GNU Linux-libre 4.19.286-gnu1
[releases.git] / drivers / net / ethernet / aquantia / atlantic / aq_nic.c
1 /*
2  * aQuantia Corporation Network Driver
3  * Copyright (C) 2014-2017 aQuantia Corporation. All rights reserved
4  *
5  * This program is free software; you can redistribute it and/or modify it
6  * under the terms and conditions of the GNU General Public License,
7  * version 2, as published by the Free Software Foundation.
8  */
9
10 /* File aq_nic.c: Definition of common code for NIC. */
11
12 #include "aq_nic.h"
13 #include "aq_ring.h"
14 #include "aq_vec.h"
15 #include "aq_hw.h"
16 #include "aq_pci_func.h"
17
18 #include <linux/moduleparam.h>
19 #include <linux/netdevice.h>
20 #include <linux/etherdevice.h>
21 #include <linux/timer.h>
22 #include <linux/cpu.h>
23 #include <linux/ip.h>
24 #include <linux/tcp.h>
25 #include <net/ip.h>
26
27 static unsigned int aq_itr = AQ_CFG_INTERRUPT_MODERATION_AUTO;
28 module_param_named(aq_itr, aq_itr, uint, 0644);
29 MODULE_PARM_DESC(aq_itr, "Interrupt throttling mode");
30
31 static unsigned int aq_itr_tx;
32 module_param_named(aq_itr_tx, aq_itr_tx, uint, 0644);
33 MODULE_PARM_DESC(aq_itr_tx, "TX interrupt throttle rate");
34
35 static unsigned int aq_itr_rx;
36 module_param_named(aq_itr_rx, aq_itr_rx, uint, 0644);
37 MODULE_PARM_DESC(aq_itr_rx, "RX interrupt throttle rate");
38
39 static void aq_nic_update_ndev_stats(struct aq_nic_s *self);
40
41 static void aq_nic_rss_init(struct aq_nic_s *self, unsigned int num_rss_queues)
42 {
43         struct aq_nic_cfg_s *cfg = &self->aq_nic_cfg;
44         struct aq_rss_parameters *rss_params = &cfg->aq_rss;
45         int i = 0;
46
47         static u8 rss_key[AQ_CFG_RSS_HASHKEY_SIZE] = {
48                 0x1e, 0xad, 0x71, 0x87, 0x65, 0xfc, 0x26, 0x7d,
49                 0x0d, 0x45, 0x67, 0x74, 0xcd, 0x06, 0x1a, 0x18,
50                 0xb6, 0xc1, 0xf0, 0xc7, 0xbb, 0x18, 0xbe, 0xf8,
51                 0x19, 0x13, 0x4b, 0xa9, 0xd0, 0x3e, 0xfe, 0x70,
52                 0x25, 0x03, 0xab, 0x50, 0x6a, 0x8b, 0x82, 0x0c
53         };
54
55         rss_params->hash_secret_key_size = sizeof(rss_key);
56         memcpy(rss_params->hash_secret_key, rss_key, sizeof(rss_key));
57         rss_params->indirection_table_size = AQ_CFG_RSS_INDIRECTION_TABLE_MAX;
58
59         for (i = rss_params->indirection_table_size; i--;)
60                 rss_params->indirection_table[i] = i & (num_rss_queues - 1);
61 }
62
63 /* Checks hw_caps and 'corrects' aq_nic_cfg in runtime */
64 void aq_nic_cfg_start(struct aq_nic_s *self)
65 {
66         struct aq_nic_cfg_s *cfg = &self->aq_nic_cfg;
67
68         cfg->tcs = AQ_CFG_TCS_DEF;
69
70         cfg->is_polling = AQ_CFG_IS_POLLING_DEF;
71
72         cfg->itr = aq_itr;
73         cfg->tx_itr = aq_itr_tx;
74         cfg->rx_itr = aq_itr_rx;
75
76         cfg->is_rss = AQ_CFG_IS_RSS_DEF;
77         cfg->num_rss_queues = AQ_CFG_NUM_RSS_QUEUES_DEF;
78         cfg->aq_rss.base_cpu_number = AQ_CFG_RSS_BASE_CPU_NUM_DEF;
79         cfg->flow_control = AQ_CFG_FC_MODE;
80
81         cfg->mtu = AQ_CFG_MTU_DEF;
82         cfg->link_speed_msk = AQ_CFG_SPEED_MSK;
83         cfg->is_autoneg = AQ_CFG_IS_AUTONEG_DEF;
84
85         cfg->is_lro = AQ_CFG_IS_LRO_DEF;
86
87         cfg->vlan_id = 0U;
88
89         aq_nic_rss_init(self, cfg->num_rss_queues);
90
91         /*descriptors */
92         cfg->rxds = min(cfg->aq_hw_caps->rxds_max, AQ_CFG_RXDS_DEF);
93         cfg->txds = min(cfg->aq_hw_caps->txds_max, AQ_CFG_TXDS_DEF);
94
95         /*rss rings */
96         cfg->vecs = min(cfg->aq_hw_caps->vecs, AQ_CFG_VECS_DEF);
97         cfg->vecs = min(cfg->vecs, num_online_cpus());
98         cfg->vecs = min(cfg->vecs, self->irqvecs);
99         /* cfg->vecs should be power of 2 for RSS */
100         if (cfg->vecs >= 8U)
101                 cfg->vecs = 8U;
102         else if (cfg->vecs >= 4U)
103                 cfg->vecs = 4U;
104         else if (cfg->vecs >= 2U)
105                 cfg->vecs = 2U;
106         else
107                 cfg->vecs = 1U;
108
