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1 // SPDX-License-Identifier: GPL-2.0-only
2 /****************************************************************************
3 * Driver for Solarflare network controllers and boards
4 * Copyright 2005-2006 Fen Systems Ltd.
5 * Copyright 2006-2013 Solarflare Communications Inc.
6 */
7
8 #include <linux/netdevice.h>
9 #include <linux/ethtool.h>
10 #include <linux/rtnetlink.h>
11 #include <linux/in.h>
12 #include "net_driver.h"
13 #include "workarounds.h"
14 #include "selftest.h"
15 #include "efx.h"
16 #include "efx_channels.h"
17 #include "rx_common.h"
18 #include "tx_common.h"
19 #include "ethtool_common.h"
20 #include "filter.h"
21 #include "nic.h"
22
23 #define EFX_ETHTOOL_EEPROM_MAGIC 0xEFAB
24
25 /**************************************************************************
26 *
27 * Ethtool operations
28 *
29 **************************************************************************
30 */
31
32 /* Identify device by flashing LEDs */
33 static int efx_ethtool_phys_id(struct net_device *net_dev,
34 enum ethtool_phys_id_state state)
35 {
36 struct efx_nic *efx = netdev_priv(net_dev);
37 enum efx_led_mode mode = EFX_LED_DEFAULT;
38
39 switch (state) {
40 case ETHTOOL_ID_ON:
41 mode = EFX_LED_ON;
42 break;
43 case ETHTOOL_ID_OFF:
44 mode = EFX_LED_OFF;
45 break;
46 case ETHTOOL_ID_INACTIVE:
47 mode = EFX_LED_DEFAULT;
48 break;
49 case ETHTOOL_ID_ACTIVE:
50 return 1; /* cycle on/off once per second */
51 }
52
53 efx->type->set_id_led(efx, mode);
54 return 0;
55 }
56
57 /* This must be called with rtnl_lock held. */
58 static int
59 efx_ethtool_get_link_ksettings(struct net_device *net_dev,
60 struct ethtool_link_ksettings *cmd)
61 {
62 struct efx_nic *efx = netdev_priv(net_dev);
63 struct efx_link_state *link_state = &efx->link_state;
64 u32 supported;
65
66 mutex_lock(&efx->mac_lock);
67 efx->phy_op->get_link_ksettings(efx, cmd);
68 mutex_unlock(&efx->mac_lock);
69
70 /* Both MACs support pause frames (bidirectional and respond-only) */
71 ethtool_convert_link_mode_to_legacy_u32(&supported,
72 cmd->link_modes.supported);
73
74 supported |= SUPPORTED_Pause | SUPPORTED_Asym_Pause;
75
76 ethtool_convert_legacy_u32_to_link_mode(cmd->link_modes.supported,
77 supported);
78
79 if (LOOPBACK_INTERNAL(efx)) {
80 cmd->base.speed = link_state->speed;
81 cmd->base.duplex = link_state->fd ? DUPLEX_FULL : DUPLEX_HALF;
82 }
83
84 return 0;
85 }
86
87 /* This must be called with rtnl_lock held. */
88 static int
89 efx_ethtool_set_link_ksettings(struct net_device *net_dev,
90 const struct ethtool_link_ksettings *cmd)
91 {
92 struct efx_nic *efx = netdev_priv(net_dev);
93 int rc;
94
95 /* GMAC does not support 1000Mbps HD */
96 if ((cmd->base.speed == SPEED_1000) &&
97 (cmd->base.duplex != DUPLEX_FULL)) {
98 netif_dbg(efx, drv, efx->net_dev,
99 "rejecting unsupported 1000Mbps HD setting\n");
100 return -EINVAL;
101 }
102
103 mutex_lock(&efx->mac_lock);
104 rc = efx->phy_op->set_link_ksettings(efx, cmd);
105 mutex_unlock(&efx->mac_lock);
106 return rc;
107 }
108
109 static int efx_ethtool_get_regs_len(struct net_device *net_dev)
110 {
111 return efx_nic_get_regs_len(netdev_priv(net_dev));
112 }
113
114 static void efx_ethtool_get_regs(struct net_device *net_dev,
115 struct ethtool_regs *regs, void *buf)
116 {
117 struct efx_nic *efx = netdev_priv(net_dev);
118
119 regs->version = efx->type->revision;
120 efx_nic_get_regs(efx, buf);
121 }
122
123 static void efx_ethtool_self_test(struct net_device *net_dev,
124 struct ethtool_test *test, u64 *data)
125 {
126 struct efx_nic *efx = netdev_priv(net_dev);
127 struct efx_self_tests *efx_tests;
128 bool already_up;
129 int rc = -ENOMEM;
130
131 efx_tests = kzalloc(sizeof(*efx_tests), GFP_KERNEL);
132 if (!efx_tests)
133 goto fail;
134
135 if (efx->state != STATE_READY) {
136 rc = -EBUSY;
137 goto out;
138 }
139
140 netif_info(efx, drv, efx->net_dev, "starting %sline testing\n",
141 (test->flags & ETH_TEST_FL_OFFLINE) ? "off" : "on");
142
143 /* We need rx buffers and interrupts. */
144 already_up = (efx->net_dev->flags & IFF_UP);
145 if (!already_up) {
146 rc = dev_open(efx->net_dev, NULL);
147 if (rc) {
148 netif_err(efx, drv, efx->net_dev,
149 "failed opening device.\n");
150 goto out;
151 }
152 }
153
154 rc = efx_selftest(efx, efx_tests, test->flags);
155
156 if (!already_up)
157 dev_close(efx->net_dev);
158
159 netif_info(efx, drv, efx->net_dev, "%s %sline self-tests\n",
160 rc == 0 ? "passed" : "failed",
161 (test->flags & ETH_TEST_FL_OFFLINE) ? "off" : "on");
162
163 out:
164 efx_ethtool_fill_self_tests(efx, efx_tests, NULL, data);
165 kfree(efx_tests);
166 fail:
167 if (rc)
168 test->flags |= ETH_TEST_FL_FAILED;
169 }
170
171 /* Restart autonegotiation */
172 static int efx_ethtool_nway_reset(struct net_device *net_dev)
173 {
174 struct efx_nic *efx = netdev_priv(net_dev);
175
176 return mdio45_nway_restart(&efx->mdio);
177 }
178
179 /*
180 * Each channel has a single IRQ and moderation timer, started by any
181 * completion (or other event). Unless the module parameter
182 * separate_tx_channels is set, IRQs and moderation are therefore
183 * shared between RX and TX completions. In this case, when RX IRQ
184 * moderation is explicitly changed then TX IRQ moderation is
185 * automatically changed too, but otherwise we fail if the two values
186 * are requested to be different.
