1 // SPDX-License-Identifier: GPL-2.0-or-later 2 /* RxRPC individual remote procedure call handling 3 * 4 * Copyright (C) 2007 Red Hat, Inc. All Rights Reserved. 5 * Written by David Howells (dhowells@redhat.com) 6 */ 7 8 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt 9 10 #include <linux/slab.h> 11 #include <linux/module.h> 12 #include <linux/circ_buf.h> 13 #include <linux/spinlock_types.h> 14 #include <net/sock.h> 15 #include <net/af_rxrpc.h> 16 #include "ar-internal.h" 17 18 const char *const rxrpc_call_states[NR__RXRPC_CALL_STATES] = { 19 [RXRPC_CALL_UNINITIALISED] = "Uninit ", 20 [RXRPC_CALL_CLIENT_AWAIT_CONN] = "ClWtConn", 21 [RXRPC_CALL_CLIENT_SEND_REQUEST] = "ClSndReq", 22 [RXRPC_CALL_CLIENT_AWAIT_REPLY] = "ClAwtRpl", 23 [RXRPC_CALL_CLIENT_RECV_REPLY] = "ClRcvRpl", 24 [RXRPC_CALL_SERVER_PREALLOC] = "SvPrealc", 25 [RXRPC_CALL_SERVER_RECV_REQUEST] = "SvRcvReq", 26 [RXRPC_CALL_SERVER_ACK_REQUEST] = "SvAckReq", 27 [RXRPC_CALL_SERVER_SEND_REPLY] = "SvSndRpl", 28 [RXRPC_CALL_SERVER_AWAIT_ACK] = "SvAwtACK", 29 [RXRPC_CALL_COMPLETE] = "Complete", 30 }; 31 32 const char *const rxrpc_call_completions[NR__RXRPC_CALL_COMPLETIONS] = { 33 [RXRPC_CALL_SUCCEEDED] = "Complete", 34 [RXRPC_CALL_REMOTELY_ABORTED] = "RmtAbort", 35 [RXRPC_CALL_LOCALLY_ABORTED] = "LocAbort", 36 [RXRPC_CALL_LOCAL_ERROR] = "LocError", 37 [RXRPC_CALL_NETWORK_ERROR] = "NetError", 38 }; 39 40 struct kmem_cache *rxrpc_call_jar; 41 42 static DEFINE_SEMAPHORE(rxrpc_call_limiter, 1000); 43 static DEFINE_SEMAPHORE(rxrpc_kernel_call_limiter, 1000); 44 45 void rxrpc_poke_call(struct rxrpc_call *call, enum rxrpc_call_poke_trace what) 46 { 47 struct rxrpc_local *local = call->local; 48 bool busy; 49 50 if (!test_bit(RXRPC_CALL_DISCONNECTED, &call->flags)) { 51 spin_lock_irq(&local->lock); 52 busy = !list_empty(&call->attend_link); 53 trace_rxrpc_poke_call(call, busy, what); 54 if (!busy && !rxrpc_try_get_call(call, rxrpc_call_get_poke)) 55 busy = true; 56 if (!busy) { 57 list_add_tail(&call->attend_link, &local->call_attend_q); 58 } 59 spin_unlock_irq(&local->lock); 60 if (!busy) 61 rxrpc_wake_up_io_thread(local); 62 } 63 } 64 65 static void rxrpc_call_timer_expired(struct timer_list *t) 66 { 67 struct rxrpc_call *call = timer_container_of(call, t, timer); 68 69 _enter("%d", call->debug_id); 70 71 if (!__rxrpc_call_is_complete(call)) { 72 trace_rxrpc_timer_expired(call); 73 rxrpc_poke_call(call, rxrpc_call_poke_timer); 74 } 75 } 76 77 static struct lock_class_key rxrpc_call_user_mutex_lock_class_key; 78 79 static void rxrpc_destroy_call(struct work_struct *); 80 81 /* 82 * find an extant server call 83 * - called in process context with IRQs enabled 84 */ 85 struct rxrpc_call *rxrpc_find_call_by_user_ID(struct rxrpc_sock *rx, 86 unsigned long user_call_ID) 87 { 88 struct rxrpc_call *call; 89 struct rb_node *p; 90 91 _enter("%p,%lx", rx, user_call_ID); 92 93 