xref: /freebsd/sys/opencrypto/crypto.c (revision ae18720d2792287c9ec658404f1a3173014d4979)
16810ad6fSSam Leffler /*-
26810ad6fSSam Leffler  * Copyright (c) 2002-2006 Sam Leffler.  All rights reserved.
3*ae18720dSJohn Baldwin  * Copyright (c) 2021 The FreeBSD Foundation
4*ae18720dSJohn Baldwin  *
5*ae18720dSJohn Baldwin  * Portions of this software were developed by Ararat River
6*ae18720dSJohn Baldwin  * Consulting, LLC under sponsorship of the FreeBSD Foundation.
76810ad6fSSam Leffler  *
86810ad6fSSam Leffler  * Redistribution and use in source and binary forms, with or without
96810ad6fSSam Leffler  * modification, are permitted provided that the following conditions
106810ad6fSSam Leffler  * are met:
116810ad6fSSam Leffler  * 1. Redistributions of source code must retain the above copyright
126810ad6fSSam Leffler  *    notice, this list of conditions and the following disclaimer.
136810ad6fSSam Leffler  * 2. Redistributions in binary form must reproduce the above copyright
146810ad6fSSam Leffler  *    notice, this list of conditions and the following disclaimer in the
156810ad6fSSam Leffler  *    documentation and/or other materials provided with the distribution.
166810ad6fSSam Leffler  *
176810ad6fSSam Leffler  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
186810ad6fSSam Leffler  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
196810ad6fSSam Leffler  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
206810ad6fSSam Leffler  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
216810ad6fSSam Leffler  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
226810ad6fSSam Leffler  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
236810ad6fSSam Leffler  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
246810ad6fSSam Leffler  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
256810ad6fSSam Leffler  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
266810ad6fSSam Leffler  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
276810ad6fSSam Leffler  */
286810ad6fSSam Leffler 
296810ad6fSSam Leffler #include <sys/cdefs.h>
306810ad6fSSam Leffler __FBSDID("$FreeBSD$");
316810ad6fSSam Leffler 
326810ad6fSSam Leffler /*
336810ad6fSSam Leffler  * Cryptographic Subsystem.
346810ad6fSSam Leffler  *
356810ad6fSSam Leffler  * This code is derived from the Openbsd Cryptographic Framework (OCF)
366810ad6fSSam Leffler  * that has the copyright shown below.  Very little of the original
376810ad6fSSam Leffler  * code remains.
386810ad6fSSam Leffler  */
396810ad6fSSam Leffler 
4060727d8bSWarner Losh /*-
41091d81d1SSam Leffler  * The author of this code is Angelos D. Keromytis (angelos@cis.upenn.edu)
42091d81d1SSam Leffler  *
43091d81d1SSam Leffler  * This code was written by Angelos D. Keromytis in Athens, Greece, in
44091d81d1SSam Leffler  * February 2000. Network Security Technologies Inc. (NSTI) kindly
45091d81d1SSam Leffler  * supported the development of this code.
46091d81d1SSam Leffler  *
47091d81d1SSam Leffler  * Copyright (c) 2000, 2001 Angelos D. Keromytis
48091d81d1SSam Leffler  *
49091d81d1SSam Leffler  * Permission to use, copy, and modify this software with or without fee
50091d81d1SSam Leffler  * is hereby granted, provided that this entire notice is included in
51091d81d1SSam Leffler  * all source code copies of any software which is or includes a copy or
52091d81d1SSam Leffler  * modification of this software.
53091d81d1SSam Leffler  *
54091d81d1SSam Leffler  * THIS SOFTWARE IS BEING PROVIDED "AS IS", WITHOUT ANY EXPRESS OR
55091d81d1SSam Leffler  * IMPLIED WARRANTY. IN PARTICULAR, NONE OF THE AUTHORS MAKES ANY
56091d81d1SSam Leffler  * REPRESENTATION OR WARRANTY OF ANY KIND CONCERNING THE
57091d81d1SSam Leffler  * MERCHANTABILITY OF THIS SOFTWARE OR ITS FITNESS FOR ANY PARTICULAR
58091d81d1SSam Leffler  * PURPOSE.
59091d81d1SSam Leffler  */
602c446514SDavid E. O'Brien 
61c0341432SJohn Baldwin #include "opt_compat.h"
626810ad6fSSam Leffler #include "opt_ddb.h"
636810ad6fSSam Leffler 
64091d81d1SSam Leffler #include <sys/param.h>
65091d81d1SSam Leffler #include <sys/systm.h>
667290cb47SMark Johnston #include <sys/counter.h>
67091d81d1SSam Leffler #include <sys/kernel.h>
68091d81d1SSam Leffler #include <sys/kthread.h>
69ec5c0e5bSAllan Jude #include <sys/linker.h>
70091d81d1SSam Leffler #include <sys/lock.h>
715dba30f1SPoul-Henning Kamp #include <sys/module.h>
72091d81d1SSam Leffler #include <sys/mutex.h>
73091d81d1SSam Leffler #include <sys/malloc.h>
749c0e3d3aSJohn Baldwin #include <sys/mbuf.h>
75091d81d1SSam Leffler #include <sys/proc.h>
76c0341432SJohn Baldwin #include <sys/refcount.h>
77df21ad6eSBjoern A. Zeeb #include <sys/sdt.h>
7839bbca6fSFabien Thomas #include <sys/smp.h>
79091d81d1SSam Leffler #include <sys/sysctl.h>
8039bbca6fSFabien Thomas #include <sys/taskqueue.h>
819c0e3d3aSJohn Baldwin #include <sys/uio.h>
82091d81d1SSam Leffler 
836810ad6fSSam Leffler #include <ddb/ddb.h>
846810ad6fSSam Leffler 
85e6f6d0c9SAlan Somers #include <machine/vmparam.h>
86091d81d1SSam Leffler #include <vm/uma.h>
87e6f6d0c9SAlan Somers 
88ec5c0e5bSAllan Jude #include <crypto/intake.h>
89091d81d1SSam Leffler #include <opencrypto/cryptodev.h>
90c0341432SJohn Baldwin #include <opencrypto/xform_auth.h>
91c0341432SJohn Baldwin #include <opencrypto/xform_enc.h>
92091d81d1SSam Leffler 
936810ad6fSSam Leffler #include <sys/kobj.h>
946810ad6fSSam Leffler #include <sys/bus.h>
956810ad6fSSam Leffler #include "cryptodev_if.h"
966810ad6fSSam Leffler 
976ed982a2SAndrew Turner #if defined(__i386__) || defined(__amd64__) || defined(__aarch64__)
9804c49e68SKonstantin Belousov #include <machine/pcb.h>
9904c49e68SKonstantin Belousov #endif
10004c49e68SKonstantin Belousov 
101df21ad6eSBjoern A. Zeeb SDT_PROVIDER_DEFINE(opencrypto);
102df21ad6eSBjoern A. Zeeb 
103091d81d1SSam Leffler /*
104091d81d1SSam Leffler  * Crypto drivers register themselves by allocating a slot in the
10576681661SJohn Baldwin  * crypto_drivers table with crypto_get_driverid().
106091d81d1SSam Leffler  */
107091d81d1SSam Leffler static	struct mtx crypto_drivers_mtx;		/* lock on driver table */
108091d81d1SSam Leffler #define	CRYPTO_DRIVER_LOCK()	mtx_lock(&crypto_drivers_mtx)
109091d81d1SSam Leffler #define	CRYPTO_DRIVER_UNLOCK()	mtx_unlock(&crypto_drivers_mtx)
1106810ad6fSSam Leffler #define	CRYPTO_DRIVER_ASSERT()	mtx_assert(&crypto_drivers_mtx, MA_OWNED)
1116810ad6fSSam Leffler 
1126810ad6fSSam Leffler /*
1136810ad6fSSam Leffler  * Crypto device/driver capabilities structure.
1146810ad6fSSam Leffler  *
1156810ad6fSSam Leffler  * Synchronization:
1166810ad6fSSam Leffler  * (d) - protected by CRYPTO_DRIVER_LOCK()
1176810ad6fSSam Leffler  * (q) - protected by CRYPTO_Q_LOCK()
1186810ad6fSSam Leffler  * Not tagged fields are read-only.
1196810ad6fSSam Leffler  */
1206810ad6fSSam Leffler struct cryptocap {
121c0341432SJohn Baldwin 	device_t	cc_dev;
122c0341432SJohn Baldwin 	uint32_t	cc_hid;
123d3d79e96SJohn Baldwin 	uint32_t	cc_sessions;		/* (d) # of sessions */
1246810ad6fSSam Leffler 
1256810ad6fSSam Leffler 	int		cc_flags;		/* (d) flags */
1266810ad6fSSam Leffler #define CRYPTOCAP_F_CLEANUP	0x80000000	/* needs resource cleanup */
1276810ad6fSSam Leffler 	int		cc_qblocked;		/* (q) symmetric q blocked */
1281b0909d5SConrad Meyer 	size_t		cc_session_size;
129c0341432SJohn Baldwin 	volatile int	cc_refs;
1306810ad6fSSam Leffler };
131c0341432SJohn Baldwin 
132c0341432SJohn Baldwin static	struct cryptocap **crypto_drivers = NULL;
133c0341432SJohn Baldwin static	int crypto_drivers_size = 0;
134c0341432SJohn Baldwin 
135c0341432SJohn Baldwin struct crypto_session {
136c0341432SJohn Baldwin 	struct cryptocap *cap;
137c0341432SJohn Baldwin 	struct crypto_session_params csp;
13898d788c8SMark Johnston 	uint64_t id;
1398adcc757SMark Johnston 	/* Driver softc follows. */
140c0341432SJohn Baldwin };
141091d81d1SSam Leffler 
1423a865c82SPawel Jakub Dawidek static	int crp_sleep = 0;
14339bbca6fSFabien Thomas static	TAILQ_HEAD(cryptop_q ,cryptop) crp_q;		/* request queues */
144091d81d1SSam Leffler static	struct mtx crypto_q_mtx;
145091d81d1SSam Leffler #define	CRYPTO_Q_LOCK()		mtx_lock(&crypto_q_mtx)
146091d81d1SSam Leffler #define	CRYPTO_Q_UNLOCK()	mtx_unlock(&crypto_q_mtx)
147091d81d1SSam Leffler 
14833f3bad3SJohn Baldwin SYSCTL_NODE(_kern, OID_AUTO, crypto, CTLFLAG_RW, 0,
149c0341432SJohn Baldwin     "In-kernel cryptography");
150c0341432SJohn Baldwin 
151091d81d1SSam Leffler /*
15239bbca6fSFabien Thomas  * Taskqueue used to dispatch the crypto requests
15339bbca6fSFabien Thomas  * that have the CRYPTO_F_ASYNC flag
154091d81d1SSam Leffler  */
15539bbca6fSFabien Thomas static struct taskqueue *crypto_tq;
15639bbca6fSFabien Thomas 
15739bbca6fSFabien Thomas /*
15839bbca6fSFabien Thomas  * Crypto seq numbers are operated on with modular arithmetic
15939bbca6fSFabien Thomas  */
16039bbca6fSFabien Thomas #define	CRYPTO_SEQ_GT(a,b)	((int)((a)-(b)) > 0)
16139bbca6fSFabien Thomas 
16239bbca6fSFabien Thomas struct crypto_ret_worker {
16339bbca6fSFabien Thomas 	struct mtx crypto_ret_mtx;
16439bbca6fSFabien Thomas 
16539bbca6fSFabien Thomas 	TAILQ_HEAD(,cryptop) crp_ordered_ret_q;	/* ordered callback queue for symetric jobs */
16639bbca6fSFabien Thomas 	TAILQ_HEAD(,cryptop) crp_ret_q;		/* callback queue for symetric jobs */
16739bbca6fSFabien Thomas 
168d3d79e96SJohn Baldwin 	uint32_t reorder_ops;		/* total ordered sym jobs received */
169d3d79e96SJohn Baldwin 	uint32_t reorder_cur_seq;	/* current sym job dispatched */
17039bbca6fSFabien Thomas 
17139bbca6fSFabien Thomas 	struct proc *cryptoretproc;
17239bbca6fSFabien Thomas };
17339bbca6fSFabien Thomas static struct crypto_ret_worker *crypto_ret_workers = NULL;
17439bbca6fSFabien Thomas 
17539bbca6fSFabien Thomas #define CRYPTO_RETW(i)		(&crypto_ret_workers[i])
17639bbca6fSFabien Thomas #define CRYPTO_RETW_ID(w)	((w) - crypto_ret_workers)
17739bbca6fSFabien Thomas #define FOREACH_CRYPTO_RETW(w) \
17839bbca6fSFabien Thomas 	for (w = crypto_ret_workers; w < crypto_ret_workers + crypto_workers_num; ++w)
17939bbca6fSFabien Thomas 
18039bbca6fSFabien Thomas #define	CRYPTO_RETW_LOCK(w)	mtx_lock(&w->crypto_ret_mtx)
18139bbca6fSFabien Thomas #define	CRYPTO_RETW_UNLOCK(w)	mtx_unlock(&w->crypto_ret_mtx)
18239bbca6fSFabien Thomas 
18339bbca6fSFabien Thomas static int crypto_workers_num = 0;
184c0341432SJohn Baldwin SYSCTL_INT(_kern_crypto, OID_AUTO, num_workers, CTLFLAG_RDTUN,
185c0341432SJohn Baldwin 	   &crypto_workers_num, 0,
186c0341432SJohn Baldwin 	   "Number of crypto workers used to dispatch crypto jobs");
187c0341432SJohn Baldwin #ifdef COMPAT_FREEBSD12
18839bbca6fSFabien Thomas SYSCTL_INT(_kern, OID_AUTO, crypto_workers_num, CTLFLAG_RDTUN,
18939bbca6fSFabien Thomas 	   &crypto_workers_num, 0,
19039bbca6fSFabien Thomas 	   "Number of crypto workers used to dispatch crypto jobs");
191c0341432SJohn Baldwin #endif
192091d81d1SSam Leffler 
193091d81d1SSam Leffler static	uma_zone_t cryptop_zone;
194091d81d1SSam Leffler 
195c0341432SJohn Baldwin int	crypto_devallowsoft = 0;
1969e0c0512SMark Johnston SYSCTL_INT(_kern_crypto, OID_AUTO, allow_soft, CTLFLAG_RWTUN,
197c0341432SJohn Baldwin 	   &crypto_devallowsoft, 0,
198c0341432SJohn Baldwin 	   "Enable use of software crypto by /dev/crypto");
199c0341432SJohn Baldwin #ifdef COMPAT_FREEBSD12
2009e0c0512SMark Johnston SYSCTL_INT(_kern, OID_AUTO, cryptodevallowsoft, CTLFLAG_RWTUN,
201091d81d1SSam Leffler 	   &crypto_devallowsoft, 0,
2026c20d7a3SJohn-Mark Gurney 	   "Enable/disable use of software crypto by /dev/crypto");
203c0341432SJohn Baldwin #endif
204091d81d1SSam Leffler 
205091d81d1SSam Leffler MALLOC_DEFINE(M_CRYPTO_DATA, "crypto", "crypto session records");
206091d81d1SSam Leffler 
20751e45326SSam Leffler static	void crypto_proc(void);
20851e45326SSam Leffler static	struct proc *cryptoproc;
20939bbca6fSFabien Thomas static	void crypto_ret_proc(struct crypto_ret_worker *ret_worker);
21051e45326SSam Leffler static	void crypto_destroy(void);
