driver.c 42.6 KB
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/*
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 * Copyright(c) 2015-2017 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/spinlock.h>
#include <linux/pci.h>
#include <linux/io.h>
#include <linux/delay.h>
#include <linux/netdevice.h>
#include <linux/vmalloc.h>
#include <linux/module.h>
#include <linux/prefetch.h>
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#include <rdma/ib_verbs.h>
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#include "hfi.h"
#include "trace.h"
#include "qp.h"
#include "sdma.h"
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#include "debugfs.h"
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#include "vnic.h"
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#undef pr_fmt
#define pr_fmt(fmt) DRIVER_NAME ": " fmt

/*
 * The size has to be longer than this string, so we can append
 * board/chip information to it in the initialization code.
 */
const char ib_hfi1_version[] = HFI1_DRIVER_VERSION "\n";

DEFINE_SPINLOCK(hfi1_devs_lock);
LIST_HEAD(hfi1_dev_list);
DEFINE_MUTEX(hfi1_mutex);	/* general driver use */

unsigned int hfi1_max_mtu = HFI1_DEFAULT_MAX_MTU;
module_param_named(max_mtu, hfi1_max_mtu, uint, S_IRUGO);
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MODULE_PARM_DESC(max_mtu, "Set max MTU bytes, default is " __stringify(
		 HFI1_DEFAULT_MAX_MTU));
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unsigned int hfi1_cu = 1;
module_param_named(cu, hfi1_cu, uint, S_IRUGO);
MODULE_PARM_DESC(cu, "Credit return units");

unsigned long hfi1_cap_mask = HFI1_CAP_MASK_DEFAULT;
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static int hfi1_caps_set(const char *val, const struct kernel_param *kp);
static int hfi1_caps_get(char *buffer, const struct kernel_param *kp);
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static const struct kernel_param_ops cap_ops = {
	.set = hfi1_caps_set,
	.get = hfi1_caps_get
};
module_param_cb(cap_mask, &cap_ops, &hfi1_cap_mask, S_IWUSR | S_IRUGO);
MODULE_PARM_DESC(cap_mask, "Bit mask of enabled/disabled HW features");

MODULE_LICENSE("Dual BSD/GPL");
MODULE_DESCRIPTION("Intel Omni-Path Architecture driver");

/*
 * MAX_PKT_RCV is the max # if packets processed per receive interrupt.
 */
#define MAX_PKT_RECV 64
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/*
 * MAX_PKT_THREAD_RCV is the max # of packets processed before
 * the qp_wait_list queue is flushed.
 */
#define MAX_PKT_RECV_THREAD (MAX_PKT_RECV * 4)
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#define EGR_HEAD_UPDATE_THRESHOLD 16

struct hfi1_ib_stats hfi1_stats;

static int hfi1_caps_set(const char *val, const struct kernel_param *kp)
{
	int ret = 0;
	unsigned long *cap_mask_ptr = (unsigned long *)kp->arg,
		cap_mask = *cap_mask_ptr, value, diff,
		write_mask = ((HFI1_CAP_WRITABLE_MASK << HFI1_CAP_USER_SHIFT) |
			      HFI1_CAP_WRITABLE_MASK);

	ret = kstrtoul(val, 0, &value);
	if (ret) {
		pr_warn("Invalid module parameter value for 'cap_mask'\n");
		goto done;
	}
	/* Get the changed bits (except the locked bit) */
	diff = value ^ (cap_mask & ~HFI1_CAP_LOCKED_SMASK);

	/* Remove any bits that are not allowed to change after driver load */
	if (HFI1_CAP_LOCKED() && (diff & ~write_mask)) {
		pr_warn("Ignoring non-writable capability bits %#lx\n",
			diff & ~write_mask);
		diff &= write_mask;
	}

	/* Mask off any reserved bits */
	diff &= ~HFI1_CAP_RESERVED_MASK;
	/* Clear any previously set and changing bits */
	cap_mask &= ~diff;
	/* Update the bits with the new capability */
	cap_mask |= (value & diff);
	/* Check for any kernel/user restrictions */
	diff = (cap_mask & (HFI1_CAP_MUST_HAVE_KERN << HFI1_CAP_USER_SHIFT)) ^
		((cap_mask & HFI1_CAP_MUST_HAVE_KERN) << HFI1_CAP_USER_SHIFT);
	cap_mask &= ~diff;
	/* Set the bitmask to the final set */
	*cap_mask_ptr = cap_mask;
done:
	return ret;
}

static int hfi1_caps_get(char *buffer, const struct kernel_param *kp)
{
	unsigned long cap_mask = *(unsigned long *)kp->arg;

	cap_mask &= ~HFI1_CAP_LOCKED_SMASK;
	cap_mask |= ((cap_mask & HFI1_CAP_K2U) << HFI1_CAP_USER_SHIFT);

	return scnprintf(buffer, PAGE_SIZE, "0x%lx", cap_mask);
}

const char *get_unit_name(int unit)
{
	static char iname[16];

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	snprintf(iname, sizeof(iname), DRIVER_NAME "_%u", unit);
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	return iname;
}

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const char *get_card_name(struct rvt_dev_info *rdi)
{
	struct hfi1_ibdev *ibdev = container_of(rdi, struct hfi1_ibdev, rdi);
	struct hfi1_devdata *dd = container_of(ibdev,
					       struct hfi1_devdata, verbs_dev);
	return get_unit_name(dd->unit);
}

struct pci_dev *get_pci_dev(struct rvt_dev_info *rdi)
{
	struct hfi1_ibdev *ibdev = container_of(rdi, struct hfi1_ibdev, rdi);
	struct hfi1_devdata *dd = container_of(ibdev,
					       struct hfi1_devdata, verbs_dev);
	return dd->pcidev;
}

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/*
 * Return count of units with at least one port ACTIVE.
 */
int hfi1_count_active_units(void)
{
	struct hfi1_devdata *dd;
	struct hfi1_pportdata *ppd;
	unsigned long flags;
	int pidx, nunits_active = 0;

	spin_lock_irqsave(&hfi1_devs_lock, flags);
	list_for_each_entry(dd, &hfi1_dev_list, list) {
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		if (!(dd->flags & HFI1_PRESENT) || !dd->kregbase1)
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			continue;
		for (pidx = 0; pidx < dd->num_pports; ++pidx) {
			ppd = dd->pport + pidx;
			if (ppd->lid && ppd->linkup) {
				nunits_active++;
				break;
			}
		}
	}
	spin_unlock_irqrestore(&hfi1_devs_lock, flags);
	return nunits_active;
}

/*
 * Get address of eager buffer from it's index (allocated in chunks, not
 * contiguous).
 */
static inline void *get_egrbuf(const struct hfi1_ctxtdata *rcd, u64 rhf,
			       u8 *update)
{
	u32 idx = rhf_egr_index(rhf), offset = rhf_egr_buf_offset(rhf);

	*update |= !(idx & (rcd->egrbufs.threshold - 1)) && !offset;
	return (void *)(((u64)(rcd->egrbufs.rcvtids[idx].addr)) +
			(offset * RCV_BUF_BLOCK_SIZE));
}

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static inline void *hfi1_get_header(struct hfi1_devdata *dd,
				    __le32 *rhf_addr)
{
	u32 offset = rhf_hdrq_offset(rhf_to_cpu(rhf_addr));

	return (void *)(rhf_addr - dd->rhf_offset + offset);
}

static inline struct ib_header *hfi1_get_msgheader(struct hfi1_devdata *dd,
						   __le32 *rhf_addr)
{
	return (struct ib_header *)hfi1_get_header(dd, rhf_addr);
}

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static inline struct hfi1_16b_header
		*hfi1_get_16B_header(struct hfi1_devdata *dd,
				     __le32 *rhf_addr)
{
	return (struct hfi1_16b_header *)hfi1_get_header(dd, rhf_addr);
}