read_lock(&rx->call_lock); 94 95 p = rx->calls.rb_node; 96 while (p) { 97 call = rb_entry(p, struct rxrpc_call, sock_node); 98 99 if (user_call_ID < call->user_call_ID) 100 p = p->rb_left; 101 else if (user_call_ID > call->user_call_ID) 102 p = p->rb_right; 103 else 104 goto found_extant_call; 105 } 106 107 read_unlock(&rx->call_lock); 108 _leave(" = NULL"); 109 return NULL; 110 111 found_extant_call: 112 rxrpc_get_call(call, rxrpc_call_get_sendmsg); 113 read_unlock(&rx->call_lock); 114 _leave(" = %p [%d]", call, refcount_read(&call->ref)); 115 return call; 116 } 117 118 /* 119 * allocate a new call 120 */ 121 struct rxrpc_call *rxrpc_alloc_call(struct rxrpc_sock *rx, gfp_t gfp, 122 unsigned int debug_id) 123 { 124 struct rxrpc_call *call; 125 struct rxrpc_net *rxnet = rxrpc_net(sock_net(&rx->sk)); 126 127 call = kmem_cache_zalloc(rxrpc_call_jar, gfp); 128 if (!call) 129 return NULL; 130 131 mutex_init(&call->user_mutex); 132 133 /* Prevent lockdep reporting a deadlock false positive between the afs 134 * filesystem and sys_sendmsg() via the mmap sem. 135 */ 136 if (rx->sk.sk_kern_sock) 137 lockdep_set_class(&call->user_mutex, 138 &rxrpc_call_user_mutex_lock_class_key); 139 140 timer_setup(&call->timer, rxrpc_call_timer_expired, 0); 141 INIT_WORK(&call->destroyer, rxrpc_destroy_call); 142 INIT_LIST_HEAD(&call->link); 143 INIT_LIST_HEAD(&call->wait_link); 144 INIT_LIST_HEAD(&call->accept_link); 145 INIT_LIST_HEAD(&call->recvmsg_link); 146 INIT_LIST_HEAD(&call->sock_link); 147 INIT_LIST_HEAD(&call->attend_link); 148 skb_queue_head_init(&call->recvmsg_queue); 149 skb_queue_head_init(&call->rx_queue); 150 skb_queue_head_init(&call->rx_oos_queue); 151 init_waitqueue_head(&call->waitq); 152 spin_lock_init(&call->notify_lock); 153 refcount_set(&call->ref, 1); 154 call->debug_id = debug_id; 155 call->rx_pkt_offset = USHRT_MAX; 156 call->tx_total_len = -1; 157 call->tx_jumbo_max = 1; 158 call->next_rx_timo = 20 * HZ; 159 call->next_req_timo = 1 * HZ; 160 call->ackr_window = 1; 161 call->ackr_wtop = 1; 162 call->delay_ack_at = KTIME_MAX; 163 call->rack_timo_at = KTIME_MAX; 164 call->ping_at = KTIME_MAX; 165 call->keepalive_at = KTIME_MAX; 166 call->expect_rx_by = KTIME_MAX; 167 call->expect_req_by = KTIME_MAX; 168 call->expect_term_by = KTIME_MAX; 169 170 memset(&call->sock_node, 0xed, sizeof(call->sock_node)); 171 172 call->rx_winsize = rxrpc_rx_window_size; 173 call->tx_winsize = 16; 174 175 call->cong_cwnd = RXRPC_MIN_CWND; 176 call->cong_ssthresh = RXRPC_TX_MAX_WINDOW; 177 178 rxrpc_call_init_rtt(call); 179 180 call->rxnet = rxnet; 181 call->rtt_avail = RXRPC_CALL_RTT_AVAIL_MASK; 182 atomic_inc(&rxnet->nr_calls); 183 return call; 184 } 185 186 /* 187 * Allocate a new client call. 188 */ 189 static struct rxrpc_call *rxrpc_alloc_client_call(struct rxrpc_sock *rx, 190 struct rxrpc_conn_parameters *cp, 191 struct rxrpc_call_params *p, 192 gfp_t gfp, 