Fix NULL pointer constant issues in kernel/arch/x86
[unleashed.git] / usr / src / uts / i86pc / io / dr / dr.c
blob297446b3c3158ab16ecd660d04625149cd94da83
1 /*
2 * CDDL HEADER START
4 * The contents of this file are subject to the terms of the
5 * Common Development and Distribution License (the "License").
6 * You may not use this file except in compliance with the License.
8 * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9 * or http://www.opensolaris.org/os/licensing.
10 * See the License for the specific language governing permissions
11 * and limitations under the License.
13 * When distributing Covered Code, include this CDDL HEADER in each
14 * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15 * If applicable, add the following below this CDDL HEADER, with the
16 * fields enclosed by brackets "[]" replaced with your own identifying
17 * information: Portions Copyright [yyyy] [name of copyright owner]
19 * CDDL HEADER END
23 * Copyright 2010 Sun Microsystems, Inc. All rights reserved.
24 * Use is subject to license terms.
27 * Copyright (c) 2010, Intel Corporation.
28 * All rights reserved.
32 * PIM-DR layer of DR driver. Provides interface between user
33 * level applications and the PSM-DR layer.
36 #include <sys/note.h>
37 #include <sys/debug.h>
38 #include <sys/types.h>
39 #include <sys/errno.h>
40 #include <sys/cred.h>
41 #include <sys/dditypes.h>
42 #include <sys/devops.h>
43 #include <sys/modctl.h>
44 #include <sys/poll.h>
45 #include <sys/conf.h>
46 #include <sys/ddi.h>
47 #include <sys/sunddi.h>
48 #include <sys/sunndi.h>
49 #include <sys/stat.h>
50 #include <sys/kmem.h>
51 #include <sys/processor.h>
52 #include <sys/cpuvar.h>
53 #include <sys/mem_config.h>
55 #include <sys/autoconf.h>
56 #include <sys/cmn_err.h>
58 #include <sys/ddi_impldefs.h>
59 #include <sys/promif.h>
60 #include <sys/machsystm.h>
62 #include <sys/dr.h>
63 #include <sys/drmach.h>
64 #include <sys/dr_util.h>
66 extern int nulldev();
67 extern int nodev();
68 extern struct memlist *phys_install;
70 #ifdef DEBUG
71 uint_t dr_debug = 0; /* dr.h for bit values */
72 #endif /* DEBUG */
74 static int dr_dev_type_to_nt(char *);
77 * NOTE: state_str, nt_str and SBD_CMD_STR are only used in a debug
78 * kernel. They are, however, referenced during both debug and non-debug
79 * compiles.
82 static char *state_str[] = {
83 "EMPTY", "OCCUPIED", "CONNECTED", "UNCONFIGURED",
84 "PARTIAL", "CONFIGURED", "RELEASE", "UNREFERENCED",
85 "FATAL"
88 #define SBD_CMD_STR(c) \
89 (((c) == SBD_CMD_ASSIGN) ? "ASSIGN" : \
90 ((c) == SBD_CMD_UNASSIGN) ? "UNASSIGN" : \
91 ((c) == SBD_CMD_POWERON) ? "POWERON" : \
92 ((c) == SBD_CMD_POWEROFF) ? "POWEROFF" : \
93 ((c) == SBD_CMD_TEST) ? "TEST" : \
94 ((c) == SBD_CMD_CONNECT) ? "CONNECT" : \
95 ((c) == SBD_CMD_DISCONNECT) ? "DISCONNECT" : \
96 ((c) == SBD_CMD_CONFIGURE) ? "CONFIGURE" : \
97 ((c) == SBD_CMD_UNCONFIGURE) ? "UNCONFIGURE" : \
98 ((c) == SBD_CMD_GETNCM) ? "GETNCM" : \
99 ((c) == SBD_CMD_PASSTHRU) ? "PASSTHRU" : \
100 ((c) == SBD_CMD_STATUS) ? "STATUS" : "unknown")
102 #define DR_GET_BOARD_DEVUNIT(sb, ut, un) (&((sb)->b_dev[DEVSET_NIX(ut)][un]))
104 #define DR_MAKE_MINOR(i, b) (((i) << 16) | (b))
105 #define DR_MINOR2INST(m) (((m) >> 16) & 0xffff)
106 #define DR_MINOR2BNUM(m) ((m) & 0xffff)
108 /* for the DR*INTERNAL_ERROR macros. see sys/dr.h. */
109 static char *dr_ie_fmt = "dr.c %d";
111 /* struct for drmach device name to sbd_comp_type_t mapping */
112 typedef struct {
113 char *s_devtype;
114 sbd_comp_type_t s_nodetype;
115 } dr_devname_t;
117 /* struct to map starfire device attributes - name:sbd_comp_type_t */
118 static dr_devname_t dr_devattr[] = {
119 { DRMACH_DEVTYPE_MEM, SBD_COMP_MEM },
120 { DRMACH_DEVTYPE_CPU, SBD_COMP_CPU },
121 { DRMACH_DEVTYPE_PCI, SBD_COMP_IO },
122 #if defined(DRMACH_DEVTYPE_SBUS)
123 { DRMACH_DEVTYPE_SBUS, SBD_COMP_IO },
124 #endif
125 #if defined(DRMACH_DEVTYPE_WCI)
126 { DRMACH_DEVTYPE_WCI, SBD_COMP_IO },
127 #endif
128 /* last s_devtype must be NULL, s_nodetype must be SBD_COMP_UNKNOWN */
129 { NULL, SBD_COMP_UNKNOWN }
133 * Per instance soft-state structure.
135 typedef struct dr_softstate {
136 dev_info_t *dip;
137 dr_board_t *boards;
138 kmutex_t i_lock;
139 int dr_initialized;
140 } dr_softstate_t;
143 * dr Global data elements
145 struct dr_global {
146 dr_softstate_t *softsp; /* pointer to initialize soft state */
147 kmutex_t lock;
148 } dr_g;
150 dr_unsafe_devs_t dr_unsafe_devs;
153 * Table of known passthru commands.
155 struct {
156 char *pt_name;
157 int (*pt_func)(dr_handle_t *);
158 } pt_arr[] = {
159 "quiesce", dr_pt_test_suspend,
162 int dr_modunload_okay = 0; /* set to non-zero to allow unload */
165 * State transition table. States valid transitions for "board" state.
166 * Recall that non-zero return value terminates operation, however
167 * the herrno value is what really indicates an error , if any.
169 static int
170 _cmd2index(int c)
173 * Translate DR CMD to index into dr_state_transition.
175 switch (c) {
176 case SBD_CMD_CONNECT: return (0);
177 case SBD_CMD_DISCONNECT: return (1);
178 case SBD_CMD_CONFIGURE: return (2);
179 case SBD_CMD_UNCONFIGURE: return (3);
180 case SBD_CMD_ASSIGN: return (4);
181 case SBD_CMD_UNASSIGN: return (5);
182 case SBD_CMD_POWERON: return (6);
183 case SBD_CMD_POWEROFF: return (7);
184 case SBD_CMD_TEST: return (8);
185 default: return (-1);
189 #define CMD2INDEX(c) _cmd2index(c)
191 static struct dr_state_trans {
192 int x_cmd;
193 struct {
194 int x_rv; /* return value of pre_op */
195 int x_err; /* error, if any */
196 } x_op[DR_STATE_MAX];
197 } dr_state_transition[] = {
198 { SBD_CMD_CONNECT,
200 { 0, 0 }, /* empty */
201 { 0, 0 }, /* occupied */
202 { -1, ESBD_STATE }, /* connected */
203 { -1, ESBD_STATE }, /* unconfigured */
204 { -1, ESBD_STATE }, /* partial */
205 { -1, ESBD_STATE }, /* configured */
206 { -1, ESBD_STATE }, /* release */
207 { -1, ESBD_STATE }, /* unreferenced */
208 { -1, ESBD_FATAL_STATE }, /* fatal */
211 { SBD_CMD_DISCONNECT,
213 { -1, ESBD_STATE }, /* empty */
214 { 0, 0 }, /* occupied */
215 { 0, 0 }, /* connected */
216 { 0, 0 }, /* unconfigured */
217 { -1, ESBD_STATE }, /* partial */
218 { -1, ESBD_STATE }, /* configured */
219 { -1, ESBD_STATE }, /* release */
220 { -1, ESBD_STATE }, /* unreferenced */
221 { -1, ESBD_FATAL_STATE }, /* fatal */
224 { SBD_CMD_CONFIGURE,
226 { -1, ESBD_STATE }, /* empty */
227 { -1, ESBD_STATE }, /* occupied */
228 { 0, 0 }, /* connected */
229 { 0, 0 }, /* unconfigured */
230 { 0, 0 }, /* partial */
231 { 0, 0 }, /* configured */
232 { -1, ESBD_STATE }, /* release */
233 { -1, ESBD_STATE }, /* unreferenced */
234 { -1, ESBD_FATAL_STATE }, /* fatal */
237 { SBD_CMD_UNCONFIGURE,
239 { -1, ESBD_STATE }, /* empty */
240 { -1, ESBD_STATE }, /* occupied */
241 { -1, ESBD_STATE }, /* connected */
242 { -1, ESBD_STATE }, /* unconfigured */
243 { 0, 0 }, /* partial */
244 { 0, 0 }, /* configured */
245 { 0, 0 }, /* release */
246 { 0, 0 }, /* unreferenced */
247 { -1, ESBD_FATAL_STATE }, /* fatal */
250 { SBD_CMD_ASSIGN,
252 { 0, 0 }, /* empty */
253 { 0, 0 }, /* occupied */
254 { -1, ESBD_STATE }, /* connected */
255 { -1, ESBD_STATE }, /* unconfigured */
256 { -1, ESBD_STATE }, /* partial */
257 { -1, ESBD_STATE }, /* configured */
258 { -1, ESBD_STATE }, /* release */
259 { -1, ESBD_STATE }, /* unreferenced */
260 { -1, ESBD_FATAL_STATE }, /* fatal */
263 { SBD_CMD_UNASSIGN,
265 { 0, 0 }, /* empty */
266 { 0, 0 }, /* occupied */
267 { -1, ESBD_STATE }, /* connected */
268 { -1, ESBD_STATE }, /* unconfigured */
269 { -1, ESBD_STATE }, /* partial */
270 { -1, ESBD_STATE }, /* configured */
271 { -1, ESBD_STATE }, /* release */
272 { -1, ESBD_STATE }, /* unreferenced */
273 { -1, ESBD_FATAL_STATE }, /* fatal */
276 { SBD_CMD_POWERON,
278 { 0, 0 }, /* empty */
279 { 0, 0 }, /* occupied */
280 { -1, ESBD_STATE }, /* connected */
281 { -1, ESBD_STATE }, /* unconfigured */
282 { -1, ESBD_STATE }, /* partial */
283 { -1, ESBD_STATE }, /* configured */
284 { -1, ESBD_STATE }, /* release */
285 { -1, ESBD_STATE }, /* unreferenced */
286 { -1, ESBD_FATAL_STATE }, /* fatal */
289 { SBD_CMD_POWEROFF,
291 { 0, 0 }, /* empty */
292 { 0, 0 }, /* occupied */
293 { -1, ESBD_STATE }, /* connected */
294 { -1, ESBD_STATE }, /* unconfigured */
295 { -1, ESBD_STATE }, /* partial */
296 { -1, ESBD_STATE }, /* configured */
297 { -1, ESBD_STATE }, /* release */
298 { -1, ESBD_STATE }, /* unreferenced */
299 { -1, ESBD_FATAL_STATE }, /* fatal */
302 { SBD_CMD_TEST,
304 { 0, 0 }, /* empty */
305 { 0, 0 }, /* occupied */
306 { -1, ESBD_STATE }, /* connected */
307 { -1, ESBD_STATE }, /* unconfigured */
308 { -1, ESBD_STATE }, /* partial */
309 { -1, ESBD_STATE }, /* configured */
310 { -1, ESBD_STATE }, /* release */
311 { -1, ESBD_STATE }, /* unreferenced */
312 { -1, ESBD_FATAL_STATE }, /* fatal */
318 * Global R/W lock to synchronize access across
319 * multiple boards. Users wanting multi-board access
320 * must grab WRITE lock, others must grab READ lock.
322 krwlock_t dr_grwlock;
325 * Head of the boardlist used as a reference point for
326 * locating board structs.
327 * TODO: eliminate dr_boardlist
329 dr_board_t *dr_boardlist;
332 * DR support functions.
334 static dr_devset_t dr_dev2devset(sbd_comp_id_t *cid);
335 static int dr_check_transition(dr_board_t *bp,
336 dr_devset_t *devsetp,
337 struct dr_state_trans *transp,
338 int cmd);
339 static int dr_check_unit_attached(dr_common_unit_t *dp);
340 static sbd_error_t *dr_init_devlists(dr_board_t *bp);
341 static void dr_board_discovery(dr_board_t *bp);
342 static int dr_board_init(dr_board_t *bp, dev_info_t *dip, int bd);
343 static void dr_board_destroy(dr_board_t *bp);
344 static void dr_board_transition(dr_board_t *bp, dr_state_t st);
347 * DR driver (DDI) entry points.
349 static int dr_getinfo(dev_info_t *dip, ddi_info_cmd_t cmd,
350 void *arg, void **result);
351 static int dr_detach(dev_info_t *dip, ddi_detach_cmd_t cmd);
352 static int dr_attach(dev_info_t *dip, ddi_attach_cmd_t cmd);
353 static int dr_probe(dev_info_t *dip);
354 static int dr_ioctl(dev_t dev, int cmd, intptr_t arg, int mode,
355 cred_t *cred_p, int *rval_p);
356 static int dr_close(dev_t dev, int flag, int otyp, cred_t *cred_p);
357 static int dr_open(dev_t *dev, int flag, int otyp, cred_t *cred_p);
360 * DR command processing operations.