109         cfg->num_rss_queues = min(cfg->vecs, AQ_CFG_NUM_RSS_QUEUES_DEF);
110
111         cfg->irq_type = aq_pci_func_get_irq_type(self);
112
113         if ((cfg->irq_type == AQ_HW_IRQ_LEGACY) ||
114             (cfg->aq_hw_caps->vecs == 1U) ||
115             (cfg->vecs == 1U)) {
116                 cfg->is_rss = 0U;
117                 cfg->vecs = 1U;
118         }
119
120         cfg->link_speed_msk &= cfg->aq_hw_caps->link_speed_msk;
121         cfg->hw_features = cfg->aq_hw_caps->hw_features;
122 }
123
124 static int aq_nic_update_link_status(struct aq_nic_s *self)
125 {
126         int err = self->aq_fw_ops->update_link_status(self->aq_hw);
127
128         if (err)
129                 return err;
130
131         if (self->link_status.mbps != self->aq_hw->aq_link_status.mbps) {
132                 pr_info("%s: link change old %d new %d\n",
133                         AQ_CFG_DRV_NAME, self->link_status.mbps,
134                         self->aq_hw->aq_link_status.mbps);
135                 aq_nic_update_interrupt_moderation_settings(self);
136         }
137
138         self->link_status = self->aq_hw->aq_link_status;
139         if (!netif_carrier_ok(self->ndev) && self->link_status.mbps) {
140                 aq_utils_obj_set(&self->flags,
141                                  AQ_NIC_FLAG_STARTED);
142                 aq_utils_obj_clear(&self->flags,
143                                    AQ_NIC_LINK_DOWN);
144                 netif_carrier_on(self->ndev);
145                 netif_tx_wake_all_queues(self->ndev);
146         }
147         if (netif_carrier_ok(self->ndev) && !self->link_status.mbps) {
148                 netif_carrier_off(self->ndev);
149                 netif_tx_disable(self->ndev);
150                 aq_utils_obj_set(&self->flags, AQ_NIC_LINK_DOWN);
151         }
152         return 0;
153 }
154
155 static void aq_nic_service_timer_cb(struct timer_list *t)
156 {
157         struct aq_nic_s *self = from_timer(self, t, service_timer);
158         int ctimer = AQ_CFG_SERVICE_TIMER_INTERVAL;
159         int err = 0;
160
161         if (aq_utils_obj_test(&self->flags, AQ_NIC_FLAGS_IS_NOT_READY))
162                 goto err_exit;
163
164         err = aq_nic_update_link_status(self);
165         if (err)
166                 goto err_exit;
167
168         if (self->aq_fw_ops->update_stats)
169                 self->aq_fw_ops->update_stats(self->aq_hw);
170
171         aq_nic_update_ndev_stats(self);
172
173         /* If no link - use faster timer rate to detect link up asap */
174         if (!netif_carrier_ok(self->ndev))
175                 ctimer = max(ctimer / 2, 1);
176
177 err_exit:
178         mod_timer(&self->service_timer, jiffies + ctimer);
179 }
180
181 static void aq_nic_polling_timer_cb(struct timer_list *t)
182 {
183         struct aq_nic_s *self = from_timer(self, t, polling_timer);
184         struct aq_vec_s *aq_vec = NULL;
185         unsigned int i = 0U;
186
187         for (i = 0U, aq_vec = self->aq_vec[0];
188                 self->aq_vecs > i; ++i, aq_vec = self->aq_vec[i])
189                 aq_vec_isr(i, (void *)aq_vec);
190
191         mod_timer(&self->polling_timer, jiffies +
192                 AQ_CFG_POLLING_TIMER_INTERVAL);
193 }
194
195 int aq_nic_ndev_register(struct aq_nic_s *self)
196 {
197         int err = 0;
198
199         if (!self->ndev) {
200                 err = -EINVAL;
201                 goto err_exit;
202         }
203
204         err = hw_atl_utils_initfw(self->aq_hw, &self->aq_fw_ops);
205         if (err)
206                 goto err_exit;
207
208         err = self->aq_fw_ops->get_mac_permanent(self->aq_hw,
209                             self->ndev->dev_addr);
210         if (err)
211                 goto err_exit;
212
213 #if defined(AQ_CFG_MAC_ADDR_PERMANENT)
214         {
215                 static u8 mac_addr_permanent[] = AQ_CFG_MAC_ADDR_PERMANENT;
216
217                 ether_addr_copy(self->ndev->dev_addr, mac_addr_permanent);
218         }
219 #endif
220
