Merry 	/* zero all the target handles, since they may change after the
1235991554f2SKenneth D. Merry 	 * reset, and we have to rediscover all the targets and use the new
1236991554f2SKenneth D. Merry 	 * handles.
1237991554f2SKenneth D. Merry 	 */
1238991554f2SKenneth D. Merry 	for (i = 0; i < sc->sassc->maxtargets; i++) {
1239991554f2SKenneth D. Merry 		if (sc->sassc->targets[i].outstanding != 0)
1240991554f2SKenneth D. Merry 			mpr_dprint(sc, MPR_INIT, "target %u outstanding %u\n",
1241991554f2SKenneth D. Merry 			    i, sc->sassc->targets[i].outstanding);
1242991554f2SKenneth D. Merry 		sc->sassc->targets[i].handle = 0x0;
1243991554f2SKenneth D. Merry 		sc->sassc->targets[i].exp_dev_handle = 0x0;
1244991554f2SKenneth D. Merry 		sc->sassc->targets[i].outstanding = 0;
1245991554f2SKenneth D. Merry 		sc->sassc->targets[i].flags = MPRSAS_TARGET_INDIAGRESET;
1246991554f2SKenneth D. Merry 	}
1247991554f2SKenneth D. Merry }
1248991554f2SKenneth D. Merry static void
1249991554f2SKenneth D. Merry mprsas_tm_timeout(void *data)
1250991554f2SKenneth D. Merry {
1251991554f2SKenneth D. Merry 	struct mpr_command *tm = data;
1252991554f2SKenneth D. Merry 	struct mpr_softc *sc = tm->cm_sc;
1253991554f2SKenneth D. Merry 
1254991554f2SKenneth D. Merry 	mtx_assert(&sc->mpr_mtx, MA_OWNED);
1255991554f2SKenneth D. Merry 
12567a2a6a1aSStephen McConnell 	mprsas_log_command(tm, MPR_INFO|MPR_RECOVERY, "task mgmt %p timed "
12577a2a6a1aSStephen McConnell 	    "out\n", tm);
1258f0779b04SScott Long 
1259f0779b04SScott Long 	KASSERT(tm->cm_state == MPR_CM_STATE_INQUEUE,
1260f0779b04SScott Long 	    ("command not inqueue\n"));
1261f0779b04SScott Long 
1262f0779b04SScott Long 	tm->cm_state = MPR_CM_STATE_BUSY;
1263991554f2SKenneth D. Merry 	mpr_reinit(sc);
1264991554f2SKenneth D. Merry }
1265991554f2SKenneth D. Merry 
1266991554f2SKenneth D. Merry static void
12677a2a6a1aSStephen McConnell mprsas_logical_unit_reset_complete(struct mpr_softc *sc, struct mpr_command *tm)
1268991554f2SKenneth D. Merry {
1269991554f2SKenneth D. Merry 	MPI2_SCSI_TASK_MANAGE_REPLY *reply;
1270991554f2SKenneth D. Merry 	MPI2_SCSI_TASK_MANAGE_REQUEST *req;
1271991554f2SKenneth D. Merry 	unsigned int cm_count = 0;
1272991554f2SKenneth D. Merry 	struct mpr_command *cm;
1273991554f2SKenneth D. Merry 	struct mprsas_target *targ;
1274991554f2SKenneth D. Merry 
1275991554f2SKenneth D. Merry 	callout_stop(&tm->cm_callout);
1276991554f2SKenneth D. Merry 
1277991554f2SKenneth D. Merry 	req = (MPI2_SCSI_TASK_MANAGE_REQUEST *)tm->cm_req;
1278991554f2SKenneth D. Merry 	reply = (MPI2_SCSI_TASK_MANAGE_REPLY *)tm->cm_reply;
1279991554f2SKenneth D. Merry 	targ = tm->cm_targ;
1280991554f2SKenneth D. Merry 
1281991554f2SKenneth D. Merry 	/*
1282991554f2SKenneth D. Merry 	 * Currently there should be no way we can hit this case.  It only
1283991554f2SKenneth D. Merry 	 * happens when we have a failure to allocate chain frames, and
1284991554f2SKenneth D. Merry 	 * task management commands don't have S/G lists.
1285991554f2SKenneth D. Merry 	 */
1286991554f2SKenneth D. Merry 	if ((tm->cm_flags & MPR_CM_FLAGS_ERROR_MASK) != 0) {
12876eea4f46SScott Long 		mpr_dprint(sc, MPR_RECOVERY|MPR_ERROR,
12886eea4f46SScott Long 		    "%s: cm_flags = %#x for LUN reset! "
1289991554f2SKenneth D. Merry 		    "This should not happen!\n", __func__, tm->cm_flags);
1290991554f2SKenneth D. Merry 		mprsas_free_tm(sc, tm);
1291991554f2SKenneth D. Merry 		return;
1292991554f2SKenneth D. Merry 	}
1293991554f2SKenneth D. Merry 
1294991554f2SKenneth D. Merry 	if (reply == NULL) {
12956eea4f46SScott Long 		mpr_dprint(sc, MPR_RECOVERY, "NULL reset reply for tm %p\n",
12966eea4f46SScott Long 		    tm);
1297991554f2SKenneth D. Merry 		if ((sc->mpr_flags & MPR_FLAGS_DIAGRESET) != 0) {
1298991554f2SKenneth D. Merry 			/* this completion was due to a reset, just cleanup */
12996eea4f46SScott Long 			mpr_dprint(sc, MPR_RECOVERY, "Hardware undergoing "
13006eea4f46SScott Long 			    "reset, ignoring NULL LUN reset reply\n");
1301991554f2SKenneth D. Merry 			targ->tm = NULL;
1302991554f2SKenneth D. Merry 			mprsas_free_tm(sc, tm);
1303991554f2SKenneth D. Merry 		}
1304991554f2SKenneth D. Merry 		else {
1305991554f2SKenneth D. Merry 			/* we should have gotten a reply. */
13066eea4f46SScott Long 			mpr_dprint(sc, MPR_INFO|MPR_RECOVERY, "NULL reply on "
13076eea4f46SScott Long 			    "LUN reset attempt, resetting controller\n");
1308991554f2SKenneth D. Merry 			mpr_reinit(sc);
1309991554f2SKenneth D. Merry 		}
1310991554f2SKenneth D. Merry 		return;
1311991554f2SKenneth D. Merry 	}
1312991554f2SKenneth D. Merry 
13136eea4f46SScott Long 	mpr_dprint(sc, MPR_RECOVERY,
1314991554f2SKenneth D. Merry 	    "logical unit reset status 0x%x code 0x%x count %u\n",
1315991554f2SKenneth D. Merry 	    le16toh(reply->IOCStatus), le32toh(reply->ResponseCode),
1316991554f2SKenneth D. Merry 	    le32toh(reply->TerminationCount));
1317991554f2SKenneth D. Merry 
13186eea4f46SScott Long 	/*
13196eea4f46SScott Long 	 * See if there are any outstanding commands for this LUN.
1320991554f2SKenneth D. Merry 	 * This could be made more efficient by using a per-LU data
1321991554f2SKenneth D. Merry 	 * structure of some sort.
1322991554f2SKenneth D. Merry 	 */
1323991554f2SKenneth D. Merry 	TAILQ_FOREACH(cm, &targ->commands, cm_link) {
1324991554f2SKenneth D. Merry 		if (cm->cm_lun == tm->cm_lun)
1325991554f2SKenneth D. Merry 			cm_count++;
1326991554f2SKenneth D. Merry 	}
1327991554f2SKenneth D. Merry 
1328991554f2SKenneth D. Merry 	if (cm_count == 0) {
13296eea4f46SScott Long 		mpr_dprint(sc, MPR_RECOVERY|MPR_INFO,
13306eea4f46SScott Long 		    "Finished recovery after LUN reset for target %u\n",
13316eea4f46SScott Long 		    targ->tid);
1332991554f2SKenneth D. Merry 
13336eea4f46SScott Long 		mprsas_announce_reset(sc, AC_SENT_BDR, targ->tid,
1334991554f2SKenneth D. Merry 		    tm->cm_lun);
1335991554f2SKenneth D. Merry 
13366eea4f46SScott Long 		/*
13376eea4f46SScott Long 		 * We've finished recovery for this logical unit.  check and
1338991554f2SKenneth D. Merry 		 * see if some other logical unit has a timedout command
1339991554f2SKenneth D. Merry 		 * that needs to be processed.
1340991554f2SKenneth D. Merry 		 */
1341991554f2SKenneth D. Merry 		cm = TAILQ_FIRST(&targ->timedout_commands);
1342991554f2SKenneth D. Merry 		if (cm) {
13436eea4f46SScott Long 			mpr_dprint(sc, MPR_INFO|MPR_RECOVERY,
13446eea4f46SScott Long 			   "More commands to abort for target %u\n", targ->tid);
1345991554f2SKenneth D. Merry 			mprsas_send_abort(sc, tm, cm);
13466eea4f46SScott Long 		} else {
1347991554f2SKenneth D. Merry 			targ->tm = NULL;
1348991554f2SKenneth D. Merry 			mprsas_free_tm(sc, tm);
1349991554f2SKenneth D. Merry 		}
13506eea4f46SScott Long 	} else {
1351991554f2SKenneth D. Merry 		/* if we still have commands for this LUN, the reset
1352991554f2SKenneth D. Merry 		 * effectively failed, regardless of the status reported.
1353991554f2SKenneth D. Merry 		 * Escalate to a target reset.
1354991554f2SKenneth D. Merry 		 */
13556eea4f46SScott Long 		mpr_dprint(sc, MPR_INFO|MPR_RECOVERY,
13566eea4f46SScott Long 		    "logical unit reset complete for target %u, but still "
13576eea4f46SScott Long 		    "have %u command(s), sending target reset\n", targ->tid,
13586eea4f46SScott Long 		    cm_count);
1359991554f2SKenneth D. Merry 		mprsas_send_reset(sc, tm,
1360991554f2SKenneth D. Merry 		    MPI2_SCSITASKMGMT_TASKTYPE_TARGET_RESET);
1361991554f2SKenneth D. Merry 	}
1362991554f2SKenneth D. Merry }
1363991554f2SKenneth D. Merry 
1364991554f2SKenneth D. Merry static void
1365991554f2SKenneth D. Merry mprsas_target_reset_complete(struct mpr_softc *sc, struct mpr_command *tm)
1366991554f2SKenneth D. Merry {
1367991554f2SKenneth D. Merry 	MPI2_SCSI_TASK_MANAGE_REPLY *reply;
1368991554f2SKenneth D. Merry 	MPI2_SCSI_TASK_MANAGE_REQUEST *req;
1369991554f2SKenneth D. Merry 	struct mprsas_target *targ;
1370991554f2SKenneth D. Merry 
1371991554f2SKenneth D. Merry 	callout_stop(&tm->cm_callout);
1372991554f2SKenneth D. Merry 
1373991554f2SKenneth D. Merry 	req = (MPI2_SCSI_TASK_MANAGE_REQUEST *)tm->cm_req;
1374991554f2SKenneth D. Merry 	reply = (MPI2_SCSI_TASK_MANAGE_REPLY *)tm->cm_reply;
1375991554f2SKenneth D. Merry 	targ = tm->cm_targ;
1376991554f2SKenneth D. Merry 
1377991554f2SKenneth D. Merry 	/*
1378991554f2SKenneth D. Merry 	 * Currently there should be no way we can hit this case.  It only
1379991554f2SKenneth D. Merry 	 * happens when we have a failure to allocate chain frames, and
1380991554f2SKenneth D. Merry 	 * task management commands don't have S/G lists.
1381991554f2SKenneth D. Merry 	 */
1382991554f2SKenneth D. Merry 	if ((tm->cm_flags & MPR_CM_FLAGS_ERROR_MASK) != 0) {
1383a2c14879SStephen McConnell 		mpr_dprint(sc, MPR_ERROR, "%s: cm_flags = %#x for target "
1384a2c14879SStephen McConnell 		    "reset! This should not happen!\n", __func__, tm->cm_flags);
1385991554f2SKenneth D. Merry 		mprsas_free_tm(sc, tm);
1386991554f2SKenneth D. Merry 		return;
1387991554f2SKenneth D. Merry 	}
1388991554f2SKenneth D. Merry 
1389991554f2SKenneth D. Merry 	if (reply == NULL) {
13906eea4f46SScott Long 		mpr_dprint(sc, MPR_RECOVERY,
13916eea4f46SScott Long 		    "NULL target reset reply for tm %p TaskMID %u\n",
13926eea4f46SScott Long 		    tm, le16toh(req->TaskMID));
1393991554f2SKenneth D. Merry 		if ((sc->mpr_flags & MPR_FLAGS_DIAGRESET) != 0) {
1394991554f2SKenneth D. Merry 			/* this completion was due to a reset, just cleanup */
13956eea4f46SScott Long 			mpr_dprint(sc, MPR_RECOVERY, "Hardware undergoing "
13966eea4f46SScott Long 			    "reset, ignoring NULL target reset reply\n");
1397991554f2SKenneth D. Merry 			targ->tm = NULL;
1398991554f2SKenneth D. Merry 			mprsas_free_tm(sc, tm);
1399991554f2SKenneth D. Merry 		}
1400991554f2SKenneth D. Merry 		else {
1401991554f2SKenneth D. Merry 			/* we should have gotten a reply. */
14026eea4f46SScott Long 			mpr_dprint(sc, MPR_INFO|MPR_RECOVERY, "NULL reply on "
14036eea4f46SScott Long 			    "target reset attempt, resetting controller\n");
1404991554f2SKenneth D. Merry 			mpr_reinit(sc);
1405991554f2SKenneth D. Merry 		}
1406991554f2SKenneth D. Merry 		return;
1407991554f2SKenneth D. Merry 	}
1408991554f2SKenneth D. Merry 
14096eea4f46SScott Long 	mpr_dprint(sc, MPR_RECOVERY,
1410991554f2SKenneth D. Merry 	    "target reset status 0x%x code 0x%x count %u\n",
1411991554f2SKenneth D. Merry 	    le16toh(reply->IOCStatus), le32toh(reply->ResponseCode),
1412991554f2SKenneth D. Merry 	    le32toh(reply->TerminationCount));
1413991554f2SKenneth D. Merry 
1414991554f2SKenneth D. Merry 	if (targ->outstanding == 0) {
14156eea4f46SScott Long 		/*
14166eea4f46SScott Long 		 * We've finished recovery for this target and all
1417991554f2SKenneth D. Merry 		 * of its logical units.
1418991554f2SKenneth D. Merry 		 */
14196eea4f46SScott Long 		mpr_dprint(sc, MPR_RECOVERY|MPR_INFO,
14206eea4f46SScott Long 		    "Finished reset recovery for target %u\n", targ->tid);
1421991554f2SKenneth D. Merry 
1422991554f2SKenneth D. Merry 		mprsas_announce_reset(sc, AC_SENT_BDR, tm->cm_targ->tid,
1423991554f2SKenneth D. Merry 		    CAM_LUN_WILDCARD);
1424991554f2SKenneth D. Merry 
1425991554f2SKenneth D. Merry 		targ->tm = NULL;
1426991554f2SKenneth D. Merry 		mprsas_free_tm(sc, tm);
14276eea4f46SScott Long 	} else {
14286eea4f46SScott Long 		/*
14296eea4f46SScott Long 		 * After a target reset, if this target still has
1430991554f2SKenneth D. Merry 		 * outstanding commands, the reset effectively failed,
1431991554f2SKenneth D. Merry 		 * regardless of the status reported.  escalate.
1432991554f2SKenneth D. Merry 		 */
14336eea4f46SScott Long 		mpr_dprint(sc, MPR_INFO|MPR_RECOVERY,
14346eea4f46SScott Long 		    "Target reset complete for target %u, but still have %u "
14356eea4f46SScott Long 		    "command(s), resetting controller\n", targ->tid,
14366eea4f46SScott Long 		    targ->outstanding);
1437991554f2SKenneth D. Merry 		mpr_reinit(sc);
1438991554f2SKenneth D. Merry 	}
1439991554f2SKenneth D. Merry }
1440991554f2SKenneth D. Merry 
1441991554f2SKenneth D. Merry #define MPR_RESET_TIMEOUT 30
1442991554f2SKenneth D. Merry 
1443a2c14879SStephen McConnell int
1444991554f2SKenneth D. Merry mprsas_send_reset(struct mpr_softc *sc, struct mpr_command *tm, uint8_t type)
1445991554f2SKenneth D. Merry {
1446991554f2SKenneth D. Merry 	MPI2_SCSI_TASK_MANAGE_REQUEST *req;
1447991554f2SKenneth D. Merry 	struct mprsas_target *target;
1448991554f2SKenneth D. Merry 	int err;
1449991554f2SKenneth D. Merry 
1450991554f2SKenneth D. Merry 	target = tm->cm_targ;
1451991554f2SKenneth D. Merry 	if (target->handle == 0) {
1452a2c14879SStephen McConnell 		mpr_dprint(sc, MPR_ERROR, "%s null devhandle for target_id "
1453a2c14879SStephen McConnell 		    "%d\n", __func__, target->tid);
1454991554f2SKenneth D. Merry 		return -1;
1455991554f2SKenneth D. Merry 	}
1456991554f2SKenneth D. Merry 
1457991554f2SKenneth D. Merry 	req = (MPI2_SCSI_TASK_MANAGE_REQUEST *)tm->cm_req;
1458991554f2SKenneth D. Merry 	req->DevHandle = htole16(target->handle);
1459991554f2SKenneth D. Merry 	req->Function = MPI2_FUNCTION_SCSI_TASK_MGMT;
1460991554f2SKenneth D. Merry 	req->TaskType = type;
1461991554f2SKenneth D. Merry 
1462991554f2SKenneth D. Merry 	if (type == MPI2_SCSITASKMGMT_TASKTYPE_LOGICAL_UNIT_RESET) {
1463991554f2SKenneth D. Merry 		/* XXX Need to handle invalid LUNs */
1464991554f2SKenneth D. Merry 		MPR_SET_LUN(req->LUN, tm->cm_lun);
1465991554f2SKenneth D. Merry 		tm->cm_targ->logical_unit_resets++;
14666eea4f46SScott Long 		mpr_dprint(sc, MPR_RECOVERY|MPR_INFO,
14676eea4f46SScott Long 		    "Sending logical unit reset to target %u lun %d\n",
14686eea4f46SScott Long 		    target->tid, tm->cm_lun);
1469991554f2SKenneth D. Merry 		tm->cm_complete = mprsas_logical_unit_reset_complete;
1470a2c14879SStephen McConnell 		mprsas_prepare_for_tm(sc, tm, target, tm->cm_lun);
14716eea4f46SScott Long 	} else if (type == MPI2_SCSITASKMGMT_TASKTYPE_TARGET_RESET) {
1472991554f2SKenneth D. Merry 		/*
1473991554f2SKenneth D. Merry 		 * Target reset method =
1474991554f2SKenneth D. Merry 		 *     SAS Hard Link Reset / SATA Link Reset
1475991554f2SKenneth D. Merry 		 */
1476991554f2SKenneth D. Merry 		req->MsgFlags = MPI2_SCSITASKMGMT_MSGFLAGS_LINK_RESET;
1477991554f2SKenneth D. Merry 		tm->cm_targ->target_resets++;
14786eea4f46SScott Long 		mpr_dprint(sc, MPR_RECOVERY|MPR_INFO,
14796eea4f46SScott Long 		    "Sending target reset to target %u\n", target->tid);
1480991554f2SKenneth D. Merry 		tm->cm_complete = mprsas_target_reset_complete;
1481a2c14879SStephen McConnell 		mprsas_prepare_for_tm(sc, tm, target, CAM_LUN_WILDCARD);
1482991554f2SKenneth D. Merry 	}
1483991554f2SKenneth D. Merry 	else {
1484991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_ERROR, "unexpected reset type 0x%x\n", type);
1485991554f2SKenneth D. Merry 		return -1;
1486991554f2SKenneth D. Merry 	}
1487991554f2SKenneth D. Merry 
1488991554f2SKenneth D. Merry 	if (target->encl_level_valid) {
14896eea4f46SScott Long 		mpr_dprint(sc, MPR_RECOVERY|MPR_INFO,
14906eea4f46SScott Long 		    "At enclosure level %d, slot %d, connector name (%4s)\n",
14916eea4f46SScott Long 		    target->encl_level, target->encl_slot,
14926eea4f46SScott Long 		    target->connector_name);
1493991554f2SKenneth D. Merry 	}
1494991554f2SKenneth D. Merry 
1495991554f2SKenneth D. Merry 	tm->cm_data = NULL;
1496991554f2SKenneth D. Merry 	tm->cm_complete_data = (void *)tm;
1497991554f2SKenneth D. Merry 
1498991554f2SKenneth D. Merry 	callout_reset(&tm->cm_callout, MPR_RESET_TIMEOUT * hz,
1499991554f2SKenneth D. Merry 	    mprsas_tm_timeout, tm);
1500991554f2SKenneth D. Merry 
1501991554f2SKenneth D. Merry 	err = mpr_map_command(sc, tm);
1502991554f2SKenneth D. Merry 	if (err)
15036eea4f46SScott Long 		mpr_dprint(sc, MPR_ERROR|MPR_RECOVERY,
1504a2c14879SStephen McConnell 		    "error %d sending reset type %u\n", err, type);
1505991554f2SKenneth D. Merry 
1506991554f2SKenneth D. Merry 	return err;
1507991554f2SKenneth D. Merry }
1508991554f2SKenneth D. Merry 
1509991554f2SKenneth D. Merry 
1510991554f2SKenneth D. Merry static void
1511991554f2SKenneth D. Merry mprsas_abort_complete(struct mpr_softc *sc, struct mpr_command *tm)
1512991554f2SKenneth D. Merry {
1513991554f2SKenneth D. Merry 	struct mpr_command *cm;
1514991554f2SKenneth D. Merry 	MPI2_SCSI_TASK_MANAGE_REPLY *reply;
1515991554f2SKenneth D. Merry 	MPI2_SCSI_TASK_MANAGE_REQUEST *req;
1516991554f2SKenneth D. Merry 	struct mprsas_target *targ;
1517991554f2SKenneth D. Merry 
1518991554f2SKenneth D. Merry 	callout_stop(&tm->cm_callout);
1519991554f2SKenneth D. Merry 
1520991554f2SKenneth D. Merry 	req = (MPI2_SCSI_TASK_MANAGE_REQUEST *)tm->cm_req;
1521991554f2SKenneth D. Merry 	reply = (MPI2_SCSI_TASK_MANAGE_REPLY *)tm->cm_reply;
1522991554f2SKenneth D. Merry 	targ = tm->cm_targ;
1523991554f2SKenneth D. Merry 
1524991554f2SKenneth D. Merry 	/*
1525991554f2SKenneth D. Merry 	 * Currently there should be no way we can hit this case.  It only
1526991554f2SKenneth D. Merry 	 * happens when we have a failure to allocate chain frames, and
1527991554f2SKenneth D. Merry 	 * task management commands don't have S/G lists.
1528991554f2SKenneth D. Merry 	 */
1529991554f2SKenneth D. Merry 	if ((tm->cm_flags & MPR_CM_FLAGS_ERROR_MASK) != 0) {
15306eea4f46SScott Long 		mpr_dprint(sc, MPR_RECOVERY|MPR_ERROR,
1531991554f2SKenneth D. Merry 		    "cm_flags = %#x for abort %p TaskMID %u!\n",
1532991554f2SKenneth D. Merry 		    tm->cm_flags, tm, le16toh(req->TaskMID));
1533991554f2SKenneth D. Merry 		mprsas_free_tm(sc, tm);
1534991554f2SKenneth D. Merry 		return;
1535991554f2SKenneth D. Merry 	}
1536991554f2SKenneth D. Merry 
1537991554f2SKenneth D. Merry 	if (reply == NULL) {
15386eea4f46SScott Long 		mpr_dprint(sc, MPR_RECOVERY,
1539991554f2SKenneth D. Merry 		    "NULL abort reply for tm %p TaskMID %u\n",
1540991554f2SKenneth D. Merry 		    tm, le16toh(req->TaskMID));
1541991554f2SKenneth D. Merry 		if ((sc->mpr_flags & MPR_FLAGS_DIAGRESET) != 0) {
1542991554f2SKenneth D. Merry 			/* this completion was due to a reset, just cleanup */
15436eea4f46SScott Long 			mpr_dprint(sc, MPR_RECOVERY, "Hardware undergoing "
15446eea4f46SScott Long 			    "reset, ignoring NULL abort reply\n");
1545991554f2SKenneth D. Merry 			targ->tm = NULL;
1546991554f2SKenneth D. Merry 			mprsas_free_tm(sc, tm);
15476eea4f46SScott Long 		} else {
1548991554f2SKenneth D. Merry 			/* we should have gotten a reply. */
15496eea4f46SScott Long 			mpr_dprint(sc, MPR_INFO|MPR_RECOVERY, "NULL reply on "
15506eea4f46SScott Long 			    "abort attempt, resetting controller\n");
1551991554f2SKenneth D. Merry 			mpr_reinit(sc);
1552991554f2SKenneth D. Merry 		}
1553991554f2SKenneth D. Merry 		return;
1554991554f2SKenneth D. Merry 	}
1555991554f2SKenneth D. Merry 
15566eea4f46SScott Long 	mpr_dprint(sc, MPR_RECOVERY,
1557991554f2SKenneth D. Merry 	    "abort TaskMID %u status 0x%x code 0x%x count %u\n",
1558991554f2SKenneth D. Merry 	    le16toh(req->TaskMID),
1559991554f2SKenneth D. Merry 	    le16toh(reply->IOCStatus), le32toh(reply->ResponseCode),
1560991554f2SKenneth D. Merry 	    le32toh(reply->TerminationCount));
1561991554f2SKenneth D. Merry 
1562991554f2SKenneth D. Merry 	cm = TAILQ_FIRST(&tm->cm_targ->timedout_commands);
1563991554f2SKenneth D. Merry 	if (cm == NULL) {
15646eea4f46SScott Long 		/*
15656eea4f46SScott Long 		 * if there are no more timedout commands, we're done with
1566991554f2SKenneth D. Merry 		 * error recovery for this target.