2114acae0acSPawel Jakub Dawidek static	int crypto_invoke(struct cryptocap *cap, struct cryptop *crp, int hint);
21239bbca6fSFabien Thomas static	void crypto_task_invoke(void *ctx, int pending);
21339bbca6fSFabien Thomas static void crypto_batch_enqueue(struct cryptop *crp);
21451e45326SSam Leffler 
2157290cb47SMark Johnston static counter_u64_t cryptostats[sizeof(struct cryptostats) / sizeof(uint64_t)];
2167290cb47SMark Johnston SYSCTL_COUNTER_U64_ARRAY(_kern_crypto, OID_AUTO, stats, CTLFLAG_RW,
2177290cb47SMark Johnston     cryptostats, nitems(cryptostats),
2187290cb47SMark Johnston     "Crypto system statistics");
2197290cb47SMark Johnston 
2207290cb47SMark Johnston #define	CRYPTOSTAT_INC(stat) do {					\
2217290cb47SMark Johnston 	counter_u64_add(						\
2227290cb47SMark Johnston 	    cryptostats[offsetof(struct cryptostats, stat) / sizeof(uint64_t)],\
2237290cb47SMark Johnston 	    1);								\
2247290cb47SMark Johnston } while (0)
2257290cb47SMark Johnston 
2267290cb47SMark Johnston static void
2277290cb47SMark Johnston cryptostats_init(void *arg __unused)
2287290cb47SMark Johnston {
2297290cb47SMark Johnston 	COUNTER_ARRAY_ALLOC(cryptostats, nitems(cryptostats), M_WAITOK);
2307290cb47SMark Johnston }
2317290cb47SMark Johnston SYSINIT(cryptostats_init, SI_SUB_COUNTER, SI_ORDER_ANY, cryptostats_init, NULL);
2327290cb47SMark Johnston 
2337290cb47SMark Johnston static void
2347290cb47SMark Johnston cryptostats_fini(void *arg __unused)
2357290cb47SMark Johnston {
2367290cb47SMark Johnston 	COUNTER_ARRAY_FREE(cryptostats, nitems(cryptostats));
2377290cb47SMark Johnston }
2387290cb47SMark Johnston SYSUNINIT(cryptostats_fini, SI_SUB_COUNTER, SI_ORDER_ANY, cryptostats_fini,
2397290cb47SMark Johnston     NULL);
2407d1853eeSSam Leffler 
241ec5c0e5bSAllan Jude /* Try to avoid directly exposing the key buffer as a symbol */
242ec5c0e5bSAllan Jude static struct keybuf *keybuf;
243ec5c0e5bSAllan Jude 
244ec5c0e5bSAllan Jude static struct keybuf empty_keybuf = {
245ec5c0e5bSAllan Jude         .kb_nents = 0
246ec5c0e5bSAllan Jude };
247ec5c0e5bSAllan Jude 
248ec5c0e5bSAllan Jude /* Obtain the key buffer from boot metadata */
249ec5c0e5bSAllan Jude static void
250ec5c0e5bSAllan Jude keybuf_init(void)
251ec5c0e5bSAllan Jude {
252ec5c0e5bSAllan Jude 	caddr_t kmdp;
253ec5c0e5bSAllan Jude 
254ec5c0e5bSAllan Jude 	kmdp = preload_search_by_type("elf kernel");
255ec5c0e5bSAllan Jude 
256ec5c0e5bSAllan Jude 	if (kmdp == NULL)
257ec5c0e5bSAllan Jude 		kmdp = preload_search_by_type("elf64 kernel");
258ec5c0e5bSAllan Jude 
259ec5c0e5bSAllan Jude 	keybuf = (struct keybuf *)preload_search_info(kmdp,
260ec5c0e5bSAllan Jude 	    MODINFO_METADATA | MODINFOMD_KEYBUF);
261ec5c0e5bSAllan Jude 
262ec5c0e5bSAllan Jude         if (keybuf == NULL)
263ec5c0e5bSAllan Jude                 keybuf = &empty_keybuf;
264ec5c0e5bSAllan Jude }
265ec5c0e5bSAllan Jude 
266ec5c0e5bSAllan Jude /* It'd be nice if we could store these in some kind of secure memory... */
2675973f492SJohn Baldwin struct keybuf *
2685973f492SJohn Baldwin get_keybuf(void)
2695973f492SJohn Baldwin {
270ec5c0e5bSAllan Jude 
271ec5c0e5bSAllan Jude         return (keybuf);
272ec5c0e5bSAllan Jude }
273ec5c0e5bSAllan Jude 
274c0341432SJohn Baldwin static struct cryptocap *
275c0341432SJohn Baldwin cap_ref(struct cryptocap *cap)
276c0341432SJohn Baldwin {
277c0341432SJohn Baldwin 
278c0341432SJohn Baldwin 	refcount_acquire(&cap->cc_refs);
279c0341432SJohn Baldwin 	return (cap);
280c0341432SJohn Baldwin }
281c0341432SJohn Baldwin 
282c0341432SJohn Baldwin static void
283c0341432SJohn Baldwin cap_rele(struct cryptocap *cap)
284c0341432SJohn Baldwin {
285c0341432SJohn Baldwin 
286c0341432SJohn Baldwin 	if (refcount_release(&cap->cc_refs) == 0)
287c0341432SJohn Baldwin 		return;
288c0341432SJohn Baldwin 
289c0341432SJohn Baldwin 	KASSERT(cap->cc_sessions == 0,
290c0341432SJohn Baldwin 	    ("freeing crypto driver with active sessions"));
291c0341432SJohn Baldwin 
292c0341432SJohn Baldwin 	free(cap, M_CRYPTO_DATA);
293c0341432SJohn Baldwin }
294c0341432SJohn Baldwin 
29551e45326SSam Leffler static int
296091d81d1SSam Leffler crypto_init(void)
297091d81d1SSam Leffler {
29839bbca6fSFabien Thomas 	struct crypto_ret_worker *ret_worker;
29951e45326SSam Leffler 	int error;
300091d81d1SSam Leffler 
3013569ae7fSSam Leffler 	mtx_init(&crypto_drivers_mtx, "crypto", "crypto driver table",
3023569ae7fSSam Leffler 		MTX_DEF|MTX_QUIET);
303091d81d1SSam Leffler 
304091d81d1SSam Leffler 	TAILQ_INIT(&crp_q);
3053569ae7fSSam Leffler 	mtx_init(&crypto_q_mtx, "crypto", "crypto op queues", MTX_DEF);
306091d81d1SSam Leffler 
307e5587cbbSMark Johnston 	cryptop_zone = uma_zcreate("cryptop",
308e5587cbbSMark Johnston 	    sizeof(struct cryptop), NULL, NULL, NULL, NULL,
30951e45326SSam Leffler 	    UMA_ALIGN_PTR, UMA_ZONE_ZINIT);
3101b0909d5SConrad Meyer 
311c0341432SJohn Baldwin 	crypto_drivers_size = CRYPTO_DRIVERS_INITIAL;
312c0341432SJohn Baldwin 	crypto_drivers = malloc(crypto_drivers_size *
313e5587cbbSMark Johnston 	    sizeof(struct cryptocap), M_CRYPTO_DATA, M_WAITOK | M_ZERO);
31451e45326SSam Leffler 
31539bbca6fSFabien Thomas 	if (crypto_workers_num < 1 || crypto_workers_num > mp_ncpus)
31639bbca6fSFabien Thomas 		crypto_workers_num = mp_ncpus;
31739bbca6fSFabien Thomas 
31839bbca6fSFabien Thomas 	crypto_tq = taskqueue_create("crypto", M_WAITOK | M_ZERO,
31939bbca6fSFabien Thomas 	    taskqueue_thread_enqueue, &crypto_tq);
32039bbca6fSFabien Thomas 
32139bbca6fSFabien Thomas 	taskqueue_start_threads(&crypto_tq, crypto_workers_num, PRI_MIN_KERN,
32239bbca6fSFabien Thomas 	    "crypto");
32339bbca6fSFabien Thomas 
3243745c395SJulian Elischer 	error = kproc_create((void (*)(void *)) crypto_proc, NULL,
32551e45326SSam Leffler 		    &cryptoproc, 0, 0, "crypto");
32651e45326SSam Leffler 	if (error) {
32751e45326SSam Leffler 		printf("crypto_init: cannot start crypto thread; error %d",
32851e45326SSam Leffler 			error);
32951e45326SSam Leffler 		goto bad;
33051e45326SSam Leffler 	}
33151e45326SSam Leffler 
332e5587cbbSMark Johnston 	crypto_ret_workers = mallocarray(crypto_workers_num,
333e5587cbbSMark Johnston 	    sizeof(struct crypto_ret_worker), M_CRYPTO_DATA, M_WAITOK | M_ZERO);
33439bbca6fSFabien Thomas 
33539bbca6fSFabien Thomas 	FOREACH_CRYPTO_RETW(ret_worker) {
33639bbca6fSFabien Thomas 		TAILQ_INIT(&ret_worker->crp_ordered_ret_q);
33739bbca6fSFabien Thomas 		TAILQ_INIT(&ret_worker->crp_ret_q);
33839bbca6fSFabien Thomas 
33939bbca6fSFabien Thomas 		ret_worker->reorder_ops = 0;
34039bbca6fSFabien Thomas 		ret_worker->reorder_cur_seq = 0;
34139bbca6fSFabien Thomas 
34239bbca6fSFabien Thomas 		mtx_init(&ret_worker->crypto_ret_mtx, "crypto", "crypto return queues", MTX_DEF);
34339bbca6fSFabien Thomas 
34439bbca6fSFabien Thomas 		error = kproc_create((void (*)(void *)) crypto_ret_proc, ret_worker,
34539bbca6fSFabien Thomas 				&ret_worker->cryptoretproc, 0, 0, "crypto returns %td", CRYPTO_RETW_ID(ret_worker));
34651e45326SSam Leffler 		if (error) {
34751e45326SSam Leffler 			printf("crypto_init: cannot start cryptoret thread; error %d",
34851e45326SSam Leffler 				error);
34951e45326SSam Leffler 			goto bad;
35051e45326SSam Leffler 		}
35139bbca6fSFabien Thomas 	}
352ec5c0e5bSAllan Jude 
353ec5c0e5bSAllan Jude 	keybuf_init();
354ec5c0e5bSAllan Jude 
35551e45326SSam Leffler 	return 0;
35651e45326SSam Leffler bad:
35751e45326SSam Leffler 	crypto_destroy();
35851e45326SSam Leffler 	return error;
35951e45326SSam Leffler }
36051e45326SSam Leffler 
36151e45326SSam Leffler /*
36251e45326SSam Leffler  * Signal a crypto thread to terminate.  We use the driver
36351e45326SSam Leffler  * table lock to synchronize the sleep/wakeups so that we
36451e45326SSam Leffler  * are sure the threads have terminated before we release
36551e45326SSam Leffler  * the data structures they use.  See crypto_finis below
36651e45326SSam Leffler  * for the other half of this song-and-dance.
36751e45326SSam Leffler  */
36851e45326SSam Leffler static void
36951e45326SSam Leffler crypto_terminate(struct proc **pp, void *q)
37051e45326SSam Leffler {
37151e45326SSam Leffler 	struct proc *p;
37251e45326SSam Leffler 
37351e45326SSam Leffler 	mtx_assert(&crypto_drivers_mtx, MA_OWNED);
37451e45326SSam Leffler 	p = *pp;
37551e45326SSam Leffler 	*pp = NULL;
37651e45326SSam Leffler 	if (p) {
37751e45326SSam Leffler 		wakeup_one(q);
37851e45326SSam Leffler 		PROC_LOCK(p);		/* NB: insure we don't miss wakeup */
37951e45326SSam Leffler 		CRYPTO_DRIVER_UNLOCK();	/* let crypto_finis progress */
38051e45326SSam Leffler 		msleep(p, &p->p_mtx, PWAIT, "crypto_destroy", 0);
38151e45326SSam Leffler 		PROC_UNLOCK(p);
38251e45326SSam Leffler 		CRYPTO_DRIVER_LOCK();
38351e45326SSam Leffler 	}
38451e45326SSam Leffler }
38551e45326SSam Leffler 
38651e45326SSam Leffler static void
387d588dc7dSMark Johnston hmac_init_pad(const struct auth_hash *axf, const char *key, int klen,
388d588dc7dSMark Johnston     void *auth_ctx, uint8_t padval)
389c0341432SJohn Baldwin {
390c0341432SJohn Baldwin 	uint8_t hmac_key[HMAC_MAX_BLOCK_LEN];
391c0341432SJohn Baldwin 	u_int i;
392c0341432SJohn Baldwin 
393c0341432SJohn Baldwin 	KASSERT(axf->blocksize <= sizeof(hmac_key),
394c0341432SJohn Baldwin 	    ("Invalid HMAC block size %d", axf->blocksize));
395c0341432SJohn Baldwin 
396c0341432SJohn Baldwin 	/*
397c0341432SJohn Baldwin 	 * If the key is larger than the block size, use the digest of
398c0341432SJohn Baldwin 	 * the key as the key instead.
399c0341432SJohn Baldwin 	 */
400c0341432SJohn Baldwin 	memset(hmac_key, 0, sizeof(hmac_key));
401c0341432SJohn Baldwin 	if (klen > axf->blocksize) {
402c0341432SJohn Baldwin 		axf->Init(auth_ctx);
403c0341432SJohn Baldwin 		axf->Update(auth_ctx, key, klen);
404c0341432SJohn Baldwin 		axf->Final(hmac_key, auth_ctx);
405c0341432SJohn Baldwin 		klen = axf->hashsize;
406c0341432SJohn Baldwin 	} else
407c0341432SJohn Baldwin 		memcpy(hmac_key, key, klen);
408c0341432SJohn Baldwin 
409c0341432SJohn Baldwin 	for (i = 0; i < axf->blocksize; i++)
410c0341432SJohn Baldwin 		hmac_key[i] ^= padval;
411c0341432SJohn Baldwin 
412c0341432SJohn Baldwin 	axf->Init(auth_ctx);
413c0341432SJohn Baldwin 	axf->Update(auth_ctx, hmac_key, axf->blocksize);
41417a831eaSJohn Baldwin 	explicit_bzero(hmac_key, sizeof(hmac_key));
415c0341432SJohn Baldwin }
416c0341432SJohn Baldwin 
417c0341432SJohn Baldwin void
418d588dc7dSMark Johnston hmac_init_ipad(const struct auth_hash *axf, const char *key, int klen,
419c0341432SJohn Baldwin     void *auth_ctx)
420c0341432SJohn Baldwin {
421c0341432SJohn Baldwin 
422c0341432SJohn Baldwin 	hmac_init_pad(axf, key, klen, auth_ctx, HMAC_IPAD_VAL);
423c0341432SJohn Baldwin }
424c0341432SJohn Baldwin 
425c0341432SJohn Baldwin void
426d588dc7dSMark Johnston hmac_init_opad(const struct auth_hash *axf, const char *key, int klen,
427c0341432SJohn Baldwin     void *auth_ctx)
428c0341432SJohn Baldwin {
429c0341432SJohn Baldwin 
430c0341432SJohn Baldwin 	hmac_init_pad(axf, key, klen, auth_ctx, HMAC_OPAD_VAL);
431c0341432SJohn Baldwin }
432c0341432SJohn Baldwin 
433c0341432SJohn Baldwin static void
43451e45326SSam Leffler crypto_destroy(void)
43551e45326SSam Leffler {
43639bbca6fSFabien Thomas 	struct crypto_ret_worker *ret_worker;
437c0341432SJohn Baldwin 	int i;
43839bbca6fSFabien Thomas 
43951e45326SSam Leffler 	/*
44051e45326SSam Leffler 	 * Terminate any crypto threads.
44151e45326SSam Leffler 	 */
44239bbca6fSFabien Thomas 	if (crypto_tq != NULL)
44339bbca6fSFabien Thomas 		taskqueue_drain_all(crypto_tq);
44451e45326SSam Leffler 	CRYPTO_DRIVER_LOCK();
44551e45326SSam Leffler 	crypto_terminate(&cryptoproc, &crp_q);
44639bbca6fSFabien Thomas 	FOREACH_CRYPTO_RETW(ret_worker)
44739bbca6fSFabien Thomas 		crypto_terminate(&ret_worker->cryptoretproc, &ret_worker->crp_ret_q);
44851e45326SSam Leffler 	CRYPTO_DRIVER_UNLOCK();
44951e45326SSam Leffler 
45051e45326SSam Leffler 	/* XXX flush queues??? */
45151e45326SSam Leffler 
45251e45326SSam Leffler 	/*
45351e45326SSam Leffler 	 * Reclaim dynamically allocated resources.
