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ix_txrx.c revision 1.37
      1  1.37  knakahar /* $NetBSD: ix_txrx.c,v 1.37 2018/03/30 03:58:20 knakahara Exp $ */
      2  1.28   msaitoh 
      3   1.1   msaitoh /******************************************************************************
      4   1.1   msaitoh 
      5  1.28   msaitoh   Copyright (c) 2001-2017, Intel Corporation
      6   1.1   msaitoh   All rights reserved.
      7  1.28   msaitoh 
      8  1.28   msaitoh   Redistribution and use in source and binary forms, with or without
      9   1.1   msaitoh   modification, are permitted provided that the following conditions are met:
     10  1.28   msaitoh 
     11  1.28   msaitoh    1. Redistributions of source code must retain the above copyright notice,
     12   1.1   msaitoh       this list of conditions and the following disclaimer.
     13  1.28   msaitoh 
     14  1.28   msaitoh    2. Redistributions in binary form must reproduce the above copyright
     15  1.28   msaitoh       notice, this list of conditions and the following disclaimer in the
     16   1.1   msaitoh       documentation and/or other materials provided with the distribution.
     17  1.28   msaitoh 
     18  1.28   msaitoh    3. Neither the name of the Intel Corporation nor the names of its
     19  1.28   msaitoh       contributors may be used to endorse or promote products derived from
     20   1.1   msaitoh       this software without specific prior written permission.
     21  1.28   msaitoh 
     22   1.1   msaitoh   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
     23  1.28   msaitoh   AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     24  1.28   msaitoh   IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     25  1.28   msaitoh   ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
     26  1.28   msaitoh   LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     27  1.28   msaitoh   CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     28  1.28   msaitoh   SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     29  1.28   msaitoh   INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     30  1.28   msaitoh   CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     31   1.1   msaitoh   ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     32   1.1   msaitoh   POSSIBILITY OF SUCH DAMAGE.
     33   1.1   msaitoh 
     34   1.1   msaitoh ******************************************************************************/
     35  1.28   msaitoh /*$FreeBSD: head/sys/dev/ixgbe/ix_txrx.c 321476 2017-07-25 14:38:30Z sbruno $*/
     36  1.28   msaitoh 
     37   1.1   msaitoh /*
     38   1.1   msaitoh  * Copyright (c) 2011 The NetBSD Foundation, Inc.
     39   1.1   msaitoh  * All rights reserved.
     40   1.1   msaitoh  *
     41   1.1   msaitoh  * This code is derived from software contributed to The NetBSD Foundation
     42   1.1   msaitoh  * by Coyote Point Systems, Inc.
     43   1.1   msaitoh  *
     44   1.1   msaitoh  * Redistribution and use in source and binary forms, with or without
     45   1.1   msaitoh  * modification, are permitted provided that the following conditions
     46   1.1   msaitoh  * are met:
     47   1.1   msaitoh  * 1. Redistributions of source code must retain the above copyright
     48   1.1   msaitoh  *    notice, this list of conditions and the following disclaimer.
     49   1.1   msaitoh  * 2. Redistributions in binary form must reproduce the above copyright
     50   1.1   msaitoh  *    notice, this list of conditions and the following disclaimer in the
     51   1.1   msaitoh  *    documentation and/or other materials provided with the distribution.
     52   1.1   msaitoh  *
     53   1.1   msaitoh  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     54   1.1   msaitoh  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     55   1.1   msaitoh  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     56   1.1   msaitoh  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     57   1.1   msaitoh  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     58   1.1   msaitoh  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     59   1.1   msaitoh  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     60   1.1   msaitoh  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     61   1.1   msaitoh  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     62   1.1   msaitoh  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     63   1.1   msaitoh  * POSSIBILITY OF SUCH DAMAGE.
     64   1.1   msaitoh  */
     65   1.1   msaitoh 
     66   1.8   msaitoh #include "opt_inet.h"
     67   1.8   msaitoh #include "opt_inet6.h"
     68   1.8   msaitoh 
     69   1.1   msaitoh #include "ixgbe.h"
     70   1.1   msaitoh 
     71   1.1   msaitoh /*
     72  1.28   msaitoh  * HW RSC control:
     73  1.28   msaitoh  *  this feature only works with
     74  1.28   msaitoh  *  IPv4, and only on 82599 and later.
     75  1.28   msaitoh  *  Also this will cause IP forwarding to
     76  1.28   msaitoh  *  fail and that can't be controlled by
     77  1.28   msaitoh  *  the stack as LRO can. For all these
     78  1.28   msaitoh  *  reasons I've deemed it best to leave
     79  1.28   msaitoh  *  this off and not bother with a tuneable
     80  1.28   msaitoh  *  interface, this would need to be compiled
     81  1.28   msaitoh  *  to enable.
     82  1.28   msaitoh  */
     83   1.1   msaitoh static bool ixgbe_rsc_enable = FALSE;
     84   1.1   msaitoh 
     85   1.3   msaitoh /*
     86  1.28   msaitoh  * For Flow Director: this is the
     87  1.28   msaitoh  * number of TX packets we sample
     88  1.28   msaitoh  * for the filter pool, this means
     89  1.28   msaitoh  * every 20th packet will be probed.
     90  1.28   msaitoh  *
     91  1.28   msaitoh  * This feature can be disabled by
     92  1.28   msaitoh  * setting this to 0.
     93  1.28   msaitoh  */
     94   1.3   msaitoh static int atr_sample_rate = 20;
     95   1.3   msaitoh 
     96  1.28   msaitoh /************************************************************************
     97   1.3   msaitoh  *  Local Function prototypes
     98  1.28   msaitoh  ************************************************************************/
     99  1.28   msaitoh static void          ixgbe_setup_transmit_ring(struct tx_ring *);
    100  1.28   msaitoh static void          ixgbe_free_transmit_buffers(struct tx_ring *);
    101  1.28   msaitoh static int           ixgbe_setup_receive_ring(struct rx_ring *);
    102  1.28   msaitoh static void          ixgbe_free_receive_buffers(struct rx_ring *);
    103  1.28   msaitoh static void          ixgbe_rx_checksum(u32, struct mbuf *, u32,
    104  1.28   msaitoh                                        struct ixgbe_hw_stats *);
    105  1.28   msaitoh static void          ixgbe_refresh_mbufs(struct rx_ring *, int);
    106  1.28   msaitoh static int           ixgbe_xmit(struct tx_ring *, struct mbuf *);
    107  1.28   msaitoh static int           ixgbe_tx_ctx_setup(struct tx_ring *,
    108  1.28   msaitoh                                         struct mbuf *, u32 *, u32 *);
    109  1.28   msaitoh static int           ixgbe_tso_setup(struct tx_ring *,
    110  1.28   msaitoh                                      struct mbuf *, u32 *, u32 *);
    111   1.1   msaitoh static __inline void ixgbe_rx_discard(struct rx_ring *, int);
    112   1.1   msaitoh static __inline void ixgbe_rx_input(struct rx_ring *, struct ifnet *,
    113  1.28   msaitoh                                     struct mbuf *, u32);
    114  1.28   msaitoh static int           ixgbe_dma_malloc(struct adapter *, bus_size_t,
    115  1.28   msaitoh                                       struct ixgbe_dma_alloc *, int);
    116  1.28   msaitoh static void          ixgbe_dma_free(struct adapter *, struct ixgbe_dma_alloc *);
    117   1.1   msaitoh 
    118   1.1   msaitoh static void	ixgbe_setup_hw_rsc(struct rx_ring *);
    119   1.1   msaitoh 
    120  1.28   msaitoh /************************************************************************
    121  1.28   msaitoh  * ixgbe_legacy_start_locked - Transmit entry point
    122   1.1   msaitoh  *
    123  1.28   msaitoh  *   Called by the stack to initiate a transmit.
    124  1.28   msaitoh  *   The driver will remain in this routine as long as there are
    125  1.28   msaitoh  *   packets to transmit and transmit resources are available.
    126  1.28   msaitoh  *   In case resources are not available, the stack is notified
    127  1.28   msaitoh  *   and the packet is requeued.
    128  1.28   msaitoh  ************************************************************************/
    129  1.28   msaitoh int
    130  1.28   msaitoh ixgbe_legacy_start_locked(struct ifnet *ifp, struct tx_ring *txr)
    131   1.1   msaitoh {
    132   1.1   msaitoh 	int rc;
    133   1.1   msaitoh 	struct mbuf    *m_head;
    134   1.1   msaitoh 	struct adapter *adapter = txr->adapter;
    135   1.1   msaitoh 
    136   1.1   msaitoh 	IXGBE_TX_LOCK_ASSERT(txr);
    137   1.1   msaitoh 
    138   1.1   msaitoh 	if ((ifp->if_flags & IFF_RUNNING) == 0)
    139  1.28   msaitoh 		return (ENETDOWN);
    140   1.1   msaitoh 	if (!adapter->link_active)
    141  1.28   msaitoh 		return (ENETDOWN);
    142   1.1   msaitoh 
    143   1.1   msaitoh 	while (!IFQ_IS_EMPTY(&ifp->if_snd)) {
    144   1.1   msaitoh 		if (txr->tx_avail <= IXGBE_QUEUE_MIN_FREE)
    145   1.1   msaitoh 			break;
    146   1.1   msaitoh 
    147   1.1   msaitoh 		IFQ_POLL(&ifp->if_snd, m_head);
    148   1.1   msaitoh 		if (m_head == NULL)
    149   1.1   msaitoh 			break;
    150   1.1   msaitoh 
    151   1.1   msaitoh 		if ((rc = ixgbe_xmit(txr, m_head)) == EAGAIN) {
    152   1.1   msaitoh 			break;
    153   1.1   msaitoh 		}
    154   1.1   msaitoh 		IFQ_DEQUEUE(&ifp->if_snd, m_head);
    155   1.1   msaitoh 		if (rc != 0) {
    156   1.1   msaitoh 			m_freem(m_head);
    157   1.1   msaitoh 			continue;
    158   1.1   msaitoh 		}
    159   1.1   msaitoh 
    160   1.1   msaitoh 		/* Send a copy of the frame to the BPF listener */
    161   1.1   msaitoh 		bpf_mtap(ifp, m_head);
    162   1.1   msaitoh 	}
    163   1.1   msaitoh 
    164  1.28   msaitoh 	return IXGBE_SUCCESS;
    165  1.28   msaitoh } /* ixgbe_legacy_start_locked */
    166  1.28   msaitoh 
    167  1.28   msaitoh /************************************************************************
    168  1.28   msaitoh  * ixgbe_legacy_start
    169  1.28   msaitoh  *
    170  1.28   msaitoh  *   Called by the stack, this always uses the first tx ring,
    171  1.28   msaitoh  *   and should not be used with multiqueue tx enabled.
    172  1.28   msaitoh  ************************************************************************/
    173   1.1   msaitoh void
    174  1.28   msaitoh ixgbe_legacy_start(struct ifnet *ifp)
    175   1.1   msaitoh {
    176   1.1   msaitoh 	struct adapter *adapter = ifp->if_softc;
    177  1.28   msaitoh 	struct tx_ring *txr = adapter->tx_rings;
    178   1.1   msaitoh 
    179   1.1   msaitoh 	if (ifp->if_flags & IFF_RUNNING) {
    180   1.1   msaitoh 		IXGBE_TX_LOCK(txr);
    181  1.28   msaitoh 		ixgbe_legacy_start_locked(ifp, txr);
    182   1.1   msaitoh 		IXGBE_TX_UNLOCK(txr);
    183   1.1   msaitoh 	}
    184  1.28   msaitoh } /* ixgbe_legacy_start */
    185   1.1   msaitoh 
    186  1.28   msaitoh /************************************************************************
    187  1.28   msaitoh  * ixgbe_mq_start - Multiqueue Transmit Entry Point
    188  1.28   msaitoh  *
    189  1.28   msaitoh  *   (if_transmit function)
    190  1.28   msaitoh  ************************************************************************/
    191   1.1   msaitoh int
    192   1.1   msaitoh ixgbe_mq_start(struct ifnet *ifp, struct mbuf *m)
    193   1.1   msaitoh {
    194   1.1   msaitoh 	struct adapter	*adapter = ifp->if_softc;
    195   1.1   msaitoh 	struct tx_ring	*txr;
    196   1.1   msaitoh 	int 		i, err = 0;
    197  1.28   msaitoh #ifdef RSS
    198   1.1   msaitoh 	uint32_t bucket_id;
    199   1.1   msaitoh #endif
    200   1.1   msaitoh 
    201   1.1   msaitoh 	/*
    202   1.1   msaitoh 	 * When doing RSS, map it to the same outbound queue
    203   1.1   msaitoh 	 * as the incoming flow would be mapped to.
    204   1.1   msaitoh 	 *
    205   1.1   msaitoh 	 * If everything is setup correctly, it should be the
    206   1.1   msaitoh 	 * same bucket that the current CPU we're on is.
    207   1.1   msaitoh 	 */
    208  1.28   msaitoh #ifdef RSS
    209   1.1   msaitoh 	if (M_HASHTYPE_GET(m) != M_HASHTYPE_NONE) {
    210  1.28   msaitoh 		if ((adapter->feat_en & IXGBE_FEATURE_RSS) &&
    211  1.28   msaitoh 		    (rss_hash2bucket(m->m_pkthdr.flowid, M_HASHTYPE_GET(m),
    212  1.28   msaitoh 		    &bucket_id) == 0)) {
    213   1.1   msaitoh 			i = bucket_id % adapter->num_queues;
    214   1.8   msaitoh #ifdef IXGBE_DEBUG
    215   1.8   msaitoh 			if (bucket_id > adapter->num_queues)
    216  1.28   msaitoh 				if_printf(ifp,
    217  1.28   msaitoh 				    "bucket_id (%d) > num_queues (%d)\n",
    218  1.28   msaitoh 				    bucket_id, adapter->num_queues);
    219   1.8   msaitoh #endif
    220   1.8   msaitoh 		} else
    221   1.1   msaitoh 			i = m->m_pkthdr.flowid % adapter->num_queues;
    222   1.3   msaitoh 	} else
    223  1.28   msaitoh #endif /* 0 */
    224  1.18   msaitoh 		i = cpu_index(curcpu()) % adapter->num_queues;
    225   1.3   msaitoh 
    226   1.3   msaitoh 	/* Check for a hung queue and pick alternative */
    227   1.3   msaitoh 	if (((1 << i) & adapter->active_queues) == 0)
    228  1.18   msaitoh 		i = ffs64(adapter->active_queues);
    229   1.1   msaitoh 
    230   1.1   msaitoh 	txr = &adapter->tx_rings[i];
    231   1.1   msaitoh 
    232  1.18   msaitoh 	err = pcq_put(txr->txr_interq, m);
    233  1.18   msaitoh 	if (err == false) {
    234  1.18   msaitoh 		m_freem(m);
    235  1.18   msaitoh 		txr->pcq_drops.ev_count++;
    236   1.1   msaitoh 		return (err);
    237  1.18   msaitoh 	}
    238   1.1   msaitoh 	if (IXGBE_TX_TRYLOCK(txr)) {
    239   1.1   msaitoh 		ixgbe_mq_start_locked(ifp, txr);
    240   1.1   msaitoh 		IXGBE_TX_UNLOCK(txr);
    241  1.34  knakahar 	} else {
    242  1.34  knakahar 		if (adapter->txrx_use_workqueue) {
    243  1.34  knakahar 			/*
    244  1.34  knakahar 			 * This function itself is not called in interrupt
    245  1.34  knakahar 			 * context, however it can be called in fast softint
    246  1.34  knakahar 			 * context right after receiving forwarding packets.
    247  1.34  knakahar 			 * So, it is required to protect workqueue from twice
    248  1.34  knakahar 			 * enqueuing when the machine uses both spontaneous
    249  1.34  knakahar 			 * packets and forwarding packets.
    250  1.34  knakahar 			 */
    251  1.34  knakahar 			u_int *enqueued = percpu_getref(adapter->txr_wq_enqueued);
    252  1.34  knakahar 			if (*enqueued == 0) {
    253  1.34  knakahar 				*enqueued = 1;
    254  1.34  knakahar 				percpu_putref(adapter->txr_wq_enqueued);
    255  1.34  knakahar 				workqueue_enqueue(adapter->txr_wq, &txr->wq_cookie, curcpu());
    256  1.34  knakahar 			} else
    257  1.34  knakahar 				percpu_putref(adapter->txr_wq_enqueued);
    258  1.34  knakahar 		} else
    259  1.34  knakahar 			softint_schedule(txr->txr_si);
    260  1.34  knakahar 	}
    261   1.1   msaitoh 
    262   1.1   msaitoh 	return (0);
    263  1.28   msaitoh } /* ixgbe_mq_start */
    264   1.1   msaitoh 
    265  1.28   msaitoh /************************************************************************
    266  1.28   msaitoh  * ixgbe_mq_start_locked
    267  1.28   msaitoh  ************************************************************************/
    268   1.1   msaitoh int
    269   1.1   msaitoh ixgbe_mq_start_locked(struct ifnet *ifp, struct tx_ring *txr)
    270   1.1   msaitoh {
    271  1.28   msaitoh 	struct mbuf    *next;
    272  1.28   msaitoh 	int            enqueued = 0, err = 0;
    273   1.1   msaitoh 
    274  1.28   msaitoh 	if ((ifp->if_flags & IFF_RUNNING) == 0)
    275  1.28   msaitoh 		return (ENETDOWN);
    276  1.28   msaitoh 	if (txr->adapter->link_active == 0)
    277   1.1   msaitoh 		return (ENETDOWN);
    278   1.1   msaitoh 
    279   1.1   msaitoh 	/* Process the queue */
    280  1.18   msaitoh 	while ((next = pcq_get(txr->txr_interq)) != NULL) {
    281  1.18   msaitoh 		if ((err = ixgbe_xmit(txr, next)) != 0) {
    282  1.18   msaitoh 			m_freem(next);
    283  1.18   msaitoh 			/* All errors are counted in ixgbe_xmit() */
    284   1.1   msaitoh 			break;
    285   1.1   msaitoh 		}
    286   1.1   msaitoh 		enqueued++;
    287   1.3   msaitoh #if __FreeBSD_version >= 1100036
    288   1.4   msaitoh 		/*
    289   1.4   msaitoh 		 * Since we're looking at the tx ring, we can check
    290   1.4   msaitoh 		 * to see if we're a VF by examing our tail register
    291   1.4   msaitoh 		 * address.
    292   1.4   msaitoh 		 */
    293  1.28   msaitoh 		if ((txr->adapter->feat_en & IXGBE_FEATURE_VF) &&
    294  1.28   msaitoh 		    (next->m_flags & M_MCAST))
    295   1.3   msaitoh 			if_inc_counter(ifp, IFCOUNTER_OMCASTS, 1);
    296   1.3   msaitoh #endif
    297   1.1   msaitoh 		/* Send a copy of the frame to the BPF listener */
    298   1.1   msaitoh 		bpf_mtap(ifp, next);
    299   1.1   msaitoh 		if ((ifp->if_flags & IFF_RUNNING) == 0)
    300   1.1   msaitoh 			break;
    301   1.1   msaitoh 	}
    302   1.1   msaitoh 
    303  1.28   msaitoh 	if (txr->tx_avail < IXGBE_TX_CLEANUP_THRESHOLD(txr->adapter))
    304   1.1   msaitoh 		ixgbe_txeof(txr);
    305   1.1   msaitoh 
    306   1.1   msaitoh 	return (err);
    307  1.28   msaitoh } /* ixgbe_mq_start_locked */
    308   1.1   msaitoh 
    309  1.28   msaitoh /************************************************************************
    310  1.28   msaitoh  * ixgbe_deferred_mq_start
    311  1.28   msaitoh  *
    312  1.34  knakahar  *   Called from a softint and workqueue (indirectly) to drain queued
    313  1.34  knakahar  *   transmit packets.