193 unsigned int debug_id) 194 { 195 struct rxrpc_call *call; 196 ktime_t now; 197 int ret; 198 199 _enter(""); 200 201 call = rxrpc_alloc_call(rx, gfp, debug_id); 202 if (!call) 203 return ERR_PTR(-ENOMEM); 204 now = ktime_get_real(); 205 call->acks_latest_ts = now; 206 call->cong_tstamp = now; 207 call->dest_srx = cp->peer->srx; 208 call->dest_srx.srx_service = cp->service_id; 209 call->interruptibility = p->interruptibility; 210 call->tx_total_len = p->tx_total_len; 211 call->key = key_get(cp->key); 212 call->peer = rxrpc_get_peer(cp->peer, rxrpc_peer_get_call); 213 call->local = rxrpc_get_local(cp->local, rxrpc_local_get_call); 214 call->security_level = cp->security_level; 215 if (p->kernel) 216 __set_bit(RXRPC_CALL_KERNEL, &call->flags); 217 if (cp->upgrade) 218 __set_bit(RXRPC_CALL_UPGRADE, &call->flags); 219 if (cp->exclusive) 220 __set_bit(RXRPC_CALL_EXCLUSIVE, &call->flags); 221 222 if (p->timeouts.normal) 223 call->next_rx_timo = umin(p->timeouts.normal, 1); 224 if (p->timeouts.idle) 225 call->next_req_timo = umin(p->timeouts.idle, 1); 226 if (p->timeouts.hard) 227 call->hard_timo = p->timeouts.hard; 228 229 ret = rxrpc_init_client_call_security(call); 230 if (ret < 0) { 231 rxrpc_prefail_call(call, RXRPC_CALL_LOCAL_ERROR, ret); 232 rxrpc_put_call(call, rxrpc_call_put_discard_error); 233 return ERR_PTR(ret); 234 } 235 236 rxrpc_set_call_state(call, RXRPC_CALL_CLIENT_AWAIT_CONN); 237 238 trace_rxrpc_call(call->debug_id, refcount_read(&call->ref), 239 p->user_call_ID, rxrpc_call_new_client); 240 241 _leave(" = %p", call); 242 return call; 243 } 244 245 /* 246 * Initiate the call ack/resend/expiry timer. 247 */ 248 void rxrpc_start_call_timer(struct rxrpc_call *call) 249 { 250 if (call->hard_timo) { 251 ktime_t delay = ms_to_ktime(call->hard_timo * 1000); 252 253 call->expect_term_by = ktime_add(ktime_get_real(), delay); 254 trace_rxrpc_timer_set(call, delay, rxrpc_timer_trace_hard); 255 } 256 call->timer.expires = jiffies; 257 } 258 259 /* 260 * Wait for a call slot to become available. 261 */ 262 static struct semaphore *rxrpc_get_call_slot(struct rxrpc_call_params *p, gfp_t gfp) 263 { 264 struct semaphore *limiter = &rxrpc_call_limiter; 265 266 if (p->kernel) 267 limiter = &rxrpc_kernel_call_limiter; 268 if (p->interruptibility == RXRPC_UNINTERRUPTIBLE) { 269 down(limiter); 270 return limiter; 271 } 272 return down_interruptible(limiter) < 0 ? NULL : limiter; 273 } 274 275 /* 276 * Release a call slot. 277 */ 278 static void rxrpc_put_call_slot(struct rxrpc_call *call) 279 { 280 struct semaphore *limiter = &rxrpc_call_limiter; 281 282 if (test_bit(RXRPC_CALL_KERNEL, &call->flags)) 283 limiter = &rxrpc_kernel_call_limiter; 284 up(limiter); 285 } 286 287 /* 288 * Start the process of connecting a call. We obtain a peer and a connection 289 * bundle, but the actual association of a call with a connection is offloaded 290 * to the I/O thread to simplify locking. 