blob: 65c27cb1e9ec4807b19143447975a5afb8c7968f [file] [log] [blame]
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001/*******************************************************************************
2 *
3 * Intel Ethernet Controller XL710 Family Linux Driver
Greg Rosedc641b72013-12-18 13:45:51 +00004 * Copyright(c) 2013 - 2014 Intel Corporation.
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005 *
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 *
Greg Rosedc641b72013-12-18 13:45:51 +000015 * 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/>.
Jesse Brandeburg41c445f2013-09-11 08:39:46 +000017 *
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/* Local includes */
28#include "i40e.h"
Jeff Kirshera1c9a9d2013-12-28 07:32:18 +000029#ifdef CONFIG_I40E_VXLAN
30#include <net/vxlan.h>
31#endif
Jesse Brandeburg41c445f2013-09-11 08:39:46 +000032
33const char i40e_driver_name[] = "i40e";
34static const char i40e_driver_string[] =
35 "Intel(R) Ethernet Connection XL710 Network Driver";
36
37#define DRV_KERN "-k"
38
39#define DRV_VERSION_MAJOR 0
40#define DRV_VERSION_MINOR 3
Catherine Sullivan21aa5672013-12-18 13:46:07 +000041#define DRV_VERSION_BUILD 27
Jesse Brandeburg41c445f2013-09-11 08:39:46 +000042#define DRV_VERSION __stringify(DRV_VERSION_MAJOR) "." \
43 __stringify(DRV_VERSION_MINOR) "." \
44 __stringify(DRV_VERSION_BUILD) DRV_KERN
45const char i40e_driver_version_str[] = DRV_VERSION;
46static const char i40e_copyright[] = "Copyright (c) 2013 Intel Corporation.";
47
48/* a bit of forward declarations */
49static void i40e_vsi_reinit_locked(struct i40e_vsi *vsi);
50static void i40e_handle_reset_warning(struct i40e_pf *pf);
51static int i40e_add_vsi(struct i40e_vsi *vsi);
52static int i40e_add_veb(struct i40e_veb *veb, struct i40e_vsi *vsi);
Anjali Singhai Jainbc7d3382013-11-26 10:49:18 +000053static int i40e_setup_pf_switch(struct i40e_pf *pf, bool reinit);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +000054static int i40e_setup_misc_vector(struct i40e_pf *pf);
55static void i40e_determine_queue_usage(struct i40e_pf *pf);
56static int i40e_setup_pf_filter_control(struct i40e_pf *pf);
57
58/* i40e_pci_tbl - PCI Device ID Table
59 *
60 * Last entry must be all 0s
61 *
62 * { Vendor ID, Device ID, SubVendor ID, SubDevice ID,
63 * Class, Class Mask, private data (not used) }
64 */
65static DEFINE_PCI_DEVICE_TABLE(i40e_pci_tbl) = {
66 {PCI_VDEVICE(INTEL, I40E_SFP_XL710_DEVICE_ID), 0},
67 {PCI_VDEVICE(INTEL, I40E_SFP_X710_DEVICE_ID), 0},
68 {PCI_VDEVICE(INTEL, I40E_QEMU_DEVICE_ID), 0},
69 {PCI_VDEVICE(INTEL, I40E_KX_A_DEVICE_ID), 0},
70 {PCI_VDEVICE(INTEL, I40E_KX_B_DEVICE_ID), 0},
71 {PCI_VDEVICE(INTEL, I40E_KX_C_DEVICE_ID), 0},
72 {PCI_VDEVICE(INTEL, I40E_KX_D_DEVICE_ID), 0},
73 {PCI_VDEVICE(INTEL, I40E_QSFP_A_DEVICE_ID), 0},
74 {PCI_VDEVICE(INTEL, I40E_QSFP_B_DEVICE_ID), 0},
75 {PCI_VDEVICE(INTEL, I40E_QSFP_C_DEVICE_ID), 0},
76 /* required last entry */
77 {0, }
78};
79MODULE_DEVICE_TABLE(pci, i40e_pci_tbl);
80
81#define I40E_MAX_VF_COUNT 128
82static int debug = -1;
83module_param(debug, int, 0);
84MODULE_PARM_DESC(debug, "Debug level (0=none,...,16=all)");
85
86MODULE_AUTHOR("Intel Corporation, <e1000-devel@lists.sourceforge.net>");
87MODULE_DESCRIPTION("Intel(R) Ethernet Connection XL710 Network Driver");
88MODULE_LICENSE("GPL");
89MODULE_VERSION(DRV_VERSION);
90
91/**
92 * i40e_allocate_dma_mem_d - OS specific memory alloc for shared code
93 * @hw: pointer to the HW structure
94 * @mem: ptr to mem struct to fill out
95 * @size: size of memory requested
96 * @alignment: what to align the allocation to
97 **/
98int i40e_allocate_dma_mem_d(struct i40e_hw *hw, struct i40e_dma_mem *mem,
99 u64 size, u32 alignment)
100{
101 struct i40e_pf *pf = (struct i40e_pf *)hw->back;
102
103 mem->size = ALIGN(size, alignment);
104 mem->va = dma_zalloc_coherent(&pf->pdev->dev, mem->size,
105 &mem->pa, GFP_KERNEL);
Jesse Brandeburg93bc73b2013-09-13 08:23:18 +0000106 if (!mem->va)
107 return -ENOMEM;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +0000108
Jesse Brandeburg93bc73b2013-09-13 08:23:18 +0000109 return 0;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +0000110}
111
112/**
113 * i40e_free_dma_mem_d - OS specific memory free for shared code
114 * @hw: pointer to the HW structure
115 * @mem: ptr to mem struct to free
116 **/
117int i40e_free_dma_mem_d(struct i40e_hw *hw, struct i40e_dma_mem *mem)
118{
119 struct i40e_pf *pf = (struct i40e_pf *)hw->back;
120
121 dma_free_coherent(&pf->pdev->dev, mem->size, mem->va, mem->pa);
122 mem->va = NULL;
123 mem->pa = 0;
124 mem->size = 0;
125
126 return 0;
127}
128
129/**
130 * i40e_allocate_virt_mem_d - OS specific memory alloc for shared code
131 * @hw: pointer to the HW structure
132 * @mem: ptr to mem struct to fill out
133 * @size: size of memory requested
134 **/
135int i40e_allocate_virt_mem_d(struct i40e_hw *hw, struct i40e_virt_mem *mem,
136 u32 size)
137{
138 mem->size = size;
139 mem->va = kzalloc(size, GFP_KERNEL);
140
Jesse Brandeburg93bc73b2013-09-13 08:23:18 +0000141 if (!mem->va)
142 return -ENOMEM;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +0000143
Jesse Brandeburg93bc73b2013-09-13 08:23:18 +0000144 return 0;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +0000145}
146
147/**
148 * i40e_free_virt_mem_d - OS specific memory free for shared code
149 * @hw: pointer to the HW structure
150 * @mem: ptr to mem struct to free
151 **/
152int i40e_free_virt_mem_d(struct i40e_hw *hw, struct i40e_virt_mem *mem)
153{
154 /* it's ok to kfree a NULL pointer */
155 kfree(mem->va);
156 mem->va = NULL;
157 mem->size = 0;
158
159 return 0;
160}
161
162/**
163 * i40e_get_lump - find a lump of free generic resource
164 * @pf: board private structure
165 * @pile: the pile of resource to search
166 * @needed: the number of items needed
167 * @id: an owner id to stick on the items assigned
168 *
169 * Returns the base item index of the lump, or negative for error
170 *
171 * The search_hint trick and lack of advanced fit-finding only work
172 * because we're highly likely to have all the same size lump requests.
173 * Linear search time and any fragmentation should be minimal.
174 **/
175static int i40e_get_lump(struct i40e_pf *pf, struct i40e_lump_tracking *pile,
176 u16 needed, u16 id)
177{
178 int ret = -ENOMEM;
Jesse Brandeburgddf434a2013-09-13 08:23:19 +0000179 int i, j;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +0000180
181 if (!pile || needed == 0 || id >= I40E_PILE_VALID_BIT) {
182 dev_info(&pf->pdev->dev,
183 "param err: pile=%p needed=%d id=0x%04x\n",
184 pile, needed, id);
185 return -EINVAL;
186 }
187
188 /* start the linear search with an imperfect hint */
189 i = pile->search_hint;
Jesse Brandeburgddf434a2013-09-13 08:23:19 +0000190 while (i < pile->num_entries) {
Jesse Brandeburg41c445f2013-09-11 08:39:46 +0000191 /* skip already allocated entries */
192 if (pile->list[i] & I40E_PILE_VALID_BIT) {
193 i++;
194 continue;
195 }
196
197 /* do we have enough in this lump? */
198 for (j = 0; (j < needed) && ((i+j) < pile->num_entries); j++) {
199 if (pile->list[i+j] & I40E_PILE_VALID_BIT)
200 break;
201 }
202
203 if (j == needed) {
204 /* there was enough, so assign it to the requestor */
205 for (j = 0; j < needed; j++)
206 pile->list[i+j] = id | I40E_PILE_VALID_BIT;
207 ret = i;
208 pile->search_hint = i + j;
Jesse Brandeburgddf434a2013-09-13 08:23:19 +0000209 break;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +0000210 } else {
211 /* not enough, so skip over it and continue looking */
212 i += j;
213 }
214 }
215
216 return ret;
217}
218
219/**
220 * i40e_put_lump - return a lump of generic resource
221 * @pile: the pile of resource to search
222 * @index: the base item index
223 * @id: the owner id of the items assigned
224 *
225 * Returns the count of items in the lump
226 **/
227static int i40e_put_lump(struct i40e_lump_tracking *pile, u16 index, u16 id)
228{
229 int valid_id = (id | I40E_PILE_VALID_BIT);
230 int count = 0;
231 int i;
232
233 if (!pile || index >= pile->num_entries)
234 return -EINVAL;
235
236 for (i = index;
237 i < pile->num_entries && pile->list[i] == valid_id;
238 i++) {
239 pile->list[i] = 0;
240 count++;
241 }
242
243 if (count && index < pile->search_hint)
244 pile->search_hint = index;
245
246 return count;
247}
248
249/**
250 * i40e_service_event_schedule - Schedule the service task to wake up
251 * @pf: board private structure
252 *
253 * If not already scheduled, this puts the task into the work queue
254 **/
255static void i40e_service_event_schedule(struct i40e_pf *pf)
256{
257 if (!test_bit(__I40E_DOWN, &pf->state) &&
258 !test_bit(__I40E_RESET_RECOVERY_PENDING, &pf->state) &&
259 !test_and_set_bit(__I40E_SERVICE_SCHED, &pf->state))
260 schedule_work(&pf->service_task);
261}
262
263/**
264 * i40e_tx_timeout - Respond to a Tx Hang
265 * @netdev: network interface device structure
266 *
267 * If any port has noticed a Tx timeout, it is likely that the whole
268 * device is munged, not just the one netdev port, so go for the full
269 * reset.
270 **/
271static void i40e_tx_timeout(struct net_device *netdev)
272{
273 struct i40e_netdev_priv *np = netdev_priv(netdev);
274 struct i40e_vsi *vsi = np->vsi;
275 struct i40e_pf *pf = vsi->back;
276
277 pf->tx_timeout_count++;
278
279 if (time_after(jiffies, (pf->tx_timeout_last_recovery + HZ*20)))
280 pf->tx_timeout_recovery_level = 0;
281 pf->tx_timeout_last_recovery = jiffies;
282 netdev_info(netdev, "tx_timeout recovery level %d\n",
283 pf->tx_timeout_recovery_level);
284
285 switch (pf->tx_timeout_recovery_level) {
286 case 0:
287 /* disable and re-enable queues for the VSI */
288 if (in_interrupt()) {
289 set_bit(__I40E_REINIT_REQUESTED, &pf->state);
290 set_bit(__I40E_REINIT_REQUESTED, &vsi->state);
291 } else {
292 i40e_vsi_reinit_locked(vsi);
293 }
294 break;
295 case 1:
296 set_bit(__I40E_PF_RESET_REQUESTED, &pf->state);
297 break;
298 case 2:
299 set_bit(__I40E_CORE_RESET_REQUESTED, &pf->state);
300 break;
301 case 3:
302 set_bit(__I40E_GLOBAL_RESET_REQUESTED, &pf->state);
303 break;
304 default:
305 netdev_err(netdev, "tx_timeout recovery unsuccessful\n");
306 i40e_down(vsi);
307 break;
308 }
309 i40e_service_event_schedule(pf);
310 pf->tx_timeout_recovery_level++;
311}
312
313/**
314 * i40e_release_rx_desc - Store the new tail and head values
315 * @rx_ring: ring to bump
316 * @val: new head index
317 **/
318static inline void i40e_release_rx_desc(struct i40e_ring *rx_ring, u32 val)
319{
320 rx_ring->next_to_use = val;
321
322 /* Force memory writes to complete before letting h/w
323 * know there are new descriptors to fetch. (Only
324 * applicable for weak-ordered memory model archs,
325 * such as IA-64).
326 */
327 wmb();
328 writel(val, rx_ring->tail);
329}
330
331/**
332 * i40e_get_vsi_stats_struct - Get System Network Statistics
333 * @vsi: the VSI we care about
334 *
335 * Returns the address of the device statistics structure.
336 * The statistics are actually updated from the service task.
337 **/
338struct rtnl_link_stats64 *i40e_get_vsi_stats_struct(struct i40e_vsi *vsi)
339{
340 return &vsi->net_stats;
341}
342
343/**
344 * i40e_get_netdev_stats_struct - Get statistics for netdev interface
345 * @netdev: network interface device structure
346 *
347 * Returns the address of the device statistics structure.
348 * The statistics are actually updated from the service task.
349 **/
350static struct rtnl_link_stats64 *i40e_get_netdev_stats_struct(
351 struct net_device *netdev,
Alexander Duyck980e9b12013-09-28 06:01:03 +0000352 struct rtnl_link_stats64 *stats)
Jesse Brandeburg41c445f2013-09-11 08:39:46 +0000353{
354 struct i40e_netdev_priv *np = netdev_priv(netdev);
355 struct i40e_vsi *vsi = np->vsi;
Alexander Duyck980e9b12013-09-28 06:01:03 +0000356 struct rtnl_link_stats64 *vsi_stats = i40e_get_vsi_stats_struct(vsi);
357 int i;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +0000358
David S. Miller143c9052013-12-18 16:42:06 -0500359
Anjali Singhai Jainbc7d3382013-11-26 10:49:18 +0000360 if (test_bit(__I40E_DOWN, &vsi->state))
361 return stats;
362
Jesse Brandeburg3c325ce2013-12-14 03:26:45 -0800363 if (!vsi->tx_rings)
364 return stats;
365
Alexander Duyck980e9b12013-09-28 06:01:03 +0000366 rcu_read_lock();
367 for (i = 0; i < vsi->num_queue_pairs; i++) {
368 struct i40e_ring *tx_ring, *rx_ring;
369 u64 bytes, packets;
370 unsigned int start;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +0000371
Alexander Duyck980e9b12013-09-28 06:01:03 +0000372 tx_ring = ACCESS_ONCE(vsi->tx_rings[i]);
373 if (!tx_ring)
374 continue;
375
376 do {
377 start = u64_stats_fetch_begin_bh(&tx_ring->syncp);
378 packets = tx_ring->stats.packets;
379 bytes = tx_ring->stats.bytes;
380 } while (u64_stats_fetch_retry_bh(&tx_ring->syncp, start));
381
382 stats->tx_packets += packets;
383 stats->tx_bytes += bytes;
384 rx_ring = &tx_ring[1];
385
386 do {
387 start = u64_stats_fetch_begin_bh(&rx_ring->syncp);
388 packets = rx_ring->stats.packets;
389 bytes = rx_ring->stats.bytes;
390 } while (u64_stats_fetch_retry_bh(&rx_ring->syncp, start));
391
392 stats->rx_packets += packets;
393 stats->rx_bytes += bytes;
394 }
395 rcu_read_unlock();
396
397 /* following stats updated by ixgbe_watchdog_task() */
398 stats->multicast = vsi_stats->multicast;
399 stats->tx_errors = vsi_stats->tx_errors;
400 stats->tx_dropped = vsi_stats->tx_dropped;
401 stats->rx_errors = vsi_stats->rx_errors;
402 stats->rx_crc_errors = vsi_stats->rx_crc_errors;
403 stats->rx_length_errors = vsi_stats->rx_length_errors;
404
405 return stats;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +0000406}
407
408/**
409 * i40e_vsi_reset_stats - Resets all stats of the given vsi
410 * @vsi: the VSI to have its stats reset
411 **/
412void i40e_vsi_reset_stats(struct i40e_vsi *vsi)
413{
414 struct rtnl_link_stats64 *ns;
415 int i;
416
417 if (!vsi)
418 return;
419
420 ns = i40e_get_vsi_stats_struct(vsi);
421 memset(ns, 0, sizeof(*ns));
422 memset(&vsi->net_stats_offsets, 0, sizeof(vsi->net_stats_offsets));
423 memset(&vsi->eth_stats, 0, sizeof(vsi->eth_stats));
424 memset(&vsi->eth_stats_offsets, 0, sizeof(vsi->eth_stats_offsets));
Greg Rose8e9dca52013-12-18 13:45:53 +0000425 if (vsi->rx_rings && vsi->rx_rings[0]) {
Jesse Brandeburg41c445f2013-09-11 08:39:46 +0000426 for (i = 0; i < vsi->num_queue_pairs; i++) {
Alexander Duyck9f65e15b2013-09-28 06:00:58 +0000427 memset(&vsi->rx_rings[i]->stats, 0 ,
428 sizeof(vsi->rx_rings[i]->stats));
429 memset(&vsi->rx_rings[i]->rx_stats, 0 ,
430 sizeof(vsi->rx_rings[i]->rx_stats));
431 memset(&vsi->tx_rings[i]->stats, 0 ,
432 sizeof(vsi->tx_rings[i]->stats));
433 memset(&vsi->tx_rings[i]->tx_stats, 0,
434 sizeof(vsi->tx_rings[i]->tx_stats));
Jesse Brandeburg41c445f2013-09-11 08:39:46 +0000435 }
Greg Rose8e9dca52013-12-18 13:45:53 +0000436 }
Jesse Brandeburg41c445f2013-09-11 08:39:46 +0000437 vsi->stat_offsets_loaded = false;
438}
439
440/**
441 * i40e_pf_reset_stats - Reset all of the stats for the given pf
442 * @pf: the PF to be reset
443 **/
444void i40e_pf_reset_stats(struct i40e_pf *pf)
445{
446 memset(&pf->stats, 0, sizeof(pf->stats));
447 memset(&pf->stats_offsets, 0, sizeof(pf->stats_offsets));
448 pf->stat_offsets_loaded = false;
449}
450
451/**
452 * i40e_stat_update48 - read and update a 48 bit stat from the chip
453 * @hw: ptr to the hardware info
454 * @hireg: the high 32 bit reg to read
455 * @loreg: the low 32 bit reg to read
456 * @offset_loaded: has the initial offset been loaded yet
457 * @offset: ptr to current offset value
458 * @stat: ptr to the stat
459 *
460 * Since the device stats are not reset at PFReset, they likely will not
461 * be zeroed when the driver starts. We'll save the first values read
462 * and use them as offsets to be subtracted from the raw values in order
463 * to report stats that count from zero. In the process, we also manage
464 * the potential roll-over.
465 **/
466static void i40e_stat_update48(struct i40e_hw *hw, u32 hireg, u32 loreg,
467 bool offset_loaded, u64 *offset, u64 *stat)
468{
469 u64 new_data;
470
471 if (hw->device_id == I40E_QEMU_DEVICE_ID) {
472 new_data = rd32(hw, loreg);
473 new_data |= ((u64)(rd32(hw, hireg) & 0xFFFF)) << 32;
474 } else {
475 new_data = rd64(hw, loreg);
476 }
477 if (!offset_loaded)
478 *offset = new_data;
479 if (likely(new_data >= *offset))
480 *stat = new_data - *offset;
481 else
482 *stat = (new_data + ((u64)1 << 48)) - *offset;
483 *stat &= 0xFFFFFFFFFFFFULL;
484}
485
486/**
487 * i40e_stat_update32 - read and update a 32 bit stat from the chip
488 * @hw: ptr to the hardware info
489 * @reg: the hw reg to read
490 * @offset_loaded: has the initial offset been loaded yet
491 * @offset: ptr to current offset value
492 * @stat: ptr to the stat
493 **/
494static void i40e_stat_update32(struct i40e_hw *hw, u32 reg,
495 bool offset_loaded, u64 *offset, u64 *stat)
496{
497 u32 new_data;
498
499 new_data = rd32(hw, reg);
500 if (!offset_loaded)
501 *offset = new_data;
502 if (likely(new_data >= *offset))
503 *stat = (u32)(new_data - *offset);
504 else
505 *stat = (u32)((new_data + ((u64)1 << 32)) - *offset);
506}
507
508/**
509 * i40e_update_eth_stats - Update VSI-specific ethernet statistics counters.
510 * @vsi: the VSI to be updated
511 **/
512void i40e_update_eth_stats(struct i40e_vsi *vsi)
513{
514 int stat_idx = le16_to_cpu(vsi->info.stat_counter_idx);
515 struct i40e_pf *pf = vsi->back;
516 struct i40e_hw *hw = &pf->hw;
517 struct i40e_eth_stats *oes;
518 struct i40e_eth_stats *es; /* device's eth stats */
519
520 es = &vsi->eth_stats;
521 oes = &vsi->eth_stats_offsets;
522
523 /* Gather up the stats that the hw collects */
524 i40e_stat_update32(hw, I40E_GLV_TEPC(stat_idx),
525 vsi->stat_offsets_loaded,
526 &oes->tx_errors, &es->tx_errors);
527 i40e_stat_update32(hw, I40E_GLV_RDPC(stat_idx),
528 vsi->stat_offsets_loaded,
529 &oes->rx_discards, &es->rx_discards);
530
531 i40e_stat_update48(hw, I40E_GLV_GORCH(stat_idx),
532 I40E_GLV_GORCL(stat_idx),
533 vsi->stat_offsets_loaded,
534 &oes->rx_bytes, &es->rx_bytes);
535 i40e_stat_update48(hw, I40E_GLV_UPRCH(stat_idx),
536 I40E_GLV_UPRCL(stat_idx),
537 vsi->stat_offsets_loaded,
538 &oes->rx_unicast, &es->rx_unicast);
539 i40e_stat_update48(hw, I40E_GLV_MPRCH(stat_idx),
540 I40E_GLV_MPRCL(stat_idx),
541 vsi->stat_offsets_loaded,
542 &oes->rx_multicast, &es->rx_multicast);
543 i40e_stat_update48(hw, I40E_GLV_BPRCH(stat_idx),
544 I40E_GLV_BPRCL(stat_idx),
545 vsi->stat_offsets_loaded,
546 &oes->rx_broadcast, &es->rx_broadcast);
547
548 i40e_stat_update48(hw, I40E_GLV_GOTCH(stat_idx),
549 I40E_GLV_GOTCL(stat_idx),
550 vsi->stat_offsets_loaded,
551 &oes->tx_bytes, &es->tx_bytes);
552 i40e_stat_update48(hw, I40E_GLV_UPTCH(stat_idx),
553 I40E_GLV_UPTCL(stat_idx),
554 vsi->stat_offsets_loaded,
555 &oes->tx_unicast, &es->tx_unicast);
556 i40e_stat_update48(hw, I40E_GLV_MPTCH(stat_idx),
557 I40E_GLV_MPTCL(stat_idx),
558 vsi->stat_offsets_loaded,
559 &oes->tx_multicast, &es->tx_multicast);
560 i40e_stat_update48(hw, I40E_GLV_BPTCH(stat_idx),
561 I40E_GLV_BPTCL(stat_idx),
562 vsi->stat_offsets_loaded,
563 &oes->tx_broadcast, &es->tx_broadcast);
564 vsi->stat_offsets_loaded = true;
565}
566
567/**
568 * i40e_update_veb_stats - Update Switch component statistics
569 * @veb: the VEB being updated
570 **/
571static void i40e_update_veb_stats(struct i40e_veb *veb)
572{
573 struct i40e_pf *pf = veb->pf;
574 struct i40e_hw *hw = &pf->hw;
575 struct i40e_eth_stats *oes;
576 struct i40e_eth_stats *es; /* device's eth stats */
577 int idx = 0;
578
579 idx = veb->stats_idx;
580 es = &veb->stats;
581 oes = &veb->stats_offsets;
582
583 /* Gather up the stats that the hw collects */
584 i40e_stat_update32(hw, I40E_GLSW_TDPC(idx),
585 veb->stat_offsets_loaded,
586 &oes->tx_discards, &es->tx_discards);
Jesse Brandeburg7134f9c2013-11-26 08:56:05 +0000587 if (hw->revision_id > 0)
588 i40e_stat_update32(hw, I40E_GLSW_RUPP(idx),
589 veb->stat_offsets_loaded,
590 &oes->rx_unknown_protocol,
591 &es->rx_unknown_protocol);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +0000592 i40e_stat_update48(hw, I40E_GLSW_GORCH(idx), I40E_GLSW_GORCL(idx),
593 veb->stat_offsets_loaded,
594 &oes->rx_bytes, &es->rx_bytes);
595 i40e_stat_update48(hw, I40E_GLSW_UPRCH(idx), I40E_GLSW_UPRCL(idx),
596 veb->stat_offsets_loaded,
597 &oes->rx_unicast, &es->rx_unicast);
598 i40e_stat_update48(hw, I40E_GLSW_MPRCH(idx), I40E_GLSW_MPRCL(idx),
599 veb->stat_offsets_loaded,
600 &oes->rx_multicast, &es->rx_multicast);
601 i40e_stat_update48(hw, I40E_GLSW_BPRCH(idx), I40E_GLSW_BPRCL(idx),
602 veb->stat_offsets_loaded,
603 &oes->rx_broadcast, &es->rx_broadcast);
604
605 i40e_stat_update48(hw, I40E_GLSW_GOTCH(idx), I40E_GLSW_GOTCL(idx),
606 veb->stat_offsets_loaded,
607 &oes->tx_bytes, &es->tx_bytes);
608 i40e_stat_update48(hw, I40E_GLSW_UPTCH(idx), I40E_GLSW_UPTCL(idx),
609 veb->stat_offsets_loaded,
610 &oes->tx_unicast, &es->tx_unicast);
611 i40e_stat_update48(hw, I40E_GLSW_MPTCH(idx), I40E_GLSW_MPTCL(idx),
612 veb->stat_offsets_loaded,
613 &oes->tx_multicast, &es->tx_multicast);
614 i40e_stat_update48(hw, I40E_GLSW_BPTCH(idx), I40E_GLSW_BPTCL(idx),
615 veb->stat_offsets_loaded,
616 &oes->tx_broadcast, &es->tx_broadcast);
617 veb->stat_offsets_loaded = true;
618}
619
620/**
621 * i40e_update_link_xoff_rx - Update XOFF received in link flow control mode
622 * @pf: the corresponding PF
623 *
624 * Update the Rx XOFF counter (PAUSE frames) in link flow control mode
625 **/
626static void i40e_update_link_xoff_rx(struct i40e_pf *pf)
627{
628 struct i40e_hw_port_stats *osd = &pf->stats_offsets;
629 struct i40e_hw_port_stats *nsd = &pf->stats;
630 struct i40e_hw *hw = &pf->hw;
631 u64 xoff = 0;
632 u16 i, v;
633
634 if ((hw->fc.current_mode != I40E_FC_FULL) &&
635 (hw->fc.current_mode != I40E_FC_RX_PAUSE))
636 return;
637
638 xoff = nsd->link_xoff_rx;
639 i40e_stat_update32(hw, I40E_GLPRT_LXOFFRXC(hw->port),
640 pf->stat_offsets_loaded,
641 &osd->link_xoff_rx, &nsd->link_xoff_rx);
642
643 /* No new LFC xoff rx */
644 if (!(nsd->link_xoff_rx - xoff))
645 return;
646
647 /* Clear the __I40E_HANG_CHECK_ARMED bit for all Tx rings */
648 for (v = 0; v < pf->hw.func_caps.num_vsis; v++) {
649 struct i40e_vsi *vsi = pf->vsi[v];
650
651 if (!vsi)
652 continue;
653
654 for (i = 0; i < vsi->num_queue_pairs; i++) {
Alexander Duyck9f65e15b2013-09-28 06:00:58 +0000655 struct i40e_ring *ring = vsi->tx_rings[i];
Jesse Brandeburg41c445f2013-09-11 08:39:46 +0000656 clear_bit(__I40E_HANG_CHECK_ARMED, &ring->state);
657 }
658 }
659}
660
661/**
662 * i40e_update_prio_xoff_rx - Update XOFF received in PFC mode
663 * @pf: the corresponding PF
664 *
665 * Update the Rx XOFF counter (PAUSE frames) in PFC mode
666 **/
667static void i40e_update_prio_xoff_rx(struct i40e_pf *pf)
668{
669 struct i40e_hw_port_stats *osd = &pf->stats_offsets;
670 struct i40e_hw_port_stats *nsd = &pf->stats;
671 bool xoff[I40E_MAX_TRAFFIC_CLASS] = {false};
672 struct i40e_dcbx_config *dcb_cfg;
673 struct i40e_hw *hw = &pf->hw;
674 u16 i, v;
675 u8 tc;
676
677 dcb_cfg = &hw->local_dcbx_config;
678
679 /* See if DCB enabled with PFC TC */
680 if (!(pf->flags & I40E_FLAG_DCB_ENABLED) ||
681 !(dcb_cfg->pfc.pfcenable)) {
682 i40e_update_link_xoff_rx(pf);
683 return;
684 }
685
686 for (i = 0; i < I40E_MAX_USER_PRIORITY; i++) {
687 u64 prio_xoff = nsd->priority_xoff_rx[i];
688 i40e_stat_update32(hw, I40E_GLPRT_PXOFFRXC(hw->port, i),
689 pf->stat_offsets_loaded,
690 &osd->priority_xoff_rx[i],
691 &nsd->priority_xoff_rx[i]);
692
693 /* No new PFC xoff rx */
694 if (!(nsd->priority_xoff_rx[i] - prio_xoff))
695 continue;
696 /* Get the TC for given priority */
697 tc = dcb_cfg->etscfg.prioritytable[i];
698 xoff[tc] = true;
699 }
700
701 /* Clear the __I40E_HANG_CHECK_ARMED bit for Tx rings */
702 for (v = 0; v < pf->hw.func_caps.num_vsis; v++) {
703 struct i40e_vsi *vsi = pf->vsi[v];
704
705 if (!vsi)
706 continue;
707
708 for (i = 0; i < vsi->num_queue_pairs; i++) {
Alexander Duyck9f65e15b2013-09-28 06:00:58 +0000709 struct i40e_ring *ring = vsi->tx_rings[i];
Jesse Brandeburg41c445f2013-09-11 08:39:46 +0000710
711 tc = ring->dcb_tc;
712 if (xoff[tc])
713 clear_bit(__I40E_HANG_CHECK_ARMED,
714 &ring->state);
715 }
716 }
717}
718
719/**
720 * i40e_update_stats - Update the board statistics counters.
721 * @vsi: the VSI to be updated
722 *
723 * There are a few instances where we store the same stat in a
724 * couple of different structs. This is partly because we have
725 * the netdev stats that need to be filled out, which is slightly
726 * different from the "eth_stats" defined by the chip and used in
727 * VF communications. We sort it all out here in a central place.
728 **/
729void i40e_update_stats(struct i40e_vsi *vsi)
730{
731 struct i40e_pf *pf = vsi->back;
732 struct i40e_hw *hw = &pf->hw;
733 struct rtnl_link_stats64 *ons;
734 struct rtnl_link_stats64 *ns; /* netdev stats */
735 struct i40e_eth_stats *oes;
736 struct i40e_eth_stats *es; /* device's eth stats */
737 u32 tx_restart, tx_busy;
738 u32 rx_page, rx_buf;
739 u64 rx_p, rx_b;
740 u64 tx_p, tx_b;
741 int i;
742 u16 q;
743
744 if (test_bit(__I40E_DOWN, &vsi->state) ||
745 test_bit(__I40E_CONFIG_BUSY, &pf->state))
746 return;
747
748 ns = i40e_get_vsi_stats_struct(vsi);
749 ons = &vsi->net_stats_offsets;
750 es = &vsi->eth_stats;
751 oes = &vsi->eth_stats_offsets;
752
753 /* Gather up the netdev and vsi stats that the driver collects
754 * on the fly during packet processing
755 */
756 rx_b = rx_p = 0;
757 tx_b = tx_p = 0;
758 tx_restart = tx_busy = 0;
759 rx_page = 0;
760 rx_buf = 0;
Alexander Duyck980e9b12013-09-28 06:01:03 +0000761 rcu_read_lock();
Jesse Brandeburg41c445f2013-09-11 08:39:46 +0000762 for (q = 0; q < vsi->num_queue_pairs; q++) {
763 struct i40e_ring *p;
Alexander Duyck980e9b12013-09-28 06:01:03 +0000764 u64 bytes, packets;
765 unsigned int start;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +0000766
Alexander Duyck980e9b12013-09-28 06:01:03 +0000767 /* locate Tx ring */
768 p = ACCESS_ONCE(vsi->tx_rings[q]);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +0000769
Alexander Duyck980e9b12013-09-28 06:01:03 +0000770 do {
771 start = u64_stats_fetch_begin_bh(&p->syncp);
772 packets = p->stats.packets;
773 bytes = p->stats.bytes;
774 } while (u64_stats_fetch_retry_bh(&p->syncp, start));
775 tx_b += bytes;
776 tx_p += packets;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +0000777 tx_restart += p->tx_stats.restart_queue;
778 tx_busy += p->tx_stats.tx_busy;
Alexander Duyck980e9b12013-09-28 06:01:03 +0000779
780 /* Rx queue is part of the same block as Tx queue */
781 p = &p[1];
782 do {
783 start = u64_stats_fetch_begin_bh(&p->syncp);
784 packets = p->stats.packets;
785 bytes = p->stats.bytes;
786 } while (u64_stats_fetch_retry_bh(&p->syncp, start));
787 rx_b += bytes;
788 rx_p += packets;
Mitch Williams420136c2013-12-18 13:45:59 +0000789 rx_buf += p->rx_stats.alloc_buff_failed;
790 rx_page += p->rx_stats.alloc_page_failed;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +0000791 }
Alexander Duyck980e9b12013-09-28 06:01:03 +0000792 rcu_read_unlock();
Jesse Brandeburg41c445f2013-09-11 08:39:46 +0000793 vsi->tx_restart = tx_restart;
794 vsi->tx_busy = tx_busy;
795 vsi->rx_page_failed = rx_page;
796 vsi->rx_buf_failed = rx_buf;
797
798 ns->rx_packets = rx_p;
799 ns->rx_bytes = rx_b;
800 ns->tx_packets = tx_p;
801 ns->tx_bytes = tx_b;
802
803 i40e_update_eth_stats(vsi);
804 /* update netdev stats from eth stats */
805 ons->rx_errors = oes->rx_errors;
806 ns->rx_errors = es->rx_errors;
807 ons->tx_errors = oes->tx_errors;
808 ns->tx_errors = es->tx_errors;
809 ons->multicast = oes->rx_multicast;
810 ns->multicast = es->rx_multicast;
811 ons->tx_dropped = oes->tx_discards;
812 ns->tx_dropped = es->tx_discards;
813
814 /* Get the port data only if this is the main PF VSI */
815 if (vsi == pf->vsi[pf->lan_vsi]) {
816 struct i40e_hw_port_stats *nsd = &pf->stats;
817 struct i40e_hw_port_stats *osd = &pf->stats_offsets;
818
819 i40e_stat_update48(hw, I40E_GLPRT_GORCH(hw->port),
820 I40E_GLPRT_GORCL(hw->port),
821 pf->stat_offsets_loaded,
822 &osd->eth.rx_bytes, &nsd->eth.rx_bytes);
823 i40e_stat_update48(hw, I40E_GLPRT_GOTCH(hw->port),
824 I40E_GLPRT_GOTCL(hw->port),
825 pf->stat_offsets_loaded,
826 &osd->eth.tx_bytes, &nsd->eth.tx_bytes);
827 i40e_stat_update32(hw, I40E_GLPRT_RDPC(hw->port),
828 pf->stat_offsets_loaded,
829 &osd->eth.rx_discards,
830 &nsd->eth.rx_discards);
831 i40e_stat_update32(hw, I40E_GLPRT_TDPC(hw->port),
832 pf->stat_offsets_loaded,
833 &osd->eth.tx_discards,
834 &nsd->eth.tx_discards);
835 i40e_stat_update48(hw, I40E_GLPRT_MPRCH(hw->port),
836 I40E_GLPRT_MPRCL(hw->port),
837 pf->stat_offsets_loaded,
838 &osd->eth.rx_multicast,
839 &nsd->eth.rx_multicast);
840
841 i40e_stat_update32(hw, I40E_GLPRT_TDOLD(hw->port),
842 pf->stat_offsets_loaded,
843 &osd->tx_dropped_link_down,
844 &nsd->tx_dropped_link_down);
845
846 i40e_stat_update32(hw, I40E_GLPRT_CRCERRS(hw->port),
847 pf->stat_offsets_loaded,
848 &osd->crc_errors, &nsd->crc_errors);
849 ns->rx_crc_errors = nsd->crc_errors;
850
851 i40e_stat_update32(hw, I40E_GLPRT_ILLERRC(hw->port),
852 pf->stat_offsets_loaded,
853 &osd->illegal_bytes, &nsd->illegal_bytes);
854 ns->rx_errors = nsd->crc_errors
855 + nsd->illegal_bytes;
856
857 i40e_stat_update32(hw, I40E_GLPRT_MLFC(hw->port),
858 pf->stat_offsets_loaded,
859 &osd->mac_local_faults,
860 &nsd->mac_local_faults);
861 i40e_stat_update32(hw, I40E_GLPRT_MRFC(hw->port),
862 pf->stat_offsets_loaded,
863 &osd->mac_remote_faults,
864 &nsd->mac_remote_faults);
865
866 i40e_stat_update32(hw, I40E_GLPRT_RLEC(hw->port),
867 pf->stat_offsets_loaded,
868 &osd->rx_length_errors,
869 &nsd->rx_length_errors);
870 ns->rx_length_errors = nsd->rx_length_errors;
871
872 i40e_stat_update32(hw, I40E_GLPRT_LXONRXC(hw->port),
873 pf->stat_offsets_loaded,
874 &osd->link_xon_rx, &nsd->link_xon_rx);
875 i40e_stat_update32(hw, I40E_GLPRT_LXONTXC(hw->port),
876 pf->stat_offsets_loaded,
877 &osd->link_xon_tx, &nsd->link_xon_tx);
878 i40e_update_prio_xoff_rx(pf); /* handles I40E_GLPRT_LXOFFRXC */
879 i40e_stat_update32(hw, I40E_GLPRT_LXOFFTXC(hw->port),
880 pf->stat_offsets_loaded,
881 &osd->link_xoff_tx, &nsd->link_xoff_tx);
882
883 for (i = 0; i < 8; i++) {
884 i40e_stat_update32(hw, I40E_GLPRT_PXONRXC(hw->port, i),
885 pf->stat_offsets_loaded,
886 &osd->priority_xon_rx[i],
887 &nsd->priority_xon_rx[i]);
888 i40e_stat_update32(hw, I40E_GLPRT_PXONTXC(hw->port, i),
889 pf->stat_offsets_loaded,
890 &osd->priority_xon_tx[i],
891 &nsd->priority_xon_tx[i]);
892 i40e_stat_update32(hw, I40E_GLPRT_PXOFFTXC(hw->port, i),
893 pf->stat_offsets_loaded,
894 &osd->priority_xoff_tx[i],
895 &nsd->priority_xoff_tx[i]);
896 i40e_stat_update32(hw,
897 I40E_GLPRT_RXON2OFFCNT(hw->port, i),
898 pf->stat_offsets_loaded,
899 &osd->priority_xon_2_xoff[i],
900 &nsd->priority_xon_2_xoff[i]);
901 }
902
903 i40e_stat_update48(hw, I40E_GLPRT_PRC64H(hw->port),
904 I40E_GLPRT_PRC64L(hw->port),
905 pf->stat_offsets_loaded,
906 &osd->rx_size_64, &nsd->rx_size_64);
907 i40e_stat_update48(hw, I40E_GLPRT_PRC127H(hw->port),
908 I40E_GLPRT_PRC127L(hw->port),
909 pf->stat_offsets_loaded,
910 &osd->rx_size_127, &nsd->rx_size_127);
911 i40e_stat_update48(hw, I40E_GLPRT_PRC255H(hw->port),
912 I40E_GLPRT_PRC255L(hw->port),
913 pf->stat_offsets_loaded,
914 &osd->rx_size_255, &nsd->rx_size_255);
915 i40e_stat_update48(hw, I40E_GLPRT_PRC511H(hw->port),
916 I40E_GLPRT_PRC511L(hw->port),
917 pf->stat_offsets_loaded,
918 &osd->rx_size_511, &nsd->rx_size_511);
919 i40e_stat_update48(hw, I40E_GLPRT_PRC1023H(hw->port),
920 I40E_GLPRT_PRC1023L(hw->port),
921 pf->stat_offsets_loaded,
922 &osd->rx_size_1023, &nsd->rx_size_1023);
923 i40e_stat_update48(hw, I40E_GLPRT_PRC1522H(hw->port),
924 I40E_GLPRT_PRC1522L(hw->port),
925 pf->stat_offsets_loaded,
926 &osd->rx_size_1522, &nsd->rx_size_1522);
927 i40e_stat_update48(hw, I40E_GLPRT_PRC9522H(hw->port),
928 I40E_GLPRT_PRC9522L(hw->port),
929 pf->stat_offsets_loaded,
930 &osd->rx_size_big, &nsd->rx_size_big);
931
932 i40e_stat_update48(hw, I40E_GLPRT_PTC64H(hw->port),
933 I40E_GLPRT_PTC64L(hw->port),
934 pf->stat_offsets_loaded,
935 &osd->tx_size_64, &nsd->tx_size_64);
936 i40e_stat_update48(hw, I40E_GLPRT_PTC127H(hw->port),
937 I40E_GLPRT_PTC127L(hw->port),
938 pf->stat_offsets_loaded,
939 &osd->tx_size_127, &nsd->tx_size_127);
940 i40e_stat_update48(hw, I40E_GLPRT_PTC255H(hw->port),
941 I40E_GLPRT_PTC255L(hw->port),
942 pf->stat_offsets_loaded,
943 &osd->tx_size_255, &nsd->tx_size_255);
944 i40e_stat_update48(hw, I40E_GLPRT_PTC511H(hw->port),
945 I40E_GLPRT_PTC511L(hw->port),
946 pf->stat_offsets_loaded,
947 &osd->tx_size_511, &nsd->tx_size_511);
948 i40e_stat_update48(hw, I40E_GLPRT_PTC1023H(hw->port),
949 I40E_GLPRT_PTC1023L(hw->port),
950 pf->stat_offsets_loaded,
951 &osd->tx_size_1023, &nsd->tx_size_1023);
952 i40e_stat_update48(hw, I40E_GLPRT_PTC1522H(hw->port),
953 I40E_GLPRT_PTC1522L(hw->port),
954 pf->stat_offsets_loaded,
955 &osd->tx_size_1522, &nsd->tx_size_1522);
956 i40e_stat_update48(hw, I40E_GLPRT_PTC9522H(hw->port),
957 I40E_GLPRT_PTC9522L(hw->port),
958 pf->stat_offsets_loaded,
959 &osd->tx_size_big, &nsd->tx_size_big);
960
961 i40e_stat_update32(hw, I40E_GLPRT_RUC(hw->port),
962 pf->stat_offsets_loaded,
963 &osd->rx_undersize, &nsd->rx_undersize);
964 i40e_stat_update32(hw, I40E_GLPRT_RFC(hw->port),
965 pf->stat_offsets_loaded,
966 &osd->rx_fragments, &nsd->rx_fragments);
967 i40e_stat_update32(hw, I40E_GLPRT_ROC(hw->port),
968 pf->stat_offsets_loaded,
969 &osd->rx_oversize, &nsd->rx_oversize);
970 i40e_stat_update32(hw, I40E_GLPRT_RJC(hw->port),
971 pf->stat_offsets_loaded,
972 &osd->rx_jabber, &nsd->rx_jabber);
973 }
974
975 pf->stat_offsets_loaded = true;
976}
977
978/**
979 * i40e_find_filter - Search VSI filter list for specific mac/vlan filter
980 * @vsi: the VSI to be searched
981 * @macaddr: the MAC address
982 * @vlan: the vlan
983 * @is_vf: make sure its a vf filter, else doesn't matter
984 * @is_netdev: make sure its a netdev filter, else doesn't matter
985 *
986 * Returns ptr to the filter object or NULL
987 **/
988static struct i40e_mac_filter *i40e_find_filter(struct i40e_vsi *vsi,
989 u8 *macaddr, s16 vlan,
990 bool is_vf, bool is_netdev)
991{
992 struct i40e_mac_filter *f;
993
994 if (!vsi || !macaddr)
995 return NULL;
996
997 list_for_each_entry(f, &vsi->mac_filter_list, list) {
998 if ((ether_addr_equal(macaddr, f->macaddr)) &&
999 (vlan == f->vlan) &&
1000 (!is_vf || f->is_vf) &&
1001 (!is_netdev || f->is_netdev))
1002 return f;
1003 }
1004 return NULL;
1005}
1006
1007/**
1008 * i40e_find_mac - Find a mac addr in the macvlan filters list
1009 * @vsi: the VSI to be searched
1010 * @macaddr: the MAC address we are searching for
1011 * @is_vf: make sure its a vf filter, else doesn't matter
1012 * @is_netdev: make sure its a netdev filter, else doesn't matter
1013 *
1014 * Returns the first filter with the provided MAC address or NULL if
1015 * MAC address was not found
1016 **/
1017struct i40e_mac_filter *i40e_find_mac(struct i40e_vsi *vsi, u8 *macaddr,
1018 bool is_vf, bool is_netdev)
1019{
1020 struct i40e_mac_filter *f;
1021
1022 if (!vsi || !macaddr)
1023 return NULL;
1024
1025 list_for_each_entry(f, &vsi->mac_filter_list, list) {
1026 if ((ether_addr_equal(macaddr, f->macaddr)) &&
1027 (!is_vf || f->is_vf) &&
1028 (!is_netdev || f->is_netdev))
1029 return f;
1030 }
1031 return NULL;
1032}
1033
1034/**
1035 * i40e_is_vsi_in_vlan - Check if VSI is in vlan mode
1036 * @vsi: the VSI to be searched
1037 *
1038 * Returns true if VSI is in vlan mode or false otherwise
1039 **/
1040bool i40e_is_vsi_in_vlan(struct i40e_vsi *vsi)
1041{
1042 struct i40e_mac_filter *f;
1043
1044 /* Only -1 for all the filters denotes not in vlan mode
1045 * so we have to go through all the list in order to make sure
1046 */
1047 list_for_each_entry(f, &vsi->mac_filter_list, list) {
1048 if (f->vlan >= 0)
1049 return true;
1050 }
1051
1052 return false;
1053}
1054
1055/**
1056 * i40e_put_mac_in_vlan - Make macvlan filters from macaddrs and vlans
1057 * @vsi: the VSI to be searched
1058 * @macaddr: the mac address to be filtered
1059 * @is_vf: true if it is a vf
1060 * @is_netdev: true if it is a netdev
1061 *
1062 * Goes through all the macvlan filters and adds a
1063 * macvlan filter for each unique vlan that already exists
1064 *
1065 * Returns first filter found on success, else NULL
1066 **/
1067struct i40e_mac_filter *i40e_put_mac_in_vlan(struct i40e_vsi *vsi, u8 *macaddr,
1068 bool is_vf, bool is_netdev)
1069{
1070 struct i40e_mac_filter *f;
1071
1072 list_for_each_entry(f, &vsi->mac_filter_list, list) {
1073 if (!i40e_find_filter(vsi, macaddr, f->vlan,
1074 is_vf, is_netdev)) {
1075 if (!i40e_add_filter(vsi, macaddr, f->vlan,
1076 is_vf, is_netdev))
1077 return NULL;
1078 }
1079 }
1080
1081 return list_first_entry_or_null(&vsi->mac_filter_list,
1082 struct i40e_mac_filter, list);
1083}
1084
1085/**
1086 * i40e_add_filter - Add a mac/vlan filter to the VSI
1087 * @vsi: the VSI to be searched
1088 * @macaddr: the MAC address
1089 * @vlan: the vlan
1090 * @is_vf: make sure its a vf filter, else doesn't matter
1091 * @is_netdev: make sure its a netdev filter, else doesn't matter
1092 *
1093 * Returns ptr to the filter object or NULL when no memory available.