1567991554f2SKenneth D. Merry 		 */
15686eea4f46SScott Long 		mpr_dprint(sc, MPR_INFO|MPR_RECOVERY,
15696eea4f46SScott Long 		    "Finished abort recovery for target %u\n", targ->tid);
1570991554f2SKenneth D. Merry 		targ->tm = NULL;
1571991554f2SKenneth D. Merry 		mprsas_free_tm(sc, tm);
15726eea4f46SScott Long 	} else if (le16toh(req->TaskMID) != cm->cm_desc.Default.SMID) {
1573991554f2SKenneth D. Merry 		/* abort success, but we have more timedout commands to abort */
15746eea4f46SScott Long 		mpr_dprint(sc, MPR_INFO|MPR_RECOVERY,
15756eea4f46SScott Long 		    "Continuing abort recovery for target %u\n", targ->tid);
1576991554f2SKenneth D. Merry 		mprsas_send_abort(sc, tm, cm);
15776eea4f46SScott Long 	} else {
15786eea4f46SScott Long 		/*
15796eea4f46SScott Long 		 * we didn't get a command completion, so the abort
1580991554f2SKenneth D. Merry 		 * failed as far as we're concerned.  escalate.
1581991554f2SKenneth D. Merry 		 */
15826eea4f46SScott Long 		mpr_dprint(sc, MPR_INFO|MPR_RECOVERY,
15836eea4f46SScott Long 		    "Abort failed for target %u, sending logical unit reset\n",
15846eea4f46SScott Long 		    targ->tid);
1585991554f2SKenneth D. Merry 
1586991554f2SKenneth D. Merry 		mprsas_send_reset(sc, tm,
1587991554f2SKenneth D. Merry 		    MPI2_SCSITASKMGMT_TASKTYPE_LOGICAL_UNIT_RESET);
1588991554f2SKenneth D. Merry 	}
1589991554f2SKenneth D. Merry }
1590991554f2SKenneth D. Merry 
1591991554f2SKenneth D. Merry #define MPR_ABORT_TIMEOUT 5
1592991554f2SKenneth D. Merry 
1593991554f2SKenneth D. Merry static int
1594991554f2SKenneth D. Merry mprsas_send_abort(struct mpr_softc *sc, struct mpr_command *tm,
1595991554f2SKenneth D. Merry     struct mpr_command *cm)
1596991554f2SKenneth D. Merry {
1597991554f2SKenneth D. Merry 	MPI2_SCSI_TASK_MANAGE_REQUEST *req;
1598991554f2SKenneth D. Merry 	struct mprsas_target *targ;
1599991554f2SKenneth D. Merry 	int err;
1600991554f2SKenneth D. Merry 
1601991554f2SKenneth D. Merry 	targ = cm->cm_targ;
1602991554f2SKenneth D. Merry 	if (targ->handle == 0) {
16036eea4f46SScott Long 		mpr_dprint(sc, MPR_ERROR|MPR_RECOVERY,
16046eea4f46SScott Long 		   "%s null devhandle for target_id %d\n",
1605991554f2SKenneth D. Merry 		    __func__, cm->cm_ccb->ccb_h.target_id);
1606991554f2SKenneth D. Merry 		return -1;
1607991554f2SKenneth D. Merry 	}
1608991554f2SKenneth D. Merry 
1609855fe445SScott Long 	mprsas_log_command(cm, MPR_RECOVERY|MPR_INFO,
1610991554f2SKenneth D. Merry 	    "Aborting command %p\n", cm);
1611991554f2SKenneth D. Merry 
1612991554f2SKenneth D. Merry 	req = (MPI2_SCSI_TASK_MANAGE_REQUEST *)tm->cm_req;
1613991554f2SKenneth D. Merry 	req->DevHandle = htole16(targ->handle);
1614991554f2SKenneth D. Merry 	req->Function = MPI2_FUNCTION_SCSI_TASK_MGMT;
1615991554f2SKenneth D. Merry 	req->TaskType = MPI2_SCSITASKMGMT_TASKTYPE_ABORT_TASK;
1616991554f2SKenneth D. Merry 
1617991554f2SKenneth D. Merry 	/* XXX Need to handle invalid LUNs */
1618991554f2SKenneth D. Merry 	MPR_SET_LUN(req->LUN, cm->cm_ccb->ccb_h.target_lun);
1619991554f2SKenneth D. Merry 
1620991554f2SKenneth D. Merry 	req->TaskMID = htole16(cm->cm_desc.Default.SMID);
1621991554f2SKenneth D. Merry 
1622991554f2SKenneth D. Merry 	tm->cm_data = NULL;
1623991554f2SKenneth D. Merry 	tm->cm_complete = mprsas_abort_complete;
1624991554f2SKenneth D. Merry 	tm->cm_complete_data = (void *)tm;
1625991554f2SKenneth D. Merry 	tm->cm_targ = cm->cm_targ;
1626991554f2SKenneth D. Merry 	tm->cm_lun = cm->cm_lun;
1627991554f2SKenneth D. Merry 
1628991554f2SKenneth D. Merry 	callout_reset(&tm->cm_callout, MPR_ABORT_TIMEOUT * hz,
1629991554f2SKenneth D. Merry 	    mprsas_tm_timeout, tm);
1630991554f2SKenneth D. Merry 
1631991554f2SKenneth D. Merry 	targ->aborts++;
1632991554f2SKenneth D. Merry 
1633a2c14879SStephen McConnell 	mprsas_prepare_for_tm(sc, tm, targ, tm->cm_lun);
1634a2c14879SStephen McConnell 
1635991554f2SKenneth D. Merry 	err = mpr_map_command(sc, tm);
1636991554f2SKenneth D. Merry 	if (err)
16376eea4f46SScott Long 		mpr_dprint(sc, MPR_ERROR|MPR_RECOVERY,
1638991554f2SKenneth D. Merry 		    "error %d sending abort for cm %p SMID %u\n",
1639991554f2SKenneth D. Merry 		    err, cm, req->TaskMID);
1640991554f2SKenneth D. Merry 	return err;
1641991554f2SKenneth D. Merry }
1642991554f2SKenneth D. Merry 
1643991554f2SKenneth D. Merry static void
1644991554f2SKenneth D. Merry mprsas_scsiio_timeout(void *data)
1645991554f2SKenneth D. Merry {
16466eea4f46SScott Long 	sbintime_t elapsed, now;
16476eea4f46SScott Long 	union ccb *ccb;
1648991554f2SKenneth D. Merry 	struct mpr_softc *sc;
1649991554f2SKenneth D. Merry 	struct mpr_command *cm;
1650991554f2SKenneth D. Merry 	struct mprsas_target *targ;
1651991554f2SKenneth D. Merry 
1652991554f2SKenneth D. Merry 	cm = (struct mpr_command *)data;
1653991554f2SKenneth D. Merry 	sc = cm->cm_sc;
16546eea4f46SScott Long 	ccb = cm->cm_ccb;
16556eea4f46SScott Long 	now = sbinuptime();
1656991554f2SKenneth D. Merry 
1657991554f2SKenneth D. Merry 	MPR_FUNCTRACE(sc);
1658991554f2SKenneth D. Merry 	mtx_assert(&sc->mpr_mtx, MA_OWNED);
1659991554f2SKenneth D. Merry 
16606eea4f46SScott Long 	mpr_dprint(sc, MPR_XINFO|MPR_RECOVERY, "Timeout checking cm %p\n", cm);
1661991554f2SKenneth D. Merry 
1662991554f2SKenneth D. Merry 	/*
1663991554f2SKenneth D. Merry 	 * Run the interrupt handler to make sure it's not pending.  This
1664991554f2SKenneth D. Merry 	 * isn't perfect because the command could have already completed
1665991554f2SKenneth D. Merry 	 * and been re-used, though this is unlikely.
1666991554f2SKenneth D. Merry 	 */
1667991554f2SKenneth D. Merry 	mpr_intr_locked(sc);
1668f0779b04SScott Long 	if (cm->cm_state != MPR_CM_STATE_INQUEUE) {
1669991554f2SKenneth D. Merry 		mprsas_log_command(cm, MPR_XINFO,
1670991554f2SKenneth D. Merry 		    "SCSI command %p almost timed out\n", cm);
1671991554f2SKenneth D. Merry 		return;
1672991554f2SKenneth D. Merry 	}
1673991554f2SKenneth D. Merry 
1674991554f2SKenneth D. Merry 	if (cm->cm_ccb == NULL) {
1675991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_ERROR, "command timeout with NULL ccb\n");
1676991554f2SKenneth D. Merry 		return;
1677991554f2SKenneth D. Merry 	}
1678991554f2SKenneth D. Merry 
1679991554f2SKenneth D. Merry 	targ = cm->cm_targ;
1680991554f2SKenneth D. Merry 	targ->timeouts++;
1681991554f2SKenneth D. Merry 
16826eea4f46SScott Long 	elapsed = now - ccb->ccb_h.qos.sim_data;
16836eea4f46SScott Long 	mprsas_log_command(cm, MPR_INFO|MPR_RECOVERY,
16846eea4f46SScott Long 	    "Command timeout on target %u(0x%04x), %d set, %d.%d elapsed\n",
16856eea4f46SScott Long 	    targ->tid, targ->handle, ccb->ccb_h.timeout,
16866eea4f46SScott Long 	    sbintime_getsec(elapsed), elapsed & 0xffffffff);
1687991554f2SKenneth D. Merry 	if (targ->encl_level_valid) {
16886eea4f46SScott Long 		mpr_dprint(sc, MPR_INFO|MPR_RECOVERY,
16896eea4f46SScott Long 		    "At enclosure level %d, slot %d, connector name (%4s)\n",
16906eea4f46SScott Long 		    targ->encl_level, targ->encl_slot, targ->connector_name);
1691991554f2SKenneth D. Merry 	}
1692991554f2SKenneth D. Merry 
1693991554f2SKenneth D. Merry 	/* XXX first, check the firmware state, to see if it's still
1694991554f2SKenneth D. Merry 	 * operational.  if not, do a diag reset.
1695991554f2SKenneth D. Merry 	 */
1696a2c14879SStephen McConnell 	mprsas_set_ccbstatus(cm->cm_ccb, CAM_CMD_TIMEOUT);
1697991554f2SKenneth D. Merry 	cm->cm_state = MPR_CM_STATE_TIMEDOUT;
1698991554f2SKenneth D. Merry 	TAILQ_INSERT_TAIL(&targ->timedout_commands, cm, cm_recovery);
1699991554f2SKenneth D. Merry 
1700991554f2SKenneth D. Merry 	if (targ->tm != NULL) {
1701991554f2SKenneth D. Merry 		/* target already in recovery, just queue up another
1702991554f2SKenneth D. Merry 		 * timedout command to be processed later.
1703991554f2SKenneth D. Merry 		 */
1704991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_RECOVERY, "queued timedout cm %p for "
1705991554f2SKenneth D. Merry 		    "processing by tm %p\n", cm, targ->tm);
1706991554f2SKenneth D. Merry 	}
1707991554f2SKenneth D. Merry 	else if ((targ->tm = mprsas_alloc_tm(sc)) != NULL) {
1708991554f2SKenneth D. Merry 
1709991554f2SKenneth D. Merry 		/* start recovery by aborting the first timedout command */
17106eea4f46SScott Long 		mpr_dprint(sc, MPR_RECOVERY|MPR_INFO,
17116eea4f46SScott Long 		    "Sending abort to target %u for SMID %d\n", targ->tid,
17126eea4f46SScott Long 		    cm->cm_desc.Default.SMID);
17136eea4f46SScott Long 		mpr_dprint(sc, MPR_RECOVERY, "timedout cm %p allocated tm %p\n",
17146eea4f46SScott Long 		    cm, targ->tm);
1715991554f2SKenneth D. Merry 		mprsas_send_abort(sc, targ->tm, cm);
1716991554f2SKenneth D. Merry 	}
1717991554f2SKenneth D. Merry 	else {
1718991554f2SKenneth D. Merry 		/* XXX queue this target up for recovery once a TM becomes
1719991554f2SKenneth D. Merry 		 * available.  The firmware only has a limited number of
1720991554f2SKenneth D. Merry 		 * HighPriority credits for the high priority requests used
1721991554f2SKenneth D. Merry 		 * for task management, and we ran out.
1722991554f2SKenneth D. Merry 		 *
1723991554f2SKenneth D. Merry 		 * Isilon: don't worry about this for now, since we have
1724991554f2SKenneth D. Merry 		 * more credits than disks in an enclosure, and limit
1725991554f2SKenneth D. Merry 		 * ourselves to one TM per target for recovery.
1726991554f2SKenneth D. Merry 		 */
17276eea4f46SScott Long 		mpr_dprint(sc, MPR_ERROR|MPR_RECOVERY,
17286eea4f46SScott Long 		    "timedout cm %p failed to allocate a tm\n", cm);
1729991554f2SKenneth D. Merry 	}
1730991554f2SKenneth D. Merry }
1731991554f2SKenneth D. Merry 
173267feec50SStephen McConnell /**
173367feec50SStephen McConnell  * mprsas_build_nvme_unmap - Build Native NVMe DSM command equivalent
173467feec50SStephen McConnell  *			     to SCSI Unmap.
173567feec50SStephen McConnell  * Return 0 - for success,
173667feec50SStephen McConnell  *	  1 - to immediately return back the command with success status to CAM
173767feec50SStephen McConnell  *	  negative value - to fallback to firmware path i.e. issue scsi unmap
173867feec50SStephen McConnell  *			   to FW without any translation.
173967feec50SStephen McConnell  */
174067feec50SStephen McConnell static int
174167feec50SStephen McConnell mprsas_build_nvme_unmap(struct mpr_softc *sc, struct mpr_command *cm,
174267feec50SStephen McConnell     union ccb *ccb, struct mprsas_target *targ)
174367feec50SStephen McConnell {
174467feec50SStephen McConnell 	Mpi26NVMeEncapsulatedRequest_t *req = NULL;
174567feec50SStephen McConnell 	struct ccb_scsiio *csio;
174667feec50SStephen McConnell 	struct unmap_parm_list *plist;
174767feec50SStephen McConnell 	struct nvme_dsm_range *nvme_dsm_ranges = NULL;
174867feec50SStephen McConnell 	struct nvme_command *c;
174967feec50SStephen McConnell 	int i, res;
175067feec50SStephen McConnell 	uint16_t ndesc, list_len, data_length;
175167feec50SStephen McConnell 	struct mpr_prp_page *prp_page_info;
175267feec50SStephen McConnell 	uint64_t nvme_dsm_ranges_dma_handle;
175367feec50SStephen McConnell 
175467feec50SStephen McConnell 	csio = &ccb->csio;
175567feec50SStephen McConnell #if __FreeBSD_version >= 1100103
175667feec50SStephen McConnell 	list_len = (scsiio_cdb_ptr(csio)[7] << 8 | scsiio_cdb_ptr(csio)[8]);
175767feec50SStephen McConnell #else
175867feec50SStephen McConnell 	if (csio->ccb_h.flags & CAM_CDB_POINTER) {
175967feec50SStephen McConnell 		list_len = (ccb->csio.cdb_io.cdb_ptr[7] << 8 |
176067feec50SStephen McConnell 		    ccb->csio.cdb_io.cdb_ptr[8]);
176167feec50SStephen McConnell 	} else {
176267feec50SStephen McConnell 		list_len = (ccb->csio.cdb_io.cdb_bytes[7] << 8 |
176367feec50SStephen McConnell 		    ccb->csio.cdb_io.cdb_bytes[8]);
176467feec50SStephen McConnell 	}
176567feec50SStephen McConnell #endif
176667feec50SStephen McConnell 	if (!list_len) {
176767feec50SStephen McConnell 		mpr_dprint(sc, MPR_ERROR, "Parameter list length is Zero\n");
176867feec50SStephen McConnell 		return -EINVAL;
176967feec50SStephen McConnell 	}
177067feec50SStephen McConnell 
177167feec50SStephen McConnell 	plist = malloc(csio->dxfer_len, M_MPR, M_ZERO|M_NOWAIT);
177267feec50SStephen McConnell 	if (!plist) {
177367feec50SStephen McConnell 		mpr_dprint(sc, MPR_ERROR, "Unable to allocate memory to "
177467feec50SStephen McConnell 		    "save UNMAP data\n");
177567feec50SStephen McConnell 		return -ENOMEM;
177667feec50SStephen McConnell 	}
177767feec50SStephen McConnell 
177867feec50SStephen McConnell 	/* Copy SCSI unmap data to a local buffer */
177967feec50SStephen McConnell 	bcopy(csio->data_ptr, plist, csio->dxfer_len);
178067feec50SStephen McConnell 
178167feec50SStephen McConnell 	/* return back the unmap command to CAM with success status,
178267feec50SStephen McConnell 	 * if number of descripts is zero.
178367feec50SStephen McConnell 	 */
178467feec50SStephen McConnell 	ndesc = be16toh(plist->unmap_blk_desc_data_len) >> 4;
178567feec50SStephen McConnell 	if (!ndesc) {
178667feec50SStephen McConnell 		mpr_dprint(sc, MPR_XINFO, "Number of descriptors in "
178767feec50SStephen McConnell 		    "UNMAP cmd is Zero\n");
178867feec50SStephen McConnell 		res = 1;
178967feec50SStephen McConnell 		goto out;
179067feec50SStephen McConnell 	}
179167feec50SStephen McConnell 
179267feec50SStephen McConnell 	data_length = ndesc * sizeof(struct nvme_dsm_range);
179367feec50SStephen McConnell 	if (data_length > targ->MDTS) {
179467feec50SStephen McConnell 		mpr_dprint(sc, MPR_ERROR, "data length: %d is greater than "
179567feec50SStephen McConnell 		    "Device's MDTS: %d\n", data_length, targ->MDTS);
179667feec50SStephen McConnell 		res = -EINVAL;
179767feec50SStephen McConnell 		goto out;
179867feec50SStephen McConnell 	}
179967feec50SStephen McConnell 
180067feec50SStephen McConnell 	prp_page_info = mpr_alloc_prp_page(sc);
180167feec50SStephen McConnell 	KASSERT(prp_page_info != NULL, ("%s: There is no PRP Page for "
180267feec50SStephen McConnell 	    "UNMAP command.\n", __func__));
180367feec50SStephen McConnell 
180467feec50SStephen McConnell 	/*
180567feec50SStephen McConnell 	 * Insert the allocated PRP page into the command's PRP page list. This
180667feec50SStephen McConnell 	 * will be freed when the command is freed.
180767feec50SStephen McConnell 	 */
180867feec50SStephen McConnell 	TAILQ_INSERT_TAIL(&cm->cm_prp_page_list, prp_page_info, prp_page_link);
180967feec50SStephen McConnell 
181067feec50SStephen McConnell 	nvme_dsm_ranges = (struct nvme_dsm_range *)prp_page_info->prp_page;
181167feec50SStephen McConnell 	nvme_dsm_ranges_dma_handle = prp_page_info->prp_page_busaddr;
181267feec50SStephen McConnell 
181367feec50SStephen McConnell 	bzero(nvme_dsm_ranges, data_length);
181467feec50SStephen McConnell 
181567feec50SStephen McConnell 	/* Convert SCSI unmap's descriptor data to NVMe DSM specific Range data
181667feec50SStephen McConnell 	 * for each descriptors contained in SCSI UNMAP data.
181767feec50SStephen McConnell 	 */
181867feec50SStephen McConnell 	for (i = 0; i < ndesc; i++) {
181967feec50SStephen McConnell 		nvme_dsm_ranges[i].length =
182067feec50SStephen McConnell 		    htole32(be32toh(plist->desc[i].nlb));
182167feec50SStephen McConnell 		nvme_dsm_ranges[i].starting_lba =
182267feec50SStephen McConnell 		    htole64(be64toh(plist->desc[i].slba));
182367feec50SStephen McConnell 		nvme_dsm_ranges[i].attributes = 0;
182467feec50SStephen McConnell 	}
182567feec50SStephen McConnell 
182667feec50SStephen McConnell 	/* Build MPI2.6's NVMe Encapsulated Request Message */
182767feec50SStephen McConnell 	req = (Mpi26NVMeEncapsulatedRequest_t *)cm->cm_req;
182867feec50SStephen McConnell 	bzero(req, sizeof(*req));
182967feec50SStephen McConnell 	req->DevHandle = htole16(targ->handle);
183067feec50SStephen McConnell 	req->Function = MPI2_FUNCTION_NVME_ENCAPSULATED;
183167feec50SStephen McConnell 	req->Flags = MPI26_NVME_FLAGS_WRITE;
183267feec50SStephen McConnell 	req->ErrorResponseBaseAddress.High =
183367feec50SStephen McConnell 	    htole32((uint32_t)((uint64_t)cm->cm_sense_busaddr >> 32));
183467feec50SStephen McConnell 	req->ErrorResponseBaseAddress.Low =
183567feec50SStephen McConnell 	    htole32(cm->cm_sense_busaddr);
183667feec50SStephen McConnell 	req->ErrorResponseAllocationLength =
183767feec50SStephen McConnell 	    htole16(sizeof(struct nvme_completion));
183867feec50SStephen McConnell 	req->EncapsulatedCommandLength =
183967feec50SStephen McConnell 	    htole16(sizeof(struct nvme_command));
184067feec50SStephen McConnell 	req->DataLength = htole32(data_length);
184167feec50SStephen McConnell 
184267feec50SStephen McConnell 	/* Build NVMe DSM command */
184367feec50SStephen McConnell 	c = (struct nvme_command *) req->NVMe_Command;
18449544e6dcSChuck Tuffli 	c->opc = NVME_OPC_DATASET_MANAGEMENT;
184567feec50SStephen McConnell 	c->nsid = htole32(csio->ccb_h.target_lun + 1);
184667feec50SStephen McConnell 	c->cdw10 = htole32(ndesc - 1);
184767feec50SStephen McConnell 	c->cdw11 = htole32(NVME_DSM_ATTR_DEALLOCATE);
184867feec50SStephen McConnell 
184967feec50SStephen McConnell 	cm->cm_length = data_length;
185067feec50SStephen McConnell 	cm->cm_data = NULL;
185167feec50SStephen McConnell 
185267feec50SStephen McConnell 	cm->cm_complete = mprsas_scsiio_complete;
185367feec50SStephen McConnell 	cm->cm_complete_data = ccb;
185467feec50SStephen McConnell 	cm->cm_targ = targ;
185567feec50SStephen McConnell 	cm->cm_lun = csio->ccb_h.target_lun;
185667feec50SStephen McConnell 	cm->cm_ccb = ccb;
185767feec50SStephen McConnell 
185867feec50SStephen McConnell 	cm->cm_desc.Default.RequestFlags =
185967feec50SStephen McConnell 	    MPI26_REQ_DESCRIPT_FLAGS_PCIE_ENCAPSULATED;
186067feec50SStephen McConnell 
18616eea4f46SScott Long 	csio->ccb_h.qos.sim_data = sbinuptime();
186267feec50SStephen McConnell #if __FreeBSD_version >= 1000029
186367feec50SStephen McConnell 	callout_reset_sbt(&cm->cm_callout, SBT_1MS * ccb->ccb_h.timeout, 0,
186467feec50SStephen McConnell 	    mprsas_scsiio_timeout, cm, 0);
186567feec50SStephen McConnell #else //__FreeBSD_version < 1000029
186667feec50SStephen McConnell 	callout_reset(&cm->cm_callout, (ccb->ccb_h.timeout * hz) / 1000,
186767feec50SStephen McConnell 	    mprsas_scsiio_timeout, cm);
186867feec50SStephen McConnell #endif //__FreeBSD_version >= 1000029
186967feec50SStephen McConnell 
187067feec50SStephen McConnell 	targ->issued++;
187167feec50SStephen McConnell 	targ->outstanding++;
187267feec50SStephen McConnell 	TAILQ_INSERT_TAIL(&targ->commands, cm, cm_link);
187367feec50SStephen McConnell 	ccb->ccb_h.status |= CAM_SIM_QUEUED;
187467feec50SStephen McConnell 
187567feec50SStephen McConnell 	mprsas_log_command(cm, MPR_XINFO, "%s cm %p ccb %p outstanding %u\n",
187667feec50SStephen McConnell 	    __func__, cm, ccb, targ->outstanding);
187767feec50SStephen McConnell 
187818982e8fSStephen McConnell 	mpr_build_nvme_prp(sc, cm, req,
187918982e8fSStephen McConnell 	    (void *)(uintptr_t)nvme_dsm_ranges_dma_handle, 0, data_length);
188067feec50SStephen McConnell 	mpr_map_command(sc, cm);
188167feec50SStephen McConnell 
188267feec50SStephen McConnell out:
188367feec50SStephen McConnell 	free(plist, M_MPR);
188467feec50SStephen McConnell 	return 0;
188567feec50SStephen McConnell }
188667feec50SStephen McConnell 
1887991554f2SKenneth D. Merry static void
1888991554f2SKenneth D. Merry mprsas_action_scsiio(struct mprsas_softc *sassc, union ccb *ccb)
1889991554f2SKenneth D. Merry {
1890991554f2SKenneth D. Merry 	MPI2_SCSI_IO_REQUEST *req;
1891991554f2SKenneth D. Merry 	struct ccb_scsiio *csio;
1892991554f2SKenneth D. Merry 	struct mpr_softc *sc;
1893991554f2SKenneth D. Merry 	struct mprsas_target *targ;
1894991554f2SKenneth D. Merry 	struct mprsas_lun *lun;
1895991554f2SKenneth D. Merry 	struct mpr_command *cm;
189667feec50SStephen McConnell 	uint8_t i, lba_byte, *ref_tag_addr, scsi_opcode;
1897991554f2SKenneth D. Merry 	uint16_t eedp_flags;
1898991554f2SKenneth D. Merry 	uint32_t mpi_control;
189967feec50SStephen McConnell 	int rc;
1900991554f2SKenneth D. Merry 
1901991554f2SKenneth D. Merry 	sc = sassc->sc;
1902991554f2SKenneth D. Merry 	MPR_FUNCTRACE(sc);
1903991554f2SKenneth D. Merry 	mtx_assert(&sc->mpr_mtx, MA_OWNED);
1904991554f2SKenneth D. Merry 
1905991554f2SKenneth D. Merry 	csio = &ccb->csio;
1906a2c14879SStephen McConnell 	KASSERT(csio->ccb_h.target_id < sassc->maxtargets,
1907a2c14879SStephen McConnell 	    ("Target %d out of bounds in XPT_SCSI_IO\n",
1908a2c14879SStephen McConnell 	     csio->ccb_h.target_id));
1909991554f2SKenneth D. Merry 	targ = &sassc->targets[csio->ccb_h.target_id];
1910991554f2SKenneth D. Merry 	mpr_dprint(sc, MPR_TRACE, "ccb %p target flag %x\n", ccb, targ->flags);
1911991554f2SKenneth D. Merry 	if (targ->handle == 0x0) {
1912991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_ERROR, "%s NULL handle for target %u\n",
1913991554f2SKenneth D. Merry 		    __func__, csio->ccb_h.target_id);
1914a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_DEV_NOT_THERE);
1915991554f2SKenneth D. Merry 		xpt_done(ccb);
1916991554f2SKenneth D. Merry 		return;
1917991554f2SKenneth D. Merry 	}
1918991554f2SKenneth D. Merry 	if (targ->flags & MPR_TARGET_FLAGS_RAID_COMPONENT) {
1919a2c14879SStephen McConnell 		mpr_dprint(sc, MPR_ERROR, "%s Raid component no SCSI IO "
1920991554f2SKenneth D. Merry 		    "supported %u\n", __func__, csio->ccb_h.target_id);
1921a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_DEV_NOT_THERE);
1922991554f2SKenneth D. Merry 		xpt_done(ccb);
1923991554f2SKenneth D. Merry 		return;
1924991554f2SKenneth D. Merry 	}
1925991554f2SKenneth D. Merry 	/*
1926991554f2SKenneth D. Merry 	 * Sometimes, it is possible to get a command that is not "In
1927991554f2SKenneth D. Merry 	 * Progress" and was actually aborted by the upper layer.  Check for
1928991554f2SKenneth D. Merry 	 * this here and complete the command without error.
