blob: c0d6758ea16e5ea89e5ce2a04eee554c0f17165e [file] [log] [blame]
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001/* Intel Ethernet Switch Host Interface Driver
2 * Copyright(c) 2013 - 2014 Intel Corporation.
3 *
4 * This program is free software; you can redistribute it and/or modify it
5 * under the terms and conditions of the GNU General Public License,
6 * version 2, as published by the Free Software Foundation.
7 *
8 * This program is distributed in the hope it will be useful, but WITHOUT
9 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
10 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
11 * more details.
12 *
13 * The full GNU General Public License is included in this distribution in
14 * the file called "COPYING".
15 *
16 * Contact Information:
17 * e1000-devel Mailing List <e1000-devel@lists.sourceforge.net>
18 * Intel Corporation, 5200 N.E. Elam Young Parkway, Hillsboro, OR 97124-6497
19 */
20
21#include "fm10k.h"
Alexander Duyck3abaae42014-09-20 19:49:43 -040022#include <linux/vmalloc.h>
Alexander Duyck76a540d2014-09-20 19:51:02 -040023#if IS_ENABLED(CONFIG_VXLAN)
24#include <net/vxlan.h>
25#endif /* CONFIG_VXLAN */
Alexander Duyck3abaae42014-09-20 19:49:43 -040026
27/**
28 * fm10k_setup_tx_resources - allocate Tx resources (Descriptors)
29 * @tx_ring: tx descriptor ring (for a specific queue) to setup
30 *
31 * Return 0 on success, negative on failure
32 **/
33int fm10k_setup_tx_resources(struct fm10k_ring *tx_ring)
34{
35 struct device *dev = tx_ring->dev;
36 int size;
37
38 size = sizeof(struct fm10k_tx_buffer) * tx_ring->count;
39
40 tx_ring->tx_buffer = vzalloc(size);
41 if (!tx_ring->tx_buffer)
42 goto err;
43
44 u64_stats_init(&tx_ring->syncp);
45
46 /* round up to nearest 4K */
47 tx_ring->size = tx_ring->count * sizeof(struct fm10k_tx_desc);
48 tx_ring->size = ALIGN(tx_ring->size, 4096);
49
50 tx_ring->desc = dma_alloc_coherent(dev, tx_ring->size,
51 &tx_ring->dma, GFP_KERNEL);
52 if (!tx_ring->desc)
53 goto err;
54
55 return 0;
56
57err:
58 vfree(tx_ring->tx_buffer);
59 tx_ring->tx_buffer = NULL;
60 return -ENOMEM;
61}
62
63/**
64 * fm10k_setup_all_tx_resources - allocate all queues Tx resources
65 * @interface: board private structure
66 *
67 * If this function returns with an error, then it's possible one or
68 * more of the rings is populated (while the rest are not). It is the
69 * callers duty to clean those orphaned rings.
70 *
71 * Return 0 on success, negative on failure
72 **/
73static int fm10k_setup_all_tx_resources(struct fm10k_intfc *interface)
74{
75 int i, err = 0;
76
77 for (i = 0; i < interface->num_tx_queues; i++) {
78 err = fm10k_setup_tx_resources(interface->tx_ring[i]);
79 if (!err)
80 continue;
81
82 netif_err(interface, probe, interface->netdev,
83 "Allocation for Tx Queue %u failed\n", i);
84 goto err_setup_tx;
85 }
86
87 return 0;
88err_setup_tx:
89 /* rewind the index freeing the rings as we go */
90 while (i--)
91 fm10k_free_tx_resources(interface->tx_ring[i]);
92 return err;
93}
94
95/**
96 * fm10k_setup_rx_resources - allocate Rx resources (Descriptors)
97 * @rx_ring: rx descriptor ring (for a specific queue) to setup
98 *
99 * Returns 0 on success, negative on failure
100 **/
101int fm10k_setup_rx_resources(struct fm10k_ring *rx_ring)
102{
103 struct device *dev = rx_ring->dev;
104 int size;
105
106 size = sizeof(struct fm10k_rx_buffer) * rx_ring->count;
107
108 rx_ring->rx_buffer = vzalloc(size);
109 if (!rx_ring->rx_buffer)
110 goto err;
111
112 u64_stats_init(&rx_ring->syncp);
113
114 /* Round up to nearest 4K */
115 rx_ring->size = rx_ring->count * sizeof(union fm10k_rx_desc);
116 rx_ring->size = ALIGN(rx_ring->size, 4096);
117
118 rx_ring->desc = dma_alloc_coherent(dev, rx_ring->size,
119 &rx_ring->dma, GFP_KERNEL);
120 if (!rx_ring->desc)
121 goto err;
122
123 return 0;
124err:
125 vfree(rx_ring->rx_buffer);
126 rx_ring->rx_buffer = NULL;
127 return -ENOMEM;
128}
129
130/**
131 * fm10k_setup_all_rx_resources - allocate all queues Rx resources
132 * @interface: board private structure
133 *
134 * If this function returns with an error, then it's possible one or
135 * more of the rings is populated (while the rest are not). It is the
136 * callers duty to clean those orphaned rings.
