1 /* 2 * Stream Parser 3 * 4 * Copyright (c) 2016 Tom Herbert <tom@herbertland.com> 5 * 6 * This program is free software; you can redistribute it and/or modify 7 * it under the terms of the GNU General Public License version 2 8 * as published by the Free Software Foundation. 9 */ 10 11 #include <linux/bpf.h> 12 #include <linux/errno.h> 13 #include <linux/errqueue.h> 14 #include <linux/file.h> 15 #include <linux/in.h> 16 #include <linux/kernel.h> 17 #include <linux/module.h> 18 #include <linux/net.h> 19 #include <linux/netdevice.h> 20 #include <linux/poll.h> 21 #include <linux/rculist.h> 22 #include <linux/skbuff.h> 23 #include <linux/socket.h> 24 #include <linux/uaccess.h> 25 #include <linux/workqueue.h> 26 #include <net/strparser.h> 27 #include <net/netns/generic.h> 28 #include <net/sock.h> 29 30 static struct workqueue_struct *strp_wq; 31 32 struct _strp_msg { 33 /* Internal cb structure. struct strp_msg must be first for passing 34 * to upper layer. 35 */ 36 struct strp_msg strp; 37 int accum_len; 38 }; 39 40 static inline struct _strp_msg *_strp_msg(struct sk_buff *skb) 41 { 42 return (struct _strp_msg *)((void *)skb->cb + 43 offsetof(struct qdisc_skb_cb, data)); 44 } 45 46 /* Lower lock held */ 47 static void strp_abort_strp(struct strparser *strp, int err) 48 { 49 /* Unrecoverable error in receive */ 50 51 cancel_delayed_work(&strp->msg_timer_work); 52 53 if (strp->stopped) 54 return; 55 56 strp->stopped = 1; 57 58 if (strp->sk) { 59 struct sock *sk = strp->sk; 60 61 /* Report an error on the lower socket */ 62 sk->sk_err = -err; 63 sk->sk_error_report(sk); 64 } 65 } 66 67 static void strp_start_timer(struct strparser *strp, long timeo) 68 { 69 if (timeo && timeo != LONG_MAX) 70 mod_delayed_work(strp_wq, &strp->msg_timer_work, timeo); 71 } 72 73 /* Lower lock held */ 74 static void strp_parser_err(struct strparser *strp, int err, 75 read_descriptor_t *desc) 76 { 77 desc->error = err; 78 kfree_skb(strp->skb_head); 79 strp->skb_head = NULL; 80 strp->cb.abort_parser(strp, err); 81 } 82 83 static inline int strp_peek_len(struct strparser *strp) 84 { 85 if (strp->sk) { 86 struct socket *sock = strp->sk->sk_socket; 87 88 return sock->ops->peek_len(sock); 89 } 90 91 /* If we don't have an associated socket there's nothing to peek. 92 * Return int max to avoid stopping the strparser. 93 */ 94 95 return INT_MAX; 96 } 97 98 /* Lower socket lock held */ 99 static int __strp_recv(read_descriptor_t *desc, struct sk_buff *orig_skb, 100 unsigned int orig_offset, size_t orig_len, 101 size_t max_msg_size, long timeo) 102 { 103 struct strparser *strp = (struct strparser *)desc->arg.data; 104 struct _strp_msg *stm; 105 struct sk_buff *head, *skb; 106 size_t eaten = 0, cand_len; 107 ssize_t extra; 108 int err; 109 bool cloned_orig = false; 110 111 if (strp->paused) 112 return 0; 113 114 head = strp->skb_head; 115 if (head) { 116 /* Message already in progress */ 117 if (unlikely(orig_offset)) { 118 /* Getting data with a non-zero offset when a message is 119 * in progress is not expected. If it does happen, we 120 * need to clone and pull since we can't deal with 121 * offsets in the skbs for a message expect in the head. 122 */ 123 orig_skb = skb_clone(orig_skb, GFP_ATOMIC); 124 if (!orig_skb) { 125 STRP_STATS_INCR(strp->stats.mem_fail); 126 desc->error = -ENOMEM; 127 return 0; 128 } 129 if (!pskb_pull(orig_skb, orig_offset)) { 130 STRP_STATS_INCR(strp->stats.mem_fail); 131 kfree_skb(orig_skb); 132 desc->error = -ENOMEM; 133 return 0; 134 } 135 cloned_orig = true; 136 orig_offset = 0; 137 } 138 139 if (!strp->skb_nextp) { 140 /* We are going to append to the frags_list of head. 141 * Need to unshare the frag_list. 142 */ 143 err = skb_unclone(head, GFP_ATOMIC); 144 if (err) { 145 STRP_STATS_INCR(strp->stats.mem_fail); 146 desc->error = err; 147 return 0; 148 } 149 150 if (unlikely(skb_shinfo(head)->frag_list)) { 151 /* We can't append to an sk_buff that already 152 * has a frag_list. We create a new head, point 153 * the frag_list of that to the old head, and 154 * then are able to use the old head->next for 155 * appending to the message. 