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Neale Ranns999c8ee2019-02-01 03:31:24 -08001/*
2 * Copyright (c) 2015 Cisco and/or its affiliates.
3 * Licensed under the Apache License, Version 2.0 (the "License");
4 * you may not use this file except in compliance with the License.
5 * You may obtain a copy of the License at:
6 *
7 * http://www.apache.org/licenses/LICENSE-2.0
8 *
9 * Unless required by applicable law or agreed to in writing, software
10 * distributed under the License is distributed on an "AS IS" BASIS,
11 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12 * See the License for the specific language governing permissions and
13 * limitations under the License.
14 */
15#ifndef __IPSEC_SPD_SA_H__
16#define __IPSEC_SPD_SA_H__
17
18#include <vlib/vlib.h>
19#include <vnet/ip/ip.h>
Neale Ranns8d7c5022019-02-06 01:41:05 -080020#include <vnet/fib/fib_node.h>
Neale Ranns999c8ee2019-02-01 03:31:24 -080021
22#define foreach_ipsec_crypto_alg \
23 _ (0, NONE, "none") \
24 _ (1, AES_CBC_128, "aes-cbc-128") \
25 _ (2, AES_CBC_192, "aes-cbc-192") \
26 _ (3, AES_CBC_256, "aes-cbc-256") \
27 _ (4, AES_CTR_128, "aes-ctr-128") \
28 _ (5, AES_CTR_192, "aes-ctr-192") \
29 _ (6, AES_CTR_256, "aes-ctr-256") \
30 _ (7, AES_GCM_128, "aes-gcm-128") \
31 _ (8, AES_GCM_192, "aes-gcm-192") \
32 _ (9, AES_GCM_256, "aes-gcm-256") \
33 _ (10, DES_CBC, "des-cbc") \
34 _ (11, 3DES_CBC, "3des-cbc")
35
36typedef enum
37{
38#define _(v, f, s) IPSEC_CRYPTO_ALG_##f = v,
39 foreach_ipsec_crypto_alg
40#undef _
41 IPSEC_CRYPTO_N_ALG,
42} ipsec_crypto_alg_t;
43
Neale Ranns47feb112019-04-11 15:14:07 +000044#define IPSEC_CRYPTO_ALG_IS_GCM(_alg) \
45 (((_alg == IPSEC_CRYPTO_ALG_AES_GCM_128) || \
46 (_alg == IPSEC_CRYPTO_ALG_AES_GCM_192) || \
47 (_alg == IPSEC_CRYPTO_ALG_AES_GCM_256)))
48
Neale Ranns999c8ee2019-02-01 03:31:24 -080049#define foreach_ipsec_integ_alg \
50 _ (0, NONE, "none") \
51 _ (1, MD5_96, "md5-96") /* RFC2403 */ \
52 _ (2, SHA1_96, "sha1-96") /* RFC2404 */ \
53 _ (3, SHA_256_96, "sha-256-96") /* draft-ietf-ipsec-ciph-sha-256-00 */ \
54 _ (4, SHA_256_128, "sha-256-128") /* RFC4868 */ \
55 _ (5, SHA_384_192, "sha-384-192") /* RFC4868 */ \
56 _ (6, SHA_512_256, "sha-512-256") /* RFC4868 */
57
58typedef enum
59{
60#define _(v, f, s) IPSEC_INTEG_ALG_##f = v,
61 foreach_ipsec_integ_alg
62#undef _
63 IPSEC_INTEG_N_ALG,
64} ipsec_integ_alg_t;
65
66typedef enum
67{
68 IPSEC_PROTOCOL_AH = 0,
69 IPSEC_PROTOCOL_ESP = 1
70} ipsec_protocol_t;
71
Neale Ranns8d7c5022019-02-06 01:41:05 -080072#define IPSEC_KEY_MAX_LEN 128
73typedef struct ipsec_key_t_
74{
75 u8 len;
76 u8 data[IPSEC_KEY_MAX_LEN];
77} ipsec_key_t;
78
79/*
80 * Enable extended sequence numbers
81 * Enable Anti-replay
82 * IPsec tunnel mode if non-zero, else transport mode
83 * IPsec tunnel mode is IPv6 if non-zero,
84 * else IPv4 tunnel only valid if is_tunnel is non-zero
85 * enable UDP encapsulation for NAT traversal
86 */
87#define foreach_ipsec_sa_flags \
88 _ (0, NONE, "none") \
Damjan Marion1e3aa5e2019-03-28 10:58:59 +010089 _ (1, USE_ESN, "esn") \
Neale Ranns8d7c5022019-02-06 01:41:05 -080090 _ (2, USE_ANTI_REPLAY, "anti-replay") \
91 _ (4, IS_TUNNEL, "tunnel") \