1929991554f2SKenneth D. Merry 	 */
1930a2c14879SStephen McConnell 	if (mprsas_get_ccbstatus(ccb) != CAM_REQ_INPROG) {
1931991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_TRACE, "%s Command is not in progress for "
1932991554f2SKenneth D. Merry 		    "target %u\n", __func__, csio->ccb_h.target_id);
1933991554f2SKenneth D. Merry 		xpt_done(ccb);
1934991554f2SKenneth D. Merry 		return;
1935991554f2SKenneth D. Merry 	}
1936991554f2SKenneth D. Merry 	/*
1937991554f2SKenneth D. Merry 	 * If devinfo is 0 this will be a volume.  In that case don't tell CAM
1938991554f2SKenneth D. Merry 	 * that the volume has timed out.  We want volumes to be enumerated
1939991554f2SKenneth D. Merry 	 * until they are deleted/removed, not just failed.
1940991554f2SKenneth D. Merry 	 */
1941991554f2SKenneth D. Merry 	if (targ->flags & MPRSAS_TARGET_INREMOVAL) {
1942991554f2SKenneth D. Merry 		if (targ->devinfo == 0)
1943a2c14879SStephen McConnell 			mprsas_set_ccbstatus(ccb, CAM_REQ_CMP);
1944991554f2SKenneth D. Merry 		else
1945a2c14879SStephen McConnell 			mprsas_set_ccbstatus(ccb, CAM_SEL_TIMEOUT);
1946991554f2SKenneth D. Merry 		xpt_done(ccb);
1947991554f2SKenneth D. Merry 		return;
1948991554f2SKenneth D. Merry 	}
1949991554f2SKenneth D. Merry 
1950991554f2SKenneth D. Merry 	if ((sc->mpr_flags & MPR_FLAGS_SHUTDOWN) != 0) {
1951a2c14879SStephen McConnell 		mpr_dprint(sc, MPR_INFO, "%s shutting down\n", __func__);
1952a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_DEV_NOT_THERE);
1953a2c14879SStephen McConnell 		xpt_done(ccb);
1954a2c14879SStephen McConnell 		return;
1955a2c14879SStephen McConnell 	}
1956a2c14879SStephen McConnell 
1957a2c14879SStephen McConnell 	/*
1958a2c14879SStephen McConnell 	 * If target has a reset in progress, freeze the devq and return.  The
1959a2c14879SStephen McConnell 	 * devq will be released when the TM reset is finished.
1960a2c14879SStephen McConnell 	 */
1961a2c14879SStephen McConnell 	if (targ->flags & MPRSAS_TARGET_INRESET) {
1962a2c14879SStephen McConnell 		ccb->ccb_h.status = CAM_BUSY | CAM_DEV_QFRZN;
1963a2c14879SStephen McConnell 		mpr_dprint(sc, MPR_INFO, "%s: Freezing devq for target ID %d\n",
1964a2c14879SStephen McConnell 		    __func__, targ->tid);
1965a2c14879SStephen McConnell 		xpt_freeze_devq(ccb->ccb_h.path, 1);
1966991554f2SKenneth D. Merry 		xpt_done(ccb);
1967991554f2SKenneth D. Merry 		return;
1968991554f2SKenneth D. Merry 	}
1969991554f2SKenneth D. Merry 
1970991554f2SKenneth D. Merry 	cm = mpr_alloc_command(sc);
1971991554f2SKenneth D. Merry 	if (cm == NULL || (sc->mpr_flags & MPR_FLAGS_DIAGRESET)) {
1972991554f2SKenneth D. Merry 		if (cm != NULL) {
1973991554f2SKenneth D. Merry 			mpr_free_command(sc, cm);
1974991554f2SKenneth D. Merry 		}
1975991554f2SKenneth D. Merry 		if ((sassc->flags & MPRSAS_QUEUE_FROZEN) == 0) {
1976991554f2SKenneth D. Merry 			xpt_freeze_simq(sassc->sim, 1);
1977991554f2SKenneth D. Merry 			sassc->flags |= MPRSAS_QUEUE_FROZEN;
1978991554f2SKenneth D. Merry 		}
1979991554f2SKenneth D. Merry 		ccb->ccb_h.status &= ~CAM_SIM_QUEUED;
1980991554f2SKenneth D. Merry 		ccb->ccb_h.status |= CAM_REQUEUE_REQ;
1981991554f2SKenneth D. Merry 		xpt_done(ccb);
1982991554f2SKenneth D. Merry 		return;
1983991554f2SKenneth D. Merry 	}
1984991554f2SKenneth D. Merry 
198567feec50SStephen McConnell 	/* For NVME device's issue UNMAP command directly to NVME drives by
198667feec50SStephen McConnell 	 * constructing equivalent native NVMe DataSetManagement command.
198767feec50SStephen McConnell 	 */
198867feec50SStephen McConnell #if __FreeBSD_version >= 1100103
198967feec50SStephen McConnell 	scsi_opcode = scsiio_cdb_ptr(csio)[0];
199067feec50SStephen McConnell #else
199167feec50SStephen McConnell 	if (csio->ccb_h.flags & CAM_CDB_POINTER)
199267feec50SStephen McConnell 		scsi_opcode = csio->cdb_io.cdb_ptr[0];
199367feec50SStephen McConnell 	else
199467feec50SStephen McConnell 		scsi_opcode = csio->cdb_io.cdb_bytes[0];
199567feec50SStephen McConnell #endif
199667feec50SStephen McConnell 	if (scsi_opcode == UNMAP &&
199767feec50SStephen McConnell 	    targ->is_nvme &&
199867feec50SStephen McConnell 	    (csio->ccb_h.flags & CAM_DATA_MASK) == CAM_DATA_VADDR) {
199967feec50SStephen McConnell 		rc = mprsas_build_nvme_unmap(sc, cm, ccb, targ);
200067feec50SStephen McConnell 		if (rc == 1) { /* return command to CAM with success status */
200167feec50SStephen McConnell 			mpr_free_command(sc, cm);
200267feec50SStephen McConnell 			mprsas_set_ccbstatus(ccb, CAM_REQ_CMP);
200367feec50SStephen McConnell 			xpt_done(ccb);
200467feec50SStephen McConnell 			return;
200567feec50SStephen McConnell 		} else if (!rc) /* Issued NVMe Encapsulated Request Message */
200667feec50SStephen McConnell 			return;
200767feec50SStephen McConnell 	}
200867feec50SStephen McConnell 
2009991554f2SKenneth D. Merry 	req = (MPI2_SCSI_IO_REQUEST *)cm->cm_req;
2010991554f2SKenneth D. Merry 	bzero(req, sizeof(*req));
2011991554f2SKenneth D. Merry 	req->DevHandle = htole16(targ->handle);
2012991554f2SKenneth D. Merry 	req->Function = MPI2_FUNCTION_SCSI_IO_REQUEST;
2013991554f2SKenneth D. Merry 	req->MsgFlags = 0;
2014991554f2SKenneth D. Merry 	req->SenseBufferLowAddress = htole32(cm->cm_sense_busaddr);
2015991554f2SKenneth D. Merry 	req->SenseBufferLength = MPR_SENSE_LEN;
2016991554f2SKenneth D. Merry 	req->SGLFlags = 0;
2017991554f2SKenneth D. Merry 	req->ChainOffset = 0;
2018991554f2SKenneth D. Merry 	req->SGLOffset0 = 24;	/* 32bit word offset to the SGL */
2019991554f2SKenneth D. Merry 	req->SGLOffset1= 0;
2020991554f2SKenneth D. Merry 	req->SGLOffset2= 0;
2021991554f2SKenneth D. Merry 	req->SGLOffset3= 0;
2022991554f2SKenneth D. Merry 	req->SkipCount = 0;
2023991554f2SKenneth D. Merry 	req->DataLength = htole32(csio->dxfer_len);
2024991554f2SKenneth D. Merry 	req->BidirectionalDataLength = 0;
2025991554f2SKenneth D. Merry 	req->IoFlags = htole16(csio->cdb_len);
2026991554f2SKenneth D. Merry 	req->EEDPFlags = 0;
2027991554f2SKenneth D. Merry 
2028991554f2SKenneth D. Merry 	/* Note: BiDirectional transfers are not supported */
2029991554f2SKenneth D. Merry 	switch (csio->ccb_h.flags & CAM_DIR_MASK) {
2030991554f2SKenneth D. Merry 	case CAM_DIR_IN:
2031991554f2SKenneth D. Merry 		mpi_control = MPI2_SCSIIO_CONTROL_READ;
2032991554f2SKenneth D. Merry 		cm->cm_flags |= MPR_CM_FLAGS_DATAIN;
2033991554f2SKenneth D. Merry 		break;
2034991554f2SKenneth D. Merry 	case CAM_DIR_OUT:
2035991554f2SKenneth D. Merry 		mpi_control = MPI2_SCSIIO_CONTROL_WRITE;
2036991554f2SKenneth D. Merry 		cm->cm_flags |= MPR_CM_FLAGS_DATAOUT;
2037991554f2SKenneth D. Merry 		break;
2038991554f2SKenneth D. Merry 	case CAM_DIR_NONE:
2039991554f2SKenneth D. Merry 	default:
2040991554f2SKenneth D. Merry 		mpi_control = MPI2_SCSIIO_CONTROL_NODATATRANSFER;
2041991554f2SKenneth D. Merry 		break;
2042991554f2SKenneth D. Merry 	}
2043991554f2SKenneth D. Merry 
2044991554f2SKenneth D. Merry 	if (csio->cdb_len == 32)
2045991554f2SKenneth D. Merry 		mpi_control |= 4 << MPI2_SCSIIO_CONTROL_ADDCDBLEN_SHIFT;
2046991554f2SKenneth D. Merry 	/*
2047991554f2SKenneth D. Merry 	 * It looks like the hardware doesn't require an explicit tag
2048991554f2SKenneth D. Merry 	 * number for each transaction.  SAM Task Management not supported
2049991554f2SKenneth D. Merry 	 * at the moment.
2050991554f2SKenneth D. Merry 	 */
2051991554f2SKenneth D. Merry 	switch (csio->tag_action) {
2052991554f2SKenneth D. Merry 	case MSG_HEAD_OF_Q_TAG:
2053991554f2SKenneth D. Merry 		mpi_control |= MPI2_SCSIIO_CONTROL_HEADOFQ;
2054991554f2SKenneth D. Merry 		break;
2055991554f2SKenneth D. Merry 	case MSG_ORDERED_Q_TAG:
2056991554f2SKenneth D. Merry 		mpi_control |= MPI2_SCSIIO_CONTROL_ORDEREDQ;
2057991554f2SKenneth D. Merry 		break;
2058991554f2SKenneth D. Merry 	case MSG_ACA_TASK:
2059991554f2SKenneth D. Merry 		mpi_control |= MPI2_SCSIIO_CONTROL_ACAQ;
2060991554f2SKenneth D. Merry 		break;
2061991554f2SKenneth D. Merry 	case CAM_TAG_ACTION_NONE:
2062991554f2SKenneth D. Merry 	case MSG_SIMPLE_Q_TAG:
2063991554f2SKenneth D. Merry 	default:
2064991554f2SKenneth D. Merry 		mpi_control |= MPI2_SCSIIO_CONTROL_SIMPLEQ;
2065991554f2SKenneth D. Merry 		break;
2066991554f2SKenneth D. Merry 	}
2067991554f2SKenneth D. Merry 	mpi_control |= sc->mapping_table[csio->ccb_h.target_id].TLR_bits;
2068991554f2SKenneth D. Merry 	req->Control = htole32(mpi_control);
2069991554f2SKenneth D. Merry 
2070991554f2SKenneth D. Merry 	if (MPR_SET_LUN(req->LUN, csio->ccb_h.target_lun) != 0) {
2071991554f2SKenneth D. Merry 		mpr_free_command(sc, cm);
2072a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_LUN_INVALID);
2073991554f2SKenneth D. Merry 		xpt_done(ccb);
2074991554f2SKenneth D. Merry 		return;
2075991554f2SKenneth D. Merry 	}
2076991554f2SKenneth D. Merry 
2077991554f2SKenneth D. Merry 	if (csio->ccb_h.flags & CAM_CDB_POINTER)
2078991554f2SKenneth D. Merry 		bcopy(csio->cdb_io.cdb_ptr, &req->CDB.CDB32[0], csio->cdb_len);
2079fa699bb2SAlan Somers 	else {
2080fa699bb2SAlan Somers 		KASSERT(csio->cdb_len <= IOCDBLEN,
208167feec50SStephen McConnell 		    ("cdb_len %d is greater than IOCDBLEN but CAM_CDB_POINTER "
208267feec50SStephen McConnell 		    "is not set", csio->cdb_len));
2083991554f2SKenneth D. Merry 		bcopy(csio->cdb_io.cdb_bytes, &req->CDB.CDB32[0],csio->cdb_len);
2084fa699bb2SAlan Somers 	}
2085991554f2SKenneth D. Merry 	req->IoFlags = htole16(csio->cdb_len);
2086991554f2SKenneth D. Merry 
2087991554f2SKenneth D. Merry 	/*
2088991554f2SKenneth D. Merry 	 * Check if EEDP is supported and enabled.  If it is then check if the
2089991554f2SKenneth D. Merry 	 * SCSI opcode could be using EEDP.  If so, make sure the LUN exists and
2090991554f2SKenneth D. Merry 	 * is formatted for EEDP support.  If all of this is true, set CDB up
2091991554f2SKenneth D. Merry 	 * for EEDP transfer.
2092991554f2SKenneth D. Merry 	 */
2093991554f2SKenneth D. Merry 	eedp_flags = op_code_prot[req->CDB.CDB32[0]];
2094991554f2SKenneth D. Merry 	if (sc->eedp_enabled && eedp_flags) {
2095991554f2SKenneth D. Merry 		SLIST_FOREACH(lun, &targ->luns, lun_link) {
2096991554f2SKenneth D. Merry 			if (lun->lun_id == csio->ccb_h.target_lun) {
2097991554f2SKenneth D. Merry 				break;
2098991554f2SKenneth D. Merry 			}
2099991554f2SKenneth D. Merry 		}
2100991554f2SKenneth D. Merry 
2101991554f2SKenneth D. Merry 		if ((lun != NULL) && (lun->eedp_formatted)) {
2102991554f2SKenneth D. Merry 			req->EEDPBlockSize = htole16(lun->eedp_block_size);
2103991554f2SKenneth D. Merry 			eedp_flags |= (MPI2_SCSIIO_EEDPFLAGS_INC_PRI_REFTAG |
2104991554f2SKenneth D. Merry 			    MPI2_SCSIIO_EEDPFLAGS_CHECK_REFTAG |
2105991554f2SKenneth D. Merry 			    MPI2_SCSIIO_EEDPFLAGS_CHECK_GUARD);
210667feec50SStephen McConnell 			if (sc->mpr_flags & MPR_FLAGS_GEN35_IOC) {
210767feec50SStephen McConnell 				eedp_flags |=
210867feec50SStephen McConnell 				    MPI25_SCSIIO_EEDPFLAGS_APPTAG_DISABLE_MODE;
210967feec50SStephen McConnell 			}
2110991554f2SKenneth D. Merry 			req->EEDPFlags = htole16(eedp_flags);
2111991554f2SKenneth D. Merry 
2112991554f2SKenneth D. Merry 			/*
2113991554f2SKenneth D. Merry 			 * If CDB less than 32, fill in Primary Ref Tag with
2114991554f2SKenneth D. Merry 			 * low 4 bytes of LBA.  If CDB is 32, tag stuff is
2115991554f2SKenneth D. Merry 			 * already there.  Also, set protection bit.  FreeBSD
2116991554f2SKenneth D. Merry 			 * currently does not support CDBs bigger than 16, but
2117991554f2SKenneth D. Merry 			 * the code doesn't hurt, and will be here for the
2118991554f2SKenneth D. Merry 			 * future.
2119991554f2SKenneth D. Merry 			 */
2120991554f2SKenneth D. Merry 			if (csio->cdb_len != 32) {
2121991554f2SKenneth D. Merry 				lba_byte = (csio->cdb_len == 16) ? 6 : 2;
2122991554f2SKenneth D. Merry 				ref_tag_addr = (uint8_t *)&req->CDB.EEDP32.
2123991554f2SKenneth D. Merry 				    PrimaryReferenceTag;
2124991554f2SKenneth D. Merry 				for (i = 0; i < 4; i++) {
2125991554f2SKenneth D. Merry 					*ref_tag_addr =
2126991554f2SKenneth D. Merry 					    req->CDB.CDB32[lba_byte + i];
2127991554f2SKenneth D. Merry 					ref_tag_addr++;
2128991554f2SKenneth D. Merry 				}
2129991554f2SKenneth D. Merry 				req->CDB.EEDP32.PrimaryReferenceTag =
2130991554f2SKenneth D. Merry 				    htole32(req->
2131991554f2SKenneth D. Merry 				    CDB.EEDP32.PrimaryReferenceTag);
2132991554f2SKenneth D. Merry 				req->CDB.EEDP32.PrimaryApplicationTagMask =
2133991554f2SKenneth D. Merry 				    0xFFFF;
21348881681bSKenneth D. Merry 				req->CDB.CDB32[1] =
21358881681bSKenneth D. Merry 				    (req->CDB.CDB32[1] & 0x1F) | 0x20;
2136991554f2SKenneth D. Merry 			} else {
2137991554f2SKenneth D. Merry 				eedp_flags |=
2138991554f2SKenneth D. Merry 				    MPI2_SCSIIO_EEDPFLAGS_INC_PRI_APPTAG;
2139991554f2SKenneth D. Merry 				req->EEDPFlags = htole16(eedp_flags);
2140991554f2SKenneth D. Merry 				req->CDB.CDB32[10] = (req->CDB.CDB32[10] &
2141991554f2SKenneth D. Merry 				    0x1F) | 0x20;
2142991554f2SKenneth D. Merry 			}
2143991554f2SKenneth D. Merry 		}
2144991554f2SKenneth D. Merry 	}
2145991554f2SKenneth D. Merry 
2146991554f2SKenneth D. Merry 	cm->cm_length = csio->dxfer_len;
2147991554f2SKenneth D. Merry 	if (cm->cm_length != 0) {
2148991554f2SKenneth D. Merry 		cm->cm_data = ccb;
2149991554f2SKenneth D. Merry 		cm->cm_flags |= MPR_CM_FLAGS_USE_CCB;
2150991554f2SKenneth D. Merry 	} else {
2151991554f2SKenneth D. Merry 		cm->cm_data = NULL;
2152991554f2SKenneth D. Merry 	}
2153991554f2SKenneth D. Merry 	cm->cm_sge = &req->SGL;
2154991554f2SKenneth D. Merry 	cm->cm_sglsize = (32 - 24) * 4;
2155991554f2SKenneth D. Merry 	cm->cm_complete = mprsas_scsiio_complete;
2156991554f2SKenneth D. Merry 	cm->cm_complete_data = ccb;
2157991554f2SKenneth D. Merry 	cm->cm_targ = targ;
2158991554f2SKenneth D. Merry 	cm->cm_lun = csio->ccb_h.target_lun;
2159991554f2SKenneth D. Merry 	cm->cm_ccb = ccb;
2160991554f2SKenneth D. Merry 	/*
2161991554f2SKenneth D. Merry 	 * If using FP desc type, need to set a bit in IoFlags (SCSI IO is 0)
2162991554f2SKenneth D. Merry 	 * and set descriptor type.
2163991554f2SKenneth D. Merry 	 */
2164991554f2SKenneth D. Merry 	if (targ->scsi_req_desc_type ==
2165991554f2SKenneth D. Merry 	    MPI25_REQ_DESCRIPT_FLAGS_FAST_PATH_SCSI_IO) {
2166991554f2SKenneth D. Merry 		req->IoFlags |= MPI25_SCSIIO_IOFLAGS_FAST_PATH;
2167991554f2SKenneth D. Merry 		cm->cm_desc.FastPathSCSIIO.RequestFlags =
2168991554f2SKenneth D. Merry 		    MPI25_REQ_DESCRIPT_FLAGS_FAST_PATH_SCSI_IO;
216967feec50SStephen McConnell 		if (!sc->atomic_desc_capable) {
217067feec50SStephen McConnell 			cm->cm_desc.FastPathSCSIIO.DevHandle =
217167feec50SStephen McConnell 			    htole16(targ->handle);
217267feec50SStephen McConnell 		}
2173991554f2SKenneth D. Merry 	} else {
2174991554f2SKenneth D. Merry 		cm->cm_desc.SCSIIO.RequestFlags =
2175991554f2SKenneth D. Merry 		    MPI2_REQ_DESCRIPT_FLAGS_SCSI_IO;
217667feec50SStephen McConnell 		if (!sc->atomic_desc_capable)
2177991554f2SKenneth D. Merry 			cm->cm_desc.SCSIIO.DevHandle = htole16(targ->handle);
2178991554f2SKenneth D. Merry 	}
2179991554f2SKenneth D. Merry 
21806eea4f46SScott Long 	csio->ccb_h.qos.sim_data = sbinuptime();
2181407073a0SStephen McConnell #if __FreeBSD_version >= 1000029
218285c9dd9dSSteven Hartland 	callout_reset_sbt(&cm->cm_callout, SBT_1MS * ccb->ccb_h.timeout, 0,
218385c9dd9dSSteven Hartland 	    mprsas_scsiio_timeout, cm, 0);
2184407073a0SStephen McConnell #else //__FreeBSD_version < 1000029
2185407073a0SStephen McConnell 	callout_reset(&cm->cm_callout, (ccb->ccb_h.timeout * hz) / 1000,
2186407073a0SStephen McConnell 	    mprsas_scsiio_timeout, cm);
2187407073a0SStephen McConnell #endif //__FreeBSD_version >= 1000029
2188991554f2SKenneth D. Merry 
2189991554f2SKenneth D. Merry 	targ->issued++;
2190991554f2SKenneth D. Merry 	targ->outstanding++;
2191991554f2SKenneth D. Merry 	TAILQ_INSERT_TAIL(&targ->commands, cm, cm_link);
2192991554f2SKenneth D. Merry 	ccb->ccb_h.status |= CAM_SIM_QUEUED;
2193991554f2SKenneth D. Merry 
2194991554f2SKenneth D. Merry 	mprsas_log_command(cm, MPR_XINFO, "%s cm %p ccb %p outstanding %u\n",
2195991554f2SKenneth D. Merry 	    __func__, cm, ccb, targ->outstanding);
2196991554f2SKenneth D. Merry 
2197991554f2SKenneth D. Merry 	mpr_map_command(sc, cm);
2198991554f2SKenneth D. Merry 	return;
2199991554f2SKenneth D. Merry }
2200991554f2SKenneth D. Merry 
2201991554f2SKenneth D. Merry /**
2202991554f2SKenneth D. Merry  * mpr_sc_failed_io_info - translated non-succesfull SCSI_IO request
2203991554f2SKenneth D. Merry  */
2204991554f2SKenneth D. Merry static void
2205991554f2SKenneth D. Merry mpr_sc_failed_io_info(struct mpr_softc *sc, struct ccb_scsiio *csio,
2206991554f2SKenneth D. Merry     Mpi2SCSIIOReply_t *mpi_reply, struct mprsas_target *targ)
2207991554f2SKenneth D. Merry {
2208991554f2SKenneth D. Merry 	u32 response_info;
2209991554f2SKenneth D. Merry 	u8 *response_bytes;
2210991554f2SKenneth D. Merry 	u16 ioc_status = le16toh(mpi_reply->IOCStatus) &
2211991554f2SKenneth D. Merry 	    MPI2_IOCSTATUS_MASK;
2212991554f2SKenneth D. Merry 	u8 scsi_state = mpi_reply->SCSIState;
2213991554f2SKenneth D. Merry 	u8 scsi_status = mpi_reply->SCSIStatus;
2214991554f2SKenneth D. Merry 	char *desc_ioc_state = NULL;
2215991554f2SKenneth D. Merry 	char *desc_scsi_status = NULL;
2216991554f2SKenneth D. Merry 	u32 log_info = le32toh(mpi_reply->IOCLogInfo);
2217991554f2SKenneth D. Merry 
2218991554f2SKenneth D. Merry 	if (log_info == 0x31170000)
2219991554f2SKenneth D. Merry 		return;
2220991554f2SKenneth D. Merry 
22212bf620cbSScott Long 	desc_ioc_state = mpr_describe_table(mpr_iocstatus_string,
22222bf620cbSScott Long 	     ioc_status);
22232bf620cbSScott Long 	desc_scsi_status = mpr_describe_table(mpr_scsi_status_string,
22242bf620cbSScott Long 	    scsi_status);
2225991554f2SKenneth D. Merry 
2226991554f2SKenneth D. Merry 	mpr_dprint(sc, MPR_XINFO, "\thandle(0x%04x), ioc_status(%s)(0x%04x)\n",
2227991554f2SKenneth D. Merry 	    le16toh(mpi_reply->DevHandle), desc_ioc_state, ioc_status);
2228991554f2SKenneth D. Merry 	if (targ->encl_level_valid) {
2229991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_XINFO, "At enclosure level %d, slot %d, "
2230991554f2SKenneth D. Merry 		    "connector name (%4s)\n", targ->encl_level, targ->encl_slot,
2231991554f2SKenneth D. Merry 		    targ->connector_name);
2232991554f2SKenneth D. Merry 	}
22332bf620cbSScott Long 
22342bf620cbSScott Long 	/*
22352bf620cbSScott Long 	 * We can add more detail about underflow data here
2236991554f2SKenneth D. Merry 	 * TO-DO
22372bf620cbSScott Long 	 */
2238991554f2SKenneth D. Merry 	mpr_dprint(sc, MPR_XINFO, "\tscsi_status(%s)(0x%02x), "
22392bf620cbSScott Long 	    "scsi_state %b\n", desc_scsi_status, scsi_status,
22402bf620cbSScott Long 	    scsi_state, "\20" "\1AutosenseValid" "\2AutosenseFailed"
22412bf620cbSScott Long 	    "\3NoScsiStatus" "\4Terminated" "\5Response InfoValid");
2242991554f2SKenneth D. Merry 
2243991554f2SKenneth D. Merry 	if (sc->mpr_debug & MPR_XINFO &&
2244991554f2SKenneth D. Merry 	    scsi_state & MPI2_SCSI_STATE_AUTOSENSE_VALID) {
2245991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_XINFO, "-> Sense Buffer Data : Start :\n");
2246991554f2SKenneth D. Merry 		scsi_sense_print(csio);
2247991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_XINFO, "-> Sense Buffer Data : End :\n");
2248991554f2SKenneth D. Merry 	}
2249991554f2SKenneth D. Merry 
2250991554f2SKenneth D. Merry 	if (scsi_state & MPI2_SCSI_STATE_RESPONSE_INFO_VALID) {
2251991554f2SKenneth D. Merry 		response_info = le32toh(mpi_reply->ResponseInfo);
2252991554f2SKenneth D. Merry 		response_bytes = (u8 *)&response_info;
22532bf620cbSScott Long 		mpr_dprint(sc, MPR_XINFO, "response code(0x%01x): %s\n",
22542bf620cbSScott Long 		    response_bytes[0],
22552bf620cbSScott Long 		    mpr_describe_table(mpr_scsi_taskmgmt_string,
22562bf620cbSScott Long 		    response_bytes[0]));
2257991554f2SKenneth D. Merry 	}
2258991554f2SKenneth D. Merry }
2259991554f2SKenneth D. Merry 
226067feec50SStephen McConnell /** mprsas_nvme_trans_status_code
226167feec50SStephen McConnell  *
226267feec50SStephen McConnell  * Convert Native NVMe command error status to
226367feec50SStephen McConnell  * equivalent SCSI error status.
