ud.c 24.0 KB
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/*
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 * Copyright(c) 2015, 2016 Intel Corporation.
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 *
 * This file is provided under a dual BSD/GPLv2 license.  When using or
 * redistributing this file, you may do so under either license.
 *
 * GPL LICENSE SUMMARY
 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of version 2 of the GNU General Public License as
 * published by the Free Software Foundation.
 *
 * This program is distributed in the hope that it will be useful, but
 * WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
 * General Public License for more details.
 *
 * BSD LICENSE
 *
 * Redistribution and use in source and binary forms, with or without
 * modification, are permitted provided that the following conditions
 * are met:
 *
 *  - Redistributions of source code must retain the above copyright
 *    notice, this list of conditions and the following disclaimer.
 *  - Redistributions in binary form must reproduce the above copyright
 *    notice, this list of conditions and the following disclaimer in
 *    the documentation and/or other materials provided with the
 *    distribution.
 *  - Neither the name of Intel Corporation nor the names of its
 *    contributors may be used to endorse or promote products derived
 *    from this software without specific prior written permission.
 *
 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
 *
 */

#include <linux/net.h>
#include <rdma/ib_smi.h>

#include "hfi.h"
#include "mad.h"
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#include "verbs_txreq.h"
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#include "qp.h"
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/**
 * ud_loopback - handle send on loopback QPs
 * @sqp: the sending QP
 * @swqe: the send work request
 *
 * This is called from hfi1_make_ud_req() to forward a WQE addressed
 * to the same HFI.
 * Note that the receive interrupt handler may be calling hfi1_ud_rcv()
 * while this is being called.
 */
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static void ud_loopback(struct rvt_qp *sqp, struct rvt_swqe *swqe)
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{
	struct hfi1_ibport *ibp = to_iport(sqp->ibqp.device, sqp->port_num);
	struct hfi1_pportdata *ppd;
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	struct rvt_qp *qp;
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	struct ib_ah_attr *ah_attr;
	unsigned long flags;
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	struct rvt_sge_state ssge;
	struct rvt_sge *sge;
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	struct ib_wc wc;
	u32 length;
	enum ib_qp_type sqptype, dqptype;

	rcu_read_lock();

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	qp = rvt_lookup_qpn(ib_to_rvt(sqp->ibqp.device), &ibp->rvp,
			    swqe->ud_wr.remote_qpn);
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	if (!qp) {
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		ibp->rvp.n_pkt_drops++;
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		rcu_read_unlock();
		return;
	}

	sqptype = sqp->ibqp.qp_type == IB_QPT_GSI ?
			IB_QPT_UD : sqp->ibqp.qp_type;
	dqptype = qp->ibqp.qp_type == IB_QPT_GSI ?
			IB_QPT_UD : qp->ibqp.qp_type;

	if (dqptype != sqptype ||
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	    !(ib_rvt_state_ops[qp->state] & RVT_PROCESS_RECV_OK)) {
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		ibp->rvp.n_pkt_drops++;
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		goto drop;
	}

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	ah_attr = &ibah_to_rvtah(swqe->ud_wr.ah)->attr;
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	ppd = ppd_from_ibp(ibp);

	if (qp->ibqp.qp_num > 1) {
		u16 pkey;
		u16 slid;
		u8 sc5 = ibp->sl_to_sc[ah_attr->sl];

		pkey = hfi1_get_pkey(ibp, sqp->s_pkey_index);
		slid = ppd->lid | (ah_attr->src_path_bits &
				   ((1 << ppd->lmc) - 1));
		if (unlikely(ingress_pkey_check(ppd, pkey, sc5,
						qp->s_pkey_index, slid))) {
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			hfi1_bad_pqkey(ibp, OPA_TRAP_BAD_P_KEY, pkey,
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				       ah_attr->sl,
				       sqp->ibqp.qp_num, qp->ibqp.qp_num,
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				       slid, ah_attr->dlid);
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			goto drop;
		}
	}

	/*
	 * Check that the qkey matches (except for QP0, see 9.6.1.4.1).
	 * Qkeys with the high order bit set mean use the
	 * qkey from the QP context instead of the WR (see 10.2.5).
	 */
	if (qp->ibqp.qp_num) {
		u32 qkey;

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		qkey = (int)swqe->ud_wr.remote_qkey < 0 ?
			sqp->qkey : swqe->ud_wr.remote_qkey;
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		if (unlikely(qkey != qp->qkey)) {
			u16 lid;

			lid = ppd->lid | (ah_attr->src_path_bits &
					  ((1 << ppd->lmc) - 1));
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			hfi1_bad_pqkey(ibp, OPA_TRAP_BAD_Q_KEY, qkey,
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				       ah_attr->sl,
				       sqp->ibqp.qp_num, qp->ibqp.qp_num,
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				       lid,
				       ah_attr->dlid);
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			goto drop;
		}
	}

