1 // SPDX-License-Identifier: GPL-2.0
2 /* Copyright(c) 2013 - 2018 Intel Corporation. */
4 #include <linux/bitfield.h>
5 #include <linux/uaccess.h>
7 /* ethtool support for iavf */
10 /* ethtool statistics helpers */
13 * struct iavf_stats - definition for an ethtool statistic
14 * @stat_string: statistic name to display in ethtool -S output
15 * @sizeof_stat: the sizeof() the stat, must be no greater than sizeof(u64)
16 * @stat_offset: offsetof() the stat from a base pointer
18 * This structure defines a statistic to be added to the ethtool stats buffer.
19 * It defines a statistic as offset from a common base pointer. Stats should
20 * be defined in constant arrays using the IAVF_STAT macro, with every element
21 * of the array using the same _type for calculating the sizeof_stat and
24 * The @sizeof_stat is expected to be sizeof(u8), sizeof(u16), sizeof(u32) or
25 * sizeof(u64). Other sizes are not expected and will produce a WARN_ONCE from
26 * the iavf_add_ethtool_stat() helper function.
28 * The @stat_string is interpreted as a format string, allowing formatted
29 * values to be inserted while looping over multiple structures for a given
30 * statistics array. Thus, every statistic string in an array should have the
31 * same type and number of format specifiers, to be formatted by variadic
32 * arguments to the iavf_add_stat_string() helper function.
35 char stat_string
[ETH_GSTRING_LEN
];
40 /* Helper macro to define an iavf_stat structure with proper size and type.
41 * Use this when defining constant statistics arrays. Note that @_type expects
42 * only a type name and is used multiple times.
44 #define IAVF_STAT(_type, _name, _stat) { \
45 .stat_string = _name, \
46 .sizeof_stat = sizeof_field(_type, _stat), \
47 .stat_offset = offsetof(_type, _stat) \
50 /* Helper macro for defining some statistics related to queues */
51 #define IAVF_QUEUE_STAT(_name, _stat) \
52 IAVF_STAT(struct iavf_ring, _name, _stat)
54 /* Stats associated with a Tx or Rx ring */
55 static const struct iavf_stats iavf_gstrings_queue_stats
[] = {
56 IAVF_QUEUE_STAT("%s-%u.packets", stats
.packets
),
57 IAVF_QUEUE_STAT("%s-%u.bytes", stats
.bytes
),
61 * iavf_add_one_ethtool_stat - copy the stat into the supplied buffer
62 * @data: location to store the stat value
63 * @pointer: basis for where to copy from
64 * @stat: the stat definition
66 * Copies the stat data defined by the pointer and stat structure pair into
67 * the memory supplied as data. Used to implement iavf_add_ethtool_stats and
68 * iavf_add_queue_stats. If the pointer is null, data will be zero'd.
71 iavf_add_one_ethtool_stat(u64
*data
, void *pointer
,
72 const struct iavf_stats
*stat
)
77 /* ensure that the ethtool data buffer is zero'd for any stats
78 * which don't have a valid pointer.
84 p
= (char *)pointer
+ stat
->stat_offset
;
85 switch (stat
->sizeof_stat
) {
99 WARN_ONCE(1, "unexpected stat size for %s",
106 * __iavf_add_ethtool_stats - copy stats into the ethtool supplied buffer
107 * @data: ethtool stats buffer
108 * @pointer: location to copy stats from
109 * @stats: array of stats to copy
110 * @size: the size of the stats definition
112 * Copy the stats defined by the stats array using the pointer as a base into
113 * the data buffer supplied by ethtool. Updates the data pointer to point to
114 * the next empty location for successive calls to __iavf_add_ethtool_stats.
115 * If pointer is null, set the data values to zero and update the pointer to
119 __iavf_add_ethtool_stats(u64
**data
, void *pointer
,
120 const struct iavf_stats stats
[],
121 const unsigned int size
)
125 for (i
= 0; i
< size
; i
++)
126 iavf_add_one_ethtool_stat((*data
)++, pointer
, &stats
[i
]);
130 * iavf_add_ethtool_stats - copy stats into ethtool supplied buffer
131 * @data: ethtool stats buffer
132 * @pointer: location where stats are stored
133 * @stats: static const array of stat definitions
135 * Macro to ease the use of __iavf_add_ethtool_stats by taking a static
136 * constant stats array and passing the ARRAY_SIZE(). This avoids typos by
137 * ensuring that we pass the size associated with the given stats array.
139 * The parameter @stats is evaluated twice, so parameters with side effects
142 #define iavf_add_ethtool_stats(data, pointer, stats) \
143 __iavf_add_ethtool_stats(data, pointer, stats, ARRAY_SIZE(stats))
146 * iavf_add_queue_stats - copy queue statistics into supplied buffer
147 * @data: ethtool stats buffer
148 * @ring: the ring to copy
150 * Queue statistics must be copied while protected by
151 * u64_stats_fetch_begin, so we can't directly use iavf_add_ethtool_stats.
152 * Assumes that queue stats are defined in iavf_gstrings_queue_stats. If the
153 * ring pointer is null, zero out the queue stat values and update the data
154 * pointer. Otherwise safely copy the stats from the ring into the supplied
155 * buffer and update the data pointer when finished.
157 * This function expects to be called while under rcu_read_lock().
160 iavf_add_queue_stats(u64
**data
, struct iavf_ring
*ring
)
162 const unsigned int size
= ARRAY_SIZE(iavf_gstrings_queue_stats
);
163 const struct iavf_stats
*stats
= iavf_gstrings_queue_stats
;
167 /* To avoid invalid statistics values, ensure that we keep retrying
168 * the copy until we get a consistent value according to
169 * u64_stats_fetch_retry. But first, make sure our ring is
170 * non-null before attempting to access its syncp.
173 start
= !ring
? 0 : u64_stats_fetch_begin(&ring
->syncp
);
174 for (i
= 0; i
< size
; i
++)
175 iavf_add_one_ethtool_stat(&(*data
)[i
], ring
, &stats
[i
]);
176 } while (ring
&& u64_stats_fetch_retry(&ring
->syncp
, start
));
178 /* Once we successfully copy the stats in, update the data pointer */
183 * __iavf_add_stat_strings - copy stat strings into ethtool buffer
184 * @p: ethtool supplied buffer
185 * @stats: stat definitions array
186 * @size: size of the stats array
188 * Format and copy the strings described by stats into the buffer pointed at
191 static void __iavf_add_stat_strings(u8
**p
, const struct iavf_stats stats
[],
192 const unsigned int size
, ...)
196 for (i
= 0; i
< size
; i
++) {
199 va_start(args
, size
);
200 vsnprintf(*p
, ETH_GSTRING_LEN
, stats
[i
].stat_string
, args
);
201 *p
+= ETH_GSTRING_LEN
;
207 * iavf_add_stat_strings - copy stat strings into ethtool buffer
208 * @p: ethtool supplied buffer
209 * @stats: stat definitions array
211 * Format and copy the strings described by the const static stats value into
212 * the buffer pointed at by p.
214 * The parameter @stats is evaluated twice, so parameters with side effects
215 * should be avoided. Additionally, stats must be an array such that
216 * ARRAY_SIZE can be called on it.
218 #define iavf_add_stat_strings(p, stats, ...) \
219 __iavf_add_stat_strings(p, stats, ARRAY_SIZE(stats), ## __VA_ARGS__)
221 #define VF_STAT(_name, _stat) \
222 IAVF_STAT(struct iavf_adapter, _name, _stat)
224 static const struct iavf_stats iavf_gstrings_stats
[] = {
225 VF_STAT("rx_bytes", current_stats
.rx_bytes
),
226 VF_STAT("rx_unicast", current_stats
.rx_unicast
),
227 VF_STAT("rx_multicast", current_stats
.rx_multicast
),
228 VF_STAT("rx_broadcast", current_stats
.rx_broadcast
),
229 VF_STAT("rx_discards", current_stats
.rx_discards
),
230 VF_STAT("rx_unknown_protocol", current_stats
.rx_unknown_protocol
),
231 VF_STAT("tx_bytes", current_stats
.tx_bytes
),
232 VF_STAT("tx_unicast", current_stats
.tx_unicast
),
233 VF_STAT("tx_multicast", current_stats
.tx_multicast
),
234 VF_STAT("tx_broadcast", current_stats
.tx_broadcast
),
235 VF_STAT("tx_discards", current_stats
.tx_discards
),
236 VF_STAT("tx_errors", current_stats
.tx_errors
),
239 #define IAVF_STATS_LEN ARRAY_SIZE(iavf_gstrings_stats)
241 #define IAVF_QUEUE_STATS_LEN ARRAY_SIZE(iavf_gstrings_queue_stats)
244 * iavf_get_link_ksettings - Get Link Speed and Duplex settings
245 * @netdev: network interface device structure
246 * @cmd: ethtool command
248 * Reports speed/duplex settings. Because this is a VF, we don't know what
249 * kind of link we really have, so we fake it.
