New upstream version 18.02
[deb_dpdk.git] / drivers / net / dpaa / dpaa_rxtx.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  *
3  *   Copyright 2016 Freescale Semiconductor, Inc. All rights reserved.
4  *   Copyright 2017 NXP
5  *
6  */
7
8 /* System headers */
9 #include <inttypes.h>
10 #include <unistd.h>
11 #include <stdio.h>
12 #include <limits.h>
13 #include <sched.h>
14 #include <pthread.h>
15
16 #include <rte_byteorder.h>
17 #include <rte_common.h>
18 #include <rte_interrupts.h>
19 #include <rte_log.h>
20 #include <rte_debug.h>
21 #include <rte_pci.h>
22 #include <rte_atomic.h>
23 #include <rte_branch_prediction.h>
24 #include <rte_memory.h>
25 #include <rte_tailq.h>
26 #include <rte_eal.h>
27 #include <rte_alarm.h>
28 #include <rte_ether.h>
29 #include <rte_ethdev_driver.h>
30 #include <rte_malloc.h>
31 #include <rte_ring.h>
32 #include <rte_ip.h>
33 #include <rte_tcp.h>
34 #include <rte_udp.h>
35 #include <rte_net.h>
36 #include <rte_eventdev.h>
37
38 #include "dpaa_ethdev.h"
39 #include "dpaa_rxtx.h"
40 #include <rte_dpaa_bus.h>
41 #include <dpaa_mempool.h>
42
43 #include <qman.h>
44 #include <fsl_usd.h>
45 #include <fsl_qman.h>
46 #include <fsl_bman.h>
47 #include <of.h>
48 #include <netcfg.h>
49
50 #define DPAA_MBUF_TO_CONTIG_FD(_mbuf, _fd, _bpid) \
51         do { \
52                 (_fd)->cmd = 0; \
53                 (_fd)->opaque_addr = 0; \
54                 (_fd)->opaque = QM_FD_CONTIG << DPAA_FD_FORMAT_SHIFT; \
55                 (_fd)->opaque |= ((_mbuf)->data_off) << DPAA_FD_OFFSET_SHIFT; \
56                 (_fd)->opaque |= (_mbuf)->pkt_len; \
57                 (_fd)->addr = (_mbuf)->buf_iova; \
58                 (_fd)->bpid = _bpid; \
59         } while (0)
60
61 #if (defined RTE_LIBRTE_DPAA_DEBUG_DRIVER)
62 void dpaa_display_frame(const struct qm_fd *fd)
63 {
64         int ii;
65         char *ptr;
66
67         printf("%s::bpid %x addr %08x%08x, format %d off %d, len %d stat %x\n",
68                __func__, fd->bpid, fd->addr_hi, fd->addr_lo, fd->format,
69                 fd->offset, fd->length20, fd->status);
70
71         ptr = (char *)rte_dpaa_mem_ptov(fd->addr);
72         ptr += fd->offset;
73         printf("%02x ", *ptr);
74         for (ii = 1; ii < fd->length20; ii++) {
75                 printf("%02x ", *ptr);
76                 if ((ii % 16) == 0)
77                         printf("\n");
78                 ptr++;
79         }
80         printf("\n");
81 }
82 #else
83 #define dpaa_display_frame(a)
84 #endif
85
86 static inline void dpaa_slow_parsing(struct rte_mbuf *m __rte_unused,
87                                      uint64_t prs __rte_unused)
88 {
89         DPAA_DP_LOG(DEBUG, "Slow parsing");
90         /*TBD:XXX: to be implemented*/
91 }
92
93 static inline void dpaa_eth_packet_info(struct rte_mbuf *m,
94                                         uint64_t fd_virt_addr)
95 {
96         struct annotations_t *annot = GET_ANNOTATIONS(fd_virt_addr);
97         uint64_t prs = *((uint64_t *)(&annot->parse)) & DPAA_PARSE_MASK;
98
99         DPAA_DP_LOG(DEBUG, " Parsing mbuf: %p with annotations: %p", m, annot);
100
101         switch (prs) {
102         case DPAA_PKT_TYPE_IPV4:
103                 m->packet_type = RTE_PTYPE_L2_ETHER |
104                         RTE_PTYPE_L3_IPV4;
105                 break;
106         case DPAA_PKT_TYPE_IPV6:
107                 m->packet_type = RTE_PTYPE_L2_ETHER |
108                         RTE_PTYPE_L3_IPV6;
109                 break;
110         case DPAA_PKT_TYPE_ETHER:
111                 m->packet_type = RTE_PTYPE_L2_ETHER;
112                 break;
113         case DPAA_PKT_TYPE_IPV4_FRAG:
114         case DPAA_PKT_TYPE_IPV4_FRAG_UDP:
115         case DPAA_PKT_TYPE_IPV4_FRAG_TCP:
116         case DPAA_PKT_TYPE_IPV4_FRAG_SCTP:
117                 m->packet_type = RTE_PTYPE_L2_ETHER |
118                         RTE_PTYPE_L3_IPV4 | RTE_PTYPE_L4_FRAG;
119                 break;
120         case DPAA_PKT_TYPE_IPV6_FRAG:
121         case DPAA_PKT_TYPE_IPV6_FRAG_UDP:
122         case DPAA_PKT_TYPE_IPV6_FRAG_TCP:
123         case DPAA_PKT_TYPE_IPV6_FRAG_SCTP:
