1 /* -*- mode: c; c-basic-offset: 8; -*- 2 * 3 * vim: noexpandtab sw=8 ts=8 sts=0: 4 * 5 * Copyright (C) 2004 Oracle. All rights reserved. 6 * 7 * This program is free software; you can redistribute it and/or 8 * modify it under the terms of the GNU General Public 9 * License as published by the Free Software Foundation; either 10 * version 2 of the License, or (at your option) any later version. 11 * 12 * This program is distributed in the hope that it will be useful, 13 * but WITHOUT ANY WARRANTY; without even the implied warranty of 14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU 15 * General Public License for more details. 16 * 17 * You should have received a copy of the GNU General Public 18 * License along with this program; if not, write to the 19 * Free Software Foundation, Inc., 59 Temple Place - Suite 330, 20 * Boston, MA 021110-1307, USA. 21 * 22 * ---- 23 * 24 * Callers for this were originally written against a very simple synchronus 25 * API. This implementation reflects those simple callers. Some day I'm sure 26 * we'll need to move to a more robust posting/callback mechanism. 27 * 28 * Transmit calls pass in kernel virtual addresses and block copying this into 29 * the socket's tx buffers via a usual blocking sendmsg. They'll block waiting 30 * for a failed socket to timeout. TX callers can also pass in a poniter to an 31 * 'int' which gets filled with an errno off the wire in response to the 32 * message they send. 33 * 34 * Handlers for unsolicited messages are registered. Each socket has a page 35 * that incoming data is copied into. First the header, then the data. 36 * Handlers are called from only one thread with a reference to this per-socket 37 * page. This page is destroyed after the handler call, so it can't be 38 * referenced beyond the call. Handlers may block but are discouraged from 39 * doing so. 40 * 41 * Any framing errors (bad magic, large payload lengths) close a connection. 42 * 43 * Our sock_container holds the state we associate with a socket. It's current 44 * framing state is held there as well as the refcounting we do around when it 45 * is safe to tear down the socket. The socket is only finally torn down from 46 * the container when the container loses all of its references -- so as long 47 * as you hold a ref on the container you can trust that the socket is valid 48 * for use with kernel socket APIs. 49 * 50 * Connections are initiated between a pair of nodes when the node with the 51 * higher node number gets a heartbeat callback which indicates that the lower 52 * numbered node has started heartbeating. The lower numbered node is passive 53 * and only accepts the connection if the higher numbered node is heartbeating. 54 */ 55 56 #include <linux/kernel.h> 57 #include <linux/jiffies.h> 58 #include <linux/slab.h> 59 #include <linux/idr.h> 60 #include <linux/kref.h> 61 #include <linux/net.h> 62 #include <linux/export.h> 63 #include <net/tcp.h> 64 65 #include <asm/uaccess.h> 66 67 #include "heartbeat.h" 68 #include "tcp.h" 69 #include "nodemanager.h" 70 #define MLOG_MASK_PREFIX ML_TCP 71 #include "masklog.h" 72 #include "quorum.h" 73 74 #include "tcp_internal.h" 75 76 #define SC_NODEF_FMT "node %s (num %u) at %pI4:%u" 77 #define SC_NODEF_ARGS(sc) sc->sc_node->nd_name, sc->sc_node->nd_num, \ 78 &sc->sc_node->nd_ipv4_address, \ 79 ntohs(sc->sc_node->nd_ipv4_port) 80 81 /* 82 * In the following two log macros, the whitespace after the ',' just 83 * before ##args is intentional. Otherwise, gcc 2.95 will eat the 84 * previous token if args expands to nothing. 85 */ 86 #define msglog(hdr, fmt, args...) do { \ 87 typeof(hdr) __hdr = (hdr); \ 88 mlog(ML_MSG, "[mag %u len %u typ %u stat %d sys_stat %d " \ 89 "key %08x num %u] " fmt, \ 90 be16_to_cpu(__hdr->magic), be16_to_cpu(__hdr->data_len), \ 91 be16_to_cpu(__hdr->msg_type), be32_to_cpu(__hdr->status), \ 92 be32_to_cpu(__hdr->sys_status), be32_to_cpu(__hdr->key), \ 93 be32_to_cpu(__hdr->msg_num) , ##args); \ 94 } while (0) 95 96 #define sclog(sc, fmt, args...) do { \ 97 typeof(sc) __sc = (sc); \ 98 mlog(ML_SOCKET, "[sc %p refs %d sock %p node %u page %p " \ 99 "pg_off %zu] " fmt, __sc, \ 100 atomic_read(&__sc->sc_kref.refcount), __sc->sc_sock, \ 101 __sc->sc_node->nd_num, __sc->sc_page, __sc->sc_page_off , \ 102 ##args); \ 103 } while (0) 104 105 static DEFINE_RWLOCK(o2net_handler_lock); 106 static struct rb_root o2net_handler_tree = RB_ROOT; 107 108 static struct o2net_node o2net_nodes[O2NM_MAX_NODES]; 109 110 /* XXX someday we'll need better accounting */ 111 static struct socket *o2net_listen_sock = NULL; 112 113 /* 114 * listen work is only queued by the listening socket callbacks on the 115 * o2net_wq. teardown detaches the callbacks before destroying the workqueue. 116 * quorum work is queued as sock containers are shutdown.. stop_listening 117 * tears down all the node's sock containers, preventing future shutdowns 118 * and queued quroum work, before canceling delayed quorum work and 119 * destroying the work queue. 120 */ 121 static struct workqueue_struct *o2net_wq; 122 static struct work_struct o2net_listen_work; 123 124 static struct o2hb_callback_func o2net_hb_up, o2net_hb_down; 125 #define O2NET_HB_PRI 0x1 126 127 static struct o2net_handshake *o2net_hand; 128 static struct o2net_msg *o2net_keep_req, *o2net_keep_resp; 129 130 static int o2net_sys_err_translations[O2NET_ERR_MAX] = 131 {[O2NET_ERR_NONE] = 0, 132 [O2NET_ERR_NO_HNDLR] = -ENOPROTOOPT, 133 [O2NET_ERR_OVERFLOW] = -EOVERFLOW, 134 [O2NET_ERR_DIED] = -EHOSTDOWN,}; 135 136 /* can't quite avoid *all* internal declarations :/ */ 137 static void o2net_sc_connect_completed(struct work_struct *work); 138 static void o2net_rx_until_empty(struct work_struct *work); 139 static void o2net_shutdown_sc(struct work_struct *work); 140 static void o2net_listen_data_ready(struct sock *sk, int bytes); 141 static void o2net_sc_send_keep_req(struct work_struct *work); 142 static void o2net_idle_timer(unsigned long data); 143 static void o2net_sc_postpone_idle(struct o2net_sock_container *sc); 144 static void o2net_sc_reset_idle_timer(struct o2net_sock_container *sc); 145 146 #ifdef CONFIG_DEBUG_FS 147 static void o2net_init_nst(struct o2net_send_tracking *nst, u32 msgtype, 148 u32 msgkey, struct task_struct *task, u8 node) 149 { 150 INIT_LIST_HEAD(&nst->st_net_debug_item); 151 nst->st_task = task; 152 nst->st_msg_type = msgtype; 153 nst->st_msg_key = msgkey; 154 nst->st_node = node; 155 } 156 157 static inline void o2net_set_nst_sock_time(struct o2net_send_tracking *nst) 158 { 159 nst->st_sock_time = ktime_get(); 160 } 161 162 static inline void o2net_set_nst_send_time(struct o2net_send_tracking *nst) 163 { 164 nst->st_send_time = ktime_get(); 165 } 166 167 static inline void o2net_set_nst_status_time(struct o2net_send_tracking *nst) 168 { 169 nst->st_status_time = ktime_get(); 170 } 171 172 static inline void o2net_set_nst_sock_container(struct o2net_send_tracking *nst, 173 struct o2net_sock_container *sc) 174 { 175 nst->st_sc = sc; 176 } 177 178 static inline void o2net_set_nst_msg_id(struct o2net_send_tracking *nst, 179 u32 msg_id) 180 { 181 nst->st_id = msg_id; 182 } 183 184 static inline void o2net_set_sock_timer(struct o2net_sock_container *sc) 185 { 186 sc->sc_tv_timer = ktime_get(); 187 } 188 189 static inline void o2net_set_data_ready_time(struct o2net_sock_container *sc) 190 { 191 sc->sc_tv_data_ready = ktime_get(); 192 } 193 194 static inline void o2net_set_advance_start_time(struct o2net_sock_container *sc) 195 { 196 sc->sc_tv_advance_start = ktime_get(); 197 } 198 199 static inline void o2net_set_advance_stop_time(struct o2net_sock_container *sc) 200 { 201 sc->sc_tv_advance_stop = ktime_get(); 202 } 203 204 static inline void o2net_set_func_start_time(struct o2net_sock_container *sc) 205 { 206 sc->sc_tv_func_start = ktime_get(); 207 } 208 209 static inline void o2net_set_func_stop_time(struct o2net_sock_container *sc) 210 { 211 sc->sc_tv_func_stop = ktime_get(); 212 } 213 214 #else /* CONFIG_DEBUG_FS */ 215 # define o2net_init_nst(a, b, c, d, e) 216 # define o2net_set_nst_sock_time(a) 217 # define o2net_set_nst_send_time(a) 218 # define o2net_set_nst_status_time(a) 