187 *
188 * The hardware does not support a limit on the number of completions
189 * before an IRQ, so we do not use the max_frames fields. We should
190 * report and require that max_frames == (usecs != 0), but this would
191 * invalidate existing user documentation.
192 *
193 * The hardware does not have distinct settings for interrupt
194 * moderation while the previous IRQ is being handled, so we should
195 * not use the 'irq' fields. However, an earlier developer
196 * misunderstood the meaning of the 'irq' fields and the driver did
197 * not support the standard fields. To avoid invalidating existing
198 * user documentation, we report and accept changes through either the
199 * standard or 'irq' fields. If both are changed at the same time, we
200 * prefer the standard field.
201 *
202 * We implement adaptive IRQ moderation, but use a different algorithm
203 * from that assumed in the definition of struct ethtool_coalesce.
204 * Therefore we do not use any of the adaptive moderation parameters
205 * in it.
206 */
207
208 static int efx_ethtool_get_coalesce(struct net_device *net_dev,
209 struct ethtool_coalesce *coalesce)
210 {
211 struct efx_nic *efx = netdev_priv(net_dev);
212 unsigned int tx_usecs, rx_usecs;
213 bool rx_adaptive;
214
215 efx_get_irq_moderation(efx, &tx_usecs, &rx_usecs, &rx_adaptive);
216
217 coalesce->tx_coalesce_usecs = tx_usecs;
218 coalesce->tx_coalesce_usecs_irq = tx_usecs;
219 coalesce->rx_coalesce_usecs = rx_usecs;
220 coalesce->rx_coalesce_usecs_irq = rx_usecs;
221 coalesce->use_adaptive_rx_coalesce = rx_adaptive;
222
223 return 0;
224 }
225
226 static int efx_ethtool_set_coalesce(struct net_device *net_dev,
227 struct ethtool_coalesce *coalesce)
228 {
229 struct efx_nic *efx = netdev_priv(net_dev);
230 struct efx_channel *channel;
231 unsigned int tx_usecs, rx_usecs;
232 bool adaptive, rx_may_override_tx;
233 int rc;
234
235 if (coalesce->use_adaptive_tx_coalesce)
236 return -EINVAL;
237
238 efx_get_irq_moderation(efx, &tx_usecs, &rx_usecs, &adaptive);
239
240 if (coalesce->rx_coalesce_usecs != rx_usecs)
241 rx_usecs = coalesce->rx_coalesce_usecs;
242 else
243 rx_usecs = coalesce->rx_coalesce_usecs_irq;
244
245 adaptive = coalesce->use_adaptive_rx_coalesce;
246
247 /* If channels are shared, TX IRQ moderation can be quietly
248 * overridden unless it is changed from its old value.
249 */
250 rx_may_override_tx = (coalesce->tx_coalesce_usecs == tx_usecs &&
251 coalesce->tx_coalesce_usecs_irq == tx_usecs);
252 if (coalesce->tx_coalesce_usecs != tx_usecs)
253 tx_usecs = coalesce->tx_coalesce_usecs;
254 else
255 tx_usecs = coalesce->tx_coalesce_usecs_irq;
256
257 rc = efx_init_irq_moderation(efx, tx_usecs, rx_usecs, adaptive,
258 rx_may_override_tx);
259 if (rc != 0)
260 return rc;
261
262 efx_for_each_channel(channel, efx)
263 efx->type->push_irq_moderation(channel);
264
265 return 0;
266 }
267
268 static void efx_ethtool_get_ringparam(struct net_device *net_dev,
269 struct ethtool_ringparam *ring)
270 {
271 struct efx_nic *efx = netdev_priv(net_dev);
272
273 ring->rx_max_pending = EFX_MAX_DMAQ_SIZE;
274 ring->tx_max_pending = EFX_TXQ_MAX_ENT(efx);
275 ring->rx_pending = efx->rxq_entries;
276 ring->tx_pending = efx->txq_entries;
277 }
278
279 static int efx_ethtool_set_ringparam(struct net_device *net_dev,
280 struct ethtool_ringparam *ring)
281 {
282 struct efx_nic *efx = netdev_priv(net_dev);
283 u32 txq_entries;
284
285 if (ring->rx_mini_pending || ring->rx_jumbo_pending ||
286 ring->rx_pending > EFX_MAX_DMAQ_SIZE ||
287 ring->tx_pending > EFX_TXQ_MAX_ENT(efx))
288 return -EINVAL;
289
290 if (ring->rx_pending < EFX_RXQ_MIN_ENT) {
291 netif_err(efx, drv, efx->net_dev,
292 "RX queues cannot be smaller than %u\n",
293 EFX_RXQ_MIN_ENT);
294 return -EINVAL;
295 }
296
297 txq_entries = max(ring->tx_pending, EFX_TXQ_MIN_ENT(efx));
298 if (txq_entries != ring->tx_pending)
299 netif_warn(efx, drv, efx->net_dev,
300 "increasing TX queue size to minimum of %u\n",
301 txq_entries);
302
303 return efx_realloc_channels(efx, ring->rx_pending, txq_entries);
304 }
305
306 static int efx_ethtool_set_pauseparam(struct net_device *net_dev,
307 struct ethtool_pauseparam *pause)
308 {
309 struct efx_nic *efx = netdev_priv(net_dev);
310 u8 wanted_fc, old_fc;
311 u32 old_adv;
312 int rc = 0;
313
314 mutex_lock(&efx->mac_lock);
315
316 wanted_fc = ((pause->rx_pause ? EFX_FC_RX : 0) |
317 (pause->tx_pause ? EFX_FC_TX : 0) |
318 (pause->autoneg ? EFX_FC_AUTO : 0));
319
320 if ((wanted_fc & EFX_FC_TX) && !(wanted_fc & EFX_FC_RX)) {
321 netif_dbg(efx, drv, efx->net_dev,
322 "Flow control unsupported: tx ON rx OFF\n");
323 rc = -EINVAL;
324 goto out;
325 }
326
327 if ((wanted_fc & EFX_FC_AUTO) && !efx->link_advertising[0]) {
328 netif_dbg(efx, drv, efx->net_dev,
329 "Autonegotiation is disabled\n");
330 rc = -EINVAL;
