midlevel.c revision 4119:293019c5ea1f
1/*
2 * CDDL HEADER START
3 *
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.
7 *
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.
12 *
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]
18 *
19 * CDDL HEADER END
20 */
21/*
22 * Copyright 2007 Sun Microsystems, Inc.  All rights reserved.
23 * Use is subject to license terms.
24 */
25
26#pragma ident	"%Z%%M%	%I%	%E% SMI"
27
28#include "libscf_impl.h"
29
30#include <libuutil.h>
31#include <stdio.h>
32#include <strings.h>
33#include <string.h>
34#include <stdlib.h>
35#include <sys/param.h>
36#include <errno.h>
37#include <libgen.h>
38#include "midlevel_impl.h"
39#include "lowlevel_impl.h"
40
41#ifndef NDEBUG
42#define	bad_error(func, err)	{					\
43	uu_warn("%s:%d: %s failed with unexpected error %d.  Aborting.\n", \
44	    __FILE__, __LINE__, func, err);				\
45	abort();							\
46}
47#else
48#define	bad_error(func, err)	abort()
49#endif
50
51/* Path to speedy files area must end with a slash */
52#define	SMF_SPEEDY_FILES_PATH		"/etc/svc/volatile/"
53
54/*
55 * Internal private function that creates and binds a handle.
56 */
57static scf_handle_t *
58handle_create(void)
59{
60	scf_handle_t *h;
61
62	h = scf_handle_create(SCF_VERSION);
63	if (h == NULL)
64		return (NULL);
65
66	if (scf_handle_bind(h) == -1) {
67		scf_handle_destroy(h);
68		return (NULL);
69	}
70	return (h);
71}
72
73void
74scf_simple_handle_destroy(scf_simple_handle_t *simple_h)
75{
76	if (simple_h == NULL)
77		return;
78
79	scf_pg_destroy(simple_h->running_pg);
80	scf_pg_destroy(simple_h->editing_pg);
81	scf_snapshot_destroy(simple_h->snap);
82	scf_instance_destroy(simple_h->inst);
83	scf_handle_destroy(simple_h->h);
84	uu_free(simple_h);
85}
86
87/*
88 * Given a base service FMRI and the names of a property group and property,
89 * assemble_fmri() merges them into a property FMRI.  Note that if the base
90 * FMRI is NULL, assemble_fmri() gets the base FMRI from scf_myname().
91 */
92
93static char *
94assemble_fmri(scf_handle_t *h, const char *base, const char *pg,
95    const char *prop)
96{
97	size_t	fmri_sz, pglen;
98	ssize_t baselen;
99	char	*fmri_buf;
100
101	if (prop == NULL) {
102		(void) scf_set_error(SCF_ERROR_INVALID_ARGUMENT);
103		return (NULL);
104	}
105
106	if (pg == NULL)
107		pglen = strlen(SCF_PG_APP_DEFAULT);
108	else
109		pglen = strlen(pg);
110
111	if (base == NULL) {
112		if ((baselen = scf_myname(h, NULL, 0)) == -1)
113			return (NULL);
114	} else {
115		baselen = strlen(base);
116	}
117
118	fmri_sz = baselen + sizeof (SCF_FMRI_PROPERTYGRP_PREFIX) - 1 +
119	    pglen + sizeof (SCF_FMRI_PROPERTY_PREFIX) - 1 +
120	    strlen(prop) + 1;
121
122	if ((fmri_buf = malloc(fmri_sz)) == NULL) {
123		(void) scf_set_error(SCF_ERROR_NO_MEMORY);
124		return (NULL);
125	}
126
127	if (base == NULL) {
128		if (scf_myname(h, fmri_buf, fmri_sz) == -1) {
129			free(fmri_buf);
130			return (NULL);
131		}
132	} else {
133		(void) strcpy(fmri_buf, base);
134	}
135
136	(void) strcat(fmri_buf, SCF_FMRI_PROPERTYGRP_PREFIX);
137
138	if (pg == NULL)
139		(void) strcat(fmri_buf, SCF_PG_APP_DEFAULT);
140	else
141		(void) strcat(fmri_buf, pg);
142
143	(void) strcat(fmri_buf, SCF_FMRI_PROPERTY_PREFIX);
144	(void) strcat(fmri_buf, prop);
145	return (fmri_buf);
146}
147
148/*
149 * Given a property, this function allocates and fills an scf_simple_prop_t
150 * with the data it contains.
151 */
152
153static scf_simple_prop_t *
154fill_prop(scf_property_t *prop, const char *pgname, const char *propname,
155    scf_handle_t *h)
156{
157	scf_simple_prop_t 		*ret;
158	scf_iter_t 			*iter;
159	scf_value_t 			*val;
160	int 				iterret, i;
161	ssize_t 			valsize, numvals;
162	union scf_simple_prop_val 	*vallist = NULL, *vallist_backup = NULL;
163
164	if ((ret = malloc(sizeof (*ret))) == NULL) {
165		(void) scf_set_error(SCF_ERROR_NO_MEMORY);
166		return (NULL);
167	}
168
169	ret->pr_next = NULL;
170	ret->pr_pg = NULL;
171	ret->pr_iter = 0;
172
173	if (pgname == NULL)
174		ret->pr_pgname = strdup(SCF_PG_APP_DEFAULT);
175	else
176		ret->pr_pgname = strdup(pgname);
177
178	if (ret->pr_pgname == NULL) {
179		(void) scf_set_error(SCF_ERROR_NO_MEMORY);
180		free(ret);
181		return (NULL);
182	}
183
184	if ((ret->pr_propname = strdup(propname)) == NULL) {
185		(void) scf_set_error(SCF_ERROR_NO_MEMORY);
186		free(ret->pr_pgname);
187		free(ret);
188		return (NULL);
189	}
190
191	if (scf_property_type(prop, &ret->pr_type) == -1)
192		goto error3;
193
194	if ((iter = scf_iter_create(h)) == NULL)
195		goto error3;
196	if ((val = scf_value_create(h)) == NULL) {
197		scf_iter_destroy(iter);
198		goto error3;
199	}
200
201	if (scf_iter_property_values(iter, prop) == -1)
202		goto error1;
203
204	for (numvals = 0; (iterret = scf_iter_next_value(iter, val)) == 1;
205	    numvals++) {
206		vallist_backup = vallist;
207		if ((vallist = realloc(vallist, (numvals + 1) *
208		    sizeof (*vallist))) == NULL) {
209			vallist = vallist_backup;
210			goto error1;
211		}
212
213		switch (ret->pr_type) {
214		case SCF_TYPE_BOOLEAN:
215			if (scf_value_get_boolean(val,
216			    &vallist[numvals].pv_bool) == -1)
217				goto error1;
218			break;
219
220		case SCF_TYPE_COUNT:
221			if (scf_value_get_count(val,
222			    &vallist[numvals].pv_uint) == -1)
223				goto error1;
224			break;
225
226		case SCF_TYPE_INTEGER:
227			if (scf_value_get_integer(val,
228			    &vallist[numvals].pv_int) == -1)
229				goto error1;
230			break;
231
232		case SCF_TYPE_TIME:
233			if (scf_value_get_time(val,
234			    &vallist[numvals].pv_time.t_sec,
235			    &vallist[numvals].pv_time.t_nsec) == -1)
236				goto error1;
237			break;
238
239		case SCF_TYPE_ASTRING:
240			vallist[numvals].pv_str = NULL;
241			if ((valsize = scf_value_get_astring(val, NULL, 0)) ==
242			    -1)
243				goto error1;
244			if ((vallist[numvals].pv_str = malloc(valsize+1)) ==
245			    NULL) {
246				(void) scf_set_error(SCF_ERROR_NO_MEMORY);
247				goto error1;
248			}
249			if (scf_value_get_astring(val,
250			    vallist[numvals].pv_str, valsize+1) == -1) {
251				free(vallist[numvals].pv_str);
252				goto error1;
253			}
254			break;
255
256		case SCF_TYPE_USTRING:
257		case SCF_TYPE_HOST:
258		case SCF_TYPE_HOSTNAME:
259		case SCF_TYPE_NET_ADDR_V4:
260		case SCF_TYPE_NET_ADDR_V6:
261		case SCF_TYPE_URI:
262		case SCF_TYPE_FMRI:
263			vallist[numvals].pv_str = NULL;
264			if ((valsize = scf_value_get_ustring(val, NULL, 0)) ==
265			    -1)
266				goto error1;
267			if ((vallist[numvals].pv_str = malloc(valsize+1)) ==
268			    NULL) {
269				(void) scf_set_error(SCF_ERROR_NO_MEMORY);
270				goto error1;
271			}
272			if (scf_value_get_ustring(val,
273			    vallist[numvals].pv_str, valsize+1) == -1) {
274				free(vallist[numvals].pv_str);
275				goto error1;
276			}
277			break;
278
279		case SCF_TYPE_OPAQUE:
280			vallist[numvals].pv_opaque.o_value = NULL;
281			if ((valsize = scf_value_get_opaque(val, NULL, 0)) ==
282			    -1)
283				goto error1;
284			if ((vallist[numvals].pv_opaque.o_value =
285			    malloc(valsize)) == NULL) {
286				(void) scf_set_error(SCF_ERROR_NO_MEMORY);
287				goto error1;
288			}
289			vallist[numvals].pv_opaque.o_size = valsize;
290			if (scf_value_get_opaque(val,
291			    vallist[numvals].pv_opaque.o_value,
292			    valsize) == -1) {
293				free(vallist[numvals].pv_opaque.o_value);
294				goto error1;
295			}
296			break;
297
298		default:
299			(void) scf_set_error(SCF_ERROR_INTERNAL);
300			goto error1;
301
302		}
303	}
304
305	if (iterret == -1) {
306		if (scf_error() != SCF_ERROR_CONNECTION_BROKEN)
307			(void) scf_set_error(SCF_ERROR_INTERNAL);
308		goto error1;
309	}
310
311	ret->pr_vallist = vallist;
312	ret->pr_numvalues = numvals;
313
314	scf_iter_destroy(iter);
315	(void) scf_value_destroy(val);
316
317	return (ret);
318
319	/*
320	 * Exit point for a successful call.  Below this line are exit points
321	 * for failures at various stages during the function.
