1 // SPDX-License-Identifier: GPL-2.0-or-later 2 /* 3 * af_alg: User-space algorithm interface 4 * 5 * This file provides the user-space API for algorithms. 6 * 7 * Copyright (c) 2010 Herbert Xu <herbert@gondor.apana.org.au> 8 */ 9 10 #include <linux/atomic.h> 11 #include <crypto/if_alg.h> 12 #include <linux/crypto.h> 13 #include <linux/init.h> 14 #include <linux/kernel.h> 15 #include <linux/key.h> 16 #include <linux/key-type.h> 17 #include <linux/list.h> 18 #include <linux/module.h> 19 #include <linux/net.h> 20 #include <linux/rwsem.h> 21 #include <linux/sched.h> 22 #include <linux/sched/signal.h> 23 #include <linux/security.h> 24 #include <linux/string.h> 25 #include <keys/user-type.h> 26 #include <keys/trusted-type.h> 27 #include <keys/encrypted-type.h> 28 29 struct alg_type_list { 30 const struct af_alg_type *type; 31 struct list_head list; 32 }; 33 34 static struct proto alg_proto = { 35 .name = "ALG", 36 .owner = THIS_MODULE, 37 .obj_size = sizeof(struct alg_sock), 38 }; 39 40 static LIST_HEAD(alg_types); 41 static DECLARE_RWSEM(alg_types_sem); 42 43 static const struct af_alg_type *alg_get_type(const char *name) 44 { 45 const struct af_alg_type *type = ERR_PTR(-ENOENT); 46 struct alg_type_list *node; 47 48 down_read(&alg_types_sem); 49 list_for_each_entry(node, &alg_types, list) { 50 if (strcmp(node->type->name, name)) 51 continue; 52 53 if (try_module_get(node->type->owner)) 54 type = node->type; 55 break; 56 } 57 up_read(&alg_types_sem); 58 59 return type; 60 } 61 62 int af_alg_register_type(const struct af_alg_type *type) 63 { 64 struct alg_type_list *node; 65 int err = -EEXIST; 66 67 down_write(&alg_types_sem); 68 list_for_each_entry(node, &alg_types, list) { 69 if (!strcmp(node->type->name, type->name)) 70 goto unlock; 71 } 72 73 node = kmalloc(sizeof(*node), GFP_KERNEL); 74 err = -ENOMEM; 75 if (!node) 76 goto unlock; 77 78 type->ops->owner = THIS_MODULE; 79 if (type->ops_nokey) 80 type->ops_nokey->owner = THIS_MODULE; 81 node->type = type; 82 list_add(&node->list, &alg_types); 83 err = 0; 84 85 unlock: 86 up_write(&alg_types_sem); 87 88 return err; 89 } 90 EXPORT_SYMBOL_GPL(af_alg_register_type); 91 92 int af_alg_unregister_type(const struct af_alg_type *type) 93 { 94 struct alg_type_list *node; 95 int err = -ENOENT; 96 97 down_write(&alg_types_sem); 98 list_for_each_entry(node, &alg_types, list) { 99 if (strcmp(node->type->name, type->name)) 100 continue; 101 102 list_del(&node->list); 103 kfree(node); 104 err = 0; 105 break; 106 } 107 up_write(&alg_types_sem); 108 109 return err; 110 } 111 EXPORT_SYMBOL_GPL(af_alg_unregister_type); 112 113 static void alg_do_release(const struct af_alg_type *type, void *private) 114 { 115 if (!type) 116 return; 117 118 type->release(private); 119 module_put(type->owner); 120 } 121 122 int af_alg_release(struct socket *sock) 123 { 124 if (sock->sk) { 125 sock_put(sock->sk); 126 sock->sk = NULL; 127 } 128 return 0; 129 } 130 EXPORT_SYMBOL_GPL(af_alg_release); 131 132 void af_alg_release_parent(struct sock *sk) 133 { 134 struct alg_sock *ask = alg_sk(sk); 135 unsigned int nokey = atomic_read(&ask->nokey_refcnt); 136 137 sk = ask->parent; 138 ask = alg_sk(sk); 139 140 if (nokey) 141 atomic_dec(&ask->nokey_refcnt); 142 143 if (atomic_dec_and_test(&ask->refcnt)) 144 sock_put(sk); 145 } 146 EXPORT_SYMBOL_GPL(af_alg_release_parent); 147 148 static int alg_bind(struct socket *sock, struct sockaddr *uaddr, int addr_len) 149 { 150 const u32 allowed = CRYPTO_ALG_KERN_DRIVER_ONLY; 151 struct sock *sk = sock->sk; 152 struct alg_sock *ask = alg_sk(sk); 153 struct sockaddr_alg_new *sa = (void *)uaddr; 154 const struct af_alg_type *type; 155 void *private; 156 int err; 157 158 if (sock->state == SS_CONNECTED) 159 return -EINVAL; 160 161 BUILD_BUG_ON(offsetof(struct sockaddr_alg_new, salg_name) != 162 offsetof(struct sockaddr_alg, salg_name)); 163 BUILD_BUG_ON(offsetof(struct sockaddr_alg, salg_name) != sizeof(*sa)); 164 165 if (addr_len < sizeof(*sa) + 1) 166 return -EINVAL; 167 168 /* If caller uses non-allowed flag, return error. */ 169 if ((sa->salg_feat & ~allowed) || (sa->salg_mask & ~allowed)) 170 return -EINVAL; 171 172 sa->salg_type[sizeof(sa->salg_type) - 1] = 0; 173 