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if_wg.c revision 1.77.2.1
      1  1.77.2.1   thorpej /*	$NetBSD: if_wg.c,v 1.77.2.1 2023/11/14 02:29:11 thorpej Exp $	*/
      2       1.1  riastrad 
      3       1.1  riastrad /*
      4       1.1  riastrad  * Copyright (C) Ryota Ozaki <ozaki.ryota (at) gmail.com>
      5       1.1  riastrad  * All rights reserved.
      6       1.1  riastrad  *
      7       1.1  riastrad  * Redistribution and use in source and binary forms, with or without
      8       1.1  riastrad  * modification, are permitted provided that the following conditions
      9       1.1  riastrad  * are met:
     10       1.1  riastrad  * 1. Redistributions of source code must retain the above copyright
     11       1.1  riastrad  *    notice, this list of conditions and the following disclaimer.
     12       1.1  riastrad  * 2. Redistributions in binary form must reproduce the above copyright
     13       1.1  riastrad  *    notice, this list of conditions and the following disclaimer in the
     14       1.1  riastrad  *    documentation and/or other materials provided with the distribution.
     15       1.1  riastrad  * 3. Neither the name of the project nor the names of its contributors
     16       1.1  riastrad  *    may be used to endorse or promote products derived from this software
     17       1.1  riastrad  *    without specific prior written permission.
     18       1.1  riastrad  *
     19       1.1  riastrad  * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
     20       1.1  riastrad  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     21       1.1  riastrad  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     22       1.1  riastrad  * ARE DISCLAIMED.  IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
     23       1.1  riastrad  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     24       1.1  riastrad  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     25       1.1  riastrad  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     26       1.1  riastrad  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     27       1.1  riastrad  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     28       1.1  riastrad  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     29       1.1  riastrad  * SUCH DAMAGE.
     30       1.1  riastrad  */
     31       1.1  riastrad 
     32       1.1  riastrad /*
     33      1.24  riastrad  * This network interface aims to implement the WireGuard protocol.
     34      1.24  riastrad  * The implementation is based on the paper of WireGuard as of
     35      1.24  riastrad  * 2018-06-30 [1].  The paper is referred in the source code with label
     36      1.24  riastrad  * [W].  Also the specification of the Noise protocol framework as of
     37      1.24  riastrad  * 2018-07-11 [2] is referred with label [N].
     38       1.1  riastrad  *
     39       1.1  riastrad  * [1] https://www.wireguard.com/papers/wireguard.pdf
     40       1.1  riastrad  * [2] http://noiseprotocol.org/noise.pdf
     41       1.1  riastrad  */
     42       1.1  riastrad 
     43       1.1  riastrad #include <sys/cdefs.h>
     44  1.77.2.1   thorpej __KERNEL_RCSID(0, "$NetBSD: if_wg.c,v 1.77.2.1 2023/11/14 02:29:11 thorpej Exp $");
     45       1.1  riastrad 
     46       1.1  riastrad #ifdef _KERNEL_OPT
     47      1.60  riastrad #include "opt_altq_enabled.h"
     48       1.1  riastrad #include "opt_inet.h"
     49       1.1  riastrad #endif
     50       1.1  riastrad 
     51       1.1  riastrad #include <sys/param.h>
     52      1.32  riastrad #include <sys/types.h>
     53      1.32  riastrad 
     54      1.32  riastrad #include <sys/atomic.h>
     55      1.32  riastrad #include <sys/callout.h>
     56      1.32  riastrad #include <sys/cprng.h>
     57      1.32  riastrad #include <sys/cpu.h>
     58      1.32  riastrad #include <sys/device.h>
     59      1.32  riastrad #include <sys/domain.h>
     60       1.1  riastrad #include <sys/errno.h>
     61      1.32  riastrad #include <sys/intr.h>
     62       1.1  riastrad #include <sys/ioctl.h>
     63      1.32  riastrad #include <sys/kernel.h>
     64       1.1  riastrad #include <sys/kmem.h>
     65      1.32  riastrad #include <sys/mbuf.h>
     66       1.1  riastrad #include <sys/module.h>
     67       1.1  riastrad #include <sys/mutex.h>
     68      1.58  riastrad #include <sys/once.h>
     69      1.32  riastrad #include <sys/percpu.h>
     70       1.1  riastrad #include <sys/pserialize.h>
     71       1.1  riastrad #include <sys/psref.h>
     72      1.32  riastrad #include <sys/queue.h>
     73      1.32  riastrad #include <sys/rwlock.h>
     74      1.32  riastrad #include <sys/socket.h>
     75      1.32  riastrad #include <sys/socketvar.h>
     76      1.32  riastrad #include <sys/sockio.h>
     77       1.1  riastrad #include <sys/sysctl.h>
     78      1.32  riastrad #include <sys/syslog.h>
     79      1.32  riastrad #include <sys/systm.h>
     80      1.37  riastrad #include <sys/thmap.h>
     81      1.55  riastrad #include <sys/threadpool.h>
     82      1.32  riastrad #include <sys/time.h>
     83      1.32  riastrad #include <sys/timespec.h>
     84      1.55  riastrad #include <sys/workqueue.h>
     85       1.1  riastrad 
     86       1.1  riastrad #include <net/bpf.h>
     87       1.1  riastrad #include <net/if.h>
     88       1.1  riastrad #include <net/if_types.h>
     89      1.32  riastrad #include <net/if_wg.h>
     90      1.54  riastrad #include <net/pktqueue.h>
     91       1.1  riastrad #include <net/route.h>
     92       1.1  riastrad 
     93       1.1  riastrad #include <netinet/in.h>
     94      1.32  riastrad #include <netinet/in_pcb.h>
     95      1.32  riastrad #include <netinet/in_var.h>
     96       1.1  riastrad #include <netinet/ip.h>
     97       1.1  riastrad #include <netinet/ip_var.h>
     98       1.1  riastrad #include <netinet/udp.h>
     99       1.1  riastrad #include <netinet/udp_var.h>
    100       1.1  riastrad 
    101       1.1  riastrad #ifdef INET6
    102      1.32  riastrad #include <netinet/ip6.h>
    103      1.32  riastrad #include <netinet6/in6_pcb.h>
    104       1.1  riastrad #include <netinet6/in6_var.h>
    105       1.1  riastrad #include <netinet6/ip6_var.h>
    106       1.1  riastrad #include <netinet6/udp6_var.h>
    107       1.1  riastrad #endif /* INET6 */
    108       1.1  riastrad 
    109       1.1  riastrad #include <prop/proplib.h>
    110       1.1  riastrad 
    111       1.1  riastrad #include <crypto/blake2/blake2s.h>
    112       1.1  riastrad #include <crypto/sodium/crypto_aead_chacha20poly1305.h>
    113       1.1  riastrad #include <crypto/sodium/crypto_aead_xchacha20poly1305.h>
    114      1.32  riastrad #include <crypto/sodium/crypto_scalarmult.h>
    115       1.1  riastrad 
    116       1.1  riastrad #include "ioconf.h"
    117       1.1  riastrad 
    118       1.1  riastrad #ifdef WG_RUMPKERNEL
    119       1.1  riastrad #include "wg_user.h"
    120       1.1  riastrad #endif
    121       1.1  riastrad 
    122       1.1  riastrad /*
    123       1.1  riastrad  * Data structures
    124       1.1  riastrad  * - struct wg_softc is an instance of wg interfaces
    125       1.1  riastrad  *   - It has a list of peers (struct wg_peer)
    126      1.55  riastrad  *   - It has a threadpool job that sends/receives handshake messages and
    127       1.1  riastrad  *     runs event handlers
    128       1.1  riastrad  *   - It has its own two routing tables: one is for IPv4 and the other IPv6
    129       1.1  riastrad  * - struct wg_peer is a representative of a peer
    130      1.55  riastrad  *   - It has a struct work to handle handshakes and timer tasks
    131       1.1  riastrad  *   - It has a pair of session instances (struct wg_session)
    132       1.1  riastrad  *   - It has a pair of endpoint instances (struct wg_sockaddr)
    133       1.1  riastrad  *     - Normally one endpoint is used and the second one is used only on
    134       1.1  riastrad  *       a peer migration (a change of peer's IP address)
    135       1.1  riastrad  *   - It has a list of IP addresses and sub networks called allowedips
    136       1.1  riastrad  *     (struct wg_allowedip)
    137       1.1  riastrad  *     - A packets sent over a session is allowed if its destination matches
    138       1.1  riastrad  *       any IP addresses or sub networks of the list
    139       1.1  riastrad  * - struct wg_session represents a session of a secure tunnel with a peer
    140       1.1  riastrad  *   - Two instances of sessions belong to a peer; a stable session and a
    141       1.1  riastrad  *     unstable session
    142      1.49  riastrad  *   - A handshake process of a session always starts with a unstable instance
    143       1.1  riastrad  *   - Once a session is established, its instance becomes stable and the
    144       1.1  riastrad  *     other becomes unstable instead
    145       1.1  riastrad  *   - Data messages are always sent via a stable session
    146       1.1  riastrad  *
    147       1.1  riastrad  * Locking notes:
    148      1.49  riastrad  * - Each wg has a mutex(9) wg_lock, and a rwlock(9) wg_rwlock
    149      1.49  riastrad  *   - Changes to the peer list are serialized by wg_lock
    150      1.49  riastrad  *   - The peer list may be read with pserialize(9) and psref(9)
    151       1.1  riastrad  *   - The rwlock (wg_rwlock) protects the routing tables (wg_rtable_ipv[46])
    152      1.49  riastrad  *     => XXX replace by pserialize when routing table is psz-safe
    153      1.49  riastrad  * - Each peer (struct wg_peer, wgp) has a mutex wgp_lock, which can be taken
    154      1.49  riastrad  *   only in thread context and serializes:
    155      1.49  riastrad  *   - the stable and unstable session pointers
    156      1.49  riastrad  *   - all unstable session state
    157      1.49  riastrad  * - Packet processing may be done in softint context:
    158      1.49  riastrad  *   - The stable session can be read under pserialize(9) or psref(9)
    159      1.49  riastrad  *     - The stable session is always ESTABLISHED
    160      1.14  riastrad  *     - On a session swap, we must wait for all readers to release a
    161      1.14  riastrad  *       reference to a stable session before changing wgs_state and
    162      1.14  riastrad  *       session states
    163      1.49  riastrad  * - Lock order: wg_lock -> wgp_lock
    164       1.1  riastrad  */
    165       1.1  riastrad 
    166       1.1  riastrad 
    167      1.14  riastrad #define WGLOG(level, fmt, args...)					      \
    168      1.14  riastrad 	log(level, "%s: " fmt, __func__, ##args)
    169       1.1  riastrad 
    170       1.1  riastrad /* Debug options */
    171       1.1  riastrad #ifdef WG_DEBUG
    172       1.1  riastrad /* Output debug logs */
    173       1.1  riastrad #ifndef WG_DEBUG_LOG
    174       1.1  riastrad #define WG_DEBUG_LOG
    175       1.1  riastrad #endif
    176       1.1  riastrad /* Output trace logs */
    177       1.1  riastrad #ifndef WG_DEBUG_TRACE
    178       1.1  riastrad #define WG_DEBUG_TRACE
    179       1.1  riastrad #endif
    180       1.1  riastrad /* Output hash values, etc. */
    181       1.1  riastrad #ifndef WG_DEBUG_DUMP
    182       1.1  riastrad #define WG_DEBUG_DUMP
    183       1.1  riastrad #endif
    184       1.1  riastrad /* Make some internal parameters configurable for testing and debugging */
    185       1.1  riastrad #ifndef WG_DEBUG_PARAMS
    186       1.1  riastrad #define WG_DEBUG_PARAMS
    187       1.1  riastrad #endif
    188       1.1  riastrad #endif
    189       1.1  riastrad 
    190       1.1  riastrad #ifdef WG_DEBUG_TRACE
    191      1.14  riastrad #define WG_TRACE(msg)							      \
    192      1.14  riastrad 	log(LOG_DEBUG, "%s:%d: %s\n", __func__, __LINE__, (msg))
    193       1.1  riastrad #else
    194       1.1  riastrad #define WG_TRACE(msg)	__nothing
    195       1.1  riastrad #endif
    196       1.1  riastrad 
    197       1.1  riastrad #ifdef WG_DEBUG_LOG
    198       1.1  riastrad #define WG_DLOG(fmt, args...)	log(LOG_DEBUG, "%s: " fmt, __func__, ##args)
    199       1.1  riastrad #else
    200       1.1  riastrad #define WG_DLOG(fmt, args...)	__nothing
    201       1.1  riastrad #endif
    202       1.1  riastrad 
    203       1.1  riastrad #define WG_LOG_RATECHECK(wgprc, level, fmt, args...)	do {		\
    204       1.1  riastrad 	if (ppsratecheck(&(wgprc)->wgprc_lasttime,			\
    205       1.1  riastrad 	    &(wgprc)->wgprc_curpps, 1)) {				\
    206       1.1  riastrad 		log(level, fmt, ##args);				\
    207       1.1  riastrad 	}								\
    208       1.1  riastrad } while (0)
    209       1.1  riastrad 
    210       1.1  riastrad #ifdef WG_DEBUG_PARAMS
    211       1.1  riastrad static bool wg_force_underload = false;
    212       1.1  riastrad #endif
    213       1.1  riastrad 
    214       1.1  riastrad #ifdef WG_DEBUG_DUMP
    215       1.7  riastrad 
    216      1.53  riastrad static char *
    217      1.53  riastrad gethexdump(const char *p, size_t n)
    218      1.53  riastrad {
    219      1.53  riastrad 	char *buf;
    220      1.53  riastrad 	size_t i;
    221      1.53  riastrad 
    222      1.53  riastrad 	if (n > SIZE_MAX/3 - 1)
    223      1.53  riastrad 		return NULL;
    224      1.53  riastrad 	buf = kmem_alloc(3*n + 1, KM_NOSLEEP);
    225      1.53  riastrad 	if (buf == NULL)
    226      1.53  riastrad 		return NULL;
    227      1.53  riastrad 	for (i = 0; i < n; i++)
    228      1.53  riastrad 		snprintf(buf + 3*i, 3 + 1, " %02hhx", p[i]);
    229      1.53  riastrad 	return buf;
    230      1.53  riastrad }
    231      1.53  riastrad 
    232      1.53  riastrad static void
    233      1.53  riastrad puthexdump(char *buf, const void *p, size_t n)
    234      1.53  riastrad {
    235      1.53  riastrad 
    236      1.53  riastrad 	if (buf == NULL)
    237      1.53  riastrad 		return;
    238      1.53  riastrad 	kmem_free(buf, 3*n + 1);
    239      1.53  riastrad }
    240      1.53  riastrad 
    241       1.7  riastrad #ifdef WG_RUMPKERNEL
    242       1.1  riastrad static void
    243       1.1  riastrad wg_dump_buf(const char *func, const char *buf, const size_t size)
    244       1.1  riastrad {
    245      1.53  riastrad 	char *hex = gethexdump(buf, size);
    246       1.1  riastrad 
    247      1.53  riastrad 	log(LOG_DEBUG, "%s: %s\n", func, hex ? hex : "(enomem)");
    248      1.53  riastrad 	puthexdump(hex, buf, size);
    249       1.1  riastrad }
    250       1.7  riastrad #endif
    251       1.1  riastrad 
    252       1.1  riastrad static void
    253       1.1  riastrad wg_dump_hash(const uint8_t *func, const uint8_t *name, const uint8_t *hash,
    254       1.1  riastrad     const size_t size)
    255       1.1  riastrad {
    256      1.53  riastrad 	char *hex = gethexdump(hash, size);
    257       1.1  riastrad 
    258      1.53  riastrad 	log(LOG_DEBUG, "%s: %s: %s\n", func, name, hex ? hex : "(enomem)");
    259      1.53  riastrad 	puthexdump(hex, hash, size);
    260       1.1  riastrad }
    261       1.1  riastrad 
    262       1.1  riastrad #define WG_DUMP_HASH(name, hash) \
    263       1.1  riastrad 	wg_dump_hash(__func__, name, hash, WG_HASH_LEN)
    264       1.1  riastrad #define WG_DUMP_HASH48(name, hash) \
    265       1.1  riastrad 	wg_dump_hash(__func__, name, hash, 48)
    266       1.1  riastrad #define WG_DUMP_BUF(buf, size) \
    267       1.1  riastrad 	wg_dump_buf(__func__, buf, size)
    268       1.1  riastrad #else
    269       1.1  riastrad #define WG_DUMP_HASH(name, hash)	__nothing
    270       1.1  riastrad #define WG_DUMP_HASH48(name, hash)	__nothing
    271       1.1  riastrad #define WG_DUMP_BUF(buf, size)	__nothing
    272       1.1  riastrad #endif /* WG_DEBUG_DUMP */
    273       1.1  riastrad 
    274      1.75    andvar /* chosen somewhat arbitrarily -- fits in signed 16 bits NUL-terminated */
    275      1.68  riastrad #define	WG_MAX_PROPLEN		32766
    276      1.68  riastrad 
    277       1.1  riastrad #define WG_MTU			1420
    278       1.1  riastrad #define WG_ALLOWEDIPS		16
    279       1.1  riastrad 
    280       1.1  riastrad #define CURVE25519_KEY_LEN	32
    281       1.1  riastrad #define TAI64N_LEN		sizeof(uint32_t) * 3
    282       1.1  riastrad #define POLY1305_AUTHTAG_LEN	16
    283       1.1  riastrad #define HMAC_BLOCK_LEN		64
    284       1.1  riastrad 
    285       1.1  riastrad /* [N] 4.1: "DHLEN must be 32 or greater."  WireGuard chooses 32. */
    286       1.1  riastrad /* [N] 4.3: Hash functions */
    287       1.1  riastrad #define NOISE_DHLEN		32
    288       1.1  riastrad /* [N] 4.3: "Must be 32 or 64."  WireGuard chooses 32. */
    289       1.1  riastrad #define NOISE_HASHLEN		32
    290       1.1  riastrad #define NOISE_BLOCKLEN		64
    291       1.1  riastrad #define NOISE_HKDF_OUTPUT_LEN	NOISE_HASHLEN
    292       1.1  riastrad /* [N] 5.1: "k" */
    293       1.1  riastrad #define NOISE_CIPHER_KEY_LEN	32
    294       1.1  riastrad /*
    295       1.1  riastrad  * [N] 9.2: "psk"
    296       1.1  riastrad  *          "... psk is a 32-byte secret value provided by the application."
    297       1.1  riastrad  */
    298       1.1  riastrad #define NOISE_PRESHARED_KEY_LEN	32
    299       1.1  riastrad 
    300       1.1  riastrad #define WG_STATIC_KEY_LEN	CURVE25519_KEY_LEN
    301       1.1  riastrad #define WG_TIMESTAMP_LEN	TAI64N_LEN
    302       1.1  riastrad 
    303       1.1  riastrad #define WG_PRESHARED_KEY_LEN	NOISE_PRESHARED_KEY_LEN
    304       1.1  riastrad 
    305       1.1  riastrad #define WG_COOKIE_LEN		16
    306       1.1  riastrad #define WG_MAC_LEN		16
    307       1.1  riastrad #define WG_RANDVAL_LEN		24
    308       1.1  riastrad 
    309       1.1  riastrad #define WG_EPHEMERAL_KEY_LEN	CURVE25519_KEY_LEN
    310       1.1  riastrad /* [N] 5.2: "ck: A chaining key of HASHLEN bytes" */
    311       1.1  riastrad #define WG_CHAINING_KEY_LEN	NOISE_HASHLEN
    312       1.1  riastrad /* [N] 5.2: "h: A hash output of HASHLEN bytes" */
    313       1.1  riastrad #define WG_HASH_LEN		NOISE_HASHLEN
    314       1.1  riastrad #define WG_CIPHER_KEY_LEN	NOISE_CIPHER_KEY_LEN
    315       1.1  riastrad #define WG_DH_OUTPUT_LEN	NOISE_DHLEN
    316       1.1  riastrad #define WG_KDF_OUTPUT_LEN	NOISE_HKDF_OUTPUT_LEN
    317       1.1  riastrad #define WG_AUTHTAG_LEN		POLY1305_AUTHTAG_LEN
    318       1.1  riastrad #define WG_DATA_KEY_LEN		32
    319       1.1  riastrad #define WG_SALT_LEN		24
    320       1.1  riastrad 
    321       1.1  riastrad /*
    322       1.1  riastrad  * The protocol messages
    323       1.1  riastrad  */
    324      1.14  riastrad struct wg_msg {
    325       1.1  riastrad 	uint32_t	wgm_type;
    326       1.1  riastrad } __packed;
    327       1.1  riastrad 
    328       1.1  riastrad /* [W] 5.4.2 First Message: Initiator to Responder */
    329       1.1  riastrad struct wg_msg_init {
    330       1.1  riastrad 	uint32_t	wgmi_type;
    331       1.1  riastrad 	uint32_t	wgmi_sender;
    332       1.1  riastrad 	uint8_t		wgmi_ephemeral[WG_EPHEMERAL_KEY_LEN];
    333       1.1  riastrad 	uint8_t		wgmi_static[WG_STATIC_KEY_LEN + WG_AUTHTAG_LEN];
    334       1.1  riastrad 	uint8_t		wgmi_timestamp[WG_TIMESTAMP_LEN + WG_AUTHTAG_LEN];
    335       1.1  riastrad 	uint8_t		wgmi_mac1[WG_MAC_LEN];
    336       1.1  riastrad 	uint8_t		wgmi_mac2[WG_MAC_LEN];
    337       1.1  riastrad } __packed;
    338       1.1  riastrad 
    339       1.1  riastrad /* [W] 5.4.3 Second Message: Responder to Initiator */
    340       1.1  riastrad struct wg_msg_resp {
    341       1.1  riastrad 	uint32_t	wgmr_type;
    342       1.1  riastrad 	uint32_t	wgmr_sender;
    343       1.1  riastrad 	uint32_t	wgmr_receiver;
    344       1.1  riastrad 	uint8_t		wgmr_ephemeral[WG_EPHEMERAL_KEY_LEN];
    345       1.1  riastrad 	uint8_t		wgmr_empty[0 + WG_AUTHTAG_LEN];
    346       1.1  riastrad 	uint8_t		wgmr_mac1[WG_MAC_LEN];
    347       1.1  riastrad 	uint8_t		wgmr_mac2[WG_MAC_LEN];
    348       1.1  riastrad } __packed;
    349       1.1  riastrad 
    350       1.1  riastrad /* [W] 5.4.6 Subsequent Messages: Transport Data Messages */
    351       1.1  riastrad struct wg_msg_data {
    352       1.1  riastrad 	uint32_t	wgmd_type;
    353       1.1  riastrad 	uint32_t	wgmd_receiver;
    354       1.1  riastrad 	uint64_t	wgmd_counter;
    355       1.1  riastrad 	uint32_t	wgmd_packet[0];
    356       1.1  riastrad } __packed;
    357       1.1  riastrad 
    358       1.1  riastrad /* [W] 5.4.7 Under Load: Cookie Reply Message */
    359       1.1  riastrad struct wg_msg_cookie {
    360       1.1  riastrad 	uint32_t	wgmc_type;
    361       1.1  riastrad 	uint32_t	wgmc_receiver;
    362       1.1  riastrad 	uint8_t		wgmc_salt[WG_SALT_LEN];
    363       1.1  riastrad 	uint8_t		wgmc_cookie[WG_COOKIE_LEN + WG_AUTHTAG_LEN];
    364       1.1  riastrad } __packed;
    365       1.1  riastrad 
    366       1.1  riastrad #define WG_MSG_TYPE_INIT		1
    367       1.1  riastrad #define WG_MSG_TYPE_RESP		2
    368       1.1  riastrad #define WG_MSG_TYPE_COOKIE		3
    369       1.1  riastrad #define WG_MSG_TYPE_DATA		4
    370       1.1  riastrad #define WG_MSG_TYPE_MAX			WG_MSG_TYPE_DATA
    371       1.1  riastrad 
    372       1.6  riastrad /* Sliding windows */
    373       1.6  riastrad 
    374       1.6  riastrad #define	SLIWIN_BITS	2048u
    375       1.6  riastrad #define	SLIWIN_TYPE	uint32_t
    376       1.6  riastrad #define	SLIWIN_BPW	NBBY*sizeof(SLIWIN_TYPE)
    377       1.6  riastrad #define	SLIWIN_WORDS	howmany(SLIWIN_BITS, SLIWIN_BPW)
    378       1.6  riastrad #define	SLIWIN_NPKT	(SLIWIN_BITS - NBBY*sizeof(SLIWIN_TYPE))
    379       1.6  riastrad 
    380       1.6  riastrad struct sliwin {
    381       1.6  riastrad 	SLIWIN_TYPE	B[SLIWIN_WORDS];
    382       1.6  riastrad 	uint64_t	T;
    383       1.6  riastrad };
    384       1.6  riastrad 
    385       1.6  riastrad static void
    386       1.6  riastrad sliwin_reset(struct sliwin *W)
    387       1.6  riastrad {
    388       1.6  riastrad 
    389       1.6  riastrad 	memset(W, 0, sizeof(*W));
    390       1.6  riastrad }
    391       1.6  riastrad 
    392       1.6  riastrad static int
    393       1.6  riastrad sliwin_check_fast(const volatile struct sliwin *W, uint64_t S)
    394       1.6  riastrad {
    395       1.6  riastrad 
    396       1.6  riastrad 	/*
    397       1.6  riastrad 	 * If it's more than one window older than the highest sequence
    398       1.6  riastrad 	 * number we've seen, reject.
    399       1.6  riastrad 	 */
    400      1.20  riastrad #ifdef __HAVE_ATOMIC64_LOADSTORE
    401       1.6  riastrad 	if (S + SLIWIN_NPKT < atomic_load_relaxed(&W->T))
    402       1.6  riastrad 		return EAUTH;
    403      1.20  riastrad #endif
    404       1.6  riastrad 
    405       1.6  riastrad 	/*
    406       1.6  riastrad 	 * Otherwise, we need to take the lock to decide, so don't
    407       1.6  riastrad 	 * reject just yet.  Caller must serialize a call to
    408       1.6  riastrad 	 * sliwin_update in this case.
    409       1.6  riastrad 	 */
    410       1.6  riastrad 	return 0;
    411       1.6  riastrad }
    412       1.6  riastrad 
    413       1.6  riastrad static int
    414       1.6  riastrad sliwin_update(struct sliwin *W, uint64_t S)
    415       1.6  riastrad {
    416       1.6  riastrad 	unsigned word, bit;
    417       1.6  riastrad 
    418       1.6  riastrad 	/*
    419       1.6  riastrad 	 * If it's more than one window older than the highest sequence
    420       1.6  riastrad 	 * number we've seen, reject.
    421       1.6  riastrad 	 */
    422       1.6  riastrad 	if (S + SLIWIN_NPKT < W->T)
    423       1.6  riastrad 		return EAUTH;
    424       1.6  riastrad 
    425       1.6  riastrad 	/*
    426       1.6  riastrad 	 * If it's higher than the highest sequence number we've seen,
    427       1.6  riastrad 	 * advance the window.
    428       1.6  riastrad 	 */
    429       1.6  riastrad 	if (S > W->T) {
    430       1.6  riastrad 		uint64_t i = W->T / SLIWIN_BPW;
    431       1.6  riastrad 		uint64_t j = S / SLIWIN_BPW;
    432       1.6  riastrad 		unsigned k;
    433       1.6  riastrad 
    434       1.6  riastrad 		for (k = 0; k < MIN(j - i, SLIWIN_WORDS); k++)
    435       1.6  riastrad 			W->B[(i + k + 1) % SLIWIN_WORDS] = 0;
    436      1.20  riastrad #ifdef __HAVE_ATOMIC64_LOADSTORE
    437       1.6  riastrad 		atomic_store_relaxed(&W->T, S);
    438      1.20  riastrad #else
    439      1.20  riastrad 		W->T = S;
    440      1.20  riastrad #endif
    441       1.6  riastrad 	}
    442       1.6  riastrad 
    443       1.6  riastrad 	/* Test and set the bit -- if already set, reject.  */
    444       1.6  riastrad 	word = (S / SLIWIN_BPW) % SLIWIN_WORDS;
    445       1.6  riastrad 	bit = S % SLIWIN_BPW;
    446       1.6  riastrad 	if (W->B[word] & (1UL << bit))
    447       1.6  riastrad 		return EAUTH;
    448      1.65  christos 	W->B[word] |= 1U << bit;
    449       1.6  riastrad 
    450       1.6  riastrad 	/* Accept!  */
    451       1.6  riastrad 	return 0;
    452       1.6  riastrad }
    453       1.6  riastrad 
    454       1.1  riastrad struct wg_session {
    455       1.1  riastrad 	struct wg_peer	*wgs_peer;
    456       1.1  riastrad 	struct psref_target
    457       1.1  riastrad 			wgs_psref;
    458       1.1  riastrad 
    459       1.1  riastrad 	int		wgs_state;
    460       1.1  riastrad #define WGS_STATE_UNKNOWN	0
    461       1.1  riastrad #define WGS_STATE_INIT_ACTIVE	1
    462       1.1  riastrad #define WGS_STATE_INIT_PASSIVE	2
    463       1.1  riastrad #define WGS_STATE_ESTABLISHED	3
    464       1.1  riastrad #define WGS_STATE_DESTROYING	4
    465       1.1  riastrad 
    466       1.1  riastrad 	time_t		wgs_time_established;
    467       1.1  riastrad 	time_t		wgs_time_last_data_sent;
    468       1.1  riastrad 	bool		wgs_is_initiator;
    469       1.1  riastrad 
    470      1.49  riastrad 	uint32_t	wgs_local_index;
    471      1.49  riastrad 	uint32_t	wgs_remote_index;
    472      1.22  riastrad #ifdef __HAVE_ATOMIC64_LOADSTORE
    473       1.1  riastrad 	volatile uint64_t
    474       1.1  riastrad 			wgs_send_counter;
    475      1.22  riastrad #else
    476      1.22  riastrad 	kmutex_t	wgs_send_counter_lock;
    477      1.22  riastrad 	uint64_t	wgs_send_counter;
    478      1.22  riastrad #endif
    479       1.6  riastrad 
    480       1.6  riastrad 	struct {
    481       1.6  riastrad 		kmutex_t	lock;
    482       1.6  riastrad 		struct sliwin	window;
    483       1.6  riastrad 	}		*wgs_recvwin;
    484       1.1  riastrad 
    485       1.1  riastrad 	uint8_t		wgs_handshake_hash[WG_HASH_LEN];
    486       1.1  riastrad 	uint8_t		wgs_chaining_key[WG_CHAINING_KEY_LEN];
    487       1.1  riastrad 	uint8_t		wgs_ephemeral_key_pub[WG_EPHEMERAL_KEY_LEN];
    488       1.1  riastrad 	uint8_t		wgs_ephemeral_key_priv[WG_EPHEMERAL_KEY_LEN];
    489       1.1  riastrad 	uint8_t		wgs_ephemeral_key_peer[WG_EPHEMERAL_KEY_LEN];
    490       1.1  riastrad 	uint8_t		wgs_tkey_send[WG_DATA_KEY_LEN];
    491       1.1  riastrad 	uint8_t		wgs_tkey_recv[WG_DATA_KEY_LEN];
    492       1.1  riastrad };
    493       1.1  riastrad 
    494       1.1  riastrad struct wg_sockaddr {
    495       1.1  riastrad 	union {
    496       1.1  riastrad 		struct sockaddr_storage _ss;
    497       1.1  riastrad 		struct sockaddr _sa;
    498       1.1  riastrad 		struct sockaddr_in _sin;
    499       1.1  riastrad 		struct sockaddr_in6 _sin6;
    500       1.1  riastrad 	};
    501       1.1  riastrad 	struct psref_target	wgsa_psref;
    502       1.1  riastrad };
    503       1.1  riastrad 
    504      1.47  riastrad #define wgsatoss(wgsa)		(&(wgsa)->_ss)
    505       1.1  riastrad #define wgsatosa(wgsa)		(&(wgsa)->_sa)
    506       1.1  riastrad #define wgsatosin(wgsa)		(&(wgsa)->_sin)
    507       1.1  riastrad #define wgsatosin6(wgsa)	(&(wgsa)->_sin6)
    508       1.1  riastrad 
    509      1.47  riastrad #define	wgsa_family(wgsa)	(wgsatosa(wgsa)->sa_family)
    510      1.47  riastrad 
    511       1.1  riastrad struct wg_peer;
    512       1.1  riastrad struct wg_allowedip {
    513       1.1  riastrad 	struct radix_node	wga_nodes[2];
    514       1.1  riastrad 	struct wg_sockaddr	_wga_sa_addr;
    515       1.1  riastrad 	struct wg_sockaddr	_wga_sa_mask;
    516       1.1  riastrad #define wga_sa_addr		_wga_sa_addr._sa
    517       1.1  riastrad #define wga_sa_mask		_wga_sa_mask._sa
    518       1.1  riastrad 
    519       1.1  riastrad 	int			wga_family;
    520       1.1  riastrad 	uint8_t			wga_cidr;
    521       1.1  riastrad 	union {
    522       1.1  riastrad 		struct in_addr _ip4;
    523       1.1  riastrad 		struct in6_addr _ip6;
    524       1.1  riastrad 	} wga_addr;
    525       1.1  riastrad #define wga_addr4	wga_addr._ip4
    526       1.1  riastrad #define wga_addr6	wga_addr._ip6
    527       1.1  riastrad 
    528       1.1  riastrad 	struct wg_peer		*wga_peer;
    529       1.1  riastrad };
    530       1.1  riastrad 
    531       1.1  riastrad typedef uint8_t wg_timestamp_t[WG_TIMESTAMP_LEN];
    532       1.1  riastrad 
    533       1.1  riastrad struct wg_ppsratecheck {
    534       1.1  riastrad 	struct timeval		wgprc_lasttime;
    535       1.1  riastrad 	int			wgprc_curpps;
    536       1.1  riastrad };
    537       1.1  riastrad 
    538       1.1  riastrad struct wg_softc;
    539       1.1  riastrad struct wg_peer {
    540       1.1  riastrad 	struct wg_softc		*wgp_sc;
    541       1.1  riastrad 	char			wgp_name[WG_PEER_NAME_MAXLEN + 1];
    542       1.1  riastrad 	struct pslist_entry	wgp_peerlist_entry;
    543       1.1  riastrad 	pserialize_t		wgp_psz;
    544       1.1  riastrad 	struct psref_target	wgp_psref;
    545       1.1  riastrad 	kmutex_t		*wgp_lock;
    546      1.55  riastrad 	kmutex_t		*wgp_intr_lock;
    547       1.1  riastrad 
    548       1.1  riastrad 	uint8_t	wgp_pubkey[WG_STATIC_KEY_LEN];
    549       1.1  riastrad 	struct wg_sockaddr	*wgp_endpoint;
    550       1.1  riastrad 	struct wg_sockaddr	*wgp_endpoint0;
    551      1.49  riastrad 	volatile unsigned	wgp_endpoint_changing;
    552       1.1  riastrad 	bool			wgp_endpoint_available;
    553       1.1  riastrad 
    554       1.1  riastrad 			/* The preshared key (optional) */
    555       1.1  riastrad 	uint8_t		wgp_psk[WG_PRESHARED_KEY_LEN];
    556       1.1  riastrad 
    557       1.1  riastrad 	struct wg_session	*wgp_session_stable;
    558       1.1  riastrad 	struct wg_session	*wgp_session_unstable;
    559       1.1  riastrad 
    560      1.54  riastrad 	/* first outgoing packet awaiting session initiation */
    561      1.54  riastrad 	struct mbuf		*wgp_pending;
    562      1.54  riastrad 
    563       1.1  riastrad 	/* timestamp in big-endian */
    564       1.1  riastrad 	wg_timestamp_t	wgp_timestamp_latest_init;
    565       1.1  riastrad 
    566       1.1  riastrad 	struct timespec		wgp_last_handshake_time;
    567       1.1  riastrad 
    568       1.1  riastrad 	callout_t		wgp_rekey_timer;
    569       1.1  riastrad 	callout_t		wgp_handshake_timeout_timer;
    570       1.1  riastrad 	callout_t		wgp_session_dtor_timer;
    571       1.1  riastrad 
    572       1.1  riastrad 	time_t			wgp_handshake_start_time;
    573       1.1  riastrad 
    574      1.14  riastrad 	int			wgp_n_allowedips;
    575       1.1  riastrad 	struct wg_allowedip	wgp_allowedips[WG_ALLOWEDIPS];
    576       1.1  riastrad 
    577       1.1  riastrad 	time_t			wgp_latest_cookie_time;
    578       1.1  riastrad 	uint8_t			wgp_latest_cookie[WG_COOKIE_LEN];
    579       1.1  riastrad 	uint8_t			wgp_last_sent_mac1[WG_MAC_LEN];
    580       1.1  riastrad 	bool			wgp_last_sent_mac1_valid;
    581       1.1  riastrad 	uint8_t			wgp_last_sent_cookie[WG_COOKIE_LEN];
    582       1.1  riastrad 	bool			wgp_last_sent_cookie_valid;
    583       1.1  riastrad 
    584       1.1  riastrad 	time_t			wgp_last_msg_received_time[WG_MSG_TYPE_MAX];
    585       1.1  riastrad 
    586       1.1  riastrad 	time_t			wgp_last_genrandval_time;
    587       1.1  riastrad 	uint32_t		wgp_randval;
    588       1.1  riastrad 
    589       1.1  riastrad 	struct wg_ppsratecheck	wgp_ppsratecheck;
    590       1.1  riastrad 
    591      1.55  riastrad 	struct work		wgp_work;
    592      1.55  riastrad 	unsigned int		wgp_tasks;
    593       1.1  riastrad #define WGP_TASK_SEND_INIT_MESSAGE		__BIT(0)
    594      1.49  riastrad #define WGP_TASK_RETRY_HANDSHAKE		__BIT(1)
    595      1.49  riastrad #define WGP_TASK_ESTABLISH_SESSION		__BIT(2)
    596      1.49  riastrad #define WGP_TASK_ENDPOINT_CHANGED		__BIT(3)
    597      1.49  riastrad #define WGP_TASK_SEND_KEEPALIVE_MESSAGE		__BIT(4)
    598      1.49  riastrad #define WGP_TASK_DESTROY_PREV_SESSION		__BIT(5)
    599       1.1  riastrad };
    600       1.1  riastrad 
    601       1.1  riastrad struct wg_ops;
    602       1.1  riastrad 
    603       1.1  riastrad struct wg_softc {
    604       1.1  riastrad 	struct ifnet	wg_if;
    605       1.1  riastrad 	LIST_ENTRY(wg_softc) wg_list;
    606       1.1  riastrad 	kmutex_t	*wg_lock;
    607      1.55  riastrad 	kmutex_t	*wg_intr_lock;
    608       1.1  riastrad 	krwlock_t	*wg_rwlock;
    609       1.1  riastrad 
    610       1.1  riastrad 	uint8_t		wg_privkey[WG_STATIC_KEY_LEN];
    611       1.1  riastrad 	uint8_t		wg_pubkey[WG_STATIC_KEY_LEN];
    612       1.1  riastrad 
    613       1.1  riastrad 	int		wg_npeers;
    614       1.1  riastrad 	struct pslist_head	wg_peers;
    615      1.37  riastrad 	struct thmap	*wg_peers_bypubkey;
    616      1.37  riastrad 	struct thmap	*wg_peers_byname;
    617      1.37  riastrad 	struct thmap	*wg_sessions_byindex;
    618       1.1  riastrad 	uint16_t	wg_listen_port;
    619       1.1  riastrad 
    620      1.55  riastrad 	struct threadpool	*wg_threadpool;
    621       1.1  riastrad 
    622      1.55  riastrad 	struct threadpool_job	wg_job;
    623      1.55  riastrad 	int			wg_upcalls;
    624      1.55  riastrad #define	WG_UPCALL_INET	__BIT(0)
    625      1.55  riastrad #define	WG_UPCALL_INET6	__BIT(1)
    626      1.55  riastrad 
    627      1.55  riastrad #ifdef INET
    628      1.55  riastrad 	struct socket		*wg_so4;
    629       1.1  riastrad 	struct radix_node_head	*wg_rtable_ipv4;
    630      1.55  riastrad #endif
    631      1.55  riastrad #ifdef INET6
    632      1.55  riastrad 	struct socket		*wg_so6;
    633       1.1  riastrad 	struct radix_node_head	*wg_rtable_ipv6;
    634      1.55  riastrad #endif
    635       1.1  riastrad 
    636       1.1  riastrad 	struct wg_ppsratecheck	wg_ppsratecheck;
    637       1.1  riastrad 
    638       1.1  riastrad 	struct wg_ops		*wg_ops;
    639       1.1  riastrad 
    640       1.1  riastrad #ifdef WG_RUMPKERNEL
    641       1.1  riastrad 	struct wg_user		*wg_user;
    642       1.1  riastrad #endif
    643       1.1  riastrad };
    644       1.1  riastrad 
    645      1.21  riastrad /* [W] 6.1 Preliminaries */
    646      1.21  riastrad #define WG_REKEY_AFTER_MESSAGES		(1ULL << 60)
    647      1.21  riastrad #define WG_REJECT_AFTER_MESSAGES	(UINT64_MAX - (1 << 13))
    648       1.1  riastrad #define WG_REKEY_AFTER_TIME		120
    649       1.1  riastrad #define WG_REJECT_AFTER_TIME		180
    650       1.1  riastrad #define WG_REKEY_ATTEMPT_TIME		 90
    651       1.1  riastrad #define WG_REKEY_TIMEOUT		  5
    652       1.1  riastrad #define WG_KEEPALIVE_TIMEOUT		 10
    653       1.1  riastrad 
    654       1.1  riastrad #define WG_COOKIE_TIME			120
    655       1.1  riastrad #define WG_RANDVAL_TIME			(2 * 60)
    656       1.1  riastrad 
    657       1.1  riastrad static uint64_t wg_rekey_after_messages = WG_REKEY_AFTER_MESSAGES;
    658       1.1  riastrad static uint64_t wg_reject_after_messages = WG_REJECT_AFTER_MESSAGES;
    659      1.21  riastrad static unsigned wg_rekey_after_time = WG_REKEY_AFTER_TIME;
    660      1.21  riastrad static unsigned wg_reject_after_time = WG_REJECT_AFTER_TIME;
    661      1.21  riastrad static unsigned wg_rekey_attempt_time = WG_REKEY_ATTEMPT_TIME;
    662      1.21  riastrad static unsigned wg_rekey_timeout = WG_REKEY_TIMEOUT;
    663      1.21  riastrad static unsigned wg_keepalive_timeout = WG_KEEPALIVE_TIMEOUT;
    664       1.1  riastrad 
    665       1.1  riastrad static struct mbuf *
    666       1.1  riastrad 		wg_get_mbuf(size_t, size_t);
    667       1.1  riastrad 
    668       1.1  riastrad static int	wg_send_data_msg(struct wg_peer *, struct wg_session *,
    669       1.1  riastrad 		    struct mbuf *);
    670       1.1  riastrad static int	wg_send_cookie_msg(struct wg_softc *, struct wg_peer *,
    671      1.77       mrg 		    const uint32_t, const uint8_t [WG_MAC_LEN],
    672      1.77       mrg 		    const struct sockaddr *);
    673      1.49  riastrad static int	wg_send_handshake_msg_resp(struct wg_softc *, struct wg_peer *,
    674      1.49  riastrad 		    struct wg_session *, const struct wg_msg_init *);
    675       1.1  riastrad static void	wg_send_keepalive_msg(struct wg_peer *, struct wg_session *);
    676       1.1  riastrad 
    677       1.1  riastrad static struct wg_peer *
    678       1.1  riastrad 		wg_pick_peer_by_sa(struct wg_softc *, const struct sockaddr *,
    679       1.1  riastrad 		    struct psref *);
    680       1.1  riastrad static struct wg_peer *
    681       1.1  riastrad 		wg_lookup_peer_by_pubkey(struct wg_softc *,
    682      1.77       mrg 		    const uint8_t [WG_STATIC_KEY_LEN], struct psref *);
    683       1.1  riastrad 
    684       1.1  riastrad static struct wg_session *
    685       1.1  riastrad 		wg_lookup_session_by_index(struct wg_softc *,
    686       1.1  riastrad 		    const uint32_t, struct psref *);
    687       1.1  riastrad 
    688       1.1  riastrad static void	wg_update_endpoint_if_necessary(struct wg_peer *,
    689       1.1  riastrad 		    const struct sockaddr *);
    690       1.1  riastrad 
    691       1.1  riastrad static void	wg_schedule_rekey_timer(struct wg_peer *);
    692       1.1  riastrad static void	wg_schedule_session_dtor_timer(struct wg_peer *);
    693       1.1  riastrad 
    694       1.1  riastrad static bool	wg_is_underload(struct wg_softc *, struct wg_peer *, int);
    695       1.1  riastrad static void	wg_calculate_keys(struct wg_session *, const bool);
    696       1.1  riastrad 
    697       1.1  riastrad static void	wg_clear_states(struct wg_session *);
    698       1.1  riastrad 
    699       1.1  riastrad static void	wg_get_peer(struct wg_peer *, struct psref *);
    700       1.1  riastrad static void	wg_put_peer(struct wg_peer *, struct psref *);
    701       1.1  riastrad 
    702       1.1  riastrad static int	wg_send_so(struct wg_peer *, struct mbuf *);
    703       1.1  riastrad static int	wg_send_udp(struct wg_peer *, struct mbuf *);
    704       1.1  riastrad static int	wg_output(struct ifnet *, struct mbuf *,
    705       1.1  riastrad 			   const struct sockaddr *, const struct rtentry *);
    706       1.1  riastrad static void	wg_input(struct ifnet *, struct mbuf *, const int);
    707       1.1  riastrad static int	wg_ioctl(struct ifnet *, u_long, void *);
    708       1.1  riastrad static int	wg_bind_port(struct wg_softc *, const uint16_t);
    709       1.1  riastrad static int	wg_init(struct ifnet *);
    710      1.60  riastrad #ifdef ALTQ
    711      1.60  riastrad static void	wg_start(struct ifnet *);
    712      1.60  riastrad #endif
    713       1.1  riastrad static void	wg_stop(struct ifnet *, int);
    714       1.1  riastrad 
    715      1.55  riastrad static void	wg_peer_work(struct work *, void *);
    716      1.55  riastrad static void	wg_job(struct threadpool_job *);
    717      1.54  riastrad static void	wgintr(void *);
    718      1.49  riastrad static void	wg_purge_pending_packets(struct wg_peer *);
    719      1.49  riastrad 
    720       1.1  riastrad static int	wg_clone_create(struct if_clone *, int);
    721       1.1  riastrad static int	wg_clone_destroy(struct ifnet *);
    722       1.1  riastrad 
    723       1.1  riastrad struct wg_ops {
    724       1.1  riastrad 	int (*send_hs_msg)(struct wg_peer *, struct mbuf *);
    725       1.1  riastrad 	int (*send_data_msg)(struct wg_peer *, struct mbuf *);
    726       1.1  riastrad 	void (*input)(struct ifnet *, struct mbuf *, const int);
    727       1.1  riastrad 	int (*bind_port)(struct wg_softc *, const uint16_t);
    728       1.1  riastrad };
    729       1.1  riastrad 
    730       1.1  riastrad struct wg_ops wg_ops_rumpkernel = {
    731       1.1  riastrad 	.send_hs_msg	= wg_send_so,
    732       1.1  riastrad 	.send_data_msg	= wg_send_udp,
    733       1.1  riastrad 	.input		= wg_input,
    734       1.1  riastrad 	.bind_port	= wg_bind_port,
    735       1.1  riastrad };
    736       1.1  riastrad 
    737       1.1  riastrad #ifdef WG_RUMPKERNEL
    738       1.1  riastrad static bool	wg_user_mode(struct wg_softc *);
    739       1.1  riastrad static int	wg_ioctl_linkstr(struct wg_softc *, struct ifdrv *);
    740       1.1  riastrad 
    741       1.1  riastrad static int	wg_send_user(struct wg_peer *, struct mbuf *);
    742       1.1  riastrad static void	wg_input_user(struct ifnet *, struct mbuf *, const int);
    743       1.1  riastrad static int	wg_bind_port_user(struct wg_softc *, const uint16_t);
    744       1.1  riastrad 
    745       1.1  riastrad struct wg_ops wg_ops_rumpuser = {
    746       1.1  riastrad 	.send_hs_msg	= wg_send_user,
    747       1.1  riastrad 	.send_data_msg	= wg_send_user,
    748       1.1  riastrad 	.input		= wg_input_user,
    749       1.1  riastrad 	.bind_port	= wg_bind_port_user,
    750       1.1  riastrad };
    751       1.1  riastrad #endif
    752       1.1  riastrad 
    753       1.1  riastrad #define WG_PEER_READER_FOREACH(wgp, wg)					\
    754       1.1  riastrad 	PSLIST_READER_FOREACH((wgp), &(wg)->wg_peers, struct wg_peer,	\
    755       1.1  riastrad 	    wgp_peerlist_entry)
    756       1.1  riastrad #define WG_PEER_WRITER_FOREACH(wgp, wg)					\
    757       1.1  riastrad 	PSLIST_WRITER_FOREACH((wgp), &(wg)->wg_peers, struct wg_peer,	\
    758       1.1  riastrad 	    wgp_peerlist_entry)
    759       1.1  riastrad #define WG_PEER_WRITER_INSERT_HEAD(wgp, wg)				\
    760       1.1  riastrad 	PSLIST_WRITER_INSERT_HEAD(&(wg)->wg_peers, (wgp), wgp_peerlist_entry)
    761       1.1  riastrad #define WG_PEER_WRITER_REMOVE(wgp)					\
    762       1.1  riastrad 	PSLIST_WRITER_REMOVE((wgp), wgp_peerlist_entry)
    763       1.1  riastrad 
    764       1.1  riastrad struct wg_route {
    765       1.1  riastrad 	struct radix_node	wgr_nodes[2];
    766       1.1  riastrad 	struct wg_peer		*wgr_peer;
    767       1.1  riastrad };
    768       1.1  riastrad 
    769       1.1  riastrad static struct radix_node_head *
    770       1.1  riastrad wg_rnh(struct wg_softc *wg, const int family)
    771       1.1  riastrad {
    772       1.1  riastrad 
    773       1.1  riastrad 	switch (family) {
    774       1.1  riastrad 		case AF_INET:
    775       1.1  riastrad 			return wg->wg_rtable_ipv4;
    776       1.1  riastrad #ifdef INET6
    777       1.1  riastrad 		case AF_INET6:
    778       1.1  riastrad 			return wg->wg_rtable_ipv6;
    779       1.1  riastrad #endif
    780       1.1  riastrad 		default:
    781       1.1  riastrad 			return NULL;
    782       1.1  riastrad 	}
    783       1.1  riastrad }
    784       1.1  riastrad 
    785       1.1  riastrad 
    786       1.1  riastrad /*
    787       1.1  riastrad  * Global variables
    788       1.1  riastrad  */
    789      1.59  riastrad static volatile unsigned wg_count __cacheline_aligned;
    790       1.1  riastrad 
    791       1.1  riastrad struct psref_class *wg_psref_class __read_mostly;
    792       1.1  riastrad 
    793       1.1  riastrad static struct if_clone wg_cloner =
    794       1.1  riastrad     IF_CLONE_INITIALIZER("wg", wg_clone_create, wg_clone_destroy);
    795       1.1  riastrad 
    796      1.54  riastrad static struct pktqueue *wg_pktq __read_mostly;
    797      1.55  riastrad static struct workqueue *wg_wq __read_mostly;
    798       1.1  riastrad 
    799       1.1  riastrad void wgattach(int);
    800       1.1  riastrad /* ARGSUSED */
    801       1.1  riastrad void
    802       1.1  riastrad wgattach(int count)
    803       1.1  riastrad {
    804       1.1  riastrad 	/*
    805       1.1  riastrad 	 * Nothing to do here, initialization is handled by the
    806       1.1  riastrad 	 * module initialization code in wginit() below).
