xref: /onnv-gate/usr/src/uts/common/os/rctl.c (revision 3247:e05001c14ea2)
10Sstevel@tonic-gate /*
20Sstevel@tonic-gate  * CDDL HEADER START
30Sstevel@tonic-gate  *
40Sstevel@tonic-gate  * The contents of this file are subject to the terms of the
52447Snf202958  * Common Development and Distribution License (the "License").
62447Snf202958  * You may not use this file except in compliance with the License.
70Sstevel@tonic-gate  *
80Sstevel@tonic-gate  * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
90Sstevel@tonic-gate  * or http://www.opensolaris.org/os/licensing.
100Sstevel@tonic-gate  * See the License for the specific language governing permissions
110Sstevel@tonic-gate  * and limitations under the License.
120Sstevel@tonic-gate  *
130Sstevel@tonic-gate  * When distributing Covered Code, include this CDDL HEADER in each
140Sstevel@tonic-gate  * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
150Sstevel@tonic-gate  * If applicable, add the following below this CDDL HEADER, with the
160Sstevel@tonic-gate  * fields enclosed by brackets "[]" replaced with your own identifying
170Sstevel@tonic-gate  * information: Portions Copyright [yyyy] [name of copyright owner]
180Sstevel@tonic-gate  *
190Sstevel@tonic-gate  * CDDL HEADER END
200Sstevel@tonic-gate  */
210Sstevel@tonic-gate /*
222447Snf202958  * Copyright 2006 Sun Microsystems, Inc.  All rights reserved.
230Sstevel@tonic-gate  * Use is subject to license terms.
240Sstevel@tonic-gate  */
250Sstevel@tonic-gate 
260Sstevel@tonic-gate #pragma ident	"%Z%%M%	%I%	%E% SMI"
270Sstevel@tonic-gate 
280Sstevel@tonic-gate #include <sys/atomic.h>
290Sstevel@tonic-gate #include <sys/cmn_err.h>
300Sstevel@tonic-gate #include <sys/id_space.h>
310Sstevel@tonic-gate #include <sys/kmem.h>
32*3247Sgjelinek #include <sys/kstat.h>
330Sstevel@tonic-gate #include <sys/log.h>
340Sstevel@tonic-gate #include <sys/modctl.h>
350Sstevel@tonic-gate #include <sys/modhash.h>
360Sstevel@tonic-gate #include <sys/mutex.h>
370Sstevel@tonic-gate #include <sys/proc.h>
380Sstevel@tonic-gate #include <sys/procset.h>
390Sstevel@tonic-gate #include <sys/project.h>
400Sstevel@tonic-gate #include <sys/resource.h>
410Sstevel@tonic-gate #include <sys/rctl.h>
420Sstevel@tonic-gate #include <sys/siginfo.h>
430Sstevel@tonic-gate #include <sys/strlog.h>
440Sstevel@tonic-gate #include <sys/systm.h>
450Sstevel@tonic-gate #include <sys/task.h>
460Sstevel@tonic-gate #include <sys/types.h>
470Sstevel@tonic-gate #include <sys/policy.h>
480Sstevel@tonic-gate #include <sys/zone.h>
490Sstevel@tonic-gate 
500Sstevel@tonic-gate /*
510Sstevel@tonic-gate  * Resource controls (rctls)
520Sstevel@tonic-gate  *
530Sstevel@tonic-gate  *   The rctl subsystem provides a mechanism for kernel components to
540Sstevel@tonic-gate  *   register their individual resource controls with the system as a whole,
550Sstevel@tonic-gate  *   such that those controls can subscribe to specific actions while being
560Sstevel@tonic-gate  *   associated with the various process-model entities provided by the kernel:
570Sstevel@tonic-gate  *   the process, the task, the project, and the zone.  (In principle, only
580Sstevel@tonic-gate  *   minor modifications would be required to connect the resource control
590Sstevel@tonic-gate  *   functionality to non-process-model entities associated with the system.)
600Sstevel@tonic-gate  *
610Sstevel@tonic-gate  *   Subsystems register their rctls via rctl_register().  Subsystems
620Sstevel@tonic-gate  *   also wishing to provide additional limits on a given rctl can modify
630Sstevel@tonic-gate  *   them once they have the rctl handle.  Each subsystem should store the
640Sstevel@tonic-gate  *   handle to their rctl for direct access.
650Sstevel@tonic-gate  *
660Sstevel@tonic-gate  *   A primary dictionary, rctl_dict, contains a hash of id to the default
670Sstevel@tonic-gate  *   control definition for each controlled resource-entity pair on the system.
680Sstevel@tonic-gate  *   A secondary dictionary, rctl_dict_by_name, contains a hash of name to
690Sstevel@tonic-gate  *   resource control handles.  The resource control handles are distributed by
700Sstevel@tonic-gate  *   the rctl_ids ID space.  The handles are private and not to be
710Sstevel@tonic-gate  *   advertised to userland; all userland interactions are via the rctl
720Sstevel@tonic-gate  *   names.
730Sstevel@tonic-gate  *
740Sstevel@tonic-gate  *   Entities inherit their rctls from their predecessor.  Since projects have
750Sstevel@tonic-gate  *   no ancestor, they inherit their rctls from the rctl dict for project
760Sstevel@tonic-gate  *   rctls.  It is expected that project controls will be set to their
770Sstevel@tonic-gate  *   appropriate values shortly after project creation, presumably from a
780Sstevel@tonic-gate  *   policy source such as the project database.
790Sstevel@tonic-gate  *
800Sstevel@tonic-gate  * Data structures
810Sstevel@tonic-gate  *   The rctl_set_t attached to each of the process model entities is a simple
820Sstevel@tonic-gate  *   hash table keyed on the rctl handle assigned at registration.  The entries
830Sstevel@tonic-gate  *   in the hash table are rctl_t's, whose relationship with the active control
840Sstevel@tonic-gate  *   values on that resource and with the global state of the resource we
850Sstevel@tonic-gate  *   illustrate below:
860Sstevel@tonic-gate  *
870Sstevel@tonic-gate  *   rctl_dict[key] --> rctl_dict_entry
880Sstevel@tonic-gate  *			   ^
890Sstevel@tonic-gate  *			   |
900Sstevel@tonic-gate  *			+--+---+
910Sstevel@tonic-gate  *   rctl_set[key] ---> | rctl | --> value <-> value <-> system value --> NULL
920Sstevel@tonic-gate  *			+--+---+		 ^
930Sstevel@tonic-gate  *			   |			 |
940Sstevel@tonic-gate  *			   +------- cursor ------+
950Sstevel@tonic-gate  *
960Sstevel@tonic-gate  *   That is, the rctl contains a back pointer to the global resource control
970Sstevel@tonic-gate  *   state for this resource, which is also available in the rctl_dict hash
980Sstevel@tonic-gate  *   table mentioned earlier.  The rctl contains two pointers to resource
990Sstevel@tonic-gate  *   control values:  one, values, indicates the entire sequence of control
1000Sstevel@tonic-gate  *   values; the other, cursor, indicates the currently active control
1010Sstevel@tonic-gate  *   value--the next value to be enforced.  The value list itself is an open,
1020Sstevel@tonic-gate  *   doubly-linked list, the last non-NULL member of which is the system value
1030Sstevel@tonic-gate  *   for that resource (being the theoretical/conventional maximum allowable
1040Sstevel@tonic-gate  *   value for the resource on this OS instance).
1050Sstevel@tonic-gate  *
1060Sstevel@tonic-gate  * Ops Vector
1070Sstevel@tonic-gate  *   Subsystems publishing rctls need not provide instances of all of the
1080Sstevel@tonic-gate  *   functions specified by the ops vector.  In particular, if general
1090Sstevel@tonic-gate  *   rctl_*() entry points are not being called, certain functions can be
1100Sstevel@tonic-gate  *   omitted.  These align as follows:
1110Sstevel@tonic-gate  *
1120Sstevel@tonic-gate  *   rctl_set()
1130Sstevel@tonic-gate  *     You may wish to provide a set callback if locking circumstances prevent
1140Sstevel@tonic-gate  *     it or if the performance cost of requesting the enforced value from the
1150Sstevel@tonic-gate  *     resource control is prohibitively expensive.  For instance, the currently
1160Sstevel@tonic-gate  *     enforced file size limit is stored on the process in the p_fsz_ctl to
1170Sstevel@tonic-gate  *     maintain read()/write() performance.
1180Sstevel@tonic-gate  *
1190Sstevel@tonic-gate  *   rctl_test()
1200Sstevel@tonic-gate  *     You must provide a test callback if you are using the rctl_test()
1210Sstevel@tonic-gate  *     interface.  An action callback is optional.
1220Sstevel@tonic-gate  *
1230Sstevel@tonic-gate  *   rctl_action()
1240Sstevel@tonic-gate  *     You may wish to provide an action callback.
1250Sstevel@tonic-gate  *
1260Sstevel@tonic-gate  * Registration
1270Sstevel@tonic-gate  *   New resource controls can be added to a running instance by loaded modules
1280Sstevel@tonic-gate  *   via registration.  (The current implementation does not support unloadable
1290Sstevel@tonic-gate  *   modules; this functionality can be added if needed, via an
1300Sstevel@tonic-gate  *   activation/deactivation interface involving the manipulation of the
1310Sstevel@tonic-gate  *   ops vector for the resource control(s) needing to support unloading.)
1320Sstevel@tonic-gate  *
1330Sstevel@tonic-gate  * Control value ordering
1340Sstevel@tonic-gate  *   Because the rctl_val chain on each rctl must be navigable in a
1350Sstevel@tonic-gate  *   deterministic way, we have to define an ordering on the rctl_val_t's.  The
1360Sstevel@tonic-gate  *   defined order is (flags & [maximal], value, flags & [deny-action],
1370Sstevel@tonic-gate  *   privilege).
1380Sstevel@tonic-gate  *
1390Sstevel@tonic-gate  * Locking
1400Sstevel@tonic-gate  *   rctl_dict_lock must be acquired prior to rctl_lists_lock.  Since
1410Sstevel@tonic-gate  *   rctl_dict_lock or rctl_lists_lock can be called at the enforcement point
1420Sstevel@tonic-gate  *   of any subsystem, holding subsystem locks, it is at all times inappropriate
1430Sstevel@tonic-gate  *   to call kmem_alloc(., KM_SLEEP) while holding either of these locks.
1440Sstevel@tonic-gate  *   Traversing any of the various resource control entity lists requires
1450Sstevel@tonic-gate  *   holding rctl_lists_lock.
1460Sstevel@tonic-gate  *
1470Sstevel@tonic-gate  *   Each individual resource control set associated with an entity must have
1480Sstevel@tonic-gate  *   its rcs_lock held for the duration of any operations that would add
1490Sstevel@tonic-gate  *   resource controls or control values to the set.
1500Sstevel@tonic-gate  *
1510Sstevel@tonic-gate  *   The locking subsequence of interest is: p_lock, rctl_dict_lock,
1520Sstevel@tonic-gate  *   rctl_lists_lock, entity->rcs_lock.
1530Sstevel@tonic-gate  */
1540Sstevel@tonic-gate 
1550Sstevel@tonic-gate id_t max_rctl_hndl = 32768;
1560Sstevel@tonic-gate int rctl_dict_size = 64;
1570Sstevel@tonic-gate int rctl_set_size = 8;
1580Sstevel@tonic-gate kmutex_t rctl_dict_lock;
1590Sstevel@tonic-gate mod_hash_t *rctl_dict;
1600Sstevel@tonic-gate mod_hash_t *rctl_dict_by_name;
1610Sstevel@tonic-gate id_space_t *rctl_ids;
1620Sstevel@tonic-gate kmem_cache_t *rctl_cache;	/* kmem cache for rctl structures */
1630Sstevel@tonic-gate kmem_cache_t *rctl_val_cache;	/* kmem cache for rctl values */
1640Sstevel@tonic-gate 
1650Sstevel@tonic-gate kmutex_t rctl_lists_lock;
1660Sstevel@tonic-gate rctl_dict_entry_t *rctl_lists[RC_MAX_ENTITY + 1];
1670Sstevel@tonic-gate 
1680Sstevel@tonic-gate /*
1690Sstevel@tonic-gate  * Default resource control operations and ops vector
1700Sstevel@tonic-gate  *   To be used if the particular rcontrol has no specific actions defined, or
1710Sstevel@tonic-gate  *   if the subsystem providing the control is quiescing (in preparation for
1720Sstevel@tonic-gate  *   unloading, presumably.)
1730Sstevel@tonic-gate  *
1740Sstevel@tonic-gate  *   Resource controls with callbacks should fill the unused operations with the
1750Sstevel@tonic-gate  *   appropriate default impotent callback.
1760Sstevel@tonic-gate  */
1770Sstevel@tonic-gate /*ARGSUSED*/
1780Sstevel@tonic-gate void
1790Sstevel@tonic-gate rcop_no_action(struct rctl *r, struct proc *p, rctl_entity_p_t *e)
1800Sstevel@tonic-gate {
1810Sstevel@tonic-gate }
1820Sstevel@tonic-gate 
1830Sstevel@tonic-gate /*ARGSUSED*/
1840Sstevel@tonic-gate rctl_qty_t
1850Sstevel@tonic-gate rcop_no_usage(struct rctl *r, struct proc *p)
1860Sstevel@tonic-gate {
1870Sstevel@tonic-gate 	return (0);
1880Sstevel@tonic-gate }
1890Sstevel@tonic-gate 
1900Sstevel@tonic-gate /*ARGSUSED*/
1910Sstevel@tonic-gate int
1920Sstevel@tonic-gate rcop_no_set(struct rctl *r, struct proc *p, rctl_entity_p_t *e, rctl_qty_t l)
1930Sstevel@tonic-gate {
1940Sstevel@tonic-gate 	return (0);
1950Sstevel@tonic-gate }
1960Sstevel@tonic-gate 
1970Sstevel@tonic-gate /*ARGSUSED*/
1980Sstevel@tonic-gate int
1990Sstevel@tonic-gate rcop_no_test(struct rctl *r, struct proc *p, rctl_entity_p_t *e,
2000Sstevel@tonic-gate     struct rctl_val *rv, rctl_qty_t i, uint_t f)
2010Sstevel@tonic-gate {
2020Sstevel@tonic-gate 	return (0);
2030Sstevel@tonic-gate }
2040Sstevel@tonic-gate 
2050Sstevel@tonic-gate rctl_ops_t rctl_default_ops = {
2060Sstevel@tonic-gate 	rcop_no_action,
2070Sstevel@tonic-gate 	rcop_no_usage,
2080Sstevel@tonic-gate 	rcop_no_set,
2090Sstevel@tonic-gate 	rcop_no_test
2100Sstevel@tonic-gate };
2110Sstevel@tonic-gate 
2120Sstevel@tonic-gate /*
2130Sstevel@tonic-gate  * Default "absolute" resource control operation and ops vector
2140Sstevel@tonic-gate  *   Useful if there is no usage associated with the
2150Sstevel@tonic-gate  *   resource control.
2160Sstevel@tonic-gate  */
2170Sstevel@tonic-gate /*ARGSUSED*/
2180Sstevel@tonic-gate int
2190Sstevel@tonic-gate rcop_absolute_test(struct rctl *r, struct proc *p, rctl_entity_p_t *e,
2200Sstevel@tonic-gate     struct rctl_val *rv, rctl_qty_t i, uint_t f)
2210Sstevel@tonic-gate {
2220Sstevel@tonic-gate 	return (i > rv->rcv_value);
2230Sstevel@tonic-gate }
2240Sstevel@tonic-gate 
2250Sstevel@tonic-gate rctl_ops_t rctl_absolute_ops = {
2260Sstevel@tonic-gate 	rcop_no_action,
2270Sstevel@tonic-gate 	rcop_no_usage,
2280Sstevel@tonic-gate 	rcop_no_set,
2290Sstevel@tonic-gate 	rcop_absolute_test
2300Sstevel@tonic-gate };
2310Sstevel@tonic-gate 
2320Sstevel@tonic-gate /*ARGSUSED*/
2330Sstevel@tonic-gate static uint_t
2340Sstevel@tonic-gate rctl_dict_hash_by_id(void *hash_data, mod_hash_key_t key)
2350Sstevel@tonic-gate {
2360Sstevel@tonic-gate 	return ((uint_t)(uintptr_t)key % rctl_dict_size);
2370Sstevel@tonic-gate }
2380Sstevel@tonic-gate 
2390Sstevel@tonic-gate static int
2400Sstevel@tonic-gate rctl_dict_id_cmp(mod_hash_key_t key1, mod_hash_key_t key2)
2410Sstevel@tonic-gate {
2420Sstevel@tonic-gate 	uint_t u1 = (uint_t)(uintptr_t)key1;
2430Sstevel@tonic-gate 	uint_t u2 = (uint_t)(uintptr_t)key2;
2440Sstevel@tonic-gate 
2450Sstevel@tonic-gate 	if (u1 > u2)
2460Sstevel@tonic-gate 		return (1);
2470Sstevel@tonic-gate 
2480Sstevel@tonic-gate 	if (u1 == u2)
2490Sstevel@tonic-gate 		return (0);
2500Sstevel@tonic-gate 
2510Sstevel@tonic-gate 	return (-1);
2520Sstevel@tonic-gate }
2530Sstevel@tonic-gate 
2540Sstevel@tonic-gate static void
2550Sstevel@tonic-gate rctl_dict_val_dtor(mod_hash_val_t val)
2560Sstevel@tonic-gate {
2570Sstevel@tonic-gate 	rctl_dict_entry_t *kr = (rctl_dict_entry_t *)val;
2580Sstevel@tonic-gate 
2590Sstevel@tonic-gate 	kmem_free(kr, sizeof (rctl_dict_entry_t));
2600Sstevel@tonic-gate }
2610Sstevel@tonic-gate 
2620Sstevel@tonic-gate /*
2630Sstevel@tonic-gate  * size_t rctl_build_name_buf()
2640Sstevel@tonic-gate  *
2650Sstevel@tonic-gate  * Overview
2660Sstevel@tonic-gate  *   rctl_build_name_buf() walks all active resource controls in the dictionary,
2670Sstevel@tonic-gate  *   building a buffer of continguous NUL-terminated strings.
2680Sstevel@tonic-gate  *
2690Sstevel@tonic-gate  * Return values
2700Sstevel@tonic-gate  *   The size of the buffer is returned, the passed pointer's contents are
2710Sstevel@tonic-gate  *   modified to that of the location of the buffer.
2720Sstevel@tonic-gate  *
2730Sstevel@tonic-gate  * Caller's context
2740Sstevel@tonic-gate  *   Caller must be in a context suitable for KM_SLEEP allocations.
2750Sstevel@tonic-gate  */
2760Sstevel@tonic-gate size_t
2770Sstevel@tonic-gate rctl_build_name_buf(char **rbufp)
2780Sstevel@tonic-gate {
2790Sstevel@tonic-gate 	size_t req_size, cpy_size;
2800Sstevel@tonic-gate 	char *rbufloc;
2810Sstevel@tonic-gate 	int i;
2820Sstevel@tonic-gate 
2830Sstevel@tonic-gate rctl_rebuild_name_buf:
2840Sstevel@tonic-gate 	req_size = cpy_size = 0;
2850Sstevel@tonic-gate 
2860Sstevel@tonic-gate 	/*
2870Sstevel@tonic-gate 	 * Calculate needed buffer length.
2880Sstevel@tonic-gate 	 */
2890Sstevel@tonic-gate 	mutex_enter(&rctl_lists_lock);
2900Sstevel@tonic-gate 	for (i = 0; i < RC_MAX_ENTITY + 1; i++) {
2910Sstevel@tonic-gate 		rctl_dict_entry_t *rde;
2920Sstevel@tonic-gate 
2930Sstevel@tonic-gate 		for (rde = rctl_lists[i];
2940Sstevel@tonic-gate 		    rde != NULL;
2950Sstevel@tonic-gate 		    rde = rde->rcd_next)
2960Sstevel@tonic-gate 			req_size += strlen(rde->rcd_name) + 1;
2970Sstevel@tonic-gate 	}
2980Sstevel@tonic-gate 	mutex_exit(&rctl_lists_lock);
2990Sstevel@tonic-gate 
3000Sstevel@tonic-gate 	rbufloc = *rbufp = kmem_alloc(req_size, KM_SLEEP);
3010Sstevel@tonic-gate 
3020Sstevel@tonic-gate 	/*
3030Sstevel@tonic-gate 	 * Copy rctl names into our buffer.  If the copy length exceeds the
3040Sstevel@tonic-gate 	 * allocate length (due to registration changes), stop copying, free the
3050Sstevel@tonic-gate 	 * buffer, and start again.
3060Sstevel@tonic-gate 	 */
3070Sstevel@tonic-gate 	mutex_enter(&rctl_lists_lock);
3080Sstevel@tonic-gate 	for (i = 0; i < RC_MAX_ENTITY + 1; i++) {
3090Sstevel@tonic-gate 		rctl_dict_entry_t *rde;
3100Sstevel@tonic-gate 
3110Sstevel@tonic-gate 		for (rde = rctl_lists[i];
3120Sstevel@tonic-gate 		    rde != NULL;
3130Sstevel@tonic-gate 		    rde = rde->rcd_next) {
3140Sstevel@tonic-gate 			size_t length = strlen(rde->rcd_name) + 1;
3150Sstevel@tonic-gate 
3160Sstevel@tonic-gate 			cpy_size += length;
3170Sstevel@tonic-gate 
3180Sstevel@tonic-gate 			if (cpy_size > req_size) {
3190Sstevel@tonic-gate 				kmem_free(*rbufp, req_size);
3200Sstevel@tonic-gate 				mutex_exit(&rctl_lists_lock);
3210Sstevel@tonic-gate 				goto rctl_rebuild_name_buf;
3220Sstevel@tonic-gate 			}
3230Sstevel@tonic-gate 
3240Sstevel@tonic-gate 			bcopy(rde->rcd_name, rbufloc, length);
3250Sstevel@tonic-gate 			rbufloc += length;
3260Sstevel@tonic-gate 		}
3270Sstevel@tonic-gate 	}
3280Sstevel@tonic-gate 	mutex_exit(&rctl_lists_lock);
3290Sstevel@tonic-gate 
3300Sstevel@tonic-gate 	return (req_size);
3310Sstevel@tonic-gate }
3320Sstevel@tonic-gate 
3330Sstevel@tonic-gate /*
3340Sstevel@tonic-gate  * rctl_dict_entry_t *rctl_dict_lookup(const char *)
3350Sstevel@tonic-gate  *
3360Sstevel@tonic-gate  * Overview
3370Sstevel@tonic-gate  *   rctl_dict_lookup() returns the resource control dictionary entry for the
3380Sstevel@tonic-gate  *   named resource control.
3390Sstevel@tonic-gate  *
3400Sstevel@tonic-gate  * Return values
3410Sstevel@tonic-gate  *   A pointer to the appropriate resource control dictionary entry, or NULL if
3420Sstevel@tonic-gate  *   no such named entry exists.
3430Sstevel@tonic-gate  *
3440Sstevel@tonic-gate  * Caller's context
3450Sstevel@tonic-gate  *   Caller must not be holding rctl_dict_lock.