124                 m->packet_type = RTE_PTYPE_L2_ETHER |
125                         RTE_PTYPE_L3_IPV6 | RTE_PTYPE_L4_FRAG;
126                 break;
127         case DPAA_PKT_TYPE_IPV4_EXT:
128                 m->packet_type = RTE_PTYPE_L2_ETHER |
129                         RTE_PTYPE_L3_IPV4_EXT;
130                 break;
131         case DPAA_PKT_TYPE_IPV6_EXT:
132                 m->packet_type = RTE_PTYPE_L2_ETHER |
133                         RTE_PTYPE_L3_IPV6_EXT;
134                 break;
135         case DPAA_PKT_TYPE_IPV4_TCP:
136                 m->packet_type = RTE_PTYPE_L2_ETHER |
137                         RTE_PTYPE_L3_IPV4 | RTE_PTYPE_L4_TCP;
138                 break;
139         case DPAA_PKT_TYPE_IPV6_TCP:
140                 m->packet_type = RTE_PTYPE_L2_ETHER |
141                         RTE_PTYPE_L3_IPV6 | RTE_PTYPE_L4_TCP;
142                 break;
143         case DPAA_PKT_TYPE_IPV4_UDP:
144                 m->packet_type = RTE_PTYPE_L2_ETHER |
145                         RTE_PTYPE_L3_IPV4 | RTE_PTYPE_L4_UDP;
146                 break;
147         case DPAA_PKT_TYPE_IPV6_UDP:
148                 m->packet_type = RTE_PTYPE_L2_ETHER |
149                         RTE_PTYPE_L3_IPV6 | RTE_PTYPE_L4_UDP;
150                 break;
151         case DPAA_PKT_TYPE_IPV4_EXT_UDP:
152                 m->packet_type = RTE_PTYPE_L2_ETHER |
153                         RTE_PTYPE_L3_IPV4_EXT | RTE_PTYPE_L4_UDP;
154                 break;
155         case DPAA_PKT_TYPE_IPV6_EXT_UDP:
156                 m->packet_type = RTE_PTYPE_L2_ETHER |
157                         RTE_PTYPE_L3_IPV6_EXT | RTE_PTYPE_L4_UDP;
158                 break;
159         case DPAA_PKT_TYPE_IPV4_EXT_TCP:
160                 m->packet_type = RTE_PTYPE_L2_ETHER |
161                         RTE_PTYPE_L3_IPV4_EXT | RTE_PTYPE_L4_TCP;
162                 break;
163         case DPAA_PKT_TYPE_IPV6_EXT_TCP:
164                 m->packet_type = RTE_PTYPE_L2_ETHER |
165                         RTE_PTYPE_L3_IPV6_EXT | RTE_PTYPE_L4_TCP;
166                 break;
167         case DPAA_PKT_TYPE_IPV4_SCTP:
168                 m->packet_type = RTE_PTYPE_L2_ETHER |
169                         RTE_PTYPE_L3_IPV4 | RTE_PTYPE_L4_SCTP;
170                 break;
171         case DPAA_PKT_TYPE_IPV6_SCTP:
172                 m->packet_type = RTE_PTYPE_L2_ETHER |
173                         RTE_PTYPE_L3_IPV6 | RTE_PTYPE_L4_SCTP;
174                 break;
175         case DPAA_PKT_TYPE_NONE:
176                 m->packet_type = 0;
177                 break;
178         /* More switch cases can be added */
179         default:
180                 dpaa_slow_parsing(m, prs);
181         }
182
183         m->tx_offload = annot->parse.ip_off[0];
184         m->tx_offload |= (annot->parse.l4_off - annot->parse.ip_off[0])
185                                         << DPAA_PKT_L3_LEN_SHIFT;
186
187         /* Set the hash values */
188         m->hash.rss = (uint32_t)(annot->hash);
189         /* All packets with Bad checksum are dropped by interface (and
190          * corresponding notification issued to RX error queues).
191          */
192         m->ol_flags = PKT_RX_RSS_HASH | PKT_RX_IP_CKSUM_GOOD;
193
194         /* Check if Vlan is present */
195         if (prs & DPAA_PARSE_VLAN_MASK)
196                 m->ol_flags |= PKT_RX_VLAN;
197         /* Packet received without stripping the vlan */
198 }
199
200 static inline void dpaa_checksum(struct rte_mbuf *mbuf)
201 {
202         struct ether_hdr *eth_hdr = rte_pktmbuf_mtod(mbuf, struct ether_hdr *);
203         char *l3_hdr = (char *)eth_hdr + mbuf->l2_len;
204         struct ipv4_hdr *ipv4_hdr = (struct ipv4_hdr *)l3_hdr;
205         struct ipv6_hdr *ipv6_hdr = (struct ipv6_hdr *)l3_hdr;
206
207         DPAA_DP_LOG(DEBUG, "Calculating checksum for mbuf: %p", mbuf);
208
209         if (((mbuf->packet_type & RTE_PTYPE_L3_MASK) == RTE_PTYPE_L3_IPV4) ||
210             ((mbuf->packet_type & RTE_PTYPE_L3_MASK) ==
211             RTE_PTYPE_L3_IPV4_EXT)) {
212                 ipv4_hdr = (struct ipv4_hdr *)l3_hdr;
