drivers/net: check process type in close operation
[dpdk.git] / drivers / net / pfe / pfe_ethdev.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright 2018-2019 NXP
3  */
4
5 #include <sys/ioctl.h>
6 #include <sys/epoll.h>
7 #include <rte_kvargs.h>
8 #include <rte_ethdev_vdev.h>
9 #include <rte_bus_vdev.h>
10 #include <rte_ether.h>
11 #include <dpaa_of.h>
12
13 #include "pfe_logs.h"
14 #include "pfe_mod.h"
15
16 #define PFE_MAX_MACS 1 /* we can support up to 4 MACs per IF */
17 #define PFE_VDEV_GEM_ID_ARG     "intf"
18
19 struct pfe_vdev_init_params {
20         int8_t  gem_id;
21 };
22 static struct pfe *g_pfe;
23 /* Supported Rx offloads */
24 static uint64_t dev_rx_offloads_sup =
25                 DEV_RX_OFFLOAD_IPV4_CKSUM |
26                 DEV_RX_OFFLOAD_UDP_CKSUM |
27                 DEV_RX_OFFLOAD_TCP_CKSUM;
28
29 /* Supported Tx offloads */
30 static uint64_t dev_tx_offloads_sup =
31                 DEV_TX_OFFLOAD_IPV4_CKSUM |
32                 DEV_TX_OFFLOAD_UDP_CKSUM |
33                 DEV_TX_OFFLOAD_TCP_CKSUM;
34
35 /* TODO: make pfe_svr a runtime option.
36  * Driver should be able to get the SVR
37  * information from HW.
38  */
39 unsigned int pfe_svr = SVR_LS1012A_REV1;
40 static void *cbus_emac_base[3];
41 static void *cbus_gpi_base[3];
42
43 /* pfe_gemac_init
44  */
45 static int
46 pfe_gemac_init(struct pfe_eth_priv_s *priv)
47 {
48         struct gemac_cfg cfg;
49
50         cfg.speed = SPEED_1000M;
51         cfg.duplex = DUPLEX_FULL;
52
53         gemac_set_config(priv->EMAC_baseaddr, &cfg);
54         gemac_allow_broadcast(priv->EMAC_baseaddr);
55         gemac_enable_1536_rx(priv->EMAC_baseaddr);
56         gemac_enable_stacked_vlan(priv->EMAC_baseaddr);
57         gemac_enable_pause_rx(priv->EMAC_baseaddr);
58         gemac_set_bus_width(priv->EMAC_baseaddr, 64);
59         gemac_enable_rx_checksum_offload(priv->EMAC_baseaddr);
60
61         return 0;
62 }
63
64 static void
65 pfe_soc_version_get(void)
66 {
67         FILE *svr_file = NULL;
68         unsigned int svr_ver = 0;
69
70         PMD_INIT_FUNC_TRACE();
71
72         svr_file = fopen(PFE_SOC_ID_FILE, "r");
73         if (!svr_file) {
74                 PFE_PMD_ERR("Unable to open SoC device");
75                 return; /* Not supported on this infra */
76         }
77
78         if (fscanf(svr_file, "svr:%x", &svr_ver) > 0)
79                 pfe_svr = svr_ver;
80         else
81                 PFE_PMD_ERR("Unable to read SoC device");
82
83         fclose(svr_file);
84 }
85
86 static int pfe_eth_start(struct pfe_eth_priv_s *priv)
87 {
88         gpi_enable(priv->GPI_baseaddr);
89         gemac_enable(priv->EMAC_baseaddr);
90
91         return 0;
92 }
93
94 static void
95 pfe_eth_flush_txQ(struct pfe_eth_priv_s *priv, int tx_q_num, int
96                   __rte_unused from_tx, __rte_unused int n_desc)
97 {
98         struct rte_mbuf *mbuf;
99         unsigned int flags;
100
101         /* Clean HIF and client queue */
102         while ((mbuf = hif_lib_tx_get_next_complete(&priv->client,
103                                                    tx_q_num, &flags,
104                                                    HIF_TX_DESC_NT))) {
105                 if (mbuf) {
106                         mbuf->next = NULL;
107                         mbuf->nb_segs = 1;
108                         rte_pktmbuf_free(mbuf);
109                 }
110         }
111 }
112
113
114 static void
115 pfe_eth_flush_tx(struct pfe_eth_priv_s *priv)
116 {
117         unsigned int ii;
118
119         for (ii = 0; ii < emac_txq_cnt; ii++)
120                 pfe_eth_flush_txQ(priv, ii, 0, 0);
121 }
122
123 static int
124 pfe_eth_event_handler(void *data, int event, __rte_unused int qno)
125 {
126         struct pfe_eth_priv_s *priv = data;
127
128         switch (event) {
129         case EVENT_TXDONE_IND:
130                 pfe_eth_flush_tx(priv);
131                 hif_lib_event_handler_start(&priv->client, EVENT_TXDONE_IND, 0);
132                 break;
133         case EVENT_HIGH_RX_WM:
134         default:
135                 break;
136         }
137
138         return 0;
139 }
140
141 static uint16_t
142 pfe_recv_pkts_on_intr(void *rxq, struct rte_mbuf **rx_pkts, uint16_t nb_pkts)
143 {
144         struct hif_client_rx_queue *queue = rxq;
145         struct pfe_eth_priv_s *priv = queue->priv;
146         struct epoll_event epoll_ev;
147         uint64_t ticks = 1;  /* 1 msec */
148         int ret;
149         int have_something, work_done;
150
151 #define RESET_STATUS (HIF_INT | HIF_RXPKT_INT)
152
153         /*TODO can we remove this cleanup from here?*/
154         pfe_tx_do_cleanup(priv->pfe);
155         have_something = pfe_hif_rx_process(priv->pfe, nb_pkts);
156         work_done = hif_lib_receive_pkt(rxq, priv->pfe->hif.shm->pool,
157                         rx_pkts, nb_pkts);
158
159         if (!have_something || !work_done) {
160                 writel(RESET_STATUS, HIF_INT_SRC);
161                 writel(readl(HIF_INT_ENABLE) | HIF_RXPKT_INT, HIF_INT_ENABLE);
162                 ret = epoll_wait(priv->pfe->hif.epoll_fd, &epoll_ev, 1, ticks);
163                 if (ret < 0 && errno != EINTR)
164                         PFE_PMD_ERR("epoll_wait fails with %d\n", errno);
165         }
166