251 static int iavf_get_link_ksettings(struct net_device
*netdev
,
252 struct ethtool_link_ksettings
*cmd
)
254 struct iavf_adapter
*adapter
= netdev_priv(netdev
);
256 ethtool_link_ksettings_zero_link_mode(cmd
, supported
);
257 cmd
->base
.autoneg
= AUTONEG_DISABLE
;
258 cmd
->base
.port
= PORT_NONE
;
259 cmd
->base
.duplex
= DUPLEX_FULL
;
261 if (ADV_LINK_SUPPORT(adapter
)) {
262 if (adapter
->link_speed_mbps
&&
263 adapter
->link_speed_mbps
< U32_MAX
)
264 cmd
->base
.speed
= adapter
->link_speed_mbps
;
266 cmd
->base
.speed
= SPEED_UNKNOWN
;
271 switch (adapter
->link_speed
) {
272 case VIRTCHNL_LINK_SPEED_40GB
:
273 cmd
->base
.speed
= SPEED_40000
;
275 case VIRTCHNL_LINK_SPEED_25GB
:
276 cmd
->base
.speed
= SPEED_25000
;
278 case VIRTCHNL_LINK_SPEED_20GB
:
279 cmd
->base
.speed
= SPEED_20000
;
281 case VIRTCHNL_LINK_SPEED_10GB
:
282 cmd
->base
.speed
= SPEED_10000
;
284 case VIRTCHNL_LINK_SPEED_5GB
:
285 cmd
->base
.speed
= SPEED_5000
;
287 case VIRTCHNL_LINK_SPEED_2_5GB
:
288 cmd
->base
.speed
= SPEED_2500
;
290 case VIRTCHNL_LINK_SPEED_1GB
:
291 cmd
->base
.speed
= SPEED_1000
;
293 case VIRTCHNL_LINK_SPEED_100MB
:
294 cmd
->base
.speed
= SPEED_100
;
304 * iavf_get_sset_count - Get length of string set
305 * @netdev: network interface device structure
306 * @sset: id of string set
308 * Reports size of various string tables.
310 static int iavf_get_sset_count(struct net_device
*netdev
, int sset
)
312 /* Report the maximum number queues, even if not every queue is
313 * currently configured. Since allocation of queues is in pairs,
314 * use netdev->real_num_tx_queues * 2. The real_num_tx_queues is set
315 * at device creation and never changes.
318 if (sset
== ETH_SS_STATS
)
319 return IAVF_STATS_LEN
+
320 (IAVF_QUEUE_STATS_LEN
* 2 *
321 netdev
->real_num_tx_queues
);
327 * iavf_get_ethtool_stats - report device statistics
328 * @netdev: network interface device structure
329 * @stats: ethtool statistics structure
330 * @data: pointer to data buffer
332 * All statistics are added to the data buffer as an array of u64.
334 static void iavf_get_ethtool_stats(struct net_device
*netdev
,
335 struct ethtool_stats
*stats
, u64
*data
)
337 struct iavf_adapter
*adapter
= netdev_priv(netdev
);
340 /* Explicitly request stats refresh */
341 iavf_schedule_aq_request(adapter
, IAVF_FLAG_AQ_REQUEST_STATS
);
343 iavf_add_ethtool_stats(&data
, adapter
, iavf_gstrings_stats
);
346 /* As num_active_queues describe both tx and rx queues, we can use
347 * it to iterate over rings' stats.
349 for (i
= 0; i
< adapter
->num_active_queues
; i
++) {
350 struct iavf_ring
*ring
;
353 ring
= &adapter
->tx_rings
[i
];
354 iavf_add_queue_stats(&data
, ring
);
357 ring
= &adapter
->rx_rings
[i
];
358 iavf_add_queue_stats(&data
, ring
);
364 * iavf_get_stat_strings - Get stat strings
365 * @netdev: network interface device structure
366 * @data: buffer for string data
368 * Builds the statistics string table
370 static void iavf_get_stat_strings(struct net_device
*netdev
, u8
*data
)
374 iavf_add_stat_strings(&data
, iavf_gstrings_stats
);
376 /* Queues are always allocated in pairs, so we just use
377 * real_num_tx_queues for both Tx and Rx queues.
379 for (i
= 0; i
< netdev
->real_num_tx_queues
; i
++) {
380 iavf_add_stat_strings(&data
, iavf_gstrings_queue_stats
,
382 iavf_add_stat_strings(&data
, iavf_gstrings_queue_stats
,
388 * iavf_get_strings - Get string set
389 * @netdev: network interface device structure
390 * @sset: id of string set
391 * @data: buffer for string data
393 * Builds string tables for various string sets
395 static void iavf_get_strings(struct net_device
*netdev
, u32 sset
, u8
*data
)
399 iavf_get_stat_strings(netdev
, data
);
407 * iavf_get_msglevel - Get debug message level
408 * @netdev: network interface device structure
410 * Returns current debug message level.
412 static u32
iavf_get_msglevel(struct net_device
*netdev
)
414 struct iavf_adapter
*adapter
= netdev_priv(netdev
);
416 return adapter
->msg_enable
;
420 * iavf_set_msglevel - Set debug message level
421 * @netdev: network interface device structure
422 * @data: message level
424 * Set current debug message level. Higher values cause the driver to
427 static void iavf_set_msglevel(struct net_device
*netdev
, u32 data
)
429 struct iavf_adapter
*adapter
= netdev_priv(netdev
);
431 if (IAVF_DEBUG_USER
& data
)
432 adapter
->hw
.debug_mask
= data
;
433 adapter
->msg_enable
= data
;
437 * iavf_get_drvinfo - Get driver info
438 * @netdev: network interface device structure
439 * @drvinfo: ethool driver info structure
441 * Returns information about the driver and device for display to the user.
443 static void iavf_get_drvinfo(struct net_device
*netdev
,
444 struct ethtool_drvinfo
*drvinfo
)
446 struct iavf_adapter
*adapter
= netdev_priv(netdev
);
448 strscpy(drvinfo
->driver
, iavf_driver_name
, 32);
449 strscpy(drvinfo
->fw_version
, "N/A", 4);
450 strscpy(drvinfo
->bus_info
, pci_name(adapter
->pdev
), 32);
454 * iavf_get_ringparam - Get ring parameters
455 * @netdev: network interface device structure
456 * @ring: ethtool ringparam structure
457 * @kernel_ring: ethtool extenal ringparam structure
458 * @extack: netlink extended ACK report struct
460 * Returns current ring parameters. TX and RX rings are reported separately,
461 * but the number of rings is not reported.
463 static void iavf_get_ringparam(struct net_device
*netdev
,
464 struct ethtool_ringparam
*ring
,
465 struct kernel_ethtool_ringparam
*kernel_ring
,
466 struct netlink_ext_ack
*extack
)
468 struct iavf_adapter
*adapter
= netdev_priv(netdev
);
470 ring
->rx_max_pending
= IAVF_MAX_RXD
;
471 ring
->tx_max_pending
= IAVF_MAX_TXD
;
472 ring
->rx_pending
= adapter
->rx_desc_count
;
473 ring
->tx_pending
= adapter
->tx_desc_count
;
477 * iavf_set_ringparam - Set ring parameters
478 * @netdev: network interface device structure
479 * @ring: ethtool ringparam structure
480 * @kernel_ring: ethtool external ringparam structure
481 * @extack: netlink extended ACK report struct
483 * Sets ring parameters. TX and RX rings are controlled separately, but the
484 * number of rings is not specified, so all rings get the same settings.
486 static int iavf_set_ringparam(struct net_device
*netdev
,
487 struct ethtool_ringparam
*ring
,
488 struct kernel_ethtool_ringparam
*kernel_ring
,
489 struct netlink_ext_ack
*extack
)
491 struct iavf_adapter
*adapter
= netdev_priv(netdev
);
492 u32 new_rx_count
, new_tx_count
;
495 if ((ring
->rx_mini_pending
) || (ring
->rx_jumbo_pending
))
498 if (ring
->tx_pending
> IAVF_MAX_TXD
||
499 ring
->tx_pending
< IAVF_MIN_TXD
||
500 ring
->rx_pending
> IAVF_MAX_RXD
||
501 ring
->rx_pending
< IAVF_MIN_RXD
) {
502 netdev_err(netdev
, "Descriptors requested (Tx: %d / Rx: %d) out of range [%d-%d] (increment %d)\n",
503 ring
->tx_pending
, ring
->rx_pending
, IAVF_MIN_TXD
,
504 IAVF_MAX_RXD
, IAVF_REQ_DESCRIPTOR_MULTIPLE
);
508 new_tx_count
= ALIGN(ring
->tx_pending
, IAVF_REQ_DESCRIPTOR_MULTIPLE
);
509 if (new_tx_count
!= ring
->tx_pending
)
510 netdev_info(netdev
, "Requested Tx descriptor count rounded up to %d\n",
513 new_rx_count
= ALIGN(ring
->rx_pending
, IAVF_REQ_DESCRIPTOR_MULTIPLE
);
514 if (new_rx_count
!= ring
->rx_pending
)
515 netdev_info(netdev
, "Requested Rx descriptor count rounded up to %d\n",
518 /* if nothing to do return success */
519 if ((new_tx_count
== adapter
->tx_desc_count
) &&
520 (new_rx_count
== adapter
->rx_desc_count
)) {
521 netdev_dbg(netdev
, "Nothing to change, descriptor count is same as requested\n");
525 if (new_tx_count
!= adapter
->tx_desc_count
) {
526 netdev_dbg(netdev
, "Changing Tx descriptor count from %d to %d\n",
527 adapter
->tx_desc_count
, new_tx_count
);
528 adapter
->tx_desc_count
= new_tx_count
;
531 if (new_rx_count
!= adapter
->rx_desc_count
) {
532 netdev_dbg(netdev
, "Changing Rx descriptor count from %d to %d\n",
533 adapter
->rx_desc_count
, new_rx_count
);
534 adapter
->rx_desc_count
= new_rx_count
;
537 if (netif_running(netdev
)) {
538 iavf_schedule_reset(adapter
, IAVF_FLAG_RESET_NEEDED
);
539 ret
= iavf_wait_for_reset(adapter
);
541 netdev_warn(netdev
, "Changing ring parameters timeout or interrupted waiting for reset");
548 * __iavf_get_coalesce - get per-queue coalesce settings
549 * @netdev: the netdev to check
550 * @ec: ethtool coalesce data structure
551 * @queue: which queue to pick
553 * Gets the per-queue settings for coalescence. Specifically Rx and Tx usecs
554 * are per queue. If queue is <0 then we default to queue 0 as the
555 * representative value.