213                 ipv4_hdr->hdr_checksum = 0;
214                 ipv4_hdr->hdr_checksum = rte_ipv4_cksum(ipv4_hdr);
215         } else if (((mbuf->packet_type & RTE_PTYPE_L3_MASK) ==
216                    RTE_PTYPE_L3_IPV6) ||
217                    ((mbuf->packet_type & RTE_PTYPE_L3_MASK) ==
218                    RTE_PTYPE_L3_IPV6_EXT))
219                 ipv6_hdr = (struct ipv6_hdr *)l3_hdr;
220
221         if ((mbuf->packet_type & RTE_PTYPE_L4_MASK) == RTE_PTYPE_L4_TCP) {
222                 struct tcp_hdr *tcp_hdr = (struct tcp_hdr *)(l3_hdr +
223                                           mbuf->l3_len);
224                 tcp_hdr->cksum = 0;
225                 if (eth_hdr->ether_type == htons(ETHER_TYPE_IPv4))
226                         tcp_hdr->cksum = rte_ipv4_udptcp_cksum(ipv4_hdr,
227                                                                tcp_hdr);
228                 else /* assume ethertype == ETHER_TYPE_IPv6 */
229                         tcp_hdr->cksum = rte_ipv6_udptcp_cksum(ipv6_hdr,
230                                                                tcp_hdr);
231         } else if ((mbuf->packet_type & RTE_PTYPE_L4_MASK) ==
232                    RTE_PTYPE_L4_UDP) {
233                 struct udp_hdr *udp_hdr = (struct udp_hdr *)(l3_hdr +
234                                                              mbuf->l3_len);
235                 udp_hdr->dgram_cksum = 0;
236                 if (eth_hdr->ether_type == htons(ETHER_TYPE_IPv4))
237                         udp_hdr->dgram_cksum = rte_ipv4_udptcp_cksum(ipv4_hdr,
238                                                                      udp_hdr);
239                 else /* assume ethertype == ETHER_TYPE_IPv6 */
240                         udp_hdr->dgram_cksum = rte_ipv6_udptcp_cksum(ipv6_hdr,
241                                                                      udp_hdr);
242         }
243 }
244
245 static inline void dpaa_checksum_offload(struct rte_mbuf *mbuf,
246                                          struct qm_fd *fd, char *prs_buf)
247 {
248         struct dpaa_eth_parse_results_t *prs;
249
250         DPAA_DP_LOG(DEBUG, " Offloading checksum for mbuf: %p", mbuf);
251
252         prs = GET_TX_PRS(prs_buf);
253         prs->l3r = 0;
254         prs->l4r = 0;
255         if (((mbuf->packet_type & RTE_PTYPE_L3_MASK) == RTE_PTYPE_L3_IPV4) ||
256            ((mbuf->packet_type & RTE_PTYPE_L3_MASK) ==
257            RTE_PTYPE_L3_IPV4_EXT))
258                 prs->l3r = DPAA_L3_PARSE_RESULT_IPV4;
259         else if (((mbuf->packet_type & RTE_PTYPE_L3_MASK) ==
260                    RTE_PTYPE_L3_IPV6) ||
261                  ((mbuf->packet_type & RTE_PTYPE_L3_MASK) ==
262                 RTE_PTYPE_L3_IPV6_EXT))
263                 prs->l3r = DPAA_L3_PARSE_RESULT_IPV6;
264
265         if ((mbuf->packet_type & RTE_PTYPE_L4_MASK) == RTE_PTYPE_L4_TCP)
266                 prs->l4r = DPAA_L4_PARSE_RESULT_TCP;
267         else if ((mbuf->packet_type & RTE_PTYPE_L4_MASK) == RTE_PTYPE_L4_UDP)
268                 prs->l4r = DPAA_L4_PARSE_RESULT_UDP;
269
270         prs->ip_off[0] = mbuf->l2_len;
271         prs->l4_off = mbuf->l3_len + mbuf->l2_len;
272         /* Enable L3 (and L4, if TCP or UDP) HW checksum*/
273         fd->cmd = DPAA_FD_CMD_RPD | DPAA_FD_CMD_DTC;
274 }
275
276 static inline void
277 dpaa_unsegmented_checksum(struct rte_mbuf *mbuf, struct qm_fd *fd_arr)
278 {
279         if (!mbuf->packet_type) {
280                 struct rte_net_hdr_lens hdr_lens;
281
282                 mbuf->packet_type = rte_net_get_ptype(mbuf, &hdr_lens,
283                                 RTE_PTYPE_L2_MASK | RTE_PTYPE_L3_MASK
284                                 | RTE_PTYPE_L4_MASK);
285                 mbuf->l2_len = hdr_lens.l2_len;
286                 mbuf->l3_len = hdr_lens.l3_len;
287         }
288         if (mbuf->data_off < (DEFAULT_TX_ICEOF +
289             sizeof(struct dpaa_eth_parse_results_t))) {
290                 DPAA_DP_LOG(DEBUG, "Checksum offload Err: "
291                         "Not enough Headroom "
292                         "space for correct Checksum offload."