221         for (self->aq_vecs = 0; self->aq_vecs < aq_nic_get_cfg(self)->vecs;
222              self->aq_vecs++) {
223                 self->aq_vec[self->aq_vecs] =
224                     aq_vec_alloc(self, self->aq_vecs, aq_nic_get_cfg(self));
225                 if (!self->aq_vec[self->aq_vecs]) {
226                         err = -ENOMEM;
227                         goto err_exit;
228                 }
229         }
230
231         netif_carrier_off(self->ndev);
232
233         netif_tx_disable(self->ndev);
234
235         err = register_netdev(self->ndev);
236         if (err)
237                 goto err_exit;
238
239 err_exit:
240         return err;
241 }
242
243 void aq_nic_ndev_init(struct aq_nic_s *self)
244 {
245         const struct aq_hw_caps_s *aq_hw_caps = self->aq_nic_cfg.aq_hw_caps;
246         struct aq_nic_cfg_s *aq_nic_cfg = &self->aq_nic_cfg;
247
248         self->ndev->hw_features |= aq_hw_caps->hw_features;
249         self->ndev->features = aq_hw_caps->hw_features;
250         self->ndev->vlan_features |= NETIF_F_HW_CSUM | NETIF_F_RXCSUM |
251                                      NETIF_F_RXHASH | NETIF_F_SG | NETIF_F_LRO;
252         self->ndev->priv_flags = aq_hw_caps->hw_priv_flags;
253         self->ndev->priv_flags |= IFF_LIVE_ADDR_CHANGE;
254
255         self->ndev->mtu = aq_nic_cfg->mtu - ETH_HLEN;
256         self->ndev->max_mtu = aq_hw_caps->mtu - ETH_FCS_LEN - ETH_HLEN;
257
258 }
259
260 void aq_nic_set_tx_ring(struct aq_nic_s *self, unsigned int idx,
261                         struct aq_ring_s *ring)
262 {
263         self->aq_ring_tx[idx] = ring;
264 }
265
266 struct net_device *aq_nic_get_ndev(struct aq_nic_s *self)
267 {
268         return self->ndev;
269 }
270
271 int aq_nic_init(struct aq_nic_s *self)
272 {
273         struct aq_vec_s *aq_vec = NULL;
274         int err = 0;
275         unsigned int i = 0U;
276
277         self->power_state = AQ_HW_POWER_STATE_D0;
278         err = self->aq_hw_ops->hw_reset(self->aq_hw);
279         if (err < 0)
280                 goto err_exit;
281
282         err = self->aq_hw_ops->hw_init(self->aq_hw,
283                                        aq_nic_get_ndev(self)->dev_addr);
284         if (err < 0)
285                 goto err_exit;
286
287         for (i = 0U, aq_vec = self->aq_vec[0];
288                 self->aq_vecs > i; ++i, aq_vec = self->aq_vec[i])
289                 aq_vec_init(aq_vec, self->aq_hw_ops, self->aq_hw);
290
291         netif_carrier_off(self->ndev);
292
293 err_exit:
294         return err;
295 }
296
297 int aq_nic_start(struct aq_nic_s *self)
298 {
299         struct aq_vec_s *aq_vec = NULL;
300         int err = 0;
301         unsigned int i = 0U;
302
303         err = self->aq_hw_ops->hw_multicast_list_set(self->aq_hw,
304                                                     self->mc_list.ar,
305                                                     self->mc_list.count);
306         if (err < 0)
307                 goto err_exit;
308
309         err = self->aq_hw_ops->hw_packet_filter_set(self->aq_hw,
310                                                    self->packet_filter);
311         if (err < 0)
312                 goto err_exit;
313
314         for (i = 0U, aq_vec = self->aq_vec[0];
315                 self->aq_vecs > i; ++i, aq_vec = self->aq_vec[i]) {
316                 err = aq_vec_start(aq_vec);
317                 if (err < 0)
318                         goto err_exit;
319         }
320
321         err = self->aq_hw_ops->hw_start(self->aq_hw);
322         if (err < 0)
323                 goto err_exit;
324
325         err = aq_nic_update_interrupt_moderation_settings(self);
326         if (err)
327                 goto err_exit;
328         timer_setup(&self->service_timer, aq_nic_service_timer_cb, 0);
329         mod_timer(&self->service_timer, jiffies +
330                         AQ_CFG_SERVICE_TIMER_INTERVAL);
331
332         if (self->aq_nic_cfg.is_polling) {
333                 timer_setup(&self->polling_timer, aq_nic_polling_timer_cb, 0);