557 static int __iavf_get_coalesce(struct net_device
*netdev
,
558 struct ethtool_coalesce
*ec
, int queue
)
560 struct iavf_adapter
*adapter
= netdev_priv(netdev
);
561 struct iavf_ring
*rx_ring
, *tx_ring
;
563 /* Rx and Tx usecs per queue value. If user doesn't specify the
564 * queue, return queue 0's value to represent.
568 else if (queue
>= adapter
->num_active_queues
)
571 rx_ring
= &adapter
->rx_rings
[queue
];
572 tx_ring
= &adapter
->tx_rings
[queue
];
574 if (ITR_IS_DYNAMIC(rx_ring
->itr_setting
))
575 ec
->use_adaptive_rx_coalesce
= 1;
577 if (ITR_IS_DYNAMIC(tx_ring
->itr_setting
))
578 ec
->use_adaptive_tx_coalesce
= 1;
580 ec
->rx_coalesce_usecs
= rx_ring
->itr_setting
& ~IAVF_ITR_DYNAMIC
;
581 ec
->tx_coalesce_usecs
= tx_ring
->itr_setting
& ~IAVF_ITR_DYNAMIC
;
587 * iavf_get_coalesce - Get interrupt coalescing settings
588 * @netdev: network interface device structure
589 * @ec: ethtool coalesce structure
590 * @kernel_coal: ethtool CQE mode setting structure
591 * @extack: extack for reporting error messages
593 * Returns current coalescing settings. This is referred to elsewhere in the
594 * driver as Interrupt Throttle Rate, as this is how the hardware describes
595 * this functionality. Note that if per-queue settings have been modified this
596 * only represents the settings of queue 0.
598 static int iavf_get_coalesce(struct net_device
*netdev
,
599 struct ethtool_coalesce
*ec
,
600 struct kernel_ethtool_coalesce
*kernel_coal
,
601 struct netlink_ext_ack
*extack
)
603 return __iavf_get_coalesce(netdev
, ec
, -1);
607 * iavf_get_per_queue_coalesce - get coalesce values for specific queue
608 * @netdev: netdev to read
609 * @ec: coalesce settings from ethtool
610 * @queue: the queue to read
612 * Read specific queue's coalesce settings.
614 static int iavf_get_per_queue_coalesce(struct net_device
*netdev
, u32 queue
,
615 struct ethtool_coalesce
*ec
)
617 return __iavf_get_coalesce(netdev
, ec
, queue
);
621 * iavf_set_itr_per_queue - set ITR values for specific queue
622 * @adapter: the VF adapter struct to set values for
623 * @ec: coalesce settings from ethtool
624 * @queue: the queue to modify
626 * Change the ITR settings for a specific queue.
628 static int iavf_set_itr_per_queue(struct iavf_adapter
*adapter
,
629 struct ethtool_coalesce
*ec
, int queue
)
631 struct iavf_ring
*rx_ring
= &adapter
->rx_rings
[queue
];
632 struct iavf_ring
*tx_ring
= &adapter
->tx_rings
[queue
];
633 struct iavf_q_vector
*q_vector
;
636 itr_setting
= rx_ring
->itr_setting
& ~IAVF_ITR_DYNAMIC
;
638 if (ec
->rx_coalesce_usecs
!= itr_setting
&&
639 ec
->use_adaptive_rx_coalesce
) {
640 netif_info(adapter
, drv
, adapter
->netdev
,
641 "Rx interrupt throttling cannot be changed if adaptive-rx is enabled\n");
645 itr_setting
= tx_ring
->itr_setting
& ~IAVF_ITR_DYNAMIC
;
647 if (ec
->tx_coalesce_usecs
!= itr_setting
&&
648 ec
->use_adaptive_tx_coalesce
) {
649 netif_info(adapter
, drv
, adapter
->netdev
,
650 "Tx interrupt throttling cannot be changed if adaptive-tx is enabled\n");
654 rx_ring
->itr_setting
= ITR_REG_ALIGN(ec
->rx_coalesce_usecs
);
655 tx_ring
->itr_setting
= ITR_REG_ALIGN(ec
->tx_coalesce_usecs
);
657 rx_ring
->itr_setting
|= IAVF_ITR_DYNAMIC
;
658 if (!ec
->use_adaptive_rx_coalesce
)
659 rx_ring
->itr_setting
^= IAVF_ITR_DYNAMIC
;
661 tx_ring
->itr_setting
|= IAVF_ITR_DYNAMIC
;
662 if (!ec
->use_adaptive_tx_coalesce
)
663 tx_ring
->itr_setting
^= IAVF_ITR_DYNAMIC
;
665 q_vector
= rx_ring
->q_vector
;
666 q_vector
->rx
.target_itr
= ITR_TO_REG(rx_ring
->itr_setting
);
668 q_vector
= tx_ring
->q_vector
;
669 q_vector
->tx
.target_itr
= ITR_TO_REG(tx_ring
->itr_setting
);
671 /* The interrupt handler itself will take care of programming
672 * the Tx and Rx ITR values based on the values we have entered
673 * into the q_vector, no need to write the values now.
679 * __iavf_set_coalesce - set coalesce settings for particular queue
680 * @netdev: the netdev to change
681 * @ec: ethtool coalesce settings
682 * @queue: the queue to change
684 * Sets the coalesce settings for a particular queue.
686 static int __iavf_set_coalesce(struct net_device
*netdev
,
687 struct ethtool_coalesce
*ec
, int queue
)
689 struct iavf_adapter
*adapter
= netdev_priv(netdev
);
692 if (ec
->rx_coalesce_usecs
> IAVF_MAX_ITR
) {
693 netif_info(adapter
, drv
, netdev
, "Invalid value, rx-usecs range is 0-8160\n");
695 } else if (ec
->tx_coalesce_usecs
> IAVF_MAX_ITR
) {
696 netif_info(adapter
, drv
, netdev
, "Invalid value, tx-usecs range is 0-8160\n");
700 /* Rx and Tx usecs has per queue value. If user doesn't specify the
701 * queue, apply to all queues.
704 for (i
= 0; i
< adapter
->num_active_queues
; i
++)
705 if (iavf_set_itr_per_queue(adapter
, ec
, i
))
707 } else if (queue
< adapter
->num_active_queues
) {
708 if (iavf_set_itr_per_queue(adapter
, ec
, queue
))
711 netif_info(adapter
, drv
, netdev
, "Invalid queue value, queue range is 0 - %d\n",
712 adapter
->num_active_queues
- 1);
720 * iavf_set_coalesce - Set interrupt coalescing settings
721 * @netdev: network interface device structure
722 * @ec: ethtool coalesce structure
723 * @kernel_coal: ethtool CQE mode setting structure
724 * @extack: extack for reporting error messages
726 * Change current coalescing settings for every queue.
728 static int iavf_set_coalesce(struct net_device
*netdev
,
729 struct ethtool_coalesce
*ec
,
730 struct kernel_ethtool_coalesce
*kernel_coal
,
731 struct netlink_ext_ack
*extack
)
733 return __iavf_set_coalesce(netdev
, ec
, -1);
737 * iavf_set_per_queue_coalesce - set specific queue's coalesce settings
738 * @netdev: the netdev to change
739 * @ec: ethtool's coalesce settings
740 * @queue: the queue to modify
742 * Modifies a specific queue's coalesce settings.
744 static int iavf_set_per_queue_coalesce(struct net_device
*netdev
, u32 queue
,
745 struct ethtool_coalesce
*ec
)
747 return __iavf_set_coalesce(netdev
, ec
, queue
);
751 * iavf_fltr_to_ethtool_flow - convert filter type values to ethtool
753 * @flow: filter type to be converted
755 * Returns the corresponding ethtool flow type.