362 static int dr_copyin_iocmd(dr_handle_t *hp);
363 static int dr_copyout_iocmd(dr_handle_t *hp);
364 static int dr_copyout_errs(dr_handle_t *hp);
365 static int dr_pre_op(dr_handle_t *hp);
366 static int dr_post_op(dr_handle_t *hp, int rv);
367 static int dr_exec_op(dr_handle_t *hp);
368 static void dr_assign_board(dr_handle_t *hp);
369 static void dr_unassign_board(dr_handle_t *hp);
370 static void dr_connect(dr_handle_t *hp);
371 static int dr_disconnect(dr_handle_t *hp);
372 static void dr_dev_configure(dr_handle_t *hp);
373 static void dr_dev_release(dr_handle_t *hp);
374 static int dr_dev_unconfigure(dr_handle_t *hp);
375 static void dr_dev_cancel(dr_handle_t *hp);
376 static int dr_dev_status(dr_handle_t *hp);
377 static int dr_get_ncm(dr_handle_t *hp);
378 static int dr_pt_ioctl(dr_handle_t *hp);
379 static void dr_poweron_board(dr_handle_t *hp);
380 static void dr_poweroff_board(dr_handle_t *hp);
381 static void dr_test_board(dr_handle_t *hp);
384 * Autoconfiguration data structures
386 struct cb_ops dr_cb_ops = {
387 dr_open, /* open */
388 dr_close, /* close */
389 nodev, /* strategy */
390 nodev, /* print */
391 nodev, /* dump */
392 nodev, /* read */
393 nodev, /* write */
394 dr_ioctl, /* ioctl */
395 nodev, /* devmap */
396 nodev, /* mmap */
397 nodev, /* segmap */
398 nochpoll, /* chpoll */
399 ddi_prop_op, /* cb_prop_op */
400 NULL, /* struct streamtab */
401 D_NEW | D_MP | D_MTSAFE, /* compatibility flags */
402 CB_REV, /* Rev */
403 nodev, /* cb_aread */
404 nodev /* cb_awrite */
407 struct dev_ops dr_dev_ops = {
408 DEVO_REV, /* build version */
409 0, /* dev ref count */
410 dr_getinfo, /* getinfo */
411 nulldev, /* identify */
412 dr_probe, /* probe */
413 dr_attach, /* attach */
414 dr_detach, /* detach */
415 nodev, /* reset */
416 &dr_cb_ops, /* cb_ops */
417 (struct bus_ops *)NULL, /* bus ops */
418 NULL, /* power */
419 ddi_quiesce_not_needed, /* quiesce */
422 extern struct mod_ops mod_driverops;
424 static struct modldrv modldrv = {
425 &mod_driverops,
426 "Dynamic Reconfiguration",
427 &dr_dev_ops
430 static struct modlinkage modlinkage = {
431 MODREV_1,
432 (void *)&modldrv,
433 NULL
437 * Driver entry points.
440 _init(void)
442 int err;
445 * If you need to support multiple nodes (instances), then
446 * whatever the maximum number of supported nodes is would
447 * need to passed as the third parameter to ddi_soft_state_init().
448 * Alternative would be to dynamically fini and re-init the
449 * soft state structure each time a node is attached.
451 err = ddi_soft_state_init((void **)&dr_g.softsp,
452 sizeof (dr_softstate_t), 1);
453 if (err)
454 return (err);
456 mutex_init(&dr_g.lock, NULL, MUTEX_DRIVER, NULL);
457 rw_init(&dr_grwlock, NULL, RW_DEFAULT, NULL);
459 return (mod_install(&modlinkage));
463 _fini(void)
465 int err;
467 if ((err = mod_remove(&modlinkage)) != 0)
468 return (err);
470 mutex_destroy(&dr_g.lock);
471 rw_destroy(&dr_grwlock);
473 ddi_soft_state_fini((void **)&dr_g.softsp);
475 return (0);
479 _info(struct modinfo *modinfop)
481 return (mod_info(&modlinkage, modinfop));
484 /*ARGSUSED1*/
485 static int
486 dr_open(dev_t *dev, int flag, int otyp, cred_t *cred_p)
488 int instance;
489 dr_softstate_t *softsp;
490 dr_board_t *bp;
493 * Don't open unless we've attached.
495 instance = DR_MINOR2INST(getminor(*dev));
496 softsp = ddi_get_soft_state(dr_g.softsp, instance);
497 if (softsp == NULL)
498 return (ENXIO);
500 mutex_enter(&softsp->i_lock);
501 if (!softsp->dr_initialized) {
502 int bd;
503 int rv = 0;
505 bp = softsp->boards;
507 /* initialize each array element */
508 for (bd = 0; bd < MAX_BOARDS; bd++, bp++) {
509 rv = dr_board_init(bp, softsp->dip, bd);
510 if (rv)
511 break;
514 if (rv == 0) {
515 softsp->dr_initialized = 1;
516 } else {
517 /* destroy elements initialized thus far */
518 while (--bp >= softsp->boards)
519 dr_board_destroy(bp);
521 /* TODO: should this be another errno val ? */
522 mutex_exit(&softsp->i_lock);
523 return (ENXIO);
526 mutex_exit(&softsp->i_lock);
528 bp = &softsp->boards[DR_MINOR2BNUM(getminor(*dev))];
531 * prevent opening of a dyn-ap for a board
532 * that does not exist
534 if (!bp->b_assigned) {
535 if (drmach_board_lookup(bp->b_num, &bp->b_id) != 0)
536 return (ENODEV);
539 return (0);
542 /*ARGSUSED*/
543 static int
544 dr_close(dev_t dev, int flag, int otyp, cred_t *cred_p)
546 return (0);
550 * Enable/disable DR features.
552 int dr_enable = 1;
554 /*ARGSUSED3*/
555 static int
556 dr_ioctl(dev_t dev, int cmd, intptr_t arg, int mode,
557 cred_t *cred_p, int *rval_p)
559 int rv = 0;
560 int instance;
561 int bd;
562 dr_handle_t *hp;
563 dr_softstate_t *softsp;
564 static fn_t f = "dr_ioctl";
566 PR_ALL("%s...\n", f);
568 instance = DR_MINOR2INST(getminor(dev));
569 softsp = ddi_get_soft_state(dr_g.softsp, instance);
570 if (softsp == NULL) {
571 cmn_err(CE_WARN, "dr%d: module not yet attached", instance);
572 return (ENXIO);
575 if (!dr_enable) {
576 switch (cmd) {
577 case SBD_CMD_STATUS:
578 case SBD_CMD_GETNCM:
579 case SBD_CMD_PASSTHRU:
580 break;
581 default:
582 return (ENOTSUP);
586 bd = DR_MINOR2BNUM(getminor(dev));
587 if (bd >= MAX_BOARDS)
588 return (ENXIO);
590 /* get and initialize storage for new handle */
591 hp = GETSTRUCT(dr_handle_t, 1);
592 hp->h_bd = &softsp->boards[bd];
593 hp->h_err = NULL;
594 hp->h_dev = getminor(dev);
595 hp->h_cmd = cmd;
596 hp->h_mode = mode;
597 hp->h_iap = (sbd_ioctl_arg_t *)arg;
599 /* copy sbd command into handle */
600 rv = dr_copyin_iocmd(hp);
601 if (rv) {
602 FREESTRUCT(hp, dr_handle_t, 1);
603 return (EINVAL);
606 /* translate canonical name to component type */
607 if (hp->h_sbdcmd.cmd_cm.c_id.c_name[0] != '\0') {
608 hp->h_sbdcmd.cmd_cm.c_id.c_type =
609 dr_dev_type_to_nt(hp->h_sbdcmd.cmd_cm.c_id.c_name);
611 PR_ALL("%s: c_name = %s, c_type = %d\n",
613 hp->h_sbdcmd.cmd_cm.c_id.c_name,
614 hp->h_sbdcmd.cmd_cm.c_id.c_type);
615 } else {
616 /*EMPTY*/
617 PR_ALL("%s: c_name is NULL\n", f);
620 /* determine scope of operation */
621 hp->h_devset = dr_dev2devset(&hp->h_sbdcmd.cmd_cm.c_id);
623 switch (hp->h_cmd) {
624 case SBD_CMD_STATUS:
625 case SBD_CMD_GETNCM:
626 /* no locks needed for these commands */
627 break;
629 default:
630 rw_enter(&dr_grwlock, RW_WRITER);
631 mutex_enter(&hp->h_bd->b_lock);
634 * If we're dealing with memory at all, then we have
635 * to keep the "exclusive" global lock held. This is
636 * necessary since we will probably need to look at
637 * multiple board structs. Otherwise, we only have
638 * to deal with the board in question and so can drop
639 * the global lock to "shared".
641 rv = DEVSET_IN_SET(hp->h_devset, SBD_COMP_MEM, DEVSET_ANYUNIT);
642 if (rv == 0)
643 rw_downgrade(&dr_grwlock);
644 break;
646 rv = 0;
648 if (rv == 0)
649 rv = dr_pre_op(hp);
650 if (rv == 0) {
651 rv = dr_exec_op(hp);
652 rv = dr_post_op(hp, rv);
655 if (rv == -1)
656 rv = EIO;
658 if (hp->h_err != NULL)
659 if (!(rv = dr_copyout_errs(hp)))
660 rv = EIO;
662 /* undo locking, if any, done before dr_pre_op */
663 switch (hp->h_cmd) {
664 case SBD_CMD_STATUS:
665 case SBD_CMD_GETNCM:
666 break;
668 case SBD_CMD_ASSIGN:
669 case SBD_CMD_UNASSIGN:
670 case SBD_CMD_POWERON:
671 case SBD_CMD_POWEROFF:
672 case SBD_CMD_CONNECT:
673 case SBD_CMD_CONFIGURE:
674 case SBD_CMD_UNCONFIGURE:
675 case SBD_CMD_DISCONNECT:
676 /* Board changed state. Log a sysevent. */
677 if (rv == 0)
678 (void) drmach_log_sysevent(hp->h_bd->b_num, "",
679 SE_SLEEP, 0);
680 /* Fall through */
682 default:
683 mutex_exit(&hp->h_bd->b_lock);
684 rw_exit(&dr_grwlock);
687 if (hp->h_opts.size != 0)
688 FREESTRUCT(hp->h_opts.copts, char, hp->h_opts.size);
690 FREESTRUCT(hp, dr_handle_t, 1);
692 return (rv);
695 /*ARGSUSED*/
696 static int
697 dr_probe(dev_info_t *dip)
699 return (DDI_PROBE_SUCCESS);
702 static int
703 dr_attach(dev_info_t *dip, ddi_attach_cmd_t cmd)
705 int rv, rv2;
706 int bd;
707 int instance;
708 sbd_error_t *err;
709 dr_softstate_t *softsp;
711 instance = ddi_get_instance(dip);
713 switch (cmd) {
714 case DDI_ATTACH:
715 rw_enter(&dr_grwlock, RW_WRITER);
717 rv = ddi_soft_state_zalloc(dr_g.softsp, instance);
718 if (rv != DDI_SUCCESS) {
719 cmn_err(CE_WARN, "dr%d: failed to alloc soft-state",
720 instance);
721 return (DDI_FAILURE);
724 /* initialize softstate structure */
725 softsp = ddi_get_soft_state(dr_g.softsp, instance);
726 softsp->dip = dip;
728 mutex_init(&softsp->i_lock, NULL, MUTEX_DRIVER, NULL);
730 /* allocate board array (aka boardlist) */
731 softsp->boards = GETSTRUCT(dr_board_t, MAX_BOARDS);
733 /* TODO: eliminate dr_boardlist */
734 dr_boardlist = softsp->boards;
736 /* initialize each array element */
737 rv = DDI_SUCCESS;
738 for (bd = 0; bd < MAX_BOARDS; bd++) {
739 dr_board_t *bp = &softsp->boards[bd];
740 char *p, *name;
741 int l, minor_num;
744 * initialized board attachment point path
745 * (relative to pseudo) in a form immediately
746 * reusable as an cfgadm command argument.
747 * TODO: clean this up
749 p = bp->b_path;
750 l = sizeof (bp->b_path);
751 (void) snprintf(p, l, "dr@%d:", instance);
752 while (*p != '\0') {
753 l--;
754 p++;
757 name = p;
758 err = drmach_board_name(bd, p, l);
759 if (err) {
760 sbd_err_clear(&err);
761 rv = DDI_FAILURE;
762 break;
765 minor_num = DR_MAKE_MINOR(instance, bd);
766 rv = ddi_create_minor_node(dip, name, S_IFCHR,
767 minor_num, DDI_NT_SBD_ATTACHMENT_POINT, 0);
768 if (rv != DDI_SUCCESS)
769 rv = DDI_FAILURE;
772 if (rv == DDI_SUCCESS) {
774 * Announce the node's presence.
776 ddi_report_dev(dip);
777 } else {
778 ddi_remove_minor_node(dip, NULL);
781 * Init registered unsafe devs.
783 dr_unsafe_devs.devnames = NULL;
784 rv2 = ddi_prop_lookup_string_array(DDI_DEV_T_ANY, dip,
785 DDI_PROP_DONTPASS | DDI_PROP_NOTPROM,
786 "unsupported-io-drivers", &dr_unsafe_devs.devnames,
787 &dr_unsafe_devs.ndevs);
789 if (rv2 != DDI_PROP_SUCCESS)
790 dr_unsafe_devs.ndevs = 0;
792 rw_exit(&dr_grwlock);
793 return (rv);
795 default:
796 return (DDI_FAILURE);
799 /*NOTREACHED*/
802 static int
803 dr_detach(dev_info_t *dip, ddi_detach_cmd_t cmd)
805 int instance;
806 dr_softstate_t *softsp;
808 switch (cmd) {
809 case DDI_DETACH:
810 if (!dr_modunload_okay)
811 return (DDI_FAILURE);
813 rw_enter(&dr_grwlock, RW_WRITER);
815 instance = ddi_get_instance(dip);
816 softsp = ddi_get_soft_state(dr_g.softsp, instance);
818 /* TODO: eliminate dr_boardlist */
819 ASSERT(softsp->boards == dr_boardlist);
821 /* remove all minor nodes */
822 ddi_remove_minor_node(dip, NULL);
824 if (softsp->dr_initialized) {
825 int bd;
827 for (bd = 0; bd < MAX_BOARDS; bd++)
828 dr_board_destroy(&softsp->boards[bd]);
831 FREESTRUCT(softsp->boards, dr_board_t, MAX_BOARDS);
832 mutex_destroy(&softsp->i_lock);
833 ddi_soft_state_free(dr_g.softsp, instance);
835 rw_exit(&dr_grwlock);
836 return (DDI_SUCCESS);
838 default:
839 return (DDI_FAILURE);
841 /*NOTREACHED*/
844 static int
845 dr_getinfo(dev_info_t *dip, ddi_info_cmd_t cmd, void *arg, void **result)
847 _NOTE(ARGUNUSED(dip))
849 dev_t dev = (dev_t)arg;
850 int instance, error;
851 dr_softstate_t *softsp;
853 *result = NULL;
854 error = DDI_SUCCESS;
855 instance = DR_MINOR2INST(getminor(dev));
857 switch (cmd) {
858 case DDI_INFO_DEVT2DEVINFO:
859 softsp = ddi_get_soft_state(dr_g.softsp, instance);
860 if (softsp == NULL)
861 return (DDI_FAILURE);
862 *result = (void *)softsp->dip;
863 break;
865 case DDI_INFO_DEVT2INSTANCE:
866 *result = (void *)(uintptr_t)instance;
867 break;
869 default:
870 error = DDI_FAILURE;
871 break;
874 return (error);
878 * DR operations.
