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 /* 22*7240Srh87107 * Copyright 2008 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> 323247Sgjelinek #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. 1533684Srd117015 * 1543684Srd117015 * The projects(4) database and project entity resource controls 1553684Srd117015 * A special case is made for RCENTITY_PROJECT values set through the 1563684Srd117015 * setproject(3PROJECT) interface. setproject() makes use of a private 1573684Srd117015 * interface, setprojrctl(), which passes through an array of resource control 1583684Srd117015 * blocks that need to be set while holding the entity->rcs_lock. This 1593684Srd117015 * ensures that the act of modifying a project's resource controls is 1603684Srd117015 * "atomic" within the kernel. 1613684Srd117015 * 1623684Srd117015 * Within the rctl sub-system, we provide two interfaces that are only used by 1633684Srd117015 * the setprojrctl() code path - rctl_local_insert_all() and 1643684Srd117015 * rctl_local_replace_all(). rctl_local_insert_all() will ensure that the 1653684Srd117015 * resource values specified in *new_values are applied. 1663684Srd117015 * rctl_local_replace_all() will purge the current rctl->rc_projdb and 1673684Srd117015 * rctl->rc_values entries, and apply the *new_values. 1683684Srd117015 * 1693684Srd117015 * These functions modify not only the linked list of active resource controls 1703684Srd117015 * (rctl->rc_values), but also a "cached" linked list (rctl->rc_projdb) of 1713684Srd117015 * values set through these interfaces. To clarify: 1723684Srd117015 * 1733684Srd117015 * rctl->rc_values - a linked list of rctl_val_t. These are the active 1743684Srd117015 * resource values associated with this rctl, and may have been set by 1753684Srd117015 * setrctl() - via prctl(1M), or by setprojrctl() - via 1763684Srd117015 * setproject(3PROJECT). 1773684Srd117015 * 1783684Srd117015 * rctl->rc_projdb - a linked list of rctl_val_t. These reflect the 1793684Srd117015 * resource values set by the setprojrctl() code path. rc_projdb is not 1803684Srd117015 * referenced by any other component of the rctl sub-system. 1813684Srd117015 * 1823684Srd117015 * As various locks are held when calling these functions, we ensure that all 1833684Srd117015 * the possible memory allocations are performed prior to calling the 1843684Srd117015 * function. *alloc_values is a linked list of uninitialized rctl_val_t, 1853684Srd117015 * which may be used to duplicate a new resource control value (passed in as 1863684Srd117015 * one of the members of the *new_values linked list), in order to populate 1873684Srd117015 * rctl->rc_values. 1880Sstevel@tonic-gate */ 1890Sstevel@tonic-gate 1900Sstevel@tonic-gate id_t max_rctl_hndl = 32768; 1910Sstevel@tonic-gate int rctl_dict_size = 64; 1920Sstevel@tonic-gate int rctl_set_size = 8; 1930Sstevel@tonic-gate kmutex_t rctl_dict_lock; 1940Sstevel@tonic-gate mod_hash_t *rctl_dict; 1950Sstevel@tonic-gate mod_hash_t *rctl_dict_by_name; 1960Sstevel@tonic-gate id_space_t *rctl_ids; 1970Sstevel@tonic-gate kmem_cache_t *rctl_cache; /* kmem cache for rctl structures */ 1980Sstevel@tonic-gate kmem_cache_t *rctl_val_cache; /* kmem cache for rctl values */ 1990Sstevel@tonic-gate 2000Sstevel@tonic-gate kmutex_t rctl_lists_lock; 2010Sstevel@tonic-gate rctl_dict_entry_t *rctl_lists[RC_MAX_ENTITY + 1]; 2020Sstevel@tonic-gate 2030Sstevel@tonic-gate /* 2040Sstevel@tonic-gate * Default resource control operations and ops vector 2050Sstevel@tonic-gate * To be used if the particular rcontrol has no specific actions defined, or 2060Sstevel@tonic-gate * if the subsystem providing the control is quiescing (in preparation for 2070Sstevel@tonic-gate * unloading, presumably.) 2080Sstevel@tonic-gate * 2090Sstevel@tonic-gate * Resource controls with callbacks should fill the unused operations with the 2100Sstevel@tonic-gate * appropriate default impotent callback. 2110Sstevel@tonic-gate */ 2120Sstevel@tonic-gate /*ARGSUSED*/ 2130Sstevel@tonic-gate void 2140Sstevel@tonic-gate rcop_no_action(struct rctl *r, struct proc *p, rctl_entity_p_t *e) 2150Sstevel@tonic-gate { 2160Sstevel@tonic-gate } 2170Sstevel@tonic-gate 2180Sstevel@tonic-gate /*ARGSUSED*/ 2190Sstevel@tonic-gate rctl_qty_t 2200Sstevel@tonic-gate rcop_no_usage(struct rctl *r, struct proc *p) 2210Sstevel@tonic-gate { 2220Sstevel@tonic-gate return (0); 2230Sstevel@tonic-gate } 2240Sstevel@tonic-gate 2250Sstevel@tonic-gate /*ARGSUSED*/ 2260Sstevel@tonic-gate int 2270Sstevel@tonic-gate rcop_no_set(struct rctl *r, struct proc *p, rctl_entity_p_t *e, rctl_qty_t l) 2280Sstevel@tonic-gate { 2290Sstevel@tonic-gate return (0); 2300Sstevel@tonic-gate } 2310Sstevel@tonic-gate 2320Sstevel@tonic-gate /*ARGSUSED*/ 2330Sstevel@tonic-gate int 2340Sstevel@tonic-gate rcop_no_test(struct rctl *r, struct proc *p, rctl_entity_p_t *e, 2350Sstevel@tonic-gate struct rctl_val *rv, rctl_qty_t i, uint_t f) 2360Sstevel@tonic-gate { 2370Sstevel@tonic-gate return (0); 2380Sstevel@tonic-gate } 2390Sstevel@tonic-gate 2400Sstevel@tonic-gate rctl_ops_t rctl_default_ops = { 2410Sstevel@tonic-gate rcop_no_action, 2420Sstevel@tonic-gate rcop_no_usage, 2430Sstevel@tonic-gate rcop_no_set, 2440Sstevel@tonic-gate rcop_no_test 2450Sstevel@tonic-gate }; 2460Sstevel@tonic-gate 2470Sstevel@tonic-gate /* 2480Sstevel@tonic-gate * Default "absolute" resource control operation and ops vector 2490Sstevel@tonic-gate * Useful if there is no usage associated with the 2500Sstevel@tonic-gate * resource control. 2510Sstevel@tonic-gate */ 2520Sstevel@tonic-gate /*ARGSUSED*/ 2530Sstevel@tonic-gate int 2540Sstevel@tonic-gate rcop_absolute_test(struct rctl *r, struct proc *p, rctl_entity_p_t *e, 2550Sstevel@tonic-gate struct rctl_val *rv, rctl_qty_t i, uint_t f) 2560Sstevel@tonic-gate { 2570Sstevel@tonic-gate return (i > rv->rcv_value); 2580Sstevel@tonic-gate } 2590Sstevel@tonic-gate 2600Sstevel@tonic-gate rctl_ops_t rctl_absolute_ops = { 2610Sstevel@tonic-gate rcop_no_action, 2620Sstevel@tonic-gate rcop_no_usage, 2630Sstevel@tonic-gate rcop_no_set, 2640Sstevel@tonic-gate rcop_absolute_test 2650Sstevel@tonic-gate }; 2660Sstevel@tonic-gate 2670Sstevel@tonic-gate /*ARGSUSED*/ 2680Sstevel@tonic-gate static uint_t 2690Sstevel@tonic-gate rctl_dict_hash_by_id(void *hash_data, mod_hash_key_t key) 2700Sstevel@tonic-gate { 2710Sstevel@tonic-gate return ((uint_t)(uintptr_t)key % rctl_dict_size); 2720Sstevel@tonic-gate } 2730Sstevel@tonic-gate 2740Sstevel@tonic-gate static int 2750Sstevel@tonic-gate rctl_dict_id_cmp(mod_hash_key_t key1, mod_hash_key_t key2) 2760Sstevel@tonic-gate { 2770Sstevel@tonic-gate uint_t u1 = (uint_t)(uintptr_t)key1; 2780Sstevel@tonic-gate uint_t u2 = (uint_t)(uintptr_t)key2; 2790Sstevel@tonic-gate 2800Sstevel@tonic-gate if (u1 > u2) 2810Sstevel@tonic-gate return (1); 2820Sstevel@tonic-gate 2830Sstevel@tonic-gate if (u1 == u2) 2840Sstevel@tonic-gate return (0); 2850Sstevel@tonic-gate 2860Sstevel@tonic-gate return (-1); 2870Sstevel@tonic-gate } 2880Sstevel@tonic-gate 2890Sstevel@tonic-gate static void 2900Sstevel@tonic-gate rctl_dict_val_dtor(mod_hash_val_t val) 2910Sstevel@tonic-gate { 2920Sstevel@tonic-gate rctl_dict_entry_t *kr = (rctl_dict_entry_t *)val; 2930Sstevel@tonic-gate 2940Sstevel@tonic-gate kmem_free(kr, sizeof (rctl_dict_entry_t)); 2950Sstevel@tonic-gate } 2960Sstevel@tonic-gate 2970Sstevel@tonic-gate /* 2980Sstevel@tonic-gate * size_t rctl_build_name_buf() 2990Sstevel@tonic-gate * 3000Sstevel@tonic-gate * Overview 3010Sstevel@tonic-gate * rctl_build_name_buf() walks all active resource controls in the dictionary, 3020Sstevel@tonic-gate * building a buffer of continguous NUL-terminated strings. 3030Sstevel@tonic-gate * 3040Sstevel@tonic-gate * Return values 3050Sstevel@tonic-gate * The size of the buffer is returned, the passed pointer's contents are 3060Sstevel@tonic-gate * modified to that of the location of the buffer. 3070Sstevel@tonic-gate * 3080Sstevel@tonic-gate * Caller's context 3090Sstevel@tonic-gate * Caller must be in a context suitable for KM_SLEEP allocations. 3100Sstevel@tonic-gate */ 3110Sstevel@tonic-gate size_t 3120Sstevel@tonic-gate rctl_build_name_buf(char **rbufp) 3130Sstevel@tonic-gate { 3140Sstevel@tonic-gate size_t req_size, cpy_size; 3150Sstevel@tonic-gate char *rbufloc; 3160Sstevel@tonic-gate int i; 3170Sstevel@tonic-gate 3180Sstevel@tonic-gate rctl_rebuild_name_buf: 3190Sstevel@tonic-gate req_size = cpy_size = 0; 3200Sstevel@tonic-gate 3210Sstevel@tonic-gate /* 3220Sstevel@tonic-gate * Calculate needed buffer length. 3230Sstevel@tonic-gate */ 3240Sstevel@tonic-gate mutex_enter(&rctl_lists_lock); 3250Sstevel@tonic-gate for (i = 0; i < RC_MAX_ENTITY + 1; i++) { 3260Sstevel@tonic-gate rctl_dict_entry_t *rde; 3270Sstevel@tonic-gate 3280Sstevel@tonic-gate for (rde = rctl_lists[i]; 3290Sstevel@tonic-gate rde != NULL; 3300Sstevel@tonic-gate rde = rde->rcd_next) 3310Sstevel@tonic-gate req_size += strlen(rde->rcd_name) + 1; 3320Sstevel@tonic-gate } 3330Sstevel@tonic-gate mutex_exit(&rctl_lists_lock); 3340Sstevel@tonic-gate 3350Sstevel@tonic-gate rbufloc = *rbufp = kmem_alloc(req_size, KM_SLEEP); 3360Sstevel@tonic-gate 3370Sstevel@tonic-gate /* 3380Sstevel@tonic-gate * Copy rctl names into our buffer. If the copy length exceeds the 3390Sstevel@tonic-gate * allocate length (due to registration changes), stop copying, free the 3400Sstevel@tonic-gate * buffer, and start again. 3410Sstevel@tonic-gate */ 3420Sstevel@tonic-gate mutex_enter(&rctl_lists_lock); 3430Sstevel@tonic-gate for (i = 0; i < RC_MAX_ENTITY + 1; i++) { 3440Sstevel@tonic-gate rctl_dict_entry_t *rde; 3450Sstevel@tonic-gate 3460Sstevel@tonic-gate for (rde = rctl_lists[i]; 3470Sstevel@tonic-gate rde != NULL; 3480Sstevel@tonic-gate rde = rde->rcd_next) { 3490Sstevel@tonic-gate size_t length = strlen(rde->rcd_name) + 1; 3500Sstevel@tonic-gate 3510Sstevel@tonic-gate cpy_size += length; 3520Sstevel@tonic-gate 3530Sstevel@tonic-gate if (cpy_size > req_size) { 3540Sstevel@tonic-gate kmem_free(*rbufp, req_size); 3550Sstevel@tonic-gate mutex_exit(&rctl_lists_lock); 3560Sstevel@tonic-gate goto rctl_rebuild_name_buf; 3570Sstevel@tonic-gate } 3580Sstevel@tonic-gate 3590Sstevel@tonic-gate bcopy(rde->rcd_name, rbufloc, length); 3600Sstevel@tonic-gate rbufloc += length; 3610Sstevel@tonic-gate } 3620Sstevel@tonic-gate } 3630Sstevel@tonic-gate mutex_exit(&rctl_lists_lock); 3640Sstevel@tonic-gate 3650Sstevel@tonic-gate return (req_size); 3660Sstevel@tonic-gate } 3670Sstevel@tonic-gate 3680Sstevel@tonic-gate /* 3690Sstevel@tonic-gate * rctl_dict_entry_t *rctl_dict_lookup(const char *) 3700Sstevel@tonic-gate * 3710Sstevel@tonic-gate * Overview 3720Sstevel@tonic-gate * rctl_dict_lookup() returns the resource control dictionary entry for the 3730Sstevel@tonic-gate * named resource control. 3740Sstevel@tonic-gate * 3750Sstevel@tonic-gate * Return values 3760Sstevel@tonic-gate * A pointer to the appropriate resource control dictionary entry, or NULL if 3770Sstevel@tonic-gate * no such named entry exists. 3780Sstevel@tonic-gate * 3790Sstevel@tonic-gate * Caller's context 3800Sstevel@tonic-gate * Caller must not be holding rctl_dict_lock. 3810Sstevel@tonic-gate */ 3820Sstevel@tonic-gate rctl_dict_entry_t * 3830Sstevel@tonic-gate rctl_dict_lookup(const char *name) 3840Sstevel@tonic-gate { 3850Sstevel@tonic-gate rctl_dict_entry_t *rde; 3860Sstevel@tonic-gate 3870Sstevel@tonic-gate mutex_enter(&rctl_dict_lock); 3880Sstevel@tonic-gate 3890Sstevel@tonic-gate if (mod_hash_find(rctl_dict_by_name, (mod_hash_key_t)name, 3900Sstevel@tonic-gate (mod_hash_val_t *)&rde) == MH_ERR_NOTFOUND) { 3910Sstevel@tonic-gate mutex_exit(&rctl_dict_lock); 3920Sstevel@tonic-gate return (NULL); 3930Sstevel@tonic-gate } 3940Sstevel@tonic-gate 3950Sstevel@tonic-gate mutex_exit(&rctl_dict_lock); 3960Sstevel@tonic-gate 3970Sstevel@tonic-gate return (rde); 3980Sstevel@tonic-gate } 3990Sstevel@tonic-gate 4000Sstevel@tonic-gate /* 4010Sstevel@tonic-gate * rctl_hndl_t rctl_hndl_lookup(const char *) 4020Sstevel@tonic-gate * 4030Sstevel@tonic-gate * Overview 4040Sstevel@tonic-gate * rctl_hndl_lookup() returns the resource control id (the "handle") for the 4050Sstevel@tonic-gate * named resource control. 4060Sstevel@tonic-gate * 4070Sstevel@tonic-gate * Return values 4080Sstevel@tonic-gate * The appropriate id, or -1 if no such named entry exists. 4090Sstevel@tonic-gate * 4100Sstevel@tonic-gate * Caller's context 4110Sstevel@tonic-gate * Caller must not be holding rctl_dict_lock. 4120Sstevel@tonic-gate */ 4130Sstevel@tonic-gate rctl_hndl_t 4140Sstevel@tonic-gate rctl_hndl_lookup(const char *name) 4150Sstevel@tonic-gate { 4160Sstevel@tonic-gate rctl_dict_entry_t *rde; 4170Sstevel@tonic-gate 4180Sstevel@tonic-gate if ((rde = rctl_dict_lookup(name)) == NULL) 4190Sstevel@tonic-gate return (-1); 4200Sstevel@tonic-gate 4210Sstevel@tonic-gate return (rde->rcd_id); 4220Sstevel@tonic-gate } 4230Sstevel@tonic-gate 4240Sstevel@tonic-gate /* 4250Sstevel@tonic-gate * rctl_dict_entry_t * rctl_dict_lookup_hndl(rctl_hndl_t) 4260Sstevel@tonic-gate * 4270Sstevel@tonic-gate * Overview 4280Sstevel@tonic-gate * rctl_dict_lookup_hndl() completes the public lookup functions, by returning 4290Sstevel@tonic-gate * the resource control dictionary entry matching a given resource control id. 4300Sstevel@tonic-gate * 4310Sstevel@tonic-gate * Return values 4320Sstevel@tonic-gate * A pointer to the matching resource control dictionary entry, or NULL if the 4330Sstevel@tonic-gate * id does not match any existing entries. 4340Sstevel@tonic-gate * 4350Sstevel@tonic-gate * Caller's context 4360Sstevel@tonic-gate * Caller must not be holding rctl_lists_lock. 4370Sstevel@tonic-gate */ 4380Sstevel@tonic-gate rctl_dict_entry_t * 4390Sstevel@tonic-gate rctl_dict_lookup_hndl(rctl_hndl_t hndl) 4400Sstevel@tonic-gate { 4410Sstevel@tonic-gate uint_t i; 4420Sstevel@tonic-gate 4430Sstevel@tonic-gate mutex_enter(&rctl_lists_lock); 4440Sstevel@tonic-gate for (i = 0; i < RC_MAX_ENTITY + 1; i++) { 4450Sstevel@tonic-gate rctl_dict_entry_t *rde; 4460Sstevel@tonic-gate 4470Sstevel@tonic-gate for (rde = rctl_lists[i]; 4480Sstevel@tonic-gate rde != NULL; 4490Sstevel@tonic-gate rde = rde->rcd_next) 4500Sstevel@tonic-gate if (rde->rcd_id == hndl) { 4510Sstevel@tonic-gate mutex_exit(&rctl_lists_lock); 4520Sstevel@tonic-gate return (rde); 4530Sstevel@tonic-gate } 4540Sstevel@tonic-gate } 4550Sstevel@tonic-gate mutex_exit(&rctl_lists_lock); 4560Sstevel@tonic-gate 4570Sstevel@tonic-gate return (NULL); 4580Sstevel@tonic-gate } 4590Sstevel@tonic-gate 4600Sstevel@tonic-gate /* 4610Sstevel@tonic-gate * void rctl_add_default_limit(const char *name, rctl_qty_t value, 4620Sstevel@tonic-gate * rctl_priv_t privilege, uint_t action) 4630Sstevel@tonic-gate * 4640Sstevel@tonic-gate * Overview 4650Sstevel@tonic-gate * Create a default limit with specified value, privilege, and action. 4660Sstevel@tonic-gate * 4670Sstevel@tonic-gate * Return value 4680Sstevel@tonic-gate * No value returned. 4690Sstevel@tonic-gate */ 4700Sstevel@tonic-gate void 4710Sstevel@tonic-gate rctl_add_default_limit(const char *name, rctl_qty_t value, 4720Sstevel@tonic-gate rctl_priv_t privilege, uint_t action) 4730Sstevel@tonic-gate { 4740Sstevel@tonic-gate rctl_val_t *dval; 4750Sstevel@tonic-gate rctl_dict_entry_t *rde; 4760Sstevel@tonic-gate 4770Sstevel@tonic-gate dval = kmem_cache_alloc(rctl_val_cache, KM_SLEEP); 4780Sstevel@tonic-gate bzero(dval, sizeof (rctl_val_t)); 4790Sstevel@tonic-gate dval->rcv_value = value; 4800Sstevel@tonic-gate dval->rcv_privilege = privilege; 4810Sstevel@tonic-gate dval->rcv_flagaction = action; 4820Sstevel@tonic-gate dval->rcv_action_recip_pid = -1; 4830Sstevel@tonic-gate 4840Sstevel@tonic-gate rde = rctl_dict_lookup(name); 4850Sstevel@tonic-gate (void) rctl_val_list_insert(&rde->rcd_default_value, dval); 4860Sstevel@tonic-gate } 4870Sstevel@tonic-gate 4880Sstevel@tonic-gate /* 4890Sstevel@tonic-gate * void rctl_add_legacy_limit(const char *name, const char *mname, 4900Sstevel@tonic-gate * const char *lname, rctl_qty_t dflt) 4910Sstevel@tonic-gate * 4920Sstevel@tonic-gate * Overview 4930Sstevel@tonic-gate * Create a default privileged limit, using the value obtained from 4940Sstevel@tonic-gate * /etc/system if it exists and is greater than the specified default 4950Sstevel@tonic-gate * value. Exists primarily for System V IPC. 4960Sstevel@tonic-gate * 4970Sstevel@tonic-gate * Return value 4980Sstevel@tonic-gate * No value returned. 