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 51808Smcpowers * Common Development and Distribution License (the "License"). 61808Smcpowers * 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*8313SDina.Nimeh@Sun.Com * 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 #include <sys/types.h> 270Sstevel@tonic-gate #include <sys/sunddi.h> 280Sstevel@tonic-gate #include <sys/disp.h> 290Sstevel@tonic-gate #include <sys/modctl.h> 30904Smcpowers #include <sys/sysmacros.h> 310Sstevel@tonic-gate #include <sys/crypto/common.h> 320Sstevel@tonic-gate #include <sys/crypto/api.h> 330Sstevel@tonic-gate #include <sys/crypto/impl.h> 340Sstevel@tonic-gate #include <sys/crypto/sched_impl.h> 350Sstevel@tonic-gate 36904Smcpowers #define isspace(ch) (((ch) == ' ') || ((ch) == '\r') || ((ch) == '\n') || \ 37904Smcpowers ((ch) == '\t') || ((ch) == '\f')) 38904Smcpowers 39904Smcpowers #define CRYPTO_OPS_OFFSET(f) offsetof(crypto_ops_t, co_##f) 40904Smcpowers #define CRYPTO_KEY_OFFSET(f) offsetof(crypto_key_ops_t, f) 41904Smcpowers #define CRYPTO_PROVIDER_OFFSET(f) \ 42904Smcpowers offsetof(crypto_provider_management_ops_t, f) 43904Smcpowers 440Sstevel@tonic-gate /* Miscellaneous exported entry points */ 450Sstevel@tonic-gate 460Sstevel@tonic-gate /* 470Sstevel@tonic-gate * All event subscribers are put on a list. kcf_notify_list_lock 480Sstevel@tonic-gate * protects changes to this list. 490Sstevel@tonic-gate * 500Sstevel@tonic-gate * The following locking order is maintained in the code - The 510Sstevel@tonic-gate * global kcf_notify_list_lock followed by the individual lock 520Sstevel@tonic-gate * in a kcf_ntfy_elem structure (kn_lock). 530Sstevel@tonic-gate */ 540Sstevel@tonic-gate kmutex_t ntfy_list_lock; 550Sstevel@tonic-gate kcondvar_t ntfy_list_cv; /* cv the service thread waits on */ 560Sstevel@tonic-gate static kcf_ntfy_elem_t *ntfy_list_head; 570Sstevel@tonic-gate static kcf_ntfy_elem_t *ntfy_list_tail; 580Sstevel@tonic-gate 590Sstevel@tonic-gate /* count all the hardware and software providers */ 600Sstevel@tonic-gate #define PROV_COUNT(me) \ 610Sstevel@tonic-gate (((me)->me_sw_prov != NULL ? 1 : 0) + (me)->me_num_hwprov) 620Sstevel@tonic-gate 630Sstevel@tonic-gate /* 640Sstevel@tonic-gate * crypto_mech2id() 650Sstevel@tonic-gate * 660Sstevel@tonic-gate * Arguments: 670Sstevel@tonic-gate * . mechname: A null-terminated string identifying the mechanism name. 680Sstevel@tonic-gate * 690Sstevel@tonic-gate * Description: 700Sstevel@tonic-gate * Walks the mechanisms tables, looking for an entry that matches the 710Sstevel@tonic-gate * mechname. Once it find it, it builds the 64-bit mech_type and returns 720Sstevel@tonic-gate * it. If there are no hardware or software providers for the mechanism, 730Sstevel@tonic-gate * but there is an unloaded software provider, this routine will attempt 740Sstevel@tonic-gate * to load it. 750Sstevel@tonic-gate * 760Sstevel@tonic-gate * Context: 770Sstevel@tonic-gate * Process and interruption. 780Sstevel@tonic-gate * 790Sstevel@tonic-gate * Returns: 800Sstevel@tonic-gate * The unique mechanism identified by 'mechname', if found. 810Sstevel@tonic-gate * CRYPTO_MECH_INVALID otherwise. 820Sstevel@tonic-gate */ 830Sstevel@tonic-gate crypto_mech_type_t 840Sstevel@tonic-gate crypto_mech2id(char *mechname) 850Sstevel@tonic-gate { 860Sstevel@tonic-gate return (crypto_mech2id_common(mechname, B_TRUE)); 870Sstevel@tonic-gate } 880Sstevel@tonic-gate 890Sstevel@tonic-gate /* 900Sstevel@tonic-gate * crypto_get_mech_list() 910Sstevel@tonic-gate * 920Sstevel@tonic-gate * Arguments: 930Sstevel@tonic-gate * . countp: pointer to contain the number of mech names returned 940Sstevel@tonic-gate * . kmflag: memory allocation flag. 950Sstevel@tonic-gate * 960Sstevel@tonic-gate * Description: 970Sstevel@tonic-gate * Allocates an array of crypto_mech_name_t containing all the mechanisms 980Sstevel@tonic-gate * currently available on the system. Sets *countp with the number of 990Sstevel@tonic-gate * mechanism names returned. 1000Sstevel@tonic-gate * 1010Sstevel@tonic-gate * We get a list of mech names which have a hardware provider by walking 1020Sstevel@tonic-gate * all the mechanism tables. We merge them with mech names obtained from 1030Sstevel@tonic-gate * the hint list. A mech name in the hint list is considered only if it 1040Sstevel@tonic-gate * is not disabled for the provider. Note that the hint list contains only 1050Sstevel@tonic-gate * software providers and the mech names supported by them. 1060Sstevel@tonic-gate * 1070Sstevel@tonic-gate * Context: 1080Sstevel@tonic-gate * Process and interruption. kmflag should be KM_NOSLEEP when called 1090Sstevel@tonic-gate * from an interruption context. 1100Sstevel@tonic-gate * 1110Sstevel@tonic-gate * Returns: 1120Sstevel@tonic-gate * The array of the crypto_mech_t allocated. 1130Sstevel@tonic-gate * NULL otherwise. 