219 # define o2net_set_nst_sock_container(a, b) 220 # define o2net_set_nst_msg_id(a, b) 221 # define o2net_set_sock_timer(a) 222 # define o2net_set_data_ready_time(a) 223 # define o2net_set_advance_start_time(a) 224 # define o2net_set_advance_stop_time(a) 225 # define o2net_set_func_start_time(a) 226 # define o2net_set_func_stop_time(a) 227 #endif /* CONFIG_DEBUG_FS */ 228 229 #ifdef CONFIG_OCFS2_FS_STATS 230 static ktime_t o2net_get_func_run_time(struct o2net_sock_container *sc) 231 { 232 return ktime_sub(sc->sc_tv_func_stop, sc->sc_tv_func_start); 233 } 234 235 static void o2net_update_send_stats(struct o2net_send_tracking *nst, 236 struct o2net_sock_container *sc) 237 { 238 sc->sc_tv_status_total = ktime_add(sc->sc_tv_status_total, 239 ktime_sub(ktime_get(), 240 nst->st_status_time)); 241 sc->sc_tv_send_total = ktime_add(sc->sc_tv_send_total, 242 ktime_sub(nst->st_status_time, 243 nst->st_send_time)); 244 sc->sc_tv_acquiry_total = ktime_add(sc->sc_tv_acquiry_total, 245 ktime_sub(nst->st_send_time, 246 nst->st_sock_time)); 247 sc->sc_send_count++; 248 } 249 250 static void o2net_update_recv_stats(struct o2net_sock_container *sc) 251 { 252 sc->sc_tv_process_total = ktime_add(sc->sc_tv_process_total, 253 o2net_get_func_run_time(sc)); 254 sc->sc_recv_count++; 255 } 256 257 #else 258 259 # define o2net_update_send_stats(a, b) 260 261 # define o2net_update_recv_stats(sc) 262 263 #endif /* CONFIG_OCFS2_FS_STATS */ 264 265 static inline int o2net_reconnect_delay(void) 266 { 267 return o2nm_single_cluster->cl_reconnect_delay_ms; 268 } 269 270 static inline int o2net_keepalive_delay(void) 271 { 272 return o2nm_single_cluster->cl_keepalive_delay_ms; 273 } 274 275 static inline int o2net_idle_timeout(void) 276 { 277 return o2nm_single_cluster->cl_idle_timeout_ms; 278 } 279 280 static inline int o2net_sys_err_to_errno(enum o2net_system_error err) 281 { 282 int trans; 283 BUG_ON(err >= O2NET_ERR_MAX); 284 trans = o2net_sys_err_translations[err]; 285 286 /* Just in case we mess up the translation table above */ 287 BUG_ON(err != O2NET_ERR_NONE && trans == 0); 288 return trans; 289 } 290 291 static struct o2net_node * o2net_nn_from_num(u8 node_num) 292 { 293 BUG_ON(node_num >= ARRAY_SIZE(o2net_nodes)); 294 return &o2net_nodes[node_num]; 295 } 296 297 static u8 o2net_num_from_nn(struct o2net_node *nn) 298 { 299 BUG_ON(nn == NULL); 300 return nn - o2net_nodes; 301 } 302 303 /* ------------------------------------------------------------ */ 304 305 static int o2net_prep_nsw(struct o2net_node *nn, struct o2net_status_wait *nsw) 306 { 307 int ret; 308 309 spin_lock(&nn->nn_lock); 310 ret = idr_alloc(&nn->nn_status_idr, nsw, 0, 0, GFP_ATOMIC); 311 if (ret >= 0) { 312 nsw->ns_id = ret; 313 list_add_tail(&nsw->ns_node_item, &nn->nn_status_list); 314 } 315 spin_unlock(&nn->nn_lock); 316 if (ret < 0) 317 return ret; 318 319 init_waitqueue_head(&nsw->ns_wq); 320 nsw->ns_sys_status = O2NET_ERR_NONE; 321 nsw->ns_status = 0; 322 return 0; 323 } 324 325 static void o2net_complete_nsw_locked(struct o2net_node *nn, 326 struct o2net_status_wait *nsw, 327 enum o2net_system_error sys_status, 328 s32 status) 329 { 330 assert_spin_locked(&nn->nn_lock); 331 332 if (!list_empty(&nsw->ns_node_item)) { 333 list_del_init(&nsw->ns_node_item); 334 nsw->ns_sys_status = sys_status; 335 nsw->ns_status = status; 336 idr_remove(&nn->nn_status_idr, nsw->ns_id); 337 wake_up(&nsw->ns_wq); 338 } 339 } 340 341 static void o2net_complete_nsw(struct o2net_node *nn, 342 struct o2net_status_wait *nsw, 343 u64 id, enum o2net_system_error sys_status, 344 s32 status) 345 { 346 spin_lock(&nn->nn_lock); 347 if (nsw == NULL) { 348 if (id > INT_MAX) 349 goto out; 350 351 nsw = idr_find(&nn->nn_status_idr, id); 352 if (nsw == NULL) 353 goto out; 354 } 355 356 o2net_complete_nsw_locked(nn, nsw, sys_status, status); 357 358 out: 359 spin_unlock(&nn->nn_lock); 360 return; 361 } 362 363 static void o2net_complete_nodes_nsw(struct o2net_node *nn) 364 { 365 struct o2net_status_wait *nsw, *tmp; 366 unsigned int num_kills = 0; 367 368 assert_spin_locked(&nn->nn_lock); 369 370 list_for_each_entry_safe(nsw, tmp, &nn->nn_status_list, ns_node_item) { 371 o2net_complete_nsw_locked(nn, nsw, O2NET_ERR_DIED, 0); 372 num_kills++; 373 } 374 375 mlog(0, "completed %d messages for node %u\n", num_kills, 376 o2net_num_from_nn(nn)); 377 } 378 379 static int o2net_nsw_completed(struct o2net_node *nn, 380 struct o2net_status_wait *nsw) 381 { 382 int completed; 383 spin_lock(&nn->nn_lock); 384 completed = list_empty(&nsw->ns_node_item); 385 spin_unlock(&nn->nn_lock); 386 return completed; 387 } 388 389 /* ------------------------------------------------------------ */ 390 391 static void sc_kref_release(struct kref *kref) 392 { 393 struct o2net_sock_container *sc = container_of(kref, 394 struct o2net_sock_container, sc_kref); 395 BUG_ON(timer_pending(&sc->sc_idle_timeout)); 396 397 sclog(sc, "releasing\n"); 398 399 if (sc->sc_sock) { 400 sock_release(sc->sc_sock); 401 sc->sc_sock = NULL; 402 } 403 404 o2nm_undepend_item(&sc->sc_node->nd_item); 405 o2nm_node_put(sc->sc_node); 406 sc->sc_node = NULL; 407 408 o2net_debug_del_sc(sc); 409 kfree(sc); 410 } 411 412 static void sc_put(struct o2net_sock_container *sc) 413 { 414 sclog(sc, "put\n"); 415 kref_put(&sc->sc_kref, sc_kref_release); 416 } 417 static void sc_get(struct o2net_sock_container *sc) 418 { 419 sclog(sc, "get\n"); 420 kref_get(&sc->sc_kref); 421 } 422 static struct o2net_sock_container *sc_alloc(struct o2nm_node *node) 423 { 424 struct o2net_sock_container *sc, *ret = NULL; 425 struct page *page = NULL; 426 int status = 0; 427 428 page = alloc_page(GFP_NOFS); 429 sc = kzalloc(sizeof(*sc), GFP_NOFS); 430 if (sc == NULL || page == NULL) 431 goto out; 432 433 kref_init(&sc->sc_kref); 434 o2nm_node_get(node); 435 sc->sc_node = node; 436 437 /* pin the node item of the remote node */ 438 status = o2nm_depend_item(&node->nd_item); 439 if (status) { 440 mlog_errno(status); 441 o2nm_node_put(node); 442 goto out; 443 } 444 INIT_WORK(&sc->sc_connect_work, o2net_sc_connect_completed); 445 INIT_WORK(&sc->sc_rx_work, o2net_rx_until_empty); 446 INIT_WORK(&sc->sc_shutdown_work, o2net_shutdown_sc); 447 INIT_DELAYED_WORK(&sc->sc_keepalive_work, o2net_sc_send_keep_req); 448 449 init_timer(&sc->sc_idle_timeout); 450 sc->sc_idle_timeout.function = o2net_idle_timer; 451 sc->sc_idle_timeout.data = (unsigned long)sc; 452 453 sclog(sc, "alloced\n"); 454 455 ret = sc; 456 sc->sc_page = page; 457 o2net_debug_add_sc(sc); 458 sc = NULL; 459 page = NULL; 460 461 out: 462 if (page) 463 __free_page(page); 464 kfree(sc); 465 466 return ret; 467 } 468 469 /* ------------------------------------------------------------ */ 470 471 static void o2net_sc_queue_work(struct o2net_sock_container *sc, 472 struct work_struct *work) 473 { 474 sc_get(sc); 475 if (!queue_work(o2net_wq, work)) 476 sc_put(sc); 477 } 478 static void o2net_sc_queue_delayed_work(struct o2net_sock_container *sc, 479 struct delayed_work *work, 480 int delay) 481 { 482 sc_get(sc); 483 if (!queue_delayed_work(o2net_wq, work, delay)) 484 sc_put(sc); 485 } 486 static void o2net_sc_cancel_delayed_work(struct o2net_sock_container *sc, 487 struct delayed_work *work) 488 { 489 if (cancel_delayed_work(work)) 490 sc_put(sc); 491 } 492 493 static atomic_t o2net_connected_peers = ATOMIC_INIT(0); 494 495 int o2net_num_connected_peers(void) 496 { 497 return atomic_read(&o2net_connected_peers); 498 } 499 500 static void o2net_set_nn_state(struct o2net_node *nn, 501 struct o2net_sock_container *sc, 502 unsigned valid, int err) 503 { 504 int was_valid = nn->nn_sc_valid; 505 int was_err = nn->nn_persistent_error; 506 struct o2net_sock_container *old_sc = nn->nn_sc; 507 508 assert_spin_locked(&nn->nn_lock); 509 510 if (old_sc && !sc) 511 atomic_dec(&o2net_connected_peers); 512 else if (!old_sc && sc) 513 atomic_inc(&o2net_connected_peers); 514 515 /* the node num comparison and single connect/accept path should stop 516 * an non-null sc from being overwritten with another */ 517 BUG_ON(sc && nn->nn_sc && nn->nn_sc != sc); 518 mlog_bug_on_msg(err && valid, "err %d valid %u\n", err, valid); 519 mlog_bug_on_msg(valid && !sc, "valid %u sc %p\n", valid, sc); 520 521 if (was_valid && !valid && err == 0) 522 err = -ENOTCONN; 523 524 mlog(ML_CONN, "node %u sc: %p -> %p, valid %u -> %u, err %d -> %d\n", 525 o2net_num_from_nn(nn), nn->nn_sc, sc, nn->nn_sc_valid, valid, 526 nn->nn_persistent_error, err); 527 528 nn->nn_sc = sc; 529 nn->nn_sc_valid = valid ? 