92 _ (8, IS_TUNNEL_V6, "tunnel-v6") \
93 _ (16, UDP_ENCAP, "udp-encap") \
Neale Rannsc87b66c2019-02-07 07:26:12 -080094 _ (32, IS_PROTECT, "Protect") \
Neale Ranns6b43ce52019-07-31 01:04:43 -070095 _ (64, IS_INBOUND, "inbound") \
Neale Ranns47feb112019-04-11 15:14:07 +000096 _ (128, IS_AEAD, "aead") \
Neale Ranns8d7c5022019-02-06 01:41:05 -080097
98typedef enum ipsec_sad_flags_t_
99{
100#define _(v, f, s) IPSEC_SA_FLAG_##f = v,
101 foreach_ipsec_sa_flags
102#undef _
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100103} __clib_packed ipsec_sa_flags_t;
Damjan Mariond709cbc2019-03-26 13:16:42 +0100104
105STATIC_ASSERT (sizeof (ipsec_sa_flags_t) == 1, "IPSEC SA flags > 1 byte");
Neale Ranns8d7c5022019-02-06 01:41:05 -0800106
Neale Ranns999c8ee2019-02-01 03:31:24 -0800107typedef struct
108{
Damjan Mariond709cbc2019-03-26 13:16:42 +0100109 CLIB_CACHE_LINE_ALIGN_MARK (cacheline0);
Neale Ranns999c8ee2019-02-01 03:31:24 -0800110
Damjan Mariond709cbc2019-03-26 13:16:42 +0100111 /* flags */
112 ipsec_sa_flags_t flags;
113
Damjan Marionb966e8b2019-03-20 16:07:09 +0100114 u8 crypto_iv_size;
115 u8 crypto_block_size;
Damjan Marion7c22ff72019-04-04 12:25:44 +0200116 u8 integ_icv_size;
Damjan Mariond709cbc2019-03-26 13:16:42 +0100117 u32 spi;
Neale Ranns999c8ee2019-02-01 03:31:24 -0800118 u32 seq;
119 u32 seq_hi;
120 u32 last_seq;
121 u32 last_seq_hi;
122 u64 replay_window;
Neale Ranns72f2a3a2019-06-17 15:43:38 +0000123 dpo_id_t dpo;
Damjan Mariond709cbc2019-03-26 13:16:42 +0100124
Damjan Mariond1bed682019-04-24 15:20:35 +0200125 vnet_crypto_key_index_t crypto_key_index;
126 vnet_crypto_key_index_t integ_key_index;
127 vnet_crypto_op_id_t crypto_enc_op_id:16;
128 vnet_crypto_op_id_t crypto_dec_op_id:16;
129 vnet_crypto_op_id_t integ_op_id:16;
Damjan Mariond709cbc2019-03-26 13:16:42 +0100130
Damjan Mariond709cbc2019-03-26 13:16:42 +0100131 /* data accessed by dataplane code should be above this comment */
132 CLIB_CACHE_LINE_ALIGN_MARK (cacheline1);
133
134 union
135 {
136 ip4_header_t ip4_hdr;
137 ip6_header_t ip6_hdr;
138 };
139 udp_header_t udp_hdr;
140
Damjan Mariond709cbc2019-03-26 13:16:42 +0100141 fib_node_t node;
142 u32 id;
143 u32 stat_index;
144 ipsec_protocol_t protocol;
145
146 ipsec_crypto_alg_t crypto_alg;
147 ipsec_key_t crypto_key;
Damjan Mariond1bed682019-04-24 15:20:35 +0200148 vnet_crypto_alg_t crypto_calg;
Damjan Mariond709cbc2019-03-26 13:16:42 +0100149
150 ipsec_integ_alg_t integ_alg;
151 ipsec_key_t integ_key;
Damjan Mariond1bed682019-04-24 15:20:35 +0200152 vnet_crypto_alg_t integ_calg;
Damjan Mariond709cbc2019-03-26 13:16:42 +0100153
154 ip46_address_t tunnel_src_addr;
155 ip46_address_t tunnel_dst_addr;
156
157 fib_node_index_t fib_entry_index;
158 u32 sibling;
159
160 u32 tx_fib_index;
Damjan Mariond709cbc2019-03-26 13:16:42 +0100161
Neale Ranns80f6fd52019-04-16 02:41:34 +0000162 /* Salt used in GCM modes - stored in network byte order */
163 u32 salt;
Damjan Mariond97918e2019-04-25 18:28:31 +0200164 u64 gcm_iv_counter;
Neale Ranns999c8ee2019-02-01 03:31:24 -0800165} ipsec_sa_t;
166
Damjan Mariond709cbc2019-03-26 13:16:42 +0100167STATIC_ASSERT_OFFSET_OF (ipsec_sa_t, cacheline1, CLIB_CACHE_LINE_BYTES);
168
169#define _(a,v,s) \
