1 /* 2 * Shared Memory Communications over RDMA (SMC-R) and RoCE 3 * 4 * AF_SMC protocol family socket handler keeping the AF_INET sock address type 5 * applies to SOCK_STREAM sockets only 6 * offers an alternative communication option for TCP-protocol sockets 7 * applicable with RoCE-cards only 8 * 9 * Initial restrictions: 10 * - support for alternate links postponed 11 * 12 * Copyright IBM Corp. 2016, 2018 13 * 14 * Author(s): Ursula Braun <ubraun@linux.vnet.ibm.com> 15 * based on prototype from Frank Blaschka 16 */ 17 18 #define KMSG_COMPONENT "smc" 19 #define pr_fmt(fmt) KMSG_COMPONENT ": " fmt 20 21 #include <linux/module.h> 22 #include <linux/socket.h> 23 #include <linux/workqueue.h> 24 #include <linux/in.h> 25 #include <linux/sched/signal.h> 26 #include <linux/if_vlan.h> 27 28 #include <net/sock.h> 29 #include <net/tcp.h> 30 #include <net/smc.h> 31 #include <asm/ioctls.h> 32 33 #include "smc.h" 34 #include "smc_clc.h" 35 #include "smc_llc.h" 36 #include "smc_cdc.h" 37 #include "smc_core.h" 38 #include "smc_ib.h" 39 #include "smc_ism.h" 40 #include "smc_pnet.h" 41 #include "smc_tx.h" 42 #include "smc_rx.h" 43 #include "smc_close.h" 44 45 static DEFINE_MUTEX(smc_create_lgr_pending); /* serialize link group 46 * creation 47 */ 48 49 static void smc_tcp_listen_work(struct work_struct *); 50 static void smc_connect_work(struct work_struct *); 51 52 static void smc_set_keepalive(struct sock *sk, int val) 53 { 54 struct smc_sock *smc = smc_sk(sk); 55 56 smc->clcsock->sk->sk_prot->keepalive(smc->clcsock->sk, val); 57 } 58 59 static struct smc_hashinfo smc_v4_hashinfo = { 60 .lock = __RW_LOCK_UNLOCKED(smc_v4_hashinfo.lock), 61 }; 62 63 static struct smc_hashinfo smc_v6_hashinfo = { 64 .lock = __RW_LOCK_UNLOCKED(smc_v6_hashinfo.lock), 65 }; 66 67 int smc_hash_sk(struct sock *sk) 68 { 69 struct smc_hashinfo *h = sk->sk_prot->h.smc_hash; 70 struct hlist_head *head; 71 72 head = &h->ht; 73 74 write_lock_bh(&h->lock); 75 sk_add_node(sk, head); 76 sock_prot_inuse_add(sock_net(sk), sk->sk_prot, 1); 77 write_unlock_bh(&h->lock); 78 79 return 0; 80 } 81 EXPORT_SYMBOL_GPL(smc_hash_sk); 82 83 void smc_unhash_sk(struct sock *sk) 84 { 85 struct smc_hashinfo *h = sk->sk_prot->h.smc_hash; 86 87 write_lock_bh(&h->lock); 88 if (sk_del_node_init(sk)) 89 sock_prot_inuse_add(sock_net(sk), sk->sk_prot, -1); 90 write_unlock_bh(&h->lock); 91 } 92 EXPORT_SYMBOL_GPL(smc_unhash_sk); 93 94 struct proto smc_proto = { 95 .name = "SMC", 96 .owner = THIS_MODULE, 97 .keepalive = smc_set_keepalive, 98 .hash = smc_hash_sk, 99 .unhash = smc_unhash_sk, 100 .obj_size = sizeof(struct smc_sock), 101 .h.smc_hash = &smc_v4_hashinfo, 102 .slab_flags = SLAB_TYPESAFE_BY_RCU, 103 }; 104 EXPORT_SYMBOL_GPL(smc_proto); 105 106 struct proto smc_proto6 = { 107 .name = "SMC6", 108 .owner = THIS_MODULE, 109 .keepalive = smc_set_keepalive, 110 .hash = smc_hash_sk, 111 .unhash = smc_unhash_sk, 112 .obj_size = sizeof(struct smc_sock), 113 .h.smc_hash = &smc_v6_hashinfo, 114 .slab_flags = SLAB_TYPESAFE_BY_RCU, 115 }; 116 EXPORT_SYMBOL_GPL(smc_proto6); 117 118 static int smc_release(struct socket *sock) 119 { 120 struct sock *sk = sock->sk; 121 struct smc_sock *smc; 122 int rc = 0; 123 124 if (!sk) 125 goto out; 126 127 smc = smc_sk(sk); 128 129 /* cleanup for a dangling non-blocking connect */ 130 flush_work(&smc->connect_work); 131 kfree(smc->connect_info); 132 smc->connect_info = NULL; 133 134 if (sk->sk_state == SMC_LISTEN) 135 /* smc_close_non_accepted() is called and acquires 136 * sock lock for child sockets again 137 */ 138 lock_sock_nested(sk, SINGLE_DEPTH_NESTING); 139 else 140 lock_sock(sk); 141 142 if (!smc->use_fallback) { 143 rc = smc_close_active(smc); 144 sock_set_flag(sk, SOCK_DEAD); 145 sk->sk_shutdown |= SHUTDOWN_MASK; 146 } 147 if (smc->clcsock) { 148 sock_release(smc->clcsock); 149 smc->clcsock = NULL; 150 } 151 if (smc->use_fallback) { 152 if (sk->sk_state != SMC_LISTEN && sk->sk_state != SMC_INIT) 153 sock_put(sk); /* passive closing */ 154 sk->sk_state = SMC_CLOSED; 155 sk->sk_state_change(sk); 156 } 157 158 /* detach socket */ 159 sock_orphan(sk); 160 sock->sk = NULL; 161 if (!smc->use_fallback && sk->sk_state == SMC_CLOSED) 162 smc_conn_free(&smc->conn); 163 release_sock(sk); 164 165 sk->sk_prot->unhash(sk); 166 sock_put(sk); /* final sock_put */ 167 out: 168 return rc; 169 } 170 171 static void smc_destruct(struct sock *sk) 172 { 173 if (sk->sk_state != SMC_CLOSED) 174 return; 175 if (!sock_flag(sk, SOCK_DEAD)) 176 return; 177 178 sk_refcnt_debug_dec(sk); 179 } 180 181 static struct sock *smc_sock_alloc(struct net *net, struct socket *sock, 182 int protocol) 183 { 184 struct smc_sock *smc; 185 struct proto *prot; 186 struct sock *sk; 187 188 prot = (protocol == SMCPROTO_SMC6) ? &smc_proto6 : &smc_proto; 189 sk = sk_alloc(net, PF_SMC, GFP_KERNEL, prot, 0); 190 if (!sk) 191 return NULL; 192 193 sock_init_data(sock, sk); /* sets sk_refcnt to 1 */ 194 sk->sk_state = SMC_INIT; 195 sk->sk_destruct = smc_destruct; 196 sk->sk_protocol = protocol; 197 smc = smc_sk(sk); 198 INIT_WORK(&smc->tcp_listen_work, smc_tcp_listen_work); 199 INIT_WORK(&smc->connect_work, smc_connect_work); 200 INIT_DELAYED_WORK(&smc->conn.tx_work, smc_tx_work); 201 INIT_LIST_HEAD(&smc->accept_q); 202 spin_lock_init(&smc->accept_q_lock); 203 spin_lock_init(&smc->conn.send_lock); 204 sk->sk_prot->hash(sk); 205 sk_refcnt_debug_inc(sk); 206 207 return sk; 208 } 209 210 static int smc_bind(struct socket *sock, struct sockaddr *uaddr, 211 int addr_len) 212 { 213 struct sockaddr_in *addr = (struct sockaddr_in *)uaddr; 214 struct sock *sk = sock->sk; 215 struct smc_sock *smc; 216 int rc; 217 218 smc = smc_sk(sk); 219 220 /* replicate tests from inet_bind(), to be safe wrt. future changes */ 221 rc = -EINVAL; 222 if (addr_len < sizeof(struct sockaddr_in)) 223 goto out; 224 225 rc = -EAFNOSUPPORT; 226 if (addr->sin_family != AF_INET && 227 addr->sin_family != AF_INET6 && 228 addr->sin_family != AF_UNSPEC) 229 goto out; 230 /* accept AF_UNSPEC (mapped to AF_INET) only if s_addr is INADDR_ANY */ 231 if (addr->sin_family == AF_UNSPEC && 232 addr->sin_addr.s_addr != htonl(INADDR_ANY)) 233 goto out; 234 235 lock_sock(sk); 236 237 /* Check if socket is already active */ 238 rc = -EINVAL; 239 if (sk->sk_state != SMC_INIT) 240 goto out_rel; 241 242 smc->clcsock->sk->sk_reuse = sk->sk_reuse; 243 rc = kernel_bind(smc->clcsock, uaddr, addr_len); 244 245 out_rel: 246 release_sock(sk); 247 out: 248 return rc; 249 } 250 251 static void smc_copy_sock_settings(struct sock *nsk, struct sock *osk, 252 unsigned long mask) 253 { 254 /* options we don't get control via setsockopt for */ 255 nsk->sk_type = osk->sk_type; 256 nsk->sk_sndbuf = osk->sk_sndbuf; 257 nsk->sk_rcvbuf = osk->sk_rcvbuf; 258 nsk->sk_sndtimeo = osk->sk_sndtimeo; 259 nsk->sk_rcvtimeo = osk->sk_rcvtimeo; 260 nsk->sk_mark = osk->sk_mark; 261 nsk->sk_priority = osk->sk_priority; 262 nsk->sk_rcvlowat = osk->sk_rcvlowat; 263 nsk->sk_bound_dev_if = osk->sk_bound_dev_if; 264 nsk->sk_err = osk->sk_err; 265 266 nsk->sk_flags &= ~mask; 267 nsk->sk_flags |= osk->sk_flags & mask; 268 } 269 270 #define