167         return work_done;
168 }
169
170 static uint16_t
171 pfe_recv_pkts(void *rxq, struct rte_mbuf **rx_pkts, uint16_t nb_pkts)
172 {
173         struct hif_client_rx_queue *queue = rxq;
174         struct pfe_eth_priv_s *priv = queue->priv;
175         struct rte_mempool *pool;
176
177         /*TODO can we remove this cleanup from here?*/
178         pfe_tx_do_cleanup(priv->pfe);
179         pfe_hif_rx_process(priv->pfe, nb_pkts);
180         pool = priv->pfe->hif.shm->pool;
181
182         return hif_lib_receive_pkt(rxq, pool, rx_pkts, nb_pkts);
183 }
184
185 static uint16_t
186 pfe_xmit_pkts(void *tx_queue, struct rte_mbuf **tx_pkts, uint16_t nb_pkts)
187 {
188         struct hif_client_tx_queue *queue = tx_queue;
189         struct pfe_eth_priv_s *priv = queue->priv;
190         struct rte_eth_stats *stats = &priv->stats;
191         int i;
192
193         for (i = 0; i < nb_pkts; i++) {
194                 if (tx_pkts[i]->nb_segs > 1) {
195                         struct rte_mbuf *mbuf;
196                         int j;
197
198                         hif_lib_xmit_pkt(&priv->client, queue->queue_id,
199                                 (void *)(size_t)rte_pktmbuf_iova(tx_pkts[i]),
200                                 tx_pkts[i]->buf_addr + tx_pkts[i]->data_off,
201                                 tx_pkts[i]->data_len, 0x0, HIF_FIRST_BUFFER,
202                                 tx_pkts[i]);
203
204                         mbuf = tx_pkts[i]->next;
205                         for (j = 0; j < (tx_pkts[i]->nb_segs - 2); j++) {
206                                 hif_lib_xmit_pkt(&priv->client, queue->queue_id,
207                                         (void *)(size_t)rte_pktmbuf_iova(mbuf),
208                                         mbuf->buf_addr + mbuf->data_off,
209                                         mbuf->data_len,
210                                         0x0, 0x0, mbuf);
211                                 mbuf = mbuf->next;
212                         }
213
214                         hif_lib_xmit_pkt(&priv->client, queue->queue_id,
215                                         (void *)(size_t)rte_pktmbuf_iova(mbuf),
216                                         mbuf->buf_addr + mbuf->data_off,
217                                         mbuf->data_len,
218                                         0x0, HIF_LAST_BUFFER | HIF_DATA_VALID,
219                                         mbuf);
220                 } else {
221                         hif_lib_xmit_pkt(&priv->client, queue->queue_id,
222                                 (void *)(size_t)rte_pktmbuf_iova(tx_pkts[i]),
223                                 tx_pkts[i]->buf_addr + tx_pkts[i]->data_off,
224                                 tx_pkts[i]->pkt_len, 0 /*ctrl*/,
225                                 HIF_FIRST_BUFFER | HIF_LAST_BUFFER |
226                                 HIF_DATA_VALID,
227                                 tx_pkts[i]);
228                 }
229                 stats->obytes += tx_pkts[i]->pkt_len;
230                 hif_tx_dma_start();
231         }
232         stats->opackets += nb_pkts;
233         pfe_tx_do_cleanup(priv->pfe);
234
235         return nb_pkts;
236 }
237
238 static uint16_t
239 pfe_dummy_xmit_pkts(__rte_unused void *tx_queue,
240                 __rte_unused struct rte_mbuf **tx_pkts,
241                 __rte_unused uint16_t nb_pkts)
242 {
243         return 0;
244 }
245
246 static uint16_t
247 pfe_dummy_recv_pkts(__rte_unused void *rxq,
248                 __rte_unused struct rte_mbuf **rx_pkts,
249                 __rte_unused uint16_t nb_pkts)
250 {
251         return 0;
252 }
253
254 static int
255 pfe_eth_open(struct rte_eth_dev *dev)
256 {
257         struct pfe_eth_priv_s *priv = dev->data->dev_private;
258         struct hif_client_s *client;
259         struct hif_shm *hif_shm;
260         int rc;
261
262         /* Register client driver with HIF */
263         client = &priv->client;
264
265         if (client->pfe) {
266                 hif_shm = client->pfe->hif.shm;
267                 /* TODO please remove the below code of if block, once we add
268                  * the proper cleanup in eth_close
269                  */
270                 if (!test_bit(PFE_CL_GEM0 + priv->id,
271                               &hif_shm->g_client_status[0])) {
272                         /* Register client driver with HIF */
273                         memset(client, 0, sizeof(*client));
274                         client->id = PFE_CL_GEM0 + priv->id;
275                         client->tx_qn = emac_txq_cnt;
276                         client->rx_qn = EMAC_RXQ_CNT;
277                         client->priv = priv;
278                         client->pfe = priv->pfe;
279                         client->port_id = dev->data->port_id;
280                         client->event_handler = pfe_eth_event_handler;
281
282                         client->tx_qsize = EMAC_TXQ_DEPTH;
283                         client->rx_qsize = EMAC_RXQ_DEPTH;
284
285                         rc = hif_lib_client_register(client);
286                         if (rc) {
287                                 PFE_PMD_ERR("hif_lib_client_register(%d)"
288                                             " failed", client->id);