881 static int
882 dr_copyin_iocmd(dr_handle_t *hp)
884 static fn_t f = "dr_copyin_iocmd";
885 sbd_cmd_t *scp = &hp->h_sbdcmd;
887 if (hp->h_iap == NULL)
888 return (EINVAL);
890 bzero((caddr_t)scp, sizeof (sbd_cmd_t));
892 #ifdef _MULTI_DATAMODEL
893 if (ddi_model_convert_from(hp->h_mode & FMODELS) == DDI_MODEL_ILP32) {
894 sbd_cmd32_t scmd32;
896 bzero((caddr_t)&scmd32, sizeof (sbd_cmd32_t));
898 if (ddi_copyin((void *)hp->h_iap, (void *)&scmd32,
899 sizeof (sbd_cmd32_t), hp->h_mode)) {
900 cmn_err(CE_WARN,
901 "%s: (32bit) failed to copyin "
902 "sbdcmd-struct", f);
903 return (EFAULT);
905 scp->cmd_cm.c_id.c_type = scmd32.cmd_cm.c_id.c_type;
906 scp->cmd_cm.c_id.c_unit = scmd32.cmd_cm.c_id.c_unit;
907 bcopy(&scmd32.cmd_cm.c_id.c_name[0],
908 &scp->cmd_cm.c_id.c_name[0], OBP_MAXPROPNAME);
909 scp->cmd_cm.c_flags = scmd32.cmd_cm.c_flags;
910 scp->cmd_cm.c_len = scmd32.cmd_cm.c_len;
911 scp->cmd_cm.c_opts = (caddr_t)(uintptr_t)scmd32.cmd_cm.c_opts;
913 switch (hp->h_cmd) {
914 case SBD_CMD_STATUS:
915 scp->cmd_stat.s_nbytes = scmd32.cmd_stat.s_nbytes;
916 scp->cmd_stat.s_statp =
917 (caddr_t)(uintptr_t)scmd32.cmd_stat.s_statp;
918 break;
919 default:
920 break;
923 } else
924 #endif /* _MULTI_DATAMODEL */
925 if (ddi_copyin((void *)hp->h_iap, (void *)scp,
926 sizeof (sbd_cmd_t), hp->h_mode) != 0) {
927 cmn_err(CE_WARN,
928 "%s: failed to copyin sbdcmd-struct", f);
929 return (EFAULT);
932 if ((hp->h_opts.size = scp->cmd_cm.c_len) != 0) {
933 hp->h_opts.copts = GETSTRUCT(char, scp->cmd_cm.c_len + 1);
934 ++hp->h_opts.size;
935 if (ddi_copyin((void *)scp->cmd_cm.c_opts,
936 (void *)hp->h_opts.copts,
937 scp->cmd_cm.c_len, hp->h_mode) != 0) {
938 cmn_err(CE_WARN, "%s: failed to copyin options", f);
939 return (EFAULT);
943 return (0);
946 static int
947 dr_copyout_iocmd(dr_handle_t *hp)
949 static fn_t f = "dr_copyout_iocmd";
950 sbd_cmd_t *scp = &hp->h_sbdcmd;
952 if (hp->h_iap == NULL)
953 return (EINVAL);
955 #ifdef _MULTI_DATAMODEL
956 if (ddi_model_convert_from(hp->h_mode & FMODELS) == DDI_MODEL_ILP32) {
957 sbd_cmd32_t scmd32;
959 scmd32.cmd_cm.c_id.c_type = scp->cmd_cm.c_id.c_type;
960 scmd32.cmd_cm.c_id.c_unit = scp->cmd_cm.c_id.c_unit;
961 bcopy(&scp->cmd_cm.c_id.c_name[0],
962 &scmd32.cmd_cm.c_id.c_name[0], OBP_MAXPROPNAME);
964 scmd32.cmd_cm.c_flags = scp->cmd_cm.c_flags;
965 scmd32.cmd_cm.c_len = scp->cmd_cm.c_len;
966 scmd32.cmd_cm.c_opts = (caddr32_t)(uintptr_t)scp->cmd_cm.c_opts;
968 switch (hp->h_cmd) {
969 case SBD_CMD_GETNCM:
970 scmd32.cmd_getncm.g_ncm = scp->cmd_getncm.g_ncm;
971 break;
972 default:
973 break;
976 if (ddi_copyout((void *)&scmd32, (void *)hp->h_iap,
977 sizeof (sbd_cmd32_t), hp->h_mode)) {
978 cmn_err(CE_WARN,
979 "%s: (32bit) failed to copyout "
980 "sbdcmd-struct", f);
981 return (EFAULT);
983 } else
984 #endif /* _MULTI_DATAMODEL */
985 if (ddi_copyout((void *)scp, (void *)hp->h_iap,
986 sizeof (sbd_cmd_t), hp->h_mode) != 0) {
987 cmn_err(CE_WARN,
988 "%s: failed to copyout sbdcmd-struct", f);
989 return (EFAULT);
992 return (0);
995 static int
996 dr_copyout_errs(dr_handle_t *hp)
998 static fn_t f = "dr_copyout_errs";
1000 if (hp->h_err == NULL)
1001 return (0);
1003 if (hp->h_err->e_code) {
1004 PR_ALL("%s: error %d %s",
1005 f, hp->h_err->e_code, hp->h_err->e_rsc);
1008 #ifdef _MULTI_DATAMODEL
1009 if (ddi_model_convert_from(hp->h_mode & FMODELS) == DDI_MODEL_ILP32) {
1010 sbd_error32_t *serr32p;
1012 serr32p = GETSTRUCT(sbd_error32_t, 1);
1014 serr32p->e_code = hp->h_err->e_code;
1015 bcopy(&hp->h_err->e_rsc[0], &serr32p->e_rsc[0],
1016 MAXPATHLEN);
1017 if (ddi_copyout((void *)serr32p,
1018 (void *)&((sbd_ioctl_arg32_t *)hp->h_iap)->i_err,
1019 sizeof (sbd_error32_t), hp->h_mode)) {
1020 cmn_err(CE_WARN,
1021 "%s: (32bit) failed to copyout", f);
1022 return (EFAULT);
1024 FREESTRUCT(serr32p, sbd_error32_t, 1);
1025 } else
1026 #endif /* _MULTI_DATAMODEL */
1027 if (ddi_copyout((void *)hp->h_err,
1028 (void *)&hp->h_iap->i_err,
1029 sizeof (sbd_error_t), hp->h_mode)) {
1030 cmn_err(CE_WARN,
1031 "%s: failed to copyout", f);
1032 return (EFAULT);
1035 sbd_err_clear(&hp->h_err);
1037 return (0);
1042 * pre-op entry point must sbd_err_set_c(), if needed.
1043 * Return value of non-zero indicates failure.
1045 static int
1046 dr_pre_op(dr_handle_t *hp)
1048 int rv = 0, t;
1049 int cmd, serr = 0;
1050 dr_devset_t devset;
1051 dr_board_t *bp = hp->h_bd;
1052 dr_handle_t *shp = hp;
1053 static fn_t f = "dr_pre_op";
1055 cmd = hp->h_cmd;
1056 devset = shp->h_devset;
1058 PR_ALL("%s (cmd = %s)...\n", f, SBD_CMD_STR(cmd));
1060 devset = DEVSET_AND(devset, DR_DEVS_PRESENT(bp));
1061 hp->h_err = drmach_pre_op(cmd, bp->b_id, &hp->h_opts, &devset);
1062 if (hp->h_err != NULL) {
1063 PR_ALL("drmach_pre_op failed for cmd %s(%d)\n",
1064 SBD_CMD_STR(cmd), cmd);
1065 return (-1);
1069 * Check for valid state transitions.
1071 if ((t = CMD2INDEX(cmd)) != -1) {
1072 struct dr_state_trans *transp;
1073 int state_err;
1075 transp = &dr_state_transition[t];
1076 ASSERT(transp->x_cmd == cmd);
1078 state_err = dr_check_transition(bp, &devset, transp, cmd);
1080 if (state_err < 0) {
1082 * Invalidate device.
1084 dr_op_err(CE_IGNORE, hp, ESBD_INVAL, NULL);
1085 serr = -1;
1086 PR_ALL("%s: invalid devset (0x%x)\n",
1087 f, (uint_t)devset);
1088 } else if (state_err != 0) {
1090 * State transition is not a valid one.
1092 dr_op_err(CE_IGNORE, hp,
1093 transp->x_op[state_err].x_err, NULL);
1095 serr = transp->x_op[state_err].x_rv;
1097 PR_ALL("%s: invalid state %s(%d) for cmd %s(%d)\n",
1098 f, state_str[state_err], state_err,
1099 SBD_CMD_STR(cmd), cmd);
1100 } else {
1101 shp->h_devset = devset;
1105 if (serr) {
1106 rv = -1;
1109 return (rv);
1112 static int
1113 dr_post_op(dr_handle_t *hp, int rv)
1115 int cmd;
1116 sbd_error_t *err;
1117 dr_board_t *bp = hp->h_bd;
1118 static fn_t f = "dr_post_op";
1120 cmd = hp->h_cmd;
1122 PR_ALL("%s (cmd = %s)...\n", f, SBD_CMD_STR(cmd));
1124 err = drmach_post_op(cmd, bp->b_id, &hp->h_opts, rv);
1125 if (err != NULL) {
1126 PR_ALL("drmach_post_op failed for cmd %s(%d)\n",
1127 SBD_CMD_STR(cmd), cmd);
1128 if (rv == 0) {
1129 ASSERT(hp->h_err == NULL);
1130 hp->h_err = err;
1131 rv = -1;
1132 } else if (hp->h_err == NULL) {
1133 hp->h_err = err;
1134 } else {
1135 sbd_err_clear(&err);
1139 return (rv);
1142 static int
1143 dr_exec_op(dr_handle_t *hp)
1145 int rv = 0;
1146 static fn_t f = "dr_exec_op";
1148 /* errors should have been caught by now */
1149 ASSERT(hp->h_err == NULL);
1151 switch (hp->h_cmd) {
1152 case SBD_CMD_ASSIGN:
1153 dr_assign_board(hp);
1154 break;
1156 case SBD_CMD_UNASSIGN:
1157 dr_unassign_board(hp);
1158 break;
1160 case SBD_CMD_POWEROFF:
1161 dr_poweroff_board(hp);
1162 break;
1164 case SBD_CMD_POWERON:
1165 dr_poweron_board(hp);
1166 break;
1168 case SBD_CMD_TEST:
1169 dr_test_board(hp);
1170 break;
1172 case SBD_CMD_CONNECT:
1173 dr_connect(hp);
1174 break;
1176 case SBD_CMD_CONFIGURE:
1177 dr_dev_configure(hp);
1178 break;
1180 case SBD_CMD_UNCONFIGURE:
1181 dr_dev_release(hp);
1182 if (hp->h_err == NULL)
1183 rv = dr_dev_unconfigure(hp);
1184 else
1185 dr_dev_cancel(hp);
1186 break;
1188 case SBD_CMD_DISCONNECT:
1189 rv = dr_disconnect(hp);
1190 break;
1192 case SBD_CMD_STATUS:
1193 rv = dr_dev_status(hp);
1194 break;
1196 case SBD_CMD_GETNCM:
1197 hp->h_sbdcmd.cmd_getncm.g_ncm = dr_get_ncm(hp);
1198 rv = dr_copyout_iocmd(hp);
1199 break;
1201 case SBD_CMD_PASSTHRU:
1202 rv = dr_pt_ioctl(hp);
1203 break;
1205 default:
1206 cmn_err(CE_WARN,
1207 "%s: unknown command (%d)",
1208 f, hp->h_cmd);
1209 break;
1212 if (hp->h_err != NULL) {
1213 rv = -1;
1216 return (rv);
1219 static void
1220 dr_assign_board(dr_handle_t *hp)
1222 dr_board_t *bp = hp->h_bd;
1224 hp->h_err = drmach_board_assign(bp->b_num, &bp->b_id);
1225 if (hp->h_err == NULL) {
1226 bp->b_assigned = 1;
1230 static void
1231 dr_unassign_board(dr_handle_t *hp)
1233 dr_board_t *bp = hp->h_bd;
1236 * Block out status during unassign.
1237 * Not doing cv_wait_sig here as starfire SSP software
1238 * ignores unassign failure and removes board from
1239 * domain mask causing system panic.
1240 * TODO: Change cv_wait to cv_wait_sig when SSP software
1241 * handles unassign failure.
1243 dr_lock_status(bp);
1245 hp->h_err = drmach_board_unassign(bp->b_id);
1246 if (hp->h_err == NULL) {
1248 * clear drmachid_t handle; not valid after board unassign
1250 bp->b_id = 0;
1251 bp->b_assigned = 0;
1254 dr_unlock_status(bp);
1257 static void
1258 dr_poweron_board(dr_handle_t *hp)
1260 dr_board_t *bp = hp->h_bd;
1262 hp->h_err = drmach_board_poweron(bp->b_id);
1265 static void
1266 dr_poweroff_board(dr_handle_t *hp)
1268 dr_board_t *bp = hp->h_bd;
1270 hp->h_err = drmach_board_poweroff(bp->b_id);
1273 static void
1274 dr_test_board(dr_handle_t *hp)
1276 dr_board_t *bp = hp->h_bd;
1277 hp->h_err = drmach_board_test(bp->b_id, &hp->h_opts,
1278 dr_cmd_flags(hp) & SBD_FLAG_FORCE);
1282 * Create and populate the component nodes for a board. Assumes that the
1283 * devlists for the board have been initialized.
1285 static void
1286 dr_make_comp_nodes(dr_board_t *bp)
1288 int i;
1291 * Make nodes for the individual components on the board.
1292 * First we need to initialize memory unit data structures of board
1293 * structure.
1295 for (i = 0; i < MAX_MEM_UNITS_PER_BOARD; i++) {
1296 dr_mem_unit_t *mp;
1298 mp = dr_get_mem_unit(bp, i);
1299 dr_init_mem_unit(mp);
1303 * Initialize cpu unit data structures.