331 goto out;
332 }
333
334 /* Hook for Falcon bug 11482 workaround */
335 if (efx->type->prepare_enable_fc_tx &&
336 (wanted_fc & EFX_FC_TX) && !(efx->wanted_fc & EFX_FC_TX))
337 efx->type->prepare_enable_fc_tx(efx);
338
339 old_adv = efx->link_advertising[0];
340 old_fc = efx->wanted_fc;
341 efx_link_set_wanted_fc(efx, wanted_fc);
342 if (efx->link_advertising[0] != old_adv ||
343 (efx->wanted_fc ^ old_fc) & EFX_FC_AUTO) {
344 rc = efx->phy_op->reconfigure(efx);
345 if (rc) {
346 netif_err(efx, drv, efx->net_dev,
347 "Unable to advertise requested flow "
348 "control setting\n");
349 goto out;
350 }
351 }
352
353 /* Reconfigure the MAC. The PHY *may* generate a link state change event
354 * if the user just changed the advertised capabilities, but there's no
355 * harm doing this twice */
356 efx_mac_reconfigure(efx);
357
358 out:
359 mutex_unlock(&efx->mac_lock);
360
361 return rc;
362 }
363
364 static void efx_ethtool_get_wol(struct net_device *net_dev,
365 struct ethtool_wolinfo *wol)
366 {
367 struct efx_nic *efx = netdev_priv(net_dev);
368 return efx->type->get_wol(efx, wol);
369 }
370
371
372 static int efx_ethtool_set_wol(struct net_device *net_dev,
373 struct ethtool_wolinfo *wol)
374 {
375 struct efx_nic *efx = netdev_priv(net_dev);
376 return efx->type->set_wol(efx, wol->wolopts);
377 }
378
379 static int efx_ethtool_reset(struct net_device *net_dev, u32 *flags)
380 {
381 struct efx_nic *efx = netdev_priv(net_dev);
382 int rc;
383
384 rc = efx->type->map_reset_flags(flags);
385 if (rc < 0)
386 return rc;
387
388 return efx_reset(efx, rc);
389 }
390
391 /* MAC address mask including only I/G bit */
392 static const u8 mac_addr_ig_mask[ETH_ALEN] __aligned(2) = {0x01, 0, 0, 0, 0, 0};
393
394 #define IP4_ADDR_FULL_MASK ((__force __be32)~0)
395 #define IP_PROTO_FULL_MASK 0xFF
396 #define PORT_FULL_MASK ((__force __be16)~0)
397 #define ETHER_TYPE_FULL_MASK ((__force __be16)~0)
398
399 static inline void ip6_fill_mask(__be32 *mask)
400 {
401 mask[0] = mask[1] = mask[2] = mask[3] = ~(__be32)0;
402 }
403
404 static int efx_ethtool_get_class_rule(struct efx_nic *efx,
405 struct ethtool_rx_flow_spec *rule,
406 u32 *rss_context)
407 {
408 struct ethtool_tcpip4_spec *ip_entry = &rule->h_u.tcp_ip4_spec;
409 struct ethtool_tcpip4_spec *ip_mask = &rule->m_u.tcp_ip4_spec;
410 struct ethtool_usrip4_spec *uip_entry = &rule->h_u.usr_ip4_spec;
411 struct ethtool_usrip4_spec *uip_mask = &rule->m_u.usr_ip4_spec;
412 struct ethtool_tcpip6_spec *ip6_entry = &rule->h_u.tcp_ip6_spec;
413 struct ethtool_tcpip6_spec *ip6_mask = &rule->m_u.tcp_ip6_spec;
414 struct ethtool_usrip6_spec *uip6_entry = &rule->h_u.usr_ip6_spec;
415 struct ethtool_usrip6_spec *uip6_mask = &rule->m_u.usr_ip6_spec;
416 struct ethhdr *mac_entry = &rule->h_u.ether_spec;
417 struct ethhdr *mac_mask = &rule->m_u.ether_spec;
418 struct efx_filter_spec spec;
419 int rc;
420
421 rc = efx_filter_get_filter_safe(efx, EFX_FILTER_PRI_MANUAL,
422 rule->location, &spec);
423 if (rc)
424 return rc;
425
426 if (spec.dmaq_id == EFX_FILTER_RX_DMAQ_ID_DROP)
427 rule->ring_cookie = RX_CLS_FLOW_DISC;
428 else
429 rule->ring_cookie = spec.dmaq_id;
430
431 if ((spec.match_flags & EFX_FILTER_MATCH_ETHER_TYPE) &&
432 spec.ether_type == htons(ETH_P_IP) &&
433 (spec.match_flags & EFX_FILTER_MATCH_IP_PROTO) &&
434 (spec.ip_proto == IPPROTO_TCP || spec.ip_proto == IPPROTO_UDP) &&
435 !(spec.match_flags &
436 ~(EFX_FILTER_MATCH_ETHER_TYPE | EFX_FILTER_MATCH_OUTER_VID |
437 EFX_FILTER_MATCH_LOC_HOST | EFX_FILTER_MATCH_REM_HOST |
438 EFX_FILTER_MATCH_IP_PROTO |
439 EFX_FILTER_MATCH_LOC_PORT | EFX_FILTER_MATCH_REM_PORT))) {
440 rule->flow_type = ((spec.ip_proto == IPPROTO_TCP) ?
441 TCP_V4_FLOW : UDP_V4_FLOW);
442 if (spec.match_flags & EFX_FILTER_MATCH_LOC_HOST) {
443 ip_entry->ip4dst = spec.loc_host[0];
444 ip_mask->ip4dst = IP4_ADDR_FULL_MASK;
445 }
446 if (spec.match_flags & EFX_FILTER_MATCH_REM_HOST) {
447 ip_entry->ip4src = spec.rem_host[0];
448 ip_mask->ip4src = IP4_ADDR_FULL_MASK;
449 }
450 if (spec.match_flags & EFX_FILTER_MATCH_LOC_PORT) {
451 ip_entry->pdst = spec.loc_port;
452 ip_mask->pdst = PORT_FULL_MASK;
453 }
454 if (spec.match_flags & EFX_FILTER_MATCH_REM_PORT) {
455 ip_entry->psrc = spec.rem_port;
456 ip_mask->psrc = PORT_FULL_MASK;
457 }
458 } else if ((spec.match_flags & EFX_FILTER_MATCH_ETHER_TYPE) &&
459 spec.ether_type == htons(ETH_P_IPV6) &&
460 (spec.match_flags & EFX_FILTER_MATCH_IP_PROTO) &&
461 (spec.ip_proto == IPPROTO_TCP || spec.ip_proto == IPPROTO_UDP) &&
462 !(spec.match_flags &
463 ~(EFX_FILTER_MATCH_ETHER_TYPE | EFX_FILTER_MATCH_OUTER_VID |
464 EFX_FILTER_MATCH_LOC_HOST | EFX_FILTER_MATCH_REM_HOST |
465 EFX_FILTER_MATCH_IP_PROTO |
466 EFX_FILTER_MATCH_LOC_PORT | EFX_FILTER_MATCH_REM_PORT))) {
467 rule->flow_type = ((spec.ip_proto == IPPROTO_TCP) ?