291 */ 292 static int rxrpc_connect_call(struct rxrpc_call *call, gfp_t gfp) 293 { 294 struct rxrpc_local *local = call->local; 295 int ret = -ENOMEM; 296 297 _enter("{%d,%lx},", call->debug_id, call->user_call_ID); 298 299 ret = rxrpc_look_up_bundle(call, gfp); 300 if (ret < 0) 301 goto error; 302 303 trace_rxrpc_client(NULL, -1, rxrpc_client_queue_new_call); 304 rxrpc_get_call(call, rxrpc_call_get_io_thread); 305 spin_lock_irq(&local->client_call_lock); 306 list_add_tail(&call->wait_link, &local->new_client_calls); 307 spin_unlock_irq(&local->client_call_lock); 308 rxrpc_wake_up_io_thread(local); 309 return 0; 310 311 error: 312 __set_bit(RXRPC_CALL_DISCONNECTED, &call->flags); 313 return ret; 314 } 315 316 /* 317 * Set up a call for the given parameters. 318 * - Called with the socket lock held, which it must release. 319 * - If it returns a call, the call's lock will need releasing by the caller. 320 */ 321 struct rxrpc_call *rxrpc_new_client_call(struct rxrpc_sock *rx, 322 struct rxrpc_conn_parameters *cp, 323 struct rxrpc_call_params *p, 324 gfp_t gfp, 325 unsigned int debug_id) 326 __releases(&rx->sk.sk_lock) 327 __acquires(&call->user_mutex) 328 { 329 struct rxrpc_call *call, *xcall; 330 struct rxrpc_net *rxnet; 331 struct semaphore *limiter; 332 struct rb_node *parent, **pp; 333 int ret; 334 335 _enter("%p,%lx", rx, p->user_call_ID); 336 337 if (WARN_ON_ONCE(!cp->peer)) { 338 release_sock(&rx->sk); 339 return ERR_PTR(-EIO); 340 } 341 342 limiter = rxrpc_get_call_slot(p, gfp); 343 if (!limiter) { 344 release_sock(&rx->sk); 345 return ERR_PTR(-ERESTARTSYS); 346 } 347 348 call = rxrpc_alloc_client_call(rx, cp, p, gfp, debug_id); 349 if (IS_ERR(call)) { 350 release_sock(&rx->sk); 351 up(limiter); 352 _leave(" = %ld", PTR_ERR(call)); 353 return call; 354 } 355 356 /* We need to protect a partially set up call against the user as we 357 * will be acting outside the socket lock. 358 */ 359 mutex_lock(&call->user_mutex); 360 361 /* Publish the call, even though it is incompletely set up as yet */ 362 write_lock(&rx->call_lock); 363 364 pp = &rx->calls.rb_node; 365 parent = NULL; 366 while (*pp) { 367 parent = *pp; 368 xcall = rb_entry(parent, struct rxrpc_call, sock_node); 369 370 if (p->user_call_ID < xcall->user_call_ID) 371 pp = &(*pp)->rb_left; 372 else if (p->user_call_ID > xcall->user_call_ID) 373 pp = &(*pp)->rb_right; 374 else 375 goto error_dup_user_ID; 376 } 377 378 rcu_assign_pointer(call->socket, rx); 379 call->user_call_ID = p->user_call_ID; 380 __set_bit(RXRPC_CALL_HAS_USERID, &call->flags); 381 rxrpc_get_call(call, rxrpc_call_get_userid); 382 rb_link_node(&call->sock_node, parent, pp); 383 rb_insert_color(&call->sock_node, &rx->calls); 384 list_add(&call->sock_link, &rx->sock_calls); 385 386 write_unlock(&rx->call_lock); 387 388 rxnet = call->rxnet; 389 spin_lock(&rxnet->call_lock); 