293                         "So Calculating checksum in Software.");
294                 dpaa_checksum(mbuf);
295         } else {
296                 dpaa_checksum_offload(mbuf, fd_arr, mbuf->buf_addr);
297         }
298 }
299
300 struct rte_mbuf *
301 dpaa_eth_sg_to_mbuf(const struct qm_fd *fd, uint32_t ifid)
302 {
303         struct dpaa_bp_info *bp_info = DPAA_BPID_TO_POOL_INFO(fd->bpid);
304         struct rte_mbuf *first_seg, *prev_seg, *cur_seg, *temp;
305         struct qm_sg_entry *sgt, *sg_temp;
306         void *vaddr, *sg_vaddr;
307         int i = 0;
308         uint8_t fd_offset = fd->offset;
309
310         DPAA_DP_LOG(DEBUG, "Received an SG frame");
311
312         vaddr = DPAA_MEMPOOL_PTOV(bp_info, qm_fd_addr(fd));
313         if (!vaddr) {
314                 DPAA_PMD_ERR("unable to convert physical address");
315                 return NULL;
316         }
317         sgt = vaddr + fd_offset;
318         sg_temp = &sgt[i++];
319         hw_sg_to_cpu(sg_temp);
320         temp = (struct rte_mbuf *)((char *)vaddr - bp_info->meta_data_size);
321         sg_vaddr = DPAA_MEMPOOL_PTOV(bp_info, qm_sg_entry_get64(sg_temp));
322
323         first_seg = (struct rte_mbuf *)((char *)sg_vaddr -
324                                                 bp_info->meta_data_size);
325         first_seg->data_off = sg_temp->offset;
326         first_seg->data_len = sg_temp->length;
327         first_seg->pkt_len = sg_temp->length;
328         rte_mbuf_refcnt_set(first_seg, 1);
329
330         first_seg->port = ifid;
331         first_seg->nb_segs = 1;
332         first_seg->ol_flags = 0;
333         prev_seg = first_seg;
334         while (i < DPAA_SGT_MAX_ENTRIES) {
335                 sg_temp = &sgt[i++];
336                 hw_sg_to_cpu(sg_temp);
337                 sg_vaddr = DPAA_MEMPOOL_PTOV(bp_info,
338                                              qm_sg_entry_get64(sg_temp));
339                 cur_seg = (struct rte_mbuf *)((char *)sg_vaddr -
340                                                       bp_info->meta_data_size);
341                 cur_seg->data_off = sg_temp->offset;
342                 cur_seg->data_len = sg_temp->length;
343                 first_seg->pkt_len += sg_temp->length;
344                 first_seg->nb_segs += 1;
345                 rte_mbuf_refcnt_set(cur_seg, 1);
346                 prev_seg->next = cur_seg;
347                 if (sg_temp->final) {
348                         cur_seg->next = NULL;
349                         break;
350                 }
351                 prev_seg = cur_seg;
352         }
353
354         dpaa_eth_packet_info(first_seg, (uint64_t)vaddr);
355         rte_pktmbuf_free_seg(temp);
356
357         return first_seg;
358 }
359
360 static inline struct rte_mbuf *
361 dpaa_eth_fd_to_mbuf(const struct qm_fd *fd, uint32_t ifid)
362 {
363         struct rte_mbuf *mbuf;
364         struct dpaa_bp_info *bp_info = DPAA_BPID_TO_POOL_INFO(fd->bpid);
365         void *ptr;
366         uint8_t format =
367                 (fd->opaque & DPAA_FD_FORMAT_MASK) >> DPAA_FD_FORMAT_SHIFT;
368         uint16_t offset;
369         uint32_t length;
370
371         DPAA_DP_LOG(DEBUG, " FD--->MBUF");
372
373         if (unlikely(format == qm_fd_sg))
374                 return dpaa_eth_sg_to_mbuf(fd, ifid);
375
376         ptr = DPAA_MEMPOOL_PTOV(bp_info, qm_fd_addr(fd));
377
378         rte_prefetch0((void *)((uint8_t *)ptr + DEFAULT_RX_ICEOF));
379
380         offset = (fd->opaque & DPAA_FD_OFFSET_MASK) >> DPAA_FD_OFFSET_SHIFT;
381         length = fd->opaque & DPAA_FD_LENGTH_MASK;
382
383         /* Ignoring case when format != qm_fd_contig */
384         dpaa_display_frame(fd);
385
386         mbuf = (struct rte_mbuf *)((char *)ptr - bp_info->meta_data_size);
387
388         mbuf->data_off = offset;
389         mbuf->data_len = length;
390         mbuf->pkt_len = length;
391
392         mbuf->port = ifid;
393         mbuf->nb_segs = 1;
394         mbuf->ol_flags = 0;
395         mbuf->next = NULL;
396         rte_mbuf_refcnt_set(mbuf, 1);
397         dpaa_eth_packet_info(mbuf, (uint64_t)mbuf->buf_addr);
398
399         return mbuf;
400 }
401
402 void
403 dpaa_rx_cb(struct qman_fq **fq, struct qm_dqrr_entry **dqrr,
404            void **bufs, int num_bufs)
405 {
406         struct rte_mbuf *mbuf;
407         struct dpaa_bp_info *bp_info;
408         const struct qm_fd *fd;
409         void *ptr;
410         struct dpaa_if *dpaa_intf;
411         uint16_t offset, i;
412         uint32_t length;
413         uint8_t format;
414
415         if (dpaa_svr_family != SVR_LS1046A_FAMILY) {
416                 bp_info = DPAA_BPID_TO_POOL_INFO(dqrr[0]->fd.bpid);
417                 ptr = rte_dpaa_mem_ptov(qm_fd_addr(&dqrr[0]->fd));
418                 rte_prefetch0((void *)((uint8_t *)ptr + DEFAULT_RX_ICEOF));
419                 bufs[0] = (struct rte_mbuf *)((char *)ptr -
420                                 bp_info->meta_data_size);
421         }
422
423         for (i = 0; i < num_bufs; i++) {
424                 if (dpaa_svr_family != SVR_LS1046A_FAMILY &&
425                     i < num_bufs - 1) {
426                         bp_info = DPAA_BPID_TO_POOL_INFO(dqrr[i + 1]->fd.bpid);
427                         ptr = rte_dpaa_mem_ptov(qm_fd_addr(&dqrr[i + 1]->fd));
428                         rte_prefetch0((void *)((uint8_t *)ptr +
429                                         DEFAULT_RX_ICEOF));
430                         bufs[i + 1] = (struct rte_mbuf *)((char *)ptr -
431                                         bp_info->meta_data_size);
432                 }
433
434                 fd = &dqrr[i]->fd;
435                 dpaa_intf = fq[i]->dpaa_intf;
436
437                 format = (fd->opaque & DPAA_FD_FORMAT_MASK) >>
438                                 DPAA_FD_FORMAT_SHIFT;
439                 if (unlikely(format == qm_fd_sg)) {
440                         bufs[i] = dpaa_eth_sg_to_mbuf(fd, dpaa_intf->ifid);
441                         continue;
442                 }
443
444                 offset = (fd->opaque & DPAA_FD_OFFSET_MASK) >>
445                                 DPAA_FD_OFFSET_SHIFT;
446                 length = fd->opaque & DPAA_FD_LENGTH_MASK;
447
448                 mbuf = bufs[i];
449                 mbuf->data_off = offset;
450                 mbuf->data_len = length;
451                 mbuf->pkt_len = length;
452                 mbuf->port = dpaa_intf->ifid;
453
454                 mbuf->nb_segs = 1;
455                 mbuf->ol_flags = 0;
456                 mbuf->next = NULL;
457                 rte_mbuf_refcnt_set(mbuf, 1);
458                 dpaa_eth_packet_info(mbuf, (uint64_t)mbuf->buf_addr);
459         }
460 }
461
462 void dpaa_rx_cb_prepare(struct qm_dqrr_entry *dq, void **bufs)
463 {
464         struct dpaa_bp_info *bp_info = DPAA_BPID_TO_POOL_INFO(dq->fd.bpid);
465         void *ptr = rte_dpaa_mem_ptov(qm_fd_addr(&dq->fd));
466
467         /* In case of LS1046, annotation stashing is disabled due to L2 cache
468          * being bottleneck in case of multicore scanario for this platform.