sa->salg_name[addr_len - sizeof(*sa) - 1] = 0; 174 175 type = alg_get_type(sa->salg_type); 176 if (PTR_ERR(type) == -ENOENT) { 177 request_module("algif-%s", sa->salg_type); 178 type = alg_get_type(sa->salg_type); 179 } 180 181 if (IS_ERR(type)) 182 return PTR_ERR(type); 183 184 private = type->bind(sa->salg_name, sa->salg_feat, sa->salg_mask); 185 if (IS_ERR(private)) { 186 module_put(type->owner); 187 return PTR_ERR(private); 188 } 189 190 err = -EBUSY; 191 lock_sock(sk); 192 if (atomic_read(&ask->refcnt)) 193 goto unlock; 194 195 swap(ask->type, type); 196 swap(ask->private, private); 197 198 err = 0; 199 200 unlock: 201 release_sock(sk); 202 203 alg_do_release(type, private); 204 205 return err; 206 } 207 208 static int alg_setkey(struct sock *sk, sockptr_t ukey, unsigned int keylen) 209 { 210 struct alg_sock *ask = alg_sk(sk); 211 const struct af_alg_type *type = ask->type; 212 u8 *key; 213 int err; 214 215 key = sock_kmalloc(sk, keylen, GFP_KERNEL); 216 if (!key) 217 return -ENOMEM; 218 219 err = -EFAULT; 220 if (copy_from_sockptr(key, ukey, keylen)) 221 goto out; 222 223 err = type->setkey(ask->private, key, keylen); 224 225 out: 226 sock_kzfree_s(sk, key, keylen); 227 228 return err; 229 } 230 231 #ifdef CONFIG_KEYS 232 233 static const u8 *key_data_ptr_user(const struct key *key, 234 unsigned int *datalen) 235 { 236 const struct user_key_payload *ukp; 237 238 ukp = user_key_payload_locked(key); 239 if (IS_ERR_OR_NULL(ukp)) 240 return ERR_PTR(-EKEYREVOKED); 241 242 *datalen = key->datalen; 243 244 return ukp->data; 245 } 246 247 static const u8 *key_data_ptr_encrypted(const struct key *key, 248 unsigned int *datalen) 249 { 250 const struct encrypted_key_payload *ekp; 251 252 ekp = dereference_key_locked(key); 253 if (IS_ERR_OR_NULL(ekp)) 254 return ERR_PTR(-EKEYREVOKED); 255 256 *datalen = ekp->decrypted_datalen; 257 258 return ekp->decrypted_data; 259 } 260 261 static const u8 *key_data_ptr_trusted(const struct key *key, 262 unsigned int *datalen) 263 { 264 const struct trusted_key_payload *tkp; 265 266 tkp = dereference_key_locked(key); 267 if (IS_ERR_OR_NULL(tkp)) 268 return ERR_PTR(-EKEYREVOKED); 269 270 *datalen = tkp->key_len; 271 272 return tkp->key; 273 } 274 275 static struct key *lookup_key(key_serial_t serial) 276 { 277 key_ref_t key_ref; 278 279 key_ref = lookup_user_key(serial, 0, KEY_NEED_SEARCH); 280 if (IS_ERR(key_ref)) 281 return ERR_CAST(key_ref); 282 283 return key_ref_to_ptr(key_ref); 284 } 285 286 static int alg_setkey_by_key_serial(struct alg_sock *ask, sockptr_t optval, 287 unsigned int optlen) 288 { 289 const struct af_alg_type *type = ask->type; 290 u8 *key_data = NULL; 291 unsigned int key_datalen; 292 key_serial_t serial; 293 struct key *key; 294 const u8 *ret; 295 int err; 296 297 if (optlen != sizeof(serial)) 298 return -EINVAL; 299 300 if (copy_from_sockptr(&serial, optval, optlen)) 301 return -EFAULT; 302 303 key = lookup_key(serial); 304 if (IS_ERR(key)) 305 return PTR_ERR(key); 306 307 down_read(&key->sem); 308 309 ret = ERR_PTR(-ENOPROTOOPT); 310 if (!strcmp(key->type->name, "user") || 311 !strcmp(key->type->name, "logon")) { 312 ret = key_data_ptr_user(key, &key_datalen); 313 } else if (IS_REACHABLE(CONFIG_ENCRYPTED_KEYS) && 314 !strcmp(key->type->name, "encrypted")) { 315 ret = key_data_ptr_encrypted(key, &key_datalen); 316 } else if (IS_REACHABLE(CONFIG_TRUSTED_KEYS) && 317 !strcmp(key->type->name, "trusted")) { 318 ret = key_data_ptr_trusted(key, &key_datalen); 319 } 320 321 if (IS_ERR(ret)) { 322 up_read(&key->sem); 323 return PTR_ERR(ret); 324 } 325 326 key_data = sock_kmalloc(&ask->sk, key_datalen, GFP_KERNEL); 327 if (!key_data) { 328 up_read(&key->sem); 329 return -ENOMEM; 330 } 331 332 memcpy(key_data, ret, key_datalen); 333 334 up_read(&key->sem); 335 336 err = type->setkey(ask->private, key_data, key_datalen); 337 338 sock_kzfree_s(&ask->sk, key_data, key_datalen); 339 340 return err; 341 } 342 343 #else 344 345 static inline int alg_setkey_by_key_serial(struct alg_sock *ask, 346 sockptr_t optval, 347 unsigned int optlen) 348 { 349 return -ENOPROTOOPT; 350 } 351 352 #endif 353 354 static int alg_setsockopt(struct socket *sock, int level, int optname, 355 