289                                 goto err0;
290                         }
291                 } else {
292                         /* Freeing the packets if already exists */
293                         int ret = 0;
294                         struct rte_mbuf *rx_pkts[32];
295                         /* TODO multiqueue support */
296                         ret = hif_lib_receive_pkt(&client->rx_q[0],
297                                                   hif_shm->pool, rx_pkts, 32);
298                         while (ret) {
299                                 int i;
300                                 for (i = 0; i < ret; i++)
301                                         rte_pktmbuf_free(rx_pkts[i]);
302                                 ret = hif_lib_receive_pkt(&client->rx_q[0],
303                                                           hif_shm->pool,
304                                                           rx_pkts, 32);
305                         }
306                 }
307         } else {
308                 /* Register client driver with HIF */
309                 memset(client, 0, sizeof(*client));
310                 client->id = PFE_CL_GEM0 + priv->id;
311                 client->tx_qn = emac_txq_cnt;
312                 client->rx_qn = EMAC_RXQ_CNT;
313                 client->priv = priv;
314                 client->pfe = priv->pfe;
315                 client->port_id = dev->data->port_id;
316                 client->event_handler = pfe_eth_event_handler;
317
318                 client->tx_qsize = EMAC_TXQ_DEPTH;
319                 client->rx_qsize = EMAC_RXQ_DEPTH;
320
321                 rc = hif_lib_client_register(client);
322                 if (rc) {
323                         PFE_PMD_ERR("hif_lib_client_register(%d) failed",
324                                     client->id);
325                         goto err0;
326                 }
327         }
328         rc = pfe_eth_start(priv);
329         dev->rx_pkt_burst = &pfe_recv_pkts;
330         dev->tx_pkt_burst = &pfe_xmit_pkts;
331         /* If no prefetch is configured. */
332         if (getenv("PFE_INTR_SUPPORT")) {
333                 dev->rx_pkt_burst = &pfe_recv_pkts_on_intr;
334                 PFE_PMD_INFO("PFE INTERRUPT Mode enabled");
335         }
336
337
338 err0:
339         return rc;
340 }
341
342 static int
343 pfe_eth_open_cdev(struct pfe_eth_priv_s *priv)
344 {
345         int pfe_cdev_fd;
346
347         if (priv == NULL)
348                 return -1;
349
350         pfe_cdev_fd = open(PFE_CDEV_PATH, O_RDONLY);
351         if (pfe_cdev_fd < 0) {
352                 PFE_PMD_WARN("Unable to open PFE device file (%s).\n",
353                              PFE_CDEV_PATH);
354                 PFE_PMD_WARN("Link status update will not be available.\n");
355                 priv->link_fd = PFE_CDEV_INVALID_FD;
356                 return -1;
357         }
358
359         priv->link_fd = pfe_cdev_fd;
360
361         return 0;
362 }
363
364 static void
365 pfe_eth_close_cdev(struct pfe_eth_priv_s *priv)
366 {
367         if (priv == NULL)
368                 return;
369
370         if (priv->link_fd != PFE_CDEV_INVALID_FD) {
371                 close(priv->link_fd);
372                 priv->link_fd = PFE_CDEV_INVALID_FD;
373         }
374 }
375
376 static void
377 pfe_eth_stop(struct rte_eth_dev *dev/*, int wake*/)
378 {
379         struct pfe_eth_priv_s *priv = dev->data->dev_private;
380
381         gemac_disable(priv->EMAC_baseaddr);
382         gpi_disable(priv->GPI_baseaddr);
383
384         dev->rx_pkt_burst = &pfe_dummy_recv_pkts;
385         dev->tx_pkt_burst = &pfe_dummy_xmit_pkts;
386 }
387
388 static int
389 pfe_eth_close(struct rte_eth_dev *dev)
390 {
391         PMD_INIT_FUNC_TRACE();
392
393         if (!dev)
394                 return -1;
395
396         if (!g_pfe)
397                 return -1;
398
399         if (rte_eal_process_type() != RTE_PROC_PRIMARY)
400                 return 0;
401
402         pfe_eth_stop(dev);
403         /* Close the device file for link status */
404         pfe_eth_close_cdev(dev->data->dev_private);
405
406         munmap(g_pfe->cbus_baseaddr, g_pfe->cbus_size);
407         g_pfe->nb_devs--;
408
409         if (g_pfe->nb_devs == 0) {
410                 pfe_hif_exit(g_pfe);
411                 pfe_hif_lib_exit(g_pfe);
412                 rte_free(g_pfe);
413                 g_pfe = NULL;
414         }
415
416         return 0;
417 }
418
419 static int
420 pfe_eth_configure(struct rte_eth_dev *dev __rte_unused)
421 {
422         return 0;
423 }
424
425 static int
426 pfe_eth_info(struct rte_eth_dev *dev,
427                 struct rte_eth_dev_info *dev_info)
428 {
429         dev_info->max_mac_addrs = PFE_MAX_MACS;
430         dev_info->max_rx_queues = dev->data->nb_rx_queues;
431         dev_info->max_tx_queues = dev->data->nb_tx_queues;
432         dev_info->min_rx_bufsize = HIF_RX_PKT_MIN_SIZE;
433         dev_info->min_mtu = RTE_ETHER_MIN_MTU;
434         dev_info->rx_offload_capa = dev_rx_offloads_sup;
435         dev_info->tx_offload_capa = dev_tx_offloads_sup;
436         if (pfe_svr == SVR_LS1012A_REV1) {
437                 dev_info->max_rx_pktlen = MAX_MTU_ON_REV1 + PFE_ETH_OVERHEAD;
438                 dev_info->max_mtu = MAX_MTU_ON_REV1;