	/*
	 * A GRH is expected to precede the data even if not
	 * present on the wire.
	 */
	length = swqe->length;
	memset(&wc, 0, sizeof(wc));
	wc.byte_len = length + sizeof(struct ib_grh);

	if (swqe->wr.opcode == IB_WR_SEND_WITH_IMM) {
		wc.wc_flags = IB_WC_WITH_IMM;
		wc.ex.imm_data = swqe->wr.ex.imm_data;
	}

	spin_lock_irqsave(&qp->r_lock, flags);

	/*
	 * Get the next work request entry to find where to put the data.
	 */
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	if (qp->r_flags & RVT_R_REUSE_SGE) {
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		qp->r_flags &= ~RVT_R_REUSE_SGE;
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	} else {
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		int ret;

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		ret = hfi1_rvt_get_rwqe(qp, 0);
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		if (ret < 0) {
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			rvt_rc_error(qp, IB_WC_LOC_QP_OP_ERR);
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			goto bail_unlock;
		}
		if (!ret) {
			if (qp->ibqp.qp_num == 0)
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				ibp->rvp.n_vl15_dropped++;
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			goto bail_unlock;
		}
	}
	/* Silently drop packets which are too big. */
	if (unlikely(wc.byte_len > qp->r_len)) {
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		qp->r_flags |= RVT_R_REUSE_SGE;
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		ibp->rvp.n_pkt_drops++;
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		goto bail_unlock;
	}

	if (ah_attr->ah_flags & IB_AH_GRH) {
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		struct ib_grh grh;
		struct ib_global_route grd = ah_attr->grh;

		hfi1_make_grh(ibp, &grh, &grd, 0, 0);
		hfi1_copy_sge(&qp->r_sge, &grh,
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			      sizeof(grh), true, false);
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		wc.wc_flags |= IB_WC_GRH;
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	} else {
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		hfi1_skip_sge(&qp->r_sge, sizeof(struct ib_grh), true);
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	}
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	ssge.sg_list = swqe->sg_list + 1;
	ssge.sge = *swqe->sg_list;
	ssge.num_sge = swqe->wr.num_sge;
	sge = &ssge.sge;
	while (length) {
		u32 len = sge->length;

		if (len > length)
			len = length;
		if (len > sge->sge_length)
			len = sge->sge_length;
		WARN_ON_ONCE(len == 0);
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		hfi1_copy_sge(&qp->r_sge, sge->vaddr, len, true, false);
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		sge->vaddr += len;
		sge->length -= len;
		sge->sge_length -= len;
		if (sge->sge_length == 0) {
			if (--ssge.num_sge)
				*sge = *ssge.sg_list++;
		} else if (sge->length == 0 && sge->mr->lkey) {
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			if (++sge->n >= RVT_SEGSZ) {
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				if (++sge->m >= sge->mr->mapsz)
					break;
				sge->n = 0;
			}
			sge->vaddr =
				sge->mr->map[sge->m]->segs[sge->n].vaddr;
			sge->length =
				sge->mr->map[sge->m]->segs[sge->n].length;
		}
		length -= len;
	}
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	rvt_put_ss(&qp->r_sge);
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	if (!test_and_clear_bit(RVT_R_WRID_VALID, &qp->r_aflags))
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		goto bail_unlock;
	wc.wr_id = qp->r_wr_id;
	wc.status = IB_WC_SUCCESS;
	wc.opcode = IB_WC_RECV;
	wc.qp = &qp->ibqp;
	wc.src_qp = sqp->ibqp.qp_num;
	if (qp->ibqp.qp_type == IB_QPT_GSI || qp->ibqp.qp_type == IB_QPT_SMI) {
		if (sqp->ibqp.qp_type == IB_QPT_GSI ||
		    sqp->ibqp.qp_type == IB_QPT_SMI)
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			wc.pkey_index = swqe->ud_wr.pkey_index;
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		else
			wc.pkey_index = sqp->s_pkey_index;
	} else {
		wc.pkey_index = 0;
	}
	wc.slid = ppd->lid | (ah_attr->src_path_bits & ((1 << ppd->lmc) - 1));
	/* Check for loopback when the port lid is not set */
	if (wc.slid == 0 && sqp->ibqp.qp_type == IB_QPT_GSI)
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		wc.slid = be16_to_cpu(IB_LID_PERMISSIVE);
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	wc.sl = ah_attr->sl;
	wc.dlid_path_bits = ah_attr->dlid & ((1 << ppd->lmc) - 1);
	wc.port_num = qp->port_num;
	/* Signal completion event if the solicited bit is set. */
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	rvt_cq_enter(ibcq_to_rvtcq(qp->ibqp.recv_cq), &wc,
		     swqe->wr.send_flags & IB_SEND_SOLICITED);
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	ibp->rvp.n_loop_pkts++;
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bail_unlock:
	spin_unlock_irqrestore(&qp->r_lock, flags);
drop:
	rcu_read_unlock();
}