sockptr_t optval, unsigned int optlen) 356 { 357 struct sock *sk = sock->sk; 358 struct alg_sock *ask = alg_sk(sk); 359 const struct af_alg_type *type; 360 int err = -EBUSY; 361 362 lock_sock(sk); 363 if (atomic_read(&ask->refcnt) != atomic_read(&ask->nokey_refcnt)) 364 goto unlock; 365 366 type = ask->type; 367 368 err = -ENOPROTOOPT; 369 if (level != SOL_ALG || !type) 370 goto unlock; 371 372 switch (optname) { 373 case ALG_SET_KEY: 374 case ALG_SET_KEY_BY_KEY_SERIAL: 375 if (sock->state == SS_CONNECTED) 376 goto unlock; 377 if (!type->setkey) 378 goto unlock; 379 380 if (optname == ALG_SET_KEY_BY_KEY_SERIAL) 381 err = alg_setkey_by_key_serial(ask, optval, optlen); 382 else 383 err = alg_setkey(sk, optval, optlen); 384 break; 385 case ALG_SET_AEAD_AUTHSIZE: 386 if (sock->state == SS_CONNECTED) 387 goto unlock; 388 if (!type->setauthsize) 389 goto unlock; 390 err = type->setauthsize(ask->private, optlen); 391 break; 392 case ALG_SET_DRBG_ENTROPY: 393 if (sock->state == SS_CONNECTED) 394 goto unlock; 395 if (!type->setentropy) 396 goto unlock; 397 398 err = type->setentropy(ask->private, optval, optlen); 399 } 400 401 unlock: 402 release_sock(sk); 403 404 return err; 405 } 406 407 int af_alg_accept(struct sock *sk, struct socket *newsock, bool kern) 408 { 409 struct alg_sock *ask = alg_sk(sk); 410 const struct af_alg_type *type; 411 struct sock *sk2; 412 unsigned int nokey; 413 int err; 414 415 lock_sock(sk); 416 type = ask->type; 417 418 err = -EINVAL; 419 if (!type) 420 goto unlock; 421 422 sk2 = sk_alloc(sock_net(sk), PF_ALG, GFP_KERNEL, &alg_proto, kern); 423 err = -ENOMEM; 424 if (!sk2) 425 goto unlock; 426 427 sock_init_data(newsock, sk2); 428 security_sock_graft(sk2, newsock); 429 security_sk_clone(sk, sk2); 430 431 /* 432 * newsock->ops assigned here to allow type->accept call to override 433 * them when required. 434 */ 435 newsock->ops = type->ops; 436 err = type->accept(ask->private, sk2); 437 438 nokey = err == -ENOKEY; 439 if (nokey && type->accept_nokey) 440 err = type->accept_nokey(ask->private, sk2); 441 442 if (err) 443 goto unlock; 444 445 if (atomic_inc_return_relaxed(&ask->refcnt) == 1) 446 sock_hold(sk); 447 if (nokey) { 448 atomic_inc(&ask->nokey_refcnt); 449 atomic_set(&alg_sk(sk2)->nokey_refcnt, 1); 450 } 451 alg_sk(sk2)->parent = sk; 452 alg_sk(sk2)->type = type; 453 454 newsock->state = SS_CONNECTED; 455 456 if (nokey) 457 newsock->ops = type->ops_nokey; 458 459 err = 0; 460 461 unlock: 462 release_sock(sk); 463 464 return err; 465 } 466 EXPORT_SYMBOL_GPL(af_alg_accept); 467 468 static int alg_accept(struct socket *sock, struct socket *newsock, int flags, 469 bool kern) 470 { 471 return af_alg_accept(sock->sk, newsock, kern); 472 } 473 474 static const struct proto_ops alg_proto_ops = { 475 .family = PF_ALG, 476 .owner = THIS_MODULE, 477 478 .connect = sock_no_connect, 479 .socketpair = sock_no_socketpair, 480 .getname = sock_no_getname, 481 .ioctl = sock_no_ioctl, 482 .listen = sock_no_listen, 483 .shutdown = sock_no_shutdown, 484 .mmap = sock_no_mmap, 485 .sendpage = sock_no_sendpage, 486 .sendmsg = sock_no_sendmsg, 487 .recvmsg = sock_no_recvmsg, 488 489 .bind = alg_bind, 490 .release = af_alg_release, 491 .setsockopt = alg_setsockopt, 492 .accept = alg_accept, 493 }; 494 495 static void alg_sock_destruct(struct sock *sk) 496 { 497 struct alg_sock *ask = alg_sk(sk); 498 499 alg_do_release(ask->type, ask->private); 500 } 501 502 static int alg_create(struct net *net, struct socket *sock, int protocol, 503 int kern) 504 { 505 struct sock *sk; 506 int err; 507 508 if (sock->type != SOCK_SEQPACKET) 509 return -ESOCKTNOSUPPORT; 510 if (protocol != 0) 511 return -EPROTONOSUPPORT; 512 513 err = -ENOMEM; 514 sk = sk_alloc(net, PF_ALG, GFP_KERNEL, &alg_proto, kern); 515 if (!sk) 516 goto out; 517 518 sock->ops = &alg_proto_ops; 519 sock_init_data(sock, sk); 520 521 sk->sk_destruct = alg_sock_destruct; 522 523 return 0; 524 out: 525 return err; 526 } 527 528 static const struct net_proto_family alg_family = { 529 .family = PF_ALG, 530 .create = alg_create, 531 .owner = THIS_MODULE, 532 }; 533 534 static void af_alg_link_sg(struct af_alg_sgl *sgl_prev, 535 struct af_alg_sgl *sgl_new) 536 { 537 