439         } else {
440                 dev_info->max_rx_pktlen = JUMBO_FRAME_SIZE;
441                 dev_info->max_mtu = JUMBO_FRAME_SIZE - PFE_ETH_OVERHEAD;
442         }
443
444         return 0;
445 }
446
447 /* Only first mb_pool given on first call of this API will be used
448  * in whole system, also nb_rx_desc and rx_conf are unused params
449  */
450 static int
451 pfe_rx_queue_setup(struct rte_eth_dev *dev, uint16_t queue_idx,
452                 __rte_unused uint16_t nb_rx_desc,
453                 __rte_unused unsigned int socket_id,
454                 __rte_unused const struct rte_eth_rxconf *rx_conf,
455                 struct rte_mempool *mb_pool)
456 {
457         int rc = 0;
458         struct pfe *pfe;
459         struct pfe_eth_priv_s *priv = dev->data->dev_private;
460
461         pfe = priv->pfe;
462
463         if (queue_idx >= EMAC_RXQ_CNT) {
464                 PFE_PMD_ERR("Invalid queue idx = %d, Max queues = %d",
465                                 queue_idx, EMAC_RXQ_CNT);
466                 return -1;
467         }
468
469         if (!pfe->hif.setuped) {
470                 rc = pfe_hif_shm_init(pfe->hif.shm, mb_pool);
471                 if (rc) {
472                         PFE_PMD_ERR("Could not allocate buffer descriptors");
473                         return -1;
474                 }
475
476                 pfe->hif.shm->pool = mb_pool;
477                 if (pfe_hif_init_buffers(&pfe->hif)) {
478                         PFE_PMD_ERR("Could not initialize buffer descriptors");
479                         return -1;
480                 }
481                 hif_init();
482                 hif_rx_enable();
483                 hif_tx_enable();
484                 pfe->hif.setuped = 1;
485         }
486         dev->data->rx_queues[queue_idx] = &priv->client.rx_q[queue_idx];
487         priv->client.rx_q[queue_idx].queue_id = queue_idx;
488
489         return 0;
490 }
491
492 static void
493 pfe_rx_queue_release(void *q __rte_unused)
494 {
495         PMD_INIT_FUNC_TRACE();
496 }
497
498 static void
499 pfe_tx_queue_release(void *q __rte_unused)
500 {
501         PMD_INIT_FUNC_TRACE();
502 }
503
504 static int
505 pfe_tx_queue_setup(struct rte_eth_dev *dev,
506                    uint16_t queue_idx,
507                    __rte_unused uint16_t nb_desc,
508                    __rte_unused unsigned int socket_id,
509                    __rte_unused const struct rte_eth_txconf *tx_conf)
510 {
511         struct pfe_eth_priv_s *priv = dev->data->dev_private;
512
513         if (queue_idx >= emac_txq_cnt) {
514                 PFE_PMD_ERR("Invalid queue idx = %d, Max queues = %d",
515                                 queue_idx, emac_txq_cnt);
516                 return -1;
517         }
518         dev->data->tx_queues[queue_idx] = &priv->client.tx_q[queue_idx];
519         priv->client.tx_q[queue_idx].queue_id = queue_idx;
520         return 0;
521 }
522
523 static const uint32_t *
524 pfe_supported_ptypes_get(struct rte_eth_dev *dev)
525 {
526         static const uint32_t ptypes[] = {
527                 /*todo -= add more types */
528                 RTE_PTYPE_L2_ETHER,
529                 RTE_PTYPE_L3_IPV4,
530                 RTE_PTYPE_L3_IPV4_EXT,
531                 RTE_PTYPE_L3_IPV6,
532                 RTE_PTYPE_L3_IPV6_EXT,
533                 RTE_PTYPE_L4_TCP,
534                 RTE_PTYPE_L4_UDP,
535                 RTE_PTYPE_L4_SCTP
536         };
537
538         if (dev->rx_pkt_burst == pfe_recv_pkts ||
539                         dev->rx_pkt_burst == pfe_recv_pkts_on_intr)
540                 return ptypes;
541         return NULL;
542 }
543
544 static inline int
545 pfe_eth_atomic_read_link_status(struct rte_eth_dev *dev,
546                                 struct rte_eth_link *link)
547 {
548         struct rte_eth_link *dst = link;
549         struct rte_eth_link *src = &dev->data->dev_link;
550
551         if (rte_atomic64_cmpset((uint64_t *)dst, *(uint64_t *)dst,
552                                 *(uint64_t *)src) == 0)
553                 return -1;
554
555         return 0;
556 }
557
558 static inline int
559 pfe_eth_atomic_write_link_status(struct rte_eth_dev *dev,
560                                  struct rte_eth_link *link)
561 {
562         struct rte_eth_link *dst = &dev->data->dev_link;
563         struct rte_eth_link *src = link;
564
565         if (rte_atomic64_cmpset((uint64_t *)dst, *(uint64_t *)dst,
566                                 *(uint64_t *)src) == 0)
567                 return -1;
568
569         return 0;
570 }
571
572 static int
573 pfe_eth_link_update(struct rte_eth_dev *dev, int wait_to_complete __rte_unused)
574 {
575         int ret, ioctl_cmd = 0;
576         struct pfe_eth_priv_s *priv = dev->data->dev_private;
577         struct rte_eth_link link, old;
578         unsigned int lstatus = 1;
579
580         if (dev == NULL) {
581                 PFE_PMD_ERR("Invalid device in link_update.\n");
582                 return 0;
583         }
584
585         memset(&old, 0, sizeof(old));
586         memset(&link, 0, sizeof(struct rte_eth_link));
587
588         pfe_eth_atomic_read_link_status(dev, &old);
589
590         /* Read from PFE CDEV, status of link, if file was successfully
591          * opened.
