i40e: Add support to program FDir SB rules for VF from PF through ethtool
[deliverable/linux.git] / drivers / net / ethernet / intel / i40evf / i40evf_main.c
CommitLineData
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1/*******************************************************************************
2 *
3 * Intel Ethernet Controller XL710 Family Linux Virtual Function Driver
5b8eb176 4 * Copyright(c) 2013 - 2015 Intel Corporation.
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5 *
6 * This program is free software; you can redistribute it and/or modify it
7 * under the terms and conditions of the GNU General Public License,
8 * version 2, as published by the Free Software Foundation.
9 *
10 * This program is distributed in the hope it will be useful, but WITHOUT
11 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
12 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
13 * more details.
14 *
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15 * You should have received a copy of the GNU General Public License along
16 * with this program. If not, see <http://www.gnu.org/licenses/>.
17 *
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18 * The full GNU General Public License is included in this distribution in
19 * the file called "COPYING".
20 *
21 * Contact Information:
22 * e1000-devel Mailing List <e1000-devel@lists.sourceforge.net>
23 * Intel Corporation, 5200 N.E. Elam Young Parkway, Hillsboro, OR 97124-6497
24 *
25 ******************************************************************************/
26
27#include "i40evf.h"
28#include "i40e_prototype.h"
29static int i40evf_setup_all_tx_resources(struct i40evf_adapter *adapter);
30static int i40evf_setup_all_rx_resources(struct i40evf_adapter *adapter);
31static int i40evf_close(struct net_device *netdev);
32
33char i40evf_driver_name[] = "i40evf";
34static const char i40evf_driver_string[] =
0af56f44 35 "Intel(R) XL710/X710 Virtual Function Network Driver";
5eae00c5 36
ec7a06fd 37#define DRV_VERSION "1.2.25"
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38const char i40evf_driver_version[] = DRV_VERSION;
39static const char i40evf_copyright[] =
673f2ebf 40 "Copyright (c) 2013 - 2014 Intel Corporation.";
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41
42/* i40evf_pci_tbl - PCI Device ID Table
43 *
44 * Wildcard entries (PCI_ANY_ID) should come last
45 * Last entry must be all 0s
46 *
47 * { Vendor ID, Device ID, SubVendor ID, SubDevice ID,
48 * Class, Class Mask, private data (not used) }
49 */
9baa3c34 50static const struct pci_device_id i40evf_pci_tbl[] = {
ab60085e 51 {PCI_VDEVICE(INTEL, I40E_DEV_ID_VF), 0},
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52 /* required last entry */
53 {0, }
54};
55
56MODULE_DEVICE_TABLE(pci, i40evf_pci_tbl);
57
58MODULE_AUTHOR("Intel Corporation, <linux.nics@intel.com>");
59MODULE_DESCRIPTION("Intel(R) XL710 X710 Virtual Function Network Driver");
60MODULE_LICENSE("GPL");
61MODULE_VERSION(DRV_VERSION);
62
63/**
64 * i40evf_allocate_dma_mem_d - OS specific memory alloc for shared code
65 * @hw: pointer to the HW structure
66 * @mem: ptr to mem struct to fill out
67 * @size: size of memory requested
68 * @alignment: what to align the allocation to
69 **/
70i40e_status i40evf_allocate_dma_mem_d(struct i40e_hw *hw,
71 struct i40e_dma_mem *mem,
72 u64 size, u32 alignment)
73{
74 struct i40evf_adapter *adapter = (struct i40evf_adapter *)hw->back;
75
76 if (!mem)
77 return I40E_ERR_PARAM;
78
79 mem->size = ALIGN(size, alignment);
80 mem->va = dma_alloc_coherent(&adapter->pdev->dev, mem->size,
81 (dma_addr_t *)&mem->pa, GFP_KERNEL);
82 if (mem->va)
83 return 0;
84 else
85 return I40E_ERR_NO_MEMORY;
86}
87
88/**
89 * i40evf_free_dma_mem_d - OS specific memory free for shared code
90 * @hw: pointer to the HW structure
91 * @mem: ptr to mem struct to free
92 **/
93i40e_status i40evf_free_dma_mem_d(struct i40e_hw *hw, struct i40e_dma_mem *mem)
94{
95 struct i40evf_adapter *adapter = (struct i40evf_adapter *)hw->back;
96
97 if (!mem || !mem->va)
98 return I40E_ERR_PARAM;
99 dma_free_coherent(&adapter->pdev->dev, mem->size,
100 mem->va, (dma_addr_t)mem->pa);
101 return 0;
102}
103
104/**
105 * i40evf_allocate_virt_mem_d - OS specific memory alloc for shared code
106 * @hw: pointer to the HW structure
107 * @mem: ptr to mem struct to fill out
108 * @size: size of memory requested
109 **/
110i40e_status i40evf_allocate_virt_mem_d(struct i40e_hw *hw,
111 struct i40e_virt_mem *mem, u32 size)
112{
113 if (!mem)
114 return I40E_ERR_PARAM;
115
116 mem->size = size;
117 mem->va = kzalloc(size, GFP_KERNEL);
118
119 if (mem->va)
120 return 0;
121 else
122 return I40E_ERR_NO_MEMORY;
123}
124
125/**
126 * i40evf_free_virt_mem_d - OS specific memory free for shared code
127 * @hw: pointer to the HW structure
128 * @mem: ptr to mem struct to free
129 **/
130i40e_status i40evf_free_virt_mem_d(struct i40e_hw *hw,
131 struct i40e_virt_mem *mem)
132{
133 if (!mem)
134 return I40E_ERR_PARAM;
135
136 /* it's ok to kfree a NULL pointer */
137 kfree(mem->va);
138
139 return 0;
140}
141
142/**
143 * i40evf_debug_d - OS dependent version of debug printing
144 * @hw: pointer to the HW structure
145 * @mask: debug level mask
146 * @fmt_str: printf-type format description
147 **/
148void i40evf_debug_d(void *hw, u32 mask, char *fmt_str, ...)
149{
150 char buf[512];
151 va_list argptr;
152
153 if (!(mask & ((struct i40e_hw *)hw)->debug_mask))
154 return;
155
156 va_start(argptr, fmt_str);
157 vsnprintf(buf, sizeof(buf), fmt_str, argptr);
158 va_end(argptr);
159
160 /* the debug string is already formatted with a newline */
161 pr_info("%s", buf);
162}
163
164/**
165 * i40evf_tx_timeout - Respond to a Tx Hang
166 * @netdev: network interface device structure
167 **/
168static void i40evf_tx_timeout(struct net_device *netdev)
169{
170 struct i40evf_adapter *adapter = netdev_priv(netdev);
171
172 adapter->tx_timeout_count++;
625777e3 173 if (!(adapter->flags & I40EVF_FLAG_RESET_PENDING)) {
3526d800 174 adapter->flags |= I40EVF_FLAG_RESET_NEEDED;
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175 schedule_work(&adapter->reset_task);
176 }
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177}
178
179/**
180 * i40evf_misc_irq_disable - Mask off interrupt generation on the NIC
181 * @adapter: board private structure
182 **/
183static void i40evf_misc_irq_disable(struct i40evf_adapter *adapter)
184{
185 struct i40e_hw *hw = &adapter->hw;
75a64435 186
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187 wr32(hw, I40E_VFINT_DYN_CTL01, 0);
188
189 /* read flush */
190 rd32(hw, I40E_VFGEN_RSTAT);
191
192 synchronize_irq(adapter->msix_entries[0].vector);
193}
194
195/**
196 * i40evf_misc_irq_enable - Enable default interrupt generation settings
197 * @adapter: board private structure
198 **/
199static void i40evf_misc_irq_enable(struct i40evf_adapter *adapter)
200{
201 struct i40e_hw *hw = &adapter->hw;
75a64435 202
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203 wr32(hw, I40E_VFINT_DYN_CTL01, I40E_VFINT_DYN_CTL01_INTENA_MASK |
204 I40E_VFINT_DYN_CTL01_ITR_INDX_MASK);
205 wr32(hw, I40E_VFINT_ICR0_ENA1, I40E_VFINT_ICR0_ENA_ADMINQ_MASK);
206
207 /* read flush */
208 rd32(hw, I40E_VFGEN_RSTAT);
209}
210
211/**
212 * i40evf_irq_disable - Mask off interrupt generation on the NIC
213 * @adapter: board private structure
214 **/
215static void i40evf_irq_disable(struct i40evf_adapter *adapter)
216{
217 int i;
218 struct i40e_hw *hw = &adapter->hw;
219
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220 if (!adapter->msix_entries)
221 return;
222
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223 for (i = 1; i < adapter->num_msix_vectors; i++) {
224 wr32(hw, I40E_VFINT_DYN_CTLN1(i - 1), 0);
225 synchronize_irq(adapter->msix_entries[i].vector);
226 }
227 /* read flush */
228 rd32(hw, I40E_VFGEN_RSTAT);
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229}
230
231/**
232 * i40evf_irq_enable_queues - Enable interrupt for specified queues
233 * @adapter: board private structure
234 * @mask: bitmap of queues to enable
235 **/
236void i40evf_irq_enable_queues(struct i40evf_adapter *adapter, u32 mask)
237{
238 struct i40e_hw *hw = &adapter->hw;
239 int i;
240
241 for (i = 1; i < adapter->num_msix_vectors; i++) {
242 if (mask & (1 << (i - 1))) {
243 wr32(hw, I40E_VFINT_DYN_CTLN1(i - 1),
244 I40E_VFINT_DYN_CTLN1_INTENA_MASK |
97bf75f1 245 I40E_VFINT_DYN_CTLN1_ITR_INDX_MASK |
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246 I40E_VFINT_DYN_CTLN_CLEARPBA_MASK);
247 }
248 }
249}
250
251/**
252 * i40evf_fire_sw_int - Generate SW interrupt for specified vectors
253 * @adapter: board private structure
254 * @mask: bitmap of vectors to trigger
255 **/
75a64435 256static void i40evf_fire_sw_int(struct i40evf_adapter *adapter, u32 mask)
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257{
258 struct i40e_hw *hw = &adapter->hw;
259 int i;
260 uint32_t dyn_ctl;
261
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262 if (mask & 1) {
263 dyn_ctl = rd32(hw, I40E_VFINT_DYN_CTL01);
264 dyn_ctl |= I40E_VFINT_DYN_CTLN_SWINT_TRIG_MASK |
97bf75f1 265 I40E_VFINT_DYN_CTLN1_ITR_INDX_MASK |
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266 I40E_VFINT_DYN_CTLN_CLEARPBA_MASK;
267 wr32(hw, I40E_VFINT_DYN_CTL01, dyn_ctl);
268 }
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269 for (i = 1; i < adapter->num_msix_vectors; i++) {
270 if (mask & (1 << i)) {
271 dyn_ctl = rd32(hw, I40E_VFINT_DYN_CTLN1(i - 1));
272 dyn_ctl |= I40E_VFINT_DYN_CTLN_SWINT_TRIG_MASK |
97bf75f1 273 I40E_VFINT_DYN_CTLN1_ITR_INDX_MASK |
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274 I40E_VFINT_DYN_CTLN_CLEARPBA_MASK;
275 wr32(hw, I40E_VFINT_DYN_CTLN1(i - 1), dyn_ctl);
276 }
277 }
278}
279
280/**
281 * i40evf_irq_enable - Enable default interrupt generation settings
282 * @adapter: board private structure
283 **/
284void i40evf_irq_enable(struct i40evf_adapter *adapter, bool flush)
285{
286 struct i40e_hw *hw = &adapter->hw;
287
164ec1bf 288 i40evf_misc_irq_enable(adapter);
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289 i40evf_irq_enable_queues(adapter, ~0);
290
291 if (flush)
292 rd32(hw, I40E_VFGEN_RSTAT);
293}
294
295/**
296 * i40evf_msix_aq - Interrupt handler for vector 0
297 * @irq: interrupt number
298 * @data: pointer to netdev
299 **/
300static irqreturn_t i40evf_msix_aq(int irq, void *data)
301{
302 struct net_device *netdev = data;
303 struct i40evf_adapter *adapter = netdev_priv(netdev);
304 struct i40e_hw *hw = &adapter->hw;
305 u32 val;
306 u32 ena_mask;
307
308 /* handle non-queue interrupts */
309 val = rd32(hw, I40E_VFINT_ICR01);
310 ena_mask = rd32(hw, I40E_VFINT_ICR0_ENA1);
311
312
313 val = rd32(hw, I40E_VFINT_DYN_CTL01);
314 val = val | I40E_PFINT_DYN_CTL0_CLEARPBA_MASK;
315 wr32(hw, I40E_VFINT_DYN_CTL01, val);
316
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317 /* schedule work on the private workqueue */
318 schedule_work(&adapter->adminq_task);
319
320 return IRQ_HANDLED;
321}
322
323/**
324 * i40evf_msix_clean_rings - MSIX mode Interrupt Handler
325 * @irq: interrupt number
326 * @data: pointer to a q_vector
327 **/
328static irqreturn_t i40evf_msix_clean_rings(int irq, void *data)
329{
330 struct i40e_q_vector *q_vector = data;
331
332 if (!q_vector->tx.ring && !q_vector->rx.ring)
333 return IRQ_HANDLED;
334
335 napi_schedule(&q_vector->napi);
336
337 return IRQ_HANDLED;
338}
339
340/**
341 * i40evf_map_vector_to_rxq - associate irqs with rx queues
342 * @adapter: board private structure
343 * @v_idx: interrupt number
344 * @r_idx: queue number
345 **/
346static void
347i40evf_map_vector_to_rxq(struct i40evf_adapter *adapter, int v_idx, int r_idx)
348{
349 struct i40e_q_vector *q_vector = adapter->q_vector[v_idx];
350 struct i40e_ring *rx_ring = adapter->rx_rings[r_idx];
351
352 rx_ring->q_vector = q_vector;
353 rx_ring->next = q_vector->rx.ring;
354 rx_ring->vsi = &adapter->vsi;
355 q_vector->rx.ring = rx_ring;
356 q_vector->rx.count++;
357 q_vector->rx.latency_range = I40E_LOW_LATENCY;
358}
359
360/**
361 * i40evf_map_vector_to_txq - associate irqs with tx queues
362 * @adapter: board private structure
363 * @v_idx: interrupt number
364 * @t_idx: queue number
365 **/
366static void
367i40evf_map_vector_to_txq(struct i40evf_adapter *adapter, int v_idx, int t_idx)
368{
369 struct i40e_q_vector *q_vector = adapter->q_vector[v_idx];
370 struct i40e_ring *tx_ring = adapter->tx_rings[t_idx];
371
372 tx_ring->q_vector = q_vector;
373 tx_ring->next = q_vector->tx.ring;
374 tx_ring->vsi = &adapter->vsi;
375 q_vector->tx.ring = tx_ring;
376 q_vector->tx.count++;
377 q_vector->tx.latency_range = I40E_LOW_LATENCY;
378 q_vector->num_ringpairs++;
379 q_vector->ring_mask |= (1 << t_idx);
380}
381
382/**
383 * i40evf_map_rings_to_vectors - Maps descriptor rings to vectors
384 * @adapter: board private structure to initialize
385 *
386 * This function maps descriptor rings to the queue-specific vectors
387 * we were allotted through the MSI-X enabling code. Ideally, we'd have
388 * one vector per ring/queue, but on a constrained vector budget, we
389 * group the rings as "efficiently" as possible. You would add new
390 * mapping configurations in here.