757 static int iavf_fltr_to_ethtool_flow(enum iavf_fdir_flow_type flow
)
760 case IAVF_FDIR_FLOW_IPV4_TCP
:
762 case IAVF_FDIR_FLOW_IPV4_UDP
:
764 case IAVF_FDIR_FLOW_IPV4_SCTP
:
766 case IAVF_FDIR_FLOW_IPV4_AH
:
768 case IAVF_FDIR_FLOW_IPV4_ESP
:
770 case IAVF_FDIR_FLOW_IPV4_OTHER
:
771 return IPV4_USER_FLOW
;
772 case IAVF_FDIR_FLOW_IPV6_TCP
:
774 case IAVF_FDIR_FLOW_IPV6_UDP
:
776 case IAVF_FDIR_FLOW_IPV6_SCTP
:
778 case IAVF_FDIR_FLOW_IPV6_AH
:
780 case IAVF_FDIR_FLOW_IPV6_ESP
:
782 case IAVF_FDIR_FLOW_IPV6_OTHER
:
783 return IPV6_USER_FLOW
;
784 case IAVF_FDIR_FLOW_NON_IP_L2
:
787 /* 0 is undefined ethtool flow */
793 * iavf_ethtool_flow_to_fltr - convert ethtool flow type to filter enum
794 * @eth: Ethtool flow type to be converted
798 static enum iavf_fdir_flow_type
iavf_ethtool_flow_to_fltr(int eth
)
802 return IAVF_FDIR_FLOW_IPV4_TCP
;
804 return IAVF_FDIR_FLOW_IPV4_UDP
;
806 return IAVF_FDIR_FLOW_IPV4_SCTP
;
808 return IAVF_FDIR_FLOW_IPV4_AH
;
810 return IAVF_FDIR_FLOW_IPV4_ESP
;
812 return IAVF_FDIR_FLOW_IPV4_OTHER
;
814 return IAVF_FDIR_FLOW_IPV6_TCP
;
816 return IAVF_FDIR_FLOW_IPV6_UDP
;
818 return IAVF_FDIR_FLOW_IPV6_SCTP
;
820 return IAVF_FDIR_FLOW_IPV6_AH
;
822 return IAVF_FDIR_FLOW_IPV6_ESP
;
824 return IAVF_FDIR_FLOW_IPV6_OTHER
;
826 return IAVF_FDIR_FLOW_NON_IP_L2
;
828 return IAVF_FDIR_FLOW_NONE
;
833 * iavf_is_mask_valid - check mask field set
834 * @mask: full mask to check
835 * @field: field for which mask should be valid
837 * If the mask is fully set return true. If it is not valid for field return
840 static bool iavf_is_mask_valid(u64 mask
, u64 field
)
842 return (mask
& field
) == field
;
846 * iavf_parse_rx_flow_user_data - deconstruct user-defined data
847 * @fsp: pointer to ethtool Rx flow specification
848 * @fltr: pointer to Flow Director filter for userdef data storage
850 * Returns 0 on success, negative error value on failure
853 iavf_parse_rx_flow_user_data(struct ethtool_rx_flow_spec
*fsp
,
854 struct iavf_fdir_fltr
*fltr
)
856 struct iavf_flex_word
*flex
;
859 if (!(fsp
->flow_type
& FLOW_EXT
))
862 for (i
= 0; i
< IAVF_FLEX_WORD_NUM
; i
++) {
863 #define IAVF_USERDEF_FLEX_WORD_M GENMASK(15, 0)
864 #define IAVF_USERDEF_FLEX_OFFS_S 16
865 #define IAVF_USERDEF_FLEX_OFFS_M GENMASK(31, IAVF_USERDEF_FLEX_OFFS_S)
866 #define IAVF_USERDEF_FLEX_FLTR_M GENMASK(31, 0)
867 u32 value
= be32_to_cpu(fsp
->h_ext
.data
[i
]);
868 u32 mask
= be32_to_cpu(fsp
->m_ext
.data
[i
]);
873 if (!iavf_is_mask_valid(mask
, IAVF_USERDEF_FLEX_FLTR_M
))
876 /* 504 is the maximum value for offsets, and offset is measured
877 * from the start of the MAC address.
879 #define IAVF_USERDEF_FLEX_MAX_OFFS_VAL 504
880 flex
= &fltr
->flex_words
[cnt
++];
881 flex
->word
= value
& IAVF_USERDEF_FLEX_WORD_M
;
882 flex
->offset
= FIELD_GET(IAVF_USERDEF_FLEX_OFFS_M
, value
);
883 if (flex
->offset
> IAVF_USERDEF_FLEX_MAX_OFFS_VAL
)
887 fltr
->flex_cnt
= cnt
;
893 * iavf_fill_rx_flow_ext_data - fill the additional data
894 * @fsp: pointer to ethtool Rx flow specification
895 * @fltr: pointer to Flow Director filter to get additional data
898 iavf_fill_rx_flow_ext_data(struct ethtool_rx_flow_spec
*fsp
,
899 struct iavf_fdir_fltr
*fltr
)
901 if (!fltr
->ext_mask
.usr_def
[0] && !fltr
->ext_mask
.usr_def
[1])
904 fsp
->flow_type
|= FLOW_EXT
;
906 memcpy(fsp
->h_ext
.data
, fltr
->ext_data
.usr_def
, sizeof(fsp
->h_ext
.data
));
907 memcpy(fsp
->m_ext
.data
, fltr
->ext_mask
.usr_def
, sizeof(fsp
->m_ext
.data
));
911 * iavf_get_ethtool_fdir_entry - fill ethtool structure with Flow Director filter data
912 * @adapter: the VF adapter structure that contains filter list
913 * @cmd: ethtool command data structure to receive the filter data
915 * Returns 0 as expected for success by ethtool
918 iavf_get_ethtool_fdir_entry(struct iavf_adapter
*adapter
,
919 struct ethtool_rxnfc
*cmd
)
921 struct ethtool_rx_flow_spec
*fsp
= (struct ethtool_rx_flow_spec
*)&cmd
->fs
;
922 struct iavf_fdir_fltr
*rule
= NULL
;
925 if (!(adapter
->flags
& IAVF_FLAG_FDIR_ENABLED
))
928 spin_lock_bh(&adapter
->fdir_fltr_lock
);
930 rule
= iavf_find_fdir_fltr(adapter
, false, fsp
->location
);
936 fsp
->flow_type
= iavf_fltr_to_ethtool_flow(rule
->flow_type
);
938 memset(&fsp
->m_u
, 0, sizeof(fsp
->m_u
));
939 memset(&fsp
->m_ext
, 0, sizeof(fsp
->m_ext
));
941 switch (fsp
->flow_type
) {
945 fsp
->h_u
.tcp_ip4_spec
.ip4src
= rule
->ip_data
.v4_addrs
.src_ip
;
946 fsp
->h_u
.tcp_ip4_spec
.ip4dst
= rule
->ip_data
.v4_addrs
.dst_ip
;
947 fsp
->h_u
.tcp_ip4_spec
.psrc
= rule
->ip_data
.src_port
;
948 fsp
->h_u
.tcp_ip4_spec
.pdst
= rule
->ip_data
.dst_port
;
949 fsp
->h_u
.tcp_ip4_spec
.tos
= rule
->ip_data
.tos
;
950 fsp
->m_u
.tcp_ip4_spec
.ip4src
= rule
->ip_mask
.v4_addrs
.src_ip
;
951 fsp
->m_u
.tcp_ip4_spec
.ip4dst
= rule
->ip_mask
.v4_addrs
.dst_ip
;
952 fsp
->m_u
.tcp_ip4_spec
.psrc
= rule
->ip_mask
.src_port
;
953 fsp
->m_u
.tcp_ip4_spec
.pdst
= rule
->ip_mask
.dst_port
;
954 fsp
->m_u
.tcp_ip4_spec
.tos
= rule
->ip_mask
.tos
;
958 fsp
->h_u
.ah_ip4_spec
.ip4src
= rule
->ip_data
.v4_addrs
.src_ip
;
959 fsp
->h_u
.ah_ip4_spec
.ip4dst
= rule
->ip_data
.v4_addrs
.dst_ip
;
960 fsp
->h_u
.ah_ip4_spec
.spi
= rule
->ip_data
.spi
;
961 fsp
->h_u
.ah_ip4_spec
.tos
= rule
->ip_data
.tos
;
962 fsp
->m_u
.ah_ip4_spec
.ip4src
= rule
->ip_mask
.v4_addrs
.src_ip
;
963 fsp
->m_u
.ah_ip4_spec
.ip4dst
= rule
->ip_mask
.v4_addrs
.dst_ip
;
964 fsp
->m_u
.ah_ip4_spec
.spi
= rule
->ip_mask
.spi
;
965 fsp
->m_u
.ah_ip4_spec
.tos
= rule
->ip_mask
.tos
;
968 fsp
->h_u
.usr_ip4_spec
.ip4src
= rule
->ip_data
.v4_addrs
.src_ip
;
969 fsp
->h_u
.usr_ip4_spec
.ip4dst
= rule
->ip_data
.v4_addrs
.dst_ip
;
970 fsp
->h_u
.usr_ip4_spec
.l4_4_bytes
= rule
->ip_data
.l4_header
;
971 fsp
->h_u
.usr_ip4_spec
.tos
= rule
->ip_data
.tos
;
972 fsp
->h_u
.usr_ip4_spec
.ip_ver
= ETH_RX_NFC_IP4
;
973 fsp
->h_u
.usr_ip4_spec
.proto
= rule
->ip_data