137 *
138 * Return 0 on success, negative on failure
139 **/
140static int fm10k_setup_all_rx_resources(struct fm10k_intfc *interface)
141{
142 int i, err = 0;
143
144 for (i = 0; i < interface->num_rx_queues; i++) {
145 err = fm10k_setup_rx_resources(interface->rx_ring[i]);
146 if (!err)
147 continue;
148
149 netif_err(interface, probe, interface->netdev,
150 "Allocation for Rx Queue %u failed\n", i);
151 goto err_setup_rx;
152 }
153
154 return 0;
155err_setup_rx:
156 /* rewind the index freeing the rings as we go */
157 while (i--)
158 fm10k_free_rx_resources(interface->rx_ring[i]);
159 return err;
160}
161
162void fm10k_unmap_and_free_tx_resource(struct fm10k_ring *ring,
163 struct fm10k_tx_buffer *tx_buffer)
164{
165 if (tx_buffer->skb) {
166 dev_kfree_skb_any(tx_buffer->skb);
167 if (dma_unmap_len(tx_buffer, len))
168 dma_unmap_single(ring->dev,
169 dma_unmap_addr(tx_buffer, dma),
170 dma_unmap_len(tx_buffer, len),
171 DMA_TO_DEVICE);
172 } else if (dma_unmap_len(tx_buffer, len)) {
173 dma_unmap_page(ring->dev,
174 dma_unmap_addr(tx_buffer, dma),
175 dma_unmap_len(tx_buffer, len),
176 DMA_TO_DEVICE);
177 }
178 tx_buffer->next_to_watch = NULL;
179 tx_buffer->skb = NULL;
180 dma_unmap_len_set(tx_buffer, len, 0);
181 /* tx_buffer must be completely set up in the transmit path */
182}
183
184/**
185 * fm10k_clean_tx_ring - Free Tx Buffers
186 * @tx_ring: ring to be cleaned
187 **/
188static void fm10k_clean_tx_ring(struct fm10k_ring *tx_ring)
189{
190 struct fm10k_tx_buffer *tx_buffer;
191 unsigned long size;
192 u16 i;
193
194 /* ring already cleared, nothing to do */
195 if (!tx_ring->tx_buffer)
196 return;
197
198 /* Free all the Tx ring sk_buffs */
199 for (i = 0; i < tx_ring->count; i++) {
200 tx_buffer = &tx_ring->tx_buffer[i];
201 fm10k_unmap_and_free_tx_resource(tx_ring, tx_buffer);
202 }
203
204 /* reset BQL values */
205 netdev_tx_reset_queue(txring_txq(tx_ring));
206
207 size = sizeof(struct fm10k_tx_buffer) * tx_ring->count;
208 memset(tx_ring->tx_buffer, 0, size);
209
210 /* Zero out the descriptor ring */
211 memset(tx_ring->desc, 0, tx_ring->size);
212}
213
214/**
215 * fm10k_free_tx_resources - Free Tx Resources per Queue
216 * @tx_ring: Tx descriptor ring for a specific queue
217 *
218 * Free all transmit software resources
219 **/
220void fm10k_free_tx_resources(struct fm10k_ring *tx_ring)
221{
222 fm10k_clean_tx_ring(tx_ring);
223
224 vfree(tx_ring->tx_buffer);
225 tx_ring->tx_buffer = NULL;
226
227 /* if not set, then don't free */
228 if (!tx_ring->desc)
229 return;
230
231 dma_free_coherent(tx_ring->dev, tx_ring->size,
232 tx_ring->desc, tx_ring->dma);
233 tx_ring->desc = NULL;
234}
235
236/**
237 * fm10k_clean_all_tx_rings - Free Tx Buffers for all queues
238 * @interface: board private structure
239 **/
240void fm10k_clean_all_tx_rings(struct fm10k_intfc *interface)
241{
242 int i;
243
244 for (i = 0; i < interface->num_tx_queues; i++)
245 fm10k_clean_tx_ring(interface->tx_ring[i]);
246}
247
248/**
249 * fm10k_free_all_tx_resources - Free Tx Resources for All Queues
250 * @interface: board private structure
251 *
252 * Free all transmit software resources
253 **/
254static void fm10k_free_all_tx_resources(struct fm10k_intfc *interface)
255{
256 int i = interface->num_tx_queues;
257
258 while (i--)
259 fm10k_free_tx_resources(interface->tx_ring[i]);
260}
261
262/**
263 * fm10k_clean_rx_ring - Free Rx Buffers per Queue
264 * @rx_ring: ring to free buffers from
265 **/
266static void fm10k_clean_rx_ring(struct fm10k_ring *rx_ring)
267{
268 unsigned long size;
269 u16 i;
270
271 if (!rx_ring->rx_buffer)
272 return;
273
274 if (rx_ring->skb)
275 dev_kfree_skb(rx_ring->skb);
276 rx_ring->skb = NULL;
277
278 /* Free all the Rx ring sk_buffs */
279 for (i = 0; i < rx_ring->count; i++) {
280 struct fm10k_rx_buffer *buffer = &rx_ring->rx_buffer[i];
281 /* clean-up will only set page pointer to NULL */
282 if (!buffer->page)
283 continue;
284
285 dma_unmap_page(rx_ring->dev, buffer->dma,
286 PAGE_SIZE, DMA_FROM_DEVICE);
287 __free_page(buffer->page);
288
289 buffer->page = NULL;
290 }
291
292 size = sizeof(struct fm10k_rx_buffer) * rx_ring->count;
293 memset(rx_ring->rx_buffer, 0, size);
294
295 /* Zero out the descriptor ring */
296 memset(rx_ring->desc, 0, rx_ring->size);
297
298 rx_ring->next_to_alloc = 0;
299 rx_ring->next_to_clean = 0;
300 rx_ring->next_to_use = 0;
301}
302
303/**
304 * fm10k_free_rx_resources - Free Rx Resources
305 * @rx_ring: ring to clean the resources from
306 *
307 * Free all receive software resources
308 **/
309void fm10k_free_rx_resources(struct fm10k_ring *rx_ring)
310{
311 fm10k_clean_rx_ring(rx_ring);
312
313 vfree(rx_ring->rx_buffer);
314 rx_ring->rx_buffer = NULL;
315
316 /* if not set, then don't free */
317 if (!rx_ring->desc)
318 return;
319
320 dma_free_coherent(rx_ring->dev, rx_ring->size,
321 rx_ring->desc, rx_ring->dma);
322
323 rx_ring->desc = NULL;
324}
325
326/**
327 * fm10k_clean_all_rx_rings - Free Rx Buffers for all queues
328 * @interface: board private structure
329 **/
330void fm10k_clean_all_rx_rings(struct fm10k_intfc *interface)
331{
332 int i;
333
334 for (i = 0; i < interface->num_rx_queues; i++)
335 fm10k_clean_rx_ring(interface->rx_ring[i]);
336}
337
338/**
339 * fm10k_free_all_rx_resources - Free Rx Resources for All Queues
340 * @interface: board private structure
341 *
342 * Free all receive software resources
343 **/
344static void fm10k_free_all_rx_resources(struct fm10k_intfc *interface)
345{
346 int i = interface->num_rx_queues;
347
348 while (i--)
349 fm10k_free_rx_resources(interface->rx_ring[i]);
350}
Alexander Duyck0e7b3642014-09-20 19:48:10 -0400351
Alexander Duyck504c5ea2014-09-20 19:48:29 -0400352/**
353 * fm10k_request_glort_range - Request GLORTs for use in configuring rules
354 * @interface: board private structure
355 *
356 * This function allocates a range of glorts for this inteface to use.
