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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>
Filip Tehlare5d34912020-03-02 15:17:37 +000019#include <vnet/crypto/crypto.h>
Neale Ranns999c8ee2019-02-01 03:31:24 -080020#include <vnet/ip/ip.h>
Neale Ranns8d7c5022019-02-06 01:41:05 -080021#include <vnet/fib/fib_node.h>
Neale Ranns041add72020-01-02 04:06:10 +000022#include <vnet/tunnel/tunnel.h>
Neale Ranns999c8ee2019-02-01 03:31:24 -080023
24#define foreach_ipsec_crypto_alg \
25 _ (0, NONE, "none") \
26 _ (1, AES_CBC_128, "aes-cbc-128") \
27 _ (2, AES_CBC_192, "aes-cbc-192") \
28 _ (3, AES_CBC_256, "aes-cbc-256") \
29 _ (4, AES_CTR_128, "aes-ctr-128") \
30 _ (5, AES_CTR_192, "aes-ctr-192") \
31 _ (6, AES_CTR_256, "aes-ctr-256") \
32 _ (7, AES_GCM_128, "aes-gcm-128") \
33 _ (8, AES_GCM_192, "aes-gcm-192") \
34 _ (9, AES_GCM_256, "aes-gcm-256") \
35 _ (10, DES_CBC, "des-cbc") \
36 _ (11, 3DES_CBC, "3des-cbc")
37
38typedef enum
39{
40#define _(v, f, s) IPSEC_CRYPTO_ALG_##f = v,
41 foreach_ipsec_crypto_alg
42#undef _
43 IPSEC_CRYPTO_N_ALG,
Neale Ranns123b5eb2020-10-16 14:03:55 +000044} __clib_packed ipsec_crypto_alg_t;
Neale Ranns999c8ee2019-02-01 03:31:24 -080045
Neale Ranns47feb112019-04-11 15:14:07 +000046#define IPSEC_CRYPTO_ALG_IS_GCM(_alg) \
47 (((_alg == IPSEC_CRYPTO_ALG_AES_GCM_128) || \
48 (_alg == IPSEC_CRYPTO_ALG_AES_GCM_192) || \
49 (_alg == IPSEC_CRYPTO_ALG_AES_GCM_256)))
50
Benoît Ganne490b9272021-01-22 18:03:09 +010051#define IPSEC_CRYPTO_ALG_IS_CTR(_alg) \
52 (((_alg == IPSEC_CRYPTO_ALG_AES_CTR_128) || \
53 (_alg == IPSEC_CRYPTO_ALG_AES_CTR_192) || \
54 (_alg == IPSEC_CRYPTO_ALG_AES_CTR_256)))
55
Neale Ranns999c8ee2019-02-01 03:31:24 -080056#define foreach_ipsec_integ_alg \
57 _ (0, NONE, "none") \
58 _ (1, MD5_96, "md5-96") /* RFC2403 */ \
59 _ (2, SHA1_96, "sha1-96") /* RFC2404 */ \
60 _ (3, SHA_256_96, "sha-256-96") /* draft-ietf-ipsec-ciph-sha-256-00 */ \
61 _ (4, SHA_256_128, "sha-256-128") /* RFC4868 */ \
62 _ (5, SHA_384_192, "sha-384-192") /* RFC4868 */ \
63 _ (6, SHA_512_256, "sha-512-256") /* RFC4868 */
64
65typedef enum
66{
67#define _(v, f, s) IPSEC_INTEG_ALG_##f = v,
68 foreach_ipsec_integ_alg
69#undef _
70 IPSEC_INTEG_N_ALG,
Neale Ranns123b5eb2020-10-16 14:03:55 +000071} __clib_packed ipsec_integ_alg_t;
Neale Ranns999c8ee2019-02-01 03:31:24 -080072
73typedef enum
74{
75 IPSEC_PROTOCOL_AH = 0,
76 IPSEC_PROTOCOL_ESP = 1
Neale Ranns123b5eb2020-10-16 14:03:55 +000077} __clib_packed ipsec_protocol_t;
Neale Ranns999c8ee2019-02-01 03:31:24 -080078
Neale Ranns8d7c5022019-02-06 01:41:05 -080079#define IPSEC_KEY_MAX_LEN 128
80typedef struct ipsec_key_t_
81{
82 u8 len;
83 u8 data[IPSEC_KEY_MAX_LEN];
84} ipsec_key_t;
85
86/*
87 * Enable extended sequence numbers
88 * Enable Anti-replay
89 * IPsec tunnel mode if non-zero, else transport mode
90 * IPsec tunnel mode is IPv6 if non-zero,
91 * else IPv4 tunnel only valid if is_tunnel is non-zero
92 * enable UDP encapsulation for NAT traversal
93 */