226467feec50SStephen McConnell  *
226567feec50SStephen McConnell  * Returns appropriate scsi_status
226667feec50SStephen McConnell  */
226767feec50SStephen McConnell static u8
22680d787e9bSWojciech Macek mprsas_nvme_trans_status_code(uint16_t nvme_status,
226967feec50SStephen McConnell     struct mpr_command *cm)
227067feec50SStephen McConnell {
227167feec50SStephen McConnell 	u8 status = MPI2_SCSI_STATUS_GOOD;
227267feec50SStephen McConnell 	int skey, asc, ascq;
227367feec50SStephen McConnell 	union ccb *ccb = cm->cm_complete_data;
227467feec50SStephen McConnell 	int returned_sense_len;
22750d787e9bSWojciech Macek 	uint8_t sct, sc;
22760d787e9bSWojciech Macek 
22770d787e9bSWojciech Macek 	sct = NVME_STATUS_GET_SCT(nvme_status);
22780d787e9bSWojciech Macek 	sc = NVME_STATUS_GET_SC(nvme_status);
227967feec50SStephen McConnell 
228067feec50SStephen McConnell 	status = MPI2_SCSI_STATUS_CHECK_CONDITION;
228167feec50SStephen McConnell 	skey = SSD_KEY_ILLEGAL_REQUEST;
228267feec50SStephen McConnell 	asc = SCSI_ASC_NO_SENSE;
228367feec50SStephen McConnell 	ascq = SCSI_ASCQ_CAUSE_NOT_REPORTABLE;
228467feec50SStephen McConnell 
22850d787e9bSWojciech Macek 	switch (sct) {
228667feec50SStephen McConnell 	case NVME_SCT_GENERIC:
22870d787e9bSWojciech Macek 		switch (sc) {
228867feec50SStephen McConnell 		case NVME_SC_SUCCESS:
228967feec50SStephen McConnell 			status = MPI2_SCSI_STATUS_GOOD;
229067feec50SStephen McConnell 			skey = SSD_KEY_NO_SENSE;
229167feec50SStephen McConnell 			asc = SCSI_ASC_NO_SENSE;
229267feec50SStephen McConnell 			ascq = SCSI_ASCQ_CAUSE_NOT_REPORTABLE;
229367feec50SStephen McConnell 			break;
229467feec50SStephen McConnell 		case NVME_SC_INVALID_OPCODE:
229567feec50SStephen McConnell 			status = MPI2_SCSI_STATUS_CHECK_CONDITION;
229667feec50SStephen McConnell 			skey = SSD_KEY_ILLEGAL_REQUEST;
229767feec50SStephen McConnell 			asc = SCSI_ASC_ILLEGAL_COMMAND;
229867feec50SStephen McConnell 			ascq = SCSI_ASCQ_CAUSE_NOT_REPORTABLE;
229967feec50SStephen McConnell 			break;
230067feec50SStephen McConnell 		case NVME_SC_INVALID_FIELD:
230167feec50SStephen McConnell 			status = MPI2_SCSI_STATUS_CHECK_CONDITION;
230267feec50SStephen McConnell 			skey = SSD_KEY_ILLEGAL_REQUEST;
230367feec50SStephen McConnell 			asc = SCSI_ASC_INVALID_CDB;
230467feec50SStephen McConnell 			ascq = SCSI_ASCQ_CAUSE_NOT_REPORTABLE;
230567feec50SStephen McConnell 			break;
230667feec50SStephen McConnell 		case NVME_SC_DATA_TRANSFER_ERROR:
230767feec50SStephen McConnell 			status = MPI2_SCSI_STATUS_CHECK_CONDITION;
230867feec50SStephen McConnell 			skey = SSD_KEY_MEDIUM_ERROR;
230967feec50SStephen McConnell 			asc = SCSI_ASC_NO_SENSE;
231067feec50SStephen McConnell 			ascq = SCSI_ASCQ_CAUSE_NOT_REPORTABLE;
231167feec50SStephen McConnell 			break;
231267feec50SStephen McConnell 		case NVME_SC_ABORTED_POWER_LOSS:
231367feec50SStephen McConnell 			status = MPI2_SCSI_STATUS_TASK_ABORTED;
231467feec50SStephen McConnell 			skey = SSD_KEY_ABORTED_COMMAND;
231567feec50SStephen McConnell 			asc = SCSI_ASC_WARNING;
231667feec50SStephen McConnell 			ascq = SCSI_ASCQ_POWER_LOSS_EXPECTED;
231767feec50SStephen McConnell 			break;
231867feec50SStephen McConnell 		case NVME_SC_INTERNAL_DEVICE_ERROR:
231967feec50SStephen McConnell 			status = MPI2_SCSI_STATUS_CHECK_CONDITION;
232067feec50SStephen McConnell 			skey = SSD_KEY_HARDWARE_ERROR;
232167feec50SStephen McConnell 			asc = SCSI_ASC_INTERNAL_TARGET_FAILURE;
232267feec50SStephen McConnell 			ascq = SCSI_ASCQ_CAUSE_NOT_REPORTABLE;
232367feec50SStephen McConnell 			break;
232467feec50SStephen McConnell 		case NVME_SC_ABORTED_BY_REQUEST:
232567feec50SStephen McConnell 		case NVME_SC_ABORTED_SQ_DELETION:
232667feec50SStephen McConnell 		case NVME_SC_ABORTED_FAILED_FUSED:
232767feec50SStephen McConnell 		case NVME_SC_ABORTED_MISSING_FUSED:
232867feec50SStephen McConnell 			status = MPI2_SCSI_STATUS_TASK_ABORTED;
232967feec50SStephen McConnell 			skey = SSD_KEY_ABORTED_COMMAND;
233067feec50SStephen McConnell 			asc = SCSI_ASC_NO_SENSE;
233167feec50SStephen McConnell 			ascq = SCSI_ASCQ_CAUSE_NOT_REPORTABLE;
233267feec50SStephen McConnell 			break;
233367feec50SStephen McConnell 		case NVME_SC_INVALID_NAMESPACE_OR_FORMAT:
233467feec50SStephen McConnell 			status = MPI2_SCSI_STATUS_CHECK_CONDITION;
233567feec50SStephen McConnell 			skey = SSD_KEY_ILLEGAL_REQUEST;
233667feec50SStephen McConnell 			asc = SCSI_ASC_ACCESS_DENIED_INVALID_LUN_ID;
233767feec50SStephen McConnell 			ascq = SCSI_ASCQ_INVALID_LUN_ID;
233867feec50SStephen McConnell 			break;
233967feec50SStephen McConnell 		case NVME_SC_LBA_OUT_OF_RANGE:
234067feec50SStephen McConnell 			status = MPI2_SCSI_STATUS_CHECK_CONDITION;
234167feec50SStephen McConnell 			skey = SSD_KEY_ILLEGAL_REQUEST;
234267feec50SStephen McConnell 			asc = SCSI_ASC_ILLEGAL_BLOCK;
234367feec50SStephen McConnell 			ascq = SCSI_ASCQ_CAUSE_NOT_REPORTABLE;
234467feec50SStephen McConnell 			break;
234567feec50SStephen McConnell 		case NVME_SC_CAPACITY_EXCEEDED:
234667feec50SStephen McConnell 			status = MPI2_SCSI_STATUS_CHECK_CONDITION;
234767feec50SStephen McConnell 			skey = SSD_KEY_MEDIUM_ERROR;
234867feec50SStephen McConnell 			asc = SCSI_ASC_NO_SENSE;
234967feec50SStephen McConnell 			ascq = SCSI_ASCQ_CAUSE_NOT_REPORTABLE;
235067feec50SStephen McConnell 			break;
235167feec50SStephen McConnell 		case NVME_SC_NAMESPACE_NOT_READY:
235267feec50SStephen McConnell 			status = MPI2_SCSI_STATUS_CHECK_CONDITION;
235367feec50SStephen McConnell 			skey = SSD_KEY_NOT_READY;
235467feec50SStephen McConnell 			asc = SCSI_ASC_LUN_NOT_READY;
235567feec50SStephen McConnell 			ascq = SCSI_ASCQ_CAUSE_NOT_REPORTABLE;
235667feec50SStephen McConnell 			break;
235767feec50SStephen McConnell 		}
235867feec50SStephen McConnell 		break;
235967feec50SStephen McConnell 	case NVME_SCT_COMMAND_SPECIFIC:
23600d787e9bSWojciech Macek 		switch (sc) {
236167feec50SStephen McConnell 		case NVME_SC_INVALID_FORMAT:
236267feec50SStephen McConnell 			status = MPI2_SCSI_STATUS_CHECK_CONDITION;
236367feec50SStephen McConnell 			skey = SSD_KEY_ILLEGAL_REQUEST;
236467feec50SStephen McConnell 			asc = SCSI_ASC_FORMAT_COMMAND_FAILED;
236567feec50SStephen McConnell 			ascq = SCSI_ASCQ_FORMAT_COMMAND_FAILED;
236667feec50SStephen McConnell 			break;
236767feec50SStephen McConnell 		case NVME_SC_CONFLICTING_ATTRIBUTES:
236867feec50SStephen McConnell 			status = MPI2_SCSI_STATUS_CHECK_CONDITION;
236967feec50SStephen McConnell 			skey = SSD_KEY_ILLEGAL_REQUEST;
237067feec50SStephen McConnell 			asc = SCSI_ASC_INVALID_CDB;
237167feec50SStephen McConnell 			ascq = SCSI_ASCQ_CAUSE_NOT_REPORTABLE;
237267feec50SStephen McConnell 			break;
237367feec50SStephen McConnell 		}
237467feec50SStephen McConnell 		break;
237567feec50SStephen McConnell 	case NVME_SCT_MEDIA_ERROR:
23760d787e9bSWojciech Macek 		switch (sc) {
237767feec50SStephen McConnell 		case NVME_SC_WRITE_FAULTS:
237867feec50SStephen McConnell 			status = MPI2_SCSI_STATUS_CHECK_CONDITION;
237967feec50SStephen McConnell 			skey = SSD_KEY_MEDIUM_ERROR;
238067feec50SStephen McConnell 			asc = SCSI_ASC_PERIPHERAL_DEV_WRITE_FAULT;
238167feec50SStephen McConnell 			ascq = SCSI_ASCQ_CAUSE_NOT_REPORTABLE;
238267feec50SStephen McConnell 			break;
238367feec50SStephen McConnell 		case NVME_SC_UNRECOVERED_READ_ERROR:
238467feec50SStephen McConnell 			status = MPI2_SCSI_STATUS_CHECK_CONDITION;
238567feec50SStephen McConnell 			skey = SSD_KEY_MEDIUM_ERROR;
238667feec50SStephen McConnell 			asc = SCSI_ASC_UNRECOVERED_READ_ERROR;
238767feec50SStephen McConnell 			ascq = SCSI_ASCQ_CAUSE_NOT_REPORTABLE;
238867feec50SStephen McConnell 			break;
238967feec50SStephen McConnell 		case NVME_SC_GUARD_CHECK_ERROR:
239067feec50SStephen McConnell 			status = MPI2_SCSI_STATUS_CHECK_CONDITION;
239167feec50SStephen McConnell 			skey = SSD_KEY_MEDIUM_ERROR;
239267feec50SStephen McConnell 			asc = SCSI_ASC_LOG_BLOCK_GUARD_CHECK_FAILED;
239367feec50SStephen McConnell 			ascq = SCSI_ASCQ_LOG_BLOCK_GUARD_CHECK_FAILED;
239467feec50SStephen McConnell 			break;
239567feec50SStephen McConnell 		case NVME_SC_APPLICATION_TAG_CHECK_ERROR:
239667feec50SStephen McConnell 			status = MPI2_SCSI_STATUS_CHECK_CONDITION;
239767feec50SStephen McConnell 			skey = SSD_KEY_MEDIUM_ERROR;
239867feec50SStephen McConnell 			asc = SCSI_ASC_LOG_BLOCK_APPTAG_CHECK_FAILED;
239967feec50SStephen McConnell 			ascq = SCSI_ASCQ_LOG_BLOCK_APPTAG_CHECK_FAILED;
240067feec50SStephen McConnell 			break;
240167feec50SStephen McConnell 		case NVME_SC_REFERENCE_TAG_CHECK_ERROR:
240267feec50SStephen McConnell 			status = MPI2_SCSI_STATUS_CHECK_CONDITION;
240367feec50SStephen McConnell 			skey = SSD_KEY_MEDIUM_ERROR;
240467feec50SStephen McConnell 			asc = SCSI_ASC_LOG_BLOCK_REFTAG_CHECK_FAILED;
240567feec50SStephen McConnell 			ascq = SCSI_ASCQ_LOG_BLOCK_REFTAG_CHECK_FAILED;
240667feec50SStephen McConnell 			break;
240767feec50SStephen McConnell 		case NVME_SC_COMPARE_FAILURE:
240867feec50SStephen McConnell 			status = MPI2_SCSI_STATUS_CHECK_CONDITION;
240967feec50SStephen McConnell 			skey = SSD_KEY_MISCOMPARE;
241067feec50SStephen McConnell 			asc = SCSI_ASC_MISCOMPARE_DURING_VERIFY;
241167feec50SStephen McConnell 			ascq = SCSI_ASCQ_CAUSE_NOT_REPORTABLE;
241267feec50SStephen McConnell 			break;
241367feec50SStephen McConnell 		case NVME_SC_ACCESS_DENIED:
241467feec50SStephen McConnell 			status = MPI2_SCSI_STATUS_CHECK_CONDITION;
241567feec50SStephen McConnell 			skey = SSD_KEY_ILLEGAL_REQUEST;
241667feec50SStephen McConnell 			asc = SCSI_ASC_ACCESS_DENIED_INVALID_LUN_ID;
241767feec50SStephen McConnell 			ascq = SCSI_ASCQ_INVALID_LUN_ID;
241867feec50SStephen McConnell 			break;
241967feec50SStephen McConnell 		}
242067feec50SStephen McConnell 		break;
242167feec50SStephen McConnell 	}
242267feec50SStephen McConnell 
242367feec50SStephen McConnell 	returned_sense_len = sizeof(struct scsi_sense_data);
242467feec50SStephen McConnell 	if (returned_sense_len < ccb->csio.sense_len)
242567feec50SStephen McConnell 		ccb->csio.sense_resid = ccb->csio.sense_len -
242667feec50SStephen McConnell 		    returned_sense_len;
242767feec50SStephen McConnell 	else
242867feec50SStephen McConnell 		ccb->csio.sense_resid = 0;
242967feec50SStephen McConnell 
243067feec50SStephen McConnell 	scsi_set_sense_data(&ccb->csio.sense_data, SSD_TYPE_FIXED,
243167feec50SStephen McConnell 	    1, skey, asc, ascq, SSD_ELEM_NONE);
243267feec50SStephen McConnell 	ccb->ccb_h.status |= CAM_AUTOSNS_VALID;
243367feec50SStephen McConnell 
243467feec50SStephen McConnell 	return status;
243567feec50SStephen McConnell }
243667feec50SStephen McConnell 
243767feec50SStephen McConnell /** mprsas_complete_nvme_unmap
243867feec50SStephen McConnell  *
243967feec50SStephen McConnell  * Complete native NVMe command issued using NVMe Encapsulated
244067feec50SStephen McConnell  * Request Message.
244167feec50SStephen McConnell  */
244267feec50SStephen McConnell static u8
244367feec50SStephen McConnell mprsas_complete_nvme_unmap(struct mpr_softc *sc, struct mpr_command *cm)
244467feec50SStephen McConnell {
244567feec50SStephen McConnell 	Mpi26NVMeEncapsulatedErrorReply_t *mpi_reply;
244667feec50SStephen McConnell 	struct nvme_completion *nvme_completion = NULL;
244767feec50SStephen McConnell 	u8 scsi_status = MPI2_SCSI_STATUS_GOOD;
244867feec50SStephen McConnell 
244967feec50SStephen McConnell 	mpi_reply =(Mpi26NVMeEncapsulatedErrorReply_t *)cm->cm_reply;
245067feec50SStephen McConnell 	if (le16toh(mpi_reply->ErrorResponseCount)){
245167feec50SStephen McConnell 		nvme_completion = (struct nvme_completion *)cm->cm_sense;
245267feec50SStephen McConnell 		scsi_status = mprsas_nvme_trans_status_code(
245367feec50SStephen McConnell 		    nvme_completion->status, cm);
245467feec50SStephen McConnell 	}
245567feec50SStephen McConnell 	return scsi_status;
245667feec50SStephen McConnell }
245767feec50SStephen McConnell 
2458991554f2SKenneth D. Merry static void
2459991554f2SKenneth D. Merry mprsas_scsiio_complete(struct mpr_softc *sc, struct mpr_command *cm)
2460991554f2SKenneth D. Merry {
2461991554f2SKenneth D. Merry 	MPI2_SCSI_IO_REPLY *rep;
2462991554f2SKenneth D. Merry 	union ccb *ccb;
2463991554f2SKenneth D. Merry 	struct ccb_scsiio *csio;
2464991554f2SKenneth D. Merry 	struct mprsas_softc *sassc;
2465991554f2SKenneth D. Merry 	struct scsi_vpd_supported_page_list *vpd_list = NULL;
246667feec50SStephen McConnell 	u8 *TLR_bits, TLR_on, *scsi_cdb;
2467991554f2SKenneth D. Merry 	int dir = 0, i;
2468991554f2SKenneth D. Merry 	u16 alloc_len;
2469a2c14879SStephen McConnell 	struct mprsas_target *target;
2470a2c14879SStephen McConnell 	target_id_t target_id;
2471991554f2SKenneth D. Merry 
2472991554f2SKenneth D. Merry 	MPR_FUNCTRACE(sc);
2473991554f2SKenneth D. Merry 	mpr_dprint(sc, MPR_TRACE,
2474991554f2SKenneth D. Merry 	    "cm %p SMID %u ccb %p reply %p outstanding %u\n", cm,
2475991554f2SKenneth D. Merry 	    cm->cm_desc.Default.SMID, cm->cm_ccb, cm->cm_reply,
2476991554f2SKenneth D. Merry 	    cm->cm_targ->outstanding);
2477991554f2SKenneth D. Merry 
2478991554f2SKenneth D. Merry 	callout_stop(&cm->cm_callout);
2479991554f2SKenneth D. Merry 	mtx_assert(&sc->mpr_mtx, MA_OWNED);
2480991554f2SKenneth D. Merry 
2481991554f2SKenneth D. Merry 	sassc = sc->sassc;
2482991554f2SKenneth D. Merry 	ccb = cm->cm_complete_data;
2483991554f2SKenneth D. Merry 	csio = &ccb->csio;
2484a2c14879SStephen McConnell 	target_id = csio->ccb_h.target_id;
2485991554f2SKenneth D. Merry 	rep = (MPI2_SCSI_IO_REPLY *)cm->cm_reply;
2486991554f2SKenneth D. Merry 	/*
2487991554f2SKenneth D. Merry 	 * XXX KDM if the chain allocation fails, does it matter if we do
2488991554f2SKenneth D. Merry 	 * the sync and unload here?  It is simpler to do it in every case,
2489991554f2SKenneth D. Merry 	 * assuming it doesn't cause problems.
2490991554f2SKenneth D. Merry 	 */
2491991554f2SKenneth D. Merry 	if (cm->cm_data != NULL) {
2492991554f2SKenneth D. Merry 		if (cm->cm_flags & MPR_CM_FLAGS_DATAIN)
2493991554f2SKenneth D. Merry 			dir = BUS_DMASYNC_POSTREAD;
2494991554f2SKenneth D. Merry 		else if (cm->cm_flags & MPR_CM_FLAGS_DATAOUT)
2495991554f2SKenneth D. Merry 			dir = BUS_DMASYNC_POSTWRITE;
2496991554f2SKenneth D. Merry 		bus_dmamap_sync(sc->buffer_dmat, cm->cm_dmamap, dir);
2497991554f2SKenneth D. Merry 		bus_dmamap_unload(sc->buffer_dmat, cm->cm_dmamap);
2498991554f2SKenneth D. Merry 	}
2499991554f2SKenneth D. Merry 
2500991554f2SKenneth D. Merry 	cm->cm_targ->completed++;
2501991554f2SKenneth D. Merry 	cm->cm_targ->outstanding--;
2502991554f2SKenneth D. Merry 	TAILQ_REMOVE(&cm->cm_targ->commands, cm, cm_link);
2503991554f2SKenneth D. Merry 	ccb->ccb_h.status &= ~(CAM_STATUS_MASK | CAM_SIM_QUEUED);
2504991554f2SKenneth D. Merry 
2505991554f2SKenneth D. Merry 	if (cm->cm_state == MPR_CM_STATE_TIMEDOUT) {
2506991554f2SKenneth D. Merry 		TAILQ_REMOVE(&cm->cm_targ->timedout_commands, cm, cm_recovery);
2507f0779b04SScott Long 		cm->cm_state = MPR_CM_STATE_BUSY;
2508991554f2SKenneth D. Merry 		if (cm->cm_reply != NULL)
2509991554f2SKenneth D. Merry 			mprsas_log_command(cm, MPR_RECOVERY,
2510991554f2SKenneth D. Merry 			    "completed timedout cm %p ccb %p during recovery "
2511991554f2SKenneth D. Merry 			    "ioc %x scsi %x state %x xfer %u\n", cm, cm->cm_ccb,
2512991554f2SKenneth D. Merry 			    le16toh(rep->IOCStatus), rep->SCSIStatus,
2513991554f2SKenneth D. Merry 			    rep->SCSIState, le32toh(rep->TransferCount));
2514991554f2SKenneth D. Merry 		else
2515991554f2SKenneth D. Merry 			mprsas_log_command(cm, MPR_RECOVERY,
2516991554f2SKenneth D. Merry 			    "completed timedout cm %p ccb %p during recovery\n",
2517991554f2SKenneth D. Merry 			    cm, cm->cm_ccb);
2518991554f2SKenneth D. Merry 	} else if (cm->cm_targ->tm != NULL) {
2519991554f2SKenneth D. Merry 		if (cm->cm_reply != NULL)
2520991554f2SKenneth D. Merry 			mprsas_log_command(cm, MPR_RECOVERY,
2521991554f2SKenneth D. Merry 			    "completed cm %p ccb %p during recovery "
2522991554f2SKenneth D. Merry 			    "ioc %x scsi %x state %x xfer %u\n",
2523991554f2SKenneth D. Merry 			    cm, cm->cm_ccb, le16toh(rep->IOCStatus),
2524991554f2SKenneth D. Merry 			    rep->SCSIStatus, rep->SCSIState,
2525991554f2SKenneth D. Merry 			    le32toh(rep->TransferCount));
2526991554f2SKenneth D. Merry 		else
2527991554f2SKenneth D. Merry 			mprsas_log_command(cm, MPR_RECOVERY,
2528991554f2SKenneth D. Merry 			    "completed cm %p ccb %p during recovery\n",
2529991554f2SKenneth D. Merry 			    cm, cm->cm_ccb);
2530991554f2SKenneth D. Merry 	} else if ((sc->mpr_flags & MPR_FLAGS_DIAGRESET) != 0) {
2531991554f2SKenneth D. Merry 		mprsas_log_command(cm, MPR_RECOVERY,
2532991554f2SKenneth D. Merry 		    "reset completed cm %p ccb %p\n", cm, cm->cm_ccb);
2533991554f2SKenneth D. Merry 	}
2534991554f2SKenneth D. Merry 
2535991554f2SKenneth D. Merry 	if ((cm->cm_flags & MPR_CM_FLAGS_ERROR_MASK) != 0) {
2536991554f2SKenneth D. Merry 		/*
2537991554f2SKenneth D. Merry 		 * We ran into an error after we tried to map the command,
2538991554f2SKenneth D. Merry 		 * so we're getting a callback without queueing the command
2539991554f2SKenneth D. Merry 		 * to the hardware.  So we set the status here, and it will
2540991554f2SKenneth D. Merry 		 * be retained below.  We'll go through the "fast path",
2541991554f2SKenneth D. Merry 		 * because there can be no reply when we haven't actually
2542991554f2SKenneth D. Merry 		 * gone out to the hardware.
2543991554f2SKenneth D. Merry 		 */
2544a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_REQUEUE_REQ);
2545991554f2SKenneth D. Merry 
2546991554f2SKenneth D. Merry 		/*
2547991554f2SKenneth D. Merry 		 * Currently the only error included in the mask is
2548991554f2SKenneth D. Merry 		 * MPR_CM_FLAGS_CHAIN_FAILED, which means we're out of
2549991554f2SKenneth D. Merry 		 * chain frames.  We need to freeze the queue until we get
2550991554f2SKenneth D. Merry 		 * a command that completed without this error, which will
2551991554f2SKenneth D. Merry 		 * hopefully have some chain frames attached that we can
2552991554f2SKenneth D. Merry 		 * use.  If we wanted to get smarter about it, we would
2553991554f2SKenneth D. Merry 		 * only unfreeze the queue in this condition when we're
2554991554f2SKenneth D. Merry 		 * sure that we're getting some chain frames back.  That's
2555991554f2SKenneth D. Merry 		 * probably unnecessary.