1 : 0; 530 nn->nn_persistent_error = err; 531 532 /* mirrors o2net_tx_can_proceed() */ 533 if (nn->nn_persistent_error || nn->nn_sc_valid) 534 wake_up(&nn->nn_sc_wq); 535 536 if (!was_err && nn->nn_persistent_error) { 537 o2quo_conn_err(o2net_num_from_nn(nn)); 538 queue_delayed_work(o2net_wq, &nn->nn_still_up, 539 msecs_to_jiffies(O2NET_QUORUM_DELAY_MS)); 540 } 541 542 if (was_valid && !valid) { 543 printk(KERN_NOTICE "o2net: No longer connected to " 544 SC_NODEF_FMT "\n", SC_NODEF_ARGS(old_sc)); 545 o2net_complete_nodes_nsw(nn); 546 } 547 548 if (!was_valid && valid) { 549 o2quo_conn_up(o2net_num_from_nn(nn)); 550 cancel_delayed_work(&nn->nn_connect_expired); 551 printk(KERN_NOTICE "o2net: %s " SC_NODEF_FMT "\n", 552 o2nm_this_node() > sc->sc_node->nd_num ? 553 "Connected to" : "Accepted connection from", 554 SC_NODEF_ARGS(sc)); 555 } 556 557 /* trigger the connecting worker func as long as we're not valid, 558 * it will back off if it shouldn't connect. This can be called 559 * from node config teardown and so needs to be careful about 560 * the work queue actually being up. */ 561 if (!valid && o2net_wq) { 562 unsigned long delay; 563 /* delay if we're within a RECONNECT_DELAY of the 564 * last attempt */ 565 delay = (nn->nn_last_connect_attempt + 566 msecs_to_jiffies(o2net_reconnect_delay())) 567 - jiffies; 568 if (delay > msecs_to_jiffies(o2net_reconnect_delay())) 569 delay = 0; 570 mlog(ML_CONN, "queueing conn attempt in %lu jiffies\n", delay); 571 queue_delayed_work(o2net_wq, &nn->nn_connect_work, delay); 572 573 /* 574 * Delay the expired work after idle timeout. 575 * 576 * We might have lots of failed connection attempts that run 577 * through here but we only cancel the connect_expired work when 578 * a connection attempt succeeds. So only the first enqueue of 579 * the connect_expired work will do anything. The rest will see 580 * that it's already queued and do nothing. 581 */ 582 delay += msecs_to_jiffies(o2net_idle_timeout()); 583 queue_delayed_work(o2net_wq, &nn->nn_connect_expired, delay); 584 } 585 586 /* keep track of the nn's sc ref for the caller */ 587 if ((old_sc == NULL) && sc) 588 sc_get(sc); 589 if (old_sc && (old_sc != sc)) { 590 o2net_sc_queue_work(old_sc, &old_sc->sc_shutdown_work); 591 sc_put(old_sc); 592 } 593 } 594 595 /* see o2net_register_callbacks() */ 596 static void o2net_data_ready(struct sock *sk, int bytes) 597 { 598 void (*ready)(struct sock *sk, int bytes); 599 600 read_lock(&sk->sk_callback_lock); 601 if (sk->sk_user_data) { 602 struct o2net_sock_container *sc = sk->sk_user_data; 603 sclog(sc, "data_ready hit\n"); 604 o2net_set_data_ready_time(sc); 605 o2net_sc_queue_work(sc, &sc->sc_rx_work); 606 ready = sc->sc_data_ready; 607 } else { 608 ready = sk->sk_data_ready; 609 } 610 read_unlock(&sk->sk_callback_lock); 611 612 ready(sk, bytes); 613 } 614 615 /* see o2net_register_callbacks() */ 616 static void o2net_state_change(struct sock *sk) 617 { 618 void (*state_change)(struct sock *sk); 619 struct o2net_sock_container *sc; 620 621 read_lock(&sk->sk_callback_lock); 622 sc = sk->sk_user_data; 623 if (sc == NULL) { 624 state_change = sk->sk_state_change; 625 goto out; 626 } 627 628 sclog(sc, "state_change to %d\n", sk->sk_state); 629 630 state_change = sc->sc_state_change; 631 632 switch(sk->sk_state) { 633 /* ignore connecting sockets as they make progress */ 634 case TCP_SYN_SENT: 635 case TCP_SYN_RECV: 636 break; 637 case TCP_ESTABLISHED: 638 o2net_sc_queue_work(sc, &sc->sc_connect_work); 639 break; 640 default: 641 printk(KERN_INFO "o2net: Connection to " SC_NODEF_FMT 642 " shutdown, state %d\n", 643 SC_NODEF_ARGS(sc), sk->sk_state); 644 o2net_sc_queue_work(sc, &sc->sc_shutdown_work); 645 break; 646 } 647 out: 648 read_unlock(&sk->sk_callback_lock); 649 state_change(sk); 650 } 651 652 /* 653 * we register callbacks so we can queue work on events before calling 654 * the original callbacks. our callbacks our careful to test user_data 655 * to discover when they've reaced with o2net_unregister_callbacks(). 656 */ 657 static void o2net_register_callbacks(struct sock *sk, 658 struct o2net_sock_container *sc) 659 { 660 write_lock_bh(&sk->sk_callback_lock); 661 662 /* accepted sockets inherit the old listen socket data ready */ 663 if (sk->sk_data_ready == o2net_listen_data_ready) { 664 sk->sk_data_ready = sk->sk_user_data; 665 sk->sk_user_data = NULL; 666 } 667 668 BUG_ON(sk->sk_user_data != NULL); 669 sk->sk_user_data = sc; 670 sc_get(sc); 671 672 sc->sc_data_ready = sk->sk_data_ready; 673 sc->sc_state_change = sk->sk_state_change; 674 sk->sk_data_ready = o2net_data_ready; 675 sk->sk_state_change = o2net_state_change; 676 677 mutex_init(&sc->sc_send_lock); 678 679 write_unlock_bh(&sk->sk_callback_lock); 680 } 681 682 static int o2net_unregister_callbacks(struct sock *sk, 683 struct o2net_sock_container *sc) 684 { 685 int ret = 0; 686 687 write_lock_bh(&sk->sk_callback_lock); 688 if (sk->sk_user_data == sc) { 689 ret = 1; 690 sk->sk_user_data = NULL; 691 sk->sk_data_ready = sc->sc_data_ready; 692 sk->sk_state_change = sc->sc_state_change; 693 } 694 write_unlock_bh(&sk->sk_callback_lock); 695 696 return ret; 697 } 698 699 /* 700 * this is a little helper that is called by callers who have seen a problem 701 * with an sc and want to detach it from the nn if someone already hasn't beat 702 * them to it. if an error is given then the shutdown will be persistent 703 * and pending transmits will be canceled. 704 */ 705 static void o2net_ensure_shutdown(struct o2net_node *nn, 706 struct o2net_sock_container *sc, 707 int err) 708 { 709 spin_lock(&nn->nn_lock); 710 if (nn->nn_sc == sc) 711 o2net_set_nn_state(nn, NULL, 0, err); 712 spin_unlock(&nn->nn_lock); 713 } 714 715 /* 716 * This work queue function performs the blocking parts of socket shutdown. A 717 * few paths lead here. set_nn_state will trigger this callback if it sees an 718 * sc detached from the nn. state_change will also trigger this callback 719 * directly when it sees errors. In that case we need to call set_nn_state 720 * ourselves as state_change couldn't get the nn_lock and call set_nn_state 721 * itself. 722 */ 723 static void o2net_shutdown_sc(struct work_struct *work) 724 { 725 struct o2net_sock_container *sc = 726 container_of(work, struct o2net_sock_container, 727 sc_shutdown_work); 728 struct o2net_node *nn = o2net_nn_from_num(sc->sc_node->nd_num); 729 730 sclog(sc, "shutting down\n"); 731 732 /* drop the callbacks ref and call shutdown only once */ 733 if (o2net_unregister_callbacks(sc->sc_sock->sk, sc)) { 734 /* we shouldn't flush as we're in the thread, the 735 * races with pending sc work structs are harmless */ 736 del_timer_sync(&sc->sc_idle_timeout); 737 o2net_sc_cancel_delayed_work(sc, &sc->sc_keepalive_work); 738 sc_put(sc); 739 kernel_sock_shutdown(sc->sc_sock, SHUT_RDWR); 740 } 741 742 /* not fatal so failed connects before the other guy has our 743 * heartbeat can be retried */ 744 o2net_ensure_shutdown(nn, sc, 0); 745 sc_put(sc); 746 } 747 748 /* ------------------------------------------------------------ */ 749 750 static int o2net_handler_cmp(struct o2net_msg_handler *nmh, u32 msg_type, 751 u32 key) 752 { 753 int ret = memcmp(&nmh->nh_key, &key, sizeof(key)); 754 755 if (ret == 0) 756 ret = memcmp(&nmh->nh_msg_type, &msg_type, sizeof(msg_type)); 757 758 return ret; 759 } 760 761 static struct o2net_msg_handler * 762 o2net_handler_tree_lookup(u32 msg_type, u32 key, struct rb_node ***ret_p, 763 struct rb_node **ret_parent) 764 { 765 struct rb_node **p = &o2net_handler_tree.rb_node; 766 struct rb_node *parent = NULL; 767 struct o2net_msg_handler *nmh, *ret = NULL; 768 int cmp; 769 770 while (*p) { 771 parent = *p; 772 nmh = rb_entry(parent, struct o2net_msg_handler, nh_node); 773 cmp = o2net_handler_cmp(nmh, msg_type, key); 774 775 if (cmp < 0) 776 p = &(*p)->rb_left; 777 else if (cmp > 0) 778 p = &(*p)->rb_right; 779 else { 780 ret = nmh; 781 break; 782 } 783 } 784 785 if (ret_p != NULL) 786 *ret_p = p; 787 if (ret_parent != NULL) 788 *ret_parent = parent; 789 790 return ret; 791 } 792 793 static void o2net_handler_kref_release(struct kref *kref) 794 { 795 struct o2net_msg_handler *nmh; 796 nmh = container_of(kref, struct o2net_msg_handler, nh_kref); 797 798 kfree(nmh); 799 } 800 801 static void o2net_handler_put(struct o2net_msg_handler *nmh) 802 { 803 kref_put(&nmh->nh_kref, o2net_handler_kref_release); 804 } 805 806 /* max_len is protection for the handler func. incoming messages won't 807 * be given to the handler if their payload is longer than the max. */ 808 int o2net_register_handler(u32 msg_type, u32 key, u32 max_len, 809 o2net_msg_handler_func *func, void *data, 810 o2net_post_msg_handler_func *post_func, 811 struct list_head *unreg_list) 812 { 813 struct o2net_msg_handler *nmh = NULL; 814 struct rb_node **p, *parent; 815 int ret = 0; 816 817 if (max_len > O2NET_MAX_PAYLOAD_BYTES) { 818 mlog(0, "max_len for message handler out of range: %u\n", 819 max_len); 820 ret = -EINVAL; 821 goto out; 822 } 823 824 if (!msg_type) { 825 mlog(0, "no message type provided: %u, %p\n", msg_type, func); 826 ret = -EINVAL; 827 goto out; 828 829 } 830 if (!func) { 831 mlog(0, "no message handler provided: %u, %p\n", 832 msg_type, func); 833 ret = -EINVAL; 834 goto out; 835 } 836 837 nmh = kzalloc(sizeof(struct o2net_msg_handler), GFP_NOFS); 838 if (nmh == NULL) { 839 ret = -ENOMEM; 840 goto out; 841 } 842 843 nmh->nh_func = func; 844 nmh->nh_func_data = data; 845 nmh->nh_post_func = post_func; 846 nmh->nh_msg_type = msg_type; 847 nmh->nh_max_len = max_len; 848 nmh->nh_key = key; 849 /* the tree and list get this ref.. they're both removed in 850 * unregister when this ref is dropped */ 851 kref_init(&nmh->nh_kref); 852 INIT_LIST_HEAD(&nmh->nh_unregister_item); 853 854 write_lock(&o2net_handler_lock); 855 if (o2net_handler_tree_lookup(msg_type, key, &p, &parent)) 856 ret = -EEXIST; 857 else { 858 rb_link_node(&nmh->nh_node, parent, p); 859 rb_insert_color(&nmh->nh_node, &o2net_handler_tree); 860 list_add_tail(&nmh->nh_unregister_item, unreg_list); 861 862 mlog(ML_TCP, "registered handler func %p type %u key %08x\n", 863 func, msg_type, key); 864 /* we've had some trouble with handlers seemingly vanishing. */ 865 mlog_bug_on_msg(o2net_handler_tree_lookup(msg_type, key, &p, 866 &parent) == NULL, 867 "couldn't find handler we *just* registered " 868 "for type %u key %08x\n", msg_type, key); 869 } 870 write_unlock(&o2net_handler_lock); 871 if (ret) 872 goto out; 873 874 out: 875 if (ret) 876 kfree(nmh); 877 878 return ret; 879 } 880 EXPORT_SYMBOL_GPL(o2net_register_handler); 881 882 void o2net_unregister_handler_list(struct list_head *list) 883 { 884 struct o2net_msg_handler *nmh, *n; 885 886 write_lock(&o2net_handler_lock); 887 list_for_each_entry_safe(nmh, n, list, nh_unregister_item) { 888 mlog(ML_TCP, "unregistering handler func %p type %u key %08x\n", 889 nmh->nh_func, nmh->nh_msg_type, nmh->nh_key); 890 rb_erase(&nmh->nh_node, &o2net_handler_tree); 891 list_del_init(&nmh->nh_unregister_item); 892 kref_put(&nmh->nh_kref, o2net_handler_kref_release); 893 } 894 write_unlock(&o2net_handler_lock); 895 } 896 EXPORT_SYMBOL_GPL(o2net_unregister_handler_list); 897 898 static struct o2net_msg_handler *o2net_handler_get(u32 msg_type, u32 key) 899 { 900 struct o2net_msg_handler *nmh; 901 902 read_lock(&o2net_handler_lock); 903 nmh = o2net_handler_tree_lookup(msg_type, key, NULL, NULL); 904 if (nmh) 905 kref_get(&nmh->nh_kref); 906 read_unlock(&o2net_handler_lock); 907 908 return nmh; 909 } 910 911 /* ------------------------------------------------------------ */ 912 913 static int o2net_recv_tcp_msg(struct socket *sock, void *data, size_t len) 914 { 915 int ret; 916 mm_segment_t oldfs; 917 struct kvec vec = { 918 .iov_len = len, 919 .iov_base = data, 920 }; 921 struct msghdr msg = { 922 .msg_iovlen = 1, 923 .msg_iov = (struct iovec *)&vec, 924 .msg_flags = MSG_DONTWAIT, 925 }; 926 927 oldfs = get_fs(); 928 set_fs(get_ds()); 929 ret = sock_recvmsg(sock, &msg, len, msg.msg_flags); 930 set_fs(oldfs); 931 932 return ret; 933 } 934 935 static int o2net_send_tcp_msg(struct socket *sock, struct kvec *vec, 936 size_t veclen, size_t total) 937 { 938 int ret; 939 mm_segment_t oldfs; 940 struct msghdr msg = { 941 .msg_iov = (struct iovec *)vec, 942 .msg_iovlen = veclen, 943 }; 944 945 if (sock == NULL) { 946 ret = -EINVAL; 947 goto out; 948 } 949 950 oldfs = get_fs(); 951 set_fs(get_ds()); 952 ret = sock_sendmsg(sock, &msg, total); 953 set_fs(oldfs); 954 if (ret != total) { 955 mlog(ML_ERROR, "sendmsg returned %d instead of %zu\n", ret, 956 total); 957 if (ret >= 0) 958 ret = -EPIPE; /* should be smarter, I bet */ 959 goto out; 960 } 961 962 ret = 0; 963 out: 964 if (ret < 0) 965 mlog(0, "returning error: %d\n", ret); 966 return ret; 967 } 968 969 static void o2net_sendpage(struct o2net_sock_container *sc, 970 void *kmalloced_virt, 971 size_t size) 972 { 973 struct o2net_node *nn = o2net_nn_from_num(sc->sc_node->nd_num); 974 ssize_t ret; 975 976 while (1) { 977 mutex_lock(&sc->sc_send_lock); 978 ret = sc->sc_sock->ops->sendpage(sc->sc_sock, 979 virt_to_page(kmalloced_virt), 980 (long)kmalloced_virt & ~PAGE_MASK, 981 size, MSG_DONTWAIT); 982 mutex_unlock(&sc->sc_send_lock); 983 if (ret == size) 984 break; 985 if (ret == (ssize_t)-EAGAIN) { 986 mlog(0, "sendpage of size %zu to " SC_NODEF_FMT 987 " returned EAGAIN\n", size, SC_NODEF_ARGS(sc)); 988 cond_resched(); 989 continue; 990 } 991 mlog(ML_ERROR, "sendpage of size %zu to " SC_NODEF_FMT 992 " failed with %zd\n", size, SC_NODEF_ARGS(sc), ret); 993 o2net_ensure_shutdown(nn, sc, 0); 994 break; 995 } 996 } 997 998 static void o2net_init_msg(struct o2net_msg *msg, u16 data_len, u16 msg_type, u32 key) 999 { 1000 memset(msg, 0, sizeof(struct o2net_msg)); 1001 msg->magic = cpu_to_be16(O2NET_MSG_MAGIC); 1002 msg->data_len = cpu_to_be16(data_len); 1003 msg->msg_type = cpu_to_be16(msg_type); 1004 msg->sys_status = cpu_to_be32(O2NET_ERR_NONE); 1005 msg->status = 0; 1006 msg->key = cpu_to_be32(key); 1007 } 1008 1009 static int o2net_tx_can_proceed(struct o2net_node *nn, 1010 struct o2net_sock_container **sc_ret, 1011 int *error) 1012 { 1013 int ret = 0; 1014 1015 spin_lock(&nn->nn_lock); 1016 if (nn->nn_persistent_error) { 1017 ret = 1; 1018 *sc_ret = NULL; 1019 *error = nn->nn_persistent_error; 1020 } else if (nn->nn_sc_valid) { 1021 kref_get(&nn->nn_sc->sc_kref); 1022 1023 ret = 1; 1024 *sc_ret = nn->nn_sc; 1025 *error = 0; 1026 } 1027 spin_unlock(&nn->nn_lock); 1028 1029 return ret; 1030 } 1031 1032 /* Get a map of all nodes to which this node is currently connected to */ 1033 void o2net_fill_node_map(unsigned long *map, unsigned bytes) 1034 { 1035 struct o2net_sock_container *sc; 1036 int node, ret; 1037 1038 BUG_ON(bytes < (BITS_TO_LONGS(O2NM_MAX_NODES) * sizeof(unsigned long))); 1039 1040 memset(map, 0, bytes); 1041 for (node = 0; node < O2NM_MAX_NODES; ++node) { 1042 o2net_tx_can_proceed(o2net_nn_from_num(node), &sc, &ret); 1043 if (!ret) { 1044 set_bit(node, map); 1045 sc_put(sc); 1046 } 1047 } 1048 } 1049 EXPORT_SYMBOL_GPL(o2net_fill_node_map); 1050 1051 int o2net_send_message_vec(u32 msg_type, u32 key, struct kvec *caller_vec, 1052 size_t caller_veclen, u8 target_node, int *status) 1053 { 1054 int ret = 0; 1055 struct o2net_msg *msg = NULL; 1056 size_t veclen, caller_bytes = 0; 1057 struct kvec *vec = NULL; 1058 struct o2net_sock_container *sc = NULL; 1059 struct o2net_node *nn = o2net_nn_from_num(target_node); 1060 struct o2net_status_wait nsw = { 1061 .ns_node_item = LIST_HEAD_INIT(nsw.ns_node_item), 1062 }; 1063 struct o2net_send_tracking nst; 1064 1065 o2net_init_nst(&nst, msg_type, key, current, target_node); 1066 1067 if (o2net_wq == NULL) { 1068 mlog(0, "attempt to tx without o2netd running\n"); 1069 ret = -ESRCH; 1070 goto out; 1071 } 1072 1073 if (caller_veclen == 0) { 1074 mlog(0, "bad kvec array length\n"); 1075 ret = -EINVAL; 1076 goto out; 1077 } 1078 1079 caller_bytes = iov_length((struct iovec *)caller_vec, caller_veclen); 1080 if (caller_bytes > O2NET_MAX_PAYLOAD_BYTES) { 1081 mlog(0, "total payload len %zu too large\n", caller_bytes); 1082 ret = -EINVAL; 1083 goto out; 1084 } 1085 1086 if (target_node == o2nm_this_node()) { 1087 ret = -ELOOP; 1088 goto out; 1089 } 1090 1091 o2net_debug_add_nst(&nst); 1092 1093 o2net_set_nst_sock_time(&nst); 1094 1095 wait_event(nn->nn_sc_wq, o2net_tx_can_proceed(nn, &sc, &ret)); 1096 if (ret) 1097 goto out; 1098 1099 o2net_set_nst_sock_container(&nst, sc); 1100 1101 veclen = caller_veclen + 1; 1102 vec = kmalloc(sizeof(struct kvec) * veclen, GFP_ATOMIC); 1103 if (vec == NULL) { 1104 mlog(0, "failed to %zu element kvec!