.proto
;
974 fsp
->m_u
.usr_ip4_spec
.ip4src
= rule
->ip_mask
.v4_addrs
.src_ip
;
975 fsp
->m_u
.usr_ip4_spec
.ip4dst
= rule
->ip_mask
.v4_addrs
.dst_ip
;
976 fsp
->m_u
.usr_ip4_spec
.l4_4_bytes
= rule
->ip_mask
.l4_header
;
977 fsp
->m_u
.usr_ip4_spec
.tos
= rule
->ip_mask
.tos
;
978 fsp
->m_u
.usr_ip4_spec
.ip_ver
= 0xFF;
979 fsp
->m_u
.usr_ip4_spec
.proto
= rule
->ip_mask
.proto
;
984 memcpy(fsp
->h_u
.usr_ip6_spec
.ip6src
, &rule
->ip_data
.v6_addrs
.src_ip
,
985 sizeof(struct in6_addr
));
986 memcpy(fsp
->h_u
.usr_ip6_spec
.ip6dst
, &rule
->ip_data
.v6_addrs
.dst_ip
,
987 sizeof(struct in6_addr
));
988 fsp
->h_u
.tcp_ip6_spec
.psrc
= rule
->ip_data
.src_port
;
989 fsp
->h_u
.tcp_ip6_spec
.pdst
= rule
->ip_data
.dst_port
;
990 fsp
->h_u
.tcp_ip6_spec
.tclass
= rule
->ip_data
.tclass
;
991 memcpy(fsp
->m_u
.usr_ip6_spec
.ip6src
, &rule
->ip_mask
.v6_addrs
.src_ip
,
992 sizeof(struct in6_addr
));
993 memcpy(fsp
->m_u
.usr_ip6_spec
.ip6dst
, &rule
->ip_mask
.v6_addrs
.dst_ip
,
994 sizeof(struct in6_addr
));
995 fsp
->m_u
.tcp_ip6_spec
.psrc
= rule
->ip_mask
.src_port
;
996 fsp
->m_u
.tcp_ip6_spec
.pdst
= rule
->ip_mask
.dst_port
;
997 fsp
->m_u
.tcp_ip6_spec
.tclass
= rule
->ip_mask
.tclass
;
1001 memcpy(fsp
->h_u
.ah_ip6_spec
.ip6src
, &rule
->ip_data
.v6_addrs
.src_ip
,
1002 sizeof(struct in6_addr
));
1003 memcpy(fsp
->h_u
.ah_ip6_spec
.ip6dst
, &rule
->ip_data
.v6_addrs
.dst_ip
,
1004 sizeof(struct in6_addr
));
1005 fsp
->h_u
.ah_ip6_spec
.spi
= rule
->ip_data
.spi
;
1006 fsp
->h_u
.ah_ip6_spec
.tclass
= rule
->ip_data
.tclass
;
1007 memcpy(fsp
->m_u
.ah_ip6_spec
.ip6src
, &rule
->ip_mask
.v6_addrs
.src_ip
,
1008 sizeof(struct in6_addr
));
1009 memcpy(fsp
->m_u
.ah_ip6_spec
.ip6dst
, &rule
->ip_mask
.v6_addrs
.dst_ip
,
1010 sizeof(struct in6_addr
));
1011 fsp
->m_u
.ah_ip6_spec
.spi
= rule
->ip_mask
.spi
;
1012 fsp
->m_u
.ah_ip6_spec
.tclass
= rule
->ip_mask
.tclass
;
1014 case IPV6_USER_FLOW
:
1015 memcpy(fsp
->h_u
.usr_ip6_spec
.ip6src
, &rule
->ip_data
.v6_addrs
.src_ip
,
1016 sizeof(struct in6_addr
));
1017 memcpy(fsp
->h_u
.usr_ip6_spec
.ip6dst
, &rule
->ip_data
.v6_addrs
.dst_ip
,
1018 sizeof(struct in6_addr
));
1019 fsp
->h_u
.usr_ip6_spec
.l4_4_bytes
= rule
->ip_data
.l4_header
;
1020 fsp
->h_u
.usr_ip6_spec
.tclass
= rule
->ip_data
.tclass
;
1021 fsp
->h_u
.usr_ip6_spec
.l4_proto
= rule
->ip_data
.proto
;
1022 memcpy(fsp
->m_u
.usr_ip6_spec
.ip6src
, &rule
->ip_mask
.v6_addrs
.src_ip
,
1023 sizeof(struct in6_addr
));
1024 memcpy(fsp
->m_u
.usr_ip6_spec
.ip6dst
, &rule
->ip_mask
.v6_addrs
.dst_ip
,
1025 sizeof(struct in6_addr
));
1026 fsp
->m_u
.usr_ip6_spec
.l4_4_bytes
= rule
->ip_mask
.l4_header
;
1027 fsp
->m_u
.usr_ip6_spec
.tclass
= rule
->ip_mask
.tclass
;
1028 fsp
->m_u
.usr_ip6_spec
.l4_proto
= rule
->ip_mask
.proto
;
1031 fsp
->h_u
.ether_spec
.h_proto
= rule
->eth_data
.etype
;
1032 fsp
->m_u
.ether_spec
.h_proto
= rule
->eth_mask
.etype
;
1039 iavf_fill_rx_flow_ext_data(fsp
, rule
);
1041 if (rule
->action
== VIRTCHNL_ACTION_DROP
)
1042 fsp
->ring_cookie
= RX_CLS_FLOW_DISC
;
1044 fsp
->ring_cookie
= rule
->q_index
;
1047 spin_unlock_bh(&adapter
->fdir_fltr_lock
);
1052 * iavf_get_fdir_fltr_ids - fill buffer with filter IDs of active filters
1053 * @adapter: the VF adapter structure containing the filter list
1054 * @cmd: ethtool command data structure
1055 * @rule_locs: ethtool array passed in from OS to receive filter IDs
1057 * Returns 0 as expected for success by ethtool
1060 iavf_get_fdir_fltr_ids(struct iavf_adapter
*adapter
, struct ethtool_rxnfc
*cmd
,
1063 struct iavf_fdir_fltr
*fltr
;
1064 unsigned int cnt
= 0;
1067 if (!(adapter
->flags
& IAVF_FLAG_FDIR_ENABLED
))
1070 cmd
->data
= IAVF_MAX_FDIR_FILTERS
;
1072 spin_lock_bh(&adapter
->fdir_fltr_lock
);
1074 list_for_each_entry(fltr
, &adapter
->fdir_list_head
, list
) {
1075 if (iavf_is_raw_fdir(fltr
))
1078 if (cnt
== cmd
->rule_cnt
) {
1082 rule_locs
[cnt
] = fltr
->loc
;
1087 spin_unlock_bh(&adapter
->fdir_fltr_lock
);
1089 cmd
->rule_cnt
= cnt
;
1095 * iavf_add_fdir_fltr_info - Set the input set for Flow Director filter
1096 * @adapter: pointer to the VF adapter structure
1097 * @fsp: pointer to ethtool Rx flow specification
1098 * @fltr: filter structure
1101 iavf_add_fdir_fltr_info(struct iavf_adapter
*adapter
, struct ethtool_rx_flow_spec
*fsp
,
1102 struct iavf_fdir_fltr
*fltr
)
1104 u32 flow_type
, q_index
= 0;
1105 enum virtchnl_action act
;
1108 if (fsp
->ring_cookie
== RX_CLS_FLOW_DISC
) {
1109 act
= VIRTCHNL_ACTION_DROP
;
1111 q_index
= fsp
->ring_cookie
;
1112 if (q_index
>= adapter
->num_active_queues
)
1115 act
= VIRTCHNL_ACTION_QUEUE
;
1119 fltr
->loc
= fsp
->location
;
1120 fltr
->q_index
= q_index
;
1122 if (fsp
->flow_type
& FLOW_EXT
) {
1123 memcpy(fltr
->ext_data
.usr_def
, fsp
->h_ext
.data
,
1124 sizeof(fltr
->ext_data
.usr_def
));
1125 memcpy(fltr
->ext_mask
.usr_def
, fsp
->m_ext
.data
,
1126 sizeof(fltr
->ext_mask
.usr_def
));
1129 flow_type
= fsp
->flow_type
& ~(FLOW_EXT
| FLOW_MAC_EXT
| FLOW_RSS
);
1130 fltr
->flow_type
= iavf_ethtool_flow_to_fltr(flow_type
);
1132 switch (flow_type
) {
1136 fltr
->ip_data
.v4_addrs
.src_ip
= fsp
->h_u
.tcp_ip4_spec
.ip4src
;
1137 fltr
->ip_data
.v4_addrs
.dst_ip
= fsp
->h_u
.tcp_ip4_spec
.ip4dst
;
1138 fltr
->ip_data
.src_port
= fsp
->h_u
.tcp_ip4_spec
.psrc
;
1139 fltr
->ip_data
.dst_port
= fsp
->h_u
.tcp_ip4_spec
.pdst
;
1140 fltr
->ip_data
.tos
= fsp
->h_u
.tcp_ip4_spec
.tos
;
1141 fltr
->ip_mask
.v4_addrs
.src_ip
= fsp
->m_u
.tcp_ip4_spec
.ip4src
;
1142 fltr
->ip_mask
.v4_addrs
.dst_ip
= fsp
->m_u
.tcp_ip4_spec
.ip4dst
;
1143 fltr
->ip_mask
.src_port
= fsp
->m_u
.tcp_ip4_spec
.psrc
;
1144 fltr
->ip_mask
.dst_port
= fsp
->m_u
.tcp_ip4_spec
.pdst
;
1145 fltr
->ip_mask
.tos
= fsp
->m_u
.tcp_ip4_spec
.tos
;
1150 fltr
->ip_data
.v4_addrs
.src_ip
= fsp
->h_u
.ah_ip4_spec
.ip4src
;
1151 fltr
->ip_data
.v4_addrs
.dst_ip
= fsp