    314  1.28   msaitoh  ************************************************************************/
    315   1.1   msaitoh void
    316  1.18   msaitoh ixgbe_deferred_mq_start(void *arg)
    317   1.1   msaitoh {
    318   1.1   msaitoh 	struct tx_ring *txr = arg;
    319   1.1   msaitoh 	struct adapter *adapter = txr->adapter;
    320  1.28   msaitoh 	struct ifnet   *ifp = adapter->ifp;
    321   1.1   msaitoh 
    322   1.1   msaitoh 	IXGBE_TX_LOCK(txr);
    323  1.18   msaitoh 	if (pcq_peek(txr->txr_interq) != NULL)
    324   1.1   msaitoh 		ixgbe_mq_start_locked(ifp, txr);
    325   1.1   msaitoh 	IXGBE_TX_UNLOCK(txr);
    326  1.28   msaitoh } /* ixgbe_deferred_mq_start */
    327   1.3   msaitoh 
    328  1.28   msaitoh /************************************************************************
    329  1.34  knakahar  * ixgbe_deferred_mq_start_work
    330  1.34  knakahar  *
    331  1.34  knakahar  *   Called from a workqueue to drain queued transmit packets.
    332  1.34  knakahar  ************************************************************************/
    333  1.34  knakahar void
    334  1.34  knakahar ixgbe_deferred_mq_start_work(struct work *wk, void *arg)
    335  1.34  knakahar {
    336  1.34  knakahar 	struct tx_ring *txr = container_of(wk, struct tx_ring, wq_cookie);
    337  1.34  knakahar 	struct adapter *adapter = txr->adapter;
    338  1.34  knakahar 	u_int *enqueued = percpu_getref(adapter->txr_wq_enqueued);
    339  1.34  knakahar 	*enqueued = 0;
    340  1.34  knakahar 	percpu_putref(adapter->txr_wq_enqueued);
    341  1.34  knakahar 
    342  1.34  knakahar 	ixgbe_deferred_mq_start(txr);
    343  1.34  knakahar } /* ixgbe_deferred_mq_start */
    344  1.34  knakahar 
    345  1.34  knakahar 
    346  1.34  knakahar /************************************************************************
    347  1.28   msaitoh  * ixgbe_xmit
    348   1.1   msaitoh  *
    349  1.28   msaitoh  *   Maps the mbufs to tx descriptors, allowing the
    350  1.28   msaitoh  *   TX engine to transmit the packets.
    351   1.1   msaitoh  *
    352  1.28   msaitoh  *   Return 0 on success, positive on failure
    353  1.28   msaitoh  ************************************************************************/
    354   1.1   msaitoh static int
    355   1.1   msaitoh ixgbe_xmit(struct tx_ring *txr, struct mbuf *m_head)
    356   1.1   msaitoh {
    357  1.28   msaitoh 	struct adapter          *adapter = txr->adapter;
    358  1.28   msaitoh 	struct ixgbe_tx_buf     *txbuf;
    359   1.1   msaitoh 	union ixgbe_adv_tx_desc *txd = NULL;
    360  1.28   msaitoh 	struct ifnet	        *ifp = adapter->ifp;
    361  1.28   msaitoh 	int                     i, j, error;
    362  1.28   msaitoh 	int                     first;
    363  1.28   msaitoh 	u32                     olinfo_status = 0, cmd_type_len;
    364  1.28   msaitoh 	bool                    remap = TRUE;
    365  1.28   msaitoh 	bus_dmamap_t            map;
    366   1.1   msaitoh 
    367   1.1   msaitoh 	/* Basic descriptor defines */
    368  1.28   msaitoh 	cmd_type_len = (IXGBE_ADVTXD_DTYP_DATA |
    369   1.1   msaitoh 	    IXGBE_ADVTXD_DCMD_IFCS | IXGBE_ADVTXD_DCMD_DEXT);
    370   1.1   msaitoh 
    371  1.29  knakahar 	if (vlan_has_tag(m_head))
    372  1.28   msaitoh 		cmd_type_len |= IXGBE_ADVTXD_DCMD_VLE;
    373   1.1   msaitoh 
    374  1.28   msaitoh 	/*
    375  1.28   msaitoh 	 * Important to capture the first descriptor
    376  1.28   msaitoh 	 * used because it will contain the index of
    377  1.28   msaitoh 	 * the one we tell the hardware to report back
    378  1.28   msaitoh 	 */
    379  1.28   msaitoh 	first = txr->next_avail_desc;
    380   1.1   msaitoh 	txbuf = &txr->tx_buffers[first];
    381   1.1   msaitoh 	map = txbuf->map;
    382   1.1   msaitoh 
    383   1.1   msaitoh 	/*
    384   1.1   msaitoh 	 * Map the packet for DMA.
    385   1.1   msaitoh 	 */
    386  1.22   msaitoh retry:
    387  1.28   msaitoh 	error = bus_dmamap_load_mbuf(txr->txtag->dt_dmat, map, m_head,
    388  1.28   msaitoh 	    BUS_DMA_NOWAIT);
    389   1.1   msaitoh 
    390   1.1   msaitoh 	if (__predict_false(error)) {
    391  1.22   msaitoh 		struct mbuf *m;
    392   1.1   msaitoh 
    393   1.1   msaitoh 		switch (error) {
    394   1.1   msaitoh 		case EAGAIN:
    395  1.35   msaitoh 			txr->q_eagain_tx_dma_setup++;
    396   1.1   msaitoh 			return EAGAIN;
    397   1.1   msaitoh 		case ENOMEM:
    398  1.35   msaitoh 			txr->q_enomem_tx_dma_setup++;
    399   1.1   msaitoh 			return EAGAIN;
    400   1.1   msaitoh 		case EFBIG:
    401  1.22   msaitoh 			/* Try it again? - one try */
    402  1.22   msaitoh 			if (remap == TRUE) {
    403  1.22   msaitoh 				remap = FALSE;
    404  1.22   msaitoh 				/*
    405  1.22   msaitoh 				 * XXX: m_defrag will choke on
    406  1.22   msaitoh 				 * non-MCLBYTES-sized clusters
    407  1.22   msaitoh 				 */
    408  1.35   msaitoh 				txr->q_efbig_tx_dma_setup++;
    409  1.22   msaitoh 				m = m_defrag(m_head, M_NOWAIT);
    410  1.22   msaitoh 				if (m == NULL) {
    411  1.35   msaitoh 					txr->q_mbuf_defrag_failed++;
    412  1.22   msaitoh 					return ENOBUFS;
    413  1.22   msaitoh 				}
    414  1.22   msaitoh 				m_head = m;
    415  1.22   msaitoh 				goto retry;
    416  1.22   msaitoh 			} else {
    417  1.35   msaitoh 				txr->q_efbig2_tx_dma_setup++;
    418  1.22   msaitoh 				return error;
    419  1.22   msaitoh 			}
    420   1.1   msaitoh 		case EINVAL:
    421  1.35   msaitoh 			txr->q_einval_tx_dma_setup++;
    422   1.1   msaitoh 			return error;
    423   1.1   msaitoh 		default:
    424  1.35   msaitoh 			txr->q_other_tx_dma_setup++;
    425   1.1   msaitoh 			return error;
    426   1.1   msaitoh 		}
    427   1.1   msaitoh 	}
    428   1.1   msaitoh 
    429   1.1   msaitoh 	/* Make certain there are enough descriptors */
    430  1.10   msaitoh 	if (txr->tx_avail < (map->dm_nsegs + 2)) {
    431   1.1   msaitoh 		txr->no_desc_avail.ev_count++;
    432   1.1   msaitoh 		ixgbe_dmamap_unload(txr->txtag, txbuf->map);
    433   1.1   msaitoh 		return EAGAIN;
    434   1.1   msaitoh 	}
    435   1.1   msaitoh 
    436   1.1   msaitoh 	/*
    437   1.4   msaitoh 	 * Set up the appropriate offload context
    438   1.4   msaitoh 	 * this will consume the first descriptor
    439   1.4   msaitoh 	 */
    440   1.1   msaitoh 	error = ixgbe_tx_ctx_setup(txr, m_head, &cmd_type_len, &olinfo_status);
    441   1.1   msaitoh 	if (__predict_false(error)) {
    442   1.1   msaitoh 		return (error);
    443   1.1   msaitoh 	}
    444   1.1   msaitoh 
    445   1.1   msaitoh 	/* Do the flow director magic */
    446  1.28   msaitoh 	if ((adapter->feat_en & IXGBE_FEATURE_FDIR) &&
    447  1.28   msaitoh 	    (txr->atr_sample) && (!adapter->fdir_reinit)) {
    448   1.1   msaitoh 		++txr->atr_count;
    449   1.1   msaitoh 		if (txr->atr_count >= atr_sample_rate) {
    450   1.1   msaitoh 			ixgbe_atr(txr, m_head);
    451   1.1   msaitoh 			txr->atr_count = 0;
    452   1.1   msaitoh 		}
    453   1.1   msaitoh 	}
    454   1.1   msaitoh 
    455   1.8   msaitoh 	olinfo_status |= IXGBE_ADVTXD_CC;
    456   1.1   msaitoh 	i = txr->next_avail_desc;
    457   1.1   msaitoh 	for (j = 0; j < map->dm_nsegs; j++) {
    458   1.1   msaitoh 		bus_size_t seglen;
    459   1.1   msaitoh 		bus_addr_t segaddr;
    460   1.1   msaitoh 
    461   1.1   msaitoh 		txbuf = &txr->tx_buffers[i];
    462   1.1   msaitoh 		txd = &txr->tx_base[i];
    463   1.1   msaitoh 		seglen = map->dm_segs[j].ds_len;
    464   1.1   msaitoh 		segaddr = htole64(map->dm_segs[j].ds_addr);
    465   1.1   msaitoh 
    466   1.1   msaitoh 		txd->read.buffer_addr = segaddr;
    467   1.1   msaitoh 		txd->read.cmd_type_len = htole32(txr->txd_cmd |
    468  1.28   msaitoh 		    cmd_type_len | seglen);
    469   1.1   msaitoh 		txd->read.olinfo_status = htole32(olinfo_status);
    470   1.1   msaitoh 
    471   1.1   msaitoh 		if (++i == txr->num_desc)
    472   1.1   msaitoh 			i = 0;
    473   1.1   msaitoh 	}
    474   1.1   msaitoh 
    475  1.28   msaitoh 	txd->read.cmd_type_len |= htole32(IXGBE_TXD_CMD_EOP | IXGBE_TXD_CMD_RS);
    476   1.1   msaitoh 	txr->tx_avail -= map->dm_nsegs;
    477   1.1   msaitoh 	txr->next_avail_desc = i;
    478   1.1   msaitoh 
    479   1.1   msaitoh 	txbuf->m_head = m_head;
    480   1.1   msaitoh 	/*
    481   1.4   msaitoh 	 * Here we swap the map so the last descriptor,
    482   1.4   msaitoh 	 * which gets the completion interrupt has the
    483   1.4   msaitoh 	 * real map, and the first descriptor gets the
    484   1.4   msaitoh 	 * unused map from this descriptor.
    485   1.4   msaitoh 	 */
    486   1.1   msaitoh 	txr->tx_buffers[first].map = txbuf->map;
    487   1.1   msaitoh 	txbuf->map = map;
    488   1.1   msaitoh 	bus_dmamap_sync(txr->txtag->dt_dmat, map, 0, m_head->m_pkthdr.len,
    489   1.1   msaitoh 	    BUS_DMASYNC_PREWRITE);
    490   1.1   msaitoh 
    491  1.28   msaitoh 	/* Set the EOP descriptor that will be marked done */
    492  1.28   msaitoh 	txbuf = &txr->tx_buffers[first];
    493   1.1   msaitoh 	txbuf->eop = txd;
    494   1.1   msaitoh 
    495  1.28   msaitoh 	ixgbe_dmamap_sync(txr->txdma.dma_tag, txr->txdma.dma_map,
    496   1.1   msaitoh 	    BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
    497   1.1   msaitoh 	/*
    498   1.1   msaitoh 	 * Advance the Transmit Descriptor Tail (Tdt), this tells the
    499   1.1   msaitoh 	 * hardware that this frame is available to transmit.
    500   1.1   msaitoh 	 */
    501   1.1   msaitoh 	++txr->total_packets.ev_count;
    502   1.3   msaitoh 	IXGBE_WRITE_REG(&adapter->hw, txr->tail, i);
    503   1.3   msaitoh 
    504  1.23   msaitoh 	/*
    505  1.23   msaitoh 	 * XXXX NOMPSAFE: ifp->if_data should be percpu.
    506  1.23   msaitoh 	 */
    507  1.23   msaitoh 	ifp->if_obytes += m_head->m_pkthdr.len;
    508  1.23   msaitoh 	if (m_head->m_flags & M_MCAST)
    509  1.23   msaitoh 		ifp->if_omcasts++;
    510  1.23   msaitoh 
    511   1.3   msaitoh 	/* Mark queue as having work */
    512   1.3   msaitoh 	if (txr->busy == 0)
    513   1.3   msaitoh 		txr->busy = 1;
    514   1.1   msaitoh 
    515  1.28   msaitoh 	return (0);
    516  1.28   msaitoh } /* ixgbe_xmit */
    517   1.1   msaitoh 
    518  1.16   msaitoh 
    519  1.28   msaitoh /************************************************************************
    520  1.28   msaitoh  * ixgbe_allocate_transmit_buffers
    521   1.1   msaitoh  *
    522  1.28   msaitoh  *   Allocate memory for tx_buffer structures. The tx_buffer stores all
    523  1.28   msaitoh  *   the information needed to transmit a packet on the wire. This is
    524  1.28   msaitoh  *   called only once at attach, setup is done every reset.
    525  1.28   msaitoh  ************************************************************************/
    526  1.28   msaitoh static int
    527   1.1   msaitoh ixgbe_allocate_transmit_buffers(struct tx_ring *txr)
    528   1.1   msaitoh {
    529  1.28   msaitoh 	struct adapter      *adapter = txr->adapter;
    530  1.28   msaitoh 	device_t            dev = adapter->dev;
    531   1.1   msaitoh 	struct ixgbe_tx_buf *txbuf;
    532  1.28   msaitoh 	int                 error, i;
    533   1.1   msaitoh 
    534   1.1   msaitoh 	/*
    535   1.1   msaitoh 	 * Setup DMA descriptor areas.
    536   1.1   msaitoh 	 */
    537  1.28   msaitoh 	error = ixgbe_dma_tag_create(
    538  1.28   msaitoh 	         /*      parent */ adapter->osdep.dmat,
    539  1.28   msaitoh 	         /*   alignment */ 1,
    540  1.28   msaitoh 	         /*      bounds */ 0,
    541  1.28   msaitoh 	         /*     maxsize */ IXGBE_TSO_SIZE,
    542  1.28   msaitoh 	         /*   nsegments */ adapter->num_segs,
    543  1.28   msaitoh 	         /*  maxsegsize */ PAGE_SIZE,
    544  1.28   msaitoh 	         /*       flags */ 0,
    545  1.28   msaitoh 	                           &txr->txtag);
    546  1.28   msaitoh 	if (error != 0) {
    547   1.1   msaitoh 		aprint_error_dev(dev,"Unable to allocate TX DMA tag\n");
    548   1.1   msaitoh 		goto fail;
    549   1.1   msaitoh 	}
    550   1.1   msaitoh 
    551  1.28   msaitoh 	txr->tx_buffers =
    552   1.1   msaitoh 	    (struct ixgbe_tx_buf *) malloc(sizeof(struct ixgbe_tx_buf) *
    553  1.28   msaitoh 	    adapter->num_tx_desc, M_DEVBUF, M_NOWAIT | M_ZERO);
    554  1.28   msaitoh 	if (txr->tx_buffers == NULL) {
    555   1.1   msaitoh 		aprint_error_dev(dev, "Unable to allocate tx_buffer memory\n");
    556   1.1   msaitoh 		error = ENOMEM;
    557   1.1   msaitoh 		goto fail;
    558   1.1   msaitoh 	}
    559   1.1   msaitoh 
    560  1.28   msaitoh 	/* Create the descriptor buffer dma maps */
    561   1.1   msaitoh 	txbuf = txr->tx_buffers;
    562   1.1   msaitoh 	for (i = 0; i < adapter->num_tx_desc; i++, txbuf++) {
    563   1.1   msaitoh 		error = ixgbe_dmamap_create(txr->txtag, 0, &txbuf->map);
    564   1.1   msaitoh 		if (error != 0) {
    565   1.1   msaitoh 			aprint_error_dev(dev,
    566   1.1   msaitoh 			    "Unable to create TX DMA map (%d)\n", error);
    567   1.1   msaitoh 			goto fail;
    568   1.1   msaitoh 		}
    569   1.1   msaitoh 	}
    570   1.1   msaitoh 
    571   1.1   msaitoh 	return 0;
    572   1.1   msaitoh fail:
    573   1.1   msaitoh 	/* We free all, it handles case where we are in the middle */
    574  1.15   msaitoh #if 0 /* XXX was FreeBSD */
    575   1.1   msaitoh 	ixgbe_free_transmit_structures(adapter);
    576  1.15   msaitoh #else
    577  1.15   msaitoh 	ixgbe_free_transmit_buffers(txr);
    578  1.15   msaitoh #endif
    579   1.1   msaitoh 	return (error);
    580  1.28   msaitoh } /* ixgbe_allocate_transmit_buffers */
    581   1.1   msaitoh 
    582  1.28   msaitoh /************************************************************************
    583  1.28   msaitoh  * ixgbe_setup_transmit_ring - Initialize a transmit ring.
    584  1.28   msaitoh  ************************************************************************/
    585   1.1   msaitoh static void
    586   1.1   msaitoh ixgbe_setup_transmit_ring(struct tx_ring *txr)
    587   1.1   msaitoh {
    588  1.28   msaitoh 	struct adapter        *adapter = txr->adapter;
    589  1.28   msaitoh 	struct ixgbe_tx_buf   *txbuf;
    590   1.1   msaitoh #ifdef DEV_NETMAP
    591   1.1   msaitoh 	struct netmap_adapter *na = NA(adapter->ifp);
    592  1.28   msaitoh 	struct netmap_slot    *slot;
    593   1.1   msaitoh #endif /* DEV_NETMAP */
    594   1.1   msaitoh 
    595   1.1   msaitoh 	/* Clear the old ring contents */
    596   1.1   msaitoh 	IXGBE_TX_LOCK(txr);
    597  1.28   msaitoh 
    598   1.1   msaitoh #ifdef DEV_NETMAP
    599  1.28   msaitoh 	if (adapter->feat_en & IXGBE_FEATURE_NETMAP) {
    600  1.28   msaitoh 		/*
    601  1.28   msaitoh 		 * (under lock): if in netmap mode, do some consistency
    602  1.28   msaitoh 		 * checks and set slot to entry 0 of the netmap ring.
    603  1.28   msaitoh 		 */
    604  1.28   msaitoh 		slot = netmap_reset(na, NR_TX, txr->me, 0);
    605  1.28   msaitoh 	}
    606   1.1   msaitoh #endif /* DEV_NETMAP */
    607  1.28   msaitoh 
    608   1.1   msaitoh 	bzero((void *)txr->tx_base,
    609  1.28   msaitoh 	    (sizeof(union ixgbe_adv_tx_desc)) * adapter->num_tx_desc);
    610   1.1   msaitoh 	/* Reset indices */
    611   1.1   msaitoh 	txr->next_avail_desc = 0;
    612   1.1   msaitoh 	txr->next_to_clean = 0;
    613   1.1   msaitoh 
    614   1.1   msaitoh 	/* Free any existing tx buffers. */
    615  1.28   msaitoh 	txbuf = txr->tx_buffers;
    616   1.5   msaitoh 	for (int i = 0; i < txr->num_desc; i++, txbuf++) {
    617   1.1   msaitoh 		if (txbuf->m_head != NULL) {
    618   1.1   msaitoh 			bus_dmamap_sync(txr->txtag->dt_dmat, txbuf->map,
    619   1.1   msaitoh 			    0, txbuf->m_head->m_pkthdr.len,
    620   1.1   msaitoh 			    BUS_DMASYNC_POSTWRITE);
    621   1.1   msaitoh 			ixgbe_dmamap_unload(txr->txtag, txbuf->map);
    622   1.1   msaitoh 			m_freem(txbuf->m_head);
    623   1.1   msaitoh 			txbuf->m_head = NULL;
    624   1.1   msaitoh 		}
    625  1.28   msaitoh 
    626   1.1   msaitoh #ifdef DEV_NETMAP
    627   1.1   msaitoh 		/*
    628   1.1   msaitoh 		 * In netmap mode, set the map for the packet buffer.