/**
 * hfi1_make_ud_req - construct a UD request packet
 * @qp: the QP
 *
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 * Assume s_lock is held.
 *
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 * Return 1 if constructed; otherwise, return 0.
 */
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int hfi1_make_ud_req(struct rvt_qp *qp, struct hfi1_pkt_state *ps)
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{
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	struct hfi1_qp_priv *priv = qp->priv;
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	struct ib_other_headers *ohdr;
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	struct ib_ah_attr *ah_attr;
	struct hfi1_pportdata *ppd;
	struct hfi1_ibport *ibp;
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	struct rvt_swqe *wqe;
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	u32 nwords;
	u32 extra_bytes;
	u32 bth0;
	u16 lrh0;
	u16 lid;
	int next_cur;
	u8 sc5;

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	ps->s_txreq = get_txreq(ps->dev, qp);
	if (IS_ERR(ps->s_txreq))
		goto bail_no_tx;

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	if (!(ib_rvt_state_ops[qp->state] & RVT_PROCESS_NEXT_SEND_OK)) {
		if (!(ib_rvt_state_ops[qp->state] & RVT_FLUSH_SEND))
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			goto bail;
		/* We are in the error state, flush the work request. */
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		smp_read_barrier_depends(); /* see post_one_send */
		if (qp->s_last == ACCESS_ONCE(qp->s_head))
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			goto bail;
		/* If DMAs are in progress, we can't flush immediately. */
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		if (iowait_sdma_pending(&priv->s_iowait)) {
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			qp->s_flags |= RVT_S_WAIT_DMA;
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			goto bail;
		}
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		wqe = rvt_get_swqe_ptr(qp, qp->s_last);
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		hfi1_send_complete(qp, wqe, IB_WC_WR_FLUSH_ERR);
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		goto done_free_tx;
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	}

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	/* see post_one_send() */
	smp_read_barrier_depends();
	if (qp->s_cur == ACCESS_ONCE(qp->s_head))
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		goto bail;

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	wqe = rvt_get_swqe_ptr(qp, qp->s_cur);
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	next_cur = qp->s_cur + 1;
	if (next_cur >= qp->s_size)
		next_cur = 0;

	/* Construct the header. */
	ibp = to_iport(qp->ibqp.device, qp->port_num);
	ppd = ppd_from_ibp(ibp);
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	ah_attr = &ibah_to_rvtah(wqe->ud_wr.ah)->attr;
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	if (ah_attr->dlid < be16_to_cpu(IB_MULTICAST_LID_BASE) ||
	    ah_attr->dlid == be16_to_cpu(IB_LID_PERMISSIVE)) {
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		lid = ah_attr->dlid & ~((1 << ppd->lmc) - 1);
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		if (unlikely(!loopback &&
			     (lid == ppd->lid ||
			      (lid == be16_to_cpu(IB_LID_PERMISSIVE) &&
			      qp->ibqp.qp_type == IB_QPT_GSI)))) {
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			unsigned long tflags = ps->flags;
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			/*
			 * If DMAs are in progress, we can't generate
			 * a completion for the loopback packet since
			 * it would be out of order.
			 * Instead of waiting, we could queue a
			 * zero length descriptor so we get a callback.
			 */
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			if (iowait_sdma_pending(&priv->s_iowait)) {
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				qp->s_flags |= RVT_S_WAIT_DMA;
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				goto bail;
			}
			qp->s_cur = next_cur;
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			spin_unlock_irqrestore(&qp->s_lock, tflags);
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			ud_loopback(qp, wqe);
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			spin_lock_irqsave(&qp->s_lock, tflags);
			ps->flags = tflags;
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			hfi1_send_complete(qp, wqe, IB_WC_SUCCESS);
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			goto done_free_tx;
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		}
	}

	qp->s_cur = next_cur;
	extra_bytes = -wqe->length & 3;
	nwords = (wqe->length + extra_bytes) >> 2;