1094 **/
1095struct i40e_mac_filter *i40e_add_filter(struct i40e_vsi *vsi,
1096 u8 *macaddr, s16 vlan,
1097 bool is_vf, bool is_netdev)
1098{
1099 struct i40e_mac_filter *f;
1100
1101 if (!vsi || !macaddr)
1102 return NULL;
1103
1104 f = i40e_find_filter(vsi, macaddr, vlan, is_vf, is_netdev);
1105 if (!f) {
1106 f = kzalloc(sizeof(*f), GFP_ATOMIC);
1107 if (!f)
1108 goto add_filter_out;
1109
1110 memcpy(f->macaddr, macaddr, ETH_ALEN);
1111 f->vlan = vlan;
1112 f->changed = true;
1113
1114 INIT_LIST_HEAD(&f->list);
1115 list_add(&f->list, &vsi->mac_filter_list);
1116 }
1117
1118 /* increment counter and add a new flag if needed */
1119 if (is_vf) {
1120 if (!f->is_vf) {
1121 f->is_vf = true;
1122 f->counter++;
1123 }
1124 } else if (is_netdev) {
1125 if (!f->is_netdev) {
1126 f->is_netdev = true;
1127 f->counter++;
1128 }
1129 } else {
1130 f->counter++;
1131 }
1132
1133 /* changed tells sync_filters_subtask to
1134 * push the filter down to the firmware
1135 */
1136 if (f->changed) {
1137 vsi->flags |= I40E_VSI_FLAG_FILTER_CHANGED;
1138 vsi->back->flags |= I40E_FLAG_FILTER_SYNC;
1139 }
1140
1141add_filter_out:
1142 return f;
1143}
1144
1145/**
1146 * i40e_del_filter - Remove a mac/vlan filter from the VSI
1147 * @vsi: the VSI to be searched
1148 * @macaddr: the MAC address
1149 * @vlan: the vlan
1150 * @is_vf: make sure it's a vf filter, else doesn't matter
1151 * @is_netdev: make sure it's a netdev filter, else doesn't matter
1152 **/
1153void i40e_del_filter(struct i40e_vsi *vsi,
1154 u8 *macaddr, s16 vlan,
1155 bool is_vf, bool is_netdev)
1156{
1157 struct i40e_mac_filter *f;
1158
1159 if (!vsi || !macaddr)
1160 return;
1161
1162 f = i40e_find_filter(vsi, macaddr, vlan, is_vf, is_netdev);
1163 if (!f || f->counter == 0)
1164 return;
1165
1166 if (is_vf) {
1167 if (f->is_vf) {
1168 f->is_vf = false;
1169 f->counter--;
1170 }
1171 } else if (is_netdev) {
1172 if (f->is_netdev) {
1173 f->is_netdev = false;
1174 f->counter--;
1175 }
1176 } else {
1177 /* make sure we don't remove a filter in use by vf or netdev */
1178 int min_f = 0;
1179 min_f += (f->is_vf ? 1 : 0);
1180 min_f += (f->is_netdev ? 1 : 0);
1181
1182 if (f->counter > min_f)
1183 f->counter--;
1184 }
1185
1186 /* counter == 0 tells sync_filters_subtask to
1187 * remove the filter from the firmware's list
1188 */
1189 if (f->counter == 0) {
1190 f->changed = true;
1191 vsi->flags |= I40E_VSI_FLAG_FILTER_CHANGED;
1192 vsi->back->flags |= I40E_FLAG_FILTER_SYNC;
1193 }
1194}
1195
1196/**
1197 * i40e_set_mac - NDO callback to set mac address
1198 * @netdev: network interface device structure
1199 * @p: pointer to an address structure
1200 *
1201 * Returns 0 on success, negative on failure
1202 **/
1203static int i40e_set_mac(struct net_device *netdev, void *p)
1204{
1205 struct i40e_netdev_priv *np = netdev_priv(netdev);
1206 struct i40e_vsi *vsi = np->vsi;
1207 struct sockaddr *addr = p;
1208 struct i40e_mac_filter *f;
1209
1210 if (!is_valid_ether_addr(addr->sa_data))
1211 return -EADDRNOTAVAIL;
1212
1213 netdev_info(netdev, "set mac address=%pM\n", addr->sa_data);
1214
1215 if (ether_addr_equal(netdev->dev_addr, addr->sa_data))
1216 return 0;
1217
Anjali Singhai Jain80f64282013-11-28 06:39:47 +00001218 if (test_bit(__I40E_DOWN, &vsi->back->state) ||
1219 test_bit(__I40E_RESET_RECOVERY_PENDING, &vsi->back->state))
1220 return -EADDRNOTAVAIL;
1221
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001222 if (vsi->type == I40E_VSI_MAIN) {
1223 i40e_status ret;
1224 ret = i40e_aq_mac_address_write(&vsi->back->hw,
1225 I40E_AQC_WRITE_TYPE_LAA_ONLY,
1226 addr->sa_data, NULL);
1227 if (ret) {
1228 netdev_info(netdev,
1229 "Addr change for Main VSI failed: %d\n",
1230 ret);
1231 return -EADDRNOTAVAIL;
1232 }
1233
1234 memcpy(vsi->back->hw.mac.addr, addr->sa_data, netdev->addr_len);
1235 }
1236
1237 /* In order to be sure to not drop any packets, add the new address
1238 * then delete the old one.
1239 */
1240 f = i40e_add_filter(vsi, addr->sa_data, I40E_VLAN_ANY, false, false);
1241 if (!f)
1242 return -ENOMEM;
1243
1244 i40e_sync_vsi_filters(vsi);
1245 i40e_del_filter(vsi, netdev->dev_addr, I40E_VLAN_ANY, false, false);
1246 i40e_sync_vsi_filters(vsi);
1247
1248 memcpy(netdev->dev_addr, addr->sa_data, netdev->addr_len);
1249
1250 return 0;
1251}
1252
1253/**
1254 * i40e_vsi_setup_queue_map - Setup a VSI queue map based on enabled_tc
1255 * @vsi: the VSI being setup
1256 * @ctxt: VSI context structure
1257 * @enabled_tc: Enabled TCs bitmap
1258 * @is_add: True if called before Add VSI
1259 *
1260 * Setup VSI queue mapping for enabled traffic classes.
1261 **/
1262static void i40e_vsi_setup_queue_map(struct i40e_vsi *vsi,
1263 struct i40e_vsi_context *ctxt,
1264 u8 enabled_tc,
1265 bool is_add)
1266{
1267 struct i40e_pf *pf = vsi->back;
1268 u16 sections = 0;
1269 u8 netdev_tc = 0;
1270 u16 numtc = 0;
1271 u16 qcount;
1272 u8 offset;
1273 u16 qmap;
1274 int i;
1275
1276 sections = I40E_AQ_VSI_PROP_QUEUE_MAP_VALID;
1277 offset = 0;
1278
1279 if (enabled_tc && (vsi->back->flags & I40E_FLAG_DCB_ENABLED)) {
1280 /* Find numtc from enabled TC bitmap */
1281 for (i = 0; i < I40E_MAX_TRAFFIC_CLASS; i++) {
1282 if (enabled_tc & (1 << i)) /* TC is enabled */
1283 numtc++;
1284 }
1285 if (!numtc) {
1286 dev_warn(&pf->pdev->dev, "DCB is enabled but no TC enabled, forcing TC0\n");
1287 numtc = 1;
1288 }
1289 } else {
1290 /* At least TC0 is enabled in case of non-DCB case */
1291 numtc = 1;
1292 }
1293
1294 vsi->tc_config.numtc = numtc;
1295 vsi->tc_config.enabled_tc = enabled_tc ? enabled_tc : 1;
1296
1297 /* Setup queue offset/count for all TCs for given VSI */
1298 for (i = 0; i < I40E_MAX_TRAFFIC_CLASS; i++) {
1299 /* See if the given TC is enabled for the given VSI */
1300 if (vsi->tc_config.enabled_tc & (1 << i)) { /* TC is enabled */
1301 int pow, num_qps;
1302
1303 vsi->tc_config.tc_info[i].qoffset = offset;
1304 switch (vsi->type) {
1305 case I40E_VSI_MAIN:
1306 if (i == 0)
1307 qcount = pf->rss_size;
1308 else
1309 qcount = pf->num_tc_qps;
1310 vsi->tc_config.tc_info[i].qcount = qcount;
1311 break;
1312 case I40E_VSI_FDIR:
1313 case I40E_VSI_SRIOV:
1314 case I40E_VSI_VMDQ2:
1315 default:
1316 qcount = vsi->alloc_queue_pairs;
1317 vsi->tc_config.tc_info[i].qcount = qcount;
1318 WARN_ON(i != 0);
1319 break;
1320 }
1321
1322 /* find the power-of-2 of the number of queue pairs */
1323 num_qps = vsi->tc_config.tc_info[i].qcount;
1324 pow = 0;
1325 while (num_qps &&
1326 ((1 << pow) < vsi->tc_config.tc_info[i].qcount)) {
1327 pow++;
1328 num_qps >>= 1;
1329 }
1330
1331 vsi->tc_config.tc_info[i].netdev_tc = netdev_tc++;
1332 qmap =
1333 (offset << I40E_AQ_VSI_TC_QUE_OFFSET_SHIFT) |
1334 (pow << I40E_AQ_VSI_TC_QUE_NUMBER_SHIFT);
1335
1336 offset += vsi->tc_config.tc_info[i].qcount;
1337 } else {
1338 /* TC is not enabled so set the offset to
1339 * default queue and allocate one queue
1340 * for the given TC.
1341 */
1342 vsi->tc_config.tc_info[i].qoffset = 0;
1343 vsi->tc_config.tc_info[i].qcount = 1;
1344 vsi->tc_config.tc_info[i].netdev_tc = 0;
1345
1346 qmap = 0;
1347 }
1348 ctxt->info.tc_mapping[i] = cpu_to_le16(qmap);
1349 }
1350
1351 /* Set actual Tx/Rx queue pairs */
1352 vsi->num_queue_pairs = offset;
1353
1354 /* Scheduler section valid can only be set for ADD VSI */
1355 if (is_add) {
1356 sections |= I40E_AQ_VSI_PROP_SCHED_VALID;
1357
1358 ctxt->info.up_enable_bits = enabled_tc;
1359 }
1360 if (vsi->type == I40E_VSI_SRIOV) {
1361 ctxt->info.mapping_flags |=
1362 cpu_to_le16(I40E_AQ_VSI_QUE_MAP_NONCONTIG);
1363 for (i = 0; i < vsi->num_queue_pairs; i++)
1364 ctxt->info.queue_mapping[i] =
1365 cpu_to_le16(vsi->base_queue + i);
1366 } else {
1367 ctxt->info.mapping_flags |=
1368 cpu_to_le16(I40E_AQ_VSI_QUE_MAP_CONTIG);
1369 ctxt->info.queue_mapping[0] = cpu_to_le16(vsi->base_queue);
1370 }
1371 ctxt->info.valid_sections |= cpu_to_le16(sections);
1372}
1373
1374/**
1375 * i40e_set_rx_mode - NDO callback to set the netdev filters
1376 * @netdev: network interface device structure
1377 **/
1378static void i40e_set_rx_mode(struct net_device *netdev)
1379{
1380 struct i40e_netdev_priv *np = netdev_priv(netdev);
1381 struct i40e_mac_filter *f, *ftmp;
1382 struct i40e_vsi *vsi = np->vsi;
1383 struct netdev_hw_addr *uca;
1384 struct netdev_hw_addr *mca;
1385 struct netdev_hw_addr *ha;
1386
1387 /* add addr if not already in the filter list */
1388 netdev_for_each_uc_addr(uca, netdev) {
1389 if (!i40e_find_mac(vsi, uca->addr, false, true)) {
1390 if (i40e_is_vsi_in_vlan(vsi))
1391 i40e_put_mac_in_vlan(vsi, uca->addr,
1392 false, true);
1393 else
1394 i40e_add_filter(vsi, uca->addr, I40E_VLAN_ANY,
1395 false, true);
1396 }
1397 }
1398
1399 netdev_for_each_mc_addr(mca, netdev) {
1400 if (!i40e_find_mac(vsi, mca->addr, false, true)) {
1401 if (i40e_is_vsi_in_vlan(vsi))
1402 i40e_put_mac_in_vlan(vsi, mca->addr,
1403 false, true);
1404 else
1405 i40e_add_filter(vsi, mca->addr, I40E_VLAN_ANY,
1406 false, true);
1407 }
1408 }
1409
1410 /* remove filter if not in netdev list */
1411 list_for_each_entry_safe(f, ftmp, &vsi->mac_filter_list, list) {
1412 bool found = false;
1413
1414 if (!f->is_netdev)
1415 continue;
1416
1417 if (is_multicast_ether_addr(f->macaddr)) {
1418 netdev_for_each_mc_addr(mca, netdev) {
1419 if (ether_addr_equal(mca->addr, f->macaddr)) {
1420 found = true;
1421 break;
1422 }
1423 }
1424 } else {
1425 netdev_for_each_uc_addr(uca, netdev) {
1426 if (ether_addr_equal(uca->addr, f->macaddr)) {
1427 found = true;
1428 break;
1429 }
1430 }
1431
1432 for_each_dev_addr(netdev, ha) {
1433 if (ether_addr_equal(ha->addr, f->macaddr)) {
1434 found = true;
1435 break;
1436 }
1437 }
1438 }
1439 if (!found)
1440 i40e_del_filter(
1441 vsi, f->macaddr, I40E_VLAN_ANY, false, true);
1442 }
1443
1444 /* check for other flag changes */
1445 if (vsi->current_netdev_flags != vsi->netdev->flags) {
1446 vsi->flags |= I40E_VSI_FLAG_FILTER_CHANGED;
1447 vsi->back->flags |= I40E_FLAG_FILTER_SYNC;
1448 }
1449}
1450
1451/**
1452 * i40e_sync_vsi_filters - Update the VSI filter list to the HW
1453 * @vsi: ptr to the VSI
1454 *
1455 * Push any outstanding VSI filter changes through the AdminQ.
1456 *
1457 * Returns 0 or error value
1458 **/
1459int i40e_sync_vsi_filters(struct i40e_vsi *vsi)
1460{
1461 struct i40e_mac_filter *f, *ftmp;
1462 bool promisc_forced_on = false;
1463 bool add_happened = false;
1464 int filter_list_len = 0;
1465 u32 changed_flags = 0;
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00001466 i40e_status aq_ret = 0;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001467 struct i40e_pf *pf;
1468 int num_add = 0;
1469 int num_del = 0;
1470 u16 cmd_flags;
1471
1472 /* empty array typed pointers, kcalloc later */
1473 struct i40e_aqc_add_macvlan_element_data *add_list;
1474 struct i40e_aqc_remove_macvlan_element_data *del_list;
1475
1476 while (test_and_set_bit(__I40E_CONFIG_BUSY, &vsi->state))
1477 usleep_range(1000, 2000);
1478 pf = vsi->back;
1479
1480 if (vsi->netdev) {
1481 changed_flags = vsi->current_netdev_flags ^ vsi->netdev->flags;
1482 vsi->current_netdev_flags = vsi->netdev->flags;
1483 }
1484
1485 if (vsi->flags & I40E_VSI_FLAG_FILTER_CHANGED) {
1486 vsi->flags &= ~I40E_VSI_FLAG_FILTER_CHANGED;
1487
1488 filter_list_len = pf->hw.aq.asq_buf_size /
1489 sizeof(struct i40e_aqc_remove_macvlan_element_data);
1490 del_list = kcalloc(filter_list_len,
1491 sizeof(struct i40e_aqc_remove_macvlan_element_data),
1492 GFP_KERNEL);
1493 if (!del_list)
1494 return -ENOMEM;
1495
1496 list_for_each_entry_safe(f, ftmp, &vsi->mac_filter_list, list) {
1497 if (!f->changed)
1498 continue;
1499
1500 if (f->counter != 0)
1501 continue;
1502 f->changed = false;
1503 cmd_flags = 0;
1504
1505 /* add to delete list */
1506 memcpy(del_list[num_del].mac_addr,
1507 f->macaddr, ETH_ALEN);
1508 del_list[num_del].vlan_tag =
1509 cpu_to_le16((u16)(f->vlan ==
1510 I40E_VLAN_ANY ? 0 : f->vlan));
1511
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001512 cmd_flags |= I40E_AQC_MACVLAN_DEL_PERFECT_MATCH;
1513 del_list[num_del].flags = cmd_flags;
1514 num_del++;
1515
1516 /* unlink from filter list */
1517 list_del(&f->list);
1518 kfree(f);
1519
1520 /* flush a full buffer */
1521 if (num_del == filter_list_len) {
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00001522 aq_ret = i40e_aq_remove_macvlan(&pf->hw,
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001523 vsi->seid, del_list, num_del,
1524 NULL);
1525 num_del = 0;
1526 memset(del_list, 0, sizeof(*del_list));
1527
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00001528 if (aq_ret)
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001529 dev_info(&pf->pdev->dev,
1530 "ignoring delete macvlan error, err %d, aq_err %d while flushing a full buffer\n",
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00001531 aq_ret,
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001532 pf->hw.aq.asq_last_status);
1533 }
1534 }
1535 if (num_del) {
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00001536 aq_ret = i40e_aq_remove_macvlan(&pf->hw, vsi->seid,
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001537 del_list, num_del, NULL);
1538 num_del = 0;
1539
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00001540 if (aq_ret)
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001541 dev_info(&pf->pdev->dev,
1542 "ignoring delete macvlan error, err %d, aq_err %d\n",
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00001543 aq_ret, pf->hw.aq.asq_last_status);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001544 }
1545
1546 kfree(del_list);
1547 del_list = NULL;
1548
1549 /* do all the adds now */
1550 filter_list_len = pf->hw.aq.asq_buf_size /
1551 sizeof(struct i40e_aqc_add_macvlan_element_data),
1552 add_list = kcalloc(filter_list_len,
1553 sizeof(struct i40e_aqc_add_macvlan_element_data),
1554 GFP_KERNEL);
1555 if (!add_list)
1556 return -ENOMEM;
1557
1558 list_for_each_entry_safe(f, ftmp, &vsi->mac_filter_list, list) {
1559 if (!f->changed)
1560 continue;
1561
1562 if (f->counter == 0)
1563 continue;
1564 f->changed = false;
1565 add_happened = true;
1566 cmd_flags = 0;
1567
1568 /* add to add array */
1569 memcpy(add_list[num_add].mac_addr,
1570 f->macaddr, ETH_ALEN);
1571 add_list[num_add].vlan_tag =
1572 cpu_to_le16(
1573 (u16)(f->vlan == I40E_VLAN_ANY ? 0 : f->vlan));
1574 add_list[num_add].queue_number = 0;
1575
1576 cmd_flags |= I40E_AQC_MACVLAN_ADD_PERFECT_MATCH;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001577 add_list[num_add].flags = cpu_to_le16(cmd_flags);
1578 num_add++;
1579
1580 /* flush a full buffer */
1581 if (num_add == filter_list_len) {
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00001582 aq_ret = i40e_aq_add_macvlan(&pf->hw, vsi->seid,
1583 add_list, num_add,
1584 NULL);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001585 num_add = 0;
1586
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00001587 if (aq_ret)
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001588 break;
1589 memset(add_list, 0, sizeof(*add_list));
1590 }
1591 }
1592 if (num_add) {
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00001593 aq_ret = i40e_aq_add_macvlan(&pf->hw, vsi->seid,
1594 add_list, num_add, NULL);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001595 num_add = 0;
1596 }
1597 kfree(add_list);
1598 add_list = NULL;
1599
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00001600 if (add_happened && (!aq_ret)) {
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001601 /* do nothing */;
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00001602 } else if (add_happened && (aq_ret)) {
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001603 dev_info(&pf->pdev->dev,
1604 "add filter failed, err %d, aq_err %d\n",
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00001605 aq_ret, pf->hw.aq.asq_last_status);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001606 if ((pf->hw.aq.asq_last_status == I40E_AQ_RC_ENOSPC) &&
1607 !test_bit(__I40E_FILTER_OVERFLOW_PROMISC,
1608 &vsi->state)) {
1609 promisc_forced_on = true;
1610 set_bit(__I40E_FILTER_OVERFLOW_PROMISC,
1611 &vsi->state);
1612 dev_info(&pf->pdev->dev, "promiscuous mode forced on\n");
1613 }
1614 }
1615 }
1616
1617 /* check for changes in promiscuous modes */
1618 if (changed_flags & IFF_ALLMULTI) {
1619 bool cur_multipromisc;
1620 cur_multipromisc = !!(vsi->current_netdev_flags & IFF_ALLMULTI);
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00001621 aq_ret = i40e_aq_set_vsi_multicast_promiscuous(&vsi->back->hw,
1622 vsi->seid,
1623 cur_multipromisc,
1624 NULL);
1625 if (aq_ret)
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001626 dev_info(&pf->pdev->dev,
1627 "set multi promisc failed, err %d, aq_err %d\n",
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00001628 aq_ret, pf->hw.aq.asq_last_status);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001629 }
1630 if ((changed_flags & IFF_PROMISC) || promisc_forced_on) {
1631 bool cur_promisc;
1632 cur_promisc = (!!(vsi->current_netdev_flags & IFF_PROMISC) ||
1633 test_bit(__I40E_FILTER_OVERFLOW_PROMISC,
1634 &vsi->state));
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00001635 aq_ret = i40e_aq_set_vsi_unicast_promiscuous(&vsi->back->hw,
1636 vsi->seid,
1637 cur_promisc, NULL);
1638 if (aq_ret)
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001639 dev_info(&pf->pdev->dev,
1640 "set uni promisc failed, err %d, aq_err %d\n",
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00001641 aq_ret, pf->hw.aq.asq_last_status);
Greg Rose1a103702013-11-28 06:42:39 +00001642 aq_ret = i40e_aq_set_vsi_broadcast(&vsi->back->hw,
1643 vsi->seid,
1644 cur_promisc, NULL);
1645 if (aq_ret)
1646 dev_info(&pf->pdev->dev,
1647 "set brdcast promisc failed, err %d, aq_err %d\n",
1648 aq_ret, pf->hw.aq.asq_last_status);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001649 }
1650
1651 clear_bit(__I40E_CONFIG_BUSY, &vsi->state);
1652 return 0;
1653}
1654
1655/**
1656 * i40e_sync_filters_subtask - Sync the VSI filter list with HW
1657 * @pf: board private structure
1658 **/
1659static void i40e_sync_filters_subtask(struct i40e_pf *pf)
1660{
1661 int v;
1662
1663 if (!pf || !(pf->flags & I40E_FLAG_FILTER_SYNC))
1664 return;
1665 pf->flags &= ~I40E_FLAG_FILTER_SYNC;
1666
1667 for (v = 0; v < pf->hw.func_caps.num_vsis; v++) {
1668 if (pf->vsi[v] &&
1669 (pf->vsi[v]->flags & I40E_VSI_FLAG_FILTER_CHANGED))
1670 i40e_sync_vsi_filters(pf->vsi[v]);
1671 }
1672}
1673
1674/**
1675 * i40e_change_mtu - NDO callback to change the Maximum Transfer Unit
1676 * @netdev: network interface device structure
1677 * @new_mtu: new value for maximum frame size
1678 *
1679 * Returns 0 on success, negative on failure
1680 **/
1681static int i40e_change_mtu(struct net_device *netdev, int new_mtu)
1682{
1683 struct i40e_netdev_priv *np = netdev_priv(netdev);
1684 int max_frame = new_mtu + ETH_HLEN + ETH_FCS_LEN;
1685 struct i40e_vsi *vsi = np->vsi;
1686
1687 /* MTU < 68 is an error and causes problems on some kernels */
1688 if ((new_mtu < 68) || (max_frame > I40E_MAX_RXBUFFER))
1689 return -EINVAL;
1690
1691 netdev_info(netdev, "changing MTU from %d to %d\n",
1692 netdev->mtu, new_mtu);
1693 netdev->mtu = new_mtu;
1694 if (netif_running(netdev))
1695 i40e_vsi_reinit_locked(vsi);
1696
1697 return 0;
1698}
1699
1700/**
1701 * i40e_vlan_stripping_enable - Turn on vlan stripping for the VSI
1702 * @vsi: the vsi being adjusted
1703 **/
1704void i40e_vlan_stripping_enable(struct i40e_vsi *vsi)
1705{
1706 struct i40e_vsi_context ctxt;
1707 i40e_status ret;
1708
1709 if ((vsi->info.valid_sections &
1710 cpu_to_le16(I40E_AQ_VSI_PROP_VLAN_VALID)) &&
1711 ((vsi->info.port_vlan_flags & I40E_AQ_VSI_PVLAN_MODE_MASK) == 0))
1712 return; /* already enabled */
1713
1714 vsi->info.valid_sections = cpu_to_le16(I40E_AQ_VSI_PROP_VLAN_VALID);
1715 vsi->info.port_vlan_flags = I40E_AQ_VSI_PVLAN_MODE_ALL |
1716 I40E_AQ_VSI_PVLAN_EMOD_STR_BOTH;
1717
1718 ctxt.seid = vsi->seid;
1719 memcpy(&ctxt.info, &vsi->info, sizeof(vsi->info));
1720 ret = i40e_aq_update_vsi_params(&vsi->back->hw, &ctxt, NULL);
1721 if (ret) {
1722 dev_info(&vsi->back->pdev->dev,
1723 "%s: update vsi failed, aq_err=%d\n",
1724 __func__, vsi->back->hw.aq.asq_last_status);
1725 }
1726}
1727
1728/**
1729 * i40e_vlan_stripping_disable - Turn off vlan stripping for the VSI
1730 * @vsi: the vsi being adjusted
1731 **/
1732void i40e_vlan_stripping_disable(struct i40e_vsi *vsi)
1733{
1734 struct i40e_vsi_context ctxt;
1735 i40e_status ret;
1736
1737 if ((vsi->info.valid_sections &
1738 cpu_to_le16(I40E_AQ_VSI_PROP_VLAN_VALID)) &&
1739 ((vsi->info.port_vlan_flags & I40E_AQ_VSI_PVLAN_EMOD_MASK) ==
1740 I40E_AQ_VSI_PVLAN_EMOD_MASK))
1741 return; /* already disabled */
1742
1743 vsi->info.valid_sections = cpu_to_le16(I40E_AQ_VSI_PROP_VLAN_VALID);
1744 vsi->info.port_vlan_flags = I40E_AQ_VSI_PVLAN_MODE_ALL |
1745 I40E_AQ_VSI_PVLAN_EMOD_NOTHING;
1746
1747 ctxt.seid = vsi->seid;
1748 memcpy(&ctxt.info, &vsi->info, sizeof(vsi->info));
1749 ret = i40e_aq_update_vsi_params(&vsi->back->hw, &ctxt, NULL);
1750 if (ret) {
1751 dev_info(&vsi->back->pdev->dev,
1752 "%s: update vsi failed, aq_err=%d\n",
1753 __func__, vsi->back->hw.aq.asq_last_status);
1754 }
1755}
1756
1757/**
1758 * i40e_vlan_rx_register - Setup or shutdown vlan offload
1759 * @netdev: network interface to be adjusted
1760 * @features: netdev features to test if VLAN offload is enabled or not
1761 **/
1762static void i40e_vlan_rx_register(struct net_device *netdev, u32 features)
1763{
1764 struct i40e_netdev_priv *np = netdev_priv(netdev);
1765 struct i40e_vsi *vsi = np->vsi;
1766
1767 if (features & NETIF_F_HW_VLAN_CTAG_RX)
1768 i40e_vlan_stripping_enable(vsi);
1769 else
1770 i40e_vlan_stripping_disable(vsi);
1771}
1772
1773/**
1774 * i40e_vsi_add_vlan - Add vsi membership for given vlan
1775 * @vsi: the vsi being configured
1776 * @vid: vlan id to be added (0 = untagged only , -1 = any)
1777 **/
1778int i40e_vsi_add_vlan(struct i40e_vsi *vsi, s16 vid)
1779{
1780 struct i40e_mac_filter *f, *add_f;
1781 bool is_netdev, is_vf;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001782
1783 is_vf = (vsi->type == I40E_VSI_SRIOV);
1784 is_netdev = !!(vsi->netdev);
1785
1786 if (is_netdev) {
1787 add_f = i40e_add_filter(vsi, vsi->netdev->dev_addr, vid,
1788 is_vf, is_netdev);
1789 if (!add_f) {
1790 dev_info(&vsi->back->pdev->dev,
1791 "Could not add vlan filter %d for %pM\n",
1792 vid, vsi->netdev->dev_addr);
1793 return -ENOMEM;
1794 }
1795 }
1796
1797 list_for_each_entry(f, &vsi->mac_filter_list, list) {
1798 add_f = i40e_add_filter(vsi, f->macaddr, vid, is_vf, is_netdev);
1799 if (!add_f) {
1800 dev_info(&vsi->back->pdev->dev,
1801 "Could not add vlan filter %d for %pM\n",
1802 vid, f->macaddr);
1803 return -ENOMEM;
1804 }
1805 }
1806
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001807 /* Now if we add a vlan tag, make sure to check if it is the first
1808 * tag (i.e. a "tag" -1 does exist) and if so replace the -1 "tag"
1809 * with 0, so we now accept untagged and specified tagged traffic
1810 * (and not any taged and untagged)
1811 */
1812 if (vid > 0) {
1813 if (is_netdev && i40e_find_filter(vsi, vsi->netdev->dev_addr,
1814 I40E_VLAN_ANY,
1815 is_vf, is_netdev)) {
1816 i40e_del_filter(vsi, vsi->netdev->dev_addr,
1817 I40E_VLAN_ANY, is_vf, is_netdev);
1818 add_f = i40e_add_filter(vsi, vsi->netdev->dev_addr, 0,
1819 is_vf, is_netdev);
1820 if (!add_f) {
1821 dev_info(&vsi->back->pdev->dev,
1822 "Could not add filter 0 for %pM\n",
1823 vsi->netdev->dev_addr);
1824 return -ENOMEM;
1825 }
1826 }
1827
1828 list_for_each_entry(f, &vsi->mac_filter_list, list) {
1829 if (i40e_find_filter(vsi, f->macaddr, I40E_VLAN_ANY,
1830 is_vf, is_netdev)) {
1831 i40e_del_filter(vsi, f->macaddr, I40E_VLAN_ANY,
1832 is_vf, is_netdev);
1833 add_f = i40e_add_filter(vsi, f->macaddr,
1834 0, is_vf, is_netdev);
1835 if (!add_f) {
1836 dev_info(&vsi->back->pdev->dev,
1837 "Could not add filter 0 for %pM\n",
1838 f->macaddr);
1839 return -ENOMEM;
1840 }
1841 }
1842 }
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001843 }
1844
Anjali Singhai Jain80f64282013-11-28 06:39:47 +00001845 if (test_bit(__I40E_DOWN, &vsi->back->state) ||
1846 test_bit(__I40E_RESET_RECOVERY_PENDING, &vsi->back->state))
1847 return 0;
1848
1849 return i40e_sync_vsi_filters(vsi);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001850}
1851
1852/**
1853 * i40e_vsi_kill_vlan - Remove vsi membership for given vlan
1854 * @vsi: the vsi being configured
1855 * @vid: vlan id to be removed (0 = untagged only , -1 = any)
Jesse Brandeburg078b5872013-09-25 23:41:14 +00001856 *
1857 * Return: 0 on success or negative otherwise
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001858 **/
1859int i40e_vsi_kill_vlan(struct i40e_vsi *vsi, s16 vid)
1860{
1861 struct net_device *netdev = vsi->netdev;
1862 struct i40e_mac_filter *f, *add_f;
1863 bool is_vf, is_netdev;
1864 int filter_count = 0;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001865
1866 is_vf = (vsi->type == I40E_VSI_SRIOV);
1867 is_netdev = !!(netdev);
1868
1869 if (is_netdev)
1870 i40e_del_filter(vsi, netdev->dev_addr, vid, is_vf, is_netdev);
1871
1872 list_for_each_entry(f, &vsi->mac_filter_list, list)
1873 i40e_del_filter(vsi, f->macaddr, vid, is_vf, is_netdev);
1874
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001875 /* go through all the filters for this VSI and if there is only
1876 * vid == 0 it means there are no other filters, so vid 0 must
1877 * be replaced with -1. This signifies that we should from now
1878 * on accept any traffic (with any tag present, or untagged)
1879 */
1880 list_for_each_entry(f, &vsi->mac_filter_list, list) {
1881 if (is_netdev) {
1882 if (f->vlan &&
1883 ether_addr_equal(netdev->dev_addr, f->macaddr))
1884 filter_count++;
1885 }
1886
1887 if (f->vlan)
1888 filter_count++;
1889 }
1890
1891 if (!filter_count && is_netdev) {
1892 i40e_del_filter(vsi, netdev->dev_addr, 0, is_vf, is_netdev);
1893 f = i40e_add_filter(vsi, netdev->dev_addr, I40E_VLAN_ANY,
1894 is_vf, is_netdev);
1895 if (!f) {
1896 dev_info(&vsi->back->pdev->dev,
1897 "Could not add filter %d for %pM\n",
1898 I40E_VLAN_ANY, netdev->dev_addr);
1899 return -ENOMEM;
1900 }
1901 }
1902
1903 if (!filter_count) {
1904 list_for_each_entry(f, &vsi->mac_filter_list, list) {
1905 i40e_del_filter(vsi, f->macaddr, 0, is_vf, is_netdev);
1906 add_f = i40e_add_filter(vsi, f->macaddr, I40E_VLAN_ANY,
1907 is_vf, is_netdev);
1908 if (!add_f) {
1909 dev_info(&vsi->back->pdev->dev,
1910 "Could not add filter %d for %pM\n",
1911 I40E_VLAN_ANY, f->macaddr);
1912 return -ENOMEM;
1913 }
1914 }
1915 }
1916
Anjali Singhai Jain80f64282013-11-28 06:39:47 +00001917 if (test_bit(__I40E_DOWN, &vsi->back->state) ||
1918 test_bit(__I40E_RESET_RECOVERY_PENDING, &vsi->back->state))
1919 return 0;
1920
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001921 return i40e_sync_vsi_filters(vsi);
1922}
1923
1924/**
1925 * i40e_vlan_rx_add_vid - Add a vlan id filter to HW offload
1926 * @netdev: network interface to be adjusted
1927 * @vid: vlan id to be added
Jesse Brandeburg078b5872013-09-25 23:41:14 +00001928 *
1929 * net_device_ops implementation for adding vlan ids
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001930 **/
1931static int i40e_vlan_rx_add_vid(struct net_device *netdev,
1932 __always_unused __be16 proto, u16 vid)
1933{
1934 struct i40e_netdev_priv *np = netdev_priv(netdev);
1935 struct i40e_vsi *vsi = np->vsi;
Jesse Brandeburg078b5872013-09-25 23:41:14 +00001936 int ret = 0;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001937
1938 if (vid > 4095)
Jesse Brandeburg078b5872013-09-25 23:41:14 +00001939 return -EINVAL;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001940
Jesse Brandeburg078b5872013-09-25 23:41:14 +00001941 netdev_info(netdev, "adding %pM vid=%d\n", netdev->dev_addr, vid);
1942
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001943 /* If the network stack called us with vid = 0, we should
1944 * indicate to i40e_vsi_add_vlan() that we want to receive
1945 * any traffic (i.e. with any vlan tag, or untagged)
1946 */
1947 ret = i40e_vsi_add_vlan(vsi, vid ? vid : I40E_VLAN_ANY);
1948
Jesse Brandeburg078b5872013-09-25 23:41:14 +00001949 if (!ret && (vid < VLAN_N_VID))
1950 set_bit(vid, vsi->active_vlans);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001951
Jesse Brandeburg078b5872013-09-25 23:41:14 +00001952 return ret;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001953}
1954
1955/**
1956 * i40e_vlan_rx_kill_vid - Remove a vlan id filter from HW offload
1957 * @netdev: network interface to be adjusted
1958 * @vid: vlan id to be removed
Jesse Brandeburg078b5872013-09-25 23:41:14 +00001959 *
1960 * net_device_ops implementation for adding vlan ids
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001961 **/
1962static int i40e_vlan_rx_kill_vid(struct net_device *netdev,
1963 __always_unused __be16 proto, u16 vid)
1964{
1965 struct i40e_netdev_priv *np = netdev_priv(netdev);
1966 struct i40e_vsi *vsi = np->vsi;
1967
Jesse Brandeburg078b5872013-09-25 23:41:14 +00001968 netdev_info(netdev, "removing %pM vid=%d\n", netdev->dev_addr, vid);
1969
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001970 /* return code is ignored as there is nothing a user
1971 * can do about failure to remove and a log message was
Jesse Brandeburg078b5872013-09-25 23:41:14 +00001972 * already printed from the other function
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001973 */
1974 i40e_vsi_kill_vlan(vsi, vid);
1975
1976 clear_bit(vid, vsi->active_vlans);
Jesse Brandeburg078b5872013-09-25 23:41:14 +00001977
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00001978 return 0;
1979}
1980
1981/**
1982 * i40e_restore_vlan - Reinstate vlans when vsi/netdev comes back up
1983 * @vsi: the vsi being brought back up
1984 **/
1985static void i40e_restore_vlan(struct i40e_vsi *vsi)
1986{
1987 u16 vid;
1988
1989 if (!vsi->netdev)
1990 return;
1991
1992 i40e_vlan_rx_register(vsi->netdev, vsi->netdev->features);
1993
1994 for_each_set_bit(vid, vsi->active_vlans, VLAN_N_VID)
1995 i40e_vlan_rx_add_vid(vsi->netdev, htons(ETH_P_8021Q),
1996 vid);
1997}
1998
1999/**
2000 * i40e_vsi_add_pvid - Add pvid for the VSI
2001 * @vsi: the vsi being adjusted
2002 * @vid: the vlan id to set as a PVID
2003 **/
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00002004int i40e_vsi_add_pvid(struct i40e_vsi *vsi, u16 vid)
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002005{
2006 struct i40e_vsi_context ctxt;
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00002007 i40e_status aq_ret;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002008
2009 vsi->info.valid_sections = cpu_to_le16(I40E_AQ_VSI_PROP_VLAN_VALID);
2010 vsi->info.pvid = cpu_to_le16(vid);
Greg Rose6c12fcb2013-11-28 06:39:34 +00002011 vsi->info.port_vlan_flags = I40E_AQ_VSI_PVLAN_MODE_TAGGED |
2012 I40E_AQ_VSI_PVLAN_INSERT_PVID |
Greg Roseb774c7d2013-11-28 06:39:44 +00002013 I40E_AQ_VSI_PVLAN_EMOD_STR;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002014
2015 ctxt.seid = vsi->seid;
2016 memcpy(&ctxt.info, &vsi->info, sizeof(vsi->info));
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00002017 aq_ret = i40e_aq_update_vsi_params(&vsi->back->hw, &ctxt, NULL);
2018 if (aq_ret) {
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002019 dev_info(&vsi->back->pdev->dev,
2020 "%s: update vsi failed, aq_err=%d\n",
2021 __func__, vsi->back->hw.aq.asq_last_status);
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00002022 return -ENOENT;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002023 }
2024
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00002025 return 0;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002026}
2027
2028/**
2029 * i40e_vsi_remove_pvid - Remove the pvid from the VSI
2030 * @vsi: the vsi being adjusted
2031 *
2032 * Just use the vlan_rx_register() service to put it back to normal
2033 **/
2034void i40e_vsi_remove_pvid(struct i40e_vsi *vsi)
2035{
Greg Rose6c12fcb2013-11-28 06:39:34 +00002036 i40e_vlan_stripping_disable(vsi);
2037
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002038 vsi->info.pvid = 0;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002039}
2040
2041/**
2042 * i40e_vsi_setup_tx_resources - Allocate VSI Tx queue resources
2043 * @vsi: ptr to the VSI
2044 *
2045 * If this function returns with an error, then it's possible one or
2046 * more of the rings is populated (while the rest are not). It is the
2047 * callers duty to clean those orphaned rings.
