ah6.c 18 KB

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  1. /*
  2. * Copyright (C)2002 USAGI/WIDE Project
  3. *
  4. * This program is free software; you can redistribute it and/or modify
  5. * it under the terms of the GNU General Public License as published by
  6. * the Free Software Foundation; either version 2 of the License, or
  7. * (at your option) any later version.
  8. *
  9. * This program is distributed in the hope that it will be useful,
  10. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. * GNU General Public License for more details.
  13. *
  14. * You should have received a copy of the GNU General Public License
  15. * along with this program; if not, see <http://www.gnu.org/licenses/>.
  16. *
  17. * Authors
  18. *
  19. * Mitsuru KANDA @USAGI : IPv6 Support
  20. * Kazunori MIYAZAWA @USAGI :
  21. * Kunihiro Ishiguro <kunihiro@ipinfusion.com>
  22. *
  23. * This file is derived from net/ipv4/ah.c.
  24. */
  25. #define pr_fmt(fmt) "IPv6: " fmt
  26. #include <crypto/algapi.h>
  27. #include <crypto/hash.h>
  28. #include <linux/module.h>
  29. #include <linux/slab.h>
  30. #include <net/ip.h>
  31. #include <net/ah.h>
  32. #include <linux/crypto.h>
  33. #include <linux/pfkeyv2.h>
  34. #include <linux/string.h>
  35. #include <linux/scatterlist.h>
  36. #include <net/ip6_route.h>
  37. #include <net/icmp.h>
  38. #include <net/ipv6.h>
  39. #include <net/protocol.h>
  40. #include <net/xfrm.h>
  41. #define IPV6HDR_BASELEN 8
  42. struct tmp_ext {
  43. #if IS_ENABLED(CONFIG_IPV6_MIP6)
  44. struct in6_addr saddr;
  45. #endif
  46. struct in6_addr daddr;
  47. char hdrs[0];
  48. };
  49. struct ah_skb_cb {
  50. struct xfrm_skb_cb xfrm;
  51. void *tmp;
  52. };
  53. #define AH_SKB_CB(__skb) ((struct ah_skb_cb *)&((__skb)->cb[0]))
  54. static void *ah_alloc_tmp(struct crypto_ahash *ahash, int nfrags,
  55. unsigned int size)
  56. {
  57. unsigned int len;
  58. len = size + crypto_ahash_digestsize(ahash) +
  59. (crypto_ahash_alignmask(ahash) &
  60. ~(crypto_tfm_ctx_alignment() - 1));
  61. len = ALIGN(len, crypto_tfm_ctx_alignment());
  62. len += sizeof(struct ahash_request) + crypto_ahash_reqsize(ahash);
  63. len = ALIGN(len, __alignof__(struct scatterlist));
  64. len += sizeof(struct scatterlist) * nfrags;
  65. return kmalloc(len, GFP_ATOMIC);
  66. }
  67. static inline struct tmp_ext *ah_tmp_ext(void *base)
  68. {
  69. return base + IPV6HDR_BASELEN;
  70. }
  71. static inline u8 *ah_tmp_auth(u8 *tmp, unsigned int offset)
  72. {
  73. return tmp + offset;
  74. }
  75. static inline u8 *ah_tmp_icv(struct crypto_ahash *ahash, void *tmp,
  76. unsigned int offset)
  77. {
  78. return PTR_ALIGN((u8 *)tmp + offset, crypto_ahash_alignmask(ahash) + 1);
  79. }
  80. static inline struct ahash_request *ah_tmp_req(struct crypto_ahash *ahash,
  81. u8 *icv)
  82. {
  83. struct ahash_request *req;
  84. req = (void *)PTR_ALIGN(icv + crypto_ahash_digestsize(ahash),
  85. crypto_tfm_ctx_alignment());
  86. ahash_request_set_tfm(req, ahash);
  87. return req;
  88. }
  89. static inline struct scatterlist *ah_req_sg(struct crypto_ahash *ahash,
  90. struct ahash_request *req)
  91. {
  92. return (void *)ALIGN((unsigned long)(req + 1) +
  93. crypto_ahash_reqsize(ahash),
  94. __alignof__(struct scatterlist));