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/*
 * Validate and encode the a given RcvArray Buffer size.
 * The function will check whether the given size falls within
 * allowed size ranges for the respective type and, optionally,
 * return the proper encoding.
 */
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int hfi1_rcvbuf_validate(u32 size, u8 type, u16 *encoded)
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{
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	if (unlikely(!PAGE_ALIGNED(size)))
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		return 0;
	if (unlikely(size < MIN_EAGER_BUFFER))
		return 0;
	if (size >
	    (type == PT_EAGER ? MAX_EAGER_BUFFER : MAX_EXPECTED_BUFFER))
		return 0;
	if (encoded)
		*encoded = ilog2(size / PAGE_SIZE) + 1;
	return 1;
}

static void rcv_hdrerr(struct hfi1_ctxtdata *rcd, struct hfi1_pportdata *ppd,
		       struct hfi1_packet *packet)
{
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	struct ib_header *rhdr = packet->hdr;
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	u32 rte = rhf_rcv_type_err(packet->rhf);
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	u8 lnh = ib_get_lnh(rhdr);
	bool has_grh = false;
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	struct hfi1_ibport *ibp = rcd_to_iport(rcd);
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	struct hfi1_devdata *dd = ppd->dd;
	struct rvt_dev_info *rdi = &dd->verbs_dev.rdi;
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	if (packet->rhf & (RHF_VCRC_ERR | RHF_ICRC_ERR))
		return;

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	if (lnh == HFI1_LRH_BTH) {
		packet->ohdr = &rhdr->u.oth;
	} else if (lnh == HFI1_LRH_GRH) {
		has_grh = true;
		packet->ohdr = &rhdr->u.l.oth;
		packet->grh = &rhdr->u.l.grh;
	} else {
		goto drop;
	}

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	if (packet->rhf & RHF_TID_ERR) {
		/* For TIDERR and RC QPs preemptively schedule a NAK */
		u32 tlen = rhf_pkt_len(packet->rhf); /* in bytes */
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		u32 dlid = ib_get_dlid(rhdr);
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		u32 qp_num;
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		u32 mlid_base = be16_to_cpu(IB_MULTICAST_LID_BASE);
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		/* Sanity check packet */
		if (tlen < 24)
			goto drop;

		/* Check for GRH */
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		if (has_grh) {
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			u32 vtf;
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			struct ib_grh *grh = packet->grh;
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			if (grh->next_hdr != IB_GRH_NEXT_HDR)
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				goto drop;
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			vtf = be32_to_cpu(grh->version_tclass_flow);
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			if ((vtf >> IB_GRH_VERSION_SHIFT) != IB_GRH_VERSION)
				goto drop;
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		}
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		/* Get the destination QP number. */
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		qp_num = ib_bth_get_qpn(packet->ohdr);
		if (dlid < mlid_base) {
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			struct rvt_qp *qp;
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			unsigned long flags;
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			rcu_read_lock();
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			qp = rvt_lookup_qpn(rdi, &ibp->rvp, qp_num);
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			if (!qp) {
				rcu_read_unlock();
				goto drop;
			}

			/*
			 * Handle only RC QPs - for other QP types drop error
			 * packet.
			 */
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			spin_lock_irqsave(&qp->r_lock, flags);
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			/* Check for valid receive state. */
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			if (!(ib_rvt_state_ops[qp->state] &
			      RVT_PROCESS_RECV_OK)) {
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				ibp->rvp.n_pkt_drops++;
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			}

			switch (qp->ibqp.qp_type) {
			case IB_QPT_RC:
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				hfi1_rc_hdrerr(rcd, packet, qp);
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				break;
			default:
				/* For now don't handle any other QP types */
				break;
			}

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			spin_unlock_irqrestore(&qp->r_lock, flags);
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			rcu_read_unlock();
		} /* Unicast QP */
	} /* Valid packet with TIDErr */

	/* handle "RcvTypeErr" flags */
	switch (rte) {
	case RHF_RTE_ERROR_OP_CODE_ERR:
	{
		void *ebuf = NULL;
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		u8 opcode;
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		if (rhf_use_egr_bfr(packet->rhf))
			ebuf = packet->ebuf;

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		if (!ebuf)
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			goto drop; /* this should never happen */

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		opcode = ib_bth_get_opcode(packet->ohdr);
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		if (opcode == IB_OPCODE_CNP) {
			/*
			 * Only in pre-B0 h/w is the CNP_OPCODE handled
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			 * via this code path.
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			 */
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			struct rvt_qp *qp = NULL;
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			u32 lqpn, rqpn;
			u16 rlid;
			u8 svc_type, sl, sc5;

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			sc5 = hfi1_9B_get_sc5(rhdr, packet->rhf);
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			sl = ibp->sc_to_sl[sc5];

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			lqpn = ib_bth_get_qpn(packet->ohdr);
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			rcu_read_lock();
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			qp = rvt_lookup_qpn(rdi, &ibp->rvp, lqpn);
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			if (!qp) {
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				rcu_read_unlock();
				goto drop;
			}

			switch (qp->ibqp.qp_type) {
			case IB_QPT_UD:
				rlid = 0;
				rqpn = 0;
				svc_type = IB_CC_SVCTYPE_UD;
				break;
			case IB_QPT_UC:
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				rlid = ib_get_slid(rhdr);
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				rqpn = qp->remote_qpn;
				svc_type = IB_CC_SVCTYPE_UC;
				break;
			default:
				goto drop;
			}

			process_becn(ppd, sl, rlid, lqpn, rqpn, svc_type);
			rcu_read_unlock();
		}

		packet->rhf &= ~RHF_RCV_TYPE_ERR_SMASK;
		break;
	}
	default:
		break;
	}

drop:
	return;
}

static inline void init_packet(struct hfi1_ctxtdata *rcd,
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			       struct hfi1_packet *packet)
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{
	packet->rsize = rcd->rcvhdrqentsize; /* words */
	packet->maxcnt = rcd->rcvhdrq_cnt * packet->rsize; /* words */
	packet->rcd = rcd;
	packet->updegr = 0;
	packet->etail = -1;
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	packet->rhf_addr = get_rhf_addr(rcd);
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	packet->rhf = rhf_to_cpu(packet->rhf_addr);
	packet->rhqoff = rcd->head;
	packet->numpkt = 0;
}

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void hfi1_process_ecn_slowpath(struct rvt_qp *qp, struct hfi1_packet *pkt,
			       bool do_cnp)
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{
	struct hfi1_ibport *ibp = to_iport(qp->ibqp.device, qp->port_num);
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	struct ib_header *hdr = pkt->hdr;
	struct ib_other_headers *ohdr = pkt->ohdr;
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	struct ib_grh *grh = pkt->grh;
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	u32 rqpn = 0, bth1;
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	u16 rlid, dlid = ib_get_dlid(hdr);
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	u8 sc, svc_type;
	bool is_mcast = false;

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	switch (qp->ibqp.qp_type) {
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	case IB_QPT_SMI:
	case IB_QPT_GSI:
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	case IB_QPT_UD:
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		rlid = ib_get_slid(hdr);
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		rqpn = ib_get_sqpn(ohdr);
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		svc_type = IB_CC_SVCTYPE_UD;
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		is_mcast = (dlid > be16_to_cpu(IB_MULTICAST_LID_BASE)) &&
			(dlid != be16_to_cpu(IB_LID_PERMISSIVE));
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		break;
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	case IB_QPT_UC:
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		rlid = rdma_ah_get_dlid(&qp->remote_ah_attr);
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		rqpn = qp->remote_qpn;
		svc_type = IB_CC_SVCTYPE_UC;
		break;
	case IB_QPT_RC:
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		rlid = rdma_ah_get_dlid(&qp->remote_ah_attr);
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		rqpn = qp->remote_qpn;
		svc_type = IB_CC_SVCTYPE_RC;
		break;
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	default:
		return;
	}

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	sc = hfi1_9B_get_sc5(hdr, pkt->rhf);
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	bth1 = be32_to_cpu(ohdr->bth[1]);
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	if (do_cnp && (bth1 & IB_FECN_SMASK)) {
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		u16 pkey = ib_bth_get_pkey(ohdr);
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		return_cnp(ibp, qp, rqpn, pkey, dlid, rlid, sc, grh);
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	}