390 list_add_tail_rcu(&call->link, &rxnet->calls); 391 spin_unlock(&rxnet->call_lock); 392 393 /* From this point on, the call is protected by its own lock. */ 394 release_sock(&rx->sk); 395 396 /* Set up or get a connection record and set the protocol parameters, 397 * including channel number and call ID. 398 */ 399 ret = rxrpc_connect_call(call, gfp); 400 if (ret < 0) 401 goto error_attached_to_socket; 402 403 _leave(" = %p [new]", call); 404 return call; 405 406 /* We unexpectedly found the user ID in the list after taking 407 * the call_lock. This shouldn't happen unless the user races 408 * with itself and tries to add the same user ID twice at the 409 * same time in different threads. 410 */ 411 error_dup_user_ID: 412 write_unlock(&rx->call_lock); 413 release_sock(&rx->sk); 414 rxrpc_prefail_call(call, RXRPC_CALL_LOCAL_ERROR, -EEXIST); 415 trace_rxrpc_call(call->debug_id, refcount_read(&call->ref), 0, 416 rxrpc_call_see_userid_exists); 417 mutex_unlock(&call->user_mutex); 418 rxrpc_put_call(call, rxrpc_call_put_userid_exists); 419 _leave(" = -EEXIST"); 420 return ERR_PTR(-EEXIST); 421 422 /* We got an error, but the call is attached to the socket and is in 423 * need of release. However, we might now race with recvmsg() when it 424 * completion notifies the socket. Return 0 from sys_sendmsg() and 425 * leave the error to recvmsg() to deal with. 426 */ 427 error_attached_to_socket: 428 trace_rxrpc_call(call->debug_id, refcount_read(&call->ref), ret, 429 rxrpc_call_see_connect_failed); 430 rxrpc_set_call_completion(call, RXRPC_CALL_LOCAL_ERROR, 0, ret); 431 _leave(" = c=%08x [err]", call->debug_id); 432 return call; 433 } 434 435 /* 436 * Set up an incoming call. call->conn points to the connection. 437 * This is called with interrupts disabled and isn't allowed to fail. 438 */ 439 void rxrpc_incoming_call(struct rxrpc_sock *rx, 440 struct rxrpc_call *call, 441 struct sk_buff *skb) 442 { 443 struct rxrpc_connection *conn = call->conn; 444 struct rxrpc_skb_priv *sp = rxrpc_skb(skb); 445 u32 chan; 446 447 _enter(",%d", call->conn->debug_id); 448 449 rcu_assign_pointer(call->socket, rx); 450 call->call_id = sp->hdr.callNumber; 451 call->dest_srx.srx_service = sp->hdr.serviceId; 452 call->cid = sp->hdr.cid; 453 call->cong_tstamp = skb->tstamp; 454 455 __set_bit(RXRPC_CALL_EXPOSED, &call->flags); 456 rxrpc_set_call_state(call, RXRPC_CALL_SERVER_RECV_REQUEST); 457 458 spin_lock(&conn->state_lock); 459 460 switch (conn->state) { 461 case RXRPC_CONN_SERVICE_UNSECURED: 462 case RXRPC_CONN_SERVICE_CHALLENGING: 463 __set_bit(RXRPC_CALL_CONN_CHALLENGING, &call->flags); 464 break; 465 case RXRPC_CONN_SERVICE: 466 break; 467 468 case RXRPC_CONN_ABORTED: 469 rxrpc_set_call_completion(call, conn->completion, 470 conn->abort_code, conn->error); 471 break; 472 default: 473 BUG(); 474 } 475 476 rxrpc_get_call(call, rxrpc_call_get_io_thread); 477 478 /* Set the channel for this call. We don't get channel_lock as we're 479 * only defending against the data_ready handler (which we're called 480 * from) and the RESPONSE packet parser (which is only really 481 * interested in call_counter and can cope with a disagreement with the 482 * call pointer). 