334                 mod_timer(&self->polling_timer, jiffies +
335                           AQ_CFG_POLLING_TIMER_INTERVAL);
336         } else {
337                 for (i = 0U, aq_vec = self->aq_vec[0];
338                         self->aq_vecs > i; ++i, aq_vec = self->aq_vec[i]) {
339                         err = aq_pci_func_alloc_irq(self, i,
340                                                     self->ndev->name, aq_vec,
341                                                     aq_vec_get_affinity_mask(aq_vec));
342                         if (err < 0)
343                                 goto err_exit;
344                 }
345
346                 err = self->aq_hw_ops->hw_irq_enable(self->aq_hw,
347                                     AQ_CFG_IRQ_MASK);
348                 if (err < 0)
349                         goto err_exit;
350         }
351
352         err = netif_set_real_num_tx_queues(self->ndev, self->aq_vecs);
353         if (err < 0)
354                 goto err_exit;
355
356         err = netif_set_real_num_rx_queues(self->ndev, self->aq_vecs);
357         if (err < 0)
358                 goto err_exit;
359
360         netif_tx_start_all_queues(self->ndev);
361
362 err_exit:
363         return err;
364 }
365
366 static unsigned int aq_nic_map_skb(struct aq_nic_s *self,
367                                    struct sk_buff *skb,
368                                    struct aq_ring_s *ring)
369 {
370         unsigned int ret = 0U;
371         unsigned int nr_frags = skb_shinfo(skb)->nr_frags;
372         unsigned int frag_count = 0U;
373         unsigned int dx = ring->sw_tail;
374         struct aq_ring_buff_s *first = NULL;
375         struct aq_ring_buff_s *dx_buff = &ring->buff_ring[dx];
376
377         if (unlikely(skb_is_gso(skb))) {
378                 dx_buff->flags = 0U;
379                 dx_buff->len_pkt = skb->len;
380                 dx_buff->len_l2 = ETH_HLEN;
381                 dx_buff->len_l3 = ip_hdrlen(skb);
382                 dx_buff->len_l4 = tcp_hdrlen(skb);
383                 dx_buff->mss = skb_shinfo(skb)->gso_size;
384                 dx_buff->is_txc = 1U;
385                 dx_buff->eop_index = 0xffffU;
386
387                 dx_buff->is_ipv6 =
388                         (ip_hdr(skb)->version == 6) ? 1U : 0U;
389
390                 dx = aq_ring_next_dx(ring, dx);
391                 dx_buff = &ring->buff_ring[dx];
392                 ++ret;
393         }
394
395         dx_buff->flags = 0U;
396         dx_buff->len = skb_headlen(skb);
397         dx_buff->pa = dma_map_single(aq_nic_get_dev(self),
398                                      skb->data,
399                                      dx_buff->len,
400                                      DMA_TO_DEVICE);
401
402         if (unlikely(dma_mapping_error(aq_nic_get_dev(self), dx_buff->pa))) {
403                 ret = 0;
404                 goto exit;
405         }
406
407         first = dx_buff;
408         dx_buff->len_pkt = skb->len;
409         dx_buff->is_sop = 1U;
410         dx_buff->is_mapped = 1U;
411         ++ret;
412
413         if (skb->ip_summed == CHECKSUM_PARTIAL) {
414                 dx_buff->is_ip_cso = (htons(ETH_P_IP) == skb->protocol) ?
415                         1U : 0U;
416
417                 if (ip_hdr(skb)->version == 4) {
418                         dx_buff->is_tcp_cso =
419                                 (ip_hdr(skb)->protocol == IPPROTO_TCP) ?
420                                         1U : 0U;
421                         dx_buff->is_udp_cso =
422                                 (ip_hdr(skb)->protocol == IPPROTO_UDP) ?
423                                         1U : 0U;
424                 } else if (ip_hdr(skb)->version == 6) {
425                         dx_buff->is_tcp_cso =
426                                 (ipv6_hdr(skb)->nexthdr == NEXTHDR_TCP) ?
427                                         1U : 0U;
428                         dx_buff->is_udp_cso =
429                                 (ipv6_hdr(skb)->nexthdr == NEXTHDR_UDP) ?