4990Sstevel@tonic-gate */ 5000Sstevel@tonic-gate void 5010Sstevel@tonic-gate rctl_add_legacy_limit(const char *name, const char *mname, const char *lname, 5020Sstevel@tonic-gate rctl_qty_t dflt, rctl_qty_t max) 5030Sstevel@tonic-gate { 5040Sstevel@tonic-gate rctl_qty_t qty; 5050Sstevel@tonic-gate 5060Sstevel@tonic-gate if (!mod_sysvar(mname, lname, &qty) || (qty < dflt)) 5070Sstevel@tonic-gate qty = dflt; 5080Sstevel@tonic-gate 5090Sstevel@tonic-gate if (qty > max) 5100Sstevel@tonic-gate qty = max; 5110Sstevel@tonic-gate 5120Sstevel@tonic-gate rctl_add_default_limit(name, qty, RCPRIV_PRIVILEGED, RCTL_LOCAL_DENY); 5130Sstevel@tonic-gate } 5140Sstevel@tonic-gate 5150Sstevel@tonic-gate static rctl_set_t * 5160Sstevel@tonic-gate rctl_entity_obtain_rset(rctl_dict_entry_t *rcd, struct proc *p) 5170Sstevel@tonic-gate { 5180Sstevel@tonic-gate rctl_set_t *rset = NULL; 5190Sstevel@tonic-gate 5200Sstevel@tonic-gate if (rcd == NULL) 5210Sstevel@tonic-gate return (NULL); 5220Sstevel@tonic-gate 5230Sstevel@tonic-gate switch (rcd->rcd_entity) { 5240Sstevel@tonic-gate case RCENTITY_PROCESS: 5250Sstevel@tonic-gate rset = p->p_rctls; 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 rset = p->p_task->tk_rctls; 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 rset = p->p_task->tk_proj->kpj_rctls; 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 rset = p->p_zone->zone_rctls; 5420Sstevel@tonic-gate break; 5430Sstevel@tonic-gate default: 5440Sstevel@tonic-gate panic("unknown rctl entity type %d seen", rcd->rcd_entity); 5450Sstevel@tonic-gate break; 5460Sstevel@tonic-gate } 5470Sstevel@tonic-gate 5480Sstevel@tonic-gate return (rset); 5490Sstevel@tonic-gate } 5500Sstevel@tonic-gate 5510Sstevel@tonic-gate static void 5520Sstevel@tonic-gate rctl_entity_obtain_entity_p(rctl_entity_t entity, struct proc *p, 5530Sstevel@tonic-gate rctl_entity_p_t *e) 5540Sstevel@tonic-gate { 5550Sstevel@tonic-gate e->rcep_p.proc = NULL; 5560Sstevel@tonic-gate e->rcep_t = entity; 5570Sstevel@tonic-gate 5580Sstevel@tonic-gate switch (entity) { 5590Sstevel@tonic-gate case RCENTITY_PROCESS: 5600Sstevel@tonic-gate e->rcep_p.proc = p; 5610Sstevel@tonic-gate break; 5620Sstevel@tonic-gate case RCENTITY_TASK: 5630Sstevel@tonic-gate ASSERT(MUTEX_HELD(&p->p_lock)); 5640Sstevel@tonic-gate if (p->p_task != NULL) 5650Sstevel@tonic-gate e->rcep_p.task = p->p_task; 5660Sstevel@tonic-gate break; 5670Sstevel@tonic-gate case RCENTITY_PROJECT: 5680Sstevel@tonic-gate ASSERT(MUTEX_HELD(&p->p_lock)); 5690Sstevel@tonic-gate if (p->p_task != NULL && 5700Sstevel@tonic-gate p->p_task->tk_proj != NULL) 5710Sstevel@tonic-gate e->rcep_p.proj = p->p_task->tk_proj; 5720Sstevel@tonic-gate break; 5730Sstevel@tonic-gate case RCENTITY_ZONE: 5740Sstevel@tonic-gate ASSERT(MUTEX_HELD(&p->p_lock)); 5750Sstevel@tonic-gate if (p->p_zone != NULL) 5760Sstevel@tonic-gate e->rcep_p.zone = p->p_zone; 5770Sstevel@tonic-gate break; 5780Sstevel@tonic-gate default: 5790Sstevel@tonic-gate panic("unknown rctl entity type %d seen", entity); 5800Sstevel@tonic-gate break; 5810Sstevel@tonic-gate } 5820Sstevel@tonic-gate } 5830Sstevel@tonic-gate 5840Sstevel@tonic-gate static void 5850Sstevel@tonic-gate rctl_gp_alloc(rctl_alloc_gp_t *rcgp) 5860Sstevel@tonic-gate { 5870Sstevel@tonic-gate uint_t i; 5880Sstevel@tonic-gate 5890Sstevel@tonic-gate if (rcgp->rcag_nctls > 0) { 5900Sstevel@tonic-gate rctl_t *prev = kmem_cache_alloc(rctl_cache, KM_SLEEP); 5910Sstevel@tonic-gate rctl_t *rctl = prev; 5920Sstevel@tonic-gate 5930Sstevel@tonic-gate rcgp->rcag_ctls = prev; 5940Sstevel@tonic-gate 5950Sstevel@tonic-gate for (i = 1; i < rcgp->rcag_nctls; i++) { 5960Sstevel@tonic-gate rctl = kmem_cache_alloc(rctl_cache, KM_SLEEP); 5970Sstevel@tonic-gate prev->rc_next = rctl; 5980Sstevel@tonic-gate prev = rctl; 5990Sstevel@tonic-gate } 6000Sstevel@tonic-gate 6010Sstevel@tonic-gate rctl->rc_next = NULL; 6020Sstevel@tonic-gate } 6030Sstevel@tonic-gate 6040Sstevel@tonic-gate if (rcgp->rcag_nvals > 0) { 6050Sstevel@tonic-gate rctl_val_t *prev = kmem_cache_alloc(rctl_val_cache, KM_SLEEP); 6060Sstevel@tonic-gate rctl_val_t *rval = prev; 6070Sstevel@tonic-gate 6080Sstevel@tonic-gate rcgp->rcag_vals = prev; 6090Sstevel@tonic-gate 6100Sstevel@tonic-gate for (i = 1; i < rcgp->rcag_nvals; i++) { 6110Sstevel@tonic-gate rval = kmem_cache_alloc(rctl_val_cache, KM_SLEEP); 6120Sstevel@tonic-gate prev->rcv_next = rval; 6130Sstevel@tonic-gate prev = rval; 6140Sstevel@tonic-gate } 6150Sstevel@tonic-gate 6160Sstevel@tonic-gate rval->rcv_next = NULL; 6170Sstevel@tonic-gate } 6180Sstevel@tonic-gate 6190Sstevel@tonic-gate } 6200Sstevel@tonic-gate 6210Sstevel@tonic-gate static rctl_val_t * 6220Sstevel@tonic-gate rctl_gp_detach_val(rctl_alloc_gp_t *rcgp) 6230Sstevel@tonic-gate { 6240Sstevel@tonic-gate rctl_val_t *rval = rcgp->rcag_vals; 6250Sstevel@tonic-gate 6260Sstevel@tonic-gate ASSERT(rcgp->rcag_nvals > 0); 6270Sstevel@tonic-gate rcgp->rcag_nvals--; 6280Sstevel@tonic-gate rcgp->rcag_vals = rval->rcv_next; 6290Sstevel@tonic-gate 6300Sstevel@tonic-gate rval->rcv_next = NULL; 6310Sstevel@tonic-gate 6320Sstevel@tonic-gate return (rval); 6330Sstevel@tonic-gate } 6340Sstevel@tonic-gate 6350Sstevel@tonic-gate static rctl_t * 6360Sstevel@tonic-gate rctl_gp_detach_ctl(rctl_alloc_gp_t *rcgp) 6370Sstevel@tonic-gate { 6380Sstevel@tonic-gate rctl_t *rctl = rcgp->rcag_ctls; 6390Sstevel@tonic-gate 6400Sstevel@tonic-gate ASSERT(rcgp->rcag_nctls > 0); 6410Sstevel@tonic-gate rcgp->rcag_nctls--; 6420Sstevel@tonic-gate rcgp->rcag_ctls = rctl->rc_next; 6430Sstevel@tonic-gate 6440Sstevel@tonic-gate rctl->rc_next = NULL; 6450Sstevel@tonic-gate 6460Sstevel@tonic-gate return (rctl); 6470Sstevel@tonic-gate 6480Sstevel@tonic-gate } 6490Sstevel@tonic-gate 6500Sstevel@tonic-gate static void 6510Sstevel@tonic-gate rctl_gp_free(rctl_alloc_gp_t *rcgp) 6520Sstevel@tonic-gate { 6530Sstevel@tonic-gate rctl_val_t *rval = rcgp->rcag_vals; 6540Sstevel@tonic-gate rctl_t *rctl = rcgp->rcag_ctls; 6550Sstevel@tonic-gate 6560Sstevel@tonic-gate while (rval != NULL) { 6570Sstevel@tonic-gate rctl_val_t *next = rval->rcv_next; 6580Sstevel@tonic-gate 6590Sstevel@tonic-gate kmem_cache_free(rctl_val_cache, rval); 6600Sstevel@tonic-gate rval = next; 6610Sstevel@tonic-gate } 6620Sstevel@tonic-gate 6630Sstevel@tonic-gate while (rctl != NULL) { 6640Sstevel@tonic-gate rctl_t *next = rctl->rc_next; 6650Sstevel@tonic-gate 6660Sstevel@tonic-gate kmem_cache_free(rctl_cache, rctl); 6670Sstevel@tonic-gate rctl = next; 6680Sstevel@tonic-gate } 6690Sstevel@tonic-gate } 6700Sstevel@tonic-gate 6710Sstevel@tonic-gate /* 6720Sstevel@tonic-gate * void rctl_prealloc_destroy(rctl_alloc_gp_t *) 6730Sstevel@tonic-gate * 6740Sstevel@tonic-gate * Overview 6750Sstevel@tonic-gate * Release all unused memory allocated via one of the "prealloc" functions: 6760Sstevel@tonic-gate * rctl_set_init_prealloc, rctl_set_dup_prealloc, or rctl_rlimit_set_prealloc. 6770Sstevel@tonic-gate * 6780Sstevel@tonic-gate * Return values 6790Sstevel@tonic-gate * None. 6800Sstevel@tonic-gate * 6810Sstevel@tonic-gate * Caller's context 6820Sstevel@tonic-gate * No restrictions on context. 6830Sstevel@tonic-gate */ 6840Sstevel@tonic-gate void 6850Sstevel@tonic-gate rctl_prealloc_destroy(rctl_alloc_gp_t *gp) 6860Sstevel@tonic-gate { 6870Sstevel@tonic-gate rctl_gp_free(gp); 6880Sstevel@tonic-gate kmem_free(gp, sizeof (rctl_alloc_gp_t)); 6890Sstevel@tonic-gate } 6900Sstevel@tonic-gate 6910Sstevel@tonic-gate /* 6920Sstevel@tonic-gate * int rctl_val_cmp(rctl_val_t *, rctl_val_t *, int) 6930Sstevel@tonic-gate * 6940Sstevel@tonic-gate * Overview 6950Sstevel@tonic-gate * This function defines an ordering to rctl_val_t's in order to allow 6960Sstevel@tonic-gate * for correct placement in value lists. When the imprecise flag is set, 6970Sstevel@tonic-gate * the action recipient is ignored. This is to facilitate insert, 6980Sstevel@tonic-gate * delete, and replace operations by rctlsys. 6990Sstevel@tonic-gate * 7000Sstevel@tonic-gate * Return values 7010Sstevel@tonic-gate * 0 if the val_t's are are considered identical 7020Sstevel@tonic-gate * -1 if a is ordered lower than b 7030Sstevel@tonic-gate * 1 if a is lowered higher than b 7040Sstevel@tonic-gate * 7050Sstevel@tonic-gate * Caller's context 7060Sstevel@tonic-gate * No restrictions on context. 7070Sstevel@tonic-gate */ 7080Sstevel@tonic-gate int 7090Sstevel@tonic-gate rctl_val_cmp(rctl_val_t *a, rctl_val_t *b, int imprecise) 7100Sstevel@tonic-gate { 7110Sstevel@tonic-gate if ((a->rcv_flagaction & RCTL_LOCAL_MAXIMAL) < 7120Sstevel@tonic-gate (b->rcv_flagaction & RCTL_LOCAL_MAXIMAL)) 7130Sstevel@tonic-gate return (-1); 7140Sstevel@tonic-gate 7150Sstevel@tonic-gate if ((a->rcv_flagaction & RCTL_LOCAL_MAXIMAL) > 7160Sstevel@tonic-gate (b->rcv_flagaction & RCTL_LOCAL_MAXIMAL)) 7170Sstevel@tonic-gate return (1); 7180Sstevel@tonic-gate 7190Sstevel@tonic-gate if (a->rcv_value < b->rcv_value) 7200Sstevel@tonic-gate return (-1); 7210Sstevel@tonic-gate 7220Sstevel@tonic-gate if (a->rcv_value > b->rcv_value) 7230Sstevel@tonic-gate return (1); 7240Sstevel@tonic-gate 7250Sstevel@tonic-gate if ((a->rcv_flagaction & RCTL_LOCAL_DENY) < 7260Sstevel@tonic-gate (b->rcv_flagaction & RCTL_LOCAL_DENY)) 7270Sstevel@tonic-gate return (-1); 7280Sstevel@tonic-gate 7290Sstevel@tonic-gate if ((a->rcv_flagaction & RCTL_LOCAL_DENY) > 7300Sstevel@tonic-gate (b->rcv_flagaction & RCTL_LOCAL_DENY)) 7310Sstevel@tonic-gate return (1); 7320Sstevel@tonic-gate 7330Sstevel@tonic-gate if (a->rcv_privilege < b->rcv_privilege) 7340Sstevel@tonic-gate return (-1); 7350Sstevel@tonic-gate 7360Sstevel@tonic-gate if (a->rcv_privilege > b->rcv_privilege) 7370Sstevel@tonic-gate return (1); 7380Sstevel@tonic-gate 7390Sstevel@tonic-gate if (imprecise) 7400Sstevel@tonic-gate return (0); 7410Sstevel@tonic-gate 7420Sstevel@tonic-gate if (a->rcv_action_recip_pid < b->rcv_action_recip_pid) 7430Sstevel@tonic-gate return (-1); 7440Sstevel@tonic-gate 7450Sstevel@tonic-gate if (a->rcv_action_recip_pid > b->rcv_action_recip_pid) 7460Sstevel@tonic-gate return (1); 7470Sstevel@tonic-gate 7480Sstevel@tonic-gate return (0); 7490Sstevel@tonic-gate } 7500Sstevel@tonic-gate 7510Sstevel@tonic-gate static rctl_val_t * 7520Sstevel@tonic-gate rctl_val_list_find(rctl_val_t **head, rctl_val_t *cval) 7530Sstevel@tonic-gate { 7540Sstevel@tonic-gate rctl_val_t *rval = *head; 7550Sstevel@tonic-gate 7560Sstevel@tonic-gate while (rval != NULL) { 7570Sstevel@tonic-gate if (rctl_val_cmp(cval, rval, 0) == 0) 7580Sstevel@tonic-gate return (rval); 7590Sstevel@tonic-gate 7600Sstevel@tonic-gate rval = rval->rcv_next; 7610Sstevel@tonic-gate } 7620Sstevel@tonic-gate 7630Sstevel@tonic-gate return (NULL); 7640Sstevel@tonic-gate 7650Sstevel@tonic-gate } 7660Sstevel@tonic-gate 7670Sstevel@tonic-gate /* 7680Sstevel@tonic-gate * int rctl_val_list_insert(rctl_val_t **, rctl_val_t *) 7690Sstevel@tonic-gate * 7700Sstevel@tonic-gate * Overview 7710Sstevel@tonic-gate * This function inserts the rctl_val_t into the value list provided. 7720Sstevel@tonic-gate * The insert is always successful unless if the value is a duplicate 7730Sstevel@tonic-gate * of one already in the list. 7740Sstevel@tonic-gate * 7750Sstevel@tonic-gate * Return values 7760Sstevel@tonic-gate * 1 if the value was a duplicate of an existing value in the list. 7770Sstevel@tonic-gate * 0 if the insert was successful. 7780Sstevel@tonic-gate */ 7790Sstevel@tonic-gate int 7800Sstevel@tonic-gate rctl_val_list_insert(rctl_val_t **root, rctl_val_t *rval) 7810Sstevel@tonic-gate { 7820Sstevel@tonic-gate rctl_val_t *prev; 7830Sstevel@tonic-gate int equiv; 7840Sstevel@tonic-gate 7850Sstevel@tonic-gate rval->rcv_next = NULL; 7860Sstevel@tonic-gate rval->rcv_prev = NULL; 7870Sstevel@tonic-gate 7880Sstevel@tonic-gate if (*root == NULL) { 7890Sstevel@tonic-gate *root = rval; 7900Sstevel@tonic-gate return (0); 7910Sstevel@tonic-gate } 7920Sstevel@tonic-gate 7930Sstevel@tonic-gate equiv = rctl_val_cmp(rval, *root, 0); 7940Sstevel@tonic-gate 7950Sstevel@tonic-gate if (equiv == 0) 7960Sstevel@tonic-gate return (1); 7970Sstevel@tonic-gate 7980Sstevel@tonic-gate if (equiv < 0) { 7990Sstevel@tonic-gate rval->rcv_next = *root; 8000Sstevel@tonic-gate rval->rcv_next->rcv_prev = rval; 8010Sstevel@tonic-gate *root = rval; 8020Sstevel@tonic-gate 8030Sstevel@tonic-gate return (0); 8040Sstevel@tonic-gate } 8050Sstevel@tonic-gate 8060Sstevel@tonic-gate prev = *root; 8070Sstevel@tonic-gate while (prev->rcv_next != NULL && 8080Sstevel@tonic-gate (equiv = 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 (equiv == 0) 8130Sstevel@tonic-gate return (1); 8140Sstevel@tonic-gate 8150Sstevel@tonic-gate rval->rcv_next = prev->rcv_next; 8160Sstevel@tonic-gate if (rval->rcv_next != NULL) 8170Sstevel@tonic-gate rval->rcv_next->rcv_prev = rval; 8180Sstevel@tonic-gate prev->rcv_next = rval; 8190Sstevel@tonic-gate rval->rcv_prev = prev; 8200Sstevel@tonic-gate 8210Sstevel@tonic-gate return (0); 8220Sstevel@tonic-gate } 8230Sstevel@tonic-gate 8240Sstevel@tonic-gate static int 8250Sstevel@tonic-gate rctl_val_list_delete(rctl_val_t **root, rctl_val_t *rval) 8260Sstevel@tonic-gate { 8270Sstevel@tonic-gate rctl_val_t *prev; 8280Sstevel@tonic-gate 8290Sstevel@tonic-gate if (*root == NULL) 8300Sstevel@tonic-gate return (-1); 8310Sstevel@tonic-gate 8320Sstevel@tonic-gate prev = *root; 8330Sstevel@tonic-gate if (rctl_val_cmp(rval, prev, 0) == 0) { 8340Sstevel@tonic-gate *root = prev->rcv_next; 8355039Srd117015 if (*root != NULL) 8365039Srd117015 (*root)->rcv_prev = NULL; 8370Sstevel@tonic-gate 8380Sstevel@tonic-gate kmem_cache_free(rctl_val_cache, prev); 8390Sstevel@tonic-gate 8400Sstevel@tonic-gate return (0); 8410Sstevel@tonic-gate } 8420Sstevel@tonic-gate 8430Sstevel@tonic-gate while (prev->rcv_next != NULL && 8440Sstevel@tonic-gate rctl_val_cmp(rval, prev->rcv_next, 0) != 0) { 8450Sstevel@tonic-gate prev = prev->rcv_next; 8460Sstevel@tonic-gate } 8470Sstevel@tonic-gate 8480Sstevel@tonic-gate if (prev->rcv_next == NULL) { 8490Sstevel@tonic-gate /* 8500Sstevel@tonic-gate * If we navigate the entire list and cannot find a match, then 8510Sstevel@tonic-gate * return failure. 8520Sstevel@tonic-gate */ 8530Sstevel@tonic-gate return (-1); 8540Sstevel@tonic-gate } 8550Sstevel@tonic-gate 8560Sstevel@tonic-gate prev = prev->rcv_next; 8570Sstevel@tonic-gate prev->rcv_prev->rcv_next = prev->rcv_next; 8580Sstevel@tonic-gate if (prev->rcv_next != NULL) 8590Sstevel@tonic-gate prev->rcv_next->rcv_prev = prev->rcv_prev; 8600Sstevel@tonic-gate 8610Sstevel@tonic-gate kmem_cache_free(rctl_val_cache, prev); 8620Sstevel@tonic-gate 8630Sstevel@tonic-gate return (0); 8640Sstevel@tonic-gate } 8650Sstevel@tonic-gate 8660Sstevel@tonic-gate static rctl_val_t * 8670Sstevel@tonic-gate rctl_val_list_dup(rctl_val_t *rval, rctl_alloc_gp_t *ragp, struct proc *oldp, 8680Sstevel@tonic-gate struct proc *newp) 8690Sstevel@tonic-gate { 8700Sstevel@tonic-gate rctl_val_t *head = NULL; 8710Sstevel@tonic-gate 8720Sstevel@tonic-gate for (; rval != NULL; rval = rval->rcv_next) { 8730Sstevel@tonic-gate rctl_val_t *dval = rctl_gp_detach_val(ragp); 8740Sstevel@tonic-gate 8750Sstevel@tonic-gate bcopy(rval, dval, sizeof (rctl_val_t)); 8760Sstevel@tonic-gate dval->rcv_prev = dval->rcv_next = NULL; 8770Sstevel@tonic-gate 8780Sstevel@tonic-gate if (oldp == NULL || 8790Sstevel@tonic-gate rval->rcv_action_recipient == NULL || 8800Sstevel@tonic-gate rval->rcv_action_recipient == oldp) { 8810Sstevel@tonic-gate if (rval->rcv_privilege == RCPRIV_BASIC) { 8820Sstevel@tonic-gate dval->rcv_action_recipient = newp; 8830Sstevel@tonic-gate dval->rcv_action_recip_pid = newp->p_pid; 8840Sstevel@tonic-gate } else { 8850Sstevel@tonic-gate dval->rcv_action_recipient = NULL; 8860Sstevel@tonic-gate dval->rcv_action_recip_pid = -1; 8870Sstevel@tonic-gate } 8880Sstevel@tonic-gate 8890Sstevel@tonic-gate (void) rctl_val_list_insert(&head, dval); 8900Sstevel@tonic-gate } else { 8910Sstevel@tonic-gate kmem_cache_free(rctl_val_cache, dval); 8920Sstevel@tonic-gate } 8930Sstevel@tonic-gate } 8940Sstevel@tonic-gate 8950Sstevel@tonic-gate return (head); 8960Sstevel@tonic-gate } 8970Sstevel@tonic-gate 8980Sstevel@tonic-gate static void 8990Sstevel@tonic-gate rctl_val_list_reset(rctl_val_t *rval) 9000Sstevel@tonic-gate { 9010Sstevel@tonic-gate for (; rval != NULL; rval = rval->rcv_next) 9020Sstevel@tonic-gate rval->rcv_firing_time = 0; 9030Sstevel@tonic-gate } 9040Sstevel@tonic-gate 9050Sstevel@tonic-gate static uint_t 9060Sstevel@tonic-gate rctl_val_list_count(rctl_val_t *rval) 9070Sstevel@tonic-gate { 9080Sstevel@tonic-gate uint_t n = 0; 9090Sstevel@tonic-gate 9100Sstevel@tonic-gate for (; rval != NULL; rval = rval->rcv_next) 9110Sstevel@tonic-gate n++; 9120Sstevel@tonic-gate 9130Sstevel@tonic-gate return (n); 9140Sstevel@tonic-gate } 9150Sstevel@tonic-gate 9160Sstevel@tonic-gate 9170Sstevel@tonic-gate static void 9180Sstevel@tonic-gate rctl_val_list_free(rctl_val_t *rval) 9190Sstevel@tonic-gate { 9200Sstevel@tonic-gate while (rval != NULL) { 9210Sstevel@tonic-gate rctl_val_t *next = rval->rcv_next; 9220Sstevel@tonic-gate 9230Sstevel@tonic-gate kmem_cache_free(rctl_val_cache, rval); 9240Sstevel@tonic-gate 9250Sstevel@tonic-gate rval = next; 9260Sstevel@tonic-gate } 9270Sstevel@tonic-gate } 9280Sstevel@tonic-gate 9290Sstevel@tonic-gate /* 9300Sstevel@tonic-gate * rctl_qty_t rctl_model_maximum(rctl_dict_entry_t *, struct proc *) 9310Sstevel@tonic-gate * 9320Sstevel@tonic-gate * Overview 9330Sstevel@tonic-gate * In cases where the operating system supports more than one process 9340Sstevel@tonic-gate * addressing model, the operating system capabilities will exceed those of 9350Sstevel@tonic-gate * one or more of these models. Processes in a less capable model must have 9360Sstevel@tonic-gate * their resources accurately controlled, without diluting those of their 9370Sstevel@tonic-gate * descendants reached via exec(). rctl_model_maximum() returns the governing 9380Sstevel@tonic-gate * value for the specified process with respect to a resource control, such 9390Sstevel@tonic-gate * that the value can used for the RCTLOP_SET callback or compatability 9400Sstevel@tonic-gate * support. 