1 // SPDX-License-Identifier: GPL-2.0 OR Linux-OpenIB 2 /* 3 * Copyright (c) 2016 Mellanox Technologies Ltd. All rights reserved. 4 * Copyright (c) 2015 System Fabric Works, Inc. All rights reserved. 5 */ 6 7 #include <linux/skbuff.h> 8 #include <crypto/hash.h> 9 10 #include "rxe.h" 11 #include "rxe_loc.h" 12 #include "rxe_queue.h" 13 14 static int next_opcode(struct rxe_qp *qp, struct rxe_send_wqe *wqe, 15 u32 opcode); 16 17 static inline void retry_first_write_send(struct rxe_qp *qp, 18 struct rxe_send_wqe *wqe, 19 unsigned int mask, int npsn) 20 { 21 int i; 22 23 for (i = 0; i < npsn; i++) { 24 int to_send = (wqe->dma.resid > qp->mtu) ? 25 qp->mtu : wqe->dma.resid; 26 27 qp->req.opcode = next_opcode(qp, wqe, 28 wqe->wr.opcode); 29 30 if (wqe->wr.send_flags & IB_SEND_INLINE) { 31 wqe->dma.resid -= to_send; 32 wqe->dma.sge_offset += to_send; 33 } else { 34 advance_dma_data(&wqe->dma, to_send); 35 } 36 if (mask & WR_WRITE_MASK) 37 wqe->iova += qp->mtu; 38 } 39 } 40 41 static void req_retry(struct rxe_qp *qp) 42 { 43 struct rxe_send_wqe *wqe; 44 unsigned int wqe_index; 45 unsigned int mask; 46 int npsn; 47 int first = 1; 48 struct rxe_queue *q = qp->sq.queue; 49 unsigned int cons; 50 unsigned int prod; 51 52 if (qp->is_user) { 53 cons = consumer_index(q, QUEUE_TYPE_FROM_USER); 54 prod = producer_index(q, QUEUE_TYPE_FROM_USER); 55 } else { 56 cons = consumer_index(q, QUEUE_TYPE_KERNEL); 57 prod = producer_index(q, QUEUE_TYPE_KERNEL); 58 } 59 60 qp->req.wqe_index = cons; 61 qp->req.psn = qp->comp.psn; 62 qp->req.opcode = -1; 63 64 for (wqe_index = cons; wqe_index != prod; 65 wqe_index = next_index(q, wqe_index)) { 66 wqe = addr_from_index(qp->sq.queue, wqe_index); 67 mask = wr_opcode_mask(wqe->wr.opcode, qp); 68 69 if (wqe->state == wqe_state_posted) 70 break; 71 72 if (wqe->state == wqe_state_done) 73 continue; 74 75 wqe->iova = (mask & WR_ATOMIC_MASK) ? 76 wqe->wr.wr.atomic.remote_addr : 77 (mask & WR_READ_OR_WRITE_MASK) ? 78 wqe->wr.wr.rdma.remote_addr : 79 0; 80 81 if (!first || (mask & WR_READ_MASK) == 0) { 82 wqe->dma.resid = wqe->dma.length; 83 wqe->dma.cur_sge = 0; 84 wqe->dma.sge_offset = 0; 85 } 86 87 if (first) { 88 first = 0; 89 90 if (mask & WR_WRITE_OR_SEND_MASK) { 91 npsn = (qp->comp.psn - wqe->first_psn) & 92 BTH_PSN_MASK; 93 retry_first_write_send(qp, wqe, mask, npsn); 94 } 95 96 if (mask & WR_READ_MASK) { 97 npsn = (wqe->dma.length - wqe->dma.resid) / 98 qp->mtu; 99 wqe->iova += npsn * qp->mtu; 100 } 101 } 102 103 wqe->state = wqe_state_posted; 104 } 105 } 106 