170 always_inline int \
171 ipsec_sa_is_set_##v (const ipsec_sa_t *sa) { \
172 return (sa->flags & IPSEC_SA_FLAG_##v); \
173 }
174foreach_ipsec_sa_flags
175#undef _
176#define _(a,v,s) \
177 always_inline int \
178 ipsec_sa_set_##v (ipsec_sa_t *sa) { \
179 return (sa->flags |= IPSEC_SA_FLAG_##v); \
180 }
181 foreach_ipsec_sa_flags
182#undef _
Neale Rannsc87b66c2019-02-07 07:26:12 -0800183#define _(a,v,s) \
184 always_inline int \
185 ipsec_sa_unset_##v (ipsec_sa_t *sa) { \
186 return (sa->flags &= ~IPSEC_SA_FLAG_##v); \
187 }
188 foreach_ipsec_sa_flags
189#undef _
Neale Rannseba31ec2019-02-17 18:04:27 +0000190/**
191 * @brief
192 * SA packet & bytes counters
193 */
194extern vlib_combined_counter_main_t ipsec_sa_counters;
195
Neale Ranns8d7c5022019-02-06 01:41:05 -0800196extern void ipsec_mk_key (ipsec_key_t * key, const u8 * data, u8 len);
197
Neale Ranns495d7ff2019-07-12 09:15:26 +0000198extern int ipsec_sa_add_and_lock (u32 id,
199 u32 spi,
200 ipsec_protocol_t proto,
201 ipsec_crypto_alg_t crypto_alg,
202 const ipsec_key_t * ck,
203 ipsec_integ_alg_t integ_alg,
204 const ipsec_key_t * ik,
205 ipsec_sa_flags_t flags,
206 u32 tx_table_id,
207 u32 salt,
208 const ip46_address_t * tunnel_src_addr,
209 const ip46_address_t * tunnel_dst_addr,
210 u32 * sa_index);
211extern index_t ipsec_sa_find_and_lock (u32 id);
212extern int ipsec_sa_unlock_id (u32 id);
213extern void ipsec_sa_unlock (index_t sai);
Neale Rannsc87b66c2019-02-07 07:26:12 -0800214extern void ipsec_sa_clear (index_t sai);
Damjan Marionb966e8b2019-03-20 16:07:09 +0100215extern void ipsec_sa_set_crypto_alg (ipsec_sa_t * sa,
216 ipsec_crypto_alg_t crypto_alg);
217extern void ipsec_sa_set_integ_alg (ipsec_sa_t * sa,
218 ipsec_integ_alg_t integ_alg);
Neale Ranns8d7c5022019-02-06 01:41:05 -0800219
Neale Rannsb4cfd552019-02-13 02:08:06 -0800220typedef walk_rc_t (*ipsec_sa_walk_cb_t) (ipsec_sa_t * sa, void *ctx);
221extern void ipsec_sa_walk (ipsec_sa_walk_cb_t cd, void *ctx);
222
Neale Ranns999c8ee2019-02-01 03:31:24 -0800223extern u8 *format_ipsec_crypto_alg (u8 * s, va_list * args);
224extern u8 *format_ipsec_integ_alg (u8 * s, va_list * args);
Neale Ranns8d7c5022019-02-06 01:41:05 -0800225extern u8 *format_ipsec_sa (u8 * s, va_list * args);
226extern u8 *format_ipsec_key (u8 * s, va_list * args);
Neale Ranns999c8ee2019-02-01 03:31:24 -0800227extern uword unformat_ipsec_crypto_alg (unformat_input_t * input,
228 va_list * args);
229extern uword unformat_ipsec_integ_alg (unformat_input_t * input,
230 va_list * args);
Neale Ranns8d7c5022019-02-06 01:41:05 -0800231extern uword unformat_ipsec_key (unformat_input_t * input, va_list * args);
Neale Ranns999c8ee2019-02-01 03:31:24 -0800232
Neale Ranns6afaae12019-07-17 15:07:14 +0000233/*
234 * Anti Replay definitions
235 */
236
237#define IPSEC_SA_ANTI_REPLAY_WINDOW_SIZE (64)
238#define IPSEC_SA_ANTI_REPLAY_WINDOW_MAX_INDEX (IPSEC_SA_ANTI_REPLAY_WINDOW_SIZE-1)
239
240/*
241 * sequence number less than the lower bound are outside of the window
242 * From RFC4303 Appendix A:
243 * Bl = Tl - W + 1
244 */
245#define IPSEC_SA_ANTI_REPLAY_WINDOW_LOWER_BOUND(_tl) (_tl - IPSEC_SA_ANTI_REPLAY_WINDOW_SIZE + 1)
246
247/*
248 * Anti replay check.
