New upstream version 17.11.1
[deb_dpdk.git] / drivers / net / enic / enic_rxtx.c
1 /* Copyright 2008-2016 Cisco Systems, Inc.  All rights reserved.
2  * Copyright 2007 Nuova Systems, Inc.  All rights reserved.
3  *
4  * Copyright (c) 2014, Cisco Systems, Inc.
5  * All rights reserved.
6  *
7  * Redistribution and use in source and binary forms, with or without
8  * modification, are permitted provided that the following conditions
9  * are met:
10  *
11  * 1. Redistributions of source code must retain the above copyright
12  * notice, this list of conditions and the following disclaimer.
13  *
14  * 2. Redistributions in binary form must reproduce the above copyright
15  * notice, this list of conditions and the following disclaimer in
16  * the documentation and/or other materials provided with the
17  * distribution.
18  *
19  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
20  * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
21  * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
22  * FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
23  * COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
24  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
25  * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
26  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
27  * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
28  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
29  * ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
30  * POSSIBILITY OF SUCH DAMAGE.
31  */
32
33 #include <rte_mbuf.h>
34 #include <rte_ethdev.h>
35 #include <rte_prefetch.h>
36
37 #include "enic_compat.h"
38 #include "rq_enet_desc.h"
39 #include "enic.h"
40 #include <rte_ether.h>
41 #include <rte_ip.h>
42 #include <rte_tcp.h>
43
44 #define RTE_PMD_USE_PREFETCH
45
46 #ifdef RTE_PMD_USE_PREFETCH
47 /*Prefetch a cache line into all cache levels. */
48 #define rte_enic_prefetch(p) rte_prefetch0(p)
49 #else
50 #define rte_enic_prefetch(p) do {} while (0)
51 #endif
52
53 #ifdef RTE_PMD_PACKET_PREFETCH
54 #define rte_packet_prefetch(p) rte_prefetch1(p)
55 #else
56 #define rte_packet_prefetch(p) do {} while (0)
57 #endif
58
59 static inline uint16_t
60 enic_cq_rx_desc_ciflags(struct cq_enet_rq_desc *crd)
61 {
62         return le16_to_cpu(crd->completed_index_flags) & ~CQ_DESC_COMP_NDX_MASK;
63 }
64
65 static inline uint16_t
66 enic_cq_rx_desc_bwflags(struct cq_enet_rq_desc *crd)
67 {
68         return le16_to_cpu(crd->bytes_written_flags) &
69                            ~CQ_ENET_RQ_DESC_BYTES_WRITTEN_MASK;
70 }
71
72 static inline uint8_t
73 enic_cq_rx_desc_packet_error(uint16_t bwflags)
74 {
75         return (bwflags & CQ_ENET_RQ_DESC_FLAGS_TRUNCATED) ==
76                 CQ_ENET_RQ_DESC_FLAGS_TRUNCATED;
77 }
78
79 static inline uint8_t
80 enic_cq_rx_desc_eop(uint16_t ciflags)
81 {
82         return (ciflags & CQ_ENET_RQ_DESC_FLAGS_EOP)
83                 == CQ_ENET_RQ_DESC_FLAGS_EOP;
84 }
85
86 static inline uint8_t
87 enic_cq_rx_desc_csum_not_calc(struct cq_enet_rq_desc *cqrd)
88 {
89         return (le16_to_cpu(cqrd->q_number_rss_type_flags) &
90                 CQ_ENET_RQ_DESC_FLAGS_CSUM_NOT_CALC) ==
91                 CQ_ENET_RQ_DESC_FLAGS_CSUM_NOT_CALC;
92 }
93
94 static inline uint8_t
95 enic_cq_rx_desc_ipv4_csum_ok(struct cq_enet_rq_desc *cqrd)
96 {
97         return (cqrd->flags & CQ_ENET_RQ_DESC_FLAGS_IPV4_CSUM_OK) ==
98                 CQ_ENET_RQ_DESC_FLAGS_IPV4_CSUM_OK;
99 }
100
101 static inline uint8_t
102 enic_cq_rx_desc_tcp_udp_csum_ok(struct cq_enet_rq_desc *cqrd)
103 {
104         return (cqrd->flags & CQ_ENET_RQ_DESC_FLAGS_TCP_UDP_CSUM_OK) ==
105                 CQ_ENET_RQ_DESC_FLAGS_TCP_UDP_CSUM_OK;
106 }
107
108 static inline uint8_t
109 enic_cq_rx_desc_rss_type(struct cq_enet_rq_desc *cqrd)
110 {
111         return (uint8_t)((le16_to_cpu(cqrd->q_number_rss_type_flags) >>
112                 CQ_DESC_Q_NUM_BITS) & CQ_ENET_RQ_DESC_RSS_TYPE_MASK);
113 }
114
115 static inline uint32_t
116 enic_cq_rx_desc_rss_hash(struct cq_enet_rq_desc *cqrd)
117 {
118         return le32_to_cpu(cqrd->rss_hash);
119 }
120
121 static inline uint16_t
122 enic_cq_rx_desc_vlan(struct cq_enet_rq_desc *cqrd)
123 {
124         return le16_to_cpu(cqrd->vlan);
125 }
126
127 static inline uint16_t
128 enic_cq_rx_desc_n_bytes(struct cq_desc *cqd)
129 {
130         struct cq_enet_rq_desc *cqrd = (struct cq_enet_rq_desc *)cqd;
131         return le16_to_cpu(cqrd->bytes_written_flags) &
132                 CQ_ENET_RQ_DESC_BYTES_WRITTEN_MASK;
133 }
134
135 /* Find the offset to L5. This is needed by enic TSO implementation.