430                                         1U : 0U;
431                 }
432         }
433
434         for (; nr_frags--; ++frag_count) {
435                 unsigned int frag_len = 0U;
436                 unsigned int buff_offset = 0U;
437                 unsigned int buff_size = 0U;
438                 dma_addr_t frag_pa;
439                 skb_frag_t *frag = &skb_shinfo(skb)->frags[frag_count];
440
441                 frag_len = skb_frag_size(frag);
442
443                 while (frag_len) {
444                         if (frag_len > AQ_CFG_TX_FRAME_MAX)
445                                 buff_size = AQ_CFG_TX_FRAME_MAX;
446                         else
447                                 buff_size = frag_len;
448
449                         frag_pa = skb_frag_dma_map(aq_nic_get_dev(self),
450                                                    frag,
451                                                    buff_offset,
452                                                    buff_size,
453                                                    DMA_TO_DEVICE);
454
455                         if (unlikely(dma_mapping_error(aq_nic_get_dev(self),
456                                                        frag_pa)))
457                                 goto mapping_error;
458
459                         dx = aq_ring_next_dx(ring, dx);
460                         dx_buff = &ring->buff_ring[dx];
461
462                         dx_buff->flags = 0U;
463                         dx_buff->len = buff_size;
464                         dx_buff->pa = frag_pa;
465                         dx_buff->is_mapped = 1U;
466                         dx_buff->eop_index = 0xffffU;
467
468                         frag_len -= buff_size;
469                         buff_offset += buff_size;
470
471                         ++ret;
472                 }
473         }
474
475         first->eop_index = dx;
476         dx_buff->is_eop = 1U;
477         dx_buff->skb = skb;
478         goto exit;
479
480 mapping_error:
481         for (dx = ring->sw_tail;
482              ret > 0;
483              --ret, dx = aq_ring_next_dx(ring, dx)) {
484                 dx_buff = &ring->buff_ring[dx];
485
486                 if (!dx_buff->is_txc && dx_buff->pa) {
487                         if (unlikely(dx_buff->is_sop)) {
488                                 dma_unmap_single(aq_nic_get_dev(self),
489                                                  dx_buff->pa,
490                                                  dx_buff->len,
491                                                  DMA_TO_DEVICE);
492                         } else {
493                                 dma_unmap_page(aq_nic_get_dev(self),
494                                                dx_buff->pa,
495                                                dx_buff->len,
496                                                DMA_TO_DEVICE);
497                         }
498                 }
499         }
500
501 exit:
502         return ret;
503 }
504
505 int aq_nic_xmit(struct aq_nic_s *self, struct sk_buff *skb)
506 {
507         struct aq_ring_s *ring = NULL;
508         unsigned int frags = 0U;
509         unsigned int vec = skb->queue_mapping % self->aq_nic_cfg.vecs;
510         unsigned int tc = 0U;
511         int err = NETDEV_TX_OK;
512
513         frags = skb_shinfo(skb)->nr_frags + 1;
514
515         ring = self->aq_ring_tx[AQ_NIC_TCVEC2RING(self, tc, vec)];
516
517         if (frags > AQ_CFG_SKB_FRAGS_MAX) {
518                 dev_kfree_skb_any(skb);
519                 goto err_exit;
520         }
521
522         aq_ring_update_queue_state(ring);
523
524         /* Above status update may stop the queue. Check this. */
525         if (__netif_subqueue_stopped(self->ndev, ring->idx)) {
526                 err = NETDEV_TX_BUSY;
527                 goto err_exit;
528         }
529
530         frags = aq_nic_map_skb(self, skb, ring);
531
532         if (likely(frags)) {
533                 err = self->aq_hw_ops->hw_ring_tx_xmit(self->aq_hw,
534                                                        ring, frags);
535         } else {
536                 err = NETDEV_TX_BUSY;
537         }
538
539 err_exit:
540         return err;
541 }
542
543 int aq_nic_update_interrupt_moderation_settings(struct aq_nic_s *self)
544 {
545         return self->aq_hw_ops->hw_interrupt_moderation_set(self->aq_hw);
546 }
547
548 int aq_nic_set_packet_filter(struct aq_nic_s *self, unsigned int flags)
549 {
550         int err = 0;
551
552         err = self->aq_hw_ops->hw_packet_filter_set(self->aq_hw, flags);
553         if (err < 0)
554                 goto err_exit;
555
556         self->packet_filter = flags;
557
558 err_exit:
559         return err;
560 }
561
562 int aq_nic_set_multicast_list(struct aq_nic_s *self, struct net_device *ndev)
563 {
564         unsigned int packet_filter = self->packet_filter;
565         struct netdev_hw_addr *ha = NULL;
566         unsigned int i = 0U;
