13c4d7559SDave Watson /* 23c4d7559SDave Watson * Copyright (c) 2016-2017, Mellanox Technologies. All rights reserved. 33c4d7559SDave Watson * Copyright (c) 2016-2017, Dave Watson <davejwatson@fb.com>. All rights reserved. 43c4d7559SDave Watson * Copyright (c) 2016-2017, Lance Chao <lancerchao@fb.com>. All rights reserved. 53c4d7559SDave Watson * Copyright (c) 2016, Fridolin Pokorny <fridolin.pokorny@gmail.com>. All rights reserved. 63c4d7559SDave Watson * Copyright (c) 2016, Nikos Mavrogiannopoulos <nmav@gnutls.org>. All rights reserved. 7d3b18ad3SJohn Fastabend * Copyright (c) 2018, Covalent IO, Inc. http://covalent.io 83c4d7559SDave Watson * 93c4d7559SDave Watson * This software is available to you under a choice of one of two 103c4d7559SDave Watson * licenses. You may choose to be licensed under the terms of the GNU 113c4d7559SDave Watson * General Public License (GPL) Version 2, available from the file 123c4d7559SDave Watson * COPYING in the main directory of this source tree, or the 133c4d7559SDave Watson * OpenIB.org BSD license below: 143c4d7559SDave Watson * 153c4d7559SDave Watson * Redistribution and use in source and binary forms, with or 163c4d7559SDave Watson * without modification, are permitted provided that the following 173c4d7559SDave Watson * conditions are met: 183c4d7559SDave Watson * 193c4d7559SDave Watson * - Redistributions of source code must retain the above 203c4d7559SDave Watson * copyright notice, this list of conditions and the following 213c4d7559SDave Watson * disclaimer. 223c4d7559SDave Watson * 233c4d7559SDave Watson * - Redistributions in binary form must reproduce the above 243c4d7559SDave Watson * copyright notice, this list of conditions and the following 253c4d7559SDave Watson * disclaimer in the documentation and/or other materials 263c4d7559SDave Watson * provided with the distribution. 273c4d7559SDave Watson * 283c4d7559SDave Watson * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, 293c4d7559SDave Watson * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF 303c4d7559SDave Watson * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND 313c4d7559SDave Watson * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS 323c4d7559SDave Watson * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN 333c4d7559SDave Watson * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN 343c4d7559SDave Watson * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE 353c4d7559SDave Watson * SOFTWARE. 363c4d7559SDave Watson */ 373c4d7559SDave Watson 38c46234ebSDave Watson #include <linux/sched/signal.h> 393c4d7559SDave Watson #include <linux/module.h> 403c4d7559SDave Watson #include <crypto/aead.h> 413c4d7559SDave Watson 42c46234ebSDave Watson #include <net/strparser.h> 433c4d7559SDave Watson #include <net/tls.h> 443c4d7559SDave Watson 450927f71dSDoron Roberts-Kedes static int __skb_nsg(struct sk_buff *skb, int offset, int len, 460927f71dSDoron Roberts-Kedes unsigned int recursion_level) 470927f71dSDoron Roberts-Kedes { 480927f71dSDoron Roberts-Kedes int start = skb_headlen(skb); 490927f71dSDoron Roberts-Kedes int i, chunk = start - offset; 500927f71dSDoron Roberts-Kedes struct sk_buff *frag_iter; 510927f71dSDoron Roberts-Kedes int elt = 0; 520927f71dSDoron Roberts-Kedes 530927f71dSDoron Roberts-Kedes if (unlikely(recursion_level >= 24)) 540927f71dSDoron Roberts-Kedes return -EMSGSIZE; 550927f71dSDoron Roberts-Kedes 560927f71dSDoron Roberts-Kedes if (chunk > 0) { 570927f71dSDoron Roberts-Kedes if (chunk > len) 580927f71dSDoron Roberts-Kedes chunk = len; 590927f71dSDoron Roberts-Kedes elt++; 600927f71dSDoron Roberts-Kedes len -= chunk; 610927f71dSDoron Roberts-Kedes if (len == 0) 620927f71dSDoron Roberts-Kedes return elt; 630927f71dSDoron Roberts-Kedes offset += chunk; 640927f71dSDoron Roberts-Kedes } 650927f71dSDoron Roberts-Kedes 660927f71dSDoron Roberts-Kedes for (i = 0; i < skb_shinfo(skb)->nr_frags; i++) { 670927f71dSDoron Roberts-Kedes int end; 680927f71dSDoron Roberts-Kedes 690927f71dSDoron Roberts-Kedes WARN_ON(start > offset + len); 700927f71dSDoron Roberts-Kedes 710927f71dSDoron Roberts-Kedes end = start + skb_frag_size(&skb_shinfo(skb)->frags[i]); 720927f71dSDoron Roberts-Kedes chunk = end - offset; 730927f71dSDoron Roberts-Kedes if (chunk > 0) { 740927f71dSDoron Roberts-Kedes if (chunk > len) 750927f71dSDoron Roberts-Kedes chunk = len; 760927f71dSDoron Roberts-Kedes elt++; 770927f71dSDoron Roberts-Kedes len -= chunk; 780927f71dSDoron Roberts-Kedes if (len == 0) 790927f71dSDoron Roberts-Kedes return elt; 800927f71dSDoron Roberts-Kedes offset += chunk; 810927f71dSDoron Roberts-Kedes } 820927f71dSDoron Roberts-Kedes start = end; 830927f71dSDoron Roberts-Kedes } 840927f71dSDoron Roberts-Kedes 850927f71dSDoron Roberts-Kedes if (unlikely(skb_has_frag_list(skb))) { 860927f71dSDoron Roberts-Kedes skb_walk_frags(skb, frag_iter) { 870927f71dSDoron Roberts-Kedes int end, ret; 880927f71dSDoron Roberts-Kedes 890927f71dSDoron Roberts-Kedes WARN_ON(start > offset + len); 900927f71dSDoron Roberts-Kedes 910927f71dSDoron Roberts-Kedes end = start + frag_iter->len; 920927f71dSDoron Roberts-Kedes chunk = end - offset; 930927f71dSDoron Roberts-Kedes if (chunk > 0) { 940927f71dSDoron Roberts-Kedes if (chunk > len) 950927f71dSDoron Roberts-Kedes chunk = len; 960927f71dSDoron Roberts-Kedes ret = __skb_nsg(frag_iter, offset - start, chunk, 970927f71dSDoron Roberts-Kedes recursion_level + 1); 980927f71dSDoron Roberts-Kedes if (unlikely(ret < 0)) 990927f71dSDoron Roberts-Kedes return ret; 1000927f71dSDoron Roberts-Kedes elt += ret; 1010927f71dSDoron Roberts-Kedes len -= chunk; 1020927f71dSDoron Roberts-Kedes if (len == 0) 1030927f71dSDoron Roberts-Kedes return elt; 1040927f71dSDoron Roberts-Kedes offset += chunk; 1050927f71dSDoron Roberts-Kedes } 1060927f71dSDoron Roberts-Kedes start = end; 1070927f71dSDoron Roberts-Kedes } 1080927f71dSDoron Roberts-Kedes } 1090927f71dSDoron Roberts-Kedes BUG_ON(len); 1100927f71dSDoron Roberts-Kedes return elt; 1110927f71dSDoron Roberts-Kedes } 1120927f71dSDoron Roberts-Kedes 1130927f71dSDoron Roberts-Kedes /* Return the number of scatterlist elements required to completely map the 1140927f71dSDoron Roberts-Kedes * skb, or -EMSGSIZE if the recursion depth is exceeded. 1150927f71dSDoron Roberts-Kedes */ 1160927f71dSDoron Roberts-Kedes static int skb_nsg(struct sk_buff *skb, int offset, int len) 1170927f71dSDoron Roberts-Kedes { 1180927f71dSDoron Roberts-Kedes return __skb_nsg(skb, offset, len, 0); 1190927f71dSDoron Roberts-Kedes } 1200927f71dSDoron Roberts-Kedes 121130b392cSDave Watson static int padding_length(struct tls_sw_context_rx *ctx, 122b53f4976SJakub Kicinski struct tls_prot_info *prot, struct sk_buff *skb) 123130b392cSDave Watson { 124130b392cSDave Watson struct strp_msg *rxm = strp_msg(skb); 125130b392cSDave Watson int sub = 0; 126130b392cSDave Watson 127130b392cSDave Watson /* Determine zero-padding length */ 128b53f4976SJakub Kicinski if (prot->version == TLS_1_3_VERSION) { 129130b392cSDave Watson char content_type = 0; 130130b392cSDave Watson int err; 131130b392cSDave Watson int back = 17; 132130b392cSDave Watson 133130b392cSDave Watson while (content_type == 0) { 134b53f4976SJakub Kicinski if (back > rxm->full_len - prot->prepend_size) 135130b392cSDave Watson return -EBADMSG; 136130b392cSDave Watson err = skb_copy_bits(skb, 137130b392cSDave Watson rxm->offset + rxm->full_len - back, 138130b392cSDave Watson &content_type, 1); 139b53f4976SJakub Kicinski if (err) 140b53f4976SJakub Kicinski return err; 141130b392cSDave Watson if (content_type) 142130b392cSDave Watson break; 143130b392cSDave Watson sub++; 144130b392cSDave Watson back++; 145130b392cSDave Watson } 146130b392cSDave Watson ctx->control = content_type; 147130b392cSDave Watson } 148130b392cSDave Watson return sub; 149130b392cSDave Watson } 150130b392cSDave Watson 15194524d8fSVakul Garg static void tls_decrypt_done(struct crypto_async_request *req, int err) 15294524d8fSVakul Garg { 15394524d8fSVakul Garg struct aead_request *aead_req = (struct aead_request *)req; 15494524d8fSVakul Garg struct scatterlist *sgout = aead_req->dst; 155692d7b5dSVakul Garg struct scatterlist *sgin = aead_req->src; 1567a3dd8c8SJohn Fastabend struct tls_sw_context_rx *ctx; 1577a3dd8c8SJohn Fastabend struct tls_context *tls_ctx; 1584509de14SVakul Garg struct tls_prot_info *prot; 15994524d8fSVakul Garg struct scatterlist *sg; 1607a3dd8c8SJohn Fastabend struct sk_buff *skb; 16194524d8fSVakul Garg unsigned int pages; 1627a3dd8c8SJohn Fastabend int pending; 1637a3dd8c8SJohn Fastabend 1647a3dd8c8SJohn Fastabend skb = (struct sk_buff *)req->data; 1657a3dd8c8SJohn Fastabend tls_ctx = tls_get_ctx(skb->sk); 1667a3dd8c8SJohn Fastabend ctx = tls_sw_ctx_rx(tls_ctx); 1674509de14SVakul Garg prot = &tls_ctx->prot_info; 16894524d8fSVakul Garg 16994524d8fSVakul Garg /* Propagate if there was an err */ 17094524d8fSVakul Garg if (err) { 1715c5ec668SJakub Kicinski if (err == -EBADMSG) 1725c5ec668SJakub Kicinski TLS_INC_STATS(sock_net(skb->sk), 1735c5ec668SJakub Kicinski LINUX_MIB_TLSDECRYPTERROR); 17494524d8fSVakul Garg ctx->async_wait.err = err; 1757a3dd8c8SJohn Fastabend tls_err_abort(skb->sk, err); 176692d7b5dSVakul Garg } else { 177692d7b5dSVakul Garg struct strp_msg *rxm = strp_msg(skb); 178b53f4976SJakub Kicinski int pad; 179b53f4976SJakub Kicinski 180b53f4976SJakub Kicinski pad = padding_length(ctx, prot, skb); 181b53f4976SJakub Kicinski if (pad < 0) { 182b53f4976SJakub Kicinski ctx->async_wait.err = pad; 183b53f4976SJakub Kicinski tls_err_abort(skb->sk, pad); 184b53f4976SJakub Kicinski } else { 185b53f4976SJakub Kicinski rxm->full_len -= pad; 1864509de14SVakul Garg rxm->offset += prot->prepend_size; 1874509de14SVakul Garg rxm->full_len -= prot->overhead_size; 18894524d8fSVakul Garg } 189b53f4976SJakub Kicinski } 19094524d8fSVakul Garg 1917a3dd8c8SJohn Fastabend /* After using skb->sk to propagate sk through crypto async callback 1927a3dd8c8SJohn Fastabend * we need to NULL it again. 1937a3dd8c8SJohn Fastabend */ 1947a3dd8c8SJohn Fastabend skb->sk = NULL; 1957a3dd8c8SJohn Fastabend 19694524d8fSVakul Garg 197692d7b5dSVakul Garg /* Free the destination pages if skb was not decrypted inplace */ 198692d7b5dSVakul Garg if (sgout != sgin) { 19994524d8fSVakul Garg /* Skip the first S/G entry as it points to AAD */ 20094524d8fSVakul Garg for_each_sg(sg_next(sgout), sg, UINT_MAX, pages) { 20194524d8fSVakul Garg if (!sg) 20294524d8fSVakul Garg break; 20394524d8fSVakul Garg put_page(sg_page(sg)); 20494524d8fSVakul Garg } 205692d7b5dSVakul Garg } 20694524d8fSVakul Garg 20794524d8fSVakul Garg kfree(aead_req); 20894524d8fSVakul Garg 209692d7b5dSVakul Garg pending = atomic_dec_return(&ctx->decrypt_pending); 210692d7b5dSVakul Garg 21194524d8fSVakul Garg if (!pending && READ_ONCE(ctx->async_notify)) 21294524d8fSVakul Garg complete(&ctx->async_wait.completion); 21394524d8fSVakul Garg } 21494524d8fSVakul Garg 215c46234ebSDave Watson static int tls_do_decryption(struct sock *sk, 21694524d8fSVakul Garg struct sk_buff *skb, 217c46234ebSDave Watson struct scatterlist *sgin, 218c46234ebSDave Watson struct scatterlist *sgout, 219c46234ebSDave Watson char *iv_recv, 220c46234ebSDave Watson size_t data_len, 22194524d8fSVakul Garg struct aead_request *aead_req, 22294524d8fSVakul Garg bool async) 223c46234ebSDave Watson { 224c46234ebSDave Watson struct tls_context *tls_ctx = tls_get_ctx(sk); 2254509de14SVakul Garg struct tls_prot_info *prot = &tls_ctx->prot_info; 226f66de3eeSBoris Pismenny struct tls_sw_context_rx *ctx = tls_sw_ctx_rx(tls_ctx); 227c46234ebSDave Watson int ret; 228c46234ebSDave Watson 2290b243d00SVakul Garg aead_request_set_tfm(aead_req, ctx->aead_recv); 2304509de14SVakul Garg aead_request_set_ad(aead_req, prot->aad_size); 231c46234ebSDave Watson aead_request_set_crypt(aead_req, sgin, sgout, 2324509de14SVakul Garg data_len + prot->tag_size, 233c46234ebSDave Watson (u8 *)iv_recv); 234c46234ebSDave Watson 23594524d8fSVakul Garg if (async) { 2367a3dd8c8SJohn Fastabend /* Using skb->sk to push sk through to crypto async callback 2377a3dd8c8SJohn Fastabend * handler. This allows propagating errors up to the socket 2387a3dd8c8SJohn Fastabend * if needed. It _must_ be cleared in the async handler 239a88c26f6SVakul Garg * before consume_skb is called. We _know_ skb->sk is NULL 2407a3dd8c8SJohn Fastabend * because it is a clone from strparser. 2417a3dd8c8SJohn Fastabend */ 2427a3dd8c8SJohn Fastabend skb->sk = sk; 24394524d8fSVakul Garg aead_request_set_callback(aead_req, 24494524d8fSVakul Garg CRYPTO_TFM_REQ_MAY_BACKLOG, 24594524d8fSVakul Garg tls_decrypt_done, skb); 24694524d8fSVakul Garg atomic_inc(&ctx->decrypt_pending); 24794524d8fSVakul Garg } else { 24894524d8fSVakul Garg aead_request_set_callback(aead_req, 24994524d8fSVakul Garg CRYPTO_TFM_REQ_MAY_BACKLOG, 25094524d8fSVakul Garg crypto_req_done, &ctx->async_wait); 25194524d8fSVakul Garg } 25294524d8fSVakul Garg 25394524d8fSVakul Garg ret = crypto_aead_decrypt(aead_req); 25494524d8fSVakul Garg if (ret == -EINPROGRESS) { 25594524d8fSVakul Garg if (async) 25694524d8fSVakul Garg return ret; 25794524d8fSVakul Garg 25894524d8fSVakul Garg ret = crypto_wait_req(ret, &ctx->async_wait); 2595c5ec668SJakub Kicinski } else if (ret == -EBADMSG) { 2605c5ec668SJakub Kicinski TLS_INC_STATS(sock_net(sk), LINUX_MIB_TLSDECRYPTERROR); 26194524d8fSVakul Garg } 26294524d8fSVakul Garg 26394524d8fSVakul Garg if (async) 26494524d8fSVakul Garg atomic_dec(&ctx->decrypt_pending); 26594524d8fSVakul Garg 266c46234ebSDave Watson return ret; 267c46234ebSDave Watson } 268c46234ebSDave Watson 269d829e9c4SDaniel Borkmann static void tls_trim_both_msgs(struct sock *sk, int target_size) 2703c4d7559SDave Watson { 2713c4d7559SDave Watson struct tls_context *tls_ctx = tls_get_ctx(sk); 2724509de14SVakul Garg struct tls_prot_info *prot = &tls_ctx->prot_info; 273f66de3eeSBoris Pismenny struct tls_sw_context_tx *ctx = tls_sw_ctx_tx(tls_ctx); 274a42055e8SVakul Garg struct tls_rec *rec = ctx->open_rec; 2753c4d7559SDave Watson 276d829e9c4SDaniel Borkmann sk_msg_trim(sk, &rec->msg_plaintext, target_size); 2773c4d7559SDave Watson if (target_size > 0) 2784509de14SVakul Garg target_size += prot->overhead_size; 279d829e9c4SDaniel Borkmann sk_msg_trim(sk, &rec->msg_encrypted, target_size); 2803c4d7559SDave Watson } 2813c4d7559SDave Watson 282d829e9c4SDaniel Borkmann static int tls_alloc_encrypted_msg(struct sock *sk, int len) 2833c4d7559SDave Watson { 2843c4d7559SDave Watson struct tls_context *tls_ctx = tls_get_ctx(sk); 285f66de3eeSBoris Pismenny struct tls_sw_context_tx *ctx = tls_sw_ctx_tx(tls_ctx); 286a42055e8SVakul Garg struct tls_rec *rec = ctx->open_rec; 287d829e9c4SDaniel Borkmann struct sk_msg *msg_en = &rec->msg_encrypted; 2883c4d7559SDave Watson 289d829e9c4SDaniel Borkmann return sk_msg_alloc(sk, msg_en, len, 0); 2903c4d7559SDave Watson } 2913c4d7559SDave Watson 292d829e9c4SDaniel Borkmann static int tls_clone_plaintext_msg(struct sock *sk, int required) 2933c4d7559SDave Watson { 2943c4d7559SDave Watson struct tls_context *tls_ctx = tls_get_ctx(sk); 2954509de14SVakul Garg struct tls_prot_info *prot = &tls_ctx->prot_info; 296f66de3eeSBoris Pismenny struct tls_sw_context_tx *ctx = tls_sw_ctx_tx(tls_ctx); 297a42055e8SVakul Garg struct tls_rec *rec = ctx->open_rec; 298d829e9c4SDaniel Borkmann struct sk_msg *msg_pl = &rec->msg_plaintext; 299d829e9c4SDaniel Borkmann struct sk_msg *msg_en = &rec->msg_encrypted; 3004e6d4720SVakul Garg int skip, len; 3013c4d7559SDave Watson 302d829e9c4SDaniel Borkmann /* We add page references worth len bytes from encrypted sg 303d829e9c4SDaniel Borkmann * at the end of plaintext sg. It is guaranteed that msg_en 3044e6d4720SVakul Garg * has enough required room (ensured by caller). 