107 void rnr_nak_timer(struct timer_list *t) 108 { 109 struct rxe_qp *qp = from_timer(qp, t, rnr_nak_timer); 110 111 pr_debug("qp#%d rnr nak timer fired\n", qp_num(qp)); 112 rxe_run_task(&qp->req.task, 1); 113 } 114 115 static struct rxe_send_wqe *req_next_wqe(struct rxe_qp *qp) 116 { 117 struct rxe_send_wqe *wqe; 118 unsigned long flags; 119 struct rxe_queue *q = qp->sq.queue; 120 unsigned int index = qp->req.wqe_index; 121 unsigned int cons; 122 unsigned int prod; 123 124 if (qp->is_user) { 125 wqe = queue_head(q, QUEUE_TYPE_FROM_USER); 126 cons = consumer_index(q, QUEUE_TYPE_FROM_USER); 127 prod = producer_index(q, QUEUE_TYPE_FROM_USER); 128 } else { 129 wqe = queue_head(q, QUEUE_TYPE_KERNEL); 130 cons = consumer_index(q, QUEUE_TYPE_KERNEL); 131 prod = producer_index(q, QUEUE_TYPE_KERNEL); 132 } 133 134 if (unlikely(qp->req.state == QP_STATE_DRAIN)) { 135 /* check to see if we are drained; 136 * state_lock used by requester and completer 137 */ 138 spin_lock_irqsave(&qp->state_lock, flags); 139 do { 140 if (qp->req.state != QP_STATE_DRAIN) { 141 /* comp just finished */ 142 spin_unlock_irqrestore(&qp->state_lock, 143 flags); 144 break; 145 } 146 147 if (wqe && ((index != cons) || 148 (wqe->state != wqe_state_posted))) { 149 /* comp not done yet */ 150 spin_unlock_irqrestore(&qp->state_lock, 151 flags); 152 break; 153 } 154 155 qp->req.state = QP_STATE_DRAINED; 156 spin_unlock_irqrestore(&qp->state_lock, flags); 157 158 if (qp->ibqp.event_handler) { 159 struct ib_event ev; 160 161 ev.device = qp->ibqp.device; 162 ev.element.qp = &qp->ibqp; 163 ev.event = IB_EVENT_SQ_DRAINED; 164 qp->ibqp.event_handler(&ev, 165 qp->ibqp.qp_context); 166 } 167 } while (0); 168 } 169 170 if (index == prod) 171 return NULL; 172 173 wqe = addr_from_index(q, index); 174 175 if (unlikely((qp->req.state == QP_STATE_DRAIN || 176 qp->req.state == QP_STATE_DRAINED) && 177 (wqe->state != wqe_state_processing))) 178 return NULL; 179 180 if (unlikely((wqe->wr.send_flags & IB_SEND_FENCE) && 181 (index != cons))) { 182 qp->req.wait_fence = 1; 183 return NULL; 184 } 185 186 wqe->mask = wr_opcode_mask(wqe->wr.opcode, qp); 187 return wqe; 188 } 189 190 static int next_opcode_rc(struct rxe_qp *qp, u32 opcode, int fits) 191 { 192 switch (opcode) { 193 case IB_WR_RDMA_WRITE: 194 if (qp->req.opcode == IB_OPCODE_RC_RDMA_WRITE_FIRST || 195 qp->req.opcode == IB_OPCODE_RC_RDMA_WRITE_MIDDLE) 196 return fits ? 197 IB_OPCODE_RC_RDMA_WRITE_LAST : 198 IB_OPCODE_RC_RDMA_WRITE_MIDDLE; 199 else 200 return fits ? 