3460Sstevel@tonic-gate  */
3470Sstevel@tonic-gate rctl_dict_entry_t *
3480Sstevel@tonic-gate rctl_dict_lookup(const char *name)
3490Sstevel@tonic-gate {
3500Sstevel@tonic-gate 	rctl_dict_entry_t *rde;
3510Sstevel@tonic-gate 
3520Sstevel@tonic-gate 	mutex_enter(&rctl_dict_lock);
3530Sstevel@tonic-gate 
3540Sstevel@tonic-gate 	if (mod_hash_find(rctl_dict_by_name, (mod_hash_key_t)name,
3550Sstevel@tonic-gate 	    (mod_hash_val_t *)&rde) == MH_ERR_NOTFOUND) {
3560Sstevel@tonic-gate 		mutex_exit(&rctl_dict_lock);
3570Sstevel@tonic-gate 		return (NULL);
3580Sstevel@tonic-gate 	}
3590Sstevel@tonic-gate 
3600Sstevel@tonic-gate 	mutex_exit(&rctl_dict_lock);
3610Sstevel@tonic-gate 
3620Sstevel@tonic-gate 	return (rde);
3630Sstevel@tonic-gate }
3640Sstevel@tonic-gate 
3650Sstevel@tonic-gate /*
3660Sstevel@tonic-gate  * rctl_hndl_t rctl_hndl_lookup(const char *)
3670Sstevel@tonic-gate  *
3680Sstevel@tonic-gate  * Overview
3690Sstevel@tonic-gate  *   rctl_hndl_lookup() returns the resource control id (the "handle") for the
3700Sstevel@tonic-gate  *   named resource control.
3710Sstevel@tonic-gate  *
3720Sstevel@tonic-gate  * Return values
3730Sstevel@tonic-gate  *   The appropriate id, or -1 if no such named entry exists.
3740Sstevel@tonic-gate  *
3750Sstevel@tonic-gate  * Caller's context
3760Sstevel@tonic-gate  *   Caller must not be holding rctl_dict_lock.
3770Sstevel@tonic-gate  */
3780Sstevel@tonic-gate rctl_hndl_t
3790Sstevel@tonic-gate rctl_hndl_lookup(const char *name)
3800Sstevel@tonic-gate {
3810Sstevel@tonic-gate 	rctl_dict_entry_t *rde;
3820Sstevel@tonic-gate 
3830Sstevel@tonic-gate 	if ((rde = rctl_dict_lookup(name)) == NULL)
3840Sstevel@tonic-gate 		return (-1);
3850Sstevel@tonic-gate 
3860Sstevel@tonic-gate 	return (rde->rcd_id);
3870Sstevel@tonic-gate }
3880Sstevel@tonic-gate 
3890Sstevel@tonic-gate /*
3900Sstevel@tonic-gate  * rctl_dict_entry_t * rctl_dict_lookup_hndl(rctl_hndl_t)
3910Sstevel@tonic-gate  *
3920Sstevel@tonic-gate  * Overview
3930Sstevel@tonic-gate  *   rctl_dict_lookup_hndl() completes the public lookup functions, by returning
3940Sstevel@tonic-gate  *   the resource control dictionary entry matching a given resource control id.
3950Sstevel@tonic-gate  *
3960Sstevel@tonic-gate  * Return values
3970Sstevel@tonic-gate  *   A pointer to the matching resource control dictionary entry, or NULL if the
3980Sstevel@tonic-gate  *   id does not match any existing entries.
3990Sstevel@tonic-gate  *
4000Sstevel@tonic-gate  * Caller's context
4010Sstevel@tonic-gate  *   Caller must not be holding rctl_lists_lock.
4020Sstevel@tonic-gate  */
4030Sstevel@tonic-gate rctl_dict_entry_t *
4040Sstevel@tonic-gate rctl_dict_lookup_hndl(rctl_hndl_t hndl)
4050Sstevel@tonic-gate {
4060Sstevel@tonic-gate 	uint_t i;
4070Sstevel@tonic-gate 
4080Sstevel@tonic-gate 	mutex_enter(&rctl_lists_lock);
4090Sstevel@tonic-gate 	for (i = 0; i < RC_MAX_ENTITY + 1; i++) {
4100Sstevel@tonic-gate 		rctl_dict_entry_t *rde;
4110Sstevel@tonic-gate 
4120Sstevel@tonic-gate 		for (rde = rctl_lists[i];
4130Sstevel@tonic-gate 		    rde != NULL;
4140Sstevel@tonic-gate 		    rde = rde->rcd_next)
4150Sstevel@tonic-gate 			if (rde->rcd_id == hndl) {
4160Sstevel@tonic-gate 				mutex_exit(&rctl_lists_lock);
4170Sstevel@tonic-gate 				return (rde);
4180Sstevel@tonic-gate 			}
4190Sstevel@tonic-gate 	}
4200Sstevel@tonic-gate 	mutex_exit(&rctl_lists_lock);
4210Sstevel@tonic-gate 
4220Sstevel@tonic-gate 	return (NULL);
4230Sstevel@tonic-gate }
4240Sstevel@tonic-gate 
4250Sstevel@tonic-gate /*
4260Sstevel@tonic-gate  * void rctl_add_default_limit(const char *name, rctl_qty_t value,
4270Sstevel@tonic-gate  *     rctl_priv_t privilege, uint_t action)
4280Sstevel@tonic-gate  *
4290Sstevel@tonic-gate  * Overview
4300Sstevel@tonic-gate  *   Create a default limit with specified value, privilege, and action.
4310Sstevel@tonic-gate  *
4320Sstevel@tonic-gate  * Return value
4330Sstevel@tonic-gate  *   No value returned.
4340Sstevel@tonic-gate  */
4350Sstevel@tonic-gate void
4360Sstevel@tonic-gate rctl_add_default_limit(const char *name, rctl_qty_t value,
4370Sstevel@tonic-gate     rctl_priv_t privilege, uint_t action)
4380Sstevel@tonic-gate {
4390Sstevel@tonic-gate 	rctl_val_t *dval;
4400Sstevel@tonic-gate 	rctl_dict_entry_t *rde;
4410Sstevel@tonic-gate 
4420Sstevel@tonic-gate 	dval = kmem_cache_alloc(rctl_val_cache, KM_SLEEP);
4430Sstevel@tonic-gate 	bzero(dval, sizeof (rctl_val_t));
4440Sstevel@tonic-gate 	dval->rcv_value = value;
4450Sstevel@tonic-gate 	dval->rcv_privilege = privilege;
4460Sstevel@tonic-gate 	dval->rcv_flagaction = action;
4470Sstevel@tonic-gate 	dval->rcv_action_recip_pid = -1;
4480Sstevel@tonic-gate 
4490Sstevel@tonic-gate 	rde = rctl_dict_lookup(name);
4500Sstevel@tonic-gate 	(void) rctl_val_list_insert(&rde->rcd_default_value, dval);
4510Sstevel@tonic-gate }
4520Sstevel@tonic-gate 
4530Sstevel@tonic-gate /*
4540Sstevel@tonic-gate  * void rctl_add_legacy_limit(const char *name, const char *mname,
4550Sstevel@tonic-gate  *     const char *lname, rctl_qty_t dflt)
4560Sstevel@tonic-gate  *
4570Sstevel@tonic-gate  * Overview
4580Sstevel@tonic-gate  *   Create a default privileged limit, using the value obtained from
4590Sstevel@tonic-gate  *   /etc/system if it exists and is greater than the specified default
4600Sstevel@tonic-gate  *   value.  Exists primarily for System V IPC.
4610Sstevel@tonic-gate  *
4620Sstevel@tonic-gate  * Return value
4630Sstevel@tonic-gate  *   No value returned.
4640Sstevel@tonic-gate  */
4650Sstevel@tonic-gate void
4660Sstevel@tonic-gate rctl_add_legacy_limit(const char *name, const char *mname, const char *lname,
4670Sstevel@tonic-gate     rctl_qty_t dflt, rctl_qty_t max)
4680Sstevel@tonic-gate {
4690Sstevel@tonic-gate 	rctl_qty_t qty;
4700Sstevel@tonic-gate 
4710Sstevel@tonic-gate 	if (!mod_sysvar(mname, lname, &qty) || (qty < dflt))
4720Sstevel@tonic-gate 		qty = dflt;
4730Sstevel@tonic-gate 
4740Sstevel@tonic-gate 	if (qty > max)
4750Sstevel@tonic-gate 		qty = max;
4760Sstevel@tonic-gate 
4770Sstevel@tonic-gate 	rctl_add_default_limit(name, qty, RCPRIV_PRIVILEGED, RCTL_LOCAL_DENY);
4780Sstevel@tonic-gate }
4790Sstevel@tonic-gate 
4800Sstevel@tonic-gate static rctl_set_t *
4810Sstevel@tonic-gate rctl_entity_obtain_rset(rctl_dict_entry_t *rcd, struct proc *p)
4820Sstevel@tonic-gate {
4830Sstevel@tonic-gate 	rctl_set_t *rset = NULL;
4840Sstevel@tonic-gate 
4850Sstevel@tonic-gate 	if (rcd == NULL)
4860Sstevel@tonic-gate 		return (NULL);
4870Sstevel@tonic-gate 
4880Sstevel@tonic-gate 	switch (rcd->rcd_entity) {
4890Sstevel@tonic-gate 	case RCENTITY_PROCESS:
4900Sstevel@tonic-gate 		rset = p->p_rctls;
4910Sstevel@tonic-gate 		break;
4920Sstevel@tonic-gate 	case RCENTITY_TASK:
4930Sstevel@tonic-gate 		ASSERT(MUTEX_HELD(&p->p_lock));
4940Sstevel@tonic-gate 		if (p->p_task != NULL)
4950Sstevel@tonic-gate 			rset = p->p_task->tk_rctls;
4960Sstevel@tonic-gate 		break;
4970Sstevel@tonic-gate 	case RCENTITY_PROJECT:
4980Sstevel@tonic-gate 		ASSERT(MUTEX_HELD(&p->p_lock));
4990Sstevel@tonic-gate 		if (p->p_task != NULL &&
5000Sstevel@tonic-gate 		    p->p_task->tk_proj != NULL)
5010Sstevel@tonic-gate 			rset = p->p_task->tk_proj->kpj_rctls;
5020Sstevel@tonic-gate 		break;
5030Sstevel@tonic-gate 	case RCENTITY_ZONE:
5040Sstevel@tonic-gate 		ASSERT(MUTEX_HELD(&p->p_lock));
5050Sstevel@tonic-gate 		if (p->p_zone != NULL)
5060Sstevel@tonic-gate 			rset = p->p_zone->zone_rctls;
5070Sstevel@tonic-gate 		break;
5080Sstevel@tonic-gate 	default:
5090Sstevel@tonic-gate 		panic("unknown rctl entity type %d seen", rcd->rcd_entity);
5100Sstevel@tonic-gate 		break;
5110Sstevel@tonic-gate 	}
5120Sstevel@tonic-gate 
5130Sstevel@tonic-gate 	return (rset);
5140Sstevel@tonic-gate }
5150Sstevel@tonic-gate 
5160Sstevel@tonic-gate static void
5170Sstevel@tonic-gate rctl_entity_obtain_entity_p(rctl_entity_t entity, struct proc *p,
5180Sstevel@tonic-gate     rctl_entity_p_t *e)
5190Sstevel@tonic-gate {
5200Sstevel@tonic-gate 	e->rcep_p.proc = NULL;
5210Sstevel@tonic-gate 	e->rcep_t = entity;
5220Sstevel@tonic-gate 
5230Sstevel@tonic-gate 	switch (entity) {
5240Sstevel@tonic-gate 	case RCENTITY_PROCESS:
5250Sstevel@tonic-gate 		e->rcep_p.proc = p;
5260Sstevel@tonic-gate 		break;
5270Sstevel@tonic-gate 	case RCENTITY_TASK:
5280Sstevel@tonic-gate 		ASSERT(MUTEX_HELD(&p->p_lock));
5290Sstevel@tonic-gate 		if (p->p_task != NULL)
5300Sstevel@tonic-gate 			e->rcep_p.task = p->p_task;
5310Sstevel@tonic-gate 		break;
5320Sstevel@tonic-gate 	case RCENTITY_PROJECT:
5330Sstevel@tonic-gate 		ASSERT(MUTEX_HELD(&p->p_lock));
5340Sstevel@tonic-gate 		if (p->p_task != NULL &&
5350Sstevel@tonic-gate 		    p->p_task->tk_proj != NULL)
5360Sstevel@tonic-gate 			e->rcep_p.proj = p->p_task->tk_proj;
5370Sstevel@tonic-gate 		break;
5380Sstevel@tonic-gate 	case RCENTITY_ZONE:
5390Sstevel@tonic-gate 		ASSERT(MUTEX_HELD(&p->p_lock));
5400Sstevel@tonic-gate 		if (p->p_zone != NULL)
5410Sstevel@tonic-gate 			e->rcep_p.zone = p->p_zone;
5420Sstevel@tonic-gate 		break;
5430Sstevel@tonic-gate 	default:
5440Sstevel@tonic-gate 		panic("unknown rctl entity type %d seen", entity);
5450Sstevel@tonic-gate 		break;
5460Sstevel@tonic-gate 	}
5470Sstevel@tonic-gate }
5480Sstevel@tonic-gate 
5490Sstevel@tonic-gate static void
5500Sstevel@tonic-gate rctl_gp_alloc(rctl_alloc_gp_t *rcgp)
5510Sstevel@tonic-gate {
5520Sstevel@tonic-gate 	uint_t i;
5530Sstevel@tonic-gate 
5540Sstevel@tonic-gate 	if (rcgp->rcag_nctls > 0) {
5550Sstevel@tonic-gate 		rctl_t *prev = kmem_cache_alloc(rctl_cache, KM_SLEEP);
5560Sstevel@tonic-gate 		rctl_t *rctl = prev;
5570Sstevel@tonic-gate 
5580Sstevel@tonic-gate 		rcgp->rcag_ctls = prev;
5590Sstevel@tonic-gate 
5600Sstevel@tonic-gate 		for (i = 1; i < rcgp->rcag_nctls; i++) {
5610Sstevel@tonic-gate 			rctl = kmem_cache_alloc(rctl_cache, KM_SLEEP);
5620Sstevel@tonic-gate 			prev->rc_next = rctl;
5630Sstevel@tonic-gate 			prev = rctl;
5640Sstevel@tonic-gate 		}
5650Sstevel@tonic-gate 
5660Sstevel@tonic-gate 		rctl->rc_next = NULL;
5670Sstevel@tonic-gate 	}
5680Sstevel@tonic-gate 
5690Sstevel@tonic-gate 	if (rcgp->rcag_nvals > 0) {
5700Sstevel@tonic-gate 		rctl_val_t *prev = kmem_cache_alloc(rctl_val_cache, KM_SLEEP);
5710Sstevel@tonic-gate 		rctl_val_t *rval = prev;
5720Sstevel@tonic-gate 
5730Sstevel@tonic-gate 		rcgp->rcag_vals = prev;
5740Sstevel@tonic-gate 
5750Sstevel@tonic-gate 		for (i = 1; i < rcgp->rcag_nvals; i++) {
5760Sstevel@tonic-gate 			rval = kmem_cache_alloc(rctl_val_cache, KM_SLEEP);
5770Sstevel@tonic-gate 			prev->rcv_next = rval;
5780Sstevel@tonic-gate 			prev = rval;
5790Sstevel@tonic-gate 		}
5800Sstevel@tonic-gate 
5810Sstevel@tonic-gate 		rval->rcv_next = NULL;
5820Sstevel@tonic-gate 	}
5830Sstevel@tonic-gate 
5840Sstevel@tonic-gate }
5850Sstevel@tonic-gate 
5860Sstevel@tonic-gate static rctl_val_t *
5870Sstevel@tonic-gate rctl_gp_detach_val(rctl_alloc_gp_t *rcgp)
5880Sstevel@tonic-gate {
5890Sstevel@tonic-gate 	rctl_val_t *rval = rcgp->rcag_vals;
5900Sstevel@tonic-gate 
5910Sstevel@tonic-gate 	ASSERT(rcgp->rcag_nvals > 0);
5920Sstevel@tonic-gate 	rcgp->rcag_nvals--;
5930Sstevel@tonic-gate 	rcgp->rcag_vals = rval->rcv_next;
5940Sstevel@tonic-gate 
5950Sstevel@tonic-gate 	rval->rcv_next = NULL;
5960Sstevel@tonic-gate 
5970Sstevel@tonic-gate 	return (rval);
5980Sstevel@tonic-gate }
5990Sstevel@tonic-gate 
6000Sstevel@tonic-gate static rctl_t *
6010Sstevel@tonic-gate rctl_gp_detach_ctl(rctl_alloc_gp_t *rcgp)
6020Sstevel@tonic-gate {
6030Sstevel@tonic-gate 	rctl_t *rctl = rcgp->rcag_ctls;
6040Sstevel@tonic-gate 
6050Sstevel@tonic-gate 	ASSERT(rcgp->rcag_nctls > 0);
6060Sstevel@tonic-gate 	rcgp->rcag_nctls--;
6070Sstevel@tonic-gate 	rcgp->rcag_ctls = rctl->rc_next;
6080Sstevel@tonic-gate 
6090Sstevel@tonic-gate 	rctl->rc_next = NULL;
6100Sstevel@tonic-gate 
6110Sstevel@tonic-gate 	return (rctl);
6120Sstevel@tonic-gate 
6130Sstevel@tonic-gate }
6140Sstevel@tonic-gate 
6150Sstevel@tonic-gate static void
6160Sstevel@tonic-gate rctl_gp_free(rctl_alloc_gp_t *rcgp)
6170Sstevel@tonic-gate {
6180Sstevel@tonic-gate 	rctl_val_t *rval = rcgp->rcag_vals;
6190Sstevel@tonic-gate 	rctl_t *rctl = rcgp->rcag_ctls;
6200Sstevel@tonic-gate 
6210Sstevel@tonic-gate 	while (rval != NULL) {
6220Sstevel@tonic-gate 		rctl_val_t *next = rval->rcv_next;
6230Sstevel@tonic-gate 
6240Sstevel@tonic-gate 		kmem_cache_free(rctl_val_cache, rval);
6250Sstevel@tonic-gate 		rval = next;
6260Sstevel@tonic-gate 	}
6270Sstevel@tonic-gate 
6280Sstevel@tonic-gate 	while (rctl != NULL) {
6290Sstevel@tonic-gate 		rctl_t *next = rctl->rc_next;
6300Sstevel@tonic-gate 
6310Sstevel@tonic-gate 		kmem_cache_free(rctl_cache, rctl);
6320Sstevel@tonic-gate 		rctl = next;
6330Sstevel@tonic-gate 	}
6340Sstevel@tonic-gate }
6350Sstevel@tonic-gate 
6360Sstevel@tonic-gate /*
6370Sstevel@tonic-gate  * void rctl_prealloc_destroy(rctl_alloc_gp_t *)
6380Sstevel@tonic-gate  *
6390Sstevel@tonic-gate  * Overview
6400Sstevel@tonic-gate  *   Release all unused memory allocated via one of the "prealloc" functions:
6410Sstevel@tonic-gate  *   rctl_set_init_prealloc, rctl_set_dup_prealloc, or rctl_rlimit_set_prealloc.
6420Sstevel@tonic-gate  *
6430Sstevel@tonic-gate  * Return values
6440Sstevel@tonic-gate  *   None.
6450Sstevel@tonic-gate  *
6460Sstevel@tonic-gate  * Caller's context
6470Sstevel@tonic-gate  *   No restrictions on context.
6480Sstevel@tonic-gate  */
6490Sstevel@tonic-gate void
6500Sstevel@tonic-gate rctl_prealloc_destroy(rctl_alloc_gp_t *gp)
6510Sstevel@tonic-gate {
6520Sstevel@tonic-gate 	rctl_gp_free(gp);
6530Sstevel@tonic-gate 	kmem_free(gp, sizeof (rctl_alloc_gp_t));
6540Sstevel@tonic-gate }
6550Sstevel@tonic-gate 
6560Sstevel@tonic-gate /*
6570Sstevel@tonic-gate  * int rctl_val_cmp(rctl_val_t *, rctl_val_t *, int)
6580Sstevel@tonic-gate  *
6590Sstevel@tonic-gate  * Overview
6600Sstevel@tonic-gate  *   This function defines an ordering to rctl_val_t's in order to allow
6610Sstevel@tonic-gate  *   for correct placement in value lists. When the imprecise flag is set,
6620Sstevel@tonic-gate  *   the action recipient is ignored. This is to facilitate insert,
6630Sstevel@tonic-gate  *   delete, and replace operations by rctlsys.
6640Sstevel@tonic-gate  *
6650Sstevel@tonic-gate  * Return values
6660Sstevel@tonic-gate  *   0 if the val_t's are are considered identical
6670Sstevel@tonic-gate  *   -1 if a is ordered lower than b
6680Sstevel@tonic-gate  *   1 if a is lowered higher than b
6690Sstevel@tonic-gate  *
6700Sstevel@tonic-gate  * Caller's context
6710Sstevel@tonic-gate  *   No restrictions on context.
6720Sstevel@tonic-gate  */
6730Sstevel@tonic-gate int
6740Sstevel@tonic-gate rctl_val_cmp(rctl_val_t *a, rctl_val_t *b, int imprecise)
6750Sstevel@tonic-gate {
6760Sstevel@tonic-gate 	if ((a->rcv_flagaction & RCTL_LOCAL_MAXIMAL) <
6770Sstevel@tonic-gate 	    (b->rcv_flagaction & RCTL_LOCAL_MAXIMAL))
6780Sstevel@tonic-gate 		return (-1);
6790Sstevel@tonic-gate 
6800Sstevel@tonic-gate 	if ((a->rcv_flagaction & RCTL_LOCAL_MAXIMAL) >
6810Sstevel@tonic-gate 	    (b->rcv_flagaction & RCTL_LOCAL_MAXIMAL))
6820Sstevel@tonic-gate 		return (1);
6830Sstevel@tonic-gate 
6840Sstevel@tonic-gate 	if (a->rcv_value < b->rcv_value)
6850Sstevel@tonic-gate 		return (-1);
6860Sstevel@tonic-gate 
6870Sstevel@tonic-gate 	if (a->rcv_value > b->rcv_value)
6880Sstevel@tonic-gate 		return (1);
6890Sstevel@tonic-gate 
6900Sstevel@tonic-gate 	if ((a->rcv_flagaction & RCTL_LOCAL_DENY) <
6910Sstevel@tonic-gate 	    (b->rcv_flagaction & RCTL_LOCAL_DENY))
6920Sstevel@tonic-gate 		return (-1);
6930Sstevel@tonic-gate 
6940Sstevel@tonic-gate 	if ((a->rcv_flagaction & RCTL_LOCAL_DENY) >
6950Sstevel@tonic-gate 	    (b->rcv_flagaction & RCTL_LOCAL_DENY))
6960Sstevel@tonic-gate 		return (1);
6970Sstevel@tonic-gate 
6980Sstevel@tonic-gate 	if (a->rcv_privilege < b->rcv_privilege)
6990Sstevel@tonic-gate 		return (-1);
7000Sstevel@tonic-gate 
7010Sstevel@tonic-gate 	if (a->rcv_privilege > b->rcv_privilege)
7020Sstevel@tonic-gate 		return (1);
7030Sstevel@tonic-gate 
7040Sstevel@tonic-gate 	if (imprecise)
7050Sstevel@tonic-gate 		return (0);
7060Sstevel@tonic-gate 
7070Sstevel@tonic-gate 	if (a->rcv_action_recip_pid < b->rcv_action_recip_pid)
7080Sstevel@tonic-gate 		return (-1);
7090Sstevel@tonic-gate 
7100Sstevel@tonic-gate 	if (a->rcv_action_recip_pid > b->rcv_action_recip_pid)
7110Sstevel@tonic-gate 		return (1);
7120Sstevel@tonic-gate 
7130Sstevel@tonic-gate 	return (0);
7140Sstevel@tonic-gate }
7150Sstevel@tonic-gate 
7160Sstevel@tonic-gate static rctl_val_t *
7170Sstevel@tonic-gate rctl_val_list_find(rctl_val_t **head, rctl_val_t *cval)
7180Sstevel@tonic-gate {
7190Sstevel@tonic-gate 	rctl_val_t *rval = *head;
7200Sstevel@tonic-gate 
7210Sstevel@tonic-gate 	while (rval != NULL) {
7220Sstevel@tonic-gate 		if (rctl_val_cmp(cval, rval, 0) == 0)
7230Sstevel@tonic-gate 			return (rval);
7240Sstevel@tonic-gate 
7250Sstevel@tonic-gate 		rval = rval->rcv_next;
7260Sstevel@tonic-gate 	}
7270Sstevel@tonic-gate 
7280Sstevel@tonic-gate 	return (NULL);
7290Sstevel@tonic-gate 
7300Sstevel@tonic-gate }
7310Sstevel@tonic-gate 
7320Sstevel@tonic-gate /*
7330Sstevel@tonic-gate  * int rctl_val_list_insert(rctl_val_t **, rctl_val_t *)
7340Sstevel@tonic-gate  *
7350Sstevel@tonic-gate  * Overview
7360Sstevel@tonic-gate  *   This function inserts the rctl_val_t into the value list provided.