1305 for (i = 0; i < MAX_CPU_UNITS_PER_BOARD; i++) {
1306 dr_cpu_unit_t *cp;
1308 cp = dr_get_cpu_unit(bp, i);
1309 dr_init_cpu_unit(cp);
1313 * Initialize io unit data structures.
1315 for (i = 0; i < MAX_IO_UNITS_PER_BOARD; i++) {
1316 dr_io_unit_t *ip;
1318 ip = dr_get_io_unit(bp, i);
1319 dr_init_io_unit(ip);
1322 dr_board_transition(bp, DR_STATE_CONNECTED);
1324 bp->b_rstate = SBD_STAT_CONNECTED;
1325 bp->b_ostate = SBD_STAT_UNCONFIGURED;
1326 bp->b_cond = SBD_COND_OK;
1327 (void) drv_getparm(TIME, (void *)&bp->b_time);
1332 * Only do work if called to operate on an entire board
1333 * which doesn't already have components present.
1335 static void
1336 dr_connect(dr_handle_t *hp)
1338 dr_board_t *bp = hp->h_bd;
1339 static fn_t f = "dr_connect";
1341 PR_ALL("%s...\n", f);
1343 if (DR_DEVS_PRESENT(bp)) {
1345 * Board already has devices present.
1347 PR_ALL("%s: devices already present (" DEVSET_FMT_STR ")\n",
1348 f, DEVSET_FMT_ARG(DR_DEVS_PRESENT(bp)));
1349 return;
1352 hp->h_err = drmach_board_connect(bp->b_id, &hp->h_opts);
1353 if (hp->h_err)
1354 return;
1356 hp->h_err = dr_init_devlists(bp);
1357 if (hp->h_err)
1358 return;
1359 else if (bp->b_ndev == 0) {
1360 dr_op_err(CE_WARN, hp, ESBD_EMPTY_BD, bp->b_path);
1361 return;
1362 } else {
1363 dr_make_comp_nodes(bp);
1364 return;
1366 /*NOTREACHED*/
1369 static int
1370 dr_disconnect(dr_handle_t *hp)
1372 int i;
1373 dr_devset_t devset;
1374 dr_board_t *bp = hp->h_bd;
1375 static fn_t f = "dr_disconnect";
1377 PR_ALL("%s...\n", f);
1380 * Only devices which are present, but
1381 * unattached can be disconnected.
1383 devset = hp->h_devset & DR_DEVS_PRESENT(bp) &
1384 DR_DEVS_UNATTACHED(bp);
1386 if ((devset == 0) && DR_DEVS_PRESENT(bp)) {
1387 dr_op_err(CE_IGNORE, hp, ESBD_EMPTY_BD, bp->b_path);
1388 return (0);
1392 * Block out status during disconnect.
1394 mutex_enter(&bp->b_slock);
1395 while (bp->b_sflags & DR_BSLOCK) {
1396 if (cv_wait_sig(&bp->b_scv, &bp->b_slock) == 0) {
1397 mutex_exit(&bp->b_slock);
1398 return (EINTR);
1401 bp->b_sflags |= DR_BSLOCK;
1402 mutex_exit(&bp->b_slock);
1404 hp->h_err = drmach_board_disconnect(bp->b_id, &hp->h_opts);
1405 if (hp->h_err && hp->h_err->e_code == EX86_WALK_DEPENDENCY) {
1407 * Other boards have dependency on this board. No device nodes
1408 * have been destroyed so keep current board status.
1410 goto disconnect_done;
1413 DR_DEVS_DISCONNECT(bp, devset);
1415 ASSERT((DR_DEVS_ATTACHED(bp) & devset) == 0);
1418 * Update per-device state transitions.
1420 for (i = 0; i < MAX_CPU_UNITS_PER_BOARD; i++) {
1421 dr_cpu_unit_t *cp;
1423 if (!DEVSET_IN_SET(devset, SBD_COMP_CPU, i))
1424 continue;
1426 cp = dr_get_cpu_unit(bp, i);
1427 if (dr_disconnect_cpu(cp) == 0)
1428 dr_device_transition(&cp->sbc_cm, DR_STATE_EMPTY);
1429 else if (cp->sbc_cm.sbdev_error != NULL)
1430 DRERR_SET_C(&hp->h_err, &cp->sbc_cm.sbdev_error);
1432 ASSERT(cp->sbc_cm.sbdev_error == NULL);
1435 for (i = 0; i < MAX_MEM_UNITS_PER_BOARD; i++) {
1436 dr_mem_unit_t *mp;
1438 if (!DEVSET_IN_SET(devset, SBD_COMP_MEM, i))
1439 continue;
1441 mp = dr_get_mem_unit(bp, i);
1442 if (dr_disconnect_mem(mp) == 0)
1443 dr_device_transition(&mp->sbm_cm, DR_STATE_EMPTY);
1444 else if (mp->sbm_cm.sbdev_error != NULL)
1445 DRERR_SET_C(&hp->h_err, &mp->sbm_cm.sbdev_error);
1447 ASSERT(mp->sbm_cm.sbdev_error == NULL);
1450 for (i = 0; i < MAX_IO_UNITS_PER_BOARD; i++) {
1451 dr_io_unit_t *ip;
1453 if (!DEVSET_IN_SET(devset, SBD_COMP_IO, i))
1454 continue;
1456 ip = dr_get_io_unit(bp, i);
1457 if (dr_disconnect_io(ip) == 0)
1458 dr_device_transition(&ip->sbi_cm, DR_STATE_EMPTY);
1459 else if (ip->sbi_cm.sbdev_error != NULL)
1460 DRERR_SET_C(&hp->h_err, &ip->sbi_cm.sbdev_error);
1462 ASSERT(ip->sbi_cm.sbdev_error == NULL);
1465 if (hp->h_err) {
1467 * For certain errors, drmach_board_disconnect will mark
1468 * the board as unusable; in these cases the devtree must
1469 * be purged so that status calls will succeed.
1470 * XXX
1471 * This implementation checks for discrete error codes -
1472 * someday, the i/f to drmach_board_disconnect should be
1473 * changed to avoid the e_code testing.
1475 if (hp->h_err->e_code == EX86_DEPROBE) {
1476 bp->b_ostate = SBD_STAT_UNCONFIGURED;
1477 bp->b_busy = 0;
1478 (void) drv_getparm(TIME, (void *)&bp->b_time);
1480 if (drmach_board_deprobe(bp->b_id))
1481 goto disconnect_done;
1482 else
1483 bp->b_ndev = 0;
1488 * Once all the components on a board have been disconnect
1489 * the board's state can transition to disconnected and
1490 * we can allow the deprobe to take place.
1492 if (hp->h_err == NULL && DR_DEVS_PRESENT(bp) == 0) {
1493 dr_board_transition(bp, DR_STATE_OCCUPIED);
1494 bp->b_rstate = SBD_STAT_DISCONNECTED;
1495 bp->b_ostate = SBD_STAT_UNCONFIGURED;
1496 bp->b_busy = 0;
1497 (void) drv_getparm(TIME, (void *)&bp->b_time);
1499 hp->h_err = drmach_board_deprobe(bp->b_id);
1501 if (hp->h_err == NULL) {
1502 bp->b_ndev = 0;
1503 dr_board_transition(bp, DR_STATE_EMPTY);
1504 bp->b_rstate = SBD_STAT_EMPTY;
1505 (void) drv_getparm(TIME, (void *)&bp->b_time);
1509 disconnect_done:
1510 dr_unlock_status(bp);
1512 return (0);
1516 * Check if a particular device is a valid target of the current
1517 * operation. Return 1 if it is a valid target, and 0 otherwise.
1519 static int
1520 dr_dev_is_target(dr_dev_unit_t *dp, int present_only, uint_t uset)
1522 dr_common_unit_t *cp;
1523 int is_present;
1524 int is_attached;
1526 cp = &dp->du_common;
1528 /* check if the user requested this device */
1529 if ((uset & (1 << cp->sbdev_unum)) == 0) {
1530 return (0);
1533 is_present = DR_DEV_IS_PRESENT(cp) ? 1 : 0;
1534 is_attached = DR_DEV_IS_ATTACHED(cp) ? 1 : 0;
1537 * If the present_only flag is set, a valid target
1538 * must be present but not attached. Otherwise, it
1539 * must be both present and attached.
1541 if (is_present && (present_only ^ is_attached)) {
1542 /* sanity check */
1543 ASSERT(cp->sbdev_id != (drmachid_t)0);
1545 return (1);
1548 return (0);
1551 static void
1552 dr_dev_make_list(dr_handle_t *hp, sbd_comp_type_t type, int present_only,
1553 dr_common_unit_t ***devlist, int *devnum)
1555 dr_board_t *bp = hp->h_bd;
1556 int unum;
1557 int nunits;
1558 uint_t uset;
1559 int len;
1560 dr_common_unit_t **list, **wp;
1562 switch (type) {
1563 case SBD_COMP_CPU:
1564 nunits = MAX_CPU_UNITS_PER_BOARD;
1565 break;
1566 case SBD_COMP_MEM:
1567 nunits = MAX_MEM_UNITS_PER_BOARD;
1568 break;
1569 case SBD_COMP_IO:
1570 nunits = MAX_IO_UNITS_PER_BOARD;
1571 break;
1572 default:
1573 /* catch this in debug kernels */
1574 ASSERT(0);
1575 break;
1578 /* allocate list storage. */
1579 len = sizeof (dr_common_unit_t *) * (nunits + 1);
1580 list = kmem_zalloc(len, KM_SLEEP);
1582 /* record length of storage in first element */
1583 *list++ = (dr_common_unit_t *)(uintptr_t)len;
1585 /* get bit array signifying which units are to be involved */
1586 uset = DEVSET_GET_UNITSET(hp->h_devset, type);
1589 * Adjust the loop count for CPU devices since all cores
1590 * in a CMP will be examined in a single iteration.
1592 if (type == SBD_COMP_CPU) {
1593 nunits = MAX_CMP_UNITS_PER_BOARD;
1596 /* populate list */
1597 for (wp = list, unum = 0; unum < nunits; unum++) {
1598 dr_dev_unit_t *dp;
1599 int core;
1600 int cunum;
1602 dp = DR_GET_BOARD_DEVUNIT(bp, type, unum);
1603 if (dr_dev_is_target(dp, present_only, uset)) {
1604 *wp++ = &dp->du_common;
1607 /* further processing is only required for CPUs */
1608 if (type != SBD_COMP_CPU) {
1609 continue;
1613 * Add any additional cores from the current CPU
1614 * device. This is to ensure that all the cores
1615 * are grouped together in the device list, and
1616 * consequently sequenced together during the actual
1617 * operation.
1619 for (core = 1; core < MAX_CORES_PER_CMP; core++) {
1620 cunum = DR_CMP_CORE_UNUM(unum, core);
1621 dp = DR_GET_BOARD_DEVUNIT(bp, type, cunum);
1623 if (dr_dev_is_target(dp, present_only, uset)) {
1624 *wp++ = &dp->du_common;
1629 /* calculate number of units in list, return result and list pointer */
1630 *devnum = wp - list;
1631 *devlist = list;
1634 static void
1635 dr_dev_clean_up(dr_handle_t *hp, dr_common_unit_t **list, int devnum)
1637 int len;
1638 int n = 0;
1639 dr_common_unit_t *cp, **rp = list;
1642 * move first encountered unit error to handle if handle
1643 * does not yet have a recorded error.
1645 if (hp->h_err == NULL) {
1646 while (n++ < devnum) {
1647 cp = *rp++;
1648 if (cp->sbdev_error != NULL) {
1649 hp->h_err = cp->sbdev_error;
1650 cp->sbdev_error = NULL;
1651 break;
1656 /* free remaining unit errors */
1657 while (n++ < devnum) {
1658 cp = *rp++;
1659 if (cp->sbdev_error != NULL) {
1660 sbd_err_clear(&cp->sbdev_error);
1661 cp->sbdev_error = NULL;
1665 /* free list */
1666 list -= 1;
1667 len = (int)(uintptr_t)list[0];
1668 kmem_free(list, len);
1671 static int
1672 dr_dev_walk(dr_handle_t *hp, sbd_comp_type_t type, int present_only,
1673 int (*pre_op)(dr_handle_t *, dr_common_unit_t **, int),
1674 void (*op)(dr_handle_t *, dr_common_unit_t *),
1675 int (*post_op)(dr_handle_t *, dr_common_unit_t **, int),
1676 void (*board_op)(dr_handle_t *, dr_common_unit_t **, int))
1678 int devnum, rv;
1679 dr_common_unit_t **devlist;
1681 dr_dev_make_list(hp, type, present_only, &devlist, &devnum);
1683 rv = 0;
1684 if (devnum > 0) {
1685 rv = (*pre_op)(hp, devlist, devnum);
1686 if (rv == 0) {
1687 int n;
1689 for (n = 0; n < devnum; n++)
1690 (*op)(hp, devlist[n]);
1692 rv = (*post_op)(hp, devlist, devnum);
1694 (*board_op)(hp, devlist, devnum);
1698 dr_dev_clean_up(hp, devlist, devnum);
1699 return (rv);
1702 /*ARGSUSED*/
1703 static int
1704 dr_dev_noop(dr_handle_t *hp, dr_common_unit_t **devlist, int devnum)
1706 return (0);
1709 static void
1710 dr_attach_update_state(dr_handle_t *hp, dr_common_unit_t **devlist, int devnum)
1712 dr_board_t *bp = hp->h_bd;
1713 int i;
1714 dr_devset_t devs_unattached, devs_present;
1715 static fn_t f = "dr_attach_update_state";
1717 for (i = 0; i < devnum; i++) {
1718 dr_common_unit_t *cp = devlist[i];
1720 if (dr_check_unit_attached(cp) == -1) {
1721 PR_ALL("%s: ERROR %s not attached\n",
1722 f, cp->sbdev_path);
1723 continue;
1726 DR_DEV_SET_ATTACHED(cp);
1728 dr_device_transition(cp, DR_STATE_CONFIGURED);
1729 cp->sbdev_cond = SBD_COND_OK;
1732 devs_present = DR_DEVS_PRESENT(bp);
1733 devs_unattached = DR_DEVS_UNATTACHED(bp);
1735 switch (bp->b_state) {
1736 case DR_STATE_CONNECTED:
1737 case DR_STATE_UNCONFIGURED:
1738 ASSERT(devs_present);
1740 if (devs_unattached == 0) {
1742 * All devices finally attached.