  95. }
  96. static bool zero_out_mutable_opts(struct ipv6_opt_hdr *opthdr)
  97. {
  98. u8 *opt = (u8 *)opthdr;
  99. int len = ipv6_optlen(opthdr);
  100. int off = 0;
  101. int optlen = 0;
  102. off += 2;
  103. len -= 2;
  104. while (len > 0) {
  105. switch (opt[off]) {
  106. case IPV6_TLV_PAD1:
  107. optlen = 1;
  108. break;
  109. default:
  110. if (len < 2)
  111. goto bad;
  112. optlen = opt[off+1]+2;
  113. if (len < optlen)
  114. goto bad;
  115. if (opt[off] & 0x20)
  116. memset(&opt[off+2], 0, opt[off+1]);
  117. break;
  118. }
  119. off += optlen;
  120. len -= optlen;
  121. }
  122. if (len == 0)
  123. return true;
  124. bad:
  125. return false;
  126. }
  127. #if IS_ENABLED(CONFIG_IPV6_MIP6)
  128. /**
  129. * ipv6_rearrange_destopt - rearrange IPv6 destination options header
  130. * @iph: IPv6 header
  131. * @destopt: destionation options header
  132. */
  133. static void ipv6_rearrange_destopt(struct ipv6hdr *iph, struct ipv6_opt_hdr *destopt)
  134. {
  135. u8 *opt = (u8 *)destopt;
  136. int len = ipv6_optlen(destopt);
  137. int off = 0;
  138. int optlen = 0;
  139. off += 2;
  140. len -= 2;
  141. while (len > 0) {
  142. switch (opt[off]) {
  143. case IPV6_TLV_PAD1:
  144. optlen = 1;
  145. break;
  146. default:
  147. if (len < 2)
  148. goto bad;
  149. optlen = opt[off+1]+2;
  150. if (len < optlen)
  151. goto bad;
  152. /* Rearrange the source address in @iph and the
  153. * addresses in home address option for final source.
  154. * See 11.3.2 of RFC 3775 for details.
  155. */
  156. if (opt[off] == IPV6_TLV_HAO) {
  157. struct in6_addr final_addr;
  158. struct ipv6_destopt_hao *hao;
  159. hao = (struct ipv6_destopt_hao *)&opt[off];
  160. if (hao->length != sizeof(hao->addr)) {
  161. net_warn_ratelimited("destopt hao: invalid header length: %u\n",
  162. hao->length);
  163. goto bad;
  164. }
  165. final_addr = hao->addr;
  166. hao->addr = iph->saddr;
  167. iph->saddr = final_addr;
  168. }
  169. break;
  170. }
  171. off += optlen;
  172. len -= optlen;
  173. }
  174. /* Note: ok if len == 0 */
  175. bad:
  176. return;
  177. }
  178. #else
  179. static void ipv6_rearrange_destopt(struct ipv6hdr *iph, struct ipv6_opt_hdr *destopt) {}
  180. #endif
  181. /**
  182. * ipv6_rearrange_rthdr - rearrange IPv6 routing header
  183. * @iph: IPv6 header
  184. * @rthdr: routing header
  185. *
  186. * Rearrange the destination address in @iph and the addresses in @rthdr
  187. * so that they appear in the order they will at the final destination.
  188. * See Appendix A2 of RFC 2402 for details.
  189. */
  190. static void ipv6_rearrange_rthdr(struct ipv6hdr *iph, struct ipv6_rt_hdr *rthdr)
  191. {
  192. int segments, segments_left;
  193. struct in6_addr *addrs;
  194. struct in6_addr final_addr;
  195. segments_left = rthdr->segments_left;
  196. if (segments_left == 0)
  197. return;
  198. rthdr->segments_left = 0;
  199. /* The value of rthdr->hdrlen has been verified either by the system
  200. * call if it is locally generated, or by ipv6_rthdr_rcv() for incoming
  201. * packets. So we can assume that it is even and that segments is
  202. * greater than or equal to segments_left.
  203. *
  204. * For the same reason we can assume that this option is of type 0.