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	if (!is_mcast && (bth1 & IB_BECN_SMASK)) {
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		struct hfi1_pportdata *ppd = ppd_from_ibp(ibp);
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		u32 lqpn = bth1 & RVT_QPN_MASK;
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		u8 sl = ibp->sc_to_sl[sc];
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		process_becn(ppd, sl, rlid, lqpn, rqpn, svc_type);
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	}
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}

struct ps_mdata {
	struct hfi1_ctxtdata *rcd;
	u32 rsize;
	u32 maxcnt;
	u32 ps_head;
	u32 ps_tail;
	u32 ps_seq;
};

static inline void init_ps_mdata(struct ps_mdata *mdata,
				 struct hfi1_packet *packet)
{
	struct hfi1_ctxtdata *rcd = packet->rcd;

	mdata->rcd = rcd;
	mdata->rsize = packet->rsize;
	mdata->maxcnt = packet->maxcnt;
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	mdata->ps_head = packet->rhqoff;
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	if (HFI1_CAP_KGET_MASK(rcd->flags, DMA_RTAIL)) {
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		mdata->ps_tail = get_rcvhdrtail(rcd);
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		if (rcd->ctxt == HFI1_CTRL_CTXT)
			mdata->ps_seq = rcd->seq_cnt;
		else
			mdata->ps_seq = 0; /* not used with DMA_RTAIL */
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	} else {
		mdata->ps_tail = 0; /* used only with DMA_RTAIL*/
		mdata->ps_seq = rcd->seq_cnt;
	}
}

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static inline int ps_done(struct ps_mdata *mdata, u64 rhf,
			  struct hfi1_ctxtdata *rcd)
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{
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	if (HFI1_CAP_KGET_MASK(rcd->flags, DMA_RTAIL))
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		return mdata->ps_head == mdata->ps_tail;
	return mdata->ps_seq != rhf_rcv_seq(rhf);
}

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static inline int ps_skip(struct ps_mdata *mdata, u64 rhf,
			  struct hfi1_ctxtdata *rcd)
{
	/*
	 * Control context can potentially receive an invalid rhf.
	 * Drop such packets.
	 */
	if ((rcd->ctxt == HFI1_CTRL_CTXT) && (mdata->ps_head != mdata->ps_tail))
		return mdata->ps_seq != rhf_rcv_seq(rhf);

	return 0;
}

static inline void update_ps_mdata(struct ps_mdata *mdata,
				   struct hfi1_ctxtdata *rcd)
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{
	mdata->ps_head += mdata->rsize;
543
	if (mdata->ps_head >= mdata->maxcnt)
M
Mike Marciniszyn 已提交
544
		mdata->ps_head = 0;
545 546 547 548

	/* Control context must do seq counting */
	if (!HFI1_CAP_KGET_MASK(rcd->flags, DMA_RTAIL) ||
	    (rcd->ctxt == HFI1_CTRL_CTXT)) {
M
Mike Marciniszyn 已提交
549 550 551 552 553 554 555 556 557 558
		if (++mdata->ps_seq > 13)
			mdata->ps_seq = 1;
	}
}

/*
 * prescan_rxq - search through the receive queue looking for packets
 * containing Excplicit Congestion Notifications (FECNs, or BECNs).
 * When an ECN is found, process the Congestion Notification, and toggle
 * it off.
559 560
 * This is declared as a macro to allow quick checking of the port to avoid
 * the overhead of a function call if not enabled.
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561
 */
562 563 564 565 566 567
#define prescan_rxq(rcd, packet) \
	do { \
		if (rcd->ppd->cc_prescan) \
			__prescan_rxq(packet); \
	} while (0)
static void __prescan_rxq(struct hfi1_packet *packet)
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Mike Marciniszyn 已提交
568 569 570 571 572 573 574 575
{
	struct hfi1_ctxtdata *rcd = packet->rcd;
	struct ps_mdata mdata;

	init_ps_mdata(&mdata, packet);

	while (1) {
		struct hfi1_devdata *dd = rcd->dd;
576
		struct hfi1_ibport *ibp = rcd_to_iport(rcd);
577
		__le32 *rhf_addr = (__le32 *)rcd->rcvhdrq + mdata.ps_head +
M
Mike Marciniszyn 已提交
578
					 dd->rhf_offset;
579
		struct rvt_qp *qp;
580
		struct ib_header *hdr;
581
		struct rvt_dev_info *rdi = &dd->verbs_dev.rdi;
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Mike Marciniszyn 已提交
582
		u64 rhf = rhf_to_cpu(rhf_addr);
583
		u32 etype = rhf_rcv_type(rhf), qpn, bth1;
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Mike Marciniszyn 已提交
584 585 586
		int is_ecn = 0;
		u8 lnh;

587
		if (ps_done(&mdata, rhf, rcd))
M
Mike Marciniszyn 已提交
588 589
			break;

590 591 592
		if (ps_skip(&mdata, rhf, rcd))
			goto next;

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593 594 595
		if (etype != RHF_RCV_TYPE_IB)
			goto next;

596 597
		packet->hdr = hfi1_get_msgheader(dd, rhf_addr);
		hdr = packet->hdr;
598
		lnh = ib_get_lnh(hdr);
M
Mike Marciniszyn 已提交
599

600 601
		if (lnh == HFI1_LRH_BTH) {
			packet->ohdr = &hdr->u.oth;
602
			packet->grh = NULL;
603 604
		} else if (lnh == HFI1_LRH_GRH) {
			packet->ohdr = &hdr->u.l.oth;
605
			packet->grh = &hdr->u.l.grh;
606
		} else {
M
Mike Marciniszyn 已提交
607
			goto next; /* just in case */
608
		}
609

610
		bth1 = be32_to_cpu(packet->ohdr->bth[1]);
611
		is_ecn = !!(bth1 & (IB_FECN_SMASK | IB_BECN_SMASK));
M
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612 613 614 615

		if (!is_ecn)
			goto next;

616
		qpn = bth1 & RVT_QPN_MASK;
M
Mike Marciniszyn 已提交
617
		rcu_read_lock();
618
		qp = rvt_lookup_qpn(rdi, &ibp->rvp, qpn);
M
Mike Marciniszyn 已提交
619

620
		if (!qp) {
M
Mike Marciniszyn 已提交
621 622 623 624
			rcu_read_unlock();
			goto next;
		}

625
		process_ecn(qp, packet, true);
M
Mike Marciniszyn 已提交
626
		rcu_read_unlock();
627 628

		/* turn off BECN, FECN */
629
		bth1 &= ~(IB_FECN_SMASK | IB_BECN_SMASK);
630
		packet->ohdr->bth[1] = cpu_to_be32(bth1);
M
Mike Marciniszyn 已提交
631
next:
632
		update_ps_mdata(&mdata, rcd);
M
Mike Marciniszyn 已提交
633 634
	}
}
635

636 637 638 639 640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665 666 667 668 669 670 671 672 673 674 675 676 677 678
static void process_rcv_qp_work(struct hfi1_ctxtdata *rcd)
{
	struct rvt_qp *qp, *nqp;

	/*
	 * Iterate over all QPs waiting to respond.
	 * The list won't change since the IRQ is only run on one CPU.
	 */
	list_for_each_entry_safe(qp, nqp, &rcd->qp_wait_list, rspwait) {
		list_del_init(&qp->rspwait);
		if (qp->r_flags & RVT_R_RSP_NAK) {
			qp->r_flags &= ~RVT_R_RSP_NAK;
			hfi1_send_rc_ack(rcd, qp, 0);
		}
		if (qp->r_flags & RVT_R_RSP_SEND) {
			unsigned long flags;

			qp->r_flags &= ~RVT_R_RSP_SEND;
			spin_lock_irqsave(&qp->s_lock, flags);
			if (ib_rvt_state_ops[qp->state] &
					RVT_PROCESS_OR_FLUSH_SEND)
				hfi1_schedule_send(qp);
			spin_unlock_irqrestore(&qp->s_lock, flags);
		}
		rvt_put_qp(qp);
	}
}

static noinline int max_packet_exceeded(struct hfi1_packet *packet, int thread)
{
	if (thread) {
		if ((packet->numpkt & (MAX_PKT_RECV_THREAD - 1)) == 0)
			/* allow defered processing */
			process_rcv_qp_work(packet->rcd);
		cond_resched();
		return RCV_PKT_OK;
	} else {
		this_cpu_inc(*packet->rcd->dd->rcv_limit);
		return RCV_PKT_LIMIT;
	}
}

static inline int check_max_packet(struct hfi1_packet *packet, int thread)
679 680 681
{
	int ret = RCV_PKT_OK;

