xref: /illumos-gate/usr/src/lib/pkcs11/libpkcs11/common/metaGlobal.h (revision 8654d0253136055bd4cc2423d87378e8a37f2eb5)
1 /*
2  * CDDL HEADER START
3  *
4  * The contents of this file are subject to the terms of the
5  * Common Development and Distribution License (the "License").
6  * You may not use this file except in compliance with the License.
7  *
8  * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9  * or http://www.opensolaris.org/os/licensing.
10  * See the License for the specific language governing permissions
11  * and limitations under the License.
12  *
13  * When distributing Covered Code, include this CDDL HEADER in each
14  * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15  * If applicable, add the following below this CDDL HEADER, with the
16  * fields enclosed by brackets "[]" replaced with your own identifying
17  * information: Portions Copyright [yyyy] [name of copyright owner]
18  *
19  * CDDL HEADER END
20  */
21 /*
22  * Copyright 2007 Sun Microsystems, Inc.  All rights reserved.
23  * Use is subject to license terms.
24  */
25 
26 #ifndef _METAGLOBAL_H
27 #define	_METAGLOBAL_H
28 
29 #pragma ident	"%Z%%M%	%I%	%E% SMI"
30 
31 /*
32  * This file contains all the data structures used for the meta slot
33  */
34 
35 #ifdef	__cplusplus
36 extern "C" {
37 #endif
38 
39 #include <pthread.h>
40 #include <synch.h>
41 #include <unistd.h>
42 #include <security/cryptoki.h>
43 #include <stdio.h>
44 #include <cryptoutil.h>
45 #include <pkcs11Session.h>
46 #include <pkcs11Slot.h>
47 
48 /*
49  * In "generic_attr_t", attributes that are not CK_BBOOL and
50  * CK_ULONG, the data will be stored in generic_data.
51  * Currently, 16 bytes will be pre-allocated for this.
52  * This is just a _WILD_ guess.  If actual
53  * experience shows that 16 bytes is too small for most of the
54  * data that will be stored here, and cause this
55  * memory to be reallocated all the time, this should be increased.
56  */
57 #define	INITIAL_ATTR_LEN	16
58 
59 /* We provide one slot, with the following arbitrary identifier. */
60 #define	METASLOT_SLOTID	42
61 
62 /* Metaslot is always the first slot in the framdwork, with slotID=0 */
63 #define	METASLOT_FRAMEWORK_ID	0
64 
65 /*
66  * These are the 2 acceptable string values for ${METASLOT_ENABLE} and
67  * ${METASLOT_AUTO_KEY_MIGRATE} environment variable
68  */
69 #define	TRUE_STRING	"true"
70 #define	FALSE_STRING	"false"
71 
72 /* Magic values for different data structures */
73 #define	METASLOT_SESSION_MAGIC		0xECF00004
74 #define	METASLOT_SESSION_BADMAGIC	0xBAD00004
75 #define	METASLOT_OBJECT_MAGIC		0xECF0B004
76 #define	METASLOT_OBJECT_BADMAGIC	0xBAD0B004
77 #define	METASLOT_OPSTATE_MAGIC		0xECF09004
78 #define	METASLOT_OPSTATE_BADMAGIC	0xBAD09004
79 
80 #define	IS_READ_ONLY_SESSION(session_flag) \
81 	(!(session_flag & CKF_RW_SESSION))
82 
83 /*
84  * Operation modes passed to meta_do_operation()
85  * MODE_UPDATE_WITHKEY is only used for C_DigestKey.
86  */
87 #define	MODE_SINGLE		0x0100
88 #define	MODE_UPDATE		0x0200
89 #define	MODE_UPDATE_WITHKEY	0x0400
90 #define	MODE_FINAL		0x1000
91 
92 
93 /* CK_INFO: Information about cryptoki */
94 #define	METASLOT_CRYPTOKI_VERSION_MAJOR	2
95 #define	METASLOT_CRYPTOKI_VERSION_MINOR	11
96 #define	METASLOT_MANUFACTURER_ID	"Sun Microsystems, Inc.          "
97 #define	METASLOT_LIBRARY_DESCRIPTION	"Sun Metaslot                    "
98 #define	METASLOT_LIBRARY_VERSION_MAJOR	1
99 #define	METASLOT_LIBRARY_VERSION_MINOR	1
100 
101 /* CK_SLOT_INFO */
102 #define	METASLOT_SLOT_DESCRIPTION	"Sun Metaslot                    " \
103 				"                                "
104 #define	METASLOT_HARDWARE_VERSION_MAJOR	0
105 #define	METASLOT_HARDWARE_VERSION_MINOR	0
106 #define	METASLOT_FIRMWARE_VERSION_MAJOR	0
107 #define	METASLOT_FIRMWARE_VERSION_MINOR	0
108 
109 /* CK_TOKEN_INFO: More information about token */
110 #define	METASLOT_TOKEN_LABEL		"Sun Metaslot                    "
111 #define	METASLOT_TOKEN_MODEL		"1.0             "
112 #define	RANDOM_DEVICE	"/dev/urandom"
113 
114 /*
115  * Maximum number of objects and sessions to queue up before actually
116  * freeing them using the free() system.  This is necessary to workaround
117  * a problem in which applications re-uses handles that are no longer valid
118  */
119 #define	MAX_OBJ_TO_BE_FREED	300
120 #define	MAX_SESSION_TO_BE_FREED	300
121 
122 /*
123  * The following 2 functions deals with inserting and deleting
124  * from double linked lists.  It can work with any data structure
125  * that have "prev" and "next" defined.