SK_FLAGS_SMC_TO_CLC ((1UL << SOCK_URGINLINE) | \ 271 (1UL << SOCK_KEEPOPEN) | \ 272 (1UL << SOCK_LINGER) | \ 273 (1UL << SOCK_BROADCAST) | \ 274 (1UL << SOCK_TIMESTAMP) | \ 275 (1UL << SOCK_DBG) | \ 276 (1UL << SOCK_RCVTSTAMP) | \ 277 (1UL << SOCK_RCVTSTAMPNS) | \ 278 (1UL << SOCK_LOCALROUTE) | \ 279 (1UL << SOCK_TIMESTAMPING_RX_SOFTWARE) | \ 280 (1UL << SOCK_RXQ_OVFL) | \ 281 (1UL << SOCK_WIFI_STATUS) | \ 282 (1UL << SOCK_NOFCS) | \ 283 (1UL << SOCK_FILTER_LOCKED)) 284 /* copy only relevant settings and flags of SOL_SOCKET level from smc to 285 * clc socket (since smc is not called for these options from net/core) 286 */ 287 static void smc_copy_sock_settings_to_clc(struct smc_sock *smc) 288 { 289 smc_copy_sock_settings(smc->clcsock->sk, &smc->sk, SK_FLAGS_SMC_TO_CLC); 290 } 291 292 #define SK_FLAGS_CLC_TO_SMC ((1UL << SOCK_URGINLINE) | \ 293 (1UL << SOCK_KEEPOPEN) | \ 294 (1UL << SOCK_LINGER) | \ 295 (1UL << SOCK_DBG)) 296 /* copy only settings and flags relevant for smc from clc to smc socket */ 297 static void smc_copy_sock_settings_to_smc(struct smc_sock *smc) 298 { 299 smc_copy_sock_settings(&smc->sk, smc->clcsock->sk, SK_FLAGS_CLC_TO_SMC); 300 } 301 302 /* register a new rmb, optionally send confirm_rkey msg to register with peer */ 303 static int smc_reg_rmb(struct smc_link *link, struct smc_buf_desc *rmb_desc, 304 bool conf_rkey) 305 { 306 /* register memory region for new rmb */ 307 if (smc_wr_reg_send(link, rmb_desc->mr_rx[SMC_SINGLE_LINK])) { 308 rmb_desc->regerr = 1; 309 return -EFAULT; 310 } 311 if (!conf_rkey) 312 return 0; 313 /* exchange confirm_rkey msg with peer */ 314 if (smc_llc_do_confirm_rkey(link, rmb_desc)) { 315 rmb_desc->regerr = 1; 316 return -EFAULT; 317 } 318 return 0; 319 } 320 321 static int smc_clnt_conf_first_link(struct smc_sock *smc) 322 { 323 struct net *net = sock_net(smc->clcsock->sk); 324 struct smc_link_group *lgr = smc->conn.lgr; 325 struct smc_link *link; 326 int rest; 327 int rc; 328 329 link = &lgr->lnk[SMC_SINGLE_LINK]; 330 /* receive CONFIRM LINK request from server over RoCE fabric */ 331 rest = wait_for_completion_interruptible_timeout( 332 &link->llc_confirm, 333 SMC_LLC_WAIT_FIRST_TIME); 334 if (rest <= 0) { 335 struct smc_clc_msg_decline dclc; 336 337 rc = smc_clc_wait_msg(smc, &dclc, sizeof(dclc), 338 SMC_CLC_DECLINE); 339 return rc; 340 } 341 342 if (link->llc_confirm_rc) 343 return SMC_CLC_DECL_RMBE_EC; 344 345 rc = smc_ib_modify_qp_rts(link); 346 if (rc) 347 return SMC_CLC_DECL_ERR_RDYLNK; 348 349 smc_wr_remember_qp_attr(link); 350 351 if (smc_reg_rmb(link, smc->conn.rmb_desc, false)) 352 return SMC_CLC_DECL_ERR_REGRMB; 353 354 /* send CONFIRM LINK response over RoCE fabric */ 355 rc = smc_llc_send_confirm_link(link, SMC_LLC_RESP); 356 if (rc < 0) 357 return SMC_CLC_DECL_TIMEOUT_CL; 358 359 /* receive ADD LINK request from server over RoCE fabric */ 360 rest = wait_for_completion_interruptible_timeout(&link->llc_add, 361 SMC_LLC_WAIT_TIME); 362 if (rest <= 0) { 363 struct smc_clc_msg_decline dclc; 364 365 rc = smc_clc_wait_msg(smc, &dclc, sizeof(dclc), 366 SMC_CLC_DECLINE); 367 return rc; 368 } 369 370 /* send add link reject message, only one link supported for now */ 371 rc = smc_llc_send_add_link(link, 372 link->smcibdev->mac[link->ibport - 1], 373 link->gid, SMC_LLC_RESP); 374 if (rc < 0) 375 return SMC_CLC_DECL_TIMEOUT_AL; 376 377 smc_llc_link_active(link, net->ipv4.sysctl_tcp_keepalive_time); 378 379 return 0; 380 } 381 382 static void smcr_conn_save_peer_info(struct smc_sock *smc, 383 struct smc_clc_msg_accept_confirm *clc) 384 { 385 int bufsize = smc_uncompress_bufsize(clc->rmbe_size); 386 387 smc->conn.peer_rmbe_idx = clc->rmbe_idx; 388 smc->conn.local_tx_ctrl.token = ntohl(clc->rmbe_alert_token); 389 smc->conn.peer_rmbe_size = bufsize; 390 atomic_set(&smc->conn.peer_rmbe_space, smc->conn.peer_rmbe_size); 391 smc->conn.tx_off = bufsize * (smc->conn.peer_rmbe_idx - 1); 392 } 393 394 static void smcd_conn_save_peer_info(struct smc_sock *smc, 395 struct smc_clc_msg_accept_confirm *clc) 396 { 397 int bufsize = smc_uncompress_bufsize(clc->dmbe_size); 398 399 smc->conn.peer_rmbe_idx = clc->dmbe_idx; 400 smc->conn.peer_token = clc->token; 401 /* msg header takes up space in the buffer */ 402 smc->conn.peer_rmbe_size = bufsize - sizeof(struct smcd_cdc_msg); 403 atomic_set(&smc->conn.peer_rmbe_space, smc->conn.peer_rmbe_size); 404 smc->conn.tx_off = bufsize * smc->conn.peer_rmbe_idx; 405 } 406 407 static void smc_conn_save_peer_info(struct smc_sock *smc, 408 struct smc_clc_msg_accept_confirm *clc) 409 { 410 if (smc->conn.lgr->is_smcd) 411 smcd_conn_save_peer_info(smc, clc); 412 else 413 smcr_conn_save_peer_info(smc, clc); 414 } 415 416 static void smc_link_save_peer_info(struct smc_link *link, 417 struct smc_clc_msg_accept_confirm *clc) 418 { 419 link->peer_qpn = ntoh24(clc->qpn); 420 memcpy(link->peer_gid, clc->lcl.gid, SMC_GID_SIZE); 421 memcpy(link->peer_mac, clc->lcl.mac, sizeof(link->peer_mac)); 422 link->peer_psn = ntoh24(clc->psn); 423 link->peer_mtu = clc->qp_mtu; 424 } 425 426 /* fall back during connect */ 427 static int smc_connect_fallback(struct smc_sock *smc, int reason_code) 428 { 429 smc->use_fallback = true; 430 smc->fallback_rsn = reason_code; 431 smc_copy_sock_settings_to_clc(smc); 432 if (smc->sk.sk_state == SMC_INIT) 433 smc->sk.sk_state = SMC_ACTIVE; 434 return 0; 435 } 436 437 /* decline and fall back during connect */ 438 static int smc_connect_decline_fallback(struct smc_sock *smc, int reason_code) 439 { 440 int rc; 441 442 if (reason_code < 0) { /* error, fallback is not possible */ 443 if (smc->sk.sk_state == SMC_INIT) 444 sock_put(&smc->sk); /* passive closing */ 445 return reason_code; 446 } 447 if (reason_code != SMC_CLC_DECL_PEERDECL) { 448 rc = smc_clc_send_decline(smc, reason_code); 449 if (rc < 0) { 450 if (smc->sk.sk_state == SMC_INIT) 451 sock_put(&smc->sk); /* passive closing */ 452 return rc; 453 } 454 } 455 return smc_connect_fallback(smc, reason_code); 456 } 457 458 /* abort connecting */ 459 static int smc_connect_abort(struct smc_sock *smc, int reason_code, 460 int local_contact) 461 { 462 if (local_contact == SMC_FIRST_CONTACT) 463 smc_lgr_forget(smc->conn.lgr); 464 mutex_unlock(&smc_create_lgr_pending); 465 smc_conn_free(&smc->conn); 466 return reason_code; 467 } 468 469 /* check if there is a rdma device available for this connection. */ 470 /* called for connect and listen */ 471 static int smc_check_rdma(struct smc_sock *smc, struct smc_ib_device **ibdev, 472 u8 *ibport, unsigned short vlan_id, u8 gid[]) 473 { 474 int reason_code = 0; 475 476 /* PNET table look up: search active ib_device and port 477 * within same PNETID that also contains the ethernet device 478 * used for the internal TCP socket 479 */ 480 smc_pnet_find_roce_resource(smc->clcsock->sk, ibdev, ibport, vlan_id, 481 gid); 482 if (!(*ibdev)) 483 reason_code = SMC_CLC_DECL_CNFERR; /* configuration error */ 484 485 return reason_code; 486 } 487 488 /* check if there is an ISM device available for this connection. */ 489 /* called for connect and listen */ 490 static int smc_check_ism(struct smc_sock *smc, struct smcd_dev **ismdev) 491 { 492 /* Find ISM device with same PNETID as connecting interface */ 493 smc_pnet_find_ism_resource(smc->clcsock->sk, ismdev); 494 if (!