9410Sstevel@tonic-gate * 9420Sstevel@tonic-gate * Return values 9430Sstevel@tonic-gate * The maximum value for the given process for the specified resource control. 9440Sstevel@tonic-gate * 9450Sstevel@tonic-gate * Caller's context 9460Sstevel@tonic-gate * No restrictions on context. 9470Sstevel@tonic-gate */ 9480Sstevel@tonic-gate rctl_qty_t 9490Sstevel@tonic-gate rctl_model_maximum(rctl_dict_entry_t *rde, struct proc *p) 9500Sstevel@tonic-gate { 9510Sstevel@tonic-gate if (p->p_model == DATAMODEL_NATIVE) 9520Sstevel@tonic-gate return (rde->rcd_max_native); 9530Sstevel@tonic-gate 9540Sstevel@tonic-gate return (rde->rcd_max_ilp32); 9550Sstevel@tonic-gate } 9560Sstevel@tonic-gate 9570Sstevel@tonic-gate /* 9580Sstevel@tonic-gate * rctl_qty_t rctl_model_value(rctl_dict_entry_t *, struct proc *, rctl_qty_t) 9590Sstevel@tonic-gate * 9600Sstevel@tonic-gate * Overview 9610Sstevel@tonic-gate * Convenience function wrapping the rctl_model_maximum() functionality. 9620Sstevel@tonic-gate * 9630Sstevel@tonic-gate * Return values 9640Sstevel@tonic-gate * The lesser of the process's maximum value and the given value for the 9650Sstevel@tonic-gate * specified resource control. 9660Sstevel@tonic-gate * 9670Sstevel@tonic-gate * Caller's context 9680Sstevel@tonic-gate * No restrictions on context. 9690Sstevel@tonic-gate */ 9700Sstevel@tonic-gate rctl_qty_t 9710Sstevel@tonic-gate rctl_model_value(rctl_dict_entry_t *rde, struct proc *p, rctl_qty_t value) 9720Sstevel@tonic-gate { 9730Sstevel@tonic-gate rctl_qty_t max = rctl_model_maximum(rde, p); 9740Sstevel@tonic-gate 9750Sstevel@tonic-gate return (value < max ? value : max); 9760Sstevel@tonic-gate } 9770Sstevel@tonic-gate 9780Sstevel@tonic-gate static void 9790Sstevel@tonic-gate rctl_set_insert(rctl_set_t *set, rctl_hndl_t hndl, rctl_t *rctl) 9800Sstevel@tonic-gate { 9810Sstevel@tonic-gate uint_t index = hndl % rctl_set_size; 9820Sstevel@tonic-gate rctl_t *next_ctl, *prev_ctl; 9830Sstevel@tonic-gate 9840Sstevel@tonic-gate ASSERT(MUTEX_HELD(&set->rcs_lock)); 9850Sstevel@tonic-gate 9860Sstevel@tonic-gate rctl->rc_next = NULL; 9870Sstevel@tonic-gate 9880Sstevel@tonic-gate if (set->rcs_ctls[index] == NULL) { 9890Sstevel@tonic-gate set->rcs_ctls[index] = rctl; 9900Sstevel@tonic-gate return; 9910Sstevel@tonic-gate } 9920Sstevel@tonic-gate 9930Sstevel@tonic-gate if (hndl < set->rcs_ctls[index]->rc_id) { 9940Sstevel@tonic-gate rctl->rc_next = set->rcs_ctls[index]; 9950Sstevel@tonic-gate set->rcs_ctls[index] = rctl; 9960Sstevel@tonic-gate 9970Sstevel@tonic-gate return; 9980Sstevel@tonic-gate } 9990Sstevel@tonic-gate 10000Sstevel@tonic-gate for (next_ctl = set->rcs_ctls[index]->rc_next, 10010Sstevel@tonic-gate prev_ctl = set->rcs_ctls[index]; 10020Sstevel@tonic-gate next_ctl != NULL; 10030Sstevel@tonic-gate prev_ctl = next_ctl, 10040Sstevel@tonic-gate next_ctl = next_ctl->rc_next) { 10050Sstevel@tonic-gate if (next_ctl->rc_id > hndl) { 10060Sstevel@tonic-gate rctl->rc_next = next_ctl; 10070Sstevel@tonic-gate prev_ctl->rc_next = rctl; 10080Sstevel@tonic-gate 10090Sstevel@tonic-gate return; 10100Sstevel@tonic-gate } 10110Sstevel@tonic-gate } 10120Sstevel@tonic-gate 10130Sstevel@tonic-gate rctl->rc_next = next_ctl; 10140Sstevel@tonic-gate prev_ctl->rc_next = rctl; 10150Sstevel@tonic-gate } 10160Sstevel@tonic-gate 10170Sstevel@tonic-gate /* 10180Sstevel@tonic-gate * rctl_set_t *rctl_set_create() 10190Sstevel@tonic-gate * 10200Sstevel@tonic-gate * Overview 10210Sstevel@tonic-gate * Create an empty resource control set, suitable for attaching to a 10220Sstevel@tonic-gate * controlled entity. 10230Sstevel@tonic-gate * 10240Sstevel@tonic-gate * Return values 10250Sstevel@tonic-gate * A pointer to the newly created set. 10260Sstevel@tonic-gate * 10270Sstevel@tonic-gate * Caller's context 10280Sstevel@tonic-gate * Safe for KM_SLEEP allocations. 10290Sstevel@tonic-gate */ 10300Sstevel@tonic-gate rctl_set_t * 10310Sstevel@tonic-gate rctl_set_create() 10320Sstevel@tonic-gate { 10330Sstevel@tonic-gate rctl_set_t *rset = kmem_zalloc(sizeof (rctl_set_t), KM_SLEEP); 10340Sstevel@tonic-gate 10350Sstevel@tonic-gate mutex_init(&rset->rcs_lock, NULL, MUTEX_DEFAULT, NULL); 10360Sstevel@tonic-gate rset->rcs_ctls = kmem_zalloc(rctl_set_size * sizeof (rctl_t *), 10370Sstevel@tonic-gate KM_SLEEP); 10380Sstevel@tonic-gate rset->rcs_entity = -1; 10390Sstevel@tonic-gate 10400Sstevel@tonic-gate return (rset); 10410Sstevel@tonic-gate } 10420Sstevel@tonic-gate 10430Sstevel@tonic-gate /* 10440Sstevel@tonic-gate * rctl_gp_alloc_t *rctl_set_init_prealloc(rctl_entity_t) 10450Sstevel@tonic-gate * 10460Sstevel@tonic-gate * Overview 10470Sstevel@tonic-gate * rctl_set_init_prealloc() examines the globally defined resource controls 10480Sstevel@tonic-gate * and their default values and returns a resource control allocation group 10490Sstevel@tonic-gate * populated with sufficient controls and values to form a representative 10500Sstevel@tonic-gate * resource control set for the specified entity. 10510Sstevel@tonic-gate * 10520Sstevel@tonic-gate * Return values 10530Sstevel@tonic-gate * A pointer to the newly created allocation group. 10540Sstevel@tonic-gate * 10550Sstevel@tonic-gate * Caller's context 10560Sstevel@tonic-gate * Caller must be in a context suitable for KM_SLEEP allocations. 10570Sstevel@tonic-gate */ 10580Sstevel@tonic-gate rctl_alloc_gp_t * 10590Sstevel@tonic-gate rctl_set_init_prealloc(rctl_entity_t entity) 10600Sstevel@tonic-gate { 10610Sstevel@tonic-gate rctl_dict_entry_t *rde; 10620Sstevel@tonic-gate rctl_alloc_gp_t *ragp = kmem_zalloc(sizeof (rctl_alloc_gp_t), KM_SLEEP); 10630Sstevel@tonic-gate 10640Sstevel@tonic-gate ASSERT(MUTEX_NOT_HELD(&curproc->p_lock)); 10650Sstevel@tonic-gate 10660Sstevel@tonic-gate if (rctl_lists[entity] == NULL) 10670Sstevel@tonic-gate return (ragp); 10680Sstevel@tonic-gate 10690Sstevel@tonic-gate mutex_enter(&rctl_lists_lock); 10700Sstevel@tonic-gate 10710Sstevel@tonic-gate for (rde = rctl_lists[entity]; rde != NULL; rde = rde->rcd_next) { 10720Sstevel@tonic-gate ragp->rcag_nctls++; 10730Sstevel@tonic-gate ragp->rcag_nvals += rctl_val_list_count(rde->rcd_default_value); 10740Sstevel@tonic-gate } 10750Sstevel@tonic-gate 10760Sstevel@tonic-gate mutex_exit(&rctl_lists_lock); 10770Sstevel@tonic-gate 10780Sstevel@tonic-gate rctl_gp_alloc(ragp); 10790Sstevel@tonic-gate 10800Sstevel@tonic-gate return (ragp); 10810Sstevel@tonic-gate } 10820Sstevel@tonic-gate 10830Sstevel@tonic-gate /* 10840Sstevel@tonic-gate * rctl_set_t *rctl_set_init(rctl_entity_t) 10850Sstevel@tonic-gate * 10860Sstevel@tonic-gate * Overview 10870Sstevel@tonic-gate * rctl_set_create() creates a resource control set, initialized with the 10880Sstevel@tonic-gate * system infinite values on all registered controls, for attachment to a 10890Sstevel@tonic-gate * system entity requiring resource controls, such as a process or a task. 10900Sstevel@tonic-gate * 10910Sstevel@tonic-gate * Return values 10920Sstevel@tonic-gate * A pointer to the newly filled set. 10930Sstevel@tonic-gate * 10940Sstevel@tonic-gate * Caller's context 10950Sstevel@tonic-gate * Caller must be holding p_lock on entry so that RCTLOP_SET() functions 10960Sstevel@tonic-gate * may modify task and project members based on the proc structure 10970Sstevel@tonic-gate * they are passed. 10980Sstevel@tonic-gate */ 10990Sstevel@tonic-gate rctl_set_t * 11000Sstevel@tonic-gate rctl_set_init(rctl_entity_t entity, struct proc *p, rctl_entity_p_t *e, 11010Sstevel@tonic-gate rctl_set_t *rset, rctl_alloc_gp_t *ragp) 11020Sstevel@tonic-gate { 11030Sstevel@tonic-gate rctl_dict_entry_t *rde; 11040Sstevel@tonic-gate 11050Sstevel@tonic-gate ASSERT(MUTEX_HELD(&p->p_lock)); 11060Sstevel@tonic-gate ASSERT(e); 11070Sstevel@tonic-gate rset->rcs_entity = entity; 11080Sstevel@tonic-gate 11090Sstevel@tonic-gate if (rctl_lists[entity] == NULL) 11100Sstevel@tonic-gate return (rset); 11110Sstevel@tonic-gate 11120Sstevel@tonic-gate mutex_enter(&rctl_lists_lock); 11130Sstevel@tonic-gate mutex_enter(&rset->rcs_lock); 11140Sstevel@tonic-gate 11150Sstevel@tonic-gate for (rde = rctl_lists[entity]; rde != NULL; rde = rde->rcd_next) { 11160Sstevel@tonic-gate rctl_t *rctl = rctl_gp_detach_ctl(ragp); 11170Sstevel@tonic-gate 11180Sstevel@tonic-gate rctl->rc_dict_entry = rde; 11190Sstevel@tonic-gate rctl->rc_id = rde->rcd_id; 11203684Srd117015 rctl->rc_projdb = NULL; 11210Sstevel@tonic-gate 11220Sstevel@tonic-gate rctl->rc_values = rctl_val_list_dup(rde->rcd_default_value, 11230Sstevel@tonic-gate ragp, NULL, p); 11240Sstevel@tonic-gate rctl->rc_cursor = rctl->rc_values; 11250Sstevel@tonic-gate 11260Sstevel@tonic-gate ASSERT(rctl->rc_cursor != NULL); 11270Sstevel@tonic-gate 11280Sstevel@tonic-gate rctl_set_insert(rset, rde->rcd_id, rctl); 11290Sstevel@tonic-gate 11300Sstevel@tonic-gate RCTLOP_SET(rctl, p, e, rctl_model_value(rctl->rc_dict_entry, p, 11310Sstevel@tonic-gate rctl->rc_cursor->rcv_value)); 11320Sstevel@tonic-gate } 11330Sstevel@tonic-gate 11340Sstevel@tonic-gate mutex_exit(&rset->rcs_lock); 11350Sstevel@tonic-gate mutex_exit(&rctl_lists_lock); 11360Sstevel@tonic-gate 11370Sstevel@tonic-gate return (rset); 11380Sstevel@tonic-gate } 11390Sstevel@tonic-gate 11400Sstevel@tonic-gate static rctl_t * 11410Sstevel@tonic-gate rctl_dup(rctl_t *rctl, rctl_alloc_gp_t *ragp, struct proc *oldp, 11420Sstevel@tonic-gate struct proc *newp) 11430Sstevel@tonic-gate { 11440Sstevel@tonic-gate rctl_t *dup = rctl_gp_detach_ctl(ragp); 11450Sstevel@tonic-gate rctl_val_t *dval; 11460Sstevel@tonic-gate 11470Sstevel@tonic-gate dup->rc_id = rctl->rc_id; 11480Sstevel@tonic-gate dup->rc_dict_entry = rctl->rc_dict_entry; 11490Sstevel@tonic-gate dup->rc_next = NULL; 11500Sstevel@tonic-gate dup->rc_cursor = NULL; 11510Sstevel@tonic-gate dup->rc_values = rctl_val_list_dup(rctl->rc_values, ragp, oldp, newp); 11520Sstevel@tonic-gate 11530Sstevel@tonic-gate for (dval = dup->rc_values; 11540Sstevel@tonic-gate dval != NULL; dval = dval->rcv_next) { 11550Sstevel@tonic-gate if (rctl_val_cmp(rctl->rc_cursor, dval, 0) >= 0) { 11560Sstevel@tonic-gate dup->rc_cursor = dval; 11570Sstevel@tonic-gate break; 11580Sstevel@tonic-gate } 11590Sstevel@tonic-gate } 11600Sstevel@tonic-gate 11610Sstevel@tonic-gate if (dup->rc_cursor == NULL) 11620Sstevel@tonic-gate dup->rc_cursor = dup->rc_values; 11630Sstevel@tonic-gate 11640Sstevel@tonic-gate return (dup); 11650Sstevel@tonic-gate } 11660Sstevel@tonic-gate 11670Sstevel@tonic-gate static void 11680Sstevel@tonic-gate rctl_set_fill_alloc_gp(rctl_set_t *set, rctl_alloc_gp_t *ragp) 11690Sstevel@tonic-gate { 11700Sstevel@tonic-gate uint_t i; 11710Sstevel@tonic-gate 11720Sstevel@tonic-gate bzero(ragp, sizeof (rctl_alloc_gp_t)); 11730Sstevel@tonic-gate 11740Sstevel@tonic-gate for (i = 0; i < rctl_set_size; i++) { 11750Sstevel@tonic-gate rctl_t *r = set->rcs_ctls[i]; 11760Sstevel@tonic-gate 11770Sstevel@tonic-gate while (r != NULL) { 11780Sstevel@tonic-gate ragp->rcag_nctls++; 11790Sstevel@tonic-gate 11800Sstevel@tonic-gate ragp->rcag_nvals += rctl_val_list_count(r->rc_values); 11810Sstevel@tonic-gate 11820Sstevel@tonic-gate r = r->rc_next; 11830Sstevel@tonic-gate } 11840Sstevel@tonic-gate } 11850Sstevel@tonic-gate } 11860Sstevel@tonic-gate 11870Sstevel@tonic-gate /* 11880Sstevel@tonic-gate * rctl_alloc_gp_t *rctl_set_dup_prealloc(rctl_set_t *) 11890Sstevel@tonic-gate * 11900Sstevel@tonic-gate * Overview 11910Sstevel@tonic-gate * Given a resource control set, allocate a sufficiently large allocation 11920Sstevel@tonic-gate * group to contain a duplicate of the set. 11930Sstevel@tonic-gate * 11940Sstevel@tonic-gate * Return value 11950Sstevel@tonic-gate * A pointer to the newly created allocation group. 11960Sstevel@tonic-gate * 11970Sstevel@tonic-gate * Caller's context 11980Sstevel@tonic-gate * Safe for KM_SLEEP allocations. 11990Sstevel@tonic-gate */ 12000Sstevel@tonic-gate rctl_alloc_gp_t * 12010Sstevel@tonic-gate rctl_set_dup_prealloc(rctl_set_t *set) 12020Sstevel@tonic-gate { 12030Sstevel@tonic-gate rctl_alloc_gp_t *ragp = kmem_zalloc(sizeof (rctl_alloc_gp_t), KM_SLEEP); 12040Sstevel@tonic-gate 12050Sstevel@tonic-gate ASSERT(MUTEX_NOT_HELD(&curproc->p_lock)); 12060Sstevel@tonic-gate 12070Sstevel@tonic-gate mutex_enter(&set->rcs_lock); 12080Sstevel@tonic-gate rctl_set_fill_alloc_gp(set, ragp); 12090Sstevel@tonic-gate mutex_exit(&set->rcs_lock); 12100Sstevel@tonic-gate 12110Sstevel@tonic-gate rctl_gp_alloc(ragp); 12120Sstevel@tonic-gate 12130Sstevel@tonic-gate return (ragp); 12140Sstevel@tonic-gate } 12150Sstevel@tonic-gate 12160Sstevel@tonic-gate /* 12170Sstevel@tonic-gate * int rctl_set_dup_ready(rctl_set_t *, rctl_alloc_gp_t *) 12180Sstevel@tonic-gate * 12190Sstevel@tonic-gate * Overview 12200Sstevel@tonic-gate * Verify that the allocation group provided is large enough to allow a 12210Sstevel@tonic-gate * duplicate of the given resource control set to be constructed from its 12220Sstevel@tonic-gate * contents. 12230Sstevel@tonic-gate * 12240Sstevel@tonic-gate * Return values 12250Sstevel@tonic-gate * 1 if the allocation group is sufficiently large, 0 otherwise. 12260Sstevel@tonic-gate * 12270Sstevel@tonic-gate * Caller's context 12280Sstevel@tonic-gate * rcs_lock must be held prior to entry. 12290Sstevel@tonic-gate */ 12300Sstevel@tonic-gate int 12310Sstevel@tonic-gate rctl_set_dup_ready(rctl_set_t *set, rctl_alloc_gp_t *ragp) 12320Sstevel@tonic-gate { 12330Sstevel@tonic-gate rctl_alloc_gp_t curr_gp; 12340Sstevel@tonic-gate 12350Sstevel@tonic-gate ASSERT(MUTEX_HELD(&set->rcs_lock)); 12360Sstevel@tonic-gate 12370Sstevel@tonic-gate rctl_set_fill_alloc_gp(set, &curr_gp); 12380Sstevel@tonic-gate 12390Sstevel@tonic-gate if (curr_gp.rcag_nctls <= ragp->rcag_nctls && 12400Sstevel@tonic-gate curr_gp.rcag_nvals <= ragp->rcag_nvals) 12410Sstevel@tonic-gate return (1); 12420Sstevel@tonic-gate 12430Sstevel@tonic-gate return (0); 12440Sstevel@tonic-gate } 12450Sstevel@tonic-gate 12460Sstevel@tonic-gate /* 12470Sstevel@tonic-gate * rctl_set_t *rctl_set_dup(rctl_set_t *, struct proc *, struct proc *, 12480Sstevel@tonic-gate * rctl_set_t *, rctl_alloc_gp_t *, int) 12490Sstevel@tonic-gate * 12500Sstevel@tonic-gate * Overview 12510Sstevel@tonic-gate * Make a duplicate of the resource control set. The proc pointers are those 12520Sstevel@tonic-gate * of the owning process and of the process associated with the entity 12530Sstevel@tonic-gate * receiving the duplicate. 12540Sstevel@tonic-gate * 12550Sstevel@tonic-gate * Duplication is a 3 stage process. Stage 1 is memory allocation for 12560Sstevel@tonic-gate * the duplicate set, which is taken care of by rctl_set_dup_prealloc(). 12570Sstevel@tonic-gate * Stage 2 consists of copying all rctls and values from the old set into 12580Sstevel@tonic-gate * the new. Stage 3 completes the duplication by performing the appropriate 12590Sstevel@tonic-gate * callbacks for each rctl in the new set. 12600Sstevel@tonic-gate * 12610Sstevel@tonic-gate * Stages 2 and 3 are handled by calling rctl_set_dup with the RCD_DUP and 12620Sstevel@tonic-gate * RCD_CALLBACK functions, respectively. The RCD_CALLBACK flag may only 12630Sstevel@tonic-gate * be supplied if the newp proc structure reflects the new task and 12640Sstevel@tonic-gate * project linkage. 