126  */
127 
128 /* This always inserts into the head of the list */
129 #define	INSERT_INTO_LIST(list, item)			\
130 {							\
131 	if ((list) == NULL) {				\
132 		(item)->prev = NULL;			\
133 		(item)->next = NULL;			\
134 		(list) = (item);			\
135 	} else {					\
136 		(item)->next = (list);			\
137 		(item)->prev = NULL;			\
138 		(list)->prev = (item);			\
139 		(list) = (item);			\
140 	}						\
141 }
142 
143 
144 /*
145  * Remove item from list
146  */
147 #define	REMOVE_FROM_LIST(list, item) 				\
148 {								\
149 	if ((list) == item) {					\
150 		if ((item)->next == NULL) {			\
151 			(list) = NULL;				\
152 		} else {					\
153 			(item)->next->prev = NULL;		\
154 			(list) = (item)->next;			\
155 		}						\
156 	} else {						\
157 		if ((item)->next) {				\
158 			(item)->next->prev = item->prev;	\
159 			(item)->prev->next = (item)->next;	\
160 		} else {					\
161 			(item)->prev->next = NULL;		\
162 		}						\
163 	}							\
164 }
165 
166 /*
167  * OBJRELEASE
168  *
169  * Signal that a metaobject is no longer in use (but is still valid).
170  */
171 #define	OBJRELEASE(object)						\
172 	if (object != NULL) {						\
173 		(void) pthread_rwlock_unlock(&object->object_lock);	\
174 	}
175 
176 /*
177  * REFRELEASE
178  *
179  * Signal that a metasession is no longer in use (but is still valid).
180  *
181  */
182 #define	REFRELEASE(session)						\
183 	if (session != NULL) {						\
184 		(void) pthread_rwlock_unlock(&session->session_lock);	\
185 	}
186 
187 /* FreeObject/FreeToken Enumeration */
188 typedef enum {
189 	FREE_UNCHECKED = 0,	/* Has not been checked */
190 	FREE_DISABLED = 1,	/* No supported provider or key type */
191 	FREE_ALLOWED_KEY = 2,	/* Supported key type */
192 	FREE_ENABLED = 3	/* FreeObject/Token enabled */
193 } freeobject_state_t;
194 
195 
196 /* Generic attribute type, for storing and managing PKCS#11 attributes. */
197 typedef struct _attr {
198 	CK_ATTRIBUTE attribute;
199 
200 	boolean_t isMalloced;
201 
202 	/* attr is necessary for creating a clone of the object */
203 	boolean_t isCloneAttr;
204 
205 	/*
206 	 * depends on the PKCS#11 implementation, this attr might or might
207 	 * not have a value.  It's OK for it to not have a value
208 	 * (ie: the default value is empty)
209 	 */
210 	boolean_t canBeEmptyValue;
211 
212 	boolean_t hasValueForClone;
213 
214 	CK_BBOOL generic_bbool;
215 	CK_ULONG generic_ulong;
216 	CK_BYTE generic_data[INITIAL_ATTR_LEN];
217 } generic_attr_t;
218 
219 /*
220  * These need to be defined here before the actual structures are defined
221  * because they are used in some of the structure definitions.
222  */
223 typedef struct slotobject slot_object_t;
224 typedef struct metasession meta_session_t;
225 typedef struct metaobject meta_object_t;
226 typedef struct metaopstate meta_opstate_t;
227 
228 /*
229  * slot_session_t
230  *
231  * Wrapper for a session on a provider. This structure is only used internally
232  * in metaslot; it is never revealed to applications.
233  */
234 typedef struct slotsession {
235 	CK_ULONG slotnum;
236 	CK_SLOT_ID fw_st_id; /* used for accessing framework's slottable */
237 	CK_SESSION_HANDLE hSession;
238 
239 	boolean_t is_dualop_capable;
240 	CK_FLAGS session_flags;	/* what type of session */
241 
242 	struct slotsession *next;
243 	struct slotsession *prev;
244 
245 	pthread_rwlock_t object_list_lock;
246 	slot_object_t *object_list_head;
247 } slot_session_t;
248 
249 
250 /*
251  * slot_object_t
252  *
253  * Wrapper for an object on a provider. This structure is only used internally
254  * in metaslot; it is never revealed to applications.
255  */
256 struct slotobject {
257 	CK_OBJECT_HANDLE hObject;
258 
259 	struct slotobject *next;
260 	struct slotobject *prev;
261 
262 	slot_session_t *creator_session;
263 
264 	boolean_t isToken;
265 };
266 
267 
268 /*
269  * mechinfo_t
270  *
271  * A mechinfo_t is created for each mechanism on a slot.
272  *
273  * This information is used for selecting which slots support the given
274  * mechanism for a crypto operation.
275  *
276  */
277 typedef struct mechinfo {
278 	CK_ULONG slotnum;
279 
280 	boolean_t initialized;
281 	boolean_t supported;
282 	CK_MECHANISM_INFO mechanism_info;
283 } mechinfo_t;
284 
285 
286 /*
287  * operation_info_t
288  *
289  * Part of a meta_session_t, used to track active operations.