2556991554f2SKenneth D. Merry 		 */
2557991554f2SKenneth D. Merry 		if ((sassc->flags & MPRSAS_QUEUE_FROZEN) == 0) {
2558991554f2SKenneth D. Merry 			xpt_freeze_simq(sassc->sim, 1);
2559991554f2SKenneth D. Merry 			sassc->flags |= MPRSAS_QUEUE_FROZEN;
25606c85e33eSScott Long 			mpr_dprint(sc, MPR_XINFO, "Error sending command, "
2561991554f2SKenneth D. Merry 			    "freezing SIM queue\n");
2562991554f2SKenneth D. Merry 		}
2563991554f2SKenneth D. Merry 	}
2564991554f2SKenneth D. Merry 
2565991554f2SKenneth D. Merry 	/*
256667feec50SStephen McConnell 	 * Point to the SCSI CDB, which is dependent on the CAM_CDB_POINTER
256767feec50SStephen McConnell 	 * flag, and use it in a few places in the rest of this function for
256867feec50SStephen McConnell 	 * convenience. Use the macro if available.
256967feec50SStephen McConnell 	 */
257067feec50SStephen McConnell #if __FreeBSD_version >= 1100103
257167feec50SStephen McConnell 	scsi_cdb = scsiio_cdb_ptr(csio);
257267feec50SStephen McConnell #else
257367feec50SStephen McConnell 	if (csio->ccb_h.flags & CAM_CDB_POINTER)
257467feec50SStephen McConnell 		scsi_cdb = csio->cdb_io.cdb_ptr;
257567feec50SStephen McConnell 	else
257667feec50SStephen McConnell 		scsi_cdb = csio->cdb_io.cdb_bytes;
257767feec50SStephen McConnell #endif
257867feec50SStephen McConnell 
257967feec50SStephen McConnell 	/*
2580991554f2SKenneth D. Merry 	 * If this is a Start Stop Unit command and it was issued by the driver
2581991554f2SKenneth D. Merry 	 * during shutdown, decrement the refcount to account for all of the
2582991554f2SKenneth D. Merry 	 * commands that were sent.  All SSU commands should be completed before
2583991554f2SKenneth D. Merry 	 * shutdown completes, meaning SSU_refcount will be 0 after SSU_started
2584991554f2SKenneth D. Merry 	 * is TRUE.
2585991554f2SKenneth D. Merry 	 */
258667feec50SStephen McConnell 	if (sc->SSU_started && (scsi_cdb[0] == START_STOP_UNIT)) {
2587991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_INFO, "Decrementing SSU count.\n");
2588991554f2SKenneth D. Merry 		sc->SSU_refcount--;
2589991554f2SKenneth D. Merry 	}
2590991554f2SKenneth D. Merry 
2591991554f2SKenneth D. Merry 	/* Take the fast path to completion */
2592991554f2SKenneth D. Merry 	if (cm->cm_reply == NULL) {
2593a2c14879SStephen McConnell 		if (mprsas_get_ccbstatus(ccb) == CAM_REQ_INPROG) {
2594991554f2SKenneth D. Merry 			if ((sc->mpr_flags & MPR_FLAGS_DIAGRESET) != 0)
2595a2c14879SStephen McConnell 				mprsas_set_ccbstatus(ccb, CAM_SCSI_BUS_RESET);
2596991554f2SKenneth D. Merry 			else {
2597a2c14879SStephen McConnell 				mprsas_set_ccbstatus(ccb, CAM_REQ_CMP);
2598a2c14879SStephen McConnell 				csio->scsi_status = SCSI_STATUS_OK;
2599991554f2SKenneth D. Merry 			}
2600991554f2SKenneth D. Merry 			if (sassc->flags & MPRSAS_QUEUE_FROZEN) {
2601991554f2SKenneth D. Merry 				ccb->ccb_h.status |= CAM_RELEASE_SIMQ;
2602991554f2SKenneth D. Merry 				sassc->flags &= ~MPRSAS_QUEUE_FROZEN;
2603991554f2SKenneth D. Merry 				mpr_dprint(sc, MPR_XINFO,
2604991554f2SKenneth D. Merry 				    "Unfreezing SIM queue\n");
2605991554f2SKenneth D. Merry 			}
2606991554f2SKenneth D. Merry 		}
2607991554f2SKenneth D. Merry 
2608991554f2SKenneth D. Merry 		/*
2609991554f2SKenneth D. Merry 		 * There are two scenarios where the status won't be
2610991554f2SKenneth D. Merry 		 * CAM_REQ_CMP.  The first is if MPR_CM_FLAGS_ERROR_MASK is
2611991554f2SKenneth D. Merry 		 * set, the second is in the MPR_FLAGS_DIAGRESET above.
2612991554f2SKenneth D. Merry 		 */
2613a2c14879SStephen McConnell 		if (mprsas_get_ccbstatus(ccb) != CAM_REQ_CMP) {
2614991554f2SKenneth D. Merry 			/*
2615991554f2SKenneth D. Merry 			 * Freeze the dev queue so that commands are
2616a2c14879SStephen McConnell 			 * executed in the correct order after error
2617991554f2SKenneth D. Merry 			 * recovery.
2618991554f2SKenneth D. Merry 			 */
2619991554f2SKenneth D. Merry 			ccb->ccb_h.status |= CAM_DEV_QFRZN;
2620991554f2SKenneth D. Merry 			xpt_freeze_devq(ccb->ccb_h.path, /*count*/ 1);
2621991554f2SKenneth D. Merry 		}
2622991554f2SKenneth D. Merry 		mpr_free_command(sc, cm);
2623991554f2SKenneth D. Merry 		xpt_done(ccb);
2624991554f2SKenneth D. Merry 		return;
2625991554f2SKenneth D. Merry 	}
2626991554f2SKenneth D. Merry 
262767feec50SStephen McConnell 	target = &sassc->targets[target_id];
262867feec50SStephen McConnell 	if (scsi_cdb[0] == UNMAP &&
262967feec50SStephen McConnell 	    target->is_nvme &&
263067feec50SStephen McConnell 	    (csio->ccb_h.flags & CAM_DATA_MASK) == CAM_DATA_VADDR) {
263167feec50SStephen McConnell 		rep->SCSIStatus = mprsas_complete_nvme_unmap(sc, cm);
263267feec50SStephen McConnell 		csio->scsi_status = rep->SCSIStatus;
263367feec50SStephen McConnell 	}
263467feec50SStephen McConnell 
2635991554f2SKenneth D. Merry 	mprsas_log_command(cm, MPR_XINFO,
2636991554f2SKenneth D. Merry 	    "ioc %x scsi %x state %x xfer %u\n",
2637991554f2SKenneth D. Merry 	    le16toh(rep->IOCStatus), rep->SCSIStatus, rep->SCSIState,
2638991554f2SKenneth D. Merry 	    le32toh(rep->TransferCount));
2639991554f2SKenneth D. Merry 
2640991554f2SKenneth D. Merry 	switch (le16toh(rep->IOCStatus) & MPI2_IOCSTATUS_MASK) {
2641991554f2SKenneth D. Merry 	case MPI2_IOCSTATUS_SCSI_DATA_UNDERRUN:
2642991554f2SKenneth D. Merry 		csio->resid = cm->cm_length - le32toh(rep->TransferCount);
2643991554f2SKenneth D. Merry 		/* FALLTHROUGH */
2644991554f2SKenneth D. Merry 	case MPI2_IOCSTATUS_SUCCESS:
2645991554f2SKenneth D. Merry 	case MPI2_IOCSTATUS_SCSI_RECOVERED_ERROR:
2646991554f2SKenneth D. Merry 		if ((le16toh(rep->IOCStatus) & MPI2_IOCSTATUS_MASK) ==
2647991554f2SKenneth D. Merry 		    MPI2_IOCSTATUS_SCSI_RECOVERED_ERROR)
2648991554f2SKenneth D. Merry 			mprsas_log_command(cm, MPR_XINFO, "recovered error\n");
2649991554f2SKenneth D. Merry 
2650991554f2SKenneth D. Merry 		/* Completion failed at the transport level. */
2651991554f2SKenneth D. Merry 		if (rep->SCSIState & (MPI2_SCSI_STATE_NO_SCSI_STATUS |
2652991554f2SKenneth D. Merry 		    MPI2_SCSI_STATE_TERMINATED)) {
2653a2c14879SStephen McConnell 			mprsas_set_ccbstatus(ccb, CAM_REQ_CMP_ERR);
2654991554f2SKenneth D. Merry 			break;
2655991554f2SKenneth D. Merry 		}
2656991554f2SKenneth D. Merry 
2657991554f2SKenneth D. Merry 		/* In a modern packetized environment, an autosense failure
2658991554f2SKenneth D. Merry 		 * implies that there's not much else that can be done to
2659991554f2SKenneth D. Merry 		 * recover the command.
2660991554f2SKenneth D. Merry 		 */
2661991554f2SKenneth D. Merry 		if (rep->SCSIState & MPI2_SCSI_STATE_AUTOSENSE_FAILED) {
2662a2c14879SStephen McConnell 			mprsas_set_ccbstatus(ccb, CAM_AUTOSENSE_FAIL);
2663991554f2SKenneth D. Merry 			break;
2664991554f2SKenneth D. Merry 		}
2665991554f2SKenneth D. Merry 
2666991554f2SKenneth D. Merry 		/*
2667991554f2SKenneth D. Merry 		 * CAM doesn't care about SAS Response Info data, but if this is
2668991554f2SKenneth D. Merry 		 * the state check if TLR should be done.  If not, clear the
2669991554f2SKenneth D. Merry 		 * TLR_bits for the target.
2670991554f2SKenneth D. Merry 		 */
2671991554f2SKenneth D. Merry 		if ((rep->SCSIState & MPI2_SCSI_STATE_RESPONSE_INFO_VALID) &&
2672991554f2SKenneth D. Merry 		    ((le32toh(rep->ResponseInfo) & MPI2_SCSI_RI_MASK_REASONCODE)
2673991554f2SKenneth D. Merry 		    == MPR_SCSI_RI_INVALID_FRAME)) {
2674a2c14879SStephen McConnell 			sc->mapping_table[target_id].TLR_bits =
2675991554f2SKenneth D. Merry 			    (u8)MPI2_SCSIIO_CONTROL_NO_TLR;
2676991554f2SKenneth D. Merry 		}
2677991554f2SKenneth D. Merry 
2678991554f2SKenneth D. Merry 		/*
2679991554f2SKenneth D. Merry 		 * Intentionally override the normal SCSI status reporting
2680991554f2SKenneth D. Merry 		 * for these two cases.  These are likely to happen in a
2681991554f2SKenneth D. Merry 		 * multi-initiator environment, and we want to make sure that
2682991554f2SKenneth D. Merry 		 * CAM retries these commands rather than fail them.
2683991554f2SKenneth D. Merry 		 */
2684991554f2SKenneth D. Merry 		if ((rep->SCSIStatus == MPI2_SCSI_STATUS_COMMAND_TERMINATED) ||
2685991554f2SKenneth D. Merry 		    (rep->SCSIStatus == MPI2_SCSI_STATUS_TASK_ABORTED)) {
2686a2c14879SStephen McConnell 			mprsas_set_ccbstatus(ccb, CAM_REQ_ABORTED);
2687991554f2SKenneth D. Merry 			break;
2688991554f2SKenneth D. Merry 		}
2689991554f2SKenneth D. Merry 
2690991554f2SKenneth D. Merry 		/* Handle normal status and sense */
2691991554f2SKenneth D. Merry 		csio->scsi_status = rep->SCSIStatus;
2692991554f2SKenneth D. Merry 		if (rep->SCSIStatus == MPI2_SCSI_STATUS_GOOD)
2693a2c14879SStephen McConnell 			mprsas_set_ccbstatus(ccb, CAM_REQ_CMP);
2694991554f2SKenneth D. Merry 		else
2695a2c14879SStephen McConnell 			mprsas_set_ccbstatus(ccb, CAM_SCSI_STATUS_ERROR);
2696991554f2SKenneth D. Merry 
2697991554f2SKenneth D. Merry 		if (rep->SCSIState & MPI2_SCSI_STATE_AUTOSENSE_VALID) {
2698991554f2SKenneth D. Merry 			int sense_len, returned_sense_len;
2699991554f2SKenneth D. Merry 
2700991554f2SKenneth D. Merry 			returned_sense_len = min(le32toh(rep->SenseCount),
2701991554f2SKenneth D. Merry 			    sizeof(struct scsi_sense_data));
2702991554f2SKenneth D. Merry 			if (returned_sense_len < csio->sense_len)
2703991554f2SKenneth D. Merry 				csio->sense_resid = csio->sense_len -
2704991554f2SKenneth D. Merry 				    returned_sense_len;
2705991554f2SKenneth D. Merry 			else
2706991554f2SKenneth D. Merry 				csio->sense_resid = 0;
2707991554f2SKenneth D. Merry 
2708991554f2SKenneth D. Merry 			sense_len = min(returned_sense_len,
2709991554f2SKenneth D. Merry 			    csio->sense_len - csio->sense_resid);
2710991554f2SKenneth D. Merry 			bzero(&csio->sense_data, sizeof(csio->sense_data));
2711991554f2SKenneth D. Merry 			bcopy(cm->cm_sense, &csio->sense_data, sense_len);
2712991554f2SKenneth D. Merry 			ccb->ccb_h.status |= CAM_AUTOSNS_VALID;
2713991554f2SKenneth D. Merry 		}
2714991554f2SKenneth D. Merry 
2715991554f2SKenneth D. Merry 		/*
2716991554f2SKenneth D. Merry 		 * Check if this is an INQUIRY command.  If it's a VPD inquiry,
2717991554f2SKenneth D. Merry 		 * and it's page code 0 (Supported Page List), and there is
2718991554f2SKenneth D. Merry 		 * inquiry data, and this is for a sequential access device, and
2719991554f2SKenneth D. Merry 		 * the device is an SSP target, and TLR is supported by the
2720991554f2SKenneth D. Merry 		 * controller, turn the TLR_bits value ON if page 0x90 is
2721991554f2SKenneth D. Merry 		 * supported.
2722991554f2SKenneth D. Merry 		 */
272367feec50SStephen McConnell 		if ((scsi_cdb[0] == INQUIRY) &&
272467feec50SStephen McConnell 		    (scsi_cdb[1] & SI_EVPD) &&
272567feec50SStephen McConnell 		    (scsi_cdb[2] == SVPD_SUPPORTED_PAGE_LIST) &&
2726991554f2SKenneth D. Merry 		    ((csio->ccb_h.flags & CAM_DATA_MASK) == CAM_DATA_VADDR) &&
2727d2b4e18bSKenneth D. Merry 		    (csio->data_ptr != NULL) &&
2728d2b4e18bSKenneth D. Merry 		    ((csio->data_ptr[0] & 0x1f) == T_SEQUENTIAL) &&
2729d2b4e18bSKenneth D. Merry 		    (sc->control_TLR) &&
2730a2c14879SStephen McConnell 		    (sc->mapping_table[target_id].device_info &
2731991554f2SKenneth D. Merry 		    MPI2_SAS_DEVICE_INFO_SSP_TARGET)) {
2732991554f2SKenneth D. Merry 			vpd_list = (struct scsi_vpd_supported_page_list *)
2733991554f2SKenneth D. Merry 			    csio->data_ptr;
2734a2c14879SStephen McConnell 			TLR_bits = &sc->mapping_table[target_id].TLR_bits;
2735991554f2SKenneth D. Merry 			*TLR_bits = (u8)MPI2_SCSIIO_CONTROL_NO_TLR;
2736991554f2SKenneth D. Merry 			TLR_on = (u8)MPI2_SCSIIO_CONTROL_TLR_ON;
273767feec50SStephen McConnell 			alloc_len = ((u16)scsi_cdb[3] << 8) + scsi_cdb[4];
2738d2b4e18bSKenneth D. Merry 			alloc_len -= csio->resid;
2739991554f2SKenneth D. Merry 			for (i = 0; i < MIN(vpd_list->length, alloc_len); i++) {
2740991554f2SKenneth D. Merry 				if (vpd_list->list[i] == 0x90) {
2741991554f2SKenneth D. Merry 					*TLR_bits = TLR_on;
2742991554f2SKenneth D. Merry 					break;
2743991554f2SKenneth D. Merry 				}
2744991554f2SKenneth D. Merry 			}
2745991554f2SKenneth D. Merry 		}
2746a2c14879SStephen McConnell 
2747a2c14879SStephen McConnell 		/*
2748a2c14879SStephen McConnell 		 * If this is a SATA direct-access end device, mark it so that
2749a2c14879SStephen McConnell 		 * a SCSI StartStopUnit command will be sent to it when the
2750a2c14879SStephen McConnell 		 * driver is being shutdown.
2751a2c14879SStephen McConnell 		 */
275267feec50SStephen McConnell 		if ((scsi_cdb[0] == INQUIRY) &&
2753fa699bb2SAlan Somers 		    (csio->data_ptr != NULL) &&
2754a2c14879SStephen McConnell 		    ((csio->data_ptr[0] & 0x1f) == T_DIRECT) &&
2755a2c14879SStephen McConnell 		    (sc->mapping_table[target_id].device_info &
2756a2c14879SStephen McConnell 		    MPI2_SAS_DEVICE_INFO_SATA_DEVICE) &&
2757a2c14879SStephen McConnell 		    ((sc->mapping_table[target_id].device_info &
2758a2c14879SStephen McConnell 		    MPI2_SAS_DEVICE_INFO_MASK_DEVICE_TYPE) ==
2759a2c14879SStephen McConnell 		    MPI2_SAS_DEVICE_INFO_END_DEVICE)) {
2760a2c14879SStephen McConnell 			target = &sassc->targets[target_id];
2761a2c14879SStephen McConnell 			target->supports_SSU = TRUE;
2762a2c14879SStephen McConnell 			mpr_dprint(sc, MPR_XINFO, "Target %d supports SSU\n",
2763a2c14879SStephen McConnell 			    target_id);
2764a2c14879SStephen McConnell 		}
2765991554f2SKenneth D. Merry 		break;
2766991554f2SKenneth D. Merry 	case MPI2_IOCSTATUS_SCSI_INVALID_DEVHANDLE:
2767991554f2SKenneth D. Merry 	case MPI2_IOCSTATUS_SCSI_DEVICE_NOT_THERE:
2768991554f2SKenneth D. Merry 		/*
2769991554f2SKenneth D. Merry 		 * If devinfo is 0 this will be a volume.  In that case don't
2770991554f2SKenneth D. Merry 		 * tell CAM that the volume is not there.  We want volumes to
2771991554f2SKenneth D. Merry 		 * be enumerated until they are deleted/removed, not just
2772991554f2SKenneth D. Merry 		 * failed.
2773991554f2SKenneth D. Merry 		 */
2774991554f2SKenneth D. Merry 		if (cm->cm_targ->devinfo == 0)
2775a2c14879SStephen McConnell 			mprsas_set_ccbstatus(ccb, CAM_REQ_CMP);
2776991554f2SKenneth D. Merry 		else
2777a2c14879SStephen McConnell 			mprsas_set_ccbstatus(ccb, CAM_DEV_NOT_THERE);
2778991554f2SKenneth D. Merry 		break;
2779991554f2SKenneth D. Merry 	case MPI2_IOCSTATUS_INVALID_SGL:
2780991554f2SKenneth D. Merry 		mpr_print_scsiio_cmd(sc, cm);
2781a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_UNREC_HBA_ERROR);
2782991554f2SKenneth D. Merry 		break;
2783991554f2SKenneth D. Merry 	case MPI2_IOCSTATUS_SCSI_TASK_TERMINATED:
2784991554f2SKenneth D. Merry 		/*
2785991554f2SKenneth D. Merry 		 * This is one of the responses that comes back when an I/O
2786991554f2SKenneth D. Merry 		 * has been aborted.  If it is because of a timeout that we
2787991554f2SKenneth D. Merry 		 * initiated, just set the status to CAM_CMD_TIMEOUT.
2788991554f2SKenneth D. Merry 		 * Otherwise set it to CAM_REQ_ABORTED.  The effect on the
2789991554f2SKenneth D. Merry 		 * command is the same (it gets retried, subject to the
2790991554f2SKenneth D. Merry 		 * retry counter), the only difference is what gets printed
2791991554f2SKenneth D. Merry 		 * on the console.
2792991554f2SKenneth D. Merry 		 */
2793991554f2SKenneth D. Merry 		if (cm->cm_state == MPR_CM_STATE_TIMEDOUT)
2794a2c14879SStephen McConnell 			mprsas_set_ccbstatus(ccb, CAM_CMD_TIMEOUT);
2795991554f2SKenneth D. Merry 		else
2796a2c14879SStephen McConnell 			mprsas_set_ccbstatus(ccb, CAM_REQ_ABORTED);
2797991554f2SKenneth D. Merry 		break;
2798991554f2SKenneth D. Merry 	case MPI2_IOCSTATUS_SCSI_DATA_OVERRUN:
2799991554f2SKenneth D. Merry 		/* resid is ignored for this condition */
2800991554f2SKenneth D. Merry 		csio->resid = 0;
2801a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_DATA_RUN_ERR);
2802991554f2SKenneth D. Merry 		break;
2803991554f2SKenneth D. Merry 	case MPI2_IOCSTATUS_SCSI_IOC_TERMINATED:
2804991554f2SKenneth D. Merry 	case MPI2_IOCSTATUS_SCSI_EXT_TERMINATED:
2805991554f2SKenneth D. Merry 		/*
28066adfa7edSAlan Somers 		 * These can sometimes be transient transport-related
28076adfa7edSAlan Somers 		 * errors, and sometimes persistent drive-related errors.
28086adfa7edSAlan Somers 		 * We used to retry these without decrementing the retry
28096adfa7edSAlan Somers 		 * count by returning CAM_REQUEUE_REQ.  Unfortunately, if
28106adfa7edSAlan Somers 		 * we hit a persistent drive problem that returns one of
28116adfa7edSAlan Somers 		 * these error codes, we would retry indefinitely.  So,
28126adfa7edSAlan Somers 		 * return CAM_REQ_CMP_ERROR so that we decrement the retry
28136adfa7edSAlan Somers 		 * count and avoid infinite retries.  We're taking the
28146adfa7edSAlan Somers 		 * potential risk of flagging false failures in the event
28156adfa7edSAlan Somers 		 * of a topology-related error (e.g. a SAS expander problem
28166adfa7edSAlan Somers 		 * causes a command addressed to a drive to fail), but
28176adfa7edSAlan Somers 		 * avoiding getting into an infinite retry loop.
2818991554f2SKenneth D. Merry 		 */
28196adfa7edSAlan Somers 		mprsas_set_ccbstatus(ccb, CAM_REQ_CMP_ERR);
28206eea4f46SScott Long 		mpr_dprint(sc, MPR_INFO,
28212bf620cbSScott Long 		    "Controller reported %s tgt %u SMID %u loginfo %x\n",
28222bf620cbSScott Long 		    mpr_describe_table(mpr_iocstatus_string,
28232bf620cbSScott Long 		    le16toh(rep->IOCStatus) & MPI2_IOCSTATUS_MASK),
28242bf620cbSScott Long 		    target_id, cm->cm_desc.Default.SMID,
28256eea4f46SScott Long 		    le32toh(rep->IOCLogInfo));
28266eea4f46SScott Long 		mpr_dprint(sc, MPR_XINFO,
28276eea4f46SScott Long 		    "SCSIStatus %x SCSIState %x xfercount %u\n",
2828694cb8b8SScott Long 		    rep->SCSIStatus, rep->SCSIState,
2829991554f2SKenneth D. Merry 		    le32toh(rep->TransferCount));
2830991554f2SKenneth D. Merry 		break;
2831991554f2SKenneth D. Merry 	case MPI2_IOCSTATUS_INVALID_FUNCTION:
2832991554f2SKenneth D. Merry 	case MPI2_IOCSTATUS_INTERNAL_ERROR:
2833991554f2SKenneth D. Merry 	case MPI2_IOCSTATUS_INVALID_VPID:
2834991554f2SKenneth D. Merry 	case MPI2_IOCSTATUS_INVALID_FIELD:
2835991554f2SKenneth D. Merry 	case MPI2_IOCSTATUS_INVALID_STATE:
2836991554f2SKenneth D. Merry 	case MPI2_IOCSTATUS_OP_STATE_NOT_SUPPORTED:
2837991554f2SKenneth D. Merry 	case MPI2_IOCSTATUS_SCSI_IO_DATA_ERROR:
2838991554f2SKenneth D. Merry 	case MPI2_IOCSTATUS_SCSI_PROTOCOL_ERROR:
2839991554f2SKenneth D. Merry 	case MPI2_IOCSTATUS_SCSI_RESIDUAL_MISMATCH:
2840991554f2SKenneth D. Merry 	case MPI2_IOCSTATUS_SCSI_TASK_MGMT_FAILED:
2841991554f2SKenneth D. Merry 	default:
2842991554f2SKenneth D. Merry 		mprsas_log_command(cm, MPR_XINFO,
2843694cb8b8SScott Long 		    "completed ioc %x loginfo %x scsi %x state %x xfer %u\n",
2844694cb8b8SScott Long 		    le16toh(rep->IOCStatus), le32toh(rep->IOCLogInfo),
2845694cb8b8SScott Long 		    rep->SCSIStatus, rep->SCSIState,
2846991554f2SKenneth D. Merry 		    le32toh(rep->TransferCount));
2847991554f2SKenneth D. Merry 		csio->resid = cm->cm_length;
284867feec50SStephen McConnell 
284967feec50SStephen McConnell 		if (scsi_cdb[0] == UNMAP &&
285067feec50SStephen McConnell 		    target->is_nvme &&
285167feec50SStephen McConnell 		    (csio->ccb_h.flags & CAM_DATA_MASK) == CAM_DATA_VADDR)
285267feec50SStephen McConnell 			mprsas_set_ccbstatus(ccb, CAM_REQ_CMP);
285367feec50SStephen McConnell 		else
2854a2c14879SStephen McConnell 			mprsas_set_ccbstatus(ccb, CAM_REQ_CMP_ERR);
285567feec50SStephen McConnell 
2856991554f2SKenneth D. Merry 		break;
2857991554f2SKenneth D. Merry 	}
2858991554f2SKenneth D. Merry 
2859991554f2SKenneth D. Merry 	mpr_sc_failed_io_info(sc, csio, rep, cm->cm_targ);
2860991554f2SKenneth D. Merry 
2861991554f2SKenneth D. Merry 	if (sassc->flags & MPRSAS_QUEUE_FROZEN) {
2862991554f2SKenneth D. Merry 		ccb->ccb_h.status |= CAM_RELEASE_SIMQ;
2863991554f2SKenneth D. Merry 		sassc->flags &= ~MPRSAS_QUEUE_FROZEN;
2864991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_XINFO, "Command completed, unfreezing SIM "
2865991554f2SKenneth D. Merry 		    "queue\n");
2866991554f2SKenneth D. Merry 	}
2867991554f2SKenneth D. Merry 
2868a2c14879SStephen McConnell 	if (mprsas_get_ccbstatus(ccb) != CAM_REQ_CMP) {
2869991554f2SKenneth D. Merry 		ccb->ccb_h.status |= CAM_DEV_QFRZN;
2870991554f2SKenneth D. Merry 		xpt_freeze_devq(ccb->ccb_h.path, /*count*/ 1);
2871991554f2SKenneth D. Merry 	}
2872991554f2SKenneth D. Merry 
2873991554f2SKenneth D. Merry 	mpr_free_command(sc, cm);
2874991554f2SKenneth D. Merry 	xpt_done(ccb);
2875991554f2SKenneth D. Merry }
2876991554f2SKenneth D. Merry 
2877991554f2SKenneth D. Merry #if __FreeBSD_version >= 900026
2878991554f2SKenneth D. Merry static void
2879991554f2SKenneth D. Merry mprsas_smpio_complete(struct mpr_softc *sc, struct mpr_command *cm)
2880991554f2SKenneth D. Merry {
2881991554f2SKenneth D. Merry 	MPI2_SMP_PASSTHROUGH_REPLY *rpl;
2882991554f2SKenneth D. Merry 	MPI2_SMP_PASSTHROUGH_REQUEST *req;
2883991554f2SKenneth D. Merry 	uint64_t sasaddr;
2884991554f2SKenneth D. Merry 	union ccb *ccb;
2885991554f2SKenneth D. Merry 
2886991554f2SKenneth D. Merry 	ccb = cm->cm_complete_data;
2887991554f2SKenneth D. Merry 
2888991554f2SKenneth D. Merry 	/*
2889991554f2SKenneth D. Merry 	 * Currently there should be no way we can hit this case.  It only
2890991554f2SKenneth D. Merry 	 * happens when we have a failure to allocate chain frames, and SMP
2891991554f2SKenneth D. Merry 	 * commands require two S/G elements only.  That should be handled
2892991554f2SKenneth D. Merry 	 * in the standard request size.
