1 // SPDX-License-Identifier: GPL-2.0-only 2 /* 3 * Shared Memory Communications over RDMA (SMC-R) and RoCE 4 * 5 * AF_SMC protocol family socket handler keeping the AF_INET sock address type 6 * applies to SOCK_STREAM sockets only 7 * offers an alternative communication option for TCP-protocol sockets 8 * applicable with RoCE-cards only 9 * 10 * Initial restrictions: 11 * - support for alternate links postponed 12 * 13 * Copyright IBM Corp. 2016, 2018 14 * 15 * Author(s): Ursula Braun <ubraun@linux.vnet.ibm.com> 16 * based on prototype from Frank Blaschka 17 */ 18 19 #define KMSG_COMPONENT "smc" 20 #define pr_fmt(fmt) KMSG_COMPONENT ": " fmt 21 22 #include <linux/module.h> 23 #include <linux/socket.h> 24 #include <linux/workqueue.h> 25 #include <linux/in.h> 26 #include <linux/sched/signal.h> 27 #include <linux/if_vlan.h> 28 #include <linux/rcupdate_wait.h> 29 #include <linux/ctype.h> 30 #include <linux/splice.h> 31 32 #include <net/sock.h> 33 #include <net/tcp.h> 34 #include <net/smc.h> 35 #include <asm/ioctls.h> 36 37 #include <net/net_namespace.h> 38 #include <net/netns/generic.h> 39 #include "smc_netns.h" 40 41 #include "smc.h" 42 #include "smc_clc.h" 43 #include "smc_llc.h" 44 #include "smc_cdc.h" 45 #include "smc_core.h" 46 #include "smc_ib.h" 47 #include "smc_ism.h" 48 #include "smc_pnet.h" 49 #include "smc_netlink.h" 50 #include "smc_tx.h" 51 #include "smc_rx.h" 52 #include "smc_close.h" 53 #include "smc_stats.h" 54 #include "smc_tracepoint.h" 55 #include "smc_sysctl.h" 56 #include "smc_loopback.h" 57 #include "smc_inet.h" 58 59 static DEFINE_MUTEX(smc_server_lgr_pending); /* serialize link group 60 * creation on server 61 */ 62 static DEFINE_MUTEX(smc_client_lgr_pending); /* serialize link group 63 * creation on client 64 */ 65 66 static struct workqueue_struct *smc_tcp_ls_wq; /* wq for tcp listen work */ 67 struct workqueue_struct *smc_hs_wq; /* wq for handshake work */ 68 struct workqueue_struct *smc_close_wq; /* wq for close work */ 69 70 static void smc_tcp_listen_work(struct work_struct *); 71 static void smc_connect_work(struct work_struct *); 72 73 int smc_nl_dump_hs_limitation(struct sk_buff *skb, struct netlink_callback *cb) 74 { 75 struct smc_nl_dmp_ctx *cb_ctx = smc_nl_dmp_ctx(cb); 76 void *hdr; 77 78 if (cb_ctx->pos[0]) 79 goto out; 80 81 hdr = genlmsg_put(skb, NETLINK_CB(cb->skb).portid, cb->nlh->nlmsg_seq, 82 &smc_gen_nl_family, NLM_F_MULTI, 83 SMC_NETLINK_DUMP_HS_LIMITATION); 84 if (!hdr) 85 return -ENOMEM; 86 87 if (nla_put_u8(skb, SMC_NLA_HS_LIMITATION_ENABLED, 88 sock_net(skb->sk)->smc.limit_smc_hs)) 89 goto err; 90 91 genlmsg_end(skb, hdr); 92 cb_ctx->pos[0] = 1; 93 out: 94 return skb->len; 95 err: 96 genlmsg_cancel(skb, hdr); 97 return -EMSGSIZE; 98 } 99 100 int smc_nl_enable_hs_limitation(struct sk_buff *skb, struct genl_info *info) 101 { 102 sock_net(skb->sk)->smc.limit_smc_hs = true; 103 return 0; 104 } 105 106 int smc_nl_disable_hs_limitation(struct sk_buff *skb, struct genl_info *info) 107 { 108 sock_net(skb->sk)->smc.limit_smc_hs = false; 109 return 0; 110 } 111 112 static void smc_set_keepalive(struct sock *sk, int val) 113 { 114 struct smc_sock *smc = smc_sk(sk); 115 116 smc->clcsock->sk->sk_prot->keepalive(smc->clcsock->sk, val); 117 } 118 119 static struct sock *smc_tcp_syn_recv_sock(const struct sock *sk, 120 struct sk_buff *skb, 121 struct request_sock *req, 122 struct dst_entry *dst, 123 struct request_sock *req_unhash, 124 bool *own_req) 125 { 126 struct smc_sock *smc; 127 struct sock *child; 128 129 smc = smc_clcsock_user_data(sk); 130 131 if (READ_ONCE(sk->sk_ack_backlog) + atomic_read(&smc->queued_smc_hs) > 132 sk->sk_max_ack_backlog) 133 goto drop; 134 135 if (sk_acceptq_is_full(&smc->sk)) { 136 NET_INC_STATS(sock_net(sk), LINUX_MIB_LISTENOVERFLOWS); 137 goto drop; 138 } 139 140 /* passthrough to original syn recv sock fct */ 141 child = smc->ori_af_ops->syn_recv_sock(sk, skb, req, dst, req_unhash, 142 own_req); 143 /* child must not inherit smc or its ops */ 144 if (child) { 145 rcu_assign_sk_user_data(child, NULL); 146 147 /* v4-mapped sockets don't inherit parent ops. Don't restore. */ 148 if (inet_csk(child)->icsk_af_ops == inet_csk(sk)->icsk_af_ops) 149 inet_csk(child)->icsk_af_ops = smc->ori_af_ops; 150 } 151 return child; 152 153 drop: 154 dst_release(dst); 155 tcp_listendrop(sk); 156 return NULL; 157 } 158 159 static bool smc_hs_congested(const struct sock *sk) 160 { 161 const struct smc_sock *smc; 162 163 smc = smc_clcsock_user_data(sk); 164 165 if (!smc) 166 return true; 167 168 if (workqueue_congested(WORK_CPU_UNBOUND, smc_hs_wq)) 169 return true; 170 171 return false; 172 } 173 174 struct smc_hashinfo smc_v4_hashinfo = { 175 .lock = __RW_LOCK_UNLOCKED(smc_v4_hashinfo.lock), 176 }; 177 178 struct smc_hashinfo smc_v6_hashinfo = { 179 .lock = __RW_LOCK_UNLOCKED(smc_v6_hashinfo.lock), 180 }; 181 182 int smc_hash_sk(struct sock *sk) 183 { 184 struct smc_hashinfo *h = sk->sk_prot->h.smc_hash; 185 struct hlist_head *head; 186 187 head = &h->ht; 188 189 write_lock_bh(&h->lock); 190 sk_add_node(sk, head); 191 write_unlock_bh(&h->lock); 192 sock_prot_inuse_add(sock_net(sk), sk->sk_prot, 1); 193 194 return 0; 195 } 196 197 void smc_unhash_sk(struct sock *sk) 198 { 199 struct smc_hashinfo *h = sk->sk_prot->h.smc_hash; 200 201 write_lock_bh(&h->lock); 202 if (sk_del_node_init(sk)) 203 sock_prot_inuse_add(sock_net(sk), sk->sk_prot, -1); 204 write_unlock_bh(&h->lock); 205 } 206 207 /* This will be called before user really release sock_lock. So do the 208 * work which we didn't do because of user hold the sock_lock in the 209 * BH context 210 */ 211 void smc_release_cb(struct sock *sk) 212 { 213 struct smc_sock *smc = smc_sk(sk); 214 215 if (smc->conn.tx_in_release_sock) { 216 smc_tx_pending(&smc->conn); 217 smc->conn.tx_in_release_sock = false; 218 } 219 } 220 221 struct proto smc_proto = { 222 .name = "SMC", 223 .owner = THIS_MODULE, 224 .keepalive = smc_set_keepalive, 225 .hash = smc_hash_sk, 226 .unhash = smc_unhash_sk, 227 .release_cb = smc_release_cb, 228 .obj_size = sizeof(struct smc_sock), 229 .h.smc_hash = &smc_v4_hashinfo, 230 .slab_flags = SLAB_TYPESAFE_BY_RCU, 231 }; 232 EXPORT_SYMBOL_GPL(smc_proto); 233 234 struct proto smc_proto6 = { 235 .name = "SMC6", 236 .owner = THIS_MODULE, 237 .keepalive = smc_set_keepalive, 238 .hash = smc_hash_sk, 239 .unhash = smc_unhash_sk, 240 .release_cb = smc_release_cb, 241 .obj_size = sizeof(struct smc_sock), 242 .h.smc_hash = &smc_v6_hashinfo, 243 .slab_flags = SLAB_TYPESAFE_BY_RCU, 244 }; 245 EXPORT_SYMBOL_GPL(smc_proto6); 246 247 static void smc_fback_restore_callbacks(struct smc_sock *smc) 248 { 249 struct sock *clcsk = smc->clcsock->sk; 250 251 write_lock_bh(&clcsk->sk_callback_lock); 252 clcsk->sk_user_data = NULL; 253 254 smc_clcsock_restore_cb(&clcsk->sk_state_change, &smc->clcsk_state_change); 255 smc_clcsock_restore_cb(&clcsk->sk_data_ready, &smc->clcsk_data_ready); 256 smc_clcsock_restore_cb(&clcsk->sk_write_space, &smc->clcsk_write_space); 257 smc_clcsock_restore_cb(&clcsk->sk_error_report, &smc->clcsk_error_report); 258 259 write_unlock_bh(&clcsk->sk_callback_lock); 260 } 261 262 static void smc_restore_fallback_changes(struct smc_sock *smc) 263 { 264 if (smc->clcsock->file) { /* non-accepted sockets have no file yet */ 265 smc->clcsock->file->private_data = smc->sk.sk_socket; 266 smc->clcsock->file = NULL; 267 smc_fback_restore_callbacks(smc); 268 } 269 } 270 271 static int __smc_release(struct smc_sock *smc) 272 { 273 struct sock *sk = &smc->sk; 274 int rc = 0; 275 276 if (!smc->use_fallback) { 277 rc = smc_close_active(smc); 278 smc_sock_set_flag(sk, SOCK_DEAD); 279 sk->sk_shutdown |= SHUTDOWN_MASK; 280 } else { 281 if (sk->sk_state != SMC_CLOSED) { 282 if (sk->sk_state != SMC_LISTEN && 283 sk->sk_state != SMC_INIT) 284 sock_put(sk); /* passive closing */ 285 if (sk->sk_state == SMC_LISTEN) { 286 /* wake up clcsock accept */ 287 rc = kernel_sock_shutdown(smc->clcsock, 288 SHUT_RDWR); 289 } 290 sk->sk_state = SMC_CLOSED; 291 sk->sk_state_change(sk); 292 } 293 smc_restore_fallback_changes(smc); 294 } 295 296 sk->sk_prot->unhash(sk); 297 298 if (sk->sk_state == SMC_CLOSED) { 299 if (smc->clcsock) { 300 release_sock(sk); 301 smc_clcsock_release(smc); 302 lock_sock(sk); 303 } 304 if (!smc->use_fallback) 305 smc_conn_free(&smc->conn); 306 } 307 308 return rc; 309 } 310 311 int smc_release(struct socket *sock) 312 { 313 struct sock *sk = sock->sk; 314 struct smc_sock *smc; 315 int old_state, rc = 0; 316 317 if (!sk) 318 goto out; 319 320 sock_hold(sk); /* sock_put below */ 321 smc = smc_sk(sk); 322 323 old_state = sk->sk_state; 324 325 /* cleanup for a dangling non-blocking connect */ 326 if (smc->connect_nonblock && old_state == SMC_INIT) 327 tcp_abort(smc->clcsock->sk, ECONNABORTED); 328 329 if (cancel_work_sync(&smc->connect_work)) 330 sock_put(&smc->sk); /* sock_hold in smc_connect for passive closing */ 331 332 if (sk->sk_state == SMC_LISTEN) 333 /* smc_close_non_accepted() is called and acquires 334 * sock lock for child sockets again 335 */ 336 lock_sock_nested(sk, SINGLE_DEPTH_NESTING); 337 else 338 lock_sock(sk); 339 340 if (old_state == SMC_INIT && sk->sk_state == SMC_ACTIVE && 341 !smc->use_fallback) 342 smc_close_active_abort(smc); 343 344 rc = __smc_release(smc); 345 346 /* detach socket */ 347 sock_orphan(sk); 348 sock->sk = NULL; 349 release_sock(sk); 350 351 sock_put(sk); /* sock_hold above */ 352 sock_put(sk); /* final sock_put */ 353 out: 354 return rc; 355 } 356 357 static void smc_destruct(struct sock *sk) 358 { 359 if (sk->sk_state != SMC_CLOSED) 360 return; 361 if (!sock_flag(sk, SOCK_DEAD)) 362 return; 363 } 364 365 static struct lock_class_key smc_key; 366 static struct lock_class_key smc_slock_key; 367 368 void smc_sk_init(struct net *net, struct sock *sk, int protocol) 369 { 370 struct smc_sock *smc = smc_sk(sk); 371 372 sk->sk_state = SMC_INIT; 373 sk->sk_destruct = smc_destruct; 374 sk->sk_protocol = protocol; 375 WRITE_ONCE(sk->sk_sndbuf, 2 * READ_ONCE(net->smc.sysctl_wmem)); 376 WRITE_ONCE(sk->sk_rcvbuf, 2 * READ_ONCE(net->smc.sysctl_rmem)); 377 INIT_WORK(&smc->tcp_listen_work, smc_tcp_listen_work); 378 INIT_WORK(&smc->connect_work, smc_connect_work); 379 INIT_DELAYED_WORK(&smc->conn.tx_work, smc_tx_work); 380 INIT_LIST_HEAD(&smc->accept_q); 381 sock_lock_init_class_and_name(sk, "slock-AF_SMC", &smc_slock_key, 382 "sk_lock-AF_SMC", &smc_key); 383 spin_lock_init(&smc->accept_q_lock); 384 spin_lock_init(&smc->conn.send_lock); 385 sk->sk_prot->hash(sk); 386 mutex_init(&smc->clcsock_release_lock); 387 smc_init_saved_callbacks(smc); 388 smc->limit_smc_hs = net->smc.limit_smc_hs; 389 smc->use_fallback = false; /* assume rdma capability first */ 390 smc->fallback_rsn = 0; 391 smc_close_init(smc); 392 } 393 394 static struct sock *smc_sock_alloc(struct net *net, struct socket *sock, 395 int protocol) 396 { 397 struct proto *prot; 398 struct sock *sk; 399 400 prot = (protocol == SMCPROTO_SMC6) ? &smc_proto6 : &smc_proto; 401 sk = sk_alloc(net, PF_SMC, GFP_KERNEL, prot, 0); 402 if (!sk) 403 return NULL; 404 405 sock_init_data(sock, sk); /* sets sk_refcnt to 1 */ 406 smc_sk_init(net, sk, protocol); 407 408 return sk; 409 } 410 411 int smc_bind(struct socket *sock, struct sockaddr *uaddr, 412 int addr_len) 413 { 414 struct sockaddr_in *addr = (struct sockaddr_in *)uaddr; 415 struct sock *sk = sock->sk; 416 struct smc_sock *smc; 417 int rc; 418 419 smc = smc_sk(sk); 420 421 /* replicate tests from inet_bind(), to be safe wrt. future changes */ 422 rc = -EINVAL; 423 if (addr_len < sizeof(struct sockaddr_in)) 424 goto out; 425 426 rc = -EAFNOSUPPORT; 427 if (addr->sin_family != AF_INET && 428 addr->sin_family != AF_INET6 && 429 addr->sin_family != AF_UNSPEC) 430 goto out; 431 /* accept AF_UNSPEC (mapped to AF_INET) only if s_addr is INADDR_ANY */ 432 if (addr->sin_family == AF_UNSPEC && 433 addr->sin_addr.s_addr != htonl(INADDR_ANY)) 434 goto out; 435 436 lock_sock(sk); 437 438 /* Check if socket is already active */ 439 rc = -EINVAL; 440 if (sk->sk_state != SMC_INIT || smc->connect_nonblock) 441 goto out_rel; 442 443 smc->clcsock->sk->sk_reuse = sk->sk_reuse; 444 smc->clcsock->sk->sk_reuseport = sk->sk_reuseport; 445 rc = kernel_bind(smc->clcsock, uaddr, addr_len); 446 447 out_rel: 448 release_sock(sk); 449 out: 450 return rc; 451 } 452 453 /* copy only relevant settings and flags of SOL_SOCKET level from smc to 454 * clc socket (since smc is not called for these options from net/core) 455 */ 456 457 #define SK_FLAGS_SMC_TO_CLC ((1UL << SOCK_URGINLINE) | \ 458 (1UL << SOCK_KEEPOPEN) | \ 459 (1UL << SOCK_LINGER) | \ 460 (1UL << SOCK_BROADCAST) | \ 461 (1UL << SOCK_TIMESTAMP) | \ 462 (1UL << SOCK_DBG) | \ 463 (1UL << SOCK_RCVTSTAMP) | \ 464 (1UL << SOCK_RCVTSTAMPNS) | \ 465 (1UL << SOCK_LOCALROUTE) | \ 466 (1UL << SOCK_TIMESTAMPING_RX_SOFTWARE) | \ 467 (1UL << SOCK_RXQ_OVFL) | \ 468 (1UL << SOCK_WIFI_STATUS) | \ 469 (1UL << SOCK_NOFCS) | \ 470 (1UL << SOCK_FILTER_LOCKED) | \ 471 (1UL << SOCK_TSTAMP_NEW)) 472 473 /* if set, use value set by setsockopt() - else use IPv4 or SMC sysctl value */ 474 static void smc_adjust_sock_bufsizes(struct sock *nsk, struct sock *osk, 475 unsigned long mask) 476 { 477 nsk->sk_userlocks = osk->sk_userlocks; 478 if (osk->sk_userlocks & SOCK_SNDBUF_LOCK) 479 nsk->sk_sndbuf = osk->sk_sndbuf; 480 