483 */ 484 chan = sp->hdr.cid & RXRPC_CHANNELMASK; 485 conn->channels[chan].call_counter = call->call_id; 486 conn->channels[chan].call_id = call->call_id; 487 conn->channels[chan].call = call; 488 spin_unlock(&conn->state_lock); 489 490 spin_lock(&conn->peer->lock); 491 hlist_add_head(&call->error_link, &conn->peer->error_targets); 492 spin_unlock(&conn->peer->lock); 493 494 rxrpc_start_call_timer(call); 495 _leave(""); 496 } 497 498 /* 499 * Note the re-emergence of a call. 500 */ 501 void rxrpc_see_call(struct rxrpc_call *call, enum rxrpc_call_trace why) 502 { 503 if (call) { 504 int r = refcount_read(&call->ref); 505 506 trace_rxrpc_call(call->debug_id, r, 0, why); 507 } 508 } 509 510 struct rxrpc_call *rxrpc_try_get_call(struct rxrpc_call *call, 511 enum rxrpc_call_trace why) 512 { 513 int r; 514 515 if (!call || !__refcount_inc_not_zero(&call->ref, &r)) 516 return NULL; 517 trace_rxrpc_call(call->debug_id, r + 1, 0, why); 518 return call; 519 } 520 521 /* 522 * Note the addition of a ref on a call. 523 */ 524 void rxrpc_get_call(struct rxrpc_call *call, enum rxrpc_call_trace why) 525 { 526 int r; 527 528 __refcount_inc(&call->ref, &r); 529 trace_rxrpc_call(call->debug_id, r + 1, 0, why); 530 } 531 532 /* 533 * Clean up the transmission buffers. 534 */ 535 static void rxrpc_cleanup_tx_buffers(struct rxrpc_call *call) 536 { 537 struct rxrpc_txqueue *tq, *next; 538 539 for (tq = call->tx_queue; tq; tq = next) { 540 next = tq->next; 541 for (int i = 0; i < RXRPC_NR_TXQUEUE; i++) 542 if (tq->bufs[i]) 543 rxrpc_put_txbuf(tq->bufs[i], rxrpc_txbuf_put_cleaned); 544 trace_rxrpc_tq(call, tq, 0, rxrpc_tq_cleaned); 545 kfree(tq); 546 } 547 } 548 549 /* 550 * Clean up the receive buffers. 551 */ 552 static void rxrpc_cleanup_rx_buffers(struct rxrpc_call *call) 553 { 554 rxrpc_purge_queue(&call->recvmsg_queue); 555 rxrpc_purge_queue(&call->rx_queue); 556 rxrpc_purge_queue(&call->rx_oos_queue); 557 kfree(call->rx_dec_buffer); 558 } 559 560 /* 561 * Detach a call from its owning socket. 562 */ 563 void rxrpc_release_call(struct rxrpc_sock *rx, struct rxrpc_call *call) 564 { 565 struct rxrpc_connection *conn = call->conn; 566 bool putu = false; 567 568 _enter("{%d,%d}", call->debug_id, refcount_read(&call->ref)); 569 570 trace_rxrpc_call(call->debug_id, refcount_read(&call->ref), 571 call->flags, rxrpc_call_see_release); 572 573 if (test_and_set_bit(RXRPC_CALL_RELEASED, &call->flags)) 574 BUG(); 575 576 rxrpc_put_call_slot(call); 577 578 /* Note that at this point, the call may still be on or may have been 579 * added back on to the socket receive queue. recvmsg() must discard 580 * released calls. The CALL_RELEASED flag should prevent further 581 * notifications. 