290  */
291 typedef struct opinfo {
292 	CK_FLAGS type;
293 	slot_session_t *session;
294 	mechinfo_t *stats;
295 } operation_info_t;
296 
297 typedef struct find_objs_info {
298 	boolean_t op_active;	/* Indicate whether FindObjects is active */
299 	meta_object_t **matched_objs;
300 	int num_matched_objs;
301 	int next_result_index;	/* index of next object to be returned */
302 } find_objs_info_t;
303 
304 typedef struct mech_support_info {
305 	CK_MECHANISM_TYPE mech;
306 	/* Array of mechinfo_t allocated based on number of slots */
307 	mechinfo_t **supporting_slots;
308 	unsigned long num_supporting_slots;
309 } mech_support_info_t;
310 
311 /*
312  * meta_session_t
313  *
314  * The internal state for a meta-session is kept here. The session handles
315  * given to applications are always pointers to a structure of this type.
316  *
317  */
318 struct metasession {
319 	ulong_t magic_marker;
320 	pthread_rwlock_t session_lock;
321 
322 	pthread_mutex_t isClosingSession_lock;
323 	boolean_t isClosingSession;
324 
325 	struct metasession *next;
326 	struct metasession *prev;
327 
328 	CK_FLAGS session_flags;
329 
330 	/*
331 	 * Could have just declared this as "op", but declaring it as
332 	 * op1 so that "op2" can be easily added when dual-op support
333 	 * is implemented in the future
334 	 */
335 	operation_info_t op1;
336 
337 	/*
338 	 * This is for keeping track of which slots support a particular
339 	 * mechanism.  This information doesn't
340 	 * have to be kept on a per session bases, but having the
341 	 * memory pre-allocated per session would make things much simpiler,
342 	 * because memory doesn't need to be allocated/deallocated everytime
343 	 * we do an operation.
344 	 */
345 	mech_support_info_t mech_support_info;
346 
347 
348 	/* Session objects created by this session. */
349 	pthread_rwlock_t object_list_lock;
350 	meta_object_t *object_list_head;
351 
352 	/* C_FindObjects support. */
353 	find_objs_info_t find_objs_info;
354 };
355 
356 
357 /*
358  * meta_object_t
359  *
360  * The internal state for a meta-object is kept here. The object handles
361  * given to applications are always pointers to a structure of this type.
362  */
363 struct metaobject {
364 	ulong_t magic_marker;
365 	pthread_rwlock_t object_lock;
366 
367 	pthread_mutex_t isClosingObject_lock;
368 	boolean_t isClosingObject;
369 
370 	struct metaobject *next;
371 	struct metaobject *prev;
372 
373 	meta_session_t *creator_session; /* Only set for session objects */
374 
375 	boolean_t isToken;		/* alias for CKA_TOKEN */
376 	boolean_t isPrivate;		/* alias for CKA_PRIVATE */
377 	boolean_t isSensitive;		/* alias for CKA_SENSITIVE */
378 	boolean_t isExtractable;	/* alias for CKA_EXTRACTABLE */
379 
380 	freeobject_state_t isFreeToken;
381 	freeobject_state_t isFreeObject;
382 
383 	CK_ULONG master_clone_slotnum; /* set when object is created */
384 	slot_object_t **clones;
385 	/* indicate if tried to create clone object in a slot */
386 	boolean_t	*tried_create_clone;
387 
388 	pthread_rwlock_t attribute_lock;
389 	size_t num_attributes;
390 	generic_attr_t *attributes;
391 
392 	pthread_mutex_t clone_create_lock;
393 	size_t clone_template_size;	/* 0 if not yet known. */
394 	CK_ATTRIBUTE *clone_template; /* NULL if not yet known. */
395 };
396 
397 
398 /*
399  * struct metaopstate
400  *
401  * Used as the format for the operation state returned via
402  * C_GetOperationState.
403  */
404 typedef struct opstate_data {
405 	CK_FLAGS	op_type;
406 	CK_ULONG	op_slotnum;
407 	CK_ULONG	op_state_len;
408 } opstate_data_t;
409 
410 struct metaopstate {
411 	ulong_t magic_marker;
412 	/*
413 	 * Could have just declared this as "state", but declaring it like this
414 	 * so that when dual-op support is implemented in the future, the
415 	 * changes will be simplier.
416 	 */
417 	struct opstate_data state[1];
418 };
419 
420 
421 /*
422  * session_pool_t
423  *
424  * Used to cache open sessions in a slot.
425  */
426 typedef struct sessionpool {
427 	pthread_mutex_t list_lock;
428 
429 	/* list of sessions that's currently in use */
430 	slot_session_t *active_list_head;
431 
432 	/*
433 	 * list of sessions that are not in use, but can't be deleted because
434 	 * either session/token objects are created using these sessions
435 	 * or we need to have one session left with the provider to maintain
436 	 * the logged in state.  Any of these sessions could be re-used if
437 	 * a session is needed to be established with a provider.