if (osk->sk_userlocks & SOCK_RCVBUF_LOCK) 481 nsk->sk_rcvbuf = osk->sk_rcvbuf; 482 } 483 484 static void smc_copy_sock_settings(struct sock *nsk, struct sock *osk, 485 unsigned long mask) 486 { 487 /* options we don't get control via setsockopt for */ 488 nsk->sk_type = osk->sk_type; 489 nsk->sk_sndtimeo = osk->sk_sndtimeo; 490 nsk->sk_rcvtimeo = osk->sk_rcvtimeo; 491 nsk->sk_mark = READ_ONCE(osk->sk_mark); 492 nsk->sk_priority = READ_ONCE(osk->sk_priority); 493 nsk->sk_rcvlowat = osk->sk_rcvlowat; 494 nsk->sk_bound_dev_if = osk->sk_bound_dev_if; 495 nsk->sk_err = osk->sk_err; 496 497 nsk->sk_flags &= ~mask; 498 nsk->sk_flags |= osk->sk_flags & mask; 499 500 smc_adjust_sock_bufsizes(nsk, osk, mask); 501 } 502 503 static void smc_copy_sock_settings_to_clc(struct smc_sock *smc) 504 { 505 smc_copy_sock_settings(smc->clcsock->sk, &smc->sk, SK_FLAGS_SMC_TO_CLC); 506 } 507 508 #define SK_FLAGS_CLC_TO_SMC ((1UL << SOCK_URGINLINE) | \ 509 (1UL << SOCK_KEEPOPEN) | \ 510 (1UL << SOCK_LINGER) | \ 511 (1UL << SOCK_DBG)) 512 /* copy only settings and flags relevant for smc from clc to smc socket */ 513 static void smc_copy_sock_settings_to_smc(struct smc_sock *smc) 514 { 515 smc_copy_sock_settings(&smc->sk, smc->clcsock->sk, SK_FLAGS_CLC_TO_SMC); 516 } 517 518 /* register the new vzalloced sndbuf on all links */ 519 static int smcr_lgr_reg_sndbufs(struct smc_link *link, 520 struct smc_buf_desc *snd_desc) 521 { 522 struct smc_link_group *lgr = link->lgr; 523 int i, rc = 0; 524 525 if (!snd_desc->is_vm) 526 return -EINVAL; 527 528 /* protect against parallel smcr_link_reg_buf() */ 529 down_write(&lgr->llc_conf_mutex); 530 for (i = 0; i < SMC_LINKS_PER_LGR_MAX; i++) { 531 if (!smc_link_active(&lgr->lnk[i])) 532 continue; 533 rc = smcr_link_reg_buf(&lgr->lnk[i], snd_desc); 534 if (rc) 535 break; 536 } 537 up_write(&lgr->llc_conf_mutex); 538 return rc; 539 } 540 541 /* register the new rmb on all links */ 542 static int smcr_lgr_reg_rmbs(struct smc_link *link, 543 struct smc_buf_desc *rmb_desc) 544 { 545 struct smc_link_group *lgr = link->lgr; 546 bool do_slow = false; 547 int i, rc = 0; 548 549 rc = smc_llc_flow_initiate(lgr, SMC_LLC_FLOW_RKEY); 550 if (rc) 551 return rc; 552 553 down_read(&lgr->llc_conf_mutex); 554 for (i = 0; i < SMC_LINKS_PER_LGR_MAX; i++) { 555 if (!smc_link_active(&lgr->lnk[i])) 556 continue; 557 if (!rmb_desc->is_reg_mr[link->link_idx]) { 558 up_read(&lgr->llc_conf_mutex); 559 goto slow_path; 560 } 561 } 562 /* mr register already */ 563 goto fast_path; 564 slow_path: 565 do_slow = true; 566 /* protect against parallel smc_llc_cli_rkey_exchange() and 567 * parallel smcr_link_reg_buf() 568 */ 569 down_write(&lgr->llc_conf_mutex); 570 for (i = 0; i < SMC_LINKS_PER_LGR_MAX; i++) { 571 if (!smc_link_active(&lgr->lnk[i])) 572 continue; 573 rc = smcr_link_reg_buf(&lgr->lnk[i], rmb_desc); 574 if (rc) 575 goto out; 576 } 577 fast_path: 578 /* exchange confirm_rkey msg with peer */ 579 rc = smc_llc_do_confirm_rkey(link, rmb_desc); 580 if (rc) { 581 rc = -EFAULT; 582 goto out; 583 } 584 rmb_desc->is_conf_rkey = true; 585 out: 586 do_slow ? up_write(&lgr->llc_conf_mutex) : up_read(&lgr->llc_conf_mutex); 587 smc_llc_flow_stop(lgr, &lgr->llc_flow_lcl); 588 return rc; 589 } 590 591 static int smcr_clnt_conf_first_link(struct smc_sock *smc) 592 { 593 struct smc_link *link = smc->conn.lnk; 594 struct smc_llc_qentry *qentry; 595 int rc; 596 597 /* Receive CONFIRM LINK request from server over RoCE fabric. 598 * Increasing the client's timeout by twice as much as the server's 599 * timeout by default can temporarily avoid decline messages of 600 * both sides crossing or colliding 601 */ 602 qentry = smc_llc_wait(link->lgr, NULL, 2 * SMC_LLC_WAIT_TIME, 603 SMC_LLC_CONFIRM_LINK); 604 if (!qentry) { 605 struct smc_clc_msg_decline dclc; 606 607 rc = smc_clc_wait_msg(smc, &dclc, sizeof(dclc), 608 SMC_CLC_DECLINE, CLC_WAIT_TIME_SHORT); 609 return rc == -EAGAIN ? SMC_CLC_DECL_TIMEOUT_CL : rc; 610 } 611 smc_llc_save_peer_uid(qentry); 612 rc = smc_llc_eval_conf_link(qentry, SMC_LLC_REQ); 613 smc_llc_flow_qentry_del(&link->lgr->llc_flow_lcl); 614 if (rc) 615 return SMC_CLC_DECL_RMBE_EC; 616 617 rc = smc_ib_modify_qp_rts(link); 618 if (rc) 619 return SMC_CLC_DECL_ERR_RDYLNK; 620 621 smc_wr_remember_qp_attr(link); 622 623 /* reg the sndbuf if it was vzalloced */ 624 if (smc->conn.sndbuf_desc->is_vm) { 625 if (smcr_link_reg_buf(link, smc->conn.sndbuf_desc)) 626 return SMC_CLC_DECL_ERR_REGBUF; 627 } 628 629 /* reg the rmb */ 630 if (smcr_link_reg_buf(link, smc->conn.rmb_desc)) 631 return SMC_CLC_DECL_ERR_REGBUF; 632 633 /* confirm_rkey is implicit on 1st contact */ 634 smc->conn.rmb_desc->is_conf_rkey = true; 635 636 /* send CONFIRM LINK response over RoCE fabric */ 637 rc = smc_llc_send_confirm_link(link, SMC_LLC_RESP); 638 if (rc < 0) 639 return SMC_CLC_DECL_TIMEOUT_CL; 640 641 smc_llc_link_active(link); 642 smcr_lgr_set_type(link->lgr, SMC_LGR_SINGLE); 643 644 if (link->lgr->max_links > 1) { 645 /* optional 2nd link, receive ADD LINK request from server */ 646 qentry = smc_llc_wait(link->lgr, NULL, SMC_LLC_WAIT_TIME, 647 SMC_LLC_ADD_LINK); 648 if (!qentry) { 649 struct smc_clc_msg_decline dclc; 650 651 rc = smc_clc_wait_msg(smc, &dclc, sizeof(dclc), 652 SMC_CLC_DECLINE, CLC_WAIT_TIME_SHORT); 653 if (rc == -EAGAIN) 654 rc = 0; /* no DECLINE received, go with one link */ 655 return rc; 656 } 657 smc_llc_flow_qentry_clr(&link->lgr->llc_flow_lcl); 658 smc_llc_cli_add_link(link, qentry); 659 } 660 return 0; 661 } 662 663 static bool smc_isascii(char *hostname) 664 { 665 int i; 666 667 for (i = 0; i < SMC_MAX_HOSTNAME_LEN; i++) 668 if (!isascii(hostname[i])) 669 return false; 670 return true; 671 } 672 673 static void smc_conn_save_peer_info_fce(struct smc_sock *smc, 674 struct smc_clc_msg_accept_confirm *clc) 675 { 676 struct smc_clc_first_contact_ext *fce; 677 int clc_v2_len; 678 679 if (clc->hdr.version == SMC_V1 || 680 !(clc->hdr.typev2 & SMC_FIRST_CONTACT_MASK)) 681 return; 682 683 if (smc->conn.lgr->is_smcd) { 684 memcpy(smc->conn.lgr->negotiated_eid, clc->d1.eid, 685 SMC_MAX_EID_LEN); 686 clc_v2_len = offsetofend(struct smc_clc_msg_accept_confirm, d1); 687 } else { 688 memcpy(smc->conn.lgr->negotiated_eid, clc->r1.eid, 689 SMC_MAX_EID_LEN); 690 clc_v2_len = offsetofend(struct smc_clc_msg_accept_confirm, r1); 691 } 692 fce = (struct smc_clc_first_contact_ext *)(((u8 *)clc) + clc_v2_len); 693 smc->conn.lgr->peer_os = fce->os_type; 694 smc->conn.lgr->peer_smc_release = fce->release; 695 if (smc_isascii(fce->hostname)) 696 memcpy(smc->conn.lgr->peer_hostname, fce->hostname, 697 SMC_MAX_HOSTNAME_LEN); 698 } 699 700 static void smcr_conn_save_peer_info(struct smc_sock *smc, 701 struct smc_clc_msg_accept_confirm *clc) 702 { 703 int bufsize = smc_uncompress_bufsize(clc->r0.rmbe_size); 704 705 smc->conn.peer_rmbe_idx = clc->r0.rmbe_idx; 706 smc->conn.local_tx_ctrl.token = ntohl(clc->r0.rmbe_alert_token); 707 smc->conn.peer_rmbe_size = bufsize; 708 atomic_set(&smc->conn.peer_rmbe_space, smc->conn.peer_rmbe_size); 709 smc->conn.tx_off = bufsize * (smc->conn.peer_rmbe_idx - 1); 710 } 711 712 static void smcd_conn_save_peer_info(struct smc_sock *smc, 713 struct smc_clc_msg_accept_confirm *clc) 714 { 715 int bufsize = smc_uncompress_bufsize(clc->d0.dmbe_size); 716 717 smc->conn.peer_rmbe_idx = clc->d0.dmbe_idx; 718 smc->conn.peer_token = ntohll(clc->d0.token); 719 /* msg header takes up space in the buffer */ 720 smc->conn.peer_rmbe_size = bufsize - sizeof(struct smcd_cdc_msg); 721 atomic_set(&smc->conn.peer_rmbe_space, smc->conn.peer_rmbe_size); 722 smc->conn.tx_off = bufsize * smc->conn.peer_rmbe_idx; 723 } 724 725 static void smc_conn_save_peer_info(struct smc_sock *smc, 726 struct smc_clc_msg_accept_confirm *clc) 727 { 728 if (smc->conn.lgr->is_smcd) 729 smcd_conn_save_peer_info(smc, clc); 730 else 731 smcr_conn_save_peer_info(smc, clc); 732 smc_conn_save_peer_info_fce(smc, clc); 733 } 734 735 static void smc_link_save_peer_info(struct smc_link *link, 736 struct smc_clc_msg_accept_confirm *clc, 737 struct smc_init_info *ini) 738 { 739 link->peer_qpn = ntoh24(clc->r0.qpn); 740 memcpy(link->peer_gid, ini->peer_gid, SMC_GID_SIZE); 741 memcpy(link->peer_mac, ini->peer_mac, sizeof(link->peer_mac)); 742 link->peer_psn = ntoh24(clc->r0.psn); 743 link->peer_mtu = clc->r0.qp_mtu; 744 } 745 746 static void smc_stat_inc_fback_rsn_cnt(struct smc_sock *smc, 747 struct smc_stats_fback *fback_arr) 748 { 749 int cnt; 750 751 for (cnt = 0; cnt < SMC_MAX_FBACK_RSN_CNT; cnt++) { 752 if (fback_arr[cnt].fback_code == smc->fallback_rsn) { 753 fback_arr[cnt].count++; 754 break; 755 } 756 if (!fback_arr[cnt].fback_code) { 757 fback_arr[cnt].fback_code = smc->fallback_rsn; 758 fback_arr[cnt].count++; 759 break; 760 } 761 } 762 } 763 764 static void smc_stat_fallback(struct smc_sock *smc) 765 { 766 struct net *net = sock_net(&smc->sk); 767 768 mutex_lock(&net->smc.mutex_fback_rsn); 769 if (smc->listen_smc) { 770 smc_stat_inc_fback_rsn_cnt(smc, net->smc.fback_rsn->srv); 771 net->smc.fback_rsn->srv_fback_cnt++; 772 } else { 773 smc_stat_inc_fback_rsn_cnt(smc, net->smc.fback_rsn->clnt); 774 net->smc.fback_rsn->clnt_fback_cnt++; 775 } 776 mutex_unlock(&net->smc.mutex_fback_rsn); 777 } 778 779 /* must be called under rcu read lock */ 780 static void smc_fback_wakeup_waitqueue(struct smc_sock *smc, void *key) 781 { 782 struct socket_wq *wq; 783 __poll_t flags; 784 785 wq = rcu_dereference(smc->sk.sk_wq); 786 if (!skwq_has_sleeper(wq)) 787 return; 788 789 /* wake up smc sk->sk_wq */ 790 if (!key) { 791 /* sk_state_change */ 792 wake_up_interruptible_all(&wq->wait); 793 } else { 794 flags = key_to_poll(key); 795 if (flags & (EPOLLIN | EPOLLOUT)) 796 /* sk_data_ready or sk_write_space */ 797 wake_up_interruptible_sync_poll(&wq->wait, flags); 798 else if (flags & EPOLLERR) 799 /* sk_error_report */ 800 wake_up_interruptible_poll(&wq->wait, flags); 801 } 802 } 803 804 static int smc_fback_mark_woken(wait_queue_entry_t *wait, 805 unsigned int mode, int sync, void *key) 806 { 807 struct smc_mark_woken *mark = 808 container_of(wait, struct smc_mark_woken, wait_entry); 809 810 mark->woken = true; 811 mark->key = key; 812 return 0; 813 } 814 815 static void smc_fback_forward_wakeup(struct smc_sock *smc, struct sock *clcsk, 816 void (*clcsock_callback)(struct sock *sk)) 817 { 818 struct smc_mark_woken mark = { .woken = false }; 819 struct socket_wq *wq; 820 821 init_waitqueue_func_entry(&mark.wait_entry, 822 smc_fback_mark_woken); 823 rcu_read_lock(); 824 wq = rcu_dereference(clcsk->sk_wq); 825 if (!wq) 826 goto out; 827 add_wait_queue(sk_sleep(clcsk), &mark.wait_entry); 828 clcsock_callback(clcsk); 829 remove_wait_queue(sk_sleep(clcsk), &mark.wait_entry); 830 831 if (mark.woken) 832 smc_fback_wakeup_waitqueue(smc, mark.key); 833 out: 834 rcu_read_unlock(); 835 } 836 837 static void smc_fback_state_change(struct sock *clcsk) 838 { 839 struct smc_sock *smc; 840 841 read_lock_bh(&clcsk->sk_callback_lock); 842 smc = smc_clcsock_user_data(clcsk); 843 if (smc) 844 smc_fback_forward_wakeup(smc, clcsk, 845 smc->clcsk_state_change); 846 read_unlock_bh(&clcsk->sk_callback_lock); 847 } 848 849 static void smc_fback_data_ready(struct sock *clcsk) 850 { 851 struct smc_sock *smc; 852 853 read_lock_bh(&clcsk->sk_callback_lock); 854 smc = smc_clcsock_user_data(clcsk); 855 if (smc) 856 smc_fback_forward_wakeup(smc, clcsk, 857 smc->clcsk_data_ready); 858 read_unlock_bh(&clcsk->sk_callback_lock); 859 } 860 861 static void smc_fback_write_space(struct sock *clcsk) 862 { 863 struct smc_sock *smc; 864 865 read_lock_bh(&clcsk->sk_callback_lock); 866 smc = smc_clcsock_user_data(clcsk); 867 if (smc) 868 smc_fback_forward_wakeup(smc, clcsk, 869 smc->clcsk_write_space); 870 read_unlock_bh(&clcsk->sk_callback_lock); 871 } 872 873 static void smc_fback_error_report(struct sock *clcsk) 874 { 875 struct smc_sock *smc; 876 877 read_lock_bh(&clcsk->sk_callback_lock); 878 smc = smc_clcsock_user_data(clcsk); 879 if (smc) 880 smc_fback_forward_wakeup(smc, clcsk, 881 smc->clcsk_error_report); 882 read_unlock_bh(&clcsk->sk_callback_lock); 883 } 884 885 static void smc_fback_replace_callbacks(struct smc_sock *smc) 886 { 887 struct sock *clcsk = smc->clcsock->sk; 888 889 write_lock_bh(&clcsk->sk_callback_lock); 890 clcsk->sk_user_data = (void *)((uintptr_t)smc | SK_USER_DATA_NOCOPY); 891 892 smc_clcsock_replace_cb(&clcsk->sk_state_change, smc_fback_state_change, 893 &smc->clcsk_state_change); 894 smc_clcsock_replace_cb(&clcsk->sk_data_ready, smc_fback_data_ready, 895 &smc->clcsk_data_ready); 896 smc_clcsock_replace_cb(&clcsk->sk_write_space, smc_fback_write_space, 897 &smc->clcsk_write_space); 898 smc_clcsock_replace_cb(&clcsk->sk_error_report, smc_fback_error_report, 899 &smc->clcsk_error_report); 900 901 write_unlock_bh(&clcsk->sk_callback_lock); 902 } 903 904 static int smc_switch_to_fallback(struct smc_sock *smc, int reason_code) 905 { 906 int rc = 0; 907 908 mutex_lock(&smc->clcsock_release_lock); 909 if (!smc->clcsock) { 910 rc = -EBADF; 911 goto out; 912 } 913 914 smc->use_fallback = true; 915 smc->fallback_rsn = reason_code; 916 smc_stat_fallback(smc); 917 trace_smc_switch_to_fallback(smc, reason_code); 918 if (smc->sk.sk_socket && smc->sk.sk_socket->file) { 919 smc->clcsock->file = smc->sk.sk_socket->file; 920 smc->clcsock->file->private_data = smc->clcsock; 921 smc->clcsock->wq.fasync_list = 922 smc->sk.sk_socket->wq.fasync_list; 923 smc->sk.sk_socket->wq.fasync_list = NULL; 924 925 /* There might be some wait entries remaining 926 * in smc sk->sk_wq and they should be woken up 927 * as clcsock's wait queue is woken up. 928 */ 929 smc_fback_replace_callbacks(smc); 930 } 931 out: 932 mutex_unlock(&smc->clcsock_release_lock); 933 return rc; 934 } 935 936 /* fall back during connect */ 937 static int smc_connect_fallback(struct smc_sock *smc, int reason_code) 938 { 939 struct net *net = sock_net(&smc->sk); 940 int rc = 0; 941 942 rc = smc_switch_to_fallback(smc, reason_code); 943 if (rc) { /* fallback fails */ 944 this_cpu_inc(net->smc.smc_stats->clnt_hshake_err_cnt); 945 if (smc->sk.sk_state == SMC_INIT) 946 sock_put(&smc->sk); /* passive closing */ 947 return rc; 948 } 949 smc_copy_sock_settings_to_clc(smc); 950 smc->connect_nonblock = 0; 951 if (smc->sk.sk_state == SMC_INIT) 952 smc->sk.sk_state = SMC_ACTIVE; 953 return 0; 954 } 955 956 /* decline and fall back during connect */ 957 static int smc_connect_decline_fallback(struct smc_sock *smc, int reason_code, 958 u8 version) 959 { 960 struct net *net = sock_net(&smc->sk); 961 int rc; 962 963 if (reason_code < 0) { /* error, fallback is not possible */ 964 this_cpu_inc(net->smc.smc_stats->clnt_hshake_err_cnt); 965 if (smc->sk.sk_state == SMC_INIT) 966 sock_put(&smc->sk); /* passive closing */ 967 return reason_code; 968 } 969 if (reason_code != SMC_CLC_DECL_PEERDECL) { 970 rc = smc_clc_send_decline(smc, reason_code, version); 971 if (rc < 0) { 972 this_cpu_inc(net->smc.smc_stats->clnt_hshake_err_cnt); 973 if (smc->sk.sk_state == SMC_INIT) 974 sock_put(&smc->sk); /* passive closing */ 975 return rc; 976 } 977 } 978 return smc_connect_fallback(smc, reason_code); 979 } 980 981 static void smc_conn_abort(struct smc_sock *smc, int local_first) 982 { 983 struct smc_connection *conn = &smc->conn; 984 struct smc_link_group *lgr = conn->lgr; 985 bool lgr_valid = false; 986 987 if (smc_conn_lgr_valid(conn)) 988 lgr_valid = true; 989 990 smc_conn_free(conn); 991 if (local_first && lgr_valid) 992 smc_lgr_cleanup_early(lgr); 993 } 994 995 /* check if there is a rdma device available for this connection. */ 996 /* called for connect and listen */ 997 static int smc_find_rdma_device(struct smc_sock *smc, struct smc_init_info *ini) 998 { 999 /* PNET table look up: search active ib_device and port 1000 * within same PNETID that also contains the ethernet device 1001 * used for the internal TCP socket 1002 */ 1003 smc_pnet_find_roce_resource(smc->clcsock->sk, ini); 1004 if (!ini->check_smcrv2 && !ini->ib_dev) 1005 return SMC_CLC_DECL_NOSMCRDEV; 1006 if (ini->check_smcrv2 && !ini->smcrv2.ib_dev_v2) 1007 return SMC_CLC_DECL_NOSMCRDEV; 1008 return 0; 1009 } 1010 1011 /* check if there is an ISM device available for this connection. */ 1012 /* called for connect and listen */ 1013 static int smc_find_ism_device(struct smc_sock *smc, struct smc_init_info *ini) 1014 { 1015 /* Find ISM device with same PNETID as connecting interface */ 1016 smc_pnet_find_ism_resource(smc->clcsock->sk, ini); 1017 if (!ini->ism_dev[0]) 1018 return SMC_CLC_DECL_NOSMCDDEV; 1019 else 1020 ini->ism_chid[0] = smc_ism_get_chid(ini->ism_dev[0]); 1021 return 0; 1022 } 1023 1024 /* is chid unique for the ism devices that are already determined? */ 1025 static bool smc_find_ism_v2_is_unique_chid(u16 chid, struct smc_init_info *ini, 1026 int cnt) 1027 { 1028 int i = (!ini->ism_dev[0]) ? 1 : 0; 1029 1030 for (; i < cnt; i++) 1031 if (ini->ism_chid[i] == chid) 1032 return false; 1033 return true; 1034 } 1035 1036 /* determine possible V2 ISM devices (either without PNETID or with PNETID plus 1037 * PNETID matching net_device) 1038 */ 1039 static int smc_find_ism_v2_device_clnt(struct smc_sock *smc, 1040 struct smc_init_info *ini) 1041 { 1042 int rc = SMC_CLC_DECL_NOSMCDDEV; 1043 struct smcd_dev *smcd; 1044 int i = 1, entry = 1; 1045 bool is_emulated; 1046 u16 chid; 1047 1048 if (smcd_indicated(ini->smc_type_v1)) 1049 rc = 0; /* already initialized for V1 */ 1050 mutex_lock(&smcd_dev_list.mutex); 1051 list_for_each_entry(smcd, &smcd_dev_list.list, list) { 1052 if (smcd->going_away || smcd == ini->ism_dev[0]) 1053 continue; 1054 chid = smc_ism_get_chid(smcd); 1055 if (!smc_find_ism_v2_is_unique_chid(chid, ini, i)) 1056 continue; 1057 is_emulated = __smc_ism_is_emulated(chid); 1058 if (!smc_pnet_is_pnetid_set(smcd->pnetid) || 1059 smc_pnet_is_ndev_pnetid(sock_net(&smc->sk), smcd->pnetid)) { 1060 if (is_emulated && entry == SMCD_CLC_MAX_V2_GID_ENTRIES) 1061 /* It's the last GID-CHID entry left in CLC 1062 * Proposal SMC-Dv2 extension, but an Emulated- 1063 * ISM device will take two entries. So give 1064 * up it and try the next potential ISM device. 1065 */ 1066 continue; 1067 ini->ism_dev[i] = smcd; 1068 ini->ism_chid[i] = chid; 1069 ini->is_smcd = true; 1070 rc = 0; 1071 i++; 1072 entry = is_emulated ? entry + 2 : entry + 1; 1073 if (entry > SMCD_CLC_MAX_V2_GID_ENTRIES) 1074 break; 1075 } 1076 } 1077 mutex_unlock(&smcd_dev_list.mutex); 1078 ini->ism_offered_cnt = i - 1; 1079 if (!ini->ism_dev[0] && !ini->ism_dev[1]) 1080 ini->smcd_version = 0; 1081 1082 return rc; 1083 } 1084 1085 /* Check for VLAN ID and register it on ISM device just for CLC handshake */ 1086 static int smc_connect_ism_vlan_setup(struct smc_sock *smc, 1087 struct smc_init_info *ini) 1088 { 1089 if (ini->vlan_id && smc_ism_get_vlan(ini->ism_dev[0], ini->vlan_id)) 1090 return SMC_CLC_DECL_ISMVLANERR; 1091 return 0; 1092 } 1093 1094 static int smc_find_proposal_devices(struct smc_sock *smc, 1095 struct smc_init_info *ini) 1096 { 1097 int rc = 0; 1098 1099 /* check if there is an ism device available */ 1100 if (!(ini->smcd_version & SMC_V1) || 1101 smc_find_ism_device(smc, ini) || 1102 smc_connect_ism_vlan_setup(smc, ini)) 1103 ini->smcd_version &= ~SMC_V1; 1104 /* else ISM V1 is supported for this connection */ 1105 1106 /* check if there is an rdma device available */ 1107 if (!(ini->smcr_version & SMC_V1) || 1108 smc_find_rdma_device(smc, ini)) 1109 ini->smcr_version &= ~SMC_V1; 1110 /* else RDMA is supported for this connection */ 1111 1112 ini->smc_type_v1 = smc_indicated_type(ini->smcd_version & SMC_V1, 1113 ini->smcr_version & SMC_V1); 1114 1115 /* check if there is an ism v2 device available */ 1116 if (!(ini->smcd_version & SMC_V2) || 1117 !smc_ism_is_v2_capable() || 1118 smc_find_ism_v2_device_clnt(smc, ini)) 1119 ini->smcd_version &= ~SMC_V2; 1120 1121 /* check if there is an rdma v2 device available */ 1122 ini->check_smcrv2 = true; 1123 ini->smcrv2.saddr = smc->clcsock->sk->sk_rcv_saddr; 1124 if (!(ini->smcr_version & SMC_V2) || 1125 #if IS_ENABLED(CONFIG_IPV6) 1126 (smc->clcsock->sk->sk_family == AF_INET6 && 1127 !ipv6_addr_v4mapped(&smc->clcsock->sk->sk_v6_rcv_saddr)) || 1128 #endif 1129 !smc_clc_ueid_count() || 1130 smc_find_rdma_device(smc, ini)) 1131 ini->smcr_version &= ~SMC_V2; 1132 ini->check_smcrv2 = false; 1133 1134 ini->smc_type_v2 = smc_indicated_type(ini->smcd_version & SMC_V2, 1135 ini->smcr_version & SMC_V2); 1136 1137 /* if neither ISM nor RDMA are supported, fallback */ 1138 if (ini->smc_type_v1 == SMC_TYPE_N && ini->smc_type_v2 == SMC_TYPE_N) 1139 rc = SMC_CLC_DECL_NOSMCDEV; 1140 1141 return rc; 1142 } 1143 1144 /* cleanup temporary VLAN ID registration used for CLC handshake. If ISM is 1145 * used, the VLAN ID will be registered again during the connection setup. 1146 */ 1147 static int smc_connect_ism_vlan_cleanup(struct smc_sock *smc, 1148 struct smc_init_info *ini) 1149 { 1150 if (!smcd_indicated(ini->smc_type_v1)) 1151 return 0; 1152 if (ini->vlan_id && smc_ism_put_vlan(ini->ism_dev[0], ini->vlan_id)) 1153 return SMC_CLC_DECL_CNFERR; 1154 return 0; 1155 } 1156 1157 #define SMC_CLC_MAX_ACCEPT_LEN \ 1158 (sizeof(struct smc_clc_msg_accept_confirm) + \ 1159 sizeof(struct smc_clc_first_contact_ext_v2x) + \ 1160 sizeof(struct smc_clc_msg_trail)) 1161 1162 /* CLC handshake during connect */ 1163 static int smc_connect_clc(struct smc_sock *smc, 1164 struct smc_clc_msg_accept_confirm *aclc, 1165 struct smc_init_info *ini) 1166 { 1167 int rc = 0; 1168 1169 /* do inband token exchange */ 1170 rc = smc_clc_send_proposal(smc, ini); 1171 if (rc) 1172 return rc; 1173 /* receive SMC Accept CLC message */ 1174 return smc_clc_wait_msg(smc, aclc, SMC_CLC_MAX_ACCEPT_LEN, 1175 SMC_CLC_ACCEPT, CLC_WAIT_TIME); 1176 } 1177 1178 void smc_fill_gid_list(struct smc_link_group *lgr, 1179 struct smc_gidlist *gidlist, 1180 struct smc_ib_device *known_dev, u8 *known_gid) 1181 { 1182 struct smc_init_info *alt_ini = NULL; 1183 1184 memset(gidlist, 0, sizeof(*gidlist)); 1185 memcpy(gidlist->list[gidlist->len++], known_gid, SMC_GID_SIZE); 1186 1187 alt_ini = kzalloc(sizeof(*alt_ini), GFP_KERNEL); 1188 if (!alt_ini) 1189 goto out; 1190 1191 alt_ini->vlan_id = lgr->vlan_id; 1192 alt_ini->check_smcrv2 = true; 1193 alt_ini->smcrv2.saddr = lgr->saddr; 1194 smc_pnet_find_alt_roce(lgr, alt_ini, known_dev); 1195 1196 if (!alt_ini->smcrv2.ib_dev_v2) 1197 goto out; 1198 1199 memcpy(gidlist->list[gidlist->len++], alt_ini->smcrv2.ib_gid_v2, 1200 SMC_GID_SIZE); 1201 1202 out: 1203 kfree(alt_ini); 1204 } 1205 1206 static int smc_connect_rdma_v2_prepare(struct smc_sock *smc, 1207 struct smc_clc_msg_accept_confirm *aclc, 1208 struct smc_init_info *ini) 1209 { 1210 struct smc_clc_first_contact_ext *fce = 1211 smc_get_clc_first_contact_ext(aclc, false); 1212 struct net *net = sock_net(&smc->sk); 1213 int rc; 1214 1215 if (!ini->first_contact_peer || aclc->hdr.version == SMC_V1) 1216 return 0; 1217 1218 if (fce->v2_direct) { 1219 memcpy(ini->smcrv2.nexthop_mac, &aclc->r0.lcl.mac, ETH_ALEN); 1220 ini->smcrv2.uses_gateway = false; 1221 } else { 1222 if (smc_ib_find_route(net, smc->clcsock->sk->sk_rcv_saddr, 1223 smc_ib_gid_to_ipv4(aclc->r0.lcl.gid), 1224 ini->smcrv2.nexthop_mac, 1225 &ini->smcrv2.uses_gateway)) 1226 return SMC_CLC_DECL_NOROUTE; 1227 if (!ini->smcrv2.uses_gateway) { 1228 /* mismatch: peer claims indirect, but its direct */ 1229 return SMC_CLC_DECL_NOINDIRECT; 1230 } 1231 } 1232 1233 ini->release_nr = fce->release; 1234 rc = smc_clc_clnt_v2x_features_validate(fce, ini); 1235 if (rc) 1236 return rc; 1237 1238 return 0; 1239 } 1240 1241 /* setup for RDMA connection of client */ 1242 static int smc_connect_rdma(struct smc_sock *smc, 1243 struct smc_clc_msg_accept_confirm *aclc, 1244 struct smc_init_info *ini) 1245 { 1246 int i, reason_code = 0; 1247 struct smc_link *link; 1248 u8 *eid = NULL; 1249 1250 ini->is_smcd = false; 1251 ini->ib_clcqpn = ntoh24(aclc->r0.qpn); 1252 ini->first_contact_peer = aclc->hdr.typev2 & SMC_FIRST_CONTACT_MASK; 1253 memcpy(ini->peer_systemid, aclc->r0.lcl.id_for_peer, SMC_SYSTEMID_LEN); 1254 memcpy(ini->peer_gid, aclc->r0.lcl.gid, SMC_GID_SIZE); 1255 memcpy(ini->peer_mac, aclc->r0.lcl.mac, ETH_ALEN); 1256 ini->max_conns = SMC_CONN_PER_LGR_MAX; 1257 ini->max_links = SMC_LINKS_ADD_LNK_MAX; 1258 1259 reason_code = smc_connect_rdma_v2_prepare(smc, aclc, ini); 1260 if (reason_code) 1261 return reason_code; 1262 1263 mutex_lock(&smc_client_lgr_pending); 1264 reason_code = smc_conn_create(smc, ini); 1265 if (reason_code) { 1266 mutex_unlock(&smc_client_lgr_pending); 1267 return reason_code; 1268 } 1269 1270 smc_conn_save_peer_info(smc, aclc); 1271 1272 if (ini->first_contact_local) { 1273 link = smc->conn.lnk; 1274 } else { 1275 /* set link that was assigned by server */ 1276 link = NULL; 1277 for (i = 0; i < SMC_LINKS_PER_LGR_MAX; i++) { 1278 struct smc_link *l = &smc->conn.lgr->lnk[i]; 1279 1280 if (l->peer_qpn == ntoh24(aclc->r0.qpn) && 1281 !memcmp(l->peer_gid, &aclc->r0.lcl.gid, 1282 SMC_GID_SIZE) && 1283 (aclc->hdr.version > SMC_V1 || 1284 !memcmp(l->peer_mac, &aclc->r0.lcl.mac, 1285 sizeof(l->peer_mac)))) { 1286 link = l; 1287 break; 1288 } 1289 } 1290 if (!link) { 1291 reason_code = SMC_CLC_DECL_NOSRVLINK; 1292 goto connect_abort; 1293 } 1294 smc_switch_link_and_count(&smc->conn, link); 1295 } 1296 1297 /* create send buffer and rmb */ 1298 if (smc_buf_create(smc, false)) { 1299 reason_code = SMC_CLC_DECL_MEM; 1300 goto connect_abort; 1301 } 1302 1303 if (ini->first_contact_local) 1304 smc_link_save_peer_info(link, aclc, ini); 1305 1306 if (smc_rmb_rtoken_handling(&smc->conn, link, aclc)) { 1307 reason_code = SMC_CLC_DECL_ERR_RTOK; 1308 goto connect_abort; 1309 } 1310 1311 smc_rx_init(smc); 1312 1313 if (ini->first_contact_local) { 1314 if (smc_ib_ready_link(link)) { 1315 reason_code = SMC_CLC_DECL_ERR_RDYLNK; 1316 goto connect_abort; 1317 } 1318 } else { 1319 /* reg sendbufs if they were vzalloced */ 1320 if (smc->conn.sndbuf_desc->is_vm) { 1321 if (smcr_lgr_reg_sndbufs(link, smc->conn.sndbuf_desc)) { 1322 reason_code = SMC_CLC_DECL_ERR_REGBUF; 1323 goto connect_abort; 1324 } 1325 } 1326 if (smcr_lgr_reg_rmbs(link, smc->conn.rmb_desc)) { 1327 reason_code = SMC_CLC_DECL_ERR_REGBUF; 1328 goto connect_abort; 1329 } 1330 } 1331 1332 if (aclc->hdr.version > SMC_V1) { 1333 eid = aclc->r1.eid; 1334 if (ini->first_contact_local) 1335 smc_fill_gid_list(link->lgr, &ini->smcrv2.gidlist, 1336 link->smcibdev, link->gid); 1337 } 1338 1339 reason_code = smc_clc_send_confirm(smc, ini->first_contact_local, 1340 aclc->hdr.version, eid, ini); 1341 if (reason_code) 1342 goto connect_abort; 1343 1344 smc_tx_init(smc); 1345 1346 if (ini->first_contact_local) { 1347 /* QP confirmation over RoCE fabric */ 1348 smc_llc_flow_initiate(link->lgr, SMC_LLC_FLOW_ADD_LINK); 1349 reason_code = smcr_clnt_conf_first_link(smc); 1350 smc_llc_flow_stop(link->lgr, &link->lgr->llc_flow_lcl); 1351 if (reason_code) 1352 goto connect_abort; 1353 } 1354 mutex_unlock(&smc_client_lgr_pending); 1355 1356 smc_copy_sock_settings_to_clc(smc); 1357 smc->connect_nonblock = 0; 1358 if (smc->sk.sk_state == SMC_INIT) 1359 smc->sk.sk_state = SMC_ACTIVE; 1360 1361 return 0; 1362 connect_abort: 1363 smc_conn_abort(smc, ini->first_contact_local); 1364 mutex_unlock(&smc_client_lgr_pending); 1365 smc->connect_nonblock = 0; 1366 1367 return reason_code; 1368 } 1369 1370 /* The server has chosen one of the proposed ISM devices for the communication. 