3054e6d4720SVakul Garg */ 306d829e9c4SDaniel Borkmann len = required - msg_pl->sg.size; 30752ea992cSVakul Garg 308d829e9c4SDaniel Borkmann /* Skip initial bytes in msg_en's data to be able to use 309d829e9c4SDaniel Borkmann * same offset of both plain and encrypted data. 3104e6d4720SVakul Garg */ 3114509de14SVakul Garg skip = prot->prepend_size + msg_pl->sg.size; 3124e6d4720SVakul Garg 313d829e9c4SDaniel Borkmann return sk_msg_clone(sk, msg_pl, msg_en, skip, len); 3143c4d7559SDave Watson } 3153c4d7559SDave Watson 316d3b18ad3SJohn Fastabend static struct tls_rec *tls_get_rec(struct sock *sk) 317d3b18ad3SJohn Fastabend { 318d3b18ad3SJohn Fastabend struct tls_context *tls_ctx = tls_get_ctx(sk); 3194509de14SVakul Garg struct tls_prot_info *prot = &tls_ctx->prot_info; 320d3b18ad3SJohn Fastabend struct tls_sw_context_tx *ctx = tls_sw_ctx_tx(tls_ctx); 321d3b18ad3SJohn Fastabend struct sk_msg *msg_pl, *msg_en; 322d3b18ad3SJohn Fastabend struct tls_rec *rec; 323d3b18ad3SJohn Fastabend int mem_size; 324d3b18ad3SJohn Fastabend 325d3b18ad3SJohn Fastabend mem_size = sizeof(struct tls_rec) + crypto_aead_reqsize(ctx->aead_send); 326d3b18ad3SJohn Fastabend 327d3b18ad3SJohn Fastabend rec = kzalloc(mem_size, sk->sk_allocation); 328d3b18ad3SJohn Fastabend if (!rec) 329d3b18ad3SJohn Fastabend return NULL; 330d3b18ad3SJohn Fastabend 331d3b18ad3SJohn Fastabend msg_pl = &rec->msg_plaintext; 332d3b18ad3SJohn Fastabend msg_en = &rec->msg_encrypted; 333d3b18ad3SJohn Fastabend 334d3b18ad3SJohn Fastabend sk_msg_init(msg_pl); 335d3b18ad3SJohn Fastabend sk_msg_init(msg_en); 336d3b18ad3SJohn Fastabend 337d3b18ad3SJohn Fastabend sg_init_table(rec->sg_aead_in, 2); 3384509de14SVakul Garg sg_set_buf(&rec->sg_aead_in[0], rec->aad_space, prot->aad_size); 339d3b18ad3SJohn Fastabend sg_unmark_end(&rec->sg_aead_in[1]); 340d3b18ad3SJohn Fastabend 341d3b18ad3SJohn Fastabend sg_init_table(rec->sg_aead_out, 2); 3424509de14SVakul Garg sg_set_buf(&rec->sg_aead_out[0], rec->aad_space, prot->aad_size); 343d3b18ad3SJohn Fastabend sg_unmark_end(&rec->sg_aead_out[1]); 344d3b18ad3SJohn Fastabend 345d3b18ad3SJohn Fastabend return rec; 346d3b18ad3SJohn Fastabend } 347d3b18ad3SJohn Fastabend 348d3b18ad3SJohn Fastabend static void tls_free_rec(struct sock *sk, struct tls_rec *rec) 349d3b18ad3SJohn Fastabend { 350d3b18ad3SJohn Fastabend sk_msg_free(sk, &rec->msg_encrypted); 351d3b18ad3SJohn Fastabend sk_msg_free(sk, &rec->msg_plaintext); 352d3b18ad3SJohn Fastabend kfree(rec); 353d3b18ad3SJohn Fastabend } 354d3b18ad3SJohn Fastabend 355c774973eSVakul Garg static void tls_free_open_rec(struct sock *sk) 3563c4d7559SDave Watson { 3573c4d7559SDave Watson struct tls_context *tls_ctx = tls_get_ctx(sk); 358f66de3eeSBoris Pismenny struct tls_sw_context_tx *ctx = tls_sw_ctx_tx(tls_ctx); 359a42055e8SVakul Garg struct tls_rec *rec = ctx->open_rec; 3603c4d7559SDave Watson 361d3b18ad3SJohn Fastabend if (rec) { 362d3b18ad3SJohn Fastabend tls_free_rec(sk, rec); 363d3b18ad3SJohn Fastabend ctx->open_rec = NULL; 364d3b18ad3SJohn Fastabend } 3653c4d7559SDave Watson } 3663c4d7559SDave Watson 367a42055e8SVakul Garg int tls_tx_records(struct sock *sk, int flags) 368a42055e8SVakul Garg { 369a42055e8SVakul Garg struct tls_context *tls_ctx = tls_get_ctx(sk); 370a42055e8SVakul Garg struct tls_sw_context_tx *ctx = tls_sw_ctx_tx(tls_ctx); 371a42055e8SVakul Garg struct tls_rec *rec, *tmp; 372d829e9c4SDaniel Borkmann struct sk_msg *msg_en; 373a42055e8SVakul Garg int tx_flags, rc = 0; 374a42055e8SVakul Garg 375a42055e8SVakul Garg if (tls_is_partially_sent_record(tls_ctx)) { 3769932a29aSVakul Garg rec = list_first_entry(&ctx->tx_list, 377a42055e8SVakul Garg struct tls_rec, list); 378a42055e8SVakul Garg 379a42055e8SVakul Garg if (flags == -1) 380a42055e8SVakul Garg tx_flags = rec->tx_flags; 381a42055e8SVakul Garg else 382a42055e8SVakul Garg tx_flags = flags; 383a42055e8SVakul Garg 384a42055e8SVakul Garg rc = tls_push_partial_record(sk, tls_ctx, tx_flags); 385a42055e8SVakul Garg if (rc) 386a42055e8SVakul Garg goto tx_err; 387a42055e8SVakul Garg 388a42055e8SVakul Garg /* Full record has been transmitted. 3899932a29aSVakul Garg * Remove the head of tx_list 390a42055e8SVakul Garg */ 391a42055e8SVakul Garg list_del(&rec->list); 392d829e9c4SDaniel Borkmann sk_msg_free(sk, &rec->msg_plaintext); 393a42055e8SVakul Garg kfree(rec); 394a42055e8SVakul Garg } 395a42055e8SVakul Garg 3969932a29aSVakul Garg /* Tx all ready records */ 3979932a29aSVakul Garg list_for_each_entry_safe(rec, tmp, &ctx->tx_list, list) { 3989932a29aSVakul Garg if (READ_ONCE(rec->tx_ready)) { 399a42055e8SVakul Garg if (flags == -1) 400a42055e8SVakul Garg tx_flags = rec->tx_flags; 401a42055e8SVakul Garg else 402a42055e8SVakul Garg tx_flags = flags; 403a42055e8SVakul Garg 404d829e9c4SDaniel Borkmann msg_en = &rec->msg_encrypted; 405a42055e8SVakul Garg rc = tls_push_sg(sk, tls_ctx, 406d829e9c4SDaniel Borkmann &msg_en->sg.data[msg_en->sg.curr], 407a42055e8SVakul Garg 0, tx_flags); 408a42055e8SVakul Garg if (rc) 409a42055e8SVakul Garg goto tx_err; 410a42055e8SVakul Garg 411a42055e8SVakul Garg list_del(&rec->list); 412d829e9c4SDaniel Borkmann sk_msg_free(sk, &rec->msg_plaintext); 413a42055e8SVakul Garg kfree(rec); 414a42055e8SVakul Garg } else { 415a42055e8SVakul Garg break; 416a42055e8SVakul Garg } 417a42055e8SVakul Garg } 418a42055e8SVakul Garg 419a42055e8SVakul Garg tx_err: 420a42055e8SVakul Garg if (rc < 0 && rc != -EAGAIN) 421a42055e8SVakul Garg tls_err_abort(sk, EBADMSG); 422a42055e8SVakul Garg 423a42055e8SVakul Garg return rc; 424a42055e8SVakul Garg } 425a42055e8SVakul Garg 426a42055e8SVakul Garg static void tls_encrypt_done(struct crypto_async_request *req, int err) 427a42055e8SVakul Garg { 428a42055e8SVakul Garg struct aead_request *aead_req = (struct aead_request *)req; 429a42055e8SVakul Garg struct sock *sk = req->data; 430a42055e8SVakul Garg struct tls_context *tls_ctx = tls_get_ctx(sk); 4314509de14SVakul Garg struct tls_prot_info *prot = &tls_ctx->prot_info; 432a42055e8SVakul Garg struct tls_sw_context_tx *ctx = tls_sw_ctx_tx(tls_ctx); 433d829e9c4SDaniel Borkmann struct scatterlist *sge; 434d829e9c4SDaniel Borkmann struct sk_msg *msg_en; 435a42055e8SVakul Garg struct tls_rec *rec; 436a42055e8SVakul Garg bool ready = false; 437a42055e8SVakul Garg int pending; 438a42055e8SVakul Garg 439a42055e8SVakul Garg rec = container_of(aead_req, struct tls_rec, aead_req); 440d829e9c4SDaniel Borkmann msg_en = &rec->msg_encrypted; 441a42055e8SVakul Garg 442d829e9c4SDaniel Borkmann sge = sk_msg_elem(msg_en, msg_en->sg.curr); 4434509de14SVakul Garg sge->offset -= prot->prepend_size; 4444509de14SVakul Garg sge->length += prot->prepend_size; 445a42055e8SVakul Garg 44680ece6a0SVakul Garg /* Check if error is previously set on socket */ 447a42055e8SVakul Garg if (err || sk->sk_err) { 448a42055e8SVakul Garg rec = NULL; 449a42055e8SVakul Garg 450a42055e8SVakul Garg /* If err is already set on socket, return the same code */ 451a42055e8SVakul Garg if (sk->sk_err) { 452a42055e8SVakul Garg ctx->async_wait.err = sk->sk_err; 453a42055e8SVakul Garg } else { 454a42055e8SVakul Garg ctx->async_wait.err = err; 455a42055e8SVakul Garg tls_err_abort(sk, err); 456a42055e8SVakul Garg } 457a42055e8SVakul Garg } 458a42055e8SVakul Garg 4599932a29aSVakul Garg if (rec) { 4609932a29aSVakul Garg struct tls_rec *first_rec; 4619932a29aSVakul Garg 4629932a29aSVakul Garg /* Mark the record as ready for transmission */ 4639932a29aSVakul Garg smp_store_mb(rec->tx_ready, true); 4649932a29aSVakul Garg 4659932a29aSVakul Garg /* If received record is at head of tx_list, schedule tx */ 4669932a29aSVakul Garg first_rec = list_first_entry(&ctx->tx_list, 4679932a29aSVakul Garg struct tls_rec, list); 4689932a29aSVakul Garg if (rec == first_rec) 4699932a29aSVakul Garg ready = true; 4709932a29aSVakul Garg } 471a42055e8SVakul Garg 472a42055e8SVakul Garg pending = atomic_dec_return(&ctx->encrypt_pending); 473a42055e8SVakul Garg 474a42055e8SVakul Garg if (!pending && READ_ONCE(ctx->async_notify)) 475a42055e8SVakul Garg complete(&ctx->async_wait.completion); 476a42055e8SVakul Garg 477a42055e8SVakul Garg if (!ready) 478a42055e8SVakul Garg return; 479a42055e8SVakul Garg 480a42055e8SVakul Garg /* Schedule the transmission */ 481a42055e8SVakul Garg if (!test_and_set_bit(BIT_TX_SCHEDULED, &ctx->tx_bitmask)) 482d829e9c4SDaniel Borkmann schedule_delayed_work(&ctx->tx_work.work, 1); 483a42055e8SVakul Garg } 484a42055e8SVakul Garg 485a42055e8SVakul Garg static int tls_do_encryption(struct sock *sk, 486a42055e8SVakul Garg struct tls_context *tls_ctx, 487a447da7dSDaniel Borkmann struct tls_sw_context_tx *ctx, 488a447da7dSDaniel Borkmann struct aead_request *aead_req, 489d829e9c4SDaniel Borkmann size_t data_len, u32 start) 4903c4d7559SDave Watson { 4914509de14SVakul Garg struct tls_prot_info *prot = &tls_ctx->prot_info; 492a42055e8SVakul Garg struct tls_rec *rec = ctx->open_rec; 493d829e9c4SDaniel Borkmann struct sk_msg *msg_en = &rec->msg_encrypted; 494d829e9c4SDaniel Borkmann struct scatterlist *sge = sk_msg_elem(msg_en, start); 495f295b3aeSVakul Garg int rc, iv_offset = 0; 4963c4d7559SDave Watson 497f295b3aeSVakul Garg /* For CCM based ciphers, first byte of IV is a constant */ 498f295b3aeSVakul Garg if (prot->cipher_type == TLS_CIPHER_AES_CCM_128) { 499f295b3aeSVakul Garg rec->iv_data[0] = TLS_AES_CCM_IV_B0_BYTE; 500f295b3aeSVakul Garg iv_offset = 1; 501f295b3aeSVakul Garg } 502f295b3aeSVakul Garg 503f295b3aeSVakul Garg memcpy(&rec->iv_data[iv_offset], tls_ctx->tx.iv, 504f295b3aeSVakul Garg prot->iv_size + prot->salt_size); 505f295b3aeSVakul Garg 506f295b3aeSVakul Garg xor_iv_with_seq(prot->version, rec->iv_data, tls_ctx->tx.rec_seq); 50732eb67b9SDave Watson 5084509de14SVakul Garg sge->offset += prot->prepend_size; 5094509de14SVakul Garg sge->length -= prot->prepend_size; 5103c4d7559SDave Watson 511d829e9c4SDaniel Borkmann msg_en->sg.curr = start; 5124e6d4720SVakul Garg 5133c4d7559SDave Watson aead_request_set_tfm(aead_req, ctx->aead_send); 5144509de14SVakul Garg aead_request_set_ad(aead_req, prot->aad_size); 515d829e9c4SDaniel Borkmann aead_request_set_crypt(aead_req, rec->sg_aead_in, 516d829e9c4SDaniel Borkmann rec->sg_aead_out, 51732eb67b9SDave Watson data_len, rec->iv_data); 518a54667f6SVakul Garg 519a54667f6SVakul Garg aead_request_set_callback(aead_req, CRYPTO_TFM_REQ_MAY_BACKLOG, 520a42055e8SVakul Garg tls_encrypt_done, sk); 521a54667f6SVakul Garg 5229932a29aSVakul Garg /* Add the record in tx_list */ 5239932a29aSVakul Garg list_add_tail((struct list_head *)&rec->list, &ctx->tx_list); 524a42055e8SVakul Garg atomic_inc(&ctx->encrypt_pending); 5253c4d7559SDave Watson 526a42055e8SVakul Garg rc = crypto_aead_encrypt(aead_req); 527a42055e8SVakul Garg if (!rc || rc != -EINPROGRESS) { 528a42055e8SVakul Garg atomic_dec(&ctx->encrypt_pending); 5294509de14SVakul Garg sge->offset -= prot->prepend_size; 5304509de14SVakul Garg sge->length += prot->prepend_size; 531a42055e8SVakul Garg } 5323c4d7559SDave Watson 5339932a29aSVakul Garg if (!rc) { 5349932a29aSVakul Garg WRITE_ONCE(rec->tx_ready, true); 5359932a29aSVakul Garg } else if (rc != -EINPROGRESS) { 5369932a29aSVakul Garg list_del(&rec->list); 537a42055e8SVakul Garg return rc; 5389932a29aSVakul Garg } 539a42055e8SVakul Garg 540a42055e8SVakul Garg /* Unhook the record from context if encryption is not failure */ 541a42055e8SVakul Garg ctx->open_rec = NULL; 542fb0f886fSJakub Kicinski tls_advance_record_sn(sk, prot, &tls_ctx->tx); 5433c4d7559SDave Watson return rc; 5443c4d7559SDave Watson } 5453c4d7559SDave Watson 546d3b18ad3SJohn Fastabend static int tls_split_open_record(struct sock *sk, struct tls_rec *from, 547d3b18ad3SJohn Fastabend struct tls_rec **to, struct sk_msg *msg_opl, 548d3b18ad3SJohn Fastabend struct sk_msg *msg_oen, u32 split_point, 549d3b18ad3SJohn Fastabend u32 tx_overhead_size, u32 *orig_end) 550d3b18ad3SJohn Fastabend { 551d3b18ad3SJohn Fastabend u32 i, j, bytes = 0, apply = msg_opl->apply_bytes; 552d3b18ad3SJohn Fastabend struct scatterlist *sge, *osge, *nsge; 553d3b18ad3SJohn Fastabend u32 orig_size = msg_opl->sg.size; 554d3b18ad3SJohn Fastabend struct scatterlist tmp = { }; 555d3b18ad3SJohn Fastabend struct sk_msg *msg_npl; 556d3b18ad3SJohn Fastabend struct tls_rec *new; 557d3b18ad3SJohn Fastabend int ret; 558d3b18ad3SJohn Fastabend 559d3b18ad3SJohn Fastabend new = tls_get_rec(sk); 560d3b18ad3SJohn Fastabend if (!new) 561d3b18ad3SJohn Fastabend return -ENOMEM; 562d3b18ad3SJohn Fastabend ret = sk_msg_alloc(sk, &new->msg_encrypted, msg_opl->sg.size + 563d3b18ad3SJohn Fastabend tx_overhead_size, 0); 564d3b18ad3SJohn Fastabend if (ret < 0) { 565d3b18ad3SJohn Fastabend tls_free_rec(sk, new); 566d3b18ad3SJohn Fastabend return ret; 567d3b18ad3SJohn Fastabend } 568d3b18ad3SJohn Fastabend 569d3b18ad3SJohn Fastabend *orig_end = msg_opl->sg.end; 570d3b18ad3SJohn Fastabend i = msg_opl->sg.start; 571d3b18ad3SJohn Fastabend sge = sk_msg_elem(msg_opl, i); 572d3b18ad3SJohn Fastabend while (apply && sge->length) { 573d3b18ad3SJohn Fastabend if (sge->length > apply) { 574d3b18ad3SJohn Fastabend u32 len = sge->length - apply; 575d3b18ad3SJohn Fastabend 576d3b18ad3SJohn Fastabend get_page(sg_page(sge)); 577d3b18ad3SJohn Fastabend sg_set_page(&tmp, sg_page(sge), len, 578d3b18ad3SJohn Fastabend sge->offset + apply); 579d3b18ad3SJohn Fastabend sge->length = apply; 580d3b18ad3SJohn Fastabend bytes += apply; 581d3b18ad3SJohn Fastabend apply = 0; 582d3b18ad3SJohn Fastabend } else { 583d3b18ad3SJohn Fastabend apply -= sge->length; 584d3b18ad3SJohn Fastabend bytes += sge->length; 585d3b18ad3SJohn Fastabend } 586d3b18ad3SJohn Fastabend 587d3b18ad3SJohn Fastabend sk_msg_iter_var_next(i); 588d3b18ad3SJohn Fastabend if (i == msg_opl->sg.end) 589d3b18ad3SJohn Fastabend break; 590d3b18ad3SJohn Fastabend sge = sk_msg_elem(msg_opl, i); 591d3b18ad3SJohn Fastabend } 592d3b18ad3SJohn Fastabend 593d3b18ad3SJohn Fastabend