Benoît Ganne490b9272021-01-22 18:03:09 +010094#define foreach_ipsec_sa_flags \
95 _ (0, NONE, "none") \
96 _ (1, USE_ESN, "esn") \
97 _ (2, USE_ANTI_REPLAY, "anti-replay") \
98 _ (4, IS_TUNNEL, "tunnel") \
99 _ (8, IS_TUNNEL_V6, "tunnel-v6") \
100 _ (16, UDP_ENCAP, "udp-encap") \
101 _ (32, IS_PROTECT, "Protect") \
102 _ (64, IS_INBOUND, "inbound") \
103 _ (128, IS_AEAD, "aead") \
Neale Rannsf16e9a52021-02-25 19:09:24 +0000104 _ (256, IS_CTR, "ctr") \
105 _ (512, IS_ASYNC, "async")
Neale Ranns8d7c5022019-02-06 01:41:05 -0800106
107typedef enum ipsec_sad_flags_t_
108{
109#define _(v, f, s) IPSEC_SA_FLAG_##f = v,
110 foreach_ipsec_sa_flags
111#undef _
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100112} __clib_packed ipsec_sa_flags_t;
Damjan Mariond709cbc2019-03-26 13:16:42 +0100113
Benoît Ganne490b9272021-01-22 18:03:09 +0100114STATIC_ASSERT (sizeof (ipsec_sa_flags_t) == 2, "IPSEC SA flags != 2 byte");
Neale Ranns8d7c5022019-02-06 01:41:05 -0800115
Neale Ranns999c8ee2019-02-01 03:31:24 -0800116typedef struct
117{
Damjan Mariond709cbc2019-03-26 13:16:42 +0100118 CLIB_CACHE_LINE_ALIGN_MARK (cacheline0);
Neale Ranns999c8ee2019-02-01 03:31:24 -0800119
Damjan Mariond709cbc2019-03-26 13:16:42 +0100120 /* flags */
121 ipsec_sa_flags_t flags;
122
Damjan Marionb966e8b2019-03-20 16:07:09 +0100123 u8 crypto_iv_size;
Christian Hoppsfb7e7ed2019-11-03 07:02:15 -0500124 u8 esp_block_align;
Damjan Marion7c22ff72019-04-04 12:25:44 +0200125 u8 integ_icv_size;
Benoît Ganne490b9272021-01-22 18:03:09 +0100126
127 u8 __pad1[3];
128
Neale Ranns1a52d372021-02-04 11:33:32 +0000129 u32 thread_index;
Benoît Ganne490b9272021-01-22 18:03:09 +0100130
Damjan Mariond709cbc2019-03-26 13:16:42 +0100131 u32 spi;
Neale Ranns999c8ee2019-02-01 03:31:24 -0800132 u32 seq;
133 u32 seq_hi;
134 u32 last_seq;
135 u32 last_seq_hi;
136 u64 replay_window;
Neale Ranns72f2a3a2019-06-17 15:43:38 +0000137 dpo_id_t dpo;
Damjan Mariond709cbc2019-03-26 13:16:42 +0100138
Damjan Mariond1bed682019-04-24 15:20:35 +0200139 vnet_crypto_key_index_t crypto_key_index;
140 vnet_crypto_key_index_t integ_key_index;
Fan Zhangf5395782020-04-29 14:00:03 +0100141
142 /* Union data shared by sync and async ops, updated when mode is
143 * changed. */
144 union
145 {
146 struct
147 {
148 vnet_crypto_op_id_t crypto_enc_op_id:16;
149 vnet_crypto_op_id_t crypto_dec_op_id:16;
150 vnet_crypto_op_id_t integ_op_id:16;
151 };
152
153 struct
154 {
155 vnet_crypto_async_op_id_t crypto_async_enc_op_id:16;
156 vnet_crypto_async_op_id_t crypto_async_dec_op_id:16;
157 vnet_crypto_key_index_t linked_key_index;
158 };
159
160 u64 crypto_op_data;
161 };
Damjan Mariond709cbc2019-03-26 13:16:42 +0100162
Benoît Ganne490b9272021-01-22 18:03:09 +0100163 CLIB_CACHE_LINE_ALIGN_MARK (cacheline1);
Damjan Mariond709cbc2019-03-26 13:16:42 +0100164
Benoît Ganne490b9272021-01-22 18:03:09 +0100165 u64 ctr_iv_counter;
Damjan Mariond709cbc2019-03-26 13:16:42 +0100166 union
167 {
168 ip4_header_t ip4_hdr;
169 ip6_header_t ip6_hdr;
170 };
171 udp_header_t udp_hdr;