438 	 */
439 	slot_session_t *persist_list_head;
440 
441 	/*
442 	 * List of sessions that are not in use at the moment.  We keep
443 	 * a list of sessions with a particular provider instead of
444 	 * creating a new session everytime for efficiency
445 	 */
446 	slot_session_t *idle_list_head;
447 	boolean_t keep_one_alive;
448 	int num_idle_sessions; /* number of sessions in "idle_list_head" */
449 } session_pool_t;
450 
451 
452 /*
453  * slot_data_t
454  *
455  * Each slot has a session pool, a collection of persistant sessions to
456  * allow for more efficient operation. Specifically, to allow reuse of
457  * previously session objects (which need the creating session to stick
458  * around), as well as being frugal with creating/closing sessions.
459  */
460 typedef struct slotdata {
461 	CK_SLOT_ID fw_st_id; /* framework slot table ID */
462 
463 	session_pool_t session_pool;
464 
465 	pthread_rwlock_t tokenobject_list_lock;
466 	slot_object_t *tokenobject_list_head;
467 } slot_data_t;
468 
469 
470 typedef enum {
471 	ALL_TOKEN = 0,
472 	PUBLIC_TOKEN = 1,
473 	PRIVATE_TOKEN = 2
474 } token_obj_type_t;
475 
476 /*
477  * metaslot_config_t
478  *
479  * This holds the configuration information for meta slot.
480  * It will first be filled with values that users defined
481  * in environment variables.  Any value not defined by the user
482  * will be filled with values from the system wide configuration file.
483  */
484 typedef struct _metaslot_config {
485 	/* token to be used as the keystore for metaslot */
486 	boolean_t keystore_token_specified;
487 	CK_UTF8CHAR keystore_token[TOKEN_LABEL_SIZE + 1];
488 
489 	/* slot to be used as the keystore for metaslot */
490 	boolean_t keystore_slot_specified;
491 	CK_UTF8CHAR keystore_slot[SLOT_DESCRIPTION_SIZE + 1];
492 
493 	/* should meta slot be enabled or not */
494 	boolean_t enabled_specified;
495 	boolean_t enabled;
496 
497 	/* should auto migration of sensitive token objects be enabled or not */
498 	boolean_t auto_key_migrate_specified;
499 	boolean_t auto_key_migrate;
500 } metaslot_config_t;
501 
502 /*
503  * The following 2 structures are used to link the to-be-freed
504  * meta sessions and meta objects into linked lists.
505  * The items on these linked list have not yet been freed via free(); instead
506  * they are added to this list. The actual free will take place when
507  * the number of objects queued reaches MAX_OBJ_TO_BE_FREED or
508  * MAX_SESSION_TO_BE_FREED, at which time the first object in the
509  * list will be freed.
510  */
511 typedef struct obj_to_be_freed_list {
512 	meta_object_t   *first; /* points to first obj in the list */
513 	meta_object_t   *last;  /* points to last obj in the list */
514 	uint32_t	count;  /* current total objs in the list */
515 	pthread_mutex_t	obj_to_be_free_mutex;
516 } object_to_be_freed_list_t;
517 
518 typedef struct ses_to_be_freed_list {
519 	meta_session_t *first; /* points to first session in the list */
520 	meta_session_t *last;  /* points to last session in the list */
521 	uint32_t	count;  /* current total session in the list */
522 	pthread_mutex_t ses_to_be_free_mutex;
523 } ses_to_be_freed_list_t;
524 
525 /* Global variables */
526 extern metaslot_config_t metaslot_config;
527 extern boolean_t metaslot_enabled;
528 extern CK_SLOT_ID metaslot_keystore_slotid;
529 extern boolean_t metaslot_auto_key_migrate;
530 extern struct CK_FUNCTION_LIST metaslot_functionList;
531 extern int meta_urandom_seed_fd;
532 extern pthread_mutex_t initmutex;
533 
534 extern ses_to_be_freed_list_t ses_delay_freed;
535 extern object_to_be_freed_list_t obj_delay_freed;
536 
537 extern CK_BBOOL falsevalue;
538 extern CK_BBOOL truevalue;
539 
540 /* --- Prototypes --- */
541 
542 CK_RV meta_slotManager_initialize();
543 void meta_slotManager_finalize();
544 void meta_slotManager_find_object_token();
545 CK_RV meta_get_slot_session(CK_ULONG slotnum, slot_session_t **session,
546     CK_FLAGS flags);
547 void meta_release_slot_session(slot_session_t *session);
548 
549 CK_RV meta_mechManager_initialize();
550 void meta_mechManager_finalize();
551 CK_RV meta_mechManager_get_mechs(CK_MECHANISM_TYPE *list, CK_ULONG *listsize);
552 CK_RV meta_mechManager_get_slots(mech_support_info_t  *mech_support_info,
553     boolean_t force_update, CK_MECHANISM_INFO *mech_info);
554 CK_RV meta_mechManager_slot_supports_mech(CK_MECHANISM_TYPE mechanism,
555     CK_ULONG slotnum, boolean_t *supports, mechinfo_t **slot_info,
556     boolean_t force_update, CK_MECHANISM_INFO *mech_info);
557 
558 CK_RV meta_operation_init(CK_FLAGS optype, meta_session_t *session,
559     CK_MECHANISM *pMechanism, meta_object_t *key);
560 CK_RV meta_do_operation(CK_FLAGS optype, int mode,
561     meta_session_t *session, meta_object_t *object,
562     CK_BYTE *in, CK_ULONG inLen, CK_BYTE *out, CK_ULONG *outLen);
563 
564 void meta_operation_cleanup(meta_session_t *session, CK_FLAGS optype,
565     boolean_t finished_normally);
566 
567 CK_RV meta_generate_keys(meta_session_t *session, CK_MECHANISM *pMechanism,
568     CK_ATTRIBUTE *k1Template, CK_ULONG k1AttrCount, meta_object_t *key1,