sg_unmark_end(sgl_prev->sgt.sgl + sgl_prev->sgt.nents - 1); 538 sg_chain(sgl_prev->sgt.sgl, sgl_prev->sgt.nents + 1, sgl_new->sgt.sgl); 539 } 540 541 void af_alg_free_sg(struct af_alg_sgl *sgl) 542 { 543 int i; 544 545 if (sgl->need_unpin) 546 for (i = 0; i < sgl->sgt.nents; i++) 547 unpin_user_page(sg_page(&sgl->sgt.sgl[i])); 548 } 549 EXPORT_SYMBOL_GPL(af_alg_free_sg); 550 551 static int af_alg_cmsg_send(struct msghdr *msg, struct af_alg_control *con) 552 { 553 struct cmsghdr *cmsg; 554 555 for_each_cmsghdr(cmsg, msg) { 556 if (!CMSG_OK(msg, cmsg)) 557 return -EINVAL; 558 if (cmsg->cmsg_level != SOL_ALG) 559 continue; 560 561 switch (cmsg->cmsg_type) { 562 case ALG_SET_IV: 563 if (cmsg->cmsg_len < CMSG_LEN(sizeof(*con->iv))) 564 return -EINVAL; 565 con->iv = (void *)CMSG_DATA(cmsg); 566 if (cmsg->cmsg_len < CMSG_LEN(con->iv->ivlen + 567 sizeof(*con->iv))) 568 return -EINVAL; 569 break; 570 571 case ALG_SET_OP: 572 if (cmsg->cmsg_len < CMSG_LEN(sizeof(u32))) 573 return -EINVAL; 574 con->op = *(u32 *)CMSG_DATA(cmsg); 575 break; 576 577 case ALG_SET_AEAD_ASSOCLEN: 578 if (cmsg->cmsg_len < CMSG_LEN(sizeof(u32))) 579 return -EINVAL; 580 con->aead_assoclen = *(u32 *)CMSG_DATA(cmsg); 581 break; 582 583 default: 584 return -EINVAL; 585 } 586 } 587 588 return 0; 589 } 590 591 /** 592 * af_alg_alloc_tsgl - allocate the TX SGL 593 * 594 * @sk: socket of connection to user space 595 * Return: 0 upon success, < 0 upon error 596 */ 597 static int af_alg_alloc_tsgl(struct sock *sk) 598 { 599 struct alg_sock *ask = alg_sk(sk); 600 struct af_alg_ctx *ctx = ask->private; 601 struct af_alg_tsgl *sgl; 602 struct scatterlist *sg = NULL; 603 604 sgl = list_entry(ctx->tsgl_list.prev, struct af_alg_tsgl, list); 605 if (!list_empty(&ctx->tsgl_list)) 606 sg = sgl->sg; 607 608 if (!sg || sgl->cur >= MAX_SGL_ENTS) { 609 sgl = sock_kmalloc(sk, 610 struct_size(sgl, sg, (MAX_SGL_ENTS + 1)), 611 GFP_KERNEL); 612 if (!sgl) 613 return -ENOMEM; 614 615 sg_init_table(sgl->sg, MAX_SGL_ENTS + 1); 616 sgl->cur = 0; 617 618 if (sg) 619 sg_chain(sg, MAX_SGL_ENTS + 1, sgl->sg); 620 621 list_add_tail(&sgl->list, &ctx->tsgl_list); 622 } 623 624 return 0; 625 } 626 627 /** 628 * af_alg_count_tsgl - Count number of TX SG entries 629 * 630 * The counting starts from the beginning of the SGL to @bytes. If 631 * an @offset is provided, the counting of the SG entries starts at the @offset. 632 * 633 * @sk: socket of connection to user space 634 * @bytes: Count the number of SG entries holding given number of bytes. 635 * @offset: Start the counting of SG entries from the given offset. 636 * Return: Number of TX SG entries found given the constraints 637 */ 638 unsigned int af_alg_count_tsgl(struct sock *sk, size_t bytes, size_t offset) 639 { 640 const struct alg_sock *ask = alg_sk(sk); 641 const struct af_alg_ctx *ctx = ask->private; 642 const struct af_alg_tsgl *sgl; 643 unsigned int i; 644 unsigned int sgl_count = 0; 645 646 if (!bytes) 647 return 0; 648 649 list_for_each_entry(sgl, &ctx->tsgl_list, list) { 650 const struct scatterlist *sg = sgl->sg; 651 652 for (i = 0; i < sgl->cur; i++) { 653 size_t bytes_count; 654 655 /* Skip offset */ 656 if (offset >= sg[i].length) { 657 offset -= sg[i].length; 658 bytes -= sg[i].length; 659 continue; 660 } 661 662 bytes_count = sg[i].length - offset; 663 664 offset = 0; 665 sgl_count++; 666 667 /* If we have seen requested number of bytes, stop */ 668 if (bytes_count >= bytes) 669 return sgl_count; 670 671 bytes -= bytes_count; 672 } 673 } 674 675 return sgl_count; 676 } 677 EXPORT_SYMBOL_GPL(af_alg_count_tsgl); 678 679 /** 680 * af_alg_pull_tsgl - Release the specified buffers from TX SGL 681 * 682 * If @dst is non-null, reassign the pages to @dst. The caller must release 683 * the pages. If @dst_offset is given only reassign the pages to @dst starting 684 * at the @dst_offset (byte). The caller must ensure that @dst is large 685 * enough (e.g. by using af_alg_count_tsgl with the same offset). 686 * 687 * @sk: socket of connection to user space 688 * @used: Number of bytes to pull from TX SGL 689 * @dst: If non-NULL, buffer is reassigned to dst SGL instead of releasing. The 690 * caller must release the buffers in dst. 691 * @dst_offset: Reassign the TX SGL from given offset. All buffers before 692 * reaching the offset is released. 