391 **/
392static int i40evf_map_rings_to_vectors(struct i40evf_adapter *adapter)
393{
394 int q_vectors;
395 int v_start = 0;
396 int rxr_idx = 0, txr_idx = 0;
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397 int rxr_remaining = adapter->num_active_queues;
398 int txr_remaining = adapter->num_active_queues;
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399 int i, j;
400 int rqpv, tqpv;
401 int err = 0;
402
403 q_vectors = adapter->num_msix_vectors - NONQ_VECS;
404
405 /* The ideal configuration...
406 * We have enough vectors to map one per queue.
407 */
408 if (q_vectors == (rxr_remaining * 2)) {
409 for (; rxr_idx < rxr_remaining; v_start++, rxr_idx++)
410 i40evf_map_vector_to_rxq(adapter, v_start, rxr_idx);
411
412 for (; txr_idx < txr_remaining; v_start++, txr_idx++)
413 i40evf_map_vector_to_txq(adapter, v_start, txr_idx);
414 goto out;
415 }
416
417 /* If we don't have enough vectors for a 1-to-1
418 * mapping, we'll have to group them so there are
419 * multiple queues per vector.
420 * Re-adjusting *qpv takes care of the remainder.
421 */
422 for (i = v_start; i < q_vectors; i++) {
423 rqpv = DIV_ROUND_UP(rxr_remaining, q_vectors - i);
424 for (j = 0; j < rqpv; j++) {
425 i40evf_map_vector_to_rxq(adapter, i, rxr_idx);
426 rxr_idx++;
427 rxr_remaining--;
428 }
429 }
430 for (i = v_start; i < q_vectors; i++) {
431 tqpv = DIV_ROUND_UP(txr_remaining, q_vectors - i);
432 for (j = 0; j < tqpv; j++) {
433 i40evf_map_vector_to_txq(adapter, i, txr_idx);
434 txr_idx++;
435 txr_remaining--;
436 }
437 }
438
439out:
440 adapter->aq_required |= I40EVF_FLAG_AQ_MAP_VECTORS;
441
442 return err;
443}
444
445/**
446 * i40evf_request_traffic_irqs - Initialize MSI-X interrupts
447 * @adapter: board private structure
448 *
449 * Allocates MSI-X vectors for tx and rx handling, and requests
450 * interrupts from the kernel.
451 **/
452static int
453i40evf_request_traffic_irqs(struct i40evf_adapter *adapter, char *basename)
454{
455 int vector, err, q_vectors;
456 int rx_int_idx = 0, tx_int_idx = 0;
457
458 i40evf_irq_disable(adapter);
459 /* Decrement for Other and TCP Timer vectors */
460 q_vectors = adapter->num_msix_vectors - NONQ_VECS;
461
462 for (vector = 0; vector < q_vectors; vector++) {
463 struct i40e_q_vector *q_vector = adapter->q_vector[vector];
464
465 if (q_vector->tx.ring && q_vector->rx.ring) {
466 snprintf(q_vector->name, sizeof(q_vector->name) - 1,
467 "i40evf-%s-%s-%d", basename,
468 "TxRx", rx_int_idx++);
469 tx_int_idx++;
470 } else if (q_vector->rx.ring) {
471 snprintf(q_vector->name, sizeof(q_vector->name) - 1,
472 "i40evf-%s-%s-%d", basename,
473 "rx", rx_int_idx++);
474 } else if (q_vector->tx.ring) {
475 snprintf(q_vector->name, sizeof(q_vector->name) - 1,
476 "i40evf-%s-%s-%d", basename,
477 "tx", tx_int_idx++);
478 } else {
479 /* skip this unused q_vector */
480 continue;
481 }
482 err = request_irq(
483 adapter->msix_entries[vector + NONQ_VECS].vector,
484 i40evf_msix_clean_rings,
485 0,
486 q_vector->name,
487 q_vector);
488 if (err) {
489 dev_info(&adapter->pdev->dev,
490 "%s: request_irq failed, error: %d\n",
491 __func__, err);
492 goto free_queue_irqs;
493 }
494 /* assign the mask for this irq */
495 irq_set_affinity_hint(
496 adapter->msix_entries[vector + NONQ_VECS].vector,
497 q_vector->affinity_mask);
498 }
499
500 return 0;
501
502free_queue_irqs:
503 while (vector) {
504 vector--;
505 irq_set_affinity_hint(
506 adapter->msix_entries[vector + NONQ_VECS].vector,
507 NULL);
508 free_irq(adapter->msix_entries[vector + NONQ_VECS].vector,
509 adapter->q_vector[vector]);
510 }
511 return err;
512}
513
514/**
515 * i40evf_request_misc_irq - Initialize MSI-X interrupts
516 * @adapter: board private structure
517 *
518 * Allocates MSI-X vector 0 and requests interrupts from the kernel. This
519 * vector is only for the admin queue, and stays active even when the netdev
520 * is closed.
521 **/
522static int i40evf_request_misc_irq(struct i40evf_adapter *adapter)
523{
524 struct net_device *netdev = adapter->netdev;
525 int err;
526
b39c1e2c 527 snprintf(adapter->misc_vector_name,
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528 sizeof(adapter->misc_vector_name) - 1, "i40evf-%s:mbx",
529 dev_name(&adapter->pdev->dev));
5eae00c5 530 err = request_irq(adapter->msix_entries[0].vector,
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531 &i40evf_msix_aq, 0,
532 adapter->misc_vector_name, netdev);
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533 if (err) {
534 dev_err(&adapter->pdev->dev,
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535 "request_irq for %s failed: %d\n",
536 adapter->misc_vector_name, err);
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537 free_irq(adapter->msix_entries[0].vector, netdev);
538 }
539 return err;
540}
541
542/**
543 * i40evf_free_traffic_irqs - Free MSI-X interrupts
544 * @adapter: board private structure
545 *
546 * Frees all MSI-X vectors other than 0.
547 **/
548static void i40evf_free_traffic_irqs(struct i40evf_adapter *adapter)
549{
550 int i;
551 int q_vectors;
75a64435 552
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553 q_vectors = adapter->num_msix_vectors - NONQ_VECS;
554
555 for (i = 0; i < q_vectors; i++) {
556 irq_set_affinity_hint(adapter->msix_entries[i+1].vector,
557 NULL);
558 free_irq(adapter->msix_entries[i+1].vector,
559 adapter->q_vector[i]);
560 }
561}
562
563/**
564 * i40evf_free_misc_irq - Free MSI-X miscellaneous vector
565 * @adapter: board private structure
566 *
567 * Frees MSI-X vector 0.
568 **/
569static void i40evf_free_misc_irq(struct i40evf_adapter *adapter)
570{
571 struct net_device *netdev = adapter->netdev;
572
573 free_irq(adapter->msix_entries[0].vector, netdev);
574}
575
576/**
577 * i40evf_configure_tx - Configure Transmit Unit after Reset
578 * @adapter: board private structure
579 *
580 * Configure the Tx unit of the MAC after a reset.
581 **/
582static void i40evf_configure_tx(struct i40evf_adapter *adapter)
583{
584 struct i40e_hw *hw = &adapter->hw;
585 int i;
75a64435 586
cc052927 587 for (i = 0; i < adapter->num_active_queues; i++)
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588 adapter->tx_rings[i]->tail = hw->hw_addr + I40E_QTX_TAIL1(i);
589}
590
591/**
592 * i40evf_configure_rx - Configure Receive Unit after Reset
593 * @adapter: board private structure
594 *
595 * Configure the Rx unit of the MAC after a reset.
596 **/
597static void i40evf_configure_rx(struct i40evf_adapter *adapter)
598{
599 struct i40e_hw *hw = &adapter->hw;
600 struct net_device *netdev = adapter->netdev;
601 int max_frame = netdev->mtu + ETH_HLEN + ETH_FCS_LEN;
602 int i;
603 int rx_buf_len;
604
605
606 adapter->flags &= ~I40EVF_FLAG_RX_PS_CAPABLE;
607 adapter->flags |= I40EVF_FLAG_RX_1BUF_CAPABLE;
608
609 /* Decide whether to use packet split mode or not */
610 if (netdev->mtu > ETH_DATA_LEN) {
611 if (adapter->flags & I40EVF_FLAG_RX_PS_CAPABLE)
612 adapter->flags |= I40EVF_FLAG_RX_PS_ENABLED;
613 else
614 adapter->flags &= ~I40EVF_FLAG_RX_PS_ENABLED;
615 } else {
616 if (adapter->flags & I40EVF_FLAG_RX_1BUF_CAPABLE)
617 adapter->flags &= ~I40EVF_FLAG_RX_PS_ENABLED;
618 else
619 adapter->flags |= I40EVF_FLAG_RX_PS_ENABLED;
620 }
621
622 /* Set the RX buffer length according to the mode */
623 if (adapter->flags & I40EVF_FLAG_RX_PS_ENABLED) {
624 rx_buf_len = I40E_RX_HDR_SIZE;
625 } else {
626 if (netdev->mtu <= ETH_DATA_LEN)
627 rx_buf_len = I40EVF_RXBUFFER_2048;
628 else
629 rx_buf_len = ALIGN(max_frame, 1024);
630 }
631
cc052927 632 for (i = 0; i < adapter->num_active_queues; i++) {
5eae00c5
GR
633 adapter->rx_rings[i]->tail = hw->hw_addr + I40E_QRX_TAIL1(i);
634 adapter->rx_rings[i]->rx_buf_len = rx_buf_len;
635 }
636}
637
638/**
639 * i40evf_find_vlan - Search filter list for specific vlan filter
640 * @adapter: board private structure
641 * @vlan: vlan tag
642 *
643 * Returns ptr to the filter object or NULL
644 **/
645static struct
646i40evf_vlan_filter *i40evf_find_vlan(struct i40evf_adapter *adapter, u16 vlan)
647{
648 struct i40evf_vlan_filter *f;
649
650 list_for_each_entry(f, &adapter->vlan_filter_list, list) {
651 if (vlan == f->vlan)
652 return f;
653 }
654 return NULL;
655}
656
657/**
658 * i40evf_add_vlan - Add a vlan filter to the list
659 * @adapter: board private structure
660 * @vlan: VLAN tag
661 *
662 * Returns ptr to the filter object or NULL when no memory available.