1744 dr_board_transition(bp, DR_STATE_CONFIGURED);
1745 hp->h_bd->b_ostate = SBD_STAT_CONFIGURED;
1746 hp->h_bd->b_rstate = SBD_STAT_CONNECTED;
1747 hp->h_bd->b_cond = SBD_COND_OK;
1748 hp->h_bd->b_busy = 0;
1749 (void) drv_getparm(TIME, (void *)&hp->h_bd->b_time);
1750 } else if (devs_present != devs_unattached) {
1752 * Only some devices are fully attached.
1754 dr_board_transition(bp, DR_STATE_PARTIAL);
1755 hp->h_bd->b_rstate = SBD_STAT_CONNECTED;
1756 hp->h_bd->b_ostate = SBD_STAT_CONFIGURED;
1757 (void) drv_getparm(TIME, (void *)&hp->h_bd->b_time);
1759 break;
1761 case DR_STATE_PARTIAL:
1762 ASSERT(devs_present);
1764 * All devices finally attached.
1766 if (devs_unattached == 0) {
1767 dr_board_transition(bp, DR_STATE_CONFIGURED);
1768 hp->h_bd->b_rstate = SBD_STAT_CONNECTED;
1769 hp->h_bd->b_ostate = SBD_STAT_CONFIGURED;
1770 hp->h_bd->b_cond = SBD_COND_OK;
1771 hp->h_bd->b_busy = 0;
1772 (void) drv_getparm(TIME, (void *)&hp->h_bd->b_time);
1774 break;
1776 default:
1777 break;
1781 static void
1782 dr_dev_configure(dr_handle_t *hp)
1784 int rv;
1786 rv = dr_dev_walk(hp, SBD_COMP_CPU, 1,
1787 dr_pre_attach_cpu,
1788 dr_attach_cpu,
1789 dr_post_attach_cpu,
1790 dr_attach_update_state);
1792 if (rv >= 0) {
1793 rv = dr_dev_walk(hp, SBD_COMP_MEM, 1,
1794 dr_pre_attach_mem,
1795 dr_attach_mem,
1796 dr_post_attach_mem,
1797 dr_attach_update_state);
1800 if (rv >= 0) {
1801 (void) dr_dev_walk(hp, SBD_COMP_IO, 1,
1802 dr_pre_attach_io,
1803 dr_attach_io,
1804 dr_post_attach_io,
1805 dr_attach_update_state);
1809 static void
1810 dr_release_update_state(dr_handle_t *hp,
1811 dr_common_unit_t **devlist, int devnum)
1813 _NOTE(ARGUNUSED(devlist))
1814 _NOTE(ARGUNUSED(devnum))
1816 dr_board_t *bp = hp->h_bd;
1819 * If the entire board was released and all components
1820 * unreferenced then transfer it to the UNREFERENCED state.
1822 if ((bp->b_state != DR_STATE_RELEASE) &&
1823 (DR_DEVS_RELEASED(bp) == DR_DEVS_ATTACHED(bp))) {
1824 dr_board_transition(bp, DR_STATE_RELEASE);
1825 hp->h_bd->b_busy = 1;
1829 /* called by dr_release_done [below] and dr_release_mem_done [dr_mem.c] */
1831 dr_release_dev_done(dr_common_unit_t *cp)
1833 if (cp->sbdev_state == DR_STATE_RELEASE) {
1834 ASSERT(DR_DEV_IS_RELEASED(cp));
1836 DR_DEV_SET_UNREFERENCED(cp);
1838 dr_device_transition(cp, DR_STATE_UNREFERENCED);
1840 return (0);
1841 } else {
1842 return (-1);
1846 static void
1847 dr_release_done(dr_handle_t *hp, dr_common_unit_t *cp)
1849 _NOTE(ARGUNUSED(hp))
1851 dr_board_t *bp;
1852 static fn_t f = "dr_release_done";
1854 PR_ALL("%s...\n", f);
1856 /* get board pointer & sanity check */
1857 bp = cp->sbdev_bp;
1858 ASSERT(bp == hp->h_bd);
1861 * Transfer the device which just completed its release
1862 * to the UNREFERENCED state.
1864 switch (cp->sbdev_type) {
1865 case SBD_COMP_MEM:
1866 dr_release_mem_done(cp);
1867 break;
1869 default:
1870 DR_DEV_SET_RELEASED(cp);
1872 dr_device_transition(cp, DR_STATE_RELEASE);
1874 (void) dr_release_dev_done(cp);
1875 break;
1879 * If we're not already in the RELEASE state for this
1880 * board and we now have released all that were previously
1881 * attached, then transfer the board to the RELEASE state.
1883 if ((bp->b_state == DR_STATE_RELEASE) &&
1884 (DR_DEVS_RELEASED(bp) == DR_DEVS_UNREFERENCED(bp))) {
1885 dr_board_transition(bp, DR_STATE_UNREFERENCED);
1886 bp->b_busy = 1;
1887 (void) drv_getparm(TIME, (void *)&bp->b_time);
1891 static void
1892 dr_dev_release_mem(dr_handle_t *hp, dr_common_unit_t *dv)
1894 dr_release_mem(dv);
1895 dr_release_done(hp, dv);
1898 static void
1899 dr_dev_release(dr_handle_t *hp)
1901 int rv;
1903 hp->h_bd->b_busy = 1;
1905 rv = dr_dev_walk(hp, SBD_COMP_CPU, 0,
1906 dr_pre_release_cpu,
1907 dr_release_done,
1908 dr_dev_noop,
1909 dr_release_update_state);
1911 if (rv >= 0) {
1912 rv = dr_dev_walk(hp, SBD_COMP_MEM, 0,
1913 dr_pre_release_mem,
1914 dr_dev_release_mem,
1915 dr_dev_noop,
1916 dr_release_update_state);
1919 if (rv >= 0) {
1920 rv = dr_dev_walk(hp, SBD_COMP_IO, 0,
1921 dr_pre_release_io,
1922 dr_release_done,
1923 dr_dev_noop,
1924 dr_release_update_state);
1928 if (rv < 0)
1929 hp->h_bd->b_busy = 0;
1930 /* else, b_busy will be cleared in dr_detach_update_state() */
1933 static void
1934 dr_detach_update_state(dr_handle_t *hp, dr_common_unit_t **devlist, int devnum)
1936 dr_board_t *bp = hp->h_bd;
1937 int i;
1938 dr_state_t bstate;
1939 static fn_t f = "dr_detach_update_state";
1941 for (i = 0; i < devnum; i++) {
1942 dr_common_unit_t *cp = devlist[i];
1944 if (dr_check_unit_attached(cp) >= 0) {
1946 * Device is still attached probably due
1947 * to an error. Need to keep track of it.
1949 PR_ALL("%s: ERROR %s not detached\n",
1950 f, cp->sbdev_path);
1952 continue;
1955 DR_DEV_CLR_ATTACHED(cp);
1956 DR_DEV_CLR_RELEASED(cp);
1957 DR_DEV_CLR_UNREFERENCED(cp);
1958 dr_device_transition(cp, DR_STATE_UNCONFIGURED);
1961 bstate = bp->b_state;
1962 if (bstate != DR_STATE_UNCONFIGURED) {
1963 if (DR_DEVS_PRESENT(bp) == DR_DEVS_UNATTACHED(bp)) {
1965 * All devices are finally detached.
1967 dr_board_transition(bp, DR_STATE_UNCONFIGURED);
1968 hp->h_bd->b_ostate = SBD_STAT_UNCONFIGURED;
1969 (void) drv_getparm(TIME, (void *)&hp->h_bd->b_time);
1970 } else if ((bp->b_state != DR_STATE_PARTIAL) &&
1971 (DR_DEVS_ATTACHED(bp) !=
1972 DR_DEVS_PRESENT(bp))) {
1974 * Some devices remain attached.
1976 dr_board_transition(bp, DR_STATE_PARTIAL);
1977 (void) drv_getparm(TIME, (void *)&hp->h_bd->b_time);
1980 if ((hp->h_devset & DR_DEVS_UNATTACHED(bp)) == hp->h_devset)
1981 hp->h_bd->b_busy = 0;
1985 static int
1986 dr_dev_unconfigure(dr_handle_t *hp)
1988 dr_board_t *bp = hp->h_bd;
1991 * Block out status during IO unconfig.
1993 mutex_enter(&bp->b_slock);
1994 while (bp->b_sflags & DR_BSLOCK) {
1995 if (cv_wait_sig(&bp->b_scv, &bp->b_slock) == 0) {
1996 mutex_exit(&bp->b_slock);
1997 return (EINTR);
2000 bp->b_sflags |= DR_BSLOCK;
2001 mutex_exit(&bp->b_slock);
2003 (void) dr_dev_walk(hp, SBD_COMP_IO, 0,
2004 dr_pre_detach_io,
2005 dr_detach_io,
2006 dr_post_detach_io,
2007 dr_detach_update_state);
2009 dr_unlock_status(bp);
2011 (void) dr_dev_walk(hp, SBD_COMP_CPU, 0,
2012 dr_pre_detach_cpu,
2013 dr_detach_cpu,
2014 dr_post_detach_cpu,
2015 dr_detach_update_state);
2017 (void) dr_dev_walk(hp, SBD_COMP_MEM, 0,
2018 dr_pre_detach_mem,
2019 dr_detach_mem,
2020 dr_post_detach_mem,
2021 dr_detach_update_state);
2023 return (0);
2026 static void
2027 dr_dev_cancel(dr_handle_t *hp)
2029 int i;
2030 dr_devset_t devset;
2031 dr_board_t *bp = hp->h_bd;
2032 static fn_t f = "dr_dev_cancel";
2034 PR_ALL("%s...\n", f);
2037 * Only devices which have been "released" are
2038 * subject to cancellation.
2040 devset = hp->h_devset & DR_DEVS_RELEASED(bp);
2043 * Nothing to do for CPUs or IO other than change back
2044 * their state.
2046 for (i = 0; i < MAX_CPU_UNITS_PER_BOARD; i++) {
2047 dr_cpu_unit_t *cp;
2048 dr_state_t nstate;
2050 if (!DEVSET_IN_SET(devset, SBD_COMP_CPU, i))
2051 continue;
2053 cp = dr_get_cpu_unit(bp, i);
2054 if (dr_cancel_cpu(cp) == 0)
2055 nstate = DR_STATE_CONFIGURED;
2056 else
2057 nstate = DR_STATE_FATAL;
2059 dr_device_transition(&cp->sbc_cm, nstate);
2062 for (i = 0; i < MAX_IO_UNITS_PER_BOARD; i++) {
2063 dr_io_unit_t *ip;
2065 if (!DEVSET_IN_SET(devset, SBD_COMP_IO, i))
2066 continue;
2067 ip = dr_get_io_unit(bp, i);
2068 dr_device_transition(&ip->sbi_cm, DR_STATE_CONFIGURED);
2070 for (i = 0; i < MAX_MEM_UNITS_PER_BOARD; i++) {
2071 dr_mem_unit_t *mp;
2072 dr_state_t nstate;
2074 if (!DEVSET_IN_SET(devset, SBD_COMP_MEM, i))
2075 continue;
2077 mp = dr_get_mem_unit(bp, i);
2078 if (dr_cancel_mem(mp) == 0)
2079 nstate = DR_STATE_CONFIGURED;
2080 else
2081 nstate = DR_STATE_FATAL;
2083 dr_device_transition(&mp->sbm_cm, nstate);
2086 PR_ALL("%s: unreleasing devset (0x%x)\n", f, (uint_t)devset);
2088 DR_DEVS_CANCEL(bp, devset);
2090 if (DR_DEVS_RELEASED(bp) == 0) {
2091 dr_state_t new_state;
2093 * If the board no longer has any released devices
2094 * than transfer it back to the CONFIG/PARTIAL state.
2096 if (DR_DEVS_ATTACHED(bp) == DR_DEVS_PRESENT(bp))
2097 new_state = DR_STATE_CONFIGURED;
2098 else
2099 new_state = DR_STATE_PARTIAL;
2100 if (bp->b_state != new_state) {
2101 dr_board_transition(bp, new_state);
2103 hp->h_bd->b_ostate = SBD_STAT_CONFIGURED;
2104 hp->h_bd->b_busy = 0;
2105 (void) drv_getparm(TIME, (void *)&hp->h_bd->b_time);
2109 static int
2110 dr_dev_status(dr_handle_t *hp)
2112 int nstat, mode, ncm, sz, pbsz, pnstat;
2113 dr_handle_t *shp;
2114 dr_devset_t devset = 0;
2115 sbd_stat_t *dstatp = NULL;
2116 sbd_dev_stat_t *devstatp;
2117 dr_board_t *bp;
2118 drmach_status_t pstat;
2119 int rv = 0;
2121 #ifdef _MULTI_DATAMODEL
2122 int sz32 = 0;
2123 #endif /* _MULTI_DATAMODEL */
2125 static fn_t f = "dr_dev_status";
2127 PR_ALL("%s...\n", f);
2129 mode = hp->h_mode;
2130 shp = hp;
2131 devset = shp->h_devset;
2132 bp = hp->h_bd;
2135 * Block out disconnect, unassign, IO unconfigure and
2136 * devinfo branch creation during status.
2138 mutex_enter(&bp->b_slock);
2139 while (bp->b_sflags & DR_BSLOCK) {
2140 if (cv_wait_sig(&bp->b_scv, &bp->b_slock) == 0) {
2141 mutex_exit(&bp->b_slock);
2142 return (EINTR);
2145 bp->b_sflags |= DR_BSLOCK;
2146 mutex_exit(&bp->b_slock);
2148 ncm = 1;
2149 if (hp->h_sbdcmd.cmd_cm.c_id.c_type == SBD_COMP_NONE) {
2150 if (dr_cmd_flags(hp) & SBD_FLAG_ALLCMP) {
2152 * Calculate the maximum number of components possible
2153 * for a board. This number will be used to size the
2154 * status scratch buffer used by board and component
2155 * status functions.
2156 * This buffer may differ in size from what is provided
2157 * by the plugin, since the known component set on the
2158 * board may change between the plugin's GETNCM call, and
2159 * the status call. Sizing will be adjusted to the plugin's
2160 * receptacle buffer at copyout time.
2162 ncm = MAX_CPU_UNITS_PER_BOARD +
2163 MAX_MEM_UNITS_PER_BOARD +
2164 MAX_IO_UNITS_PER_BOARD;
2166 } else {
2168 * In the case of c_type == SBD_COMP_NONE, and
2169 * SBD_FLAG_ALLCMP not specified, only the board
2170 * info is to be returned, no components.