45451e45326SSam Leffler 	 */
455c0341432SJohn Baldwin 	for (i = 0; i < crypto_drivers_size; i++) {
456c0341432SJohn Baldwin 		if (crypto_drivers[i] != NULL)
457c0341432SJohn Baldwin 			cap_rele(crypto_drivers[i]);
458c0341432SJohn Baldwin 	}
45951e45326SSam Leffler 	free(crypto_drivers, M_CRYPTO_DATA);
46051e45326SSam Leffler 
46151e45326SSam Leffler 	if (cryptop_zone != NULL)
46251e45326SSam Leffler 		uma_zdestroy(cryptop_zone);
46351e45326SSam Leffler 	mtx_destroy(&crypto_q_mtx);
46439bbca6fSFabien Thomas 	FOREACH_CRYPTO_RETW(ret_worker)
46539bbca6fSFabien Thomas 		mtx_destroy(&ret_worker->crypto_ret_mtx);
46639bbca6fSFabien Thomas 	free(crypto_ret_workers, M_CRYPTO_DATA);
46739bbca6fSFabien Thomas 	if (crypto_tq != NULL)
46839bbca6fSFabien Thomas 		taskqueue_free(crypto_tq);
46951e45326SSam Leffler 	mtx_destroy(&crypto_drivers_mtx);
470091d81d1SSam Leffler }
471f544a528SMark Murray 
4721b0909d5SConrad Meyer uint32_t
4731b0909d5SConrad Meyer crypto_ses2hid(crypto_session_t crypto_session)
4741b0909d5SConrad Meyer {
475c0341432SJohn Baldwin 	return (crypto_session->cap->cc_hid);
4761b0909d5SConrad Meyer }
4771b0909d5SConrad Meyer 
4781b0909d5SConrad Meyer uint32_t
4791b0909d5SConrad Meyer crypto_ses2caps(crypto_session_t crypto_session)
4801b0909d5SConrad Meyer {
481c0341432SJohn Baldwin 	return (crypto_session->cap->cc_flags & 0xff000000);
4821b0909d5SConrad Meyer }
4831b0909d5SConrad Meyer 
4841b0909d5SConrad Meyer void *
4851b0909d5SConrad Meyer crypto_get_driver_session(crypto_session_t crypto_session)
4861b0909d5SConrad Meyer {
487d1816248SMark Johnston 	return (crypto_session + 1);
4881b0909d5SConrad Meyer }
4891b0909d5SConrad Meyer 
490c0341432SJohn Baldwin const struct crypto_session_params *
491c0341432SJohn Baldwin crypto_get_params(crypto_session_t crypto_session)
492c0341432SJohn Baldwin {
493c0341432SJohn Baldwin 	return (&crypto_session->csp);
494c0341432SJohn Baldwin }
495c0341432SJohn Baldwin 
496d8787d4fSMark Johnston const struct auth_hash *
497c0341432SJohn Baldwin crypto_auth_hash(const struct crypto_session_params *csp)
498c0341432SJohn Baldwin {
499c0341432SJohn Baldwin 
500c0341432SJohn Baldwin 	switch (csp->csp_auth_alg) {
501c0341432SJohn Baldwin 	case CRYPTO_SHA1_HMAC:
502c0341432SJohn Baldwin 		return (&auth_hash_hmac_sha1);
503c0341432SJohn Baldwin 	case CRYPTO_SHA2_224_HMAC:
504c0341432SJohn Baldwin 		return (&auth_hash_hmac_sha2_224);
505c0341432SJohn Baldwin 	case CRYPTO_SHA2_256_HMAC:
506c0341432SJohn Baldwin 		return (&auth_hash_hmac_sha2_256);
507c0341432SJohn Baldwin 	case CRYPTO_SHA2_384_HMAC:
508c0341432SJohn Baldwin 		return (&auth_hash_hmac_sha2_384);
509c0341432SJohn Baldwin 	case CRYPTO_SHA2_512_HMAC:
510c0341432SJohn Baldwin 		return (&auth_hash_hmac_sha2_512);
511c0341432SJohn Baldwin 	case CRYPTO_NULL_HMAC:
512c0341432SJohn Baldwin 		return (&auth_hash_null);
513c0341432SJohn Baldwin 	case CRYPTO_RIPEMD160_HMAC:
514c0341432SJohn Baldwin 		return (&auth_hash_hmac_ripemd_160);
515c0341432SJohn Baldwin 	case CRYPTO_SHA1:
516c0341432SJohn Baldwin 		return (&auth_hash_sha1);
517c0341432SJohn Baldwin 	case CRYPTO_SHA2_224:
518c0341432SJohn Baldwin 		return (&auth_hash_sha2_224);
519c0341432SJohn Baldwin 	case CRYPTO_SHA2_256:
520c0341432SJohn Baldwin 		return (&auth_hash_sha2_256);
521c0341432SJohn Baldwin 	case CRYPTO_SHA2_384:
522c0341432SJohn Baldwin 		return (&auth_hash_sha2_384);
523c0341432SJohn Baldwin 	case CRYPTO_SHA2_512:
524c0341432SJohn Baldwin 		return (&auth_hash_sha2_512);
525c0341432SJohn Baldwin 	case CRYPTO_AES_NIST_GMAC:
526c0341432SJohn Baldwin 		switch (csp->csp_auth_klen) {
527c0341432SJohn Baldwin 		case 128 / 8:
528c0341432SJohn Baldwin 			return (&auth_hash_nist_gmac_aes_128);
529c0341432SJohn Baldwin 		case 192 / 8:
530c0341432SJohn Baldwin 			return (&auth_hash_nist_gmac_aes_192);
531c0341432SJohn Baldwin 		case 256 / 8:
532c0341432SJohn Baldwin 			return (&auth_hash_nist_gmac_aes_256);
533c0341432SJohn Baldwin 		default:
534c0341432SJohn Baldwin 			return (NULL);
535c0341432SJohn Baldwin 		}
536c0341432SJohn Baldwin 	case CRYPTO_BLAKE2B:
537c0341432SJohn Baldwin 		return (&auth_hash_blake2b);
538c0341432SJohn Baldwin 	case CRYPTO_BLAKE2S:
539c0341432SJohn Baldwin 		return (&auth_hash_blake2s);
540c0341432SJohn Baldwin 	case CRYPTO_POLY1305:
541c0341432SJohn Baldwin 		return (&auth_hash_poly1305);
542c0341432SJohn Baldwin 	case CRYPTO_AES_CCM_CBC_MAC:
543c0341432SJohn Baldwin 		switch (csp->csp_auth_klen) {
544c0341432SJohn Baldwin 		case 128 / 8:
545c0341432SJohn Baldwin 			return (&auth_hash_ccm_cbc_mac_128);
546c0341432SJohn Baldwin 		case 192 / 8:
547c0341432SJohn Baldwin 			return (&auth_hash_ccm_cbc_mac_192);
548c0341432SJohn Baldwin 		case 256 / 8:
549c0341432SJohn Baldwin 			return (&auth_hash_ccm_cbc_mac_256);
550c0341432SJohn Baldwin 		default:
551c0341432SJohn Baldwin 			return (NULL);
552c0341432SJohn Baldwin 		}
553c0341432SJohn Baldwin 	default:
554c0341432SJohn Baldwin 		return (NULL);
555c0341432SJohn Baldwin 	}
556c0341432SJohn Baldwin }
557c0341432SJohn Baldwin 
558d8787d4fSMark Johnston const struct enc_xform *
559c0341432SJohn Baldwin crypto_cipher(const struct crypto_session_params *csp)
560c0341432SJohn Baldwin {
561c0341432SJohn Baldwin 
562c0341432SJohn Baldwin 	switch (csp->csp_cipher_alg) {
563c0341432SJohn Baldwin 	case CRYPTO_RIJNDAEL128_CBC:
564c0341432SJohn Baldwin 		return (&enc_xform_rijndael128);
565c0341432SJohn Baldwin 	case CRYPTO_AES_XTS:
566c0341432SJohn Baldwin 		return (&enc_xform_aes_xts);
567c0341432SJohn Baldwin 	case CRYPTO_AES_ICM:
568c0341432SJohn Baldwin 		return (&enc_xform_aes_icm);
569c0341432SJohn Baldwin 	case CRYPTO_AES_NIST_GCM_16:
570c0341432SJohn Baldwin 		return (&enc_xform_aes_nist_gcm);
571c0341432SJohn Baldwin 	case CRYPTO_CAMELLIA_CBC:
572c0341432SJohn Baldwin 		return (&enc_xform_camellia);
573c0341432SJohn Baldwin 	case CRYPTO_NULL_CBC:
574c0341432SJohn Baldwin 		return (&enc_xform_null);
575c0341432SJohn Baldwin 	case CRYPTO_CHACHA20:
576c0341432SJohn Baldwin 		return (&enc_xform_chacha20);
577c0341432SJohn Baldwin 	case CRYPTO_AES_CCM_16:
578c0341432SJohn Baldwin 		return (&enc_xform_ccm);
579fc8fc743SJohn Baldwin 	case CRYPTO_CHACHA20_POLY1305:
580fc8fc743SJohn Baldwin 		return (&enc_xform_chacha20_poly1305);
581c0341432SJohn Baldwin 	default:
582c0341432SJohn Baldwin 		return (NULL);
583c0341432SJohn Baldwin 	}
584c0341432SJohn Baldwin }
585c0341432SJohn Baldwin 
5866810ad6fSSam Leffler static struct cryptocap *
587d3d79e96SJohn Baldwin crypto_checkdriver(uint32_t hid)
5886810ad6fSSam Leffler {
5896810ad6fSSam Leffler 
590c0341432SJohn Baldwin 	return (hid >= crypto_drivers_size ? NULL : crypto_drivers[hid]);
591f544a528SMark Murray }
592f544a528SMark Murray 
593091d81d1SSam Leffler /*
5946810ad6fSSam Leffler  * Select a driver for a new session that supports the specified
5956810ad6fSSam Leffler  * algorithms and, optionally, is constrained according to the flags.
596091d81d1SSam Leffler  */
5976810ad6fSSam Leffler static struct cryptocap *
598c0341432SJohn Baldwin crypto_select_driver(const struct crypto_session_params *csp, int flags)
5996810ad6fSSam Leffler {
6006810ad6fSSam Leffler 	struct cryptocap *cap, *best;
601c0341432SJohn Baldwin 	int best_match, error, hid;
6026810ad6fSSam Leffler 
6036810ad6fSSam Leffler 	CRYPTO_DRIVER_ASSERT();
604091d81d1SSam Leffler 
6056810ad6fSSam Leffler 	best = NULL;
606c0341432SJohn Baldwin 	for (hid = 0; hid < crypto_drivers_size; hid++) {
607091d81d1SSam Leffler 		/*
608c0341432SJohn Baldwin 		 * If there is no driver for this slot, or the driver
609c0341432SJohn Baldwin 		 * is not appropriate (hardware or software based on
610c0341432SJohn Baldwin 		 * match), then skip.
611091d81d1SSam Leffler 		 */
612c0341432SJohn Baldwin 		cap = crypto_drivers[hid];
613c0341432SJohn Baldwin 		if (cap == NULL ||
614c0341432SJohn Baldwin 		    (cap->cc_flags & flags) == 0)
615091d81d1SSam Leffler 			continue;
616091d81d1SSam Leffler 
617c0341432SJohn Baldwin 		error = CRYPTODEV_PROBESESSION(cap->cc_dev, csp);
618c0341432SJohn Baldwin 		if (error >= 0)
619c0341432SJohn Baldwin 			continue;
620c0341432SJohn Baldwin 
621c0341432SJohn Baldwin 		/*
622c0341432SJohn Baldwin 		 * Use the driver with the highest probe value.
623c0341432SJohn Baldwin 		 * Hardware drivers use a higher probe value than
624c0341432SJohn Baldwin 		 * software.  In case of a tie, prefer the driver with
625c0341432SJohn Baldwin 		 * the fewest active sessions.
626c0341432SJohn Baldwin 		 */
627c0341432SJohn Baldwin 		if (best == NULL || error > best_match ||
628c0341432SJohn Baldwin 		    (error == best_match &&
629c0341432SJohn Baldwin 		    cap->cc_sessions < best->cc_sessions)) {
6306810ad6fSSam Leffler 			best = cap;
631c0341432SJohn Baldwin 			best_match = error;
6326810ad6fSSam Leffler 		}
6336810ad6fSSam Leffler 	}
6346810ad6fSSam Leffler 	return best;
6356810ad6fSSam Leffler }
636091d81d1SSam Leffler 
637ad557055SJohn Baldwin static enum alg_type {
638ad557055SJohn Baldwin 	ALG_NONE = 0,
639ad557055SJohn Baldwin 	ALG_CIPHER,
640ad557055SJohn Baldwin 	ALG_DIGEST,
641ad557055SJohn Baldwin 	ALG_KEYED_DIGEST,
642ad557055SJohn Baldwin 	ALG_COMPRESSION,
643ad557055SJohn Baldwin 	ALG_AEAD
644ad557055SJohn Baldwin } alg_types[] = {
645ad557055SJohn Baldwin 	[CRYPTO_SHA1_HMAC] = ALG_KEYED_DIGEST,
646ad557055SJohn Baldwin 	[CRYPTO_RIPEMD160_HMAC] = ALG_KEYED_DIGEST,
647ad557055SJohn Baldwin 	[CRYPTO_AES_CBC] = ALG_CIPHER,
648ad557055SJohn Baldwin 	[CRYPTO_SHA1] = ALG_DIGEST,
649ad557055SJohn Baldwin 	[CRYPTO_NULL_HMAC] = ALG_DIGEST,
650ad557055SJohn Baldwin 	[CRYPTO_NULL_CBC] = ALG_CIPHER,
651ad557055SJohn Baldwin 	[CRYPTO_DEFLATE_COMP] = ALG_COMPRESSION,
652ad557055SJohn Baldwin 	[CRYPTO_SHA2_256_HMAC] = ALG_KEYED_DIGEST,
653ad557055SJohn Baldwin 	[CRYPTO_SHA2_384_HMAC] = ALG_KEYED_DIGEST,
654ad557055SJohn Baldwin 	[CRYPTO_SHA2_512_HMAC] = ALG_KEYED_DIGEST,
655ad557055SJohn Baldwin 	[CRYPTO_CAMELLIA_CBC] = ALG_CIPHER,
656ad557055SJohn Baldwin 	[CRYPTO_AES_XTS] = ALG_CIPHER,
657ad557055SJohn Baldwin 	[CRYPTO_AES_ICM] = ALG_CIPHER,
658ad557055SJohn Baldwin 	[CRYPTO_AES_NIST_GMAC] = ALG_KEYED_DIGEST,
659ad557055SJohn Baldwin 	[CRYPTO_AES_NIST_GCM_16] = ALG_AEAD,
660ad557055SJohn Baldwin 	[CRYPTO_BLAKE2B] = ALG_KEYED_DIGEST,
661ad557055SJohn Baldwin 	[CRYPTO_BLAKE2S] = ALG_KEYED_DIGEST,
662ad557055SJohn Baldwin 	[CRYPTO_CHACHA20] = ALG_CIPHER,
663ad557055SJohn Baldwin 	[CRYPTO_SHA2_224_HMAC] = ALG_KEYED_DIGEST,
664ad557055SJohn Baldwin 	[CRYPTO_RIPEMD160] = ALG_DIGEST,
665ad557055SJohn Baldwin 	[CRYPTO_SHA2_224] = ALG_DIGEST,
666ad557055SJohn Baldwin 	[CRYPTO_SHA2_256] = ALG_DIGEST,
667ad557055SJohn Baldwin 	[CRYPTO_SHA2_384] = ALG_DIGEST,
668ad557055SJohn Baldwin 	[CRYPTO_SHA2_512] = ALG_DIGEST,
669ad557055SJohn Baldwin 	[CRYPTO_POLY1305] = ALG_KEYED_DIGEST,
670ad557055SJohn Baldwin 	[CRYPTO_AES_CCM_CBC_MAC] = ALG_KEYED_DIGEST,
671ad557055SJohn Baldwin 	[CRYPTO_AES_CCM_16] = ALG_AEAD,
672fc8fc743SJohn Baldwin 	[CRYPTO_CHACHA20_POLY1305] = ALG_AEAD,
673ad557055SJohn Baldwin };
674ad557055SJohn Baldwin 
675ad557055SJohn Baldwin static enum alg_type
676ad557055SJohn Baldwin alg_type(int alg)
677ad557055SJohn Baldwin {
678ad557055SJohn Baldwin 
679ad557055SJohn Baldwin 	if (alg < nitems(alg_types))
680ad557055SJohn Baldwin 		return (alg_types[alg]);
681ad557055SJohn Baldwin 	return (ALG_NONE);
682ad557055SJohn Baldwin }
683ad557055SJohn Baldwin 
684c0341432SJohn Baldwin static bool
685c0341432SJohn Baldwin alg_is_compression(int alg)
686c0341432SJohn Baldwin {
687c0341432SJohn Baldwin 
688ad557055SJohn Baldwin 	return (alg_type(alg) == ALG_COMPRESSION);
689c0341432SJohn Baldwin }
690c0341432SJohn Baldwin 
691c0341432SJohn Baldwin static bool
692c0341432SJohn Baldwin alg_is_cipher(int alg)
693c0341432SJohn Baldwin {
694c0341432SJohn Baldwin 
695ad557055SJohn Baldwin 	return (alg_type(alg) == ALG_CIPHER);
696c0341432SJohn Baldwin }
697c0341432SJohn Baldwin 
698c0341432SJohn Baldwin static bool
699c0341432SJohn Baldwin alg_is_digest(int alg)
700c0341432SJohn Baldwin {
701c0341432SJohn Baldwin 
702ad557055SJohn Baldwin 	return (alg_type(alg) == ALG_DIGEST ||
703ad557055SJohn Baldwin 	    alg_type(alg) == ALG_KEYED_DIGEST);
704c0341432SJohn Baldwin }
705c0341432SJohn Baldwin 
706c0341432SJohn Baldwin static bool
707c0341432SJohn Baldwin alg_is_keyed_digest(int alg)
708c0341432SJohn Baldwin {
709c0341432SJohn Baldwin 
710ad557055SJohn Baldwin 	return (alg_type(alg) == ALG_KEYED_DIGEST);
711c0341432SJohn Baldwin }
712c0341432SJohn Baldwin 
713c0341432SJohn Baldwin static bool
714c0341432SJohn Baldwin alg_is_aead(int alg)
715c0341432SJohn Baldwin {
716c0341432SJohn Baldwin 
717ad557055SJohn Baldwin 	return (alg_type(alg) == ALG_AEAD);
718c0341432SJohn Baldwin }
719c0341432SJohn Baldwin 
720*ae18720dSJohn Baldwin static bool
721*ae18720dSJohn Baldwin ccm_tag_length_valid(int len)
722*ae18720dSJohn Baldwin {
723*ae18720dSJohn Baldwin 	/* RFC 3610 */
724*ae18720dSJohn Baldwin 	switch (len) {
725*ae18720dSJohn Baldwin 	case 4:
726*ae18720dSJohn Baldwin 	case 6:
727*ae18720dSJohn Baldwin 	case 8:
728*ae18720dSJohn Baldwin 	case 10:
729*ae18720dSJohn Baldwin 	case 12:
730*ae18720dSJohn Baldwin 	case 14:
731*ae18720dSJohn Baldwin 	case 16:
732*ae18720dSJohn Baldwin 		return (true);
733*ae18720dSJohn Baldwin 	default:
734*ae18720dSJohn Baldwin 		return (false);
735*ae18720dSJohn Baldwin 	}
736*ae18720dSJohn Baldwin }