663 **/
664static struct
665i40evf_vlan_filter *i40evf_add_vlan(struct i40evf_adapter *adapter, u16 vlan)
666{
13acb546
MW
667 struct i40evf_vlan_filter *f = NULL;
668 int count = 50;
669
670 while (test_and_set_bit(__I40EVF_IN_CRITICAL_TASK,
671 &adapter->crit_section)) {
672 udelay(1);
673 if (--count == 0)
674 goto out;
675 }
5eae00c5
GR
676
677 f = i40evf_find_vlan(adapter, vlan);
348d4994 678 if (!f) {
5eae00c5 679 f = kzalloc(sizeof(*f), GFP_ATOMIC);
348d4994 680 if (!f)
13acb546 681 goto clearout;
249c8b8d 682
5eae00c5
GR
683 f->vlan = vlan;
684
685 INIT_LIST_HEAD(&f->list);
686 list_add(&f->list, &adapter->vlan_filter_list);
687 f->add = true;
688 adapter->aq_required |= I40EVF_FLAG_AQ_ADD_VLAN_FILTER;
689 }
690
13acb546
MW
691clearout:
692 clear_bit(__I40EVF_IN_CRITICAL_TASK, &adapter->crit_section);
693out:
5eae00c5
GR
694 return f;
695}
696
697/**
698 * i40evf_del_vlan - Remove a vlan filter from the list
699 * @adapter: board private structure
700 * @vlan: VLAN tag
701 **/
702static void i40evf_del_vlan(struct i40evf_adapter *adapter, u16 vlan)
703{
704 struct i40evf_vlan_filter *f;
13acb546
MW
705 int count = 50;
706
707 while (test_and_set_bit(__I40EVF_IN_CRITICAL_TASK,
708 &adapter->crit_section)) {
709 udelay(1);
710 if (--count == 0)
711 return;
712 }
5eae00c5
GR
713
714 f = i40evf_find_vlan(adapter, vlan);
715 if (f) {
716 f->remove = true;
717 adapter->aq_required |= I40EVF_FLAG_AQ_DEL_VLAN_FILTER;
718 }
13acb546 719 clear_bit(__I40EVF_IN_CRITICAL_TASK, &adapter->crit_section);
5eae00c5
GR
720}
721
722/**
723 * i40evf_vlan_rx_add_vid - Add a VLAN filter to a device
724 * @netdev: network device struct
725 * @vid: VLAN tag
726 **/
727static int i40evf_vlan_rx_add_vid(struct net_device *netdev,
75a64435 728 __always_unused __be16 proto, u16 vid)
5eae00c5
GR
729{
730 struct i40evf_adapter *adapter = netdev_priv(netdev);
731
732 if (i40evf_add_vlan(adapter, vid) == NULL)
733 return -ENOMEM;
734 return 0;
735}
736
737/**
738 * i40evf_vlan_rx_kill_vid - Remove a VLAN filter from a device
739 * @netdev: network device struct
740 * @vid: VLAN tag
741 **/
742static int i40evf_vlan_rx_kill_vid(struct net_device *netdev,
75a64435 743 __always_unused __be16 proto, u16 vid)
5eae00c5
GR
744{
745 struct i40evf_adapter *adapter = netdev_priv(netdev);
746
747 i40evf_del_vlan(adapter, vid);
748 return 0;
749}
750
751/**
752 * i40evf_find_filter - Search filter list for specific mac filter
753 * @adapter: board private structure
754 * @macaddr: the MAC address
755 *
756 * Returns ptr to the filter object or NULL
757 **/
758static struct
759i40evf_mac_filter *i40evf_find_filter(struct i40evf_adapter *adapter,
760 u8 *macaddr)
761{
762 struct i40evf_mac_filter *f;
763
764 if (!macaddr)
765 return NULL;
766
767 list_for_each_entry(f, &adapter->mac_filter_list, list) {
768 if (ether_addr_equal(macaddr, f->macaddr))
769 return f;
770 }
771 return NULL;
772}
773
774/**
775 * i40e_add_filter - Add a mac filter to the filter list
776 * @adapter: board private structure
777 * @macaddr: the MAC address
778 *
779 * Returns ptr to the filter object or NULL when no memory available.
780 **/
781static struct
782i40evf_mac_filter *i40evf_add_filter(struct i40evf_adapter *adapter,
783 u8 *macaddr)
784{
785 struct i40evf_mac_filter *f;
54e16f64 786 int count = 50;
5eae00c5
GR
787
788 if (!macaddr)
789 return NULL;
790
791 while (test_and_set_bit(__I40EVF_IN_CRITICAL_TASK,
54e16f64 792 &adapter->crit_section)) {
b65476cd 793 udelay(1);
54e16f64
MW
794 if (--count == 0)
795 return NULL;
796 }
5eae00c5
GR
797
798 f = i40evf_find_filter(adapter, macaddr);
348d4994 799 if (!f) {
5eae00c5 800 f = kzalloc(sizeof(*f), GFP_ATOMIC);
348d4994 801 if (!f) {
5eae00c5
GR
802 clear_bit(__I40EVF_IN_CRITICAL_TASK,
803 &adapter->crit_section);
804 return NULL;
805 }
806
9a173901 807 ether_addr_copy(f->macaddr, macaddr);
5eae00c5
GR
808
809 list_add(&f->list, &adapter->mac_filter_list);
810 f->add = true;
811 adapter->aq_required |= I40EVF_FLAG_AQ_ADD_MAC_FILTER;
812 }
813
814 clear_bit(__I40EVF_IN_CRITICAL_TASK, &adapter->crit_section);
815 return f;
816}
817
818/**
819 * i40evf_set_mac - NDO callback to set port mac address
820 * @netdev: network interface device structure
821 * @p: pointer to an address structure
822 *
823 * Returns 0 on success, negative on failure
824 **/
825static int i40evf_set_mac(struct net_device *netdev, void *p)
826{
827 struct i40evf_adapter *adapter = netdev_priv(netdev);
828 struct i40e_hw *hw = &adapter->hw;
829 struct i40evf_mac_filter *f;
830 struct sockaddr *addr = p;
831
832 if (!is_valid_ether_addr(addr->sa_data))
833 return -EADDRNOTAVAIL;
834
835 if (ether_addr_equal(netdev->dev_addr, addr->sa_data))
836 return 0;
837
838 f = i40evf_add_filter(adapter, addr->sa_data);
839 if (f) {
9a173901
GR
840 ether_addr_copy(hw->mac.addr, addr->sa_data);
841 ether_addr_copy(netdev->dev_addr, adapter->hw.mac.addr);
5eae00c5
GR
842 }
843
844 return (f == NULL) ? -ENOMEM : 0;
845}
846
847/**
848 * i40evf_set_rx_mode - NDO callback to set the netdev filters
849 * @netdev: network interface device structure
850 **/
851static void i40evf_set_rx_mode(struct net_device *netdev)
852{
853 struct i40evf_adapter *adapter = netdev_priv(netdev);
854 struct i40evf_mac_filter *f, *ftmp;
855 struct netdev_hw_addr *uca;
856 struct netdev_hw_addr *mca;
54e16f64 857 int count = 50;
5eae00c5
GR
858
859 /* add addr if not already in the filter list */
860 netdev_for_each_uc_addr(uca, netdev) {
861 i40evf_add_filter(adapter, uca->addr);
862 }
863 netdev_for_each_mc_addr(mca, netdev) {
864 i40evf_add_filter(adapter, mca->addr);
865 }
866
867 while (test_and_set_bit(__I40EVF_IN_CRITICAL_TASK,
54e16f64 868 &adapter->crit_section)) {
b65476cd 869 udelay(1);
54e16f64
MW
870 if (--count == 0) {
871 dev_err(&adapter->pdev->dev,
872 "Failed to get lock in %s\n", __func__);
873 return;
874 }
875 }
5eae00c5
GR
876 /* remove filter if not in netdev list */
877 list_for_each_entry_safe(f, ftmp, &adapter->mac_filter_list, list) {
878 bool found = false;
879
dc5f2de6 880 if (is_multicast_ether_addr(f->macaddr)) {
5eae00c5
GR
881 netdev_for_each_mc_addr(mca, netdev) {
882 if (ether_addr_equal(mca->addr, f->macaddr)) {
883 found = true;
884 break;
885 }
886 }
887 } else {
888 netdev_for_each_uc_addr(uca, netdev) {
889 if (ether_addr_equal(uca->addr, f->macaddr)) {
890 found = true;
891 break;
892 }
893 }
894 }
895 if (found) {
896 f->remove = true;
897 adapter->aq_required |= I40EVF_FLAG_AQ_DEL_MAC_FILTER;
898 }
899 }
900 clear_bit(__I40EVF_IN_CRITICAL_TASK, &adapter->crit_section);
901}
902
903/**
904 * i40evf_napi_enable_all - enable NAPI on all queue vectors
905 * @adapter: board private structure
906 **/
907static void i40evf_napi_enable_all(struct i40evf_adapter *adapter)
908{
909 int q_idx;
910 struct i40e_q_vector *q_vector;
911 int q_vectors = adapter->num_msix_vectors - NONQ_VECS;
912
913 for (q_idx = 0; q_idx < q_vectors; q_idx++) {
914 struct napi_struct *napi;
75a64435 915
5eae00c5
GR
916 q_vector = adapter->q_vector[q_idx];
917 napi = &q_vector->napi;
918 napi_enable(napi);
919 }
920}
921
922/**
923 * i40evf_napi_disable_all - disable NAPI on all queue vectors
924 * @adapter: board private structure
925 **/
926static void i40evf_napi_disable_all(struct i40evf_adapter *adapter)
927{
928 int q_idx;
929 struct i40e_q_vector *q_vector;
930 int q_vectors = adapter->num_msix_vectors - NONQ_VECS;
931
932 for (q_idx = 0; q_idx < q_vectors; q_idx++) {
933 q_vector = adapter->q_vector[q_idx];
934 napi_disable(&q_vector->napi);
935 }
936}
937
938/**
939 * i40evf_configure - set up transmit and receive data structures
940 * @adapter: board private structure
941 **/
942static void i40evf_configure(struct i40evf_adapter *adapter)
943{
944 struct net_device *netdev = adapter->netdev;
945 int i;
946
947 i40evf_set_rx_mode(netdev);
948
949 i40evf_configure_tx(adapter);
950 i40evf_configure_rx(adapter);
951 adapter->aq_required |= I40EVF_FLAG_AQ_CONFIGURE_QUEUES;
952
cc052927 953 for (i = 0; i < adapter->num_active_queues; i++) {
5eae00c5 954 struct i40e_ring *ring = adapter->rx_rings[i];
75a64435 955
a132af24 956 i40evf_alloc_rx_buffers_1buf(ring, ring->count);
5eae00c5
GR
957 ring->next_to_use = ring->count - 1;
958 writel(ring->next_to_use, ring->tail);
959 }
960}
961
962/**
963 * i40evf_up_complete - Finish the last steps of bringing up a connection
964 * @adapter: board private structure
965 **/
966static int i40evf_up_complete(struct i40evf_adapter *adapter)
967{
968 adapter->state = __I40EVF_RUNNING;
969 clear_bit(__I40E_DOWN, &adapter->vsi.state);
970
971 i40evf_napi_enable_all(adapter);
972
973 adapter->aq_required |= I40EVF_FLAG_AQ_ENABLE_QUEUES;
974 mod_timer_pending(&adapter->watchdog_timer, jiffies + 1);
975 return 0;
976}
977
5eae00c5
GR
978/**
979 * i40e_down - Shutdown the connection processing
980 * @adapter: board private structure
981 **/
982void i40evf_down(struct i40evf_adapter *adapter)
983{
984 struct net_device *netdev = adapter->netdev;
985 struct i40evf_mac_filter *f;
986
ddf0b3a6
MW
987 if (adapter->state == __I40EVF_DOWN)
988 return;
989
53d0b3ae
MW
990 while (test_and_set_bit(__I40EVF_IN_CRITICAL_TASK,
991 &adapter->crit_section))
992 usleep_range(500, 1000);
993
63e18c25
MW
994 netif_carrier_off(netdev);
995 netif_tx_disable(netdev);
748c434b 996 i40evf_napi_disable_all(adapter);
63e18c25 997 i40evf_irq_disable(adapter);
53d0b3ae 998
ef8693eb 999 /* remove all MAC filters */
5eae00c5
GR
1000 list_for_each_entry(f, &adapter->mac_filter_list, list) {
1001 f->remove = true;
1002 }
ed1f5b58
MW
1003 /* remove all VLAN filters */
1004 list_for_each_entry(f, &adapter->vlan_filter_list, list) {
1005 f->remove = true;
1006 }
ef8693eb
MW
1007 if (!(adapter->flags & I40EVF_FLAG_PF_COMMS_FAILED) &&
1008 adapter->state != __I40EVF_RESETTING) {
53d0b3ae
MW
1009 /* cancel any current operation */
1010 adapter->current_op = I40E_VIRTCHNL_OP_UNKNOWN;
1011 adapter->aq_pending = 0;
1012 /* Schedule operations to close down the HW. Don't wait
1013 * here for this to complete. The watchdog is still running
1014 * and it will take care of this.
1015 */
1016 adapter->aq_required = I40EVF_FLAG_AQ_DEL_MAC_FILTER;
ed1f5b58 1017 adapter->aq_required |= I40EVF_FLAG_AQ_DEL_VLAN_FILTER;
ef8693eb 1018 adapter->aq_required |= I40EVF_FLAG_AQ_DISABLE_QUEUES;
ef8693eb 1019 }
5eae00c5 1020
53d0b3ae 1021 clear_bit(__I40EVF_IN_CRITICAL_TASK, &adapter->crit_section);
5eae00c5
GR
1022}
1023
1024/**
1025 * i40evf_acquire_msix_vectors - Setup the MSIX capability
1026 * @adapter: board private structure
1027 * @vectors: number of vectors to request
1028 *
1029 * Work with the OS to set up the MSIX vectors needed.
1030 *
1031 * Returns 0 on success, negative on failure
1032 **/
1033static int
1034i40evf_acquire_msix_vectors(struct i40evf_adapter *adapter, int vectors)
1035{
1036 int err, vector_threshold;
1037
1038 /* We'll want at least 3 (vector_threshold):
1039 * 0) Other (Admin Queue and link, mostly)
1040 * 1) TxQ[0] Cleanup
1041 * 2) RxQ[0] Cleanup
1042 */
1043 vector_threshold = MIN_MSIX_COUNT;
1044
1045 /* The more we get, the more we will assign to Tx/Rx Cleanup
1046 * for the separate queues...where Rx Cleanup >= Tx Cleanup.