	/* header size in 32-bit words LRH+BTH+DETH = (8+12+8)/4. */
	qp->s_hdrwords = 7;
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	ps->s_txreq->s_cur_size = wqe->length;
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	ps->s_txreq->ss = &qp->s_sge;
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	qp->s_srate = ah_attr->static_rate;
	qp->srate_mbps = ib_rate_to_mbps(qp->s_srate);
	qp->s_wqe = wqe;
	qp->s_sge.sge = wqe->sg_list[0];
	qp->s_sge.sg_list = wqe->sg_list + 1;
	qp->s_sge.num_sge = wqe->wr.num_sge;
	qp->s_sge.total_len = wqe->length;

	if (ah_attr->ah_flags & IB_AH_GRH) {
		/* Header size in 32-bit words. */
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		qp->s_hdrwords += hfi1_make_grh(ibp,
						&ps->s_txreq->phdr.hdr.u.l.grh,
						&ah_attr->grh,
						qp->s_hdrwords, nwords);
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		lrh0 = HFI1_LRH_GRH;
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		ohdr = &ps->s_txreq->phdr.hdr.u.l.oth;
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		/*
		 * Don't worry about sending to locally attached multicast
		 * QPs.  It is unspecified by the spec. what happens.
		 */
	} else {
		/* Header size in 32-bit words. */
		lrh0 = HFI1_LRH_BTH;
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		ohdr = &ps->s_txreq->phdr.hdr.u.oth;
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	}
	if (wqe->wr.opcode == IB_WR_SEND_WITH_IMM) {
		qp->s_hdrwords++;
		ohdr->u.ud.imm_data = wqe->wr.ex.imm_data;
		bth0 = IB_OPCODE_UD_SEND_ONLY_WITH_IMMEDIATE << 24;
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	} else {
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		bth0 = IB_OPCODE_UD_SEND_ONLY << 24;
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	}
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	sc5 = ibp->sl_to_sc[ah_attr->sl];
	lrh0 |= (ah_attr->sl & 0xf) << 4;
	if (qp->ibqp.qp_type == IB_QPT_SMI) {
		lrh0 |= 0xF000; /* Set VL (see ch. 13.5.3.1) */
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		priv->s_sc = 0xf;
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	} else {
		lrh0 |= (sc5 & 0xf) << 12;
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		priv->s_sc = sc5;
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	}
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	priv->s_sde = qp_to_sdma_engine(qp, priv->s_sc);
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	ps->s_txreq->sde = priv->s_sde;
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	priv->s_sendcontext = qp_to_send_context(qp, priv->s_sc);
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	ps->s_txreq->psc = priv->s_sendcontext;
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	ps->s_txreq->phdr.hdr.lrh[0] = cpu_to_be16(lrh0);
	ps->s_txreq->phdr.hdr.lrh[1] = cpu_to_be16(ah_attr->dlid);
	ps->s_txreq->phdr.hdr.lrh[2] =
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		cpu_to_be16(qp->s_hdrwords + nwords + SIZE_OF_CRC);
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	if (ah_attr->dlid == be16_to_cpu(IB_LID_PERMISSIVE)) {
		ps->s_txreq->phdr.hdr.lrh[3] = IB_LID_PERMISSIVE;
	} else {
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		lid = ppd->lid;
		if (lid) {
			lid |= ah_attr->src_path_bits & ((1 << ppd->lmc) - 1);
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			ps->s_txreq->phdr.hdr.lrh[3] = cpu_to_be16(lid);
		} else {
			ps->s_txreq->phdr.hdr.lrh[3] = IB_LID_PERMISSIVE;
		}
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	}
	if (wqe->wr.send_flags & IB_SEND_SOLICITED)
		bth0 |= IB_BTH_SOLICITED;
	bth0 |= extra_bytes << 20;
	if (qp->ibqp.qp_type == IB_QPT_GSI || qp->ibqp.qp_type == IB_QPT_SMI)
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		bth0 |= hfi1_get_pkey(ibp, wqe->ud_wr.pkey_index);
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	else
		bth0 |= hfi1_get_pkey(ibp, qp->s_pkey_index);
	ohdr->bth[0] = cpu_to_be32(bth0);
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	ohdr->bth[1] = cpu_to_be32(wqe->ud_wr.remote_qpn);
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	ohdr->bth[2] = cpu_to_be32(mask_psn(wqe->psn));
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	/*
	 * Qkeys with the high order bit set mean use the
	 * qkey from the QP context instead of the WR (see 10.2.5).
	 */
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	ohdr->u.ud.deth[0] = cpu_to_be32((int)wqe->ud_wr.remote_qkey < 0 ?
					 qp->qkey : wqe->ud_wr.remote_qkey);
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	ohdr->u.ud.deth[1] = cpu_to_be32(qp->ibqp.qp_num);
	/* disarm any ahg */
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	priv->s_ahg->ahgcount = 0;
	priv->s_ahg->ahgidx = 0;
	priv->s_ahg->tx_flags = 0;
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	/* pbc */
	ps->s_txreq->hdr_dwords = qp->s_hdrwords + 2;
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	return 1;
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done_free_tx:
	hfi1_put_txreq(ps->s_txreq);
	ps->s_txreq = NULL;
	return 1;

