xref: /freebsd/sys/opencrypto/crypto.c (revision d8409aaf6e683996e179b67ebb387777104595cb)
1091d81d1SSam Leffler /*	$OpenBSD: crypto.c,v 1.38 2002/06/11 11:14:29 beck Exp $	*/
2091d81d1SSam Leffler /*
3091d81d1SSam Leffler  * The author of this code is Angelos D. Keromytis (angelos@cis.upenn.edu)
4091d81d1SSam Leffler  *
5091d81d1SSam Leffler  * This code was written by Angelos D. Keromytis in Athens, Greece, in
6091d81d1SSam Leffler  * February 2000. Network Security Technologies Inc. (NSTI) kindly
7091d81d1SSam Leffler  * supported the development of this code.
8091d81d1SSam Leffler  *
9091d81d1SSam Leffler  * Copyright (c) 2000, 2001 Angelos D. Keromytis
10091d81d1SSam Leffler  *
11091d81d1SSam Leffler  * Permission to use, copy, and modify this software with or without fee
12091d81d1SSam Leffler  * is hereby granted, provided that this entire notice is included in
13091d81d1SSam Leffler  * all source code copies of any software which is or includes a copy or
14091d81d1SSam Leffler  * modification of this software.
15091d81d1SSam Leffler  *
16091d81d1SSam Leffler  * THIS SOFTWARE IS BEING PROVIDED "AS IS", WITHOUT ANY EXPRESS OR
17091d81d1SSam Leffler  * IMPLIED WARRANTY. IN PARTICULAR, NONE OF THE AUTHORS MAKES ANY
18091d81d1SSam Leffler  * REPRESENTATION OR WARRANTY OF ANY KIND CONCERNING THE
19091d81d1SSam Leffler  * MERCHANTABILITY OF THIS SOFTWARE OR ITS FITNESS FOR ANY PARTICULAR
20091d81d1SSam Leffler  * PURPOSE.
21091d81d1SSam Leffler  */
222c446514SDavid E. O'Brien 
232c446514SDavid E. O'Brien #include <sys/cdefs.h>
242c446514SDavid E. O'Brien __FBSDID("$FreeBSD$");
252c446514SDavid E. O'Brien 
267d1853eeSSam Leffler #define	CRYPTO_TIMING				/* enable timing support */
27091d81d1SSam Leffler 
28091d81d1SSam Leffler #include <sys/param.h>
29091d81d1SSam Leffler #include <sys/systm.h>
30091d81d1SSam Leffler #include <sys/eventhandler.h>
31091d81d1SSam Leffler #include <sys/kernel.h>
32091d81d1SSam Leffler #include <sys/kthread.h>
33091d81d1SSam Leffler #include <sys/lock.h>
34091d81d1SSam Leffler #include <sys/mutex.h>
35091d81d1SSam Leffler #include <sys/malloc.h>
36091d81d1SSam Leffler #include <sys/proc.h>
37091d81d1SSam Leffler #include <sys/sysctl.h>
38091d81d1SSam Leffler 
39091d81d1SSam Leffler #include <vm/uma.h>
40091d81d1SSam Leffler #include <opencrypto/cryptodev.h>
411a91ccccSSam Leffler #include <opencrypto/xform.h>			/* XXX for M_XDATA */
42091d81d1SSam Leffler 
43091d81d1SSam Leffler /*
44091d81d1SSam Leffler  * Crypto drivers register themselves by allocating a slot in the
45091d81d1SSam Leffler  * crypto_drivers table with crypto_get_driverid() and then registering
46091d81d1SSam Leffler  * each algorithm they support with crypto_register() and crypto_kregister().
47091d81d1SSam Leffler  */
48091d81d1SSam Leffler static	struct mtx crypto_drivers_mtx;		/* lock on driver table */
49091d81d1SSam Leffler #define	CRYPTO_DRIVER_LOCK()	mtx_lock(&crypto_drivers_mtx)
50091d81d1SSam Leffler #define	CRYPTO_DRIVER_UNLOCK()	mtx_unlock(&crypto_drivers_mtx)
51091d81d1SSam Leffler static	struct cryptocap *crypto_drivers = NULL;
52091d81d1SSam Leffler static	int crypto_drivers_num = 0;
53091d81d1SSam Leffler 
54091d81d1SSam Leffler /*
55091d81d1SSam Leffler  * There are two queues for crypto requests; one for symmetric (e.g.
56091d81d1SSam Leffler  * cipher) operations and one for asymmetric (e.g. MOD)operations.
57091d81d1SSam Leffler  * A single mutex is used to lock access to both queues.  We could
58091d81d1SSam Leffler  * have one per-queue but having one simplifies handling of block/unblock
59091d81d1SSam Leffler  * operations.
60091d81d1SSam Leffler  */
61091d81d1SSam Leffler static	TAILQ_HEAD(,cryptop) crp_q;		/* request queues */
62091d81d1SSam Leffler static	TAILQ_HEAD(,cryptkop) crp_kq;
63091d81d1SSam Leffler static	struct mtx crypto_q_mtx;
64091d81d1SSam Leffler #define	CRYPTO_Q_LOCK()		mtx_lock(&crypto_q_mtx)
65091d81d1SSam Leffler #define	CRYPTO_Q_UNLOCK()	mtx_unlock(&crypto_q_mtx)
66091d81d1SSam Leffler 
67091d81d1SSam Leffler /*
68091d81d1SSam Leffler  * There are two queues for processing completed crypto requests; one
69091d81d1SSam Leffler  * for the symmetric and one for the asymmetric ops.  We only need one
70091d81d1SSam Leffler  * but have two to avoid type futzing (cryptop vs. cryptkop).  A single
71091d81d1SSam Leffler  * mutex is used to lock access to both queues.  Note that this lock
72091d81d1SSam Leffler  * must be separate from the lock on request queues to insure driver
73091d81d1SSam Leffler  * callbacks don't generate lock order reversals.
74091d81d1SSam Leffler  */
75091d81d1SSam Leffler static	TAILQ_HEAD(,cryptop) crp_ret_q;		/* callback queues */
76091d81d1SSam Leffler static	TAILQ_HEAD(,cryptkop) crp_ret_kq;
77091d81d1SSam Leffler static	struct mtx crypto_ret_q_mtx;
78091d81d1SSam Leffler #define	CRYPTO_RETQ_LOCK()	mtx_lock(&crypto_ret_q_mtx)
79091d81d1SSam Leffler #define	CRYPTO_RETQ_UNLOCK()	mtx_unlock(&crypto_ret_q_mtx)
80091d81d1SSam Leffler 
81091d81d1SSam Leffler static	uma_zone_t cryptop_zone;
82091d81d1SSam Leffler static	uma_zone_t cryptodesc_zone;
83091d81d1SSam Leffler 
84091d81d1SSam Leffler int	crypto_userasymcrypto = 1;	/* userland may do asym crypto reqs */
85091d81d1SSam Leffler SYSCTL_INT(_kern, OID_AUTO, userasymcrypto, CTLFLAG_RW,
86091d81d1SSam Leffler 	   &crypto_userasymcrypto, 0,
87091d81d1SSam Leffler 	   "Enable/disable user-mode access to asymmetric crypto support");
88091d81d1SSam Leffler int	crypto_devallowsoft = 0;	/* only use hardware crypto for asym */
89091d81d1SSam Leffler SYSCTL_INT(_kern, OID_AUTO, cryptodevallowsoft, CTLFLAG_RW,
90091d81d1SSam Leffler 	   &crypto_devallowsoft, 0,
91091d81d1SSam Leffler 	   "Enable/disable use of software asym crypto support");
92091d81d1SSam Leffler 
93091d81d1SSam Leffler MALLOC_DEFINE(M_CRYPTO_DATA, "crypto", "crypto session records");
94091d81d1SSam Leffler 
9551e45326SSam Leffler static	void crypto_proc(void);
9651e45326SSam Leffler static	struct proc *cryptoproc;
9751e45326SSam Leffler static	void crypto_ret_proc(void);
9851e45326SSam Leffler static	struct proc *cryptoretproc;
9951e45326SSam Leffler static	void crypto_destroy(void);
100f7890744SSam Leffler static	int crypto_invoke(struct cryptop *crp, int hint);
101f7890744SSam Leffler static	int crypto_kinvoke(struct cryptkop *krp, int hint);
10251e45326SSam Leffler 
1037d1853eeSSam Leffler static	struct cryptostats cryptostats;
1047d1853eeSSam Leffler SYSCTL_STRUCT(_kern, OID_AUTO, crypto_stats, CTLFLAG_RW, &cryptostats,
1057d1853eeSSam Leffler 	    cryptostats, "Crypto system statistics");
1067d1853eeSSam Leffler 
1077d1853eeSSam Leffler #ifdef CRYPTO_TIMING
1087d1853eeSSam Leffler static	int crypto_timing = 0;
1097d1853eeSSam Leffler SYSCTL_INT(_debug, OID_AUTO, crypto_timing, CTLFLAG_RW,
1107d1853eeSSam Leffler 	   &crypto_timing, 0, "Enable/disable crypto timing support");
1117d1853eeSSam Leffler #endif
1127d1853eeSSam Leffler 
11351e45326SSam Leffler static int
114091d81d1SSam Leffler crypto_init(void)
115091d81d1SSam Leffler {
11651e45326SSam Leffler 	int error;
117091d81d1SSam Leffler 
1183569ae7fSSam Leffler 	mtx_init(&crypto_drivers_mtx, "crypto", "crypto driver table",
1193569ae7fSSam Leffler 		MTX_DEF|MTX_QUIET);
120091d81d1SSam Leffler 
121091d81d1SSam Leffler 	TAILQ_INIT(&crp_q);
122091d81d1SSam Leffler 	TAILQ_INIT(&crp_kq);
1233569ae7fSSam Leffler 	mtx_init(&crypto_q_mtx, "crypto", "crypto op queues", MTX_DEF);
124091d81d1SSam Leffler 
125091d81d1SSam Leffler 	TAILQ_INIT(&crp_ret_q);
126091d81d1SSam Leffler 	TAILQ_INIT(&crp_ret_kq);
1273569ae7fSSam Leffler 	mtx_init(&crypto_ret_q_mtx, "crypto", "crypto return queues", MTX_DEF);
12851e45326SSam Leffler 
12951e45326SSam Leffler 	cryptop_zone = uma_zcreate("cryptop", sizeof (struct cryptop),
13051e45326SSam Leffler 				    0, 0, 0, 0,
13151e45326SSam Leffler 				    UMA_ALIGN_PTR, UMA_ZONE_ZINIT);
13251e45326SSam Leffler 	cryptodesc_zone = uma_zcreate("cryptodesc", sizeof (struct cryptodesc),
13351e45326SSam Leffler 				    0, 0, 0, 0,
13451e45326SSam Leffler 				    UMA_ALIGN_PTR, UMA_ZONE_ZINIT);