1371 * Determine from the CHID of the received CLC ACCEPT the ISM device chosen. 1372 */ 1373 static int 1374 smc_v2_determine_accepted_chid(struct smc_clc_msg_accept_confirm *aclc, 1375 struct smc_init_info *ini) 1376 { 1377 int i; 1378 1379 for (i = 0; i < ini->ism_offered_cnt + 1; i++) { 1380 if (ini->ism_chid[i] == ntohs(aclc->d1.chid)) { 1381 ini->ism_selected = i; 1382 return 0; 1383 } 1384 } 1385 1386 return -EPROTO; 1387 } 1388 1389 /* setup for ISM connection of client */ 1390 static int smc_connect_ism(struct smc_sock *smc, 1391 struct smc_clc_msg_accept_confirm *aclc, 1392 struct smc_init_info *ini) 1393 { 1394 u8 *eid = NULL; 1395 int rc = 0; 1396 1397 ini->is_smcd = true; 1398 ini->first_contact_peer = aclc->hdr.typev2 & SMC_FIRST_CONTACT_MASK; 1399 1400 if (aclc->hdr.version == SMC_V2) { 1401 if (ini->first_contact_peer) { 1402 struct smc_clc_first_contact_ext *fce = 1403 smc_get_clc_first_contact_ext(aclc, true); 1404 1405 ini->release_nr = fce->release; 1406 rc = smc_clc_clnt_v2x_features_validate(fce, ini); 1407 if (rc) 1408 return rc; 1409 } 1410 1411 rc = smc_v2_determine_accepted_chid(aclc, ini); 1412 if (rc) 1413 return rc; 1414 1415 if (__smc_ism_is_emulated(ini->ism_chid[ini->ism_selected])) 1416 ini->ism_peer_gid[ini->ism_selected].gid_ext = 1417 ntohll(aclc->d1.gid_ext); 1418 /* for non-Emulated-ISM devices, peer gid_ext remains 0. */ 1419 } 1420 ini->ism_peer_gid[ini->ism_selected].gid = ntohll(aclc->d0.gid); 1421 1422 /* there is only one lgr role for SMC-D; use server lock */ 1423 mutex_lock(&smc_server_lgr_pending); 1424 rc = smc_conn_create(smc, ini); 1425 if (rc) { 1426 mutex_unlock(&smc_server_lgr_pending); 1427 return rc; 1428 } 1429 1430 /* Create send and receive buffers */ 1431 rc = smc_buf_create(smc, true); 1432 if (rc) { 1433 rc = (rc == -ENOSPC) ? SMC_CLC_DECL_MAX_DMB : SMC_CLC_DECL_MEM; 1434 goto connect_abort; 1435 } 1436 1437 smc_conn_save_peer_info(smc, aclc); 1438 1439 if (smc_ism_support_dmb_nocopy(smc->conn.lgr->smcd)) { 1440 rc = smcd_buf_attach(smc); 1441 if (rc) { 1442 rc = SMC_CLC_DECL_MEM; /* try to fallback */ 1443 goto connect_abort; 1444 } 1445 } 1446 smc_rx_init(smc); 1447 smc_tx_init(smc); 1448 1449 if (aclc->hdr.version > SMC_V1) 1450 eid = aclc->d1.eid; 1451 1452 rc = smc_clc_send_confirm(smc, ini->first_contact_local, 1453 aclc->hdr.version, eid, ini); 1454 if (rc) 1455 goto connect_abort; 1456 mutex_unlock(&smc_server_lgr_pending); 1457 1458 smc_copy_sock_settings_to_clc(smc); 1459 smc->connect_nonblock = 0; 1460 if (smc->sk.sk_state == SMC_INIT) 1461 smc->sk.sk_state = SMC_ACTIVE; 1462 1463 return 0; 1464 connect_abort: 1465 smc_conn_abort(smc, ini->first_contact_local); 1466 mutex_unlock(&smc_server_lgr_pending); 1467 smc->connect_nonblock = 0; 1468 1469 return rc; 1470 } 1471 1472 /* check if received accept type and version matches a proposed one */ 1473 static int smc_connect_check_aclc(struct smc_init_info *ini, 1474 struct smc_clc_msg_accept_confirm *aclc) 1475 { 1476 if (aclc->hdr.version >= SMC_V2) { 1477 if ((aclc->hdr.typev1 == SMC_TYPE_R && 1478 !smcr_indicated(ini->smc_type_v2)) || 1479 (aclc->hdr.typev1 == SMC_TYPE_D && 1480 !smcd_indicated(ini->smc_type_v2))) 1481 return SMC_CLC_DECL_MODEUNSUPP; 1482 } else { 1483 if ((aclc->hdr.typev1 == SMC_TYPE_R && 1484 !smcr_indicated(ini->smc_type_v1)) || 1485 (aclc->hdr.typev1 == SMC_TYPE_D && 1486 !smcd_indicated(ini->smc_type_v1))) 1487 return SMC_CLC_DECL_MODEUNSUPP; 1488 } 1489 1490 return 0; 1491 } 1492 1493 /* perform steps before actually connecting */ 1494 static int __smc_connect(struct smc_sock *smc) 1495 { 1496 u8 version = smc_ism_is_v2_capable() ? SMC_V2 : SMC_V1; 1497 struct smc_clc_msg_accept_confirm *aclc; 1498 struct smc_init_info *ini = NULL; 1499 u8 *buf = NULL; 1500 int rc = 0; 1501 1502 if (smc->use_fallback) 1503 return smc_connect_fallback(smc, smc->fallback_rsn); 1504 1505 /* if peer has not signalled SMC-capability, fall back */ 1506 if (!tcp_sk(smc->clcsock->sk)->syn_smc) 1507 return smc_connect_fallback(smc, SMC_CLC_DECL_PEERNOSMC); 1508 1509 /* IPSec connections opt out of SMC optimizations */ 1510 if (using_ipsec(smc)) 1511 return smc_connect_decline_fallback(smc, SMC_CLC_DECL_IPSEC, 1512 version); 1513 1514 ini = kzalloc(sizeof(*ini), GFP_KERNEL); 1515 if (!ini) 1516 return smc_connect_decline_fallback(smc, SMC_CLC_DECL_MEM, 1517 version); 1518 1519 ini->smcd_version = SMC_V1 | SMC_V2; 1520 ini->smcr_version = SMC_V1 | SMC_V2; 1521 ini->smc_type_v1 = SMC_TYPE_B; 1522 ini->smc_type_v2 = SMC_TYPE_B; 1523 1524 /* get vlan id from IP device */ 1525 if (smc_vlan_by_tcpsk(smc->clcsock, ini)) { 1526 ini->smcd_version &= ~SMC_V1; 1527 ini->smcr_version = 0; 1528 ini->smc_type_v1 = SMC_TYPE_N; 1529 } 1530 1531 rc = smc_find_proposal_devices(smc, ini); 1532 if (rc) 1533 goto fallback; 1534 1535 buf = kzalloc(SMC_CLC_MAX_ACCEPT_LEN, GFP_KERNEL); 1536 if (!buf) { 1537 rc = SMC_CLC_DECL_MEM; 1538 goto fallback; 1539 } 1540 aclc = (struct smc_clc_msg_accept_confirm *)buf; 1541 1542 /* perform CLC handshake */ 1543 rc = smc_connect_clc(smc, aclc, ini); 1544 if (rc) { 1545 /* -EAGAIN on timeout, see tcp_recvmsg() */ 1546 if (rc == -EAGAIN) { 1547 rc = -ETIMEDOUT; 1548 smc->sk.sk_err = ETIMEDOUT; 1549 } 1550 goto vlan_cleanup; 1551 } 1552 1553 /* check if smc modes and versions of CLC proposal and accept match */ 1554 rc = smc_connect_check_aclc(ini, aclc); 1555 version = aclc->hdr.version == SMC_V1 ? SMC_V1 : SMC_V2; 1556 if (rc) 1557 goto vlan_cleanup; 1558 1559 /* depending on previous steps, connect using rdma or ism */ 1560 if (aclc->hdr.typev1 == SMC_TYPE_R) { 1561 ini->smcr_version = version; 1562 rc = smc_connect_rdma(smc, aclc, ini); 1563 } else if (aclc->hdr.typev1 == SMC_TYPE_D) { 1564 ini->smcd_version = version; 1565 rc = smc_connect_ism(smc, aclc, ini); 1566 } 1567 if (rc) 1568 goto vlan_cleanup; 1569 1570 SMC_STAT_CLNT_SUCC_INC(sock_net(smc->clcsock->sk), aclc); 1571 smc_connect_ism_vlan_cleanup(smc, ini); 1572 kfree(buf); 1573 kfree(ini); 1574 return 0; 1575 1576 vlan_cleanup: 1577 smc_connect_ism_vlan_cleanup(smc, ini); 1578 kfree(buf); 1579 fallback: 1580 kfree(ini); 1581 return smc_connect_decline_fallback(smc, rc, version); 1582 } 1583 1584 static void smc_connect_work(struct work_struct *work) 1585 { 1586 struct smc_sock *smc = container_of(work, struct smc_sock, 1587 connect_work); 1588 long timeo = smc->sk.sk_sndtimeo; 1589 int rc = 0; 1590 1591 if (!timeo) 1592 timeo = MAX_SCHEDULE_TIMEOUT; 1593 lock_sock(smc->clcsock->sk); 1594 if (smc->clcsock->sk->sk_err) { 1595 smc->sk.sk_err = smc->clcsock->sk->sk_err; 1596 } else if ((1 << smc->clcsock->sk->sk_state) & 1597 (TCPF_SYN_SENT | TCPF_SYN_RECV)) { 1598 rc = sk_stream_wait_connect(smc->clcsock->sk, &timeo); 1599 if ((rc == -EPIPE) && 1600 ((1 << smc->clcsock->sk->sk_state) & 1601 (TCPF_ESTABLISHED | TCPF_CLOSE_WAIT))) 1602 rc = 0; 1603 } 1604 release_sock(smc->clcsock->sk); 1605 lock_sock(&smc->sk); 1606 if (rc != 0 || smc->sk.sk_err) { 1607 smc->sk.sk_state = SMC_CLOSED; 1608 if (rc == -EPIPE || rc == -EAGAIN) 1609 smc->sk.sk_err = EPIPE; 1610 else if (rc == -ECONNREFUSED) 1611 smc->sk.sk_err = ECONNREFUSED; 1612 else if (signal_pending(current)) 1613 smc->sk.sk_err = -sock_intr_errno(timeo); 1614 sock_put(&smc->sk); /* passive closing */ 1615 goto out; 1616 } 1617 1618 rc = __smc_connect(smc); 1619 if (rc < 0) 1620 smc->sk.sk_err = -rc; 1621 1622 out: 1623 if (!sock_flag(&smc->sk, SOCK_DEAD)) { 1624 if (smc->sk.sk_err) { 1625 smc->sk.sk_state_change(&smc->sk); 1626 } else { /* allow polling before and after fallback decision */ 1627 smc->clcsock->sk->sk_write_space(smc->clcsock->sk); 1628 smc->sk.sk_write_space(&smc->sk); 1629 } 1630 } 1631 release_sock(&smc->sk); 1632 } 1633 1634 int smc_connect(struct socket *sock, struct sockaddr *addr, 1635 int alen, int flags) 1636 { 1637 struct sock *sk = sock->sk; 1638 struct smc_sock *smc; 1639 int rc = -EINVAL; 1640 1641 smc = smc_sk(sk); 1642 1643 /* separate smc parameter checking to be safe */ 1644 if (alen < sizeof(addr->sa_family)) 1645 goto out_err; 1646 if (addr->sa_family != AF_INET && addr->sa_family != AF_INET6) 1647 goto out_err; 1648 1649 lock_sock(sk); 1650 switch (sock->state) { 1651 default: 1652 rc = -EINVAL; 1653 goto out; 1654 case SS_CONNECTED: 1655 rc = sk->sk_state == SMC_ACTIVE ? -EISCONN : -EINVAL; 1656 goto out; 1657 case SS_CONNECTING: 1658 if (sk->sk_state == SMC_ACTIVE) 1659 goto connected; 1660 break; 1661 case SS_UNCONNECTED: 1662 sock->state = SS_CONNECTING; 1663 break; 1664 } 1665 1666 switch (sk->sk_state) { 1667 default: 1668 goto out; 1669 case SMC_CLOSED: 1670 rc = sock_error(sk) ? : -ECONNABORTED; 1671 sock->state = SS_UNCONNECTED; 1672 goto out; 1673 case SMC_ACTIVE: 1674 rc = -EISCONN; 1675 goto out; 1676 case SMC_INIT: 1677 break; 1678 } 1679 1680 smc_copy_sock_settings_to_clc(smc); 1681 tcp_sk(smc->clcsock->sk)->syn_smc = 1; 1682 if (smc->connect_nonblock) { 1683 rc = -EALREADY; 1684 goto out; 1685 } 1686 rc = kernel_connect(smc->clcsock, addr, alen, flags); 1687 if (rc && rc != -EINPROGRESS) 1688 goto out; 1689 1690 if (smc->use_fallback) { 1691 sock->state = rc ? SS_CONNECTING : SS_CONNECTED; 1692 goto out; 1693 } 1694 sock_hold(&smc->sk); /* sock put in passive closing */ 1695 if (flags & O_NONBLOCK) { 1696 if (queue_work(smc_hs_wq, &smc->connect_work)) 1697 smc->connect_nonblock = 1; 1698 rc = -EINPROGRESS; 1699 goto out; 1700 } else { 1701 rc = __smc_connect(smc); 1702 if (rc < 0) 1703 goto out; 1704 } 1705 1706 connected: 1707 rc = 0; 1708 sock->state = SS_CONNECTED; 1709 out: 1710 release_sock(sk); 1711 out_err: 1712 return rc; 1713 } 1714 1715 static int smc_clcsock_accept(struct smc_sock *lsmc, struct smc_sock **new_smc) 1716 { 1717 struct socket *new_clcsock = NULL; 1718 struct sock *lsk = &lsmc->sk; 1719 struct sock *new_sk; 1720 int rc = -EINVAL; 1721 1722 release_sock(lsk); 1723 new_sk = smc_sock_alloc(sock_net(lsk), NULL, lsk->sk_protocol); 1724 if (!new_sk) { 1725 rc = -ENOMEM; 1726 lsk->sk_err = ENOMEM; 1727 *new_smc = NULL; 1728 lock_sock(lsk); 1729 goto out; 1730 } 1731 *new_smc = smc_sk(new_sk); 1732 1733 mutex_lock(&lsmc->clcsock_release_lock); 1734 if (lsmc->clcsock) 1735 rc = kernel_accept(lsmc->clcsock, &new_clcsock, SOCK_NONBLOCK); 1736 mutex_unlock(&lsmc->clcsock_release_lock); 1737 lock_sock(lsk); 1738 if (rc < 0 && rc != -EAGAIN) 1739 lsk->sk_err = -rc; 1740 if (rc < 0 || lsk->sk_state == SMC_CLOSED) { 1741 new_sk->sk_prot->unhash(new_sk); 1742 if (new_clcsock) 1743 sock_release(new_clcsock); 1744 new_sk->sk_state = SMC_CLOSED; 1745 smc_sock_set_flag(new_sk, SOCK_DEAD); 1746 sock_put(new_sk); /* final */ 1747 *new_smc = NULL; 1748 goto out; 1749 } 1750 1751 /* new clcsock has inherited the smc listen-specific sk_data_ready 1752 * function; switch it back to the original sk_data_ready function 1753 */ 1754 new_clcsock->sk->sk_data_ready = lsmc->clcsk_data_ready; 1755 1756 /* if new clcsock has also inherited the fallback-specific callback 1757 * functions, switch them back to the original ones. 1758 */ 1759 if (lsmc->use_fallback) { 1760 if (lsmc->clcsk_state_change) 1761 new_clcsock->sk->sk_state_change = lsmc->clcsk_state_change; 1762 if (lsmc->clcsk_write_space) 1763 new_clcsock->sk->sk_write_space = lsmc->clcsk_write_space; 1764 if (lsmc->clcsk_error_report) 1765 new_clcsock->sk->sk_error_report = lsmc->clcsk_error_report; 1766 } 1767 1768 (*new_smc)->clcsock = new_clcsock; 1769 out: 1770 return rc; 1771 } 1772 1773 /* add a just created sock to the accept queue of the listen sock as 1774 * candidate for a following socket accept call from user space 1775 */ 1776 static void smc_accept_enqueue(struct sock *parent, struct sock *sk) 1777 { 1778 struct smc_sock *par = smc_sk(parent); 1779 1780 sock_hold(sk); /* sock_put in smc_accept_unlink () */ 1781 spin_lock(&par->accept_q_lock); 1782 list_add_tail(&smc_sk(sk)->accept_q, &par->accept_q); 1783 spin_unlock(&par->accept_q_lock); 1784 sk_acceptq_added(parent); 1785 } 1786 1787 /* remove a socket from the accept queue of its parental listening socket */ 1788 static void smc_accept_unlink(struct sock *sk) 1789 { 1790 struct smc_sock *par = smc_sk(sk)->listen_smc; 1791 1792 spin_lock(&par->accept_q_lock); 1793 list_del_init(&smc_sk(sk)->accept_q); 1794 spin_unlock(&par->accept_q_lock); 1795 sk_acceptq_removed(&smc_sk(sk)->listen_smc->sk); 1796 sock_put(sk); /* sock_hold in smc_accept_enqueue */ 1797 } 1798 1799 /* remove a sock from the accept queue to bind it to a new