357 **/
358static void fm10k_request_glort_range(struct fm10k_intfc *interface)
359{
360 struct fm10k_hw *hw = &interface->hw;
361 u16 mask = (~hw->mac.dglort_map) >> FM10K_DGLORTMAP_MASK_SHIFT;
362
363 /* establish GLORT base */
364 interface->glort = hw->mac.dglort_map & FM10K_DGLORTMAP_NONE;
365 interface->glort_count = 0;
366
367 /* nothing we can do until mask is allocated */
368 if (hw->mac.dglort_map == FM10K_DGLORTMAP_NONE)
369 return;
370
371 interface->glort_count = mask + 1;
372}
373
374/**
Alexander Duyck76a540d2014-09-20 19:51:02 -0400375 * fm10k_del_vxlan_port_all
376 * @interface: board private structure
377 *
378 * This function frees the entire vxlan_port list
379 **/
380static void fm10k_del_vxlan_port_all(struct fm10k_intfc *interface)
381{
382 struct fm10k_vxlan_port *vxlan_port;
383
384 /* flush all entries from list */
385 vxlan_port = list_first_entry_or_null(&interface->vxlan_port,
386 struct fm10k_vxlan_port, list);
387 while (vxlan_port) {
388 list_del(&vxlan_port->list);
389 kfree(vxlan_port);
390 vxlan_port = list_first_entry_or_null(&interface->vxlan_port,
391 struct fm10k_vxlan_port,
392 list);
393 }
394}
395
396/**
397 * fm10k_restore_vxlan_port
398 * @interface: board private structure
399 *
400 * This function restores the value in the tunnel_cfg register after reset
401 **/
402static void fm10k_restore_vxlan_port(struct fm10k_intfc *interface)
403{
404 struct fm10k_hw *hw = &interface->hw;
405 struct fm10k_vxlan_port *vxlan_port;
406
407 /* only the PF supports configuring tunnels */
408 if (hw->mac.type != fm10k_mac_pf)
409 return;
410
411 vxlan_port = list_first_entry_or_null(&interface->vxlan_port,
412 struct fm10k_vxlan_port, list);
413
414 /* restore tunnel configuration register */
415 fm10k_write_reg(hw, FM10K_TUNNEL_CFG,
416 (vxlan_port ? ntohs(vxlan_port->port) : 0) |
417 (ETH_P_TEB << FM10K_TUNNEL_CFG_NVGRE_SHIFT));
418}
419
420/**
421 * fm10k_add_vxlan_port
422 * @netdev: network interface device structure
423 * @sa_family: Address family of new port
424 * @port: port number used for VXLAN
425 *
426 * This funciton is called when a new VXLAN interface has added a new port
427 * number to the range that is currently in use for VXLAN. The new port
428 * number is always added to the tail so that the port number list should
429 * match the order in which the ports were allocated. The head of the list
430 * is always used as the VXLAN port number for offloads.
431 **/
432static void fm10k_add_vxlan_port(struct net_device *dev,
433 sa_family_t sa_family, __be16 port) {
434 struct fm10k_intfc *interface = netdev_priv(dev);
435 struct fm10k_vxlan_port *vxlan_port;
436
437 /* only the PF supports configuring tunnels */
438 if (interface->hw.mac.type != fm10k_mac_pf)
439 return;
440
441 /* existing ports are pulled out so our new entry is always last */
442 fm10k_vxlan_port_for_each(vxlan_port, interface) {
443 if ((vxlan_port->port == port) &&
444 (vxlan_port->sa_family == sa_family)) {
445 list_del(&vxlan_port->list);
446 goto insert_tail;
447 }
448 }
449
450 /* allocate memory to track ports */
451 vxlan_port = kmalloc(sizeof(*vxlan_port), GFP_ATOMIC);
452 if (!vxlan_port)
453 return;
454 vxlan_port->port = port;
455 vxlan_port->sa_family = sa_family;
456
457insert_tail:
458 /* add new port value to list */
459 list_add_tail(&vxlan_port->list, &interface->vxlan_port);
460
461 fm10k_restore_vxlan_port(interface);
462}
463
464/**
465 * fm10k_del_vxlan_port
466 * @netdev: network interface device structure
467 * @sa_family: Address family of freed port
468 * @port: port number used for VXLAN
469 *
470 * This funciton is called when a new VXLAN interface has freed a port
471 * number from the range that is currently in use for VXLAN. The freed
472 * port is removed from the list and the new head is used to determine
473 * the port number for offloads.
474 **/
475static void fm10k_del_vxlan_port(struct net_device *dev,
476 sa_family_t sa_family, __be16 port) {
477 struct fm10k_intfc *interface = netdev_priv(dev);
478 struct fm10k_vxlan_port *vxlan_port;
479
480 if (interface->hw.mac.type != fm10k_mac_pf)
481 return;
482
483 /* find the port in the list and free it */
484 fm10k_vxlan_port_for_each(vxlan_port, interface) {
485 if ((vxlan_port->port == port) &&
486 (vxlan_port->sa_family == sa_family)) {
487 list_del(&vxlan_port->list);
488 kfree(vxlan_port);
489 break;
490 }
491 }
492
493 fm10k_restore_vxlan_port(interface);
494}
495
496/**
Alexander Duyck504c5ea2014-09-20 19:48:29 -0400497 * fm10k_open - Called when a network interface is made active
498 * @netdev: network interface device structure
499 *
500 * Returns 0 on success, negative value on failure
501 *
502 * The open entry point is called when a network interface is made
503 * active by the system (IFF_UP). At this point all resources needed
504 * for transmit and receive operations are allocated, the interrupt
505 * handler is registered with the OS, the watchdog timer is started,
506 * and the stack is notified that the interface is ready.
507 **/
508int fm10k_open(struct net_device *netdev)
509{
510 struct fm10k_intfc *interface = netdev_priv(netdev);
Alexander Duyck18283ca2014-09-20 19:48:51 -0400511 int err;
512
Alexander Duyck3abaae42014-09-20 19:49:43 -0400513 /* allocate transmit descriptors */
514 err = fm10k_setup_all_tx_resources(interface);
515 if (err)
516 goto err_setup_tx;
517
518 /* allocate receive descriptors */
519 err = fm10k_setup_all_rx_resources(interface);
520 if (err)
521 goto err_setup_rx;
522
Alexander Duyck18283ca2014-09-20 19:48:51 -0400523 /* allocate interrupt resources */
524 err = fm10k_qv_request_irq(interface);
525 if (err)
526 goto err_req_irq;
Alexander Duyck504c5ea2014-09-20 19:48:29 -0400527
528 /* setup GLORT assignment for this port */
529 fm10k_request_glort_range(interface);
530
Alexander Duycke27ef592014-09-20 19:49:03 -0400531 /* Notify the stack of the actual queue counts */
532
533 err = netif_set_real_num_rx_queues(netdev,
534 interface->num_rx_queues);
535 if (err)
536 goto err_set_queues;
537
Alexander Duyck76a540d2014-09-20 19:51:02 -0400538#if IS_ENABLED(CONFIG_VXLAN)
539 /* update VXLAN port configuration */
540 vxlan_get_rx_port(netdev);
541
542#endif
Alexander Duyck504c5ea2014-09-20 19:48:29 -0400543 fm10k_up(interface);
544
545 return 0;
Alexander Duyck18283ca2014-09-20 19:48:51 -0400546
Alexander Duycke27ef592014-09-20 19:49:03 -0400547err_set_queues:
548 fm10k_qv_free_irq(interface);
Alexander Duyck18283ca2014-09-20 19:48:51 -0400549err_req_irq:
Alexander Duyck3abaae42014-09-20 19:49:43 -0400550 fm10k_free_all_rx_resources(interface);
551err_setup_rx:
552 fm10k_free_all_tx_resources(interface);
553err_setup_tx:
Alexander Duyck18283ca2014-09-20 19:48:51 -0400554 return err;
Alexander Duyck504c5ea2014-09-20 19:48:29 -0400555}
556
557/**
558 * fm10k_close - Disables a network interface
559 * @netdev: network interface device structure
560 *
561 * Returns 0, this is not allowed to fail
562 *
563 * The close entry point is called when an interface is de-activated
564 * by the OS. The hardware is still under the drivers control, but
565 * needs to be disabled. A global MAC reset is issued to stop the
566 * hardware, and all transmit and receive resources are freed.