1047 * Right now, we simply care about how many we'll get; we'll
1048 * set them up later while requesting irq's.
1049 */
fc2f2f5d
AG
1050 err = pci_enable_msix_range(adapter->pdev, adapter->msix_entries,
1051 vector_threshold, vectors);
1052 if (err < 0) {
80e72893 1053 dev_err(&adapter->pdev->dev, "Unable to allocate MSI-X interrupts\n");
5eae00c5
GR
1054 kfree(adapter->msix_entries);
1055 adapter->msix_entries = NULL;
fc2f2f5d 1056 return err;
5eae00c5 1057 }
fc2f2f5d
AG
1058
1059 /* Adjust for only the vectors we'll use, which is minimum
1060 * of max_msix_q_vectors + NONQ_VECS, or the number of
1061 * vectors we were allocated.
1062 */
1063 adapter->num_msix_vectors = err;
1064 return 0;
5eae00c5
GR
1065}
1066
1067/**
1068 * i40evf_free_queues - Free memory for all rings
1069 * @adapter: board private structure to initialize
1070 *
1071 * Free all of the memory associated with queue pairs.
1072 **/
1073static void i40evf_free_queues(struct i40evf_adapter *adapter)
1074{
1075 int i;
1076
1077 if (!adapter->vsi_res)
1078 return;
cc052927 1079 for (i = 0; i < adapter->num_active_queues; i++) {
5eae00c5
GR
1080 if (adapter->tx_rings[i])
1081 kfree_rcu(adapter->tx_rings[i], rcu);
1082 adapter->tx_rings[i] = NULL;
1083 adapter->rx_rings[i] = NULL;
1084 }
1085}
1086
1087/**
1088 * i40evf_alloc_queues - Allocate memory for all rings
1089 * @adapter: board private structure to initialize
1090 *
1091 * We allocate one ring per queue at run-time since we don't know the
1092 * number of queues at compile-time. The polling_netdev array is
1093 * intended for Multiqueue, but should work fine with a single queue.
1094 **/
1095static int i40evf_alloc_queues(struct i40evf_adapter *adapter)
1096{
1097 int i;
1098
cc052927 1099 for (i = 0; i < adapter->num_active_queues; i++) {
5eae00c5
GR
1100 struct i40e_ring *tx_ring;
1101 struct i40e_ring *rx_ring;
1102
75a64435 1103 tx_ring = kzalloc(sizeof(*tx_ring) * 2, GFP_KERNEL);
5eae00c5
GR
1104 if (!tx_ring)
1105 goto err_out;
1106
1107 tx_ring->queue_index = i;
1108 tx_ring->netdev = adapter->netdev;
1109 tx_ring->dev = &adapter->pdev->dev;
d732a184 1110 tx_ring->count = adapter->tx_desc_count;
5eae00c5
GR
1111 adapter->tx_rings[i] = tx_ring;
1112
1113 rx_ring = &tx_ring[1];
1114 rx_ring->queue_index = i;
1115 rx_ring->netdev = adapter->netdev;
1116 rx_ring->dev = &adapter->pdev->dev;
d732a184 1117 rx_ring->count = adapter->rx_desc_count;
5eae00c5
GR
1118 adapter->rx_rings[i] = rx_ring;
1119 }
1120
1121 return 0;
1122
1123err_out:
1124 i40evf_free_queues(adapter);
1125 return -ENOMEM;
1126}
1127
1128/**
1129 * i40evf_set_interrupt_capability - set MSI-X or FAIL if not supported
1130 * @adapter: board private structure to initialize
1131 *
1132 * Attempt to configure the interrupts using the best available
1133 * capabilities of the hardware and the kernel.
1134 **/
1135static int i40evf_set_interrupt_capability(struct i40evf_adapter *adapter)
1136{
1137 int vector, v_budget;
1138 int pairs = 0;
1139 int err = 0;
1140
1141 if (!adapter->vsi_res) {
1142 err = -EIO;
1143 goto out;
1144 }
cc052927 1145 pairs = adapter->num_active_queues;
5eae00c5
GR
1146
1147 /* It's easy to be greedy for MSI-X vectors, but it really
1148 * doesn't do us much good if we have a lot more vectors
1149 * than CPU's. So let's be conservative and only ask for
1150 * (roughly) twice the number of vectors as there are CPU's.
1151 */
30a500e2
MW
1152 v_budget = min_t(int, pairs, (int)(num_online_cpus() * 2)) + NONQ_VECS;
1153 v_budget = min_t(int, v_budget, (int)adapter->vf_res->max_vectors);
5eae00c5 1154
5eae00c5
GR
1155 adapter->msix_entries = kcalloc(v_budget,
1156 sizeof(struct msix_entry), GFP_KERNEL);
1157 if (!adapter->msix_entries) {
1158 err = -ENOMEM;
1159 goto out;
1160 }
1161
1162 for (vector = 0; vector < v_budget; vector++)
1163 adapter->msix_entries[vector].entry = vector;
1164
1165 i40evf_acquire_msix_vectors(adapter, v_budget);
1166
1167out:
1168 adapter->netdev->real_num_tx_queues = pairs;
1169 return err;
1170}
1171
1172/**
1173 * i40evf_alloc_q_vectors - Allocate memory for interrupt vectors
1174 * @adapter: board private structure to initialize
1175 *
1176 * We allocate one q_vector per queue interrupt. If allocation fails we
1177 * return -ENOMEM.
1178 **/
1179static int i40evf_alloc_q_vectors(struct i40evf_adapter *adapter)
1180{
1181 int q_idx, num_q_vectors;
1182 struct i40e_q_vector *q_vector;
1183
1184 num_q_vectors = adapter->num_msix_vectors - NONQ_VECS;
1185
1186 for (q_idx = 0; q_idx < num_q_vectors; q_idx++) {
75a64435 1187 q_vector = kzalloc(sizeof(*q_vector), GFP_KERNEL);
5eae00c5
GR
1188 if (!q_vector)
1189 goto err_out;
1190 q_vector->adapter = adapter;
1191 q_vector->vsi = &adapter->vsi;
1192 q_vector->v_idx = q_idx;
1193 netif_napi_add(adapter->netdev, &q_vector->napi,
75a64435 1194 i40evf_napi_poll, NAPI_POLL_WEIGHT);
5eae00c5
GR
1195 adapter->q_vector[q_idx] = q_vector;
1196 }
1197
1198 return 0;
1199
1200err_out:
1201 while (q_idx) {
1202 q_idx--;
1203 q_vector = adapter->q_vector[q_idx];
1204 netif_napi_del(&q_vector->napi);
1205 kfree(q_vector);
1206 adapter->q_vector[q_idx] = NULL;
1207 }
1208 return -ENOMEM;
1209}
1210
1211/**
1212 * i40evf_free_q_vectors - Free memory allocated for interrupt vectors
1213 * @adapter: board private structure to initialize
1214 *
1215 * This function frees the memory allocated to the q_vectors. In addition if
1216 * NAPI is enabled it will delete any references to the NAPI struct prior
1217 * to freeing the q_vector.
1218 **/
1219static void i40evf_free_q_vectors(struct i40evf_adapter *adapter)
1220{
1221 int q_idx, num_q_vectors;
1222 int napi_vectors;
1223
1224 num_q_vectors = adapter->num_msix_vectors - NONQ_VECS;
cc052927 1225 napi_vectors = adapter->num_active_queues;
5eae00c5
GR
1226
1227 for (q_idx = 0; q_idx < num_q_vectors; q_idx++) {
1228 struct i40e_q_vector *q_vector = adapter->q_vector[q_idx];
1229
1230 adapter->q_vector[q_idx] = NULL;
1231 if (q_idx < napi_vectors)
1232 netif_napi_del(&q_vector->napi);
1233 kfree(q_vector);
1234 }
1235}
1236
1237/**
1238 * i40evf_reset_interrupt_capability - Reset MSIX setup
1239 * @adapter: board private structure
1240 *
1241 **/
1242void i40evf_reset_interrupt_capability(struct i40evf_adapter *adapter)
1243{
1244 pci_disable_msix(adapter->pdev);
1245 kfree(adapter->msix_entries);
1246 adapter->msix_entries = NULL;
5eae00c5
GR
1247}
1248
1249/**
1250 * i40evf_init_interrupt_scheme - Determine if MSIX is supported and init
1251 * @adapter: board private structure to initialize
1252 *
1253 **/
1254int i40evf_init_interrupt_scheme(struct i40evf_adapter *adapter)
1255{
1256 int err;
1257
1258 err = i40evf_set_interrupt_capability(adapter);
1259 if (err) {
1260 dev_err(&adapter->pdev->dev,
1261 "Unable to setup interrupt capabilities\n");
1262 goto err_set_interrupt;
1263 }
1264
1265 err = i40evf_alloc_q_vectors(adapter);
1266 if (err) {
1267 dev_err(&adapter->pdev->dev,
1268 "Unable to allocate memory for queue vectors\n");
1269 goto err_alloc_q_vectors;
1270 }
1271
1272 err = i40evf_alloc_queues(adapter);
1273 if (err) {
1274 dev_err(&adapter->pdev->dev,
1275 "Unable to allocate memory for queues\n");
1276 goto err_alloc_queues;
1277 }
1278
1279 dev_info(&adapter->pdev->dev, "Multiqueue %s: Queue pair count = %u",
75a64435
MW
1280 (adapter->num_active_queues > 1) ? "Enabled" : "Disabled",
1281 adapter->num_active_queues);
5eae00c5
GR
1282
1283 return 0;
1284err_alloc_queues:
1285 i40evf_free_q_vectors(adapter);
1286err_alloc_q_vectors:
1287 i40evf_reset_interrupt_capability(adapter);
1288err_set_interrupt:
1289 return err;
1290}
1291
1292/**
1293 * i40evf_watchdog_timer - Periodic call-back timer
1294 * @data: pointer to adapter disguised as unsigned long
1295 **/
1296static void i40evf_watchdog_timer(unsigned long data)
1297{
1298 struct i40evf_adapter *adapter = (struct i40evf_adapter *)data;
75a64435 1299
5eae00c5
GR
1300 schedule_work(&adapter->watchdog_task);
1301 /* timer will be rescheduled in watchdog task */
1302}
1303
1304/**
1305 * i40evf_watchdog_task - Periodic call-back task
1306 * @work: pointer to work_struct
1307 **/
1308static void i40evf_watchdog_task(struct work_struct *work)
1309{
1310 struct i40evf_adapter *adapter = container_of(work,
75a64435
MW
1311 struct i40evf_adapter,
1312 watchdog_task);
5eae00c5 1313 struct i40e_hw *hw = &adapter->hw;
fd35886a 1314 uint32_t rstat_val;
5eae00c5 1315
ef8693eb
MW
1316 if (test_and_set_bit(__I40EVF_IN_CRITICAL_TASK, &adapter->crit_section))
1317 goto restart_watchdog;
1318
1319 if (adapter->flags & I40EVF_FLAG_PF_COMMS_FAILED) {
fd35886a
AS
1320 rstat_val = rd32(hw, I40E_VFGEN_RSTAT) &
1321 I40E_VFGEN_RSTAT_VFR_STATE_MASK;
1322 if ((rstat_val == I40E_VFR_VFACTIVE) ||
1323 (rstat_val == I40E_VFR_COMPLETED)) {
ef8693eb
MW
1324 /* A chance for redemption! */
1325 dev_err(&adapter->pdev->dev, "Hardware came out of reset. Attempting reinit.\n");
1326 adapter->state = __I40EVF_STARTUP;
1327 adapter->flags &= ~I40EVF_FLAG_PF_COMMS_FAILED;
1328 schedule_delayed_work(&adapter->init_task, 10);
1329 clear_bit(__I40EVF_IN_CRITICAL_TASK,
1330 &adapter->crit_section);
1331 /* Don't reschedule the watchdog, since we've restarted
1332 * the init task. When init_task contacts the PF and
1333 * gets everything set up again, it'll restart the
1334 * watchdog for us. Down, boy. Sit. Stay. Woof.
1335 */
1336 return;
1337 }
1338 adapter->aq_pending = 0;
1339 adapter->aq_required = 0;
1340 adapter->current_op = I40E_VIRTCHNL_OP_UNKNOWN;
5eae00c5 1341 goto watchdog_done;
ef8693eb 1342 }
5eae00c5 1343
ef8693eb
MW
1344 if ((adapter->state < __I40EVF_DOWN) ||
1345 (adapter->flags & I40EVF_FLAG_RESET_PENDING))
5eae00c5
GR
1346 goto watchdog_done;
1347
ef8693eb 1348 /* check for reset */
fd35886a 1349 rstat_val = rd32(hw, I40E_VFGEN_RSTAT) &
75a64435 1350 I40E_VFGEN_RSTAT_VFR_STATE_MASK;
ef8693eb 1351 if (!(adapter->flags & I40EVF_FLAG_RESET_PENDING) &&
fd35886a
AS
1352 (rstat_val != I40E_VFR_VFACTIVE) &&
1353 (rstat_val != I40E_VFR_COMPLETED)) {
5eae00c5 1354 adapter->state = __I40EVF_RESETTING;
ef8693eb 1355 adapter->flags |= I40EVF_FLAG_RESET_PENDING;
249c8b8d 1356 dev_err(&adapter->pdev->dev, "Hardware reset detected\n");
5eae00c5 1357 schedule_work(&adapter->reset_task);
ef8693eb
MW
1358 adapter->aq_pending = 0;
1359 adapter->aq_required = 0;
1360 adapter->current_op = I40E_VIRTCHNL_OP_UNKNOWN;
5eae00c5
GR
1361 goto watchdog_done;
1362 }
1363
1364 /* Process admin queue tasks. After init, everything gets done
1365 * here so we don't race on the admin queue.