msg_opl->sg.end = i; 594d3b18ad3SJohn Fastabend msg_opl->sg.curr = i; 595d3b18ad3SJohn Fastabend msg_opl->sg.copybreak = 0; 596d3b18ad3SJohn Fastabend msg_opl->apply_bytes = 0; 597d3b18ad3SJohn Fastabend msg_opl->sg.size = bytes; 598d3b18ad3SJohn Fastabend 599d3b18ad3SJohn Fastabend msg_npl = &new->msg_plaintext; 600d3b18ad3SJohn Fastabend msg_npl->apply_bytes = apply; 601d3b18ad3SJohn Fastabend msg_npl->sg.size = orig_size - bytes; 602d3b18ad3SJohn Fastabend 603d3b18ad3SJohn Fastabend j = msg_npl->sg.start; 604d3b18ad3SJohn Fastabend nsge = sk_msg_elem(msg_npl, j); 605d3b18ad3SJohn Fastabend if (tmp.length) { 606d3b18ad3SJohn Fastabend memcpy(nsge, &tmp, sizeof(*nsge)); 607d3b18ad3SJohn Fastabend sk_msg_iter_var_next(j); 608d3b18ad3SJohn Fastabend nsge = sk_msg_elem(msg_npl, j); 609d3b18ad3SJohn Fastabend } 610d3b18ad3SJohn Fastabend 611d3b18ad3SJohn Fastabend osge = sk_msg_elem(msg_opl, i); 612d3b18ad3SJohn Fastabend while (osge->length) { 613d3b18ad3SJohn Fastabend memcpy(nsge, osge, sizeof(*nsge)); 614d3b18ad3SJohn Fastabend sg_unmark_end(nsge); 615d3b18ad3SJohn Fastabend sk_msg_iter_var_next(i); 616d3b18ad3SJohn Fastabend sk_msg_iter_var_next(j); 617d3b18ad3SJohn Fastabend if (i == *orig_end) 618d3b18ad3SJohn Fastabend break; 619d3b18ad3SJohn Fastabend osge = sk_msg_elem(msg_opl, i); 620d3b18ad3SJohn Fastabend nsge = sk_msg_elem(msg_npl, j); 621d3b18ad3SJohn Fastabend } 622d3b18ad3SJohn Fastabend 623d3b18ad3SJohn Fastabend msg_npl->sg.end = j; 624d3b18ad3SJohn Fastabend msg_npl->sg.curr = j; 625d3b18ad3SJohn Fastabend msg_npl->sg.copybreak = 0; 626d3b18ad3SJohn Fastabend 627d3b18ad3SJohn Fastabend *to = new; 628d3b18ad3SJohn Fastabend return 0; 629d3b18ad3SJohn Fastabend } 630d3b18ad3SJohn Fastabend 631d3b18ad3SJohn Fastabend static void tls_merge_open_record(struct sock *sk, struct tls_rec *to, 632d3b18ad3SJohn Fastabend struct tls_rec *from, u32 orig_end) 633d3b18ad3SJohn Fastabend { 634d3b18ad3SJohn Fastabend struct sk_msg *msg_npl = &from->msg_plaintext; 635d3b18ad3SJohn Fastabend struct sk_msg *msg_opl = &to->msg_plaintext; 636d3b18ad3SJohn Fastabend struct scatterlist *osge, *nsge; 637d3b18ad3SJohn Fastabend u32 i, j; 638d3b18ad3SJohn Fastabend 639d3b18ad3SJohn Fastabend i = msg_opl->sg.end; 640d3b18ad3SJohn Fastabend sk_msg_iter_var_prev(i); 641d3b18ad3SJohn Fastabend j = msg_npl->sg.start; 642d3b18ad3SJohn Fastabend 643d3b18ad3SJohn Fastabend osge = sk_msg_elem(msg_opl, i); 644d3b18ad3SJohn Fastabend nsge = sk_msg_elem(msg_npl, j); 645d3b18ad3SJohn Fastabend 646d3b18ad3SJohn Fastabend if (sg_page(osge) == sg_page(nsge) && 647d3b18ad3SJohn Fastabend osge->offset + osge->length == nsge->offset) { 648d3b18ad3SJohn Fastabend osge->length += nsge->length; 649d3b18ad3SJohn Fastabend put_page(sg_page(nsge)); 650d3b18ad3SJohn Fastabend } 651d3b18ad3SJohn Fastabend 652d3b18ad3SJohn Fastabend msg_opl->sg.end = orig_end; 653d3b18ad3SJohn Fastabend msg_opl->sg.curr = orig_end; 654d3b18ad3SJohn Fastabend msg_opl->sg.copybreak = 0; 655d3b18ad3SJohn Fastabend msg_opl->apply_bytes = msg_opl->sg.size + msg_npl->sg.size; 656d3b18ad3SJohn Fastabend msg_opl->sg.size += msg_npl->sg.size; 657d3b18ad3SJohn Fastabend 658d3b18ad3SJohn Fastabend sk_msg_free(sk, &to->msg_encrypted); 659d3b18ad3SJohn Fastabend sk_msg_xfer_full(&to->msg_encrypted, &from->msg_encrypted); 660d3b18ad3SJohn Fastabend 661d3b18ad3SJohn Fastabend kfree(from); 662d3b18ad3SJohn Fastabend } 663d3b18ad3SJohn Fastabend 6643c4d7559SDave Watson static int tls_push_record(struct sock *sk, int flags, 6653c4d7559SDave Watson unsigned char record_type) 6663c4d7559SDave Watson { 6673c4d7559SDave Watson struct tls_context *tls_ctx = tls_get_ctx(sk); 6684509de14SVakul Garg struct tls_prot_info *prot = &tls_ctx->prot_info; 669f66de3eeSBoris Pismenny struct tls_sw_context_tx *ctx = tls_sw_ctx_tx(tls_ctx); 670d3b18ad3SJohn Fastabend struct tls_rec *rec = ctx->open_rec, *tmp = NULL; 671d3b18ad3SJohn Fastabend u32 i, split_point, uninitialized_var(orig_end); 672d829e9c4SDaniel Borkmann struct sk_msg *msg_pl, *msg_en; 673a447da7dSDaniel Borkmann struct aead_request *req; 674d3b18ad3SJohn Fastabend bool split; 6753c4d7559SDave Watson int rc; 6763c4d7559SDave Watson 677a42055e8SVakul Garg if (!rec) 678a42055e8SVakul Garg return 0; 679a447da7dSDaniel Borkmann 680d829e9c4SDaniel Borkmann msg_pl = &rec->msg_plaintext; 681d829e9c4SDaniel Borkmann msg_en = &rec->msg_encrypted; 682d829e9c4SDaniel Borkmann 683d3b18ad3SJohn Fastabend split_point = msg_pl->apply_bytes; 684d3b18ad3SJohn Fastabend split = split_point && split_point < msg_pl->sg.size; 685d3b18ad3SJohn Fastabend if (split) { 686d3b18ad3SJohn Fastabend rc = tls_split_open_record(sk, rec, &tmp, msg_pl, msg_en, 6874509de14SVakul Garg split_point, prot->overhead_size, 688d3b18ad3SJohn Fastabend &orig_end); 689d3b18ad3SJohn Fastabend if (rc < 0) 690d3b18ad3SJohn Fastabend return rc; 691d3b18ad3SJohn Fastabend sk_msg_trim(sk, msg_en, msg_pl->sg.size + 6924509de14SVakul Garg prot->overhead_size); 693d3b18ad3SJohn Fastabend } 694d3b18ad3SJohn Fastabend 695a42055e8SVakul Garg rec->tx_flags = flags; 696a42055e8SVakul Garg req = &rec->aead_req; 6973c4d7559SDave Watson 698d829e9c4SDaniel Borkmann i = msg_pl->sg.end; 699d829e9c4SDaniel Borkmann sk_msg_iter_var_prev(i); 700130b392cSDave Watson 701130b392cSDave Watson rec->content_type = record_type; 7024509de14SVakul Garg if (prot->version == TLS_1_3_VERSION) { 703130b392cSDave Watson /* Add content type to end of message. No padding added */ 704130b392cSDave Watson sg_set_buf(&rec->sg_content_type, &rec->content_type, 1); 705130b392cSDave Watson sg_mark_end(&rec->sg_content_type); 706130b392cSDave Watson sg_chain(msg_pl->sg.data, msg_pl->sg.end + 1, 707130b392cSDave Watson &rec->sg_content_type); 708130b392cSDave Watson } else { 709d829e9c4SDaniel Borkmann sg_mark_end(sk_msg_elem(msg_pl, i)); 710130b392cSDave Watson } 711a42055e8SVakul Garg 712d829e9c4SDaniel Borkmann i = msg_pl->sg.start; 713d829e9c4SDaniel Borkmann sg_chain(rec->sg_aead_in, 2, rec->inplace_crypto ? 714d829e9c4SDaniel Borkmann &msg_en->sg.data[i] : &msg_pl->sg.data[i]); 715d829e9c4SDaniel Borkmann 716d829e9c4SDaniel Borkmann i = msg_en->sg.end; 717d829e9c4SDaniel Borkmann sk_msg_iter_var_prev(i); 718d829e9c4SDaniel Borkmann sg_mark_end(sk_msg_elem(msg_en, i)); 719d829e9c4SDaniel Borkmann 720d829e9c4SDaniel Borkmann i = msg_en->sg.start; 721d829e9c4SDaniel Borkmann sg_chain(rec->sg_aead_out, 2, &msg_en->sg.data[i]); 722d829e9c4SDaniel Borkmann 7234509de14SVakul Garg tls_make_aad(rec->aad_space, msg_pl->sg.size + prot->tail_size, 7244509de14SVakul Garg tls_ctx->tx.rec_seq, prot->rec_seq_size, 7254509de14SVakul Garg record_type, prot->version); 7263c4d7559SDave Watson 7273c4d7559SDave Watson tls_fill_prepend(tls_ctx, 728d829e9c4SDaniel Borkmann page_address(sg_page(&msg_en->sg.data[i])) + 729130b392cSDave Watson msg_en->sg.data[i].offset, 7304509de14SVakul Garg msg_pl->sg.size + prot->tail_size, 7314509de14SVakul Garg record_type, prot->version); 7323c4d7559SDave Watson 733d829e9c4SDaniel Borkmann tls_ctx->pending_open_record_frags = false; 7343c4d7559SDave Watson 735130b392cSDave Watson rc = tls_do_encryption(sk, tls_ctx, ctx, req, 7364509de14SVakul Garg msg_pl->sg.size + prot->tail_size, i); 7373c4d7559SDave Watson if (rc < 0) { 738d3b18ad3SJohn Fastabend if (rc != -EINPROGRESS) { 739a42055e8SVakul Garg tls_err_abort(sk, EBADMSG); 740d3b18ad3SJohn Fastabend if (split) { 741d3b18ad3SJohn Fastabend tls_ctx->pending_open_record_frags = true; 742d3b18ad3SJohn Fastabend tls_merge_open_record(sk, rec, tmp, orig_end); 743d3b18ad3SJohn Fastabend } 744d3b18ad3SJohn Fastabend } 7455b053e12SDave Watson ctx->async_capable = 1; 746a42055e8SVakul Garg return rc; 747d3b18ad3SJohn Fastabend } else if (split) { 748d3b18ad3SJohn Fastabend msg_pl = &tmp->msg_plaintext; 749d3b18ad3SJohn Fastabend msg_en = &tmp->msg_encrypted; 7504509de14SVakul Garg sk_msg_trim(sk, msg_en, msg_pl->sg.size + prot->overhead_size); 751d3b18ad3SJohn Fastabend tls_ctx->pending_open_record_frags = true; 752d3b18ad3SJohn Fastabend ctx->open_rec = tmp; 7533c4d7559SDave Watson } 7543c4d7559SDave Watson 755a42055e8SVakul Garg return tls_tx_records(sk, flags); 7563c4d7559SDave Watson } 7573c4d7559SDave Watson 758d3b18ad3SJohn Fastabend static int bpf_exec_tx_verdict(struct sk_msg *msg, struct sock *sk, 759d3b18ad3SJohn Fastabend bool full_record, u8 record_type, 760d3b18ad3SJohn Fastabend size_t *copied, int flags) 7613c4d7559SDave Watson { 7623c4d7559SDave Watson struct tls_context *tls_ctx = tls_get_ctx(sk); 763f66de3eeSBoris Pismenny struct tls_sw_context_tx *ctx = tls_sw_ctx_tx(tls_ctx); 764d3b18ad3SJohn Fastabend struct sk_msg msg_redir = { }; 765d3b18ad3SJohn Fastabend struct sk_psock *psock; 766d3b18ad3SJohn Fastabend struct sock *sk_redir; 767a42055e8SVakul Garg struct tls_rec *rec; 7680608c69cSJohn Fastabend bool enospc, policy; 769d3b18ad3SJohn Fastabend int err = 0, send; 7707246d8edSJohn Fastabend u32 delta = 0; 771a42055e8SVakul Garg 7720608c69cSJohn Fastabend policy = !(flags & MSG_SENDPAGE_NOPOLICY); 773d3b18ad3SJohn Fastabend psock = sk_psock_get(sk); 7740608c69cSJohn Fastabend if (!psock || !policy) 775d3b18ad3SJohn Fastabend return tls_push_record(sk, flags, record_type); 776d3b18ad3SJohn Fastabend more_data: 777d3b18ad3SJohn Fastabend enospc = sk_msg_full(msg); 7787246d8edSJohn Fastabend if (psock->eval == __SK_NONE) { 7797246d8edSJohn Fastabend delta = msg->sg.size; 780d3b18ad3SJohn Fastabend psock->eval = sk_psock_msg_verdict(sk, psock, msg); 7817246d8edSJohn Fastabend if (delta < msg->sg.size) 7827246d8edSJohn Fastabend delta -= msg->sg.size; 7837246d8edSJohn Fastabend else 7847246d8edSJohn Fastabend delta = 0; 7857246d8edSJohn Fastabend } 786d3b18ad3SJohn Fastabend if (msg->cork_bytes && msg->cork_bytes > msg->sg.size && 787d3b18ad3SJohn Fastabend !enospc && !full_record) { 788d3b18ad3SJohn Fastabend err = -ENOSPC; 789d3b18ad3SJohn Fastabend goto out_err; 790d3b18ad3SJohn Fastabend } 791d3b18ad3SJohn Fastabend msg->cork_bytes = 0; 792d3b18ad3SJohn Fastabend send = msg->sg.size; 793d3b18ad3SJohn Fastabend if (msg->apply_bytes && msg->apply_bytes < send) 794d3b18ad3SJohn Fastabend send = msg->apply_bytes; 795a42055e8SVakul Garg 796d3b18ad3SJohn Fastabend switch (psock->eval) { 797d3b18ad3SJohn Fastabend case __SK_PASS: 798d3b18ad3SJohn Fastabend err = tls_push_record(sk, flags, record_type); 799d3b18ad3SJohn Fastabend if (err < 0) { 800d3b18ad3SJohn Fastabend *copied -= sk_msg_free(sk, msg); 801d3b18ad3SJohn Fastabend tls_free_open_rec(sk); 802d3b18ad3SJohn Fastabend goto out_err; 803d3b18ad3SJohn Fastabend } 804d3b18ad3SJohn Fastabend break; 805d3b18ad3SJohn Fastabend case __SK_REDIRECT: 806d3b18ad3SJohn Fastabend sk_redir = psock->sk_redir; 807d3b18ad3SJohn Fastabend memcpy(&msg_redir, msg, sizeof(*msg)); 808d3b18ad3SJohn Fastabend if (msg->apply_bytes < send) 809d3b18ad3SJohn Fastabend msg->apply_bytes = 0; 810d3b18ad3SJohn Fastabend else 811d3b18ad3SJohn Fastabend msg->apply_bytes -= send; 812d3b18ad3SJohn Fastabend sk_msg_return_zero(sk, msg, send); 813d3b18ad3SJohn Fastabend msg->sg.size -= send; 814d3b18ad3SJohn Fastabend release_sock(sk); 815d3b18ad3SJohn Fastabend err = tcp_bpf_sendmsg_redir(sk_redir, &msg_redir, send, flags); 816d3b18ad3SJohn Fastabend lock_sock(sk); 817d3b18ad3SJohn Fastabend if (err < 0) { 818d3b18ad3SJohn Fastabend *copied -= sk_msg_free_nocharge(sk, &msg_redir); 819d3b18ad3SJohn Fastabend msg->sg.size = 0; 820d3b18ad3SJohn Fastabend } 821d3b18ad3SJohn Fastabend if (msg->sg.size == 0) 822d3b18ad3SJohn Fastabend tls_free_open_rec(sk); 823d3b18ad3SJohn Fastabend break; 824d3b18ad3SJohn Fastabend case __SK_DROP: 825d3b18ad3SJohn Fastabend default: 826d3b18ad3SJohn Fastabend sk_msg_free_partial(sk, msg, send); 827d3b18ad3SJohn Fastabend if (msg->apply_bytes < send) 828d3b18ad3SJohn Fastabend msg->apply_bytes = 0; 829d3b18ad3SJohn Fastabend else 830d3b18ad3SJohn Fastabend msg->apply_bytes -= send; 831d3b18ad3SJohn Fastabend if (msg->sg.size == 0) 832d3b18ad3SJohn Fastabend tls_free_open_rec(sk); 8337246d8edSJohn Fastabend *copied -= (send + delta); 834d3b18ad3SJohn Fastabend err = -EACCES; 835d3b18ad3SJohn Fastabend } 836a42055e8SVakul Garg 837d3b18ad3SJohn Fastabend if (likely(!err)) { 838d3b18ad3SJohn Fastabend bool reset_eval = !ctx->open_rec; 839d3b18ad3SJohn Fastabend 840d3b18ad3SJohn Fastabend rec = ctx->open_rec; 841d3b18ad3SJohn Fastabend if (rec) { 842d3b18ad3SJohn Fastabend msg = &rec->msg_plaintext; 843d3b18ad3SJohn Fastabend if (!msg->apply_bytes) 844d3b18ad3SJohn Fastabend reset_eval = true; 845d3b18ad3SJohn Fastabend } 846d3b18ad3SJohn Fastabend if (reset_eval) { 847d3b18ad3SJohn Fastabend psock->eval = __SK_NONE; 848d3b18ad3SJohn Fastabend if (psock->sk_redir) { 849d3b18ad3SJohn Fastabend sock_put(psock->sk_redir); 850d3b18ad3SJohn Fastabend psock->sk_redir = NULL; 851d3b18ad3SJohn Fastabend } 852d3b18ad3SJohn Fastabend } 853d3b18ad3SJohn Fastabend if (rec) 854d3b18ad3SJohn Fastabend goto more_data; 855d3b18ad3SJohn Fastabend } 856d3b18ad3SJohn Fastabend out_err: 857d3b18ad3SJohn Fastabend sk_psock_put(sk, psock); 858d3b18ad3SJohn Fastabend return err; 859d3b18ad3SJohn Fastabend } 860d3b18ad3SJohn Fastabend 861d3b18ad3SJohn Fastabend static int tls_sw_push_pending_record(struct sock *sk, int flags) 862d3b18ad3SJohn Fastabend { 863d3b18ad3SJohn Fastabend struct tls_context *tls_ctx = tls_get_ctx(sk); 864d3b18ad3SJohn Fastabend struct tls_sw_context_tx *ctx = tls_sw_ctx_tx(tls_ctx); 865d3b18ad3SJohn Fastabend struct tls_rec *rec = ctx->open_rec; 866d3b18ad3SJohn Fastabend struct sk_msg *msg_pl; 867d3b18ad3SJohn Fastabend size_t copied; 868d3b18ad3SJohn Fastabend 869a42055e8SVakul Garg if (!rec) 870d3b18ad3SJohn Fastabend return 0; 871a42055e8SVakul Garg 872d829e9c4SDaniel Borkmann msg_pl = &rec->msg_plaintext; 873d3b18ad3SJohn Fastabend copied = msg_pl->sg.size; 874d3b18ad3SJohn Fastabend if (!copied) 875d3b18ad3SJohn Fastabend return 0; 876a42055e8SVakul Garg 877d3b18ad3SJohn Fastabend return bpf_exec_tx_verdict(msg_pl, sk, true, TLS_RECORD_TYPE_DATA, 878d3b18ad3SJohn Fastabend &copied, flags); 879a42055e8SVakul Garg } 880a42055e8SVakul Garg 881a42055e8SVakul Garg int tls_sw_sendmsg(struct sock *sk, struct msghdr *msg, size_t size) 882a42055e8SVakul Garg { 8833c4d7559SDave Watson long timeo = sock_sndtimeo(sk, msg->msg_flags & MSG_DONTWAIT); 884a42055e8SVakul Garg struct tls_context *tls_ctx = tls_get_ctx(sk); 8854509de14SVakul Garg struct tls_prot_info *prot = &tls_ctx->prot_info; 886a42055e8SVakul Garg struct tls_sw_context_tx *ctx = tls_sw_ctx_tx(tls_ctx); 8875b053e12SDave Watson bool async_capable = ctx->async_capable; 888a42055e8SVakul Garg unsigned char record_type = TLS_RECORD_TYPE_DATA; 88900e23707SDavid Howells bool is_kvec = iov_iter_is_kvec(&msg->msg_iter); 8903c4d7559SDave Watson bool eor = !