567 **/
568int fm10k_close(struct net_device *netdev)
569{
570 struct fm10k_intfc *interface = netdev_priv(netdev);
571
572 fm10k_down(interface);
573
Alexander Duyck18283ca2014-09-20 19:48:51 -0400574 fm10k_qv_free_irq(interface);
575
Alexander Duyck76a540d2014-09-20 19:51:02 -0400576 fm10k_del_vxlan_port_all(interface);
577
Alexander Duyck3abaae42014-09-20 19:49:43 -0400578 fm10k_free_all_tx_resources(interface);
579 fm10k_free_all_rx_resources(interface);
580
Alexander Duyck504c5ea2014-09-20 19:48:29 -0400581 return 0;
582}
583
Alexander Duyck0e7b3642014-09-20 19:48:10 -0400584static netdev_tx_t fm10k_xmit_frame(struct sk_buff *skb, struct net_device *dev)
585{
Alexander Duyckb101c962014-09-20 19:50:03 -0400586 struct fm10k_intfc *interface = netdev_priv(dev);
587 unsigned int r_idx = 0;
588 int err;
589
590 if ((skb->protocol == htons(ETH_P_8021Q)) &&
591 !vlan_tx_tag_present(skb)) {
592 /* FM10K only supports hardware tagging, any tags in frame
593 * are considered 2nd level or "outer" tags
594 */
595 struct vlan_hdr *vhdr;
596 __be16 proto;
597
598 /* make sure skb is not shared */
599 skb = skb_share_check(skb, GFP_ATOMIC);
600 if (!skb)
601 return NETDEV_TX_OK;
602
603 /* make sure there is enough room to move the ethernet header */
604 if (unlikely(!pskb_may_pull(skb, VLAN_ETH_HLEN)))
605 return NETDEV_TX_OK;
606
607 /* verify the skb head is not shared */
608 err = skb_cow_head(skb, 0);
609 if (err)
610 return NETDEV_TX_OK;
611
612 /* locate vlan header */
613 vhdr = (struct vlan_hdr *)(skb->data + ETH_HLEN);
614
615 /* pull the 2 key pieces of data out of it */
616 __vlan_hwaccel_put_tag(skb,
617 htons(ETH_P_8021Q),
618 ntohs(vhdr->h_vlan_TCI));
619 proto = vhdr->h_vlan_encapsulated_proto;
620 skb->protocol = (ntohs(proto) >= 1536) ? proto :
621 htons(ETH_P_802_2);
622
623 /* squash it by moving the ethernet addresses up 4 bytes */
624 memmove(skb->data + VLAN_HLEN, skb->data, 12);
625 __skb_pull(skb, VLAN_HLEN);
626 skb_reset_mac_header(skb);
627 }
628
629 /* The minimum packet size for a single buffer is 17B so pad the skb
630 * in order to meet this minimum size requirement.
631 */
632 if (unlikely(skb->len < 17)) {
633 int pad_len = 17 - skb->len;
634
635 if (skb_pad(skb, pad_len))
636 return NETDEV_TX_OK;
637 __skb_put(skb, pad_len);
638 }
639
640 if (r_idx >= interface->num_tx_queues)
641 r_idx %= interface->num_tx_queues;
642
643 err = fm10k_xmit_frame_ring(skb, interface->tx_ring[r_idx]);
644
645 return err;
Alexander Duyck0e7b3642014-09-20 19:48:10 -0400646}
647
648static int fm10k_change_mtu(struct net_device *dev, int new_mtu)
649{
650 if (new_mtu < 68 || new_mtu > FM10K_MAX_JUMBO_FRAME_SIZE)
651 return -EINVAL;
652
653 dev->mtu = new_mtu;
654
655 return 0;
656}
657
Alexander Duyckb101c962014-09-20 19:50:03 -0400658/**
659 * fm10k_tx_timeout - Respond to a Tx Hang
660 * @netdev: network interface device structure
661 **/
662static void fm10k_tx_timeout(struct net_device *netdev)
663{
664 struct fm10k_intfc *interface = netdev_priv(netdev);
665 bool real_tx_hang = false;
666 int i;
667
668#define TX_TIMEO_LIMIT 16000
669 for (i = 0; i < interface->num_tx_queues; i++) {
670 struct fm10k_ring *tx_ring = interface->tx_ring[i];
671
672 if (check_for_tx_hang(tx_ring) && fm10k_check_tx_hang(tx_ring))
673 real_tx_hang = true;
674 }
675
676 if (real_tx_hang) {
677 fm10k_tx_timeout_reset(interface);
678 } else {
679 netif_info(interface, drv, netdev,
680 "Fake Tx hang detected with timeout of %d seconds\n",
681 netdev->watchdog_timeo/HZ);
682
683 /* fake Tx hang - increase the kernel timeout */
684 if (netdev->watchdog_timeo < TX_TIMEO_LIMIT)
685 netdev->watchdog_timeo *= 2;
686 }
687}
688
Alexander Duyck8f5e20d2014-09-20 19:48:20 -0400689static int fm10k_uc_vlan_unsync(struct net_device *netdev,
690 const unsigned char *uc_addr)
691{
692 struct fm10k_intfc *interface = netdev_priv(netdev);
693 struct fm10k_hw *hw = &interface->hw;
694 u16 glort = interface->glort;
695 u16 vid = interface->vid;
696 bool set = !!(vid / VLAN_N_VID);
697 int err;
698
699 /* drop any leading bits on the VLAN ID */
700 vid &= VLAN_N_VID - 1;
701
702 err = hw->mac.ops.update_uc_addr(hw, glort, uc_addr, vid, set, 0);
703 if (err)
704 return err;
705
706 /* return non-zero value as we are only doing a partial sync/unsync */
707 return 1;
708}
709
710static int fm10k_mc_vlan_unsync(struct net_device *netdev,
711 const unsigned char *mc_addr)
712{
713 struct fm10k_intfc *interface = netdev_priv(netdev);
714 struct fm10k_hw *hw = &interface->hw;
715 u16 glort = interface->glort;
716 u16 vid = interface->vid;
717 bool set = !!(vid / VLAN_N_VID);
718 int err;
719
720 /* drop any leading bits on the VLAN ID */
721 vid &= VLAN_N_VID - 1;
722
723 err = hw->mac.ops.update_mc_addr(hw, glort, mc_addr, vid, set);
724 if (err)
725 return err;
726
727 /* return non-zero value as we are only doing a partial sync/unsync */
728 return 1;
729}
730
731static int fm10k_update_vid(struct net_device *netdev, u16 vid, bool set)
732{
733 struct fm10k_intfc *interface = netdev_priv(netdev);
734 struct fm10k_hw *hw = &interface->hw;
735 s32 err;
736
737 /* updates do not apply to VLAN 0 */
738 if (!vid)
739 return 0;
740
741 if (vid >= VLAN_N_VID)
742 return -EINVAL;
743
744 /* Verify we have permission to add VLANs */
745 if (hw->mac.vlan_override)
746 return -EACCES;
747
748 /* if default VLAN is already present do nothing */
749 if (vid == hw->mac.default_vid)
750 return -EBUSY;
751
752 /* update active_vlans bitmask */
753 set_bit(vid, interface->active_vlans);
754 if (!set)
755 clear_bit(vid, interface->active_vlans);
756
757 fm10k_mbx_lock(interface);
758
759 /* only need to update the VLAN if not in promiscous mode */