582 */ 583 spin_lock_irq(&rx->recvmsg_lock); 584 spin_unlock_irq(&rx->recvmsg_lock); 585 586 write_lock(&rx->call_lock); 587 588 if (test_and_clear_bit(RXRPC_CALL_HAS_USERID, &call->flags)) { 589 rb_erase(&call->sock_node, &rx->calls); 590 memset(&call->sock_node, 0xdd, sizeof(call->sock_node)); 591 putu = true; 592 } 593 594 list_del(&call->sock_link); 595 write_unlock(&rx->call_lock); 596 597 _debug("RELEASE CALL %p (%d CONN %p)", call, call->debug_id, conn); 598 599 if (putu) 600 rxrpc_put_call(call, rxrpc_call_put_userid); 601 602 _leave(""); 603 } 604 605 /* 606 * release all the calls associated with a socket 607 */ 608 void rxrpc_release_calls_on_socket(struct rxrpc_sock *rx) 609 { 610 struct rxrpc_call *call; 611 612 _enter("%p", rx); 613 614 while (!list_empty(&rx->to_be_accepted)) { 615 call = list_entry(rx->to_be_accepted.next, 616 struct rxrpc_call, accept_link); 617 list_del(&call->accept_link); 618 rxrpc_propose_abort(call, RX_CALL_DEAD, -ECONNRESET, 619 rxrpc_abort_call_sock_release_tba); 620 rxrpc_put_call(call, rxrpc_call_put_release_sock_tba); 621 } 622 623 while (!list_empty(&rx->sock_calls)) { 624 call = list_entry(rx->sock_calls.next, 625 struct rxrpc_call, sock_link); 626 rxrpc_get_call(call, rxrpc_call_get_release_sock); 627 rxrpc_propose_abort(call, RX_CALL_DEAD, -ECONNRESET, 628 rxrpc_abort_call_sock_release); 629 rxrpc_release_call(rx, call); 630 rxrpc_put_call(call, rxrpc_call_put_release_sock); 631 } 632 633 while ((call = list_first_entry_or_null(&rx->recvmsg_q, 634 struct rxrpc_call, recvmsg_link))) { 635 list_del_init(&call->recvmsg_link); 636 rxrpc_put_call(call, rxrpc_call_put_release_recvmsg_q); 637 } 638 639 _leave(""); 640 } 641 642 /* 643 * release a call 644 */ 645 void rxrpc_put_call(struct rxrpc_call *call, enum rxrpc_call_trace why) 646 { 647 struct rxrpc_net *rxnet = call->rxnet; 648 unsigned int debug_id = call->debug_id; 649 bool dead; 650 int r; 651 652 ASSERT(call != NULL); 653 654 dead = __refcount_dec_and_test(&call->ref, &r); 655 trace_rxrpc_call(debug_id, r - 1, 0, why); 656 if (dead) { 657 ASSERTCMP(__rxrpc_call_state(call), ==, RXRPC_CALL_COMPLETE); 658 659 spin_lock(&rxnet->call_lock); 660 list_del_rcu(&call->link); 661 spin_unlock(&rxnet->call_lock); 662 663 rxrpc_cleanup_call(call); 664 } 665 } 666 667 /* 668 * Free up the call under RCU. 669 */ 670 static void rxrpc_rcu_free_call(struct rcu_head *rcu) 671 { 672 struct rxrpc_call *call = container_of(rcu, struct rxrpc_call, rcu); 673 struct rxrpc_net *rxnet = READ_ONCE(call->rxnet); 674 675 kmem_cache_free(rxrpc_call_jar, call); 676 if (atomic_dec_and_test(&rxnet->nr_calls)) 677 wake_up_var(&rxnet->nr_calls); 678 } 679 680 /* 681 * Final call destruction - but must be done in process context. 