\n", veclen); 1105 ret = -ENOMEM; 1106 goto out; 1107 } 1108 1109 msg = kmalloc(sizeof(struct o2net_msg), GFP_ATOMIC); 1110 if (!msg) { 1111 mlog(0, "failed to allocate a o2net_msg!\n"); 1112 ret = -ENOMEM; 1113 goto out; 1114 } 1115 1116 o2net_init_msg(msg, caller_bytes, msg_type, key); 1117 1118 vec[0].iov_len = sizeof(struct o2net_msg); 1119 vec[0].iov_base = msg; 1120 memcpy(&vec[1], caller_vec, caller_veclen * sizeof(struct kvec)); 1121 1122 ret = o2net_prep_nsw(nn, &nsw); 1123 if (ret) 1124 goto out; 1125 1126 msg->msg_num = cpu_to_be32(nsw.ns_id); 1127 o2net_set_nst_msg_id(&nst, nsw.ns_id); 1128 1129 o2net_set_nst_send_time(&nst); 1130 1131 /* finally, convert the message header to network byte-order 1132 * and send */ 1133 mutex_lock(&sc->sc_send_lock); 1134 ret = o2net_send_tcp_msg(sc->sc_sock, vec, veclen, 1135 sizeof(struct o2net_msg) + caller_bytes); 1136 mutex_unlock(&sc->sc_send_lock); 1137 msglog(msg, "sending returned %d\n", ret); 1138 if (ret < 0) { 1139 mlog(0, "error returned from o2net_send_tcp_msg=%d\n", ret); 1140 goto out; 1141 } 1142 1143 /* wait on other node's handler */ 1144 o2net_set_nst_status_time(&nst); 1145 wait_event(nsw.ns_wq, o2net_nsw_completed(nn, &nsw)); 1146 1147 o2net_update_send_stats(&nst, sc); 1148 1149 /* Note that we avoid overwriting the callers status return 1150 * variable if a system error was reported on the other 1151 * side. Callers beware. */ 1152 ret = o2net_sys_err_to_errno(nsw.ns_sys_status); 1153 if (status && !ret) 1154 *status = nsw.ns_status; 1155 1156 mlog(0, "woken, returning system status %d, user status %d\n", 1157 ret, nsw.ns_status); 1158 out: 1159 o2net_debug_del_nst(&nst); /* must be before dropping sc and node */ 1160 if (sc) 1161 sc_put(sc); 1162 kfree(vec); 1163 kfree(msg); 1164 o2net_complete_nsw(nn, &nsw, 0, 0, 0); 1165 return ret; 1166 } 1167 EXPORT_SYMBOL_GPL(o2net_send_message_vec); 1168 1169 int o2net_send_message(u32 msg_type, u32 key, void *data, u32 len, 1170 u8 target_node, int *status) 1171 { 1172 struct kvec vec = { 1173 .iov_base = data, 1174 .iov_len = len, 1175 }; 1176 return o2net_send_message_vec(msg_type, key, &vec, 1, 1177 target_node, status); 1178 } 1179 EXPORT_SYMBOL_GPL(o2net_send_message); 1180 1181 static int o2net_send_status_magic(struct socket *sock, struct o2net_msg *hdr, 1182 enum o2net_system_error syserr, int err) 1183 { 1184 struct kvec vec = { 1185 .iov_base = hdr, 1186 .iov_len = sizeof(struct o2net_msg), 1187 }; 1188 1189 BUG_ON(syserr >= O2NET_ERR_MAX); 1190 1191 /* leave other fields intact from the incoming message, msg_num 1192 * in particular */ 1193 hdr->sys_status = cpu_to_be32(syserr); 1194 hdr->status = cpu_to_be32(err); 1195 hdr->magic = cpu_to_be16(O2NET_MSG_STATUS_MAGIC); // twiddle the magic 1196 hdr->data_len = 0; 1197 1198 msglog(hdr, "about to send status magic %d\n", err); 1199 /* hdr has been in host byteorder this whole time */ 1200 return o2net_send_tcp_msg(sock, &vec, 1, sizeof(struct o2net_msg)); 1201 } 1202 1203 /* this returns -errno if the header was unknown or too large, etc. 1204 * after this is called the buffer us reused for the next message */ 1205 static int o2net_process_message(struct o2net_sock_container *sc, 1206 struct o2net_msg *hdr) 1207 { 1208 struct o2net_node *nn = o2net_nn_from_num(sc->sc_node->nd_num); 1209 int ret = 0, handler_status; 1210 enum o2net_system_error syserr; 1211 struct o2net_msg_handler *nmh = NULL; 1212 void *ret_data = NULL; 1213 1214 msglog(hdr, "processing message\n"); 1215 1216 o2net_sc_postpone_idle(sc); 1217 1218 switch(be16_to_cpu(hdr->magic)) { 1219 case O2NET_MSG_STATUS_MAGIC: 1220 /* special type for returning message status */ 1221 o2net_complete_nsw(nn, NULL, 1222 be32_to_cpu(hdr->msg_num), 1223 be32_to_cpu(hdr->sys_status), 1224 be32_to_cpu(hdr->status)); 1225 goto out; 1226 case O2NET_MSG_KEEP_REQ_MAGIC: 1227 o2net_sendpage(sc, o2net_keep_resp, 1228 sizeof(*o2net_keep_resp)); 1229 goto out; 1230 case O2NET_MSG_KEEP_RESP_MAGIC: 1231 goto out; 1232 case O2NET_MSG_MAGIC: 1233 break; 1234 default: 1235 msglog(hdr, "bad magic\n"); 1236 ret = -EINVAL; 1237 goto out; 1238 break; 1239 } 1240 1241 /* find a handler for it */ 1242 handler_status = 0; 1243 nmh = o2net_handler_get(be16_to_cpu(hdr->msg_type), 1244 be32_to_cpu(hdr->key)); 1245 if (!nmh) { 1246 mlog(ML_TCP, "couldn't find handler for type %u key %08x\n", 1247 be16_to_cpu(hdr->msg_type), be32_to_cpu(hdr->key)); 1248 syserr = O2NET_ERR_NO_HNDLR; 1249 goto out_respond; 1250 } 1251 1252 syserr = O2NET_ERR_NONE; 1253 1254 if (be16_to_cpu(hdr->data_len) > nmh->nh_max_len) 1255 syserr = O2NET_ERR_OVERFLOW; 1256 1257 if (syserr != O2NET_ERR_NONE) 1258 goto out_respond; 1259 1260 o2net_set_func_start_time(sc); 1261 sc->sc_msg_key = be32_to_cpu(hdr->key); 1262 sc->sc_msg_type = be16_to_cpu(hdr->msg_type); 1263 handler_status = (nmh->nh_func)(hdr, sizeof(struct o2net_msg) + 1264 be16_to_cpu(hdr->data_len), 1265 nmh->nh_func_data, &ret_data); 1266 o2net_set_func_stop_time(sc); 1267 1268 o2net_update_recv_stats(sc); 1269 1270 out_respond: 1271 /* this destroys the hdr, so don't use it after this */ 1272 mutex_lock(&sc->sc_send_lock); 1273 ret = o2net_send_status_magic(sc->sc_sock, hdr, syserr, 1274 handler_status); 1275 mutex_unlock(&sc->sc_send_lock); 1276 hdr = NULL; 1277 mlog(0, "sending handler status %d, syserr %d returned %d\n", 1278 handler_status, syserr, ret); 1279 1280 if (nmh) { 1281 BUG_ON(ret_data != NULL && nmh->nh_post_func == NULL); 1282 if (nmh->nh_post_func) 1283 (nmh->nh_post_func)(handler_status, nmh->nh_func_data, 1284 ret_data); 1285 } 1286 1287 out: 1288 if (nmh) 1289 o2net_handler_put(nmh); 1290 return ret; 1291 } 1292 1293 static int o2net_check_handshake(struct o2net_sock_container *sc) 1294 { 1295 struct o2net_handshake *hand = page_address(sc->sc_page); 1296 struct o2net_node *nn = o2net_nn_from_num(sc->sc_node->nd_num); 1297 1298 if (hand->protocol_version != cpu_to_be64(O2NET_PROTOCOL_VERSION)) { 1299 printk(KERN_NOTICE "o2net: " SC_NODEF_FMT " Advertised net " 1300 "protocol version %llu but %llu is required. " 1301 "Disconnecting.\n", SC_NODEF_ARGS(sc), 1302 (unsigned long long)be64_to_cpu(hand->protocol_version), 1303 O2NET_PROTOCOL_VERSION); 1304 1305 /* don't bother reconnecting if its the wrong version. */ 1306 o2net_ensure_shutdown(nn, sc, -ENOTCONN); 1307 return -1; 1308 } 1309 1310 /* 1311 * Ensure timeouts are consistent with other nodes, otherwise 1312 * we can end up with one node thinking that the other must be down, 1313 * but isn't. This can ultimately cause corruption. 1314 */ 1315 if (be32_to_cpu(hand->o2net_idle_timeout_ms) != 1316 o2net_idle_timeout()) { 1317 printk(KERN_NOTICE "o2net: " SC_NODEF_FMT " uses a network " 1318 "idle timeout of %u ms, but we use %u ms locally. " 1319 "Disconnecting.\n", SC_NODEF_ARGS(sc), 1320 be32_to_cpu(hand->o2net_idle_timeout_ms), 1321 o2net_idle_timeout()); 1322 o2net_ensure_shutdown(nn, sc, -ENOTCONN); 1323 return -1; 1324 } 1325 1326 if (be32_to_cpu(hand->o2net_keepalive_delay_ms) != 1327 o2net_keepalive_delay()) { 1328 printk(KERN_NOTICE "o2net: " SC_NODEF_FMT " uses a keepalive " 1329 "delay of %u ms, but we use %u ms locally. " 1330 "Disconnecting.\n", SC_NODEF_ARGS(sc), 1331 be32_to_cpu(hand->o2net_keepalive_delay_ms), 1332 o2net_keepalive_delay()); 1333 o2net_ensure_shutdown(nn, sc, -ENOTCONN); 1334 return -1; 1335 } 1336 1337 if (be32_to_cpu(hand->o2hb_heartbeat_timeout_ms) != 1338 O2HB_MAX_WRITE_TIMEOUT_MS) { 1339 printk(KERN_NOTICE "o2net: " SC_NODEF_FMT " uses a heartbeat " 1340 "timeout of %u ms, but we use %u ms locally. " 1341 "Disconnecting.