esp4.c 11 KB

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  1. #include <linux/err.h>
  2. #include <linux/module.h>
  3. #include <net/ip.h>
  4. #include <net/xfrm.h>
  5. #include <net/esp.h>
  6. #include <linux/scatterlist.h>
  7. #include <linux/crypto.h>
  8. #include <linux/kernel.h>
  9. #include <linux/pfkeyv2.h>
  10. #include <linux/random.h>
  11. #include <linux/spinlock.h>
  12. #include <net/icmp.h>
  13. #include <net/protocol.h>
  14. #include <net/udp.h>
  15. static int esp_output(struct xfrm_state *x, struct sk_buff *skb)
  16. {
  17. int err;
  18. struct ip_esp_hdr *esph;
  19. struct crypto_blkcipher *tfm;
  20. struct blkcipher_desc desc;
  21. struct esp_data *esp;
  22. struct sk_buff *trailer;
  23. u8 *tail;
  24. int blksize;
  25. int clen;
  26. int alen;
  27. int nfrags;
  28. /* skb is pure payload to encrypt */
  29. err = -ENOMEM;
  30. /* Round to block size */
  31. clen = skb->len;
  32. esp = x->data;
  33. alen = esp->auth.icv_trunc_len;
  34. tfm = esp->conf.tfm;
  35. desc.tfm = tfm;
  36. desc.flags = 0;
  37. blksize = ALIGN(crypto_blkcipher_blocksize(tfm), 4);
  38. clen = ALIGN(clen + 2, blksize);
  39. if (esp->conf.padlen)
  40. clen = ALIGN(clen, esp->conf.padlen);
  41. if ((nfrags = skb_cow_data(skb, clen-skb->len+alen, &trailer)) < 0)
  42. goto error;
  43. /* Fill padding... */
  44. tail = skb_tail_pointer(trailer);
  45. do {
  46. int i;
  47. for (i=0; i<clen-skb->len - 2; i++)
  48. tail[i] = i + 1;
  49. } while (0);
  50. tail[clen - skb->len - 2] = (clen - skb->len) - 2;
  51. pskb_put(skb, trailer, clen - skb->len);
  52. skb_push(skb, -skb_network_offset(skb));
  53. esph = ip_esp_hdr(skb);
  54. *(skb_tail_pointer(trailer) - 1) = *skb_mac_header(skb);
  55. *skb_mac_header(skb) = IPPROTO_ESP;
  56. spin_lock_bh(&x->lock);
  57. /* this is non-NULL only with UDP Encapsulation */
  58. if (x->encap) {
  59. struct xfrm_encap_tmpl *encap = x->encap;
  60. struct udphdr *uh;
  61. __be32 *udpdata32;
  62. uh = (struct udphdr *)esph;
  63. uh->source = encap->encap_sport;
  64. uh->dest = encap->encap_dport;
  65. uh->len = htons(skb->len + alen - skb_transport_offset(skb));
  66. uh->check = 0;
  67. switch (encap->encap_type) {
  68. default:
  69. case UDP_ENCAP_ESPINUDP:
  70. esph = (struct ip_esp_hdr *)(uh + 1);
  71. break;
  72. case UDP_ENCAP_ESPINUDP_NON_IKE:
  73. udpdata32 = (__be32 *)(uh + 1);
  74. udpdata32[0] = udpdata32[1] = 0;
  75. esph = (struct ip_esp_hdr *)(udpdata32 + 2);
  76. break;
  77. }
  78. *skb_mac_header(skb) = IPPROTO_UDP;
  79. }
  80. esph->spi = x->id.spi;
  81. esph->seq_no = htonl(XFRM_SKB_CB(skb)->seq);
  82. if (esp->conf.ivlen) {
  83. if (unlikely(!esp->conf.ivinitted)) {
  84. get_random_bytes(esp->conf.ivec, esp->conf.ivlen);
  85. esp->conf.ivinitted = 1;
  86. }
  87. crypto_blkcipher_set_iv(tfm, esp->conf.ivec, esp->conf.ivlen);
  88. }
  89. do {
  90. struct scatterlist *sg = &esp->sgbuf[0];
  91. if (unlikely(nfrags > ESP_NUM_FAST_SG)) {
  92. sg = kmalloc(sizeof(struct scatterlist)*nfrags, GFP_ATOMIC);
  93. if (!sg)
  94. goto unlock;
  95. }
  96. sg_init_table(sg, nfrags);
  97. skb_to_sgvec(skb, sg, esph->enc_data+esp->conf.ivlen-skb->data, clen);
  98. err = crypto_blkcipher_encrypt(&desc, sg, sg, clen);
  99. if (unlikely(sg != &esp->sgbuf[0]))
  100. kfree(sg);
  101. } while (0);
  102. if (unlikely(err))
  103. goto unlock;
  104. if (esp->conf.ivlen) {
  105. memcpy(esph->enc_data, esp->conf.ivec, esp->conf.ivlen);
  106. crypto_blkcipher_get_iv(tfm, esp->conf.ivec, esp->conf.ivlen);
  107. }
  108. if (esp->auth.icv_full_len) {
  109. err = esp_mac_digest(esp, skb, (u8 *)esph - skb->data,
  110. sizeof(*esph) + esp->conf.ivlen + clen);
  111. memcpy(pskb_put(skb, trailer, alen), esp->auth.work_icv, alen);
  112. }
  113. unlock:
  114. spin_unlock_bh(&x->lock);
  115. error:
  116. return err;
  117. }
  118. /*
  119. * Note: detecting truncated vs. non-truncated authentication data is very
  120. * expensive, so we only support truncated data, which is the recommended
  121. * and common case.