469          * So we prefetch the annoation beforehand, so that it is available
470          * in cache when accessed.
471          */
472         if (dpaa_svr_family == SVR_LS1046A_FAMILY)
473                 rte_prefetch0((void *)((uint8_t *)ptr + DEFAULT_RX_ICEOF));
474
475         *bufs = (struct rte_mbuf *)((char *)ptr - bp_info->meta_data_size);
476 }
477
478 static uint16_t
479 dpaa_eth_queue_portal_rx(struct qman_fq *fq,
480                          struct rte_mbuf **bufs,
481                          uint16_t nb_bufs)
482 {
483         int ret;
484
485         if (unlikely(fq->qp == NULL)) {
486                 ret = rte_dpaa_portal_fq_init((void *)0, fq);
487                 if (ret) {
488                         DPAA_PMD_ERR("Failure in affining portal %d", ret);
489                         return 0;
490                 }
491         }
492
493         return qman_portal_poll_rx(nb_bufs, (void **)bufs, fq->qp);
494 }
495
496 enum qman_cb_dqrr_result
497 dpaa_rx_cb_parallel(void *event,
498                     struct qman_portal *qm __always_unused,
499                     struct qman_fq *fq,
500                     const struct qm_dqrr_entry *dqrr,
501                     void **bufs)
502 {
503         u32 ifid = ((struct dpaa_if *)fq->dpaa_intf)->ifid;
504         struct rte_mbuf *mbuf;
505         struct rte_event *ev = (struct rte_event *)event;
506
507         mbuf = dpaa_eth_fd_to_mbuf(&dqrr->fd, ifid);
508         ev->event_ptr = (void *)mbuf;
509         ev->flow_id = fq->ev.flow_id;
510         ev->sub_event_type = fq->ev.sub_event_type;
511         ev->event_type = RTE_EVENT_TYPE_ETHDEV;
512         ev->op = RTE_EVENT_OP_NEW;
513         ev->sched_type = fq->ev.sched_type;
514         ev->queue_id = fq->ev.queue_id;
515         ev->priority = fq->ev.priority;
516         ev->impl_opaque = (uint8_t)DPAA_INVALID_MBUF_SEQN;
517         mbuf->seqn = DPAA_INVALID_MBUF_SEQN;
518         *bufs = mbuf;
519
520         return qman_cb_dqrr_consume;
521 }
522
523 enum qman_cb_dqrr_result
524 dpaa_rx_cb_atomic(void *event,
525                   struct qman_portal *qm __always_unused,
526                   struct qman_fq *fq,
527                   const struct qm_dqrr_entry *dqrr,
528                   void **bufs)
529 {
530         u8 index;
531         u32 ifid = ((struct dpaa_if *)fq->dpaa_intf)->ifid;
532         struct rte_mbuf *mbuf;
533         struct rte_event *ev = (struct rte_event *)event;
534
535         mbuf = dpaa_eth_fd_to_mbuf(&dqrr->fd, ifid);
536         ev->event_ptr = (void *)mbuf;
537         ev->flow_id = fq->ev.flow_id;
538         ev->sub_event_type = fq->ev.sub_event_type;
539         ev->event_type = RTE_EVENT_TYPE_ETHDEV;
540         ev->op = RTE_EVENT_OP_NEW;
541         ev->sched_type = fq->ev.sched_type;
542         ev->queue_id = fq->ev.queue_id;
543         ev->priority = fq->ev.priority;
544
545         /* Save active dqrr entries */
546         index = DQRR_PTR2IDX(dqrr);
547         DPAA_PER_LCORE_DQRR_SIZE++;
548         DPAA_PER_LCORE_DQRR_HELD |= 1 << index;
549         DPAA_PER_LCORE_DQRR_MBUF(index) = mbuf;
550         ev->impl_opaque = index + 1;
551         mbuf->seqn = (uint32_t)index + 1;
552         *bufs = mbuf;
553
554         return qman_cb_dqrr_defer;
555 }
556
557 uint16_t dpaa_eth_queue_rx(void *q,
558                            struct rte_mbuf **bufs,
559                            uint16_t nb_bufs)
560 {
561         struct qman_fq *fq = q;
562         struct qm_dqrr_entry *dq;
563         uint32_t num_rx = 0, ifid = ((struct dpaa_if *)fq->dpaa_intf)->ifid;
564         int ret;
565
566         if (likely(fq->is_static))
567                 return dpaa_eth_queue_portal_rx(fq, bufs, nb_bufs);
568
569         if (unlikely(!RTE_PER_LCORE(dpaa_io))) {
570                 ret = rte_dpaa_portal_init((void *)0);
571                 if (ret) {
572                         DPAA_PMD_ERR("Failure in affining portal");
573                         return 0;
574                 }
575         }
576
577         ret = qman_set_vdq(fq, (nb_bufs > DPAA_MAX_DEQUEUE_NUM_FRAMES) ?