760 if (!(netdev->flags & IFF_PROMISC)) {
761 err = hw->mac.ops.update_vlan(hw, vid, 0, set);
762 if (err)
763 return err;
764 }
765
766 /* update our base MAC address */
767 err = hw->mac.ops.update_uc_addr(hw, interface->glort, hw->mac.addr,
768 vid, set, 0);
769 if (err)
770 return err;
771
772 /* set vid prior to syncing/unsyncing the VLAN */
773 interface->vid = vid + (set ? VLAN_N_VID : 0);
774
775 /* Update the unicast and multicast address list to add/drop VLAN */
776 __dev_uc_unsync(netdev, fm10k_uc_vlan_unsync);
777 __dev_mc_unsync(netdev, fm10k_mc_vlan_unsync);
778
779 fm10k_mbx_unlock(interface);
780
781 return 0;
782}
783
784static int fm10k_vlan_rx_add_vid(struct net_device *netdev,
785 __always_unused __be16 proto, u16 vid)
786{
787 /* update VLAN and address table based on changes */
788 return fm10k_update_vid(netdev, vid, true);
789}
790
791static int fm10k_vlan_rx_kill_vid(struct net_device *netdev,
792 __always_unused __be16 proto, u16 vid)
793{
794 /* update VLAN and address table based on changes */
795 return fm10k_update_vid(netdev, vid, false);
796}
797
798static u16 fm10k_find_next_vlan(struct fm10k_intfc *interface, u16 vid)
799{
800 struct fm10k_hw *hw = &interface->hw;
801 u16 default_vid = hw->mac.default_vid;
802 u16 vid_limit = vid < default_vid ? default_vid : VLAN_N_VID;
803
804 vid = find_next_bit(interface->active_vlans, vid_limit, ++vid);
805
806 return vid;
807}
808
809static void fm10k_clear_unused_vlans(struct fm10k_intfc *interface)
810{
811 struct fm10k_hw *hw = &interface->hw;
812 u32 vid, prev_vid;
813
814 /* loop through and find any gaps in the table */
815 for (vid = 0, prev_vid = 0;
816 prev_vid < VLAN_N_VID;
817 prev_vid = vid + 1, vid = fm10k_find_next_vlan(interface, vid)) {
818 if (prev_vid == vid)
819 continue;
820
821 /* send request to clear multiple bits at a time */
822 prev_vid += (vid - prev_vid - 1) << FM10K_VLAN_LENGTH_SHIFT;
823 hw->mac.ops.update_vlan(hw, prev_vid, 0, false);
824 }
825}
826
827static int __fm10k_uc_sync(struct net_device *dev,
828 const unsigned char *addr, bool sync)
829{
830 struct fm10k_intfc *interface = netdev_priv(dev);
831 struct fm10k_hw *hw = &interface->hw;
832 u16 vid, glort = interface->glort;
833 s32 err;
834
835 if (!is_valid_ether_addr(addr))
836 return -EADDRNOTAVAIL;
837
838 /* update table with current entries */
839 for (vid = hw->mac.default_vid ? fm10k_find_next_vlan(interface, 0) : 0;
840 vid < VLAN_N_VID;
841 vid = fm10k_find_next_vlan(interface, vid)) {
842 err = hw->mac.ops.update_uc_addr(hw, glort, addr,
843 vid, sync, 0);
844 if (err)
845 return err;
846 }
847
848 return 0;
849}
850
851static int fm10k_uc_sync(struct net_device *dev,
852 const unsigned char *addr)
853{
854 return __fm10k_uc_sync(dev, addr, true);
855}
856
857static int fm10k_uc_unsync(struct net_device *dev,
858 const unsigned char *addr)
859{
860 return __fm10k_uc_sync(dev, addr, false);
861}
862
Alexander Duyck0e7b3642014-09-20 19:48:10 -0400863static int fm10k_set_mac(struct net_device *dev, void *p)
864{
Alexander Duyck8f5e20d2014-09-20 19:48:20 -0400865 struct fm10k_intfc *interface = netdev_priv(dev);
866 struct fm10k_hw *hw = &interface->hw;
Alexander Duyck0e7b3642014-09-20 19:48:10 -0400867 struct sockaddr *addr = p;
868 s32 err = 0;
869
870 if (!is_valid_ether_addr(addr->sa_data))
871 return -EADDRNOTAVAIL;
872
Alexander Duyck8f5e20d2014-09-20 19:48:20 -0400873 if (dev->flags & IFF_UP) {
874 /* setting MAC address requires mailbox */
875 fm10k_mbx_lock(interface);
876
877 err = fm10k_uc_sync(dev, addr->sa_data);
878 if (!err)
879 fm10k_uc_unsync(dev, hw->mac.addr);
880
881 fm10k_mbx_unlock(interface);
882 }
883
Alexander Duyck0e7b3642014-09-20 19:48:10 -0400884 if (!err) {
885 ether_addr_copy(dev->dev_addr, addr->sa_data);
Alexander Duyck8f5e20d2014-09-20 19:48:20 -0400886 ether_addr_copy(hw->mac.addr, addr->sa_data);
Alexander Duyck0e7b3642014-09-20 19:48:10 -0400887 dev->addr_assign_type &= ~NET_ADDR_RANDOM;
888 }
889
Alexander Duyck8f5e20d2014-09-20 19:48:20 -0400890 /* if we had a mailbox error suggest trying again */
891 return err ? -EAGAIN : 0;
892}
893
894static int __fm10k_mc_sync(struct net_device *dev,
895 const unsigned char *addr, bool sync)
896{
897 struct fm10k_intfc *interface = netdev_priv(dev);
898 struct fm10k_hw *hw = &interface->hw;
899 u16 vid, glort = interface->glort;
900 s32 err;
901
902 if (!is_multicast_ether_addr(addr))
903 return -EADDRNOTAVAIL;
904
905 /* update table with current entries */
906 for (vid = hw->mac.default_vid ? fm10k_find_next_vlan(interface, 0) : 0;
907 vid < VLAN_N_VID;
908 vid = fm10k_find_next_vlan(interface, vid)) {
909 err = hw->mac.ops.update_mc_addr(hw, glort, addr, vid, sync);
910 if (err)
911 return err;
912 }
913
914 return 0;
915}
916
917static int fm10k_mc_sync(struct net_device *dev,
918 const unsigned char *addr)
919{
920 return __fm10k_mc_sync(dev, addr, true);
921}
922
923static int fm10k_mc_unsync(struct net_device *dev,
924 const unsigned char *addr)
925{
926 return __fm10k_mc_sync(dev, addr, false);
Alexander Duyck0e7b3642014-09-20 19:48:10 -0400927}
928
929static void fm10k_set_rx_mode(struct net_device *dev)
930{
Alexander Duyck8f5e20d2014-09-20 19:48:20 -0400931 struct fm10k_intfc *interface = netdev_priv(dev);
932 struct fm10k_hw *hw = &interface->hw;
933 int xcast_mode;
934
935 /* no need to update the harwdare if we are not running */
936 if (!(dev->flags & IFF_UP))
937 return;
938
939 /* determine new mode based on flags */
940 xcast_mode = (dev->flags & IFF_PROMISC) ? FM10K_XCAST_MODE_PROMISC :
941 (dev->flags & IFF_ALLMULTI) ? FM10K_XCAST_MODE_ALLMULTI :
942 (dev->flags & (IFF_BROADCAST | IFF_MULTICAST)) ?