->h_u
.ah_ip4_spec
.ip4dst
;
1152 fltr
->ip_data
.spi
= fsp
->h_u
.ah_ip4_spec
.spi
;
1153 fltr
->ip_data
.tos
= fsp
->h_u
.ah_ip4_spec
.tos
;
1154 fltr
->ip_mask
.v4_addrs
.src_ip
= fsp
->m_u
.ah_ip4_spec
.ip4src
;
1155 fltr
->ip_mask
.v4_addrs
.dst_ip
= fsp
->m_u
.ah_ip4_spec
.ip4dst
;
1156 fltr
->ip_mask
.spi
= fsp
->m_u
.ah_ip4_spec
.spi
;
1157 fltr
->ip_mask
.tos
= fsp
->m_u
.ah_ip4_spec
.tos
;
1160 case IPV4_USER_FLOW
:
1161 fltr
->ip_data
.v4_addrs
.src_ip
= fsp
->h_u
.usr_ip4_spec
.ip4src
;
1162 fltr
->ip_data
.v4_addrs
.dst_ip
= fsp
->h_u
.usr_ip4_spec
.ip4dst
;
1163 fltr
->ip_data
.l4_header
= fsp
->h_u
.usr_ip4_spec
.l4_4_bytes
;
1164 fltr
->ip_data
.tos
= fsp
->h_u
.usr_ip4_spec
.tos
;
1165 fltr
->ip_data
.proto
= fsp
->h_u
.usr_ip4_spec
.proto
;
1166 fltr
->ip_mask
.v4_addrs
.src_ip
= fsp
->m_u
.usr_ip4_spec
.ip4src
;
1167 fltr
->ip_mask
.v4_addrs
.dst_ip
= fsp
->m_u
.usr_ip4_spec
.ip4dst
;
1168 fltr
->ip_mask
.l4_header
= fsp
->m_u
.usr_ip4_spec
.l4_4_bytes
;
1169 fltr
->ip_mask
.tos
= fsp
->m_u
.usr_ip4_spec
.tos
;
1170 fltr
->ip_mask
.proto
= fsp
->m_u
.usr_ip4_spec
.proto
;
1176 memcpy(&fltr
->ip_data
.v6_addrs
.src_ip
, fsp
->h_u
.usr_ip6_spec
.ip6src
,
1177 sizeof(struct in6_addr
));
1178 memcpy(&fltr
->ip_data
.v6_addrs
.dst_ip
, fsp
->h_u
.usr_ip6_spec
.ip6dst
,
1179 sizeof(struct in6_addr
));
1180 fltr
->ip_data
.src_port
= fsp
->h_u
.tcp_ip6_spec
.psrc
;
1181 fltr
->ip_data
.dst_port
= fsp
->h_u
.tcp_ip6_spec
.pdst
;
1182 fltr
->ip_data
.tclass
= fsp
->h_u
.tcp_ip6_spec
.tclass
;
1183 memcpy(&fltr
->ip_mask
.v6_addrs
.src_ip
, fsp
->m_u
.usr_ip6_spec
.ip6src
,
1184 sizeof(struct in6_addr
));
1185 memcpy(&fltr
->ip_mask
.v6_addrs
.dst_ip
, fsp
->m_u
.usr_ip6_spec
.ip6dst
,
1186 sizeof(struct in6_addr
));
1187 fltr
->ip_mask
.src_port
= fsp
->m_u
.tcp_ip6_spec
.psrc
;
1188 fltr
->ip_mask
.dst_port
= fsp
->m_u
.tcp_ip6_spec
.pdst
;
1189 fltr
->ip_mask
.tclass
= fsp
->m_u
.tcp_ip6_spec
.tclass
;
1194 memcpy(&fltr
->ip_data
.v6_addrs
.src_ip
, fsp
->h_u
.ah_ip6_spec
.ip6src
,
1195 sizeof(struct in6_addr
));
1196 memcpy(&fltr
->ip_data
.v6_addrs
.dst_ip
, fsp
->h_u
.ah_ip6_spec
.ip6dst
,
1197 sizeof(struct in6_addr
));
1198 fltr
->ip_data
.spi
= fsp
->h_u
.ah_ip6_spec
.spi
;
1199 fltr
->ip_data
.tclass
= fsp
->h_u
.ah_ip6_spec
.tclass
;
1200 memcpy(&fltr
->ip_mask
.v6_addrs
.src_ip
, fsp
->m_u
.ah_ip6_spec
.ip6src
,
1201 sizeof(struct in6_addr
));
1202 memcpy(&fltr
->ip_mask
.v6_addrs
.dst_ip
, fsp
->m_u
.ah_ip6_spec
.ip6dst
,
1203 sizeof(struct in6_addr
));
1204 fltr
->ip_mask
.spi
= fsp
->m_u
.ah_ip6_spec
.spi
;
1205 fltr
->ip_mask
.tclass
= fsp
->m_u
.ah_ip6_spec
.tclass
;
1208 case IPV6_USER_FLOW
:
1209 memcpy(&fltr
->ip_data
.v6_addrs
.src_ip
, fsp
->h_u
.usr_ip6_spec
.ip6src
,
1210 sizeof(struct in6_addr
));
1211 memcpy(&fltr
->ip_data
.v6_addrs
.dst_ip
, fsp
->h_u
.usr_ip6_spec
.ip6dst
,
1212 sizeof(struct in6_addr
));
1213 fltr
->ip_data
.l4_header
= fsp
->h_u
.usr_ip6_spec
.l4_4_bytes
;
1214 fltr
->ip_data
.tclass
= fsp
->h_u
.usr_ip6_spec
.tclass
;
1215 fltr
->ip_data
.proto
= fsp
->h_u
.usr_ip6_spec
.l4_proto
;
1216 memcpy(&fltr
->ip_mask
.v6_addrs
.src_ip
, fsp
->m_u
.usr_ip6_spec
.ip6src
,
1217 sizeof(struct in6_addr
));
1218 memcpy(&fltr
->ip_mask
.v6_addrs
.dst_ip
, fsp
->m_u
.usr_ip6_spec
.ip6dst
,
1219 sizeof(struct in6_addr
));
1220 fltr
->ip_mask
.l4_header
= fsp
->m_u
.usr_ip6_spec
.l4_4_bytes
;
1221 fltr
->ip_mask
.tclass
= fsp
->m_u
.usr_ip6_spec
.tclass
;
1222 fltr
->ip_mask
.proto
= fsp
->m_u
.usr_ip6_spec
.l4_proto
;
1226 fltr
->eth_data
.etype
= fsp
->h_u
.ether_spec
.h_proto
;
1227 fltr
->eth_mask
.etype
= fsp
->m_u
.ether_spec
.h_proto
;
1230 /* not doing un-parsed flow types */
1234 err
= iavf_validate_fdir_fltr_masks(adapter
, fltr
);
1238 if (iavf_fdir_is_dup_fltr(adapter
, fltr
))
1241 err
= iavf_parse_rx_flow_user_data(fsp
, fltr
);
1245 return iavf_fill_fdir_add_msg(adapter
, fltr
);
1249 * iavf_add_fdir_ethtool - add Flow Director filter
1250 * @adapter: pointer to the VF adapter structure
1251 * @cmd: command to add Flow Director filter
1253 * Returns 0 on success and negative values for failure
1255 static int iavf_add_fdir_ethtool(struct iavf_adapter
*adapter
, struct ethtool_rxnfc
*cmd
)
1257 struct ethtool_rx_flow_spec
*fsp
= &cmd
->fs
;
1258 struct iavf_fdir_fltr
*fltr
;
1262 if (!(adapter
->flags
& IAVF_FLAG_FDIR_ENABLED
))
1265 if (fsp
->flow_type
& FLOW_MAC_EXT
)
1268 spin_lock_bh(&adapter
->fdir_fltr_lock
);
1269 if (iavf_find_fdir_fltr(adapter
, false, fsp
->location
)) {
1270 dev_err(&adapter
->pdev
->dev
, "Failed to add Flow Director filter, it already exists\n");
1271 spin_unlock_bh(&adapter
->fdir_fltr_lock
);
1274 spin_unlock_bh(&adapter
->fdir_fltr_lock
);
1276 fltr
= kzalloc(sizeof(*fltr
), GFP_KERNEL
);
1280 while (!mutex_trylock(&adapter
->crit_lock
)) {
1288 err
= iavf_add_fdir_fltr_info(adapter
, fsp
, fltr
);
1290 err
= iavf_fdir_add_fltr(adapter
, fltr
);
1295 mutex_unlock(&adapter
->crit_lock
);
1300 * iavf_del_fdir_ethtool - delete Flow Director filter
1301 * @adapter: pointer to the VF adapter structure
1302 * @cmd: command to delete Flow Director filter
1304 * Returns 0 on success and negative values for failure
1306 static int iavf_del_fdir_ethtool(struct iavf_adapter
*adapter
, struct ethtool_rxnfc
*cmd
)
1308 struct ethtool_rx_flow_spec
*fsp
= (struct ethtool_rx_flow_spec
*)&cmd
->fs
;
1310 if (!(adapter
->flags
& IAVF_FLAG_FDIR_ENABLED
))
1313 return iavf_fdir_del_fltr(adapter
, false, fsp
->location
);
1317 * iavf_adv_rss_parse_hdrs - parses headers from RSS hash input
1318 * @cmd: ethtool rxnfc command
1320 * This function parses the rxnfc command and returns intended
1321 * header types for RSS configuration
1323 static u32
iavf_adv_rss_parse_hdrs(struct ethtool_rxnfc
*cmd
)
1325 u32 hdrs
= IAVF_ADV_RSS_FLOW_SEG_HDR_NONE
;
1327 switch (cmd
->flow_type
) {
1329 hdrs
|= IAVF_ADV_RSS_FLOW_SEG_HDR_TCP