592          */
593         if (priv->link_fd != PFE_CDEV_INVALID_FD) {
594                 if (priv->id == 0)
595                         ioctl_cmd = PFE_CDEV_ETH0_STATE_GET;
596                 if (priv->id == 1)
597                         ioctl_cmd = PFE_CDEV_ETH1_STATE_GET;
598
599                 ret = ioctl(priv->link_fd, ioctl_cmd, &lstatus);
600                 if (ret != 0) {
601                         PFE_PMD_ERR("Unable to fetch link status (ioctl)\n");
602                         /* use dummy link value */
603                         link.link_status = 1;
604                 }
605                 PFE_PMD_DEBUG("Fetched link state (%d) for dev %d.\n",
606                               lstatus, priv->id);
607         }
608
609         if (old.link_status == lstatus) {
610                 /* no change in status */
611                 PFE_PMD_DEBUG("No change in link status; Not updating.\n");
612                 return -1;
613         }
614
615         link.link_status = lstatus;
616         link.link_speed = ETH_LINK_SPEED_1G;
617         link.link_duplex = ETH_LINK_FULL_DUPLEX;
618         link.link_autoneg = ETH_LINK_AUTONEG;
619
620         pfe_eth_atomic_write_link_status(dev, &link);
621
622         PFE_PMD_INFO("Port (%d) link is %s\n", dev->data->port_id,
623                      link.link_status ? "up" : "down");
624
625         return 0;
626 }
627
628 static int
629 pfe_promiscuous_enable(struct rte_eth_dev *dev)
630 {
631         struct pfe_eth_priv_s *priv = dev->data->dev_private;
632
633         priv->promisc = 1;
634         dev->data->promiscuous = 1;
635         gemac_enable_copy_all(priv->EMAC_baseaddr);
636
637         return 0;
638 }
639
640 static int
641 pfe_promiscuous_disable(struct rte_eth_dev *dev)
642 {
643         struct pfe_eth_priv_s *priv = dev->data->dev_private;
644
645         priv->promisc = 0;
646         dev->data->promiscuous = 0;
647         gemac_disable_copy_all(priv->EMAC_baseaddr);
648
649         return 0;
650 }
651
652 static int
653 pfe_allmulticast_enable(struct rte_eth_dev *dev)
654 {
655         struct pfe_eth_priv_s *priv = dev->data->dev_private;
656         struct pfe_mac_addr    hash_addr; /* hash register structure */
657
658         /* Set the hash to rx all multicast frames */
659         hash_addr.bottom = 0xFFFFFFFF;
660         hash_addr.top = 0xFFFFFFFF;
661         gemac_set_hash(priv->EMAC_baseaddr, &hash_addr);
662         dev->data->all_multicast = 1;
663
664         return 0;
665 }
666
667 static int
668 pfe_link_down(struct rte_eth_dev *dev)
669 {
670         pfe_eth_stop(dev);
671         return 0;
672 }
673
674 static int
675 pfe_link_up(struct rte_eth_dev *dev)
676 {
677         struct pfe_eth_priv_s *priv = dev->data->dev_private;
678
679         pfe_eth_start(priv);
680         return 0;
681 }
682
683 static int
684 pfe_mtu_set(struct rte_eth_dev *dev, uint16_t mtu)
685 {
686         int ret;
687         struct pfe_eth_priv_s *priv = dev->data->dev_private;
688         uint16_t frame_size = mtu + RTE_ETHER_HDR_LEN + RTE_ETHER_CRC_LEN;
689
690         /*TODO Support VLAN*/
691         ret = gemac_set_rx(priv->EMAC_baseaddr, frame_size);
692         if (!ret)
693                 dev->data->mtu = mtu;
694
695         return ret;
696 }
697
698 /* pfe_eth_enet_addr_byte_mac
699  */
700 static int
701 pfe_eth_enet_addr_byte_mac(u8 *enet_byte_addr,
702                            struct pfe_mac_addr *enet_addr)
703 {
704         if (!enet_byte_addr || !enet_addr) {
705                 return -1;
706
707         } else {
708                 enet_addr->bottom = enet_byte_addr[0] |
709                         (enet_byte_addr[1] << 8) |
710                         (enet_byte_addr[2] << 16) |
711                         (enet_byte_addr[3] << 24);
712                 enet_addr->top = enet_byte_addr[4] |
713                         (enet_byte_addr[5] << 8);
714                 return 0;
715         }
716 }
717
718 static int
719 pfe_dev_set_mac_addr(struct rte_eth_dev *dev,
720                        struct rte_ether_addr *addr)
721 {
722         struct pfe_eth_priv_s *priv = dev->data->dev_private;
723         struct pfe_mac_addr spec_addr;
724         int ret;
725
726         ret = pfe_eth_enet_addr_byte_mac(addr->addr_bytes, &spec_addr);
727         if (ret)
728                 return ret;
729
730         gemac_set_laddrN(priv->EMAC_baseaddr,
731                          (struct pfe_mac_addr *)&spec_addr, 1);
732         rte_ether_addr_copy(addr, &dev->data->mac_addrs[0]);
733         return 0;
734 }
735
736 static int