1140Sstevel@tonic-gate */ 1150Sstevel@tonic-gate crypto_mech_name_t * 1160Sstevel@tonic-gate crypto_get_mech_list(uint_t *countp, int kmflag) 1170Sstevel@tonic-gate { 1180Sstevel@tonic-gate uint_t count = 0, me_tab_size, i, j; 1190Sstevel@tonic-gate kcf_ops_class_t cl; 1200Sstevel@tonic-gate kcf_mech_entry_t *me, *me_tab; 1210Sstevel@tonic-gate crypto_mech_name_t *mech_name_tab, *tmp_mech_name_tab; 1220Sstevel@tonic-gate char *mech_name, *hint_mech, *end; 1230Sstevel@tonic-gate kcf_soft_conf_entry_t *p; 1240Sstevel@tonic-gate size_t n; 1250Sstevel@tonic-gate 1260Sstevel@tonic-gate /* 1270Sstevel@tonic-gate * Count the maximum possible mechanisms that can come from the 1280Sstevel@tonic-gate * hint list. 1290Sstevel@tonic-gate */ 1300Sstevel@tonic-gate mutex_enter(&soft_config_mutex); 1310Sstevel@tonic-gate p = soft_config_list; 1320Sstevel@tonic-gate while (p != NULL) { 1330Sstevel@tonic-gate count += p->ce_count; 1340Sstevel@tonic-gate p = p->ce_next; 1350Sstevel@tonic-gate } 1360Sstevel@tonic-gate mutex_exit(&soft_config_mutex); 1370Sstevel@tonic-gate 1380Sstevel@tonic-gate /* First let's count'em, for mem allocation */ 1390Sstevel@tonic-gate for (cl = KCF_FIRST_OPSCLASS; cl <= KCF_LAST_OPSCLASS; cl++) { 1400Sstevel@tonic-gate me_tab_size = kcf_mech_tabs_tab[cl].met_size; 1410Sstevel@tonic-gate me_tab = kcf_mech_tabs_tab[cl].met_tab; 1420Sstevel@tonic-gate for (i = 0; i < me_tab_size; i++) { 1430Sstevel@tonic-gate me = &me_tab[i]; 1440Sstevel@tonic-gate mutex_enter(&(me->me_mutex)); 1450Sstevel@tonic-gate if ((me->me_name[0] != 0) && (me->me_num_hwprov >= 1)) { 1460Sstevel@tonic-gate ASSERT(me->me_hw_prov_chain != NULL); 1470Sstevel@tonic-gate count++; 1480Sstevel@tonic-gate } 1490Sstevel@tonic-gate mutex_exit(&(me->me_mutex)); 1500Sstevel@tonic-gate } 1510Sstevel@tonic-gate } 1520Sstevel@tonic-gate 1530Sstevel@tonic-gate /* 1540Sstevel@tonic-gate * Allocate a buffer to hold the mechanisms from 1550Sstevel@tonic-gate * mech tabs and mechanisms from the hint list. 1560Sstevel@tonic-gate */ 1570Sstevel@tonic-gate n = count * CRYPTO_MAX_MECH_NAME; 1580Sstevel@tonic-gate 1590Sstevel@tonic-gate again: 1600Sstevel@tonic-gate count = 0; 1610Sstevel@tonic-gate tmp_mech_name_tab = kmem_zalloc(n, kmflag); 1620Sstevel@tonic-gate if (tmp_mech_name_tab == NULL) { 1630Sstevel@tonic-gate *countp = 0; 1640Sstevel@tonic-gate return (NULL); 1650Sstevel@tonic-gate } 1660Sstevel@tonic-gate 1670Sstevel@tonic-gate /* 1680Sstevel@tonic-gate * Second round, fill in the table 1690Sstevel@tonic-gate */ 1700Sstevel@tonic-gate 1710Sstevel@tonic-gate mech_name = (char *)tmp_mech_name_tab; 1720Sstevel@tonic-gate end = mech_name + n; 1730Sstevel@tonic-gate 1740Sstevel@tonic-gate for (cl = KCF_FIRST_OPSCLASS; cl <= KCF_LAST_OPSCLASS; cl++) { 1750Sstevel@tonic-gate me_tab_size = kcf_mech_tabs_tab[cl].met_size; 1760Sstevel@tonic-gate me_tab = kcf_mech_tabs_tab[cl].met_tab; 1770Sstevel@tonic-gate for (i = 0; i < me_tab_size; i++) { 1780Sstevel@tonic-gate me = &me_tab[i]; 1790Sstevel@tonic-gate mutex_enter(&(me->me_mutex)); 1800Sstevel@tonic-gate if ((me->me_name[0] != 0) && (me->me_num_hwprov >= 1)) { 1810Sstevel@tonic-gate ASSERT(me->me_hw_prov_chain != NULL); 1820Sstevel@tonic-gate if ((mech_name + CRYPTO_MAX_MECH_NAME) > end) { 1830Sstevel@tonic-gate mutex_exit(&(me->me_mutex)); 1840Sstevel@tonic-gate kmem_free(tmp_mech_name_tab, n); 1850Sstevel@tonic-gate n = n << 1; 1860Sstevel@tonic-gate goto again; 1870Sstevel@tonic-gate } 1880Sstevel@tonic-gate (void) strncpy(mech_name, me->me_name, 1890Sstevel@tonic-gate CRYPTO_MAX_MECH_NAME); 1900Sstevel@tonic-gate 1910Sstevel@tonic-gate mech_name += CRYPTO_MAX_MECH_NAME; 1920Sstevel@tonic-gate count++; 1930Sstevel@tonic-gate } 1940Sstevel@tonic-gate mutex_exit(&(me->me_mutex)); 1950Sstevel@tonic-gate } 1960Sstevel@tonic-gate } 1970Sstevel@tonic-gate 1980Sstevel@tonic-gate /* 1990Sstevel@tonic-gate * Search tmp_mech_name_tab for each mechanism in the hint list. We 2000Sstevel@tonic-gate * have to add any new mechanisms found in the hint list. Note that we 2010Sstevel@tonic-gate * should not modload the providers here as it will be too early. It 2020Sstevel@tonic-gate * may be the case that the caller never uses a provider. 2030Sstevel@tonic-gate */ 2040Sstevel@tonic-gate mutex_enter(&soft_config_mutex); 2050Sstevel@tonic-gate p = soft_config_list; 2060Sstevel@tonic-gate while (p != NULL) { 2070Sstevel@tonic-gate for (i = 0; i < p->ce_count; i++) { 2080Sstevel@tonic-gate hint_mech = p->ce_mechs[i]; 2090Sstevel@tonic-gate 2100Sstevel@tonic-gate /* Do not consider the mechanism if it is disabled. */ 2110Sstevel@tonic-gate if (is_mech_disabled_byname(CRYPTO_SW_PROVIDER, 2120Sstevel@tonic-gate p->ce_name, 0, hint_mech)) 2130Sstevel@tonic-gate continue; 2140Sstevel@tonic-gate 2150Sstevel@tonic-gate /* 2160Sstevel@tonic-gate * There may be duplicate mechanisms in the hint list. 2170Sstevel@tonic-gate * So, we need to search all the entries that have been 2180Sstevel@tonic-gate * added so far. That number would be count. 