172
Benoît Ganne490b9272021-01-22 18:03:09 +0100173 /* Salt used in CTR modes (incl. GCM) - stored in network byte order */
Neale Ranns80f6fd52019-04-16 02:41:34 +0000174 u32 salt;
Fan Zhangf5395782020-04-29 14:00:03 +0100175
Neale Ranns123b5eb2020-10-16 14:03:55 +0000176 ipsec_protocol_t protocol;
Neale Ranns041add72020-01-02 04:06:10 +0000177 tunnel_encap_decap_flags_t tunnel_flags;
Neale Ranns9ec846c2021-02-09 14:04:02 +0000178 u8 __pad[2];
Neale Ranns123b5eb2020-10-16 14:03:55 +0000179
180 /* data accessed by dataplane code should be above this comment */
181 CLIB_CACHE_LINE_ALIGN_MARK (cacheline2);
182
183 /* Elements with u64 size multiples */
Fan Zhangf5395782020-04-29 14:00:03 +0100184 union
185 {
186 struct
187 {
188 vnet_crypto_op_id_t crypto_enc_op_id:16;
189 vnet_crypto_op_id_t crypto_dec_op_id:16;
190 vnet_crypto_op_id_t integ_op_id:16;
191 };
192 u64 data;
193 } sync_op_data;
194
195 union
196 {
197 struct
198 {
199 vnet_crypto_async_op_id_t crypto_async_enc_op_id:16;
200 vnet_crypto_async_op_id_t crypto_async_dec_op_id:16;
201 vnet_crypto_key_index_t linked_key_index;
202 };
203 u64 data;
204 } async_op_data;
Neale Ranns123b5eb2020-10-16 14:03:55 +0000205
Neale Ranns9ec846c2021-02-09 14:04:02 +0000206 tunnel_t tunnel;
Neale Ranns123b5eb2020-10-16 14:03:55 +0000207
208 fib_node_t node;
209
210 /* elements with u32 size */
211 u32 id;
212 u32 stat_index;
213 vnet_crypto_alg_t integ_calg;
214 vnet_crypto_alg_t crypto_calg;
215
Neale Ranns123b5eb2020-10-16 14:03:55 +0000216 /* else u8 packed */
217 ipsec_crypto_alg_t crypto_alg;
218 ipsec_integ_alg_t integ_alg;
219
220 ipsec_key_t integ_key;
221 ipsec_key_t crypto_key;
Neale Ranns999c8ee2019-02-01 03:31:24 -0800222} ipsec_sa_t;
223
Damjan Mariond709cbc2019-03-26 13:16:42 +0100224STATIC_ASSERT_OFFSET_OF (ipsec_sa_t, cacheline1, CLIB_CACHE_LINE_BYTES);
Neale Ranns123b5eb2020-10-16 14:03:55 +0000225STATIC_ASSERT_OFFSET_OF (ipsec_sa_t, cacheline2, 2 * CLIB_CACHE_LINE_BYTES);
Damjan Mariond709cbc2019-03-26 13:16:42 +0100226
Neale Rannsc5fe57d2021-02-25 16:01:28 +0000227/**
228 * Pool of IPSec SAs
229 */
230extern ipsec_sa_t *ipsec_sa_pool;
231
Neale Rannsaa7d7662021-02-10 08:42:49 +0000232/*
233 * Ensure that the IPsec data does not overlap with the IP data in
234 * the buffer meta data
235 */
236STATIC_ASSERT (STRUCT_OFFSET_OF (vnet_buffer_opaque_t, ipsec.sad_index) ==
237 STRUCT_OFFSET_OF (vnet_buffer_opaque_t, ip.save_protocol),
238 "IPSec data is overlapping with IP data");
239
Damjan Mariond709cbc2019-03-26 13:16:42 +0100240#define _(a,v,s) \
241 always_inline int \
242 ipsec_sa_is_set_##v (const ipsec_sa_t *sa) { \
243 return (sa->flags & IPSEC_SA_FLAG_##v); \
244 }
245foreach_ipsec_sa_flags
246#undef _
247#define _(a,v,s) \
248 always_inline int \
249 ipsec_sa_set_##v (ipsec_sa_t *sa) { \
250 return (sa->flags |= IPSEC_SA_FLAG_##v); \
251 }
252 foreach_ipsec_sa_flags
253#undef _
Neale Rannsc87b66c2019-02-07 07:26:12 -0800254#define _(a,v,s) \
255 always_inline int \