1366 */
0758e7cb
MW
1367 if (adapter->aq_pending) {
1368 if (!i40evf_asq_done(hw)) {
1369 dev_dbg(&adapter->pdev->dev, "Admin queue timeout\n");
1370 i40evf_send_api_ver(adapter);
1371 }
5eae00c5 1372 goto watchdog_done;
0758e7cb 1373 }
5eae00c5 1374
e284fc88
MW
1375 if (adapter->aq_required & I40EVF_FLAG_AQ_DISABLE_QUEUES) {
1376 i40evf_disable_queues(adapter);
1377 goto watchdog_done;
1378 }
1379
5eae00c5
GR
1380 if (adapter->aq_required & I40EVF_FLAG_AQ_MAP_VECTORS) {
1381 i40evf_map_queues(adapter);
1382 goto watchdog_done;
1383 }
1384
1385 if (adapter->aq_required & I40EVF_FLAG_AQ_ADD_MAC_FILTER) {
1386 i40evf_add_ether_addrs(adapter);
1387 goto watchdog_done;
1388 }
1389
1390 if (adapter->aq_required & I40EVF_FLAG_AQ_ADD_VLAN_FILTER) {
1391 i40evf_add_vlans(adapter);
1392 goto watchdog_done;
1393 }
1394
1395 if (adapter->aq_required & I40EVF_FLAG_AQ_DEL_MAC_FILTER) {
1396 i40evf_del_ether_addrs(adapter);
1397 goto watchdog_done;
1398 }
1399
1400 if (adapter->aq_required & I40EVF_FLAG_AQ_DEL_VLAN_FILTER) {
1401 i40evf_del_vlans(adapter);
1402 goto watchdog_done;
1403 }
1404
5eae00c5
GR
1405 if (adapter->aq_required & I40EVF_FLAG_AQ_CONFIGURE_QUEUES) {
1406 i40evf_configure_queues(adapter);
1407 goto watchdog_done;
1408 }
1409
1410 if (adapter->aq_required & I40EVF_FLAG_AQ_ENABLE_QUEUES) {
1411 i40evf_enable_queues(adapter);
1412 goto watchdog_done;
1413 }
1414
1415 if (adapter->state == __I40EVF_RUNNING)
1416 i40evf_request_stats(adapter);
5eae00c5 1417watchdog_done:
4870e176
MW
1418 if (adapter->state == __I40EVF_RUNNING) {
1419 i40evf_irq_enable_queues(adapter, ~0);
1420 i40evf_fire_sw_int(adapter, 0xFF);
1421 } else {
1422 i40evf_fire_sw_int(adapter, 0x1);
1423 }
1424
ef8693eb
MW
1425 clear_bit(__I40EVF_IN_CRITICAL_TASK, &adapter->crit_section);
1426restart_watchdog:
d3e2edb7
AS
1427 if (adapter->state == __I40EVF_REMOVE)
1428 return;
5eae00c5
GR
1429 if (adapter->aq_required)
1430 mod_timer(&adapter->watchdog_timer,
1431 jiffies + msecs_to_jiffies(20));
1432 else
1433 mod_timer(&adapter->watchdog_timer, jiffies + (HZ * 2));
5eae00c5
GR
1434 schedule_work(&adapter->adminq_task);
1435}
1436
5b7af02c 1437/**
9a9c8ae1 1438 * i40evf_configure_rss - Prepare for RSS
5eae00c5
GR
1439 * @adapter: board private structure
1440 **/
1441static void i40evf_configure_rss(struct i40evf_adapter *adapter)
1442{
22f258a1 1443 u32 rss_key[I40E_VFQF_HKEY_MAX_INDEX + 1];
5eae00c5 1444 struct i40e_hw *hw = &adapter->hw;
9a9c8ae1 1445 u32 cqueue = 0;
5eae00c5
GR
1446 u32 lut = 0;
1447 int i, j;
1448 u64 hena;
1449
cc052927 1450 /* Hash type is configured by the PF - we just supply the key */
22f258a1 1451 netdev_rss_key_fill(rss_key, sizeof(rss_key));
9a9c8ae1
ASJ
1452
1453 /* Fill out hash function seed */
5eae00c5 1454 for (i = 0; i <= I40E_VFQF_HKEY_MAX_INDEX; i++)
22f258a1 1455 wr32(hw, I40E_VFQF_HKEY(i), rss_key[i]);
5eae00c5
GR
1456
1457 /* Enable PCTYPES for RSS, TCP/UDP with IPv4/IPv6 */
1458 hena = I40E_DEFAULT_RSS_HENA;
1459 wr32(hw, I40E_VFQF_HENA(0), (u32)hena);
1460 wr32(hw, I40E_VFQF_HENA(1), (u32)(hena >> 32));
1461
1462 /* Populate the LUT with max no. of queues in round robin fashion */
96d47704 1463 for (i = 0; i <= I40E_VFQF_HLUT_MAX_INDEX; i++) {
9a9c8ae1
ASJ
1464 lut = 0;
1465 for (j = 0; j < 4; j++) {
1466 if (cqueue == adapter->vsi_res->num_queue_pairs)
1467 cqueue = 0;
1468 lut |= ((cqueue) << (8 * j));
1469 cqueue++;
1470 }
96d47704 1471 wr32(hw, I40E_VFQF_HLUT(i), lut);
5eae00c5
GR
1472 }
1473 i40e_flush(hw);
1474}
1475
ef8693eb
MW
1476#define I40EVF_RESET_WAIT_MS 100
1477#define I40EVF_RESET_WAIT_COUNT 200
5eae00c5
GR
1478/**
1479 * i40evf_reset_task - Call-back task to handle hardware reset
1480 * @work: pointer to work_struct
1481 *
1482 * During reset we need to shut down and reinitialize the admin queue
1483 * before we can use it to communicate with the PF again. We also clear
1484 * and reinit the rings because that context is lost as well.
1485 **/
1486static void i40evf_reset_task(struct work_struct *work)
1487{
ef8693eb
MW
1488 struct i40evf_adapter *adapter = container_of(work,
1489 struct i40evf_adapter,
1490 reset_task);
ac833bbf 1491 struct net_device *netdev = adapter->netdev;
5eae00c5 1492 struct i40e_hw *hw = &adapter->hw;
ac833bbf 1493 struct i40evf_mac_filter *f;
5eae00c5 1494 uint32_t rstat_val;
ac833bbf 1495 int i = 0, err;
5eae00c5
GR
1496
1497 while (test_and_set_bit(__I40EVF_IN_CRITICAL_TASK,
1498 &adapter->crit_section))
f98a2006 1499 usleep_range(500, 1000);
3526d800
MW
1500
1501 if (adapter->flags & I40EVF_FLAG_RESET_NEEDED) {
1502 dev_info(&adapter->pdev->dev, "Requesting reset from PF\n");
1503 i40evf_request_reset(adapter);
1504 }
1505
ef8693eb
MW
1506 /* poll until we see the reset actually happen */
1507 for (i = 0; i < I40EVF_RESET_WAIT_COUNT; i++) {
1508 rstat_val = rd32(hw, I40E_VFGEN_RSTAT) &
1509 I40E_VFGEN_RSTAT_VFR_STATE_MASK;
fd35886a
AS
1510 if ((rstat_val != I40E_VFR_VFACTIVE) &&
1511 (rstat_val != I40E_VFR_COMPLETED))
ef8693eb 1512 break;
c88e38cc 1513 msleep(I40EVF_RESET_WAIT_MS);
ef8693eb
MW
1514 }
1515 if (i == I40EVF_RESET_WAIT_COUNT) {
ef8693eb
MW
1516 adapter->flags &= ~I40EVF_FLAG_RESET_PENDING;
1517 goto continue_reset; /* act like the reset happened */
1518 }
5eae00c5 1519
ef8693eb
MW
1520 /* wait until the reset is complete and the PF is responding to us */
1521 for (i = 0; i < I40EVF_RESET_WAIT_COUNT; i++) {
5eae00c5
GR
1522 rstat_val = rd32(hw, I40E_VFGEN_RSTAT) &
1523 I40E_VFGEN_RSTAT_VFR_STATE_MASK;
fd35886a
AS
1524 if ((rstat_val == I40E_VFR_VFACTIVE) ||
1525 (rstat_val == I40E_VFR_COMPLETED))
5eae00c5 1526 break;
c88e38cc 1527 msleep(I40EVF_RESET_WAIT_MS);
5eae00c5 1528 }
ef8693eb 1529 if (i == I40EVF_RESET_WAIT_COUNT) {
6ba36a24
MW
1530 struct i40evf_mac_filter *f, *ftmp;
1531 struct i40evf_vlan_filter *fv, *fvtmp;
1532
5eae00c5 1533 /* reset never finished */
80e72893 1534 dev_err(&adapter->pdev->dev, "Reset never finished (%x)\n",
ef8693eb
MW
1535 rstat_val);
1536 adapter->flags |= I40EVF_FLAG_PF_COMMS_FAILED;
1537
169f4076
MW
1538 if (netif_running(adapter->netdev)) {
1539 set_bit(__I40E_DOWN, &adapter->vsi.state);
ac833bbf
MW
1540 i40evf_irq_disable(adapter);
1541 i40evf_napi_disable_all(adapter);
1542 netif_tx_disable(netdev);
1543 netif_tx_stop_all_queues(netdev);
1544 netif_carrier_off(netdev);
169f4076
MW
1545 i40evf_free_traffic_irqs(adapter);
1546 i40evf_free_all_tx_resources(adapter);
1547 i40evf_free_all_rx_resources(adapter);
1548 }
6ba36a24
MW
1549
1550 /* Delete all of the filters, both MAC and VLAN. */
1551 list_for_each_entry_safe(f, ftmp, &adapter->mac_filter_list,
1552 list) {
1553 list_del(&f->list);
1554 kfree(f);
1555 }
1556 list_for_each_entry_safe(fv, fvtmp, &adapter->vlan_filter_list,
1557 list) {
1558 list_del(&fv->list);
1559 kfree(fv);
1560 }
1561
ef8693eb
MW
1562 i40evf_free_misc_irq(adapter);
1563 i40evf_reset_interrupt_capability(adapter);
1564 i40evf_free_queues(adapter);
d31944d6 1565 i40evf_free_q_vectors(adapter);
ef8693eb
MW
1566 kfree(adapter->vf_res);
1567 i40evf_shutdown_adminq(hw);
1568 adapter->netdev->flags &= ~IFF_UP;
1569 clear_bit(__I40EVF_IN_CRITICAL_TASK, &adapter->crit_section);
1570 return; /* Do not attempt to reinit. It's dead, Jim. */
5eae00c5 1571 }
ef8693eb
MW
1572
1573continue_reset:
1574 adapter->flags &= ~I40EVF_FLAG_RESET_PENDING;
1575
ac833bbf 1576 i40evf_irq_disable(adapter);
ac833bbf 1577
3c8e0b98
MW
1578 if (netif_running(adapter->netdev)) {
1579 i40evf_napi_disable_all(adapter);
1580 netif_tx_disable(netdev);
1581 netif_tx_stop_all_queues(netdev);
1582 netif_carrier_off(netdev);
1583 }
ac833bbf 1584
5eae00c5
GR
1585 adapter->state = __I40EVF_RESETTING;
1586
1587 /* kill and reinit the admin queue */
1588 if (i40evf_shutdown_adminq(hw))
ac833bbf
MW
1589 dev_warn(&adapter->pdev->dev, "Failed to shut down adminq\n");
1590 adapter->current_op = I40E_VIRTCHNL_OP_UNKNOWN;
5eae00c5
GR
1591 err = i40evf_init_adminq(hw);
1592 if (err)
ac833bbf
MW
1593 dev_info(&adapter->pdev->dev, "Failed to init adminq: %d\n",
1594 err);
5eae00c5 1595
5eae00c5 1596 i40evf_map_queues(adapter);
ac833bbf
MW
1597
1598 /* re-add all MAC filters */
1599 list_for_each_entry(f, &adapter->mac_filter_list, list) {
1600 f->add = true;
1601 }
1602 /* re-add all VLAN filters */
1603 list_for_each_entry(f, &adapter->vlan_filter_list, list) {
1604 f->add = true;
1605 }
1606 adapter->aq_required = I40EVF_FLAG_AQ_ADD_MAC_FILTER;
1607 adapter->aq_required |= I40EVF_FLAG_AQ_ADD_VLAN_FILTER;
5eae00c5
GR
1608 clear_bit(__I40EVF_IN_CRITICAL_TASK, &adapter->crit_section);
1609
1610 mod_timer(&adapter->watchdog_timer, jiffies + 2);
1611
1612 if (netif_running(adapter->netdev)) {
1613 /* allocate transmit descriptors */
1614 err = i40evf_setup_all_tx_resources(adapter);
1615 if (err)
1616 goto reset_err;
1617
1618 /* allocate receive descriptors */
1619 err = i40evf_setup_all_rx_resources(adapter);
1620 if (err)
1621 goto reset_err;
1622
1623 i40evf_configure(adapter);
1624
1625 err = i40evf_up_complete(adapter);
1626 if (err)
1627 goto reset_err;
1628
1629 i40evf_irq_enable(adapter, true);
1630 }
1631 return;
1632reset_err:
80e72893 1633 dev_err(&adapter->pdev->dev, "failed to allocate resources during reinit\n");
5eae00c5
GR
1634 i40evf_close(adapter->netdev);
1635}
1636
1637/**
1638 * i40evf_adminq_task - worker thread to clean the admin queue
1639 * @work: pointer to work_struct containing our data
1640 **/
1641static void i40evf_adminq_task(struct work_struct *work)
1642{
1643 struct i40evf_adapter *adapter =
1644 container_of(work, struct i40evf_adapter, adminq_task);
1645 struct i40e_hw *hw = &adapter->hw;
1646 struct i40e_arq_event_info event;
1647 struct i40e_virtchnl_msg *v_msg;
1648 i40e_status ret;
912257e5 1649 u32 val, oldval;
5eae00c5
GR
1650 u16 pending;
1651
ef8693eb 1652 if (adapter->flags & I40EVF_FLAG_PF_COMMS_FAILED)
7235448c 1653 goto out;
ef8693eb 1654
1001dc37
MW
1655 event.buf_len = I40EVF_MAX_AQ_BUF_SIZE;
1656 event.msg_buf = kzalloc(event.buf_len, GFP_KERNEL);
249c8b8d 1657 if (!event.msg_buf)
7235448c 1658 goto out;
249c8b8d 1659
5eae00c5
GR
1660 v_msg = (struct i40e_virtchnl_msg *)&event.desc;
1661 do {
1662 ret = i40evf_clean_arq_element(hw, &event, &pending);
8b011ebb 1663 if (ret || !v_msg->v_opcode)
5eae00c5
GR