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bail:
451 452 453 454
	hfi1_put_txreq(ps->s_txreq);

bail_no_tx:
	ps->s_txreq = NULL;
455
	qp->s_flags &= ~RVT_S_BUSY;
456 457
	qp->s_hdrwords = 0;
	return 0;
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}

/*
 * Hardware can't check this so we do it here.
 *
 * This is a slightly different algorithm than the standard pkey check.  It
 * special cases the management keys and allows for 0x7fff and 0xffff to be in
 * the table at the same time.
 *
 * @returns the index found or -1 if not found
 */
int hfi1_lookup_pkey_idx(struct hfi1_ibport *ibp, u16 pkey)
{
	struct hfi1_pportdata *ppd = ppd_from_ibp(ibp);
	unsigned i;

	if (pkey == FULL_MGMT_P_KEY || pkey == LIM_MGMT_P_KEY) {
		unsigned lim_idx = -1;

		for (i = 0; i < ARRAY_SIZE(ppd->pkeys); ++i) {
			/* here we look for an exact match */
			if (ppd->pkeys[i] == pkey)
				return i;
			if (ppd->pkeys[i] == LIM_MGMT_P_KEY)
				lim_idx = i;
		}

		/* did not find 0xffff return 0x7fff idx if found */
		if (pkey == FULL_MGMT_P_KEY)
			return lim_idx;

		/* no match...  */
		return -1;
	}

	pkey &= 0x7fff; /* remove limited/full membership bit */

	for (i = 0; i < ARRAY_SIZE(ppd->pkeys); ++i)
		if ((ppd->pkeys[i] & 0x7fff) == pkey)
			return i;

	/*
	 * Should not get here, this means hardware failed to validate pkeys.
	 */
	return -1;
}

505
void return_cnp(struct hfi1_ibport *ibp, struct rvt_qp *qp, u32 remote_qpn,
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		u32 pkey, u32 slid, u32 dlid, u8 sc5,
		const struct ib_grh *old_grh)
{
	u64 pbc, pbc_flags = 0;
	u32 bth0, plen, vl, hwords = 5;
	u16 lrh0;
	u8 sl = ibp->sc_to_sl[sc5];
513 514
	struct ib_header hdr;
	struct ib_other_headers *ohdr;
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	struct pio_buf *pbuf;
	struct send_context *ctxt = qp_to_send_context(qp, sc5);
	struct hfi1_pportdata *ppd = ppd_from_ibp(ibp);

	if (old_grh) {
		struct ib_grh *grh = &hdr.u.l.grh;

		grh->version_tclass_flow = old_grh->version_tclass_flow;
		grh->paylen = cpu_to_be16((hwords - 2 + SIZE_OF_CRC) << 2);
		grh->hop_limit = 0xff;
		grh->sgid = old_grh->dgid;
		grh->dgid = old_grh->sgid;
		ohdr = &hdr.u.l.oth;
		lrh0 = HFI1_LRH_GRH;
		hwords += sizeof(struct ib_grh) / sizeof(u32);
	} else {
		ohdr = &hdr.u.oth;
		lrh0 = HFI1_LRH_BTH;
	}

	lrh0 |= (sc5 & 0xf) << 12 | sl << 4;

	bth0 = pkey | (IB_OPCODE_CNP << 24);
	ohdr->bth[0] = cpu_to_be32(bth0);

	ohdr->bth[1] = cpu_to_be32(remote_qpn | (1 << HFI1_BECN_SHIFT));
	ohdr->bth[2] = 0; /* PSN 0 */

	hdr.lrh[0] = cpu_to_be16(lrh0);
	hdr.lrh[1] = cpu_to_be16(dlid);
	hdr.lrh[2] = cpu_to_be16(hwords + SIZE_OF_CRC);
	hdr.lrh[3] = cpu_to_be16(slid);

	plen = 2 /* PBC */ + hwords;
	pbc_flags |= (!!(sc5 & 0x10)) << PBC_DC_INFO_SHIFT;
	vl = sc_to_vlt(ppd->dd, sc5);
	pbc = create_pbc(ppd, pbc_flags, qp->srate_mbps, vl, plen);
	if (ctxt) {
		pbuf = sc_buffer_alloc(ctxt, plen, NULL, NULL);
		if (pbuf)
			ppd->dd->pio_inline_send(ppd->dd, pbuf, pbc,
						 &hdr, hwords);
	}
}

