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Alexander Duyckb3890e32014-09-20 19:46:05 -04001/* Intel Ethernet Switch Host Interface Driver
Jeff Kirsher97c71e32015-04-03 13:26:52 -07002 * Copyright(c) 2013 - 2015 Intel Corporation.
Alexander Duyckb3890e32014-09-20 19:46:05 -04003 *
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 <linux/module.h>
Alexander Duyck19ae1b32014-09-20 19:50:27 -040022#include <linux/aer.h>
Alexander Duyckb3890e32014-09-20 19:46:05 -040023
24#include "fm10k.h"
25
Alexander Duyck0e7b3642014-09-20 19:48:10 -040026static const struct fm10k_info *fm10k_info_tbl[] = {
27 [fm10k_device_pf] = &fm10k_pf_info,
Alexander Duyck5cb8db42014-09-20 19:51:40 -040028 [fm10k_device_vf] = &fm10k_vf_info,
Alexander Duyck0e7b3642014-09-20 19:48:10 -040029};
30
Alexander Duyckb3890e32014-09-20 19:46:05 -040031/**
32 * fm10k_pci_tbl - PCI Device ID Table
33 *
34 * Wildcard entries (PCI_ANY_ID) should come last
35 * Last entry must be all 0s
36 *
37 * { Vendor ID, Device ID, SubVendor ID, SubDevice ID,
38 * Class, Class Mask, private data (not used) }
39 */
40static const struct pci_device_id fm10k_pci_tbl[] = {
Alexander Duyck0e7b3642014-09-20 19:48:10 -040041 { PCI_VDEVICE(INTEL, FM10K_DEV_ID_PF), fm10k_device_pf },
Alexander Duyck5cb8db42014-09-20 19:51:40 -040042 { PCI_VDEVICE(INTEL, FM10K_DEV_ID_VF), fm10k_device_vf },
Alexander Duyckb3890e32014-09-20 19:46:05 -040043 /* required last entry */
44 { 0, }
45};
46MODULE_DEVICE_TABLE(pci, fm10k_pci_tbl);
47
Alexander Duyck04a5aef2014-09-20 19:46:45 -040048u16 fm10k_read_pci_cfg_word(struct fm10k_hw *hw, u32 reg)
49{
50 struct fm10k_intfc *interface = hw->back;
51 u16 value = 0;
52
53 if (FM10K_REMOVED(hw->hw_addr))
54 return ~value;
55
56 pci_read_config_word(interface->pdev, reg, &value);
57 if (value == 0xFFFF)
58 fm10k_write_flush(hw);
59
60 return value;
61}
62
63u32 fm10k_read_reg(struct fm10k_hw *hw, int reg)
64{
65 u32 __iomem *hw_addr = ACCESS_ONCE(hw->hw_addr);
66 u32 value = 0;
67
68 if (FM10K_REMOVED(hw_addr))
69 return ~value;
70
71 value = readl(&hw_addr[reg]);
Alexander Duyck0e7b3642014-09-20 19:48:10 -040072 if (!(~value) && (!reg || !(~readl(hw_addr)))) {
73 struct fm10k_intfc *interface = hw->back;
74 struct net_device *netdev = interface->netdev;
75
Alexander Duyck04a5aef2014-09-20 19:46:45 -040076 hw->hw_addr = NULL;
Alexander Duyck0e7b3642014-09-20 19:48:10 -040077 netif_device_detach(netdev);
78 netdev_err(netdev, "PCIe link lost, device now detached\n");
79 }
Alexander Duyck04a5aef2014-09-20 19:46:45 -040080
81 return value;
82}
83
Alexander Duyck0e7b3642014-09-20 19:48:10 -040084static int fm10k_hw_ready(struct fm10k_intfc *interface)
85{
86 struct fm10k_hw *hw = &interface->hw;
87
88 fm10k_write_flush(hw);
89
90 return FM10K_REMOVED(hw->hw_addr) ? -ENODEV : 0;
91}
92
Alexander Duyckb7d85142014-09-20 19:49:25 -040093void fm10k_service_event_schedule(struct fm10k_intfc *interface)
94{
95 if (!test_bit(__FM10K_SERVICE_DISABLE, &interface->state) &&
96 !test_and_set_bit(__FM10K_SERVICE_SCHED, &interface->state))
Jeff Kirsherb382bb12015-04-03 13:27:05 -070097 queue_work(fm10k_workqueue, &interface->service_task);
Alexander Duyckb7d85142014-09-20 19:49:25 -040098}
99
100static void fm10k_service_event_complete(struct fm10k_intfc *interface)
101{
Bruce Allan838e6102015-12-22 14:55:20 -0800102 WARN_ON(!test_bit(__FM10K_SERVICE_SCHED, &interface->state));
Alexander Duyckb7d85142014-09-20 19:49:25 -0400103
104 /* flush memory to make sure state is correct before next watchog */
105 smp_mb__before_atomic();
106 clear_bit(__FM10K_SERVICE_SCHED, &interface->state);
107}
108
109/**
110 * fm10k_service_timer - Timer Call-back
111 * @data: pointer to interface cast into an unsigned long
112 **/
113static void fm10k_service_timer(unsigned long data)
114{
115 struct fm10k_intfc *interface = (struct fm10k_intfc *)data;
116
117 /* Reset the timer */
118 mod_timer(&interface->service_timer, (HZ * 2) + jiffies);
119
120 fm10k_service_event_schedule(interface);
121}
122
123static void fm10k_detach_subtask(struct fm10k_intfc *interface)
124{
125 struct net_device *netdev = interface->netdev;
126
127 /* do nothing if device is still present or hw_addr is set */
128 if (netif_device_present(netdev) || interface->hw.hw_addr)
129 return;
130
131 rtnl_lock();
132
133 if (netif_running(netdev))
134 dev_close(netdev);
135
136 rtnl_unlock();
137}
138
139static void fm10k_reinit(struct fm10k_intfc *interface)
140{
141 struct net_device *netdev = interface->netdev;
142 struct fm10k_hw *hw = &interface->hw;
143 int err;
144
145 WARN_ON(in_interrupt());
146
147 /* put off any impending NetWatchDogTimeout */
148 netdev->trans_start = jiffies;
149
150 while (test_and_set_bit(__FM10K_RESETTING, &interface->state))
151 usleep_range(1000, 2000);
152
153 rtnl_lock();
154
Alexander Duyck883a9cc2014-09-20 19:52:09 -0400155 fm10k_iov_suspend(interface->pdev);
156
Alexander Duyckb7d85142014-09-20 19:49:25 -0400157 if (netif_running(netdev))
158 fm10k_close(netdev);
159
160 fm10k_mbx_free_irq(interface);
161
Jacob Keller875328e2015-10-16 10:56:59 -0700162 /* free interrupts */
163 fm10k_clear_queueing_scheme(interface);
164
Alexander Duyckb7d85142014-09-20 19:49:25 -0400165 /* delay any future reset requests */
166 interface->last_reset = jiffies + (10 * HZ);
167
168 /* reset and initialize the hardware so it is in a known state */
Jacob Keller1343c652015-10-16 10:56:58 -0700169 err = hw->mac.ops.reset_hw(hw);
170 if (err) {
171 dev_err(&interface->pdev->dev, "reset_hw failed: %d\n", err);
172 goto reinit_err;
173 }
174
175 err = hw->mac.ops.init_hw(hw);
176 if (err) {
Alexander Duyckb7d85142014-09-20 19:49:25 -0400177 dev_err(&interface->pdev->dev, "init_hw failed: %d\n", err);
Jacob Keller1343c652015-10-16 10:56:58 -0700178 goto reinit_err;
179 }
Alexander Duyckb7d85142014-09-20 19:49:25 -0400180
Jacob Keller875328e2015-10-16 10:56:59 -0700181 err = fm10k_init_queueing_scheme(interface);
182 if (err) {
Bruce Allan3d02b3d2015-10-28 17:19:56 -0700183 dev_err(&interface->pdev->dev,
184 "init_queueing_scheme failed: %d\n", err);
Jacob Keller875328e2015-10-16 10:56:59 -0700185 goto reinit_err;
186 }
187
Alexander Duyckb7d85142014-09-20 19:49:25 -0400188 /* reassociate interrupts */
Alexander Duyck09f8a822015-11-10 09:40:30 -0800189 err = fm10k_mbx_request_irq(interface);
190 if (err)
191 goto err_mbx_irq;
192
193 err = fm10k_hw_ready(interface);
194 if (err)
195 goto err_open;
Alexander Duyckb7d85142014-09-20 19:49:25 -0400196
Jacob Kellerbdc7f592015-06-15 15:00:56 -0700197 /* update hardware address for VFs if perm_addr has changed */
198 if (hw->mac.type == fm10k_mac_vf) {
199 if (is_valid_ether_addr(hw->mac.perm_addr)) {
200 ether_addr_copy(hw->mac.addr, hw->mac.perm_addr);
201 ether_addr_copy(netdev->perm_addr, hw->mac.perm_addr);
202 ether_addr_copy(netdev->dev_addr, hw->mac.perm_addr);
203 netdev->addr_assign_type &= ~NET_ADDR_RANDOM;
204 }
205
206 if (hw->mac.vlan_override)
207 netdev->features &= ~NETIF_F_HW_VLAN_CTAG_RX;
208 else
209 netdev->features |= NETIF_F_HW_VLAN_CTAG_RX;
210 }
211
Alexander Duycka211e012014-09-20 19:54:07 -0400212 /* reset clock */
213 fm10k_ts_reset(interface);
214
Alexander Duyck09f8a822015-11-10 09:40:30 -0800215 err = netif_running(netdev) ? fm10k_open(netdev) : 0;
216 if (err)
217 goto err_open;
Alexander Duyckb7d85142014-09-20 19:49:25 -0400218
Alexander Duyck883a9cc2014-09-20 19:52:09 -0400219 fm10k_iov_resume(interface->pdev);
220
Alexander Duyck09f8a822015-11-10 09:40:30 -0800221 rtnl_unlock();
222
223 clear_bit(__FM10K_RESETTING, &interface->state);
224
225 return;
226err_open:
227 fm10k_mbx_free_irq(interface);
228err_mbx_irq:
229 fm10k_clear_queueing_scheme(interface);
Jacob Keller1343c652015-10-16 10:56:58 -0700230reinit_err:
Alexander Duyck09f8a822015-11-10 09:40:30 -0800231 netif_device_detach(netdev);
Jacob Keller1343c652015-10-16 10:56:58 -0700232
Alexander Duyckb7d85142014-09-20 19:49:25 -0400233 rtnl_unlock();
234
235 clear_bit(__FM10K_RESETTING, &interface->state);
236}
237
238static void fm10k_reset_subtask(struct fm10k_intfc *interface)
239{
240 if (!(interface->flags & FM10K_FLAG_RESET_REQUESTED))
241 return;
242
243 interface->flags &= ~FM10K_FLAG_RESET_REQUESTED;
244
245 netdev_err(interface->netdev, "Reset interface\n");
Alexander Duyckb7d85142014-09-20 19:49:25 -0400246
247 fm10k_reinit(interface);
248}
249
250/**
251 * fm10k_configure_swpri_map - Configure Receive SWPRI to PC mapping
252 * @interface: board private structure
253 *
254 * Configure the SWPRI to PC mapping for the port.
255 **/
256static void fm10k_configure_swpri_map(struct fm10k_intfc *interface)
257{
258 struct net_device *netdev = interface->netdev;
259 struct fm10k_hw *hw = &interface->hw;
260 int i;
261
262 /* clear flag indicating update is needed */
263 interface->flags &= ~FM10K_FLAG_SWPRI_CONFIG;
264
265 /* these registers are only available on the PF */
266 if (hw->mac.type != fm10k_mac_pf)
267 return;
268
269 /* configure SWPRI to PC map */
270 for (i = 0; i < FM10K_SWPRI_MAX; i++)
271 fm10k_write_reg(hw, FM10K_SWPRI_MAP(i),
272 netdev_get_prio_tc_map(netdev, i));
273}
274
275/**
276 * fm10k_watchdog_update_host_state - Update the link status based on host.
277 * @interface: board private structure
278 **/
279static void fm10k_watchdog_update_host_state(struct fm10k_intfc *interface)
280{
281 struct fm10k_hw *hw = &interface->hw;
282 s32 err;
283
284 if (test_bit(__FM10K_LINK_DOWN, &interface->state)) {
285 interface->host_ready = false;
286 if (time_is_after_jiffies(interface->link_down_event))
287 return;
288 clear_bit(__FM10K_LINK_DOWN, &interface->state);
289 }
290
291 if (interface->flags & FM10K_FLAG_SWPRI_CONFIG) {
292 if (rtnl_trylock()) {
293 fm10k_configure_swpri_map(interface);
294 rtnl_unlock();
295 }
296 }
297
298 /* lock the mailbox for transmit and receive */
299 fm10k_mbx_lock(interface);
300
301 err = hw->mac.ops.get_host_state(hw, &interface->host_ready);
302 if (err && time_is_before_jiffies(interface->last_reset))
303 interface->flags |= FM10K_FLAG_RESET_REQUESTED;
304
305 /* free the lock */
306 fm10k_mbx_unlock(interface);
307}
308
309/**
310 * fm10k_mbx_subtask - Process upstream and downstream mailboxes
311 * @interface: board private structure
312 *
313 * This function will process both the upstream and downstream mailboxes.
Alexander Duyckb7d85142014-09-20 19:49:25 -0400314 **/
315static void fm10k_mbx_subtask(struct fm10k_intfc *interface)
316{
317 /* process upstream mailbox and update device state */
318 fm10k_watchdog_update_host_state(interface);
Alexander Duyck883a9cc2014-09-20 19:52:09 -0400319
320 /* process downstream mailboxes */
321 fm10k_iov_mbx(interface);
Alexander Duyckb7d85142014-09-20 19:49:25 -0400322}
323
324/**
325 * fm10k_watchdog_host_is_ready - Update netdev status based on host ready
326 * @interface: board private structure
327 **/
328static void fm10k_watchdog_host_is_ready(struct fm10k_intfc *interface)
329{
330 struct net_device *netdev = interface->netdev;
331
332 /* only continue if link state is currently down */
333 if (netif_carrier_ok(netdev))
334 return;
335
336 netif_info(interface, drv, netdev, "NIC Link is up\n");
337
338 netif_carrier_on(netdev);
339 netif_tx_wake_all_queues(netdev);
340}
341
342/**
343 * fm10k_watchdog_host_not_ready - Update netdev status based on host not ready
344 * @interface: board private structure
345 **/
346static void fm10k_watchdog_host_not_ready(struct fm10k_intfc *interface)
347{
348 struct net_device *netdev = interface->netdev;
349
350 /* only continue if link state is currently up */
351 if (!netif_carrier_ok(netdev))
352 return;
353
354 netif_info(interface, drv, netdev, "NIC Link is down\n");
355
356 netif_carrier_off(netdev);
357 netif_tx_stop_all_queues(netdev);
358}
359
360/**
361 * fm10k_update_stats - Update the board statistics counters.