322	 */
323
324error1:
325	if (vallist == NULL)
326		goto error2;
327
328	switch (ret->pr_type) {
329	case SCF_TYPE_ASTRING:
330	case SCF_TYPE_USTRING:
331	case SCF_TYPE_HOST:
332	case SCF_TYPE_HOSTNAME:
333	case SCF_TYPE_NET_ADDR_V4:
334	case SCF_TYPE_NET_ADDR_V6:
335	case SCF_TYPE_URI:
336	case SCF_TYPE_FMRI: {
337		for (i = 0; i < numvals; i++) {
338			free(vallist[i].pv_str);
339		}
340		break;
341	}
342	case SCF_TYPE_OPAQUE: {
343		for (i = 0; i < numvals; i++) {
344			free(vallist[i].pv_opaque.o_value);
345		}
346		break;
347	}
348	default:
349		break;
350	}
351
352	free(vallist);
353
354error2:
355	scf_iter_destroy(iter);
356	(void) scf_value_destroy(val);
357
358error3:
359	free(ret->pr_pgname);
360	free(ret->pr_propname);
361	free(ret);
362	return (NULL);
363}
364
365/*
366 * insert_app_props iterates over a property iterator, getting all the
367 * properties from a property group, and adding or overwriting them into
368 * a simple_app_props_t.  This is used by scf_simple_app_props_get to provide
369 * service/instance composition while filling the app_props_t.
370 * insert_app_props iterates over a single property group.
371 */
372
373static int
374insert_app_props(scf_iter_t *propiter, char *pgname, char *propname, struct
375    scf_simple_pg *thispg, scf_property_t *prop, size_t namelen,
376    scf_handle_t *h)
377{
378	scf_simple_prop_t	*thisprop, *prevprop, *newprop;
379	uint8_t			found;
380	int			propiter_ret;
381
382	while ((propiter_ret = scf_iter_next_property(propiter, prop)) == 1) {
383
384		if (scf_property_get_name(prop, propname, namelen) < 0) {
385			if (scf_error() == SCF_ERROR_NOT_SET)
386				(void) scf_set_error(SCF_ERROR_INTERNAL);
387			return (-1);
388		}
389
390		thisprop = thispg->pg_proplist;
391		prevprop = thispg->pg_proplist;
392		found = 0;
393
394		while ((thisprop != NULL) && (!found)) {
395			if (strcmp(thisprop->pr_propname, propname) == 0) {
396				found = 1;
397				if ((newprop = fill_prop(prop, pgname,
398				    propname, h)) == NULL)
399					return (-1);
400
401				if (thisprop == thispg->pg_proplist)
402					thispg->pg_proplist = newprop;
403				else
404					prevprop->pr_next = newprop;
405
406				newprop->pr_pg = thispg;
407				newprop->pr_next = thisprop->pr_next;
408				scf_simple_prop_free(thisprop);
409				thisprop = NULL;
410			} else {
411				if (thisprop != thispg->pg_proplist)
412					prevprop = prevprop->pr_next;
413				thisprop = thisprop->pr_next;
414			}
415		}
416
417		if (!found) {
418			if ((newprop = fill_prop(prop, pgname, propname, h)) ==
419			    NULL)
420				return (-1);
421
422			if (thispg->pg_proplist == NULL)
423				thispg->pg_proplist = newprop;
424			else
425				prevprop->pr_next = newprop;
426
427			newprop->pr_pg = thispg;
428		}
429	}
430
431	if (propiter_ret == -1) {
432		if (scf_error() != SCF_ERROR_CONNECTION_BROKEN)
433			(void) scf_set_error(SCF_ERROR_INTERNAL);
434		return (-1);
435	}
436
437	return (0);
438}
439
440
441/*
442 * Sets up e in tx to set pname's values.  Returns 0 on success or -1 on
443 * failure, with scf_error() set to
444 *   SCF_ERROR_HANDLE_MISMATCH - tx & e are derived from different handles
445 *   SCF_ERROR_INVALID_ARGUMENT - pname or ty are invalid
446 *   SCF_ERROR_NOT_BOUND - handle is not bound
447 *   SCF_ERROR_CONNECTION_BROKEN - connection was broken
448 *   SCF_ERROR_NOT_SET - tx has not been started
449 *   SCF_ERROR_DELETED - the pg tx was started on was deleted
450 */
451static int
452transaction_property_set(scf_transaction_t *tx, scf_transaction_entry_t *e,
453    const char *pname, scf_type_t ty)
454{
455	for (;;) {
456		if (scf_transaction_property_change_type(tx, e, pname, ty) == 0)
457			return (0);
458
459		switch (scf_error()) {
460		case SCF_ERROR_HANDLE_MISMATCH:
461		case SCF_ERROR_INVALID_ARGUMENT:
462		case SCF_ERROR_NOT_BOUND:
463		case SCF_ERROR_CONNECTION_BROKEN:
464		case SCF_ERROR_NOT_SET:
465		case SCF_ERROR_DELETED:
466		default:
467			return (-1);
468
469		case SCF_ERROR_NOT_FOUND:
470			break;
471		}
472
473		if (scf_transaction_property_new(tx, e, pname, ty) == 0)
474			return (0);
475
476		switch (scf_error()) {
477		case SCF_ERROR_HANDLE_MISMATCH:
478		case SCF_ERROR_INVALID_ARGUMENT:
479		case SCF_ERROR_NOT_BOUND:
480		case SCF_ERROR_CONNECTION_BROKEN:
481		case SCF_ERROR_NOT_SET:
482		case SCF_ERROR_DELETED:
483		default:
484			return (-1);
485
486		case SCF_ERROR_EXISTS:
487			break;
488		}
489	}
490}
491
492static int
493get_inst_enabled(const scf_instance_t *inst, const char *pgname)
494{
495	scf_propertygroup_t 	*gpg = NULL;
496	scf_property_t 		*eprop = NULL;
497	scf_value_t 		*v = NULL;
498	scf_handle_t		*h = NULL;
499	uint8_t			enabled;
500	int			ret = -1;
501
502	if ((h = scf_instance_handle(inst)) == NULL)
503		return (-1);
504
505	if ((gpg = scf_pg_create(h)) == NULL ||
506	    (eprop = scf_property_create(h)) == NULL ||
507	    (v = scf_value_create(h)) == NULL)
508		goto out;
509
510	if (scf_instance_get_pg(inst, pgname, gpg) ||
511	    scf_pg_get_property(gpg, SCF_PROPERTY_ENABLED, eprop) ||
512	    scf_property_get_value(eprop, v) ||
513	    scf_value_get_boolean(v, &enabled))
514		goto out;
515	ret = enabled;
516
517out:
518	scf_pg_destroy(gpg);
519	scf_property_destroy(eprop);
520	scf_value_destroy(v);
521	return (ret);
522}
523
524/*
525 * set_inst_enabled() is a "master" enable/disable call that takes the
526 * instance and the desired state for the enabled bit in the instance's
527 * named property group.  If the group doesn't exist, it's created with the
528 * given flags.  Called by smf_{dis,en}able_instance().
529 */
530static int
531set_inst_enabled(const scf_instance_t *inst, uint8_t desired,
532    const char *pgname, uint32_t pgflags)
533{
534	scf_transaction_t 	*tx = NULL;
535	scf_transaction_entry_t *ent = NULL;
536	scf_propertygroup_t 	*gpg = NULL;
537	scf_property_t 		*eprop = NULL;
538	scf_value_t 		*v = NULL;
539	scf_handle_t		*h = NULL;
540	int 			ret = -1;
541	int			committed;
542	uint8_t			b;
543
544	if ((h = scf_instance_handle(inst)) == NULL)
545		return (-1);
546
547	if ((gpg = scf_pg_create(h)) == NULL ||
548	    (eprop = scf_property_create(h)) == NULL ||
549	    (v = scf_value_create(h)) == NULL ||
550	    (tx = scf_transaction_create(h)) == NULL ||
551	    (ent = scf_entry_create(h)) == NULL)
552		goto out;
553
554get:
555	if (scf_instance_get_pg(inst, pgname, gpg) == -1) {
556		if (scf_error() != SCF_ERROR_NOT_FOUND)
557			goto out;
558
559		if (scf_instance_add_pg(inst, pgname, SCF_GROUP_FRAMEWORK,
560		    pgflags, gpg) == -1) {
561			if (scf_error() != SCF_ERROR_EXISTS)
562				goto out;
563			goto get;
564		}
565	}
566	if (scf_pg_get_property(gpg, SCF_PROPERTY_ENABLED, eprop) == -1) {
567		if (scf_error() != SCF_ERROR_NOT_FOUND)
568			goto out;
569		else
570			goto set;
571	}
572
573	/*
574	 * If it's already set the way we want, forgo the transaction.