  205. */
  206. segments = rthdr->hdrlen >> 1;
  207. addrs = ((struct rt0_hdr *)rthdr)->addr;
  208. final_addr = addrs[segments - 1];
  209. addrs += segments - segments_left;
  210. memmove(addrs + 1, addrs, (segments_left - 1) * sizeof(*addrs));
  211. addrs[0] = iph->daddr;
  212. iph->daddr = final_addr;
  213. }
  214. static int ipv6_clear_mutable_options(struct ipv6hdr *iph, int len, int dir)
  215. {
  216. union {
  217. struct ipv6hdr *iph;
  218. struct ipv6_opt_hdr *opth;
  219. struct ipv6_rt_hdr *rth;
  220. char *raw;
  221. } exthdr = { .iph = iph };
  222. char *end = exthdr.raw + len;
  223. int nexthdr = iph->nexthdr;
  224. exthdr.iph++;
  225. while (exthdr.raw < end) {
  226. switch (nexthdr) {
  227. case NEXTHDR_DEST:
  228. if (dir == XFRM_POLICY_OUT)
  229. ipv6_rearrange_destopt(iph, exthdr.opth);
  230. case NEXTHDR_HOP:
  231. if (!zero_out_mutable_opts(exthdr.opth)) {
  232. net_dbg_ratelimited("overrun %sopts\n",
  233. nexthdr == NEXTHDR_HOP ?
  234. "hop" : "dest");
  235. return -EINVAL;
  236. }
  237. break;
  238. case NEXTHDR_ROUTING:
  239. ipv6_rearrange_rthdr(iph, exthdr.rth);
  240. break;
  241. default:
  242. return 0;
  243. }
  244. nexthdr = exthdr.opth->nexthdr;
  245. exthdr.raw += ipv6_optlen(exthdr.opth);
  246. }
  247. return 0;
  248. }
  249. static void ah6_output_done(struct crypto_async_request *base, int err)
  250. {
  251. int extlen;
  252. u8 *iph_base;
  253. u8 *icv;
  254. struct sk_buff *skb = base->data;
  255. struct xfrm_state *x = skb_dst(skb)->xfrm;
  256. struct ah_data *ahp = x->data;
  257. struct ipv6hdr *top_iph = ipv6_hdr(skb);
  258. struct ip_auth_hdr *ah = ip_auth_hdr(skb);
  259. struct tmp_ext *iph_ext;
  260. extlen = skb_network_header_len(skb) - sizeof(struct ipv6hdr);
  261. if (extlen)
  262. extlen += sizeof(*iph_ext);
  263. iph_base = AH_SKB_CB(skb)->tmp;
  264. iph_ext = ah_tmp_ext(iph_base);
  265. icv = ah_tmp_icv(ahp->ahash, iph_ext, extlen);
  266. memcpy(ah->auth_data, icv, ahp->icv_trunc_len);
  267. memcpy(top_iph, iph_base, IPV6HDR_BASELEN);
  268. if (extlen) {
  269. #if IS_ENABLED(CONFIG_IPV6_MIP6)
  270. memcpy(&top_iph->saddr, iph_ext, extlen);
  271. #else
  272. memcpy(&top_iph->daddr, iph_ext, extlen);
  273. #endif
  274. }
  275. kfree(AH_SKB_CB(skb)->tmp);
  276. xfrm_output_resume(skb, err);
  277. }
  278. static int ah6_output(struct xfrm_state *x, struct sk_buff *skb)
  279. {
  280. int err;
  281. int nfrags;
  282. int extlen;
  283. u8 *iph_base;
  284. u8 *icv;
  285. u8 nexthdr;
  286. struct sk_buff *trailer;
  287. struct crypto_ahash *ahash;
  288. struct ahash_request *req;
  289. struct scatterlist *sg;
  290. struct ipv6hdr *top_iph;
  291. struct ip_auth_hdr *ah;
  292. struct ah_data *ahp;
  293. struct tmp_ext *iph_ext;
  294. int seqhi_len = 0;
  295. __be32 *seqhi;
  296. int sglists = 0;
  297. struct scatterlist *seqhisg;
  298. ahp = x->data;
  299. ahash = ahp->ahash;
  300. err = skb_cow_data(skb, 0, &trailer);
  301. if (err < 0)
  302. goto out;
  303. nfrags = err;
  304. skb_push(skb, -skb_network_offset(skb));
  305. extlen = skb_network_header_len(skb) - sizeof(struct ipv6hdr);
  306. if (extlen)
  307. extlen += sizeof(*iph_ext);
  308. if (x->props.flags & XFRM_STATE_ESN) {
  309. sglists = 1;
  310. seqhi_len = sizeof(*seqhi);
  311. }
  312. err = -ENOMEM;
  313. iph_base = ah_alloc_tmp(ahash, nfrags + sglists, IPV6HDR_BASELEN +
  314. extlen + seqhi_len);
  315. if (!iph_base)
  316. goto out;
  317. iph_ext = ah_tmp_ext(iph_base);
  318. seqhi = (__be32 *)((char *)iph_ext + extlen);
  319. icv = ah_tmp_icv(ahash, seqhi, seqhi_len);
  320. req = ah_tmp_req(ahash, icv);
  321. sg = ah_req_sg(ahash, req);
  322. seqhisg = sg + nfrags;
  323. ah = ip_auth_hdr(skb);
  324. memset(ah->auth_data, 0, ahp->icv_trunc_len);
  325. top_iph = ipv6_hdr(skb);
  326. top_iph->payload_len = htons(skb->len - sizeof(*top_iph));
  327. nexthdr = *skb_mac_header(skb);
  328. *skb_mac_header(skb) = IPPROTO_AH;
  329. /* When there are no extension headers, we only need to save the first
  330. * 8 bytes of the base IP header.