362 * @interface: board private structure
363 **/
364void fm10k_update_stats(struct fm10k_intfc *interface)
365{
366 struct net_device_stats *net_stats = &interface->netdev->stats;
367 struct fm10k_hw *hw = &interface->hw;
Jacob Keller80043f32015-07-01 17:38:36 -0700368 u64 hw_csum_tx_good = 0, hw_csum_rx_good = 0, rx_length_errors = 0;
369 u64 rx_switch_errors = 0, rx_drops = 0, rx_pp_errors = 0;
370 u64 rx_link_errors = 0;
Alexander Duyckb7d85142014-09-20 19:49:25 -0400371 u64 rx_errors = 0, rx_csum_errors = 0, tx_csum_errors = 0;
372 u64 restart_queue = 0, tx_busy = 0, alloc_failed = 0;
373 u64 rx_bytes_nic = 0, rx_pkts_nic = 0, rx_drops_nic = 0;
374 u64 tx_bytes_nic = 0, tx_pkts_nic = 0;
375 u64 bytes, pkts;
376 int i;
377
378 /* do not allow stats update via service task for next second */
379 interface->next_stats_update = jiffies + HZ;
380
381 /* gather some stats to the interface struct that are per queue */
382 for (bytes = 0, pkts = 0, i = 0; i < interface->num_tx_queues; i++) {
383 struct fm10k_ring *tx_ring = interface->tx_ring[i];
384
385 restart_queue += tx_ring->tx_stats.restart_queue;
386 tx_busy += tx_ring->tx_stats.tx_busy;
387 tx_csum_errors += tx_ring->tx_stats.csum_err;
388 bytes += tx_ring->stats.bytes;
389 pkts += tx_ring->stats.packets;
Jacob Keller80043f32015-07-01 17:38:36 -0700390 hw_csum_tx_good += tx_ring->tx_stats.csum_good;
Alexander Duyckb7d85142014-09-20 19:49:25 -0400391 }
392
393 interface->restart_queue = restart_queue;
394 interface->tx_busy = tx_busy;
395 net_stats->tx_bytes = bytes;
396 net_stats->tx_packets = pkts;
397 interface->tx_csum_errors = tx_csum_errors;
Jacob Keller80043f32015-07-01 17:38:36 -0700398 interface->hw_csum_tx_good = hw_csum_tx_good;
399
Alexander Duyckb7d85142014-09-20 19:49:25 -0400400 /* gather some stats to the interface struct that are per queue */
401 for (bytes = 0, pkts = 0, i = 0; i < interface->num_rx_queues; i++) {
402 struct fm10k_ring *rx_ring = interface->rx_ring[i];
403
404 bytes += rx_ring->stats.bytes;
405 pkts += rx_ring->stats.packets;
406 alloc_failed += rx_ring->rx_stats.alloc_failed;
407 rx_csum_errors += rx_ring->rx_stats.csum_err;
408 rx_errors += rx_ring->rx_stats.errors;
Jacob Keller80043f32015-07-01 17:38:36 -0700409 hw_csum_rx_good += rx_ring->rx_stats.csum_good;
410 rx_switch_errors += rx_ring->rx_stats.switch_errors;
411 rx_drops += rx_ring->rx_stats.drops;
412 rx_pp_errors += rx_ring->rx_stats.pp_errors;
413 rx_link_errors += rx_ring->rx_stats.link_errors;
414 rx_length_errors += rx_ring->rx_stats.length_errors;
Alexander Duyckb7d85142014-09-20 19:49:25 -0400415 }
416
417 net_stats->rx_bytes = bytes;
418 net_stats->rx_packets = pkts;
419 interface->alloc_failed = alloc_failed;
420 interface->rx_csum_errors = rx_csum_errors;
Jacob Keller80043f32015-07-01 17:38:36 -0700421 interface->hw_csum_rx_good = hw_csum_rx_good;
422 interface->rx_switch_errors = rx_switch_errors;
423 interface->rx_drops = rx_drops;
424 interface->rx_pp_errors = rx_pp_errors;
425 interface->rx_link_errors = rx_link_errors;
426 interface->rx_length_errors = rx_length_errors;
Alexander Duyckb7d85142014-09-20 19:49:25 -0400427
428 hw->mac.ops.update_hw_stats(hw, &interface->stats);
429
Jeff Kirsherc0e61782015-04-03 13:26:59 -0700430 for (i = 0; i < hw->mac.max_queues; i++) {
Alexander Duyckb7d85142014-09-20 19:49:25 -0400431 struct fm10k_hw_stats_q *q = &interface->stats.q[i];
432
433 tx_bytes_nic += q->tx_bytes.count;
434 tx_pkts_nic += q->tx_packets.count;
435 rx_bytes_nic += q->rx_bytes.count;
436 rx_pkts_nic += q->rx_packets.count;
437 rx_drops_nic += q->rx_drops.count;
438 }
439
440 interface->tx_bytes_nic = tx_bytes_nic;
441 interface->tx_packets_nic = tx_pkts_nic;
442 interface->rx_bytes_nic = rx_bytes_nic;
443 interface->rx_packets_nic = rx_pkts_nic;
444 interface->rx_drops_nic = rx_drops_nic;
445
446 /* Fill out the OS statistics structure */
Jeff Kirsher97c71e32015-04-03 13:26:52 -0700447 net_stats->rx_errors = rx_errors;
Alexander Duyckb7d85142014-09-20 19:49:25 -0400448 net_stats->rx_dropped = interface->stats.nodesc_drop.count;
449}
450
451/**
452 * fm10k_watchdog_flush_tx - flush queues on host not ready
453 * @interface - pointer to the device interface structure
454 **/
455static void fm10k_watchdog_flush_tx(struct fm10k_intfc *interface)
456{
457 int some_tx_pending = 0;
458 int i;
459
460 /* nothing to do if carrier is up */
461 if (netif_carrier_ok(interface->netdev))
462 return;
463
464 for (i = 0; i < interface->num_tx_queues; i++) {
465 struct fm10k_ring *tx_ring = interface->tx_ring[i];
466
467 if (tx_ring->next_to_use != tx_ring->next_to_clean) {
468 some_tx_pending = 1;
469 break;
470 }
471 }
472
473 /* We've lost link, so the controller stops DMA, but we've got
474 * queued Tx work that's never going to get done, so reset
475 * controller to flush Tx.
476 */
477 if (some_tx_pending)
478 interface->flags |= FM10K_FLAG_RESET_REQUESTED;
479}
480
481/**
482 * fm10k_watchdog_subtask - check and bring link up
483 * @interface - pointer to the device interface structure
484 **/
485static void fm10k_watchdog_subtask(struct fm10k_intfc *interface)
486{
487 /* if interface is down do nothing */
488 if (test_bit(__FM10K_DOWN, &interface->state) ||
489 test_bit(__FM10K_RESETTING, &interface->state))
490 return;
491
492 if (interface->host_ready)
493 fm10k_watchdog_host_is_ready(interface);
494 else
495 fm10k_watchdog_host_not_ready(interface);
496
497 /* update stats only once every second */
498 if (time_is_before_jiffies(interface->next_stats_update))
499 fm10k_update_stats(interface);
500
501 /* flush any uncompleted work */
502 fm10k_watchdog_flush_tx(interface);
503}
504
505/**
506 * fm10k_check_hang_subtask - check for hung queues and dropped interrupts
507 * @interface - pointer to the device interface structure
508 *
509 * This function serves two purposes. First it strobes the interrupt lines
510 * in order to make certain interrupts are occurring. Secondly it sets the
511 * bits needed to check for TX hangs. As a result we should immediately
512 * determine if a hang has occurred.
513 */
514static void fm10k_check_hang_subtask(struct fm10k_intfc *interface)
515{
516 int i;
517
518 /* If we're down or resetting, just bail */
519 if (test_bit(__FM10K_DOWN, &interface->state) ||
520 test_bit(__FM10K_RESETTING, &interface->state))
521 return;
522
523 /* rate limit tx hang checks to only once every 2 seconds */
524 if (time_is_after_eq_jiffies(interface->next_tx_hang_check))
525 return;
526 interface->next_tx_hang_check = jiffies + (2 * HZ);
527
528 if (netif_carrier_ok(interface->netdev)) {
529 /* Force detection of hung controller */
530 for (i = 0; i < interface->num_tx_queues; i++)
531 set_check_for_tx_hang(interface->tx_ring[i]);
532
533 /* Rearm all in-use q_vectors for immediate firing */
534 for (i = 0; i < interface->num_q_vectors; i++) {
535 struct fm10k_q_vector *qv = interface->q_vector[i];
536
537 if (!qv->tx.count && !qv->rx.count)
538 continue;
539 writel(FM10K_ITR_ENABLE | FM10K_ITR_PENDING2, qv->itr);
540 }
541 }
542}
543
544/**
545 * fm10k_service_task - manages and runs subtasks
546 * @work: pointer to work_struct containing our data
547 **/
548static void fm10k_service_task(struct work_struct *work)
549{
550 struct fm10k_intfc *interface;
551
552 interface = container_of(work, struct fm10k_intfc, service_task);
553
Jacob Keller84276722015-06-15 15:00:52 -0700554 /* tasks run even when interface is down */
Alexander Duyckb7d85142014-09-20 19:49:25 -0400555 fm10k_mbx_subtask(interface);
556 fm10k_detach_subtask(interface);
557 fm10k_reset_subtask(interface);
558
559 /* tasks only run when interface is up */
560 fm10k_watchdog_subtask(interface);
561 fm10k_check_hang_subtask(interface);
Alexander Duycka211e012014-09-20 19:54:07 -0400562 fm10k_ts_tx_subtask(interface);
Alexander Duyckb7d85142014-09-20 19:49:25 -0400563
564 /* release lock on service events to allow scheduling next event */
565 fm10k_service_event_complete(interface);
566}
567
Alexander Duyck3abaae42014-09-20 19:49:43 -0400568/**
569 * fm10k_configure_tx_ring - Configure Tx ring after Reset
570 * @interface: board private structure
571 * @ring: structure containing ring specific data
572 *
573 * Configure the Tx descriptor ring after a reset.
574 **/
575static void fm10k_configure_tx_ring(struct fm10k_intfc *interface,
576 struct fm10k_ring *ring)
577{
578 struct fm10k_hw *hw = &interface->hw;
579 u64 tdba = ring->dma;
580 u32 size = ring->count * sizeof(struct fm10k_tx_desc);
581 u32 txint = FM10K_INT_MAP_DISABLE;
Bruce Allanfcdb0a92015-12-22 13:43:49 -0800582 u32 txdctl = BIT(FM10K_TXDCTL_MAX_TIME_SHIFT) | FM10K_TXDCTL_ENABLE;
Alexander Duyck3abaae42014-09-20 19:49:43 -0400583 u8 reg_idx = ring->reg_idx;
584
585 /* disable queue to avoid issues while updating state */
586 fm10k_write_reg(hw, FM10K_TXDCTL(reg_idx), 0);
587 fm10k_write_flush(hw);
588
589 /* possible poll here to verify ring resources have been cleaned */
590
591 /* set location and size for descriptor ring */
592 fm10k_write_reg(hw, FM10K_TDBAL(reg_idx), tdba & DMA_BIT_MASK(32));
593 fm10k_write_reg(hw, FM10K_TDBAH(reg_idx), tdba >> 32);
594 fm10k_write_reg(hw, FM10K_TDLEN(reg_idx), size);
595
596 /* reset head and tail pointers */
597 fm10k_write_reg(hw, FM10K_TDH(reg_idx), 0);
598 fm10k_write_reg(hw, FM10K_TDT(reg_idx), 0);
599
600 /* store tail pointer */
601 ring->tail = &interface->uc_addr[FM10K_TDT(reg_idx)];
602
Jacob Kellerc7bc9522015-10-16 10:57:10 -0700603 /* reset ntu and ntc to place SW in sync with hardware */
Alexander Duyck3abaae42014-09-20 19:49:43 -0400604 ring->next_to_clean = 0;
605 ring->next_to_use = 0;
606
607 /* Map interrupt */
608 if (ring->q_vector) {
609 txint = ring->q_vector->v_idx + NON_Q_VECTORS(hw);
610 txint |= FM10K_INT_MAP_TIMER0;
611 }
612
613 fm10k_write_reg(hw, FM10K_TXINT(reg_idx), txint);
614
615 /* enable use of FTAG bit in Tx descriptor, register is RO for VF */
616 fm10k_write_reg(hw, FM10K_PFVTCTL(reg_idx),
617 FM10K_PFVTCTL_FTAG_DESC_ENABLE);
618
Jacob Keller504b0fd2015-10-29 13:43:40 -0700619 /* Initialize XPS */
620 if (!test_and_set_bit(__FM10K_TX_XPS_INIT_DONE, &ring->state) &&
621 ring->q_vector)
622 netif_set_xps_queue(ring->netdev,
623 &ring->q_vector->affinity_mask,
624 ring->queue_index);
625
Alexander Duyck3abaae42014-09-20 19:49:43 -0400626 /* enable queue */
627 fm10k_write_reg(hw, FM10K_TXDCTL(reg_idx), txdctl);
628}
629
630/**
631 * fm10k_enable_tx_ring - Verify Tx ring is enabled after configuration
632 * @interface: board private structure
633 * @ring: structure containing ring specific data
634 *
635 * Verify the Tx descriptor ring is ready for transmit.