13551e45326SSam Leffler 	if (cryptodesc_zone == NULL || cryptop_zone == NULL) {
13651e45326SSam Leffler 		printf("crypto_init: cannot setup crypto zones\n");
13751e45326SSam Leffler 		error = ENOMEM;
13851e45326SSam Leffler 		goto bad;
13951e45326SSam Leffler 	}
14051e45326SSam Leffler 
14151e45326SSam Leffler 	crypto_drivers_num = CRYPTO_DRIVERS_INITIAL;
14251e45326SSam Leffler 	crypto_drivers = malloc(crypto_drivers_num *
14351e45326SSam Leffler 	    sizeof(struct cryptocap), M_CRYPTO_DATA, M_NOWAIT | M_ZERO);
14451e45326SSam Leffler 	if (crypto_drivers == NULL) {
14551e45326SSam Leffler 		printf("crypto_init: cannot setup crypto drivers\n");
14651e45326SSam Leffler 		error = ENOMEM;
14751e45326SSam Leffler 		goto bad;
14851e45326SSam Leffler 	}
14951e45326SSam Leffler 
15051e45326SSam Leffler 	error = kthread_create((void (*)(void *)) crypto_proc, NULL,
15151e45326SSam Leffler 		    &cryptoproc, 0, 0, "crypto");
15251e45326SSam Leffler 	if (error) {
15351e45326SSam Leffler 		printf("crypto_init: cannot start crypto thread; error %d",
15451e45326SSam Leffler 			error);
15551e45326SSam Leffler 		goto bad;
15651e45326SSam Leffler 	}
15751e45326SSam Leffler 
15851e45326SSam Leffler 	error = kthread_create((void (*)(void *)) crypto_ret_proc, NULL,
15951e45326SSam Leffler 		    &cryptoretproc, 0, 0, "crypto returns");
16051e45326SSam Leffler 	if (error) {
16151e45326SSam Leffler 		printf("crypto_init: cannot start cryptoret thread; error %d",
16251e45326SSam Leffler 			error);
16351e45326SSam Leffler 		goto bad;
16451e45326SSam Leffler 	}
16551e45326SSam Leffler 	return 0;
16651e45326SSam Leffler bad:
16751e45326SSam Leffler 	crypto_destroy();
16851e45326SSam Leffler 	return error;
16951e45326SSam Leffler }
17051e45326SSam Leffler 
17151e45326SSam Leffler /*
17251e45326SSam Leffler  * Signal a crypto thread to terminate.  We use the driver
17351e45326SSam Leffler  * table lock to synchronize the sleep/wakeups so that we
17451e45326SSam Leffler  * are sure the threads have terminated before we release
17551e45326SSam Leffler  * the data structures they use.  See crypto_finis below
17651e45326SSam Leffler  * for the other half of this song-and-dance.
17751e45326SSam Leffler  */
17851e45326SSam Leffler static void
17951e45326SSam Leffler crypto_terminate(struct proc **pp, void *q)
18051e45326SSam Leffler {
18151e45326SSam Leffler 	struct proc *p;
18251e45326SSam Leffler 
18351e45326SSam Leffler 	mtx_assert(&crypto_drivers_mtx, MA_OWNED);
18451e45326SSam Leffler 	p = *pp;
18551e45326SSam Leffler 	*pp = NULL;
18651e45326SSam Leffler 	if (p) {
18751e45326SSam Leffler 		wakeup_one(q);
18851e45326SSam Leffler 		PROC_LOCK(p);		/* NB: insure we don't miss wakeup */
18951e45326SSam Leffler 		CRYPTO_DRIVER_UNLOCK();	/* let crypto_finis progress */
19051e45326SSam Leffler 		msleep(p, &p->p_mtx, PWAIT, "crypto_destroy", 0);
19151e45326SSam Leffler 		PROC_UNLOCK(p);
19251e45326SSam Leffler 		CRYPTO_DRIVER_LOCK();
19351e45326SSam Leffler 	}
19451e45326SSam Leffler }
19551e45326SSam Leffler 
19651e45326SSam Leffler static void
19751e45326SSam Leffler crypto_destroy(void)
19851e45326SSam Leffler {
19951e45326SSam Leffler 	/*
20051e45326SSam Leffler 	 * Terminate any crypto threads.
20151e45326SSam Leffler 	 */
20251e45326SSam Leffler 	CRYPTO_DRIVER_LOCK();
20351e45326SSam Leffler 	crypto_terminate(&cryptoproc, &crp_q);
20451e45326SSam Leffler 	crypto_terminate(&cryptoretproc, &crp_ret_q);
20551e45326SSam Leffler 	CRYPTO_DRIVER_UNLOCK();
20651e45326SSam Leffler 
20751e45326SSam Leffler 	/* XXX flush queues??? */
20851e45326SSam Leffler 
20951e45326SSam Leffler 	/*
21051e45326SSam Leffler 	 * Reclaim dynamically allocated resources.
21151e45326SSam Leffler 	 */
21251e45326SSam Leffler 	if (crypto_drivers != NULL)
21351e45326SSam Leffler 		free(crypto_drivers, M_CRYPTO_DATA);
21451e45326SSam Leffler 
21551e45326SSam Leffler 	if (cryptodesc_zone != NULL)
21651e45326SSam Leffler 		uma_zdestroy(cryptodesc_zone);
21751e45326SSam Leffler 	if (cryptop_zone != NULL)
21851e45326SSam Leffler 		uma_zdestroy(cryptop_zone);
21951e45326SSam Leffler 	mtx_destroy(&crypto_q_mtx);
22051e45326SSam Leffler 	mtx_destroy(&crypto_ret_q_mtx);
22151e45326SSam Leffler 	mtx_destroy(&crypto_drivers_mtx);
222091d81d1SSam Leffler }
223f544a528SMark Murray 
224f544a528SMark Murray /*
225f544a528SMark Murray  * Initialization code, both for static and dynamic loading.
226f544a528SMark Murray  */
227f544a528SMark Murray static int
228f544a528SMark Murray crypto_modevent(module_t mod, int type, void *unused)
229f544a528SMark Murray {
23051e45326SSam Leffler 	int error = EINVAL;
23151e45326SSam Leffler 
232f544a528SMark Murray 	switch (type) {
233f544a528SMark Murray 	case MOD_LOAD:
23451e45326SSam Leffler 		error = crypto_init();
23551e45326SSam Leffler 		if (error == 0 && bootverbose)
236f544a528SMark Murray 			printf("crypto: <crypto core>\n");
23751e45326SSam Leffler 		break;
238f544a528SMark Murray 	case MOD_UNLOAD:
239f544a528SMark Murray 		/*XXX disallow if active sessions */
24051e45326SSam Leffler 		error = 0;
24151e45326SSam Leffler 		crypto_destroy();
242f544a528SMark Murray 		return 0;
243f544a528SMark Murray 	}
24451e45326SSam Leffler 	return error;
245f544a528SMark Murray }
246f544a528SMark Murray 
247f544a528SMark Murray static moduledata_t crypto_mod = {
248f544a528SMark Murray 	"crypto",
249f544a528SMark Murray 	crypto_modevent,
250f544a528SMark Murray 	0
251f544a528SMark Murray };
252f544a528SMark Murray MODULE_VERSION(crypto, 1);
2535a7294d1SSam Leffler DECLARE_MODULE(crypto, crypto_mod, SI_SUB_DRIVERS, SI_ORDER_FIRST);
254091d81d1SSam Leffler 
255091d81d1SSam Leffler /*
256091d81d1SSam Leffler  * Create a new session.
257091d81d1SSam Leffler  */
258091d81d1SSam Leffler int
259091d81d1SSam Leffler crypto_newsession(u_int64_t *sid, struct cryptoini *cri, int hard)
260091d81d1SSam Leffler {
261091d81d1SSam Leffler 	struct cryptoini *cr;
262091d81d1SSam Leffler 	u_int32_t hid, lid;
263091d81d1SSam Leffler 	int err = EINVAL;
264091d81d1SSam Leffler 
265091d81d1SSam Leffler 	CRYPTO_DRIVER_LOCK();
266091d81d1SSam Leffler 
267091d81d1SSam Leffler 	if (crypto_drivers == NULL)
268091d81d1SSam Leffler 		goto done;
269091d81d1SSam Leffler 
270091d81d1SSam Leffler 	/*
271091d81d1SSam Leffler 	 * The algorithm we use here is pretty stupid; just use the
272091d81d1SSam Leffler 	 * first driver that supports all the algorithms we need.
273091d81d1SSam Leffler 	 *
274091d81d1SSam Leffler 	 * XXX We need more smarts here (in real life too, but that's
275091d81d1SSam Leffler 	 * XXX another story altogether).
276091d81d1SSam Leffler 	 */
277091d81d1SSam Leffler 
278091d81d1SSam Leffler 	for (hid = 0; hid < crypto_drivers_num; hid++) {
27907d0c94aSSam Leffler 		struct cryptocap *cap = &crypto_drivers[hid];
280091d81d1SSam Leffler 		/*
281091d81d1SSam Leffler 		 * If it's not initialized or has remaining sessions
282091d81d1SSam Leffler 		 * referencing it, skip.
283091d81d1SSam Leffler 		 */
28407d0c94aSSam Leffler 		if (cap->cc_newsession == NULL ||
28507d0c94aSSam Leffler 		    (cap->cc_flags & CRYPTOCAP_F_CLEANUP))
286091d81d1SSam Leffler 			continue;
287091d81d1SSam Leffler 
288091d81d1SSam Leffler 		/* Hardware required -- ignore software drivers. */
28907d0c94aSSam Leffler 		if (hard > 0 && (cap->cc_flags & CRYPTOCAP_F_SOFTWARE))
290091d81d1SSam Leffler 			continue;
291091d81d1SSam Leffler 		/* Software required -- ignore hardware drivers. */
29207d0c94aSSam Leffler 		if (hard < 0 && (cap->cc_flags & CRYPTOCAP_F_SOFTWARE) == 0)
293091d81d1SSam Leffler 			continue;
294091d81d1SSam Leffler 
295091d81d1SSam Leffler 		/* See if all the algorithms are supported. */
296091d81d1SSam Leffler 		for (cr = cri; cr; cr = cr->cri_next)
29707d0c94aSSam Leffler 			if (cap->cc_alg[cr->cri_alg] == 0)
298091d81d1SSam Leffler 				break;
299091d81d1SSam Leffler 
300091d81d1SSam Leffler 		if (cr == NULL) {
301091d81d1SSam Leffler 			/* Ok, all algorithms are supported. */
302091d81d1SSam Leffler 
303091d81d1SSam Leffler 			/*
304091d81d1SSam Leffler 			 * Can't do everything in one session.