249 * inputs need to be in host byte order.
250 */
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100251always_inline int
Neale Ranns6afaae12019-07-17 15:07:14 +0000252ipsec_sa_anti_replay_check (ipsec_sa_t * sa, u32 seq)
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100253{
Neale Ranns6afaae12019-07-17 15:07:14 +0000254 u32 diff, tl, th;
255
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100256 if ((sa->flags & IPSEC_SA_FLAG_USE_ANTI_REPLAY) == 0)
257 return 0;
258
Neale Ranns6afaae12019-07-17 15:07:14 +0000259 if (!ipsec_sa_is_set_USE_ESN (sa))
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100260 {
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100261 if (PREDICT_TRUE (seq > sa->last_seq))
262 return 0;
263
264 diff = sa->last_seq - seq;
265
266 if (IPSEC_SA_ANTI_REPLAY_WINDOW_SIZE > diff)
267 return (sa->replay_window & (1ULL << diff)) ? 1 : 0;
268 else
269 return 1;
270
271 return 0;
272 }
273
274 tl = sa->last_seq;
275 th = sa->last_seq_hi;
276 diff = tl - seq;
277
Neale Ranns6afaae12019-07-17 15:07:14 +0000278 if (PREDICT_TRUE (tl >= (IPSEC_SA_ANTI_REPLAY_WINDOW_MAX_INDEX)))
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100279 {
Neale Ranns6afaae12019-07-17 15:07:14 +0000280 /*
281 * the last sequence number VPP recieved is more than one
282 * window size greater than zero.
283 * Case A from RFC4303 Appendix A.
284 */
285 if (seq < IPSEC_SA_ANTI_REPLAY_WINDOW_LOWER_BOUND (tl))
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100286 {
Neale Ranns6afaae12019-07-17 15:07:14 +0000287 /*
288 * the received sequence number is lower than the lower bound
289 * of the window, this could mean either a replay packet or that
290 * the high sequence number has wrapped. if it decrypts corrently
291 * then it's the latter.
292 */
293 sa->seq_hi = th + 1;
294 return 0;
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100295 }
296 else
297 {
Neale Ranns6afaae12019-07-17 15:07:14 +0000298 /*
299 * the recieved sequence number greater than the low
300 * end of the window.
301 */
302 sa->seq_hi = th;
303 if (seq <= tl)
304 /*
305 * The recieved seq number is within bounds of the window
306 * check if it's a duplicate
307 */
308 return (sa->replay_window & (1ULL << diff)) ? 1 : 0;
309 else
310 /*
311 * The received sequence number is greater than the window
312 * upper bound. this packet will move the window along, assuming
313 * it decrypts correctly.
314 */
315 return 0;
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100316 }
317 }
318 else
319 {
Neale Ranns6afaae12019-07-17 15:07:14 +0000320 /*
321 * the last sequence number VPP recieved is within one window
322 * size of zero, i.e. 0 < TL < WINDOW_SIZE, the lower bound is thus a
323 * large sequence number.
324 * Note that the check below uses unsiged integer arthimetic, so the
325 * RHS will be a larger number.
326 * Case B from RFC4303 Appendix A.