575	 */
576	if (scf_property_get_value(eprop, v) == -1) {
577		switch (scf_error()) {
578		case SCF_ERROR_CONSTRAINT_VIOLATED:
579		case SCF_ERROR_NOT_FOUND:
580			/* Misconfigured, so set anyway. */
581			goto set;
582
583		default:
584			goto out;
585		}
586	}
587	if (scf_value_get_boolean(v, &b) == -1) {
588		if (scf_error() != SCF_ERROR_TYPE_MISMATCH)
589			goto out;
590		goto set;
591	}
592	if (b == desired) {
593		ret = 0;
594		goto out;
595	}
596
597set:
598	do {
599		if (scf_transaction_start(tx, gpg) == -1)
600			goto out;
601
602		if (transaction_property_set(tx, ent, SCF_PROPERTY_ENABLED,
603		    SCF_TYPE_BOOLEAN) != 0) {
604			switch (scf_error()) {
605			case SCF_ERROR_CONNECTION_BROKEN:
606			case SCF_ERROR_DELETED:
607			default:
608				goto out;
609
610			case SCF_ERROR_HANDLE_MISMATCH:
611			case SCF_ERROR_INVALID_ARGUMENT:
612			case SCF_ERROR_NOT_BOUND:
613			case SCF_ERROR_NOT_SET:
614				bad_error("transaction_property_set",
615				    scf_error());
616			}
617		}
618
619		scf_value_set_boolean(v, desired);
620		if (scf_entry_add_value(ent, v) == -1)
621			goto out;
622
623		committed = scf_transaction_commit(tx);
624		if (committed == -1)
625			goto out;
626
627		scf_transaction_reset(tx);
628
629		if (committed == 0) { /* out-of-sync */
630			if (scf_pg_update(gpg) == -1)
631				goto out;
632		}
633	} while (committed == 0);
634
635	ret = 0;
636
637out:
638	scf_value_destroy(v);
639	scf_entry_destroy(ent);
640	scf_transaction_destroy(tx);
641	scf_property_destroy(eprop);
642	scf_pg_destroy(gpg);
643
644	return (ret);
645}
646
647static int
648delete_inst_enabled(const scf_instance_t *inst, const char *pgname)
649{
650	scf_transaction_t 	*tx = NULL;
651	scf_transaction_entry_t *ent = NULL;
652	scf_propertygroup_t 	*gpg = NULL;
653	scf_handle_t		*h = NULL;
654	int			ret = -1;
655	int			committed;
656
657	if ((h = scf_instance_handle(inst)) == NULL)
658		return (-1);
659
660	if ((gpg = scf_pg_create(h)) == NULL ||
661	    (tx = scf_transaction_create(h)) == NULL ||
662	    (ent = scf_entry_create(h)) == NULL)
663		goto out;
664
665	if (scf_instance_get_pg(inst, pgname, gpg) != 0)
666		goto error;
667	do {
668		if (scf_transaction_start(tx, gpg) == -1 ||
669		    scf_transaction_property_delete(tx, ent,
670		    SCF_PROPERTY_ENABLED) == -1 ||
671		    (committed = scf_transaction_commit(tx)) == -1)
672			goto error;
673
674		scf_transaction_reset(tx);
675
676		if (committed == 0 && scf_pg_update(gpg) == -1)
677			goto error;
678	} while (committed == 0);
679
680	ret = 0;
681	goto out;
682
683error:
684	switch (scf_error()) {
685	case SCF_ERROR_DELETED:
686	case SCF_ERROR_NOT_FOUND:
687		/* success */
688		ret = 0;
689	}
690
691out:
692	scf_entry_destroy(ent);
693	scf_transaction_destroy(tx);
694	scf_pg_destroy(gpg);
695
696	return (ret);
697}
698
699/*
700 * Returns 0 on success or -1 on failure.  On failure leaves scf_error() set to
701 *   SCF_ERROR_HANDLE_DESTROYED - inst's handle has been destroyed
702 *   SCF_ERROR_NOT_BOUND - inst's handle is not bound
703 *   SCF_ERROR_CONNECTION_BROKEN - the repository connection was broken
704 *   SCF_ERROR_NOT_SET - inst is not set
705 *   SCF_ERROR_DELETED - inst was deleted
706 *   SCF_ERROR_PERMISSION_DENIED
707 *   SCF_ERROR_BACKEND_ACCESS
708 *   SCF_ERROR_BACKEND_READONLY
709 */
710static int
711set_inst_action_inst(scf_instance_t *inst, const char *action)
712{
713	scf_handle_t			*h;
714	scf_transaction_t		*tx = NULL;
715	scf_transaction_entry_t		*ent = NULL;
716	scf_propertygroup_t		*pg = NULL;
717	scf_property_t			*prop = NULL;
718	scf_value_t			*v = NULL;
719	int				trans, ret = -1;
720	int64_t				t;
721	hrtime_t			timestamp;
722
723	if ((h = scf_instance_handle(inst)) == NULL ||
724	    (pg = scf_pg_create(h)) == NULL ||
725	    (prop = scf_property_create(h)) == NULL ||
726	    (v = scf_value_create(h)) == NULL ||
727	    (tx = scf_transaction_create(h)) == NULL ||
728	    (ent = scf_entry_create(h)) == NULL)
729		goto out;
730
731get:
732	if (scf_instance_get_pg(inst, SCF_PG_RESTARTER_ACTIONS, pg) == -1) {
733		switch (scf_error()) {
734		case SCF_ERROR_NOT_BOUND:
735		case SCF_ERROR_CONNECTION_BROKEN:
736		case SCF_ERROR_NOT_SET:
737		case SCF_ERROR_DELETED:
738		default:
739			goto out;
740
741		case SCF_ERROR_NOT_FOUND:
742			break;
743
744		case SCF_ERROR_HANDLE_MISMATCH:
745		case SCF_ERROR_INVALID_ARGUMENT:
746			bad_error("scf_instance_get_pg", scf_error());
747		}
748
749		/* Try creating the restarter_actions property group. */
750add:
751		if (scf_instance_add_pg(inst, SCF_PG_RESTARTER_ACTIONS,
752		    SCF_PG_RESTARTER_ACTIONS_TYPE,
753		    SCF_PG_RESTARTER_ACTIONS_FLAGS, pg) == -1) {
754			switch (scf_error()) {
755			case SCF_ERROR_NOT_BOUND:
756			case SCF_ERROR_CONNECTION_BROKEN:
757			case SCF_ERROR_NOT_SET:
758			case SCF_ERROR_DELETED:
759			case SCF_ERROR_PERMISSION_DENIED:
760			case SCF_ERROR_BACKEND_ACCESS:
761			case SCF_ERROR_BACKEND_READONLY:
762			default:
763				goto out;
764
765			case SCF_ERROR_EXISTS:
766				goto get;
767
768			case SCF_ERROR_HANDLE_MISMATCH:
769			case SCF_ERROR_INVALID_ARGUMENT:
770				bad_error("scf_instance_add_pg", scf_error());
771			}
772		}
773	}
774
775	for (;;) {
776		timestamp = gethrtime();
777
778		if (scf_pg_get_property(pg, action, prop) != 0) {
779			switch (scf_error()) {
780			case SCF_ERROR_CONNECTION_BROKEN:
781			default:
782				goto out;
783
784			case SCF_ERROR_DELETED:
785				goto add;
786
787			case SCF_ERROR_NOT_FOUND:
788				break;
789
790			case SCF_ERROR_HANDLE_MISMATCH:
791			case SCF_ERROR_INVALID_ARGUMENT:
792			case SCF_ERROR_NOT_BOUND:
793			case SCF_ERROR_NOT_SET:
794				bad_error("scf_pg_get_property", scf_error());
795			}
796		} else if (scf_property_get_value(prop, v) != 0) {
797			switch (scf_error()) {
798			case SCF_ERROR_CONNECTION_BROKEN:
799			default:
800				goto out;
801
802			case SCF_ERROR_DELETED:
803				goto add;
804
805			case SCF_ERROR_CONSTRAINT_VIOLATED:
806			case SCF_ERROR_NOT_FOUND:
807				break;
808
809			case SCF_ERROR_HANDLE_MISMATCH:
810			case SCF_ERROR_NOT_BOUND:
811			case SCF_ERROR_NOT_SET:
812				bad_error("scf_property_get_value",
813				    scf_error());
814			}
815		} else if (scf_value_get_integer(v, &t) != 0) {
816			bad_error("scf_value_get_integer", scf_error());
817		} else if (t > timestamp) {
818			break;
819		}
820
821		if (scf_transaction_start(tx, pg) == -1) {
822			switch (scf_error()) {
823			case SCF_ERROR_NOT_BOUND:
824			case SCF_ERROR_CONNECTION_BROKEN:
825			case SCF_ERROR_PERMISSION_DENIED:
826			case SCF_ERROR_BACKEND_ACCESS:
827			case SCF_ERROR_BACKEND_READONLY:
828			default:
829				goto out;
830
831			case SCF_ERROR_DELETED:
832				goto add;
833
834			case SCF_ERROR_HANDLE_MISMATCH:
835			case SCF_ERROR_NOT_SET:
836			case SCF_ERROR_IN_USE:
837				bad_error("scf_transaction_start", scf_error());
838			}
839		}
840
841		if (transaction_property_set(tx, ent, action,
842		    SCF_TYPE_INTEGER) != 0) {
843			switch (scf_error()) {
844			case SCF_ERROR_NOT_BOUND:
845			case SCF_ERROR_CONNECTION_BROKEN:
846			case SCF_ERROR_DELETED:
847			default:
848				goto out;
849
850			case SCF_ERROR_HANDLE_MISMATCH:
851			case SCF_ERROR_INVALID_ARGUMENT:
852			case SCF_ERROR_NOT_SET:
853				bad_error("transaction_property_set",
854				    scf_error());
855			}
856		}
857
858		scf_value_set_integer(v, timestamp);
859		if (scf_entry_add_value(ent, v) == -1)
860			bad_error("scf_entry_add_value", scf_error());
861
862		trans = scf_transaction_commit(tx);
863		if (trans == 1)
864			break;
865
866		if (trans != 0) {
867			switch (scf_error()) {
868			case SCF_ERROR_CONNECTION_BROKEN:
869			case SCF_ERROR_PERMISSION_DENIED:
870			case SCF_ERROR_BACKEND_ACCESS:
871			case SCF_ERROR_BACKEND_READONLY:
872			default:
873				goto out;
874
875			case SCF_ERROR_DELETED:
876				scf_transaction_reset(tx);
877				goto add;
878
879			case SCF_ERROR_INVALID_ARGUMENT:
880			case SCF_ERROR_NOT_BOUND:
881			case SCF_ERROR_NOT_SET:
882				bad_error("scf_transaction_commit",
883				    scf_error());
884			}
885		}
886
887		scf_transaction_reset(tx);
888		if (scf_pg_update(pg) != 0) {
889			switch (scf_error()) {
890			case SCF_ERROR_CONNECTION_BROKEN:
891			default:
892				goto out;
893
894			case SCF_ERROR_DELETED:
895				goto add;
896
897			case SCF_ERROR_NOT_SET:
898			case SCF_ERROR_NOT_BOUND:
899				bad_error("scf_pg_update", scf_error());
900			}
901		}
902	}
903
904	ret = 0;
905
906out:
907	scf_value_destroy(v);
908	scf_entry_destroy(ent);
909	scf_transaction_destroy(tx);
910	scf_property_destroy(prop);
911	scf_pg_destroy(pg);
912	return (ret);
913}
914
915static int
916set_inst_action(const char *fmri, const char *action)
917{
918	scf_handle_t *h;
919	scf_instance_t *inst;
920	int ret = -1;
921
922	h = handle_create();
923	if (h == NULL)
924		return (-1);
925
926	inst = scf_instance_create(h);
927
928	if (inst != NULL) {
929		if (scf_handle_decode_fmri(h, fmri, NULL, NULL, inst, NULL,
930		    NULL, SCF_DECODE_FMRI_EXACT) == 0)
931			ret = set_inst_action_inst(inst, action);
932		else if (scf_error() == SCF_ERROR_CONSTRAINT_VIOLATED)
933			(void) scf_set_error(SCF_ERROR_INVALID_ARGUMENT);
934
935		scf_instance_destroy(inst);
936	}
937
938	scf_handle_destroy(h);
939
940	return (ret);
941}
942
943
944/*
945 * get_inst_state() gets the state string from an instance, and returns
946 * the SCF_STATE_* constant that coincides with the instance's current state.