305091d81d1SSam Leffler 			 *
306091d81d1SSam Leffler 			 * XXX Fix this. We need to inject a "virtual" session layer right
307091d81d1SSam Leffler 			 * XXX about here.
308091d81d1SSam Leffler 			 */
309091d81d1SSam Leffler 
310091d81d1SSam Leffler 			/* Call the driver initialization routine. */
311091d81d1SSam Leffler 			lid = hid;		/* Pass the driver ID. */
31207d0c94aSSam Leffler 			err = (*cap->cc_newsession)(cap->cc_arg, &lid, cri);
313091d81d1SSam Leffler 			if (err == 0) {
31407d0c94aSSam Leffler 				/* XXX assert (hid &~ 0xffffff) == 0 */
31507d0c94aSSam Leffler 				/* XXX assert (cap->cc_flags &~ 0xff) == 0 */
31607d0c94aSSam Leffler 				(*sid) = ((cap->cc_flags & 0xff) << 24) | hid;
317091d81d1SSam Leffler 				(*sid) <<= 32;
318091d81d1SSam Leffler 				(*sid) |= (lid & 0xffffffff);
31907d0c94aSSam Leffler 				cap->cc_sessions++;
320091d81d1SSam Leffler 			}
321091d81d1SSam Leffler 			break;
322091d81d1SSam Leffler 		}
323091d81d1SSam Leffler 	}
324091d81d1SSam Leffler done:
325091d81d1SSam Leffler 	CRYPTO_DRIVER_UNLOCK();
326091d81d1SSam Leffler 	return err;
327091d81d1SSam Leffler }
328091d81d1SSam Leffler 
329091d81d1SSam Leffler /*
330091d81d1SSam Leffler  * Delete an existing session (or a reserved session on an unregistered
331091d81d1SSam Leffler  * driver).
332091d81d1SSam Leffler  */
333091d81d1SSam Leffler int
334091d81d1SSam Leffler crypto_freesession(u_int64_t sid)
335091d81d1SSam Leffler {
336091d81d1SSam Leffler 	u_int32_t hid;
337091d81d1SSam Leffler 	int err;
338091d81d1SSam Leffler 
339091d81d1SSam Leffler 	CRYPTO_DRIVER_LOCK();
340091d81d1SSam Leffler 
341091d81d1SSam Leffler 	if (crypto_drivers == NULL) {
342091d81d1SSam Leffler 		err = EINVAL;
343091d81d1SSam Leffler 		goto done;
344091d81d1SSam Leffler 	}
345091d81d1SSam Leffler 
346091d81d1SSam Leffler 	/* Determine two IDs. */
34707d0c94aSSam Leffler 	hid = CRYPTO_SESID2HID(sid);
348091d81d1SSam Leffler 
349091d81d1SSam Leffler 	if (hid >= crypto_drivers_num) {
350091d81d1SSam Leffler 		err = ENOENT;
351091d81d1SSam Leffler 		goto done;
352091d81d1SSam Leffler 	}
353091d81d1SSam Leffler 
354091d81d1SSam Leffler 	if (crypto_drivers[hid].cc_sessions)
355091d81d1SSam Leffler 		crypto_drivers[hid].cc_sessions--;
356091d81d1SSam Leffler 
357091d81d1SSam Leffler 	/* Call the driver cleanup routine, if available. */
358091d81d1SSam Leffler 	if (crypto_drivers[hid].cc_freesession)
359091d81d1SSam Leffler 		err = crypto_drivers[hid].cc_freesession(
360091d81d1SSam Leffler 				crypto_drivers[hid].cc_arg, sid);
361091d81d1SSam Leffler 	else
362091d81d1SSam Leffler 		err = 0;
363091d81d1SSam Leffler 
364091d81d1SSam Leffler 	/*
365091d81d1SSam Leffler 	 * If this was the last session of a driver marked as invalid,
366091d81d1SSam Leffler 	 * make the entry available for reuse.
367091d81d1SSam Leffler 	 */
368091d81d1SSam Leffler 	if ((crypto_drivers[hid].cc_flags & CRYPTOCAP_F_CLEANUP) &&
369091d81d1SSam Leffler 	    crypto_drivers[hid].cc_sessions == 0)
370091d81d1SSam Leffler 		bzero(&crypto_drivers[hid], sizeof(struct cryptocap));
371091d81d1SSam Leffler 
372091d81d1SSam Leffler done:
373091d81d1SSam Leffler 	CRYPTO_DRIVER_UNLOCK();
374091d81d1SSam Leffler 	return err;
375091d81d1SSam Leffler }
376091d81d1SSam Leffler 
377091d81d1SSam Leffler /*
378091d81d1SSam Leffler  * Return an unused driver id.  Used by drivers prior to registering
379091d81d1SSam Leffler  * support for the algorithms they handle.
380091d81d1SSam Leffler  */
381091d81d1SSam Leffler int32_t
382091d81d1SSam Leffler crypto_get_driverid(u_int32_t flags)
383091d81d1SSam Leffler {
384091d81d1SSam Leffler 	struct cryptocap *newdrv;
385091d81d1SSam Leffler 	int i;
386091d81d1SSam Leffler 
387091d81d1SSam Leffler 	CRYPTO_DRIVER_LOCK();
388091d81d1SSam Leffler 
389091d81d1SSam Leffler 	for (i = 0; i < crypto_drivers_num; i++)
390091d81d1SSam Leffler 		if (crypto_drivers[i].cc_process == NULL &&
391091d81d1SSam Leffler 		    (crypto_drivers[i].cc_flags & CRYPTOCAP_F_CLEANUP) == 0 &&
392091d81d1SSam Leffler 		    crypto_drivers[i].cc_sessions == 0)
393091d81d1SSam Leffler 			break;
394091d81d1SSam Leffler 
395091d81d1SSam Leffler 	/* Out of entries, allocate some more. */
396091d81d1SSam Leffler 	if (i == crypto_drivers_num) {
397091d81d1SSam Leffler 		/* Be careful about wrap-around. */
398091d81d1SSam Leffler 		if (2 * crypto_drivers_num <= crypto_drivers_num) {
399091d81d1SSam Leffler 			CRYPTO_DRIVER_UNLOCK();
400091d81d1SSam Leffler 			printf("crypto: driver count wraparound!\n");
401091d81d1SSam Leffler 			return -1;
402091d81d1SSam Leffler 		}
403091d81d1SSam Leffler 
404091d81d1SSam Leffler 		newdrv = malloc(2 * crypto_drivers_num *
405091d81d1SSam Leffler 		    sizeof(struct cryptocap), M_CRYPTO_DATA, M_NOWAIT|M_ZERO);
406091d81d1SSam Leffler 		if (newdrv == NULL) {
407091d81d1SSam Leffler 			CRYPTO_DRIVER_UNLOCK();
408091d81d1SSam Leffler 			printf("crypto: no space to expand driver table!\n");
409091d81d1SSam Leffler 			return -1;
410091d81d1SSam Leffler 		}
411091d81d1SSam Leffler 
412091d81d1SSam Leffler 		bcopy(crypto_drivers, newdrv,
413091d81d1SSam Leffler 		    crypto_drivers_num * sizeof(struct cryptocap));
414091d81d1SSam Leffler 
415091d81d1SSam Leffler 		crypto_drivers_num *= 2;
416091d81d1SSam Leffler 
417091d81d1SSam Leffler 		free(crypto_drivers, M_CRYPTO_DATA);
418091d81d1SSam Leffler 		crypto_drivers = newdrv;
419091d81d1SSam Leffler 	}
420091d81d1SSam Leffler 
421091d81d1SSam Leffler 	/* NB: state is zero'd on free */
422091d81d1SSam Leffler 	crypto_drivers[i].cc_sessions = 1;	/* Mark */
423091d81d1SSam Leffler 	crypto_drivers[i].cc_flags = flags;
424091d81d1SSam Leffler 	if (bootverbose)
425091d81d1SSam Leffler 		printf("crypto: assign driver %u, flags %u\n", i, flags);
426091d81d1SSam Leffler 
427091d81d1SSam Leffler 	CRYPTO_DRIVER_UNLOCK();
428091d81d1SSam Leffler 
429091d81d1SSam Leffler 	return i;
430091d81d1SSam Leffler }
431091d81d1SSam Leffler 
432091d81d1SSam Leffler static struct cryptocap *
433091d81d1SSam Leffler crypto_checkdriver(u_int32_t hid)
434091d81d1SSam Leffler {
435091d81d1SSam Leffler 	if (crypto_drivers == NULL)
436091d81d1SSam Leffler 		return NULL;
437091d81d1SSam Leffler 	return (hid >= crypto_drivers_num ? NULL : &crypto_drivers[hid]);
438091d81d1SSam Leffler }
439091d81d1SSam Leffler 
440091d81d1SSam Leffler /*
441091d81d1SSam Leffler  * Register support for a key-related algorithm.  This routine
442091d81d1SSam Leffler  * is called once for each algorithm supported a driver.
443091d81d1SSam Leffler  */
444091d81d1SSam Leffler int
445091d81d1SSam Leffler crypto_kregister(u_int32_t driverid, int kalg, u_int32_t flags,
446091d81d1SSam Leffler     int (*kprocess)(void*, struct cryptkop *, int),
447091d81d1SSam Leffler     void *karg)
448091d81d1SSam Leffler {
449091d81d1SSam Leffler 	struct cryptocap *cap;
450091d81d1SSam Leffler 	int err;
451091d81d1SSam Leffler 
452091d81d1SSam Leffler 	CRYPTO_DRIVER_LOCK();
453091d81d1SSam Leffler 
454091d81d1SSam Leffler 	cap = crypto_checkdriver(driverid);
455091d81d1SSam Leffler 	if (cap != NULL &&
456091d81d1SSam Leffler 	    (CRK_ALGORITM_MIN <= kalg && kalg <= CRK_ALGORITHM_MAX)) {
457091d81d1SSam Leffler 		/*
458091d81d1SSam Leffler 		 * XXX Do some performance testing to determine placing.