737*ae18720dSJohn Baldwin 
7387e89ae49SMarcin Wojtas #define SUPPORTED_SES (CSP_F_SEPARATE_OUTPUT | CSP_F_SEPARATE_AAD | CSP_F_ESN)
7397e89ae49SMarcin Wojtas 
740c0341432SJohn Baldwin /* Various sanity checks on crypto session parameters. */
741c0341432SJohn Baldwin static bool
742c0341432SJohn Baldwin check_csp(const struct crypto_session_params *csp)
743c0341432SJohn Baldwin {
744d8787d4fSMark Johnston 	const struct auth_hash *axf;
745c0341432SJohn Baldwin 
746c0341432SJohn Baldwin 	/* Mode-independent checks. */
7477e89ae49SMarcin Wojtas 	if ((csp->csp_flags & ~(SUPPORTED_SES)) != 0)
748c0341432SJohn Baldwin 		return (false);
749c0341432SJohn Baldwin 	if (csp->csp_ivlen < 0 || csp->csp_cipher_klen < 0 ||
750c0341432SJohn Baldwin 	    csp->csp_auth_klen < 0 || csp->csp_auth_mlen < 0)
751c0341432SJohn Baldwin 		return (false);
752c0341432SJohn Baldwin 	if (csp->csp_auth_key != NULL && csp->csp_auth_klen == 0)
753c0341432SJohn Baldwin 		return (false);
754c0341432SJohn Baldwin 	if (csp->csp_cipher_key != NULL && csp->csp_cipher_klen == 0)
755c0341432SJohn Baldwin 		return (false);
756c0341432SJohn Baldwin 
757c0341432SJohn Baldwin 	switch (csp->csp_mode) {
758c0341432SJohn Baldwin 	case CSP_MODE_COMPRESS:
759c0341432SJohn Baldwin 		if (!alg_is_compression(csp->csp_cipher_alg))
760c0341432SJohn Baldwin 			return (false);
7619c0e3d3aSJohn Baldwin 		if (csp->csp_flags & CSP_F_SEPARATE_OUTPUT)
762c0341432SJohn Baldwin 			return (false);
7639b774dc0SJohn Baldwin 		if (csp->csp_flags & CSP_F_SEPARATE_AAD)
7649b774dc0SJohn Baldwin 			return (false);
765c0341432SJohn Baldwin 		if (csp->csp_cipher_klen != 0 || csp->csp_ivlen != 0 ||
766c0341432SJohn Baldwin 		    csp->csp_auth_alg != 0 || csp->csp_auth_klen != 0 ||
767c0341432SJohn Baldwin 		    csp->csp_auth_mlen != 0)
768c0341432SJohn Baldwin 			return (false);
769c0341432SJohn Baldwin 		break;
770c0341432SJohn Baldwin 	case CSP_MODE_CIPHER:
771c0341432SJohn Baldwin 		if (!alg_is_cipher(csp->csp_cipher_alg))
772c0341432SJohn Baldwin 			return (false);
7739b774dc0SJohn Baldwin 		if (csp->csp_flags & CSP_F_SEPARATE_AAD)
7749b774dc0SJohn Baldwin 			return (false);
775c0341432SJohn Baldwin 		if (csp->csp_cipher_alg != CRYPTO_NULL_CBC) {
776c0341432SJohn Baldwin 			if (csp->csp_cipher_klen == 0)
777c0341432SJohn Baldwin 				return (false);
778c0341432SJohn Baldwin 			if (csp->csp_ivlen == 0)
779c0341432SJohn Baldwin 				return (false);
780c0341432SJohn Baldwin 		}
781c0341432SJohn Baldwin 		if (csp->csp_ivlen >= EALG_MAX_BLOCK_LEN)
782c0341432SJohn Baldwin 			return (false);
783c0341432SJohn Baldwin 		if (csp->csp_auth_alg != 0 || csp->csp_auth_klen != 0 ||
784c0341432SJohn Baldwin 		    csp->csp_auth_mlen != 0)
785c0341432SJohn Baldwin 			return (false);
786c0341432SJohn Baldwin 		break;
787c0341432SJohn Baldwin 	case CSP_MODE_DIGEST:
788c0341432SJohn Baldwin 		if (csp->csp_cipher_alg != 0 || csp->csp_cipher_klen != 0)
789c0341432SJohn Baldwin 			return (false);
790c0341432SJohn Baldwin 
7919b774dc0SJohn Baldwin 		if (csp->csp_flags & CSP_F_SEPARATE_AAD)
7929b774dc0SJohn Baldwin 			return (false);
7939b774dc0SJohn Baldwin 
794c0341432SJohn Baldwin 		/* IV is optional for digests (e.g. GMAC). */
795*ae18720dSJohn Baldwin 		switch (csp->csp_auth_alg) {
796*ae18720dSJohn Baldwin 		case CRYPTO_AES_CCM_CBC_MAC:
797*ae18720dSJohn Baldwin 			if (csp->csp_ivlen < 7 || csp->csp_ivlen > 13)
798c0341432SJohn Baldwin 				return (false);
799*ae18720dSJohn Baldwin 			break;
800*ae18720dSJohn Baldwin 		case CRYPTO_AES_NIST_GMAC:
801*ae18720dSJohn Baldwin 			if (csp->csp_ivlen != AES_GCM_IV_LEN)
802*ae18720dSJohn Baldwin 				return (false);
803*ae18720dSJohn Baldwin 			break;
804*ae18720dSJohn Baldwin 		default:
805*ae18720dSJohn Baldwin 			if (csp->csp_ivlen != 0)
806*ae18720dSJohn Baldwin 				return (false);
807*ae18720dSJohn Baldwin 			break;
808*ae18720dSJohn Baldwin 		}
809*ae18720dSJohn Baldwin 
810c0341432SJohn Baldwin 		if (!alg_is_digest(csp->csp_auth_alg))
811c0341432SJohn Baldwin 			return (false);
812c0341432SJohn Baldwin 
813c0341432SJohn Baldwin 		/* Key is optional for BLAKE2 digests. */
814c0341432SJohn Baldwin 		if (csp->csp_auth_alg == CRYPTO_BLAKE2B ||
815c0341432SJohn Baldwin 		    csp->csp_auth_alg == CRYPTO_BLAKE2S)
816c0341432SJohn Baldwin 			;
817c0341432SJohn Baldwin 		else if (alg_is_keyed_digest(csp->csp_auth_alg)) {
818c0341432SJohn Baldwin 			if (csp->csp_auth_klen == 0)
819c0341432SJohn Baldwin 				return (false);
820c0341432SJohn Baldwin 		} else {
821c0341432SJohn Baldwin 			if (csp->csp_auth_klen != 0)
822c0341432SJohn Baldwin 				return (false);
823c0341432SJohn Baldwin 		}
824c0341432SJohn Baldwin 		if (csp->csp_auth_mlen != 0) {
825c0341432SJohn Baldwin 			axf = crypto_auth_hash(csp);
826c0341432SJohn Baldwin 			if (axf == NULL || csp->csp_auth_mlen > axf->hashsize)
827c0341432SJohn Baldwin 				return (false);
828*ae18720dSJohn Baldwin 
829*ae18720dSJohn Baldwin 			if (csp->csp_auth_alg == CRYPTO_AES_CCM_CBC_MAC &&
830*ae18720dSJohn Baldwin 			    !ccm_tag_length_valid(csp->csp_auth_mlen))
831*ae18720dSJohn Baldwin 				return (false);
832c0341432SJohn Baldwin 		}
833c0341432SJohn Baldwin 		break;
834c0341432SJohn Baldwin 	case CSP_MODE_AEAD:
835c0341432SJohn Baldwin 		if (!alg_is_aead(csp->csp_cipher_alg))
836c0341432SJohn Baldwin 			return (false);
837c0341432SJohn Baldwin 		if (csp->csp_cipher_klen == 0)
838c0341432SJohn Baldwin 			return (false);
839c0341432SJohn Baldwin 		if (csp->csp_ivlen == 0 ||
840c0341432SJohn Baldwin 		    csp->csp_ivlen >= EALG_MAX_BLOCK_LEN)
841c0341432SJohn Baldwin 			return (false);
842c0341432SJohn Baldwin 		if (csp->csp_auth_alg != 0 || csp->csp_auth_klen != 0)
843c0341432SJohn Baldwin 			return (false);
844c0341432SJohn Baldwin 
845c0341432SJohn Baldwin 		switch (csp->csp_cipher_alg) {
846c0341432SJohn Baldwin 		case CRYPTO_AES_CCM_16:
847*ae18720dSJohn Baldwin 			if (csp->csp_auth_mlen != 0 &&
848*ae18720dSJohn Baldwin 			    !ccm_tag_length_valid(csp->csp_auth_mlen))
849*ae18720dSJohn Baldwin 				return (false);
850*ae18720dSJohn Baldwin 
851*ae18720dSJohn Baldwin 			if (csp->csp_ivlen < 7 || csp->csp_ivlen > 13)
852*ae18720dSJohn Baldwin 				return (false);
853*ae18720dSJohn Baldwin 			break;
854*ae18720dSJohn Baldwin 		case CRYPTO_AES_NIST_GCM_16:
855fc8fc743SJohn Baldwin 		case CRYPTO_CHACHA20_POLY1305:
856c0341432SJohn Baldwin 			if (csp->csp_auth_mlen > 16)
857c0341432SJohn Baldwin 				return (false);
858c0341432SJohn Baldwin 			break;
859c0341432SJohn Baldwin 		}
860c0341432SJohn Baldwin 		break;
861c0341432SJohn Baldwin 	case CSP_MODE_ETA:
862c0341432SJohn Baldwin 		if (!alg_is_cipher(csp->csp_cipher_alg))
863c0341432SJohn Baldwin 			return (false);
864c0341432SJohn Baldwin 		if (csp->csp_cipher_alg != CRYPTO_NULL_CBC) {
865c0341432SJohn Baldwin 			if (csp->csp_cipher_klen == 0)
866c0341432SJohn Baldwin 				return (false);
867c0341432SJohn Baldwin 			if (csp->csp_ivlen == 0)
868c0341432SJohn Baldwin 				return (false);
869c0341432SJohn Baldwin 		}
870c0341432SJohn Baldwin 		if (csp->csp_ivlen >= EALG_MAX_BLOCK_LEN)
871c0341432SJohn Baldwin 			return (false);
872c0341432SJohn Baldwin 		if (!alg_is_digest(csp->csp_auth_alg))
873c0341432SJohn Baldwin 			return (false);
874c0341432SJohn Baldwin 
875c0341432SJohn Baldwin 		/* Key is optional for BLAKE2 digests. */
876c0341432SJohn Baldwin 		if (csp->csp_auth_alg == CRYPTO_BLAKE2B ||
877c0341432SJohn Baldwin 		    csp->csp_auth_alg == CRYPTO_BLAKE2S)
878c0341432SJohn Baldwin 			;
879c0341432SJohn Baldwin 		else if (alg_is_keyed_digest(csp->csp_auth_alg)) {
880c0341432SJohn Baldwin 			if (csp->csp_auth_klen == 0)
881c0341432SJohn Baldwin 				return (false);
882c0341432SJohn Baldwin 		} else {
883c0341432SJohn Baldwin 			if (csp->csp_auth_klen != 0)
884c0341432SJohn Baldwin 				return (false);
885c0341432SJohn Baldwin 		}
886c0341432SJohn Baldwin 		if (csp->csp_auth_mlen != 0) {
887c0341432SJohn Baldwin 			axf = crypto_auth_hash(csp);
888c0341432SJohn Baldwin 			if (axf == NULL || csp->csp_auth_mlen > axf->hashsize)
889c0341432SJohn Baldwin 				return (false);
890c0341432SJohn Baldwin 		}
891c0341432SJohn Baldwin 		break;
892c0341432SJohn Baldwin 	default:
893c0341432SJohn Baldwin 		return (false);
894c0341432SJohn Baldwin 	}
895c0341432SJohn Baldwin 
896c0341432SJohn Baldwin 	return (true);
897c0341432SJohn Baldwin }
898c0341432SJohn Baldwin 
899c0341432SJohn Baldwin /*
900c0341432SJohn Baldwin  * Delete a session after it has been detached from its driver.
901c0341432SJohn Baldwin  */
902c0341432SJohn Baldwin static void
903c0341432SJohn Baldwin crypto_deletesession(crypto_session_t cses)
904c0341432SJohn Baldwin {
905c0341432SJohn Baldwin 	struct cryptocap *cap;
906c0341432SJohn Baldwin 
907c0341432SJohn Baldwin 	cap = cses->cap;
908c0341432SJohn Baldwin 
909d1816248SMark Johnston 	zfree(cses, M_CRYPTO_DATA);
910c0341432SJohn Baldwin 
911c0341432SJohn Baldwin 	CRYPTO_DRIVER_LOCK();
912c0341432SJohn Baldwin 	cap->cc_sessions--;
913c0341432SJohn Baldwin 	if (cap->cc_sessions == 0 && cap->cc_flags & CRYPTOCAP_F_CLEANUP)
914c0341432SJohn Baldwin 		wakeup(cap);
915c0341432SJohn Baldwin 	CRYPTO_DRIVER_UNLOCK();
916c0341432SJohn Baldwin 	cap_rele(cap);
917c0341432SJohn Baldwin }
918c0341432SJohn Baldwin 
919694e0113SPawel Jakub Dawidek /*
9206810ad6fSSam Leffler  * Create a new session.  The crid argument specifies a crypto
9216810ad6fSSam Leffler  * driver to use or constraints on a driver to select (hardware
9226810ad6fSSam Leffler  * only, software only, either).  Whatever driver is selected
9236810ad6fSSam Leffler  * must be capable of the requested crypto algorithms.
924694e0113SPawel Jakub Dawidek  */
9256810ad6fSSam Leffler int
926c0341432SJohn Baldwin crypto_newsession(crypto_session_t *cses,
927c0341432SJohn Baldwin     const struct crypto_session_params *csp, int crid)
9286810ad6fSSam Leffler {
92998d788c8SMark Johnston 	static uint64_t sessid = 0;
9301b0909d5SConrad Meyer 	crypto_session_t res;
9316810ad6fSSam Leffler 	struct cryptocap *cap;
9326810ad6fSSam Leffler 	int err;
9336810ad6fSSam Leffler 
934c0341432SJohn Baldwin 	if (!check_csp(csp))
935c0341432SJohn Baldwin 		return (EINVAL);
936c0341432SJohn Baldwin 
9371b0909d5SConrad Meyer 	res = NULL;
9381b0909d5SConrad Meyer 
9396810ad6fSSam Leffler 	CRYPTO_DRIVER_LOCK();
9406810ad6fSSam Leffler 	if ((crid & (CRYPTOCAP_F_HARDWARE | CRYPTOCAP_F_SOFTWARE)) == 0) {
941694e0113SPawel Jakub Dawidek 		/*
9426810ad6fSSam Leffler 		 * Use specified driver; verify it is capable.
943694e0113SPawel Jakub Dawidek 		 */
9446810ad6fSSam Leffler 		cap = crypto_checkdriver(crid);
945c0341432SJohn Baldwin 		if (cap != NULL && CRYPTODEV_PROBESESSION(cap->cc_dev, csp) > 0)
946694e0113SPawel Jakub Dawidek 			cap = NULL;
9476810ad6fSSam Leffler 	} else {
9486810ad6fSSam Leffler 		/*
9496810ad6fSSam Leffler 		 * No requested driver; select based on crid flags.
9506810ad6fSSam Leffler 		 */
951c0341432SJohn Baldwin 		cap = crypto_select_driver(csp, crid);
952694e0113SPawel Jakub Dawidek 	}
9531b0909d5SConrad Meyer 	if (cap == NULL) {
954c0341432SJohn Baldwin 		CRYPTO_DRIVER_UNLOCK();
95508fca7a5SJohn-Mark Gurney 		CRYPTDEB("no driver");
956c0341432SJohn Baldwin 		return (EOPNOTSUPP);
95708fca7a5SJohn-Mark Gurney 	}
958c0341432SJohn Baldwin 	cap_ref(cap);
9591b0909d5SConrad Meyer 	cap->cc_sessions++;
960091d81d1SSam Leffler 	CRYPTO_DRIVER_UNLOCK();
9611b0909d5SConrad Meyer 
9628adcc757SMark Johnston 	/* Allocate a single block for the generic session and driver softc. */
963d1816248SMark Johnston 	res = malloc(sizeof(*res) + cap->cc_session_size, M_CRYPTO_DATA,
964d1816248SMark Johnston 	    M_WAITOK | M_ZERO);
965c0341432SJohn Baldwin 	res->cap = cap;
966c0341432SJohn Baldwin 	res->csp = *csp;
96798d788c8SMark Johnston 	res->id = atomic_fetchadd_64(&sessid, 1);
9681b0909d5SConrad Meyer 
9691b0909d5SConrad Meyer 	/* Call the driver initialization routine. */
970c0341432SJohn Baldwin 	err = CRYPTODEV_NEWSESSION(cap->cc_dev, res, csp);
9711b0909d5SConrad Meyer 	if (err != 0) {
9721b0909d5SConrad Meyer 		CRYPTDEB("dev newsession failed: %d", err);
973c0341432SJohn Baldwin 		crypto_deletesession(res);
974c0341432SJohn Baldwin 		return (err);
9751b0909d5SConrad Meyer 	}
9761b0909d5SConrad Meyer 
9771b0909d5SConrad Meyer 	*cses = res;
978c0341432SJohn Baldwin 	return (0);
9794acae0acSPawel Jakub Dawidek }
9804acae0acSPawel Jakub Dawidek 
981091d81d1SSam Leffler /*
982091d81d1SSam Leffler  * Delete an existing session (or a reserved session on an unregistered
983091d81d1SSam Leffler  * driver).
984091d81d1SSam Leffler  */
9851b0909d5SConrad Meyer void
9861b0909d5SConrad Meyer crypto_freesession(crypto_session_t cses)
987091d81d1SSam Leffler {
9884acae0acSPawel Jakub Dawidek 	struct cryptocap *cap;
9891b0909d5SConrad Meyer 
9901b0909d5SConrad Meyer 	if (cses == NULL)
9911b0909d5SConrad Meyer 		return;
992091d81d1SSam Leffler 
993c0341432SJohn Baldwin 	cap = cses->cap;
994091d81d1SSam Leffler 
995091d81d1SSam Leffler 	/* Call the driver cleanup routine, if available. */
9961b0909d5SConrad Meyer 	CRYPTODEV_FREESESSION(cap->cc_dev, cses);
9971b0909d5SConrad Meyer 
998c0341432SJohn Baldwin 	crypto_deletesession(cses);
999091d81d1SSam Leffler }
1000091d81d1SSam Leffler 
1001091d81d1SSam Leffler /*
1002c0341432SJohn Baldwin  * Return a new driver id.  Registers a driver with the system so that
1003c0341432SJohn Baldwin  * it can be probed by subsequent sessions.