636 **/
637static void fm10k_enable_tx_ring(struct fm10k_intfc *interface,
638 struct fm10k_ring *ring)
639{
640 struct fm10k_hw *hw = &interface->hw;
641 int wait_loop = 10;
642 u32 txdctl;
643 u8 reg_idx = ring->reg_idx;
644
645 /* if we are already enabled just exit */
646 if (fm10k_read_reg(hw, FM10K_TXDCTL(reg_idx)) & FM10K_TXDCTL_ENABLE)
647 return;
648
649 /* poll to verify queue is enabled */
650 do {
651 usleep_range(1000, 2000);
652 txdctl = fm10k_read_reg(hw, FM10K_TXDCTL(reg_idx));
653 } while (!(txdctl & FM10K_TXDCTL_ENABLE) && --wait_loop);
654 if (!wait_loop)
655 netif_err(interface, drv, interface->netdev,
656 "Could not enable Tx Queue %d\n", reg_idx);
657}
658
659/**
660 * fm10k_configure_tx - Configure Transmit Unit after Reset
661 * @interface: board private structure
662 *
663 * Configure the Tx unit of the MAC after a reset.
664 **/
665static void fm10k_configure_tx(struct fm10k_intfc *interface)
666{
667 int i;
668
669 /* Setup the HW Tx Head and Tail descriptor pointers */
670 for (i = 0; i < interface->num_tx_queues; i++)
671 fm10k_configure_tx_ring(interface, interface->tx_ring[i]);
672
673 /* poll here to verify that Tx rings are now enabled */
674 for (i = 0; i < interface->num_tx_queues; i++)
675 fm10k_enable_tx_ring(interface, interface->tx_ring[i]);
676}
677
678/**
679 * fm10k_configure_rx_ring - Configure Rx ring after Reset
680 * @interface: board private structure
681 * @ring: structure containing ring specific data
682 *
683 * Configure the Rx descriptor ring after a reset.
684 **/
685static void fm10k_configure_rx_ring(struct fm10k_intfc *interface,
686 struct fm10k_ring *ring)
687{
688 u64 rdba = ring->dma;
689 struct fm10k_hw *hw = &interface->hw;
690 u32 size = ring->count * sizeof(union fm10k_rx_desc);
691 u32 rxqctl = FM10K_RXQCTL_ENABLE | FM10K_RXQCTL_PF;
692 u32 rxdctl = FM10K_RXDCTL_WRITE_BACK_MIN_DELAY;
693 u32 srrctl = FM10K_SRRCTL_BUFFER_CHAINING_EN;
694 u32 rxint = FM10K_INT_MAP_DISABLE;
695 u8 rx_pause = interface->rx_pause;
696 u8 reg_idx = ring->reg_idx;
697
698 /* disable queue to avoid issues while updating state */
699 fm10k_write_reg(hw, FM10K_RXQCTL(reg_idx), 0);
700 fm10k_write_flush(hw);
701
702 /* possible poll here to verify ring resources have been cleaned */
703
704 /* set location and size for descriptor ring */
705 fm10k_write_reg(hw, FM10K_RDBAL(reg_idx), rdba & DMA_BIT_MASK(32));
706 fm10k_write_reg(hw, FM10K_RDBAH(reg_idx), rdba >> 32);
707 fm10k_write_reg(hw, FM10K_RDLEN(reg_idx), size);
708
709 /* reset head and tail pointers */
710 fm10k_write_reg(hw, FM10K_RDH(reg_idx), 0);
711 fm10k_write_reg(hw, FM10K_RDT(reg_idx), 0);
712
713 /* store tail pointer */
714 ring->tail = &interface->uc_addr[FM10K_RDT(reg_idx)];
715
Jacob Kellerc7bc9522015-10-16 10:57:10 -0700716 /* reset ntu and ntc to place SW in sync with hardware */
Alexander Duyck3abaae42014-09-20 19:49:43 -0400717 ring->next_to_clean = 0;
718 ring->next_to_use = 0;
719 ring->next_to_alloc = 0;
720
721 /* Configure the Rx buffer size for one buff without split */
722 srrctl |= FM10K_RX_BUFSZ >> FM10K_SRRCTL_BSIZEPKT_SHIFT;
723
Matthew Vickeca32042015-01-31 02:23:05 +0000724 /* Configure the Rx ring to suppress loopback packets */
Alexander Duyck3abaae42014-09-20 19:49:43 -0400725 srrctl |= FM10K_SRRCTL_LOOPBACK_SUPPRESS;
726 fm10k_write_reg(hw, FM10K_SRRCTL(reg_idx), srrctl);
727
728 /* Enable drop on empty */
Alexander Duyck9f801ab2014-09-20 19:53:08 -0400729#ifdef CONFIG_DCB
Alexander Duyck3abaae42014-09-20 19:49:43 -0400730 if (interface->pfc_en)
731 rx_pause = interface->pfc_en;
732#endif
Bruce Allanfcdb0a92015-12-22 13:43:49 -0800733 if (!(rx_pause & BIT(ring->qos_pc)))
Alexander Duyck3abaae42014-09-20 19:49:43 -0400734 rxdctl |= FM10K_RXDCTL_DROP_ON_EMPTY;
735
736 fm10k_write_reg(hw, FM10K_RXDCTL(reg_idx), rxdctl);
737
738 /* assign default VLAN to queue */
739 ring->vid = hw->mac.default_vid;
740
Jacob Kelleraa502b42015-11-02 12:10:22 -0800741 /* if we have an active VLAN, disable default VLAN ID */
Jacob Kellere71c9312015-06-24 13:34:46 -0700742 if (test_bit(hw->mac.default_vid, interface->active_vlans))
743 ring->vid |= FM10K_VLAN_CLEAR;
744
Alexander Duyck3abaae42014-09-20 19:49:43 -0400745 /* Map interrupt */
746 if (ring->q_vector) {
747 rxint = ring->q_vector->v_idx + NON_Q_VECTORS(hw);
748 rxint |= FM10K_INT_MAP_TIMER1;
749 }
750
751 fm10k_write_reg(hw, FM10K_RXINT(reg_idx), rxint);
752
753 /* enable queue */
754 fm10k_write_reg(hw, FM10K_RXQCTL(reg_idx), rxqctl);
Alexander Duyckb101c962014-09-20 19:50:03 -0400755
756 /* place buffers on ring for receive data */
757 fm10k_alloc_rx_buffers(ring, fm10k_desc_unused(ring));
Alexander Duyck3abaae42014-09-20 19:49:43 -0400758}
759
760/**
761 * fm10k_update_rx_drop_en - Configures the drop enable bits for Rx rings
762 * @interface: board private structure
763 *
764 * Configure the drop enable bits for the Rx rings.
765 **/
766void fm10k_update_rx_drop_en(struct fm10k_intfc *interface)
767{
768 struct fm10k_hw *hw = &interface->hw;
769 u8 rx_pause = interface->rx_pause;
770 int i;
771
Alexander Duyck9f801ab2014-09-20 19:53:08 -0400772#ifdef CONFIG_DCB
Alexander Duyck3abaae42014-09-20 19:49:43 -0400773 if (interface->pfc_en)
774 rx_pause = interface->pfc_en;
775
776#endif
777 for (i = 0; i < interface->num_rx_queues; i++) {
778 struct fm10k_ring *ring = interface->rx_ring[i];
779 u32 rxdctl = FM10K_RXDCTL_WRITE_BACK_MIN_DELAY;
780 u8 reg_idx = ring->reg_idx;
781
Bruce Allanfcdb0a92015-12-22 13:43:49 -0800782 if (!(rx_pause & BIT(ring->qos_pc)))
Alexander Duyck3abaae42014-09-20 19:49:43 -0400783 rxdctl |= FM10K_RXDCTL_DROP_ON_EMPTY;
784
785 fm10k_write_reg(hw, FM10K_RXDCTL(reg_idx), rxdctl);
786 }
787}
788
789/**
790 * fm10k_configure_dglort - Configure Receive DGLORT after reset
791 * @interface: board private structure
792 *
793 * Configure the DGLORT description and RSS tables.
794 **/
795static void fm10k_configure_dglort(struct fm10k_intfc *interface)
796{
797 struct fm10k_dglort_cfg dglort = { 0 };
798 struct fm10k_hw *hw = &interface->hw;
799 int i;
800 u32 mrqc;
801
802 /* Fill out hash function seeds */
803 for (i = 0; i < FM10K_RSSRK_SIZE; i++)
804 fm10k_write_reg(hw, FM10K_RSSRK(0, i), interface->rssrk[i]);
805
806 /* Write RETA table to hardware */
807 for (i = 0; i < FM10K_RETA_SIZE; i++)
808 fm10k_write_reg(hw, FM10K_RETA(0, i), interface->reta[i]);
809
810 /* Generate RSS hash based on packet types, TCP/UDP
811 * port numbers and/or IPv4/v6 src and dst addresses
812 */
813 mrqc = FM10K_MRQC_IPV4 |
814 FM10K_MRQC_TCP_IPV4 |
815 FM10K_MRQC_IPV6 |
816 FM10K_MRQC_TCP_IPV6;
817
818 if (interface->flags & FM10K_FLAG_RSS_FIELD_IPV4_UDP)
819 mrqc |= FM10K_MRQC_UDP_IPV4;
820 if (interface->flags & FM10K_FLAG_RSS_FIELD_IPV6_UDP)
821 mrqc |= FM10K_MRQC_UDP_IPV6;
822
823 fm10k_write_reg(hw, FM10K_MRQC(0), mrqc);
824
825 /* configure default DGLORT mapping for RSS/DCB */
826 dglort.inner_rss = 1;
827 dglort.rss_l = fls(interface->ring_feature[RING_F_RSS].mask);
828 dglort.pc_l = fls(interface->ring_feature[RING_F_QOS].mask);
829 hw->mac.ops.configure_dglort_map(hw, &dglort);
830
831 /* assign GLORT per queue for queue mapped testing */
832 if (interface->glort_count > 64) {
833 memset(&dglort, 0, sizeof(dglort));
834 dglort.inner_rss = 1;
835 dglort.glort = interface->glort + 64;
836 dglort.idx = fm10k_dglort_pf_queue;
837 dglort.queue_l = fls(interface->num_rx_queues - 1);
838 hw->mac.ops.configure_dglort_map(hw, &dglort);
839 }
840
841 /* assign glort value for RSS/DCB specific to this interface */
842 memset(&dglort, 0, sizeof(dglort));
843 dglort.inner_rss = 1;
844 dglort.glort = interface->glort;
845 dglort.rss_l = fls(interface->ring_feature[RING_F_RSS].mask);
846 dglort.pc_l = fls(interface->ring_feature[RING_F_QOS].mask);
847 /* configure DGLORT mapping for RSS/DCB */
848 dglort.idx = fm10k_dglort_pf_rss;
Alexander Duyck5cd5e2e2014-09-20 19:51:15 -0400849 if (interface->l2_accel)
850 dglort.shared_l = fls(interface->l2_accel->size);
Alexander Duyck3abaae42014-09-20 19:49:43 -0400851 hw->mac.ops.configure_dglort_map(hw, &dglort);
852}
853
854/**
855 * fm10k_configure_rx - Configure Receive Unit after Reset
856 * @interface: board private structure
857 *
858 * Configure the Rx unit of the MAC after a reset.
859 **/
860static void fm10k_configure_rx(struct fm10k_intfc *interface)
861{
862 int i;
863
864 /* Configure SWPRI to PC map */
865 fm10k_configure_swpri_map(interface);
866
867 /* Configure RSS and DGLORT map */
868 fm10k_configure_dglort(interface);
869
870 /* Setup the HW Rx Head and Tail descriptor pointers */
871 for (i = 0; i < interface->num_rx_queues; i++)
872 fm10k_configure_rx_ring(interface, interface->rx_ring[i]);
873
874 /* possible poll here to verify that Rx rings are now enabled */
875}
876
Alexander Duyck18283ca2014-09-20 19:48:51 -0400877static void fm10k_napi_enable_all(struct fm10k_intfc *interface)
878{
879 struct fm10k_q_vector *q_vector;
880 int q_idx;
881
882 for (q_idx = 0; q_idx < interface->num_q_vectors; q_idx++) {
883 q_vector = interface->q_vector[q_idx];
884 napi_enable(&q_vector->napi);
885 }
886}
887
Jeff Kirsherde445192015-04-03 13:26:56 -0700888static irqreturn_t fm10k_msix_clean_rings(int __always_unused irq, void *data)
Alexander Duyck18283ca2014-09-20 19:48:51 -0400889{
890 struct fm10k_q_vector *q_vector = data;
891
892 if (q_vector->rx.count || q_vector->tx.count)
Alexander Duyckde125aa2015-09-29 15:19:56 -0700893 napi_schedule_irqoff(&q_vector->napi);
Alexander Duyck18283ca2014-09-20 19:48:51 -0400894
895 return IRQ_HANDLED;
896}
897
Jeff Kirsherde445192015-04-03 13:26:56 -0700898static irqreturn_t fm10k_msix_mbx_vf(int __always_unused irq, void *data)
Alexander Duyck5cb8db42014-09-20 19:51:40 -0400899{
900 struct fm10k_intfc *interface = data;
901 struct fm10k_hw *hw = &interface->hw;
902 struct fm10k_mbx_info *mbx = &hw->mbx;
903
904 /* re-enable mailbox interrupt and indicate 20us delay */
905 fm10k_write_reg(hw, FM10K_VFITR(FM10K_MBX_VECTOR),
Bruce Allan1aab1442015-12-22 13:43:44 -0800906 (FM10K_MBX_INT_DELAY >> hw->mac.itr_scale) |
907 FM10K_ITR_ENABLE);
Alexander Duyck5cb8db42014-09-20 19:51:40 -0400908
909 /* service upstream mailbox */
910 if (fm10k_mbx_trylock(interface)) {
911 mbx->ops.process(hw, mbx);
912 fm10k_mbx_unlock(interface);
913 }
914
Bruce Allanf355bb52015-12-08 15:51:11 -0800915 hw->mac.get_host_state = true;
Alexander Duyck5cb8db42014-09-20 19:51:40 -0400916 fm10k_service_event_schedule(interface);
917
918 return IRQ_HANDLED;
919}
920
Jeff Kirsher8b4a98c2015-04-10 19:14:31 -0700921#ifdef CONFIG_NET_POLL_CONTROLLER
922/**
923 * fm10k_netpoll - A Polling 'interrupt' handler
924 * @netdev: network interface device structure
925 *
926 * This is used by netconsole to send skbs without having to re-enable
927 * interrupts. It's not called while the normal interrupt routine is executing.