    807       1.1  riastrad 	 */
    808       1.1  riastrad }
    809       1.1  riastrad 
    810       1.1  riastrad static void
    811       1.1  riastrad wginit(void)
    812       1.1  riastrad {
    813       1.1  riastrad 
    814       1.1  riastrad 	wg_psref_class = psref_class_create("wg", IPL_SOFTNET);
    815       1.1  riastrad 
    816      1.58  riastrad 	if_clone_attach(&wg_cloner);
    817      1.58  riastrad }
    818      1.58  riastrad 
    819      1.58  riastrad /*
    820      1.58  riastrad  * XXX Kludge: This should just happen in wginit, but workqueue_create
    821      1.58  riastrad  * cannot be run until after CPUs have been detected, and wginit runs
    822      1.58  riastrad  * before configure.
    823      1.58  riastrad  */
    824      1.58  riastrad static int
    825      1.58  riastrad wginitqueues(void)
    826      1.58  riastrad {
    827      1.58  riastrad 	int error __diagused;
    828      1.58  riastrad 
    829      1.54  riastrad 	wg_pktq = pktq_create(IFQ_MAXLEN, wgintr, NULL);
    830      1.54  riastrad 	KASSERT(wg_pktq != NULL);
    831      1.54  riastrad 
    832      1.55  riastrad 	error = workqueue_create(&wg_wq, "wgpeer", wg_peer_work, NULL,
    833      1.55  riastrad 	    PRI_NONE, IPL_SOFTNET, WQ_MPSAFE|WQ_PERCPU);
    834      1.55  riastrad 	KASSERT(error == 0);
    835      1.55  riastrad 
    836      1.58  riastrad 	return 0;
    837      1.58  riastrad }
    838      1.58  riastrad 
    839      1.58  riastrad static void
    840      1.58  riastrad wg_guarantee_initialized(void)
    841      1.58  riastrad {
    842      1.58  riastrad 	static ONCE_DECL(init);
    843      1.58  riastrad 	int error __diagused;
    844      1.58  riastrad 
    845      1.58  riastrad 	error = RUN_ONCE(&init, wginitqueues);
    846      1.58  riastrad 	KASSERT(error == 0);
    847       1.1  riastrad }
    848       1.1  riastrad 
    849       1.1  riastrad static int
    850      1.59  riastrad wg_count_inc(void)
    851      1.59  riastrad {
    852      1.59  riastrad 	unsigned o, n;
    853      1.59  riastrad 
    854      1.59  riastrad 	do {
    855      1.59  riastrad 		o = atomic_load_relaxed(&wg_count);
    856      1.59  riastrad 		if (o == UINT_MAX)
    857      1.59  riastrad 			return ENFILE;
    858      1.59  riastrad 		n = o + 1;
    859      1.59  riastrad 	} while (atomic_cas_uint(&wg_count, o, n) != o);
    860      1.59  riastrad 
    861      1.59  riastrad 	return 0;
    862      1.59  riastrad }
    863      1.59  riastrad 
    864      1.59  riastrad static void
    865      1.59  riastrad wg_count_dec(void)
    866      1.59  riastrad {
    867      1.59  riastrad 	unsigned c __diagused;
    868      1.59  riastrad 
    869      1.59  riastrad 	c = atomic_dec_uint_nv(&wg_count);
    870      1.59  riastrad 	KASSERT(c != UINT_MAX);
    871      1.59  riastrad }
    872      1.59  riastrad 
    873      1.59  riastrad static int
    874       1.1  riastrad wgdetach(void)
    875       1.1  riastrad {
    876       1.1  riastrad 
    877      1.59  riastrad 	/* Prevent new interface creation.  */
    878      1.59  riastrad 	if_clone_detach(&wg_cloner);
    879      1.59  riastrad 
    880      1.59  riastrad 	/* Check whether there are any existing interfaces.  */
    881      1.59  riastrad 	if (atomic_load_relaxed(&wg_count)) {
    882      1.59  riastrad 		/* Back out -- reattach the cloner.  */
    883      1.59  riastrad 		if_clone_attach(&wg_cloner);
    884      1.59  riastrad 		return EBUSY;
    885       1.1  riastrad 	}
    886       1.1  riastrad 
    887      1.59  riastrad 	/* No interfaces left.  Nuke it.  */
    888      1.59  riastrad 	workqueue_destroy(wg_wq);
    889      1.59  riastrad 	pktq_destroy(wg_pktq);
    890      1.59  riastrad 	psref_class_destroy(wg_psref_class);
    891       1.1  riastrad 
    892      1.59  riastrad 	return 0;
    893       1.1  riastrad }
    894       1.1  riastrad 
    895       1.1  riastrad static void
    896       1.1  riastrad wg_init_key_and_hash(uint8_t ckey[WG_CHAINING_KEY_LEN],
    897       1.1  riastrad     uint8_t hash[WG_HASH_LEN])
    898       1.1  riastrad {
    899       1.1  riastrad 	/* [W] 5.4: CONSTRUCTION */
    900       1.1  riastrad 	const char *signature = "Noise_IKpsk2_25519_ChaChaPoly_BLAKE2s";
    901       1.1  riastrad 	/* [W] 5.4: IDENTIFIER */
    902       1.1  riastrad 	const char *id = "WireGuard v1 zx2c4 Jason (at) zx2c4.com";
    903       1.1  riastrad 	struct blake2s state;
    904       1.1  riastrad 
    905       1.1  riastrad 	blake2s(ckey, WG_CHAINING_KEY_LEN, NULL, 0,
    906       1.1  riastrad 	    signature, strlen(signature));
    907       1.1  riastrad 
    908       1.1  riastrad 	CTASSERT(WG_HASH_LEN == WG_CHAINING_KEY_LEN);
    909       1.1  riastrad 	memcpy(hash, ckey, WG_CHAINING_KEY_LEN);
    910       1.1  riastrad 
    911       1.1  riastrad 	blake2s_init(&state, WG_HASH_LEN, NULL, 0);
    912       1.1  riastrad 	blake2s_update(&state, ckey, WG_CHAINING_KEY_LEN);
    913       1.1  riastrad 	blake2s_update(&state, id, strlen(id));
    914       1.1  riastrad 	blake2s_final(&state, hash);
    915       1.1  riastrad 
    916       1.1  riastrad 	WG_DUMP_HASH("ckey", ckey);
    917       1.1  riastrad 	WG_DUMP_HASH("hash", hash);
    918       1.1  riastrad }
    919       1.1  riastrad 
    920       1.1  riastrad static void
    921       1.1  riastrad wg_algo_hash(uint8_t hash[WG_HASH_LEN], const uint8_t input[],
    922       1.1  riastrad     const size_t inputsize)
    923       1.1  riastrad {
    924       1.1  riastrad 	struct blake2s state;
    925       1.1  riastrad 
    926       1.1  riastrad 	blake2s_init(&state, WG_HASH_LEN, NULL, 0);
    927       1.1  riastrad 	blake2s_update(&state, hash, WG_HASH_LEN);
    928       1.1  riastrad 	blake2s_update(&state, input, inputsize);
    929       1.1  riastrad 	blake2s_final(&state, hash);
    930       1.1  riastrad }
    931       1.1  riastrad 
    932       1.1  riastrad static void
    933       1.1  riastrad wg_algo_mac(uint8_t out[], const size_t outsize,
    934       1.1  riastrad     const uint8_t key[], const size_t keylen,
    935       1.1  riastrad     const uint8_t input1[], const size_t input1len,
    936       1.1  riastrad     const uint8_t input2[], const size_t input2len)
    937       1.1  riastrad {
    938       1.1  riastrad 	struct blake2s state;
    939       1.1  riastrad 
    940       1.1  riastrad 	blake2s_init(&state, outsize, key, keylen);
    941       1.1  riastrad 
    942       1.1  riastrad 	blake2s_update(&state, input1, input1len);
    943       1.1  riastrad 	if (input2 != NULL)
    944       1.1  riastrad 		blake2s_update(&state, input2, input2len);
    945       1.1  riastrad 	blake2s_final(&state, out);
    946       1.1  riastrad }
    947       1.1  riastrad 
    948       1.1  riastrad static void
    949       1.1  riastrad wg_algo_mac_mac1(uint8_t out[], const size_t outsize,
    950       1.1  riastrad     const uint8_t input1[], const size_t input1len,
    951       1.1  riastrad     const uint8_t input2[], const size_t input2len)
    952       1.1  riastrad {
    953       1.1  riastrad 	struct blake2s state;
    954       1.1  riastrad 	/* [W] 5.4: LABEL-MAC1 */
    955       1.1  riastrad 	const char *label = "mac1----";
    956       1.1  riastrad 	uint8_t key[WG_HASH_LEN];
    957       1.1  riastrad 
    958       1.1  riastrad 	blake2s_init(&state, sizeof(key), NULL, 0);
    959       1.1  riastrad 	blake2s_update(&state, label, strlen(label));
    960       1.1  riastrad 	blake2s_update(&state, input1, input1len);
    961       1.1  riastrad 	blake2s_final(&state, key);
    962       1.1  riastrad 
    963       1.1  riastrad 	blake2s_init(&state, outsize, key, sizeof(key));
    964       1.1  riastrad 	if (input2 != NULL)
    965       1.1  riastrad 		blake2s_update(&state, input2, input2len);
    966       1.1  riastrad 	blake2s_final(&state, out);
    967       1.1  riastrad }
    968       1.1  riastrad 
    969       1.1  riastrad static void
    970       1.1  riastrad wg_algo_mac_cookie(uint8_t out[], const size_t outsize,
    971       1.1  riastrad     const uint8_t input1[], const size_t input1len)
    972       1.1  riastrad {
    973       1.1  riastrad 	struct blake2s state;
    974       1.1  riastrad 	/* [W] 5.4: LABEL-COOKIE */
    975       1.1  riastrad 	const char *label = "cookie--";
    976       1.1  riastrad 
    977       1.1  riastrad 	blake2s_init(&state, outsize, NULL, 0);
    978       1.1  riastrad 	blake2s_update(&state, label, strlen(label));
    979       1.1  riastrad 	blake2s_update(&state, input1, input1len);
    980       1.1  riastrad 	blake2s_final(&state, out);
    981       1.1  riastrad }
    982       1.1  riastrad 
    983       1.1  riastrad static void
    984       1.1  riastrad wg_algo_generate_keypair(uint8_t pubkey[WG_EPHEMERAL_KEY_LEN],
    985       1.1  riastrad     uint8_t privkey[WG_EPHEMERAL_KEY_LEN])
    986       1.1  riastrad {
    987       1.1  riastrad 
    988       1.1  riastrad 	CTASSERT(WG_EPHEMERAL_KEY_LEN == crypto_scalarmult_curve25519_BYTES);
    989       1.1  riastrad 
    990       1.3  riastrad 	cprng_strong(kern_cprng, privkey, WG_EPHEMERAL_KEY_LEN, 0);
    991       1.1  riastrad 	crypto_scalarmult_base(pubkey, privkey);
    992       1.1  riastrad }
    993       1.1  riastrad 
    994       1.1  riastrad static void
    995       1.1  riastrad wg_algo_dh(uint8_t out[WG_DH_OUTPUT_LEN],
    996       1.1  riastrad     const uint8_t privkey[WG_STATIC_KEY_LEN],
    997       1.1  riastrad     const uint8_t pubkey[WG_STATIC_KEY_LEN])
    998       1.1  riastrad {
    999       1.1  riastrad 
   1000       1.1  riastrad 	CTASSERT(WG_STATIC_KEY_LEN == crypto_scalarmult_curve25519_BYTES);
   1001       1.1  riastrad 
   1002      1.19  riastrad 	int ret __diagused = crypto_scalarmult(out, privkey, pubkey);
   1003       1.1  riastrad 	KASSERT(ret == 0);
   1004       1.1  riastrad }
   1005       1.1  riastrad 
   1006       1.1  riastrad static void
   1007       1.1  riastrad wg_algo_hmac(uint8_t out[], const size_t outlen,
   1008       1.1  riastrad     const uint8_t key[], const size_t keylen,
   1009       1.1  riastrad     const uint8_t in[], const size_t inlen)
   1010       1.1  riastrad {
   1011       1.1  riastrad #define IPAD	0x36
   1012       1.1  riastrad #define OPAD	0x5c
   1013       1.1  riastrad 	uint8_t hmackey[HMAC_BLOCK_LEN] = {0};
   1014       1.1  riastrad 	uint8_t ipad[HMAC_BLOCK_LEN];
   1015       1.1  riastrad 	uint8_t opad[HMAC_BLOCK_LEN];
   1016      1.65  christos 	size_t i;
   1017       1.1  riastrad 	struct blake2s state;
   1018       1.1  riastrad 
   1019       1.1  riastrad 	KASSERT(outlen == WG_HASH_LEN);
   1020       1.1  riastrad 	KASSERT(keylen <= HMAC_BLOCK_LEN);
   1021       1.1  riastrad 
   1022       1.1  riastrad 	memcpy(hmackey, key, keylen);
   1023       1.1  riastrad 
   1024       1.1  riastrad 	for (i = 0; i < sizeof(hmackey); i++) {
   1025       1.1  riastrad 		ipad[i] = hmackey[i] ^ IPAD;
   1026       1.1  riastrad 		opad[i] = hmackey[i] ^ OPAD;
   1027       1.1  riastrad 	}
   1028       1.1  riastrad 
   1029       1.1  riastrad 	blake2s_init(&state, WG_HASH_LEN, NULL, 0);
   1030       1.1  riastrad 	blake2s_update(&state, ipad, sizeof(ipad));
   1031       1.1  riastrad 	blake2s_update(&state, in, inlen);
   1032       1.1  riastrad 	blake2s_final(&state, out);
   1033       1.1  riastrad 
   1034       1.1  riastrad 	blake2s_init(&state, WG_HASH_LEN, NULL, 0);
   1035       1.1  riastrad 	blake2s_update(&state, opad, sizeof(opad));
   1036       1.1  riastrad 	blake2s_update(&state, out, WG_HASH_LEN);
   1037       1.1  riastrad 	blake2s_final(&state, out);
   1038       1.1  riastrad #undef IPAD
   1039       1.1  riastrad #undef OPAD
   1040       1.1  riastrad }
   1041       1.1  riastrad 
   1042       1.1  riastrad static void
   1043       1.1  riastrad wg_algo_kdf(uint8_t out1[WG_KDF_OUTPUT_LEN], uint8_t out2[WG_KDF_OUTPUT_LEN],
   1044       1.1  riastrad     uint8_t out3[WG_KDF_OUTPUT_LEN], const uint8_t ckey[WG_CHAINING_KEY_LEN],
   1045       1.1  riastrad     const uint8_t input[], const size_t inputlen)
   1046       1.1  riastrad {
   1047       1.1  riastrad 	uint8_t tmp1[WG_KDF_OUTPUT_LEN], tmp2[WG_KDF_OUTPUT_LEN + 1];
   1048       1.1  riastrad 	uint8_t one[1];
   1049       1.1  riastrad 
   1050       1.1  riastrad 	/*
   1051      1.14  riastrad 	 * [N] 4.3: "an input_key_material byte sequence with length
   1052      1.14  riastrad 	 * either zero bytes, 32 bytes, or DHLEN bytes."
   1053       1.1  riastrad 	 */
   1054       1.1  riastrad 	KASSERT(inputlen == 0 || inputlen == 32 || inputlen == NOISE_DHLEN);
   1055       1.1  riastrad 
   1056       1.1  riastrad 	WG_DUMP_HASH("ckey", ckey);
   1057       1.1  riastrad 	if (input != NULL)
   1058       1.1  riastrad 		WG_DUMP_HASH("input", input);
   1059       1.1  riastrad 	wg_algo_hmac(tmp1, sizeof(tmp1), ckey, WG_CHAINING_KEY_LEN,
   1060       1.1  riastrad 	    input, inputlen);
   1061       1.1  riastrad 	WG_DUMP_HASH("tmp1", tmp1);
   1062       1.1  riastrad 	one[0] = 1;
   1063       1.1  riastrad 	wg_algo_hmac(out1, WG_KDF_OUTPUT_LEN, tmp1, sizeof(tmp1),
   1064       1.1  riastrad 	    one, sizeof(one));
   1065       1.1  riastrad 	WG_DUMP_HASH("out1", out1);
   1066       1.1  riastrad 	if (out2 == NULL)
   1067       1.1  riastrad 		return;
   1068       1.1  riastrad 	memcpy(tmp2, out1, WG_KDF_OUTPUT_LEN);
   1069       1.1  riastrad 	tmp2[WG_KDF_OUTPUT_LEN] = 2;
   1070       1.1  riastrad 	wg_algo_hmac(out2, WG_KDF_OUTPUT_LEN, tmp1, sizeof(tmp1),
   1071       1.1  riastrad 	    tmp2, sizeof(tmp2));
   1072       1.1  riastrad 	WG_DUMP_HASH("out2", out2);
   1073       1.1  riastrad 	if (out3 == NULL)
   1074       1.1  riastrad 		return;
   1075       1.1  riastrad 	memcpy(tmp2, out2, WG_KDF_OUTPUT_LEN);
   1076       1.1  riastrad 	tmp2[WG_KDF_OUTPUT_LEN] = 3;
   1077       1.1  riastrad 	wg_algo_hmac(out3, WG_KDF_OUTPUT_LEN, tmp1, sizeof(tmp1),
   1078       1.1  riastrad 	    tmp2, sizeof(tmp2));
   1079       1.1  riastrad 	WG_DUMP_HASH("out3", out3);
   1080       1.1  riastrad }
   1081       1.1  riastrad 
   1082      1.63  riastrad static void __noinline
   1083       1.1  riastrad wg_algo_dh_kdf(uint8_t ckey[WG_CHAINING_KEY_LEN],
   1084       1.1  riastrad     uint8_t cipher_key[WG_CIPHER_KEY_LEN],
   1085       1.1  riastrad     const uint8_t local_key[WG_STATIC_KEY_LEN],
   1086       1.1  riastrad     const uint8_t remote_key[WG_STATIC_KEY_LEN])
   1087       1.1  riastrad {
   1088       1.1  riastrad 	uint8_t dhout[WG_DH_OUTPUT_LEN];
   1089       1.1  riastrad 
   1090       1.1  riastrad 	wg_algo_dh(dhout, local_key, remote_key);
   1091       1.1  riastrad 	wg_algo_kdf(ckey, cipher_key, NULL, ckey, dhout, sizeof(dhout));
   1092       1.1  riastrad 
   1093       1.1  riastrad 	WG_DUMP_HASH("dhout", dhout);
   1094       1.1  riastrad 	WG_DUMP_HASH("ckey", ckey);
   1095       1.1  riastrad 	if (cipher_key != NULL)
   1096       1.1  riastrad 		WG_DUMP_HASH("cipher_key", cipher_key);
   1097       1.1  riastrad }
   1098       1.1  riastrad 
   1099       1.1  riastrad static void
   1100       1.1  riastrad wg_algo_aead_enc(uint8_t out[], size_t expected_outsize, const uint8_t key[],
   1101       1.1  riastrad     const uint64_t counter, const uint8_t plain[], const size_t plainsize,
   1102       1.1  riastrad     const uint8_t auth[], size_t authlen)
   1103       1.1  riastrad {
   1104       1.1  riastrad 	uint8_t nonce[(32 + 64) / 8] = {0};
   1105       1.1  riastrad 	long long unsigned int outsize;
   1106       1.1  riastrad 	int error __diagused;
   1107       1.1  riastrad 
   1108      1.39  riastrad 	le64enc(&nonce[4], counter);
   1109       1.1  riastrad 
   1110       1.1  riastrad 	error = crypto_aead_chacha20poly1305_ietf_encrypt(out, &outsize, plain,
   1111       1.1  riastrad 	    plainsize, auth, authlen, NULL, nonce, key);
   1112       1.1  riastrad 	KASSERT(error == 0);
   1113       1.1  riastrad 	KASSERT(outsize == expected_outsize);
   1114       1.1  riastrad }
   1115       1.1  riastrad 
   1116       1.1  riastrad static int
   1117       1.1  riastrad wg_algo_aead_dec(uint8_t out[], size_t expected_outsize, const uint8_t key[],
   1118       1.1  riastrad     const uint64_t counter, const uint8_t encrypted[],
   1119       1.1  riastrad     const size_t encryptedsize, const uint8_t auth[], size_t authlen)
   1120       1.1  riastrad {
   1121       1.1  riastrad 	uint8_t nonce[(32 + 64) / 8] = {0};
   1122       1.1  riastrad 	long long unsigned int outsize;
   1123       1.1  riastrad 	int error;
   1124       1.1  riastrad 
   1125      1.39  riastrad 	le64enc(&nonce[4], counter);
   1126       1.1  riastrad 
   1127       1.1  riastrad 	error = crypto_aead_chacha20poly1305_ietf_decrypt(out, &outsize, NULL,
   1128       1.1  riastrad 	    encrypted, encryptedsize, auth, authlen, nonce, key);
   1129       1.1  riastrad 	if (error == 0)
   1130       1.1  riastrad 		KASSERT(outsize == expected_outsize);
   1131       1.1  riastrad 	return error;
   1132       1.1  riastrad }
   1133       1.1  riastrad 
   1134       1.1  riastrad static void
   1135       1.1  riastrad wg_algo_xaead_enc(uint8_t out[], const size_t expected_outsize,
   1136       1.1  riastrad     const uint8_t key[], const uint8_t plain[], const size_t plainsize,
   1137       1.1  riastrad     const uint8_t auth[], size_t authlen,
   1138       1.1  riastrad     const uint8_t nonce[WG_SALT_LEN])
   1139       1.1  riastrad {
   1140       1.1  riastrad 	long long unsigned int outsize;
   1141       1.1  riastrad 	int error __diagused;
   1142       1.1  riastrad 
   1143       1.1  riastrad 	CTASSERT(WG_SALT_LEN == crypto_aead_xchacha20poly1305_ietf_NPUBBYTES);
   1144      1.14  riastrad 	error = crypto_aead_xchacha20poly1305_ietf_encrypt(out, &outsize,
   1145      1.14  riastrad 	    plain, plainsize, auth, authlen, NULL, nonce, key);
   1146       1.1  riastrad 	KASSERT(error == 0);
   1147       1.1  riastrad 	KASSERT(outsize == expected_outsize);
   1148       1.1  riastrad }
   1149       1.1  riastrad 
   1150       1.1  riastrad static int
   1151       1.1  riastrad wg_algo_xaead_dec(uint8_t out[], const size_t expected_outsize,
   1152      1.36  riastrad     const uint8_t key[], const uint8_t encrypted[], const size_t encryptedsize,
   1153       1.1  riastrad     const uint8_t auth[], size_t authlen,
   1154       1.1  riastrad     const uint8_t nonce[WG_SALT_LEN])
   1155       1.1  riastrad {
   1156       1.1  riastrad 	long long unsigned int outsize;
   1157       1.1  riastrad 	int error;
   1158       1.1  riastrad 
   1159       1.1  riastrad 	error = crypto_aead_xchacha20poly1305_ietf_decrypt(out, &outsize, NULL,
   1160       1.1  riastrad 	    encrypted, encryptedsize, auth, authlen, nonce, key);
   1161       1.1  riastrad 	if (error == 0)
   1162       1.1  riastrad 		KASSERT(outsize == expected_outsize);
   1163       1.1  riastrad 	return error;
   1164       1.1  riastrad }
   1165       1.1  riastrad 
   1166       1.1  riastrad static void
   1167      1.15  riastrad wg_algo_tai64n(wg_timestamp_t timestamp)
   1168       1.1  riastrad {
   1169       1.1  riastrad 	struct timespec ts;
   1170       1.1  riastrad 
   1171       1.1  riastrad 	/* FIXME strict TAI64N (https://cr.yp.to/libtai/tai64.html) */
   1172       1.1  riastrad 	getnanotime(&ts);
   1173       1.1  riastrad 	/* TAI64 label in external TAI64 format */
   1174      1.65  christos 	be32enc(timestamp, 0x40000000U + (uint32_t)(ts.tv_sec >> 32));
   1175       1.1  riastrad 	/* second beginning from 1970 TAI */
   1176      1.65  christos 	be32enc(timestamp + 4, (uint32_t)(ts.tv_sec & 0xffffffffU));
   1177       1.1  riastrad 	/* nanosecond in big-endian format */
   1178      1.65  christos 	be32enc(timestamp + 8, (uint32_t)ts.tv_nsec);
   1179       1.1  riastrad }
   1180       1.1  riastrad 
   1181      1.49  riastrad /*
   1182      1.49  riastrad  * wg_get_stable_session(wgp, psref)
   1183      1.49  riastrad  *
   1184      1.49  riastrad  *	Get a passive reference to the current stable session, or
   1185      1.49  riastrad  *	return NULL if there is no current stable session.
   1186      1.49  riastrad  *
   1187      1.49  riastrad  *	The pointer is always there but the session is not necessarily
   1188      1.49  riastrad  *	ESTABLISHED; if it is not ESTABLISHED, return NULL.  However,
   1189      1.49  riastrad  *	the session may transition from ESTABLISHED to DESTROYING while
   1190      1.49  riastrad  *	holding the passive reference.
   1191      1.49  riastrad  */
   1192       1.1  riastrad static struct wg_session *
   1193      1.49  riastrad wg_get_stable_session(struct wg_peer *wgp, struct psref *psref)
   1194       1.1  riastrad {
   1195       1.1  riastrad 	int s;
   1196       1.1  riastrad 	struct wg_session *wgs;
   1197       1.1  riastrad 
   1198       1.1  riastrad 	s = pserialize_read_enter();
   1199      1.49  riastrad 	wgs = atomic_load_consume(&wgp->wgp_session_stable);
   1200      1.49  riastrad 	if (__predict_false(wgs->wgs_state != WGS_STATE_ESTABLISHED))
   1201      1.49  riastrad 		wgs = NULL;
   1202      1.49  riastrad 	else
   1203      1.49  riastrad 		psref_acquire(psref, &wgs->wgs_psref, wg_psref_class);
   1204       1.1  riastrad 	pserialize_read_exit(s);
   1205       1.1  riastrad 
   1206       1.1  riastrad 	return wgs;
   1207       1.1  riastrad }
   1208       1.1  riastrad 
   1209       1.1  riastrad static void
   1210      1.49  riastrad wg_put_session(struct wg_session *wgs, struct psref *psref)
   1211       1.1  riastrad {
   1212       1.1  riastrad 
   1213      1.49  riastrad 	psref_release(psref, &wgs->wgs_psref, wg_psref_class);
   1214       1.1  riastrad }
   1215       1.1  riastrad 
   1216       1.1  riastrad static void
   1217      1.49  riastrad wg_destroy_session(struct wg_softc *wg, struct wg_session *wgs)
   1218       1.1  riastrad {
   1219      1.49  riastrad 	struct wg_peer *wgp = wgs->wgs_peer;
   1220      1.49  riastrad 	struct wg_session *wgs0 __diagused;
   1221      1.49  riastrad 	void *garbage;
   1222      1.49  riastrad 
   1223      1.49  riastrad 	KASSERT(mutex_owned(wgp->wgp_lock));
   1224      1.49  riastrad 	KASSERT(wgs->wgs_state != WGS_STATE_UNKNOWN);
   1225       1.1  riastrad 
   1226      1.49  riastrad 	/* Remove the session from the table.  */
   1227      1.49  riastrad 	wgs0 = thmap_del(wg->wg_sessions_byindex,
   1228      1.49  riastrad 	    &wgs->wgs_local_index, sizeof(wgs->wgs_local_index));
   1229      1.49  riastrad 	KASSERT(wgs0 == wgs);
   1230      1.49  riastrad 	garbage = thmap_stage_gc(wg->wg_sessions_byindex);
   1231       1.1  riastrad 
   1232      1.49  riastrad 	/* Wait for passive references to drain.  */
   1233      1.49  riastrad 	pserialize_perform(wgp->wgp_psz);
   1234      1.49  riastrad 	psref_target_destroy(&wgs->wgs_psref, wg_psref_class);
   1235       1.1  riastrad 
   1236      1.49  riastrad 	/* Free memory, zero state, and transition to UNKNOWN.  */
   1237      1.49  riastrad 	thmap_gc(wg->wg_sessions_byindex, garbage);
   1238      1.49  riastrad 	wg_clear_states(wgs);
   1239      1.49  riastrad 	wgs->wgs_state = WGS_STATE_UNKNOWN;
   1240       1.1  riastrad }
   1241       1.1  riastrad 
   1242      1.49  riastrad /*
   1243      1.49  riastrad  * wg_get_session_index(wg, wgs)
   1244      1.49  riastrad  *
   1245      1.49  riastrad  *	Choose a session index for wgs->wgs_local_index, and store it
   1246      1.49  riastrad  *	in wg's table of sessions by index.
   1247      1.49  riastrad  *
   1248      1.49  riastrad  *	wgs must be the unstable session of its peer, and must be
   1249      1.49  riastrad  *	transitioning out of the UNKNOWN state.
   1250      1.49  riastrad  */
   1251       1.1  riastrad static void
   1252      1.49  riastrad wg_get_session_index(struct wg_softc *wg, struct wg_session *wgs)
   1253       1.1  riastrad {
   1254      1.49  riastrad 	struct wg_peer *wgp __diagused = wgs->wgs_peer;
   1255      1.37  riastrad 	struct wg_session *wgs0;
   1256      1.37  riastrad 	uint32_t index;
   1257      1.37  riastrad 
   1258      1.49  riastrad 	KASSERT(mutex_owned(wgp->wgp_lock));
   1259      1.49  riastrad 	KASSERT(wgs == wgp->wgp_session_unstable);
   1260      1.49  riastrad 	KASSERT(wgs->wgs_state == WGS_STATE_UNKNOWN);
   1261      1.37  riastrad 
   1262      1.49  riastrad 	do {
   1263      1.49  riastrad 		/* Pick a uniform random index.  */
   1264      1.49  riastrad 		index = cprng_strong32();
   1265      1.49  riastrad 
   1266      1.49  riastrad 		/* Try to take it.  */
   1267      1.49  riastrad 		wgs->wgs_local_index = index;
   1268      1.49  riastrad 		wgs0 = thmap_put(wg->wg_sessions_byindex,
   1269      1.49  riastrad 		    &wgs->wgs_local_index, sizeof wgs->wgs_local_index, wgs);
   1270      1.37  riastrad 
   1271      1.49  riastrad 		/* If someone else beat us, start over.  */
   1272      1.49  riastrad 	} while (__predict_false(wgs0 != wgs));
   1273      1.49  riastrad }
   1274      1.37  riastrad 
   1275      1.49  riastrad /*
   1276      1.49  riastrad  * wg_put_session_index(wg, wgs)
   1277      1.49  riastrad  *
   1278      1.49  riastrad  *	Remove wgs from the table of sessions by index, wait for any
   1279      1.49  riastrad  *	passive references to drain, and transition the session to the
   1280      1.49  riastrad  *	UNKNOWN state.
   1281      1.49  riastrad  *
   1282      1.49  riastrad  *	wgs must be the unstable session of its peer, and must not be
   1283      1.49  riastrad  *	UNKNOWN or ESTABLISHED.
   1284      1.49  riastrad  */
   1285      1.49  riastrad static void
   1286      1.49  riastrad wg_put_session_index(struct wg_softc *wg, struct wg_session *wgs)
   1287      1.49  riastrad {
   1288      1.52  riastrad 	struct wg_peer *wgp __diagused = wgs->wgs_peer;
   1289      1.37  riastrad 
   1290      1.49  riastrad 	KASSERT(mutex_owned(wgp->wgp_lock));
   1291      1.49  riastrad 	KASSERT(wgs == wgp->wgp_session_unstable);
   1292      1.49  riastrad 	KASSERT(wgs->wgs_state != WGS_STATE_UNKNOWN);
   1293      1.49  riastrad 	KASSERT(wgs->wgs_state != WGS_STATE_ESTABLISHED);
   1294      1.37  riastrad 
   1295      1.49  riastrad 	wg_destroy_session(wg, wgs);
   1296      1.49  riastrad 	psref_target_init(&wgs->wgs_psref, wg_psref_class);
   1297      1.37  riastrad }
   1298      1.37  riastrad 
   1299       1.1  riastrad /*
   1300       1.1  riastrad  * Handshake patterns
   1301       1.1  riastrad  *
   1302       1.1  riastrad  * [W] 5: "These messages use the "IK" pattern from Noise"
   1303       1.1  riastrad  * [N] 7.5. Interactive handshake patterns (fundamental)
   1304       1.1  riastrad  *     "The first character refers to the initiators static key:"
   1305       1.1  riastrad  *     "I = Static key for initiator Immediately transmitted to responder,
   1306       1.1  riastrad  *          despite reduced or absent identity hiding"
   1307       1.1  riastrad  *     "The second character refers to the responders static key:"
   1308       1.1  riastrad  *     "K = Static key for responder Known to initiator"
   1309       1.1  riastrad  *     "IK:
   1310       1.1  riastrad  *        <- s
   1311       1.1  riastrad  *        ...
   1312       1.1  riastrad  *        -> e, es, s, ss
   1313       1.1  riastrad  *        <- e, ee, se"
   1314       1.1  riastrad  * [N] 9.4. Pattern modifiers
   1315       1.1  riastrad  *     "IKpsk2:
   1316       1.1  riastrad  *        <- s
   1317       1.1  riastrad  *        ...