156 */ 157 if (WARN_ON(head->next)) { 158 desc->error = -EINVAL; 159 return 0; 160 } 161 162 skb = alloc_skb(0, GFP_ATOMIC); 163 if (!skb) { 164 STRP_STATS_INCR(strp->stats.mem_fail); 165 desc->error = -ENOMEM; 166 return 0; 167 } 168 skb->len = head->len; 169 skb->data_len = head->len; 170 skb->truesize = head->truesize; 171 *_strp_msg(skb) = *_strp_msg(head); 172 strp->skb_nextp = &head->next; 173 skb_shinfo(skb)->frag_list = head; 174 strp->skb_head = skb; 175 head = skb; 176 } else { 177 strp->skb_nextp = 178 &skb_shinfo(head)->frag_list; 179 } 180 } 181 } 182 183 while (eaten < orig_len) { 184 /* Always clone since we will consume something */ 185 skb = skb_clone(orig_skb, GFP_ATOMIC); 186 if (!skb) { 187 STRP_STATS_INCR(strp->stats.mem_fail); 188 desc->error = -ENOMEM; 189 break; 190 } 191 192 cand_len = orig_len - eaten; 193 194 head = strp->skb_head; 195 if (!head) { 196 head = skb; 197 strp->skb_head = head; 198 /* Will set skb_nextp on next packet if needed */ 199 strp->skb_nextp = NULL; 200 stm = _strp_msg(head); 201 memset(stm, 0, sizeof(*stm)); 202 stm->strp.offset = orig_offset + eaten; 203 } else { 204 /* Unclone since we may be appending to an skb that we 205 * already share a frag_list with. 206 */ 207 err = skb_unclone(skb, GFP_ATOMIC); 208 if (err) { 209 STRP_STATS_INCR(strp->stats.mem_fail); 210 desc->error = err; 211 break; 212 } 213 214 stm = _strp_msg(head); 215 *strp->skb_nextp = skb; 216 strp->skb_nextp = &skb->next; 217 head->data_len += skb->len; 218 head->len += skb->len; 219 head->truesize += skb->truesize; 220 } 221 222 if (!stm->strp.full_len) { 223 ssize_t len; 224 225 len = (*strp->cb.parse_msg)(strp, head); 226 227 if (!len) { 228 /* Need more header to determine length */ 229 if (!stm->accum_len) { 230 /* Start RX timer for new message */ 231 strp_start_timer(strp, timeo); 232 } 233 stm->accum_len += cand_len; 234 eaten += cand_len; 235 STRP_STATS_INCR(strp->stats.need_more_hdr); 236 WARN_ON(eaten != orig_len); 237 break; 238 } else if (len < 0) { 239 if (len == -ESTRPIPE && stm->accum_len) { 240 len = -ENODATA; 241 strp->unrecov_intr = 1; 242 } else { 243 strp->interrupted = 1; 244 } 245 strp_parser_err(strp, len, desc); 246 break; 247 } else if (len > max_msg_size) { 248 /* Message length exceeds maximum allowed */ 249 STRP_STATS_INCR(strp->stats.msg_too_big); 250 strp_parser_err(strp, -EMSGSIZE, desc); 251 break; 252 } else if (len <= (ssize_t)head->len - 253 skb->len - stm->strp.offset) { 254 /* Length must be into new skb (and also 255 * greater than zero) 256 */ 257 STRP_STATS_INCR(strp->stats.bad_hdr_len); 258 strp_parser_err(strp, -EPROTO, desc); 259 break; 260 } 261 262 stm->strp.full_len = len; 263 } 264 265 extra = (ssize_t)(stm->accum_len + cand_len) - 266 stm->strp.full_len; 267 268 if (extra < 0) { 269 /* Message not complete yet. */ 270 if (stm->strp.full_len - stm->accum_len > 271 strp_peek_len(strp)) { 272 /* Don't have the whole message in the socket 273 * buffer. Set strp->need_bytes to wait for 274 * the rest of the message. Also, set "early 275 * eaten" since we've already buffered the skb 276 * but don't consume yet per strp_read_sock. 277 */ 278 279 if (!stm->accum_len) { 280 /* Start RX timer for