928 **/
929void fm10k_netpoll(struct net_device *netdev)
930{
931 struct fm10k_intfc *interface = netdev_priv(netdev);
932 int i;
933
934 /* if interface is down do nothing */
935 if (test_bit(__FM10K_DOWN, &interface->state))
936 return;
937
938 for (i = 0; i < interface->num_q_vectors; i++)
939 fm10k_msix_clean_rings(0, interface->q_vector[i]);
940}
941
942#endif
Alexander Duyck18283ca2014-09-20 19:48:51 -0400943#define FM10K_ERR_MSG(type) case (type): error = #type; break
Jacob Keller95f4f8d2015-06-24 13:34:48 -0700944static void fm10k_handle_fault(struct fm10k_intfc *interface, int type,
Bruce Allana4fcad62015-10-28 17:19:40 -0700945 struct fm10k_fault *fault)
Alexander Duyck18283ca2014-09-20 19:48:51 -0400946{
947 struct pci_dev *pdev = interface->pdev;
Jacob Keller95f4f8d2015-06-24 13:34:48 -0700948 struct fm10k_hw *hw = &interface->hw;
949 struct fm10k_iov_data *iov_data = interface->iov_data;
Alexander Duyck18283ca2014-09-20 19:48:51 -0400950 char *error;
951
952 switch (type) {
953 case FM10K_PCA_FAULT:
954 switch (fault->type) {
955 default:
956 error = "Unknown PCA error";
957 break;
958 FM10K_ERR_MSG(PCA_NO_FAULT);
959 FM10K_ERR_MSG(PCA_UNMAPPED_ADDR);
960 FM10K_ERR_MSG(PCA_BAD_QACCESS_PF);
961 FM10K_ERR_MSG(PCA_BAD_QACCESS_VF);
962 FM10K_ERR_MSG(PCA_MALICIOUS_REQ);
963 FM10K_ERR_MSG(PCA_POISONED_TLP);
964 FM10K_ERR_MSG(PCA_TLP_ABORT);
965 }
966 break;
967 case FM10K_THI_FAULT:
968 switch (fault->type) {
969 default:
970 error = "Unknown THI error";
971 break;
972 FM10K_ERR_MSG(THI_NO_FAULT);
973 FM10K_ERR_MSG(THI_MAL_DIS_Q_FAULT);
974 }
975 break;
976 case FM10K_FUM_FAULT:
977 switch (fault->type) {
978 default:
979 error = "Unknown FUM error";
980 break;
981 FM10K_ERR_MSG(FUM_NO_FAULT);
982 FM10K_ERR_MSG(FUM_UNMAPPED_ADDR);
983 FM10K_ERR_MSG(FUM_BAD_VF_QACCESS);
984 FM10K_ERR_MSG(FUM_ADD_DECODE_ERR);
985 FM10K_ERR_MSG(FUM_RO_ERROR);
986 FM10K_ERR_MSG(FUM_QPRC_CRC_ERROR);
987 FM10K_ERR_MSG(FUM_CSR_TIMEOUT);
988 FM10K_ERR_MSG(FUM_INVALID_TYPE);
989 FM10K_ERR_MSG(FUM_INVALID_LENGTH);
990 FM10K_ERR_MSG(FUM_INVALID_BE);
991 FM10K_ERR_MSG(FUM_INVALID_ALIGN);
992 }
993 break;
994 default:
995 error = "Undocumented fault";
996 break;
997 }
998
999 dev_warn(&pdev->dev,
1000 "%s Address: 0x%llx SpecInfo: 0x%x Func: %02x.%0x\n",
1001 error, fault->address, fault->specinfo,
1002 PCI_SLOT(fault->func), PCI_FUNC(fault->func));
Jacob Keller95f4f8d2015-06-24 13:34:48 -07001003
1004 /* For VF faults, clear out the respective LPORT, reset the queue
1005 * resources, and then reconnect to the mailbox. This allows the
1006 * VF in question to resume behavior. For transient faults that are
1007 * the result of non-malicious behavior this will log the fault and
1008 * allow the VF to resume functionality. Obviously for malicious VFs
1009 * they will be able to attempt malicious behavior again. In this
1010 * case, the system administrator will need to step in and manually
1011 * remove or disable the VF in question.
1012 */
1013 if (fault->func && iov_data) {
1014 int vf = fault->func - 1;
1015 struct fm10k_vf_info *vf_info = &iov_data->vf_info[vf];
1016
1017 hw->iov.ops.reset_lport(hw, vf_info);
1018 hw->iov.ops.reset_resources(hw, vf_info);
1019
1020 /* reset_lport disables the VF, so re-enable it */
1021 hw->iov.ops.set_lport(hw, vf_info, vf,
1022 FM10K_VF_FLAG_MULTI_CAPABLE);
1023
1024 /* reset_resources will disconnect from the mbx */
1025 vf_info->mbx.ops.connect(hw, &vf_info->mbx);
1026 }
Alexander Duyck18283ca2014-09-20 19:48:51 -04001027}
1028
1029static void fm10k_report_fault(struct fm10k_intfc *interface, u32 eicr)
1030{
1031 struct fm10k_hw *hw = &interface->hw;
1032 struct fm10k_fault fault = { 0 };
1033 int type, err;
1034
1035 for (eicr &= FM10K_EICR_FAULT_MASK, type = FM10K_PCA_FAULT;
1036 eicr;
1037 eicr >>= 1, type += FM10K_FAULT_SIZE) {
1038 /* only check if there is an error reported */
1039 if (!(eicr & 0x1))
1040 continue;
1041
1042 /* retrieve fault info */
1043 err = hw->mac.ops.get_fault(hw, type, &fault);
1044 if (err) {
1045 dev_err(&interface->pdev->dev,
1046 "error reading fault\n");
1047 continue;
1048 }
1049
Jacob Keller95f4f8d2015-06-24 13:34:48 -07001050 fm10k_handle_fault(interface, type, &fault);
Alexander Duyck18283ca2014-09-20 19:48:51 -04001051 }
1052}
1053
1054static void fm10k_reset_drop_on_empty(struct fm10k_intfc *interface, u32 eicr)
1055{
1056 struct fm10k_hw *hw = &interface->hw;
1057 const u32 rxdctl = FM10K_RXDCTL_WRITE_BACK_MIN_DELAY;
1058 u32 maxholdq;
1059 int q;
1060
1061 if (!(eicr & FM10K_EICR_MAXHOLDTIME))
1062 return;
1063
1064 maxholdq = fm10k_read_reg(hw, FM10K_MAXHOLDQ(7));
1065 if (maxholdq)
1066 fm10k_write_reg(hw, FM10K_MAXHOLDQ(7), maxholdq);
1067 for (q = 255;;) {
Bruce Allanfcdb0a92015-12-22 13:43:49 -08001068 if (maxholdq & BIT(31)) {
Alexander Duyck18283ca2014-09-20 19:48:51 -04001069 if (q < FM10K_MAX_QUEUES_PF) {
1070 interface->rx_overrun_pf++;
1071 fm10k_write_reg(hw, FM10K_RXDCTL(q), rxdctl);
1072 } else {
1073 interface->rx_overrun_vf++;
1074 }
1075 }
1076
1077 maxholdq *= 2;
1078 if (!maxholdq)
1079 q &= ~(32 - 1);
1080
1081 if (!q)
1082 break;
1083
1084 if (q-- % 32)
1085 continue;
1086
1087 maxholdq = fm10k_read_reg(hw, FM10K_MAXHOLDQ(q / 32));
1088 if (maxholdq)
1089 fm10k_write_reg(hw, FM10K_MAXHOLDQ(q / 32), maxholdq);
1090 }
1091}
1092
Jeff Kirsherde445192015-04-03 13:26:56 -07001093static irqreturn_t fm10k_msix_mbx_pf(int __always_unused irq, void *data)
Alexander Duyck18283ca2014-09-20 19:48:51 -04001094{
1095 struct fm10k_intfc *interface = data;
1096 struct fm10k_hw *hw = &interface->hw;
1097 struct fm10k_mbx_info *mbx = &hw->mbx;
1098 u32 eicr;
1099
1100 /* unmask any set bits related to this interrupt */
1101 eicr = fm10k_read_reg(hw, FM10K_EICR);
1102 fm10k_write_reg(hw, FM10K_EICR, eicr & (FM10K_EICR_MAILBOX |
1103 FM10K_EICR_SWITCHREADY |
1104 FM10K_EICR_SWITCHNOTREADY));
1105
1106 /* report any faults found to the message log */
1107 fm10k_report_fault(interface, eicr);
1108
1109 /* reset any queues disabled due to receiver overrun */
1110 fm10k_reset_drop_on_empty(interface, eicr);
1111
1112 /* service mailboxes */
1113 if (fm10k_mbx_trylock(interface)) {
1114 mbx->ops.process(hw, mbx);
Jeff Kirsher9de15bd2015-04-10 17:20:17 -07001115 /* handle VFLRE events */
Alexander Duyck883a9cc2014-09-20 19:52:09 -04001116 fm10k_iov_event(interface);
Alexander Duyck18283ca2014-09-20 19:48:51 -04001117 fm10k_mbx_unlock(interface);
1118 }
1119
Alexander Duyckb7d85142014-09-20 19:49:25 -04001120 /* if switch toggled state we should reset GLORTs */
1121 if (eicr & FM10K_EICR_SWITCHNOTREADY) {
1122 /* force link down for at least 4 seconds */
1123 interface->link_down_event = jiffies + (4 * HZ);
1124 set_bit(__FM10K_LINK_DOWN, &interface->state);
1125
1126 /* reset dglort_map back to no config */
1127 hw->mac.dglort_map = FM10K_DGLORTMAP_NONE;
1128 }
1129
1130 /* we should validate host state after interrupt event */
Bruce Allanf355bb52015-12-08 15:51:11 -08001131 hw->mac.get_host_state = true;
Jeff Kirsher9de15bd2015-04-10 17:20:17 -07001132
1133 /* validate host state, and handle VF mailboxes in the service task */
Alexander Duyckb7d85142014-09-20 19:49:25 -04001134 fm10k_service_event_schedule(interface);
1135
Alexander Duyck18283ca2014-09-20 19:48:51 -04001136 /* re-enable mailbox interrupt and indicate 20us delay */
1137 fm10k_write_reg(hw, FM10K_ITR(FM10K_MBX_VECTOR),
Bruce Allan1aab1442015-12-22 13:43:44 -08001138 (FM10K_MBX_INT_DELAY >> hw->mac.itr_scale) |
1139 FM10K_ITR_ENABLE);
Alexander Duyck18283ca2014-09-20 19:48:51 -04001140
1141 return IRQ_HANDLED;
1142}
1143
1144void fm10k_mbx_free_irq(struct fm10k_intfc *interface)
1145{
Alexander Duyck18283ca2014-09-20 19:48:51 -04001146 struct fm10k_hw *hw = &interface->hw;
Jacob Kellerde66c612016-02-04 10:47:54 -08001147 struct msix_entry *entry;
Alexander Duyck18283ca2014-09-20 19:48:51 -04001148 int itr_reg;
1149
Alexander Duycke00e23b2015-10-27 16:59:18 -07001150 /* no mailbox IRQ to free if MSI-X is not enabled */
1151 if (!interface->msix_entries)
1152 return;
1153
Jacob Kellerde66c612016-02-04 10:47:54 -08001154 entry = &interface->msix_entries[FM10K_MBX_VECTOR];
1155
Alexander Duyck18283ca2014-09-20 19:48:51 -04001156 /* disconnect the mailbox */
1157 hw->mbx.ops.disconnect(hw, &hw->mbx);
1158
1159 /* disable Mailbox cause */
1160 if (hw->mac.type == fm10k_mac_pf) {
1161 fm10k_write_reg(hw, FM10K_EIMR,
1162 FM10K_EIMR_DISABLE(PCA_FAULT) |
1163 FM10K_EIMR_DISABLE(FUM_FAULT) |
1164 FM10K_EIMR_DISABLE(MAILBOX) |
1165 FM10K_EIMR_DISABLE(SWITCHREADY) |
1166 FM10K_EIMR_DISABLE(SWITCHNOTREADY) |
1167 FM10K_EIMR_DISABLE(SRAMERROR) |
1168 FM10K_EIMR_DISABLE(VFLR) |
1169 FM10K_EIMR_DISABLE(MAXHOLDTIME));
1170 itr_reg = FM10K_ITR(FM10K_MBX_VECTOR);
Alexander Duyck5cb8db42014-09-20 19:51:40 -04001171 } else {
1172 itr_reg = FM10K_VFITR(FM10K_MBX_VECTOR);
Alexander Duyck18283ca2014-09-20 19:48:51 -04001173 }
1174
1175 fm10k_write_reg(hw, itr_reg, FM10K_ITR_MASK_SET);
1176
1177 free_irq(entry->vector, interface);
1178}
1179
Alexander Duyck5cb8db42014-09-20 19:51:40 -04001180static s32 fm10k_mbx_mac_addr(struct fm10k_hw *hw, u32 **results,
1181 struct fm10k_mbx_info *mbx)
1182{
1183 bool vlan_override = hw->mac.vlan_override;
1184 u16 default_vid = hw->mac.default_vid;
1185 struct fm10k_intfc *interface;
1186 s32 err;
1187
1188 err = fm10k_msg_mac_vlan_vf(hw, results, mbx);
1189 if (err)
1190 return err;
1191
1192 interface = container_of(hw, struct fm10k_intfc, hw);
1193
1194 /* MAC was changed so we need reset */
1195 if (is_valid_ether_addr(hw->mac.perm_addr) &&
Jacob Keller6186ddf2015-11-16 15:33:34 -08001196 !ether_addr_equal(hw->mac.perm_addr, hw->mac.addr))
Alexander Duyck5cb8db42014-09-20 19:51:40 -04001197 interface->flags |= FM10K_FLAG_RESET_REQUESTED;
1198
1199 /* VLAN override was changed, or default VLAN changed */
1200 if ((vlan_override != hw->mac.vlan_override) ||
1201 (default_vid != hw->mac.default_vid))
1202 interface->flags |= FM10K_FLAG_RESET_REQUESTED;
1203
1204 return 0;
1205}
1206
Alexander Duycka211e012014-09-20 19:54:07 -04001207static s32 fm10k_1588_msg_vf(struct fm10k_hw *hw, u32 **results,
Jeff Kirsherde445192015-04-03 13:26:56 -07001208 struct fm10k_mbx_info __always_unused *mbx)
Alexander Duycka211e012014-09-20 19:54:07 -04001209{
1210 struct fm10k_intfc *interface;
1211 u64 timestamp;
1212 s32 err;
1213
1214 err = fm10k_tlv_attr_get_u64(results[FM10K_1588_MSG_TIMESTAMP],
1215 &timestamp);
1216 if (err)
1217 return err;
1218
1219 interface = container_of(hw, struct fm10k_intfc, hw);
1220
1221 fm10k_ts_tx_hwtstamp(interface, 0, timestamp);
1222
1223 return 0;
1224}
1225
Alexander Duyck18283ca2014-09-20 19:48:51 -04001226/* generic error handler for mailbox issues */
1227static s32 fm10k_mbx_error(struct fm10k_hw *hw, u32 **results,
Jeff Kirsherde445192015-04-03 13:26:56 -07001228 struct fm10k_mbx_info __always_unused *mbx)