1004091d81d1SSam Leffler  */
1005091d81d1SSam Leffler int32_t
10061b0909d5SConrad Meyer crypto_get_driverid(device_t dev, size_t sessionsize, int flags)
1007091d81d1SSam Leffler {
1008c0341432SJohn Baldwin 	struct cryptocap *cap, **newdrv;
1009091d81d1SSam Leffler 	int i;
1010091d81d1SSam Leffler 
10116810ad6fSSam Leffler 	if ((flags & (CRYPTOCAP_F_HARDWARE | CRYPTOCAP_F_SOFTWARE)) == 0) {
1012c0341432SJohn Baldwin 		device_printf(dev,
1013c0341432SJohn Baldwin 		    "no flags specified when registering driver\n");
10146810ad6fSSam Leffler 		return -1;
10156810ad6fSSam Leffler 	}
10166810ad6fSSam Leffler 
1017c0341432SJohn Baldwin 	cap = malloc(sizeof(*cap), M_CRYPTO_DATA, M_WAITOK | M_ZERO);
1018c0341432SJohn Baldwin 	cap->cc_dev = dev;
1019c0341432SJohn Baldwin 	cap->cc_session_size = sessionsize;
1020c0341432SJohn Baldwin 	cap->cc_flags = flags;
1021c0341432SJohn Baldwin 	refcount_init(&cap->cc_refs, 1);
1022c0341432SJohn Baldwin 
1023091d81d1SSam Leffler 	CRYPTO_DRIVER_LOCK();
1024c0341432SJohn Baldwin 	for (;;) {
1025c0341432SJohn Baldwin 		for (i = 0; i < crypto_drivers_size; i++) {
1026c0341432SJohn Baldwin 			if (crypto_drivers[i] == NULL)
1027091d81d1SSam Leffler 				break;
10284acae0acSPawel Jakub Dawidek 		}
1029c0341432SJohn Baldwin 
1030c0341432SJohn Baldwin 		if (i < crypto_drivers_size)
1031c0341432SJohn Baldwin 			break;
1032091d81d1SSam Leffler 
1033091d81d1SSam Leffler 		/* Out of entries, allocate some more. */
1034c0341432SJohn Baldwin 
1035c0341432SJohn Baldwin 		if (2 * crypto_drivers_size <= crypto_drivers_size) {
1036091d81d1SSam Leffler 			CRYPTO_DRIVER_UNLOCK();
1037091d81d1SSam Leffler 			printf("crypto: driver count wraparound!\n");
1038c0341432SJohn Baldwin 			cap_rele(cap);
1039c0341432SJohn Baldwin 			return (-1);
1040091d81d1SSam Leffler 		}
1041091d81d1SSam Leffler 		CRYPTO_DRIVER_UNLOCK();
1042091d81d1SSam Leffler 
1043c0341432SJohn Baldwin 		newdrv = malloc(2 * crypto_drivers_size *
1044c0341432SJohn Baldwin 		    sizeof(*crypto_drivers), M_CRYPTO_DATA, M_WAITOK | M_ZERO);
1045091d81d1SSam Leffler 
1046c0341432SJohn Baldwin 		CRYPTO_DRIVER_LOCK();
1047c0341432SJohn Baldwin 		memcpy(newdrv, crypto_drivers,
1048c0341432SJohn Baldwin 		    crypto_drivers_size * sizeof(*crypto_drivers));
1049c0341432SJohn Baldwin 
1050c0341432SJohn Baldwin 		crypto_drivers_size *= 2;
1051091d81d1SSam Leffler 
1052091d81d1SSam Leffler 		free(crypto_drivers, M_CRYPTO_DATA);
1053091d81d1SSam Leffler 		crypto_drivers = newdrv;
1054091d81d1SSam Leffler 	}
1055091d81d1SSam Leffler 
1056c0341432SJohn Baldwin 	cap->cc_hid = i;
1057c0341432SJohn Baldwin 	crypto_drivers[i] = cap;
1058c0341432SJohn Baldwin 	CRYPTO_DRIVER_UNLOCK();
1059c0341432SJohn Baldwin 
1060091d81d1SSam Leffler 	if (bootverbose)
1061d7d2f0d4SConrad Meyer 		printf("crypto: assign %s driver id %u, flags 0x%x\n",
10626810ad6fSSam Leffler 		    device_get_nameunit(dev), i, flags);
1063091d81d1SSam Leffler 
1064091d81d1SSam Leffler 	return i;
1065091d81d1SSam Leffler }
1066091d81d1SSam Leffler 
10676810ad6fSSam Leffler /*
10686810ad6fSSam Leffler  * Lookup a driver by name.  We match against the full device
10696810ad6fSSam Leffler  * name and unit, and against just the name.  The latter gives
10706810ad6fSSam Leffler  * us a simple widlcarding by device name.  On success return the
10716810ad6fSSam Leffler  * driver/hardware identifier; otherwise return -1.
10726810ad6fSSam Leffler  */
10736810ad6fSSam Leffler int
10746810ad6fSSam Leffler crypto_find_driver(const char *match)
1075091d81d1SSam Leffler {
1076c0341432SJohn Baldwin 	struct cryptocap *cap;
10776810ad6fSSam Leffler 	int i, len = strlen(match);
10786810ad6fSSam Leffler 
10796810ad6fSSam Leffler 	CRYPTO_DRIVER_LOCK();
1080c0341432SJohn Baldwin 	for (i = 0; i < crypto_drivers_size; i++) {
1081c0341432SJohn Baldwin 		if (crypto_drivers[i] == NULL)
10826810ad6fSSam Leffler 			continue;
1083c0341432SJohn Baldwin 		cap = crypto_drivers[i];
1084c0341432SJohn Baldwin 		if (strncmp(match, device_get_nameunit(cap->cc_dev), len) == 0 ||
1085c0341432SJohn Baldwin 		    strncmp(match, device_get_name(cap->cc_dev), len) == 0) {
1086c0341432SJohn Baldwin 			CRYPTO_DRIVER_UNLOCK();
1087c0341432SJohn Baldwin 			return (i);
1088c0341432SJohn Baldwin 		}
10896810ad6fSSam Leffler 	}
10906810ad6fSSam Leffler 	CRYPTO_DRIVER_UNLOCK();
1091c0341432SJohn Baldwin 	return (-1);
10926810ad6fSSam Leffler }
10936810ad6fSSam Leffler 
10946810ad6fSSam Leffler /*
10956810ad6fSSam Leffler  * Return the device_t for the specified driver or NULL
10966810ad6fSSam Leffler  * if the driver identifier is invalid.
10976810ad6fSSam Leffler  */
10986810ad6fSSam Leffler device_t
10996810ad6fSSam Leffler crypto_find_device_byhid(int hid)
11006810ad6fSSam Leffler {
1101c0341432SJohn Baldwin 	struct cryptocap *cap;
1102c0341432SJohn Baldwin 	device_t dev;
1103c0341432SJohn Baldwin 
1104c0341432SJohn Baldwin 	dev = NULL;
1105c0341432SJohn Baldwin 	CRYPTO_DRIVER_LOCK();
1106c0341432SJohn Baldwin 	cap = crypto_checkdriver(hid);
1107c0341432SJohn Baldwin 	if (cap != NULL)
1108c0341432SJohn Baldwin 		dev = cap->cc_dev;
1109c0341432SJohn Baldwin 	CRYPTO_DRIVER_UNLOCK();
1110c0341432SJohn Baldwin 	return (dev);
11116810ad6fSSam Leffler }
11126810ad6fSSam Leffler 
11136810ad6fSSam Leffler /*
11146810ad6fSSam Leffler  * Return the device/driver capabilities.
11156810ad6fSSam Leffler  */
11166810ad6fSSam Leffler int
11176810ad6fSSam Leffler crypto_getcaps(int hid)
11186810ad6fSSam Leffler {
1119c0341432SJohn Baldwin 	struct cryptocap *cap;
1120c0341432SJohn Baldwin 	int flags;
1121c0341432SJohn Baldwin 
1122c0341432SJohn Baldwin 	flags = 0;
1123c0341432SJohn Baldwin 	CRYPTO_DRIVER_LOCK();
1124c0341432SJohn Baldwin 	cap = crypto_checkdriver(hid);
1125c0341432SJohn Baldwin 	if (cap != NULL)
1126c0341432SJohn Baldwin 		flags = cap->cc_flags;
1127c0341432SJohn Baldwin 	CRYPTO_DRIVER_UNLOCK();
1128c0341432SJohn Baldwin 	return (flags);
1129091d81d1SSam Leffler }
1130091d81d1SSam Leffler 
1131091d81d1SSam Leffler /*
1132091d81d1SSam Leffler  * Unregister all algorithms associated with a crypto driver.
1133091d81d1SSam Leffler  * If there are pending sessions using it, leave enough information
1134091d81d1SSam Leffler  * around so that subsequent calls using those sessions will
1135091d81d1SSam Leffler  * correctly detect the driver has been unregistered and reroute
1136091d81d1SSam Leffler  * requests.
1137091d81d1SSam Leffler  */
1138091d81d1SSam Leffler int
1139d3d79e96SJohn Baldwin crypto_unregister_all(uint32_t driverid)
1140091d81d1SSam Leffler {
1141091d81d1SSam Leffler 	struct cryptocap *cap;
1142091d81d1SSam Leffler 
1143091d81d1SSam Leffler 	CRYPTO_DRIVER_LOCK();
1144091d81d1SSam Leffler 	cap = crypto_checkdriver(driverid);
1145c0341432SJohn Baldwin 	if (cap == NULL) {
1146091d81d1SSam Leffler 		CRYPTO_DRIVER_UNLOCK();
1147c0341432SJohn Baldwin 		return (EINVAL);
1148c0341432SJohn Baldwin 	}
11496810ad6fSSam Leffler 
1150c0341432SJohn Baldwin 	cap->cc_flags |= CRYPTOCAP_F_CLEANUP;
1151c0341432SJohn Baldwin 	crypto_drivers[driverid] = NULL;
1152c0341432SJohn Baldwin 
1153c0341432SJohn Baldwin 	/*
1154c0341432SJohn Baldwin 	 * XXX: This doesn't do anything to kick sessions that
1155c0341432SJohn Baldwin 	 * have no pending operations.
1156c0341432SJohn Baldwin 	 */
115776681661SJohn Baldwin 	while (cap->cc_sessions != 0)
1158c0341432SJohn Baldwin 		mtx_sleep(cap, &crypto_drivers_mtx, 0, "cryunreg", 0);
1159c0341432SJohn Baldwin 	CRYPTO_DRIVER_UNLOCK();
1160c0341432SJohn Baldwin 	cap_rele(cap);
1161c0341432SJohn Baldwin 
1162c0341432SJohn Baldwin 	return (0);
1163091d81d1SSam Leffler }
1164091d81d1SSam Leffler 
1165091d81d1SSam Leffler /*
1166091d81d1SSam Leffler  * Clear blockage on a driver.  The what parameter indicates whether
1167091d81d1SSam Leffler  * the driver is now ready for cryptop's and/or cryptokop's.
1168091d81d1SSam Leffler  */
1169091d81d1SSam Leffler int
1170d3d79e96SJohn Baldwin crypto_unblock(uint32_t driverid, int what)
1171091d81d1SSam Leffler {
1172091d81d1SSam Leffler 	struct cryptocap *cap;
11733a865c82SPawel Jakub Dawidek 	int err;
1174091d81d1SSam Leffler 
1175091d81d1SSam Leffler 	CRYPTO_Q_LOCK();
1176091d81d1SSam Leffler 	cap = crypto_checkdriver(driverid);
1177091d81d1SSam Leffler 	if (cap != NULL) {
11783a865c82SPawel Jakub Dawidek 		if (what & CRYPTO_SYMQ)
1179091d81d1SSam Leffler 			cap->cc_qblocked = 0;
11803a865c82SPawel Jakub Dawidek 		if (crp_sleep)
11811a91ccccSSam Leffler 			wakeup_one(&crp_q);
1182091d81d1SSam Leffler 		err = 0;
1183091d81d1SSam Leffler 	} else
1184091d81d1SSam Leffler 		err = EINVAL;
1185091d81d1SSam Leffler 	CRYPTO_Q_UNLOCK();
1186091d81d1SSam Leffler 
1187091d81d1SSam Leffler 	return err;
1188091d81d1SSam Leffler }
1189091d81d1SSam Leffler 
11909c0e3d3aSJohn Baldwin size_t
11919c0e3d3aSJohn Baldwin crypto_buffer_len(struct crypto_buffer *cb)
11929c0e3d3aSJohn Baldwin {
11939c0e3d3aSJohn Baldwin 	switch (cb->cb_type) {
11949c0e3d3aSJohn Baldwin 	case CRYPTO_BUF_CONTIG:
11959c0e3d3aSJohn Baldwin 		return (cb->cb_buf_len);
11969c0e3d3aSJohn Baldwin 	case CRYPTO_BUF_MBUF:
11979c0e3d3aSJohn Baldwin 		if (cb->cb_mbuf->m_flags & M_PKTHDR)
11989c0e3d3aSJohn Baldwin 			return (cb->cb_mbuf->m_pkthdr.len);
11999c0e3d3aSJohn Baldwin 		return (m_length(cb->cb_mbuf, NULL));
1200883a0196SJohn Baldwin 	case CRYPTO_BUF_SINGLE_MBUF:
1201883a0196SJohn Baldwin 		return (cb->cb_mbuf->m_len);
1202e6f6d0c9SAlan Somers 	case CRYPTO_BUF_VMPAGE:
1203e6f6d0c9SAlan Somers 		return (cb->cb_vm_page_len);
12049c0e3d3aSJohn Baldwin 	case CRYPTO_BUF_UIO:
12059c0e3d3aSJohn Baldwin 		return (cb->cb_uio->uio_resid);
12069c0e3d3aSJohn Baldwin 	default:
12079c0e3d3aSJohn Baldwin 		return (0);
12089c0e3d3aSJohn Baldwin 	}
12099c0e3d3aSJohn Baldwin }
12109c0e3d3aSJohn Baldwin 
1211c0341432SJohn Baldwin #ifdef INVARIANTS
1212c0341432SJohn Baldwin /* Various sanity checks on crypto requests. */
1213c0341432SJohn Baldwin static void
12149c0e3d3aSJohn Baldwin cb_sanity(struct crypto_buffer *cb, const char *name)
12159c0e3d3aSJohn Baldwin {
12169c0e3d3aSJohn Baldwin 	KASSERT(cb->cb_type > CRYPTO_BUF_NONE && cb->cb_type <= CRYPTO_BUF_LAST,
12179c0e3d3aSJohn Baldwin 	    ("incoming crp with invalid %s buffer type", name));
1218e6f6d0c9SAlan Somers 	switch (cb->cb_type) {
1219e6f6d0c9SAlan Somers 	case CRYPTO_BUF_CONTIG:
12209c0e3d3aSJohn Baldwin 		KASSERT(cb->cb_buf_len >= 0,
12219c0e3d3aSJohn Baldwin 		    ("incoming crp with -ve %s buffer length", name));
1222e6f6d0c9SAlan Somers 		break;
1223e6f6d0c9SAlan Somers 	case CRYPTO_BUF_VMPAGE:
1224e6f6d0c9SAlan Somers 		KASSERT(CRYPTO_HAS_VMPAGE,
1225e6f6d0c9SAlan Somers 		    ("incoming crp uses dmap on supported arch"));
1226e6f6d0c9SAlan Somers 		KASSERT(cb->cb_vm_page_len >= 0,
1227e6f6d0c9SAlan Somers 		    ("incoming crp with -ve %s buffer length", name));
1228e6f6d0c9SAlan Somers 		KASSERT(cb->cb_vm_page_offset >= 0,
1229e6f6d0c9SAlan Somers 		    ("incoming crp with -ve %s buffer offset", name));
1230e6f6d0c9SAlan Somers 		KASSERT(cb->cb_vm_page_offset < PAGE_SIZE,
1231e6f6d0c9SAlan Somers 		    ("incoming crp with %s buffer offset greater than page size"
1232e6f6d0c9SAlan Somers 		     , name));
1233e6f6d0c9SAlan Somers 		break;
1234e6f6d0c9SAlan Somers 	default:
1235e6f6d0c9SAlan Somers 		break;
1236e6f6d0c9SAlan Somers 	}
12379c0e3d3aSJohn Baldwin }
12389c0e3d3aSJohn Baldwin 
12399c0e3d3aSJohn Baldwin static void
1240c0341432SJohn Baldwin crp_sanity(struct cryptop *crp)
1241c0341432SJohn Baldwin {
1242c0341432SJohn Baldwin 	struct crypto_session_params *csp;
12439c0e3d3aSJohn Baldwin 	struct crypto_buffer *out;
12449c0e3d3aSJohn Baldwin 	size_t ilen, len, olen;
1245c0341432SJohn Baldwin 
1246c0341432SJohn Baldwin 	KASSERT(crp->crp_session != NULL, ("incoming crp without a session"));
12479c0e3d3aSJohn Baldwin 	KASSERT(crp->crp_obuf.cb_type >= CRYPTO_BUF_NONE &&
12489c0e3d3aSJohn Baldwin 	    crp->crp_obuf.cb_type <= CRYPTO_BUF_LAST,
12499c0e3d3aSJohn Baldwin 	    ("incoming crp with invalid output buffer type"));
1250c0341432SJohn Baldwin 	KASSERT(crp->crp_etype == 0, ("incoming crp with error"));
1251c0341432SJohn Baldwin 	KASSERT(!(crp->crp_flags & CRYPTO_F_DONE),
1252c0341432SJohn Baldwin 	    ("incoming crp already done"));
1253c0341432SJohn Baldwin 
1254c0341432SJohn Baldwin 	csp = &crp->crp_session->csp;
12559c0e3d3aSJohn Baldwin 	cb_sanity(&crp->crp_buf, "input");
12569c0e3d3aSJohn Baldwin 	ilen = crypto_buffer_len(&crp->crp_buf);
12579c0e3d3aSJohn Baldwin 	olen = ilen;
12589c0e3d3aSJohn Baldwin 	out = NULL;
12599c0e3d3aSJohn Baldwin 	if (csp->csp_flags & CSP_F_SEPARATE_OUTPUT) {
12609c0e3d3aSJohn Baldwin 		if (crp->crp_obuf.cb_type != CRYPTO_BUF_NONE) {
12619c0e3d3aSJohn Baldwin 			cb_sanity(&crp->crp_obuf, "output");
12629c0e3d3aSJohn Baldwin 			out = &crp->crp_obuf;
12639c0e3d3aSJohn Baldwin 			olen = crypto_buffer_len(out);