136  * Return 0 if not a TCP packet or can't figure out the length.
137  */
138 static inline uint8_t tso_header_len(struct rte_mbuf *mbuf)
139 {
140         struct ether_hdr *eh;
141         struct vlan_hdr *vh;
142         struct ipv4_hdr *ip4;
143         struct ipv6_hdr *ip6;
144         struct tcp_hdr *th;
145         uint8_t hdr_len;
146         uint16_t ether_type;
147
148         /* offset past Ethernet header */
149         eh = rte_pktmbuf_mtod(mbuf, struct ether_hdr *);
150         ether_type = eh->ether_type;
151         hdr_len = sizeof(struct ether_hdr);
152         if (ether_type == rte_cpu_to_be_16(ETHER_TYPE_VLAN)) {
153                 vh = rte_pktmbuf_mtod_offset(mbuf, struct vlan_hdr *, hdr_len);
154                 ether_type = vh->eth_proto;
155                 hdr_len += sizeof(struct vlan_hdr);
156         }
157
158         /* offset past IP header */
159         switch (rte_be_to_cpu_16(ether_type)) {
160         case ETHER_TYPE_IPv4:
161                 ip4 = rte_pktmbuf_mtod_offset(mbuf, struct ipv4_hdr *, hdr_len);
162                 if (ip4->next_proto_id != IPPROTO_TCP)
163                         return 0;
164                 hdr_len += (ip4->version_ihl & 0xf) * 4;
165                 break;
166         case ETHER_TYPE_IPv6:
167                 ip6 = rte_pktmbuf_mtod_offset(mbuf, struct ipv6_hdr *, hdr_len);
168                 if (ip6->proto != IPPROTO_TCP)
169                         return 0;
170                 hdr_len += sizeof(struct ipv6_hdr);
171                 break;
172         default:
173                 return 0;
174         }
175
176         if ((hdr_len + sizeof(struct tcp_hdr)) > mbuf->pkt_len)
177                 return 0;
178
179         /* offset past TCP header */
180         th = rte_pktmbuf_mtod_offset(mbuf, struct tcp_hdr *, hdr_len);
181         hdr_len += (th->data_off >> 4) * 4;
182
183         if (hdr_len > mbuf->pkt_len)
184                 return 0;
185
186         return hdr_len;
187 }
188
189 static inline uint8_t
190 enic_cq_rx_check_err(struct cq_desc *cqd)
191 {
192         struct cq_enet_rq_desc *cqrd = (struct cq_enet_rq_desc *)cqd;
193         uint16_t bwflags;
194
195         bwflags = enic_cq_rx_desc_bwflags(cqrd);
196         if (unlikely(enic_cq_rx_desc_packet_error(bwflags)))
197                 return 1;
198         return 0;
199 }
200
201 /* Lookup table to translate RX CQ flags to mbuf flags. */
202 static inline uint32_t
203 enic_cq_rx_flags_to_pkt_type(struct cq_desc *cqd)
204 {
205         struct cq_enet_rq_desc *cqrd = (struct cq_enet_rq_desc *)cqd;
206         uint8_t cqrd_flags = cqrd->flags;
207         static const uint32_t cq_type_table[128] __rte_cache_aligned = {
208                 [0x00] = RTE_PTYPE_UNKNOWN,
209                 [0x20] = RTE_PTYPE_L3_IPV4_EXT_UNKNOWN | RTE_PTYPE_L4_NONFRAG,
210                 [0x22] = RTE_PTYPE_L3_IPV4_EXT_UNKNOWN | RTE_PTYPE_L4_UDP,
211                 [0x24] = RTE_PTYPE_L3_IPV4_EXT_UNKNOWN | RTE_PTYPE_L4_TCP,
212                 [0x60] = RTE_PTYPE_L3_IPV4_EXT_UNKNOWN | RTE_PTYPE_L4_FRAG,
213                 [0x62] = RTE_PTYPE_L3_IPV4_EXT_UNKNOWN | RTE_PTYPE_L4_UDP,
214                 [0x64] = RTE_PTYPE_L3_IPV4_EXT_UNKNOWN | RTE_PTYPE_L4_TCP,
215                 [0x10] = RTE_PTYPE_L3_IPV6_EXT_UNKNOWN | RTE_PTYPE_L4_NONFRAG,
216                 [0x12] = RTE_PTYPE_L3_IPV6_EXT_UNKNOWN | RTE_PTYPE_L4_UDP,
217                 [0x14] = RTE_PTYPE_L3_IPV6_EXT_UNKNOWN | RTE_PTYPE_L4_TCP,
218                 [0x50] = RTE_PTYPE_L3_IPV6_EXT_UNKNOWN | RTE_PTYPE_L4_FRAG,
219                 [0x52] = RTE_PTYPE_L3_IPV6_EXT_UNKNOWN | RTE_PTYPE_L4_UDP,
220                 [0x54] = RTE_PTYPE_L3_IPV6_EXT_UNKNOWN | RTE_PTYPE_L4_TCP,
221                 /* All others reserved */
222         };