943 FM10K_XCAST_MODE_MULTI : FM10K_XCAST_MODE_NONE;
944
945 fm10k_mbx_lock(interface);
946
947 /* syncronize all of the addresses */
948 if (xcast_mode != FM10K_XCAST_MODE_PROMISC) {
949 __dev_uc_sync(dev, fm10k_uc_sync, fm10k_uc_unsync);
950 if (xcast_mode != FM10K_XCAST_MODE_ALLMULTI)
951 __dev_mc_sync(dev, fm10k_mc_sync, fm10k_mc_unsync);
952 }
953
954 /* if we aren't changing modes there is nothing to do */
955 if (interface->xcast_mode != xcast_mode) {
956 /* update VLAN table */
957 if (xcast_mode == FM10K_XCAST_MODE_PROMISC)
958 hw->mac.ops.update_vlan(hw, FM10K_VLAN_ALL, 0, true);
959 if (interface->xcast_mode == FM10K_XCAST_MODE_PROMISC)
960 fm10k_clear_unused_vlans(interface);
961
962 /* update xcast mode */
963 hw->mac.ops.update_xcast_mode(hw, interface->glort, xcast_mode);
964
965 /* record updated xcast mode state */
966 interface->xcast_mode = xcast_mode;
967 }
968
969 fm10k_mbx_unlock(interface);
970}
971
972void fm10k_restore_rx_state(struct fm10k_intfc *interface)
973{
974 struct net_device *netdev = interface->netdev;
975 struct fm10k_hw *hw = &interface->hw;
976 int xcast_mode;
977 u16 vid, glort;
978
Alexander Duyck5cb8db42014-09-20 19:51:40 -0400979 /* restore our address if perm_addr is set */
980 if (hw->mac.type == fm10k_mac_vf) {
981 if (is_valid_ether_addr(hw->mac.perm_addr)) {
982 ether_addr_copy(hw->mac.addr, hw->mac.perm_addr);
983 ether_addr_copy(netdev->perm_addr, hw->mac.perm_addr);
984 ether_addr_copy(netdev->dev_addr, hw->mac.perm_addr);
985 netdev->addr_assign_type &= ~NET_ADDR_RANDOM;
986 }
987
988 if (hw->mac.vlan_override)
989 netdev->features &= ~NETIF_F_HW_VLAN_CTAG_RX;
990 else
991 netdev->features |= NETIF_F_HW_VLAN_CTAG_RX;
992 }
993
Alexander Duyck8f5e20d2014-09-20 19:48:20 -0400994 /* record glort for this interface */
995 glort = interface->glort;
996
997 /* convert interface flags to xcast mode */
998 if (netdev->flags & IFF_PROMISC)
999 xcast_mode = FM10K_XCAST_MODE_PROMISC;
1000 else if (netdev->flags & IFF_ALLMULTI)
1001 xcast_mode = FM10K_XCAST_MODE_ALLMULTI;
1002 else if (netdev->flags & (IFF_BROADCAST | IFF_MULTICAST))
1003 xcast_mode = FM10K_XCAST_MODE_MULTI;
1004 else
1005 xcast_mode = FM10K_XCAST_MODE_NONE;
1006
1007 fm10k_mbx_lock(interface);
1008
1009 /* Enable logical port */
1010 hw->mac.ops.update_lport_state(hw, glort, interface->glort_count, true);
1011
1012 /* update VLAN table */
1013 hw->mac.ops.update_vlan(hw, FM10K_VLAN_ALL, 0,
1014 xcast_mode == FM10K_XCAST_MODE_PROMISC);
1015
1016 /* Add filter for VLAN 0 */
1017 hw->mac.ops.update_vlan(hw, 0, 0, true);
1018
1019 /* update table with current entries */
1020 for (vid = hw->mac.default_vid ? fm10k_find_next_vlan(interface, 0) : 0;
1021 vid < VLAN_N_VID;
1022 vid = fm10k_find_next_vlan(interface, vid)) {
1023 hw->mac.ops.update_vlan(hw, vid, 0, true);
1024 hw->mac.ops.update_uc_addr(hw, glort, hw->mac.addr,
1025 vid, true, 0);
1026 }
1027
1028 /* syncronize all of the addresses */
1029 if (xcast_mode != FM10K_XCAST_MODE_PROMISC) {
1030 __dev_uc_sync(netdev, fm10k_uc_sync, fm10k_uc_unsync);
1031 if (xcast_mode != FM10K_XCAST_MODE_ALLMULTI)
1032 __dev_mc_sync(netdev, fm10k_mc_sync, fm10k_mc_unsync);
1033 }
1034
1035 /* update xcast mode */
1036 hw->mac.ops.update_xcast_mode(hw, glort, xcast_mode);
1037
1038 fm10k_mbx_unlock(interface);
1039
1040 /* record updated xcast mode state */
1041 interface->xcast_mode = xcast_mode;
Alexander Duyck76a540d2014-09-20 19:51:02 -04001042
1043 /* Restore tunnel configuration */
1044 fm10k_restore_vxlan_port(interface);
Alexander Duyck8f5e20d2014-09-20 19:48:20 -04001045}
1046
1047void fm10k_reset_rx_state(struct fm10k_intfc *interface)
1048{
1049 struct net_device *netdev = interface->netdev;
1050 struct fm10k_hw *hw = &interface->hw;
1051
1052 fm10k_mbx_lock(interface);
1053
1054 /* clear the logical port state on lower device */
1055 hw->mac.ops.update_lport_state(hw, interface->glort,
1056 interface->glort_count, false);
1057
1058 fm10k_mbx_unlock(interface);
1059
1060 /* reset flags to default state */
1061 interface->xcast_mode = FM10K_XCAST_MODE_NONE;
1062
1063 /* clear the sync flag since the lport has been dropped */
1064 __dev_uc_unsync(netdev, NULL);
1065 __dev_mc_unsync(netdev, NULL);
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001066}
1067
Alexander Duycke27ef592014-09-20 19:49:03 -04001068/**
1069 * fm10k_get_stats64 - Get System Network Statistics
1070 * @netdev: network interface device structure
1071 * @stats: storage space for 64bit statistics
1072 *
1073 * Returns 64bit statistics, for use in the ndo_get_stats64 callback. This
1074 * function replaces fm10k_get_stats for kernels which support it.