new message */ 281 strp_start_timer(strp, timeo); 282 } 283 284 stm->accum_len += cand_len; 285 eaten += cand_len; 286 strp->need_bytes = stm->strp.full_len - 287 stm->accum_len; 288 STRP_STATS_ADD(strp->stats.bytes, cand_len); 289 desc->count = 0; /* Stop reading socket */ 290 break; 291 } 292 stm->accum_len += cand_len; 293 eaten += cand_len; 294 WARN_ON(eaten != orig_len); 295 break; 296 } 297 298 /* Positive extra indicates ore bytes than needed for the 299 * message 300 */ 301 302 WARN_ON(extra > cand_len); 303 304 eaten += (cand_len - extra); 305 306 /* Hurray, we have a new message! */ 307 cancel_delayed_work(&strp->msg_timer_work); 308 strp->skb_head = NULL; 309 strp->need_bytes = 0; 310 STRP_STATS_INCR(strp->stats.msgs); 311 312 /* Give skb to upper layer */ 313 strp->cb.rcv_msg(strp, head); 314 315 if (unlikely(strp->paused)) { 316 /* Upper layer paused strp */ 317 break; 318 } 319 } 320 321 if (cloned_orig) 322 kfree_skb(orig_skb); 323 324 STRP_STATS_ADD(strp->stats.bytes, eaten); 325 326 return eaten; 327 } 328 329 int strp_process(struct strparser *strp, struct sk_buff *orig_skb, 330 unsigned int orig_offset, size_t orig_len, 331 size_t max_msg_size, long timeo) 332 { 333 read_descriptor_t desc; /* Dummy arg to strp_recv */ 334 335 desc.arg.data = strp; 336 337 return __strp_recv(&desc, orig_skb, orig_offset, orig_len, 338 max_msg_size, timeo); 339 } 340 EXPORT_SYMBOL_GPL(strp_process); 341 342 static int strp_recv(read_descriptor_t *desc, struct sk_buff *orig_skb, 343 unsigned int orig_offset, size_t orig_len) 344 { 345 struct strparser *strp = (struct strparser *)desc->arg.data; 346 347 return __strp_recv(desc, orig_skb, orig_offset, orig_len, 348 strp->sk->sk_rcvbuf, strp->sk->sk_rcvtimeo); 349 } 350 351 static int default_read_sock_done(struct strparser *strp, int err) 352 { 353 return err; 354 } 355 356 /* Called with lock held on lower socket */ 357 static int strp_read_sock(struct strparser *strp) 358 { 359 struct socket *sock = strp->sk->sk_socket; 360 read_descriptor_t desc; 361 362 if (unlikely(!sock || !sock->ops || !sock->ops->read_sock)) 363 return -EBUSY; 364 365 desc.arg.data = strp; 366 desc.error = 0; 367 desc.count = 1; /* give more than one skb per call */ 368 369 /* sk should be locked here, so okay to do read_sock */ 370 sock->ops->read_sock(strp->sk, &desc, strp_recv); 371 372 desc.error = strp->cb.read_sock_done(strp, desc.error); 373 374 return desc.error; 375 } 376 377 /* Lower sock lock held */ 378 void strp_data_ready(struct strparser *strp) 379 { 380 if (unlikely(strp->stopped) || strp->paused) 381 return; 382 383 /* This check is needed to synchronize with do_strp_work. 384 * do_strp_work acquires a process lock (lock_sock) whereas 385 * the lock held here is bh_lock_sock. The two locks can be 386 * held by different threads at the same time, but bh_lock_sock 387 * allows a thread in BH context to safely check if the process 388 * lock is held. In this case, if the lock is held, queue work. 389 */ 390 if (sock_owned_by_user_nocheck(strp->sk)) { 391 queue_work(strp_wq, &strp->work); 392 return; 393 } 394 395 if (strp->need_bytes) { 396 if (strp_peek_len(strp) < strp->need_bytes) 397 return; 398 } 399 400 if (strp_read_sock(strp) == -ENOMEM) 401 queue_work(strp_wq, &strp->work); 402 } 403 EXPORT_SYMBOL_GPL(strp_data_ready); 404 405 static void do_strp_work(struct strparser *strp) 406 { 407 read_descriptor_t rd_desc; 408 409 /* We need the read lock to synchronize with strp_data_ready. We 410 * need the socket lock for calling strp_read_sock. 411 */ 412 strp->cb.lock(strp); 413 414 if (unlikely(strp->stopped)) 415 goto out; 416 417 if (strp->paused) 418 