2893991554f2SKenneth D. Merry 	 */
2894991554f2SKenneth D. Merry 	if ((cm->cm_flags & MPR_CM_FLAGS_ERROR_MASK) != 0) {
2895a2c14879SStephen McConnell 		mpr_dprint(sc, MPR_ERROR, "%s: cm_flags = %#x on SMP "
2896a2c14879SStephen McConnell 		    "request!\n", __func__, cm->cm_flags);
2897a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_REQ_CMP_ERR);
2898991554f2SKenneth D. Merry 		goto bailout;
2899991554f2SKenneth D. Merry         }
2900991554f2SKenneth D. Merry 
2901991554f2SKenneth D. Merry 	rpl = (MPI2_SMP_PASSTHROUGH_REPLY *)cm->cm_reply;
2902991554f2SKenneth D. Merry 	if (rpl == NULL) {
2903991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_ERROR, "%s: NULL cm_reply!\n", __func__);
2904a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_REQ_CMP_ERR);
2905991554f2SKenneth D. Merry 		goto bailout;
2906991554f2SKenneth D. Merry 	}
2907991554f2SKenneth D. Merry 
2908991554f2SKenneth D. Merry 	req = (MPI2_SMP_PASSTHROUGH_REQUEST *)cm->cm_req;
2909991554f2SKenneth D. Merry 	sasaddr = le32toh(req->SASAddress.Low);
2910991554f2SKenneth D. Merry 	sasaddr |= ((uint64_t)(le32toh(req->SASAddress.High))) << 32;
2911991554f2SKenneth D. Merry 
2912991554f2SKenneth D. Merry 	if ((le16toh(rpl->IOCStatus) & MPI2_IOCSTATUS_MASK) !=
2913991554f2SKenneth D. Merry 	    MPI2_IOCSTATUS_SUCCESS ||
2914991554f2SKenneth D. Merry 	    rpl->SASStatus != MPI2_SASSTATUS_SUCCESS) {
2915991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_XINFO, "%s: IOCStatus %04x SASStatus %02x\n",
2916991554f2SKenneth D. Merry 		    __func__, le16toh(rpl->IOCStatus), rpl->SASStatus);
2917a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_REQ_CMP_ERR);
2918991554f2SKenneth D. Merry 		goto bailout;
2919991554f2SKenneth D. Merry 	}
2920991554f2SKenneth D. Merry 
2921a2c14879SStephen McConnell 	mpr_dprint(sc, MPR_XINFO, "%s: SMP request to SAS address %#jx "
2922a2c14879SStephen McConnell 	    "completed successfully\n", __func__, (uintmax_t)sasaddr);
2923991554f2SKenneth D. Merry 
2924991554f2SKenneth D. Merry 	if (ccb->smpio.smp_response[2] == SMP_FR_ACCEPTED)
2925a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_REQ_CMP);
2926991554f2SKenneth D. Merry 	else
2927a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_SMP_STATUS_ERROR);
2928991554f2SKenneth D. Merry 
2929991554f2SKenneth D. Merry bailout:
2930991554f2SKenneth D. Merry 	/*
2931991554f2SKenneth D. Merry 	 * We sync in both directions because we had DMAs in the S/G list
2932991554f2SKenneth D. Merry 	 * in both directions.
2933991554f2SKenneth D. Merry 	 */
2934991554f2SKenneth D. Merry 	bus_dmamap_sync(sc->buffer_dmat, cm->cm_dmamap,
2935991554f2SKenneth D. Merry 			BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE);
2936991554f2SKenneth D. Merry 	bus_dmamap_unload(sc->buffer_dmat, cm->cm_dmamap);
2937991554f2SKenneth D. Merry 	mpr_free_command(sc, cm);
2938991554f2SKenneth D. Merry 	xpt_done(ccb);
2939991554f2SKenneth D. Merry }
2940991554f2SKenneth D. Merry 
2941991554f2SKenneth D. Merry static void
29427a2a6a1aSStephen McConnell mprsas_send_smpcmd(struct mprsas_softc *sassc, union ccb *ccb, uint64_t sasaddr)
2943991554f2SKenneth D. Merry {
2944991554f2SKenneth D. Merry 	struct mpr_command *cm;
2945991554f2SKenneth D. Merry 	uint8_t *request, *response;
2946991554f2SKenneth D. Merry 	MPI2_SMP_PASSTHROUGH_REQUEST *req;
2947991554f2SKenneth D. Merry 	struct mpr_softc *sc;
2948991554f2SKenneth D. Merry 	struct sglist *sg;
2949991554f2SKenneth D. Merry 	int error;
2950991554f2SKenneth D. Merry 
2951991554f2SKenneth D. Merry 	sc = sassc->sc;
2952991554f2SKenneth D. Merry 	sg = NULL;
2953991554f2SKenneth D. Merry 	error = 0;
2954991554f2SKenneth D. Merry 
2955c503306dSKenneth D. Merry #if (__FreeBSD_version >= 1000028) || \
2956c503306dSKenneth D. Merry     ((__FreeBSD_version >= 902001) && (__FreeBSD_version < 1000000))
2957991554f2SKenneth D. Merry 	switch (ccb->ccb_h.flags & CAM_DATA_MASK) {
2958991554f2SKenneth D. Merry 	case CAM_DATA_PADDR:
2959991554f2SKenneth D. Merry 	case CAM_DATA_SG_PADDR:
2960991554f2SKenneth D. Merry 		/*
2961991554f2SKenneth D. Merry 		 * XXX We don't yet support physical addresses here.
2962991554f2SKenneth D. Merry 		 */
2963991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_ERROR, "%s: physical addresses not "
2964991554f2SKenneth D. Merry 		    "supported\n", __func__);
2965a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_REQ_INVALID);
2966991554f2SKenneth D. Merry 		xpt_done(ccb);
2967991554f2SKenneth D. Merry 		return;
2968991554f2SKenneth D. Merry 	case CAM_DATA_SG:
2969991554f2SKenneth D. Merry 		/*
2970991554f2SKenneth D. Merry 		 * The chip does not support more than one buffer for the
2971991554f2SKenneth D. Merry 		 * request or response.
2972991554f2SKenneth D. Merry 		 */
2973991554f2SKenneth D. Merry 		if ((ccb->smpio.smp_request_sglist_cnt > 1)
2974991554f2SKenneth D. Merry 		    || (ccb->smpio.smp_response_sglist_cnt > 1)) {
29757a2a6a1aSStephen McConnell 			mpr_dprint(sc, MPR_ERROR, "%s: multiple request or "
29767a2a6a1aSStephen McConnell 			    "response buffer segments not supported for SMP\n",
29777a2a6a1aSStephen McConnell 			    __func__);
2978a2c14879SStephen McConnell 			mprsas_set_ccbstatus(ccb, CAM_REQ_INVALID);
2979991554f2SKenneth D. Merry 			xpt_done(ccb);
2980991554f2SKenneth D. Merry 			return;
2981991554f2SKenneth D. Merry 		}
2982991554f2SKenneth D. Merry 
2983991554f2SKenneth D. Merry 		/*
2984991554f2SKenneth D. Merry 		 * The CAM_SCATTER_VALID flag was originally implemented
2985991554f2SKenneth D. Merry 		 * for the XPT_SCSI_IO CCB, which only has one data pointer.
2986991554f2SKenneth D. Merry 		 * We have two.  So, just take that flag to mean that we
2987991554f2SKenneth D. Merry 		 * might have S/G lists, and look at the S/G segment count
2988991554f2SKenneth D. Merry 		 * to figure out whether that is the case for each individual
2989991554f2SKenneth D. Merry 		 * buffer.
2990991554f2SKenneth D. Merry 		 */
2991991554f2SKenneth D. Merry 		if (ccb->smpio.smp_request_sglist_cnt != 0) {
2992991554f2SKenneth D. Merry 			bus_dma_segment_t *req_sg;
2993991554f2SKenneth D. Merry 
2994991554f2SKenneth D. Merry 			req_sg = (bus_dma_segment_t *)ccb->smpio.smp_request;
2995991554f2SKenneth D. Merry 			request = (uint8_t *)(uintptr_t)req_sg[0].ds_addr;
2996991554f2SKenneth D. Merry 		} else
2997991554f2SKenneth D. Merry 			request = ccb->smpio.smp_request;
2998991554f2SKenneth D. Merry 
2999991554f2SKenneth D. Merry 		if (ccb->smpio.smp_response_sglist_cnt != 0) {
3000991554f2SKenneth D. Merry 			bus_dma_segment_t *rsp_sg;
3001991554f2SKenneth D. Merry 
3002991554f2SKenneth D. Merry 			rsp_sg = (bus_dma_segment_t *)ccb->smpio.smp_response;
3003991554f2SKenneth D. Merry 			response = (uint8_t *)(uintptr_t)rsp_sg[0].ds_addr;
3004991554f2SKenneth D. Merry 		} else
3005991554f2SKenneth D. Merry 			response = ccb->smpio.smp_response;
3006991554f2SKenneth D. Merry 		break;
3007991554f2SKenneth D. Merry 	case CAM_DATA_VADDR:
3008991554f2SKenneth D. Merry 		request = ccb->smpio.smp_request;
3009991554f2SKenneth D. Merry 		response = ccb->smpio.smp_response;
3010991554f2SKenneth D. Merry 		break;
3011991554f2SKenneth D. Merry 	default:
3012a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_REQ_INVALID);
3013991554f2SKenneth D. Merry 		xpt_done(ccb);
3014991554f2SKenneth D. Merry 		return;
3015991554f2SKenneth D. Merry 	}
3016c503306dSKenneth D. Merry #else /* __FreeBSD_version < 1000028 */
3017991554f2SKenneth D. Merry 	/*
3018991554f2SKenneth D. Merry 	 * XXX We don't yet support physical addresses here.
3019991554f2SKenneth D. Merry 	 */
3020991554f2SKenneth D. Merry 	if (ccb->ccb_h.flags & (CAM_DATA_PHYS|CAM_SG_LIST_PHYS)) {
3021a2c14879SStephen McConnell 		mpr_dprint(sc, MPR_ERROR, "%s: physical addresses not "
3022a2c14879SStephen McConnell 		    "supported\n", __func__);
3023a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_REQ_INVALID);
3024991554f2SKenneth D. Merry 		xpt_done(ccb);
3025991554f2SKenneth D. Merry 		return;
3026991554f2SKenneth D. Merry 	}
3027991554f2SKenneth D. Merry 
3028991554f2SKenneth D. Merry 	/*
3029991554f2SKenneth D. Merry 	 * If the user wants to send an S/G list, check to make sure they
3030991554f2SKenneth D. Merry 	 * have single buffers.
3031991554f2SKenneth D. Merry 	 */
3032991554f2SKenneth D. Merry 	if (ccb->ccb_h.flags & CAM_SCATTER_VALID) {
3033991554f2SKenneth D. Merry 		/*
3034991554f2SKenneth D. Merry 		 * The chip does not support more than one buffer for the
3035991554f2SKenneth D. Merry 		 * request or response.
3036991554f2SKenneth D. Merry 		 */
3037991554f2SKenneth D. Merry 	 	if ((ccb->smpio.smp_request_sglist_cnt > 1)
3038991554f2SKenneth D. Merry 		  || (ccb->smpio.smp_response_sglist_cnt > 1)) {
3039991554f2SKenneth D. Merry 			mpr_dprint(sc, MPR_ERROR, "%s: multiple request or "
3040991554f2SKenneth D. Merry 			    "response buffer segments not supported for SMP\n",
3041991554f2SKenneth D. Merry 			    __func__);
3042a2c14879SStephen McConnell 			mprsas_set_ccbstatus(ccb, CAM_REQ_INVALID);
3043991554f2SKenneth D. Merry 			xpt_done(ccb);
3044991554f2SKenneth D. Merry 			return;
3045991554f2SKenneth D. Merry 		}
3046991554f2SKenneth D. Merry 
3047991554f2SKenneth D. Merry 		/*
3048991554f2SKenneth D. Merry 		 * The CAM_SCATTER_VALID flag was originally implemented
3049991554f2SKenneth D. Merry 		 * for the XPT_SCSI_IO CCB, which only has one data pointer.
3050991554f2SKenneth D. Merry 		 * We have two.  So, just take that flag to mean that we
3051991554f2SKenneth D. Merry 		 * might have S/G lists, and look at the S/G segment count
3052991554f2SKenneth D. Merry 		 * to figure out whether that is the case for each individual
3053991554f2SKenneth D. Merry 		 * buffer.
3054991554f2SKenneth D. Merry 		 */
3055991554f2SKenneth D. Merry 		if (ccb->smpio.smp_request_sglist_cnt != 0) {
3056991554f2SKenneth D. Merry 			bus_dma_segment_t *req_sg;
3057991554f2SKenneth D. Merry 
3058991554f2SKenneth D. Merry 			req_sg = (bus_dma_segment_t *)ccb->smpio.smp_request;
3059c503306dSKenneth D. Merry 			request = (uint8_t *)(uintptr_t)req_sg[0].ds_addr;
3060991554f2SKenneth D. Merry 		} else
3061991554f2SKenneth D. Merry 			request = ccb->smpio.smp_request;
3062991554f2SKenneth D. Merry 
3063991554f2SKenneth D. Merry 		if (ccb->smpio.smp_response_sglist_cnt != 0) {
3064991554f2SKenneth D. Merry 			bus_dma_segment_t *rsp_sg;
3065991554f2SKenneth D. Merry 
3066991554f2SKenneth D. Merry 			rsp_sg = (bus_dma_segment_t *)ccb->smpio.smp_response;
3067c503306dSKenneth D. Merry 			response = (uint8_t *)(uintptr_t)rsp_sg[0].ds_addr;
3068991554f2SKenneth D. Merry 		} else
3069991554f2SKenneth D. Merry 			response = ccb->smpio.smp_response;
3070991554f2SKenneth D. Merry 	} else {
3071991554f2SKenneth D. Merry 		request = ccb->smpio.smp_request;
3072991554f2SKenneth D. Merry 		response = ccb->smpio.smp_response;
3073991554f2SKenneth D. Merry 	}
3074c503306dSKenneth D. Merry #endif /* __FreeBSD_version < 1000028 */
3075991554f2SKenneth D. Merry 
3076991554f2SKenneth D. Merry 	cm = mpr_alloc_command(sc);
3077991554f2SKenneth D. Merry 	if (cm == NULL) {
30787a2a6a1aSStephen McConnell 		mpr_dprint(sc, MPR_ERROR, "%s: cannot allocate command\n",
30797a2a6a1aSStephen McConnell 		    __func__);
3080a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_RESRC_UNAVAIL);
3081991554f2SKenneth D. Merry 		xpt_done(ccb);
3082991554f2SKenneth D. Merry 		return;
3083991554f2SKenneth D. Merry 	}
3084991554f2SKenneth D. Merry 
3085991554f2SKenneth D. Merry 	req = (MPI2_SMP_PASSTHROUGH_REQUEST *)cm->cm_req;
3086991554f2SKenneth D. Merry 	bzero(req, sizeof(*req));
3087991554f2SKenneth D. Merry 	req->Function = MPI2_FUNCTION_SMP_PASSTHROUGH;
3088991554f2SKenneth D. Merry 
3089991554f2SKenneth D. Merry 	/* Allow the chip to use any route to this SAS address. */
3090991554f2SKenneth D. Merry 	req->PhysicalPort = 0xff;
3091991554f2SKenneth D. Merry 
3092991554f2SKenneth D. Merry 	req->RequestDataLength = htole16(ccb->smpio.smp_request_len);
3093991554f2SKenneth D. Merry 	req->SGLFlags =
3094991554f2SKenneth D. Merry 	    MPI2_SGLFLAGS_SYSTEM_ADDRESS_SPACE | MPI2_SGLFLAGS_SGL_TYPE_MPI;
3095991554f2SKenneth D. Merry 
3096991554f2SKenneth D. Merry 	mpr_dprint(sc, MPR_XINFO, "%s: sending SMP request to SAS address "
3097991554f2SKenneth D. Merry 	    "%#jx\n", __func__, (uintmax_t)sasaddr);
3098991554f2SKenneth D. Merry 
3099991554f2SKenneth D. Merry 	mpr_init_sge(cm, req, &req->SGL);
3100991554f2SKenneth D. Merry 
3101991554f2SKenneth D. Merry 	/*
3102991554f2SKenneth D. Merry 	 * Set up a uio to pass into mpr_map_command().  This allows us to
3103991554f2SKenneth D. Merry 	 * do one map command, and one busdma call in there.
3104991554f2SKenneth D. Merry 	 */
3105991554f2SKenneth D. Merry 	cm->cm_uio.uio_iov = cm->cm_iovec;
3106991554f2SKenneth D. Merry 	cm->cm_uio.uio_iovcnt = 2;
3107991554f2SKenneth D. Merry 	cm->cm_uio.uio_segflg = UIO_SYSSPACE;
3108991554f2SKenneth D. Merry 
3109991554f2SKenneth D. Merry 	/*
3110991554f2SKenneth D. Merry 	 * The read/write flag isn't used by busdma, but set it just in
3111991554f2SKenneth D. Merry 	 * case.  This isn't exactly accurate, either, since we're going in
3112991554f2SKenneth D. Merry 	 * both directions.
3113991554f2SKenneth D. Merry 	 */
3114991554f2SKenneth D. Merry 	cm->cm_uio.uio_rw = UIO_WRITE;
3115991554f2SKenneth D. Merry 
3116991554f2SKenneth D. Merry 	cm->cm_iovec[0].iov_base = request;
3117991554f2SKenneth D. Merry 	cm->cm_iovec[0].iov_len = le16toh(req->RequestDataLength);
3118991554f2SKenneth D. Merry 	cm->cm_iovec[1].iov_base = response;
3119991554f2SKenneth D. Merry 	cm->cm_iovec[1].iov_len = ccb->smpio.smp_response_len;
3120991554f2SKenneth D. Merry 
3121991554f2SKenneth D. Merry 	cm->cm_uio.uio_resid = cm->cm_iovec[0].iov_len +
3122991554f2SKenneth D. Merry 			       cm->cm_iovec[1].iov_len;
3123991554f2SKenneth D. Merry 
3124991554f2SKenneth D. Merry 	/*
3125991554f2SKenneth D. Merry 	 * Trigger a warning message in mpr_data_cb() for the user if we
3126991554f2SKenneth D. Merry 	 * wind up exceeding two S/G segments.  The chip expects one
3127991554f2SKenneth D. Merry 	 * segment for the request and another for the response.
3128991554f2SKenneth D. Merry 	 */
3129991554f2SKenneth D. Merry 	cm->cm_max_segs = 2;
3130991554f2SKenneth D. Merry 
3131991554f2SKenneth D. Merry 	cm->cm_desc.Default.RequestFlags = MPI2_REQ_DESCRIPT_FLAGS_DEFAULT_TYPE;
3132991554f2SKenneth D. Merry 	cm->cm_complete = mprsas_smpio_complete;
3133991554f2SKenneth D. Merry 	cm->cm_complete_data = ccb;
3134991554f2SKenneth D. Merry 
3135991554f2SKenneth D. Merry 	/*
3136991554f2SKenneth D. Merry 	 * Tell the mapping code that we're using a uio, and that this is
3137991554f2SKenneth D. Merry 	 * an SMP passthrough request.  There is a little special-case
3138991554f2SKenneth D. Merry 	 * logic there (in mpr_data_cb()) to handle the bidirectional
3139991554f2SKenneth D. Merry 	 * transfer.
3140991554f2SKenneth D. Merry 	 */
3141991554f2SKenneth D. Merry 	cm->cm_flags |= MPR_CM_FLAGS_USE_UIO | MPR_CM_FLAGS_SMP_PASS |
3142991554f2SKenneth D. Merry 			MPR_CM_FLAGS_DATAIN | MPR_CM_FLAGS_DATAOUT;
3143991554f2SKenneth D. Merry 
3144991554f2SKenneth D. Merry 	/* The chip data format is little endian. */
3145991554f2SKenneth D. Merry 	req->SASAddress.High = htole32(sasaddr >> 32);
3146991554f2SKenneth D. Merry 	req->SASAddress.Low = htole32(sasaddr);
3147991554f2SKenneth D. Merry 
3148991554f2SKenneth D. Merry 	/*
3149991554f2SKenneth D. Merry 	 * XXX Note that we don't have a timeout/abort mechanism here.
3150991554f2SKenneth D. Merry 	 * From the manual, it looks like task management requests only
3151991554f2SKenneth D. Merry 	 * work for SCSI IO and SATA passthrough requests.  We may need to
3152991554f2SKenneth D. Merry 	 * have a mechanism to retry requests in the event of a chip reset
3153991554f2SKenneth D. Merry 	 * at least.  Hopefully the chip will insure that any errors short
3154991554f2SKenneth D. Merry 	 * of that are relayed back to the driver.
3155991554f2SKenneth D. Merry 	 */
3156991554f2SKenneth D. Merry 	error = mpr_map_command(sc, cm);
3157991554f2SKenneth D. Merry 	if ((error != 0) && (error != EINPROGRESS)) {
3158991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_ERROR, "%s: error %d returned from "
3159991554f2SKenneth D. Merry 		    "mpr_map_command()\n", __func__, error);
3160991554f2SKenneth D. Merry 		goto bailout_error;
3161991554f2SKenneth D. Merry 	}
3162991554f2SKenneth D. Merry 
3163991554f2SKenneth D. Merry 	return;
3164991554f2SKenneth D. Merry 
3165991554f2SKenneth D. Merry bailout_error:
3166991554f2SKenneth D. Merry 	mpr_free_command(sc, cm);
3167a2c14879SStephen McConnell 	mprsas_set_ccbstatus(ccb, CAM_RESRC_UNAVAIL);
3168991554f2SKenneth D. Merry 	xpt_done(ccb);
3169991554f2SKenneth D. Merry 	return;
3170991554f2SKenneth D. Merry }
3171991554f2SKenneth D. Merry 
3172991554f2SKenneth D. Merry static void
3173991554f2SKenneth D. Merry mprsas_action_smpio(struct mprsas_softc *sassc, union ccb *ccb)
3174991554f2SKenneth D. Merry {
3175991554f2SKenneth D. Merry 	struct mpr_softc *sc;
3176991554f2SKenneth D. Merry 	struct mprsas_target *targ;
3177991554f2SKenneth D. Merry 	uint64_t sasaddr = 0;
3178991554f2SKenneth D. Merry 
3179991554f2SKenneth D. Merry 	sc = sassc->sc;
3180991554f2SKenneth D. Merry 
3181991554f2SKenneth D. Merry 	/*
3182991554f2SKenneth D. Merry 	 * Make sure the target exists.
3183991554f2SKenneth D. Merry 	 */
3184991554f2SKenneth D. Merry 	KASSERT(ccb->ccb_h.target_id < sassc->maxtargets,
3185991554f2SKenneth D. Merry 	    ("Target %d out of bounds in XPT_SMP_IO\n", ccb->ccb_h.target_id));
3186991554f2SKenneth D. Merry 	targ = &sassc->targets[ccb->ccb_h.target_id];
3187991554f2SKenneth D. Merry 	if (targ->handle == 0x0) {
3188991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_ERROR, "%s: target %d does not exist!\n",
3189991554f2SKenneth D. Merry 		    __func__, ccb->ccb_h.target_id);
3190a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_SEL_TIMEOUT);
3191991554f2SKenneth D. Merry 		xpt_done(ccb);
3192991554f2SKenneth D. Merry 		return;
3193991554f2SKenneth D. Merry 	}
3194991554f2SKenneth D. Merry 
3195991554f2SKenneth D. Merry 	/*
3196991554f2SKenneth D. Merry 	 * If this device has an embedded SMP target, we'll talk to it
3197991554f2SKenneth D. Merry 	 * directly.
3198991554f2SKenneth D. Merry 	 * figure out what the expander's address is.
3199991554f2SKenneth D. Merry 	 */
3200991554f2SKenneth D. Merry 	if ((targ->devinfo & MPI2_SAS_DEVICE_INFO_SMP_TARGET) != 0)
3201991554f2SKenneth D. Merry 		sasaddr = targ->sasaddr;
3202991554f2SKenneth D. Merry 
3203991554f2SKenneth D. Merry 	/*
3204991554f2SKenneth D. Merry 	 * If we don't have a SAS address for the expander yet, try
3205991554f2SKenneth D. Merry 	 * grabbing it from the page 0x83 information cached in the
3206991554f2SKenneth D. Merry 	 * transport layer for this target.  LSI expanders report the
3207991554f2SKenneth D. Merry 	 * expander SAS address as the port-associated SAS address in
3208991554f2SKenneth D. Merry 	 * Inquiry VPD page 0x83.  Maxim expanders don't report it in page
3209991554f2SKenneth D. Merry 	 * 0x83.