7370Sstevel@tonic-gate  *   The insert is always successful unless if the value is a duplicate
7380Sstevel@tonic-gate  *   of one already in the list.
7390Sstevel@tonic-gate  *
7400Sstevel@tonic-gate  * Return values
7410Sstevel@tonic-gate  *    1 if the value was a duplicate of an existing value in the list.
7420Sstevel@tonic-gate  *    0 if the insert was successful.
7430Sstevel@tonic-gate  */
7440Sstevel@tonic-gate int
7450Sstevel@tonic-gate rctl_val_list_insert(rctl_val_t **root, rctl_val_t *rval)
7460Sstevel@tonic-gate {
7470Sstevel@tonic-gate 	rctl_val_t *prev;
7480Sstevel@tonic-gate 	int equiv;
7490Sstevel@tonic-gate 
7500Sstevel@tonic-gate 	rval->rcv_next = NULL;
7510Sstevel@tonic-gate 	rval->rcv_prev = NULL;
7520Sstevel@tonic-gate 
7530Sstevel@tonic-gate 	if (*root == NULL) {
7540Sstevel@tonic-gate 		*root = rval;
7550Sstevel@tonic-gate 		return (0);
7560Sstevel@tonic-gate 	}
7570Sstevel@tonic-gate 
7580Sstevel@tonic-gate 	equiv = rctl_val_cmp(rval, *root, 0);
7590Sstevel@tonic-gate 
7600Sstevel@tonic-gate 	if (equiv == 0)
7610Sstevel@tonic-gate 		return (1);
7620Sstevel@tonic-gate 
7630Sstevel@tonic-gate 	if (equiv < 0) {
7640Sstevel@tonic-gate 		rval->rcv_next = *root;
7650Sstevel@tonic-gate 		rval->rcv_next->rcv_prev = rval;
7660Sstevel@tonic-gate 		*root = rval;
7670Sstevel@tonic-gate 
7680Sstevel@tonic-gate 		return (0);
7690Sstevel@tonic-gate 	}
7700Sstevel@tonic-gate 
7710Sstevel@tonic-gate 	prev = *root;
7720Sstevel@tonic-gate 	while (prev->rcv_next != NULL &&
7730Sstevel@tonic-gate 	    (equiv = rctl_val_cmp(rval, prev->rcv_next, 0)) > 0) {
7740Sstevel@tonic-gate 		prev = prev->rcv_next;
7750Sstevel@tonic-gate 	}
7760Sstevel@tonic-gate 
7770Sstevel@tonic-gate 	if (equiv == 0)
7780Sstevel@tonic-gate 		return (1);
7790Sstevel@tonic-gate 
7800Sstevel@tonic-gate 	rval->rcv_next = prev->rcv_next;
7810Sstevel@tonic-gate 	if (rval->rcv_next != NULL)
7820Sstevel@tonic-gate 		rval->rcv_next->rcv_prev = rval;
7830Sstevel@tonic-gate 	prev->rcv_next = rval;
7840Sstevel@tonic-gate 	rval->rcv_prev = prev;
7850Sstevel@tonic-gate 
7860Sstevel@tonic-gate 	return (0);
7870Sstevel@tonic-gate }
7880Sstevel@tonic-gate 
7890Sstevel@tonic-gate static int
7900Sstevel@tonic-gate rctl_val_list_delete(rctl_val_t **root, rctl_val_t *rval)
7910Sstevel@tonic-gate {
7920Sstevel@tonic-gate 	rctl_val_t *prev;
7930Sstevel@tonic-gate 
7940Sstevel@tonic-gate 	if (*root == NULL)
7950Sstevel@tonic-gate 		return (-1);
7960Sstevel@tonic-gate 
7970Sstevel@tonic-gate 	prev = *root;
7980Sstevel@tonic-gate 	if (rctl_val_cmp(rval, prev, 0) == 0) {
7990Sstevel@tonic-gate 		*root = prev->rcv_next;
8000Sstevel@tonic-gate 		(*root)->rcv_prev = NULL;
8010Sstevel@tonic-gate 
8020Sstevel@tonic-gate 		kmem_cache_free(rctl_val_cache, prev);
8030Sstevel@tonic-gate 
8040Sstevel@tonic-gate 		return (0);
8050Sstevel@tonic-gate 	}
8060Sstevel@tonic-gate 
8070Sstevel@tonic-gate 	while (prev->rcv_next != NULL &&
8080Sstevel@tonic-gate 	    rctl_val_cmp(rval, prev->rcv_next, 0) != 0) {
8090Sstevel@tonic-gate 		prev = prev->rcv_next;
8100Sstevel@tonic-gate 	}
8110Sstevel@tonic-gate 
8120Sstevel@tonic-gate 	if (prev->rcv_next == NULL) {
8130Sstevel@tonic-gate 		/*
8140Sstevel@tonic-gate 		 * If we navigate the entire list and cannot find a match, then
8150Sstevel@tonic-gate 		 * return failure.
8160Sstevel@tonic-gate 		 */
8170Sstevel@tonic-gate 		return (-1);
8180Sstevel@tonic-gate 	}
8190Sstevel@tonic-gate 
8200Sstevel@tonic-gate 	prev = prev->rcv_next;
8210Sstevel@tonic-gate 	prev->rcv_prev->rcv_next = prev->rcv_next;
8220Sstevel@tonic-gate 	if (prev->rcv_next != NULL)
8230Sstevel@tonic-gate 		prev->rcv_next->rcv_prev = prev->rcv_prev;
8240Sstevel@tonic-gate 
8250Sstevel@tonic-gate 	kmem_cache_free(rctl_val_cache, prev);
8260Sstevel@tonic-gate 
8270Sstevel@tonic-gate 	return (0);
8280Sstevel@tonic-gate }
8290Sstevel@tonic-gate 
8300Sstevel@tonic-gate static rctl_val_t *
8310Sstevel@tonic-gate rctl_val_list_dup(rctl_val_t *rval, rctl_alloc_gp_t *ragp, struct proc *oldp,
8320Sstevel@tonic-gate     struct proc *newp)
8330Sstevel@tonic-gate {
8340Sstevel@tonic-gate 	rctl_val_t *head = NULL;
8350Sstevel@tonic-gate 
8360Sstevel@tonic-gate 	for (; rval != NULL; rval = rval->rcv_next) {
8370Sstevel@tonic-gate 		rctl_val_t *dval = rctl_gp_detach_val(ragp);
8380Sstevel@tonic-gate 
8390Sstevel@tonic-gate 		bcopy(rval, dval, sizeof (rctl_val_t));
8400Sstevel@tonic-gate 		dval->rcv_prev = dval->rcv_next = NULL;
8410Sstevel@tonic-gate 
8420Sstevel@tonic-gate 		if (oldp == NULL ||
8430Sstevel@tonic-gate 		    rval->rcv_action_recipient == NULL ||
8440Sstevel@tonic-gate 		    rval->rcv_action_recipient == oldp) {
8450Sstevel@tonic-gate 			if (rval->rcv_privilege == RCPRIV_BASIC) {
8460Sstevel@tonic-gate 				dval->rcv_action_recipient = newp;
8470Sstevel@tonic-gate 				dval->rcv_action_recip_pid = newp->p_pid;
8480Sstevel@tonic-gate 			} else {
8490Sstevel@tonic-gate 				dval->rcv_action_recipient = NULL;
8500Sstevel@tonic-gate 				dval->rcv_action_recip_pid = -1;
8510Sstevel@tonic-gate 			}
8520Sstevel@tonic-gate 
8530Sstevel@tonic-gate 			(void) rctl_val_list_insert(&head, dval);
8540Sstevel@tonic-gate 		} else {
8550Sstevel@tonic-gate 			kmem_cache_free(rctl_val_cache, dval);
8560Sstevel@tonic-gate 		}
8570Sstevel@tonic-gate 	}
8580Sstevel@tonic-gate 
8590Sstevel@tonic-gate 	return (head);
8600Sstevel@tonic-gate }
8610Sstevel@tonic-gate 
8620Sstevel@tonic-gate static void
8630Sstevel@tonic-gate rctl_val_list_reset(rctl_val_t *rval)
8640Sstevel@tonic-gate {
8650Sstevel@tonic-gate 	for (; rval != NULL; rval = rval->rcv_next)
8660Sstevel@tonic-gate 		rval->rcv_firing_time = 0;
8670Sstevel@tonic-gate }
8680Sstevel@tonic-gate 
8690Sstevel@tonic-gate static uint_t
8700Sstevel@tonic-gate rctl_val_list_count(rctl_val_t *rval)
8710Sstevel@tonic-gate {
8720Sstevel@tonic-gate 	uint_t n = 0;
8730Sstevel@tonic-gate 
8740Sstevel@tonic-gate 	for (; rval != NULL; rval = rval->rcv_next)
8750Sstevel@tonic-gate 		n++;
8760Sstevel@tonic-gate 
8770Sstevel@tonic-gate 	return (n);
8780Sstevel@tonic-gate }
8790Sstevel@tonic-gate 
8800Sstevel@tonic-gate 
8810Sstevel@tonic-gate static void
8820Sstevel@tonic-gate rctl_val_list_free(rctl_val_t *rval)
8830Sstevel@tonic-gate {
8840Sstevel@tonic-gate 	while (rval != NULL) {
8850Sstevel@tonic-gate 		rctl_val_t *next = rval->rcv_next;
8860Sstevel@tonic-gate 
8870Sstevel@tonic-gate 		kmem_cache_free(rctl_val_cache, rval);
8880Sstevel@tonic-gate 
8890Sstevel@tonic-gate 		rval = next;
8900Sstevel@tonic-gate 	}
8910Sstevel@tonic-gate }
8920Sstevel@tonic-gate 
8930Sstevel@tonic-gate /*
8940Sstevel@tonic-gate  * rctl_qty_t rctl_model_maximum(rctl_dict_entry_t *, struct proc *)
8950Sstevel@tonic-gate  *
8960Sstevel@tonic-gate  * Overview
8970Sstevel@tonic-gate  *   In cases where the operating system supports more than one process
8980Sstevel@tonic-gate  *   addressing model, the operating system capabilities will exceed those of
8990Sstevel@tonic-gate  *   one or more of these models.  Processes in a less capable model must have
9000Sstevel@tonic-gate  *   their resources accurately controlled, without diluting those of their
9010Sstevel@tonic-gate  *   descendants reached via exec().  rctl_model_maximum() returns the governing
9020Sstevel@tonic-gate  *   value for the specified process with respect to a resource control, such
9030Sstevel@tonic-gate  *   that the value can used for the RCTLOP_SET callback or compatability
9040Sstevel@tonic-gate  *   support.
9050Sstevel@tonic-gate  *
9060Sstevel@tonic-gate  * Return values
9070Sstevel@tonic-gate  *   The maximum value for the given process for the specified resource control.
9080Sstevel@tonic-gate  *
9090Sstevel@tonic-gate  * Caller's context
9100Sstevel@tonic-gate  *   No restrictions on context.
9110Sstevel@tonic-gate  */
9120Sstevel@tonic-gate rctl_qty_t
9130Sstevel@tonic-gate rctl_model_maximum(rctl_dict_entry_t *rde, struct proc *p)
9140Sstevel@tonic-gate {
9150Sstevel@tonic-gate 	if (p->p_model == DATAMODEL_NATIVE)
9160Sstevel@tonic-gate 		return (rde->rcd_max_native);
9170Sstevel@tonic-gate 
9180Sstevel@tonic-gate 	return (rde->rcd_max_ilp32);
9190Sstevel@tonic-gate }
9200Sstevel@tonic-gate 
9210Sstevel@tonic-gate /*
9220Sstevel@tonic-gate  * rctl_qty_t rctl_model_value(rctl_dict_entry_t *, struct proc *, rctl_qty_t)
9230Sstevel@tonic-gate  *
9240Sstevel@tonic-gate  * Overview
9250Sstevel@tonic-gate  *   Convenience function wrapping the rctl_model_maximum() functionality.
9260Sstevel@tonic-gate  *
9270Sstevel@tonic-gate  * Return values
9280Sstevel@tonic-gate  *   The lesser of the process's maximum value and the given value for the
9290Sstevel@tonic-gate  *   specified resource control.
9300Sstevel@tonic-gate  *
9310Sstevel@tonic-gate  * Caller's context
9320Sstevel@tonic-gate  *   No restrictions on context.
9330Sstevel@tonic-gate  */
9340Sstevel@tonic-gate rctl_qty_t
9350Sstevel@tonic-gate rctl_model_value(rctl_dict_entry_t *rde, struct proc *p, rctl_qty_t value)
9360Sstevel@tonic-gate {
9370Sstevel@tonic-gate 	rctl_qty_t max = rctl_model_maximum(rde, p);
9380Sstevel@tonic-gate 
9390Sstevel@tonic-gate 	return (value < max ? value : max);
9400Sstevel@tonic-gate }
9410Sstevel@tonic-gate 
9420Sstevel@tonic-gate static void
9430Sstevel@tonic-gate rctl_set_insert(rctl_set_t *set, rctl_hndl_t hndl, rctl_t *rctl)
9440Sstevel@tonic-gate {
9450Sstevel@tonic-gate 	uint_t index = hndl % rctl_set_size;
9460Sstevel@tonic-gate 	rctl_t *next_ctl, *prev_ctl;
9470Sstevel@tonic-gate 
9480Sstevel@tonic-gate 	ASSERT(MUTEX_HELD(&set->rcs_lock));
9490Sstevel@tonic-gate 
9500Sstevel@tonic-gate 	rctl->rc_next = NULL;
9510Sstevel@tonic-gate 
9520Sstevel@tonic-gate 	if (set->rcs_ctls[index] == NULL) {
9530Sstevel@tonic-gate 		set->rcs_ctls[index] = rctl;
9540Sstevel@tonic-gate 		return;
9550Sstevel@tonic-gate 	}
9560Sstevel@tonic-gate 
9570Sstevel@tonic-gate 	if (hndl < set->rcs_ctls[index]->rc_id) {
9580Sstevel@tonic-gate 		rctl->rc_next = set->rcs_ctls[index];
9590Sstevel@tonic-gate 		set->rcs_ctls[index] = rctl;
9600Sstevel@tonic-gate 
9610Sstevel@tonic-gate 		return;
9620Sstevel@tonic-gate 	}
9630Sstevel@tonic-gate 
9640Sstevel@tonic-gate 	for (next_ctl = set->rcs_ctls[index]->rc_next,
9650Sstevel@tonic-gate 	    prev_ctl = set->rcs_ctls[index];
9660Sstevel@tonic-gate 	    next_ctl != NULL;
9670Sstevel@tonic-gate 	    prev_ctl = next_ctl,
9680Sstevel@tonic-gate 	    next_ctl = next_ctl->rc_next) {
9690Sstevel@tonic-gate 		if (next_ctl->rc_id > hndl) {
9700Sstevel@tonic-gate 			rctl->rc_next = next_ctl;
9710Sstevel@tonic-gate 			prev_ctl->rc_next = rctl;
9720Sstevel@tonic-gate 
9730Sstevel@tonic-gate 			return;
9740Sstevel@tonic-gate 		}
9750Sstevel@tonic-gate 	}
9760Sstevel@tonic-gate 
9770Sstevel@tonic-gate 	rctl->rc_next = next_ctl;
9780Sstevel@tonic-gate 	prev_ctl->rc_next = rctl;
9790Sstevel@tonic-gate }
9800Sstevel@tonic-gate 
9810Sstevel@tonic-gate /*
9820Sstevel@tonic-gate  * rctl_set_t *rctl_set_create()
9830Sstevel@tonic-gate  *
9840Sstevel@tonic-gate  * Overview
9850Sstevel@tonic-gate  *   Create an empty resource control set, suitable for attaching to a
9860Sstevel@tonic-gate  *   controlled entity.
9870Sstevel@tonic-gate  *
9880Sstevel@tonic-gate  * Return values
9890Sstevel@tonic-gate  *   A pointer to the newly created set.
9900Sstevel@tonic-gate  *
9910Sstevel@tonic-gate  * Caller's context
9920Sstevel@tonic-gate  *   Safe for KM_SLEEP allocations.
9930Sstevel@tonic-gate  */
9940Sstevel@tonic-gate rctl_set_t *
9950Sstevel@tonic-gate rctl_set_create()
9960Sstevel@tonic-gate {
9970Sstevel@tonic-gate 	rctl_set_t *rset = kmem_zalloc(sizeof (rctl_set_t), KM_SLEEP);
9980Sstevel@tonic-gate 
9990Sstevel@tonic-gate 	mutex_init(&rset->rcs_lock, NULL, MUTEX_DEFAULT, NULL);
10000Sstevel@tonic-gate 	rset->rcs_ctls = kmem_zalloc(rctl_set_size * sizeof (rctl_t *),
10010Sstevel@tonic-gate 	    KM_SLEEP);
10020Sstevel@tonic-gate 	rset->rcs_entity = -1;
10030Sstevel@tonic-gate 
10040Sstevel@tonic-gate 	return (rset);
10050Sstevel@tonic-gate }
10060Sstevel@tonic-gate 
10070Sstevel@tonic-gate /*
10080Sstevel@tonic-gate  * rctl_gp_alloc_t *rctl_set_init_prealloc(rctl_entity_t)
10090Sstevel@tonic-gate  *
10100Sstevel@tonic-gate  * Overview
10110Sstevel@tonic-gate  *    rctl_set_init_prealloc() examines the globally defined resource controls
10120Sstevel@tonic-gate  *    and their default values and returns a resource control allocation group
10130Sstevel@tonic-gate  *    populated with sufficient controls and values to form a representative
10140Sstevel@tonic-gate  *    resource control set for the specified entity.
10150Sstevel@tonic-gate  *
10160Sstevel@tonic-gate  * Return values
10170Sstevel@tonic-gate  *    A pointer to the newly created allocation group.
10180Sstevel@tonic-gate  *
10190Sstevel@tonic-gate  * Caller's context
10200Sstevel@tonic-gate  *    Caller must be in a context suitable for KM_SLEEP allocations.
10210Sstevel@tonic-gate  */
10220Sstevel@tonic-gate rctl_alloc_gp_t *
10230Sstevel@tonic-gate rctl_set_init_prealloc(rctl_entity_t entity)
10240Sstevel@tonic-gate {
10250Sstevel@tonic-gate 	rctl_dict_entry_t *rde;
10260Sstevel@tonic-gate 	rctl_alloc_gp_t *ragp = kmem_zalloc(sizeof (rctl_alloc_gp_t), KM_SLEEP);
10270Sstevel@tonic-gate 
10280Sstevel@tonic-gate 	ASSERT(MUTEX_NOT_HELD(&curproc->p_lock));
10290Sstevel@tonic-gate 
10300Sstevel@tonic-gate 	if (rctl_lists[entity] == NULL)
10310Sstevel@tonic-gate 		return (ragp);
10320Sstevel@tonic-gate 
10330Sstevel@tonic-gate 	mutex_enter(&rctl_lists_lock);
10340Sstevel@tonic-gate 
10350Sstevel@tonic-gate 	for (rde = rctl_lists[entity]; rde != NULL; rde = rde->rcd_next) {
10360Sstevel@tonic-gate 		ragp->rcag_nctls++;
10370Sstevel@tonic-gate 		ragp->rcag_nvals += rctl_val_list_count(rde->rcd_default_value);
10380Sstevel@tonic-gate 	}
10390Sstevel@tonic-gate 
10400Sstevel@tonic-gate 	mutex_exit(&rctl_lists_lock);
10410Sstevel@tonic-gate 
10420Sstevel@tonic-gate 	rctl_gp_alloc(ragp);
10430Sstevel@tonic-gate 
10440Sstevel@tonic-gate 	return (ragp);
10450Sstevel@tonic-gate }
10460Sstevel@tonic-gate 
10470Sstevel@tonic-gate /*
10480Sstevel@tonic-gate  * rctl_set_t *rctl_set_init(rctl_entity_t)
10490Sstevel@tonic-gate  *
10500Sstevel@tonic-gate  * Overview
10510Sstevel@tonic-gate  *   rctl_set_create() creates a resource control set, initialized with the
10520Sstevel@tonic-gate  *   system infinite values on all registered controls, for attachment to a
10530Sstevel@tonic-gate  *   system entity requiring resource controls, such as a process or a task.
10540Sstevel@tonic-gate  *
10550Sstevel@tonic-gate  * Return values
10560Sstevel@tonic-gate  *   A pointer to the newly filled set.
10570Sstevel@tonic-gate  *
10580Sstevel@tonic-gate  * Caller's context
10590Sstevel@tonic-gate  *   Caller must be holding p_lock on entry so that RCTLOP_SET() functions
10600Sstevel@tonic-gate  *   may modify task and project members based on the proc structure
10610Sstevel@tonic-gate  *   they are passed.