    629   1.1   msaitoh 		 * NOTE: Some drivers (not this one) also need to set
    630   1.1   msaitoh 		 * the physical buffer address in the NIC ring.
    631   1.1   msaitoh 		 * Slots in the netmap ring (indexed by "si") are
    632   1.1   msaitoh 		 * kring->nkr_hwofs positions "ahead" wrt the
    633   1.1   msaitoh 		 * corresponding slot in the NIC ring. In some drivers
    634   1.1   msaitoh 		 * (not here) nkr_hwofs can be negative. Function
    635   1.1   msaitoh 		 * netmap_idx_n2k() handles wraparounds properly.
    636   1.1   msaitoh 		 */
    637  1.28   msaitoh 		if ((adapter->feat_en & IXGBE_FEATURE_NETMAP) && slot) {
    638   1.1   msaitoh 			int si = netmap_idx_n2k(&na->tx_rings[txr->me], i);
    639   1.5   msaitoh 			netmap_load_map(na, txr->txtag,
    640   1.5   msaitoh 			    txbuf->map, NMB(na, slot + si));
    641   1.1   msaitoh 		}
    642   1.1   msaitoh #endif /* DEV_NETMAP */
    643  1.28   msaitoh 
    644   1.1   msaitoh 		/* Clear the EOP descriptor pointer */
    645   1.1   msaitoh 		txbuf->eop = NULL;
    646  1.28   msaitoh 	}
    647   1.1   msaitoh 
    648   1.1   msaitoh 	/* Set the rate at which we sample packets */
    649  1.28   msaitoh 	if (adapter->feat_en & IXGBE_FEATURE_FDIR)
    650   1.1   msaitoh 		txr->atr_sample = atr_sample_rate;
    651   1.1   msaitoh 
    652   1.1   msaitoh 	/* Set number of descriptors available */
    653   1.1   msaitoh 	txr->tx_avail = adapter->num_tx_desc;
    654   1.1   msaitoh 
    655   1.1   msaitoh 	ixgbe_dmamap_sync(txr->txdma.dma_tag, txr->txdma.dma_map,
    656   1.1   msaitoh 	    BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
    657   1.1   msaitoh 	IXGBE_TX_UNLOCK(txr);
    658  1.28   msaitoh } /* ixgbe_setup_transmit_ring */
    659   1.1   msaitoh 
    660  1.28   msaitoh /************************************************************************
    661  1.28   msaitoh  * ixgbe_setup_transmit_structures - Initialize all transmit rings.
    662  1.28   msaitoh  ************************************************************************/
    663   1.1   msaitoh int
    664   1.1   msaitoh ixgbe_setup_transmit_structures(struct adapter *adapter)
    665   1.1   msaitoh {
    666   1.1   msaitoh 	struct tx_ring *txr = adapter->tx_rings;
    667   1.1   msaitoh 
    668   1.1   msaitoh 	for (int i = 0; i < adapter->num_queues; i++, txr++)
    669   1.1   msaitoh 		ixgbe_setup_transmit_ring(txr);
    670   1.1   msaitoh 
    671   1.1   msaitoh 	return (0);
    672  1.28   msaitoh } /* ixgbe_setup_transmit_structures */
    673   1.1   msaitoh 
    674  1.28   msaitoh /************************************************************************
    675  1.28   msaitoh  * ixgbe_free_transmit_structures - Free all transmit rings.
    676  1.28   msaitoh  ************************************************************************/
    677   1.1   msaitoh void
    678   1.1   msaitoh ixgbe_free_transmit_structures(struct adapter *adapter)
    679   1.1   msaitoh {
    680   1.1   msaitoh 	struct tx_ring *txr = adapter->tx_rings;
    681   1.1   msaitoh 
    682   1.1   msaitoh 	for (int i = 0; i < adapter->num_queues; i++, txr++) {
    683   1.1   msaitoh 		ixgbe_free_transmit_buffers(txr);
    684   1.1   msaitoh 		ixgbe_dma_free(adapter, &txr->txdma);
    685   1.1   msaitoh 		IXGBE_TX_LOCK_DESTROY(txr);
    686   1.1   msaitoh 	}
    687   1.1   msaitoh 	free(adapter->tx_rings, M_DEVBUF);
    688  1.28   msaitoh } /* ixgbe_free_transmit_structures */
    689   1.1   msaitoh 
    690  1.28   msaitoh /************************************************************************
    691  1.28   msaitoh  * ixgbe_free_transmit_buffers
    692   1.1   msaitoh  *
    693  1.28   msaitoh  *   Free transmit ring related data structures.
    694  1.28   msaitoh  ************************************************************************/
    695   1.1   msaitoh static void
    696   1.1   msaitoh ixgbe_free_transmit_buffers(struct tx_ring *txr)
    697   1.1   msaitoh {
    698  1.28   msaitoh 	struct adapter      *adapter = txr->adapter;
    699   1.1   msaitoh 	struct ixgbe_tx_buf *tx_buffer;
    700  1.28   msaitoh 	int                 i;
    701   1.1   msaitoh 
    702  1.14   msaitoh 	INIT_DEBUGOUT("ixgbe_free_transmit_buffers: begin");
    703   1.1   msaitoh 
    704   1.1   msaitoh 	if (txr->tx_buffers == NULL)
    705   1.1   msaitoh 		return;
    706   1.1   msaitoh 
    707   1.1   msaitoh 	tx_buffer = txr->tx_buffers;
    708   1.1   msaitoh 	for (i = 0; i < adapter->num_tx_desc; i++, tx_buffer++) {
    709   1.1   msaitoh 		if (tx_buffer->m_head != NULL) {
    710   1.1   msaitoh 			bus_dmamap_sync(txr->txtag->dt_dmat, tx_buffer->map,
    711   1.1   msaitoh 			    0, tx_buffer->m_head->m_pkthdr.len,
    712   1.1   msaitoh 			    BUS_DMASYNC_POSTWRITE);
    713   1.1   msaitoh 			ixgbe_dmamap_unload(txr->txtag, tx_buffer->map);
    714   1.1   msaitoh 			m_freem(tx_buffer->m_head);
    715   1.1   msaitoh 			tx_buffer->m_head = NULL;
    716   1.1   msaitoh 			if (tx_buffer->map != NULL) {
    717   1.1   msaitoh 				ixgbe_dmamap_destroy(txr->txtag,
    718   1.1   msaitoh 				    tx_buffer->map);
    719   1.1   msaitoh 				tx_buffer->map = NULL;
    720   1.1   msaitoh 			}
    721   1.1   msaitoh 		} else if (tx_buffer->map != NULL) {
    722   1.1   msaitoh 			ixgbe_dmamap_unload(txr->txtag, tx_buffer->map);
    723   1.1   msaitoh 			ixgbe_dmamap_destroy(txr->txtag, tx_buffer->map);
    724   1.1   msaitoh 			tx_buffer->map = NULL;
    725   1.1   msaitoh 		}
    726   1.1   msaitoh 	}
    727  1.18   msaitoh 	if (txr->txr_interq != NULL) {
    728  1.18   msaitoh 		struct mbuf *m;
    729  1.18   msaitoh 
    730  1.18   msaitoh 		while ((m = pcq_get(txr->txr_interq)) != NULL)
    731  1.18   msaitoh 			m_freem(m);
    732  1.18   msaitoh 		pcq_destroy(txr->txr_interq);
    733  1.18   msaitoh 	}
    734   1.1   msaitoh 	if (txr->tx_buffers != NULL) {
    735   1.1   msaitoh 		free(txr->tx_buffers, M_DEVBUF);
    736   1.1   msaitoh 		txr->tx_buffers = NULL;
    737   1.1   msaitoh 	}
    738   1.1   msaitoh 	if (txr->txtag != NULL) {
    739   1.1   msaitoh 		ixgbe_dma_tag_destroy(txr->txtag);
    740   1.1   msaitoh 		txr->txtag = NULL;
    741   1.1   msaitoh 	}
    742  1.28   msaitoh } /* ixgbe_free_transmit_buffers */
    743   1.1   msaitoh 
    744  1.28   msaitoh /************************************************************************
    745  1.28   msaitoh  * ixgbe_tx_ctx_setup
    746   1.1   msaitoh  *
    747  1.28   msaitoh  *   Advanced Context Descriptor setup for VLAN, CSUM or TSO
    748  1.28   msaitoh  ************************************************************************/
    749   1.1   msaitoh static int
    750   1.1   msaitoh ixgbe_tx_ctx_setup(struct tx_ring *txr, struct mbuf *mp,
    751   1.1   msaitoh     u32 *cmd_type_len, u32 *olinfo_status)
    752   1.1   msaitoh {
    753  1.28   msaitoh 	struct adapter                   *adapter = txr->adapter;
    754   1.1   msaitoh 	struct ixgbe_adv_tx_context_desc *TXD;
    755  1.28   msaitoh 	struct ether_vlan_header         *eh;
    756   1.8   msaitoh #ifdef INET
    757  1.28   msaitoh 	struct ip                        *ip;
    758   1.8   msaitoh #endif
    759   1.8   msaitoh #ifdef INET6
    760  1.28   msaitoh 	struct ip6_hdr                   *ip6;
    761   1.8   msaitoh #endif
    762  1.28   msaitoh 	int                              ehdrlen, ip_hlen = 0;
    763  1.28   msaitoh 	int                              offload = TRUE;
    764  1.28   msaitoh 	int                              ctxd = txr->next_avail_desc;
    765  1.28   msaitoh 	u32                              vlan_macip_lens = 0;
    766  1.28   msaitoh 	u32                              type_tucmd_mlhl = 0;
    767  1.28   msaitoh 	u16                              vtag = 0;
    768  1.28   msaitoh 	u16                              etype;
    769  1.28   msaitoh 	u8                               ipproto = 0;
    770  1.28   msaitoh 	char                             *l3d;
    771   1.8   msaitoh 
    772   1.1   msaitoh 
    773   1.1   msaitoh 	/* First check if TSO is to be used */
    774  1.28   msaitoh 	if (mp->m_pkthdr.csum_flags & (M_CSUM_TSOv4 | M_CSUM_TSOv6)) {
    775  1.17   msaitoh 		int rv = ixgbe_tso_setup(txr, mp, cmd_type_len, olinfo_status);
    776  1.17   msaitoh 
    777  1.21   msaitoh 		if (rv != 0)
    778  1.17   msaitoh 			++adapter->tso_err.ev_count;
    779  1.21   msaitoh 		return rv;
    780  1.17   msaitoh 	}
    781   1.1   msaitoh 
    782   1.1   msaitoh 	if ((mp->m_pkthdr.csum_flags & M_CSUM_OFFLOAD) == 0)
    783   1.1   msaitoh 		offload = FALSE;
    784   1.1   msaitoh 
    785   1.1   msaitoh 	/* Indicate the whole packet as payload when not doing TSO */
    786  1.28   msaitoh 	*olinfo_status |= mp->m_pkthdr.len << IXGBE_ADVTXD_PAYLEN_SHIFT;
    787   1.1   msaitoh 
    788   1.1   msaitoh 	/* Now ready a context descriptor */
    789  1.28   msaitoh 	TXD = (struct ixgbe_adv_tx_context_desc *)&txr->tx_base[ctxd];
    790   1.1   msaitoh 
    791   1.1   msaitoh 	/*
    792  1.28   msaitoh 	 * In advanced descriptors the vlan tag must
    793  1.28   msaitoh 	 * be placed into the context descriptor. Hence
    794  1.28   msaitoh 	 * we need to make one even if not doing offloads.
    795  1.28   msaitoh 	 */
    796  1.29  knakahar 	if (vlan_has_tag(mp)) {
    797  1.29  knakahar 		vtag = htole16(vlan_get_tag(mp));
    798   1.1   msaitoh 		vlan_macip_lens |= (vtag << IXGBE_ADVTXD_VLAN_SHIFT);
    799  1.28   msaitoh 	} else if (!(txr->adapter->feat_en & IXGBE_FEATURE_NEEDS_CTXD) &&
    800  1.28   msaitoh 	           (offload == FALSE))
    801   1.4   msaitoh 		return (0);
    802   1.1   msaitoh 
    803   1.1   msaitoh 	/*
    804   1.1   msaitoh 	 * Determine where frame payload starts.
    805   1.1   msaitoh 	 * Jump over vlan headers if already present,
    806   1.1   msaitoh 	 * helpful for QinQ too.
    807   1.1   msaitoh 	 */
    808   1.1   msaitoh 	KASSERT(mp->m_len >= offsetof(struct ether_vlan_header, evl_tag));
    809   1.1   msaitoh 	eh = mtod(mp, struct ether_vlan_header *);
    810   1.1   msaitoh 	if (eh->evl_encap_proto == htons(ETHERTYPE_VLAN)) {
    811   1.1   msaitoh 		KASSERT(mp->m_len >= sizeof(struct ether_vlan_header));
    812   1.1   msaitoh 		etype = ntohs(eh->evl_proto);
    813   1.1   msaitoh 		ehdrlen = ETHER_HDR_LEN + ETHER_VLAN_ENCAP_LEN;
    814   1.1   msaitoh 	} else {
    815   1.1   msaitoh 		etype = ntohs(eh->evl_encap_proto);
    816   1.1   msaitoh 		ehdrlen = ETHER_HDR_LEN;
    817   1.1   msaitoh 	}
    818   1.1   msaitoh 
    819   1.1   msaitoh 	/* Set the ether header length */
    820   1.1   msaitoh 	vlan_macip_lens |= ehdrlen << IXGBE_ADVTXD_MACLEN_SHIFT;
    821   1.1   msaitoh 
    822   1.3   msaitoh 	if (offload == FALSE)
    823   1.3   msaitoh 		goto no_offloads;
    824   1.3   msaitoh 
    825   1.8   msaitoh 	/*
    826  1.28   msaitoh 	 * If the first mbuf only includes the ethernet header,
    827  1.28   msaitoh 	 * jump to the next one
    828  1.28   msaitoh 	 * XXX: This assumes the stack splits mbufs containing headers
    829  1.28   msaitoh 	 *      on header boundaries
    830   1.8   msaitoh 	 * XXX: And assumes the entire IP header is contained in one mbuf
    831   1.8   msaitoh 	 */
    832   1.8   msaitoh 	if (mp->m_len == ehdrlen && mp->m_next)
    833   1.8   msaitoh 		l3d = mtod(mp->m_next, char *);
    834   1.8   msaitoh 	else
    835   1.8   msaitoh 		l3d = mtod(mp, char *) + ehdrlen;
    836   1.8   msaitoh 
    837   1.1   msaitoh 	switch (etype) {
    838   1.9   msaitoh #ifdef INET
    839   1.1   msaitoh 	case ETHERTYPE_IP:
    840   1.8   msaitoh 		ip = (struct ip *)(l3d);
    841   1.8   msaitoh 		ip_hlen = ip->ip_hl << 2;
    842   1.8   msaitoh 		ipproto = ip->ip_p;
    843   1.8   msaitoh 		type_tucmd_mlhl |= IXGBE_ADVTXD_TUCMD_IPV4;
    844   1.1   msaitoh 		KASSERT((mp->m_pkthdr.csum_flags & M_CSUM_IPv4) == 0 ||
    845   1.8   msaitoh 		    ip->ip_sum == 0);
    846   1.1   msaitoh 		break;
    847   1.9   msaitoh #endif
    848   1.9   msaitoh #ifdef INET6
    849   1.1   msaitoh 	case ETHERTYPE_IPV6:
    850   1.8   msaitoh 		ip6 = (struct ip6_hdr *)(l3d);
    851   1.8   msaitoh 		ip_hlen = sizeof(struct ip6_hdr);
    852   1.8   msaitoh 		ipproto = ip6->ip6_nxt;
    853   1.1   msaitoh 		type_tucmd_mlhl |= IXGBE_ADVTXD_TUCMD_IPV6;
    854   1.1   msaitoh 		break;
    855   1.9   msaitoh #endif
    856   1.1   msaitoh 	default:
    857  1.11   msaitoh 		offload = false;
    858   1.1   msaitoh 		break;
    859   1.1   msaitoh 	}
    860   1.1   msaitoh 
    861   1.1   msaitoh 	if ((mp->m_pkthdr.csum_flags & M_CSUM_IPv4) != 0)
    862   1.1   msaitoh 		*olinfo_status |= IXGBE_TXD_POPTS_IXSM << 8;
    863   1.1   msaitoh 
    864   1.1   msaitoh 	vlan_macip_lens |= ip_hlen;
    865   1.1   msaitoh 
    866   1.8   msaitoh 	/* No support for offloads for non-L4 next headers */
    867   1.8   msaitoh  	switch (ipproto) {
    868  1.36   msaitoh 	case IPPROTO_TCP:
    869  1.36   msaitoh 		if (mp->m_pkthdr.csum_flags &
    870  1.36   msaitoh 		    (M_CSUM_TCPv4 | M_CSUM_TCPv6))
    871  1.36   msaitoh 			type_tucmd_mlhl |= IXGBE_ADVTXD_TUCMD_L4T_TCP;
    872  1.36   msaitoh 		else
    873  1.36   msaitoh 			offload = false;
    874  1.36   msaitoh 		break;
    875  1.36   msaitoh 	case IPPROTO_UDP:
    876  1.36   msaitoh 		if (mp->m_pkthdr.csum_flags &
    877  1.36   msaitoh 		    (M_CSUM_UDPv4 | M_CSUM_UDPv6))
    878  1.36   msaitoh 			type_tucmd_mlhl |= IXGBE_ADVTXD_TUCMD_L4T_UDP;
    879  1.36   msaitoh 		else
    880  1.11   msaitoh 			offload = false;
    881  1.36   msaitoh 		break;
    882  1.36   msaitoh 	default:
    883  1.36   msaitoh 		offload = false;
    884  1.36   msaitoh 		break;
    885   1.8   msaitoh 	}
    886   1.8   msaitoh 
    887   1.8   msaitoh 	if (offload) /* Insert L4 checksum into data descriptors */
    888   1.1   msaitoh 		*olinfo_status |= IXGBE_TXD_POPTS_TXSM << 8;
    889   1.1   msaitoh 
    890   1.3   msaitoh no_offloads:
    891   1.3   msaitoh 	type_tucmd_mlhl |= IXGBE_ADVTXD_DCMD_DEXT | IXGBE_ADVTXD_DTYP_CTXT;
    892   1.3   msaitoh 
    893   1.1   msaitoh 	/* Now copy bits into descriptor */
    894   1.1   msaitoh 	TXD->vlan_macip_lens = htole32(vlan_macip_lens);
    895   1.1   msaitoh 	TXD->type_tucmd_mlhl = htole32(type_tucmd_mlhl);
    896   1.1   msaitoh 	TXD->seqnum_seed = htole32(0);
    897   1.1   msaitoh 	TXD->mss_l4len_idx = htole32(0);
    898   1.1   msaitoh 
    899   1.1   msaitoh 	/* We've consumed the first desc, adjust counters */
    900   1.1   msaitoh 	if (++ctxd == txr->num_desc)
    901   1.1   msaitoh 		ctxd = 0;
    902   1.1   msaitoh 	txr->next_avail_desc = ctxd;
    903   1.1   msaitoh 	--txr->tx_avail;
    904   1.1   msaitoh 
    905  1.28   msaitoh 	return (0);
    906  1.28   msaitoh } /* ixgbe_tx_ctx_setup */
    907   1.1   msaitoh 
    908  1.28   msaitoh /************************************************************************
    909  1.28   msaitoh  * ixgbe_tso_setup
    910   1.1   msaitoh  *
    911  1.28   msaitoh  *   Setup work for hardware segmentation offload (TSO) on
    912  1.28   msaitoh  *   adapters using advanced tx descriptors
    913  1.28   msaitoh  ************************************************************************/
    914   1.1   msaitoh static int
    915  1.28   msaitoh ixgbe_tso_setup(struct tx_ring *txr, struct mbuf *mp, u32 *cmd_type_len,
    916  1.28   msaitoh     u32 *olinfo_status)
    917   1.1   msaitoh {
    918   1.1   msaitoh 	struct ixgbe_adv_tx_context_desc *TXD;
    919  1.28   msaitoh 	struct ether_vlan_header         *eh;
    920   1.1   msaitoh #ifdef INET6
    921  1.28   msaitoh 	struct ip6_hdr                   *ip6;
    922   1.1   msaitoh #endif
    923   1.1   msaitoh #ifdef INET
    924  1.28   msaitoh 	struct ip                        *ip;
    925   1.1   msaitoh #endif
    926  1.28   msaitoh 	struct tcphdr                    *th;
    927  1.28   msaitoh 	int                              ctxd, ehdrlen, ip_hlen, tcp_hlen;
    928  1.28   msaitoh 	u32                              vlan_macip_lens = 0;
    929  1.28   msaitoh 	u32                              type_tucmd_mlhl = 0;
    930  1.28   msaitoh 	u32                              mss_l4len_idx = 0, paylen;
    931  1.28   msaitoh 	u16                              vtag = 0, eh_type;
    932   1.1   msaitoh 
    933   1.1   msaitoh 	/*
    934   1.1   msaitoh 	 * Determine where frame payload starts.