947 */
948
949static int
950get_inst_state(scf_instance_t *inst, scf_handle_t *h)
951{
952	scf_propertygroup_t	*pg = NULL;
953	scf_property_t		*prop = NULL;
954	scf_value_t		*val = NULL;
955	char			state[MAX_SCF_STATE_STRING_SZ];
956	int			ret = -1;
957
958	if (((pg = scf_pg_create(h)) == NULL) ||
959	    ((prop = scf_property_create(h)) == NULL) ||
960	    ((val = scf_value_create(h)) == NULL))
961		goto out;
962
963	/* Pull the state property from the instance */
964
965	if (scf_instance_get_pg(inst, SCF_PG_RESTARTER, pg) == -1 ||
966	    scf_pg_get_property(pg, SCF_PROPERTY_STATE, prop) == -1 ||
967	    scf_property_get_value(prop, val) == -1) {
968		if (scf_error() != SCF_ERROR_CONNECTION_BROKEN)
969			(void) scf_set_error(SCF_ERROR_INTERNAL);
970		goto out;
971	}
972
973	if (scf_value_get_astring(val, state, sizeof (state)) <= 0) {
974		(void) scf_set_error(SCF_ERROR_INTERNAL);
975		goto out;
976	}
977
978	if (strcmp(state, SCF_STATE_STRING_UNINIT) == 0) {
979		ret = SCF_STATE_UNINIT;
980	} else if (strcmp(state, SCF_STATE_STRING_MAINT) == 0) {
981		ret = SCF_STATE_MAINT;
982	} else if (strcmp(state, SCF_STATE_STRING_OFFLINE) == 0) {
983		ret = SCF_STATE_OFFLINE;
984	} else if (strcmp(state, SCF_STATE_STRING_DISABLED) == 0) {
985		ret = SCF_STATE_DISABLED;
986	} else if (strcmp(state, SCF_STATE_STRING_ONLINE) == 0) {
987		ret = SCF_STATE_ONLINE;
988	} else if (strcmp(state, SCF_STATE_STRING_DEGRADED) == 0) {
989		ret = SCF_STATE_DEGRADED;
990	}
991
992out:
993	scf_pg_destroy(pg);
994	scf_property_destroy(prop);
995	(void) scf_value_destroy(val);
996
997	return (ret);
998}
999
1000/*
1001 * Sets an instance to be enabled or disabled after reboot, using the
1002 * temporary (overriding) general_ovr property group to reflect the
1003 * present state, if it is different.
1004 */
1005static int
1006set_inst_enabled_atboot(scf_instance_t *inst, uint8_t desired)
1007{
1008	int enabled;
1009	int persistent;
1010	int ret = -1;
1011
1012	if ((persistent = get_inst_enabled(inst, SCF_PG_GENERAL)) < 0) {
1013		if (scf_error() != SCF_ERROR_NOT_FOUND)
1014			goto out;
1015		persistent = B_FALSE;
1016	}
1017	if ((enabled = get_inst_enabled(inst, SCF_PG_GENERAL_OVR)) < 0) {
1018		enabled = persistent;
1019		if (persistent != desired) {
1020			/*
1021			 * Temporarily store the present enabled state.
1022			 */
1023			if (set_inst_enabled(inst, persistent,
1024			    SCF_PG_GENERAL_OVR, SCF_PG_GENERAL_OVR_FLAGS))
1025				goto out;
1026		}
1027	}
1028	if (persistent != desired)
1029		if (set_inst_enabled(inst, desired, SCF_PG_GENERAL,
1030		    SCF_PG_GENERAL_FLAGS))
1031			goto out;
1032	if (enabled == desired)
1033		ret = delete_inst_enabled(inst, SCF_PG_GENERAL_OVR);
1034	else
1035		ret = 0;
1036
1037out:
1038	return (ret);
1039}
1040
1041static int
1042set_inst_enabled_flags(const char *fmri, int flags, uint8_t desired)
1043{
1044	int ret = -1;
1045	scf_handle_t *h;
1046	scf_instance_t *inst;
1047
1048	if (flags & ~(SMF_TEMPORARY | SMF_AT_NEXT_BOOT) ||
1049	    flags & SMF_TEMPORARY && flags & SMF_AT_NEXT_BOOT) {
1050		(void) scf_set_error(SCF_ERROR_INVALID_ARGUMENT);
1051		return (ret);
1052	}
1053
1054	if ((h = handle_create()) == NULL)
1055		return (ret);
1056
1057	if ((inst = scf_instance_create(h)) == NULL) {
1058		scf_handle_destroy(h);
1059		return (ret);
1060	}
1061
1062	if (scf_handle_decode_fmri(h, fmri, NULL, NULL, inst, NULL, NULL,
1063	    SCF_DECODE_FMRI_EXACT) == -1) {
1064		if (scf_error() == SCF_ERROR_CONSTRAINT_VIOLATED)
1065			(void) scf_set_error(SCF_ERROR_INVALID_ARGUMENT);
1066		goto out;
1067	}
1068
1069	if (flags & SMF_AT_NEXT_BOOT) {
1070		ret = set_inst_enabled_atboot(inst, desired);
1071	} else {
1072		if (set_inst_enabled(inst, desired, flags & SMF_TEMPORARY ?
1073		    SCF_PG_GENERAL_OVR : SCF_PG_GENERAL, flags & SMF_TEMPORARY ?
1074		    SCF_PG_GENERAL_OVR_FLAGS : SCF_PG_GENERAL_FLAGS))
1075			goto out;
1076
1077		/*
1078		 * Make the persistent value effective by deleting the
1079		 * temporary one.
1080		 */
1081		if (flags & SMF_TEMPORARY)
1082			ret = 0;
1083		else
1084			ret = delete_inst_enabled(inst, SCF_PG_GENERAL_OVR);
1085	}
1086
1087out:
1088	scf_instance_destroy(inst);
1089	scf_handle_destroy(h);
1090	return (ret);
1091}
1092
1093/*
1094 * Create and return a pg from the instance associated with the given handle.
1095 * This function is only called in scf_transaction_setup and
1096 * scf_transaction_restart where the h->rh_instance pointer is properly filled
1097 * in by scf_general_setup_pg().
1098 */
1099static scf_propertygroup_t *
1100get_instance_pg(scf_simple_handle_t *simple_h)
1101{
1102	scf_propertygroup_t	*ret_pg = scf_pg_create(simple_h->h);
1103	char			*pg_name;
1104	ssize_t			namelen;
1105
1106	if (ret_pg == NULL) {
1107		return (NULL);
1108	}
1109
1110	if ((namelen = scf_limit(SCF_LIMIT_MAX_NAME_LENGTH)) == -1) {
1111		if (scf_error() == SCF_ERROR_NOT_SET) {
1112			(void) scf_set_error(SCF_ERROR_INTERNAL);
1113		}
1114		return (NULL);
1115	}
1116
1117	if ((pg_name = malloc(namelen)) == NULL) {
1118		if (scf_error() == SCF_ERROR_NOT_SET) {
1119			(void) scf_set_error(SCF_ERROR_NO_MEMORY);
1120		}
1121		return (NULL);
1122	}
1123
1124	if (scf_pg_get_name(simple_h->running_pg, pg_name, namelen) < 0) {
1125		if (scf_error() == SCF_ERROR_NOT_SET) {
1126			(void) scf_set_error(SCF_ERROR_INTERNAL);
1127		}
1128		return (NULL);
1129	}
1130
1131	/* Get pg from instance */
1132	if (scf_instance_get_pg(simple_h->inst, pg_name, ret_pg) == -1) {
1133		return (NULL);
1134	}
1135
1136	return (ret_pg);
1137}
1138
1139int
1140smf_enable_instance(const char *fmri, int flags)
1141{
1142	return (set_inst_enabled_flags(fmri, flags, B_TRUE));
1143}
1144
1145int
1146smf_disable_instance(const char *fmri, int flags)
1147{
1148	return (set_inst_enabled_flags(fmri, flags, B_FALSE));
1149}
1150
1151int
1152_smf_refresh_instance_i(scf_instance_t *inst)
1153{
1154	return (set_inst_action_inst(inst, SCF_PROPERTY_REFRESH));
1155}
1156
1157int
1158smf_refresh_instance(const char *instance)
1159{
1160	return (set_inst_action(instance, SCF_PROPERTY_REFRESH));
1161}
1162
1163int
1164smf_restart_instance(const char *instance)
1165{
1166	return (set_inst_action(instance, SCF_PROPERTY_RESTART));
1167}
1168
1169int
1170smf_maintain_instance(const char *instance, int flags)
1171{
1172	if (flags & SMF_TEMPORARY)
1173		return (set_inst_action(instance,
1174		    (flags & SMF_IMMEDIATE) ?
1175		    SCF_PROPERTY_MAINT_ON_IMMTEMP :
1176		    SCF_PROPERTY_MAINT_ON_TEMPORARY));
1177	else
1178		return (set_inst_action(instance,
1179		    (flags & SMF_IMMEDIATE) ?
1180		    SCF_PROPERTY_MAINT_ON_IMMEDIATE :
1181		    SCF_PROPERTY_MAINT_ON));
1182}
1183
1184int
1185smf_degrade_instance(const char *instance, int flags)
1186{
1187	scf_simple_prop_t		*prop;
1188	const char			*state_str;
1189
1190	if (flags & SMF_TEMPORARY)
1191		return (scf_set_error(SCF_ERROR_INVALID_ARGUMENT));
1192
1193	if ((prop = scf_simple_prop_get(NULL, instance, SCF_PG_RESTARTER,
1194	    SCF_PROPERTY_STATE)) == NULL)
1195		return (SCF_FAILED);
1196
1197	if ((state_str = scf_simple_prop_next_astring(prop)) == NULL) {
1198		scf_simple_prop_free(prop);
1199		return (SCF_FAILED);
1200	}
1201
1202	if (strcmp(state_str, SCF_STATE_STRING_ONLINE) != 0) {
1203		scf_simple_prop_free(prop);
1204		return (scf_set_error(SCF_ERROR_CONSTRAINT_VIOLATED));
1205	}
1206	scf_simple_prop_free(prop);
1207
1208	return (set_inst_action(instance, (flags & SMF_IMMEDIATE) ?
1209	    SCF_PROPERTY_DEGRADE_IMMEDIATE : SCF_PROPERTY_DEGRADED));
1210}
1211
1212int
1213smf_restore_instance(const char *instance)
1214{
1215	scf_simple_prop_t		*prop;
1216	const char			*state_str;
1217	int				ret;
1218
1219	if ((prop = scf_simple_prop_get(NULL, instance, SCF_PG_RESTARTER,
1220	    SCF_PROPERTY_STATE)) == NULL)
1221		return (SCF_FAILED);
1222
1223	if ((state_str = scf_simple_prop_next_astring(prop)) == NULL) {
1224		scf_simple_prop_free(prop);
1225		return (SCF_FAILED);
1226	}
1227
1228	if (strcmp(state_str, SCF_STATE_STRING_MAINT) == 0) {
1229		ret = set_inst_action(instance, SCF_PROPERTY_MAINT_OFF);
1230	} else if (strcmp(state_str, SCF_STATE_STRING_DEGRADED) == 0) {
1231		ret = set_inst_action(instance, SCF_PROPERTY_RESTORE);
1232	} else {
1233		ret = scf_set_error(SCF_ERROR_CONSTRAINT_VIOLATED);
1234	}
1235
1236	scf_simple_prop_free(prop);
1237	return (ret);
1238}
1239
1240char *
1241smf_get_state(const char *instance)
1242{
1243	scf_simple_prop_t		*prop;
1244	const char			*state_str;
1245	char				*ret;
1246
1247	if ((prop = scf_simple_prop_get(NULL, instance, SCF_PG_RESTARTER,
1248	    SCF_PROPERTY_STATE)) == NULL)
1249		return (NULL);
1250
1251	if ((state_str = scf_simple_prop_next_astring(prop)) == NULL) {
1252		scf_simple_prop_free(prop);
1253		return (NULL);
1254	}
1255
1256	if ((ret = strdup(state_str)) == NULL)
1257		(void) scf_set_error(SCF_ERROR_NO_MEMORY);
1258
1259	scf_simple_prop_free(prop);
1260	return (ret);
1261}
1262
1263/*
1264 * scf_general_pg_setup(fmri, pg_name)
1265 * Create a scf_simple_handle_t and fill in the instance, snapshot, and
1266 * property group fields associated with the given fmri and property group
1267 * name.