2048 *
2049 * Return 0 on success, negative on failure
2050 **/
2051static int i40e_vsi_setup_tx_resources(struct i40e_vsi *vsi)
2052{
2053 int i, err = 0;
2054
2055 for (i = 0; i < vsi->num_queue_pairs && !err; i++)
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00002056 err = i40e_setup_tx_descriptors(vsi->tx_rings[i]);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002057
2058 return err;
2059}
2060
2061/**
2062 * i40e_vsi_free_tx_resources - Free Tx resources for VSI queues
2063 * @vsi: ptr to the VSI
2064 *
2065 * Free VSI's transmit software resources
2066 **/
2067static void i40e_vsi_free_tx_resources(struct i40e_vsi *vsi)
2068{
2069 int i;
2070
Greg Rose8e9dca52013-12-18 13:45:53 +00002071 if (!vsi->tx_rings)
2072 return;
2073
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002074 for (i = 0; i < vsi->num_queue_pairs; i++)
Greg Rose8e9dca52013-12-18 13:45:53 +00002075 if (vsi->tx_rings[i] && vsi->tx_rings[i]->desc)
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00002076 i40e_free_tx_resources(vsi->tx_rings[i]);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002077}
2078
2079/**
2080 * i40e_vsi_setup_rx_resources - Allocate VSI queues Rx resources
2081 * @vsi: ptr to the VSI
2082 *
2083 * If this function returns with an error, then it's possible one or
2084 * more of the rings is populated (while the rest are not). It is the
2085 * callers duty to clean those orphaned rings.
2086 *
2087 * Return 0 on success, negative on failure
2088 **/
2089static int i40e_vsi_setup_rx_resources(struct i40e_vsi *vsi)
2090{
2091 int i, err = 0;
2092
2093 for (i = 0; i < vsi->num_queue_pairs && !err; i++)
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00002094 err = i40e_setup_rx_descriptors(vsi->rx_rings[i]);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002095 return err;
2096}
2097
2098/**
2099 * i40e_vsi_free_rx_resources - Free Rx Resources for VSI queues
2100 * @vsi: ptr to the VSI
2101 *
2102 * Free all receive software resources
2103 **/
2104static void i40e_vsi_free_rx_resources(struct i40e_vsi *vsi)
2105{
2106 int i;
2107
Greg Rose8e9dca52013-12-18 13:45:53 +00002108 if (!vsi->rx_rings)
2109 return;
2110
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002111 for (i = 0; i < vsi->num_queue_pairs; i++)
Greg Rose8e9dca52013-12-18 13:45:53 +00002112 if (vsi->rx_rings[i] && vsi->rx_rings[i]->desc)
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00002113 i40e_free_rx_resources(vsi->rx_rings[i]);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002114}
2115
2116/**
2117 * i40e_configure_tx_ring - Configure a transmit ring context and rest
2118 * @ring: The Tx ring to configure
2119 *
2120 * Configure the Tx descriptor ring in the HMC context.
2121 **/
2122static int i40e_configure_tx_ring(struct i40e_ring *ring)
2123{
2124 struct i40e_vsi *vsi = ring->vsi;
2125 u16 pf_q = vsi->base_queue + ring->queue_index;
2126 struct i40e_hw *hw = &vsi->back->hw;
2127 struct i40e_hmc_obj_txq tx_ctx;
2128 i40e_status err = 0;
2129 u32 qtx_ctl = 0;
2130
2131 /* some ATR related tx ring init */
2132 if (vsi->back->flags & I40E_FLAG_FDIR_ATR_ENABLED) {
2133 ring->atr_sample_rate = vsi->back->atr_sample_rate;
2134 ring->atr_count = 0;
2135 } else {
2136 ring->atr_sample_rate = 0;
2137 }
2138
2139 /* initialize XPS */
2140 if (ring->q_vector && ring->netdev &&
2141 !test_and_set_bit(__I40E_TX_XPS_INIT_DONE, &ring->state))
2142 netif_set_xps_queue(ring->netdev,
2143 &ring->q_vector->affinity_mask,
2144 ring->queue_index);
2145
2146 /* clear the context structure first */
2147 memset(&tx_ctx, 0, sizeof(tx_ctx));
2148
2149 tx_ctx.new_context = 1;
2150 tx_ctx.base = (ring->dma / 128);
2151 tx_ctx.qlen = ring->count;
2152 tx_ctx.fd_ena = !!(vsi->back->flags & (I40E_FLAG_FDIR_ENABLED |
2153 I40E_FLAG_FDIR_ATR_ENABLED));
2154
2155 /* As part of VSI creation/update, FW allocates certain
2156 * Tx arbitration queue sets for each TC enabled for
2157 * the VSI. The FW returns the handles to these queue
2158 * sets as part of the response buffer to Add VSI,
2159 * Update VSI, etc. AQ commands. It is expected that
2160 * these queue set handles be associated with the Tx
2161 * queues by the driver as part of the TX queue context
2162 * initialization. This has to be done regardless of
2163 * DCB as by default everything is mapped to TC0.
2164 */
2165 tx_ctx.rdylist = le16_to_cpu(vsi->info.qs_handle[ring->dcb_tc]);
2166 tx_ctx.rdylist_act = 0;
2167
2168 /* clear the context in the HMC */
2169 err = i40e_clear_lan_tx_queue_context(hw, pf_q);
2170 if (err) {
2171 dev_info(&vsi->back->pdev->dev,
2172 "Failed to clear LAN Tx queue context on Tx ring %d (pf_q %d), error: %d\n",
2173 ring->queue_index, pf_q, err);
2174 return -ENOMEM;
2175 }
2176
2177 /* set the context in the HMC */
2178 err = i40e_set_lan_tx_queue_context(hw, pf_q, &tx_ctx);
2179 if (err) {
2180 dev_info(&vsi->back->pdev->dev,
2181 "Failed to set LAN Tx queue context on Tx ring %d (pf_q %d, error: %d\n",
2182 ring->queue_index, pf_q, err);
2183 return -ENOMEM;
2184 }
2185
2186 /* Now associate this queue with this PCI function */
2187 qtx_ctl = I40E_QTX_CTL_PF_QUEUE;
Shannon Nelson13fd9772013-09-28 07:14:19 +00002188 qtx_ctl |= ((hw->pf_id << I40E_QTX_CTL_PF_INDX_SHIFT) &
2189 I40E_QTX_CTL_PF_INDX_MASK);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002190 wr32(hw, I40E_QTX_CTL(pf_q), qtx_ctl);
2191 i40e_flush(hw);
2192
2193 clear_bit(__I40E_HANG_CHECK_ARMED, &ring->state);
2194
2195 /* cache tail off for easier writes later */
2196 ring->tail = hw->hw_addr + I40E_QTX_TAIL(pf_q);
2197
2198 return 0;
2199}
2200
2201/**
2202 * i40e_configure_rx_ring - Configure a receive ring context
2203 * @ring: The Rx ring to configure
2204 *
2205 * Configure the Rx descriptor ring in the HMC context.
2206 **/
2207static int i40e_configure_rx_ring(struct i40e_ring *ring)
2208{
2209 struct i40e_vsi *vsi = ring->vsi;
2210 u32 chain_len = vsi->back->hw.func_caps.rx_buf_chain_len;
2211 u16 pf_q = vsi->base_queue + ring->queue_index;
2212 struct i40e_hw *hw = &vsi->back->hw;
2213 struct i40e_hmc_obj_rxq rx_ctx;
2214 i40e_status err = 0;
2215
2216 ring->state = 0;
2217
2218 /* clear the context structure first */
2219 memset(&rx_ctx, 0, sizeof(rx_ctx));
2220
2221 ring->rx_buf_len = vsi->rx_buf_len;
2222 ring->rx_hdr_len = vsi->rx_hdr_len;
2223
2224 rx_ctx.dbuff = ring->rx_buf_len >> I40E_RXQ_CTX_DBUFF_SHIFT;
2225 rx_ctx.hbuff = ring->rx_hdr_len >> I40E_RXQ_CTX_HBUFF_SHIFT;
2226
2227 rx_ctx.base = (ring->dma / 128);
2228 rx_ctx.qlen = ring->count;
2229
2230 if (vsi->back->flags & I40E_FLAG_16BYTE_RX_DESC_ENABLED) {
2231 set_ring_16byte_desc_enabled(ring);
2232 rx_ctx.dsize = 0;
2233 } else {
2234 rx_ctx.dsize = 1;
2235 }
2236
2237 rx_ctx.dtype = vsi->dtype;
2238 if (vsi->dtype) {
2239 set_ring_ps_enabled(ring);
2240 rx_ctx.hsplit_0 = I40E_RX_SPLIT_L2 |
2241 I40E_RX_SPLIT_IP |
2242 I40E_RX_SPLIT_TCP_UDP |
2243 I40E_RX_SPLIT_SCTP;
2244 } else {
2245 rx_ctx.hsplit_0 = 0;
2246 }
2247
2248 rx_ctx.rxmax = min_t(u16, vsi->max_frame,
2249 (chain_len * ring->rx_buf_len));
2250 rx_ctx.tphrdesc_ena = 1;
2251 rx_ctx.tphwdesc_ena = 1;
2252 rx_ctx.tphdata_ena = 1;
2253 rx_ctx.tphhead_ena = 1;
Jesse Brandeburg7134f9c2013-11-26 08:56:05 +00002254 if (hw->revision_id == 0)
2255 rx_ctx.lrxqthresh = 0;
2256 else
2257 rx_ctx.lrxqthresh = 2;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002258 rx_ctx.crcstrip = 1;
2259 rx_ctx.l2tsel = 1;
2260 rx_ctx.showiv = 1;
2261
2262 /* clear the context in the HMC */
2263 err = i40e_clear_lan_rx_queue_context(hw, pf_q);
2264 if (err) {
2265 dev_info(&vsi->back->pdev->dev,
2266 "Failed to clear LAN Rx queue context on Rx ring %d (pf_q %d), error: %d\n",
2267 ring->queue_index, pf_q, err);
2268 return -ENOMEM;
2269 }
2270
2271 /* set the context in the HMC */
2272 err = i40e_set_lan_rx_queue_context(hw, pf_q, &rx_ctx);
2273 if (err) {
2274 dev_info(&vsi->back->pdev->dev,
2275 "Failed to set LAN Rx queue context on Rx ring %d (pf_q %d), error: %d\n",
2276 ring->queue_index, pf_q, err);
2277 return -ENOMEM;
2278 }
2279
2280 /* cache tail for quicker writes, and clear the reg before use */
2281 ring->tail = hw->hw_addr + I40E_QRX_TAIL(pf_q);
2282 writel(0, ring->tail);
2283
2284 i40e_alloc_rx_buffers(ring, I40E_DESC_UNUSED(ring));
2285
2286 return 0;
2287}
2288
2289/**
2290 * i40e_vsi_configure_tx - Configure the VSI for Tx
2291 * @vsi: VSI structure describing this set of rings and resources
2292 *
2293 * Configure the Tx VSI for operation.
2294 **/
2295static int i40e_vsi_configure_tx(struct i40e_vsi *vsi)
2296{
2297 int err = 0;
2298 u16 i;
2299
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00002300 for (i = 0; (i < vsi->num_queue_pairs) && !err; i++)
2301 err = i40e_configure_tx_ring(vsi->tx_rings[i]);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002302
2303 return err;
2304}
2305
2306/**
2307 * i40e_vsi_configure_rx - Configure the VSI for Rx
2308 * @vsi: the VSI being configured
2309 *
2310 * Configure the Rx VSI for operation.
2311 **/
2312static int i40e_vsi_configure_rx(struct i40e_vsi *vsi)
2313{
2314 int err = 0;
2315 u16 i;
2316
2317 if (vsi->netdev && (vsi->netdev->mtu > ETH_DATA_LEN))
2318 vsi->max_frame = vsi->netdev->mtu + ETH_HLEN
2319 + ETH_FCS_LEN + VLAN_HLEN;
2320 else
2321 vsi->max_frame = I40E_RXBUFFER_2048;
2322
2323 /* figure out correct receive buffer length */
2324 switch (vsi->back->flags & (I40E_FLAG_RX_1BUF_ENABLED |
2325 I40E_FLAG_RX_PS_ENABLED)) {
2326 case I40E_FLAG_RX_1BUF_ENABLED:
2327 vsi->rx_hdr_len = 0;
2328 vsi->rx_buf_len = vsi->max_frame;
2329 vsi->dtype = I40E_RX_DTYPE_NO_SPLIT;
2330 break;
2331 case I40E_FLAG_RX_PS_ENABLED:
2332 vsi->rx_hdr_len = I40E_RX_HDR_SIZE;
2333 vsi->rx_buf_len = I40E_RXBUFFER_2048;
2334 vsi->dtype = I40E_RX_DTYPE_HEADER_SPLIT;
2335 break;
2336 default:
2337 vsi->rx_hdr_len = I40E_RX_HDR_SIZE;
2338 vsi->rx_buf_len = I40E_RXBUFFER_2048;
2339 vsi->dtype = I40E_RX_DTYPE_SPLIT_ALWAYS;
2340 break;
2341 }
2342
2343 /* round up for the chip's needs */
2344 vsi->rx_hdr_len = ALIGN(vsi->rx_hdr_len,
2345 (1 << I40E_RXQ_CTX_HBUFF_SHIFT));
2346 vsi->rx_buf_len = ALIGN(vsi->rx_buf_len,
2347 (1 << I40E_RXQ_CTX_DBUFF_SHIFT));
2348
2349 /* set up individual rings */
2350 for (i = 0; i < vsi->num_queue_pairs && !err; i++)
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00002351 err = i40e_configure_rx_ring(vsi->rx_rings[i]);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002352
2353 return err;
2354}
2355
2356/**
2357 * i40e_vsi_config_dcb_rings - Update rings to reflect DCB TC
2358 * @vsi: ptr to the VSI
2359 **/
2360static void i40e_vsi_config_dcb_rings(struct i40e_vsi *vsi)
2361{
2362 u16 qoffset, qcount;
2363 int i, n;
2364
2365 if (!(vsi->back->flags & I40E_FLAG_DCB_ENABLED))
2366 return;
2367
2368 for (n = 0; n < I40E_MAX_TRAFFIC_CLASS; n++) {
2369 if (!(vsi->tc_config.enabled_tc & (1 << n)))
2370 continue;
2371
2372 qoffset = vsi->tc_config.tc_info[n].qoffset;
2373 qcount = vsi->tc_config.tc_info[n].qcount;
2374 for (i = qoffset; i < (qoffset + qcount); i++) {
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00002375 struct i40e_ring *rx_ring = vsi->rx_rings[i];
2376 struct i40e_ring *tx_ring = vsi->tx_rings[i];
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002377 rx_ring->dcb_tc = n;
2378 tx_ring->dcb_tc = n;
2379 }
2380 }
2381}
2382
2383/**
2384 * i40e_set_vsi_rx_mode - Call set_rx_mode on a VSI
2385 * @vsi: ptr to the VSI
2386 **/
2387static void i40e_set_vsi_rx_mode(struct i40e_vsi *vsi)
2388{
2389 if (vsi->netdev)
2390 i40e_set_rx_mode(vsi->netdev);
2391}
2392
2393/**
2394 * i40e_vsi_configure - Set up the VSI for action
2395 * @vsi: the VSI being configured
2396 **/
2397static int i40e_vsi_configure(struct i40e_vsi *vsi)
2398{
2399 int err;
2400
2401 i40e_set_vsi_rx_mode(vsi);
2402 i40e_restore_vlan(vsi);
2403 i40e_vsi_config_dcb_rings(vsi);
2404 err = i40e_vsi_configure_tx(vsi);
2405 if (!err)
2406 err = i40e_vsi_configure_rx(vsi);
2407
2408 return err;
2409}
2410
2411/**
2412 * i40e_vsi_configure_msix - MSIX mode Interrupt Config in the HW
2413 * @vsi: the VSI being configured
2414 **/
2415static void i40e_vsi_configure_msix(struct i40e_vsi *vsi)
2416{
2417 struct i40e_pf *pf = vsi->back;
2418 struct i40e_q_vector *q_vector;
2419 struct i40e_hw *hw = &pf->hw;
2420 u16 vector;
2421 int i, q;
2422 u32 val;
2423 u32 qp;
2424
2425 /* The interrupt indexing is offset by 1 in the PFINT_ITRn
2426 * and PFINT_LNKLSTn registers, e.g.:
2427 * PFINT_ITRn[0..n-1] gets msix-1..msix-n (qpair interrupts)
2428 */
2429 qp = vsi->base_queue;
2430 vector = vsi->base_vector;
Alexander Duyck493fb302013-09-28 07:01:44 +00002431 for (i = 0; i < vsi->num_q_vectors; i++, vector++) {
2432 q_vector = vsi->q_vectors[i];
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002433 q_vector->rx.itr = ITR_TO_REG(vsi->rx_itr_setting);
2434 q_vector->rx.latency_range = I40E_LOW_LATENCY;
2435 wr32(hw, I40E_PFINT_ITRN(I40E_RX_ITR, vector - 1),
2436 q_vector->rx.itr);
2437 q_vector->tx.itr = ITR_TO_REG(vsi->tx_itr_setting);
2438 q_vector->tx.latency_range = I40E_LOW_LATENCY;
2439 wr32(hw, I40E_PFINT_ITRN(I40E_TX_ITR, vector - 1),
2440 q_vector->tx.itr);
2441
2442 /* Linked list for the queuepairs assigned to this vector */
2443 wr32(hw, I40E_PFINT_LNKLSTN(vector - 1), qp);
2444 for (q = 0; q < q_vector->num_ringpairs; q++) {
2445 val = I40E_QINT_RQCTL_CAUSE_ENA_MASK |
2446 (I40E_RX_ITR << I40E_QINT_RQCTL_ITR_INDX_SHIFT) |
2447 (vector << I40E_QINT_RQCTL_MSIX_INDX_SHIFT) |
2448 (qp << I40E_QINT_RQCTL_NEXTQ_INDX_SHIFT)|
2449 (I40E_QUEUE_TYPE_TX
2450 << I40E_QINT_RQCTL_NEXTQ_TYPE_SHIFT);
2451
2452 wr32(hw, I40E_QINT_RQCTL(qp), val);
2453
2454 val = I40E_QINT_TQCTL_CAUSE_ENA_MASK |
2455 (I40E_TX_ITR << I40E_QINT_TQCTL_ITR_INDX_SHIFT) |
2456 (vector << I40E_QINT_TQCTL_MSIX_INDX_SHIFT) |
2457 ((qp+1) << I40E_QINT_TQCTL_NEXTQ_INDX_SHIFT)|
2458 (I40E_QUEUE_TYPE_RX
2459 << I40E_QINT_TQCTL_NEXTQ_TYPE_SHIFT);
2460
2461 /* Terminate the linked list */
2462 if (q == (q_vector->num_ringpairs - 1))
2463 val |= (I40E_QUEUE_END_OF_LIST
2464 << I40E_QINT_TQCTL_NEXTQ_INDX_SHIFT);
2465
2466 wr32(hw, I40E_QINT_TQCTL(qp), val);
2467 qp++;
2468 }
2469 }
2470
2471 i40e_flush(hw);
2472}
2473
2474/**
2475 * i40e_enable_misc_int_causes - enable the non-queue interrupts
2476 * @hw: ptr to the hardware info
2477 **/
2478static void i40e_enable_misc_int_causes(struct i40e_hw *hw)
2479{
2480 u32 val;
2481
2482 /* clear things first */
2483 wr32(hw, I40E_PFINT_ICR0_ENA, 0); /* disable all */
2484 rd32(hw, I40E_PFINT_ICR0); /* read to clear */
2485
2486 val = I40E_PFINT_ICR0_ENA_ECC_ERR_MASK |
2487 I40E_PFINT_ICR0_ENA_MAL_DETECT_MASK |
2488 I40E_PFINT_ICR0_ENA_GRST_MASK |
2489 I40E_PFINT_ICR0_ENA_PCI_EXCEPTION_MASK |
2490 I40E_PFINT_ICR0_ENA_GPIO_MASK |
2491 I40E_PFINT_ICR0_ENA_STORM_DETECT_MASK |
2492 I40E_PFINT_ICR0_ENA_HMC_ERR_MASK |
2493 I40E_PFINT_ICR0_ENA_VFLR_MASK |
2494 I40E_PFINT_ICR0_ENA_ADMINQ_MASK;
2495
2496 wr32(hw, I40E_PFINT_ICR0_ENA, val);
2497
2498 /* SW_ITR_IDX = 0, but don't change INTENA */
Anjali Singhai Jain84ed40e2013-11-26 10:49:32 +00002499 wr32(hw, I40E_PFINT_DYN_CTL0, I40E_PFINT_DYN_CTL0_SW_ITR_INDX_MASK |
2500 I40E_PFINT_DYN_CTL0_INTENA_MSK_MASK);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002501
2502 /* OTHER_ITR_IDX = 0 */
2503 wr32(hw, I40E_PFINT_STAT_CTL0, 0);
2504}
2505
2506/**
2507 * i40e_configure_msi_and_legacy - Legacy mode interrupt config in the HW
2508 * @vsi: the VSI being configured
2509 **/
2510static void i40e_configure_msi_and_legacy(struct i40e_vsi *vsi)
2511{
Alexander Duyck493fb302013-09-28 07:01:44 +00002512 struct i40e_q_vector *q_vector = vsi->q_vectors[0];
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002513 struct i40e_pf *pf = vsi->back;
2514 struct i40e_hw *hw = &pf->hw;
2515 u32 val;
2516
2517 /* set the ITR configuration */
2518 q_vector->rx.itr = ITR_TO_REG(vsi->rx_itr_setting);
2519 q_vector->rx.latency_range = I40E_LOW_LATENCY;
2520 wr32(hw, I40E_PFINT_ITR0(I40E_RX_ITR), q_vector->rx.itr);
2521 q_vector->tx.itr = ITR_TO_REG(vsi->tx_itr_setting);
2522 q_vector->tx.latency_range = I40E_LOW_LATENCY;
2523 wr32(hw, I40E_PFINT_ITR0(I40E_TX_ITR), q_vector->tx.itr);
2524
2525 i40e_enable_misc_int_causes(hw);
2526
2527 /* FIRSTQ_INDX = 0, FIRSTQ_TYPE = 0 (rx) */
2528 wr32(hw, I40E_PFINT_LNKLST0, 0);
2529
2530 /* Associate the queue pair to the vector and enable the q int */
2531 val = I40E_QINT_RQCTL_CAUSE_ENA_MASK |
2532 (I40E_RX_ITR << I40E_QINT_RQCTL_ITR_INDX_SHIFT) |
2533 (I40E_QUEUE_TYPE_TX << I40E_QINT_TQCTL_NEXTQ_TYPE_SHIFT);
2534
2535 wr32(hw, I40E_QINT_RQCTL(0), val);
2536
2537 val = I40E_QINT_TQCTL_CAUSE_ENA_MASK |
2538 (I40E_TX_ITR << I40E_QINT_TQCTL_ITR_INDX_SHIFT) |
2539 (I40E_QUEUE_END_OF_LIST << I40E_QINT_TQCTL_NEXTQ_INDX_SHIFT);
2540
2541 wr32(hw, I40E_QINT_TQCTL(0), val);
2542 i40e_flush(hw);
2543}
2544
2545/**
Mitch Williams2ef28cf2013-11-28 06:39:32 +00002546 * i40e_irq_dynamic_disable_icr0 - Disable default interrupt generation for icr0
2547 * @pf: board private structure
2548 **/
2549void i40e_irq_dynamic_disable_icr0(struct i40e_pf *pf)
2550{
2551 struct i40e_hw *hw = &pf->hw;
2552
2553 wr32(hw, I40E_PFINT_DYN_CTL0,
2554 I40E_ITR_NONE << I40E_PFINT_DYN_CTLN_ITR_INDX_SHIFT);
2555 i40e_flush(hw);
2556}
2557
2558/**
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002559 * i40e_irq_dynamic_enable_icr0 - Enable default interrupt generation for icr0
2560 * @pf: board private structure
2561 **/
Shannon Nelson116a57d2013-09-28 07:13:59 +00002562void i40e_irq_dynamic_enable_icr0(struct i40e_pf *pf)
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002563{
2564 struct i40e_hw *hw = &pf->hw;
2565 u32 val;
2566
2567 val = I40E_PFINT_DYN_CTL0_INTENA_MASK |
2568 I40E_PFINT_DYN_CTL0_CLEARPBA_MASK |
2569 (I40E_ITR_NONE << I40E_PFINT_DYN_CTL0_ITR_INDX_SHIFT);
2570
2571 wr32(hw, I40E_PFINT_DYN_CTL0, val);
2572 i40e_flush(hw);
2573}
2574
2575/**
2576 * i40e_irq_dynamic_enable - Enable default interrupt generation settings
2577 * @vsi: pointer to a vsi
2578 * @vector: enable a particular Hw Interrupt vector
2579 **/
2580void i40e_irq_dynamic_enable(struct i40e_vsi *vsi, int vector)
2581{
2582 struct i40e_pf *pf = vsi->back;
2583 struct i40e_hw *hw = &pf->hw;
2584 u32 val;
2585
2586 val = I40E_PFINT_DYN_CTLN_INTENA_MASK |
2587 I40E_PFINT_DYN_CTLN_CLEARPBA_MASK |
2588 (I40E_ITR_NONE << I40E_PFINT_DYN_CTLN_ITR_INDX_SHIFT);
2589 wr32(hw, I40E_PFINT_DYN_CTLN(vector - 1), val);
Jesse Brandeburg1022cb62013-09-28 07:13:08 +00002590 /* skip the flush */
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002591}
2592
2593/**
2594 * i40e_msix_clean_rings - MSIX mode Interrupt Handler
2595 * @irq: interrupt number
2596 * @data: pointer to a q_vector
2597 **/
2598static irqreturn_t i40e_msix_clean_rings(int irq, void *data)
2599{
2600 struct i40e_q_vector *q_vector = data;
2601
Alexander Duyckcd0b6fa2013-09-28 06:00:53 +00002602 if (!q_vector->tx.ring && !q_vector->rx.ring)
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002603 return IRQ_HANDLED;
2604
2605 napi_schedule(&q_vector->napi);
2606
2607 return IRQ_HANDLED;
2608}
2609
2610/**
2611 * i40e_fdir_clean_rings - Interrupt Handler for FDIR rings
2612 * @irq: interrupt number
2613 * @data: pointer to a q_vector
2614 **/
2615static irqreturn_t i40e_fdir_clean_rings(int irq, void *data)
2616{
2617 struct i40e_q_vector *q_vector = data;
2618
Alexander Duyckcd0b6fa2013-09-28 06:00:53 +00002619 if (!q_vector->tx.ring && !q_vector->rx.ring)
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002620 return IRQ_HANDLED;
2621
2622 pr_info("fdir ring cleaning needed\n");
2623
2624 return IRQ_HANDLED;
2625}
2626
2627/**
2628 * i40e_vsi_request_irq_msix - Initialize MSI-X interrupts
2629 * @vsi: the VSI being configured
2630 * @basename: name for the vector
2631 *
2632 * Allocates MSI-X vectors and requests interrupts from the kernel.
2633 **/
2634static int i40e_vsi_request_irq_msix(struct i40e_vsi *vsi, char *basename)
2635{
2636 int q_vectors = vsi->num_q_vectors;
2637 struct i40e_pf *pf = vsi->back;
2638 int base = vsi->base_vector;
2639 int rx_int_idx = 0;
2640 int tx_int_idx = 0;
2641 int vector, err;
2642
2643 for (vector = 0; vector < q_vectors; vector++) {
Alexander Duyck493fb302013-09-28 07:01:44 +00002644 struct i40e_q_vector *q_vector = vsi->q_vectors[vector];
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002645
Alexander Duyckcd0b6fa2013-09-28 06:00:53 +00002646 if (q_vector->tx.ring && q_vector->rx.ring) {
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002647 snprintf(q_vector->name, sizeof(q_vector->name) - 1,
2648 "%s-%s-%d", basename, "TxRx", rx_int_idx++);
2649 tx_int_idx++;
Alexander Duyckcd0b6fa2013-09-28 06:00:53 +00002650 } else if (q_vector->rx.ring) {
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002651 snprintf(q_vector->name, sizeof(q_vector->name) - 1,
2652 "%s-%s-%d", basename, "rx", rx_int_idx++);
Alexander Duyckcd0b6fa2013-09-28 06:00:53 +00002653 } else if (q_vector->tx.ring) {
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002654 snprintf(q_vector->name, sizeof(q_vector->name) - 1,
2655 "%s-%s-%d", basename, "tx", tx_int_idx++);
2656 } else {
2657 /* skip this unused q_vector */
2658 continue;
2659 }
2660 err = request_irq(pf->msix_entries[base + vector].vector,
2661 vsi->irq_handler,
2662 0,
2663 q_vector->name,
2664 q_vector);
2665 if (err) {
2666 dev_info(&pf->pdev->dev,
2667 "%s: request_irq failed, error: %d\n",
2668 __func__, err);
2669 goto free_queue_irqs;
2670 }
2671 /* assign the mask for this irq */
2672 irq_set_affinity_hint(pf->msix_entries[base + vector].vector,
2673 &q_vector->affinity_mask);
2674 }
2675
2676 return 0;
2677
2678free_queue_irqs:
2679 while (vector) {
2680 vector--;
2681 irq_set_affinity_hint(pf->msix_entries[base + vector].vector,
2682 NULL);
2683 free_irq(pf->msix_entries[base + vector].vector,
2684 &(vsi->q_vectors[vector]));
2685 }
2686 return err;
2687}
2688
2689/**
2690 * i40e_vsi_disable_irq - Mask off queue interrupt generation on the VSI
2691 * @vsi: the VSI being un-configured
2692 **/
2693static void i40e_vsi_disable_irq(struct i40e_vsi *vsi)
2694{
2695 struct i40e_pf *pf = vsi->back;
2696 struct i40e_hw *hw = &pf->hw;
2697 int base = vsi->base_vector;
2698 int i;
2699
2700 for (i = 0; i < vsi->num_queue_pairs; i++) {
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00002701 wr32(hw, I40E_QINT_TQCTL(vsi->tx_rings[i]->reg_idx), 0);
2702 wr32(hw, I40E_QINT_RQCTL(vsi->rx_rings[i]->reg_idx), 0);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002703 }
2704
2705 if (pf->flags & I40E_FLAG_MSIX_ENABLED) {
2706 for (i = vsi->base_vector;
2707 i < (vsi->num_q_vectors + vsi->base_vector); i++)
2708 wr32(hw, I40E_PFINT_DYN_CTLN(i - 1), 0);
2709
2710 i40e_flush(hw);
2711 for (i = 0; i < vsi->num_q_vectors; i++)
2712 synchronize_irq(pf->msix_entries[i + base].vector);
2713 } else {
2714 /* Legacy and MSI mode - this stops all interrupt handling */
2715 wr32(hw, I40E_PFINT_ICR0_ENA, 0);
2716 wr32(hw, I40E_PFINT_DYN_CTL0, 0);
2717 i40e_flush(hw);
2718 synchronize_irq(pf->pdev->irq);
2719 }
2720}
2721
2722/**
2723 * i40e_vsi_enable_irq - Enable IRQ for the given VSI
2724 * @vsi: the VSI being configured
2725 **/
2726static int i40e_vsi_enable_irq(struct i40e_vsi *vsi)
2727{
2728 struct i40e_pf *pf = vsi->back;
2729 int i;
2730
2731 if (pf->flags & I40E_FLAG_MSIX_ENABLED) {
2732 for (i = vsi->base_vector;
2733 i < (vsi->num_q_vectors + vsi->base_vector); i++)
2734 i40e_irq_dynamic_enable(vsi, i);
2735 } else {
2736 i40e_irq_dynamic_enable_icr0(pf);
2737 }
2738
Jesse Brandeburg1022cb62013-09-28 07:13:08 +00002739 i40e_flush(&pf->hw);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002740 return 0;
2741}
2742
2743/**
2744 * i40e_stop_misc_vector - Stop the vector that handles non-queue events
2745 * @pf: board private structure
2746 **/
2747static void i40e_stop_misc_vector(struct i40e_pf *pf)
2748{
2749 /* Disable ICR 0 */
2750 wr32(&pf->hw, I40E_PFINT_ICR0_ENA, 0);
2751 i40e_flush(&pf->hw);
2752}
2753
2754/**
2755 * i40e_intr - MSI/Legacy and non-queue interrupt handler
2756 * @irq: interrupt number
2757 * @data: pointer to a q_vector
2758 *
2759 * This is the handler used for all MSI/Legacy interrupts, and deals
2760 * with both queue and non-queue interrupts. This is also used in
2761 * MSIX mode to handle the non-queue interrupts.
2762 **/
2763static irqreturn_t i40e_intr(int irq, void *data)
2764{
2765 struct i40e_pf *pf = (struct i40e_pf *)data;
2766 struct i40e_hw *hw = &pf->hw;
Anjali Singhai Jain5e823062013-12-18 13:45:49 +00002767 irqreturn_t ret = IRQ_NONE;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002768 u32 icr0, icr0_remaining;
2769 u32 val, ena_mask;
2770
2771 icr0 = rd32(hw, I40E_PFINT_ICR0);
Anjali Singhai Jain5e823062013-12-18 13:45:49 +00002772 ena_mask = rd32(hw, I40E_PFINT_ICR0_ENA);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002773
Shannon Nelson116a57d2013-09-28 07:13:59 +00002774 /* if sharing a legacy IRQ, we might get called w/o an intr pending */
2775 if ((icr0 & I40E_PFINT_ICR0_INTEVENT_MASK) == 0)
Anjali Singhai Jain5e823062013-12-18 13:45:49 +00002776 goto enable_intr;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002777
Shannon Nelsoncd92e722013-11-16 10:00:44 +00002778 /* if interrupt but no bits showing, must be SWINT */
2779 if (((icr0 & ~I40E_PFINT_ICR0_INTEVENT_MASK) == 0) ||
2780 (icr0 & I40E_PFINT_ICR0_SWINT_MASK))
2781 pf->sw_int_count++;
2782
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002783 /* only q0 is used in MSI/Legacy mode, and none are used in MSIX */
2784 if (icr0 & I40E_PFINT_ICR0_QUEUE_0_MASK) {
2785
2786 /* temporarily disable queue cause for NAPI processing */
2787 u32 qval = rd32(hw, I40E_QINT_RQCTL(0));
2788 qval &= ~I40E_QINT_RQCTL_CAUSE_ENA_MASK;
2789 wr32(hw, I40E_QINT_RQCTL(0), qval);
2790
2791 qval = rd32(hw, I40E_QINT_TQCTL(0));
2792 qval &= ~I40E_QINT_TQCTL_CAUSE_ENA_MASK;
2793 wr32(hw, I40E_QINT_TQCTL(0), qval);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002794
2795 if (!test_bit(__I40E_DOWN, &pf->state))
Alexander Duyck493fb302013-09-28 07:01:44 +00002796 napi_schedule(&pf->vsi[pf->lan_vsi]->q_vectors[0]->napi);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002797 }
2798
2799 if (icr0 & I40E_PFINT_ICR0_ADMINQ_MASK) {
2800 ena_mask &= ~I40E_PFINT_ICR0_ENA_ADMINQ_MASK;
2801 set_bit(__I40E_ADMINQ_EVENT_PENDING, &pf->state);
2802 }
2803
2804 if (icr0 & I40E_PFINT_ICR0_MAL_DETECT_MASK) {
2805 ena_mask &= ~I40E_PFINT_ICR0_ENA_MAL_DETECT_MASK;
2806 set_bit(__I40E_MDD_EVENT_PENDING, &pf->state);
2807 }
2808
2809 if (icr0 & I40E_PFINT_ICR0_VFLR_MASK) {
2810 ena_mask &= ~I40E_PFINT_ICR0_ENA_VFLR_MASK;
2811 set_bit(__I40E_VFLR_EVENT_PENDING, &pf->state);
2812 }
2813
2814 if (icr0 & I40E_PFINT_ICR0_GRST_MASK) {
2815 if (!test_bit(__I40E_RESET_RECOVERY_PENDING, &pf->state))
2816 set_bit(__I40E_RESET_INTR_RECEIVED, &pf->state);
2817 ena_mask &= ~I40E_PFINT_ICR0_ENA_GRST_MASK;
2818 val = rd32(hw, I40E_GLGEN_RSTAT);
2819 val = (val & I40E_GLGEN_RSTAT_RESET_TYPE_MASK)
2820 >> I40E_GLGEN_RSTAT_RESET_TYPE_SHIFT;
Shannon Nelsond52cf0a2013-11-16 10:00:39 +00002821 if (val == I40E_RESET_CORER)
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002822 pf->corer_count++;
Shannon Nelsond52cf0a2013-11-16 10:00:39 +00002823 else if (val == I40E_RESET_GLOBR)
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002824 pf->globr_count++;
Shannon Nelsond52cf0a2013-11-16 10:00:39 +00002825 else if (val == I40E_RESET_EMPR)
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002826 pf->empr_count++;
2827 }
2828
Anjali Singhai Jain9c010ee2013-11-28 06:39:20 +00002829 if (icr0 & I40E_PFINT_ICR0_HMC_ERR_MASK) {
2830 icr0 &= ~I40E_PFINT_ICR0_HMC_ERR_MASK;
2831 dev_info(&pf->pdev->dev, "HMC error interrupt\n");
2832 }
2833
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002834 /* If a critical error is pending we have no choice but to reset the
2835 * device.
2836 * Report and mask out any remaining unexpected interrupts.
2837 */
2838 icr0_remaining = icr0 & ena_mask;
2839 if (icr0_remaining) {
2840 dev_info(&pf->pdev->dev, "unhandled interrupt icr0=0x%08x\n",
2841 icr0_remaining);
Anjali Singhai Jain9c010ee2013-11-28 06:39:20 +00002842 if ((icr0_remaining & I40E_PFINT_ICR0_PE_CRITERR_MASK) ||
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002843 (icr0_remaining & I40E_PFINT_ICR0_PCI_EXCEPTION_MASK) ||
2844 (icr0_remaining & I40E_PFINT_ICR0_ECC_ERR_MASK) ||
2845 (icr0_remaining & I40E_PFINT_ICR0_MAL_DETECT_MASK)) {
Anjali Singhai Jain9c010ee2013-11-28 06:39:20 +00002846 dev_info(&pf->pdev->dev, "device will be reset\n");
2847 set_bit(__I40E_PF_RESET_REQUESTED, &pf->state);
2848 i40e_service_event_schedule(pf);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002849 }
2850 ena_mask &= ~icr0_remaining;
2851 }
Anjali Singhai Jain5e823062013-12-18 13:45:49 +00002852 ret = IRQ_HANDLED;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002853
Anjali Singhai Jain5e823062013-12-18 13:45:49 +00002854enable_intr:
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002855 /* re-enable interrupt causes */
2856 wr32(hw, I40E_PFINT_ICR0_ENA, ena_mask);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002857 if (!test_bit(__I40E_DOWN, &pf->state)) {
2858 i40e_service_event_schedule(pf);
2859 i40e_irq_dynamic_enable_icr0(pf);
2860 }
2861
Anjali Singhai Jain5e823062013-12-18 13:45:49 +00002862 return ret;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002863}
2864
2865/**
Alexander Duyckcd0b6fa2013-09-28 06:00:53 +00002866 * i40e_map_vector_to_qp - Assigns the queue pair to the vector
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002867 * @vsi: the VSI being configured
2868 * @v_idx: vector index
Alexander Duyckcd0b6fa2013-09-28 06:00:53 +00002869 * @qp_idx: queue pair index
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002870 **/
Alexander Duyckcd0b6fa2013-09-28 06:00:53 +00002871static void map_vector_to_qp(struct i40e_vsi *vsi, int v_idx, int qp_idx)
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002872{
Alexander Duyck493fb302013-09-28 07:01:44 +00002873 struct i40e_q_vector *q_vector = vsi->q_vectors[v_idx];
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00002874 struct i40e_ring *tx_ring = vsi->tx_rings[qp_idx];
2875 struct i40e_ring *rx_ring = vsi->rx_rings[qp_idx];
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002876
2877 tx_ring->q_vector = q_vector;
Alexander Duyckcd0b6fa2013-09-28 06:00:53 +00002878 tx_ring->next = q_vector->tx.ring;
2879 q_vector->tx.ring = tx_ring;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002880 q_vector->tx.count++;
Alexander Duyckcd0b6fa2013-09-28 06:00:53 +00002881
2882 rx_ring->q_vector = q_vector;
2883 rx_ring->next = q_vector->rx.ring;
2884 q_vector->rx.ring = rx_ring;
2885 q_vector->rx.count++;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002886}
2887
2888/**
2889 * i40e_vsi_map_rings_to_vectors - Maps descriptor rings to vectors
2890 * @vsi: the VSI being configured
2891 *
2892 * This function maps descriptor rings to the queue-specific vectors
2893 * we were allotted through the MSI-X enabling code. Ideally, we'd have
2894 * one vector per queue pair, but on a constrained vector budget, we
2895 * group the queue pairs as "efficiently" as possible.
2896 **/
2897static void i40e_vsi_map_rings_to_vectors(struct i40e_vsi *vsi)
2898{
2899 int qp_remaining = vsi->num_queue_pairs;
2900 int q_vectors = vsi->num_q_vectors;
Alexander Duyckcd0b6fa2013-09-28 06:00:53 +00002901 int num_ringpairs;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002902 int v_start = 0;
2903 int qp_idx = 0;
2904
2905 /* If we don't have enough vectors for a 1-to-1 mapping, we'll have to
2906 * group them so there are multiple queues per vector.
2907 */
2908 for (; v_start < q_vectors && qp_remaining; v_start++) {
Alexander Duyckcd0b6fa2013-09-28 06:00:53 +00002909 struct i40e_q_vector *q_vector = vsi->q_vectors[v_start];
2910
2911 num_ringpairs = DIV_ROUND_UP(qp_remaining, q_vectors - v_start);
2912
2913 q_vector->num_ringpairs = num_ringpairs;
2914
2915 q_vector->rx.count = 0;
2916 q_vector->tx.count = 0;
2917 q_vector->rx.ring = NULL;
2918 q_vector->tx.ring = NULL;
2919
2920 while (num_ringpairs--) {
2921 map_vector_to_qp(vsi, v_start, qp_idx);
2922 qp_idx++;
2923 qp_remaining--;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002924 }
2925 }
2926}
2927
2928/**
2929 * i40e_vsi_request_irq - Request IRQ from the OS
2930 * @vsi: the VSI being configured
2931 * @basename: name for the vector
2932 **/
2933static int i40e_vsi_request_irq(struct i40e_vsi *vsi, char *basename)
2934{
2935 struct i40e_pf *pf = vsi->back;
2936 int err;
2937
2938 if (pf->flags & I40E_FLAG_MSIX_ENABLED)
2939 err = i40e_vsi_request_irq_msix(vsi, basename);
2940 else if (pf->flags & I40E_FLAG_MSI_ENABLED)
2941 err = request_irq(pf->pdev->irq, i40e_intr, 0,
2942 pf->misc_int_name, pf);
2943 else
2944 err = request_irq(pf->pdev->irq, i40e_intr, IRQF_SHARED,
2945 pf->misc_int_name, pf);
2946
2947 if (err)
2948 dev_info(&pf->pdev->dev, "request_irq failed, Error %d\n", err);
2949
2950 return err;
2951}
2952
2953#ifdef CONFIG_NET_POLL_CONTROLLER
2954/**
2955 * i40e_netpoll - A Polling 'interrupt'handler
2956 * @netdev: network interface device structure
2957 *
2958 * This is used by netconsole to send skbs without having to re-enable
2959 * interrupts. It's not called while the normal interrupt routine is executing.