569     CK_ATTRIBUTE *k2Template, CK_ULONG k2AttrCount, meta_object_t *key2);
570 
571 CK_RV meta_wrap_key(meta_session_t *session,
572     CK_MECHANISM *pMechanism, meta_object_t *wrappingkey,
573     meta_object_t *inputkey,
574     CK_BYTE *wrapped_key, CK_ULONG *wrapped_key_len);
575 
576 CK_RV meta_unwrap_key(meta_session_t *session,
577     CK_MECHANISM *pMechanism, meta_object_t *unwrapping_key,
578     CK_BYTE *wrapped_key, CK_ULONG wrapped_key_len,
579     CK_ATTRIBUTE *template, CK_ULONG template_size,
580     meta_object_t *unwrapped_key);
581 
582 CK_RV meta_derive_key(meta_session_t *session, CK_MECHANISM *pMech,
583     meta_object_t *basekey1, meta_object_t *basekey2,
584     CK_OBJECT_HANDLE *phBaseKey2,
585     CK_ATTRIBUTE *pTemplate, CK_ULONG ulAttributeCount,
586     meta_object_t *newKey1, meta_object_t *newKey2,
587     meta_object_t *newKey3, meta_object_t *newKey4);
588 
589 void get_user_metaslot_config();
590 
591 CK_RV meta_sessionManager_initialize();
592 void meta_sessionManager_finalize();
593 CK_RV meta_handle2session(CK_SESSION_HANDLE hSession,
594     meta_session_t **session_p);
595 CK_RV meta_session_alloc(meta_session_t **newSession);
596 CK_RV meta_session_activate(meta_session_t *session);
597 CK_RV meta_session_deactivate(meta_session_t *session,
598     boolean_t have_sessionlist_lock);
599 void meta_session_dealloc(meta_session_t *session);
600 void meta_session_delay_free(meta_session_t *sp);
601 
602 CK_RV meta_objectManager_initialize();
603 void meta_objectManager_finalize();
604 CK_RV meta_handle2object(CK_OBJECT_HANDLE hObject, meta_object_t **object);
605 CK_RV meta_object_alloc(meta_session_t *session, meta_object_t **object);
606 CK_RV meta_object_get_attr(slot_session_t *slot_session,
607     CK_OBJECT_HANDLE hObject, meta_object_t *object);
608 void meta_object_activate(meta_object_t *object);
609 CK_RV meta_object_deactivate(meta_object_t *object, boolean_t have_list_lock,
610     boolean_t have_object_lock);
611 CK_RV meta_object_dealloc(meta_object_t *object, boolean_t nukeSourceObj);
612 CK_RV meta_slot_object_alloc(slot_object_t **object);
613 void meta_slot_object_activate(slot_object_t *object, slot_session_t *session,
614 	boolean_t isToken);
615 void meta_slot_object_deactivate(slot_object_t *object);
616 void meta_slot_object_dealloc(slot_object_t *object);
617 CK_RV meta_object_copyin(meta_object_t *object);
618 CK_RV meta_object_get_clone(meta_object_t *object,
619 	CK_ULONG slot_num, slot_session_t *slot_session,
620 	slot_object_t **clone);
621 meta_object_t *meta_object_find_by_handle(CK_OBJECT_HANDLE hObject,
622 	CK_ULONG slotnum, boolean_t token_only);
623 CK_RV meta_token_object_deactivate(token_obj_type_t token_type);
624 void meta_object_delay_free(meta_object_t *objp);
625 boolean_t meta_freeobject_set(meta_object_t *object, CK_ATTRIBUTE *tmpl,
626     CK_ULONG tmpl_len, boolean_t create);
627 CK_RV meta_freetoken_set(CK_ULONG slot_num, CK_BBOOL *current_value,
628     CK_ATTRIBUTE *tmpl, CK_ULONG tmpl_len);
629 boolean_t meta_freeobject_check(meta_session_t *session, meta_object_t *obj,
630     CK_MECHANISM *pMech, CK_ATTRIBUTE *tmpl, CK_ULONG tmpl_len,
631     CK_KEY_TYPE keytype);
632 boolean_t meta_freeobject_clone(meta_session_t *session, meta_object_t *object);
633 
634 CK_RV get_master_attributes_by_object(slot_session_t *session,
635     slot_object_t *slot_object, generic_attr_t **attributes,
636     size_t *num_attributes);
637 CK_RV get_master_attributes_by_template(
638 	CK_ATTRIBUTE *template, CK_ULONG template_size,
639 	generic_attr_t **attributes, size_t *num_attributes);
640 CK_RV get_master_template_by_type(CK_OBJECT_CLASS class, CK_ULONG subtype,
641 	generic_attr_t **attributes, size_t *num_attributes);
642 CK_RV get_master_attributes_by_type(CK_OBJECT_CLASS class, CK_ULONG subtype,
643 	generic_attr_t **attributes, size_t *num_attributes);
644 CK_RV get_master_attributes_by_duplication(
645 	generic_attr_t *src_attrs, size_t num_src_attrs,
646 	generic_attr_t **dst_attrs, size_t *num_dst_attrs);
647 void dealloc_attributes(generic_attr_t *attributes, size_t num_attributes);
648 CK_RV attribute_set_value(CK_ATTRIBUTE *new_attr,
649 	generic_attr_t *attributes, size_t num_attributes);
650 boolean_t get_template_ulong(CK_ATTRIBUTE_TYPE type, CK_ATTRIBUTE *attributes,
651 	CK_ULONG num_attributes, CK_ULONG *result);
652 boolean_t get_template_boolean(CK_ATTRIBUTE_TYPE type,
653     CK_ATTRIBUTE *attributes, CK_ULONG num_attributes, boolean_t *result);
654 int set_template_boolean(CK_ATTRIBUTE_TYPE type,
655     CK_ATTRIBUTE *attributes, CK_ULONG num_attributes, boolean_t local,
656     CK_BBOOL *value);
657 CK_ULONG get_keystore_slotnum(void);
658 CK_SLOT_ID meta_slotManager_get_framework_table_id(CK_ULONG slotnum);
659 CK_ULONG meta_slotManager_get_slotcount(void);
660 boolean_t meta_slotManager_token_write_protected(void);
661 boolean_t metaslot_logged_in();
662 void metaslot_set_logged_in_flag(boolean_t value);
663 
664 int looping_read(int, void *, int);
665 int looping_write(int, void *, int);
666 
667 /*
668  * Prototypes for the various meta_Foo implementations of C_Foo.