(msg->msg_flags & MSG_MORE); 8913c4d7559SDave Watson size_t try_to_copy, copied = 0; 892d829e9c4SDaniel Borkmann struct sk_msg *msg_pl, *msg_en; 893a42055e8SVakul Garg struct tls_rec *rec; 894a42055e8SVakul Garg int required_size; 895a42055e8SVakul Garg int num_async = 0; 8963c4d7559SDave Watson bool full_record; 897a42055e8SVakul Garg int record_room; 898a42055e8SVakul Garg int num_zc = 0; 8993c4d7559SDave Watson int orig_size; 9004128c0cfSVakul Garg int ret = 0; 9013c4d7559SDave Watson 9023c4d7559SDave Watson if (msg->msg_flags & ~(MSG_MORE | MSG_DONTWAIT | MSG_NOSIGNAL)) 9033c4d7559SDave Watson return -ENOTSUPP; 9043c4d7559SDave Watson 9053c4d7559SDave Watson lock_sock(sk); 9063c4d7559SDave Watson 907a42055e8SVakul Garg /* Wait till there is any pending write on socket */ 908a42055e8SVakul Garg if (unlikely(sk->sk_write_pending)) { 909a42055e8SVakul Garg ret = wait_on_pending_writer(sk, &timeo); 910a42055e8SVakul Garg if (unlikely(ret)) 9113c4d7559SDave Watson goto send_end; 912a42055e8SVakul Garg } 9133c4d7559SDave Watson 9143c4d7559SDave Watson if (unlikely(msg->msg_controllen)) { 9153c4d7559SDave Watson ret = tls_proccess_cmsg(sk, msg, &record_type); 916a42055e8SVakul Garg if (ret) { 917a42055e8SVakul Garg if (ret == -EINPROGRESS) 918a42055e8SVakul Garg num_async++; 919a42055e8SVakul Garg else if (ret != -EAGAIN) 9203c4d7559SDave Watson goto send_end; 9213c4d7559SDave Watson } 922a42055e8SVakul Garg } 9233c4d7559SDave Watson 9243c4d7559SDave Watson while (msg_data_left(msg)) { 9253c4d7559SDave Watson if (sk->sk_err) { 92630be8f8dSr.hering@avm.de ret = -sk->sk_err; 9273c4d7559SDave Watson goto send_end; 9283c4d7559SDave Watson } 9293c4d7559SDave Watson 930d3b18ad3SJohn Fastabend if (ctx->open_rec) 931d3b18ad3SJohn Fastabend rec = ctx->open_rec; 932d3b18ad3SJohn Fastabend else 933d3b18ad3SJohn Fastabend rec = ctx->open_rec = tls_get_rec(sk); 934a42055e8SVakul Garg if (!rec) { 935a42055e8SVakul Garg ret = -ENOMEM; 936a42055e8SVakul Garg goto send_end; 937a42055e8SVakul Garg } 938a42055e8SVakul Garg 939d829e9c4SDaniel Borkmann msg_pl = &rec->msg_plaintext; 940d829e9c4SDaniel Borkmann msg_en = &rec->msg_encrypted; 941d829e9c4SDaniel Borkmann 942d829e9c4SDaniel Borkmann orig_size = msg_pl->sg.size; 9433c4d7559SDave Watson full_record = false; 9443c4d7559SDave Watson try_to_copy = msg_data_left(msg); 945d829e9c4SDaniel Borkmann record_room = TLS_MAX_PAYLOAD_SIZE - msg_pl->sg.size; 9463c4d7559SDave Watson if (try_to_copy >= record_room) { 9473c4d7559SDave Watson try_to_copy = record_room; 9483c4d7559SDave Watson full_record = true; 9493c4d7559SDave Watson } 9503c4d7559SDave Watson 951d829e9c4SDaniel Borkmann required_size = msg_pl->sg.size + try_to_copy + 9524509de14SVakul Garg prot->overhead_size; 9533c4d7559SDave Watson 9543c4d7559SDave Watson if (!sk_stream_memory_free(sk)) 9553c4d7559SDave Watson goto wait_for_sndbuf; 956a42055e8SVakul Garg 9573c4d7559SDave Watson alloc_encrypted: 958d829e9c4SDaniel Borkmann ret = tls_alloc_encrypted_msg(sk, required_size); 9593c4d7559SDave Watson if (ret) { 9603c4d7559SDave Watson if (ret != -ENOSPC) 9613c4d7559SDave Watson goto wait_for_memory; 9623c4d7559SDave Watson 9633c4d7559SDave Watson /* Adjust try_to_copy according to the amount that was 9643c4d7559SDave Watson * actually allocated. The difference is due 9653c4d7559SDave Watson * to max sg elements limit 9663c4d7559SDave Watson */ 967d829e9c4SDaniel Borkmann try_to_copy -= required_size - msg_en->sg.size; 9683c4d7559SDave Watson full_record = true; 9693c4d7559SDave Watson } 970a42055e8SVakul Garg 971a42055e8SVakul Garg if (!is_kvec && (full_record || eor) && !async_capable) { 972d3b18ad3SJohn Fastabend u32 first = msg_pl->sg.end; 973d3b18ad3SJohn Fastabend 974d829e9c4SDaniel Borkmann ret = sk_msg_zerocopy_from_iter(sk, &msg->msg_iter, 975d829e9c4SDaniel Borkmann msg_pl, try_to_copy); 9763c4d7559SDave Watson if (ret) 9773c4d7559SDave Watson goto fallback_to_reg_send; 9783c4d7559SDave Watson 9794e6d4720SVakul Garg rec->inplace_crypto = 0; 9804e6d4720SVakul Garg 981a42055e8SVakul Garg num_zc++; 9823c4d7559SDave Watson copied += try_to_copy; 983d3b18ad3SJohn Fastabend 984d3b18ad3SJohn Fastabend sk_msg_sg_copy_set(msg_pl, first); 985d3b18ad3SJohn Fastabend ret = bpf_exec_tx_verdict(msg_pl, sk, full_record, 986d3b18ad3SJohn Fastabend record_type, &copied, 987d3b18ad3SJohn Fastabend msg->msg_flags); 988a42055e8SVakul Garg if (ret) { 989a42055e8SVakul Garg if (ret == -EINPROGRESS) 990a42055e8SVakul Garg num_async++; 991d3b18ad3SJohn Fastabend else if (ret == -ENOMEM) 992d3b18ad3SJohn Fastabend goto wait_for_memory; 993d3b18ad3SJohn Fastabend else if (ret == -ENOSPC) 994d3b18ad3SJohn Fastabend goto rollback_iter; 995a42055e8SVakul Garg else if (ret != -EAGAIN) 9963c4d7559SDave Watson goto send_end; 997a42055e8SVakul Garg } 9985a3611efSDoron Roberts-Kedes continue; 999d3b18ad3SJohn Fastabend rollback_iter: 1000d3b18ad3SJohn Fastabend copied -= try_to_copy; 1001d3b18ad3SJohn Fastabend sk_msg_sg_copy_clear(msg_pl, first); 1002d3b18ad3SJohn Fastabend iov_iter_revert(&msg->msg_iter, 1003d3b18ad3SJohn Fastabend msg_pl->sg.size - orig_size); 10043c4d7559SDave Watson fallback_to_reg_send: 1005d829e9c4SDaniel Borkmann sk_msg_trim(sk, msg_pl, orig_size); 10063c4d7559SDave Watson } 10073c4d7559SDave Watson 1008d829e9c4SDaniel Borkmann required_size = msg_pl->sg.size + try_to_copy; 10094e6d4720SVakul Garg 1010d829e9c4SDaniel Borkmann ret = tls_clone_plaintext_msg(sk, required_size); 10113c4d7559SDave Watson if (ret) { 10123c4d7559SDave Watson if (ret != -ENOSPC) 10134e6d4720SVakul Garg goto send_end; 10143c4d7559SDave Watson 10153c4d7559SDave Watson /* Adjust try_to_copy according to the amount that was 10163c4d7559SDave Watson * actually allocated. The difference is due 10173c4d7559SDave Watson * to max sg elements limit 10183c4d7559SDave Watson */ 1019d829e9c4SDaniel Borkmann try_to_copy -= required_size - msg_pl->sg.size; 10203c4d7559SDave Watson full_record = true; 10214509de14SVakul Garg sk_msg_trim(sk, msg_en, 10224509de14SVakul Garg msg_pl->sg.size + prot->overhead_size); 10233c4d7559SDave Watson } 10243c4d7559SDave Watson 102565a10e28SVakul Garg if (try_to_copy) { 102665a10e28SVakul Garg ret = sk_msg_memcopy_from_iter(sk, &msg->msg_iter, 102765a10e28SVakul Garg msg_pl, try_to_copy); 1028d829e9c4SDaniel Borkmann if (ret < 0) 10293c4d7559SDave Watson goto trim_sgl; 103065a10e28SVakul Garg } 10313c4d7559SDave Watson 1032d829e9c4SDaniel Borkmann /* Open records defined only if successfully copied, otherwise 1033d829e9c4SDaniel Borkmann * we would trim the sg but not reset the open record frags. 1034d829e9c4SDaniel Borkmann */ 1035d829e9c4SDaniel Borkmann tls_ctx->pending_open_record_frags = true; 10363c4d7559SDave Watson copied += try_to_copy; 10373c4d7559SDave Watson if (full_record || eor) { 1038d3b18ad3SJohn Fastabend ret = bpf_exec_tx_verdict(msg_pl, sk, full_record, 1039d3b18ad3SJohn Fastabend record_type, &copied, 1040d3b18ad3SJohn Fastabend msg->msg_flags); 10413c4d7559SDave Watson if (ret) { 1042a42055e8SVakul Garg if (ret == -EINPROGRESS) 1043a42055e8SVakul Garg num_async++; 1044d3b18ad3SJohn Fastabend else if (ret == -ENOMEM) 1045d3b18ad3SJohn Fastabend goto wait_for_memory; 1046d3b18ad3SJohn Fastabend else if (ret != -EAGAIN) { 1047d3b18ad3SJohn Fastabend if (ret == -ENOSPC) 1048d3b18ad3SJohn Fastabend ret = 0; 10493c4d7559SDave Watson goto send_end; 10503c4d7559SDave Watson } 10513c4d7559SDave Watson } 1052d3b18ad3SJohn Fastabend } 10533c4d7559SDave Watson 10543c4d7559SDave Watson continue; 10553c4d7559SDave Watson 10563c4d7559SDave Watson wait_for_sndbuf: 10573c4d7559SDave Watson set_bit(SOCK_NOSPACE, &sk->sk_socket->flags); 10583c4d7559SDave Watson wait_for_memory: 10593c4d7559SDave Watson ret = sk_stream_wait_memory(sk, &timeo); 10603c4d7559SDave Watson if (ret) { 10613c4d7559SDave Watson trim_sgl: 1062d829e9c4SDaniel Borkmann tls_trim_both_msgs(sk, orig_size); 10633c4d7559SDave Watson goto send_end; 10643c4d7559SDave Watson } 10653c4d7559SDave Watson 1066d829e9c4SDaniel Borkmann if (msg_en->sg.size < required_size) 10673c4d7559SDave Watson goto alloc_encrypted; 10683c4d7559SDave Watson } 10693c4d7559SDave Watson 1070a42055e8SVakul Garg if (!num_async) { 1071a42055e8SVakul Garg goto send_end; 1072a42055e8SVakul Garg } else if (num_zc) { 1073a42055e8SVakul Garg /* Wait for pending encryptions to get completed */ 1074a42055e8SVakul Garg smp_store_mb(ctx->async_notify, true); 1075a42055e8SVakul Garg 1076a42055e8SVakul Garg if (atomic_read(&ctx->encrypt_pending)) 1077a42055e8SVakul Garg crypto_wait_req(-EINPROGRESS, &ctx->async_wait); 1078a42055e8SVakul Garg else 1079a42055e8SVakul Garg reinit_completion(&ctx->async_wait.completion); 1080a42055e8SVakul Garg 1081a42055e8SVakul Garg WRITE_ONCE(ctx->async_notify, false); 1082a42055e8SVakul Garg 1083a42055e8SVakul Garg if (ctx->async_wait.err) { 1084a42055e8SVakul Garg ret = ctx->async_wait.err; 1085a42055e8SVakul Garg copied = 0; 1086a42055e8SVakul Garg } 1087a42055e8SVakul Garg } 1088a42055e8SVakul Garg 1089a42055e8SVakul Garg /* Transmit if any encryptions have completed */ 1090a42055e8SVakul Garg if (test_and_clear_bit(BIT_TX_SCHEDULED, &ctx->tx_bitmask)) { 1091a42055e8SVakul Garg cancel_delayed_work(&ctx->tx_work.work); 1092a42055e8SVakul Garg tls_tx_records(sk, msg->msg_flags); 1093a42055e8SVakul Garg } 1094a42055e8SVakul Garg 10953c4d7559SDave Watson send_end: 10963c4d7559SDave Watson ret = sk_stream_error(sk, msg->msg_flags, ret); 10973c4d7559SDave Watson 10983c4d7559SDave Watson release_sock(sk); 10993c4d7559SDave Watson return copied ? copied : ret; 11003c4d7559SDave Watson } 11013c4d7559SDave Watson 110201cb8a1aSYueHaibing static int tls_sw_do_sendpage(struct sock *sk, struct page *page, 11033c4d7559SDave Watson int offset, size_t size, int flags) 11043c4d7559SDave Watson { 1105a42055e8SVakul Garg long timeo = sock_sndtimeo(sk, flags & MSG_DONTWAIT); 11063c4d7559SDave Watson struct tls_context *tls_ctx = tls_get_ctx(sk); 1107f66de3eeSBoris Pismenny struct tls_sw_context_tx *ctx = tls_sw_ctx_tx(tls_ctx); 11084509de14SVakul Garg struct tls_prot_info *prot = &tls_ctx->prot_info; 11093c4d7559SDave Watson unsigned char record_type = TLS_RECORD_TYPE_DATA; 1110d829e9c4SDaniel Borkmann struct sk_msg *msg_pl; 1111a42055e8SVakul Garg struct tls_rec *rec; 1112a42055e8SVakul Garg int num_async = 0; 1113d3b18ad3SJohn Fastabend size_t copied = 0; 11143c4d7559SDave Watson bool full_record; 11153c4d7559SDave Watson int record_room; 11164128c0cfSVakul Garg int ret = 0; 1117a42055e8SVakul Garg bool eor; 11183c4d7559SDave Watson 11193c4d7559SDave Watson eor = !(flags & (MSG_MORE | MSG_SENDPAGE_NOTLAST)); 11203c4d7559SDave Watson sk_clear_bit(SOCKWQ_ASYNC_NOSPACE, sk); 11213c4d7559SDave Watson 1122a42055e8SVakul Garg /* Wait till there is any pending write on socket */ 1123a42055e8SVakul Garg if (unlikely(sk->sk_write_pending)) { 1124a42055e8SVakul Garg ret = wait_on_pending_writer(sk, &timeo); 1125a42055e8SVakul Garg if (unlikely(ret)) 11263c4d7559SDave Watson goto sendpage_end; 1127a42055e8SVakul Garg } 11283c4d7559SDave Watson 11293c4d7559SDave Watson /* Call the sk_stream functions to manage the sndbuf mem. */ 11303c4d7559SDave Watson while (size > 0) { 11313c4d7559SDave Watson size_t copy, required_size; 11323c4d7559SDave Watson 11333c4d7559SDave Watson if (sk->sk_err) { 113430be8f8dSr.hering@avm.de ret = -sk->sk_err; 11353c4d7559SDave Watson goto sendpage_end; 11363c4d7559SDave Watson } 11373c4d7559SDave Watson 1138d3b18ad3SJohn Fastabend if (ctx->open_rec) 1139d3b18ad3SJohn Fastabend rec = ctx->open_rec; 1140d3b18ad3SJohn Fastabend else 1141d3b18ad3SJohn Fastabend rec = ctx->open_rec = tls_get_rec(sk); 1142a42055e8SVakul Garg if (!rec) { 1143a42055e8SVakul Garg ret = -ENOMEM; 1144a42055e8SVakul Garg goto sendpage_end; 1145a42055e8SVakul Garg } 1146a42055e8SVakul Garg 1147d829e9c4SDaniel Borkmann msg_pl = &rec->msg_plaintext; 1148d829e9c4SDaniel Borkmann 11493c4d7559SDave Watson full_record = false; 1150d829e9c4SDaniel Borkmann record_room = TLS_MAX_PAYLOAD_SIZE - msg_pl->sg.size; 11513c4d7559SDave Watson copy = size; 11523c4d7559SDave Watson if (copy >= record_room) { 11533c4d7559SDave Watson copy = record_room; 11543c4d7559SDave Watson full_record = true; 11553c4d7559SDave Watson } 1156d829e9c4SDaniel Borkmann 11574509de14SVakul Garg required_size = msg_pl->sg.size + copy + prot->overhead_size; 11583c4d7559SDave Watson 11593c4d7559SDave Watson if (!sk_stream_memory_free(sk)) 11603c4d7559SDave Watson goto wait_for_sndbuf; 11613c4d7559SDave Watson alloc_payload: 1162d829e9c4SDaniel Borkmann ret = tls_alloc_encrypted_msg(sk, required_size); 11633c4d7559SDave Watson if (ret) { 11643c4d7559SDave Watson if (ret != -ENOSPC) 11653c4d7559SDave Watson goto wait_for_memory; 11663c4d7559SDave Watson 11673c4d7559SDave Watson /* Adjust copy according to the amount that was 11683c4d7559SDave Watson * actually allocated. The difference is due 11693c4d7559SDave Watson * to max sg elements limit 11703c4d7559SDave Watson */ 1171d829e9c4SDaniel Borkmann copy -= required_size - msg_pl->sg.size; 11723c4d7559SDave Watson full_record = true; 11733c4d7559SDave Watson } 11743c4d7559SDave Watson 1175d829e9c4SDaniel Borkmann sk_msg_page_add(msg_pl, page, copy, offset); 11763c4d7559SDave Watson sk_mem_charge(sk, copy); 1177d829e9c4SDaniel Borkmann 11783c4d7559SDave Watson offset += copy; 11793c4d7559SDave Watson size -= copy; 1180d3b18ad3SJohn Fastabend copied += copy; 11813c4d7559SDave Watson 1182d829e9c4SDaniel Borkmann tls_ctx->pending_open_record_frags = true; 1183d829e9c4SDaniel Borkmann if (full_record || eor || sk_msg_full(msg_pl)) { 11844e6d4720SVakul Garg rec->inplace_crypto = 0; 1185d3b18ad3SJohn Fastabend ret = bpf_exec_tx_verdict(msg_pl, sk, full_record, 1186d3b18ad3SJohn Fastabend record_type, &copied, flags); 11873c4d7559SDave Watson if (ret) { 1188a42055e8SVakul Garg if (ret == -EINPROGRESS) 1189a42055e8SVakul Garg num_async++; 1190d3b18ad3SJohn Fastabend else if (ret == -ENOMEM) 1191d3b18ad3SJohn Fastabend goto wait_for_memory; 1192d3b18ad3SJohn Fastabend else if (ret != -EAGAIN) { 1193d3b18ad3SJohn Fastabend if (ret == -ENOSPC) 1194d3b18ad3SJohn Fastabend ret = 0; 11953c4d7559SDave Watson goto sendpage_end; 11963c4d7559SDave Watson } 11973c4d7559SDave Watson } 1198d3b18ad3SJohn Fastabend } 11993c4d7559SDave Watson continue; 12003c4d7559SDave Watson wait_for_sndbuf: 12013c4d7559SDave Watson set_bit(SOCK_NOSPACE, &sk->sk_socket->flags); 12023c4d7559SDave Watson wait_for_memory: 12033c4d7559SDave Watson ret = sk_stream_wait_memory(sk, &timeo); 12043c4d7559SDave Watson if (ret) { 1205d829e9c4SDaniel Borkmann tls_trim_both_msgs(sk, msg_pl->sg.size); 12063c4d7559SDave Watson goto sendpage_end; 12073c4d7559SDave Watson } 12083c4d7559SDave Watson 12093c4d7559SDave Watson goto alloc_payload; 12103c4d7559SDave Watson } 12113c4d7559SDave Watson 1212a42055e8SVakul Garg if (num_async) { 1213a42055e8SVakul Garg /* Transmit if any encryptions have completed */ 1214a42055e8SVakul Garg if (test_and_clear_bit(BIT_TX_SCHEDULED, &ctx->tx_bitmask)) { 1215a42055e8SVakul Garg cancel_delayed_work(&ctx->tx_work.work); 1216a42055e8SVakul Garg tls_tx_records(sk, flags); 1217a42055e8SVakul Garg } 1218a42055e8SVakul Garg } 12193c4d7559SDave Watson sendpage_end: 12203c4d7559SDave Watson ret = sk_stream_error(sk, flags, ret); 1221d3b18ad3SJohn Fastabend return copied ? copied : ret; 12223c4d7559SDave Watson } 12233c4d7559SDave Watson 12240608c69cSJohn Fastabend int tls_sw_sendpage(struct sock *sk, struct page *page, 12250608c69cSJohn Fastabend int offset, size_t size, int flags) 12260608c69cSJohn Fastabend { 12270608c69cSJohn Fastabend int ret; 12280608c69cSJohn Fastabend 12290608c69cSJohn Fastabend if (flags & ~(MSG_MORE | MSG_DONTWAIT | MSG_NOSIGNAL | 12300608c69cSJohn Fastabend MSG_SENDPAGE_NOTLAST | MSG_SENDPAGE_NOPOLICY)) 12310608c69cSJohn Fastabend return -ENOTSUPP; 12320608c69cSJohn Fastabend 12330608c69cSJohn Fastabend lock_sock(sk); 12340608c69cSJohn Fastabend ret = tls_sw_do_sendpage(sk, page, offset, size, flags); 12350608c69cSJohn Fastabend release_sock(sk); 12360608c69cSJohn Fastabend return ret; 12370608c69cSJohn Fastabend } 12380608c69cSJohn Fastabend 1239d3b18ad3SJohn Fastabend static struct sk_buff *tls_wait_data(struct sock *sk, struct sk_psock *psock, 1240d3b18ad3SJohn Fastabend int flags, long timeo, int *err) 1241c46234ebSDave Watson { 1242c46234ebSDave Watson struct tls_context *tls_ctx = tls_get_ctx(sk); 1243f66de3eeSBoris Pismenny struct tls_sw_context_rx *ctx = tls_sw_ctx_rx(tls_ctx); 1244c46234ebSDave Watson struct sk_buff *skb; 1245c46234ebSDave Watson DEFINE_WAIT_FUNC(wait, woken_wake_function); 1246c46234ebSDave Watson 1247d3b18ad3SJohn Fastabend while (!