201 IB_OPCODE_RC_RDMA_WRITE_ONLY : 202 IB_OPCODE_RC_RDMA_WRITE_FIRST; 203 204 case IB_WR_RDMA_WRITE_WITH_IMM: 205 if (qp->req.opcode == IB_OPCODE_RC_RDMA_WRITE_FIRST || 206 qp->req.opcode == IB_OPCODE_RC_RDMA_WRITE_MIDDLE) 207 return fits ? 208 IB_OPCODE_RC_RDMA_WRITE_LAST_WITH_IMMEDIATE : 209 IB_OPCODE_RC_RDMA_WRITE_MIDDLE; 210 else 211 return fits ? 212 IB_OPCODE_RC_RDMA_WRITE_ONLY_WITH_IMMEDIATE : 213 IB_OPCODE_RC_RDMA_WRITE_FIRST; 214 215 case IB_WR_SEND: 216 if (qp->req.opcode == IB_OPCODE_RC_SEND_FIRST || 217 qp->req.opcode == IB_OPCODE_RC_SEND_MIDDLE) 218 return fits ? 219 IB_OPCODE_RC_SEND_LAST : 220 IB_OPCODE_RC_SEND_MIDDLE; 221 else 222 return fits ? 223 IB_OPCODE_RC_SEND_ONLY : 224 IB_OPCODE_RC_SEND_FIRST; 225 226 case IB_WR_SEND_WITH_IMM: 227 if (qp->req.opcode == IB_OPCODE_RC_SEND_FIRST || 228 qp->req.opcode == IB_OPCODE_RC_SEND_MIDDLE) 229 return fits ? 230 IB_OPCODE_RC_SEND_LAST_WITH_IMMEDIATE : 231 IB_OPCODE_RC_SEND_MIDDLE; 232 else 233 return fits ? 234 IB_OPCODE_RC_SEND_ONLY_WITH_IMMEDIATE : 235 IB_OPCODE_RC_SEND_FIRST; 236 237 case IB_WR_RDMA_READ: 238 return IB_OPCODE_RC_RDMA_READ_REQUEST; 239 240 case IB_WR_ATOMIC_CMP_AND_SWP: 241 return IB_OPCODE_RC_COMPARE_SWAP; 242 243 case IB_WR_ATOMIC_FETCH_AND_ADD: 244 return IB_OPCODE_RC_FETCH_ADD; 245 246 case IB_WR_SEND_WITH_INV: 247 if (qp->req.opcode == IB_OPCODE_RC_SEND_FIRST || 248 qp->req.opcode == IB_OPCODE_RC_SEND_MIDDLE) 249 return fits ? IB_OPCODE_RC_SEND_LAST_WITH_INVALIDATE : 250 IB_OPCODE_RC_SEND_MIDDLE; 251 else 252 return fits ? IB_OPCODE_RC_SEND_ONLY_WITH_INVALIDATE : 253 IB_OPCODE_RC_SEND_FIRST; 254 case IB_WR_REG_MR: 255 case IB_WR_LOCAL_INV: 256 return opcode; 257 } 258 259 return -EINVAL; 260 } 261 262 static int next_opcode_uc(struct rxe_qp *qp, u32 opcode, int fits) 263 { 264 switch (opcode) { 265 case IB_WR_RDMA_WRITE: 266 if (qp->req.opcode == IB_OPCODE_UC_RDMA_WRITE_FIRST || 267 qp->req.opcode == IB_OPCODE_UC_RDMA_WRITE_MIDDLE) 268 return fits ? 269 IB_OPCODE_UC_RDMA_WRITE_LAST : 270 IB_OPCODE_UC_RDMA_WRITE_MIDDLE; 271 else 272 return fits ? 273 IB_OPCODE_UC_RDMA_WRITE_ONLY : 274 IB_OPCODE_UC_RDMA_WRITE_FIRST; 275 276 case IB_WR_RDMA_WRITE_WITH_IMM: 277 if (qp->req.opcode == IB_OPCODE_UC_RDMA_WRITE_FIRST || 278 qp->req.opcode == IB_OPCODE_UC_RDMA_WRITE_MIDDLE) 279 return fits ? 280 IB_OPCODE_UC_RDMA_WRITE_LAST_WITH_IMMEDIATE : 281 IB_OPCODE_UC_RDMA_WRITE_MIDDLE; 282 else 283 return fits ? 284 IB_OPCODE_UC_RDMA_WRITE_ONLY_WITH_IMMEDIATE : 285 IB_OPCODE_UC_RDMA_WRITE_FIRST; 286 287 case IB_WR_SEND: 288 if (qp->req.opcode == IB_OPCODE_UC_SEND_FIRST || 289 qp->req.opcode == IB_OPCODE_UC_SEND_MIDDLE) 290 return fits ? 