327 */
328 if (seq < IPSEC_SA_ANTI_REPLAY_WINDOW_LOWER_BOUND (tl))
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100329 {
Neale Ranns6afaae12019-07-17 15:07:14 +0000330 /*
331 * the sequence number is less than the lower bound.
332 */
333 if (seq <= tl)
334 {
335 /*
336 * the packet is within the window upper bound.
337 * check for duplicates.
338 */
339 sa->seq_hi = th;
340 return (sa->replay_window & (1ULL << diff)) ? 1 : 0;
341 }
342 else
343 {
344 /*
345 * the packet is less the window lower bound or greater than
346 * the higher bound, depending on how you look at it...
347 * We're assuming, given that the last sequence number received,
348 * TL < WINDOW_SIZE, that a largeer seq num is more likely to be
349 * a packet that moves the window forward, than a packet that has
350 * wrapped the high sequence again. If it were the latter then
351 * we've lost close to 2^32 packets.
352 */
353 sa->seq_hi = th;
354 return 0;
355 }
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100356 }
357 else
358 {
Neale Ranns6afaae12019-07-17 15:07:14 +0000359 /*
360 * the packet seq number is between the lower bound (a large nubmer)
361 * and MAX_SEQ_NUM. This is in the window since the window upper bound
362 * tl > 0.
363 * However, since TL is the other side of 0 to the received
364 * packet, the SA has moved on to a higher sequence number.
365 */
366 sa->seq_hi = th - 1;
367 return (sa->replay_window & (1ULL << diff)) ? 1 : 0;
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100368 }
369 }
370
371 return 0;
372}
373
Neale Ranns6afaae12019-07-17 15:07:14 +0000374/*
375 * Anti replay window advance
376 * inputs need to be in host byte order.
377 */
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100378always_inline void
Neale Ranns6afaae12019-07-17 15:07:14 +0000379ipsec_sa_anti_replay_advance (ipsec_sa_t * sa, u32 seq)
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100380{
Neale Ranns6afaae12019-07-17 15:07:14 +0000381 u32 pos;
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100382 if (PREDICT_TRUE (sa->flags & IPSEC_SA_FLAG_USE_ANTI_REPLAY) == 0)
383 return;
384
Damjan Marion1e3aa5e2019-03-28 10:58:59 +0100385 if (PREDICT_TRUE (sa->flags & IPSEC_SA_FLAG_USE_ESN))
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100386 {
387 int wrap = sa->seq_hi - sa->last_seq_hi;
388
389 if (wrap == 0 && seq > sa->last_seq)
390 {
391 pos = seq - sa->last_seq;
392 if (pos < IPSEC_SA_ANTI_REPLAY_WINDOW_SIZE)
393 sa->replay_window = ((sa->replay_window) << pos) | 1;
394 else
395 sa->replay_window = 1;
396 sa->last_seq = seq;
397 }
398 else if (wrap > 0)
399 {
400 pos = ~seq + sa->last_seq + 1;
401 if (pos < IPSEC_SA_ANTI_REPLAY_WINDOW_SIZE)
402 sa->replay_window = ((sa->replay_window) << pos) | 1;
403 else
404 sa->replay_window = 1;
405 sa->last_seq = seq;
406 sa->last_seq_hi = sa->seq_hi;
407 }
408 else if (wrap < 0)
409 {
410 pos = ~seq + sa->last_seq + 1;
411 sa->replay_window |= (1ULL << pos);
412 }
413 else
414 {
415 pos = sa->last_seq - seq;
416 sa->replay_window |= (1ULL << pos);
417 }
418 }
419 else
420 {
421 if (seq > sa->last_seq)
422 {
423 pos = seq - sa->last_seq;
424 if (pos < IPSEC_SA_ANTI_REPLAY_WINDOW_SIZE)
425 sa->replay_window = ((sa->replay_window) << pos) | 1;
426 else
427 sa->replay_window = 1;
428 sa->last_seq = seq;
429 }
430 else
431 {
432 pos = sa->last_seq - seq;
433 sa->replay_window |= (1ULL << pos);
434 }
435 }
436}
437
Neale Ranns999c8ee2019-02-01 03:31:24 -0800438#endif /* __IPSEC_SPD_SA_H__ */
439
440/*
441 * fd.io coding-style-patch-verification: ON
442 *
443 * Local Variables:
444 * eval: (c-set-style "gnu")
445 * End:
446 */