(skb = ctx->recv_pkt) && sk_psock_queue_empty(psock)) { 1248c46234ebSDave Watson if (sk->sk_err) { 1249c46234ebSDave Watson *err = sock_error(sk); 1250c46234ebSDave Watson return NULL; 1251c46234ebSDave Watson } 1252c46234ebSDave Watson 1253fcf4793eSDoron Roberts-Kedes if (sk->sk_shutdown & RCV_SHUTDOWN) 1254fcf4793eSDoron Roberts-Kedes return NULL; 1255fcf4793eSDoron Roberts-Kedes 1256c46234ebSDave Watson if (sock_flag(sk, SOCK_DONE)) 1257c46234ebSDave Watson return NULL; 1258c46234ebSDave Watson 1259c46234ebSDave Watson if ((flags & MSG_DONTWAIT) || !timeo) { 1260c46234ebSDave Watson *err = -EAGAIN; 1261c46234ebSDave Watson return NULL; 1262c46234ebSDave Watson } 1263c46234ebSDave Watson 1264c46234ebSDave Watson add_wait_queue(sk_sleep(sk), &wait); 1265c46234ebSDave Watson sk_set_bit(SOCKWQ_ASYNC_WAITDATA, sk); 1266d3b18ad3SJohn Fastabend sk_wait_event(sk, &timeo, 1267d3b18ad3SJohn Fastabend ctx->recv_pkt != skb || 1268d3b18ad3SJohn Fastabend !sk_psock_queue_empty(psock), 1269d3b18ad3SJohn Fastabend &wait); 1270c46234ebSDave Watson sk_clear_bit(SOCKWQ_ASYNC_WAITDATA, sk); 1271c46234ebSDave Watson remove_wait_queue(sk_sleep(sk), &wait); 1272c46234ebSDave Watson 1273c46234ebSDave Watson /* Handle signals */ 1274c46234ebSDave Watson if (signal_pending(current)) { 1275c46234ebSDave Watson *err = sock_intr_errno(timeo); 1276c46234ebSDave Watson return NULL; 1277c46234ebSDave Watson } 1278c46234ebSDave Watson } 1279c46234ebSDave Watson 1280c46234ebSDave Watson return skb; 1281c46234ebSDave Watson } 1282c46234ebSDave Watson 1283d829e9c4SDaniel Borkmann static int tls_setup_from_iter(struct sock *sk, struct iov_iter *from, 1284d829e9c4SDaniel Borkmann int length, int *pages_used, 1285d829e9c4SDaniel Borkmann unsigned int *size_used, 1286d829e9c4SDaniel Borkmann struct scatterlist *to, 1287d829e9c4SDaniel Borkmann int to_max_pages) 1288d829e9c4SDaniel Borkmann { 1289d829e9c4SDaniel Borkmann int rc = 0, i = 0, num_elem = *pages_used, maxpages; 1290d829e9c4SDaniel Borkmann struct page *pages[MAX_SKB_FRAGS]; 1291d829e9c4SDaniel Borkmann unsigned int size = *size_used; 1292d829e9c4SDaniel Borkmann ssize_t copied, use; 1293d829e9c4SDaniel Borkmann size_t offset; 1294d829e9c4SDaniel Borkmann 1295d829e9c4SDaniel Borkmann while (length > 0) { 1296d829e9c4SDaniel Borkmann i = 0; 1297d829e9c4SDaniel Borkmann maxpages = to_max_pages - num_elem; 1298d829e9c4SDaniel Borkmann if (maxpages == 0) { 1299d829e9c4SDaniel Borkmann rc = -EFAULT; 1300d829e9c4SDaniel Borkmann goto out; 1301d829e9c4SDaniel Borkmann } 1302d829e9c4SDaniel Borkmann copied = iov_iter_get_pages(from, pages, 1303d829e9c4SDaniel Borkmann length, 1304d829e9c4SDaniel Borkmann maxpages, &offset); 1305d829e9c4SDaniel Borkmann if (copied <= 0) { 1306d829e9c4SDaniel Borkmann rc = -EFAULT; 1307d829e9c4SDaniel Borkmann goto out; 1308d829e9c4SDaniel Borkmann } 1309d829e9c4SDaniel Borkmann 1310d829e9c4SDaniel Borkmann iov_iter_advance(from, copied); 1311d829e9c4SDaniel Borkmann 1312d829e9c4SDaniel Borkmann length -= copied; 1313d829e9c4SDaniel Borkmann size += copied; 1314d829e9c4SDaniel Borkmann while (copied) { 1315d829e9c4SDaniel Borkmann use = min_t(int, copied, PAGE_SIZE - offset); 1316d829e9c4SDaniel Borkmann 1317d829e9c4SDaniel Borkmann sg_set_page(&to[num_elem], 1318d829e9c4SDaniel Borkmann pages[i], use, offset); 1319d829e9c4SDaniel Borkmann sg_unmark_end(&to[num_elem]); 1320d829e9c4SDaniel Borkmann /* We do not uncharge memory from this API */ 1321d829e9c4SDaniel Borkmann 1322d829e9c4SDaniel Borkmann offset = 0; 1323d829e9c4SDaniel Borkmann copied -= use; 1324d829e9c4SDaniel Borkmann 1325d829e9c4SDaniel Borkmann i++; 1326d829e9c4SDaniel Borkmann num_elem++; 1327d829e9c4SDaniel Borkmann } 1328d829e9c4SDaniel Borkmann } 1329d829e9c4SDaniel Borkmann /* Mark the end in the last sg entry if newly added */ 1330d829e9c4SDaniel Borkmann if (num_elem > *pages_used) 1331d829e9c4SDaniel Borkmann sg_mark_end(&to[num_elem - 1]); 1332d829e9c4SDaniel Borkmann out: 1333d829e9c4SDaniel Borkmann if (rc) 1334d829e9c4SDaniel Borkmann iov_iter_revert(from, size - *size_used); 1335d829e9c4SDaniel Borkmann *size_used = size; 1336d829e9c4SDaniel Borkmann *pages_used = num_elem; 1337d829e9c4SDaniel Borkmann 1338d829e9c4SDaniel Borkmann return rc; 1339d829e9c4SDaniel Borkmann } 1340d829e9c4SDaniel Borkmann 13410b243d00SVakul Garg /* This function decrypts the input skb into either out_iov or in out_sg 13420b243d00SVakul Garg * or in skb buffers itself. The input parameter 'zc' indicates if 13430b243d00SVakul Garg * zero-copy mode needs to be tried or not. With zero-copy mode, either 13440b243d00SVakul Garg * out_iov or out_sg must be non-NULL. In case both out_iov and out_sg are 13450b243d00SVakul Garg * NULL, then the decryption happens inside skb buffers itself, i.e. 13460b243d00SVakul Garg * zero-copy gets disabled and 'zc' is updated. 13470b243d00SVakul Garg */ 13480b243d00SVakul Garg 13490b243d00SVakul Garg static int decrypt_internal(struct sock *sk, struct sk_buff *skb, 13500b243d00SVakul Garg struct iov_iter *out_iov, 13510b243d00SVakul Garg struct scatterlist *out_sg, 1352692d7b5dSVakul Garg int *chunk, bool *zc, bool async) 13530b243d00SVakul Garg { 13540b243d00SVakul Garg struct tls_context *tls_ctx = tls_get_ctx(sk); 13550b243d00SVakul Garg struct tls_sw_context_rx *ctx = tls_sw_ctx_rx(tls_ctx); 13564509de14SVakul Garg struct tls_prot_info *prot = &tls_ctx->prot_info; 13570b243d00SVakul Garg struct strp_msg *rxm = strp_msg(skb); 13580b243d00SVakul Garg int n_sgin, n_sgout, nsg, mem_size, aead_size, err, pages = 0; 13590b243d00SVakul Garg struct aead_request *aead_req; 13600b243d00SVakul Garg struct sk_buff *unused; 13610b243d00SVakul Garg u8 *aad, *iv, *mem = NULL; 13620b243d00SVakul Garg struct scatterlist *sgin = NULL; 13630b243d00SVakul Garg struct scatterlist *sgout = NULL; 13644509de14SVakul Garg const int data_len = rxm->full_len - prot->overhead_size + 13654509de14SVakul Garg prot->tail_size; 1366f295b3aeSVakul Garg int iv_offset = 0; 13670b243d00SVakul Garg 13680b243d00SVakul Garg if (*zc && (out_iov || out_sg)) { 13690b243d00SVakul Garg if (out_iov) 13700b243d00SVakul Garg n_sgout = iov_iter_npages(out_iov, INT_MAX) + 1; 13710b243d00SVakul Garg else 13720b243d00SVakul Garg n_sgout = sg_nents(out_sg); 13734509de14SVakul Garg n_sgin = skb_nsg(skb, rxm->offset + prot->prepend_size, 13744509de14SVakul Garg rxm->full_len - prot->prepend_size); 13750b243d00SVakul Garg } else { 13760b243d00SVakul Garg n_sgout = 0; 13770b243d00SVakul Garg *zc = false; 13780927f71dSDoron Roberts-Kedes n_sgin = skb_cow_data(skb, 0, &unused); 13790b243d00SVakul Garg } 13800b243d00SVakul Garg 13810b243d00SVakul Garg if (n_sgin < 1) 13820b243d00SVakul Garg return -EBADMSG; 13830b243d00SVakul Garg 13840b243d00SVakul Garg /* Increment to accommodate AAD */ 13850b243d00SVakul Garg n_sgin = n_sgin + 1; 13860b243d00SVakul Garg 13870b243d00SVakul Garg nsg = n_sgin + n_sgout; 13880b243d00SVakul Garg 13890b243d00SVakul Garg aead_size = sizeof(*aead_req) + crypto_aead_reqsize(ctx->aead_recv); 13900b243d00SVakul Garg mem_size = aead_size + (nsg * sizeof(struct scatterlist)); 13914509de14SVakul Garg mem_size = mem_size + prot->aad_size; 13920b243d00SVakul Garg mem_size = mem_size + crypto_aead_ivsize(ctx->aead_recv); 13930b243d00SVakul Garg 13940b243d00SVakul Garg /* Allocate a single block of memory which contains 13950b243d00SVakul Garg * aead_req || sgin[] || sgout[] || aad || iv. 13960b243d00SVakul Garg * This order achieves correct alignment for aead_req, sgin, sgout. 13970b243d00SVakul Garg */ 13980b243d00SVakul Garg mem = kmalloc(mem_size, sk->sk_allocation); 13990b243d00SVakul Garg if (!mem) 14000b243d00SVakul Garg return -ENOMEM; 14010b243d00SVakul Garg 14020b243d00SVakul Garg /* Segment the allocated memory */ 14030b243d00SVakul Garg aead_req = (struct aead_request *)mem; 14040b243d00SVakul Garg sgin = (struct scatterlist *)(mem + aead_size); 14050b243d00SVakul Garg sgout = sgin + n_sgin; 14060b243d00SVakul Garg aad = (u8 *)(sgout + n_sgout); 14074509de14SVakul Garg iv = aad + prot->aad_size; 14080b243d00SVakul Garg 1409f295b3aeSVakul Garg /* For CCM based ciphers, first byte of nonce+iv is always '2' */ 1410f295b3aeSVakul Garg if (prot->cipher_type == TLS_CIPHER_AES_CCM_128) { 1411f295b3aeSVakul Garg iv[0] = 2; 1412f295b3aeSVakul Garg iv_offset = 1; 1413f295b3aeSVakul Garg } 1414f295b3aeSVakul Garg 14150b243d00SVakul Garg /* Prepare IV */ 14160b243d00SVakul Garg err = skb_copy_bits(skb, rxm->offset + TLS_HEADER_SIZE, 1417f295b3aeSVakul Garg iv + iv_offset + prot->salt_size, 14184509de14SVakul Garg prot->iv_size); 14190b243d00SVakul Garg if (err < 0) { 14200b243d00SVakul Garg kfree(mem); 14210b243d00SVakul Garg return err; 14220b243d00SVakul Garg } 14234509de14SVakul Garg if (prot->version == TLS_1_3_VERSION) 1424f295b3aeSVakul Garg memcpy(iv + iv_offset, tls_ctx->rx.iv, 1425f295b3aeSVakul Garg crypto_aead_ivsize(ctx->aead_recv)); 1426130b392cSDave Watson else 1427f295b3aeSVakul Garg memcpy(iv + iv_offset, tls_ctx->rx.iv, prot->salt_size); 14280b243d00SVakul Garg 14294509de14SVakul Garg xor_iv_with_seq(prot->version, iv, tls_ctx->rx.rec_seq); 1430130b392cSDave Watson 14310b243d00SVakul Garg /* Prepare AAD */ 14324509de14SVakul Garg tls_make_aad(aad, rxm->full_len - prot->overhead_size + 14334509de14SVakul Garg prot->tail_size, 14344509de14SVakul Garg tls_ctx->rx.rec_seq, prot->rec_seq_size, 14354509de14SVakul Garg ctx->control, prot->version); 14360b243d00SVakul Garg 14370b243d00SVakul Garg /* Prepare sgin */ 14380b243d00SVakul Garg sg_init_table(sgin, n_sgin); 14394509de14SVakul Garg sg_set_buf(&sgin[0], aad, prot->aad_size); 14400b243d00SVakul Garg err = skb_to_sgvec(skb, &sgin[1], 14414509de14SVakul Garg rxm->offset + prot->prepend_size, 14424509de14SVakul Garg rxm->full_len - prot->prepend_size); 14430b243d00SVakul Garg if (err < 0) { 14440b243d00SVakul Garg kfree(mem); 14450b243d00SVakul Garg return err; 14460b243d00SVakul Garg } 14470b243d00SVakul Garg 14480b243d00SVakul Garg if (n_sgout) { 14490b243d00SVakul Garg if (out_iov) { 14500b243d00SVakul Garg sg_init_table(sgout, n_sgout); 14514509de14SVakul Garg sg_set_buf(&sgout[0], aad, prot->aad_size); 14520b243d00SVakul Garg 14530b243d00SVakul Garg *chunk = 0; 1454d829e9c4SDaniel Borkmann err = tls_setup_from_iter(sk, out_iov, data_len, 1455d829e9c4SDaniel Borkmann &pages, chunk, &sgout[1], 1456d829e9c4SDaniel Borkmann (n_sgout - 1)); 14570b243d00SVakul Garg if (err < 0) 14580b243d00SVakul Garg goto fallback_to_reg_recv; 14590b243d00SVakul Garg } else if (out_sg) { 14600b243d00SVakul Garg memcpy(sgout, out_sg, n_sgout * sizeof(*sgout)); 14610b243d00SVakul Garg } else { 14620b243d00SVakul Garg goto fallback_to_reg_recv; 14630b243d00SVakul Garg } 14640b243d00SVakul Garg } else { 14650b243d00SVakul Garg fallback_to_reg_recv: 14660b243d00SVakul Garg sgout = sgin; 14670b243d00SVakul Garg pages = 0; 1468692d7b5dSVakul Garg *chunk = data_len; 14690b243d00SVakul Garg *zc = false; 14700b243d00SVakul Garg } 14710b243d00SVakul Garg 14720b243d00SVakul Garg /* Prepare and submit AEAD request */ 147394524d8fSVakul Garg err = tls_do_decryption(sk, skb, sgin, sgout, iv, 1474692d7b5dSVakul Garg data_len, aead_req, async); 147594524d8fSVakul Garg if (err == -EINPROGRESS) 147694524d8fSVakul Garg return err; 14770b243d00SVakul Garg 14780b243d00SVakul Garg /* Release the pages in case iov was mapped to pages */ 14790b243d00SVakul Garg for (; pages > 0; pages--) 14800b243d00SVakul Garg put_page(sg_page(&sgout[pages])); 14810b243d00SVakul Garg 14820b243d00SVakul Garg kfree(mem); 14830b243d00SVakul Garg return err; 14840b243d00SVakul Garg } 14850b243d00SVakul Garg 1486dafb67f3SBoris Pismenny static int decrypt_skb_update(struct sock *sk, struct sk_buff *skb, 1487692d7b5dSVakul Garg struct iov_iter *dest, int *chunk, bool *zc, 1488692d7b5dSVakul Garg bool async) 1489dafb67f3SBoris Pismenny { 1490dafb67f3SBoris Pismenny struct tls_context *tls_ctx = tls_get_ctx(sk); 1491dafb67f3SBoris Pismenny struct tls_sw_context_rx *ctx = tls_sw_ctx_rx(tls_ctx); 14924509de14SVakul Garg struct tls_prot_info *prot = &tls_ctx->prot_info; 1493dafb67f3SBoris Pismenny struct strp_msg *rxm = strp_msg(skb); 1494b53f4976SJakub Kicinski int pad, err = 0; 1495dafb67f3SBoris Pismenny 1496d069b780SBoris Pismenny if (!ctx->decrypted) { 1497b9d8fec9SJakub Kicinski if (tls_ctx->rx_conf == TLS_HW) { 14984de30a8dSJakub Kicinski err = tls_device_decrypted(sk, tls_ctx, skb, rxm); 14994799ac81SBoris Pismenny if (err < 0) 15004799ac81SBoris Pismenny return err; 1501b9d8fec9SJakub Kicinski } 1502be2fbc15SJakub Kicinski 1503d069b780SBoris Pismenny /* Still not decrypted after tls_device */ 15044799ac81SBoris Pismenny if (!ctx->decrypted) { 1505d069b780SBoris Pismenny err = decrypt_internal(sk, skb, dest, NULL, chunk, zc, 