2172 ncm = 0;
2173 devset = 0;
2177 sz = sizeof (sbd_stat_t);
2178 if (ncm > 1)
2179 sz += sizeof (sbd_dev_stat_t) * (ncm - 1);
2182 pbsz = (int)hp->h_sbdcmd.cmd_stat.s_nbytes;
2183 pnstat = (pbsz - sizeof (sbd_stat_t)) / sizeof (sbd_dev_stat_t);
2186 * s_nbytes describes the size of the preallocated user
2187 * buffer into which the application is execting to
2188 * receive the sbd_stat_t and sbd_dev_stat_t structures.
2191 #ifdef _MULTI_DATAMODEL
2194 * More buffer space is required for the 64bit to 32bit
2195 * conversion of data structures.
2197 if (ddi_model_convert_from(mode & FMODELS) == DDI_MODEL_ILP32) {
2198 sz32 = sizeof (sbd_stat32_t);
2199 if (ncm > 1)
2200 sz32 += sizeof (sbd_dev_stat32_t) * (ncm - 1);
2201 pnstat = (pbsz - sizeof (sbd_stat32_t))/
2202 sizeof (sbd_dev_stat32_t);
2205 sz += sz32;
2206 #endif
2208 * Since one sbd_dev_stat_t is included in the sbd_stat_t,
2209 * increment the plugin's nstat count.
2211 ++pnstat;
2213 if (bp->b_id == 0) {
2214 bzero(&pstat, sizeof (pstat));
2215 } else {
2216 sbd_error_t *err;
2218 err = drmach_status(bp->b_id, &pstat);
2219 if (err) {
2220 DRERR_SET_C(&hp->h_err, &err);
2221 rv = EIO;
2222 goto status_done;
2226 dstatp = (sbd_stat_t *)(void *)GETSTRUCT(char, sz);
2228 devstatp = &dstatp->s_stat[0];
2230 dstatp->s_board = bp->b_num;
2233 * Detect transitions between empty and disconnected.
2235 if (!pstat.empty && (bp->b_rstate == SBD_STAT_EMPTY))
2236 bp->b_rstate = SBD_STAT_DISCONNECTED;
2237 else if (pstat.empty && (bp->b_rstate == SBD_STAT_DISCONNECTED))
2238 bp->b_rstate = SBD_STAT_EMPTY;
2240 dstatp->s_rstate = bp->b_rstate;
2241 dstatp->s_ostate = bp->b_ostate;
2242 dstatp->s_cond = bp->b_cond = pstat.cond;
2243 dstatp->s_busy = bp->b_busy | pstat.busy;
2244 dstatp->s_time = bp->b_time;
2245 dstatp->s_power = pstat.powered;
2246 dstatp->s_assigned = bp->b_assigned = pstat.assigned;
2247 dstatp->s_nstat = nstat = 0;
2248 bcopy(&pstat.type[0], &dstatp->s_type[0], SBD_TYPE_LEN);
2249 bcopy(&pstat.info[0], &dstatp->s_info[0], SBD_MAX_INFO);
2251 devset &= DR_DEVS_PRESENT(bp);
2252 if (devset == 0) {
2254 * No device chosen.
2256 PR_ALL("%s: no device present\n", f);
2259 if (DEVSET_IN_SET(devset, SBD_COMP_CPU, DEVSET_ANYUNIT))
2260 if ((nstat = dr_cpu_status(hp, devset, devstatp)) > 0) {
2261 dstatp->s_nstat += nstat;
2262 devstatp += nstat;
2265 if (DEVSET_IN_SET(devset, SBD_COMP_MEM, DEVSET_ANYUNIT))
2266 if ((nstat = dr_mem_status(hp, devset, devstatp)) > 0) {
2267 dstatp->s_nstat += nstat;
2268 devstatp += nstat;
2271 if (DEVSET_IN_SET(devset, SBD_COMP_IO, DEVSET_ANYUNIT))
2272 if ((nstat = dr_io_status(hp, devset, devstatp)) > 0) {
2273 dstatp->s_nstat += nstat;
2274 devstatp += nstat;
2278 * Due to a possible change in number of components between
2279 * the time of plugin's GETNCM call and now, there may be
2280 * more or less components than the plugin's buffer can
2281 * hold. Adjust s_nstat accordingly.
2284 dstatp->s_nstat = dstatp->s_nstat > pnstat ? pnstat : dstatp->s_nstat;
2286 #ifdef _MULTI_DATAMODEL
2287 if (ddi_model_convert_from(mode & FMODELS) == DDI_MODEL_ILP32) {
2288 int i, j;
2289 sbd_stat32_t *dstat32p;
2291 dstat32p = (sbd_stat32_t *)devstatp;
2293 /* Alignment Paranoia */
2294 if ((ulong_t)dstat32p & 0x1) {
2295 PR_ALL("%s: alignment: sz=0x%lx dstat32p=0x%p\n",
2296 f, sizeof (sbd_stat32_t), (void *)dstat32p);
2297 DR_OP_INTERNAL_ERROR(hp);
2298 rv = EINVAL;
2299 goto status_done;
2302 /* paranoia: detect buffer overrun */
2303 if ((caddr_t)&dstat32p->s_stat[dstatp->s_nstat] >
2304 ((caddr_t)dstatp) + sz) {
2305 DR_OP_INTERNAL_ERROR(hp);
2306 rv = EINVAL;
2307 goto status_done;
2310 /* copy sbd_stat_t structure members */
2311 #define _SBD_STAT(t, m) dstat32p->m = (t)dstatp->m
2312 _SBD_STAT(int32_t, s_board);
2313 _SBD_STAT(int32_t, s_rstate);
2314 _SBD_STAT(int32_t, s_ostate);
2315 _SBD_STAT(int32_t, s_cond);
2316 _SBD_STAT(int32_t, s_busy);
2317 _SBD_STAT(time32_t, s_time);
2318 _SBD_STAT(uint32_t, s_power);
2319 _SBD_STAT(uint32_t, s_assigned);
2320 _SBD_STAT(int32_t, s_nstat);
2321 bcopy(&dstatp->s_type[0], &dstat32p->s_type[0],
2322 SBD_TYPE_LEN);
2323 bcopy(&dstatp->s_info[0], &dstat32p->s_info[0],
2324 SBD_MAX_INFO);
2325 #undef _SBD_STAT
2327 for (i = 0; i < dstatp->s_nstat; i++) {
2328 sbd_dev_stat_t *dsp = &dstatp->s_stat[i];
2329 sbd_dev_stat32_t *ds32p = &dstat32p->s_stat[i];
2330 #define _SBD_DEV_STAT(t, m) ds32p->m = (t)dsp->m
2332 /* copy sbd_cm_stat_t structure members */
2333 _SBD_DEV_STAT(int32_t, ds_type);
2334 _SBD_DEV_STAT(int32_t, ds_unit);
2335 _SBD_DEV_STAT(int32_t, ds_ostate);
2336 _SBD_DEV_STAT(int32_t, ds_cond);
2337 _SBD_DEV_STAT(int32_t, ds_busy);
2338 _SBD_DEV_STAT(int32_t, ds_suspend);
2339 _SBD_DEV_STAT(time32_t, ds_time);
2340 bcopy(&dsp->ds_name[0], &ds32p->ds_name[0],
2341 OBP_MAXPROPNAME);
2343 switch (dsp->ds_type) {
2344 case SBD_COMP_CPU:
2345 /* copy sbd_cpu_stat_t structure members */
2346 _SBD_DEV_STAT(int32_t, d_cpu.cs_isbootproc);
2347 _SBD_DEV_STAT(int32_t, d_cpu.cs_cpuid);
2348 _SBD_DEV_STAT(int32_t, d_cpu.cs_speed);
2349 _SBD_DEV_STAT(int32_t, d_cpu.cs_ecache);
2350 break;
2352 case SBD_COMP_MEM:
2353 /* copy sbd_mem_stat_t structure members */
2354 _SBD_DEV_STAT(int32_t, d_mem.ms_interleave);
2355 _SBD_DEV_STAT(uint32_t, d_mem.ms_basepfn);
2356 _SBD_DEV_STAT(uint32_t, d_mem.ms_totpages);
2357 _SBD_DEV_STAT(uint32_t, d_mem.ms_detpages);
2358 _SBD_DEV_STAT(int32_t, d_mem.ms_pageslost);
2359 _SBD_DEV_STAT(uint32_t, d_mem.ms_managed_pages);
2360 _SBD_DEV_STAT(uint32_t, d_mem.ms_noreloc_pages);
2361 _SBD_DEV_STAT(uint32_t, d_mem.ms_noreloc_first);
2362 _SBD_DEV_STAT(uint32_t, d_mem.ms_noreloc_last);
2363 _SBD_DEV_STAT(int32_t, d_mem.ms_cage_enabled);
2364 _SBD_DEV_STAT(int32_t, d_mem.ms_peer_is_target);
2365 bcopy(&dsp->d_mem.ms_peer_ap_id[0],
2366 &ds32p->d_mem.ms_peer_ap_id[0],
2367 sizeof (ds32p->d_mem.ms_peer_ap_id));
2368 break;
2370 case SBD_COMP_IO:
2371 /* copy sbd_io_stat_t structure members */
2372 _SBD_DEV_STAT(int32_t, d_io.is_referenced);
2373 _SBD_DEV_STAT(int32_t, d_io.is_unsafe_count);
2375 for (j = 0; j < SBD_MAX_UNSAFE; j++)
2376 _SBD_DEV_STAT(int32_t,
2377 d_io.is_unsafe_list[j]);
2379 bcopy(&dsp->d_io.is_pathname[0],
2380 &ds32p->d_io.is_pathname[0], MAXPATHLEN);
2381 break;
2383 case SBD_COMP_CMP:
2384 /* copy sbd_cmp_stat_t structure members */
2385 bcopy(&dsp->d_cmp.ps_cpuid[0],
2386 &ds32p->d_cmp.ps_cpuid[0],
2387 sizeof (ds32p->d_cmp.ps_cpuid));
2388 _SBD_DEV_STAT(int32_t, d_cmp.ps_ncores);
2389 _SBD_DEV_STAT(int32_t, d_cmp.ps_speed);
2390 _SBD_DEV_STAT(int32_t, d_cmp.ps_ecache);
2391 break;
2393 default:
2394 cmn_err(CE_WARN, "%s: unknown dev type (%d)",
2395 f, (int)dsp->ds_type);
2396 rv = EFAULT;
2397 goto status_done;
2399 #undef _SBD_DEV_STAT
2403 if (ddi_copyout((void *)dstat32p,
2404 hp->h_sbdcmd.cmd_stat.s_statp, pbsz, mode) != 0) {
2405 cmn_err(CE_WARN,
2406 "%s: failed to copyout status "
2407 "for board %d", f, bp->b_num);
2408 rv = EFAULT;
2409 goto status_done;
2411 } else
2412 #endif /* _MULTI_DATAMODEL */
2414 if (ddi_copyout((void *)dstatp, hp->h_sbdcmd.cmd_stat.s_statp,
2415 pbsz, mode) != 0) {
2416 cmn_err(CE_WARN,
2417 "%s: failed to copyout status for board %d",
2418 f, bp->b_num);
2419 rv = EFAULT;
2420 goto status_done;
2423 status_done:
2424 if (dstatp != NULL)
2425 FREESTRUCT(dstatp, char, sz);
2427 dr_unlock_status(bp);
2429 return (rv);
2432 static int
2433 dr_get_ncm(dr_handle_t *hp)
2435 int i;
2436 int ncm = 0;
2437 dr_devset_t devset;
2439 devset = DR_DEVS_PRESENT(hp->h_bd);
2440 if (hp->h_sbdcmd.cmd_cm.c_id.c_type != SBD_COMP_NONE)
2441 devset &= DEVSET(hp->h_sbdcmd.cmd_cm.c_id.c_type,
2442 DEVSET_ANYUNIT);
2445 * Handle CPUs first to deal with possible CMP
2446 * devices. If the CPU is a CMP, we need to only
2447 * increment ncm once even if there are multiple
2448 * cores for that CMP present in the devset.
2450 for (i = 0; i < MAX_CMP_UNITS_PER_BOARD; i++) {
2451 if (devset & DEVSET(SBD_COMP_CMP, i)) {
2452 ncm++;
2456 /* eliminate the CPU information from the devset */
2457 devset &= ~(DEVSET(SBD_COMP_CMP, DEVSET_ANYUNIT));
2459 for (i = 0; i < (sizeof (dr_devset_t) * 8); i++) {
2460 ncm += devset & 0x1;
2461 devset >>= 1;
2464 return (ncm);
2467 /* used by dr_mem.c */
2468 /* TODO: eliminate dr_boardlist */
2469 dr_board_t *
2470 dr_lookup_board(int board_num)
2472 dr_board_t *bp;
2474 ASSERT(board_num >= 0 && board_num < MAX_BOARDS);
2476 bp = &dr_boardlist[board_num];
2477 ASSERT(bp->b_num == board_num);
2479 return (bp);
2482 static dr_dev_unit_t *
2483 dr_get_dev_unit(dr_board_t *bp, sbd_comp_type_t nt, int unit_num)
2485 dr_dev_unit_t *dp;
2487 dp = DR_GET_BOARD_DEVUNIT(bp, nt, unit_num);
2488 ASSERT(dp->du_common.sbdev_bp == bp);
2489 ASSERT(dp->du_common.sbdev_unum == unit_num);
2490 ASSERT(dp->du_common.sbdev_type == nt);
2492 return (dp);
2495 dr_cpu_unit_t *
2496 dr_get_cpu_unit(dr_board_t *bp, int unit_num)
2498 dr_dev_unit_t *dp;
2500 ASSERT(unit_num >= 0 && unit_num < MAX_CPU_UNITS_PER_BOARD);
2502 dp = dr_get_dev_unit(bp, SBD_COMP_CPU, unit_num);
2503 return (&dp->du_cpu);
2506 dr_mem_unit_t *
2507 dr_get_mem_unit(dr_board_t *bp, int unit_num)
2509 dr_dev_unit_t *dp;
2511 ASSERT(unit_num >= 0 && unit_num < MAX_MEM_UNITS_PER_BOARD);
2513 dp = dr_get_dev_unit(bp, SBD_COMP_MEM, unit_num);
2514 return (&dp->du_mem);
2517 dr_io_unit_t *
2518 dr_get_io_unit(dr_board_t *bp, int unit_num)
2520 dr_dev_unit_t *dp;
2522 ASSERT(unit_num >= 0 && unit_num < MAX_IO_UNITS_PER_BOARD);
2524 dp = dr_get_dev_unit(bp, SBD_COMP_IO, unit_num);
2525 return (&dp->du_io);
2528 dr_common_unit_t *
2529 dr_get_common_unit(dr_board_t *bp, sbd_comp_type_t nt, int unum)
2531 dr_dev_unit_t *dp;
2533 dp = dr_get_dev_unit(bp, nt, unum);
2534 return (&dp->du_common);
2537 static dr_devset_t
2538 dr_dev2devset(sbd_comp_id_t *cid)
2540 static fn_t f = "dr_dev2devset";
2542 dr_devset_t devset;
2543 int unit = cid->c_unit;
2545 switch (cid->c_type) {
2546 case SBD_COMP_NONE:
2547 devset = DEVSET(SBD_COMP_CPU, DEVSET_ANYUNIT);
2548 devset |= DEVSET(SBD_COMP_MEM, DEVSET_ANYUNIT);
2549 devset |= DEVSET(SBD_COMP_IO, DEVSET_ANYUNIT);
2550 PR_ALL("%s: COMP_NONE devset = " DEVSET_FMT_STR "\n",
2551 f, DEVSET_FMT_ARG(devset));
2552 break;
2554 case SBD_COMP_CPU:
2555 if ((unit > MAX_CPU_UNITS_PER_BOARD) || (unit < 0)) {
2556 cmn_err(CE_WARN,
2557 "%s: invalid cpu unit# = %d",
2558 f, unit);
2559 devset = 0;
2560 } else {
2562 * Generate a devset that includes all the
2563 * cores of a CMP device. If this is not a
2564 * CMP, the extra cores will be eliminated
2565 * later since they are not present. This is
2566 * also true for CMP devices that do not have
2567 * all cores active.