12650Sstevel@tonic-gate * 12660Sstevel@tonic-gate * Return value 12670Sstevel@tonic-gate * A pointer to the duplicate set. 12680Sstevel@tonic-gate * 12690Sstevel@tonic-gate * Caller's context 12700Sstevel@tonic-gate * The rcs_lock of the set to be duplicated must be held prior to entry. 12710Sstevel@tonic-gate */ 12720Sstevel@tonic-gate rctl_set_t * 12730Sstevel@tonic-gate rctl_set_dup(rctl_set_t *set, struct proc *oldp, struct proc *newp, 12740Sstevel@tonic-gate rctl_entity_p_t *e, rctl_set_t *dup, rctl_alloc_gp_t *ragp, int flag) 12750Sstevel@tonic-gate { 12760Sstevel@tonic-gate uint_t i; 12770Sstevel@tonic-gate rctl_set_t *iter; 12780Sstevel@tonic-gate 12790Sstevel@tonic-gate ASSERT((flag & RCD_DUP) || (flag & RCD_CALLBACK)); 12800Sstevel@tonic-gate ASSERT(e); 12810Sstevel@tonic-gate /* 12820Sstevel@tonic-gate * When copying the old set, iterate over that. Otherwise, when 12830Sstevel@tonic-gate * only callbacks have been requested, iterate over the dup set. 12840Sstevel@tonic-gate */ 12850Sstevel@tonic-gate if (flag & RCD_DUP) { 12860Sstevel@tonic-gate ASSERT(MUTEX_HELD(&set->rcs_lock)); 12870Sstevel@tonic-gate iter = set; 12880Sstevel@tonic-gate dup->rcs_entity = set->rcs_entity; 12890Sstevel@tonic-gate } else { 12900Sstevel@tonic-gate iter = dup; 12910Sstevel@tonic-gate } 12920Sstevel@tonic-gate 12930Sstevel@tonic-gate mutex_enter(&dup->rcs_lock); 12940Sstevel@tonic-gate 12950Sstevel@tonic-gate for (i = 0; i < rctl_set_size; i++) { 12960Sstevel@tonic-gate rctl_t *r = iter->rcs_ctls[i]; 12970Sstevel@tonic-gate rctl_t *d; 12980Sstevel@tonic-gate 12990Sstevel@tonic-gate while (r != NULL) { 13000Sstevel@tonic-gate if (flag & RCD_DUP) { 13010Sstevel@tonic-gate d = rctl_dup(r, ragp, oldp, newp); 13020Sstevel@tonic-gate rctl_set_insert(dup, r->rc_id, d); 13030Sstevel@tonic-gate } else { 13040Sstevel@tonic-gate d = r; 13050Sstevel@tonic-gate } 13060Sstevel@tonic-gate 13070Sstevel@tonic-gate if (flag & RCD_CALLBACK) 13080Sstevel@tonic-gate RCTLOP_SET(d, newp, e, 13090Sstevel@tonic-gate rctl_model_value(d->rc_dict_entry, newp, 13100Sstevel@tonic-gate d->rc_cursor->rcv_value)); 13110Sstevel@tonic-gate 13120Sstevel@tonic-gate r = r->rc_next; 13130Sstevel@tonic-gate } 13140Sstevel@tonic-gate } 13150Sstevel@tonic-gate 13160Sstevel@tonic-gate mutex_exit(&dup->rcs_lock); 13170Sstevel@tonic-gate 13180Sstevel@tonic-gate return (dup); 13190Sstevel@tonic-gate } 13200Sstevel@tonic-gate 13210Sstevel@tonic-gate /* 13220Sstevel@tonic-gate * void rctl_set_free(rctl_set_t *) 13230Sstevel@tonic-gate * 13240Sstevel@tonic-gate * Overview 13250Sstevel@tonic-gate * Delete resource control set and all attached values. 13260Sstevel@tonic-gate * 13270Sstevel@tonic-gate * Return values 13280Sstevel@tonic-gate * No value returned. 13290Sstevel@tonic-gate * 13300Sstevel@tonic-gate * Caller's context 13310Sstevel@tonic-gate * No restrictions on context. 13320Sstevel@tonic-gate */ 13330Sstevel@tonic-gate void 13340Sstevel@tonic-gate rctl_set_free(rctl_set_t *set) 13350Sstevel@tonic-gate { 13360Sstevel@tonic-gate uint_t i; 13370Sstevel@tonic-gate 13380Sstevel@tonic-gate mutex_enter(&set->rcs_lock); 13390Sstevel@tonic-gate for (i = 0; i < rctl_set_size; i++) { 13400Sstevel@tonic-gate rctl_t *r = set->rcs_ctls[i]; 13410Sstevel@tonic-gate 13420Sstevel@tonic-gate while (r != NULL) { 13430Sstevel@tonic-gate rctl_val_t *v = r->rc_values; 13440Sstevel@tonic-gate rctl_t *n = r->rc_next; 13450Sstevel@tonic-gate 13460Sstevel@tonic-gate kmem_cache_free(rctl_cache, r); 13470Sstevel@tonic-gate 13480Sstevel@tonic-gate rctl_val_list_free(v); 13490Sstevel@tonic-gate 13500Sstevel@tonic-gate r = n; 13510Sstevel@tonic-gate } 13520Sstevel@tonic-gate } 13530Sstevel@tonic-gate mutex_exit(&set->rcs_lock); 13540Sstevel@tonic-gate 13550Sstevel@tonic-gate kmem_free(set->rcs_ctls, sizeof (rctl_t *) * rctl_set_size); 13560Sstevel@tonic-gate kmem_free(set, sizeof (rctl_set_t)); 13570Sstevel@tonic-gate } 13580Sstevel@tonic-gate 13590Sstevel@tonic-gate /* 13600Sstevel@tonic-gate * void rctl_set_reset(rctl_set_t *) 13610Sstevel@tonic-gate * 13620Sstevel@tonic-gate * Overview 13630Sstevel@tonic-gate * Resets all rctls within the set such that the lowest value becomes active. 13640Sstevel@tonic-gate * 13650Sstevel@tonic-gate * Return values 13660Sstevel@tonic-gate * No value returned. 13670Sstevel@tonic-gate * 13680Sstevel@tonic-gate * Caller's context 13690Sstevel@tonic-gate * No restrictions on context. 13700Sstevel@tonic-gate */ 13710Sstevel@tonic-gate void 13720Sstevel@tonic-gate rctl_set_reset(rctl_set_t *set, struct proc *p, rctl_entity_p_t *e) 13730Sstevel@tonic-gate { 13740Sstevel@tonic-gate uint_t i; 13750Sstevel@tonic-gate 13760Sstevel@tonic-gate ASSERT(e); 13770Sstevel@tonic-gate 13780Sstevel@tonic-gate mutex_enter(&set->rcs_lock); 13790Sstevel@tonic-gate for (i = 0; i < rctl_set_size; i++) { 13800Sstevel@tonic-gate rctl_t *r = set->rcs_ctls[i]; 13810Sstevel@tonic-gate 13820Sstevel@tonic-gate while (r != NULL) { 13830Sstevel@tonic-gate r->rc_cursor = r->rc_values; 13840Sstevel@tonic-gate rctl_val_list_reset(r->rc_cursor); 13850Sstevel@tonic-gate RCTLOP_SET(r, p, e, rctl_model_value(r->rc_dict_entry, 13860Sstevel@tonic-gate p, r->rc_cursor->rcv_value)); 13870Sstevel@tonic-gate 13880Sstevel@tonic-gate ASSERT(r->rc_cursor != NULL); 13890Sstevel@tonic-gate 13900Sstevel@tonic-gate r = r->rc_next; 13910Sstevel@tonic-gate } 13920Sstevel@tonic-gate } 13930Sstevel@tonic-gate 13940Sstevel@tonic-gate mutex_exit(&set->rcs_lock); 13950Sstevel@tonic-gate } 13960Sstevel@tonic-gate 13970Sstevel@tonic-gate /* 13980Sstevel@tonic-gate * void rctl_set_tearoff(rctl_set *, struct proc *) 13990Sstevel@tonic-gate * 14000Sstevel@tonic-gate * Overview 14010Sstevel@tonic-gate * Tear off any resource control values on this set with an action recipient 14020Sstevel@tonic-gate * equal to the specified process (as they are becoming invalid with the 14030Sstevel@tonic-gate * process's departure from this set as an observer). 14040Sstevel@tonic-gate * 14050Sstevel@tonic-gate * Return values 14060Sstevel@tonic-gate * No value returned. 14070Sstevel@tonic-gate * 14080Sstevel@tonic-gate * Caller's context 14090Sstevel@tonic-gate * No restrictions on context 14100Sstevel@tonic-gate */ 14110Sstevel@tonic-gate void 14120Sstevel@tonic-gate rctl_set_tearoff(rctl_set_t *set, struct proc *p) 14130Sstevel@tonic-gate { 14140Sstevel@tonic-gate uint_t i; 14150Sstevel@tonic-gate 14160Sstevel@tonic-gate mutex_enter(&set->rcs_lock); 14170Sstevel@tonic-gate for (i = 0; i < rctl_set_size; i++) { 14180Sstevel@tonic-gate rctl_t *r = set->rcs_ctls[i]; 14190Sstevel@tonic-gate 14200Sstevel@tonic-gate while (r != NULL) { 14210Sstevel@tonic-gate rctl_val_t *rval; 14220Sstevel@tonic-gate 14230Sstevel@tonic-gate tearoff_rewalk_list: 14240Sstevel@tonic-gate rval = r->rc_values; 14250Sstevel@tonic-gate 14260Sstevel@tonic-gate while (rval != NULL) { 14270Sstevel@tonic-gate if (rval->rcv_privilege == RCPRIV_BASIC && 14280Sstevel@tonic-gate rval->rcv_action_recipient == p) { 14290Sstevel@tonic-gate if (r->rc_cursor == rval) 14300Sstevel@tonic-gate r->rc_cursor = rval->rcv_next; 14310Sstevel@tonic-gate 14320Sstevel@tonic-gate (void) rctl_val_list_delete( 14330Sstevel@tonic-gate &r->rc_values, rval); 14340Sstevel@tonic-gate 14350Sstevel@tonic-gate goto tearoff_rewalk_list; 14360Sstevel@tonic-gate } 14370Sstevel@tonic-gate 14380Sstevel@tonic-gate rval = rval->rcv_next; 14390Sstevel@tonic-gate } 14400Sstevel@tonic-gate 14410Sstevel@tonic-gate ASSERT(r->rc_cursor != NULL); 14420Sstevel@tonic-gate 14430Sstevel@tonic-gate r = r->rc_next; 14440Sstevel@tonic-gate } 14450Sstevel@tonic-gate } 14460Sstevel@tonic-gate 14470Sstevel@tonic-gate mutex_exit(&set->rcs_lock); 14480Sstevel@tonic-gate } 14490Sstevel@tonic-gate 14500Sstevel@tonic-gate static int 14510Sstevel@tonic-gate rctl_set_find(rctl_set_t *set, rctl_hndl_t hndl, rctl_t **rctl) 14520Sstevel@tonic-gate { 14530Sstevel@tonic-gate uint_t index = hndl % rctl_set_size; 14540Sstevel@tonic-gate rctl_t *curr_ctl; 14550Sstevel@tonic-gate 14560Sstevel@tonic-gate ASSERT(MUTEX_HELD(&set->rcs_lock)); 14570Sstevel@tonic-gate 14580Sstevel@tonic-gate for (curr_ctl = set->rcs_ctls[index]; curr_ctl != NULL; 14590Sstevel@tonic-gate curr_ctl = curr_ctl->rc_next) { 14600Sstevel@tonic-gate if (curr_ctl->rc_id == hndl) { 14610Sstevel@tonic-gate *rctl = curr_ctl; 14620Sstevel@tonic-gate 14630Sstevel@tonic-gate return (0); 14640Sstevel@tonic-gate } 14650Sstevel@tonic-gate } 14660Sstevel@tonic-gate 14670Sstevel@tonic-gate return (-1); 14680Sstevel@tonic-gate } 14690Sstevel@tonic-gate 14700Sstevel@tonic-gate /* 14710Sstevel@tonic-gate * rlim64_t rctl_enforced_value(rctl_hndl_t, rctl_set_t *, struct proc *) 14720Sstevel@tonic-gate * 14730Sstevel@tonic-gate * Overview 14740Sstevel@tonic-gate * Given a process, get the next enforced value on the rctl of the specified 14750Sstevel@tonic-gate * handle. 14760Sstevel@tonic-gate * 14770Sstevel@tonic-gate * Return value 14780Sstevel@tonic-gate * The enforced value. 14790Sstevel@tonic-gate * 14800Sstevel@tonic-gate * Caller's context 14810Sstevel@tonic-gate * For controls on process collectives, p->p_lock must be held across the 14820Sstevel@tonic-gate * operation. 14830Sstevel@tonic-gate */ 14840Sstevel@tonic-gate /*ARGSUSED*/ 14850Sstevel@tonic-gate rctl_qty_t 14860Sstevel@tonic-gate rctl_enforced_value(rctl_hndl_t hndl, rctl_set_t *rset, struct proc *p) 14870Sstevel@tonic-gate { 14880Sstevel@tonic-gate rctl_t *rctl; 14890Sstevel@tonic-gate rlim64_t ret; 14900Sstevel@tonic-gate 14910Sstevel@tonic-gate mutex_enter(&rset->rcs_lock); 14920Sstevel@tonic-gate 14930Sstevel@tonic-gate if (rctl_set_find(rset, hndl, &rctl) == -1) 14940Sstevel@tonic-gate panic("unknown resource control handle %d requested", hndl); 14950Sstevel@tonic-gate else 14960Sstevel@tonic-gate ret = rctl_model_value(rctl->rc_dict_entry, p, 14970Sstevel@tonic-gate rctl->rc_cursor->rcv_value); 14980Sstevel@tonic-gate 14990Sstevel@tonic-gate mutex_exit(&rset->rcs_lock); 15000Sstevel@tonic-gate 15010Sstevel@tonic-gate return (ret); 15020Sstevel@tonic-gate } 15030Sstevel@tonic-gate 15040Sstevel@tonic-gate /* 15050Sstevel@tonic-gate * int rctl_global_get(const char *, rctl_dict_entry_t *) 15060Sstevel@tonic-gate * 15070Sstevel@tonic-gate * Overview 15080Sstevel@tonic-gate * Copy a sanitized version of the global rctl for a given resource control 15090Sstevel@tonic-gate * name. (By sanitization, we mean that the unsafe data pointers have been 15100Sstevel@tonic-gate * zeroed.) 15110Sstevel@tonic-gate * 15120Sstevel@tonic-gate * Return value 15130Sstevel@tonic-gate * -1 if name not defined, 0 otherwise. 15140Sstevel@tonic-gate * 15150Sstevel@tonic-gate * Caller's context 15160Sstevel@tonic-gate * No restrictions on context. rctl_dict_lock must not be held. 15170Sstevel@tonic-gate */ 15180Sstevel@tonic-gate int 15190Sstevel@tonic-gate rctl_global_get(const char *name, rctl_dict_entry_t *drde) 15200Sstevel@tonic-gate { 15210Sstevel@tonic-gate rctl_dict_entry_t *rde = rctl_dict_lookup(name); 15220Sstevel@tonic-gate 15230Sstevel@tonic-gate if (rde == NULL) 15240Sstevel@tonic-gate return (-1); 15250Sstevel@tonic-gate 15260Sstevel@tonic-gate bcopy(rde, drde, sizeof (rctl_dict_entry_t)); 15270Sstevel@tonic-gate 15280Sstevel@tonic-gate drde->rcd_next = NULL; 15290Sstevel@tonic-gate drde->rcd_ops = NULL; 15300Sstevel@tonic-gate 15310Sstevel@tonic-gate return (0); 15320Sstevel@tonic-gate } 15330Sstevel@tonic-gate 15340Sstevel@tonic-gate /* 15350Sstevel@tonic-gate * int rctl_global_set(const char *, rctl_dict_entry_t *) 15360Sstevel@tonic-gate * 15370Sstevel@tonic-gate * Overview 15380Sstevel@tonic-gate * Transfer the settable fields of the named rctl to the global rctl matching 15390Sstevel@tonic-gate * the given resource control name. 15400Sstevel@tonic-gate * 15410Sstevel@tonic-gate * Return value 15420Sstevel@tonic-gate * -1 if name not defined, 0 otherwise. 15430Sstevel@tonic-gate * 15440Sstevel@tonic-gate * Caller's context 15450Sstevel@tonic-gate * No restrictions on context. rctl_dict_lock must not be held. 15460Sstevel@tonic-gate */ 15470Sstevel@tonic-gate int 15480Sstevel@tonic-gate rctl_global_set(const char *name, rctl_dict_entry_t *drde) 15490Sstevel@tonic-gate { 15500Sstevel@tonic-gate rctl_dict_entry_t *rde = rctl_dict_lookup(name); 15510Sstevel@tonic-gate 15520Sstevel@tonic-gate if (rde == NULL) 15530Sstevel@tonic-gate return (-1); 15540Sstevel@tonic-gate 15550Sstevel@tonic-gate rde->rcd_flagaction = drde->rcd_flagaction; 15560Sstevel@tonic-gate rde->rcd_syslog_level = drde->rcd_syslog_level; 15570Sstevel@tonic-gate rde->rcd_strlog_flags = drde->rcd_strlog_flags; 15580Sstevel@tonic-gate 15590Sstevel@tonic-gate return (0); 15600Sstevel@tonic-gate } 15610Sstevel@tonic-gate 15620Sstevel@tonic-gate static int 15630Sstevel@tonic-gate rctl_local_op(rctl_hndl_t hndl, rctl_val_t *oval, rctl_val_t *nval, 15640Sstevel@tonic-gate int (*cbop)(rctl_hndl_t, struct proc *p, rctl_entity_p_t *e, rctl_t *, 15650Sstevel@tonic-gate rctl_val_t *, rctl_val_t *), struct proc *p) 15660Sstevel@tonic-gate { 15670Sstevel@tonic-gate rctl_t *rctl; 15680Sstevel@tonic-gate rctl_set_t *rset; 15690Sstevel@tonic-gate rctl_entity_p_t e; 15700Sstevel@tonic-gate int ret = 0; 15710Sstevel@tonic-gate rctl_dict_entry_t *rde = rctl_dict_lookup_hndl(hndl); 15720Sstevel@tonic-gate 15730Sstevel@tonic-gate local_op_retry: 15740Sstevel@tonic-gate 15750Sstevel@tonic-gate ASSERT(MUTEX_HELD(&p->p_lock)); 15760Sstevel@tonic-gate 15770Sstevel@tonic-gate rset = rctl_entity_obtain_rset(rde, p); 15780Sstevel@tonic-gate 15790Sstevel@tonic-gate if (rset == NULL) { 15800Sstevel@tonic-gate return (-1); 15810Sstevel@tonic-gate } 15820Sstevel@tonic-gate rctl_entity_obtain_entity_p(rset->rcs_entity, p, &e); 15830Sstevel@tonic-gate 15840Sstevel@tonic-gate mutex_enter(&rset->rcs_lock); 15850Sstevel@tonic-gate 15860Sstevel@tonic-gate /* using rctl's hndl, get rctl from local set */ 15870Sstevel@tonic-gate if (rctl_set_find(rset, hndl, &rctl) == -1) { 15880Sstevel@tonic-gate mutex_exit(&rset->rcs_lock); 15890Sstevel@tonic-gate return (-1); 15900Sstevel@tonic-gate } 15910Sstevel@tonic-gate 15920Sstevel@tonic-gate ret = cbop(hndl, p, &e, rctl, oval, nval); 15930Sstevel@tonic-gate 15940Sstevel@tonic-gate mutex_exit(&rset->rcs_lock); 15950Sstevel@tonic-gate return (ret); 15960Sstevel@tonic-gate } 15970Sstevel@tonic-gate 15980Sstevel@tonic-gate /*ARGSUSED*/ 15990Sstevel@tonic-gate static int 16000Sstevel@tonic-gate rctl_local_get_cb(rctl_hndl_t hndl, struct proc *p, rctl_entity_p_t *e, 16010Sstevel@tonic-gate rctl_t *rctl, rctl_val_t *oval, rctl_val_t *nval) 16020Sstevel@tonic-gate { 16030Sstevel@tonic-gate if (oval == NULL) { 16040Sstevel@tonic-gate /* 16050Sstevel@tonic-gate * RCTL_FIRST 16060Sstevel@tonic-gate */ 16070Sstevel@tonic-gate bcopy(rctl->rc_values, nval, sizeof (rctl_val_t)); 16080Sstevel@tonic-gate } else { 16090Sstevel@tonic-gate /* 16100Sstevel@tonic-gate * RCTL_NEXT 16110Sstevel@tonic-gate */ 16120Sstevel@tonic-gate rctl_val_t *tval = rctl_val_list_find(&rctl->rc_values, oval); 16130Sstevel@tonic-gate 16140Sstevel@tonic-gate if (tval == NULL) 16150Sstevel@tonic-gate return (ESRCH); 16160Sstevel@tonic-gate else if (tval->rcv_next == NULL) 16170Sstevel@tonic-gate return (ENOENT); 16180Sstevel@tonic-gate else 16190Sstevel@tonic-gate bcopy(tval->rcv_next, nval, sizeof (rctl_val_t)); 16200Sstevel@tonic-gate } 16210Sstevel@tonic-gate 16220Sstevel@tonic-gate return (0); 16230Sstevel@tonic-gate } 16240Sstevel@tonic-gate 16250Sstevel@tonic-gate /* 16260Sstevel@tonic-gate * int rctl_local_get(rctl_hndl_t, rctl_val_t *) 16270Sstevel@tonic-gate * 16280Sstevel@tonic-gate * Overview 16290Sstevel@tonic-gate * Get the rctl value for the given flags. 16300Sstevel@tonic-gate * 16310Sstevel@tonic-gate * Return values 16320Sstevel@tonic-gate * 0 for successful get, errno otherwise. 