291 IB_OPCODE_UC_SEND_LAST : 292 IB_OPCODE_UC_SEND_MIDDLE; 293 else 294 return fits ? 295 IB_OPCODE_UC_SEND_ONLY : 296 IB_OPCODE_UC_SEND_FIRST; 297 298 case IB_WR_SEND_WITH_IMM: 299 if (qp->req.opcode == IB_OPCODE_UC_SEND_FIRST || 300 qp->req.opcode == IB_OPCODE_UC_SEND_MIDDLE) 301 return fits ? 302 IB_OPCODE_UC_SEND_LAST_WITH_IMMEDIATE : 303 IB_OPCODE_UC_SEND_MIDDLE; 304 else 305 return fits ? 306 IB_OPCODE_UC_SEND_ONLY_WITH_IMMEDIATE : 307 IB_OPCODE_UC_SEND_FIRST; 308 } 309 310 return -EINVAL; 311 } 312 313 static int next_opcode(struct rxe_qp *qp, struct rxe_send_wqe *wqe, 314 u32 opcode) 315 { 316 int fits = (wqe->dma.resid <= qp->mtu); 317 318 switch (qp_type(qp)) { 319 case IB_QPT_RC: 320 return next_opcode_rc(qp, opcode, fits); 321 322 case IB_QPT_UC: 323 return next_opcode_uc(qp, opcode, fits); 324 325 case IB_QPT_SMI: 326 case IB_QPT_UD: 327 case IB_QPT_GSI: 328 switch (opcode) { 329 case IB_WR_SEND: 330 return IB_OPCODE_UD_SEND_ONLY; 331 332 case IB_WR_SEND_WITH_IMM: 333 return IB_OPCODE_UD_SEND_ONLY_WITH_IMMEDIATE; 334 } 335 break; 336 337 default: 338 break; 339 } 340 341 return -EINVAL; 342 } 343 344 static inline int check_init_depth(struct rxe_qp *qp, struct rxe_send_wqe *wqe) 345 { 346 int depth; 347 348 if (wqe->has_rd_atomic) 349 return 0; 350 351 qp->req.need_rd_atomic = 1; 352 depth = atomic_dec_return(&qp->req.rd_atomic); 353 354 if (depth >= 0) { 355 qp->req.need_rd_atomic = 0; 356 wqe->has_rd_atomic = 1; 357 return 0; 358 } 359 360 atomic_inc(&qp->req.rd_atomic); 361 return -EAGAIN; 362 } 363 364 static inline int get_mtu(struct rxe_qp *qp) 365 { 366 struct rxe_dev *rxe = to_rdev(qp->ibqp.device); 367 368 if ((qp_type(qp) == IB_QPT_RC) || (qp_type(qp) == IB_QPT_UC)) 369 return qp->mtu; 370 371 return rxe->port.mtu_cap; 372 } 373 374 static struct sk_buff *init_req_packet(struct rxe_qp *qp, 375 struct rxe_send_wqe *wqe, 376 int opcode, int payload, 377 struct rxe_pkt_info *pkt) 378 { 379 struct rxe_dev *rxe = to_rdev(qp->ibqp.device); 380 struct sk_buff *skb; 381 struct rxe_send_wr *ibwr = &wqe->wr; 382 struct rxe_av *av; 383 int pad = (-payload) & 0x3; 384 int paylen; 385 int solicited; 386 u16 pkey; 387 u32 qp_num; 388 int ack_req; 389 390 /* length from start of bth to end of icrc */ 391 paylen = rxe_opcode[opcode].length + payload + pad + RXE_ICRC_SIZE; 392 393 /* pkt->hdr, rxe, port_num and mask are initialized in ifc 394 * layer 395 */ 