(*ismdev)) 495 return SMC_CLC_DECL_CNFERR; /* configuration error */ 496 return 0; 497 } 498 499 /* Check for VLAN ID and register it on ISM device just for CLC handshake */ 500 static int smc_connect_ism_vlan_setup(struct smc_sock *smc, 501 struct smcd_dev *ismdev, 502 unsigned short vlan_id) 503 { 504 if (vlan_id && smc_ism_get_vlan(ismdev, vlan_id)) 505 return SMC_CLC_DECL_CNFERR; 506 return 0; 507 } 508 509 /* cleanup temporary VLAN ID registration used for CLC handshake. If ISM is 510 * used, the VLAN ID will be registered again during the connection setup. 511 */ 512 static int smc_connect_ism_vlan_cleanup(struct smc_sock *smc, bool is_smcd, 513 struct smcd_dev *ismdev, 514 unsigned short vlan_id) 515 { 516 if (!is_smcd) 517 return 0; 518 if (vlan_id && smc_ism_put_vlan(ismdev, vlan_id)) 519 return SMC_CLC_DECL_CNFERR; 520 return 0; 521 } 522 523 /* CLC handshake during connect */ 524 static int smc_connect_clc(struct smc_sock *smc, int smc_type, 525 struct smc_clc_msg_accept_confirm *aclc, 526 struct smc_ib_device *ibdev, u8 ibport, 527 u8 gid[], struct smcd_dev *ismdev) 528 { 529 int rc = 0; 530 531 /* do inband token exchange */ 532 rc = smc_clc_send_proposal(smc, smc_type, ibdev, ibport, gid, ismdev); 533 if (rc) 534 return rc; 535 /* receive SMC Accept CLC message */ 536 return smc_clc_wait_msg(smc, aclc, sizeof(*aclc), SMC_CLC_ACCEPT); 537 } 538 539 /* setup for RDMA connection of client */ 540 static int smc_connect_rdma(struct smc_sock *smc, 541 struct smc_clc_msg_accept_confirm *aclc, 542 struct smc_ib_device *ibdev, u8 ibport) 543 { 544 int local_contact = SMC_FIRST_CONTACT; 545 struct smc_link *link; 546 int reason_code = 0; 547 548 mutex_lock(&smc_create_lgr_pending); 549 local_contact = smc_conn_create(smc, false, aclc->hdr.flag, ibdev, 550 ibport, &aclc->lcl, NULL, 0); 551 if (local_contact < 0) { 552 if (local_contact == -ENOMEM) 553 reason_code = SMC_CLC_DECL_MEM;/* insufficient memory*/ 554 else if (local_contact == -ENOLINK) 555 reason_code = SMC_CLC_DECL_SYNCERR; /* synchr. error */ 556 else 557 reason_code = SMC_CLC_DECL_INTERR; /* other error */ 558 return smc_connect_abort(smc, reason_code, 0); 559 } 560 link = &smc->conn.lgr->lnk[SMC_SINGLE_LINK]; 561 562 smc_conn_save_peer_info(smc, aclc); 563 564 /* create send buffer and rmb */ 565 if (smc_buf_create(smc, false)) 566 return smc_connect_abort(smc, SMC_CLC_DECL_MEM, local_contact); 567 568 if (local_contact == SMC_FIRST_CONTACT) 569 smc_link_save_peer_info(link, aclc); 570 571 if (smc_rmb_rtoken_handling(&smc->conn, aclc)) 572 return smc_connect_abort(smc, SMC_CLC_DECL_ERR_RTOK, 573 local_contact); 574 575 smc_close_init(smc); 576 smc_rx_init(smc); 577 578 if (local_contact == SMC_FIRST_CONTACT) { 579 if (smc_ib_ready_link(link)) 580 return smc_connect_abort(smc, SMC_CLC_DECL_ERR_RDYLNK, 581 local_contact); 582 } else { 583 if (!smc->conn.rmb_desc->reused && 584 smc_reg_rmb(link, smc->conn.rmb_desc, true)) 585 return smc_connect_abort(smc, SMC_CLC_DECL_ERR_REGRMB, 586 local_contact); 587 } 588 smc_rmb_sync_sg_for_device(&smc->conn); 589 590 reason_code = smc_clc_send_confirm(smc); 591 if (reason_code) 592 return smc_connect_abort(smc, reason_code, local_contact); 593 594 smc_tx_init(smc); 595 596 if (local_contact == SMC_FIRST_CONTACT) { 597 /* QP confirmation over RoCE fabric */ 598 reason_code = smc_clnt_conf_first_link(smc); 599 if (reason_code) 600 return smc_connect_abort(smc, reason_code, 601 local_contact); 602 } 603 mutex_unlock(&smc_create_lgr_pending); 604 605 smc_copy_sock_settings_to_clc(smc); 606 if (smc->sk.sk_state == SMC_INIT) 607 smc->sk.sk_state = SMC_ACTIVE; 608 609 return 0; 610 } 611 612 /* setup for ISM connection of client */ 613 static int smc_connect_ism(struct smc_sock *smc, 614 struct smc_clc_msg_accept_confirm *aclc, 615 struct smcd_dev *ismdev) 616 { 617 int local_contact = SMC_FIRST_CONTACT; 618 int rc = 0; 619 620 mutex_lock(&smc_create_lgr_pending); 621 local_contact = smc_conn_create(smc, true, aclc->hdr.flag, NULL, 0, 622 NULL, ismdev, aclc->gid); 623 if (local_contact < 0) 624 return smc_connect_abort(smc, SMC_CLC_DECL_MEM, 0); 625 626 /* Create send and receive buffers */ 627 if (smc_buf_create(smc, true)) 628 return smc_connect_abort(smc, SMC_CLC_DECL_MEM, local_contact); 629 630 smc_conn_save_peer_info(smc, aclc); 631 smc_close_init(smc); 632 smc_rx_init(smc); 633 smc_tx_init(smc); 634 635 rc = smc_clc_send_confirm(smc); 636 if (rc) 637 return smc_connect_abort(smc, rc, local_contact); 638 mutex_unlock(&smc_create_lgr_pending); 639 640 smc_copy_sock_settings_to_clc(smc); 641 if (smc->sk.sk_state == SMC_INIT) 642 smc->sk.sk_state = SMC_ACTIVE; 643 644 return 0; 645 } 646 647 /* perform steps before actually connecting */ 648 static int __smc_connect(struct smc_sock *smc) 649 { 650 bool ism_supported = false, rdma_supported = false; 651 struct smc_clc_msg_accept_confirm aclc; 652 struct smc_ib_device *ibdev; 653 struct smcd_dev *ismdev; 654 u8 gid[SMC_GID_SIZE]; 655 unsigned short vlan; 656 int smc_type; 657 int rc = 0; 658 u8 ibport; 659 660 sock_hold(&smc->sk); /* sock put in passive closing */ 661 662 if (smc->use_fallback) 663 return smc_connect_fallback(smc, smc->fallback_rsn); 664 665 /* if peer has not signalled SMC-capability, fall back */ 666 if (!tcp_sk(smc->clcsock->sk)->syn_smc) 667 return smc_connect_fallback(smc, SMC_CLC_DECL_PEERNOSMC); 668 669 /* IPSec connections opt out of SMC-R optimizations */ 670 if (using_ipsec(smc)) 671 return smc_connect_decline_fallback(smc, SMC_CLC_DECL_IPSEC); 672 673 /* check for VLAN ID */ 674 if (smc_vlan_by_tcpsk(smc->clcsock, &vlan)) 675 return smc_connect_decline_fallback(smc, SMC_CLC_DECL_CNFERR); 676 677 /* check if there is an ism device available */ 678 if (!smc_check_ism(smc, &ismdev) && 679 !smc_connect_ism_vlan_setup(smc, ismdev, vlan)) { 680 /* ISM is supported for this connection */ 681 ism_supported = true; 682 smc_type = SMC_TYPE_D; 683 } 684 685 /* check if there is a rdma device available */ 686 if (!smc_check_rdma(smc, &ibdev, &ibport, vlan, gid)) { 687 /* RDMA is supported for this connection */ 688 rdma_supported = true; 689 if (ism_supported) 690 smc_type = SMC_TYPE_B; /* both */ 691 else 692 smc_type = SMC_TYPE_R; /* only RDMA */ 693 } 694 695 /* if neither ISM nor RDMA are supported, fallback */ 696 if (!rdma_supported && !ism_supported) 697 return smc_connect_decline_fallback(smc, SMC_CLC_DECL_NOSMCDEV); 698 699 /* perform CLC handshake */ 700 rc = smc_connect_clc(smc, smc_type, &aclc, ibdev, ibport, gid, ismdev); 701 if (rc) { 702 smc_connect_ism_vlan_cleanup(smc, ism_supported, ismdev, vlan); 703 return smc_connect_decline_fallback(smc, rc); 704 } 705 706 /* depending on previous steps, connect using rdma or ism */ 707 if (rdma_supported && aclc.hdr.path == SMC_TYPE_R) 708 rc = smc_connect_rdma(smc, &aclc, ibdev, ibport); 709 else if (ism_supported && aclc.hdr.path == SMC_TYPE_D) 710 rc = smc_connect_ism(smc, &aclc, ismdev); 711 else 