\n", SC_NODEF_ARGS(sc), 1342 be32_to_cpu(hand->o2hb_heartbeat_timeout_ms), 1343 O2HB_MAX_WRITE_TIMEOUT_MS); 1344 o2net_ensure_shutdown(nn, sc, -ENOTCONN); 1345 return -1; 1346 } 1347 1348 sc->sc_handshake_ok = 1; 1349 1350 spin_lock(&nn->nn_lock); 1351 /* set valid and queue the idle timers only if it hasn't been 1352 * shut down already */ 1353 if (nn->nn_sc == sc) { 1354 o2net_sc_reset_idle_timer(sc); 1355 atomic_set(&nn->nn_timeout, 0); 1356 o2net_set_nn_state(nn, sc, 1, 0); 1357 } 1358 spin_unlock(&nn->nn_lock); 1359 1360 /* shift everything up as though it wasn't there */ 1361 sc->sc_page_off -= sizeof(struct o2net_handshake); 1362 if (sc->sc_page_off) 1363 memmove(hand, hand + 1, sc->sc_page_off); 1364 1365 return 0; 1366 } 1367 1368 /* this demuxes the queued rx bytes into header or payload bits and calls 1369 * handlers as each full message is read off the socket. it returns -error, 1370 * == 0 eof, or > 0 for progress made.*/ 1371 static int o2net_advance_rx(struct o2net_sock_container *sc) 1372 { 1373 struct o2net_msg *hdr; 1374 int ret = 0; 1375 void *data; 1376 size_t datalen; 1377 1378 sclog(sc, "receiving\n"); 1379 o2net_set_advance_start_time(sc); 1380 1381 if (unlikely(sc->sc_handshake_ok == 0)) { 1382 if(sc->sc_page_off < sizeof(struct o2net_handshake)) { 1383 data = page_address(sc->sc_page) + sc->sc_page_off; 1384 datalen = sizeof(struct o2net_handshake) - sc->sc_page_off; 1385 ret = o2net_recv_tcp_msg(sc->sc_sock, data, datalen); 1386 if (ret > 0) 1387 sc->sc_page_off += ret; 1388 } 1389 1390 if (sc->sc_page_off == sizeof(struct o2net_handshake)) { 1391 o2net_check_handshake(sc); 1392 if (unlikely(sc->sc_handshake_ok == 0)) 1393 ret = -EPROTO; 1394 } 1395 goto out; 1396 } 1397 1398 /* do we need more header? */ 1399 if (sc->sc_page_off < sizeof(struct o2net_msg)) { 1400 data = page_address(sc->sc_page) + sc->sc_page_off; 1401 datalen = sizeof(struct o2net_msg) - sc->sc_page_off; 1402 ret = o2net_recv_tcp_msg(sc->sc_sock, data, datalen); 1403 if (ret > 0) { 1404 sc->sc_page_off += ret; 1405 /* only swab incoming here.. we can 1406 * only get here once as we cross from 1407 * being under to over */ 1408 if (sc->sc_page_off == sizeof(struct o2net_msg)) { 1409 hdr = page_address(sc->sc_page); 1410 if (be16_to_cpu(hdr->data_len) > 1411 O2NET_MAX_PAYLOAD_BYTES) 1412 ret = -EOVERFLOW; 1413 } 1414 } 1415 if (ret <= 0) 1416 goto out; 1417 } 1418 1419 if (sc->sc_page_off < sizeof(struct o2net_msg)) { 1420 /* oof, still don't have a header */ 1421 goto out; 1422 } 1423 1424 /* this was swabbed above when we first read it */ 1425 hdr = page_address(sc->sc_page); 1426 1427 msglog(hdr, "at page_off %zu\n", sc->sc_page_off); 1428 1429 /* do we need more payload? */ 1430 if (sc->sc_page_off - sizeof(struct o2net_msg) < be16_to_cpu(hdr->data_len)) { 1431 /* need more payload */ 1432 data = page_address(sc->sc_page) + sc->sc_page_off; 1433 datalen = (sizeof(struct o2net_msg) + be16_to_cpu(hdr->data_len)) - 1434 sc->sc_page_off; 1435 ret = o2net_recv_tcp_msg(sc->sc_sock, data, datalen); 1436 if (ret > 0) 1437 sc->sc_page_off += ret; 1438 if (ret <= 0) 1439 goto out; 1440 } 1441 1442 if (sc->sc_page_off - sizeof(struct o2net_msg) == be16_to_cpu(hdr->data_len)) { 1443 /* we can only get here once, the first time we read 1444 * the payload.. so set ret to progress if the handler 1445 * works out. after calling this the message is toast */ 1446 ret = o2net_process_message(sc, hdr); 1447 if (ret == 0) 1448 ret = 1; 1449 sc->sc_page_off = 0; 1450 } 1451 1452 out: 1453 sclog(sc, "ret = %d\n", ret); 1454 o2net_set_advance_stop_time(sc); 1455 return ret; 1456 } 1457 1458 /* this work func is triggerd by data ready. it reads until it can read no 1459 * more. it interprets 0, eof, as fatal. if data_ready hits while we're doing 1460 * our work the work struct will be marked and we'll be called again. */ 1461 static void o2net_rx_until_empty(struct work_struct *work) 1462 { 1463 struct o2net_sock_container *sc = 1464 container_of(work, struct o2net_sock_container, sc_rx_work); 1465 int ret; 1466 1467 do { 1468 ret = o2net_advance_rx(sc); 1469 } while (ret > 0); 1470 1471 if (ret <= 0 && ret != -EAGAIN) { 1472 struct o2net_node *nn = o2net_nn_from_num(sc->sc_node->nd_num); 1473 sclog(sc, "saw error %d, closing\n", ret); 1474 /* not permanent so read failed handshake can retry */ 1475 o2net_ensure_shutdown(nn, sc, 0); 1476 } 1477 1478 sc_put(sc); 1479 } 1480 1481 static int o2net_set_nodelay(struct socket *sock) 1482 { 1483 int ret, val = 1; 1484 mm_segment_t oldfs; 1485 1486 oldfs = get_fs(); 1487 set_fs(KERNEL_DS); 1488 1489 /* 1490 * Dear unsuspecting programmer, 1491 * 1492 * Don't use sock_setsockopt() for SOL_TCP. It doesn't check its level 1493 * argument and assumes SOL_SOCKET so, say, your TCP_NODELAY will 1494 * silently turn into SO_DEBUG. 1495 * 1496 * Yours, 1497 * Keeper of hilariously fragile interfaces. 1498 */ 1499 ret = sock->ops->setsockopt(sock, SOL_TCP, TCP_NODELAY, 1500 (char __user *)&val, sizeof(val)); 1501 1502 set_fs(oldfs); 1503 return ret; 1504 } 1505 1506 static void o2net_initialize_handshake(void) 1507 { 1508 o2net_hand->o2hb_heartbeat_timeout_ms = cpu_to_be32( 1509 O2HB_MAX_WRITE_TIMEOUT_MS); 1510 o2net_hand->o2net_idle_timeout_ms = cpu_to_be32(o2net_idle_timeout()); 1511 o2net_hand->o2net_keepalive_delay_ms = cpu_to_be32( 1512 o2net_keepalive_delay()); 1513 o2net_hand->o2net_reconnect_delay_ms = cpu_to_be32( 1514 o2net_reconnect_delay()); 1515 } 1516 1517 /* ------------------------------------------------------------ */ 1518 1519 /* called when a connect completes and after a sock is accepted. the 1520 * rx path will see the response and mark the sc valid */ 1521 static void o2net_sc_connect_completed(struct work_struct *work) 1522 { 1523 struct o2net_sock_container *sc = 1524 container_of(work, struct o2net_sock_container, 1525 sc_connect_work); 1526 1527 mlog(ML_MSG, "sc sending handshake with ver %llu id %llx\n", 1528 (unsigned long long)O2NET_PROTOCOL_VERSION, 1529 (unsigned long long)be64_to_cpu(o2net_hand->connector_id)); 1530 1531 o2net_initialize_handshake(); 1532 o2net_sendpage(sc, o2net_hand, sizeof(*o2net_hand)); 1533 sc_put(sc); 1534 } 1535 1536 /* this is called as a work_struct func. */ 1537 static void o2net_sc_send_keep_req(struct work_struct *work) 1538 { 1539 struct o2net_sock_container *sc = 1540 container_of(work, struct o2net_sock_container, 1541 sc_keepalive_work.work); 1542 1543 o2net_sendpage(sc, o2net_keep_req, sizeof(*o2net_keep_req)); 1544 sc_put(sc); 1545 } 1546 1547 /* socket shutdown does a del_timer_sync against this as it tears down. 1548 * we can't start this timer until we've got to the point in sc buildup 1549 * where shutdown is going to be involved */ 1550 static void o2net_idle_timer(unsigned long data) 1551 { 1552 struct o2net_sock_container *sc = (struct o2net_sock_container *)data; 1553 struct o2net_node *nn = o2net_nn_from_num(sc->sc_node->nd_num); 1554 #ifdef CONFIG_DEBUG_FS 1555 unsigned long msecs = ktime_to_ms(ktime_get()) - 1556 ktime_to_ms(sc->sc_tv_timer); 1557 #else 1558 unsigned long msecs = o2net_idle_timeout(); 1559 #endif 1560 1561 printk(KERN_NOTICE "o2net: Connection to " SC_NODEF_FMT " has been " 1562 "idle for %lu.%lu secs, shutting it down.\n", SC_NODEF_ARGS(sc), 1563 msecs / 1000, msecs % 1000); 1564 1565 /* 1566 * Initialize the nn_timeout so that the next connection attempt 1567 * will continue in o2net_start_connect. 