737 pfe_stats_get(struct rte_eth_dev *dev,
738               struct rte_eth_stats *stats)
739 {
740         struct pfe_eth_priv_s *priv = dev->data->dev_private;
741         struct rte_eth_stats *eth_stats = &priv->stats;
742
743         if (stats == NULL)
744                 return -1;
745
746         memset(stats, 0, sizeof(struct rte_eth_stats));
747
748         stats->ipackets = eth_stats->ipackets;
749         stats->ibytes = eth_stats->ibytes;
750         stats->opackets = eth_stats->opackets;
751         stats->obytes = eth_stats->obytes;
752
753         return 0;
754 }
755
756 static const struct eth_dev_ops ops = {
757         .dev_start = pfe_eth_open,
758         .dev_stop = pfe_eth_stop,
759         .dev_close = pfe_eth_close,
760         .dev_configure = pfe_eth_configure,
761         .dev_infos_get = pfe_eth_info,
762         .rx_queue_setup = pfe_rx_queue_setup,
763         .rx_queue_release  = pfe_rx_queue_release,
764         .tx_queue_setup = pfe_tx_queue_setup,
765         .tx_queue_release  = pfe_tx_queue_release,
766         .dev_supported_ptypes_get = pfe_supported_ptypes_get,
767         .link_update  = pfe_eth_link_update,
768         .promiscuous_enable   = pfe_promiscuous_enable,
769         .promiscuous_disable  = pfe_promiscuous_disable,
770         .allmulticast_enable  = pfe_allmulticast_enable,
771         .dev_set_link_down    = pfe_link_down,
772         .dev_set_link_up      = pfe_link_up,
773         .mtu_set              = pfe_mtu_set,
774         .mac_addr_set         = pfe_dev_set_mac_addr,
775         .stats_get            = pfe_stats_get,
776 };
777
778 static int
779 pfe_eth_init(struct rte_vdev_device *vdev, struct pfe *pfe, int id)
780 {
781         struct rte_eth_dev *eth_dev = NULL;
782         struct pfe_eth_priv_s *priv = NULL;
783         struct ls1012a_eth_platform_data *einfo;
784         struct ls1012a_pfe_platform_data *pfe_info;
785         struct rte_ether_addr addr;
786         int err;
787
788         eth_dev = rte_eth_vdev_allocate(vdev, sizeof(*priv));
789         if (eth_dev == NULL)
790                 return -ENOMEM;
791
792         /* Extract pltform data */
793         pfe_info = (struct ls1012a_pfe_platform_data *)&pfe->platform_data;
794         if (!pfe_info) {
795                 PFE_PMD_ERR("pfe missing additional platform data");
796                 err = -ENODEV;
797                 goto err0;
798         }
799
800         einfo = (struct ls1012a_eth_platform_data *)pfe_info->ls1012a_eth_pdata;
801
802         /* einfo never be NULL, but no harm in having this check */
803         if (!einfo) {
804                 PFE_PMD_ERR("pfe missing additional gemacs platform data");
805                 err = -ENODEV;
806                 goto err0;
807         }
808
809         priv = eth_dev->data->dev_private;
810         priv->ndev = eth_dev;
811         priv->id = einfo[id].gem_id;
812         priv->pfe = pfe;
813
814         pfe->eth.eth_priv[id] = priv;
815
816         /* Set the info in the priv to the current info */
817         priv->einfo = &einfo[id];
818         priv->EMAC_baseaddr = cbus_emac_base[id];
819         priv->PHY_baseaddr = cbus_emac_base[id];
820         priv->GPI_baseaddr = cbus_gpi_base[id];
821
822 #define HIF_GEMAC_TMUQ_BASE     6
823         priv->low_tmu_q = HIF_GEMAC_TMUQ_BASE + (id * 2);
824         priv->high_tmu_q = priv->low_tmu_q + 1;
825
826         rte_spinlock_init(&priv->lock);
827
828         /* Copy the station address into the dev structure, */
829         eth_dev->data->mac_addrs = rte_zmalloc("mac_addr",
830                         ETHER_ADDR_LEN * PFE_MAX_MACS, 0);
831         if (eth_dev->data->mac_addrs == NULL) {
832                 PFE_PMD_ERR("Failed to allocate mem %d to store MAC addresses",
833                         ETHER_ADDR_LEN * PFE_MAX_MACS);
834                 err = -ENOMEM;
835                 goto err0;
836         }
837
838         memcpy(addr.addr_bytes, priv->einfo->mac_addr,
839                        ETH_ALEN);
840
841         pfe_dev_set_mac_addr(eth_dev, &addr);
842         rte_ether_addr_copy(&addr, &eth_dev->data->mac_addrs[0]);
843
844         eth_dev->data->mtu = 1500;
845         eth_dev->dev_ops = &ops;
846         pfe_eth_stop(eth_dev);
847         pfe_gemac_init(priv);
848
849         eth_dev->data->nb_rx_queues = 1;
850         eth_dev->data->nb_tx_queues = 1;
851
852         /* For link status, open the PFE CDEV; Error from this function
853          * is silently ignored; In case of error, the link status will not
854          * be available.