/*
 * opa_smp_check() - Do the regular pkey checking, and the additional
562 563
 * checks for SMPs specified in OPAv1 rev 1.0, 9/19/2016 update, section
 * 9.10.25 ("SMA Packet Checks").
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 *
 * Note that:
 *   - Checks are done using the pkey directly from the packet's BTH,
 *     and specifically _not_ the pkey that we attach to the completion,
 *     which may be different.
 *   - These checks are specifically for "non-local" SMPs (i.e., SMPs
 *     which originated on another node). SMPs which are sent from, and
 *     destined to this node are checked in opa_local_smp_check().
 *
 * At the point where opa_smp_check() is called, we know:
 *   - destination QP is QP0
 *
 * opa_smp_check() returns 0 if all checks succeed, 1 otherwise.
 */
static int opa_smp_check(struct hfi1_ibport *ibp, u16 pkey, u8 sc5,
579
			 struct rvt_qp *qp, u16 slid, struct opa_smp *smp)
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{
	struct hfi1_pportdata *ppd = ppd_from_ibp(ibp);

	/*
	 * I don't think it's possible for us to get here with sc != 0xf,
	 * but check it to be certain.
	 */
	if (sc5 != 0xf)
		return 1;

	if (rcv_pkey_check(ppd, pkey, sc5, slid))
		return 1;

	/*
	 * At this point we know (and so don't need to check again) that
	 * the pkey is either LIM_MGMT_P_KEY, or FULL_MGMT_P_KEY
	 * (see ingress_pkey_check).
	 */
	if (smp->mgmt_class != IB_MGMT_CLASS_SUBN_DIRECTED_ROUTE &&
	    smp->mgmt_class != IB_MGMT_CLASS_SUBN_LID_ROUTED) {
		ingress_pkey_table_fail(ppd, pkey, slid);
		return 1;
	}

	/*
	 * SMPs fall into one of four (disjoint) categories:
606 607 608
	 * SMA request, SMA response, SMA trap, or SMA trap repress.
	 * Our response depends, in part, on which type of SMP we're
	 * processing.
M
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609
	 *
610 611 612
	 * If this is an SMA response, skip the check here.
	 *
	 * If this is an SMA request or SMA trap repress:
M
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	 *   - pkey != FULL_MGMT_P_KEY =>
	 *       increment port recv constraint errors, drop MAD
615 616 617 618 619 620 621 622
	 *
	 * Otherwise:
	 *    - accept if the port is running an SM
	 *    - drop MAD if it's an SMA trap
	 *    - pkey == FULL_MGMT_P_KEY =>
	 *        reply with unsupported method
	 *    - pkey != FULL_MGMT_P_KEY =>
	 *	  increment port recv constraint errors, drop MAD
M
Mike Marciniszyn 已提交
623 624
	 */
	switch (smp->method) {
625 626 627
	case IB_MGMT_METHOD_GET_RESP:
	case IB_MGMT_METHOD_REPORT_RESP:
		break;
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	case IB_MGMT_METHOD_GET:
	case IB_MGMT_METHOD_SET:
	case IB_MGMT_METHOD_REPORT:
	case IB_MGMT_METHOD_TRAP_REPRESS:
		if (pkey != FULL_MGMT_P_KEY) {
			ingress_pkey_table_fail(ppd, pkey, slid);
			return 1;
		}
		break;
637
	default:
638
		if (ibp->rvp.port_cap_flags & IB_PORT_SM)
M
Mike Marciniszyn 已提交
639
			return 0;
640 641
		if (smp->method == IB_MGMT_METHOD_TRAP)
			return 1;
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		if (pkey == FULL_MGMT_P_KEY) {
			smp->status |= IB_SMP_UNSUP_METHOD;
			return 0;
		}
646 647
		ingress_pkey_table_fail(ppd, pkey, slid);
		return 1;
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Mike Marciniszyn 已提交
648 649 650 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665 666
	}
	return 0;
}

/**
 * hfi1_ud_rcv - receive an incoming UD packet
 * @ibp: the port the packet came in on
 * @hdr: the packet header
 * @rcv_flags: flags relevant to rcv processing
 * @data: the packet data
 * @tlen: the packet length
 * @qp: the QP the packet came on
 *
 * This is called from qp_rcv() to process an incoming UD packet
 * for the given QP.
 * Called at interrupt level.
 */
void hfi1_ud_rcv(struct hfi1_packet *packet)
{
667
	struct ib_other_headers *ohdr = packet->ohdr;
M
Mike Marciniszyn 已提交
668 669 670 671 672 673 674
	int opcode;
	u32 hdrsize = packet->hlen;
	struct ib_wc wc;
	u32 qkey;
	u32 src_qp;
	u16 dlid, pkey;
	int mgmt_pkey_idx = -1;
675
	struct hfi1_ibport *ibp = rcd_to_iport(packet->rcd);
676
	struct hfi1_pportdata *ppd = ppd_from_ibp(ibp);
677
	struct ib_header *hdr = packet->hdr;
M
Mike Marciniszyn 已提交
678 679 680
	u32 rcv_flags = packet->rcv_flags;
	void *data = packet->ebuf;
	u32 tlen = packet->tlen;
681
	struct rvt_qp *qp = packet->qp;
M
Mike Marciniszyn 已提交
682
	bool has_grh = rcv_flags & HFI1_HAS_GRH;
683
	u8 sc5 = hdr2sc(hdr, packet->rhf);
684 685 686 687
	u32 bth1;
	u8 sl_from_sc, sl;
	u16 slid;
	u8 extra_bytes;
M
Mike Marciniszyn 已提交
688 689