|
1330 IAVF_ADV_RSS_FLOW_SEG_HDR_IPV4
;
1333 hdrs
|= IAVF_ADV_RSS_FLOW_SEG_HDR_UDP
|
1334 IAVF_ADV_RSS_FLOW_SEG_HDR_IPV4
;
1337 hdrs
|= IAVF_ADV_RSS_FLOW_SEG_HDR_SCTP
|
1338 IAVF_ADV_RSS_FLOW_SEG_HDR_IPV4
;
1341 hdrs
|= IAVF_ADV_RSS_FLOW_SEG_HDR_TCP
|
1342 IAVF_ADV_RSS_FLOW_SEG_HDR_IPV6
;
1345 hdrs
|= IAVF_ADV_RSS_FLOW_SEG_HDR_UDP
|
1346 IAVF_ADV_RSS_FLOW_SEG_HDR_IPV6
;
1349 hdrs
|= IAVF_ADV_RSS_FLOW_SEG_HDR_SCTP
|
1350 IAVF_ADV_RSS_FLOW_SEG_HDR_IPV6
;
1360 * iavf_adv_rss_parse_hash_flds - parses hash fields from RSS hash input
1361 * @cmd: ethtool rxnfc command
1362 * @symm: true if Symmetric Topelitz is set
1364 * This function parses the rxnfc command and returns intended hash fields for
1367 static u64
iavf_adv_rss_parse_hash_flds(struct ethtool_rxnfc
*cmd
, bool symm
)
1369 u64 hfld
= IAVF_ADV_RSS_HASH_INVALID
;
1371 if (cmd
->data
& RXH_IP_SRC
|| cmd
->data
& RXH_IP_DST
) {
1372 switch (cmd
->flow_type
) {
1376 if (cmd
->data
& RXH_IP_SRC
)
1377 hfld
|= IAVF_ADV_RSS_HASH_FLD_IPV4_SA
;
1378 if (cmd
->data
& RXH_IP_DST
)
1379 hfld
|= IAVF_ADV_RSS_HASH_FLD_IPV4_DA
;
1384 if (cmd
->data
& RXH_IP_SRC
)
1385 hfld
|= IAVF_ADV_RSS_HASH_FLD_IPV6_SA
;
1386 if (cmd
->data
& RXH_IP_DST
)
1387 hfld
|= IAVF_ADV_RSS_HASH_FLD_IPV6_DA
;
1394 if (cmd
->data
& RXH_L4_B_0_1
|| cmd
->data
& RXH_L4_B_2_3
) {
1395 switch (cmd
->flow_type
) {
1398 if (cmd
->data
& RXH_L4_B_0_1
)
1399 hfld
|= IAVF_ADV_RSS_HASH_FLD_TCP_SRC_PORT
;
1400 if (cmd
->data
& RXH_L4_B_2_3
)
1401 hfld
|= IAVF_ADV_RSS_HASH_FLD_TCP_DST_PORT
;
1405 if (cmd
->data
& RXH_L4_B_0_1
)
1406 hfld
|= IAVF_ADV_RSS_HASH_FLD_UDP_SRC_PORT
;
1407 if (cmd
->data
& RXH_L4_B_2_3
)
1408 hfld
|= IAVF_ADV_RSS_HASH_FLD_UDP_DST_PORT
;
1412 if (cmd
->data
& RXH_L4_B_0_1
)
1413 hfld
|= IAVF_ADV_RSS_HASH_FLD_SCTP_SRC_PORT
;
1414 if (cmd
->data
& RXH_L4_B_2_3
)
1415 hfld
|= IAVF_ADV_RSS_HASH_FLD_SCTP_DST_PORT
;
1426 * iavf_set_adv_rss_hash_opt - Enable/Disable flow types for RSS hash
1427 * @adapter: pointer to the VF adapter structure
1428 * @cmd: ethtool rxnfc command
1430 * Returns Success if the flow input set is supported.
1433 iavf_set_adv_rss_hash_opt(struct iavf_adapter
*adapter
,
1434 struct ethtool_rxnfc
*cmd
)
1436 struct iavf_adv_rss
*rss_old
, *rss_new
;
1437 bool rss_new_add
= false;
1438 int count
= 50, err
= 0;
1443 if (!ADV_RSS_SUPPORT(adapter
))
1446 symm
= !!(adapter
->hfunc
== VIRTCHNL_RSS_ALG_TOEPLITZ_SYMMETRIC
);
1448 hdrs
= iavf_adv_rss_parse_hdrs(cmd
);
1449 if (hdrs
== IAVF_ADV_RSS_FLOW_SEG_HDR_NONE
)
1452 hash_flds
= iavf_adv_rss_parse_hash_flds(cmd
, symm
);
1453 if (hash_flds
== IAVF_ADV_RSS_HASH_INVALID
)
1456 rss_new
= kzalloc(sizeof(*rss_new
), GFP_KERNEL
);
1460 if (iavf_fill_adv_rss_cfg_msg(&rss_new
->cfg_msg
, hdrs
, hash_flds
,
1466 while (!mutex_trylock(&adapter
->crit_lock
)) {
1475 spin_lock_bh(&adapter
->adv_rss_lock
);
1476 rss_old
= iavf_find_adv_rss_cfg_by_hdrs(adapter
, hdrs
);
1478 if (rss_old
->state
!= IAVF_ADV_RSS_ACTIVE
) {
1480 } else if (rss_old
->hash_flds
!= hash_flds
||
1481 rss_old
->symm
!= symm
) {
1482 rss_old
->state
= IAVF_ADV_RSS_ADD_REQUEST
;
1483 rss_old
->hash_flds
= hash_flds
;
1484 rss_old
->symm
= symm
;
1485 memcpy(&rss_old
->cfg_msg
, &rss_new
->cfg_msg
,
1486 sizeof(rss_new
->cfg_msg
));
1492 rss_new
->state
= IAVF_ADV_RSS_ADD_REQUEST
;
1493 rss_new
->packet_hdrs
= hdrs
;
1494 rss_new
->hash_flds
= hash_flds
;
1495 rss_new
->symm
= symm
;
1496 list_add_tail(&rss_new
->list
, &adapter
->adv_rss_list_head
);
1498 spin_unlock_bh(&adapter
->adv_rss_lock
);
1501 iavf_schedule_aq_request(adapter
, IAVF_FLAG_AQ_ADD_ADV_RSS_CFG
);
1503 mutex_unlock(&adapter
->crit_lock
);
1512 * iavf_get_adv_rss_hash_opt - Retrieve hash fields for a given flow-type
1513 * @adapter: pointer to the VF adapter structure
1514 * @cmd: ethtool rxnfc command
1516 * Returns Success if the flow input set is supported.
1519 iavf_get_adv_rss_hash_opt(struct iavf_adapter
*adapter
,
1520 struct ethtool_rxnfc
*cmd
)
1522 struct iavf_adv_rss
*rss
;
1526 if (!ADV_RSS_SUPPORT(adapter
))
1531 hdrs
= iavf_adv_rss_parse_hdrs(cmd
);
1532 if (hdrs
== IAVF_ADV_RSS_FLOW_SEG_HDR_NONE
)
1535 spin_lock_bh(&adapter
->adv_rss_lock
);
1536 rss
= iavf_find_adv_rss_cfg_by_hdrs(adapter
, hdrs
);
1538 hash_flds
= rss
->hash_flds
;
1540 hash_flds
= IAVF_ADV_RSS_HASH_INVALID
;
1541 spin_unlock_bh(&adapter
->adv_rss_lock
);
1543 if (hash_flds
== IAVF_ADV_RSS_HASH_INVALID
)
1546 if (hash_flds
& (IAVF_ADV_RSS_HASH_FLD_IPV4_SA
|
1547 IAVF_ADV_RSS_HASH_FLD_IPV6_SA
))
1548 cmd
->data
|= (u64
)RXH_IP_SRC
;
1550 if (hash_flds
& (IAVF_ADV_RSS_HASH_FLD_IPV4_DA
|
1551 IAVF_ADV_RSS_HASH_FLD_IPV6_DA
))
1552 cmd
->data
|= (u64
)RXH_IP_DST
;
1554 if (hash_flds
& (IAVF_ADV_RSS_HASH_FLD_TCP_SRC_PORT
|
1555 IAVF_ADV_RSS_HASH_FLD_UDP_SRC_PORT
|
1556 IAVF_ADV_RSS_HASH_FLD_SCTP_SRC_PORT
))
1557 cmd
->data
|= (u64
)RXH_L4_B_0_1
;
1559 if (hash_flds
& (IAVF_ADV_RSS_HASH_FLD_TCP_DST_PORT
|
1560 IAVF_ADV_RSS_HASH_FLD_UDP_DST_PORT
|
1561 IAVF_ADV_RSS_HASH_FLD_SCTP_DST_PORT
))
1562 cmd
->data
|= (u64
)RXH_L4_B_2_3
;
1568 * iavf_set_rxnfc - command to set Rx flow rules.
1569 * @netdev: network interface device structure
1570 * @cmd: ethtool rxnfc command
1572 * Returns 0 for success and negative values for errors
1574 static int iavf_set_rxnfc(struct net_device
*netdev
, struct ethtool_rxnfc
*cmd
)
1576 struct iavf_adapter
*adapter
= netdev_priv(netdev
);
1577 int ret
= -EOPNOTSUPP
;
1580 case ETHTOOL_SRXCLSRLINS
:
1581 ret
= iavf_add_fdir_ethtool(adapter
, cmd
);
1583 case ETHTOOL_SRXCLSRLDEL
:
1584 ret
= iavf_del_fdir_ethtool(adapter
, cmd
);
1587 ret
= iavf_set_adv_rss_hash_opt(adapter
, cmd
);
1597 * iavf_get_rxnfc - command to get RX flow classification rules
1598 * @netdev: network interface device structure
1599 * @cmd: ethtool rxnfc command
1600 * @rule_locs: pointer to store rule locations
1602 * Returns Success if the command is supported.