468 TCP_V6_FLOW : UDP_V6_FLOW);
469 if (spec.match_flags & EFX_FILTER_MATCH_LOC_HOST) {
470 memcpy(ip6_entry->ip6dst, spec.loc_host,
471 sizeof(ip6_entry->ip6dst));
472 ip6_fill_mask(ip6_mask->ip6dst);
473 }
474 if (spec.match_flags & EFX_FILTER_MATCH_REM_HOST) {
475 memcpy(ip6_entry->ip6src, spec.rem_host,
476 sizeof(ip6_entry->ip6src));
477 ip6_fill_mask(ip6_mask->ip6src);
478 }
479 if (spec.match_flags & EFX_FILTER_MATCH_LOC_PORT) {
480 ip6_entry->pdst = spec.loc_port;
481 ip6_mask->pdst = PORT_FULL_MASK;
482 }
483 if (spec.match_flags & EFX_FILTER_MATCH_REM_PORT) {
484 ip6_entry->psrc = spec.rem_port;
485 ip6_mask->psrc = PORT_FULL_MASK;
486 }
487 } else if (!(spec.match_flags &
488 ~(EFX_FILTER_MATCH_LOC_MAC | EFX_FILTER_MATCH_LOC_MAC_IG |
489 EFX_FILTER_MATCH_REM_MAC | EFX_FILTER_MATCH_ETHER_TYPE |
490 EFX_FILTER_MATCH_OUTER_VID))) {
491 rule->flow_type = ETHER_FLOW;
492 if (spec.match_flags &
493 (EFX_FILTER_MATCH_LOC_MAC | EFX_FILTER_MATCH_LOC_MAC_IG)) {
494 ether_addr_copy(mac_entry->h_dest, spec.loc_mac);
495 if (spec.match_flags & EFX_FILTER_MATCH_LOC_MAC)
496 eth_broadcast_addr(mac_mask->h_dest);
497 else
498 ether_addr_copy(mac_mask->h_dest,
499 mac_addr_ig_mask);
500 }
501 if (spec.match_flags & EFX_FILTER_MATCH_REM_MAC) {
502 ether_addr_copy(mac_entry->h_source, spec.rem_mac);
503 eth_broadcast_addr(mac_mask->h_source);
504 }
505 if (spec.match_flags & EFX_FILTER_MATCH_ETHER_TYPE) {
506 mac_entry->h_proto = spec.ether_type;
507 mac_mask->h_proto = ETHER_TYPE_FULL_MASK;
508 }
509 } else if (spec.match_flags & EFX_FILTER_MATCH_ETHER_TYPE &&
510 spec.ether_type == htons(ETH_P_IP) &&
511 !(spec.match_flags &
512 ~(EFX_FILTER_MATCH_ETHER_TYPE | EFX_FILTER_MATCH_OUTER_VID |
513 EFX_FILTER_MATCH_LOC_HOST | EFX_FILTER_MATCH_REM_HOST |
514 EFX_FILTER_MATCH_IP_PROTO))) {
515 rule->flow_type = IPV4_USER_FLOW;
516 uip_entry->ip_ver = ETH_RX_NFC_IP4;
517 if (spec.match_flags & EFX_FILTER_MATCH_IP_PROTO) {
518 uip_mask->proto = IP_PROTO_FULL_MASK;
519 uip_entry->proto = spec.ip_proto;
520 }
521 if (spec.match_flags & EFX_FILTER_MATCH_LOC_HOST) {
522 uip_entry->ip4dst = spec.loc_host[0];
523 uip_mask->ip4dst = IP4_ADDR_FULL_MASK;
524 }
525 if (spec.match_flags & EFX_FILTER_MATCH_REM_HOST) {
526 uip_entry->ip4src = spec.rem_host[0];
527 uip_mask->ip4src = IP4_ADDR_FULL_MASK;
528 }
529 } else if (spec.match_flags & EFX_FILTER_MATCH_ETHER_TYPE &&
530 spec.ether_type == htons(ETH_P_IPV6) &&
531 !(spec.match_flags &
532 ~(EFX_FILTER_MATCH_ETHER_TYPE | EFX_FILTER_MATCH_OUTER_VID |
533 EFX_FILTER_MATCH_LOC_HOST | EFX_FILTER_MATCH_REM_HOST |
534 EFX_FILTER_MATCH_IP_PROTO))) {
535 rule->flow_type = IPV6_USER_FLOW;
536 if (spec.match_flags & EFX_FILTER_MATCH_IP_PROTO) {
537 uip6_mask->l4_proto = IP_PROTO_FULL_MASK;
538 uip6_entry->l4_proto = spec.ip_proto;
539 }
540 if (spec.match_flags & EFX_FILTER_MATCH_LOC_HOST) {
541 memcpy(uip6_entry->ip6dst, spec.loc_host,
542 sizeof(uip6_entry->ip6dst));
543 ip6_fill_mask(uip6_mask->ip6dst);
544 }
545 if (spec.match_flags & EFX_FILTER_MATCH_REM_HOST) {
546 memcpy(uip6_entry->ip6src, spec.rem_host,
547 sizeof(uip6_entry->ip6src));
548 ip6_fill_mask(uip6_mask->ip6src);
549 }
550 } else {
551 /* The above should handle all filters that we insert */
552 WARN_ON(1);
553 return -EINVAL;
554 }
555
556 if (spec.match_flags & EFX_FILTER_MATCH_OUTER_VID) {
557 rule->flow_type |= FLOW_EXT;
558 rule->h_ext.vlan_tci = spec.outer_vid;
559 rule->m_ext.vlan_tci = htons(0xfff);
560 }
561
562 if (spec.flags & EFX_FILTER_FLAG_RX_RSS) {
563 rule->flow_type |= FLOW_RSS;
564 *rss_context = spec.rss_context;
565 }
566
567 return rc;
568 }
569
570 static int
571 efx_ethtool_get_rxnfc(struct net_device *net_dev,
572 struct ethtool_rxnfc *info, u32 *rule_locs)
573 {
574 struct efx_nic *efx = netdev_priv(net_dev);
575 u32 rss_context = 0;
576 s32 rc = 0;
577
578 switch (info->cmd) {
579 case ETHTOOL_GRXRINGS:
580 info->data = efx->n_rx_channels;
581 return 0;