1568 */ 1569 atomic_set(&nn->nn_timeout, 1); 1570 1571 o2net_sc_queue_work(sc, &sc->sc_shutdown_work); 1572 } 1573 1574 static void o2net_sc_reset_idle_timer(struct o2net_sock_container *sc) 1575 { 1576 o2net_sc_cancel_delayed_work(sc, &sc->sc_keepalive_work); 1577 o2net_sc_queue_delayed_work(sc, &sc->sc_keepalive_work, 1578 msecs_to_jiffies(o2net_keepalive_delay())); 1579 o2net_set_sock_timer(sc); 1580 mod_timer(&sc->sc_idle_timeout, 1581 jiffies + msecs_to_jiffies(o2net_idle_timeout())); 1582 } 1583 1584 static void o2net_sc_postpone_idle(struct o2net_sock_container *sc) 1585 { 1586 /* Only push out an existing timer */ 1587 if (timer_pending(&sc->sc_idle_timeout)) 1588 o2net_sc_reset_idle_timer(sc); 1589 } 1590 1591 /* this work func is kicked whenever a path sets the nn state which doesn't 1592 * have valid set. This includes seeing hb come up, losing a connection, 1593 * having a connect attempt fail, etc. This centralizes the logic which decides 1594 * if a connect attempt should be made or if we should give up and all future 1595 * transmit attempts should fail */ 1596 static void o2net_start_connect(struct work_struct *work) 1597 { 1598 struct o2net_node *nn = 1599 container_of(work, struct o2net_node, nn_connect_work.work); 1600 struct o2net_sock_container *sc = NULL; 1601 struct o2nm_node *node = NULL, *mynode = NULL; 1602 struct socket *sock = NULL; 1603 struct sockaddr_in myaddr = {0, }, remoteaddr = {0, }; 1604 int ret = 0, stop; 1605 unsigned int timeout; 1606 1607 /* if we're greater we initiate tx, otherwise we accept */ 1608 if (o2nm_this_node() <= o2net_num_from_nn(nn)) 1609 goto out; 1610 1611 /* watch for racing with tearing a node down */ 1612 node = o2nm_get_node_by_num(o2net_num_from_nn(nn)); 1613 if (node == NULL) { 1614 ret = 0; 1615 goto out; 1616 } 1617 1618 mynode = o2nm_get_node_by_num(o2nm_this_node()); 1619 if (mynode == NULL) { 1620 ret = 0; 1621 goto out; 1622 } 1623 1624 spin_lock(&nn->nn_lock); 1625 /* 1626 * see if we already have one pending or have given up. 1627 * For nn_timeout, it is set when we close the connection 1628 * because of the idle time out. So it means that we have 1629 * at least connected to that node successfully once, 1630 * now try to connect to it again. 1631 */ 1632 timeout = atomic_read(&nn->nn_timeout); 1633 stop = (nn->nn_sc || 1634 (nn->nn_persistent_error && 1635 (nn->nn_persistent_error != -ENOTCONN || timeout == 0))); 1636 spin_unlock(&nn->nn_lock); 1637 if (stop) 1638 goto out; 1639 1640 nn->nn_last_connect_attempt = jiffies; 1641 1642 sc = sc_alloc(node); 1643 if (sc == NULL) { 1644 mlog(0, "couldn't allocate sc\n"); 1645 ret = -ENOMEM; 1646 goto out; 1647 } 1648 1649 ret = sock_create(PF_INET, SOCK_STREAM, IPPROTO_TCP, &sock); 1650 if (ret < 0) { 1651 mlog(0, "can't create socket: %d\n", ret); 1652 goto out; 1653 } 1654 sc->sc_sock = sock; /* freed by sc_kref_release */ 1655 1656 sock->sk->sk_allocation = GFP_ATOMIC; 1657 1658 myaddr.sin_family = AF_INET; 1659 myaddr.sin_addr.s_addr = mynode->nd_ipv4_address; 1660 myaddr.sin_port = htons(0); /* any port */ 1661 1662 ret = sock->ops->bind(sock, (struct sockaddr *)&myaddr, 1663 sizeof(myaddr)); 1664 if (ret) { 1665 mlog(ML_ERROR, "bind failed with %d at address %pI4\n", 1666 ret, &mynode->nd_ipv4_address); 1667 goto out; 1668 } 1669 1670 ret = o2net_set_nodelay(sc->sc_sock); 1671 if (ret) { 1672 mlog(ML_ERROR, "setting TCP_NODELAY failed with %d\n", ret); 1673 goto out; 1674 } 1675 1676 o2net_register_callbacks(sc->sc_sock->sk, sc); 1677 1678 spin_lock(&nn->nn_lock); 1679 /* handshake completion will set nn->nn_sc_valid */ 1680 o2net_set_nn_state(nn, sc, 0, 0); 1681 spin_unlock(&nn->nn_lock); 1682 1683 remoteaddr.sin_family = AF_INET; 1684 remoteaddr.sin_addr.s_addr = node->nd_ipv4_address; 1685 remoteaddr.sin_port = node->nd_ipv4_port; 1686 1687 ret = sc->sc_sock->ops->connect(sc->sc_sock, 1688 (struct sockaddr *)&remoteaddr, 1689 sizeof(remoteaddr), 1690 O_NONBLOCK); 1691 if (ret == -EINPROGRESS) 1692 ret = 0; 1693 1694 out: 1695 if (ret) { 1696 printk(KERN_NOTICE "o2net: Connect attempt to " SC_NODEF_FMT 1697 " failed with errno %d\n", SC_NODEF_ARGS(sc), ret); 1698 /* 0 err so that another will be queued and attempted 1699 * from set_nn_state */ 1700 if (sc) 1701 o2net_ensure_shutdown(nn, sc, 0); 1702 } 1703 if (sc) 1704 sc_put(sc); 1705 if (node) 1706 o2nm_node_put(node); 1707 if (mynode) 1708 o2nm_node_put(mynode); 1709 1710 return; 1711 } 1712 1713 static void o2net_connect_expired(struct work_struct *work) 1714 { 1715 struct o2net_node *nn = 1716 container_of(work, struct o2net_node, nn_connect_expired.work); 1717 1718 spin_lock(&nn->nn_lock); 1719 if (!nn->nn_sc_valid) { 1720 printk(KERN_NOTICE "o2net: No connection established with " 1721 "node %u after %u.%u seconds, giving up.\n", 1722 o2net_num_from_nn(nn), 1723 o2net_idle_timeout() / 1000, 1724 o2net_idle_timeout() % 1000); 1725 1726 o2net_set_nn_state(nn, NULL, 0, -ENOTCONN); 1727 } 1728 spin_unlock(&nn->nn_lock); 1729 } 1730 1731 static void o2net_still_up(struct work_struct *work) 1732 { 1733 struct o2net_node *nn = 1734 container_of(work, struct o2net_node, nn_still_up.work); 1735 1736 o2quo_hb_still_up(o2net_num_from_nn(nn)); 1737 } 1738 1739 /* ------------------------------------------------------------ */ 1740 1741 void o2net_disconnect_node(struct o2nm_node *node) 1742 { 1743 struct o2net_node *nn = o2net_nn_from_num(node->nd_num); 1744 1745 /* don't reconnect until it's heartbeating again */ 1746 spin_lock(&nn->nn_lock); 1747 atomic_set(&nn->nn_timeout, 0); 1748 o2net_set_nn_state(nn, NULL, 0, -ENOTCONN); 1749 spin_unlock(&nn->nn_lock); 1750 1751 if (o2net_wq) { 1752 cancel_delayed_work(&nn->nn_connect_expired); 1753 cancel_delayed_work(&nn->nn_connect_work); 1754 cancel_delayed_work(&nn->nn_still_up); 1755 flush_workqueue(o2net_wq); 1756 } 1757 } 1758 1759 static void o2net_hb_node_down_cb(struct o2nm_node *node, int node_num, 1760 void *data) 1761 { 1762 o2quo_hb_down(node_num); 1763 1764 if (!node) 1765 return; 1766 1767 if (node_num != o2nm_this_node()) 1768 o2net_disconnect_node(node); 1769 1770 BUG_ON(atomic_read(&o2net_connected_peers) < 0); 1771 } 1772 1773 static void o2net_hb_node_up_cb(struct o2nm_node *node, int node_num, 1774 void *data) 1775 { 1776 struct o2net_node *nn = o2net_nn_from_num(node_num); 1777 1778 o2quo_hb_up(node_num); 1779 1780 BUG_ON(!node); 1781 1782 /* ensure an immediate connect attempt */ 1783 nn->nn_last_connect_attempt = jiffies - 1784 (msecs_to_jiffies(o2net_reconnect_delay()) + 1); 1785 1786 if (node_num != o2nm_this_node()) { 1787 /* believe it or not, accept and node hearbeating testing 1788 * can succeed for this node before we got here.. so 1789 * only use set_nn_state to clear the persistent error 1790 * if that hasn't already happened */ 1791 spin_lock(&nn->nn_lock); 1792 atomic_set(&nn->nn_timeout, 0); 1793 if (nn->nn_persistent_error) 1794 o2net_set_nn_state(nn, NULL, 0, 0); 1795 spin_unlock(&nn->nn_lock); 1796 } 1797 } 1798 1799 void o2net_unregister_hb_callbacks(void) 1800 { 1801 o2hb_unregister_callback(NULL, &o2net_hb_up); 1802 o2hb_unregister_callback(NULL, &o2net_hb_down); 1803 } 1804 1805 int o2net_register_hb_callbacks(void) 1806 { 1807 int ret; 1808 1809 o2hb_setup_callback(&o2net_hb_down, O2HB_NODE_DOWN_CB, 1810 o2net_hb_node_down_cb, NULL, O2NET_HB_PRI); 1811 o2hb_setup_callback(&o2net_hb_up, O2HB_NODE_UP_CB, 1812 o2net_hb_node_up_cb, NULL, O2NET_HB_PRI); 1813 1814 ret = o2hb_register_callback(NULL, &o2net_hb_up); 1815 if (ret == 0) 1816 ret = o2hb_register_callback(NULL, &o2net_hb_down); 1817 1818 if (ret) 1819 o2net_unregister_hb_callbacks(); 1820 1821 return ret; 1822 } 1823 1824 /* ------------------------------------------------------------ */ 1825 1826 static int o2net_accept_one(struct socket *sock) 1827 { 1828 int ret, slen; 1829 struct sockaddr_in sin; 1830 struct socket *new_sock = NULL; 1831 struct o2nm_node *node = NULL; 1832 struct o2nm_node *local_node = NULL; 1833 struct o2net_sock_container *sc = NULL; 1834 struct o2net_node *nn; 1835 1836 BUG_ON(sock == NULL); 1837 ret = sock_create_lite(sock->sk->sk_family, sock->sk->sk_type, 1838 sock->sk->sk_protocol, &new_sock); 1839 if (ret) 1840 goto out; 1841 1842 new_sock->type = sock->type; 1843 new_sock->ops = sock->ops; 1844 ret = sock->ops->accept(sock, new_sock, O_NONBLOCK); 1845 if (ret < 0) 1846 goto out; 1847 1848 new_sock->sk->sk_allocation = GFP_ATOMIC; 1849 1850 ret = o2net_set_nodelay(new_sock); 1851 if (ret) { 1852 mlog(ML_ERROR, "setting TCP_NODELAY failed with %d\n", ret); 1853 goto out; 1854 } 1855 1856 slen = sizeof(sin); 1857 ret = new_sock->ops->getname(new_sock, (struct sockaddr *) &sin, 1858 &slen, 1); 1859 if (ret < 0) 1860 goto out; 1861 1862 node = o2nm_get_node_by_ip(sin.sin_addr.s_addr); 1863 if (node == NULL) { 1864 printk(KERN_NOTICE "o2net: Attempt to connect from unknown " 1865 "node at %pI4:%d\n", &sin.sin_addr.s_addr, 1866 ntohs(sin.sin_port)); 1867 ret = -EINVAL; 1868 goto out; 1869 } 1870 1871 if (o2nm_this_node() >= node->nd_num) { 1872 local_node = o2nm_get_node_by_num(o2nm_this_node()); 1873 printk(KERN_NOTICE "o2net: Unexpected connect attempt seen " 1874 "at node '%s' (%u, %pI4:%d) from node '%s' (%u, " 1875 "%pI4:%d)\n", local_node->nd_name, local_node->nd_num, 1876 &(local_node->nd_ipv4_address), 1877 ntohs(local_node->nd_ipv4_port), node->nd_name, 1878 node->nd_num, &sin.sin_addr.s_addr, ntohs(sin.sin_port)); 1879 ret = -EINVAL; 1880 goto out; 1881 } 1882 1883 /* this happens all the time when the other node sees our heartbeat 1884 * and tries to connect before we see their heartbeat */ 1885 if (!o2hb_check_node_heartbeating_from_callback(node->nd_num)) { 1886 mlog(ML_CONN, "attempt to connect from node '%s' at " 1887 "%pI4:%d but it isn't heartbeating\n", 1888 node->nd_name, &sin.sin_addr.s_addr, 1889 ntohs(sin.sin_port)); 1890 ret = -EINVAL; 1891 goto out; 1892 } 1893 1894 nn = o2net_nn_from_num(node->nd_num); 1895 1896 spin_lock(&nn->nn_lock); 1897 if (nn->nn_sc) 1898 ret = -EBUSY; 1899 else 1900 ret = 0; 1901 spin_unlock(&nn->nn_lock); 1902 if (ret) { 1903 printk(KERN_NOTICE "o2net: Attempt to connect from node '%s' " 1904 "at %pI4:%d but it already has an open connection\n", 1905 node->nd_name, &sin.sin_addr.s_addr, 1906 ntohs(sin.sin_port)); 1907 goto out; 1908 } 1909 1910 sc = sc_alloc(node); 1911 if (sc == NULL) { 1912 ret = -ENOMEM; 1913 goto out; 1914 } 1915 1916 sc->sc_sock = new_sock; 1917 new_sock = NULL; 1918 1919 spin_lock(&nn->nn_lock); 1920 atomic_set(&nn->nn_timeout, 0); 1921 o2net_set_nn_state(nn, sc, 0, 0); 1922 spin_unlock(&nn->nn_lock); 1923 1924 o2net_register_callbacks(sc->sc_sock->sk, sc); 1925 o2net_sc_queue_work(sc, &sc->sc_rx_work); 1926 1927 o2net_initialize_handshake(); 1928 o2net_sendpage(sc, o2net_hand, sizeof(*o2net_hand)); 1929 1930 out: 1931 if (new_sock) 1932 sock_release(new_sock); 1933 if (node) 1934 o2nm_node_put(node); 1935 if (local_node) 1936 o2nm_node_put(local_node); 1937 if (sc) 1938 sc_put(sc); 1939 return ret; 1940 } 1941 1942 static void o2net_accept_many(struct work_struct *work) 1943 { 1944 struct socket *sock = o2net_listen_sock; 1945 while (o2net_accept_one(sock) == 0) 1946 cond_resched(); 1947 } 1948 1949 static void o2net_listen_data_ready(struct sock *sk, int bytes) 1950 { 1951 void (*ready)(struct sock *sk, int bytes); 1952 1953 read_lock(&sk->sk_callback_lock); 1954 ready = sk->sk_user_data; 1955 if (ready == NULL) { /* check for teardown race */ 1956 ready = sk->sk_data_ready; 1957 goto out; 1958 } 1959 1960 /* ->sk_data_ready is also called for a newly established child socket 1961 * before it has been accepted and the acceptor has set up their 1962 * data_ready.. we only want to queue listen work for our listening 1963 * socket */ 1964 if (sk->sk_state == TCP_LISTEN) { 1965 mlog(ML_TCP, "bytes: %d\n", bytes); 1966 queue_work(o2net_wq, &o2net_listen_work); 1967 } 1968 1969 out: 1970 read_unlock(&sk->sk_callback_lock); 1971 ready(sk, bytes); 1972 } 1973 1974 static int o2net_open_listening_sock(__be32 addr, __be16 port) 1975 { 1976 struct socket *sock = NULL; 1977 int ret; 1978 struct sockaddr_in sin = { 1979 .sin_family = PF_INET, 1980 .sin_addr = { .s_addr = addr }, 1981 .sin_port = port, 1982 }; 1983 1984 ret = sock_create(PF_INET, SOCK_STREAM, IPPROTO_TCP, &sock); 1985 if (ret < 0) { 1986 printk(KERN_ERR "o2net: Error %d while creating socket\n", ret); 1987 goto out; 1988 } 1989 1990 sock->sk->sk_allocation = GFP_ATOMIC; 1991 1992 write_lock_bh(&sock->sk->sk_callback_lock); 1993 sock->sk->sk_user_data = sock->sk->sk_data_ready; 1994 sock->sk->sk_data_ready = o2net_listen_data_ready; 1995 write_unlock_bh(&sock->sk->sk_callback_lock); 1996 1997 o2net_listen_sock = sock; 1998 INIT_WORK(&o2net_listen_work, o2net_accept_many); 1999 2000 sock->sk->sk_reuse = SK_CAN_REUSE; 2001 ret = sock->ops->bind(sock, (struct sockaddr *)&sin, sizeof(sin)); 2002 if (ret < 0) { 2003 printk(KERN_ERR "o2net: Error %d while binding socket at " 2004 "%pI4:%u\n", ret, &addr, ntohs(port)); 2005 goto out; 2006 } 2007 2008 ret = sock->ops->listen(sock, 64); 2009 if (ret < 0) 2010 printk(KERN_ERR "o2net: Error %d while listening on %pI4:%u\n", 2011 ret, &addr, ntohs(port)); 2012 2013 out: 2014 if (ret) { 2015 o2net_listen_sock = NULL; 2016 if (sock) 2017 sock_release(sock); 2018 } 2019 return ret; 2020 } 2021 2022 /* 2023 * called from node manager when we should bring up our network listening 2024 * socket. node manager handles all the serialization to only call this 2025 * once and to match it with o2net_stop_listening(). note, 2026 * o2nm_this_node() doesn't work yet as we're being called while it 2027 * is being set up. 2028 */ 2029 int o2net_start_listening(struct o2nm_node *node) 2030 { 2031 int ret = 0; 2032 2033 BUG_ON(o2net_wq != NULL); 2034 BUG_ON(o2net_listen_sock != NULL); 2035 2036 mlog(ML_KTHREAD, "starting o2net thread...\n"); 2037 o2net_wq = create_singlethread_workqueue("o2net"); 2038 if (o2net_wq == NULL) { 2039 mlog(ML_ERROR, "unable to launch o2net thread\n"); 2040 return -ENOMEM; /* ? */ 2041 } 2042 2043 ret = o2net_open_listening_sock(node->nd_ipv4_address, 2044 node->nd_ipv4_port); 2045 if (ret) { 2046 destroy_workqueue(o2net_wq); 2047 o2net_wq = NULL; 2048 } else 2049 o2quo_conn_up(node->nd_num); 2050 2051 return ret; 2052 } 2053 2054 /* again, o2nm_this_node() doesn't work here as we're involved in 2055 * tearing it down */ 2056 void o2net_stop_listening(struct o2nm_node *node) 2057 { 2058 struct socket *sock = o2net_listen_sock; 2059 size_t i; 2060 2061 BUG_ON(o2net_wq == NULL); 2062 BUG_ON(o2net_listen_sock == NULL); 2063 2064 /* stop the listening socket from generating work */ 2065 write_lock_bh(&sock->sk->sk_callback_lock); 2066 sock->sk->sk_data_ready = sock->sk->sk_user_data; 2067 sock->sk->sk_user_data = NULL; 2068 write_unlock_bh(&sock->sk->sk_callback_lock); 2069 2070 for (i = 0; i < ARRAY_SIZE(o2net_nodes); i++) { 2071 struct o2nm_node *node = o2nm_get_node_by_num(i); 2072 if (node) { 2073 o2net_disconnect_node(node); 2074 o2nm_node_put(node); 2075 } 2076 } 2077 2078 /* finish all work and tear down the work queue */ 2079 mlog(ML_KTHREAD, "waiting for o2net thread to exit....\n"); 2080 destroy_workqueue(o2net_wq); 2081 o2net_wq = NULL; 2082 2083 sock_release(o2net_listen_sock); 2084 o2net_listen_sock = NULL; 2085 2086 o2quo_conn_err(node->nd_num); 2087 } 2088 2089 /* ------------------------------------------------------------ */ 2090 2091 int o2net_init(void) 2092 { 2093 unsigned long i; 2094 2095 o2quo_init(); 2096 2097 if (o2net_debugfs_init()) 2098 return -ENOMEM; 2099 2100 o2net_hand = kzalloc(sizeof(struct o2net_handshake), GFP_KERNEL); 2101 o2net_keep_req = kzalloc(sizeof(struct o2net_msg), GFP_KERNEL); 2102 o2net_keep_resp = kzalloc(sizeof(struct o2net_msg), GFP_KERNEL); 2103 if (!o2net_hand || !o2net_keep_req || !o2net_keep_resp) { 2104 kfree(o2net_hand); 2105 kfree(o2net_keep_req); 2106 kfree(o2net_keep_resp); 2107 return -ENOMEM; 2108 } 2109 2110 o2net_hand->protocol_version = cpu_to_be64(O2NET_PROTOCOL_VERSION); 2111 o2net_hand->connector_id = cpu_to_be64(1); 2112 2113 o2net_keep_req->magic = cpu_to_be16(O2NET_MSG_KEEP_REQ_MAGIC); 2114 o2net_keep_resp->magic = cpu_to_be16(O2NET_MSG_KEEP_RESP_MAGIC); 2115 2116 for (i = 0; i < ARRAY_SIZE(o2net_nodes); i++) { 2117 struct o2net_node *nn = o2net_nn_from_num(i); 2118 2119 atomic_set(&nn->nn_timeout, 0); 2120 spin_lock_init(&nn->nn_lock); 2121 INIT_DELAYED_WORK(&nn->nn_connect_work, o2net_start_connect); 2122 INIT_DELAYED_WORK(&nn->nn_connect_expired, 2123 o2net_connect_expired); 2124 INIT_DELAYED_WORK(&nn->nn_still_up, o2net_still_up); 2125 /* until we see hb from a node we'll return einval */ 2126 nn->nn_persistent_error = -ENOTCONN; 2127 init_waitqueue_head(&nn->nn_sc_wq); 2128 idr_init(&nn->nn_status_idr); 2129 INIT_LIST_HEAD(&nn->nn_status_list); 2130 } 2131 2132 return 0; 2133 } 2134 2135 void o2net_exit(void) 2136 { 2137 o2quo_exit(); 2138 kfree(o2net_hand); 2139 kfree(o2net_keep_req); 2140 kfree(o2net_keep_resp); 2141 o2net_debugfs_exit(); 2142 } 2143