2190Sstevel@tonic-gate */ 2200Sstevel@tonic-gate for (j = 0; j < count; j++) { 2210Sstevel@tonic-gate if (strcmp(hint_mech, 2220Sstevel@tonic-gate tmp_mech_name_tab[j]) == 0) 2230Sstevel@tonic-gate break; 2240Sstevel@tonic-gate } 2250Sstevel@tonic-gate 2260Sstevel@tonic-gate if (j == count) { /* This is a new one. Add it. */ 2270Sstevel@tonic-gate ASSERT((char *)&tmp_mech_name_tab[count] == 2280Sstevel@tonic-gate mech_name); 2290Sstevel@tonic-gate if ((mech_name + CRYPTO_MAX_MECH_NAME) > end) { 2300Sstevel@tonic-gate mutex_exit(&soft_config_mutex); 2310Sstevel@tonic-gate kmem_free(tmp_mech_name_tab, n); 2320Sstevel@tonic-gate n = n << 1; 2330Sstevel@tonic-gate goto again; 2340Sstevel@tonic-gate } 2350Sstevel@tonic-gate (void) strncpy(tmp_mech_name_tab[count], 2360Sstevel@tonic-gate hint_mech, CRYPTO_MAX_MECH_NAME); 2370Sstevel@tonic-gate mech_name += CRYPTO_MAX_MECH_NAME; 2380Sstevel@tonic-gate count++; 2390Sstevel@tonic-gate } 2400Sstevel@tonic-gate } 2410Sstevel@tonic-gate p = p->ce_next; 2420Sstevel@tonic-gate } 2430Sstevel@tonic-gate mutex_exit(&soft_config_mutex); 2440Sstevel@tonic-gate 2450Sstevel@tonic-gate /* 2460Sstevel@tonic-gate * Check if we have consumed all of the space. We are done if 2470Sstevel@tonic-gate * this is the case. 2480Sstevel@tonic-gate */ 2490Sstevel@tonic-gate ASSERT(mech_name <= end); 2500Sstevel@tonic-gate if (mech_name == end) { 2510Sstevel@tonic-gate mech_name_tab = tmp_mech_name_tab; 2520Sstevel@tonic-gate goto done; 2530Sstevel@tonic-gate } 2540Sstevel@tonic-gate 2550Sstevel@tonic-gate /* 2560Sstevel@tonic-gate * Allocate a buffer of the right size now that we have the 2570Sstevel@tonic-gate * correct count. 2580Sstevel@tonic-gate */ 2590Sstevel@tonic-gate mech_name_tab = kmem_zalloc(count * CRYPTO_MAX_MECH_NAME, kmflag); 2600Sstevel@tonic-gate if (mech_name_tab == NULL) { 2610Sstevel@tonic-gate kmem_free(tmp_mech_name_tab, n); 2620Sstevel@tonic-gate *countp = 0; 2630Sstevel@tonic-gate return (NULL); 2640Sstevel@tonic-gate } 2650Sstevel@tonic-gate 2660Sstevel@tonic-gate bcopy(tmp_mech_name_tab, mech_name_tab, count * CRYPTO_MAX_MECH_NAME); 2670Sstevel@tonic-gate kmem_free(tmp_mech_name_tab, n); 2680Sstevel@tonic-gate 2690Sstevel@tonic-gate done: 2700Sstevel@tonic-gate *countp = count; 2710Sstevel@tonic-gate return (mech_name_tab); 2720Sstevel@tonic-gate } 2730Sstevel@tonic-gate 2740Sstevel@tonic-gate /* 2750Sstevel@tonic-gate * crypto_free_mech_list() 2760Sstevel@tonic-gate * 2770Sstevel@tonic-gate * Arguments: 2780Sstevel@tonic-gate * . mech_names: An array of crypto_mech_name_t previously allocated by 2790Sstevel@tonic-gate * crypto_get_mech_list. 2800Sstevel@tonic-gate * . count: the number of mech names in mech_names 2810Sstevel@tonic-gate * 2820Sstevel@tonic-gate * Description: 2830Sstevel@tonic-gate * Frees the the mech_names array. 2840Sstevel@tonic-gate * 2850Sstevel@tonic-gate * Context: 2860Sstevel@tonic-gate * Process and interruption. 2870Sstevel@tonic-gate */ 2880Sstevel@tonic-gate void 2890Sstevel@tonic-gate crypto_free_mech_list(crypto_mech_name_t *mech_names, uint_t count) 2900Sstevel@tonic-gate { 2910Sstevel@tonic-gate if ((mech_names != NULL) && (count > 0)) 2920Sstevel@tonic-gate kmem_free(mech_names, count * CRYPTO_MAX_MECH_NAME); 2930Sstevel@tonic-gate } 2940Sstevel@tonic-gate 2950Sstevel@tonic-gate /* 2960Sstevel@tonic-gate * crypto_notify_events() 2970Sstevel@tonic-gate * 2980Sstevel@tonic-gate * Arguments: 2990Sstevel@tonic-gate * . nf: Callback function to invoke when event occurs. 3000Sstevel@tonic-gate * . event_mask: Mask of events. 3010Sstevel@tonic-gate * 3020Sstevel@tonic-gate * Description: 3030Sstevel@tonic-gate * Allocates a new element and inserts it in to the notification 3040Sstevel@tonic-gate * list. 3050Sstevel@tonic-gate * 3060Sstevel@tonic-gate * Context: 3070Sstevel@tonic-gate * Process context. 3080Sstevel@tonic-gate * 3090Sstevel@tonic-gate * Returns: 3100Sstevel@tonic-gate * A handle is returned if the client is put on the notification list. 3110Sstevel@tonic-gate * NULL is returned otherwise. 3120Sstevel@tonic-gate */ 3130Sstevel@tonic-gate crypto_notify_handle_t 3140Sstevel@tonic-gate crypto_notify_events(crypto_notify_callback_t nf, uint32_t event_mask) 3150Sstevel@tonic-gate { 3160Sstevel@tonic-gate kcf_ntfy_elem_t *nep; 3170Sstevel@tonic-gate crypto_notify_handle_t hndl; 3180Sstevel@tonic-gate 3192800Skrishna /* Check the input */ 3202800Skrishna if (nf == NULL || !