582
583 case ETHTOOL_GRXFH: {
584 struct efx_rss_context *ctx = &efx->rss_context;
585 __u64 data;
586
587 mutex_lock(&efx->rss_lock);
588 if (info->flow_type & FLOW_RSS && info->rss_context) {
589 ctx = efx_find_rss_context_entry(efx, info->rss_context);
590 if (!ctx) {
591 rc = -ENOENT;
592 goto out_unlock;
593 }
594 }
595
596 data = 0;
597 if (!efx_rss_active(ctx)) /* No RSS */
598 goto out_setdata_unlock;
599
600 switch (info->flow_type & ~FLOW_RSS) {
601 case UDP_V4_FLOW:
602 case UDP_V6_FLOW:
603 if (ctx->rx_hash_udp_4tuple)
604 data = (RXH_L4_B_0_1 | RXH_L4_B_2_3 |
605 RXH_IP_SRC | RXH_IP_DST);
606 else
607 data = RXH_IP_SRC | RXH_IP_DST;
608 break;
609 case TCP_V4_FLOW:
610 case TCP_V6_FLOW:
611 data = (RXH_L4_B_0_1 | RXH_L4_B_2_3 |
612 RXH_IP_SRC | RXH_IP_DST);
613 break;
614 case SCTP_V4_FLOW:
615 case SCTP_V6_FLOW:
616 case AH_ESP_V4_FLOW:
617 case AH_ESP_V6_FLOW:
618 case IPV4_FLOW:
619 case IPV6_FLOW:
620 data = RXH_IP_SRC | RXH_IP_DST;
621 break;
622 default:
623 break;
624 }
625 out_setdata_unlock:
626 info->data = data;
627 out_unlock:
628 mutex_unlock(&efx->rss_lock);
629 return rc;
630 }
631
632 case ETHTOOL_GRXCLSRLCNT:
633 info->data = efx_filter_get_rx_id_limit(efx);
634 if (info->data == 0)
635 return -EOPNOTSUPP;
636 info->data |= RX_CLS_LOC_SPECIAL;
637 info->rule_cnt =
638 efx_filter_count_rx_used(efx, EFX_FILTER_PRI_MANUAL);
639 return 0;
640
641 case ETHTOOL_GRXCLSRULE:
642 if (efx_filter_get_rx_id_limit(efx) == 0)
643 return -EOPNOTSUPP;
644 rc = efx_ethtool_get_class_rule(efx, &info->fs, &rss_context);
645 if (rc < 0)
646 return rc;
647 if (info->fs.flow_type & FLOW_RSS)
648 info->rss_context = rss_context;
649 return 0;
650
651 case ETHTOOL_GRXCLSRLALL:
652 info->data = efx_filter_get_rx_id_limit(efx);
653 if (info->data == 0)
654 return -EOPNOTSUPP;
655 rc = efx_filter_get_rx_ids(efx, EFX_FILTER_PRI_MANUAL,
656 rule_locs, info->rule_cnt);
657 if (rc < 0)
658 return rc;
659 info->rule_cnt = rc;
660 return 0;
661
662 default:
663 return -EOPNOTSUPP;
664 }
665 }
666
667 static inline bool ip6_mask_is_full(__be32 mask[4])
668 {
669 return !~(mask[0] & mask[1] & mask[2] & mask[3]);
670 }
671
672 static inline bool ip6_mask_is_empty(__be32 mask[4])
673 {
674 return !(mask[0] | mask[1] | mask[2] | mask[3]);
675 }
676
677 static int efx_ethtool_set_class_rule(struct efx_nic *efx,
678 struct ethtool_rx_flow_spec *rule,
679 u32 rss_context)
680 {
681 struct ethtool_tcpip4_spec *ip_entry = &rule->h_u.tcp_ip4_spec;
682 struct ethtool_tcpip4_spec *ip_mask = &rule->m_u.tcp_ip4_spec;
683 struct ethtool_usrip4_spec *uip_entry = &rule->h_u.usr_ip4_spec;
684 struct ethtool_usrip4_spec *uip_mask = &rule->m_u.usr_ip4_spec;
685 struct ethtool_tcpip6_spec *ip6_entry = &rule->h_u.tcp_ip6_spec;
686 struct ethtool_tcpip6_spec *ip6_mask = &rule->m_u.tcp_ip6_spec;
687 struct ethtool_usrip6_spec *uip6_entry = &rule->h_u.usr_ip6_spec;
688 struct ethtool_usrip6_spec *uip6_mask = &rule->m_u.usr_ip6_spec;
689 u32 flow_type = rule->flow_type & ~(FLOW_EXT | FLOW_RSS);
690 struct ethhdr *mac_entry = &rule->h_u.ether_spec;
691 struct ethhdr *mac_mask = &rule->m_u.ether_spec;
692 enum efx_filter_flags flags = 0;
693 struct efx_filter_spec spec;
694 int rc;
695
696 /* Check that user wants us to choose the location */
697 if (rule->location != RX_CLS_LOC_ANY)
698 return -EINVAL;
699
700 /* Range-check ring_cookie */
701 if (rule->ring_cookie >= efx->n_rx_channels &&
702 rule->ring_cookie != RX_CLS_FLOW_DISC)
703 return -EINVAL;
704
705 /* Check for unsupported extensions */
706 if ((rule->flow_type & FLOW_EXT) &&
707 (rule->m_ext.vlan_etype || rule->m_ext.data[0] ||
708 rule->m_ext.data[1]))
709 return -EINVAL;
710
711 if (efx->rx_scatter)
712 flags |= EFX_FILTER_FLAG_RX_SCATTER;
713 if (rule->flow_type & FLOW_RSS)
714 flags |= EFX_FILTER_FLAG_RX_RSS;
715
716 efx_filter_init_rx(&spec, EFX_FILTER_PRI_MANUAL, flags,
717 (rule->ring_cookie == RX_CLS_FLOW_DISC) ?