12649c0e3d3aSJohn Baldwin 		}
12659c0e3d3aSJohn Baldwin 	} else
12669c0e3d3aSJohn Baldwin 		KASSERT(crp->crp_obuf.cb_type == CRYPTO_BUF_NONE,
12679c0e3d3aSJohn Baldwin 		    ("incoming crp with separate output buffer "
12689c0e3d3aSJohn Baldwin 		    "but no session support"));
12699c0e3d3aSJohn Baldwin 
1270c0341432SJohn Baldwin 	switch (csp->csp_mode) {
1271c0341432SJohn Baldwin 	case CSP_MODE_COMPRESS:
1272c0341432SJohn Baldwin 		KASSERT(crp->crp_op == CRYPTO_OP_COMPRESS ||
1273c0341432SJohn Baldwin 		    crp->crp_op == CRYPTO_OP_DECOMPRESS,
1274c0341432SJohn Baldwin 		    ("invalid compression op %x", crp->crp_op));
1275c0341432SJohn Baldwin 		break;
1276c0341432SJohn Baldwin 	case CSP_MODE_CIPHER:
1277c0341432SJohn Baldwin 		KASSERT(crp->crp_op == CRYPTO_OP_ENCRYPT ||
1278c0341432SJohn Baldwin 		    crp->crp_op == CRYPTO_OP_DECRYPT,
1279c0341432SJohn Baldwin 		    ("invalid cipher op %x", crp->crp_op));
1280c0341432SJohn Baldwin 		break;
1281c0341432SJohn Baldwin 	case CSP_MODE_DIGEST:
1282c0341432SJohn Baldwin 		KASSERT(crp->crp_op == CRYPTO_OP_COMPUTE_DIGEST ||
1283c0341432SJohn Baldwin 		    crp->crp_op == CRYPTO_OP_VERIFY_DIGEST,
1284c0341432SJohn Baldwin 		    ("invalid digest op %x", crp->crp_op));
1285c0341432SJohn Baldwin 		break;
1286c0341432SJohn Baldwin 	case CSP_MODE_AEAD:
1287c0341432SJohn Baldwin 		KASSERT(crp->crp_op ==
1288c0341432SJohn Baldwin 		    (CRYPTO_OP_ENCRYPT | CRYPTO_OP_COMPUTE_DIGEST) ||
1289c0341432SJohn Baldwin 		    crp->crp_op ==
1290c0341432SJohn Baldwin 		    (CRYPTO_OP_DECRYPT | CRYPTO_OP_VERIFY_DIGEST),
1291c0341432SJohn Baldwin 		    ("invalid AEAD op %x", crp->crp_op));
1292c0341432SJohn Baldwin 		KASSERT(crp->crp_flags & CRYPTO_F_IV_SEPARATE,
1293fc8fc743SJohn Baldwin 		    ("AEAD without a separate IV"));
1294c0341432SJohn Baldwin 		break;
1295c0341432SJohn Baldwin 	case CSP_MODE_ETA:
1296c0341432SJohn Baldwin 		KASSERT(crp->crp_op ==
1297c0341432SJohn Baldwin 		    (CRYPTO_OP_ENCRYPT | CRYPTO_OP_COMPUTE_DIGEST) ||
1298c0341432SJohn Baldwin 		    crp->crp_op ==
1299c0341432SJohn Baldwin 		    (CRYPTO_OP_DECRYPT | CRYPTO_OP_VERIFY_DIGEST),
1300c0341432SJohn Baldwin 		    ("invalid ETA op %x", crp->crp_op));
1301c0341432SJohn Baldwin 		break;
1302c0341432SJohn Baldwin 	}
1303c0341432SJohn Baldwin 	if (csp->csp_mode == CSP_MODE_AEAD || csp->csp_mode == CSP_MODE_ETA) {
13049b774dc0SJohn Baldwin 		if (crp->crp_aad == NULL) {
1305c0341432SJohn Baldwin 			KASSERT(crp->crp_aad_start == 0 ||
13069c0e3d3aSJohn Baldwin 			    crp->crp_aad_start < ilen,
1307c0341432SJohn Baldwin 			    ("invalid AAD start"));
13089b774dc0SJohn Baldwin 			KASSERT(crp->crp_aad_length != 0 ||
13099b774dc0SJohn Baldwin 			    crp->crp_aad_start == 0,
1310c0341432SJohn Baldwin 			    ("AAD with zero length and non-zero start"));
1311c0341432SJohn Baldwin 			KASSERT(crp->crp_aad_length == 0 ||
13129c0e3d3aSJohn Baldwin 			    crp->crp_aad_start + crp->crp_aad_length <= ilen,
1313c0341432SJohn Baldwin 			    ("AAD outside input length"));
1314c0341432SJohn Baldwin 		} else {
13159b774dc0SJohn Baldwin 			KASSERT(csp->csp_flags & CSP_F_SEPARATE_AAD,
13169b774dc0SJohn Baldwin 			    ("session doesn't support separate AAD buffer"));
13179b774dc0SJohn Baldwin 			KASSERT(crp->crp_aad_start == 0,
13189b774dc0SJohn Baldwin 			    ("separate AAD buffer with non-zero AAD start"));
13199b774dc0SJohn Baldwin 			KASSERT(crp->crp_aad_length != 0,
13209b774dc0SJohn Baldwin 			    ("separate AAD buffer with zero length"));
13219b774dc0SJohn Baldwin 		}
13229b774dc0SJohn Baldwin 	} else {
13239b774dc0SJohn Baldwin 		KASSERT(crp->crp_aad == NULL && crp->crp_aad_start == 0 &&
13249b774dc0SJohn Baldwin 		    crp->crp_aad_length == 0,
1325c0341432SJohn Baldwin 		    ("AAD region in request not supporting AAD"));
1326c0341432SJohn Baldwin 	}
1327c0341432SJohn Baldwin 	if (csp->csp_ivlen == 0) {
132829fe41ddSJohn Baldwin 		KASSERT((crp->crp_flags & CRYPTO_F_IV_SEPARATE) == 0,
132929fe41ddSJohn Baldwin 		    ("IV_SEPARATE set when IV isn't used"));
1330c0341432SJohn Baldwin 		KASSERT(crp->crp_iv_start == 0,
1331c0341432SJohn Baldwin 		    ("crp_iv_start set when IV isn't used"));
1332c0341432SJohn Baldwin 	} else if (crp->crp_flags & CRYPTO_F_IV_SEPARATE) {
1333c0341432SJohn Baldwin 		KASSERT(crp->crp_iv_start == 0,
1334c0341432SJohn Baldwin 		    ("IV_SEPARATE used with non-zero IV start"));
1335c0341432SJohn Baldwin 	} else {
13369c0e3d3aSJohn Baldwin 		KASSERT(crp->crp_iv_start < ilen,
1337c0341432SJohn Baldwin 		    ("invalid IV start"));
13389c0e3d3aSJohn Baldwin 		KASSERT(crp->crp_iv_start + csp->csp_ivlen <= ilen,
13399c0e3d3aSJohn Baldwin 		    ("IV outside buffer length"));
1340c0341432SJohn Baldwin 	}
13419c0e3d3aSJohn Baldwin 	/* XXX: payload_start of 0 should always be < ilen? */
1342c0341432SJohn Baldwin 	KASSERT(crp->crp_payload_start == 0 ||
13439c0e3d3aSJohn Baldwin 	    crp->crp_payload_start < ilen,
1344c0341432SJohn Baldwin 	    ("invalid payload start"));
1345c0341432SJohn Baldwin 	KASSERT(crp->crp_payload_start + crp->crp_payload_length <=
13469c0e3d3aSJohn Baldwin 	    ilen, ("payload outside input buffer"));
13479c0e3d3aSJohn Baldwin 	if (out == NULL) {
13489c0e3d3aSJohn Baldwin 		KASSERT(crp->crp_payload_output_start == 0,
13499c0e3d3aSJohn Baldwin 		    ("payload output start non-zero without output buffer"));
13509c0e3d3aSJohn Baldwin 	} else {
13519c0e3d3aSJohn Baldwin 		KASSERT(crp->crp_payload_output_start < olen,
13529c0e3d3aSJohn Baldwin 		    ("invalid payload output start"));
13539c0e3d3aSJohn Baldwin 		KASSERT(crp->crp_payload_output_start +
13549c0e3d3aSJohn Baldwin 		    crp->crp_payload_length <= olen,
13559c0e3d3aSJohn Baldwin 		    ("payload outside output buffer"));
13569c0e3d3aSJohn Baldwin 	}
1357c0341432SJohn Baldwin 	if (csp->csp_mode == CSP_MODE_DIGEST ||
1358c0341432SJohn Baldwin 	    csp->csp_mode == CSP_MODE_AEAD || csp->csp_mode == CSP_MODE_ETA) {
13599c0e3d3aSJohn Baldwin 		if (crp->crp_op & CRYPTO_OP_VERIFY_DIGEST)
13609c0e3d3aSJohn Baldwin 			len = ilen;
13619c0e3d3aSJohn Baldwin 		else
13629c0e3d3aSJohn Baldwin 			len = olen;
1363c0341432SJohn Baldwin 		KASSERT(crp->crp_digest_start == 0 ||
13649c0e3d3aSJohn Baldwin 		    crp->crp_digest_start < len,
1365c0341432SJohn Baldwin 		    ("invalid digest start"));
1366c0341432SJohn Baldwin 		/* XXX: For the mlen == 0 case this check isn't perfect. */
13679c0e3d3aSJohn Baldwin 		KASSERT(crp->crp_digest_start + csp->csp_auth_mlen <= len,
13689c0e3d3aSJohn Baldwin 		    ("digest outside buffer"));
1369c0341432SJohn Baldwin 	} else {
1370c0341432SJohn Baldwin 		KASSERT(crp->crp_digest_start == 0,
1371c0341432SJohn Baldwin 		    ("non-zero digest start for request without a digest"));
1372c0341432SJohn Baldwin 	}
1373c0341432SJohn Baldwin 	if (csp->csp_cipher_klen != 0)
1374c0341432SJohn Baldwin 		KASSERT(csp->csp_cipher_key != NULL ||
1375c0341432SJohn Baldwin 		    crp->crp_cipher_key != NULL,
1376c0341432SJohn Baldwin 		    ("cipher request without a key"));
1377c0341432SJohn Baldwin 	if (csp->csp_auth_klen != 0)
1378c0341432SJohn Baldwin 		KASSERT(csp->csp_auth_key != NULL || crp->crp_auth_key != NULL,
1379c0341432SJohn Baldwin 		    ("auth request without a key"));
1380c0341432SJohn Baldwin 	KASSERT(crp->crp_callback != NULL, ("incoming crp without callback"));
1381c0341432SJohn Baldwin }
1382c0341432SJohn Baldwin #endif
1383c0341432SJohn Baldwin 
138468f6800cSMark Johnston static int
138568f6800cSMark Johnston crypto_dispatch_one(struct cryptop *crp, int hint)
1386091d81d1SSam Leffler {
13874acae0acSPawel Jakub Dawidek 	struct cryptocap *cap;
13884acae0acSPawel Jakub Dawidek 	int result;
1389091d81d1SSam Leffler 
1390c0341432SJohn Baldwin #ifdef INVARIANTS
1391c0341432SJohn Baldwin 	crp_sanity(crp);
1392c0341432SJohn Baldwin #endif
13937290cb47SMark Johnston 	CRYPTOSTAT_INC(cs_ops);
13947d1853eeSSam Leffler 
139598d788c8SMark Johnston 	crp->crp_retw_id = crp->crp_session->id % crypto_workers_num;
1396de2b2c90SFabien Thomas 
139768f6800cSMark Johnston 	/*
139868f6800cSMark Johnston 	 * Caller marked the request to be processed immediately; dispatch it
139968f6800cSMark Johnston 	 * directly to the driver unless the driver is currently blocked, in
140068f6800cSMark Johnston 	 * which case it is queued for deferred dispatch.
140168f6800cSMark Johnston 	 */
140268f6800cSMark Johnston 	cap = crp->crp_session->cap;
140368f6800cSMark Johnston 	if (!atomic_load_int(&cap->cc_qblocked)) {
140468f6800cSMark Johnston 		result = crypto_invoke(cap, crp, hint);
140568f6800cSMark Johnston 		if (result != ERESTART)
140668f6800cSMark Johnston 			return (result);
140768f6800cSMark Johnston 
140868f6800cSMark Johnston 		/*
140968f6800cSMark Johnston 		 * The driver ran out of resources, put the request on the
141068f6800cSMark Johnston 		 * queue.
141168f6800cSMark Johnston 		 */
141268f6800cSMark Johnston 	}
141368f6800cSMark Johnston 	crypto_batch_enqueue(crp);
141468f6800cSMark Johnston 	return (0);
141568f6800cSMark Johnston }
141668f6800cSMark Johnston 
141768f6800cSMark Johnston int
141868f6800cSMark Johnston crypto_dispatch(struct cryptop *crp)
141968f6800cSMark Johnston {
142068f6800cSMark Johnston 	return (crypto_dispatch_one(crp, 0));
142168f6800cSMark Johnston }
142268f6800cSMark Johnston 
142368f6800cSMark Johnston int
142468f6800cSMark Johnston crypto_dispatch_async(struct cryptop *crp, int flags)
142568f6800cSMark Johnston {
142639bbca6fSFabien Thomas 	struct crypto_ret_worker *ret_worker;
142739bbca6fSFabien Thomas 
142868f6800cSMark Johnston 	if (!CRYPTO_SESS_SYNC(crp->crp_session)) {
142968f6800cSMark Johnston 		/*
143068f6800cSMark Johnston 		 * The driver issues completions asynchonously, don't bother
143168f6800cSMark Johnston 		 * deferring dispatch to a worker thread.
143268f6800cSMark Johnston 		 */
143368f6800cSMark Johnston 		return (crypto_dispatch(crp));
143468f6800cSMark Johnston 	}
143539bbca6fSFabien Thomas 
143668f6800cSMark Johnston #ifdef INVARIANTS
143768f6800cSMark Johnston 	crp_sanity(crp);
143868f6800cSMark Johnston #endif
143968f6800cSMark Johnston 	CRYPTOSTAT_INC(cs_ops);
144068f6800cSMark Johnston 
144168f6800cSMark Johnston 	crp->crp_retw_id = crp->crp_session->id % crypto_workers_num;
144268f6800cSMark Johnston 	if ((flags & CRYPTO_ASYNC_ORDERED) != 0) {
144368f6800cSMark Johnston 		crp->crp_flags |= CRYPTO_F_ASYNC_ORDERED;
144468f6800cSMark Johnston 		ret_worker = CRYPTO_RETW(crp->crp_retw_id);
144539bbca6fSFabien Thomas 		CRYPTO_RETW_LOCK(ret_worker);
144639bbca6fSFabien Thomas 		crp->crp_seq = ret_worker->reorder_ops++;
144739bbca6fSFabien Thomas 		CRYPTO_RETW_UNLOCK(ret_worker);
144839bbca6fSFabien Thomas 	}
144939bbca6fSFabien Thomas 	TASK_INIT(&crp->crp_task, 0, crypto_task_invoke, crp);
145039bbca6fSFabien Thomas 	taskqueue_enqueue(crypto_tq, &crp->crp_task);
145139bbca6fSFabien Thomas 	return (0);
145239bbca6fSFabien Thomas }
14534acae0acSPawel Jakub Dawidek 
145468f6800cSMark Johnston void
145568f6800cSMark Johnston crypto_dispatch_batch(struct cryptopq *crpq, int flags)
145668f6800cSMark Johnston {
145768f6800cSMark Johnston 	struct cryptop *crp;
145868f6800cSMark Johnston 	int hint;
145968f6800cSMark Johnston 
146068f6800cSMark Johnston 	while ((crp = TAILQ_FIRST(crpq)) != NULL) {
146168f6800cSMark Johnston 		hint = TAILQ_NEXT(crp, crp_next) != NULL ? CRYPTO_HINT_MORE : 0;
146268f6800cSMark Johnston 		TAILQ_REMOVE(crpq, crp, crp_next);
146368f6800cSMark Johnston 		if (crypto_dispatch_one(crp, hint) != 0)
146439bbca6fSFabien Thomas 			crypto_batch_enqueue(crp);
146568f6800cSMark Johnston 	}
146639bbca6fSFabien Thomas }
146739bbca6fSFabien Thomas 
146868f6800cSMark Johnston static void
146939bbca6fSFabien Thomas crypto_batch_enqueue(struct cryptop *crp)
147039bbca6fSFabien Thomas {
147139bbca6fSFabien Thomas 
14724acae0acSPawel Jakub Dawidek 	CRYPTO_Q_LOCK();
14734acae0acSPawel Jakub Dawidek 	TAILQ_INSERT_TAIL(&crp_q, crp, crp_next);
14743a865c82SPawel Jakub Dawidek 	if (crp_sleep)
14753a865c82SPawel Jakub Dawidek 		wakeup_one(&crp_q);
14763569ae7fSSam Leffler 	CRYPTO_Q_UNLOCK();
1477091d81d1SSam Leffler }
1478091d81d1SSam Leffler 
147939bbca6fSFabien Thomas static void
148039bbca6fSFabien Thomas crypto_task_invoke(void *ctx, int pending)
148139bbca6fSFabien Thomas {
148239bbca6fSFabien Thomas 	struct cryptocap *cap;
148339bbca6fSFabien Thomas 	struct cryptop *crp;
1484c0341432SJohn Baldwin 	int result;
148539bbca6fSFabien Thomas 
148639bbca6fSFabien Thomas 	crp = (struct cryptop *)ctx;
1487c0341432SJohn Baldwin 	cap = crp->crp_session->cap;
148839bbca6fSFabien Thomas 	result = crypto_invoke(cap, crp, 0);
148939bbca6fSFabien Thomas 	if (result == ERESTART)
149039bbca6fSFabien Thomas 		crypto_batch_enqueue(crp);
149139bbca6fSFabien Thomas }
149239bbca6fSFabien Thomas 
1493091d81d1SSam Leffler /*
1494091d81d1SSam Leffler  * Dispatch a crypto request to the appropriate crypto devices.