    935   1.1   msaitoh 	 * Jump over vlan headers if already present
    936   1.1   msaitoh 	 */
    937   1.1   msaitoh 	eh = mtod(mp, struct ether_vlan_header *);
    938   1.1   msaitoh 	if (eh->evl_encap_proto == htons(ETHERTYPE_VLAN)) {
    939   1.1   msaitoh 		ehdrlen = ETHER_HDR_LEN + ETHER_VLAN_ENCAP_LEN;
    940   1.1   msaitoh 		eh_type = eh->evl_proto;
    941   1.1   msaitoh 	} else {
    942   1.1   msaitoh 		ehdrlen = ETHER_HDR_LEN;
    943   1.1   msaitoh 		eh_type = eh->evl_encap_proto;
    944   1.1   msaitoh 	}
    945   1.1   msaitoh 
    946   1.1   msaitoh 	switch (ntohs(eh_type)) {
    947   1.1   msaitoh #ifdef INET
    948   1.1   msaitoh 	case ETHERTYPE_IP:
    949   1.1   msaitoh 		ip = (struct ip *)(mp->m_data + ehdrlen);
    950   1.1   msaitoh 		if (ip->ip_p != IPPROTO_TCP)
    951   1.1   msaitoh 			return (ENXIO);
    952   1.1   msaitoh 		ip->ip_sum = 0;
    953   1.1   msaitoh 		ip_hlen = ip->ip_hl << 2;
    954   1.1   msaitoh 		th = (struct tcphdr *)((char *)ip + ip_hlen);
    955   1.1   msaitoh 		th->th_sum = in_cksum_phdr(ip->ip_src.s_addr,
    956   1.1   msaitoh 		    ip->ip_dst.s_addr, htons(IPPROTO_TCP));
    957   1.1   msaitoh 		type_tucmd_mlhl |= IXGBE_ADVTXD_TUCMD_IPV4;
    958   1.1   msaitoh 		/* Tell transmit desc to also do IPv4 checksum. */
    959   1.1   msaitoh 		*olinfo_status |= IXGBE_TXD_POPTS_IXSM << 8;
    960   1.1   msaitoh 		break;
    961   1.1   msaitoh #endif
    962  1.28   msaitoh #ifdef INET6
    963  1.28   msaitoh 	case ETHERTYPE_IPV6:
    964  1.28   msaitoh 		ip6 = (struct ip6_hdr *)(mp->m_data + ehdrlen);
    965  1.28   msaitoh 		/* XXX-BZ For now we do not pretend to support ext. hdrs. */
    966  1.28   msaitoh 		if (ip6->ip6_nxt != IPPROTO_TCP)
    967  1.28   msaitoh 			return (ENXIO);
    968  1.28   msaitoh 		ip_hlen = sizeof(struct ip6_hdr);
    969  1.28   msaitoh 		ip6 = (struct ip6_hdr *)(mp->m_data + ehdrlen);
    970  1.28   msaitoh 		th = (struct tcphdr *)((char *)ip6 + ip_hlen);
    971  1.28   msaitoh 		th->th_sum = in6_cksum_phdr(&ip6->ip6_src,
    972  1.28   msaitoh 		    &ip6->ip6_dst, 0, htonl(IPPROTO_TCP));
    973  1.28   msaitoh 		type_tucmd_mlhl |= IXGBE_ADVTXD_TUCMD_IPV6;
    974  1.28   msaitoh 		break;
    975  1.28   msaitoh #endif
    976   1.1   msaitoh 	default:
    977   1.1   msaitoh 		panic("%s: CSUM_TSO but no supported IP version (0x%04x)",
    978   1.1   msaitoh 		    __func__, ntohs(eh_type));
    979   1.1   msaitoh 		break;
    980   1.1   msaitoh 	}
    981   1.1   msaitoh 
    982   1.1   msaitoh 	ctxd = txr->next_avail_desc;
    983  1.28   msaitoh 	TXD = (struct ixgbe_adv_tx_context_desc *)&txr->tx_base[ctxd];
    984   1.1   msaitoh 
    985   1.1   msaitoh 	tcp_hlen = th->th_off << 2;
    986   1.1   msaitoh 
    987   1.1   msaitoh 	/* This is used in the transmit desc in encap */
    988   1.1   msaitoh 	paylen = mp->m_pkthdr.len - ehdrlen - ip_hlen - tcp_hlen;
    989   1.1   msaitoh 
    990   1.1   msaitoh 	/* VLAN MACLEN IPLEN */
    991  1.29  knakahar 	if (vlan_has_tag(mp)) {
    992  1.29  knakahar 		vtag = htole16(vlan_get_tag(mp));
    993  1.28   msaitoh 		vlan_macip_lens |= (vtag << IXGBE_ADVTXD_VLAN_SHIFT);
    994   1.1   msaitoh 	}
    995   1.1   msaitoh 
    996   1.1   msaitoh 	vlan_macip_lens |= ehdrlen << IXGBE_ADVTXD_MACLEN_SHIFT;
    997   1.1   msaitoh 	vlan_macip_lens |= ip_hlen;
    998   1.1   msaitoh 	TXD->vlan_macip_lens = htole32(vlan_macip_lens);
    999   1.1   msaitoh 
   1000   1.1   msaitoh 	/* ADV DTYPE TUCMD */
   1001   1.1   msaitoh 	type_tucmd_mlhl |= IXGBE_ADVTXD_DCMD_DEXT | IXGBE_ADVTXD_DTYP_CTXT;
   1002   1.1   msaitoh 	type_tucmd_mlhl |= IXGBE_ADVTXD_TUCMD_L4T_TCP;
   1003   1.1   msaitoh 	TXD->type_tucmd_mlhl = htole32(type_tucmd_mlhl);
   1004   1.1   msaitoh 
   1005   1.1   msaitoh 	/* MSS L4LEN IDX */
   1006   1.1   msaitoh 	mss_l4len_idx |= (mp->m_pkthdr.segsz << IXGBE_ADVTXD_MSS_SHIFT);
   1007   1.1   msaitoh 	mss_l4len_idx |= (tcp_hlen << IXGBE_ADVTXD_L4LEN_SHIFT);
   1008   1.1   msaitoh 	TXD->mss_l4len_idx = htole32(mss_l4len_idx);
   1009   1.1   msaitoh 
   1010   1.1   msaitoh 	TXD->seqnum_seed = htole32(0);
   1011   1.1   msaitoh 
   1012   1.1   msaitoh 	if (++ctxd == txr->num_desc)
   1013   1.1   msaitoh 		ctxd = 0;
   1014   1.1   msaitoh 
   1015   1.1   msaitoh 	txr->tx_avail--;
   1016   1.1   msaitoh 	txr->next_avail_desc = ctxd;
   1017   1.1   msaitoh 	*cmd_type_len |= IXGBE_ADVTXD_DCMD_TSE;
   1018   1.1   msaitoh 	*olinfo_status |= IXGBE_TXD_POPTS_TXSM << 8;
   1019   1.1   msaitoh 	*olinfo_status |= paylen << IXGBE_ADVTXD_PAYLEN_SHIFT;
   1020   1.1   msaitoh 	++txr->tso_tx.ev_count;
   1021  1.28   msaitoh 
   1022   1.1   msaitoh 	return (0);
   1023  1.28   msaitoh } /* ixgbe_tso_setup */
   1024   1.1   msaitoh 
   1025   1.3   msaitoh 
   1026  1.28   msaitoh /************************************************************************
   1027  1.28   msaitoh  * ixgbe_txeof
   1028   1.1   msaitoh  *
   1029  1.28   msaitoh  *   Examine each tx_buffer in the used queue. If the hardware is done
   1030  1.28   msaitoh  *   processing the packet then free associated resources. The
   1031  1.28   msaitoh  *   tx_buffer is put back on the free queue.
   1032  1.28   msaitoh  ************************************************************************/
   1033  1.32   msaitoh bool
   1034   1.1   msaitoh ixgbe_txeof(struct tx_ring *txr)
   1035   1.1   msaitoh {
   1036   1.1   msaitoh 	struct adapter		*adapter = txr->adapter;
   1037   1.1   msaitoh 	struct ifnet		*ifp = adapter->ifp;
   1038  1.28   msaitoh 	struct ixgbe_tx_buf	*buf;
   1039  1.28   msaitoh 	union ixgbe_adv_tx_desc *txd;
   1040   1.1   msaitoh 	u32			work, processed = 0;
   1041   1.7   msaitoh 	u32			limit = adapter->tx_process_limit;
   1042   1.1   msaitoh 
   1043   1.1   msaitoh 	KASSERT(mutex_owned(&txr->tx_mtx));
   1044   1.1   msaitoh 
   1045   1.1   msaitoh #ifdef DEV_NETMAP
   1046  1.28   msaitoh 	if ((adapter->feat_en & IXGBE_FEATURE_NETMAP) &&
   1047  1.28   msaitoh 	    (adapter->ifp->if_capenable & IFCAP_NETMAP)) {
   1048  1.28   msaitoh 		struct netmap_adapter *na = NA(adapter->ifp);
   1049   1.1   msaitoh 		struct netmap_kring *kring = &na->tx_rings[txr->me];
   1050   1.1   msaitoh 		txd = txr->tx_base;
   1051   1.1   msaitoh 		bus_dmamap_sync(txr->txdma.dma_tag, txr->txdma.dma_map,
   1052   1.1   msaitoh 		    BUS_DMASYNC_POSTREAD);
   1053   1.1   msaitoh 		/*
   1054   1.1   msaitoh 		 * In netmap mode, all the work is done in the context
   1055   1.1   msaitoh 		 * of the client thread. Interrupt handlers only wake up
   1056   1.1   msaitoh 		 * clients, which may be sleeping on individual rings
   1057   1.1   msaitoh 		 * or on a global resource for all rings.
   1058   1.1   msaitoh 		 * To implement tx interrupt mitigation, we wake up the client
   1059   1.1   msaitoh 		 * thread roughly every half ring, even if the NIC interrupts
   1060   1.1   msaitoh 		 * more frequently. This is implemented as follows:
   1061   1.1   msaitoh 		 * - ixgbe_txsync() sets kring->nr_kflags with the index of
   1062   1.1   msaitoh 		 *   the slot that should wake up the thread (nkr_num_slots
   1063   1.1   msaitoh 		 *   means the user thread should not be woken up);
   1064   1.1   msaitoh 		 * - the driver ignores tx interrupts unless netmap_mitigate=0
   1065   1.1   msaitoh 		 *   or the slot has the DD bit set.
   1066   1.1   msaitoh 		 */
   1067   1.1   msaitoh 		if (!netmap_mitigate ||
   1068   1.1   msaitoh 		    (kring->nr_kflags < kring->nkr_num_slots &&
   1069  1.28   msaitoh 		     txd[kring->nr_kflags].wb.status & IXGBE_TXD_STAT_DD)) {
   1070   1.1   msaitoh 			netmap_tx_irq(ifp, txr->me);
   1071   1.1   msaitoh 		}
   1072  1.32   msaitoh 		return false;
   1073   1.1   msaitoh 	}
   1074   1.1   msaitoh #endif /* DEV_NETMAP */
   1075   1.1   msaitoh 
   1076   1.1   msaitoh 	if (txr->tx_avail == txr->num_desc) {
   1077   1.3   msaitoh 		txr->busy = 0;
   1078  1.32   msaitoh 		return false;
   1079   1.1   msaitoh 	}
   1080   1.1   msaitoh 
   1081   1.1   msaitoh 	/* Get work starting point */
   1082   1.1   msaitoh 	work = txr->next_to_clean;
   1083   1.1   msaitoh 	buf = &txr->tx_buffers[work];
   1084   1.1   msaitoh 	txd = &txr->tx_base[work];
   1085   1.1   msaitoh 	work -= txr->num_desc; /* The distance to ring end */
   1086  1.28   msaitoh 	ixgbe_dmamap_sync(txr->txdma.dma_tag, txr->txdma.dma_map,
   1087   1.1   msaitoh 	    BUS_DMASYNC_POSTREAD);
   1088   1.8   msaitoh 
   1089   1.1   msaitoh 	do {
   1090   1.8   msaitoh 		union ixgbe_adv_tx_desc *eop = buf->eop;
   1091   1.1   msaitoh 		if (eop == NULL) /* No work */
   1092   1.1   msaitoh 			break;
   1093   1.1   msaitoh 
   1094   1.1   msaitoh 		if ((eop->wb.status & IXGBE_TXD_STAT_DD) == 0)
   1095   1.1   msaitoh 			break;	/* I/O not complete */
   1096   1.1   msaitoh 
   1097   1.1   msaitoh 		if (buf->m_head) {
   1098  1.28   msaitoh 			txr->bytes += buf->m_head->m_pkthdr.len;
   1099  1.28   msaitoh 			bus_dmamap_sync(txr->txtag->dt_dmat, buf->map,
   1100   1.1   msaitoh 			    0, buf->m_head->m_pkthdr.len,
   1101   1.1   msaitoh 			    BUS_DMASYNC_POSTWRITE);
   1102  1.28   msaitoh 			ixgbe_dmamap_unload(txr->txtag, buf->map);
   1103   1.1   msaitoh 			m_freem(buf->m_head);
   1104   1.1   msaitoh 			buf->m_head = NULL;
   1105   1.1   msaitoh 		}
   1106   1.1   msaitoh 		buf->eop = NULL;
   1107   1.1   msaitoh 		++txr->tx_avail;
   1108   1.1   msaitoh 
   1109   1.1   msaitoh 		/* We clean the range if multi segment */
   1110   1.1   msaitoh 		while (txd != eop) {
   1111   1.1   msaitoh 			++txd;
   1112   1.1   msaitoh 			++buf;
   1113   1.1   msaitoh 			++work;
   1114   1.1   msaitoh 			/* wrap the ring? */
   1115   1.1   msaitoh 			if (__predict_false(!work)) {
   1116   1.1   msaitoh 				work -= txr->num_desc;
   1117   1.1   msaitoh 				buf = txr->tx_buffers;
   1118   1.1   msaitoh 				txd = txr->tx_base;
   1119   1.1   msaitoh 			}
   1120   1.1   msaitoh 			if (buf->m_head) {
   1121   1.1   msaitoh 				txr->bytes +=
   1122   1.1   msaitoh 				    buf->m_head->m_pkthdr.len;
   1123   1.1   msaitoh 				bus_dmamap_sync(txr->txtag->dt_dmat,
   1124   1.1   msaitoh 				    buf->map,
   1125   1.1   msaitoh 				    0, buf->m_head->m_pkthdr.len,
   1126   1.1   msaitoh 				    BUS_DMASYNC_POSTWRITE);
   1127   1.1   msaitoh 				ixgbe_dmamap_unload(txr->txtag,
   1128   1.1   msaitoh 				    buf->map);
   1129   1.1   msaitoh 				m_freem(buf->m_head);
   1130   1.1   msaitoh 				buf->m_head = NULL;
   1131   1.1   msaitoh 			}
   1132   1.1   msaitoh 			++txr->tx_avail;
   1133   1.1   msaitoh 			buf->eop = NULL;
   1134   1.1   msaitoh 
   1135   1.1   msaitoh 		}
   1136   1.1   msaitoh 		++txr->packets;
   1137   1.1   msaitoh 		++processed;
   1138   1.1   msaitoh 		++ifp->if_opackets;
   1139   1.1   msaitoh 
   1140   1.1   msaitoh 		/* Try the next packet */
   1141   1.1   msaitoh 		++txd;
   1142   1.1   msaitoh 		++buf;
   1143   1.1   msaitoh 		++work;
   1144   1.1   msaitoh 		/* reset with a wrap */
   1145   1.1   msaitoh 		if (__predict_false(!work)) {
   1146   1.1   msaitoh 			work -= txr->num_desc;
   1147   1.1   msaitoh 			buf = txr->tx_buffers;
   1148   1.1   msaitoh 			txd = txr->tx_base;
   1149   1.1   msaitoh 		}
   1150   1.1   msaitoh 		prefetch(txd);
   1151   1.1   msaitoh 	} while (__predict_true(--limit));
   1152   1.1   msaitoh 
   1153   1.1   msaitoh 	ixgbe_dmamap_sync(txr->txdma.dma_tag, txr->txdma.dma_map,
   1154   1.1   msaitoh 	    BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
   1155   1.1   msaitoh 
   1156   1.1   msaitoh 	work += txr->num_desc;
   1157   1.1   msaitoh 	txr->next_to_clean = work;
   1158   1.1   msaitoh 
   1159   1.1   msaitoh 	/*
   1160  1.28   msaitoh 	 * Queue Hang detection, we know there's
   1161  1.28   msaitoh 	 * work outstanding or the first return
   1162  1.28   msaitoh 	 * would have been taken, so increment busy
   1163  1.28   msaitoh 	 * if nothing managed to get cleaned, then
   1164  1.28   msaitoh 	 * in local_timer it will be checked and
   1165  1.28   msaitoh 	 * marked as HUNG if it exceeds a MAX attempt.
   1166  1.28   msaitoh 	 */
   1167   1.3   msaitoh 	if ((processed == 0) && (txr->busy != IXGBE_QUEUE_HUNG))
   1168   1.3   msaitoh 		++txr->busy;
   1169   1.3   msaitoh 	/*
   1170  1.28   msaitoh 	 * If anything gets cleaned we reset state to 1,
   1171  1.28   msaitoh 	 * note this will turn off HUNG if its set.
   1172  1.28   msaitoh 	 */
   1173   1.3   msaitoh 	if (processed)
   1174   1.3   msaitoh 		txr->busy = 1;
   1175   1.1   msaitoh 
   1176   1.1   msaitoh 	if (txr->tx_avail == txr->num_desc)
   1177   1.3   msaitoh 		txr->busy = 0;
   1178   1.1   msaitoh 
   1179  1.32   msaitoh 	return ((limit > 0) ? false : true);
   1180  1.28   msaitoh } /* ixgbe_txeof */
   1181   1.1   msaitoh 
   1182  1.28   msaitoh /************************************************************************
   1183  1.28   msaitoh  * ixgbe_rsc_count
   1184  1.28   msaitoh  *
   1185  1.28   msaitoh  *   Used to detect a descriptor that has been merged by Hardware RSC.
   1186  1.28   msaitoh  ************************************************************************/
   1187   1.1   msaitoh static inline u32
   1188   1.1   msaitoh ixgbe_rsc_count(union ixgbe_adv_rx_desc *rx)
   1189   1.1   msaitoh {
   1190   1.1   msaitoh 	return (le32toh(rx->wb.lower.lo_dword.data) &
   1191   1.1   msaitoh 	    IXGBE_RXDADV_RSCCNT_MASK) >> IXGBE_RXDADV_RSCCNT_SHIFT;
   1192  1.28   msaitoh } /* ixgbe_rsc_count */
   1193   1.1   msaitoh 
   1194  1.28   msaitoh /************************************************************************
   1195  1.28   msaitoh  * ixgbe_setup_hw_rsc
   1196   1.1   msaitoh  *
   1197  1.28   msaitoh  *   Initialize Hardware RSC (LRO) feature on 82599
   1198  1.28   msaitoh  *   for an RX ring, this is toggled by the LRO capability
   1199  1.28   msaitoh  *   even though it is transparent to the stack.