396 pkt->opcode = opcode; 397 pkt->qp = qp; 398 pkt->psn = qp->req.psn; 399 pkt->mask = rxe_opcode[opcode].mask; 400 pkt->paylen = paylen; 401 pkt->wqe = wqe; 402 403 /* init skb */ 404 av = rxe_get_av(pkt); 405 skb = rxe_init_packet(rxe, av, paylen, pkt); 406 if (unlikely(!skb)) 407 return NULL; 408 409 /* init bth */ 410 solicited = (ibwr->send_flags & IB_SEND_SOLICITED) && 411 (pkt->mask & RXE_END_MASK) && 412 ((pkt->mask & (RXE_SEND_MASK)) || 413 (pkt->mask & (RXE_WRITE_MASK | RXE_IMMDT_MASK)) == 414 (RXE_WRITE_MASK | RXE_IMMDT_MASK)); 415 416 pkey = IB_DEFAULT_PKEY_FULL; 417 418 qp_num = (pkt->mask & RXE_DETH_MASK) ? ibwr->wr.ud.remote_qpn : 419 qp->attr.dest_qp_num; 420 421 ack_req = ((pkt->mask & RXE_END_MASK) || 422 (qp->req.noack_pkts++ > RXE_MAX_PKT_PER_ACK)); 423 if (ack_req) 424 qp->req.noack_pkts = 0; 425 426 bth_init(pkt, pkt->opcode, solicited, 0, pad, pkey, qp_num, 427 ack_req, pkt->psn); 428 429 /* init optional headers */ 430 if (pkt->mask & RXE_RETH_MASK) { 431 reth_set_rkey(pkt, ibwr->wr.rdma.rkey); 432 reth_set_va(pkt, wqe->iova); 433 reth_set_len(pkt, wqe->dma.resid); 434 } 435 436 if (pkt->mask & RXE_IMMDT_MASK) 437 immdt_set_imm(pkt, ibwr->ex.imm_data); 438 439 if (pkt->mask & RXE_IETH_MASK) 440 ieth_set_rkey(pkt, ibwr->ex.invalidate_rkey); 441 442 if (pkt->mask & RXE_ATMETH_MASK) { 443 atmeth_set_va(pkt, wqe->iova); 444 if (opcode == IB_OPCODE_RC_COMPARE_SWAP || 445 opcode == IB_OPCODE_RD_COMPARE_SWAP) { 446 atmeth_set_swap_add(pkt, ibwr->wr.atomic.swap); 447 atmeth_set_comp(pkt, ibwr->wr.atomic.compare_add); 448 } else { 449 atmeth_set_swap_add(pkt, ibwr->wr.atomic.compare_add); 450 } 451 atmeth_set_rkey(pkt, ibwr->wr.atomic.rkey); 452 } 453 454 if (pkt->mask & RXE_DETH_MASK) { 455 if (qp->ibqp.qp_num == 1) 456 deth_set_qkey(pkt, GSI_QKEY); 457 else 458 deth_set_qkey(pkt, ibwr->wr.ud.remote_qkey); 459 deth_set_sqp(pkt, qp->ibqp.qp_num); 460 } 461 462 return skb; 463 } 464 465 static int finish_packet(struct rxe_qp *qp, struct rxe_send_wqe *wqe, 466 struct rxe_pkt_info *pkt, struct sk_buff *skb, 467 int paylen) 468 { 469 int err; 470 471 err = rxe_prepare(pkt, skb); 472 if (err) 473 return err; 474 475 if (pkt->mask & RXE_WRITE_OR_SEND) { 476 if (wqe->wr.send_flags & IB_SEND_INLINE) { 477 u8 *tmp = &wqe->dma.inline_data[wqe->dma.sge_offset]; 478 479 memcpy(payload_addr(pkt), tmp, paylen); 480 481 wqe->dma.resid -= paylen; 482 wqe->dma.sge_offset += paylen; 483 } else { 484 err = copy_data(qp->pd, 0, &wqe->dma, 485 payload_addr(pkt), paylen, 486 