16330Sstevel@tonic-gate */ 16340Sstevel@tonic-gate int 16350Sstevel@tonic-gate rctl_local_get(rctl_hndl_t hndl, rctl_val_t *oval, rctl_val_t *nval, 16360Sstevel@tonic-gate struct proc *p) 16370Sstevel@tonic-gate { 16380Sstevel@tonic-gate return (rctl_local_op(hndl, oval, nval, rctl_local_get_cb, p)); 16390Sstevel@tonic-gate } 16400Sstevel@tonic-gate 16410Sstevel@tonic-gate /*ARGSUSED*/ 16420Sstevel@tonic-gate static int 16430Sstevel@tonic-gate rctl_local_delete_cb(rctl_hndl_t hndl, struct proc *p, rctl_entity_p_t *e, 16440Sstevel@tonic-gate rctl_t *rctl, rctl_val_t *oval, rctl_val_t *nval) 16450Sstevel@tonic-gate { 16460Sstevel@tonic-gate if ((oval = rctl_val_list_find(&rctl->rc_values, nval)) == NULL) 16470Sstevel@tonic-gate return (ESRCH); 16480Sstevel@tonic-gate 16490Sstevel@tonic-gate if (rctl->rc_cursor == oval) { 16500Sstevel@tonic-gate rctl->rc_cursor = oval->rcv_next; 16510Sstevel@tonic-gate rctl_val_list_reset(rctl->rc_cursor); 16520Sstevel@tonic-gate RCTLOP_SET(rctl, p, e, rctl_model_value(rctl->rc_dict_entry, p, 16530Sstevel@tonic-gate rctl->rc_cursor->rcv_value)); 16540Sstevel@tonic-gate 16550Sstevel@tonic-gate ASSERT(rctl->rc_cursor != NULL); 16560Sstevel@tonic-gate } 16570Sstevel@tonic-gate 16580Sstevel@tonic-gate (void) rctl_val_list_delete(&rctl->rc_values, oval); 16590Sstevel@tonic-gate 16600Sstevel@tonic-gate return (0); 16610Sstevel@tonic-gate } 16620Sstevel@tonic-gate 16630Sstevel@tonic-gate /* 16640Sstevel@tonic-gate * int rctl_local_delete(rctl_hndl_t, rctl_val_t *) 16650Sstevel@tonic-gate * 16660Sstevel@tonic-gate * Overview 16670Sstevel@tonic-gate * Delete the rctl value for the given flags. 16680Sstevel@tonic-gate * 16690Sstevel@tonic-gate * Return values 16700Sstevel@tonic-gate * 0 for successful delete, errno otherwise. 16710Sstevel@tonic-gate */ 16720Sstevel@tonic-gate int 16730Sstevel@tonic-gate rctl_local_delete(rctl_hndl_t hndl, rctl_val_t *val, struct proc *p) 16740Sstevel@tonic-gate { 16750Sstevel@tonic-gate return (rctl_local_op(hndl, NULL, val, rctl_local_delete_cb, p)); 16760Sstevel@tonic-gate } 16770Sstevel@tonic-gate 16780Sstevel@tonic-gate /* 16790Sstevel@tonic-gate * rctl_local_insert_cb() 16800Sstevel@tonic-gate * 16810Sstevel@tonic-gate * Overview 16820Sstevel@tonic-gate * Insert a new value into the rctl's val list. If an error occurs, 16830Sstevel@tonic-gate * the val list must be left in the same state as when the function 16840Sstevel@tonic-gate * was entered. 16850Sstevel@tonic-gate * 16860Sstevel@tonic-gate * Return Values 16870Sstevel@tonic-gate * 0 for successful insert, EINVAL if the value is duplicated in the 16880Sstevel@tonic-gate * existing list. 16890Sstevel@tonic-gate */ 16900Sstevel@tonic-gate /*ARGSUSED*/ 16910Sstevel@tonic-gate static int 16920Sstevel@tonic-gate rctl_local_insert_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 /* 16960Sstevel@tonic-gate * Before inserting, confirm there are no duplicates of this value 16970Sstevel@tonic-gate * and flag level. If there is a duplicate, flag an error and do 16980Sstevel@tonic-gate * nothing. 16990Sstevel@tonic-gate */ 17000Sstevel@tonic-gate if (rctl_val_list_insert(&rctl->rc_values, nval) != 0) 17010Sstevel@tonic-gate return (EINVAL); 17020Sstevel@tonic-gate 17030Sstevel@tonic-gate if (rctl_val_cmp(nval, rctl->rc_cursor, 0) < 0) { 17040Sstevel@tonic-gate rctl->rc_cursor = nval; 17050Sstevel@tonic-gate rctl_val_list_reset(rctl->rc_cursor); 17060Sstevel@tonic-gate RCTLOP_SET(rctl, p, e, rctl_model_value(rctl->rc_dict_entry, p, 17070Sstevel@tonic-gate rctl->rc_cursor->rcv_value)); 17080Sstevel@tonic-gate 17090Sstevel@tonic-gate ASSERT(rctl->rc_cursor != NULL); 17100Sstevel@tonic-gate } 17110Sstevel@tonic-gate 17120Sstevel@tonic-gate return (0); 17130Sstevel@tonic-gate } 17140Sstevel@tonic-gate 17150Sstevel@tonic-gate /* 17160Sstevel@tonic-gate * int rctl_local_insert(rctl_hndl_t, rctl_val_t *) 17170Sstevel@tonic-gate * 17180Sstevel@tonic-gate * Overview 17190Sstevel@tonic-gate * Insert the rctl value into the appropriate rctl set for the calling 17200Sstevel@tonic-gate * process, given the handle. 17210Sstevel@tonic-gate */ 17220Sstevel@tonic-gate int 17230Sstevel@tonic-gate rctl_local_insert(rctl_hndl_t hndl, rctl_val_t *val, struct proc *p) 17240Sstevel@tonic-gate { 17250Sstevel@tonic-gate return (rctl_local_op(hndl, NULL, val, rctl_local_insert_cb, p)); 17260Sstevel@tonic-gate } 17270Sstevel@tonic-gate 17283684Srd117015 /* 17293684Srd117015 * rctl_local_insert_all_cb() 17303684Srd117015 * 17313684Srd117015 * Overview 17323684Srd117015 * Called for RCENTITY_PROJECT rctls only, via rctlsys_projset(). 17333684Srd117015 * 17343684Srd117015 * Inserts new values from the project database (new_values). alloc_values 17353684Srd117015 * should be a linked list of pre-allocated rctl_val_t, which are used to 17363684Srd117015 * populate (rc_projdb). 17373684Srd117015 * 17383684Srd117015 * Should the *new_values linked list match the contents of the rctl's 17393684Srd117015 * rp_projdb then we do nothing. 17403684Srd117015 * 17413684Srd117015 * Return Values 17423684Srd117015 * 0 is always returned. 17433684Srd117015 */ 17443684Srd117015 /*ARGSUSED*/ 17453684Srd117015 static int 17463684Srd117015 rctl_local_insert_all_cb(rctl_hndl_t hndl, struct proc *p, rctl_entity_p_t *e, 17473684Srd117015 rctl_t *rctl, rctl_val_t *new_values, rctl_val_t *alloc_values) 17483684Srd117015 { 17493684Srd117015 rctl_val_t *val; 17503684Srd117015 rctl_val_t *tmp_val; 17513684Srd117015 rctl_val_t *next; 17523684Srd117015 int modified = 0; 17533684Srd117015 17543684Srd117015 /* 17553684Srd117015 * If this the first time we've set this project rctl, then we delete 17563684Srd117015 * all the privilege values. These privilege values have been set by 17573684Srd117015 * rctl_add_default_limit(). 17583684Srd117015 * 17593684Srd117015 * We save some cycles here by not calling rctl_val_list_delete(). 17603684Srd117015 */ 17613684Srd117015 if (rctl->rc_projdb == NULL) { 17623684Srd117015 val = rctl->rc_values; 17633684Srd117015 17643684Srd117015 while (val != NULL) { 17653684Srd117015 if (val->rcv_privilege == RCPRIV_PRIVILEGED) { 17663684Srd117015 if (val->rcv_prev != NULL) 17673684Srd117015 val->rcv_prev->rcv_next = val->rcv_next; 17683684Srd117015 else 17693684Srd117015 rctl->rc_values = val->rcv_next; 17703684Srd117015 17713684Srd117015 if (val->rcv_next != NULL) 17723684Srd117015 val->rcv_next->rcv_prev = val->rcv_prev; 17733684Srd117015 17743684Srd117015 tmp_val = val; 17753684Srd117015 val = val->rcv_next; 17763684Srd117015 kmem_cache_free(rctl_val_cache, tmp_val); 17773684Srd117015 } else { 17783684Srd117015 val = val->rcv_next; 17793684Srd117015 } 17803684Srd117015 } 17813684Srd117015 modified = 1; 17823684Srd117015 } 17833684Srd117015 17843684Srd117015 /* 17853684Srd117015 * Delete active values previously set through the project database. 17863684Srd117015 */ 17873684Srd117015 val = rctl->rc_projdb; 17883684Srd117015 17893684Srd117015 while (val != NULL) { 17903684Srd117015 17913684Srd117015 /* Is the old value found in the new values? */ 17923684Srd117015 if (rctl_val_list_find(&new_values, val) == NULL) { 17933684Srd117015 17943684Srd117015 /* 17953684Srd117015 * Delete from the active values if it originated from 17963684Srd117015 * the project database. 17973684Srd117015 */ 17983684Srd117015 if (((tmp_val = rctl_val_list_find(&rctl->rc_values, 17993684Srd117015 val)) != NULL) && 18003684Srd117015 (tmp_val->rcv_flagaction & RCTL_LOCAL_PROJDB)) { 18013684Srd117015 (void) rctl_val_list_delete(&rctl->rc_values, 18023684Srd117015 tmp_val); 18033684Srd117015 } 18043684Srd117015 18053684Srd117015 tmp_val = val->rcv_next; 18063684Srd117015 (void) rctl_val_list_delete(&rctl->rc_projdb, val); 18073684Srd117015 val = tmp_val; 18083684Srd117015 modified = 1; 18093684Srd117015 18103684Srd117015 } else 18113684Srd117015 val = val->rcv_next; 18123684Srd117015 } 18133684Srd117015 18143684Srd117015 /* 18153684Srd117015 * Insert new values from the project database. 18163684Srd117015 */ 18173684Srd117015 while (new_values != NULL) { 18183684Srd117015 next = new_values->rcv_next; 18193684Srd117015 18203684Srd117015 /* 18213684Srd117015 * Insert this new value into the rc_projdb, and duplicate this 18223684Srd117015 * entry to the active list. 18233684Srd117015 */ 18243684Srd117015 if (rctl_val_list_insert(&rctl->rc_projdb, new_values) == 0) { 18253684Srd117015 18263684Srd117015 tmp_val = alloc_values->rcv_next; 18273684Srd117015 bcopy(new_values, alloc_values, sizeof (rctl_val_t)); 18283684Srd117015 alloc_values->rcv_next = tmp_val; 18293684Srd117015 18303684Srd117015 if (rctl_val_list_insert(&rctl->rc_values, 1831*7240Srh87107 alloc_values) == 0) { 18323684Srd117015 /* inserted move alloc_values on */ 18333684Srd117015 alloc_values = tmp_val; 18343684Srd117015 modified = 1; 18353684Srd117015 } 18363684Srd117015 } else { 18373684Srd117015 /* 18383684Srd117015 * Unlike setrctl() we don't want to return an error on 18393684Srd117015 * a duplicate entry; we are concerned solely with 18403684Srd117015 * ensuring that all the values specified are set. 18413684Srd117015 */ 18423684Srd117015 kmem_cache_free(rctl_val_cache, new_values); 18433684Srd117015 } 18443684Srd117015 new_values = next; 18453684Srd117015 } 18463684Srd117015 18473684Srd117015 /* Teardown any unused rctl_val_t */ 18483684Srd117015 while (alloc_values != NULL) { 18493684Srd117015 tmp_val = alloc_values; 18503684Srd117015 alloc_values = alloc_values->rcv_next; 18513684Srd117015 kmem_cache_free(rctl_val_cache, tmp_val); 18523684Srd117015 } 18533684Srd117015 18543684Srd117015 /* Reset the cursor if rctl values have been modified */ 18553684Srd117015 if (modified) { 18563684Srd117015 rctl->rc_cursor = rctl->rc_values; 18573684Srd117015 rctl_val_list_reset(rctl->rc_cursor); 18583684Srd117015 RCTLOP_SET(rctl, p, e, rctl_model_value(rctl->rc_dict_entry, p, 18593684Srd117015 rctl->rc_cursor->rcv_value)); 18603684Srd117015 } 18613684Srd117015 18623684Srd117015 return (0); 18633684Srd117015 } 18643684Srd117015 18653684Srd117015 int 18663684Srd117015 rctl_local_insert_all(rctl_hndl_t hndl, rctl_val_t *new_values, 18673684Srd117015 rctl_val_t *alloc_values, struct proc *p) 18683684Srd117015 { 18693684Srd117015 return (rctl_local_op(hndl, new_values, alloc_values, 18703684Srd117015 rctl_local_insert_all_cb, p)); 18713684Srd117015 } 18723684Srd117015 18733684Srd117015 /* 18743684Srd117015 * rctl_local_replace_all_cb() 18753684Srd117015 * 18763684Srd117015 * Overview 18773684Srd117015 * Called for RCENTITY_PROJECT rctls only, via rctlsys_projset(). 18783684Srd117015 * 18793684Srd117015 * Clears the active rctl values (rc_values), and stored values from the 18803684Srd117015 * previous insertions from the project database (rc_projdb). 18813684Srd117015 * 18823684Srd117015 * Inserts new values from the project database (new_values). alloc_values 18833684Srd117015 * should be a linked list of pre-allocated rctl_val_t, which are used to 18843684Srd117015 * populate (rc_projdb). 18853684Srd117015 * 18863684Srd117015 * Return Values 18873684Srd117015 * 0 is always returned. 18883684Srd117015 */ 18893684Srd117015 /*ARGSUSED*/ 18903684Srd117015 static int 18913684Srd117015 rctl_local_replace_all_cb(rctl_hndl_t hndl, struct proc *p, rctl_entity_p_t *e, 18923684Srd117015 rctl_t *rctl, rctl_val_t *new_values, rctl_val_t *alloc_values) 18933684Srd117015 { 18943684Srd117015 rctl_val_t *val; 18953684Srd117015 rctl_val_t *next; 18963684Srd117015 rctl_val_t *tmp_val; 18973684Srd117015 18983684Srd117015 /* Delete all the privilege vaules */ 18993684Srd117015 val = rctl->rc_values; 19003684Srd117015 19013684Srd117015 while (val != NULL) { 19023684Srd117015 if (val->rcv_privilege == RCPRIV_PRIVILEGED) { 19033684Srd117015 if (val->rcv_prev != NULL) 19043684Srd117015 val->rcv_prev->rcv_next = val->rcv_next; 19053684Srd117015 else 19063684Srd117015 rctl->rc_values = val->rcv_next; 19073684Srd117015 19083684Srd117015 if (val->rcv_next != NULL) 19093684Srd117015 val->rcv_next->rcv_prev = val->rcv_prev; 19103684Srd117015 19113684Srd117015 tmp_val = val; 19123684Srd117015 val = val->rcv_next; 19133684Srd117015 kmem_cache_free(rctl_val_cache, tmp_val); 19143684Srd117015 } else { 19153684Srd117015 val = val->rcv_next; 19163684Srd117015 } 19173684Srd117015 } 19183684Srd117015 19193684Srd117015 /* Delete the contents of rc_projdb */ 19203684Srd117015 val = rctl->rc_projdb; 19213684Srd117015 while (val != NULL) { 19223684Srd117015 19233684Srd117015 tmp_val = val; 19243684Srd117015 val = val->rcv_next; 19253684Srd117015 kmem_cache_free(rctl_val_cache, tmp_val); 19263684Srd117015 } 19273684Srd117015 rctl->rc_projdb = NULL; 19283684Srd117015 19293684Srd117015 /* 19303684Srd117015 * Insert new values from the project database. 19313684Srd117015 */ 19323684Srd117015 while (new_values != NULL) { 19333684Srd117015 next = new_values->rcv_next; 19343684Srd117015 19353684Srd117015 if (rctl_val_list_insert(&rctl->rc_projdb, new_values) == 0) { 19363684Srd117015 tmp_val = alloc_values->rcv_next; 19373684Srd117015 bcopy(new_values, alloc_values, sizeof (rctl_val_t)); 19383684Srd117015 alloc_values->rcv_next = tmp_val; 19393684Srd117015 19403684Srd117015 if (rctl_val_list_insert(&rctl->rc_values, 1941*7240Srh87107 alloc_values) == 0) { 19423684Srd117015 /* inserted, so move alloc_values on */ 19433684Srd117015 alloc_values = tmp_val; 19443684Srd117015 } 19453684Srd117015 } else { 19463684Srd117015 /* 19473684Srd117015 * Unlike setrctl() we don't want to return an error on 19483684Srd117015 * a duplicate entry; we are concerned solely with 19493684Srd117015 * ensuring that all the values specified are set. 19503684Srd117015 */ 19513684Srd117015 kmem_cache_free(rctl_val_cache, new_values); 19523684Srd117015 } 19533684Srd117015 19543684Srd117015 new_values = next; 19553684Srd117015 } 19563684Srd117015 19573684Srd117015 /* Teardown any unused rctl_val_t */ 19583684Srd117015 while (alloc_values != NULL) { 19593684Srd117015 tmp_val = alloc_values; 19603684Srd117015 alloc_values = alloc_values->rcv_next; 19613684Srd117015 kmem_cache_free(rctl_val_cache, tmp_val); 19623684Srd117015 } 19633684Srd117015 19643684Srd117015 /* Always reset the cursor */ 19653684Srd117015 rctl->rc_cursor = rctl->rc_values; 19663684Srd117015 rctl_val_list_reset(rctl->rc_cursor); 19673684Srd117015 RCTLOP_SET(rctl, p, e, rctl_model_value(rctl->rc_dict_entry, p, 19683684Srd117015 rctl->rc_cursor->rcv_value)); 19693684Srd117015 19703684Srd117015 return (0); 19713684Srd117015 } 19723684Srd117015 19733684Srd117015 int 19743684Srd117015 rctl_local_replace_all(rctl_hndl_t hndl, rctl_val_t *new_values, 19753684Srd117015 rctl_val_t *alloc_values, struct proc *p) 19763684Srd117015 { 19773684Srd117015 return (rctl_local_op(hndl, new_values, alloc_values, 19783684Srd117015 rctl_local_replace_all_cb, p)); 19793684Srd117015 } 19803684Srd117015 19810Sstevel@tonic-gate static int 19820Sstevel@tonic-gate rctl_local_replace_cb(rctl_hndl_t hndl, struct proc *p, rctl_entity_p_t *e, 19830Sstevel@tonic-gate rctl_t *rctl, rctl_val_t *oval, rctl_val_t *nval) 19840Sstevel@tonic-gate { 19850Sstevel@tonic-gate int ret; 19863251Ssl108498 rctl_val_t *tmp; 19873251Ssl108498 19883251Ssl108498 /* Verify that old will be delete-able */ 19893251Ssl108498 tmp = rctl_val_list_find(&rctl->rc_values, oval); 19903251Ssl108498 if (tmp == NULL) 19913251Ssl108498 return (ESRCH); 19923251Ssl108498 /* 19933251Ssl108498 * Caller should verify that value being deleted is not the 19943251Ssl108498 * system value. 19953251Ssl108498 */ 19963251Ssl108498 ASSERT(tmp->rcv_privilege != RCPRIV_SYSTEM); 19970Sstevel@tonic-gate 19980Sstevel@tonic-gate /* 19990Sstevel@tonic-gate * rctl_local_insert_cb() does the job of flagging an error 20000Sstevel@tonic-gate * for any duplicate values. So, call rctl_local_insert_cb() 20010Sstevel@tonic-gate * for the new value first, then do deletion of the old value. 20020Sstevel@tonic-gate * Since this is a callback function to rctl_local_op, we can 20030Sstevel@tonic-gate * count on rcs_lock being held at this point. This guarantees 20040Sstevel@tonic-gate * that there is at no point a visible list which contains both 20050Sstevel@tonic-gate * new and old values. 20060Sstevel@tonic-gate */ 20070Sstevel@tonic-gate if (ret = rctl_local_insert_cb(hndl, p, e, rctl, NULL, nval)) 20080Sstevel@tonic-gate return (ret); 20090Sstevel@tonic-gate 20103251Ssl108498 ret = rctl_local_delete_cb(hndl, p, e, rctl, NULL, oval); 20113251Ssl108498 ASSERT(ret == 0); 20123251Ssl108498 return (0); 20130Sstevel@tonic-gate } 20140Sstevel@tonic-gate 20150Sstevel@tonic-gate /* 20160Sstevel@tonic-gate * int rctl_local_replace(rctl_hndl_t, void *, int, uint64_t *) 20170Sstevel@tonic-gate * 20180Sstevel@tonic-gate * Overview 20190Sstevel@tonic-gate * Replace the rctl value with a new one. 20200Sstevel@tonic-gate * 20210Sstevel@tonic-gate * Return values 20220Sstevel@tonic-gate * 0 for successful replace, errno otherwise. 20230Sstevel@tonic-gate */ 20240Sstevel@tonic-gate int 20250Sstevel@tonic-gate rctl_local_replace(rctl_hndl_t hndl, rctl_val_t *oval, rctl_val_t *nval, 20260Sstevel@tonic-gate struct proc *p) 20270Sstevel@tonic-gate { 20280Sstevel@tonic-gate return (rctl_local_op(hndl, oval, nval, rctl_local_replace_cb, p)); 20290Sstevel@tonic-gate } 20300Sstevel@tonic-gate 20310Sstevel@tonic-gate /* 20320Sstevel@tonic-gate * int rctl_rlimit_get(rctl_hndl_t, struct proc *, struct rlimit64 *) 20330Sstevel@tonic-gate * 20340Sstevel@tonic-gate * Overview 20350Sstevel@tonic-gate * To support rlimit compatibility, we need a function which takes a 64-bit 20360Sstevel@tonic-gate * rlimit and encodes it as appropriate rcontrol values on the given rcontrol. 