	qkey = be32_to_cpu(ohdr->u.ud.deth[0]);
690
	src_qp = be32_to_cpu(ohdr->u.ud.deth[1]) & RVT_QPN_MASK;
M
Mike Marciniszyn 已提交
691
	dlid = be16_to_cpu(hdr->lrh[1]);
692 693 694 695 696 697 698
	bth1 = be32_to_cpu(ohdr->bth[1]);
	slid = be16_to_cpu(hdr->lrh[3]);
	pkey = (u16)be32_to_cpu(ohdr->bth[0]);
	sl = (be16_to_cpu(hdr->lrh[0]) >> 4) & 0xf;
	extra_bytes = (be32_to_cpu(ohdr->bth[0]) >> 20) & 3;
	extra_bytes += (SIZE_OF_CRC << 2);
	sl_from_sc = ibp->sc_to_sl[sc5];
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Mike Marciniszyn 已提交
699 700 701 702

	opcode = be32_to_cpu(ohdr->bth[0]) >> 24;
	opcode &= 0xff;

703
	process_ecn(qp, packet, (opcode != IB_OPCODE_CNP));
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Mike Marciniszyn 已提交
704 705 706 707
	/*
	 * Get the number of bytes the message was padded by
	 * and drop incomplete packets.
	 */
708
	if (unlikely(tlen < (hdrsize + extra_bytes)))
M
Mike Marciniszyn 已提交
709 710
		goto drop;

711
	tlen -= hdrsize + extra_bytes;
M
Mike Marciniszyn 已提交
712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728

	/*
	 * Check that the permissive LID is only used on QP0
	 * and the QKEY matches (see 9.6.1.4.1 and 9.6.1.5.1).
	 */
	if (qp->ibqp.qp_num) {
		if (unlikely(hdr->lrh[1] == IB_LID_PERMISSIVE ||
			     hdr->lrh[3] == IB_LID_PERMISSIVE))
			goto drop;
		if (qp->ibqp.qp_num > 1) {
			if (unlikely(rcv_pkey_check(ppd, pkey, sc5, slid))) {
				/*
				 * Traps will not be sent for packets dropped
				 * by the HW. This is fine, as sending trap
				 * for invalid pkeys is optional according to
				 * IB spec (release 1.3, section 10.9.4)
				 */
729
				hfi1_bad_pqkey(ibp, OPA_TRAP_BAD_P_KEY,
730
					       pkey, sl,
M
Mike Marciniszyn 已提交
731
					       src_qp, qp->ibqp.qp_num,
732
					       slid, dlid);
M
Mike Marciniszyn 已提交
733 734 735 736 737 738 739 740 741
				return;
			}
		} else {
			/* GSI packet */
			mgmt_pkey_idx = hfi1_lookup_pkey_idx(ibp, pkey);
			if (mgmt_pkey_idx < 0)
				goto drop;
		}
		if (unlikely(qkey != qp->qkey)) {
742
			hfi1_bad_pqkey(ibp, OPA_TRAP_BAD_Q_KEY, qkey, sl,
M
Mike Marciniszyn 已提交
743
				       src_qp, qp->ibqp.qp_num,
744
				       slid, dlid);
M
Mike Marciniszyn 已提交
745 746 747 748
			return;
		}
		/* Drop invalid MAD packets (see 13.5.3.1). */
		if (unlikely(qp->ibqp.qp_num == 1 &&
749
			     (tlen > 2048 || (sc5 == 0xF))))
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Mike Marciniszyn 已提交
750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778
			goto drop;
	} else {
		/* Received on QP0, and so by definition, this is an SMP */
		struct opa_smp *smp = (struct opa_smp *)data;

		if (opa_smp_check(ibp, pkey, sc5, qp, slid, smp))
			goto drop;

		if (tlen > 2048)
			goto drop;
		if ((hdr->lrh[1] == IB_LID_PERMISSIVE ||
		     hdr->lrh[3] == IB_LID_PERMISSIVE) &&
		    smp->mgmt_class != IB_MGMT_CLASS_SUBN_DIRECTED_ROUTE)
			goto drop;