   1318       1.1  riastrad  *        -> e, es, s, ss
   1319       1.1  riastrad  *        <- e, ee, se, psk"
   1320       1.1  riastrad  */
   1321       1.1  riastrad static void
   1322       1.1  riastrad wg_fill_msg_init(struct wg_softc *wg, struct wg_peer *wgp,
   1323       1.1  riastrad     struct wg_session *wgs, struct wg_msg_init *wgmi)
   1324       1.1  riastrad {
   1325       1.1  riastrad 	uint8_t ckey[WG_CHAINING_KEY_LEN]; /* [W] 5.4.2: Ci */
   1326       1.1  riastrad 	uint8_t hash[WG_HASH_LEN]; /* [W] 5.4.2: Hi */
   1327       1.1  riastrad 	uint8_t cipher_key[WG_CIPHER_KEY_LEN];
   1328       1.1  riastrad 	uint8_t pubkey[WG_EPHEMERAL_KEY_LEN];
   1329       1.1  riastrad 	uint8_t privkey[WG_EPHEMERAL_KEY_LEN];
   1330       1.1  riastrad 
   1331      1.49  riastrad 	KASSERT(mutex_owned(wgp->wgp_lock));
   1332      1.49  riastrad 	KASSERT(wgs == wgp->wgp_session_unstable);
   1333      1.49  riastrad 	KASSERT(wgs->wgs_state == WGS_STATE_INIT_ACTIVE);
   1334      1.49  riastrad 
   1335      1.39  riastrad 	wgmi->wgmi_type = htole32(WG_MSG_TYPE_INIT);
   1336      1.49  riastrad 	wgmi->wgmi_sender = wgs->wgs_local_index;
   1337       1.1  riastrad 
   1338       1.1  riastrad 	/* [W] 5.4.2: First Message: Initiator to Responder */
   1339       1.1  riastrad 
   1340       1.1  riastrad 	/* Ci := HASH(CONSTRUCTION) */
   1341       1.1  riastrad 	/* Hi := HASH(Ci || IDENTIFIER) */
   1342       1.1  riastrad 	wg_init_key_and_hash(ckey, hash);
   1343       1.1  riastrad 	/* Hi := HASH(Hi || Sr^pub) */
   1344       1.1  riastrad 	wg_algo_hash(hash, wgp->wgp_pubkey, sizeof(wgp->wgp_pubkey));
   1345       1.1  riastrad 
   1346       1.1  riastrad 	WG_DUMP_HASH("hash", hash);
   1347       1.1  riastrad 
   1348       1.1  riastrad 	/* [N] 2.2: "e" */
   1349       1.1  riastrad 	/* Ei^priv, Ei^pub := DH-GENERATE() */
   1350       1.1  riastrad 	wg_algo_generate_keypair(pubkey, privkey);
   1351       1.1  riastrad 	/* Ci := KDF1(Ci, Ei^pub) */
   1352       1.1  riastrad 	wg_algo_kdf(ckey, NULL, NULL, ckey, pubkey, sizeof(pubkey));
   1353       1.1  riastrad 	/* msg.ephemeral := Ei^pub */
   1354       1.1  riastrad 	memcpy(wgmi->wgmi_ephemeral, pubkey, sizeof(wgmi->wgmi_ephemeral));
   1355       1.1  riastrad 	/* Hi := HASH(Hi || msg.ephemeral) */
   1356       1.1  riastrad 	wg_algo_hash(hash, pubkey, sizeof(pubkey));
   1357       1.1  riastrad 
   1358       1.1  riastrad 	WG_DUMP_HASH("ckey", ckey);
   1359       1.1  riastrad 	WG_DUMP_HASH("hash", hash);
   1360       1.1  riastrad 
   1361       1.1  riastrad 	/* [N] 2.2: "es" */
   1362       1.1  riastrad 	/* Ci, k := KDF2(Ci, DH(Ei^priv, Sr^pub)) */
   1363       1.1  riastrad 	wg_algo_dh_kdf(ckey, cipher_key, privkey, wgp->wgp_pubkey);
   1364       1.1  riastrad 
   1365       1.1  riastrad 	/* [N] 2.2: "s" */
   1366       1.1  riastrad 	/* msg.static := AEAD(k, 0, Si^pub, Hi) */
   1367       1.1  riastrad 	wg_algo_aead_enc(wgmi->wgmi_static, sizeof(wgmi->wgmi_static),
   1368       1.1  riastrad 	    cipher_key, 0, wg->wg_pubkey, sizeof(wg->wg_pubkey),
   1369       1.1  riastrad 	    hash, sizeof(hash));
   1370       1.1  riastrad 	/* Hi := HASH(Hi || msg.static) */
   1371       1.1  riastrad 	wg_algo_hash(hash, wgmi->wgmi_static, sizeof(wgmi->wgmi_static));
   1372       1.1  riastrad 
   1373       1.1  riastrad 	WG_DUMP_HASH48("wgmi_static", wgmi->wgmi_static);
   1374       1.1  riastrad 
   1375       1.1  riastrad 	/* [N] 2.2: "ss" */
   1376       1.1  riastrad 	/* Ci, k := KDF2(Ci, DH(Si^priv, Sr^pub)) */
   1377       1.1  riastrad 	wg_algo_dh_kdf(ckey, cipher_key, wg->wg_privkey, wgp->wgp_pubkey);
   1378       1.1  riastrad 
   1379       1.1  riastrad 	/* msg.timestamp := AEAD(k, TIMESTAMP(), Hi) */
   1380       1.1  riastrad 	wg_timestamp_t timestamp;
   1381       1.1  riastrad 	wg_algo_tai64n(timestamp);
   1382       1.1  riastrad 	wg_algo_aead_enc(wgmi->wgmi_timestamp, sizeof(wgmi->wgmi_timestamp),
   1383       1.1  riastrad 	    cipher_key, 0, timestamp, sizeof(timestamp), hash, sizeof(hash));
   1384       1.1  riastrad 	/* Hi := HASH(Hi || msg.timestamp) */
   1385       1.1  riastrad 	wg_algo_hash(hash, wgmi->wgmi_timestamp, sizeof(wgmi->wgmi_timestamp));
   1386       1.1  riastrad 
   1387       1.1  riastrad 	/* [W] 5.4.4 Cookie MACs */
   1388       1.1  riastrad 	wg_algo_mac_mac1(wgmi->wgmi_mac1, sizeof(wgmi->wgmi_mac1),
   1389       1.1  riastrad 	    wgp->wgp_pubkey, sizeof(wgp->wgp_pubkey),
   1390      1.17  riastrad 	    (const uint8_t *)wgmi, offsetof(struct wg_msg_init, wgmi_mac1));
   1391       1.1  riastrad 	/* Need mac1 to decrypt a cookie from a cookie message */
   1392       1.1  riastrad 	memcpy(wgp->wgp_last_sent_mac1, wgmi->wgmi_mac1,
   1393       1.1  riastrad 	    sizeof(wgp->wgp_last_sent_mac1));
   1394       1.1  riastrad 	wgp->wgp_last_sent_mac1_valid = true;
   1395       1.1  riastrad 
   1396       1.1  riastrad 	if (wgp->wgp_latest_cookie_time == 0 ||
   1397       1.1  riastrad 	    (time_uptime - wgp->wgp_latest_cookie_time) >= WG_COOKIE_TIME)
   1398       1.1  riastrad 		memset(wgmi->wgmi_mac2, 0, sizeof(wgmi->wgmi_mac2));
   1399       1.1  riastrad 	else {
   1400       1.1  riastrad 		wg_algo_mac(wgmi->wgmi_mac2, sizeof(wgmi->wgmi_mac2),
   1401       1.1  riastrad 		    wgp->wgp_latest_cookie, WG_COOKIE_LEN,
   1402      1.17  riastrad 		    (const uint8_t *)wgmi,
   1403      1.17  riastrad 		    offsetof(struct wg_msg_init, wgmi_mac2),
   1404       1.1  riastrad 		    NULL, 0);
   1405       1.1  riastrad 	}
   1406       1.1  riastrad 
   1407       1.1  riastrad 	memcpy(wgs->wgs_ephemeral_key_pub, pubkey, sizeof(pubkey));
   1408       1.1  riastrad 	memcpy(wgs->wgs_ephemeral_key_priv, privkey, sizeof(privkey));
   1409       1.1  riastrad 	memcpy(wgs->wgs_handshake_hash, hash, sizeof(hash));
   1410       1.1  riastrad 	memcpy(wgs->wgs_chaining_key, ckey, sizeof(ckey));
   1411      1.49  riastrad 	WG_DLOG("%s: sender=%x\n", __func__, wgs->wgs_local_index);
   1412       1.1  riastrad }
   1413       1.1  riastrad 
   1414      1.63  riastrad static void __noinline
   1415       1.1  riastrad wg_handle_msg_init(struct wg_softc *wg, const struct wg_msg_init *wgmi,
   1416       1.1  riastrad     const struct sockaddr *src)
   1417       1.1  riastrad {
   1418       1.1  riastrad 	uint8_t ckey[WG_CHAINING_KEY_LEN]; /* [W] 5.4.2: Ci */
   1419       1.1  riastrad 	uint8_t hash[WG_HASH_LEN]; /* [W] 5.4.2: Hi */
   1420       1.1  riastrad 	uint8_t cipher_key[WG_CIPHER_KEY_LEN];
   1421       1.1  riastrad 	uint8_t peer_pubkey[WG_STATIC_KEY_LEN];
   1422       1.1  riastrad 	struct wg_peer *wgp;
   1423       1.1  riastrad 	struct wg_session *wgs;
   1424       1.1  riastrad 	int error, ret;
   1425       1.1  riastrad 	struct psref psref_peer;
   1426       1.1  riastrad 	uint8_t mac1[WG_MAC_LEN];
   1427       1.1  riastrad 
   1428       1.1  riastrad 	WG_TRACE("init msg received");
   1429       1.1  riastrad 
   1430      1.44  riastrad 	wg_algo_mac_mac1(mac1, sizeof(mac1),
   1431      1.44  riastrad 	    wg->wg_pubkey, sizeof(wg->wg_pubkey),
   1432      1.44  riastrad 	    (const uint8_t *)wgmi, offsetof(struct wg_msg_init, wgmi_mac1));
   1433      1.44  riastrad 
   1434      1.44  riastrad 	/*
   1435      1.44  riastrad 	 * [W] 5.3: Denial of Service Mitigation & Cookies
   1436      1.44  riastrad 	 * "the responder, ..., must always reject messages with an invalid
   1437      1.44  riastrad 	 *  msg.mac1"
   1438      1.44  riastrad 	 */
   1439      1.44  riastrad 	if (!consttime_memequal(mac1, wgmi->wgmi_mac1, sizeof(mac1))) {
   1440      1.44  riastrad 		WG_DLOG("mac1 is invalid\n");
   1441      1.44  riastrad 		return;
   1442      1.44  riastrad 	}
   1443      1.44  riastrad 
   1444       1.1  riastrad 	/*
   1445       1.1  riastrad 	 * [W] 5.4.2: First Message: Initiator to Responder
   1446       1.1  riastrad 	 * "When the responder receives this message, it does the same
   1447       1.1  riastrad 	 *  operations so that its final state variables are identical,
   1448       1.1  riastrad 	 *  replacing the operands of the DH function to produce equivalent
   1449       1.1  riastrad 	 *  values."
   1450       1.1  riastrad 	 *  Note that the following comments of operations are just copies of
   1451       1.1  riastrad 	 *  the initiator's ones.
   1452       1.1  riastrad 	 */
   1453       1.1  riastrad 
   1454       1.1  riastrad 	/* Ci := HASH(CONSTRUCTION) */
   1455       1.1  riastrad 	/* Hi := HASH(Ci || IDENTIFIER) */
   1456       1.1  riastrad 	wg_init_key_and_hash(ckey, hash);
   1457       1.1  riastrad 	/* Hi := HASH(Hi || Sr^pub) */
   1458       1.1  riastrad 	wg_algo_hash(hash, wg->wg_pubkey, sizeof(wg->wg_pubkey));
   1459       1.1  riastrad 
   1460       1.1  riastrad 	/* [N] 2.2: "e" */
   1461       1.1  riastrad 	/* Ci := KDF1(Ci, Ei^pub) */
   1462       1.1  riastrad 	wg_algo_kdf(ckey, NULL, NULL, ckey, wgmi->wgmi_ephemeral,
   1463       1.1  riastrad 	    sizeof(wgmi->wgmi_ephemeral));
   1464       1.1  riastrad 	/* Hi := HASH(Hi || msg.ephemeral) */
   1465       1.1  riastrad 	wg_algo_hash(hash, wgmi->wgmi_ephemeral, sizeof(wgmi->wgmi_ephemeral));
   1466       1.1  riastrad 
   1467       1.1  riastrad 	WG_DUMP_HASH("ckey", ckey);
   1468       1.1  riastrad 
   1469       1.1  riastrad 	/* [N] 2.2: "es" */
   1470       1.1  riastrad 	/* Ci, k := KDF2(Ci, DH(Ei^priv, Sr^pub)) */
   1471       1.1  riastrad 	wg_algo_dh_kdf(ckey, cipher_key, wg->wg_privkey, wgmi->wgmi_ephemeral);
   1472       1.1  riastrad 
   1473       1.1  riastrad 	WG_DUMP_HASH48("wgmi_static", wgmi->wgmi_static);
   1474       1.1  riastrad 
   1475       1.1  riastrad 	/* [N] 2.2: "s" */
   1476       1.1  riastrad 	/* msg.static := AEAD(k, 0, Si^pub, Hi) */
   1477       1.1  riastrad 	error = wg_algo_aead_dec(peer_pubkey, WG_STATIC_KEY_LEN, cipher_key, 0,
   1478       1.1  riastrad 	    wgmi->wgmi_static, sizeof(wgmi->wgmi_static), hash, sizeof(hash));
   1479       1.1  riastrad 	if (error != 0) {
   1480       1.1  riastrad 		WG_LOG_RATECHECK(&wg->wg_ppsratecheck, LOG_DEBUG,
   1481      1.76  jakllsch 		    "%s: wg_algo_aead_dec for secret key failed\n",
   1482      1.76  jakllsch 		    if_name(&wg->wg_if));
   1483       1.1  riastrad 		return;
   1484       1.1  riastrad 	}
   1485       1.1  riastrad 	/* Hi := HASH(Hi || msg.static) */
   1486       1.1  riastrad 	wg_algo_hash(hash, wgmi->wgmi_static, sizeof(wgmi->wgmi_static));
   1487       1.1  riastrad 
   1488       1.1  riastrad 	wgp = wg_lookup_peer_by_pubkey(wg, peer_pubkey, &psref_peer);
   1489       1.1  riastrad 	if (wgp == NULL) {
   1490       1.1  riastrad 		WG_DLOG("peer not found\n");
   1491       1.1  riastrad 		return;
   1492       1.1  riastrad 	}
   1493       1.1  riastrad 
   1494      1.49  riastrad 	/*
   1495      1.49  riastrad 	 * Lock the peer to serialize access to cookie state.
   1496      1.49  riastrad 	 *
   1497      1.49  riastrad 	 * XXX Can we safely avoid holding the lock across DH?  Take it
   1498      1.49  riastrad 	 * just to verify mac2 and then unlock/DH/lock?
   1499      1.49  riastrad 	 */
   1500      1.49  riastrad 	mutex_enter(wgp->wgp_lock);
   1501      1.49  riastrad 
   1502       1.1  riastrad 	if (__predict_false(wg_is_underload(wg, wgp, WG_MSG_TYPE_INIT))) {
   1503       1.1  riastrad 		WG_TRACE("under load");
   1504       1.1  riastrad 		/*
   1505       1.1  riastrad 		 * [W] 5.3: Denial of Service Mitigation & Cookies
   1506       1.1  riastrad 		 * "the responder, ..., and when under load may reject messages
   1507       1.1  riastrad 		 *  with an invalid msg.mac2.  If the responder receives a
   1508       1.1  riastrad 		 *  message with a valid msg.mac1 yet with an invalid msg.mac2,
   1509       1.1  riastrad 		 *  and is under load, it may respond with a cookie reply
   1510       1.1  riastrad 		 *  message"
   1511       1.1  riastrad 		 */
   1512       1.1  riastrad 		uint8_t zero[WG_MAC_LEN] = {0};
   1513      1.13  riastrad 		if (consttime_memequal(wgmi->wgmi_mac2, zero, sizeof(zero))) {
   1514       1.1  riastrad 			WG_TRACE("sending a cookie message: no cookie included");
   1515       1.1  riastrad 			(void)wg_send_cookie_msg(wg, wgp, wgmi->wgmi_sender,
   1516       1.1  riastrad 			    wgmi->wgmi_mac1, src);
   1517      1.49  riastrad 			goto out;
   1518       1.1  riastrad 		}
   1519       1.1  riastrad 		if (!wgp->wgp_last_sent_cookie_valid) {
   1520       1.1  riastrad 			WG_TRACE("sending a cookie message: no cookie sent ever");
   1521       1.1  riastrad 			(void)wg_send_cookie_msg(wg, wgp, wgmi->wgmi_sender,
   1522       1.1  riastrad 			    wgmi->wgmi_mac1, src);
   1523      1.49  riastrad 			goto out;
   1524       1.1  riastrad 		}
   1525       1.1  riastrad 		uint8_t mac2[WG_MAC_LEN];
   1526       1.1  riastrad 		wg_algo_mac(mac2, sizeof(mac2), wgp->wgp_last_sent_cookie,
   1527       1.1  riastrad 		    WG_COOKIE_LEN, (const uint8_t *)wgmi,
   1528       1.1  riastrad 		    offsetof(struct wg_msg_init, wgmi_mac2), NULL, 0);
   1529      1.13  riastrad 		if (!consttime_memequal(mac2, wgmi->wgmi_mac2, sizeof(mac2))) {
   1530       1.1  riastrad 			WG_DLOG("mac2 is invalid\n");
   1531      1.49  riastrad 			goto out;
   1532       1.1  riastrad 		}
   1533       1.1  riastrad 		WG_TRACE("under load, but continue to sending");
   1534       1.1  riastrad 	}
   1535       1.1  riastrad 
   1536      1.46  riastrad 	/* [N] 2.2: "ss" */
   1537      1.46  riastrad 	/* Ci, k := KDF2(Ci, DH(Si^priv, Sr^pub)) */
   1538      1.46  riastrad 	wg_algo_dh_kdf(ckey, cipher_key, wg->wg_privkey, wgp->wgp_pubkey);
   1539      1.46  riastrad 
   1540      1.46  riastrad 	/* msg.timestamp := AEAD(k, TIMESTAMP(), Hi) */
   1541      1.46  riastrad 	wg_timestamp_t timestamp;
   1542      1.46  riastrad 	error = wg_algo_aead_dec(timestamp, sizeof(timestamp), cipher_key, 0,
   1543      1.46  riastrad 	    wgmi->wgmi_timestamp, sizeof(wgmi->wgmi_timestamp),
   1544      1.46  riastrad 	    hash, sizeof(hash));
   1545      1.46  riastrad 	if (error != 0) {
   1546      1.46  riastrad 		WG_LOG_RATECHECK(&wgp->wgp_ppsratecheck, LOG_DEBUG,
   1547      1.76  jakllsch 		    "%s: peer %s: wg_algo_aead_dec for timestamp failed\n",
   1548      1.76  jakllsch 		    if_name(&wg->wg_if), wgp->wgp_name);
   1549      1.49  riastrad 		goto out;
   1550      1.46  riastrad 	}
   1551      1.46  riastrad 	/* Hi := HASH(Hi || msg.timestamp) */
   1552      1.46  riastrad 	wg_algo_hash(hash, wgmi->wgmi_timestamp, sizeof(wgmi->wgmi_timestamp));
   1553      1.46  riastrad 
   1554       1.1  riastrad 	/*
   1555      1.14  riastrad 	 * [W] 5.1 "The responder keeps track of the greatest timestamp
   1556      1.14  riastrad 	 *      received per peer and discards packets containing
   1557      1.14  riastrad 	 *      timestamps less than or equal to it."
   1558       1.1  riastrad 	 */
   1559       1.1  riastrad 	ret = memcmp(timestamp, wgp->wgp_timestamp_latest_init,
   1560       1.1  riastrad 	    sizeof(timestamp));
   1561       1.1  riastrad 	if (ret <= 0) {
   1562       1.1  riastrad 		WG_LOG_RATECHECK(&wgp->wgp_ppsratecheck, LOG_DEBUG,
   1563      1.76  jakllsch 		    "%s: peer %s: invalid init msg: timestamp is old\n",
   1564      1.76  jakllsch 		    if_name(&wg->wg_if), wgp->wgp_name);
   1565       1.1  riastrad 		goto out;
   1566       1.1  riastrad 	}
   1567       1.1  riastrad 	memcpy(wgp->wgp_timestamp_latest_init, timestamp, sizeof(timestamp));
   1568       1.1  riastrad 
   1569      1.49  riastrad 	/*
   1570      1.49  riastrad 	 * Message is good -- we're committing to handle it now, unless
   1571      1.49  riastrad 	 * we were already initiating a session.
   1572      1.49  riastrad 	 */
   1573      1.49  riastrad 	wgs = wgp->wgp_session_unstable;
   1574      1.49  riastrad 	switch (wgs->wgs_state) {
   1575      1.49  riastrad 	case WGS_STATE_UNKNOWN:		/* new session initiated by peer */
   1576      1.49  riastrad 		wg_get_session_index(wg, wgs);
   1577      1.49  riastrad 		break;
   1578      1.49  riastrad 	case WGS_STATE_INIT_ACTIVE:	/* we're already initiating, drop */
   1579      1.49  riastrad 		WG_TRACE("Session already initializing, ignoring the message");
   1580      1.49  riastrad 		goto out;
   1581      1.49  riastrad 	case WGS_STATE_INIT_PASSIVE:	/* peer is retrying, start over */
   1582      1.49  riastrad 		WG_TRACE("Session already initializing, destroying old states");
   1583      1.49  riastrad 		wg_clear_states(wgs);
   1584      1.49  riastrad 		/* keep session index */
   1585      1.49  riastrad 		break;
   1586      1.49  riastrad 	case WGS_STATE_ESTABLISHED:	/* can't happen */
   1587      1.49  riastrad 		panic("unstable session can't be established");
   1588      1.49  riastrad 		break;
   1589      1.49  riastrad 	case WGS_STATE_DESTROYING:	/* rekey initiated by peer */
   1590      1.49  riastrad 		WG_TRACE("Session destroying, but force to clear");
   1591      1.49  riastrad 		callout_stop(&wgp->wgp_session_dtor_timer);
   1592      1.49  riastrad 		wg_clear_states(wgs);
   1593      1.49  riastrad 		/* keep session index */
   1594      1.49  riastrad 		break;
   1595      1.49  riastrad 	default:
   1596      1.49  riastrad 		panic("invalid session state: %d", wgs->wgs_state);
   1597      1.49  riastrad 	}
   1598      1.49  riastrad 	wgs->wgs_state = WGS_STATE_INIT_PASSIVE;
   1599      1.49  riastrad 
   1600       1.1  riastrad 	memcpy(wgs->wgs_handshake_hash, hash, sizeof(hash));
   1601       1.1  riastrad 	memcpy(wgs->wgs_chaining_key, ckey, sizeof(ckey));
   1602       1.1  riastrad 	memcpy(wgs->wgs_ephemeral_key_peer, wgmi->wgmi_ephemeral,
   1603       1.1  riastrad 	    sizeof(wgmi->wgmi_ephemeral));
   1604       1.1  riastrad 
   1605       1.1  riastrad 	wg_update_endpoint_if_necessary(wgp, src);
   1606       1.1  riastrad 
   1607      1.49  riastrad 	(void)wg_send_handshake_msg_resp(wg, wgp, wgs, wgmi);
   1608       1.1  riastrad 
   1609       1.1  riastrad 	wg_calculate_keys(wgs, false);
   1610       1.1  riastrad 	wg_clear_states(wgs);
   1611       1.1  riastrad 
   1612       1.1  riastrad out:
   1613      1.49  riastrad 	mutex_exit(wgp->wgp_lock);
   1614       1.1  riastrad 	wg_put_peer(wgp, &psref_peer);
   1615       1.1  riastrad }
   1616       1.1  riastrad 
   1617       1.1  riastrad static struct socket *
   1618      1.55  riastrad wg_get_so_by_af(struct wg_softc *wg, const int af)
   1619       1.1  riastrad {
   1620       1.1  riastrad 
   1621      1.62  riastrad 	switch (af) {
   1622      1.62  riastrad #ifdef INET
   1623      1.62  riastrad 	case AF_INET:
   1624      1.62  riastrad 		return wg->wg_so4;
   1625      1.62  riastrad #endif
   1626      1.62  riastrad #ifdef INET6
   1627      1.62  riastrad 	case AF_INET6:
   1628      1.62  riastrad 		return wg->wg_so6;
   1629      1.62  riastrad #endif
   1630      1.62  riastrad 	default:
   1631      1.62  riastrad 		panic("wg: no such af: %d", af);
   1632      1.62  riastrad 	}
   1633       1.1  riastrad }
   1634       1.1  riastrad 
   1635       1.1  riastrad static struct socket *
   1636      1.47  riastrad wg_get_so_by_peer(struct wg_peer *wgp, struct wg_sockaddr *wgsa)
   1637       1.1  riastrad {
   1638       1.1  riastrad 
   1639      1.55  riastrad 	return wg_get_so_by_af(wgp->wgp_sc, wgsa_family(wgsa));
   1640       1.1  riastrad }
   1641       1.1  riastrad 
   1642       1.1  riastrad static struct wg_sockaddr *
   1643       1.1  riastrad wg_get_endpoint_sa(struct wg_peer *wgp, struct psref *psref)
   1644       1.1  riastrad {
   1645       1.1  riastrad 	struct wg_sockaddr *wgsa;
   1646       1.1  riastrad 	int s;
   1647       1.1  riastrad 
   1648       1.1  riastrad 	s = pserialize_read_enter();
   1649      1.47  riastrad 	wgsa = atomic_load_consume(&wgp->wgp_endpoint);
   1650       1.1  riastrad 	psref_acquire(psref, &wgsa->wgsa_psref, wg_psref_class);
   1651       1.1  riastrad 	pserialize_read_exit(s);
   1652       1.1  riastrad 
   1653       1.1  riastrad 	return wgsa;
   1654       1.1  riastrad }
   1655       1.1  riastrad 
   1656       1.1  riastrad static void
   1657       1.1  riastrad wg_put_sa(struct wg_peer *wgp, struct wg_sockaddr *wgsa, struct psref *psref)
   1658       1.1  riastrad {
   1659       1.1  riastrad 
   1660       1.1  riastrad 	psref_release(psref, &wgsa->wgsa_psref, wg_psref_class);
   1661       1.1  riastrad }
   1662       1.1  riastrad 
   1663       1.1  riastrad static int
   1664       1.1  riastrad wg_send_so(struct wg_peer *wgp, struct mbuf *m)
   1665       1.1  riastrad {
   1666       1.1  riastrad 	int error;
   1667       1.1  riastrad 	struct socket *so;
   1668       1.1  riastrad 	struct psref psref;
   1669       1.1  riastrad 	struct wg_sockaddr *wgsa;
   1670       1.1  riastrad 
   1671       1.1  riastrad 	wgsa = wg_get_endpoint_sa(wgp, &psref);
   1672      1.47  riastrad 	so = wg_get_so_by_peer(wgp, wgsa);
   1673       1.1  riastrad 	error = sosend(so, wgsatosa(wgsa), NULL, m, NULL, 0, curlwp);
   1674       1.1  riastrad 	wg_put_sa(wgp, wgsa, &psref);
   1675       1.1  riastrad 
   1676       1.1  riastrad 	return error;
   1677       1.1  riastrad }
   1678       1.1  riastrad 
   1679       1.1  riastrad static int
   1680       1.1  riastrad wg_send_handshake_msg_init(struct wg_softc *wg, struct wg_peer *wgp)
   1681       1.1  riastrad {
   1682       1.1  riastrad 	int error;
   1683       1.1  riastrad 	struct mbuf *m;
   1684       1.1  riastrad 	struct wg_msg_init *wgmi;
   1685       1.1  riastrad 	struct wg_session *wgs;
   1686       1.1  riastrad 
   1687      1.49  riastrad 	KASSERT(mutex_owned(wgp->wgp_lock));
   1688      1.49  riastrad 
   1689      1.49  riastrad 	wgs = wgp->wgp_session_unstable;
   1690      1.49  riastrad 	/* XXX pull dispatch out into wg_task_send_init_message */
   1691      1.49  riastrad 	switch (wgs->wgs_state) {
   1692      1.49  riastrad 	case WGS_STATE_UNKNOWN:		/* new session initiated by us */
   1693      1.49  riastrad 		wg_get_session_index(wg, wgs);
   1694      1.49  riastrad 		break;
   1695      1.49  riastrad 	case WGS_STATE_INIT_ACTIVE:	/* we're already initiating, stop */
   1696      1.49  riastrad 		WG_TRACE("Session already initializing, skip starting new one");
   1697      1.49  riastrad 		return EBUSY;
   1698      1.49  riastrad 	case WGS_STATE_INIT_PASSIVE:	/* peer was trying -- XXX what now? */
   1699      1.49  riastrad 		WG_TRACE("Session already initializing, destroying old states");
   1700      1.49  riastrad 		wg_clear_states(wgs);
   1701      1.49  riastrad 		/* keep session index */
   1702      1.49  riastrad 		break;
   1703      1.49  riastrad 	case WGS_STATE_ESTABLISHED:	/* can't happen */
   1704      1.49  riastrad 		panic("unstable session can't be established");
   1705      1.49  riastrad 		break;
   1706      1.49  riastrad 	case WGS_STATE_DESTROYING:	/* rekey initiated by us too early */
   1707       1.1  riastrad 		WG_TRACE("Session destroying");
   1708       1.1  riastrad 		/* XXX should wait? */
   1709       1.1  riastrad 		return EBUSY;
   1710       1.1  riastrad 	}
   1711       1.1  riastrad 	wgs->wgs_state = WGS_STATE_INIT_ACTIVE;
   1712       1.1  riastrad 
   1713       1.1  riastrad 	m = m_gethdr(M_WAIT, MT_DATA);
   1714      1.69   hannken 	if (sizeof(*wgmi) > MHLEN) {
   1715      1.69   hannken 		m_clget(m, M_WAIT);
   1716      1.69   hannken 		CTASSERT(sizeof(*wgmi) <= MCLBYTES);
   1717      1.69   hannken 	}
   1718       1.1  riastrad 	m->m_pkthdr.len = m->m_len = sizeof(*wgmi);
   1719       1.1  riastrad 	wgmi = mtod(m, struct wg_msg_init *);
   1720       1.1  riastrad 	wg_fill_msg_init(wg, wgp, wgs, wgmi);
   1721       1.1  riastrad 
   1722       1.1  riastrad 	error = wg->wg_ops->send_hs_msg(wgp, m);
   1723       1.1  riastrad 	if (error == 0) {
   1724       1.1  riastrad 		WG_TRACE("init msg sent");
   1725       1.1  riastrad 
   1726       1.1  riastrad 		if (wgp->wgp_handshake_start_time == 0)
   1727       1.1  riastrad 			wgp->wgp_handshake_start_time = time_uptime;
   1728      1.49  riastrad 		callout_schedule(&wgp->wgp_handshake_timeout_timer,
   1729      1.65  christos 		    MIN(wg_rekey_timeout, (unsigned)(INT_MAX / hz)) * hz);
   1730       1.1  riastrad 	} else {
   1731      1.49  riastrad 		wg_put_session_index(wg, wgs);
   1732      1.54  riastrad 		/* Initiation failed; toss packet waiting for it if any.  */
   1733      1.54  riastrad 		if ((m = atomic_swap_ptr(&wgp->wgp_pending, NULL)) != NULL)
   1734      1.54  riastrad 			m_freem(m);
   1735       1.1  riastrad 	}
   1736       1.1  riastrad 
   1737       1.1  riastrad 	return error;
   1738       1.1  riastrad }
   1739       1.1  riastrad 
   1740       1.1  riastrad static void
   1741       1.1  riastrad wg_fill_msg_resp(struct wg_softc *wg, struct wg_peer *wgp,
   1742      1.49  riastrad     struct wg_session *wgs, struct wg_msg_resp *wgmr,
   1743      1.49  riastrad     const struct wg_msg_init *wgmi)
   1744       1.1  riastrad {
   1745       1.1  riastrad 	uint8_t ckey[WG_CHAINING_KEY_LEN]; /* [W] 5.4.3: Cr */
   1746       1.1  riastrad 	uint8_t hash[WG_HASH_LEN]; /* [W] 5.4.3: Hr */
   1747       1.1  riastrad 	uint8_t cipher_key[WG_KDF_OUTPUT_LEN];
   1748       1.1  riastrad 	uint8_t pubkey[WG_EPHEMERAL_KEY_LEN];
   1749       1.1  riastrad 	uint8_t privkey[WG_EPHEMERAL_KEY_LEN];
   1750       1.1  riastrad 
   1751      1.49  riastrad 	KASSERT(mutex_owned(wgp->wgp_lock));
   1752      1.49  riastrad 	KASSERT(wgs == wgp->wgp_session_unstable);
   1753      1.49  riastrad 	KASSERT(wgs->wgs_state == WGS_STATE_INIT_PASSIVE);
   1754      1.49  riastrad 
   1755       1.1  riastrad 	memcpy(hash, wgs->wgs_handshake_hash, sizeof(hash));
   1756       1.1  riastrad 	memcpy(ckey, wgs->wgs_chaining_key, sizeof(ckey));
   1757       1.1  riastrad 
   1758      1.39  riastrad 	wgmr->wgmr_type = htole32(WG_MSG_TYPE_RESP);
   1759      1.49  riastrad 	wgmr->wgmr_sender = wgs->wgs_local_index;
   1760       1.1  riastrad 	wgmr->wgmr_receiver = wgmi->wgmi_sender;
   1761       1.1  riastrad 
   1762       1.1  riastrad 	/* [W] 5.4.3 Second Message: Responder to Initiator */
   1763       1.1  riastrad 
   1764       1.1  riastrad 	/* [N] 2.2: "e" */
   1765       1.1  riastrad 	/* Er^priv, Er^pub := DH-GENERATE() */
   1766       1.1  riastrad 	wg_algo_generate_keypair(pubkey, privkey);
   1767       1.1  riastrad 	/* Cr := KDF1(Cr, Er^pub) */
   1768       1.1  riastrad 	wg_algo_kdf(ckey, NULL, NULL, ckey, pubkey, sizeof(pubkey));
   1769       1.1  riastrad 	/* msg.ephemeral := Er^pub */
   1770       1.1  riastrad 	memcpy(wgmr->wgmr_ephemeral, pubkey, sizeof(wgmr->wgmr_ephemeral));
   1771       1.1  riastrad 	/* Hr := HASH(Hr || msg.ephemeral) */
   1772       1.1  riastrad 	wg_algo_hash(hash, pubkey, sizeof(pubkey));
   1773       1.1  riastrad 
   1774       1.1  riastrad 	WG_DUMP_HASH("ckey", ckey);
   1775       1.1  riastrad 	WG_DUMP_HASH("hash", hash);
   1776       1.1  riastrad 
   1777       1.1  riastrad 	/* [N] 2.2: "ee" */
   1778       1.1  riastrad 	/* Cr := KDF1(Cr, DH(Er^priv, Ei^pub)) */
   1779       1.1  riastrad 	wg_algo_dh_kdf(ckey, NULL, privkey, wgs->wgs_ephemeral_key_peer);
   1780       1.1  riastrad 
   1781       1.1  riastrad 	/* [N] 2.2: "se" */
   1782       1.1  riastrad 	/* Cr := KDF1(Cr, DH(Er^priv, Si^pub)) */
   1783       1.1  riastrad 	wg_algo_dh_kdf(ckey, NULL, privkey, wgp->wgp_pubkey);
   1784       1.1  riastrad 
   1785       1.1  riastrad 	/* [N] 9.2: "psk" */
   1786       1.1  riastrad     {
   1787       1.1  riastrad 	uint8_t kdfout[WG_KDF_OUTPUT_LEN];
   1788       1.1  riastrad 	/* Cr, r, k := KDF3(Cr, Q) */
   1789       1.1  riastrad 	wg_algo_kdf(ckey, kdfout, cipher_key, ckey, wgp->wgp_psk,
   1790       1.1  riastrad 	    sizeof(wgp->wgp_psk));
   1791       1.1  riastrad 	/* Hr := HASH(Hr || r) */
   1792       1.1  riastrad 	wg_algo_hash(hash, kdfout, sizeof(kdfout));
   1793       1.1  riastrad     }
   1794       1.1  riastrad 
   1795       1.1  riastrad 	/* msg.empty := AEAD(k, 0, e, Hr) */
   1796      1.14  riastrad 	wg_algo_aead_enc(wgmr->wgmr_empty, sizeof(wgmr->wgmr_empty),
   1797      1.14  riastrad 	    cipher_key, 0, NULL, 0, hash, sizeof(hash));
   1798       1.1  riastrad 	/* Hr := HASH(Hr || msg.empty) */
   1799       1.1  riastrad 	wg_algo_hash(hash, wgmr->wgmr_empty, sizeof(wgmr->wgmr_empty));
   1800       1.1  riastrad 
   1801       1.1  riastrad 	WG_DUMP_HASH("wgmr_empty", wgmr->wgmr_empty);
   1802       1.1  riastrad 
   1803       1.1  riastrad 	/* [W] 5.4.4: Cookie MACs */
   1804       1.1  riastrad 	/* msg.mac1 := MAC(HASH(LABEL-MAC1 || Sm'^pub), msg_a) */
   1805       1.1  riastrad 	wg_algo_mac_mac1(wgmr->wgmr_mac1, sizeof(wgmi->wgmi_mac1),
   1806       1.1  riastrad 	    wgp->wgp_pubkey, sizeof(wgp->wgp_pubkey),
   1807      1.17  riastrad 	    (const uint8_t *)wgmr, offsetof(struct wg_msg_resp, wgmr_mac1));
   1808       1.1  riastrad 	/* Need mac1 to decrypt a cookie from a cookie message */
   1809       1.1  riastrad 	memcpy(wgp->wgp_last_sent_mac1, wgmr->wgmr_mac1,
   1810       1.1  riastrad 	    sizeof(wgp->wgp_last_sent_mac1));
   1811       1.1  riastrad 	wgp->wgp_last_sent_mac1_valid = true;
   1812       1.1  riastrad 
   1813       1.1  riastrad 	if (wgp->wgp_latest_cookie_time == 0 ||
   1814       1.1  riastrad 	    (time_uptime - wgp->wgp_latest_cookie_time) >= WG_COOKIE_TIME)
   1815       1.1  riastrad 		/* msg.mac2 := 0^16 */
   1816       1.1  riastrad 		memset(wgmr->wgmr_mac2, 0, sizeof(wgmr->wgmr_mac2));
   1817       1.1  riastrad 	else {
   1818       1.1  riastrad 		/* msg.mac2 := MAC(Lm, msg_b) */
   1819       1.1  riastrad 		wg_algo_mac(wgmr->wgmr_mac2, sizeof(wgmi->wgmi_mac2),
   1820       1.1  riastrad 		    wgp->wgp_latest_cookie, WG_COOKIE_LEN,
   1821      1.17  riastrad 		    (const uint8_t *)wgmr,
   1822      1.17  riastrad 		    offsetof(struct wg_msg_resp, wgmr_mac2),
   1823       1.1  riastrad 		    NULL, 0);
   1824       1.1  riastrad 	}
   1825       1.1  riastrad 
   1826       1.1  riastrad 	memcpy(wgs->wgs_handshake_hash, hash, sizeof(hash));
   1827       1.1  riastrad 	memcpy(wgs->wgs_chaining_key, ckey, sizeof(ckey));
   1828       1.1  riastrad 	memcpy(wgs->wgs_ephemeral_key_pub, pubkey, sizeof(pubkey));
   1829       1.1  riastrad 	memcpy(wgs->wgs_ephemeral_key_priv, privkey, sizeof(privkey));
   1830      1.49  riastrad 	wgs->wgs_remote_index = wgmi->wgmi_sender;
   1831      1.49  riastrad 	WG_DLOG("sender=%x\n", wgs->wgs_local_index);
   1832      1.49  riastrad 	WG_DLOG("receiver=%x\n", wgs->wgs_remote_index);
   1833       1.1  riastrad }
   1834       1.1  riastrad 
   1835       1.1  riastrad static void
   1836       1.1  riastrad wg_swap_sessions(struct wg_peer *wgp)
   1837       1.1  riastrad {
   1838      1.49  riastrad 	struct wg_session *wgs, *wgs_prev;
   1839       1.1  riastrad 
   1840       1.1  riastrad 	KASSERT(mutex_owned(wgp->wgp_lock));
   1841       1.1  riastrad 
   1842      1.49  riastrad 	wgs = wgp->wgp_session_unstable;
   1843      1.49  riastrad 	KASSERT(wgs->wgs_state == WGS_STATE_ESTABLISHED);
   1844      1.49  riastrad 
   1845      1.49  riastrad 	wgs_prev = wgp->wgp_session_stable;
   1846      1.49  riastrad 	KASSERT(wgs_prev->wgs_state == WGS_STATE_ESTABLISHED ||
   1847      1.49  riastrad 	    wgs_prev->wgs_state == WGS_STATE_UNKNOWN);
   1848      1.49  riastrad 	atomic_store_release(&wgp->wgp_session_stable, wgs);
   1849      1.49  riastrad 	wgp->wgp_session_unstable = wgs_prev;
   1850       1.1  riastrad }
   1851       1.1  riastrad 
   1852      1.63  riastrad static void __noinline
   1853       1.1  riastrad wg_handle_msg_resp(struct wg_softc *wg, const struct wg_msg_resp *wgmr,
   1854       1.1  riastrad     const struct sockaddr *src)
   1855       1.1  riastrad {
   1856       1.1  riastrad 	uint8_t ckey[WG_CHAINING_KEY_LEN]; /* [W] 5.4.3: Cr */
   1857       1.1  riastrad 	uint8_t hash[WG_HASH_LEN]; /* [W] 5.4.3: Kr */
   1858       1.1  riastrad 	uint8_t cipher_key[WG_KDF_OUTPUT_LEN];
   1859       1.1  riastrad 	struct wg_peer *wgp;
   1860       1.1  riastrad 	struct wg_session *wgs;
   1861       1.1  riastrad 	struct psref psref;
   1862       1.1  riastrad 	int error;
   1863       1.1  riastrad 	uint8_t mac1[WG_MAC_LEN];
   1864       1.1  riastrad 	struct wg_session *wgs_prev;
   1865      1.54  riastrad 	struct mbuf *m;
   1866       1.1  riastrad 
   1867       1.1  riastrad 	wg_algo_mac_mac1(mac1, sizeof(mac1),
   1868       1.1  riastrad 	    wg->wg_pubkey, sizeof(wg->wg_pubkey),
   1869       1.1  riastrad 	    (const uint8_t *)wgmr, offsetof(struct wg_msg_resp, wgmr_mac1));
   1870       1.1  riastrad 
   1871       1.1  riastrad 	/*
   1872       1.1  riastrad 	 * [W] 5.3: Denial of Service Mitigation & Cookies
   1873       1.1  riastrad 	 * "the responder, ..., must always reject messages with an invalid
   1874       1.1  riastrad 	 *  msg.mac1"
   1875       1.1  riastrad 	 */
   1876      1.13  riastrad 	if (!consttime_memequal(mac1, wgmr->wgmr_mac1, sizeof(mac1))) {
   1877       1.1  riastrad 		WG_DLOG("mac1 is invalid\n");
   1878      1.44  riastrad 		return;
   1879      1.44  riastrad 	}
   1880      1.44  riastrad 
   1881      1.44  riastrad 	WG_TRACE("resp msg received");
   1882      1.44  riastrad 	wgs = wg_lookup_session_by_index(wg, wgmr->wgmr_receiver, &psref);
   1883      1.44  riastrad 	if (wgs == NULL) {
   1884      1.44  riastrad 		WG_TRACE("No session found");
   1885      1.44  riastrad 		return;
   1886       1.1  riastrad 	}
   1887       1.1  riastrad 
   1888      1.44  riastrad 	wgp = wgs->wgs_peer;
   1889      1.44  riastrad 
   1890      1.49  riastrad 	mutex_enter(wgp->wgp_lock);
   1891      1.49  riastrad 
   1892      1.49  riastrad 	/* If we weren't waiting for a handshake response, drop it.  */
   1893      1.49  riastrad 	if (wgs->wgs_state != WGS_STATE_INIT_ACTIVE) {
   1894      1.49  riastrad 		WG_TRACE("peer sent spurious handshake response, ignoring");
   1895      1.49  riastrad 		goto out;
   1896      1.49  riastrad 	}
   1897      1.49  riastrad 
   1898       1.1  riastrad 	if (__predict_false(wg_is_underload(wg, wgp, WG_MSG_TYPE_RESP))) {
   1899       1.1  riastrad 		WG_TRACE("under load");
   1900       1.1  riastrad 		/*
   1901       1.1  riastrad 		 * [W] 5.3: Denial of Service Mitigation & Cookies
   1902       1.1  riastrad 		 * "the responder, ..., and when under load may reject messages
   1903       1.1  riastrad 		 *  with an invalid msg.mac2.  If the responder receives a
   1904       1.1  riastrad 		 *  message with a valid msg.mac1 yet with an invalid msg.mac2,
   1905       1.1  riastrad 		 *  and is under load, it may respond with a cookie reply
   1906       1.1  riastrad 		 *  message"
   1907       1.1  riastrad 		 */
   1908       1.1  riastrad 		uint8_t zero[WG_MAC_LEN] = {0};
   1909      1.13  riastrad 		if (consttime_memequal(wgmr->wgmr_mac2, zero, sizeof(zero))) {
   1910       1.1  riastrad 			WG_TRACE("sending a cookie message: no cookie included");
   1911       1.1  riastrad 			(void)wg_send_cookie_msg(wg, wgp, wgmr->wgmr_sender,
   1912       1.1  riastrad 			    wgmr->wgmr_mac1, src);
   1913       1.1  riastrad 			goto out;
   1914       1.1  riastrad 		}
   1915       1.1  riastrad 		if (!wgp->wgp_last_sent_cookie_valid) {
   1916       1.1  riastrad 			WG_TRACE("sending a cookie message: no cookie sent ever");
   1917       1.1  riastrad 			(void)wg_send_cookie_msg(wg, wgp, wgmr->wgmr_sender,
   1918       1.1  riastrad 			    wgmr->wgmr_mac1, src);
   1919       1.1  riastrad 			goto out;
   1920       1.1  riastrad 		}
   1921       1.1  riastrad 		uint8_t mac2[WG_MAC_LEN];
   1922       1.1  riastrad 		wg_algo_mac(mac2, sizeof(mac2), wgp->wgp_last_sent_cookie,
   1923       1.1  riastrad 		    WG_COOKIE_LEN, (const uint8_t *)wgmr,
   1924       1.1  riastrad 		    offsetof(struct wg_msg_resp, wgmr_mac2), NULL, 0);
   1925      1.13  riastrad 		if (!consttime_memequal(mac2, wgmr->wgmr_mac2, sizeof(mac2))) {
   1926       1.1  riastrad 			WG_DLOG("mac2 is invalid\n");
   1927       1.1  riastrad 			goto out;
   1928       1.1  riastrad 		}
   1929       1.1  riastrad 		WG_TRACE("under load, but continue to sending");
   1930       1.1  riastrad 	}
   1931       1.1  riastrad 
   1932       1.1  riastrad 	memcpy(hash, wgs->wgs_handshake_hash, sizeof(hash));
   1933       1.1  riastrad 	memcpy(ckey, wgs->wgs_chaining_key, sizeof(ckey));
   1934       1.1  riastrad 
   1935       1.1  riastrad 	/*
   1936       1.1  riastrad 	 * [W] 5.4.3 Second Message: Responder to Initiator
   1937       1.1  riastrad 	 * "When the initiator receives this message, it does the same
   1938       1.1  riastrad 	 *  operations so that its final state variables are identical,
   1939       1.1  riastrad 	 *  replacing the operands of the DH function to produce equivalent
   1940       1.1  riastrad 	 *  values."