2569 devset = DEVSET(SBD_COMP_CMP, unit);
2572 PR_ALL("%s: CPU devset = " DEVSET_FMT_STR "\n",
2573 f, DEVSET_FMT_ARG(devset));
2574 break;
2576 case SBD_COMP_MEM:
2577 if (unit == SBD_NULL_UNIT) {
2578 unit = 0;
2579 cid->c_unit = 0;
2582 if ((unit > MAX_MEM_UNITS_PER_BOARD) || (unit < 0)) {
2583 cmn_err(CE_WARN,
2584 "%s: invalid mem unit# = %d",
2585 f, unit);
2586 devset = 0;
2587 } else
2588 devset = DEVSET(cid->c_type, unit);
2590 PR_ALL("%s: MEM devset = " DEVSET_FMT_STR "\n",
2591 f, DEVSET_FMT_ARG(devset));
2592 break;
2594 case SBD_COMP_IO:
2595 if ((unit > MAX_IO_UNITS_PER_BOARD) || (unit < 0)) {
2596 cmn_err(CE_WARN,
2597 "%s: invalid io unit# = %d",
2598 f, unit);
2599 devset = 0;
2600 } else
2601 devset = DEVSET(cid->c_type, unit);
2603 PR_ALL("%s: IO devset = " DEVSET_FMT_STR "\n",
2604 f, DEVSET_FMT_ARG(devset));
2605 break;
2607 default:
2608 case SBD_COMP_UNKNOWN:
2609 devset = 0;
2610 break;
2613 return (devset);
2617 * Converts a dynamic attachment point name to a SBD_COMP_* type.
2618 * Returns SDB_COMP_UNKNOWN if name is not recognized.
2620 static int
2621 dr_dev_type_to_nt(char *type)
2623 int i;
2625 for (i = 0; dr_devattr[i].s_nodetype != SBD_COMP_UNKNOWN; i++)
2626 if (strcmp(dr_devattr[i].s_devtype, type) == 0)
2627 break;
2629 return (dr_devattr[i].s_nodetype);
2633 * Converts a SBD_COMP_* type to a dynamic attachment point name.
2634 * Return NULL if SBD_COMP_ type is not recognized.
2636 char *
2637 dr_nt_to_dev_type(int nt)
2639 int i;
2641 for (i = 0; dr_devattr[i].s_nodetype != SBD_COMP_UNKNOWN; i++)
2642 if (dr_devattr[i].s_nodetype == nt)
2643 break;
2645 return (dr_devattr[i].s_devtype);
2649 * State transition policy is that if there is some component for which
2650 * the state transition is valid, then let it through. The exception is
2651 * SBD_CMD_DISCONNECT. On disconnect, the state transition must be valid
2652 * for ALL components.
2653 * Returns the state that is in error, if any.
2655 static int
2656 dr_check_transition(dr_board_t *bp, dr_devset_t *devsetp,
2657 struct dr_state_trans *transp, int cmd)
2659 int s, ut;
2660 int state_err = 0;
2661 dr_devset_t devset;
2662 dr_common_unit_t *cp;
2663 static fn_t f = "dr_check_transition";
2665 devset = *devsetp;
2667 if (DEVSET_IN_SET(devset, SBD_COMP_CPU, DEVSET_ANYUNIT)) {
2668 for (ut = 0; ut < MAX_CPU_UNITS_PER_BOARD; ut++) {
2669 if (DEVSET_IN_SET(devset, SBD_COMP_CPU, ut) == 0)
2670 continue;
2672 cp = dr_get_common_unit(bp, SBD_COMP_CPU, ut);
2673 s = (int)cp->sbdev_state;
2674 if (!DR_DEV_IS_PRESENT(cp)) {
2675 DEVSET_DEL(devset, SBD_COMP_CPU, ut);
2676 } else {
2677 if (transp->x_op[s].x_rv) {
2678 if (!state_err)
2679 state_err = s;
2680 DEVSET_DEL(devset, SBD_COMP_CPU, ut);
2685 if (DEVSET_IN_SET(devset, SBD_COMP_MEM, DEVSET_ANYUNIT)) {
2686 for (ut = 0; ut < MAX_MEM_UNITS_PER_BOARD; ut++) {
2687 if (DEVSET_IN_SET(devset, SBD_COMP_MEM, ut) == 0)
2688 continue;
2690 cp = dr_get_common_unit(bp, SBD_COMP_MEM, ut);
2691 s = (int)cp->sbdev_state;
2692 if (!DR_DEV_IS_PRESENT(cp)) {
2693 DEVSET_DEL(devset, SBD_COMP_MEM, ut);
2694 } else {
2695 if (transp->x_op[s].x_rv) {
2696 if (!state_err)
2697 state_err = s;
2698 DEVSET_DEL(devset, SBD_COMP_MEM, ut);
2703 if (DEVSET_IN_SET(devset, SBD_COMP_IO, DEVSET_ANYUNIT)) {
2704 for (ut = 0; ut < MAX_IO_UNITS_PER_BOARD; ut++) {
2705 if (DEVSET_IN_SET(devset, SBD_COMP_IO, ut) == 0)
2706 continue;
2708 cp = dr_get_common_unit(bp, SBD_COMP_IO, ut);
2709 s = (int)cp->sbdev_state;
2710 if (!DR_DEV_IS_PRESENT(cp)) {
2711 DEVSET_DEL(devset, SBD_COMP_IO, ut);
2712 } else {
2713 if (transp->x_op[s].x_rv) {
2714 if (!state_err)
2715 state_err = s;
2716 DEVSET_DEL(devset, SBD_COMP_IO, ut);
2722 PR_ALL("%s: requested devset = 0x%x, final devset = 0x%x\n",
2723 f, (uint_t)*devsetp, (uint_t)devset);
2725 *devsetp = devset;
2727 * If there are some remaining components for which
2728 * this state transition is valid, then allow them
2729 * through, otherwise if none are left then return
2730 * the state error. The exception is SBD_CMD_DISCONNECT.
2731 * On disconnect, the state transition must be valid for ALL
2732 * components.
2734 if (cmd == SBD_CMD_DISCONNECT)
2735 return (state_err);
2736 return (devset ? 0 : state_err);
2739 void
2740 dr_device_transition(dr_common_unit_t *cp, dr_state_t st)
2742 PR_STATE("%s STATE %s(%d) -> %s(%d)\n",
2743 cp->sbdev_path,
2744 state_str[cp->sbdev_state], cp->sbdev_state,
2745 state_str[st], st);
2747 cp->sbdev_state = st;
2748 if (st == DR_STATE_CONFIGURED) {
2749 cp->sbdev_ostate = SBD_STAT_CONFIGURED;
2750 if (cp->sbdev_bp->b_ostate != SBD_STAT_CONFIGURED) {
2751 cp->sbdev_bp->b_ostate = SBD_STAT_CONFIGURED;
2752 (void) drv_getparm(TIME,
2753 (void *) &cp->sbdev_bp->b_time);
2755 } else
2756 cp->sbdev_ostate = SBD_STAT_UNCONFIGURED;
2758 (void) drv_getparm(TIME, (void *) &cp->sbdev_time);
2761 static void
2762 dr_board_transition(dr_board_t *bp, dr_state_t st)
2764 PR_STATE("BOARD %d STATE: %s(%d) -> %s(%d)\n",
2765 bp->b_num,
2766 state_str[bp->b_state], bp->b_state,
2767 state_str[st], st);
2769 bp->b_state = st;
2772 void
2773 dr_op_err(int ce, dr_handle_t *hp, int code, char *fmt, ...)
2775 sbd_error_t *err;
2776 va_list args;
2778 va_start(args, fmt);
2779 err = drerr_new_v(code, fmt, args);
2780 va_end(args);
2782 if (ce != CE_IGNORE)
2783 sbd_err_log(err, ce);
2785 DRERR_SET_C(&hp->h_err, &err);
2788 void
2789 dr_dev_err(int ce, dr_common_unit_t *cp, int code)
2791 sbd_error_t *err;
2793 err = drerr_new(0, code, cp->sbdev_path, NULL);
2795 if (ce != CE_IGNORE)
2796 sbd_err_log(err, ce);
2798 DRERR_SET_C(&cp->sbdev_error, &err);
2802 * A callback routine. Called from the drmach layer as a result of
2803 * call to drmach_board_find_devices from dr_init_devlists.
2805 static sbd_error_t *
2806 dr_dev_found(void *data, const char *name, int unum, drmachid_t id)
2808 dr_board_t *bp = data;
2809 dr_dev_unit_t *dp;
2810 int nt;
2811 static fn_t f = "dr_dev_found";
2813 PR_ALL("%s (board = %d, name = %s, unum = %d, id = %p)...\n",
2814 f, bp->b_num, name, unum, id);
2816 nt = dr_dev_type_to_nt((char *)name);
2817 if (nt == SBD_COMP_UNKNOWN) {
2819 * this should not happen. When it does, it indicates
2820 * a missmatch in devices supported by the drmach layer
2821 * vs devices supported by this layer.
2823 return (DR_INTERNAL_ERROR());
2826 dp = DR_GET_BOARD_DEVUNIT(bp, nt, unum);
2828 /* sanity check */
2829 ASSERT(dp->du_common.sbdev_bp == bp);
2830 ASSERT(dp->du_common.sbdev_unum == unum);
2831 ASSERT(dp->du_common.sbdev_type == nt);
2833 /* render dynamic attachment point path of this unit */
2834 (void) snprintf(dp->du_common.sbdev_path,
2835 sizeof (dp->du_common.sbdev_path), "%s::%s%d",
2836 bp->b_path, name, DR_UNUM2SBD_UNUM(unum, nt));
2838 dp->du_common.sbdev_id = id;
2839 DR_DEV_SET_PRESENT(&dp->du_common);
2841 bp->b_ndev++;
2843 return (NULL);
2846 static sbd_error_t *
2847 dr_init_devlists(dr_board_t *bp)
2849 int i;
2850 sbd_error_t *err;
2851 dr_dev_unit_t *dp;
2852 static fn_t f = "dr_init_devlists";
2854 PR_ALL("%s (%s)...\n", f, bp->b_path);
2856 /* sanity check */
2857 ASSERT(bp->b_ndev == 0);
2859 DR_DEVS_DISCONNECT(bp, (uint_t)-1);
2862 * This routine builds the board's devlist and initializes
2863 * the common portion of the unit data structures.
2864 * Note: because the common portion is considered
2865 * uninitialized, the dr_get_*_unit() routines can not
2866 * be used.
2870 * Clear out old entries, if any.
2872 for (i = 0; i < MAX_CPU_UNITS_PER_BOARD; i++) {
2873 dp = DR_GET_BOARD_DEVUNIT(bp, SBD_COMP_CPU, i);
2875 bzero(dp, sizeof (*dp));
2876 dp->du_common.sbdev_bp = bp;
2877 dp->du_common.sbdev_unum = i;
2878 dp->du_common.sbdev_type = SBD_COMP_CPU;
2881 for (i = 0; i < MAX_MEM_UNITS_PER_BOARD; i++) {
2882 dp = DR_GET_BOARD_DEVUNIT(bp, SBD_COMP_MEM, i);
2884 bzero(dp, sizeof (*dp));
2885 dp->du_common.sbdev_bp = bp;
2886 dp->du_common.sbdev_unum = i;
2887 dp->du_common.sbdev_type = SBD_COMP_MEM;
2890 for (i = 0; i < MAX_IO_UNITS_PER_BOARD; i++) {
2891 dp = DR_GET_BOARD_DEVUNIT(bp, SBD_COMP_IO, i);
2893 bzero(dp, sizeof (*dp));
2894 dp->du_common.sbdev_bp = bp;
2895 dp->du_common.sbdev_unum = i;
2896 dp->du_common.sbdev_type = SBD_COMP_IO;
2899 err = NULL;
2900 if (bp->b_id) {
2901 /* find devices on this board */
2902 err = drmach_board_find_devices(
2903 bp->b_id, bp, dr_dev_found);
2906 return (err);
2910 * Return the unit number of the respective drmachid if
2911 * it's found to be attached.
2913 static int
2914 dr_check_unit_attached(dr_common_unit_t *cp)
2916 int rv = 0;
2917 processorid_t cpuid;
2918 uint64_t basepa, endpa;
2919 struct memlist *ml;
2920 extern struct memlist *phys_install;
2921 sbd_error_t *err;
2922 int yes;
2923 static fn_t f = "dr_check_unit_attached";
2925 switch (cp->sbdev_type) {
2926 case SBD_COMP_CPU:
2927 err = drmach_cpu_get_id(cp->sbdev_id, &cpuid);
2928 if (err) {
2929 DRERR_SET_C(&cp->sbdev_error, &err);
2930 rv = -1;
2931 break;
2933 mutex_enter(&cpu_lock);
2934 if (cpu_get(cpuid) == NULL)
2935 rv = -1;
2936 mutex_exit(&cpu_lock);
2937 break;
2939 case SBD_COMP_MEM:
2940 err = drmach_mem_get_slice_info(cp->sbdev_id,
2941 &basepa, &endpa, NULL);
2942 if (err) {
2943 DRERR_SET_C(&cp->sbdev_error, &err);
2944 rv = -1;
2945 break;
2949 * Check if base address is in phys_install.