693 */ 694 void af_alg_pull_tsgl(struct sock *sk, size_t used, struct scatterlist *dst, 695 size_t dst_offset) 696 { 697 struct alg_sock *ask = alg_sk(sk); 698 struct af_alg_ctx *ctx = ask->private; 699 struct af_alg_tsgl *sgl; 700 struct scatterlist *sg; 701 unsigned int i, j = 0; 702 703 while (!list_empty(&ctx->tsgl_list)) { 704 sgl = list_first_entry(&ctx->tsgl_list, struct af_alg_tsgl, 705 list); 706 sg = sgl->sg; 707 708 for (i = 0; i < sgl->cur; i++) { 709 size_t plen = min_t(size_t, used, sg[i].length); 710 struct page *page = sg_page(sg + i); 711 712 if (!page) 713 continue; 714 715 /* 716 * Assumption: caller created af_alg_count_tsgl(len) 717 * SG entries in dst. 718 */ 719 if (dst) { 720 if (dst_offset >= plen) { 721 /* discard page before offset */ 722 dst_offset -= plen; 723 } else { 724 /* reassign page to dst after offset */ 725 get_page(page); 726 sg_set_page(dst + j, page, 727 plen - dst_offset, 728 sg[i].offset + dst_offset); 729 dst_offset = 0; 730 j++; 731 } 732 } 733 734 sg[i].length -= plen; 735 sg[i].offset += plen; 736 737 used -= plen; 738 ctx->used -= plen; 739 740 if (sg[i].length) 741 return; 742 743 put_page(page); 744 sg_assign_page(sg + i, NULL); 745 } 746 747 list_del(&sgl->list); 748 sock_kfree_s(sk, sgl, struct_size(sgl, sg, MAX_SGL_ENTS + 1)); 749 } 750 751 if (!ctx->used) 752 ctx->merge = 0; 753 ctx->init = ctx->more; 754 } 755 EXPORT_SYMBOL_GPL(af_alg_pull_tsgl); 756 757 /** 758 * af_alg_free_areq_sgls - Release TX and RX SGLs of the request 759 * 760 * @areq: Request holding the TX and RX SGL 761 */ 762 static void af_alg_free_areq_sgls(struct af_alg_async_req *areq) 763 { 764 struct sock *sk = areq->sk; 765 struct alg_sock *ask = alg_sk(sk); 766 struct af_alg_ctx *ctx = ask->private; 767 struct af_alg_rsgl *rsgl, *tmp; 768 struct scatterlist *tsgl; 769 struct scatterlist *sg; 770 unsigned int i; 771 772 list_for_each_entry_safe(rsgl, tmp, &areq->rsgl_list, list) { 773 atomic_sub(rsgl->sg_num_bytes, &ctx->rcvused); 774 af_alg_free_sg(&rsgl->sgl); 775 list_del(&rsgl->list); 776 if (rsgl != &areq->first_rsgl) 777 sock_kfree_s(sk, rsgl, sizeof(*rsgl)); 778 } 779 780 tsgl = areq->tsgl; 781 if (tsgl) { 782 for_each_sg(tsgl, sg, areq->tsgl_entries, i) { 783 if (!sg_page(sg)) 784 continue; 785 put_page(sg_page(sg)); 786 } 787 788 sock_kfree_s(sk, tsgl, areq->tsgl_entries * sizeof(*tsgl)); 789 } 790 } 791 792 /** 793 * af_alg_wait_for_wmem - wait for availability of writable memory 794 * 795 * @sk: socket of connection to user space 796 * @flags: If MSG_DONTWAIT is set, then only report if function would sleep 797 * Return: 0 when writable memory is available, < 0 upon error 798 */ 799 static int af_alg_wait_for_wmem(struct sock *sk, unsigned int flags) 800 { 801 DEFINE_WAIT_FUNC(wait, woken_wake_function); 802 int err = -ERESTARTSYS; 803 long timeout; 804 805 if (flags & MSG_DONTWAIT) 806 return -EAGAIN; 807 808 sk_set_bit(SOCKWQ_ASYNC_NOSPACE, sk); 809 810 add_wait_queue(sk_sleep(sk), &wait); 811 for (;;) { 812 if (signal_pending(current)) 813 break; 814 timeout = MAX_SCHEDULE_TIMEOUT; 815 if (sk_wait_event(sk, &timeout, af_alg_writable(sk), &wait)) { 816 err = 0; 817 break; 818 } 819 } 820 remove_wait_queue(sk_sleep(sk), &wait); 821 822 return err; 823 } 824 825 /** 826 * af_alg_wmem_wakeup - wakeup caller when writable memory is available 827 * 828 * @sk: socket of connection to user space 829 */ 830 void af_alg_wmem_wakeup(struct sock *sk) 831 { 832 struct socket_wq *wq; 833 834 if (!af_alg_writable(sk)) 835 return; 836 837 rcu_read_lock(); 838 wq = rcu_dereference(sk->sk_wq); 839 if (skwq_has_sleeper(wq)) 840 wake_up_interruptible_sync_poll(&wq->wait, EPOLLIN | 841 EPOLLRDNORM | 842 EPOLLRDBAND); 843 sk_wake_async(sk, SOCK_WAKE_WAITD, POLL_IN); 844 rcu_read_unlock(); 845 } 846 EXPORT_SYMBOL_GPL(af_alg_wmem_wakeup); 847 848 /** 849 * af_alg_wait_for_data - wait for availability of TX data 850 * 851 * @sk: socket of connection to user space 852 * @flags: If MSG_DONTWAIT is set, then only report if function would sleep 853 * @min: Set to minimum request size if partial requests are allowed. 