   1200  1.28   msaitoh  *
   1201  1.28   msaitoh  *   NOTE: Since this HW feature only works with IPv4 and
   1202  1.28   msaitoh  *         testing has shown soft LRO to be as effective,
   1203  1.28   msaitoh  *         this feature will be disabled by default.
   1204  1.28   msaitoh  ************************************************************************/
   1205   1.1   msaitoh static void
   1206   1.1   msaitoh ixgbe_setup_hw_rsc(struct rx_ring *rxr)
   1207   1.1   msaitoh {
   1208  1.28   msaitoh 	struct	adapter  *adapter = rxr->adapter;
   1209  1.28   msaitoh 	struct	ixgbe_hw *hw = &adapter->hw;
   1210  1.28   msaitoh 	u32              rscctrl, rdrxctl;
   1211   1.1   msaitoh 
   1212   1.1   msaitoh 	/* If turning LRO/RSC off we need to disable it */
   1213   1.1   msaitoh 	if ((adapter->ifp->if_capenable & IFCAP_LRO) == 0) {
   1214   1.1   msaitoh 		rscctrl = IXGBE_READ_REG(hw, IXGBE_RSCCTL(rxr->me));
   1215   1.1   msaitoh 		rscctrl &= ~IXGBE_RSCCTL_RSCEN;
   1216   1.1   msaitoh 		return;
   1217   1.1   msaitoh 	}
   1218   1.1   msaitoh 
   1219   1.1   msaitoh 	rdrxctl = IXGBE_READ_REG(hw, IXGBE_RDRXCTL);
   1220   1.1   msaitoh 	rdrxctl &= ~IXGBE_RDRXCTL_RSCFRSTSIZE;
   1221  1.28   msaitoh #ifdef DEV_NETMAP
   1222  1.28   msaitoh 	/* Always strip CRC unless Netmap disabled it */
   1223  1.28   msaitoh 	if (!(adapter->feat_en & IXGBE_FEATURE_NETMAP) ||
   1224  1.28   msaitoh 	    !(adapter->ifp->if_capenable & IFCAP_NETMAP) ||
   1225  1.28   msaitoh 	    ix_crcstrip)
   1226   1.1   msaitoh #endif /* DEV_NETMAP */
   1227  1.28   msaitoh 		rdrxctl |= IXGBE_RDRXCTL_CRCSTRIP;
   1228   1.1   msaitoh 	rdrxctl |= IXGBE_RDRXCTL_RSCACKC;
   1229   1.1   msaitoh 	IXGBE_WRITE_REG(hw, IXGBE_RDRXCTL, rdrxctl);
   1230   1.1   msaitoh 
   1231   1.1   msaitoh 	rscctrl = IXGBE_READ_REG(hw, IXGBE_RSCCTL(rxr->me));
   1232   1.1   msaitoh 	rscctrl |= IXGBE_RSCCTL_RSCEN;
   1233   1.1   msaitoh 	/*
   1234  1.28   msaitoh 	 * Limit the total number of descriptors that
   1235  1.28   msaitoh 	 * can be combined, so it does not exceed 64K
   1236  1.28   msaitoh 	 */
   1237   1.1   msaitoh 	if (rxr->mbuf_sz == MCLBYTES)
   1238   1.1   msaitoh 		rscctrl |= IXGBE_RSCCTL_MAXDESC_16;
   1239   1.1   msaitoh 	else if (rxr->mbuf_sz == MJUMPAGESIZE)
   1240   1.1   msaitoh 		rscctrl |= IXGBE_RSCCTL_MAXDESC_8;
   1241   1.1   msaitoh 	else if (rxr->mbuf_sz == MJUM9BYTES)
   1242   1.1   msaitoh 		rscctrl |= IXGBE_RSCCTL_MAXDESC_4;
   1243   1.1   msaitoh 	else  /* Using 16K cluster */
   1244   1.1   msaitoh 		rscctrl |= IXGBE_RSCCTL_MAXDESC_1;
   1245   1.1   msaitoh 
   1246   1.1   msaitoh 	IXGBE_WRITE_REG(hw, IXGBE_RSCCTL(rxr->me), rscctrl);
   1247   1.1   msaitoh 
   1248   1.1   msaitoh 	/* Enable TCP header recognition */
   1249   1.1   msaitoh 	IXGBE_WRITE_REG(hw, IXGBE_PSRTYPE(0),
   1250  1.28   msaitoh 	    (IXGBE_READ_REG(hw, IXGBE_PSRTYPE(0)) | IXGBE_PSRTYPE_TCPHDR));
   1251   1.1   msaitoh 
   1252   1.1   msaitoh 	/* Disable RSC for ACK packets */
   1253   1.1   msaitoh 	IXGBE_WRITE_REG(hw, IXGBE_RSCDBU,
   1254   1.1   msaitoh 	    (IXGBE_RSCDBU_RSCACKDIS | IXGBE_READ_REG(hw, IXGBE_RSCDBU)));
   1255   1.1   msaitoh 
   1256   1.1   msaitoh 	rxr->hw_rsc = TRUE;
   1257  1.28   msaitoh } /* ixgbe_setup_hw_rsc */
   1258   1.8   msaitoh 
   1259  1.28   msaitoh /************************************************************************
   1260  1.28   msaitoh  * ixgbe_refresh_mbufs
   1261   1.1   msaitoh  *
   1262  1.28   msaitoh  *   Refresh mbuf buffers for RX descriptor rings
   1263  1.28   msaitoh  *    - now keeps its own state so discards due to resource
   1264  1.28   msaitoh  *      exhaustion are unnecessary, if an mbuf cannot be obtained
   1265  1.28   msaitoh  *      it just returns, keeping its placeholder, thus it can simply
   1266  1.28   msaitoh  *      be recalled to try again.
   1267  1.28   msaitoh  ************************************************************************/
   1268   1.1   msaitoh static void
   1269   1.1   msaitoh ixgbe_refresh_mbufs(struct rx_ring *rxr, int limit)
   1270   1.1   msaitoh {
   1271  1.28   msaitoh 	struct adapter      *adapter = rxr->adapter;
   1272  1.28   msaitoh 	struct ixgbe_rx_buf *rxbuf;
   1273  1.28   msaitoh 	struct mbuf         *mp;
   1274  1.28   msaitoh 	int                 i, j, error;
   1275  1.28   msaitoh 	bool                refreshed = false;
   1276   1.1   msaitoh 
   1277   1.1   msaitoh 	i = j = rxr->next_to_refresh;
   1278   1.1   msaitoh 	/* Control the loop with one beyond */
   1279   1.1   msaitoh 	if (++j == rxr->num_desc)
   1280   1.1   msaitoh 		j = 0;
   1281   1.1   msaitoh 
   1282   1.1   msaitoh 	while (j != limit) {
   1283   1.1   msaitoh 		rxbuf = &rxr->rx_buffers[i];
   1284   1.1   msaitoh 		if (rxbuf->buf == NULL) {
   1285   1.1   msaitoh 			mp = ixgbe_getjcl(&adapter->jcl_head, M_NOWAIT,
   1286   1.1   msaitoh 			    MT_DATA, M_PKTHDR, rxr->mbuf_sz);
   1287   1.1   msaitoh 			if (mp == NULL) {
   1288   1.1   msaitoh 				rxr->no_jmbuf.ev_count++;
   1289   1.1   msaitoh 				goto update;
   1290   1.1   msaitoh 			}
   1291   1.1   msaitoh 			if (adapter->max_frame_size <= (MCLBYTES - ETHER_ALIGN))
   1292   1.1   msaitoh 				m_adj(mp, ETHER_ALIGN);
   1293   1.1   msaitoh 		} else
   1294   1.1   msaitoh 			mp = rxbuf->buf;
   1295   1.1   msaitoh 
   1296   1.1   msaitoh 		mp->m_pkthdr.len = mp->m_len = rxr->mbuf_sz;
   1297   1.1   msaitoh 
   1298   1.1   msaitoh 		/* If we're dealing with an mbuf that was copied rather
   1299   1.1   msaitoh 		 * than replaced, there's no need to go through busdma.
   1300   1.1   msaitoh 		 */
   1301   1.1   msaitoh 		if ((rxbuf->flags & IXGBE_RX_COPY) == 0) {
   1302   1.1   msaitoh 			/* Get the memory mapping */
   1303   1.4   msaitoh 			ixgbe_dmamap_unload(rxr->ptag, rxbuf->pmap);
   1304   1.1   msaitoh 			error = bus_dmamap_load_mbuf(rxr->ptag->dt_dmat,
   1305   1.1   msaitoh 			    rxbuf->pmap, mp, BUS_DMA_NOWAIT);
   1306   1.1   msaitoh 			if (error != 0) {
   1307  1.28   msaitoh 				printf("Refresh mbufs: payload dmamap load failure - %d\n", error);
   1308   1.1   msaitoh 				m_free(mp);
   1309   1.1   msaitoh 				rxbuf->buf = NULL;
   1310   1.1   msaitoh 				goto update;
   1311   1.1   msaitoh 			}
   1312   1.1   msaitoh 			rxbuf->buf = mp;
   1313   1.1   msaitoh 			bus_dmamap_sync(rxr->ptag->dt_dmat, rxbuf->pmap,
   1314   1.1   msaitoh 			    0, mp->m_pkthdr.len, BUS_DMASYNC_PREREAD);
   1315   1.1   msaitoh 			rxbuf->addr = rxr->rx_base[i].read.pkt_addr =
   1316   1.1   msaitoh 			    htole64(rxbuf->pmap->dm_segs[0].ds_addr);
   1317   1.1   msaitoh 		} else {
   1318   1.1   msaitoh 			rxr->rx_base[i].read.pkt_addr = rxbuf->addr;
   1319   1.1   msaitoh 			rxbuf->flags &= ~IXGBE_RX_COPY;
   1320   1.1   msaitoh 		}
   1321   1.1   msaitoh 
   1322   1.1   msaitoh 		refreshed = true;
   1323   1.1   msaitoh 		/* Next is precalculated */
   1324   1.1   msaitoh 		i = j;
   1325   1.1   msaitoh 		rxr->next_to_refresh = i;
   1326   1.1   msaitoh 		if (++j == rxr->num_desc)
   1327   1.1   msaitoh 			j = 0;
   1328   1.1   msaitoh 	}
   1329  1.28   msaitoh 
   1330   1.1   msaitoh update:
   1331   1.1   msaitoh 	if (refreshed) /* Update hardware tail index */
   1332  1.28   msaitoh 		IXGBE_WRITE_REG(&adapter->hw, rxr->tail, rxr->next_to_refresh);
   1333  1.28   msaitoh 
   1334   1.1   msaitoh 	return;
   1335  1.28   msaitoh } /* ixgbe_refresh_mbufs */
   1336   1.1   msaitoh 
   1337  1.28   msaitoh /************************************************************************
   1338  1.28   msaitoh  * ixgbe_allocate_receive_buffers
   1339   1.1   msaitoh  *
   1340  1.28   msaitoh  *   Allocate memory for rx_buffer structures. Since we use one
   1341  1.28   msaitoh  *   rx_buffer per received packet, the maximum number of rx_buffer's
   1342  1.28   msaitoh  *   that we'll need is equal to the number of receive descriptors
   1343  1.28   msaitoh  *   that we've allocated.
   1344  1.28   msaitoh  ************************************************************************/
   1345  1.28   msaitoh static int
   1346   1.1   msaitoh ixgbe_allocate_receive_buffers(struct rx_ring *rxr)
   1347   1.1   msaitoh {
   1348  1.28   msaitoh 	struct	adapter     *adapter = rxr->adapter;
   1349  1.28   msaitoh 	device_t            dev = adapter->dev;
   1350  1.28   msaitoh 	struct ixgbe_rx_buf *rxbuf;
   1351  1.28   msaitoh 	int                 bsize, error;
   1352   1.1   msaitoh 
   1353   1.1   msaitoh 	bsize = sizeof(struct ixgbe_rx_buf) * rxr->num_desc;
   1354  1.28   msaitoh 	rxr->rx_buffers = (struct ixgbe_rx_buf *)malloc(bsize, M_DEVBUF,
   1355  1.28   msaitoh 	    M_NOWAIT | M_ZERO);
   1356  1.28   msaitoh 	if (rxr->rx_buffers == NULL) {
   1357   1.1   msaitoh 		aprint_error_dev(dev, "Unable to allocate rx_buffer memory\n");
   1358   1.1   msaitoh 		error = ENOMEM;
   1359   1.1   msaitoh 		goto fail;
   1360   1.1   msaitoh 	}
   1361   1.1   msaitoh 
   1362  1.28   msaitoh 	error = ixgbe_dma_tag_create(
   1363  1.28   msaitoh 	         /*      parent */ adapter->osdep.dmat,
   1364  1.28   msaitoh 	         /*   alignment */ 1,
   1365  1.28   msaitoh 	         /*      bounds */ 0,
   1366  1.28   msaitoh 	         /*     maxsize */ MJUM16BYTES,
   1367  1.28   msaitoh 	         /*   nsegments */ 1,
   1368  1.28   msaitoh 	         /*  maxsegsize */ MJUM16BYTES,
   1369  1.28   msaitoh 	         /*       flags */ 0,
   1370  1.28   msaitoh 	                           &rxr->ptag);
   1371  1.28   msaitoh 	if (error != 0) {
   1372   1.1   msaitoh 		aprint_error_dev(dev, "Unable to create RX DMA tag\n");
   1373   1.1   msaitoh 		goto fail;
   1374   1.1   msaitoh 	}
   1375   1.1   msaitoh 
   1376   1.5   msaitoh 	for (int i = 0; i < rxr->num_desc; i++, rxbuf++) {
   1377   1.1   msaitoh 		rxbuf = &rxr->rx_buffers[i];
   1378   1.4   msaitoh 		error = ixgbe_dmamap_create(rxr->ptag, 0, &rxbuf->pmap);
   1379   1.1   msaitoh 		if (error) {
   1380   1.1   msaitoh 			aprint_error_dev(dev, "Unable to create RX dma map\n");
   1381   1.1   msaitoh 			goto fail;
   1382   1.1   msaitoh 		}
   1383   1.1   msaitoh 	}
   1384   1.1   msaitoh 
   1385   1.1   msaitoh 	return (0);
   1386   1.1   msaitoh 
   1387   1.1   msaitoh fail:
   1388   1.1   msaitoh 	/* Frees all, but can handle partial completion */
   1389   1.1   msaitoh 	ixgbe_free_receive_structures(adapter);
   1390  1.28   msaitoh 
   1391   1.1   msaitoh 	return (error);
   1392  1.28   msaitoh } /* ixgbe_allocate_receive_buffers */
   1393   1.1   msaitoh 
   1394  1.28   msaitoh /************************************************************************
   1395  1.30   msaitoh  * ixgbe_free_receive_ring
   1396  1.28   msaitoh  ************************************************************************/
   1397  1.28   msaitoh static void
   1398   1.1   msaitoh ixgbe_free_receive_ring(struct rx_ring *rxr)
   1399  1.27   msaitoh {
   1400   1.5   msaitoh 	for (int i = 0; i < rxr->num_desc; i++) {
   1401  1.27   msaitoh 		ixgbe_rx_discard(rxr, i);
   1402   1.1   msaitoh 	}
   1403  1.28   msaitoh } /* ixgbe_free_receive_ring */
   1404   1.1   msaitoh 
   1405  1.28   msaitoh /************************************************************************
   1406  1.28   msaitoh  * ixgbe_setup_receive_ring
   1407   1.1   msaitoh  *
   1408  1.28   msaitoh  *   Initialize a receive ring and its buffers.