712 rc = SMC_CLC_DECL_MODEUNSUPP; 713 if (rc) { 714 smc_connect_ism_vlan_cleanup(smc, ism_supported, ismdev, vlan); 715 return smc_connect_decline_fallback(smc, rc); 716 } 717 718 smc_connect_ism_vlan_cleanup(smc, ism_supported, ismdev, vlan); 719 return 0; 720 } 721 722 static void smc_connect_work(struct work_struct *work) 723 { 724 struct smc_sock *smc = container_of(work, struct smc_sock, 725 connect_work); 726 int rc; 727 728 lock_sock(&smc->sk); 729 rc = kernel_connect(smc->clcsock, &smc->connect_info->addr, 730 smc->connect_info->alen, smc->connect_info->flags); 731 if (smc->clcsock->sk->sk_err) { 732 smc->sk.sk_err = smc->clcsock->sk->sk_err; 733 goto out; 734 } 735 if (rc < 0) { 736 smc->sk.sk_err = -rc; 737 goto out; 738 } 739 740 rc = __smc_connect(smc); 741 if (rc < 0) 742 smc->sk.sk_err = -rc; 743 744 out: 745 smc->sk.sk_state_change(&smc->sk); 746 kfree(smc->connect_info); 747 smc->connect_info = NULL; 748 release_sock(&smc->sk); 749 } 750 751 static int smc_connect(struct socket *sock, struct sockaddr *addr, 752 int alen, int flags) 753 { 754 struct sock *sk = sock->sk; 755 struct smc_sock *smc; 756 int rc = -EINVAL; 757 758 smc = smc_sk(sk); 759 760 /* separate smc parameter checking to be safe */ 761 if (alen < sizeof(addr->sa_family)) 762 goto out_err; 763 if (addr->sa_family != AF_INET && addr->sa_family != AF_INET6) 764 goto out_err; 765 766 lock_sock(sk); 767 switch (sk->sk_state) { 768 default: 769 goto out; 770 case SMC_ACTIVE: 771 rc = -EISCONN; 772 goto out; 773 case SMC_INIT: 774 rc = 0; 775 break; 776 } 777 778 smc_copy_sock_settings_to_clc(smc); 779 tcp_sk(smc->clcsock->sk)->syn_smc = 1; 780 if (flags & O_NONBLOCK) { 781 if (smc->connect_info) { 782 rc = -EALREADY; 783 goto out; 784 } 785 smc->connect_info = kzalloc(alen + 2 * sizeof(int), GFP_KERNEL); 786 if (!smc->connect_info) { 787 rc = -ENOMEM; 788 goto out; 789 } 790 smc->connect_info->alen = alen; 791 smc->connect_info->flags = flags ^ O_NONBLOCK; 792 memcpy(&smc->connect_info->addr, addr, alen); 793 schedule_work(&smc->connect_work); 794 rc = -EINPROGRESS; 795 } else { 796 rc = kernel_connect(smc->clcsock, addr, alen, flags); 797 if (rc) 798 goto out; 799 800 rc = __smc_connect(smc); 801 if (rc < 0) 802 goto out; 803 else 804 rc = 0; /* success cases including fallback */ 805 } 806 807 out: 808 release_sock(sk); 809 out_err: 810 return rc; 811 } 812 813 static int smc_clcsock_accept(struct smc_sock *lsmc, struct smc_sock **new_smc) 814 { 815 struct socket *new_clcsock = NULL; 816 struct sock *lsk = &lsmc->sk; 817 struct sock *new_sk; 818 int rc; 819 820 release_sock(lsk); 821 new_sk = smc_sock_alloc(sock_net(lsk), NULL, lsk->sk_protocol); 822 if (!new_sk) { 823 rc = -ENOMEM; 824 lsk->sk_err = ENOMEM; 825 *new_smc = NULL; 826 lock_sock(lsk); 827 goto out; 828 } 829 *new_smc = smc_sk(new_sk); 830 831 rc = kernel_accept(lsmc->clcsock, &new_clcsock, 0); 832 lock_sock(lsk); 833 if (rc < 0) 834 lsk->sk_err = -rc; 835 if (rc < 0 || lsk->sk_state == SMC_CLOSED) { 836 if (new_clcsock) 837 sock_release(new_clcsock); 838 new_sk->sk_state = SMC_CLOSED; 839 sock_set_flag(new_sk, SOCK_DEAD); 840 new_sk->sk_prot->unhash(new_sk); 841 sock_put(new_sk); /* final */ 842 *new_smc = NULL; 843 goto out; 844 } 845 846 (*new_smc)->clcsock = new_clcsock; 847 out: 848 return rc; 849 } 850 851 /* add a just created sock to the accept queue of the listen sock as 852 * candidate for a following socket accept call from user space 853 */ 854 static void smc_accept_enqueue(struct sock *parent, struct sock *sk) 855 { 856 struct smc_sock *par = smc_sk(parent); 857 858 sock_hold(sk); /* sock_put in smc_accept_unlink () */ 859 spin_lock(&par->accept_q_lock); 860 list_add_tail(&smc_sk(sk)->accept_q, &par->accept_q); 861 spin_unlock(&par->accept_q_lock); 862 sk_acceptq_added(parent); 863 } 864 865 /* remove a socket from the accept queue of its parental listening socket */ 866 static void smc_accept_unlink(struct sock *sk) 867 { 868 struct smc_sock *par = smc_sk(sk)->listen_smc; 869 870 spin_lock(&par->accept_q_lock); 871 list_del_init(&smc_sk(sk)->accept_q); 872 spin_unlock(&par->accept_q_lock); 873 sk_acceptq_removed(&smc_sk(sk)->listen_smc->sk); 874 sock_put(sk); /* sock_hold in smc_accept_enqueue */ 875 } 876 877 /* remove a sock from the accept queue to bind it to a new socket created 878 * for a socket accept call from user space 879 */ 880 struct sock *smc_accept_dequeue(struct sock *parent, 881 struct socket *new_sock) 882 { 883 struct smc_sock *isk, *n; 884 struct sock *new_sk; 885 886 list_for_each_entry_safe(isk, n, &smc_sk(parent)->accept_q, accept_q) { 887 new_sk = (struct sock *)isk; 888 889 smc_accept_unlink(new_sk); 890 if (new_sk->sk_state == SMC_CLOSED) { 891 if (isk->clcsock) { 892 sock_release(isk->clcsock); 893 isk->clcsock = NULL; 894 } 895 new_sk->sk_prot->unhash(new_sk); 896 sock_put(new_sk); /* final */ 897 continue; 898 } 899 if (new_sock) 900 sock_graft(new_sk, new_sock); 901 return new_sk; 902 } 903 return NULL; 904 } 905 906 /* clean up for a created but never accepted sock */ 907 void smc_close_non_accepted(struct sock *sk) 908 { 909 struct smc_sock *smc = smc_sk(sk); 910 911 lock_sock(sk); 912 if (!sk->sk_lingertime) 913 /* wait for peer closing */ 914 sk->sk_lingertime = SMC_MAX_STREAM_WAIT_TIMEOUT; 915 if (!smc->use_fallback) { 916 smc_close_active(smc); 917 sock_set_flag(sk, SOCK_DEAD); 918 sk->sk_shutdown |= SHUTDOWN_MASK; 919 } 920 if (smc->clcsock) { 921 struct socket *tcp; 922 923 tcp = smc->clcsock; 924 smc->clcsock = NULL; 925 sock_release(tcp); 926 } 927 if (smc->use_fallback) { 928 sock_put(sk); /* passive closing */ 929 sk->sk_state = SMC_CLOSED; 930 } else { 931 if (sk->sk_state == SMC_CLOSED) 932 smc_conn_free(&smc->conn); 933 } 934 release_sock(sk); 935 sk->sk_prot->unhash(sk); 936 sock_put(sk); /* final sock_put */ 937 } 938 939 static int smc_serv_conf_first_link(struct smc_sock *smc) 940 { 941 struct net *net = sock_net(smc->clcsock->sk); 942 struct smc_link_group *lgr = smc->conn.lgr; 943 struct smc_link *link; 944 int rest; 945 int rc; 946 947 link = &lgr->lnk[SMC_SINGLE_LINK]; 948 949 if (smc_reg_rmb(link, smc->conn.rmb_desc, false)) 950 return SMC_CLC_DECL_ERR_REGRMB; 951 952 /* send CONFIRM LINK request to client over the RoCE fabric */ 953 rc = smc_llc_send_confirm_link(link, SMC_LLC_REQ); 954 if (rc < 0) 955 return SMC_CLC_DECL_TIMEOUT_CL; 956 957 /* receive CONFIRM LINK response from client over the RoCE fabric */ 958 rest = wait_for_completion_interruptible_timeout( 959 &link->llc_confirm_resp, 960 SMC_LLC_WAIT_FIRST_TIME); 961 if (rest <= 0) { 962 struct smc_clc_msg_decline dclc; 963 964 rc = smc_clc_wait_msg(smc, &dclc, sizeof(dclc), 965 SMC_CLC_DECLINE); 966 return rc; 967 } 968 969 if (link->llc_confirm_resp_rc) 970 return SMC_CLC_DECL_RMBE_EC; 971 972 /* send ADD LINK request to client over the RoCE fabric */ 973 rc = smc_llc_send_add_link(link, 974 link->smcibdev->mac[link->ibport - 1], 975 link->gid, SMC_LLC_REQ); 976 if (rc < 0) 977 return SMC_CLC_DECL_TIMEOUT_AL; 978 979 /* receive ADD LINK response from client over the RoCE fabric */ 980 rest = wait_for_completion_interruptible_timeout(&link->llc_add_resp, 981 SMC_LLC_WAIT_TIME); 982 if (rest <= 0) { 983 struct smc_clc_msg_decline dclc; 984 985 rc = smc_clc_wait_msg(smc, &dclc, sizeof(dclc), 986 SMC_CLC_DECLINE); 987 return rc; 988 } 989 990 smc_llc_link_active(link, net->ipv4.sysctl_tcp_keepalive_time); 991 992 return 0; 993 } 994 995 /* listen worker: finish */ 996 static void smc_listen_out(struct smc_sock *new_smc) 997 { 998 struct smc_sock *lsmc = new_smc->listen_smc; 999 struct sock *newsmcsk = &new_smc->sk; 1000 1001 lock_sock_nested(&lsmc->sk, SINGLE_DEPTH_NESTING); 1002 if (lsmc->sk.sk_state == SMC_LISTEN) { 1003 smc_accept_enqueue(&lsmc->sk, newsmcsk); 1004 } else { /* no longer listening */ 1005 smc_close_non_accepted(newsmcsk); 1006 } 1007 release_sock(&lsmc->sk); 1008 1009 /* Wake up accept */ 1010 lsmc->sk.sk_data_ready(&lsmc->sk); 1011 sock_put(&lsmc->sk); /* sock_hold in smc_tcp_listen_work */ 1012 } 1013 1014 /* listen worker: finish in state connected */ 1015 static void smc_listen_out_connected(struct smc_sock *new_smc) 1016 { 1017 struct sock *newsmcsk = &new_smc->sk; 1018 1019 sk_refcnt_debug_inc(newsmcsk); 1020 if (newsmcsk->sk_state == SMC_INIT) 1021 newsmcsk->sk_state = SMC_ACTIVE; 1022 1023 smc_listen_out(new_smc); 1024 } 1025 1026 /* listen worker: finish in error state */ 1027 static void smc_listen_out_err(struct smc_sock *new_smc) 1028 { 1029 struct sock *newsmcsk = &new_smc->sk; 1030 1031 if (newsmcsk->sk_state == SMC_INIT) 1032 sock_put(&new_smc->sk); /* passive closing */ 1033 newsmcsk->sk_state = SMC_CLOSED; 1034 smc_conn_free(&new_smc->conn); 1035 1036 smc_listen_out(new_smc); 1037 } 1038 1039 /* listen worker: decline and fall back if possible */ 1040 static void smc_listen_decline(struct smc_sock *new_smc, int reason_code, 1041 int local_contact) 1042 { 1043 /* RDMA setup failed, switch back to TCP */ 1044 if (local_contact == SMC_FIRST_CONTACT) 1045 smc_lgr_forget(new_smc->conn.lgr); 1046 if (reason_code < 0) { /* error, no fallback possible */ 1047 smc_listen_out_err(new_smc); 1048 return; 1049 } 1050 smc_conn_free(&new_smc->conn); 1051 new_smc->use_fallback = true; 1052 new_smc->fallback_rsn = reason_code; 1053 if (reason_code && reason_code != SMC_CLC_DECL_PEERDECL) { 1054 if (smc_clc_send_decline(new_smc, reason_code) < 0) { 1055 smc_listen_out_err(new_smc); 1056 return; 1057 } 1058 } 1059 smc_listen_out_connected(new_smc); 1060 } 1061 1062 /* listen worker: check prefixes */ 1063 static int smc_listen_rdma_check(struct smc_sock *new_smc, 1064 struct smc_clc_msg_proposal *pclc) 1065 { 1066 struct smc_clc_msg_proposal_prefix *pclc_prfx; 1067 struct socket *newclcsock = new_smc->clcsock; 1068 1069 pclc_prfx = smc_clc_proposal_get_prefix(pclc); 1070 if (smc_clc_prfx_match(newclcsock, pclc_prfx)) 1071 return SMC_CLC_DECL_CNFERR; 1072 1073 return 0; 1074 } 1075 1076 /* listen worker: initialize connection and buffers */ 1077 static int smc_listen_rdma_init(struct smc_sock *new_smc, 1078 struct smc_clc_msg_proposal *pclc, 1079 struct smc_ib_device *ibdev, u8 ibport, 1080 int *local_contact) 1081 { 1082 /* allocate connection / link group */ 1083 *local_contact = smc_conn_create(new_smc, false, 0, ibdev, ibport, 1084 &pclc->lcl, NULL, 0); 1085 if (*local_contact < 0) { 1086 if (*local_contact == -ENOMEM) 1087 return SMC_CLC_DECL_MEM;/* insufficient memory*/ 1088 return SMC_CLC_DECL_INTERR; /* other error */ 1089 } 1090 1091 /* create send buffer and rmb */ 1092 if (smc_buf_create(new_smc, false)) 1093 return SMC_CLC_DECL_MEM; 1094 1095 return 0; 1096 } 1097 1098 /* listen worker: initialize connection and buffers for SMC-D */ 1099 static int smc_listen_ism_init(struct smc_sock *new_smc, 1100 struct smc_clc_msg_proposal *pclc, 1101 struct smcd_dev *ismdev, 1102 int *local_contact) 1103 { 1104 struct smc_clc_msg_smcd *pclc_smcd; 1105 1106 pclc_smcd = smc_get_clc_msg_smcd(pclc); 1107 *local_contact = smc_conn_create(new_smc, true, 0, NULL, 0, NULL, 1108 ismdev, pclc_smcd->gid); 1109 if (*local_contact < 0) { 1110 if (*local_contact == -ENOMEM) 1111 return SMC_CLC_DECL_MEM;/* insufficient memory*/ 1112 return SMC_CLC_DECL_INTERR; /* other error */ 1113 } 1114 1115 /* Check if peer can be reached via ISM device */ 1116 if (smc_ism_cantalk(new_smc->conn.lgr->peer_gid, 1117 new_smc->conn.lgr->vlan_id, 1118 new_smc->conn.lgr->smcd)) { 1119 if (*local_contact == SMC_FIRST_CONTACT) 1120 smc_lgr_forget(new_smc->conn.lgr); 1121 smc_conn_free(&new_smc->conn); 1122 return SMC_CLC_DECL_CNFERR; 1123 } 1124 1125 /* Create send and receive buffers */ 1126 if (smc_buf_create(new_smc, true)) { 1127 if (*local_contact == SMC_FIRST_CONTACT) 1128 smc_lgr_forget(new_smc->conn.lgr); 1129 smc_conn_free(&new_smc->conn); 1130 return SMC_CLC_DECL_MEM; 1131 } 1132 1133 return 0; 1134 } 1135 1136 /* listen worker: register buffers */ 1137 static int smc_listen_rdma_reg(struct smc_sock *new_smc, int local_contact) 1138 { 1139 struct smc_link *link = &new_smc->conn.lgr->lnk[SMC_SINGLE_LINK]; 1140 1141 if (local_contact != SMC_FIRST_CONTACT) { 1142 if (!new_smc->conn.rmb_desc->reused) { 1143 if (smc_reg_rmb(link, new_smc->conn.rmb_desc, true)) 1144 return SMC_CLC_DECL_ERR_REGRMB; 1145 } 1146 } 1147 smc_rmb_sync_sg_for_device(&new_smc->conn); 1148 1149 return 0; 1150 } 1151 1152 /* listen worker: finish RDMA setup */ 1153 static void smc_listen_rdma_finish(struct smc_sock *new_smc, 1154 struct smc_clc_msg_accept_confirm *cclc, 1155 int local_contact) 1156 { 1157 struct smc_link *link = &new_smc->conn.lgr->lnk[SMC_SINGLE_LINK]; 1158 int reason_code = 0; 1159 1160 if (local_contact == SMC_FIRST_CONTACT) 1161 smc_link_save_peer_info(link, cclc); 1162 1163 if (smc_rmb_rtoken_handling(&new_smc->conn, cclc)) { 1164 reason_code = SMC_CLC_DECL_ERR_RTOK; 1165 goto decline; 1166 } 1167 1168 if (local_contact == SMC_FIRST_CONTACT) { 1169 if (smc_ib_ready_link(link)) { 1170 reason_code = SMC_CLC_DECL_ERR_RDYLNK; 1171 goto decline; 1172 } 1173 /* QP confirmation over RoCE fabric */ 1174 reason_code = smc_serv_conf_first_link(new_smc); 1175 if (reason_code) 1176 goto decline; 1177 } 1178 return; 1179 1180 decline: 1181 mutex_unlock(&smc_create_lgr_pending); 1182 smc_listen_decline(new_smc, reason_code, local_contact); 1183 } 1184 1185 /* setup for RDMA connection of server */ 1186 static void smc_listen_work(struct work_struct *work) 1187 { 1188 struct smc_sock *new_smc = container_of(work, struct smc_sock, 1189 smc_listen_work); 1190 struct socket *newclcsock = new_smc->clcsock; 1191 struct smc_clc_msg_accept_confirm cclc; 1192 struct smc_clc_msg_proposal *pclc; 1193 struct smc_ib_device *ibdev; 1194 bool ism_supported = false; 1195 struct smcd_dev *ismdev; 1196 u8 buf[SMC_CLC_MAX_LEN]; 1197 int local_contact = 0; 1198 unsigned short vlan; 1199 int reason_code = 0; 1200 int rc = 0; 1201 u8 ibport; 1202 1203 if (new_smc->use_fallback) { 1204 smc_listen_out_connected(new_smc); 1205 return; 1206 } 1207 1208 /* check if peer is smc capable */ 1209 if (!tcp_sk(newclcsock->sk)->syn_smc) { 1210 new_smc->use_fallback = true; 1211 new_smc->fallback_rsn = SMC_CLC_DECL_PEERNOSMC; 1212 