1268 * Returns:
1269 *      Handle  on success
1270 *      Null  on error with scf_error set to:
1271 *              SCF_ERROR_HANDLE_MISMATCH,
1272 *              SCF_ERROR_INVALID_ARGUMENT,
1273 *              SCF_ERROR_CONSTRAINT_VIOLATED,
1274 *              SCF_ERROR_NOT_FOUND,
1275 *              SCF_ERROR_NOT_SET,
1276 *              SCF_ERROR_DELETED,
1277 *              SCF_ERROR_NOT_BOUND,
1278 *              SCF_ERROR_CONNECTION_BROKEN,
1279 *              SCF_ERROR_INTERNAL,
1280 *              SCF_ERROR_NO_RESOURCES,
1281 *              SCF_ERROR_BACKEND_ACCESS
1282 */
1283scf_simple_handle_t *
1284scf_general_pg_setup(const char *fmri, const char *pg_name)
1285{
1286	scf_simple_handle_t	*ret;
1287
1288	ret = uu_zalloc(sizeof (*ret));
1289	if (ret == NULL) {
1290		(void) scf_set_error(SCF_ERROR_NO_MEMORY);
1291		return (NULL);
1292	} else {
1293
1294		ret->h = handle_create();
1295		ret->inst = scf_instance_create(ret->h);
1296		ret->snap = scf_snapshot_create(ret->h);
1297		ret->running_pg = scf_pg_create(ret->h);
1298	}
1299
1300	if ((ret->h == NULL) || (ret->inst == NULL) ||
1301	    (ret->snap == NULL) || (ret->running_pg == NULL)) {
1302		goto out;
1303	}
1304
1305	if (scf_handle_decode_fmri(ret->h, fmri, NULL, NULL, ret->inst,
1306	    NULL, NULL, NULL) == -1) {
1307		goto out;
1308	}
1309
1310	if ((scf_instance_get_snapshot(ret->inst, "running", ret->snap))
1311	    != 0) {
1312		goto out;
1313	}
1314
1315	if (scf_instance_get_pg_composed(ret->inst, ret->snap, pg_name,
1316	    ret->running_pg) != 0) {
1317		goto out;
1318	}
1319
1320	return (ret);
1321
1322out:
1323	scf_simple_handle_destroy(ret);
1324	return (NULL);
1325}
1326
1327/*
1328 * scf_transaction_setup(h)
1329 * creates and starts the transaction
1330 * Returns:
1331 *      transaction  on success
1332 *      NULL on failure with scf_error set to:
1333 *      SCF_ERROR_NO_MEMORY,
1334 *	SCF_ERROR_INVALID_ARGUMENT,
1335 *      SCF_ERROR_HANDLE_DESTROYED,
1336 *	SCF_ERROR_INTERNAL,
1337 *	SCF_ERROR_NO_RESOURCES,
1338 *      SCF_ERROR_NOT_BOUND,
1339 *	SCF_ERROR_CONNECTION_BROKEN,
1340 *      SCF_ERROR_NOT_SET,
1341 *	SCF_ERROR_DELETED,
1342 *	SCF_ERROR_CONSTRAINT_VIOLATED,
1343 *      SCF_ERROR_HANDLE_MISMATCH,
1344 *	SCF_ERROR_BACKEND_ACCESS,
1345 *	SCF_ERROR_IN_USE
1346 */
1347scf_transaction_t *
1348scf_transaction_setup(scf_simple_handle_t *simple_h)
1349{
1350	scf_transaction_t	*tx = NULL;
1351
1352	if ((tx = scf_transaction_create(simple_h->h)) == NULL) {
1353		return (NULL);
1354	}
1355
1356	if ((simple_h->editing_pg = get_instance_pg(simple_h)) == NULL) {
1357		return (NULL);
1358	}
1359
1360	if (scf_transaction_start(tx, simple_h->editing_pg) == -1) {
1361		scf_pg_destroy(simple_h->editing_pg);
1362		simple_h->editing_pg = NULL;
1363		return (NULL);
1364	}
1365
1366	return (tx);
1367}
1368
1369int
1370scf_transaction_restart(scf_simple_handle_t *simple_h, scf_transaction_t *tx)
1371{
1372	scf_transaction_reset(tx);
1373
1374	if (scf_pg_update(simple_h->editing_pg) == -1) {
1375		return (SCF_FAILED);
1376	}
1377
1378	if (scf_transaction_start(tx, simple_h->editing_pg) == -1) {
1379		return (SCF_FAILED);
1380	}
1381
1382	return (SCF_SUCCESS);
1383}
1384
1385/*
1386 * scf_read_count_property(scf_simple_handle_t *simple_h, char *prop_name,
1387 * uint64_t *ret_count)
1388 *
1389 * For the given property name, return the count value.
1390 * RETURNS:
1391 *	SCF_SUCCESS
1392 *	SCF_FAILED on failure with scf_error() set to:
1393 *		SCF_ERROR_HANDLE_DESTROYED
1394 *		SCF_ERROR_INTERNAL
1395 *		SCF_ERROR_NO_RESOURCES
1396 *		SCF_ERROR_NO_MEMORY
1397 *		SCF_ERROR_HANDLE_MISMATCH
1398 *		SCF_ERROR_INVALID_ARGUMENT
1399 *		SCF_ERROR_NOT_BOUND
1400 *		SCF_ERROR_CONNECTION_BROKEN
1401 *		SCF_ERROR_NOT_SET
1402 *		SCF_ERROR_DELETED
1403 *		SCF_ERROR_BACKEND_ACCESS
1404 *		SCF_ERROR_CONSTRAINT_VIOLATED
1405 *		SCF_ERROR_TYPE_MISMATCH
1406 */
1407int
1408scf_read_count_property(
1409	scf_simple_handle_t	*simple_h,
1410	char			*prop_name,
1411	uint64_t		*ret_count)
1412{
1413	scf_property_t		*prop = scf_property_create(simple_h->h);
1414	scf_value_t		*val = scf_value_create(simple_h->h);
1415	int			ret = SCF_FAILED;
1416
1417	if ((val == NULL) || (prop == NULL)) {
1418		goto out;
1419	}
1420
1421	/*
1422	 * Get the property struct that goes with this property group and
1423	 * property name.
1424	 */
1425	if (scf_pg_get_property(simple_h->running_pg, prop_name, prop) != 0) {
1426		goto out;
1427	}
1428
1429	/* Get the value structure */
1430	if (scf_property_get_value(prop, val) == -1) {
1431		goto out;
1432	}
1433
1434	/*
1435	 * Now get the count value.
1436	 */
1437	if (scf_value_get_count(val, ret_count) == -1) {
1438		goto out;
1439	}
1440
1441	ret = SCF_SUCCESS;
1442
1443out:
1444	scf_property_destroy(prop);
1445	scf_value_destroy(val);
1446	return (ret);
1447}
1448
1449/*
1450 * scf_trans_add_count_property(trans, propname, count, create_flag)
1451 *
1452 * Set a count property transaction entry into the pending SMF transaction.
1453 * The transaction is created and committed outside of this function.
1454 * Returns:
1455 *	SCF_SUCCESS
1456 *	SCF_FAILED on failure with scf_error() set to:
1457 *			SCF_ERROR_HANDLE_DESTROYED,
1458 *			SCF_ERROR_INVALID_ARGUMENT,
1459 *			SCF_ERROR_NO_MEMORY,
1460 *			SCF_ERROR_HANDLE_MISMATCH,
1461 *			SCF_ERROR_NOT_SET,
1462 *			SCF_ERROR_IN_USE,
1463 *			SCF_ERROR_NOT_FOUND,
1464 *			SCF_ERROR_EXISTS,
1465 *			SCF_ERROR_TYPE_MISMATCH,
1466 *			SCF_ERROR_NOT_BOUND,
1467 *			SCF_ERROR_CONNECTION_BROKEN,
1468 *			SCF_ERROR_INTERNAL,
1469 *			SCF_ERROR_DELETED,
1470 *			SCF_ERROR_NO_RESOURCES,
1471 *			SCF_ERROR_BACKEND_ACCESS
1472 */
1473int
1474scf_set_count_property(
1475	scf_transaction_t	*trans,
1476	char			*propname,
1477	uint64_t		count,
1478	boolean_t		create_flag)
1479{
1480	scf_handle_t		*handle = scf_transaction_handle(trans);
1481	scf_value_t		*value = scf_value_create(handle);
1482	scf_transaction_entry_t	*entry = scf_entry_create(handle);
1483
1484	if ((value == NULL) || (entry == NULL)) {
1485		return (SCF_FAILED);
1486	}
1487
1488	/*
1489	 * Property must be set in transaction and won't take
1490	 * effect until the transaction is committed.
1491	 *
1492	 * Attempt to change the current value. However, create new property
1493	 * if it doesn't exist and the create flag is set.
1494	 */
1495	if (scf_transaction_property_change(trans, entry, propname,
1496	    SCF_TYPE_COUNT) == 0) {
1497		scf_value_set_count(value, count);
1498		if (scf_entry_add_value(entry, value) == 0) {
1499			return (SCF_SUCCESS);
1500		}
1501	} else {
1502		if ((create_flag == B_TRUE) &&
1503		    (scf_error() == SCF_ERROR_NOT_FOUND)) {
1504			if (scf_transaction_property_new(trans, entry, propname,
1505			    SCF_TYPE_COUNT) == 0) {
1506				scf_value_set_count(value, count);
1507				if (scf_entry_add_value(entry, value) == 0) {
1508					return (SCF_SUCCESS);
1509				}
1510			}
1511		}
1512	}
1513
1514	/*
1515	 * cleanup if there were any errors that didn't leave these
1516	 * values where they would be cleaned up later.