1664 break; /* No event to process or error cleaning ARQ */
1665
1666 i40evf_virtchnl_completion(adapter, v_msg->v_opcode,
1667 v_msg->v_retval, event.msg_buf,
1001dc37 1668 event.msg_len);
75a64435 1669 if (pending != 0)
5eae00c5 1670 memset(event.msg_buf, 0, I40EVF_MAX_AQ_BUF_SIZE);
5eae00c5
GR
1671 } while (pending);
1672
912257e5
MW
1673 /* check for error indications */
1674 val = rd32(hw, hw->aq.arq.len);
1675 oldval = val;
1676 if (val & I40E_VF_ARQLEN_ARQVFE_MASK) {
1677 dev_info(&adapter->pdev->dev, "ARQ VF Error detected\n");
1678 val &= ~I40E_VF_ARQLEN_ARQVFE_MASK;
1679 }
1680 if (val & I40E_VF_ARQLEN_ARQOVFL_MASK) {
1681 dev_info(&adapter->pdev->dev, "ARQ Overflow Error detected\n");
1682 val &= ~I40E_VF_ARQLEN_ARQOVFL_MASK;
1683 }
1684 if (val & I40E_VF_ARQLEN_ARQCRIT_MASK) {
1685 dev_info(&adapter->pdev->dev, "ARQ Critical Error detected\n");
1686 val &= ~I40E_VF_ARQLEN_ARQCRIT_MASK;
1687 }
1688 if (oldval != val)
1689 wr32(hw, hw->aq.arq.len, val);
1690
1691 val = rd32(hw, hw->aq.asq.len);
1692 oldval = val;
1693 if (val & I40E_VF_ATQLEN_ATQVFE_MASK) {
1694 dev_info(&adapter->pdev->dev, "ASQ VF Error detected\n");
1695 val &= ~I40E_VF_ATQLEN_ATQVFE_MASK;
1696 }
1697 if (val & I40E_VF_ATQLEN_ATQOVFL_MASK) {
1698 dev_info(&adapter->pdev->dev, "ASQ Overflow Error detected\n");
1699 val &= ~I40E_VF_ATQLEN_ATQOVFL_MASK;
1700 }
1701 if (val & I40E_VF_ATQLEN_ATQCRIT_MASK) {
1702 dev_info(&adapter->pdev->dev, "ASQ Critical Error detected\n");
1703 val &= ~I40E_VF_ATQLEN_ATQCRIT_MASK;
1704 }
1705 if (oldval != val)
1706 wr32(hw, hw->aq.asq.len, val);
1707
7235448c
MW
1708 kfree(event.msg_buf);
1709out:
5eae00c5
GR
1710 /* re-enable Admin queue interrupt cause */
1711 i40evf_misc_irq_enable(adapter);
5eae00c5
GR
1712}
1713
1714/**
1715 * i40evf_free_all_tx_resources - Free Tx Resources for All Queues
1716 * @adapter: board private structure
1717 *
1718 * Free all transmit software resources
1719 **/
e284fc88 1720void i40evf_free_all_tx_resources(struct i40evf_adapter *adapter)
5eae00c5
GR
1721{
1722 int i;
1723
cc052927 1724 for (i = 0; i < adapter->num_active_queues; i++)
5eae00c5
GR
1725 if (adapter->tx_rings[i]->desc)
1726 i40evf_free_tx_resources(adapter->tx_rings[i]);
5eae00c5
GR
1727}
1728
1729/**
1730 * i40evf_setup_all_tx_resources - allocate all queues Tx resources
1731 * @adapter: board private structure
1732 *
1733 * If this function returns with an error, then it's possible one or
1734 * more of the rings is populated (while the rest are not). It is the
1735 * callers duty to clean those orphaned rings.
1736 *
1737 * Return 0 on success, negative on failure
1738 **/
1739static int i40evf_setup_all_tx_resources(struct i40evf_adapter *adapter)
1740{
1741 int i, err = 0;
1742
cc052927 1743 for (i = 0; i < adapter->num_active_queues; i++) {
d732a184 1744 adapter->tx_rings[i]->count = adapter->tx_desc_count;
5eae00c5
GR
1745 err = i40evf_setup_tx_descriptors(adapter->tx_rings[i]);
1746 if (!err)
1747 continue;
1748 dev_err(&adapter->pdev->dev,
1749 "%s: Allocation for Tx Queue %u failed\n",
1750 __func__, i);
1751 break;
1752 }
1753
1754 return err;
1755}
1756
1757/**
1758 * i40evf_setup_all_rx_resources - allocate all queues Rx resources
1759 * @adapter: board private structure
1760 *
1761 * If this function returns with an error, then it's possible one or
1762 * more of the rings is populated (while the rest are not). It is the
1763 * callers duty to clean those orphaned rings.
1764 *
1765 * Return 0 on success, negative on failure
1766 **/
1767static int i40evf_setup_all_rx_resources(struct i40evf_adapter *adapter)
1768{
1769 int i, err = 0;
1770
cc052927 1771 for (i = 0; i < adapter->num_active_queues; i++) {
d732a184 1772 adapter->rx_rings[i]->count = adapter->rx_desc_count;
5eae00c5
GR
1773 err = i40evf_setup_rx_descriptors(adapter->rx_rings[i]);
1774 if (!err)
1775 continue;
1776 dev_err(&adapter->pdev->dev,
1777 "%s: Allocation for Rx Queue %u failed\n",
1778 __func__, i);
1779 break;
1780 }
1781 return err;
1782}
1783
1784/**
1785 * i40evf_free_all_rx_resources - Free Rx Resources for All Queues
1786 * @adapter: board private structure
1787 *
1788 * Free all receive software resources
1789 **/
e284fc88 1790void i40evf_free_all_rx_resources(struct i40evf_adapter *adapter)
5eae00c5
GR
1791{
1792 int i;
1793
cc052927 1794 for (i = 0; i < adapter->num_active_queues; i++)
5eae00c5
GR
1795 if (adapter->rx_rings[i]->desc)
1796 i40evf_free_rx_resources(adapter->rx_rings[i]);
1797}
1798
1799/**
1800 * i40evf_open - Called when a network interface is made active
1801 * @netdev: network interface device structure
1802 *
1803 * Returns 0 on success, negative value on failure
1804 *
1805 * The open entry point is called when a network interface is made
1806 * active by the system (IFF_UP). At this point all resources needed
1807 * for transmit and receive operations are allocated, the interrupt
1808 * handler is registered with the OS, the watchdog timer is started,
1809 * and the stack is notified that the interface is ready.
1810 **/
1811static int i40evf_open(struct net_device *netdev)
1812{
1813 struct i40evf_adapter *adapter = netdev_priv(netdev);
1814 int err;
1815
ef8693eb
MW
1816 if (adapter->flags & I40EVF_FLAG_PF_COMMS_FAILED) {
1817 dev_err(&adapter->pdev->dev, "Unable to open device due to PF driver failure.\n");
1818 return -EIO;
1819 }
e284fc88 1820 if (adapter->state != __I40EVF_DOWN || adapter->aq_required)
5eae00c5
GR
1821 return -EBUSY;
1822
1823 /* allocate transmit descriptors */
1824 err = i40evf_setup_all_tx_resources(adapter);
1825 if (err)
1826 goto err_setup_tx;
1827
1828 /* allocate receive descriptors */
1829 err = i40evf_setup_all_rx_resources(adapter);
1830 if (err)
1831 goto err_setup_rx;
1832
1833 /* clear any pending interrupts, may auto mask */
1834 err = i40evf_request_traffic_irqs(adapter, netdev->name);
1835 if (err)
1836 goto err_req_irq;
1837
1838 i40evf_configure(adapter);
1839
1840 err = i40evf_up_complete(adapter);
1841 if (err)
1842 goto err_req_irq;
1843
1844 i40evf_irq_enable(adapter, true);
1845
1846 return 0;
1847
1848err_req_irq:
1849 i40evf_down(adapter);
1850 i40evf_free_traffic_irqs(adapter);
1851err_setup_rx:
1852 i40evf_free_all_rx_resources(adapter);
1853err_setup_tx:
1854 i40evf_free_all_tx_resources(adapter);
1855
1856 return err;
1857}
1858
1859/**
1860 * i40evf_close - Disables a network interface
1861 * @netdev: network interface device structure
1862 *
1863 * Returns 0, this is not allowed to fail
1864 *
1865 * The close entry point is called when an interface is de-activated
1866 * by the OS. The hardware is still under the drivers control, but
1867 * needs to be disabled. All IRQs except vector 0 (reserved for admin queue)
1868 * are freed, along with all transmit and receive resources.
1869 **/
1870static int i40evf_close(struct net_device *netdev)
1871{
1872 struct i40evf_adapter *adapter = netdev_priv(netdev);
1873
ef8693eb
MW
1874 if (adapter->state <= __I40EVF_DOWN)
1875 return 0;
1876
ef8693eb 1877
5eae00c5
GR
1878 set_bit(__I40E_DOWN, &adapter->vsi.state);
1879
1880 i40evf_down(adapter);
ddf0b3a6 1881 adapter->state = __I40EVF_DOWN;
5eae00c5
GR
1882 i40evf_free_traffic_irqs(adapter);
1883
5eae00c5
GR
1884 return 0;
1885}
1886
1887/**
1888 * i40evf_get_stats - Get System Network Statistics
1889 * @netdev: network interface device structure
1890 *
1891 * Returns the address of the device statistics structure.
1892 * The statistics are actually updated from the timer callback.
1893 **/
1894static struct net_device_stats *i40evf_get_stats(struct net_device *netdev)
1895{
1896 struct i40evf_adapter *adapter = netdev_priv(netdev);
1897
1898 /* only return the current stats */
1899 return &adapter->net_stats;
1900}
1901
1902/**
1903 * i40evf_reinit_locked - Software reinit
1904 * @adapter: board private structure
1905 *
1906 * Reinititalizes the ring structures in response to a software configuration
1907 * change. Roughly the same as close followed by open, but skips releasing
1908 * and reallocating the interrupts.
1909 **/
1910void i40evf_reinit_locked(struct i40evf_adapter *adapter)
1911{
1912 struct net_device *netdev = adapter->netdev;
1913 int err;
1914
1915 WARN_ON(in_interrupt());
1916
5eae00c5
GR
1917 i40evf_down(adapter);
1918
1919 /* allocate transmit descriptors */
1920 err = i40evf_setup_all_tx_resources(adapter);
1921 if (err)
1922 goto err_reinit;
1923
1924 /* allocate receive descriptors */
1925 err = i40evf_setup_all_rx_resources(adapter);
1926 if (err)
1927 goto err_reinit;
1928
1929 i40evf_configure(adapter);
1930
1931 err = i40evf_up_complete(adapter);
1932 if (err)
1933 goto err_reinit;
1934
1935 i40evf_irq_enable(adapter, true);
1936 return;
1937
1938err_reinit:
80e72893 1939 dev_err(&adapter->pdev->dev, "failed to allocate resources during reinit\n");
5eae00c5
GR
1940 i40evf_close(netdev);
1941}
1942
1943/**
1944 * i40evf_change_mtu - Change the Maximum Transfer Unit
1945 * @netdev: network interface device structure
1946 * @new_mtu: new value for maximum frame size
1947 *
1948 * Returns 0 on success, negative on failure
1949 **/
1950static int i40evf_change_mtu(struct net_device *netdev, int new_mtu)
1951{
1952 struct i40evf_adapter *adapter = netdev_priv(netdev);
1953 int max_frame = new_mtu + ETH_HLEN + ETH_FCS_LEN;
1954
1955 if ((new_mtu < 68) || (max_frame > I40E_MAX_RXBUFFER))
1956 return -EINVAL;
1957
1958 /* must set new MTU before calling down or up */
1959 netdev->mtu = new_mtu;
1960 i40evf_reinit_locked(adapter);
1961 return 0;
1962}
1963
1964static const struct net_device_ops i40evf_netdev_ops = {
1965 .ndo_open = i40evf_open,
1966 .ndo_stop = i40evf_close,
1967 .ndo_start_xmit = i40evf_xmit_frame,
1968 .ndo_get_stats = i40evf_get_stats,
1969 .ndo_set_rx_mode = i40evf_set_rx_mode,
1970 .ndo_validate_addr = eth_validate_addr,
1971 .ndo_set_mac_address = i40evf_set_mac,
1972 .ndo_change_mtu = i40evf_change_mtu,
1973 .ndo_tx_timeout = i40evf_tx_timeout,
1974 .ndo_vlan_rx_add_vid = i40evf_vlan_rx_add_vid,
1975 .ndo_vlan_rx_kill_vid = i40evf_vlan_rx_kill_vid,
1976};
1977
1978/**
1979 * i40evf_check_reset_complete - check that VF reset is complete
1980 * @hw: pointer to hw struct
1981 *
1982 * Returns 0 if device is ready to use, or -EBUSY if it's in reset.