   1941       1.1  riastrad 	 *  Note that the following comments of operations are just copies of
   1942       1.1  riastrad 	 *  the initiator's ones.
   1943       1.1  riastrad 	 */
   1944       1.1  riastrad 
   1945       1.1  riastrad 	/* [N] 2.2: "e" */
   1946       1.1  riastrad 	/* Cr := KDF1(Cr, Er^pub) */
   1947       1.1  riastrad 	wg_algo_kdf(ckey, NULL, NULL, ckey, wgmr->wgmr_ephemeral,
   1948       1.1  riastrad 	    sizeof(wgmr->wgmr_ephemeral));
   1949       1.1  riastrad 	/* Hr := HASH(Hr || msg.ephemeral) */
   1950       1.1  riastrad 	wg_algo_hash(hash, wgmr->wgmr_ephemeral, sizeof(wgmr->wgmr_ephemeral));
   1951       1.1  riastrad 
   1952       1.1  riastrad 	WG_DUMP_HASH("ckey", ckey);
   1953       1.1  riastrad 	WG_DUMP_HASH("hash", hash);
   1954       1.1  riastrad 
   1955       1.1  riastrad 	/* [N] 2.2: "ee" */
   1956       1.1  riastrad 	/* Cr := KDF1(Cr, DH(Er^priv, Ei^pub)) */
   1957       1.1  riastrad 	wg_algo_dh_kdf(ckey, NULL, wgs->wgs_ephemeral_key_priv,
   1958       1.1  riastrad 	    wgmr->wgmr_ephemeral);
   1959       1.1  riastrad 
   1960       1.1  riastrad 	/* [N] 2.2: "se" */
   1961       1.1  riastrad 	/* Cr := KDF1(Cr, DH(Er^priv, Si^pub)) */
   1962       1.1  riastrad 	wg_algo_dh_kdf(ckey, NULL, wg->wg_privkey, wgmr->wgmr_ephemeral);
   1963       1.1  riastrad 
   1964       1.1  riastrad 	/* [N] 9.2: "psk" */
   1965       1.1  riastrad     {
   1966       1.1  riastrad 	uint8_t kdfout[WG_KDF_OUTPUT_LEN];
   1967       1.1  riastrad 	/* Cr, r, k := KDF3(Cr, Q) */
   1968       1.1  riastrad 	wg_algo_kdf(ckey, kdfout, cipher_key, ckey, wgp->wgp_psk,
   1969       1.1  riastrad 	    sizeof(wgp->wgp_psk));
   1970       1.1  riastrad 	/* Hr := HASH(Hr || r) */
   1971       1.1  riastrad 	wg_algo_hash(hash, kdfout, sizeof(kdfout));
   1972       1.1  riastrad     }
   1973       1.1  riastrad 
   1974       1.1  riastrad     {
   1975       1.1  riastrad 	uint8_t out[sizeof(wgmr->wgmr_empty)]; /* for safety */
   1976       1.1  riastrad 	/* msg.empty := AEAD(k, 0, e, Hr) */
   1977       1.1  riastrad 	error = wg_algo_aead_dec(out, 0, cipher_key, 0, wgmr->wgmr_empty,
   1978       1.1  riastrad 	    sizeof(wgmr->wgmr_empty), hash, sizeof(hash));
   1979       1.1  riastrad 	WG_DUMP_HASH("wgmr_empty", wgmr->wgmr_empty);
   1980       1.1  riastrad 	if (error != 0) {
   1981       1.1  riastrad 		WG_LOG_RATECHECK(&wgp->wgp_ppsratecheck, LOG_DEBUG,
   1982      1.76  jakllsch 		    "%s: peer %s: wg_algo_aead_dec for empty message failed\n",
   1983      1.76  jakllsch 		    if_name(&wg->wg_if), wgp->wgp_name);
   1984       1.1  riastrad 		goto out;
   1985       1.1  riastrad 	}
   1986       1.1  riastrad 	/* Hr := HASH(Hr || msg.empty) */
   1987       1.1  riastrad 	wg_algo_hash(hash, wgmr->wgmr_empty, sizeof(wgmr->wgmr_empty));
   1988       1.1  riastrad     }
   1989       1.1  riastrad 
   1990       1.1  riastrad 	memcpy(wgs->wgs_handshake_hash, hash, sizeof(wgs->wgs_handshake_hash));
   1991       1.1  riastrad 	memcpy(wgs->wgs_chaining_key, ckey, sizeof(wgs->wgs_chaining_key));
   1992      1.49  riastrad 	wgs->wgs_remote_index = wgmr->wgmr_sender;
   1993      1.49  riastrad 	WG_DLOG("receiver=%x\n", wgs->wgs_remote_index);
   1994       1.1  riastrad 
   1995      1.49  riastrad 	KASSERT(wgs->wgs_state == WGS_STATE_INIT_ACTIVE);
   1996       1.1  riastrad 	wgs->wgs_state = WGS_STATE_ESTABLISHED;
   1997       1.1  riastrad 	wgs->wgs_time_established = time_uptime;
   1998       1.1  riastrad 	wgs->wgs_time_last_data_sent = 0;
   1999       1.1  riastrad 	wgs->wgs_is_initiator = true;
   2000       1.1  riastrad 	wg_calculate_keys(wgs, true);
   2001       1.1  riastrad 	wg_clear_states(wgs);
   2002       1.1  riastrad 	WG_TRACE("WGS_STATE_ESTABLISHED");
   2003       1.1  riastrad 
   2004      1.49  riastrad 	callout_stop(&wgp->wgp_handshake_timeout_timer);
   2005      1.18  riastrad 
   2006       1.1  riastrad 	wg_swap_sessions(wgp);
   2007      1.49  riastrad 	KASSERT(wgs == wgp->wgp_session_stable);
   2008       1.1  riastrad 	wgs_prev = wgp->wgp_session_unstable;
   2009       1.1  riastrad 	getnanotime(&wgp->wgp_last_handshake_time);
   2010       1.1  riastrad 	wgp->wgp_handshake_start_time = 0;
   2011       1.1  riastrad 	wgp->wgp_last_sent_mac1_valid = false;
   2012       1.1  riastrad 	wgp->wgp_last_sent_cookie_valid = false;
   2013       1.1  riastrad 
   2014       1.1  riastrad 	wg_schedule_rekey_timer(wgp);
   2015       1.1  riastrad 
   2016       1.1  riastrad 	wg_update_endpoint_if_necessary(wgp, src);
   2017       1.1  riastrad 
   2018       1.1  riastrad 	/*
   2019      1.54  riastrad 	 * If we had a data packet queued up, send it; otherwise send a
   2020      1.54  riastrad 	 * keepalive message -- either way we have to send something
   2021      1.54  riastrad 	 * immediately or else the responder will never answer.
   2022       1.1  riastrad 	 */
   2023      1.54  riastrad 	if ((m = atomic_swap_ptr(&wgp->wgp_pending, NULL)) != NULL) {
   2024      1.57  riastrad 		kpreempt_disable();
   2025      1.54  riastrad 		const uint32_t h = curcpu()->ci_index; // pktq_rps_hash(m)
   2026      1.54  riastrad 		M_SETCTX(m, wgp);
   2027      1.54  riastrad 		if (__predict_false(!pktq_enqueue(wg_pktq, m, h))) {
   2028      1.76  jakllsch 			WGLOG(LOG_ERR, "%s: pktq full, dropping\n",
   2029      1.76  jakllsch 			    if_name(&wg->wg_if));
   2030      1.54  riastrad 			m_freem(m);
   2031      1.54  riastrad 		}
   2032      1.57  riastrad 		kpreempt_enable();
   2033      1.54  riastrad 	} else {
   2034      1.54  riastrad 		wg_send_keepalive_msg(wgp, wgs);
   2035      1.54  riastrad 	}
   2036       1.1  riastrad 
   2037       1.1  riastrad 	if (wgs_prev->wgs_state == WGS_STATE_ESTABLISHED) {
   2038      1.49  riastrad 		/* Wait for wg_get_stable_session to drain.  */
   2039      1.49  riastrad 		pserialize_perform(wgp->wgp_psz);
   2040      1.49  riastrad 
   2041      1.49  riastrad 		/* Transition ESTABLISHED->DESTROYING.  */
   2042       1.1  riastrad 		wgs_prev->wgs_state = WGS_STATE_DESTROYING;
   2043      1.49  riastrad 
   2044       1.1  riastrad 		/* We can't destroy the old session immediately */
   2045       1.1  riastrad 		wg_schedule_session_dtor_timer(wgp);
   2046      1.49  riastrad 	} else {
   2047      1.49  riastrad 		KASSERTMSG(wgs_prev->wgs_state == WGS_STATE_UNKNOWN,
   2048      1.49  riastrad 		    "state=%d", wgs_prev->wgs_state);
   2049       1.1  riastrad 	}
   2050       1.1  riastrad 
   2051       1.1  riastrad out:
   2052      1.49  riastrad 	mutex_exit(wgp->wgp_lock);
   2053       1.1  riastrad 	wg_put_session(wgs, &psref);
   2054       1.1  riastrad }
   2055       1.1  riastrad 
   2056       1.1  riastrad static int
   2057       1.1  riastrad wg_send_handshake_msg_resp(struct wg_softc *wg, struct wg_peer *wgp,
   2058      1.49  riastrad     struct wg_session *wgs, const struct wg_msg_init *wgmi)
   2059       1.1  riastrad {
   2060       1.1  riastrad 	int error;
   2061       1.1  riastrad 	struct mbuf *m;
   2062       1.1  riastrad 	struct wg_msg_resp *wgmr;
   2063       1.1  riastrad 
   2064      1.49  riastrad 	KASSERT(mutex_owned(wgp->wgp_lock));
   2065      1.49  riastrad 	KASSERT(wgs == wgp->wgp_session_unstable);
   2066      1.49  riastrad 	KASSERT(wgs->wgs_state == WGS_STATE_INIT_PASSIVE);
   2067      1.49  riastrad 
   2068       1.1  riastrad 	m = m_gethdr(M_WAIT, MT_DATA);
   2069      1.69   hannken 	if (sizeof(*wgmr) > MHLEN) {
   2070      1.69   hannken 		m_clget(m, M_WAIT);
   2071      1.69   hannken 		CTASSERT(sizeof(*wgmr) <= MCLBYTES);
   2072      1.69   hannken 	}
   2073       1.1  riastrad 	m->m_pkthdr.len = m->m_len = sizeof(*wgmr);
   2074       1.1  riastrad 	wgmr = mtod(m, struct wg_msg_resp *);
   2075      1.49  riastrad 	wg_fill_msg_resp(wg, wgp, wgs, wgmr, wgmi);
   2076       1.1  riastrad 
   2077       1.1  riastrad 	error = wg->wg_ops->send_hs_msg(wgp, m);
   2078       1.1  riastrad 	if (error == 0)
   2079       1.1  riastrad 		WG_TRACE("resp msg sent");
   2080       1.1  riastrad 	return error;
   2081       1.1  riastrad }
   2082       1.1  riastrad 
   2083       1.1  riastrad static struct wg_peer *
   2084       1.1  riastrad wg_lookup_peer_by_pubkey(struct wg_softc *wg,
   2085       1.1  riastrad     const uint8_t pubkey[WG_STATIC_KEY_LEN], struct psref *psref)
   2086       1.1  riastrad {
   2087       1.1  riastrad 	struct wg_peer *wgp;
   2088       1.1  riastrad 
   2089       1.1  riastrad 	int s = pserialize_read_enter();
   2090      1.37  riastrad 	wgp = thmap_get(wg->wg_peers_bypubkey, pubkey, WG_STATIC_KEY_LEN);
   2091       1.1  riastrad 	if (wgp != NULL)
   2092       1.1  riastrad 		wg_get_peer(wgp, psref);
   2093       1.1  riastrad 	pserialize_read_exit(s);
   2094       1.1  riastrad 
   2095       1.1  riastrad 	return wgp;
   2096       1.1  riastrad }
   2097       1.1  riastrad 
   2098       1.1  riastrad static void
   2099       1.1  riastrad wg_fill_msg_cookie(struct wg_softc *wg, struct wg_peer *wgp,
   2100       1.1  riastrad     struct wg_msg_cookie *wgmc, const uint32_t sender,
   2101       1.1  riastrad     const uint8_t mac1[WG_MAC_LEN], const struct sockaddr *src)
   2102       1.1  riastrad {
   2103       1.1  riastrad 	uint8_t cookie[WG_COOKIE_LEN];
   2104       1.1  riastrad 	uint8_t key[WG_HASH_LEN];
   2105       1.1  riastrad 	uint8_t addr[sizeof(struct in6_addr)];
   2106       1.1  riastrad 	size_t addrlen;
   2107       1.1  riastrad 	uint16_t uh_sport; /* be */
   2108       1.1  riastrad 
   2109      1.49  riastrad 	KASSERT(mutex_owned(wgp->wgp_lock));
   2110      1.49  riastrad 
   2111      1.39  riastrad 	wgmc->wgmc_type = htole32(WG_MSG_TYPE_COOKIE);
   2112       1.1  riastrad 	wgmc->wgmc_receiver = sender;
   2113       1.1  riastrad 	cprng_fast(wgmc->wgmc_salt, sizeof(wgmc->wgmc_salt));
   2114       1.1  riastrad 
   2115       1.1  riastrad 	/*
   2116       1.1  riastrad 	 * [W] 5.4.7: Under Load: Cookie Reply Message
   2117      1.14  riastrad 	 * "The secret variable, Rm, changes every two minutes to a
   2118      1.14  riastrad 	 * random value"
   2119       1.1  riastrad 	 */
   2120       1.1  riastrad 	if ((time_uptime - wgp->wgp_last_genrandval_time) > WG_RANDVAL_TIME) {
   2121       1.1  riastrad 		wgp->wgp_randval = cprng_strong32();
   2122       1.1  riastrad 		wgp->wgp_last_genrandval_time = time_uptime;
   2123       1.1  riastrad 	}
   2124       1.1  riastrad 
   2125       1.1  riastrad 	switch (src->sa_family) {
   2126       1.1  riastrad 	case AF_INET: {
   2127       1.1  riastrad 		const struct sockaddr_in *sin = satocsin(src);
   2128       1.1  riastrad 		addrlen = sizeof(sin->sin_addr);
   2129       1.1  riastrad 		memcpy(addr, &sin->sin_addr, addrlen);
   2130       1.1  riastrad 		uh_sport = sin->sin_port;
   2131       1.1  riastrad 		break;
   2132       1.1  riastrad 	    }
   2133       1.1  riastrad #ifdef INET6
   2134       1.1  riastrad 	case AF_INET6: {
   2135       1.1  riastrad 		const struct sockaddr_in6 *sin6 = satocsin6(src);
   2136       1.1  riastrad 		addrlen = sizeof(sin6->sin6_addr);
   2137       1.1  riastrad 		memcpy(addr, &sin6->sin6_addr, addrlen);
   2138       1.1  riastrad 		uh_sport = sin6->sin6_port;
   2139       1.1  riastrad 		break;
   2140       1.1  riastrad 	    }
   2141       1.1  riastrad #endif
   2142       1.1  riastrad 	default:
   2143      1.47  riastrad 		panic("invalid af=%d", src->sa_family);
   2144       1.1  riastrad 	}
   2145       1.1  riastrad 
   2146       1.1  riastrad 	wg_algo_mac(cookie, sizeof(cookie),
   2147      1.17  riastrad 	    (const uint8_t *)&wgp->wgp_randval, sizeof(wgp->wgp_randval),
   2148      1.17  riastrad 	    addr, addrlen, (const uint8_t *)&uh_sport, sizeof(uh_sport));
   2149       1.1  riastrad 	wg_algo_mac_cookie(key, sizeof(key), wg->wg_pubkey,
   2150       1.1  riastrad 	    sizeof(wg->wg_pubkey));
   2151       1.1  riastrad 	wg_algo_xaead_enc(wgmc->wgmc_cookie, sizeof(wgmc->wgmc_cookie), key,
   2152       1.1  riastrad 	    cookie, sizeof(cookie), mac1, WG_MAC_LEN, wgmc->wgmc_salt);
   2153       1.1  riastrad 
   2154       1.1  riastrad 	/* Need to store to calculate mac2 */
   2155       1.1  riastrad 	memcpy(wgp->wgp_last_sent_cookie, cookie, sizeof(cookie));
   2156       1.1  riastrad 	wgp->wgp_last_sent_cookie_valid = true;
   2157       1.1  riastrad }
   2158       1.1  riastrad 
   2159       1.1  riastrad static int
   2160       1.1  riastrad wg_send_cookie_msg(struct wg_softc *wg, struct wg_peer *wgp,
   2161       1.1  riastrad     const uint32_t sender, const uint8_t mac1[WG_MAC_LEN],
   2162       1.1  riastrad     const struct sockaddr *src)
   2163       1.1  riastrad {
   2164       1.1  riastrad 	int error;
   2165       1.1  riastrad 	struct mbuf *m;
   2166       1.1  riastrad 	struct wg_msg_cookie *wgmc;
   2167       1.1  riastrad 
   2168      1.49  riastrad 	KASSERT(mutex_owned(wgp->wgp_lock));
   2169      1.49  riastrad 
   2170       1.1  riastrad 	m = m_gethdr(M_WAIT, MT_DATA);
   2171      1.69   hannken 	if (sizeof(*wgmc) > MHLEN) {
   2172      1.69   hannken 		m_clget(m, M_WAIT);
   2173      1.69   hannken 		CTASSERT(sizeof(*wgmc) <= MCLBYTES);
   2174      1.69   hannken 	}
   2175       1.1  riastrad 	m->m_pkthdr.len = m->m_len = sizeof(*wgmc);
   2176       1.1  riastrad 	wgmc = mtod(m, struct wg_msg_cookie *);
   2177       1.1  riastrad 	wg_fill_msg_cookie(wg, wgp, wgmc, sender, mac1, src);
   2178       1.1  riastrad 
   2179       1.1  riastrad 	error = wg->wg_ops->send_hs_msg(wgp, m);
   2180       1.1  riastrad 	if (error == 0)
   2181       1.1  riastrad 		WG_TRACE("cookie msg sent");
   2182       1.1  riastrad 	return error;
   2183       1.1  riastrad }
   2184       1.1  riastrad 
   2185       1.1  riastrad static bool
   2186       1.1  riastrad wg_is_underload(struct wg_softc *wg, struct wg_peer *wgp, int msgtype)
   2187       1.1  riastrad {
   2188       1.1  riastrad #ifdef WG_DEBUG_PARAMS
   2189       1.1  riastrad 	if (wg_force_underload)
   2190       1.1  riastrad 		return true;
   2191       1.1  riastrad #endif
   2192       1.1  riastrad 
   2193       1.1  riastrad 	/*
   2194       1.1  riastrad 	 * XXX we don't have a means of a load estimation.  The purpose of
   2195       1.1  riastrad 	 * the mechanism is a DoS mitigation, so we consider frequent handshake
   2196       1.1  riastrad 	 * messages as (a kind of) load; if a message of the same type comes
   2197       1.1  riastrad 	 * to a peer within 1 second, we consider we are under load.
   2198       1.1  riastrad 	 */
   2199       1.1  riastrad 	time_t last = wgp->wgp_last_msg_received_time[msgtype];
   2200       1.1  riastrad 	wgp->wgp_last_msg_received_time[msgtype] = time_uptime;
   2201       1.1  riastrad 	return (time_uptime - last) == 0;
   2202       1.1  riastrad }
   2203       1.1  riastrad 
   2204       1.1  riastrad static void
   2205       1.1  riastrad wg_calculate_keys(struct wg_session *wgs, const bool initiator)
   2206       1.1  riastrad {
   2207       1.1  riastrad 
   2208      1.49  riastrad 	KASSERT(mutex_owned(wgs->wgs_peer->wgp_lock));
   2209      1.49  riastrad 
   2210      1.14  riastrad 	/*
   2211      1.14  riastrad 	 * [W] 5.4.5: Ti^send = Tr^recv, Ti^recv = Tr^send := KDF2(Ci = Cr, e)
   2212      1.14  riastrad 	 */
   2213       1.1  riastrad 	if (initiator) {
   2214       1.1  riastrad 		wg_algo_kdf(wgs->wgs_tkey_send, wgs->wgs_tkey_recv, NULL,
   2215       1.1  riastrad 		    wgs->wgs_chaining_key, NULL, 0);
   2216       1.1  riastrad 	} else {
   2217       1.1  riastrad 		wg_algo_kdf(wgs->wgs_tkey_recv, wgs->wgs_tkey_send, NULL,
   2218       1.1  riastrad 		    wgs->wgs_chaining_key, NULL, 0);
   2219       1.1  riastrad 	}
   2220       1.1  riastrad 	WG_DUMP_HASH("wgs_tkey_send", wgs->wgs_tkey_send);
   2221       1.1  riastrad 	WG_DUMP_HASH("wgs_tkey_recv", wgs->wgs_tkey_recv);
   2222       1.1  riastrad }
   2223       1.1  riastrad 
   2224      1.22  riastrad static uint64_t
   2225      1.22  riastrad wg_session_get_send_counter(struct wg_session *wgs)
   2226      1.22  riastrad {
   2227      1.22  riastrad #ifdef __HAVE_ATOMIC64_LOADSTORE
   2228      1.22  riastrad 	return atomic_load_relaxed(&wgs->wgs_send_counter);
   2229      1.22  riastrad #else
   2230      1.22  riastrad 	uint64_t send_counter;
   2231      1.22  riastrad 
   2232      1.22  riastrad 	mutex_enter(&wgs->wgs_send_counter_lock);
   2233      1.22  riastrad 	send_counter = wgs->wgs_send_counter;
   2234      1.22  riastrad 	mutex_exit(&wgs->wgs_send_counter_lock);
   2235      1.22  riastrad 
   2236      1.22  riastrad 	return send_counter;
   2237      1.22  riastrad #endif
   2238      1.22  riastrad }
   2239      1.22  riastrad 
   2240      1.22  riastrad static uint64_t
   2241      1.22  riastrad wg_session_inc_send_counter(struct wg_session *wgs)
   2242      1.22  riastrad {
   2243      1.22  riastrad #ifdef __HAVE_ATOMIC64_LOADSTORE
   2244      1.22  riastrad 	return atomic_inc_64_nv(&wgs->wgs_send_counter) - 1;
   2245      1.22  riastrad #else
   2246      1.22  riastrad 	uint64_t send_counter;
   2247      1.22  riastrad 
   2248      1.22  riastrad 	mutex_enter(&wgs->wgs_send_counter_lock);
   2249      1.22  riastrad 	send_counter = wgs->wgs_send_counter++;
   2250      1.22  riastrad 	mutex_exit(&wgs->wgs_send_counter_lock);
   2251      1.22  riastrad 
   2252      1.22  riastrad 	return send_counter;
   2253      1.22  riastrad #endif
   2254      1.22  riastrad }
   2255      1.22  riastrad 
   2256       1.1  riastrad static void
   2257       1.1  riastrad wg_clear_states(struct wg_session *wgs)
   2258       1.1  riastrad {
   2259       1.1  riastrad 
   2260      1.49  riastrad 	KASSERT(mutex_owned(wgs->wgs_peer->wgp_lock));
   2261      1.49  riastrad 
   2262       1.1  riastrad 	wgs->wgs_send_counter = 0;
   2263       1.6  riastrad 	sliwin_reset(&wgs->wgs_recvwin->window);
   2264       1.1  riastrad 
   2265       1.1  riastrad #define wgs_clear(v)	explicit_memset(wgs->wgs_##v, 0, sizeof(wgs->wgs_##v))
   2266       1.1  riastrad 	wgs_clear(handshake_hash);
   2267       1.1  riastrad 	wgs_clear(chaining_key);
   2268       1.1  riastrad 	wgs_clear(ephemeral_key_pub);
   2269       1.1  riastrad 	wgs_clear(ephemeral_key_priv);
   2270       1.1  riastrad 	wgs_clear(ephemeral_key_peer);
   2271       1.1  riastrad #undef wgs_clear
   2272       1.1  riastrad }
   2273       1.1  riastrad 
   2274       1.1  riastrad static struct wg_session *
   2275       1.1  riastrad wg_lookup_session_by_index(struct wg_softc *wg, const uint32_t index,
   2276       1.1  riastrad     struct psref *psref)
   2277       1.1  riastrad {
   2278       1.1  riastrad 	struct wg_session *wgs;
   2279       1.1  riastrad 
   2280       1.1  riastrad 	int s = pserialize_read_enter();
   2281      1.37  riastrad 	wgs = thmap_get(wg->wg_sessions_byindex, &index, sizeof index);
   2282      1.49  riastrad 	if (wgs != NULL) {
   2283      1.49  riastrad 		KASSERT(atomic_load_relaxed(&wgs->wgs_state) !=
   2284      1.49  riastrad 		    WGS_STATE_UNKNOWN);
   2285       1.1  riastrad 		psref_acquire(psref, &wgs->wgs_psref, wg_psref_class);
   2286      1.49  riastrad 	}
   2287       1.1  riastrad 	pserialize_read_exit(s);
   2288       1.1  riastrad 
   2289       1.1  riastrad 	return wgs;
   2290       1.1  riastrad }
   2291       1.1  riastrad 
   2292       1.1  riastrad static void
   2293       1.1  riastrad wg_schedule_rekey_timer(struct wg_peer *wgp)
   2294       1.1  riastrad {
   2295      1.65  christos 	int timeout = MIN(wg_rekey_after_time, (unsigned)(INT_MAX / hz));
   2296       1.1  riastrad 
   2297       1.1  riastrad 	callout_schedule(&wgp->wgp_rekey_timer, timeout * hz);
   2298       1.1  riastrad }
   2299       1.1  riastrad 
   2300       1.1  riastrad static void
   2301       1.1  riastrad wg_send_keepalive_msg(struct wg_peer *wgp, struct wg_session *wgs)
   2302       1.1  riastrad {
   2303       1.1  riastrad 	struct mbuf *m;
   2304       1.1  riastrad 
   2305       1.1  riastrad 	/*
   2306       1.1  riastrad 	 * [W] 6.5 Passive Keepalive
   2307       1.1  riastrad 	 * "A keepalive message is simply a transport data message with
   2308       1.1  riastrad 	 *  a zero-length encapsulated encrypted inner-packet."
   2309       1.1  riastrad 	 */
   2310       1.1  riastrad 	m = m_gethdr(M_WAIT, MT_DATA);
   2311       1.1  riastrad 	wg_send_data_msg(wgp, wgs, m);
   2312       1.1  riastrad }
   2313       1.1  riastrad 
   2314       1.1  riastrad static bool
   2315       1.1  riastrad wg_need_to_send_init_message(struct wg_session *wgs)
   2316       1.1  riastrad {
   2317       1.1  riastrad 	/*
   2318       1.1  riastrad 	 * [W] 6.2 Transport Message Limits
   2319       1.1  riastrad 	 * "if a peer is the initiator of a current secure session,
   2320       1.1  riastrad 	 *  WireGuard will send a handshake initiation message to begin
   2321       1.1  riastrad 	 *  a new secure session ... if after receiving a transport data
   2322       1.1  riastrad 	 *  message, the current secure session is (REJECT-AFTER-TIME 
   2323       1.1  riastrad 	 *  KEEPALIVE-TIMEOUT  REKEY-TIMEOUT) seconds old and it has
   2324       1.1  riastrad 	 *  not yet acted upon this event."
   2325       1.1  riastrad 	 */
   2326       1.1  riastrad 	return wgs->wgs_is_initiator && wgs->wgs_time_last_data_sent == 0 &&
   2327       1.1  riastrad 	    (time_uptime - wgs->wgs_time_established) >=
   2328       1.1  riastrad 	    (wg_reject_after_time - wg_keepalive_timeout - wg_rekey_timeout);
   2329       1.1  riastrad }
   2330       1.1  riastrad 
   2331       1.1  riastrad static void
   2332      1.65  christos wg_schedule_peer_task(struct wg_peer *wgp, unsigned int task)
   2333       1.1  riastrad {
   2334       1.1  riastrad 
   2335      1.55  riastrad 	mutex_enter(wgp->wgp_intr_lock);
   2336       1.1  riastrad 	WG_DLOG("tasks=%d, task=%d\n", wgp->wgp_tasks, task);
   2337      1.55  riastrad 	if (wgp->wgp_tasks == 0)
   2338      1.55  riastrad 		/*
   2339      1.55  riastrad 		 * XXX If the current CPU is already loaded -- e.g., if
   2340      1.55  riastrad 		 * there's already a bunch of handshakes queued up --
   2341      1.55  riastrad 		 * consider tossing this over to another CPU to
   2342      1.55  riastrad 		 * distribute the load.
   2343      1.55  riastrad 		 */
   2344      1.55  riastrad 		workqueue_enqueue(wg_wq, &wgp->wgp_work, NULL);
   2345      1.55  riastrad 	wgp->wgp_tasks |= task;
   2346      1.55  riastrad 	mutex_exit(wgp->wgp_intr_lock);
   2347       1.1  riastrad }
   2348       1.1  riastrad 
   2349       1.1  riastrad static void
   2350       1.1  riastrad wg_change_endpoint(struct wg_peer *wgp, const struct sockaddr *new)
   2351       1.1  riastrad {
   2352      1.49  riastrad 	struct wg_sockaddr *wgsa_prev;
   2353       1.1  riastrad 
   2354       1.1  riastrad 	WG_TRACE("Changing endpoint");
   2355       1.1  riastrad 
   2356       1.1  riastrad 	memcpy(wgp->wgp_endpoint0, new, new->sa_len);
   2357      1.49  riastrad 	wgsa_prev = wgp->wgp_endpoint;
   2358      1.49  riastrad 	atomic_store_release(&wgp->wgp_endpoint, wgp->wgp_endpoint0);
   2359      1.49  riastrad 	wgp->wgp_endpoint0 = wgsa_prev;
   2360      1.49  riastrad 	atomic_store_release(&wgp->wgp_endpoint_available, true);
   2361      1.49  riastrad 
   2362       1.1  riastrad 	wg_schedule_peer_task(wgp, WGP_TASK_ENDPOINT_CHANGED);
   2363       1.1  riastrad }
   2364       1.1  riastrad 
   2365       1.2  riastrad static bool
   2366      1.17  riastrad wg_validate_inner_packet(const char *packet, size_t decrypted_len, int *af)
   2367       1.1  riastrad {
   2368       1.2  riastrad 	uint16_t packet_len;
   2369      1.17  riastrad 	const struct ip *ip;
   2370       1.2  riastrad 
   2371       1.2  riastrad 	if (__predict_false(decrypted_len < sizeof(struct ip)))
   2372       1.2  riastrad 		return false;
   2373       1.1  riastrad 
   2374      1.17  riastrad 	ip = (const struct ip *)packet;
   2375       1.2  riastrad 	if (ip->ip_v == 4)
   2376       1.2  riastrad 		*af = AF_INET;
   2377       1.2  riastrad 	else if (ip->ip_v == 6)
   2378       1.2  riastrad 		*af = AF_INET6;
   2379       1.2  riastrad 	else
   2380       1.2  riastrad 		return false;
   2381       1.2  riastrad 
   2382       1.2  riastrad 	WG_DLOG("af=%d\n", *af);
   2383       1.1  riastrad 
   2384      1.62  riastrad 	switch (*af) {
   2385      1.62  riastrad #ifdef INET
   2386      1.62  riastrad 	case AF_INET:
   2387       1.2  riastrad 		packet_len = ntohs(ip->ip_len);
   2388      1.62  riastrad 		break;
   2389      1.62  riastrad #endif
   2390      1.62  riastrad #ifdef INET6
   2391      1.62  riastrad 	case AF_INET6: {
   2392      1.17  riastrad 		const struct ip6_hdr *ip6;
   2393       1.1  riastrad 
   2394       1.2  riastrad 		if (__predict_false(decrypted_len < sizeof(struct ip6_hdr)))
   2395       1.2  riastrad 			return false;
   2396       1.1  riastrad 
   2397      1.17  riastrad 		ip6 = (const struct ip6_hdr *)packet;
   2398       1.2  riastrad 		packet_len = sizeof(struct ip6_hdr) + ntohs(ip6->ip6_plen);
   2399      1.62  riastrad 		break;
   2400      1.62  riastrad 	}
   2401      1.62  riastrad #endif
   2402      1.62  riastrad 	default:
   2403      1.62  riastrad 		return false;
   2404       1.1  riastrad 	}
   2405       1.2  riastrad 
   2406       1.2  riastrad 	WG_DLOG("packet_len=%u\n", packet_len);
   2407       1.2  riastrad 	if (packet_len > decrypted_len)
   2408       1.1  riastrad 		return false;
   2409       1.1  riastrad 
   2410       1.1  riastrad 	return true;
   2411       1.1  riastrad }
   2412       1.1  riastrad 
   2413       1.1  riastrad static bool
   2414       1.1  riastrad wg_validate_route(struct wg_softc *wg, struct wg_peer *wgp_expected,
   2415       1.1  riastrad     int af, char *packet)
   2416       1.1  riastrad {
   2417       1.1  riastrad 	struct sockaddr_storage ss;
   2418       1.1  riastrad 	struct sockaddr *sa;
   2419       1.1  riastrad 	struct psref psref;
   2420       1.1  riastrad 	struct wg_peer *wgp;
   2421       1.1  riastrad 	bool ok;
   2422       1.1  riastrad 
   2423       1.1  riastrad 	/*
   2424       1.1  riastrad 	 * II CRYPTOKEY ROUTING
   2425      1.14  riastrad 	 * "it will only accept it if its source IP resolves in the
   2426      1.14  riastrad 	 *  table to the public key used in the secure session for
   2427      1.14  riastrad 	 *  decrypting it."
   2428       1.1  riastrad 	 */
   2429       1.1  riastrad 
   2430       1.1  riastrad 	if (af == AF_INET) {
   2431      1.17  riastrad 		const struct ip *ip = (const struct ip *)packet;
   2432       1.1  riastrad 		struct sockaddr_in *sin = (struct sockaddr_in *)&ss;
   2433       1.1  riastrad 		sockaddr_in_init(sin, &ip->ip_src, 0);
   2434       1.1  riastrad 		sa = sintosa(sin);
   2435       1.1  riastrad #ifdef INET6
   2436       1.1  riastrad 	} else {
   2437      1.17  riastrad 		const struct ip6_hdr *ip6 = (const struct ip6_hdr *)packet;
   2438       1.1  riastrad 		struct sockaddr_in6 *sin6 = (struct sockaddr_in6 *)&ss;
   2439       1.1  riastrad 		sockaddr_in6_init(sin6, &ip6->ip6_src, 0, 0, 0);
   2440       1.1  riastrad 		sa = sin6tosa(sin6);
   2441       1.1  riastrad #endif
   2442       1.1  riastrad 	}
   2443       1.1  riastrad 
   2444       1.1  riastrad 	wgp = wg_pick_peer_by_sa(wg, sa, &psref);
   2445       1.1  riastrad 	ok = (wgp == wgp_expected);
   2446       1.1  riastrad 	if (wgp != NULL)
   2447       1.1  riastrad 		wg_put_peer(wgp, &psref);
   2448       1.1  riastrad 
   2449       1.1  riastrad 	return ok;
   2450       1.1  riastrad }
   2451       1.1  riastrad 
   2452       1.1  riastrad static void
   2453       1.1  riastrad wg_session_dtor_timer(void *arg)
   2454       1.1  riastrad {
   2455       1.1  riastrad 	struct wg_peer *wgp = arg;
   2456       1.1  riastrad 
   2457       1.1  riastrad 	WG_TRACE("enter");
   2458       1.1  riastrad 
   2459       1.1  riastrad 	wg_schedule_peer_task(wgp, WGP_TASK_DESTROY_PREV_SESSION);
   2460       1.1  riastrad }
   2461       1.1  riastrad 
   2462       1.1  riastrad static void
   2463       1.1  riastrad wg_schedule_session_dtor_timer(struct wg_peer *wgp)
   2464       1.1  riastrad {
   2465       1.1  riastrad 
   2466       1.1  riastrad 	/* 1 second grace period */
   2467       1.1  riastrad 	callout_schedule(&wgp->wgp_session_dtor_timer, hz);
   2468       1.1  riastrad }
   2469       1.1  riastrad 
   2470       1.1  riastrad static bool
   2471       1.1  riastrad sockaddr_port_match(const struct sockaddr *sa1, const struct sockaddr *sa2)
   2472       1.1  riastrad {
   2473       1.1  riastrad 	if (sa1->sa_family != sa2->sa_family)
   2474       1.1  riastrad 		return false;
   2475       1.1  riastrad 
   2476       1.1  riastrad 	switch (sa1->sa_family) {
   2477      1.62  riastrad #ifdef INET
   2478       1.1  riastrad 	case AF_INET:
   2479       1.1  riastrad 		return satocsin(sa1)->sin_port == satocsin(sa2)->sin_port;
   2480      1.62  riastrad #endif
   2481      1.62  riastrad #ifdef INET6
   2482       1.1  riastrad 	case AF_INET6:
   2483       1.1  riastrad 		return satocsin6(sa1)->sin6_port == satocsin6(sa2)->sin6_port;
   2484      1.62  riastrad #endif
   2485       1.1  riastrad 	default:
   2486      1.62  riastrad 		return false;
   2487       1.1  riastrad 	}
   2488       1.1  riastrad }
   2489       1.1  riastrad 
   2490       1.1  riastrad static void
   2491       1.1  riastrad wg_update_endpoint_if_necessary(struct wg_peer *wgp,
   2492       1.1  riastrad     const struct sockaddr *src)
   2493       1.1  riastrad {
   2494      1.47  riastrad 	struct wg_sockaddr *wgsa;
   2495      1.47  riastrad 	struct psref psref;
   2496      1.47  riastrad 
   2497      1.47  riastrad 	wgsa = wg_get_endpoint_sa(wgp, &psref);
   2498       1.1  riastrad 
   2499       1.1  riastrad #ifdef WG_DEBUG_LOG
   2500       1.1  riastrad 	char oldaddr[128], newaddr[128];
   2501      1.47  riastrad 	sockaddr_format(wgsatosa(wgsa), oldaddr, sizeof(oldaddr));
   2502       1.1  riastrad 	sockaddr_format(src, newaddr, sizeof(newaddr));
   2503       1.1  riastrad 	WG_DLOG("old=%s, new=%s\n", oldaddr, newaddr);
   2504       1.1  riastrad #endif
   2505       1.1  riastrad 
   2506       1.1  riastrad 	/*
   2507       1.1  riastrad 	 * III: "Since the packet has authenticated correctly, the source IP of
   2508       1.1  riastrad 	 * the outer UDP/IP packet is used to update the endpoint for peer..."