1517	 */
1518	if (value != NULL)
1519		scf_value_destroy(value);
1520	if (entry != NULL)
1521		scf_entry_destroy(entry);
1522	return (SCF_FAILED);
1523}
1524
1525int
1526scf_simple_walk_instances(uint_t state_flags, void *private,
1527    int (*inst_callback)(scf_handle_t *, scf_instance_t *, void *))
1528{
1529	scf_scope_t 		*scope = NULL;
1530	scf_service_t		*svc = NULL;
1531	scf_instance_t		*inst = NULL;
1532	scf_iter_t		*svc_iter = NULL, *inst_iter = NULL;
1533	scf_handle_t		*h = NULL;
1534	int			ret = SCF_FAILED;
1535	int			svc_iter_ret, inst_iter_ret;
1536	int			inst_state;
1537
1538	if ((h = handle_create()) == NULL)
1539		return (ret);
1540
1541	if (((scope = scf_scope_create(h)) == NULL) ||
1542	    ((svc = scf_service_create(h)) == NULL) ||
1543	    ((inst = scf_instance_create(h)) == NULL) ||
1544	    ((svc_iter = scf_iter_create(h)) == NULL) ||
1545	    ((inst_iter = scf_iter_create(h)) == NULL))
1546		goto out;
1547
1548	/*
1549	 * Get the local scope, and set up nested iteration through every
1550	 * local service, and every instance of every service.
1551	 */
1552
1553	if ((scf_handle_get_local_scope(h, scope) != SCF_SUCCESS) ||
1554	    (scf_iter_scope_services(svc_iter, scope) != SCF_SUCCESS))
1555		goto out;
1556
1557	while ((svc_iter_ret = scf_iter_next_service(svc_iter, svc)) > 0) {
1558
1559		if ((scf_iter_service_instances(inst_iter, svc)) !=
1560		    SCF_SUCCESS)
1561			goto out;
1562
1563		while ((inst_iter_ret =
1564		    scf_iter_next_instance(inst_iter, inst)) > 0) {
1565			/*
1566			 * If get_inst_state fails from an internal error,
1567			 * IE, being unable to get the property group or
1568			 * property containing the state of the instance,
1569			 * we continue instead of failing, as this might just
1570			 * be an improperly configured instance.
1571			 */
1572			if ((inst_state = get_inst_state(inst, h)) == -1) {
1573				if (scf_error() == SCF_ERROR_INTERNAL) {
1574					continue;
1575				} else {
1576					goto out;
1577				}
1578			}
1579
1580			if ((uint_t)inst_state & state_flags) {
1581				if (inst_callback(h, inst, private) !=
1582				    SCF_SUCCESS) {
1583					(void) scf_set_error(
1584					    SCF_ERROR_CALLBACK_FAILED);
1585					goto out;
1586				}
1587			}
1588		}
1589
1590		if (inst_iter_ret == -1)
1591			goto out;
1592		scf_iter_reset(inst_iter);
1593	}
1594
1595	if (svc_iter_ret != -1)
1596		ret = SCF_SUCCESS;
1597
1598out:
1599	scf_scope_destroy(scope);
1600	scf_service_destroy(svc);
1601	scf_instance_destroy(inst);
1602	scf_iter_destroy(svc_iter);
1603	scf_iter_destroy(inst_iter);
1604	scf_handle_destroy(h);
1605
1606	return (ret);
1607}
1608
1609
1610scf_simple_prop_t *
1611scf_simple_prop_get(scf_handle_t *hin, const char *instance, const char *pgname,
1612			const char *propname)
1613{
1614	char 			*fmri_buf, *svcfmri = NULL;
1615	ssize_t 		fmri_sz;
1616	scf_property_t 		*prop = NULL;
1617	scf_service_t 		*svc = NULL;
1618	scf_simple_prop_t 	*ret;
1619	scf_handle_t		*h = NULL;
1620	boolean_t		local_h = B_TRUE;
1621
1622	/* If the user passed in a handle, use it. */
1623	if (hin != NULL) {
1624		h = hin;
1625		local_h = B_FALSE;
1626	}
1627
1628	if (local_h && ((h = handle_create()) == NULL))
1629		return (NULL);
1630
1631	if ((fmri_buf = assemble_fmri(h, instance, pgname, propname)) == NULL) {
1632		if (local_h)
1633			scf_handle_destroy(h);
1634		return (NULL);
1635	}
1636
1637	if ((svc = scf_service_create(h)) == NULL ||
1638	    (prop = scf_property_create(h)) == NULL)
1639		goto error1;
1640	if (scf_handle_decode_fmri(h, fmri_buf, NULL, NULL, NULL, NULL, prop,
1641	    SCF_DECODE_FMRI_REQUIRE_INSTANCE) == -1) {
1642		switch (scf_error()) {
1643		/*
1644		 * If the property isn't found in the instance, we grab the
1645		 * underlying service, create an FMRI out of it, and then
1646		 * query the datastore again at the service level for the
1647		 * property.
1648		 */
1649		case SCF_ERROR_NOT_FOUND:
1650			if (scf_handle_decode_fmri(h, fmri_buf, NULL, svc,
1651			    NULL, NULL, NULL, SCF_DECODE_FMRI_TRUNCATE) == -1)
1652				goto error1;
1653			if ((fmri_sz = scf_limit(SCF_LIMIT_MAX_FMRI_LENGTH)) ==
1654			    -1) {
1655				(void) scf_set_error(SCF_ERROR_INTERNAL);
1656				goto error1;
1657			}
1658			if (scf_service_to_fmri(svc, fmri_buf, fmri_sz) == -1)
1659				goto error1;
1660			if ((svcfmri = assemble_fmri(h, fmri_buf, pgname,
1661			    propname)) == NULL)
1662				goto error1;
1663			if (scf_handle_decode_fmri(h, svcfmri, NULL, NULL,
1664			    NULL, NULL, prop, 0) == -1) {
1665				free(svcfmri);
1666				goto error1;
1667			}
1668			free(svcfmri);
1669			break;
1670		case SCF_ERROR_CONSTRAINT_VIOLATED:
1671			(void) scf_set_error(SCF_ERROR_INVALID_ARGUMENT);
1672		default:
1673			goto error1;
1674		}
1675	}
1676	/*
1677	 * At this point, we've successfully pulled the property from the
1678	 * datastore, and simply need to copy its innards into an
1679	 * scf_simple_prop_t.
1680	 */
1681	if ((ret = fill_prop(prop, pgname, propname, h)) == NULL)
1682		goto error1;
1683
1684	scf_service_destroy(svc);
1685	scf_property_destroy(prop);
1686	free(fmri_buf);
1687	if (local_h)
1688		scf_handle_destroy(h);
1689	return (ret);
1690
1691	/*
1692	 * Exit point for a successful call.  Below this line are exit points
1693	 * for failures at various stages during the function.
1694	 */
1695
1696error1:
1697	scf_service_destroy(svc);
1698	scf_property_destroy(prop);
1699error2:
1700	free(fmri_buf);
1701	if (local_h)
1702		scf_handle_destroy(h);
1703	return (NULL);
1704}
1705
1706
1707void
1708scf_simple_prop_free(scf_simple_prop_t *prop)
1709{
1710	int i;
1711
1712	if (prop == NULL)
1713		return;
1714
1715	free(prop->pr_propname);
1716	free(prop->pr_pgname);
1717	switch (prop->pr_type) {
1718	case SCF_TYPE_OPAQUE: {
1719		for (i = 0; i < prop->pr_numvalues; i++) {
1720			free(prop->pr_vallist[i].pv_opaque.o_value);
1721		}
1722		break;
1723	}
1724	case SCF_TYPE_ASTRING:
1725	case SCF_TYPE_USTRING:
1726	case SCF_TYPE_HOST:
1727	case SCF_TYPE_HOSTNAME:
1728	case SCF_TYPE_NET_ADDR_V4:
1729	case SCF_TYPE_NET_ADDR_V6:
1730	case SCF_TYPE_URI:
1731	case SCF_TYPE_FMRI: {
1732		for (i = 0; i < prop->pr_numvalues; i++) {
1733			free(prop->pr_vallist[i].pv_str);
1734		}
1735		break;
1736	}
1737	default:
1738		break;
1739	}
1740	free(prop->pr_vallist);
1741	free(prop);
1742}
1743
1744
1745scf_simple_app_props_t *
1746scf_simple_app_props_get(scf_handle_t *hin, const char *inst_fmri)
1747{
1748	scf_instance_t 		*inst = NULL;
1749	scf_service_t 		*svc = NULL;
1750	scf_propertygroup_t 	*pg = NULL;
1751	scf_property_t 		*prop = NULL;
1752	scf_simple_app_props_t	*ret = NULL;
1753	scf_iter_t		*pgiter = NULL, *propiter = NULL;
1754	struct scf_simple_pg	*thispg = NULL, *nextpg;
1755	scf_simple_prop_t	*thisprop, *nextprop;
1756	scf_handle_t		*h = NULL;
1757	int			pgiter_ret, propiter_ret;
1758	ssize_t			namelen;
1759	char 			*propname = NULL, *pgname = NULL, *sys_fmri;
1760	uint8_t			found;
1761	boolean_t		local_h = B_TRUE;
1762
1763	/* If the user passed in a handle, use it. */
1764	if (hin != NULL) {
1765		h = hin;
1766		local_h = B_FALSE;
1767	}
1768
1769	if (local_h && ((h = handle_create()) == NULL))
1770		return (NULL);
1771
1772	if (inst_fmri == NULL) {
1773		if ((namelen = scf_myname(h, NULL, 0)) == -1) {
1774			if (local_h)
1775				scf_handle_destroy(h);
1776			return (NULL);
1777		}
1778		if ((sys_fmri = malloc(namelen + 1)) == NULL) {
1779			if (local_h)
1780				scf_handle_destroy(h);
1781			(void) scf_set_error(SCF_ERROR_NO_MEMORY);
1782			return (NULL);
1783		}
1784		if (scf_myname(h, sys_fmri, namelen + 1) == -1) {
1785			if (local_h)
1786				scf_handle_destroy(h);
1787			free(sys_fmri);
1788			return (NULL);
1789		}
1790	} else {
1791		sys_fmri = strdup(inst_fmri);
1792	}
1793
1794	if ((namelen = scf_limit(SCF_LIMIT_MAX_NAME_LENGTH)) == -1) {
1795		(void) scf_set_error(SCF_ERROR_INTERNAL);
1796		return (NULL);
1797	}
1798
1799	if ((inst = scf_instance_create(h)) == NULL ||
1800	    (svc = scf_service_create(h)) == NULL ||
1801	    (pgiter = scf_iter_create(h)) == NULL ||
1802	    (propiter = scf_iter_create(h)) == NULL ||
1803	    (pg = scf_pg_create(h)) == NULL ||
1804	    (prop = scf_property_create(h)) == NULL)
1805		goto error2;
1806
1807	if (scf_handle_decode_fmri(h, sys_fmri, NULL, svc, inst, NULL, NULL,
1808	    SCF_DECODE_FMRI_REQUIRE_INSTANCE) == -1) {
1809		if (scf_error() == SCF_ERROR_CONSTRAINT_VIOLATED)
1810			(void) scf_set_error(SCF_ERROR_INVALID_ARGUMENT);
1811		goto error2;
1812	}
1813
1814	if ((ret = malloc(sizeof (*ret))) == NULL ||
1815	    (thispg = malloc(sizeof (*thispg))) == NULL ||
1816	    (propname = malloc(namelen)) == NULL ||
1817	    (pgname = malloc(namelen)) == NULL) {
1818		free(thispg);
1819		free(ret);
1820		(void) scf_set_error(SCF_ERROR_NO_MEMORY);