567
568         self->mc_list.count = 0;
569         if (netdev_uc_count(ndev) > AQ_HW_MULTICAST_ADDRESS_MAX) {
570                 packet_filter |= IFF_PROMISC;
571         } else {
572                 netdev_for_each_uc_addr(ha, ndev) {
573                         ether_addr_copy(self->mc_list.ar[i++], ha->addr);
574
575                         if (i >= AQ_HW_MULTICAST_ADDRESS_MAX)
576                                 break;
577                 }
578         }
579
580         if (i + netdev_mc_count(ndev) > AQ_HW_MULTICAST_ADDRESS_MAX) {
581                 packet_filter |= IFF_ALLMULTI;
582         } else {
583                 netdev_for_each_mc_addr(ha, ndev) {
584                         ether_addr_copy(self->mc_list.ar[i++], ha->addr);
585
586                         if (i >= AQ_HW_MULTICAST_ADDRESS_MAX)
587                                 break;
588                 }
589         }
590
591         if (i > 0 && i <= AQ_HW_MULTICAST_ADDRESS_MAX) {
592                 packet_filter |= IFF_MULTICAST;
593                 self->mc_list.count = i;
594                 self->aq_hw_ops->hw_multicast_list_set(self->aq_hw,
595                                                        self->mc_list.ar,
596                                                        self->mc_list.count);
597         }
598         return aq_nic_set_packet_filter(self, packet_filter);
599 }
600
601 int aq_nic_set_mtu(struct aq_nic_s *self, int new_mtu)
602 {
603         self->aq_nic_cfg.mtu = new_mtu;
604
605         return 0;
606 }
607
608 int aq_nic_set_mac(struct aq_nic_s *self, struct net_device *ndev)
609 {
610         return self->aq_hw_ops->hw_set_mac_address(self->aq_hw, ndev->dev_addr);
611 }
612
613 unsigned int aq_nic_get_link_speed(struct aq_nic_s *self)
614 {
615         return self->link_status.mbps;
616 }
617
618 int aq_nic_get_regs(struct aq_nic_s *self, struct ethtool_regs *regs, void *p)
619 {
620         u32 *regs_buff = p;
621         int err = 0;
622
623         if (unlikely(!self->aq_hw_ops->hw_get_regs))
624                 return -EOPNOTSUPP;
625
626         regs->version = 1;
627
628         err = self->aq_hw_ops->hw_get_regs(self->aq_hw,
629                                            self->aq_nic_cfg.aq_hw_caps,
630                                            regs_buff);
631         if (err < 0)
632                 goto err_exit;
633
634 err_exit:
635         return err;
636 }
637
638 int aq_nic_get_regs_count(struct aq_nic_s *self)
639 {
640         if (unlikely(!self->aq_hw_ops->hw_get_regs))
641                 return 0;
642
643         return self->aq_nic_cfg.aq_hw_caps->mac_regs_count;
644 }
645
646 void aq_nic_get_stats(struct aq_nic_s *self, u64 *data)
647 {
648         unsigned int i = 0U;
649         unsigned int count = 0U;
650         struct aq_vec_s *aq_vec = NULL;
651         struct aq_stats_s *stats = self->aq_hw_ops->hw_get_hw_stats(self->aq_hw);
652
653         if (!stats)
654                 goto err_exit;
655
656         data[i] = stats->uprc + stats->mprc + stats->bprc;
657         data[++i] = stats->uprc;
658         data[++i] = stats->mprc;
659         data[++i] = stats->bprc;
660         data[++i] = stats->erpt;
661         data[++i] = stats->uptc + stats->mptc + stats->bptc;
662         data[++i] = stats->uptc;
663         data[++i] = stats->mptc;
664         data[++i] = stats->bptc;
665         data[++i] = stats->ubrc;
666         data[++i] = stats->ubtc;
667         data[++i] = stats->mbrc;
668         data[++i] = stats->mbtc;
669         data[++i] = stats->bbrc;
670         data[++i] = stats->bbtc;
671         data[++i] = stats->ubrc + stats->mbrc + stats->bbrc;
672         data[++i] = stats->ubtc + stats->mbtc + stats->bbtc;
673         data[++i] = stats->dma_pkt_rc;
674         data[++i] = stats->dma_pkt_tc;
675         data[++i] = stats->dma_oct_rc;
676         data[++i] = stats->dma_oct_tc;
677         data[++i] = stats->dpc;
678
679         i++;
680
681         data += i;
682
683         for (i = 0U, aq_vec = self->aq_vec[0];
684                 aq_vec && self->aq_vecs > i; ++i, aq_vec = self->aq_vec[i]) {
685                 data += count;
686                 aq_vec_get_sw_stats(aq_vec, data, &count);
687         }
688
689 err_exit:;
690 }
691
692 static void aq_nic_update_ndev_stats(struct aq_nic_s *self)
693 {
694         struct net_device *ndev = self->ndev;
695         struct aq_stats_s *stats = self->aq_hw_ops->hw_get_hw_stats(self->aq_hw);
696
697         ndev->stats.rx_packets = stats->uprc + stats->mprc + stats->bprc;
698         ndev->stats.rx_bytes = stats->ubrc + stats->mbrc + stats->bbrc;
699         ndev->stats.rx_errors = stats->erpr;
700         ndev->stats.tx_packets = stats->uptc + stats->mptc + stats->bptc;
701         ndev->stats.tx_bytes = stats->ubtc + stats->mbtc + stats->bbtc;
702         ndev->stats.tx_errors = stats->erpt;
703         ndev->stats.multicast = stats->mprc;
704 }
705
706 void aq_nic_get_link_ksettings(struct aq_nic_s *self,