   2509       1.1  riastrad 	 */
   2510      1.47  riastrad 	if (__predict_false(sockaddr_cmp(src, wgsatosa(wgsa)) != 0 ||
   2511      1.47  riastrad 		!sockaddr_port_match(src, wgsatosa(wgsa)))) {
   2512       1.1  riastrad 		/* XXX We can't change the endpoint twice in a short period */
   2513      1.49  riastrad 		if (atomic_swap_uint(&wgp->wgp_endpoint_changing, 1) == 0) {
   2514       1.1  riastrad 			wg_change_endpoint(wgp, src);
   2515       1.1  riastrad 		}
   2516       1.1  riastrad 	}
   2517      1.47  riastrad 
   2518      1.47  riastrad 	wg_put_sa(wgp, wgsa, &psref);
   2519       1.1  riastrad }
   2520       1.1  riastrad 
   2521      1.63  riastrad static void __noinline
   2522       1.1  riastrad wg_handle_msg_data(struct wg_softc *wg, struct mbuf *m,
   2523       1.1  riastrad     const struct sockaddr *src)
   2524       1.1  riastrad {
   2525       1.2  riastrad 	struct wg_msg_data *wgmd;
   2526       1.1  riastrad 	char *encrypted_buf = NULL, *decrypted_buf;
   2527       1.1  riastrad 	size_t encrypted_len, decrypted_len;
   2528       1.1  riastrad 	struct wg_session *wgs;
   2529       1.1  riastrad 	struct wg_peer *wgp;
   2530      1.49  riastrad 	int state;
   2531       1.1  riastrad 	size_t mlen;
   2532       1.1  riastrad 	struct psref psref;
   2533       1.1  riastrad 	int error, af;
   2534       1.1  riastrad 	bool success, free_encrypted_buf = false, ok;
   2535       1.1  riastrad 	struct mbuf *n;
   2536       1.1  riastrad 
   2537      1.26  riastrad 	KASSERT(m->m_len >= sizeof(struct wg_msg_data));
   2538       1.2  riastrad 	wgmd = mtod(m, struct wg_msg_data *);
   2539       1.2  riastrad 
   2540      1.39  riastrad 	KASSERT(wgmd->wgmd_type == htole32(WG_MSG_TYPE_DATA));
   2541       1.1  riastrad 	WG_TRACE("data");
   2542       1.1  riastrad 
   2543      1.49  riastrad 	/* Find the putative session, or drop.  */
   2544       1.1  riastrad 	wgs = wg_lookup_session_by_index(wg, wgmd->wgmd_receiver, &psref);
   2545       1.1  riastrad 	if (wgs == NULL) {
   2546       1.1  riastrad 		WG_TRACE("No session found");
   2547       1.1  riastrad 		m_freem(m);
   2548       1.1  riastrad 		return;
   2549       1.1  riastrad 	}
   2550      1.49  riastrad 
   2551      1.49  riastrad 	/*
   2552      1.49  riastrad 	 * We are only ready to handle data when in INIT_PASSIVE,
   2553      1.49  riastrad 	 * ESTABLISHED, or DESTROYING.  All transitions out of that
   2554      1.49  riastrad 	 * state dissociate the session index and drain psrefs.
   2555      1.49  riastrad 	 */
   2556      1.49  riastrad 	state = atomic_load_relaxed(&wgs->wgs_state);
   2557      1.49  riastrad 	switch (state) {
   2558      1.49  riastrad 	case WGS_STATE_UNKNOWN:
   2559      1.49  riastrad 		panic("wg session %p in unknown state has session index %u",
   2560      1.49  riastrad 		    wgs, wgmd->wgmd_receiver);
   2561      1.49  riastrad 	case WGS_STATE_INIT_ACTIVE:
   2562      1.49  riastrad 		WG_TRACE("not yet ready for data");
   2563      1.49  riastrad 		goto out;
   2564      1.49  riastrad 	case WGS_STATE_INIT_PASSIVE:
   2565      1.49  riastrad 	case WGS_STATE_ESTABLISHED:
   2566      1.49  riastrad 	case WGS_STATE_DESTROYING:
   2567      1.49  riastrad 		break;
   2568      1.49  riastrad 	}
   2569      1.49  riastrad 
   2570      1.49  riastrad 	/*
   2571      1.49  riastrad 	 * Get the peer, for rate-limited logs (XXX MPSAFE, dtrace) and
   2572      1.49  riastrad 	 * to update the endpoint if authentication succeeds.
   2573      1.49  riastrad 	 */
   2574       1.1  riastrad 	wgp = wgs->wgs_peer;
   2575       1.1  riastrad 
   2576      1.49  riastrad 	/*
   2577      1.49  riastrad 	 * Reject outrageously wrong sequence numbers before doing any
   2578      1.49  riastrad 	 * crypto work or taking any locks.
   2579      1.49  riastrad 	 */
   2580       1.6  riastrad 	error = sliwin_check_fast(&wgs->wgs_recvwin->window,
   2581      1.39  riastrad 	    le64toh(wgmd->wgmd_counter));
   2582       1.6  riastrad 	if (error) {
   2583       1.6  riastrad 		WG_LOG_RATECHECK(&wgp->wgp_ppsratecheck, LOG_DEBUG,
   2584      1.76  jakllsch 		    "%s: peer %s: out-of-window packet: %"PRIu64"\n",
   2585      1.76  jakllsch 		    if_name(&wg->wg_if), wgp->wgp_name,
   2586      1.39  riastrad 		    le64toh(wgmd->wgmd_counter));
   2587       1.6  riastrad 		goto out;
   2588       1.6  riastrad 	}
   2589       1.6  riastrad 
   2590      1.49  riastrad 	/* Ensure the payload and authenticator are contiguous.  */
   2591       1.1  riastrad 	mlen = m_length(m);
   2592       1.1  riastrad 	encrypted_len = mlen - sizeof(*wgmd);
   2593       1.2  riastrad 	if (encrypted_len < WG_AUTHTAG_LEN) {
   2594       1.2  riastrad 		WG_DLOG("Short encrypted_len: %lu\n", encrypted_len);
   2595       1.2  riastrad 		goto out;
   2596       1.2  riastrad 	}
   2597       1.1  riastrad 	success = m_ensure_contig(&m, sizeof(*wgmd) + encrypted_len);
   2598       1.1  riastrad 	if (success) {
   2599       1.1  riastrad 		encrypted_buf = mtod(m, char *) + sizeof(*wgmd);
   2600       1.1  riastrad 	} else {
   2601       1.1  riastrad 		encrypted_buf = kmem_intr_alloc(encrypted_len, KM_NOSLEEP);
   2602       1.1  riastrad 		if (encrypted_buf == NULL) {
   2603       1.1  riastrad 			WG_DLOG("failed to allocate encrypted_buf\n");
   2604       1.1  riastrad 			goto out;
   2605       1.1  riastrad 		}
   2606       1.2  riastrad 		m_copydata(m, sizeof(*wgmd), encrypted_len, encrypted_buf);
   2607       1.1  riastrad 		free_encrypted_buf = true;
   2608       1.1  riastrad 	}
   2609       1.1  riastrad 	/* m_ensure_contig may change m regardless of its result */
   2610      1.27  riastrad 	KASSERT(m->m_len >= sizeof(*wgmd));
   2611       1.1  riastrad 	wgmd = mtod(m, struct wg_msg_data *);
   2612       1.1  riastrad 
   2613      1.49  riastrad 	/*
   2614      1.49  riastrad 	 * Get a buffer for the plaintext.  Add WG_AUTHTAG_LEN to avoid
   2615      1.49  riastrad 	 * a zero-length buffer (XXX).  Drop if plaintext is longer
   2616      1.49  riastrad 	 * than MCLBYTES (XXX).
   2617      1.49  riastrad 	 */
   2618       1.2  riastrad 	decrypted_len = encrypted_len - WG_AUTHTAG_LEN;
   2619       1.2  riastrad 	if (decrypted_len > MCLBYTES) {
   2620       1.2  riastrad 		/* FIXME handle larger data than MCLBYTES */
   2621       1.2  riastrad 		WG_DLOG("couldn't handle larger data than MCLBYTES\n");
   2622       1.2  riastrad 		goto out;
   2623       1.2  riastrad 	}
   2624      1.14  riastrad 	n = wg_get_mbuf(0, decrypted_len + WG_AUTHTAG_LEN);
   2625       1.1  riastrad 	if (n == NULL) {
   2626       1.1  riastrad 		WG_DLOG("wg_get_mbuf failed\n");
   2627       1.1  riastrad 		goto out;
   2628       1.1  riastrad 	}
   2629       1.1  riastrad 	decrypted_buf = mtod(n, char *);
   2630       1.1  riastrad 
   2631      1.49  riastrad 	/* Decrypt and verify the packet.  */
   2632       1.1  riastrad 	WG_DLOG("mlen=%lu, encrypted_len=%lu\n", mlen, encrypted_len);
   2633       1.1  riastrad 	error = wg_algo_aead_dec(decrypted_buf,
   2634       1.1  riastrad 	    encrypted_len - WG_AUTHTAG_LEN /* can be 0 */,
   2635      1.39  riastrad 	    wgs->wgs_tkey_recv, le64toh(wgmd->wgmd_counter), encrypted_buf,
   2636       1.1  riastrad 	    encrypted_len, NULL, 0);
   2637       1.1  riastrad 	if (error != 0) {
   2638       1.1  riastrad 		WG_LOG_RATECHECK(&wgp->wgp_ppsratecheck, LOG_DEBUG,
   2639      1.76  jakllsch 		    "%s: peer %s: failed to wg_algo_aead_dec\n",
   2640      1.76  jakllsch 		    if_name(&wg->wg_if), wgp->wgp_name);
   2641       1.1  riastrad 		m_freem(n);
   2642       1.1  riastrad 		goto out;
   2643       1.1  riastrad 	}
   2644       1.1  riastrad 	WG_DLOG("outsize=%u\n", (u_int)decrypted_len);
   2645       1.1  riastrad 
   2646      1.49  riastrad 	/* Packet is genuine.  Reject it if a replay or just too old.  */
   2647       1.6  riastrad 	mutex_enter(&wgs->wgs_recvwin->lock);
   2648       1.6  riastrad 	error = sliwin_update(&wgs->wgs_recvwin->window,
   2649      1.39  riastrad 	    le64toh(wgmd->wgmd_counter));
   2650       1.6  riastrad 	mutex_exit(&wgs->wgs_recvwin->lock);
   2651       1.6  riastrad 	if (error) {
   2652       1.1  riastrad 		WG_LOG_RATECHECK(&wgp->wgp_ppsratecheck, LOG_DEBUG,
   2653      1.76  jakllsch 		    "%s: peer %s: replay or out-of-window packet: %"PRIu64"\n",
   2654      1.76  jakllsch 		    if_name(&wg->wg_if), wgp->wgp_name,
   2655      1.39  riastrad 		    le64toh(wgmd->wgmd_counter));
   2656       1.1  riastrad 		m_freem(n);
   2657       1.1  riastrad 		goto out;
   2658       1.1  riastrad 	}
   2659       1.1  riastrad 
   2660      1.49  riastrad 	/* We're done with m now; free it and chuck the pointers.  */
   2661       1.1  riastrad 	m_freem(m);
   2662       1.1  riastrad 	m = NULL;
   2663       1.1  riastrad 	wgmd = NULL;
   2664       1.1  riastrad 
   2665      1.49  riastrad 	/*
   2666      1.49  riastrad 	 * Validate the encapsulated packet header and get the address
   2667      1.49  riastrad 	 * family, or drop.
   2668      1.49  riastrad 	 */
   2669       1.2  riastrad 	ok = wg_validate_inner_packet(decrypted_buf, decrypted_len, &af);
   2670       1.1  riastrad 	if (!ok) {
   2671       1.1  riastrad 		m_freem(n);
   2672       1.1  riastrad 		goto out;
   2673       1.1  riastrad 	}
   2674       1.1  riastrad 
   2675      1.49  riastrad 	/*
   2676      1.49  riastrad 	 * The packet is genuine.  Update the peer's endpoint if the
   2677      1.49  riastrad 	 * source address changed.
   2678      1.49  riastrad 	 *
   2679      1.49  riastrad 	 * XXX How to prevent DoS by replaying genuine packets from the
   2680      1.49  riastrad 	 * wrong source address?
   2681      1.49  riastrad 	 */
   2682       1.1  riastrad 	wg_update_endpoint_if_necessary(wgp, src);
   2683       1.1  riastrad 
   2684      1.49  riastrad 	/* Submit it into our network stack if routable.  */
   2685       1.1  riastrad 	ok = wg_validate_route(wg, wgp, af, decrypted_buf);
   2686       1.1  riastrad 	if (ok) {
   2687       1.1  riastrad 		wg->wg_ops->input(&wg->wg_if, n, af);
   2688       1.1  riastrad 	} else {
   2689      1.76  jakllsch 		char addrstr[INET6_ADDRSTRLEN];
   2690      1.76  jakllsch 		memset(addrstr, 0, sizeof(addrstr));
   2691      1.76  jakllsch 		if (af == AF_INET) {
   2692      1.76  jakllsch 			const struct ip *ip = (const struct ip *)decrypted_buf;
   2693      1.76  jakllsch 			IN_PRINT(addrstr, &ip->ip_src);
   2694      1.76  jakllsch #ifdef INET6
   2695      1.76  jakllsch 		} else if (af == AF_INET6) {
   2696      1.76  jakllsch 			const struct ip6_hdr *ip6 =
   2697      1.76  jakllsch 			    (const struct ip6_hdr *)decrypted_buf;
   2698      1.76  jakllsch 			IN6_PRINT(addrstr, &ip6->ip6_src);
   2699      1.76  jakllsch #endif
   2700      1.76  jakllsch 		}
   2701       1.1  riastrad 		WG_LOG_RATECHECK(&wgp->wgp_ppsratecheck, LOG_DEBUG,
   2702      1.76  jakllsch 		    "%s: peer %s: invalid source address (%s)\n",
   2703      1.76  jakllsch 		    if_name(&wg->wg_if), wgp->wgp_name, addrstr);
   2704       1.1  riastrad 		m_freem(n);
   2705       1.1  riastrad 		/*
   2706       1.1  riastrad 		 * The inner address is invalid however the session is valid
   2707       1.1  riastrad 		 * so continue the session processing below.
   2708       1.1  riastrad 		 */
   2709       1.1  riastrad 	}
   2710       1.1  riastrad 	n = NULL;
   2711       1.1  riastrad 
   2712      1.49  riastrad 	/* Update the state machine if necessary.  */
   2713      1.49  riastrad 	if (__predict_false(state == WGS_STATE_INIT_PASSIVE)) {
   2714      1.49  riastrad 		/*
   2715      1.49  riastrad 		 * We were waiting for the initiator to send their
   2716      1.49  riastrad 		 * first data transport message, and that has happened.
   2717      1.49  riastrad 		 * Schedule a task to establish this session.
   2718      1.49  riastrad 		 */
   2719      1.49  riastrad 		wg_schedule_peer_task(wgp, WGP_TASK_ESTABLISH_SESSION);
   2720       1.1  riastrad 	} else {
   2721       1.1  riastrad 		if (__predict_false(wg_need_to_send_init_message(wgs))) {
   2722       1.1  riastrad 			wg_schedule_peer_task(wgp, WGP_TASK_SEND_INIT_MESSAGE);
   2723       1.1  riastrad 		}
   2724       1.1  riastrad 		/*
   2725       1.1  riastrad 		 * [W] 6.5 Passive Keepalive
   2726       1.1  riastrad 		 * "If a peer has received a validly-authenticated transport
   2727       1.1  riastrad 		 *  data message (section 5.4.6), but does not have any packets
   2728       1.1  riastrad 		 *  itself to send back for KEEPALIVE-TIMEOUT seconds, it sends
   2729       1.1  riastrad 		 *  a keepalive message."
   2730       1.1  riastrad 		 */
   2731      1.50  riastrad 		WG_DLOG("time_uptime=%ju wgs_time_last_data_sent=%ju\n",
   2732      1.50  riastrad 		    (uintmax_t)time_uptime,
   2733      1.50  riastrad 		    (uintmax_t)wgs->wgs_time_last_data_sent);
   2734       1.1  riastrad 		if ((time_uptime - wgs->wgs_time_last_data_sent) >=
   2735       1.1  riastrad 		    wg_keepalive_timeout) {
   2736       1.1  riastrad 			WG_TRACE("Schedule sending keepalive message");
   2737       1.1  riastrad 			/*
   2738       1.1  riastrad 			 * We can't send a keepalive message here to avoid
   2739       1.1  riastrad 			 * a deadlock;  we already hold the solock of a socket
   2740       1.1  riastrad 			 * that is used to send the message.
   2741       1.1  riastrad 			 */
   2742      1.14  riastrad 			wg_schedule_peer_task(wgp,
   2743      1.14  riastrad 			    WGP_TASK_SEND_KEEPALIVE_MESSAGE);
   2744       1.1  riastrad 		}
   2745       1.1  riastrad 	}
   2746       1.1  riastrad out:
   2747       1.1  riastrad 	wg_put_session(wgs, &psref);
   2748       1.1  riastrad 	if (m != NULL)
   2749       1.2  riastrad 		m_freem(m);
   2750       1.1  riastrad 	if (free_encrypted_buf)
   2751       1.1  riastrad 		kmem_intr_free(encrypted_buf, encrypted_len);
   2752       1.1  riastrad }
   2753       1.1  riastrad 
   2754      1.63  riastrad static void __noinline
   2755       1.1  riastrad wg_handle_msg_cookie(struct wg_softc *wg, const struct wg_msg_cookie *wgmc)
   2756       1.1  riastrad {
   2757       1.1  riastrad 	struct wg_session *wgs;
   2758       1.1  riastrad 	struct wg_peer *wgp;
   2759       1.1  riastrad 	struct psref psref;
   2760       1.1  riastrad 	int error;
   2761       1.1  riastrad 	uint8_t key[WG_HASH_LEN];
   2762       1.1  riastrad 	uint8_t cookie[WG_COOKIE_LEN];
   2763       1.1  riastrad 
   2764       1.1  riastrad 	WG_TRACE("cookie msg received");
   2765      1.49  riastrad 
   2766      1.49  riastrad 	/* Find the putative session.  */
   2767       1.1  riastrad 	wgs = wg_lookup_session_by_index(wg, wgmc->wgmc_receiver, &psref);
   2768       1.1  riastrad 	if (wgs == NULL) {
   2769       1.1  riastrad 		WG_TRACE("No session found");
   2770       1.1  riastrad 		return;
   2771       1.1  riastrad 	}
   2772      1.49  riastrad 
   2773      1.49  riastrad 	/* Lock the peer so we can update the cookie state.  */
   2774       1.1  riastrad 	wgp = wgs->wgs_peer;
   2775      1.49  riastrad 	mutex_enter(wgp->wgp_lock);
   2776       1.1  riastrad 
   2777       1.1  riastrad 	if (!wgp->wgp_last_sent_mac1_valid) {
   2778       1.1  riastrad 		WG_TRACE("No valid mac1 sent (or expired)");
   2779       1.1  riastrad 		goto out;
   2780       1.1  riastrad 	}
   2781       1.1  riastrad 
   2782      1.49  riastrad 	/* Decrypt the cookie and store it for later handshake retry.  */
   2783       1.1  riastrad 	wg_algo_mac_cookie(key, sizeof(key), wgp->wgp_pubkey,
   2784       1.1  riastrad 	    sizeof(wgp->wgp_pubkey));
   2785      1.36  riastrad 	error = wg_algo_xaead_dec(cookie, sizeof(cookie), key,
   2786       1.1  riastrad 	    wgmc->wgmc_cookie, sizeof(wgmc->wgmc_cookie),
   2787       1.1  riastrad 	    wgp->wgp_last_sent_mac1, sizeof(wgp->wgp_last_sent_mac1),
   2788       1.1  riastrad 	    wgmc->wgmc_salt);
   2789       1.1  riastrad 	if (error != 0) {
   2790       1.1  riastrad 		WG_LOG_RATECHECK(&wgp->wgp_ppsratecheck, LOG_DEBUG,
   2791      1.76  jakllsch 		    "%s: peer %s: wg_algo_aead_dec for cookie failed: "
   2792      1.76  jakllsch 		    "error=%d\n", if_name(&wg->wg_if), wgp->wgp_name, error);
   2793       1.1  riastrad 		goto out;
   2794       1.1  riastrad 	}
   2795       1.1  riastrad 	/*
   2796       1.1  riastrad 	 * [W] 6.6: Interaction with Cookie Reply System
   2797       1.1  riastrad 	 * "it should simply store the decrypted cookie value from the cookie
   2798       1.1  riastrad 	 *  reply message, and wait for the expiration of the REKEY-TIMEOUT
   2799       1.1  riastrad 	 *  timer for retrying a handshake initiation message."
   2800       1.1  riastrad 	 */
   2801       1.1  riastrad 	wgp->wgp_latest_cookie_time = time_uptime;
   2802       1.1  riastrad 	memcpy(wgp->wgp_latest_cookie, cookie, sizeof(wgp->wgp_latest_cookie));
   2803       1.1  riastrad out:
   2804      1.49  riastrad 	mutex_exit(wgp->wgp_lock);
   2805       1.1  riastrad 	wg_put_session(wgs, &psref);
   2806       1.1  riastrad }
   2807       1.1  riastrad 
   2808      1.26  riastrad static struct mbuf *
   2809      1.26  riastrad wg_validate_msg_header(struct wg_softc *wg, struct mbuf *m)
   2810       1.2  riastrad {
   2811      1.26  riastrad 	struct wg_msg wgm;
   2812      1.26  riastrad 	size_t mbuflen;
   2813      1.26  riastrad 	size_t msglen;
   2814       1.2  riastrad 
   2815      1.26  riastrad 	/*
   2816      1.26  riastrad 	 * Get the mbuf chain length.  It is already guaranteed, by
   2817      1.26  riastrad 	 * wg_overudp_cb, to be large enough for a struct wg_msg.
   2818      1.26  riastrad 	 */
   2819      1.26  riastrad 	mbuflen = m_length(m);
   2820      1.26  riastrad 	KASSERT(mbuflen >= sizeof(struct wg_msg));
   2821       1.2  riastrad 
   2822      1.26  riastrad 	/*
   2823      1.26  riastrad 	 * Copy the message header (32-bit message type) out -- we'll
   2824      1.26  riastrad 	 * worry about contiguity and alignment later.
   2825      1.26  riastrad 	 */
   2826      1.26  riastrad 	m_copydata(m, 0, sizeof(wgm), &wgm);
   2827      1.39  riastrad 	switch (le32toh(wgm.wgm_type)) {
   2828       1.2  riastrad 	case WG_MSG_TYPE_INIT:
   2829      1.26  riastrad 		msglen = sizeof(struct wg_msg_init);
   2830       1.2  riastrad 		break;
   2831       1.2  riastrad 	case WG_MSG_TYPE_RESP:
   2832      1.26  riastrad 		msglen = sizeof(struct wg_msg_resp);
   2833       1.2  riastrad 		break;
   2834       1.2  riastrad 	case WG_MSG_TYPE_COOKIE:
   2835      1.26  riastrad 		msglen = sizeof(struct wg_msg_cookie);
   2836       1.2  riastrad 		break;
   2837       1.2  riastrad 	case WG_MSG_TYPE_DATA:
   2838      1.26  riastrad 		msglen = sizeof(struct wg_msg_data);
   2839       1.2  riastrad 		break;
   2840       1.2  riastrad 	default:
   2841       1.2  riastrad 		WG_LOG_RATECHECK(&wg->wg_ppsratecheck, LOG_DEBUG,
   2842      1.76  jakllsch 		    "%s: Unexpected msg type: %u\n", if_name(&wg->wg_if),
   2843      1.76  jakllsch 		    le32toh(wgm.wgm_type));
   2844      1.26  riastrad 		goto error;
   2845      1.26  riastrad 	}
   2846      1.26  riastrad 
   2847      1.26  riastrad 	/* Verify the mbuf chain is long enough for this type of message.  */
   2848      1.26  riastrad 	if (__predict_false(mbuflen < msglen)) {
   2849      1.26  riastrad 		WG_DLOG("Invalid msg size: mbuflen=%lu type=%u\n", mbuflen,
   2850      1.39  riastrad 		    le32toh(wgm.wgm_type));
   2851      1.26  riastrad 		goto error;
   2852      1.26  riastrad 	}
   2853      1.26  riastrad 
   2854      1.26  riastrad 	/* Make the message header contiguous if necessary.  */
   2855      1.26  riastrad 	if (__predict_false(m->m_len < msglen)) {
   2856      1.26  riastrad 		m = m_pullup(m, msglen);
   2857      1.26  riastrad 		if (m == NULL)
   2858      1.26  riastrad 			return NULL;
   2859       1.2  riastrad 	}
   2860       1.2  riastrad 
   2861      1.26  riastrad 	return m;
   2862      1.26  riastrad 
   2863      1.26  riastrad error:
   2864      1.26  riastrad 	m_freem(m);
   2865      1.26  riastrad 	return NULL;
   2866       1.2  riastrad }
   2867       1.2  riastrad 
   2868       1.1  riastrad static void
   2869      1.14  riastrad wg_handle_packet(struct wg_softc *wg, struct mbuf *m,
   2870      1.14  riastrad     const struct sockaddr *src)
   2871       1.1  riastrad {
   2872       1.1  riastrad 	struct wg_msg *wgm;
   2873       1.2  riastrad 
   2874      1.26  riastrad 	m = wg_validate_msg_header(wg, m);
   2875      1.26  riastrad 	if (__predict_false(m == NULL))
   2876       1.2  riastrad 		return;
   2877       1.1  riastrad 
   2878      1.26  riastrad 	KASSERT(m->m_len >= sizeof(struct wg_msg));
   2879       1.1  riastrad 	wgm = mtod(m, struct wg_msg *);
   2880      1.39  riastrad 	switch (le32toh(wgm->wgm_type)) {
   2881       1.1  riastrad 	case WG_MSG_TYPE_INIT:
   2882       1.1  riastrad 		wg_handle_msg_init(wg, (struct wg_msg_init *)wgm, src);
   2883       1.1  riastrad 		break;
   2884       1.1  riastrad 	case WG_MSG_TYPE_RESP:
   2885       1.1  riastrad 		wg_handle_msg_resp(wg, (struct wg_msg_resp *)wgm, src);
   2886       1.1  riastrad 		break;
   2887       1.1  riastrad 	case WG_MSG_TYPE_COOKIE:
   2888       1.1  riastrad 		wg_handle_msg_cookie(wg, (struct wg_msg_cookie *)wgm);
   2889       1.1  riastrad 		break;
   2890       1.1  riastrad 	case WG_MSG_TYPE_DATA:
   2891       1.1  riastrad 		wg_handle_msg_data(wg, m, src);
   2892      1.38  riastrad 		/* wg_handle_msg_data frees m for us */
   2893      1.38  riastrad 		return;
   2894       1.1  riastrad 	default:
   2895      1.39  riastrad 		panic("invalid message type: %d", le32toh(wgm->wgm_type));
   2896       1.1  riastrad 	}
   2897      1.38  riastrad 
   2898      1.38  riastrad 	m_freem(m);
   2899       1.1  riastrad }
   2900       1.1  riastrad 
   2901       1.1  riastrad static void
   2902       1.1  riastrad wg_receive_packets(struct wg_softc *wg, const int af)
   2903       1.1  riastrad {
   2904       1.1  riastrad 
   2905      1.14  riastrad 	for (;;) {
   2906       1.1  riastrad 		int error, flags;
   2907       1.1  riastrad 		struct socket *so;
   2908       1.1  riastrad 		struct mbuf *m = NULL;
   2909       1.1  riastrad 		struct uio dummy_uio;
   2910       1.1  riastrad 		struct mbuf *paddr = NULL;
   2911       1.1  riastrad 		struct sockaddr *src;
   2912       1.1  riastrad 
   2913      1.55  riastrad 		so = wg_get_so_by_af(wg, af);
   2914       1.1  riastrad 		flags = MSG_DONTWAIT;
   2915       1.1  riastrad 		dummy_uio.uio_resid = 1000000000;
   2916       1.1  riastrad 
   2917      1.14  riastrad 		error = so->so_receive(so, &paddr, &dummy_uio, &m, NULL,
   2918      1.14  riastrad 		    &flags);
   2919       1.1  riastrad 		if (error || m == NULL) {
   2920       1.1  riastrad 			//if (error == EWOULDBLOCK)
   2921       1.1  riastrad 			return;
   2922       1.1  riastrad 		}
   2923       1.1  riastrad 
   2924       1.1  riastrad 		KASSERT(paddr != NULL);
   2925      1.27  riastrad 		KASSERT(paddr->m_len >= sizeof(struct sockaddr));
   2926       1.1  riastrad 		src = mtod(paddr, struct sockaddr *);
   2927       1.1  riastrad 
   2928       1.1  riastrad 		wg_handle_packet(wg, m, src);
   2929       1.1  riastrad 	}
   2930       1.1  riastrad }
   2931       1.1  riastrad 
   2932       1.1  riastrad static void
   2933       1.1  riastrad wg_get_peer(struct wg_peer *wgp, struct psref *psref)
   2934       1.1  riastrad {
   2935       1.1  riastrad 
   2936       1.1  riastrad 	psref_acquire(psref, &wgp->wgp_psref, wg_psref_class);
   2937       1.1  riastrad }
   2938       1.1  riastrad 
   2939       1.1  riastrad static void
   2940       1.1  riastrad wg_put_peer(struct wg_peer *wgp, struct psref *psref)
   2941       1.1  riastrad {
   2942       1.1  riastrad 
   2943       1.1  riastrad 	psref_release(psref, &wgp->wgp_psref, wg_psref_class);
   2944       1.1  riastrad }
   2945       1.1  riastrad 
   2946       1.1  riastrad static void
   2947      1.11  riastrad wg_task_send_init_message(struct wg_softc *wg, struct wg_peer *wgp)
   2948      1.11  riastrad {
   2949      1.11  riastrad 	struct wg_session *wgs;
   2950      1.11  riastrad 
   2951      1.11  riastrad 	WG_TRACE("WGP_TASK_SEND_INIT_MESSAGE");
   2952      1.11  riastrad 
   2953      1.49  riastrad 	KASSERT(mutex_owned(wgp->wgp_lock));
   2954      1.49  riastrad 
   2955      1.49  riastrad 	if (!atomic_load_acquire(&wgp->wgp_endpoint_available)) {
   2956      1.76  jakllsch 		WGLOG(LOG_DEBUG, "%s: No endpoint available\n",
   2957      1.76  jakllsch 		    if_name(&wg->wg_if));
   2958      1.11  riastrad 		/* XXX should do something? */
   2959      1.11  riastrad 		return;
   2960      1.11  riastrad 	}
   2961      1.11  riastrad 
   2962      1.49  riastrad 	wgs = wgp->wgp_session_stable;
   2963      1.11  riastrad 	if (wgs->wgs_state == WGS_STATE_UNKNOWN) {
   2964      1.49  riastrad 		/* XXX What if the unstable session is already INIT_ACTIVE?  */
   2965      1.11  riastrad 		wg_send_handshake_msg_init(wg, wgp);
   2966      1.11  riastrad 	} else {
   2967      1.11  riastrad 		/* rekey */
   2968      1.49  riastrad 		wgs = wgp->wgp_session_unstable;
   2969      1.11  riastrad 		if (wgs->wgs_state != WGS_STATE_INIT_ACTIVE)
   2970      1.11  riastrad 			wg_send_handshake_msg_init(wg, wgp);
   2971      1.11  riastrad 	}
   2972      1.11  riastrad }
   2973      1.11  riastrad 
   2974      1.11  riastrad static void
   2975      1.49  riastrad wg_task_retry_handshake(struct wg_softc *wg, struct wg_peer *wgp)
   2976      1.49  riastrad {
   2977      1.49  riastrad 	struct wg_session *wgs;
   2978      1.49  riastrad 
   2979      1.49  riastrad 	WG_TRACE("WGP_TASK_RETRY_HANDSHAKE");
   2980      1.49  riastrad 
   2981      1.49  riastrad 	KASSERT(mutex_owned(wgp->wgp_lock));
   2982      1.49  riastrad 	KASSERT(wgp->wgp_handshake_start_time != 0);
   2983      1.49  riastrad 
   2984      1.49  riastrad 	wgs = wgp->wgp_session_unstable;
   2985      1.49  riastrad 	if (wgs->wgs_state != WGS_STATE_INIT_ACTIVE)
   2986      1.49  riastrad 		return;
   2987      1.49  riastrad 
   2988      1.49  riastrad 	/*
   2989      1.49  riastrad 	 * XXX no real need to assign a new index here, but we do need
   2990      1.49  riastrad 	 * to transition to UNKNOWN temporarily
   2991      1.49  riastrad 	 */
   2992      1.49  riastrad 	wg_put_session_index(wg, wgs);
   2993      1.49  riastrad 
   2994      1.49  riastrad 	/* [W] 6.4 Handshake Initiation Retransmission */
   2995      1.49  riastrad 	if ((time_uptime - wgp->wgp_handshake_start_time) >
   2996      1.49  riastrad 	    wg_rekey_attempt_time) {
   2997      1.49  riastrad 		/* Give up handshaking */
   2998      1.49  riastrad 		wgp->wgp_handshake_start_time = 0;
   2999      1.49  riastrad 		WG_TRACE("give up");
   3000      1.49  riastrad 
   3001      1.49  riastrad 		/*
   3002      1.49  riastrad 		 * If a new data packet comes, handshaking will be retried
   3003      1.49  riastrad 		 * and a new session would be established at that time,
   3004      1.49  riastrad 		 * however we don't want to send pending packets then.
   3005      1.49  riastrad 		 */
   3006      1.49  riastrad 		wg_purge_pending_packets(wgp);
   3007      1.49  riastrad 		return;
   3008      1.49  riastrad 	}
   3009      1.49  riastrad 
   3010      1.49  riastrad 	wg_task_send_init_message(wg, wgp);
   3011      1.49  riastrad }
   3012      1.49  riastrad 
   3013      1.49  riastrad static void
   3014      1.49  riastrad wg_task_establish_session(struct wg_softc *wg, struct wg_peer *wgp)
   3015      1.49  riastrad {
   3016      1.49  riastrad 	struct wg_session *wgs, *wgs_prev;
   3017      1.54  riastrad 	struct mbuf *m;
   3018      1.49  riastrad 
   3019      1.49  riastrad 	KASSERT(mutex_owned(wgp->wgp_lock));
   3020      1.49  riastrad 
   3021      1.49  riastrad 	wgs = wgp->wgp_session_unstable;
   3022      1.49  riastrad 	if (wgs->wgs_state != WGS_STATE_INIT_PASSIVE)
   3023      1.49  riastrad 		/* XXX Can this happen?  */
   3024      1.49  riastrad 		return;
   3025      1.49  riastrad 
   3026      1.49  riastrad 	wgs->wgs_state = WGS_STATE_ESTABLISHED;
   3027      1.49  riastrad 	wgs->wgs_time_established = time_uptime;
   3028      1.49  riastrad 	wgs->wgs_time_last_data_sent = 0;
   3029      1.49  riastrad 	wgs->wgs_is_initiator = false;
   3030      1.49  riastrad 	WG_TRACE("WGS_STATE_ESTABLISHED");
   3031      1.49  riastrad 
   3032      1.49  riastrad 	wg_swap_sessions(wgp);
   3033      1.49  riastrad 	KASSERT(wgs == wgp->wgp_session_stable);
   3034      1.49  riastrad 	wgs_prev = wgp->wgp_session_unstable;
   3035      1.49  riastrad 	getnanotime(&wgp->wgp_last_handshake_time);
   3036      1.49  riastrad 	wgp->wgp_handshake_start_time = 0;
   3037      1.49  riastrad 	wgp->wgp_last_sent_mac1_valid = false;
   3038      1.49  riastrad 	wgp->wgp_last_sent_cookie_valid = false;
   3039      1.49  riastrad 
   3040      1.54  riastrad 	/* If we had a data packet queued up, send it.  */
   3041      1.54  riastrad 	if ((m = atomic_swap_ptr(&wgp->wgp_pending, NULL)) != NULL) {
   3042      1.57  riastrad 		kpreempt_disable();
   3043      1.54  riastrad 		const uint32_t h = curcpu()->ci_index; // pktq_rps_hash(m)
   3044      1.54  riastrad 		M_SETCTX(m, wgp);
   3045      1.54  riastrad 		if (__predict_false(!pktq_enqueue(wg_pktq, m, h))) {
   3046      1.76  jakllsch 			WGLOG(LOG_ERR, "%s: pktq full, dropping\n",
   3047      1.76  jakllsch 			    if_name(&wg->wg_if));
   3048      1.54  riastrad 			m_freem(m);
   3049      1.54  riastrad 		}
   3050      1.57  riastrad 		kpreempt_enable();
   3051      1.54  riastrad 	}
   3052      1.54  riastrad 
   3053      1.49  riastrad 	if (wgs_prev->wgs_state == WGS_STATE_ESTABLISHED) {
   3054      1.49  riastrad 		/* Wait for wg_get_stable_session to drain.  */
   3055      1.49  riastrad 		pserialize_perform(wgp->wgp_psz);
   3056      1.49  riastrad 
   3057      1.49  riastrad 		/* Transition ESTABLISHED->DESTROYING.  */
   3058      1.49  riastrad 		wgs_prev->wgs_state = WGS_STATE_DESTROYING;
   3059      1.49  riastrad 
   3060      1.49  riastrad 		/* We can't destroy the old session immediately */
   3061      1.49  riastrad 		wg_schedule_session_dtor_timer(wgp);
   3062      1.49  riastrad 	} else {
   3063      1.49  riastrad 		KASSERTMSG(wgs_prev->wgs_state == WGS_STATE_UNKNOWN,
   3064      1.49  riastrad 		    "state=%d", wgs_prev->wgs_state);
   3065      1.49  riastrad 		wg_clear_states(wgs_prev);
   3066      1.49  riastrad 		wgs_prev->wgs_state = WGS_STATE_UNKNOWN;
   3067      1.49  riastrad 	}
   3068      1.49  riastrad }
   3069      1.49  riastrad 
   3070      1.49  riastrad static void
   3071      1.11  riastrad wg_task_endpoint_changed(struct wg_softc *wg, struct wg_peer *wgp)
   3072      1.11  riastrad {
   3073      1.11  riastrad 
   3074      1.11  riastrad 	WG_TRACE("WGP_TASK_ENDPOINT_CHANGED");
   3075      1.11  riastrad 
   3076      1.49  riastrad 	KASSERT(mutex_owned(wgp->wgp_lock));
   3077      1.49  riastrad 
   3078      1.49  riastrad 	if (atomic_load_relaxed(&wgp->wgp_endpoint_changing)) {
   3079      1.11  riastrad 		pserialize_perform(wgp->wgp_psz);
   3080      1.56  riastrad 		mutex_exit(wgp->wgp_lock);
   3081      1.11  riastrad 		psref_target_destroy(&wgp->wgp_endpoint0->wgsa_psref,
   3082      1.11  riastrad 		    wg_psref_class);
   3083      1.11  riastrad 		psref_target_init(&wgp->wgp_endpoint0->wgsa_psref,
   3084      1.11  riastrad 		    wg_psref_class);
   3085      1.56  riastrad 		mutex_enter(wgp->wgp_lock);
   3086      1.49  riastrad 		atomic_store_release(&wgp->wgp_endpoint_changing, 0);
   3087      1.11  riastrad 	}
   3088      1.11  riastrad }
   3089      1.11  riastrad 
   3090      1.11  riastrad static void
   3091      1.11  riastrad wg_task_send_keepalive_message(struct wg_softc *wg, struct wg_peer *wgp)
   3092      1.11  riastrad {
   3093      1.11  riastrad 	struct wg_session *wgs;
   3094      1.11  riastrad 
   3095      1.11  riastrad 	WG_TRACE("WGP_TASK_SEND_KEEPALIVE_MESSAGE");
   3096      1.11  riastrad 
   3097      1.49  riastrad 	KASSERT(mutex_owned(wgp->wgp_lock));
   3098      1.49  riastrad 
   3099      1.49  riastrad 	wgs = wgp->wgp_session_stable;
   3100      1.49  riastrad 	if (wgs->wgs_state != WGS_STATE_ESTABLISHED)
   3101      1.49  riastrad 		return;
   3102      1.49  riastrad 
   3103      1.11  riastrad 	wg_send_keepalive_msg(wgp, wgs);
   3104      1.11  riastrad }
   3105      1.11  riastrad 
   3106      1.11  riastrad static void
   3107      1.11  riastrad wg_task_destroy_prev_session(struct wg_softc *wg, struct wg_peer *wgp)
   3108      1.11  riastrad {
   3109      1.11  riastrad 	struct wg_session *wgs;
   3110      1.11  riastrad 
   3111      1.11  riastrad 	WG_TRACE("WGP_TASK_DESTROY_PREV_SESSION");
   3112      1.11  riastrad 
   3113      1.49  riastrad 	KASSERT(mutex_owned(wgp->wgp_lock));
   3114      1.49  riastrad 
   3115      1.11  riastrad 	wgs = wgp->wgp_session_unstable;
   3116      1.11  riastrad 	if (wgs->wgs_state == WGS_STATE_DESTROYING) {
   3117      1.49  riastrad 		wg_put_session_index(wg, wgs);
   3118      1.11  riastrad 	}
   3119      1.11  riastrad }
   3120      1.11  riastrad 
   3121      1.11  riastrad static void
   3122      1.55  riastrad wg_peer_work(struct work *wk, void *cookie)
   3123       1.1  riastrad {
   3124      1.55  riastrad 	struct wg_peer *wgp = container_of(wk, struct wg_peer, wgp_work);
   3125      1.55  riastrad 	struct wg_softc *wg = wgp->wgp_sc;
   3126      1.65  christos 	unsigned int tasks;
   3127       1.1  riastrad 
   3128      1.55  riastrad 	mutex_enter(wgp->wgp_intr_lock);
   3129      1.55  riastrad 	while ((tasks = wgp->wgp_tasks) != 0) {
   3130      1.55  riastrad 		wgp->wgp_tasks = 0;
   3131      1.55  riastrad 		mutex_exit(wgp->wgp_intr_lock);
   3132       1.1  riastrad 
   3133      1.49  riastrad 		mutex_enter(wgp->wgp_lock);
   3134      1.11  riastrad 		if (ISSET(tasks, WGP_TASK_SEND_INIT_MESSAGE))
   3135      1.11  riastrad 			wg_task_send_init_message(wg, wgp);
   3136      1.49  riastrad 		if (ISSET(tasks, WGP_TASK_RETRY_HANDSHAKE))
   3137      1.49  riastrad 			wg_task_retry_handshake(wg, wgp);
   3138      1.49  riastrad 		if (ISSET(tasks, WGP_TASK_ESTABLISH_SESSION))
   3139      1.49  riastrad 			wg_task_establish_session(wg, wgp);
   3140      1.11  riastrad 		if (ISSET(tasks, WGP_TASK_ENDPOINT_CHANGED))
   3141      1.11  riastrad 			wg_task_endpoint_changed(wg, wgp);
   3142      1.11  riastrad 		if (ISSET(tasks, WGP_TASK_SEND_KEEPALIVE_MESSAGE))
   3143      1.11  riastrad 			wg_task_send_keepalive_message(wg, wgp);
   3144      1.11  riastrad 		if (ISSET(tasks, WGP_TASK_DESTROY_PREV_SESSION))
   3145      1.11  riastrad 			wg_task_destroy_prev_session(wg, wgp);
   3146      1.49  riastrad 		mutex_exit(wgp->wgp_lock);
   3147       1.1  riastrad 
   3148      1.55  riastrad 		mutex_enter(wgp->wgp_intr_lock);
   3149       1.1  riastrad 	}
   3150      1.55  riastrad 	mutex_exit(wgp->wgp_intr_lock);
   3151       1.1  riastrad }
   3152       1.1  riastrad 
   3153       1.1  riastrad static void
   3154      1.55  riastrad wg_job(struct threadpool_job *job)
   3155       1.1  riastrad {
   3156      1.55  riastrad 	struct wg_softc *wg = container_of(job, struct wg_softc, wg_job);
   3157      1.55  riastrad 	int bound, upcalls;
   3158       1.1  riastrad 
   3159      1.55  riastrad 	mutex_enter(wg->wg_intr_lock);
   3160      1.55  riastrad 	while ((upcalls = wg->wg_upcalls) != 0) {
   3161      1.55  riastrad 		wg->wg_upcalls = 0;
   3162      1.55  riastrad 		mutex_exit(wg->wg_intr_lock);
   3163      1.10  riastrad 		bound = curlwp_bind();
   3164      1.55  riastrad 		if (ISSET(upcalls, WG_UPCALL_INET))
   3165       1.1  riastrad 			wg_receive_packets(wg, AF_INET);
   3166      1.55  riastrad 		if (ISSET(upcalls, WG_UPCALL_INET6))
   3167       1.1  riastrad 			wg_receive_packets(wg, AF_INET6);
   3168      1.10  riastrad 		curlwp_bindx(bound);
   3169      1.55  riastrad 		mutex_enter(wg->wg_intr_lock);
   3170       1.1  riastrad 	}
   3171      1.55  riastrad 	threadpool_job_done(job);
   3172      1.55  riastrad 	mutex_exit(wg->wg_intr_lock);
   3173       1.1  riastrad }
   3174       1.1  riastrad 
   3175       1.1  riastrad static int
   3176       1.1  riastrad wg_bind_port(struct wg_softc *wg, const uint16_t port)
   3177       1.1  riastrad {
   3178       1.1  riastrad 	int error;
   3179       1.1  riastrad 	uint16_t old_port = wg->wg_listen_port;
   3180       1.1  riastrad 
   3181       1.1  riastrad 	if (port != 0 && old_port == port)
   3182       1.1  riastrad 		return 0;
   3183       1.1  riastrad 
   3184       1.1  riastrad 	struct sockaddr_in _sin, *sin = &_sin;
   3185       1.1  riastrad 	sin->sin_len = sizeof(*sin);
   3186       1.1  riastrad 	sin->sin_family = AF_INET;
   3187       1.1  riastrad 	sin->sin_addr.s_addr = INADDR_ANY;
   3188       1.1  riastrad 	sin->sin_port = htons(port);
   3189       1.1  riastrad 
   3190      1.55  riastrad 	error = sobind(wg->wg_so4, sintosa(sin), curlwp);
   3191       1.1  riastrad 	if (error != 0)
   3192       1.1  riastrad 		return error;
   3193       1.1  riastrad 
   3194       1.1  riastrad #ifdef INET6
   3195       1.1  riastrad 	struct sockaddr_in6 _sin6, *sin6 = &_sin6;
   3196       1.1  riastrad 	sin6->sin6_len = sizeof(*sin6);
   3197       1.1  riastrad 	sin6->sin6_family = AF_INET6;
   3198       1.1  riastrad 	sin6->sin6_addr = in6addr_any;
   3199       1.1  riastrad 	sin6->sin6_port = htons(port);
   3200       1.1  riastrad 
   3201      1.55  riastrad 	error = sobind(wg->wg_so6, sin6tosa(sin6), curlwp);
   3202       1.1  riastrad 	if (error != 0)
   3203       1.1  riastrad 		return error;
   3204       1.1  riastrad #endif
   3205       1.1  riastrad 
   3206       1.1  riastrad 	wg->wg_listen_port = port;
   3207       1.1  riastrad 
   3208       1.1  riastrad 	return 0;
   3209       1.1  riastrad }
   3210       1.1  riastrad 
   3211       1.1  riastrad static void
   3212      1.55  riastrad wg_so_upcall(struct socket *so, void *cookie, int events, int waitflag)
   3213       1.1  riastrad {
   3214      1.55  riastrad 	struct wg_softc *wg = cookie;
   3215       1.1  riastrad 	int reason;
   3216       1.1  riastrad 
   3217       1.1  riastrad 	reason = (so->so_proto->pr_domain->dom_family == AF_INET) ?