682 683 684 685 686 687 688 689 690
	if (unlikely((packet->numpkt & (MAX_PKT_RECV - 1)) == 0))
		ret = max_packet_exceeded(packet, thread);
	return ret;
}

static noinline int skip_rcv_packet(struct hfi1_packet *packet, int thread)
{
	int ret;

691 692 693 694 695 696
	/* Set up for the next packet */
	packet->rhqoff += packet->rsize;
	if (packet->rhqoff >= packet->maxcnt)
		packet->rhqoff = 0;

	packet->numpkt++;
697
	ret = check_max_packet(packet, thread);
698 699 700 701 702 703 704

	packet->rhf_addr = (__le32 *)packet->rcd->rcvhdrq + packet->rhqoff +
				     packet->rcd->dd->rhf_offset;
	packet->rhf = rhf_to_cpu(packet->rhf_addr);

	return ret;
}
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Mike Marciniszyn 已提交
705

706
static inline int process_rcv_packet(struct hfi1_packet *packet, int thread)
M
Mike Marciniszyn 已提交
707
{
708
	int ret;
M
Mike Marciniszyn 已提交
709 710

	packet->etype = rhf_rcv_type(packet->rhf);
711

M
Mike Marciniszyn 已提交
712 713 714 715 716 717 718 719 720 721 722 723 724 725
	/* total length */
	packet->tlen = rhf_pkt_len(packet->rhf); /* in bytes */
	/* retrieve eager buffer details */
	packet->ebuf = NULL;
	if (rhf_use_egr_bfr(packet->rhf)) {
		packet->etail = rhf_egr_index(packet->rhf);
		packet->ebuf = get_egrbuf(packet->rcd, packet->rhf,
				 &packet->updegr);
		/*
		 * Prefetch the contents of the eager buffer.  It is
		 * OK to send a negative length to prefetch_range().
		 * The +2 is the size of the RHF.
		 */
		prefetch_range(packet->ebuf,
726 727 728
			       packet->tlen - ((packet->rcd->rcvhdrqentsize -
					       (rhf_hdrq_offset(packet->rhf)
						+ 2)) * 4));
M
Mike Marciniszyn 已提交
729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746
	}

	/*
	 * Call a type specific handler for the packet. We
	 * should be able to trust that etype won't be beyond
	 * the range of valid indexes. If so something is really
	 * wrong and we can probably just let things come
	 * crashing down. There is no need to eat another
	 * comparison in this performance critical code.
	 */
	packet->rcd->dd->rhf_rcv_function_map[packet->etype](packet);
	packet->numpkt++;

	/* Set up for the next packet */
	packet->rhqoff += packet->rsize;
	if (packet->rhqoff >= packet->maxcnt)
		packet->rhqoff = 0;

747
	ret = check_max_packet(packet, thread);
M
Mike Marciniszyn 已提交
748

749
	packet->rhf_addr = (__le32 *)packet->rcd->rcvhdrq + packet->rhqoff +
M
Mike Marciniszyn 已提交
750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768
				      packet->rcd->dd->rhf_offset;
	packet->rhf = rhf_to_cpu(packet->rhf_addr);

	return ret;
}

static inline void process_rcv_update(int last, struct hfi1_packet *packet)
{
	/*
	 * Update head regs etc., every 16 packets, if not last pkt,
	 * to help prevent rcvhdrq overflows, when many packets
	 * are processed and queue is nearly full.
	 * Don't request an interrupt for intermediate updates.
	 */
	if (!last && !(packet->numpkt & 0xf)) {
		update_usrhead(packet->rcd, packet->rhqoff, packet->updegr,
			       packet->etail, 0, 0);
		packet->updegr = 0;
	}
769
	packet->grh = NULL;
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Mike Marciniszyn 已提交
770 771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786
}

static inline void finish_packet(struct hfi1_packet *packet)
{
	/*
	 * Nothing we need to free for the packet.
	 *
	 * The only thing we need to do is a final update and call for an
	 * interrupt
	 */
	update_usrhead(packet->rcd, packet->rcd->head, packet->updegr,
		       packet->etail, rcv_intr_dynamic, packet->numpkt);
}

/*
 * Handle receive interrupts when using the no dma rtail option.
 */
787
int handle_receive_interrupt_nodma_rtail(struct hfi1_ctxtdata *rcd, int thread)
M
Mike Marciniszyn 已提交
788 789
{
	u32 seq;
790
	int last = RCV_PKT_OK;
M
Mike Marciniszyn 已提交
791 792 793 794
	struct hfi1_packet packet;

	init_packet(rcd, &packet);
	seq = rhf_rcv_seq(packet.rhf);
795 796
	if (seq != rcd->seq_cnt) {
		last = RCV_PKT_DONE;
M
Mike Marciniszyn 已提交
797
		goto bail;
798
	}
M
Mike Marciniszyn 已提交
799

800
	prescan_rxq(rcd, &packet);
M
Mike Marciniszyn 已提交
801

802 803
	while (last == RCV_PKT_OK) {
		last = process_rcv_packet(&packet, thread);
M
Mike Marciniszyn 已提交
804 805 806 807
		seq = rhf_rcv_seq(packet.rhf);
		if (++rcd->seq_cnt > 13)
			rcd->seq_cnt = 1;
		if (seq != rcd->seq_cnt)
808
			last = RCV_PKT_DONE;
M
Mike Marciniszyn 已提交
809 810
		process_rcv_update(last, &packet);
	}
811 812
	process_rcv_qp_work(rcd);
	rcd->head = packet.rhqoff;
M
Mike Marciniszyn 已提交
813 814
bail:
	finish_packet(&packet);
815
	return last;
M
Mike Marciniszyn 已提交
816 817
}

818
int handle_receive_interrupt_dma_rtail(struct hfi1_ctxtdata *rcd, int thread)
M
Mike Marciniszyn 已提交
819 820
{
	u32 hdrqtail;
821
	int last = RCV_PKT_OK;
M
Mike Marciniszyn 已提交
822 823 824 825
	struct hfi1_packet packet;

	init_packet(rcd, &packet);
	hdrqtail = get_rcvhdrtail(rcd);
826 827
	if (packet.rhqoff == hdrqtail) {
		last = RCV_PKT_DONE;
M
Mike Marciniszyn 已提交
828
		goto bail;
829
	}
M
Mike Marciniszyn 已提交
830 831
	smp_rmb();  /* prevent speculative reads of dma'ed hdrq */

832
	prescan_rxq(rcd, &packet);
M
Mike Marciniszyn 已提交
833

834 835
	while (last == RCV_PKT_OK) {
		last = process_rcv_packet(&packet, thread);
M
Mike Marciniszyn 已提交
836
		if (packet.rhqoff == hdrqtail)
837
			last = RCV_PKT_DONE;
M
Mike Marciniszyn 已提交
838 839
		process_rcv_update(last, &packet);
	}
840 841
	process_rcv_qp_work(rcd);
	rcd->head = packet.rhqoff;
M
Mike Marciniszyn 已提交
842 843
bail:
	finish_packet(&packet);
844
	return last;
M
Mike Marciniszyn 已提交
845 846
}

847
static inline void set_nodma_rtail(struct hfi1_devdata *dd, u16 ctxt)
M
Mike Marciniszyn 已提交
848
{
849
	struct hfi1_ctxtdata *rcd;
850
	u16 i;
M
Mike Marciniszyn 已提交
851

852 853 854 855 856 857
	/*
	 * For dynamically allocated kernel contexts (like vnic) switch
	 * interrupt handler only for that context. Otherwise, switch
	 * interrupt handler for all statically allocated kernel contexts.
	 */
	if (ctxt >= dd->first_dyn_alloc_ctxt) {
858 859 860 861 862 863
		rcd = hfi1_rcd_get_by_index(dd, ctxt);
		if (rcd) {
			rcd->do_interrupt =
				&handle_receive_interrupt_nodma_rtail;
			hfi1_rcd_put(rcd);
		}
864 865 866
		return;
	}