223         cqrd_flags &= CQ_ENET_RQ_DESC_FLAGS_IPV4_FRAGMENT
224                 | CQ_ENET_RQ_DESC_FLAGS_IPV4 | CQ_ENET_RQ_DESC_FLAGS_IPV6
225                 | CQ_ENET_RQ_DESC_FLAGS_TCP | CQ_ENET_RQ_DESC_FLAGS_UDP;
226         return cq_type_table[cqrd_flags];
227 }
228
229 static inline void
230 enic_cq_rx_to_pkt_flags(struct cq_desc *cqd, struct rte_mbuf *mbuf)
231 {
232         struct cq_enet_rq_desc *cqrd = (struct cq_enet_rq_desc *)cqd;
233         uint16_t ciflags, bwflags, pkt_flags = 0, vlan_tci;
234         ciflags = enic_cq_rx_desc_ciflags(cqrd);
235         bwflags = enic_cq_rx_desc_bwflags(cqrd);
236         vlan_tci = enic_cq_rx_desc_vlan(cqrd);
237
238         mbuf->ol_flags = 0;
239
240         /* flags are meaningless if !EOP */
241         if (unlikely(!enic_cq_rx_desc_eop(ciflags)))
242                 goto mbuf_flags_done;
243
244         /* VLAN STRIPPED flag. The L2 packet type updated here also */
245         if (bwflags & CQ_ENET_RQ_DESC_FLAGS_VLAN_STRIPPED) {
246                 pkt_flags |= PKT_RX_VLAN | PKT_RX_VLAN_STRIPPED;
247                 mbuf->packet_type |= RTE_PTYPE_L2_ETHER;
248         } else {
249                 if (vlan_tci != 0)
250                         mbuf->packet_type |= RTE_PTYPE_L2_ETHER_VLAN;
251                 else
252                         mbuf->packet_type |= RTE_PTYPE_L2_ETHER;
253         }
254         mbuf->vlan_tci = vlan_tci;
255
256         if ((cqd->type_color & CQ_DESC_TYPE_MASK) == CQ_DESC_TYPE_CLASSIFIER) {
257                 struct cq_enet_rq_clsf_desc *clsf_cqd;
258                 uint16_t filter_id;
259                 clsf_cqd = (struct cq_enet_rq_clsf_desc *)cqd;
260                 filter_id = clsf_cqd->filter_id;
261                 if (filter_id) {
262                         pkt_flags |= PKT_RX_FDIR;
263                         if (filter_id != ENIC_MAGIC_FILTER_ID) {
264                                 mbuf->hash.fdir.hi = clsf_cqd->filter_id;
265                                 pkt_flags |= PKT_RX_FDIR_ID;
266                         }
267                 }
268         } else if (enic_cq_rx_desc_rss_type(cqrd)) {
269                 /* RSS flag */
270                 pkt_flags |= PKT_RX_RSS_HASH;
271                 mbuf->hash.rss = enic_cq_rx_desc_rss_hash(cqrd);
272         }
273
274         /* checksum flags */
275         if (mbuf->packet_type & RTE_PTYPE_L3_IPV4) {
276                 if (enic_cq_rx_desc_csum_not_calc(cqrd))
277                         pkt_flags |= (PKT_RX_IP_CKSUM_UNKNOWN &
278                                      PKT_RX_L4_CKSUM_UNKNOWN);
279                 else {
280                         uint32_t l4_flags;
281                         l4_flags = mbuf->packet_type & RTE_PTYPE_L4_MASK;
282
283                         if (enic_cq_rx_desc_ipv4_csum_ok(cqrd))
284                                 pkt_flags |= PKT_RX_IP_CKSUM_GOOD;
285                         else
286                                 pkt_flags |= PKT_RX_IP_CKSUM_BAD;
287
288                         if (l4_flags == RTE_PTYPE_L4_UDP ||
289                             l4_flags == RTE_PTYPE_L4_TCP) {
290                                 if (enic_cq_rx_desc_tcp_udp_csum_ok(cqrd))
291                                         pkt_flags |= PKT_RX_L4_CKSUM_GOOD;
292                                 else
293                                         pkt_flags |= PKT_RX_L4_CKSUM_BAD;
294                         }
295                 }
296         }
297
298  mbuf_flags_done:
299         mbuf->ol_flags = pkt_flags;
300 }
301
302 /* dummy receive function to replace actual function in
303  * order to do safe reconfiguration operations.
304  */
305 uint16_t
306 enic_dummy_recv_pkts(__rte_unused void *rx_queue,
307                      __rte_unused struct rte_mbuf **rx_pkts,