Alexander Duyck18283ca2014-09-20 19:48:51 -04001229{
1230 struct fm10k_intfc *interface;
1231 struct pci_dev *pdev;
1232
1233 interface = container_of(hw, struct fm10k_intfc, hw);
1234 pdev = interface->pdev;
1235
1236 dev_err(&pdev->dev, "Unknown message ID %u\n",
1237 **results & FM10K_TLV_ID_MASK);
1238
1239 return 0;
1240}
1241
Alexander Duyck5cb8db42014-09-20 19:51:40 -04001242static const struct fm10k_msg_data vf_mbx_data[] = {
1243 FM10K_TLV_MSG_TEST_HANDLER(fm10k_tlv_msg_test),
1244 FM10K_VF_MSG_MAC_VLAN_HANDLER(fm10k_mbx_mac_addr),
1245 FM10K_VF_MSG_LPORT_STATE_HANDLER(fm10k_msg_lport_state_vf),
Alexander Duycka211e012014-09-20 19:54:07 -04001246 FM10K_VF_MSG_1588_HANDLER(fm10k_1588_msg_vf),
Alexander Duyck5cb8db42014-09-20 19:51:40 -04001247 FM10K_TLV_MSG_ERROR_HANDLER(fm10k_mbx_error),
1248};
1249
1250static int fm10k_mbx_request_irq_vf(struct fm10k_intfc *interface)
1251{
1252 struct msix_entry *entry = &interface->msix_entries[FM10K_MBX_VECTOR];
1253 struct net_device *dev = interface->netdev;
1254 struct fm10k_hw *hw = &interface->hw;
1255 int err;
1256
1257 /* Use timer0 for interrupt moderation on the mailbox */
Bruce Allan1aab1442015-12-22 13:43:44 -08001258 u32 itr = entry->entry | FM10K_INT_MAP_TIMER0;
Alexander Duyck5cb8db42014-09-20 19:51:40 -04001259
1260 /* register mailbox handlers */
1261 err = hw->mbx.ops.register_handlers(&hw->mbx, vf_mbx_data);
1262 if (err)
1263 return err;
1264
1265 /* request the IRQ */
1266 err = request_irq(entry->vector, fm10k_msix_mbx_vf, 0,
1267 dev->name, interface);
1268 if (err) {
1269 netif_err(interface, probe, dev,
1270 "request_irq for msix_mbx failed: %d\n", err);
1271 return err;
1272 }
1273
1274 /* map all of the interrupt sources */
1275 fm10k_write_reg(hw, FM10K_VFINT_MAP, itr);
1276
1277 /* enable interrupt */
1278 fm10k_write_reg(hw, FM10K_VFITR(entry->entry), FM10K_ITR_ENABLE);
1279
1280 return 0;
1281}
1282
Alexander Duyck18283ca2014-09-20 19:48:51 -04001283static s32 fm10k_lport_map(struct fm10k_hw *hw, u32 **results,
1284 struct fm10k_mbx_info *mbx)
1285{
1286 struct fm10k_intfc *interface;
1287 u32 dglort_map = hw->mac.dglort_map;
1288 s32 err;
1289
1290 err = fm10k_msg_lport_map_pf(hw, results, mbx);
1291 if (err)
1292 return err;
1293
1294 interface = container_of(hw, struct fm10k_intfc, hw);
1295
1296 /* we need to reset if port count was just updated */
1297 if (dglort_map != hw->mac.dglort_map)
1298 interface->flags |= FM10K_FLAG_RESET_REQUESTED;
1299
1300 return 0;
1301}
1302
1303static s32 fm10k_update_pvid(struct fm10k_hw *hw, u32 **results,
Jeff Kirsherde445192015-04-03 13:26:56 -07001304 struct fm10k_mbx_info __always_unused *mbx)
Alexander Duyck18283ca2014-09-20 19:48:51 -04001305{
1306 struct fm10k_intfc *interface;
1307 u16 glort, pvid;
1308 u32 pvid_update;
1309 s32 err;
1310
1311 err = fm10k_tlv_attr_get_u32(results[FM10K_PF_ATTR_ID_UPDATE_PVID],
1312 &pvid_update);
1313 if (err)
1314 return err;
1315
1316 /* extract values from the pvid update */
1317 glort = FM10K_MSG_HDR_FIELD_GET(pvid_update, UPDATE_PVID_GLORT);
1318 pvid = FM10K_MSG_HDR_FIELD_GET(pvid_update, UPDATE_PVID_PVID);
1319
1320 /* if glort is not valid return error */
1321 if (!fm10k_glort_valid_pf(hw, glort))
1322 return FM10K_ERR_PARAM;
1323
Jacob Kelleraa502b42015-11-02 12:10:22 -08001324 /* verify VLAN ID is valid */
Alexander Duyck18283ca2014-09-20 19:48:51 -04001325 if (pvid >= FM10K_VLAN_TABLE_VID_MAX)
1326 return FM10K_ERR_PARAM;
1327
1328 interface = container_of(hw, struct fm10k_intfc, hw);
1329
Alexander Duyck883a9cc2014-09-20 19:52:09 -04001330 /* check to see if this belongs to one of the VFs */
1331 err = fm10k_iov_update_pvid(interface, glort, pvid);
1332 if (!err)
1333 return 0;
1334
Alexander Duyck18283ca2014-09-20 19:48:51 -04001335 /* we need to reset if default VLAN was just updated */
1336 if (pvid != hw->mac.default_vid)
1337 interface->flags |= FM10K_FLAG_RESET_REQUESTED;
1338
1339 hw->mac.default_vid = pvid;
1340
1341 return 0;
1342}
1343
Alexander Duycka211e012014-09-20 19:54:07 -04001344static s32 fm10k_1588_msg_pf(struct fm10k_hw *hw, u32 **results,
Jeff Kirsherde445192015-04-03 13:26:56 -07001345 struct fm10k_mbx_info __always_unused *mbx)
Alexander Duycka211e012014-09-20 19:54:07 -04001346{
1347 struct fm10k_swapi_1588_timestamp timestamp;
1348 struct fm10k_iov_data *iov_data;
1349 struct fm10k_intfc *interface;
1350 u16 sglort, vf_idx;
1351 s32 err;
1352
1353 err = fm10k_tlv_attr_get_le_struct(
1354 results[FM10K_PF_ATTR_ID_1588_TIMESTAMP],
1355 &timestamp, sizeof(timestamp));
1356 if (err)
1357 return err;
1358
1359 interface = container_of(hw, struct fm10k_intfc, hw);
1360
1361 if (timestamp.dglort) {
1362 fm10k_ts_tx_hwtstamp(interface, timestamp.dglort,
1363 le64_to_cpu(timestamp.egress));
1364 return 0;
1365 }
1366
1367 /* either dglort or sglort must be set */
1368 if (!timestamp.sglort)
1369 return FM10K_ERR_PARAM;
1370
1371 /* verify GLORT is at least one of the ones we own */
1372 sglort = le16_to_cpu(timestamp.sglort);
1373 if (!fm10k_glort_valid_pf(hw, sglort))
1374 return FM10K_ERR_PARAM;
1375
1376 if (sglort == interface->glort) {
1377 fm10k_ts_tx_hwtstamp(interface, 0,
1378 le64_to_cpu(timestamp.ingress));
1379 return 0;
1380 }
1381
1382 /* if there is no iov_data then there is no mailboxes to process */
1383 if (!ACCESS_ONCE(interface->iov_data))
1384 return FM10K_ERR_PARAM;
1385
1386 rcu_read_lock();
1387
1388 /* notify VF if this timestamp belongs to it */
1389 iov_data = interface->iov_data;
1390 vf_idx = (hw->mac.dglort_map & FM10K_DGLORTMAP_NONE) - sglort;
1391
1392 if (!iov_data || vf_idx >= iov_data->num_vfs) {
1393 err = FM10K_ERR_PARAM;
1394 goto err_unlock;
1395 }
1396
1397 err = hw->iov.ops.report_timestamp(hw, &iov_data->vf_info[vf_idx],
1398 le64_to_cpu(timestamp.ingress));
1399
1400err_unlock:
1401 rcu_read_unlock();
1402
1403 return err;
1404}
1405
Alexander Duyck18283ca2014-09-20 19:48:51 -04001406static const struct fm10k_msg_data pf_mbx_data[] = {
1407 FM10K_PF_MSG_ERR_HANDLER(XCAST_MODES, fm10k_msg_err_pf),
1408 FM10K_PF_MSG_ERR_HANDLER(UPDATE_MAC_FWD_RULE, fm10k_msg_err_pf),
1409 FM10K_PF_MSG_LPORT_MAP_HANDLER(fm10k_lport_map),
1410 FM10K_PF_MSG_ERR_HANDLER(LPORT_CREATE, fm10k_msg_err_pf),
1411 FM10K_PF_MSG_ERR_HANDLER(LPORT_DELETE, fm10k_msg_err_pf),
1412 FM10K_PF_MSG_UPDATE_PVID_HANDLER(fm10k_update_pvid),
Alexander Duycka211e012014-09-20 19:54:07 -04001413 FM10K_PF_MSG_1588_TIMESTAMP_HANDLER(fm10k_1588_msg_pf),
Alexander Duyck18283ca2014-09-20 19:48:51 -04001414 FM10K_TLV_MSG_ERROR_HANDLER(fm10k_mbx_error),
1415};
1416
1417static int fm10k_mbx_request_irq_pf(struct fm10k_intfc *interface)
1418{
1419 struct msix_entry *entry = &interface->msix_entries[FM10K_MBX_VECTOR];
1420 struct net_device *dev = interface->netdev;
1421 struct fm10k_hw *hw = &interface->hw;
1422 int err;
1423
1424 /* Use timer0 for interrupt moderation on the mailbox */
Bruce Allan1aab1442015-12-22 13:43:44 -08001425 u32 mbx_itr = entry->entry | FM10K_INT_MAP_TIMER0;
1426 u32 other_itr = entry->entry | FM10K_INT_MAP_IMMEDIATE;
Alexander Duyck18283ca2014-09-20 19:48:51 -04001427
1428 /* register mailbox handlers */
1429 err = hw->mbx.ops.register_handlers(&hw->mbx, pf_mbx_data);
1430 if (err)
1431 return err;
1432
1433 /* request the IRQ */
1434 err = request_irq(entry->vector, fm10k_msix_mbx_pf, 0,
1435 dev->name, interface);
1436 if (err) {
1437 netif_err(interface, probe, dev,
1438 "request_irq for msix_mbx failed: %d\n", err);
1439 return err;
1440 }
1441
1442 /* Enable interrupts w/ no moderation for "other" interrupts */
Jacob Keller40423dd2015-10-26 16:32:04 -07001443 fm10k_write_reg(hw, FM10K_INT_MAP(fm10k_int_pcie_fault), other_itr);
1444 fm10k_write_reg(hw, FM10K_INT_MAP(fm10k_int_switch_up_down), other_itr);
1445 fm10k_write_reg(hw, FM10K_INT_MAP(fm10k_int_sram), other_itr);
1446 fm10k_write_reg(hw, FM10K_INT_MAP(fm10k_int_max_hold_time), other_itr);
1447 fm10k_write_reg(hw, FM10K_INT_MAP(fm10k_int_vflr), other_itr);
Alexander Duyck18283ca2014-09-20 19:48:51 -04001448
1449 /* Enable interrupts w/ moderation for mailbox */
Jacob Keller40423dd2015-10-26 16:32:04 -07001450 fm10k_write_reg(hw, FM10K_INT_MAP(fm10k_int_mailbox), mbx_itr);
Alexander Duyck18283ca2014-09-20 19:48:51 -04001451
1452 /* Enable individual interrupt causes */
1453 fm10k_write_reg(hw, FM10K_EIMR, FM10K_EIMR_ENABLE(PCA_FAULT) |
1454 FM10K_EIMR_ENABLE(FUM_FAULT) |
1455 FM10K_EIMR_ENABLE(MAILBOX) |
1456 FM10K_EIMR_ENABLE(SWITCHREADY) |
1457 FM10K_EIMR_ENABLE(SWITCHNOTREADY) |
1458 FM10K_EIMR_ENABLE(SRAMERROR) |
1459 FM10K_EIMR_ENABLE(VFLR) |
1460 FM10K_EIMR_ENABLE(MAXHOLDTIME));
1461
1462 /* enable interrupt */
1463 fm10k_write_reg(hw, FM10K_ITR(entry->entry), FM10K_ITR_ENABLE);
1464
1465 return 0;
1466}
1467
1468int fm10k_mbx_request_irq(struct fm10k_intfc *interface)
1469{
1470 struct fm10k_hw *hw = &interface->hw;
1471 int err;
1472
1473 /* enable Mailbox cause */
Alexander Duyck5cb8db42014-09-20 19:51:40 -04001474 if (hw->mac.type == fm10k_mac_pf)
1475 err = fm10k_mbx_request_irq_pf(interface);
1476 else
1477 err = fm10k_mbx_request_irq_vf(interface);
Alexander Duycke00e23b2015-10-27 16:59:18 -07001478 if (err)
1479 return err;
Alexander Duyck18283ca2014-09-20 19:48:51 -04001480
1481 /* connect mailbox */
Alexander Duycke00e23b2015-10-27 16:59:18 -07001482 err = hw->mbx.ops.connect(hw, &hw->mbx);
1483
1484 /* if the mailbox failed to connect, then free IRQ */
1485 if (err)
1486 fm10k_mbx_free_irq(interface);
Alexander Duyck18283ca2014-09-20 19:48:51 -04001487
1488 return err;
1489}
1490
1491/**
1492 * fm10k_qv_free_irq - release interrupts associated with queue vectors
1493 * @interface: board private structure
1494 *
1495 * Release all interrupts associated with this interface
1496 **/
1497void fm10k_qv_free_irq(struct fm10k_intfc *interface)
1498{
1499 int vector = interface->num_q_vectors;
1500 struct fm10k_hw *hw = &interface->hw;
1501 struct msix_entry *entry;
1502
1503 entry = &interface->msix_entries[NON_Q_VECTORS(hw) + vector];
1504
1505 while (vector) {
1506 struct fm10k_q_vector *q_vector;
1507
1508 vector--;
1509 entry--;
1510 q_vector = interface->q_vector[vector];
1511
1512 if (!q_vector->tx.count && !q_vector->rx.count)
1513 continue;
1514
Jacob Keller504b0fd2015-10-29 13:43:40 -07001515 /* clear the affinity_mask in the IRQ descriptor */
1516 irq_set_affinity_hint(entry->vector, NULL);
Alexander Duyck18283ca2014-09-20 19:48:51 -04001517
Jacob Keller504b0fd2015-10-29 13:43:40 -07001518 /* disable interrupts */
Alexander Duyck18283ca2014-09-20 19:48:51 -04001519 writel(FM10K_ITR_MASK_SET, q_vector->itr);
1520
1521 free_irq(entry->vector, q_vector);
1522 }
1523}
1524
1525/**
1526 * fm10k_qv_request_irq - initialize interrupts for queue vectors
1527 * @interface: board private structure
1528 *
1529 * Attempts to configure interrupts using the best available
1530 * capabilities of the hardware and kernel.