718 EFX_FILTER_RX_DMAQ_ID_DROP : rule->ring_cookie);
719
720 if (rule->flow_type & FLOW_RSS)
721 spec.rss_context = rss_context;
722
723 switch (flow_type) {
724 case TCP_V4_FLOW:
725 case UDP_V4_FLOW:
726 spec.match_flags = (EFX_FILTER_MATCH_ETHER_TYPE |
727 EFX_FILTER_MATCH_IP_PROTO);
728 spec.ether_type = htons(ETH_P_IP);
729 spec.ip_proto = flow_type == TCP_V4_FLOW ? IPPROTO_TCP
730 : IPPROTO_UDP;
731 if (ip_mask->ip4dst) {
732 if (ip_mask->ip4dst != IP4_ADDR_FULL_MASK)
733 return -EINVAL;
734 spec.match_flags |= EFX_FILTER_MATCH_LOC_HOST;
735 spec.loc_host[0] = ip_entry->ip4dst;
736 }
737 if (ip_mask->ip4src) {
738 if (ip_mask->ip4src != IP4_ADDR_FULL_MASK)
739 return -EINVAL;
740 spec.match_flags |= EFX_FILTER_MATCH_REM_HOST;
741 spec.rem_host[0] = ip_entry->ip4src;
742 }
743 if (ip_mask->pdst) {
744 if (ip_mask->pdst != PORT_FULL_MASK)
745 return -EINVAL;
746 spec.match_flags |= EFX_FILTER_MATCH_LOC_PORT;
747 spec.loc_port = ip_entry->pdst;
748 }
749 if (ip_mask->psrc) {
750 if (ip_mask->psrc != PORT_FULL_MASK)
751 return -EINVAL;
752 spec.match_flags |= EFX_FILTER_MATCH_REM_PORT;
753 spec.rem_port = ip_entry->psrc;
754 }
755 if (ip_mask->tos)
756 return -EINVAL;
757 break;
758
759 case TCP_V6_FLOW:
760 case UDP_V6_FLOW:
761 spec.match_flags = (EFX_FILTER_MATCH_ETHER_TYPE |
762 EFX_FILTER_MATCH_IP_PROTO);
763 spec.ether_type = htons(ETH_P_IPV6);
764 spec.ip_proto = flow_type == TCP_V6_FLOW ? IPPROTO_TCP
765 : IPPROTO_UDP;
766 if (!ip6_mask_is_empty(ip6_mask->ip6dst)) {
767 if (!ip6_mask_is_full(ip6_mask->ip6dst))
768 return -EINVAL;
769 spec.match_flags |= EFX_FILTER_MATCH_LOC_HOST;
770 memcpy(spec.loc_host, ip6_entry->ip6dst, sizeof(spec.loc_host));
771 }
772 if (!ip6_mask_is_empty(ip6_mask->ip6src)) {
773 if (!ip6_mask_is_full(ip6_mask->ip6src))
774 return -EINVAL;
775 spec.match_flags |= EFX_FILTER_MATCH_REM_HOST;
776 memcpy(spec.rem_host, ip6_entry->ip6src, sizeof(spec.rem_host));
777 }
778 if (ip6_mask->pdst) {
779 if (ip6_mask->pdst != PORT_FULL_MASK)
780 return -EINVAL;
781 spec.match_flags |= EFX_FILTER_MATCH_LOC_PORT;
782 spec.loc_port = ip6_entry->pdst;
783 }
784 if (ip6_mask->psrc) {
785 if (ip6_mask->psrc != PORT_FULL_MASK)
786 return -EINVAL;
787 spec.match_flags |= EFX_FILTER_MATCH_REM_PORT;
788 spec.rem_port = ip6_entry->psrc;
789 }
790 if (ip6_mask->tclass)
791 return -EINVAL;
792 break;
793
794 case IPV4_USER_FLOW:
795 if (uip_mask->l4_4_bytes || uip_mask->tos || uip_mask->ip_ver ||
796 uip_entry->ip_ver != ETH_RX_NFC_IP4)
797 return -EINVAL;
798 spec.match_flags = EFX_FILTER_MATCH_ETHER_TYPE;
799 spec.ether_type = htons(ETH_P_IP);
800 if (uip_mask->ip4dst) {
801 if (uip_mask->ip4dst != IP4_ADDR_FULL_MASK)
802 return -EINVAL;
803 spec.match_flags |= EFX_FILTER_MATCH_LOC_HOST;
804 spec.loc_host[0] = uip_entry->ip4dst;
805 }
806 if (uip_mask->ip4src) {
807 if (uip_mask->ip4src != IP4_ADDR_FULL_MASK)
808 return -EINVAL;
809 spec.match_flags |= EFX_FILTER_MATCH_REM_HOST;
810 spec.rem_host[0] = uip_entry->ip4src;
811 }
812 if (uip_mask->proto) {
813 if (uip_mask->proto != IP_PROTO_FULL_MASK)
814 return -EINVAL;
815 spec.match_flags |= EFX_FILTER_MATCH_IP_PROTO;
816 spec.ip_proto = uip_entry->proto;
817 }
818 break;
819
820 case IPV6_USER_FLOW:
821 if (uip6_mask->l4_4_bytes || uip6_mask->tclass)
822 return -EINVAL;
823 spec.match_flags = EFX_FILTER_MATCH_ETHER_TYPE;
824 spec.ether_type = htons(ETH_P_IPV6);
825 if (!ip6_mask_is_empty(uip6_mask->ip6dst)) {
826 if (!ip6_mask_is_full(uip6_mask->ip6dst))
827 return -EINVAL;
828 spec.match_flags |= EFX_FILTER_MATCH_LOC_HOST;
829 memcpy(spec.loc_host, uip6_entry->ip6dst, sizeof(spec.loc_host));
830 }
831 if (!ip6_mask_is_empty(uip6_mask->ip6src)) {
832 if (!ip6_mask_is_full(uip6_mask->ip6src))
833 return -EINVAL;
834 spec.match_flags |= EFX_FILTER_MATCH_REM_HOST;
835 memcpy(spec.rem_host, uip6_entry->ip6src, sizeof(spec.rem_host));
836 }
837 if (uip6_mask->l4_proto) {
838 if (uip6_mask->l4_proto != IP_PROTO_FULL_MASK)
839 return -EINVAL;
840 spec.match_flags |= EFX_FILTER_MATCH_IP_PROTO;
841 spec.ip_proto = uip6_entry->l4_proto;
842 }
843 break;
844
845 case ETHER_FLOW:
846 if (!is_zero_ether_addr(mac_mask->h_dest)) {
847 if (ether_addr_equal(mac_mask->h_dest,
848 mac_addr_ig_mask))
849 spec.match_flags |= EFX_FILTER_MATCH_LOC_MAC_IG;
850 else if (is_broadcast_ether_addr(mac_mask->h_dest))
851 spec.match_flags |= EFX_FILTER_MATCH_LOC_MAC;
852 else
853 return -EINVAL;
854 ether_addr_copy(spec.loc_mac, mac_entry->h_dest);
855 }
856 if (!is_zero_ether_addr(mac_mask->h_source)) {
857 if (!is_broadcast_ether_addr(mac_mask->h_source))
858 return -EINVAL;
859 spec.match_flags |= EFX_FILTER_MATCH_REM_MAC;