  331. */
  332. memcpy(iph_base, top_iph, IPV6HDR_BASELEN);
  333. if (extlen) {
  334. #if IS_ENABLED(CONFIG_IPV6_MIP6)
  335. memcpy(iph_ext, &top_iph->saddr, extlen);
  336. #else
  337. memcpy(iph_ext, &top_iph->daddr, extlen);
  338. #endif
  339. err = ipv6_clear_mutable_options(top_iph,
  340. extlen - sizeof(*iph_ext) +
  341. sizeof(*top_iph),
  342. XFRM_POLICY_OUT);
  343. if (err)
  344. goto out_free;
  345. }
  346. ah->nexthdr = nexthdr;
  347. top_iph->priority = 0;
  348. top_iph->flow_lbl[0] = 0;
  349. top_iph->flow_lbl[1] = 0;
  350. top_iph->flow_lbl[2] = 0;
  351. top_iph->hop_limit = 0;
  352. ah->hdrlen = (XFRM_ALIGN8(sizeof(*ah) + ahp->icv_trunc_len) >> 2) - 2;
  353. ah->reserved = 0;
  354. ah->spi = x->id.spi;
  355. ah->seq_no = htonl(XFRM_SKB_CB(skb)->seq.output.low);
  356. sg_init_table(sg, nfrags + sglists);
  357. err = skb_to_sgvec_nomark(skb, sg, 0, skb->len);
  358. if (unlikely(err < 0))
  359. goto out_free;
  360. if (x->props.flags & XFRM_STATE_ESN) {
  361. /* Attach seqhi sg right after packet payload */
  362. *seqhi = htonl(XFRM_SKB_CB(skb)->seq.output.hi);
  363. sg_set_buf(seqhisg, seqhi, seqhi_len);
  364. }
  365. ahash_request_set_crypt(req, sg, icv, skb->len + seqhi_len);
  366. ahash_request_set_callback(req, 0, ah6_output_done, skb);
  367. AH_SKB_CB(skb)->tmp = iph_base;
  368. err = crypto_ahash_digest(req);
  369. if (err) {
  370. if (err == -EINPROGRESS)
  371. goto out;
  372. if (err == -EBUSY)
  373. err = NET_XMIT_DROP;
  374. goto out_free;
  375. }
  376. memcpy(ah->auth_data, icv, ahp->icv_trunc_len);
  377. memcpy(top_iph, iph_base, IPV6HDR_BASELEN);
  378. if (extlen) {
  379. #if IS_ENABLED(CONFIG_IPV6_MIP6)
  380. memcpy(&top_iph->saddr, iph_ext, extlen);
  381. #else
  382. memcpy(&top_iph->daddr, iph_ext, extlen);
  383. #endif
  384. }
  385. out_free:
  386. kfree(iph_base);
  387. out:
  388. return err;
  389. }
  390. static void ah6_input_done(struct crypto_async_request *base, int err)
  391. {
  392. u8 *auth_data;
  393. u8 *icv;
  394. u8 *work_iph;
  395. struct sk_buff *skb = base->data;
  396. struct xfrm_state *x = xfrm_input_state(skb);
  397. struct ah_data *ahp = x->data;
  398. struct ip_auth_hdr *ah = ip_auth_hdr(skb);
  399. int hdr_len = skb_network_header_len(skb);
  400. int ah_hlen = (ah->hdrlen + 2) << 2;
  401. if (err)
  402. goto out;
  403. work_iph = AH_SKB_CB(skb)->tmp;
  404. auth_data = ah_tmp_auth(work_iph, hdr_len);
  405. icv = ah_tmp_icv(ahp->ahash, auth_data, ahp->icv_trunc_len);
  406. err = crypto_memneq(icv, auth_data, ahp->icv_trunc_len) ? -EBADMSG : 0;
  407. if (err)
  408. goto out;
  409. err = ah->nexthdr;
  410. skb->network_header += ah_hlen;
  411. memcpy(skb_network_header(skb), work_iph, hdr_len);
  412. __skb_pull(skb, ah_hlen + hdr_len);
  413. if (x->props.mode == XFRM_MODE_TUNNEL)
  414. skb_reset_transport_header(skb);
  415. else
  416. skb_set_transport_header(skb, -hdr_len);
  417. out:
  418. kfree(AH_SKB_CB(skb)->tmp);
  419. xfrm_input_resume(skb, err);
  420. }
  421. static int ah6_input(struct xfrm_state *x, struct sk_buff *skb)
  422. {
  423. /*
  424. * Before process AH
  425. * [IPv6][Ext1][Ext2][AH][Dest][Payload]
  426. * |<-------------->| hdr_len
  427. *
  428. * To erase AH:
  429. * Keeping copy of cleared headers. After AH processing,
  430. * Moving the pointer of skb->network_header by using skb_pull as long
  431. * as AH header length. Then copy back the copy as long as hdr_len
  432. * If destination header following AH exists, copy it into after [Ext2].
  433. *
  434. * |<>|[IPv6][Ext1][Ext2][Dest][Payload]
  435. * There is offset of AH before IPv6 header after the process.
  436. */
  437. u8 *auth_data;
  438. u8 *icv;
  439. u8 *work_iph;
  440. struct sk_buff *trailer;
  441. struct crypto_ahash *ahash;
  442. struct ahash_request *req;
  443. struct scatterlist *sg;
  444. struct ip_auth_hdr *ah;
  445. struct ipv6hdr *ip6h;
  446. struct ah_data *ahp;
  447. u16 hdr_len;
  448. u16 ah_hlen;
  449. int nexthdr;
  450. int nfrags;
  451. int err = -ENOMEM;
  452. int seqhi_len = 0;
  453. __be32 *seqhi;
  454. int sglists = 0;
  455. struct scatterlist *seqhisg;
  456. if (!pskb_may_pull(skb, sizeof(struct ip_auth_hdr)))
  457. goto out;
  458. /* We are going to _remove_ AH header to keep sockets happy,
  459. * so... Later this can change. */
  460. if (skb_unclone(skb, GFP_ATOMIC))
  461. goto out;
  462. skb->ip_summed = CHECKSUM_NONE;
  463. hdr_len = skb_network_header_len(skb);
  464. ah = (struct ip_auth_hdr *)skb->data;
  465. ahp = x->data;
  466. ahash = ahp->ahash;
  467. nexthdr = ah->nexthdr;
  468. ah_hlen = (ah->hdrlen + 2) << 2;
  469. if (ah_hlen != XFRM_ALIGN8(sizeof(*ah) + ahp->icv_full_len) &&
  470. ah_hlen != XFRM_ALIGN8(sizeof(*ah) + ahp->icv_trunc_len))
  471. goto out;
  472. if (!pskb_may_pull(skb, ah_hlen))
  473. goto out;
  474. err = skb_cow_data(skb, 0, &trailer);
  475. if (err < 0)
  476. goto out;
  477. nfrags = err;
  478. ah = (struct ip_auth_hdr *)skb->data;
  479. ip6h = ipv6_hdr(skb);
  480. skb_push(skb, hdr_len);
  481. if (x->props.flags & XFRM_STATE_ESN) {
  482. sglists = 1;
  483. seqhi_len = sizeof(*seqhi);
  484. }
  485. work_iph = ah_alloc_tmp(ahash, nfrags + sglists, hdr_len +
  486. ahp->icv_trunc_len + seqhi_len);
  487. if (!work_iph) {
  488. err = -ENOMEM;
  489. goto out;
  490. }
  491. auth_data = ah_tmp_auth((u8 *)work_iph, hdr_len);
  492. seqhi = (__be32 *)(auth_data + ahp->icv_trunc_len);
  493. icv = ah_tmp_icv(ahash, seqhi, seqhi_len);
  494. req = ah_tmp_req(ahash, icv);
  495. sg = ah_req_sg(ahash, req);
  496. seqhisg = sg + nfrags;
  497. memcpy(work_iph, ip6h, hdr_len);
  498. memcpy(auth_data, ah->auth_data, ahp->icv_trunc_len);
  499. memset(ah->auth_data, 0, ahp->icv_trunc_len);
  500. if (ipv6_clear_mutable_options(ip6h, hdr_len, XFRM_POLICY_IN))
  501. goto out_free;
  502. ip6h->priority = 0;