  122. */
  123. static int esp_input(struct xfrm_state *x, struct sk_buff *skb)
  124. {
  125. struct iphdr *iph;
  126. struct ip_esp_hdr *esph;
  127. struct esp_data *esp = x->data;
  128. struct crypto_blkcipher *tfm = esp->conf.tfm;
  129. struct blkcipher_desc desc = { .tfm = tfm };
  130. struct sk_buff *trailer;
  131. int blksize = ALIGN(crypto_blkcipher_blocksize(tfm), 4);
  132. int alen = esp->auth.icv_trunc_len;
  133. int elen = skb->len - sizeof(*esph) - esp->conf.ivlen - alen;
  134. int nfrags;
  135. int ihl;
  136. u8 nexthdr[2];
  137. struct scatterlist *sg;
  138. int padlen;
  139. int err;
  140. if (!pskb_may_pull(skb, sizeof(*esph)))
  141. goto out;
  142. if (elen <= 0 || (elen & (blksize-1)))
  143. goto out;
  144. /* If integrity check is required, do this. */
  145. if (esp->auth.icv_full_len) {
  146. u8 sum[alen];
  147. err = esp_mac_digest(esp, skb, 0, skb->len - alen);
  148. if (err)
  149. goto out;
  150. if (skb_copy_bits(skb, skb->len - alen, sum, alen))
  151. BUG();
  152. if (unlikely(memcmp(esp->auth.work_icv, sum, alen))) {
  153. x->stats.integrity_failed++;
  154. goto out;
  155. }
  156. }
  157. if ((nfrags = skb_cow_data(skb, 0, &trailer)) < 0)
  158. goto out;
  159. skb->ip_summed = CHECKSUM_NONE;
  160. esph = (struct ip_esp_hdr *)skb->data;
  161. /* Get ivec. This can be wrong, check against another impls. */
  162. if (esp->conf.ivlen)
  163. crypto_blkcipher_set_iv(tfm, esph->enc_data, esp->conf.ivlen);
  164. sg = &esp->sgbuf[0];
  165. if (unlikely(nfrags > ESP_NUM_FAST_SG)) {
  166. sg = kmalloc(sizeof(struct scatterlist)*nfrags, GFP_ATOMIC);
  167. if (!sg)
  168. goto out;
  169. }
  170. sg_init_table(sg, nfrags);
  171. skb_to_sgvec(skb, sg, sizeof(*esph) + esp->conf.ivlen, elen);
  172. err = crypto_blkcipher_decrypt(&desc, sg, sg, elen);
  173. if (unlikely(sg != &esp->sgbuf[0]))
  174. kfree(sg);
  175. if (unlikely(err))
  176. return err;
  177. if (skb_copy_bits(skb, skb->len-alen-2, nexthdr, 2))
  178. BUG();
  179. padlen = nexthdr[0];
  180. if (padlen+2 >= elen)
  181. goto out;
  182. /* ... check padding bits here. Silly. :-) */
  183. iph = ip_hdr(skb);
  184. ihl = iph->ihl * 4;
  185. if (x->encap) {
  186. struct xfrm_encap_tmpl *encap = x->encap;
  187. struct udphdr *uh = (void *)(skb_network_header(skb) + ihl);
  188. /*
  189. * 1) if the NAT-T peer's IP or port changed then
  190. * advertize the change to the keying daemon.
  191. * This is an inbound SA, so just compare
  192. * SRC ports.
  193. */
  194. if (iph->saddr != x->props.saddr.a4 ||
  195. uh->source != encap->encap_sport) {
  196. xfrm_address_t ipaddr;
  197. ipaddr.a4 = iph->saddr;
  198. km_new_mapping(x, &ipaddr, uh->source);
  199. /* XXX: perhaps add an extra
  200. * policy check here, to see
  201. * if we should allow or
  202. * reject a packet from a
  203. * different source
  204. * address/port.