10620Sstevel@tonic-gate  */
10630Sstevel@tonic-gate rctl_set_t *
10640Sstevel@tonic-gate rctl_set_init(rctl_entity_t entity, struct proc *p, rctl_entity_p_t *e,
10650Sstevel@tonic-gate     rctl_set_t *rset, rctl_alloc_gp_t *ragp)
10660Sstevel@tonic-gate {
10670Sstevel@tonic-gate 	rctl_dict_entry_t *rde;
10680Sstevel@tonic-gate 
10690Sstevel@tonic-gate 	ASSERT(MUTEX_HELD(&p->p_lock));
10700Sstevel@tonic-gate 	ASSERT(e);
10710Sstevel@tonic-gate 	rset->rcs_entity = entity;
10720Sstevel@tonic-gate 
10730Sstevel@tonic-gate 	if (rctl_lists[entity] == NULL)
10740Sstevel@tonic-gate 		return (rset);
10750Sstevel@tonic-gate 
10760Sstevel@tonic-gate 	mutex_enter(&rctl_lists_lock);
10770Sstevel@tonic-gate 	mutex_enter(&rset->rcs_lock);
10780Sstevel@tonic-gate 
10790Sstevel@tonic-gate 	for (rde = rctl_lists[entity]; rde != NULL; rde = rde->rcd_next) {
10800Sstevel@tonic-gate 		rctl_t *rctl = rctl_gp_detach_ctl(ragp);
10810Sstevel@tonic-gate 
10820Sstevel@tonic-gate 		rctl->rc_dict_entry = rde;
10830Sstevel@tonic-gate 		rctl->rc_id = rde->rcd_id;
10840Sstevel@tonic-gate 
10850Sstevel@tonic-gate 		rctl->rc_values = rctl_val_list_dup(rde->rcd_default_value,
10860Sstevel@tonic-gate 		    ragp, NULL, p);
10870Sstevel@tonic-gate 		rctl->rc_cursor = rctl->rc_values;
10880Sstevel@tonic-gate 
10890Sstevel@tonic-gate 		ASSERT(rctl->rc_cursor != NULL);
10900Sstevel@tonic-gate 
10910Sstevel@tonic-gate 		rctl_set_insert(rset, rde->rcd_id, rctl);
10920Sstevel@tonic-gate 
10930Sstevel@tonic-gate 		RCTLOP_SET(rctl, p, e, rctl_model_value(rctl->rc_dict_entry, p,
10940Sstevel@tonic-gate 		    rctl->rc_cursor->rcv_value));
10950Sstevel@tonic-gate 	}
10960Sstevel@tonic-gate 
10970Sstevel@tonic-gate 	mutex_exit(&rset->rcs_lock);
10980Sstevel@tonic-gate 	mutex_exit(&rctl_lists_lock);
10990Sstevel@tonic-gate 
11000Sstevel@tonic-gate 	return (rset);
11010Sstevel@tonic-gate }
11020Sstevel@tonic-gate 
11030Sstevel@tonic-gate static rctl_t *
11040Sstevel@tonic-gate rctl_dup(rctl_t *rctl, rctl_alloc_gp_t *ragp, struct proc *oldp,
11050Sstevel@tonic-gate     struct proc *newp)
11060Sstevel@tonic-gate {
11070Sstevel@tonic-gate 	rctl_t *dup = rctl_gp_detach_ctl(ragp);
11080Sstevel@tonic-gate 	rctl_val_t *dval;
11090Sstevel@tonic-gate 
11100Sstevel@tonic-gate 	dup->rc_id = rctl->rc_id;
11110Sstevel@tonic-gate 	dup->rc_dict_entry = rctl->rc_dict_entry;
11120Sstevel@tonic-gate 	dup->rc_next = NULL;
11130Sstevel@tonic-gate 	dup->rc_cursor = NULL;
11140Sstevel@tonic-gate 	dup->rc_values = rctl_val_list_dup(rctl->rc_values, ragp, oldp, newp);
11150Sstevel@tonic-gate 
11160Sstevel@tonic-gate 	for (dval = dup->rc_values;
11170Sstevel@tonic-gate 	    dval != NULL; dval = dval->rcv_next) {
11180Sstevel@tonic-gate 		if (rctl_val_cmp(rctl->rc_cursor, dval, 0) >= 0) {
11190Sstevel@tonic-gate 			dup->rc_cursor = dval;
11200Sstevel@tonic-gate 			break;
11210Sstevel@tonic-gate 		}
11220Sstevel@tonic-gate 	}
11230Sstevel@tonic-gate 
11240Sstevel@tonic-gate 	if (dup->rc_cursor == NULL)
11250Sstevel@tonic-gate 		dup->rc_cursor = dup->rc_values;
11260Sstevel@tonic-gate 
11270Sstevel@tonic-gate 	return (dup);
11280Sstevel@tonic-gate }
11290Sstevel@tonic-gate 
11300Sstevel@tonic-gate static void
11310Sstevel@tonic-gate rctl_set_fill_alloc_gp(rctl_set_t *set, rctl_alloc_gp_t *ragp)
11320Sstevel@tonic-gate {
11330Sstevel@tonic-gate 	uint_t i;
11340Sstevel@tonic-gate 
11350Sstevel@tonic-gate 	bzero(ragp, sizeof (rctl_alloc_gp_t));
11360Sstevel@tonic-gate 
11370Sstevel@tonic-gate 	for (i = 0; i < rctl_set_size; i++) {
11380Sstevel@tonic-gate 		rctl_t *r = set->rcs_ctls[i];
11390Sstevel@tonic-gate 
11400Sstevel@tonic-gate 		while (r != NULL) {
11410Sstevel@tonic-gate 			ragp->rcag_nctls++;
11420Sstevel@tonic-gate 
11430Sstevel@tonic-gate 			ragp->rcag_nvals += rctl_val_list_count(r->rc_values);
11440Sstevel@tonic-gate 
11450Sstevel@tonic-gate 			r = r->rc_next;
11460Sstevel@tonic-gate 		}
11470Sstevel@tonic-gate 	}
11480Sstevel@tonic-gate }
11490Sstevel@tonic-gate 
11500Sstevel@tonic-gate /*
11510Sstevel@tonic-gate  * rctl_alloc_gp_t *rctl_set_dup_prealloc(rctl_set_t *)
11520Sstevel@tonic-gate  *
11530Sstevel@tonic-gate  * Overview
11540Sstevel@tonic-gate  *   Given a resource control set, allocate a sufficiently large allocation
11550Sstevel@tonic-gate  *   group to contain a duplicate of the set.
11560Sstevel@tonic-gate  *
11570Sstevel@tonic-gate  * Return value
11580Sstevel@tonic-gate  *   A pointer to the newly created allocation group.
11590Sstevel@tonic-gate  *
11600Sstevel@tonic-gate  * Caller's context
11610Sstevel@tonic-gate  *   Safe for KM_SLEEP allocations.
11620Sstevel@tonic-gate  */
11630Sstevel@tonic-gate rctl_alloc_gp_t *
11640Sstevel@tonic-gate rctl_set_dup_prealloc(rctl_set_t *set)
11650Sstevel@tonic-gate {
11660Sstevel@tonic-gate 	rctl_alloc_gp_t *ragp = kmem_zalloc(sizeof (rctl_alloc_gp_t), KM_SLEEP);
11670Sstevel@tonic-gate 
11680Sstevel@tonic-gate 	ASSERT(MUTEX_NOT_HELD(&curproc->p_lock));
11690Sstevel@tonic-gate 
11700Sstevel@tonic-gate 	mutex_enter(&set->rcs_lock);
11710Sstevel@tonic-gate 	rctl_set_fill_alloc_gp(set, ragp);
11720Sstevel@tonic-gate 	mutex_exit(&set->rcs_lock);
11730Sstevel@tonic-gate 
11740Sstevel@tonic-gate 	rctl_gp_alloc(ragp);
11750Sstevel@tonic-gate 
11760Sstevel@tonic-gate 	return (ragp);
11770Sstevel@tonic-gate }
11780Sstevel@tonic-gate 
11790Sstevel@tonic-gate /*
11800Sstevel@tonic-gate  * int rctl_set_dup_ready(rctl_set_t *, rctl_alloc_gp_t *)
11810Sstevel@tonic-gate  *
11820Sstevel@tonic-gate  * Overview
11830Sstevel@tonic-gate  *   Verify that the allocation group provided is large enough to allow a
11840Sstevel@tonic-gate  *   duplicate of the given resource control set to be constructed from its
11850Sstevel@tonic-gate  *   contents.
11860Sstevel@tonic-gate  *
11870Sstevel@tonic-gate  * Return values
11880Sstevel@tonic-gate  *   1 if the allocation group is sufficiently large, 0 otherwise.
11890Sstevel@tonic-gate  *
11900Sstevel@tonic-gate  * Caller's context
11910Sstevel@tonic-gate  *   rcs_lock must be held prior to entry.
11920Sstevel@tonic-gate  */
11930Sstevel@tonic-gate int
11940Sstevel@tonic-gate rctl_set_dup_ready(rctl_set_t *set, rctl_alloc_gp_t *ragp)
11950Sstevel@tonic-gate {
11960Sstevel@tonic-gate 	rctl_alloc_gp_t curr_gp;
11970Sstevel@tonic-gate 
11980Sstevel@tonic-gate 	ASSERT(MUTEX_HELD(&set->rcs_lock));
11990Sstevel@tonic-gate 
12000Sstevel@tonic-gate 	rctl_set_fill_alloc_gp(set, &curr_gp);
12010Sstevel@tonic-gate 
12020Sstevel@tonic-gate 	if (curr_gp.rcag_nctls <= ragp->rcag_nctls &&
12030Sstevel@tonic-gate 	    curr_gp.rcag_nvals <= ragp->rcag_nvals)
12040Sstevel@tonic-gate 		return (1);
12050Sstevel@tonic-gate 
12060Sstevel@tonic-gate 	return (0);
12070Sstevel@tonic-gate }
12080Sstevel@tonic-gate 
12090Sstevel@tonic-gate /*
12100Sstevel@tonic-gate  * rctl_set_t *rctl_set_dup(rctl_set_t *, struct proc *, struct proc *,
12110Sstevel@tonic-gate  *   rctl_set_t *, rctl_alloc_gp_t *, int)
12120Sstevel@tonic-gate  *
12130Sstevel@tonic-gate  * Overview
12140Sstevel@tonic-gate  *   Make a duplicate of the resource control set.  The proc pointers are those
12150Sstevel@tonic-gate  *   of the owning process and of the process associated with the entity
12160Sstevel@tonic-gate  *   receiving the duplicate.
12170Sstevel@tonic-gate  *
12180Sstevel@tonic-gate  *   Duplication is a 3 stage process. Stage 1 is memory allocation for
12190Sstevel@tonic-gate  *   the duplicate set, which is taken care of by rctl_set_dup_prealloc().
12200Sstevel@tonic-gate  *   Stage 2 consists of copying all rctls and values from the old set into
12210Sstevel@tonic-gate  *   the new. Stage 3 completes the duplication by performing the appropriate
12220Sstevel@tonic-gate  *   callbacks for each rctl in the new set.
12230Sstevel@tonic-gate  *
12240Sstevel@tonic-gate  *   Stages 2 and 3 are handled by calling rctl_set_dup with the RCD_DUP and
12250Sstevel@tonic-gate  *   RCD_CALLBACK functions, respectively. The RCD_CALLBACK flag may only
12260Sstevel@tonic-gate  *   be supplied if the newp proc structure reflects the new task and
12270Sstevel@tonic-gate  *   project linkage.
12280Sstevel@tonic-gate  *
12290Sstevel@tonic-gate  * Return value
12300Sstevel@tonic-gate  *   A pointer to the duplicate set.
12310Sstevel@tonic-gate  *
12320Sstevel@tonic-gate  * Caller's context
12330Sstevel@tonic-gate  *   The rcs_lock of the set to be duplicated must be held prior to entry.
12340Sstevel@tonic-gate  */
12350Sstevel@tonic-gate rctl_set_t *
12360Sstevel@tonic-gate rctl_set_dup(rctl_set_t *set, struct proc *oldp, struct proc *newp,
12370Sstevel@tonic-gate     rctl_entity_p_t *e, rctl_set_t *dup, rctl_alloc_gp_t *ragp, int flag)
12380Sstevel@tonic-gate {
12390Sstevel@tonic-gate 	uint_t i;
12400Sstevel@tonic-gate 	rctl_set_t	*iter;
12410Sstevel@tonic-gate 
12420Sstevel@tonic-gate 	ASSERT((flag & RCD_DUP) || (flag & RCD_CALLBACK));
12430Sstevel@tonic-gate 	ASSERT(e);
12440Sstevel@tonic-gate 	/*
12450Sstevel@tonic-gate 	 * When copying the old set, iterate over that. Otherwise, when
12460Sstevel@tonic-gate 	 * only callbacks have been requested, iterate over the dup set.
12470Sstevel@tonic-gate 	 */
12480Sstevel@tonic-gate 	if (flag & RCD_DUP) {
12490Sstevel@tonic-gate 		ASSERT(MUTEX_HELD(&set->rcs_lock));
12500Sstevel@tonic-gate 		iter = set;
12510Sstevel@tonic-gate 		dup->rcs_entity = set->rcs_entity;
12520Sstevel@tonic-gate 	} else {
12530Sstevel@tonic-gate 		iter = dup;
12540Sstevel@tonic-gate 	}
12550Sstevel@tonic-gate 
12560Sstevel@tonic-gate 	mutex_enter(&dup->rcs_lock);
12570Sstevel@tonic-gate 
12580Sstevel@tonic-gate 	for (i = 0; i < rctl_set_size; i++) {
12590Sstevel@tonic-gate 		rctl_t *r = iter->rcs_ctls[i];
12600Sstevel@tonic-gate 		rctl_t *d;
12610Sstevel@tonic-gate 
12620Sstevel@tonic-gate 		while (r != NULL) {
12630Sstevel@tonic-gate 			if (flag & RCD_DUP) {
12640Sstevel@tonic-gate 				d = rctl_dup(r, ragp, oldp, newp);
12650Sstevel@tonic-gate 				rctl_set_insert(dup, r->rc_id, d);
12660Sstevel@tonic-gate 			} else {
12670Sstevel@tonic-gate 				d = r;
12680Sstevel@tonic-gate 			}
12690Sstevel@tonic-gate 
12700Sstevel@tonic-gate 			if (flag & RCD_CALLBACK)
12710Sstevel@tonic-gate 				RCTLOP_SET(d, newp, e,
12720Sstevel@tonic-gate 				    rctl_model_value(d->rc_dict_entry, newp,
12730Sstevel@tonic-gate 				    d->rc_cursor->rcv_value));
12740Sstevel@tonic-gate 
12750Sstevel@tonic-gate 			r = r->rc_next;
12760Sstevel@tonic-gate 		}
12770Sstevel@tonic-gate 	}
12780Sstevel@tonic-gate 
12790Sstevel@tonic-gate 	mutex_exit(&dup->rcs_lock);
12800Sstevel@tonic-gate 
12810Sstevel@tonic-gate 	return (dup);
12820Sstevel@tonic-gate }
12830Sstevel@tonic-gate 
12840Sstevel@tonic-gate /*
12850Sstevel@tonic-gate  * void rctl_set_free(rctl_set_t *)
12860Sstevel@tonic-gate  *
12870Sstevel@tonic-gate  * Overview
12880Sstevel@tonic-gate  *   Delete resource control set and all attached values.
12890Sstevel@tonic-gate  *
12900Sstevel@tonic-gate  * Return values
12910Sstevel@tonic-gate  *   No value returned.
12920Sstevel@tonic-gate  *
12930Sstevel@tonic-gate  * Caller's context
12940Sstevel@tonic-gate  *   No restrictions on context.
12950Sstevel@tonic-gate  */
12960Sstevel@tonic-gate void
12970Sstevel@tonic-gate rctl_set_free(rctl_set_t *set)
12980Sstevel@tonic-gate {
12990Sstevel@tonic-gate 	uint_t i;
13000Sstevel@tonic-gate 
13010Sstevel@tonic-gate 	mutex_enter(&set->rcs_lock);
13020Sstevel@tonic-gate 	for (i = 0; i < rctl_set_size; i++) {
13030Sstevel@tonic-gate 		rctl_t *r = set->rcs_ctls[i];
13040Sstevel@tonic-gate 
13050Sstevel@tonic-gate 		while (r != NULL) {
13060Sstevel@tonic-gate 			rctl_val_t *v = r->rc_values;
13070Sstevel@tonic-gate 			rctl_t *n = r->rc_next;
13080Sstevel@tonic-gate 
13090Sstevel@tonic-gate 			kmem_cache_free(rctl_cache, r);
13100Sstevel@tonic-gate 
13110Sstevel@tonic-gate 			rctl_val_list_free(v);
13120Sstevel@tonic-gate 
13130Sstevel@tonic-gate 			r = n;
13140Sstevel@tonic-gate 		}
13150Sstevel@tonic-gate 	}
13160Sstevel@tonic-gate 	mutex_exit(&set->rcs_lock);
13170Sstevel@tonic-gate 
13180Sstevel@tonic-gate 	kmem_free(set->rcs_ctls, sizeof (rctl_t *) * rctl_set_size);
13190Sstevel@tonic-gate 	kmem_free(set, sizeof (rctl_set_t));
13200Sstevel@tonic-gate }
13210Sstevel@tonic-gate 
13220Sstevel@tonic-gate /*
13230Sstevel@tonic-gate  * void rctl_set_reset(rctl_set_t *)
13240Sstevel@tonic-gate  *
13250Sstevel@tonic-gate  * Overview
13260Sstevel@tonic-gate  *   Resets all rctls within the set such that the lowest value becomes active.
13270Sstevel@tonic-gate  *
13280Sstevel@tonic-gate  * Return values
13290Sstevel@tonic-gate  *   No value returned.
13300Sstevel@tonic-gate  *
13310Sstevel@tonic-gate  * Caller's context
13320Sstevel@tonic-gate  *   No restrictions on context.
13330Sstevel@tonic-gate  */
13340Sstevel@tonic-gate void
13350Sstevel@tonic-gate rctl_set_reset(rctl_set_t *set, struct proc *p, rctl_entity_p_t *e)
13360Sstevel@tonic-gate {
13370Sstevel@tonic-gate 	uint_t i;
13380Sstevel@tonic-gate 
13390Sstevel@tonic-gate 	ASSERT(e);
13400Sstevel@tonic-gate 
13410Sstevel@tonic-gate 	mutex_enter(&set->rcs_lock);
13420Sstevel@tonic-gate 	for (i = 0; i < rctl_set_size; i++) {
13430Sstevel@tonic-gate 		rctl_t *r = set->rcs_ctls[i];
13440Sstevel@tonic-gate 
13450Sstevel@tonic-gate 		while (r != NULL) {
13460Sstevel@tonic-gate 			r->rc_cursor = r->rc_values;
13470Sstevel@tonic-gate 			rctl_val_list_reset(r->rc_cursor);
13480Sstevel@tonic-gate 			RCTLOP_SET(r, p, e, rctl_model_value(r->rc_dict_entry,
13490Sstevel@tonic-gate 			    p, r->rc_cursor->rcv_value));
13500Sstevel@tonic-gate 
13510Sstevel@tonic-gate 			ASSERT(r->rc_cursor != NULL);
13520Sstevel@tonic-gate 
13530Sstevel@tonic-gate 			r = r->rc_next;
13540Sstevel@tonic-gate 		}
13550Sstevel@tonic-gate 	}
13560Sstevel@tonic-gate 
13570Sstevel@tonic-gate 	mutex_exit(&set->rcs_lock);
13580Sstevel@tonic-gate }
13590Sstevel@tonic-gate 
13600Sstevel@tonic-gate /*
13610Sstevel@tonic-gate  * void rctl_set_tearoff(rctl_set *, struct proc *)
13620Sstevel@tonic-gate  *
13630Sstevel@tonic-gate  * Overview
13640Sstevel@tonic-gate  *   Tear off any resource control values on this set with an action recipient
13650Sstevel@tonic-gate  *   equal to the specified process (as they are becoming invalid with the
13660Sstevel@tonic-gate  *   process's departure from this set as an observer).
13670Sstevel@tonic-gate  *
13680Sstevel@tonic-gate  * Return values
13690Sstevel@tonic-gate  *   No value returned.
13700Sstevel@tonic-gate  *
13710Sstevel@tonic-gate  * Caller's context
13720Sstevel@tonic-gate  *   No restrictions on context
13730Sstevel@tonic-gate  */
13740Sstevel@tonic-gate void
13750Sstevel@tonic-gate rctl_set_tearoff(rctl_set_t *set, struct proc *p)
13760Sstevel@tonic-gate {
13770Sstevel@tonic-gate 	uint_t i;
13780Sstevel@tonic-gate 
13790Sstevel@tonic-gate 	mutex_enter(&set->rcs_lock);
13800Sstevel@tonic-gate 	for (i = 0; i < rctl_set_size; i++) {
13810Sstevel@tonic-gate 		rctl_t *r = set->rcs_ctls[i];
13820Sstevel@tonic-gate 
13830Sstevel@tonic-gate 		while (r != NULL) {
13840Sstevel@tonic-gate 			rctl_val_t *rval;
13850Sstevel@tonic-gate 
13860Sstevel@tonic-gate tearoff_rewalk_list:
13870Sstevel@tonic-gate 			rval = r->rc_values;
13880Sstevel@tonic-gate 
13890Sstevel@tonic-gate 			while (rval != NULL) {
13900Sstevel@tonic-gate 				if (rval->rcv_privilege == RCPRIV_BASIC &&
13910Sstevel@tonic-gate 				    rval->rcv_action_recipient == p) {
13920Sstevel@tonic-gate 					if (r->rc_cursor == rval)
13930Sstevel@tonic-gate 						r->rc_cursor = rval->rcv_next;
13940Sstevel@tonic-gate 
13950Sstevel@tonic-gate 					(void) rctl_val_list_delete(
13960Sstevel@tonic-gate 					    &r->rc_values, rval);
13970Sstevel@tonic-gate 
13980Sstevel@tonic-gate 					goto tearoff_rewalk_list;
13990Sstevel@tonic-gate 				}
14000Sstevel@tonic-gate 
14010Sstevel@tonic-gate 				rval = rval->rcv_next;
14020Sstevel@tonic-gate 			}
14030Sstevel@tonic-gate 
14040Sstevel@tonic-gate 			ASSERT(r->rc_cursor != NULL);
14050Sstevel@tonic-gate 
14060Sstevel@tonic-gate 			r = r->rc_next;
14070Sstevel@tonic-gate 		}
14080Sstevel@tonic-gate 	}
14090Sstevel@tonic-gate 
14100Sstevel@tonic-gate 	mutex_exit(&set->rcs_lock);
14110Sstevel@tonic-gate }
14120Sstevel@tonic-gate 
14130Sstevel@tonic-gate static int
14140Sstevel@tonic-gate rctl_set_find(rctl_set_t *set, rctl_hndl_t hndl, rctl_t **rctl)
14150Sstevel@tonic-gate {
14160Sstevel@tonic-gate 	uint_t index = hndl % rctl_set_size;
14170Sstevel@tonic-gate 	rctl_t *curr_ctl;
14180Sstevel@tonic-gate 
14190Sstevel@tonic-gate 	ASSERT(MUTEX_HELD(&set->rcs_lock));
14200Sstevel@tonic-gate 
14210Sstevel@tonic-gate 	for (curr_ctl = set->rcs_ctls[index]; curr_ctl != NULL;
14220Sstevel@tonic-gate 	    curr_ctl = curr_ctl->rc_next) {
14230Sstevel@tonic-gate 		if (curr_ctl->rc_id == hndl) {
14240Sstevel@tonic-gate 			*rctl = curr_ctl;
14250Sstevel@tonic-gate 
14260Sstevel@tonic-gate 			return (0);
14270Sstevel@tonic-gate 		}
14280Sstevel@tonic-gate 	}
14290Sstevel@tonic-gate 
14300Sstevel@tonic-gate 	return (-1);
14310Sstevel@tonic-gate }
14320Sstevel@tonic-gate 
14330Sstevel@tonic-gate /*
14340Sstevel@tonic-gate  * rlim64_t rctl_enforced_value(rctl_hndl_t, rctl_set_t *, struct proc *)
14350Sstevel@tonic-gate  *
14360Sstevel@tonic-gate  * Overview
14370Sstevel@tonic-gate  *   Given a process, get the next enforced value on the rctl of the specified
14380Sstevel@tonic-gate  *   handle.