   1409  1.28   msaitoh  ************************************************************************/
   1410   1.1   msaitoh static int
   1411   1.1   msaitoh ixgbe_setup_receive_ring(struct rx_ring *rxr)
   1412   1.1   msaitoh {
   1413  1.28   msaitoh 	struct adapter        *adapter;
   1414  1.28   msaitoh 	struct ixgbe_rx_buf   *rxbuf;
   1415   1.1   msaitoh #ifdef LRO
   1416  1.28   msaitoh 	struct ifnet          *ifp;
   1417  1.28   msaitoh 	struct lro_ctrl       *lro = &rxr->lro;
   1418   1.1   msaitoh #endif /* LRO */
   1419   1.1   msaitoh #ifdef DEV_NETMAP
   1420   1.1   msaitoh 	struct netmap_adapter *na = NA(rxr->adapter->ifp);
   1421  1.28   msaitoh 	struct netmap_slot    *slot;
   1422   1.1   msaitoh #endif /* DEV_NETMAP */
   1423  1.28   msaitoh 	int                   rsize, error = 0;
   1424   1.1   msaitoh 
   1425   1.1   msaitoh 	adapter = rxr->adapter;
   1426   1.1   msaitoh #ifdef LRO
   1427   1.1   msaitoh 	ifp = adapter->ifp;
   1428   1.1   msaitoh #endif /* LRO */
   1429   1.1   msaitoh 
   1430   1.1   msaitoh 	/* Clear the ring contents */
   1431   1.1   msaitoh 	IXGBE_RX_LOCK(rxr);
   1432  1.28   msaitoh 
   1433   1.1   msaitoh #ifdef DEV_NETMAP
   1434  1.28   msaitoh 	if (adapter->feat_en & IXGBE_FEATURE_NETMAP)
   1435  1.28   msaitoh 		slot = netmap_reset(na, NR_RX, rxr->me, 0);
   1436   1.1   msaitoh #endif /* DEV_NETMAP */
   1437  1.28   msaitoh 
   1438   1.1   msaitoh 	rsize = roundup2(adapter->num_rx_desc *
   1439   1.1   msaitoh 	    sizeof(union ixgbe_adv_rx_desc), DBA_ALIGN);
   1440   1.1   msaitoh 	bzero((void *)rxr->rx_base, rsize);
   1441   1.1   msaitoh 	/* Cache the size */
   1442   1.1   msaitoh 	rxr->mbuf_sz = adapter->rx_mbuf_sz;
   1443   1.1   msaitoh 
   1444   1.1   msaitoh 	/* Free current RX buffer structs and their mbufs */
   1445   1.1   msaitoh 	ixgbe_free_receive_ring(rxr);
   1446   1.1   msaitoh 
   1447   1.1   msaitoh 	/* Now replenish the mbufs */
   1448   1.1   msaitoh 	for (int j = 0; j != rxr->num_desc; ++j) {
   1449  1.28   msaitoh 		struct mbuf *mp;
   1450   1.1   msaitoh 
   1451   1.1   msaitoh 		rxbuf = &rxr->rx_buffers[j];
   1452  1.28   msaitoh 
   1453   1.1   msaitoh #ifdef DEV_NETMAP
   1454   1.1   msaitoh 		/*
   1455   1.1   msaitoh 		 * In netmap mode, fill the map and set the buffer
   1456   1.1   msaitoh 		 * address in the NIC ring, considering the offset
   1457   1.1   msaitoh 		 * between the netmap and NIC rings (see comment in
   1458   1.1   msaitoh 		 * ixgbe_setup_transmit_ring() ). No need to allocate
   1459   1.1   msaitoh 		 * an mbuf, so end the block with a continue;
   1460   1.1   msaitoh 		 */
   1461  1.28   msaitoh 		if ((adapter->feat_en & IXGBE_FEATURE_NETMAP) && slot) {
   1462   1.1   msaitoh 			int sj = netmap_idx_n2k(&na->rx_rings[rxr->me], j);
   1463   1.1   msaitoh 			uint64_t paddr;
   1464   1.1   msaitoh 			void *addr;
   1465   1.1   msaitoh 
   1466   1.1   msaitoh 			addr = PNMB(na, slot + sj, &paddr);
   1467   1.1   msaitoh 			netmap_load_map(na, rxr->ptag, rxbuf->pmap, addr);
   1468   1.1   msaitoh 			/* Update descriptor and the cached value */
   1469   1.1   msaitoh 			rxr->rx_base[j].read.pkt_addr = htole64(paddr);
   1470   1.1   msaitoh 			rxbuf->addr = htole64(paddr);
   1471   1.1   msaitoh 			continue;
   1472   1.1   msaitoh 		}
   1473   1.1   msaitoh #endif /* DEV_NETMAP */
   1474  1.28   msaitoh 
   1475  1.28   msaitoh 		rxbuf->flags = 0;
   1476   1.1   msaitoh 		rxbuf->buf = ixgbe_getjcl(&adapter->jcl_head, M_NOWAIT,
   1477   1.1   msaitoh 		    MT_DATA, M_PKTHDR, adapter->rx_mbuf_sz);
   1478   1.1   msaitoh 		if (rxbuf->buf == NULL) {
   1479   1.1   msaitoh 			error = ENOBUFS;
   1480  1.28   msaitoh 			goto fail;
   1481   1.1   msaitoh 		}
   1482   1.1   msaitoh 		mp = rxbuf->buf;
   1483   1.1   msaitoh 		mp->m_pkthdr.len = mp->m_len = rxr->mbuf_sz;
   1484   1.1   msaitoh 		/* Get the memory mapping */
   1485  1.28   msaitoh 		error = bus_dmamap_load_mbuf(rxr->ptag->dt_dmat, rxbuf->pmap,
   1486  1.28   msaitoh 		    mp, BUS_DMA_NOWAIT);
   1487   1.1   msaitoh 		if (error != 0)
   1488   1.1   msaitoh                         goto fail;
   1489   1.1   msaitoh 		bus_dmamap_sync(rxr->ptag->dt_dmat, rxbuf->pmap,
   1490   1.1   msaitoh 		    0, adapter->rx_mbuf_sz, BUS_DMASYNC_PREREAD);
   1491   1.1   msaitoh 		/* Update the descriptor and the cached value */
   1492   1.1   msaitoh 		rxr->rx_base[j].read.pkt_addr =
   1493   1.1   msaitoh 		    htole64(rxbuf->pmap->dm_segs[0].ds_addr);
   1494   1.1   msaitoh 		rxbuf->addr = htole64(rxbuf->pmap->dm_segs[0].ds_addr);
   1495   1.1   msaitoh 	}
   1496   1.1   msaitoh 
   1497   1.1   msaitoh 
   1498   1.1   msaitoh 	/* Setup our descriptor indices */
   1499   1.1   msaitoh 	rxr->next_to_check = 0;
   1500   1.1   msaitoh 	rxr->next_to_refresh = 0;
   1501   1.1   msaitoh 	rxr->lro_enabled = FALSE;
   1502   1.1   msaitoh 	rxr->rx_copies.ev_count = 0;
   1503  1.13   msaitoh #if 0 /* NetBSD */
   1504   1.1   msaitoh 	rxr->rx_bytes.ev_count = 0;
   1505  1.13   msaitoh #if 1	/* Fix inconsistency */
   1506  1.13   msaitoh 	rxr->rx_packets.ev_count = 0;
   1507  1.13   msaitoh #endif
   1508  1.13   msaitoh #endif
   1509   1.1   msaitoh 	rxr->vtag_strip = FALSE;
   1510   1.1   msaitoh 
   1511   1.1   msaitoh 	ixgbe_dmamap_sync(rxr->rxdma.dma_tag, rxr->rxdma.dma_map,
   1512   1.1   msaitoh 	    BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
   1513   1.1   msaitoh 
   1514   1.1   msaitoh 	/*
   1515  1.28   msaitoh 	 * Now set up the LRO interface
   1516  1.28   msaitoh 	 */
   1517   1.1   msaitoh 	if (ixgbe_rsc_enable)
   1518   1.1   msaitoh 		ixgbe_setup_hw_rsc(rxr);
   1519   1.1   msaitoh #ifdef LRO
   1520   1.1   msaitoh 	else if (ifp->if_capenable & IFCAP_LRO) {
   1521   1.1   msaitoh 		device_t dev = adapter->dev;
   1522   1.1   msaitoh 		int err = tcp_lro_init(lro);
   1523   1.1   msaitoh 		if (err) {
   1524   1.1   msaitoh 			device_printf(dev, "LRO Initialization failed!\n");
   1525   1.1   msaitoh 			goto fail;
   1526   1.1   msaitoh 		}
   1527   1.1   msaitoh 		INIT_DEBUGOUT("RX Soft LRO Initialized\n");
   1528   1.1   msaitoh 		rxr->lro_enabled = TRUE;
   1529   1.1   msaitoh 		lro->ifp = adapter->ifp;
   1530   1.1   msaitoh 	}
   1531   1.1   msaitoh #endif /* LRO */
   1532   1.1   msaitoh 
   1533   1.1   msaitoh 	IXGBE_RX_UNLOCK(rxr);
   1534  1.28   msaitoh 
   1535   1.1   msaitoh 	return (0);
   1536   1.1   msaitoh 
   1537   1.1   msaitoh fail:
   1538   1.1   msaitoh 	ixgbe_free_receive_ring(rxr);
   1539   1.1   msaitoh 	IXGBE_RX_UNLOCK(rxr);
   1540  1.28   msaitoh 
   1541   1.1   msaitoh 	return (error);
   1542  1.28   msaitoh } /* ixgbe_setup_receive_ring */
   1543   1.1   msaitoh 
   1544  1.28   msaitoh /************************************************************************
   1545  1.28   msaitoh  * ixgbe_setup_receive_structures - Initialize all receive rings.
   1546  1.28   msaitoh  ************************************************************************/
   1547   1.1   msaitoh int
   1548   1.1   msaitoh ixgbe_setup_receive_structures(struct adapter *adapter)
   1549   1.1   msaitoh {
   1550   1.1   msaitoh 	struct rx_ring *rxr = adapter->rx_rings;
   1551  1.28   msaitoh 	int            j;
   1552   1.1   msaitoh 
   1553  1.30   msaitoh 	/*
   1554  1.30   msaitoh 	 * Now reinitialize our supply of jumbo mbufs.  The number
   1555  1.30   msaitoh 	 * or size of jumbo mbufs may have changed.
   1556  1.30   msaitoh 	 * Assume all of rxr->ptag are the same.
   1557  1.30   msaitoh 	 */
   1558  1.30   msaitoh 	ixgbe_jcl_reinit(&adapter->jcl_head, rxr->ptag->dt_dmat,
   1559  1.30   msaitoh 	    (2 * adapter->num_rx_desc) * adapter->num_queues,
   1560  1.30   msaitoh 	    adapter->rx_mbuf_sz);
   1561  1.30   msaitoh 
   1562   1.1   msaitoh 	for (j = 0; j < adapter->num_queues; j++, rxr++)
   1563   1.1   msaitoh 		if (ixgbe_setup_receive_ring(rxr))
   1564   1.1   msaitoh 			goto fail;
   1565   1.1   msaitoh 
   1566   1.1   msaitoh 	return (0);
   1567   1.1   msaitoh fail:
   1568   1.1   msaitoh 	/*
   1569   1.1   msaitoh 	 * Free RX buffers allocated so far, we will only handle
   1570   1.1   msaitoh 	 * the rings that completed, the failing case will have
   1571   1.1   msaitoh 	 * cleaned up for itself. 'j' failed, so its the terminus.
   1572   1.1   msaitoh 	 */
   1573   1.1   msaitoh 	for (int i = 0; i < j; ++i) {
   1574   1.1   msaitoh 		rxr = &adapter->rx_rings[i];
   1575  1.27   msaitoh 		IXGBE_RX_LOCK(rxr);
   1576   1.1   msaitoh 		ixgbe_free_receive_ring(rxr);
   1577  1.27   msaitoh 		IXGBE_RX_UNLOCK(rxr);
   1578   1.1   msaitoh 	}
   1579   1.1   msaitoh 
   1580   1.1   msaitoh 	return (ENOBUFS);
   1581  1.28   msaitoh } /* ixgbe_setup_receive_structures */
   1582   1.1   msaitoh 
   1583   1.3   msaitoh 
   1584  1.28   msaitoh /************************************************************************
   1585  1.28   msaitoh  * ixgbe_free_receive_structures - Free all receive rings.
   1586  1.28   msaitoh  ************************************************************************/
   1587   1.1   msaitoh void
   1588   1.1   msaitoh ixgbe_free_receive_structures(struct adapter *adapter)
   1589   1.1   msaitoh {
   1590   1.1   msaitoh 	struct rx_ring *rxr = adapter->rx_rings;
   1591   1.1   msaitoh 
   1592   1.1   msaitoh 	INIT_DEBUGOUT("ixgbe_free_receive_structures: begin");
   1593   1.1   msaitoh 
   1594   1.1   msaitoh 	for (int i = 0; i < adapter->num_queues; i++, rxr++) {
   1595   1.1   msaitoh 		ixgbe_free_receive_buffers(rxr);
   1596   1.1   msaitoh #ifdef LRO
   1597   1.1   msaitoh 		/* Free LRO memory */
   1598  1.28   msaitoh 		tcp_lro_free(&rxr->lro);
   1599   1.1   msaitoh #endif /* LRO */
   1600   1.1   msaitoh 		/* Free the ring memory as well */
   1601   1.1   msaitoh 		ixgbe_dma_free(adapter, &rxr->rxdma);
   1602   1.1   msaitoh 		IXGBE_RX_LOCK_DESTROY(rxr);
   1603   1.1   msaitoh 	}
   1604   1.1   msaitoh 
   1605   1.1   msaitoh 	free(adapter->rx_rings, M_DEVBUF);
   1606  1.28   msaitoh } /* ixgbe_free_receive_structures */
   1607   1.1   msaitoh 
   1608   1.1   msaitoh 
   1609  1.28   msaitoh /************************************************************************
   1610  1.28   msaitoh  * ixgbe_free_receive_buffers - Free receive ring data structures
   1611  1.28   msaitoh  ************************************************************************/
   1612   1.1   msaitoh static void
   1613   1.1   msaitoh ixgbe_free_receive_buffers(struct rx_ring *rxr)
   1614   1.1   msaitoh {
   1615  1.28   msaitoh 	struct adapter      *adapter = rxr->adapter;
   1616  1.28   msaitoh 	struct ixgbe_rx_buf *rxbuf;
   1617   1.1   msaitoh 
   1618   1.1   msaitoh 	INIT_DEBUGOUT("ixgbe_free_receive_buffers: begin");
   1619   1.1   msaitoh 
   1620   1.1   msaitoh 	/* Cleanup any existing buffers */
   1621   1.1   msaitoh 	if (rxr->rx_buffers != NULL) {
   1622   1.1   msaitoh 		for (int i = 0; i < adapter->num_rx_desc; i++) {
   1623   1.1   msaitoh 			rxbuf = &rxr->rx_buffers[i];
   1624  1.27   msaitoh 			ixgbe_rx_discard(rxr, i);
   1625   1.1   msaitoh 			if (rxbuf->pmap != NULL) {
   1626   1.1   msaitoh 				ixgbe_dmamap_destroy(rxr->ptag, rxbuf->pmap);
   1627   1.1   msaitoh 				rxbuf->pmap = NULL;
   1628   1.1   msaitoh 			}
   1629   1.1   msaitoh 		}
   1630   1.1   msaitoh 		if (rxr->rx_buffers != NULL) {
   1631   1.1   msaitoh 			free(rxr->rx_buffers, M_DEVBUF);
   1632   1.1   msaitoh 			rxr->rx_buffers = NULL;
   1633   1.1   msaitoh 		}
   1634   1.1   msaitoh 	}
   1635   1.1   msaitoh 
   1636   1.1   msaitoh 	if (rxr->ptag != NULL) {
   1637   1.1   msaitoh 		ixgbe_dma_tag_destroy(rxr->ptag);
   1638   1.1   msaitoh 		rxr->ptag = NULL;
   1639   1.1   msaitoh 	}
   1640   1.1   msaitoh 
   1641   1.1   msaitoh 	return;
   1642  1.28   msaitoh } /* ixgbe_free_receive_buffers */
   1643   1.1   msaitoh 
   1644  1.28   msaitoh /************************************************************************
   1645  1.28   msaitoh  * ixgbe_rx_input
   1646  1.28   msaitoh  ************************************************************************/
   1647   1.1   msaitoh static __inline void
   1648  1.28   msaitoh ixgbe_rx_input(struct rx_ring *rxr, struct ifnet *ifp, struct mbuf *m,
   1649  1.28   msaitoh     u32 ptype)
   1650   1.1   msaitoh {
   1651  1.20   msaitoh 	struct adapter	*adapter = ifp->if_softc;
   1652   1.1   msaitoh 
   1653   1.1   msaitoh #ifdef LRO
   1654   1.1   msaitoh 	struct ethercom *ec = &adapter->osdep.ec;
   1655   1.1   msaitoh 
   1656  1.28   msaitoh 	/*
   1657  1.28   msaitoh 	 * ATM LRO is only for IP/TCP packets and TCP checksum of the packet
   1658  1.28   msaitoh 	 * should be computed by hardware. Also it should not have VLAN tag in
   1659  1.28   msaitoh 	 * ethernet header.  In case of IPv6 we do not yet support ext. hdrs.
   1660  1.28   msaitoh 	 */
   1661   1.1   msaitoh         if (rxr->lro_enabled &&
   1662   1.1   msaitoh             (ec->ec_capenable & ETHERCAP_VLAN_HWTAGGING) != 0 &&
   1663   1.1   msaitoh             (ptype & IXGBE_RXDADV_PKTTYPE_ETQF) == 0 &&
   1664   1.1   msaitoh             ((ptype & (IXGBE_RXDADV_PKTTYPE_IPV4 | IXGBE_RXDADV_PKTTYPE_TCP)) ==
   1665   1.1   msaitoh             (IXGBE_RXDADV_PKTTYPE_IPV4 | IXGBE_RXDADV_PKTTYPE_TCP) ||
   1666   1.1   msaitoh             (ptype & (IXGBE_RXDADV_PKTTYPE_IPV6 | IXGBE_RXDADV_PKTTYPE_TCP)) ==
   1667   1.1   msaitoh             (IXGBE_RXDADV_PKTTYPE_IPV6 | IXGBE_RXDADV_PKTTYPE_TCP)) &&
   1668   1.1   msaitoh             (m->m_pkthdr.csum_flags & (CSUM_DATA_VALID | CSUM_PSEUDO_HDR)) ==
   1669   1.1   msaitoh             (CSUM_DATA_VALID | CSUM_PSEUDO_HDR)) {
   1670   1.1   msaitoh                 /*
   1671   1.1   msaitoh                  * Send to the stack if:
   1672   1.1   msaitoh                  **  - LRO not enabled, or
   1673   1.1   msaitoh                  **  - no LRO resources, or
   1674   1.1   msaitoh                  **  - lro enqueue fails
   1675   1.1   msaitoh                  */
   1676   1.1   msaitoh                 if (rxr->lro.lro_cnt != 0)
   1677   1.1   msaitoh                         if (tcp_lro_rx(&rxr->lro, m, 0) == 0)
   1678   1.1   msaitoh                                 return;
   1679   1.1   msaitoh         }
   1680   1.1   msaitoh #endif /* LRO */
   1681   1.1   msaitoh 
   1682  1.20   msaitoh 	if_percpuq_enqueue(adapter->ipq, m);
   1683  1.28   msaitoh } /* ixgbe_rx_input */
   1684   1.1   msaitoh 
   1685  1.28   msaitoh /************************************************************************
   1686  1.28   msaitoh  * ixgbe_rx_discard
   1687  1.28   msaitoh  ************************************************************************/
   1688   1.1   msaitoh static __inline void
   1689   1.1   msaitoh ixgbe_rx_discard(struct rx_ring *rxr, int i)
   1690   1.1   msaitoh {
   1691  1.28   msaitoh 	struct ixgbe_rx_buf *rbuf;
   1692   1.1   msaitoh 
   1693   1.1   msaitoh 	rbuf = &rxr->rx_buffers[i];
   1694   1.1   msaitoh 
   1695   1.1   msaitoh 	/*
   1696  1.28   msaitoh 	 * With advanced descriptors the writeback
   1697  1.28   msaitoh 	 * clobbers the buffer addrs, so its easier
   1698  1.28   msaitoh 	 * to just free the existing mbufs and take
   1699  1.28   msaitoh 	 * the normal refresh path to get new buffers
   1700  1.28   msaitoh 	 * and mapping.
   1701  1.28   msaitoh 	 */
   1702   1.1   msaitoh 
   1703  1.26   msaitoh 	if (rbuf->fmp != NULL) {/* Partial chain ? */
   1704  1.27   msaitoh 		bus_dmamap_sync(rxr->ptag->dt_dmat, rbuf->pmap, 0,
   1705  1.27   msaitoh 		    rbuf->buf->m_pkthdr.len, BUS_DMASYNC_POSTREAD);
   1706   1.1   msaitoh 		m_freem(rbuf->fmp);
   1707   1.1   msaitoh 		rbuf->fmp = NULL;
   1708   1.1   msaitoh 		rbuf->buf = NULL; /* rbuf->buf is part of fmp's chain */
   1709   1.1   msaitoh 	} else if (rbuf->buf) {
   1710  1.27   msaitoh 		bus_dmamap_sync(rxr->ptag->dt_dmat, rbuf->pmap, 0,
   1711  1.27   msaitoh 		    rbuf->buf->m_pkthdr.len, BUS_DMASYNC_POSTREAD);
   1712   1.1   msaitoh 		m_free(rbuf->buf);
   1713   1.1   msaitoh 		rbuf->buf = NULL;
   1714   1.1   msaitoh 	}
   1715   1.4   msaitoh 	ixgbe_dmamap_unload(rxr->ptag, rbuf->pmap);
   1716   1.1   msaitoh 
   1717   1.1   msaitoh 	rbuf->flags = 0;
   1718   1.1   msaitoh 
   1719   1.1   msaitoh 	return;
   1720  1.28   msaitoh } /* ixgbe_rx_discard */
   1721   1.1   msaitoh 
   1722   1.1   msaitoh 
   1723  1.28   msaitoh /************************************************************************
   1724  1.28   msaitoh  * ixgbe_rxeof
   1725   1.1   msaitoh  *
   1726  1.28   msaitoh  *   Executes in interrupt context. It replenishes the
   1727  1.28   msaitoh  *   mbufs in the descriptor and sends data which has
   1728  1.28   msaitoh  *   been dma'ed into host memory to upper layer.
   1729   1.1   msaitoh  *
   1730  1.28   msaitoh  *   Return TRUE for more work, FALSE for all clean.