1983 **/
1984static int i40evf_check_reset_complete(struct i40e_hw *hw)
1985{
1986 u32 rstat;
1987 int i;
1988
1989 for (i = 0; i < 100; i++) {
fd35886a
AS
1990 rstat = rd32(hw, I40E_VFGEN_RSTAT) &
1991 I40E_VFGEN_RSTAT_VFR_STATE_MASK;
1992 if ((rstat == I40E_VFR_VFACTIVE) ||
1993 (rstat == I40E_VFR_COMPLETED))
5eae00c5 1994 return 0;
f98a2006 1995 usleep_range(10, 20);
5eae00c5
GR
1996 }
1997 return -EBUSY;
1998}
1999
2000/**
2001 * i40evf_init_task - worker thread to perform delayed initialization
2002 * @work: pointer to work_struct containing our data
2003 *
2004 * This task completes the work that was begun in probe. Due to the nature
2005 * of VF-PF communications, we may need to wait tens of milliseconds to get
dbedd44e 2006 * responses back from the PF. Rather than busy-wait in probe and bog down the
5eae00c5
GR
2007 * whole system, we'll do it in a task so we can sleep.
2008 * This task only runs during driver init. Once we've established
2009 * communications with the PF driver and set up our netdev, the watchdog
2010 * takes over.
2011 **/
2012static void i40evf_init_task(struct work_struct *work)
2013{
2014 struct i40evf_adapter *adapter = container_of(work,
2015 struct i40evf_adapter,
2016 init_task.work);
2017 struct net_device *netdev = adapter->netdev;
2018 struct i40evf_mac_filter *f;
2019 struct i40e_hw *hw = &adapter->hw;
2020 struct pci_dev *pdev = adapter->pdev;
2021 int i, err, bufsz;
2022
2023 switch (adapter->state) {
2024 case __I40EVF_STARTUP:
2025 /* driver loaded, probe complete */
ef8693eb
MW
2026 adapter->flags &= ~I40EVF_FLAG_PF_COMMS_FAILED;
2027 adapter->flags &= ~I40EVF_FLAG_RESET_PENDING;
5eae00c5
GR
2028 err = i40e_set_mac_type(hw);
2029 if (err) {
c2a137cb
MW
2030 dev_err(&pdev->dev, "Failed to set MAC type (%d)\n",
2031 err);
2619ef47 2032 goto err;
5eae00c5
GR
2033 }
2034 err = i40evf_check_reset_complete(hw);
2035 if (err) {
0d9c7ea8 2036 dev_info(&pdev->dev, "Device is still in reset (%d), retrying\n",
75a64435 2037 err);
5eae00c5
GR
2038 goto err;
2039 }
2040 hw->aq.num_arq_entries = I40EVF_AQ_LEN;
2041 hw->aq.num_asq_entries = I40EVF_AQ_LEN;
2042 hw->aq.arq_buf_size = I40EVF_MAX_AQ_BUF_SIZE;
2043 hw->aq.asq_buf_size = I40EVF_MAX_AQ_BUF_SIZE;
2044
2045 err = i40evf_init_adminq(hw);
2046 if (err) {
c2a137cb
MW
2047 dev_err(&pdev->dev, "Failed to init Admin Queue (%d)\n",
2048 err);
5eae00c5
GR
2049 goto err;
2050 }
2051 err = i40evf_send_api_ver(adapter);
2052 if (err) {
10bdd67b 2053 dev_err(&pdev->dev, "Unable to send to PF (%d)\n", err);
5eae00c5
GR
2054 i40evf_shutdown_adminq(hw);
2055 goto err;
2056 }
2057 adapter->state = __I40EVF_INIT_VERSION_CHECK;
2058 goto restart;
5eae00c5 2059 case __I40EVF_INIT_VERSION_CHECK:
10bdd67b 2060 if (!i40evf_asq_done(hw)) {
80e72893 2061 dev_err(&pdev->dev, "Admin queue command never completed\n");
906a6937
MW
2062 i40evf_shutdown_adminq(hw);
2063 adapter->state = __I40EVF_STARTUP;
5eae00c5 2064 goto err;
10bdd67b 2065 }
5eae00c5
GR
2066
2067 /* aq msg sent, awaiting reply */
2068 err = i40evf_verify_api_ver(adapter);
2069 if (err) {
d4f82fd3 2070 if (err == I40E_ERR_ADMIN_QUEUE_NO_WORK)
56f9920a 2071 err = i40evf_send_api_ver(adapter);
5eae00c5
GR
2072 goto err;
2073 }
2074 err = i40evf_send_vf_config_msg(adapter);
2075 if (err) {
3f2ab172 2076 dev_err(&pdev->dev, "Unable to send config request (%d)\n",
5eae00c5
GR
2077 err);
2078 goto err;
2079 }
2080 adapter->state = __I40EVF_INIT_GET_RESOURCES;
2081 goto restart;
5eae00c5
GR
2082 case __I40EVF_INIT_GET_RESOURCES:
2083 /* aq msg sent, awaiting reply */
2084 if (!adapter->vf_res) {
2085 bufsz = sizeof(struct i40e_virtchnl_vf_resource) +
2086 (I40E_MAX_VF_VSI *
2087 sizeof(struct i40e_virtchnl_vsi_resource));
2088 adapter->vf_res = kzalloc(bufsz, GFP_KERNEL);
c2a137cb 2089 if (!adapter->vf_res)
5eae00c5 2090 goto err;
5eae00c5
GR
2091 }
2092 err = i40evf_get_vf_config(adapter);
906a6937 2093 if (err == I40E_ERR_ADMIN_QUEUE_NO_WORK) {
906a6937
MW
2094 err = i40evf_send_vf_config_msg(adapter);
2095 goto err;
2096 }
5eae00c5 2097 if (err) {
c2a137cb
MW
2098 dev_err(&pdev->dev, "Unable to get VF config (%d)\n",
2099 err);
5eae00c5
GR
2100 goto err_alloc;
2101 }
2102 adapter->state = __I40EVF_INIT_SW;
2103 break;
2104 default:
2105 goto err_alloc;
2106 }
2107 /* got VF config message back from PF, now we can parse it */
2108 for (i = 0; i < adapter->vf_res->num_vsis; i++) {
2109 if (adapter->vf_res->vsi_res[i].vsi_type == I40E_VSI_SRIOV)
2110 adapter->vsi_res = &adapter->vf_res->vsi_res[i];
2111 }
2112 if (!adapter->vsi_res) {
c2a137cb 2113 dev_err(&pdev->dev, "No LAN VSI found\n");
5eae00c5
GR
2114 goto err_alloc;
2115 }
2116
2117 adapter->flags |= I40EVF_FLAG_RX_CSUM_ENABLED;
2118
5eae00c5
GR
2119 netdev->netdev_ops = &i40evf_netdev_ops;
2120 i40evf_set_ethtool_ops(netdev);
2121 netdev->watchdog_timeo = 5 * HZ;
dbbd8111
MW
2122 netdev->features |= NETIF_F_HIGHDMA |
2123 NETIF_F_SG |
5eae00c5
GR
2124 NETIF_F_IP_CSUM |
2125 NETIF_F_SCTP_CSUM |
2126 NETIF_F_IPV6_CSUM |
2127 NETIF_F_TSO |
2128 NETIF_F_TSO6 |
3415e8ce 2129 NETIF_F_RXCSUM |
5eae00c5
GR
2130 NETIF_F_GRO;
2131
2132 if (adapter->vf_res->vf_offload_flags
2133 & I40E_VIRTCHNL_VF_OFFLOAD_VLAN) {
2134 netdev->vlan_features = netdev->features;
2135 netdev->features |= NETIF_F_HW_VLAN_CTAG_TX |
2136 NETIF_F_HW_VLAN_CTAG_RX |
2137 NETIF_F_HW_VLAN_CTAG_FILTER;
2138 }
2139
3415e8ce
GR
2140 /* copy netdev features into list of user selectable features */
2141 netdev->hw_features |= netdev->features;
2142 netdev->hw_features &= ~NETIF_F_RXCSUM;
2143
5eae00c5 2144 if (!is_valid_ether_addr(adapter->hw.mac.addr)) {
b34f90e7 2145 dev_info(&pdev->dev, "Invalid MAC address %pM, using random\n",
c2a137cb 2146 adapter->hw.mac.addr);
5eae00c5
GR
2147 random_ether_addr(adapter->hw.mac.addr);
2148 }
9a173901
GR
2149 ether_addr_copy(netdev->dev_addr, adapter->hw.mac.addr);
2150 ether_addr_copy(netdev->perm_addr, adapter->hw.mac.addr);
5eae00c5 2151
5eae00c5 2152 f = kzalloc(sizeof(*f), GFP_ATOMIC);
348d4994 2153 if (!f)
5eae00c5
GR
2154 goto err_sw_init;
2155
9a173901 2156 ether_addr_copy(f->macaddr, adapter->hw.mac.addr);
5eae00c5
GR
2157 f->add = true;
2158 adapter->aq_required |= I40EVF_FLAG_AQ_ADD_MAC_FILTER;
2159
2160 list_add(&f->list, &adapter->mac_filter_list);
2161
2162 init_timer(&adapter->watchdog_timer);
2163 adapter->watchdog_timer.function = &i40evf_watchdog_timer;
2164 adapter->watchdog_timer.data = (unsigned long)adapter;
2165 mod_timer(&adapter->watchdog_timer, jiffies + 1);
2166
cc052927
MW
2167 adapter->num_active_queues = min_t(int,
2168 adapter->vsi_res->num_queue_pairs,
2169 (int)(num_online_cpus()));
d732a184
MW
2170 adapter->tx_desc_count = I40EVF_DEFAULT_TXD;
2171 adapter->rx_desc_count = I40EVF_DEFAULT_RXD;
5eae00c5
GR
2172 err = i40evf_init_interrupt_scheme(adapter);
2173 if (err)
2174 goto err_sw_init;
2175 i40evf_map_rings_to_vectors(adapter);
2176 i40evf_configure_rss(adapter);
2177 err = i40evf_request_misc_irq(adapter);
2178 if (err)
2179 goto err_sw_init;
2180
2181 netif_carrier_off(netdev);
2182
5eae00c5
GR
2183 adapter->vsi.id = adapter->vsi_res->vsi_id;
2184 adapter->vsi.seid = adapter->vsi_res->vsi_id; /* dummy */
2185 adapter->vsi.back = adapter;
2186 adapter->vsi.base_vector = 1;
2187 adapter->vsi.work_limit = I40E_DEFAULT_IRQ_WORK;
ca99eb99
MW
2188 adapter->vsi.rx_itr_setting = (I40E_ITR_DYNAMIC |
2189 ITR_REG_TO_USEC(I40E_ITR_RX_DEF));
2190 adapter->vsi.tx_itr_setting = (I40E_ITR_DYNAMIC |
2191 ITR_REG_TO_USEC(I40E_ITR_TX_DEF));
5eae00c5
GR
2192 adapter->vsi.netdev = adapter->netdev;
2193
ef8693eb
MW
2194 if (!adapter->netdev_registered) {
2195 err = register_netdev(netdev);
2196 if (err)
2197 goto err_register;
2198 }
5eae00c5
GR
2199
2200 adapter->netdev_registered = true;
2201
2202 netif_tx_stop_all_queues(netdev);
2203
b34f90e7 2204 dev_info(&pdev->dev, "MAC address: %pM\n", adapter->hw.mac.addr);
5eae00c5
GR
2205 if (netdev->features & NETIF_F_GRO)
2206 dev_info(&pdev->dev, "GRO is enabled\n");
2207
2208 dev_info(&pdev->dev, "%s\n", i40evf_driver_string);
2209 adapter->state = __I40EVF_DOWN;
2210 set_bit(__I40E_DOWN, &adapter->vsi.state);
2211 i40evf_misc_irq_enable(adapter);
2212 return;
2213restart:
2214 schedule_delayed_work(&adapter->init_task,
2215 msecs_to_jiffies(50));
2216 return;
2217
2218err_register:
2219 i40evf_free_misc_irq(adapter);
2220err_sw_init:
2221 i40evf_reset_interrupt_capability(adapter);
5eae00c5
GR
2222err_alloc:
2223 kfree(adapter->vf_res);
2224 adapter->vf_res = NULL;
2225err:
2226 /* Things went into the weeds, so try again later */
2227 if (++adapter->aq_wait_count > I40EVF_AQ_MAX_ERR) {
80e72893 2228 dev_err(&pdev->dev, "Failed to communicate with PF; giving up\n");
ef8693eb 2229 adapter->flags |= I40EVF_FLAG_PF_COMMS_FAILED;
5eae00c5
GR
2230 return; /* do not reschedule */
2231 }
2232 schedule_delayed_work(&adapter->init_task, HZ * 3);
5eae00c5
GR
2233}
2234
2235/**
2236 * i40evf_shutdown - Shutdown the device in preparation for a reboot
2237 * @pdev: pci device structure
2238 **/
2239static void i40evf_shutdown(struct pci_dev *pdev)
2240{
2241 struct net_device *netdev = pci_get_drvdata(pdev);
00293fdc 2242 struct i40evf_adapter *adapter = netdev_priv(netdev);
5eae00c5
GR
2243
2244 netif_device_detach(netdev);
2245
2246 if (netif_running(netdev))
2247 i40evf_close(netdev);
2248
00293fdc
MW
2249 /* Prevent the watchdog from running. */
2250 adapter->state = __I40EVF_REMOVE;
2251 adapter->aq_required = 0;
2252 adapter->aq_pending = 0;
2253
5eae00c5
GR
2254#ifdef CONFIG_PM
2255 pci_save_state(pdev);
2256
2257#endif
2258 pci_disable_device(pdev);
2259}
2260
2261/**
2262 * i40evf_probe - Device Initialization Routine
2263 * @pdev: PCI device information struct
2264 * @ent: entry in i40evf_pci_tbl
2265 *
2266 * Returns 0 on success, negative on failure
2267 *
2268 * i40evf_probe initializes an adapter identified by a pci_dev structure.