459091d81d1SSam Leffler 		 * XXX We probably need an auxiliary data structure that
460091d81d1SSam Leffler 		 * XXX describes relative performances.
461091d81d1SSam Leffler 		 */
462091d81d1SSam Leffler 
463091d81d1SSam Leffler 		cap->cc_kalg[kalg] = flags | CRYPTO_ALG_FLAG_SUPPORTED;
464091d81d1SSam Leffler 		if (bootverbose)
465091d81d1SSam Leffler 			printf("crypto: driver %u registers key alg %u flags %u\n"
466091d81d1SSam Leffler 				, driverid
467091d81d1SSam Leffler 				, kalg
468091d81d1SSam Leffler 				, flags
469091d81d1SSam Leffler 			);
470091d81d1SSam Leffler 
471091d81d1SSam Leffler 		if (cap->cc_kprocess == NULL) {
472091d81d1SSam Leffler 			cap->cc_karg = karg;
473091d81d1SSam Leffler 			cap->cc_kprocess = kprocess;
474091d81d1SSam Leffler 		}
475091d81d1SSam Leffler 		err = 0;
476091d81d1SSam Leffler 	} else
477091d81d1SSam Leffler 		err = EINVAL;
478091d81d1SSam Leffler 
479091d81d1SSam Leffler 	CRYPTO_DRIVER_UNLOCK();
480091d81d1SSam Leffler 	return err;
481091d81d1SSam Leffler }
482091d81d1SSam Leffler 
483091d81d1SSam Leffler /*
484091d81d1SSam Leffler  * Register support for a non-key-related algorithm.  This routine
485091d81d1SSam Leffler  * is called once for each such algorithm supported by a driver.
486091d81d1SSam Leffler  */
487091d81d1SSam Leffler int
488091d81d1SSam Leffler crypto_register(u_int32_t driverid, int alg, u_int16_t maxoplen,
489091d81d1SSam Leffler     u_int32_t flags,
490091d81d1SSam Leffler     int (*newses)(void*, u_int32_t*, struct cryptoini*),
491091d81d1SSam Leffler     int (*freeses)(void*, u_int64_t),
492091d81d1SSam Leffler     int (*process)(void*, struct cryptop *, int),
493091d81d1SSam Leffler     void *arg)
494091d81d1SSam Leffler {
495091d81d1SSam Leffler 	struct cryptocap *cap;
496091d81d1SSam Leffler 	int err;
497091d81d1SSam Leffler 
498091d81d1SSam Leffler 	CRYPTO_DRIVER_LOCK();
499091d81d1SSam Leffler 
500091d81d1SSam Leffler 	cap = crypto_checkdriver(driverid);
501091d81d1SSam Leffler 	/* NB: algorithms are in the range [1..max] */
502091d81d1SSam Leffler 	if (cap != NULL &&
503091d81d1SSam Leffler 	    (CRYPTO_ALGORITHM_MIN <= alg && alg <= CRYPTO_ALGORITHM_MAX)) {
504091d81d1SSam Leffler 		/*
505091d81d1SSam Leffler 		 * XXX Do some performance testing to determine placing.
506091d81d1SSam Leffler 		 * XXX We probably need an auxiliary data structure that
507091d81d1SSam Leffler 		 * XXX describes relative performances.
508091d81d1SSam Leffler 		 */
509091d81d1SSam Leffler 
510091d81d1SSam Leffler 		cap->cc_alg[alg] = flags | CRYPTO_ALG_FLAG_SUPPORTED;
511091d81d1SSam Leffler 		cap->cc_max_op_len[alg] = maxoplen;
512091d81d1SSam Leffler 		if (bootverbose)
513091d81d1SSam Leffler 			printf("crypto: driver %u registers alg %u flags %u maxoplen %u\n"
514091d81d1SSam Leffler 				, driverid
515091d81d1SSam Leffler 				, alg
516091d81d1SSam Leffler 				, flags
517091d81d1SSam Leffler 				, maxoplen
518091d81d1SSam Leffler 			);
519091d81d1SSam Leffler 
520091d81d1SSam Leffler 		if (cap->cc_process == NULL) {
521091d81d1SSam Leffler 			cap->cc_arg = arg;
522091d81d1SSam Leffler 			cap->cc_newsession = newses;
523091d81d1SSam Leffler 			cap->cc_process = process;
524091d81d1SSam Leffler 			cap->cc_freesession = freeses;
525091d81d1SSam Leffler 			cap->cc_sessions = 0;		/* Unmark */
526091d81d1SSam Leffler 		}
527091d81d1SSam Leffler 		err = 0;
528091d81d1SSam Leffler 	} else
529091d81d1SSam Leffler 		err = EINVAL;
530091d81d1SSam Leffler 
531091d81d1SSam Leffler 	CRYPTO_DRIVER_UNLOCK();
532091d81d1SSam Leffler 	return err;
533091d81d1SSam Leffler }
534091d81d1SSam Leffler 
535091d81d1SSam Leffler /*
536091d81d1SSam Leffler  * Unregister a crypto driver. If there are pending sessions using it,
537091d81d1SSam Leffler  * leave enough information around so that subsequent calls using those
538091d81d1SSam Leffler  * sessions will correctly detect the driver has been unregistered and
539091d81d1SSam Leffler  * reroute requests.
540091d81d1SSam Leffler  */
541091d81d1SSam Leffler int
542091d81d1SSam Leffler crypto_unregister(u_int32_t driverid, int alg)
543091d81d1SSam Leffler {
544091d81d1SSam Leffler 	int i, err;
545091d81d1SSam Leffler 	u_int32_t ses;
546091d81d1SSam Leffler 	struct cryptocap *cap;
547091d81d1SSam Leffler 
548091d81d1SSam Leffler 	CRYPTO_DRIVER_LOCK();
549091d81d1SSam Leffler 
550091d81d1SSam Leffler 	cap = crypto_checkdriver(driverid);
551091d81d1SSam Leffler 	if (cap != NULL &&
552091d81d1SSam Leffler 	    (CRYPTO_ALGORITHM_MIN <= alg && alg <= CRYPTO_ALGORITHM_MAX) &&
553091d81d1SSam Leffler 	    cap->cc_alg[alg] != 0) {
554091d81d1SSam Leffler 		cap->cc_alg[alg] = 0;
555091d81d1SSam Leffler 		cap->cc_max_op_len[alg] = 0;
556091d81d1SSam Leffler 
557091d81d1SSam Leffler 		/* Was this the last algorithm ? */
558091d81d1SSam Leffler 		for (i = 1; i <= CRYPTO_ALGORITHM_MAX; i++)
559091d81d1SSam Leffler 			if (cap->cc_alg[i] != 0)
560091d81d1SSam Leffler 				break;
561091d81d1SSam Leffler 
562091d81d1SSam Leffler 		if (i == CRYPTO_ALGORITHM_MAX + 1) {
563091d81d1SSam Leffler 			ses = cap->cc_sessions;
564091d81d1SSam Leffler 			bzero(cap, sizeof(struct cryptocap));
565091d81d1SSam Leffler 			if (ses != 0) {
566091d81d1SSam Leffler 				/*
567091d81d1SSam Leffler 				 * If there are pending sessions, just mark as invalid.
568091d81d1SSam Leffler 				 */
569091d81d1SSam Leffler 				cap->cc_flags |= CRYPTOCAP_F_CLEANUP;
570091d81d1SSam Leffler 				cap->cc_sessions = ses;
571091d81d1SSam Leffler 			}
572091d81d1SSam Leffler 		}
573091d81d1SSam Leffler 		err = 0;
574091d81d1SSam Leffler 	} else
575091d81d1SSam Leffler 		err = EINVAL;
576091d81d1SSam Leffler 
577091d81d1SSam Leffler 	CRYPTO_DRIVER_UNLOCK();
578091d81d1SSam Leffler 	return err;
579091d81d1SSam Leffler }
580091d81d1SSam Leffler 
581091d81d1SSam Leffler /*
582091d81d1SSam Leffler  * Unregister all algorithms associated with a crypto driver.
583091d81d1SSam Leffler  * If there are pending sessions using it, leave enough information
584091d81d1SSam Leffler  * around so that subsequent calls using those sessions will
585091d81d1SSam Leffler  * correctly detect the driver has been unregistered and reroute
586091d81d1SSam Leffler  * requests.
587091d81d1SSam Leffler  */
588091d81d1SSam Leffler int
589091d81d1SSam Leffler crypto_unregister_all(u_int32_t driverid)
590091d81d1SSam Leffler {
591091d81d1SSam Leffler 	int i, err;
592091d81d1SSam Leffler 	u_int32_t ses;
593091d81d1SSam Leffler 	struct cryptocap *cap;
594091d81d1SSam Leffler 
595091d81d1SSam Leffler 	CRYPTO_DRIVER_LOCK();
596091d81d1SSam Leffler 
597091d81d1SSam Leffler 	cap = crypto_checkdriver(driverid);
598091d81d1SSam Leffler 	if (cap != NULL) {
599091d81d1SSam Leffler 		for (i = CRYPTO_ALGORITHM_MIN; i <= CRYPTO_ALGORITHM_MAX; i++) {
600091d81d1SSam Leffler 			cap->cc_alg[i] = 0;
601091d81d1SSam Leffler 			cap->cc_max_op_len[i] = 0;
602091d81d1SSam Leffler 		}
603091d81d1SSam Leffler 		ses = cap->cc_sessions;
604091d81d1SSam Leffler 		bzero(cap, sizeof(struct cryptocap));
605091d81d1SSam Leffler 		if (ses != 0) {
606091d81d1SSam Leffler 			/*
607091d81d1SSam Leffler 			 * If there are pending sessions, just mark as invalid.
608091d81d1SSam Leffler 			 */
609091d81d1SSam Leffler 			cap->cc_flags |= CRYPTOCAP_F_CLEANUP;
610091d81d1SSam Leffler 			cap->cc_sessions = ses;
611091d81d1SSam Leffler 		}
612091d81d1SSam Leffler 		err = 0;
613091d81d1SSam Leffler 	} else
614091d81d1SSam Leffler 		err = EINVAL;
615091d81d1SSam Leffler 
616091d81d1SSam Leffler 	CRYPTO_DRIVER_UNLOCK();
617091d81d1SSam Leffler 	return err;
618091d81d1SSam Leffler }
619091d81d1SSam Leffler 
620091d81d1SSam Leffler /*
621091d81d1SSam Leffler  * Clear blockage on a driver.  The what parameter indicates whether
622091d81d1SSam Leffler  * the driver is now ready for cryptop's and/or cryptokop's.