   3218      1.55  riastrad 	    WG_UPCALL_INET :
   3219      1.55  riastrad 	    WG_UPCALL_INET6;
   3220      1.55  riastrad 
   3221      1.55  riastrad 	mutex_enter(wg->wg_intr_lock);
   3222      1.55  riastrad 	wg->wg_upcalls |= reason;
   3223      1.55  riastrad 	threadpool_schedule_job(wg->wg_threadpool, &wg->wg_job);
   3224      1.55  riastrad 	mutex_exit(wg->wg_intr_lock);
   3225       1.1  riastrad }
   3226       1.1  riastrad 
   3227       1.1  riastrad static int
   3228       1.1  riastrad wg_overudp_cb(struct mbuf **mp, int offset, struct socket *so,
   3229       1.1  riastrad     struct sockaddr *src, void *arg)
   3230       1.1  riastrad {
   3231       1.1  riastrad 	struct wg_softc *wg = arg;
   3232       1.2  riastrad 	struct wg_msg wgm;
   3233       1.1  riastrad 	struct mbuf *m = *mp;
   3234       1.1  riastrad 
   3235       1.1  riastrad 	WG_TRACE("enter");
   3236       1.1  riastrad 
   3237      1.25  riastrad 	/* Verify the mbuf chain is long enough to have a wg msg header.  */
   3238      1.25  riastrad 	KASSERT(offset <= m_length(m));
   3239      1.25  riastrad 	if (__predict_false(m_length(m) - offset < sizeof(struct wg_msg))) {
   3240      1.28  riastrad 		/* drop on the floor */
   3241      1.25  riastrad 		m_freem(m);
   3242      1.25  riastrad 		return -1;
   3243      1.25  riastrad 	}
   3244      1.25  riastrad 
   3245      1.25  riastrad 	/*
   3246      1.25  riastrad 	 * Copy the message header (32-bit message type) out -- we'll
   3247      1.25  riastrad 	 * worry about contiguity and alignment later.
   3248      1.25  riastrad 	 */
   3249       1.2  riastrad 	m_copydata(m, offset, sizeof(struct wg_msg), &wgm);
   3250      1.39  riastrad 	WG_DLOG("type=%d\n", le32toh(wgm.wgm_type));
   3251       1.2  riastrad 
   3252      1.25  riastrad 	/*
   3253      1.25  riastrad 	 * Handle DATA packets promptly as they arrive.  Other packets
   3254      1.25  riastrad 	 * may require expensive public-key crypto and are not as
   3255      1.25  riastrad 	 * sensitive to latency, so defer them to the worker thread.
   3256      1.25  riastrad 	 */
   3257      1.39  riastrad 	switch (le32toh(wgm.wgm_type)) {
   3258       1.1  riastrad 	case WG_MSG_TYPE_DATA:
   3259      1.28  riastrad 		/* handle immediately */
   3260       1.1  riastrad 		m_adj(m, offset);
   3261      1.29  riastrad 		if (__predict_false(m->m_len < sizeof(struct wg_msg_data))) {
   3262      1.29  riastrad 			m = m_pullup(m, sizeof(struct wg_msg_data));
   3263      1.29  riastrad 			if (m == NULL)
   3264      1.29  riastrad 				return -1;
   3265      1.29  riastrad 		}
   3266       1.1  riastrad 		wg_handle_msg_data(wg, m, src);
   3267       1.1  riastrad 		*mp = NULL;
   3268       1.1  riastrad 		return 1;
   3269      1.28  riastrad 	case WG_MSG_TYPE_INIT:
   3270      1.28  riastrad 	case WG_MSG_TYPE_RESP:
   3271      1.28  riastrad 	case WG_MSG_TYPE_COOKIE:
   3272      1.28  riastrad 		/* pass through to so_receive in wg_receive_packets */
   3273      1.28  riastrad 		return 0;
   3274       1.1  riastrad 	default:
   3275      1.28  riastrad 		/* drop on the floor */
   3276      1.28  riastrad 		m_freem(m);
   3277      1.28  riastrad 		return -1;
   3278       1.1  riastrad 	}
   3279       1.1  riastrad }
   3280       1.1  riastrad 
   3281       1.1  riastrad static int
   3282      1.55  riastrad wg_socreate(struct wg_softc *wg, int af, struct socket **sop)
   3283       1.1  riastrad {
   3284       1.1  riastrad 	int error;
   3285       1.1  riastrad 	struct socket *so;
   3286       1.1  riastrad 
   3287       1.1  riastrad 	error = socreate(af, &so, SOCK_DGRAM, 0, curlwp, NULL);
   3288       1.1  riastrad 	if (error != 0)
   3289       1.1  riastrad 		return error;
   3290       1.1  riastrad 
   3291       1.1  riastrad 	solock(so);
   3292      1.55  riastrad 	so->so_upcallarg = wg;
   3293       1.1  riastrad 	so->so_upcall = wg_so_upcall;
   3294       1.1  riastrad 	so->so_rcv.sb_flags |= SB_UPCALL;
   3295      1.71     ozaki 	inpcb_register_overudp_cb(sotoinpcb(so), wg_overudp_cb, wg);
   3296       1.1  riastrad 	sounlock(so);
   3297       1.1  riastrad 
   3298       1.1  riastrad 	*sop = so;
   3299       1.1  riastrad 
   3300       1.1  riastrad 	return 0;
   3301       1.1  riastrad }
   3302       1.1  riastrad 
   3303       1.1  riastrad static bool
   3304       1.1  riastrad wg_session_hit_limits(struct wg_session *wgs)
   3305       1.1  riastrad {
   3306       1.1  riastrad 
   3307       1.1  riastrad 	/*
   3308       1.1  riastrad 	 * [W] 6.2: Transport Message Limits
   3309       1.1  riastrad 	 * "After REJECT-AFTER-MESSAGES transport data messages or after the
   3310       1.1  riastrad 	 *  current secure session is REJECT-AFTER-TIME seconds old, whichever
   3311       1.1  riastrad 	 *  comes first, WireGuard will refuse to send any more transport data
   3312       1.1  riastrad 	 *  messages using the current secure session, ..."
   3313       1.1  riastrad 	 */
   3314       1.1  riastrad 	KASSERT(wgs->wgs_time_established != 0);
   3315       1.1  riastrad 	if ((time_uptime - wgs->wgs_time_established) > wg_reject_after_time) {
   3316       1.1  riastrad 		WG_DLOG("The session hits REJECT_AFTER_TIME\n");
   3317       1.1  riastrad 		return true;
   3318      1.22  riastrad 	} else if (wg_session_get_send_counter(wgs) >
   3319      1.22  riastrad 	    wg_reject_after_messages) {
   3320       1.1  riastrad 		WG_DLOG("The session hits REJECT_AFTER_MESSAGES\n");
   3321       1.1  riastrad 		return true;
   3322       1.1  riastrad 	}
   3323       1.1  riastrad 
   3324       1.1  riastrad 	return false;
   3325       1.1  riastrad }
   3326       1.1  riastrad 
   3327       1.1  riastrad static void
   3328      1.54  riastrad wgintr(void *cookie)
   3329       1.1  riastrad {
   3330      1.54  riastrad 	struct wg_peer *wgp;
   3331       1.1  riastrad 	struct wg_session *wgs;
   3332       1.1  riastrad 	struct mbuf *m;
   3333       1.1  riastrad 	struct psref psref;
   3334       1.1  riastrad 
   3335      1.54  riastrad 	while ((m = pktq_dequeue(wg_pktq)) != NULL) {
   3336      1.54  riastrad 		wgp = M_GETCTX(m, struct wg_peer *);
   3337      1.54  riastrad 		if ((wgs = wg_get_stable_session(wgp, &psref)) == NULL) {
   3338      1.54  riastrad 			WG_TRACE("no stable session");
   3339      1.54  riastrad 			wg_schedule_peer_task(wgp, WGP_TASK_SEND_INIT_MESSAGE);
   3340      1.54  riastrad 			goto next0;
   3341      1.54  riastrad 		}
   3342      1.54  riastrad 		if (__predict_false(wg_session_hit_limits(wgs))) {
   3343      1.54  riastrad 			WG_TRACE("stable session hit limits");
   3344      1.54  riastrad 			wg_schedule_peer_task(wgp, WGP_TASK_SEND_INIT_MESSAGE);
   3345      1.54  riastrad 			goto next1;
   3346      1.54  riastrad 		}
   3347       1.1  riastrad 		wg_send_data_msg(wgp, wgs, m);
   3348      1.54  riastrad 		m = NULL;	/* consumed */
   3349      1.54  riastrad next1:		wg_put_session(wgs, &psref);
   3350      1.54  riastrad next0:		if (m)
   3351      1.54  riastrad 			m_freem(m);
   3352      1.54  riastrad 		/* XXX Yield to avoid userland starvation?  */
   3353       1.1  riastrad 	}
   3354       1.1  riastrad }
   3355       1.1  riastrad 
   3356       1.1  riastrad static void
   3357       1.1  riastrad wg_rekey_timer(void *arg)
   3358       1.1  riastrad {
   3359       1.1  riastrad 	struct wg_peer *wgp = arg;
   3360       1.1  riastrad 
   3361      1.49  riastrad 	wg_schedule_peer_task(wgp, WGP_TASK_SEND_INIT_MESSAGE);
   3362       1.1  riastrad }
   3363       1.1  riastrad 
   3364       1.1  riastrad static void
   3365       1.1  riastrad wg_purge_pending_packets(struct wg_peer *wgp)
   3366       1.1  riastrad {
   3367       1.1  riastrad 	struct mbuf *m;
   3368       1.1  riastrad 
   3369      1.54  riastrad 	if ((m = atomic_swap_ptr(&wgp->wgp_pending, NULL)) != NULL)
   3370       1.1  riastrad 		m_freem(m);
   3371      1.54  riastrad 	pktq_barrier(wg_pktq);
   3372       1.1  riastrad }
   3373       1.1  riastrad 
   3374       1.1  riastrad static void
   3375       1.1  riastrad wg_handshake_timeout_timer(void *arg)
   3376       1.1  riastrad {
   3377       1.1  riastrad 	struct wg_peer *wgp = arg;
   3378       1.1  riastrad 
   3379       1.1  riastrad 	WG_TRACE("enter");
   3380       1.1  riastrad 
   3381      1.49  riastrad 	wg_schedule_peer_task(wgp, WGP_TASK_RETRY_HANDSHAKE);
   3382       1.1  riastrad }
   3383       1.1  riastrad 
   3384       1.1  riastrad static struct wg_peer *
   3385       1.1  riastrad wg_alloc_peer(struct wg_softc *wg)
   3386       1.1  riastrad {
   3387       1.1  riastrad 	struct wg_peer *wgp;
   3388       1.1  riastrad 
   3389       1.1  riastrad 	wgp = kmem_zalloc(sizeof(*wgp), KM_SLEEP);
   3390       1.1  riastrad 
   3391       1.1  riastrad 	wgp->wgp_sc = wg;
   3392       1.1  riastrad 	callout_init(&wgp->wgp_rekey_timer, CALLOUT_MPSAFE);
   3393       1.1  riastrad 	callout_setfunc(&wgp->wgp_rekey_timer, wg_rekey_timer, wgp);
   3394       1.1  riastrad 	callout_init(&wgp->wgp_handshake_timeout_timer, CALLOUT_MPSAFE);
   3395       1.1  riastrad 	callout_setfunc(&wgp->wgp_handshake_timeout_timer,
   3396       1.1  riastrad 	    wg_handshake_timeout_timer, wgp);
   3397       1.1  riastrad 	callout_init(&wgp->wgp_session_dtor_timer, CALLOUT_MPSAFE);
   3398       1.1  riastrad 	callout_setfunc(&wgp->wgp_session_dtor_timer,
   3399       1.1  riastrad 	    wg_session_dtor_timer, wgp);
   3400       1.1  riastrad 	PSLIST_ENTRY_INIT(wgp, wgp_peerlist_entry);
   3401       1.1  riastrad 	wgp->wgp_endpoint_changing = false;
   3402       1.1  riastrad 	wgp->wgp_endpoint_available = false;
   3403       1.1  riastrad 	wgp->wgp_lock = mutex_obj_alloc(MUTEX_DEFAULT, IPL_NONE);
   3404      1.55  riastrad 	wgp->wgp_intr_lock = mutex_obj_alloc(MUTEX_DEFAULT, IPL_SOFTNET);
   3405       1.1  riastrad 	wgp->wgp_psz = pserialize_create();
   3406       1.1  riastrad 	psref_target_init(&wgp->wgp_psref, wg_psref_class);
   3407       1.1  riastrad 
   3408       1.1  riastrad 	wgp->wgp_endpoint = kmem_zalloc(sizeof(*wgp->wgp_endpoint), KM_SLEEP);
   3409       1.1  riastrad 	wgp->wgp_endpoint0 = kmem_zalloc(sizeof(*wgp->wgp_endpoint0), KM_SLEEP);
   3410       1.1  riastrad 	psref_target_init(&wgp->wgp_endpoint->wgsa_psref, wg_psref_class);
   3411       1.1  riastrad 	psref_target_init(&wgp->wgp_endpoint0->wgsa_psref, wg_psref_class);
   3412       1.1  riastrad 
   3413       1.1  riastrad 	struct wg_session *wgs;
   3414      1.14  riastrad 	wgp->wgp_session_stable =
   3415      1.14  riastrad 	    kmem_zalloc(sizeof(*wgp->wgp_session_stable), KM_SLEEP);
   3416      1.14  riastrad 	wgp->wgp_session_unstable =
   3417      1.14  riastrad 	    kmem_zalloc(sizeof(*wgp->wgp_session_unstable), KM_SLEEP);
   3418       1.1  riastrad 	wgs = wgp->wgp_session_stable;
   3419       1.1  riastrad 	wgs->wgs_peer = wgp;
   3420       1.1  riastrad 	wgs->wgs_state = WGS_STATE_UNKNOWN;
   3421       1.1  riastrad 	psref_target_init(&wgs->wgs_psref, wg_psref_class);
   3422      1.22  riastrad #ifndef __HAVE_ATOMIC64_LOADSTORE
   3423      1.22  riastrad 	mutex_init(&wgs->wgs_send_counter_lock, MUTEX_DEFAULT, IPL_SOFTNET);
   3424      1.22  riastrad #endif
   3425       1.6  riastrad 	wgs->wgs_recvwin = kmem_zalloc(sizeof(*wgs->wgs_recvwin), KM_SLEEP);
   3426      1.49  riastrad 	mutex_init(&wgs->wgs_recvwin->lock, MUTEX_DEFAULT, IPL_SOFTNET);
   3427       1.6  riastrad 
   3428       1.1  riastrad 	wgs = wgp->wgp_session_unstable;
   3429       1.1  riastrad 	wgs->wgs_peer = wgp;
   3430       1.1  riastrad 	wgs->wgs_state = WGS_STATE_UNKNOWN;
   3431       1.1  riastrad 	psref_target_init(&wgs->wgs_psref, wg_psref_class);
   3432      1.22  riastrad #ifndef __HAVE_ATOMIC64_LOADSTORE
   3433      1.22  riastrad 	mutex_init(&wgs->wgs_send_counter_lock, MUTEX_DEFAULT, IPL_SOFTNET);
   3434      1.22  riastrad #endif
   3435       1.6  riastrad 	wgs->wgs_recvwin = kmem_zalloc(sizeof(*wgs->wgs_recvwin), KM_SLEEP);
   3436      1.49  riastrad 	mutex_init(&wgs->wgs_recvwin->lock, MUTEX_DEFAULT, IPL_SOFTNET);
   3437       1.1  riastrad 
   3438       1.1  riastrad 	return wgp;
   3439       1.1  riastrad }
   3440       1.1  riastrad 
   3441       1.1  riastrad static void
   3442       1.1  riastrad wg_destroy_peer(struct wg_peer *wgp)
   3443       1.1  riastrad {
   3444       1.1  riastrad 	struct wg_session *wgs;
   3445       1.1  riastrad 	struct wg_softc *wg = wgp->wgp_sc;
   3446       1.1  riastrad 
   3447      1.37  riastrad 	/* Prevent new packets from this peer on any source address.  */
   3448       1.1  riastrad 	rw_enter(wg->wg_rwlock, RW_WRITER);
   3449       1.1  riastrad 	for (int i = 0; i < wgp->wgp_n_allowedips; i++) {
   3450       1.1  riastrad 		struct wg_allowedip *wga = &wgp->wgp_allowedips[i];
   3451       1.1  riastrad 		struct radix_node_head *rnh = wg_rnh(wg, wga->wga_family);
   3452       1.1  riastrad 		struct radix_node *rn;
   3453       1.1  riastrad 
   3454       1.1  riastrad 		KASSERT(rnh != NULL);
   3455       1.1  riastrad 		rn = rnh->rnh_deladdr(&wga->wga_sa_addr,
   3456       1.1  riastrad 		    &wga->wga_sa_mask, rnh);
   3457       1.1  riastrad 		if (rn == NULL) {
   3458       1.1  riastrad 			char addrstr[128];
   3459       1.1  riastrad 			sockaddr_format(&wga->wga_sa_addr, addrstr,
   3460       1.1  riastrad 			    sizeof(addrstr));
   3461      1.76  jakllsch 			WGLOG(LOG_WARNING, "%s: Couldn't delete %s",
   3462      1.76  jakllsch 			    if_name(&wg->wg_if), addrstr);
   3463       1.1  riastrad 		}
   3464       1.1  riastrad 	}
   3465       1.1  riastrad 	rw_exit(wg->wg_rwlock);
   3466       1.1  riastrad 
   3467      1.38  riastrad 	/* Purge pending packets.  */
   3468      1.38  riastrad 	wg_purge_pending_packets(wgp);
   3469      1.38  riastrad 
   3470      1.37  riastrad 	/* Halt all packet processing and timeouts.  */
   3471       1.1  riastrad 	callout_halt(&wgp->wgp_rekey_timer, NULL);
   3472       1.1  riastrad 	callout_halt(&wgp->wgp_handshake_timeout_timer, NULL);
   3473       1.1  riastrad 	callout_halt(&wgp->wgp_session_dtor_timer, NULL);
   3474       1.1  riastrad 
   3475      1.55  riastrad 	/* Wait for any queued work to complete.  */
   3476      1.55  riastrad 	workqueue_wait(wg_wq, &wgp->wgp_work);
   3477      1.55  riastrad 
   3478      1.49  riastrad 	wgs = wgp->wgp_session_unstable;
   3479      1.49  riastrad 	if (wgs->wgs_state != WGS_STATE_UNKNOWN) {
   3480      1.49  riastrad 		mutex_enter(wgp->wgp_lock);
   3481      1.49  riastrad 		wg_destroy_session(wg, wgs);
   3482      1.49  riastrad 		mutex_exit(wgp->wgp_lock);
   3483      1.37  riastrad 	}
   3484       1.6  riastrad 	mutex_destroy(&wgs->wgs_recvwin->lock);
   3485       1.6  riastrad 	kmem_free(wgs->wgs_recvwin, sizeof(*wgs->wgs_recvwin));
   3486      1.22  riastrad #ifndef __HAVE_ATOMIC64_LOADSTORE
   3487      1.22  riastrad 	mutex_destroy(&wgs->wgs_send_counter_lock);
   3488      1.22  riastrad #endif
   3489       1.1  riastrad 	kmem_free(wgs, sizeof(*wgs));
   3490      1.37  riastrad 
   3491       1.1  riastrad 	wgs = wgp->wgp_session_stable;
   3492      1.49  riastrad 	if (wgs->wgs_state != WGS_STATE_UNKNOWN) {
   3493      1.49  riastrad 		mutex_enter(wgp->wgp_lock);
   3494      1.49  riastrad 		wg_destroy_session(wg, wgs);
   3495      1.49  riastrad 		mutex_exit(wgp->wgp_lock);
   3496      1.49  riastrad 	}
   3497       1.6  riastrad 	mutex_destroy(&wgs->wgs_recvwin->lock);
   3498       1.6  riastrad 	kmem_free(wgs->wgs_recvwin, sizeof(*wgs->wgs_recvwin));
   3499      1.22  riastrad #ifndef __HAVE_ATOMIC64_LOADSTORE
   3500      1.22  riastrad 	mutex_destroy(&wgs->wgs_send_counter_lock);
   3501      1.22  riastrad #endif
   3502       1.1  riastrad 	kmem_free(wgs, sizeof(*wgs));
   3503       1.1  riastrad 
   3504       1.1  riastrad 	psref_target_destroy(&wgp->wgp_endpoint->wgsa_psref, wg_psref_class);
   3505       1.1  riastrad 	psref_target_destroy(&wgp->wgp_endpoint0->wgsa_psref, wg_psref_class);
   3506       1.1  riastrad 	kmem_free(wgp->wgp_endpoint, sizeof(*wgp->wgp_endpoint));
   3507       1.1  riastrad 	kmem_free(wgp->wgp_endpoint0, sizeof(*wgp->wgp_endpoint0));
   3508       1.1  riastrad 
   3509       1.1  riastrad 	pserialize_destroy(wgp->wgp_psz);
   3510      1.55  riastrad 	mutex_obj_free(wgp->wgp_intr_lock);
   3511       1.1  riastrad 	mutex_obj_free(wgp->wgp_lock);
   3512       1.1  riastrad 
   3513       1.1  riastrad 	kmem_free(wgp, sizeof(*wgp));
   3514       1.1  riastrad }
   3515       1.1  riastrad 
   3516       1.1  riastrad static void
   3517       1.1  riastrad wg_destroy_all_peers(struct wg_softc *wg)
   3518       1.1  riastrad {
   3519      1.37  riastrad 	struct wg_peer *wgp, *wgp0 __diagused;
   3520      1.37  riastrad 	void *garbage_byname, *garbage_bypubkey;
   3521       1.1  riastrad 
   3522       1.1  riastrad restart:
   3523      1.37  riastrad 	garbage_byname = garbage_bypubkey = NULL;
   3524       1.1  riastrad 	mutex_enter(wg->wg_lock);
   3525       1.1  riastrad 	WG_PEER_WRITER_FOREACH(wgp, wg) {
   3526      1.37  riastrad 		if (wgp->wgp_name[0]) {
   3527      1.37  riastrad 			wgp0 = thmap_del(wg->wg_peers_byname, wgp->wgp_name,
   3528      1.37  riastrad 			    strlen(wgp->wgp_name));
   3529      1.37  riastrad 			KASSERT(wgp0 == wgp);
   3530      1.37  riastrad 			garbage_byname = thmap_stage_gc(wg->wg_peers_byname);
   3531      1.37  riastrad 		}
   3532      1.37  riastrad 		wgp0 = thmap_del(wg->wg_peers_bypubkey, wgp->wgp_pubkey,
   3533      1.37  riastrad 		    sizeof(wgp->wgp_pubkey));
   3534      1.37  riastrad 		KASSERT(wgp0 == wgp);
   3535      1.37  riastrad 		garbage_bypubkey = thmap_stage_gc(wg->wg_peers_bypubkey);
   3536       1.1  riastrad 		WG_PEER_WRITER_REMOVE(wgp);
   3537      1.35  riastrad 		wg->wg_npeers--;
   3538       1.1  riastrad 		mutex_enter(wgp->wgp_lock);
   3539       1.1  riastrad 		pserialize_perform(wgp->wgp_psz);
   3540       1.1  riastrad 		mutex_exit(wgp->wgp_lock);
   3541       1.1  riastrad 		PSLIST_ENTRY_DESTROY(wgp, wgp_peerlist_entry);
   3542       1.1  riastrad 		break;
   3543       1.1  riastrad 	}
   3544       1.1  riastrad 	mutex_exit(wg->wg_lock);
   3545       1.1  riastrad 
   3546       1.1  riastrad 	if (wgp == NULL)
   3547       1.1  riastrad 		return;
   3548       1.1  riastrad 
   3549       1.1  riastrad 	psref_target_destroy(&wgp->wgp_psref, wg_psref_class);
   3550       1.1  riastrad 
   3551       1.1  riastrad 	wg_destroy_peer(wgp);
   3552      1.37  riastrad 	thmap_gc(wg->wg_peers_byname, garbage_byname);
   3553      1.37  riastrad 	thmap_gc(wg->wg_peers_bypubkey, garbage_bypubkey);
   3554       1.1  riastrad 
   3555       1.1  riastrad 	goto restart;
   3556       1.1  riastrad }
   3557       1.1  riastrad 
   3558       1.1  riastrad static int
   3559       1.1  riastrad wg_destroy_peer_name(struct wg_softc *wg, const char *name)
   3560       1.1  riastrad {
   3561      1.37  riastrad 	struct wg_peer *wgp, *wgp0 __diagused;
   3562      1.37  riastrad 	void *garbage_byname, *garbage_bypubkey;
   3563       1.1  riastrad 
   3564       1.1  riastrad 	mutex_enter(wg->wg_lock);
   3565      1.37  riastrad 	wgp = thmap_del(wg->wg_peers_byname, name, strlen(name));
   3566       1.1  riastrad 	if (wgp != NULL) {
   3567      1.37  riastrad 		wgp0 = thmap_del(wg->wg_peers_bypubkey, wgp->wgp_pubkey,
   3568      1.37  riastrad 		    sizeof(wgp->wgp_pubkey));
   3569      1.37  riastrad 		KASSERT(wgp0 == wgp);
   3570      1.37  riastrad 		garbage_byname = thmap_stage_gc(wg->wg_peers_byname);
   3571      1.37  riastrad 		garbage_bypubkey = thmap_stage_gc(wg->wg_peers_bypubkey);
   3572       1.1  riastrad 		WG_PEER_WRITER_REMOVE(wgp);
   3573       1.1  riastrad 		wg->wg_npeers--;
   3574      1.61       roy 		if (wg->wg_npeers == 0)
   3575      1.61       roy 			if_link_state_change(&wg->wg_if, LINK_STATE_DOWN);
   3576       1.1  riastrad 		mutex_enter(wgp->wgp_lock);
   3577       1.1  riastrad 		pserialize_perform(wgp->wgp_psz);
   3578       1.1  riastrad 		mutex_exit(wgp->wgp_lock);
   3579       1.1  riastrad 		PSLIST_ENTRY_DESTROY(wgp, wgp_peerlist_entry);
   3580       1.1  riastrad 	}
   3581       1.1  riastrad 	mutex_exit(wg->wg_lock);
   3582       1.1  riastrad 
   3583       1.1  riastrad 	if (wgp == NULL)
   3584       1.1  riastrad 		return ENOENT;
   3585       1.1  riastrad 
   3586       1.1  riastrad 	psref_target_destroy(&wgp->wgp_psref, wg_psref_class);
   3587       1.1  riastrad 
   3588       1.1  riastrad 	wg_destroy_peer(wgp);
   3589      1.37  riastrad 	thmap_gc(wg->wg_peers_byname, garbage_byname);
   3590      1.37  riastrad 	thmap_gc(wg->wg_peers_bypubkey, garbage_bypubkey);
   3591       1.1  riastrad 
   3592       1.1  riastrad 	return 0;
   3593       1.1  riastrad }
   3594       1.1  riastrad 
   3595       1.1  riastrad static int
   3596       1.1  riastrad wg_if_attach(struct wg_softc *wg)
   3597       1.1  riastrad {
   3598       1.1  riastrad 
   3599       1.1  riastrad 	wg->wg_if.if_addrlen = 0;
   3600       1.1  riastrad 	wg->wg_if.if_mtu = WG_MTU;
   3601      1.33  riastrad 	wg->wg_if.if_flags = IFF_MULTICAST;
   3602      1.61       roy 	wg->wg_if.if_extflags = IFEF_MPSAFE;
   3603       1.1  riastrad 	wg->wg_if.if_ioctl = wg_ioctl;
   3604       1.1  riastrad 	wg->wg_if.if_output = wg_output;
   3605       1.1  riastrad 	wg->wg_if.if_init = wg_init;
   3606      1.60  riastrad #ifdef ALTQ
   3607      1.60  riastrad 	wg->wg_if.if_start = wg_start;
   3608      1.60  riastrad #endif
   3609       1.1  riastrad 	wg->wg_if.if_stop = wg_stop;
   3610      1.24  riastrad 	wg->wg_if.if_type = IFT_OTHER;
   3611       1.1  riastrad 	wg->wg_if.if_dlt = DLT_NULL;
   3612       1.1  riastrad 	wg->wg_if.if_softc = wg;
   3613      1.60  riastrad #ifdef ALTQ
   3614       1.1  riastrad 	IFQ_SET_READY(&wg->wg_if.if_snd);
   3615      1.60  riastrad #endif
   3616      1.64  riastrad 	if_initialize(&wg->wg_if);
   3617       1.1  riastrad 
   3618      1.61       roy 	wg->wg_if.if_link_state = LINK_STATE_DOWN;
   3619       1.1  riastrad 	if_alloc_sadl(&wg->wg_if);
   3620       1.1  riastrad 	if_register(&wg->wg_if);
   3621       1.1  riastrad 
   3622       1.1  riastrad 	bpf_attach(&wg->wg_if, DLT_NULL, sizeof(uint32_t));
   3623       1.1  riastrad 
   3624       1.1  riastrad 	return 0;
   3625       1.1  riastrad }
   3626       1.1  riastrad 
   3627      1.54  riastrad static void
   3628      1.54  riastrad wg_if_detach(struct wg_softc *wg)
   3629      1.54  riastrad {
   3630      1.54  riastrad 	struct ifnet *ifp = &wg->wg_if;
   3631      1.54  riastrad 
   3632      1.54  riastrad 	bpf_detach(ifp);
   3633      1.54  riastrad 	if_detach(ifp);
   3634      1.54  riastrad }
   3635      1.54  riastrad 
   3636       1.1  riastrad static int
   3637       1.1  riastrad wg_clone_create(struct if_clone *ifc, int unit)
   3638       1.1  riastrad {
   3639       1.1  riastrad 	struct wg_softc *wg;
   3640       1.1  riastrad 	int error;
   3641       1.1  riastrad 
   3642      1.58  riastrad 	wg_guarantee_initialized();
   3643      1.58  riastrad 
   3644      1.59  riastrad 	error = wg_count_inc();
   3645      1.59  riastrad 	if (error)
   3646      1.59  riastrad 		return error;
   3647      1.59  riastrad 
   3648      1.54  riastrad 	wg = kmem_zalloc(sizeof(*wg), KM_SLEEP);
   3649       1.1  riastrad 
   3650       1.1  riastrad 	if_initname(&wg->wg_if, ifc->ifc_name, unit);
   3651       1.1  riastrad 
   3652      1.55  riastrad 	PSLIST_INIT(&wg->wg_peers);
   3653      1.55  riastrad 	wg->wg_peers_bypubkey = thmap_create(0, NULL, THMAP_NOCOPY);
   3654      1.55  riastrad 	wg->wg_peers_byname = thmap_create(0, NULL, THMAP_NOCOPY);
   3655      1.55  riastrad 	wg->wg_sessions_byindex = thmap_create(0, NULL, THMAP_NOCOPY);
   3656      1.55  riastrad 	wg->wg_lock = mutex_obj_alloc(MUTEX_DEFAULT, IPL_NONE);
   3657      1.55  riastrad 	wg->wg_intr_lock = mutex_obj_alloc(MUTEX_DEFAULT, IPL_SOFTNET);
   3658      1.55  riastrad 	wg->wg_rwlock = rw_obj_alloc();
   3659      1.55  riastrad 	threadpool_job_init(&wg->wg_job, wg_job, wg->wg_intr_lock,
   3660      1.55  riastrad 	    "%s", if_name(&wg->wg_if));
   3661      1.55  riastrad 	wg->wg_ops = &wg_ops_rumpkernel;
   3662      1.55  riastrad 
   3663      1.55  riastrad 	error = threadpool_get(&wg->wg_threadpool, PRI_NONE);
   3664      1.54  riastrad 	if (error)
   3665      1.54  riastrad 		goto fail0;
   3666       1.1  riastrad 
   3667      1.55  riastrad #ifdef INET
   3668      1.55  riastrad 	error = wg_socreate(wg, AF_INET, &wg->wg_so4);
   3669      1.55  riastrad 	if (error)
   3670      1.55  riastrad 		goto fail1;
   3671       1.1  riastrad 	rn_inithead((void **)&wg->wg_rtable_ipv4,
   3672       1.1  riastrad 	    offsetof(struct sockaddr_in, sin_addr) * NBBY);
   3673      1.55  riastrad #endif
   3674       1.1  riastrad #ifdef INET6
   3675      1.55  riastrad 	error = wg_socreate(wg, AF_INET6, &wg->wg_so6);
   3676      1.55  riastrad 	if (error)
   3677      1.55  riastrad 		goto fail2;
   3678       1.1  riastrad 	rn_inithead((void **)&wg->wg_rtable_ipv6,
   3679       1.1  riastrad 	    offsetof(struct sockaddr_in6, sin6_addr) * NBBY);
   3680       1.1  riastrad #endif
   3681       1.1  riastrad 
   3682       1.1  riastrad 	error = wg_if_attach(wg);
   3683      1.54  riastrad 	if (error)
   3684      1.55  riastrad 		goto fail3;
   3685       1.1  riastrad 
   3686       1.1  riastrad 	return 0;
   3687      1.54  riastrad 
   3688      1.55  riastrad fail4: __unused
   3689      1.54  riastrad 	wg_if_detach(wg);
   3690      1.55  riastrad fail3:	wg_destroy_all_peers(wg);
   3691      1.55  riastrad #ifdef INET6
   3692      1.55  riastrad 	solock(wg->wg_so6);
   3693      1.55  riastrad 	wg->wg_so6->so_rcv.sb_flags &= ~SB_UPCALL;
   3694      1.55  riastrad 	sounlock(wg->wg_so6);
   3695      1.55  riastrad #endif
   3696      1.55  riastrad #ifdef INET
   3697      1.55  riastrad 	solock(wg->wg_so4);
   3698      1.55  riastrad 	wg->wg_so4->so_rcv.sb_flags &= ~SB_UPCALL;
   3699      1.55  riastrad 	sounlock(wg->wg_so4);
   3700      1.55  riastrad #endif
   3701      1.55  riastrad 	mutex_enter(wg->wg_intr_lock);
   3702      1.55  riastrad 	threadpool_cancel_job(wg->wg_threadpool, &wg->wg_job);
   3703      1.55  riastrad 	mutex_exit(wg->wg_intr_lock);
   3704      1.55  riastrad #ifdef INET6
   3705      1.55  riastrad 	if (wg->wg_rtable_ipv6 != NULL)
   3706      1.55  riastrad 		free(wg->wg_rtable_ipv6, M_RTABLE);
   3707      1.55  riastrad 	soclose(wg->wg_so6);
   3708      1.55  riastrad fail2:
   3709      1.55  riastrad #endif
   3710      1.55  riastrad #ifdef INET
   3711      1.55  riastrad 	if (wg->wg_rtable_ipv4 != NULL)
   3712      1.55  riastrad 		free(wg->wg_rtable_ipv4, M_RTABLE);
   3713      1.55  riastrad 	soclose(wg->wg_so4);
   3714      1.55  riastrad fail1:
   3715      1.55  riastrad #endif
   3716      1.55  riastrad 	threadpool_put(wg->wg_threadpool, PRI_NONE);
   3717      1.55  riastrad fail0:	threadpool_job_destroy(&wg->wg_job);
   3718      1.54  riastrad 	rw_obj_free(wg->wg_rwlock);
   3719      1.55  riastrad 	mutex_obj_free(wg->wg_intr_lock);
   3720      1.54  riastrad 	mutex_obj_free(wg->wg_lock);
   3721      1.54  riastrad 	thmap_destroy(wg->wg_sessions_byindex);
   3722      1.54  riastrad 	thmap_destroy(wg->wg_peers_byname);
   3723      1.54  riastrad 	thmap_destroy(wg->wg_peers_bypubkey);
   3724      1.54  riastrad 	PSLIST_DESTROY(&wg->wg_peers);
   3725      1.55  riastrad 	kmem_free(wg, sizeof(*wg));
   3726      1.59  riastrad 	wg_count_dec();
   3727      1.54  riastrad 	return error;
   3728       1.1  riastrad }
   3729       1.1  riastrad 
   3730       1.1  riastrad static int
   3731       1.1  riastrad wg_clone_destroy(struct ifnet *ifp)
   3732       1.1  riastrad {
   3733      1.16  riastrad 	struct wg_softc *wg = container_of(ifp, struct wg_softc, wg_if);
   3734       1.1  riastrad 
   3735       1.1  riastrad #ifdef WG_RUMPKERNEL
   3736       1.1  riastrad 	if (wg_user_mode(wg)) {
   3737       1.1  riastrad 		rumpuser_wg_destroy(wg->wg_user);
   3738       1.1  riastrad 		wg->wg_user = NULL;
   3739       1.1  riastrad 	}
   3740       1.1  riastrad #endif
   3741       1.1  riastrad 
   3742      1.54  riastrad 	wg_if_detach(wg);
   3743       1.1  riastrad 	wg_destroy_all_peers(wg);
   3744      1.55  riastrad #ifdef INET6
   3745      1.55  riastrad 	solock(wg->wg_so6);
   3746      1.55  riastrad 	wg->wg_so6->so_rcv.sb_flags &= ~SB_UPCALL;
   3747      1.55  riastrad 	sounlock(wg->wg_so6);
   3748      1.55  riastrad #endif
   3749      1.55  riastrad #ifdef INET
   3750      1.55  riastrad 	solock(wg->wg_so4);
   3751      1.55  riastrad 	wg->wg_so4->so_rcv.sb_flags &= ~SB_UPCALL;
   3752      1.55  riastrad 	sounlock(wg->wg_so4);
   3753      1.55  riastrad #endif
   3754      1.55  riastrad 	mutex_enter(wg->wg_intr_lock);
   3755      1.55  riastrad 	threadpool_cancel_job(wg->wg_threadpool, &wg->wg_job);
   3756      1.55  riastrad 	mutex_exit(wg->wg_intr_lock);
   3757      1.55  riastrad #ifdef INET6
   3758      1.55  riastrad 	if (wg->wg_rtable_ipv6 != NULL)
   3759      1.55  riastrad 		free(wg->wg_rtable_ipv6, M_RTABLE);
   3760      1.55  riastrad 	soclose(wg->wg_so6);
   3761      1.55  riastrad #endif
   3762      1.55  riastrad #ifdef INET
   3763      1.55  riastrad 	if (wg->wg_rtable_ipv4 != NULL)
   3764      1.55  riastrad 		free(wg->wg_rtable_ipv4, M_RTABLE);
   3765      1.55  riastrad 	soclose(wg->wg_so4);
   3766      1.55  riastrad #endif
   3767      1.55  riastrad 	threadpool_put(wg->wg_threadpool, PRI_NONE);
   3768      1.55  riastrad 	threadpool_job_destroy(&wg->wg_job);
   3769      1.54  riastrad 	rw_obj_free(wg->wg_rwlock);
   3770      1.55  riastrad 	mutex_obj_free(wg->wg_intr_lock);
   3771      1.54  riastrad 	mutex_obj_free(wg->wg_lock);
   3772      1.54  riastrad 	thmap_destroy(wg->wg_sessions_byindex);
   3773      1.54  riastrad 	thmap_destroy(wg->wg_peers_byname);
   3774      1.54  riastrad 	thmap_destroy(wg->wg_peers_bypubkey);
   3775      1.54  riastrad 	PSLIST_DESTROY(&wg->wg_peers);
   3776      1.54  riastrad 	kmem_free(wg, sizeof(*wg));
   3777      1.59  riastrad 	wg_count_dec();
   3778       1.1  riastrad 
   3779       1.1  riastrad 	return 0;
   3780       1.1  riastrad }
   3781       1.1  riastrad 
   3782       1.1  riastrad static struct wg_peer *
   3783       1.1  riastrad wg_pick_peer_by_sa(struct wg_softc *wg, const struct sockaddr *sa,
   3784       1.1  riastrad     struct psref *psref)
   3785       1.1  riastrad {
   3786       1.1  riastrad 	struct radix_node_head *rnh;
   3787       1.1  riastrad 	struct radix_node *rn;
   3788       1.1  riastrad 	struct wg_peer *wgp = NULL;
   3789       1.1  riastrad 	struct wg_allowedip *wga;
   3790       1.1  riastrad 
   3791       1.1  riastrad #ifdef WG_DEBUG_LOG
   3792       1.1  riastrad 	char addrstr[128];
   3793       1.1  riastrad 	sockaddr_format(sa, addrstr, sizeof(addrstr));
   3794       1.1  riastrad 	WG_DLOG("sa=%s\n", addrstr);
   3795       1.1  riastrad #endif
   3796       1.1  riastrad 
   3797       1.1  riastrad 	rw_enter(wg->wg_rwlock, RW_READER);
   3798       1.1  riastrad 
   3799       1.1  riastrad 	rnh = wg_rnh(wg, sa->sa_family);
   3800       1.1  riastrad 	if (rnh == NULL)
   3801       1.1  riastrad 		goto out;
   3802       1.1  riastrad 
   3803       1.1  riastrad 	rn = rnh->rnh_matchaddr(sa, rnh);
   3804       1.1  riastrad 	if (rn == NULL || (rn->rn_flags & RNF_ROOT) != 0)
   3805       1.1  riastrad 		goto out;
   3806       1.1  riastrad 
   3807       1.1  riastrad 	WG_TRACE("success");
   3808       1.1  riastrad 
   3809      1.16  riastrad 	wga = container_of(rn, struct wg_allowedip, wga_nodes[0]);
   3810       1.1  riastrad 	wgp = wga->wga_peer;
   3811       1.1  riastrad 	wg_get_peer(wgp, psref);
   3812       1.1  riastrad 
   3813       1.1  riastrad out:
   3814       1.1  riastrad 	rw_exit(wg->wg_rwlock);
   3815       1.1  riastrad 	return wgp;
   3816       1.1  riastrad }
   3817       1.1  riastrad 
   3818       1.1  riastrad static void
   3819       1.1  riastrad wg_fill_msg_data(struct wg_softc *wg, struct wg_peer *wgp,
   3820       1.1  riastrad     struct wg_session *wgs, struct wg_msg_data *wgmd)
   3821       1.1  riastrad {
   3822       1.1  riastrad 
   3823       1.1  riastrad 	memset(wgmd, 0, sizeof(*wgmd));
   3824      1.39  riastrad 	wgmd->wgmd_type = htole32(WG_MSG_TYPE_DATA);
   3825      1.49  riastrad 	wgmd->wgmd_receiver = wgs->wgs_remote_index;
   3826       1.1  riastrad 	/* [W] 5.4.6: msg.counter := Nm^send */
   3827       1.1  riastrad 	/* [W] 5.4.6: Nm^send := Nm^send + 1 */
   3828      1.39  riastrad 	wgmd->wgmd_counter = htole64(wg_session_inc_send_counter(wgs));
   3829      1.39  riastrad 	WG_DLOG("counter=%"PRIu64"\n", le64toh(wgmd->wgmd_counter));
   3830       1.1  riastrad }
   3831       1.1  riastrad 
   3832       1.1  riastrad static int
   3833       1.1  riastrad wg_output(struct ifnet *ifp, struct mbuf *m, const struct sockaddr *dst,
   3834       1.1  riastrad     const struct rtentry *rt)
   3835       1.1  riastrad {
   3836       1.1  riastrad 	struct wg_softc *wg = ifp->if_softc;
   3837      1.49  riastrad 	struct wg_peer *wgp = NULL;
   3838      1.49  riastrad 	struct wg_session *wgs = NULL;
   3839      1.49  riastrad 	struct psref wgp_psref, wgs_psref;
   3840       1.1  riastrad 	int bound;
   3841      1.49  riastrad 	int error;
   3842      1.49  riastrad 
   3843      1.49  riastrad 	bound = curlwp_bind();
   3844       1.1  riastrad 
   3845       1.1  riastrad 	/* TODO make the nest limit configurable via sysctl */
   3846       1.1  riastrad 	error = if_tunnel_check_nesting(ifp, m, 1);
   3847      1.49  riastrad 	if (error) {
   3848      1.76  jakllsch 		WGLOG(LOG_ERR,
   3849      1.76  jakllsch 		    "%s: tunneling loop detected and packet dropped\n",
   3850      1.76  jakllsch 		    if_name(&wg->wg_if));
   3851      1.54  riastrad 		goto out0;
   3852       1.1  riastrad 	}
   3853       1.1  riastrad 
   3854      1.60  riastrad #ifdef ALTQ
   3855  1.77.2.1   thorpej 	bool altq = atomic_load_relaxed(&ifp->if_snd.ifq_altq->altq_flags)
   3856      1.60  riastrad 	    & ALTQF_ENABLED;
   3857      1.60  riastrad 	if (altq)
   3858      1.60  riastrad 		IFQ_CLASSIFY(&ifp->if_snd, m, dst->sa_family);
   3859      1.60  riastrad #endif
   3860       1.1  riastrad 
   3861       1.1  riastrad 	bpf_mtap_af(ifp, dst->sa_family, m, BPF_D_OUT);
   3862       1.1  riastrad 
   3863       1.1  riastrad 	m->m_flags &= ~(M_BCAST|M_MCAST);
   3864       1.1  riastrad 
   3865      1.49  riastrad 	wgp = wg_pick_peer_by_sa(wg, dst, &wgp_psref);
   3866       1.1  riastrad 	if (wgp == NULL) {
   3867       1.1  riastrad 		WG_TRACE("peer not found");
   3868       1.1  riastrad 		error = EHOSTUNREACH;
   3869      1.54  riastrad 		goto out0;
   3870       1.1  riastrad 	}
   3871       1.1  riastrad 
   3872       1.1  riastrad 	/* Clear checksum-offload flags. */
   3873       1.1  riastrad 	m->m_pkthdr.csum_flags = 0;
   3874       1.1  riastrad 	m->m_pkthdr.csum_data = 0;
   3875       1.1  riastrad 
   3876      1.54  riastrad 	/* Check whether there's an established session.  */
   3877      1.54  riastrad 	wgs = wg_get_stable_session(wgp, &wgs_psref);
   3878      1.54  riastrad 	if (wgs == NULL) {
   3879      1.54  riastrad 		/*
   3880      1.54  riastrad 		 * No established session.  If we're the first to try
   3881      1.54  riastrad 		 * sending data, schedule a handshake and queue the
   3882      1.54  riastrad 		 * packet for when the handshake is done; otherwise
   3883      1.54  riastrad 		 * just drop the packet and let the ongoing handshake
   3884      1.54  riastrad 		 * attempt continue.  We could queue more data packets
   3885      1.54  riastrad 		 * but it's not clear that's worthwhile.