1531 **/
1532int fm10k_qv_request_irq(struct fm10k_intfc *interface)
1533{
1534 struct net_device *dev = interface->netdev;
1535 struct fm10k_hw *hw = &interface->hw;
1536 struct msix_entry *entry;
1537 int ri = 0, ti = 0;
1538 int vector, err;
1539
1540 entry = &interface->msix_entries[NON_Q_VECTORS(hw)];
1541
1542 for (vector = 0; vector < interface->num_q_vectors; vector++) {
1543 struct fm10k_q_vector *q_vector = interface->q_vector[vector];
1544
1545 /* name the vector */
1546 if (q_vector->tx.count && q_vector->rx.count) {
1547 snprintf(q_vector->name, sizeof(q_vector->name) - 1,
1548 "%s-TxRx-%d", dev->name, ri++);
1549 ti++;
1550 } else if (q_vector->rx.count) {
1551 snprintf(q_vector->name, sizeof(q_vector->name) - 1,
1552 "%s-rx-%d", dev->name, ri++);
1553 } else if (q_vector->tx.count) {
1554 snprintf(q_vector->name, sizeof(q_vector->name) - 1,
1555 "%s-tx-%d", dev->name, ti++);
1556 } else {
1557 /* skip this unused q_vector */
1558 continue;
1559 }
1560
1561 /* Assign ITR register to q_vector */
Alexander Duyck5cb8db42014-09-20 19:51:40 -04001562 q_vector->itr = (hw->mac.type == fm10k_mac_pf) ?
1563 &interface->uc_addr[FM10K_ITR(entry->entry)] :
1564 &interface->uc_addr[FM10K_VFITR(entry->entry)];
Alexander Duyck18283ca2014-09-20 19:48:51 -04001565
1566 /* request the IRQ */
1567 err = request_irq(entry->vector, &fm10k_msix_clean_rings, 0,
1568 q_vector->name, q_vector);
1569 if (err) {
1570 netif_err(interface, probe, dev,
1571 "request_irq failed for MSIX interrupt Error: %d\n",
1572 err);
1573 goto err_out;
1574 }
1575
Jacob Keller504b0fd2015-10-29 13:43:40 -07001576 /* assign the mask for this irq */
1577 irq_set_affinity_hint(entry->vector, &q_vector->affinity_mask);
1578
Alexander Duyck18283ca2014-09-20 19:48:51 -04001579 /* Enable q_vector */
1580 writel(FM10K_ITR_ENABLE, q_vector->itr);
1581
1582 entry++;
1583 }
1584
1585 return 0;
1586
1587err_out:
1588 /* wind through the ring freeing all entries and vectors */
1589 while (vector) {
1590 struct fm10k_q_vector *q_vector;
1591
1592 entry--;
1593 vector--;
1594 q_vector = interface->q_vector[vector];
1595
1596 if (!q_vector->tx.count && !q_vector->rx.count)
1597 continue;
1598
Jacob Keller504b0fd2015-10-29 13:43:40 -07001599 /* clear the affinity_mask in the IRQ descriptor */
1600 irq_set_affinity_hint(entry->vector, NULL);
Alexander Duyck18283ca2014-09-20 19:48:51 -04001601
Jacob Keller504b0fd2015-10-29 13:43:40 -07001602 /* disable interrupts */
Alexander Duyck18283ca2014-09-20 19:48:51 -04001603 writel(FM10K_ITR_MASK_SET, q_vector->itr);
1604
1605 free_irq(entry->vector, q_vector);
1606 }
1607
1608 return err;
1609}
1610
Alexander Duyck504c5ea2014-09-20 19:48:29 -04001611void fm10k_up(struct fm10k_intfc *interface)
1612{
1613 struct fm10k_hw *hw = &interface->hw;
1614
1615 /* Enable Tx/Rx DMA */
1616 hw->mac.ops.start_hw(hw);
1617
Alexander Duyck3abaae42014-09-20 19:49:43 -04001618 /* configure Tx descriptor rings */
1619 fm10k_configure_tx(interface);
1620
1621 /* configure Rx descriptor rings */
1622 fm10k_configure_rx(interface);
1623
Alexander Duyck504c5ea2014-09-20 19:48:29 -04001624 /* configure interrupts */
1625 hw->mac.ops.update_int_moderator(hw);
1626
1627 /* clear down bit to indicate we are ready to go */
1628 clear_bit(__FM10K_DOWN, &interface->state);
1629
Alexander Duyck18283ca2014-09-20 19:48:51 -04001630 /* enable polling cleanups */
1631 fm10k_napi_enable_all(interface);
1632
Alexander Duyck504c5ea2014-09-20 19:48:29 -04001633 /* re-establish Rx filters */
1634 fm10k_restore_rx_state(interface);
1635
1636 /* enable transmits */
1637 netif_tx_start_all_queues(interface->netdev);
Alexander Duyckb7d85142014-09-20 19:49:25 -04001638
Jeff Kirsher54b3c9cf2015-04-03 13:27:09 -07001639 /* kick off the service timer now */
Bruce Allanf355bb52015-12-08 15:51:11 -08001640 hw->mac.get_host_state = true;
Alexander Duyckb7d85142014-09-20 19:49:25 -04001641 mod_timer(&interface->service_timer, jiffies);
Alexander Duyck504c5ea2014-09-20 19:48:29 -04001642}
1643
Alexander Duyck18283ca2014-09-20 19:48:51 -04001644static void fm10k_napi_disable_all(struct fm10k_intfc *interface)
1645{
1646 struct fm10k_q_vector *q_vector;
1647 int q_idx;
1648
1649 for (q_idx = 0; q_idx < interface->num_q_vectors; q_idx++) {
1650 q_vector = interface->q_vector[q_idx];
1651 napi_disable(&q_vector->napi);
1652 }
1653}
1654
Alexander Duyck504c5ea2014-09-20 19:48:29 -04001655void fm10k_down(struct fm10k_intfc *interface)
1656{
1657 struct net_device *netdev = interface->netdev;
1658 struct fm10k_hw *hw = &interface->hw;
1659
1660 /* signal that we are down to the interrupt handler and service task */
1661 set_bit(__FM10K_DOWN, &interface->state);
1662
1663 /* call carrier off first to avoid false dev_watchdog timeouts */
1664 netif_carrier_off(netdev);
1665
1666 /* disable transmits */
1667 netif_tx_stop_all_queues(netdev);
1668 netif_tx_disable(netdev);
1669
1670 /* reset Rx filters */
1671 fm10k_reset_rx_state(interface);
1672
1673 /* allow 10ms for device to quiesce */
1674 usleep_range(10000, 20000);
1675
Alexander Duyck18283ca2014-09-20 19:48:51 -04001676 /* disable polling routines */
1677 fm10k_napi_disable_all(interface);
1678
Alexander Duyckb7d85142014-09-20 19:49:25 -04001679 /* capture stats one last time before stopping interface */
1680 fm10k_update_stats(interface);
1681
Alexander Duyck504c5ea2014-09-20 19:48:29 -04001682 /* Disable DMA engine for Tx/Rx */
1683 hw->mac.ops.stop_hw(hw);
Alexander Duyck3abaae42014-09-20 19:49:43 -04001684
1685 /* free any buffers still on the rings */
1686 fm10k_clean_all_tx_rings(interface);
Jacob Kellerec6acb82015-06-03 16:31:02 -07001687 fm10k_clean_all_rx_rings(interface);
Alexander Duyck504c5ea2014-09-20 19:48:29 -04001688}
1689
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001690/**
1691 * fm10k_sw_init - Initialize general software structures
1692 * @interface: host interface private structure to initialize
1693 *
1694 * fm10k_sw_init initializes the interface private data structure.
1695 * Fields are initialized based on PCI device information and
1696 * OS network device settings (MTU size).
1697 **/
1698static int fm10k_sw_init(struct fm10k_intfc *interface,
1699 const struct pci_device_id *ent)
1700{
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001701 const struct fm10k_info *fi = fm10k_info_tbl[ent->driver_data];
1702 struct fm10k_hw *hw = &interface->hw;
1703 struct pci_dev *pdev = interface->pdev;
1704 struct net_device *netdev = interface->netdev;
Eric Dumazetc41a4fb2014-11-16 06:23:12 -08001705 u32 rss_key[FM10K_RSSRK_SIZE];
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001706 unsigned int rss;
1707 int err;
1708
1709 /* initialize back pointer */
1710 hw->back = interface;
1711 hw->hw_addr = interface->uc_addr;
1712
1713 /* PCI config space info */
1714 hw->vendor_id = pdev->vendor;
1715 hw->device_id = pdev->device;
1716 hw->revision_id = pdev->revision;
1717 hw->subsystem_vendor_id = pdev->subsystem_vendor;
1718 hw->subsystem_device_id = pdev->subsystem_device;
1719
1720 /* Setup hw api */
1721 memcpy(&hw->mac.ops, fi->mac_ops, sizeof(hw->mac.ops));
1722 hw->mac.type = fi->mac;
1723
Alexander Duyck883a9cc2014-09-20 19:52:09 -04001724 /* Setup IOV handlers */
1725 if (fi->iov_ops)
1726 memcpy(&hw->iov.ops, fi->iov_ops, sizeof(hw->iov.ops));
1727
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001728 /* Set common capability flags and settings */
1729 rss = min_t(int, FM10K_MAX_RSS_INDICES, num_online_cpus());
1730 interface->ring_feature[RING_F_RSS].limit = rss;
1731 fi->get_invariants(hw);
1732
1733 /* pick up the PCIe bus settings for reporting later */
1734 if (hw->mac.ops.get_bus_info)
1735 hw->mac.ops.get_bus_info(hw);
1736
1737 /* limit the usable DMA range */
1738 if (hw->mac.ops.set_dma_mask)
1739 hw->mac.ops.set_dma_mask(hw, dma_get_mask(&pdev->dev));
1740
1741 /* update netdev with DMA restrictions */
1742 if (dma_get_mask(&pdev->dev) > DMA_BIT_MASK(32)) {
1743 netdev->features |= NETIF_F_HIGHDMA;
1744 netdev->vlan_features |= NETIF_F_HIGHDMA;
1745 }
1746
Alexander Duyckb7d85142014-09-20 19:49:25 -04001747 /* delay any future reset requests */
1748 interface->last_reset = jiffies + (10 * HZ);
1749
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001750 /* reset and initialize the hardware so it is in a known state */
Jacob Keller1343c652015-10-16 10:56:58 -07001751 err = hw->mac.ops.reset_hw(hw);
1752 if (err) {
1753 dev_err(&pdev->dev, "reset_hw failed: %d\n", err);
1754 return err;
1755 }
1756
1757 err = hw->mac.ops.init_hw(hw);
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001758 if (err) {
1759 dev_err(&pdev->dev, "init_hw failed: %d\n", err);
1760 return err;
1761 }
1762
1763 /* initialize hardware statistics */
1764 hw->mac.ops.update_hw_stats(hw, &interface->stats);
1765
Alexander Duyck883a9cc2014-09-20 19:52:09 -04001766 /* Set upper limit on IOV VFs that can be allocated */
1767 pci_sriov_set_totalvfs(pdev, hw->iov.total_vfs);
1768
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001769 /* Start with random Ethernet address */
1770 eth_random_addr(hw->mac.addr);
1771
1772 /* Initialize MAC address from hardware */
1773 err = hw->mac.ops.read_mac_addr(hw);
1774 if (err) {
1775 dev_warn(&pdev->dev,
1776 "Failed to obtain MAC address defaulting to random\n");
1777 /* tag address assignment as random */
1778 netdev->addr_assign_type |= NET_ADDR_RANDOM;
1779 }
1780
Bruce Allan11c49f72015-12-28 18:00:30 -08001781 ether_addr_copy(netdev->dev_addr, hw->mac.addr);
1782 ether_addr_copy(netdev->perm_addr, hw->mac.addr);
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001783
1784 if (!is_valid_ether_addr(netdev->perm_addr)) {
1785 dev_err(&pdev->dev, "Invalid MAC Address\n");
1786 return -EIO;
1787 }
1788
Alexander Duycka211e012014-09-20 19:54:07 -04001789 /* assign BAR 4 resources for use with PTP */
1790 if (fm10k_read_reg(hw, FM10K_CTRL) & FM10K_CTRL_BAR4_ALLOWED)
1791 interface->sw_addr = ioremap(pci_resource_start(pdev, 4),
1792 pci_resource_len(pdev, 4));
1793 hw->sw_addr = interface->sw_addr;
1794
Alexander Duyck9f801ab2014-09-20 19:53:08 -04001795 /* initialize DCBNL interface */
1796 fm10k_dcbnl_set_ops(netdev);
1797
Alexander Duyckb7d85142014-09-20 19:49:25 -04001798 /* Initialize service timer and service task */
1799 set_bit(__FM10K_SERVICE_DISABLE, &interface->state);