1495091d81d1SSam Leffler  */
1496091d81d1SSam Leffler static int
14974acae0acSPawel Jakub Dawidek crypto_invoke(struct cryptocap *cap, struct cryptop *crp, int hint)
1498091d81d1SSam Leffler {
14994acae0acSPawel Jakub Dawidek 
15004acae0acSPawel Jakub Dawidek 	KASSERT(crp != NULL, ("%s: crp == NULL", __func__));
15014acae0acSPawel Jakub Dawidek 	KASSERT(crp->crp_callback != NULL,
15024acae0acSPawel Jakub Dawidek 	    ("%s: crp->crp_callback == NULL", __func__));
1503c0341432SJohn Baldwin 	KASSERT(crp->crp_session != NULL,
1504c0341432SJohn Baldwin 	    ("%s: crp->crp_session == NULL", __func__));
1505091d81d1SSam Leffler 
15064acae0acSPawel Jakub Dawidek 	if (cap->cc_flags & CRYPTOCAP_F_CLEANUP) {
1507c0341432SJohn Baldwin 		struct crypto_session_params csp;
15081b0909d5SConrad Meyer 		crypto_session_t nses;
1509091d81d1SSam Leffler 
1510091d81d1SSam Leffler 		/*
1511091d81d1SSam Leffler 		 * Driver has unregistered; migrate the session and return
1512091d81d1SSam Leffler 		 * an error to the caller so they'll resubmit the op.
15134acae0acSPawel Jakub Dawidek 		 *
15144acae0acSPawel Jakub Dawidek 		 * XXX: What if there are more already queued requests for this
15154acae0acSPawel Jakub Dawidek 		 *      session?
1516c0341432SJohn Baldwin 		 *
1517c0341432SJohn Baldwin 		 * XXX: Real solution is to make sessions refcounted
1518c0341432SJohn Baldwin 		 * and force callers to hold a reference when
1519c0341432SJohn Baldwin 		 * assigning to crp_session.  Could maybe change
1520c0341432SJohn Baldwin 		 * crypto_getreq to accept a session pointer to make
1521c0341432SJohn Baldwin 		 * that work.  Alternatively, we could abandon the
1522c0341432SJohn Baldwin 		 * notion of rewriting crp_session in requests forcing
1523c0341432SJohn Baldwin 		 * the caller to deal with allocating a new session.
1524c0341432SJohn Baldwin 		 * Perhaps provide a method to allow a crp's session to
1525c0341432SJohn Baldwin 		 * be swapped that callers could use.
1526091d81d1SSam Leffler 		 */
1527c0341432SJohn Baldwin 		csp = crp->crp_session->csp;
15281b0909d5SConrad Meyer 		crypto_freesession(crp->crp_session);
15294acae0acSPawel Jakub Dawidek 
1530c0341432SJohn Baldwin 		/*
1531c0341432SJohn Baldwin 		 * XXX: Key pointers may no longer be valid.  If we
1532c0341432SJohn Baldwin 		 * really want to support this we need to define the
1533c0341432SJohn Baldwin 		 * KPI such that 'csp' is required to be valid for the
1534c0341432SJohn Baldwin 		 * duration of a session by the caller perhaps.
1535c0341432SJohn Baldwin 		 *
1536c0341432SJohn Baldwin 		 * XXX: If the keys have been changed this will reuse
1537c0341432SJohn Baldwin 		 * the old keys.  This probably suggests making
1538c0341432SJohn Baldwin 		 * rekeying more explicit and updating the key
1539c0341432SJohn Baldwin 		 * pointers in 'csp' when the keys change.
1540c0341432SJohn Baldwin 		 */
1541c0341432SJohn Baldwin 		if (crypto_newsession(&nses, &csp,
15426810ad6fSSam Leffler 		    CRYPTOCAP_F_HARDWARE | CRYPTOCAP_F_SOFTWARE) == 0)
15431b0909d5SConrad Meyer 			crp->crp_session = nses;
1544091d81d1SSam Leffler 
1545091d81d1SSam Leffler 		crp->crp_etype = EAGAIN;
15461a91ccccSSam Leffler 		crypto_done(crp);
1547091d81d1SSam Leffler 		return 0;
1548091d81d1SSam Leffler 	} else {
1549091d81d1SSam Leffler 		/*
1550091d81d1SSam Leffler 		 * Invoke the driver to process the request.
1551091d81d1SSam Leffler 		 */
15526810ad6fSSam Leffler 		return CRYPTODEV_PROCESS(cap->cc_dev, crp, hint);
1553091d81d1SSam Leffler 	}
1554091d81d1SSam Leffler }
1555091d81d1SSam Leffler 
1556091d81d1SSam Leffler void
1557946b8f6fSJohn Baldwin crypto_destroyreq(struct cryptop *crp)
1558091d81d1SSam Leffler {
15590d5c337bSPawel Jakub Dawidek #ifdef DIAGNOSTIC
15600d5c337bSPawel Jakub Dawidek 	{
15610d5c337bSPawel Jakub Dawidek 		struct cryptop *crp2;
156239bbca6fSFabien Thomas 		struct crypto_ret_worker *ret_worker;
15630d5c337bSPawel Jakub Dawidek 
15640d5c337bSPawel Jakub Dawidek 		CRYPTO_Q_LOCK();
15650d5c337bSPawel Jakub Dawidek 		TAILQ_FOREACH(crp2, &crp_q, crp_next) {
15660d5c337bSPawel Jakub Dawidek 			KASSERT(crp2 != crp,
15670d5c337bSPawel Jakub Dawidek 			    ("Freeing cryptop from the crypto queue (%p).",
15680d5c337bSPawel Jakub Dawidek 			    crp));
15690d5c337bSPawel Jakub Dawidek 		}
15700d5c337bSPawel Jakub Dawidek 		CRYPTO_Q_UNLOCK();
157139bbca6fSFabien Thomas 
157239bbca6fSFabien Thomas 		FOREACH_CRYPTO_RETW(ret_worker) {
157339bbca6fSFabien Thomas 			CRYPTO_RETW_LOCK(ret_worker);
157439bbca6fSFabien Thomas 			TAILQ_FOREACH(crp2, &ret_worker->crp_ret_q, crp_next) {
15750d5c337bSPawel Jakub Dawidek 				KASSERT(crp2 != crp,
15760d5c337bSPawel Jakub Dawidek 				    ("Freeing cryptop from the return queue (%p).",
15770d5c337bSPawel Jakub Dawidek 				    crp));
15780d5c337bSPawel Jakub Dawidek 			}
157939bbca6fSFabien Thomas 			CRYPTO_RETW_UNLOCK(ret_worker);
158039bbca6fSFabien Thomas 		}
15810d5c337bSPawel Jakub Dawidek 	}
15820d5c337bSPawel Jakub Dawidek #endif
1583946b8f6fSJohn Baldwin }
15840d5c337bSPawel Jakub Dawidek 
1585946b8f6fSJohn Baldwin void
1586946b8f6fSJohn Baldwin crypto_freereq(struct cryptop *crp)
1587946b8f6fSJohn Baldwin {
1588946b8f6fSJohn Baldwin 	if (crp == NULL)
1589946b8f6fSJohn Baldwin 		return;
1590946b8f6fSJohn Baldwin 
1591946b8f6fSJohn Baldwin 	crypto_destroyreq(crp);
1592091d81d1SSam Leffler 	uma_zfree(cryptop_zone, crp);
1593091d81d1SSam Leffler }
1594091d81d1SSam Leffler 
1595946b8f6fSJohn Baldwin static void
1596946b8f6fSJohn Baldwin _crypto_initreq(struct cryptop *crp, crypto_session_t cses)
1597946b8f6fSJohn Baldwin {
1598946b8f6fSJohn Baldwin 	crp->crp_session = cses;
1599946b8f6fSJohn Baldwin }
1600946b8f6fSJohn Baldwin 
1601946b8f6fSJohn Baldwin void
1602946b8f6fSJohn Baldwin crypto_initreq(struct cryptop *crp, crypto_session_t cses)
1603946b8f6fSJohn Baldwin {
1604946b8f6fSJohn Baldwin 	memset(crp, 0, sizeof(*crp));
1605946b8f6fSJohn Baldwin 	_crypto_initreq(crp, cses);
1606946b8f6fSJohn Baldwin }
1607946b8f6fSJohn Baldwin 
1608091d81d1SSam Leffler struct cryptop *
1609c0341432SJohn Baldwin crypto_getreq(crypto_session_t cses, int how)
1610091d81d1SSam Leffler {
1611091d81d1SSam Leffler 	struct cryptop *crp;
1612091d81d1SSam Leffler 
1613c0341432SJohn Baldwin 	MPASS(how == M_WAITOK || how == M_NOWAIT);
1614c0341432SJohn Baldwin 	crp = uma_zalloc(cryptop_zone, how | M_ZERO);
1615946b8f6fSJohn Baldwin 	if (crp != NULL)
1616946b8f6fSJohn Baldwin 		_crypto_initreq(crp, cses);
1617c0341432SJohn Baldwin 	return (crp);
1618091d81d1SSam Leffler }
1619091d81d1SSam Leffler 
1620091d81d1SSam Leffler /*
1621091d81d1SSam Leffler  * Invoke the callback on behalf of the driver.
1622091d81d1SSam Leffler  */
1623091d81d1SSam Leffler void
1624091d81d1SSam Leffler crypto_done(struct cryptop *crp)
1625091d81d1SSam Leffler {
16263569ae7fSSam Leffler 	KASSERT((crp->crp_flags & CRYPTO_F_DONE) == 0,
16273569ae7fSSam Leffler 		("crypto_done: op already done, flags 0x%x", crp->crp_flags));
16283569ae7fSSam Leffler 	crp->crp_flags |= CRYPTO_F_DONE;
16297d1853eeSSam Leffler 	if (crp->crp_etype != 0)
16307290cb47SMark Johnston 		CRYPTOSTAT_INC(cs_errs);
1631a5c053f5SMark Johnston 
1632d8409aafSSam Leffler 	/*
1633d8409aafSSam Leffler 	 * CBIMM means unconditionally do the callback immediately;
1634d8409aafSSam Leffler 	 * CBIFSYNC means do the callback immediately only if the
1635d8409aafSSam Leffler 	 * operation was done synchronously.  Both are used to avoid
1636d8409aafSSam Leffler 	 * doing extraneous context switches; the latter is mostly
1637d8409aafSSam Leffler 	 * used with the software crypto driver.
1638d8409aafSSam Leffler 	 */
163968f6800cSMark Johnston 	if ((crp->crp_flags & CRYPTO_F_ASYNC_ORDERED) == 0 &&
164068f6800cSMark Johnston 	    ((crp->crp_flags & CRYPTO_F_CBIMM) != 0 ||
164168f6800cSMark Johnston 	    ((crp->crp_flags & CRYPTO_F_CBIFSYNC) != 0 &&
164268f6800cSMark Johnston 	    CRYPTO_SESS_SYNC(crp->crp_session)))) {
1643eb73a605SSam Leffler 		/*
1644eb73a605SSam Leffler 		 * Do the callback directly.  This is ok when the
1645eb73a605SSam Leffler 		 * callback routine does very little (e.g. the
1646eb73a605SSam Leffler 		 * /dev/crypto callback method just does a wakeup).
1647eb73a605SSam Leffler 		 */
1648eb73a605SSam Leffler 		crp->crp_callback(crp);
1649eb73a605SSam Leffler 	} else {
165039bbca6fSFabien Thomas 		struct crypto_ret_worker *ret_worker;
165139bbca6fSFabien Thomas 		bool wake;
165239bbca6fSFabien Thomas 
165339bbca6fSFabien Thomas 		ret_worker = CRYPTO_RETW(crp->crp_retw_id);
165439bbca6fSFabien Thomas 
1655eb73a605SSam Leffler 		/*
1656eb73a605SSam Leffler 		 * Normal case; queue the callback for the thread.
1657eb73a605SSam Leffler 		 */
165839bbca6fSFabien Thomas 		CRYPTO_RETW_LOCK(ret_worker);
165968f6800cSMark Johnston 		if ((crp->crp_flags & CRYPTO_F_ASYNC_ORDERED) != 0) {
166039bbca6fSFabien Thomas 			struct cryptop *tmp;
166139bbca6fSFabien Thomas 
166268f6800cSMark Johnston 			TAILQ_FOREACH_REVERSE(tmp,
166368f6800cSMark Johnston 			    &ret_worker->crp_ordered_ret_q, cryptop_q,
166468f6800cSMark Johnston 			    crp_next) {
166539bbca6fSFabien Thomas 				if (CRYPTO_SEQ_GT(crp->crp_seq, tmp->crp_seq)) {
166668f6800cSMark Johnston 					TAILQ_INSERT_AFTER(
166768f6800cSMark Johnston 					    &ret_worker->crp_ordered_ret_q, tmp,
166868f6800cSMark Johnston 					    crp, crp_next);
166939bbca6fSFabien Thomas 					break;
167039bbca6fSFabien Thomas 				}
167139bbca6fSFabien Thomas 			}
167239bbca6fSFabien Thomas 			if (tmp == NULL) {
167368f6800cSMark Johnston 				TAILQ_INSERT_HEAD(
167468f6800cSMark Johnston 				    &ret_worker->crp_ordered_ret_q, crp,
167568f6800cSMark Johnston 				    crp_next);
167639bbca6fSFabien Thomas 			}
167739bbca6fSFabien Thomas 
167868f6800cSMark Johnston 			wake = crp->crp_seq == ret_worker->reorder_cur_seq;
167968f6800cSMark Johnston 		} else {
168068f6800cSMark Johnston 			wake = TAILQ_EMPTY(&ret_worker->crp_ret_q);
168168f6800cSMark Johnston 			TAILQ_INSERT_TAIL(&ret_worker->crp_ret_q, crp,
168268f6800cSMark Johnston 			    crp_next);
168339bbca6fSFabien Thomas 		}
168439bbca6fSFabien Thomas 
168539bbca6fSFabien Thomas 		if (wake)
168639bbca6fSFabien Thomas 			wakeup_one(&ret_worker->crp_ret_q);	/* shared wait channel */
168739bbca6fSFabien Thomas 		CRYPTO_RETW_UNLOCK(ret_worker);
1688091d81d1SSam Leffler 	}
1689eb73a605SSam Leffler }
1690091d81d1SSam Leffler 
1691091d81d1SSam Leffler /*
169251e45326SSam Leffler  * Terminate a thread at module unload.  The process that
169351e45326SSam Leffler  * initiated this is waiting for us to signal that we're gone;
169451e45326SSam Leffler  * wake it up and exit.  We use the driver table lock to insure
169551e45326SSam Leffler  * we don't do the wakeup before they're waiting.  There is no
169651e45326SSam Leffler  * race here because the waiter sleeps on the proc lock for the
169751e45326SSam Leffler  * thread so it gets notified at the right time because of an
169851e45326SSam Leffler  * extra wakeup that's done in exit1().
169951e45326SSam Leffler  */
1700091d81d1SSam Leffler static void
170151e45326SSam Leffler crypto_finis(void *chan)
1702091d81d1SSam Leffler {
170351e45326SSam Leffler 	CRYPTO_DRIVER_LOCK();
170451e45326SSam Leffler 	wakeup_one(chan);
170551e45326SSam Leffler 	CRYPTO_DRIVER_UNLOCK();
17063745c395SJulian Elischer 	kproc_exit(0);
1707091d81d1SSam Leffler }
1708091d81d1SSam Leffler 
1709091d81d1SSam Leffler /*
17101a91ccccSSam Leffler  * Crypto thread, dispatches crypto requests.