669  *
670  */
671 CK_RV meta_GetFunctionList(CK_FUNCTION_LIST_PTR_PTR ppFunctionList);
672 CK_RV meta_Initialize(CK_VOID_PTR pInitArgs);
673 CK_RV meta_Finalize(CK_VOID_PTR pReserved);
674 CK_RV meta_GetInfo(CK_INFO_PTR pInfo);
675 CK_RV meta_GetSlotList(CK_BBOOL tokenPresent, CK_SLOT_ID_PTR pSlotList,
676     CK_ULONG_PTR pulCount);
677 CK_RV meta_GetSlotInfo(CK_SLOT_ID slotID, CK_SLOT_INFO_PTR pInfo);
678 CK_RV meta_GetTokenInfo(CK_SLOT_ID slotID, CK_TOKEN_INFO_PTR pInfo);
679 CK_RV meta_GetMechanismList(CK_SLOT_ID slotID,
680     CK_MECHANISM_TYPE_PTR pMechanismList, CK_ULONG_PTR pulCount);
681 CK_RV meta_GetMechanismInfo(CK_SLOT_ID slotID, CK_MECHANISM_TYPE type,
682     CK_MECHANISM_INFO_PTR pInfo);
683 CK_RV meta_InitToken(CK_SLOT_ID slotID, CK_UTF8CHAR_PTR pPin,
684     CK_ULONG ulPinLen, CK_UTF8CHAR_PTR pLabel);
685 CK_RV meta_InitPIN(CK_SESSION_HANDLE hSession, CK_UTF8CHAR_PTR pPin,
686     CK_ULONG ulPinLen);
687 CK_RV meta_SetPIN(CK_SESSION_HANDLE hSession, CK_UTF8CHAR_PTR pOldPin,
688     CK_ULONG ulOldPinLen, CK_UTF8CHAR_PTR pNewPin, CK_ULONG ulNewPinLen);
689 CK_RV meta_OpenSession(CK_SLOT_ID slotID, CK_FLAGS flags,
690     CK_VOID_PTR pApplication, CK_NOTIFY Notify,
691     CK_SESSION_HANDLE_PTR phSession);
692 CK_RV meta_CloseSession(CK_SESSION_HANDLE hSession);
693 CK_RV meta_CloseAllSessions(CK_SLOT_ID slotID);
694 CK_RV meta_GetSessionInfo(CK_SESSION_HANDLE hSession,
695     CK_SESSION_INFO_PTR pInfo);
696 CK_RV meta_GetOperationState(CK_SESSION_HANDLE hSession,
697     CK_BYTE_PTR pOperationState, CK_ULONG_PTR pulOperationStateLen);
698 CK_RV meta_SetOperationState(CK_SESSION_HANDLE hSession,
699     CK_BYTE_PTR pOperationState, CK_ULONG ulOperationStateLen,
700     CK_OBJECT_HANDLE hEncryptionKey, CK_OBJECT_HANDLE hAuthenticationKey);
701 CK_RV meta_Login(CK_SESSION_HANDLE hSession, CK_USER_TYPE userType,
702     CK_UTF8CHAR_PTR pPin, CK_ULONG ulPinLen);
703 CK_RV meta_Logout(CK_SESSION_HANDLE hSession);
704 CK_RV meta_CreateObject(CK_SESSION_HANDLE hSession, CK_ATTRIBUTE_PTR pTemplate,
705     CK_ULONG ulCount, CK_OBJECT_HANDLE_PTR phObject);
706 CK_RV meta_CopyObject(CK_SESSION_HANDLE hSession, CK_OBJECT_HANDLE hObject,
707     CK_ATTRIBUTE_PTR pTemplate, CK_ULONG ulCount,
708     CK_OBJECT_HANDLE_PTR phNewObject);
709 CK_RV meta_DestroyObject(CK_SESSION_HANDLE hSession, CK_OBJECT_HANDLE hObject);
710 CK_RV meta_GetObjectSize(CK_SESSION_HANDLE hSession, CK_OBJECT_HANDLE hObject,
711     CK_ULONG_PTR pulSize);
712 CK_RV meta_GetAttributeValue(CK_SESSION_HANDLE hSession,
713     CK_OBJECT_HANDLE hObject, CK_ATTRIBUTE_PTR pTemplate, CK_ULONG ulCount);
714 CK_RV meta_SetAttributeValue(CK_SESSION_HANDLE hSession,
715     CK_OBJECT_HANDLE hObject, CK_ATTRIBUTE_PTR pTemplate, CK_ULONG ulCount);
716 CK_RV meta_FindObjectsInit(CK_SESSION_HANDLE hSession,
717     CK_ATTRIBUTE_PTR pTemplate, CK_ULONG ulCount);
718 CK_RV meta_FindObjects(CK_SESSION_HANDLE hSession,