308                      __rte_unused uint16_t nb_pkts)
309 {
310         return 0;
311 }
312
313 uint16_t
314 enic_recv_pkts(void *rx_queue, struct rte_mbuf **rx_pkts,
315                uint16_t nb_pkts)
316 {
317         struct vnic_rq *sop_rq = rx_queue;
318         struct vnic_rq *data_rq;
319         struct vnic_rq *rq;
320         struct enic *enic = vnic_dev_priv(sop_rq->vdev);
321         uint16_t cq_idx;
322         uint16_t rq_idx;
323         uint16_t rq_num;
324         struct rte_mbuf *nmb, *rxmb;
325         uint16_t nb_rx = 0;
326         struct vnic_cq *cq;
327         volatile struct cq_desc *cqd_ptr;
328         uint8_t color;
329         uint16_t seg_length;
330         struct rte_mbuf *first_seg = sop_rq->pkt_first_seg;
331         struct rte_mbuf *last_seg = sop_rq->pkt_last_seg;
332
333         cq = &enic->cq[enic_cq_rq(enic, sop_rq->index)];
334         cq_idx = cq->to_clean;          /* index of cqd, rqd, mbuf_table */
335         cqd_ptr = (struct cq_desc *)(cq->ring.descs) + cq_idx;
336
337         data_rq = &enic->rq[sop_rq->data_queue_idx];
338
339         while (nb_rx < nb_pkts) {
340                 volatile struct rq_enet_desc *rqd_ptr;
341                 dma_addr_t dma_addr;
342                 struct cq_desc cqd;
343                 uint8_t packet_error;
344                 uint16_t ciflags;
345
346                 /* Check for pkts available */
347                 color = (cqd_ptr->type_color >> CQ_DESC_COLOR_SHIFT)
348                         & CQ_DESC_COLOR_MASK;
349                 if (color == cq->last_color)
350                         break;
351
352                 /* Get the cq descriptor and extract rq info from it */
353                 cqd = *cqd_ptr;
354                 rq_num = cqd.q_number & CQ_DESC_Q_NUM_MASK;
355                 rq_idx = cqd.completed_index & CQ_DESC_COMP_NDX_MASK;
356
357                 rq = &enic->rq[rq_num];
358                 rqd_ptr = ((struct rq_enet_desc *)rq->ring.descs) + rq_idx;
359
360                 /* allocate a new mbuf */
361                 nmb = rte_mbuf_raw_alloc(rq->mp);
362                 if (nmb == NULL) {
363                         rte_atomic64_inc(&enic->soft_stats.rx_nombuf);
364                         break;
365                 }
366
367                 /* A packet error means descriptor and data are untrusted */
368                 packet_error = enic_cq_rx_check_err(&cqd);
369
370                 /* Get the mbuf to return and replace with one just allocated */
371                 rxmb = rq->mbuf_ring[rq_idx];
372                 rq->mbuf_ring[rq_idx] = nmb;
373
374                 /* Increment cqd, rqd, mbuf_table index */
375                 cq_idx++;
376                 if (unlikely(cq_idx == cq->ring.desc_count)) {
377                         cq_idx = 0;
378                         cq->last_color = cq->last_color ? 0 : 1;
379                 }
380
381                 /* Prefetch next mbuf & desc while processing current one */
382                 cqd_ptr = (struct cq_desc *)(cq->ring.descs) + cq_idx;
383                 rte_enic_prefetch(cqd_ptr);
384
385                 ciflags = enic_cq_rx_desc_ciflags(
386                         (struct cq_enet_rq_desc *)&cqd);
387
388                 /* Push descriptor for newly allocated mbuf */
389                 nmb->data_off = RTE_PKTMBUF_HEADROOM;
390                 dma_addr = (dma_addr_t)(nmb->buf_iova +
391                                         RTE_PKTMBUF_HEADROOM);
392                 rq_enet_desc_enc(rqd_ptr, dma_addr,
393                                 (rq->is_sop ? RQ_ENET_TYPE_ONLY_SOP
394                                 : RQ_ENET_TYPE_NOT_SOP),
395                                 nmb->buf_len - RTE_PKTMBUF_HEADROOM);
396
397                 /* Fill in the rest of the mbuf */