1821		goto error2;
1822	}
1823
1824	ret->ap_fmri = sys_fmri;
1825	thispg->pg_name = NULL;
1826	thispg->pg_proplist = NULL;
1827	thispg->pg_next = NULL;
1828	ret->ap_pglist = thispg;
1829
1830	if (scf_iter_service_pgs_typed(pgiter, svc, SCF_GROUP_APPLICATION) !=
1831	    0) {
1832		if (scf_error() != SCF_ERROR_CONNECTION_BROKEN)
1833			(void) scf_set_error(SCF_ERROR_INTERNAL);
1834		goto error1;
1835	}
1836
1837	while ((pgiter_ret = scf_iter_next_pg(pgiter, pg)) == 1) {
1838		if (thispg->pg_name != NULL) {
1839			if ((nextpg = malloc(sizeof (*nextpg))) == NULL) {
1840				(void) scf_set_error(SCF_ERROR_NO_MEMORY);
1841				goto error1;
1842			}
1843			thispg->pg_next = nextpg;
1844			thispg = nextpg;
1845		} else {
1846			/* This is the first iteration */
1847			nextpg = thispg;
1848		}
1849
1850		if ((nextpg->pg_name = malloc(namelen)) == NULL) {
1851			(void) scf_set_error(SCF_ERROR_NO_MEMORY);
1852			goto error1;
1853		}
1854
1855		if (scf_pg_get_name(pg, nextpg->pg_name, namelen) < 0) {
1856			if (scf_error() == SCF_ERROR_NOT_SET)
1857				(void) scf_set_error(SCF_ERROR_INTERNAL);
1858			goto error1;
1859		}
1860
1861		nextpg->pg_next = NULL;
1862		nextpg->pg_proplist = NULL;
1863		thisprop = NULL;
1864
1865		scf_iter_reset(propiter);
1866
1867		if (scf_iter_pg_properties(propiter, pg) != 0) {
1868			if (scf_error() != SCF_ERROR_CONNECTION_BROKEN)
1869				(void) scf_set_error(SCF_ERROR_INTERNAL);
1870			goto error1;
1871		}
1872
1873		while ((propiter_ret = scf_iter_next_property(propiter, prop))
1874		    == 1) {
1875			if (scf_property_get_name(prop, propname, namelen) <
1876			    0) {
1877				if (scf_error() == SCF_ERROR_NOT_SET)
1878					(void) scf_set_error(
1879					    SCF_ERROR_INTERNAL);
1880				goto error1;
1881			}
1882			if (thisprop != NULL) {
1883				if ((nextprop = fill_prop(prop,
1884				    nextpg->pg_name, propname, h)) == NULL)
1885					goto error1;
1886				thisprop->pr_next = nextprop;
1887				thisprop = nextprop;
1888			} else {
1889				/* This is the first iteration */
1890				if ((thisprop = fill_prop(prop,
1891				    nextpg->pg_name, propname, h)) == NULL)
1892					goto error1;
1893				nextpg->pg_proplist = thisprop;
1894				nextprop = thisprop;
1895			}
1896			nextprop->pr_pg = nextpg;
1897			nextprop->pr_next = NULL;
1898		}
1899
1900		if (propiter_ret == -1) {
1901			if (scf_error() != SCF_ERROR_CONNECTION_BROKEN)
1902				(void) scf_set_error(SCF_ERROR_INTERNAL);
1903			goto error1;
1904		}
1905	}
1906
1907	if (pgiter_ret == -1) {
1908		if (scf_error() != SCF_ERROR_CONNECTION_BROKEN)
1909			(void) scf_set_error(SCF_ERROR_INTERNAL);
1910		goto error1;
1911	}
1912
1913	/*
1914	 * At this point, we've filled the scf_simple_app_props_t with all the
1915	 * properties at the service level.  Now we iterate over all the
1916	 * properties at the instance level, overwriting any duplicate
1917	 * properties, in order to provide service/instance composition.
1918	 */
1919
1920	scf_iter_reset(pgiter);
1921	scf_iter_reset(propiter);
1922
1923	if (scf_iter_instance_pgs_typed(pgiter, inst, SCF_GROUP_APPLICATION)
1924	    != 0) {
1925		if (scf_error() != SCF_ERROR_CONNECTION_BROKEN)
1926			(void) scf_set_error(SCF_ERROR_INTERNAL);
1927		goto error1;
1928	}
1929
1930	while ((pgiter_ret = scf_iter_next_pg(pgiter, pg)) == 1) {
1931
1932		thispg = ret->ap_pglist;
1933		found = 0;
1934
1935		/*
1936		 * Find either the end of the list, so we can append the
1937		 * property group, or an existing property group that matches
1938		 * it, so we can insert/overwrite its properties.
1939		 */
1940
1941		if (scf_pg_get_name(pg, pgname, namelen) < 0) {
1942			if (scf_error() == SCF_ERROR_NOT_SET)
1943				(void) scf_set_error(SCF_ERROR_INTERNAL);
1944			goto error1;
1945		}
1946
1947		while ((thispg != NULL) && (thispg->pg_name != NULL)) {
1948			if (strcmp(thispg->pg_name, pgname) == 0) {
1949				found = 1;
1950				break;
1951			}
1952			if (thispg->pg_next == NULL)
1953				break;
1954
1955			thispg = thispg->pg_next;
1956		}
1957
1958		scf_iter_reset(propiter);
1959
1960		if (scf_iter_pg_properties(propiter, pg) != 0) {
1961			if (scf_error() != SCF_ERROR_CONNECTION_BROKEN)
1962				(void) scf_set_error(SCF_ERROR_INTERNAL);
1963			goto error1;
1964		}
1965
1966		if (found) {
1967			/*
1968			 * insert_app_props inserts or overwrites the
1969			 * properties in thispg.
1970			 */
1971
1972			if (insert_app_props(propiter, pgname, propname,
1973			    thispg, prop, namelen, h) == -1)
1974				goto error1;
1975
1976		} else {
1977			/*
1978			 * If the property group wasn't found, we're adding
1979			 * a newly allocated property group to the end of the
1980			 * list.
1981			 */
1982
1983			if ((nextpg = malloc(sizeof (*nextpg))) == NULL) {
1984				(void) scf_set_error(SCF_ERROR_NO_MEMORY);
1985				goto error1;
1986			}
1987			nextpg->pg_next = NULL;
1988			nextpg->pg_proplist = NULL;
1989			thisprop = NULL;
1990
1991			if ((nextpg->pg_name = strdup(pgname)) == NULL) {
1992				free(nextpg);
1993				goto error1;
1994			}
1995
1996			if (thispg->pg_name == NULL) {
1997				free(thispg);
1998				ret->ap_pglist = nextpg;
1999			} else {
2000				thispg->pg_next = nextpg;
2001			}
2002
2003			while ((propiter_ret =
2004			    scf_iter_next_property(propiter, prop)) == 1) {
2005				if (scf_property_get_name(prop, propname,
2006				    namelen) < 0) {
2007					if (scf_error() == SCF_ERROR_NOT_SET)
2008						(void) scf_set_error(
2009						    SCF_ERROR_INTERNAL);
2010					goto error1;
2011				}
2012				if (thisprop != NULL) {
2013					if ((nextprop = fill_prop(prop,
2014					    pgname, propname, h)) ==
2015					    NULL)
2016						goto error1;
2017					thisprop->pr_next = nextprop;
2018					thisprop = nextprop;
2019				} else {
2020					/* This is the first iteration */
2021					if ((thisprop = fill_prop(prop,
2022					    pgname, propname, h)) ==
2023					    NULL)
2024						goto error1;
2025					nextpg->pg_proplist = thisprop;
2026					nextprop = thisprop;
2027				}
2028				nextprop->pr_pg = nextpg;
2029				nextprop->pr_next = NULL;
2030			}
2031
2032			if (propiter_ret == -1) {
2033				if (scf_error() != SCF_ERROR_CONNECTION_BROKEN)
2034					(void) scf_set_error(
2035					    SCF_ERROR_INTERNAL);
2036				goto error1;
2037			}
2038		}
2039
2040	}
2041
2042	if (pgiter_ret == -1) {
2043		if (scf_error() != SCF_ERROR_CONNECTION_BROKEN)
2044			(void) scf_set_error(SCF_ERROR_INTERNAL);
2045		goto error1;
2046	}
2047
2048	scf_iter_destroy(pgiter);
2049	scf_iter_destroy(propiter);
2050	scf_pg_destroy(pg);
2051	scf_property_destroy(prop);
2052	scf_instance_destroy(inst);
2053	scf_service_destroy(svc);
2054	free(propname);
2055	free(pgname);
2056	if (local_h)
2057		scf_handle_destroy(h);
2058
2059	if (ret->ap_pglist->pg_name == NULL)
2060		return (NULL);
2061
2062	return (ret);
2063
2064	/*
2065	 * Exit point for a successful call.  Below this line are exit points
2066	 * for failures at various stages during the function.
2067	 */
2068
2069error1:
2070	scf_simple_app_props_free(ret);
2071
2072error2:
2073	scf_iter_destroy(pgiter);
2074	scf_iter_destroy(propiter);
2075	scf_pg_destroy(pg);
2076	scf_property_destroy(prop);
2077	scf_instance_destroy(inst);
2078	scf_service_destroy(svc);
2079	free(propname);
2080	free(pgname);
2081	if (local_h)
2082		scf_handle_destroy(h);
2083	return (NULL);
2084}
2085
2086
2087void
2088scf_simple_app_props_free(scf_simple_app_props_t *propblock)
2089{
2090	struct scf_simple_pg 	*pgthis, *pgnext;
2091	scf_simple_prop_t 	*propthis, *propnext;
2092
2093	if ((propblock == NULL) || (propblock->ap_pglist == NULL))
2094		return;
2095
2096	for (pgthis = propblock->ap_pglist; pgthis != NULL; pgthis = pgnext) {
2097		pgnext = pgthis->pg_next;
2098
2099		propthis = pgthis->pg_proplist;
2100
2101		while (propthis != NULL) {
2102			propnext = propthis->pr_next;
2103			scf_simple_prop_free(propthis);
2104			propthis = propnext;
2105		}
2106
2107		free(pgthis->pg_name);
2108		free(pgthis);
2109	}
2110
2111	free(propblock->ap_fmri);
2112	free(propblock);
2113}
2114
2115const scf_simple_prop_t *
2116scf_simple_app_props_next(const scf_simple_app_props_t *propblock,
2117    scf_simple_prop_t *last)
2118{
2119	struct scf_simple_pg 	*this;
2120
2121	if (propblock == NULL) {
2122		(void) scf_set_error(SCF_ERROR_NOT_SET);
2123		return (NULL);
2124	}
2125
2126	this = propblock->ap_pglist;
2127
2128	/*
2129	 * We're looking for the first property in this block if last is
2130	 * NULL
2131	 */
2132
2133	if (last == NULL) {
2134		/* An empty pglist is legal, it just means no properties */
2135		if (this == NULL) {
2136			(void) scf_set_error(SCF_ERROR_NONE);
2137			return (NULL);
2138		}
2139		/*
2140		 * Walk until we find a pg with a property in it, or we run
2141		 * out of property groups.