1075 */
1076static struct rtnl_link_stats64 *fm10k_get_stats64(struct net_device *netdev,
1077 struct rtnl_link_stats64 *stats)
1078{
1079 struct fm10k_intfc *interface = netdev_priv(netdev);
1080 struct fm10k_ring *ring;
1081 unsigned int start, i;
1082 u64 bytes, packets;
1083
1084 rcu_read_lock();
1085
1086 for (i = 0; i < interface->num_rx_queues; i++) {
1087 ring = ACCESS_ONCE(interface->rx_ring[i]);
1088
1089 if (!ring)
1090 continue;
1091
1092 do {
1093 start = u64_stats_fetch_begin_irq(&ring->syncp);
1094 packets = ring->stats.packets;
1095 bytes = ring->stats.bytes;
1096 } while (u64_stats_fetch_retry_irq(&ring->syncp, start));
1097
1098 stats->rx_packets += packets;
1099 stats->rx_bytes += bytes;
1100 }
1101
1102 for (i = 0; i < interface->num_tx_queues; i++) {
1103 ring = ACCESS_ONCE(interface->rx_ring[i]);
1104
1105 if (!ring)
1106 continue;
1107
1108 do {
1109 start = u64_stats_fetch_begin_irq(&ring->syncp);
1110 packets = ring->stats.packets;
1111 bytes = ring->stats.bytes;
1112 } while (u64_stats_fetch_retry_irq(&ring->syncp, start));
1113
1114 stats->tx_packets += packets;
1115 stats->tx_bytes += bytes;
1116 }
1117
1118 rcu_read_unlock();
1119
1120 /* following stats updated by fm10k_service_task() */
1121 stats->rx_missed_errors = netdev->stats.rx_missed_errors;
1122
1123 return stats;
1124}
1125
Alexander Duyckaa3ac822014-09-20 19:50:42 -04001126int fm10k_setup_tc(struct net_device *dev, u8 tc)
1127{
1128 struct fm10k_intfc *interface = netdev_priv(dev);
1129
1130 /* Currently only the PF supports priority classes */
1131 if (tc && (interface->hw.mac.type != fm10k_mac_pf))
1132 return -EINVAL;
1133
1134 /* Hardware supports up to 8 traffic classes */
1135 if (tc > 8)
1136 return -EINVAL;
1137
1138 /* Hardware has to reinitialize queues to match packet
1139 * buffer alignment. Unfortunately, the hardware is not
1140 * flexible enough to do this dynamically.
1141 */
1142 if (netif_running(dev))
1143 fm10k_close(dev);
1144
1145 fm10k_mbx_free_irq(interface);
1146
1147 fm10k_clear_queueing_scheme(interface);
1148
1149 /* we expect the prio_tc map to be repopulated later */
1150 netdev_reset_tc(dev);
1151 netdev_set_num_tc(dev, tc);
1152
1153 fm10k_init_queueing_scheme(interface);
1154
1155 fm10k_mbx_request_irq(interface);
1156
1157 if (netif_running(dev))
1158 fm10k_open(dev);
1159
1160 /* flag to indicate SWPRI has yet to be updated */
1161 interface->flags |= FM10K_FLAG_SWPRI_CONFIG;
1162
1163 return 0;
1164}
1165
Alexander Duyck5cd5e2e2014-09-20 19:51:15 -04001166static void fm10k_assign_l2_accel(struct fm10k_intfc *interface,
1167 struct fm10k_l2_accel *l2_accel)
1168{
1169 struct fm10k_ring *ring;
1170 int i;
1171
1172 for (i = 0; i < interface->num_rx_queues; i++) {
1173 ring = interface->rx_ring[i];
1174 rcu_assign_pointer(ring->l2_accel, l2_accel);
1175 }
1176
1177 interface->l2_accel = l2_accel;
1178}
1179
1180static void *fm10k_dfwd_add_station(struct net_device *dev,
1181 struct net_device *sdev)
1182{
1183 struct fm10k_intfc *interface = netdev_priv(dev);
1184 struct fm10k_l2_accel *l2_accel = interface->l2_accel;
1185 struct fm10k_l2_accel *old_l2_accel = NULL;
1186 struct fm10k_dglort_cfg dglort = { 0 };
1187 struct fm10k_hw *hw = &interface->hw;
1188 int size = 0, i;
1189 u16 glort;
1190
1191 /* allocate l2 accel structure if it is not available */
1192 if (!l2_accel) {
1193 /* verify there is enough free GLORTs to support l2_accel */
1194 if (interface->glort_count < 7)
1195 return ERR_PTR(-EBUSY);
1196
1197 size = offsetof(struct fm10k_l2_accel, macvlan[7]);
1198 l2_accel = kzalloc(size, GFP_KERNEL);
1199 if (!l2_accel)
1200 return ERR_PTR(-ENOMEM);
1201
1202 l2_accel->size = 7;
1203 l2_accel->dglort = interface->glort;
1204
1205 /* update pointers */
1206 fm10k_assign_l2_accel(interface, l2_accel);
1207 /* do not expand if we are at our limit */
1208 } else if ((l2_accel->count == FM10K_MAX_STATIONS) ||
1209 (l2_accel->count == (interface->glort_count - 1))) {
1210 return ERR_PTR(-EBUSY);
1211 /* expand if we have hit the size limit */
1212 } else if (l2_accel->count == l2_accel->size) {
1213 old_l2_accel = l2_accel;
1214 size = offsetof(struct fm10k_l2_accel,
1215 macvlan[(l2_accel->size * 2) + 1]);
1216 l2_accel = kzalloc(size, GFP_KERNEL);
1217 if (!l2_accel)
1218 return ERR_PTR(-ENOMEM);
1219
1220 memcpy(l2_accel, old_l2_accel,
1221 offsetof(struct fm10k_l2_accel,
1222 macvlan[old_l2_accel->size]));
1223
1224 l2_accel->size = (old_l2_accel->size * 2) + 1;
1225
1226 /* update pointers */
1227 fm10k_assign_l2_accel(interface, l2_accel);
1228 kfree_rcu(old_l2_accel, rcu);
1229 }
1230
1231 /* add macvlan to accel table, and record GLORT for position */
1232 for (i = 0; i < l2_accel->size; i++) {
1233 if (!l2_accel->macvlan[i])
1234 break;
1235 }
1236
1237 /* record station */
1238 l2_accel->macvlan[i] = sdev;
1239 l2_accel->count++;
1240
1241 /* configure default DGLORT mapping for RSS/DCB */
1242 dglort.idx = fm10k_dglort_pf_rss;
1243 dglort.inner_rss = 1;
1244 dglort.rss_l = fls(interface->ring_feature[RING_F_RSS].mask);
1245 dglort.pc_l = fls(interface->ring_feature[RING_F_QOS].mask);
1246 dglort.glort = interface->glort;
1247 dglort.shared_l = fls(l2_accel->size);
1248 hw->mac.ops.configure_dglort_map(hw, &dglort);
1249
1250 /* Add rules for this specific dglort to the switch */
1251 fm10k_mbx_lock(interface);
1252
1253 glort = l2_accel->dglort + 1 + i;
1254 hw->mac.ops.update_xcast_mode(hw, glort, FM10K_XCAST_MODE_MULTI);