256 ipsec_sa_unset_##v (ipsec_sa_t *sa) { \
257 return (sa->flags &= ~IPSEC_SA_FLAG_##v); \
258 }
259 foreach_ipsec_sa_flags
260#undef _
Neale Rannseba31ec2019-02-17 18:04:27 +0000261/**
262 * @brief
263 * SA packet & bytes counters
264 */
265extern vlib_combined_counter_main_t ipsec_sa_counters;
266
Neale Ranns8d7c5022019-02-06 01:41:05 -0800267extern void ipsec_mk_key (ipsec_key_t * key, const u8 * data, u8 len);
268
Neale Ranns9ec846c2021-02-09 14:04:02 +0000269extern int
270ipsec_sa_add_and_lock (u32 id, u32 spi, ipsec_protocol_t proto,
271 ipsec_crypto_alg_t crypto_alg, const ipsec_key_t *ck,
272 ipsec_integ_alg_t integ_alg, const ipsec_key_t *ik,
273 ipsec_sa_flags_t flags, u32 salt, u16 src_port,
274 u16 dst_port, const tunnel_t *tun, u32 *sa_out_index);
Neale Ranns495d7ff2019-07-12 09:15:26 +0000275extern index_t ipsec_sa_find_and_lock (u32 id);
276extern int ipsec_sa_unlock_id (u32 id);
277extern void ipsec_sa_unlock (index_t sai);
Neale Ranns12989b52019-09-26 16:20:19 +0000278extern void ipsec_sa_lock (index_t sai);
Neale Rannsc87b66c2019-02-07 07:26:12 -0800279extern void ipsec_sa_clear (index_t sai);
Damjan Marionb966e8b2019-03-20 16:07:09 +0100280extern void ipsec_sa_set_crypto_alg (ipsec_sa_t * sa,
281 ipsec_crypto_alg_t crypto_alg);
282extern void ipsec_sa_set_integ_alg (ipsec_sa_t * sa,
283 ipsec_integ_alg_t integ_alg);
Neale Ranns8d7c5022019-02-06 01:41:05 -0800284
Neale Rannsb4cfd552019-02-13 02:08:06 -0800285typedef walk_rc_t (*ipsec_sa_walk_cb_t) (ipsec_sa_t * sa, void *ctx);
286extern void ipsec_sa_walk (ipsec_sa_walk_cb_t cd, void *ctx);
287
Neale Rannsc5fe57d2021-02-25 16:01:28 +0000288extern u8 *format_ipsec_replay_window (u8 *s, va_list *args);
Neale Ranns999c8ee2019-02-01 03:31:24 -0800289extern u8 *format_ipsec_crypto_alg (u8 * s, va_list * args);
290extern u8 *format_ipsec_integ_alg (u8 * s, va_list * args);
Neale Ranns8d7c5022019-02-06 01:41:05 -0800291extern u8 *format_ipsec_sa (u8 * s, va_list * args);
292extern u8 *format_ipsec_key (u8 * s, va_list * args);
Neale Ranns999c8ee2019-02-01 03:31:24 -0800293extern uword unformat_ipsec_crypto_alg (unformat_input_t * input,
294 va_list * args);
295extern uword unformat_ipsec_integ_alg (unformat_input_t * input,
296 va_list * args);
Neale Ranns8d7c5022019-02-06 01:41:05 -0800297extern uword unformat_ipsec_key (unformat_input_t * input, va_list * args);
Neale Ranns999c8ee2019-02-01 03:31:24 -0800298
Filip Tehlare5d34912020-03-02 15:17:37 +0000299#define IPSEC_UDP_PORT_NONE ((u16)~0)
300
Neale Ranns6afaae12019-07-17 15:07:14 +0000301/*
302 * Anti Replay definitions
303 */
304
305#define IPSEC_SA_ANTI_REPLAY_WINDOW_SIZE (64)
306#define IPSEC_SA_ANTI_REPLAY_WINDOW_MAX_INDEX (IPSEC_SA_ANTI_REPLAY_WINDOW_SIZE-1)
307
308/*
309 * sequence number less than the lower bound are outside of the window
310 * From RFC4303 Appendix A:
311 * Bl = Tl - W + 1
312 */
313#define IPSEC_SA_ANTI_REPLAY_WINDOW_LOWER_BOUND(_tl) (_tl - IPSEC_SA_ANTI_REPLAY_WINDOW_SIZE + 1)
314
315/*
316 * Anti replay check.