854 * Return: 0 when writable memory is available, < 0 upon error 855 */ 856 int af_alg_wait_for_data(struct sock *sk, unsigned flags, unsigned min) 857 { 858 DEFINE_WAIT_FUNC(wait, woken_wake_function); 859 struct alg_sock *ask = alg_sk(sk); 860 struct af_alg_ctx *ctx = ask->private; 861 long timeout; 862 int err = -ERESTARTSYS; 863 864 if (flags & MSG_DONTWAIT) 865 return -EAGAIN; 866 867 sk_set_bit(SOCKWQ_ASYNC_WAITDATA, sk); 868 869 add_wait_queue(sk_sleep(sk), &wait); 870 for (;;) { 871 if (signal_pending(current)) 872 break; 873 timeout = MAX_SCHEDULE_TIMEOUT; 874 if (sk_wait_event(sk, &timeout, 875 ctx->init && (!ctx->more || 876 (min && ctx->used >= min)), 877 &wait)) { 878 err = 0; 879 break; 880 } 881 } 882 remove_wait_queue(sk_sleep(sk), &wait); 883 884 sk_clear_bit(SOCKWQ_ASYNC_WAITDATA, sk); 885 886 return err; 887 } 888 EXPORT_SYMBOL_GPL(af_alg_wait_for_data); 889 890 /** 891 * af_alg_data_wakeup - wakeup caller when new data can be sent to kernel 892 * 893 * @sk: socket of connection to user space 894 */ 895 static void af_alg_data_wakeup(struct sock *sk) 896 { 897 struct alg_sock *ask = alg_sk(sk); 898 struct af_alg_ctx *ctx = ask->private; 899 struct socket_wq *wq; 900 901 if (!ctx->used) 902 return; 903 904 rcu_read_lock(); 905 wq = rcu_dereference(sk->sk_wq); 906 if (skwq_has_sleeper(wq)) 907 wake_up_interruptible_sync_poll(&wq->wait, EPOLLOUT | 908 EPOLLRDNORM | 909 EPOLLRDBAND); 910 sk_wake_async(sk, SOCK_WAKE_SPACE, POLL_OUT); 911 rcu_read_unlock(); 912 } 913 914 /** 915 * af_alg_sendmsg - implementation of sendmsg system call handler 916 * 917 * The sendmsg system call handler obtains the user data and stores it 918 * in ctx->tsgl_list. This implies allocation of the required numbers of 919 * struct af_alg_tsgl. 920 * 921 * In addition, the ctx is filled with the information sent via CMSG. 922 * 923 * @sock: socket of connection to user space 924 * @msg: message from user space 925 * @size: size of message from user space 926 * @ivsize: the size of the IV for the cipher operation to verify that the 927 * user-space-provided IV has the right size 928 * Return: the number of copied data upon success, < 0 upon error 929 */ 930 int af_alg_sendmsg(struct socket *sock, struct msghdr *msg, size_t size, 931 unsigned int ivsize) 932 { 933 struct sock *sk = sock->sk; 934 struct alg_sock *ask = alg_sk(sk); 935 struct af_alg_ctx *ctx = ask->private; 936 struct af_alg_tsgl *sgl; 937 struct af_alg_control con = {}; 938 long copied = 0; 939 bool enc = false; 940 bool init = false; 941 int err = 0; 942 943 if (msg->msg_controllen) { 944 err = af_alg_cmsg_send(msg, &con); 945 if (err) 946 return err; 947 948 init = true; 949 switch (con.op) { 950 case ALG_OP_ENCRYPT: 951 enc = true; 952 break; 953 case ALG_OP_DECRYPT: 954 enc = false; 955 break; 956 default: 957 return -EINVAL; 958 } 959 960 if (con.iv && con.iv->ivlen != ivsize) 961 return -EINVAL; 962 } 963 964 lock_sock(sk); 965 if (ctx->init && !ctx->more) { 966 if (ctx->used) { 967 err = -EINVAL; 968 goto unlock; 969 } 970 971 pr_info_once( 972 "%s sent an empty control message without MSG_MORE.\n", 973 current->comm); 974 } 975 ctx->init = true; 976 977 if (init) { 978 ctx->enc = enc; 979 if (con.iv) 980 memcpy(ctx->iv, con.iv->iv, ivsize); 981 982 ctx->aead_assoclen = con.aead_assoclen; 983 } 984 985 while (size) { 986 struct scatterlist *sg; 987 size_t len = size; 988 size_t plen; 989 990 /* use the existing memory in an allocated page */ 991 if (ctx->merge) { 992 sgl = list_entry(ctx->tsgl_list.prev, 993 struct af_alg_tsgl, list); 994 sg = sgl->sg + sgl->cur - 1; 995 len = min_t(size_t, len, 996 PAGE_SIZE - sg->offset - sg->length); 997 998 err = memcpy_from_msg(page_address(sg_page(sg)) + 999 sg->offset + sg->length, 1000 msg, len); 1001 if (err) 1002 goto unlock; 1003 1004 sg->length += len; 1005 ctx->merge = (sg->offset + sg->length) & 1006 (PAGE_SIZE - 1); 1007 1008 ctx->used += len; 1009 copied += len; 1010 size -= len; 1011 continue; 1012 } 1013 1014 if (!af_alg_writable(sk)) { 1015 err = af_alg_wait_for_wmem(sk, msg->msg_flags); 1016 if (err) 1017 goto unlock; 1018 } 1019 1020 /* allocate a new page */ 1021 