578                                 DPAA_MAX_DEQUEUE_NUM_FRAMES : nb_bufs);
579         if (ret)
580                 return 0;
581
582         do {
583                 dq = qman_dequeue(fq);
584                 if (!dq)
585                         continue;
586                 bufs[num_rx++] = dpaa_eth_fd_to_mbuf(&dq->fd, ifid);
587                 qman_dqrr_consume(fq, dq);
588         } while (fq->flags & QMAN_FQ_STATE_VDQCR);
589
590         return num_rx;
591 }
592
593 static void *dpaa_get_pktbuf(struct dpaa_bp_info *bp_info)
594 {
595         int ret;
596         uint64_t buf = 0;
597         struct bm_buffer bufs;
598
599         ret = bman_acquire(bp_info->bp, &bufs, 1, 0);
600         if (ret <= 0) {
601                 DPAA_PMD_WARN("Failed to allocate buffers %d", ret);
602                 return (void *)buf;
603         }
604
605         DPAA_DP_LOG(DEBUG, "got buffer 0x%lx from pool %d",
606                     (uint64_t)bufs.addr, bufs.bpid);
607
608         buf = (uint64_t)DPAA_MEMPOOL_PTOV(bp_info, bufs.addr)
609                                 - bp_info->meta_data_size;
610         if (!buf)
611                 goto out;
612
613 out:
614         return (void *)buf;
615 }
616
617 static struct rte_mbuf *dpaa_get_dmable_mbuf(struct rte_mbuf *mbuf,
618                                              struct dpaa_if *dpaa_intf)
619 {
620         struct rte_mbuf *dpaa_mbuf;
621
622         /* allocate pktbuffer on bpid for dpaa port */
623         dpaa_mbuf = dpaa_get_pktbuf(dpaa_intf->bp_info);
624         if (!dpaa_mbuf)
625                 return NULL;
626
627         memcpy((uint8_t *)(dpaa_mbuf->buf_addr) + RTE_PKTMBUF_HEADROOM, (void *)
628                 ((uint8_t *)(mbuf->buf_addr) + mbuf->data_off), mbuf->pkt_len);
629
630         /* Copy only the required fields */
631         dpaa_mbuf->data_off = RTE_PKTMBUF_HEADROOM;
632         dpaa_mbuf->pkt_len = mbuf->pkt_len;
633         dpaa_mbuf->ol_flags = mbuf->ol_flags;
634         dpaa_mbuf->packet_type = mbuf->packet_type;
635         dpaa_mbuf->tx_offload = mbuf->tx_offload;
636         rte_pktmbuf_free(mbuf);
637         return dpaa_mbuf;
638 }
639
640 int
641 dpaa_eth_mbuf_to_sg_fd(struct rte_mbuf *mbuf,
642                 struct qm_fd *fd,
643                 uint32_t bpid)
644 {
645         struct rte_mbuf *cur_seg = mbuf, *prev_seg = NULL;
646         struct dpaa_bp_info *bp_info = DPAA_BPID_TO_POOL_INFO(bpid);
647         struct rte_mbuf *temp, *mi;
648         struct qm_sg_entry *sg_temp, *sgt;
649         int i = 0;
650
651         DPAA_DP_LOG(DEBUG, "Creating SG FD to transmit");
652
653         temp = rte_pktmbuf_alloc(bp_info->mp);
654         if (!temp) {
655                 DPAA_PMD_ERR("Failure in allocation of mbuf");
656                 return -1;
657         }
658         if (temp->buf_len < ((mbuf->nb_segs * sizeof(struct qm_sg_entry))
659                                 + temp->data_off)) {
660                 DPAA_PMD_ERR("Insufficient space in mbuf for SG entries");
661                 return -1;
662         }
663
664         fd->cmd = 0;
665         fd->opaque_addr = 0;
666
667         if (mbuf->ol_flags & DPAA_TX_CKSUM_OFFLOAD_MASK) {
668                 if (!mbuf->packet_type) {
669                         struct rte_net_hdr_lens hdr_lens;
670
671                         mbuf->packet_type = rte_net_get_ptype(mbuf, &hdr_lens,
672                                         RTE_PTYPE_L2_MASK | RTE_PTYPE_L3_MASK
673                                         | RTE_PTYPE_L4_MASK);
674                         mbuf->l2_len = hdr_lens.l2_len;
675                         mbuf->l3_len = hdr_lens.l3_len;
676                 }
677                 if (temp->data_off < DEFAULT_TX_ICEOF
678                         + sizeof(struct dpaa_eth_parse_results_t))
679                         temp->data_off = DEFAULT_TX_ICEOF
680                                 + sizeof(struct dpaa_eth_parse_results_t);
681                 dcbz_64(temp->buf_addr);
682                 dpaa_checksum_offload(mbuf, fd, temp->buf_addr);
683         }
684
685         sgt = temp->buf_addr + temp->data_off;
686         fd->format = QM_FD_SG;
687         fd->addr = temp->buf_iova;
688         fd->offset = temp->data_off;
689         fd->bpid = bpid;
690         fd->length20 = mbuf->pkt_len;
691
692         while (i < DPAA_SGT_MAX_ENTRIES) {
693                 sg_temp = &sgt[i++];
694                 sg_temp->opaque = 0;
695                 sg_temp->val = 0;
696                 sg_temp->addr = cur_seg->buf_iova;
697                 sg_temp->offset = cur_seg->data_off;
698                 sg_temp->length = cur_seg->data_len;
699                 if (RTE_MBUF_DIRECT(cur_seg)) {
700                         if (rte_mbuf_refcnt_read(cur_seg) > 1) {
701                                 /*If refcnt > 1, invalid bpid is set to ensure
702                                  * buffer is not freed by HW.