860 ether_addr_copy(spec.rem_mac, mac_entry->h_source);
861 }
862 if (mac_mask->h_proto) {
863 if (mac_mask->h_proto != ETHER_TYPE_FULL_MASK)
864 return -EINVAL;
865 spec.match_flags |= EFX_FILTER_MATCH_ETHER_TYPE;
866 spec.ether_type = mac_entry->h_proto;
867 }
868 break;
869
870 default:
871 return -EINVAL;
872 }
873
874 if ((rule->flow_type & FLOW_EXT) && rule->m_ext.vlan_tci) {
875 if (rule->m_ext.vlan_tci != htons(0xfff))
876 return -EINVAL;
877 spec.match_flags |= EFX_FILTER_MATCH_OUTER_VID;
878 spec.outer_vid = rule->h_ext.vlan_tci;
879 }
880
881 rc = efx_filter_insert_filter(efx, &spec, true);
882 if (rc < 0)
883 return rc;
884
885 rule->location = rc;
886 return 0;
887 }
888
889 static int efx_ethtool_set_rxnfc(struct net_device *net_dev,
890 struct ethtool_rxnfc *info)
891 {
892 struct efx_nic *efx = netdev_priv(net_dev);
893
894 if (efx_filter_get_rx_id_limit(efx) == 0)
895 return -EOPNOTSUPP;
896
897 switch (info->cmd) {
898 case ETHTOOL_SRXCLSRLINS:
899 return efx_ethtool_set_class_rule(efx, &info->fs,
900 info->rss_context);
901
902 case ETHTOOL_SRXCLSRLDEL:
903 return efx_filter_remove_id_safe(efx, EFX_FILTER_PRI_MANUAL,
904 info->fs.location);
905
906 default:
907 return -EOPNOTSUPP;
908 }
909 }
910
911 static u32 efx_ethtool_get_rxfh_indir_size(struct net_device *net_dev)
912 {
913 struct efx_nic *efx = netdev_priv(net_dev);
914
915 if (efx->n_rx_channels == 1)
916 return 0;
917 return ARRAY_SIZE(efx->rss_context.rx_indir_table);
918 }
919
920 static u32 efx_ethtool_get_rxfh_key_size(struct net_device *net_dev)
921 {
922 struct efx_nic *efx = netdev_priv(net_dev);
923
924 return efx->type->rx_hash_key_size;
925 }
926
927 static int efx_ethtool_get_rxfh(struct net_device *net_dev, u32 *indir, u8 *key,
928 u8 *hfunc)
929 {
930 struct efx_nic *efx = netdev_priv(net_dev);
931 int rc;
932
933 rc = efx->type->rx_pull_rss_config(efx);
934 if (rc)
935 return rc;
936
937 if (hfunc)
938 *hfunc = ETH_RSS_HASH_TOP;
939 if (indir)
940 memcpy(indir, efx->rss_context.rx_indir_table,
941 sizeof(efx->rss_context.rx_indir_table));
942 if (key)
943 memcpy(key, efx->rss_context.rx_hash_key,
944 efx->type->rx_hash_key_size);
945 return 0;
946 }
947
948 static int efx_ethtool_set_rxfh(struct net_device *net_dev, const u32 *indir,
949 const u8 *key, const u8 hfunc)
950 {
951 struct efx_nic *efx = netdev_priv(net_dev);
952
953 /* Hash function is Toeplitz, cannot be changed */
954 if (hfunc != ETH_RSS_HASH_NO_CHANGE && hfunc != ETH_RSS_HASH_TOP)
955 return -EOPNOTSUPP;
956 if (!indir && !key)
957 return 0;
958
959 if (!key)
960 key = efx->rss_context.rx_hash_key;
961 if (!indir)
962 indir = efx->rss_context.rx_indir_table;
963
964 return efx->type->rx_push_rss_config(efx, true, indir, key);
965 }
966
967 static int efx_ethtool_get_rxfh_context(struct net_device *net_dev, u32 *indir,
968 u8 *key, u8 *hfunc, u32 rss_context)
969 {
970 struct efx_nic *efx = netdev_priv(net_dev);
971 struct efx_rss_context *ctx;
972 int rc = 0;
973
974 if (!efx->type->rx_pull_rss_context_config)
975 return -EOPNOTSUPP;
976
977 mutex_lock(&efx->rss_lock);
978 ctx = efx_find_rss_context_entry(efx, rss_context);
979 if (!ctx) {
980 rc = -ENOENT;
981 goto out_unlock;
982 }
983 rc = efx->type->rx_pull_rss_context_config(efx, ctx);
984 if (rc)
985 goto out_unlock;
986
987 if (hfunc)
988 *hfunc = ETH_RSS_HASH_TOP;
989 if (indir)
990 memcpy(indir, ctx->rx_indir_table, sizeof(ctx->rx_indir_table));
991 if (key)
992 memcpy(key, ctx->rx_hash_key, efx->type->rx_hash_key_size);
993 out_unlock:
994 mutex_unlock(&efx->rss_lock);
995 return rc;
996 }
997
998 static int efx_ethtool_set_rxfh_context(struct net_device *net_dev,
999 const u32 *indir, const u8 *key,
1000 const u8 hfunc, u32 *rss_context,
1001 bool delete)
1002 {
1003 struct efx_nic *efx = netdev_priv(net_dev);
1004 struct efx_rss_context *ctx;
1005 bool allocated = false;
1006 int rc;
1007
1008 if (!efx->type->rx_push_rss_context_config)
1009 return -EOPNOTSUPP;
1010 /* Hash function is Toeplitz, cannot be changed */
1011 if (hfunc != ETH_RSS_HASH_NO_CHANGE && hfunc != ETH_RSS_HASH_TOP)
1012 return -EOPNOTSUPP;
1013
1014 mutex_lock(&efx->rss_lock);
1015
1016 if (*rss_context == ETH_RXFH_CONTEXT_ALLOC) {
1017 if (delete) {
1018 /* alloc + delete == Nothing to do */
1019 rc = -EINVAL;
1020 goto out_unlock;
1021 }
1022 ctx = efx_alloc_rss_context_entry(efx);
1023 if (!ctx) {
1024 rc = -ENOMEM;
1025 goto out_unlock;
1026 }
1027 ctx->context_id = EFX_MCDI_RSS_CONTEXT_INVALID;
1028 /* Initialise indir table and key to defaults */
1029 efx_set_default_rx_indir_table(efx, ctx);