2960 **/
2961static void i40e_netpoll(struct net_device *netdev)
2962{
2963 struct i40e_netdev_priv *np = netdev_priv(netdev);
2964 struct i40e_vsi *vsi = np->vsi;
2965 struct i40e_pf *pf = vsi->back;
2966 int i;
2967
2968 /* if interface is down do nothing */
2969 if (test_bit(__I40E_DOWN, &vsi->state))
2970 return;
2971
2972 pf->flags |= I40E_FLAG_IN_NETPOLL;
2973 if (pf->flags & I40E_FLAG_MSIX_ENABLED) {
2974 for (i = 0; i < vsi->num_q_vectors; i++)
Alexander Duyck493fb302013-09-28 07:01:44 +00002975 i40e_msix_clean_rings(0, vsi->q_vectors[i]);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00002976 } else {
2977 i40e_intr(pf->pdev->irq, netdev);
2978 }
2979 pf->flags &= ~I40E_FLAG_IN_NETPOLL;
2980}
2981#endif
2982
2983/**
2984 * i40e_vsi_control_tx - Start or stop a VSI's rings
2985 * @vsi: the VSI being configured
2986 * @enable: start or stop the rings
2987 **/
2988static int i40e_vsi_control_tx(struct i40e_vsi *vsi, bool enable)
2989{
2990 struct i40e_pf *pf = vsi->back;
2991 struct i40e_hw *hw = &pf->hw;
2992 int i, j, pf_q;
2993 u32 tx_reg;
2994
2995 pf_q = vsi->base_queue;
2996 for (i = 0; i < vsi->num_queue_pairs; i++, pf_q++) {
2997 j = 1000;
2998 do {
2999 usleep_range(1000, 2000);
3000 tx_reg = rd32(hw, I40E_QTX_ENA(pf_q));
3001 } while (j-- && ((tx_reg >> I40E_QTX_ENA_QENA_REQ_SHIFT)
3002 ^ (tx_reg >> I40E_QTX_ENA_QENA_STAT_SHIFT)) & 1);
3003
Mitch Williamsfda972f2013-11-28 06:39:29 +00003004 /* Skip if the queue is already in the requested state */
3005 if (enable && (tx_reg & I40E_QTX_ENA_QENA_STAT_MASK))
3006 continue;
3007 if (!enable && !(tx_reg & I40E_QTX_ENA_QENA_STAT_MASK))
3008 continue;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003009
3010 /* turn on/off the queue */
3011 if (enable)
3012 tx_reg |= I40E_QTX_ENA_QENA_REQ_MASK |
3013 I40E_QTX_ENA_QENA_STAT_MASK;
3014 else
3015 tx_reg &= ~I40E_QTX_ENA_QENA_REQ_MASK;
3016
3017 wr32(hw, I40E_QTX_ENA(pf_q), tx_reg);
3018
3019 /* wait for the change to finish */
3020 for (j = 0; j < 10; j++) {
3021 tx_reg = rd32(hw, I40E_QTX_ENA(pf_q));
3022 if (enable) {
3023 if ((tx_reg & I40E_QTX_ENA_QENA_STAT_MASK))
3024 break;
3025 } else {
3026 if (!(tx_reg & I40E_QTX_ENA_QENA_STAT_MASK))
3027 break;
3028 }
3029
3030 udelay(10);
3031 }
3032 if (j >= 10) {
3033 dev_info(&pf->pdev->dev, "Tx ring %d %sable timeout\n",
3034 pf_q, (enable ? "en" : "dis"));
3035 return -ETIMEDOUT;
3036 }
3037 }
3038
Jesse Brandeburg7134f9c2013-11-26 08:56:05 +00003039 if (hw->revision_id == 0)
3040 mdelay(50);
3041
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003042 return 0;
3043}
3044
3045/**
3046 * i40e_vsi_control_rx - Start or stop a VSI's rings
3047 * @vsi: the VSI being configured
3048 * @enable: start or stop the rings
3049 **/
3050static int i40e_vsi_control_rx(struct i40e_vsi *vsi, bool enable)
3051{
3052 struct i40e_pf *pf = vsi->back;
3053 struct i40e_hw *hw = &pf->hw;
3054 int i, j, pf_q;
3055 u32 rx_reg;
3056
3057 pf_q = vsi->base_queue;
3058 for (i = 0; i < vsi->num_queue_pairs; i++, pf_q++) {
3059 j = 1000;
3060 do {
3061 usleep_range(1000, 2000);
3062 rx_reg = rd32(hw, I40E_QRX_ENA(pf_q));
3063 } while (j-- && ((rx_reg >> I40E_QRX_ENA_QENA_REQ_SHIFT)
3064 ^ (rx_reg >> I40E_QRX_ENA_QENA_STAT_SHIFT)) & 1);
3065
3066 if (enable) {
3067 /* is STAT set ? */
3068 if ((rx_reg & I40E_QRX_ENA_QENA_STAT_MASK))
3069 continue;
3070 } else {
3071 /* is !STAT set ? */
3072 if (!(rx_reg & I40E_QRX_ENA_QENA_STAT_MASK))
3073 continue;
3074 }
3075
3076 /* turn on/off the queue */
3077 if (enable)
3078 rx_reg |= I40E_QRX_ENA_QENA_REQ_MASK |
3079 I40E_QRX_ENA_QENA_STAT_MASK;
3080 else
3081 rx_reg &= ~(I40E_QRX_ENA_QENA_REQ_MASK |
3082 I40E_QRX_ENA_QENA_STAT_MASK);
3083 wr32(hw, I40E_QRX_ENA(pf_q), rx_reg);
3084
3085 /* wait for the change to finish */
3086 for (j = 0; j < 10; j++) {
3087 rx_reg = rd32(hw, I40E_QRX_ENA(pf_q));
3088
3089 if (enable) {
3090 if ((rx_reg & I40E_QRX_ENA_QENA_STAT_MASK))
3091 break;
3092 } else {
3093 if (!(rx_reg & I40E_QRX_ENA_QENA_STAT_MASK))
3094 break;
3095 }
3096
3097 udelay(10);
3098 }
3099 if (j >= 10) {
3100 dev_info(&pf->pdev->dev, "Rx ring %d %sable timeout\n",
3101 pf_q, (enable ? "en" : "dis"));
3102 return -ETIMEDOUT;
3103 }
3104 }
3105
3106 return 0;
3107}
3108
3109/**
3110 * i40e_vsi_control_rings - Start or stop a VSI's rings
3111 * @vsi: the VSI being configured
3112 * @enable: start or stop the rings
3113 **/
Mitch Williamsfc18eaa2013-11-28 06:39:27 +00003114int i40e_vsi_control_rings(struct i40e_vsi *vsi, bool request)
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003115{
Anjali Singhai Jain3b867b22013-12-21 05:44:44 +00003116 int ret = 0;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003117
3118 /* do rx first for enable and last for disable */
3119 if (request) {
3120 ret = i40e_vsi_control_rx(vsi, request);
3121 if (ret)
3122 return ret;
3123 ret = i40e_vsi_control_tx(vsi, request);
3124 } else {
Anjali Singhai Jain3b867b22013-12-21 05:44:44 +00003125 /* Ignore return value, we need to shutdown whatever we can */
3126 i40e_vsi_control_tx(vsi, request);
3127 i40e_vsi_control_rx(vsi, request);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003128 }
3129
3130 return ret;
3131}
3132
3133/**
3134 * i40e_vsi_free_irq - Free the irq association with the OS
3135 * @vsi: the VSI being configured
3136 **/
3137static void i40e_vsi_free_irq(struct i40e_vsi *vsi)
3138{
3139 struct i40e_pf *pf = vsi->back;
3140 struct i40e_hw *hw = &pf->hw;
3141 int base = vsi->base_vector;
3142 u32 val, qp;
3143 int i;
3144
3145 if (pf->flags & I40E_FLAG_MSIX_ENABLED) {
3146 if (!vsi->q_vectors)
3147 return;
3148
3149 for (i = 0; i < vsi->num_q_vectors; i++) {
3150 u16 vector = i + base;
3151
3152 /* free only the irqs that were actually requested */
Shannon Nelson78681b12013-11-28 06:39:36 +00003153 if (!vsi->q_vectors[i] ||
3154 !vsi->q_vectors[i]->num_ringpairs)
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003155 continue;
3156
3157 /* clear the affinity_mask in the IRQ descriptor */
3158 irq_set_affinity_hint(pf->msix_entries[vector].vector,
3159 NULL);
3160 free_irq(pf->msix_entries[vector].vector,
Alexander Duyck493fb302013-09-28 07:01:44 +00003161 vsi->q_vectors[i]);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003162
3163 /* Tear down the interrupt queue link list
3164 *
3165 * We know that they come in pairs and always
3166 * the Rx first, then the Tx. To clear the
3167 * link list, stick the EOL value into the
3168 * next_q field of the registers.
3169 */
3170 val = rd32(hw, I40E_PFINT_LNKLSTN(vector - 1));
3171 qp = (val & I40E_PFINT_LNKLSTN_FIRSTQ_INDX_MASK)
3172 >> I40E_PFINT_LNKLSTN_FIRSTQ_INDX_SHIFT;
3173 val |= I40E_QUEUE_END_OF_LIST
3174 << I40E_PFINT_LNKLSTN_FIRSTQ_INDX_SHIFT;
3175 wr32(hw, I40E_PFINT_LNKLSTN(vector - 1), val);
3176
3177 while (qp != I40E_QUEUE_END_OF_LIST) {
3178 u32 next;
3179
3180 val = rd32(hw, I40E_QINT_RQCTL(qp));
3181
3182 val &= ~(I40E_QINT_RQCTL_MSIX_INDX_MASK |
3183 I40E_QINT_RQCTL_MSIX0_INDX_MASK |
3184 I40E_QINT_RQCTL_CAUSE_ENA_MASK |
3185 I40E_QINT_RQCTL_INTEVENT_MASK);
3186
3187 val |= (I40E_QINT_RQCTL_ITR_INDX_MASK |
3188 I40E_QINT_RQCTL_NEXTQ_INDX_MASK);
3189
3190 wr32(hw, I40E_QINT_RQCTL(qp), val);
3191
3192 val = rd32(hw, I40E_QINT_TQCTL(qp));
3193
3194 next = (val & I40E_QINT_TQCTL_NEXTQ_INDX_MASK)
3195 >> I40E_QINT_TQCTL_NEXTQ_INDX_SHIFT;
3196
3197 val &= ~(I40E_QINT_TQCTL_MSIX_INDX_MASK |
3198 I40E_QINT_TQCTL_MSIX0_INDX_MASK |
3199 I40E_QINT_TQCTL_CAUSE_ENA_MASK |
3200 I40E_QINT_TQCTL_INTEVENT_MASK);
3201
3202 val |= (I40E_QINT_TQCTL_ITR_INDX_MASK |
3203 I40E_QINT_TQCTL_NEXTQ_INDX_MASK);
3204
3205 wr32(hw, I40E_QINT_TQCTL(qp), val);
3206 qp = next;
3207 }
3208 }
3209 } else {
3210 free_irq(pf->pdev->irq, pf);
3211
3212 val = rd32(hw, I40E_PFINT_LNKLST0);
3213 qp = (val & I40E_PFINT_LNKLSTN_FIRSTQ_INDX_MASK)
3214 >> I40E_PFINT_LNKLSTN_FIRSTQ_INDX_SHIFT;
3215 val |= I40E_QUEUE_END_OF_LIST
3216 << I40E_PFINT_LNKLST0_FIRSTQ_INDX_SHIFT;
3217 wr32(hw, I40E_PFINT_LNKLST0, val);
3218
3219 val = rd32(hw, I40E_QINT_RQCTL(qp));
3220 val &= ~(I40E_QINT_RQCTL_MSIX_INDX_MASK |
3221 I40E_QINT_RQCTL_MSIX0_INDX_MASK |
3222 I40E_QINT_RQCTL_CAUSE_ENA_MASK |
3223 I40E_QINT_RQCTL_INTEVENT_MASK);
3224
3225 val |= (I40E_QINT_RQCTL_ITR_INDX_MASK |
3226 I40E_QINT_RQCTL_NEXTQ_INDX_MASK);
3227
3228 wr32(hw, I40E_QINT_RQCTL(qp), val);
3229
3230 val = rd32(hw, I40E_QINT_TQCTL(qp));
3231
3232 val &= ~(I40E_QINT_TQCTL_MSIX_INDX_MASK |
3233 I40E_QINT_TQCTL_MSIX0_INDX_MASK |
3234 I40E_QINT_TQCTL_CAUSE_ENA_MASK |
3235 I40E_QINT_TQCTL_INTEVENT_MASK);
3236
3237 val |= (I40E_QINT_TQCTL_ITR_INDX_MASK |
3238 I40E_QINT_TQCTL_NEXTQ_INDX_MASK);
3239
3240 wr32(hw, I40E_QINT_TQCTL(qp), val);
3241 }
3242}
3243
3244/**
Alexander Duyck493fb302013-09-28 07:01:44 +00003245 * i40e_free_q_vector - Free memory allocated for specific interrupt vector
3246 * @vsi: the VSI being configured
3247 * @v_idx: Index of vector to be freed
3248 *
3249 * This function frees the memory allocated to the q_vector. In addition if
3250 * NAPI is enabled it will delete any references to the NAPI struct prior
3251 * to freeing the q_vector.
3252 **/
3253static void i40e_free_q_vector(struct i40e_vsi *vsi, int v_idx)
3254{
3255 struct i40e_q_vector *q_vector = vsi->q_vectors[v_idx];
Alexander Duyckcd0b6fa2013-09-28 06:00:53 +00003256 struct i40e_ring *ring;
Alexander Duyck493fb302013-09-28 07:01:44 +00003257
3258 if (!q_vector)
3259 return;
3260
3261 /* disassociate q_vector from rings */
Alexander Duyckcd0b6fa2013-09-28 06:00:53 +00003262 i40e_for_each_ring(ring, q_vector->tx)
3263 ring->q_vector = NULL;
3264
3265 i40e_for_each_ring(ring, q_vector->rx)
3266 ring->q_vector = NULL;
Alexander Duyck493fb302013-09-28 07:01:44 +00003267
3268 /* only VSI w/ an associated netdev is set up w/ NAPI */
3269 if (vsi->netdev)
3270 netif_napi_del(&q_vector->napi);
3271
3272 vsi->q_vectors[v_idx] = NULL;
3273
3274 kfree_rcu(q_vector, rcu);
3275}
3276
3277/**
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003278 * i40e_vsi_free_q_vectors - Free memory allocated for interrupt vectors
3279 * @vsi: the VSI being un-configured
3280 *
3281 * This frees the memory allocated to the q_vectors and
3282 * deletes references to the NAPI struct.
3283 **/
3284static void i40e_vsi_free_q_vectors(struct i40e_vsi *vsi)
3285{
3286 int v_idx;
3287
Alexander Duyck493fb302013-09-28 07:01:44 +00003288 for (v_idx = 0; v_idx < vsi->num_q_vectors; v_idx++)
3289 i40e_free_q_vector(vsi, v_idx);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003290}
3291
3292/**
3293 * i40e_reset_interrupt_capability - Disable interrupt setup in OS
3294 * @pf: board private structure
3295 **/
3296static void i40e_reset_interrupt_capability(struct i40e_pf *pf)
3297{
3298 /* If we're in Legacy mode, the interrupt was cleaned in vsi_close */
3299 if (pf->flags & I40E_FLAG_MSIX_ENABLED) {
3300 pci_disable_msix(pf->pdev);
3301 kfree(pf->msix_entries);
3302 pf->msix_entries = NULL;
3303 } else if (pf->flags & I40E_FLAG_MSI_ENABLED) {
3304 pci_disable_msi(pf->pdev);
3305 }
3306 pf->flags &= ~(I40E_FLAG_MSIX_ENABLED | I40E_FLAG_MSI_ENABLED);
3307}
3308
3309/**
3310 * i40e_clear_interrupt_scheme - Clear the current interrupt scheme settings
3311 * @pf: board private structure
3312 *
3313 * We go through and clear interrupt specific resources and reset the structure
3314 * to pre-load conditions
3315 **/
3316static void i40e_clear_interrupt_scheme(struct i40e_pf *pf)
3317{
3318 int i;
3319
3320 i40e_put_lump(pf->irq_pile, 0, I40E_PILE_VALID_BIT-1);
3321 for (i = 0; i < pf->hw.func_caps.num_vsis; i++)
3322 if (pf->vsi[i])
3323 i40e_vsi_free_q_vectors(pf->vsi[i]);
3324 i40e_reset_interrupt_capability(pf);
3325}
3326
3327/**
3328 * i40e_napi_enable_all - Enable NAPI for all q_vectors in the VSI
3329 * @vsi: the VSI being configured
3330 **/
3331static void i40e_napi_enable_all(struct i40e_vsi *vsi)
3332{
3333 int q_idx;
3334
3335 if (!vsi->netdev)
3336 return;
3337
3338 for (q_idx = 0; q_idx < vsi->num_q_vectors; q_idx++)
Alexander Duyck493fb302013-09-28 07:01:44 +00003339 napi_enable(&vsi->q_vectors[q_idx]->napi);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003340}
3341
3342/**
3343 * i40e_napi_disable_all - Disable NAPI for all q_vectors in the VSI
3344 * @vsi: the VSI being configured
3345 **/
3346static void i40e_napi_disable_all(struct i40e_vsi *vsi)
3347{
3348 int q_idx;
3349
3350 if (!vsi->netdev)
3351 return;
3352
3353 for (q_idx = 0; q_idx < vsi->num_q_vectors; q_idx++)
Alexander Duyck493fb302013-09-28 07:01:44 +00003354 napi_disable(&vsi->q_vectors[q_idx]->napi);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003355}
3356
3357/**
3358 * i40e_quiesce_vsi - Pause a given VSI
3359 * @vsi: the VSI being paused
3360 **/
3361static void i40e_quiesce_vsi(struct i40e_vsi *vsi)
3362{
3363 if (test_bit(__I40E_DOWN, &vsi->state))
3364 return;
3365
3366 set_bit(__I40E_NEEDS_RESTART, &vsi->state);
3367 if (vsi->netdev && netif_running(vsi->netdev)) {
3368 vsi->netdev->netdev_ops->ndo_stop(vsi->netdev);
3369 } else {
3370 set_bit(__I40E_DOWN, &vsi->state);
3371 i40e_down(vsi);
3372 }
3373}
3374
3375/**
3376 * i40e_unquiesce_vsi - Resume a given VSI
3377 * @vsi: the VSI being resumed
3378 **/
3379static void i40e_unquiesce_vsi(struct i40e_vsi *vsi)
3380{
3381 if (!test_bit(__I40E_NEEDS_RESTART, &vsi->state))
3382 return;
3383
3384 clear_bit(__I40E_NEEDS_RESTART, &vsi->state);
3385 if (vsi->netdev && netif_running(vsi->netdev))
3386 vsi->netdev->netdev_ops->ndo_open(vsi->netdev);
3387 else
3388 i40e_up(vsi); /* this clears the DOWN bit */
3389}
3390
3391/**
3392 * i40e_pf_quiesce_all_vsi - Pause all VSIs on a PF
3393 * @pf: the PF
3394 **/
3395static void i40e_pf_quiesce_all_vsi(struct i40e_pf *pf)
3396{
3397 int v;
3398
3399 for (v = 0; v < pf->hw.func_caps.num_vsis; v++) {
3400 if (pf->vsi[v])
3401 i40e_quiesce_vsi(pf->vsi[v]);
3402 }
3403}
3404
3405/**
3406 * i40e_pf_unquiesce_all_vsi - Resume all VSIs on a PF
3407 * @pf: the PF
3408 **/
3409static void i40e_pf_unquiesce_all_vsi(struct i40e_pf *pf)
3410{
3411 int v;
3412
3413 for (v = 0; v < pf->hw.func_caps.num_vsis; v++) {
3414 if (pf->vsi[v])
3415 i40e_unquiesce_vsi(pf->vsi[v]);
3416 }
3417}
3418
3419/**
3420 * i40e_dcb_get_num_tc - Get the number of TCs from DCBx config
3421 * @dcbcfg: the corresponding DCBx configuration structure
3422 *
3423 * Return the number of TCs from given DCBx configuration
3424 **/
3425static u8 i40e_dcb_get_num_tc(struct i40e_dcbx_config *dcbcfg)
3426{
Jesse Brandeburg078b5872013-09-25 23:41:14 +00003427 u8 num_tc = 0;
3428 int i;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003429
3430 /* Scan the ETS Config Priority Table to find
3431 * traffic class enabled for a given priority
3432 * and use the traffic class index to get the
3433 * number of traffic classes enabled
3434 */
3435 for (i = 0; i < I40E_MAX_USER_PRIORITY; i++) {
3436 if (dcbcfg->etscfg.prioritytable[i] > num_tc)
3437 num_tc = dcbcfg->etscfg.prioritytable[i];
3438 }
3439
3440 /* Traffic class index starts from zero so
3441 * increment to return the actual count
3442 */
Jesse Brandeburg078b5872013-09-25 23:41:14 +00003443 return num_tc + 1;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003444}
3445
3446/**
3447 * i40e_dcb_get_enabled_tc - Get enabled traffic classes
3448 * @dcbcfg: the corresponding DCBx configuration structure
3449 *
3450 * Query the current DCB configuration and return the number of
3451 * traffic classes enabled from the given DCBX config
3452 **/
3453static u8 i40e_dcb_get_enabled_tc(struct i40e_dcbx_config *dcbcfg)
3454{
3455 u8 num_tc = i40e_dcb_get_num_tc(dcbcfg);
3456 u8 enabled_tc = 1;
3457 u8 i;
3458
3459 for (i = 0; i < num_tc; i++)
3460 enabled_tc |= 1 << i;
3461
3462 return enabled_tc;
3463}
3464
3465/**
3466 * i40e_pf_get_num_tc - Get enabled traffic classes for PF
3467 * @pf: PF being queried
3468 *
3469 * Return number of traffic classes enabled for the given PF
3470 **/
3471static u8 i40e_pf_get_num_tc(struct i40e_pf *pf)
3472{
3473 struct i40e_hw *hw = &pf->hw;
3474 u8 i, enabled_tc;
3475 u8 num_tc = 0;
3476 struct i40e_dcbx_config *dcbcfg = &hw->local_dcbx_config;
3477
3478 /* If DCB is not enabled then always in single TC */
3479 if (!(pf->flags & I40E_FLAG_DCB_ENABLED))
3480 return 1;
3481
3482 /* MFP mode return count of enabled TCs for this PF */
3483 if (pf->flags & I40E_FLAG_MFP_ENABLED) {
3484 enabled_tc = pf->hw.func_caps.enabled_tcmap;
3485 for (i = 0; i < I40E_MAX_TRAFFIC_CLASS; i++) {
3486 if (enabled_tc & (1 << i))
3487 num_tc++;
3488 }
3489 return num_tc;
3490 }
3491
3492 /* SFP mode will be enabled for all TCs on port */
3493 return i40e_dcb_get_num_tc(dcbcfg);
3494}
3495
3496/**
3497 * i40e_pf_get_default_tc - Get bitmap for first enabled TC
3498 * @pf: PF being queried
3499 *
3500 * Return a bitmap for first enabled traffic class for this PF.
3501 **/
3502static u8 i40e_pf_get_default_tc(struct i40e_pf *pf)
3503{
3504 u8 enabled_tc = pf->hw.func_caps.enabled_tcmap;
3505 u8 i = 0;
3506
3507 if (!enabled_tc)
3508 return 0x1; /* TC0 */
3509
3510 /* Find the first enabled TC */
3511 for (i = 0; i < I40E_MAX_TRAFFIC_CLASS; i++) {
3512 if (enabled_tc & (1 << i))
3513 break;
3514 }
3515
3516 return 1 << i;
3517}
3518
3519/**
3520 * i40e_pf_get_pf_tc_map - Get bitmap for enabled traffic classes
3521 * @pf: PF being queried
3522 *
3523 * Return a bitmap for enabled traffic classes for this PF.
3524 **/
3525static u8 i40e_pf_get_tc_map(struct i40e_pf *pf)
3526{
3527 /* If DCB is not enabled for this PF then just return default TC */
3528 if (!(pf->flags & I40E_FLAG_DCB_ENABLED))
3529 return i40e_pf_get_default_tc(pf);
3530
3531 /* MFP mode will have enabled TCs set by FW */
3532 if (pf->flags & I40E_FLAG_MFP_ENABLED)
3533 return pf->hw.func_caps.enabled_tcmap;
3534
3535 /* SFP mode we want PF to be enabled for all TCs */
3536 return i40e_dcb_get_enabled_tc(&pf->hw.local_dcbx_config);
3537}
3538
3539/**
3540 * i40e_vsi_get_bw_info - Query VSI BW Information
3541 * @vsi: the VSI being queried
3542 *
3543 * Returns 0 on success, negative value on failure
3544 **/
3545static int i40e_vsi_get_bw_info(struct i40e_vsi *vsi)
3546{
3547 struct i40e_aqc_query_vsi_ets_sla_config_resp bw_ets_config = {0};
3548 struct i40e_aqc_query_vsi_bw_config_resp bw_config = {0};
3549 struct i40e_pf *pf = vsi->back;
3550 struct i40e_hw *hw = &pf->hw;
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00003551 i40e_status aq_ret;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003552 u32 tc_bw_max;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003553 int i;
3554
3555 /* Get the VSI level BW configuration */
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00003556 aq_ret = i40e_aq_query_vsi_bw_config(hw, vsi->seid, &bw_config, NULL);
3557 if (aq_ret) {
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003558 dev_info(&pf->pdev->dev,
3559 "couldn't get pf vsi bw config, err %d, aq_err %d\n",
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00003560 aq_ret, pf->hw.aq.asq_last_status);
3561 return -EINVAL;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003562 }
3563
3564 /* Get the VSI level BW configuration per TC */
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00003565 aq_ret = i40e_aq_query_vsi_ets_sla_config(hw, vsi->seid, &bw_ets_config,
3566 NULL);
3567 if (aq_ret) {
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003568 dev_info(&pf->pdev->dev,
3569 "couldn't get pf vsi ets bw config, err %d, aq_err %d\n",
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00003570 aq_ret, pf->hw.aq.asq_last_status);
3571 return -EINVAL;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003572 }
3573
3574 if (bw_config.tc_valid_bits != bw_ets_config.tc_valid_bits) {
3575 dev_info(&pf->pdev->dev,
3576 "Enabled TCs mismatch from querying VSI BW info 0x%08x 0x%08x\n",
3577 bw_config.tc_valid_bits,
3578 bw_ets_config.tc_valid_bits);
3579 /* Still continuing */
3580 }
3581
3582 vsi->bw_limit = le16_to_cpu(bw_config.port_bw_limit);
3583 vsi->bw_max_quanta = bw_config.max_bw;
3584 tc_bw_max = le16_to_cpu(bw_ets_config.tc_bw_max[0]) |
3585 (le16_to_cpu(bw_ets_config.tc_bw_max[1]) << 16);
3586 for (i = 0; i < I40E_MAX_TRAFFIC_CLASS; i++) {
3587 vsi->bw_ets_share_credits[i] = bw_ets_config.share_credits[i];
3588 vsi->bw_ets_limit_credits[i] =
3589 le16_to_cpu(bw_ets_config.credits[i]);
3590 /* 3 bits out of 4 for each TC */
3591 vsi->bw_ets_max_quanta[i] = (u8)((tc_bw_max >> (i*4)) & 0x7);
3592 }
Jesse Brandeburg078b5872013-09-25 23:41:14 +00003593
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00003594 return 0;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003595}
3596
3597/**
3598 * i40e_vsi_configure_bw_alloc - Configure VSI BW allocation per TC
3599 * @vsi: the VSI being configured
3600 * @enabled_tc: TC bitmap
3601 * @bw_credits: BW shared credits per TC
3602 *
3603 * Returns 0 on success, negative value on failure
3604 **/
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00003605static int i40e_vsi_configure_bw_alloc(struct i40e_vsi *vsi, u8 enabled_tc,
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003606 u8 *bw_share)
3607{
3608 struct i40e_aqc_configure_vsi_tc_bw_data bw_data;
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00003609 i40e_status aq_ret;
3610 int i;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003611
3612 bw_data.tc_valid_bits = enabled_tc;
3613 for (i = 0; i < I40E_MAX_TRAFFIC_CLASS; i++)
3614 bw_data.tc_bw_credits[i] = bw_share[i];
3615
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00003616 aq_ret = i40e_aq_config_vsi_tc_bw(&vsi->back->hw, vsi->seid, &bw_data,
3617 NULL);
3618 if (aq_ret) {
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003619 dev_info(&vsi->back->pdev->dev,
3620 "%s: AQ command Config VSI BW allocation per TC failed = %d\n",
3621 __func__, vsi->back->hw.aq.asq_last_status);
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00003622 return -EINVAL;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003623 }
3624
3625 for (i = 0; i < I40E_MAX_TRAFFIC_CLASS; i++)
3626 vsi->info.qs_handle[i] = bw_data.qs_handles[i];
3627
Jesse Brandeburgdcae29b2013-09-13 08:23:20 +00003628 return 0;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003629}
3630
3631/**
3632 * i40e_vsi_config_netdev_tc - Setup the netdev TC configuration
3633 * @vsi: the VSI being configured
3634 * @enabled_tc: TC map to be enabled
3635 *
3636 **/
3637static void i40e_vsi_config_netdev_tc(struct i40e_vsi *vsi, u8 enabled_tc)
3638{
3639 struct net_device *netdev = vsi->netdev;
3640 struct i40e_pf *pf = vsi->back;
3641 struct i40e_hw *hw = &pf->hw;
3642 u8 netdev_tc = 0;
3643 int i;
3644 struct i40e_dcbx_config *dcbcfg = &hw->local_dcbx_config;
3645
3646 if (!netdev)
3647 return;
3648
3649 if (!enabled_tc) {
3650 netdev_reset_tc(netdev);
3651 return;
3652 }
3653
3654 /* Set up actual enabled TCs on the VSI */
3655 if (netdev_set_num_tc(netdev, vsi->tc_config.numtc))
3656 return;
3657
3658 /* set per TC queues for the VSI */
3659 for (i = 0; i < I40E_MAX_TRAFFIC_CLASS; i++) {
3660 /* Only set TC queues for enabled tcs
3661 *
3662 * e.g. For a VSI that has TC0 and TC3 enabled the
3663 * enabled_tc bitmap would be 0x00001001; the driver
3664 * will set the numtc for netdev as 2 that will be
3665 * referenced by the netdev layer as TC 0 and 1.
3666 */
3667 if (vsi->tc_config.enabled_tc & (1 << i))
3668 netdev_set_tc_queue(netdev,
3669 vsi->tc_config.tc_info[i].netdev_tc,
3670 vsi->tc_config.tc_info[i].qcount,
3671 vsi->tc_config.tc_info[i].qoffset);
3672 }
3673
3674 /* Assign UP2TC map for the VSI */
3675 for (i = 0; i < I40E_MAX_USER_PRIORITY; i++) {
3676 /* Get the actual TC# for the UP */
3677 u8 ets_tc = dcbcfg->etscfg.prioritytable[i];
3678 /* Get the mapped netdev TC# for the UP */
3679 netdev_tc = vsi->tc_config.tc_info[ets_tc].netdev_tc;
3680 netdev_set_prio_tc_map(netdev, i, netdev_tc);
3681 }
3682}
3683
3684/**
3685 * i40e_vsi_update_queue_map - Update our copy of VSi info with new queue map
3686 * @vsi: the VSI being configured
3687 * @ctxt: the ctxt buffer returned from AQ VSI update param command
3688 **/
3689static void i40e_vsi_update_queue_map(struct i40e_vsi *vsi,
3690 struct i40e_vsi_context *ctxt)
3691{
3692 /* copy just the sections touched not the entire info
3693 * since not all sections are valid as returned by
3694 * update vsi params
3695 */
3696 vsi->info.mapping_flags = ctxt->info.mapping_flags;
3697 memcpy(&vsi->info.queue_mapping,
3698 &ctxt->info.queue_mapping, sizeof(vsi->info.queue_mapping));
3699 memcpy(&vsi->info.tc_mapping, ctxt->info.tc_mapping,
3700 sizeof(vsi->info.tc_mapping));
3701}
3702
3703/**
3704 * i40e_vsi_config_tc - Configure VSI Tx Scheduler for given TC map
3705 * @vsi: VSI to be configured
3706 * @enabled_tc: TC bitmap
3707 *
3708 * This configures a particular VSI for TCs that are mapped to the
3709 * given TC bitmap. It uses default bandwidth share for TCs across
3710 * VSIs to configure TC for a particular VSI.
3711 *
3712 * NOTE:
3713 * It is expected that the VSI queues have been quisced before calling
3714 * this function.
3715 **/
3716static int i40e_vsi_config_tc(struct i40e_vsi *vsi, u8 enabled_tc)
3717{
3718 u8 bw_share[I40E_MAX_TRAFFIC_CLASS] = {0};
3719 struct i40e_vsi_context ctxt;
3720 int ret = 0;
3721 int i;
3722
3723 /* Check if enabled_tc is same as existing or new TCs */
3724 if (vsi->tc_config.enabled_tc == enabled_tc)
3725 return ret;
3726
3727 /* Enable ETS TCs with equal BW Share for now across all VSIs */
3728 for (i = 0; i < I40E_MAX_TRAFFIC_CLASS; i++) {
3729 if (enabled_tc & (1 << i))
3730 bw_share[i] = 1;
3731 }
3732
3733 ret = i40e_vsi_configure_bw_alloc(vsi, enabled_tc, bw_share);
3734 if (ret) {
3735 dev_info(&vsi->back->pdev->dev,
3736 "Failed configuring TC map %d for VSI %d\n",
3737 enabled_tc, vsi->seid);
3738 goto out;
3739 }
3740
3741 /* Update Queue Pairs Mapping for currently enabled UPs */
3742 ctxt.seid = vsi->seid;
3743 ctxt.pf_num = vsi->back->hw.pf_id;
3744 ctxt.vf_num = 0;
3745 ctxt.uplink_seid = vsi->uplink_seid;
3746 memcpy(&ctxt.info, &vsi->info, sizeof(vsi->info));
3747 i40e_vsi_setup_queue_map(vsi, &ctxt, enabled_tc, false);
3748
3749 /* Update the VSI after updating the VSI queue-mapping information */
3750 ret = i40e_aq_update_vsi_params(&vsi->back->hw, &ctxt, NULL);
3751 if (ret) {
3752 dev_info(&vsi->back->pdev->dev,
3753 "update vsi failed, aq_err=%d\n",
3754 vsi->back->hw.aq.asq_last_status);
3755 goto out;
3756 }
3757 /* update the local VSI info with updated queue map */
3758 i40e_vsi_update_queue_map(vsi, &ctxt);
3759 vsi->info.valid_sections = 0;
3760
3761 /* Update current VSI BW information */
3762 ret = i40e_vsi_get_bw_info(vsi);
3763 if (ret) {
3764 dev_info(&vsi->back->pdev->dev,
3765 "Failed updating vsi bw info, aq_err=%d\n",
3766 vsi->back->hw.aq.asq_last_status);
3767 goto out;
3768 }
3769
3770 /* Update the netdev TC setup */
3771 i40e_vsi_config_netdev_tc(vsi, enabled_tc);
3772out:
3773 return ret;
3774}
3775
3776/**
3777 * i40e_up_complete - Finish the last steps of bringing up a connection
3778 * @vsi: the VSI being configured
3779 **/
3780static int i40e_up_complete(struct i40e_vsi *vsi)
3781{
3782 struct i40e_pf *pf = vsi->back;
3783 int err;
3784
3785 if (pf->flags & I40E_FLAG_MSIX_ENABLED)
3786 i40e_vsi_configure_msix(vsi);
3787 else
3788 i40e_configure_msi_and_legacy(vsi);
3789
3790 /* start rings */
3791 err = i40e_vsi_control_rings(vsi, true);
3792 if (err)
3793 return err;
3794
3795 clear_bit(__I40E_DOWN, &vsi->state);
3796 i40e_napi_enable_all(vsi);
3797 i40e_vsi_enable_irq(vsi);
3798
3799 if ((pf->hw.phy.link_info.link_info & I40E_AQ_LINK_UP) &&
3800 (vsi->netdev)) {
Anjali Singhai6d779b42013-09-28 06:00:02 +00003801 netdev_info(vsi->netdev, "NIC Link is Up\n");
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003802 netif_tx_start_all_queues(vsi->netdev);
3803 netif_carrier_on(vsi->netdev);
Anjali Singhai6d779b42013-09-28 06:00:02 +00003804 } else if (vsi->netdev) {
3805 netdev_info(vsi->netdev, "NIC Link is Down\n");
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003806 }
3807 i40e_service_event_schedule(pf);
3808
3809 return 0;
3810}
3811
3812/**
3813 * i40e_vsi_reinit_locked - Reset the VSI
3814 * @vsi: the VSI being configured
3815 *
3816 * Rebuild the ring structs after some configuration
3817 * has changed, e.g. MTU size.
3818 **/
3819static void i40e_vsi_reinit_locked(struct i40e_vsi *vsi)
3820{
3821 struct i40e_pf *pf = vsi->back;
3822
3823 WARN_ON(in_interrupt());
3824 while (test_and_set_bit(__I40E_CONFIG_BUSY, &pf->state))
3825 usleep_range(1000, 2000);
3826 i40e_down(vsi);
3827
3828 /* Give a VF some time to respond to the reset. The
3829 * two second wait is based upon the watchdog cycle in
3830 * the VF driver.
3831 */
3832 if (vsi->type == I40E_VSI_SRIOV)
3833 msleep(2000);
3834 i40e_up(vsi);
3835 clear_bit(__I40E_CONFIG_BUSY, &pf->state);
3836}
3837
3838/**
3839 * i40e_up - Bring the connection back up after being down
3840 * @vsi: the VSI being configured
3841 **/
3842int i40e_up(struct i40e_vsi *vsi)
3843{
3844 int err;
3845
3846 err = i40e_vsi_configure(vsi);
3847 if (!err)
3848 err = i40e_up_complete(vsi);
3849
3850 return err;
3851}
3852
3853/**
3854 * i40e_down - Shutdown the connection processing
3855 * @vsi: the VSI being stopped
3856 **/
3857void i40e_down(struct i40e_vsi *vsi)
3858{
3859 int i;
3860
3861 /* It is assumed that the caller of this function
3862 * sets the vsi->state __I40E_DOWN bit.
3863 */
3864 if (vsi->netdev) {
3865 netif_carrier_off(vsi->netdev);
3866 netif_tx_disable(vsi->netdev);
3867 }
3868 i40e_vsi_disable_irq(vsi);
3869 i40e_vsi_control_rings(vsi, false);
3870 i40e_napi_disable_all(vsi);
3871
3872 for (i = 0; i < vsi->num_queue_pairs; i++) {
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00003873 i40e_clean_tx_ring(vsi->tx_rings[i]);
3874 i40e_clean_rx_ring(vsi->rx_rings[i]);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003875 }
3876}
3877
3878/**
3879 * i40e_setup_tc - configure multiple traffic classes
3880 * @netdev: net device to configure
3881 * @tc: number of traffic classes to enable
3882 **/
3883static int i40e_setup_tc(struct net_device *netdev, u8 tc)
3884{
3885 struct i40e_netdev_priv *np = netdev_priv(netdev);
3886 struct i40e_vsi *vsi = np->vsi;
3887 struct i40e_pf *pf = vsi->back;
3888 u8 enabled_tc = 0;
3889 int ret = -EINVAL;
3890 int i;
3891
3892 /* Check if DCB enabled to continue */
3893 if (!(pf->flags & I40E_FLAG_DCB_ENABLED)) {
3894 netdev_info(netdev, "DCB is not enabled for adapter\n");
3895 goto exit;
3896 }
3897
3898 /* Check if MFP enabled */
3899 if (pf->flags & I40E_FLAG_MFP_ENABLED) {
3900 netdev_info(netdev, "Configuring TC not supported in MFP mode\n");
3901 goto exit;
3902 }
3903
3904 /* Check whether tc count is within enabled limit */
3905 if (tc > i40e_pf_get_num_tc(pf)) {
3906 netdev_info(netdev, "TC count greater than enabled on link for adapter\n");
3907 goto exit;
3908 }
3909
3910 /* Generate TC map for number of tc requested */
3911 for (i = 0; i < tc; i++)
3912 enabled_tc |= (1 << i);
3913
3914 /* Requesting same TC configuration as already enabled */
3915 if (enabled_tc == vsi->tc_config.enabled_tc)
3916 return 0;
3917
3918 /* Quiesce VSI queues */
3919 i40e_quiesce_vsi(vsi);
3920
3921 /* Configure VSI for enabled TCs */
3922 ret = i40e_vsi_config_tc(vsi, enabled_tc);
3923 if (ret) {
3924 netdev_info(netdev, "Failed configuring TC for VSI seid=%d\n",
3925 vsi->seid);
3926 goto exit;
3927 }
3928
3929 /* Unquiesce VSI */
3930 i40e_unquiesce_vsi(vsi);
3931
3932exit:
3933 return ret;
3934}
3935
3936/**
3937 * i40e_open - Called when a network interface is made active
3938 * @netdev: network interface device structure
3939 *
3940 * The open entry point is called when a network interface is made
3941 * active by the system (IFF_UP). At this point all resources needed
3942 * for transmit and receive operations are allocated, the interrupt
3943 * handler is registered with the OS, the netdev watchdog subtask is
3944 * enabled, and the stack is notified that the interface is ready.
3945 *
3946 * Returns 0 on success, negative value on failure
3947 **/
3948static int i40e_open(struct net_device *netdev)
3949{
3950 struct i40e_netdev_priv *np = netdev_priv(netdev);
3951 struct i40e_vsi *vsi = np->vsi;
3952 struct i40e_pf *pf = vsi->back;
3953 char int_name[IFNAMSIZ];
3954 int err;
3955
3956 /* disallow open during test */
3957 if (test_bit(__I40E_TESTING, &pf->state))
3958 return -EBUSY;
3959
3960 netif_carrier_off(netdev);
3961
3962 /* allocate descriptors */
3963 err = i40e_vsi_setup_tx_resources(vsi);
3964 if (err)
3965 goto err_setup_tx;
3966 err = i40e_vsi_setup_rx_resources(vsi);
3967 if (err)
3968 goto err_setup_rx;
3969
3970 err = i40e_vsi_configure(vsi);
3971 if (err)
3972 goto err_setup_rx;
3973
3974 snprintf(int_name, sizeof(int_name) - 1, "%s-%s",
3975 dev_driver_string(&pf->pdev->dev), netdev->name);
3976 err = i40e_vsi_request_irq(vsi, int_name);
3977 if (err)
3978 goto err_setup_rx;
3979
Anjali Singhai Jain25946dd2013-11-26 10:49:14 +00003980 /* Notify the stack of the actual queue counts. */
Neerav Parikhd7397642013-11-28 06:39:37 +00003981 err = netif_set_real_num_tx_queues(netdev, vsi->num_queue_pairs);
Anjali Singhai Jain25946dd2013-11-26 10:49:14 +00003982 if (err)
3983 goto err_set_queues;
3984
Neerav Parikhd7397642013-11-28 06:39:37 +00003985 err = netif_set_real_num_rx_queues(netdev, vsi->num_queue_pairs);
Anjali Singhai Jain25946dd2013-11-26 10:49:14 +00003986 if (err)
3987 goto err_set_queues;
3988
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003989 err = i40e_up_complete(vsi);
3990 if (err)
3991 goto err_up_complete;
3992
Jeff Kirshera1c9a9d2013-12-28 07:32:18 +00003993#ifdef CONFIG_I40E_VXLAN
3994 vxlan_get_rx_port(netdev);
3995#endif
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00003996
3997 return 0;
3998
3999err_up_complete:
4000 i40e_down(vsi);
Anjali Singhai Jain25946dd2013-11-26 10:49:14 +00004001err_set_queues:
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004002 i40e_vsi_free_irq(vsi);
4003err_setup_rx:
4004 i40e_vsi_free_rx_resources(vsi);
4005err_setup_tx:
4006 i40e_vsi_free_tx_resources(vsi);
4007 if (vsi == pf->vsi[pf->lan_vsi])
4008 i40e_do_reset(pf, (1 << __I40E_PF_RESET_REQUESTED));
4009
4010 return err;
4011}
4012
4013/**
4014 * i40e_close - Disables a network interface
4015 * @netdev: network interface device structure
4016 *
4017 * The close entry point is called when an interface is de-activated
4018 * by the OS. The hardware is still under the driver's control, but
4019 * this netdev interface is disabled.
4020 *
4021 * Returns 0, this is not allowed to fail
4022 **/
4023static int i40e_close(struct net_device *netdev)
4024{
4025 struct i40e_netdev_priv *np = netdev_priv(netdev);
4026 struct i40e_vsi *vsi = np->vsi;
4027
4028 if (test_and_set_bit(__I40E_DOWN, &vsi->state))
4029 return 0;
4030
4031 i40e_down(vsi);
4032 i40e_vsi_free_irq(vsi);
4033
4034 i40e_vsi_free_tx_resources(vsi);
4035 i40e_vsi_free_rx_resources(vsi);
4036
4037 return 0;
4038}
4039
4040/**
4041 * i40e_do_reset - Start a PF or Core Reset sequence
4042 * @pf: board private structure
4043 * @reset_flags: which reset is requested
4044 *
4045 * The essential difference in resets is that the PF Reset
4046 * doesn't clear the packet buffers, doesn't reset the PE
4047 * firmware, and doesn't bother the other PFs on the chip.
4048 **/
4049void i40e_do_reset(struct i40e_pf *pf, u32 reset_flags)
4050{
4051 u32 val;
4052
4053 WARN_ON(in_interrupt());
4054
4055 /* do the biggest reset indicated */
4056 if (reset_flags & (1 << __I40E_GLOBAL_RESET_REQUESTED)) {
4057
4058 /* Request a Global Reset
4059 *
4060 * This will start the chip's countdown to the actual full
4061 * chip reset event, and a warning interrupt to be sent
4062 * to all PFs, including the requestor. Our handler
4063 * for the warning interrupt will deal with the shutdown
4064 * and recovery of the switch setup.