2951 memlist_read_lock();
2952 for (ml = phys_install; ml; ml = ml->ml_next)
2953 if ((endpa <= ml->ml_address) ||
2954 (basepa >= (ml->ml_address + ml->ml_size)))
2955 continue;
2956 else
2957 break;
2958 memlist_read_unlock();
2959 if (ml == NULL)
2960 rv = -1;
2961 break;
2963 case SBD_COMP_IO:
2964 err = drmach_io_is_attached(cp->sbdev_id, &yes);
2965 if (err) {
2966 DRERR_SET_C(&cp->sbdev_error, &err);
2967 rv = -1;
2968 break;
2969 } else if (!yes)
2970 rv = -1;
2971 break;
2973 default:
2974 PR_ALL("%s: unexpected nodetype(%d) for id 0x%p\n",
2975 f, cp->sbdev_type, cp->sbdev_id);
2976 rv = -1;
2977 break;
2980 return (rv);
2984 * See if drmach recognizes the passthru command. DRMACH expects the
2985 * id to identify the thing to which the command is being applied. Using
2986 * nonsense SBD terms, that information has been perversely encoded in the
2987 * c_id member of the sbd_cmd_t structure. This logic reads those tea
2988 * leaves, finds the associated drmach id, then calls drmach to process
2989 * the passthru command.
2991 static int
2992 dr_pt_try_drmach(dr_handle_t *hp)
2994 dr_board_t *bp = hp->h_bd;
2995 sbd_comp_id_t *comp_id = &hp->h_sbdcmd.cmd_cm.c_id;
2996 drmachid_t id;
2998 if (comp_id->c_type == SBD_COMP_NONE) {
2999 id = bp->b_id;
3000 } else {
3001 sbd_comp_type_t nt;
3003 nt = dr_dev_type_to_nt(comp_id->c_name);
3004 if (nt == SBD_COMP_UNKNOWN) {
3005 dr_op_err(CE_IGNORE, hp, ESBD_INVAL, comp_id->c_name);
3006 id = 0;
3007 } else {
3008 /* pt command applied to dynamic attachment point */
3009 dr_common_unit_t *cp;
3010 cp = dr_get_common_unit(bp, nt, comp_id->c_unit);
3011 id = cp->sbdev_id;
3015 if (hp->h_err == NULL)
3016 hp->h_err = drmach_passthru(id, &hp->h_opts);
3018 return (hp->h_err == NULL ? 0 : -1);
3021 static int
3022 dr_pt_ioctl(dr_handle_t *hp)
3024 int cmd, rv, len;
3025 int32_t sz;
3026 int found;
3027 char *copts;
3028 static fn_t f = "dr_pt_ioctl";
3030 PR_ALL("%s...\n", f);
3032 sz = hp->h_opts.size;
3033 copts = hp->h_opts.copts;
3035 if (sz == 0 || copts == (char *)NULL) {
3036 cmn_err(CE_WARN, "%s: invalid passthru args", f);
3037 return (EINVAL);
3040 found = 0;
3041 for (cmd = 0; cmd < (sizeof (pt_arr) / sizeof (pt_arr[0])); cmd++) {
3042 len = strlen(pt_arr[cmd].pt_name);
3043 found = (strncmp(pt_arr[cmd].pt_name, copts, len) == 0);
3044 if (found)
3045 break;
3048 if (found)
3049 rv = (*pt_arr[cmd].pt_func)(hp);
3050 else
3051 rv = dr_pt_try_drmach(hp);
3053 return (rv);
3057 * Called at driver load time to determine the state and condition
3058 * of an existing board in the system.
3060 static void
3061 dr_board_discovery(dr_board_t *bp)
3063 int i;
3064 dr_devset_t devs_lost, devs_attached = 0;
3065 dr_cpu_unit_t *cp;
3066 dr_mem_unit_t *mp;
3067 dr_io_unit_t *ip;
3068 static fn_t f = "dr_board_discovery";
3070 if (DR_DEVS_PRESENT(bp) == 0) {
3071 PR_ALL("%s: board %d has no devices present\n",
3072 f, bp->b_num);
3073 return;
3077 * Check for existence of cpus.
3079 for (i = 0; i < MAX_CPU_UNITS_PER_BOARD; i++) {
3080 cp = dr_get_cpu_unit(bp, i);
3082 if (!DR_DEV_IS_PRESENT(&cp->sbc_cm))
3083 continue;
3085 if (dr_check_unit_attached(&cp->sbc_cm) >= 0) {
3086 DR_DEV_SET_ATTACHED(&cp->sbc_cm);
3087 DEVSET_ADD(devs_attached, SBD_COMP_CPU, i);
3088 PR_ALL("%s: board %d, cpu-unit %d - attached\n",
3089 f, bp->b_num, i);
3091 dr_init_cpu_unit(cp);
3095 * Check for existence of memory.
3097 for (i = 0; i < MAX_MEM_UNITS_PER_BOARD; i++) {
3098 mp = dr_get_mem_unit(bp, i);
3100 if (!DR_DEV_IS_PRESENT(&mp->sbm_cm))
3101 continue;
3103 if (dr_check_unit_attached(&mp->sbm_cm) >= 0) {
3104 DR_DEV_SET_ATTACHED(&mp->sbm_cm);
3105 DEVSET_ADD(devs_attached, SBD_COMP_MEM, i);
3106 PR_ALL("%s: board %d, mem-unit %d - attached\n",
3107 f, bp->b_num, i);
3109 dr_init_mem_unit(mp);
3113 * Check for i/o state.
3115 for (i = 0; i < MAX_IO_UNITS_PER_BOARD; i++) {
3116 ip = dr_get_io_unit(bp, i);
3118 if (!DR_DEV_IS_PRESENT(&ip->sbi_cm))
3119 continue;
3121 if (dr_check_unit_attached(&ip->sbi_cm) >= 0) {
3123 * Found it!
3125 DR_DEV_SET_ATTACHED(&ip->sbi_cm);
3126 DEVSET_ADD(devs_attached, SBD_COMP_IO, i);
3127 PR_ALL("%s: board %d, io-unit %d - attached\n",
3128 f, bp->b_num, i);
3130 dr_init_io_unit(ip);
3133 DR_DEVS_CONFIGURE(bp, devs_attached);
3134 if (devs_attached && ((devs_lost = DR_DEVS_UNATTACHED(bp)) != 0)) {
3135 int ut;
3138 * It is not legal on board discovery to have a
3139 * board that is only partially attached. A board
3140 * is either all attached or all connected. If a
3141 * board has at least one attached device, then
3142 * the the remaining devices, if any, must have
3143 * been lost or disconnected. These devices can
3144 * only be recovered by a full attach from scratch.
3145 * Note that devices previously in the unreferenced
3146 * state are subsequently lost until the next full
3147 * attach. This is necessary since the driver unload
3148 * that must have occurred would have wiped out the
3149 * information necessary to re-configure the device
3150 * back online, e.g. memlist.
3152 PR_ALL("%s: some devices LOST (" DEVSET_FMT_STR ")...\n",
3153 f, DEVSET_FMT_ARG(devs_lost));
3155 for (ut = 0; ut < MAX_CPU_UNITS_PER_BOARD; ut++) {
3156 if (!DEVSET_IN_SET(devs_lost, SBD_COMP_CPU, ut))
3157 continue;
3159 cp = dr_get_cpu_unit(bp, ut);
3160 dr_device_transition(&cp->sbc_cm, DR_STATE_EMPTY);
3163 for (ut = 0; ut < MAX_MEM_UNITS_PER_BOARD; ut++) {
3164 if (!DEVSET_IN_SET(devs_lost, SBD_COMP_MEM, ut))
3165 continue;
3167 mp = dr_get_mem_unit(bp, ut);
3168 dr_device_transition(&mp->sbm_cm, DR_STATE_EMPTY);
3171 for (ut = 0; ut < MAX_IO_UNITS_PER_BOARD; ut++) {
3172 if (!DEVSET_IN_SET(devs_lost, SBD_COMP_IO, ut))
3173 continue;
3175 ip = dr_get_io_unit(bp, ut);
3176 dr_device_transition(&ip->sbi_cm, DR_STATE_EMPTY);
3179 DR_DEVS_DISCONNECT(bp, devs_lost);
3183 static int
3184 dr_board_init(dr_board_t *bp, dev_info_t *dip, int bd)
3186 sbd_error_t *err;
3188 mutex_init(&bp->b_lock, NULL, MUTEX_DRIVER, NULL);
3189 mutex_init(&bp->b_slock, NULL, MUTEX_DRIVER, NULL);
3190 cv_init(&bp->b_scv, NULL, CV_DRIVER, NULL);
3191 bp->b_rstate = SBD_STAT_EMPTY;
3192 bp->b_ostate = SBD_STAT_UNCONFIGURED;
3193 bp->b_cond = SBD_COND_UNKNOWN;
3194 (void) drv_getparm(TIME, (void *)&bp->b_time);
3196 (void) drmach_board_lookup(bd, &bp->b_id);
3197 bp->b_num = bd;
3198 bp->b_dip = dip;
3200 bp->b_dev[DEVSET_NIX(SBD_COMP_CPU)] = GETSTRUCT(dr_dev_unit_t,
3201 MAX_CPU_UNITS_PER_BOARD);
3203 bp->b_dev[DEVSET_NIX(SBD_COMP_MEM)] = GETSTRUCT(dr_dev_unit_t,
3204 MAX_MEM_UNITS_PER_BOARD);
3206 bp->b_dev[DEVSET_NIX(SBD_COMP_IO)] = GETSTRUCT(dr_dev_unit_t,
3207 MAX_IO_UNITS_PER_BOARD);
3210 * Initialize the devlists
3212 err = dr_init_devlists(bp);
3213 if (err) {
3214 sbd_err_clear(&err);
3215 dr_board_destroy(bp);
3216 return (-1);
3217 } else if (bp->b_ndev == 0) {
3218 dr_board_transition(bp, DR_STATE_EMPTY);
3219 } else {
3221 * Couldn't have made it down here without
3222 * having found at least one device.
3224 ASSERT(DR_DEVS_PRESENT(bp) != 0);
3226 * Check the state of any possible devices on the
3227 * board.
3229 dr_board_discovery(bp);
3231 bp->b_assigned = 1;
3233 if (DR_DEVS_UNATTACHED(bp) == 0) {
3235 * The board has no unattached devices, therefore
3236 * by reason of insanity it must be configured!
3238 dr_board_transition(bp, DR_STATE_CONFIGURED);
3239 bp->b_ostate = SBD_STAT_CONFIGURED;
3240 bp->b_rstate = SBD_STAT_CONNECTED;
3241 bp->b_cond = SBD_COND_OK;
3242 (void) drv_getparm(TIME, (void *)&bp->b_time);
3243 } else if (DR_DEVS_ATTACHED(bp)) {
3244 dr_board_transition(bp, DR_STATE_PARTIAL);
3245 bp->b_ostate = SBD_STAT_CONFIGURED;
3246 bp->b_rstate = SBD_STAT_CONNECTED;
3247 bp->b_cond = SBD_COND_OK;
3248 (void) drv_getparm(TIME, (void *)&bp->b_time);
3249 } else {
3250 dr_board_transition(bp, DR_STATE_CONNECTED);
3251 bp->b_rstate = SBD_STAT_CONNECTED;
3252 (void) drv_getparm(TIME, (void *)&bp->b_time);
3256 return (0);
3259 static void
3260 dr_board_destroy(dr_board_t *bp)
3262 PR_ALL("dr_board_destroy: num %d, path %s\n",
3263 bp->b_num, bp->b_path);
3265 dr_board_transition(bp, DR_STATE_EMPTY);
3266 bp->b_rstate = SBD_STAT_EMPTY;
3267 (void) drv_getparm(TIME, (void *)&bp->b_time);
3270 * Free up MEM unit structs.
3272 FREESTRUCT(bp->b_dev[DEVSET_NIX(SBD_COMP_MEM)],
3273 dr_dev_unit_t, MAX_MEM_UNITS_PER_BOARD);
3274 bp->b_dev[DEVSET_NIX(SBD_COMP_MEM)] = NULL;
3276 * Free up CPU unit structs.
3278 FREESTRUCT(bp->b_dev[DEVSET_NIX(SBD_COMP_CPU)],
3279 dr_dev_unit_t, MAX_CPU_UNITS_PER_BOARD);
3280 bp->b_dev[DEVSET_NIX(SBD_COMP_CPU)] = NULL;
3282 * Free up IO unit structs.
3284 FREESTRUCT(bp->b_dev[DEVSET_NIX(SBD_COMP_IO)],
3285 dr_dev_unit_t, MAX_IO_UNITS_PER_BOARD);
3286 bp->b_dev[DEVSET_NIX(SBD_COMP_IO)] = NULL;
3288 mutex_destroy(&bp->b_lock);
3289 mutex_destroy(&bp->b_slock);
3290 cv_destroy(&bp->b_scv);
3293 * Reset the board structure to its initial state, otherwise it will
3294 * cause trouble on the next call to dr_board_init() for the same board.
3295 * dr_board_init() may be called multiple times for the same board
3296 * if DR driver fails to initialize some boards.
3298 bzero(bp, sizeof (*bp));
3301 void
3302 dr_lock_status(dr_board_t *bp)
3304 mutex_enter(&bp->b_slock);
3305 while (bp->b_sflags & DR_BSLOCK)
3306 cv_wait(&bp->b_scv, &bp->b_slock);
3307 bp->b_sflags |= DR_BSLOCK;
3308 mutex_exit(&bp->b_slock);
3311 void
3312 dr_unlock_status(dr_board_t *bp)
3314 mutex_enter(&bp->b_slock);
3315 bp->b_sflags &= ~DR_BSLOCK;
3316 cv_signal(&bp->b_scv);
3317 mutex_exit(&bp->b_slock);
3321 * Extract flags passed via ioctl.
3324 dr_cmd_flags(dr_handle_t *hp)
3326 return (hp->h_sbdcmd.cmd_cm.c_flags);