socket created 1800 * for a socket accept call from user space 1801 */ 1802 struct sock *smc_accept_dequeue(struct sock *parent, 1803 struct socket *new_sock) 1804 { 1805 struct smc_sock *isk, *n; 1806 struct sock *new_sk; 1807 1808 list_for_each_entry_safe(isk, n, &smc_sk(parent)->accept_q, accept_q) { 1809 new_sk = (struct sock *)isk; 1810 1811 smc_accept_unlink(new_sk); 1812 if (new_sk->sk_state == SMC_CLOSED) { 1813 new_sk->sk_prot->unhash(new_sk); 1814 if (isk->clcsock) { 1815 sock_release(isk->clcsock); 1816 isk->clcsock = NULL; 1817 } 1818 sock_put(new_sk); /* final */ 1819 continue; 1820 } 1821 if (new_sock) { 1822 sock_graft(new_sk, new_sock); 1823 new_sock->state = SS_CONNECTED; 1824 if (isk->use_fallback) { 1825 smc_sk(new_sk)->clcsock->file = new_sock->file; 1826 isk->clcsock->file->private_data = isk->clcsock; 1827 } 1828 } 1829 return new_sk; 1830 } 1831 return NULL; 1832 } 1833 1834 /* clean up for a created but never accepted sock */ 1835 void smc_close_non_accepted(struct sock *sk) 1836 { 1837 struct smc_sock *smc = smc_sk(sk); 1838 1839 sock_hold(sk); /* sock_put below */ 1840 lock_sock(sk); 1841 if (!sk->sk_lingertime) 1842 /* wait for peer closing */ 1843 WRITE_ONCE(sk->sk_lingertime, SMC_MAX_STREAM_WAIT_TIMEOUT); 1844 __smc_release(smc); 1845 release_sock(sk); 1846 sock_put(sk); /* sock_hold above */ 1847 sock_put(sk); /* final sock_put */ 1848 } 1849 1850 static int smcr_serv_conf_first_link(struct smc_sock *smc) 1851 { 1852 struct smc_link *link = smc->conn.lnk; 1853 struct smc_llc_qentry *qentry; 1854 int rc; 1855 1856 /* reg the sndbuf if it was vzalloced*/ 1857 if (smc->conn.sndbuf_desc->is_vm) { 1858 if (smcr_link_reg_buf(link, smc->conn.sndbuf_desc)) 1859 return SMC_CLC_DECL_ERR_REGBUF; 1860 } 1861 1862 /* reg the rmb */ 1863 if (smcr_link_reg_buf(link, smc->conn.rmb_desc)) 1864 return SMC_CLC_DECL_ERR_REGBUF; 1865 1866 /* send CONFIRM LINK request to client over the RoCE fabric */ 1867 rc = smc_llc_send_confirm_link(link, SMC_LLC_REQ); 1868 if (rc < 0) 1869 return SMC_CLC_DECL_TIMEOUT_CL; 1870 1871 /* receive CONFIRM LINK response from client over the RoCE fabric */ 1872 qentry = smc_llc_wait(link->lgr, link, SMC_LLC_WAIT_TIME, 1873 SMC_LLC_CONFIRM_LINK); 1874 if (!qentry) { 1875 struct smc_clc_msg_decline dclc; 1876 1877 rc = smc_clc_wait_msg(smc, &dclc, sizeof(dclc), 1878 SMC_CLC_DECLINE, CLC_WAIT_TIME_SHORT); 1879 return rc == -EAGAIN ? SMC_CLC_DECL_TIMEOUT_CL : rc; 1880 } 1881 smc_llc_save_peer_uid(qentry); 1882 rc = smc_llc_eval_conf_link(qentry, SMC_LLC_RESP); 1883 smc_llc_flow_qentry_del(&link->lgr->llc_flow_lcl); 1884 if (rc) 1885 return SMC_CLC_DECL_RMBE_EC; 1886 1887 /* confirm_rkey is implicit on 1st contact */ 1888 smc->conn.rmb_desc->is_conf_rkey = true; 1889 1890 smc_llc_link_active(link); 1891 smcr_lgr_set_type(link->lgr, SMC_LGR_SINGLE); 1892 1893 if (link->lgr->max_links > 1) { 1894 down_write(&link->lgr->llc_conf_mutex); 1895 /* initial contact - try to establish second link */ 1896 smc_llc_srv_add_link(link, NULL); 1897 up_write(&link->lgr->llc_conf_mutex); 1898 } 1899 return 0; 1900 } 1901 1902 /* listen worker: finish */ 1903 static void smc_listen_out(struct smc_sock *new_smc) 1904 { 1905 struct smc_sock *lsmc = new_smc->listen_smc; 1906 struct sock *newsmcsk = &new_smc->sk; 1907 1908 if (tcp_sk(new_smc->clcsock->sk)->syn_smc) 1909 atomic_dec(&lsmc->queued_smc_hs); 1910 1911 release_sock(newsmcsk); /* lock in smc_listen_work() */ 1912 if (lsmc->sk.sk_state == SMC_LISTEN) { 1913 lock_sock_nested(&lsmc->sk, SINGLE_DEPTH_NESTING); 1914 smc_accept_enqueue(&lsmc->sk, newsmcsk); 1915 release_sock(&lsmc->sk); 1916 } else { /* no longer listening */ 1917 smc_close_non_accepted(newsmcsk); 1918 } 1919 1920 /* Wake up accept */ 1921 lsmc->sk.sk_data_ready(&lsmc->sk); 1922 sock_put(&lsmc->sk); /* sock_hold in smc_tcp_listen_work */ 1923 } 1924 1925 /* listen worker: finish in state connected */ 1926 static void smc_listen_out_connected(struct smc_sock *new_smc) 1927 { 1928 struct sock *newsmcsk = &new_smc->sk; 1929 1930 if (newsmcsk->sk_state == SMC_INIT) 1931 newsmcsk->sk_state = SMC_ACTIVE; 1932 1933 smc_listen_out(new_smc); 1934 } 1935 1936 /* listen worker: finish in error state */ 1937 static void smc_listen_out_err(struct smc_sock *new_smc) 1938 { 1939 struct sock *newsmcsk = &new_smc->sk; 1940 struct net *net = sock_net(newsmcsk); 1941 1942 this_cpu_inc(net->smc.smc_stats->srv_hshake_err_cnt); 1943 if (newsmcsk->sk_state == SMC_INIT) 1944 sock_put(&new_smc->sk); /* passive closing */ 1945 newsmcsk->sk_state = SMC_CLOSED; 1946 1947 smc_listen_out(new_smc); 1948 } 1949 1950 /* listen worker: decline and fall back if possible */ 1951 static void smc_listen_decline(struct smc_sock *new_smc, int reason_code, 1952 int local_first, u8 version) 1953 { 1954 /* RDMA setup failed, switch back to TCP */ 1955 smc_conn_abort(new_smc, local_first); 1956 if (reason_code < 0 || 1957 smc_switch_to_fallback(new_smc, reason_code)) { 1958 /* error, no fallback possible */ 1959 smc_listen_out_err(new_smc); 1960 return; 1961 } 1962 if (reason_code && reason_code != SMC_CLC_DECL_PEERDECL) { 1963 if (smc_clc_send_decline(new_smc, reason_code, version) < 0) { 1964 smc_listen_out_err(new_smc); 1965 return; 1966 } 1967 } 1968 smc_listen_out_connected(new_smc); 1969 } 1970 1971 /* listen worker: version checking */ 1972 static int smc_listen_v2_check(struct smc_sock *new_smc, 1973 struct smc_clc_msg_proposal *pclc, 1974 struct smc_init_info *ini) 1975 { 1976 struct smc_clc_smcd_v2_extension *pclc_smcd_v2_ext; 1977 struct smc_clc_v2_extension *pclc_v2_ext; 1978 int rc = SMC_CLC_DECL_PEERNOSMC; 1979 1980 ini->smc_type_v1 = pclc->hdr.typev1; 1981 ini->smc_type_v2 = pclc->hdr.typev2; 1982 ini->smcd_version = smcd_indicated(ini->smc_type_v1) ? SMC_V1 : 0; 1983 ini->smcr_version = smcr_indicated(ini->smc_type_v1) ? SMC_V1 : 0; 1984 if (pclc->hdr.version > SMC_V1) { 1985 if (smcd_indicated(ini->smc_type_v2)) 1986 ini->smcd_version |= SMC_V2; 1987 if (smcr_indicated(ini->smc_type_v2)) 1988 ini->smcr_version |= SMC_V2; 1989 } 1990 if (!(ini->smcd_version & SMC_V2) && !(ini->smcr_version & SMC_V2)) { 1991 rc = SMC_CLC_DECL_PEERNOSMC; 1992 goto out; 1993 } 1994 pclc_v2_ext = smc_get_clc_v2_ext(pclc); 1995 if (!pclc_v2_ext) { 1996 ini->smcd_version &= ~SMC_V2; 1997 ini->smcr_version &= ~SMC_V2; 1998 rc = SMC_CLC_DECL_NOV2EXT; 1999 goto out; 2000 } 2001 pclc_smcd_v2_ext = smc_get_clc_smcd_v2_ext(pclc_v2_ext); 2002 if (ini->smcd_version & SMC_V2) { 2003 if (!smc_ism_is_v2_capable()) { 2004 ini->smcd_version &= ~SMC_V2; 2005 rc = SMC_CLC_DECL_NOISM2SUPP; 2006 } else if (!pclc_smcd_v2_ext) { 2007 ini->smcd_version &= ~SMC_V2; 2008 rc = SMC_CLC_DECL_NOV2DEXT; 2009 } else if (!pclc_v2_ext->hdr.eid_cnt && 2010 !pclc_v2_ext->hdr.flag.seid) { 2011 ini->smcd_version &= ~SMC_V2; 2012 rc = SMC_CLC_DECL_NOUEID; 2013 } 2014 } 2015 if (ini->smcr_version & SMC_V2) { 2016 if (!pclc_v2_ext->hdr.eid_cnt) { 2017 ini->smcr_version &= ~SMC_V2; 2018 rc = SMC_CLC_DECL_NOUEID; 2019 } 2020 } 2021 2022 ini->release_nr = pclc_v2_ext->hdr.flag.release; 2023 if (pclc_v2_ext->hdr.flag.release > SMC_RELEASE) 2024 ini->release_nr = SMC_RELEASE; 2025 2026 out: 2027 if (!ini->smcd_version && !ini->smcr_version) 2028 return rc; 2029 2030 return 0; 2031 } 2032 2033 /* listen worker: check prefixes */ 2034 static int smc_listen_prfx_check(struct smc_sock *new_smc, 2035 struct smc_clc_msg_proposal *pclc) 2036 { 2037 struct smc_clc_msg_proposal_prefix *pclc_prfx; 2038 struct socket *newclcsock = new_smc->clcsock; 2039 2040 if (pclc->hdr.typev1 == SMC_TYPE_N) 2041 return 0; 2042 pclc_prfx = smc_clc_proposal_get_prefix(pclc); 2043 if (!pclc_prfx) 2044 return -EPROTO; 2045 if (smc_clc_prfx_match(newclcsock, pclc_prfx)) 2046 return SMC_CLC_DECL_DIFFPREFIX; 2047 2048 return 0; 2049 } 2050 2051 /* listen worker: initialize connection and buffers */ 2052 static int smc_listen_rdma_init(struct smc_sock *new_smc, 2053 struct smc_init_info *ini) 2054 { 2055 int rc; 2056 2057 /* allocate connection / link group */ 2058 rc = smc_conn_create(new_smc, ini); 2059 if (rc) 2060 return rc; 2061 2062 /* create send buffer and rmb */ 2063 if (smc_buf_create(new_smc, false)) { 2064 smc_conn_abort(new_smc, ini->first_contact_local); 2065 return SMC_CLC_DECL_MEM; 2066 } 2067 2068 return 0; 2069 } 2070 2071 /* listen worker: initialize connection and buffers for SMC-D */ 2072 static int smc_listen_ism_init(struct smc_sock *new_smc, 2073 struct smc_init_info *ini) 2074 { 2075 int rc; 2076 2077 rc = smc_conn_create(new_smc, ini); 2078 if (rc) 2079 return rc; 2080 2081 /* Create send and receive buffers */ 2082 rc = smc_buf_create(new_smc, true); 2083 if (rc) { 2084 smc_conn_abort(new_smc, ini->first_contact_local); 2085 return (rc == -ENOSPC) ? SMC_CLC_DECL_MAX_DMB : 2086 SMC_CLC_DECL_MEM; 2087 } 2088 2089 return 0; 2090 } 2091 2092 static bool smc_is_already_selected(struct smcd_dev *smcd, 2093 struct smc_init_info *ini, 2094 int matches) 2095 { 2096 int i; 2097 2098 for (i = 0; i < matches; i++) 2099 if (smcd == ini->ism_dev[i]) 2100 return true; 2101 2102 return false; 2103 } 2104 2105 /* check for ISM devices matching proposed ISM devices */ 2106 static void smc_check_ism_v2_match(struct smc_init_info *ini, 2107 u16 proposed_chid, 2108 struct smcd_gid *proposed_gid, 2109 unsigned int *matches) 2110 { 2111 struct smcd_dev *smcd; 2112 2113 list_for_each_entry(smcd, &smcd_dev_list.list, list) { 2114 if (smcd->going_away) 2115 continue; 2116 if (smc_is_already_selected(smcd, ini, *matches)) 2117 continue; 2118 if (smc_ism_get_chid(smcd) == proposed_chid && 2119 !smc_ism_cantalk(proposed_gid, ISM_RESERVED_VLANID, smcd)) { 2120 ini->ism_peer_gid[*matches].gid = proposed_gid->gid; 2121 if (__smc_ism_is_emulated(proposed_chid)) 2122 ini->ism_peer_gid[*matches].gid_ext = 2123 proposed_gid->gid_ext; 2124 /* non-Emulated-ISM's peer gid_ext remains 0. */ 2125 ini->ism_dev[*matches] = smcd; 2126 (*matches)++; 2127 break; 2128 } 2129 } 2130 } 2131 2132 static void smc_find_ism_store_rc(u32 rc, struct smc_init_info *ini) 2133 { 2134 if (!ini->rc) 2135 ini->rc = rc; 2136 } 2137 2138 static void smc_find_ism_v2_device_serv(struct smc_sock *new_smc, 2139 struct smc_clc_msg_proposal *pclc, 2140 struct smc_init_info *ini) 2141 { 2142 struct smc_clc_smcd_v2_extension *smcd_v2_ext; 2143 struct smc_clc_v2_extension *smc_v2_ext; 2144 struct smc_clc_msg_smcd *pclc_smcd; 2145 unsigned int matches = 0; 2146 struct smcd_gid smcd_gid; 2147 u8 smcd_version; 2148 u8 *eid = NULL; 2149 int i, rc; 2150 u16 chid; 2151 2152 if (!(ini->smcd_version & SMC_V2) || !smcd_indicated(ini->smc_type_v2)) 2153 goto not_found; 2154 2155 pclc_smcd = smc_get_clc_msg_smcd(pclc); 2156 smc_v2_ext = smc_get_clc_v2_ext(pclc); 2157 smcd_v2_ext = smc_get_clc_smcd_v2_ext(smc_v2_ext); 2158 if (!pclc_smcd || !smc_v2_ext || !smcd_v2_ext) 2159 goto not_found; 2160 2161 mutex_lock(&smcd_dev_list.mutex); 2162 if (pclc_smcd->ism.chid) { 2163 /* check for ISM device matching proposed native ISM device */ 2164 smcd_gid.gid = ntohll(pclc_smcd->ism.gid); 2165 smcd_gid.gid_ext = 0; 2166 smc_check_ism_v2_match(ini, ntohs(pclc_smcd->ism.chid), 2167 &smcd_gid, &matches); 2168 } 2169 for (i = 0; i < smc_v2_ext->hdr.ism_gid_cnt; i++) { 2170 /* check for ISM devices matching proposed non-native ISM 2171 * devices 2172 */ 2173 smcd_gid.gid = ntohll(smcd_v2_ext->gidchid[i].gid); 2174 smcd_gid.gid_ext = 0; 2175 chid = ntohs(smcd_v2_ext->gidchid[i].chid); 2176 if (__smc_ism_is_emulated(chid)) { 2177 if ((i + 1) == smc_v2_ext->hdr.ism_gid_cnt || 2178 chid != ntohs(smcd_v2_ext->gidchid[i + 1].chid)) 2179 /* each Emulated-ISM device takes two GID-CHID 2180 * entries and CHID of the second entry repeats 2181 * that of the first entry. 2182 * 2183 * So check if the next GID-CHID entry exists 2184 * and both two entries' CHIDs are the same. 2185 */ 2186 continue; 2187 smcd_gid.gid_ext = 2188 ntohll(smcd_v2_ext->gidchid[++i].gid); 2189 } 2190 smc_check_ism_v2_match(ini, chid, &smcd_gid, &matches); 2191 } 2192 mutex_unlock(&smcd_dev_list.mutex); 2193 2194 if (!ini->ism_dev[0]) { 2195 smc_find_ism_store_rc(SMC_CLC_DECL_NOSMCD2DEV, ini); 2196 goto not_found; 2197 } 2198 2199 smc_ism_get_system_eid(&eid); 2200 if (!smc_clc_match_eid(ini->negotiated_eid, smc_v2_ext, 2201 smcd_v2_ext->system_eid, eid)) 2202 goto not_found; 2203 2204 /* separate - outside the smcd_dev_list.lock */ 2205 smcd_version = ini->smcd_version; 2206 for (i = 0; i < matches; i++) { 2207 ini->smcd_version = SMC_V2; 2208 ini->is_smcd = true; 2209 ini->ism_selected = i; 2210 rc = smc_listen_ism_init(new_smc, ini); 2211 if (rc) { 2212 smc_find_ism_store_rc(rc, ini); 2213 /* try next active ISM device */ 2214 continue; 2215 } 2216 return; /* matching and usable V2 ISM device found */ 2217 } 2218 /* no V2 ISM device could be initialized */ 2219 ini->smcd_version = smcd_version; /* restore original value */ 2220 ini->negotiated_eid[0] = 0; 2221 2222 not_found: 2223 ini->smcd_version &= ~SMC_V2; 2224 ini->ism_dev[0] = NULL; 2225 ini->is_smcd = false; 2226 } 2227 2228 static void smc_find_ism_v1_device_serv(struct smc_sock *new_smc, 2229 struct smc_clc_msg_proposal *pclc, 2230 struct smc_init_info *ini) 2231 { 2232 struct smc_clc_msg_smcd *pclc_smcd = smc_get_clc_msg_smcd(pclc); 2233 int rc = 0; 2234 2235 /* check if ISM V1 is available */ 2236 if (!