goto out; 419 420 rd_desc.arg.data = strp; 421 422 if (strp_read_sock(strp) == -ENOMEM) 423 queue_work(strp_wq, &strp->work); 424 425 out: 426 strp->cb.unlock(strp); 427 } 428 429 static void strp_work(struct work_struct *w) 430 { 431 do_strp_work(container_of(w, struct strparser, work)); 432 } 433 434 static void strp_msg_timeout(struct work_struct *w) 435 { 436 struct strparser *strp = container_of(w, struct strparser, 437 msg_timer_work.work); 438 439 /* Message assembly timed out */ 440 STRP_STATS_INCR(strp->stats.msg_timeouts); 441 strp->cb.lock(strp); 442 strp->cb.abort_parser(strp, -ETIMEDOUT); 443 strp->cb.unlock(strp); 444 } 445 446 static void strp_sock_lock(struct strparser *strp) 447 { 448 lock_sock(strp->sk); 449 } 450 451 static void strp_sock_unlock(struct strparser *strp) 452 { 453 release_sock(strp->sk); 454 } 455 456 int strp_init(struct strparser *strp, struct sock *sk, 457 const struct strp_callbacks *cb) 458 { 459 460 if (!cb || !cb->rcv_msg || !cb->parse_msg) 461 return -EINVAL; 462 463 /* The sk (sock) arg determines the mode of the stream parser. 464 * 465 * If the sock is set then the strparser is in receive callback mode. 466 * The upper layer calls strp_data_ready to kick receive processing 467 * and strparser calls the read_sock function on the socket to 468 * get packets. 469 * 470 * If the sock is not set then the strparser is in general mode. 471 * The upper layer calls strp_process for each skb to be parsed. 472 */ 473 474 if (!sk) { 475 if (!cb->lock || !cb->unlock) 476 return -EINVAL; 477 } 478 479 memset(strp, 0, sizeof(*strp)); 480 481 strp->sk = sk; 482 483 strp->cb.lock = cb->lock ? : strp_sock_lock; 484 strp->cb.unlock = cb->unlock ? : strp_sock_unlock; 485 strp->cb.rcv_msg = cb->rcv_msg; 486 strp->cb.parse_msg = cb->parse_msg; 487 strp->cb.read_sock_done = cb->read_sock_done ? : default_read_sock_done; 488 strp->cb.abort_parser = cb->abort_parser ? : strp_abort_strp; 489 490 INIT_DELAYED_WORK(&strp->msg_timer_work, strp_msg_timeout); 491 INIT_WORK(&strp->work, strp_work); 492 493 return 0; 494 } 495 EXPORT_SYMBOL_GPL(strp_init); 496 497 /* Sock process lock held (lock_sock) */ 498 void __strp_unpause(struct strparser *strp) 499 { 500 strp->paused = 0; 501 502 if (strp->need_bytes) { 503 if (strp_peek_len(strp) < strp->need_bytes) 504 return; 505 } 506 strp_read_sock(strp); 507 } 508 EXPORT_SYMBOL_GPL(__strp_unpause); 509 510 void strp_unpause(struct strparser *strp) 511 { 512 strp->paused = 0; 513 514 /* Sync setting paused with RX work */ 515 smp_mb(); 516 517 queue_work(strp_wq, &strp->work); 518 } 519 EXPORT_SYMBOL_GPL(strp_unpause); 520 521 /* strp must already be stopped so that strp_recv will no longer be called. 522 * Note that strp_done is not called with the lower socket held. 523 */ 524 void strp_done(struct strparser *strp) 525 { 526 WARN_ON(!strp->stopped); 527 528 cancel_delayed_work_sync(&strp->msg_timer_work); 529 cancel_work_sync(&strp->work); 530 531 if (strp->skb_head) { 532 kfree_skb(strp->skb_head); 533 strp->skb_head = NULL; 534 } 535 } 536 EXPORT_SYMBOL_GPL(strp_done); 537 538 void strp_stop(struct strparser *strp) 539 { 540 strp->stopped = 1; 541 } 542 EXPORT_SYMBOL_GPL(strp_stop); 543 544 void strp_check_rcv(struct strparser *strp) 545 { 546 queue_work(strp_wq, &strp->work); 547 } 548 EXPORT_SYMBOL_GPL(strp_check_rcv); 549 550 static int __init strp_mod_init(void) 551 { 552 strp_wq = create_singlethread_workqueue("kstrp"); 553 554 return 0; 555 } 556 557 static void __exit strp_mod_exit(void) 558 { 559 destroy_workqueue(strp_wq); 560 } 561 module_init(strp_mod_init); 562 module_exit(strp_mod_exit); 563 MODULE_LICENSE("GPL"); 564