855          */
856         pfe_eth_open_cdev(priv);
857         rte_eth_dev_probing_finish(eth_dev);
858
859         return 0;
860 err0:
861         rte_eth_dev_release_port(eth_dev);
862         return err;
863 }
864
865 static int
866 pfe_get_gemac_if_proprties(struct pfe *pfe,
867                 __rte_unused const struct device_node *parent,
868                 unsigned int port, unsigned int if_cnt,
869                 struct ls1012a_pfe_platform_data *pdata)
870 {
871         const struct device_node *gem = NULL;
872         size_t size;
873         unsigned int ii = 0, phy_id = 0;
874         const u32 *addr;
875         const void *mac_addr;
876
877         for (ii = 0; ii < if_cnt; ii++) {
878                 gem = of_get_next_child(parent, gem);
879                 if (!gem)
880                         goto err;
881                 addr = of_get_property(gem, "reg", &size);
882                 if (addr && (rte_be_to_cpu_32((unsigned int)*addr) == port))
883                         break;
884         }
885
886         if (ii >= if_cnt) {
887                 PFE_PMD_ERR("Failed to find interface = %d", if_cnt);
888                 goto err;
889         }
890
891         pdata->ls1012a_eth_pdata[port].gem_id = port;
892
893         mac_addr = of_get_mac_address(gem);
894
895         if (mac_addr) {
896                 memcpy(pdata->ls1012a_eth_pdata[port].mac_addr, mac_addr,
897                        ETH_ALEN);
898         }
899
900         addr = of_get_property(gem, "fsl,mdio-mux-val", &size);
901         if (!addr) {
902                 PFE_PMD_ERR("Invalid mdio-mux-val....");
903         } else {
904                 phy_id = rte_be_to_cpu_32((unsigned int)*addr);
905                 pdata->ls1012a_eth_pdata[port].mdio_muxval = phy_id;
906         }
907         if (pdata->ls1012a_eth_pdata[port].phy_id < 32)
908                 pfe->mdio_muxval[pdata->ls1012a_eth_pdata[port].phy_id] =
909                          pdata->ls1012a_eth_pdata[port].mdio_muxval;
910
911         return 0;
912
913 err:
914         return -1;
915 }
916
917 /* Parse integer from integer argument */
918 static int
919 parse_integer_arg(const char *key __rte_unused,
920                 const char *value, void *extra_args)
921 {
922         int i;
923         char *end;
924         errno = 0;
925
926         i = strtol(value, &end, 10);
927         if (*end != 0 || errno != 0 || i < 0 || i > 1) {
928                 PFE_PMD_ERR("Supported Port IDS are 0 and 1");
929                 return -EINVAL;
930         }
931
932         *((uint32_t *)extra_args) = i;
933
934         return 0;
935 }
936
937 static int
938 pfe_parse_vdev_init_params(struct pfe_vdev_init_params *params,
939                            struct rte_vdev_device *dev)
940 {
941         struct rte_kvargs *kvlist = NULL;
942         int ret = 0;
943
944         static const char * const pfe_vdev_valid_params[] = {
945                 PFE_VDEV_GEM_ID_ARG,
946                 NULL
947         };
948
949         const char *input_args = rte_vdev_device_args(dev);
950
951         if (!input_args)
952                 return -1;
953
954         kvlist = rte_kvargs_parse(input_args, pfe_vdev_valid_params);
955         if (kvlist == NULL)
956                 return -1;
957
958         ret = rte_kvargs_process(kvlist,
959                                 PFE_VDEV_GEM_ID_ARG,
960                                 &parse_integer_arg,
961                                 &params->gem_id);
962         rte_kvargs_free(kvlist);
963         return ret;
964 }
965
966 static int
967 pmd_pfe_probe(struct rte_vdev_device *vdev)
968 {
969         const u32 *prop;
970         const struct device_node *np;
971         const char *name;
972         const uint32_t *addr;
973         uint64_t cbus_addr, ddr_size, cbus_size;
974         int rc = -1, fd = -1, gem_id;
975         unsigned int ii, interface_count = 0;
976         size_t size = 0;
977         struct pfe_vdev_init_params init_params = {
978                 .gem_id = -1
979         };
980
981         name = rte_vdev_device_name(vdev);
982         rc = pfe_parse_vdev_init_params(&init_params, vdev);
983         if (rc < 0)
984                 return -EINVAL;
985
986         PFE_PMD_LOG(INFO, "Initializing pmd_pfe for %s Given gem-id %d",
987                 name, init_params.gem_id);
988
989         if (g_pfe) {
990                 if (g_pfe->nb_devs >= g_pfe->max_intf) {
991                         PFE_PMD_ERR("PFE %d dev already created Max is %d",
992                                 g_pfe->nb_devs, g_pfe->max_intf);
993                         return -EINVAL;
994                 }
995                 goto eth_init;
996         }
997
998         g_pfe = rte_zmalloc(NULL, sizeof(*g_pfe), RTE_CACHE_LINE_SIZE);
999         if (g_pfe == NULL)
1000                 return  -EINVAL;
1001
1002         /* Load the device-tree driver */
1003         rc = of_init();
1004         if (rc) {
1005                 PFE_PMD_ERR("of_init failed with ret: %d", rc);
1006                 goto err;
1007         }
1008
1009         np = of_find_compatible_node(NULL, NULL, "fsl,pfe");
1010         if (!np) {
1011                 PFE_PMD_ERR("Invalid device node");
1012                 rc = -EINVAL;
1013                 goto err;
1014         }
1015
1016         addr = of_get_address(np, 0, &cbus_size, NULL);
1017         if (!addr) {
1018                 PFE_PMD_ERR("of_get_address cannot return qman address\n");