317 * inputs need to be in host byte order.
318 */
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100319always_inline int
Neale Ranns6afaae12019-07-17 15:07:14 +0000320ipsec_sa_anti_replay_check (ipsec_sa_t * sa, u32 seq)
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100321{
Neale Ranns6afaae12019-07-17 15:07:14 +0000322 u32 diff, tl, th;
323
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100324 if ((sa->flags & IPSEC_SA_FLAG_USE_ANTI_REPLAY) == 0)
325 return 0;
326
Neale Ranns6afaae12019-07-17 15:07:14 +0000327 if (!ipsec_sa_is_set_USE_ESN (sa))
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100328 {
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100329 if (PREDICT_TRUE (seq > sa->last_seq))
330 return 0;
331
332 diff = sa->last_seq - seq;
333
334 if (IPSEC_SA_ANTI_REPLAY_WINDOW_SIZE > diff)
335 return (sa->replay_window & (1ULL << diff)) ? 1 : 0;
336 else
337 return 1;
338
339 return 0;
340 }
341
342 tl = sa->last_seq;
343 th = sa->last_seq_hi;
344 diff = tl - seq;
345
Neale Ranns6afaae12019-07-17 15:07:14 +0000346 if (PREDICT_TRUE (tl >= (IPSEC_SA_ANTI_REPLAY_WINDOW_MAX_INDEX)))
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100347 {
Neale Ranns6afaae12019-07-17 15:07:14 +0000348 /*
349 * the last sequence number VPP recieved is more than one
350 * window size greater than zero.
351 * Case A from RFC4303 Appendix A.
352 */
353 if (seq < IPSEC_SA_ANTI_REPLAY_WINDOW_LOWER_BOUND (tl))
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100354 {
Neale Ranns6afaae12019-07-17 15:07:14 +0000355 /*
356 * the received sequence number is lower than the lower bound
357 * of the window, this could mean either a replay packet or that
358 * the high sequence number has wrapped. if it decrypts corrently
359 * then it's the latter.
360 */
361 sa->seq_hi = th + 1;
362 return 0;
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100363 }
364 else
365 {
Neale Ranns6afaae12019-07-17 15:07:14 +0000366 /*
367 * the recieved sequence number greater than the low
368 * end of the window.
369 */
370 sa->seq_hi = th;
371 if (seq <= tl)
372 /*
373 * The recieved seq number is within bounds of the window
374 * check if it's a duplicate
375 */
376 return (sa->replay_window & (1ULL << diff)) ? 1 : 0;
377 else
378 /*
379 * The received sequence number is greater than the window
380 * upper bound. this packet will move the window along, assuming
381 * it decrypts correctly.
382 */
383 return 0;
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100384 }
385 }
386 else
387 {
Neale Ranns6afaae12019-07-17 15:07:14 +0000388 /*
389 * the last sequence number VPP recieved is within one window
390 * size of zero, i.e. 0 < TL < WINDOW_SIZE, the lower bound is thus a
391 * large sequence number.
392 * Note that the check below uses unsiged integer arthimetic, so the
393 * RHS will be a larger number.
394 * Case B from RFC4303 Appendix A.
395 */
396 if (seq < IPSEC_SA_ANTI_REPLAY_WINDOW_LOWER_BOUND (tl))
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100397 {
Neale Ranns6afaae12019-07-17 15:07:14 +0000398 /*
399 * the sequence number is less than the lower bound.
400 */
401 if (seq <= tl)
402 {
403 /*
404 * the packet is within the window upper bound.
405 * check for duplicates.
406 */
407 sa->seq_hi = th;
408 return (sa->replay_window & (1ULL << diff)) ? 1 : 0;
409 }
410 else
411 {
412 /*
413 * the packet is less the window lower bound or greater than
414 * the higher bound, depending on how you look at it...
