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.
8 #include <linux/netdevice.h>
9 #include <linux/ethtool.h>
10 #include <linux/rtnetlink.h>
12 #include "net_driver.h"
13 #include "workarounds.h"
19 struct ef4_sw_stat_desc
{
22 EF4_ETHTOOL_STAT_SOURCE_nic
,
23 EF4_ETHTOOL_STAT_SOURCE_channel
,
24 EF4_ETHTOOL_STAT_SOURCE_tx_queue
27 u64(*get_stat
) (void *field
); /* Reader function */
30 /* Initialiser for a struct ef4_sw_stat_desc with type-checking */
31 #define EF4_ETHTOOL_STAT(stat_name, source_name, field, field_type, \
32 get_stat_function) { \
34 .source = EF4_ETHTOOL_STAT_SOURCE_##source_name, \
35 .offset = ((((field_type *) 0) == \
36 &((struct ef4_##source_name *)0)->field) ? \
37 offsetof(struct ef4_##source_name, field) : \
38 offsetof(struct ef4_##source_name, field)), \
39 .get_stat = get_stat_function, \
42 static u64
ef4_get_uint_stat(void *field
)
44 return *(unsigned int *)field
;
47 static u64
ef4_get_atomic_stat(void *field
)
49 return atomic_read((atomic_t
*) field
);
52 #define EF4_ETHTOOL_ATOMIC_NIC_ERROR_STAT(field) \
53 EF4_ETHTOOL_STAT(field, nic, field, \
54 atomic_t, ef4_get_atomic_stat)
56 #define EF4_ETHTOOL_UINT_CHANNEL_STAT(field) \
57 EF4_ETHTOOL_STAT(field, channel, n_##field, \
58 unsigned int, ef4_get_uint_stat)
60 #define EF4_ETHTOOL_UINT_TXQ_STAT(field) \
61 EF4_ETHTOOL_STAT(tx_##field, tx_queue, field, \
62 unsigned int, ef4_get_uint_stat)
64 static const struct ef4_sw_stat_desc ef4_sw_stat_desc
[] = {
65 EF4_ETHTOOL_UINT_TXQ_STAT(merge_events
),
66 EF4_ETHTOOL_UINT_TXQ_STAT(pushes
),
67 EF4_ETHTOOL_UINT_TXQ_STAT(cb_packets
),
68 EF4_ETHTOOL_ATOMIC_NIC_ERROR_STAT(rx_reset
),
69 EF4_ETHTOOL_UINT_CHANNEL_STAT(rx_tobe_disc
),
70 EF4_ETHTOOL_UINT_CHANNEL_STAT(rx_ip_hdr_chksum_err
),
71 EF4_ETHTOOL_UINT_CHANNEL_STAT(rx_tcp_udp_chksum_err
),
72 EF4_ETHTOOL_UINT_CHANNEL_STAT(rx_mcast_mismatch
),
73 EF4_ETHTOOL_UINT_CHANNEL_STAT(rx_frm_trunc
),
74 EF4_ETHTOOL_UINT_CHANNEL_STAT(rx_merge_events
),
75 EF4_ETHTOOL_UINT_CHANNEL_STAT(rx_merge_packets
),
78 #define EF4_ETHTOOL_SW_STAT_COUNT ARRAY_SIZE(ef4_sw_stat_desc)
80 #define EF4_ETHTOOL_EEPROM_MAGIC 0xEFAB
82 /**************************************************************************
86 **************************************************************************
89 /* Identify device by flashing LEDs */
90 static int ef4_ethtool_phys_id(struct net_device
*net_dev
,
91 enum ethtool_phys_id_state state
)
93 struct ef4_nic
*efx
= netdev_priv(net_dev
);
94 enum ef4_led_mode mode
= EF4_LED_DEFAULT
;
103 case ETHTOOL_ID_INACTIVE
:
104 mode
= EF4_LED_DEFAULT
;
106 case ETHTOOL_ID_ACTIVE
:
107 return 1; /* cycle on/off once per second */
110 efx
->type
->set_id_led(efx
, mode
);
114 /* This must be called with rtnl_lock held. */
116 ef4_ethtool_get_link_ksettings(struct net_device