(ini->smcd_version & SMC_V1) || 2237 !smcd_indicated(ini->smc_type_v1) || 2238 !pclc_smcd) 2239 goto not_found; 2240 ini->is_smcd = true; /* prepare ISM check */ 2241 ini->ism_peer_gid[0].gid = ntohll(pclc_smcd->ism.gid); 2242 ini->ism_peer_gid[0].gid_ext = 0; 2243 rc = smc_find_ism_device(new_smc, ini); 2244 if (rc) 2245 goto not_found; 2246 ini->ism_selected = 0; 2247 rc = smc_listen_ism_init(new_smc, ini); 2248 if (!rc) 2249 return; /* V1 ISM device found */ 2250 2251 not_found: 2252 smc_find_ism_store_rc(rc, ini); 2253 ini->smcd_version &= ~SMC_V1; 2254 ini->ism_dev[0] = NULL; 2255 ini->is_smcd = false; 2256 } 2257 2258 /* listen worker: register buffers */ 2259 static int smc_listen_rdma_reg(struct smc_sock *new_smc, bool local_first) 2260 { 2261 struct smc_connection *conn = &new_smc->conn; 2262 2263 if (!local_first) { 2264 /* reg sendbufs if they were vzalloced */ 2265 if (conn->sndbuf_desc->is_vm) { 2266 if (smcr_lgr_reg_sndbufs(conn->lnk, 2267 conn->sndbuf_desc)) 2268 return SMC_CLC_DECL_ERR_REGBUF; 2269 } 2270 if (smcr_lgr_reg_rmbs(conn->lnk, conn->rmb_desc)) 2271 return SMC_CLC_DECL_ERR_REGBUF; 2272 } 2273 2274 return 0; 2275 } 2276 2277 static void smc_find_rdma_v2_device_serv(struct smc_sock *new_smc, 2278 struct smc_clc_msg_proposal *pclc, 2279 struct smc_init_info *ini) 2280 { 2281 struct smc_clc_v2_extension *smc_v2_ext; 2282 u8 smcr_version; 2283 int rc; 2284 2285 if (!(ini->smcr_version & SMC_V2) || !smcr_indicated(ini->smc_type_v2)) 2286 goto not_found; 2287 2288 smc_v2_ext = smc_get_clc_v2_ext(pclc); 2289 if (!smc_v2_ext || 2290 !smc_clc_match_eid(ini->negotiated_eid, smc_v2_ext, NULL, NULL)) 2291 goto not_found; 2292 2293 /* prepare RDMA check */ 2294 memcpy(ini->peer_systemid, pclc->lcl.id_for_peer, SMC_SYSTEMID_LEN); 2295 memcpy(ini->peer_gid, smc_v2_ext->roce, SMC_GID_SIZE); 2296 memcpy(ini->peer_mac, pclc->lcl.mac, ETH_ALEN); 2297 ini->check_smcrv2 = true; 2298 ini->smcrv2.clc_sk = new_smc->clcsock->sk; 2299 ini->smcrv2.saddr = new_smc->clcsock->sk->sk_rcv_saddr; 2300 ini->smcrv2.daddr = smc_ib_gid_to_ipv4(smc_v2_ext->roce); 2301 rc = smc_find_rdma_device(new_smc, ini); 2302 if (rc) { 2303 smc_find_ism_store_rc(rc, ini); 2304 goto not_found; 2305 } 2306 if (!ini->smcrv2.uses_gateway) 2307 memcpy(ini->smcrv2.nexthop_mac, pclc->lcl.mac, ETH_ALEN); 2308 2309 smcr_version = ini->smcr_version; 2310 ini->smcr_version = SMC_V2; 2311 rc = smc_listen_rdma_init(new_smc, ini); 2312 if (!rc) { 2313 rc = smc_listen_rdma_reg(new_smc, ini->first_contact_local); 2314 if (rc) 2315 smc_conn_abort(new_smc, ini->first_contact_local); 2316 } 2317 if (!rc) 2318 return; 2319 ini->smcr_version = smcr_version; 2320 smc_find_ism_store_rc(rc, ini); 2321 2322 not_found: 2323 ini->smcr_version &= ~SMC_V2; 2324 ini->smcrv2.ib_dev_v2 = NULL; 2325 ini->check_smcrv2 = false; 2326 } 2327 2328 static int smc_find_rdma_v1_device_serv(struct smc_sock *new_smc, 2329 struct smc_clc_msg_proposal *pclc, 2330 struct smc_init_info *ini) 2331 { 2332 int rc; 2333 2334 if (!(ini->smcr_version & SMC_V1) || !smcr_indicated(ini->smc_type_v1)) 2335 return SMC_CLC_DECL_NOSMCDEV; 2336 2337 /* prepare RDMA check */ 2338 memcpy(ini->peer_systemid, pclc->lcl.id_for_peer, SMC_SYSTEMID_LEN); 2339 memcpy(ini->peer_gid, pclc->lcl.gid, SMC_GID_SIZE); 2340 memcpy(ini->peer_mac, pclc->lcl.mac, ETH_ALEN); 2341 rc = smc_find_rdma_device(new_smc, ini); 2342 if (rc) { 2343 /* no RDMA device found */ 2344 return SMC_CLC_DECL_NOSMCDEV; 2345 } 2346 rc = smc_listen_rdma_init(new_smc, ini); 2347 if (rc) 2348 return rc; 2349 return smc_listen_rdma_reg(new_smc, ini->first_contact_local); 2350 } 2351 2352 /* determine the local device matching to proposal */ 2353 static int smc_listen_find_device(struct smc_sock *new_smc, 2354 struct smc_clc_msg_proposal *pclc, 2355 struct smc_init_info *ini) 2356 { 2357 int prfx_rc; 2358 2359 /* check for ISM device matching V2 proposed device */ 2360 smc_find_ism_v2_device_serv(new_smc, pclc, ini); 2361 if (ini->ism_dev[0]) 2362 return 0; 2363 2364 /* check for matching IP prefix and subnet length (V1) */ 2365 prfx_rc = smc_listen_prfx_check(new_smc, pclc); 2366 if (prfx_rc) 2367 smc_find_ism_store_rc(prfx_rc, ini); 2368 2369 /* get vlan id from IP device */ 2370 if (smc_vlan_by_tcpsk(new_smc->clcsock, ini)) 2371 return ini->rc ?: SMC_CLC_DECL_GETVLANERR; 2372 2373 /* check for ISM device matching V1 proposed device */ 2374 if (!prfx_rc) 2375 smc_find_ism_v1_device_serv(new_smc, pclc, ini); 2376 if (ini->ism_dev[0]) 2377 return 0; 2378 2379 if (!smcr_indicated(pclc->hdr.typev1) && 2380 !smcr_indicated(pclc->hdr.typev2)) 2381 /* skip RDMA and decline */ 2382 return ini->rc ?: SMC_CLC_DECL_NOSMCDDEV; 2383 2384 /* check if RDMA V2 is available */ 2385 smc_find_rdma_v2_device_serv(new_smc, pclc, ini); 2386 if (ini->smcrv2.ib_dev_v2) 2387 return 0; 2388 2389 /* check if RDMA V1 is available */ 2390 if (!prfx_rc) { 2391 int rc; 2392 2393 rc = smc_find_rdma_v1_device_serv(new_smc, pclc, ini); 2394 smc_find_ism_store_rc(rc, ini); 2395 return (!rc) ? 0 : ini->rc; 2396 } 2397 return prfx_rc; 2398 } 2399 2400 /* listen worker: finish RDMA setup */ 2401 static int smc_listen_rdma_finish(struct smc_sock *new_smc, 2402 struct smc_clc_msg_accept_confirm *cclc, 2403 bool local_first, 2404 struct smc_init_info *ini) 2405 { 2406 struct smc_link *link = new_smc->conn.lnk; 2407 int reason_code = 0; 2408 2409 if (local_first) 2410 smc_link_save_peer_info(link, cclc, ini); 2411 2412 if (smc_rmb_rtoken_handling(&new_smc->conn, link, cclc)) 2413 return SMC_CLC_DECL_ERR_RTOK; 2414 2415 if (local_first) { 2416 if (smc_ib_ready_link(link)) 2417 return SMC_CLC_DECL_ERR_RDYLNK; 2418 /* QP confirmation over RoCE fabric */ 2419 smc_llc_flow_initiate(link->lgr, SMC_LLC_FLOW_ADD_LINK); 2420 reason_code = smcr_serv_conf_first_link(new_smc); 2421 smc_llc_flow_stop(link->lgr, &link->lgr->llc_flow_lcl); 2422 } 2423 return reason_code; 2424 } 2425 2426 /* setup for connection of server */ 2427 static void smc_listen_work(struct work_struct *work) 2428 { 2429 struct smc_sock *new_smc = container_of(work, struct smc_sock, 2430 smc_listen_work); 2431 struct socket *newclcsock = new_smc->clcsock; 2432 struct smc_clc_msg_accept_confirm *cclc; 2433 struct smc_clc_msg_proposal_area *buf; 2434 struct smc_clc_msg_proposal *pclc; 2435 struct smc_init_info *ini = NULL; 2436 u8 proposal_version = SMC_V1; 2437 u8 accept_version; 2438 int rc = 0; 2439 2440 lock_sock(&new_smc->sk); /* release in smc_listen_out() */ 2441 if (new_smc->listen_smc->sk.sk_state != SMC_LISTEN) 2442 return smc_listen_out_err(new_smc); 2443 2444 if (new_smc->use_fallback) { 2445 smc_listen_out_connected(new_smc); 2446 return; 2447 } 2448 2449 /* check if peer is smc capable */ 2450 if (!tcp_sk(newclcsock->sk)->syn_smc) { 2451 rc = smc_switch_to_fallback(new_smc, SMC_CLC_DECL_PEERNOSMC); 2452 if (rc) 2453 smc_listen_out_err(new_smc); 2454 else 2455 smc_listen_out_connected(new_smc); 2456 return; 2457 } 2458 2459 /* do inband token exchange - 2460 * wait for and receive SMC Proposal CLC message 2461 */ 2462 buf = kzalloc(sizeof(*buf), GFP_KERNEL); 2463 if (!buf) { 2464 rc = SMC_CLC_DECL_MEM; 2465 goto out_decl; 2466 } 2467 pclc = (struct smc_clc_msg_proposal *)buf; 2468 rc = smc_clc_wait_msg(new_smc, pclc, sizeof(*buf), 2469 SMC_CLC_PROPOSAL, CLC_WAIT_TIME); 2470 if (rc) 2471 goto out_decl; 2472 2473 if (pclc->hdr.version > SMC_V1) 2474 proposal_version = SMC_V2; 2475 2476 /* IPSec connections opt out of SMC optimizations */ 2477 if (using_ipsec(new_smc)) { 2478 rc = SMC_CLC_DECL_IPSEC; 2479 goto out_decl; 2480 } 2481 2482 ini = kzalloc(sizeof(*ini), GFP_KERNEL); 2483 if (!ini) { 2484 rc = SMC_CLC_DECL_MEM; 2485 goto out_decl; 2486 } 2487 2488 /* initial version checking */ 2489 rc = smc_listen_v2_check(new_smc, pclc, ini); 2490 if (rc) 2491 goto out_decl; 2492 2493 rc = smc_clc_srv_v2x_features_validate(new_smc, pclc, ini); 2494 if (rc) 2495 goto out_decl; 2496 2497 mutex_lock(&smc_server_lgr_pending); 2498 smc_rx_init(new_smc); 2499 smc_tx_init(new_smc); 2500 2501 /* determine ISM or RoCE device used for connection */ 2502 rc = smc_listen_find_device(new_smc, pclc, ini); 2503 if (rc) 2504 goto out_unlock; 2505 2506 /* send SMC Accept CLC message */ 2507 accept_version = ini->is_smcd ? ini->smcd_version : ini->smcr_version; 2508 rc = smc_clc_send_accept(new_smc, ini->first_contact_local, 2509 accept_version, ini->negotiated_eid, ini); 2510 if (rc) 2511 goto out_unlock; 2512 2513 /* SMC-D does not need this lock any more */ 2514 if (ini->is_smcd) 2515 mutex_unlock(&smc_server_lgr_pending); 2516 2517 /* receive SMC Confirm CLC message */ 2518 memset(buf, 0, sizeof(*buf)); 2519 cclc = (struct smc_clc_msg_accept_confirm *)buf; 2520 rc = smc_clc_wait_msg(new_smc, cclc, sizeof(*buf), 2521 SMC_CLC_CONFIRM, CLC_WAIT_TIME); 2522 if (rc) { 2523 if (!ini->is_smcd) 2524 goto out_unlock; 2525 goto out_decl; 2526 } 2527 2528 rc = smc_clc_v2x_features_confirm_check(cclc, ini); 2529 if (rc) { 2530 if (!ini->is_smcd) 2531 goto out_unlock; 2532 goto out_decl; 2533 } 2534 2535 /* fce smc release version is needed in smc_listen_rdma_finish, 2536 * so save fce info here. 2537 */ 2538 smc_conn_save_peer_info_fce(new_smc, cclc); 2539 2540 /* finish worker */ 2541 if (!ini->is_smcd) { 2542 rc = smc_listen_rdma_finish(new_smc, cclc, 2543 ini->first_contact_local, ini); 2544 if (rc) 2545 goto out_unlock; 2546 mutex_unlock(&smc_server_lgr_pending); 2547 } 2548 smc_conn_save_peer_info(new_smc, cclc); 2549 2550 if (ini->is_smcd && 2551 smc_ism_support_dmb_nocopy(new_smc->conn.lgr->smcd)) { 2552 rc = smcd_buf_attach(new_smc); 2553 if (rc) 2554 goto out_decl; 2555 } 2556 2557 smc_listen_out_connected(new_smc); 2558 SMC_STAT_SERV_SUCC_INC(sock_net(newclcsock->sk), ini); 2559 goto out_free; 2560 2561 out_unlock: 2562 mutex_unlock(&smc_server_lgr_pending); 2563 out_decl: 2564 smc_listen_decline(new_smc, rc, ini ? ini->first_contact_local : 0, 2565 proposal_version); 2566 out_free: 2567 kfree(ini); 2568 kfree(buf); 2569 } 2570 2571 static void smc_tcp_listen_work(struct work_struct *work) 2572 { 2573 struct smc_sock *lsmc = container_of(work, struct smc_sock, 2574 tcp_listen_work); 2575 struct sock *lsk = &lsmc->sk; 2576 struct smc_sock *new_smc; 2577 int rc = 0; 2578 2579 lock_sock(lsk); 2580 while (lsk->sk_state == SMC_LISTEN) { 2581 rc = smc_clcsock_accept(lsmc, &new_smc); 2582 if (rc) /* clcsock accept queue empty or error */ 2583 goto out; 2584 if (!new_smc) 2585 continue; 2586 2587 if (tcp_sk(new_smc->clcsock->sk)->syn_smc) 2588 atomic_inc(&lsmc->queued_smc_hs); 2589 2590 new_smc->listen_smc = lsmc; 2591 new_smc->use_fallback = lsmc->use_fallback; 2592 new_smc->fallback_rsn = lsmc->fallback_rsn; 2593 sock_hold(lsk); /* sock_put in smc_listen_work */ 2594 INIT_WORK(&new_smc->smc_listen_work, smc_listen_work); 2595 smc_copy_sock_settings_to_smc(new_smc); 2596 sock_hold(&new_smc->sk); /* sock_put in passive closing */ 2597 if (!queue_work(smc_hs_wq, &new_smc->smc_listen_work)) 2598 sock_put(&new_smc->sk); 2599 } 2600 2601 out: 2602 release_sock(lsk); 2603 sock_put(&lsmc->sk); /* sock_hold in smc_clcsock_data_ready() */ 2604 } 2605 2606 static void smc_clcsock_data_ready(struct sock *listen_clcsock) 2607 { 2608 struct smc_sock *lsmc; 2609 2610 read_lock_bh(&listen_clcsock->sk_callback_lock); 2611 lsmc = smc_clcsock_user_data(listen_clcsock); 2612 if (!lsmc) 2613 goto out; 2614 lsmc->clcsk_data_ready(listen_clcsock); 2615 if (lsmc->sk.sk_state == SMC_LISTEN) { 2616 sock_hold(&lsmc->sk); /* sock_put in smc_tcp_listen_work() */ 2617 if (!queue_work(smc_tcp_ls_wq, &lsmc->tcp_listen_work)) 2618 sock_put(&lsmc->sk); 2619 } 2620 out: 2621 read_unlock_bh(&listen_clcsock->sk_callback_lock); 2622 } 2623 2624 int smc_listen(struct socket *sock, int backlog) 2625 { 2626 struct sock *sk = sock->sk; 2627 struct smc_sock *smc; 2628 int rc; 2629 2630 smc = smc_sk(sk); 2631 lock_sock(sk); 2632 2633 rc = -EINVAL; 2634 if ((sk->sk_state != SMC_INIT && sk->sk_state != SMC_LISTEN) || 2635 smc->connect_nonblock || sock->state != SS_UNCONNECTED) 2636 goto out; 2637 2638 rc = 0; 2639 if (sk->sk_state == SMC_LISTEN) { 2640 sk->sk_max_ack_backlog = backlog; 2641 goto out; 2642 } 2643 /* some socket options are handled in core, so we could not apply 2644 * them to the clc socket -- copy smc socket options to clc socket 2645 */ 2646 smc_copy_sock_settings_to_clc(smc); 2647 if (!smc->use_fallback) 2648 tcp_sk(smc->clcsock->sk)->syn_smc = 1; 2649 2650 /* save original sk_data_ready function and establish 2651 * smc-specific sk_data_ready function 2652 */ 2653 write_lock_bh(&smc->clcsock->sk->sk_callback_lock); 2654 smc->clcsock->sk->sk_user_data = 2655 (void *)((uintptr_t)smc | SK_USER_DATA_NOCOPY); 2656 smc_clcsock_replace_cb(&smc->clcsock->sk->sk_data_ready, 2657 smc_clcsock_data_ready, &smc->clcsk_data_ready); 2658 write_unlock_bh(&smc->clcsock->sk->sk_callback_lock); 2659 2660 /* save original ops */ 2661 smc->ori_af_ops = inet_csk(smc->clcsock->sk)->icsk_af_ops; 2662 2663 smc->af_ops = *smc->ori_af_ops; 2664 smc->af_ops.syn_recv_sock = smc_tcp_syn_recv_sock; 2665 2666 inet_csk(smc->clcsock->sk)->icsk_af_ops = &smc->af_ops; 2667 2668 if (smc->limit_smc_hs) 2669 tcp_sk(smc->clcsock->sk)->smc_hs_congested = smc_hs_congested; 2670 2671 rc = kernel_listen(smc->clcsock, backlog); 2672 if (rc) { 2673 write_lock_bh(&smc->clcsock->sk->sk_callback_lock); 2674 smc_clcsock_restore_cb(&smc->clcsock->sk->sk_data_ready, 2675 &smc->clcsk_data_ready); 2676 smc->clcsock->sk->sk_user_data = NULL; 2677 write_unlock_bh(&smc->clcsock->sk->sk_callback_lock); 2678 goto out; 2679 } 2680 sk->sk_max_ack_backlog = backlog; 2681 sk->sk_ack_backlog = 0; 2682 sk->sk_state = SMC_LISTEN; 2683 2684 out: 2685 release_sock(sk); 2686 return rc; 2687 } 2688 2689 int smc_accept(struct socket *sock, struct socket *new_sock, 2690 struct proto_accept_arg *arg) 2691 { 2692 struct sock *sk = sock->sk, *nsk; 2693 DECLARE_WAITQUEUE(wait, current); 2694 struct smc_sock *lsmc; 2695 long timeo; 2696 int rc = 0; 2697 2698 lsmc = smc_sk(sk); 2699 sock_hold(sk); /* sock_put below */ 2700 lock_sock(sk); 2701 2702 if (lsmc->sk.sk_state != SMC_LISTEN) { 2703 rc = -EINVAL; 2704 release_sock(sk); 2705 goto out; 2706 } 2707 2708 /* Wait for an incoming connection */ 2709 timeo = sock_rcvtimeo(sk, arg->flags & O_NONBLOCK); 2710 add_wait_queue_exclusive(sk_sleep(sk), &wait); 2711 while (!