703                                  */
704                                 sg_temp->bpid = 0xff;
705                                 rte_mbuf_refcnt_update(cur_seg, -1);
706                         } else {
707                                 sg_temp->bpid =
708                                         DPAA_MEMPOOL_TO_BPID(cur_seg->pool);
709                         }
710                         cur_seg = cur_seg->next;
711                 } else {
712                         /* Get owner MBUF from indirect buffer */
713                         mi = rte_mbuf_from_indirect(cur_seg);
714                         if (rte_mbuf_refcnt_read(mi) > 1) {
715                                 /*If refcnt > 1, invalid bpid is set to ensure
716                                  * owner buffer is not freed by HW.
717                                  */
718                                 sg_temp->bpid = 0xff;
719                         } else {
720                                 sg_temp->bpid = DPAA_MEMPOOL_TO_BPID(mi->pool);
721                                 rte_mbuf_refcnt_update(mi, 1);
722                         }
723                         prev_seg = cur_seg;
724                         cur_seg = cur_seg->next;
725                         prev_seg->next = NULL;
726                         rte_pktmbuf_free(prev_seg);
727                 }
728                 if (cur_seg == NULL) {
729                         sg_temp->final = 1;
730                         cpu_to_hw_sg(sg_temp);
731                         break;
732                 }
733                 cpu_to_hw_sg(sg_temp);
734         }
735         return 0;
736 }
737
738 /* Handle mbufs which are not segmented (non SG) */
739 static inline void
740 tx_on_dpaa_pool_unsegmented(struct rte_mbuf *mbuf,
741                             struct dpaa_bp_info *bp_info,
742                             struct qm_fd *fd_arr)
743 {
744         struct rte_mbuf *mi = NULL;
745
746         if (RTE_MBUF_DIRECT(mbuf)) {
747                 if (rte_mbuf_refcnt_read(mbuf) > 1) {
748                         /* In case of direct mbuf and mbuf being cloned,
749                          * BMAN should _not_ release buffer.
750                          */
751                         DPAA_MBUF_TO_CONTIG_FD(mbuf, fd_arr, 0xff);
752                         /* Buffer should be releasd by EAL */
753                         rte_mbuf_refcnt_update(mbuf, -1);
754                 } else {
755                         /* In case of direct mbuf and no cloning, mbuf can be
756                          * released by BMAN.
757                          */
758                         DPAA_MBUF_TO_CONTIG_FD(mbuf, fd_arr, bp_info->bpid);
759                 }
760         } else {
761                 /* This is data-containing core mbuf: 'mi' */
762                 mi = rte_mbuf_from_indirect(mbuf);
763                 if (rte_mbuf_refcnt_read(mi) > 1) {
764                         /* In case of indirect mbuf, and mbuf being cloned,
765                          * BMAN should _not_ release it and let EAL release
766                          * it through pktmbuf_free below.
767                          */
768                         DPAA_MBUF_TO_CONTIG_FD(mbuf, fd_arr, 0xff);
769                 } else {
770                         /* In case of indirect mbuf, and no cloning, core mbuf
771                          * should be released by BMAN.
772                          * Increate refcnt of core mbuf so that when
773                          * pktmbuf_free is called and mbuf is released, EAL
774                          * doesn't try to release core mbuf which would have
775                          * been released by BMAN.
776                          */
777                         rte_mbuf_refcnt_update(mi, 1);
778                         DPAA_MBUF_TO_CONTIG_FD(mbuf, fd_arr, bp_info->bpid);
779                 }
780                 rte_pktmbuf_free(mbuf);
781         }
782
783         if (mbuf->ol_flags & DPAA_TX_CKSUM_OFFLOAD_MASK)
784                 dpaa_unsegmented_checksum(mbuf, fd_arr);
785 }
786
787 /* Handle all mbufs on dpaa BMAN managed pool */
788 static inline uint16_t
789 tx_on_dpaa_pool(struct rte_mbuf *mbuf,
790                 struct dpaa_bp_info *bp_info,
791                 struct qm_fd *fd_arr)
792 {
793         DPAA_DP_LOG(DEBUG, "BMAN offloaded buffer, mbuf: %p", mbuf);
794
795         if (mbuf->nb_segs == 1) {
796                 /* Case for non-segmented buffers */
797                 tx_on_dpaa_pool_unsegmented(mbuf, bp_info, fd_arr);
798         } else if (mbuf->nb_segs > 1 &&
799                    mbuf->nb_segs <= DPAA_SGT_MAX_ENTRIES) {
800                 if (dpaa_eth_mbuf_to_sg_fd(mbuf, fd_arr, bp_info->bpid)) {
801                         DPAA_PMD_DEBUG("Unable to create Scatter Gather FD");
802                         return 1;
803                 }
804         } else {
805                 DPAA_PMD_DEBUG("Number of Segments not supported");
806                 return 1;
807         }
808
809         return 0;
810 }
811
812 /* Handle all mbufs on an external pool (non-dpaa) */
813 static inline uint16_t
814 tx_on_external_pool(struct qman_fq *txq, struct rte_mbuf *mbuf,
815                     struct qm_fd *fd_arr)
816 {
817         struct dpaa_if *dpaa_intf = txq->dpaa_intf;
818         struct rte_mbuf *dmable_mbuf;