4065 */
4066 dev_info(&pf->pdev->dev, "GlobalR requested\n");
4067 val = rd32(&pf->hw, I40E_GLGEN_RTRIG);
4068 val |= I40E_GLGEN_RTRIG_GLOBR_MASK;
4069 wr32(&pf->hw, I40E_GLGEN_RTRIG, val);
4070
4071 } else if (reset_flags & (1 << __I40E_CORE_RESET_REQUESTED)) {
4072
4073 /* Request a Core Reset
4074 *
4075 * Same as Global Reset, except does *not* include the MAC/PHY
4076 */
4077 dev_info(&pf->pdev->dev, "CoreR requested\n");
4078 val = rd32(&pf->hw, I40E_GLGEN_RTRIG);
4079 val |= I40E_GLGEN_RTRIG_CORER_MASK;
4080 wr32(&pf->hw, I40E_GLGEN_RTRIG, val);
4081 i40e_flush(&pf->hw);
4082
Shannon Nelson7823fe32013-11-16 10:00:45 +00004083 } else if (reset_flags & (1 << __I40E_EMP_RESET_REQUESTED)) {
4084
4085 /* Request a Firmware Reset
4086 *
4087 * Same as Global reset, plus restarting the
4088 * embedded firmware engine.
4089 */
4090 /* enable EMP Reset */
4091 val = rd32(&pf->hw, I40E_GLGEN_RSTENA_EMP);
4092 val |= I40E_GLGEN_RSTENA_EMP_EMP_RST_ENA_MASK;
4093 wr32(&pf->hw, I40E_GLGEN_RSTENA_EMP, val);
4094
4095 /* force the reset */
4096 val = rd32(&pf->hw, I40E_GLGEN_RTRIG);
4097 val |= I40E_GLGEN_RTRIG_EMPFWR_MASK;
4098 wr32(&pf->hw, I40E_GLGEN_RTRIG, val);
4099 i40e_flush(&pf->hw);
4100
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004101 } else if (reset_flags & (1 << __I40E_PF_RESET_REQUESTED)) {
4102
4103 /* Request a PF Reset
4104 *
4105 * Resets only the PF-specific registers
4106 *
4107 * This goes directly to the tear-down and rebuild of
4108 * the switch, since we need to do all the recovery as
4109 * for the Core Reset.
4110 */
4111 dev_info(&pf->pdev->dev, "PFR requested\n");
4112 i40e_handle_reset_warning(pf);
4113
4114 } else if (reset_flags & (1 << __I40E_REINIT_REQUESTED)) {
4115 int v;
4116
4117 /* Find the VSI(s) that requested a re-init */
4118 dev_info(&pf->pdev->dev,
4119 "VSI reinit requested\n");
4120 for (v = 0; v < pf->hw.func_caps.num_vsis; v++) {
4121 struct i40e_vsi *vsi = pf->vsi[v];
4122 if (vsi != NULL &&
4123 test_bit(__I40E_REINIT_REQUESTED, &vsi->state)) {
4124 i40e_vsi_reinit_locked(pf->vsi[v]);
4125 clear_bit(__I40E_REINIT_REQUESTED, &vsi->state);
4126 }
4127 }
4128
4129 /* no further action needed, so return now */
4130 return;
4131 } else {
4132 dev_info(&pf->pdev->dev,
4133 "bad reset request 0x%08x\n", reset_flags);
4134 return;
4135 }
4136}
4137
4138/**
Anjali Singhai Jain23326182013-11-26 10:49:22 +00004139 * i40e_do_reset_safe - Protected reset path for userland calls.
4140 * @pf: board private structure
4141 * @reset_flags: which reset is requested
4142 *
4143 **/
4144void i40e_do_reset_safe(struct i40e_pf *pf, u32 reset_flags)
4145{
4146 rtnl_lock();
4147 i40e_do_reset(pf, reset_flags);
4148 rtnl_unlock();
4149}
4150
4151/**
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004152 * i40e_handle_lan_overflow_event - Handler for LAN queue overflow event
4153 * @pf: board private structure
4154 * @e: event info posted on ARQ
4155 *
4156 * Handler for LAN Queue Overflow Event generated by the firmware for PF
4157 * and VF queues
4158 **/
4159static void i40e_handle_lan_overflow_event(struct i40e_pf *pf,
4160 struct i40e_arq_event_info *e)
4161{
4162 struct i40e_aqc_lan_overflow *data =
4163 (struct i40e_aqc_lan_overflow *)&e->desc.params.raw;
4164 u32 queue = le32_to_cpu(data->prtdcb_rupto);
4165 u32 qtx_ctl = le32_to_cpu(data->otx_ctl);
4166 struct i40e_hw *hw = &pf->hw;
4167 struct i40e_vf *vf;
4168 u16 vf_id;
4169
4170 dev_info(&pf->pdev->dev, "%s: Rx Queue Number = %d QTX_CTL=0x%08x\n",
4171 __func__, queue, qtx_ctl);
4172
4173 /* Queue belongs to VF, find the VF and issue VF reset */
4174 if (((qtx_ctl & I40E_QTX_CTL_PFVF_Q_MASK)
4175 >> I40E_QTX_CTL_PFVF_Q_SHIFT) == I40E_QTX_CTL_VF_QUEUE) {
4176 vf_id = (u16)((qtx_ctl & I40E_QTX_CTL_VFVM_INDX_MASK)
4177 >> I40E_QTX_CTL_VFVM_INDX_SHIFT);
4178 vf_id -= hw->func_caps.vf_base_id;
4179 vf = &pf->vf[vf_id];
4180 i40e_vc_notify_vf_reset(vf);
4181 /* Allow VF to process pending reset notification */
4182 msleep(20);
4183 i40e_reset_vf(vf, false);
4184 }
4185}
4186
4187/**
4188 * i40e_service_event_complete - Finish up the service event
4189 * @pf: board private structure
4190 **/
4191static void i40e_service_event_complete(struct i40e_pf *pf)
4192{
4193 BUG_ON(!test_bit(__I40E_SERVICE_SCHED, &pf->state));
4194
4195 /* flush memory to make sure state is correct before next watchog */
4196 smp_mb__before_clear_bit();
4197 clear_bit(__I40E_SERVICE_SCHED, &pf->state);
4198}
4199
4200/**
4201 * i40e_fdir_reinit_subtask - Worker thread to reinit FDIR filter table
4202 * @pf: board private structure
4203 **/
4204static void i40e_fdir_reinit_subtask(struct i40e_pf *pf)
4205{
4206 if (!(pf->flags & I40E_FLAG_FDIR_REQUIRES_REINIT))
4207 return;
4208
4209 pf->flags &= ~I40E_FLAG_FDIR_REQUIRES_REINIT;
4210
4211 /* if interface is down do nothing */
4212 if (test_bit(__I40E_DOWN, &pf->state))
4213 return;
4214}
4215
4216/**
4217 * i40e_vsi_link_event - notify VSI of a link event
4218 * @vsi: vsi to be notified
4219 * @link_up: link up or down
4220 **/
4221static void i40e_vsi_link_event(struct i40e_vsi *vsi, bool link_up)
4222{
4223 if (!vsi)
4224 return;
4225
4226 switch (vsi->type) {
4227 case I40E_VSI_MAIN:
4228 if (!vsi->netdev || !vsi->netdev_registered)
4229 break;
4230
4231 if (link_up) {
4232 netif_carrier_on(vsi->netdev);
4233 netif_tx_wake_all_queues(vsi->netdev);
4234 } else {
4235 netif_carrier_off(vsi->netdev);
4236 netif_tx_stop_all_queues(vsi->netdev);
4237 }
4238 break;
4239
4240 case I40E_VSI_SRIOV:
4241 break;
4242
4243 case I40E_VSI_VMDQ2:
4244 case I40E_VSI_CTRL:
4245 case I40E_VSI_MIRROR:
4246 default:
4247 /* there is no notification for other VSIs */
4248 break;
4249 }
4250}
4251
4252/**
4253 * i40e_veb_link_event - notify elements on the veb of a link event
4254 * @veb: veb to be notified
4255 * @link_up: link up or down
4256 **/
4257static void i40e_veb_link_event(struct i40e_veb *veb, bool link_up)
4258{
4259 struct i40e_pf *pf;
4260 int i;
4261
4262 if (!veb || !veb->pf)
4263 return;
4264 pf = veb->pf;
4265
4266 /* depth first... */
4267 for (i = 0; i < I40E_MAX_VEB; i++)
4268 if (pf->veb[i] && (pf->veb[i]->uplink_seid == veb->seid))
4269 i40e_veb_link_event(pf->veb[i], link_up);
4270
4271 /* ... now the local VSIs */
4272 for (i = 0; i < pf->hw.func_caps.num_vsis; i++)
4273 if (pf->vsi[i] && (pf->vsi[i]->uplink_seid == veb->seid))
4274 i40e_vsi_link_event(pf->vsi[i], link_up);
4275}
4276
4277/**
4278 * i40e_link_event - Update netif_carrier status
4279 * @pf: board private structure
4280 **/
4281static void i40e_link_event(struct i40e_pf *pf)
4282{
4283 bool new_link, old_link;
4284
4285 new_link = (pf->hw.phy.link_info.link_info & I40E_AQ_LINK_UP);
4286 old_link = (pf->hw.phy.link_info_old.link_info & I40E_AQ_LINK_UP);
4287
4288 if (new_link == old_link)
4289 return;
4290
Anjali Singhai6d779b42013-09-28 06:00:02 +00004291 if (!test_bit(__I40E_DOWN, &pf->vsi[pf->lan_vsi]->state))
4292 netdev_info(pf->vsi[pf->lan_vsi]->netdev,
4293 "NIC Link is %s\n", (new_link ? "Up" : "Down"));
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004294
4295 /* Notify the base of the switch tree connected to
4296 * the link. Floating VEBs are not notified.
4297 */
4298 if (pf->lan_veb != I40E_NO_VEB && pf->veb[pf->lan_veb])
4299 i40e_veb_link_event(pf->veb[pf->lan_veb], new_link);
4300 else
4301 i40e_vsi_link_event(pf->vsi[pf->lan_vsi], new_link);
4302
4303 if (pf->vf)
4304 i40e_vc_notify_link_state(pf);
4305}
4306
4307/**
4308 * i40e_check_hang_subtask - Check for hung queues and dropped interrupts
4309 * @pf: board private structure
4310 *
4311 * Set the per-queue flags to request a check for stuck queues in the irq
4312 * clean functions, then force interrupts to be sure the irq clean is called.
4313 **/
4314static void i40e_check_hang_subtask(struct i40e_pf *pf)
4315{
4316 int i, v;
4317
4318 /* If we're down or resetting, just bail */
4319 if (test_bit(__I40E_CONFIG_BUSY, &pf->state))
4320 return;
4321
4322 /* for each VSI/netdev
4323 * for each Tx queue
4324 * set the check flag
4325 * for each q_vector
4326 * force an interrupt
4327 */
4328 for (v = 0; v < pf->hw.func_caps.num_vsis; v++) {
4329 struct i40e_vsi *vsi = pf->vsi[v];
4330 int armed = 0;
4331
4332 if (!pf->vsi[v] ||
4333 test_bit(__I40E_DOWN, &vsi->state) ||
4334 (vsi->netdev && !netif_carrier_ok(vsi->netdev)))
4335 continue;
4336
4337 for (i = 0; i < vsi->num_queue_pairs; i++) {
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00004338 set_check_for_tx_hang(vsi->tx_rings[i]);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004339 if (test_bit(__I40E_HANG_CHECK_ARMED,
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00004340 &vsi->tx_rings[i]->state))
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004341 armed++;
4342 }
4343
4344 if (armed) {
4345 if (!(pf->flags & I40E_FLAG_MSIX_ENABLED)) {
4346 wr32(&vsi->back->hw, I40E_PFINT_DYN_CTL0,
4347 (I40E_PFINT_DYN_CTL0_INTENA_MASK |
4348 I40E_PFINT_DYN_CTL0_SWINT_TRIG_MASK));
4349 } else {
4350 u16 vec = vsi->base_vector - 1;
4351 u32 val = (I40E_PFINT_DYN_CTLN_INTENA_MASK |
4352 I40E_PFINT_DYN_CTLN_SWINT_TRIG_MASK);
4353 for (i = 0; i < vsi->num_q_vectors; i++, vec++)
4354 wr32(&vsi->back->hw,
4355 I40E_PFINT_DYN_CTLN(vec), val);
4356 }
4357 i40e_flush(&vsi->back->hw);
4358 }
4359 }
4360}
4361
4362/**
4363 * i40e_watchdog_subtask - Check and bring link up
4364 * @pf: board private structure
4365 **/
4366static void i40e_watchdog_subtask(struct i40e_pf *pf)
4367{
4368 int i;
4369
4370 /* if interface is down do nothing */
4371 if (test_bit(__I40E_DOWN, &pf->state) ||
4372 test_bit(__I40E_CONFIG_BUSY, &pf->state))
4373 return;
4374
4375 /* Update the stats for active netdevs so the network stack
4376 * can look at updated numbers whenever it cares to
4377 */
4378 for (i = 0; i < pf->hw.func_caps.num_vsis; i++)
4379 if (pf->vsi[i] && pf->vsi[i]->netdev)
4380 i40e_update_stats(pf->vsi[i]);
4381
4382 /* Update the stats for the active switching components */
4383 for (i = 0; i < I40E_MAX_VEB; i++)
4384 if (pf->veb[i])
4385 i40e_update_veb_stats(pf->veb[i]);
4386}
4387
4388/**
4389 * i40e_reset_subtask - Set up for resetting the device and driver
4390 * @pf: board private structure
4391 **/
4392static void i40e_reset_subtask(struct i40e_pf *pf)
4393{
4394 u32 reset_flags = 0;
4395
Anjali Singhai Jain23326182013-11-26 10:49:22 +00004396 rtnl_lock();
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004397 if (test_bit(__I40E_REINIT_REQUESTED, &pf->state)) {
4398 reset_flags |= (1 << __I40E_REINIT_REQUESTED);
4399 clear_bit(__I40E_REINIT_REQUESTED, &pf->state);
4400 }
4401 if (test_bit(__I40E_PF_RESET_REQUESTED, &pf->state)) {
4402 reset_flags |= (1 << __I40E_PF_RESET_REQUESTED);
4403 clear_bit(__I40E_PF_RESET_REQUESTED, &pf->state);
4404 }
4405 if (test_bit(__I40E_CORE_RESET_REQUESTED, &pf->state)) {
4406 reset_flags |= (1 << __I40E_CORE_RESET_REQUESTED);
4407 clear_bit(__I40E_CORE_RESET_REQUESTED, &pf->state);
4408 }
4409 if (test_bit(__I40E_GLOBAL_RESET_REQUESTED, &pf->state)) {
4410 reset_flags |= (1 << __I40E_GLOBAL_RESET_REQUESTED);
4411 clear_bit(__I40E_GLOBAL_RESET_REQUESTED, &pf->state);
4412 }
4413
4414 /* If there's a recovery already waiting, it takes
4415 * precedence before starting a new reset sequence.
4416 */
4417 if (test_bit(__I40E_RESET_INTR_RECEIVED, &pf->state)) {
4418 i40e_handle_reset_warning(pf);
Anjali Singhai Jain23326182013-11-26 10:49:22 +00004419 goto unlock;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004420 }
4421
4422 /* If we're already down or resetting, just bail */
4423 if (reset_flags &&
4424 !test_bit(__I40E_DOWN, &pf->state) &&
4425 !test_bit(__I40E_CONFIG_BUSY, &pf->state))
4426 i40e_do_reset(pf, reset_flags);
Anjali Singhai Jain23326182013-11-26 10:49:22 +00004427
4428unlock:
4429 rtnl_unlock();
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004430}
4431
4432/**
4433 * i40e_handle_link_event - Handle link event
4434 * @pf: board private structure
4435 * @e: event info posted on ARQ
4436 **/
4437static void i40e_handle_link_event(struct i40e_pf *pf,
4438 struct i40e_arq_event_info *e)
4439{
4440 struct i40e_hw *hw = &pf->hw;
4441 struct i40e_aqc_get_link_status *status =
4442 (struct i40e_aqc_get_link_status *)&e->desc.params.raw;
4443 struct i40e_link_status *hw_link_info = &hw->phy.link_info;
4444
4445 /* save off old link status information */
4446 memcpy(&pf->hw.phy.link_info_old, hw_link_info,
4447 sizeof(pf->hw.phy.link_info_old));
4448
4449 /* update link status */
4450 hw_link_info->phy_type = (enum i40e_aq_phy_type)status->phy_type;
4451 hw_link_info->link_speed = (enum i40e_aq_link_speed)status->link_speed;
4452 hw_link_info->link_info = status->link_info;
4453 hw_link_info->an_info = status->an_info;
4454 hw_link_info->ext_info = status->ext_info;
4455 hw_link_info->lse_enable =
4456 le16_to_cpu(status->command_flags) &
4457 I40E_AQ_LSE_ENABLE;
4458
4459 /* process the event */
4460 i40e_link_event(pf);
4461
4462 /* Do a new status request to re-enable LSE reporting
4463 * and load new status information into the hw struct,
4464 * then see if the status changed while processing the
4465 * initial event.
4466 */
4467 i40e_aq_get_link_info(&pf->hw, true, NULL, NULL);
4468 i40e_link_event(pf);
4469}
4470
4471/**
4472 * i40e_clean_adminq_subtask - Clean the AdminQ rings
4473 * @pf: board private structure
4474 **/
4475static void i40e_clean_adminq_subtask(struct i40e_pf *pf)
4476{
4477 struct i40e_arq_event_info event;
4478 struct i40e_hw *hw = &pf->hw;
4479 u16 pending, i = 0;
4480 i40e_status ret;
4481 u16 opcode;
4482 u32 val;
4483
4484 if (!test_bit(__I40E_ADMINQ_EVENT_PENDING, &pf->state))
4485 return;
4486
Mitch Williams3197ce22013-11-28 06:39:39 +00004487 event.msg_size = I40E_MAX_AQ_BUF_SIZE;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004488 event.msg_buf = kzalloc(event.msg_size, GFP_KERNEL);
4489 if (!event.msg_buf)
4490 return;
4491
4492 do {
Mitch Williams2f019122013-11-28 06:39:33 +00004493 event.msg_size = I40E_MAX_AQ_BUF_SIZE; /* reinit each time */
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004494 ret = i40e_clean_arq_element(hw, &event, &pending);
4495 if (ret == I40E_ERR_ADMIN_QUEUE_NO_WORK) {
4496 dev_info(&pf->pdev->dev, "No ARQ event found\n");
4497 break;
4498 } else if (ret) {
4499 dev_info(&pf->pdev->dev, "ARQ event error %d\n", ret);
4500 break;
4501 }
4502
4503 opcode = le16_to_cpu(event.desc.opcode);
4504 switch (opcode) {
4505
4506 case i40e_aqc_opc_get_link_status:
4507 i40e_handle_link_event(pf, &event);
4508 break;
4509 case i40e_aqc_opc_send_msg_to_pf:
4510 ret = i40e_vc_process_vf_msg(pf,
4511 le16_to_cpu(event.desc.retval),
4512 le32_to_cpu(event.desc.cookie_high),
4513 le32_to_cpu(event.desc.cookie_low),
4514 event.msg_buf,
4515 event.msg_size);
4516 break;
4517 case i40e_aqc_opc_lldp_update_mib:
4518 dev_info(&pf->pdev->dev, "ARQ: Update LLDP MIB event received\n");
4519 break;
4520 case i40e_aqc_opc_event_lan_overflow:
4521 dev_info(&pf->pdev->dev, "ARQ LAN queue overflow event received\n");
4522 i40e_handle_lan_overflow_event(pf, &event);
4523 break;
Shannon Nelson0467bc92013-12-18 13:45:58 +00004524 case i40e_aqc_opc_send_msg_to_peer:
4525 dev_info(&pf->pdev->dev, "ARQ: Msg from other pf\n");
4526 break;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004527 default:
4528 dev_info(&pf->pdev->dev,
Shannon Nelson0467bc92013-12-18 13:45:58 +00004529 "ARQ Error: Unknown event 0x%04x received\n",
4530 opcode);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004531 break;
4532 }
4533 } while (pending && (i++ < pf->adminq_work_limit));
4534
4535 clear_bit(__I40E_ADMINQ_EVENT_PENDING, &pf->state);
4536 /* re-enable Admin queue interrupt cause */
4537 val = rd32(hw, I40E_PFINT_ICR0_ENA);
4538 val |= I40E_PFINT_ICR0_ENA_ADMINQ_MASK;
4539 wr32(hw, I40E_PFINT_ICR0_ENA, val);
4540 i40e_flush(hw);
4541
4542 kfree(event.msg_buf);
4543}
4544
4545/**
4546 * i40e_reconstitute_veb - rebuild the VEB and anything connected to it
4547 * @veb: pointer to the VEB instance
4548 *
4549 * This is a recursive function that first builds the attached VSIs then
4550 * recurses in to build the next layer of VEB. We track the connections
4551 * through our own index numbers because the seid's from the HW could
4552 * change across the reset.
4553 **/
4554static int i40e_reconstitute_veb(struct i40e_veb *veb)
4555{
4556 struct i40e_vsi *ctl_vsi = NULL;
4557 struct i40e_pf *pf = veb->pf;
4558 int v, veb_idx;
4559 int ret;
4560
4561 /* build VSI that owns this VEB, temporarily attached to base VEB */
4562 for (v = 0; v < pf->hw.func_caps.num_vsis && !ctl_vsi; v++) {
4563 if (pf->vsi[v] &&
4564 pf->vsi[v]->veb_idx == veb->idx &&
4565 pf->vsi[v]->flags & I40E_VSI_FLAG_VEB_OWNER) {
4566 ctl_vsi = pf->vsi[v];
4567 break;
4568 }
4569 }
4570 if (!ctl_vsi) {
4571 dev_info(&pf->pdev->dev,
4572 "missing owner VSI for veb_idx %d\n", veb->idx);
4573 ret = -ENOENT;
4574 goto end_reconstitute;
4575 }
4576 if (ctl_vsi != pf->vsi[pf->lan_vsi])
4577 ctl_vsi->uplink_seid = pf->vsi[pf->lan_vsi]->uplink_seid;
4578 ret = i40e_add_vsi(ctl_vsi);
4579 if (ret) {
4580 dev_info(&pf->pdev->dev,
4581 "rebuild of owner VSI failed: %d\n", ret);
4582 goto end_reconstitute;
4583 }
4584 i40e_vsi_reset_stats(ctl_vsi);
4585
4586 /* create the VEB in the switch and move the VSI onto the VEB */
4587 ret = i40e_add_veb(veb, ctl_vsi);
4588 if (ret)
4589 goto end_reconstitute;
4590
4591 /* create the remaining VSIs attached to this VEB */
4592 for (v = 0; v < pf->hw.func_caps.num_vsis; v++) {
4593 if (!pf->vsi[v] || pf->vsi[v] == ctl_vsi)
4594 continue;
4595
4596 if (pf->vsi[v]->veb_idx == veb->idx) {
4597 struct i40e_vsi *vsi = pf->vsi[v];
4598 vsi->uplink_seid = veb->seid;
4599 ret = i40e_add_vsi(vsi);
4600 if (ret) {
4601 dev_info(&pf->pdev->dev,
4602 "rebuild of vsi_idx %d failed: %d\n",
4603 v, ret);
4604 goto end_reconstitute;
4605 }
4606 i40e_vsi_reset_stats(vsi);
4607 }
4608 }
4609
4610 /* create any VEBs attached to this VEB - RECURSION */
4611 for (veb_idx = 0; veb_idx < I40E_MAX_VEB; veb_idx++) {
4612 if (pf->veb[veb_idx] && pf->veb[veb_idx]->veb_idx == veb->idx) {
4613 pf->veb[veb_idx]->uplink_seid = veb->seid;
4614 ret = i40e_reconstitute_veb(pf->veb[veb_idx]);
4615 if (ret)
4616 break;
4617 }
4618 }
4619
4620end_reconstitute:
4621 return ret;
4622}
4623
4624/**
4625 * i40e_get_capabilities - get info about the HW
4626 * @pf: the PF struct
4627 **/
4628static int i40e_get_capabilities(struct i40e_pf *pf)
4629{
4630 struct i40e_aqc_list_capabilities_element_resp *cap_buf;
4631 u16 data_size;
4632 int buf_len;
4633 int err;
4634
4635 buf_len = 40 * sizeof(struct i40e_aqc_list_capabilities_element_resp);
4636 do {
4637 cap_buf = kzalloc(buf_len, GFP_KERNEL);
4638 if (!cap_buf)
4639 return -ENOMEM;
4640
4641 /* this loads the data into the hw struct for us */
4642 err = i40e_aq_discover_capabilities(&pf->hw, cap_buf, buf_len,
4643 &data_size,
4644 i40e_aqc_opc_list_func_capabilities,
4645 NULL);
4646 /* data loaded, buffer no longer needed */
4647 kfree(cap_buf);
4648
4649 if (pf->hw.aq.asq_last_status == I40E_AQ_RC_ENOMEM) {
4650 /* retry with a larger buffer */
4651 buf_len = data_size;
4652 } else if (pf->hw.aq.asq_last_status != I40E_AQ_RC_OK) {
4653 dev_info(&pf->pdev->dev,
4654 "capability discovery failed: aq=%d\n",
4655 pf->hw.aq.asq_last_status);
4656 return -ENODEV;
4657 }
4658 } while (err);
4659
Catherine Sullivan2050bc62013-12-18 13:46:03 +00004660 if (pf->hw.revision_id == 0 && (pf->flags & I40E_FLAG_MFP_ENABLED)) {
Jesse Brandeburg7134f9c2013-11-26 08:56:05 +00004661 pf->hw.func_caps.num_msix_vectors += 1;
4662 pf->hw.func_caps.num_tx_qp =
4663 min_t(int, pf->hw.func_caps.num_tx_qp,
4664 I40E_MAX_NPAR_QPS);
4665 }
4666
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004667 if (pf->hw.debug_mask & I40E_DEBUG_USER)
4668 dev_info(&pf->pdev->dev,
4669 "pf=%d, num_vfs=%d, msix_pf=%d, msix_vf=%d, fd_g=%d, fd_b=%d, pf_max_q=%d num_vsi=%d\n",
4670 pf->hw.pf_id, pf->hw.func_caps.num_vfs,
4671 pf->hw.func_caps.num_msix_vectors,
4672 pf->hw.func_caps.num_msix_vectors_vf,
4673 pf->hw.func_caps.fd_filters_guaranteed,
4674 pf->hw.func_caps.fd_filters_best_effort,
4675 pf->hw.func_caps.num_tx_qp,
4676 pf->hw.func_caps.num_vsis);
4677
Jesse Brandeburg7134f9c2013-11-26 08:56:05 +00004678#define DEF_NUM_VSI (1 + (pf->hw.func_caps.fcoe ? 1 : 0) \
4679 + pf->hw.func_caps.num_vfs)
4680 if (pf->hw.revision_id == 0 && (DEF_NUM_VSI > pf->hw.func_caps.num_vsis)) {
4681 dev_info(&pf->pdev->dev,
4682 "got num_vsis %d, setting num_vsis to %d\n",
4683 pf->hw.func_caps.num_vsis, DEF_NUM_VSI);
4684 pf->hw.func_caps.num_vsis = DEF_NUM_VSI;
4685 }
4686
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004687 return 0;
4688}
4689
4690/**
4691 * i40e_fdir_setup - initialize the Flow Director resources
4692 * @pf: board private structure
4693 **/
4694static void i40e_fdir_setup(struct i40e_pf *pf)
4695{
4696 struct i40e_vsi *vsi;
4697 bool new_vsi = false;
4698 int err, i;
4699
Shannon Nelson958a3e32013-09-28 07:13:28 +00004700 if (!(pf->flags & (I40E_FLAG_FDIR_ENABLED |
4701 I40E_FLAG_FDIR_ATR_ENABLED)))
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004702 return;
4703
4704 pf->atr_sample_rate = I40E_DEFAULT_ATR_SAMPLE_RATE;
4705
4706 /* find existing or make new FDIR VSI */
4707 vsi = NULL;
4708 for (i = 0; i < pf->hw.func_caps.num_vsis; i++)
4709 if (pf->vsi[i] && pf->vsi[i]->type == I40E_VSI_FDIR)
4710 vsi = pf->vsi[i];
4711 if (!vsi) {
4712 vsi = i40e_vsi_setup(pf, I40E_VSI_FDIR, pf->mac_seid, 0);
4713 if (!vsi) {
4714 dev_info(&pf->pdev->dev, "Couldn't create FDir VSI\n");
4715 pf->flags &= ~I40E_FLAG_FDIR_ENABLED;
4716 return;
4717 }
4718 new_vsi = true;
4719 }
4720 WARN_ON(vsi->base_queue != I40E_FDIR_RING);
4721 i40e_vsi_setup_irqhandler(vsi, i40e_fdir_clean_rings);
4722
4723 err = i40e_vsi_setup_tx_resources(vsi);
4724 if (!err)
4725 err = i40e_vsi_setup_rx_resources(vsi);
4726 if (!err)
4727 err = i40e_vsi_configure(vsi);
4728 if (!err && new_vsi) {
4729 char int_name[IFNAMSIZ + 9];
4730 snprintf(int_name, sizeof(int_name) - 1, "%s-fdir",
4731 dev_driver_string(&pf->pdev->dev));
4732 err = i40e_vsi_request_irq(vsi, int_name);
4733 }
4734 if (!err)
4735 err = i40e_up_complete(vsi);
4736
4737 clear_bit(__I40E_NEEDS_RESTART, &vsi->state);
4738}
4739
4740/**
4741 * i40e_fdir_teardown - release the Flow Director resources
4742 * @pf: board private structure
4743 **/
4744static void i40e_fdir_teardown(struct i40e_pf *pf)
4745{
4746 int i;
4747
4748 for (i = 0; i < pf->hw.func_caps.num_vsis; i++) {
4749 if (pf->vsi[i] && pf->vsi[i]->type == I40E_VSI_FDIR) {
4750 i40e_vsi_release(pf->vsi[i]);
4751 break;
4752 }
4753 }
4754}
4755
4756/**
Anjali Singhai Jainf650a382013-11-20 10:02:55 +00004757 * i40e_prep_for_reset - prep for the core to reset
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004758 * @pf: board private structure
4759 *
Anjali Singhai Jainf650a382013-11-20 10:02:55 +00004760 * Close up the VFs and other things in prep for pf Reset.
4761 **/
4762static int i40e_prep_for_reset(struct i40e_pf *pf)
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004763{
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004764 struct i40e_hw *hw = &pf->hw;
4765 i40e_status ret;
4766 u32 v;
4767
4768 clear_bit(__I40E_RESET_INTR_RECEIVED, &pf->state);
4769 if (test_and_set_bit(__I40E_RESET_RECOVERY_PENDING, &pf->state))
Anjali Singhai Jainf650a382013-11-20 10:02:55 +00004770 return 0;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004771
4772 dev_info(&pf->pdev->dev, "Tearing down internal switch for reset\n");
4773
Anjali Singhai Jain37f0be62013-11-28 06:39:46 +00004774 if (i40e_check_asq_alive(hw))
4775 i40e_vc_notify_reset(pf);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004776
4777 /* quiesce the VSIs and their queues that are not already DOWN */
4778 i40e_pf_quiesce_all_vsi(pf);
4779
4780 for (v = 0; v < pf->hw.func_caps.num_vsis; v++) {
4781 if (pf->vsi[v])
4782 pf->vsi[v]->seid = 0;
4783 }
4784
4785 i40e_shutdown_adminq(&pf->hw);
4786
Anjali Singhai Jainf650a382013-11-20 10:02:55 +00004787 /* call shutdown HMC */
4788 ret = i40e_shutdown_lan_hmc(hw);
4789 if (ret) {
4790 dev_info(&pf->pdev->dev, "shutdown_lan_hmc failed: %d\n", ret);
4791 clear_bit(__I40E_RESET_RECOVERY_PENDING, &pf->state);
4792 }
4793 return ret;
4794}
4795
4796/**
Jesse Brandeburg4dda12e2013-12-18 13:46:01 +00004797 * i40e_reset_and_rebuild - reset and rebuild using a saved config
Anjali Singhai Jainf650a382013-11-20 10:02:55 +00004798 * @pf: board private structure
Anjali Singhai Jainbc7d3382013-11-26 10:49:18 +00004799 * @reinit: if the Main VSI needs to re-initialized.
Anjali Singhai Jainf650a382013-11-20 10:02:55 +00004800 **/
Anjali Singhai Jainbc7d3382013-11-26 10:49:18 +00004801static void i40e_reset_and_rebuild(struct i40e_pf *pf, bool reinit)
Anjali Singhai Jainf650a382013-11-20 10:02:55 +00004802{
4803 struct i40e_driver_version dv;
4804 struct i40e_hw *hw = &pf->hw;
4805 i40e_status ret;
4806 u32 v;
4807
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004808 /* Now we wait for GRST to settle out.
4809 * We don't have to delete the VEBs or VSIs from the hw switch
4810 * because the reset will make them disappear.
4811 */
4812 ret = i40e_pf_reset(hw);
4813 if (ret)
4814 dev_info(&pf->pdev->dev, "PF reset failed, %d\n", ret);
4815 pf->pfr_count++;
4816
4817 if (test_bit(__I40E_DOWN, &pf->state))
4818 goto end_core_reset;
4819 dev_info(&pf->pdev->dev, "Rebuilding internal switch\n");
4820
4821 /* rebuild the basics for the AdminQ, HMC, and initial HW switch */
4822 ret = i40e_init_adminq(&pf->hw);
4823 if (ret) {
4824 dev_info(&pf->pdev->dev, "Rebuild AdminQ failed, %d\n", ret);
4825 goto end_core_reset;
4826 }
4827
4828 ret = i40e_get_capabilities(pf);
4829 if (ret) {
4830 dev_info(&pf->pdev->dev, "i40e_get_capabilities failed, %d\n",
4831 ret);
4832 goto end_core_reset;
4833 }
4834
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004835 ret = i40e_init_lan_hmc(hw, hw->func_caps.num_tx_qp,
4836 hw->func_caps.num_rx_qp,
4837 pf->fcoe_hmc_cntx_num, pf->fcoe_hmc_filt_num);
4838 if (ret) {
4839 dev_info(&pf->pdev->dev, "init_lan_hmc failed: %d\n", ret);
4840 goto end_core_reset;
4841 }
4842 ret = i40e_configure_lan_hmc(hw, I40E_HMC_MODEL_DIRECT_ONLY);
4843 if (ret) {
4844 dev_info(&pf->pdev->dev, "configure_lan_hmc failed: %d\n", ret);
4845 goto end_core_reset;
4846 }
4847
4848 /* do basic switch setup */
Anjali Singhai Jainbc7d3382013-11-26 10:49:18 +00004849 ret = i40e_setup_pf_switch(pf, reinit);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004850 if (ret)
4851 goto end_core_reset;
4852
4853 /* Rebuild the VSIs and VEBs that existed before reset.
4854 * They are still in our local switch element arrays, so only
4855 * need to rebuild the switch model in the HW.
4856 *
4857 * If there were VEBs but the reconstitution failed, we'll try
4858 * try to recover minimal use by getting the basic PF VSI working.
4859 */
4860 if (pf->vsi[pf->lan_vsi]->uplink_seid != pf->mac_seid) {
4861 dev_info(&pf->pdev->dev, "attempting to rebuild switch\n");
4862 /* find the one VEB connected to the MAC, and find orphans */
4863 for (v = 0; v < I40E_MAX_VEB; v++) {
4864 if (!pf->veb[v])
4865 continue;
4866
4867 if (pf->veb[v]->uplink_seid == pf->mac_seid ||
4868 pf->veb[v]->uplink_seid == 0) {
4869 ret = i40e_reconstitute_veb(pf->veb[v]);
4870
4871 if (!ret)
4872 continue;
4873
4874 /* If Main VEB failed, we're in deep doodoo,
4875 * so give up rebuilding the switch and set up
4876 * for minimal rebuild of PF VSI.
4877 * If orphan failed, we'll report the error
4878 * but try to keep going.
4879 */
4880 if (pf->veb[v]->uplink_seid == pf->mac_seid) {
4881 dev_info(&pf->pdev->dev,
4882 "rebuild of switch failed: %d, will try to set up simple PF connection\n",
4883 ret);
4884 pf->vsi[pf->lan_vsi]->uplink_seid
4885 = pf->mac_seid;
4886 break;
4887 } else if (pf->veb[v]->uplink_seid == 0) {
4888 dev_info(&pf->pdev->dev,
4889 "rebuild of orphan VEB failed: %d\n",
4890 ret);
4891 }
4892 }
4893 }
4894 }
4895
4896 if (pf->vsi[pf->lan_vsi]->uplink_seid == pf->mac_seid) {
4897 dev_info(&pf->pdev->dev, "attempting to rebuild PF VSI\n");
4898 /* no VEB, so rebuild only the Main VSI */
4899 ret = i40e_add_vsi(pf->vsi[pf->lan_vsi]);
4900 if (ret) {
4901 dev_info(&pf->pdev->dev,
4902 "rebuild of Main VSI failed: %d\n", ret);
4903 goto end_core_reset;
4904 }
4905 }
4906
4907 /* reinit the misc interrupt */
4908 if (pf->flags & I40E_FLAG_MSIX_ENABLED)
4909 ret = i40e_setup_misc_vector(pf);
4910
4911 /* restart the VSIs that were rebuilt and running before the reset */
4912 i40e_pf_unquiesce_all_vsi(pf);
4913
4914 /* tell the firmware that we're starting */
4915 dv.major_version = DRV_VERSION_MAJOR;
4916 dv.minor_version = DRV_VERSION_MINOR;
4917 dv.build_version = DRV_VERSION_BUILD;
4918 dv.subbuild_version = 0;
4919 i40e_aq_send_driver_version(&pf->hw, &dv, NULL);
4920
4921 dev_info(&pf->pdev->dev, "PF reset done\n");
4922
4923end_core_reset:
4924 clear_bit(__I40E_RESET_RECOVERY_PENDING, &pf->state);
4925}
4926
4927/**
Anjali Singhai Jainf650a382013-11-20 10:02:55 +00004928 * i40e_handle_reset_warning - prep for the pf to reset, reset and rebuild
4929 * @pf: board private structure
4930 *
4931 * Close up the VFs and other things in prep for a Core Reset,
4932 * then get ready to rebuild the world.
4933 **/
4934static void i40e_handle_reset_warning(struct i40e_pf *pf)
4935{
4936 i40e_status ret;
4937
4938 ret = i40e_prep_for_reset(pf);
4939 if (!ret)
Anjali Singhai Jainbc7d3382013-11-26 10:49:18 +00004940 i40e_reset_and_rebuild(pf, false);
Anjali Singhai Jainf650a382013-11-20 10:02:55 +00004941}
4942
4943/**
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00004944 * i40e_handle_mdd_event
4945 * @pf: pointer to the pf structure
4946 *
4947 * Called from the MDD irq handler to identify possibly malicious vfs
4948 **/
4949static void i40e_handle_mdd_event(struct i40e_pf *pf)
4950{
4951 struct i40e_hw *hw = &pf->hw;
4952 bool mdd_detected = false;
4953 struct i40e_vf *vf;
4954 u32 reg;
4955 int i;
4956
4957 if (!test_bit(__I40E_MDD_EVENT_PENDING, &pf->state))
4958 return;
4959
4960 /* find what triggered the MDD event */
4961 reg = rd32(hw, I40E_GL_MDET_TX);
4962 if (reg & I40E_GL_MDET_TX_VALID_MASK) {
4963 u8 func = (reg & I40E_GL_MDET_TX_FUNCTION_MASK)
4964 >> I40E_GL_MDET_TX_FUNCTION_SHIFT;
4965 u8 event = (reg & I40E_GL_MDET_TX_EVENT_SHIFT)
4966 >> I40E_GL_MDET_TX_EVENT_SHIFT;
4967 u8 queue = (reg & I40E_GL_MDET_TX_QUEUE_MASK)
4968 >> I40E_GL_MDET_TX_QUEUE_SHIFT;
4969 dev_info(&pf->pdev->dev,
4970 "Malicious Driver Detection TX event 0x%02x on q %d of function 0x%02x\n",
4971 event, queue, func);
4972 wr32(hw, I40E_GL_MDET_TX, 0xffffffff);
4973 mdd_detected = true;
4974 }
4975 reg = rd32(hw, I40E_GL_MDET_RX);
4976 if (reg & I40E_GL_MDET_RX_VALID_MASK) {
4977 u8 func = (reg & I40E_GL_MDET_RX_FUNCTION_MASK)
4978 >> I40E_GL_MDET_RX_FUNCTION_SHIFT;
4979 u8 event = (reg & I40E_GL_MDET_RX_EVENT_SHIFT)
4980 >> I40E_GL_MDET_RX_EVENT_SHIFT;
4981 u8 queue = (reg & I40E_GL_MDET_RX_QUEUE_MASK)
4982 >> I40E_GL_MDET_RX_QUEUE_SHIFT;
4983 dev_info(&pf->pdev->dev,
4984 "Malicious Driver Detection RX event 0x%02x on q %d of function 0x%02x\n",
4985 event, queue, func);
4986 wr32(hw, I40E_GL_MDET_RX, 0xffffffff);
4987 mdd_detected = true;
4988 }
4989
4990 /* see if one of the VFs needs its hand slapped */
4991 for (i = 0; i < pf->num_alloc_vfs && mdd_detected; i++) {
4992 vf = &(pf->vf[i]);
4993 reg = rd32(hw, I40E_VP_MDET_TX(i));
4994 if (reg & I40E_VP_MDET_TX_VALID_MASK) {
4995 wr32(hw, I40E_VP_MDET_TX(i), 0xFFFF);
4996 vf->num_mdd_events++;
4997 dev_info(&pf->pdev->dev, "MDD TX event on VF %d\n", i);
4998 }
4999
5000 reg = rd32(hw, I40E_VP_MDET_RX(i));
5001 if (reg & I40E_VP_MDET_RX_VALID_MASK) {
5002 wr32(hw, I40E_VP_MDET_RX(i), 0xFFFF);
5003 vf->num_mdd_events++;
5004 dev_info(&pf->pdev->dev, "MDD RX event on VF %d\n", i);
5005 }
5006
5007 if (vf->num_mdd_events > I40E_DEFAULT_NUM_MDD_EVENTS_ALLOWED) {
5008 dev_info(&pf->pdev->dev,
5009 "Too many MDD events on VF %d, disabled\n", i);
5010 dev_info(&pf->pdev->dev,
5011 "Use PF Control I/F to re-enable the VF\n");
5012 set_bit(I40E_VF_STAT_DISABLED, &vf->vf_states);
5013 }
5014 }
5015
5016 /* re-enable mdd interrupt cause */
5017 clear_bit(__I40E_MDD_EVENT_PENDING, &pf->state);
5018 reg = rd32(hw, I40E_PFINT_ICR0_ENA);
5019 reg |= I40E_PFINT_ICR0_ENA_MAL_DETECT_MASK;
5020 wr32(hw, I40E_PFINT_ICR0_ENA, reg);
5021 i40e_flush(hw);
5022}
5023
Jeff Kirshera1c9a9d2013-12-28 07:32:18 +00005024#ifdef CONFIG_I40E_VXLAN
5025/**
5026 * i40e_sync_vxlan_filters_subtask - Sync the VSI filter list with HW
5027 * @pf: board private structure
5028 **/
5029static void i40e_sync_vxlan_filters_subtask(struct i40e_pf *pf)
5030{
5031 const int vxlan_hdr_qwords = 4;
5032 struct i40e_hw *hw = &pf->hw;
5033 i40e_status ret;
5034 u8 filter_index;
5035 __be16 port;
5036 int i;
5037
5038 if (!(pf->flags & I40E_FLAG_VXLAN_FILTER_SYNC))
5039 return;
5040
5041 pf->flags &= ~I40E_FLAG_VXLAN_FILTER_SYNC;
5042
5043 for (i = 0; i < I40E_MAX_PF_UDP_OFFLOAD_PORTS; i++) {
5044 if (pf->pending_vxlan_bitmap & (1 << i)) {
5045 pf->pending_vxlan_bitmap &= ~(1 << i);
5046 port = pf->vxlan_ports[i];
5047 ret = port ?