(nsk = smc_accept_dequeue(sk, new_sock))) { 2712 set_current_state(TASK_INTERRUPTIBLE); 2713 if (!timeo) { 2714 rc = -EAGAIN; 2715 break; 2716 } 2717 release_sock(sk); 2718 timeo = schedule_timeout(timeo); 2719 /* wakeup by sk_data_ready in smc_listen_work() */ 2720 sched_annotate_sleep(); 2721 lock_sock(sk); 2722 if (signal_pending(current)) { 2723 rc = sock_intr_errno(timeo); 2724 break; 2725 } 2726 } 2727 set_current_state(TASK_RUNNING); 2728 remove_wait_queue(sk_sleep(sk), &wait); 2729 2730 if (!rc) 2731 rc = sock_error(nsk); 2732 release_sock(sk); 2733 if (rc) 2734 goto out; 2735 2736 if (lsmc->sockopt_defer_accept && !(arg->flags & O_NONBLOCK)) { 2737 /* wait till data arrives on the socket */ 2738 timeo = msecs_to_jiffies(lsmc->sockopt_defer_accept * 2739 MSEC_PER_SEC); 2740 if (smc_sk(nsk)->use_fallback) { 2741 struct sock *clcsk = smc_sk(nsk)->clcsock->sk; 2742 2743 lock_sock(clcsk); 2744 if (skb_queue_empty(&clcsk->sk_receive_queue)) 2745 sk_wait_data(clcsk, &timeo, NULL); 2746 release_sock(clcsk); 2747 } else if (!atomic_read(&smc_sk(nsk)->conn.bytes_to_rcv)) { 2748 lock_sock(nsk); 2749 smc_rx_wait(smc_sk(nsk), &timeo, 0, smc_rx_data_available); 2750 release_sock(nsk); 2751 } 2752 } 2753 2754 out: 2755 sock_put(sk); /* sock_hold above */ 2756 return rc; 2757 } 2758 2759 int smc_getname(struct socket *sock, struct sockaddr *addr, 2760 int peer) 2761 { 2762 struct smc_sock *smc; 2763 2764 if (peer && (sock->sk->sk_state != SMC_ACTIVE) && 2765 (sock->sk->sk_state != SMC_APPCLOSEWAIT1)) 2766 return -ENOTCONN; 2767 2768 smc = smc_sk(sock->sk); 2769 2770 return smc->clcsock->ops->getname(smc->clcsock, addr, peer); 2771 } 2772 2773 int smc_sendmsg(struct socket *sock, struct msghdr *msg, size_t len) 2774 { 2775 struct sock *sk = sock->sk; 2776 struct smc_sock *smc; 2777 int rc; 2778 2779 smc = smc_sk(sk); 2780 lock_sock(sk); 2781 2782 /* SMC does not support connect with fastopen */ 2783 if (msg->msg_flags & MSG_FASTOPEN) { 2784 /* not connected yet, fallback */ 2785 if (sk->sk_state == SMC_INIT && !smc->connect_nonblock) { 2786 rc = smc_switch_to_fallback(smc, SMC_CLC_DECL_OPTUNSUPP); 2787 if (rc) 2788 goto out; 2789 } else { 2790 rc = -EINVAL; 2791 goto out; 2792 } 2793 } else if ((sk->sk_state != SMC_ACTIVE) && 2794 (sk->sk_state != SMC_APPCLOSEWAIT1) && 2795 (sk->sk_state != SMC_INIT)) { 2796 rc = -EPIPE; 2797 goto out; 2798 } 2799 2800 if (smc->use_fallback) { 2801 rc = smc->clcsock->ops->sendmsg(smc->clcsock, msg, len); 2802 } else { 2803 rc = smc_tx_sendmsg(smc, msg, len); 2804 SMC_STAT_TX_PAYLOAD(smc, len, rc); 2805 } 2806 out: 2807 release_sock(sk); 2808 return rc; 2809 } 2810 2811 int smc_recvmsg(struct socket *sock, struct msghdr *msg, size_t len, 2812 int flags) 2813 { 2814 struct sock *sk = sock->sk; 2815 struct smc_sock *smc; 2816 int rc = -ENOTCONN; 2817 2818 smc = smc_sk(sk); 2819 lock_sock(sk); 2820 if (sk->sk_state == SMC_CLOSED && (sk->sk_shutdown & RCV_SHUTDOWN)) { 2821 /* socket was connected before, no more data to read */ 2822 rc = 0; 2823 goto out; 2824 } 2825 if ((sk->sk_state == SMC_INIT) || 2826 (sk->sk_state == SMC_LISTEN) || 2827 (sk->sk_state == SMC_CLOSED)) 2828 goto out; 2829 2830 if (sk->sk_state == SMC_PEERFINCLOSEWAIT) { 2831 rc = 0; 2832 goto out; 2833 } 2834 2835 if (smc->use_fallback) { 2836 rc = smc->clcsock->ops->recvmsg(smc->clcsock, msg, len, flags); 2837 } else { 2838 msg->msg_namelen = 0; 2839 rc = smc_rx_recvmsg(smc, msg, NULL, len, flags); 2840 SMC_STAT_RX_PAYLOAD(smc, rc, rc); 2841 } 2842 2843 out: 2844 release_sock(sk); 2845 return rc; 2846 } 2847 2848 static __poll_t smc_accept_poll(struct sock *parent) 2849 { 2850 struct smc_sock *isk = smc_sk(parent); 2851 __poll_t mask = 0; 2852 2853 spin_lock(&isk->accept_q_lock); 2854 if (!list_empty(&isk->accept_q)) 2855 mask = EPOLLIN | EPOLLRDNORM; 2856 spin_unlock(&isk->accept_q_lock); 2857 2858 return mask; 2859 } 2860 2861 __poll_t smc_poll(struct file *file, struct socket *sock, 2862 poll_table *wait) 2863 { 2864 struct sock *sk = sock->sk; 2865 struct smc_sock *smc; 2866 __poll_t mask = 0; 2867 2868 if (!sk) 2869 return EPOLLNVAL; 2870 2871 smc = smc_sk(sock->sk); 2872 if (smc->use_fallback) { 2873 /* delegate to CLC child sock */ 2874 mask = smc->clcsock->ops->poll(file, smc->clcsock, wait); 2875 sk->sk_err = smc->clcsock->sk->sk_err; 2876 } else { 2877 if (sk->sk_state != SMC_CLOSED) 2878 sock_poll_wait(file, sock, wait); 2879 if (sk->sk_err) 2880 mask |= EPOLLERR; 2881 if ((sk->sk_shutdown == SHUTDOWN_MASK) || 2882 (sk->sk_state == SMC_CLOSED)) 2883 mask |= EPOLLHUP; 2884 if (sk->sk_state == SMC_LISTEN) { 2885 /* woken up by sk_data_ready in smc_listen_work() */ 2886 mask |= smc_accept_poll(sk); 2887 } else if (smc->use_fallback) { /* as result of connect_work()*/ 2888 mask |= smc->clcsock->ops->poll(file, smc->clcsock, 2889 wait); 2890 sk->sk_err = smc->clcsock->sk->sk_err; 2891 } else { 2892 if ((sk->sk_state != SMC_INIT && 2893 atomic_read(&smc->conn.sndbuf_space)) || 2894 sk->sk_shutdown & SEND_SHUTDOWN) { 2895 mask |= EPOLLOUT | EPOLLWRNORM; 2896 } else { 2897 sk_set_bit(SOCKWQ_ASYNC_NOSPACE, sk); 2898 set_bit(SOCK_NOSPACE, &sk->sk_socket->flags); 2899 2900 if (sk->sk_state != SMC_INIT) { 2901 /* Race breaker the same way as tcp_poll(). */ 2902 smp_mb__after_atomic(); 2903 if (atomic_read(&smc->conn.sndbuf_space)) 2904 mask |= EPOLLOUT | EPOLLWRNORM; 2905 } 2906 } 2907 if (atomic_read(&smc->conn.bytes_to_rcv)) 2908 mask |= EPOLLIN | EPOLLRDNORM; 2909 if (sk->sk_shutdown & RCV_SHUTDOWN) 2910 mask |= EPOLLIN | EPOLLRDNORM | EPOLLRDHUP; 2911 if (sk->sk_state == SMC_APPCLOSEWAIT1) 2912 mask |= EPOLLIN; 2913 if (smc->conn.urg_state == SMC_URG_VALID) 2914 mask |= EPOLLPRI; 2915 } 2916 } 2917 2918 return mask; 2919 } 2920 2921 int smc_shutdown(struct socket *sock, int how) 2922 { 2923 struct sock *sk = sock->sk; 2924 bool do_shutdown = true; 2925 struct smc_sock *smc; 2926 int rc = -EINVAL; 2927 int old_state; 2928 int rc1 = 0; 2929 2930 smc = smc_sk(sk); 2931 2932 if ((how < SHUT_RD) || (how > SHUT_RDWR)) 2933 return rc; 2934 2935 lock_sock(sk); 2936 2937 if (sock->state == SS_CONNECTING) { 2938 if (sk->sk_state == SMC_ACTIVE) 2939 sock->state = SS_CONNECTED; 2940 else if (sk->sk_state == SMC_PEERCLOSEWAIT1 || 2941 sk->sk_state == SMC_PEERCLOSEWAIT2 || 2942 sk->sk_state == SMC_APPCLOSEWAIT1 || 2943 sk->sk_state == SMC_APPCLOSEWAIT2 || 2944 sk->sk_state == SMC_APPFINCLOSEWAIT) 2945 sock->state = SS_DISCONNECTING; 2946 } 2947 2948 rc = -ENOTCONN; 2949 if ((sk->sk_state != SMC_ACTIVE) && 2950 (sk->sk_state != SMC_PEERCLOSEWAIT1) && 2951 (sk->sk_state != SMC_PEERCLOSEWAIT2) && 2952 (sk->sk_state != SMC_APPCLOSEWAIT1) && 2953 (sk->sk_state != SMC_APPCLOSEWAIT2) && 2954 (sk->sk_state != SMC_APPFINCLOSEWAIT)) 2955 goto out; 2956 if (smc->use_fallback) { 2957 rc = kernel_sock_shutdown(smc->clcsock, how); 2958 sk->sk_shutdown = smc->clcsock->sk->sk_shutdown; 2959 if (sk->sk_shutdown == SHUTDOWN_MASK) { 2960 sk->sk_state = SMC_CLOSED; 2961 sk->sk_socket->state = SS_UNCONNECTED; 2962 sock_put(sk); 2963 } 2964 goto out; 2965 } 2966 switch (how) { 2967 case SHUT_RDWR: /* shutdown in both directions */ 2968 old_state = sk->sk_state; 2969 rc = smc_close_active(smc); 2970 if (old_state == SMC_ACTIVE && 2971 sk->sk_state == SMC_PEERCLOSEWAIT1) 2972 do_shutdown = false; 2973 break; 2974 case SHUT_WR: 2975 rc = smc_close_shutdown_write(smc); 2976 break; 2977 case SHUT_RD: 2978 rc = 0; 2979 /* nothing more to do because peer is not involved */ 2980 break; 2981 } 2982 if (do_shutdown && smc->clcsock) 2983 rc1 = kernel_sock_shutdown(smc->clcsock, how); 2984 /* map sock_shutdown_cmd constants to sk_shutdown value range */ 2985 sk->sk_shutdown |= how + 1; 2986 2987 if (sk->sk_state == SMC_CLOSED) 2988 sock->state = SS_UNCONNECTED; 2989 else 2990 sock->state = SS_DISCONNECTING; 2991 out: 2992 release_sock(sk); 2993 return rc ? rc : rc1; 2994 } 2995 2996 static int __smc_getsockopt(struct socket *sock, int level, int optname, 2997 char __user *optval, int __user *optlen) 2998 { 2999 struct smc_sock *smc; 3000 int val, len; 3001 3002 smc = smc_sk(sock->sk); 3003 3004 if (get_user(len, optlen)) 3005 return -EFAULT; 3006 3007 len = min_t(int, len, sizeof(int)); 3008 3009 if (len < 0) 3010 return -EINVAL; 3011 3012 switch (optname) { 3013 case SMC_LIMIT_HS: 3014 val = smc->limit_smc_hs; 3015 break; 3016 default: 3017 return -EOPNOTSUPP; 3018 } 3019 3020 if (put_user(len, optlen)) 3021 return -EFAULT; 3022 if (copy_to_user(optval, &val, len)) 3023 return -EFAULT; 3024 3025 return 0; 3026 } 3027 3028 static int __smc_setsockopt(struct socket *sock, int level, int optname, 3029 sockptr_t optval, unsigned int optlen) 3030 { 3031 struct sock *sk = sock->sk; 3032 struct smc_sock *smc; 3033 int val, rc; 3034 3035 smc = smc_sk(sk); 3036 3037 lock_sock(sk); 3038 switch (optname) { 3039 case SMC_LIMIT_HS: 3040 if (optlen < sizeof(int)) { 3041 rc = -EINVAL; 3042 break; 3043 } 3044 if (copy_from_sockptr(&val, optval, sizeof(int))) { 3045 rc = -EFAULT; 3046 break; 3047 } 3048 3049 smc->limit_smc_hs = !!val; 3050 rc = 0; 3051 break; 3052 default: 3053 rc = -EOPNOTSUPP; 3054 break; 3055 } 3056 release_sock(sk); 3057 3058 return rc; 3059 } 3060 3061 int smc_setsockopt(struct socket *sock, int level, int optname, 3062 sockptr_t optval, unsigned int optlen) 3063 { 3064 struct sock *sk = sock->sk; 3065 struct smc_sock *smc; 3066 int val, rc; 3067 3068 if (level == SOL_TCP && optname == TCP_ULP) 3069 return -EOPNOTSUPP; 3070 else if (level == SOL_SMC) 3071 return __smc_setsockopt(sock, level, optname, optval, optlen); 3072 3073 smc = smc_sk(sk); 3074 3075 /* generic setsockopts reaching us here always apply to the 3076 * CLC socket 3077 */ 3078 mutex_lock(&smc->clcsock_release_lock); 3079 if (!smc->clcsock) { 3080 mutex_unlock(&smc->clcsock_release_lock); 3081 return -EBADF; 3082 } 3083 if (unlikely(!smc->clcsock->ops->setsockopt)) 3084 rc = -EOPNOTSUPP; 3085 else 3086 rc = smc->clcsock->ops->setsockopt(smc->clcsock, level, optname, 3087 optval, optlen); 3088 if (smc->clcsock->sk->sk_err) { 3089 sk->sk_err = smc->clcsock->sk->sk_err; 3090 sk_error_report(sk); 3091 } 3092 mutex_unlock(&smc->clcsock_release_lock); 3093 3094 if (optlen < sizeof(int)) 3095 return -EINVAL; 3096 if (copy_from_sockptr(&val, optval, sizeof(int))) 3097 return -EFAULT; 3098 3099 lock_sock(sk); 3100 if (rc || smc->use_fallback) 3101 goto out; 3102 switch (optname) { 3103 case TCP_FASTOPEN: 3104 case TCP_FASTOPEN_CONNECT: 3105 case TCP_FASTOPEN_KEY: 3106 case TCP_FASTOPEN_NO_COOKIE: 3107 /* option not supported by SMC */ 3108 if (sk->sk_state == SMC_INIT && !smc->connect_nonblock) { 3109 rc = smc_switch_to_fallback(smc, SMC_CLC_DECL_OPTUNSUPP); 3110 } else { 3111 rc = -EINVAL; 3112 } 3113 break; 3114 case TCP_NODELAY: 3115 if (sk->sk_state != SMC_INIT && 3116 sk->sk_state != SMC_LISTEN && 3117 sk->sk_state != SMC_CLOSED) { 3118 if (val) { 3119 SMC_STAT_INC(smc, ndly_cnt); 3120 smc_tx_pending(&smc->conn); 3121 cancel_delayed_work(&smc->conn.tx_work); 3122 } 3123 } 3124 break; 3125 case TCP_CORK: 3126 if (sk->sk_state != SMC_INIT && 3127 sk->sk_state != SMC_LISTEN && 3128 sk->sk_state != SMC_CLOSED) { 3129 if (!val) { 3130 SMC_STAT_INC(smc, cork_cnt); 3131 smc_tx_pending(&smc->conn); 3132 cancel_delayed_work(&smc->conn.tx_work); 3133 } 3134 } 3135 break; 3136 case TCP_DEFER_ACCEPT: 3137 smc->sockopt_defer_accept = val; 3138 break; 3139 default: 3140 break; 3141 } 3142 out: 3143 release_sock(sk); 3144 3145 return rc; 3146 } 3147 3148 int smc_getsockopt(struct socket *sock, int level, int optname, 3149 char __user *optval, int __user *optlen) 3150 { 3151 struct smc_sock *smc; 3152 int rc; 3153 3154 if (level == SOL_SMC) 3155 return __smc_getsockopt(sock, level, optname, optval, optlen); 3156 3157 smc = smc_sk(sock->sk); 3158 mutex_lock(&smc->clcsock_release_lock); 3159 if (!smc->clcsock) { 3160 mutex_unlock(&smc->clcsock_release_lock); 3161 return -EBADF; 3162 } 3163 /* socket options apply to the CLC socket */ 3164 if (unlikely(!smc->clcsock->ops->getsockopt)) { 3165 mutex_unlock(&smc->clcsock_release_lock); 3166 return -EOPNOTSUPP; 3167 } 3168 rc = smc->clcsock->ops->getsockopt(smc->clcsock, level, optname, 3169 optval, optlen); 