		/* look up SMI pkey */
		mgmt_pkey_idx = hfi1_lookup_pkey_idx(ibp, pkey);
		if (mgmt_pkey_idx < 0)
			goto drop;
	}

	if (qp->ibqp.qp_num > 1 &&
	    opcode == IB_OPCODE_UD_SEND_ONLY_WITH_IMMEDIATE) {
		wc.ex.imm_data = ohdr->u.ud.imm_data;
		wc.wc_flags = IB_WC_WITH_IMM;
		tlen -= sizeof(u32);
	} else if (opcode == IB_OPCODE_UD_SEND_ONLY) {
		wc.ex.imm_data = 0;
		wc.wc_flags = 0;
779
	} else {
M
Mike Marciniszyn 已提交
780
		goto drop;
781
	}
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Mike Marciniszyn 已提交
782 783 784 785 786 787 788 789 790 791

	/*
	 * A GRH is expected to precede the data even if not
	 * present on the wire.
	 */
	wc.byte_len = tlen + sizeof(struct ib_grh);

	/*
	 * Get the next work request entry to find where to put the data.
	 */
792
	if (qp->r_flags & RVT_R_REUSE_SGE) {
793
		qp->r_flags &= ~RVT_R_REUSE_SGE;
794
	} else {
M
Mike Marciniszyn 已提交
795 796
		int ret;

797
		ret = hfi1_rvt_get_rwqe(qp, 0);
M
Mike Marciniszyn 已提交
798
		if (ret < 0) {
799
			rvt_rc_error(qp, IB_WC_LOC_QP_OP_ERR);
M
Mike Marciniszyn 已提交
800 801 802 803
			return;
		}
		if (!ret) {
			if (qp->ibqp.qp_num == 0)
804
				ibp->rvp.n_vl15_dropped++;
M
Mike Marciniszyn 已提交
805 806 807 808 809
			return;
		}
	}
	/* Silently drop packets which are too big. */
	if (unlikely(wc.byte_len > qp->r_len)) {
810
		qp->r_flags |= RVT_R_REUSE_SGE;
M
Mike Marciniszyn 已提交
811 812 813 814
		goto drop;
	}
	if (has_grh) {
		hfi1_copy_sge(&qp->r_sge, &hdr->u.l.grh,
815
			      sizeof(struct ib_grh), true, false);
M
Mike Marciniszyn 已提交
816
		wc.wc_flags |= IB_WC_GRH;
817
	} else {
818
		hfi1_skip_sge(&qp->r_sge, sizeof(struct ib_grh), true);
819
	}
820
	hfi1_copy_sge(&qp->r_sge, data, wc.byte_len - sizeof(struct ib_grh),
821
		      true, false);
822
	rvt_put_ss(&qp->r_sge);
823
	if (!test_and_clear_bit(RVT_R_WRID_VALID, &qp->r_aflags))
M
Mike Marciniszyn 已提交
824 825 826 827 828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843
		return;
	wc.wr_id = qp->r_wr_id;
	wc.status = IB_WC_SUCCESS;
	wc.opcode = IB_WC_RECV;
	wc.vendor_err = 0;
	wc.qp = &qp->ibqp;
	wc.src_qp = src_qp;

	if (qp->ibqp.qp_type == IB_QPT_GSI ||
	    qp->ibqp.qp_type == IB_QPT_SMI) {
		if (mgmt_pkey_idx < 0) {
			if (net_ratelimit()) {
				struct hfi1_devdata *dd = ppd->dd;

				dd_dev_err(dd, "QP type %d mgmt_pkey_idx < 0 and packet not dropped???\n",
					   qp->ibqp.qp_type);
				mgmt_pkey_idx = 0;
			}
		}
		wc.pkey_index = (unsigned)mgmt_pkey_idx;
844
	} else {
M
Mike Marciniszyn 已提交
845
		wc.pkey_index = 0;
846
	}
M
Mike Marciniszyn 已提交
847

848 849
	wc.slid = slid;
	wc.sl = sl_from_sc;
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Mike Marciniszyn 已提交
850 851 852 853

	/*
	 * Save the LMC lower bits if the destination LID is a unicast LID.
	 */
854
	wc.dlid_path_bits = dlid >= be16_to_cpu(IB_MULTICAST_LID_BASE) ? 0 :
M
Mike Marciniszyn 已提交
855 856 857
		dlid & ((1 << ppd_from_ibp(ibp)->lmc) - 1);
	wc.port_num = qp->port_num;
	/* Signal completion event if the solicited bit is set. */
858 859 860
	rvt_cq_enter(ibcq_to_rvtcq(qp->ibqp.recv_cq), &wc,
		     (ohdr->bth[0] &
		      cpu_to_be32(IB_BTH_SOLICITED)) != 0);
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Mike Marciniszyn 已提交
861 862 863
	return;

drop:
864
	ibp->rvp.n_pkt_drops++;
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Mike Marciniszyn 已提交
865
}