20370Sstevel@tonic-gate * This operation is only intended for legacy rlimits. 20380Sstevel@tonic-gate */ 20390Sstevel@tonic-gate int 20400Sstevel@tonic-gate rctl_rlimit_get(rctl_hndl_t rc, struct proc *p, struct rlimit64 *rlp64) 20410Sstevel@tonic-gate { 20420Sstevel@tonic-gate rctl_t *rctl; 20430Sstevel@tonic-gate rctl_val_t *rval; 20440Sstevel@tonic-gate rctl_set_t *rset = p->p_rctls; 20450Sstevel@tonic-gate int soft_limit_seen = 0; 20460Sstevel@tonic-gate int test_for_deny = 1; 20470Sstevel@tonic-gate 20480Sstevel@tonic-gate mutex_enter(&rset->rcs_lock); 20490Sstevel@tonic-gate if (rctl_set_find(rset, rc, &rctl) == -1) { 20500Sstevel@tonic-gate mutex_exit(&rset->rcs_lock); 20510Sstevel@tonic-gate return (-1); 20520Sstevel@tonic-gate } 20530Sstevel@tonic-gate 20540Sstevel@tonic-gate rval = rctl->rc_values; 20550Sstevel@tonic-gate 20560Sstevel@tonic-gate if (rctl->rc_dict_entry->rcd_flagaction & (RCTL_GLOBAL_DENY_NEVER | 20570Sstevel@tonic-gate RCTL_GLOBAL_DENY_ALWAYS)) 20580Sstevel@tonic-gate test_for_deny = 0; 20590Sstevel@tonic-gate 20600Sstevel@tonic-gate /* 20610Sstevel@tonic-gate * 1. Find the first control value with the RCTL_LOCAL_DENY bit set. 20620Sstevel@tonic-gate */ 20630Sstevel@tonic-gate while (rval != NULL && rval->rcv_privilege != RCPRIV_SYSTEM) { 20640Sstevel@tonic-gate if (test_for_deny && 20650Sstevel@tonic-gate (rval->rcv_flagaction & RCTL_LOCAL_DENY) == 0) { 20660Sstevel@tonic-gate rval = rval->rcv_next; 20670Sstevel@tonic-gate continue; 20680Sstevel@tonic-gate } 20690Sstevel@tonic-gate 20700Sstevel@tonic-gate /* 20710Sstevel@tonic-gate * 2. If this is an RCPRIV_BASIC value, then we've found the 20720Sstevel@tonic-gate * effective soft limit and should set rlim_cur. We should then 20730Sstevel@tonic-gate * continue looking for another control value with the DENY bit 20740Sstevel@tonic-gate * set. 20750Sstevel@tonic-gate */ 20760Sstevel@tonic-gate if (rval->rcv_privilege == RCPRIV_BASIC) { 20770Sstevel@tonic-gate if (soft_limit_seen) { 20780Sstevel@tonic-gate rval = rval->rcv_next; 20790Sstevel@tonic-gate continue; 20800Sstevel@tonic-gate } 20810Sstevel@tonic-gate 20820Sstevel@tonic-gate if ((rval->rcv_flagaction & RCTL_LOCAL_MAXIMAL) == 0 && 20830Sstevel@tonic-gate rval->rcv_value < rctl_model_maximum( 20840Sstevel@tonic-gate rctl->rc_dict_entry, p)) 20850Sstevel@tonic-gate rlp64->rlim_cur = rval->rcv_value; 20860Sstevel@tonic-gate else 20870Sstevel@tonic-gate rlp64->rlim_cur = RLIM64_INFINITY; 20880Sstevel@tonic-gate soft_limit_seen = 1; 20890Sstevel@tonic-gate 20900Sstevel@tonic-gate rval = rval->rcv_next; 20910Sstevel@tonic-gate continue; 20920Sstevel@tonic-gate } 20930Sstevel@tonic-gate 20940Sstevel@tonic-gate /* 20950Sstevel@tonic-gate * 3. This is an RCPRIV_PRIVILEGED value. If we haven't found 20960Sstevel@tonic-gate * a soft limit candidate, then we've found the effective hard 20970Sstevel@tonic-gate * and soft limits and should set both If we had found a soft 20980Sstevel@tonic-gate * limit, then this is only the hard limit and we need only set 20990Sstevel@tonic-gate * rlim_max. 21000Sstevel@tonic-gate */ 21010Sstevel@tonic-gate if ((rval->rcv_flagaction & RCTL_LOCAL_MAXIMAL) == 0 && 21020Sstevel@tonic-gate rval->rcv_value < rctl_model_maximum(rctl->rc_dict_entry, 21030Sstevel@tonic-gate p)) 21040Sstevel@tonic-gate rlp64->rlim_max = rval->rcv_value; 21050Sstevel@tonic-gate else 21060Sstevel@tonic-gate rlp64->rlim_max = RLIM64_INFINITY; 21070Sstevel@tonic-gate if (!soft_limit_seen) 21080Sstevel@tonic-gate rlp64->rlim_cur = rlp64->rlim_max; 21090Sstevel@tonic-gate 21100Sstevel@tonic-gate mutex_exit(&rset->rcs_lock); 21110Sstevel@tonic-gate return (0); 21120Sstevel@tonic-gate } 21130Sstevel@tonic-gate 21140Sstevel@tonic-gate if (rval == NULL) { 21150Sstevel@tonic-gate /* 21160Sstevel@tonic-gate * This control sequence is corrupt, as it is not terminated by 21170Sstevel@tonic-gate * a system privileged control value. 21180Sstevel@tonic-gate */ 21190Sstevel@tonic-gate mutex_exit(&rset->rcs_lock); 21200Sstevel@tonic-gate return (-1); 21210Sstevel@tonic-gate } 21220Sstevel@tonic-gate 21230Sstevel@tonic-gate /* 21240Sstevel@tonic-gate * 4. If we run into a RCPRIV_SYSTEM value, then the hard limit (and 21250Sstevel@tonic-gate * the soft, if we haven't a soft candidate) should be the value of the 21260Sstevel@tonic-gate * system control value. 21270Sstevel@tonic-gate */ 21280Sstevel@tonic-gate if ((rval->rcv_flagaction & RCTL_LOCAL_MAXIMAL) == 0 && 21290Sstevel@tonic-gate rval->rcv_value < rctl_model_maximum(rctl->rc_dict_entry, p)) 21300Sstevel@tonic-gate rlp64->rlim_max = rval->rcv_value; 21310Sstevel@tonic-gate else 21320Sstevel@tonic-gate rlp64->rlim_max = RLIM64_INFINITY; 21330Sstevel@tonic-gate 21340Sstevel@tonic-gate if (!soft_limit_seen) 21350Sstevel@tonic-gate rlp64->rlim_cur = rlp64->rlim_max; 21360Sstevel@tonic-gate 21370Sstevel@tonic-gate mutex_exit(&rset->rcs_lock); 21380Sstevel@tonic-gate return (0); 21390Sstevel@tonic-gate } 21400Sstevel@tonic-gate 21410Sstevel@tonic-gate /* 21420Sstevel@tonic-gate * rctl_alloc_gp_t *rctl_rlimit_set_prealloc(uint_t) 21430Sstevel@tonic-gate * 21440Sstevel@tonic-gate * Overview 21450Sstevel@tonic-gate * Before making a series of calls to rctl_rlimit_set(), we must have a 21460Sstevel@tonic-gate * preallocated batch of resource control values, as rctl_rlimit_set() can 21470Sstevel@tonic-gate * potentially consume two resource control values per call. 21480Sstevel@tonic-gate * 21490Sstevel@tonic-gate * Return values 21500Sstevel@tonic-gate * A populated resource control allocation group with 2n resource control 21510Sstevel@tonic-gate * values. 21520Sstevel@tonic-gate * 21530Sstevel@tonic-gate * Caller's context 21540Sstevel@tonic-gate * Must be safe for KM_SLEEP allocations. 21550Sstevel@tonic-gate */ 21560Sstevel@tonic-gate rctl_alloc_gp_t * 21570Sstevel@tonic-gate rctl_rlimit_set_prealloc(uint_t n) 21580Sstevel@tonic-gate { 21590Sstevel@tonic-gate rctl_alloc_gp_t *gp = kmem_zalloc(sizeof (rctl_alloc_gp_t), KM_SLEEP); 21600Sstevel@tonic-gate 21610Sstevel@tonic-gate ASSERT(MUTEX_NOT_HELD(&curproc->p_lock)); 21620Sstevel@tonic-gate 21630Sstevel@tonic-gate gp->rcag_nvals = 2 * n; 21640Sstevel@tonic-gate 21650Sstevel@tonic-gate rctl_gp_alloc(gp); 21660Sstevel@tonic-gate 21670Sstevel@tonic-gate return (gp); 21680Sstevel@tonic-gate } 21690Sstevel@tonic-gate 21700Sstevel@tonic-gate /* 21710Sstevel@tonic-gate * int rctl_rlimit_set(rctl_hndl_t, struct proc *, struct rlimit64 *, int, 21720Sstevel@tonic-gate * int) 21730Sstevel@tonic-gate * 21740Sstevel@tonic-gate * Overview 21750Sstevel@tonic-gate * To support rlimit compatibility, we need a function which takes a 64-bit 21760Sstevel@tonic-gate * rlimit and encodes it as appropriate rcontrol values on the given rcontrol. 21770Sstevel@tonic-gate * This operation is only intended for legacy rlimits. 21780Sstevel@tonic-gate * 21790Sstevel@tonic-gate * The implementation of rctl_rlimit_set() is a bit clever, as it tries to 21800Sstevel@tonic-gate * minimize the number of values placed on the value sequence in various 21810Sstevel@tonic-gate * cases. Furthermore, we don't allow multiple identical privilege-action 21820Sstevel@tonic-gate * values on the same sequence. (That is, we don't want a sequence like 21830Sstevel@tonic-gate * "while (1) { rlim.rlim_cur++; setrlimit(..., rlim); }" to exhaust kernel 21840Sstevel@tonic-gate * memory.) So we want to delete any values with the same privilege value and 21850Sstevel@tonic-gate * action. 21860Sstevel@tonic-gate * 21870Sstevel@tonic-gate * Return values 21880Sstevel@tonic-gate * 0 for successful set, errno otherwise. Errno will be either EINVAL 21890Sstevel@tonic-gate * or EPERM, in keeping with defined errnos for ulimit() and setrlimit() 21900Sstevel@tonic-gate * system calls. 21910Sstevel@tonic-gate */ 21920Sstevel@tonic-gate /*ARGSUSED*/ 21930Sstevel@tonic-gate int 21940Sstevel@tonic-gate rctl_rlimit_set(rctl_hndl_t rc, struct proc *p, struct rlimit64 *rlp64, 21950Sstevel@tonic-gate rctl_alloc_gp_t *ragp, int flagaction, int signal, const cred_t *cr) 21960Sstevel@tonic-gate { 21970Sstevel@tonic-gate rctl_t *rctl; 21980Sstevel@tonic-gate rctl_val_t *rval, *rval_priv, *rval_basic; 21990Sstevel@tonic-gate rctl_set_t *rset = p->p_rctls; 22000Sstevel@tonic-gate rctl_qty_t max; 22010Sstevel@tonic-gate rctl_entity_p_t e; 22020Sstevel@tonic-gate struct rlimit64 cur_rl; 22030Sstevel@tonic-gate 22040Sstevel@tonic-gate e.rcep_t = RCENTITY_PROCESS; 22050Sstevel@tonic-gate e.rcep_p.proc = p; 22060Sstevel@tonic-gate 22070Sstevel@tonic-gate if (rlp64->rlim_cur > rlp64->rlim_max) 22080Sstevel@tonic-gate return (EINVAL); 22090Sstevel@tonic-gate 22100Sstevel@tonic-gate if (rctl_rlimit_get(rc, p, &cur_rl) == -1) 22110Sstevel@tonic-gate return (EINVAL); 22120Sstevel@tonic-gate 22130Sstevel@tonic-gate /* 22140Sstevel@tonic-gate * If we are not privileged, we can only lower the hard limit. 22150Sstevel@tonic-gate */ 22160Sstevel@tonic-gate if ((rlp64->rlim_max > cur_rl.rlim_max) && 22170Sstevel@tonic-gate cur_rl.rlim_max != RLIM64_INFINITY && 22180Sstevel@tonic-gate secpolicy_resource(cr) != 0) 22190Sstevel@tonic-gate return (EPERM); 22200Sstevel@tonic-gate 22210Sstevel@tonic-gate mutex_enter(&rset->rcs_lock); 22220Sstevel@tonic-gate 22230Sstevel@tonic-gate if (rctl_set_find(rset, rc, &rctl) == -1) { 22240Sstevel@tonic-gate mutex_exit(&rset->rcs_lock); 22250Sstevel@tonic-gate return (EINVAL); 22260Sstevel@tonic-gate } 22270Sstevel@tonic-gate 22280Sstevel@tonic-gate rval_priv = rctl_gp_detach_val(ragp); 22290Sstevel@tonic-gate 22300Sstevel@tonic-gate rval = rctl->rc_values; 22310Sstevel@tonic-gate 22320Sstevel@tonic-gate while (rval != NULL) { 22330Sstevel@tonic-gate rctl_val_t *next = rval->rcv_next; 22340Sstevel@tonic-gate 22350Sstevel@tonic-gate if (rval->rcv_privilege == RCPRIV_SYSTEM) 22360Sstevel@tonic-gate break; 22370Sstevel@tonic-gate 22380Sstevel@tonic-gate if ((rval->rcv_privilege == RCPRIV_BASIC) || 22390Sstevel@tonic-gate (rval->rcv_flagaction & ~RCTL_LOCAL_ACTION_MASK) == 22400Sstevel@tonic-gate (flagaction & ~RCTL_LOCAL_ACTION_MASK)) { 22410Sstevel@tonic-gate if (rctl->rc_cursor == rval) { 22420Sstevel@tonic-gate rctl->rc_cursor = rval->rcv_next; 22430Sstevel@tonic-gate rctl_val_list_reset(rctl->rc_cursor); 22440Sstevel@tonic-gate RCTLOP_SET(rctl, p, &e, rctl_model_value( 22450Sstevel@tonic-gate rctl->rc_dict_entry, p, 22460Sstevel@tonic-gate rctl->rc_cursor->rcv_value)); 22470Sstevel@tonic-gate } 22480Sstevel@tonic-gate (void) rctl_val_list_delete(&rctl->rc_values, rval); 22490Sstevel@tonic-gate } 22500Sstevel@tonic-gate 22510Sstevel@tonic-gate rval = next; 22520Sstevel@tonic-gate } 22530Sstevel@tonic-gate 22540Sstevel@tonic-gate rval_priv->rcv_privilege = RCPRIV_PRIVILEGED; 22550Sstevel@tonic-gate rval_priv->rcv_flagaction = flagaction; 22560Sstevel@tonic-gate if (rlp64->rlim_max == RLIM64_INFINITY) { 22570Sstevel@tonic-gate rval_priv->rcv_flagaction |= RCTL_LOCAL_MAXIMAL; 22580Sstevel@tonic-gate max = rctl->rc_dict_entry->rcd_max_native; 22590Sstevel@tonic-gate } else { 22600Sstevel@tonic-gate max = rlp64->rlim_max; 22610Sstevel@tonic-gate } 22620Sstevel@tonic-gate rval_priv->rcv_value = max; 22630Sstevel@tonic-gate rval_priv->rcv_action_signal = signal; 22640Sstevel@tonic-gate rval_priv->rcv_action_recipient = NULL; 22650Sstevel@tonic-gate rval_priv->rcv_action_recip_pid = -1; 22660Sstevel@tonic-gate rval_priv->rcv_firing_time = 0; 22670Sstevel@tonic-gate rval_priv->rcv_prev = rval_priv->rcv_next = NULL; 22680Sstevel@tonic-gate 22690Sstevel@tonic-gate (void) rctl_val_list_insert(&rctl->rc_values, rval_priv); 22700Sstevel@tonic-gate rctl->rc_cursor = rval_priv; 22710Sstevel@tonic-gate rctl_val_list_reset(rctl->rc_cursor); 22720Sstevel@tonic-gate RCTLOP_SET(rctl, p, &e, rctl_model_value(rctl->rc_dict_entry, p, 22730Sstevel@tonic-gate rctl->rc_cursor->rcv_value)); 22740Sstevel@tonic-gate 22750Sstevel@tonic-gate if (rlp64->rlim_cur != RLIM64_INFINITY && rlp64->rlim_cur < max) { 22760Sstevel@tonic-gate rval_basic = rctl_gp_detach_val(ragp); 22770Sstevel@tonic-gate 22780Sstevel@tonic-gate rval_basic->rcv_privilege = RCPRIV_BASIC; 22790Sstevel@tonic-gate rval_basic->rcv_value = rlp64->rlim_cur; 22800Sstevel@tonic-gate rval_basic->rcv_flagaction = flagaction; 22810Sstevel@tonic-gate rval_basic->rcv_action_signal = signal; 22820Sstevel@tonic-gate rval_basic->rcv_action_recipient = p; 22830Sstevel@tonic-gate rval_basic->rcv_action_recip_pid = p->p_pid; 22840Sstevel@tonic-gate rval_basic->rcv_firing_time = 0; 22850Sstevel@tonic-gate rval_basic->rcv_prev = rval_basic->rcv_next = NULL; 22860Sstevel@tonic-gate 22870Sstevel@tonic-gate (void) rctl_val_list_insert(&rctl->rc_values, rval_basic); 22880Sstevel@tonic-gate rctl->rc_cursor = rval_basic; 22890Sstevel@tonic-gate rctl_val_list_reset(rctl->rc_cursor); 22900Sstevel@tonic-gate RCTLOP_SET(rctl, p, &e, rctl_model_value(rctl->rc_dict_entry, p, 22910Sstevel@tonic-gate rctl->rc_cursor->rcv_value)); 22920Sstevel@tonic-gate } 22930Sstevel@tonic-gate 22940Sstevel@tonic-gate ASSERT(rctl->rc_cursor != NULL); 22950Sstevel@tonic-gate 22960Sstevel@tonic-gate mutex_exit(&rset->rcs_lock); 22970Sstevel@tonic-gate return (0); 22980Sstevel@tonic-gate } 22990Sstevel@tonic-gate 23000Sstevel@tonic-gate 23010Sstevel@tonic-gate /* 23020Sstevel@tonic-gate * rctl_hndl_t rctl_register(const char *, rctl_entity_t, int, rlim64_t, 23030Sstevel@tonic-gate * rlim64_t, rctl_ops_t *) 23040Sstevel@tonic-gate * 23050Sstevel@tonic-gate * Overview 23060Sstevel@tonic-gate * rctl_register() performs a look-up in the dictionary of rctls 23070Sstevel@tonic-gate * active on the system; if a rctl of that name is absent, an entry is 23080Sstevel@tonic-gate * made into the dictionary. The rctl is returned with its reference 23090Sstevel@tonic-gate * count incremented by one. If the rctl name already exists, we panic. 23100Sstevel@tonic-gate * (Were the resource control system to support dynamic loading and unloading, 23110Sstevel@tonic-gate * which it is structured for, duplicate registration should lead to load 23120Sstevel@tonic-gate * failure instead of panicking.) 23130Sstevel@tonic-gate * 23140Sstevel@tonic-gate * Each registered rctl has a requirement that a RCPRIV_SYSTEM limit be 23150Sstevel@tonic-gate * defined. This limit contains the highest possible value for this quantity 23160Sstevel@tonic-gate * on the system. Furthermore, the registered control must provide infinite 23170Sstevel@tonic-gate * values for all applicable address space models supported by the operating 23180Sstevel@tonic-gate * system. Attempts to set resource control values beyond the system limit 23190Sstevel@tonic-gate * will fail. 23200Sstevel@tonic-gate * 23210Sstevel@tonic-gate * Return values 23220Sstevel@tonic-gate * The rctl's ID. 23230Sstevel@tonic-gate * 23240Sstevel@tonic-gate * Caller's context 23250Sstevel@tonic-gate * Caller must be in a context suitable for KM_SLEEP allocations. 