*net_dev
,
117 struct ethtool_link_ksettings
*cmd
)
119 struct ef4_nic
*efx
= netdev_priv(net_dev
);
120 struct ef4_link_state
*link_state
= &efx
->link_state
;
122 mutex_lock(&efx
->mac_lock
);
123 efx
->phy_op
->get_link_ksettings(efx
, cmd
);
124 mutex_unlock(&efx
->mac_lock
);
126 /* Both MACs support pause frames (bidirectional and respond-only) */
127 ethtool_link_ksettings_add_link_mode(cmd
, supported
, Pause
);
128 ethtool_link_ksettings_add_link_mode(cmd
, supported
, Asym_Pause
);
130 if (LOOPBACK_INTERNAL(efx
)) {
131 cmd
->base
.speed
= link_state
->speed
;
132 cmd
->base
.duplex
= link_state
->fd
? DUPLEX_FULL
: DUPLEX_HALF
;
138 /* This must be called with rtnl_lock held. */
140 ef4_ethtool_set_link_ksettings(struct net_device
*net_dev
,
141 const struct ethtool_link_ksettings
*cmd
)
143 struct ef4_nic
*efx
= netdev_priv(net_dev
);
146 /* GMAC does not support 1000Mbps HD */
147 if ((cmd
->base
.speed
== SPEED_1000
) &&
148 (cmd
->base
.duplex
!= DUPLEX_FULL
)) {
149 netif_dbg(efx
, drv
, efx
->net_dev
,
150 "rejecting unsupported 1000Mbps HD setting\n");
154 mutex_lock(&efx
->mac_lock
);
155 rc
= efx
->phy_op
->set_link_ksettings(efx
, cmd
);
156 mutex_unlock(&efx
->mac_lock
);
160 static void ef4_ethtool_get_drvinfo(struct net_device
*net_dev
,
161 struct ethtool_drvinfo
*info
)
163 struct ef4_nic
*efx
= netdev_priv(net_dev
);
165 strscpy(info
->driver
, KBUILD_MODNAME
, sizeof(info
->driver
));
166 strscpy(info
->version
, EF4_DRIVER_VERSION
, sizeof(info
->version
));
167 strscpy(info
->bus_info
, pci_name(efx
->pci_dev
), sizeof(info
->bus_info
));
170 static int ef4_ethtool_get_regs_len(struct net_device
*net_dev
)
172 return ef4_nic_get_regs_len(netdev_priv(net_dev
));
175 static void ef4_ethtool_get_regs(struct net_device
*net_dev
,
176 struct ethtool_regs
*regs
, void *buf
)
178 struct ef4_nic
*efx
= netdev_priv(net_dev
);
180 regs
->version
= efx
->type
->revision
;
181 ef4_nic_get_regs(efx
, buf
);
184 static u32
ef4_ethtool_get_msglevel(struct net_device
*net_dev
)
186 struct ef4_nic
*efx
= netdev_priv(net_dev
);
187 return efx
->msg_enable
;
190 static void ef4_ethtool_set_msglevel(struct net_device
*net_dev
, u32 msg_enable
)
192 struct ef4_nic
*efx
= netdev_priv(net_dev
);
193 efx
->msg_enable
= msg_enable
;
197 * ef4_fill_test - fill in an individual self-test entry
198 * @test_index: Index of the test
199 * @strings: Ethtool strings, or %NULL
200 * @data: Ethtool test results, or %NULL
201 * @test: Pointer to test result (used only if data != %NULL)
202 * @unit_format: Unit name format (e.g. "chan\%d")
203 * @unit_id: Unit id (e.g. 0 for "chan0")
204 * @test_format: Test name format (e.g. "loopback.\%s.tx.sent")
205 * @test_id: Test id (e.g. "PHYXS" for "loopback.PHYXS.tx_sent")
207 * Fill in an individual self-test entry.