1506d069b780SBoris Pismenny async); 150794524d8fSVakul Garg if (err < 0) { 150894524d8fSVakul Garg if (err == -EINPROGRESS) 1509fb0f886fSJakub Kicinski tls_advance_record_sn(sk, prot, 1510fb0f886fSJakub Kicinski &tls_ctx->rx); 151194524d8fSVakul Garg 1512dafb67f3SBoris Pismenny return err; 151394524d8fSVakul Garg } 1514c43ac97bSJakub Kicinski } else { 1515c43ac97bSJakub Kicinski *zc = false; 1516d069b780SBoris Pismenny } 1517130b392cSDave Watson 1518b53f4976SJakub Kicinski pad = padding_length(ctx, prot, skb); 1519b53f4976SJakub Kicinski if (pad < 0) 1520b53f4976SJakub Kicinski return pad; 1521b53f4976SJakub Kicinski 1522b53f4976SJakub Kicinski rxm->full_len -= pad; 15234509de14SVakul Garg rxm->offset += prot->prepend_size; 15244509de14SVakul Garg rxm->full_len -= prot->overhead_size; 1525fb0f886fSJakub Kicinski tls_advance_record_sn(sk, prot, &tls_ctx->rx); 1526bc76e5bbSJakub Kicinski ctx->decrypted = 1; 1527dafb67f3SBoris Pismenny ctx->saved_data_ready(sk); 1528fedf201eSDave Watson } else { 1529fedf201eSDave Watson *zc = false; 1530fedf201eSDave Watson } 1531dafb67f3SBoris Pismenny 1532dafb67f3SBoris Pismenny return err; 1533dafb67f3SBoris Pismenny } 1534dafb67f3SBoris Pismenny 1535dafb67f3SBoris Pismenny int decrypt_skb(struct sock *sk, struct sk_buff *skb, 1536c46234ebSDave Watson struct scatterlist *sgout) 1537c46234ebSDave Watson { 15380b243d00SVakul Garg bool zc = true; 15390b243d00SVakul Garg int chunk; 1540c46234ebSDave Watson 1541692d7b5dSVakul Garg return decrypt_internal(sk, skb, NULL, sgout, &chunk, &zc, false); 1542c46234ebSDave Watson } 1543c46234ebSDave Watson 1544c46234ebSDave Watson static bool tls_sw_advance_skb(struct sock *sk, struct sk_buff *skb, 1545c46234ebSDave Watson unsigned int len) 1546c46234ebSDave Watson { 1547c46234ebSDave Watson struct tls_context *tls_ctx = tls_get_ctx(sk); 1548f66de3eeSBoris Pismenny struct tls_sw_context_rx *ctx = tls_sw_ctx_rx(tls_ctx); 154994524d8fSVakul Garg 155094524d8fSVakul Garg if (skb) { 1551c46234ebSDave Watson struct strp_msg *rxm = strp_msg(skb); 1552c46234ebSDave Watson 1553c46234ebSDave Watson if (len < rxm->full_len) { 1554c46234ebSDave Watson rxm->offset += len; 1555c46234ebSDave Watson rxm->full_len -= len; 1556c46234ebSDave Watson return false; 1557c46234ebSDave Watson } 1558a88c26f6SVakul Garg consume_skb(skb); 155994524d8fSVakul Garg } 1560c46234ebSDave Watson 1561c46234ebSDave Watson /* Finished with message */ 1562c46234ebSDave Watson ctx->recv_pkt = NULL; 15637170e604SDoron Roberts-Kedes __strp_unpause(&ctx->strp); 1564c46234ebSDave Watson 1565c46234ebSDave Watson return true; 1566c46234ebSDave Watson } 1567c46234ebSDave Watson 1568692d7b5dSVakul Garg /* This function traverses the rx_list in tls receive context to copies the 15692b794c40SVakul Garg * decrypted records into the buffer provided by caller zero copy is not 1570692d7b5dSVakul Garg * true. Further, the records are removed from the rx_list if it is not a peek 1571692d7b5dSVakul Garg * case and the record has been consumed completely. 1572692d7b5dSVakul Garg */ 1573692d7b5dSVakul Garg static int process_rx_list(struct tls_sw_context_rx *ctx, 1574692d7b5dSVakul Garg struct msghdr *msg, 15752b794c40SVakul Garg u8 *control, 15762b794c40SVakul Garg bool *cmsg, 1577692d7b5dSVakul Garg size_t skip, 1578692d7b5dSVakul Garg size_t len, 1579692d7b5dSVakul Garg bool zc, 1580692d7b5dSVakul Garg bool is_peek) 1581692d7b5dSVakul Garg { 1582692d7b5dSVakul Garg struct sk_buff *skb = skb_peek(&ctx->rx_list); 15832b794c40SVakul Garg u8 ctrl = *control; 15842b794c40SVakul Garg u8 msgc = *cmsg; 15852b794c40SVakul Garg struct tls_msg *tlm; 1586692d7b5dSVakul Garg ssize_t copied = 0; 1587692d7b5dSVakul Garg 15882b794c40SVakul Garg /* Set the record type in 'control' if caller didn't pass it */ 15892b794c40SVakul Garg if (!ctrl && skb) { 15902b794c40SVakul Garg tlm = tls_msg(skb); 15912b794c40SVakul Garg ctrl = tlm->control; 15922b794c40SVakul Garg } 15932b794c40SVakul Garg 1594692d7b5dSVakul Garg while (skip && skb) { 1595692d7b5dSVakul Garg struct strp_msg *rxm = strp_msg(skb); 15962b794c40SVakul Garg tlm = tls_msg(skb); 15972b794c40SVakul Garg 15982b794c40SVakul Garg /* Cannot process a record of different type */ 15992b794c40SVakul Garg if (ctrl != tlm->control) 16002b794c40SVakul Garg return 0; 1601692d7b5dSVakul Garg 1602692d7b5dSVakul Garg if (skip < rxm->full_len) 1603692d7b5dSVakul Garg break; 1604692d7b5dSVakul Garg 1605692d7b5dSVakul Garg skip = skip - rxm->full_len; 1606692d7b5dSVakul Garg skb = skb_peek_next(skb, &ctx->rx_list); 1607692d7b5dSVakul Garg } 1608692d7b5dSVakul Garg 1609692d7b5dSVakul Garg while (len && skb) { 1610692d7b5dSVakul Garg struct sk_buff *next_skb; 1611692d7b5dSVakul Garg struct strp_msg *rxm = strp_msg(skb); 1612692d7b5dSVakul Garg int chunk = min_t(unsigned int, rxm->full_len - skip, len); 1613692d7b5dSVakul Garg 16142b794c40SVakul Garg tlm = tls_msg(skb); 16152b794c40SVakul Garg 16162b794c40SVakul Garg /* Cannot process a record of different type */ 16172b794c40SVakul Garg if (ctrl != tlm->control) 16182b794c40SVakul Garg return 0; 16192b794c40SVakul Garg 16202b794c40SVakul Garg /* Set record type if not already done. For a non-data record, 16212b794c40SVakul Garg * do not proceed if record type could not be copied. 16222b794c40SVakul Garg */ 16232b794c40SVakul Garg if (!msgc) { 16242b794c40SVakul Garg int cerr = put_cmsg(msg, SOL_TLS, TLS_GET_RECORD_TYPE, 16252b794c40SVakul Garg sizeof(ctrl), &ctrl); 16262b794c40SVakul Garg msgc = true; 16272b794c40SVakul Garg if (ctrl != TLS_RECORD_TYPE_DATA) { 16282b794c40SVakul Garg if (cerr || msg->msg_flags & MSG_CTRUNC) 16292b794c40SVakul Garg return -EIO; 16302b794c40SVakul Garg 16312b794c40SVakul Garg *cmsg = msgc; 16322b794c40SVakul Garg } 16332b794c40SVakul Garg } 16342b794c40SVakul Garg 1635692d7b5dSVakul Garg if (!zc || (rxm->full_len - skip) > len) { 1636692d7b5dSVakul Garg int err = skb_copy_datagram_msg(skb, rxm->offset + skip, 1637692d7b5dSVakul Garg msg, chunk); 1638692d7b5dSVakul Garg if (err < 0) 1639692d7b5dSVakul Garg return err; 1640692d7b5dSVakul Garg } 1641692d7b5dSVakul Garg 1642692d7b5dSVakul Garg len = len - chunk; 1643692d7b5dSVakul Garg copied = copied + chunk; 1644692d7b5dSVakul Garg 1645692d7b5dSVakul Garg /* Consume the data from record if it is non-peek case*/ 1646692d7b5dSVakul Garg if (!is_peek) { 1647692d7b5dSVakul Garg rxm->offset = rxm->offset + chunk; 1648692d7b5dSVakul Garg rxm->full_len = rxm->full_len - chunk; 1649692d7b5dSVakul Garg 1650692d7b5dSVakul Garg /* Return if there is unconsumed data in the record */ 1651692d7b5dSVakul Garg if (rxm->full_len - skip) 1652692d7b5dSVakul Garg break; 1653692d7b5dSVakul Garg } 1654692d7b5dSVakul Garg 1655692d7b5dSVakul Garg /* The remaining skip-bytes must lie in 1st record in rx_list. 1656692d7b5dSVakul Garg * So from the 2nd record, 'skip' should be 0. 1657692d7b5dSVakul Garg */ 1658692d7b5dSVakul Garg skip = 0; 1659692d7b5dSVakul Garg 1660692d7b5dSVakul Garg if (msg) 1661692d7b5dSVakul Garg msg->msg_flags |= MSG_EOR; 1662692d7b5dSVakul Garg 1663692d7b5dSVakul Garg next_skb = skb_peek_next(skb, &ctx->rx_list); 1664692d7b5dSVakul Garg 1665692d7b5dSVakul Garg if (!is_peek) { 1666692d7b5dSVakul Garg skb_unlink(skb, &ctx->rx_list); 1667a88c26f6SVakul Garg consume_skb(skb); 1668692d7b5dSVakul Garg } 1669692d7b5dSVakul Garg 1670692d7b5dSVakul Garg skb = next_skb; 1671692d7b5dSVakul Garg } 1672692d7b5dSVakul Garg 16732b794c40SVakul Garg *control = ctrl; 1674692d7b5dSVakul Garg return copied; 1675692d7b5dSVakul Garg } 1676692d7b5dSVakul Garg 1677c46234ebSDave Watson int tls_sw_recvmsg(struct sock *sk, 1678c46234ebSDave Watson struct msghdr *msg, 1679c46234ebSDave Watson size_t len, 1680c46234ebSDave Watson int nonblock, 1681c46234ebSDave Watson int flags, 1682c46234ebSDave Watson int *addr_len) 1683c46234ebSDave Watson { 1684c46234ebSDave Watson struct tls_context *tls_ctx = tls_get_ctx(sk); 1685f66de3eeSBoris Pismenny struct tls_sw_context_rx *ctx = tls_sw_ctx_rx(tls_ctx); 16864509de14SVakul Garg struct tls_prot_info *prot = &tls_ctx->prot_info; 1687d3b18ad3SJohn Fastabend struct sk_psock *psock; 1688692d7b5dSVakul Garg unsigned char control = 0; 1689692d7b5dSVakul Garg ssize_t decrypted = 0; 1690c46234ebSDave Watson struct strp_msg *rxm; 16912b794c40SVakul Garg struct tls_msg *tlm; 1692c46234ebSDave Watson struct sk_buff *skb; 1693c46234ebSDave Watson ssize_t copied = 0; 1694c46234ebSDave Watson bool cmsg = false; 169506030dbaSDaniel Borkmann int target, err = 0; 1696c46234ebSDave Watson long timeo; 169700e23707SDavid Howells bool is_kvec = iov_iter_is_kvec(&msg->msg_iter); 1698692d7b5dSVakul Garg bool is_peek = flags & MSG_PEEK; 169994524d8fSVakul Garg int num_async = 0; 1700c46234ebSDave Watson 1701c46234ebSDave Watson flags |= nonblock; 1702c46234ebSDave Watson 1703c46234ebSDave Watson if (unlikely(flags & MSG_ERRQUEUE)) 1704c46234ebSDave Watson return sock_recv_errqueue(sk, msg, len, SOL_IP, IP_RECVERR); 1705c46234ebSDave Watson 1706d3b18ad3SJohn Fastabend psock = sk_psock_get(sk); 1707c46234ebSDave Watson lock_sock(sk); 1708c46234ebSDave Watson 1709692d7b5dSVakul Garg /* Process pending decrypted records. It must be non-zero-copy */ 17102b794c40SVakul Garg err = process_rx_list(ctx, msg, &control, &cmsg, 0, len, false, 17112b794c40SVakul Garg is_peek); 1712692d7b5dSVakul Garg if (err < 0) { 1713692d7b5dSVakul Garg tls_err_abort(sk, err); 1714692d7b5dSVakul Garg goto end; 1715692d7b5dSVakul Garg } else { 1716692d7b5dSVakul Garg copied = err; 1717692d7b5dSVakul Garg } 1718692d7b5dSVakul Garg 171946a16959SJakub Kicinski if (len <= copied) 1720692d7b5dSVakul Garg goto recv_end; 172146a16959SJakub Kicinski 172246a16959SJakub Kicinski target = sock_rcvlowat(sk, flags & MSG_WAITALL, len); 172346a16959SJakub Kicinski len = len - copied; 172446a16959SJakub Kicinski timeo = sock_rcvtimeo(sk, flags & MSG_DONTWAIT); 1725692d7b5dSVakul Garg 172604b25a54SJakub Kicinski while (len && (decrypted + copied < target || ctx->recv_pkt)) { 1727692d7b5dSVakul Garg bool retain_skb = false; 1728692d7b5dSVakul Garg bool zc = false; 1729692d7b5dSVakul Garg int to_decrypt; 1730c46234ebSDave Watson int chunk = 0; 17317754bd63SEran Ben Elisha bool async_capable; 17327754bd63SEran Ben Elisha bool async = false; 1733c46234ebSDave Watson 1734d3b18ad3SJohn Fastabend skb = tls_wait_data(sk, psock, flags, timeo, &err); 1735d3b18ad3SJohn Fastabend if (!skb) { 1736d3b18ad3SJohn Fastabend if (psock) { 173702c558b2SJohn Fastabend int ret = __tcp_bpf_recvmsg(sk, psock, 173802c558b2SJohn Fastabend msg, len, flags); 1739d3b18ad3SJohn Fastabend 1740d3b18ad3SJohn Fastabend if (ret > 0) { 1741692d7b5dSVakul Garg decrypted += ret; 1742d3b18ad3SJohn Fastabend len -= ret; 1743d3b18ad3SJohn Fastabend continue; 1744d3b18ad3SJohn Fastabend } 1745d3b18ad3SJohn Fastabend } 1746c46234ebSDave Watson goto recv_end; 17472b794c40SVakul Garg } else { 17482b794c40SVakul Garg tlm = tls_msg(skb); 17492b794c40SVakul Garg if (prot->version == TLS_1_3_VERSION) 17502b794c40SVakul Garg tlm->control = 0; 17512b794c40SVakul Garg else 17522b794c40SVakul Garg tlm->control = ctx->control; 1753d3b18ad3SJohn Fastabend } 1754c46234ebSDave Watson 1755c46234ebSDave Watson rxm = strp_msg(skb); 175694524d8fSVakul Garg 17574509de14SVakul Garg to_decrypt = rxm->full_len - prot->overhead_size; 1758fedf201eSDave Watson 1759fedf201eSDave Watson if (to_decrypt <= len && !is_kvec && !is_peek && 1760130b392cSDave Watson ctx->control == TLS_RECORD_TYPE_DATA && 17614509de14SVakul Garg prot->version != TLS_1_3_VERSION) 1762fedf201eSDave Watson zc = true; 1763fedf201eSDave Watson 1764c0ab4732SVakul Garg /* Do not use async mode if record is non-data */ 1765c0ab4732SVakul Garg if (ctx->control == TLS_RECORD_TYPE_DATA) 17667754bd63SEran Ben Elisha async_capable = ctx->async_capable; 1767c0ab4732SVakul Garg else 17687754bd63SEran Ben Elisha async_capable = false; 1769c0ab4732SVakul Garg 1770fedf201eSDave Watson err = decrypt_skb_update(sk, skb, &msg->msg_iter, 17717754bd63SEran Ben Elisha &chunk, &zc, async_capable); 1772fedf201eSDave Watson if (err < 0 && err != -EINPROGRESS) { 1773fedf201eSDave Watson tls_err_abort(sk, EBADMSG); 1774fedf201eSDave Watson goto recv_end; 1775fedf201eSDave Watson } 1776fedf201eSDave Watson 17777754bd63SEran Ben Elisha if (err == -EINPROGRESS) { 17787754bd63SEran Ben Elisha async = true; 1779fedf201eSDave Watson num_async++; 17807754bd63SEran Ben Elisha } else if (prot->version == TLS_1_3_VERSION) { 17812b794c40SVakul Garg tlm->control = ctx->control; 17827754bd63SEran Ben Elisha } 17832b794c40SVakul Garg 17842b794c40SVakul Garg /* If the type of records being processed is not known yet, 17852b794c40SVakul Garg * set it to record type just dequeued. If it is already known, 17862b794c40SVakul Garg * but does not match the record type just dequeued, go to end. 17872b794c40SVakul Garg * We always get record type here since for tls1.2, record type 17882b794c40SVakul Garg * is known just after record is dequeued from stream parser. 17892b794c40SVakul Garg * For tls1.3, we disable async. 