707                                struct ethtool_link_ksettings *cmd)
708 {
709         if (self->aq_nic_cfg.aq_hw_caps->media_type == AQ_HW_MEDIA_TYPE_FIBRE)
710                 cmd->base.port = PORT_FIBRE;
711         else
712                 cmd->base.port = PORT_TP;
713         /* This driver supports only 10G capable adapters, so DUPLEX_FULL */
714         cmd->base.duplex = DUPLEX_FULL;
715         cmd->base.autoneg = self->aq_nic_cfg.is_autoneg;
716
717         ethtool_link_ksettings_zero_link_mode(cmd, supported);
718
719         if (self->aq_nic_cfg.aq_hw_caps->link_speed_msk & AQ_NIC_RATE_10G)
720                 ethtool_link_ksettings_add_link_mode(cmd, supported,
721                                                      10000baseT_Full);
722
723         if (self->aq_nic_cfg.aq_hw_caps->link_speed_msk & AQ_NIC_RATE_5G)
724                 ethtool_link_ksettings_add_link_mode(cmd, supported,
725                                                      5000baseT_Full);
726
727         if (self->aq_nic_cfg.aq_hw_caps->link_speed_msk & AQ_NIC_RATE_2GS)
728                 ethtool_link_ksettings_add_link_mode(cmd, supported,
729                                                      2500baseT_Full);
730
731         if (self->aq_nic_cfg.aq_hw_caps->link_speed_msk & AQ_NIC_RATE_1G)
732                 ethtool_link_ksettings_add_link_mode(cmd, supported,
733                                                      1000baseT_Full);
734
735         if (self->aq_nic_cfg.aq_hw_caps->link_speed_msk & AQ_NIC_RATE_100M)
736                 ethtool_link_ksettings_add_link_mode(cmd, supported,
737                                                      100baseT_Full);
738
739         if (self->aq_nic_cfg.aq_hw_caps->flow_control)
740                 ethtool_link_ksettings_add_link_mode(cmd, supported,
741                                                      Pause);
742
743         ethtool_link_ksettings_add_link_mode(cmd, supported, Autoneg);
744
745         if (self->aq_nic_cfg.aq_hw_caps->media_type == AQ_HW_MEDIA_TYPE_FIBRE)
746                 ethtool_link_ksettings_add_link_mode(cmd, supported, FIBRE);
747         else
748                 ethtool_link_ksettings_add_link_mode(cmd, supported, TP);
749
750         ethtool_link_ksettings_zero_link_mode(cmd, advertising);
751
752         if (self->aq_nic_cfg.is_autoneg)
753                 ethtool_link_ksettings_add_link_mode(cmd, advertising, Autoneg);
754
755         if (self->aq_nic_cfg.link_speed_msk  & AQ_NIC_RATE_10G)
756                 ethtool_link_ksettings_add_link_mode(cmd, advertising,
757                                                      10000baseT_Full);
758
759         if (self->aq_nic_cfg.link_speed_msk  & AQ_NIC_RATE_5G)
760                 ethtool_link_ksettings_add_link_mode(cmd, advertising,
761                                                      5000baseT_Full);
762
763         if (self->aq_nic_cfg.link_speed_msk  & AQ_NIC_RATE_2GS)
764                 ethtool_link_ksettings_add_link_mode(cmd, advertising,
765                                                      2500baseT_Full);
766
767         if (self->aq_nic_cfg.link_speed_msk  & AQ_NIC_RATE_1G)
768                 ethtool_link_ksettings_add_link_mode(cmd, advertising,
769                                                      1000baseT_Full);
770
771         if (self->aq_nic_cfg.link_speed_msk  & AQ_NIC_RATE_100M)
772                 ethtool_link_ksettings_add_link_mode(cmd, advertising,
773                                                      100baseT_Full);
774
775         if (self->aq_nic_cfg.flow_control & AQ_NIC_FC_RX)
776                 ethtool_link_ksettings_add_link_mode(cmd, advertising,
777                                                      Pause);
778
779         if (self->aq_nic_cfg.flow_control & AQ_NIC_FC_TX)
780                 ethtool_link_ksettings_add_link_mode(cmd, advertising,
781                                                      Asym_Pause);
782
783         if (self->aq_nic_cfg.aq_hw_caps->media_type == AQ_HW_MEDIA_TYPE_FIBRE)
784                 ethtool_link_ksettings_add_link_mode(cmd, advertising, FIBRE);
785         else
786                 ethtool_link_ksettings_add_link_mode(cmd, advertising, TP);
787 }
788
789 int aq_nic_set_link_ksettings(struct aq_nic_s *self,
790                               const struct ethtool_link_ksettings *cmd)
791 {
792         u32 speed = 0U;
793         u32 rate = 0U;
794         int err = 0;
795
796         if (cmd->base.autoneg == AUTONEG_ENABLE) {
797                 rate = self->aq_nic_cfg.aq_hw_caps->link_speed_msk;
798                 self->aq_nic_cfg.is_autoneg = true;
799         } else {
800                 speed = cmd->base.speed;
801
802                 switch (speed) {
803                 case SPEED_100:
804                         rate = AQ_NIC_RATE_100M;
805                         break;
806
807                 case SPEED_1000:
808                         rate = AQ_NIC_RATE_1G;