209 static void ef4_fill_test(unsigned int test_index
, u8
*strings
, u64
*data
,
210 int *test
, const char *unit_format
, int unit_id
,
211 const char *test_format
, const char *test_id
)
213 char unit_str
[ETH_GSTRING_LEN
], test_str
[ETH_GSTRING_LEN
];
215 /* Fill data value, if applicable */
217 data
[test_index
] = *test
;
219 /* Fill string, if applicable */
221 if (strchr(unit_format
, '%'))
222 snprintf(unit_str
, sizeof(unit_str
),
223 unit_format
, unit_id
);
225 strcpy(unit_str
, unit_format
);
226 snprintf(test_str
, sizeof(test_str
), test_format
, test_id
);
227 snprintf(strings
+ test_index
* ETH_GSTRING_LEN
,
229 "%-6s %-24s", unit_str
, test_str
);
233 #define EF4_CHANNEL_NAME(_channel) "chan%d", _channel->channel
234 #define EF4_TX_QUEUE_NAME(_tx_queue) "txq%d", _tx_queue->queue
235 #define EF4_RX_QUEUE_NAME(_rx_queue) "rxq%d", _rx_queue->queue
236 #define EF4_LOOPBACK_NAME(_mode, _counter) \
237 "loopback.%s." _counter, STRING_TABLE_LOOKUP(_mode, ef4_loopback_mode)
240 * ef4_fill_loopback_test - fill in a block of loopback self-test entries
242 * @lb_tests: Efx loopback self-test results structure
243 * @mode: Loopback test mode
244 * @test_index: Starting index of the test
245 * @strings: Ethtool strings, or %NULL
246 * @data: Ethtool test results, or %NULL
248 * Fill in a block of loopback self-test entries. Return new test
251 static int ef4_fill_loopback_test(struct ef4_nic
*efx
,
252 struct ef4_loopback_self_tests
*lb_tests
,
253 enum ef4_loopback_mode mode
,
254 unsigned int test_index
,
255 u8
*strings
, u64
*data
)
257 struct ef4_channel
*channel
=
258 ef4_get_channel(efx
, efx
->tx_channel_offset
);
259 struct ef4_tx_queue
*tx_queue
;
261 ef4_for_each_channel_tx_queue(tx_queue
, channel
) {
262 ef4_fill_test(test_index
++, strings
, data
,
263 &lb_tests
->tx_sent
[tx_queue
->queue
],
264 EF4_TX_QUEUE_NAME(tx_queue
),
265 EF4_LOOPBACK_NAME(mode
, "tx_sent"));
266 ef4_fill_test(test_index
++, strings
, data
,
267 &lb_tests
->tx_done
[tx_queue
->queue
],
268 EF4_TX_QUEUE_NAME(tx_queue
),
269 EF4_LOOPBACK_NAME(mode
, "tx_done"));
271 ef4_fill_test(test_index
++, strings
, data
,
274 EF4_LOOPBACK_NAME(mode
, "rx_good"));
275 ef4_fill_test(test_index
++, strings
, data
,
278 EF4_LOOPBACK_NAME(mode
, "rx_bad"));
284 * ef4_ethtool_fill_self_tests - get self-test details
286 * @tests: Efx self-test results structure, or %NULL
287 * @strings: Ethtool strings, or %NULL
288 * @data: Ethtool test results, or %NULL
290 * Get self-test number of strings, strings, and/or test results.
291 * Return number of strings (== number of test results).
293 * The reason for merging these three functions is to make sure that
294 * they can never be inconsistent.