RXE_FROM_MR_OBJ); 487 if (err) 488 return err; 489 } 490 if (bth_pad(pkt)) { 491 u8 *pad = payload_addr(pkt) + paylen; 492 493 memset(pad, 0, bth_pad(pkt)); 494 } 495 } 496 497 return 0; 498 } 499 500 static void update_wqe_state(struct rxe_qp *qp, 501 struct rxe_send_wqe *wqe, 502 struct rxe_pkt_info *pkt) 503 { 504 if (pkt->mask & RXE_END_MASK) { 505 if (qp_type(qp) == IB_QPT_RC) 506 wqe->state = wqe_state_pending; 507 } else { 508 wqe->state = wqe_state_processing; 509 } 510 } 511 512 static void update_wqe_psn(struct rxe_qp *qp, 513 struct rxe_send_wqe *wqe, 514 struct rxe_pkt_info *pkt, 515 int payload) 516 { 517 /* number of packets left to send including current one */ 518 int num_pkt = (wqe->dma.resid + payload + qp->mtu - 1) / qp->mtu; 519 520 /* handle zero length packet case */ 521 if (num_pkt == 0) 522 num_pkt = 1; 523 524 if (pkt->mask & RXE_START_MASK) { 525 wqe->first_psn = qp->req.psn; 526 wqe->last_psn = (qp->req.psn + num_pkt - 1) & BTH_PSN_MASK; 527 } 528 529 if (pkt->mask & RXE_READ_MASK) 530 qp->req.psn = (wqe->first_psn + num_pkt) & BTH_PSN_MASK; 531 else 532 qp->req.psn = (qp->req.psn + 1) & BTH_PSN_MASK; 533 } 534 535 static void save_state(struct rxe_send_wqe *wqe, 536 struct rxe_qp *qp, 537 struct rxe_send_wqe *rollback_wqe, 538 u32 *rollback_psn) 539 { 540 rollback_wqe->state = wqe->state; 541 rollback_wqe->first_psn = wqe->first_psn; 542 rollback_wqe->last_psn = wqe->last_psn; 543 *rollback_psn = qp->req.psn; 544 } 545 546 static void rollback_state(struct rxe_send_wqe *wqe, 547 struct rxe_qp *qp, 548 struct rxe_send_wqe *rollback_wqe, 549 u32 rollback_psn) 550 { 551 wqe->state = rollback_wqe->state; 552 wqe->first_psn = rollback_wqe->first_psn; 553 wqe->last_psn = rollback_wqe->last_psn; 554 qp->req.psn = rollback_psn; 555 } 556 557 static void update_state(struct rxe_qp *qp, struct rxe_send_wqe *wqe, 558 struct rxe_pkt_info *pkt, int payload) 559 { 560 qp->req.opcode = pkt->opcode; 561 562 if (pkt->mask & RXE_END_MASK) 563 qp->req.wqe_index = next_index(qp->sq.queue, qp->req.wqe_index); 564 565 qp->need_req_skb = 0; 566 567 if (qp->qp_timeout_jiffies && !timer_pending(&qp->retrans_timer)) 568 mod_timer(&qp->retrans_timer, 569 jiffies + qp->qp_timeout_jiffies); 570 } 571 572 static int rxe_do_local_ops(struct rxe_qp *qp, struct rxe_send_wqe *wqe) 573 { 574 u8 opcode = wqe->wr.opcode; 575 struct rxe_mr *mr; 576 u32 rkey; 577 int ret; 578 579 switch (opcode) { 580 case IB_WR_LOCAL_INV: 581 rkey = wqe->wr.ex.invalidate_rkey; 582 if (rkey_is_mw(rkey)) 583 ret = rxe_invalidate_mw(qp, rkey); 584 else 585 ret = rxe_invalidate_mr(qp, rkey); 586 587 if (unlikely(ret)) { 588 wqe->status = IB_WC_LOC_QP_OP_ERR; 589 return ret; 590 } 591 break; 592 case IB_WR_REG_MR: 593 mr = to_rmr(wqe->wr.wr.reg.mr); 594 rxe_add_ref(mr); 595 mr->state = RXE_MR_STATE_VALID; 596 mr->access = wqe->wr.wr.reg.access; 597 mr->ibmr.lkey = wqe->wr.wr.reg.key; 598 mr->ibmr.rkey = wqe->wr.wr.reg.key; 599 mr->iova = wqe->wr.wr.reg.mr->iova; 600 rxe_drop_ref(mr); 601 break; 602 case IB_WR_BIND_MW: 603 ret = rxe_bind_mw(qp, wqe); 604 if (unlikely(ret)) { 605 wqe->status = IB_WC_MW_BIND_ERR; 606 return ret; 607 } 608 break; 609 default: 610 pr_err("Unexpected send wqe opcode %d\n", opcode); 611 wqe->status = IB_WC_LOC_QP_OP_ERR; 612 return -EINVAL; 613 } 614 615 wqe->state = wqe_state_done; 616 wqe->status = IB_WC_SUCCESS; 617 qp->req.wqe_index = next_index(qp->sq.queue, qp->req.wqe_index); 618 619 if ((wqe->wr.send_flags & IB_SEND_SIGNALED) || 620 qp->sq_sig_type == IB_SIGNAL_ALL_WR) 621 rxe_run_task(&qp->comp.task, 1); 622 623 return 0; 624 } 625 626 int rxe_requester(void *arg) 627 { 628 struct rxe_qp *qp = (struct rxe_qp *)arg; 629 struct rxe_pkt_info pkt; 630 struct sk_buff *skb; 631 struct rxe_send_wqe *wqe; 632 enum rxe_hdr_mask mask; 633 int payload; 634 int mtu; 635 int opcode; 636 int ret; 637 struct rxe_send_wqe rollback_wqe; 638 u32 rollback_psn; 639 struct rxe_queue *q = qp->sq.queue; 640 641 rxe_add_ref(qp); 642 643 next_wqe: 644 if (unlikely(!qp->valid || qp->req.state == QP_STATE_ERROR)) 645 goto exit; 646 647 if (unlikely(qp->req.state == QP_STATE_RESET)) { 648 qp->req.wqe_index = consumer_index(q, q->type); 649 qp->req.opcode = -1; 650 qp->req.need_rd_atomic = 0; 651 qp->req.wait_psn = 0; 652 qp->req.need_retry = 0; 653 goto exit; 654 } 655 656 if (unlikely(qp->req.need_retry)) { 657 req_retry(qp); 658 qp->req.need_retry = 0; 659 } 660 661 wqe = req_next_wqe(qp); 662 if (unlikely(!wqe)) 663 goto exit; 664 665 if (wqe->mask & WR_LOCAL_OP_MASK) { 666 ret = rxe_do_local_ops(qp, wqe); 667 if (unlikely(ret)) 668 goto err; 669 else 670 goto next_wqe; 671 } 672 673 if (unlikely(qp_type(qp) == IB_QPT_RC && 674 psn_compare(qp->req.psn, (qp->comp.psn + 675 RXE_MAX_UNACKED_PSNS)) > 0)) { 676 qp->req.wait_psn = 1; 677 goto exit; 678 } 679 680 /* Limit the number of inflight SKBs per QP */ 681 if (unlikely(atomic_read(&qp->skb_out) > 682 RXE_INFLIGHT_SKBS_PER_QP_HIGH)) { 683 qp->need_req_skb = 1; 684 goto exit; 685 } 686 687 opcode = next_opcode(qp, wqe, wqe->wr.opcode); 