  205. */
  206. }
  207. /*
  208. * 2) ignore UDP/TCP checksums in case
  209. * of NAT-T in Transport Mode, or
  210. * perform other post-processing fixes
  211. * as per draft-ietf-ipsec-udp-encaps-06,
  212. * section 3.1.2
  213. */
  214. if (x->props.mode == XFRM_MODE_TRANSPORT)
  215. skb->ip_summed = CHECKSUM_UNNECESSARY;
  216. }
  217. pskb_trim(skb, skb->len - alen - padlen - 2);
  218. __skb_pull(skb, sizeof(*esph) + esp->conf.ivlen);
  219. skb_set_transport_header(skb, -ihl);
  220. return nexthdr[1];
  221. out:
  222. return -EINVAL;
  223. }
  224. static u32 esp4_get_mtu(struct xfrm_state *x, int mtu)
  225. {
  226. struct esp_data *esp = x->data;
  227. u32 blksize = ALIGN(crypto_blkcipher_blocksize(esp->conf.tfm), 4);
  228. u32 align = max_t(u32, blksize, esp->conf.padlen);
  229. u32 rem;
  230. mtu -= x->props.header_len + esp->auth.icv_trunc_len;
  231. rem = mtu & (align - 1);
  232. mtu &= ~(align - 1);
  233. switch (x->props.mode) {
  234. case XFRM_MODE_TUNNEL:
  235. break;
  236. default:
  237. case XFRM_MODE_TRANSPORT:
  238. /* The worst case */
  239. mtu -= blksize - 4;
  240. mtu += min_t(u32, blksize - 4, rem);
  241. break;
  242. case XFRM_MODE_BEET:
  243. /* The worst case. */
  244. mtu += min_t(u32, IPV4_BEET_PHMAXLEN, rem);
  245. break;
  246. }
  247. return mtu - 2;
  248. }
  249. static void esp4_err(struct sk_buff *skb, u32 info)
  250. {
  251. struct iphdr *iph = (struct iphdr*)skb->data;
  252. struct ip_esp_hdr *esph = (struct ip_esp_hdr*)(skb->data+(iph->ihl<<2));
  253. struct xfrm_state *x;
  254. if (icmp_hdr(skb)->type != ICMP_DEST_UNREACH ||
  255. icmp_hdr(skb)->code != ICMP_FRAG_NEEDED)
  256. return;
  257. x = xfrm_state_lookup((xfrm_address_t *)&iph->daddr, esph->spi, IPPROTO_ESP, AF_INET);
  258. if (!x)
  259. return;
  260. NETDEBUG(KERN_DEBUG "pmtu discovery on SA ESP/%08x/%08x\n",
  261. ntohl(esph->spi), ntohl(iph->daddr));
  262. xfrm_state_put(x);
  263. }
  264. static void esp_destroy(struct xfrm_state *x)
  265. {
  266. struct esp_data *esp = x->data;
  267. if (!esp)
  268. return;
  269. crypto_free_blkcipher(esp->conf.tfm);
  270. esp->conf.tfm = NULL;
  271. kfree(esp->conf.ivec);
  272. esp->conf.ivec = NULL;
  273. crypto_free_hash(esp->auth.tfm);
  274. esp->auth.tfm = NULL;
  275. kfree(esp->auth.work_icv);
  276. esp->auth.work_icv = NULL;
  277. kfree(esp);
  278. }
  279. static int esp_init_state(struct xfrm_state *x)
  280. {
  281. struct esp_data *esp = NULL;
  282. struct crypto_blkcipher *tfm;
  283. u32 align;
  284. if (x->ealg == NULL)
  285. goto error;
  286. esp = kzalloc(sizeof(*esp), GFP_KERNEL);
  287. if (esp == NULL)
  288. return -ENOMEM;
  289. if (x->aalg) {
  290. struct xfrm_algo_desc *aalg_desc;
  291. struct crypto_hash *hash;
  292. hash = crypto_alloc_hash(x->aalg->alg_name, 0,
  293. CRYPTO_ALG_ASYNC);
  294. if (IS_ERR(hash))
  295. goto error;
  296. esp->auth.tfm = hash;
  297. if (crypto_hash_setkey(hash, x->aalg->alg_key,
  298. (x->aalg->alg_key_len + 7) / 8))
  299. goto error;
  300. aalg_desc = xfrm_aalg_get_byname(x->aalg->alg_name, 0);
  301. BUG_ON(!aalg_desc);
  302. if (aalg_desc->uinfo.auth.icv_fullbits/8 !=
  303. crypto_hash_digestsize(hash)) {
  304. NETDEBUG(KERN_INFO "ESP: %s digestsize %u != %hu\n",
  305. x->aalg->alg_name,