1030 netdev_rss_key_fill(ctx->rx_hash_key, sizeof(ctx->rx_hash_key));
1031 allocated = true;
1032 } else {
1033 ctx = efx_find_rss_context_entry(efx, *rss_context);
1034 if (!ctx) {
1035 rc = -ENOENT;
1036 goto out_unlock;
1037 }
1038 }
1039
1040 if (delete) {
1041 /* delete this context */
1042 rc = efx->type->rx_push_rss_context_config(efx, ctx, NULL, NULL);
1043 if (!rc)
1044 efx_free_rss_context_entry(ctx);
1045 goto out_unlock;
1046 }
1047
1048 if (!key)
1049 key = ctx->rx_hash_key;
1050 if (!indir)
1051 indir = ctx->rx_indir_table;
1052
1053 rc = efx->type->rx_push_rss_context_config(efx, ctx, indir, key);
1054 if (rc && allocated)
1055 efx_free_rss_context_entry(ctx);
1056 else
1057 *rss_context = ctx->user_id;
1058 out_unlock:
1059 mutex_unlock(&efx->rss_lock);
1060 return rc;
1061 }
1062
1063 static int efx_ethtool_get_ts_info(struct net_device *net_dev,
1064 struct ethtool_ts_info *ts_info)
1065 {
1066 struct efx_nic *efx = netdev_priv(net_dev);
1067
1068 /* Software capabilities */
1069 ts_info->so_timestamping = (SOF_TIMESTAMPING_RX_SOFTWARE |
1070 SOF_TIMESTAMPING_SOFTWARE);
1071 ts_info->phc_index = -1;
1072
1073 efx_ptp_get_ts_info(efx, ts_info);
1074 return 0;
1075 }
1076
1077 static int efx_ethtool_get_module_eeprom(struct net_device *net_dev,
1078 struct ethtool_eeprom *ee,
1079 u8 *data)
1080 {
1081 struct efx_nic *efx = netdev_priv(net_dev);
1082 int ret;
1083
1084 if (!efx->phy_op || !efx->phy_op->get_module_eeprom)
1085 return -EOPNOTSUPP;
1086
1087 mutex_lock(&efx->mac_lock);
1088 ret = efx->phy_op->get_module_eeprom(efx, ee, data);
1089 mutex_unlock(&efx->mac_lock);
1090
1091 return ret;
1092 }
1093
1094 static int efx_ethtool_get_module_info(struct net_device *net_dev,
1095 struct ethtool_modinfo *modinfo)
1096 {
1097 struct efx_nic *efx = netdev_priv(net_dev);
1098 int ret;
1099
1100 if (!efx->phy_op || !efx->phy_op->get_module_info)
1101 return -EOPNOTSUPP;
1102
1103 mutex_lock(&efx->mac_lock);
1104 ret = efx->phy_op->get_module_info(efx, modinfo);
1105 mutex_unlock(&efx->mac_lock);
1106
1107 return ret;
1108 }
1109
1110 static int efx_ethtool_get_fecparam(struct net_device *net_dev,
1111 struct ethtool_fecparam *fecparam)
1112 {
1113 struct efx_nic *efx = netdev_priv(net_dev);
1114 int rc;
1115
1116 if (!efx->phy_op || !efx->phy_op->get_fecparam)
1117 return -EOPNOTSUPP;
1118 mutex_lock(&efx->mac_lock);
1119 rc = efx->phy_op->get_fecparam(efx, fecparam);
1120 mutex_unlock(&efx->mac_lock);
1121
1122 return rc;
1123 }
1124
1125 static int efx_ethtool_set_fecparam(struct net_device *net_dev,
1126 struct ethtool_fecparam *fecparam)
1127 {
1128 struct efx_nic *efx = netdev_priv(net_dev);
1129 int rc;
1130
1131 if (!efx->phy_op || !efx->phy_op->get_fecparam)
1132 return -EOPNOTSUPP;
1133 mutex_lock(&efx->mac_lock);
1134 rc = efx->phy_op->set_fecparam(efx, fecparam);
1135 mutex_unlock(&efx->mac_lock);
1136
1137 return rc;
1138 }
1139
1140 const struct ethtool_ops efx_ethtool_ops = {
1141 .get_drvinfo = efx_ethtool_get_drvinfo,
1142 .get_regs_len = efx_ethtool_get_regs_len,
1143 .get_regs = efx_ethtool_get_regs,
1144 .get_msglevel = efx_ethtool_get_msglevel,
1145 .set_msglevel = efx_ethtool_set_msglevel,
1146 .nway_reset = efx_ethtool_nway_reset,
1147 .get_link = ethtool_op_get_link,
1148 .get_coalesce = efx_ethtool_get_coalesce,
1149 .set_coalesce = efx_ethtool_set_coalesce,
1150 .get_ringparam = efx_ethtool_get_ringparam,
1151 .set_ringparam = efx_ethtool_set_ringparam,
1152 .get_pauseparam = efx_ethtool_get_pauseparam,
1153 .set_pauseparam = efx_ethtool_set_pauseparam,
1154 .get_sset_count = efx_ethtool_get_sset_count,
1155 .self_test = efx_ethtool_self_test,
1156 .get_strings = efx_ethtool_get_strings,
1157 .set_phys_id = efx_ethtool_phys_id,
1158 .get_ethtool_stats = efx_ethtool_get_stats,
1159 .get_wol = efx_ethtool_get_wol,
1160 .set_wol = efx_ethtool_set_wol,
1161 .reset = efx_ethtool_reset,
1162 .get_rxnfc = efx_ethtool_get_rxnfc,
1163 .set_rxnfc = efx_ethtool_set_rxnfc,
1164 .get_rxfh_indir_size = efx_ethtool_get_rxfh_indir_size,
1165 .get_rxfh_key_size = efx_ethtool_get_rxfh_key_size,
1166 .get_rxfh = efx_ethtool_get_rxfh,
1167 .set_rxfh = efx_ethtool_set_rxfh,
1168 .get_rxfh_context = efx_ethtool_get_rxfh_context,
1169 .set_rxfh_context = efx_ethtool_set_rxfh_context,
1170 .get_ts_info = efx_ethtool_get_ts_info,
1171 .get_module_info = efx_ethtool_get_module_info,
1172 .get_module_eeprom = efx_ethtool_get_module_eeprom,
1173 .get_link_ksettings = efx_ethtool_get_link_ksettings,
1174 .set_link_ksettings = efx_ethtool_set_link_ksettings,
1175 .get_fecparam = efx_ethtool_get_fecparam,
1176 .set_fecparam = efx_ethtool_set_fecparam,
1177 };