smc_listen_out_connected(new_smc); 1213 return; 1214 } 1215 1216 /* do inband token exchange - 1217 * wait for and receive SMC Proposal CLC message 1218 */ 1219 pclc = (struct smc_clc_msg_proposal *)&buf; 1220 reason_code = smc_clc_wait_msg(new_smc, pclc, SMC_CLC_MAX_LEN, 1221 SMC_CLC_PROPOSAL); 1222 if (reason_code) { 1223 smc_listen_decline(new_smc, reason_code, 0); 1224 return; 1225 } 1226 1227 /* IPSec connections opt out of SMC-R optimizations */ 1228 if (using_ipsec(new_smc)) { 1229 smc_listen_decline(new_smc, SMC_CLC_DECL_IPSEC, 0); 1230 return; 1231 } 1232 1233 mutex_lock(&smc_create_lgr_pending); 1234 smc_close_init(new_smc); 1235 smc_rx_init(new_smc); 1236 smc_tx_init(new_smc); 1237 1238 /* check if ISM is available */ 1239 if ((pclc->hdr.path == SMC_TYPE_D || pclc->hdr.path == SMC_TYPE_B) && 1240 !smc_check_ism(new_smc, &ismdev) && 1241 !smc_listen_ism_init(new_smc, pclc, ismdev, &local_contact)) { 1242 ism_supported = true; 1243 } 1244 1245 /* check if RDMA is available */ 1246 if (!ism_supported && 1247 ((pclc->hdr.path != SMC_TYPE_R && pclc->hdr.path != SMC_TYPE_B) || 1248 smc_vlan_by_tcpsk(new_smc->clcsock, &vlan) || 1249 smc_check_rdma(new_smc, &ibdev, &ibport, vlan, NULL) || 1250 smc_listen_rdma_check(new_smc, pclc) || 1251 smc_listen_rdma_init(new_smc, pclc, ibdev, ibport, 1252 &local_contact) || 1253 smc_listen_rdma_reg(new_smc, local_contact))) { 1254 /* SMC not supported, decline */ 1255 mutex_unlock(&smc_create_lgr_pending); 1256 smc_listen_decline(new_smc, SMC_CLC_DECL_MODEUNSUPP, 1257 local_contact); 1258 return; 1259 } 1260 1261 /* send SMC Accept CLC message */ 1262 rc = smc_clc_send_accept(new_smc, local_contact); 1263 if (rc) { 1264 mutex_unlock(&smc_create_lgr_pending); 1265 smc_listen_decline(new_smc, rc, local_contact); 1266 return; 1267 } 1268 1269 /* receive SMC Confirm CLC message */ 1270 reason_code = smc_clc_wait_msg(new_smc, &cclc, sizeof(cclc), 1271 SMC_CLC_CONFIRM); 1272 if (reason_code) { 1273 mutex_unlock(&smc_create_lgr_pending); 1274 smc_listen_decline(new_smc, reason_code, local_contact); 1275 return; 1276 } 1277 1278 /* finish worker */ 1279 if (!ism_supported) 1280 smc_listen_rdma_finish(new_smc, &cclc, local_contact); 1281 smc_conn_save_peer_info(new_smc, &cclc); 1282 mutex_unlock(&smc_create_lgr_pending); 1283 smc_listen_out_connected(new_smc); 1284 } 1285 1286 static void smc_tcp_listen_work(struct work_struct *work) 1287 { 1288 struct smc_sock *lsmc = container_of(work, struct smc_sock, 1289 tcp_listen_work); 1290 struct sock *lsk = &lsmc->sk; 1291 struct smc_sock *new_smc; 1292 int rc = 0; 1293 1294 lock_sock(lsk); 1295 while (lsk->sk_state == SMC_LISTEN) { 1296 rc = smc_clcsock_accept(lsmc, &new_smc); 1297 if (rc) 1298 goto out; 1299 if (!new_smc) 1300 continue; 1301 1302 new_smc->listen_smc = lsmc; 1303 new_smc->use_fallback = lsmc->use_fallback; 1304 new_smc->fallback_rsn = lsmc->fallback_rsn; 1305 sock_hold(lsk); /* sock_put in smc_listen_work */ 1306 INIT_WORK(&new_smc->smc_listen_work, smc_listen_work); 1307 smc_copy_sock_settings_to_smc(new_smc); 1308 new_smc->sk.sk_sndbuf = lsmc->sk.sk_sndbuf; 1309 new_smc->sk.sk_rcvbuf = lsmc->sk.sk_rcvbuf; 1310 sock_hold(&new_smc->sk); /* sock_put in passive closing */ 1311 if (!schedule_work(&new_smc->smc_listen_work)) 1312 sock_put(&new_smc->sk); 1313 } 1314 1315 out: 1316 release_sock(lsk); 1317 sock_put(&lsmc->sk); /* sock_hold in smc_listen */ 1318 } 1319 1320 static int smc_listen(struct socket *sock, int backlog) 1321 { 1322 struct sock *sk = sock->sk; 1323 struct smc_sock *smc; 1324 int rc; 1325 1326 smc = smc_sk(sk); 1327 lock_sock(sk); 1328 1329 rc = -EINVAL; 1330 if ((sk->sk_state != SMC_INIT) && (sk->sk_state != SMC_LISTEN)) 1331 goto out; 1332 1333 rc = 0; 1334 if (sk->sk_state == SMC_LISTEN) { 1335 sk->sk_max_ack_backlog = backlog; 1336 goto out; 1337 } 1338 /* some socket options are handled in core, so we could not apply 1339 * them to the clc socket -- copy smc socket options to clc socket 1340 */ 1341 smc_copy_sock_settings_to_clc(smc); 1342 if (!smc->use_fallback) 1343 tcp_sk(smc->clcsock->sk)->syn_smc = 1; 1344 1345 rc = kernel_listen(smc->clcsock, backlog); 1346 if (rc) 1347 goto out; 1348 sk->sk_max_ack_backlog = backlog; 1349 sk->sk_ack_backlog = 0; 1350 sk->sk_state = SMC_LISTEN; 1351 INIT_WORK(&smc->tcp_listen_work, smc_tcp_listen_work); 1352 sock_hold(sk); /* sock_hold in tcp_listen_worker */ 1353 if (!schedule_work(&smc->tcp_listen_work)) 1354 sock_put(sk); 1355 1356 out: 1357 release_sock(sk); 1358 return rc; 1359 } 1360 1361 static int smc_accept(struct socket *sock, struct socket *new_sock, 1362 int flags, bool kern) 1363 { 1364 struct sock *sk = sock->sk, *nsk; 1365 DECLARE_WAITQUEUE(wait, current); 1366 struct smc_sock *lsmc; 1367 long timeo; 1368 int rc = 0; 1369 1370 lsmc = smc_sk(sk); 1371 sock_hold(sk); /* sock_put below */ 1372 lock_sock(sk); 1373 1374 if (lsmc->sk.sk_state != SMC_LISTEN) { 1375 rc = -EINVAL; 1376 release_sock(sk); 1377 goto out; 1378 } 1379 1380 /* Wait for an incoming connection */ 1381 timeo = sock_rcvtimeo(sk, flags & O_NONBLOCK); 1382 add_wait_queue_exclusive(sk_sleep(sk), &wait); 1383 while (!(nsk = smc_accept_dequeue(sk, new_sock))) { 1384 set_current_state(TASK_INTERRUPTIBLE); 1385 if (!timeo) { 1386 rc = -EAGAIN; 1387 break; 1388 } 1389 release_sock(sk); 1390 timeo = schedule_timeout(timeo); 1391 /* wakeup by sk_data_ready in smc_listen_work() */ 1392 sched_annotate_sleep(); 1393 lock_sock(sk); 1394 if (signal_pending(current)) { 1395 rc = sock_intr_errno(timeo); 1396 break; 1397 } 1398 } 1399 set_current_state(TASK_RUNNING); 1400 remove_wait_queue(sk_sleep(sk), &wait); 1401 1402 if (!rc) 1403 rc = sock_error(nsk); 1404 release_sock(sk); 1405 if (rc) 1406 goto out; 1407 1408 if (lsmc->sockopt_defer_accept && !(flags & O_NONBLOCK)) { 1409 /* wait till data arrives on the socket */ 1410 timeo = msecs_to_jiffies(lsmc->sockopt_defer_accept * 1411 MSEC_PER_SEC); 1412 if (smc_sk(nsk)->use_fallback) { 1413 struct sock *clcsk = smc_sk(nsk)->clcsock->sk; 1414 1415 lock_sock(clcsk); 1416 if (skb_queue_empty(&clcsk->sk_receive_queue)) 1417 sk_wait_data(clcsk, &timeo, NULL); 1418 release_sock(clcsk); 1419 } else if (!atomic_read(&smc_sk(nsk)->conn.bytes_to_rcv)) { 1420 lock_sock(nsk); 1421 smc_rx_wait(smc_sk(nsk), &timeo, smc_rx_data_available); 1422 release_sock(nsk); 1423 } 1424 } 1425 1426 out: 1427 sock_put(sk); /* sock_hold above */ 1428 return rc; 1429 } 1430 1431 static int smc_getname(struct socket *sock, struct sockaddr *addr, 1432 int peer) 1433 { 1434 struct smc_sock *smc; 1435 1436 if (peer && (sock->sk->sk_state != SMC_ACTIVE) && 1437 (sock->sk->sk_state != SMC_APPCLOSEWAIT1)) 1438 return -ENOTCONN; 1439 1440 smc = smc_sk(sock->sk); 1441 1442 return smc->clcsock->ops->getname(smc->clcsock, addr, peer); 1443 } 1444 1445 static int smc_sendmsg(struct socket *sock, struct msghdr *msg, size_t len) 1446 { 1447 struct sock *sk = sock->sk; 1448 struct smc_sock *smc; 1449 int rc = -EPIPE; 1450 1451 smc = smc_sk(sk); 1452 lock_sock(sk); 1453 if ((sk->sk_state != SMC_ACTIVE) && 1454 (sk->sk_state != SMC_APPCLOSEWAIT1) && 1455 (sk->sk_state != SMC_INIT)) 1456 goto out; 1457 1458 if (msg->msg_flags & MSG_FASTOPEN) { 1459 if (sk->sk_state == SMC_INIT) { 1460 smc->use_fallback = true; 1461 smc->fallback_rsn = SMC_CLC_DECL_OPTUNSUPP; 1462 } else { 1463 rc = -EINVAL; 1464 goto out; 1465 } 1466 } 1467 1468 if (smc->use_fallback) 1469 rc = smc->clcsock->ops->sendmsg(smc->clcsock, msg, len); 1470 else 1471 rc = smc_tx_sendmsg(smc, msg, len); 1472 out: 1473 release_sock(sk); 1474 return rc; 1475 } 1476 1477 static int smc_recvmsg(struct socket *sock, struct msghdr *msg, size_t len, 1478 int flags) 1479 { 1480 struct sock *sk = sock->sk; 1481 struct smc_sock *smc; 1482 int rc = -ENOTCONN; 1483 1484 smc = smc_sk(sk); 1485 lock_sock(sk); 1486 if ((sk->sk_state == SMC_INIT) || 1487 (sk->sk_state == SMC_LISTEN) || 1488 (sk->sk_state == SMC_CLOSED)) 1489 goto out; 1490 1491 if (sk->sk_state == SMC_PEERFINCLOSEWAIT) { 1492 rc = 0; 1493 goto out; 1494 } 1495 1496 if (smc->use_fallback) { 1497 rc = smc->clcsock->ops->recvmsg(smc->clcsock, msg, len, flags); 1498 } else { 1499 msg->msg_namelen = 0; 1500 rc = smc_rx_recvmsg(smc, msg, NULL, len, flags); 1501 } 1502 1503 out: 1504 release_sock(sk); 1505 return rc; 1506 } 1507 1508 static __poll_t smc_accept_poll(struct sock *parent) 1509 { 1510 struct smc_sock *isk = smc_sk(parent); 1511 __poll_t mask = 0; 1512 1513 spin_lock(&isk->accept_q_lock); 1514 if (!list_empty(&isk->accept_q)) 1515 mask = EPOLLIN | EPOLLRDNORM; 1516 spin_unlock(&isk->accept_q_lock); 1517 1518 return mask; 1519 } 1520 1521 static __poll_t smc_poll(struct file *file, struct socket *sock, 1522 poll_table *wait) 1523 { 1524 struct sock *sk = sock->sk; 1525 __poll_t mask = 0; 1526 struct smc_sock *smc; 1527 1528 if (!sk) 1529 return EPOLLNVAL; 1530 1531 smc = smc_sk(sock->sk); 1532 if ((sk->sk_state == SMC_INIT) || smc->use_fallback) { 1533 /* delegate to CLC child sock */ 1534 mask = smc->clcsock->ops->poll(file, smc->clcsock, wait); 1535 sk->sk_err = smc->clcsock->sk->sk_err; 1536 if (sk->sk_err) 1537 mask |= EPOLLERR; 1538 } else { 1539 if (sk->sk_state != SMC_CLOSED) 1540 sock_poll_wait(file, wait); 1541 if (sk->sk_err) 1542 mask |= EPOLLERR; 1543 if ((sk->sk_shutdown == SHUTDOWN_MASK) || 1544 (sk->sk_state == SMC_CLOSED)) 1545 mask |= EPOLLHUP; 1546 if (sk->sk_state == SMC_LISTEN) { 1547 /* woken up by sk_data_ready in smc_listen_work() */ 1548 mask = smc_accept_poll(sk); 1549 } else { 1550 if (atomic_read(&smc->conn.sndbuf_space) || 1551 sk->sk_shutdown & SEND_SHUTDOWN) { 1552 mask |= EPOLLOUT | EPOLLWRNORM; 1553 } else { 1554 sk_set_bit(SOCKWQ_ASYNC_NOSPACE, sk); 1555 set_bit(SOCK_NOSPACE, &sk->sk_socket->flags); 1556 } 1557 if (atomic_read(&smc->conn.bytes_to_rcv)) 1558 mask |= EPOLLIN | EPOLLRDNORM; 1559 if (sk->sk_shutdown & RCV_SHUTDOWN) 1560 mask |= EPOLLIN | EPOLLRDNORM | EPOLLRDHUP; 1561 if (sk->sk_state == SMC_APPCLOSEWAIT1) 1562 mask |= EPOLLIN; 1563 } 1564 if (smc->conn.urg_state == SMC_URG_VALID) 1565 mask |= EPOLLPRI; 1566 } 1567 1568 return mask; 1569 } 1570 1571 static int smc_shutdown(struct socket *sock, int how) 1572 { 1573 struct sock *sk = sock->sk; 1574 struct smc_sock *smc; 1575 int rc = -EINVAL; 1576 int rc1 = 0; 1577 1578 smc = smc_sk(sk); 1579 1580 if ((how < SHUT_RD) || (how > SHUT_RDWR)) 1581 return rc; 1582 1583 lock_sock(sk); 1584 1585 rc = -ENOTCONN; 1586 if ((sk->sk_state != SMC_ACTIVE) && 1587 (sk->sk_state != SMC_PEERCLOSEWAIT1) && 1588 (sk->sk_state != SMC_PEERCLOSEWAIT2) && 1589 (sk->sk_state != SMC_APPCLOSEWAIT1) && 1590 (sk->sk_state != SMC_APPCLOSEWAIT2) && 1591 (sk->sk_state != SMC_APPFINCLOSEWAIT)) 1592 goto out; 1593 if (smc->use_fallback) { 1594 rc = kernel_sock_shutdown(smc->clcsock, how); 1595 sk->sk_shutdown = smc->clcsock->sk->sk_shutdown; 1596 if (sk->sk_shutdown == SHUTDOWN_MASK) 1597 sk->sk_state = SMC_CLOSED; 1598 goto out; 1599 } 1600 switch (how) { 1601 case SHUT_RDWR: /* shutdown in both directions */ 1602 rc = smc_close_active(smc); 1603 break; 1604 case SHUT_WR: 1605 rc = smc_close_shutdown_write(smc); 1606 break; 1607 case SHUT_RD: 1608 rc = 0; 1609 /* nothing more to do because peer is not involved */ 1610 break; 1611 } 1612 if (smc->clcsock) 1613 rc1 = kernel_sock_shutdown(smc->clcsock, how); 1614 /* map sock_shutdown_cmd constants to sk_shutdown value range */ 1615 sk->sk_shutdown |= how + 1; 1616 1617 out: 1618 release_sock(sk); 1619 return rc ? rc : rc1; 1620 } 1621 1622 static int smc_setsockopt(struct socket *sock, int level, int optname, 1623 char __user *optval, unsigned int optlen) 1624 { 1625 struct sock *sk = sock->sk; 1626 struct smc_sock *smc; 1627 int val, rc; 1628 1629 smc = smc_sk(sk); 1630 1631 /* generic setsockopts reaching us here always apply to the 1632 * CLC socket 1633 */ 1634 rc = smc->clcsock->ops->setsockopt(smc->clcsock, level, optname, 1635 optval, optlen); 1636 if (smc->clcsock->sk->sk_err) { 1637 sk->sk_err = smc->clcsock->sk->sk_err; 1638 sk->sk_error_report(sk); 1639 } 1640 if (rc) 1641 return rc; 1642 1643 if (optlen < sizeof(int)) 1644 return -EINVAL; 1645 if (get_user(val, (int __user *)optval)) 1646 return -EFAULT; 1647 1648 lock_sock(sk); 1649 switch (optname) { 1650 case TCP_ULP: 1651 case TCP_FASTOPEN: 1652 case TCP_FASTOPEN_CONNECT: 1653 case TCP_FASTOPEN_KEY: 1654 case TCP_FASTOPEN_NO_COOKIE: 1655 /* option not supported by SMC */ 1656 if (sk->sk_state == SMC_INIT) { 1657 smc->use_fallback = true; 1658 smc->fallback_rsn = SMC_CLC_DECL_OPTUNSUPP; 1659 } else { 1660 if (!smc->use_fallback) 1661 rc = -EINVAL; 1662 } 1663 break; 1664 case TCP_NODELAY: 1665 if (sk->sk_state != SMC_INIT && sk->sk_state != SMC_LISTEN) { 1666 if (val && !smc->use_fallback) 1667 mod_delayed_work(system_wq, &smc->conn.tx_work, 1668 0); 1669 } 1670 break; 1671 case TCP_CORK: 1672 if (sk->sk_state != SMC_INIT && sk->sk_state != SMC_LISTEN) { 1673 if (!val && !smc->use_fallback) 1674 mod_delayed_work(system_wq, &smc->conn.tx_work, 1675 0); 1676 } 1677 break; 1678 case TCP_DEFER_ACCEPT: 1679 smc->sockopt_defer_accept = val; 1680 break; 1681 default: 1682 break; 1683 } 1684 release_sock(sk); 1685 1686 return rc; 1687 } 1688 1689 static int smc_getsockopt(struct socket *sock, int level, int optname, 1690 char __user *optval, int __user *optlen) 1691 { 1692 struct smc_sock *smc; 1693 1694 smc = smc_sk(sock->sk); 1695 /* socket options apply to the CLC socket */ 1696 return smc->clcsock->ops->getsockopt(smc->clcsock, level, optname, 1697 optval, optlen); 1698 } 1699 1700 static int smc_ioctl(struct socket *sock, unsigned int cmd, 1701 unsigned long arg) 1702 { 1703 union smc_host_cursor cons, urg; 1704 struct smc_connection *conn; 1705 struct smc_sock *smc; 1706 int answ; 1707 1708 smc = smc_sk(sock->sk); 1709 conn = &smc->conn; 1710 lock_sock(&smc->sk); 1711 if (smc->use_fallback) { 1712 if (!smc->clcsock) { 1713 release_sock(&smc->sk); 1714 return -EBADF; 1715 } 1716 answ = smc->clcsock->ops->ioctl(smc->clcsock, cmd, arg); 1717 release_sock(&smc->sk); 1718 return answ; 1719 } 1720 switch (cmd) { 1721 case SIOCINQ: /* same as FIONREAD */ 1722 if (smc->sk.sk_state == SMC_LISTEN) { 1723 release_sock(&smc->sk); 1724 return -EINVAL; 1725 } 1726 if (smc->sk.sk_state == SMC_INIT || 1727 smc->sk.sk_state == SMC_CLOSED) 1728 answ = 0; 1729 else 1730 answ = atomic_read(&smc->conn.bytes_to_rcv); 1731 break; 1732 case SIOCOUTQ: 1733 /* output queue size (not send + not acked) */ 1734 if (smc->sk.sk_state == SMC_LISTEN) { 1735 release_sock(&smc->sk); 1736 return -EINVAL; 1737 } 1738 if (smc->sk.sk_state == SMC_INIT || 1739 smc->sk.sk_state == SMC_CLOSED) 1740 answ = 0; 1741 else 1742 answ = smc->conn.sndbuf_desc->len - 1743 atomic_read(&smc->conn.sndbuf_space); 1744 break; 1745 case SIOCOUTQNSD: 1746 /* output queue size (not send only) */ 1747 if (smc->sk.sk_state == SMC_LISTEN) { 1748 release_sock(&smc->sk); 1749 return -EINVAL; 1750 } 1751 if (smc->sk.sk_state == SMC_INIT || 1752 smc->sk.sk_state == SMC_CLOSED) 1753 answ = 0; 1754 else 1755 answ = smc_tx_prepared_sends(&smc->conn); 1756 break; 1757 case SIOCATMARK: 1758 if (smc->sk.sk_state == SMC_LISTEN) { 1759 release_sock(&smc->sk); 1760 return -EINVAL; 1761 } 1762 if (smc->sk.sk_state == SMC_INIT || 1763 smc->sk.sk_state == SMC_CLOSED) { 1764 answ = 0; 1765 } else { 1766 smc_curs_copy(&cons, &conn->local_tx_ctrl.cons, conn); 1767 smc_curs_copy(&urg, &conn->urg_curs, conn); 1768 answ = smc_curs_diff(conn->rmb_desc->len, 1769 &cons, &urg) == 1; 1770 } 1771 break; 1772 default: 1773 release_sock(&smc->sk); 1774 return -ENOIOCTLCMD; 1775 } 1776 release_sock(&smc->sk); 1777 1778 return put_user(answ, (int __user *)arg); 1779 } 1780 1781 static ssize_t smc_sendpage(struct socket *sock, struct page *page, 1782 int offset, size_t size, int flags) 1783 { 1784 struct sock *sk = sock->sk; 1785 struct smc_sock *smc; 1786 int rc = -EPIPE; 1787 1788 smc = smc_sk(sk); 1789 lock_sock(sk); 1790 if (sk->sk_state != SMC_ACTIVE) { 1791 release_sock(sk); 1792 goto out; 1793 } 1794 release_sock(sk); 1795 if (smc->use_fallback) 1796 rc = kernel_sendpage(smc->clcsock, page, offset, 1797 size, flags); 1798 else 1799 rc = sock_no_sendpage(sock, page, offset, size, flags); 1800 1801 out: 1802 return rc; 1803 } 1804 1805 /* Map the affected portions of the rmbe into an spd, note the number of bytes 1806 * to splice in conn->splice_pending, and press 'go'. Delays consumer cursor 1807 * updates till whenever a respective page has been fully processed. 1808 * Note that subsequent recv() calls have to wait till all splice() processing 1809 * completed. 1810 */ 1811 static ssize_t smc_splice_read(struct socket *sock, loff_t *ppos, 1812 struct pipe_inode_info *pipe, size_t len, 1813 unsigned int flags) 1814 { 1815 struct sock *sk = sock->sk; 1816 struct smc_sock *smc; 1817 int rc = -ENOTCONN; 1818 1819 smc = smc_sk(sk); 1820 lock_sock(sk); 1821 1822 if (sk->sk_state == SMC_INIT || 1823 sk->sk_state == SMC_LISTEN || 1824 sk->sk_state == SMC_CLOSED) 1825 goto out; 1826 1827 if (sk->sk_state == SMC_PEERFINCLOSEWAIT) { 1828 rc = 0; 1829 goto out; 1830 } 1831 1832 if (smc->use_fallback) { 1833 rc = smc->clcsock->ops->splice_read(smc->clcsock, ppos, 1834 pipe, len, flags); 1835 } else { 1836 if (*ppos) { 1837 rc = -ESPIPE; 1838 goto out; 1839 } 1840 if (flags & SPLICE_F_NONBLOCK) 1841 flags = MSG_DONTWAIT; 1842 else 1843 flags = 0; 1844 rc = smc_rx_recvmsg(smc, NULL, pipe, len, flags); 1845 } 1846 out: 1847 release_sock(sk); 1848 1849 return rc; 1850 } 1851 1852 /* must look like tcp */ 1853 static const struct proto_ops smc_sock_ops = { 1854 .family = PF_SMC, 1855 .owner = THIS_MODULE, 1856 .release = smc_release, 1857 .bind = smc_bind, 1858 .connect = smc_connect, 1859 .socketpair = sock_no_socketpair, 1860 .accept = smc_accept, 1861 .getname = smc_getname, 1862 .poll = smc_poll, 1863 .ioctl = smc_ioctl, 1864 .listen = smc_listen, 1865 .shutdown = smc_shutdown, 1866 .setsockopt = smc_setsockopt, 1867 .getsockopt = smc_getsockopt, 1868 .sendmsg = smc_sendmsg, 1869 .recvmsg = smc_recvmsg, 1870 .mmap = sock_no_mmap, 1871 .sendpage = smc_sendpage, 1872 .splice_read = smc_splice_read, 1873 }; 1874 1875 static int smc_create(struct net *net, struct socket *sock, int protocol, 1876 int kern) 1877 { 1878 int family = (protocol == SMCPROTO_SMC6) ? PF_INET6 : PF_INET; 1879 struct smc_sock *smc; 1880 struct sock *sk; 1881 int rc; 1882 1883 rc = -ESOCKTNOSUPPORT; 1884 if (sock->type != SOCK_STREAM) 1885 goto out; 1886 1887 rc = -EPROTONOSUPPORT; 1888 if (protocol != SMCPROTO_SMC && protocol != SMCPROTO_SMC6) 1889 goto out; 1890 1891 rc = -ENOBUFS; 1892 sock->ops = &smc_sock_ops; 1893 sk = smc_sock_alloc(net, sock, protocol); 1894 if (!sk) 1895 goto out; 1896 1897 /* create internal TCP socket for CLC handshake and fallback */ 1898 smc = smc_sk(sk); 1899 smc->use_fallback = false; /* assume rdma capability first */ 1900 smc->fallback_rsn = 0; 1901 rc = sock_create_kern(net, family, SOCK_STREAM, IPPROTO_TCP, 1902 &smc->clcsock); 1903 if (rc) { 1904 sk_common_release(sk); 1905 goto out; 1906 } 1907 smc->sk.sk_sndbuf = max(smc->clcsock->sk->sk_sndbuf, SMC_BUF_MIN_SIZE); 1908 smc->sk.sk_rcvbuf = max(smc->clcsock->sk->sk_rcvbuf, SMC_BUF_MIN_SIZE); 1909 1910 out: 1911 return rc; 1912 } 1913 1914 static const struct net_proto_family smc_sock_family_ops = { 1915 .family = PF_SMC, 1916 .owner = THIS_MODULE, 1917 .create = smc_create, 1918 }; 1919 1920 static int __init smc_init(void) 1921 { 1922 int rc; 1923 1924 rc = smc_pnet_init(); 1925 if (rc) 1926 return rc; 1927 1928 rc = smc_llc_init(); 1929 if (rc) { 1930 pr_err("%s: smc_llc_init fails with %d\n", __func__, rc); 1931 goto out_pnet; 1932 } 1933 1934 rc = smc_cdc_init(); 1935 if (rc) { 1936 pr_err("%s: smc_cdc_init fails with %d\n", __func__, rc); 1937 goto out_pnet; 1938 } 1939 1940 rc = proto_register(&smc_proto, 1); 1941 if (rc) { 1942 pr_err("%s: proto_register(v4) fails with %d\n", __func__, rc); 1943 goto out_pnet; 1944 } 1945 1946 rc = proto_register(&smc_proto6, 1); 1947 if (rc) { 1948 pr_err("%s: proto_register(v6) fails with %d\n", __func__, rc); 1949 goto out_proto; 1950 } 1951 1952 rc = sock_register(&smc_sock_family_ops); 1953 if (rc) { 1954 pr_err("%s: sock_register fails with %d\n", __func__, rc); 1955 goto out_proto6; 1956 } 1957 INIT_HLIST_HEAD(&smc_v4_hashinfo.ht); 1958 INIT_HLIST_HEAD(&smc_v6_hashinfo.ht); 1959 1960 rc = smc_ib_register_client(); 1961 if (rc) { 1962 pr_err("%s: ib_register fails with %d\n", __func__, rc); 1963 goto out_sock; 1964 } 1965 1966 static_branch_enable(&tcp_have_smc); 1967 return 0; 1968 1969 out_sock: 1970 sock_unregister(PF_SMC); 1971 out_proto6: 1972 proto_unregister(&smc_proto6); 1973 out_proto: 1974 proto_unregister(&smc_proto); 1975 out_pnet: 1976 smc_pnet_exit(); 1977 return rc; 1978 } 1979 1980 static void __exit smc_exit(void) 1981 { 1982 smc_core_exit(); 1983 static_branch_disable(&tcp_have_smc); 1984 smc_ib_unregister_client(); 1985 sock_unregister(PF_SMC); 1986 proto_unregister(&smc_proto6); 1987 proto_unregister(&smc_proto); 1988 smc_pnet_exit(); 1989 } 1990 1991 module_init(smc_init); 1992 module_exit(smc_exit); 1993 1994 MODULE_AUTHOR("Ursula Braun <ubraun@linux.vnet.ibm.com>"); 1995 MODULE_DESCRIPTION("smc socket address family"); 1996 MODULE_LICENSE("GPL"); 1997 MODULE_ALIAS_NETPROTO(PF_SMC); 1998