(event_mask & (CRYPTO_EVENT_MECHS_CHANGED | 3212800Skrishna CRYPTO_EVENT_PROVIDER_REGISTERED | 3222800Skrishna CRYPTO_EVENT_PROVIDER_UNREGISTERED))) { 3230Sstevel@tonic-gate return (NULL); 3240Sstevel@tonic-gate } 3250Sstevel@tonic-gate 3260Sstevel@tonic-gate nep = kmem_zalloc(sizeof (kcf_ntfy_elem_t), KM_SLEEP); 3270Sstevel@tonic-gate mutex_init(&nep->kn_lock, NULL, MUTEX_DEFAULT, NULL); 3280Sstevel@tonic-gate cv_init(&nep->kn_cv, NULL, CV_DEFAULT, NULL); 3290Sstevel@tonic-gate nep->kn_state = NTFY_WAITING; 3300Sstevel@tonic-gate nep->kn_func = nf; 3310Sstevel@tonic-gate nep->kn_event_mask = event_mask; 3320Sstevel@tonic-gate 3330Sstevel@tonic-gate mutex_enter(&ntfy_list_lock); 3340Sstevel@tonic-gate if (ntfy_list_head == NULL) { 3350Sstevel@tonic-gate ntfy_list_head = ntfy_list_tail = nep; 3360Sstevel@tonic-gate } else { 3370Sstevel@tonic-gate ntfy_list_tail->kn_next = nep; 3380Sstevel@tonic-gate nep->kn_prev = ntfy_list_tail; 3390Sstevel@tonic-gate ntfy_list_tail = nep; 3400Sstevel@tonic-gate } 3410Sstevel@tonic-gate 3420Sstevel@tonic-gate hndl = (crypto_notify_handle_t)nep; 3430Sstevel@tonic-gate mutex_exit(&ntfy_list_lock); 3440Sstevel@tonic-gate 3450Sstevel@tonic-gate return (hndl); 3460Sstevel@tonic-gate } 3470Sstevel@tonic-gate 3480Sstevel@tonic-gate /* 3490Sstevel@tonic-gate * crypto_unnotify_events() 3500Sstevel@tonic-gate * 3510Sstevel@tonic-gate * Arguments: 3520Sstevel@tonic-gate * . hndl - Handle returned from an earlier crypto_notify_events(). 3530Sstevel@tonic-gate * 3540Sstevel@tonic-gate * Description: 3550Sstevel@tonic-gate * Removes the element specified by hndl from the notification list. 3560Sstevel@tonic-gate * We wait for the notification routine to complete, if the routine 3570Sstevel@tonic-gate * is currently being called. We also free the element. 3580Sstevel@tonic-gate * 3590Sstevel@tonic-gate * Context: 3600Sstevel@tonic-gate * Process context. 3610Sstevel@tonic-gate */ 3620Sstevel@tonic-gate void 3630Sstevel@tonic-gate crypto_unnotify_events(crypto_notify_handle_t hndl) 3640Sstevel@tonic-gate { 3650Sstevel@tonic-gate kcf_ntfy_elem_t *nep = (kcf_ntfy_elem_t *)hndl; 3660Sstevel@tonic-gate 3670Sstevel@tonic-gate if (hndl == NULL) 3680Sstevel@tonic-gate return; 3690Sstevel@tonic-gate 3700Sstevel@tonic-gate retry: 3710Sstevel@tonic-gate mutex_enter(&ntfy_list_lock); 3720Sstevel@tonic-gate mutex_enter(&nep->kn_lock); 3730Sstevel@tonic-gate 3740Sstevel@tonic-gate if (nep->kn_state == NTFY_WAITING) { 3750Sstevel@tonic-gate kcf_ntfy_elem_t *nextp = nep->kn_next; 3760Sstevel@tonic-gate kcf_ntfy_elem_t *prevp = nep->kn_prev; 3770Sstevel@tonic-gate 3780Sstevel@tonic-gate if (nextp != NULL) 3790Sstevel@tonic-gate nextp->kn_prev = prevp; 3800Sstevel@tonic-gate else 3810Sstevel@tonic-gate ntfy_list_tail = prevp; 3820Sstevel@tonic-gate 3830Sstevel@tonic-gate if (prevp != NULL) 3840Sstevel@tonic-gate prevp->kn_next = nextp; 3850Sstevel@tonic-gate else 3860Sstevel@tonic-gate ntfy_list_head = nextp; 3870Sstevel@tonic-gate } else { 3880Sstevel@tonic-gate ASSERT(nep->kn_state == NTFY_RUNNING); 3890Sstevel@tonic-gate 3900Sstevel@tonic-gate /* 3910Sstevel@tonic-gate * We have to drop this lock as the client might call 3920Sstevel@tonic-gate * crypto_notify_events() in the callback routine resulting 3930Sstevel@tonic-gate * in a deadlock. 3940Sstevel@tonic-gate */ 3950Sstevel@tonic-gate mutex_exit(&ntfy_list_lock); 3960Sstevel@tonic-gate 3970Sstevel@tonic-gate /* 3980Sstevel@tonic-gate * Another thread is working on this element. We will wait 3990Sstevel@tonic-gate * for that thread to signal us when done. No other thread 4000Sstevel@tonic-gate * will free this element. So, we can be sure it stays valid 4010Sstevel@tonic-gate * after the wait. 4020Sstevel@tonic-gate */ 4030Sstevel@tonic-gate while (nep->kn_state == NTFY_RUNNING) 4040Sstevel@tonic-gate cv_wait(&nep->kn_cv, &nep->kn_lock); 4050Sstevel@tonic-gate mutex_exit(&nep->kn_lock); 4060Sstevel@tonic-gate 4070Sstevel@tonic-gate /* 4080Sstevel@tonic-gate * We have to remove the element from the notification list. 4090Sstevel@tonic-gate * So, start over and do the work (acquire locks etc.). This is 4100Sstevel@tonic-gate * safe (i.e. We won't be in this routine forever) as the 4112800Skrishna * events do not happen frequently. We have to revisit this 4122800Skrishna * code if we add a new event that happens often. 4130Sstevel@tonic-gate */ 4140Sstevel@tonic-gate goto retry; 4150Sstevel@tonic-gate } 4160Sstevel@tonic-gate 4170Sstevel@tonic-gate mutex_exit(&nep->kn_lock); 4180Sstevel@tonic-gate 4190Sstevel@tonic-gate /* Free the element */ 4200Sstevel@tonic-gate mutex_destroy(&nep->kn_lock); 4210Sstevel@tonic-gate cv_destroy(&nep->kn_cv); 4220Sstevel@tonic-gate kmem_free(nep, sizeof (kcf_ntfy_elem_t)); 4230Sstevel@tonic-gate 4240Sstevel@tonic-gate mutex_exit(&ntfy_list_lock); 4250Sstevel@tonic-gate } 4260Sstevel@tonic-gate 4270Sstevel@tonic-gate /* 4280Sstevel@tonic-gate * We walk the notification list and do the callbacks. 