623091d81d1SSam Leffler  */
624091d81d1SSam Leffler int
625091d81d1SSam Leffler crypto_unblock(u_int32_t driverid, int what)
626091d81d1SSam Leffler {
627091d81d1SSam Leffler 	struct cryptocap *cap;
628091d81d1SSam Leffler 	int needwakeup, err;
629091d81d1SSam Leffler 
630091d81d1SSam Leffler 	CRYPTO_Q_LOCK();
631091d81d1SSam Leffler 	cap = crypto_checkdriver(driverid);
632091d81d1SSam Leffler 	if (cap != NULL) {
6331a91ccccSSam Leffler 		needwakeup = 0;
634091d81d1SSam Leffler 		if (what & CRYPTO_SYMQ) {
635091d81d1SSam Leffler 			needwakeup |= cap->cc_qblocked;
636091d81d1SSam Leffler 			cap->cc_qblocked = 0;
637091d81d1SSam Leffler 		}
638091d81d1SSam Leffler 		if (what & CRYPTO_ASYMQ) {
639091d81d1SSam Leffler 			needwakeup |= cap->cc_kqblocked;
640091d81d1SSam Leffler 			cap->cc_kqblocked = 0;
641091d81d1SSam Leffler 		}
6421a91ccccSSam Leffler 		if (needwakeup)
6431a91ccccSSam Leffler 			wakeup_one(&crp_q);
644091d81d1SSam Leffler 		err = 0;
645091d81d1SSam Leffler 	} else
646091d81d1SSam Leffler 		err = EINVAL;
647091d81d1SSam Leffler 	CRYPTO_Q_UNLOCK();
648091d81d1SSam Leffler 
649091d81d1SSam Leffler 	return err;
650091d81d1SSam Leffler }
651091d81d1SSam Leffler 
652091d81d1SSam Leffler /*
653091d81d1SSam Leffler  * Add a crypto request to a queue, to be processed by the kernel thread.
654091d81d1SSam Leffler  */
655091d81d1SSam Leffler int
656091d81d1SSam Leffler crypto_dispatch(struct cryptop *crp)
657091d81d1SSam Leffler {
65807d0c94aSSam Leffler 	u_int32_t hid = CRYPTO_SESID2HID(crp->crp_sid);
659f7890744SSam Leffler 	int result;
660091d81d1SSam Leffler 
6617d1853eeSSam Leffler 	cryptostats.cs_ops++;
6627d1853eeSSam Leffler 
6637d1853eeSSam Leffler #ifdef CRYPTO_TIMING
6647d1853eeSSam Leffler 	if (crypto_timing)
6657d1853eeSSam Leffler 		binuptime(&crp->crp_tstamp);
6667d1853eeSSam Leffler #endif
6677d1853eeSSam Leffler 
6683569ae7fSSam Leffler 	CRYPTO_Q_LOCK();
669eb73a605SSam Leffler 	if ((crp->crp_flags & CRYPTO_F_BATCH) == 0) {
670eb73a605SSam Leffler 		struct cryptocap *cap;
671eb73a605SSam Leffler 		/*
672eb73a605SSam Leffler 		 * Caller marked the request to be processed
673eb73a605SSam Leffler 		 * immediately; dispatch it directly to the
674eb73a605SSam Leffler 		 * driver unless the driver is currently blocked.
675eb73a605SSam Leffler 		 */
676f7890744SSam Leffler 		cap = crypto_checkdriver(hid);
677f7890744SSam Leffler 		if (cap && !cap->cc_qblocked) {
678f7890744SSam Leffler 			result = crypto_invoke(crp, 0);
679f7890744SSam Leffler 			if (result == ERESTART) {
680091d81d1SSam Leffler 				/*
681f7890744SSam Leffler 				 * The driver ran out of resources, mark the
682f7890744SSam Leffler 				 * driver ``blocked'' for cryptop's and put
683f7890744SSam Leffler 				 * the request on the queue.
6843569ae7fSSam Leffler 				 *
6853569ae7fSSam Leffler 				 * XXX ops are placed at the tail so their
6863569ae7fSSam Leffler 				 * order is preserved but this can place them
6873569ae7fSSam Leffler 				 * behind batch'd ops.
688091d81d1SSam Leffler 				 */
689f7890744SSam Leffler 				crypto_drivers[hid].cc_qblocked = 1;
6903569ae7fSSam Leffler 				TAILQ_INSERT_TAIL(&crp_q, crp, crp_next);
691f7890744SSam Leffler 				cryptostats.cs_blocks++;
6923569ae7fSSam Leffler 				result = 0;
693f7890744SSam Leffler 			}
694f7890744SSam Leffler 		} else {
695f7890744SSam Leffler 			/*
696f7890744SSam Leffler 			 * The driver is blocked, just queue the op until
697f7890744SSam Leffler 			 * it unblocks and the kernel thread gets kicked.
698f7890744SSam Leffler 			 */
699f7890744SSam Leffler 			TAILQ_INSERT_TAIL(&crp_q, crp, crp_next);
700f7890744SSam Leffler 			result = 0;
701f7890744SSam Leffler 		}
702eb73a605SSam Leffler 	} else {
703eb73a605SSam Leffler 		int wasempty;
704eb73a605SSam Leffler 		/*
705eb73a605SSam Leffler 		 * Caller marked the request as ``ok to delay'';
706eb73a605SSam Leffler 		 * queue it for the dispatch thread.  This is desirable
707eb73a605SSam Leffler 		 * when the operation is low priority and/or suitable
708eb73a605SSam Leffler 		 * for batching.
709eb73a605SSam Leffler 		 */
710eb73a605SSam Leffler 		wasempty = TAILQ_EMPTY(&crp_q);
711eb73a605SSam Leffler 		TAILQ_INSERT_TAIL(&crp_q, crp, crp_next);
712eb73a605SSam Leffler 		if (wasempty)
713eb73a605SSam Leffler 			wakeup_one(&crp_q);
714eb73a605SSam Leffler 		result = 0;
715eb73a605SSam Leffler 	}
7163569ae7fSSam Leffler 	CRYPTO_Q_UNLOCK();
717091d81d1SSam Leffler 
718f7890744SSam Leffler 	return result;
719091d81d1SSam Leffler }
720091d81d1SSam Leffler 
721091d81d1SSam Leffler /*
722091d81d1SSam Leffler  * Add an asymetric crypto request to a queue,
723091d81d1SSam Leffler  * to be processed by the kernel thread.
724091d81d1SSam Leffler  */
725091d81d1SSam Leffler int
726091d81d1SSam Leffler crypto_kdispatch(struct cryptkop *krp)
727091d81d1SSam Leffler {
728091d81d1SSam Leffler 	struct cryptocap *cap;
729f7890744SSam Leffler 	int result;
730091d81d1SSam Leffler 
7317d1853eeSSam Leffler 	cryptostats.cs_kops++;
7327d1853eeSSam Leffler 
733091d81d1SSam Leffler 	CRYPTO_Q_LOCK();
734091d81d1SSam Leffler 	cap = crypto_checkdriver(krp->krp_hid);
735f7890744SSam Leffler 	if (cap && !cap->cc_kqblocked) {
736f7890744SSam Leffler 		result = crypto_kinvoke(krp, 0);
737f7890744SSam Leffler 		if (result == ERESTART) {
738f7890744SSam Leffler 			/*
739f7890744SSam Leffler 			 * The driver ran out of resources, mark the
740f7890744SSam Leffler 			 * driver ``blocked'' for cryptkop's and put
741f7890744SSam Leffler 			 * the request back in the queue.  It would
742f7890744SSam Leffler 			 * best to put the request back where we got
743f7890744SSam Leffler 			 * it but that's hard so for now we put it
744f7890744SSam Leffler 			 * at the front.  This should be ok; putting
745f7890744SSam Leffler 			 * it at the end does not work.
746f7890744SSam Leffler 			 */
747f7890744SSam Leffler 			crypto_drivers[krp->krp_hid].cc_kqblocked = 1;
7483569ae7fSSam Leffler 			TAILQ_INSERT_TAIL(&crp_kq, krp, krp_next);
749f7890744SSam Leffler 			cryptostats.cs_kblocks++;
750f7890744SSam Leffler 		}
751f7890744SSam Leffler 	} else {
752f7890744SSam Leffler 		/*
753f7890744SSam Leffler 		 * The driver is blocked, just queue the op until
754f7890744SSam Leffler 		 * it unblocks and the kernel thread gets kicked.
755f7890744SSam Leffler 		 */
756f7890744SSam Leffler 		TAILQ_INSERT_TAIL(&crp_kq, krp, krp_next);
757f7890744SSam Leffler 		result = 0;
758f7890744SSam Leffler 	}
759091d81d1SSam Leffler 	CRYPTO_Q_UNLOCK();
760091d81d1SSam Leffler 
761f7890744SSam Leffler 	return result;
762091d81d1SSam Leffler }
763091d81d1SSam Leffler 
764091d81d1SSam Leffler /*
765091d81d1SSam Leffler  * Dispatch an assymetric crypto request to the appropriate crypto devices.