2142		 */
2143		while ((this->pg_proplist == NULL) && (this->pg_next != NULL))
2144			this = this->pg_next;
2145
2146		if (this->pg_proplist == NULL) {
2147			(void) scf_set_error(SCF_ERROR_NONE);
2148			return (NULL);
2149		}
2150
2151		return (this->pg_proplist);
2152
2153	}
2154	/*
2155	 * If last isn't NULL, then return the next prop in the property group,
2156	 * or walk the property groups until we find another property, or
2157	 * run out of property groups.
2158	 */
2159	if (last->pr_next != NULL)
2160		return (last->pr_next);
2161
2162	if (last->pr_pg->pg_next == NULL) {
2163		(void) scf_set_error(SCF_ERROR_NONE);
2164		return (NULL);
2165	}
2166
2167	this = last->pr_pg->pg_next;
2168
2169	while ((this->pg_proplist == NULL) && (this->pg_next != NULL))
2170		this = this->pg_next;
2171
2172	if (this->pg_proplist == NULL) {
2173		(void) scf_set_error(SCF_ERROR_NONE);
2174		return (NULL);
2175	}
2176
2177	return (this->pg_proplist);
2178}
2179
2180const scf_simple_prop_t *
2181scf_simple_app_props_search(const scf_simple_app_props_t *propblock,
2182    const char *pgname, const char *propname)
2183{
2184	struct scf_simple_pg 	*pg;
2185	scf_simple_prop_t 	*prop;
2186
2187	if ((propblock == NULL) || (propname == NULL)) {
2188		(void) scf_set_error(SCF_ERROR_NOT_SET);
2189		return (NULL);
2190	}
2191
2192	pg = propblock->ap_pglist;
2193
2194	/*
2195	 * If pgname is NULL, we're searching the default application
2196	 * property group, otherwise we look for the specified group.
2197	 */
2198	if (pgname == NULL) {
2199		while ((pg != NULL) &&
2200		    (strcmp(SCF_PG_APP_DEFAULT, pg->pg_name) != 0))
2201			pg = pg->pg_next;
2202	} else {
2203		while ((pg != NULL) && (strcmp(pgname, pg->pg_name) != 0))
2204			pg = pg->pg_next;
2205	}
2206
2207	if (pg == NULL) {
2208		(void) scf_set_error(SCF_ERROR_NOT_FOUND);
2209		return (NULL);
2210	}
2211
2212	prop = pg->pg_proplist;
2213
2214	while ((prop != NULL) && (strcmp(propname, prop->pr_propname) != 0))
2215		prop = prop->pr_next;
2216
2217	if (prop == NULL) {
2218		(void) scf_set_error(SCF_ERROR_NOT_FOUND);
2219		return (NULL);
2220	}
2221
2222	return (prop);
2223}
2224
2225void
2226scf_simple_prop_next_reset(scf_simple_prop_t *prop)
2227{
2228	if (prop == NULL)
2229		return;
2230	prop->pr_iter = 0;
2231}
2232
2233ssize_t
2234scf_simple_prop_numvalues(const scf_simple_prop_t *prop)
2235{
2236	if (prop == NULL)
2237		return (scf_set_error(SCF_ERROR_NOT_SET));
2238
2239	return (prop->pr_numvalues);
2240}
2241
2242
2243scf_type_t
2244scf_simple_prop_type(const scf_simple_prop_t *prop)
2245{
2246	if (prop == NULL)
2247		return (scf_set_error(SCF_ERROR_NOT_SET));
2248
2249	return (prop->pr_type);
2250}
2251
2252
2253char *
2254scf_simple_prop_name(const scf_simple_prop_t *prop)
2255{
2256	if ((prop == NULL) || (prop->pr_propname == NULL)) {
2257		(void) scf_set_error(SCF_ERROR_NOT_SET);
2258		return (NULL);
2259	}
2260
2261	return (prop->pr_propname);
2262}
2263
2264
2265char *
2266scf_simple_prop_pgname(const scf_simple_prop_t *prop)
2267{
2268	if ((prop == NULL) || (prop->pr_pgname == NULL)) {
2269		(void) scf_set_error(SCF_ERROR_NOT_SET);
2270		return (NULL);
2271	}
2272
2273	return (prop->pr_pgname);
2274}
2275
2276
2277static union scf_simple_prop_val *
2278scf_next_val(scf_simple_prop_t *prop, scf_type_t type)
2279{
2280	if (prop == NULL) {
2281		(void) scf_set_error(SCF_ERROR_NOT_SET);
2282		return (NULL);
2283	}
2284
2285	switch (prop->pr_type) {
2286	case SCF_TYPE_USTRING:
2287	case SCF_TYPE_HOST:
2288	case SCF_TYPE_HOSTNAME:
2289	case SCF_TYPE_NET_ADDR_V4:
2290	case SCF_TYPE_NET_ADDR_V6:
2291	case SCF_TYPE_URI:
2292	case SCF_TYPE_FMRI: {
2293		if (type != SCF_TYPE_USTRING) {
2294			(void) scf_set_error(SCF_ERROR_TYPE_MISMATCH);
2295			return (NULL);
2296		}
2297		break;
2298		}
2299	default: {
2300		if (type != prop->pr_type) {
2301			(void) scf_set_error(SCF_ERROR_TYPE_MISMATCH);
2302			return (NULL);
2303		}
2304		break;
2305		}
2306	}
2307
2308	if (prop->pr_iter >= prop->pr_numvalues) {
2309		(void) scf_set_error(SCF_ERROR_NONE);
2310		return (NULL);
2311	}
2312
2313	return (&prop->pr_vallist[prop->pr_iter++]);
2314}
2315
2316
2317uint8_t *
2318scf_simple_prop_next_boolean(scf_simple_prop_t *prop)
2319{
2320	union scf_simple_prop_val *ret;
2321
2322	ret = scf_next_val(prop, SCF_TYPE_BOOLEAN);
2323
2324	if (ret == NULL)
2325		return (NULL);
2326
2327	return (&ret->pv_bool);
2328}
2329
2330
2331uint64_t *
2332scf_simple_prop_next_count(scf_simple_prop_t *prop)
2333{
2334	union scf_simple_prop_val *ret;
2335
2336	ret = scf_next_val(prop, SCF_TYPE_COUNT);
2337
2338	if (ret == NULL)
2339		return (NULL);
2340
2341	return (&ret->pv_uint);
2342}
2343
2344
2345int64_t *
2346scf_simple_prop_next_integer(scf_simple_prop_t *prop)
2347{
2348	union scf_simple_prop_val *ret;
2349
2350	ret = scf_next_val(prop, SCF_TYPE_INTEGER);
2351
2352	if (ret == NULL)
2353		return (NULL);
2354
2355	return (&ret->pv_int);
2356}
2357
2358int64_t *
2359scf_simple_prop_next_time(scf_simple_prop_t *prop, int32_t *nsec)
2360{
2361	union scf_simple_prop_val *ret;
2362
2363	ret = scf_next_val(prop, SCF_TYPE_TIME);
2364
2365	if (ret == NULL)
2366		return (NULL);
2367
2368	if (nsec != NULL)
2369		*nsec = ret->pv_time.t_nsec;
2370
2371	return (&ret->pv_time.t_sec);
2372}
2373
2374char *
2375scf_simple_prop_next_astring(scf_simple_prop_t *prop)
2376{
2377	union scf_simple_prop_val *ret;
2378
2379	ret = scf_next_val(prop, SCF_TYPE_ASTRING);
2380
2381	if (ret == NULL)
2382		return (NULL);
2383
2384	return (ret->pv_str);
2385}
2386
2387char *
2388scf_simple_prop_next_ustring(scf_simple_prop_t *prop)
2389{
2390	union scf_simple_prop_val *ret;
2391
2392	ret = scf_next_val(prop, SCF_TYPE_USTRING);
2393
2394	if (ret == NULL)
2395		return (NULL);
2396
2397	return (ret->pv_str);
2398}
2399
2400void *
2401scf_simple_prop_next_opaque(scf_simple_prop_t *prop, size_t *length)
2402{
2403	union scf_simple_prop_val *ret;
2404
2405	ret = scf_next_val(prop, SCF_TYPE_OPAQUE);
2406
2407	if (ret == NULL) {
2408		*length = 0;
2409		return (NULL);
2410	}
2411
2412	*length = ret->pv_opaque.o_size;
2413	return (ret->pv_opaque.o_value);
2414}
2415
2416/*
2417 * Generate a filename based on the fmri and the given name and return
2418 * it in the buffer of MAXPATHLEN provided by the caller.
2419 * If temp_filename is non-zero, also generate a temporary, unique filename
2420 * and return it in the temp buffer of MAXPATHLEN provided by the caller.
2421 * The path to the generated pathname is also created.
2422 * Given fmri should begin with a scheme such as "svc:".
2423 * Returns
2424 *      0 on success
2425 *      -1 if filename would exceed MAXPATHLEN or
2426 *	-2 if unable to create directory to filename path
2427 */
2428int
2429gen_filenms_from_fmri(const char *fmri, const char *name, char *filename,
2430    char *temp_filename)
2431{
2432	int		len;
2433
2434	len = strlen(SMF_SPEEDY_FILES_PATH);
2435	len += strlen(fmri);
2436	len += 2;			/* for slash and null */
2437	len += strlen(name);
2438	len += 6;			/* For X's needed for mkstemp */
2439
2440	if (len > MAXPATHLEN)
2441		return (-1);
2442
2443	/* Construct directory name first - speedy path ends in slash */
2444	(void) strcpy(filename, SMF_SPEEDY_FILES_PATH);
2445	(void) strcat(filename, fmri);
2446	if (mkdirp(filename, 0755) == -1) {
2447		/* errno is set */
2448		if (errno != EEXIST)
2449			return (-2);
2450	}
2451
2452	(void) strcat(filename, "/");
2453	(void) strcat(filename, name);
2454
2455	if (temp_filename) {
2456		(void) strcpy(temp_filename, filename);
2457		(void) strcat(temp_filename, "XXXXXX");
2458	}
2459
2460	return (0);
2461}
2462