   3886      1.54  riastrad 		 */
   3887      1.54  riastrad 		if (atomic_cas_ptr(&wgp->wgp_pending, NULL, m) == NULL) {
   3888      1.54  riastrad 			m = NULL; /* consume */
   3889      1.54  riastrad 			WG_TRACE("queued first packet; init handshake");
   3890      1.54  riastrad 			wg_schedule_peer_task(wgp, WGP_TASK_SEND_INIT_MESSAGE);
   3891      1.54  riastrad 		} else {
   3892      1.54  riastrad 			WG_TRACE("first packet already queued, dropping");
   3893      1.54  riastrad 		}
   3894      1.54  riastrad 		goto out1;
   3895      1.54  riastrad 	}
   3896      1.54  riastrad 
   3897      1.54  riastrad 	/* There's an established session.  Toss it in the queue.  */
   3898      1.60  riastrad #ifdef ALTQ
   3899      1.60  riastrad 	if (altq) {
   3900      1.60  riastrad 		mutex_enter(ifp->if_snd.ifq_lock);
   3901      1.60  riastrad 		if (ALTQ_IS_ENABLED(&ifp->if_snd)) {
   3902      1.60  riastrad 			M_SETCTX(m, wgp);
   3903      1.60  riastrad 			ALTQ_ENQUEUE(&ifp->if_snd, m, error);
   3904      1.60  riastrad 			m = NULL; /* consume */
   3905      1.60  riastrad 		}
   3906      1.60  riastrad 		mutex_exit(ifp->if_snd.ifq_lock);
   3907      1.60  riastrad 		if (m == NULL) {
   3908      1.60  riastrad 			wg_start(ifp);
   3909      1.60  riastrad 			goto out2;
   3910      1.60  riastrad 		}
   3911      1.60  riastrad 	}
   3912      1.60  riastrad #endif
   3913      1.54  riastrad 	kpreempt_disable();
   3914      1.54  riastrad 	const uint32_t h = curcpu()->ci_index;	// pktq_rps_hash(m)
   3915      1.54  riastrad 	M_SETCTX(m, wgp);
   3916      1.54  riastrad 	if (__predict_false(!pktq_enqueue(wg_pktq, m, h))) {
   3917      1.76  jakllsch 		WGLOG(LOG_ERR, "%s: pktq full, dropping\n",
   3918      1.76  jakllsch 		    if_name(&wg->wg_if));
   3919       1.1  riastrad 		error = ENOBUFS;
   3920      1.60  riastrad 		goto out3;
   3921       1.1  riastrad 	}
   3922      1.49  riastrad 	m = NULL;		/* consumed */
   3923      1.49  riastrad 	error = 0;
   3924      1.60  riastrad out3:	kpreempt_enable();
   3925       1.1  riastrad 
   3926      1.60  riastrad #ifdef ALTQ
   3927      1.60  riastrad out2:
   3928      1.60  riastrad #endif
   3929      1.54  riastrad 	wg_put_session(wgs, &wgs_psref);
   3930      1.54  riastrad out1:	wg_put_peer(wgp, &wgp_psref);
   3931      1.54  riastrad out0:	if (m)
   3932       1.1  riastrad 		m_freem(m);
   3933       1.1  riastrad 	curlwp_bindx(bound);
   3934       1.1  riastrad 	return error;
   3935       1.1  riastrad }
   3936       1.1  riastrad 
   3937       1.1  riastrad static int
   3938       1.1  riastrad wg_send_udp(struct wg_peer *wgp, struct mbuf *m)
   3939       1.1  riastrad {
   3940       1.1  riastrad 	struct psref psref;
   3941       1.1  riastrad 	struct wg_sockaddr *wgsa;
   3942       1.1  riastrad 	int error;
   3943      1.47  riastrad 	struct socket *so;
   3944       1.1  riastrad 
   3945      1.47  riastrad 	wgsa = wg_get_endpoint_sa(wgp, &psref);
   3946      1.47  riastrad 	so = wg_get_so_by_peer(wgp, wgsa);
   3947       1.1  riastrad 	solock(so);
   3948       1.1  riastrad 	if (wgsatosa(wgsa)->sa_family == AF_INET) {
   3949       1.1  riastrad 		error = udp_send(so, m, wgsatosa(wgsa), NULL, curlwp);
   3950       1.1  riastrad 	} else {
   3951       1.1  riastrad #ifdef INET6
   3952      1.70     ozaki 		error = udp6_output(sotoinpcb(so), m, wgsatosin6(wgsa),
   3953       1.1  riastrad 		    NULL, curlwp);
   3954       1.1  riastrad #else
   3955      1.38  riastrad 		m_freem(m);
   3956      1.47  riastrad 		error = EPFNOSUPPORT;
   3957       1.1  riastrad #endif
   3958       1.1  riastrad 	}
   3959      1.47  riastrad 	sounlock(so);
   3960       1.1  riastrad 	wg_put_sa(wgp, wgsa, &psref);
   3961       1.1  riastrad 
   3962       1.1  riastrad 	return error;
   3963       1.1  riastrad }
   3964       1.1  riastrad 
   3965       1.1  riastrad /* Inspired by pppoe_get_mbuf */
   3966       1.1  riastrad static struct mbuf *
   3967       1.1  riastrad wg_get_mbuf(size_t leading_len, size_t len)
   3968       1.1  riastrad {
   3969       1.1  riastrad 	struct mbuf *m;
   3970       1.1  riastrad 
   3971      1.30  riastrad 	KASSERT(leading_len <= MCLBYTES);
   3972      1.30  riastrad 	KASSERT(len <= MCLBYTES - leading_len);
   3973      1.30  riastrad 
   3974       1.1  riastrad 	m = m_gethdr(M_DONTWAIT, MT_DATA);
   3975       1.1  riastrad 	if (m == NULL)
   3976       1.1  riastrad 		return NULL;
   3977       1.1  riastrad 	if (len + leading_len > MHLEN) {
   3978       1.1  riastrad 		m_clget(m, M_DONTWAIT);
   3979       1.1  riastrad 		if ((m->m_flags & M_EXT) == 0) {
   3980       1.1  riastrad 			m_free(m);
   3981       1.1  riastrad 			return NULL;
   3982       1.1  riastrad 		}
   3983       1.1  riastrad 	}
   3984       1.1  riastrad 	m->m_data += leading_len;
   3985       1.1  riastrad 	m->m_pkthdr.len = m->m_len = len;
   3986       1.1  riastrad 
   3987       1.1  riastrad 	return m;
   3988       1.1  riastrad }
   3989       1.1  riastrad 
   3990       1.1  riastrad static int
   3991       1.1  riastrad wg_send_data_msg(struct wg_peer *wgp, struct wg_session *wgs,
   3992       1.1  riastrad     struct mbuf *m)
   3993       1.1  riastrad {
   3994       1.1  riastrad 	struct wg_softc *wg = wgp->wgp_sc;
   3995       1.1  riastrad 	int error;
   3996       1.1  riastrad 	size_t inner_len, padded_len, encrypted_len;
   3997       1.1  riastrad 	char *padded_buf = NULL;
   3998       1.1  riastrad 	size_t mlen;
   3999       1.1  riastrad 	struct wg_msg_data *wgmd;
   4000       1.1  riastrad 	bool free_padded_buf = false;
   4001       1.1  riastrad 	struct mbuf *n;
   4002      1.62  riastrad 	size_t leading_len = max_hdr + sizeof(struct udphdr);
   4003       1.1  riastrad 
   4004       1.1  riastrad 	mlen = m_length(m);
   4005       1.1  riastrad 	inner_len = mlen;
   4006       1.2  riastrad 	padded_len = roundup(mlen, 16);
   4007       1.2  riastrad 	encrypted_len = padded_len + WG_AUTHTAG_LEN;
   4008       1.1  riastrad 	WG_DLOG("inner=%lu, padded=%lu, encrypted_len=%lu\n",
   4009       1.1  riastrad 	    inner_len, padded_len, encrypted_len);
   4010       1.1  riastrad 	if (mlen != 0) {
   4011       1.1  riastrad 		bool success;
   4012       1.1  riastrad 		success = m_ensure_contig(&m, padded_len);
   4013       1.1  riastrad 		if (success) {
   4014       1.1  riastrad 			padded_buf = mtod(m, char *);
   4015       1.1  riastrad 		} else {
   4016       1.1  riastrad 			padded_buf = kmem_intr_alloc(padded_len, KM_NOSLEEP);
   4017       1.1  riastrad 			if (padded_buf == NULL) {
   4018       1.1  riastrad 				error = ENOBUFS;
   4019       1.1  riastrad 				goto end;
   4020       1.1  riastrad 			}
   4021       1.1  riastrad 			free_padded_buf = true;
   4022       1.1  riastrad 			m_copydata(m, 0, mlen, padded_buf);
   4023       1.1  riastrad 		}
   4024       1.1  riastrad 		memset(padded_buf + mlen, 0, padded_len - inner_len);
   4025       1.1  riastrad 	}
   4026       1.1  riastrad 
   4027       1.1  riastrad 	n = wg_get_mbuf(leading_len, sizeof(*wgmd) + encrypted_len);
   4028       1.1  riastrad 	if (n == NULL) {
   4029       1.1  riastrad 		error = ENOBUFS;
   4030       1.1  riastrad 		goto end;
   4031       1.1  riastrad 	}
   4032      1.27  riastrad 	KASSERT(n->m_len >= sizeof(*wgmd));
   4033       1.1  riastrad 	wgmd = mtod(n, struct wg_msg_data *);
   4034       1.1  riastrad 	wg_fill_msg_data(wg, wgp, wgs, wgmd);
   4035       1.1  riastrad 	/* [W] 5.4.6: AEAD(Tm^send, Nm^send, P, e) */
   4036       1.1  riastrad 	wg_algo_aead_enc((char *)wgmd + sizeof(*wgmd), encrypted_len,
   4037      1.39  riastrad 	    wgs->wgs_tkey_send, le64toh(wgmd->wgmd_counter),
   4038      1.39  riastrad 	    padded_buf, padded_len,
   4039       1.1  riastrad 	    NULL, 0);
   4040       1.1  riastrad 
   4041       1.1  riastrad 	error = wg->wg_ops->send_data_msg(wgp, n);
   4042       1.1  riastrad 	if (error == 0) {
   4043       1.1  riastrad 		struct ifnet *ifp = &wg->wg_if;
   4044       1.4  riastrad 		if_statadd(ifp, if_obytes, mlen);
   4045       1.4  riastrad 		if_statinc(ifp, if_opackets);
   4046      1.14  riastrad 		if (wgs->wgs_is_initiator &&
   4047      1.14  riastrad 		    wgs->wgs_time_last_data_sent == 0) {
   4048       1.1  riastrad 			/*
   4049       1.1  riastrad 			 * [W] 6.2 Transport Message Limits
   4050       1.1  riastrad 			 * "if a peer is the initiator of a current secure
   4051       1.1  riastrad 			 *  session, WireGuard will send a handshake initiation
   4052       1.1  riastrad 			 *  message to begin a new secure session if, after
   4053       1.1  riastrad 			 *  transmitting a transport data message, the current
   4054       1.1  riastrad 			 *  secure session is REKEY-AFTER-TIME seconds old,"
   4055       1.1  riastrad 			 */
   4056       1.1  riastrad 			wg_schedule_rekey_timer(wgp);
   4057       1.1  riastrad 		}
   4058       1.1  riastrad 		wgs->wgs_time_last_data_sent = time_uptime;
   4059      1.22  riastrad 		if (wg_session_get_send_counter(wgs) >=
   4060      1.22  riastrad 		    wg_rekey_after_messages) {
   4061       1.1  riastrad 			/*
   4062       1.1  riastrad 			 * [W] 6.2 Transport Message Limits
   4063       1.1  riastrad 			 * "WireGuard will try to create a new session, by
   4064       1.1  riastrad 			 *  sending a handshake initiation message (section
   4065       1.1  riastrad 			 *  5.4.2), after it has sent REKEY-AFTER-MESSAGES
   4066       1.1  riastrad 			 *  transport data messages..."
   4067       1.1  riastrad 			 */
   4068       1.1  riastrad 			wg_schedule_peer_task(wgp, WGP_TASK_SEND_INIT_MESSAGE);
   4069       1.1  riastrad 		}
   4070       1.1  riastrad 	}
   4071       1.1  riastrad end:
   4072       1.1  riastrad 	m_freem(m);
   4073       1.1  riastrad 	if (free_padded_buf)
   4074       1.1  riastrad 		kmem_intr_free(padded_buf, padded_len);
   4075       1.1  riastrad 	return error;
   4076       1.1  riastrad }
   4077       1.1  riastrad 
   4078       1.1  riastrad static void
   4079       1.1  riastrad wg_input(struct ifnet *ifp, struct mbuf *m, const int af)
   4080       1.1  riastrad {
   4081       1.1  riastrad 	pktqueue_t *pktq;
   4082       1.1  riastrad 	size_t pktlen;
   4083       1.1  riastrad 
   4084       1.1  riastrad 	KASSERT(af == AF_INET || af == AF_INET6);
   4085       1.1  riastrad 
   4086       1.1  riastrad 	WG_TRACE("");
   4087       1.1  riastrad 
   4088       1.1  riastrad 	m_set_rcvif(m, ifp);
   4089       1.1  riastrad 	pktlen = m->m_pkthdr.len;
   4090       1.1  riastrad 
   4091       1.1  riastrad 	bpf_mtap_af(ifp, af, m, BPF_D_IN);
   4092       1.1  riastrad 
   4093       1.1  riastrad 	switch (af) {
   4094       1.1  riastrad 	case AF_INET:
   4095       1.1  riastrad 		pktq = ip_pktq;
   4096       1.1  riastrad 		break;
   4097       1.1  riastrad #ifdef INET6
   4098       1.1  riastrad 	case AF_INET6:
   4099       1.1  riastrad 		pktq = ip6_pktq;
   4100       1.1  riastrad 		break;
   4101       1.1  riastrad #endif
   4102       1.1  riastrad 	default:
   4103       1.1  riastrad 		panic("invalid af=%d", af);
   4104       1.1  riastrad 	}
   4105       1.1  riastrad 
   4106      1.57  riastrad 	kpreempt_disable();
   4107       1.1  riastrad 	const u_int h = curcpu()->ci_index;
   4108       1.1  riastrad 	if (__predict_true(pktq_enqueue(pktq, m, h))) {
   4109       1.4  riastrad 		if_statadd(ifp, if_ibytes, pktlen);
   4110       1.4  riastrad 		if_statinc(ifp, if_ipackets);
   4111       1.1  riastrad 	} else {
   4112       1.1  riastrad 		m_freem(m);
   4113       1.1  riastrad 	}
   4114      1.57  riastrad 	kpreempt_enable();
   4115       1.1  riastrad }
   4116       1.1  riastrad 
   4117       1.1  riastrad static void
   4118       1.1  riastrad wg_calc_pubkey(uint8_t pubkey[WG_STATIC_KEY_LEN],
   4119       1.1  riastrad     const uint8_t privkey[WG_STATIC_KEY_LEN])
   4120       1.1  riastrad {
   4121       1.1  riastrad 
   4122       1.1  riastrad 	crypto_scalarmult_base(pubkey, privkey);
   4123       1.1  riastrad }
   4124       1.1  riastrad 
   4125       1.1  riastrad static int
   4126       1.1  riastrad wg_rtable_add_route(struct wg_softc *wg, struct wg_allowedip *wga)
   4127       1.1  riastrad {
   4128       1.1  riastrad 	struct radix_node_head *rnh;
   4129       1.1  riastrad 	struct radix_node *rn;
   4130       1.1  riastrad 	int error = 0;
   4131       1.1  riastrad 
   4132       1.1  riastrad 	rw_enter(wg->wg_rwlock, RW_WRITER);
   4133       1.1  riastrad 	rnh = wg_rnh(wg, wga->wga_family);
   4134       1.1  riastrad 	KASSERT(rnh != NULL);
   4135       1.1  riastrad 	rn = rnh->rnh_addaddr(&wga->wga_sa_addr, &wga->wga_sa_mask, rnh,
   4136       1.1  riastrad 	    wga->wga_nodes);
   4137       1.1  riastrad 	rw_exit(wg->wg_rwlock);
   4138       1.1  riastrad 
   4139       1.1  riastrad 	if (rn == NULL)
   4140       1.1  riastrad 		error = EEXIST;
   4141       1.1  riastrad 
   4142       1.1  riastrad 	return error;
   4143       1.1  riastrad }
   4144       1.1  riastrad 
   4145       1.1  riastrad static int
   4146       1.1  riastrad wg_handle_prop_peer(struct wg_softc *wg, prop_dictionary_t peer,
   4147       1.1  riastrad     struct wg_peer **wgpp)
   4148       1.1  riastrad {
   4149       1.1  riastrad 	int error = 0;
   4150      1.12  riastrad 	const void *pubkey;
   4151       1.1  riastrad 	size_t pubkey_len;
   4152      1.12  riastrad 	const void *psk;
   4153      1.12  riastrad 	size_t psk_len;
   4154       1.1  riastrad 	const char *name = NULL;
   4155       1.1  riastrad 
   4156      1.12  riastrad 	if (prop_dictionary_get_string(peer, "name", &name)) {
   4157       1.1  riastrad 		if (strlen(name) > WG_PEER_NAME_MAXLEN) {
   4158       1.1  riastrad 			error = EINVAL;
   4159       1.1  riastrad 			goto out;
   4160       1.1  riastrad 		}
   4161       1.1  riastrad 	}
   4162       1.1  riastrad 
   4163      1.12  riastrad 	if (!prop_dictionary_get_data(peer, "public_key",
   4164      1.12  riastrad 		&pubkey, &pubkey_len)) {
   4165       1.1  riastrad 		error = EINVAL;
   4166       1.1  riastrad 		goto out;
   4167       1.1  riastrad 	}
   4168       1.1  riastrad #ifdef WG_DEBUG_DUMP
   4169      1.53  riastrad     {
   4170      1.53  riastrad 	char *hex = gethexdump(pubkey, pubkey_len);
   4171      1.53  riastrad 	log(LOG_DEBUG, "pubkey=%p, pubkey_len=%lu\n%s\n",
   4172      1.53  riastrad 	    pubkey, pubkey_len, hex);
   4173      1.53  riastrad 	puthexdump(hex, pubkey, pubkey_len);
   4174      1.53  riastrad     }
   4175       1.1  riastrad #endif
   4176       1.1  riastrad 
   4177       1.1  riastrad 	struct wg_peer *wgp = wg_alloc_peer(wg);
   4178       1.1  riastrad 	memcpy(wgp->wgp_pubkey, pubkey, sizeof(wgp->wgp_pubkey));
   4179       1.1  riastrad 	if (name != NULL)
   4180       1.1  riastrad 		strncpy(wgp->wgp_name, name, sizeof(wgp->wgp_name));
   4181       1.1  riastrad 
   4182      1.12  riastrad 	if (prop_dictionary_get_data(peer, "preshared_key", &psk, &psk_len)) {
   4183       1.1  riastrad 		if (psk_len != sizeof(wgp->wgp_psk)) {
   4184       1.1  riastrad 			error = EINVAL;
   4185       1.1  riastrad 			goto out;
   4186       1.1  riastrad 		}
   4187       1.1  riastrad 		memcpy(wgp->wgp_psk, psk, sizeof(wgp->wgp_psk));
   4188       1.1  riastrad 	}
   4189       1.1  riastrad 
   4190      1.12  riastrad 	const void *addr;
   4191       1.1  riastrad 	size_t addr_len;
   4192      1.47  riastrad 	struct wg_sockaddr *wgsa = wgp->wgp_endpoint;
   4193       1.1  riastrad 
   4194      1.12  riastrad 	if (!prop_dictionary_get_data(peer, "endpoint", &addr, &addr_len))
   4195       1.1  riastrad 		goto skip_endpoint;
   4196      1.47  riastrad 	if (addr_len < sizeof(*wgsatosa(wgsa)) ||
   4197      1.47  riastrad 	    addr_len > sizeof(*wgsatoss(wgsa))) {
   4198      1.47  riastrad 		error = EINVAL;
   4199      1.47  riastrad 		goto out;
   4200      1.47  riastrad 	}
   4201      1.47  riastrad 	memcpy(wgsatoss(wgsa), addr, addr_len);
   4202      1.47  riastrad 	switch (wgsa_family(wgsa)) {
   4203      1.47  riastrad 	case AF_INET:
   4204       1.1  riastrad #ifdef INET6
   4205      1.47  riastrad 	case AF_INET6:
   4206      1.47  riastrad #endif
   4207       1.1  riastrad 		break;
   4208       1.1  riastrad 	default:
   4209      1.47  riastrad 		error = EPFNOSUPPORT;
   4210      1.47  riastrad 		goto out;
   4211      1.47  riastrad 	}
   4212      1.47  riastrad 	if (addr_len != sockaddr_getsize_by_family(wgsa_family(wgsa))) {
   4213      1.47  riastrad 		error = EINVAL;
   4214      1.47  riastrad 		goto out;
   4215       1.1  riastrad 	}
   4216      1.47  riastrad     {
   4217      1.47  riastrad 	char addrstr[128];
   4218      1.47  riastrad 	sockaddr_format(wgsatosa(wgsa), addrstr, sizeof(addrstr));
   4219      1.47  riastrad 	WG_DLOG("addr=%s\n", addrstr);
   4220      1.47  riastrad     }
   4221       1.1  riastrad 	wgp->wgp_endpoint_available = true;
   4222       1.1  riastrad 
   4223       1.1  riastrad 	prop_array_t allowedips;
   4224       1.1  riastrad skip_endpoint:
   4225       1.1  riastrad 	allowedips = prop_dictionary_get(peer, "allowedips");
   4226       1.1  riastrad 	if (allowedips == NULL)
   4227       1.1  riastrad 		goto skip;
   4228       1.1  riastrad 
   4229       1.1  riastrad 	prop_object_iterator_t _it = prop_array_iterator(allowedips);
   4230       1.1  riastrad 	prop_dictionary_t prop_allowedip;
   4231       1.1  riastrad 	int j = 0;
   4232       1.1  riastrad 	while ((prop_allowedip = prop_object_iterator_next(_it)) != NULL) {
   4233       1.1  riastrad 		struct wg_allowedip *wga = &wgp->wgp_allowedips[j];
   4234       1.1  riastrad 
   4235      1.12  riastrad 		if (!prop_dictionary_get_int(prop_allowedip, "family",
   4236      1.12  riastrad 			&wga->wga_family))
   4237       1.1  riastrad 			continue;
   4238      1.12  riastrad 		if (!prop_dictionary_get_data(prop_allowedip, "ip",
   4239      1.12  riastrad 			&addr, &addr_len))
   4240       1.1  riastrad 			continue;
   4241      1.12  riastrad 		if (!prop_dictionary_get_uint8(prop_allowedip, "cidr",
   4242      1.12  riastrad 			&wga->wga_cidr))
   4243       1.1  riastrad 			continue;
   4244       1.1  riastrad 
   4245       1.1  riastrad 		switch (wga->wga_family) {
   4246       1.1  riastrad 		case AF_INET: {
   4247       1.1  riastrad 			struct sockaddr_in sin;
   4248       1.1  riastrad 			char addrstr[128];
   4249       1.1  riastrad 			struct in_addr mask;
   4250       1.1  riastrad 			struct sockaddr_in sin_mask;
   4251       1.1  riastrad 
   4252       1.1  riastrad 			if (addr_len != sizeof(struct in_addr))
   4253       1.1  riastrad 				return EINVAL;
   4254       1.1  riastrad 			memcpy(&wga->wga_addr4, addr, addr_len);
   4255       1.1  riastrad 
   4256       1.9  riastrad 			sockaddr_in_init(&sin, (const struct in_addr *)addr,
   4257       1.9  riastrad 			    0);
   4258       1.1  riastrad 			sockaddr_copy(&wga->wga_sa_addr,
   4259       1.1  riastrad 			    sizeof(sin), sintosa(&sin));
   4260       1.1  riastrad 
   4261       1.9  riastrad 			sockaddr_format(sintosa(&sin),
   4262       1.9  riastrad 			    addrstr, sizeof(addrstr));
   4263       1.1  riastrad 			WG_DLOG("addr=%s/%d\n", addrstr, wga->wga_cidr);
   4264       1.1  riastrad 
   4265       1.1  riastrad 			in_len2mask(&mask, wga->wga_cidr);
   4266       1.1  riastrad 			sockaddr_in_init(&sin_mask, &mask, 0);
   4267       1.1  riastrad 			sockaddr_copy(&wga->wga_sa_mask,
   4268       1.1  riastrad 			    sizeof(sin_mask), sintosa(&sin_mask));
   4269       1.1  riastrad 
   4270       1.1  riastrad 			break;
   4271       1.1  riastrad 		    }
   4272       1.1  riastrad #ifdef INET6
   4273       1.1  riastrad 		case AF_INET6: {
   4274       1.1  riastrad 			struct sockaddr_in6 sin6;
   4275       1.1  riastrad 			char addrstr[128];
   4276       1.1  riastrad 			struct in6_addr mask;
   4277       1.1  riastrad 			struct sockaddr_in6 sin6_mask;
   4278       1.1  riastrad 
   4279       1.1  riastrad 			if (addr_len != sizeof(struct in6_addr))
   4280       1.1  riastrad 				return EINVAL;
   4281       1.1  riastrad 			memcpy(&wga->wga_addr6, addr, addr_len);
   4282       1.1  riastrad 
   4283       1.9  riastrad 			sockaddr_in6_init(&sin6, (const struct in6_addr *)addr,
   4284       1.9  riastrad 			    0, 0, 0);
   4285       1.1  riastrad 			sockaddr_copy(&wga->wga_sa_addr,
   4286       1.1  riastrad 			    sizeof(sin6), sin6tosa(&sin6));
   4287       1.1  riastrad 
   4288       1.9  riastrad 			sockaddr_format(sin6tosa(&sin6),
   4289       1.9  riastrad 			    addrstr, sizeof(addrstr));
   4290       1.1  riastrad 			WG_DLOG("addr=%s/%d\n", addrstr, wga->wga_cidr);
   4291       1.1  riastrad 
   4292       1.1  riastrad 			in6_prefixlen2mask(&mask, wga->wga_cidr);
   4293       1.1  riastrad 			sockaddr_in6_init(&sin6_mask, &mask, 0, 0, 0);
   4294       1.1  riastrad 			sockaddr_copy(&wga->wga_sa_mask,
   4295       1.1  riastrad 			    sizeof(sin6_mask), sin6tosa(&sin6_mask));
   4296       1.1  riastrad 
   4297       1.1  riastrad 			break;
   4298       1.1  riastrad 		    }
   4299       1.1  riastrad #endif
   4300       1.1  riastrad 		default:
   4301       1.1  riastrad 			error = EINVAL;
   4302       1.1  riastrad 			goto out;
   4303       1.1  riastrad 		}
   4304       1.1  riastrad 		wga->wga_peer = wgp;
   4305       1.1  riastrad 
   4306       1.1  riastrad 		error = wg_rtable_add_route(wg, wga);
   4307       1.1  riastrad 		if (error != 0)
   4308       1.1  riastrad 			goto out;
   4309       1.1  riastrad 
   4310       1.1  riastrad 		j++;
   4311       1.1  riastrad 	}
   4312       1.1  riastrad 	wgp->wgp_n_allowedips = j;
   4313       1.1  riastrad skip:
   4314       1.1  riastrad 	*wgpp = wgp;
   4315       1.1  riastrad out:
   4316       1.1  riastrad 	return error;
   4317       1.1  riastrad }
   4318       1.1  riastrad 
   4319       1.1  riastrad static int
   4320       1.1  riastrad wg_alloc_prop_buf(char **_buf, struct ifdrv *ifd)
   4321       1.1  riastrad {
   4322       1.1  riastrad 	int error;
   4323       1.1  riastrad 	char *buf;
   4324       1.1  riastrad 
   4325       1.1  riastrad 	WG_DLOG("buf=%p, len=%lu\n", ifd->ifd_data, ifd->ifd_len);
   4326      1.68  riastrad 	if (ifd->ifd_len >= WG_MAX_PROPLEN)
   4327      1.68  riastrad 		return E2BIG;
   4328       1.1  riastrad 	buf = kmem_alloc(ifd->ifd_len + 1, KM_SLEEP);
   4329       1.1  riastrad 	error = copyin(ifd->ifd_data, buf, ifd->ifd_len);
   4330       1.1  riastrad 	if (error != 0)
   4331       1.1  riastrad 		return error;
   4332       1.1  riastrad 	buf[ifd->ifd_len] = '\0';
   4333       1.1  riastrad #ifdef WG_DEBUG_DUMP
   4334      1.53  riastrad 	log(LOG_DEBUG, "%.*s\n",
   4335      1.53  riastrad 	    (int)MIN(INT_MAX, ifd->ifd_len),
   4336      1.53  riastrad 	    (const char *)buf);
   4337       1.1  riastrad #endif
   4338       1.1  riastrad 	*_buf = buf;
   4339       1.1  riastrad 	return 0;
   4340       1.1  riastrad }
   4341       1.1  riastrad 
   4342       1.1  riastrad static int
   4343       1.1  riastrad wg_ioctl_set_private_key(struct wg_softc *wg, struct ifdrv *ifd)
   4344       1.1  riastrad {
   4345       1.1  riastrad 	int error;
   4346       1.1  riastrad 	prop_dictionary_t prop_dict;
   4347       1.1  riastrad 	char *buf = NULL;
   4348      1.12  riastrad 	const void *privkey;
   4349       1.1  riastrad 	size_t privkey_len;
   4350       1.1  riastrad 
   4351       1.1  riastrad 	error = wg_alloc_prop_buf(&buf, ifd);
   4352       1.1  riastrad 	if (error != 0)
   4353       1.1  riastrad 		return error;
   4354       1.1  riastrad 	error = EINVAL;
   4355       1.1  riastrad 	prop_dict = prop_dictionary_internalize(buf);
   4356       1.1  riastrad 	if (prop_dict == NULL)
   4357       1.1  riastrad 		goto out;
   4358      1.12  riastrad 	if (!prop_dictionary_get_data(prop_dict, "private_key",
   4359      1.12  riastrad 		&privkey, &privkey_len))
   4360       1.1  riastrad 		goto out;
   4361       1.1  riastrad #ifdef WG_DEBUG_DUMP
   4362      1.53  riastrad     {
   4363      1.53  riastrad 	char *hex = gethexdump(privkey, privkey_len);
   4364      1.53  riastrad 	log(LOG_DEBUG, "privkey=%p, privkey_len=%lu\n%s\n",
   4365      1.53  riastrad 	    privkey, privkey_len, hex);
   4366      1.53  riastrad 	puthexdump(hex, privkey, privkey_len);
   4367      1.53  riastrad     }
   4368       1.1  riastrad #endif
   4369       1.1  riastrad 	if (privkey_len != WG_STATIC_KEY_LEN)
   4370       1.1  riastrad 		goto out;
   4371       1.1  riastrad 	memcpy(wg->wg_privkey, privkey, WG_STATIC_KEY_LEN);
   4372       1.1  riastrad 	wg_calc_pubkey(wg->wg_pubkey, wg->wg_privkey);
   4373       1.1  riastrad 	error = 0;
   4374       1.1  riastrad 
   4375       1.1  riastrad out:
   4376       1.1  riastrad 	kmem_free(buf, ifd->ifd_len + 1);
   4377       1.1  riastrad 	return error;
   4378       1.1  riastrad }
   4379       1.1  riastrad 
   4380       1.1  riastrad static int
   4381       1.1  riastrad wg_ioctl_set_listen_port(struct wg_softc *wg, struct ifdrv *ifd)
   4382       1.1  riastrad {
   4383       1.1  riastrad 	int error;
   4384       1.1  riastrad 	prop_dictionary_t prop_dict;
   4385       1.1  riastrad 	char *buf = NULL;
   4386      1.12  riastrad 	uint16_t port;
   4387       1.1  riastrad 
   4388       1.1  riastrad 	error = wg_alloc_prop_buf(&buf, ifd);
   4389       1.1  riastrad 	if (error != 0)
   4390       1.1  riastrad 		return error;
   4391       1.1  riastrad 	error = EINVAL;
   4392       1.1  riastrad 	prop_dict = prop_dictionary_internalize(buf);
   4393       1.1  riastrad 	if (prop_dict == NULL)
   4394       1.1  riastrad 		goto out;
   4395      1.12  riastrad 	if (!prop_dictionary_get_uint16(prop_dict, "listen_port", &port))
   4396       1.1  riastrad 		goto out;
   4397       1.1  riastrad 
   4398       1.1  riastrad 	error = wg->wg_ops->bind_port(wg, (uint16_t)port);
   4399       1.1  riastrad 
   4400       1.1  riastrad out:
   4401       1.1  riastrad 	kmem_free(buf, ifd->ifd_len + 1);
   4402       1.1  riastrad 	return error;
   4403       1.1  riastrad }
   4404       1.1  riastrad 
   4405       1.1  riastrad static int
   4406       1.1  riastrad wg_ioctl_add_peer(struct wg_softc *wg, struct ifdrv *ifd)
   4407       1.1  riastrad {
   4408       1.1  riastrad 	int error;
   4409       1.1  riastrad 	prop_dictionary_t prop_dict;
   4410       1.1  riastrad 	char *buf = NULL;
   4411      1.37  riastrad 	struct wg_peer *wgp = NULL, *wgp0 __diagused;
   4412       1.1  riastrad 
   4413       1.1  riastrad 	error = wg_alloc_prop_buf(&buf, ifd);
   4414       1.1  riastrad 	if (error != 0)
   4415       1.1  riastrad 		return error;
   4416       1.1  riastrad 	error = EINVAL;
   4417       1.1  riastrad 	prop_dict = prop_dictionary_internalize(buf);
   4418       1.1  riastrad 	if (prop_dict == NULL)
   4419       1.1  riastrad 		goto out;
   4420       1.1  riastrad 
   4421       1.1  riastrad 	error = wg_handle_prop_peer(wg, prop_dict, &wgp);
   4422       1.1  riastrad 	if (error != 0)
   4423       1.1  riastrad 		goto out;
   4424       1.1  riastrad 
   4425       1.1  riastrad 	mutex_enter(wg->wg_lock);
   4426      1.37  riastrad 	if (thmap_get(wg->wg_peers_bypubkey, wgp->wgp_pubkey,
   4427      1.37  riastrad 		sizeof(wgp->wgp_pubkey)) != NULL ||
   4428      1.37  riastrad 	    (wgp->wgp_name[0] &&
   4429      1.37  riastrad 		thmap_get(wg->wg_peers_byname, wgp->wgp_name,
   4430      1.37  riastrad 		    strlen(wgp->wgp_name)) != NULL)) {
   4431      1.37  riastrad 		mutex_exit(wg->wg_lock);
   4432      1.37  riastrad 		wg_destroy_peer(wgp);
   4433      1.37  riastrad 		error = EEXIST;
   4434      1.37  riastrad 		goto out;
   4435      1.37  riastrad 	}
   4436      1.37  riastrad 	wgp0 = thmap_put(wg->wg_peers_bypubkey, wgp->wgp_pubkey,
   4437      1.37  riastrad 	    sizeof(wgp->wgp_pubkey), wgp);
   4438      1.37  riastrad 	KASSERT(wgp0 == wgp);
   4439      1.37  riastrad 	if (wgp->wgp_name[0]) {
   4440      1.37  riastrad 		wgp0 = thmap_put(wg->wg_peers_byname, wgp->wgp_name,
   4441      1.37  riastrad 		    strlen(wgp->wgp_name), wgp);
   4442      1.37  riastrad 		KASSERT(wgp0 == wgp);
   4443      1.37  riastrad 	}
   4444       1.1  riastrad 	WG_PEER_WRITER_INSERT_HEAD(wgp, wg);
   4445       1.1  riastrad 	wg->wg_npeers++;
   4446       1.1  riastrad 	mutex_exit(wg->wg_lock);
   4447       1.1  riastrad 
   4448      1.61       roy 	if_link_state_change(&wg->wg_if, LINK_STATE_UP);
   4449      1.61       roy 
   4450       1.1  riastrad out:
   4451       1.1  riastrad 	kmem_free(buf, ifd->ifd_len + 1);
   4452       1.1  riastrad 	return error;
   4453       1.1  riastrad }
   4454       1.1  riastrad 
   4455       1.1  riastrad static int
   4456       1.1  riastrad wg_ioctl_delete_peer(struct wg_softc *wg, struct ifdrv *ifd)
   4457       1.1  riastrad {
   4458       1.1  riastrad 	int error;
   4459       1.1  riastrad 	prop_dictionary_t prop_dict;
   4460       1.1  riastrad 	char *buf = NULL;
   4461       1.1  riastrad 	const char *name;
   4462       1.1  riastrad 
   4463       1.1  riastrad 	error = wg_alloc_prop_buf(&buf, ifd);
   4464       1.1  riastrad 	if (error != 0)
   4465       1.1  riastrad 		return error;
   4466       1.1  riastrad 	error = EINVAL;
   4467       1.1  riastrad 	prop_dict = prop_dictionary_internalize(buf);
   4468       1.1  riastrad 	if (prop_dict == NULL)
   4469       1.1  riastrad 		goto out;
   4470       1.1  riastrad 
   4471      1.12  riastrad 	if (!prop_dictionary_get_string(prop_dict, "name", &name))
   4472       1.1  riastrad 		goto out;
   4473       1.1  riastrad 	if (strlen(name) > WG_PEER_NAME_MAXLEN)
   4474       1.1  riastrad 		goto out;
   4475       1.1  riastrad 
   4476       1.1  riastrad 	error = wg_destroy_peer_name(wg, name);
   4477       1.1  riastrad out:
   4478       1.1  riastrad 	kmem_free(buf, ifd->ifd_len + 1);
   4479       1.1  riastrad 	return error;
   4480       1.1  riastrad }
   4481       1.1  riastrad 
   4482      1.74  christos static bool
   4483      1.74  christos wg_is_authorized(struct wg_softc *wg, u_long cmd)
   4484      1.74  christos {
   4485      1.74  christos 	int au = cmd == SIOCGDRVSPEC ?