766091d81d1SSam Leffler  */
767091d81d1SSam Leffler static int
768091d81d1SSam Leffler crypto_kinvoke(struct cryptkop *krp, int hint)
769091d81d1SSam Leffler {
770091d81d1SSam Leffler 	u_int32_t hid;
771091d81d1SSam Leffler 	int error;
772091d81d1SSam Leffler 
773091d81d1SSam Leffler 	mtx_assert(&crypto_q_mtx, MA_OWNED);
774091d81d1SSam Leffler 
775091d81d1SSam Leffler 	/* Sanity checks. */
7761a91ccccSSam Leffler 	if (krp == NULL)
777091d81d1SSam Leffler 		return EINVAL;
7781a91ccccSSam Leffler 	if (krp->krp_callback == NULL) {
7791a91ccccSSam Leffler 		free(krp, M_XDATA);		/* XXX allocated in cryptodev */
7801a91ccccSSam Leffler 		return EINVAL;
7811a91ccccSSam Leffler 	}
782091d81d1SSam Leffler 
783091d81d1SSam Leffler 	for (hid = 0; hid < crypto_drivers_num; hid++) {
784091d81d1SSam Leffler 		if ((crypto_drivers[hid].cc_flags & CRYPTOCAP_F_SOFTWARE) &&
785091d81d1SSam Leffler 		    !crypto_devallowsoft)
786091d81d1SSam Leffler 			continue;
787091d81d1SSam Leffler 		if (crypto_drivers[hid].cc_kprocess == NULL)
788091d81d1SSam Leffler 			continue;
789091d81d1SSam Leffler 		if ((crypto_drivers[hid].cc_kalg[krp->krp_op] &
790091d81d1SSam Leffler 		    CRYPTO_ALG_FLAG_SUPPORTED) == 0)
791091d81d1SSam Leffler 			continue;
792091d81d1SSam Leffler 		break;
793091d81d1SSam Leffler 	}
794091d81d1SSam Leffler 	if (hid < crypto_drivers_num) {
795091d81d1SSam Leffler 		krp->krp_hid = hid;
796091d81d1SSam Leffler 		error = crypto_drivers[hid].cc_kprocess(
797091d81d1SSam Leffler 				crypto_drivers[hid].cc_karg, krp, hint);
798091d81d1SSam Leffler 	} else
799091d81d1SSam Leffler 		error = ENODEV;
800091d81d1SSam Leffler 
801091d81d1SSam Leffler 	if (error) {
802091d81d1SSam Leffler 		krp->krp_status = error;
8031a91ccccSSam Leffler 		crypto_kdone(krp);
804091d81d1SSam Leffler 	}
805091d81d1SSam Leffler 	return 0;
806091d81d1SSam Leffler }
807091d81d1SSam Leffler 
8087d1853eeSSam Leffler #ifdef CRYPTO_TIMING
8097d1853eeSSam Leffler static void
8107d1853eeSSam Leffler crypto_tstat(struct cryptotstat *ts, struct bintime *bt)
8117d1853eeSSam Leffler {
8127d1853eeSSam Leffler 	struct bintime now, delta;
8137d1853eeSSam Leffler 	struct timespec t;
8147d1853eeSSam Leffler 	uint64_t u;
8157d1853eeSSam Leffler 
8167d1853eeSSam Leffler 	binuptime(&now);
8177d1853eeSSam Leffler 	u = now.frac;
8187d1853eeSSam Leffler 	delta.frac = now.frac - bt->frac;
8197d1853eeSSam Leffler 	delta.sec = now.sec - bt->sec;
8207d1853eeSSam Leffler 	if (u < delta.frac)
8217d1853eeSSam Leffler 		delta.sec--;
8227d1853eeSSam Leffler 	bintime2timespec(&delta, &t);
8237d1853eeSSam Leffler 	timespecadd(&ts->acc, &t);
8247d1853eeSSam Leffler 	if (timespeccmp(&t, &ts->min, <))
8257d1853eeSSam Leffler 		ts->min = t;
8267d1853eeSSam Leffler 	if (timespeccmp(&t, &ts->max, >))
8277d1853eeSSam Leffler 		ts->max = t;
8287d1853eeSSam Leffler 	ts->count++;
8297d1853eeSSam Leffler 
8307d1853eeSSam Leffler 	*bt = now;
8317d1853eeSSam Leffler }
8327d1853eeSSam Leffler #endif
8337d1853eeSSam Leffler 
834091d81d1SSam Leffler /*
835091d81d1SSam Leffler  * Dispatch a crypto request to the appropriate crypto devices.
836091d81d1SSam Leffler  */
837091d81d1SSam Leffler static int
838091d81d1SSam Leffler crypto_invoke(struct cryptop *crp, int hint)
839091d81d1SSam Leffler {
840091d81d1SSam Leffler 	u_int32_t hid;
841091d81d1SSam Leffler 	int (*process)(void*, struct cryptop *, int);
842091d81d1SSam Leffler 
8437d1853eeSSam Leffler #ifdef CRYPTO_TIMING
8447d1853eeSSam Leffler 	if (crypto_timing)
8457d1853eeSSam Leffler 		crypto_tstat(&cryptostats.cs_invoke, &crp->crp_tstamp);
8467d1853eeSSam Leffler #endif
847091d81d1SSam Leffler 	/* Sanity checks. */
8481a91ccccSSam Leffler 	if (crp == NULL)
849091d81d1SSam Leffler 		return EINVAL;
8501a91ccccSSam Leffler 	if (crp->crp_callback == NULL) {
8511a91ccccSSam Leffler 		crypto_freereq(crp);
8521a91ccccSSam Leffler 		return EINVAL;
8531a91ccccSSam Leffler 	}
854091d81d1SSam Leffler 	if (crp->crp_desc == NULL) {
855091d81d1SSam Leffler 		crp->crp_etype = EINVAL;
8561a91ccccSSam Leffler 		crypto_done(crp);
857091d81d1SSam Leffler 		return 0;
858091d81d1SSam Leffler 	}
859091d81d1SSam Leffler 
86007d0c94aSSam Leffler 	hid = CRYPTO_SESID2HID(crp->crp_sid);
861091d81d1SSam Leffler 	if (hid < crypto_drivers_num) {
862091d81d1SSam Leffler 		if (crypto_drivers[hid].cc_flags & CRYPTOCAP_F_CLEANUP)
863091d81d1SSam Leffler 			crypto_freesession(crp->crp_sid);
864091d81d1SSam Leffler 		process = crypto_drivers[hid].cc_process;
865091d81d1SSam Leffler 	} else {
866091d81d1SSam Leffler 		process = NULL;
867091d81d1SSam Leffler 	}
868091d81d1SSam Leffler 
869091d81d1SSam Leffler 	if (process == NULL) {
870091d81d1SSam Leffler 		struct cryptodesc *crd;
871091d81d1SSam Leffler 		u_int64_t nid;
872091d81d1SSam Leffler 
873091d81d1SSam Leffler 		/*
874091d81d1SSam Leffler 		 * Driver has unregistered; migrate the session and return
875091d81d1SSam Leffler 		 * an error to the caller so they'll resubmit the op.
876091d81d1SSam Leffler 		 */
877091d81d1SSam Leffler 		for (crd = crp->crp_desc; crd->crd_next; crd = crd->crd_next)
878091d81d1SSam Leffler 			crd->CRD_INI.cri_next = &(crd->crd_next->CRD_INI);
879091d81d1SSam Leffler 
880091d81d1SSam Leffler 		if (crypto_newsession(&nid, &(crp->crp_desc->CRD_INI), 0) == 0)
881091d81d1SSam Leffler 			crp->crp_sid = nid;
882091d81d1SSam Leffler 
883091d81d1SSam Leffler 		crp->crp_etype = EAGAIN;
8841a91ccccSSam Leffler 		crypto_done(crp);
885091d81d1SSam Leffler 		return 0;
886091d81d1SSam Leffler 	} else {
887091d81d1SSam Leffler 		/*
888091d81d1SSam Leffler 		 * Invoke the driver to process the request.
889091d81d1SSam Leffler 		 */
890091d81d1SSam Leffler 		return (*process)(crypto_drivers[hid].cc_arg, crp, hint);
891091d81d1SSam Leffler 	}
892091d81d1SSam Leffler }
893091d81d1SSam Leffler 
894091d81d1SSam Leffler /*
895091d81d1SSam Leffler  * Release a set of crypto descriptors.
896091d81d1SSam Leffler  */
897091d81d1SSam Leffler void
898091d81d1SSam Leffler crypto_freereq(struct cryptop *crp)
899091d81d1SSam Leffler {
900091d81d1SSam Leffler 	struct cryptodesc *crd;
901091d81d1SSam Leffler 
902091d81d1SSam Leffler 	if (crp == NULL)
903091d81d1SSam Leffler 		return;
904091d81d1SSam Leffler 
905091d81d1SSam Leffler 	while ((crd = crp->crp_desc) != NULL) {
906091d81d1SSam Leffler 		crp->crp_desc = crd->crd_next;
907091d81d1SSam Leffler 		uma_zfree(cryptodesc_zone, crd);
908091d81d1SSam Leffler 	}
909091d81d1SSam Leffler 
910091d81d1SSam Leffler 	uma_zfree(cryptop_zone, crp);
911091d81d1SSam Leffler }
912091d81d1SSam Leffler 
913091d81d1SSam Leffler /*
914091d81d1SSam Leffler  * Acquire a set of crypto descriptors.
915091d81d1SSam Leffler  */
916091d81d1SSam Leffler struct cryptop *
917091d81d1SSam Leffler crypto_getreq(int num)
918091d81d1SSam Leffler {
919091d81d1SSam Leffler 	struct cryptodesc *crd;
920091d81d1SSam Leffler 	struct cryptop *crp;
921091d81d1SSam Leffler 
922bc0c6d3cSSam Leffler 	crp = uma_zalloc(cryptop_zone, M_NOWAIT|M_ZERO);
923091d81d1SSam Leffler 	if (crp != NULL) {
924091d81d1SSam Leffler 		while (num--) {
925bc0c6d3cSSam Leffler 			crd = uma_zalloc(cryptodesc_zone, M_NOWAIT|M_ZERO);
926091d81d1SSam Leffler 			if (crd == NULL) {
927091d81d1SSam Leffler 				crypto_freereq(crp);
928091d81d1SSam Leffler 				return NULL;
929091d81d1SSam Leffler 			}
930091d81d1SSam Leffler 
931091d81d1SSam Leffler 			crd->crd_next = crp->crp_desc;
932091d81d1SSam Leffler 			crp->crp_desc = crd;
933091d81d1SSam Leffler 		}
934091d81d1SSam Leffler 	}
935091d81d1SSam Leffler 	return crp;
936091d81d1SSam Leffler }
937091d81d1SSam Leffler 
938091d81d1SSam Leffler /*
939091d81d1SSam Leffler  * Invoke the callback on behalf of the driver.