5048 i40e_aq_add_udp_tunnel(hw, ntohs(port),
5049 vxlan_hdr_qwords,
5050 I40E_AQC_TUNNEL_TYPE_VXLAN,
5051 &filter_index, NULL)
5052 : i40e_aq_del_udp_tunnel(hw, i, NULL);
5053
5054 if (ret) {
5055 dev_info(&pf->pdev->dev, "Failed to execute AQ command for %s port %d with index %d\n",
5056 port ? "adding" : "deleting",
5057 ntohs(port), port ? i : i);
5058
5059 pf->vxlan_ports[i] = 0;
5060 } else {
5061 dev_info(&pf->pdev->dev, "%s port %d with AQ command with index %d\n",
5062 port ? "Added" : "Deleted",
5063 ntohs(port), port ? i : filter_index);
5064 }
5065 }
5066 }
5067}
5068
5069#endif
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005070/**
5071 * i40e_service_task - Run the driver's async subtasks
5072 * @work: pointer to work_struct containing our data
5073 **/
5074static void i40e_service_task(struct work_struct *work)
5075{
5076 struct i40e_pf *pf = container_of(work,
5077 struct i40e_pf,
5078 service_task);
5079 unsigned long start_time = jiffies;
5080
5081 i40e_reset_subtask(pf);
5082 i40e_handle_mdd_event(pf);
5083 i40e_vc_process_vflr_event(pf);
5084 i40e_watchdog_subtask(pf);
5085 i40e_fdir_reinit_subtask(pf);
5086 i40e_check_hang_subtask(pf);
5087 i40e_sync_filters_subtask(pf);
Jeff Kirshera1c9a9d2013-12-28 07:32:18 +00005088#ifdef CONFIG_I40E_VXLAN
5089 i40e_sync_vxlan_filters_subtask(pf);
5090#endif
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005091 i40e_clean_adminq_subtask(pf);
5092
5093 i40e_service_event_complete(pf);
5094
5095 /* If the tasks have taken longer than one timer cycle or there
5096 * is more work to be done, reschedule the service task now
5097 * rather than wait for the timer to tick again.
5098 */
5099 if (time_after(jiffies, (start_time + pf->service_timer_period)) ||
5100 test_bit(__I40E_ADMINQ_EVENT_PENDING, &pf->state) ||
5101 test_bit(__I40E_MDD_EVENT_PENDING, &pf->state) ||
5102 test_bit(__I40E_VFLR_EVENT_PENDING, &pf->state))
5103 i40e_service_event_schedule(pf);
5104}
5105
5106/**
5107 * i40e_service_timer - timer callback
5108 * @data: pointer to PF struct
5109 **/
5110static void i40e_service_timer(unsigned long data)
5111{
5112 struct i40e_pf *pf = (struct i40e_pf *)data;
5113
5114 mod_timer(&pf->service_timer,
5115 round_jiffies(jiffies + pf->service_timer_period));
5116 i40e_service_event_schedule(pf);
5117}
5118
5119/**
5120 * i40e_set_num_rings_in_vsi - Determine number of rings in the VSI
5121 * @vsi: the VSI being configured
5122 **/
5123static int i40e_set_num_rings_in_vsi(struct i40e_vsi *vsi)
5124{
5125 struct i40e_pf *pf = vsi->back;
5126
5127 switch (vsi->type) {
5128 case I40E_VSI_MAIN:
5129 vsi->alloc_queue_pairs = pf->num_lan_qps;
5130 vsi->num_desc = ALIGN(I40E_DEFAULT_NUM_DESCRIPTORS,
5131 I40E_REQ_DESCRIPTOR_MULTIPLE);
5132 if (pf->flags & I40E_FLAG_MSIX_ENABLED)
5133 vsi->num_q_vectors = pf->num_lan_msix;
5134 else
5135 vsi->num_q_vectors = 1;
5136
5137 break;
5138
5139 case I40E_VSI_FDIR:
5140 vsi->alloc_queue_pairs = 1;
5141 vsi->num_desc = ALIGN(I40E_FDIR_RING_COUNT,
5142 I40E_REQ_DESCRIPTOR_MULTIPLE);
5143 vsi->num_q_vectors = 1;
5144 break;
5145
5146 case I40E_VSI_VMDQ2:
5147 vsi->alloc_queue_pairs = pf->num_vmdq_qps;
5148 vsi->num_desc = ALIGN(I40E_DEFAULT_NUM_DESCRIPTORS,
5149 I40E_REQ_DESCRIPTOR_MULTIPLE);
5150 vsi->num_q_vectors = pf->num_vmdq_msix;
5151 break;
5152
5153 case I40E_VSI_SRIOV:
5154 vsi->alloc_queue_pairs = pf->num_vf_qps;
5155 vsi->num_desc = ALIGN(I40E_DEFAULT_NUM_DESCRIPTORS,
5156 I40E_REQ_DESCRIPTOR_MULTIPLE);
5157 break;
5158
5159 default:
5160 WARN_ON(1);
5161 return -ENODATA;
5162 }
5163
5164 return 0;
5165}
5166
5167/**
Anjali Singhai Jainf650a382013-11-20 10:02:55 +00005168 * i40e_vsi_alloc_arrays - Allocate queue and vector pointer arrays for the vsi
5169 * @type: VSI pointer
Anjali Singhai Jainbc7d3382013-11-26 10:49:18 +00005170 * @alloc_qvectors: a bool to specify if q_vectors need to be allocated.
Anjali Singhai Jainf650a382013-11-20 10:02:55 +00005171 *
5172 * On error: returns error code (negative)
5173 * On success: returns 0
5174 **/
Anjali Singhai Jainbc7d3382013-11-26 10:49:18 +00005175static int i40e_vsi_alloc_arrays(struct i40e_vsi *vsi, bool alloc_qvectors)
Anjali Singhai Jainf650a382013-11-20 10:02:55 +00005176{
5177 int size;
5178 int ret = 0;
5179
Shannon Nelsonac6c5e32013-11-20 10:02:57 +00005180 /* allocate memory for both Tx and Rx ring pointers */
Anjali Singhai Jainf650a382013-11-20 10:02:55 +00005181 size = sizeof(struct i40e_ring *) * vsi->alloc_queue_pairs * 2;
5182 vsi->tx_rings = kzalloc(size, GFP_KERNEL);
5183 if (!vsi->tx_rings)
5184 return -ENOMEM;
Anjali Singhai Jainf650a382013-11-20 10:02:55 +00005185 vsi->rx_rings = &vsi->tx_rings[vsi->alloc_queue_pairs];
5186
Anjali Singhai Jainbc7d3382013-11-26 10:49:18 +00005187 if (alloc_qvectors) {
5188 /* allocate memory for q_vector pointers */
5189 size = sizeof(struct i40e_q_vectors *) * vsi->num_q_vectors;
5190 vsi->q_vectors = kzalloc(size, GFP_KERNEL);
5191 if (!vsi->q_vectors) {
5192 ret = -ENOMEM;
5193 goto err_vectors;
5194 }
Anjali Singhai Jainf650a382013-11-20 10:02:55 +00005195 }
5196 return ret;
5197
5198err_vectors:
5199 kfree(vsi->tx_rings);
5200 return ret;
5201}
5202
5203/**
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005204 * i40e_vsi_mem_alloc - Allocates the next available struct vsi in the PF
5205 * @pf: board private structure
5206 * @type: type of VSI
5207 *
5208 * On error: returns error code (negative)
5209 * On success: returns vsi index in PF (positive)
5210 **/
5211static int i40e_vsi_mem_alloc(struct i40e_pf *pf, enum i40e_vsi_type type)
5212{
5213 int ret = -ENODEV;
5214 struct i40e_vsi *vsi;
5215 int vsi_idx;
5216 int i;
5217
5218 /* Need to protect the allocation of the VSIs at the PF level */
5219 mutex_lock(&pf->switch_mutex);
5220
5221 /* VSI list may be fragmented if VSI creation/destruction has
5222 * been happening. We can afford to do a quick scan to look
5223 * for any free VSIs in the list.
5224 *
5225 * find next empty vsi slot, looping back around if necessary
5226 */
5227 i = pf->next_vsi;
5228 while (i < pf->hw.func_caps.num_vsis && pf->vsi[i])
5229 i++;
5230 if (i >= pf->hw.func_caps.num_vsis) {
5231 i = 0;
5232 while (i < pf->next_vsi && pf->vsi[i])
5233 i++;
5234 }
5235
5236 if (i < pf->hw.func_caps.num_vsis && !pf->vsi[i]) {
5237 vsi_idx = i; /* Found one! */
5238 } else {
5239 ret = -ENODEV;
Alexander Duyck493fb302013-09-28 07:01:44 +00005240 goto unlock_pf; /* out of VSI slots! */
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005241 }
5242 pf->next_vsi = ++i;
5243
5244 vsi = kzalloc(sizeof(*vsi), GFP_KERNEL);
5245 if (!vsi) {
5246 ret = -ENOMEM;
Alexander Duyck493fb302013-09-28 07:01:44 +00005247 goto unlock_pf;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005248 }
5249 vsi->type = type;
5250 vsi->back = pf;
5251 set_bit(__I40E_DOWN, &vsi->state);
5252 vsi->flags = 0;
5253 vsi->idx = vsi_idx;
5254 vsi->rx_itr_setting = pf->rx_itr_default;
5255 vsi->tx_itr_setting = pf->tx_itr_default;
5256 vsi->netdev_registered = false;
5257 vsi->work_limit = I40E_DEFAULT_IRQ_WORK;
5258 INIT_LIST_HEAD(&vsi->mac_filter_list);
5259
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00005260 ret = i40e_set_num_rings_in_vsi(vsi);
5261 if (ret)
5262 goto err_rings;
5263
Anjali Singhai Jainbc7d3382013-11-26 10:49:18 +00005264 ret = i40e_vsi_alloc_arrays(vsi, true);
Anjali Singhai Jainf650a382013-11-20 10:02:55 +00005265 if (ret)
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00005266 goto err_rings;
Alexander Duyck493fb302013-09-28 07:01:44 +00005267
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005268 /* Setup default MSIX irq handler for VSI */
5269 i40e_vsi_setup_irqhandler(vsi, i40e_msix_clean_rings);
5270
5271 pf->vsi[vsi_idx] = vsi;
5272 ret = vsi_idx;
Alexander Duyck493fb302013-09-28 07:01:44 +00005273 goto unlock_pf;
5274
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00005275err_rings:
Alexander Duyck493fb302013-09-28 07:01:44 +00005276 pf->next_vsi = i - 1;
5277 kfree(vsi);
5278unlock_pf:
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005279 mutex_unlock(&pf->switch_mutex);
5280 return ret;
5281}
5282
5283/**
Anjali Singhai Jainf650a382013-11-20 10:02:55 +00005284 * i40e_vsi_free_arrays - Free queue and vector pointer arrays for the VSI
5285 * @type: VSI pointer
Anjali Singhai Jainbc7d3382013-11-26 10:49:18 +00005286 * @free_qvectors: a bool to specify if q_vectors need to be freed.
Anjali Singhai Jainf650a382013-11-20 10:02:55 +00005287 *
5288 * On error: returns error code (negative)
5289 * On success: returns 0
5290 **/
Anjali Singhai Jainbc7d3382013-11-26 10:49:18 +00005291static void i40e_vsi_free_arrays(struct i40e_vsi *vsi, bool free_qvectors)
Anjali Singhai Jainf650a382013-11-20 10:02:55 +00005292{
5293 /* free the ring and vector containers */
Anjali Singhai Jainbc7d3382013-11-26 10:49:18 +00005294 if (free_qvectors) {
5295 kfree(vsi->q_vectors);
5296 vsi->q_vectors = NULL;
5297 }
Anjali Singhai Jainf650a382013-11-20 10:02:55 +00005298 kfree(vsi->tx_rings);
5299 vsi->tx_rings = NULL;
5300 vsi->rx_rings = NULL;
5301}
5302
5303/**
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005304 * i40e_vsi_clear - Deallocate the VSI provided
5305 * @vsi: the VSI being un-configured
5306 **/
5307static int i40e_vsi_clear(struct i40e_vsi *vsi)
5308{
5309 struct i40e_pf *pf;
5310
5311 if (!vsi)
5312 return 0;
5313
5314 if (!vsi->back)
5315 goto free_vsi;
5316 pf = vsi->back;
5317
5318 mutex_lock(&pf->switch_mutex);
5319 if (!pf->vsi[vsi->idx]) {
5320 dev_err(&pf->pdev->dev, "pf->vsi[%d] is NULL, just free vsi[%d](%p,type %d)\n",
5321 vsi->idx, vsi->idx, vsi, vsi->type);
5322 goto unlock_vsi;
5323 }
5324
5325 if (pf->vsi[vsi->idx] != vsi) {
5326 dev_err(&pf->pdev->dev,
5327 "pf->vsi[%d](%p, type %d) != vsi[%d](%p,type %d): no free!\n",
5328 pf->vsi[vsi->idx]->idx,
5329 pf->vsi[vsi->idx],
5330 pf->vsi[vsi->idx]->type,
5331 vsi->idx, vsi, vsi->type);
5332 goto unlock_vsi;
5333 }
5334
5335 /* updates the pf for this cleared vsi */
5336 i40e_put_lump(pf->qp_pile, vsi->base_queue, vsi->idx);
5337 i40e_put_lump(pf->irq_pile, vsi->base_vector, vsi->idx);
5338
Anjali Singhai Jainbc7d3382013-11-26 10:49:18 +00005339 i40e_vsi_free_arrays(vsi, true);
Alexander Duyck493fb302013-09-28 07:01:44 +00005340
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005341 pf->vsi[vsi->idx] = NULL;
5342 if (vsi->idx < pf->next_vsi)
5343 pf->next_vsi = vsi->idx;
5344
5345unlock_vsi:
5346 mutex_unlock(&pf->switch_mutex);
5347free_vsi:
5348 kfree(vsi);
5349
5350 return 0;
5351}
5352
5353/**
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00005354 * i40e_vsi_clear_rings - Deallocates the Rx and Tx rings for the provided VSI
5355 * @vsi: the VSI being cleaned
5356 **/
Shannon Nelsonbe1d5ee2013-11-28 06:39:23 +00005357static void i40e_vsi_clear_rings(struct i40e_vsi *vsi)
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00005358{
5359 int i;
5360
Greg Rose8e9dca52013-12-18 13:45:53 +00005361 if (vsi->tx_rings && vsi->tx_rings[0]) {
Neerav Parikhd7397642013-11-28 06:39:37 +00005362 for (i = 0; i < vsi->alloc_queue_pairs; i++) {
Mitch Williams00403f02013-09-28 07:13:13 +00005363 kfree_rcu(vsi->tx_rings[i], rcu);
5364 vsi->tx_rings[i] = NULL;
5365 vsi->rx_rings[i] = NULL;
5366 }
Shannon Nelsonbe1d5ee2013-11-28 06:39:23 +00005367 }
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00005368}
5369
5370/**
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005371 * i40e_alloc_rings - Allocates the Rx and Tx rings for the provided VSI
5372 * @vsi: the VSI being configured
5373 **/
5374static int i40e_alloc_rings(struct i40e_vsi *vsi)
5375{
5376 struct i40e_pf *pf = vsi->back;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005377 int i;
5378
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005379 /* Set basic values in the rings to be used later during open() */
Neerav Parikhd7397642013-11-28 06:39:37 +00005380 for (i = 0; i < vsi->alloc_queue_pairs; i++) {
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00005381 struct i40e_ring *tx_ring;
5382 struct i40e_ring *rx_ring;
5383
Shannon Nelsonac6c5e32013-11-20 10:02:57 +00005384 /* allocate space for both Tx and Rx in one shot */
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00005385 tx_ring = kzalloc(sizeof(struct i40e_ring) * 2, GFP_KERNEL);
5386 if (!tx_ring)
5387 goto err_out;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005388
5389 tx_ring->queue_index = i;
5390 tx_ring->reg_idx = vsi->base_queue + i;
5391 tx_ring->ring_active = false;
5392 tx_ring->vsi = vsi;
5393 tx_ring->netdev = vsi->netdev;
5394 tx_ring->dev = &pf->pdev->dev;
5395 tx_ring->count = vsi->num_desc;
5396 tx_ring->size = 0;
5397 tx_ring->dcb_tc = 0;
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00005398 vsi->tx_rings[i] = tx_ring;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005399
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00005400 rx_ring = &tx_ring[1];
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005401 rx_ring->queue_index = i;
5402 rx_ring->reg_idx = vsi->base_queue + i;
5403 rx_ring->ring_active = false;
5404 rx_ring->vsi = vsi;
5405 rx_ring->netdev = vsi->netdev;
5406 rx_ring->dev = &pf->pdev->dev;
5407 rx_ring->count = vsi->num_desc;
5408 rx_ring->size = 0;
5409 rx_ring->dcb_tc = 0;
5410 if (pf->flags & I40E_FLAG_16BYTE_RX_DESC_ENABLED)
5411 set_ring_16byte_desc_enabled(rx_ring);
5412 else
5413 clear_ring_16byte_desc_enabled(rx_ring);
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00005414 vsi->rx_rings[i] = rx_ring;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005415 }
5416
5417 return 0;
Alexander Duyck9f65e15b2013-09-28 06:00:58 +00005418
5419err_out:
5420 i40e_vsi_clear_rings(vsi);
5421 return -ENOMEM;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005422}
5423
5424/**
5425 * i40e_reserve_msix_vectors - Reserve MSI-X vectors in the kernel
5426 * @pf: board private structure
5427 * @vectors: the number of MSI-X vectors to request
5428 *
5429 * Returns the number of vectors reserved, or error
5430 **/
5431static int i40e_reserve_msix_vectors(struct i40e_pf *pf, int vectors)
5432{
5433 int err = 0;
5434
5435 pf->num_msix_entries = 0;
5436 while (vectors >= I40E_MIN_MSIX) {
5437 err = pci_enable_msix(pf->pdev, pf->msix_entries, vectors);
5438 if (err == 0) {
5439 /* good to go */
5440 pf->num_msix_entries = vectors;
5441 break;
5442 } else if (err < 0) {
5443 /* total failure */
5444 dev_info(&pf->pdev->dev,
5445 "MSI-X vector reservation failed: %d\n", err);
5446 vectors = 0;
5447 break;
5448 } else {
5449 /* err > 0 is the hint for retry */
5450 dev_info(&pf->pdev->dev,
5451 "MSI-X vectors wanted %d, retrying with %d\n",
5452 vectors, err);
5453 vectors = err;
5454 }
5455 }
5456
5457 if (vectors > 0 && vectors < I40E_MIN_MSIX) {
5458 dev_info(&pf->pdev->dev,
5459 "Couldn't get enough vectors, only %d available\n",
5460 vectors);
5461 vectors = 0;
5462 }
5463
5464 return vectors;
5465}
5466
5467/**
5468 * i40e_init_msix - Setup the MSIX capability
5469 * @pf: board private structure
5470 *
5471 * Work with the OS to set up the MSIX vectors needed.
5472 *
5473 * Returns 0 on success, negative on failure
5474 **/
5475static int i40e_init_msix(struct i40e_pf *pf)
5476{
5477 i40e_status err = 0;
5478 struct i40e_hw *hw = &pf->hw;
5479 int v_budget, i;
5480 int vec;
5481
5482 if (!(pf->flags & I40E_FLAG_MSIX_ENABLED))
5483 return -ENODEV;
5484
5485 /* The number of vectors we'll request will be comprised of:
5486 * - Add 1 for "other" cause for Admin Queue events, etc.
5487 * - The number of LAN queue pairs
Anjali Singhai Jainf8ff1462013-11-26 10:49:19 +00005488 * - Queues being used for RSS.
5489 * We don't need as many as max_rss_size vectors.
5490 * use rss_size instead in the calculation since that
5491 * is governed by number of cpus in the system.
5492 * - assumes symmetric Tx/Rx pairing
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005493 * - The number of VMDq pairs
5494 * Once we count this up, try the request.
5495 *
5496 * If we can't get what we want, we'll simplify to nearly nothing
5497 * and try again. If that still fails, we punt.
5498 */
Anjali Singhai Jainf8ff1462013-11-26 10:49:19 +00005499 pf->num_lan_msix = pf->num_lan_qps - (pf->rss_size_max - pf->rss_size);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005500 pf->num_vmdq_msix = pf->num_vmdq_qps;
5501 v_budget = 1 + pf->num_lan_msix;
5502 v_budget += (pf->num_vmdq_vsis * pf->num_vmdq_msix);
5503 if (pf->flags & I40E_FLAG_FDIR_ENABLED)
5504 v_budget++;
5505
5506 /* Scale down if necessary, and the rings will share vectors */
5507 v_budget = min_t(int, v_budget, hw->func_caps.num_msix_vectors);
5508
5509 pf->msix_entries = kcalloc(v_budget, sizeof(struct msix_entry),
5510 GFP_KERNEL);
5511 if (!pf->msix_entries)
5512 return -ENOMEM;
5513
5514 for (i = 0; i < v_budget; i++)
5515 pf->msix_entries[i].entry = i;
5516 vec = i40e_reserve_msix_vectors(pf, v_budget);
5517 if (vec < I40E_MIN_MSIX) {
5518 pf->flags &= ~I40E_FLAG_MSIX_ENABLED;
5519 kfree(pf->msix_entries);
5520 pf->msix_entries = NULL;
5521 return -ENODEV;
5522
5523 } else if (vec == I40E_MIN_MSIX) {
5524 /* Adjust for minimal MSIX use */
5525 dev_info(&pf->pdev->dev, "Features disabled, not enough MSIX vectors\n");
5526 pf->flags &= ~I40E_FLAG_VMDQ_ENABLED;
5527 pf->num_vmdq_vsis = 0;
5528 pf->num_vmdq_qps = 0;
5529 pf->num_vmdq_msix = 0;
5530 pf->num_lan_qps = 1;
5531 pf->num_lan_msix = 1;
5532
5533 } else if (vec != v_budget) {
5534 /* Scale vector usage down */
5535 pf->num_vmdq_msix = 1; /* force VMDqs to only one vector */
5536 vec--; /* reserve the misc vector */
5537
5538 /* partition out the remaining vectors */
5539 switch (vec) {
5540 case 2:
5541 pf->num_vmdq_vsis = 1;
5542 pf->num_lan_msix = 1;
5543 break;
5544 case 3:
5545 pf->num_vmdq_vsis = 1;
5546 pf->num_lan_msix = 2;
5547 break;
5548 default:
5549 pf->num_lan_msix = min_t(int, (vec / 2),
5550 pf->num_lan_qps);
5551 pf->num_vmdq_vsis = min_t(int, (vec - pf->num_lan_msix),
5552 I40E_DEFAULT_NUM_VMDQ_VSI);
5553 break;
5554 }
5555 }
5556
5557 return err;
5558}
5559
5560/**
Alexander Duyck493fb302013-09-28 07:01:44 +00005561 * i40e_alloc_q_vector - Allocate memory for a single interrupt vector
5562 * @vsi: the VSI being configured
5563 * @v_idx: index of the vector in the vsi struct
5564 *
5565 * We allocate one q_vector. If allocation fails we return -ENOMEM.
5566 **/
5567static int i40e_alloc_q_vector(struct i40e_vsi *vsi, int v_idx)
5568{
5569 struct i40e_q_vector *q_vector;
5570
5571 /* allocate q_vector */
5572 q_vector = kzalloc(sizeof(struct i40e_q_vector), GFP_KERNEL);
5573 if (!q_vector)
5574 return -ENOMEM;
5575
5576 q_vector->vsi = vsi;
5577 q_vector->v_idx = v_idx;
5578 cpumask_set_cpu(v_idx, &q_vector->affinity_mask);
5579 if (vsi->netdev)
5580 netif_napi_add(vsi->netdev, &q_vector->napi,
5581 i40e_napi_poll, vsi->work_limit);
5582
Alexander Duyckcd0b6fa2013-09-28 06:00:53 +00005583 q_vector->rx.latency_range = I40E_LOW_LATENCY;
5584 q_vector->tx.latency_range = I40E_LOW_LATENCY;
5585
Alexander Duyck493fb302013-09-28 07:01:44 +00005586 /* tie q_vector and vsi together */
5587 vsi->q_vectors[v_idx] = q_vector;
5588
5589 return 0;
5590}
5591
5592/**
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005593 * i40e_alloc_q_vectors - Allocate memory for interrupt vectors
5594 * @vsi: the VSI being configured
5595 *
5596 * We allocate one q_vector per queue interrupt. If allocation fails we
5597 * return -ENOMEM.
5598 **/
5599static int i40e_alloc_q_vectors(struct i40e_vsi *vsi)
5600{
5601 struct i40e_pf *pf = vsi->back;
5602 int v_idx, num_q_vectors;
Alexander Duyck493fb302013-09-28 07:01:44 +00005603 int err;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005604
5605 /* if not MSIX, give the one vector only to the LAN VSI */
5606 if (pf->flags & I40E_FLAG_MSIX_ENABLED)
5607 num_q_vectors = vsi->num_q_vectors;
5608 else if (vsi == pf->vsi[pf->lan_vsi])
5609 num_q_vectors = 1;
5610 else
5611 return -EINVAL;
5612
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005613 for (v_idx = 0; v_idx < num_q_vectors; v_idx++) {
Alexander Duyck493fb302013-09-28 07:01:44 +00005614 err = i40e_alloc_q_vector(vsi, v_idx);
5615 if (err)
5616 goto err_out;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005617 }
5618
5619 return 0;
Alexander Duyck493fb302013-09-28 07:01:44 +00005620
5621err_out:
5622 while (v_idx--)
5623 i40e_free_q_vector(vsi, v_idx);
5624
5625 return err;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005626}
5627
5628/**
5629 * i40e_init_interrupt_scheme - Determine proper interrupt scheme
5630 * @pf: board private structure to initialize
5631 **/
5632static void i40e_init_interrupt_scheme(struct i40e_pf *pf)
5633{
5634 int err = 0;
5635
5636 if (pf->flags & I40E_FLAG_MSIX_ENABLED) {
5637 err = i40e_init_msix(pf);
5638 if (err) {
Shannon Nelson958a3e32013-09-28 07:13:28 +00005639 pf->flags &= ~(I40E_FLAG_MSIX_ENABLED |
5640 I40E_FLAG_RSS_ENABLED |
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005641 I40E_FLAG_DCB_ENABLED |
5642 I40E_FLAG_SRIOV_ENABLED |
5643 I40E_FLAG_FDIR_ENABLED |
5644 I40E_FLAG_FDIR_ATR_ENABLED |
5645 I40E_FLAG_VMDQ_ENABLED);
5646
5647 /* rework the queue expectations without MSIX */
5648 i40e_determine_queue_usage(pf);
5649 }
5650 }
5651
5652 if (!(pf->flags & I40E_FLAG_MSIX_ENABLED) &&
5653 (pf->flags & I40E_FLAG_MSI_ENABLED)) {
Shannon Nelson958a3e32013-09-28 07:13:28 +00005654 dev_info(&pf->pdev->dev, "MSIX not available, trying MSI\n");
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005655 err = pci_enable_msi(pf->pdev);
5656 if (err) {
Shannon Nelson958a3e32013-09-28 07:13:28 +00005657 dev_info(&pf->pdev->dev, "MSI init failed - %d\n", err);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005658 pf->flags &= ~I40E_FLAG_MSI_ENABLED;
5659 }
5660 }
5661
Shannon Nelson958a3e32013-09-28 07:13:28 +00005662 if (!(pf->flags & (I40E_FLAG_MSIX_ENABLED | I40E_FLAG_MSI_ENABLED)))
5663 dev_info(&pf->pdev->dev, "MSIX and MSI not available, falling back to Legacy IRQ\n");
5664
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005665 /* track first vector for misc interrupts */
5666 err = i40e_get_lump(pf, pf->irq_pile, 1, I40E_PILE_VALID_BIT-1);
5667}
5668
5669/**
5670 * i40e_setup_misc_vector - Setup the misc vector to handle non queue events
5671 * @pf: board private structure
5672 *
5673 * This sets up the handler for MSIX 0, which is used to manage the
5674 * non-queue interrupts, e.g. AdminQ and errors. This is not used
5675 * when in MSI or Legacy interrupt mode.
5676 **/
5677static int i40e_setup_misc_vector(struct i40e_pf *pf)
5678{
5679 struct i40e_hw *hw = &pf->hw;
5680 int err = 0;
5681
5682 /* Only request the irq if this is the first time through, and
5683 * not when we're rebuilding after a Reset
5684 */
5685 if (!test_bit(__I40E_RESET_RECOVERY_PENDING, &pf->state)) {
5686 err = request_irq(pf->msix_entries[0].vector,
5687 i40e_intr, 0, pf->misc_int_name, pf);
5688 if (err) {
5689 dev_info(&pf->pdev->dev,
5690 "request_irq for msix_misc failed: %d\n", err);
5691 return -EFAULT;
5692 }
5693 }
5694
5695 i40e_enable_misc_int_causes(hw);
5696
5697 /* associate no queues to the misc vector */
5698 wr32(hw, I40E_PFINT_LNKLST0, I40E_QUEUE_END_OF_LIST);
5699 wr32(hw, I40E_PFINT_ITR0(I40E_RX_ITR), I40E_ITR_8K);
5700
5701 i40e_flush(hw);
5702
5703 i40e_irq_dynamic_enable_icr0(pf);
5704
5705 return err;
5706}
5707
5708/**
5709 * i40e_config_rss - Prepare for RSS if used
5710 * @pf: board private structure
5711 **/
5712static int i40e_config_rss(struct i40e_pf *pf)
5713{
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005714 /* Set of random keys generated using kernel random number generator */
5715 static const u32 seed[I40E_PFQF_HKEY_MAX_INDEX + 1] = {0x41b01687,
5716 0x183cfd8c, 0xce880440, 0x580cbc3c, 0x35897377,
5717 0x328b25e1, 0x4fa98922, 0xb7d90c14, 0xd5bad70d,
5718 0xcd15a2c1, 0xe8580225, 0x4a1e9d11, 0xfe5731be};
Anjali Singhai Jain4617e8c2013-11-20 10:02:56 +00005719 struct i40e_hw *hw = &pf->hw;
5720 u32 lut = 0;
5721 int i, j;
5722 u64 hena;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005723
5724 /* Fill out hash function seed */
5725 for (i = 0; i <= I40E_PFQF_HKEY_MAX_INDEX; i++)
5726 wr32(hw, I40E_PFQF_HKEY(i), seed[i]);
5727
5728 /* By default we enable TCP/UDP with IPv4/IPv6 ptypes */
5729 hena = (u64)rd32(hw, I40E_PFQF_HENA(0)) |
5730 ((u64)rd32(hw, I40E_PFQF_HENA(1)) << 32);
Mitch Williams12dc4fe2013-11-28 06:39:32 +00005731 hena |= I40E_DEFAULT_RSS_HENA;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005732 wr32(hw, I40E_PFQF_HENA(0), (u32)hena);
5733 wr32(hw, I40E_PFQF_HENA(1), (u32)(hena >> 32));
5734
5735 /* Populate the LUT with max no. of queues in round robin fashion */
5736 for (i = 0, j = 0; i < pf->hw.func_caps.rss_table_size; i++, j++) {
5737
5738 /* The assumption is that lan qp count will be the highest
5739 * qp count for any PF VSI that needs RSS.
5740 * If multiple VSIs need RSS support, all the qp counts
5741 * for those VSIs should be a power of 2 for RSS to work.
5742 * If LAN VSI is the only consumer for RSS then this requirement
5743 * is not necessary.
5744 */
5745 if (j == pf->rss_size)
5746 j = 0;
5747 /* lut = 4-byte sliding window of 4 lut entries */
5748 lut = (lut << 8) | (j &
5749 ((0x1 << pf->hw.func_caps.rss_table_entry_width) - 1));
5750 /* On i = 3, we have 4 entries in lut; write to the register */
5751 if ((i & 3) == 3)
5752 wr32(hw, I40E_PFQF_HLUT(i >> 2), lut);
5753 }
5754 i40e_flush(hw);
5755
5756 return 0;
5757}
5758
5759/**
Anjali Singhai Jainf8ff1462013-11-26 10:49:19 +00005760 * i40e_reconfig_rss_queues - change number of queues for rss and rebuild
5761 * @pf: board private structure
5762 * @queue_count: the requested queue count for rss.
5763 *
5764 * returns 0 if rss is not enabled, if enabled returns the final rss queue
5765 * count which may be different from the requested queue count.
5766 **/
5767int i40e_reconfig_rss_queues(struct i40e_pf *pf, int queue_count)
5768{
5769 if (!(pf->flags & I40E_FLAG_RSS_ENABLED))
5770 return 0;
5771
5772 queue_count = min_t(int, queue_count, pf->rss_size_max);
5773 queue_count = rounddown_pow_of_two(queue_count);
5774
5775 if (queue_count != pf->rss_size) {
Anjali Singhai Jainf8ff1462013-11-26 10:49:19 +00005776 i40e_prep_for_reset(pf);
5777
Anjali Singhai Jainf8ff1462013-11-26 10:49:19 +00005778 pf->rss_size = queue_count;
5779
5780 i40e_reset_and_rebuild(pf, true);
5781 i40e_config_rss(pf);
5782 }
5783 dev_info(&pf->pdev->dev, "RSS count: %d\n", pf->rss_size);
5784 return pf->rss_size;
5785}
5786
5787/**
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005788 * i40e_sw_init - Initialize general software structures (struct i40e_pf)
5789 * @pf: board private structure to initialize
5790 *
5791 * i40e_sw_init initializes the Adapter private data structure.
5792 * Fields are initialized based on PCI device information and
5793 * OS network device settings (MTU size).
5794 **/
5795static int i40e_sw_init(struct i40e_pf *pf)
5796{
5797 int err = 0;
5798 int size;
5799
5800 pf->msg_enable = netif_msg_init(I40E_DEFAULT_MSG_ENABLE,
5801 (NETIF_MSG_DRV|NETIF_MSG_PROBE|NETIF_MSG_LINK));
Shannon Nelson27599972013-11-16 10:00:43 +00005802 pf->hw.debug_mask = pf->msg_enable | I40E_DEBUG_DIAG;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005803 if (debug != -1 && debug != I40E_DEFAULT_MSG_ENABLE) {
5804 if (I40E_DEBUG_USER & debug)
5805 pf->hw.debug_mask = debug;
5806 pf->msg_enable = netif_msg_init((debug & ~I40E_DEBUG_USER),
5807 I40E_DEFAULT_MSG_ENABLE);
5808 }
5809
5810 /* Set default capability flags */
5811 pf->flags = I40E_FLAG_RX_CSUM_ENABLED |
5812 I40E_FLAG_MSI_ENABLED |
5813 I40E_FLAG_MSIX_ENABLED |
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005814 I40E_FLAG_RX_1BUF_ENABLED;
5815
Jesse Brandeburg7134f9c2013-11-26 08:56:05 +00005816 /* Depending on PF configurations, it is possible that the RSS
5817 * maximum might end up larger than the available queues
5818 */
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005819 pf->rss_size_max = 0x1 << pf->hw.func_caps.rss_table_entry_width;
Jesse Brandeburg7134f9c2013-11-26 08:56:05 +00005820 pf->rss_size_max = min_t(int, pf->rss_size_max,
5821 pf->hw.func_caps.num_tx_qp);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005822 if (pf->hw.func_caps.rss) {
5823 pf->flags |= I40E_FLAG_RSS_ENABLED;
Jesse Brandeburgbf051a32013-11-26 10:49:17 +00005824 pf->rss_size = min_t(int, pf->rss_size_max, num_online_cpus());
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005825 } else {
5826 pf->rss_size = 1;
5827 }
5828
Catherine Sullivan2050bc62013-12-18 13:46:03 +00005829 /* MFP mode enabled */
5830 if (pf->hw.func_caps.npar_enable || pf->hw.func_caps.mfp_mode_1) {
5831 pf->flags |= I40E_FLAG_MFP_ENABLED;
5832 dev_info(&pf->pdev->dev, "MFP mode Enabled\n");
5833 }
5834
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005835 if (pf->hw.func_caps.dcb)
5836 pf->num_tc_qps = I40E_DEFAULT_QUEUES_PER_TC;
5837 else
5838 pf->num_tc_qps = 0;
5839
5840 if (pf->hw.func_caps.fd) {
5841 /* FW/NVM is not yet fixed in this regard */
5842 if ((pf->hw.func_caps.fd_filters_guaranteed > 0) ||
5843 (pf->hw.func_caps.fd_filters_best_effort > 0)) {
5844 pf->flags |= I40E_FLAG_FDIR_ATR_ENABLED;
5845 dev_info(&pf->pdev->dev,
5846 "Flow Director ATR mode Enabled\n");
5847 pf->flags |= I40E_FLAG_FDIR_ENABLED;
5848 dev_info(&pf->pdev->dev,
5849 "Flow Director Side Band mode Enabled\n");
5850 pf->fdir_pf_filter_count =
5851 pf->hw.func_caps.fd_filters_guaranteed;
5852 }
5853 } else {
5854 pf->fdir_pf_filter_count = 0;
5855 }
5856
5857 if (pf->hw.func_caps.vmdq) {
5858 pf->flags |= I40E_FLAG_VMDQ_ENABLED;
5859 pf->num_vmdq_vsis = I40E_DEFAULT_NUM_VMDQ_VSI;
5860 pf->num_vmdq_qps = I40E_DEFAULT_QUEUES_PER_VMDQ;
5861 }
5862
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005863#ifdef CONFIG_PCI_IOV
5864 if (pf->hw.func_caps.num_vfs) {
5865 pf->num_vf_qps = I40E_DEFAULT_QUEUES_PER_VF;
5866 pf->flags |= I40E_FLAG_SRIOV_ENABLED;
5867 pf->num_req_vfs = min_t(int,
5868 pf->hw.func_caps.num_vfs,
5869 I40E_MAX_VF_COUNT);
Anjali Singhai Jain4a38d092013-11-20 10:03:00 +00005870 dev_info(&pf->pdev->dev,
5871 "Number of VFs being requested for PF[%d] = %d\n",
5872 pf->hw.pf_id, pf->num_req_vfs);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00005873 }
5874#endif /* CONFIG_PCI_IOV */
5875 pf->eeprom_version = 0xDEAD;
5876 pf->lan_veb = I40E_NO_VEB;
5877 pf->lan_vsi = I40E_NO_VSI;
5878
5879 /* set up queue assignment tracking */
5880 size = sizeof(struct i40e_lump_tracking)
5881 + (sizeof(u16) * pf->hw.func_caps.num_tx_qp);
5882 pf->qp_pile = kzalloc(size, GFP_KERNEL);
5883 if (!pf->qp_pile) {
5884 err = -ENOMEM;
5885 goto sw_init_done;
5886 }
5887 pf->qp_pile->num_entries = pf->hw.func_caps.num_tx_qp;
5888 pf->qp_pile->search_hint = 0;
5889
5890 /* set up vector assignment tracking */
5891 size = sizeof(struct i40e_lump_tracking)
5892 + (sizeof(u16) * pf->hw.func_caps.num_msix_vectors);
5893 pf->irq_pile = kzalloc(size, GFP_KERNEL);
5894 if (!pf->irq_pile) {
5895 kfree(pf->qp_pile);
5896 err = -ENOMEM;
5897 goto sw_init_done;
5898 }
5899 pf->irq_pile->num_entries = pf->hw.func_caps.num_msix_vectors;
5900 pf->irq_pile->search_hint = 0;
5901
5902 mutex_init(&pf->switch_mutex);
5903
5904sw_init_done:
5905 return err;
5906}
5907
5908/**
5909 * i40e_set_features - set the netdev feature flags
5910 * @netdev: ptr to the netdev being adjusted
5911 * @features: the feature set that the stack is suggesting
5912 **/
5913static int i40e_set_features(struct net_device *netdev,
5914 netdev_features_t features)
5915{
5916 struct i40e_netdev_priv *np = netdev_priv(netdev);
5917 struct i40e_vsi *vsi = np->vsi;
5918
5919 if (features & NETIF_F_HW_VLAN_CTAG_RX)
5920 i40e_vlan_stripping_enable(vsi);
5921 else
5922 i40e_vlan_stripping_disable(vsi);
5923
5924 return 0;
5925}
5926
Jeff Kirshera1c9a9d2013-12-28 07:32:18 +00005927#ifdef CONFIG_I40E_VXLAN
5928/**
5929 * i40e_get_vxlan_port_idx - Lookup a possibly offloaded for Rx UDP port
5930 * @pf: board private structure
5931 * @port: The UDP port to look up
5932 *
5933 * Returns the index number or I40E_MAX_PF_UDP_OFFLOAD_PORTS if port not found
5934 **/
5935static u8 i40e_get_vxlan_port_idx(struct i40e_pf *pf, __be16 port)
5936{
5937 u8 i;
5938
5939 for (i = 0; i < I40E_MAX_PF_UDP_OFFLOAD_PORTS; i++) {
5940 if (pf->vxlan_ports[i] == port)
5941 return i;
5942 }
5943
5944 return i;
5945}
5946
5947/**
5948 * i40e_add_vxlan_port - Get notifications about VXLAN ports that come up
5949 * @netdev: This physical port's netdev
5950 * @sa_family: Socket Family that VXLAN is notifying us about
5951 * @port: New UDP port number that VXLAN started listening to
5952 **/
5953static void i40e_add_vxlan_port(struct net_device *netdev,
5954 sa_family_t sa_family, __be16 port)
5955{
5956 struct i40e_netdev_priv *np = netdev_priv(netdev);
5957 struct i40e_vsi *vsi = np->vsi;
5958 struct i40e_pf *pf = vsi->back;
5959 u8 next_idx;
5960 u8 idx;
5961
5962 if (sa_family == AF_INET6)
5963 return;
5964
5965 idx = i40e_get_vxlan_port_idx(pf, port);
5966
5967 /* Check if port already exists */
5968 if (idx < I40E_MAX_PF_UDP_OFFLOAD_PORTS) {
5969 netdev_info(netdev, "Port %d already offloaded\n", ntohs(port));
5970 return;
5971 }
5972
5973 /* Now check if there is space to add the new port */
5974 next_idx = i40e_get_vxlan_port_idx(pf, 0);
5975
5976 if (next_idx == I40E_MAX_PF_UDP_OFFLOAD_PORTS) {
5977 netdev_info(netdev, "Maximum number of UDP ports reached, not adding port %d\n",
5978 ntohs(port));
5979 return;
5980 }
5981
5982 /* New port: add it and mark its index in the bitmap */
5983 pf->vxlan_ports[next_idx] = port;
5984 pf->pending_vxlan_bitmap |= (1 << next_idx);
5985
5986 pf->flags |= I40E_FLAG_VXLAN_FILTER_SYNC;
5987}
5988
5989/**
5990 * i40e_del_vxlan_port - Get notifications about VXLAN ports that go away
5991 * @netdev: This physical port's netdev
5992 * @sa_family: Socket Family that VXLAN is notifying us about
5993 * @port: UDP port number that VXLAN stopped listening to
5994 **/
5995static void i40e_del_vxlan_port(struct net_device *netdev,
5996 sa_family_t sa_family, __be16 port)
5997{
5998 struct i40e_netdev_priv *np = netdev_priv(netdev);
5999 struct i40e_vsi *vsi = np->vsi;
6000 struct i40e_pf *pf = vsi->back;
6001 u8 idx;
6002
6003 if (sa_family == AF_INET6)
6004 return;
6005
6006 idx = i40e_get_vxlan_port_idx(pf, port);
6007
6008 /* Check if port already exists */
6009 if (idx < I40E_MAX_PF_UDP_OFFLOAD_PORTS) {
6010 /* if port exists, set it to 0 (mark for deletion)
6011 * and make it pending
6012 */
6013 pf->vxlan_ports[idx] = 0;
6014
6015 pf->pending_vxlan_bitmap |= (1 << idx);
6016
6017 pf->flags |= I40E_FLAG_VXLAN_FILTER_SYNC;
6018 } else {
6019 netdev_warn(netdev, "Port %d was not found, not deleting\n",
6020 ntohs(port));
6021 }
6022}
6023
6024#endif
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00006025static const struct net_device_ops i40e_netdev_ops = {
6026 .ndo_open = i40e_open,
6027 .ndo_stop = i40e_close,
6028 .ndo_start_xmit = i40e_lan_xmit_frame,
6029 .ndo_get_stats64 = i40e_get_netdev_stats_struct,
6030 .ndo_set_rx_mode = i40e_set_rx_mode,
6031 .ndo_validate_addr = eth_validate_addr,
6032 .ndo_set_mac_address = i40e_set_mac,
6033 .ndo_change_mtu = i40e_change_mtu,
6034 .ndo_tx_timeout = i40e_tx_timeout,
6035 .ndo_vlan_rx_add_vid = i40e_vlan_rx_add_vid,
6036 .ndo_vlan_rx_kill_vid = i40e_vlan_rx_kill_vid,
6037#ifdef CONFIG_NET_POLL_CONTROLLER
6038 .ndo_poll_controller = i40e_netpoll,
6039#endif
6040 .ndo_setup_tc = i40e_setup_tc,
6041 .ndo_set_features = i40e_set_features,
6042 .ndo_set_vf_mac = i40e_ndo_set_vf_mac,
6043 .ndo_set_vf_vlan = i40e_ndo_set_vf_port_vlan,
6044 .ndo_set_vf_tx_rate = i40e_ndo_set_vf_bw,
6045 .ndo_get_vf_config = i40e_ndo_get_vf_config,
Jeff Kirshera1c9a9d2013-12-28 07:32:18 +00006046#ifdef CONFIG_I40E_VXLAN
6047 .ndo_add_vxlan_port = i40e_add_vxlan_port,
6048 .ndo_del_vxlan_port = i40e_del_vxlan_port,
6049#endif
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00006050};
6051
6052/**
6053 * i40e_config_netdev - Setup the netdev flags
6054 * @vsi: the VSI being configured
6055 *
6056 * Returns 0 on success, negative value on failure
6057 **/
6058static int i40e_config_netdev(struct i40e_vsi *vsi)
6059{
Greg Rose1a103702013-11-28 06:42:39 +00006060 u8 brdcast[ETH_ALEN] = {0xff, 0xff, 0xff, 0xff, 0xff, 0xff};
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00006061 struct i40e_pf *pf = vsi->back;
6062 struct i40e_hw *hw = &pf->hw;
6063 struct i40e_netdev_priv *np;
6064 struct net_device *netdev;
6065 u8 mac_addr[ETH_ALEN];
6066 int etherdev_size;
6067
6068 etherdev_size = sizeof(struct i40e_netdev_priv);
Anjali Singhai Jainf8ff1462013-11-26 10:49:19 +00006069 netdev = alloc_etherdev_mq(etherdev_size, vsi->alloc_queue_pairs);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00006070 if (!netdev)
6071 return -ENOMEM;
6072
6073 vsi->netdev = netdev;
6074 np = netdev_priv(netdev);
6075 np->vsi = vsi;
6076
6077 netdev->hw_enc_features = NETIF_F_IP_CSUM |
6078 NETIF_F_GSO_UDP_TUNNEL |
6079 NETIF_F_TSO |
6080 NETIF_F_SG;
6081
6082 netdev->features = NETIF_F_SG |
6083 NETIF_F_IP_CSUM |
6084 NETIF_F_SCTP_CSUM |
6085 NETIF_F_HIGHDMA |
6086 NETIF_F_GSO_UDP_TUNNEL |
6087 NETIF_F_HW_VLAN_CTAG_TX |
6088 NETIF_F_HW_VLAN_CTAG_RX |
6089 NETIF_F_HW_VLAN_CTAG_FILTER |
6090 NETIF_F_IPV6_CSUM |
6091 NETIF_F_TSO |
6092 NETIF_F_TSO6 |
6093 NETIF_F_RXCSUM |
6094 NETIF_F_RXHASH |
6095 0;
6096
6097 /* copy netdev features into list of user selectable features */
6098 netdev->hw_features |= netdev->features;
6099
6100 if (vsi->type == I40E_VSI_MAIN) {
6101 SET_NETDEV_DEV(netdev, &pf->pdev->dev);
6102 memcpy(mac_addr, hw->mac.perm_addr, ETH_ALEN);
6103 } else {
6104 /* relate the VSI_VMDQ name to the VSI_MAIN name */
6105 snprintf(netdev->name, IFNAMSIZ, "%sv%%d",
6106 pf->vsi[pf->lan_vsi]->netdev->name);
6107 random_ether_addr(mac_addr);
6108 i40e_add_filter(vsi, mac_addr, I40E_VLAN_ANY, false, false);
6109 }
Greg Rose1a103702013-11-28 06:42:39 +00006110 i40e_add_filter(vsi, brdcast, I40E_VLAN_ANY, false, false);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00006111
6112 memcpy(netdev->dev_addr, mac_addr, ETH_ALEN);
6113 memcpy(netdev->perm_addr, mac_addr, ETH_ALEN);
6114 /* vlan gets same features (except vlan offload)
6115 * after any tweaks for specific VSI types
6116 */
6117 netdev->vlan_features = netdev->features & ~(NETIF_F_HW_VLAN_CTAG_TX |
6118 NETIF_F_HW_VLAN_CTAG_RX |
6119 NETIF_F_HW_VLAN_CTAG_FILTER);
6120 netdev->priv_flags |= IFF_UNICAST_FLT;
6121 netdev->priv_flags |= IFF_SUPP_NOFCS;
6122 /* Setup netdev TC information */
6123 i40e_vsi_config_netdev_tc(vsi, vsi->tc_config.enabled_tc);
6124
6125 netdev->netdev_ops = &i40e_netdev_ops;
6126 netdev->watchdog_timeo = 5 * HZ;
6127 i40e_set_ethtool_ops(netdev);
6128
6129 return 0;
6130}
6131
6132/**
6133 * i40e_vsi_delete - Delete a VSI from the switch
6134 * @vsi: the VSI being removed
6135 *
6136 * Returns 0 on success, negative value on failure
6137 **/
6138static void i40e_vsi_delete(struct i40e_vsi *vsi)
6139{
6140 /* remove default VSI is not allowed */
6141 if (vsi == vsi->back->vsi[vsi->back->lan_vsi])
6142 return;
6143
6144 /* there is no HW VSI for FDIR */
6145 if (vsi->type == I40E_VSI_FDIR)
6146 return;
6147
6148 i40e_aq_delete_element(&vsi->back->hw, vsi->seid, NULL);
6149 return;
6150}
6151
6152/**
6153 * i40e_add_vsi - Add a VSI to the switch
6154 * @vsi: the VSI being configured
6155 *
6156 * This initializes a VSI context depending on the VSI type to be added and
6157 * passes it down to the add_vsi aq command.