4290Sstevel@tonic-gate */ 4300Sstevel@tonic-gate void 4310Sstevel@tonic-gate kcf_walk_ntfylist(uint32_t event, void *event_arg) 4320Sstevel@tonic-gate { 4330Sstevel@tonic-gate kcf_ntfy_elem_t *nep; 4340Sstevel@tonic-gate int nelem = 0; 4350Sstevel@tonic-gate 4360Sstevel@tonic-gate mutex_enter(&ntfy_list_lock); 4370Sstevel@tonic-gate 4380Sstevel@tonic-gate /* 4390Sstevel@tonic-gate * Count how many clients are on the notification list. We need 4400Sstevel@tonic-gate * this count to ensure that clients which joined the list after we 4410Sstevel@tonic-gate * have started this walk, are not wrongly notified. 4420Sstevel@tonic-gate */ 4430Sstevel@tonic-gate for (nep = ntfy_list_head; nep != NULL; nep = nep->kn_next) 4440Sstevel@tonic-gate nelem++; 4450Sstevel@tonic-gate 4460Sstevel@tonic-gate for (nep = ntfy_list_head; (nep != NULL && nelem); nep = nep->kn_next) { 4470Sstevel@tonic-gate nelem--; 4480Sstevel@tonic-gate 4490Sstevel@tonic-gate /* 4500Sstevel@tonic-gate * Check if this client is interested in the 4510Sstevel@tonic-gate * event. 4520Sstevel@tonic-gate */ 4530Sstevel@tonic-gate if (!(nep->kn_event_mask & event)) 4540Sstevel@tonic-gate continue; 4550Sstevel@tonic-gate 4560Sstevel@tonic-gate mutex_enter(&nep->kn_lock); 4570Sstevel@tonic-gate nep->kn_state = NTFY_RUNNING; 4580Sstevel@tonic-gate mutex_exit(&nep->kn_lock); 4590Sstevel@tonic-gate mutex_exit(&ntfy_list_lock); 4600Sstevel@tonic-gate 4610Sstevel@tonic-gate /* 4620Sstevel@tonic-gate * We invoke the callback routine with no locks held. Another 4630Sstevel@tonic-gate * client could have joined the list meanwhile. This is fine 4640Sstevel@tonic-gate * as we maintain nelem as stated above. The NULL check in the 4650Sstevel@tonic-gate * for loop guards against shrinkage. Also, any callers of 4660Sstevel@tonic-gate * crypto_unnotify_events() at this point cv_wait till kn_state 4670Sstevel@tonic-gate * changes to NTFY_WAITING. Hence, nep is assured to be valid. 4680Sstevel@tonic-gate */ 4690Sstevel@tonic-gate (*nep->kn_func)(event, event_arg); 4700Sstevel@tonic-gate 4710Sstevel@tonic-gate mutex_enter(&nep->kn_lock); 4720Sstevel@tonic-gate nep->kn_state = NTFY_WAITING; 4730Sstevel@tonic-gate cv_broadcast(&nep->kn_cv); 4740Sstevel@tonic-gate mutex_exit(&nep->kn_lock); 4750Sstevel@tonic-gate 4760Sstevel@tonic-gate mutex_enter(&ntfy_list_lock); 4770Sstevel@tonic-gate } 4780Sstevel@tonic-gate 4790Sstevel@tonic-gate mutex_exit(&ntfy_list_lock); 4800Sstevel@tonic-gate } 4810Sstevel@tonic-gate 4820Sstevel@tonic-gate /* 4830Sstevel@tonic-gate * crypto_key_check() 4840Sstevel@tonic-gate * 4850Sstevel@tonic-gate * Arguments: 4860Sstevel@tonic-gate * . mech: the mechanism to check the key with. 4870Sstevel@tonic-gate * . key: the key to check for validity and weakness. 4880Sstevel@tonic-gate * 4890Sstevel@tonic-gate * Description: 4900Sstevel@tonic-gate * Checks the validity and strength of the key for the mechanism. 4910Sstevel@tonic-gate * CRYPTO_KEY_REFERENCE is not supported for this routine. 4920Sstevel@tonic-gate * If more than one provider is capable of key checking for the mechanism, 4930Sstevel@tonic-gate * then run the key through them all. 4940Sstevel@tonic-gate * A conservative approach is adopted here: New weak keys may be 4950Sstevel@tonic-gate * discovered with more recent providers. If at least one provider is 4960Sstevel@tonic-gate * not happy with a key, then it is no good. 4970Sstevel@tonic-gate * 4980Sstevel@tonic-gate * Context: 4990Sstevel@tonic-gate * Process and interruption. 5000Sstevel@tonic-gate */ 5010Sstevel@tonic-gate int 5020Sstevel@tonic-gate crypto_key_check(crypto_mechanism_t *mech, crypto_key_t *key) 5030Sstevel@tonic-gate { 5040Sstevel@tonic-gate int error; 5050Sstevel@tonic-gate kcf_mech_entry_t *me; 5060Sstevel@tonic-gate kcf_provider_desc_t *pd; 5070Sstevel@tonic-gate kcf_prov_mech_desc_t *prov_chain; 5080Sstevel@tonic-gate 5090Sstevel@tonic-gate /* when mech is a valid mechanism, me will be its mech_entry */ 5100Sstevel@tonic-gate if ((mech == NULL) || (key == NULL) || 5110Sstevel@tonic-gate (key->ck_format == CRYPTO_KEY_REFERENCE)) 5120Sstevel@tonic-gate return (CRYPTO_ARGUMENTS_BAD); 5130Sstevel@tonic-gate 5140Sstevel@tonic-gate if ((error = kcf_get_mech_entry(mech->cm_type, &me)) != KCF_SUCCESS) { 5150Sstevel@tonic-gate /* error is one of the KCF_INVALID_MECH_XXX's */ 5160Sstevel@tonic-gate return (CRYPTO_MECHANISM_INVALID); 5170Sstevel@tonic-gate } 5180Sstevel@tonic-gate 5190Sstevel@tonic-gate mutex_enter(&me->me_mutex); 5200Sstevel@tonic-gate 5210Sstevel@tonic-gate /* First let the software provider check this key */ 5220Sstevel@tonic-gate if (me->me_sw_prov != NULL) { 5230Sstevel@tonic-gate pd = me->me_sw_prov->pm_prov_desc; 5240Sstevel@tonic-gate KCF_PROV_REFHOLD(pd); 5250Sstevel@tonic-gate 5260Sstevel@tonic-gate if ((KCF_PROV_KEY_OPS(pd) != NULL) && 5270Sstevel@tonic-gate (KCF_PROV_KEY_OPS(pd)->key_check != NULL)) { 5280Sstevel@tonic-gate crypto_mechanism_t lmech; 5290Sstevel@tonic-gate 5300Sstevel@tonic-gate mutex_exit(&me->me_mutex); 5310Sstevel@tonic-gate lmech = *mech; 5320Sstevel@tonic-gate KCF_SET_PROVIDER_MECHNUM(mech->cm_type, pd, &lmech); 5330Sstevel@tonic-gate error = KCF_PROV_KEY_CHECK(pd, &lmech, key); 5340Sstevel@tonic-gate 5350Sstevel@tonic-gate if (error != CRYPTO_SUCCESS) { 5360Sstevel@tonic-gate KCF_PROV_REFRELE(pd); 5370Sstevel@tonic-gate return (error); 5380Sstevel@tonic-gate } 5390Sstevel@tonic-gate 5400Sstevel@tonic-gate mutex_enter(&me->me_mutex); 5410Sstevel@tonic-gate } 5420Sstevel@tonic-gate KCF_PROV_REFRELE(pd); 5430Sstevel@tonic-gate } 5440Sstevel@tonic-gate 5450Sstevel@tonic-gate prov_chain = me->me_hw_prov_chain; 5460Sstevel@tonic-gate while (prov_chain != NULL) { 5470Sstevel@tonic-gate pd = prov_chain->pm_prov_desc; 5480Sstevel@tonic-gate KCF_PROV_REFHOLD(pd); 5490Sstevel@tonic-gate 5500Sstevel@tonic-gate if ((KCF_PROV_KEY_OPS(pd) != NULL) && 5510Sstevel@tonic-gate (KCF_PROV_KEY_OPS(pd)->key_check != NULL)) { 5520Sstevel@tonic-gate crypto_mechanism_t lmech; 5530Sstevel@tonic-gate 5540Sstevel@tonic-gate mutex_exit(&me->me_mutex); 5550Sstevel@tonic-gate lmech = *mech; 5560Sstevel@tonic-gate KCF_SET_PROVIDER_MECHNUM(mech->cm_type, pd, 5570Sstevel@tonic-gate &lmech); 5580Sstevel@tonic-gate error = KCF_PROV_KEY_CHECK(pd, &lmech, key); 5590Sstevel@tonic-gate 5600Sstevel@tonic-gate if (error != CRYPTO_SUCCESS) { 5610Sstevel@tonic-gate KCF_PROV_REFRELE(pd); 5620Sstevel@tonic-gate return (error); 5630Sstevel@tonic-gate } 5640Sstevel@tonic-gate mutex_enter(&me->me_mutex); 5650Sstevel@tonic-gate } 5660Sstevel@tonic-gate KCF_PROV_REFRELE(pd); 5670Sstevel@tonic-gate prov_chain = prov_chain->pm_next; 5680Sstevel@tonic-gate } 5690Sstevel@tonic-gate 5700Sstevel@tonic-gate mutex_exit(&me->me_mutex); 5710Sstevel@tonic-gate 5720Sstevel@tonic-gate /* All are happy with this key */ 5730Sstevel@tonic-gate return (CRYPTO_SUCCESS); 5740Sstevel@tonic-gate } 5750Sstevel@tonic-gate 576904Smcpowers int 577904Smcpowers crypto_key_check_prov(crypto_provider_t provider, crypto_mechanism_t *mech, 578904Smcpowers crypto_key_t *key) 579904Smcpowers { 580904Smcpowers kcf_provider_desc_t *pd = provider; 581904Smcpowers kcf_provider_desc_t *real_provider = pd; 582904Smcpowers crypto_mechanism_t lmech; 583904Smcpowers int rv; 584904Smcpowers 585904Smcpowers ASSERT(KCF_PROV_REFHELD(pd)); 586904Smcpowers 587904Smcpowers if ((mech == NULL) || (key == NULL) || 588904Smcpowers (key->ck_format == CRYPTO_KEY_REFERENCE)) 589904Smcpowers return (CRYPTO_ARGUMENTS_BAD); 590904Smcpowers 5911808Smcpowers /* no logical providers currently support the key check */ 592904Smcpowers if (pd->pd_prov_type == CRYPTO_LOGICAL_PROVIDER) { 5931808Smcpowers return (CRYPTO_NOT_SUPPORTED); 594904Smcpowers } 595904Smcpowers 596904Smcpowers lmech = *mech; 597904Smcpowers KCF_SET_PROVIDER_MECHNUM(mech->cm_type, real_provider, &lmech); 598904Smcpowers rv = KCF_PROV_KEY_CHECK(real_provider, &lmech, key); 599904Smcpowers if (pd->pd_prov_type == CRYPTO_LOGICAL_PROVIDER) 600904Smcpowers KCF_PROV_REFRELE(real_provider); 601904Smcpowers 602904Smcpowers return (rv); 603904Smcpowers } 604904Smcpowers 6050Sstevel@tonic-gate /* 6060Sstevel@tonic-gate * Initialize the specified crypto_mechanism_info_t structure for 6070Sstevel@tonic-gate * the specified mechanism provider descriptor. Used by 6080Sstevel@tonic-gate * crypto_get_all_mech_info(). 6090Sstevel@tonic-gate */ 6100Sstevel@tonic-gate static void 6110Sstevel@tonic-gate init_mechanism_info(crypto_mechanism_info_t *mech_info, 6120Sstevel@tonic-gate kcf_prov_mech_desc_t *pmd) 6130Sstevel@tonic-gate { 6140Sstevel@tonic-gate crypto_func_group_t fg = pmd->pm_mech_info.cm_func_group_mask; 6150Sstevel@tonic-gate 6160Sstevel@tonic-gate /* min/max key sizes */ 6173708Skrishna mech_info->mi_keysize_unit = pmd->pm_mech_info.cm_mech_flags & 6183708Skrishna (CRYPTO_KEYSIZE_UNIT_IN_BITS | CRYPTO_KEYSIZE_UNIT_IN_BYTES); 6190Sstevel@tonic-gate mech_info->mi_min_key_size = 6200Sstevel@tonic-gate (size_t)pmd->pm_mech_info.cm_min_key_length; 6210Sstevel@tonic-gate mech_info->mi_max_key_size = 6220Sstevel@tonic-gate (size_t)pmd->pm_mech_info.cm_max_key_length; 6230Sstevel@tonic-gate 6240Sstevel@tonic-gate /* usage flag */ 6250Sstevel@tonic-gate mech_info->mi_usage = 0; 6260Sstevel@tonic-gate if (fg & (CRYPTO_FG_ENCRYPT | CRYPTO_FG_ENCRYPT_ATOMIC)) 6270Sstevel@tonic-gate mech_info->mi_usage |= CRYPTO_MECH_USAGE_ENCRYPT; 6280Sstevel@tonic-gate if (fg & (CRYPTO_FG_DECRYPT | CRYPTO_FG_DECRYPT_ATOMIC)) 6290Sstevel@tonic-gate mech_info->mi_usage |= CRYPTO_MECH_USAGE_DECRYPT; 6300Sstevel@tonic-gate if (fg & (CRYPTO_FG_MAC | CRYPTO_FG_MAC_ATOMIC)) 6310Sstevel@tonic-gate mech_info->mi_usage |= CRYPTO_MECH_USAGE_MAC; 6320Sstevel@tonic-gate } 6330Sstevel@tonic-gate 6340Sstevel@tonic-gate /* 6350Sstevel@tonic-gate * Return the mechanism info for the specified mechanism. 