   4486      1.74  christos 	    KAUTH_REQ_NETWORK_INTERFACE_WG_GETPRIV :
   4487      1.74  christos 	    KAUTH_REQ_NETWORK_INTERFACE_WG_SETPRIV;
   4488      1.74  christos 	return kauth_authorize_network(kauth_cred_get(),
   4489      1.74  christos 	    KAUTH_NETWORK_INTERFACE_WG, au, &wg->wg_if,
   4490      1.74  christos 	    (void *)cmd, NULL) == 0;
   4491      1.74  christos }
   4492      1.74  christos 
   4493       1.1  riastrad static int
   4494       1.1  riastrad wg_ioctl_get(struct wg_softc *wg, struct ifdrv *ifd)
   4495       1.1  riastrad {
   4496       1.1  riastrad 	int error = ENOMEM;
   4497       1.1  riastrad 	prop_dictionary_t prop_dict;
   4498      1.23  riastrad 	prop_array_t peers = NULL;
   4499       1.1  riastrad 	char *buf;
   4500       1.1  riastrad 	struct wg_peer *wgp;
   4501       1.1  riastrad 	int s, i;
   4502       1.1  riastrad 
   4503       1.1  riastrad 	prop_dict = prop_dictionary_create();
   4504       1.1  riastrad 	if (prop_dict == NULL)
   4505       1.1  riastrad 		goto error;
   4506       1.1  riastrad 
   4507      1.74  christos 	if (wg_is_authorized(wg, SIOCGDRVSPEC)) {
   4508      1.73  jakllsch 		if (!prop_dictionary_set_data(prop_dict, "private_key",
   4509      1.73  jakllsch 			wg->wg_privkey, WG_STATIC_KEY_LEN))
   4510      1.73  jakllsch 			goto error;
   4511      1.73  jakllsch 	}
   4512       1.1  riastrad 
   4513       1.1  riastrad 	if (wg->wg_listen_port != 0) {
   4514      1.12  riastrad 		if (!prop_dictionary_set_uint16(prop_dict, "listen_port",
   4515      1.12  riastrad 			wg->wg_listen_port))
   4516       1.1  riastrad 			goto error;
   4517       1.1  riastrad 	}
   4518       1.1  riastrad 
   4519       1.1  riastrad 	if (wg->wg_npeers == 0)
   4520       1.1  riastrad 		goto skip_peers;
   4521       1.1  riastrad 
   4522       1.1  riastrad 	peers = prop_array_create();
   4523      1.12  riastrad 	if (peers == NULL)
   4524      1.12  riastrad 		goto error;
   4525      1.12  riastrad 
   4526       1.1  riastrad 	s = pserialize_read_enter();
   4527       1.1  riastrad 	i = 0;
   4528       1.1  riastrad 	WG_PEER_READER_FOREACH(wgp, wg) {
   4529      1.47  riastrad 		struct wg_sockaddr *wgsa;
   4530      1.47  riastrad 		struct psref wgp_psref, wgsa_psref;
   4531       1.1  riastrad 		prop_dictionary_t prop_peer;
   4532       1.1  riastrad 
   4533      1.47  riastrad 		wg_get_peer(wgp, &wgp_psref);
   4534       1.1  riastrad 		pserialize_read_exit(s);
   4535       1.1  riastrad 
   4536       1.1  riastrad 		prop_peer = prop_dictionary_create();
   4537      1.12  riastrad 		if (prop_peer == NULL)
   4538      1.12  riastrad 			goto next;
   4539       1.1  riastrad 
   4540       1.1  riastrad 		if (strlen(wgp->wgp_name) > 0) {
   4541      1.12  riastrad 			if (!prop_dictionary_set_string(prop_peer, "name",
   4542      1.12  riastrad 				wgp->wgp_name))
   4543      1.12  riastrad 				goto next;
   4544       1.1  riastrad 		}
   4545       1.1  riastrad 
   4546      1.12  riastrad 		if (!prop_dictionary_set_data(prop_peer, "public_key",
   4547      1.12  riastrad 			wgp->wgp_pubkey, sizeof(wgp->wgp_pubkey)))
   4548       1.1  riastrad 			goto next;
   4549       1.1  riastrad 
   4550       1.1  riastrad 		uint8_t psk_zero[WG_PRESHARED_KEY_LEN] = {0};
   4551      1.13  riastrad 		if (!consttime_memequal(wgp->wgp_psk, psk_zero,
   4552      1.13  riastrad 			sizeof(wgp->wgp_psk))) {
   4553      1.74  christos 			if (wg_is_authorized(wg, SIOCGDRVSPEC)) {
   4554      1.73  jakllsch 				if (!prop_dictionary_set_data(prop_peer,
   4555      1.73  jakllsch 					"preshared_key",
   4556      1.73  jakllsch 					wgp->wgp_psk, sizeof(wgp->wgp_psk)))
   4557      1.73  jakllsch 					goto next;
   4558      1.73  jakllsch 			}
   4559       1.1  riastrad 		}
   4560       1.1  riastrad 
   4561      1.47  riastrad 		wgsa = wg_get_endpoint_sa(wgp, &wgsa_psref);
   4562      1.47  riastrad 		CTASSERT(AF_UNSPEC == 0);
   4563      1.47  riastrad 		if (wgsa_family(wgsa) != 0 /*AF_UNSPEC*/ &&
   4564      1.47  riastrad 		    !prop_dictionary_set_data(prop_peer, "endpoint",
   4565      1.47  riastrad 			wgsatoss(wgsa),
   4566      1.47  riastrad 			sockaddr_getsize_by_family(wgsa_family(wgsa)))) {
   4567      1.47  riastrad 			wg_put_sa(wgp, wgsa, &wgsa_psref);
   4568      1.47  riastrad 			goto next;
   4569       1.1  riastrad 		}
   4570      1.47  riastrad 		wg_put_sa(wgp, wgsa, &wgsa_psref);
   4571       1.1  riastrad 
   4572       1.9  riastrad 		const struct timespec *t = &wgp->wgp_last_handshake_time;
   4573       1.9  riastrad 
   4574      1.12  riastrad 		if (!prop_dictionary_set_uint64(prop_peer,
   4575      1.65  christos 			"last_handshake_time_sec", (uint64_t)t->tv_sec))
   4576       1.1  riastrad 			goto next;
   4577      1.12  riastrad 		if (!prop_dictionary_set_uint32(prop_peer,
   4578      1.65  christos 			"last_handshake_time_nsec", (uint32_t)t->tv_nsec))
   4579       1.1  riastrad 			goto next;
   4580       1.1  riastrad 
   4581       1.1  riastrad 		if (wgp->wgp_n_allowedips == 0)
   4582       1.1  riastrad 			goto skip_allowedips;
   4583       1.1  riastrad 
   4584       1.1  riastrad 		prop_array_t allowedips = prop_array_create();
   4585      1.12  riastrad 		if (allowedips == NULL)
   4586      1.12  riastrad 			goto next;
   4587       1.1  riastrad 		for (int j = 0; j < wgp->wgp_n_allowedips; j++) {
   4588       1.1  riastrad 			struct wg_allowedip *wga = &wgp->wgp_allowedips[j];
   4589       1.1  riastrad 			prop_dictionary_t prop_allowedip;
   4590       1.1  riastrad 
   4591       1.1  riastrad 			prop_allowedip = prop_dictionary_create();
   4592       1.1  riastrad 			if (prop_allowedip == NULL)
   4593       1.1  riastrad 				break;
   4594       1.1  riastrad 
   4595      1.12  riastrad 			if (!prop_dictionary_set_int(prop_allowedip, "family",
   4596      1.12  riastrad 				wga->wga_family))
   4597       1.1  riastrad 				goto _next;
   4598      1.12  riastrad 			if (!prop_dictionary_set_uint8(prop_allowedip, "cidr",
   4599      1.12  riastrad 				wga->wga_cidr))
   4600       1.1  riastrad 				goto _next;
   4601       1.1  riastrad 
   4602       1.1  riastrad 			switch (wga->wga_family) {
   4603       1.1  riastrad 			case AF_INET:
   4604      1.12  riastrad 				if (!prop_dictionary_set_data(prop_allowedip,
   4605      1.12  riastrad 					"ip", &wga->wga_addr4,
   4606      1.12  riastrad 					sizeof(wga->wga_addr4)))
   4607       1.1  riastrad 					goto _next;
   4608       1.1  riastrad 				break;
   4609       1.1  riastrad #ifdef INET6
   4610       1.1  riastrad 			case AF_INET6:
   4611      1.12  riastrad 				if (!prop_dictionary_set_data(prop_allowedip,
   4612      1.12  riastrad 					"ip", &wga->wga_addr6,
   4613      1.12  riastrad 					sizeof(wga->wga_addr6)))
   4614       1.1  riastrad 					goto _next;
   4615       1.1  riastrad 				break;
   4616       1.1  riastrad #endif
   4617       1.1  riastrad 			default:
   4618       1.1  riastrad 				break;
   4619       1.1  riastrad 			}
   4620       1.1  riastrad 			prop_array_set(allowedips, j, prop_allowedip);
   4621       1.1  riastrad 		_next:
   4622       1.1  riastrad 			prop_object_release(prop_allowedip);
   4623       1.1  riastrad 		}
   4624       1.1  riastrad 		prop_dictionary_set(prop_peer, "allowedips", allowedips);
   4625       1.1  riastrad 		prop_object_release(allowedips);
   4626       1.1  riastrad 
   4627       1.1  riastrad 	skip_allowedips:
   4628       1.1  riastrad 
   4629       1.1  riastrad 		prop_array_set(peers, i, prop_peer);
   4630       1.1  riastrad 	next:
   4631      1.12  riastrad 		if (prop_peer)
   4632      1.12  riastrad 			prop_object_release(prop_peer);
   4633       1.1  riastrad 		i++;
   4634       1.1  riastrad 
   4635       1.1  riastrad 		s = pserialize_read_enter();
   4636      1.47  riastrad 		wg_put_peer(wgp, &wgp_psref);
   4637       1.1  riastrad 	}
   4638       1.1  riastrad 	pserialize_read_exit(s);
   4639       1.1  riastrad 
   4640       1.1  riastrad 	prop_dictionary_set(prop_dict, "peers", peers);
   4641       1.1  riastrad 	prop_object_release(peers);
   4642       1.1  riastrad 	peers = NULL;
   4643       1.1  riastrad 
   4644       1.1  riastrad skip_peers:
   4645       1.1  riastrad 	buf = prop_dictionary_externalize(prop_dict);
   4646       1.1  riastrad 	if (buf == NULL)
   4647       1.1  riastrad 		goto error;
   4648       1.1  riastrad 	if (ifd->ifd_len < (strlen(buf) + 1)) {
   4649       1.1  riastrad 		error = EINVAL;
   4650       1.1  riastrad 		goto error;
   4651       1.1  riastrad 	}
   4652       1.1  riastrad 	error = copyout(buf, ifd->ifd_data, strlen(buf) + 1);
   4653       1.1  riastrad 
   4654       1.1  riastrad 	free(buf, 0);
   4655       1.1  riastrad error:
   4656       1.1  riastrad 	if (peers != NULL)
   4657       1.1  riastrad 		prop_object_release(peers);
   4658       1.1  riastrad 	if (prop_dict != NULL)
   4659       1.1  riastrad 		prop_object_release(prop_dict);
   4660       1.1  riastrad 
   4661       1.1  riastrad 	return error;
   4662       1.1  riastrad }
   4663       1.1  riastrad 
   4664       1.1  riastrad static int
   4665       1.1  riastrad wg_ioctl(struct ifnet *ifp, u_long cmd, void *data)
   4666       1.1  riastrad {
   4667       1.1  riastrad 	struct wg_softc *wg = ifp->if_softc;
   4668       1.1  riastrad 	struct ifreq *ifr = data;
   4669       1.1  riastrad 	struct ifaddr *ifa = data;
   4670       1.1  riastrad 	struct ifdrv *ifd = data;
   4671       1.1  riastrad 	int error = 0;
   4672       1.1  riastrad 
   4673       1.1  riastrad 	switch (cmd) {
   4674       1.1  riastrad 	case SIOCINITIFADDR:
   4675       1.1  riastrad 		if (ifa->ifa_addr->sa_family != AF_LINK &&
   4676       1.1  riastrad 		    (ifp->if_flags & (IFF_UP | IFF_RUNNING)) !=
   4677       1.1  riastrad 		    (IFF_UP | IFF_RUNNING)) {
   4678       1.1  riastrad 			ifp->if_flags |= IFF_UP;
   4679      1.67  riastrad 			error = if_init(ifp);
   4680       1.1  riastrad 		}
   4681      1.14  riastrad 		return error;
   4682       1.1  riastrad 	case SIOCADDMULTI:
   4683       1.1  riastrad 	case SIOCDELMULTI:
   4684       1.1  riastrad 		switch (ifr->ifr_addr.sa_family) {
   4685       1.1  riastrad 		case AF_INET:	/* IP supports Multicast */
   4686       1.1  riastrad 			break;
   4687       1.1  riastrad #ifdef INET6
   4688       1.1  riastrad 		case AF_INET6:	/* IP6 supports Multicast */
   4689       1.1  riastrad 			break;
   4690       1.1  riastrad #endif
   4691       1.1  riastrad 		default:  /* Other protocols doesn't support Multicast */
   4692       1.1  riastrad 			error = EAFNOSUPPORT;
   4693       1.1  riastrad 			break;
   4694       1.1  riastrad 		}
   4695      1.14  riastrad 		return error;
   4696       1.1  riastrad 	case SIOCSDRVSPEC:
   4697      1.74  christos 		if (!wg_is_authorized(wg, cmd)) {
   4698      1.72  jakllsch 			return EPERM;
   4699      1.72  jakllsch 		}
   4700       1.1  riastrad 		switch (ifd->ifd_cmd) {
   4701       1.1  riastrad 		case WG_IOCTL_SET_PRIVATE_KEY:
   4702       1.1  riastrad 			error = wg_ioctl_set_private_key(wg, ifd);
   4703       1.1  riastrad 			break;
   4704       1.1  riastrad 		case WG_IOCTL_SET_LISTEN_PORT:
   4705       1.1  riastrad 			error = wg_ioctl_set_listen_port(wg, ifd);
   4706       1.1  riastrad 			break;
   4707       1.1  riastrad 		case WG_IOCTL_ADD_PEER:
   4708       1.1  riastrad 			error = wg_ioctl_add_peer(wg, ifd);
   4709       1.1  riastrad 			break;
   4710       1.1  riastrad 		case WG_IOCTL_DELETE_PEER:
   4711       1.1  riastrad 			error = wg_ioctl_delete_peer(wg, ifd);
   4712       1.1  riastrad 			break;
   4713       1.1  riastrad 		default:
   4714       1.1  riastrad 			error = EINVAL;
   4715       1.1  riastrad 			break;
   4716       1.1  riastrad 		}
   4717      1.14  riastrad 		return error;
   4718       1.1  riastrad 	case SIOCGDRVSPEC:
   4719      1.14  riastrad 		return wg_ioctl_get(wg, ifd);
   4720       1.1  riastrad 	case SIOCSIFFLAGS:
   4721       1.1  riastrad 		if ((error = ifioctl_common(ifp, cmd, data)) != 0)
   4722       1.1  riastrad 			break;
   4723       1.1  riastrad 		switch (ifp->if_flags & (IFF_UP|IFF_RUNNING)) {
   4724       1.1  riastrad 		case IFF_RUNNING:
   4725       1.1  riastrad 			/*
   4726       1.1  riastrad 			 * If interface is marked down and it is running,
   4727       1.1  riastrad 			 * then stop and disable it.
   4728       1.1  riastrad 			 */
   4729      1.66  riastrad 			if_stop(ifp, 1);
   4730       1.1  riastrad 			break;
   4731       1.1  riastrad 		case IFF_UP:
   4732       1.1  riastrad 			/*
   4733       1.1  riastrad 			 * If interface is marked up and it is stopped, then
   4734       1.1  riastrad 			 * start it.
   4735       1.1  riastrad 			 */
   4736      1.67  riastrad 			error = if_init(ifp);
   4737       1.1  riastrad 			break;
   4738       1.1  riastrad 		default:
   4739       1.1  riastrad 			break;
   4740       1.1  riastrad 		}
   4741      1.14  riastrad 		return error;
   4742       1.1  riastrad #ifdef WG_RUMPKERNEL
   4743       1.1  riastrad 	case SIOCSLINKSTR:
   4744       1.1  riastrad 		error = wg_ioctl_linkstr(wg, ifd);
   4745       1.1  riastrad 		if (error == 0)
   4746       1.1  riastrad 			wg->wg_ops = &wg_ops_rumpuser;
   4747      1.14  riastrad 		return error;
   4748      1.14  riastrad #endif
   4749      1.14  riastrad 	default:
   4750       1.1  riastrad 		break;
   4751      1.14  riastrad 	}
   4752       1.1  riastrad 
   4753      1.14  riastrad 	error = ifioctl_common(ifp, cmd, data);
   4754       1.1  riastrad 
   4755       1.1  riastrad #ifdef WG_RUMPKERNEL
   4756      1.14  riastrad 	if (!wg_user_mode(wg))
   4757      1.14  riastrad 		return error;
   4758      1.14  riastrad 
   4759      1.14  riastrad 	/* Do the same to the corresponding tun device on the host */
   4760      1.14  riastrad 	/*
   4761      1.14  riastrad 	 * XXX Actually the command has not been handled yet.  It
   4762      1.14  riastrad 	 *     will be handled via pr_ioctl form doifioctl later.
   4763      1.14  riastrad 	 */
   4764      1.14  riastrad 	switch (cmd) {
   4765      1.14  riastrad 	case SIOCAIFADDR:
   4766      1.14  riastrad 	case SIOCDIFADDR: {
   4767      1.17  riastrad 		struct in_aliasreq _ifra = *(const struct in_aliasreq *)data;
   4768      1.14  riastrad 		struct in_aliasreq *ifra = &_ifra;
   4769      1.14  riastrad 		KASSERT(error == ENOTTY);
   4770      1.14  riastrad 		strncpy(ifra->ifra_name, rumpuser_wg_get_tunname(wg->wg_user),
   4771      1.14  riastrad 		    IFNAMSIZ);
   4772      1.14  riastrad 		error = rumpuser_wg_ioctl(wg->wg_user, cmd, ifra, AF_INET);
   4773      1.14  riastrad 		if (error == 0)
   4774      1.14  riastrad 			error = ENOTTY;
   4775      1.14  riastrad 		break;
   4776      1.14  riastrad 	}
   4777       1.1  riastrad #ifdef INET6
   4778      1.14  riastrad 	case SIOCAIFADDR_IN6:
   4779      1.14  riastrad 	case SIOCDIFADDR_IN6: {
   4780      1.17  riastrad 		struct in6_aliasreq _ifra = *(const struct in6_aliasreq *)data;
   4781      1.14  riastrad 		struct in6_aliasreq *ifra = &_ifra;
   4782      1.14  riastrad 		KASSERT(error == ENOTTY);
   4783      1.14  riastrad 		strncpy(ifra->ifra_name, rumpuser_wg_get_tunname(wg->wg_user),
   4784      1.14  riastrad 		    IFNAMSIZ);
   4785      1.14  riastrad 		error = rumpuser_wg_ioctl(wg->wg_user, cmd, ifra, AF_INET6);
   4786      1.14  riastrad 		if (error == 0)
   4787      1.14  riastrad 			error = ENOTTY;
   4788      1.14  riastrad 		break;
   4789      1.14  riastrad 	}
   4790       1.1  riastrad #endif
   4791      1.14  riastrad 	}
   4792       1.1  riastrad #endif /* WG_RUMPKERNEL */
   4793       1.1  riastrad 
   4794       1.1  riastrad 	return error;
   4795       1.1  riastrad }
   4796       1.1  riastrad 
   4797       1.1  riastrad static int
   4798       1.1  riastrad wg_init(struct ifnet *ifp)
   4799       1.1  riastrad {
   4800       1.1  riastrad 
   4801       1.1  riastrad 	ifp->if_flags |= IFF_RUNNING;
   4802       1.1  riastrad 
   4803       1.1  riastrad 	/* TODO flush pending packets. */
   4804       1.1  riastrad 	return 0;
   4805       1.1  riastrad }
   4806       1.1  riastrad 
   4807      1.60  riastrad #ifdef ALTQ
   4808      1.60  riastrad static void
   4809      1.60  riastrad wg_start(struct ifnet *ifp)
   4810      1.60  riastrad {
   4811      1.60  riastrad 	struct mbuf *m;
   4812      1.60  riastrad 
   4813      1.60  riastrad 	for (;;) {
   4814      1.60  riastrad 		IFQ_DEQUEUE(&ifp->if_snd, m);
   4815      1.60  riastrad 		if (m == NULL)
   4816      1.60  riastrad 			break;
   4817      1.60  riastrad 
   4818      1.60  riastrad 		kpreempt_disable();
   4819      1.60  riastrad 		const uint32_t h = curcpu()->ci_index;	// pktq_rps_hash(m)
   4820      1.60  riastrad 		if (__predict_false(!pktq_enqueue(wg_pktq, m, h))) {
   4821      1.76  jakllsch 			WGLOG(LOG_ERR, "%s: pktq full, dropping\n",
   4822      1.76  jakllsch 			    if_name(ifp));
   4823      1.60  riastrad 			m_freem(m);
   4824      1.60  riastrad 		}
   4825      1.60  riastrad 		kpreempt_enable();
   4826      1.60  riastrad 	}
   4827      1.60  riastrad }
   4828      1.60  riastrad #endif
   4829      1.60  riastrad 
   4830       1.1  riastrad static void
   4831       1.1  riastrad wg_stop(struct ifnet *ifp, int disable)
   4832       1.1  riastrad {
   4833       1.1  riastrad 
   4834       1.1  riastrad 	KASSERT((ifp->if_flags & IFF_RUNNING) != 0);
   4835       1.1  riastrad 	ifp->if_flags &= ~IFF_RUNNING;
   4836       1.1  riastrad 
   4837       1.1  riastrad 	/* Need to do something? */
   4838       1.1  riastrad }
   4839       1.1  riastrad 
   4840       1.8  riastrad #ifdef WG_DEBUG_PARAMS
   4841      1.24  riastrad SYSCTL_SETUP(sysctl_net_wg_setup, "sysctl net.wg setup")
   4842       1.1  riastrad {
   4843       1.1  riastrad 	const struct sysctlnode *node = NULL;
   4844       1.1  riastrad 
   4845       1.8  riastrad 	sysctl_createv(clog, 0, NULL, &node,
   4846       1.8  riastrad 	    CTLFLAG_PERMANENT,
   4847      1.24  riastrad 	    CTLTYPE_NODE, "wg",
   4848      1.24  riastrad 	    SYSCTL_DESCR("wg(4)"),
   4849       1.8  riastrad 	    NULL, 0, NULL, 0,
   4850       1.8  riastrad 	    CTL_NET, CTL_CREATE, CTL_EOL);
   4851       1.8  riastrad 	sysctl_createv(clog, 0, &node, NULL,
   4852       1.8  riastrad 	    CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
   4853      1.21  riastrad 	    CTLTYPE_QUAD, "rekey_after_messages",
   4854       1.8  riastrad 	    SYSCTL_DESCR("session liftime by messages"),
   4855       1.8  riastrad 	    NULL, 0, &wg_rekey_after_messages, 0, CTL_CREATE, CTL_EOL);
   4856       1.8  riastrad 	sysctl_createv(clog, 0, &node, NULL,
   4857       1.8  riastrad 	    CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
   4858      1.21  riastrad 	    CTLTYPE_INT, "rekey_after_time",
   4859       1.8  riastrad 	    SYSCTL_DESCR("session liftime"),
   4860       1.8  riastrad 	    NULL, 0, &wg_rekey_after_time, 0, CTL_CREATE, CTL_EOL);
   4861       1.8  riastrad 	sysctl_createv(clog, 0, &node, NULL,
   4862       1.8  riastrad 	    CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
   4863      1.21  riastrad 	    CTLTYPE_INT, "rekey_timeout",
   4864       1.8  riastrad 	    SYSCTL_DESCR("session handshake retry time"),
   4865       1.8  riastrad 	    NULL, 0, &wg_rekey_timeout, 0, CTL_CREATE, CTL_EOL);
   4866       1.8  riastrad 	sysctl_createv(clog, 0, &node, NULL,
   4867       1.8  riastrad 	    CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
   4868      1.21  riastrad 	    CTLTYPE_INT, "rekey_attempt_time",
   4869       1.8  riastrad 	    SYSCTL_DESCR("session handshake timeout"),
   4870       1.8  riastrad 	    NULL, 0, &wg_rekey_attempt_time, 0, CTL_CREATE, CTL_EOL);
   4871       1.8  riastrad 	sysctl_createv(clog, 0, &node, NULL,
   4872       1.8  riastrad 	    CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
   4873      1.21  riastrad 	    CTLTYPE_INT, "keepalive_timeout",
   4874       1.8  riastrad 	    SYSCTL_DESCR("keepalive timeout"),
   4875       1.8  riastrad 	    NULL, 0, &wg_keepalive_timeout, 0, CTL_CREATE, CTL_EOL);
   4876       1.8  riastrad 	sysctl_createv(clog, 0, &node, NULL,
   4877       1.8  riastrad 	    CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
   4878       1.8  riastrad 	    CTLTYPE_BOOL, "force_underload",
   4879       1.8  riastrad 	    SYSCTL_DESCR("force to detemine under load"),
   4880       1.8  riastrad 	    NULL, 0, &wg_force_underload, 0, CTL_CREATE, CTL_EOL);
   4881       1.8  riastrad }
   4882       1.1  riastrad #endif
   4883       1.1  riastrad 
   4884       1.1  riastrad #ifdef WG_RUMPKERNEL
   4885       1.1  riastrad static bool
   4886       1.1  riastrad wg_user_mode(struct wg_softc *wg)
   4887       1.1  riastrad {
   4888       1.1  riastrad 
   4889       1.1  riastrad 	return wg->wg_user != NULL;
   4890       1.1  riastrad }
   4891       1.1  riastrad 
   4892       1.1  riastrad static int
   4893       1.1  riastrad wg_ioctl_linkstr(struct wg_softc *wg, struct ifdrv *ifd)
   4894       1.1  riastrad {
   4895       1.1  riastrad 	struct ifnet *ifp = &wg->wg_if;
   4896       1.1  riastrad 	int error;
   4897       1.1  riastrad 
   4898       1.1  riastrad 	if (ifp->if_flags & IFF_UP)
   4899       1.1  riastrad 		return EBUSY;
   4900       1.1  riastrad 
   4901       1.1  riastrad 	if (ifd->ifd_cmd == IFLINKSTR_UNSET) {
   4902       1.1  riastrad 		/* XXX do nothing */
   4903       1.1  riastrad 		return 0;
   4904       1.1  riastrad 	} else if (ifd->ifd_cmd != 0) {
   4905       1.1  riastrad 		return EINVAL;
   4906       1.1  riastrad 	} else if (wg->wg_user != NULL) {
   4907       1.1  riastrad 		return EBUSY;
   4908       1.1  riastrad 	}
   4909       1.1  riastrad 
   4910       1.1  riastrad 	/* Assume \0 included */
   4911       1.1  riastrad 	if (ifd->ifd_len > IFNAMSIZ) {
   4912       1.1  riastrad 		return E2BIG;
   4913       1.1  riastrad 	} else if (ifd->ifd_len < 1) {
   4914       1.1  riastrad 		return EINVAL;
   4915       1.1  riastrad 	}
   4916       1.1  riastrad 
   4917       1.1  riastrad 	char tun_name[IFNAMSIZ];
   4918       1.1  riastrad 	error = copyinstr(ifd->ifd_data, tun_name, ifd->ifd_len, NULL);
   4919       1.1  riastrad 	if (error != 0)
   4920       1.1  riastrad 		return error;
   4921       1.1  riastrad 
   4922       1.1  riastrad 	if (strncmp(tun_name, "tun", 3) != 0)
   4923       1.1  riastrad 		return EINVAL;
   4924       1.1  riastrad 
   4925       1.1  riastrad 	error = rumpuser_wg_create(tun_name, wg, &wg->wg_user);
   4926       1.1  riastrad 
   4927       1.1  riastrad 	return error;
   4928       1.1  riastrad }
   4929       1.1  riastrad 
   4930       1.1  riastrad static int
   4931       1.1  riastrad wg_send_user(struct wg_peer *wgp, struct mbuf *m)
   4932       1.1  riastrad {
   4933       1.1  riastrad 	int error;
   4934       1.1  riastrad 	struct psref psref;
   4935       1.1  riastrad 	struct wg_sockaddr *wgsa;
   4936       1.1  riastrad 	struct wg_softc *wg = wgp->wgp_sc;
   4937       1.1  riastrad 	struct iovec iov[1];
   4938       1.1  riastrad 
   4939       1.1  riastrad 	wgsa = wg_get_endpoint_sa(wgp, &psref);
   4940       1.1  riastrad 
   4941       1.1  riastrad 	iov[0].iov_base = mtod(m, void *);
   4942       1.1  riastrad 	iov[0].iov_len = m->m_len;
   4943       1.1  riastrad 
   4944       1.1  riastrad 	/* Send messages to a peer via an ordinary socket. */
   4945       1.1  riastrad 	error = rumpuser_wg_send_peer(wg->wg_user, wgsatosa(wgsa), iov, 1);
   4946       1.1  riastrad 
   4947       1.1  riastrad 	wg_put_sa(wgp, wgsa, &psref);
   4948       1.1  riastrad 
   4949      1.38  riastrad 	m_freem(m);
   4950      1.38  riastrad 
   4951       1.1  riastrad 	return error;
   4952       1.1  riastrad }
   4953       1.1  riastrad 
   4954       1.1  riastrad static void
   4955       1.1  riastrad wg_input_user(struct ifnet *ifp, struct mbuf *m, const int af)
   4956       1.1  riastrad {
   4957       1.1  riastrad 	struct wg_softc *wg = ifp->if_softc;
   4958       1.1  riastrad 	struct iovec iov[2];
   4959       1.1  riastrad 	struct sockaddr_storage ss;
   4960       1.1  riastrad 
   4961       1.1  riastrad 	KASSERT(af == AF_INET || af == AF_INET6);
   4962       1.1  riastrad 
   4963       1.1  riastrad 	WG_TRACE("");
   4964       1.1  riastrad 
   4965       1.1  riastrad 	if (af == AF_INET) {
   4966       1.1  riastrad 		struct sockaddr_in *sin = (struct sockaddr_in *)&ss;
   4967       1.1  riastrad 		struct ip *ip;
   4968      1.27  riastrad 
   4969      1.27  riastrad 		KASSERT(m->m_len >= sizeof(struct ip));
   4970       1.1  riastrad 		ip = mtod(m, struct ip *);
   4971       1.1  riastrad 		sockaddr_in_init(sin, &ip->ip_dst, 0);
   4972       1.1  riastrad 	} else {
   4973       1.1  riastrad 		struct sockaddr_in6 *sin6 = (struct sockaddr_in6 *)&ss;
   4974       1.1  riastrad 		struct ip6_hdr *ip6;
   4975      1.27  riastrad 
   4976      1.27  riastrad 		KASSERT(m->m_len >= sizeof(struct ip6_hdr));
   4977       1.1  riastrad 		ip6 = mtod(m, struct ip6_hdr *);
   4978       1.1  riastrad 		sockaddr_in6_init(sin6, &ip6->ip6_dst, 0, 0, 0);
   4979       1.1  riastrad 	}
   4980       1.1  riastrad 
   4981       1.1  riastrad 	iov[0].iov_base = &ss;
   4982       1.1  riastrad 	iov[0].iov_len = ss.ss_len;
   4983       1.1  riastrad 	iov[1].iov_base = mtod(m, void *);
   4984       1.1  riastrad 	iov[1].iov_len = m->m_len;
   4985       1.1  riastrad 
   4986       1.1  riastrad 	WG_DUMP_BUF(iov[1].iov_base, iov[1].iov_len);
   4987       1.1  riastrad 
   4988       1.1  riastrad 	/* Send decrypted packets to users via a tun. */
   4989       1.1  riastrad 	rumpuser_wg_send_user(wg->wg_user, iov, 2);
   4990      1.38  riastrad 
   4991      1.38  riastrad 	m_freem(m);
   4992       1.1  riastrad }
   4993       1.1  riastrad 
   4994       1.1  riastrad static int
   4995       1.1  riastrad wg_bind_port_user(struct wg_softc *wg, const uint16_t port)
   4996       1.1  riastrad {
   4997       1.1  riastrad 	int error;
   4998       1.1  riastrad 	uint16_t old_port = wg->wg_listen_port;
   4999       1.1  riastrad 
   5000       1.1  riastrad 	if (port != 0 && old_port == port)
   5001       1.1  riastrad 		return 0;
   5002       1.1  riastrad 
   5003       1.1  riastrad 	error = rumpuser_wg_sock_bind(wg->wg_user, port);
   5004       1.1  riastrad 	if (error == 0)
   5005       1.1  riastrad 		wg->wg_listen_port = port;
   5006       1.1  riastrad 	return error;
   5007       1.1  riastrad }
   5008       1.1  riastrad 
   5009       1.1  riastrad /*
   5010       1.1  riastrad  * Receive user packets.
   5011       1.1  riastrad  */
   5012       1.1  riastrad void
   5013       1.1  riastrad rumpkern_wg_recv_user(struct wg_softc *wg, struct iovec *iov, size_t iovlen)
   5014       1.1  riastrad {
   5015       1.1  riastrad 	struct ifnet *ifp = &wg->wg_if;
   5016       1.1  riastrad 	struct mbuf *m;
   5017       1.1  riastrad 	const struct sockaddr *dst;
   5018       1.1  riastrad 
   5019       1.1  riastrad 	WG_TRACE("");
   5020       1.1  riastrad 
   5021       1.1  riastrad 	dst = iov[0].iov_base;
   5022       1.1  riastrad 
   5023      1.48  riastrad 	m = m_gethdr(M_DONTWAIT, MT_DATA);
   5024       1.1  riastrad 	if (m == NULL)
   5025       1.1  riastrad 		return;
   5026       1.1  riastrad 	m->m_len = m->m_pkthdr.len = 0;
   5027       1.1  riastrad 	m_copyback(m, 0, iov[1].iov_len, iov[1].iov_base);
   5028       1.1  riastrad 
   5029       1.1  riastrad 	WG_DLOG("iov_len=%lu\n", iov[1].iov_len);
   5030       1.1  riastrad 	WG_DUMP_BUF(iov[1].iov_base, iov[1].iov_len);
   5031       1.1  riastrad 
   5032       1.1  riastrad 	(void)wg_output(ifp, m, dst, NULL);
   5033       1.1  riastrad }
   5034       1.1  riastrad 
   5035       1.1  riastrad /*
   5036       1.1  riastrad  * Receive packets from a peer.
   5037       1.1  riastrad  */
   5038       1.1  riastrad void
   5039       1.1  riastrad rumpkern_wg_recv_peer(struct wg_softc *wg, struct iovec *iov, size_t iovlen)
   5040       1.1  riastrad {
   5041       1.1  riastrad 	struct mbuf *m;
   5042       1.1  riastrad 	const struct sockaddr *src;
   5043       1.1  riastrad 
   5044       1.1  riastrad 	WG_TRACE("");
   5045       1.1  riastrad 
   5046       1.1  riastrad 	src = iov[0].iov_base;
   5047       1.1  riastrad 
   5048      1.48  riastrad 	m = m_gethdr(M_DONTWAIT, MT_DATA);
   5049       1.1  riastrad 	if (m == NULL)
   5050       1.1  riastrad 		return;
   5051       1.1  riastrad 	m->m_len = m->m_pkthdr.len = 0;
   5052       1.1  riastrad 	m_copyback(m, 0, iov[1].iov_len, iov[1].iov_base);
   5053       1.1  riastrad 
   5054       1.1  riastrad 	WG_DLOG("iov_len=%lu\n", iov[1].iov_len);
   5055       1.1  riastrad 	WG_DUMP_BUF(iov[1].iov_base, iov[1].iov_len);
   5056       1.1  riastrad 
   5057       1.1  riastrad 	wg_handle_packet(wg, m, src);
   5058       1.1  riastrad }
   5059       1.1  riastrad #endif /* WG_RUMPKERNEL */
   5060       1.1  riastrad 
   5061       1.1  riastrad /*
   5062       1.1  riastrad  * Module infrastructure
   5063       1.1  riastrad  */
   5064       1.1  riastrad #include "if_module.h"
   5065       1.1  riastrad 
   5066      1.65  christos IF_MODULE(MODULE_CLASS_DRIVER, wg, "sodium,blake2s")
   5067