1019                 goto err;
1020         }
1021         cbus_addr = of_translate_address(np, addr);
1022         if (!cbus_addr) {
1023                 PFE_PMD_ERR("of_translate_address failed\n");
1024                 goto err;
1025         }
1026
1027         addr = of_get_address(np, 1, &ddr_size, NULL);
1028         if (!addr) {
1029                 PFE_PMD_ERR("of_get_address cannot return qman address\n");
1030                 goto err;
1031         }
1032
1033         g_pfe->ddr_phys_baseaddr = of_translate_address(np, addr);
1034         if (!g_pfe->ddr_phys_baseaddr) {
1035                 PFE_PMD_ERR("of_translate_address failed\n");
1036                 goto err;
1037         }
1038
1039         g_pfe->ddr_baseaddr = pfe_mem_ptov(g_pfe->ddr_phys_baseaddr);
1040         g_pfe->ddr_size = ddr_size;
1041         g_pfe->cbus_size = cbus_size;
1042
1043         fd = open("/dev/mem", O_RDWR);
1044         g_pfe->cbus_baseaddr = mmap(NULL, cbus_size, PROT_READ | PROT_WRITE,
1045                                         MAP_SHARED, fd, cbus_addr);
1046         close(fd);
1047         if (g_pfe->cbus_baseaddr == MAP_FAILED) {
1048                 PFE_PMD_ERR("Can not map cbus base");
1049                 rc = -EINVAL;
1050                 goto err;
1051         }
1052
1053         /* Read interface count */
1054         prop = of_get_property(np, "fsl,pfe-num-interfaces", &size);
1055         if (!prop) {
1056                 PFE_PMD_ERR("Failed to read number of interfaces");
1057                 rc = -ENXIO;
1058                 goto err_prop;
1059         }
1060
1061         interface_count = rte_be_to_cpu_32((unsigned int)*prop);
1062         if (interface_count <= 0) {
1063                 PFE_PMD_ERR("No ethernet interface count : %d",
1064                                 interface_count);
1065                 rc = -ENXIO;
1066                 goto err_prop;
1067         }
1068         PFE_PMD_INFO("num interfaces = %d ", interface_count);
1069
1070         g_pfe->max_intf  = interface_count;
1071         g_pfe->platform_data.ls1012a_mdio_pdata[0].phy_mask = 0xffffffff;
1072
1073         for (ii = 0; ii < interface_count; ii++) {
1074                 pfe_get_gemac_if_proprties(g_pfe, np, ii, interface_count,
1075                                            &g_pfe->platform_data);
1076         }
1077
1078         pfe_lib_init(g_pfe->cbus_baseaddr, g_pfe->ddr_baseaddr,
1079                      g_pfe->ddr_phys_baseaddr, g_pfe->ddr_size);
1080
1081         PFE_PMD_INFO("CLASS version: %x", readl(CLASS_VERSION));
1082         PFE_PMD_INFO("TMU version: %x", readl(TMU_VERSION));
1083
1084         PFE_PMD_INFO("BMU1 version: %x", readl(BMU1_BASE_ADDR + BMU_VERSION));
1085         PFE_PMD_INFO("BMU2 version: %x", readl(BMU2_BASE_ADDR + BMU_VERSION));
1086
1087         PFE_PMD_INFO("EGPI1 version: %x", readl(EGPI1_BASE_ADDR + GPI_VERSION));
1088         PFE_PMD_INFO("EGPI2 version: %x", readl(EGPI2_BASE_ADDR + GPI_VERSION));
1089         PFE_PMD_INFO("HGPI version: %x", readl(HGPI_BASE_ADDR + GPI_VERSION));
1090
1091         PFE_PMD_INFO("HIF version: %x", readl(HIF_VERSION));
1092         PFE_PMD_INFO("HIF NOPCY version: %x", readl(HIF_NOCPY_VERSION));
1093
1094         cbus_emac_base[0] = EMAC1_BASE_ADDR;
1095         cbus_emac_base[1] = EMAC2_BASE_ADDR;
1096
1097         cbus_gpi_base[0] = EGPI1_BASE_ADDR;
1098         cbus_gpi_base[1] = EGPI2_BASE_ADDR;
1099
1100         rc = pfe_hif_lib_init(g_pfe);
1101         if (rc < 0)
1102                 goto err_hif_lib;
1103
1104         rc = pfe_hif_init(g_pfe);
1105         if (rc < 0)
1106                 goto err_hif;
1107         pfe_soc_version_get();
1108 eth_init:
1109         if (init_params.gem_id < 0)
1110                 gem_id = g_pfe->nb_devs;
1111         else
1112                 gem_id = init_params.gem_id;
1113
1114         PFE_PMD_LOG(INFO, "Init pmd_pfe for %s gem-id %d(given =%d)",
1115                 name, gem_id, init_params.gem_id);
1116
1117         rc = pfe_eth_init(vdev, g_pfe, gem_id);
1118         if (rc < 0)
1119                 goto err_eth;
1120         else
1121                 g_pfe->nb_devs++;
1122
1123         return 0;
1124
1125 err_eth:
1126         pfe_hif_exit(g_pfe);
1127
1128 err_hif:
1129         pfe_hif_lib_exit(g_pfe);
1130
1131 err_hif_lib:
1132 err_prop:
1133         munmap(g_pfe->cbus_baseaddr, cbus_size);
1134 err:
1135         rte_free(g_pfe);
1136         return rc;
1137 }
1138
1139 static int
1140 pmd_pfe_remove(struct rte_vdev_device *vdev)
1141 {
1142         const char *name;
1143         struct rte_eth_dev *eth_dev = NULL;
1144         int ret = 0;
1145
1146         name = rte_vdev_device_name(vdev);
1147         if (name == NULL)
1148                 return -EINVAL;
1149
1150         PFE_PMD_INFO("Closing eventdev sw device %s", name);
1151
1152         if (!g_pfe)
1153                 return 0;
1154
1155         eth_dev = rte_eth_dev_allocated(name);
1156         if (eth_dev) {
1157                 pfe_eth_close(eth_dev);
1158                 ret = rte_eth_dev_release_port(eth_dev);
1159         }
1160
1161         return ret;
1162 }
1163
1164 static
1165 struct rte_vdev_driver pmd_pfe_drv = {
1166         .probe = pmd_pfe_probe,
1167         .remove = pmd_pfe_remove,
1168 };
1169
1170 RTE_PMD_REGISTER_VDEV(PFE_NAME_PMD, pmd_pfe_drv);
1171 RTE_PMD_REGISTER_PARAM_STRING(PFE_NAME_PMD, PFE_VDEV_GEM_ID_ARG "=<int> ");
1172 RTE_LOG_REGISTER(pfe_logtype_pmd, pmd.net.pfe, NOTICE);