1604 static int iavf_get_rxnfc(struct net_device
*netdev
, struct ethtool_rxnfc
*cmd
,
1607 struct iavf_adapter
*adapter
= netdev_priv(netdev
);
1608 int ret
= -EOPNOTSUPP
;
1611 case ETHTOOL_GRXRINGS
:
1612 cmd
->data
= adapter
->num_active_queues
;
1615 case ETHTOOL_GRXCLSRLCNT
:
1616 if (!(adapter
->flags
& IAVF_FLAG_FDIR_ENABLED
))
1618 spin_lock_bh(&adapter
->fdir_fltr_lock
);
1619 cmd
->rule_cnt
= adapter
->fdir_active_fltr
;
1620 spin_unlock_bh(&adapter
->fdir_fltr_lock
);
1621 cmd
->data
= IAVF_MAX_FDIR_FILTERS
;
1624 case ETHTOOL_GRXCLSRULE
:
1625 ret
= iavf_get_ethtool_fdir_entry(adapter
, cmd
);
1627 case ETHTOOL_GRXCLSRLALL
:
1628 ret
= iavf_get_fdir_fltr_ids(adapter
, cmd
, (u32
*)rule_locs
);
1631 ret
= iavf_get_adv_rss_hash_opt(adapter
, cmd
);
1640 * iavf_get_channels: get the number of channels supported by the device
1641 * @netdev: network interface device structure
1642 * @ch: channel information structure
1644 * For the purposes of our device, we only use combined channels, i.e. a tx/rx
1645 * queue pair. Report one extra channel to match our "other" MSI-X vector.
1647 static void iavf_get_channels(struct net_device
*netdev
,
1648 struct ethtool_channels
*ch
)
1650 struct iavf_adapter
*adapter
= netdev_priv(netdev
);
1652 /* Report maximum channels */
1653 ch
->max_combined
= adapter
->vsi_res
->num_queue_pairs
;
1655 ch
->max_other
= NONQ_VECS
;
1656 ch
->other_count
= NONQ_VECS
;
1658 ch
->combined_count
= adapter
->num_active_queues
;
1662 * iavf_set_channels: set the new channel count
1663 * @netdev: network interface device structure
1664 * @ch: channel information structure
1666 * Negotiate a new number of channels with the PF then do a reset. During
1667 * reset we'll realloc queues and fix the RSS table. Returns 0 on success,
1668 * negative on failure.
1670 static int iavf_set_channels(struct net_device
*netdev
,
1671 struct ethtool_channels
*ch
)
1673 struct iavf_adapter
*adapter
= netdev_priv(netdev
);
1674 u32 num_req
= ch
->combined_count
;
1677 if ((adapter
->vf_res
->vf_cap_flags
& VIRTCHNL_VF_OFFLOAD_ADQ
) &&
1679 dev_info(&adapter
->pdev
->dev
, "Cannot set channels since ADq is enabled.\n");
1683 /* All of these should have already been checked by ethtool before this
1684 * even gets to us, but just to be sure.
1686 if (num_req
== 0 || num_req
> adapter
->vsi_res
->num_queue_pairs
)
1689 if (num_req
== adapter
->num_active_queues
)
1692 if (ch
->rx_count
|| ch
->tx_count
|| ch
->other_count
!= NONQ_VECS
)
1695 adapter
->num_req_queues
= num_req
;
1696 adapter
->flags
|= IAVF_FLAG_REINIT_ITR_NEEDED
;
1697 iavf_schedule_reset(adapter
, IAVF_FLAG_RESET_NEEDED
);
1699 ret
= iavf_wait_for_reset(adapter
);
1701 netdev_warn(netdev
, "Changing channel count timeout or interrupted waiting for reset");
1707 * iavf_get_rxfh_key_size - get the RSS hash key size
1708 * @netdev: network interface device structure
1710 * Returns the table size.
1712 static u32
iavf_get_rxfh_key_size(struct net_device
*netdev
)
1714 struct iavf_adapter
*adapter
= netdev_priv(netdev
);
1716 return adapter
->rss_key_size
;
1720 * iavf_get_rxfh_indir_size - get the rx flow hash indirection table size
1721 * @netdev: network interface device structure
1723 * Returns the table size.
1725 static u32
iavf_get_rxfh_indir_size(struct net_device
*netdev
)
1727 struct iavf_adapter
*adapter
= netdev_priv(netdev
);
1729 return adapter
->rss_lut_size
;
1733 * iavf_get_rxfh - get the rx flow hash indirection table
1734 * @netdev: network interface device structure
1735 * @rxfh: pointer to param struct (indir, key, hfunc)
1737 * Reads the indirection table directly from the hardware. Always returns 0.
1739 static int iavf_get_rxfh(struct net_device
*netdev
,
1740 struct ethtool_rxfh_param
*rxfh
)
1742 struct iavf_adapter
*adapter
= netdev_priv(netdev
);
1745 rxfh
->hfunc
= ETH_RSS_HASH_TOP
;
1746 if (adapter
->hfunc
== VIRTCHNL_RSS_ALG_TOEPLITZ_SYMMETRIC
)
1747 rxfh
->input_xfrm
|= RXH_XFRM_SYM_XOR
;
1750 memcpy(rxfh
->key
, adapter
->rss_key
, adapter
->rss_key_size
);
1753 /* Each 32 bits pointed by 'indir' is stored with a lut entry */
1754 for (i
= 0; i
< adapter
->rss_lut_size
; i
++)
1755 rxfh
->indir
[i
] = (u32
)adapter
->rss_lut
[i
];
1761 * iavf_set_rxfh - set the rx flow hash indirection table
1762 * @netdev: network interface device structure
1763 * @rxfh: pointer to param struct (indir, key, hfunc)
1764 * @extack: extended ACK from the Netlink message
1766 * Returns -EINVAL if the table specifies an invalid queue id, otherwise
1767 * returns 0 after programming the table.
1769 static int iavf_set_rxfh(struct net_device
*netdev
,
1770 struct ethtool_rxfh_param
*rxfh
,
1771 struct netlink_ext_ack
*extack
)
1773 struct iavf_adapter
*adapter
= netdev_priv(netdev
);
1776 /* Only support toeplitz hash function */
1777 if (rxfh
->hfunc
!= ETH_RSS_HASH_NO_CHANGE
&&
1778 rxfh
->hfunc
!= ETH_RSS_HASH_TOP
)
1781 if ((rxfh
->input_xfrm
& RXH_XFRM_SYM_XOR
) &&
1782 adapter
->hfunc
!= VIRTCHNL_RSS_ALG_TOEPLITZ_SYMMETRIC
) {
1783 if (!ADV_RSS_SUPPORT(adapter
))
1785 adapter
->hfunc
= VIRTCHNL_RSS_ALG_TOEPLITZ_SYMMETRIC
;
1786 adapter
->aq_required
|= IAVF_FLAG_AQ_SET_RSS_HFUNC
;
1787 } else if (!(rxfh
->input_xfrm
& RXH_XFRM_SYM_XOR
) &&
1788 adapter
->hfunc
!= VIRTCHNL_RSS_ALG_TOEPLITZ_ASYMMETRIC
) {
1789 adapter
->hfunc
= VIRTCHNL_RSS_ALG_TOEPLITZ_ASYMMETRIC
;
1790 adapter
->aq_required
|= IAVF_FLAG_AQ_SET_RSS_HFUNC
;
1793 if (!rxfh
->key
&& !rxfh
->indir
)
1797 memcpy(adapter
->rss_key
, rxfh
->key
, adapter
->rss_key_size
);
1800 /* Each 32 bits pointed by 'indir' is stored with a lut entry */
1801 for (i
= 0; i
< adapter
->rss_lut_size
; i
++)
1802 adapter
->rss_lut
[i
] = (u8
)(rxfh
->indir
[i
]);
1805 return iavf_config_rss(adapter
);
1808 static const struct ethtool_ops iavf_ethtool_ops
= {
1809 .supported_coalesce_params
= ETHTOOL_COALESCE_USECS
|
1810 ETHTOOL_COALESCE_USE_ADAPTIVE
,
1811 .cap_rss_sym_xor_supported
= true,
1812 .get_drvinfo
= iavf_get_drvinfo
,
1813 .get_link
= ethtool_op_get_link
,
1814 .get_ringparam
= iavf_get_ringparam
,
1815 .set_ringparam
= iavf_set_ringparam
,
1816 .get_strings
= iavf_get_strings
,
1817 .get_ethtool_stats
= iavf_get_ethtool_stats
,
1818 .get_sset_count
= iavf_get_sset_count
,
1819 .get_msglevel
= iavf_get_msglevel
,
1820 .set_msglevel
= iavf_set_msglevel
,
1821 .get_coalesce
= iavf_get_coalesce
,
1822 .set_coalesce
= iavf_set_coalesce
,
1823 .get_per_queue_coalesce
= iavf_get_per_queue_coalesce
,
1824 .set_per_queue_coalesce
= iavf_set_per_queue_coalesce
,
1825 .set_rxnfc
= iavf_set_rxnfc
,
1826 .get_rxnfc
= iavf_get_rxnfc
,
1827 .get_rxfh_indir_size
= iavf_get_rxfh_indir_size
,
1828 .get_rxfh
= iavf_get_rxfh
,
1829 .set_rxfh
= iavf_set_rxfh
,
1830 .get_channels
= iavf_get_channels
,
1831 .set_channels
= iavf_set_channels
,
1832 .get_rxfh_key_size
= iavf_get_rxfh_key_size
,
1833 .get_link_ksettings
= iavf_get_link_ksettings
,
1837 * iavf_set_ethtool_ops - Initialize ethtool ops struct
1838 * @netdev: network interface device structure
1840 * Sets ethtool ops struct in our netdev so that ethtool can call
1843 void iavf_set_ethtool_ops(struct net_device
*netdev
)
1845 netdev
->ethtool_ops
= &iavf_ethtool_ops
;