  503. ip6h->flow_lbl[0] = 0;
  504. ip6h->flow_lbl[1] = 0;
  505. ip6h->flow_lbl[2] = 0;
  506. ip6h->hop_limit = 0;
  507. sg_init_table(sg, nfrags + sglists);
  508. err = skb_to_sgvec_nomark(skb, sg, 0, skb->len);
  509. if (unlikely(err < 0))
  510. goto out_free;
  511. if (x->props.flags & XFRM_STATE_ESN) {
  512. /* Attach seqhi sg right after packet payload */
  513. *seqhi = XFRM_SKB_CB(skb)->seq.input.hi;
  514. sg_set_buf(seqhisg, seqhi, seqhi_len);
  515. }
  516. ahash_request_set_crypt(req, sg, icv, skb->len + seqhi_len);
  517. ahash_request_set_callback(req, 0, ah6_input_done, skb);
  518. AH_SKB_CB(skb)->tmp = work_iph;
  519. err = crypto_ahash_digest(req);
  520. if (err) {
  521. if (err == -EINPROGRESS)
  522. goto out;
  523. goto out_free;
  524. }
  525. err = crypto_memneq(icv, auth_data, ahp->icv_trunc_len) ? -EBADMSG : 0;
  526. if (err)
  527. goto out_free;
  528. skb->network_header += ah_hlen;
  529. memcpy(skb_network_header(skb), work_iph, hdr_len);
  530. __skb_pull(skb, ah_hlen + hdr_len);
  531. if (x->props.mode == XFRM_MODE_TUNNEL)
  532. skb_reset_transport_header(skb);
  533. else
  534. skb_set_transport_header(skb, -hdr_len);
  535. err = nexthdr;
  536. out_free:
  537. kfree(work_iph);
  538. out:
  539. return err;
  540. }
  541. static int ah6_err(struct sk_buff *skb, struct inet6_skb_parm *opt,
  542. u8 type, u8 code, int offset, __be32 info)
  543. {
  544. struct net *net = dev_net(skb->dev);
  545. struct ipv6hdr *iph = (struct ipv6hdr *)skb->data;
  546. struct ip_auth_hdr *ah = (struct ip_auth_hdr *)(skb->data+offset);
  547. struct xfrm_state *x;
  548. if (type != ICMPV6_PKT_TOOBIG &&
  549. type != NDISC_REDIRECT)
  550. return 0;
  551. x = xfrm_state_lookup(net, skb->mark, (xfrm_address_t *)&iph->daddr, ah->spi, IPPROTO_AH, AF_INET6);
  552. if (!x)
  553. return 0;
  554. if (type == NDISC_REDIRECT)
  555. ip6_redirect(skb, net, skb->dev->ifindex, 0,
  556. sock_net_uid(net, NULL));
  557. else
  558. ip6_update_pmtu(skb, net, info, 0, 0, sock_net_uid(net, NULL));
  559. xfrm_state_put(x);
  560. return 0;
  561. }
  562. static int ah6_init_state(struct xfrm_state *x)
  563. {
  564. struct ah_data *ahp = NULL;
  565. struct xfrm_algo_desc *aalg_desc;
  566. struct crypto_ahash *ahash;
  567. if (!x->aalg)
  568. goto error;
  569. if (x->encap)
  570. goto error;
  571. ahp = kzalloc(sizeof(*ahp), GFP_KERNEL);
  572. if (!ahp)
  573. return -ENOMEM;
  574. ahash = crypto_alloc_ahash(x->aalg->alg_name, 0, 0);
  575. if (IS_ERR(ahash))
  576. goto error;
  577. ahp->ahash = ahash;
  578. if (crypto_ahash_setkey(ahash, x->aalg->alg_key,
  579. (x->aalg->alg_key_len + 7) / 8))
  580. goto error;
  581. /*
  582. * Lookup the algorithm description maintained by xfrm_algo,
  583. * verify crypto transform properties, and store information
  584. * we need for AH processing. This lookup cannot fail here
  585. * after a successful crypto_alloc_hash().