23260Sstevel@tonic-gate */ 23270Sstevel@tonic-gate rctl_hndl_t 23280Sstevel@tonic-gate rctl_register( 23290Sstevel@tonic-gate const char *name, 23300Sstevel@tonic-gate rctl_entity_t entity, 23310Sstevel@tonic-gate int global_flags, 23320Sstevel@tonic-gate rlim64_t max_native, 23330Sstevel@tonic-gate rlim64_t max_ilp32, 23340Sstevel@tonic-gate rctl_ops_t *ops) 23350Sstevel@tonic-gate { 23360Sstevel@tonic-gate rctl_t *rctl = kmem_cache_alloc(rctl_cache, KM_SLEEP); 23370Sstevel@tonic-gate rctl_val_t *rctl_val = kmem_cache_alloc(rctl_val_cache, KM_SLEEP); 23380Sstevel@tonic-gate rctl_dict_entry_t *rctl_de = kmem_zalloc(sizeof (rctl_dict_entry_t), 23390Sstevel@tonic-gate KM_SLEEP); 23400Sstevel@tonic-gate rctl_t *old_rctl; 23410Sstevel@tonic-gate rctl_hndl_t rhndl; 23420Sstevel@tonic-gate int localflags; 23430Sstevel@tonic-gate 23440Sstevel@tonic-gate ASSERT(ops != NULL); 23450Sstevel@tonic-gate 23460Sstevel@tonic-gate bzero(rctl, sizeof (rctl_t)); 23470Sstevel@tonic-gate bzero(rctl_val, sizeof (rctl_val_t)); 23480Sstevel@tonic-gate 23490Sstevel@tonic-gate if (global_flags & RCTL_GLOBAL_DENY_NEVER) 23500Sstevel@tonic-gate localflags = RCTL_LOCAL_MAXIMAL; 23510Sstevel@tonic-gate else 23520Sstevel@tonic-gate localflags = RCTL_LOCAL_MAXIMAL | RCTL_LOCAL_DENY; 23530Sstevel@tonic-gate 23540Sstevel@tonic-gate rctl_val->rcv_privilege = RCPRIV_SYSTEM; 23550Sstevel@tonic-gate rctl_val->rcv_value = max_native; 23560Sstevel@tonic-gate rctl_val->rcv_flagaction = localflags; 23570Sstevel@tonic-gate rctl_val->rcv_action_signal = 0; 23580Sstevel@tonic-gate rctl_val->rcv_action_recipient = NULL; 23590Sstevel@tonic-gate rctl_val->rcv_action_recip_pid = -1; 23600Sstevel@tonic-gate rctl_val->rcv_firing_time = 0; 23610Sstevel@tonic-gate rctl_val->rcv_next = NULL; 23620Sstevel@tonic-gate rctl_val->rcv_prev = NULL; 23630Sstevel@tonic-gate 23640Sstevel@tonic-gate rctl_de->rcd_name = (char *)name; 23650Sstevel@tonic-gate rctl_de->rcd_default_value = rctl_val; 23660Sstevel@tonic-gate rctl_de->rcd_max_native = max_native; 23670Sstevel@tonic-gate rctl_de->rcd_max_ilp32 = max_ilp32; 23680Sstevel@tonic-gate rctl_de->rcd_entity = entity; 23690Sstevel@tonic-gate rctl_de->rcd_ops = ops; 23700Sstevel@tonic-gate rctl_de->rcd_flagaction = global_flags; 23710Sstevel@tonic-gate 23720Sstevel@tonic-gate rctl->rc_dict_entry = rctl_de; 23730Sstevel@tonic-gate rctl->rc_values = rctl_val; 23740Sstevel@tonic-gate 23750Sstevel@tonic-gate /* 23760Sstevel@tonic-gate * 1. Take global lock, validate nonexistence of name, get ID. 23770Sstevel@tonic-gate */ 23780Sstevel@tonic-gate mutex_enter(&rctl_dict_lock); 23790Sstevel@tonic-gate 23800Sstevel@tonic-gate if (mod_hash_find(rctl_dict_by_name, (mod_hash_key_t)name, 23810Sstevel@tonic-gate (mod_hash_val_t *)&rhndl) != MH_ERR_NOTFOUND) 23820Sstevel@tonic-gate panic("duplicate registration of rctl %s", name); 23830Sstevel@tonic-gate 23840Sstevel@tonic-gate rhndl = rctl_de->rcd_id = rctl->rc_id = 23850Sstevel@tonic-gate (rctl_hndl_t)id_alloc(rctl_ids); 23860Sstevel@tonic-gate 23870Sstevel@tonic-gate /* 23880Sstevel@tonic-gate * 2. Insert name-entry pair in rctl_dict_by_name. 23890Sstevel@tonic-gate */ 23900Sstevel@tonic-gate if (mod_hash_insert(rctl_dict_by_name, (mod_hash_key_t)name, 23910Sstevel@tonic-gate (mod_hash_val_t)rctl_de)) 23920Sstevel@tonic-gate panic("unable to insert rctl dict entry for %s (%u)", name, 23930Sstevel@tonic-gate (uint_t)rctl->rc_id); 23940Sstevel@tonic-gate 23950Sstevel@tonic-gate /* 23960Sstevel@tonic-gate * 3. Insert ID-rctl_t * pair in rctl_dict. 23970Sstevel@tonic-gate */ 23980Sstevel@tonic-gate if (mod_hash_find(rctl_dict, (mod_hash_key_t)(uintptr_t)rctl->rc_id, 23990Sstevel@tonic-gate (mod_hash_val_t *)&old_rctl) != MH_ERR_NOTFOUND) 24000Sstevel@tonic-gate panic("duplicate rctl ID %u registered", rctl->rc_id); 24010Sstevel@tonic-gate 24020Sstevel@tonic-gate if (mod_hash_insert(rctl_dict, (mod_hash_key_t)(uintptr_t)rctl->rc_id, 24030Sstevel@tonic-gate (mod_hash_val_t)rctl)) 24040Sstevel@tonic-gate panic("unable to insert rctl %s/%u (%p)", name, 2405*7240Srh87107 (uint_t)rctl->rc_id, (void *)rctl); 24060Sstevel@tonic-gate 24070Sstevel@tonic-gate /* 24080Sstevel@tonic-gate * 3a. Insert rctl_dict_entry_t * in appropriate entity list. 24090Sstevel@tonic-gate */ 24100Sstevel@tonic-gate 24110Sstevel@tonic-gate mutex_enter(&rctl_lists_lock); 24120Sstevel@tonic-gate 24130Sstevel@tonic-gate switch (entity) { 24140Sstevel@tonic-gate case RCENTITY_ZONE: 24150Sstevel@tonic-gate case RCENTITY_PROJECT: 24160Sstevel@tonic-gate case RCENTITY_TASK: 24170Sstevel@tonic-gate case RCENTITY_PROCESS: 24180Sstevel@tonic-gate rctl_de->rcd_next = rctl_lists[entity]; 24190Sstevel@tonic-gate rctl_lists[entity] = rctl_de; 24200Sstevel@tonic-gate break; 24210Sstevel@tonic-gate default: 24220Sstevel@tonic-gate panic("registering unknown rctl entity %d (%s)", entity, 24230Sstevel@tonic-gate name); 24240Sstevel@tonic-gate break; 24250Sstevel@tonic-gate } 24260Sstevel@tonic-gate 24270Sstevel@tonic-gate mutex_exit(&rctl_lists_lock); 24280Sstevel@tonic-gate 24290Sstevel@tonic-gate /* 24300Sstevel@tonic-gate * 4. Drop lock. 24310Sstevel@tonic-gate */ 24320Sstevel@tonic-gate mutex_exit(&rctl_dict_lock); 24330Sstevel@tonic-gate 24340Sstevel@tonic-gate return (rhndl); 24350Sstevel@tonic-gate } 24360Sstevel@tonic-gate 24370Sstevel@tonic-gate /* 24380Sstevel@tonic-gate * static int rctl_global_action(rctl_t *r, rctl_set_t *rset, struct proc *p, 24390Sstevel@tonic-gate * rctl_val_t *v) 24400Sstevel@tonic-gate * 24410Sstevel@tonic-gate * Overview 24420Sstevel@tonic-gate * rctl_global_action() takes, in according with the flags on the rctl_dict 24430Sstevel@tonic-gate * entry for the given control, the appropriate actions on the exceeded 24440Sstevel@tonic-gate * control value. Additionally, rctl_global_action() updates the firing time 24450Sstevel@tonic-gate * on the exceeded value. 24460Sstevel@tonic-gate * 24470Sstevel@tonic-gate * Return values 24480Sstevel@tonic-gate * A bitmask reflecting the actions actually taken. 24490Sstevel@tonic-gate * 24500Sstevel@tonic-gate * Caller's context 24510Sstevel@tonic-gate * No restrictions on context. 24520Sstevel@tonic-gate */ 24530Sstevel@tonic-gate /*ARGSUSED*/ 24540Sstevel@tonic-gate static int 24550Sstevel@tonic-gate rctl_global_action(rctl_t *r, rctl_set_t *rset, struct proc *p, rctl_val_t *v) 24560Sstevel@tonic-gate { 24570Sstevel@tonic-gate rctl_dict_entry_t *rde = r->rc_dict_entry; 24582447Snf202958 const char *pr, *en, *idstr; 24590Sstevel@tonic-gate id_t id; 24602447Snf202958 enum { 24612447Snf202958 SUFFIX_NONE, /* id consumed directly */ 24622447Snf202958 SUFFIX_NUMERIC, /* id consumed in suffix */ 24632447Snf202958 SUFFIX_STRING /* idstr consumed in suffix */ 24642447Snf202958 } suffix = SUFFIX_NONE; 24650Sstevel@tonic-gate int ret = 0; 24660Sstevel@tonic-gate 24670Sstevel@tonic-gate v->rcv_firing_time = gethrtime(); 24680Sstevel@tonic-gate 24690Sstevel@tonic-gate switch (v->rcv_privilege) { 24700Sstevel@tonic-gate case RCPRIV_BASIC: 24710Sstevel@tonic-gate pr = "basic"; 24720Sstevel@tonic-gate break; 24730Sstevel@tonic-gate case RCPRIV_PRIVILEGED: 24740Sstevel@tonic-gate pr = "privileged"; 24750Sstevel@tonic-gate break; 24760Sstevel@tonic-gate case RCPRIV_SYSTEM: 24770Sstevel@tonic-gate pr = "system"; 24780Sstevel@tonic-gate break; 24790Sstevel@tonic-gate default: 24800Sstevel@tonic-gate pr = "unknown"; 24810Sstevel@tonic-gate break; 24820Sstevel@tonic-gate } 24830Sstevel@tonic-gate 24840Sstevel@tonic-gate switch (rde->rcd_entity) { 24850Sstevel@tonic-gate case RCENTITY_PROCESS: 24860Sstevel@tonic-gate en = "process"; 24870Sstevel@tonic-gate id = p->p_pid; 24882447Snf202958 suffix = SUFFIX_NONE; 24890Sstevel@tonic-gate break; 24900Sstevel@tonic-gate case RCENTITY_TASK: 24910Sstevel@tonic-gate en = "task"; 24920Sstevel@tonic-gate id = p->p_task->tk_tkid; 24932447Snf202958 suffix = SUFFIX_NUMERIC; 24940Sstevel@tonic-gate break; 24950Sstevel@tonic-gate case RCENTITY_PROJECT: 24960Sstevel@tonic-gate en = "project"; 24970Sstevel@tonic-gate id = p->p_task->tk_proj->kpj_id; 24982447Snf202958 suffix = SUFFIX_NUMERIC; 24990Sstevel@tonic-gate break; 25000Sstevel@tonic-gate case RCENTITY_ZONE: 25010Sstevel@tonic-gate en = "zone"; 25022447Snf202958 idstr = p->p_zone->zone_name; 25032447Snf202958 suffix = SUFFIX_STRING; 25040Sstevel@tonic-gate break; 25050Sstevel@tonic-gate default: 25062447Snf202958 en = "unknown entity associated with process"; 25070Sstevel@tonic-gate id = p->p_pid; 25082447Snf202958 suffix = SUFFIX_NONE; 25090Sstevel@tonic-gate break; 25100Sstevel@tonic-gate } 25110Sstevel@tonic-gate 25120Sstevel@tonic-gate if (rde->rcd_flagaction & RCTL_GLOBAL_SYSLOG) { 25132447Snf202958 switch (suffix) { 25142447Snf202958 default: 25152447Snf202958 case SUFFIX_NONE: 25162447Snf202958 (void) strlog(0, 0, 0, 25172447Snf202958 rde->rcd_strlog_flags | log_global.lz_active, 25182447Snf202958 "%s rctl %s (value %llu) exceeded by %s %d.", 25192447Snf202958 pr, rde->rcd_name, v->rcv_value, en, id); 25202447Snf202958 break; 25212447Snf202958 case SUFFIX_NUMERIC: 25222447Snf202958 (void) strlog(0, 0, 0, 25232447Snf202958 rde->rcd_strlog_flags | log_global.lz_active, 25242447Snf202958 "%s rctl %s (value %llu) exceeded by process %d" 25252447Snf202958 " in %s %d.", 25262447Snf202958 pr, rde->rcd_name, v->rcv_value, p->p_pid, 25272447Snf202958 en, id); 25282447Snf202958 break; 25292447Snf202958 case SUFFIX_STRING: 25302447Snf202958 (void) strlog(0, 0, 0, 25312447Snf202958 rde->rcd_strlog_flags | log_global.lz_active, 25322447Snf202958 "%s rctl %s (value %llu) exceeded by process %d" 25332447Snf202958 " in %s %s.", 25342447Snf202958 pr, rde->rcd_name, v->rcv_value, p->p_pid, 25352447Snf202958 en, idstr); 25362447Snf202958 break; 25372447Snf202958 } 25380Sstevel@tonic-gate } 25390Sstevel@tonic-gate 25400Sstevel@tonic-gate if (rde->rcd_flagaction & RCTL_GLOBAL_DENY_ALWAYS) 25410Sstevel@tonic-gate ret |= RCT_DENY; 25420Sstevel@tonic-gate 25430Sstevel@tonic-gate return (ret); 25440Sstevel@tonic-gate } 25450Sstevel@tonic-gate 25460Sstevel@tonic-gate static int 25470Sstevel@tonic-gate rctl_local_action(rctl_t *r, rctl_set_t *rset, struct proc *p, rctl_val_t *v, 25480Sstevel@tonic-gate uint_t safety) 25490Sstevel@tonic-gate { 25500Sstevel@tonic-gate int ret = 0; 25510Sstevel@tonic-gate sigqueue_t *sqp = NULL; 25520Sstevel@tonic-gate rctl_dict_entry_t *rde = r->rc_dict_entry; 25530Sstevel@tonic-gate int unobservable = (rde->rcd_flagaction & RCTL_GLOBAL_UNOBSERVABLE); 25540Sstevel@tonic-gate 25550Sstevel@tonic-gate proc_t *recipient = v->rcv_action_recipient; 25560Sstevel@tonic-gate id_t recip_pid = v->rcv_action_recip_pid; 25570Sstevel@tonic-gate int recip_signal = v->rcv_action_signal; 25580Sstevel@tonic-gate uint_t flagaction = v->rcv_flagaction; 25590Sstevel@tonic-gate 25600Sstevel@tonic-gate if (safety == RCA_UNSAFE_ALL) { 25610Sstevel@tonic-gate if (flagaction & RCTL_LOCAL_DENY) { 25620Sstevel@tonic-gate ret |= RCT_DENY; 25630Sstevel@tonic-gate } 25640Sstevel@tonic-gate return (ret); 25650Sstevel@tonic-gate } 25660Sstevel@tonic-gate 25670Sstevel@tonic-gate if (flagaction & RCTL_LOCAL_SIGNAL) { 25680Sstevel@tonic-gate /* 25690Sstevel@tonic-gate * We can build a siginfo only in the case that it is 25700Sstevel@tonic-gate * safe for us to drop p_lock. (For asynchronous 25710Sstevel@tonic-gate * checks this is currently not true.) 25720Sstevel@tonic-gate */ 25730Sstevel@tonic-gate if (safety == RCA_SAFE) { 25740Sstevel@tonic-gate mutex_exit(&rset->rcs_lock); 25750Sstevel@tonic-gate mutex_exit(&p->p_lock); 25760Sstevel@tonic-gate sqp = kmem_zalloc(sizeof (sigqueue_t), KM_SLEEP); 25770Sstevel@tonic-gate mutex_enter(&p->p_lock); 25780Sstevel@tonic-gate mutex_enter(&rset->rcs_lock); 25790Sstevel@tonic-gate 25800Sstevel@tonic-gate sqp->sq_info.si_signo = recip_signal; 25810Sstevel@tonic-gate sqp->sq_info.si_code = SI_RCTL; 25820Sstevel@tonic-gate sqp->sq_info.si_errno = 0; 25830Sstevel@tonic-gate sqp->sq_info.si_entity = (int)rde->rcd_entity; 25840Sstevel@tonic-gate } 25850Sstevel@tonic-gate 25860Sstevel@tonic-gate if (recipient == NULL || recipient == p) { 25870Sstevel@tonic-gate ret |= RCT_SIGNAL; 25880Sstevel@tonic-gate 25890Sstevel@tonic-gate if (sqp == NULL) { 25900Sstevel@tonic-gate sigtoproc(p, NULL, recip_signal); 25910Sstevel@tonic-gate } else if (p == curproc) { 25920Sstevel@tonic-gate /* 25930Sstevel@tonic-gate * Then this is a synchronous test and we can 25940Sstevel@tonic-gate * direct the signal at the violating thread. 25950Sstevel@tonic-gate */ 25960Sstevel@tonic-gate sigaddqa(curproc, curthread, sqp); 25970Sstevel@tonic-gate } else { 25980Sstevel@tonic-gate sigaddqa(p, NULL, sqp); 25990Sstevel@tonic-gate } 26000Sstevel@tonic-gate } else if (!unobservable) { 26010Sstevel@tonic-gate proc_t *rp; 26020Sstevel@tonic-gate 26030Sstevel@tonic-gate mutex_exit(&rset->rcs_lock); 26040Sstevel@tonic-gate mutex_exit(&p->p_lock); 26050Sstevel@tonic-gate 26060Sstevel@tonic-gate mutex_enter(&pidlock); 26070Sstevel@tonic-gate if ((rp = prfind(recip_pid)) == recipient) { 26080Sstevel@tonic-gate /* 26090Sstevel@tonic-gate * Recipient process is still alive, but may not 26100Sstevel@tonic-gate * be in this task or project any longer. In 26110Sstevel@tonic-gate * this case, the recipient's resource control 26120Sstevel@tonic-gate * set pertinent to this control will have 26130Sstevel@tonic-gate * changed--and we will not deliver the signal, 26140Sstevel@tonic-gate * as the recipient process is trying to tear 26150Sstevel@tonic-gate * itself off of its former set. 26160Sstevel@tonic-gate */ 26170Sstevel@tonic-gate mutex_enter(&rp->p_lock); 26180Sstevel@tonic-gate mutex_exit(&pidlock); 26190Sstevel@tonic-gate 26200Sstevel@tonic-gate if (rctl_entity_obtain_rset(rde, rp) == rset) { 26210Sstevel@tonic-gate ret |= RCT_SIGNAL; 26220Sstevel@tonic-gate 26230Sstevel@tonic-gate if (sqp == NULL) 26240Sstevel@tonic-gate sigtoproc(rp, NULL, 26250Sstevel@tonic-gate recip_signal); 26260Sstevel@tonic-gate else 26270Sstevel@tonic-gate sigaddqa(rp, NULL, sqp); 26280Sstevel@tonic-gate } else if (sqp) { 26290Sstevel@tonic-gate kmem_free(sqp, sizeof (sigqueue_t)); 26300Sstevel@tonic-gate } 26310Sstevel@tonic-gate mutex_exit(&rp->p_lock); 26320Sstevel@tonic-gate } else { 26330Sstevel@tonic-gate mutex_exit(&pidlock); 26340Sstevel@tonic-gate if (sqp) 26350Sstevel@tonic-gate kmem_free(sqp, sizeof (sigqueue_t)); 26360Sstevel@tonic-gate } 26370Sstevel@tonic-gate 26380Sstevel@tonic-gate mutex_enter(&p->p_lock); 26390Sstevel@tonic-gate /* 26400Sstevel@tonic-gate * Since we dropped p_lock, we may no longer be in the 26410Sstevel@tonic-gate * same task or project as we were at entry. It is thus 26420Sstevel@tonic-gate * unsafe for us to reacquire the set lock at this 26430Sstevel@tonic-gate * point; callers of rctl_local_action() must handle 26440Sstevel@tonic-gate * this possibility. 26450Sstevel@tonic-gate */ 26460Sstevel@tonic-gate ret |= RCT_LK_ABANDONED; 26470Sstevel@tonic-gate } else if (sqp) { 26480Sstevel@tonic-gate kmem_free(sqp, sizeof (sigqueue_t)); 26490Sstevel@tonic-gate } 26500Sstevel@tonic-gate } 26510Sstevel@tonic-gate 26520Sstevel@tonic-gate if ((flagaction & RCTL_LOCAL_DENY) && 26530Sstevel@tonic-gate (recipient == NULL || recipient == p)) { 26540Sstevel@tonic-gate ret |= RCT_DENY; 26550Sstevel@tonic-gate } 26560Sstevel@tonic-gate 26570Sstevel@tonic-gate return (ret); 26580Sstevel@tonic-gate } 26590Sstevel@tonic-gate 26600Sstevel@tonic-gate /* 26610Sstevel@tonic-gate * int rctl_action(rctl_hndl_t, rctl_set_t *, struct proc *, uint_t) 26620Sstevel@tonic-gate * 26630Sstevel@tonic-gate * Overview 26640Sstevel@tonic-gate * Take the action associated with the enforced value (as defined by 26650Sstevel@tonic-gate * rctl_get_enforced_value()) being exceeded or encountered. Possibly perform 26660Sstevel@tonic-gate * a restricted subset of the available actions, if circumstances dictate that 26670Sstevel@tonic-gate * we cannot safely allocate memory (for a sigqueue_t) or guarantee process 26680Sstevel@tonic-gate * persistence across the duration of the function (an asynchronous action). 26690Sstevel@tonic-gate * 26700Sstevel@tonic-gate * Return values 26710Sstevel@tonic-gate * Actions taken, according to the rctl_test bitmask. 26720Sstevel@tonic-gate * 26730Sstevel@tonic-gate * Caller's context 26740Sstevel@tonic-gate * Safe to acquire rcs_lock. 26750Sstevel@tonic-gate */ 26760Sstevel@tonic-gate int 26770Sstevel@tonic-gate rctl_action(rctl_hndl_t hndl, rctl_set_t *rset, struct proc *p, uint_t safety) 26780Sstevel@tonic-gate { 26790Sstevel@tonic-gate return (rctl_action_entity(hndl, rset, p, NULL, safety)); 26800Sstevel@tonic-gate } 26810Sstevel@tonic-gate 26820Sstevel@tonic-gate int 26830Sstevel@tonic-gate rctl_action_entity(rctl_hndl_t hndl, rctl_set_t *rset, struct proc *p, 26840Sstevel@tonic-gate rctl_entity_p_t *e, uint_t safety) 26850Sstevel@tonic-gate { 26860Sstevel@tonic-gate int ret = RCT_NONE; 26870Sstevel@tonic-gate rctl_t *lrctl; 26880Sstevel@tonic-gate rctl_entity_p_t e_tmp; 26890Sstevel@tonic-gate 26900Sstevel@tonic-gate rctl_action_acquire: 26910Sstevel@tonic-gate mutex_enter(&rset->rcs_lock); 26920Sstevel@tonic-gate if (rctl_set_find(rset, hndl, &lrctl) == -1) { 26930Sstevel@tonic-gate mutex_exit(&rset->rcs_lock); 26940Sstevel@tonic-gate return (ret); 26950Sstevel@tonic-gate } 26960Sstevel@tonic-gate 26970Sstevel@tonic-gate if (e == NULL) { 26980Sstevel@tonic-gate rctl_entity_obtain_entity_p(lrctl->rc_dict_entry->rcd_entity, 2699*7240Srh87107 p, &e_tmp); 27000Sstevel@tonic-gate e = &e_tmp; 27010Sstevel@tonic-gate } 27020Sstevel@tonic-gate 27030Sstevel@tonic-gate if ((ret & RCT_LK_ABANDONED) == 0) { 27040Sstevel@tonic-gate ret |= rctl_global_action(lrctl, rset, p, lrctl->rc_cursor); 27050Sstevel@tonic-gate 27060Sstevel@tonic-gate RCTLOP_ACTION(lrctl, p, e); 27070Sstevel@tonic-gate 27080Sstevel@tonic-gate ret |= rctl_local_action(lrctl, rset, p, 27090Sstevel@tonic-gate lrctl->rc_cursor, safety); 27100Sstevel@tonic-gate 27110Sstevel@tonic-gate if (ret & RCT_LK_ABANDONED) 27120Sstevel@tonic-gate goto rctl_action_acquire; 27130Sstevel@tonic-gate } 27140Sstevel@tonic-gate 27150Sstevel@tonic-gate ret &= ~RCT_LK_ABANDONED; 27160Sstevel@tonic-gate 27170Sstevel@tonic-gate if (!