809                         break;
810
811                 case SPEED_2500:
812                         rate = AQ_NIC_RATE_2GS;
813                         break;
814
815                 case SPEED_5000:
816                         rate = AQ_NIC_RATE_5G;
817                         break;
818
819                 case SPEED_10000:
820                         rate = AQ_NIC_RATE_10G;
821                         break;
822
823                 default:
824                         err = -1;
825                         goto err_exit;
826                 break;
827                 }
828                 if (!(self->aq_nic_cfg.aq_hw_caps->link_speed_msk & rate)) {
829                         err = -1;
830                         goto err_exit;
831                 }
832
833                 self->aq_nic_cfg.is_autoneg = false;
834         }
835
836         err = self->aq_fw_ops->set_link_speed(self->aq_hw, rate);
837         if (err < 0)
838                 goto err_exit;
839
840         self->aq_nic_cfg.link_speed_msk = rate;
841
842 err_exit:
843         return err;
844 }
845
846 struct aq_nic_cfg_s *aq_nic_get_cfg(struct aq_nic_s *self)
847 {
848         return &self->aq_nic_cfg;
849 }
850
851 u32 aq_nic_get_fw_version(struct aq_nic_s *self)
852 {
853         u32 fw_version = 0U;
854
855         self->aq_hw_ops->hw_get_fw_version(self->aq_hw, &fw_version);
856
857         return fw_version;
858 }
859
860 int aq_nic_stop(struct aq_nic_s *self)
861 {
862         struct aq_vec_s *aq_vec = NULL;
863         unsigned int i = 0U;
864
865         netif_tx_disable(self->ndev);
866         netif_carrier_off(self->ndev);
867
868         del_timer_sync(&self->service_timer);
869
870         self->aq_hw_ops->hw_irq_disable(self->aq_hw, AQ_CFG_IRQ_MASK);
871
872         if (self->aq_nic_cfg.is_polling)
873                 del_timer_sync(&self->polling_timer);
874         else
875                 aq_pci_func_free_irqs(self);
876
877         for (i = 0U, aq_vec = self->aq_vec[0];
878                 self->aq_vecs > i; ++i, aq_vec = self->aq_vec[i])
879                 aq_vec_stop(aq_vec);
880
881         return self->aq_hw_ops->hw_stop(self->aq_hw);
882 }
883
884 void aq_nic_deinit(struct aq_nic_s *self)
885 {
886         struct aq_vec_s *aq_vec = NULL;
887         unsigned int i = 0U;
888
889         if (!self)
890                 goto err_exit;
891
892         for (i = 0U, aq_vec = self->aq_vec[0];
893                 self->aq_vecs > i; ++i, aq_vec = self->aq_vec[i])
894                 aq_vec_deinit(aq_vec);
895
896         if (self->power_state == AQ_HW_POWER_STATE_D0) {
897                 (void)self->aq_fw_ops->deinit(self->aq_hw);
898         } else {
899                 (void)self->aq_hw_ops->hw_set_power(self->aq_hw,
900                                                    self->power_state);
901         }
902
903 err_exit:;
904 }
905
906 void aq_nic_free_vectors(struct aq_nic_s *self)
907 {
908         unsigned int i = 0U;
909
910         if (!self)
911                 goto err_exit;
912
913         for (i = ARRAY_SIZE(self->aq_vec); i--;) {
914                 if (self->aq_vec[i]) {
915                         aq_vec_free(self->aq_vec[i]);
916                         self->aq_vec[i] = NULL;
917                 }
918         }
919
920 err_exit:;
921 }
922
923 int aq_nic_change_pm_state(struct aq_nic_s *self, pm_message_t *pm_msg)
924 {
925         int err = 0;
926
927         if (!netif_running(self->ndev)) {
928                 err = 0;
929                 goto out;
930         }
931         rtnl_lock();
932         if (pm_msg->event & PM_EVENT_SLEEP || pm_msg->event & PM_EVENT_FREEZE) {
933                 self->power_state = AQ_HW_POWER_STATE_D3;
934                 netif_device_detach(self->ndev);
935                 netif_tx_stop_all_queues(self->ndev);
936
937                 err = aq_nic_stop(self);
938                 if (err < 0)
939                         goto err_exit;
940
941                 aq_nic_deinit(self);
942         } else {
943                 err = aq_nic_init(self);
944                 if (err < 0)
945                         goto err_exit;
946
947                 err = aq_nic_start(self);
948                 if (err < 0)
949                         goto err_exit;
950
951                 netif_device_attach(self->ndev);
952                 netif_tx_start_all_queues(self->ndev);
953         }
954
955 err_exit:
956         rtnl_unlock();
957 out:
958         return err;
959 }
960
961 void aq_nic_shutdown(struct aq_nic_s *self)
962 {
963         int err = 0;
964
965         if (!self->ndev)
966                 return;
967
968         rtnl_lock();
969
970         netif_device_detach(self->ndev);
971
972         if (netif_running(self->ndev)) {
973                 err = aq_nic_stop(self);
974                 if (err < 0)
975                         goto err_exit;
976         }
977         aq_nic_deinit(self);
978
979 err_exit:
980         rtnl_unlock();
981 }