len = min_t(unsigned long, len, af_alg_sndbuf(sk)); 1022 1023 err = af_alg_alloc_tsgl(sk); 1024 if (err) 1025 goto unlock; 1026 1027 sgl = list_entry(ctx->tsgl_list.prev, struct af_alg_tsgl, 1028 list); 1029 sg = sgl->sg; 1030 if (sgl->cur) 1031 sg_unmark_end(sg + sgl->cur - 1); 1032 1033 if (1 /* TODO check MSG_SPLICE_PAGES */) { 1034 do { 1035 struct page *pg; 1036 unsigned int i = sgl->cur; 1037 1038 plen = min_t(size_t, len, PAGE_SIZE); 1039 1040 pg = alloc_page(GFP_KERNEL); 1041 if (!pg) { 1042 err = -ENOMEM; 1043 goto unlock; 1044 } 1045 1046 sg_assign_page(sg + i, pg); 1047 1048 err = memcpy_from_msg( 1049 page_address(sg_page(sg + i)), 1050 msg, plen); 1051 if (err) { 1052 __free_page(sg_page(sg + i)); 1053 sg_assign_page(sg + i, NULL); 1054 goto unlock; 1055 } 1056 1057 sg[i].length = plen; 1058 len -= plen; 1059 ctx->used += plen; 1060 copied += plen; 1061 size -= plen; 1062 sgl->cur++; 1063 } while (len && sgl->cur < MAX_SGL_ENTS); 1064 } 1065 1066 if (!size) 1067 sg_mark_end(sg + sgl->cur - 1); 1068 1069 ctx->merge = plen & (PAGE_SIZE - 1); 1070 } 1071 1072 err = 0; 1073 1074 ctx->more = msg->msg_flags & MSG_MORE; 1075 1076 unlock: 1077 af_alg_data_wakeup(sk); 1078 release_sock(sk); 1079 1080 return copied ?: err; 1081 } 1082 EXPORT_SYMBOL_GPL(af_alg_sendmsg); 1083 1084 /** 1085 * af_alg_sendpage - sendpage system call handler 1086 * @sock: socket of connection to user space to write to 1087 * @page: data to send 1088 * @offset: offset into page to begin sending 1089 * @size: length of data 1090 * @flags: message send/receive flags 1091 * 1092 * This is a generic implementation of sendpage to fill ctx->tsgl_list. 1093 */ 1094 ssize_t af_alg_sendpage(struct socket *sock, struct page *page, 1095 int offset, size_t size, int flags) 1096 { 1097 struct sock *sk = sock->sk; 1098 struct alg_sock *ask = alg_sk(sk); 1099 struct af_alg_ctx *ctx = ask->private; 1100 struct af_alg_tsgl *sgl; 1101 int err = -EINVAL; 1102 1103 if (flags & MSG_SENDPAGE_NOTLAST) 1104 flags |= MSG_MORE; 1105 1106 lock_sock(sk); 1107 if (!ctx->more && ctx->used) 1108 goto unlock; 1109 1110 if (!size) 1111 goto done; 1112 1113 if (!af_alg_writable(sk)) { 1114 err = af_alg_wait_for_wmem(sk, flags); 1115 if (err) 1116 goto unlock; 1117 } 1118 1119 err = af_alg_alloc_tsgl(sk); 1120 if (err) 1121 goto unlock; 1122 1123 ctx->merge = 0; 1124 sgl = list_entry(ctx->tsgl_list.prev, struct af_alg_tsgl, list); 1125 1126 if (sgl->cur) 1127 sg_unmark_end(sgl->sg + sgl->cur - 1); 1128 1129 sg_mark_end(sgl->sg + sgl->cur); 1130 1131 get_page(page); 1132 sg_set_page(sgl->sg + sgl->cur, page, size, offset); 1133 sgl->cur++; 1134 ctx->used += size; 1135 1136 done: 1137 ctx->more = flags & MSG_MORE; 1138 1139 unlock: 1140 af_alg_data_wakeup(sk); 1141 release_sock(sk); 1142 1143 return err ?: size; 1144 } 1145 EXPORT_SYMBOL_GPL(af_alg_sendpage); 1146 1147 /** 1148 * af_alg_free_resources - release resources required for crypto request 1149 * @areq: Request holding the TX and RX SGL 1150 */ 1151 void af_alg_free_resources(struct af_alg_async_req *areq) 1152 { 1153 struct sock *sk = areq->sk; 1154 1155 af_alg_free_areq_sgls(areq); 1156 sock_kfree_s(sk, areq, areq->areqlen); 1157 } 1158 EXPORT_SYMBOL_GPL(af_alg_free_resources); 1159 1160 /** 1161 * af_alg_async_cb - AIO callback handler 1162 * @data: async request completion data 1163 * @err: if non-zero, error result to be returned via ki_complete(); 1164 * otherwise return the AIO output length via ki_complete(). 1165 * 1166 * This handler cleans up the struct af_alg_async_req upon completion of the 1167 * AIO operation. 1168 * 1169 * The number of bytes to be generated with the AIO operation must be set 1170 * in areq->outlen before the AIO callback handler is invoked. 