  586. */
  587. aalg_desc = xfrm_aalg_get_byname(x->aalg->alg_name, 0);
  588. BUG_ON(!aalg_desc);
  589. if (aalg_desc->uinfo.auth.icv_fullbits/8 !=
  590. crypto_ahash_digestsize(ahash)) {
  591. pr_info("AH: %s digestsize %u != %hu\n",
  592. x->aalg->alg_name, crypto_ahash_digestsize(ahash),
  593. aalg_desc->uinfo.auth.icv_fullbits/8);
  594. goto error;
  595. }
  596. ahp->icv_full_len = aalg_desc->uinfo.auth.icv_fullbits/8;
  597. ahp->icv_trunc_len = x->aalg->alg_trunc_len/8;
  598. x->props.header_len = XFRM_ALIGN8(sizeof(struct ip_auth_hdr) +
  599. ahp->icv_trunc_len);
  600. switch (x->props.mode) {
  601. case XFRM_MODE_BEET:
  602. case XFRM_MODE_TRANSPORT:
  603. break;
  604. case XFRM_MODE_TUNNEL:
  605. x->props.header_len += sizeof(struct ipv6hdr);
  606. break;
  607. default:
  608. goto error;
  609. }
  610. x->data = ahp;
  611. return 0;
  612. error:
  613. if (ahp) {
  614. crypto_free_ahash(ahp->ahash);
  615. kfree(ahp);
  616. }
  617. return -EINVAL;
  618. }
  619. static void ah6_destroy(struct xfrm_state *x)
  620. {
  621. struct ah_data *ahp = x->data;
  622. if (!ahp)
  623. return;
  624. crypto_free_ahash(ahp->ahash);
  625. kfree(ahp);
  626. }
  627. static int ah6_rcv_cb(struct sk_buff *skb, int err)
  628. {
  629. return 0;
  630. }
  631. static const struct xfrm_type ah6_type = {
  632. .description = "AH6",
  633. .owner = THIS_MODULE,
  634. .proto = IPPROTO_AH,
  635. .flags = XFRM_TYPE_REPLAY_PROT,
  636. .init_state = ah6_init_state,
  637. .destructor = ah6_destroy,
  638. .input = ah6_input,
  639. .output = ah6_output,
  640. .hdr_offset = xfrm6_find_1stfragopt,
  641. };
  642. static struct xfrm6_protocol ah6_protocol = {
  643. .handler = xfrm6_rcv,
  644. .cb_handler = ah6_rcv_cb,
  645. .err_handler = ah6_err,
  646. .priority = 0,
  647. };
  648. static int __init ah6_init(void)
  649. {
  650. if (xfrm_register_type(&ah6_type, AF_INET6) < 0) {
  651. pr_info("%s: can't add xfrm type\n", __func__);
  652. return -EAGAIN;
  653. }
  654. if (xfrm6_protocol_register(&ah6_protocol, IPPROTO_AH) < 0) {
  655. pr_info("%s: can't add protocol\n", __func__);
  656. xfrm_unregister_type(&ah6_type, AF_INET6);
  657. return -EAGAIN;
  658. }
  659. return 0;
  660. }
  661. static void __exit ah6_fini(void)
  662. {
  663. if (xfrm6_protocol_deregister(&ah6_protocol, IPPROTO_AH) < 0)
  664. pr_info("%s: can't remove protocol\n", __func__);
  665. if (xfrm_unregister_type(&ah6_type, AF_INET6) < 0)
  666. pr_info("%s: can't remove xfrm type\n", __func__);
  667. }
  668. module_init(ah6_init);
  669. module_exit(ah6_fini);
  670. MODULE_LICENSE("GPL");
  671. MODULE_ALIAS_XFRM_TYPE(AF_INET6, XFRM_PROTO_AH);