398                 seg_length = enic_cq_rx_desc_n_bytes(&cqd);
399
400                 if (rq->is_sop) {
401                         first_seg = rxmb;
402                         first_seg->pkt_len = seg_length;
403                 } else {
404                         first_seg->pkt_len = (uint16_t)(first_seg->pkt_len
405                                                         + seg_length);
406                         first_seg->nb_segs++;
407                         last_seg->next = rxmb;
408                 }
409
410                 rxmb->port = enic->port_id;
411                 rxmb->data_len = seg_length;
412
413                 rq->rx_nb_hold++;
414
415                 if (!(enic_cq_rx_desc_eop(ciflags))) {
416                         last_seg = rxmb;
417                         continue;
418                 }
419
420                 /* cq rx flags are only valid if eop bit is set */
421                 first_seg->packet_type = enic_cq_rx_flags_to_pkt_type(&cqd);
422                 enic_cq_rx_to_pkt_flags(&cqd, first_seg);
423
424                 if (unlikely(packet_error)) {
425                         rte_pktmbuf_free(first_seg);
426                         rte_atomic64_inc(&enic->soft_stats.rx_packet_errors);
427                         continue;
428                 }
429
430
431                 /* prefetch mbuf data for caller */
432                 rte_packet_prefetch(RTE_PTR_ADD(first_seg->buf_addr,
433                                     RTE_PKTMBUF_HEADROOM));
434
435                 /* store the mbuf address into the next entry of the array */
436                 rx_pkts[nb_rx++] = first_seg;
437         }
438
439         sop_rq->pkt_first_seg = first_seg;
440         sop_rq->pkt_last_seg = last_seg;
441
442         cq->to_clean = cq_idx;
443
444         if ((sop_rq->rx_nb_hold + data_rq->rx_nb_hold) >
445             sop_rq->rx_free_thresh) {
446                 if (data_rq->in_use) {
447                         data_rq->posted_index =
448                                 enic_ring_add(data_rq->ring.desc_count,
449                                               data_rq->posted_index,
450                                               data_rq->rx_nb_hold);
451                         data_rq->rx_nb_hold = 0;
452                 }
453                 sop_rq->posted_index = enic_ring_add(sop_rq->ring.desc_count,
454                                                      sop_rq->posted_index,
455                                                      sop_rq->rx_nb_hold);
456                 sop_rq->rx_nb_hold = 0;
457
458                 rte_mb();
459                 if (data_rq->in_use)
460                         iowrite32_relaxed(data_rq->posted_index,
461                                           &data_rq->ctrl->posted_index);
462                 rte_compiler_barrier();
463                 iowrite32_relaxed(sop_rq->posted_index,
464                                   &sop_rq->ctrl->posted_index);
465         }
466
467
468         return nb_rx;
469 }
470
471 static inline void enic_free_wq_bufs(struct vnic_wq *wq, u16 completed_index)
472 {
473         struct vnic_wq_buf *buf;
474         struct rte_mbuf *m, *free[ENIC_MAX_WQ_DESCS];
475         unsigned int nb_to_free, nb_free = 0, i;
476         struct rte_mempool *pool;
477         unsigned int tail_idx;
478         unsigned int desc_count = wq->ring.desc_count;
479
480         nb_to_free = enic_ring_sub(desc_count, wq->tail_idx, completed_index)
481                                    + 1;
482         tail_idx = wq->tail_idx;
483         buf = &wq->bufs[tail_idx];
484         pool = ((struct rte_mbuf *)buf->mb)->pool;
485         for (i = 0; i < nb_to_free; i++) {
486                 buf = &wq->bufs[tail_idx];
487                 m = rte_pktmbuf_prefree_seg((struct rte_mbuf *)(buf->mb));