1711091d81d1SSam Leffler  */
1712091d81d1SSam Leffler static void
1713091d81d1SSam Leffler crypto_proc(void)
1714091d81d1SSam Leffler {
17151a91ccccSSam Leffler 	struct cryptop *crp, *submit;
1716091d81d1SSam Leffler 	struct cryptocap *cap;
1717091d81d1SSam Leffler 	int result, hint;
1718091d81d1SSam Leffler 
17196ed982a2SAndrew Turner #if defined(__i386__) || defined(__amd64__) || defined(__aarch64__)
172004c49e68SKonstantin Belousov 	fpu_kern_thread(FPU_KERN_NORMAL);
172104c49e68SKonstantin Belousov #endif
172204c49e68SKonstantin Belousov 
17231a91ccccSSam Leffler 	CRYPTO_Q_LOCK();
1724091d81d1SSam Leffler 	for (;;) {
1725091d81d1SSam Leffler 		/*
1726091d81d1SSam Leffler 		 * Find the first element in the queue that can be
1727091d81d1SSam Leffler 		 * processed and look-ahead to see if multiple ops
1728091d81d1SSam Leffler 		 * are ready for the same driver.
1729091d81d1SSam Leffler 		 */
1730091d81d1SSam Leffler 		submit = NULL;
1731091d81d1SSam Leffler 		hint = 0;
1732091d81d1SSam Leffler 		TAILQ_FOREACH(crp, &crp_q, crp_next) {
1733c0341432SJohn Baldwin 			cap = crp->crp_session->cap;
17344acae0acSPawel Jakub Dawidek 			/*
17354acae0acSPawel Jakub Dawidek 			 * Driver cannot disappeared when there is an active
17364acae0acSPawel Jakub Dawidek 			 * session.
17374acae0acSPawel Jakub Dawidek 			 */
1738c3c82036SPawel Jakub Dawidek 			KASSERT(cap != NULL, ("%s:%u Driver disappeared.",
1739c3c82036SPawel Jakub Dawidek 			    __func__, __LINE__));
1740c0341432SJohn Baldwin 			if (cap->cc_flags & CRYPTOCAP_F_CLEANUP) {
1741091d81d1SSam Leffler 				/* Op needs to be migrated, process it. */
1742091d81d1SSam Leffler 				if (submit == NULL)
1743091d81d1SSam Leffler 					submit = crp;
1744091d81d1SSam Leffler 				break;
1745091d81d1SSam Leffler 			}
1746091d81d1SSam Leffler 			if (!cap->cc_qblocked) {
1747091d81d1SSam Leffler 				if (submit != NULL) {
1748091d81d1SSam Leffler 					/*
1749091d81d1SSam Leffler 					 * We stop on finding another op,
1750091d81d1SSam Leffler 					 * regardless whether its for the same
1751091d81d1SSam Leffler 					 * driver or not.  We could keep
1752091d81d1SSam Leffler 					 * searching the queue but it might be
1753091d81d1SSam Leffler 					 * better to just use a per-driver
1754091d81d1SSam Leffler 					 * queue instead.
1755091d81d1SSam Leffler 					 */
1756c0341432SJohn Baldwin 					if (submit->crp_session->cap == cap)
1757091d81d1SSam Leffler 						hint = CRYPTO_HINT_MORE;
1758091d81d1SSam Leffler 				} else {
1759091d81d1SSam Leffler 					submit = crp;
1760091d81d1SSam Leffler 				}
176168f6800cSMark Johnston 				break;
1762091d81d1SSam Leffler 			}
1763091d81d1SSam Leffler 		}
1764091d81d1SSam Leffler 		if (submit != NULL) {
1765091d81d1SSam Leffler 			TAILQ_REMOVE(&crp_q, submit, crp_next);
1766c0341432SJohn Baldwin 			cap = submit->crp_session->cap;
1767c3c82036SPawel Jakub Dawidek 			KASSERT(cap != NULL, ("%s:%u Driver disappeared.",
1768c3c82036SPawel Jakub Dawidek 			    __func__, __LINE__));
1769c0341432SJohn Baldwin 			CRYPTO_Q_UNLOCK();
17704acae0acSPawel Jakub Dawidek 			result = crypto_invoke(cap, submit, hint);
1771c0341432SJohn Baldwin 			CRYPTO_Q_LOCK();
1772091d81d1SSam Leffler 			if (result == ERESTART) {
1773091d81d1SSam Leffler 				/*
1774091d81d1SSam Leffler 				 * The driver ran out of resources, mark the
1775091d81d1SSam Leffler 				 * driver ``blocked'' for cryptop's and put
1776091d81d1SSam Leffler 				 * the request back in the queue.  It would
1777091d81d1SSam Leffler 				 * best to put the request back where we got
1778091d81d1SSam Leffler 				 * it but that's hard so for now we put it
1779091d81d1SSam Leffler 				 * at the front.  This should be ok; putting
1780091d81d1SSam Leffler 				 * it at the end does not work.
1781091d81d1SSam Leffler 				 */
1782c0341432SJohn Baldwin 				cap->cc_qblocked = 1;
1783091d81d1SSam Leffler 				TAILQ_INSERT_HEAD(&crp_q, submit, crp_next);
17847290cb47SMark Johnston 				CRYPTOSTAT_INC(cs_blocks);
1785091d81d1SSam Leffler 			}
178676681661SJohn Baldwin 		} else {
1787091d81d1SSam Leffler 			/*
1788091d81d1SSam Leffler 			 * Nothing more to be processed.  Sleep until we're
1789091d81d1SSam Leffler 			 * woken because there are more ops to process.
1790091d81d1SSam Leffler 			 * This happens either by submission or by a driver
1791091d81d1SSam Leffler 			 * becoming unblocked and notifying us through
1792091d81d1SSam Leffler 			 * crypto_unblock.  Note that when we wakeup we
1793091d81d1SSam Leffler 			 * start processing each queue again from the
1794091d81d1SSam Leffler 			 * front. It's not clear that it's important to
1795091d81d1SSam Leffler 			 * preserve this ordering since ops may finish
1796091d81d1SSam Leffler 			 * out of order if dispatched to different devices
1797091d81d1SSam Leffler 			 * and some become blocked while others do not.
1798091d81d1SSam Leffler 			 */
17993a865c82SPawel Jakub Dawidek 			crp_sleep = 1;
18001a91ccccSSam Leffler 			msleep(&crp_q, &crypto_q_mtx, PWAIT, "crypto_wait", 0);
18013a865c82SPawel Jakub Dawidek 			crp_sleep = 0;
180251e45326SSam Leffler 			if (cryptoproc == NULL)
180351e45326SSam Leffler 				break;
18047290cb47SMark Johnston 			CRYPTOSTAT_INC(cs_intrs);
1805091d81d1SSam Leffler 		}
1806091d81d1SSam Leffler 	}
180751e45326SSam Leffler 	CRYPTO_Q_UNLOCK();
18081a91ccccSSam Leffler 
180951e45326SSam Leffler 	crypto_finis(&crp_q);
18101a91ccccSSam Leffler }
18111a91ccccSSam Leffler 
18121a91ccccSSam Leffler /*
18131a91ccccSSam Leffler  * Crypto returns thread, does callbacks for processed crypto requests.
18141a91ccccSSam Leffler  * Callbacks are done here, rather than in the crypto drivers, because
18151a91ccccSSam Leffler  * callbacks typically are expensive and would slow interrupt handling.
18161a91ccccSSam Leffler  */
18171a91ccccSSam Leffler static void
181839bbca6fSFabien Thomas crypto_ret_proc(struct crypto_ret_worker *ret_worker)
18191a91ccccSSam Leffler {
18201a91ccccSSam Leffler 	struct cryptop *crpt;
18211a91ccccSSam Leffler 
182239bbca6fSFabien Thomas 	CRYPTO_RETW_LOCK(ret_worker);
18231a91ccccSSam Leffler 	for (;;) {
18241a91ccccSSam Leffler 		/* Harvest return q's for completed ops */
182539bbca6fSFabien Thomas 		crpt = TAILQ_FIRST(&ret_worker->crp_ordered_ret_q);
182639bbca6fSFabien Thomas 		if (crpt != NULL) {
182739bbca6fSFabien Thomas 			if (crpt->crp_seq == ret_worker->reorder_cur_seq) {
182839bbca6fSFabien Thomas 				TAILQ_REMOVE(&ret_worker->crp_ordered_ret_q, crpt, crp_next);
182939bbca6fSFabien Thomas 				ret_worker->reorder_cur_seq++;
183039bbca6fSFabien Thomas 			} else {
183139bbca6fSFabien Thomas 				crpt = NULL;
183239bbca6fSFabien Thomas 			}
183339bbca6fSFabien Thomas 		}
18341a91ccccSSam Leffler 
183539bbca6fSFabien Thomas 		if (crpt == NULL) {
183639bbca6fSFabien Thomas 			crpt = TAILQ_FIRST(&ret_worker->crp_ret_q);
183739bbca6fSFabien Thomas 			if (crpt != NULL)
183839bbca6fSFabien Thomas 				TAILQ_REMOVE(&ret_worker->crp_ret_q, crpt, crp_next);
183939bbca6fSFabien Thomas 		}
184039bbca6fSFabien Thomas 
184176681661SJohn Baldwin 		if (crpt != NULL) {
184239bbca6fSFabien Thomas 			CRYPTO_RETW_UNLOCK(ret_worker);
18431a91ccccSSam Leffler 			/*
18441a91ccccSSam Leffler 			 * Run callbacks unlocked.
18451a91ccccSSam Leffler 			 */
1846a5c053f5SMark Johnston 			if (crpt != NULL)
18471a91ccccSSam Leffler 				crpt->crp_callback(crpt);
184839bbca6fSFabien Thomas 			CRYPTO_RETW_LOCK(ret_worker);
18491a91ccccSSam Leffler 		} else {
18501a91ccccSSam Leffler 			/*
18511a91ccccSSam Leffler 			 * Nothing more to be processed.  Sleep until we're
18521a91ccccSSam Leffler 			 * woken because there are more returns to process.
18531a91ccccSSam Leffler 			 */
185439bbca6fSFabien Thomas 			msleep(&ret_worker->crp_ret_q, &ret_worker->crypto_ret_mtx, PWAIT,
18551a91ccccSSam Leffler 				"crypto_ret_wait", 0);
185639bbca6fSFabien Thomas 			if (ret_worker->cryptoretproc == NULL)
185751e45326SSam Leffler 				break;
18587290cb47SMark Johnston 			CRYPTOSTAT_INC(cs_rets);
18591a91ccccSSam Leffler 		}
18601a91ccccSSam Leffler 	}
186139bbca6fSFabien Thomas 	CRYPTO_RETW_UNLOCK(ret_worker);
186251e45326SSam Leffler 
186339bbca6fSFabien Thomas 	crypto_finis(&ret_worker->crp_ret_q);
18641a91ccccSSam Leffler }
18656810ad6fSSam Leffler 
18666810ad6fSSam Leffler #ifdef DDB
18676810ad6fSSam Leffler static void
18686810ad6fSSam Leffler db_show_drivers(void)
18696810ad6fSSam Leffler {
18706810ad6fSSam Leffler 	int hid;
18716810ad6fSSam Leffler 
187276681661SJohn Baldwin 	db_printf("%12s %4s %8s %2s\n"
18736810ad6fSSam Leffler 		, "Device"
18746810ad6fSSam Leffler 		, "Ses"
18756810ad6fSSam Leffler 		, "Flags"
18766810ad6fSSam Leffler 		, "QB"
18776810ad6fSSam Leffler 	);
1878c0341432SJohn Baldwin 	for (hid = 0; hid < crypto_drivers_size; hid++) {
1879c0341432SJohn Baldwin 		const struct cryptocap *cap = crypto_drivers[hid];
1880c0341432SJohn Baldwin 		if (cap == NULL)
18816810ad6fSSam Leffler 			continue;
188276681661SJohn Baldwin 		db_printf("%-12s %4u %08x %2u\n"
18836810ad6fSSam Leffler 		    , device_get_nameunit(cap->cc_dev)
18846810ad6fSSam Leffler 		    , cap->cc_sessions
18856810ad6fSSam Leffler 		    , cap->cc_flags
18866810ad6fSSam Leffler 		    , cap->cc_qblocked
18876810ad6fSSam Leffler 		);
18886810ad6fSSam Leffler 	}
18896810ad6fSSam Leffler }
18906810ad6fSSam Leffler 
18916810ad6fSSam Leffler DB_SHOW_COMMAND(crypto, db_show_crypto)
18926810ad6fSSam Leffler {
18936810ad6fSSam Leffler 	struct cryptop *crp;
189439bbca6fSFabien Thomas 	struct crypto_ret_worker *ret_worker;
18956810ad6fSSam Leffler 
18966810ad6fSSam Leffler 	db_show_drivers();
18976810ad6fSSam Leffler 	db_printf("\n");
18986810ad6fSSam Leffler 
18996810ad6fSSam Leffler 	db_printf("%4s %8s %4s %4s %4s %4s %8s %8s\n",
19006810ad6fSSam Leffler 	    "HID", "Caps", "Ilen", "Olen", "Etype", "Flags",
1901c0341432SJohn Baldwin 	    "Device", "Callback");
19026810ad6fSSam Leffler 	TAILQ_FOREACH(crp, &crp_q, crp_next) {
19039c0e3d3aSJohn Baldwin 		db_printf("%4u %08x %4u %4u %04x %8p %8p\n"
1904c0341432SJohn Baldwin 		    , crp->crp_session->cap->cc_hid
19051b0909d5SConrad Meyer 		    , (int) crypto_ses2caps(crp->crp_session)
19069c0e3d3aSJohn Baldwin 		    , crp->crp_olen
19076810ad6fSSam Leffler 		    , crp->crp_etype
19086810ad6fSSam Leffler 		    , crp->crp_flags
1909c0341432SJohn Baldwin 		    , device_get_nameunit(crp->crp_session->cap->cc_dev)
19106810ad6fSSam Leffler 		    , crp->crp_callback
19116810ad6fSSam Leffler 		);
19126810ad6fSSam Leffler 	}
191339bbca6fSFabien Thomas 	FOREACH_CRYPTO_RETW(ret_worker) {
191439bbca6fSFabien Thomas 		db_printf("\n%8s %4s %4s %4s %8s\n",
191539bbca6fSFabien Thomas 		    "ret_worker", "HID", "Etype", "Flags", "Callback");
191639bbca6fSFabien Thomas 		if (!TAILQ_EMPTY(&ret_worker->crp_ret_q)) {
191739bbca6fSFabien Thomas 			TAILQ_FOREACH(crp, &ret_worker->crp_ret_q, crp_next) {
191839bbca6fSFabien Thomas 				db_printf("%8td %4u %4u %04x %8p\n"
191939bbca6fSFabien Thomas 				    , CRYPTO_RETW_ID(ret_worker)
1920c0341432SJohn Baldwin 				    , crp->crp_session->cap->cc_hid
19216810ad6fSSam Leffler 				    , crp->crp_etype
19226810ad6fSSam Leffler 				    , crp->crp_flags
19236810ad6fSSam Leffler 				    , crp->crp_callback
19246810ad6fSSam Leffler 				);
19256810ad6fSSam Leffler 			}
19266810ad6fSSam Leffler 		}
19276810ad6fSSam Leffler 	}
192839bbca6fSFabien Thomas }
19296810ad6fSSam Leffler #endif
19306810ad6fSSam Leffler 
19316810ad6fSSam Leffler int crypto_modevent(module_t mod, int type, void *unused);
19326810ad6fSSam Leffler 
19336810ad6fSSam Leffler /*
19346810ad6fSSam Leffler  * Initialization code, both for static and dynamic loading.
19356810ad6fSSam Leffler  * Note this is not invoked with the usual MODULE_DECLARE
19366810ad6fSSam Leffler  * mechanism but instead is listed as a dependency by the
19376810ad6fSSam Leffler  * cryptosoft driver.  This guarantees proper ordering of
19386810ad6fSSam Leffler  * calls on module load/unload.
19396810ad6fSSam Leffler  */
19406810ad6fSSam Leffler int
19416810ad6fSSam Leffler crypto_modevent(module_t mod, int type, void *unused)
19426810ad6fSSam Leffler {
19436810ad6fSSam Leffler 	int error = EINVAL;
19446810ad6fSSam Leffler 
19456810ad6fSSam Leffler 	switch (type) {
19466810ad6fSSam Leffler 	case MOD_LOAD:
19476810ad6fSSam Leffler 		error = crypto_init();
19486810ad6fSSam Leffler 		if (error == 0 && bootverbose)
19496810ad6fSSam Leffler 			printf("crypto: <crypto core>\n");
19506810ad6fSSam Leffler 		break;
19516810ad6fSSam Leffler 	case MOD_UNLOAD:
19526810ad6fSSam Leffler 		/*XXX disallow if active sessions */
19536810ad6fSSam Leffler 		error = 0;
19546810ad6fSSam Leffler 		crypto_destroy();
19556810ad6fSSam Leffler 		return 0;
19566810ad6fSSam Leffler 	}
19576810ad6fSSam Leffler 	return error;
19586810ad6fSSam Leffler }
19596810ad6fSSam Leffler MODULE_VERSION(crypto, 1);
19606810ad6fSSam Leffler MODULE_DEPEND(crypto, zlib, 1, 1, 1);
1961