867 868 869 870 871 872 873
	for (i = HFI1_CTRL_CTXT + 1; i < dd->first_dyn_alloc_ctxt; i++) {
		rcd = hfi1_rcd_get_by_index(dd, i);
		if (rcd)
			rcd->do_interrupt =
				&handle_receive_interrupt_nodma_rtail;
		hfi1_rcd_put(rcd);
	}
M
Mike Marciniszyn 已提交
874 875
}

876
static inline void set_dma_rtail(struct hfi1_devdata *dd, u16 ctxt)
M
Mike Marciniszyn 已提交
877
{
878
	struct hfi1_ctxtdata *rcd;
879
	u16 i;
M
Mike Marciniszyn 已提交
880

881 882 883 884 885 886
	/*
	 * For dynamically allocated kernel contexts (like vnic) switch
	 * interrupt handler only for that context. Otherwise, switch
	 * interrupt handler for all statically allocated kernel contexts.
	 */
	if (ctxt >= dd->first_dyn_alloc_ctxt) {
887 888 889 890 891 892
		rcd = hfi1_rcd_get_by_index(dd, ctxt);
		if (rcd) {
			rcd->do_interrupt =
				&handle_receive_interrupt_dma_rtail;
			hfi1_rcd_put(rcd);
		}
893 894 895
		return;
	}

896 897 898 899 900 901 902
	for (i = HFI1_CTRL_CTXT + 1; i < dd->first_dyn_alloc_ctxt; i++) {
		rcd = hfi1_rcd_get_by_index(dd, i);
		if (rcd)
			rcd->do_interrupt =
				&handle_receive_interrupt_dma_rtail;
		hfi1_rcd_put(rcd);
	}
M
Mike Marciniszyn 已提交
903 904
}

905 906
void set_all_slowpath(struct hfi1_devdata *dd)
{
907
	struct hfi1_ctxtdata *rcd;
908
	u16 i;
909 910

	/* HFI1_CTRL_CTXT must always use the slow path interrupt handler */
911
	for (i = HFI1_CTRL_CTXT + 1; i < dd->num_rcv_contexts; i++) {
912 913 914
		rcd = hfi1_rcd_get_by_index(dd, i);
		if (!rcd)
			continue;
915
		if ((i < dd->first_dyn_alloc_ctxt) ||
916
		    (rcd->sc && (rcd->sc->type == SC_KERNEL))) {
917
			rcd->do_interrupt = &handle_receive_interrupt;
918 919
		}
		hfi1_rcd_put(rcd);
920
	}
921 922 923
}

static inline int set_armed_to_active(struct hfi1_ctxtdata *rcd,
924
				      struct hfi1_packet *packet,
925 926 927
				      struct hfi1_devdata *dd)
{
	struct work_struct *lsaw = &rcd->ppd->linkstate_active_work;
928
	u8 etype = rhf_rcv_type(packet->rhf);
929
	u8 sc = SC15_PACKET;
930

931 932 933 934
	if (etype == RHF_RCV_TYPE_IB) {
		struct ib_header *hdr = hfi1_get_msgheader(packet->rcd->dd,
							   packet->rhf_addr);
		sc = hfi1_9B_get_sc5(hdr, packet->rhf);
935 936 937 938 939
	} else if (etype == RHF_RCV_TYPE_BYPASS) {
		struct hfi1_16b_header *hdr = hfi1_get_16B_header(
						packet->rcd->dd,
						packet->rhf_addr);
		sc = hfi1_16B_get_sc(hdr);
940 941
	}
	if (sc != SC15_PACKET) {
942
		int hwstate = driver_lstate(rcd->ppd);
943

944 945 946 947
		if (hwstate != IB_PORT_ACTIVE) {
			dd_dev_info(dd,
				    "Unexpected link state %s\n",
				    opa_lstate_name(hwstate));
948 949 950
			return 0;
		}

951
		queue_work(rcd->ppd->link_wq, lsaw);
952 953 954 955 956
		return 1;
	}
	return 0;
}

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Mike Marciniszyn 已提交
957 958 959 960 961 962 963
/*
 * handle_receive_interrupt - receive a packet
 * @rcd: the context
 *
 * Called from interrupt handler for errors or receive interrupt.
 * This is the slow path interrupt handler.
 */
964
int handle_receive_interrupt(struct hfi1_ctxtdata *rcd, int thread)
M
Mike Marciniszyn 已提交
965 966 967
{
	struct hfi1_devdata *dd = rcd->dd;
	u32 hdrqtail;
968
	int needset, last = RCV_PKT_OK;
M
Mike Marciniszyn 已提交
969
	struct hfi1_packet packet;
970 971 972 973
	int skip_pkt = 0;

	/* Control context will always use the slow path interrupt handler */
	needset = (rcd->ctxt == HFI1_CTRL_CTXT) ? 0 : 1;
M
Mike Marciniszyn 已提交
974 975 976

	init_packet(rcd, &packet);

977
	if (!HFI1_CAP_KGET_MASK(rcd->flags, DMA_RTAIL)) {
M
Mike Marciniszyn 已提交
978 979
		u32 seq = rhf_rcv_seq(packet.rhf);

980 981
		if (seq != rcd->seq_cnt) {
			last = RCV_PKT_DONE;
M
Mike Marciniszyn 已提交
982
			goto bail;
983
		}
M
Mike Marciniszyn 已提交
984 985 986
		hdrqtail = 0;
	} else {
		hdrqtail = get_rcvhdrtail(rcd);
987 988
		if (packet.rhqoff == hdrqtail) {
			last = RCV_PKT_DONE;
M
Mike Marciniszyn 已提交
989
			goto bail;
990
		}
M
Mike Marciniszyn 已提交
991
		smp_rmb();  /* prevent speculative reads of dma'ed hdrq */
992 993 994 995 996 997 998 999 1000 1001 1002

		/*
		 * Control context can potentially receive an invalid
		 * rhf. Drop such packets.
		 */
		if (rcd->ctxt == HFI1_CTRL_CTXT) {
			u32 seq = rhf_rcv_seq(packet.rhf);

			if (seq != rcd->seq_cnt)
				skip_pkt = 1;
		}
M
Mike Marciniszyn 已提交
1003 1004
	}

1005
	prescan_rxq(rcd, &packet);
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Mike Marciniszyn 已提交
1006

1007
	while (last == RCV_PKT_OK) {
1008 1009 1010
		if (unlikely(dd->do_drop &&
			     atomic_xchg(&dd->drop_packet, DROP_PACKET_OFF) ==
			     DROP_PACKET_ON)) {
M
Mike Marciniszyn 已提交
1011 1012 1013 1014
			dd->do_drop = 0;

			/* On to the next packet */
			packet.rhqoff += packet.rsize;
1015
			packet.rhf_addr = (__le32 *)rcd->rcvhdrq +
M
Mike Marciniszyn 已提交
1016 1017 1018 1019
					  packet.rhqoff +
					  dd->rhf_offset;
			packet.rhf = rhf_to_cpu(packet.rhf_addr);

1020 1021 1022
		} else if (skip_pkt) {
			last = skip_rcv_packet(&packet, thread);
			skip_pkt = 0;
M
Mike Marciniszyn 已提交
1023
		} else {
1024 1025 1026
			/* Auto activate link on non-SC15 packet receive */
			if (unlikely(rcd->ppd->host_link_state ==
				     HLS_UP_ARMED) &&
1027
			    set_armed_to_active(rcd, &packet, dd))
1028
				goto bail;
1029
			last = process_rcv_packet(&packet, thread);
M
Mike Marciniszyn 已提交
1030 1031
		}

1032
		if (!HFI1_CAP_KGET_MASK(rcd->flags, DMA_RTAIL)) {
M
Mike Marciniszyn 已提交
1033 1034 1035 1036 1037
			u32 seq = rhf_rcv_seq(packet.rhf);

			if (++rcd->seq_cnt > 13)
				rcd->seq_cnt = 1;
			if (seq != rcd->seq_cnt)
1038
				last = RCV_PKT_DONE;
M
Mike Marciniszyn 已提交
1039
			if (needset) {
1040
				dd_dev_info(dd, "Switching to NO_DMA_RTAIL\n");
1041
				set_nodma_rtail(dd, rcd->ctxt);
M
Mike Marciniszyn 已提交
1042 1043 1044 1045
				needset = 0;
			}
		} else {
			if (packet.rhqoff == hdrqtail)
1046
				last = RCV_PKT_DONE;
1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059
			/*
			 * Control context can potentially receive an invalid
			 * rhf. Drop such packets.
			 */
			if (rcd->ctxt == HFI1_CTRL_CTXT) {
				u32 seq = rhf_rcv_seq(packet.rhf);

				if (++rcd->seq_cnt > 13)
					rcd->seq_cnt = 1;
				if (!last && (seq != rcd->seq_cnt))
					skip_pkt = 1;
			}