17902b794c40SVakul Garg */ 17912b794c40SVakul Garg 17922b794c40SVakul Garg if (!control) 17932b794c40SVakul Garg control = tlm->control; 17942b794c40SVakul Garg else if (control != tlm->control) 17952b794c40SVakul Garg goto recv_end; 1796fedf201eSDave Watson 1797c46234ebSDave Watson if (!cmsg) { 1798c46234ebSDave Watson int cerr; 1799c46234ebSDave Watson 1800c46234ebSDave Watson cerr = put_cmsg(msg, SOL_TLS, TLS_GET_RECORD_TYPE, 18012b794c40SVakul Garg sizeof(control), &control); 1802c46234ebSDave Watson cmsg = true; 18032b794c40SVakul Garg if (control != TLS_RECORD_TYPE_DATA) { 1804c46234ebSDave Watson if (cerr || msg->msg_flags & MSG_CTRUNC) { 1805c46234ebSDave Watson err = -EIO; 1806c46234ebSDave Watson goto recv_end; 1807c46234ebSDave Watson } 1808c46234ebSDave Watson } 1809c46234ebSDave Watson } 1810c46234ebSDave Watson 1811c0ab4732SVakul Garg if (async) 1812c0ab4732SVakul Garg goto pick_next_record; 1813c0ab4732SVakul Garg 1814c46234ebSDave Watson if (!zc) { 1815692d7b5dSVakul Garg if (rxm->full_len > len) { 1816692d7b5dSVakul Garg retain_skb = true; 1817692d7b5dSVakul Garg chunk = len; 1818692d7b5dSVakul Garg } else { 1819692d7b5dSVakul Garg chunk = rxm->full_len; 1820692d7b5dSVakul Garg } 182194524d8fSVakul Garg 1822692d7b5dSVakul Garg err = skb_copy_datagram_msg(skb, rxm->offset, 1823692d7b5dSVakul Garg msg, chunk); 1824c46234ebSDave Watson if (err < 0) 1825c46234ebSDave Watson goto recv_end; 1826692d7b5dSVakul Garg 1827692d7b5dSVakul Garg if (!is_peek) { 1828692d7b5dSVakul Garg rxm->offset = rxm->offset + chunk; 1829692d7b5dSVakul Garg rxm->full_len = rxm->full_len - chunk; 1830692d7b5dSVakul Garg } 1831692d7b5dSVakul Garg } 1832c46234ebSDave Watson 183394524d8fSVakul Garg pick_next_record: 1834692d7b5dSVakul Garg if (chunk > len) 1835692d7b5dSVakul Garg chunk = len; 1836c46234ebSDave Watson 1837692d7b5dSVakul Garg decrypted += chunk; 1838692d7b5dSVakul Garg len -= chunk; 1839692d7b5dSVakul Garg 1840692d7b5dSVakul Garg /* For async or peek case, queue the current skb */ 1841692d7b5dSVakul Garg if (async || is_peek || retain_skb) { 1842692d7b5dSVakul Garg skb_queue_tail(&ctx->rx_list, skb); 184394524d8fSVakul Garg skb = NULL; 1844692d7b5dSVakul Garg } 184594524d8fSVakul Garg 1846c46234ebSDave Watson if (tls_sw_advance_skb(sk, skb, chunk)) { 1847c46234ebSDave Watson /* Return full control message to 1848c46234ebSDave Watson * userspace before trying to parse 1849c46234ebSDave Watson * another message type 1850c46234ebSDave Watson */ 1851c46234ebSDave Watson msg->msg_flags |= MSG_EOR; 1852692d7b5dSVakul Garg if (ctx->control != TLS_RECORD_TYPE_DATA) 1853c46234ebSDave Watson goto recv_end; 185494524d8fSVakul Garg } else { 185594524d8fSVakul Garg break; 1856c46234ebSDave Watson } 185704b25a54SJakub Kicinski } 1858c46234ebSDave Watson 1859c46234ebSDave Watson recv_end: 186094524d8fSVakul Garg if (num_async) { 186194524d8fSVakul Garg /* Wait for all previously submitted records to be decrypted */ 186294524d8fSVakul Garg smp_store_mb(ctx->async_notify, true); 186394524d8fSVakul Garg if (atomic_read(&ctx->decrypt_pending)) { 186494524d8fSVakul Garg err = crypto_wait_req(-EINPROGRESS, &ctx->async_wait); 186594524d8fSVakul Garg if (err) { 186694524d8fSVakul Garg /* one of async decrypt failed */ 186794524d8fSVakul Garg tls_err_abort(sk, err); 186894524d8fSVakul Garg copied = 0; 1869692d7b5dSVakul Garg decrypted = 0; 1870692d7b5dSVakul Garg goto end; 187194524d8fSVakul Garg } 187294524d8fSVakul Garg } else { 187394524d8fSVakul Garg reinit_completion(&ctx->async_wait.completion); 187494524d8fSVakul Garg } 187594524d8fSVakul Garg WRITE_ONCE(ctx->async_notify, false); 1876692d7b5dSVakul Garg 1877692d7b5dSVakul Garg /* Drain records from the rx_list & copy if required */ 1878692d7b5dSVakul Garg if (is_peek || is_kvec) 18792b794c40SVakul Garg err = process_rx_list(ctx, msg, &control, &cmsg, copied, 1880692d7b5dSVakul Garg decrypted, false, is_peek); 1881692d7b5dSVakul Garg else 18822b794c40SVakul Garg err = process_rx_list(ctx, msg, &control, &cmsg, 0, 1883692d7b5dSVakul Garg decrypted, true, is_peek); 1884692d7b5dSVakul Garg if (err < 0) { 1885692d7b5dSVakul Garg tls_err_abort(sk, err); 1886692d7b5dSVakul Garg copied = 0; 1887692d7b5dSVakul Garg goto end; 188894524d8fSVakul Garg } 1889692d7b5dSVakul Garg } 1890692d7b5dSVakul Garg 1891692d7b5dSVakul Garg copied += decrypted; 1892692d7b5dSVakul Garg 1893692d7b5dSVakul Garg end: 1894c46234ebSDave Watson release_sock(sk); 1895d3b18ad3SJohn Fastabend if (psock) 1896d3b18ad3SJohn Fastabend sk_psock_put(sk, psock); 1897c46234ebSDave Watson return copied ? : err; 1898c46234ebSDave Watson } 1899c46234ebSDave Watson 1900c46234ebSDave Watson ssize_t tls_sw_splice_read(struct socket *sock, loff_t *ppos, 1901c46234ebSDave Watson struct pipe_inode_info *pipe, 1902c46234ebSDave Watson size_t len, unsigned int flags) 1903c46234ebSDave Watson { 1904c46234ebSDave Watson struct tls_context *tls_ctx = tls_get_ctx(sock->sk); 1905f66de3eeSBoris Pismenny struct tls_sw_context_rx *ctx = tls_sw_ctx_rx(tls_ctx); 1906c46234ebSDave Watson struct strp_msg *rxm = NULL; 1907c46234ebSDave Watson struct sock *sk = sock->sk; 1908c46234ebSDave Watson struct sk_buff *skb; 1909c46234ebSDave Watson ssize_t copied = 0; 1910c46234ebSDave Watson int err = 0; 1911c46234ebSDave Watson long timeo; 1912c46234ebSDave Watson int chunk; 19130b243d00SVakul Garg bool zc = false; 1914c46234ebSDave Watson 1915c46234ebSDave Watson lock_sock(sk); 1916c46234ebSDave Watson 1917c46234ebSDave Watson timeo = sock_rcvtimeo(sk, flags & MSG_DONTWAIT); 1918c46234ebSDave Watson 1919d3b18ad3SJohn Fastabend skb = tls_wait_data(sk, NULL, flags, timeo, &err); 1920c46234ebSDave Watson if (!skb) 1921c46234ebSDave Watson goto splice_read_end; 1922c46234ebSDave Watson 1923fedf201eSDave Watson if (!ctx->decrypted) { 1924fedf201eSDave Watson err = decrypt_skb_update(sk, skb, NULL, &chunk, &zc, false); 1925fedf201eSDave Watson 1926c46234ebSDave Watson /* splice does not support reading control messages */ 1927c46234ebSDave Watson if (ctx->control != TLS_RECORD_TYPE_DATA) { 1928c46234ebSDave Watson err = -ENOTSUPP; 1929c46234ebSDave Watson goto splice_read_end; 1930c46234ebSDave Watson } 1931c46234ebSDave Watson 1932c46234ebSDave Watson if (err < 0) { 1933c46234ebSDave Watson tls_err_abort(sk, EBADMSG); 1934c46234ebSDave Watson goto splice_read_end; 1935c46234ebSDave Watson } 1936bc76e5bbSJakub Kicinski ctx->decrypted = 1; 1937c46234ebSDave Watson } 1938c46234ebSDave Watson rxm = strp_msg(skb); 1939c46234ebSDave Watson 1940c46234ebSDave Watson chunk = min_t(unsigned int, rxm->full_len, len); 1941c46234ebSDave Watson copied = skb_splice_bits(skb, sk, rxm->offset, pipe, chunk, flags); 1942c46234ebSDave Watson if (copied < 0) 1943c46234ebSDave Watson goto splice_read_end; 1944c46234ebSDave Watson 1945c46234ebSDave Watson if (likely(!(flags & MSG_PEEK))) 1946c46234ebSDave Watson tls_sw_advance_skb(sk, skb, copied); 1947c46234ebSDave Watson 1948c46234ebSDave Watson splice_read_end: 1949c46234ebSDave Watson release_sock(sk); 1950c46234ebSDave Watson return copied ? : err; 1951c46234ebSDave Watson } 1952c46234ebSDave Watson 1953924ad65eSJohn Fastabend bool tls_sw_stream_read(const struct sock *sk) 1954c46234ebSDave Watson { 1955c46234ebSDave Watson struct tls_context *tls_ctx = tls_get_ctx(sk); 1956f66de3eeSBoris Pismenny struct tls_sw_context_rx *ctx = tls_sw_ctx_rx(tls_ctx); 1957d3b18ad3SJohn Fastabend bool ingress_empty = true; 1958d3b18ad3SJohn Fastabend struct sk_psock *psock; 1959c46234ebSDave Watson 1960d3b18ad3SJohn Fastabend rcu_read_lock(); 1961d3b18ad3SJohn Fastabend psock = sk_psock(sk); 1962d3b18ad3SJohn Fastabend if (psock) 1963d3b18ad3SJohn Fastabend ingress_empty = list_empty(&psock->ingress_msg); 1964d3b18ad3SJohn Fastabend rcu_read_unlock(); 1965c46234ebSDave Watson 196613aecb17SJakub Kicinski return !ingress_empty || ctx->recv_pkt || 196713aecb17SJakub Kicinski !skb_queue_empty(&ctx->rx_list); 1968c46234ebSDave Watson } 1969c46234ebSDave Watson 1970c46234ebSDave Watson static int tls_read_size(struct strparser *strp, struct sk_buff *skb) 1971c46234ebSDave Watson { 1972c46234ebSDave Watson struct tls_context *tls_ctx = tls_get_ctx(strp->sk); 1973f66de3eeSBoris Pismenny struct tls_sw_context_rx *ctx = tls_sw_ctx_rx(tls_ctx); 19744509de14SVakul Garg struct tls_prot_info *prot = &tls_ctx->prot_info; 19753463e51dSKees Cook char header[TLS_HEADER_SIZE + MAX_IV_SIZE]; 1976c46234ebSDave Watson struct strp_msg *rxm = strp_msg(skb); 1977c46234ebSDave Watson size_t cipher_overhead; 1978c46234ebSDave Watson size_t data_len = 0; 1979c46234ebSDave Watson int ret; 1980c46234ebSDave Watson 1981c46234ebSDave Watson /* Verify that we have a full TLS header, or wait for more data */ 19824509de14SVakul Garg if (rxm->offset + prot->prepend_size > skb->len) 1983c46234ebSDave Watson return 0; 1984c46234ebSDave Watson 19853463e51dSKees Cook /* Sanity-check size of on-stack buffer. */ 19864509de14SVakul Garg if (WARN_ON(prot->prepend_size > sizeof(header))) { 19873463e51dSKees Cook ret = -EINVAL; 19883463e51dSKees Cook goto read_failure; 19893463e51dSKees Cook } 19903463e51dSKees Cook 1991c46234ebSDave Watson /* Linearize header to local buffer */ 19924509de14SVakul Garg ret = skb_copy_bits(skb, rxm->offset, header, prot->prepend_size); 1993c46234ebSDave Watson 1994c46234ebSDave Watson if (ret < 0) 1995c46234ebSDave Watson goto read_failure; 1996c46234ebSDave Watson 1997c46234ebSDave Watson ctx->control = header[0]; 1998c46234ebSDave Watson 1999c46234ebSDave Watson data_len = ((header[4] & 0xFF) | (header[3] << 8)); 2000c46234ebSDave Watson 20014509de14SVakul Garg cipher_overhead = prot->tag_size; 20024509de14SVakul Garg if (prot->version != TLS_1_3_VERSION) 20034509de14SVakul Garg cipher_overhead += prot->iv_size; 2004c46234ebSDave Watson 2005130b392cSDave Watson if (data_len > TLS_MAX_PAYLOAD_SIZE + cipher_overhead + 20064509de14SVakul Garg prot->tail_size) { 2007c46234ebSDave Watson ret = -EMSGSIZE; 2008c46234ebSDave Watson goto read_failure; 2009c46234ebSDave Watson } 2010c46234ebSDave Watson if (data_len < cipher_overhead) { 2011c46234ebSDave Watson ret = -EBADMSG; 2012c46234ebSDave Watson goto read_failure; 2013c46234ebSDave Watson } 2014c46234ebSDave Watson 2015130b392cSDave Watson /* Note that both TLS1.3 and TLS1.2 use TLS_1_2 version here */ 2016130b392cSDave Watson if (header[1] != TLS_1_2_VERSION_MINOR || 2017130b392cSDave Watson header[2] != TLS_1_2_VERSION_MAJOR) { 2018c46234ebSDave Watson ret = -EINVAL; 2019c46234ebSDave Watson goto read_failure; 2020c46234ebSDave Watson } 2021be2fbc15SJakub Kicinski 2022f953d33bSJakub Kicinski tls_device_rx_resync_new_rec(strp->sk, data_len + TLS_HEADER_SIZE, 2023fe58a5a0SJakub Kicinski TCP_SKB_CB(skb)->seq + rxm->offset); 2024c46234ebSDave Watson return data_len + TLS_HEADER_SIZE; 2025c46234ebSDave Watson 2026c46234ebSDave Watson read_failure: 2027c46234ebSDave Watson tls_err_abort(strp->sk, ret); 2028c46234ebSDave Watson 2029c46234ebSDave Watson return ret; 2030c46234ebSDave Watson } 2031c46234ebSDave Watson 2032c46234ebSDave Watson static void tls_queue(struct strparser *strp, struct sk_buff *skb) 2033c46234ebSDave Watson { 2034c46234ebSDave Watson struct tls_context *tls_ctx = tls_get_ctx(strp->sk); 2035f66de3eeSBoris Pismenny struct tls_sw_context_rx *ctx = tls_sw_ctx_rx(tls_ctx); 2036c46234ebSDave Watson 2037bc76e5bbSJakub Kicinski ctx->decrypted = 0; 2038c46234ebSDave Watson 2039c46234ebSDave Watson ctx->recv_pkt = skb; 2040c46234ebSDave Watson strp_pause(strp); 2041c46234ebSDave Watson 2042ad13acceSVakul Garg ctx->saved_data_ready(strp->sk); 2043c46234ebSDave Watson } 2044c46234ebSDave Watson 2045c46234ebSDave Watson static void tls_data_ready(struct sock *sk) 2046c46234ebSDave Watson { 2047c46234ebSDave Watson struct tls_context *tls_ctx = tls_get_ctx(sk); 2048f66de3eeSBoris Pismenny struct tls_sw_context_rx *ctx = tls_sw_ctx_rx(tls_ctx); 2049d3b18ad3SJohn Fastabend struct sk_psock *psock; 2050c46234ebSDave Watson 2051c46234ebSDave Watson strp_data_ready(&ctx->strp); 2052d3b18ad3SJohn Fastabend 2053d3b18ad3SJohn Fastabend psock = sk_psock_get(sk); 2054d3b18ad3SJohn Fastabend if (psock && !list_empty(&psock->ingress_msg)) { 2055d3b18ad3SJohn Fastabend ctx->saved_data_ready(sk); 2056d3b18ad3SJohn Fastabend sk_psock_put(sk, psock); 2057d3b18ad3SJohn Fastabend } 2058c46234ebSDave Watson } 2059c46234ebSDave Watson 2060f87e62d4SJohn Fastabend void tls_sw_cancel_work_tx(struct tls_context *tls_ctx) 2061f87e62d4SJohn Fastabend { 2062f87e62d4SJohn Fastabend struct tls_sw_context_tx *ctx = tls_sw_ctx_tx(tls_ctx); 2063f87e62d4SJohn Fastabend 2064f87e62d4SJohn Fastabend set_bit(BIT_TX_CLOSING, &ctx->tx_bitmask); 2065f87e62d4SJohn Fastabend set_bit(BIT_TX_SCHEDULED, &ctx->tx_bitmask); 2066f87e62d4SJohn Fastabend cancel_delayed_work_sync(&ctx->tx_work.work); 2067f87e62d4SJohn Fastabend } 2068f87e62d4SJohn Fastabend 2069313ab004SJohn Fastabend void tls_sw_release_resources_tx(struct sock *sk) 20703c4d7559SDave Watson { 20713c4d7559SDave Watson struct tls_context *tls_ctx = tls_get_ctx(sk); 2072f66de3eeSBoris Pismenny struct tls_sw_context_tx *ctx = tls_sw_ctx_tx(tls_ctx); 2073a42055e8SVakul Garg struct tls_rec *rec, *tmp; 2074a42055e8SVakul Garg 2075a42055e8SVakul Garg /* Wait for any pending async encryptions to complete */ 2076a42055e8SVakul Garg smp_store_mb(ctx->async_notify, true); 2077a42055e8SVakul Garg if (atomic_read(&ctx->encrypt_pending)) 2078a42055e8SVakul Garg crypto_wait_req(-EINPROGRESS, &ctx->async_wait); 2079a42055e8SVakul Garg 2080a42055e8SVakul Garg tls_tx_records(sk, -1); 2081a42055e8SVakul Garg 20829932a29aSVakul Garg /* Free up un-sent records in tx_list. First, free 2083a42055e8SVakul Garg * the partially sent record if any at head of tx_list. 2084a42055e8SVakul Garg */ 208535b71a34SJakub Kicinski if (tls_free_partial_record(sk, tls_ctx)) { 20869932a29aSVakul Garg rec = list_first_entry(&ctx->tx_list, 2087a42055e8SVakul Garg struct tls_rec, list); 2088a42055e8SVakul Garg list_del(&rec->list); 2089d829e9c4SDaniel Borkmann sk_msg_free(sk, &rec->msg_plaintext); 2090a42055e8SVakul Garg kfree(rec); 2091a42055e8SVakul Garg } 2092a42055e8SVakul Garg 20939932a29aSVakul Garg list_for_each_entry_safe(rec, tmp, &ctx->tx_list, list) { 2094a42055e8SVakul Garg list_del(&rec->list); 2095d829e9c4SDaniel Borkmann sk_msg_free(sk, &rec->msg_encrypted); 2096d829e9c4SDaniel Borkmann sk_msg_free(sk, &rec->msg_plaintext); 2097a42055e8SVakul Garg kfree(rec); 2098a42055e8SVakul Garg } 20993c4d7559SDave Watson 21003c4d7559SDave Watson crypto_free_aead(ctx->aead_send); 2101c774973eSVakul Garg tls_free_open_rec(sk); 2102313ab004SJohn Fastabend } 2103313ab004SJohn Fastabend 2104313ab004SJohn Fastabend void tls_sw_free_ctx_tx(struct tls_context *tls_ctx) 2105313ab004SJohn Fastabend { 2106313ab004SJohn Fastabend struct tls_sw_context_tx *ctx = tls_sw_ctx_tx(tls_ctx); 2107f66de3eeSBoris Pismenny 2108f66de3eeSBoris Pismenny kfree(ctx); 2109f66de3eeSBoris Pismenny } 2110f66de3eeSBoris Pismenny 211139f56e1aSBoris Pismenny void tls_sw_release_resources_rx(struct sock *sk) 2112f66de3eeSBoris Pismenny { 2113f66de3eeSBoris Pismenny struct tls_context *tls_ctx = tls_get_ctx(sk); 2114f66de3eeSBoris Pismenny struct tls_sw_context_rx *ctx = tls_sw_ctx_rx(tls_ctx); 2115f66de3eeSBoris Pismenny 211612c76861SJakub Kicinski kfree(tls_ctx->rx.rec_seq); 211712c76861SJakub Kicinski kfree(tls_ctx->rx.iv); 211812c76861SJakub Kicinski 2119c46234ebSDave Watson if (ctx->aead_recv) { 2120c46234ebSDave Watson kfree_skb(ctx->recv_pkt); 2121c46234ebSDave Watson ctx->recv_pkt = NULL; 2122692d7b5dSVakul Garg skb_queue_purge(&ctx->rx_list); 2123c46234ebSDave Watson crypto_free_aead(ctx->aead_recv); 2124c46234ebSDave Watson strp_stop(&ctx->strp); 2125313ab004SJohn Fastabend /* If tls_sw_strparser_arm() was not called (cleanup paths) 2126313ab004SJohn Fastabend * we still want to strp_stop(), but sk->sk_data_ready was 2127313ab004SJohn Fastabend * never swapped. 