940091d81d1SSam Leffler  */
941091d81d1SSam Leffler void
942091d81d1SSam Leffler crypto_done(struct cryptop *crp)
943091d81d1SSam Leffler {
9443569ae7fSSam Leffler 	KASSERT((crp->crp_flags & CRYPTO_F_DONE) == 0,
9453569ae7fSSam Leffler 		("crypto_done: op already done, flags 0x%x", crp->crp_flags));
9463569ae7fSSam Leffler 	crp->crp_flags |= CRYPTO_F_DONE;
9477d1853eeSSam Leffler 	if (crp->crp_etype != 0)
9487d1853eeSSam Leffler 		cryptostats.cs_errs++;
9497d1853eeSSam Leffler #ifdef CRYPTO_TIMING
9507d1853eeSSam Leffler 	if (crypto_timing)
9517d1853eeSSam Leffler 		crypto_tstat(&cryptostats.cs_done, &crp->crp_tstamp);
9527d1853eeSSam Leffler #endif
953d8409aafSSam Leffler 	/*
954d8409aafSSam Leffler 	 * CBIMM means unconditionally do the callback immediately;
955d8409aafSSam Leffler 	 * CBIFSYNC means do the callback immediately only if the
956d8409aafSSam Leffler 	 * operation was done synchronously.  Both are used to avoid
957d8409aafSSam Leffler 	 * doing extraneous context switches; the latter is mostly
958d8409aafSSam Leffler 	 * used with the software crypto driver.
959d8409aafSSam Leffler 	 */
960d8409aafSSam Leffler 	if ((crp->crp_flags & CRYPTO_F_CBIMM) ||
961d8409aafSSam Leffler 	    ((crp->crp_flags & CRYPTO_F_CBIFSYNC) &&
962d8409aafSSam Leffler 	     (CRYPTO_SESID2CAPS(crp->crp_sid) & CRYPTOCAP_F_SYNC))) {
963eb73a605SSam Leffler 		/*
964eb73a605SSam Leffler 		 * Do the callback directly.  This is ok when the
965eb73a605SSam Leffler 		 * callback routine does very little (e.g. the
966eb73a605SSam Leffler 		 * /dev/crypto callback method just does a wakeup).
967eb73a605SSam Leffler 		 */
968eb73a605SSam Leffler #ifdef CRYPTO_TIMING
969eb73a605SSam Leffler 		if (crypto_timing) {
970eb73a605SSam Leffler 			/*
971eb73a605SSam Leffler 			 * NB: We must copy the timestamp before
972eb73a605SSam Leffler 			 * doing the callback as the cryptop is
973eb73a605SSam Leffler 			 * likely to be reclaimed.
974eb73a605SSam Leffler 			 */
975eb73a605SSam Leffler 			struct bintime t = crp->crp_tstamp;
976eb73a605SSam Leffler 			crypto_tstat(&cryptostats.cs_cb, &t);
977eb73a605SSam Leffler 			crp->crp_callback(crp);
978eb73a605SSam Leffler 			crypto_tstat(&cryptostats.cs_finis, &t);
979eb73a605SSam Leffler 		} else
980eb73a605SSam Leffler #endif
981eb73a605SSam Leffler 			crp->crp_callback(crp);
982eb73a605SSam Leffler 	} else {
983eb73a605SSam Leffler 		int wasempty;
984eb73a605SSam Leffler 		/*
985eb73a605SSam Leffler 		 * Normal case; queue the callback for the thread.
986eb73a605SSam Leffler 		 */
987091d81d1SSam Leffler 		CRYPTO_RETQ_LOCK();
988091d81d1SSam Leffler 		wasempty = TAILQ_EMPTY(&crp_ret_q);
989091d81d1SSam Leffler 		TAILQ_INSERT_TAIL(&crp_ret_q, crp, crp_next);
990091d81d1SSam Leffler 
991091d81d1SSam Leffler 		if (wasempty)
9921a91ccccSSam Leffler 			wakeup_one(&crp_ret_q);	/* shared wait channel */
9931a91ccccSSam Leffler 		CRYPTO_RETQ_UNLOCK();
994091d81d1SSam Leffler 	}
995eb73a605SSam Leffler }
996091d81d1SSam Leffler 
997091d81d1SSam Leffler /*
998091d81d1SSam Leffler  * Invoke the callback on behalf of the driver.
999091d81d1SSam Leffler  */
1000091d81d1SSam Leffler void
1001091d81d1SSam Leffler crypto_kdone(struct cryptkop *krp)
1002091d81d1SSam Leffler {
1003091d81d1SSam Leffler 	int wasempty;
1004091d81d1SSam Leffler 
10057d1853eeSSam Leffler 	if (krp->krp_status != 0)
10067d1853eeSSam Leffler 		cryptostats.cs_kerrs++;
1007091d81d1SSam Leffler 	CRYPTO_RETQ_LOCK();
1008091d81d1SSam Leffler 	wasempty = TAILQ_EMPTY(&crp_ret_kq);
1009091d81d1SSam Leffler 	TAILQ_INSERT_TAIL(&crp_ret_kq, krp, krp_next);
1010091d81d1SSam Leffler 
1011091d81d1SSam Leffler 	if (wasempty)
10121a91ccccSSam Leffler 		wakeup_one(&crp_ret_q);		/* shared wait channel */
10131a91ccccSSam Leffler 	CRYPTO_RETQ_UNLOCK();
1014091d81d1SSam Leffler }
1015091d81d1SSam Leffler 
1016091d81d1SSam Leffler int
1017091d81d1SSam Leffler crypto_getfeat(int *featp)
1018091d81d1SSam Leffler {
1019091d81d1SSam Leffler 	int hid, kalg, feat = 0;
1020091d81d1SSam Leffler 
1021091d81d1SSam Leffler 	if (!crypto_userasymcrypto)
1022091d81d1SSam Leffler 		goto out;
1023091d81d1SSam Leffler 
1024091d81d1SSam Leffler 	CRYPTO_DRIVER_LOCK();
1025091d81d1SSam Leffler 	for (hid = 0; hid < crypto_drivers_num; hid++) {
1026091d81d1SSam Leffler 		if ((crypto_drivers[hid].cc_flags & CRYPTOCAP_F_SOFTWARE) &&
1027091d81d1SSam Leffler 		    !crypto_devallowsoft) {
1028091d81d1SSam Leffler 			continue;
1029091d81d1SSam Leffler 		}
1030091d81d1SSam Leffler 		if (crypto_drivers[hid].cc_kprocess == NULL)
1031091d81d1SSam Leffler 			continue;
1032091d81d1SSam Leffler 		for (kalg = 0; kalg < CRK_ALGORITHM_MAX; kalg++)
1033091d81d1SSam Leffler 			if ((crypto_drivers[hid].cc_kalg[kalg] &
1034091d81d1SSam Leffler 			    CRYPTO_ALG_FLAG_SUPPORTED) != 0)
1035091d81d1SSam Leffler 				feat |=  1 << kalg;
1036091d81d1SSam Leffler 	}
1037091d81d1SSam Leffler 	CRYPTO_DRIVER_UNLOCK();
1038091d81d1SSam Leffler out:
1039091d81d1SSam Leffler 	*featp = feat;
1040091d81d1SSam Leffler 	return (0);
1041091d81d1SSam Leffler }
1042091d81d1SSam Leffler 
104351e45326SSam Leffler /*
104451e45326SSam Leffler  * Terminate a thread at module unload.  The process that
104551e45326SSam Leffler  * initiated this is waiting for us to signal that we're gone;
104651e45326SSam Leffler  * wake it up and exit.  We use the driver table lock to insure
104751e45326SSam Leffler  * we don't do the wakeup before they're waiting.  There is no
104851e45326SSam Leffler  * race here because the waiter sleeps on the proc lock for the
104951e45326SSam Leffler  * thread so it gets notified at the right time because of an
105051e45326SSam Leffler  * extra wakeup that's done in exit1().
105151e45326SSam Leffler  */
1052091d81d1SSam Leffler static void
105351e45326SSam Leffler crypto_finis(void *chan)
1054091d81d1SSam Leffler {
105551e45326SSam Leffler 	CRYPTO_DRIVER_LOCK();
105651e45326SSam Leffler 	wakeup_one(chan);
105751e45326SSam Leffler 	CRYPTO_DRIVER_UNLOCK();
105851e45326SSam Leffler 	mtx_lock(&Giant);
105951e45326SSam Leffler 	kthread_exit(0);
1060091d81d1SSam Leffler }
1061091d81d1SSam Leffler 
1062091d81d1SSam Leffler /*
10631a91ccccSSam Leffler  * Crypto thread, dispatches crypto requests.
1064091d81d1SSam Leffler  */
1065091d81d1SSam Leffler static void
1066091d81d1SSam Leffler crypto_proc(void)
1067091d81d1SSam Leffler {
10681a91ccccSSam Leffler 	struct cryptop *crp, *submit;
10691a91ccccSSam Leffler 	struct cryptkop *krp;
1070091d81d1SSam Leffler 	struct cryptocap *cap;
1071091d81d1SSam Leffler 	int result, hint;
1072091d81d1SSam Leffler 
10731a91ccccSSam Leffler 	CRYPTO_Q_LOCK();
1074091d81d1SSam Leffler 	for (;;) {
1075091d81d1SSam Leffler 		/*
1076091d81d1SSam Leffler 		 * Find the first element in the queue that can be
1077091d81d1SSam Leffler 		 * processed and look-ahead to see if multiple ops
1078091d81d1SSam Leffler 		 * are ready for the same driver.
1079091d81d1SSam Leffler 		 */
1080091d81d1SSam Leffler 		submit = NULL;
1081091d81d1SSam Leffler 		hint = 0;
1082091d81d1SSam Leffler 		TAILQ_FOREACH(crp, &crp_q, crp_next) {
108307d0c94aSSam Leffler 			u_int32_t hid = CRYPTO_SESID2HID(crp->crp_sid);
1084091d81d1SSam Leffler 			cap = crypto_checkdriver(hid);
1085091d81d1SSam Leffler 			if (cap == NULL || cap->cc_process == NULL) {
1086091d81d1SSam Leffler 				/* Op needs to be migrated, process it. */
1087091d81d1SSam Leffler 				if (submit == NULL)
1088091d81d1SSam Leffler 					submit = crp;
1089091d81d1SSam Leffler 				break;
1090091d81d1SSam Leffler 			}
1091091d81d1SSam Leffler 			if (!cap->cc_qblocked) {
1092091d81d1SSam Leffler 				if (submit != NULL) {
1093091d81d1SSam Leffler 					/*
1094091d81d1SSam Leffler 					 * We stop on finding another op,
1095091d81d1SSam Leffler 					 * regardless whether its for the same
1096091d81d1SSam Leffler 					 * driver or not.  We could keep
1097091d81d1SSam Leffler 					 * searching the queue but it might be
1098091d81d1SSam Leffler 					 * better to just use a per-driver
1099091d81d1SSam Leffler 					 * queue instead.