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1060 1061 1062
			if (needset) {
				dd_dev_info(dd,
					    "Switching to DMA_RTAIL\n");
1063
				set_dma_rtail(dd, rcd->ctxt);
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Mike Marciniszyn 已提交
1064 1065 1066 1067 1068 1069 1070
				needset = 0;
			}
		}

		process_rcv_update(last, &packet);
	}

1071 1072
	process_rcv_qp_work(rcd);
	rcd->head = packet.rhqoff;
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1073 1074 1075 1076 1077 1078 1079

bail:
	/*
	 * Always write head at end, and setup rcv interrupt, even
	 * if no packets were processed.
	 */
	finish_packet(&packet);
1080
	return last;
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1081 1082
}

1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104
/*
 * We may discover in the interrupt that the hardware link state has
 * changed from ARMED to ACTIVE (due to the arrival of a non-SC15 packet),
 * and we need to update the driver's notion of the link state.  We cannot
 * run set_link_state from interrupt context, so we queue this function on
 * a workqueue.
 *
 * We delay the regular interrupt processing until after the state changes
 * so that the link will be in the correct state by the time any application
 * we wake up attempts to send a reply to any message it received.
 * (Subsequent receive interrupts may possibly force the wakeup before we
 * update the link state.)
 *
 * The rcd is freed in hfi1_free_ctxtdata after hfi1_postinit_cleanup invokes
 * dd->f_cleanup(dd) to disable the interrupt handler and flush workqueues,
 * so we're safe from use-after-free of the rcd.
 */
void receive_interrupt_work(struct work_struct *work)
{
	struct hfi1_pportdata *ppd = container_of(work, struct hfi1_pportdata,
						  linkstate_active_work);
	struct hfi1_devdata *dd = ppd->dd;
1105
	struct hfi1_ctxtdata *rcd;
1106
	u16 i;
1107 1108 1109 1110 1111 1112

	/* Received non-SC15 packet implies neighbor_normal */
	ppd->neighbor_normal = 1;
	set_link_state(ppd, HLS_UP_ACTIVE);

	/*
1113 1114
	 * Interrupt all statically allocated kernel contexts that could
	 * have had an interrupt during auto activation.
1115
	 */
1116 1117 1118 1119 1120 1121
	for (i = HFI1_CTRL_CTXT; i < dd->first_dyn_alloc_ctxt; i++) {
		rcd = hfi1_rcd_get_by_index(dd, i);
		if (rcd)
			force_recv_intr(rcd);
		hfi1_rcd_put(rcd);
	}
1122 1123
}

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1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177
/*
 * Convert a given MTU size to the on-wire MAD packet enumeration.
 * Return -1 if the size is invalid.
 */
int mtu_to_enum(u32 mtu, int default_if_bad)
{
	switch (mtu) {
	case     0: return OPA_MTU_0;
	case   256: return OPA_MTU_256;
	case   512: return OPA_MTU_512;
	case  1024: return OPA_MTU_1024;
	case  2048: return OPA_MTU_2048;
	case  4096: return OPA_MTU_4096;
	case  8192: return OPA_MTU_8192;
	case 10240: return OPA_MTU_10240;
	}
	return default_if_bad;
}

u16 enum_to_mtu(int mtu)
{
	switch (mtu) {
	case OPA_MTU_0:     return 0;
	case OPA_MTU_256:   return 256;
	case OPA_MTU_512:   return 512;
	case OPA_MTU_1024:  return 1024;
	case OPA_MTU_2048:  return 2048;
	case OPA_MTU_4096:  return 4096;
	case OPA_MTU_8192:  return 8192;
	case OPA_MTU_10240: return 10240;
	default: return 0xffff;
	}
}

/*
 * set_mtu - set the MTU
 * @ppd: the per port data
 *
 * We can handle "any" incoming size, the issue here is whether we
 * need to restrict our outgoing size.  We do not deal with what happens
 * to programs that are already running when the size changes.
 */
int set_mtu(struct hfi1_pportdata *ppd)
{
	struct hfi1_devdata *dd = ppd->dd;
	int i, drain, ret = 0, is_up = 0;

	ppd->ibmtu = 0;
	for (i = 0; i < ppd->vls_supported; i++)
		if (ppd->ibmtu < dd->vld[i].mtu)
			ppd->ibmtu = dd->vld[i].mtu;
	ppd->ibmaxlen = ppd->ibmtu + lrh_max_header_bytes(ppd->dd);

	mutex_lock(&ppd->hls_lock);
1178 1179 1180
	if (ppd->host_link_state == HLS_UP_INIT ||
	    ppd->host_link_state == HLS_UP_ARMED ||
	    ppd->host_link_state == HLS_UP_ACTIVE)
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Mike Marciniszyn 已提交
1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217
		is_up = 1;

	drain = !is_ax(dd) && is_up;

	if (drain)
		/*
		 * MTU is specified per-VL. To ensure that no packet gets
		 * stuck (due, e.g., to the MTU for the packet's VL being
		 * reduced), empty the per-VL FIFOs before adjusting MTU.
		 */
		ret = stop_drain_data_vls(dd);

	if (ret) {
		dd_dev_err(dd, "%s: cannot stop/drain VLs - refusing to change per-VL MTUs\n",
			   __func__);
		goto err;
	}

	hfi1_set_ib_cfg(ppd, HFI1_IB_CFG_MTU, 0);

	if (drain)
		open_fill_data_vls(dd); /* reopen all VLs */

err:
	mutex_unlock(&ppd->hls_lock);

	return ret;
}

int hfi1_set_lid(struct hfi1_pportdata *ppd, u32 lid, u8 lmc)
{
	struct hfi1_devdata *dd = ppd->dd;

	ppd->lid = lid;
	ppd->lmc = lmc;
	hfi1_set_ib_cfg(ppd, HFI1_IB_CFG_LIDLMC, 0);

1218
	dd_dev_info(dd, "port %u: got a lid: 0x%x\n", ppd->port, lid);
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Mike Marciniszyn 已提交
1219 1220 1221 1222

	return 0;
}

1223 1224 1225 1226
void shutdown_led_override(struct hfi1_pportdata *ppd)
{
	struct hfi1_devdata *dd = ppd->dd;

1227
	/*
1228 1229 1230
	 * This pairs with the memory barrier in hfi1_start_led_override to
	 * ensure that we read the correct state of LED beaconing represented
	 * by led_override_timer_active
1231
	 */
1232
	smp_rmb();
1233 1234 1235
	if (atomic_read(&ppd->led_override_timer_active)) {
		del_timer_sync(&ppd->led_override_timer);
		atomic_set(&ppd->led_override_timer_active, 0);
1236 1237
		/* Ensure the atomic_set is visible to all CPUs */
		smp_wmb();
1238 1239
	}

1240 1241
	/* Hand control of the LED to the DC for normal operation */
	write_csr(dd, DCC_CFG_LED_CNTRL, 0);
1242
}
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1243 1244 1245 1246 1247

static void run_led_override(unsigned long opaque)
{
	struct hfi1_pportdata *ppd = (struct hfi1_pportdata *)opaque;
	struct hfi1_devdata *dd = ppd->dd;
1248 1249
	unsigned long timeout;
	int phase_idx;
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Mike Marciniszyn 已提交
1250 1251 1252 1253

	if (!(dd->flags & HFI1_INITTED))
		return;

1254
	phase_idx = ppd->led_override_phase & 1;
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Mike Marciniszyn 已提交
1255

1256 1257 1258
	setextled(dd, phase_idx);

	timeout = ppd->led_override_vals[phase_idx];
1259

1260 1261
	/* Set up for next phase */
	ppd->led_override_phase = !ppd->led_override_phase;
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Mike Marciniszyn 已提交
1262