2128313ab004SJohn Fastabend */ 2129313ab004SJohn Fastabend if (ctx->saved_data_ready) { 2130c46234ebSDave Watson write_lock_bh(&sk->sk_callback_lock); 2131c46234ebSDave Watson sk->sk_data_ready = ctx->saved_data_ready; 2132c46234ebSDave Watson write_unlock_bh(&sk->sk_callback_lock); 2133c46234ebSDave Watson } 213439f56e1aSBoris Pismenny } 2135313ab004SJohn Fastabend } 2136313ab004SJohn Fastabend 2137313ab004SJohn Fastabend void tls_sw_strparser_done(struct tls_context *tls_ctx) 2138313ab004SJohn Fastabend { 2139313ab004SJohn Fastabend struct tls_sw_context_rx *ctx = tls_sw_ctx_rx(tls_ctx); 2140313ab004SJohn Fastabend 2141313ab004SJohn Fastabend strp_done(&ctx->strp); 2142313ab004SJohn Fastabend } 2143313ab004SJohn Fastabend 2144313ab004SJohn Fastabend void tls_sw_free_ctx_rx(struct tls_context *tls_ctx) 2145313ab004SJohn Fastabend { 2146313ab004SJohn Fastabend struct tls_sw_context_rx *ctx = tls_sw_ctx_rx(tls_ctx); 2147313ab004SJohn Fastabend 2148313ab004SJohn Fastabend kfree(ctx); 2149313ab004SJohn Fastabend } 215039f56e1aSBoris Pismenny 215139f56e1aSBoris Pismenny void tls_sw_free_resources_rx(struct sock *sk) 215239f56e1aSBoris Pismenny { 215339f56e1aSBoris Pismenny struct tls_context *tls_ctx = tls_get_ctx(sk); 215439f56e1aSBoris Pismenny 215539f56e1aSBoris Pismenny tls_sw_release_resources_rx(sk); 2156313ab004SJohn Fastabend tls_sw_free_ctx_rx(tls_ctx); 21573c4d7559SDave Watson } 21583c4d7559SDave Watson 21599932a29aSVakul Garg /* The work handler to transmitt the encrypted records in tx_list */ 2160a42055e8SVakul Garg static void tx_work_handler(struct work_struct *work) 2161a42055e8SVakul Garg { 2162a42055e8SVakul Garg struct delayed_work *delayed_work = to_delayed_work(work); 2163a42055e8SVakul Garg struct tx_work *tx_work = container_of(delayed_work, 2164a42055e8SVakul Garg struct tx_work, work); 2165a42055e8SVakul Garg struct sock *sk = tx_work->sk; 2166a42055e8SVakul Garg struct tls_context *tls_ctx = tls_get_ctx(sk); 2167f87e62d4SJohn Fastabend struct tls_sw_context_tx *ctx; 2168f87e62d4SJohn Fastabend 2169f87e62d4SJohn Fastabend if (unlikely(!tls_ctx)) 2170f87e62d4SJohn Fastabend return; 2171f87e62d4SJohn Fastabend 2172f87e62d4SJohn Fastabend ctx = tls_sw_ctx_tx(tls_ctx); 2173f87e62d4SJohn Fastabend if (test_bit(BIT_TX_CLOSING, &ctx->tx_bitmask)) 2174f87e62d4SJohn Fastabend return; 2175a42055e8SVakul Garg 2176a42055e8SVakul Garg if (!test_and_clear_bit(BIT_TX_SCHEDULED, &ctx->tx_bitmask)) 2177a42055e8SVakul Garg return; 2178a42055e8SVakul Garg lock_sock(sk); 2179a42055e8SVakul Garg tls_tx_records(sk, -1); 2180a42055e8SVakul Garg release_sock(sk); 2181a42055e8SVakul Garg } 2182a42055e8SVakul Garg 21837463d3a2SBoris Pismenny void tls_sw_write_space(struct sock *sk, struct tls_context *ctx) 21847463d3a2SBoris Pismenny { 21857463d3a2SBoris Pismenny struct tls_sw_context_tx *tx_ctx = tls_sw_ctx_tx(ctx); 21867463d3a2SBoris Pismenny 21877463d3a2SBoris Pismenny /* Schedule the transmission if tx list is ready */ 21887463d3a2SBoris Pismenny if (is_tx_ready(tx_ctx) && !sk->sk_write_pending) { 21897463d3a2SBoris Pismenny /* Schedule the transmission */ 21907463d3a2SBoris Pismenny if (!test_and_set_bit(BIT_TX_SCHEDULED, 21917463d3a2SBoris Pismenny &tx_ctx->tx_bitmask)) 21927463d3a2SBoris Pismenny schedule_delayed_work(&tx_ctx->tx_work.work, 0); 21937463d3a2SBoris Pismenny } 21947463d3a2SBoris Pismenny } 21957463d3a2SBoris Pismenny 2196318892acSJakub Kicinski void tls_sw_strparser_arm(struct sock *sk, struct tls_context *tls_ctx) 2197318892acSJakub Kicinski { 2198318892acSJakub Kicinski struct tls_sw_context_rx *rx_ctx = tls_sw_ctx_rx(tls_ctx); 2199318892acSJakub Kicinski 2200318892acSJakub Kicinski write_lock_bh(&sk->sk_callback_lock); 2201318892acSJakub Kicinski rx_ctx->saved_data_ready = sk->sk_data_ready; 2202318892acSJakub Kicinski sk->sk_data_ready = tls_data_ready; 2203318892acSJakub Kicinski write_unlock_bh(&sk->sk_callback_lock); 2204318892acSJakub Kicinski 2205318892acSJakub Kicinski strp_check_rcv(&rx_ctx->strp); 2206318892acSJakub Kicinski } 2207318892acSJakub Kicinski 2208c46234ebSDave Watson int tls_set_sw_offload(struct sock *sk, struct tls_context *ctx, int tx) 22093c4d7559SDave Watson { 22104509de14SVakul Garg struct tls_context *tls_ctx = tls_get_ctx(sk); 22114509de14SVakul Garg struct tls_prot_info *prot = &tls_ctx->prot_info; 22123c4d7559SDave Watson struct tls_crypto_info *crypto_info; 22133c4d7559SDave Watson struct tls12_crypto_info_aes_gcm_128 *gcm_128_info; 2214fb99bce7SDave Watson struct tls12_crypto_info_aes_gcm_256 *gcm_256_info; 2215f295b3aeSVakul Garg struct tls12_crypto_info_aes_ccm_128 *ccm_128_info; 2216f66de3eeSBoris Pismenny struct tls_sw_context_tx *sw_ctx_tx = NULL; 2217f66de3eeSBoris Pismenny struct tls_sw_context_rx *sw_ctx_rx = NULL; 2218c46234ebSDave Watson struct cipher_context *cctx; 2219c46234ebSDave Watson struct crypto_aead **aead; 2220c46234ebSDave Watson struct strp_callbacks cb; 2221f295b3aeSVakul Garg u16 nonce_size, tag_size, iv_size, rec_seq_size, salt_size; 2222692d7b5dSVakul Garg struct crypto_tfm *tfm; 2223f295b3aeSVakul Garg char *iv, *rec_seq, *key, *salt, *cipher_name; 2224fb99bce7SDave Watson size_t keysize; 22253c4d7559SDave Watson int rc = 0; 22263c4d7559SDave Watson 22273c4d7559SDave Watson if (!ctx) { 22283c4d7559SDave Watson rc = -EINVAL; 22293c4d7559SDave Watson goto out; 22303c4d7559SDave Watson } 22313c4d7559SDave Watson 2232f66de3eeSBoris Pismenny if (tx) { 2233b190a587SBoris Pismenny if (!ctx->priv_ctx_tx) { 2234f66de3eeSBoris Pismenny sw_ctx_tx = kzalloc(sizeof(*sw_ctx_tx), GFP_KERNEL); 2235f66de3eeSBoris Pismenny if (!sw_ctx_tx) { 22363c4d7559SDave Watson rc = -ENOMEM; 22373c4d7559SDave Watson goto out; 22383c4d7559SDave Watson } 2239f66de3eeSBoris Pismenny ctx->priv_ctx_tx = sw_ctx_tx; 2240c46234ebSDave Watson } else { 2241b190a587SBoris Pismenny sw_ctx_tx = 2242b190a587SBoris Pismenny (struct tls_sw_context_tx *)ctx->priv_ctx_tx; 2243b190a587SBoris Pismenny } 2244b190a587SBoris Pismenny } else { 2245b190a587SBoris Pismenny if (!ctx->priv_ctx_rx) { 2246f66de3eeSBoris Pismenny sw_ctx_rx = kzalloc(sizeof(*sw_ctx_rx), GFP_KERNEL); 2247f66de3eeSBoris Pismenny if (!sw_ctx_rx) { 2248f66de3eeSBoris Pismenny rc = -ENOMEM; 2249f66de3eeSBoris Pismenny goto out; 2250c46234ebSDave Watson } 2251f66de3eeSBoris Pismenny ctx->priv_ctx_rx = sw_ctx_rx; 2252b190a587SBoris Pismenny } else { 2253b190a587SBoris Pismenny sw_ctx_rx = 2254b190a587SBoris Pismenny (struct tls_sw_context_rx *)ctx->priv_ctx_rx; 2255b190a587SBoris Pismenny } 2256f66de3eeSBoris Pismenny } 22573c4d7559SDave Watson 2258c46234ebSDave Watson if (tx) { 2259b190a587SBoris Pismenny crypto_init_wait(&sw_ctx_tx->async_wait); 226086029d10SSabrina Dubroca crypto_info = &ctx->crypto_send.info; 2261c46234ebSDave Watson cctx = &ctx->tx; 2262f66de3eeSBoris Pismenny aead = &sw_ctx_tx->aead_send; 22639932a29aSVakul Garg INIT_LIST_HEAD(&sw_ctx_tx->tx_list); 2264a42055e8SVakul Garg INIT_DELAYED_WORK(&sw_ctx_tx->tx_work.work, tx_work_handler); 2265a42055e8SVakul Garg sw_ctx_tx->tx_work.sk = sk; 2266c46234ebSDave Watson } else { 2267b190a587SBoris Pismenny crypto_init_wait(&sw_ctx_rx->async_wait); 226886029d10SSabrina Dubroca crypto_info = &ctx->crypto_recv.info; 2269c46234ebSDave Watson cctx = &ctx->rx; 2270692d7b5dSVakul Garg skb_queue_head_init(&sw_ctx_rx->rx_list); 2271f66de3eeSBoris Pismenny aead = &sw_ctx_rx->aead_recv; 2272c46234ebSDave Watson } 2273c46234ebSDave Watson 22743c4d7559SDave Watson switch (crypto_info->cipher_type) { 22753c4d7559SDave Watson case TLS_CIPHER_AES_GCM_128: { 22763c4d7559SDave Watson nonce_size = TLS_CIPHER_AES_GCM_128_IV_SIZE; 22773c4d7559SDave Watson tag_size = TLS_CIPHER_AES_GCM_128_TAG_SIZE; 22783c4d7559SDave Watson iv_size = TLS_CIPHER_AES_GCM_128_IV_SIZE; 22793c4d7559SDave Watson iv = ((struct tls12_crypto_info_aes_gcm_128 *)crypto_info)->iv; 22803c4d7559SDave Watson rec_seq_size = TLS_CIPHER_AES_GCM_128_REC_SEQ_SIZE; 22813c4d7559SDave Watson rec_seq = 22823c4d7559SDave Watson ((struct tls12_crypto_info_aes_gcm_128 *)crypto_info)->rec_seq; 22833c4d7559SDave Watson gcm_128_info = 22843c4d7559SDave Watson (struct tls12_crypto_info_aes_gcm_128 *)crypto_info; 2285fb99bce7SDave Watson keysize = TLS_CIPHER_AES_GCM_128_KEY_SIZE; 2286fb99bce7SDave Watson key = gcm_128_info->key; 2287fb99bce7SDave Watson salt = gcm_128_info->salt; 2288f295b3aeSVakul Garg salt_size = TLS_CIPHER_AES_GCM_128_SALT_SIZE; 2289f295b3aeSVakul Garg cipher_name = "gcm(aes)"; 2290fb99bce7SDave Watson break; 2291fb99bce7SDave Watson } 2292fb99bce7SDave Watson case TLS_CIPHER_AES_GCM_256: { 2293fb99bce7SDave Watson nonce_size = TLS_CIPHER_AES_GCM_256_IV_SIZE; 2294fb99bce7SDave Watson tag_size = TLS_CIPHER_AES_GCM_256_TAG_SIZE; 2295fb99bce7SDave Watson iv_size = TLS_CIPHER_AES_GCM_256_IV_SIZE; 2296fb99bce7SDave Watson iv = ((struct tls12_crypto_info_aes_gcm_256 *)crypto_info)->iv; 2297fb99bce7SDave Watson rec_seq_size = TLS_CIPHER_AES_GCM_256_REC_SEQ_SIZE; 2298fb99bce7SDave Watson rec_seq = 2299fb99bce7SDave Watson ((struct tls12_crypto_info_aes_gcm_256 *)crypto_info)->rec_seq; 2300fb99bce7SDave Watson gcm_256_info = 2301fb99bce7SDave Watson (struct tls12_crypto_info_aes_gcm_256 *)crypto_info; 2302fb99bce7SDave Watson keysize = TLS_CIPHER_AES_GCM_256_KEY_SIZE; 2303fb99bce7SDave Watson key = gcm_256_info->key; 2304fb99bce7SDave Watson salt = gcm_256_info->salt; 2305f295b3aeSVakul Garg salt_size = TLS_CIPHER_AES_GCM_256_SALT_SIZE; 2306f295b3aeSVakul Garg cipher_name = "gcm(aes)"; 2307f295b3aeSVakul Garg break; 2308f295b3aeSVakul Garg } 2309f295b3aeSVakul Garg case TLS_CIPHER_AES_CCM_128: { 2310f295b3aeSVakul Garg nonce_size = TLS_CIPHER_AES_CCM_128_IV_SIZE; 2311f295b3aeSVakul Garg tag_size = TLS_CIPHER_AES_CCM_128_TAG_SIZE; 2312f295b3aeSVakul Garg iv_size = TLS_CIPHER_AES_CCM_128_IV_SIZE; 2313f295b3aeSVakul Garg iv = ((struct tls12_crypto_info_aes_ccm_128 *)crypto_info)->iv; 2314f295b3aeSVakul Garg rec_seq_size = TLS_CIPHER_AES_CCM_128_REC_SEQ_SIZE; 2315f295b3aeSVakul Garg rec_seq = 2316f295b3aeSVakul Garg ((struct tls12_crypto_info_aes_ccm_128 *)crypto_info)->rec_seq; 2317f295b3aeSVakul Garg ccm_128_info = 2318f295b3aeSVakul Garg (struct tls12_crypto_info_aes_ccm_128 *)crypto_info; 2319f295b3aeSVakul Garg keysize = TLS_CIPHER_AES_CCM_128_KEY_SIZE; 2320f295b3aeSVakul Garg key = ccm_128_info->key; 2321f295b3aeSVakul Garg salt = ccm_128_info->salt; 2322f295b3aeSVakul Garg salt_size = TLS_CIPHER_AES_CCM_128_SALT_SIZE; 2323f295b3aeSVakul Garg cipher_name = "ccm(aes)"; 23243c4d7559SDave Watson break; 23253c4d7559SDave Watson } 23263c4d7559SDave Watson default: 23273c4d7559SDave Watson rc = -EINVAL; 2328cf6d43efSSabrina Dubroca goto free_priv; 23293c4d7559SDave Watson } 23303c4d7559SDave Watson 233189fec474SJakub Kicinski /* Sanity-check the sizes for stack allocations. */ 233289fec474SJakub Kicinski if (iv_size > MAX_IV_SIZE || nonce_size > MAX_IV_SIZE || 233389fec474SJakub Kicinski rec_seq_size > TLS_MAX_REC_SEQ_SIZE) { 2334b16520f7SKees Cook rc = -EINVAL; 2335b16520f7SKees Cook goto free_priv; 2336b16520f7SKees Cook } 2337b16520f7SKees Cook 2338130b392cSDave Watson if (crypto_info->version == TLS_1_3_VERSION) { 2339130b392cSDave Watson nonce_size = 0; 23404509de14SVakul Garg prot->aad_size = TLS_HEADER_SIZE; 23414509de14SVakul Garg prot->tail_size = 1; 2342130b392cSDave Watson } else { 23434509de14SVakul Garg prot->aad_size = TLS_AAD_SPACE_SIZE; 23444509de14SVakul Garg prot->tail_size = 0; 2345130b392cSDave Watson } 2346130b392cSDave Watson 23474509de14SVakul Garg prot->version = crypto_info->version; 23484509de14SVakul Garg prot->cipher_type = crypto_info->cipher_type; 23494509de14SVakul Garg prot->prepend_size = TLS_HEADER_SIZE + nonce_size; 23504509de14SVakul Garg prot->tag_size = tag_size; 23514509de14SVakul Garg prot->overhead_size = prot->prepend_size + 23524509de14SVakul Garg prot->tag_size + prot->tail_size; 23534509de14SVakul Garg prot->iv_size = iv_size; 2354f295b3aeSVakul Garg prot->salt_size = salt_size; 2355f295b3aeSVakul Garg cctx->iv = kmalloc(iv_size + salt_size, GFP_KERNEL); 2356c46234ebSDave Watson if (!cctx->iv) { 23573c4d7559SDave Watson rc = -ENOMEM; 2358cf6d43efSSabrina Dubroca goto free_priv; 23593c4d7559SDave Watson } 2360fb99bce7SDave Watson /* Note: 128 & 256 bit salt are the same size */ 23614509de14SVakul Garg prot->rec_seq_size = rec_seq_size; 2362f295b3aeSVakul Garg memcpy(cctx->iv, salt, salt_size); 2363f295b3aeSVakul Garg memcpy(cctx->iv + salt_size, iv, iv_size); 2364969d5090Szhong jiang cctx->rec_seq = kmemdup(rec_seq, rec_seq_size, GFP_KERNEL); 2365c46234ebSDave Watson if (!cctx->rec_seq) { 23663c4d7559SDave Watson rc = -ENOMEM; 23673c4d7559SDave Watson goto free_iv; 23683c4d7559SDave Watson } 23693c4d7559SDave Watson 2370c46234ebSDave Watson if (!*aead) { 2371f295b3aeSVakul Garg *aead = crypto_alloc_aead(cipher_name, 0, 0); 2372c46234ebSDave Watson if (IS_ERR(*aead)) { 2373c46234ebSDave Watson rc = PTR_ERR(*aead); 2374c46234ebSDave Watson *aead = NULL; 23753c4d7559SDave Watson goto free_rec_seq; 23763c4d7559SDave Watson } 23773c4d7559SDave Watson } 23783c4d7559SDave Watson 23793c4d7559SDave Watson ctx->push_pending_record = tls_sw_push_pending_record; 23803c4d7559SDave Watson 2381fb99bce7SDave Watson rc = crypto_aead_setkey(*aead, key, keysize); 2382fb99bce7SDave Watson 23833c4d7559SDave Watson if (rc) 23843c4d7559SDave Watson goto free_aead; 23853c4d7559SDave Watson 23864509de14SVakul Garg rc = crypto_aead_setauthsize(*aead, prot->tag_size); 2387c46234ebSDave Watson if (rc) 2388c46234ebSDave Watson goto free_aead; 2389c46234ebSDave Watson 2390f66de3eeSBoris Pismenny if (sw_ctx_rx) { 2391692d7b5dSVakul Garg tfm = crypto_aead_tfm(sw_ctx_rx->aead_recv); 23928497ded2SVakul Garg 23938497ded2SVakul Garg if (crypto_info->version == TLS_1_3_VERSION) 23945c5458ecSJakub Kicinski sw_ctx_rx->async_capable = 0; 23958497ded2SVakul Garg else 2396692d7b5dSVakul Garg sw_ctx_rx->async_capable = 23975c5458ecSJakub Kicinski !!(tfm->__crt_alg->cra_flags & 23985c5458ecSJakub Kicinski CRYPTO_ALG_ASYNC); 2399692d7b5dSVakul Garg 2400c46234ebSDave Watson /* Set up strparser */ 2401c46234ebSDave Watson memset(&cb, 0, sizeof(cb)); 2402c46234ebSDave Watson cb.rcv_msg = tls_queue; 2403c46234ebSDave Watson cb.parse_msg = tls_read_size; 2404c46234ebSDave Watson 2405f66de3eeSBoris Pismenny strp_init(&sw_ctx_rx->strp, sk, &cb); 2406c46234ebSDave Watson } 2407c46234ebSDave Watson 2408c46234ebSDave Watson goto out; 24093c4d7559SDave Watson 24103c4d7559SDave Watson free_aead: 2411c46234ebSDave Watson crypto_free_aead(*aead); 2412c46234ebSDave Watson *aead = NULL; 24133c4d7559SDave Watson free_rec_seq: 2414c46234ebSDave Watson kfree(cctx->rec_seq); 2415c46234ebSDave Watson cctx->rec_seq = NULL; 24163c4d7559SDave Watson free_iv: 2417f66de3eeSBoris Pismenny kfree(cctx->iv); 2418f66de3eeSBoris Pismenny cctx->iv = NULL; 2419cf6d43efSSabrina Dubroca free_priv: 2420f66de3eeSBoris Pismenny if (tx) { 2421f66de3eeSBoris Pismenny kfree(ctx->priv_ctx_tx); 2422f66de3eeSBoris Pismenny ctx->priv_ctx_tx = NULL; 2423f66de3eeSBoris Pismenny } else { 2424f66de3eeSBoris Pismenny kfree(ctx->priv_ctx_rx); 2425f66de3eeSBoris Pismenny ctx->priv_ctx_rx = NULL; 2426f66de3eeSBoris Pismenny } 24273c4d7559SDave Watson out: 24283c4d7559SDave Watson return rc; 24293c4d7559SDave Watson } 2430