819
820         DPAA_DP_LOG(DEBUG, "Non-BMAN offloaded buffer."
821                     "Allocating an offloaded buffer");
822         dmable_mbuf = dpaa_get_dmable_mbuf(mbuf, dpaa_intf);
823         if (!dmable_mbuf) {
824                 DPAA_DP_LOG(DEBUG, "no dpaa buffers.");
825                 return 1;
826         }
827
828         DPAA_MBUF_TO_CONTIG_FD(dmable_mbuf, fd_arr, dpaa_intf->bp_info->bpid);
829
830         return 0;
831 }
832
833 uint16_t
834 dpaa_eth_queue_tx(void *q, struct rte_mbuf **bufs, uint16_t nb_bufs)
835 {
836         struct rte_mbuf *mbuf, *mi = NULL;
837         struct rte_mempool *mp;
838         struct dpaa_bp_info *bp_info;
839         struct qm_fd fd_arr[DPAA_TX_BURST_SIZE];
840         uint32_t frames_to_send, loop, sent = 0;
841         uint16_t state;
842         int ret;
843         uint32_t seqn, index, flags[DPAA_TX_BURST_SIZE] = {0};
844
845         if (unlikely(!RTE_PER_LCORE(dpaa_io))) {
846                 ret = rte_dpaa_portal_init((void *)0);
847                 if (ret) {
848                         DPAA_PMD_ERR("Failure in affining portal");
849                         return 0;
850                 }
851         }
852
853         DPAA_DP_LOG(DEBUG, "Transmitting %d buffers on queue: %p", nb_bufs, q);
854
855         while (nb_bufs) {
856                 frames_to_send = (nb_bufs > DPAA_TX_BURST_SIZE) ?
857                                 DPAA_TX_BURST_SIZE : nb_bufs;
858                 for (loop = 0; loop < frames_to_send; loop++) {
859                         mbuf = *(bufs++);
860                         if (likely(RTE_MBUF_DIRECT(mbuf))) {
861                                 mp = mbuf->pool;
862                                 bp_info = DPAA_MEMPOOL_TO_POOL_INFO(mp);
863                                 if (likely(mp->ops_index ==
864                                                 bp_info->dpaa_ops_index &&
865                                         mbuf->nb_segs == 1 &&
866                                         rte_mbuf_refcnt_read(mbuf) == 1)) {
867                                         DPAA_MBUF_TO_CONTIG_FD(mbuf,
868                                                 &fd_arr[loop], bp_info->bpid);
869                                         if (mbuf->ol_flags &
870                                                 DPAA_TX_CKSUM_OFFLOAD_MASK)
871                                                 dpaa_unsegmented_checksum(mbuf,
872                                                         &fd_arr[loop]);
873                                         continue;
874                                 }
875                         } else {
876                                 mi = rte_mbuf_from_indirect(mbuf);
877                                 mp = mi->pool;
878                         }
879
880                         bp_info = DPAA_MEMPOOL_TO_POOL_INFO(mp);
881                         if (likely(mp->ops_index == bp_info->dpaa_ops_index)) {
882                                 state = tx_on_dpaa_pool(mbuf, bp_info,
883                                                         &fd_arr[loop]);
884                                 if (unlikely(state)) {
885                                         /* Set frames_to_send & nb_bufs so
886                                          * that packets are transmitted till
887                                          * previous frame.
888                                          */
889                                         frames_to_send = loop;
890                                         nb_bufs = loop;
891                                         goto send_pkts;
892                                 }
893                         } else {
894                                 state = tx_on_external_pool(q, mbuf,
895                                                             &fd_arr[loop]);
896                                 if (unlikely(state)) {
897                                         /* Set frames_to_send & nb_bufs so
898                                          * that packets are transmitted till
899                                          * previous frame.
900                                          */
901                                         frames_to_send = loop;
902                                         nb_bufs = loop;
903                                         goto send_pkts;
904                                 }
905                         }
906                         seqn = mbuf->seqn;
907                         if (seqn != DPAA_INVALID_MBUF_SEQN) {
908                                 index = seqn - 1;
909                                 if (DPAA_PER_LCORE_DQRR_HELD & (1 << index)) {
910                                         flags[loop] =
911                                            ((index & QM_EQCR_DCA_IDXMASK) << 8);
912                                         flags[loop] |= QMAN_ENQUEUE_FLAG_DCA;
913                                         DPAA_PER_LCORE_DQRR_SIZE--;
914                                         DPAA_PER_LCORE_DQRR_HELD &=
915                                                                 ~(1 << index);
916                                 }
917                         }
918                 }
919
920 send_pkts:
921                 loop = 0;
922                 while (loop < frames_to_send) {
923                         loop += qman_enqueue_multi(q, &fd_arr[loop],
924                                                    &flags[loop],
925                                                    frames_to_send - loop);
926                 }
927                 nb_bufs -= frames_to_send;
928                 sent += frames_to_send;
929         }
930
931         DPAA_DP_LOG(DEBUG, "Transmitted %d buffers on queue: %p", sent, q);
932
933         return sent;
934 }
935
936 uint16_t dpaa_eth_tx_drop_all(void *q  __rte_unused,
937                               struct rte_mbuf **bufs __rte_unused,
938                 uint16_t nb_bufs __rte_unused)
939 {
940         DPAA_DP_LOG(DEBUG, "Drop all packets");
941
942         /* Drop all incoming packets. No need to free packets here
943          * because the rte_eth f/w frees up the packets through tx_buffer
944          * callback in case this functions returns count less than nb_bufs
945          */
946         return 0;
947 }