1263
	mod_timer(&ppd->led_override_timer, jiffies + timeout);
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1264 1265
}

1266 1267
/*
 * To have the LED blink in a particular pattern, provide timeon and timeoff
1268 1269 1270
 * in milliseconds.
 * To turn off custom blinking and return to normal operation, use
 * shutdown_led_override()
1271
 */
1272 1273
void hfi1_start_led_override(struct hfi1_pportdata *ppd, unsigned int timeon,
			     unsigned int timeoff)
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Mike Marciniszyn 已提交
1274
{
1275
	if (!(ppd->dd->flags & HFI1_INITTED))
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1276 1277
		return;

1278 1279 1280
	/* Convert to jiffies for direct use in timer */
	ppd->led_override_vals[0] = msecs_to_jiffies(timeoff);
	ppd->led_override_vals[1] = msecs_to_jiffies(timeon);
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1281

1282 1283
	/* Arbitrarily start from LED on phase */
	ppd->led_override_phase = 1;
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1284 1285 1286

	/*
	 * If the timer has not already been started, do so. Use a "quick"
1287
	 * timeout so the handler will be called soon to look at our request.
M
Mike Marciniszyn 已提交
1288
	 */
1289
	if (!timer_pending(&ppd->led_override_timer)) {
1290
		setup_timer(&ppd->led_override_timer, run_led_override,
1291
			    (unsigned long)ppd);
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1292 1293
		ppd->led_override_timer.expires = jiffies + 1;
		add_timer(&ppd->led_override_timer);
1294 1295 1296
		atomic_set(&ppd->led_override_timer_active, 1);
		/* Ensure the atomic_set is visible to all CPUs */
		smp_wmb();
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1297 1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309 1310
	}
}

/**
 * hfi1_reset_device - reset the chip if possible
 * @unit: the device to reset
 *
 * Whether or not reset is successful, we attempt to re-initialize the chip
 * (that is, much like a driver unload/reload).  We clear the INITTED flag
 * so that the various entry points will fail until we reinitialize.  For
 * now, we only allow this if no user contexts are open that use chip resources
 */
int hfi1_reset_device(int unit)
{
1311
	int ret;
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1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322
	struct hfi1_devdata *dd = hfi1_lookup(unit);
	struct hfi1_pportdata *ppd;
	int pidx;

	if (!dd) {
		ret = -ENODEV;
		goto bail;
	}

	dd_dev_info(dd, "Reset on unit %u requested\n", unit);

1323
	if (!dd->kregbase1 || !(dd->flags & HFI1_PRESENT)) {
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Mike Marciniszyn 已提交
1324
		dd_dev_info(dd,
1325 1326
			    "Invalid unit number %u or not initialized or not present\n",
			    unit);
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1327 1328 1329 1330
		ret = -ENXIO;
		goto bail;
	}

1331 1332
	/* If there are any user/vnic contexts, we cannot reset */
	mutex_lock(&hfi1_mutex);
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Mike Marciniszyn 已提交
1333
	if (dd->rcd)
1334 1335
		if (hfi1_stats.sps_ctxts) {
			mutex_unlock(&hfi1_mutex);
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1336 1337 1338
			ret = -EBUSY;
			goto bail;
		}
1339
	mutex_unlock(&hfi1_mutex);
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Mike Marciniszyn 已提交
1340 1341 1342 1343

	for (pidx = 0; pidx < dd->num_pports; ++pidx) {
		ppd = dd->pport + pidx;

1344
		shutdown_led_override(ppd);
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1345 1346 1347 1348 1349 1350 1351 1352 1353 1354
	}
	if (dd->flags & HFI1_HAS_SEND_DMA)
		sdma_exit(dd);

	hfi1_reset_cpu_counters(dd);

	ret = hfi1_init(dd, 1);

	if (ret)
		dd_dev_err(dd,
1355 1356
			   "Reinitialize unit %u after reset failed with %d\n",
			   unit, ret);
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	else
		dd_dev_info(dd, "Reinitialized unit %u after resetting\n",
1359
			    unit);
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1360 1361 1362 1363 1364

bail:
	return ret;
}

1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400
static inline void hfi1_setup_ib_header(struct hfi1_packet *packet)
{
	packet->hdr = (struct hfi1_ib_message_header *)
			hfi1_get_msgheader(packet->rcd->dd,
					   packet->rhf_addr);
	packet->hlen = (u8 *)packet->rhf_addr - (u8 *)packet->hdr;
}

static int hfi1_setup_9B_packet(struct hfi1_packet *packet)
{
	struct hfi1_ibport *ibp = rcd_to_iport(packet->rcd);
	struct ib_header *hdr;
	u8 lnh;

	hfi1_setup_ib_header(packet);
	hdr = packet->hdr;

	lnh = ib_get_lnh(hdr);
	if (lnh == HFI1_LRH_BTH) {
		packet->ohdr = &hdr->u.oth;
		packet->grh = NULL;
	} else if (lnh == HFI1_LRH_GRH) {
		u32 vtf;

		packet->ohdr = &hdr->u.l.oth;
		packet->grh = &hdr->u.l.grh;
		if (packet->grh->next_hdr != IB_GRH_NEXT_HDR)
			goto drop;
		vtf = be32_to_cpu(packet->grh->version_tclass_flow);
		if ((vtf >> IB_GRH_VERSION_SHIFT) != IB_GRH_VERSION)
			goto drop;
	} else {
		goto drop;
	}

	/* Query commonly used fields from packet header */
1401
	packet->payload = packet->ebuf;
1402 1403 1404
	packet->opcode = ib_bth_get_opcode(packet->ohdr);
	packet->slid = ib_get_slid(hdr);
	packet->dlid = ib_get_dlid(hdr);
1405 1406 1407 1408
	if (unlikely((packet->dlid >= be16_to_cpu(IB_MULTICAST_LID_BASE)) &&
		     (packet->dlid != be16_to_cpu(IB_LID_PERMISSIVE))))
		packet->dlid += opa_get_mcast_base(OPA_MCAST_NR) -
				be16_to_cpu(IB_MULTICAST_LID_BASE);
1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421
	packet->sl = ib_get_sl(hdr);
	packet->sc = hfi1_9B_get_sc5(hdr, packet->rhf);
	packet->pad = ib_bth_get_pad(packet->ohdr);
	packet->extra_byte = 0;
	packet->fecn = ib_bth_get_fecn(packet->ohdr);
	packet->becn = ib_bth_get_becn(packet->ohdr);

	return 0;
drop:
	ibp->rvp.n_pkt_drops++;
	return -EINVAL;
}

1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488
static int hfi1_setup_bypass_packet(struct hfi1_packet *packet)
{
	/*
	 * Bypass packets have a different header/payload split
	 * compared to an IB packet.
	 * Current split is set such that 16 bytes of the actual
	 * header is in the header buffer and the remining is in
	 * the eager buffer. We chose 16 since hfi1 driver only
	 * supports 16B bypass packets and we will be able to
	 * receive the entire LRH with such a split.
	 */

	struct hfi1_ctxtdata *rcd = packet->rcd;
	struct hfi1_pportdata *ppd = rcd->ppd;
	struct hfi1_ibport *ibp = &ppd->ibport_data;
	u8 l4;
	u8 grh_len;

	packet->hdr = (struct hfi1_16b_header *)
			hfi1_get_16B_header(packet->rcd->dd,
					    packet->rhf_addr);
	packet->hlen = (u8 *)packet->rhf_addr - (u8 *)packet->hdr;

	l4 = hfi1_16B_get_l4(packet->hdr);
	if (l4 == OPA_16B_L4_IB_LOCAL) {
		grh_len = 0;
		packet->ohdr = packet->ebuf;
		packet->grh = NULL;
	} else if (l4 == OPA_16B_L4_IB_GLOBAL) {
		u32 vtf;

		grh_len = sizeof(struct ib_grh);
		packet->ohdr = packet->ebuf + grh_len;
		packet->grh = packet->ebuf;
		if (packet->grh->next_hdr != IB_GRH_NEXT_HDR)
			goto drop;
		vtf = be32_to_cpu(packet->grh->version_tclass_flow);
		if ((vtf >> IB_GRH_VERSION_SHIFT) != IB_GRH_VERSION)
			goto drop;
	} else {
		goto drop;
	}