(ret & RCT_DENY) && 27180Sstevel@tonic-gate lrctl->rc_cursor->rcv_next != NULL) { 27190Sstevel@tonic-gate lrctl->rc_cursor = lrctl->rc_cursor->rcv_next; 27200Sstevel@tonic-gate 27210Sstevel@tonic-gate RCTLOP_SET(lrctl, p, e, rctl_model_value(lrctl->rc_dict_entry, 27220Sstevel@tonic-gate p, lrctl->rc_cursor->rcv_value)); 27230Sstevel@tonic-gate 27240Sstevel@tonic-gate } 27250Sstevel@tonic-gate mutex_exit(&rset->rcs_lock); 27260Sstevel@tonic-gate 27270Sstevel@tonic-gate return (ret); 27280Sstevel@tonic-gate } 27290Sstevel@tonic-gate 27300Sstevel@tonic-gate /* 27310Sstevel@tonic-gate * int rctl_test(rctl_hndl_t, rctl_set_t *, struct proc *, rctl_qty_t, uint_t) 27320Sstevel@tonic-gate * 27330Sstevel@tonic-gate * Overview 27340Sstevel@tonic-gate * Increment the resource associated with the given handle, returning zero if 27350Sstevel@tonic-gate * the incremented value does not exceed the threshold for the current limit 27360Sstevel@tonic-gate * on the resource. 27370Sstevel@tonic-gate * 27380Sstevel@tonic-gate * Return values 27390Sstevel@tonic-gate * Actions taken, according to the rctl_test bitmask. 27400Sstevel@tonic-gate * 27410Sstevel@tonic-gate * Caller's context 27420Sstevel@tonic-gate * p_lock held by caller. 27430Sstevel@tonic-gate */ 27440Sstevel@tonic-gate /*ARGSUSED*/ 27450Sstevel@tonic-gate int 27460Sstevel@tonic-gate rctl_test(rctl_hndl_t rhndl, rctl_set_t *rset, struct proc *p, 27470Sstevel@tonic-gate rctl_qty_t incr, uint_t flags) 27480Sstevel@tonic-gate { 27490Sstevel@tonic-gate return (rctl_test_entity(rhndl, rset, p, NULL, incr, flags)); 27500Sstevel@tonic-gate } 27510Sstevel@tonic-gate 27520Sstevel@tonic-gate int 27530Sstevel@tonic-gate rctl_test_entity(rctl_hndl_t rhndl, rctl_set_t *rset, struct proc *p, 27540Sstevel@tonic-gate rctl_entity_p_t *e, rctl_qty_t incr, uint_t flags) 27550Sstevel@tonic-gate { 27560Sstevel@tonic-gate rctl_t *lrctl; 27570Sstevel@tonic-gate int ret = RCT_NONE; 27580Sstevel@tonic-gate rctl_entity_p_t e_tmp; 27590Sstevel@tonic-gate if (p == &p0) { 27600Sstevel@tonic-gate /* 27610Sstevel@tonic-gate * We don't enforce rctls on the kernel itself. 27620Sstevel@tonic-gate */ 27630Sstevel@tonic-gate return (ret); 27640Sstevel@tonic-gate } 27650Sstevel@tonic-gate 27660Sstevel@tonic-gate rctl_test_acquire: 27670Sstevel@tonic-gate ASSERT(MUTEX_HELD(&p->p_lock)); 27680Sstevel@tonic-gate 27690Sstevel@tonic-gate mutex_enter(&rset->rcs_lock); 27700Sstevel@tonic-gate 27710Sstevel@tonic-gate /* 27720Sstevel@tonic-gate * Dereference from rctl_set. We don't enforce newly loaded controls 27730Sstevel@tonic-gate * that haven't been set on this entity (since the only valid value is 27740Sstevel@tonic-gate * the infinite system value). 27750Sstevel@tonic-gate */ 27760Sstevel@tonic-gate if (rctl_set_find(rset, rhndl, &lrctl) == -1) { 27770Sstevel@tonic-gate mutex_exit(&rset->rcs_lock); 27780Sstevel@tonic-gate return (ret); 27790Sstevel@tonic-gate } 27800Sstevel@tonic-gate 27810Sstevel@tonic-gate /* 27820Sstevel@tonic-gate * This control is currently unenforced: maximal value on control 27830Sstevel@tonic-gate * supporting infinitely available resource. 27840Sstevel@tonic-gate */ 27850Sstevel@tonic-gate if ((lrctl->rc_dict_entry->rcd_flagaction & RCTL_GLOBAL_INFINITE) && 27860Sstevel@tonic-gate (lrctl->rc_cursor->rcv_flagaction & RCTL_LOCAL_MAXIMAL)) { 27870Sstevel@tonic-gate 27880Sstevel@tonic-gate mutex_exit(&rset->rcs_lock); 27890Sstevel@tonic-gate return (ret); 27900Sstevel@tonic-gate } 27910Sstevel@tonic-gate 27920Sstevel@tonic-gate /* 27930Sstevel@tonic-gate * If we have been called by rctl_test, look up the entity pointer 27940Sstevel@tonic-gate * from the proc pointer. 27950Sstevel@tonic-gate */ 27960Sstevel@tonic-gate if (e == NULL) { 27970Sstevel@tonic-gate rctl_entity_obtain_entity_p(lrctl->rc_dict_entry->rcd_entity, 2798*7240Srh87107 p, &e_tmp); 27990Sstevel@tonic-gate e = &e_tmp; 28000Sstevel@tonic-gate } 28010Sstevel@tonic-gate 28020Sstevel@tonic-gate /* 28030Sstevel@tonic-gate * Get enforced rctl value and current usage. Test the increment 28040Sstevel@tonic-gate * with the current usage against the enforced value--take action as 28050Sstevel@tonic-gate * necessary. 28060Sstevel@tonic-gate */ 28070Sstevel@tonic-gate while (RCTLOP_TEST(lrctl, p, e, lrctl->rc_cursor, incr, flags)) { 28080Sstevel@tonic-gate if ((ret & RCT_LK_ABANDONED) == 0) { 28090Sstevel@tonic-gate ret |= rctl_global_action(lrctl, rset, p, 28100Sstevel@tonic-gate lrctl->rc_cursor); 28110Sstevel@tonic-gate 28120Sstevel@tonic-gate RCTLOP_ACTION(lrctl, p, e); 28130Sstevel@tonic-gate 28140Sstevel@tonic-gate ret |= rctl_local_action(lrctl, rset, p, 28150Sstevel@tonic-gate lrctl->rc_cursor, flags); 28160Sstevel@tonic-gate 28170Sstevel@tonic-gate if (ret & RCT_LK_ABANDONED) 28180Sstevel@tonic-gate goto rctl_test_acquire; 28190Sstevel@tonic-gate } 28200Sstevel@tonic-gate 28210Sstevel@tonic-gate ret &= ~RCT_LK_ABANDONED; 28220Sstevel@tonic-gate 28230Sstevel@tonic-gate if ((ret & RCT_DENY) == RCT_DENY || 28240Sstevel@tonic-gate lrctl->rc_cursor->rcv_next == NULL) { 28250Sstevel@tonic-gate ret |= RCT_DENY; 28260Sstevel@tonic-gate break; 28270Sstevel@tonic-gate } 28280Sstevel@tonic-gate 28290Sstevel@tonic-gate lrctl->rc_cursor = lrctl->rc_cursor->rcv_next; 28300Sstevel@tonic-gate RCTLOP_SET(lrctl, p, e, rctl_model_value(lrctl->rc_dict_entry, 28310Sstevel@tonic-gate p, lrctl->rc_cursor->rcv_value)); 28320Sstevel@tonic-gate } 28330Sstevel@tonic-gate 28340Sstevel@tonic-gate mutex_exit(&rset->rcs_lock); 28350Sstevel@tonic-gate 28360Sstevel@tonic-gate return (ret); 28370Sstevel@tonic-gate } 28380Sstevel@tonic-gate 28390Sstevel@tonic-gate /* 28400Sstevel@tonic-gate * void rctl_init(void) 28410Sstevel@tonic-gate * 28420Sstevel@tonic-gate * Overview 28430Sstevel@tonic-gate * Initialize the rctl subsystem, including the primoridal rctls 28440Sstevel@tonic-gate * provided by the system. New subsystem-specific rctls should _not_ be 28450Sstevel@tonic-gate * initialized here. (Do it in your own file.) 28460Sstevel@tonic-gate * 28470Sstevel@tonic-gate * Return values 28480Sstevel@tonic-gate * None. 28490Sstevel@tonic-gate * 28500Sstevel@tonic-gate * Caller's context 28510Sstevel@tonic-gate * Safe for KM_SLEEP allocations. Must be called prior to any process model 28520Sstevel@tonic-gate * initialization. 28530Sstevel@tonic-gate */ 28540Sstevel@tonic-gate void 28550Sstevel@tonic-gate rctl_init(void) 28560Sstevel@tonic-gate { 28570Sstevel@tonic-gate rctl_cache = kmem_cache_create("rctl_cache", sizeof (rctl_t), 28580Sstevel@tonic-gate 0, NULL, NULL, NULL, NULL, NULL, 0); 28590Sstevel@tonic-gate rctl_val_cache = kmem_cache_create("rctl_val_cache", 28600Sstevel@tonic-gate sizeof (rctl_val_t), 0, NULL, NULL, NULL, NULL, NULL, 0); 28610Sstevel@tonic-gate 28620Sstevel@tonic-gate rctl_dict = mod_hash_create_extended("rctl_dict", 28630Sstevel@tonic-gate rctl_dict_size, mod_hash_null_keydtor, rctl_dict_val_dtor, 28640Sstevel@tonic-gate rctl_dict_hash_by_id, NULL, rctl_dict_id_cmp, KM_SLEEP); 28650Sstevel@tonic-gate rctl_dict_by_name = mod_hash_create_strhash( 28660Sstevel@tonic-gate "rctl_handles_by_name", rctl_dict_size, 28670Sstevel@tonic-gate mod_hash_null_valdtor); 28680Sstevel@tonic-gate rctl_ids = id_space_create("rctl_ids", 1, max_rctl_hndl); 28690Sstevel@tonic-gate bzero(rctl_lists, (RC_MAX_ENTITY + 1) * sizeof (rctl_dict_entry_t *)); 28700Sstevel@tonic-gate 28710Sstevel@tonic-gate rctlproc_init(); 28720Sstevel@tonic-gate } 28732768Ssl108498 28742768Ssl108498 /* 28752768Ssl108498 * rctl_incr_locked_mem(proc_t *p, kproject_t *proj, rctl_qty_t inc) 28762768Ssl108498 * 28772768Ssl108498 * Increments the amount of locked memory on a project, and 28782768Ssl108498 * zone. If proj is NULL, the proj and zone of proc_t p is used. If 28792768Ssl108498 * chargeproc is non-zero, then the charged amount is cached on p->p_locked_mem 28802768Ssl108498 * so that the charge can be migrated when a process changes projects. 28812768Ssl108498 * 28822768Ssl108498 * Return values 28832768Ssl108498 * 0 - success 28842768Ssl108498 * EAGAIN - attempting to increment locked memory is denied by one 28852768Ssl108498 * or more resource entities. 28862768Ssl108498 */ 28872768Ssl108498 int 28882768Ssl108498 rctl_incr_locked_mem(proc_t *p, kproject_t *proj, rctl_qty_t inc, 28892768Ssl108498 int chargeproc) 28902768Ssl108498 { 28912768Ssl108498 kproject_t *projp; 28922768Ssl108498 zone_t *zonep; 28932768Ssl108498 rctl_entity_p_t e; 28942768Ssl108498 int ret = 0; 28952768Ssl108498 28962768Ssl108498 ASSERT(p != NULL); 28972768Ssl108498 ASSERT(MUTEX_HELD(&p->p_lock)); 28982768Ssl108498 if (proj != NULL) { 28992768Ssl108498 projp = proj; 29002768Ssl108498 zonep = zone_find_by_id(projp->kpj_zoneid); 29012768Ssl108498 } else { 29022768Ssl108498 projp = p->p_task->tk_proj; 29032768Ssl108498 zonep = p->p_zone; 29042768Ssl108498 } 29052768Ssl108498 29063247Sgjelinek mutex_enter(&zonep->zone_mem_lock); 29072768Ssl108498 29082768Ssl108498 e.rcep_p.proj = projp; 29092768Ssl108498 e.rcep_t = RCENTITY_PROJECT; 29102768Ssl108498 if (projp->kpj_data.kpd_locked_mem + inc > 29112768Ssl108498 projp->kpj_data.kpd_locked_mem_ctl) { 29122768Ssl108498 if (rctl_test_entity(rc_project_locked_mem, projp->kpj_rctls, 29132768Ssl108498 p, &e, inc, 0) & RCT_DENY) { 29142768Ssl108498 ret = EAGAIN; 29152768Ssl108498 goto out; 29162768Ssl108498 } 29172768Ssl108498 } 29182768Ssl108498 e.rcep_p.zone = zonep; 29192768Ssl108498 e.rcep_t = RCENTITY_ZONE; 29202768Ssl108498 if (zonep->zone_locked_mem + inc > zonep->zone_locked_mem_ctl) { 29212768Ssl108498 if (rctl_test_entity(rc_zone_locked_mem, zonep->zone_rctls, 29222768Ssl108498 p, &e, inc, 0) & RCT_DENY) { 29232768Ssl108498 ret = EAGAIN; 29242768Ssl108498 goto out; 29252768Ssl108498 } 29262768Ssl108498 } 29272768Ssl108498 29282768Ssl108498 zonep->zone_locked_mem += inc; 29292768Ssl108498 projp->kpj_data.kpd_locked_mem += inc; 29302768Ssl108498 if (chargeproc != 0) { 29312768Ssl108498 p->p_locked_mem += inc; 29322768Ssl108498 } 29332768Ssl108498 out: 29343247Sgjelinek mutex_exit(&zonep->zone_mem_lock); 29352768Ssl108498 if (proj != NULL) 29362768Ssl108498 zone_rele(zonep); 29372768Ssl108498 return (ret); 29382768Ssl108498 } 29392768Ssl108498 29402768Ssl108498 /* 29412768Ssl108498 * rctl_decr_locked_mem(proc_t *p, kproject_t *proj, rctl_qty_t inc) 29422768Ssl108498 * 29432768Ssl108498 * Decrements the amount of locked memory on a project and 29442768Ssl108498 * zone. If proj is NULL, the proj and zone of proc_t p is used. If 29452768Ssl108498 * creditproc is non-zero, then the quantity of locked memory is subtracted 29462768Ssl108498 * from p->p_locked_mem. 29472768Ssl108498 * 29482768Ssl108498 * Return values 29492768Ssl108498 * none 29502768Ssl108498 */ 29512768Ssl108498 void 29522768Ssl108498 rctl_decr_locked_mem(proc_t *p, kproject_t *proj, rctl_qty_t inc, 29532768Ssl108498 int creditproc) 29542768Ssl108498 { 29552768Ssl108498 kproject_t *projp; 29562768Ssl108498 zone_t *zonep; 29572768Ssl108498 29582768Ssl108498 if (proj != NULL) { 29592768Ssl108498 projp = proj; 29602768Ssl108498 zonep = zone_find_by_id(projp->kpj_zoneid); 29612768Ssl108498 } else { 29622768Ssl108498 ASSERT(p != NULL); 29632768Ssl108498 ASSERT(MUTEX_HELD(&p->p_lock)); 29642768Ssl108498 projp = p->p_task->tk_proj; 29652768Ssl108498 zonep = p->p_zone; 29662768Ssl108498 } 29672768Ssl108498 29683247Sgjelinek mutex_enter(&zonep->zone_mem_lock); 29692768Ssl108498 zonep->zone_locked_mem -= inc; 29702768Ssl108498 projp->kpj_data.kpd_locked_mem -= inc; 29712768Ssl108498 if (creditproc != 0) { 29722768Ssl108498 ASSERT(p != NULL); 29732768Ssl108498 ASSERT(MUTEX_HELD(&p->p_lock)); 29742768Ssl108498 p->p_locked_mem -= inc; 29752768Ssl108498 } 29763247Sgjelinek mutex_exit(&zonep->zone_mem_lock); 29772768Ssl108498 if (proj != NULL) 29782768Ssl108498 zone_rele(zonep); 29792768Ssl108498 } 29803247Sgjelinek 29813247Sgjelinek /* 29823247Sgjelinek * rctl_incr_swap(proc_t *, zone_t *, size_t) 29833247Sgjelinek * 29843247Sgjelinek * Overview 29853247Sgjelinek * Increments the swap charge on the specified zone. 29863247Sgjelinek * 29873247Sgjelinek * Return values 29883247Sgjelinek * 0 on success. EAGAIN if swap increment fails due an rctl value 29893247Sgjelinek * on the zone. 29903247Sgjelinek * 29913247Sgjelinek * Callers context 29923247Sgjelinek * p_lock held on specified proc. 29933247Sgjelinek * swap must be even multiple of PAGESIZE 29943247Sgjelinek */ 29953247Sgjelinek int 29963247Sgjelinek rctl_incr_swap(proc_t *proc, zone_t *zone, size_t swap) 29973247Sgjelinek { 29983247Sgjelinek rctl_entity_p_t e; 29993247Sgjelinek 30003247Sgjelinek ASSERT(MUTEX_HELD(&proc->p_lock)); 30013247Sgjelinek ASSERT((swap & PAGEOFFSET) == 0); 30023247Sgjelinek e.rcep_p.zone = zone; 30033247Sgjelinek e.rcep_t = RCENTITY_ZONE; 30043247Sgjelinek 30053247Sgjelinek mutex_enter(&zone->zone_mem_lock); 30063247Sgjelinek 30073247Sgjelinek if ((zone->zone_max_swap + swap) > 30083247Sgjelinek zone->zone_max_swap_ctl) { 30093247Sgjelinek 30103247Sgjelinek if (rctl_test_entity(rc_zone_max_swap, zone->zone_rctls, 30113247Sgjelinek proc, &e, swap, 0) & RCT_DENY) { 30123247Sgjelinek mutex_exit(&zone->zone_mem_lock); 30133247Sgjelinek return (EAGAIN); 30143247Sgjelinek } 30153247Sgjelinek } 30163247Sgjelinek zone->zone_max_swap += swap; 30173247Sgjelinek mutex_exit(&zone->zone_mem_lock); 30183247Sgjelinek return (0); 30193247Sgjelinek } 30203247Sgjelinek 30213247Sgjelinek /* 30223247Sgjelinek * rctl_decr_swap(zone_t *, size_t) 30233247Sgjelinek * 30243247Sgjelinek * Overview 30253247Sgjelinek * Decrements the swap charge on the specified zone. 30263247Sgjelinek * 30273247Sgjelinek * Return values 30283247Sgjelinek * None 30293247Sgjelinek * 30303247Sgjelinek * Callers context 30313247Sgjelinek * swap must be even multiple of PAGESIZE 30323247Sgjelinek */ 30333247Sgjelinek void 30343247Sgjelinek rctl_decr_swap(zone_t *zone, size_t swap) 30353247Sgjelinek { 30363247Sgjelinek ASSERT((swap & PAGEOFFSET) == 0); 30373247Sgjelinek mutex_enter(&zone->zone_mem_lock); 30383247Sgjelinek ASSERT(zone->zone_max_swap >= swap); 30393247Sgjelinek zone->zone_max_swap -= swap; 30403247Sgjelinek mutex_exit(&zone->zone_mem_lock); 30413247Sgjelinek } 30423247Sgjelinek 30433247Sgjelinek /* 30443247Sgjelinek * Create resource kstat 30453247Sgjelinek */ 30463247Sgjelinek static kstat_t * 30473247Sgjelinek rctl_kstat_create_common(char *ks_name, int ks_instance, char *ks_class, 30483247Sgjelinek uchar_t ks_type, uint_t ks_ndata, uchar_t ks_flags, int ks_zoneid) 30493247Sgjelinek { 30503247Sgjelinek kstat_t *ksp = NULL; 30513247Sgjelinek char name[KSTAT_STRLEN]; 30523247Sgjelinek 30533247Sgjelinek (void) snprintf(name, KSTAT_STRLEN, "%s_%d", ks_name, ks_instance); 30543247Sgjelinek 30553247Sgjelinek if ((ksp = kstat_create_zone("caps", ks_zoneid, 3056*7240Srh87107 name, ks_class, ks_type, 3057*7240Srh87107 ks_ndata, ks_flags, ks_zoneid)) != NULL) { 30583247Sgjelinek if (ks_zoneid != GLOBAL_ZONEID) 30593247Sgjelinek kstat_zone_add(ksp, GLOBAL_ZONEID); 30603247Sgjelinek } 30613247Sgjelinek return (ksp); 30623247Sgjelinek } 30633247Sgjelinek 30643247Sgjelinek /* 30653247Sgjelinek * Create zone-specific resource kstat 30663247Sgjelinek */ 30673247Sgjelinek kstat_t * 30683247Sgjelinek rctl_kstat_create_zone(zone_t *zone, char *ks_name, uchar_t ks_type, 30693247Sgjelinek uint_t ks_ndata, uchar_t ks_flags) 30703247Sgjelinek { 30713247Sgjelinek char name[KSTAT_STRLEN]; 30723247Sgjelinek 30733247Sgjelinek (void) snprintf(name, KSTAT_STRLEN, "%s_zone", ks_name); 30743247Sgjelinek 30753247Sgjelinek return (rctl_kstat_create_common(name, zone->zone_id, "zone_caps", 30763247Sgjelinek ks_type, ks_ndata, ks_flags, zone->zone_id)); 30773247Sgjelinek } 30783247Sgjelinek 30793247Sgjelinek /* 30803247Sgjelinek * Create project-specific resource kstat 30813247Sgjelinek */ 30823247Sgjelinek kstat_t * 30833247Sgjelinek rctl_kstat_create_project(kproject_t *kpj, char *ks_name, uchar_t ks_type, 30843247Sgjelinek uint_t ks_ndata, uchar_t ks_flags) 30853247Sgjelinek { 30863247Sgjelinek char name[KSTAT_STRLEN]; 30873247Sgjelinek 30883247Sgjelinek (void) snprintf(name, KSTAT_STRLEN, "%s_project", ks_name); 30893247Sgjelinek 30903247Sgjelinek return (rctl_kstat_create_common(name, kpj->kpj_id, "project_caps", 30913247Sgjelinek ks_type, ks_ndata, ks_flags, kpj->kpj_zoneid)); 30923247Sgjelinek } 3093