14390Sstevel@tonic-gate  *
14400Sstevel@tonic-gate  * Return value
14410Sstevel@tonic-gate  *   The enforced value.
14420Sstevel@tonic-gate  *
14430Sstevel@tonic-gate  * Caller's context
14440Sstevel@tonic-gate  *   For controls on process collectives, p->p_lock must be held across the
14450Sstevel@tonic-gate  *   operation.
14460Sstevel@tonic-gate  */
14470Sstevel@tonic-gate /*ARGSUSED*/
14480Sstevel@tonic-gate rctl_qty_t
14490Sstevel@tonic-gate rctl_enforced_value(rctl_hndl_t hndl, rctl_set_t *rset, struct proc *p)
14500Sstevel@tonic-gate {
14510Sstevel@tonic-gate 	rctl_t *rctl;
14520Sstevel@tonic-gate 	rlim64_t ret;
14530Sstevel@tonic-gate 
14540Sstevel@tonic-gate 	mutex_enter(&rset->rcs_lock);
14550Sstevel@tonic-gate 
14560Sstevel@tonic-gate 	if (rctl_set_find(rset, hndl, &rctl) == -1)
14570Sstevel@tonic-gate 		panic("unknown resource control handle %d requested", hndl);
14580Sstevel@tonic-gate 	else
14590Sstevel@tonic-gate 		ret = rctl_model_value(rctl->rc_dict_entry, p,
14600Sstevel@tonic-gate 		    rctl->rc_cursor->rcv_value);
14610Sstevel@tonic-gate 
14620Sstevel@tonic-gate 	mutex_exit(&rset->rcs_lock);
14630Sstevel@tonic-gate 
14640Sstevel@tonic-gate 	return (ret);
14650Sstevel@tonic-gate }
14660Sstevel@tonic-gate 
14670Sstevel@tonic-gate /*
14680Sstevel@tonic-gate  * int rctl_global_get(const char *, rctl_dict_entry_t *)
14690Sstevel@tonic-gate  *
14700Sstevel@tonic-gate  * Overview
14710Sstevel@tonic-gate  *   Copy a sanitized version of the global rctl for a given resource control
14720Sstevel@tonic-gate  *   name.  (By sanitization, we mean that the unsafe data pointers have been
14730Sstevel@tonic-gate  *   zeroed.)
14740Sstevel@tonic-gate  *
14750Sstevel@tonic-gate  * Return value
14760Sstevel@tonic-gate  *   -1 if name not defined, 0 otherwise.
14770Sstevel@tonic-gate  *
14780Sstevel@tonic-gate  * Caller's context
14790Sstevel@tonic-gate  *   No restrictions on context.  rctl_dict_lock must not be held.
14800Sstevel@tonic-gate  */
14810Sstevel@tonic-gate int
14820Sstevel@tonic-gate rctl_global_get(const char *name, rctl_dict_entry_t *drde)
14830Sstevel@tonic-gate {
14840Sstevel@tonic-gate 	rctl_dict_entry_t *rde = rctl_dict_lookup(name);
14850Sstevel@tonic-gate 
14860Sstevel@tonic-gate 	if (rde == NULL)
14870Sstevel@tonic-gate 		return (-1);
14880Sstevel@tonic-gate 
14890Sstevel@tonic-gate 	bcopy(rde, drde, sizeof (rctl_dict_entry_t));
14900Sstevel@tonic-gate 
14910Sstevel@tonic-gate 	drde->rcd_next = NULL;
14920Sstevel@tonic-gate 	drde->rcd_ops = NULL;
14930Sstevel@tonic-gate 
14940Sstevel@tonic-gate 	return (0);
14950Sstevel@tonic-gate }
14960Sstevel@tonic-gate 
14970Sstevel@tonic-gate /*
14980Sstevel@tonic-gate  * int rctl_global_set(const char *, rctl_dict_entry_t *)
14990Sstevel@tonic-gate  *
15000Sstevel@tonic-gate  * Overview
15010Sstevel@tonic-gate  *   Transfer the settable fields of the named rctl to the global rctl matching
15020Sstevel@tonic-gate  *   the given resource control name.
15030Sstevel@tonic-gate  *
15040Sstevel@tonic-gate  * Return value
15050Sstevel@tonic-gate  *   -1 if name not defined, 0 otherwise.
15060Sstevel@tonic-gate  *
15070Sstevel@tonic-gate  * Caller's context
15080Sstevel@tonic-gate  *   No restrictions on context.  rctl_dict_lock must not be held.
15090Sstevel@tonic-gate  */
15100Sstevel@tonic-gate int
15110Sstevel@tonic-gate rctl_global_set(const char *name, rctl_dict_entry_t *drde)
15120Sstevel@tonic-gate {
15130Sstevel@tonic-gate 	rctl_dict_entry_t *rde = rctl_dict_lookup(name);
15140Sstevel@tonic-gate 
15150Sstevel@tonic-gate 	if (rde == NULL)
15160Sstevel@tonic-gate 		return (-1);
15170Sstevel@tonic-gate 
15180Sstevel@tonic-gate 	rde->rcd_flagaction = drde->rcd_flagaction;
15190Sstevel@tonic-gate 	rde->rcd_syslog_level = drde->rcd_syslog_level;
15200Sstevel@tonic-gate 	rde->rcd_strlog_flags = drde->rcd_strlog_flags;
15210Sstevel@tonic-gate 
15220Sstevel@tonic-gate 	return (0);
15230Sstevel@tonic-gate }
15240Sstevel@tonic-gate 
15250Sstevel@tonic-gate static int
15260Sstevel@tonic-gate rctl_local_op(rctl_hndl_t hndl, rctl_val_t *oval, rctl_val_t *nval,
15270Sstevel@tonic-gate     int (*cbop)(rctl_hndl_t, struct proc *p, rctl_entity_p_t *e, rctl_t *,
15280Sstevel@tonic-gate     rctl_val_t *, rctl_val_t *), struct proc *p)
15290Sstevel@tonic-gate {
15300Sstevel@tonic-gate 	rctl_t *rctl;
15310Sstevel@tonic-gate 	rctl_set_t *rset;
15320Sstevel@tonic-gate 	rctl_entity_p_t e;
15330Sstevel@tonic-gate 	int ret = 0;
15340Sstevel@tonic-gate 	rctl_dict_entry_t *rde = rctl_dict_lookup_hndl(hndl);
15350Sstevel@tonic-gate 
15360Sstevel@tonic-gate local_op_retry:
15370Sstevel@tonic-gate 
15380Sstevel@tonic-gate 	ASSERT(MUTEX_HELD(&p->p_lock));
15390Sstevel@tonic-gate 
15400Sstevel@tonic-gate 	rset = rctl_entity_obtain_rset(rde, p);
15410Sstevel@tonic-gate 
15420Sstevel@tonic-gate 	if (rset == NULL) {
15430Sstevel@tonic-gate 		return (-1);
15440Sstevel@tonic-gate 	}
15450Sstevel@tonic-gate 	rctl_entity_obtain_entity_p(rset->rcs_entity, p, &e);
15460Sstevel@tonic-gate 
15470Sstevel@tonic-gate 	mutex_enter(&rset->rcs_lock);
15480Sstevel@tonic-gate 
15490Sstevel@tonic-gate 	/* using rctl's hndl, get rctl from local set */
15500Sstevel@tonic-gate 	if (rctl_set_find(rset, hndl, &rctl) == -1) {
15510Sstevel@tonic-gate 		mutex_exit(&rset->rcs_lock);
15520Sstevel@tonic-gate 		return (-1);
15530Sstevel@tonic-gate 	}
15540Sstevel@tonic-gate 
15550Sstevel@tonic-gate 	ret = cbop(hndl, p, &e, rctl, oval, nval);
15560Sstevel@tonic-gate 
15570Sstevel@tonic-gate 	mutex_exit(&rset->rcs_lock);
15580Sstevel@tonic-gate 	return (ret);
15590Sstevel@tonic-gate }
15600Sstevel@tonic-gate 
15610Sstevel@tonic-gate /*ARGSUSED*/
15620Sstevel@tonic-gate static int
15630Sstevel@tonic-gate rctl_local_get_cb(rctl_hndl_t hndl, struct proc *p, rctl_entity_p_t *e,
15640Sstevel@tonic-gate     rctl_t *rctl, rctl_val_t *oval, rctl_val_t *nval)
15650Sstevel@tonic-gate {
15660Sstevel@tonic-gate 	if (oval == NULL) {
15670Sstevel@tonic-gate 		/*
15680Sstevel@tonic-gate 		 * RCTL_FIRST
15690Sstevel@tonic-gate 		 */
15700Sstevel@tonic-gate 		bcopy(rctl->rc_values, nval, sizeof (rctl_val_t));
15710Sstevel@tonic-gate 	} else {
15720Sstevel@tonic-gate 		/*
15730Sstevel@tonic-gate 		 * RCTL_NEXT
15740Sstevel@tonic-gate 		 */
15750Sstevel@tonic-gate 		rctl_val_t *tval = rctl_val_list_find(&rctl->rc_values, oval);
15760Sstevel@tonic-gate 
15770Sstevel@tonic-gate 		if (tval == NULL)
15780Sstevel@tonic-gate 			return (ESRCH);
15790Sstevel@tonic-gate 		else if (tval->rcv_next == NULL)
15800Sstevel@tonic-gate 			return (ENOENT);
15810Sstevel@tonic-gate 		else
15820Sstevel@tonic-gate 			bcopy(tval->rcv_next, nval, sizeof (rctl_val_t));
15830Sstevel@tonic-gate 	}
15840Sstevel@tonic-gate 
15850Sstevel@tonic-gate 	return (0);
15860Sstevel@tonic-gate }
15870Sstevel@tonic-gate 
15880Sstevel@tonic-gate /*
15890Sstevel@tonic-gate  * int rctl_local_get(rctl_hndl_t, rctl_val_t *)
15900Sstevel@tonic-gate  *
15910Sstevel@tonic-gate  * Overview
15920Sstevel@tonic-gate  *   Get the rctl value for the given flags.
15930Sstevel@tonic-gate  *
15940Sstevel@tonic-gate  * Return values
15950Sstevel@tonic-gate  *   0 for successful get, errno otherwise.
15960Sstevel@tonic-gate  */
15970Sstevel@tonic-gate int
15980Sstevel@tonic-gate rctl_local_get(rctl_hndl_t hndl, rctl_val_t *oval, rctl_val_t *nval,
15990Sstevel@tonic-gate     struct proc *p)
16000Sstevel@tonic-gate {
16010Sstevel@tonic-gate 	return (rctl_local_op(hndl, oval, nval, rctl_local_get_cb, p));
16020Sstevel@tonic-gate }
16030Sstevel@tonic-gate 
16040Sstevel@tonic-gate /*ARGSUSED*/
16050Sstevel@tonic-gate static int
16060Sstevel@tonic-gate rctl_local_delete_cb(rctl_hndl_t hndl, struct proc *p, rctl_entity_p_t *e,
16070Sstevel@tonic-gate     rctl_t *rctl, rctl_val_t *oval, rctl_val_t *nval)
16080Sstevel@tonic-gate {
16090Sstevel@tonic-gate 	if ((oval = rctl_val_list_find(&rctl->rc_values, nval)) == NULL)
16100Sstevel@tonic-gate 		return (ESRCH);
16110Sstevel@tonic-gate 
16120Sstevel@tonic-gate 	if (rctl->rc_cursor == oval) {
16130Sstevel@tonic-gate 		rctl->rc_cursor = oval->rcv_next;
16140Sstevel@tonic-gate 		rctl_val_list_reset(rctl->rc_cursor);
16150Sstevel@tonic-gate 		RCTLOP_SET(rctl, p, e, rctl_model_value(rctl->rc_dict_entry, p,
16160Sstevel@tonic-gate 		    rctl->rc_cursor->rcv_value));
16170Sstevel@tonic-gate 
16180Sstevel@tonic-gate 		ASSERT(rctl->rc_cursor != NULL);
16190Sstevel@tonic-gate 	}
16200Sstevel@tonic-gate 
16210Sstevel@tonic-gate 	(void) rctl_val_list_delete(&rctl->rc_values, oval);
16220Sstevel@tonic-gate 
16230Sstevel@tonic-gate 	return (0);
16240Sstevel@tonic-gate }
16250Sstevel@tonic-gate 
16260Sstevel@tonic-gate /*
16270Sstevel@tonic-gate  * int rctl_local_delete(rctl_hndl_t, rctl_val_t *)
16280Sstevel@tonic-gate  *
16290Sstevel@tonic-gate  * Overview
16300Sstevel@tonic-gate  *   Delete the rctl value for the given flags.
16310Sstevel@tonic-gate  *
16320Sstevel@tonic-gate  * Return values
16330Sstevel@tonic-gate  *   0 for successful delete, errno otherwise.
16340Sstevel@tonic-gate  */
16350Sstevel@tonic-gate int
16360Sstevel@tonic-gate rctl_local_delete(rctl_hndl_t hndl, rctl_val_t *val, struct proc *p)
16370Sstevel@tonic-gate {
16380Sstevel@tonic-gate 	return (rctl_local_op(hndl, NULL, val, rctl_local_delete_cb, p));
16390Sstevel@tonic-gate }
16400Sstevel@tonic-gate 
16410Sstevel@tonic-gate /*
16420Sstevel@tonic-gate  * rctl_local_insert_cb()
16430Sstevel@tonic-gate  *
16440Sstevel@tonic-gate  * Overview
16450Sstevel@tonic-gate  *   Insert a new value into the rctl's val list. If an error occurs,
16460Sstevel@tonic-gate  *   the val list must be left in the same state as when the function
16470Sstevel@tonic-gate  *   was entered.
16480Sstevel@tonic-gate  *
16490Sstevel@tonic-gate  * Return Values
16500Sstevel@tonic-gate  *   0 for successful insert, EINVAL if the value is duplicated in the
16510Sstevel@tonic-gate  *   existing list.
16520Sstevel@tonic-gate  */
16530Sstevel@tonic-gate /*ARGSUSED*/
16540Sstevel@tonic-gate static int
16550Sstevel@tonic-gate rctl_local_insert_cb(rctl_hndl_t hndl, struct proc *p, rctl_entity_p_t *e,
16560Sstevel@tonic-gate     rctl_t *rctl, rctl_val_t *oval, rctl_val_t *nval)
16570Sstevel@tonic-gate {
16580Sstevel@tonic-gate 	/*
16590Sstevel@tonic-gate 	 * Before inserting, confirm there are no duplicates of this value
16600Sstevel@tonic-gate 	 * and flag level. If there is a duplicate, flag an error and do
16610Sstevel@tonic-gate 	 * nothing.
16620Sstevel@tonic-gate 	 */
16630Sstevel@tonic-gate 	if (rctl_val_list_insert(&rctl->rc_values, nval) != 0)
16640Sstevel@tonic-gate 		return (EINVAL);
16650Sstevel@tonic-gate 
16660Sstevel@tonic-gate 	if (rctl_val_cmp(nval, rctl->rc_cursor, 0) < 0) {
16670Sstevel@tonic-gate 		rctl->rc_cursor = nval;
16680Sstevel@tonic-gate 		rctl_val_list_reset(rctl->rc_cursor);
16690Sstevel@tonic-gate 		RCTLOP_SET(rctl, p, e, rctl_model_value(rctl->rc_dict_entry, p,
16700Sstevel@tonic-gate 		    rctl->rc_cursor->rcv_value));
16710Sstevel@tonic-gate 
16720Sstevel@tonic-gate 		ASSERT(rctl->rc_cursor != NULL);
16730Sstevel@tonic-gate 	}
16740Sstevel@tonic-gate 
16750Sstevel@tonic-gate 	return (0);
16760Sstevel@tonic-gate }
16770Sstevel@tonic-gate 
16780Sstevel@tonic-gate /*
16790Sstevel@tonic-gate  * int rctl_local_insert(rctl_hndl_t, rctl_val_t *)
16800Sstevel@tonic-gate  *
16810Sstevel@tonic-gate  * Overview
16820Sstevel@tonic-gate  *   Insert the rctl value into the appropriate rctl set for the calling
16830Sstevel@tonic-gate  *   process, given the handle.
16840Sstevel@tonic-gate  */
16850Sstevel@tonic-gate int
16860Sstevel@tonic-gate rctl_local_insert(rctl_hndl_t hndl, rctl_val_t *val, struct proc *p)
16870Sstevel@tonic-gate {
16880Sstevel@tonic-gate 	return (rctl_local_op(hndl, NULL, val, rctl_local_insert_cb, p));
16890Sstevel@tonic-gate }
16900Sstevel@tonic-gate 
16910Sstevel@tonic-gate static int
16920Sstevel@tonic-gate rctl_local_replace_cb(rctl_hndl_t hndl, struct proc *p, rctl_entity_p_t *e,
16930Sstevel@tonic-gate     rctl_t *rctl, rctl_val_t *oval, rctl_val_t *nval)
16940Sstevel@tonic-gate {
16950Sstevel@tonic-gate 	int ret;
16960Sstevel@tonic-gate 
16970Sstevel@tonic-gate 	/*
16980Sstevel@tonic-gate 	 * rctl_local_insert_cb() does the job of flagging an error
16990Sstevel@tonic-gate 	 * for any duplicate values. So, call rctl_local_insert_cb()
17000Sstevel@tonic-gate 	 * for the new value first, then do deletion of the old value.
17010Sstevel@tonic-gate 	 * Since this is a callback function to rctl_local_op, we can
17020Sstevel@tonic-gate 	 * count on rcs_lock being held at this point. This guarantees
17030Sstevel@tonic-gate 	 * that there is at no point a visible list which contains both
17040Sstevel@tonic-gate 	 * new and old values.
17050Sstevel@tonic-gate 	 */
17060Sstevel@tonic-gate 	if (ret = rctl_local_insert_cb(hndl, p, e, rctl, NULL, nval))
17070Sstevel@tonic-gate 		return (ret);
17080Sstevel@tonic-gate 
17090Sstevel@tonic-gate 	return (rctl_local_delete_cb(hndl, p, e, rctl, NULL, oval));
17100Sstevel@tonic-gate }
17110Sstevel@tonic-gate 
17120Sstevel@tonic-gate /*
17130Sstevel@tonic-gate  * int rctl_local_replace(rctl_hndl_t, void *, int, uint64_t *)
17140Sstevel@tonic-gate  *
17150Sstevel@tonic-gate  * Overview
17160Sstevel@tonic-gate  *   Replace the rctl value with a new one.
17170Sstevel@tonic-gate  *
17180Sstevel@tonic-gate  * Return values
17190Sstevel@tonic-gate  *   0 for successful replace, errno otherwise.
17200Sstevel@tonic-gate  */
17210Sstevel@tonic-gate int
17220Sstevel@tonic-gate rctl_local_replace(rctl_hndl_t hndl, rctl_val_t *oval, rctl_val_t *nval,
17230Sstevel@tonic-gate     struct proc *p)
17240Sstevel@tonic-gate {
17250Sstevel@tonic-gate 	return (rctl_local_op(hndl, oval, nval, rctl_local_replace_cb, p));
17260Sstevel@tonic-gate }
17270Sstevel@tonic-gate 
17280Sstevel@tonic-gate /*
17290Sstevel@tonic-gate  * int rctl_rlimit_get(rctl_hndl_t, struct proc *, struct rlimit64 *)
17300Sstevel@tonic-gate  *
17310Sstevel@tonic-gate  * Overview
17320Sstevel@tonic-gate  *   To support rlimit compatibility, we need a function which takes a 64-bit
17330Sstevel@tonic-gate  *   rlimit and encodes it as appropriate rcontrol values on the given rcontrol.
17340Sstevel@tonic-gate  *   This operation is only intended for legacy rlimits.
17350Sstevel@tonic-gate  */
17360Sstevel@tonic-gate int
17370Sstevel@tonic-gate rctl_rlimit_get(rctl_hndl_t rc, struct proc *p, struct rlimit64 *rlp64)
17380Sstevel@tonic-gate {
17390Sstevel@tonic-gate 	rctl_t *rctl;
17400Sstevel@tonic-gate 	rctl_val_t *rval;
17410Sstevel@tonic-gate 	rctl_set_t *rset = p->p_rctls;
17420Sstevel@tonic-gate 	int soft_limit_seen = 0;
17430Sstevel@tonic-gate 	int test_for_deny = 1;
17440Sstevel@tonic-gate 
17450Sstevel@tonic-gate 	mutex_enter(&rset->rcs_lock);
17460Sstevel@tonic-gate 	if (rctl_set_find(rset, rc, &rctl) == -1) {
17470Sstevel@tonic-gate 		mutex_exit(&rset->rcs_lock);
17480Sstevel@tonic-gate 		return (-1);
17490Sstevel@tonic-gate 	}
17500Sstevel@tonic-gate 
17510Sstevel@tonic-gate 	rval = rctl->rc_values;
17520Sstevel@tonic-gate 
17530Sstevel@tonic-gate 	if (rctl->rc_dict_entry->rcd_flagaction & (RCTL_GLOBAL_DENY_NEVER |
17540Sstevel@tonic-gate 	    RCTL_GLOBAL_DENY_ALWAYS))
17550Sstevel@tonic-gate 		test_for_deny = 0;
17560Sstevel@tonic-gate 
17570Sstevel@tonic-gate 	/*
17580Sstevel@tonic-gate 	 * 1.  Find the first control value with the RCTL_LOCAL_DENY bit set.
17590Sstevel@tonic-gate 	 */
17600Sstevel@tonic-gate 	while (rval != NULL && rval->rcv_privilege != RCPRIV_SYSTEM) {
17610Sstevel@tonic-gate 		if (test_for_deny &&
17620Sstevel@tonic-gate 		    (rval->rcv_flagaction & RCTL_LOCAL_DENY) == 0) {
17630Sstevel@tonic-gate 			rval = rval->rcv_next;
17640Sstevel@tonic-gate 			continue;
17650Sstevel@tonic-gate 		}
17660Sstevel@tonic-gate 
17670Sstevel@tonic-gate 		/*
17680Sstevel@tonic-gate 		 * 2.  If this is an RCPRIV_BASIC value, then we've found the
17690Sstevel@tonic-gate 		 * effective soft limit and should set rlim_cur.  We should then
17700Sstevel@tonic-gate 		 * continue looking for another control value with the DENY bit
17710Sstevel@tonic-gate 		 * set.