719     CK_OBJECT_HANDLE_PTR phObject, CK_ULONG ulMaxObjectCount,
720     CK_ULONG_PTR pulObjectCount);
721 CK_RV meta_FindObjectsFinal(CK_SESSION_HANDLE hSession);
722 CK_RV meta_EncryptInit(CK_SESSION_HANDLE hSession, CK_MECHANISM_PTR pMechanism,
723     CK_OBJECT_HANDLE hKey);
724 CK_RV meta_Encrypt(CK_SESSION_HANDLE hSession,
725     CK_BYTE_PTR pData, CK_ULONG ulDataLen,
726     CK_BYTE_PTR pEncryptedData, CK_ULONG_PTR pulEncryptedDataLen);
727 CK_RV meta_EncryptUpdate(CK_SESSION_HANDLE hSession,
728     CK_BYTE_PTR pPart, CK_ULONG ulPartLen,
729     CK_BYTE_PTR pEncryptedPart, CK_ULONG_PTR pulEncryptedPartLen);
730 CK_RV meta_EncryptFinal(CK_SESSION_HANDLE hSession,
731     CK_BYTE_PTR pLastEncryptedPart, CK_ULONG_PTR pulLastEncryptedPartLen);
732 CK_RV meta_DecryptInit(CK_SESSION_HANDLE hSession, CK_MECHANISM_PTR pMechanism,
733     CK_OBJECT_HANDLE hKey);
734 CK_RV meta_Decrypt(CK_SESSION_HANDLE hSession,
735     CK_BYTE_PTR pEncryptedData, CK_ULONG ulEncryptedDataLen,
736     CK_BYTE_PTR pData, CK_ULONG_PTR pulDataLen);
737 CK_RV meta_DecryptUpdate(CK_SESSION_HANDLE hSession,
738     CK_BYTE_PTR pEncryptedPart, CK_ULONG ulEncryptedPartLen,
739     CK_BYTE_PTR pPart, CK_ULONG_PTR pulPartLen);
740 CK_RV meta_DecryptFinal(CK_SESSION_HANDLE hSession,
741     CK_BYTE_PTR pLastPart, CK_ULONG_PTR pulLastPartLen);
742 CK_RV meta_DigestInit(CK_SESSION_HANDLE hSession, CK_MECHANISM_PTR pMechanism);
743 CK_RV meta_Digest(CK_SESSION_HANDLE hSession, CK_BYTE_PTR pData,
744     CK_ULONG ulDataLen, CK_BYTE_PTR pDigest, CK_ULONG_PTR pulDigestLen);
745 CK_RV meta_DigestUpdate(CK_SESSION_HANDLE hSession, CK_BYTE_PTR pPart,
746     CK_ULONG ulPartLen);
747 CK_RV meta_DigestKey(CK_SESSION_HANDLE hSession, CK_OBJECT_HANDLE hKey);
748 CK_RV meta_DigestFinal(CK_SESSION_HANDLE hSession, CK_BYTE_PTR pDigest,
749     CK_ULONG_PTR pulDigestLen);
750 CK_RV meta_SignInit(CK_SESSION_HANDLE hSession, CK_MECHANISM_PTR pMechanism,
751     CK_OBJECT_HANDLE hKey);
752 CK_RV meta_Sign(CK_SESSION_HANDLE hSession,
753     CK_BYTE_PTR pData, CK_ULONG ulDataLen,
754     CK_BYTE_PTR pSignature, CK_ULONG_PTR pulSignatureLen);
755 CK_RV meta_SignUpdate(CK_SESSION_HANDLE hSession,
756     CK_BYTE_PTR pPart, CK_ULONG ulPartLen);
757 CK_RV meta_SignFinal(CK_SESSION_HANDLE hSession, CK_BYTE_PTR pSignature,
758     CK_ULONG_PTR pulSignatureLen);
759 CK_RV meta_SignRecoverInit(CK_SESSION_HANDLE hSession,
760     CK_MECHANISM_PTR pMechanism, CK_OBJECT_HANDLE hKey);
761 CK_RV meta_SignRecover(CK_SESSION_HANDLE hSession, CK_BYTE_PTR pData,
762     CK_ULONG ulDataLen, CK_BYTE_PTR pSignature, CK_ULONG_PTR pulSignatureLen);
763 CK_RV meta_VerifyInit(CK_SESSION_HANDLE hSession, CK_MECHANISM_PTR pMechanism,
764     CK_OBJECT_HANDLE hKey);
765 CK_RV meta_Verify(CK_SESSION_HANDLE hSession, CK_BYTE_PTR pData,
766     CK_ULONG ulDataLen, CK_BYTE_PTR pSignature, CK_ULONG ulSignatureLen);