6158 **/
6159static int i40e_add_vsi(struct i40e_vsi *vsi)
6160{
6161 int ret = -ENODEV;
6162 struct i40e_mac_filter *f, *ftmp;
6163 struct i40e_pf *pf = vsi->back;
6164 struct i40e_hw *hw = &pf->hw;
6165 struct i40e_vsi_context ctxt;
6166 u8 enabled_tc = 0x1; /* TC0 enabled */
6167 int f_count = 0;
6168
6169 memset(&ctxt, 0, sizeof(ctxt));
6170 switch (vsi->type) {
6171 case I40E_VSI_MAIN:
6172 /* The PF's main VSI is already setup as part of the
6173 * device initialization, so we'll not bother with
6174 * the add_vsi call, but we will retrieve the current
6175 * VSI context.
6176 */
6177 ctxt.seid = pf->main_vsi_seid;
6178 ctxt.pf_num = pf->hw.pf_id;
6179 ctxt.vf_num = 0;
6180 ret = i40e_aq_get_vsi_params(&pf->hw, &ctxt, NULL);
6181 ctxt.flags = I40E_AQ_VSI_TYPE_PF;
6182 if (ret) {
6183 dev_info(&pf->pdev->dev,
6184 "couldn't get pf vsi config, err %d, aq_err %d\n",
6185 ret, pf->hw.aq.asq_last_status);
6186 return -ENOENT;
6187 }
6188 memcpy(&vsi->info, &ctxt.info, sizeof(ctxt.info));
6189 vsi->info.valid_sections = 0;
6190
6191 vsi->seid = ctxt.seid;
6192 vsi->id = ctxt.vsi_number;
6193
6194 enabled_tc = i40e_pf_get_tc_map(pf);
6195
6196 /* MFP mode setup queue map and update VSI */
6197 if (pf->flags & I40E_FLAG_MFP_ENABLED) {
6198 memset(&ctxt, 0, sizeof(ctxt));
6199 ctxt.seid = pf->main_vsi_seid;
6200 ctxt.pf_num = pf->hw.pf_id;
6201 ctxt.vf_num = 0;
6202 i40e_vsi_setup_queue_map(vsi, &ctxt, enabled_tc, false);
6203 ret = i40e_aq_update_vsi_params(hw, &ctxt, NULL);
6204 if (ret) {
6205 dev_info(&pf->pdev->dev,
6206 "update vsi failed, aq_err=%d\n",
6207 pf->hw.aq.asq_last_status);
6208 ret = -ENOENT;
6209 goto err;
6210 }
6211 /* update the local VSI info queue map */
6212 i40e_vsi_update_queue_map(vsi, &ctxt);
6213 vsi->info.valid_sections = 0;
6214 } else {
6215 /* Default/Main VSI is only enabled for TC0
6216 * reconfigure it to enable all TCs that are
6217 * available on the port in SFP mode.
6218 */
6219 ret = i40e_vsi_config_tc(vsi, enabled_tc);
6220 if (ret) {
6221 dev_info(&pf->pdev->dev,
6222 "failed to configure TCs for main VSI tc_map 0x%08x, err %d, aq_err %d\n",
6223 enabled_tc, ret,
6224 pf->hw.aq.asq_last_status);
6225 ret = -ENOENT;
6226 }
6227 }
6228 break;
6229
6230 case I40E_VSI_FDIR:
6231 /* no queue mapping or actual HW VSI needed */
6232 vsi->info.valid_sections = 0;
6233 vsi->seid = 0;
6234 vsi->id = 0;
6235 i40e_vsi_setup_queue_map(vsi, &ctxt, enabled_tc, true);
6236 return 0;
6237 break;
6238
6239 case I40E_VSI_VMDQ2:
6240 ctxt.pf_num = hw->pf_id;
6241 ctxt.vf_num = 0;
6242 ctxt.uplink_seid = vsi->uplink_seid;
6243 ctxt.connection_type = 0x1; /* regular data port */
6244 ctxt.flags = I40E_AQ_VSI_TYPE_VMDQ2;
6245
6246 ctxt.info.valid_sections |= cpu_to_le16(I40E_AQ_VSI_PROP_SWITCH_VALID);
6247
6248 /* This VSI is connected to VEB so the switch_id
6249 * should be set to zero by default.
6250 */
6251 ctxt.info.switch_id = 0;
6252 ctxt.info.switch_id |= cpu_to_le16(I40E_AQ_VSI_SW_ID_FLAG_LOCAL_LB);
6253 ctxt.info.switch_id |= cpu_to_le16(I40E_AQ_VSI_SW_ID_FLAG_ALLOW_LB);
6254
6255 /* Setup the VSI tx/rx queue map for TC0 only for now */
6256 i40e_vsi_setup_queue_map(vsi, &ctxt, enabled_tc, true);
6257 break;
6258
6259 case I40E_VSI_SRIOV:
6260 ctxt.pf_num = hw->pf_id;
6261 ctxt.vf_num = vsi->vf_id + hw->func_caps.vf_base_id;
6262 ctxt.uplink_seid = vsi->uplink_seid;
6263 ctxt.connection_type = 0x1; /* regular data port */
6264 ctxt.flags = I40E_AQ_VSI_TYPE_VF;
6265
6266 ctxt.info.valid_sections |= cpu_to_le16(I40E_AQ_VSI_PROP_SWITCH_VALID);
6267
6268 /* This VSI is connected to VEB so the switch_id
6269 * should be set to zero by default.
6270 */
6271 ctxt.info.switch_id = cpu_to_le16(I40E_AQ_VSI_SW_ID_FLAG_ALLOW_LB);
6272
6273 ctxt.info.valid_sections |= cpu_to_le16(I40E_AQ_VSI_PROP_VLAN_VALID);
6274 ctxt.info.port_vlan_flags |= I40E_AQ_VSI_PVLAN_MODE_ALL;
6275 /* Setup the VSI tx/rx queue map for TC0 only for now */
6276 i40e_vsi_setup_queue_map(vsi, &ctxt, enabled_tc, true);
6277 break;
6278
6279 default:
6280 return -ENODEV;
6281 }
6282
6283 if (vsi->type != I40E_VSI_MAIN) {
6284 ret = i40e_aq_add_vsi(hw, &ctxt, NULL);
6285 if (ret) {
6286 dev_info(&vsi->back->pdev->dev,
6287 "add vsi failed, aq_err=%d\n",
6288 vsi->back->hw.aq.asq_last_status);
6289 ret = -ENOENT;
6290 goto err;
6291 }
6292 memcpy(&vsi->info, &ctxt.info, sizeof(ctxt.info));
6293 vsi->info.valid_sections = 0;
6294 vsi->seid = ctxt.seid;
6295 vsi->id = ctxt.vsi_number;
6296 }
6297
6298 /* If macvlan filters already exist, force them to get loaded */
6299 list_for_each_entry_safe(f, ftmp, &vsi->mac_filter_list, list) {
6300 f->changed = true;
6301 f_count++;
6302 }
6303 if (f_count) {
6304 vsi->flags |= I40E_VSI_FLAG_FILTER_CHANGED;
6305 pf->flags |= I40E_FLAG_FILTER_SYNC;
6306 }
6307
6308 /* Update VSI BW information */
6309 ret = i40e_vsi_get_bw_info(vsi);
6310 if (ret) {
6311 dev_info(&pf->pdev->dev,
6312 "couldn't get vsi bw info, err %d, aq_err %d\n",
6313 ret, pf->hw.aq.asq_last_status);
6314 /* VSI is already added so not tearing that up */
6315 ret = 0;
6316 }
6317
6318err:
6319 return ret;
6320}
6321
6322/**
6323 * i40e_vsi_release - Delete a VSI and free its resources
6324 * @vsi: the VSI being removed
6325 *
6326 * Returns 0 on success or < 0 on error
6327 **/
6328int i40e_vsi_release(struct i40e_vsi *vsi)
6329{
6330 struct i40e_mac_filter *f, *ftmp;
6331 struct i40e_veb *veb = NULL;
6332 struct i40e_pf *pf;
6333 u16 uplink_seid;
6334 int i, n;
6335
6336 pf = vsi->back;
6337
6338 /* release of a VEB-owner or last VSI is not allowed */
6339 if (vsi->flags & I40E_VSI_FLAG_VEB_OWNER) {
6340 dev_info(&pf->pdev->dev, "VSI %d has existing VEB %d\n",
6341 vsi->seid, vsi->uplink_seid);
6342 return -ENODEV;
6343 }
6344 if (vsi == pf->vsi[pf->lan_vsi] &&
6345 !test_bit(__I40E_DOWN, &pf->state)) {
6346 dev_info(&pf->pdev->dev, "Can't remove PF VSI\n");
6347 return -ENODEV;
6348 }
6349
6350 uplink_seid = vsi->uplink_seid;
6351 if (vsi->type != I40E_VSI_SRIOV) {
6352 if (vsi->netdev_registered) {
6353 vsi->netdev_registered = false;
6354 if (vsi->netdev) {
6355 /* results in a call to i40e_close() */
6356 unregister_netdev(vsi->netdev);
6357 free_netdev(vsi->netdev);
6358 vsi->netdev = NULL;
6359 }
6360 } else {
6361 if (!test_and_set_bit(__I40E_DOWN, &vsi->state))
6362 i40e_down(vsi);
6363 i40e_vsi_free_irq(vsi);
6364 i40e_vsi_free_tx_resources(vsi);
6365 i40e_vsi_free_rx_resources(vsi);
6366 }
6367 i40e_vsi_disable_irq(vsi);
6368 }
6369
6370 list_for_each_entry_safe(f, ftmp, &vsi->mac_filter_list, list)
6371 i40e_del_filter(vsi, f->macaddr, f->vlan,
6372 f->is_vf, f->is_netdev);
6373 i40e_sync_vsi_filters(vsi);
6374
6375 i40e_vsi_delete(vsi);
6376 i40e_vsi_free_q_vectors(vsi);
6377 i40e_vsi_clear_rings(vsi);
6378 i40e_vsi_clear(vsi);
6379
6380 /* If this was the last thing on the VEB, except for the
6381 * controlling VSI, remove the VEB, which puts the controlling
6382 * VSI onto the next level down in the switch.
6383 *
6384 * Well, okay, there's one more exception here: don't remove
6385 * the orphan VEBs yet. We'll wait for an explicit remove request
6386 * from up the network stack.
6387 */
6388 for (n = 0, i = 0; i < pf->hw.func_caps.num_vsis; i++) {
6389 if (pf->vsi[i] &&
6390 pf->vsi[i]->uplink_seid == uplink_seid &&
6391 (pf->vsi[i]->flags & I40E_VSI_FLAG_VEB_OWNER) == 0) {
6392 n++; /* count the VSIs */
6393 }
6394 }
6395 for (i = 0; i < I40E_MAX_VEB; i++) {
6396 if (!pf->veb[i])
6397 continue;
6398 if (pf->veb[i]->uplink_seid == uplink_seid)
6399 n++; /* count the VEBs */
6400 if (pf->veb[i]->seid == uplink_seid)
6401 veb = pf->veb[i];
6402 }
6403 if (n == 0 && veb && veb->uplink_seid != 0)
6404 i40e_veb_release(veb);
6405
6406 return 0;
6407}
6408
6409/**
6410 * i40e_vsi_setup_vectors - Set up the q_vectors for the given VSI
6411 * @vsi: ptr to the VSI
6412 *
6413 * This should only be called after i40e_vsi_mem_alloc() which allocates the
6414 * corresponding SW VSI structure and initializes num_queue_pairs for the
6415 * newly allocated VSI.
6416 *
6417 * Returns 0 on success or negative on failure
6418 **/
6419static int i40e_vsi_setup_vectors(struct i40e_vsi *vsi)
6420{
6421 int ret = -ENOENT;
6422 struct i40e_pf *pf = vsi->back;
6423
Alexander Duyck493fb302013-09-28 07:01:44 +00006424 if (vsi->q_vectors[0]) {
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00006425 dev_info(&pf->pdev->dev, "VSI %d has existing q_vectors\n",
6426 vsi->seid);
6427 return -EEXIST;
6428 }
6429
6430 if (vsi->base_vector) {
6431 dev_info(&pf->pdev->dev,
6432 "VSI %d has non-zero base vector %d\n",
6433 vsi->seid, vsi->base_vector);
6434 return -EEXIST;
6435 }
6436
6437 ret = i40e_alloc_q_vectors(vsi);
6438 if (ret) {
6439 dev_info(&pf->pdev->dev,
6440 "failed to allocate %d q_vector for VSI %d, ret=%d\n",
6441 vsi->num_q_vectors, vsi->seid, ret);
6442 vsi->num_q_vectors = 0;
6443 goto vector_setup_out;
6444 }
6445
Shannon Nelson958a3e32013-09-28 07:13:28 +00006446 if (vsi->num_q_vectors)
6447 vsi->base_vector = i40e_get_lump(pf, pf->irq_pile,
6448 vsi->num_q_vectors, vsi->idx);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00006449 if (vsi->base_vector < 0) {
6450 dev_info(&pf->pdev->dev,
6451 "failed to get q tracking for VSI %d, err=%d\n",
6452 vsi->seid, vsi->base_vector);
6453 i40e_vsi_free_q_vectors(vsi);
6454 ret = -ENOENT;
6455 goto vector_setup_out;
6456 }
6457
6458vector_setup_out:
6459 return ret;
6460}
6461
6462/**
Anjali Singhai Jainbc7d3382013-11-26 10:49:18 +00006463 * i40e_vsi_reinit_setup - return and reallocate resources for a VSI
6464 * @vsi: pointer to the vsi.
6465 *
6466 * This re-allocates a vsi's queue resources.
6467 *
6468 * Returns pointer to the successfully allocated and configured VSI sw struct
6469 * on success, otherwise returns NULL on failure.
6470 **/
6471static struct i40e_vsi *i40e_vsi_reinit_setup(struct i40e_vsi *vsi)
6472{
6473 struct i40e_pf *pf = vsi->back;
6474 u8 enabled_tc;
6475 int ret;
6476
6477 i40e_put_lump(pf->qp_pile, vsi->base_queue, vsi->idx);
6478 i40e_vsi_clear_rings(vsi);
6479
6480 i40e_vsi_free_arrays(vsi, false);
6481 i40e_set_num_rings_in_vsi(vsi);
6482 ret = i40e_vsi_alloc_arrays(vsi, false);
6483 if (ret)
6484 goto err_vsi;
6485
6486 ret = i40e_get_lump(pf, pf->qp_pile, vsi->alloc_queue_pairs, vsi->idx);
6487 if (ret < 0) {
6488 dev_info(&pf->pdev->dev, "VSI %d get_lump failed %d\n",
6489 vsi->seid, ret);
6490 goto err_vsi;
6491 }
6492 vsi->base_queue = ret;
6493
6494 /* Update the FW view of the VSI. Force a reset of TC and queue
6495 * layout configurations.
6496 */
6497 enabled_tc = pf->vsi[pf->lan_vsi]->tc_config.enabled_tc;
6498 pf->vsi[pf->lan_vsi]->tc_config.enabled_tc = 0;
6499 pf->vsi[pf->lan_vsi]->seid = pf->main_vsi_seid;
6500 i40e_vsi_config_tc(pf->vsi[pf->lan_vsi], enabled_tc);
6501
6502 /* assign it some queues */
6503 ret = i40e_alloc_rings(vsi);
6504 if (ret)
6505 goto err_rings;
6506
6507 /* map all of the rings to the q_vectors */
6508 i40e_vsi_map_rings_to_vectors(vsi);
6509 return vsi;
6510
6511err_rings:
6512 i40e_vsi_free_q_vectors(vsi);
6513 if (vsi->netdev_registered) {
6514 vsi->netdev_registered = false;
6515 unregister_netdev(vsi->netdev);
6516 free_netdev(vsi->netdev);
6517 vsi->netdev = NULL;
6518 }
6519 i40e_aq_delete_element(&pf->hw, vsi->seid, NULL);
6520err_vsi:
6521 i40e_vsi_clear(vsi);
6522 return NULL;
6523}
6524
6525/**
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00006526 * i40e_vsi_setup - Set up a VSI by a given type
6527 * @pf: board private structure
6528 * @type: VSI type
6529 * @uplink_seid: the switch element to link to
6530 * @param1: usage depends upon VSI type. For VF types, indicates VF id
6531 *
6532 * This allocates the sw VSI structure and its queue resources, then add a VSI
6533 * to the identified VEB.
6534 *
6535 * Returns pointer to the successfully allocated and configure VSI sw struct on
6536 * success, otherwise returns NULL on failure.
6537 **/
6538struct i40e_vsi *i40e_vsi_setup(struct i40e_pf *pf, u8 type,
6539 u16 uplink_seid, u32 param1)
6540{
6541 struct i40e_vsi *vsi = NULL;
6542 struct i40e_veb *veb = NULL;
6543 int ret, i;
6544 int v_idx;
6545
6546 /* The requested uplink_seid must be either
6547 * - the PF's port seid
6548 * no VEB is needed because this is the PF
6549 * or this is a Flow Director special case VSI
6550 * - seid of an existing VEB
6551 * - seid of a VSI that owns an existing VEB
6552 * - seid of a VSI that doesn't own a VEB
6553 * a new VEB is created and the VSI becomes the owner
6554 * - seid of the PF VSI, which is what creates the first VEB
6555 * this is a special case of the previous
6556 *
6557 * Find which uplink_seid we were given and create a new VEB if needed
6558 */
6559 for (i = 0; i < I40E_MAX_VEB; i++) {
6560 if (pf->veb[i] && pf->veb[i]->seid == uplink_seid) {
6561 veb = pf->veb[i];
6562 break;
6563 }
6564 }
6565
6566 if (!veb && uplink_seid != pf->mac_seid) {
6567
6568 for (i = 0; i < pf->hw.func_caps.num_vsis; i++) {
6569 if (pf->vsi[i] && pf->vsi[i]->seid == uplink_seid) {
6570 vsi = pf->vsi[i];
6571 break;
6572 }
6573 }
6574 if (!vsi) {
6575 dev_info(&pf->pdev->dev, "no such uplink_seid %d\n",
6576 uplink_seid);
6577 return NULL;
6578 }
6579
6580 if (vsi->uplink_seid == pf->mac_seid)
6581 veb = i40e_veb_setup(pf, 0, pf->mac_seid, vsi->seid,
6582 vsi->tc_config.enabled_tc);
6583 else if ((vsi->flags & I40E_VSI_FLAG_VEB_OWNER) == 0)
6584 veb = i40e_veb_setup(pf, 0, vsi->uplink_seid, vsi->seid,
6585 vsi->tc_config.enabled_tc);
6586
6587 for (i = 0; i < I40E_MAX_VEB && !veb; i++) {
6588 if (pf->veb[i] && pf->veb[i]->seid == vsi->uplink_seid)
6589 veb = pf->veb[i];
6590 }
6591 if (!veb) {
6592 dev_info(&pf->pdev->dev, "couldn't add VEB\n");
6593 return NULL;
6594 }
6595
6596 vsi->flags |= I40E_VSI_FLAG_VEB_OWNER;
6597 uplink_seid = veb->seid;
6598 }
6599
6600 /* get vsi sw struct */
6601 v_idx = i40e_vsi_mem_alloc(pf, type);
6602 if (v_idx < 0)
6603 goto err_alloc;
6604 vsi = pf->vsi[v_idx];
6605 vsi->type = type;
6606 vsi->veb_idx = (veb ? veb->idx : I40E_NO_VEB);
6607
6608 if (type == I40E_VSI_MAIN)
6609 pf->lan_vsi = v_idx;
6610 else if (type == I40E_VSI_SRIOV)
6611 vsi->vf_id = param1;
6612 /* assign it some queues */
6613 ret = i40e_get_lump(pf, pf->qp_pile, vsi->alloc_queue_pairs, vsi->idx);
6614 if (ret < 0) {
6615 dev_info(&pf->pdev->dev, "VSI %d get_lump failed %d\n",
6616 vsi->seid, ret);
6617 goto err_vsi;
6618 }
6619 vsi->base_queue = ret;
6620
6621 /* get a VSI from the hardware */
6622 vsi->uplink_seid = uplink_seid;
6623 ret = i40e_add_vsi(vsi);
6624 if (ret)
6625 goto err_vsi;
6626
6627 switch (vsi->type) {
6628 /* setup the netdev if needed */
6629 case I40E_VSI_MAIN:
6630 case I40E_VSI_VMDQ2:
6631 ret = i40e_config_netdev(vsi);
6632 if (ret)
6633 goto err_netdev;
6634 ret = register_netdev(vsi->netdev);
6635 if (ret)
6636 goto err_netdev;
6637 vsi->netdev_registered = true;
6638 netif_carrier_off(vsi->netdev);
6639 /* fall through */
6640
6641 case I40E_VSI_FDIR:
6642 /* set up vectors and rings if needed */
6643 ret = i40e_vsi_setup_vectors(vsi);
6644 if (ret)
6645 goto err_msix;
6646
6647 ret = i40e_alloc_rings(vsi);
6648 if (ret)
6649 goto err_rings;
6650
6651 /* map all of the rings to the q_vectors */
6652 i40e_vsi_map_rings_to_vectors(vsi);
6653
6654 i40e_vsi_reset_stats(vsi);
6655 break;
6656
6657 default:
6658 /* no netdev or rings for the other VSI types */
6659 break;
6660 }
6661
6662 return vsi;
6663
6664err_rings:
6665 i40e_vsi_free_q_vectors(vsi);
6666err_msix:
6667 if (vsi->netdev_registered) {
6668 vsi->netdev_registered = false;
6669 unregister_netdev(vsi->netdev);
6670 free_netdev(vsi->netdev);
6671 vsi->netdev = NULL;
6672 }
6673err_netdev:
6674 i40e_aq_delete_element(&pf->hw, vsi->seid, NULL);
6675err_vsi:
6676 i40e_vsi_clear(vsi);
6677err_alloc:
6678 return NULL;
6679}
6680
6681/**
6682 * i40e_veb_get_bw_info - Query VEB BW information
6683 * @veb: the veb to query
6684 *
6685 * Query the Tx scheduler BW configuration data for given VEB
6686 **/
6687static int i40e_veb_get_bw_info(struct i40e_veb *veb)
6688{
6689 struct i40e_aqc_query_switching_comp_ets_config_resp ets_data;
6690 struct i40e_aqc_query_switching_comp_bw_config_resp bw_data;
6691 struct i40e_pf *pf = veb->pf;
6692 struct i40e_hw *hw = &pf->hw;
6693 u32 tc_bw_max;
6694 int ret = 0;
6695 int i;
6696
6697 ret = i40e_aq_query_switch_comp_bw_config(hw, veb->seid,
6698 &bw_data, NULL);
6699 if (ret) {
6700 dev_info(&pf->pdev->dev,
6701 "query veb bw config failed, aq_err=%d\n",
6702 hw->aq.asq_last_status);
6703 goto out;
6704 }
6705
6706 ret = i40e_aq_query_switch_comp_ets_config(hw, veb->seid,
6707 &ets_data, NULL);
6708 if (ret) {
6709 dev_info(&pf->pdev->dev,
6710 "query veb bw ets config failed, aq_err=%d\n",
6711 hw->aq.asq_last_status);
6712 goto out;
6713 }
6714
6715 veb->bw_limit = le16_to_cpu(ets_data.port_bw_limit);
6716 veb->bw_max_quanta = ets_data.tc_bw_max;
6717 veb->is_abs_credits = bw_data.absolute_credits_enable;
6718 tc_bw_max = le16_to_cpu(bw_data.tc_bw_max[0]) |
6719 (le16_to_cpu(bw_data.tc_bw_max[1]) << 16);
6720 for (i = 0; i < I40E_MAX_TRAFFIC_CLASS; i++) {
6721 veb->bw_tc_share_credits[i] = bw_data.tc_bw_share_credits[i];
6722 veb->bw_tc_limit_credits[i] =
6723 le16_to_cpu(bw_data.tc_bw_limits[i]);
6724 veb->bw_tc_max_quanta[i] = ((tc_bw_max >> (i*4)) & 0x7);
6725 }
6726
6727out:
6728 return ret;
6729}
6730
6731/**
6732 * i40e_veb_mem_alloc - Allocates the next available struct veb in the PF
6733 * @pf: board private structure
6734 *
6735 * On error: returns error code (negative)
6736 * On success: returns vsi index in PF (positive)
6737 **/
6738static int i40e_veb_mem_alloc(struct i40e_pf *pf)
6739{
6740 int ret = -ENOENT;
6741 struct i40e_veb *veb;
6742 int i;
6743
6744 /* Need to protect the allocation of switch elements at the PF level */
6745 mutex_lock(&pf->switch_mutex);
6746
6747 /* VEB list may be fragmented if VEB creation/destruction has
6748 * been happening. We can afford to do a quick scan to look
6749 * for any free slots in the list.
6750 *
6751 * find next empty veb slot, looping back around if necessary
6752 */
6753 i = 0;
6754 while ((i < I40E_MAX_VEB) && (pf->veb[i] != NULL))
6755 i++;
6756 if (i >= I40E_MAX_VEB) {
6757 ret = -ENOMEM;
6758 goto err_alloc_veb; /* out of VEB slots! */
6759 }
6760
6761 veb = kzalloc(sizeof(*veb), GFP_KERNEL);
6762 if (!veb) {
6763 ret = -ENOMEM;
6764 goto err_alloc_veb;
6765 }
6766 veb->pf = pf;
6767 veb->idx = i;
6768 veb->enabled_tc = 1;
6769
6770 pf->veb[i] = veb;
6771 ret = i;
6772err_alloc_veb:
6773 mutex_unlock(&pf->switch_mutex);
6774 return ret;
6775}
6776
6777/**
6778 * i40e_switch_branch_release - Delete a branch of the switch tree
6779 * @branch: where to start deleting
6780 *
6781 * This uses recursion to find the tips of the branch to be
6782 * removed, deleting until we get back to and can delete this VEB.
6783 **/
6784static void i40e_switch_branch_release(struct i40e_veb *branch)
6785{
6786 struct i40e_pf *pf = branch->pf;
6787 u16 branch_seid = branch->seid;
6788 u16 veb_idx = branch->idx;
6789 int i;
6790
6791 /* release any VEBs on this VEB - RECURSION */
6792 for (i = 0; i < I40E_MAX_VEB; i++) {
6793 if (!pf->veb[i])
6794 continue;
6795 if (pf->veb[i]->uplink_seid == branch->seid)
6796 i40e_switch_branch_release(pf->veb[i]);
6797 }
6798
6799 /* Release the VSIs on this VEB, but not the owner VSI.
6800 *
6801 * NOTE: Removing the last VSI on a VEB has the SIDE EFFECT of removing
6802 * the VEB itself, so don't use (*branch) after this loop.
6803 */
6804 for (i = 0; i < pf->hw.func_caps.num_vsis; i++) {
6805 if (!pf->vsi[i])
6806 continue;
6807 if (pf->vsi[i]->uplink_seid == branch_seid &&
6808 (pf->vsi[i]->flags & I40E_VSI_FLAG_VEB_OWNER) == 0) {
6809 i40e_vsi_release(pf->vsi[i]);
6810 }
6811 }
6812
6813 /* There's one corner case where the VEB might not have been
6814 * removed, so double check it here and remove it if needed.
6815 * This case happens if the veb was created from the debugfs
6816 * commands and no VSIs were added to it.
6817 */
6818 if (pf->veb[veb_idx])
6819 i40e_veb_release(pf->veb[veb_idx]);
6820}
6821
6822/**
6823 * i40e_veb_clear - remove veb struct
6824 * @veb: the veb to remove
6825 **/
6826static void i40e_veb_clear(struct i40e_veb *veb)
6827{
6828 if (!veb)
6829 return;
6830
6831 if (veb->pf) {
6832 struct i40e_pf *pf = veb->pf;
6833
6834 mutex_lock(&pf->switch_mutex);
6835 if (pf->veb[veb->idx] == veb)
6836 pf->veb[veb->idx] = NULL;
6837 mutex_unlock(&pf->switch_mutex);
6838 }
6839
6840 kfree(veb);
6841}
6842
6843/**
6844 * i40e_veb_release - Delete a VEB and free its resources
6845 * @veb: the VEB being removed
6846 **/
6847void i40e_veb_release(struct i40e_veb *veb)
6848{
6849 struct i40e_vsi *vsi = NULL;
6850 struct i40e_pf *pf;
6851 int i, n = 0;
6852
6853 pf = veb->pf;
6854
6855 /* find the remaining VSI and check for extras */
6856 for (i = 0; i < pf->hw.func_caps.num_vsis; i++) {
6857 if (pf->vsi[i] && pf->vsi[i]->uplink_seid == veb->seid) {
6858 n++;
6859 vsi = pf->vsi[i];
6860 }
6861 }
6862 if (n != 1) {
6863 dev_info(&pf->pdev->dev,
6864 "can't remove VEB %d with %d VSIs left\n",
6865 veb->seid, n);
6866 return;
6867 }
6868
6869 /* move the remaining VSI to uplink veb */
6870 vsi->flags &= ~I40E_VSI_FLAG_VEB_OWNER;
6871 if (veb->uplink_seid) {
6872 vsi->uplink_seid = veb->uplink_seid;
6873 if (veb->uplink_seid == pf->mac_seid)
6874 vsi->veb_idx = I40E_NO_VEB;
6875 else
6876 vsi->veb_idx = veb->veb_idx;
6877 } else {
6878 /* floating VEB */
6879 vsi->uplink_seid = pf->vsi[pf->lan_vsi]->uplink_seid;
6880 vsi->veb_idx = pf->vsi[pf->lan_vsi]->veb_idx;
6881 }
6882
6883 i40e_aq_delete_element(&pf->hw, veb->seid, NULL);
6884 i40e_veb_clear(veb);
6885
6886 return;
6887}
6888
6889/**
6890 * i40e_add_veb - create the VEB in the switch
6891 * @veb: the VEB to be instantiated
6892 * @vsi: the controlling VSI
6893 **/
6894static int i40e_add_veb(struct i40e_veb *veb, struct i40e_vsi *vsi)
6895{
Greg Rose56747262013-11-28 06:39:37 +00006896 bool is_default = false;
Kevin Scotte1c51b952013-11-20 10:02:51 +00006897 bool is_cloud = false;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00006898 int ret;
6899
6900 /* get a VEB from the hardware */
6901 ret = i40e_aq_add_veb(&veb->pf->hw, veb->uplink_seid, vsi->seid,
Kevin Scotte1c51b952013-11-20 10:02:51 +00006902 veb->enabled_tc, is_default,
6903 is_cloud, &veb->seid, NULL);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00006904 if (ret) {
6905 dev_info(&veb->pf->pdev->dev,
6906 "couldn't add VEB, err %d, aq_err %d\n",
6907 ret, veb->pf->hw.aq.asq_last_status);
6908 return -EPERM;
6909 }
6910
6911 /* get statistics counter */
6912 ret = i40e_aq_get_veb_parameters(&veb->pf->hw, veb->seid, NULL, NULL,
6913 &veb->stats_idx, NULL, NULL, NULL);
6914 if (ret) {
6915 dev_info(&veb->pf->pdev->dev,
6916 "couldn't get VEB statistics idx, err %d, aq_err %d\n",
6917 ret, veb->pf->hw.aq.asq_last_status);
6918 return -EPERM;
6919 }
6920 ret = i40e_veb_get_bw_info(veb);
6921 if (ret) {
6922 dev_info(&veb->pf->pdev->dev,
6923 "couldn't get VEB bw info, err %d, aq_err %d\n",
6924 ret, veb->pf->hw.aq.asq_last_status);
6925 i40e_aq_delete_element(&veb->pf->hw, veb->seid, NULL);
6926 return -ENOENT;
6927 }
6928
6929 vsi->uplink_seid = veb->seid;
6930 vsi->veb_idx = veb->idx;
6931 vsi->flags |= I40E_VSI_FLAG_VEB_OWNER;
6932
6933 return 0;
6934}
6935
6936/**
6937 * i40e_veb_setup - Set up a VEB
6938 * @pf: board private structure
6939 * @flags: VEB setup flags
6940 * @uplink_seid: the switch element to link to
6941 * @vsi_seid: the initial VSI seid
6942 * @enabled_tc: Enabled TC bit-map
6943 *
6944 * This allocates the sw VEB structure and links it into the switch
6945 * It is possible and legal for this to be a duplicate of an already
6946 * existing VEB. It is also possible for both uplink and vsi seids
6947 * to be zero, in order to create a floating VEB.
6948 *
6949 * Returns pointer to the successfully allocated VEB sw struct on
6950 * success, otherwise returns NULL on failure.
6951 **/
6952struct i40e_veb *i40e_veb_setup(struct i40e_pf *pf, u16 flags,
6953 u16 uplink_seid, u16 vsi_seid,
6954 u8 enabled_tc)
6955{
6956 struct i40e_veb *veb, *uplink_veb = NULL;
6957 int vsi_idx, veb_idx;
6958 int ret;
6959
6960 /* if one seid is 0, the other must be 0 to create a floating relay */
6961 if ((uplink_seid == 0 || vsi_seid == 0) &&
6962 (uplink_seid + vsi_seid != 0)) {
6963 dev_info(&pf->pdev->dev,
6964 "one, not both seid's are 0: uplink=%d vsi=%d\n",
6965 uplink_seid, vsi_seid);
6966 return NULL;
6967 }
6968
6969 /* make sure there is such a vsi and uplink */
6970 for (vsi_idx = 0; vsi_idx < pf->hw.func_caps.num_vsis; vsi_idx++)
6971 if (pf->vsi[vsi_idx] && pf->vsi[vsi_idx]->seid == vsi_seid)
6972 break;
6973 if (vsi_idx >= pf->hw.func_caps.num_vsis && vsi_seid != 0) {
6974 dev_info(&pf->pdev->dev, "vsi seid %d not found\n",
6975 vsi_seid);
6976 return NULL;
6977 }
6978
6979 if (uplink_seid && uplink_seid != pf->mac_seid) {
6980 for (veb_idx = 0; veb_idx < I40E_MAX_VEB; veb_idx++) {
6981 if (pf->veb[veb_idx] &&
6982 pf->veb[veb_idx]->seid == uplink_seid) {
6983 uplink_veb = pf->veb[veb_idx];
6984 break;
6985 }
6986 }
6987 if (!uplink_veb) {
6988 dev_info(&pf->pdev->dev,
6989 "uplink seid %d not found\n", uplink_seid);
6990 return NULL;
6991 }
6992 }
6993
6994 /* get veb sw struct */
6995 veb_idx = i40e_veb_mem_alloc(pf);
6996 if (veb_idx < 0)
6997 goto err_alloc;
6998 veb = pf->veb[veb_idx];
6999 veb->flags = flags;
7000 veb->uplink_seid = uplink_seid;
7001 veb->veb_idx = (uplink_veb ? uplink_veb->idx : I40E_NO_VEB);
7002 veb->enabled_tc = (enabled_tc ? enabled_tc : 0x1);
7003
7004 /* create the VEB in the switch */
7005 ret = i40e_add_veb(veb, pf->vsi[vsi_idx]);
7006 if (ret)
7007 goto err_veb;
7008
7009 return veb;
7010
7011err_veb:
7012 i40e_veb_clear(veb);
7013err_alloc:
7014 return NULL;
7015}
7016
7017/**
7018 * i40e_setup_pf_switch_element - set pf vars based on switch type
7019 * @pf: board private structure
7020 * @ele: element we are building info from
7021 * @num_reported: total number of elements
7022 * @printconfig: should we print the contents
7023 *
7024 * helper function to assist in extracting a few useful SEID values.
7025 **/
7026static void i40e_setup_pf_switch_element(struct i40e_pf *pf,
7027 struct i40e_aqc_switch_config_element_resp *ele,
7028 u16 num_reported, bool printconfig)
7029{
7030 u16 downlink_seid = le16_to_cpu(ele->downlink_seid);
7031 u16 uplink_seid = le16_to_cpu(ele->uplink_seid);
7032 u8 element_type = ele->element_type;
7033 u16 seid = le16_to_cpu(ele->seid);
7034
7035 if (printconfig)
7036 dev_info(&pf->pdev->dev,
7037 "type=%d seid=%d uplink=%d downlink=%d\n",
7038 element_type, seid, uplink_seid, downlink_seid);
7039
7040 switch (element_type) {
7041 case I40E_SWITCH_ELEMENT_TYPE_MAC:
7042 pf->mac_seid = seid;
7043 break;
7044 case I40E_SWITCH_ELEMENT_TYPE_VEB:
7045 /* Main VEB? */
7046 if (uplink_seid != pf->mac_seid)
7047 break;
7048 if (pf->lan_veb == I40E_NO_VEB) {
7049 int v;
7050
7051 /* find existing or else empty VEB */
7052 for (v = 0; v < I40E_MAX_VEB; v++) {
7053 if (pf->veb[v] && (pf->veb[v]->seid == seid)) {
7054 pf->lan_veb = v;
7055 break;
7056 }
7057 }
7058 if (pf->lan_veb == I40E_NO_VEB) {
7059 v = i40e_veb_mem_alloc(pf);
7060 if (v < 0)
7061 break;
7062 pf->lan_veb = v;
7063 }
7064 }
7065
7066 pf->veb[pf->lan_veb]->seid = seid;
7067 pf->veb[pf->lan_veb]->uplink_seid = pf->mac_seid;
7068 pf->veb[pf->lan_veb]->pf = pf;
7069 pf->veb[pf->lan_veb]->veb_idx = I40E_NO_VEB;
7070 break;
7071 case I40E_SWITCH_ELEMENT_TYPE_VSI:
7072 if (num_reported != 1)
7073 break;
7074 /* This is immediately after a reset so we can assume this is
7075 * the PF's VSI
7076 */
7077 pf->mac_seid = uplink_seid;
7078 pf->pf_seid = downlink_seid;
7079 pf->main_vsi_seid = seid;
7080 if (printconfig)
7081 dev_info(&pf->pdev->dev,
7082 "pf_seid=%d main_vsi_seid=%d\n",
7083 pf->pf_seid, pf->main_vsi_seid);
7084 break;
7085 case I40E_SWITCH_ELEMENT_TYPE_PF:
7086 case I40E_SWITCH_ELEMENT_TYPE_VF:
7087 case I40E_SWITCH_ELEMENT_TYPE_EMP:
7088 case I40E_SWITCH_ELEMENT_TYPE_BMC:
7089 case I40E_SWITCH_ELEMENT_TYPE_PE:
7090 case I40E_SWITCH_ELEMENT_TYPE_PA:
7091 /* ignore these for now */
7092 break;
7093 default:
7094 dev_info(&pf->pdev->dev, "unknown element type=%d seid=%d\n",
7095 element_type, seid);
7096 break;
7097 }
7098}
7099
7100/**
7101 * i40e_fetch_switch_configuration - Get switch config from firmware
7102 * @pf: board private structure
7103 * @printconfig: should we print the contents
7104 *
7105 * Get the current switch configuration from the device and
7106 * extract a few useful SEID values.