2269 * The OS initialization, configuring of the adapter private structure,
2270 * and a hardware reset occur.
2271 **/
2272static int i40evf_probe(struct pci_dev *pdev, const struct pci_device_id *ent)
2273{
2274 struct net_device *netdev;
2275 struct i40evf_adapter *adapter = NULL;
2276 struct i40e_hw *hw = NULL;
dbbd8111 2277 int err;
5eae00c5
GR
2278
2279 err = pci_enable_device(pdev);
2280 if (err)
2281 return err;
2282
6494294f 2283 err = dma_set_mask_and_coherent(&pdev->dev, DMA_BIT_MASK(64));
6494294f 2284 if (err) {
e3e3bfdd
JS
2285 err = dma_set_mask_and_coherent(&pdev->dev, DMA_BIT_MASK(32));
2286 if (err) {
2287 dev_err(&pdev->dev,
2288 "DMA configuration failed: 0x%x\n", err);
2289 goto err_dma;
2290 }
5eae00c5
GR
2291 }
2292
2293 err = pci_request_regions(pdev, i40evf_driver_name);
2294 if (err) {
2295 dev_err(&pdev->dev,
2296 "pci_request_regions failed 0x%x\n", err);
2297 goto err_pci_reg;
2298 }
2299
2300 pci_enable_pcie_error_reporting(pdev);
2301
2302 pci_set_master(pdev);
2303
2304 netdev = alloc_etherdev_mq(sizeof(struct i40evf_adapter),
2305 MAX_TX_QUEUES);
2306 if (!netdev) {
2307 err = -ENOMEM;
2308 goto err_alloc_etherdev;
2309 }
2310
2311 SET_NETDEV_DEV(netdev, &pdev->dev);
2312
2313 pci_set_drvdata(pdev, netdev);
2314 adapter = netdev_priv(netdev);
5eae00c5
GR
2315
2316 adapter->netdev = netdev;
2317 adapter->pdev = pdev;
2318
2319 hw = &adapter->hw;
2320 hw->back = adapter;
2321
2322 adapter->msg_enable = (1 << DEFAULT_DEBUG_LEVEL_SHIFT) - 1;
2323 adapter->state = __I40EVF_STARTUP;
2324
2325 /* Call save state here because it relies on the adapter struct. */
2326 pci_save_state(pdev);
2327
2328 hw->hw_addr = ioremap(pci_resource_start(pdev, 0),
2329 pci_resource_len(pdev, 0));
2330 if (!hw->hw_addr) {
2331 err = -EIO;
2332 goto err_ioremap;
2333 }
2334 hw->vendor_id = pdev->vendor;
2335 hw->device_id = pdev->device;
2336 pci_read_config_byte(pdev, PCI_REVISION_ID, &hw->revision_id);
2337 hw->subsystem_vendor_id = pdev->subsystem_vendor;
2338 hw->subsystem_device_id = pdev->subsystem_device;
2339 hw->bus.device = PCI_SLOT(pdev->devfn);
2340 hw->bus.func = PCI_FUNC(pdev->devfn);
2341
8bb1a540
SK
2342 INIT_LIST_HEAD(&adapter->mac_filter_list);
2343 INIT_LIST_HEAD(&adapter->vlan_filter_list);
2344
5eae00c5
GR
2345 INIT_WORK(&adapter->reset_task, i40evf_reset_task);
2346 INIT_WORK(&adapter->adminq_task, i40evf_adminq_task);
2347 INIT_WORK(&adapter->watchdog_task, i40evf_watchdog_task);
2348 INIT_DELAYED_WORK(&adapter->init_task, i40evf_init_task);
2349 schedule_delayed_work(&adapter->init_task, 10);
2350
2351 return 0;
2352
2353err_ioremap:
2354 free_netdev(netdev);
2355err_alloc_etherdev:
2356 pci_release_regions(pdev);
2357err_pci_reg:
2358err_dma:
2359 pci_disable_device(pdev);
2360 return err;
2361}
2362
2363#ifdef CONFIG_PM
2364/**
2365 * i40evf_suspend - Power management suspend routine
2366 * @pdev: PCI device information struct
2367 * @state: unused
2368 *
2369 * Called when the system (VM) is entering sleep/suspend.
2370 **/
2371static int i40evf_suspend(struct pci_dev *pdev, pm_message_t state)
2372{
2373 struct net_device *netdev = pci_get_drvdata(pdev);
2374 struct i40evf_adapter *adapter = netdev_priv(netdev);
2375 int retval = 0;
2376
2377 netif_device_detach(netdev);
2378
2379 if (netif_running(netdev)) {
2380 rtnl_lock();
2381 i40evf_down(adapter);
2382 rtnl_unlock();
2383 }
2384 i40evf_free_misc_irq(adapter);
2385 i40evf_reset_interrupt_capability(adapter);
2386
2387 retval = pci_save_state(pdev);
2388 if (retval)
2389 return retval;
2390
2391 pci_disable_device(pdev);
2392
2393 return 0;
2394}
2395
2396/**
dbedd44e 2397 * i40evf_resume - Power management resume routine
5eae00c5
GR
2398 * @pdev: PCI device information struct
2399 *
2400 * Called when the system (VM) is resumed from sleep/suspend.
2401 **/
2402static int i40evf_resume(struct pci_dev *pdev)
2403{
2404 struct i40evf_adapter *adapter = pci_get_drvdata(pdev);
2405 struct net_device *netdev = adapter->netdev;
2406 u32 err;
2407
2408 pci_set_power_state(pdev, PCI_D0);
2409 pci_restore_state(pdev);
2410 /* pci_restore_state clears dev->state_saved so call
2411 * pci_save_state to restore it.
2412 */
2413 pci_save_state(pdev);
2414
2415 err = pci_enable_device_mem(pdev);
2416 if (err) {
2417 dev_err(&pdev->dev, "Cannot enable PCI device from suspend.\n");
2418 return err;
2419 }
2420 pci_set_master(pdev);
2421
2422 rtnl_lock();
2423 err = i40evf_set_interrupt_capability(adapter);
2424 if (err) {
2425 dev_err(&pdev->dev, "Cannot enable MSI-X interrupts.\n");
2426 return err;
2427 }
2428 err = i40evf_request_misc_irq(adapter);
2429 rtnl_unlock();
2430 if (err) {
2431 dev_err(&pdev->dev, "Cannot get interrupt vector.\n");
2432 return err;
2433 }
2434
2435 schedule_work(&adapter->reset_task);
2436
2437 netif_device_attach(netdev);
2438
2439 return err;
2440}
2441
2442#endif /* CONFIG_PM */
2443/**
2444 * i40evf_remove - Device Removal Routine
2445 * @pdev: PCI device information struct
2446 *
2447 * i40evf_remove is called by the PCI subsystem to alert the driver
2448 * that it should release a PCI device. The could be caused by a
2449 * Hot-Plug event, or because the driver is going to be removed from
2450 * memory.
2451 **/
2452static void i40evf_remove(struct pci_dev *pdev)
2453{
2454 struct net_device *netdev = pci_get_drvdata(pdev);
2455 struct i40evf_adapter *adapter = netdev_priv(netdev);
6ba36a24 2456 struct i40evf_mac_filter *f, *ftmp;
5eae00c5
GR
2457 struct i40e_hw *hw = &adapter->hw;
2458
2459 cancel_delayed_work_sync(&adapter->init_task);
ef8693eb 2460 cancel_work_sync(&adapter->reset_task);
5eae00c5
GR
2461
2462 if (adapter->netdev_registered) {
2463 unregister_netdev(netdev);
2464 adapter->netdev_registered = false;
2465 }
53d0b3ae 2466
f4a71881 2467 /* Shut down all the garbage mashers on the detention level */
5eae00c5 2468 adapter->state = __I40EVF_REMOVE;
f4a71881
MW
2469 adapter->aq_required = 0;
2470 adapter->aq_pending = 0;
2471 i40evf_request_reset(adapter);
2472 msleep(20);
2473 /* If the FW isn't responding, kick it once, but only once. */
2474 if (!i40evf_asq_done(hw)) {
2475 i40evf_request_reset(adapter);
2476 msleep(20);
2477 }
5eae00c5 2478
dbb01c8a 2479 if (adapter->msix_entries) {
5eae00c5 2480 i40evf_misc_irq_disable(adapter);
5eae00c5 2481 i40evf_free_misc_irq(adapter);
5eae00c5 2482 i40evf_reset_interrupt_capability(adapter);
d31944d6 2483 i40evf_free_q_vectors(adapter);
5eae00c5
GR
2484 }
2485
e5d17c3e
MW
2486 if (adapter->watchdog_timer.function)
2487 del_timer_sync(&adapter->watchdog_timer);
2488
dbb01c8a
MW
2489 flush_scheduled_work();
2490
5eae00c5
GR
2491 if (hw->aq.asq.count)
2492 i40evf_shutdown_adminq(hw);
2493
2494 iounmap(hw->hw_addr);
2495 pci_release_regions(pdev);
2496
e284fc88
MW
2497 i40evf_free_all_tx_resources(adapter);
2498 i40evf_free_all_rx_resources(adapter);
5eae00c5
GR
2499 i40evf_free_queues(adapter);
2500 kfree(adapter->vf_res);
6ba36a24
MW
2501 /* If we got removed before an up/down sequence, we've got a filter
2502 * hanging out there that we need to get rid of.
2503 */
2504 list_for_each_entry_safe(f, ftmp, &adapter->mac_filter_list, list) {
2505 list_del(&f->list);
2506 kfree(f);
2507 }
37dfdf37
MW
2508 list_for_each_entry_safe(f, ftmp, &adapter->vlan_filter_list, list) {
2509 list_del(&f->list);
2510 kfree(f);
2511 }
5eae00c5
GR
2512
2513 free_netdev(netdev);
2514
2515 pci_disable_pcie_error_reporting(pdev);
2516
2517 pci_disable_device(pdev);
2518}
2519
2520static struct pci_driver i40evf_driver = {
2521 .name = i40evf_driver_name,
2522 .id_table = i40evf_pci_tbl,
2523 .probe = i40evf_probe,
2524 .remove = i40evf_remove,
2525#ifdef CONFIG_PM
2526 .suspend = i40evf_suspend,
2527 .resume = i40evf_resume,
2528#endif
2529 .shutdown = i40evf_shutdown,
2530};
2531
2532/**
2533 * i40e_init_module - Driver Registration Routine
2534 *
2535 * i40e_init_module is the first routine called when the driver is
2536 * loaded. All it does is register with the PCI subsystem.
2537 **/
2538static int __init i40evf_init_module(void)
2539{
2540 int ret;
75a64435 2541
5eae00c5 2542 pr_info("i40evf: %s - version %s\n", i40evf_driver_string,
75a64435 2543 i40evf_driver_version);
5eae00c5
GR
2544
2545 pr_info("%s\n", i40evf_copyright);
2546
2547 ret = pci_register_driver(&i40evf_driver);
2548 return ret;
2549}
2550
2551module_init(i40evf_init_module);
2552
2553/**
2554 * i40e_exit_module - Driver Exit Cleanup Routine
2555 *
2556 * i40e_exit_module is called just before the driver is removed
2557 * from memory.
2558 **/
2559static void __exit i40evf_exit_module(void)
2560{
2561 pci_unregister_driver(&i40evf_driver);
2562}
2563
2564module_exit(i40evf_exit_module);
2565
2566/* i40evf_main.c */
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