   1731  1.28   msaitoh  ************************************************************************/
   1732   1.1   msaitoh bool
   1733   1.1   msaitoh ixgbe_rxeof(struct ix_queue *que)
   1734   1.1   msaitoh {
   1735   1.1   msaitoh 	struct adapter		*adapter = que->adapter;
   1736   1.1   msaitoh 	struct rx_ring		*rxr = que->rxr;
   1737   1.1   msaitoh 	struct ifnet		*ifp = adapter->ifp;
   1738   1.1   msaitoh #ifdef LRO
   1739   1.1   msaitoh 	struct lro_ctrl		*lro = &rxr->lro;
   1740   1.1   msaitoh #endif /* LRO */
   1741  1.28   msaitoh 	union ixgbe_adv_rx_desc	*cur;
   1742  1.28   msaitoh 	struct ixgbe_rx_buf	*rbuf, *nbuf;
   1743   1.1   msaitoh 	int			i, nextp, processed = 0;
   1744   1.1   msaitoh 	u32			staterr = 0;
   1745   1.7   msaitoh 	u32			count = adapter->rx_process_limit;
   1746   1.1   msaitoh #ifdef RSS
   1747   1.1   msaitoh 	u16			pkt_info;
   1748   1.1   msaitoh #endif
   1749   1.1   msaitoh 
   1750   1.1   msaitoh 	IXGBE_RX_LOCK(rxr);
   1751   1.1   msaitoh 
   1752   1.1   msaitoh #ifdef DEV_NETMAP
   1753  1.28   msaitoh 	if (adapter->feat_en & IXGBE_FEATURE_NETMAP) {
   1754  1.28   msaitoh 		/* Same as the txeof routine: wakeup clients on intr. */
   1755  1.28   msaitoh 		if (netmap_rx_irq(ifp, rxr->me, &processed)) {
   1756  1.28   msaitoh 			IXGBE_RX_UNLOCK(rxr);
   1757  1.28   msaitoh 			return (FALSE);
   1758  1.28   msaitoh 		}
   1759   1.1   msaitoh 	}
   1760   1.1   msaitoh #endif /* DEV_NETMAP */
   1761   1.1   msaitoh 
   1762   1.1   msaitoh 	for (i = rxr->next_to_check; count != 0;) {
   1763  1.28   msaitoh 		struct mbuf *sendmp, *mp;
   1764  1.28   msaitoh 		u32         rsc, ptype;
   1765  1.28   msaitoh 		u16         len;
   1766  1.28   msaitoh 		u16         vtag = 0;
   1767  1.28   msaitoh 		bool        eop;
   1768   1.1   msaitoh 
   1769   1.1   msaitoh 		/* Sync the ring. */
   1770   1.1   msaitoh 		ixgbe_dmamap_sync(rxr->rxdma.dma_tag, rxr->rxdma.dma_map,
   1771   1.1   msaitoh 		    BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE);
   1772   1.1   msaitoh 
   1773   1.1   msaitoh 		cur = &rxr->rx_base[i];
   1774   1.1   msaitoh 		staterr = le32toh(cur->wb.upper.status_error);
   1775   1.1   msaitoh #ifdef RSS
   1776   1.1   msaitoh 		pkt_info = le16toh(cur->wb.lower.lo_dword.hs_rss.pkt_info);
   1777   1.1   msaitoh #endif
   1778   1.1   msaitoh 
   1779   1.1   msaitoh 		if ((staterr & IXGBE_RXD_STAT_DD) == 0)
   1780   1.1   msaitoh 			break;
   1781   1.1   msaitoh 		if ((ifp->if_flags & IFF_RUNNING) == 0)
   1782   1.1   msaitoh 			break;
   1783   1.1   msaitoh 
   1784   1.1   msaitoh 		count--;
   1785   1.1   msaitoh 		sendmp = NULL;
   1786   1.1   msaitoh 		nbuf = NULL;
   1787   1.1   msaitoh 		rsc = 0;
   1788   1.1   msaitoh 		cur->wb.upper.status_error = 0;
   1789   1.1   msaitoh 		rbuf = &rxr->rx_buffers[i];
   1790   1.1   msaitoh 		mp = rbuf->buf;
   1791   1.1   msaitoh 
   1792   1.1   msaitoh 		len = le16toh(cur->wb.upper.length);
   1793   1.1   msaitoh 		ptype = le32toh(cur->wb.lower.lo_dword.data) &
   1794   1.1   msaitoh 		    IXGBE_RXDADV_PKTTYPE_MASK;
   1795   1.1   msaitoh 		eop = ((staterr & IXGBE_RXD_STAT_EOP) != 0);
   1796   1.1   msaitoh 
   1797   1.1   msaitoh 		/* Make sure bad packets are discarded */
   1798   1.1   msaitoh 		if (eop && (staterr & IXGBE_RXDADV_ERR_FRAME_ERR_MASK) != 0) {
   1799   1.3   msaitoh #if __FreeBSD_version >= 1100036
   1800  1.28   msaitoh 			if (adapter->feat_en & IXGBE_FEATURE_VF)
   1801   1.4   msaitoh 				if_inc_counter(ifp, IFCOUNTER_IERRORS, 1);
   1802   1.3   msaitoh #endif
   1803   1.1   msaitoh 			rxr->rx_discarded.ev_count++;
   1804   1.1   msaitoh 			ixgbe_rx_discard(rxr, i);
   1805   1.1   msaitoh 			goto next_desc;
   1806   1.1   msaitoh 		}
   1807   1.1   msaitoh 
   1808  1.27   msaitoh 		bus_dmamap_sync(rxr->ptag->dt_dmat, rbuf->pmap, 0,
   1809  1.27   msaitoh 		    rbuf->buf->m_pkthdr.len, BUS_DMASYNC_POSTREAD);
   1810  1.27   msaitoh 
   1811   1.1   msaitoh 		/*
   1812  1.28   msaitoh 		 * On 82599 which supports a hardware
   1813  1.28   msaitoh 		 * LRO (called HW RSC), packets need
   1814  1.28   msaitoh 		 * not be fragmented across sequential
   1815  1.28   msaitoh 		 * descriptors, rather the next descriptor
   1816  1.28   msaitoh 		 * is indicated in bits of the descriptor.
   1817  1.28   msaitoh 		 * This also means that we might proceses
   1818  1.28   msaitoh 		 * more than one packet at a time, something
   1819  1.28   msaitoh 		 * that has never been true before, it
   1820  1.28   msaitoh 		 * required eliminating global chain pointers
   1821  1.28   msaitoh 		 * in favor of what we are doing here.  -jfv
   1822  1.28   msaitoh 		 */
   1823   1.1   msaitoh 		if (!eop) {
   1824   1.1   msaitoh 			/*
   1825  1.28   msaitoh 			 * Figure out the next descriptor
   1826  1.28   msaitoh 			 * of this frame.
   1827  1.28   msaitoh 			 */
   1828   1.1   msaitoh 			if (rxr->hw_rsc == TRUE) {
   1829   1.1   msaitoh 				rsc = ixgbe_rsc_count(cur);
   1830   1.1   msaitoh 				rxr->rsc_num += (rsc - 1);
   1831   1.1   msaitoh 			}
   1832   1.1   msaitoh 			if (rsc) { /* Get hardware index */
   1833  1.28   msaitoh 				nextp = ((staterr & IXGBE_RXDADV_NEXTP_MASK) >>
   1834   1.1   msaitoh 				    IXGBE_RXDADV_NEXTP_SHIFT);
   1835   1.1   msaitoh 			} else { /* Just sequential */
   1836   1.1   msaitoh 				nextp = i + 1;
   1837   1.1   msaitoh 				if (nextp == adapter->num_rx_desc)
   1838   1.1   msaitoh 					nextp = 0;
   1839   1.1   msaitoh 			}
   1840   1.1   msaitoh 			nbuf = &rxr->rx_buffers[nextp];
   1841   1.1   msaitoh 			prefetch(nbuf);
   1842   1.1   msaitoh 		}
   1843   1.1   msaitoh 		/*
   1844  1.28   msaitoh 		 * Rather than using the fmp/lmp global pointers
   1845  1.28   msaitoh 		 * we now keep the head of a packet chain in the
   1846  1.28   msaitoh 		 * buffer struct and pass this along from one
   1847  1.28   msaitoh 		 * descriptor to the next, until we get EOP.
   1848  1.28   msaitoh 		 */
   1849   1.1   msaitoh 		mp->m_len = len;
   1850   1.1   msaitoh 		/*
   1851  1.28   msaitoh 		 * See if there is a stored head
   1852  1.28   msaitoh 		 * that determines what we are
   1853  1.28   msaitoh 		 */
   1854   1.1   msaitoh 		sendmp = rbuf->fmp;
   1855   1.1   msaitoh 		if (sendmp != NULL) {  /* secondary frag */
   1856   1.1   msaitoh 			rbuf->buf = rbuf->fmp = NULL;
   1857   1.1   msaitoh 			mp->m_flags &= ~M_PKTHDR;
   1858   1.1   msaitoh 			sendmp->m_pkthdr.len += mp->m_len;
   1859   1.1   msaitoh 		} else {
   1860   1.1   msaitoh 			/*
   1861   1.1   msaitoh 			 * Optimize.  This might be a small packet,
   1862   1.1   msaitoh 			 * maybe just a TCP ACK.  Do a fast copy that
   1863   1.1   msaitoh 			 * is cache aligned into a new mbuf, and
   1864   1.1   msaitoh 			 * leave the old mbuf+cluster for re-use.
   1865   1.1   msaitoh 			 */
   1866   1.1   msaitoh 			if (eop && len <= IXGBE_RX_COPY_LEN) {
   1867   1.1   msaitoh 				sendmp = m_gethdr(M_NOWAIT, MT_DATA);
   1868   1.1   msaitoh 				if (sendmp != NULL) {
   1869  1.28   msaitoh 					sendmp->m_data += IXGBE_RX_COPY_ALIGN;
   1870  1.28   msaitoh 					ixgbe_bcopy(mp->m_data, sendmp->m_data,
   1871  1.28   msaitoh 					    len);
   1872   1.1   msaitoh 					sendmp->m_len = len;
   1873   1.1   msaitoh 					rxr->rx_copies.ev_count++;
   1874   1.1   msaitoh 					rbuf->flags |= IXGBE_RX_COPY;
   1875   1.1   msaitoh 				}
   1876   1.1   msaitoh 			}
   1877   1.1   msaitoh 			if (sendmp == NULL) {
   1878   1.1   msaitoh 				rbuf->buf = rbuf->fmp = NULL;
   1879   1.1   msaitoh 				sendmp = mp;
   1880   1.1   msaitoh 			}
   1881   1.1   msaitoh 
   1882   1.1   msaitoh 			/* first desc of a non-ps chain */
   1883   1.1   msaitoh 			sendmp->m_flags |= M_PKTHDR;
   1884   1.1   msaitoh 			sendmp->m_pkthdr.len = mp->m_len;
   1885   1.1   msaitoh 		}
   1886   1.1   msaitoh 		++processed;
   1887   1.1   msaitoh 
   1888   1.1   msaitoh 		/* Pass the head pointer on */
   1889   1.1   msaitoh 		if (eop == 0) {
   1890   1.1   msaitoh 			nbuf->fmp = sendmp;
   1891   1.1   msaitoh 			sendmp = NULL;
   1892   1.1   msaitoh 			mp->m_next = nbuf->buf;
   1893   1.1   msaitoh 		} else { /* Sending this frame */
   1894   1.1   msaitoh 			m_set_rcvif(sendmp, ifp);
   1895  1.31   msaitoh 			++rxr->packets;
   1896   1.1   msaitoh 			rxr->rx_packets.ev_count++;
   1897   1.1   msaitoh 			/* capture data for AIM */
   1898   1.1   msaitoh 			rxr->bytes += sendmp->m_pkthdr.len;
   1899   1.1   msaitoh 			rxr->rx_bytes.ev_count += sendmp->m_pkthdr.len;
   1900   1.1   msaitoh 			/* Process vlan info */
   1901  1.28   msaitoh 			if ((rxr->vtag_strip) && (staterr & IXGBE_RXD_STAT_VP))
   1902   1.1   msaitoh 				vtag = le16toh(cur->wb.upper.vlan);
   1903   1.1   msaitoh 			if (vtag) {
   1904  1.29  knakahar 				vlan_set_tag(sendmp, vtag);
   1905   1.1   msaitoh 			}
   1906   1.1   msaitoh 			if ((ifp->if_capenable & IFCAP_RXCSUM) != 0) {
   1907   1.1   msaitoh 				ixgbe_rx_checksum(staterr, sendmp, ptype,
   1908   1.3   msaitoh 				   &adapter->stats.pf);
   1909   1.1   msaitoh 			}
   1910   1.8   msaitoh 
   1911   1.6   msaitoh #if 0 /* FreeBSD */
   1912  1.28   msaitoh 			/*
   1913  1.28   msaitoh 			 * In case of multiqueue, we have RXCSUM.PCSD bit set
   1914  1.28   msaitoh 			 * and never cleared. This means we have RSS hash
   1915  1.28   msaitoh 			 * available to be used.
   1916  1.28   msaitoh 			 */
   1917  1.28   msaitoh 			if (adapter->num_queues > 1) {
   1918  1.28   msaitoh 				sendmp->m_pkthdr.flowid =
   1919  1.28   msaitoh 				    le32toh(cur->wb.lower.hi_dword.rss);
   1920  1.28   msaitoh 				switch (pkt_info & IXGBE_RXDADV_RSSTYPE_MASK) {
   1921  1.28   msaitoh 				    case IXGBE_RXDADV_RSSTYPE_IPV4:
   1922  1.28   msaitoh 					M_HASHTYPE_SET(sendmp,
   1923  1.28   msaitoh 					    M_HASHTYPE_RSS_IPV4);
   1924  1.28   msaitoh 					break;
   1925  1.28   msaitoh 				    case IXGBE_RXDADV_RSSTYPE_IPV4_TCP:
   1926  1.28   msaitoh 					M_HASHTYPE_SET(sendmp,
   1927  1.28   msaitoh 					    M_HASHTYPE_RSS_TCP_IPV4);
   1928  1.28   msaitoh 					break;
   1929  1.28   msaitoh 				    case IXGBE_RXDADV_RSSTYPE_IPV6:
   1930  1.28   msaitoh 					M_HASHTYPE_SET(sendmp,
   1931  1.28   msaitoh 					    M_HASHTYPE_RSS_IPV6);
   1932  1.28   msaitoh 					break;
   1933  1.28   msaitoh 				    case IXGBE_RXDADV_RSSTYPE_IPV6_TCP:
   1934  1.28   msaitoh 					M_HASHTYPE_SET(sendmp,
   1935  1.28   msaitoh 					    M_HASHTYPE_RSS_TCP_IPV6);
   1936  1.28   msaitoh 					break;
   1937  1.28   msaitoh 				    case IXGBE_RXDADV_RSSTYPE_IPV6_EX:
   1938  1.28   msaitoh 					M_HASHTYPE_SET(sendmp,
   1939  1.28   msaitoh 					    M_HASHTYPE_RSS_IPV6_EX);
   1940  1.28   msaitoh 					break;
   1941  1.28   msaitoh 				    case IXGBE_RXDADV_RSSTYPE_IPV6_TCP_EX:
   1942  1.28   msaitoh 					M_HASHTYPE_SET(sendmp,
   1943  1.28   msaitoh 					    M_HASHTYPE_RSS_TCP_IPV6_EX);
   1944  1.28   msaitoh 					break;
   1945   1.6   msaitoh #if __FreeBSD_version > 1100000
   1946  1.28   msaitoh 				    case IXGBE_RXDADV_RSSTYPE_IPV4_UDP:
   1947  1.28   msaitoh 					M_HASHTYPE_SET(sendmp,
   1948  1.28   msaitoh 					    M_HASHTYPE_RSS_UDP_IPV4);
   1949  1.28   msaitoh 					break;
   1950  1.28   msaitoh 				    case IXGBE_RXDADV_RSSTYPE_IPV6_UDP:
   1951  1.28   msaitoh 					M_HASHTYPE_SET(sendmp,
   1952  1.28   msaitoh 					    M_HASHTYPE_RSS_UDP_IPV6);
   1953  1.28   msaitoh 					break;
   1954  1.28   msaitoh 				    case IXGBE_RXDADV_RSSTYPE_IPV6_UDP_EX:
   1955  1.28   msaitoh 					M_HASHTYPE_SET(sendmp,
   1956  1.28   msaitoh 					    M_HASHTYPE_RSS_UDP_IPV6_EX);
   1957  1.28   msaitoh 					break;
   1958  1.28   msaitoh #endif
   1959  1.28   msaitoh 				    default:
   1960  1.28   msaitoh 					M_HASHTYPE_SET(sendmp,
   1961  1.28   msaitoh 					    M_HASHTYPE_OPAQUE_HASH);
   1962  1.28   msaitoh 				}
   1963  1.28   msaitoh 			} else {
   1964  1.28   msaitoh 				sendmp->m_pkthdr.flowid = que->msix;
   1965   1.1   msaitoh 				M_HASHTYPE_SET(sendmp, M_HASHTYPE_OPAQUE);
   1966   1.1   msaitoh 			}
   1967   1.8   msaitoh #endif
   1968   1.1   msaitoh 		}
   1969   1.1   msaitoh next_desc:
   1970   1.1   msaitoh 		ixgbe_dmamap_sync(rxr->rxdma.dma_tag, rxr->rxdma.dma_map,
   1971   1.1   msaitoh 		    BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
   1972   1.1   msaitoh 
   1973   1.1   msaitoh 		/* Advance our pointers to the next descriptor. */
   1974   1.1   msaitoh 		if (++i == rxr->num_desc)
   1975   1.1   msaitoh 			i = 0;
   1976   1.1   msaitoh 
   1977   1.1   msaitoh 		/* Now send to the stack or do LRO */
   1978   1.1   msaitoh 		if (sendmp != NULL) {
   1979   1.1   msaitoh 			rxr->next_to_check = i;
   1980  1.28   msaitoh 			IXGBE_RX_UNLOCK(rxr);
   1981   1.1   msaitoh 			ixgbe_rx_input(rxr, ifp, sendmp, ptype);
   1982  1.28   msaitoh 			IXGBE_RX_LOCK(rxr);
   1983   1.1   msaitoh 			i = rxr->next_to_check;
   1984   1.1   msaitoh 		}
   1985   1.1   msaitoh 
   1986  1.28   msaitoh 		/* Every 8 descriptors we go to refresh mbufs */
   1987   1.1   msaitoh 		if (processed == 8) {
   1988   1.1   msaitoh 			ixgbe_refresh_mbufs(rxr, i);
   1989   1.1   msaitoh 			processed = 0;
   1990   1.1   msaitoh 		}
   1991   1.1   msaitoh 	}
   1992   1.1   msaitoh 
   1993   1.1   msaitoh 	/* Refresh any remaining buf structs */
   1994   1.1   msaitoh 	if (ixgbe_rx_unrefreshed(rxr))
   1995   1.1   msaitoh 		ixgbe_refresh_mbufs(rxr, i);
   1996   1.1   msaitoh 
   1997   1.1   msaitoh 	rxr->next_to_check = i;
   1998   1.1   msaitoh 
   1999  1.28   msaitoh 	IXGBE_RX_UNLOCK(rxr);
   2000  1.28   msaitoh 
   2001   1.1   msaitoh #ifdef LRO
   2002   1.1   msaitoh 	/*
   2003   1.1   msaitoh 	 * Flush any outstanding LRO work
   2004   1.1   msaitoh 	 */
   2005  1.10   msaitoh 	tcp_lro_flush_all(lro);
   2006   1.1   msaitoh #endif /* LRO */
   2007   1.1   msaitoh 
   2008   1.1   msaitoh 	/*
   2009  1.28   msaitoh 	 * Still have cleaning to do?
   2010  1.28   msaitoh 	 */
   2011   1.1   msaitoh 	if ((staterr & IXGBE_RXD_STAT_DD) != 0)
   2012  1.28   msaitoh 		return (TRUE);
   2013  1.28   msaitoh 
   2014  1.28   msaitoh 	return (FALSE);
   2015  1.28   msaitoh } /* ixgbe_rxeof */
   2016   1.1   msaitoh 
   2017   1.1   msaitoh 
   2018  1.28   msaitoh /************************************************************************
   2019  1.28   msaitoh  * ixgbe_rx_checksum
   2020   1.1   msaitoh  *
   2021  1.28   msaitoh  *   Verify that the hardware indicated that the checksum is valid.
   2022  1.28   msaitoh  *   Inform the stack about the status of checksum so that stack
   2023  1.28   msaitoh  *   doesn't spend time verifying the checksum.