1100091d81d1SSam Leffler 					 */
110107d0c94aSSam Leffler 					if (CRYPTO_SESID2HID(submit->crp_sid) == hid)
1102091d81d1SSam Leffler 						hint = CRYPTO_HINT_MORE;
1103091d81d1SSam Leffler 					break;
1104091d81d1SSam Leffler 				} else {
1105091d81d1SSam Leffler 					submit = crp;
1106eb73a605SSam Leffler 					if ((submit->crp_flags & CRYPTO_F_BATCH) == 0)
1107091d81d1SSam Leffler 						break;
1108091d81d1SSam Leffler 					/* keep scanning for more are q'd */
1109091d81d1SSam Leffler 				}
1110091d81d1SSam Leffler 			}
1111091d81d1SSam Leffler 		}
1112091d81d1SSam Leffler 		if (submit != NULL) {
1113091d81d1SSam Leffler 			TAILQ_REMOVE(&crp_q, submit, crp_next);
1114091d81d1SSam Leffler 			result = crypto_invoke(submit, hint);
1115091d81d1SSam Leffler 			if (result == ERESTART) {
1116091d81d1SSam Leffler 				/*
1117091d81d1SSam Leffler 				 * The driver ran out of resources, mark the
1118091d81d1SSam Leffler 				 * driver ``blocked'' for cryptop's and put
1119091d81d1SSam Leffler 				 * the request back in the queue.  It would
1120091d81d1SSam Leffler 				 * best to put the request back where we got
1121091d81d1SSam Leffler 				 * it but that's hard so for now we put it
1122091d81d1SSam Leffler 				 * at the front.  This should be ok; putting
1123091d81d1SSam Leffler 				 * it at the end does not work.
1124091d81d1SSam Leffler 				 */
1125091d81d1SSam Leffler 				/* XXX validate sid again? */
112607d0c94aSSam Leffler 				crypto_drivers[CRYPTO_SESID2HID(submit->crp_sid)].cc_qblocked = 1;
1127091d81d1SSam Leffler 				TAILQ_INSERT_HEAD(&crp_q, submit, crp_next);
11287d1853eeSSam Leffler 				cryptostats.cs_blocks++;
1129091d81d1SSam Leffler 			}
1130091d81d1SSam Leffler 		}
1131091d81d1SSam Leffler 
1132091d81d1SSam Leffler 		/* As above, but for key ops */
1133091d81d1SSam Leffler 		TAILQ_FOREACH(krp, &crp_kq, krp_next) {
1134091d81d1SSam Leffler 			cap = crypto_checkdriver(krp->krp_hid);
1135091d81d1SSam Leffler 			if (cap == NULL || cap->cc_kprocess == NULL) {
1136091d81d1SSam Leffler 				/* Op needs to be migrated, process it. */
1137091d81d1SSam Leffler 				break;
1138091d81d1SSam Leffler 			}
1139091d81d1SSam Leffler 			if (!cap->cc_kqblocked)
1140091d81d1SSam Leffler 				break;
1141091d81d1SSam Leffler 		}
1142091d81d1SSam Leffler 		if (krp != NULL) {
1143091d81d1SSam Leffler 			TAILQ_REMOVE(&crp_kq, krp, krp_next);
1144091d81d1SSam Leffler 			result = crypto_kinvoke(krp, 0);
1145091d81d1SSam Leffler 			if (result == ERESTART) {
1146091d81d1SSam Leffler 				/*
1147091d81d1SSam Leffler 				 * The driver ran out of resources, mark the
1148091d81d1SSam Leffler 				 * driver ``blocked'' for cryptkop's and put
1149091d81d1SSam Leffler 				 * the request back in the queue.  It would
1150091d81d1SSam Leffler 				 * best to put the request back where we got
1151091d81d1SSam Leffler 				 * it but that's hard so for now we put it
1152091d81d1SSam Leffler 				 * at the front.  This should be ok; putting
1153091d81d1SSam Leffler 				 * it at the end does not work.
1154091d81d1SSam Leffler 				 */
1155091d81d1SSam Leffler 				/* XXX validate sid again? */
1156091d81d1SSam Leffler 				crypto_drivers[krp->krp_hid].cc_kqblocked = 1;
1157091d81d1SSam Leffler 				TAILQ_INSERT_HEAD(&crp_kq, krp, krp_next);
11587d1853eeSSam Leffler 				cryptostats.cs_kblocks++;
1159091d81d1SSam Leffler 			}
1160091d81d1SSam Leffler 		}
1161091d81d1SSam Leffler 
11621a91ccccSSam Leffler 		if (submit == NULL && krp == NULL) {
1163091d81d1SSam Leffler 			/*
1164091d81d1SSam Leffler 			 * Nothing more to be processed.  Sleep until we're
1165091d81d1SSam Leffler 			 * woken because there are more ops to process.
1166091d81d1SSam Leffler 			 * This happens either by submission or by a driver
1167091d81d1SSam Leffler 			 * becoming unblocked and notifying us through
1168091d81d1SSam Leffler 			 * crypto_unblock.  Note that when we wakeup we
1169091d81d1SSam Leffler 			 * start processing each queue again from the
1170091d81d1SSam Leffler 			 * front. It's not clear that it's important to
1171091d81d1SSam Leffler 			 * preserve this ordering since ops may finish
1172091d81d1SSam Leffler 			 * out of order if dispatched to different devices
1173091d81d1SSam Leffler 			 * and some become blocked while others do not.
1174091d81d1SSam Leffler 			 */
11751a91ccccSSam Leffler 			msleep(&crp_q, &crypto_q_mtx, PWAIT, "crypto_wait", 0);
117651e45326SSam Leffler 			if (cryptoproc == NULL)
117751e45326SSam Leffler 				break;
11787d1853eeSSam Leffler 			cryptostats.cs_intrs++;
1179091d81d1SSam Leffler 		}
1180091d81d1SSam Leffler 	}
118151e45326SSam Leffler 	CRYPTO_Q_UNLOCK();
11821a91ccccSSam Leffler 
118351e45326SSam Leffler 	crypto_finis(&crp_q);
11841a91ccccSSam Leffler }
11851a91ccccSSam Leffler 
11861a91ccccSSam Leffler /*
11871a91ccccSSam Leffler  * Crypto returns thread, does callbacks for processed crypto requests.
11881a91ccccSSam Leffler  * Callbacks are done here, rather than in the crypto drivers, because
11891a91ccccSSam Leffler  * callbacks typically are expensive and would slow interrupt handling.
11901a91ccccSSam Leffler  */
11911a91ccccSSam Leffler static void
11921a91ccccSSam Leffler crypto_ret_proc(void)
11931a91ccccSSam Leffler {
11941a91ccccSSam Leffler 	struct cryptop *crpt;
11951a91ccccSSam Leffler 	struct cryptkop *krpt;
11961a91ccccSSam Leffler 
11971a91ccccSSam Leffler 	CRYPTO_RETQ_LOCK();
11981a91ccccSSam Leffler 	for (;;) {
11991a91ccccSSam Leffler 		/* Harvest return q's for completed ops */
12001a91ccccSSam Leffler 		crpt = TAILQ_FIRST(&crp_ret_q);
12011a91ccccSSam Leffler 		if (crpt != NULL)
12021a91ccccSSam Leffler 			TAILQ_REMOVE(&crp_ret_q, crpt, crp_next);
12031a91ccccSSam Leffler 
12041a91ccccSSam Leffler 		krpt = TAILQ_FIRST(&crp_ret_kq);
12051a91ccccSSam Leffler 		if (krpt != NULL)
12061a91ccccSSam Leffler 			TAILQ_REMOVE(&crp_ret_kq, krpt, krp_next);
12071a91ccccSSam Leffler 
12081a91ccccSSam Leffler 		if (crpt != NULL || krpt != NULL) {
12091a91ccccSSam Leffler 			CRYPTO_RETQ_UNLOCK();
12101a91ccccSSam Leffler 			/*
12111a91ccccSSam Leffler 			 * Run callbacks unlocked.
12121a91ccccSSam Leffler 			 */
12137d1853eeSSam Leffler 			if (crpt != NULL) {
12147d1853eeSSam Leffler #ifdef CRYPTO_TIMING
12157d1853eeSSam Leffler 				if (crypto_timing) {
12167d1853eeSSam Leffler 					/*
12177d1853eeSSam Leffler 					 * NB: We must copy the timestamp before
12187d1853eeSSam Leffler 					 * doing the callback as the cryptop is
12197d1853eeSSam Leffler 					 * likely to be reclaimed.
12207d1853eeSSam Leffler 					 */
12217d1853eeSSam Leffler 					struct bintime t = crpt->crp_tstamp;
12227d1853eeSSam Leffler 					crypto_tstat(&cryptostats.cs_cb, &t);
12231a91ccccSSam Leffler 					crpt->crp_callback(crpt);
12247d1853eeSSam Leffler 					crypto_tstat(&cryptostats.cs_finis, &t);
12257d1853eeSSam Leffler 				} else
12267d1853eeSSam Leffler #endif
12277d1853eeSSam Leffler 					crpt->crp_callback(crpt);
12287d1853eeSSam Leffler 			}
12291a91ccccSSam Leffler 			if (krpt != NULL)
12301a91ccccSSam Leffler 				krpt->krp_callback(krpt);
12311a91ccccSSam Leffler 			CRYPTO_RETQ_LOCK();
12321a91ccccSSam Leffler 		} else {
12331a91ccccSSam Leffler 			/*
12341a91ccccSSam Leffler 			 * Nothing more to be processed.  Sleep until we're
12351a91ccccSSam Leffler 			 * woken because there are more returns to process.
12361a91ccccSSam Leffler 			 */
12371a91ccccSSam Leffler 			msleep(&crp_ret_q, &crypto_ret_q_mtx, PWAIT,
12381a91ccccSSam Leffler 				"crypto_ret_wait", 0);
123951e45326SSam Leffler 			if (cryptoretproc == NULL)
124051e45326SSam Leffler 				break;
12417d1853eeSSam Leffler 			cryptostats.cs_rets++;
12421a91ccccSSam Leffler 		}
12431a91ccccSSam Leffler 	}
124451e45326SSam Leffler 	CRYPTO_RETQ_UNLOCK();
124551e45326SSam Leffler 
124651e45326SSam Leffler 	crypto_finis(&crp_ret_q);
12471a91ccccSSam Leffler }
1248