488                 buf->mb = NULL;
489
490                 if (unlikely(m == NULL)) {
491                         tail_idx = enic_ring_incr(desc_count, tail_idx);
492                         continue;
493                 }
494
495                 if (likely(m->pool == pool)) {
496                         RTE_ASSERT(nb_free < ENIC_MAX_WQ_DESCS);
497                         free[nb_free++] = m;
498                 } else {
499                         rte_mempool_put_bulk(pool, (void *)free, nb_free);
500                         free[0] = m;
501                         nb_free = 1;
502                         pool = m->pool;
503                 }
504                 tail_idx = enic_ring_incr(desc_count, tail_idx);
505         }
506
507         if (nb_free > 0)
508                 rte_mempool_put_bulk(pool, (void **)free, nb_free);
509
510         wq->tail_idx = tail_idx;
511         wq->ring.desc_avail += nb_to_free;
512 }
513
514 unsigned int enic_cleanup_wq(__rte_unused struct enic *enic, struct vnic_wq *wq)
515 {
516         u16 completed_index;
517
518         completed_index = *((uint32_t *)wq->cqmsg_rz->addr) & 0xffff;
519
520         if (wq->last_completed_index != completed_index) {
521                 enic_free_wq_bufs(wq, completed_index);
522                 wq->last_completed_index = completed_index;
523         }
524         return 0;
525 }
526
527 uint16_t enic_xmit_pkts(void *tx_queue, struct rte_mbuf **tx_pkts,
528         uint16_t nb_pkts)
529 {
530         uint16_t index;
531         unsigned int pkt_len, data_len;
532         unsigned int nb_segs;
533         struct rte_mbuf *tx_pkt;
534         struct vnic_wq *wq = (struct vnic_wq *)tx_queue;
535         struct enic *enic = vnic_dev_priv(wq->vdev);
536         unsigned short vlan_id;
537         uint64_t ol_flags;
538         uint64_t ol_flags_mask;
539         unsigned int wq_desc_avail;
540         int head_idx;
541         struct vnic_wq_buf *buf;
542         unsigned int desc_count;
543         struct wq_enet_desc *descs, *desc_p, desc_tmp;
544         uint16_t mss;
545         uint8_t vlan_tag_insert;
546         uint8_t eop;
547         uint64_t bus_addr;
548         uint8_t offload_mode;
549         uint16_t header_len;
550         uint64_t tso;
551         rte_atomic64_t *tx_oversized;
552
553         enic_cleanup_wq(enic, wq);
554         wq_desc_avail = vnic_wq_desc_avail(wq);
555         head_idx = wq->head_idx;
556         desc_count = wq->ring.desc_count;
557         ol_flags_mask = PKT_TX_VLAN_PKT | PKT_TX_IP_CKSUM | PKT_TX_L4_MASK;
558         tx_oversized = &enic->soft_stats.tx_oversized;
559
560         nb_pkts = RTE_MIN(nb_pkts, ENIC_TX_XMIT_MAX);
561
562         for (index = 0; index < nb_pkts; index++) {
563                 tx_pkt = *tx_pkts++;
564                 pkt_len = tx_pkt->pkt_len;
565                 data_len = tx_pkt->data_len;
566                 ol_flags = tx_pkt->ol_flags;
567                 nb_segs = tx_pkt->nb_segs;
568                 tso = ol_flags & PKT_TX_TCP_SEG;
569
570                 /* drop packet if it's too big to send */
571                 if (unlikely(!tso && pkt_len > ENIC_TX_MAX_PKT_SIZE)) {
572                         rte_pktmbuf_free(tx_pkt);
573                         rte_atomic64_inc(tx_oversized);
574                         continue;
575                 }
576
577                 if (nb_segs > wq_desc_avail) {
578                         if (index > 0)
579                                 goto post;
580                         goto done;
581                 }
582
583                 mss = 0;
584                 vlan_id = 0;
585                 vlan_tag_insert = 0;
586                 bus_addr = (dma_addr_t)
587                            (tx_pkt->buf_iova + tx_pkt->data_off);