682 */ 683 static void rxrpc_destroy_call(struct work_struct *work) 684 { 685 struct rxrpc_call *call = container_of(work, struct rxrpc_call, destroyer); 686 687 timer_delete_sync(&call->timer); 688 689 rxrpc_cleanup_tx_buffers(call); 690 rxrpc_cleanup_rx_buffers(call); 691 rxrpc_put_txbuf(call->tx_pending, rxrpc_txbuf_put_cleaned); 692 rxrpc_put_connection(call->conn, rxrpc_conn_put_call); 693 rxrpc_deactivate_bundle(call->bundle); 694 rxrpc_put_bundle(call->bundle, rxrpc_bundle_put_call); 695 rxrpc_put_peer(call->peer, rxrpc_peer_put_call); 696 rxrpc_put_local(call->local, rxrpc_local_put_call); 697 key_put(call->key); 698 call_rcu(&call->rcu, rxrpc_rcu_free_call); 699 } 700 701 /* 702 * clean up a call 703 */ 704 void rxrpc_cleanup_call(struct rxrpc_call *call) 705 { 706 memset(&call->sock_node, 0xcd, sizeof(call->sock_node)); 707 708 ASSERTCMP(__rxrpc_call_state(call), ==, RXRPC_CALL_COMPLETE); 709 ASSERT(test_bit(RXRPC_CALL_RELEASED, &call->flags)); 710 711 timer_delete(&call->timer); 712 713 if (rcu_read_lock_held()) 714 /* Can't use the rxrpc workqueue as we need to cancel/flush 715 * something that may be running/waiting there. 716 */ 717 schedule_work(&call->destroyer); 718 else 719 rxrpc_destroy_call(&call->destroyer); 720 } 721 722 /* 723 * Make sure that all calls are gone from a network namespace. To reach this 724 * point, any open UDP sockets in that namespace must have been closed, so any 725 * outstanding calls cannot be doing I/O. 726 */ 727 void rxrpc_destroy_all_calls(struct rxrpc_net *rxnet) 728 { 729 struct rxrpc_call *call; 730 731 _enter(""); 732 733 if (!list_empty(&rxnet->calls)) { 734 int shown = 0; 735 736 spin_lock(&rxnet->call_lock); 737 738 list_for_each_entry(call, &rxnet->calls, link) { 739 rxrpc_see_call(call, rxrpc_call_see_still_live); 740 741 pr_err("Call %p still in use (%d,%s,%lx,%lx)!\n", 742 call, refcount_read(&call->ref), 743 rxrpc_call_states[__rxrpc_call_state(call)], 744 call->flags, call->events); 745 746 if (++shown >= 10) 747 break; 748 } 749 750 spin_unlock(&rxnet->call_lock); 751 } 752 753 atomic_dec(&rxnet->nr_calls); 754 wait_var_event(&rxnet->nr_calls, !atomic_read(&rxnet->nr_calls)); 755 } 756 757 /** 758 * rxrpc_kernel_query_call_security - Query call's security parameters 759 * @call: The call to query 760 * @_service_id: Where to return the service ID 761 * @_enctype: Where to return the "encoding type" 762 * 763 * This queries the security parameters of a call, setting *@_service_id and 764 * *@_enctype and returning the security class. 765 * 766 * Return: The security class protocol number. 767 */ 768 u8 rxrpc_kernel_query_call_security(struct rxrpc_call *call, 769 u16 *_service_id, u32 *_enctype) 770 { 771 *_service_id = call->dest_srx.srx_service; 772 *_enctype = call->security_enctype; 773 return call->security_ix; 774 } 775 EXPORT_SYMBOL(rxrpc_kernel_query_call_security); 776