17720Sstevel@tonic-gate 		 */
17730Sstevel@tonic-gate 		if (rval->rcv_privilege == RCPRIV_BASIC) {
17740Sstevel@tonic-gate 			if (soft_limit_seen) {
17750Sstevel@tonic-gate 				rval = rval->rcv_next;
17760Sstevel@tonic-gate 				continue;
17770Sstevel@tonic-gate 			}
17780Sstevel@tonic-gate 
17790Sstevel@tonic-gate 			if ((rval->rcv_flagaction & RCTL_LOCAL_MAXIMAL) == 0 &&
17800Sstevel@tonic-gate 			    rval->rcv_value < rctl_model_maximum(
17810Sstevel@tonic-gate 			    rctl->rc_dict_entry, p))
17820Sstevel@tonic-gate 				rlp64->rlim_cur = rval->rcv_value;
17830Sstevel@tonic-gate 			else
17840Sstevel@tonic-gate 				rlp64->rlim_cur = RLIM64_INFINITY;
17850Sstevel@tonic-gate 			soft_limit_seen = 1;
17860Sstevel@tonic-gate 
17870Sstevel@tonic-gate 			rval = rval->rcv_next;
17880Sstevel@tonic-gate 			continue;
17890Sstevel@tonic-gate 		}
17900Sstevel@tonic-gate 
17910Sstevel@tonic-gate 		/*
17920Sstevel@tonic-gate 		 * 3.  This is an RCPRIV_PRIVILEGED value.  If we haven't found
17930Sstevel@tonic-gate 		 * a soft limit candidate, then we've found the effective hard
17940Sstevel@tonic-gate 		 * and soft limits and should set both  If we had found a soft
17950Sstevel@tonic-gate 		 * limit, then this is only the hard limit and we need only set
17960Sstevel@tonic-gate 		 * rlim_max.
17970Sstevel@tonic-gate 		 */
17980Sstevel@tonic-gate 		if ((rval->rcv_flagaction & RCTL_LOCAL_MAXIMAL) == 0 &&
17990Sstevel@tonic-gate 		    rval->rcv_value < rctl_model_maximum(rctl->rc_dict_entry,
18000Sstevel@tonic-gate 		    p))
18010Sstevel@tonic-gate 			rlp64->rlim_max = rval->rcv_value;
18020Sstevel@tonic-gate 		else
18030Sstevel@tonic-gate 			rlp64->rlim_max = RLIM64_INFINITY;
18040Sstevel@tonic-gate 		if (!soft_limit_seen)
18050Sstevel@tonic-gate 			rlp64->rlim_cur = rlp64->rlim_max;
18060Sstevel@tonic-gate 
18070Sstevel@tonic-gate 		mutex_exit(&rset->rcs_lock);
18080Sstevel@tonic-gate 		return (0);
18090Sstevel@tonic-gate 	}
18100Sstevel@tonic-gate 
18110Sstevel@tonic-gate 	if (rval == NULL) {
18120Sstevel@tonic-gate 		/*
18130Sstevel@tonic-gate 		 * This control sequence is corrupt, as it is not terminated by
18140Sstevel@tonic-gate 		 * a system privileged control value.
18150Sstevel@tonic-gate 		 */
18160Sstevel@tonic-gate 		mutex_exit(&rset->rcs_lock);
18170Sstevel@tonic-gate 		return (-1);
18180Sstevel@tonic-gate 	}
18190Sstevel@tonic-gate 
18200Sstevel@tonic-gate 	/*
18210Sstevel@tonic-gate 	 * 4.  If we run into a RCPRIV_SYSTEM value, then the hard limit (and
18220Sstevel@tonic-gate 	 * the soft, if we haven't a soft candidate) should be the value of the
18230Sstevel@tonic-gate 	 * system control value.
18240Sstevel@tonic-gate 	 */
18250Sstevel@tonic-gate 	if ((rval->rcv_flagaction & RCTL_LOCAL_MAXIMAL) == 0 &&
18260Sstevel@tonic-gate 	    rval->rcv_value < rctl_model_maximum(rctl->rc_dict_entry, p))
18270Sstevel@tonic-gate 		rlp64->rlim_max = rval->rcv_value;
18280Sstevel@tonic-gate 	else
18290Sstevel@tonic-gate 		rlp64->rlim_max = RLIM64_INFINITY;
18300Sstevel@tonic-gate 
18310Sstevel@tonic-gate 	if (!soft_limit_seen)
18320Sstevel@tonic-gate 		rlp64->rlim_cur = rlp64->rlim_max;
18330Sstevel@tonic-gate 
18340Sstevel@tonic-gate 	mutex_exit(&rset->rcs_lock);
18350Sstevel@tonic-gate 	return (0);
18360Sstevel@tonic-gate }
18370Sstevel@tonic-gate 
18380Sstevel@tonic-gate /*
18390Sstevel@tonic-gate  * rctl_alloc_gp_t *rctl_rlimit_set_prealloc(uint_t)
18400Sstevel@tonic-gate  *
18410Sstevel@tonic-gate  * Overview
18420Sstevel@tonic-gate  *   Before making a series of calls to rctl_rlimit_set(), we must have a
18430Sstevel@tonic-gate  *   preallocated batch of resource control values, as rctl_rlimit_set() can
18440Sstevel@tonic-gate  *   potentially consume two resource control values per call.
18450Sstevel@tonic-gate  *
18460Sstevel@tonic-gate  * Return values
18470Sstevel@tonic-gate  *   A populated resource control allocation group with 2n resource control
18480Sstevel@tonic-gate  *   values.
18490Sstevel@tonic-gate  *
18500Sstevel@tonic-gate  * Caller's context
18510Sstevel@tonic-gate  *   Must be safe for KM_SLEEP allocations.
18520Sstevel@tonic-gate  */
18530Sstevel@tonic-gate rctl_alloc_gp_t *
18540Sstevel@tonic-gate rctl_rlimit_set_prealloc(uint_t n)
18550Sstevel@tonic-gate {
18560Sstevel@tonic-gate 	rctl_alloc_gp_t *gp = kmem_zalloc(sizeof (rctl_alloc_gp_t), KM_SLEEP);
18570Sstevel@tonic-gate 
18580Sstevel@tonic-gate 	ASSERT(MUTEX_NOT_HELD(&curproc->p_lock));
18590Sstevel@tonic-gate 
18600Sstevel@tonic-gate 	gp->rcag_nvals = 2 * n;
18610Sstevel@tonic-gate 
18620Sstevel@tonic-gate 	rctl_gp_alloc(gp);
18630Sstevel@tonic-gate 
18640Sstevel@tonic-gate 	return (gp);
18650Sstevel@tonic-gate }
18660Sstevel@tonic-gate 
18670Sstevel@tonic-gate /*
18680Sstevel@tonic-gate  * int rctl_rlimit_set(rctl_hndl_t, struct proc *, struct rlimit64 *, int,
18690Sstevel@tonic-gate  *   int)
18700Sstevel@tonic-gate  *
18710Sstevel@tonic-gate  * Overview
18720Sstevel@tonic-gate  *   To support rlimit compatibility, we need a function which takes a 64-bit
18730Sstevel@tonic-gate  *   rlimit and encodes it as appropriate rcontrol values on the given rcontrol.
18740Sstevel@tonic-gate  *   This operation is only intended for legacy rlimits.
18750Sstevel@tonic-gate  *
18760Sstevel@tonic-gate  *   The implementation of rctl_rlimit_set() is a bit clever, as it tries to
18770Sstevel@tonic-gate  *   minimize the number of values placed on the value sequence in various
18780Sstevel@tonic-gate  *   cases.  Furthermore, we don't allow multiple identical privilege-action
18790Sstevel@tonic-gate  *   values on the same sequence.  (That is, we don't want a sequence like
18800Sstevel@tonic-gate  *   "while (1) { rlim.rlim_cur++; setrlimit(..., rlim); }" to exhaust kernel
18810Sstevel@tonic-gate  *   memory.)  So we want to delete any values with the same privilege value and
18820Sstevel@tonic-gate  *   action.
18830Sstevel@tonic-gate  *
18840Sstevel@tonic-gate  * Return values
18850Sstevel@tonic-gate  *   0 for successful set, errno otherwise. Errno will be either EINVAL
18860Sstevel@tonic-gate  *   or EPERM, in keeping with defined errnos for ulimit() and setrlimit()
18870Sstevel@tonic-gate  *   system calls.
18880Sstevel@tonic-gate  */
18890Sstevel@tonic-gate /*ARGSUSED*/
18900Sstevel@tonic-gate int
18910Sstevel@tonic-gate rctl_rlimit_set(rctl_hndl_t rc, struct proc *p, struct rlimit64 *rlp64,
18920Sstevel@tonic-gate     rctl_alloc_gp_t *ragp, int flagaction, int signal, const cred_t *cr)
18930Sstevel@tonic-gate {
18940Sstevel@tonic-gate 	rctl_t *rctl;
18950Sstevel@tonic-gate 	rctl_val_t *rval, *rval_priv, *rval_basic;
18960Sstevel@tonic-gate 	rctl_set_t *rset = p->p_rctls;
18970Sstevel@tonic-gate 	rctl_qty_t max;
18980Sstevel@tonic-gate 	rctl_entity_p_t e;
18990Sstevel@tonic-gate 	struct rlimit64 cur_rl;
19000Sstevel@tonic-gate 
19010Sstevel@tonic-gate 	e.rcep_t = RCENTITY_PROCESS;
19020Sstevel@tonic-gate 	e.rcep_p.proc = p;
19030Sstevel@tonic-gate 
19040Sstevel@tonic-gate 	if (rlp64->rlim_cur > rlp64->rlim_max)
19050Sstevel@tonic-gate 		return (EINVAL);
19060Sstevel@tonic-gate 
19070Sstevel@tonic-gate 	if (rctl_rlimit_get(rc, p, &cur_rl) == -1)
19080Sstevel@tonic-gate 		return (EINVAL);
19090Sstevel@tonic-gate 
19100Sstevel@tonic-gate 	/*
19110Sstevel@tonic-gate 	 * If we are not privileged, we can only lower the hard limit.
19120Sstevel@tonic-gate 	 */
19130Sstevel@tonic-gate 	if ((rlp64->rlim_max > cur_rl.rlim_max) &&
19140Sstevel@tonic-gate 	    cur_rl.rlim_max != RLIM64_INFINITY &&
19150Sstevel@tonic-gate 	    secpolicy_resource(cr) != 0)
19160Sstevel@tonic-gate 		return (EPERM);
19170Sstevel@tonic-gate 
19180Sstevel@tonic-gate 	mutex_enter(&rset->rcs_lock);
19190Sstevel@tonic-gate 
19200Sstevel@tonic-gate 	if (rctl_set_find(rset, rc, &rctl) == -1) {
19210Sstevel@tonic-gate 		mutex_exit(&rset->rcs_lock);
19220Sstevel@tonic-gate 		return (EINVAL);
19230Sstevel@tonic-gate 	}
19240Sstevel@tonic-gate 
19250Sstevel@tonic-gate 	rval_priv = rctl_gp_detach_val(ragp);
19260Sstevel@tonic-gate 
19270Sstevel@tonic-gate 	rval = rctl->rc_values;
19280Sstevel@tonic-gate 
19290Sstevel@tonic-gate 	while (rval != NULL) {
19300Sstevel@tonic-gate 		rctl_val_t *next = rval->rcv_next;
19310Sstevel@tonic-gate 
19320Sstevel@tonic-gate 		if (rval->rcv_privilege == RCPRIV_SYSTEM)
19330Sstevel@tonic-gate 			break;
19340Sstevel@tonic-gate 
19350Sstevel@tonic-gate 		if ((rval->rcv_privilege == RCPRIV_BASIC) ||
19360Sstevel@tonic-gate 		    (rval->rcv_flagaction & ~RCTL_LOCAL_ACTION_MASK) ==
19370Sstevel@tonic-gate 		    (flagaction & ~RCTL_LOCAL_ACTION_MASK)) {
19380Sstevel@tonic-gate 			if (rctl->rc_cursor == rval) {
19390Sstevel@tonic-gate 				rctl->rc_cursor = rval->rcv_next;
19400Sstevel@tonic-gate 				rctl_val_list_reset(rctl->rc_cursor);
19410Sstevel@tonic-gate 				RCTLOP_SET(rctl, p, &e, rctl_model_value(
19420Sstevel@tonic-gate 				    rctl->rc_dict_entry, p,
19430Sstevel@tonic-gate 				    rctl->rc_cursor->rcv_value));
19440Sstevel@tonic-gate 			}
19450Sstevel@tonic-gate 			(void) rctl_val_list_delete(&rctl->rc_values, rval);
19460Sstevel@tonic-gate 		}
19470Sstevel@tonic-gate 
19480Sstevel@tonic-gate 		rval = next;
19490Sstevel@tonic-gate 	}
19500Sstevel@tonic-gate 
19510Sstevel@tonic-gate 	rval_priv->rcv_privilege = RCPRIV_PRIVILEGED;
19520Sstevel@tonic-gate 	rval_priv->rcv_flagaction = flagaction;
19530Sstevel@tonic-gate 	if (rlp64->rlim_max == RLIM64_INFINITY) {
19540Sstevel@tonic-gate 		rval_priv->rcv_flagaction |= RCTL_LOCAL_MAXIMAL;
19550Sstevel@tonic-gate 		max = rctl->rc_dict_entry->rcd_max_native;
19560Sstevel@tonic-gate 	} else {
19570Sstevel@tonic-gate 		max = rlp64->rlim_max;
19580Sstevel@tonic-gate 	}
19590Sstevel@tonic-gate 	rval_priv->rcv_value = max;
19600Sstevel@tonic-gate 	rval_priv->rcv_action_signal = signal;
19610Sstevel@tonic-gate 	rval_priv->rcv_action_recipient = NULL;
19620Sstevel@tonic-gate 	rval_priv->rcv_action_recip_pid = -1;
19630Sstevel@tonic-gate 	rval_priv->rcv_firing_time = 0;
19640Sstevel@tonic-gate 	rval_priv->rcv_prev = rval_priv->rcv_next = NULL;
19650Sstevel@tonic-gate 
19660Sstevel@tonic-gate 	(void) rctl_val_list_insert(&rctl->rc_values, rval_priv);
19670Sstevel@tonic-gate 	rctl->rc_cursor = rval_priv;
19680Sstevel@tonic-gate 	rctl_val_list_reset(rctl->rc_cursor);
19690Sstevel@tonic-gate 	RCTLOP_SET(rctl, p, &e, rctl_model_value(rctl->rc_dict_entry, p,
19700Sstevel@tonic-gate 	    rctl->rc_cursor->rcv_value));
19710Sstevel@tonic-gate 
19720Sstevel@tonic-gate 	if (rlp64->rlim_cur != RLIM64_INFINITY && rlp64->rlim_cur < max) {
19730Sstevel@tonic-gate 		rval_basic = rctl_gp_detach_val(ragp);
19740Sstevel@tonic-gate 
19750Sstevel@tonic-gate 		rval_basic->rcv_privilege = RCPRIV_BASIC;
19760Sstevel@tonic-gate 		rval_basic->rcv_value = rlp64->rlim_cur;
19770Sstevel@tonic-gate 		rval_basic->rcv_flagaction = flagaction;
19780Sstevel@tonic-gate 		rval_basic->rcv_action_signal = signal;
19790Sstevel@tonic-gate 		rval_basic->rcv_action_recipient = p;
19800Sstevel@tonic-gate 		rval_basic->rcv_action_recip_pid = p->p_pid;
19810Sstevel@tonic-gate 		rval_basic->rcv_firing_time = 0;
19820Sstevel@tonic-gate 		rval_basic->rcv_prev = rval_basic->rcv_next = NULL;
19830Sstevel@tonic-gate 
19840Sstevel@tonic-gate 		(void) rctl_val_list_insert(&rctl->rc_values, rval_basic);
19850Sstevel@tonic-gate 		rctl->rc_cursor = rval_basic;
19860Sstevel@tonic-gate 		rctl_val_list_reset(rctl->rc_cursor);
19870Sstevel@tonic-gate 		RCTLOP_SET(rctl, p, &e, rctl_model_value(rctl->rc_dict_entry, p,
19880Sstevel@tonic-gate 		    rctl->rc_cursor->rcv_value));
19890Sstevel@tonic-gate 	}
19900Sstevel@tonic-gate 
19910Sstevel@tonic-gate 	ASSERT(rctl->rc_cursor != NULL);
19920Sstevel@tonic-gate 
19930Sstevel@tonic-gate 	mutex_exit(&rset->rcs_lock);
19940Sstevel@tonic-gate 	return (0);
19950Sstevel@tonic-gate }
19960Sstevel@tonic-gate 
19970Sstevel@tonic-gate 
19980Sstevel@tonic-gate /*
19990Sstevel@tonic-gate  * rctl_hndl_t rctl_register(const char *, rctl_entity_t, int, rlim64_t,
20000Sstevel@tonic-gate  *   rlim64_t, rctl_ops_t *)
20010Sstevel@tonic-gate  *
20020Sstevel@tonic-gate  * Overview
20030Sstevel@tonic-gate  *   rctl_register() performs a look-up in the dictionary of rctls
20040Sstevel@tonic-gate  *   active on the system; if a rctl of that name is absent, an entry is
20050Sstevel@tonic-gate  *   made into the dictionary.  The rctl is returned with its reference
20060Sstevel@tonic-gate  *   count incremented by one.  If the rctl name already exists, we panic.
20070Sstevel@tonic-gate  *   (Were the resource control system to support dynamic loading and unloading,
20080Sstevel@tonic-gate  *   which it is structured for, duplicate registration should lead to load
20090Sstevel@tonic-gate  *   failure instead of panicking.)
20100Sstevel@tonic-gate  *
20110Sstevel@tonic-gate  *   Each registered rctl has a requirement that a RCPRIV_SYSTEM limit be
20120Sstevel@tonic-gate  *   defined.  This limit contains the highest possible value for this quantity
20130Sstevel@tonic-gate  *   on the system.  Furthermore, the registered control must provide infinite
20140Sstevel@tonic-gate  *   values for all applicable address space models supported by the operating
20150Sstevel@tonic-gate  *   system.  Attempts to set resource control values beyond the system limit
20160Sstevel@tonic-gate  *   will fail.
20170Sstevel@tonic-gate  *
20180Sstevel@tonic-gate  * Return values
20190Sstevel@tonic-gate  *   The rctl's ID.
20200Sstevel@tonic-gate  *
20210Sstevel@tonic-gate  * Caller's context
20220Sstevel@tonic-gate  *   Caller must be in a context suitable for KM_SLEEP allocations.
20230Sstevel@tonic-gate  */
20240Sstevel@tonic-gate rctl_hndl_t
20250Sstevel@tonic-gate rctl_register(
20260Sstevel@tonic-gate     const char *name,
20270Sstevel@tonic-gate     rctl_entity_t entity,
20280Sstevel@tonic-gate     int global_flags,
20290Sstevel@tonic-gate     rlim64_t max_native,
20300Sstevel@tonic-gate     rlim64_t max_ilp32,
20310Sstevel@tonic-gate     rctl_ops_t *ops)
20320Sstevel@tonic-gate {
20330Sstevel@tonic-gate 	rctl_t *rctl = kmem_cache_alloc(rctl_cache, KM_SLEEP);
20340Sstevel@tonic-gate 	rctl_val_t *rctl_val = kmem_cache_alloc(rctl_val_cache, KM_SLEEP);
20350Sstevel@tonic-gate 	rctl_dict_entry_t *rctl_de = kmem_zalloc(sizeof (rctl_dict_entry_t),
20360Sstevel@tonic-gate 	    KM_SLEEP);
20370Sstevel@tonic-gate 	rctl_t *old_rctl;
20380Sstevel@tonic-gate 	rctl_hndl_t rhndl;
20390Sstevel@tonic-gate 	int localflags;
20400Sstevel@tonic-gate 
20410Sstevel@tonic-gate 	ASSERT(ops != NULL);
20420Sstevel@tonic-gate 
20430Sstevel@tonic-gate 	bzero(rctl, sizeof (rctl_t));
20440Sstevel@tonic-gate 	bzero(rctl_val, sizeof (rctl_val_t));
20450Sstevel@tonic-gate 
20460Sstevel@tonic-gate 	if (global_flags & RCTL_GLOBAL_DENY_NEVER)
20470Sstevel@tonic-gate 		localflags = RCTL_LOCAL_MAXIMAL;
20480Sstevel@tonic-gate 	else
20490Sstevel@tonic-gate 		localflags = RCTL_LOCAL_MAXIMAL | RCTL_LOCAL_DENY;
20500Sstevel@tonic-gate 
20510Sstevel@tonic-gate 	rctl_val->rcv_privilege = RCPRIV_SYSTEM;
20520Sstevel@tonic-gate 	rctl_val->rcv_value = max_native;
20530Sstevel@tonic-gate 	rctl_val->rcv_flagaction = localflags;
20540Sstevel@tonic-gate 	rctl_val->rcv_action_signal = 0;
20550Sstevel@tonic-gate 	rctl_val->rcv_action_recipient = NULL;
20560Sstevel@tonic-gate 	rctl_val->rcv_action_recip_pid = -1;
20570Sstevel@tonic-gate 	rctl_val->rcv_firing_time = 0;
20580Sstevel@tonic-gate 	rctl_val->rcv_next = NULL;
20590Sstevel@tonic-gate 	rctl_val->rcv_prev = NULL;
20600Sstevel@tonic-gate 
20610Sstevel@tonic-gate 	rctl_de->rcd_name = (char *)name;
20620Sstevel@tonic-gate 	rctl_de->rcd_default_value = rctl_val;
20630Sstevel@tonic-gate 	rctl_de->rcd_max_native = max_native;
20640Sstevel@tonic-gate 	rctl_de->rcd_max_ilp32 = max_ilp32;
20650Sstevel@tonic-gate 	rctl_de->rcd_entity = entity;
20660Sstevel@tonic-gate 	rctl_de->rcd_ops = ops;
20670Sstevel@tonic-gate 	rctl_de->rcd_flagaction = global_flags;
20680Sstevel@tonic-gate 
20690Sstevel@tonic-gate 	rctl->rc_dict_entry = rctl_de;
20700Sstevel@tonic-gate 	rctl->rc_values = rctl_val;
20710Sstevel@tonic-gate 
20720Sstevel@tonic-gate 	/*
20730Sstevel@tonic-gate 	 * 1.  Take global lock, validate nonexistence of name, get ID.
20740Sstevel@tonic-gate 	 */
20750Sstevel@tonic-gate 	mutex_enter(&rctl_dict_lock);
20760Sstevel@tonic-gate 
20770Sstevel@tonic-gate 	if (mod_hash_find(rctl_dict_by_name, (mod_hash_key_t)name,
20780Sstevel@tonic-gate 	    (mod_hash_val_t *)&rhndl) != MH_ERR_NOTFOUND)
20790Sstevel@tonic-gate 		panic("duplicate registration of rctl %s", name);
20800Sstevel@tonic-gate 
20810Sstevel@tonic-gate 	rhndl = rctl_de->rcd_id = rctl->rc_id =
20820Sstevel@tonic-gate 	    (rctl_hndl_t)id_alloc(rctl_ids);
20830Sstevel@tonic-gate 
20840Sstevel@tonic-gate 	/*
20850Sstevel@tonic-gate 	 * 2.  Insert name-entry pair in rctl_dict_by_name.