3210991554f2SKenneth D. Merry 	 *
3211991554f2SKenneth D. Merry 	 * XXX KDM disable this for now, but leave it commented out so that
3212991554f2SKenneth D. Merry 	 * it is obvious that this is another possible way to get the SAS
3213991554f2SKenneth D. Merry 	 * address.
3214991554f2SKenneth D. Merry 	 *
3215991554f2SKenneth D. Merry 	 * The parent handle method below is a little more reliable, and
3216991554f2SKenneth D. Merry 	 * the other benefit is that it works for devices other than SES
3217991554f2SKenneth D. Merry 	 * devices.  So you can send a SMP request to a da(4) device and it
3218991554f2SKenneth D. Merry 	 * will get routed to the expander that device is attached to.
3219991554f2SKenneth D. Merry 	 * (Assuming the da(4) device doesn't contain an SMP target...)
3220991554f2SKenneth D. Merry 	 */
3221991554f2SKenneth D. Merry #if 0
3222991554f2SKenneth D. Merry 	if (sasaddr == 0)
3223991554f2SKenneth D. Merry 		sasaddr = xpt_path_sas_addr(ccb->ccb_h.path);
3224991554f2SKenneth D. Merry #endif
3225991554f2SKenneth D. Merry 
3226991554f2SKenneth D. Merry 	/*
3227991554f2SKenneth D. Merry 	 * If we still don't have a SAS address for the expander, look for
3228991554f2SKenneth D. Merry 	 * the parent device of this device, which is probably the expander.
3229991554f2SKenneth D. Merry 	 */
3230991554f2SKenneth D. Merry 	if (sasaddr == 0) {
3231991554f2SKenneth D. Merry #ifdef OLD_MPR_PROBE
3232991554f2SKenneth D. Merry 		struct mprsas_target *parent_target;
3233991554f2SKenneth D. Merry #endif
3234991554f2SKenneth D. Merry 
3235991554f2SKenneth D. Merry 		if (targ->parent_handle == 0x0) {
3236991554f2SKenneth D. Merry 			mpr_dprint(sc, MPR_ERROR, "%s: handle %d does not have "
3237991554f2SKenneth D. Merry 			    "a valid parent handle!\n", __func__, targ->handle);
3238a2c14879SStephen McConnell 			mprsas_set_ccbstatus(ccb, CAM_DEV_NOT_THERE);
3239991554f2SKenneth D. Merry 			goto bailout;
3240991554f2SKenneth D. Merry 		}
3241991554f2SKenneth D. Merry #ifdef OLD_MPR_PROBE
3242991554f2SKenneth D. Merry 		parent_target = mprsas_find_target_by_handle(sassc, 0,
3243991554f2SKenneth D. Merry 		    targ->parent_handle);
3244991554f2SKenneth D. Merry 
3245991554f2SKenneth D. Merry 		if (parent_target == NULL) {
3246991554f2SKenneth D. Merry 			mpr_dprint(sc, MPR_ERROR, "%s: handle %d does not have "
3247991554f2SKenneth D. Merry 			    "a valid parent target!\n", __func__, targ->handle);
3248a2c14879SStephen McConnell 			mprsas_set_ccbstatus(ccb, CAM_DEV_NOT_THERE);
3249991554f2SKenneth D. Merry 			goto bailout;
3250991554f2SKenneth D. Merry 		}
3251991554f2SKenneth D. Merry 
3252991554f2SKenneth D. Merry 		if ((parent_target->devinfo &
3253991554f2SKenneth D. Merry 		     MPI2_SAS_DEVICE_INFO_SMP_TARGET) == 0) {
3254991554f2SKenneth D. Merry 			mpr_dprint(sc, MPR_ERROR, "%s: handle %d parent %d "
3255991554f2SKenneth D. Merry 			    "does not have an SMP target!\n", __func__,
3256991554f2SKenneth D. Merry 			    targ->handle, parent_target->handle);
3257a2c14879SStephen McConnell 			mprsas_set_ccbstatus(ccb, CAM_DEV_NOT_THERE);
3258991554f2SKenneth D. Merry 			goto bailout;
3259991554f2SKenneth D. Merry 		}
3260991554f2SKenneth D. Merry 
3261991554f2SKenneth D. Merry 		sasaddr = parent_target->sasaddr;
3262991554f2SKenneth D. Merry #else /* OLD_MPR_PROBE */
3263991554f2SKenneth D. Merry 		if ((targ->parent_devinfo &
3264991554f2SKenneth D. Merry 		     MPI2_SAS_DEVICE_INFO_SMP_TARGET) == 0) {
3265991554f2SKenneth D. Merry 			mpr_dprint(sc, MPR_ERROR, "%s: handle %d parent %d "
3266991554f2SKenneth D. Merry 			    "does not have an SMP target!\n", __func__,
3267991554f2SKenneth D. Merry 			    targ->handle, targ->parent_handle);
3268a2c14879SStephen McConnell 			mprsas_set_ccbstatus(ccb, CAM_DEV_NOT_THERE);
3269991554f2SKenneth D. Merry 			goto bailout;
3270991554f2SKenneth D. Merry 
3271991554f2SKenneth D. Merry 		}
3272991554f2SKenneth D. Merry 		if (targ->parent_sasaddr == 0x0) {
3273991554f2SKenneth D. Merry 			mpr_dprint(sc, MPR_ERROR, "%s: handle %d parent handle "
3274991554f2SKenneth D. Merry 			    "%d does not have a valid SAS address!\n", __func__,
3275991554f2SKenneth D. Merry 			    targ->handle, targ->parent_handle);
3276a2c14879SStephen McConnell 			mprsas_set_ccbstatus(ccb, CAM_DEV_NOT_THERE);
3277991554f2SKenneth D. Merry 			goto bailout;
3278991554f2SKenneth D. Merry 		}
3279991554f2SKenneth D. Merry 
3280991554f2SKenneth D. Merry 		sasaddr = targ->parent_sasaddr;
3281991554f2SKenneth D. Merry #endif /* OLD_MPR_PROBE */
3282991554f2SKenneth D. Merry 
3283991554f2SKenneth D. Merry 	}
3284991554f2SKenneth D. Merry 
3285991554f2SKenneth D. Merry 	if (sasaddr == 0) {
3286991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_INFO, "%s: unable to find SAS address for "
3287991554f2SKenneth D. Merry 		    "handle %d\n", __func__, targ->handle);
3288a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_DEV_NOT_THERE);
3289991554f2SKenneth D. Merry 		goto bailout;
3290991554f2SKenneth D. Merry 	}
3291991554f2SKenneth D. Merry 	mprsas_send_smpcmd(sassc, ccb, sasaddr);
3292991554f2SKenneth D. Merry 
3293991554f2SKenneth D. Merry 	return;
3294991554f2SKenneth D. Merry 
3295991554f2SKenneth D. Merry bailout:
3296991554f2SKenneth D. Merry 	xpt_done(ccb);
3297991554f2SKenneth D. Merry 
3298991554f2SKenneth D. Merry }
3299991554f2SKenneth D. Merry #endif //__FreeBSD_version >= 900026
3300991554f2SKenneth D. Merry 
3301991554f2SKenneth D. Merry static void
3302991554f2SKenneth D. Merry mprsas_action_resetdev(struct mprsas_softc *sassc, union ccb *ccb)
3303991554f2SKenneth D. Merry {
3304991554f2SKenneth D. Merry 	MPI2_SCSI_TASK_MANAGE_REQUEST *req;
3305991554f2SKenneth D. Merry 	struct mpr_softc *sc;
3306991554f2SKenneth D. Merry 	struct mpr_command *tm;
3307991554f2SKenneth D. Merry 	struct mprsas_target *targ;
3308991554f2SKenneth D. Merry 
3309991554f2SKenneth D. Merry 	MPR_FUNCTRACE(sassc->sc);
3310991554f2SKenneth D. Merry 	mtx_assert(&sassc->sc->mpr_mtx, MA_OWNED);
3311991554f2SKenneth D. Merry 
33127a2a6a1aSStephen McConnell 	KASSERT(ccb->ccb_h.target_id < sassc->maxtargets, ("Target %d out of "
33137a2a6a1aSStephen McConnell 	    "bounds in XPT_RESET_DEV\n", ccb->ccb_h.target_id));
3314991554f2SKenneth D. Merry 	sc = sassc->sc;
3315*3921a9f7SScott Long 	tm = mprsas_alloc_tm(sc);
3316991554f2SKenneth D. Merry 	if (tm == NULL) {
33177a2a6a1aSStephen McConnell 		mpr_dprint(sc, MPR_ERROR, "command alloc failure in "
33187a2a6a1aSStephen McConnell 		    "mprsas_action_resetdev\n");
3319a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_RESRC_UNAVAIL);
3320991554f2SKenneth D. Merry 		xpt_done(ccb);
3321991554f2SKenneth D. Merry 		return;
3322991554f2SKenneth D. Merry 	}
3323991554f2SKenneth D. Merry 
3324991554f2SKenneth D. Merry 	targ = &sassc->targets[ccb->ccb_h.target_id];
3325991554f2SKenneth D. Merry 	req = (MPI2_SCSI_TASK_MANAGE_REQUEST *)tm->cm_req;
3326991554f2SKenneth D. Merry 	req->DevHandle = htole16(targ->handle);
3327991554f2SKenneth D. Merry 	req->Function = MPI2_FUNCTION_SCSI_TASK_MGMT;
3328991554f2SKenneth D. Merry 	req->TaskType = MPI2_SCSITASKMGMT_TASKTYPE_TARGET_RESET;
3329991554f2SKenneth D. Merry 
3330991554f2SKenneth D. Merry 	/* SAS Hard Link Reset / SATA Link Reset */
3331991554f2SKenneth D. Merry 	req->MsgFlags = MPI2_SCSITASKMGMT_MSGFLAGS_LINK_RESET;
3332991554f2SKenneth D. Merry 
3333991554f2SKenneth D. Merry 	tm->cm_data = NULL;
3334991554f2SKenneth D. Merry 	tm->cm_complete = mprsas_resetdev_complete;
3335991554f2SKenneth D. Merry 	tm->cm_complete_data = ccb;
3336a2c14879SStephen McConnell 
3337a2c14879SStephen McConnell 	mpr_dprint(sc, MPR_INFO, "%s: Sending reset for target ID %d\n",
3338a2c14879SStephen McConnell 	    __func__, targ->tid);
3339991554f2SKenneth D. Merry 	tm->cm_targ = targ;
3340a2c14879SStephen McConnell 
3341*3921a9f7SScott Long 	mprsas_prepare_for_tm(sc, cm, targ, CAM_LUN_WILDCARD);
3342991554f2SKenneth D. Merry 	mpr_map_command(sc, tm);
3343991554f2SKenneth D. Merry }
3344991554f2SKenneth D. Merry 
3345991554f2SKenneth D. Merry static void
3346991554f2SKenneth D. Merry mprsas_resetdev_complete(struct mpr_softc *sc, struct mpr_command *tm)
3347991554f2SKenneth D. Merry {
3348991554f2SKenneth D. Merry 	MPI2_SCSI_TASK_MANAGE_REPLY *resp;
3349991554f2SKenneth D. Merry 	union ccb *ccb;
3350991554f2SKenneth D. Merry 
3351991554f2SKenneth D. Merry 	MPR_FUNCTRACE(sc);
3352991554f2SKenneth D. Merry 	mtx_assert(&sc->mpr_mtx, MA_OWNED);
3353991554f2SKenneth D. Merry 
3354991554f2SKenneth D. Merry 	resp = (MPI2_SCSI_TASK_MANAGE_REPLY *)tm->cm_reply;
3355991554f2SKenneth D. Merry 	ccb = tm->cm_complete_data;
3356991554f2SKenneth D. Merry 
3357991554f2SKenneth D. Merry 	/*
3358991554f2SKenneth D. Merry 	 * Currently there should be no way we can hit this case.  It only
3359991554f2SKenneth D. Merry 	 * happens when we have a failure to allocate chain frames, and
3360991554f2SKenneth D. Merry 	 * task management commands don't have S/G lists.
3361991554f2SKenneth D. Merry 	 */
3362991554f2SKenneth D. Merry 	if ((tm->cm_flags & MPR_CM_FLAGS_ERROR_MASK) != 0) {
3363991554f2SKenneth D. Merry 		MPI2_SCSI_TASK_MANAGE_REQUEST *req;
3364991554f2SKenneth D. Merry 
3365991554f2SKenneth D. Merry 		req = (MPI2_SCSI_TASK_MANAGE_REQUEST *)tm->cm_req;
3366991554f2SKenneth D. Merry 
3367991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_ERROR, "%s: cm_flags = %#x for reset of "
3368991554f2SKenneth D. Merry 		    "handle %#04x! This should not happen!\n", __func__,
3369991554f2SKenneth D. Merry 		    tm->cm_flags, req->DevHandle);
3370a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_REQ_CMP_ERR);
3371991554f2SKenneth D. Merry 		goto bailout;
3372991554f2SKenneth D. Merry 	}
3373991554f2SKenneth D. Merry 
33747a2a6a1aSStephen McConnell 	mpr_dprint(sc, MPR_XINFO, "%s: IOCStatus = 0x%x ResponseCode = 0x%x\n",
33757a2a6a1aSStephen McConnell 	    __func__, le16toh(resp->IOCStatus), le32toh(resp->ResponseCode));
3376991554f2SKenneth D. Merry 
3377991554f2SKenneth D. Merry 	if (le32toh(resp->ResponseCode) == MPI2_SCSITASKMGMT_RSP_TM_COMPLETE) {
3378a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_REQ_CMP);
3379991554f2SKenneth D. Merry 		mprsas_announce_reset(sc, AC_SENT_BDR, tm->cm_targ->tid,
3380991554f2SKenneth D. Merry 		    CAM_LUN_WILDCARD);
3381991554f2SKenneth D. Merry 	}
3382991554f2SKenneth D. Merry 	else
3383a2c14879SStephen McConnell 		mprsas_set_ccbstatus(ccb, CAM_REQ_CMP_ERR);
3384991554f2SKenneth D. Merry 
3385991554f2SKenneth D. Merry bailout:
3386991554f2SKenneth D. Merry 
3387991554f2SKenneth D. Merry 	mprsas_free_tm(sc, tm);
3388991554f2SKenneth D. Merry 	xpt_done(ccb);
3389991554f2SKenneth D. Merry }
3390991554f2SKenneth D. Merry 
3391991554f2SKenneth D. Merry static void
3392991554f2SKenneth D. Merry mprsas_poll(struct cam_sim *sim)
3393991554f2SKenneth D. Merry {
3394991554f2SKenneth D. Merry 	struct mprsas_softc *sassc;
3395991554f2SKenneth D. Merry 
3396991554f2SKenneth D. Merry 	sassc = cam_sim_softc(sim);
3397991554f2SKenneth D. Merry 
3398991554f2SKenneth D. Merry 	if (sassc->sc->mpr_debug & MPR_TRACE) {
3399991554f2SKenneth D. Merry 		/* frequent debug messages during a panic just slow
3400991554f2SKenneth D. Merry 		 * everything down too much.
3401991554f2SKenneth D. Merry 		 */
3402a2c14879SStephen McConnell 		mpr_dprint(sassc->sc, MPR_XINFO, "%s clearing MPR_TRACE\n",
3403a2c14879SStephen McConnell 		    __func__);
3404991554f2SKenneth D. Merry 		sassc->sc->mpr_debug &= ~MPR_TRACE;
3405991554f2SKenneth D. Merry 	}
3406991554f2SKenneth D. Merry 
3407991554f2SKenneth D. Merry 	mpr_intr_locked(sassc->sc);
3408991554f2SKenneth D. Merry }
3409991554f2SKenneth D. Merry 
3410991554f2SKenneth D. Merry static void
3411991554f2SKenneth D. Merry mprsas_async(void *callback_arg, uint32_t code, struct cam_path *path,
3412991554f2SKenneth D. Merry     void *arg)
3413991554f2SKenneth D. Merry {
3414991554f2SKenneth D. Merry 	struct mpr_softc *sc;
3415991554f2SKenneth D. Merry 
3416991554f2SKenneth D. Merry 	sc = (struct mpr_softc *)callback_arg;
3417991554f2SKenneth D. Merry 
3418991554f2SKenneth D. Merry 	switch (code) {
3419991554f2SKenneth D. Merry #if (__FreeBSD_version >= 1000006) || \
3420991554f2SKenneth D. Merry     ((__FreeBSD_version >= 901503) && (__FreeBSD_version < 1000000))
3421991554f2SKenneth D. Merry 	case AC_ADVINFO_CHANGED: {
3422991554f2SKenneth D. Merry 		struct mprsas_target *target;
3423991554f2SKenneth D. Merry 		struct mprsas_softc *sassc;
3424991554f2SKenneth D. Merry 		struct scsi_read_capacity_data_long rcap_buf;
3425991554f2SKenneth D. Merry 		struct ccb_dev_advinfo cdai;
3426991554f2SKenneth D. Merry 		struct mprsas_lun *lun;
3427991554f2SKenneth D. Merry 		lun_id_t lunid;
3428991554f2SKenneth D. Merry 		int found_lun;
3429991554f2SKenneth D. Merry 		uintptr_t buftype;
3430991554f2SKenneth D. Merry 
3431991554f2SKenneth D. Merry 		buftype = (uintptr_t)arg;
3432991554f2SKenneth D. Merry 
3433991554f2SKenneth D. Merry 		found_lun = 0;
3434991554f2SKenneth D. Merry 		sassc = sc->sassc;
3435991554f2SKenneth D. Merry 
3436991554f2SKenneth D. Merry 		/*
3437991554f2SKenneth D. Merry 		 * We're only interested in read capacity data changes.
3438991554f2SKenneth D. Merry 		 */
3439991554f2SKenneth D. Merry 		if (buftype != CDAI_TYPE_RCAPLONG)
3440991554f2SKenneth D. Merry 			break;
3441991554f2SKenneth D. Merry 
3442991554f2SKenneth D. Merry 		/*
344307aa4de1SKenneth D. Merry 		 * See the comment in mpr_attach_sas() for a detailed
344407aa4de1SKenneth D. Merry 		 * explanation.  In these versions of FreeBSD we register
344507aa4de1SKenneth D. Merry 		 * for all events and filter out the events that don't
344607aa4de1SKenneth D. Merry 		 * apply to us.
344707aa4de1SKenneth D. Merry 		 */
344807aa4de1SKenneth D. Merry #if (__FreeBSD_version < 1000703) || \
344907aa4de1SKenneth D. Merry     ((__FreeBSD_version >= 1100000) && (__FreeBSD_version < 1100002))
345007aa4de1SKenneth D. Merry 		if (xpt_path_path_id(path) != sassc->sim->path_id)
345107aa4de1SKenneth D. Merry 			break;
345207aa4de1SKenneth D. Merry #endif
345307aa4de1SKenneth D. Merry 
345407aa4de1SKenneth D. Merry 		/*
3455991554f2SKenneth D. Merry 		 * We should have a handle for this, but check to make sure.
3456991554f2SKenneth D. Merry 		 */
3457991554f2SKenneth D. Merry 		KASSERT(xpt_path_target_id(path) < sassc->maxtargets,
3458991554f2SKenneth D. Merry 		    ("Target %d out of bounds in mprsas_async\n",
3459991554f2SKenneth D. Merry 		    xpt_path_target_id(path)));
3460991554f2SKenneth D. Merry 		target = &sassc->targets[xpt_path_target_id(path)];
3461991554f2SKenneth D. Merry 		if (target->handle == 0)
3462991554f2SKenneth D. Merry 			break;
3463991554f2SKenneth D. Merry 
3464991554f2SKenneth D. Merry 		lunid = xpt_path_lun_id(path);
3465991554f2SKenneth D. Merry 
3466991554f2SKenneth D. Merry 		SLIST_FOREACH(lun, &target->luns, lun_link) {
3467991554f2SKenneth D. Merry 			if (lun->lun_id == lunid) {
3468991554f2SKenneth D. Merry 				found_lun = 1;
3469991554f2SKenneth D. Merry 				break;
3470991554f2SKenneth D. Merry 			}
3471991554f2SKenneth D. Merry 		}
3472991554f2SKenneth D. Merry 
3473991554f2SKenneth D. Merry 		if (found_lun == 0) {
3474991554f2SKenneth D. Merry 			lun = malloc(sizeof(struct mprsas_lun), M_MPR,
3475991554f2SKenneth D. Merry 			    M_NOWAIT | M_ZERO);
3476991554f2SKenneth D. Merry 			if (lun == NULL) {
3477991554f2SKenneth D. Merry 				mpr_dprint(sc, MPR_ERROR, "Unable to alloc "
3478991554f2SKenneth D. Merry 				    "LUN for EEDP support.\n");
3479991554f2SKenneth D. Merry 				break;
3480991554f2SKenneth D. Merry 			}
3481991554f2SKenneth D. Merry 			lun->lun_id = lunid;
3482991554f2SKenneth D. Merry 			SLIST_INSERT_HEAD(&target->luns, lun, lun_link);
3483991554f2SKenneth D. Merry 		}
3484991554f2SKenneth D. Merry 
3485991554f2SKenneth D. Merry 		bzero(&rcap_buf, sizeof(rcap_buf));
3486991554f2SKenneth D. Merry 		xpt_setup_ccb(&cdai.ccb_h, path, CAM_PRIORITY_NORMAL);
3487991554f2SKenneth D. Merry 		cdai.ccb_h.func_code = XPT_DEV_ADVINFO;
3488991554f2SKenneth D. Merry 		cdai.ccb_h.flags = CAM_DIR_IN;
3489991554f2SKenneth D. Merry 		cdai.buftype = CDAI_TYPE_RCAPLONG;
34906c0541faSKenneth D. Merry #if (__FreeBSD_version >= 1100061) || \
34916c0541faSKenneth D. Merry     ((__FreeBSD_version >= 1001510) && (__FreeBSD_version < 1100000))
3492e8577fb4SKenneth D. Merry 		cdai.flags = CDAI_FLAG_NONE;
3493e8577fb4SKenneth D. Merry #else
3494991554f2SKenneth D. Merry 		cdai.flags = 0;
3495e8577fb4SKenneth D. Merry #endif
3496991554f2SKenneth D. Merry 		cdai.bufsiz = sizeof(rcap_buf);
3497991554f2SKenneth D. Merry 		cdai.buf = (uint8_t *)&rcap_buf;
3498991554f2SKenneth D. Merry 		xpt_action((union ccb *)&cdai);
3499991554f2SKenneth D. Merry 		if ((cdai.ccb_h.status & CAM_DEV_QFRZN) != 0)
3500991554f2SKenneth D. Merry 			cam_release_devq(cdai.ccb_h.path, 0, 0, 0, FALSE);
3501991554f2SKenneth D. Merry 
3502a2c14879SStephen McConnell 		if ((mprsas_get_ccbstatus((union ccb *)&cdai) == CAM_REQ_CMP)
3503991554f2SKenneth D. Merry 		    && (rcap_buf.prot & SRC16_PROT_EN)) {
35048881681bSKenneth D. Merry 			switch (rcap_buf.prot & SRC16_P_TYPE) {
35058881681bSKenneth D. Merry 			case SRC16_PTYPE_1:
35068881681bSKenneth D. Merry 			case SRC16_PTYPE_3:
3507991554f2SKenneth D. Merry 				lun->eedp_formatted = TRUE;
35088881681bSKenneth D. Merry 				lun->eedp_block_size =
35098881681bSKenneth D. Merry 				    scsi_4btoul(rcap_buf.length);
35108881681bSKenneth D. Merry 				break;
35118881681bSKenneth D. Merry 			case SRC16_PTYPE_2:
35128881681bSKenneth D. Merry 			default:
35138881681bSKenneth D. Merry 				lun->eedp_formatted = FALSE;
35148881681bSKenneth D. Merry 				lun->eedp_block_size = 0;
35158881681bSKenneth D. Merry 				break;
35168881681bSKenneth D. Merry 			}
3517991554f2SKenneth D. Merry 		} else {
3518991554f2SKenneth D. Merry 			lun->eedp_formatted = FALSE;
3519991554f2SKenneth D. Merry 			lun->eedp_block_size = 0;
3520991554f2SKenneth D. Merry 		}
3521991554f2SKenneth D. Merry 		break;
3522991554f2SKenneth D. Merry 	}
3523991554f2SKenneth D. Merry #endif
3524991554f2SKenneth D. Merry 	case AC_FOUND_DEVICE: {
3525991554f2SKenneth D. Merry 		struct ccb_getdev *cgd;
3526991554f2SKenneth D. Merry 
352707aa4de1SKenneth D. Merry 		/*
352807aa4de1SKenneth D. Merry 		 * See the comment in mpr_attach_sas() for a detailed
352907aa4de1SKenneth D. Merry 		 * explanation.  In these versions of FreeBSD we register
353007aa4de1SKenneth D. Merry 		 * for all events and filter out the events that don't
353107aa4de1SKenneth D. Merry 		 * apply to us.