7107 **/
7108int i40e_fetch_switch_configuration(struct i40e_pf *pf, bool printconfig)
7109{
7110 struct i40e_aqc_get_switch_config_resp *sw_config;
7111 u16 next_seid = 0;
7112 int ret = 0;
7113 u8 *aq_buf;
7114 int i;
7115
7116 aq_buf = kzalloc(I40E_AQ_LARGE_BUF, GFP_KERNEL);
7117 if (!aq_buf)
7118 return -ENOMEM;
7119
7120 sw_config = (struct i40e_aqc_get_switch_config_resp *)aq_buf;
7121 do {
7122 u16 num_reported, num_total;
7123
7124 ret = i40e_aq_get_switch_config(&pf->hw, sw_config,
7125 I40E_AQ_LARGE_BUF,
7126 &next_seid, NULL);
7127 if (ret) {
7128 dev_info(&pf->pdev->dev,
7129 "get switch config failed %d aq_err=%x\n",
7130 ret, pf->hw.aq.asq_last_status);
7131 kfree(aq_buf);
7132 return -ENOENT;
7133 }
7134
7135 num_reported = le16_to_cpu(sw_config->header.num_reported);
7136 num_total = le16_to_cpu(sw_config->header.num_total);
7137
7138 if (printconfig)
7139 dev_info(&pf->pdev->dev,
7140 "header: %d reported %d total\n",
7141 num_reported, num_total);
7142
7143 if (num_reported) {
7144 int sz = sizeof(*sw_config) * num_reported;
7145
7146 kfree(pf->sw_config);
7147 pf->sw_config = kzalloc(sz, GFP_KERNEL);
7148 if (pf->sw_config)
7149 memcpy(pf->sw_config, sw_config, sz);
7150 }
7151
7152 for (i = 0; i < num_reported; i++) {
7153 struct i40e_aqc_switch_config_element_resp *ele =
7154 &sw_config->element[i];
7155
7156 i40e_setup_pf_switch_element(pf, ele, num_reported,
7157 printconfig);
7158 }
7159 } while (next_seid != 0);
7160
7161 kfree(aq_buf);
7162 return ret;
7163}
7164
7165/**
7166 * i40e_setup_pf_switch - Setup the HW switch on startup or after reset
7167 * @pf: board private structure
Anjali Singhai Jainbc7d3382013-11-26 10:49:18 +00007168 * @reinit: if the Main VSI needs to re-initialized.
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007169 *
7170 * Returns 0 on success, negative value on failure
7171 **/
Anjali Singhai Jainbc7d3382013-11-26 10:49:18 +00007172static int i40e_setup_pf_switch(struct i40e_pf *pf, bool reinit)
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007173{
Jesse Brandeburg895106a2013-11-26 10:49:16 +00007174 u32 rxfc = 0, txfc = 0, rxfc_reg;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007175 int ret;
7176
7177 /* find out what's out there already */
7178 ret = i40e_fetch_switch_configuration(pf, false);
7179 if (ret) {
7180 dev_info(&pf->pdev->dev,
7181 "couldn't fetch switch config, err %d, aq_err %d\n",
7182 ret, pf->hw.aq.asq_last_status);
7183 return ret;
7184 }
7185 i40e_pf_reset_stats(pf);
7186
7187 /* fdir VSI must happen first to be sure it gets queue 0, but only
7188 * if there is enough room for the fdir VSI
7189 */
7190 if (pf->num_lan_qps > 1)
7191 i40e_fdir_setup(pf);
7192
7193 /* first time setup */
Anjali Singhai Jainbc7d3382013-11-26 10:49:18 +00007194 if (pf->lan_vsi == I40E_NO_VSI || reinit) {
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007195 struct i40e_vsi *vsi = NULL;
7196 u16 uplink_seid;
7197
7198 /* Set up the PF VSI associated with the PF's main VSI
7199 * that is already in the HW switch
7200 */
7201 if (pf->lan_veb != I40E_NO_VEB && pf->veb[pf->lan_veb])
7202 uplink_seid = pf->veb[pf->lan_veb]->seid;
7203 else
7204 uplink_seid = pf->mac_seid;
Anjali Singhai Jainbc7d3382013-11-26 10:49:18 +00007205 if (pf->lan_vsi == I40E_NO_VSI)
7206 vsi = i40e_vsi_setup(pf, I40E_VSI_MAIN, uplink_seid, 0);
7207 else if (reinit)
7208 vsi = i40e_vsi_reinit_setup(pf->vsi[pf->lan_vsi]);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007209 if (!vsi) {
7210 dev_info(&pf->pdev->dev, "setup of MAIN VSI failed\n");
7211 i40e_fdir_teardown(pf);
7212 return -EAGAIN;
7213 }
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007214 } else {
7215 /* force a reset of TC and queue layout configurations */
7216 u8 enabled_tc = pf->vsi[pf->lan_vsi]->tc_config.enabled_tc;
7217 pf->vsi[pf->lan_vsi]->tc_config.enabled_tc = 0;
7218 pf->vsi[pf->lan_vsi]->seid = pf->main_vsi_seid;
7219 i40e_vsi_config_tc(pf->vsi[pf->lan_vsi], enabled_tc);
7220 }
7221 i40e_vlan_stripping_disable(pf->vsi[pf->lan_vsi]);
7222
7223 /* Setup static PF queue filter control settings */
7224 ret = i40e_setup_pf_filter_control(pf);
7225 if (ret) {
7226 dev_info(&pf->pdev->dev, "setup_pf_filter_control failed: %d\n",
7227 ret);
7228 /* Failure here should not stop continuing other steps */
7229 }
7230
7231 /* enable RSS in the HW, even for only one queue, as the stack can use
7232 * the hash
7233 */
7234 if ((pf->flags & I40E_FLAG_RSS_ENABLED))
7235 i40e_config_rss(pf);
7236
7237 /* fill in link information and enable LSE reporting */
7238 i40e_aq_get_link_info(&pf->hw, true, NULL, NULL);
7239 i40e_link_event(pf);
7240
Jesse Brandeburgd52c20b2013-11-26 10:49:15 +00007241 /* Initialize user-specific link properties */
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007242 pf->fc_autoneg_status = ((pf->hw.phy.link_info.an_info &
7243 I40E_AQ_AN_COMPLETED) ? true : false);
Jesse Brandeburgd52c20b2013-11-26 10:49:15 +00007244 /* requested_mode is set in probe or by ethtool */
7245 if (!pf->fc_autoneg_status)
7246 goto no_autoneg;
7247
7248 if ((pf->hw.phy.link_info.an_info & I40E_AQ_LINK_PAUSE_TX) &&
7249 (pf->hw.phy.link_info.an_info & I40E_AQ_LINK_PAUSE_RX))
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007250 pf->hw.fc.current_mode = I40E_FC_FULL;
7251 else if (pf->hw.phy.link_info.an_info & I40E_AQ_LINK_PAUSE_TX)
7252 pf->hw.fc.current_mode = I40E_FC_TX_PAUSE;
7253 else if (pf->hw.phy.link_info.an_info & I40E_AQ_LINK_PAUSE_RX)
7254 pf->hw.fc.current_mode = I40E_FC_RX_PAUSE;
7255 else
Jesse Brandeburgd52c20b2013-11-26 10:49:15 +00007256 pf->hw.fc.current_mode = I40E_FC_NONE;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007257
Jesse Brandeburgd52c20b2013-11-26 10:49:15 +00007258 /* sync the flow control settings with the auto-neg values */
7259 switch (pf->hw.fc.current_mode) {
7260 case I40E_FC_FULL:
7261 txfc = 1;
7262 rxfc = 1;
7263 break;
7264 case I40E_FC_TX_PAUSE:
7265 txfc = 1;
7266 rxfc = 0;
7267 break;
7268 case I40E_FC_RX_PAUSE:
7269 txfc = 0;
7270 rxfc = 1;
7271 break;
7272 case I40E_FC_NONE:
7273 case I40E_FC_DEFAULT:
7274 txfc = 0;
7275 rxfc = 0;
7276 break;
7277 case I40E_FC_PFC:
7278 /* TBD */
7279 break;
7280 /* no default case, we have to handle all possibilities here */
7281 }
7282
7283 wr32(&pf->hw, I40E_PRTDCB_FCCFG, txfc << I40E_PRTDCB_FCCFG_TFCE_SHIFT);
7284
7285 rxfc_reg = rd32(&pf->hw, I40E_PRTDCB_MFLCN) &
7286 ~I40E_PRTDCB_MFLCN_RFCE_MASK;
7287 rxfc_reg |= (rxfc << I40E_PRTDCB_MFLCN_RFCE_SHIFT);
7288
7289 wr32(&pf->hw, I40E_PRTDCB_MFLCN, rxfc_reg);
7290
7291 goto fc_complete;
7292
7293no_autoneg:
7294 /* disable L2 flow control, user can turn it on if they wish */
7295 wr32(&pf->hw, I40E_PRTDCB_FCCFG, 0);
7296 wr32(&pf->hw, I40E_PRTDCB_MFLCN, rd32(&pf->hw, I40E_PRTDCB_MFLCN) &
7297 ~I40E_PRTDCB_MFLCN_RFCE_MASK);
7298
7299fc_complete:
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007300 return ret;
7301}
7302
7303/**
7304 * i40e_set_rss_size - helper to set rss_size
7305 * @pf: board private structure
7306 * @queues_left: how many queues
7307 */
7308static u16 i40e_set_rss_size(struct i40e_pf *pf, int queues_left)
7309{
7310 int num_tc0;
7311
7312 num_tc0 = min_t(int, queues_left, pf->rss_size_max);
Jesse Brandeburgbf051a32013-11-26 10:49:17 +00007313 num_tc0 = min_t(int, num_tc0, num_online_cpus());
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007314 num_tc0 = rounddown_pow_of_two(num_tc0);
7315
7316 return num_tc0;
7317}
7318
7319/**
7320 * i40e_determine_queue_usage - Work out queue distribution
7321 * @pf: board private structure
7322 **/
7323static void i40e_determine_queue_usage(struct i40e_pf *pf)
7324{
7325 int accum_tc_size;
7326 int queues_left;
7327
7328 pf->num_lan_qps = 0;
7329 pf->num_tc_qps = rounddown_pow_of_two(pf->num_tc_qps);
7330 accum_tc_size = (I40E_MAX_TRAFFIC_CLASS - 1) * pf->num_tc_qps;
7331
7332 /* Find the max queues to be put into basic use. We'll always be
7333 * using TC0, whether or not DCB is running, and TC0 will get the
7334 * big RSS set.
7335 */
7336 queues_left = pf->hw.func_caps.num_tx_qp;
7337
Neerav Parikh9f529872013-11-28 06:39:38 +00007338 if (!(pf->flags & I40E_FLAG_MSIX_ENABLED) ||
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007339 !(pf->flags & (I40E_FLAG_RSS_ENABLED |
7340 I40E_FLAG_FDIR_ENABLED | I40E_FLAG_DCB_ENABLED)) ||
7341 (queues_left == 1)) {
7342
7343 /* one qp for PF, no queues for anything else */
7344 queues_left = 0;
7345 pf->rss_size = pf->num_lan_qps = 1;
7346
7347 /* make sure all the fancies are disabled */
7348 pf->flags &= ~(I40E_FLAG_RSS_ENABLED |
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007349 I40E_FLAG_FDIR_ENABLED |
7350 I40E_FLAG_FDIR_ATR_ENABLED |
7351 I40E_FLAG_DCB_ENABLED |
7352 I40E_FLAG_SRIOV_ENABLED |
7353 I40E_FLAG_VMDQ_ENABLED);
7354
7355 } else if (pf->flags & I40E_FLAG_RSS_ENABLED &&
7356 !(pf->flags & I40E_FLAG_FDIR_ENABLED) &&
7357 !(pf->flags & I40E_FLAG_DCB_ENABLED)) {
7358
7359 pf->rss_size = i40e_set_rss_size(pf, queues_left);
7360
7361 queues_left -= pf->rss_size;
Anjali Singhai Jainf8ff1462013-11-26 10:49:19 +00007362 pf->num_lan_qps = pf->rss_size_max;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007363
7364 } else if (pf->flags & I40E_FLAG_RSS_ENABLED &&
7365 !(pf->flags & I40E_FLAG_FDIR_ENABLED) &&
7366 (pf->flags & I40E_FLAG_DCB_ENABLED)) {
7367
7368 /* save num_tc_qps queues for TCs 1 thru 7 and the rest
7369 * are set up for RSS in TC0
7370 */
7371 queues_left -= accum_tc_size;
7372
7373 pf->rss_size = i40e_set_rss_size(pf, queues_left);
7374
7375 queues_left -= pf->rss_size;
7376 if (queues_left < 0) {
7377 dev_info(&pf->pdev->dev, "not enough queues for DCB\n");
7378 return;
7379 }
7380
Anjali Singhai Jainf8ff1462013-11-26 10:49:19 +00007381 pf->num_lan_qps = pf->rss_size_max + accum_tc_size;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007382
7383 } else if (pf->flags & I40E_FLAG_RSS_ENABLED &&
7384 (pf->flags & I40E_FLAG_FDIR_ENABLED) &&
7385 !(pf->flags & I40E_FLAG_DCB_ENABLED)) {
7386
7387 queues_left -= 1; /* save 1 queue for FD */
7388
7389 pf->rss_size = i40e_set_rss_size(pf, queues_left);
7390
7391 queues_left -= pf->rss_size;
7392 if (queues_left < 0) {
7393 dev_info(&pf->pdev->dev, "not enough queues for Flow Director\n");
7394 return;
7395 }
7396
Anjali Singhai Jainf8ff1462013-11-26 10:49:19 +00007397 pf->num_lan_qps = pf->rss_size_max;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007398
7399 } else if (pf->flags & I40E_FLAG_RSS_ENABLED &&
7400 (pf->flags & I40E_FLAG_FDIR_ENABLED) &&
7401 (pf->flags & I40E_FLAG_DCB_ENABLED)) {
7402
7403 /* save 1 queue for TCs 1 thru 7,
7404 * 1 queue for flow director,
7405 * and the rest are set up for RSS in TC0
7406 */
7407 queues_left -= 1;
7408 queues_left -= accum_tc_size;
7409
7410 pf->rss_size = i40e_set_rss_size(pf, queues_left);
7411 queues_left -= pf->rss_size;
7412 if (queues_left < 0) {
7413 dev_info(&pf->pdev->dev, "not enough queues for DCB and Flow Director\n");
7414 return;
7415 }
7416
Anjali Singhai Jainf8ff1462013-11-26 10:49:19 +00007417 pf->num_lan_qps = pf->rss_size_max + accum_tc_size;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007418
7419 } else {
7420 dev_info(&pf->pdev->dev,
7421 "Invalid configuration, flags=0x%08llx\n", pf->flags);
7422 return;
7423 }
7424
7425 if ((pf->flags & I40E_FLAG_SRIOV_ENABLED) &&
7426 pf->num_vf_qps && pf->num_req_vfs && queues_left) {
7427 pf->num_req_vfs = min_t(int, pf->num_req_vfs, (queues_left /
7428 pf->num_vf_qps));
7429 queues_left -= (pf->num_req_vfs * pf->num_vf_qps);
7430 }
7431
7432 if ((pf->flags & I40E_FLAG_VMDQ_ENABLED) &&
7433 pf->num_vmdq_vsis && pf->num_vmdq_qps && queues_left) {
7434 pf->num_vmdq_vsis = min_t(int, pf->num_vmdq_vsis,
7435 (queues_left / pf->num_vmdq_qps));
7436 queues_left -= (pf->num_vmdq_vsis * pf->num_vmdq_qps);
7437 }
7438
Anjali Singhai Jainf8ff1462013-11-26 10:49:19 +00007439 pf->queues_left = queues_left;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007440 return;
7441}
7442
7443/**
7444 * i40e_setup_pf_filter_control - Setup PF static filter control
7445 * @pf: PF to be setup
7446 *
7447 * i40e_setup_pf_filter_control sets up a pf's initial filter control
7448 * settings. If PE/FCoE are enabled then it will also set the per PF
7449 * based filter sizes required for them. It also enables Flow director,
7450 * ethertype and macvlan type filter settings for the pf.
7451 *
7452 * Returns 0 on success, negative on failure
7453 **/
7454static int i40e_setup_pf_filter_control(struct i40e_pf *pf)
7455{
7456 struct i40e_filter_control_settings *settings = &pf->filter_settings;
7457
7458 settings->hash_lut_size = I40E_HASH_LUT_SIZE_128;
7459
7460 /* Flow Director is enabled */
7461 if (pf->flags & (I40E_FLAG_FDIR_ENABLED | I40E_FLAG_FDIR_ATR_ENABLED))
7462 settings->enable_fdir = true;
7463
7464 /* Ethtype and MACVLAN filters enabled for PF */
7465 settings->enable_ethtype = true;
7466 settings->enable_macvlan = true;
7467
7468 if (i40e_set_filter_control(&pf->hw, settings))
7469 return -ENOENT;
7470
7471 return 0;
7472}
7473
7474/**
7475 * i40e_probe - Device initialization routine
7476 * @pdev: PCI device information struct
7477 * @ent: entry in i40e_pci_tbl
7478 *
7479 * i40e_probe initializes a pf identified by a pci_dev structure.
7480 * The OS initialization, configuring of the pf private structure,
7481 * and a hardware reset occur.
7482 *
7483 * Returns 0 on success, negative on failure
7484 **/
7485static int i40e_probe(struct pci_dev *pdev, const struct pci_device_id *ent)
7486{
7487 struct i40e_driver_version dv;
7488 struct i40e_pf *pf;
7489 struct i40e_hw *hw;
Anjali Singhai Jain93cd7652013-11-20 10:03:01 +00007490 static u16 pfs_found;
Catherine Sullivand4dfb812013-11-28 06:39:21 +00007491 u16 link_status;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007492 int err = 0;
7493 u32 len;
7494
7495 err = pci_enable_device_mem(pdev);
7496 if (err)
7497 return err;
7498
7499 /* set up for high or low dma */
7500 if (!dma_set_mask(&pdev->dev, DMA_BIT_MASK(64))) {
7501 /* coherent mask for the same size will always succeed if
7502 * dma_set_mask does
7503 */
7504 dma_set_coherent_mask(&pdev->dev, DMA_BIT_MASK(64));
7505 } else if (!dma_set_mask(&pdev->dev, DMA_BIT_MASK(32))) {
7506 dma_set_coherent_mask(&pdev->dev, DMA_BIT_MASK(32));
7507 } else {
7508 dev_err(&pdev->dev, "DMA configuration failed: %d\n", err);
7509 err = -EIO;
7510 goto err_dma;
7511 }
7512
7513 /* set up pci connections */
7514 err = pci_request_selected_regions(pdev, pci_select_bars(pdev,
7515 IORESOURCE_MEM), i40e_driver_name);
7516 if (err) {
7517 dev_info(&pdev->dev,
7518 "pci_request_selected_regions failed %d\n", err);
7519 goto err_pci_reg;
7520 }
7521
7522 pci_enable_pcie_error_reporting(pdev);
7523 pci_set_master(pdev);
7524
7525 /* Now that we have a PCI connection, we need to do the
7526 * low level device setup. This is primarily setting up
7527 * the Admin Queue structures and then querying for the
7528 * device's current profile information.
7529 */
7530 pf = kzalloc(sizeof(*pf), GFP_KERNEL);
7531 if (!pf) {
7532 err = -ENOMEM;
7533 goto err_pf_alloc;
7534 }
7535 pf->next_vsi = 0;
7536 pf->pdev = pdev;
7537 set_bit(__I40E_DOWN, &pf->state);
7538
7539 hw = &pf->hw;
7540 hw->back = pf;
7541 hw->hw_addr = ioremap(pci_resource_start(pdev, 0),
7542 pci_resource_len(pdev, 0));
7543 if (!hw->hw_addr) {
7544 err = -EIO;
7545 dev_info(&pdev->dev, "ioremap(0x%04x, 0x%04x) failed: 0x%x\n",
7546 (unsigned int)pci_resource_start(pdev, 0),
7547 (unsigned int)pci_resource_len(pdev, 0), err);
7548 goto err_ioremap;
7549 }
7550 hw->vendor_id = pdev->vendor;
7551 hw->device_id = pdev->device;
7552 pci_read_config_byte(pdev, PCI_REVISION_ID, &hw->revision_id);
7553 hw->subsystem_vendor_id = pdev->subsystem_vendor;
7554 hw->subsystem_device_id = pdev->subsystem_device;
7555 hw->bus.device = PCI_SLOT(pdev->devfn);
7556 hw->bus.func = PCI_FUNC(pdev->devfn);
Anjali Singhai Jain93cd7652013-11-20 10:03:01 +00007557 pf->instance = pfs_found;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007558
Jesse Brandeburg7134f9c2013-11-26 08:56:05 +00007559 /* do a special CORER for clearing PXE mode once at init */
7560 if (hw->revision_id == 0 &&
7561 (rd32(hw, I40E_GLLAN_RCTL_0) & I40E_GLLAN_RCTL_0_PXE_MODE_MASK)) {
7562 wr32(hw, I40E_GLGEN_RTRIG, I40E_GLGEN_RTRIG_CORER_MASK);
7563 i40e_flush(hw);
7564 msleep(200);
7565 pf->corer_count++;
7566
7567 i40e_clear_pxe_mode(hw);
7568 }
7569
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007570 /* Reset here to make sure all is clean and to define PF 'n' */
7571 err = i40e_pf_reset(hw);
7572 if (err) {
7573 dev_info(&pdev->dev, "Initial pf_reset failed: %d\n", err);
7574 goto err_pf_reset;
7575 }
7576 pf->pfr_count++;
7577
7578 hw->aq.num_arq_entries = I40E_AQ_LEN;
7579 hw->aq.num_asq_entries = I40E_AQ_LEN;
7580 hw->aq.arq_buf_size = I40E_MAX_AQ_BUF_SIZE;
7581 hw->aq.asq_buf_size = I40E_MAX_AQ_BUF_SIZE;
7582 pf->adminq_work_limit = I40E_AQ_WORK_LIMIT;
7583 snprintf(pf->misc_int_name, sizeof(pf->misc_int_name) - 1,
7584 "%s-pf%d:misc",
7585 dev_driver_string(&pf->pdev->dev), pf->hw.pf_id);
7586
7587 err = i40e_init_shared_code(hw);
7588 if (err) {
7589 dev_info(&pdev->dev, "init_shared_code failed: %d\n", err);
7590 goto err_pf_reset;
7591 }
7592
Jesse Brandeburgd52c20b2013-11-26 10:49:15 +00007593 /* set up a default setting for link flow control */
7594 pf->hw.fc.requested_mode = I40E_FC_NONE;
7595
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007596 err = i40e_init_adminq(hw);
7597 dev_info(&pdev->dev, "%s\n", i40e_fw_version_str(hw));
Anjali Singhai jainfe310702013-11-16 10:00:37 +00007598 if (((hw->nvm.version & I40E_NVM_VERSION_HI_MASK)
7599 >> I40E_NVM_VERSION_HI_SHIFT) != I40E_CURRENT_NVM_VERSION_HI) {
7600 dev_info(&pdev->dev,
7601 "warning: NVM version not supported, supported version: %02x.%02x\n",
7602 I40E_CURRENT_NVM_VERSION_HI,
7603 I40E_CURRENT_NVM_VERSION_LO);
7604 }
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007605 if (err) {
7606 dev_info(&pdev->dev,
7607 "init_adminq failed: %d expecting API %02x.%02x\n",
7608 err,
7609 I40E_FW_API_VERSION_MAJOR, I40E_FW_API_VERSION_MINOR);
7610 goto err_pf_reset;
7611 }
7612
7613 err = i40e_get_capabilities(pf);
7614 if (err)
7615 goto err_adminq_setup;
7616
7617 err = i40e_sw_init(pf);
7618 if (err) {
7619 dev_info(&pdev->dev, "sw_init failed: %d\n", err);
7620 goto err_sw_init;
7621 }
7622
7623 err = i40e_init_lan_hmc(hw, hw->func_caps.num_tx_qp,
7624 hw->func_caps.num_rx_qp,
7625 pf->fcoe_hmc_cntx_num, pf->fcoe_hmc_filt_num);
7626 if (err) {
7627 dev_info(&pdev->dev, "init_lan_hmc failed: %d\n", err);
7628 goto err_init_lan_hmc;
7629 }
7630
7631 err = i40e_configure_lan_hmc(hw, I40E_HMC_MODEL_DIRECT_ONLY);
7632 if (err) {
7633 dev_info(&pdev->dev, "configure_lan_hmc failed: %d\n", err);
7634 err = -ENOENT;
7635 goto err_configure_lan_hmc;
7636 }
7637
7638 i40e_get_mac_addr(hw, hw->mac.addr);
Jesse Brandeburgf62b5062013-11-28 06:39:27 +00007639 if (!is_valid_ether_addr(hw->mac.addr)) {
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007640 dev_info(&pdev->dev, "invalid MAC address %pM\n", hw->mac.addr);
7641 err = -EIO;
7642 goto err_mac_addr;
7643 }
7644 dev_info(&pdev->dev, "MAC address: %pM\n", hw->mac.addr);
7645 memcpy(hw->mac.perm_addr, hw->mac.addr, ETH_ALEN);
7646
7647 pci_set_drvdata(pdev, pf);
7648 pci_save_state(pdev);
7649
7650 /* set up periodic task facility */
7651 setup_timer(&pf->service_timer, i40e_service_timer, (unsigned long)pf);
7652 pf->service_timer_period = HZ;
7653
7654 INIT_WORK(&pf->service_task, i40e_service_task);
7655 clear_bit(__I40E_SERVICE_SCHED, &pf->state);
7656 pf->flags |= I40E_FLAG_NEED_LINK_UPDATE;
7657 pf->link_check_timeout = jiffies;
7658
Shannon Nelson8e2773a2013-11-28 06:39:22 +00007659 /* WoL defaults to disabled */
7660 pf->wol_en = false;
7661 device_set_wakeup_enable(&pf->pdev->dev, pf->wol_en);
7662
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007663 /* set up the main switch operations */
7664 i40e_determine_queue_usage(pf);
7665 i40e_init_interrupt_scheme(pf);
7666
7667 /* Set up the *vsi struct based on the number of VSIs in the HW,
7668 * and set up our local tracking of the MAIN PF vsi.
7669 */
7670 len = sizeof(struct i40e_vsi *) * pf->hw.func_caps.num_vsis;
7671 pf->vsi = kzalloc(len, GFP_KERNEL);
Wei Yongjuned87ac02013-09-24 05:17:25 +00007672 if (!pf->vsi) {
7673 err = -ENOMEM;
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007674 goto err_switch_setup;
Wei Yongjuned87ac02013-09-24 05:17:25 +00007675 }
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007676
Anjali Singhai Jainbc7d3382013-11-26 10:49:18 +00007677 err = i40e_setup_pf_switch(pf, false);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007678 if (err) {
7679 dev_info(&pdev->dev, "setup_pf_switch failed: %d\n", err);
7680 goto err_vsis;
7681 }
7682
7683 /* The main driver is (mostly) up and happy. We need to set this state
7684 * before setting up the misc vector or we get a race and the vector
7685 * ends up disabled forever.
7686 */
7687 clear_bit(__I40E_DOWN, &pf->state);
7688
7689 /* In case of MSIX we are going to setup the misc vector right here
7690 * to handle admin queue events etc. In case of legacy and MSI
7691 * the misc functionality and queue processing is combined in
7692 * the same vector and that gets setup at open.
7693 */
7694 if (pf->flags & I40E_FLAG_MSIX_ENABLED) {
7695 err = i40e_setup_misc_vector(pf);
7696 if (err) {
7697 dev_info(&pdev->dev,
7698 "setup of misc vector failed: %d\n", err);
7699 goto err_vsis;
7700 }
7701 }
7702
7703 /* prep for VF support */
7704 if ((pf->flags & I40E_FLAG_SRIOV_ENABLED) &&
7705 (pf->flags & I40E_FLAG_MSIX_ENABLED)) {
7706 u32 val;
7707
7708 /* disable link interrupts for VFs */
7709 val = rd32(hw, I40E_PFGEN_PORTMDIO_NUM);
7710 val &= ~I40E_PFGEN_PORTMDIO_NUM_VFLINK_STAT_ENA_MASK;
7711 wr32(hw, I40E_PFGEN_PORTMDIO_NUM, val);
7712 i40e_flush(hw);
7713 }
7714
Anjali Singhai Jain93cd7652013-11-20 10:03:01 +00007715 pfs_found++;
7716
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007717 i40e_dbg_pf_init(pf);
7718
7719 /* tell the firmware that we're starting */
7720 dv.major_version = DRV_VERSION_MAJOR;
7721 dv.minor_version = DRV_VERSION_MINOR;
7722 dv.build_version = DRV_VERSION_BUILD;
7723 dv.subbuild_version = 0;
7724 i40e_aq_send_driver_version(&pf->hw, &dv, NULL);
7725
7726 /* since everything's happy, start the service_task timer */
7727 mod_timer(&pf->service_timer,
7728 round_jiffies(jiffies + pf->service_timer_period));
7729
Catherine Sullivand4dfb812013-11-28 06:39:21 +00007730 /* Get the negotiated link width and speed from PCI config space */
7731 pcie_capability_read_word(pf->pdev, PCI_EXP_LNKSTA, &link_status);
7732
7733 i40e_set_pci_config_data(hw, link_status);
7734
7735 dev_info(&pdev->dev, "PCI Express: %s %s\n",
7736 (hw->bus.speed == i40e_bus_speed_8000 ? "Speed 8.0GT/s" :
7737 hw->bus.speed == i40e_bus_speed_5000 ? "Speed 5.0GT/s" :
7738 hw->bus.speed == i40e_bus_speed_2500 ? "Speed 2.5GT/s" :
7739 "Unknown"),
7740 (hw->bus.width == i40e_bus_width_pcie_x8 ? "Width x8" :
7741 hw->bus.width == i40e_bus_width_pcie_x4 ? "Width x4" :
7742 hw->bus.width == i40e_bus_width_pcie_x2 ? "Width x2" :
7743 hw->bus.width == i40e_bus_width_pcie_x1 ? "Width x1" :
7744 "Unknown"));
7745
7746 if (hw->bus.width < i40e_bus_width_pcie_x8 ||
7747 hw->bus.speed < i40e_bus_speed_8000) {
7748 dev_warn(&pdev->dev, "PCI-Express bandwidth available for this device may be insufficient for optimal performance.\n");
7749 dev_warn(&pdev->dev, "Please move the device to a different PCI-e link with more lanes and/or higher transfer rate.\n");
7750 }
7751
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007752 return 0;
7753
7754 /* Unwind what we've done if something failed in the setup */
7755err_vsis:
7756 set_bit(__I40E_DOWN, &pf->state);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007757 i40e_clear_interrupt_scheme(pf);
7758 kfree(pf->vsi);
Shannon Nelson04b03012013-11-28 06:39:34 +00007759err_switch_setup:
7760 i40e_reset_interrupt_capability(pf);
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007761 del_timer_sync(&pf->service_timer);
7762err_mac_addr:
7763err_configure_lan_hmc:
7764 (void)i40e_shutdown_lan_hmc(hw);
7765err_init_lan_hmc:
7766 kfree(pf->qp_pile);
7767 kfree(pf->irq_pile);
7768err_sw_init:
7769err_adminq_setup:
7770 (void)i40e_shutdown_adminq(hw);
7771err_pf_reset:
7772 iounmap(hw->hw_addr);
7773err_ioremap:
7774 kfree(pf);
7775err_pf_alloc:
7776 pci_disable_pcie_error_reporting(pdev);
7777 pci_release_selected_regions(pdev,
7778 pci_select_bars(pdev, IORESOURCE_MEM));
7779err_pci_reg:
7780err_dma:
7781 pci_disable_device(pdev);
7782 return err;
7783}
7784
7785/**
7786 * i40e_remove - Device removal routine
7787 * @pdev: PCI device information struct
7788 *
7789 * i40e_remove is called by the PCI subsystem to alert the driver
7790 * that is should release a PCI device. This could be caused by a
7791 * Hot-Plug event, or because the driver is going to be removed from
7792 * memory.
7793 **/
7794static void i40e_remove(struct pci_dev *pdev)
7795{
7796 struct i40e_pf *pf = pci_get_drvdata(pdev);
7797 i40e_status ret_code;
7798 u32 reg;
7799 int i;
7800
7801 i40e_dbg_pf_exit(pf);
7802
7803 if (pf->flags & I40E_FLAG_SRIOV_ENABLED) {
7804 i40e_free_vfs(pf);
7805 pf->flags &= ~I40E_FLAG_SRIOV_ENABLED;
7806 }
7807
7808 /* no more scheduling of any task */
7809 set_bit(__I40E_DOWN, &pf->state);
7810 del_timer_sync(&pf->service_timer);
7811 cancel_work_sync(&pf->service_task);
7812
7813 i40e_fdir_teardown(pf);
7814
7815 /* If there is a switch structure or any orphans, remove them.
7816 * This will leave only the PF's VSI remaining.
7817 */
7818 for (i = 0; i < I40E_MAX_VEB; i++) {
7819 if (!pf->veb[i])
7820 continue;
7821
7822 if (pf->veb[i]->uplink_seid == pf->mac_seid ||
7823 pf->veb[i]->uplink_seid == 0)
7824 i40e_switch_branch_release(pf->veb[i]);
7825 }
7826
7827 /* Now we can shutdown the PF's VSI, just before we kill
7828 * adminq and hmc.
7829 */
7830 if (pf->vsi[pf->lan_vsi])
7831 i40e_vsi_release(pf->vsi[pf->lan_vsi]);
7832
7833 i40e_stop_misc_vector(pf);
7834 if (pf->flags & I40E_FLAG_MSIX_ENABLED) {
7835 synchronize_irq(pf->msix_entries[0].vector);
7836 free_irq(pf->msix_entries[0].vector, pf);
7837 }
7838
7839 /* shutdown and destroy the HMC */
7840 ret_code = i40e_shutdown_lan_hmc(&pf->hw);
7841 if (ret_code)
7842 dev_warn(&pdev->dev,
7843 "Failed to destroy the HMC resources: %d\n", ret_code);
7844
7845 /* shutdown the adminq */
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007846 ret_code = i40e_shutdown_adminq(&pf->hw);
7847 if (ret_code)
7848 dev_warn(&pdev->dev,
7849 "Failed to destroy the Admin Queue resources: %d\n",
7850 ret_code);
7851
7852 /* Clear all dynamic memory lists of rings, q_vectors, and VSIs */
7853 i40e_clear_interrupt_scheme(pf);
7854 for (i = 0; i < pf->hw.func_caps.num_vsis; i++) {
7855 if (pf->vsi[i]) {
7856 i40e_vsi_clear_rings(pf->vsi[i]);
7857 i40e_vsi_clear(pf->vsi[i]);
7858 pf->vsi[i] = NULL;
7859 }
7860 }
7861
7862 for (i = 0; i < I40E_MAX_VEB; i++) {
7863 kfree(pf->veb[i]);
7864 pf->veb[i] = NULL;
7865 }
7866
7867 kfree(pf->qp_pile);
7868 kfree(pf->irq_pile);
7869 kfree(pf->sw_config);
7870 kfree(pf->vsi);
7871
7872 /* force a PF reset to clean anything leftover */
7873 reg = rd32(&pf->hw, I40E_PFGEN_CTRL);
7874 wr32(&pf->hw, I40E_PFGEN_CTRL, (reg | I40E_PFGEN_CTRL_PFSWR_MASK));
7875 i40e_flush(&pf->hw);
7876
7877 iounmap(pf->hw.hw_addr);
7878 kfree(pf);
7879 pci_release_selected_regions(pdev,
7880 pci_select_bars(pdev, IORESOURCE_MEM));
7881
7882 pci_disable_pcie_error_reporting(pdev);
7883 pci_disable_device(pdev);
7884}
7885
7886/**
7887 * i40e_pci_error_detected - warning that something funky happened in PCI land
7888 * @pdev: PCI device information struct
7889 *
7890 * Called to warn that something happened and the error handling steps
7891 * are in progress. Allows the driver to quiesce things, be ready for
7892 * remediation.
7893 **/
7894static pci_ers_result_t i40e_pci_error_detected(struct pci_dev *pdev,
7895 enum pci_channel_state error)
7896{
7897 struct i40e_pf *pf = pci_get_drvdata(pdev);
7898
7899 dev_info(&pdev->dev, "%s: error %d\n", __func__, error);
7900
7901 /* shutdown all operations */
Shannon Nelson9007bcc2013-11-26 10:49:23 +00007902 if (!test_bit(__I40E_SUSPENDED, &pf->state)) {
7903 rtnl_lock();
7904 i40e_prep_for_reset(pf);
7905 rtnl_unlock();
7906 }
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007907
7908 /* Request a slot reset */
7909 return PCI_ERS_RESULT_NEED_RESET;
7910}
7911
7912/**
7913 * i40e_pci_error_slot_reset - a PCI slot reset just happened
7914 * @pdev: PCI device information struct
7915 *
7916 * Called to find if the driver can work with the device now that
7917 * the pci slot has been reset. If a basic connection seems good
7918 * (registers are readable and have sane content) then return a
7919 * happy little PCI_ERS_RESULT_xxx.
7920 **/
7921static pci_ers_result_t i40e_pci_error_slot_reset(struct pci_dev *pdev)
7922{
7923 struct i40e_pf *pf = pci_get_drvdata(pdev);
7924 pci_ers_result_t result;
7925 int err;
7926 u32 reg;
7927
7928 dev_info(&pdev->dev, "%s\n", __func__);
7929 if (pci_enable_device_mem(pdev)) {
7930 dev_info(&pdev->dev,
7931 "Cannot re-enable PCI device after reset.\n");
7932 result = PCI_ERS_RESULT_DISCONNECT;
7933 } else {
7934 pci_set_master(pdev);
7935 pci_restore_state(pdev);
7936 pci_save_state(pdev);
7937 pci_wake_from_d3(pdev, false);
7938
7939 reg = rd32(&pf->hw, I40E_GLGEN_RTRIG);
7940 if (reg == 0)
7941 result = PCI_ERS_RESULT_RECOVERED;
7942 else
7943 result = PCI_ERS_RESULT_DISCONNECT;
7944 }
7945
7946 err = pci_cleanup_aer_uncorrect_error_status(pdev);
7947 if (err) {
7948 dev_info(&pdev->dev,
7949 "pci_cleanup_aer_uncorrect_error_status failed 0x%0x\n",
7950 err);
7951 /* non-fatal, continue */
7952 }
7953
7954 return result;
7955}
7956
7957/**
7958 * i40e_pci_error_resume - restart operations after PCI error recovery
7959 * @pdev: PCI device information struct
7960 *
7961 * Called to allow the driver to bring things back up after PCI error
7962 * and/or reset recovery has finished.
7963 **/
7964static void i40e_pci_error_resume(struct pci_dev *pdev)
7965{
7966 struct i40e_pf *pf = pci_get_drvdata(pdev);
7967
7968 dev_info(&pdev->dev, "%s\n", __func__);
Shannon Nelson9007bcc2013-11-26 10:49:23 +00007969 if (test_bit(__I40E_SUSPENDED, &pf->state))
7970 return;
7971
7972 rtnl_lock();
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007973 i40e_handle_reset_warning(pf);
Shannon Nelson9007bcc2013-11-26 10:49:23 +00007974 rtnl_lock();
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00007975}
7976
Shannon Nelson9007bcc2013-11-26 10:49:23 +00007977/**
7978 * i40e_shutdown - PCI callback for shutting down
7979 * @pdev: PCI device information struct
7980 **/
7981static void i40e_shutdown(struct pci_dev *pdev)
7982{
7983 struct i40e_pf *pf = pci_get_drvdata(pdev);
Shannon Nelson8e2773a2013-11-28 06:39:22 +00007984 struct i40e_hw *hw = &pf->hw;
Shannon Nelson9007bcc2013-11-26 10:49:23 +00007985
7986 set_bit(__I40E_SUSPENDED, &pf->state);
7987 set_bit(__I40E_DOWN, &pf->state);
7988 rtnl_lock();
7989 i40e_prep_for_reset(pf);
7990 rtnl_unlock();
7991
Shannon Nelson8e2773a2013-11-28 06:39:22 +00007992 wr32(hw, I40E_PFPM_APM, (pf->wol_en ? I40E_PFPM_APM_APME_MASK : 0));
7993 wr32(hw, I40E_PFPM_WUFC, (pf->wol_en ? I40E_PFPM_WUFC_MAG_MASK : 0));
7994
Shannon Nelson9007bcc2013-11-26 10:49:23 +00007995 if (system_state == SYSTEM_POWER_OFF) {
Shannon Nelson8e2773a2013-11-28 06:39:22 +00007996 pci_wake_from_d3(pdev, pf->wol_en);
Shannon Nelson9007bcc2013-11-26 10:49:23 +00007997 pci_set_power_state(pdev, PCI_D3hot);
7998 }
7999}
8000
8001#ifdef CONFIG_PM
8002/**
8003 * i40e_suspend - PCI callback for moving to D3
8004 * @pdev: PCI device information struct
8005 **/
8006static int i40e_suspend(struct pci_dev *pdev, pm_message_t state)
8007{
8008 struct i40e_pf *pf = pci_get_drvdata(pdev);
Shannon Nelson8e2773a2013-11-28 06:39:22 +00008009 struct i40e_hw *hw = &pf->hw;
Shannon Nelson9007bcc2013-11-26 10:49:23 +00008010
8011 set_bit(__I40E_SUSPENDED, &pf->state);
8012 set_bit(__I40E_DOWN, &pf->state);
8013 rtnl_lock();
8014 i40e_prep_for_reset(pf);
8015 rtnl_unlock();
8016
Shannon Nelson8e2773a2013-11-28 06:39:22 +00008017 wr32(hw, I40E_PFPM_APM, (pf->wol_en ? I40E_PFPM_APM_APME_MASK : 0));
8018 wr32(hw, I40E_PFPM_WUFC, (pf->wol_en ? I40E_PFPM_WUFC_MAG_MASK : 0));
8019
8020 pci_wake_from_d3(pdev, pf->wol_en);
Shannon Nelson9007bcc2013-11-26 10:49:23 +00008021 pci_set_power_state(pdev, PCI_D3hot);
8022
8023 return 0;
8024}
8025
8026/**
8027 * i40e_resume - PCI callback for waking up from D3
8028 * @pdev: PCI device information struct
8029 **/
8030static int i40e_resume(struct pci_dev *pdev)
8031{
8032 struct i40e_pf *pf = pci_get_drvdata(pdev);
8033 u32 err;
8034
8035 pci_set_power_state(pdev, PCI_D0);
8036 pci_restore_state(pdev);
8037 /* pci_restore_state() clears dev->state_saves, so
8038 * call pci_save_state() again to restore it.
8039 */
8040 pci_save_state(pdev);
8041
8042 err = pci_enable_device_mem(pdev);
8043 if (err) {
8044 dev_err(&pdev->dev,
8045 "%s: Cannot enable PCI device from suspend\n",
8046 __func__);
8047 return err;
8048 }
8049 pci_set_master(pdev);
8050
8051 /* no wakeup events while running */
8052 pci_wake_from_d3(pdev, false);
8053
8054 /* handling the reset will rebuild the device state */
8055 if (test_and_clear_bit(__I40E_SUSPENDED, &pf->state)) {
8056 clear_bit(__I40E_DOWN, &pf->state);
8057 rtnl_lock();
8058 i40e_reset_and_rebuild(pf, false);
8059 rtnl_unlock();
8060 }
8061
8062 return 0;
8063}
8064
8065#endif
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00008066static const struct pci_error_handlers i40e_err_handler = {
8067 .error_detected = i40e_pci_error_detected,
8068 .slot_reset = i40e_pci_error_slot_reset,
8069 .resume = i40e_pci_error_resume,
8070};
8071
8072static struct pci_driver i40e_driver = {
8073 .name = i40e_driver_name,
8074 .id_table = i40e_pci_tbl,
8075 .probe = i40e_probe,
8076 .remove = i40e_remove,
Shannon Nelson9007bcc2013-11-26 10:49:23 +00008077#ifdef CONFIG_PM
8078 .suspend = i40e_suspend,
8079 .resume = i40e_resume,
8080#endif
8081 .shutdown = i40e_shutdown,
Jesse Brandeburg41c445f2013-09-11 08:39:46 +00008082 .err_handler = &i40e_err_handler,
8083 .sriov_configure = i40e_pci_sriov_configure,
8084};
8085
8086/**
8087 * i40e_init_module - Driver registration routine
8088 *
8089 * i40e_init_module is the first routine called when the driver is
8090 * loaded. All it does is register with the PCI subsystem.
8091 **/
8092static int __init i40e_init_module(void)
8093{
8094 pr_info("%s: %s - version %s\n", i40e_driver_name,
8095 i40e_driver_string, i40e_driver_version_str);
8096 pr_info("%s: %s\n", i40e_driver_name, i40e_copyright);
8097 i40e_dbg_init();
8098 return pci_register_driver(&i40e_driver);
8099}
8100module_init(i40e_init_module);
8101
8102/**
8103 * i40e_exit_module - Driver exit cleanup routine
8104 *
8105 * i40e_exit_module is called just before the driver is removed
8106 * from memory.
8107 **/
8108static void __exit i40e_exit_module(void)
8109{
8110 pci_unregister_driver(&i40e_driver);
8111 i40e_dbg_exit();
8112}
8113module_exit(i40e_exit_module);