20860Sstevel@tonic-gate 	 */
20870Sstevel@tonic-gate 	if (mod_hash_insert(rctl_dict_by_name, (mod_hash_key_t)name,
20880Sstevel@tonic-gate 	    (mod_hash_val_t)rctl_de))
20890Sstevel@tonic-gate 		panic("unable to insert rctl dict entry for %s (%u)", name,
20900Sstevel@tonic-gate 		    (uint_t)rctl->rc_id);
20910Sstevel@tonic-gate 
20920Sstevel@tonic-gate 	/*
20930Sstevel@tonic-gate 	 * 3.  Insert ID-rctl_t * pair in rctl_dict.
20940Sstevel@tonic-gate 	 */
20950Sstevel@tonic-gate 	if (mod_hash_find(rctl_dict, (mod_hash_key_t)(uintptr_t)rctl->rc_id,
20960Sstevel@tonic-gate 	    (mod_hash_val_t *)&old_rctl) != MH_ERR_NOTFOUND)
20970Sstevel@tonic-gate 		panic("duplicate rctl ID %u registered", rctl->rc_id);
20980Sstevel@tonic-gate 
20990Sstevel@tonic-gate 	if (mod_hash_insert(rctl_dict, (mod_hash_key_t)(uintptr_t)rctl->rc_id,
21000Sstevel@tonic-gate 	    (mod_hash_val_t)rctl))
21010Sstevel@tonic-gate 		panic("unable to insert rctl %s/%u (%p)", name,
21020Sstevel@tonic-gate 		    (uint_t)rctl->rc_id, rctl);
21030Sstevel@tonic-gate 
21040Sstevel@tonic-gate 	/*
21050Sstevel@tonic-gate 	 * 3a. Insert rctl_dict_entry_t * in appropriate entity list.
21060Sstevel@tonic-gate 	 */
21070Sstevel@tonic-gate 
21080Sstevel@tonic-gate 	mutex_enter(&rctl_lists_lock);
21090Sstevel@tonic-gate 
21100Sstevel@tonic-gate 	switch (entity) {
21110Sstevel@tonic-gate 	case RCENTITY_ZONE:
21120Sstevel@tonic-gate 	case RCENTITY_PROJECT:
21130Sstevel@tonic-gate 	case RCENTITY_TASK:
21140Sstevel@tonic-gate 	case RCENTITY_PROCESS:
21150Sstevel@tonic-gate 		rctl_de->rcd_next = rctl_lists[entity];
21160Sstevel@tonic-gate 		rctl_lists[entity] = rctl_de;
21170Sstevel@tonic-gate 		break;
21180Sstevel@tonic-gate 	default:
21190Sstevel@tonic-gate 		panic("registering unknown rctl entity %d (%s)", entity,
21200Sstevel@tonic-gate 		    name);
21210Sstevel@tonic-gate 		break;
21220Sstevel@tonic-gate 	}
21230Sstevel@tonic-gate 
21240Sstevel@tonic-gate 	mutex_exit(&rctl_lists_lock);
21250Sstevel@tonic-gate 
21260Sstevel@tonic-gate 	/*
21270Sstevel@tonic-gate 	 * 4.  Drop lock.
21280Sstevel@tonic-gate 	 */
21290Sstevel@tonic-gate 	mutex_exit(&rctl_dict_lock);
21300Sstevel@tonic-gate 
21310Sstevel@tonic-gate 	return (rhndl);
21320Sstevel@tonic-gate }
21330Sstevel@tonic-gate 
21340Sstevel@tonic-gate /*
21350Sstevel@tonic-gate  * static int rctl_global_action(rctl_t *r, rctl_set_t *rset, struct proc *p,
21360Sstevel@tonic-gate  *    rctl_val_t *v)
21370Sstevel@tonic-gate  *
21380Sstevel@tonic-gate  * Overview
21390Sstevel@tonic-gate  *   rctl_global_action() takes, in according with the flags on the rctl_dict
21400Sstevel@tonic-gate  *   entry for the given control, the appropriate actions on the exceeded
21410Sstevel@tonic-gate  *   control value.  Additionally, rctl_global_action() updates the firing time
21420Sstevel@tonic-gate  *   on the exceeded value.
21430Sstevel@tonic-gate  *
21440Sstevel@tonic-gate  * Return values
21450Sstevel@tonic-gate  *   A bitmask reflecting the actions actually taken.
21460Sstevel@tonic-gate  *
21470Sstevel@tonic-gate  * Caller's context
21480Sstevel@tonic-gate  *   No restrictions on context.
21490Sstevel@tonic-gate  */
21500Sstevel@tonic-gate /*ARGSUSED*/
21510Sstevel@tonic-gate static int
21520Sstevel@tonic-gate rctl_global_action(rctl_t *r, rctl_set_t *rset, struct proc *p, rctl_val_t *v)
21530Sstevel@tonic-gate {
21540Sstevel@tonic-gate 	rctl_dict_entry_t *rde = r->rc_dict_entry;
21552447Snf202958 	const char *pr, *en, *idstr;
21560Sstevel@tonic-gate 	id_t id;
21572447Snf202958 	enum {
21582447Snf202958 		SUFFIX_NONE,	/* id consumed directly */
21592447Snf202958 		SUFFIX_NUMERIC,	/* id consumed in suffix */
21602447Snf202958 		SUFFIX_STRING	/* idstr consumed in suffix */
21612447Snf202958 	} suffix = SUFFIX_NONE;
21620Sstevel@tonic-gate 	int ret = 0;
21630Sstevel@tonic-gate 
21640Sstevel@tonic-gate 	v->rcv_firing_time = gethrtime();
21650Sstevel@tonic-gate 
21660Sstevel@tonic-gate 	switch (v->rcv_privilege) {
21670Sstevel@tonic-gate 	case RCPRIV_BASIC:
21680Sstevel@tonic-gate 		pr = "basic";
21690Sstevel@tonic-gate 		break;
21700Sstevel@tonic-gate 	case RCPRIV_PRIVILEGED:
21710Sstevel@tonic-gate 		pr = "privileged";
21720Sstevel@tonic-gate 		break;
21730Sstevel@tonic-gate 	case RCPRIV_SYSTEM:
21740Sstevel@tonic-gate 		pr = "system";
21750Sstevel@tonic-gate 		break;
21760Sstevel@tonic-gate 	default:
21770Sstevel@tonic-gate 		pr = "unknown";
21780Sstevel@tonic-gate 		break;
21790Sstevel@tonic-gate 	}
21800Sstevel@tonic-gate 
21810Sstevel@tonic-gate 	switch (rde->rcd_entity) {
21820Sstevel@tonic-gate 	case RCENTITY_PROCESS:
21830Sstevel@tonic-gate 		en = "process";
21840Sstevel@tonic-gate 		id = p->p_pid;
21852447Snf202958 		suffix = SUFFIX_NONE;
21860Sstevel@tonic-gate 		break;
21870Sstevel@tonic-gate 	case RCENTITY_TASK:
21880Sstevel@tonic-gate 		en = "task";
21890Sstevel@tonic-gate 		id = p->p_task->tk_tkid;
21902447Snf202958 		suffix = SUFFIX_NUMERIC;
21910Sstevel@tonic-gate 		break;
21920Sstevel@tonic-gate 	case RCENTITY_PROJECT:
21930Sstevel@tonic-gate 		en = "project";
21940Sstevel@tonic-gate 		id = p->p_task->tk_proj->kpj_id;
21952447Snf202958 		suffix = SUFFIX_NUMERIC;
21960Sstevel@tonic-gate 		break;
21970Sstevel@tonic-gate 	case RCENTITY_ZONE:
21980Sstevel@tonic-gate 		en = "zone";
21992447Snf202958 		idstr = p->p_zone->zone_name;
22002447Snf202958 		suffix = SUFFIX_STRING;
22010Sstevel@tonic-gate 		break;
22020Sstevel@tonic-gate 	default:
22032447Snf202958 		en = "unknown entity associated with process";
22040Sstevel@tonic-gate 		id = p->p_pid;
22052447Snf202958 		suffix = SUFFIX_NONE;
22060Sstevel@tonic-gate 		break;
22070Sstevel@tonic-gate 	}
22080Sstevel@tonic-gate 
22090Sstevel@tonic-gate 	if (rde->rcd_flagaction & RCTL_GLOBAL_SYSLOG) {
22102447Snf202958 		switch (suffix) {
22112447Snf202958 		default:
22122447Snf202958 		case SUFFIX_NONE:
22132447Snf202958 			(void) strlog(0, 0, 0,
22142447Snf202958 			    rde->rcd_strlog_flags | log_global.lz_active,
22152447Snf202958 			    "%s rctl %s (value %llu) exceeded by %s %d.",
22162447Snf202958 			    pr, rde->rcd_name, v->rcv_value, en, id);
22172447Snf202958 			break;
22182447Snf202958 		case SUFFIX_NUMERIC:
22192447Snf202958 			(void) strlog(0, 0, 0,
22202447Snf202958 			    rde->rcd_strlog_flags | log_global.lz_active,
22212447Snf202958 			    "%s rctl %s (value %llu) exceeded by process %d"
22222447Snf202958 			    " in %s %d.",
22232447Snf202958 			    pr, rde->rcd_name, v->rcv_value, p->p_pid,
22242447Snf202958 			    en, id);
22252447Snf202958 			break;
22262447Snf202958 		case SUFFIX_STRING:
22272447Snf202958 			(void) strlog(0, 0, 0,
22282447Snf202958 			    rde->rcd_strlog_flags | log_global.lz_active,
22292447Snf202958 			    "%s rctl %s (value %llu) exceeded by process %d"
22302447Snf202958 			    " in %s %s.",
22312447Snf202958 			    pr, rde->rcd_name, v->rcv_value, p->p_pid,
22322447Snf202958 			    en, idstr);
22332447Snf202958 			break;
22342447Snf202958 		}
22350Sstevel@tonic-gate 	}
22360Sstevel@tonic-gate 
22370Sstevel@tonic-gate 	if (rde->rcd_flagaction & RCTL_GLOBAL_DENY_ALWAYS)
22380Sstevel@tonic-gate 		ret |= RCT_DENY;
22390Sstevel@tonic-gate 
22400Sstevel@tonic-gate 	return (ret);
22410Sstevel@tonic-gate }
22420Sstevel@tonic-gate 
22430Sstevel@tonic-gate static int
22440Sstevel@tonic-gate rctl_local_action(rctl_t *r, rctl_set_t *rset, struct proc *p, rctl_val_t *v,
22450Sstevel@tonic-gate     uint_t safety)
22460Sstevel@tonic-gate {
22470Sstevel@tonic-gate 	int ret = 0;
22480Sstevel@tonic-gate 	sigqueue_t *sqp = NULL;
22490Sstevel@tonic-gate 	rctl_dict_entry_t *rde = r->rc_dict_entry;
22500Sstevel@tonic-gate 	int unobservable = (rde->rcd_flagaction & RCTL_GLOBAL_UNOBSERVABLE);
22510Sstevel@tonic-gate 
22520Sstevel@tonic-gate 	proc_t *recipient = v->rcv_action_recipient;
22530Sstevel@tonic-gate 	id_t recip_pid = v->rcv_action_recip_pid;
22540Sstevel@tonic-gate 	int recip_signal = v->rcv_action_signal;
22550Sstevel@tonic-gate 	uint_t flagaction = v->rcv_flagaction;
22560Sstevel@tonic-gate 
22570Sstevel@tonic-gate 	if (safety == RCA_UNSAFE_ALL) {
22580Sstevel@tonic-gate 		if (flagaction & RCTL_LOCAL_DENY) {
22590Sstevel@tonic-gate 			ret |= RCT_DENY;
22600Sstevel@tonic-gate 		}
22610Sstevel@tonic-gate 		return (ret);
22620Sstevel@tonic-gate 	}
22630Sstevel@tonic-gate 
22640Sstevel@tonic-gate 	if (flagaction & RCTL_LOCAL_SIGNAL) {
22650Sstevel@tonic-gate 		/*
22660Sstevel@tonic-gate 		 * We can build a siginfo only in the case that it is
22670Sstevel@tonic-gate 		 * safe for us to drop p_lock.  (For asynchronous
22680Sstevel@tonic-gate 		 * checks this is currently not true.)
22690Sstevel@tonic-gate 		 */
22700Sstevel@tonic-gate 		if (safety == RCA_SAFE) {
22710Sstevel@tonic-gate 			mutex_exit(&rset->rcs_lock);
22720Sstevel@tonic-gate 			mutex_exit(&p->p_lock);
22730Sstevel@tonic-gate 			sqp = kmem_zalloc(sizeof (sigqueue_t), KM_SLEEP);
22740Sstevel@tonic-gate 			mutex_enter(&p->p_lock);
22750Sstevel@tonic-gate 			mutex_enter(&rset->rcs_lock);
22760Sstevel@tonic-gate 
22770Sstevel@tonic-gate 			sqp->sq_info.si_signo = recip_signal;
22780Sstevel@tonic-gate 			sqp->sq_info.si_code = SI_RCTL;
22790Sstevel@tonic-gate 			sqp->sq_info.si_errno = 0;
22800Sstevel@tonic-gate 			sqp->sq_info.si_entity = (int)rde->rcd_entity;
22810Sstevel@tonic-gate 		}
22820Sstevel@tonic-gate 
22830Sstevel@tonic-gate 		if (recipient == NULL || recipient == p) {
22840Sstevel@tonic-gate 			ret |= RCT_SIGNAL;
22850Sstevel@tonic-gate 
22860Sstevel@tonic-gate 			if (sqp == NULL) {
22870Sstevel@tonic-gate 				sigtoproc(p, NULL, recip_signal);
22880Sstevel@tonic-gate 			} else if (p == curproc) {
22890Sstevel@tonic-gate 				/*
22900Sstevel@tonic-gate 				 * Then this is a synchronous test and we can
22910Sstevel@tonic-gate 				 * direct the signal at the violating thread.
22920Sstevel@tonic-gate 				 */
22930Sstevel@tonic-gate 				sigaddqa(curproc, curthread, sqp);
22940Sstevel@tonic-gate 			} else {
22950Sstevel@tonic-gate 				sigaddqa(p, NULL, sqp);
22960Sstevel@tonic-gate 			}
22970Sstevel@tonic-gate 		} else if (!unobservable) {
22980Sstevel@tonic-gate 			proc_t *rp;
22990Sstevel@tonic-gate 
23000Sstevel@tonic-gate 			mutex_exit(&rset->rcs_lock);
23010Sstevel@tonic-gate 			mutex_exit(&p->p_lock);
23020Sstevel@tonic-gate 
23030Sstevel@tonic-gate 			mutex_enter(&pidlock);
23040Sstevel@tonic-gate 			if ((rp = prfind(recip_pid)) == recipient) {
23050Sstevel@tonic-gate 				/*
23060Sstevel@tonic-gate 				 * Recipient process is still alive, but may not
23070Sstevel@tonic-gate 				 * be in this task or project any longer.  In
23080Sstevel@tonic-gate 				 * this case, the recipient's resource control
23090Sstevel@tonic-gate 				 * set pertinent to this control will have
23100Sstevel@tonic-gate 				 * changed--and we will not deliver the signal,
23110Sstevel@tonic-gate 				 * as the recipient process is trying to tear
23120Sstevel@tonic-gate 				 * itself off of its former set.
23130Sstevel@tonic-gate 				 */
23140Sstevel@tonic-gate 				mutex_enter(&rp->p_lock);
23150Sstevel@tonic-gate 				mutex_exit(&pidlock);
23160Sstevel@tonic-gate 
23170Sstevel@tonic-gate 				if (rctl_entity_obtain_rset(rde, rp) == rset) {
23180Sstevel@tonic-gate 					ret |= RCT_SIGNAL;
23190Sstevel@tonic-gate 
23200Sstevel@tonic-gate 					if (sqp == NULL)
23210Sstevel@tonic-gate 						sigtoproc(rp, NULL,
23220Sstevel@tonic-gate 						    recip_signal);
23230Sstevel@tonic-gate 					else
23240Sstevel@tonic-gate 						sigaddqa(rp, NULL, sqp);
23250Sstevel@tonic-gate 				} else if (sqp) {
23260Sstevel@tonic-gate 					kmem_free(sqp, sizeof (sigqueue_t));
23270Sstevel@tonic-gate 				}
23280Sstevel@tonic-gate 				mutex_exit(&rp->p_lock);
23290Sstevel@tonic-gate 			} else {
23300Sstevel@tonic-gate 				mutex_exit(&pidlock);
23310Sstevel@tonic-gate 				if (sqp)
23320Sstevel@tonic-gate 					kmem_free(sqp, sizeof (sigqueue_t));
23330Sstevel@tonic-gate 			}
23340Sstevel@tonic-gate 
23350Sstevel@tonic-gate 			mutex_enter(&p->p_lock);
23360Sstevel@tonic-gate 			/*
23370Sstevel@tonic-gate 			 * Since we dropped p_lock, we may no longer be in the
23380Sstevel@tonic-gate 			 * same task or project as we were at entry.  It is thus
23390Sstevel@tonic-gate 			 * unsafe for us to reacquire the set lock at this
23400Sstevel@tonic-gate 			 * point; callers of rctl_local_action() must handle
23410Sstevel@tonic-gate 			 * this possibility.
23420Sstevel@tonic-gate 			 */
23430Sstevel@tonic-gate 			ret |= RCT_LK_ABANDONED;
23440Sstevel@tonic-gate 		} else if (sqp) {
23450Sstevel@tonic-gate 			kmem_free(sqp, sizeof (sigqueue_t));
23460Sstevel@tonic-gate 		}
23470Sstevel@tonic-gate 	}
23480Sstevel@tonic-gate 
23490Sstevel@tonic-gate 	if ((flagaction & RCTL_LOCAL_DENY) &&
23500Sstevel@tonic-gate 	    (recipient == NULL || recipient == p)) {
23510Sstevel@tonic-gate 		ret |= RCT_DENY;
23520Sstevel@tonic-gate 	}
23530Sstevel@tonic-gate 
23540Sstevel@tonic-gate 	return (ret);
23550Sstevel@tonic-gate }
23560Sstevel@tonic-gate 
23570Sstevel@tonic-gate /*
23580Sstevel@tonic-gate  * int rctl_action(rctl_hndl_t, rctl_set_t *, struct proc *, uint_t)
23590Sstevel@tonic-gate  *
23600Sstevel@tonic-gate  * Overview
23610Sstevel@tonic-gate  *   Take the action associated with the enforced value (as defined by
23620Sstevel@tonic-gate  *   rctl_get_enforced_value()) being exceeded or encountered.  Possibly perform
23630Sstevel@tonic-gate  *   a restricted subset of the available actions, if circumstances dictate that
23640Sstevel@tonic-gate  *   we cannot safely allocate memory (for a sigqueue_t) or guarantee process
23650Sstevel@tonic-gate  *   persistence across the duration of the function (an asynchronous action).
23660Sstevel@tonic-gate  *
23670Sstevel@tonic-gate  * Return values
23680Sstevel@tonic-gate  *   Actions taken, according to the rctl_test bitmask.
23690Sstevel@tonic-gate  *
23700Sstevel@tonic-gate  * Caller's context
23710Sstevel@tonic-gate  *   Safe to acquire rcs_lock.
23720Sstevel@tonic-gate  */
23730Sstevel@tonic-gate int
23740Sstevel@tonic-gate rctl_action(rctl_hndl_t hndl, rctl_set_t *rset, struct proc *p, uint_t safety)
23750Sstevel@tonic-gate {
23760Sstevel@tonic-gate 	return (rctl_action_entity(hndl, rset, p, NULL, safety));
23770Sstevel@tonic-gate }
23780Sstevel@tonic-gate 
23790Sstevel@tonic-gate int
23800Sstevel@tonic-gate rctl_action_entity(rctl_hndl_t hndl, rctl_set_t *rset, struct proc *p,
23810Sstevel@tonic-gate     rctl_entity_p_t *e, uint_t safety)
23820Sstevel@tonic-gate {
23830Sstevel@tonic-gate 	int ret = RCT_NONE;
23840Sstevel@tonic-gate 	rctl_t *lrctl;
23850Sstevel@tonic-gate 	rctl_entity_p_t e_tmp;
23860Sstevel@tonic-gate 
23870Sstevel@tonic-gate rctl_action_acquire:
23880Sstevel@tonic-gate 	mutex_enter(&rset->rcs_lock);
23890Sstevel@tonic-gate 	if (rctl_set_find(rset, hndl, &lrctl) == -1) {
23900Sstevel@tonic-gate 		mutex_exit(&rset->rcs_lock);
23910Sstevel@tonic-gate 		return (ret);
23920Sstevel@tonic-gate 	}
23930Sstevel@tonic-gate 
23940Sstevel@tonic-gate 	if (e == NULL) {
23950Sstevel@tonic-gate 		rctl_entity_obtain_entity_p(lrctl->rc_dict_entry->rcd_entity,
23960Sstevel@tonic-gate 		p, &e_tmp);
23970Sstevel@tonic-gate 		e = &e_tmp;
23980Sstevel@tonic-gate 	}
23990Sstevel@tonic-gate 
24000Sstevel@tonic-gate 	if ((ret & RCT_LK_ABANDONED) == 0) {
24010Sstevel@tonic-gate 		ret |= rctl_global_action(lrctl, rset, p, lrctl->rc_cursor);
24020Sstevel@tonic-gate 
24030Sstevel@tonic-gate 		RCTLOP_ACTION(lrctl, p, e);
24040Sstevel@tonic-gate 
24050Sstevel@tonic-gate 		ret |= rctl_local_action(lrctl, rset, p,
24060Sstevel@tonic-gate 		    lrctl->rc_cursor, safety);
24070Sstevel@tonic-gate 
24080Sstevel@tonic-gate 		if (ret & RCT_LK_ABANDONED)
24090Sstevel@tonic-gate 			goto rctl_action_acquire;
24100Sstevel@tonic-gate 	}
24110Sstevel@tonic-gate 
24120Sstevel@tonic-gate 	ret &= ~RCT_LK_ABANDONED;
24130Sstevel@tonic-gate 
24140Sstevel@tonic-gate 	if (!(ret & RCT_DENY) &&
24150Sstevel@tonic-gate 	    lrctl->rc_cursor->rcv_next != NULL) {
24160Sstevel@tonic-gate 		lrctl->rc_cursor = lrctl->rc_cursor->rcv_next;
24170Sstevel@tonic-gate 
24180Sstevel@tonic-gate 		RCTLOP_SET(lrctl, p, e, rctl_model_value(lrctl->rc_dict_entry,
24190Sstevel@tonic-gate 		    p, lrctl->rc_cursor->rcv_value));
24200Sstevel@tonic-gate 
24210Sstevel@tonic-gate 	}
24220Sstevel@tonic-gate 	mutex_exit(&rset->rcs_lock);
24230Sstevel@tonic-gate 
24240Sstevel@tonic-gate 	return (ret);
24250Sstevel@tonic-gate }
24260Sstevel@tonic-gate 
24270Sstevel@tonic-gate /*
24280Sstevel@tonic-gate  * int rctl_test(rctl_hndl_t, rctl_set_t *, struct proc *, rctl_qty_t, uint_t)
24290Sstevel@tonic-gate  *
24300Sstevel@tonic-gate  * Overview
24310Sstevel@tonic-gate  *   Increment the resource associated with the given handle, returning zero if
24320Sstevel@tonic-gate  *   the incremented value does not exceed the threshold for the current limit
24330Sstevel@tonic-gate  *   on the resource.