	/* Query commonly used fields from packet header */
	packet->opcode = ib_bth_get_opcode(packet->ohdr);
	packet->hlen = hdr_len_by_opcode[packet->opcode] + 8 + grh_len;
	packet->payload = packet->ebuf + packet->hlen - (4 * sizeof(u32));
	packet->slid = hfi1_16B_get_slid(packet->hdr);
	packet->dlid = hfi1_16B_get_dlid(packet->hdr);
	if (unlikely(hfi1_is_16B_mcast(packet->dlid)))
		packet->dlid += opa_get_mcast_base(OPA_MCAST_NR) -
				opa_get_lid(opa_get_mcast_base(OPA_MCAST_NR),
					    16B);
	packet->sc = hfi1_16B_get_sc(packet->hdr);
	packet->sl = ibp->sc_to_sl[packet->sc];
	packet->pad = hfi1_16B_bth_get_pad(packet->ohdr);
	packet->extra_byte = SIZE_OF_LT;
	packet->fecn = hfi1_16B_get_fecn(packet->hdr);
	packet->becn = hfi1_16B_get_becn(packet->hdr);

	return 0;
drop:
	hfi1_cdbg(PKT, "%s: packet dropped\n", __func__);
	ibp->rvp.n_pkt_drops++;
	return -EINVAL;
}

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1489 1490 1491 1492 1493 1494
void handle_eflags(struct hfi1_packet *packet)
{
	struct hfi1_ctxtdata *rcd = packet->rcd;
	u32 rte = rhf_rcv_type_err(packet->rhf);

	rcv_hdrerr(rcd, rcd->ppd, packet);
1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507
	if (rhf_err_flags(packet->rhf))
		dd_dev_err(rcd->dd,
			   "receive context %d: rhf 0x%016llx, errs [ %s%s%s%s%s%s%s%s] rte 0x%x\n",
			   rcd->ctxt, packet->rhf,
			   packet->rhf & RHF_K_HDR_LEN_ERR ? "k_hdr_len " : "",
			   packet->rhf & RHF_DC_UNC_ERR ? "dc_unc " : "",
			   packet->rhf & RHF_DC_ERR ? "dc " : "",
			   packet->rhf & RHF_TID_ERR ? "tid " : "",
			   packet->rhf & RHF_LEN_ERR ? "len " : "",
			   packet->rhf & RHF_ECC_ERR ? "ecc " : "",
			   packet->rhf & RHF_VCRC_ERR ? "vcrc " : "",
			   packet->rhf & RHF_ICRC_ERR ? "icrc " : "",
			   rte);
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1508 1509 1510 1511 1512 1513 1514 1515
}

/*
 * The following functions are called by the interrupt handler. They are type
 * specific handlers for each packet type.
 */
int process_receive_ib(struct hfi1_packet *packet)
{
1516 1517 1518
	if (unlikely(hfi1_dbg_fault_packet(packet)))
		return RHF_RCV_CONTINUE;

1519 1520 1521
	if (hfi1_setup_9B_packet(packet))
		return RHF_RCV_CONTINUE;

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Mike Marciniszyn 已提交
1522 1523 1524 1525 1526 1527 1528 1529 1530
	trace_hfi1_rcvhdr(packet->rcd->ppd->dd,
			  packet->rcd->ctxt,
			  rhf_err_flags(packet->rhf),
			  RHF_RCV_TYPE_IB,
			  packet->hlen,
			  packet->tlen,
			  packet->updegr,
			  rhf_egr_index(packet->rhf));

1531 1532 1533 1534 1535
	if (unlikely(
		 (hfi1_dbg_fault_suppress_err(&packet->rcd->dd->verbs_dev) &&
		 (packet->rhf & RHF_DC_ERR))))
		return RHF_RCV_CONTINUE;

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Mike Marciniszyn 已提交
1536 1537 1538 1539 1540 1541 1542 1543 1544
	if (unlikely(rhf_err_flags(packet->rhf))) {
		handle_eflags(packet);
		return RHF_RCV_CONTINUE;
	}

	hfi1_ib_rcv(packet);
	return RHF_RCV_CONTINUE;
}

1545 1546 1547 1548 1549 1550
static inline bool hfi1_is_vnic_packet(struct hfi1_packet *packet)
{
	/* Packet received in VNIC context via RSM */
	if (packet->rcd->is_vnic)
		return true;

1551 1552
	if ((hfi1_16B_get_l2(packet->ebuf) == OPA_16B_L2_TYPE) &&
	    (hfi1_16B_get_l4(packet->ebuf) == OPA_16B_L4_ETHR))
1553 1554 1555 1556 1557
		return true;

	return false;
}

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1558 1559
int process_receive_bypass(struct hfi1_packet *packet)
{
1560 1561
	struct hfi1_devdata *dd = packet->rcd->dd;

1562
	if (hfi1_is_vnic_packet(packet)) {
1563 1564 1565
		hfi1_vnic_bypass_rcv(packet);
		return RHF_RCV_CONTINUE;
	}
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1566

1567 1568 1569 1570 1571 1572 1573
	if (hfi1_setup_bypass_packet(packet))
		return RHF_RCV_CONTINUE;

	if (unlikely(rhf_err_flags(packet->rhf))) {
		handle_eflags(packet);
		return RHF_RCV_CONTINUE;
	}
1574

1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592
	if (hfi1_16B_get_l2(packet->hdr) == 0x2) {
		hfi1_16B_rcv(packet);
	} else {
		dd_dev_err(dd,
			   "Bypass packets other than 16B are not supported in normal operation. Dropping\n");
		incr_cntr64(&dd->sw_rcv_bypass_packet_errors);
		if (!(dd->err_info_rcvport.status_and_code &
		      OPA_EI_STATUS_SMASK)) {
			u64 *flits = packet->ebuf;

			if (flits && !(packet->rhf & RHF_LEN_ERR)) {
				dd->err_info_rcvport.packet_flit1 = flits[0];
				dd->err_info_rcvport.packet_flit2 =
					packet->tlen > sizeof(flits[0]) ?
					flits[1] : 0;
			}
			dd->err_info_rcvport.status_and_code |=
				(OPA_EI_STATUS_SMASK | BAD_L2_ERR);
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		}
	}
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	return RHF_RCV_CONTINUE;
}

int process_receive_error(struct hfi1_packet *packet)
{
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	/* KHdrHCRCErr -- KDETH packet with a bad HCRC */
	if (unlikely(
		 hfi1_dbg_fault_suppress_err(&packet->rcd->dd->verbs_dev) &&
		 rhf_rcv_type_err(packet->rhf) == 3))
		return RHF_RCV_CONTINUE;

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	hfi1_setup_ib_header(packet);
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	handle_eflags(packet);

	if (unlikely(rhf_err_flags(packet->rhf)))
		dd_dev_err(packet->rcd->dd,
			   "Unhandled error packet received. Dropping.\n");

	return RHF_RCV_CONTINUE;
}

int kdeth_process_expected(struct hfi1_packet *packet)
{
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	if (unlikely(hfi1_dbg_fault_packet(packet)))
		return RHF_RCV_CONTINUE;
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	hfi1_setup_ib_header(packet);
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	if (unlikely(rhf_err_flags(packet->rhf)))
		handle_eflags(packet);

	dd_dev_err(packet->rcd->dd,
		   "Unhandled expected packet received. Dropping.\n");
	return RHF_RCV_CONTINUE;
}

int kdeth_process_eager(struct hfi1_packet *packet)
{
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	hfi1_setup_ib_header(packet);
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	if (unlikely(rhf_err_flags(packet->rhf)))
		handle_eflags(packet);
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	if (unlikely(hfi1_dbg_fault_packet(packet)))
		return RHF_RCV_CONTINUE;
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	dd_dev_err(packet->rcd->dd,
		   "Unhandled eager packet received. Dropping.\n");
	return RHF_RCV_CONTINUE;
}

int process_receive_invalid(struct hfi1_packet *packet)
{
	dd_dev_err(packet->rcd->dd, "Invalid packet type %d. Dropping\n",
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		   rhf_rcv_type(packet->rhf));
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	return RHF_RCV_CONTINUE;
}