3170 mutex_unlock(&smc->clcsock_release_lock); 3171 return rc; 3172 } 3173 3174 int smc_ioctl(struct socket *sock, unsigned int cmd, 3175 unsigned long arg) 3176 { 3177 union smc_host_cursor cons, urg; 3178 struct smc_connection *conn; 3179 struct smc_sock *smc; 3180 int answ; 3181 3182 smc = smc_sk(sock->sk); 3183 conn = &smc->conn; 3184 lock_sock(&smc->sk); 3185 if (smc->use_fallback) { 3186 if (!smc->clcsock) { 3187 release_sock(&smc->sk); 3188 return -EBADF; 3189 } 3190 answ = smc->clcsock->ops->ioctl(smc->clcsock, cmd, arg); 3191 release_sock(&smc->sk); 3192 return answ; 3193 } 3194 switch (cmd) { 3195 case SIOCINQ: /* same as FIONREAD */ 3196 if (smc->sk.sk_state == SMC_LISTEN) { 3197 release_sock(&smc->sk); 3198 return -EINVAL; 3199 } 3200 if (smc->sk.sk_state == SMC_INIT || 3201 smc->sk.sk_state == SMC_CLOSED) 3202 answ = 0; 3203 else 3204 answ = atomic_read(&smc->conn.bytes_to_rcv); 3205 break; 3206 case SIOCOUTQ: 3207 /* output queue size (not send + not acked) */ 3208 if (smc->sk.sk_state == SMC_LISTEN) { 3209 release_sock(&smc->sk); 3210 return -EINVAL; 3211 } 3212 if (smc->sk.sk_state == SMC_INIT || 3213 smc->sk.sk_state == SMC_CLOSED) 3214 answ = 0; 3215 else 3216 answ = smc->conn.sndbuf_desc->len - 3217 atomic_read(&smc->conn.sndbuf_space); 3218 break; 3219 case SIOCOUTQNSD: 3220 /* output queue size (not send only) */ 3221 if (smc->sk.sk_state == SMC_LISTEN) { 3222 release_sock(&smc->sk); 3223 return -EINVAL; 3224 } 3225 if (smc->sk.sk_state == SMC_INIT || 3226 smc->sk.sk_state == SMC_CLOSED) 3227 answ = 0; 3228 else 3229 answ = smc_tx_prepared_sends(&smc->conn); 3230 break; 3231 case SIOCATMARK: 3232 if (smc->sk.sk_state == SMC_LISTEN) { 3233 release_sock(&smc->sk); 3234 return -EINVAL; 3235 } 3236 if (smc->sk.sk_state == SMC_INIT || 3237 smc->sk.sk_state == SMC_CLOSED) { 3238 answ = 0; 3239 } else { 3240 smc_curs_copy(&cons, &conn->local_tx_ctrl.cons, conn); 3241 smc_curs_copy(&urg, &conn->urg_curs, conn); 3242 answ = smc_curs_diff(conn->rmb_desc->len, 3243 &cons, &urg) == 1; 3244 } 3245 break; 3246 default: 3247 release_sock(&smc->sk); 3248 return -ENOIOCTLCMD; 3249 } 3250 release_sock(&smc->sk); 3251 3252 return put_user(answ, (int __user *)arg); 3253 } 3254 3255 /* Map the affected portions of the rmbe into an spd, note the number of bytes 3256 * to splice in conn->splice_pending, and press 'go'. Delays consumer cursor 3257 * updates till whenever a respective page has been fully processed. 3258 * Note that subsequent recv() calls have to wait till all splice() processing 3259 * completed. 3260 */ 3261 ssize_t smc_splice_read(struct socket *sock, loff_t *ppos, 3262 struct pipe_inode_info *pipe, size_t len, 3263 unsigned int flags) 3264 { 3265 struct sock *sk = sock->sk; 3266 struct smc_sock *smc; 3267 int rc = -ENOTCONN; 3268 3269 smc = smc_sk(sk); 3270 lock_sock(sk); 3271 if (sk->sk_state == SMC_CLOSED && (sk->sk_shutdown & RCV_SHUTDOWN)) { 3272 /* socket was connected before, no more data to read */ 3273 rc = 0; 3274 goto out; 3275 } 3276 if (sk->sk_state == SMC_INIT || 3277 sk->sk_state == SMC_LISTEN || 3278 sk->sk_state == SMC_CLOSED) 3279 goto out; 3280 3281 if (sk->sk_state == SMC_PEERFINCLOSEWAIT) { 3282 rc = 0; 3283 goto out; 3284 } 3285 3286 if (smc->use_fallback) { 3287 rc = smc->clcsock->ops->splice_read(smc->clcsock, ppos, 3288 pipe, len, flags); 3289 } else { 3290 if (*ppos) { 3291 rc = -ESPIPE; 3292 goto out; 3293 } 3294 if (flags & SPLICE_F_NONBLOCK) 3295 flags = MSG_DONTWAIT; 3296 else 3297 flags = 0; 3298 SMC_STAT_INC(smc, splice_cnt); 3299 rc = smc_rx_recvmsg(smc, NULL, pipe, len, flags); 3300 } 3301 out: 3302 release_sock(sk); 3303 3304 return rc; 3305 } 3306 3307 /* must look like tcp */ 3308 static const struct proto_ops smc_sock_ops = { 3309 .family = PF_SMC, 3310 .owner = THIS_MODULE, 3311 .release = smc_release, 3312 .bind = smc_bind, 3313 .connect = smc_connect, 3314 .socketpair = sock_no_socketpair, 3315 .accept = smc_accept, 3316 .getname = smc_getname, 3317 .poll = smc_poll, 3318 .ioctl = smc_ioctl, 3319 .listen = smc_listen, 3320 .shutdown = smc_shutdown, 3321 .setsockopt = smc_setsockopt, 3322 .getsockopt = smc_getsockopt, 3323 .sendmsg = smc_sendmsg, 3324 .recvmsg = smc_recvmsg, 3325 .mmap = sock_no_mmap, 3326 .splice_read = smc_splice_read, 3327 }; 3328 3329 int smc_create_clcsk(struct net *net, struct sock *sk, int family) 3330 { 3331 struct smc_sock *smc = smc_sk(sk); 3332 int rc; 3333 3334 rc = sock_create_kern(net, family, SOCK_STREAM, IPPROTO_TCP, 3335 &smc->clcsock); 3336 if (rc) 3337 return rc; 3338 3339 /* smc_clcsock_release() does not wait smc->clcsock->sk's 3340 * destruction; its sk_state might not be TCP_CLOSE after 3341 * smc->sk is close()d, and TCP timers can be fired later, 3342 * which need net ref. 3343 */ 3344 sk = smc->clcsock->sk; 3345 sk_net_refcnt_upgrade(sk); 3346 return 0; 3347 } 3348 3349 static int __smc_create(struct net *net, struct socket *sock, int protocol, 3350 int kern, struct socket *clcsock) 3351 { 3352 int family = (protocol == SMCPROTO_SMC6) ? PF_INET6 : PF_INET; 3353 struct smc_sock *smc; 3354 struct sock *sk; 3355 int rc; 3356 3357 rc = -ESOCKTNOSUPPORT; 3358 if (sock->type != SOCK_STREAM) 3359 goto out; 3360 3361 rc = -EPROTONOSUPPORT; 3362 if (protocol != SMCPROTO_SMC && protocol != SMCPROTO_SMC6) 3363 goto out; 3364 3365 rc = -ENOBUFS; 3366 sock->ops = &smc_sock_ops; 3367 sock->state = SS_UNCONNECTED; 3368 sk = smc_sock_alloc(net, sock, protocol); 3369 if (!sk) 3370 goto out; 3371 3372 /* create internal TCP socket for CLC handshake and fallback */ 3373 smc = smc_sk(sk); 3374 3375 rc = 0; 3376 if (clcsock) 3377 smc->clcsock = clcsock; 3378 else 3379 rc = smc_create_clcsk(net, sk, family); 3380 3381 if (rc) { 3382 sk_common_release(sk); 3383 sock->sk = NULL; 3384 } 3385 out: 3386 return rc; 3387 } 3388 3389 static int smc_create(struct net *net, struct socket *sock, int protocol, 3390 int kern) 3391 { 3392 return __smc_create(net, sock, protocol, kern, NULL); 3393 } 3394 3395 static const struct net_proto_family smc_sock_family_ops = { 3396 .family = PF_SMC, 3397 .owner = THIS_MODULE, 3398 .create = smc_create, 3399 }; 3400 3401 static int smc_ulp_init(struct sock *sk) 3402 { 3403 struct socket *tcp = sk->sk_socket; 3404 struct net *net = sock_net(sk); 3405 struct socket *smcsock; 3406 int protocol, ret; 3407 3408 /* only TCP can be replaced */ 3409 if (tcp->type != SOCK_STREAM || sk->sk_protocol != IPPROTO_TCP || 3410 (sk->sk_family != AF_INET && sk->sk_family != AF_INET6)) 3411 return -ESOCKTNOSUPPORT; 3412 /* don't handle wq now */ 3413 if (tcp->state != SS_UNCONNECTED || !tcp->file || tcp->wq.fasync_list) 3414 return -ENOTCONN; 3415 3416 if (sk->sk_family == AF_INET) 3417 protocol = SMCPROTO_SMC; 3418 else 3419 protocol = SMCPROTO_SMC6; 3420 3421 smcsock = sock_alloc(); 3422 if (!smcsock) 3423 return -ENFILE; 3424 3425 smcsock->type = SOCK_STREAM; 3426 __module_get(THIS_MODULE); /* tried in __tcp_ulp_find_autoload */ 3427 ret = __smc_create(net, smcsock, protocol, 1, tcp); 3428 if (ret) { 3429 sock_release(smcsock); /* module_put() which ops won't be NULL */ 3430 return ret; 3431 } 3432 3433 /* replace tcp socket to smc */ 3434 smcsock->file = tcp->file; 3435 smcsock->file->private_data = smcsock; 3436 smcsock->file->f_inode = SOCK_INODE(smcsock); /* replace inode when sock_close */ 3437 smcsock->file->f_path.dentry->d_inode = SOCK_INODE(smcsock); /* dput() in __fput */ 3438 tcp->file = NULL; 3439 3440 return ret; 3441 } 3442 3443 static void smc_ulp_clone(const struct request_sock *req, struct sock *newsk, 3444 const gfp_t priority) 3445 { 3446 struct inet_connection_sock *icsk = inet_csk(newsk); 3447 3448 /* don't inherit ulp ops to child when listen */ 3449 icsk->icsk_ulp_ops = NULL; 3450 } 3451 3452 static struct tcp_ulp_ops smc_ulp_ops __read_mostly = { 3453 .name = "smc", 3454 .owner = THIS_MODULE, 3455 .init = smc_ulp_init, 3456 .clone = smc_ulp_clone, 3457 }; 3458 3459 unsigned int smc_net_id; 3460 3461 static __net_init int smc_net_init(struct net *net) 3462 { 3463 int rc; 3464 3465 rc = smc_sysctl_net_init(net); 3466 if (rc) 3467 return rc; 3468 return smc_pnet_net_init(net); 3469 } 3470 3471 static void __net_exit smc_net_exit(struct net *net) 3472 { 3473 smc_sysctl_net_exit(net); 3474 smc_pnet_net_exit(net); 3475 } 3476 3477 static __net_init int smc_net_stat_init(struct net *net) 3478 { 3479 return smc_stats_init(net); 3480 } 3481 3482 static void __net_exit smc_net_stat_exit(struct net *net) 3483 { 3484 smc_stats_exit(net); 3485 } 3486 3487 static struct pernet_operations smc_net_ops = { 3488 .init = smc_net_init, 3489 .exit = smc_net_exit, 3490 .id = &smc_net_id, 3491 .size = sizeof(struct smc_net), 3492 }; 3493 3494 static struct pernet_operations smc_net_stat_ops = { 3495 .init = smc_net_stat_init, 3496 .exit = smc_net_stat_exit, 3497 }; 3498 3499 static int __init smc_init(void) 3500 { 3501 int rc; 3502 3503 rc = register_pernet_subsys(&smc_net_ops); 3504 if (rc) 3505 return rc; 3506 3507 rc = register_pernet_subsys(&smc_net_stat_ops); 3508 if (rc) 3509 goto out_pernet_subsys; 3510 3511 rc = smc_ism_init(); 3512 if (rc) 3513 goto out_pernet_subsys_stat; 3514 smc_clc_init(); 3515 3516 rc = smc_nl_init(); 3517 if (rc) 3518 goto out_ism; 3519 3520 rc = smc_pnet_init(); 3521 if (rc) 3522 goto out_nl; 3523 3524 rc = -ENOMEM; 3525 3526 smc_tcp_ls_wq = alloc_workqueue("smc_tcp_ls_wq", 0, 0); 3527 if (!smc_tcp_ls_wq) 3528 goto out_pnet; 3529 3530 smc_hs_wq = alloc_workqueue("smc_hs_wq", 0, 0); 3531 if (!smc_hs_wq) 3532 goto out_alloc_tcp_ls_wq; 3533 3534 smc_close_wq = alloc_workqueue("smc_close_wq", 0, 0); 3535 if (!smc_close_wq) 3536 goto out_alloc_hs_wq; 3537 3538 rc = smc_core_init(); 3539 if (rc) { 3540 pr_err("%s: smc_core_init fails with %d\n", __func__, rc); 3541 goto out_alloc_wqs; 3542 } 3543 3544 rc = smc_llc_init(); 3545 if (rc) { 3546 pr_err("%s: smc_llc_init fails with %d\n", __func__, rc); 3547 goto out_core; 3548 } 3549 3550 rc = smc_cdc_init(); 3551 if (rc) { 3552 pr_err("%s: smc_cdc_init fails with %d\n", __func__, rc); 3553 goto out_core; 3554 } 3555 3556 rc = proto_register(&smc_proto, 1); 3557 if (rc) { 3558 pr_err("%s: proto_register(v4) fails with %d\n", __func__, rc); 3559 goto out_core; 3560 } 3561 3562 rc = proto_register(&smc_proto6, 1); 3563 if (rc) { 3564 pr_err("%s: proto_register(v6) fails with %d\n", __func__, rc); 3565 goto out_proto; 3566 } 3567 3568 rc = sock_register(&smc_sock_family_ops); 3569 if (rc) { 3570 pr_err("%s: sock_register fails with %d\n", __func__, rc); 3571 goto out_proto6; 3572 } 3573 INIT_HLIST_HEAD(&smc_v4_hashinfo.ht); 3574 INIT_HLIST_HEAD(&smc_v6_hashinfo.ht); 3575 3576 rc = smc_ib_register_client(); 3577 if (rc) { 3578 pr_err("%s: ib_register fails with %d\n", __func__, rc); 3579 goto out_sock; 3580 } 3581 3582 rc = smc_loopback_init(); 3583 if (rc) { 3584 pr_err("%s: smc_loopback_init fails with %d\n", __func__, rc); 3585 goto out_ib; 3586 } 3587 3588 rc = tcp_register_ulp(&smc_ulp_ops); 3589 if (rc) { 3590 pr_err("%s: tcp_ulp_register fails with %d\n", __func__, rc); 3591 goto out_lo; 3592 } 3593 rc = smc_inet_init(); 3594 if (rc) { 3595 pr_err("%s: smc_inet_init fails with %d\n", __func__, rc); 3596 goto out_ulp; 3597 } 3598 static_branch_enable(&tcp_have_smc); 3599 return 0; 3600 out_ulp: 3601 tcp_unregister_ulp(&smc_ulp_ops); 3602 out_lo: 3603 smc_loopback_exit(); 3604 out_ib: 3605 smc_ib_unregister_client(); 3606 out_sock: 3607 sock_unregister(PF_SMC); 3608 out_proto6: 3609 proto_unregister(&smc_proto6); 3610 out_proto: 3611 proto_unregister(&smc_proto); 3612 out_core: 3613 smc_core_exit(); 3614 out_alloc_wqs: 3615 destroy_workqueue(smc_close_wq); 3616 out_alloc_hs_wq: 3617 destroy_workqueue(smc_hs_wq); 3618 out_alloc_tcp_ls_wq: 3619 destroy_workqueue(smc_tcp_ls_wq); 3620 out_pnet: 3621 smc_pnet_exit(); 3622 out_nl: 3623 smc_nl_exit(); 3624 out_ism: 3625 smc_clc_exit(); 3626 smc_ism_exit(); 3627 out_pernet_subsys_stat: 3628 unregister_pernet_subsys(&smc_net_stat_ops); 3629 out_pernet_subsys: 3630 unregister_pernet_subsys(&smc_net_ops); 3631 3632 return rc; 3633 } 3634 3635 static void __exit smc_exit(void) 3636 { 3637 static_branch_disable(&tcp_have_smc); 3638 smc_inet_exit(); 3639 tcp_unregister_ulp(&smc_ulp_ops); 3640 sock_unregister(PF_SMC); 3641 smc_core_exit(); 3642 smc_loopback_exit(); 3643 smc_ib_unregister_client(); 3644 smc_ism_exit(); 3645 destroy_workqueue(smc_close_wq); 3646 destroy_workqueue(smc_tcp_ls_wq); 3647 destroy_workqueue(smc_hs_wq); 3648 proto_unregister(&smc_proto6); 3649 proto_unregister(&smc_proto); 3650 smc_pnet_exit(); 3651 smc_nl_exit(); 3652 smc_clc_exit(); 3653 unregister_pernet_subsys(&smc_net_stat_ops); 3654 unregister_pernet_subsys(&smc_net_ops); 3655 rcu_barrier(); 3656 } 3657 3658 module_init(smc_init); 3659 module_exit(smc_exit); 3660 3661 MODULE_AUTHOR("Ursula Braun <ubraun@linux.vnet.ibm.com>"); 3662 MODULE_DESCRIPTION("smc socket address family"); 3663 MODULE_LICENSE("GPL"); 3664 MODULE_ALIAS_NETPROTO(PF_SMC); 3665 MODULE_ALIAS_TCP_ULP("smc"); 3666 /* 256 for IPPROTO_SMC and 1 for SOCK_STREAM */ 3667 MODULE_ALIAS_NET_PF_PROTO_TYPE(PF_INET, 256, 1); 3668 #if IS_ENABLED(CONFIG_IPV6) 3669 MODULE_ALIAS_NET_PF_PROTO_TYPE(PF_INET6, 256, 1); 3670 #endif /* CONFIG_IPV6 */ 3671 MODULE_ALIAS_GENL_FAMILY(SMC_GENL_FAMILY_NAME); 3672