1171 */ 1172 void af_alg_async_cb(void *data, int err) 1173 { 1174 struct af_alg_async_req *areq = data; 1175 struct sock *sk = areq->sk; 1176 struct kiocb *iocb = areq->iocb; 1177 unsigned int resultlen; 1178 1179 /* Buffer size written by crypto operation. */ 1180 resultlen = areq->outlen; 1181 1182 af_alg_free_resources(areq); 1183 sock_put(sk); 1184 1185 iocb->ki_complete(iocb, err ? err : (int)resultlen); 1186 } 1187 EXPORT_SYMBOL_GPL(af_alg_async_cb); 1188 1189 /** 1190 * af_alg_poll - poll system call handler 1191 * @file: file pointer 1192 * @sock: socket to poll 1193 * @wait: poll_table 1194 */ 1195 __poll_t af_alg_poll(struct file *file, struct socket *sock, 1196 poll_table *wait) 1197 { 1198 struct sock *sk = sock->sk; 1199 struct alg_sock *ask = alg_sk(sk); 1200 struct af_alg_ctx *ctx = ask->private; 1201 __poll_t mask; 1202 1203 sock_poll_wait(file, sock, wait); 1204 mask = 0; 1205 1206 if (!ctx->more || ctx->used) 1207 mask |= EPOLLIN | EPOLLRDNORM; 1208 1209 if (af_alg_writable(sk)) 1210 mask |= EPOLLOUT | EPOLLWRNORM | EPOLLWRBAND; 1211 1212 return mask; 1213 } 1214 EXPORT_SYMBOL_GPL(af_alg_poll); 1215 1216 /** 1217 * af_alg_alloc_areq - allocate struct af_alg_async_req 1218 * 1219 * @sk: socket of connection to user space 1220 * @areqlen: size of struct af_alg_async_req + crypto_*_reqsize 1221 * Return: allocated data structure or ERR_PTR upon error 1222 */ 1223 struct af_alg_async_req *af_alg_alloc_areq(struct sock *sk, 1224 unsigned int areqlen) 1225 { 1226 struct af_alg_async_req *areq = sock_kmalloc(sk, areqlen, GFP_KERNEL); 1227 1228 if (unlikely(!areq)) 1229 return ERR_PTR(-ENOMEM); 1230 1231 areq->areqlen = areqlen; 1232 areq->sk = sk; 1233 areq->last_rsgl = NULL; 1234 INIT_LIST_HEAD(&areq->rsgl_list); 1235 areq->tsgl = NULL; 1236 areq->tsgl_entries = 0; 1237 1238 return areq; 1239 } 1240 EXPORT_SYMBOL_GPL(af_alg_alloc_areq); 1241 1242 /** 1243 * af_alg_get_rsgl - create the RX SGL for the output data from the crypto 1244 * operation 1245 * 1246 * @sk: socket of connection to user space 1247 * @msg: user space message 1248 * @flags: flags used to invoke recvmsg with 1249 * @areq: instance of the cryptographic request that will hold the RX SGL 1250 * @maxsize: maximum number of bytes to be pulled from user space 1251 * @outlen: number of bytes in the RX SGL 1252 * Return: 0 on success, < 0 upon error 1253 */ 1254 int af_alg_get_rsgl(struct sock *sk, struct msghdr *msg, int flags, 1255 struct af_alg_async_req *areq, size_t maxsize, 1256 size_t *outlen) 1257 { 1258 struct alg_sock *ask = alg_sk(sk); 1259 struct af_alg_ctx *ctx = ask->private; 1260 size_t len = 0; 1261 1262 while (maxsize > len && msg_data_left(msg)) { 1263 struct af_alg_rsgl *rsgl; 1264 ssize_t err; 1265 size_t seglen; 1266 1267 /* limit the amount of readable buffers */ 1268 if (!af_alg_readable(sk)) 1269 break; 1270 1271 seglen = min_t(size_t, (maxsize - len), 1272 msg_data_left(msg)); 1273 1274 if (list_empty(&areq->rsgl_list)) { 1275 rsgl = &areq->first_rsgl; 1276 } else { 1277 rsgl = sock_kmalloc(sk, sizeof(*rsgl), GFP_KERNEL); 1278 if (unlikely(!rsgl)) 1279 return -ENOMEM; 1280 } 1281 1282 rsgl->sgl.sgt.sgl = rsgl->sgl.sgl; 1283 rsgl->sgl.sgt.nents = 0; 1284 rsgl->sgl.sgt.orig_nents = 0; 1285 list_add_tail(&rsgl->list, &areq->rsgl_list); 1286 1287 sg_init_table(rsgl->sgl.sgt.sgl, ALG_MAX_PAGES); 1288 err = extract_iter_to_sg(&msg->msg_iter, seglen, &rsgl->sgl.sgt, 1289 ALG_MAX_PAGES, 0); 1290 if (err < 0) { 1291 rsgl->sg_num_bytes = 0; 1292 return err; 1293 } 1294 1295 sg_mark_end(rsgl->sgl.sgt.sgl + rsgl->sgl.sgt.nents - 1); 1296 rsgl->sgl.need_unpin = 1297 iov_iter_extract_will_pin(&msg->msg_iter); 1298 1299 /* chain the new scatterlist with previous one */ 1300 if (areq->last_rsgl) 1301 af_alg_link_sg(&areq->last_rsgl->sgl, &rsgl->sgl); 1302 1303 areq->last_rsgl = rsgl; 1304 len += err; 1305 atomic_add(err, &ctx->rcvused); 1306 rsgl->sg_num_bytes = err; 1307 } 1308 1309 *outlen = len; 1310 return 0; 1311 } 1312 EXPORT_SYMBOL_GPL(af_alg_get_rsgl); 1313 1314 static int __init af_alg_init(void) 1315 { 1316 int err = proto_register(&alg_proto, 0); 1317 1318 if (err) 1319 goto out; 1320 1321 err = sock_register(&alg_family); 1322 if (err != 0) 1323 goto out_unregister_proto; 1324 1325 out: 1326 return err; 1327 1328 out_unregister_proto: 1329 proto_unregister(&alg_proto); 1330 goto out; 1331 } 1332 1333 static void __exit af_alg_exit(void) 1334 { 1335 sock_unregister(PF_ALG); 1336 proto_unregister(&alg_proto); 1337 } 1338 1339 module_init(af_alg_init); 1340 module_exit(af_alg_exit); 1341 MODULE_LICENSE("GPL"); 1342 MODULE_ALIAS_NETPROTO(AF_ALG); 1343