353207aa4de1SKenneth D. Merry 		 */
353307aa4de1SKenneth D. Merry #if (__FreeBSD_version < 1000703) || \
353407aa4de1SKenneth D. Merry     ((__FreeBSD_version >= 1100000) && (__FreeBSD_version < 1100002))
353507aa4de1SKenneth D. Merry 		if (xpt_path_path_id(path) != sc->sassc->sim->path_id)
353607aa4de1SKenneth D. Merry 			break;
353707aa4de1SKenneth D. Merry #endif
353807aa4de1SKenneth D. Merry 
3539991554f2SKenneth D. Merry 		cgd = arg;
3540991554f2SKenneth D. Merry #if (__FreeBSD_version < 901503) || \
3541991554f2SKenneth D. Merry     ((__FreeBSD_version >= 1000000) && (__FreeBSD_version < 1000006))
3542991554f2SKenneth D. Merry 		mprsas_check_eedp(sc, path, cgd);
3543991554f2SKenneth D. Merry #endif
3544991554f2SKenneth D. Merry 		break;
3545991554f2SKenneth D. Merry 	}
3546991554f2SKenneth D. Merry 	default:
3547991554f2SKenneth D. Merry 		break;
3548991554f2SKenneth D. Merry 	}
3549991554f2SKenneth D. Merry }
3550991554f2SKenneth D. Merry 
3551991554f2SKenneth D. Merry #if (__FreeBSD_version < 901503) || \
3552991554f2SKenneth D. Merry     ((__FreeBSD_version >= 1000000) && (__FreeBSD_version < 1000006))
3553991554f2SKenneth D. Merry static void
3554991554f2SKenneth D. Merry mprsas_check_eedp(struct mpr_softc *sc, struct cam_path *path,
3555991554f2SKenneth D. Merry     struct ccb_getdev *cgd)
3556991554f2SKenneth D. Merry {
3557991554f2SKenneth D. Merry 	struct mprsas_softc *sassc = sc->sassc;
3558991554f2SKenneth D. Merry 	struct ccb_scsiio *csio;
3559991554f2SKenneth D. Merry 	struct scsi_read_capacity_16 *scsi_cmd;
3560991554f2SKenneth D. Merry 	struct scsi_read_capacity_eedp *rcap_buf;
3561991554f2SKenneth D. Merry 	path_id_t pathid;
3562991554f2SKenneth D. Merry 	target_id_t targetid;
3563991554f2SKenneth D. Merry 	lun_id_t lunid;
3564991554f2SKenneth D. Merry 	union ccb *ccb;
3565991554f2SKenneth D. Merry 	struct cam_path *local_path;
3566991554f2SKenneth D. Merry 	struct mprsas_target *target;
3567991554f2SKenneth D. Merry 	struct mprsas_lun *lun;
3568991554f2SKenneth D. Merry 	uint8_t	found_lun;
3569991554f2SKenneth D. Merry 	char path_str[64];
3570991554f2SKenneth D. Merry 
3571991554f2SKenneth D. Merry 	pathid = cam_sim_path(sassc->sim);
3572991554f2SKenneth D. Merry 	targetid = xpt_path_target_id(path);
3573991554f2SKenneth D. Merry 	lunid = xpt_path_lun_id(path);
3574991554f2SKenneth D. Merry 
35757a2a6a1aSStephen McConnell 	KASSERT(targetid < sassc->maxtargets, ("Target %d out of bounds in "
35767a2a6a1aSStephen McConnell 	    "mprsas_check_eedp\n", targetid));
3577991554f2SKenneth D. Merry 	target = &sassc->targets[targetid];
3578991554f2SKenneth D. Merry 	if (target->handle == 0x0)
3579991554f2SKenneth D. Merry 		return;
3580991554f2SKenneth D. Merry 
3581991554f2SKenneth D. Merry 	/*
3582991554f2SKenneth D. Merry 	 * Determine if the device is EEDP capable.
3583991554f2SKenneth D. Merry 	 *
3584991554f2SKenneth D. Merry 	 * If this flag is set in the inquiry data, the device supports
3585991554f2SKenneth D. Merry 	 * protection information, and must support the 16 byte read capacity
35867a2a6a1aSStephen McConnell 	 * command, otherwise continue without sending read cap 16.
3587991554f2SKenneth D. Merry 	 */
3588991554f2SKenneth D. Merry 	if ((cgd->inq_data.spc3_flags & SPC3_SID_PROTECT) == 0)
3589991554f2SKenneth D. Merry 		return;
3590991554f2SKenneth D. Merry 
3591991554f2SKenneth D. Merry 	/*
3592991554f2SKenneth D. Merry 	 * Issue a READ CAPACITY 16 command.  This info is used to determine if
3593991554f2SKenneth D. Merry 	 * the LUN is formatted for EEDP support.
3594991554f2SKenneth D. Merry 	 */
3595991554f2SKenneth D. Merry 	ccb = xpt_alloc_ccb_nowait();
3596991554f2SKenneth D. Merry 	if (ccb == NULL) {
3597991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_ERROR, "Unable to alloc CCB for EEDP "
3598991554f2SKenneth D. Merry 		    "support.\n");
3599991554f2SKenneth D. Merry 		return;
3600991554f2SKenneth D. Merry 	}
3601991554f2SKenneth D. Merry 
36027a2a6a1aSStephen McConnell 	if (xpt_create_path(&local_path, xpt_periph, pathid, targetid, lunid) !=
36037a2a6a1aSStephen McConnell 	    CAM_REQ_CMP) {
3604991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_ERROR, "Unable to create path for EEDP "
36057a2a6a1aSStephen McConnell 		    "support.\n");
3606991554f2SKenneth D. Merry 		xpt_free_ccb(ccb);
3607991554f2SKenneth D. Merry 		return;
3608991554f2SKenneth D. Merry 	}
3609991554f2SKenneth D. Merry 
3610991554f2SKenneth D. Merry 	/*
3611991554f2SKenneth D. Merry 	 * If LUN is already in list, don't create a new one.
3612991554f2SKenneth D. Merry 	 */
3613991554f2SKenneth D. Merry 	found_lun = FALSE;
3614991554f2SKenneth D. Merry 	SLIST_FOREACH(lun, &target->luns, lun_link) {
3615991554f2SKenneth D. Merry 		if (lun->lun_id == lunid) {
3616991554f2SKenneth D. Merry 			found_lun = TRUE;
3617991554f2SKenneth D. Merry 			break;
3618991554f2SKenneth D. Merry 		}
3619991554f2SKenneth D. Merry 	}
3620991554f2SKenneth D. Merry 	if (!found_lun) {
3621991554f2SKenneth D. Merry 		lun = malloc(sizeof(struct mprsas_lun), M_MPR,
3622991554f2SKenneth D. Merry 		    M_NOWAIT | M_ZERO);
3623991554f2SKenneth D. Merry 		if (lun == NULL) {
3624991554f2SKenneth D. Merry 			mpr_dprint(sc, MPR_ERROR, "Unable to alloc LUN for "
3625991554f2SKenneth D. Merry 			    "EEDP support.\n");
3626991554f2SKenneth D. Merry 			xpt_free_path(local_path);
3627991554f2SKenneth D. Merry 			xpt_free_ccb(ccb);
3628991554f2SKenneth D. Merry 			return;
3629991554f2SKenneth D. Merry 		}
3630991554f2SKenneth D. Merry 		lun->lun_id = lunid;
3631991554f2SKenneth D. Merry 		SLIST_INSERT_HEAD(&target->luns, lun, lun_link);
3632991554f2SKenneth D. Merry 	}
3633991554f2SKenneth D. Merry 
3634991554f2SKenneth D. Merry 	xpt_path_string(local_path, path_str, sizeof(path_str));
3635991554f2SKenneth D. Merry 	mpr_dprint(sc, MPR_INFO, "Sending read cap: path %s handle %d\n",
3636991554f2SKenneth D. Merry 	    path_str, target->handle);
3637991554f2SKenneth D. Merry 
3638991554f2SKenneth D. Merry 	/*
3639991554f2SKenneth D. Merry 	 * Issue a READ CAPACITY 16 command for the LUN.  The
3640991554f2SKenneth D. Merry 	 * mprsas_read_cap_done function will load the read cap info into the
3641991554f2SKenneth D. Merry 	 * LUN struct.
3642991554f2SKenneth D. Merry 	 */
3643991554f2SKenneth D. Merry 	rcap_buf = malloc(sizeof(struct scsi_read_capacity_eedp), M_MPR,
3644991554f2SKenneth D. Merry 	    M_NOWAIT | M_ZERO);
3645991554f2SKenneth D. Merry 	if (rcap_buf == NULL) {
3646a2c14879SStephen McConnell 		mpr_dprint(sc, MPR_ERROR, "Unable to alloc read capacity "
3647991554f2SKenneth D. Merry 		    "buffer for EEDP support.\n");
3648991554f2SKenneth D. Merry 		xpt_free_path(ccb->ccb_h.path);
3649991554f2SKenneth D. Merry 		xpt_free_ccb(ccb);
3650991554f2SKenneth D. Merry 		return;
3651991554f2SKenneth D. Merry 	}
3652991554f2SKenneth D. Merry 	xpt_setup_ccb(&ccb->ccb_h, local_path, CAM_PRIORITY_XPT);
3653991554f2SKenneth D. Merry 	csio = &ccb->csio;
3654991554f2SKenneth D. Merry 	csio->ccb_h.func_code = XPT_SCSI_IO;
3655991554f2SKenneth D. Merry 	csio->ccb_h.flags = CAM_DIR_IN;
3656991554f2SKenneth D. Merry 	csio->ccb_h.retry_count = 4;
3657991554f2SKenneth D. Merry 	csio->ccb_h.cbfcnp = mprsas_read_cap_done;
3658991554f2SKenneth D. Merry 	csio->ccb_h.timeout = 60000;
3659991554f2SKenneth D. Merry 	csio->data_ptr = (uint8_t *)rcap_buf;
3660991554f2SKenneth D. Merry 	csio->dxfer_len = sizeof(struct scsi_read_capacity_eedp);
3661991554f2SKenneth D. Merry 	csio->sense_len = MPR_SENSE_LEN;
3662991554f2SKenneth D. Merry 	csio->cdb_len = sizeof(*scsi_cmd);
3663991554f2SKenneth D. Merry 	csio->tag_action = MSG_SIMPLE_Q_TAG;
3664991554f2SKenneth D. Merry 
3665991554f2SKenneth D. Merry 	scsi_cmd = (struct scsi_read_capacity_16 *)&csio->cdb_io.cdb_bytes;
3666991554f2SKenneth D. Merry 	bzero(scsi_cmd, sizeof(*scsi_cmd));
3667991554f2SKenneth D. Merry 	scsi_cmd->opcode = 0x9E;
3668991554f2SKenneth D. Merry 	scsi_cmd->service_action = SRC16_SERVICE_ACTION;
3669991554f2SKenneth D. Merry 	((uint8_t *)scsi_cmd)[13] = sizeof(struct scsi_read_capacity_eedp);
3670991554f2SKenneth D. Merry 
3671991554f2SKenneth D. Merry 	ccb->ccb_h.ppriv_ptr1 = sassc;
3672991554f2SKenneth D. Merry 	xpt_action(ccb);
3673991554f2SKenneth D. Merry }
3674991554f2SKenneth D. Merry 
3675991554f2SKenneth D. Merry static void
3676991554f2SKenneth D. Merry mprsas_read_cap_done(struct cam_periph *periph, union ccb *done_ccb)
3677991554f2SKenneth D. Merry {
3678991554f2SKenneth D. Merry 	struct mprsas_softc *sassc;
3679991554f2SKenneth D. Merry 	struct mprsas_target *target;
3680991554f2SKenneth D. Merry 	struct mprsas_lun *lun;
3681991554f2SKenneth D. Merry 	struct scsi_read_capacity_eedp *rcap_buf;
3682991554f2SKenneth D. Merry 
3683991554f2SKenneth D. Merry 	if (done_ccb == NULL)
3684991554f2SKenneth D. Merry 		return;
3685991554f2SKenneth D. Merry 
3686991554f2SKenneth D. Merry 	/* Driver need to release devq, it Scsi command is
3687991554f2SKenneth D. Merry 	 * generated by driver internally.
3688991554f2SKenneth D. Merry 	 * Currently there is a single place where driver
3689991554f2SKenneth D. Merry 	 * calls scsi command internally. In future if driver
3690991554f2SKenneth D. Merry 	 * calls more scsi command internally, it needs to release
3691991554f2SKenneth D. Merry 	 * devq internally, since those command will not go back to
3692991554f2SKenneth D. Merry 	 * cam_periph.
3693991554f2SKenneth D. Merry 	 */
3694991554f2SKenneth D. Merry 	if ((done_ccb->ccb_h.status & CAM_DEV_QFRZN) ) {
3695991554f2SKenneth D. Merry         	done_ccb->ccb_h.status &= ~CAM_DEV_QFRZN;
3696991554f2SKenneth D. Merry 		xpt_release_devq(done_ccb->ccb_h.path,
3697991554f2SKenneth D. Merry 			       	/*count*/ 1, /*run_queue*/TRUE);
3698991554f2SKenneth D. Merry 	}
3699991554f2SKenneth D. Merry 
3700991554f2SKenneth D. Merry 	rcap_buf = (struct scsi_read_capacity_eedp *)done_ccb->csio.data_ptr;
3701991554f2SKenneth D. Merry 
3702991554f2SKenneth D. Merry 	/*
3703991554f2SKenneth D. Merry 	 * Get the LUN ID for the path and look it up in the LUN list for the
3704991554f2SKenneth D. Merry 	 * target.
3705991554f2SKenneth D. Merry 	 */
3706991554f2SKenneth D. Merry 	sassc = (struct mprsas_softc *)done_ccb->ccb_h.ppriv_ptr1;
37077a2a6a1aSStephen McConnell 	KASSERT(done_ccb->ccb_h.target_id < sassc->maxtargets, ("Target %d out "
37087a2a6a1aSStephen McConnell 	    "of bounds in mprsas_read_cap_done\n", done_ccb->ccb_h.target_id));
3709991554f2SKenneth D. Merry 	target = &sassc->targets[done_ccb->ccb_h.target_id];
3710991554f2SKenneth D. Merry 	SLIST_FOREACH(lun, &target->luns, lun_link) {
3711991554f2SKenneth D. Merry 		if (lun->lun_id != done_ccb->ccb_h.target_lun)
3712991554f2SKenneth D. Merry 			continue;
3713991554f2SKenneth D. Merry 
3714991554f2SKenneth D. Merry 		/*
3715991554f2SKenneth D. Merry 		 * Got the LUN in the target's LUN list.  Fill it in with EEDP
3716991554f2SKenneth D. Merry 		 * info. If the READ CAP 16 command had some SCSI error (common
3717991554f2SKenneth D. Merry 		 * if command is not supported), mark the lun as not supporting
3718991554f2SKenneth D. Merry 		 * EEDP and set the block size to 0.
3719991554f2SKenneth D. Merry 		 */
3720a2c14879SStephen McConnell 		if ((mprsas_get_ccbstatus(done_ccb) != CAM_REQ_CMP) ||
3721a2c14879SStephen McConnell 		    (done_ccb->csio.scsi_status != SCSI_STATUS_OK)) {
3722991554f2SKenneth D. Merry 			lun->eedp_formatted = FALSE;
3723991554f2SKenneth D. Merry 			lun->eedp_block_size = 0;
3724991554f2SKenneth D. Merry 			break;
3725991554f2SKenneth D. Merry 		}
3726991554f2SKenneth D. Merry 
3727991554f2SKenneth D. Merry 		if (rcap_buf->protect & 0x01) {
3728a2c14879SStephen McConnell 			mpr_dprint(sassc->sc, MPR_INFO, "LUN %d for target ID "
3729a2c14879SStephen McConnell 			    "%d is formatted for EEDP support.\n",
3730a2c14879SStephen McConnell 			    done_ccb->ccb_h.target_lun,
3731991554f2SKenneth D. Merry 			    done_ccb->ccb_h.target_id);
3732991554f2SKenneth D. Merry 			lun->eedp_formatted = TRUE;
3733991554f2SKenneth D. Merry 			lun->eedp_block_size = scsi_4btoul(rcap_buf->length);
3734991554f2SKenneth D. Merry 		}
3735991554f2SKenneth D. Merry 		break;
3736991554f2SKenneth D. Merry 	}
3737991554f2SKenneth D. Merry 
3738991554f2SKenneth D. Merry 	// Finished with this CCB and path.
3739991554f2SKenneth D. Merry 	free(rcap_buf, M_MPR);
3740991554f2SKenneth D. Merry 	xpt_free_path(done_ccb->ccb_h.path);
3741991554f2SKenneth D. Merry 	xpt_free_ccb(done_ccb);
3742991554f2SKenneth D. Merry }
3743991554f2SKenneth D. Merry #endif /* (__FreeBSD_version < 901503) || \
3744991554f2SKenneth D. Merry           ((__FreeBSD_version >= 1000000) && (__FreeBSD_version < 1000006)) */
3745991554f2SKenneth D. Merry 
3746a2c14879SStephen McConnell /*
3747a2c14879SStephen McConnell  * Set the INRESET flag for this target so that no I/O will be sent to
3748a2c14879SStephen McConnell  * the target until the reset has completed.  If an I/O request does
3749a2c14879SStephen McConnell  * happen, the devq will be frozen.  The CCB holds the path which is
3750a2c14879SStephen McConnell  * used to release the devq.  The devq is released and the CCB is freed
3751a2c14879SStephen McConnell  * when the TM completes.
3752a2c14879SStephen McConnell  */
3753b7f1ee79SScott Long void
3754b7f1ee79SScott Long mprsas_prepare_for_tm(struct mpr_softc *sc, struct mpr_command *tm,
3755b7f1ee79SScott Long     struct mprsas_target *target, lun_id_t lun_id)
3756b7f1ee79SScott Long {
3757b7f1ee79SScott Long 	union ccb *ccb;
3758b7f1ee79SScott Long 	path_id_t path_id;
3759b7f1ee79SScott Long 
3760a2c14879SStephen McConnell 	ccb = xpt_alloc_ccb_nowait();
3761a2c14879SStephen McConnell 	if (ccb) {
3762a2c14879SStephen McConnell 		path_id = cam_sim_path(sc->sassc->sim);
3763a2c14879SStephen McConnell 		if (xpt_create_path(&ccb->ccb_h.path, xpt_periph, path_id,
3764a2c14879SStephen McConnell 		    target->tid, lun_id) != CAM_REQ_CMP) {
3765a2c14879SStephen McConnell 			xpt_free_ccb(ccb);
3766a2c14879SStephen McConnell 		} else {
3767a2c14879SStephen McConnell 			tm->cm_ccb = ccb;
3768a2c14879SStephen McConnell 			tm->cm_targ = target;
3769a2c14879SStephen McConnell 			target->flags |= MPRSAS_TARGET_INRESET;
3770a2c14879SStephen McConnell 		}
3771a2c14879SStephen McConnell 	}
3772a2c14879SStephen McConnell }
3773a2c14879SStephen McConnell 
3774991554f2SKenneth D. Merry int
3775991554f2SKenneth D. Merry mprsas_startup(struct mpr_softc *sc)
3776991554f2SKenneth D. Merry {
3777991554f2SKenneth D. Merry 	/*
3778991554f2SKenneth D. Merry 	 * Send the port enable message and set the wait_for_port_enable flag.
3779991554f2SKenneth D. Merry 	 * This flag helps to keep the simq frozen until all discovery events
3780991554f2SKenneth D. Merry 	 * are processed.
3781991554f2SKenneth D. Merry 	 */
3782991554f2SKenneth D. Merry 	sc->wait_for_port_enable = 1;
3783991554f2SKenneth D. Merry 	mprsas_send_portenable(sc);
3784991554f2SKenneth D. Merry 	return (0);
3785991554f2SKenneth D. Merry }
3786991554f2SKenneth D. Merry 
3787991554f2SKenneth D. Merry static int
3788991554f2SKenneth D. Merry mprsas_send_portenable(struct mpr_softc *sc)
3789991554f2SKenneth D. Merry {
3790991554f2SKenneth D. Merry 	MPI2_PORT_ENABLE_REQUEST *request;
3791991554f2SKenneth D. Merry 	struct mpr_command *cm;
3792991554f2SKenneth D. Merry 
3793991554f2SKenneth D. Merry 	MPR_FUNCTRACE(sc);
3794991554f2SKenneth D. Merry 
3795991554f2SKenneth D. Merry 	if ((cm = mpr_alloc_command(sc)) == NULL)
3796991554f2SKenneth D. Merry 		return (EBUSY);
3797991554f2SKenneth D. Merry 	request = (MPI2_PORT_ENABLE_REQUEST *)cm->cm_req;
3798991554f2SKenneth D. Merry 	request->Function = MPI2_FUNCTION_PORT_ENABLE;
3799991554f2SKenneth D. Merry 	request->MsgFlags = 0;
3800991554f2SKenneth D. Merry 	request->VP_ID = 0;
3801991554f2SKenneth D. Merry 	cm->cm_desc.Default.RequestFlags = MPI2_REQ_DESCRIPT_FLAGS_DEFAULT_TYPE;
3802991554f2SKenneth D. Merry 	cm->cm_complete = mprsas_portenable_complete;
3803991554f2SKenneth D. Merry 	cm->cm_data = NULL;
3804991554f2SKenneth D. Merry 	cm->cm_sge = NULL;
3805991554f2SKenneth D. Merry 
3806991554f2SKenneth D. Merry 	mpr_map_command(sc, cm);
3807991554f2SKenneth D. Merry 	mpr_dprint(sc, MPR_XINFO,
3808991554f2SKenneth D. Merry 	    "mpr_send_portenable finished cm %p req %p complete %p\n",
3809991554f2SKenneth D. Merry 	    cm, cm->cm_req, cm->cm_complete);
3810991554f2SKenneth D. Merry 	return (0);
3811991554f2SKenneth D. Merry }
3812991554f2SKenneth D. Merry 
3813991554f2SKenneth D. Merry static void
3814991554f2SKenneth D. Merry mprsas_portenable_complete(struct mpr_softc *sc, struct mpr_command *cm)
3815991554f2SKenneth D. Merry {
3816991554f2SKenneth D. Merry 	MPI2_PORT_ENABLE_REPLY *reply;
3817991554f2SKenneth D. Merry 	struct mprsas_softc *sassc;
3818991554f2SKenneth D. Merry 
3819991554f2SKenneth D. Merry 	MPR_FUNCTRACE(sc);
3820991554f2SKenneth D. Merry 	sassc = sc->sassc;
3821991554f2SKenneth D. Merry 
3822991554f2SKenneth D. Merry 	/*
3823991554f2SKenneth D. Merry 	 * Currently there should be no way we can hit this case.  It only
3824991554f2SKenneth D. Merry 	 * happens when we have a failure to allocate chain frames, and
3825991554f2SKenneth D. Merry 	 * port enable commands don't have S/G lists.
3826991554f2SKenneth D. Merry 	 */
3827991554f2SKenneth D. Merry 	if ((cm->cm_flags & MPR_CM_FLAGS_ERROR_MASK) != 0) {
3828991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_ERROR, "%s: cm_flags = %#x for port enable! "
3829991554f2SKenneth D. Merry 		    "This should not happen!\n", __func__, cm->cm_flags);
3830991554f2SKenneth D. Merry 	}
3831991554f2SKenneth D. Merry 
3832991554f2SKenneth D. Merry 	reply = (MPI2_PORT_ENABLE_REPLY *)cm->cm_reply;
3833991554f2SKenneth D. Merry 	if (reply == NULL)
3834991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_FAULT, "Portenable NULL reply\n");
3835991554f2SKenneth D. Merry 	else if (le16toh(reply->IOCStatus & MPI2_IOCSTATUS_MASK) !=
3836991554f2SKenneth D. Merry 	    MPI2_IOCSTATUS_SUCCESS)
3837991554f2SKenneth D. Merry 		mpr_dprint(sc, MPR_FAULT, "Portenable failed\n");
3838991554f2SKenneth D. Merry 
3839991554f2SKenneth D. Merry 	mpr_free_command(sc, cm);
3840991554f2SKenneth D. Merry 	/*
3841991554f2SKenneth D. Merry 	 * Done waiting for port enable to complete.  Decrement the refcount.
3842991554f2SKenneth D. Merry 	 * If refcount is 0, discovery is complete and a rescan of the bus can
3843991554f2SKenneth D. Merry 	 * take place.
3844991554f2SKenneth D. Merry 	 */
3845991554f2SKenneth D. Merry 	sc->wait_for_port_enable = 0;
3846991554f2SKenneth D. Merry 	sc->port_enable_complete = 1;
3847991554f2SKenneth D. Merry 	wakeup(&sc->port_enable_complete);
3848991554f2SKenneth D. Merry 	mprsas_startup_decrement(sassc);
3849991554f2SKenneth D. Merry }
3850991554f2SKenneth D. Merry 
3851991554f2SKenneth D. Merry int
3852991554f2SKenneth D. Merry mprsas_check_id(struct mprsas_softc *sassc, int id)
3853991554f2SKenneth D. Merry {
3854991554f2SKenneth D. Merry 	struct mpr_softc *sc = sassc->sc;
3855991554f2SKenneth D. Merry 	char *ids;
3856991554f2SKenneth D. Merry 	char *name;
3857991554f2SKenneth D. Merry 
3858991554f2SKenneth D. Merry 	ids = &sc->exclude_ids[0];
3859991554f2SKenneth D. Merry 	while((name = strsep(&ids, ",")) != NULL) {
3860991554f2SKenneth D. Merry 		if (name[0] == '\0')
3861991554f2SKenneth D. Merry 			continue;
3862991554f2SKenneth D. Merry 		if (strtol(name, NULL, 0) == (long)id)
3863991554f2SKenneth D. Merry 			return (1);
3864991554f2SKenneth D. Merry 	}
3865991554f2SKenneth D. Merry 
3866991554f2SKenneth D. Merry 	return (0);
3867991554f2SKenneth D. Merry }
3868a2c14879SStephen McConnell 
3869a2c14879SStephen McConnell void
3870a2c14879SStephen McConnell mprsas_realloc_targets(struct mpr_softc *sc, int maxtargets)
3871a2c14879SStephen McConnell {
3872a2c14879SStephen McConnell 	struct mprsas_softc *sassc;
3873a2c14879SStephen McConnell 	struct mprsas_lun *lun, *lun_tmp;
3874a2c14879SStephen McConnell 	struct mprsas_target *targ;
3875a2c14879SStephen McConnell 	int i;
3876a2c14879SStephen McConnell 
3877a2c14879SStephen McConnell 	sassc = sc->sassc;
3878a2c14879SStephen McConnell 	/*
3879a2c14879SStephen McConnell 	 * The number of targets is based on IOC Facts, so free all of
3880a2c14879SStephen McConnell 	 * the allocated LUNs for each target and then the target buffer
3881a2c14879SStephen McConnell 	 * itself.
3882a2c14879SStephen McConnell 	 */
3883a2c14879SStephen McConnell 	for (i=0; i< maxtargets; i++) {
3884a2c14879SStephen McConnell 		targ = &sassc->targets[i];
3885a2c14879SStephen McConnell 		SLIST_FOREACH_SAFE(lun, &targ->luns, lun_link, lun_tmp) {
3886a2c14879SStephen McConnell 			free(lun, M_MPR);
3887a2c14879SStephen McConnell 		}
3888a2c14879SStephen McConnell 	}
3889a2c14879SStephen McConnell 	free(sassc->targets, M_MPR);
3890a2c14879SStephen McConnell 
3891a2c14879SStephen McConnell 	sassc->targets = malloc(sizeof(struct mprsas_target) * maxtargets,
3892a2c14879SStephen McConnell 	    M_MPR, M_WAITOK|M_ZERO);
3893a2c14879SStephen McConnell 	if (!sassc->targets) {
3894a2c14879SStephen McConnell 		panic("%s failed to alloc targets with error %d\n",
3895a2c14879SStephen McConnell 		    __func__, ENOMEM);
3896a2c14879SStephen McConnell 	}
3897a2c14879SStephen McConnell }
3898