588
589                 descs = (struct wq_enet_desc *)wq->ring.descs;
590                 desc_p = descs + head_idx;
591
592                 eop = (data_len == pkt_len);
593                 offload_mode = WQ_ENET_OFFLOAD_MODE_CSUM;
594                 header_len = 0;
595
596                 if (tso) {
597                         header_len = tso_header_len(tx_pkt);
598
599                         /* Drop if non-TCP packet or TSO seg size is too big */
600                         if (unlikely(header_len == 0 || ((tx_pkt->tso_segsz +
601                             header_len) > ENIC_TX_MAX_PKT_SIZE))) {
602                                 rte_pktmbuf_free(tx_pkt);
603                                 rte_atomic64_inc(tx_oversized);
604                                 continue;
605                         }
606
607                         offload_mode = WQ_ENET_OFFLOAD_MODE_TSO;
608                         mss = tx_pkt->tso_segsz;
609                 }
610
611                 if ((ol_flags & ol_flags_mask) && (header_len == 0)) {
612                         if (ol_flags & PKT_TX_IP_CKSUM)
613                                 mss |= ENIC_CALC_IP_CKSUM;
614
615                         /* Nic uses just 1 bit for UDP and TCP */
616                         switch (ol_flags & PKT_TX_L4_MASK) {
617                         case PKT_TX_TCP_CKSUM:
618                         case PKT_TX_UDP_CKSUM:
619                                 mss |= ENIC_CALC_TCP_UDP_CKSUM;
620                                 break;
621                         }
622                 }
623
624                 if (ol_flags & PKT_TX_VLAN_PKT) {
625                         vlan_tag_insert = 1;
626                         vlan_id = tx_pkt->vlan_tci;
627                 }
628
629                 wq_enet_desc_enc(&desc_tmp, bus_addr, data_len, mss, header_len,
630                                  offload_mode, eop, eop, 0, vlan_tag_insert,
631                                  vlan_id, 0);
632
633                 *desc_p = desc_tmp;
634                 buf = &wq->bufs[head_idx];
635                 buf->mb = (void *)tx_pkt;
636                 head_idx = enic_ring_incr(desc_count, head_idx);
637                 wq_desc_avail--;
638
639                 if (!eop) {
640                         for (tx_pkt = tx_pkt->next; tx_pkt; tx_pkt =
641                             tx_pkt->next) {
642                                 data_len = tx_pkt->data_len;
643
644                                 if (tx_pkt->next == NULL)
645                                         eop = 1;
646                                 desc_p = descs + head_idx;
647                                 bus_addr = (dma_addr_t)(tx_pkt->buf_iova
648                                            + tx_pkt->data_off);
649                                 wq_enet_desc_enc((struct wq_enet_desc *)
650                                                  &desc_tmp, bus_addr, data_len,
651                                                  mss, 0, offload_mode, eop, eop,
652                                                  0, vlan_tag_insert, vlan_id,
653                                                  0);
654
655                                 *desc_p = desc_tmp;
656                                 buf = &wq->bufs[head_idx];
657                                 buf->mb = (void *)tx_pkt;
658                                 head_idx = enic_ring_incr(desc_count, head_idx);
659                                 wq_desc_avail--;
660                         }
661                 }
662         }
663  post:
664         rte_wmb();
665         iowrite32_relaxed(head_idx, &wq->ctrl->posted_index);
666  done:
667         wq->ring.desc_avail = wq_desc_avail;
668         wq->head_idx = head_idx;
669
670         return index;
671 }
672
673