415 * We're assuming, given that the last sequence number received,
416 * TL < WINDOW_SIZE, that a largeer seq num is more likely to be
417 * a packet that moves the window forward, than a packet that has
418 * wrapped the high sequence again. If it were the latter then
419 * we've lost close to 2^32 packets.
420 */
421 sa->seq_hi = th;
422 return 0;
423 }
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100424 }
425 else
426 {
Neale Ranns6afaae12019-07-17 15:07:14 +0000427 /*
428 * the packet seq number is between the lower bound (a large nubmer)
429 * and MAX_SEQ_NUM. This is in the window since the window upper bound
430 * tl > 0.
431 * However, since TL is the other side of 0 to the received
432 * packet, the SA has moved on to a higher sequence number.
433 */
434 sa->seq_hi = th - 1;
435 return (sa->replay_window & (1ULL << diff)) ? 1 : 0;
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100436 }
437 }
438
439 return 0;
440}
441
Neale Ranns6afaae12019-07-17 15:07:14 +0000442/*
443 * Anti replay window advance
444 * inputs need to be in host byte order.
445 */
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100446always_inline void
Neale Ranns6afaae12019-07-17 15:07:14 +0000447ipsec_sa_anti_replay_advance (ipsec_sa_t * sa, u32 seq)
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100448{
Neale Ranns6afaae12019-07-17 15:07:14 +0000449 u32 pos;
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100450 if (PREDICT_TRUE (sa->flags & IPSEC_SA_FLAG_USE_ANTI_REPLAY) == 0)
451 return;
452
Damjan Marion1e3aa5e2019-03-28 10:58:59 +0100453 if (PREDICT_TRUE (sa->flags & IPSEC_SA_FLAG_USE_ESN))
Damjan Marion1f4e1cb2019-03-28 19:19:31 +0100454 {
455 int wrap = sa->seq_hi - sa->last_seq_hi;
456
457 if (wrap == 0 && seq > sa->last_seq)
458 {
459 pos = seq - sa->last_seq;
460 if (pos < IPSEC_SA_ANTI_REPLAY_WINDOW_SIZE)
461 sa->replay_window = ((sa->replay_window) << pos) | 1;
462 else
463 sa->replay_window = 1;
464 sa->last_seq = seq;
465 }
466 else if (wrap > 0)
467 {
468 pos = ~seq + sa->last_seq + 1;
469 if (pos < IPSEC_SA_ANTI_REPLAY_WINDOW_SIZE)
470 sa->replay_window = ((sa->replay_window) << pos) | 1;
471 else
472 sa->replay_window = 1;
473 sa->last_seq = seq;
474 sa->last_seq_hi = sa->seq_hi;
475 }
476 else if (wrap < 0)
477 {
478 pos = ~seq + sa->last_seq + 1;
479 sa->replay_window |= (1ULL << pos);
480 }
481 else
482 {
483 pos = sa->last_seq - seq;
484 sa->replay_window |= (1ULL << pos);
485 }
486 }
487 else
488 {
489 if (seq > sa->last_seq)
490 {
491 pos = seq - sa->last_seq;
492 if (pos < IPSEC_SA_ANTI_REPLAY_WINDOW_SIZE)
493 sa->replay_window = ((sa->replay_window) << pos) | 1;
494 else
495 sa->replay_window = 1;
496 sa->last_seq = seq;
497 }
498 else
499 {
500 pos = sa->last_seq - seq;
501 sa->replay_window |= (1ULL << pos);
502 }
503 }
504}
505
Neale Rannsf62a8c02019-04-02 08:13:33 +0000506
507/*
508 * Makes choice for thread_id should be assigned.
509 * if input ~0, gets random worker_id based on unix_time_now_nsec
510*/
511always_inline u32
512ipsec_sa_assign_thread (u32 thread_id)
513{
514 return ((thread_id) ? thread_id
515 : (unix_time_now_nsec () % vlib_num_workers ()) + 1);
516}
517
Neale Rannsc5fe57d2021-02-25 16:01:28 +0000518always_inline ipsec_sa_t *
519ipsec_sa_get (u32 sa_index)
520{
521 return (pool_elt_at_index (ipsec_sa_pool, sa_index));
522}
523
Neale Ranns999c8ee2019-02-01 03:31:24 -0800524#endif /* __IPSEC_SPD_SA_H__ */
525
526/*
527 * fd.io coding-style-patch-verification: ON
528 *
529 * Local Variables:
530 * eval: (c-set-style "gnu")
531 * End:
532 */