767 CK_RV meta_VerifyUpdate(CK_SESSION_HANDLE hSession, CK_BYTE_PTR pPart,
768     CK_ULONG ulPartLen);
769 CK_RV meta_VerifyFinal(CK_SESSION_HANDLE hSession, CK_BYTE_PTR pSignature,
770     CK_ULONG ulSignatureLen);
771 CK_RV meta_VerifyRecoverInit(CK_SESSION_HANDLE hSession,
772     CK_MECHANISM_PTR pMechanism, CK_OBJECT_HANDLE hKey);
773 CK_RV meta_VerifyRecover(CK_SESSION_HANDLE hSession, CK_BYTE_PTR pSignature,
774     CK_ULONG ulSignatureLen, CK_BYTE_PTR pData, CK_ULONG_PTR pulDataLen);
775 CK_RV meta_DigestEncryptUpdate(CK_SESSION_HANDLE hSession, CK_BYTE_PTR pPart,
776     CK_ULONG ulPartLen, CK_BYTE_PTR pEncryptedPart,
777     CK_ULONG_PTR pulEncryptedPartLen);
778 CK_RV meta_DecryptDigestUpdate(CK_SESSION_HANDLE hSession,
779     CK_BYTE_PTR pEncryptedPart, CK_ULONG ulEncryptedPartLen,
780     CK_BYTE_PTR pPart, CK_ULONG_PTR pulPartLen);
781 CK_RV meta_SignEncryptUpdate(CK_SESSION_HANDLE hSession, CK_BYTE_PTR pPart,
782     CK_ULONG ulPartLen, CK_BYTE_PTR pEncryptedPart,
783     CK_ULONG_PTR pulEncryptedPartLen);
784 CK_RV meta_DecryptVerifyUpdate(CK_SESSION_HANDLE hSession,
785     CK_BYTE_PTR pEncryptedPart, CK_ULONG ulEncryptedPartLen,
786     CK_BYTE_PTR pPart, CK_ULONG_PTR pulPartLen);
787 CK_RV meta_GenerateKey(CK_SESSION_HANDLE hSession, CK_MECHANISM_PTR pMechanism,
788     CK_ATTRIBUTE_PTR pTemplate, CK_ULONG ulCount, CK_OBJECT_HANDLE_PTR phKey);
789 CK_RV meta_GenerateKeyPair(CK_SESSION_HANDLE hSession,
790     CK_MECHANISM_PTR pMechanism, CK_ATTRIBUTE_PTR pPublicKeyTemplate,
791     CK_ULONG ulPublicKeyAttributeCount, CK_ATTRIBUTE_PTR pPrivateKeyTemplate,
792     CK_ULONG ulPrivateKeyAttributeCount, CK_OBJECT_HANDLE_PTR phPublicKey,
793     CK_OBJECT_HANDLE_PTR phPrivateKey);
794 CK_RV meta_WrapKey(CK_SESSION_HANDLE hSession, CK_MECHANISM_PTR pMechanism,
795     CK_OBJECT_HANDLE hWrappingKey, CK_OBJECT_HANDLE hKey,
796     CK_BYTE_PTR pWrappedKey, CK_ULONG_PTR pulWrappedKeyLen);
797 CK_RV meta_UnwrapKey(CK_SESSION_HANDLE hSession, CK_MECHANISM_PTR pMechanism,
798     CK_OBJECT_HANDLE hUnwrappingKey, CK_BYTE_PTR pWrappedKey,
799     CK_ULONG ulWrappedKeyLen, CK_ATTRIBUTE_PTR pTemplate,
800     CK_ULONG ulAttributeCount, CK_OBJECT_HANDLE_PTR phKey);
801 CK_RV meta_DeriveKey(CK_SESSION_HANDLE hSession, CK_MECHANISM_PTR pMechanism,
802     CK_OBJECT_HANDLE hBaseKey, CK_ATTRIBUTE_PTR pTemplate,
803     CK_ULONG ulAttributeCount, CK_OBJECT_HANDLE_PTR phKey);
804 CK_RV meta_SeedRandom(CK_SESSION_HANDLE hSession, CK_BYTE_PTR pSeed,
805     CK_ULONG ulSeedLen);
806 CK_RV meta_GenerateRandom(CK_SESSION_HANDLE hSession, CK_BYTE_PTR pRandomData,
807     CK_ULONG ulRandomLen);
808 CK_RV meta_GetFunctionStatus(CK_SESSION_HANDLE hSession);
809 CK_RV meta_CancelFunction(CK_SESSION_HANDLE hSession);
810 CK_RV meta_WaitForSlotEvent(CK_FLAGS flags, CK_SLOT_ID_PTR pSlot,
811     CK_VOID_PTR pReserved);
812 
813 #ifdef	__cplusplus
814 }
815 #endif
816 
817 #endif /* _METAGLOBAL_H */
818