1255 hw->mac.ops.update_uc_addr(hw, glort, sdev->dev_addr, 0, true, 0);
1256
1257 fm10k_mbx_unlock(interface);
1258
1259 return sdev;
1260}
1261
1262static void fm10k_dfwd_del_station(struct net_device *dev, void *priv)
1263{
1264 struct fm10k_intfc *interface = netdev_priv(dev);
1265 struct fm10k_l2_accel *l2_accel = ACCESS_ONCE(interface->l2_accel);
1266 struct fm10k_dglort_cfg dglort = { 0 };
1267 struct fm10k_hw *hw = &interface->hw;
1268 struct net_device *sdev = priv;
1269 int i;
1270 u16 glort;
1271
1272 if (!l2_accel)
1273 return;
1274
1275 /* search table for matching interface */
1276 for (i = 0; i < l2_accel->size; i++) {
1277 if (l2_accel->macvlan[i] == sdev)
1278 break;
1279 }
1280
1281 /* exit if macvlan not found */
1282 if (i == l2_accel->size)
1283 return;
1284
1285 /* Remove any rules specific to this dglort */
1286 fm10k_mbx_lock(interface);
1287
1288 glort = l2_accel->dglort + 1 + i;
1289 hw->mac.ops.update_xcast_mode(hw, glort, FM10K_XCAST_MODE_NONE);
1290 hw->mac.ops.update_uc_addr(hw, glort, sdev->dev_addr, 0, false, 0);
1291
1292 fm10k_mbx_unlock(interface);
1293
1294 /* record removal */
1295 l2_accel->macvlan[i] = NULL;
1296 l2_accel->count--;
1297
1298 /* configure default DGLORT mapping for RSS/DCB */
1299 dglort.idx = fm10k_dglort_pf_rss;
1300 dglort.inner_rss = 1;
1301 dglort.rss_l = fls(interface->ring_feature[RING_F_RSS].mask);
1302 dglort.pc_l = fls(interface->ring_feature[RING_F_QOS].mask);
1303 dglort.glort = interface->glort;
1304 if (l2_accel)
1305 dglort.shared_l = fls(l2_accel->size);
1306 hw->mac.ops.configure_dglort_map(hw, &dglort);
1307
1308 /* If table is empty remove it */
1309 if (l2_accel->count == 0) {
1310 fm10k_assign_l2_accel(interface, NULL);
1311 kfree_rcu(l2_accel, rcu);
1312 }
1313}
1314
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001315static const struct net_device_ops fm10k_netdev_ops = {
Alexander Duyck504c5ea2014-09-20 19:48:29 -04001316 .ndo_open = fm10k_open,
1317 .ndo_stop = fm10k_close,
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001318 .ndo_validate_addr = eth_validate_addr,
1319 .ndo_start_xmit = fm10k_xmit_frame,
1320 .ndo_set_mac_address = fm10k_set_mac,
1321 .ndo_change_mtu = fm10k_change_mtu,
Alexander Duyckb101c962014-09-20 19:50:03 -04001322 .ndo_tx_timeout = fm10k_tx_timeout,
Alexander Duyck8f5e20d2014-09-20 19:48:20 -04001323 .ndo_vlan_rx_add_vid = fm10k_vlan_rx_add_vid,
1324 .ndo_vlan_rx_kill_vid = fm10k_vlan_rx_kill_vid,
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001325 .ndo_set_rx_mode = fm10k_set_rx_mode,
Alexander Duycke27ef592014-09-20 19:49:03 -04001326 .ndo_get_stats64 = fm10k_get_stats64,
Alexander Duyckaa3ac822014-09-20 19:50:42 -04001327 .ndo_setup_tc = fm10k_setup_tc,
Alexander Duyck76a540d2014-09-20 19:51:02 -04001328 .ndo_add_vxlan_port = fm10k_add_vxlan_port,
1329 .ndo_del_vxlan_port = fm10k_del_vxlan_port,
Alexander Duyck5cd5e2e2014-09-20 19:51:15 -04001330 .ndo_dfwd_add_station = fm10k_dfwd_add_station,
1331 .ndo_dfwd_del_station = fm10k_dfwd_del_station,
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001332};
1333
1334#define DEFAULT_DEBUG_LEVEL_SHIFT 3
1335
1336struct net_device *fm10k_alloc_netdev(void)
1337{
1338 struct fm10k_intfc *interface;
1339 struct net_device *dev;
1340
Alexander Duycke27ef592014-09-20 19:49:03 -04001341 dev = alloc_etherdev_mq(sizeof(struct fm10k_intfc), MAX_QUEUES);
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001342 if (!dev)
1343 return NULL;
1344
1345 /* set net device and ethtool ops */
1346 dev->netdev_ops = &fm10k_netdev_ops;
Alexander Duyck82dd0f72014-09-20 19:50:15 -04001347 fm10k_set_ethtool_ops(dev);
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001348
1349 /* configure default debug level */
1350 interface = netdev_priv(dev);
1351 interface->msg_enable = (1 << DEFAULT_DEBUG_LEVEL_SHIFT) - 1;
1352
1353 /* configure default features */
Alexander Duyck76a540d2014-09-20 19:51:02 -04001354 dev->features |= NETIF_F_IP_CSUM |
1355 NETIF_F_IPV6_CSUM |
1356 NETIF_F_SG |
1357 NETIF_F_TSO |
1358 NETIF_F_TSO6 |
1359 NETIF_F_TSO_ECN |
1360 NETIF_F_GSO_UDP_TUNNEL |
1361 NETIF_F_RXHASH |
1362 NETIF_F_RXCSUM;
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001363
1364 /* all features defined to this point should be changeable */
1365 dev->hw_features |= dev->features;
1366
Alexander Duyck5cd5e2e2014-09-20 19:51:15 -04001367 /* allow user to enable L2 forwarding acceleration */
1368 dev->hw_features |= NETIF_F_HW_L2FW_DOFFLOAD;
1369
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001370 /* configure VLAN features */
1371 dev->vlan_features |= dev->features;
1372
1373 /* configure tunnel offloads */
Alexander Duyck76a540d2014-09-20 19:51:02 -04001374 dev->hw_enc_features = NETIF_F_IP_CSUM |
1375 NETIF_F_TSO |
1376 NETIF_F_TSO6 |
1377 NETIF_F_TSO_ECN |
1378 NETIF_F_GSO_UDP_TUNNEL |
1379 NETIF_F_IPV6_CSUM |
1380 NETIF_F_SG;
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001381
Alexander Duyck8f5e20d2014-09-20 19:48:20 -04001382 /* we want to leave these both on as we cannot disable VLAN tag
1383 * insertion or stripping on the hardware since it is contained
1384 * in the FTAG and not in the frame itself.
1385 */
1386 dev->features |= NETIF_F_HW_VLAN_CTAG_TX |
1387 NETIF_F_HW_VLAN_CTAG_RX |
1388 NETIF_F_HW_VLAN_CTAG_FILTER;
1389
1390 dev->priv_flags |= IFF_UNICAST_FLT;
1391
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001392 return dev;
1393}