6360Sstevel@tonic-gate */ 6370Sstevel@tonic-gate int 6380Sstevel@tonic-gate crypto_get_all_mech_info(crypto_mech_type_t mech_type, 6390Sstevel@tonic-gate crypto_mechanism_info_t **mech_infos, uint_t *num_mech_infos, 6400Sstevel@tonic-gate int km_flag) 6410Sstevel@tonic-gate { 6420Sstevel@tonic-gate uint_t ninfos, cur_info; 6430Sstevel@tonic-gate kcf_mech_entry_t *me; 6440Sstevel@tonic-gate int rv; 6450Sstevel@tonic-gate kcf_prov_mech_desc_t *hwp; 6460Sstevel@tonic-gate crypto_mechanism_info_t *infos; 6470Sstevel@tonic-gate size_t infos_size; 6480Sstevel@tonic-gate 6490Sstevel@tonic-gate /* get to the mech entry corresponding to the specified mech type */ 6500Sstevel@tonic-gate if ((rv = kcf_get_mech_entry(mech_type, &me)) != CRYPTO_SUCCESS) { 6510Sstevel@tonic-gate return (rv); 6520Sstevel@tonic-gate } 6530Sstevel@tonic-gate 6540Sstevel@tonic-gate /* compute the number of key size ranges to return */ 6550Sstevel@tonic-gate mutex_enter(&me->me_mutex); 6560Sstevel@tonic-gate again: 6570Sstevel@tonic-gate ninfos = PROV_COUNT(me); 6580Sstevel@tonic-gate mutex_exit(&me->me_mutex); 6590Sstevel@tonic-gate 6600Sstevel@tonic-gate if (ninfos == 0) { 6610Sstevel@tonic-gate infos = NULL; 6620Sstevel@tonic-gate rv = CRYPTO_SUCCESS; 6630Sstevel@tonic-gate goto bail; 6640Sstevel@tonic-gate } 6650Sstevel@tonic-gate infos_size = ninfos * sizeof (crypto_mechanism_info_t); 6660Sstevel@tonic-gate infos = kmem_alloc(infos_size, km_flag); 6670Sstevel@tonic-gate if (infos == NULL) { 6680Sstevel@tonic-gate rv = CRYPTO_HOST_MEMORY; 6690Sstevel@tonic-gate goto bail; 6700Sstevel@tonic-gate } 6710Sstevel@tonic-gate 6720Sstevel@tonic-gate mutex_enter(&me->me_mutex); 6730Sstevel@tonic-gate if (ninfos != PROV_COUNT(me)) { 6740Sstevel@tonic-gate kmem_free(infos, infos_size); 6750Sstevel@tonic-gate goto again; 6760Sstevel@tonic-gate } 6770Sstevel@tonic-gate 6780Sstevel@tonic-gate /* populate array of crypto mechanism infos */ 6790Sstevel@tonic-gate cur_info = 0; 6800Sstevel@tonic-gate 6810Sstevel@tonic-gate /* software provider, if present */ 6820Sstevel@tonic-gate if (me->me_sw_prov != NULL) 6830Sstevel@tonic-gate init_mechanism_info(&infos[cur_info++], me->me_sw_prov); 6840Sstevel@tonic-gate 6850Sstevel@tonic-gate /* hardware providers */ 6860Sstevel@tonic-gate for (hwp = me->me_hw_prov_chain; hwp != NULL; hwp = hwp->pm_next) 6870Sstevel@tonic-gate init_mechanism_info(&infos[cur_info++], hwp); 6880Sstevel@tonic-gate 6890Sstevel@tonic-gate mutex_exit(&me->me_mutex); 6900Sstevel@tonic-gate ASSERT(cur_info == ninfos); 6910Sstevel@tonic-gate bail: 6920Sstevel@tonic-gate *mech_infos = infos; 6930Sstevel@tonic-gate *num_mech_infos = ninfos; 6940Sstevel@tonic-gate return (rv); 6950Sstevel@tonic-gate } 696904Smcpowers 697904Smcpowers /* 698*8313SDina.Nimeh@Sun.Com * Frees the array of mechanism infos previously allocated by 699*8313SDina.Nimeh@Sun.Com * crypto_get_all_mech_info(). 700*8313SDina.Nimeh@Sun.Com */ 701*8313SDina.Nimeh@Sun.Com void 702*8313SDina.Nimeh@Sun.Com crypto_free_all_mech_info(crypto_mechanism_info_t *mech_infos, uint_t count) 703*8313SDina.Nimeh@Sun.Com { 704*8313SDina.Nimeh@Sun.Com if ((mech_infos != NULL) && (count > 0)) 705*8313SDina.Nimeh@Sun.Com kmem_free(mech_infos, count * sizeof (crypto_mechanism_info_t)); 706*8313SDina.Nimeh@Sun.Com } 707*8313SDina.Nimeh@Sun.Com 708*8313SDina.Nimeh@Sun.Com /* 709904Smcpowers * memcmp_pad_max() is a specialized version of memcmp() which 710904Smcpowers * compares two pieces of data up to a maximum length. If the 711904Smcpowers * the two data match up the maximum length, they are considered 712904Smcpowers * matching. Trailing blanks do not cause the match to fail if 713904Smcpowers * one of the data is shorter. 714904Smcpowers * 715904Smcpowers * Examples of matches: 716904Smcpowers * "one" | 717904Smcpowers * "one " | 718904Smcpowers * ^maximum length 719904Smcpowers * 720904Smcpowers * "Number One | X" (X is beyond maximum length) 721904Smcpowers * "Number One " | 722904Smcpowers * ^maximum length 723904Smcpowers * 724904Smcpowers * Examples of mismatches: 725904Smcpowers * " one" 726904Smcpowers * "one" 727904Smcpowers * 728904Smcpowers * "Number One X|" 729904Smcpowers * "Number One |" 730904Smcpowers * ^maximum length 731904Smcpowers */ 732904Smcpowers static int 733904Smcpowers memcmp_pad_max(void *d1, uint_t d1_len, void *d2, uint_t d2_len, uint_t max_sz) 734904Smcpowers { 735904Smcpowers uint_t len, extra_len; 736904Smcpowers char *marker; 737904Smcpowers 738904Smcpowers /* No point in comparing anything beyond max_sz */ 739904Smcpowers if (d1_len > max_sz) 740904Smcpowers d1_len = max_sz; 741904Smcpowers if (d2_len > max_sz) 742904Smcpowers d2_len = max_sz; 743904Smcpowers 744904Smcpowers /* Find shorter of the two data. */ 745904Smcpowers if (d1_len <= d2_len) { 746904Smcpowers len = d1_len; 747904Smcpowers extra_len = d2_len; 748904Smcpowers marker = d2; 749904Smcpowers } else { /* d1_len > d2_len */ 750904Smcpowers len = d2_len; 751904Smcpowers extra_len = d1_len; 752904Smcpowers marker = d1; 753904Smcpowers } 754904Smcpowers 755904Smcpowers /* Have a match in the shortest length of data? */ 756904Smcpowers if (memcmp(d1, d2, len) != 0) 757904Smcpowers /* CONSTCOND */ 758904Smcpowers return (!0); 759904Smcpowers 760904Smcpowers /* If the rest of longer data is nulls or blanks, call it a match. */ 761904Smcpowers while (len < extra_len) 762904Smcpowers if (!isspace(marker[len++])) 763904Smcpowers /* CONSTCOND */ 764904Smcpowers return (!0); 765904Smcpowers return (0); 766904Smcpowers } 767904Smcpowers 768904Smcpowers /* 769904Smcpowers * Obtain ext info for specified provider and see if it matches. 