1800 setup_timer(&interface->service_timer, &fm10k_service_timer,
1801 (unsigned long)interface);
1802 INIT_WORK(&interface->service_task, fm10k_service_task);
1803
Jeff Kirsher54b3c9cf2015-04-03 13:27:09 -07001804 /* kick off service timer now, even when interface is down */
1805 mod_timer(&interface->service_timer, (HZ * 2) + jiffies);
1806
Alexander Duycka211e012014-09-20 19:54:07 -04001807 /* Intitialize timestamp data */
1808 fm10k_ts_init(interface);
1809
Alexander Duycke27ef592014-09-20 19:49:03 -04001810 /* set default ring sizes */
1811 interface->tx_ring_count = FM10K_DEFAULT_TXD;
1812 interface->rx_ring_count = FM10K_DEFAULT_RXD;
1813
Alexander Duyck18283ca2014-09-20 19:48:51 -04001814 /* set default interrupt moderation */
Jacob Keller436ea952015-10-16 10:57:08 -07001815 interface->tx_itr = FM10K_TX_ITR_DEFAULT;
1816 interface->rx_itr = FM10K_ITR_ADAPTIVE | FM10K_RX_ITR_DEFAULT;
Alexander Duyck18283ca2014-09-20 19:48:51 -04001817
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001818 /* initialize vxlan_port list */
1819 INIT_LIST_HEAD(&interface->vxlan_port);
1820
Eric Dumazetc41a4fb2014-11-16 06:23:12 -08001821 netdev_rss_key_fill(rss_key, sizeof(rss_key));
1822 memcpy(interface->rssrk, rss_key, sizeof(rss_key));
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001823
1824 /* Start off interface as being down */
1825 set_bit(__FM10K_DOWN, &interface->state);
1826
1827 return 0;
1828}
1829
1830static void fm10k_slot_warn(struct fm10k_intfc *interface)
1831{
Jacob Keller106c07a2015-06-15 15:00:55 -07001832 enum pcie_link_width width = PCIE_LNK_WIDTH_UNKNOWN;
1833 enum pci_bus_speed speed = PCI_SPEED_UNKNOWN;
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001834 struct fm10k_hw *hw = &interface->hw;
Jacob Keller106c07a2015-06-15 15:00:55 -07001835 int max_gts = 0, expected_gts = 0;
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001836
Jacob Keller106c07a2015-06-15 15:00:55 -07001837 if (pcie_get_minimum_link(interface->pdev, &speed, &width) ||
1838 speed == PCI_SPEED_UNKNOWN || width == PCIE_LNK_WIDTH_UNKNOWN) {
1839 dev_warn(&interface->pdev->dev,
1840 "Unable to determine PCI Express bandwidth.\n");
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001841 return;
Jacob Keller106c07a2015-06-15 15:00:55 -07001842 }
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001843
Jacob Keller106c07a2015-06-15 15:00:55 -07001844 switch (speed) {
1845 case PCIE_SPEED_2_5GT:
1846 /* 8b/10b encoding reduces max throughput by 20% */
1847 max_gts = 2 * width;
1848 break;
1849 case PCIE_SPEED_5_0GT:
1850 /* 8b/10b encoding reduces max throughput by 20% */
1851 max_gts = 4 * width;
1852 break;
1853 case PCIE_SPEED_8_0GT:
1854 /* 128b/130b encoding has less than 2% impact on throughput */
1855 max_gts = 8 * width;
1856 break;
1857 default:
1858 dev_warn(&interface->pdev->dev,
1859 "Unable to determine PCI Express bandwidth.\n");
1860 return;
1861 }
1862
1863 dev_info(&interface->pdev->dev,
1864 "PCI Express bandwidth of %dGT/s available\n",
1865 max_gts);
1866 dev_info(&interface->pdev->dev,
1867 "(Speed:%s, Width: x%d, Encoding Loss:%s, Payload:%s)\n",
1868 (speed == PCIE_SPEED_8_0GT ? "8.0GT/s" :
1869 speed == PCIE_SPEED_5_0GT ? "5.0GT/s" :
1870 speed == PCIE_SPEED_2_5GT ? "2.5GT/s" :
1871 "Unknown"),
1872 hw->bus.width,
1873 (speed == PCIE_SPEED_2_5GT ? "20%" :
1874 speed == PCIE_SPEED_5_0GT ? "20%" :
1875 speed == PCIE_SPEED_8_0GT ? "<2%" :
1876 "Unknown"),
1877 (hw->bus.payload == fm10k_bus_payload_128 ? "128B" :
1878 hw->bus.payload == fm10k_bus_payload_256 ? "256B" :
1879 hw->bus.payload == fm10k_bus_payload_512 ? "512B" :
1880 "Unknown"));
1881
1882 switch (hw->bus_caps.speed) {
1883 case fm10k_bus_speed_2500:
1884 /* 8b/10b encoding reduces max throughput by 20% */
1885 expected_gts = 2 * hw->bus_caps.width;
1886 break;
1887 case fm10k_bus_speed_5000:
1888 /* 8b/10b encoding reduces max throughput by 20% */
1889 expected_gts = 4 * hw->bus_caps.width;
1890 break;
1891 case fm10k_bus_speed_8000:
1892 /* 128b/130b encoding has less than 2% impact on throughput */
1893 expected_gts = 8 * hw->bus_caps.width;
1894 break;
1895 default:
1896 dev_warn(&interface->pdev->dev,
1897 "Unable to determine expected PCI Express bandwidth.\n");
1898 return;
1899 }
1900
Bruce Allan3d02b3d2015-10-28 17:19:56 -07001901 if (max_gts >= expected_gts)
1902 return;
1903
1904 dev_warn(&interface->pdev->dev,
1905 "This device requires %dGT/s of bandwidth for optimal performance.\n",
1906 expected_gts);
1907 dev_warn(&interface->pdev->dev,
1908 "A %sslot with x%d lanes is suggested.\n",
1909 (hw->bus_caps.speed == fm10k_bus_speed_2500 ? "2.5GT/s " :
1910 hw->bus_caps.speed == fm10k_bus_speed_5000 ? "5.0GT/s " :
1911 hw->bus_caps.speed == fm10k_bus_speed_8000 ? "8.0GT/s " : ""),
1912 hw->bus_caps.width);
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001913}
1914
Alexander Duyckb3890e32014-09-20 19:46:05 -04001915/**
1916 * fm10k_probe - Device Initialization Routine
1917 * @pdev: PCI device information struct
1918 * @ent: entry in fm10k_pci_tbl
1919 *
1920 * Returns 0 on success, negative on failure
1921 *
1922 * fm10k_probe initializes an interface identified by a pci_dev structure.
1923 * The OS initialization, configuring of the interface private structure,
1924 * and a hardware reset occur.
1925 **/
Bruce Allana4fcad62015-10-28 17:19:40 -07001926static int fm10k_probe(struct pci_dev *pdev, const struct pci_device_id *ent)
Alexander Duyckb3890e32014-09-20 19:46:05 -04001927{
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001928 struct net_device *netdev;
1929 struct fm10k_intfc *interface;
Alexander Duyckb3890e32014-09-20 19:46:05 -04001930 int err;
Alexander Duyckb3890e32014-09-20 19:46:05 -04001931
1932 err = pci_enable_device_mem(pdev);
1933 if (err)
1934 return err;
1935
Jacob Kellerc04ae582015-06-16 13:41:43 -07001936 err = dma_set_mask_and_coherent(&pdev->dev, DMA_BIT_MASK(48));
1937 if (err)
Alexander Duyckb3890e32014-09-20 19:46:05 -04001938 err = dma_set_mask_and_coherent(&pdev->dev, DMA_BIT_MASK(32));
Jacob Kellerc04ae582015-06-16 13:41:43 -07001939 if (err) {
1940 dev_err(&pdev->dev,
1941 "DMA configuration failed: %d\n", err);
1942 goto err_dma;
Alexander Duyckb3890e32014-09-20 19:46:05 -04001943 }
1944
1945 err = pci_request_selected_regions(pdev,
1946 pci_select_bars(pdev,
1947 IORESOURCE_MEM),
1948 fm10k_driver_name);
1949 if (err) {
1950 dev_err(&pdev->dev,
Jacob Keller0197cde2015-06-16 13:40:32 -07001951 "pci_request_selected_regions failed: %d\n", err);
Alexander Duyckb3890e32014-09-20 19:46:05 -04001952 goto err_pci_reg;
1953 }
1954
Alexander Duyck19ae1b32014-09-20 19:50:27 -04001955 pci_enable_pcie_error_reporting(pdev);
1956
Alexander Duyckb3890e32014-09-20 19:46:05 -04001957 pci_set_master(pdev);
1958 pci_save_state(pdev);
1959
Jacob Kellere0244902015-10-16 10:56:56 -07001960 netdev = fm10k_alloc_netdev(fm10k_info_tbl[ent->driver_data]);
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001961 if (!netdev) {
1962 err = -ENOMEM;
1963 goto err_alloc_netdev;
1964 }
1965
1966 SET_NETDEV_DEV(netdev, &pdev->dev);
1967
1968 interface = netdev_priv(netdev);
1969 pci_set_drvdata(pdev, interface);
1970
1971 interface->netdev = netdev;
1972 interface->pdev = pdev;
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001973
1974 interface->uc_addr = ioremap(pci_resource_start(pdev, 0),
1975 FM10K_UC_ADDR_SIZE);
1976 if (!interface->uc_addr) {
1977 err = -EIO;
1978 goto err_ioremap;
1979 }
1980
1981 err = fm10k_sw_init(interface, ent);
1982 if (err)
1983 goto err_sw_init;
1984
Alexander Duyck7461fd92014-09-20 19:53:23 -04001985 /* enable debugfs support */
1986 fm10k_dbg_intfc_init(interface);
1987
Alexander Duyck18283ca2014-09-20 19:48:51 -04001988 err = fm10k_init_queueing_scheme(interface);
1989 if (err)
1990 goto err_sw_init;
1991
1992 err = fm10k_mbx_request_irq(interface);
1993 if (err)
1994 goto err_mbx_interrupt;
1995
Alexander Duyck0e7b3642014-09-20 19:48:10 -04001996 /* final check of hardware state before registering the interface */
1997 err = fm10k_hw_ready(interface);
1998 if (err)
1999 goto err_register;
2000
2001 err = register_netdev(netdev);
2002 if (err)
2003 goto err_register;
2004
2005 /* carrier off reporting is important to ethtool even BEFORE open */
2006 netif_carrier_off(netdev);
2007
2008 /* stop all the transmit queues from transmitting until link is up */
2009 netif_tx_stop_all_queues(netdev);
2010
Alexander Duycka211e012014-09-20 19:54:07 -04002011 /* Register PTP interface */
2012 fm10k_ptp_register(interface);
2013
Alexander Duyck0e7b3642014-09-20 19:48:10 -04002014 /* print warning for non-optimal configurations */
2015 fm10k_slot_warn(interface);
2016
Alexander Duyck0ff36672015-06-18 19:41:10 -07002017 /* report MAC address for logging */
2018 dev_info(&pdev->dev, "%pM\n", netdev->dev_addr);
2019
Alexander Duyck883a9cc2014-09-20 19:52:09 -04002020 /* enable SR-IOV after registering netdev to enforce PF/VF ordering */
2021 fm10k_iov_configure(pdev, 0);
2022
Alexander Duyckb7d85142014-09-20 19:49:25 -04002023 /* clear the service task disable bit to allow service task to start */
2024 clear_bit(__FM10K_SERVICE_DISABLE, &interface->state);
2025
Alexander Duyckb3890e32014-09-20 19:46:05 -04002026 return 0;
2027
Alexander Duyck0e7b3642014-09-20 19:48:10 -04002028err_register:
Alexander Duyck18283ca2014-09-20 19:48:51 -04002029 fm10k_mbx_free_irq(interface);
2030err_mbx_interrupt:
2031 fm10k_clear_queueing_scheme(interface);
Alexander Duyck0e7b3642014-09-20 19:48:10 -04002032err_sw_init:
Alexander Duycka211e012014-09-20 19:54:07 -04002033 if (interface->sw_addr)
2034 iounmap(interface->sw_addr);
Alexander Duyck0e7b3642014-09-20 19:48:10 -04002035 iounmap(interface->uc_addr);
2036err_ioremap:
2037 free_netdev(netdev);
2038err_alloc_netdev:
2039 pci_release_selected_regions(pdev,
2040 pci_select_bars(pdev, IORESOURCE_MEM));
Alexander Duyckb3890e32014-09-20 19:46:05 -04002041err_pci_reg:
2042err_dma:
2043 pci_disable_device(pdev);
2044 return err;
2045}
2046
2047/**
2048 * fm10k_remove - Device Removal Routine
2049 * @pdev: PCI device information struct
2050 *
2051 * fm10k_remove is called by the PCI subsystem to alert the driver
2052 * that it should release a PCI device. The could be caused by a
2053 * Hot-Plug event, or because the driver is going to be removed from
2054 * memory.