24340Sstevel@tonic-gate  *
24350Sstevel@tonic-gate  * Return values
24360Sstevel@tonic-gate  *   Actions taken, according to the rctl_test bitmask.
24370Sstevel@tonic-gate  *
24380Sstevel@tonic-gate  * Caller's context
24390Sstevel@tonic-gate  *   p_lock held by caller.
24400Sstevel@tonic-gate  */
24410Sstevel@tonic-gate /*ARGSUSED*/
24420Sstevel@tonic-gate int
24430Sstevel@tonic-gate rctl_test(rctl_hndl_t rhndl, rctl_set_t *rset, struct proc *p,
24440Sstevel@tonic-gate     rctl_qty_t incr, uint_t flags)
24450Sstevel@tonic-gate {
24460Sstevel@tonic-gate 	return (rctl_test_entity(rhndl, rset, p, NULL, incr, flags));
24470Sstevel@tonic-gate }
24480Sstevel@tonic-gate 
24490Sstevel@tonic-gate int
24500Sstevel@tonic-gate rctl_test_entity(rctl_hndl_t rhndl, rctl_set_t *rset, struct proc *p,
24510Sstevel@tonic-gate     rctl_entity_p_t *e, rctl_qty_t incr, uint_t flags)
24520Sstevel@tonic-gate {
24530Sstevel@tonic-gate 	rctl_t *lrctl;
24540Sstevel@tonic-gate 	int ret = RCT_NONE;
24550Sstevel@tonic-gate 	rctl_entity_p_t e_tmp;
24560Sstevel@tonic-gate 	if (p == &p0) {
24570Sstevel@tonic-gate 		/*
24580Sstevel@tonic-gate 		 * We don't enforce rctls on the kernel itself.
24590Sstevel@tonic-gate 		 */
24600Sstevel@tonic-gate 		return (ret);
24610Sstevel@tonic-gate 	}
24620Sstevel@tonic-gate 
24630Sstevel@tonic-gate rctl_test_acquire:
24640Sstevel@tonic-gate 	ASSERT(MUTEX_HELD(&p->p_lock));
24650Sstevel@tonic-gate 
24660Sstevel@tonic-gate 	mutex_enter(&rset->rcs_lock);
24670Sstevel@tonic-gate 
24680Sstevel@tonic-gate 	/*
24690Sstevel@tonic-gate 	 * Dereference from rctl_set.  We don't enforce newly loaded controls
24700Sstevel@tonic-gate 	 * that haven't been set on this entity (since the only valid value is
24710Sstevel@tonic-gate 	 * the infinite system value).
24720Sstevel@tonic-gate 	 */
24730Sstevel@tonic-gate 	if (rctl_set_find(rset, rhndl, &lrctl) == -1) {
24740Sstevel@tonic-gate 		mutex_exit(&rset->rcs_lock);
24750Sstevel@tonic-gate 		return (ret);
24760Sstevel@tonic-gate 	}
24770Sstevel@tonic-gate 
24780Sstevel@tonic-gate 	/*
24790Sstevel@tonic-gate 	 * This control is currently unenforced:  maximal value on control
24800Sstevel@tonic-gate 	 * supporting infinitely available resource.
24810Sstevel@tonic-gate 	 */
24820Sstevel@tonic-gate 	if ((lrctl->rc_dict_entry->rcd_flagaction & RCTL_GLOBAL_INFINITE) &&
24830Sstevel@tonic-gate 	    (lrctl->rc_cursor->rcv_flagaction & RCTL_LOCAL_MAXIMAL)) {
24840Sstevel@tonic-gate 
24850Sstevel@tonic-gate 		mutex_exit(&rset->rcs_lock);
24860Sstevel@tonic-gate 		return (ret);
24870Sstevel@tonic-gate 	}
24880Sstevel@tonic-gate 
24890Sstevel@tonic-gate 	/*
24900Sstevel@tonic-gate 	 * If we have been called by rctl_test, look up the entity pointer
24910Sstevel@tonic-gate 	 * from the proc pointer.
24920Sstevel@tonic-gate 	 */
24930Sstevel@tonic-gate 	if (e == NULL) {
24940Sstevel@tonic-gate 		rctl_entity_obtain_entity_p(lrctl->rc_dict_entry->rcd_entity,
24950Sstevel@tonic-gate 		p, &e_tmp);
24960Sstevel@tonic-gate 		e = &e_tmp;
24970Sstevel@tonic-gate 	}
24980Sstevel@tonic-gate 
24990Sstevel@tonic-gate 	/*
25000Sstevel@tonic-gate 	 * Get enforced rctl value and current usage.  Test the increment
25010Sstevel@tonic-gate 	 * with the current usage against the enforced value--take action as
25020Sstevel@tonic-gate 	 * necessary.
25030Sstevel@tonic-gate 	 */
25040Sstevel@tonic-gate 	while (RCTLOP_TEST(lrctl, p, e, lrctl->rc_cursor, incr, flags)) {
25050Sstevel@tonic-gate 		if ((ret & RCT_LK_ABANDONED) == 0) {
25060Sstevel@tonic-gate 			ret |= rctl_global_action(lrctl, rset, p,
25070Sstevel@tonic-gate 			    lrctl->rc_cursor);
25080Sstevel@tonic-gate 
25090Sstevel@tonic-gate 			RCTLOP_ACTION(lrctl, p, e);
25100Sstevel@tonic-gate 
25110Sstevel@tonic-gate 			ret |= rctl_local_action(lrctl, rset, p,
25120Sstevel@tonic-gate 			    lrctl->rc_cursor, flags);
25130Sstevel@tonic-gate 
25140Sstevel@tonic-gate 			if (ret & RCT_LK_ABANDONED)
25150Sstevel@tonic-gate 				goto rctl_test_acquire;
25160Sstevel@tonic-gate 		}
25170Sstevel@tonic-gate 
25180Sstevel@tonic-gate 		ret &= ~RCT_LK_ABANDONED;
25190Sstevel@tonic-gate 
25200Sstevel@tonic-gate 		if ((ret & RCT_DENY) == RCT_DENY ||
25210Sstevel@tonic-gate 		    lrctl->rc_cursor->rcv_next == NULL) {
25220Sstevel@tonic-gate 			ret |= RCT_DENY;
25230Sstevel@tonic-gate 			break;
25240Sstevel@tonic-gate 		}
25250Sstevel@tonic-gate 
25260Sstevel@tonic-gate 		lrctl->rc_cursor = lrctl->rc_cursor->rcv_next;
25270Sstevel@tonic-gate 		RCTLOP_SET(lrctl, p, e, rctl_model_value(lrctl->rc_dict_entry,
25280Sstevel@tonic-gate 		    p, lrctl->rc_cursor->rcv_value));
25290Sstevel@tonic-gate 	}
25300Sstevel@tonic-gate 
25310Sstevel@tonic-gate 	mutex_exit(&rset->rcs_lock);
25320Sstevel@tonic-gate 
25330Sstevel@tonic-gate 	return (ret);
25340Sstevel@tonic-gate }
25350Sstevel@tonic-gate 
25360Sstevel@tonic-gate /*
25370Sstevel@tonic-gate  * void rctl_init(void)
25380Sstevel@tonic-gate  *
25390Sstevel@tonic-gate  * Overview
25400Sstevel@tonic-gate  *   Initialize the rctl subsystem, including the primoridal rctls
25410Sstevel@tonic-gate  *   provided by the system.  New subsystem-specific rctls should _not_ be
25420Sstevel@tonic-gate  *   initialized here.  (Do it in your own file.)
25430Sstevel@tonic-gate  *
25440Sstevel@tonic-gate  * Return values
25450Sstevel@tonic-gate  *   None.
25460Sstevel@tonic-gate  *
25470Sstevel@tonic-gate  * Caller's context
25480Sstevel@tonic-gate  *   Safe for KM_SLEEP allocations.  Must be called prior to any process model
25490Sstevel@tonic-gate  *   initialization.
25500Sstevel@tonic-gate  */
25510Sstevel@tonic-gate void
25520Sstevel@tonic-gate rctl_init(void)
25530Sstevel@tonic-gate {
25540Sstevel@tonic-gate 	rctl_cache = kmem_cache_create("rctl_cache", sizeof (rctl_t),
25550Sstevel@tonic-gate 	    0, NULL, NULL, NULL, NULL, NULL, 0);
25560Sstevel@tonic-gate 	rctl_val_cache = kmem_cache_create("rctl_val_cache",
25570Sstevel@tonic-gate 	    sizeof (rctl_val_t), 0, NULL, NULL, NULL, NULL, NULL, 0);
25580Sstevel@tonic-gate 
25590Sstevel@tonic-gate 	rctl_dict = mod_hash_create_extended("rctl_dict",
25600Sstevel@tonic-gate 	    rctl_dict_size, mod_hash_null_keydtor, rctl_dict_val_dtor,
25610Sstevel@tonic-gate 	    rctl_dict_hash_by_id, NULL, rctl_dict_id_cmp, KM_SLEEP);
25620Sstevel@tonic-gate 	rctl_dict_by_name = mod_hash_create_strhash(
25630Sstevel@tonic-gate 	    "rctl_handles_by_name", rctl_dict_size,
25640Sstevel@tonic-gate 	    mod_hash_null_valdtor);
25650Sstevel@tonic-gate 	rctl_ids = id_space_create("rctl_ids", 1, max_rctl_hndl);
25660Sstevel@tonic-gate 	bzero(rctl_lists, (RC_MAX_ENTITY + 1) * sizeof (rctl_dict_entry_t *));
25670Sstevel@tonic-gate 
25680Sstevel@tonic-gate 	rctlproc_init();
25690Sstevel@tonic-gate }
25702768Ssl108498 
25712768Ssl108498 /*
25722768Ssl108498  * rctl_incr_locked_mem(proc_t *p, kproject_t *proj, rctl_qty_t inc)
25732768Ssl108498  *
25742768Ssl108498  * Increments the amount of locked memory on a project, and
25752768Ssl108498  * zone. If proj is NULL, the proj and zone of proc_t p is used.  If
25762768Ssl108498  * chargeproc is non-zero, then the charged amount is cached on p->p_locked_mem
25772768Ssl108498  * so that the charge can be migrated when a process changes projects.
25782768Ssl108498  *
25792768Ssl108498  * Return values
25802768Ssl108498  *    0 - success
25812768Ssl108498  *    EAGAIN - attempting to increment locked memory is denied by one
25822768Ssl108498  *      or more resource entities.
25832768Ssl108498  */
25842768Ssl108498 int
25852768Ssl108498 rctl_incr_locked_mem(proc_t *p, kproject_t *proj, rctl_qty_t inc,
25862768Ssl108498     int chargeproc)
25872768Ssl108498 {
25882768Ssl108498 	kproject_t *projp;
25892768Ssl108498 	zone_t *zonep;
25902768Ssl108498 	rctl_entity_p_t e;
25912768Ssl108498 	int ret = 0;
25922768Ssl108498 
25932768Ssl108498 	ASSERT(p != NULL);
25942768Ssl108498 	ASSERT(MUTEX_HELD(&p->p_lock));
25952768Ssl108498 	if (proj != NULL) {
25962768Ssl108498 		projp = proj;
25972768Ssl108498 		zonep = zone_find_by_id(projp->kpj_zoneid);
25982768Ssl108498 	} else {
25992768Ssl108498 		projp = p->p_task->tk_proj;
26002768Ssl108498 		zonep = p->p_zone;
26012768Ssl108498 	}
26022768Ssl108498 
2603*3247Sgjelinek 	mutex_enter(&zonep->zone_mem_lock);
26042768Ssl108498 
26052768Ssl108498 	e.rcep_p.proj = projp;
26062768Ssl108498 	e.rcep_t = RCENTITY_PROJECT;
26072768Ssl108498 	if (projp->kpj_data.kpd_locked_mem + inc >
26082768Ssl108498 	    projp->kpj_data.kpd_locked_mem_ctl) {
26092768Ssl108498 		if (rctl_test_entity(rc_project_locked_mem, projp->kpj_rctls,
26102768Ssl108498 		    p, &e, inc, 0) & RCT_DENY) {
26112768Ssl108498 			ret = EAGAIN;
26122768Ssl108498 			goto out;
26132768Ssl108498 		}
26142768Ssl108498 	}
26152768Ssl108498 	e.rcep_p.zone = zonep;
26162768Ssl108498 	e.rcep_t = RCENTITY_ZONE;
26172768Ssl108498 	if (zonep->zone_locked_mem + inc > zonep->zone_locked_mem_ctl) {
26182768Ssl108498 		if (rctl_test_entity(rc_zone_locked_mem, zonep->zone_rctls,
26192768Ssl108498 		    p, &e, inc, 0) & RCT_DENY) {
26202768Ssl108498 			ret = EAGAIN;
26212768Ssl108498 			goto out;
26222768Ssl108498 		}
26232768Ssl108498 	}
26242768Ssl108498 
26252768Ssl108498 	zonep->zone_locked_mem += inc;
26262768Ssl108498 	projp->kpj_data.kpd_locked_mem += inc;
26272768Ssl108498 	if (chargeproc != 0) {
26282768Ssl108498 		p->p_locked_mem += inc;
26292768Ssl108498 	}
26302768Ssl108498 out:
2631*3247Sgjelinek 	mutex_exit(&zonep->zone_mem_lock);
26322768Ssl108498 	if (proj != NULL)
26332768Ssl108498 		zone_rele(zonep);
26342768Ssl108498 	return (ret);
26352768Ssl108498 }
26362768Ssl108498 
26372768Ssl108498 /*
26382768Ssl108498  * rctl_decr_locked_mem(proc_t *p, kproject_t *proj, rctl_qty_t inc)
26392768Ssl108498  *
26402768Ssl108498  * Decrements the amount of locked memory on a project and
26412768Ssl108498  * zone.  If proj is NULL, the proj and zone of proc_t p is used.  If
26422768Ssl108498  * creditproc is non-zero, then the quantity of locked memory is subtracted
26432768Ssl108498  * from p->p_locked_mem.
26442768Ssl108498  *
26452768Ssl108498  * Return values
26462768Ssl108498  *   none
26472768Ssl108498  */
26482768Ssl108498 void
26492768Ssl108498 rctl_decr_locked_mem(proc_t *p, kproject_t *proj, rctl_qty_t inc,
26502768Ssl108498     int creditproc)
26512768Ssl108498 {
26522768Ssl108498 	kproject_t *projp;
26532768Ssl108498 	zone_t *zonep;
26542768Ssl108498 
26552768Ssl108498 	if (proj != NULL) {
26562768Ssl108498 		projp = proj;
26572768Ssl108498 		zonep = zone_find_by_id(projp->kpj_zoneid);
26582768Ssl108498 	} else {
26592768Ssl108498 		ASSERT(p != NULL);
26602768Ssl108498 		ASSERT(MUTEX_HELD(&p->p_lock));
26612768Ssl108498 		projp = p->p_task->tk_proj;
26622768Ssl108498 		zonep = p->p_zone;
26632768Ssl108498 	}
26642768Ssl108498 
2665*3247Sgjelinek 	mutex_enter(&zonep->zone_mem_lock);
26662768Ssl108498 	zonep->zone_locked_mem -= inc;
26672768Ssl108498 	projp->kpj_data.kpd_locked_mem -= inc;
26682768Ssl108498 	if (creditproc != 0) {
26692768Ssl108498 		ASSERT(p != NULL);
26702768Ssl108498 		ASSERT(MUTEX_HELD(&p->p_lock));
26712768Ssl108498 		p->p_locked_mem -= inc;
26722768Ssl108498 	}
2673*3247Sgjelinek 	mutex_exit(&zonep->zone_mem_lock);
26742768Ssl108498 	if (proj != NULL)
26752768Ssl108498 		zone_rele(zonep);
26762768Ssl108498 }
2677*3247Sgjelinek 
2678*3247Sgjelinek /*
2679*3247Sgjelinek  * rctl_incr_swap(proc_t *, zone_t *, size_t)
2680*3247Sgjelinek  *
2681*3247Sgjelinek  * Overview
2682*3247Sgjelinek  *   Increments the swap charge on the specified zone.
2683*3247Sgjelinek  *
2684*3247Sgjelinek  * Return values
2685*3247Sgjelinek  *   0 on success.  EAGAIN if swap increment fails due an rctl value
2686*3247Sgjelinek  *   on the zone.
2687*3247Sgjelinek  *
2688*3247Sgjelinek  * Callers context
2689*3247Sgjelinek  *   p_lock held on specified proc.
2690*3247Sgjelinek  *   swap must be even multiple of PAGESIZE
2691*3247Sgjelinek  */
2692*3247Sgjelinek int
2693*3247Sgjelinek rctl_incr_swap(proc_t *proc, zone_t *zone, size_t swap)
2694*3247Sgjelinek {
2695*3247Sgjelinek 	rctl_entity_p_t e;
2696*3247Sgjelinek 
2697*3247Sgjelinek 	ASSERT(MUTEX_HELD(&proc->p_lock));
2698*3247Sgjelinek 	ASSERT((swap & PAGEOFFSET) == 0);
2699*3247Sgjelinek 	e.rcep_p.zone = zone;
2700*3247Sgjelinek 	e.rcep_t = RCENTITY_ZONE;
2701*3247Sgjelinek 
2702*3247Sgjelinek 	mutex_enter(&zone->zone_mem_lock);
2703*3247Sgjelinek 
2704*3247Sgjelinek 	if ((zone->zone_max_swap + swap) >
2705*3247Sgjelinek 	    zone->zone_max_swap_ctl) {
2706*3247Sgjelinek 
2707*3247Sgjelinek 		if (rctl_test_entity(rc_zone_max_swap, zone->zone_rctls,
2708*3247Sgjelinek 		    proc, &e, swap, 0) & RCT_DENY) {
2709*3247Sgjelinek 			mutex_exit(&zone->zone_mem_lock);
2710*3247Sgjelinek 			return (EAGAIN);
2711*3247Sgjelinek 		}
2712*3247Sgjelinek 	}
2713*3247Sgjelinek 	zone->zone_max_swap += swap;
2714*3247Sgjelinek 	mutex_exit(&zone->zone_mem_lock);
2715*3247Sgjelinek 	return (0);
2716*3247Sgjelinek }
2717*3247Sgjelinek 
2718*3247Sgjelinek /*
2719*3247Sgjelinek  * rctl_decr_swap(zone_t *, size_t)
2720*3247Sgjelinek  *
2721*3247Sgjelinek  * Overview
2722*3247Sgjelinek  *   Decrements the swap charge on the specified zone.
2723*3247Sgjelinek  *
2724*3247Sgjelinek  * Return values
2725*3247Sgjelinek  *   None
2726*3247Sgjelinek  *
2727*3247Sgjelinek  * Callers context
2728*3247Sgjelinek  *   swap must be even multiple of PAGESIZE
2729*3247Sgjelinek  */
2730*3247Sgjelinek void
2731*3247Sgjelinek rctl_decr_swap(zone_t *zone, size_t swap)
2732*3247Sgjelinek {
2733*3247Sgjelinek 	ASSERT((swap & PAGEOFFSET) == 0);
2734*3247Sgjelinek 	mutex_enter(&zone->zone_mem_lock);
2735*3247Sgjelinek 	ASSERT(zone->zone_max_swap >= swap);
2736*3247Sgjelinek 	zone->zone_max_swap -= swap;
2737*3247Sgjelinek 	mutex_exit(&zone->zone_mem_lock);
2738*3247Sgjelinek }
2739*3247Sgjelinek 
2740*3247Sgjelinek /*
2741*3247Sgjelinek  * Create resource kstat
2742*3247Sgjelinek  */
2743*3247Sgjelinek static kstat_t *
2744*3247Sgjelinek rctl_kstat_create_common(char *ks_name, int ks_instance, char *ks_class,
2745*3247Sgjelinek     uchar_t ks_type, uint_t ks_ndata, uchar_t ks_flags, int ks_zoneid)
2746*3247Sgjelinek {
2747*3247Sgjelinek 	kstat_t *ksp = NULL;
2748*3247Sgjelinek 	char name[KSTAT_STRLEN];
2749*3247Sgjelinek 
2750*3247Sgjelinek 	(void) snprintf(name, KSTAT_STRLEN, "%s_%d", ks_name, ks_instance);
2751*3247Sgjelinek 
2752*3247Sgjelinek 	if ((ksp = kstat_create_zone("caps", ks_zoneid,
2753*3247Sgjelinek 		name, ks_class, ks_type,
2754*3247Sgjelinek 		ks_ndata, ks_flags, ks_zoneid)) != NULL) {
2755*3247Sgjelinek 		if (ks_zoneid != GLOBAL_ZONEID)
2756*3247Sgjelinek 			kstat_zone_add(ksp, GLOBAL_ZONEID);
2757*3247Sgjelinek 	}
2758*3247Sgjelinek 	return (ksp);
2759*3247Sgjelinek }
2760*3247Sgjelinek 
2761*3247Sgjelinek /*
2762*3247Sgjelinek  * Create zone-specific resource kstat
2763*3247Sgjelinek  */
2764*3247Sgjelinek kstat_t *
2765*3247Sgjelinek rctl_kstat_create_zone(zone_t *zone, char *ks_name, uchar_t ks_type,
2766*3247Sgjelinek     uint_t ks_ndata, uchar_t ks_flags)
2767*3247Sgjelinek {
2768*3247Sgjelinek 	char name[KSTAT_STRLEN];
2769*3247Sgjelinek 
2770*3247Sgjelinek 	(void) snprintf(name, KSTAT_STRLEN, "%s_zone", ks_name);
2771*3247Sgjelinek 
2772*3247Sgjelinek 	return (rctl_kstat_create_common(name, zone->zone_id, "zone_caps",
2773*3247Sgjelinek 	    ks_type, ks_ndata, ks_flags, zone->zone_id));
2774*3247Sgjelinek }
2775*3247Sgjelinek 
2776*3247Sgjelinek /*
2777*3247Sgjelinek  * Create project-specific resource kstat
2778*3247Sgjelinek  */
2779*3247Sgjelinek kstat_t *
2780*3247Sgjelinek rctl_kstat_create_project(kproject_t *kpj, char *ks_name, uchar_t ks_type,
2781*3247Sgjelinek     uint_t ks_ndata, uchar_t ks_flags)
2782*3247Sgjelinek {
2783*3247Sgjelinek 	char name[KSTAT_STRLEN];
2784*3247Sgjelinek 
2785*3247Sgjelinek 	(void) snprintf(name, KSTAT_STRLEN, "%s_project", ks_name);
2786*3247Sgjelinek 
2787*3247Sgjelinek 	return (rctl_kstat_create_common(name, kpj->kpj_id, "project_caps",
2788*3247Sgjelinek 	    ks_type, ks_ndata, ks_flags, kpj->kpj_zoneid));
2789*3247Sgjelinek }
2790