688 if (unlikely(opcode < 0)) { 689 wqe->status = IB_WC_LOC_QP_OP_ERR; 690 goto exit; 691 } 692 693 mask = rxe_opcode[opcode].mask; 694 if (unlikely(mask & RXE_READ_OR_ATOMIC)) { 695 if (check_init_depth(qp, wqe)) 696 goto exit; 697 } 698 699 mtu = get_mtu(qp); 700 payload = (mask & RXE_WRITE_OR_SEND) ? wqe->dma.resid : 0; 701 if (payload > mtu) { 702 if (qp_type(qp) == IB_QPT_UD) { 703 /* C10-93.1.1: If the total sum of all the buffer lengths specified for a 704 * UD message exceeds the MTU of the port as returned by QueryHCA, the CI 705 * shall not emit any packets for this message. Further, the CI shall not 706 * generate an error due to this condition. 707 */ 708 709 /* fake a successful UD send */ 710 wqe->first_psn = qp->req.psn; 711 wqe->last_psn = qp->req.psn; 712 qp->req.psn = (qp->req.psn + 1) & BTH_PSN_MASK; 713 qp->req.opcode = IB_OPCODE_UD_SEND_ONLY; 714 qp->req.wqe_index = next_index(qp->sq.queue, 715 qp->req.wqe_index); 716 wqe->state = wqe_state_done; 717 wqe->status = IB_WC_SUCCESS; 718 __rxe_do_task(&qp->comp.task); 719 rxe_drop_ref(qp); 720 return 0; 721 } 722 payload = mtu; 723 } 724 725 skb = init_req_packet(qp, wqe, opcode, payload, &pkt); 726 if (unlikely(!skb)) { 727 pr_err("qp#%d Failed allocating skb\n", qp_num(qp)); 728 wqe->status = IB_WC_LOC_QP_OP_ERR; 729 goto err; 730 } 731 732 ret = finish_packet(qp, wqe, &pkt, skb, payload); 733 if (unlikely(ret)) { 734 pr_debug("qp#%d Error during finish packet\n", qp_num(qp)); 735 if (ret == -EFAULT) 736 wqe->status = IB_WC_LOC_PROT_ERR; 737 else 738 wqe->status = IB_WC_LOC_QP_OP_ERR; 739 kfree_skb(skb); 740 goto err; 741 } 742 743 /* 744 * To prevent a race on wqe access between requester and completer, 745 * wqe members state and psn need to be set before calling 746 * rxe_xmit_packet(). 747 * Otherwise, completer might initiate an unjustified retry flow. 748 */ 749 save_state(wqe, qp, &rollback_wqe, &rollback_psn); 750 update_wqe_state(qp, wqe, &pkt); 751 update_wqe_psn(qp, wqe, &pkt, payload); 752 ret = rxe_xmit_packet(qp, &pkt, skb); 753 if (ret) { 754 qp->need_req_skb = 1; 755 756 rollback_state(wqe, qp, &rollback_wqe, rollback_psn); 757 758 if (ret == -EAGAIN) { 759 rxe_run_task(&qp->req.task, 1); 760 goto exit; 761 } 762 763 wqe->status = IB_WC_LOC_QP_OP_ERR; 764 goto err; 765 } 766 767 update_state(qp, wqe, &pkt, payload); 768 769 goto next_wqe; 770 771 err: 772 wqe->state = wqe_state_error; 773 __rxe_do_task(&qp->comp.task); 774 775 exit: 776 rxe_drop_ref(qp); 777 return -EAGAIN; 778 } 779