770904Smcpowers */ 771904Smcpowers static boolean_t 772904Smcpowers match_ext_info(kcf_provider_desc_t *pd, char *label, char *manuf, char *serial, 773904Smcpowers crypto_provider_ext_info_t *ext_info) 774904Smcpowers { 775904Smcpowers int rv; 776904Smcpowers 7772800Skrishna rv = crypto_get_provinfo(pd, ext_info); 7782800Skrishna ASSERT(rv != CRYPTO_NOT_SUPPORTED); 779904Smcpowers if (rv != CRYPTO_SUCCESS) 780904Smcpowers return (B_FALSE); 781904Smcpowers 782904Smcpowers if (memcmp_pad_max(ext_info->ei_label, CRYPTO_EXT_SIZE_LABEL, 783904Smcpowers label, strlen(label), CRYPTO_EXT_SIZE_LABEL)) 784904Smcpowers return (B_FALSE); 785904Smcpowers 786904Smcpowers if (manuf != NULL) { 787904Smcpowers if (memcmp_pad_max(ext_info->ei_manufacturerID, 788904Smcpowers CRYPTO_EXT_SIZE_MANUF, manuf, strlen(manuf), 789904Smcpowers CRYPTO_EXT_SIZE_MANUF)) 790904Smcpowers return (B_FALSE); 791904Smcpowers } 792904Smcpowers 793904Smcpowers if (serial != NULL) { 794904Smcpowers if (memcmp_pad_max(ext_info->ei_serial_number, 7952800Skrishna CRYPTO_EXT_SIZE_SERIAL, serial, strlen(serial), 796904Smcpowers CRYPTO_EXT_SIZE_SERIAL)) 797904Smcpowers return (B_FALSE); 798904Smcpowers } 799904Smcpowers return (B_TRUE); 800904Smcpowers } 801904Smcpowers 802904Smcpowers /* 803904Smcpowers * Find a provider based on its label, manufacturer ID, and serial number. 804904Smcpowers */ 805904Smcpowers crypto_provider_t 806904Smcpowers crypto_get_provider(char *label, char *manuf, char *serial) 807904Smcpowers { 808904Smcpowers kcf_provider_desc_t **provider_array, *pd; 809904Smcpowers crypto_provider_ext_info_t *ext_info; 810904Smcpowers uint_t count; 811904Smcpowers int i; 812904Smcpowers 813904Smcpowers /* manuf and serial are optional */ 814904Smcpowers if (label == NULL) 815904Smcpowers return (NULL); 816904Smcpowers 817904Smcpowers if (kcf_get_slot_list(&count, &provider_array, B_FALSE) 818904Smcpowers != CRYPTO_SUCCESS) 819904Smcpowers return (NULL); 820904Smcpowers 821904Smcpowers if (count == 0) 822904Smcpowers return (NULL); 823904Smcpowers 824904Smcpowers ext_info = kmem_zalloc(sizeof (crypto_provider_ext_info_t), KM_SLEEP); 825904Smcpowers 826904Smcpowers for (i = 0; i < count; i++) { 827904Smcpowers pd = provider_array[i]; 828904Smcpowers if (match_ext_info(pd, label, manuf, serial, ext_info)) { 829904Smcpowers KCF_PROV_REFHOLD(pd); 830904Smcpowers break; 831904Smcpowers } 832904Smcpowers } 833904Smcpowers if (i == count) 834904Smcpowers pd = NULL; 835904Smcpowers 836904Smcpowers kcf_free_provider_tab(count, provider_array); 837904Smcpowers kmem_free(ext_info, sizeof (crypto_provider_ext_info_t)); 838904Smcpowers return (pd); 839904Smcpowers } 840904Smcpowers 8412800Skrishna /* 8422800Skrishna * Get the provider information given a provider handle. The caller 8432800Skrishna * needs to allocate the space for the argument, info. 8442800Skrishna */ 8452800Skrishna int 8462800Skrishna crypto_get_provinfo(crypto_provider_t hndl, crypto_provider_ext_info_t *info) 8472800Skrishna { 8482800Skrishna int rv; 8492800Skrishna kcf_req_params_t params; 8502800Skrishna kcf_provider_desc_t *pd; 8512800Skrishna kcf_provider_desc_t *real_provider; 8522800Skrishna 8532800Skrishna pd = (kcf_provider_desc_t *)hndl; 8542800Skrishna rv = kcf_get_hardware_provider_nomech( 8552800Skrishna CRYPTO_OPS_OFFSET(provider_ops), CRYPTO_PROVIDER_OFFSET(ext_info), 8562800Skrishna CHECK_RESTRICT_FALSE, pd, &real_provider); 8572800Skrishna 8582800Skrishna if (rv == CRYPTO_SUCCESS && real_provider != NULL) { 8592800Skrishna ASSERT(real_provider == pd || 8602800Skrishna pd->pd_prov_type == CRYPTO_LOGICAL_PROVIDER); 8612800Skrishna KCF_WRAP_PROVMGMT_OPS_PARAMS(¶ms, KCF_OP_MGMT_EXTINFO, 8622800Skrishna 0, NULL, 0, NULL, 0, NULL, info, pd); 8632800Skrishna rv = kcf_submit_request(real_provider, NULL, NULL, ¶ms, 8642800Skrishna B_FALSE); 8652800Skrishna KCF_PROV_REFRELE(real_provider); 8662800Skrishna } 8672800Skrishna 8682800Skrishna return (rv); 8692800Skrishna } 8702800Skrishna 871904Smcpowers void 872904Smcpowers crypto_release_provider(crypto_provider_t provider) 873904Smcpowers { 874904Smcpowers KCF_PROV_REFRELE((kcf_provider_desc_t *)provider); 875904Smcpowers } 876