   2024  1.28   msaitoh  ************************************************************************/
   2025   1.1   msaitoh static void
   2026   1.1   msaitoh ixgbe_rx_checksum(u32 staterr, struct mbuf * mp, u32 ptype,
   2027   1.1   msaitoh     struct ixgbe_hw_stats *stats)
   2028   1.1   msaitoh {
   2029  1.28   msaitoh 	u16  status = (u16)staterr;
   2030  1.28   msaitoh 	u8   errors = (u8)(staterr >> 24);
   2031   1.1   msaitoh #if 0
   2032  1.28   msaitoh 	bool sctp = false;
   2033   1.1   msaitoh 
   2034   1.1   msaitoh 	if ((ptype & IXGBE_RXDADV_PKTTYPE_ETQF) == 0 &&
   2035   1.1   msaitoh 	    (ptype & IXGBE_RXDADV_PKTTYPE_SCTP) != 0)
   2036   1.8   msaitoh 		sctp = true;
   2037   1.1   msaitoh #endif
   2038   1.1   msaitoh 
   2039   1.8   msaitoh 	/* IPv4 checksum */
   2040   1.1   msaitoh 	if (status & IXGBE_RXD_STAT_IPCS) {
   2041   1.1   msaitoh 		stats->ipcs.ev_count++;
   2042   1.1   msaitoh 		if (!(errors & IXGBE_RXD_ERR_IPE)) {
   2043   1.1   msaitoh 			/* IP Checksum Good */
   2044   1.1   msaitoh 			mp->m_pkthdr.csum_flags = M_CSUM_IPv4;
   2045   1.1   msaitoh 		} else {
   2046   1.1   msaitoh 			stats->ipcs_bad.ev_count++;
   2047   1.1   msaitoh 			mp->m_pkthdr.csum_flags = M_CSUM_IPv4|M_CSUM_IPv4_BAD;
   2048   1.1   msaitoh 		}
   2049   1.1   msaitoh 	}
   2050   1.8   msaitoh 	/* TCP/UDP/SCTP checksum */
   2051   1.1   msaitoh 	if (status & IXGBE_RXD_STAT_L4CS) {
   2052   1.1   msaitoh 		stats->l4cs.ev_count++;
   2053   1.1   msaitoh 		int type = M_CSUM_TCPv4|M_CSUM_TCPv6|M_CSUM_UDPv4|M_CSUM_UDPv6;
   2054   1.1   msaitoh 		if (!(errors & IXGBE_RXD_ERR_TCPE)) {
   2055   1.1   msaitoh 			mp->m_pkthdr.csum_flags |= type;
   2056   1.1   msaitoh 		} else {
   2057   1.1   msaitoh 			stats->l4cs_bad.ev_count++;
   2058   1.1   msaitoh 			mp->m_pkthdr.csum_flags |= type | M_CSUM_TCP_UDP_BAD;
   2059   1.1   msaitoh 		}
   2060   1.1   msaitoh 	}
   2061  1.28   msaitoh } /* ixgbe_rx_checksum */
   2062   1.1   msaitoh 
   2063  1.28   msaitoh /************************************************************************
   2064  1.28   msaitoh  * ixgbe_dma_malloc
   2065  1.28   msaitoh  ************************************************************************/
   2066   1.1   msaitoh int
   2067   1.1   msaitoh ixgbe_dma_malloc(struct adapter *adapter, const bus_size_t size,
   2068   1.1   msaitoh 		struct ixgbe_dma_alloc *dma, const int mapflags)
   2069   1.1   msaitoh {
   2070   1.1   msaitoh 	device_t dev = adapter->dev;
   2071  1.28   msaitoh 	int      r, rsegs;
   2072   1.1   msaitoh 
   2073  1.28   msaitoh 	r = ixgbe_dma_tag_create(
   2074  1.28   msaitoh 	     /*      parent */ adapter->osdep.dmat,
   2075  1.28   msaitoh 	     /*   alignment */ DBA_ALIGN,
   2076  1.28   msaitoh 	     /*      bounds */ 0,
   2077  1.28   msaitoh 	     /*     maxsize */ size,
   2078  1.28   msaitoh 	     /*   nsegments */ 1,
   2079  1.28   msaitoh 	     /*  maxsegsize */ size,
   2080  1.28   msaitoh 	     /*       flags */ BUS_DMA_ALLOCNOW,
   2081   1.1   msaitoh 			       &dma->dma_tag);
   2082   1.1   msaitoh 	if (r != 0) {
   2083   1.1   msaitoh 		aprint_error_dev(dev,
   2084   1.1   msaitoh 		    "%s: ixgbe_dma_tag_create failed; error %d\n", __func__, r);
   2085   1.1   msaitoh 		goto fail_0;
   2086   1.1   msaitoh 	}
   2087   1.1   msaitoh 
   2088  1.28   msaitoh 	r = bus_dmamem_alloc(dma->dma_tag->dt_dmat, size,
   2089  1.28   msaitoh 	    dma->dma_tag->dt_alignment, dma->dma_tag->dt_boundary,
   2090  1.28   msaitoh 	    &dma->dma_seg, 1, &rsegs, BUS_DMA_NOWAIT);
   2091   1.1   msaitoh 	if (r != 0) {
   2092   1.1   msaitoh 		aprint_error_dev(dev,
   2093   1.1   msaitoh 		    "%s: bus_dmamem_alloc failed; error %d\n", __func__, r);
   2094   1.1   msaitoh 		goto fail_1;
   2095   1.1   msaitoh 	}
   2096   1.1   msaitoh 
   2097   1.1   msaitoh 	r = bus_dmamem_map(dma->dma_tag->dt_dmat, &dma->dma_seg, rsegs,
   2098   1.1   msaitoh 	    size, &dma->dma_vaddr, BUS_DMA_NOWAIT);
   2099   1.1   msaitoh 	if (r != 0) {
   2100   1.1   msaitoh 		aprint_error_dev(dev, "%s: bus_dmamem_map failed; error %d\n",
   2101   1.1   msaitoh 		    __func__, r);
   2102   1.1   msaitoh 		goto fail_2;
   2103   1.1   msaitoh 	}
   2104   1.1   msaitoh 
   2105   1.1   msaitoh 	r = ixgbe_dmamap_create(dma->dma_tag, 0, &dma->dma_map);
   2106   1.1   msaitoh 	if (r != 0) {
   2107   1.1   msaitoh 		aprint_error_dev(dev, "%s: bus_dmamem_map failed; error %d\n",
   2108   1.1   msaitoh 		    __func__, r);
   2109   1.1   msaitoh 		goto fail_3;
   2110   1.1   msaitoh 	}
   2111   1.1   msaitoh 
   2112  1.28   msaitoh 	r = bus_dmamap_load(dma->dma_tag->dt_dmat, dma->dma_map,
   2113  1.28   msaitoh 	    dma->dma_vaddr, size, NULL, mapflags | BUS_DMA_NOWAIT);
   2114   1.1   msaitoh 	if (r != 0) {
   2115   1.1   msaitoh 		aprint_error_dev(dev, "%s: bus_dmamap_load failed; error %d\n",
   2116   1.1   msaitoh 		    __func__, r);
   2117   1.1   msaitoh 		goto fail_4;
   2118   1.1   msaitoh 	}
   2119   1.1   msaitoh 	dma->dma_paddr = dma->dma_map->dm_segs[0].ds_addr;
   2120   1.1   msaitoh 	dma->dma_size = size;
   2121   1.1   msaitoh 	return 0;
   2122   1.1   msaitoh fail_4:
   2123   1.1   msaitoh 	ixgbe_dmamap_destroy(dma->dma_tag, dma->dma_map);
   2124   1.1   msaitoh fail_3:
   2125   1.1   msaitoh 	bus_dmamem_unmap(dma->dma_tag->dt_dmat, dma->dma_vaddr, size);
   2126   1.1   msaitoh fail_2:
   2127   1.1   msaitoh 	bus_dmamem_free(dma->dma_tag->dt_dmat, &dma->dma_seg, rsegs);
   2128   1.1   msaitoh fail_1:
   2129   1.1   msaitoh 	ixgbe_dma_tag_destroy(dma->dma_tag);
   2130   1.1   msaitoh fail_0:
   2131   1.1   msaitoh 
   2132  1.28   msaitoh 	return (r);
   2133  1.28   msaitoh } /* ixgbe_dma_malloc */
   2134  1.28   msaitoh 
   2135  1.28   msaitoh /************************************************************************
   2136  1.28   msaitoh  * ixgbe_dma_free
   2137  1.28   msaitoh  ************************************************************************/
   2138   1.3   msaitoh void
   2139   1.1   msaitoh ixgbe_dma_free(struct adapter *adapter, struct ixgbe_dma_alloc *dma)
   2140   1.1   msaitoh {
   2141   1.1   msaitoh 	bus_dmamap_sync(dma->dma_tag->dt_dmat, dma->dma_map, 0, dma->dma_size,
   2142   1.1   msaitoh 	    BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE);
   2143   1.1   msaitoh 	ixgbe_dmamap_unload(dma->dma_tag, dma->dma_map);
   2144   1.1   msaitoh 	bus_dmamem_free(dma->dma_tag->dt_dmat, &dma->dma_seg, 1);
   2145   1.1   msaitoh 	ixgbe_dma_tag_destroy(dma->dma_tag);
   2146  1.28   msaitoh } /* ixgbe_dma_free */
   2147   1.1   msaitoh 
   2148   1.1   msaitoh 
   2149  1.28   msaitoh /************************************************************************
   2150  1.28   msaitoh  * ixgbe_allocate_queues
   2151   1.1   msaitoh  *
   2152  1.28   msaitoh  *   Allocate memory for the transmit and receive rings, and then
   2153  1.28   msaitoh  *   the descriptors associated with each, called only once at attach.
   2154  1.28   msaitoh  ************************************************************************/
   2155   1.1   msaitoh int
   2156   1.1   msaitoh ixgbe_allocate_queues(struct adapter *adapter)
   2157   1.1   msaitoh {
   2158   1.1   msaitoh 	device_t	dev = adapter->dev;
   2159   1.1   msaitoh 	struct ix_queue	*que;
   2160   1.1   msaitoh 	struct tx_ring	*txr;
   2161   1.1   msaitoh 	struct rx_ring	*rxr;
   2162  1.28   msaitoh 	int             rsize, tsize, error = IXGBE_SUCCESS;
   2163  1.28   msaitoh 	int             txconf = 0, rxconf = 0;
   2164   1.1   msaitoh 
   2165  1.28   msaitoh 	/* First, allocate the top level queue structs */
   2166  1.28   msaitoh 	adapter->queues = (struct ix_queue *)malloc(sizeof(struct ix_queue) *
   2167  1.28   msaitoh             adapter->num_queues, M_DEVBUF, M_NOWAIT | M_ZERO);
   2168  1.28   msaitoh         if (adapter->queues == NULL) {
   2169  1.28   msaitoh 		aprint_error_dev(dev, "Unable to allocate queue memory\n");
   2170   1.1   msaitoh                 error = ENOMEM;
   2171   1.1   msaitoh                 goto fail;
   2172   1.1   msaitoh         }
   2173   1.1   msaitoh 
   2174  1.28   msaitoh 	/* Second, allocate the TX ring struct memory */
   2175  1.28   msaitoh 	adapter->tx_rings = (struct tx_ring *)malloc(sizeof(struct tx_ring) *
   2176  1.28   msaitoh 	    adapter->num_queues, M_DEVBUF, M_NOWAIT | M_ZERO);
   2177  1.28   msaitoh 	if (adapter->tx_rings == NULL) {
   2178   1.1   msaitoh 		aprint_error_dev(dev, "Unable to allocate TX ring memory\n");
   2179   1.1   msaitoh 		error = ENOMEM;
   2180   1.1   msaitoh 		goto tx_fail;
   2181   1.1   msaitoh 	}
   2182   1.1   msaitoh 
   2183  1.28   msaitoh 	/* Third, allocate the RX ring */
   2184  1.28   msaitoh 	adapter->rx_rings = (struct rx_ring *)malloc(sizeof(struct rx_ring) *
   2185  1.28   msaitoh 	    adapter->num_queues, M_DEVBUF, M_NOWAIT | M_ZERO);
   2186  1.28   msaitoh 	if (adapter->rx_rings == NULL) {
   2187   1.1   msaitoh 		aprint_error_dev(dev, "Unable to allocate RX ring memory\n");
   2188   1.1   msaitoh 		error = ENOMEM;
   2189   1.1   msaitoh 		goto rx_fail;
   2190   1.1   msaitoh 	}
   2191   1.1   msaitoh 
   2192   1.1   msaitoh 	/* For the ring itself */
   2193  1.28   msaitoh 	tsize = roundup2(adapter->num_tx_desc * sizeof(union ixgbe_adv_tx_desc),
   2194  1.28   msaitoh 	    DBA_ALIGN);
   2195   1.1   msaitoh 
   2196   1.1   msaitoh 	/*
   2197   1.1   msaitoh 	 * Now set up the TX queues, txconf is needed to handle the
   2198   1.1   msaitoh 	 * possibility that things fail midcourse and we need to
   2199   1.1   msaitoh 	 * undo memory gracefully
   2200  1.28   msaitoh 	 */
   2201   1.1   msaitoh 	for (int i = 0; i < adapter->num_queues; i++, txconf++) {
   2202   1.1   msaitoh 		/* Set up some basics */
   2203   1.1   msaitoh 		txr = &adapter->tx_rings[i];
   2204   1.1   msaitoh 		txr->adapter = adapter;
   2205  1.28   msaitoh 		txr->txr_interq = NULL;
   2206  1.28   msaitoh 		/* In case SR-IOV is enabled, align the index properly */
   2207   1.5   msaitoh #ifdef PCI_IOV
   2208  1.28   msaitoh 		txr->me = ixgbe_vf_que_index(adapter->iov_mode, adapter->pool,
   2209  1.28   msaitoh 		    i);
   2210   1.5   msaitoh #else
   2211   1.1   msaitoh 		txr->me = i;
   2212   1.5   msaitoh #endif
   2213   1.1   msaitoh 		txr->num_desc = adapter->num_tx_desc;
   2214   1.1   msaitoh 
   2215   1.1   msaitoh 		/* Initialize the TX side lock */
   2216   1.1   msaitoh 		snprintf(txr->mtx_name, sizeof(txr->mtx_name), "%s:tx(%d)",
   2217   1.1   msaitoh 		    device_xname(dev), txr->me);
   2218   1.1   msaitoh 		mutex_init(&txr->tx_mtx, MUTEX_DEFAULT, IPL_NET);
   2219   1.1   msaitoh 
   2220  1.28   msaitoh 		if (ixgbe_dma_malloc(adapter, tsize, &txr->txdma,
   2221  1.28   msaitoh 		    BUS_DMA_NOWAIT)) {
   2222   1.1   msaitoh 			aprint_error_dev(dev,
   2223   1.1   msaitoh 			    "Unable to allocate TX Descriptor memory\n");
   2224   1.1   msaitoh 			error = ENOMEM;
   2225   1.1   msaitoh 			goto err_tx_desc;
   2226   1.1   msaitoh 		}
   2227   1.1   msaitoh 		txr->tx_base = (union ixgbe_adv_tx_desc *)txr->txdma.dma_vaddr;
   2228   1.1   msaitoh 		bzero((void *)txr->tx_base, tsize);
   2229   1.1   msaitoh 
   2230  1.28   msaitoh 		/* Now allocate transmit buffers for the ring */
   2231  1.28   msaitoh 		if (ixgbe_allocate_transmit_buffers(txr)) {
   2232   1.1   msaitoh 			aprint_error_dev(dev,
   2233   1.1   msaitoh 			    "Critical Failure setting up transmit buffers\n");
   2234   1.1   msaitoh 			error = ENOMEM;
   2235   1.1   msaitoh 			goto err_tx_desc;
   2236   1.1   msaitoh         	}
   2237  1.28   msaitoh 		if (!(adapter->feat_en & IXGBE_FEATURE_LEGACY_TX)) {
   2238  1.28   msaitoh 			/* Allocate a buf ring */
   2239  1.28   msaitoh 			txr->txr_interq = pcq_create(IXGBE_BR_SIZE, KM_SLEEP);
   2240  1.28   msaitoh 			if (txr->txr_interq == NULL) {
   2241  1.28   msaitoh 				aprint_error_dev(dev,
   2242  1.28   msaitoh 				    "Critical Failure setting up buf ring\n");
   2243  1.28   msaitoh 				error = ENOMEM;
   2244  1.28   msaitoh 				goto err_tx_desc;
   2245  1.28   msaitoh 			}
   2246  1.28   msaitoh 		}
   2247   1.1   msaitoh 	}
   2248   1.1   msaitoh 
   2249   1.1   msaitoh 	/*
   2250   1.1   msaitoh 	 * Next the RX queues...
   2251   1.1   msaitoh 	 */
   2252  1.28   msaitoh 	rsize = roundup2(adapter->num_rx_desc * sizeof(union ixgbe_adv_rx_desc),
   2253  1.28   msaitoh 	    DBA_ALIGN);
   2254   1.1   msaitoh 	for (int i = 0; i < adapter->num_queues; i++, rxconf++) {
   2255   1.1   msaitoh 		rxr = &adapter->rx_rings[i];
   2256   1.1   msaitoh 		/* Set up some basics */
   2257   1.1   msaitoh 		rxr->adapter = adapter;
   2258   1.5   msaitoh #ifdef PCI_IOV
   2259  1.28   msaitoh 		/* In case SR-IOV is enabled, align the index properly */
   2260  1.28   msaitoh 		rxr->me = ixgbe_vf_que_index(adapter->iov_mode, adapter->pool,
   2261  1.28   msaitoh 		    i);
   2262   1.5   msaitoh #else
   2263   1.1   msaitoh 		rxr->me = i;
   2264   1.5   msaitoh #endif
   2265   1.1   msaitoh 		rxr->num_desc = adapter->num_rx_desc;
   2266   1.1   msaitoh 
   2267   1.1   msaitoh 		/* Initialize the RX side lock */
   2268   1.1   msaitoh 		snprintf(rxr->mtx_name, sizeof(rxr->mtx_name), "%s:rx(%d)",
   2269   1.1   msaitoh 		    device_xname(dev), rxr->me);
   2270   1.1   msaitoh 		mutex_init(&rxr->rx_mtx, MUTEX_DEFAULT, IPL_NET);
   2271   1.1   msaitoh 
   2272  1.28   msaitoh 		if (ixgbe_dma_malloc(adapter, rsize, &rxr->rxdma,
   2273  1.28   msaitoh 		    BUS_DMA_NOWAIT)) {
   2274   1.1   msaitoh 			aprint_error_dev(dev,
   2275   1.1   msaitoh 			    "Unable to allocate RxDescriptor memory\n");
   2276   1.1   msaitoh 			error = ENOMEM;
   2277   1.1   msaitoh 			goto err_rx_desc;
   2278   1.1   msaitoh 		}
   2279   1.1   msaitoh 		rxr->rx_base = (union ixgbe_adv_rx_desc *)rxr->rxdma.dma_vaddr;
   2280   1.1   msaitoh 		bzero((void *)rxr->rx_base, rsize);
   2281   1.1   msaitoh 
   2282  1.28   msaitoh 		/* Allocate receive buffers for the ring */
   2283   1.1   msaitoh 		if (ixgbe_allocate_receive_buffers(rxr)) {
   2284   1.1   msaitoh 			aprint_error_dev(dev,
   2285   1.1   msaitoh 			    "Critical Failure setting up receive buffers\n");
   2286   1.1   msaitoh 			error = ENOMEM;
   2287   1.1   msaitoh 			goto err_rx_desc;
   2288   1.1   msaitoh 		}
   2289   1.1   msaitoh 	}
   2290   1.1   msaitoh 
   2291   1.1   msaitoh 	/*
   2292  1.28   msaitoh 	 * Finally set up the queue holding structs
   2293  1.28   msaitoh 	 */
   2294   1.1   msaitoh 	for (int i = 0; i < adapter->num_queues; i++) {
   2295   1.1   msaitoh 		que = &adapter->queues[i];
   2296   1.1   msaitoh 		que->adapter = adapter;
   2297   1.3   msaitoh 		que->me = i;
   2298   1.1   msaitoh 		que->txr = &adapter->tx_rings[i];
   2299   1.1   msaitoh 		que->rxr = &adapter->rx_rings[i];
   2300  1.33  knakahar 
   2301  1.37  knakahar 		mutex_init(&que->dc_mtx, MUTEX_DEFAULT, IPL_NET);
   2302  1.37  knakahar 		que->disabled_count = 0;
   2303   1.1   msaitoh 	}
   2304   1.1   msaitoh 
   2305   1.1   msaitoh 	return (0);
   2306   1.1   msaitoh 
   2307   1.1   msaitoh err_rx_desc:
   2308   1.1   msaitoh 	for (rxr = adapter->rx_rings; rxconf > 0; rxr++, rxconf--)
   2309   1.1   msaitoh 		ixgbe_dma_free(adapter, &rxr->rxdma);
   2310   1.1   msaitoh err_tx_desc:
   2311   1.1   msaitoh 	for (txr = adapter->tx_rings; txconf > 0; txr++, txconf--)
   2312   1.1   msaitoh 		ixgbe_dma_free(adapter, &txr->txdma);
   2313   1.1   msaitoh 	free(adapter->rx_rings, M_DEVBUF);
   2314   1.1   msaitoh rx_fail:
   2315   1.1   msaitoh 	free(adapter->tx_rings, M_DEVBUF);
   2316   1.1   msaitoh tx_fail:
   2317   1.1   msaitoh 	free(adapter->queues, M_DEVBUF);
   2318   1.1   msaitoh fail:
   2319   1.1   msaitoh 	return (error);
   2320  1.28   msaitoh } /* ixgbe_allocate_queues */
   2321