2055 **/
2056static void fm10k_remove(struct pci_dev *pdev)
2057{
Alexander Duyck0e7b3642014-09-20 19:48:10 -04002058 struct fm10k_intfc *interface = pci_get_drvdata(pdev);
2059 struct net_device *netdev = interface->netdev;
2060
Jeff Kirsher54b3c9cf2015-04-03 13:27:09 -07002061 del_timer_sync(&interface->service_timer);
2062
Alexander Duyckb7d85142014-09-20 19:49:25 -04002063 set_bit(__FM10K_SERVICE_DISABLE, &interface->state);
2064 cancel_work_sync(&interface->service_task);
2065
Alexander Duyck0e7b3642014-09-20 19:48:10 -04002066 /* free netdev, this may bounce the interrupts due to setup_tc */
2067 if (netdev->reg_state == NETREG_REGISTERED)
2068 unregister_netdev(netdev);
2069
Alexander Duycka211e012014-09-20 19:54:07 -04002070 /* cleanup timestamp handling */
2071 fm10k_ptp_unregister(interface);
2072
Alexander Duyck883a9cc2014-09-20 19:52:09 -04002073 /* release VFs */
2074 fm10k_iov_disable(pdev);
2075
Alexander Duyck18283ca2014-09-20 19:48:51 -04002076 /* disable mailbox interrupt */
2077 fm10k_mbx_free_irq(interface);
2078
2079 /* free interrupts */
2080 fm10k_clear_queueing_scheme(interface);
2081
Alexander Duyck7461fd92014-09-20 19:53:23 -04002082 /* remove any debugfs interfaces */
2083 fm10k_dbg_intfc_exit(interface);
2084
Alexander Duycka211e012014-09-20 19:54:07 -04002085 if (interface->sw_addr)
2086 iounmap(interface->sw_addr);
Alexander Duyck0e7b3642014-09-20 19:48:10 -04002087 iounmap(interface->uc_addr);
2088
2089 free_netdev(netdev);
2090
Alexander Duyckb3890e32014-09-20 19:46:05 -04002091 pci_release_selected_regions(pdev,
2092 pci_select_bars(pdev, IORESOURCE_MEM));
2093
Alexander Duyck19ae1b32014-09-20 19:50:27 -04002094 pci_disable_pcie_error_reporting(pdev);
2095
Alexander Duyckb3890e32014-09-20 19:46:05 -04002096 pci_disable_device(pdev);
2097}
2098
Alexander Duyck19ae1b32014-09-20 19:50:27 -04002099#ifdef CONFIG_PM
2100/**
2101 * fm10k_resume - Restore device to pre-sleep state
2102 * @pdev: PCI device information struct
2103 *
2104 * fm10k_resume is called after the system has powered back up from a sleep
2105 * state and is ready to resume operation. This function is meant to restore
2106 * the device back to its pre-sleep state.
2107 **/
2108static int fm10k_resume(struct pci_dev *pdev)
2109{
2110 struct fm10k_intfc *interface = pci_get_drvdata(pdev);
2111 struct net_device *netdev = interface->netdev;
2112 struct fm10k_hw *hw = &interface->hw;
2113 u32 err;
2114
2115 pci_set_power_state(pdev, PCI_D0);
2116 pci_restore_state(pdev);
2117
2118 /* pci_restore_state clears dev->state_saved so call
2119 * pci_save_state to restore it.
2120 */
2121 pci_save_state(pdev);
2122
2123 err = pci_enable_device_mem(pdev);
2124 if (err) {
2125 dev_err(&pdev->dev, "Cannot enable PCI device from suspend\n");
2126 return err;
2127 }
2128 pci_set_master(pdev);
2129
2130 pci_wake_from_d3(pdev, false);
2131
2132 /* refresh hw_addr in case it was dropped */
2133 hw->hw_addr = interface->uc_addr;
2134
2135 /* reset hardware to known state */
2136 err = hw->mac.ops.init_hw(&interface->hw);
Jacob Keller1343c652015-10-16 10:56:58 -07002137 if (err) {
2138 dev_err(&pdev->dev, "init_hw failed: %d\n", err);
Alexander Duyck19ae1b32014-09-20 19:50:27 -04002139 return err;
Jacob Keller1343c652015-10-16 10:56:58 -07002140 }
Alexander Duyck19ae1b32014-09-20 19:50:27 -04002141
2142 /* reset statistics starting values */
2143 hw->mac.ops.rebind_hw_stats(hw, &interface->stats);
2144
Alexander Duycka211e012014-09-20 19:54:07 -04002145 /* reset clock */
2146 fm10k_ts_reset(interface);
2147
Alexander Duyck19ae1b32014-09-20 19:50:27 -04002148 rtnl_lock();
2149
2150 err = fm10k_init_queueing_scheme(interface);
Alexander Duyck09f8a822015-11-10 09:40:30 -08002151 if (err)
2152 goto err_queueing_scheme;
2153
2154 err = fm10k_mbx_request_irq(interface);
2155 if (err)
2156 goto err_mbx_irq;
2157
2158 err = fm10k_hw_ready(interface);
2159 if (err)
2160 goto err_open;
2161
2162 err = netif_running(netdev) ? fm10k_open(netdev) : 0;
2163 if (err)
2164 goto err_open;
Alexander Duyck19ae1b32014-09-20 19:50:27 -04002165
2166 rtnl_unlock();
2167
Jacob Kellere4029662015-06-15 15:00:51 -07002168 /* assume host is not ready, to prevent race with watchdog in case we
2169 * actually don't have connection to the switch
2170 */
2171 interface->host_ready = false;
2172 fm10k_watchdog_host_not_ready(interface);
2173
2174 /* clear the service task disable bit to allow service task to start */
2175 clear_bit(__FM10K_SERVICE_DISABLE, &interface->state);
2176 fm10k_service_event_schedule(interface);
2177
Alexander Duyck883a9cc2014-09-20 19:52:09 -04002178 /* restore SR-IOV interface */
2179 fm10k_iov_resume(pdev);
2180
Alexander Duyck19ae1b32014-09-20 19:50:27 -04002181 netif_device_attach(netdev);
2182
2183 return 0;
Alexander Duyck09f8a822015-11-10 09:40:30 -08002184err_open:
2185 fm10k_mbx_free_irq(interface);
2186err_mbx_irq:
2187 fm10k_clear_queueing_scheme(interface);
2188err_queueing_scheme:
2189 rtnl_unlock();
2190
2191 return err;
Alexander Duyck19ae1b32014-09-20 19:50:27 -04002192}
2193
2194/**
2195 * fm10k_suspend - Prepare the device for a system sleep state
2196 * @pdev: PCI device information struct
2197 *
2198 * fm10k_suspend is meant to shutdown the device prior to the system entering
2199 * a sleep state. The fm10k hardware does not support wake on lan so the
2200 * driver simply needs to shut down the device so it is in a low power state.
2201 **/
Jeff Kirsherde445192015-04-03 13:26:56 -07002202static int fm10k_suspend(struct pci_dev *pdev,
2203 pm_message_t __always_unused state)
Alexander Duyck19ae1b32014-09-20 19:50:27 -04002204{
2205 struct fm10k_intfc *interface = pci_get_drvdata(pdev);
2206 struct net_device *netdev = interface->netdev;
2207 int err = 0;
2208
2209 netif_device_detach(netdev);
2210
Alexander Duyck883a9cc2014-09-20 19:52:09 -04002211 fm10k_iov_suspend(pdev);
2212
Jacob Kellere4029662015-06-15 15:00:51 -07002213 /* the watchdog tasks may read registers, which will appear like a
2214 * surprise-remove event once the PCI device is disabled. This will
2215 * cause us to close the netdevice, so we don't retain the open/closed
2216 * state post-resume. Prevent this by disabling the service task while
2217 * suspended, until we actually resume.
2218 */
2219 set_bit(__FM10K_SERVICE_DISABLE, &interface->state);
2220 cancel_work_sync(&interface->service_task);
2221
Alexander Duyck19ae1b32014-09-20 19:50:27 -04002222 rtnl_lock();
2223
2224 if (netif_running(netdev))
2225 fm10k_close(netdev);
2226
2227 fm10k_mbx_free_irq(interface);
2228
2229 fm10k_clear_queueing_scheme(interface);
2230
2231 rtnl_unlock();
2232
2233 err = pci_save_state(pdev);
2234 if (err)
2235 return err;
2236
2237 pci_disable_device(pdev);
2238 pci_wake_from_d3(pdev, false);
2239 pci_set_power_state(pdev, PCI_D3hot);
2240
2241 return 0;
2242}
2243
2244#endif /* CONFIG_PM */
2245/**
2246 * fm10k_io_error_detected - called when PCI error is detected
2247 * @pdev: Pointer to PCI device
2248 * @state: The current pci connection state
2249 *
2250 * This function is called after a PCI bus error affecting
2251 * this device has been detected.
2252 */
2253static pci_ers_result_t fm10k_io_error_detected(struct pci_dev *pdev,
2254 pci_channel_state_t state)
2255{
2256 struct fm10k_intfc *interface = pci_get_drvdata(pdev);
2257 struct net_device *netdev = interface->netdev;
2258
2259 netif_device_detach(netdev);
2260
2261 if (state == pci_channel_io_perm_failure)
2262 return PCI_ERS_RESULT_DISCONNECT;
2263
2264 if (netif_running(netdev))
2265 fm10k_close(netdev);
2266
Jacob Keller875328e2015-10-16 10:56:59 -07002267 /* free interrupts */
2268 fm10k_clear_queueing_scheme(interface);
2269
Alexander Duyck19ae1b32014-09-20 19:50:27 -04002270 fm10k_mbx_free_irq(interface);
2271
2272 pci_disable_device(pdev);
2273
2274 /* Request a slot reset. */
2275 return PCI_ERS_RESULT_NEED_RESET;
2276}
2277
2278/**
2279 * fm10k_io_slot_reset - called after the pci bus has been reset.
2280 * @pdev: Pointer to PCI device
2281 *
2282 * Restart the card from scratch, as if from a cold-boot.
2283 */
2284static pci_ers_result_t fm10k_io_slot_reset(struct pci_dev *pdev)
2285{
2286 struct fm10k_intfc *interface = pci_get_drvdata(pdev);
2287 pci_ers_result_t result;
2288
2289 if (pci_enable_device_mem(pdev)) {
2290 dev_err(&pdev->dev,
2291 "Cannot re-enable PCI device after reset.\n");
2292 result = PCI_ERS_RESULT_DISCONNECT;
2293 } else {
2294 pci_set_master(pdev);
2295 pci_restore_state(pdev);
2296
2297 /* After second error pci->state_saved is false, this
2298 * resets it so EEH doesn't break.
2299 */
2300 pci_save_state(pdev);
2301
2302 pci_wake_from_d3(pdev, false);
2303
2304 /* refresh hw_addr in case it was dropped */
2305 interface->hw.hw_addr = interface->uc_addr;
2306
2307 interface->flags |= FM10K_FLAG_RESET_REQUESTED;
2308 fm10k_service_event_schedule(interface);
2309
2310 result = PCI_ERS_RESULT_RECOVERED;
2311 }
2312
2313 pci_cleanup_aer_uncorrect_error_status(pdev);
2314
2315 return result;
2316}
2317
2318/**
2319 * fm10k_io_resume - called when traffic can start flowing again.
2320 * @pdev: Pointer to PCI device
2321 *
2322 * This callback is called when the error recovery driver tells us that
2323 * its OK to resume normal operation.
2324 */
2325static void fm10k_io_resume(struct pci_dev *pdev)
2326{
2327 struct fm10k_intfc *interface = pci_get_drvdata(pdev);
2328 struct net_device *netdev = interface->netdev;
2329 struct fm10k_hw *hw = &interface->hw;
2330 int err = 0;
2331
2332 /* reset hardware to known state */
Jacob Keller1343c652015-10-16 10:56:58 -07002333 err = hw->mac.ops.init_hw(&interface->hw);
2334 if (err) {
2335 dev_err(&pdev->dev, "init_hw failed: %d\n", err);
2336 return;
2337 }
Alexander Duyck19ae1b32014-09-20 19:50:27 -04002338
2339 /* reset statistics starting values */
2340 hw->mac.ops.rebind_hw_stats(hw, &interface->stats);
2341
Jacob Keller875328e2015-10-16 10:56:59 -07002342 err = fm10k_init_queueing_scheme(interface);
2343 if (err) {
Bruce Allan3d02b3d2015-10-28 17:19:56 -07002344 dev_err(&interface->pdev->dev,
2345 "init_queueing_scheme failed: %d\n", err);
Jacob Keller875328e2015-10-16 10:56:59 -07002346 return;
2347 }
2348
Alexander Duyck19ae1b32014-09-20 19:50:27 -04002349 /* reassociate interrupts */
2350 fm10k_mbx_request_irq(interface);
2351
Alexander Duycka211e012014-09-20 19:54:07 -04002352 /* reset clock */
2353 fm10k_ts_reset(interface);
2354
Alexander Duyck19ae1b32014-09-20 19:50:27 -04002355 if (netif_running(netdev))
2356 err = fm10k_open(netdev);
2357
2358 /* final check of hardware state before registering the interface */
2359 err = err ? : fm10k_hw_ready(interface);
2360
2361 if (!err)
2362 netif_device_attach(netdev);
2363}
2364
2365static const struct pci_error_handlers fm10k_err_handler = {
2366 .error_detected = fm10k_io_error_detected,
2367 .slot_reset = fm10k_io_slot_reset,
2368 .resume = fm10k_io_resume,
2369};
2370
Alexander Duyckb3890e32014-09-20 19:46:05 -04002371static struct pci_driver fm10k_driver = {
2372 .name = fm10k_driver_name,
2373 .id_table = fm10k_pci_tbl,
2374 .probe = fm10k_probe,
2375 .remove = fm10k_remove,
Alexander Duyck19ae1b32014-09-20 19:50:27 -04002376#ifdef CONFIG_PM
2377 .suspend = fm10k_suspend,
2378 .resume = fm10k_resume,
2379#endif
Alexander Duyck883a9cc2014-09-20 19:52:09 -04002380 .sriov_configure = fm10k_iov_configure,
Alexander Duyck19ae1b32014-09-20 19:50:27 -04002381 .err_handler = &fm10k_err_handler
Alexander Duyckb3890e32014-09-20 19:46:05 -04002382};
2383
2384/**
2385 * fm10k_register_pci_driver - register driver interface
2386 *
2387 * This funciton is called on module load in order to register the driver.
2388 **/
2389int fm10k_register_pci_driver(void)
2390{
2391 return pci_register_driver(&fm10k_driver);
2392}
2393
2394/**
2395 * fm10k_unregister_pci_driver - unregister driver interface
2396 *
2397 * This funciton is called on module unload in order to remove the driver.
2398 **/
2399void fm10k_unregister_pci_driver(void)
2400{
2401 pci_unregister_driver(&fm10k_driver);
2402}