  306. crypto_hash_digestsize(hash),
  307. aalg_desc->uinfo.auth.icv_fullbits/8);
  308. goto error;
  309. }
  310. esp->auth.icv_full_len = aalg_desc->uinfo.auth.icv_fullbits/8;
  311. esp->auth.icv_trunc_len = aalg_desc->uinfo.auth.icv_truncbits/8;
  312. esp->auth.work_icv = kmalloc(esp->auth.icv_full_len, GFP_KERNEL);
  313. if (!esp->auth.work_icv)
  314. goto error;
  315. }
  316. tfm = crypto_alloc_blkcipher(x->ealg->alg_name, 0, CRYPTO_ALG_ASYNC);
  317. if (IS_ERR(tfm))
  318. goto error;
  319. esp->conf.tfm = tfm;
  320. esp->conf.ivlen = crypto_blkcipher_ivsize(tfm);
  321. esp->conf.padlen = 0;
  322. if (esp->conf.ivlen) {
  323. esp->conf.ivec = kmalloc(esp->conf.ivlen, GFP_KERNEL);
  324. if (unlikely(esp->conf.ivec == NULL))
  325. goto error;
  326. esp->conf.ivinitted = 0;
  327. }
  328. if (crypto_blkcipher_setkey(tfm, x->ealg->alg_key,
  329. (x->ealg->alg_key_len + 7) / 8))
  330. goto error;
  331. x->props.header_len = sizeof(struct ip_esp_hdr) + esp->conf.ivlen;
  332. if (x->props.mode == XFRM_MODE_TUNNEL)
  333. x->props.header_len += sizeof(struct iphdr);
  334. else if (x->props.mode == XFRM_MODE_BEET)
  335. x->props.header_len += IPV4_BEET_PHMAXLEN;
  336. if (x->encap) {
  337. struct xfrm_encap_tmpl *encap = x->encap;
  338. switch (encap->encap_type) {
  339. default:
  340. goto error;
  341. case UDP_ENCAP_ESPINUDP:
  342. x->props.header_len += sizeof(struct udphdr);
  343. break;
  344. case UDP_ENCAP_ESPINUDP_NON_IKE:
  345. x->props.header_len += sizeof(struct udphdr) + 2 * sizeof(u32);
  346. break;
  347. }
  348. }
  349. x->data = esp;
  350. align = ALIGN(crypto_blkcipher_blocksize(esp->conf.tfm), 4);
  351. if (esp->conf.padlen)
  352. align = max_t(u32, align, esp->conf.padlen);
  353. x->props.trailer_len = align + 1 + esp->auth.icv_trunc_len;
  354. return 0;
  355. error:
  356. x->data = esp;
  357. esp_destroy(x);
  358. x->data = NULL;
  359. return -EINVAL;
  360. }
  361. static struct xfrm_type esp_type =
  362. {
  363. .description = "ESP4",
  364. .owner = THIS_MODULE,
  365. .proto = IPPROTO_ESP,
  366. .flags = XFRM_TYPE_REPLAY_PROT,
  367. .init_state = esp_init_state,
  368. .destructor = esp_destroy,
  369. .get_mtu = esp4_get_mtu,
  370. .input = esp_input,
  371. .output = esp_output
  372. };
  373. static struct net_protocol esp4_protocol = {
  374. .handler = xfrm4_rcv,
  375. .err_handler = esp4_err,
  376. .no_policy = 1,
  377. };
  378. static int __init esp4_init(void)
  379. {
  380. if (xfrm_register_type(&esp_type, AF_INET) < 0) {
  381. printk(KERN_INFO "ip esp init: can't add xfrm type\n");
  382. return -EAGAIN;
  383. }
  384. if (inet_add_protocol(&esp4_protocol, IPPROTO_ESP) < 0) {
  385. printk(KERN_INFO "ip esp init: can't add protocol\n");
  386. xfrm_unregister_type(&esp_type, AF_INET);
  387. return -EAGAIN;
  388. }
  389. return 0;
  390. }
  391. static void __exit esp4_fini(void)
  392. {
  393. if (inet_del_protocol(&esp4_protocol, IPPROTO_ESP) < 0)
  394. printk(KERN_INFO "ip esp close: can't remove protocol\n");
  395. if (xfrm_unregister_type(&esp_type, AF_INET) < 0)
  396. printk(KERN_INFO "ip esp close: can't remove xfrm type\n");
  397. }
  398. module_init(esp4_init);
  399. module_exit(esp4_fini);
  400. MODULE_LICENSE("GPL");
  401. MODULE_ALIAS_XFRM_TYPE(AF_INET, XFRM_PROTO_ESP);