296 static int ef4_ethtool_fill_self_tests(struct ef4_nic
*efx
,
297 struct ef4_self_tests
*tests
,
298 u8
*strings
, u64
*data
)
300 struct ef4_channel
*channel
;
301 unsigned int n
= 0, i
;
302 enum ef4_loopback_mode mode
;
304 ef4_fill_test(n
++, strings
, data
, &tests
->phy_alive
,
305 "phy", 0, "alive", NULL
);
306 ef4_fill_test(n
++, strings
, data
, &tests
->nvram
,
307 "core", 0, "nvram", NULL
);
308 ef4_fill_test(n
++, strings
, data
, &tests
->interrupt
,
309 "core", 0, "interrupt", NULL
);
312 ef4_for_each_channel(channel
, efx
) {
313 ef4_fill_test(n
++, strings
, data
,
314 &tests
->eventq_dma
[channel
->channel
],
315 EF4_CHANNEL_NAME(channel
),
317 ef4_fill_test(n
++, strings
, data
,
318 &tests
->eventq_int
[channel
->channel
],
319 EF4_CHANNEL_NAME(channel
),
323 ef4_fill_test(n
++, strings
, data
, &tests
->memory
,
324 "core", 0, "memory", NULL
);
325 ef4_fill_test(n
++, strings
, data
, &tests
->registers
,
326 "core", 0, "registers", NULL
);
328 if (efx
->phy_op
->run_tests
!= NULL
) {
329 EF4_BUG_ON_PARANOID(efx
->phy_op
->test_name
== NULL
);
331 for (i
= 0; true; ++i
) {
334 EF4_BUG_ON_PARANOID(i
>= EF4_MAX_PHY_TESTS
);
335 name
= efx
->phy_op
->test_name(efx
, i
);
339 ef4_fill_test(n
++, strings
, data
, &tests
->phy_ext
[i
],
340 "phy", 0, name
, NULL
);
345 for (mode
= LOOPBACK_NONE
; mode
<= LOOPBACK_TEST_MAX
; mode
++) {
346 if (!(efx
->loopback_modes
& (1 << mode
)))
348 n
= ef4_fill_loopback_test(efx
,
349 &tests
->loopback
[mode
], mode
, n
,
356 static size_t ef4_describe_per_queue_stats(struct ef4_nic
*efx
, u8
**strings
)
359 struct ef4_channel
*channel
;
361 ef4_for_each_channel(channel
, efx
) {
362 if (ef4_channel_has_tx_queues(channel
)) {
367 ethtool_sprintf(strings
, "tx-%u.tx_packets",
368 channel
->tx_queue
[0].queue
/
372 ef4_for_each_channel(channel
, efx
) {
373 if (ef4_channel_has_rx_queue(channel
)) {
378 ethtool_sprintf(strings
, "rx-%d.rx_packets",
385 static int ef4_ethtool_get_sset_count(struct net_device
*net_dev
,
388 struct ef4_nic
*efx
= netdev_priv(net_dev
);
390 switch (string_set
) {
392 return efx
->type
->describe_stats(efx
, NULL
) +
393 EF4_ETHTOOL_SW_STAT_COUNT
+
394 ef4_describe_per_queue_stats(efx
, NULL
);
396 return ef4_ethtool_fill_self_tests(efx
, NULL
, NULL
, NULL
);
402 static void ef4_ethtool_get_strings(struct net_device
*net_dev
,
403 u32 string_set
, u8
*strings
)
405 struct ef4_nic
*efx
= netdev_priv(net_dev
);
408 switch (string_set
) {
410 efx
->type
->describe_stats(efx
, &strings
);
411 for (i
= 0; i
< EF4_ETHTOOL_SW_STAT_COUNT
; i
++)
412 ethtool_puts(&strings
, ef4_sw_stat_desc
[i
].name
);
413 ef4_describe_per_queue_stats(efx
, &strings
);
416 ef4_ethtool_fill_self_tests(efx
, NULL
, strings
, NULL
);
419 /* No other string sets */
424 static void ef4_ethtool_get_stats(struct net_device
*net_dev
,
425 struct ethtool_stats
*stats
,
428 struct ef4_nic
*efx
= netdev_priv(net_dev
);
429 const struct ef4_sw_stat_desc
*stat
;
430 struct ef4_channel
*channel
;
431 struct ef4_tx_queue
*tx_queue
;
432 struct ef4_rx_queue
*rx_queue
;
435 spin_lock_bh(&efx
->stats_lock
);
437 /* Get NIC statistics */
438 data
+= efx
->type
->update_stats(efx
, data
, NULL
);
440 /* Get software statistics */
441 for (i
= 0; i
< EF4_ETHTOOL_SW_STAT_COUNT
; i
++) {
442 stat
= &ef4_sw_stat_desc
[i
];
443 switch (stat
->source
) {
444 case EF4_ETHTOOL_STAT_SOURCE_nic
:
445 data
[i
] = stat
->get_stat((void *)efx
+ stat
->offset
);
447 case EF4_ETHTOOL_STAT_SOURCE_channel
:
449 ef4_for_each_channel(channel
, efx
)
450 data
[i
] += stat
->get_stat((void *)channel
+
453 case EF4_ETHTOOL_STAT_SOURCE_tx_queue
:
455 ef4_for_each_channel(channel
, efx
) {
456 ef4_for_each_channel_tx_queue(tx_queue
, channel
)
458 stat
->get_stat((void *)tx_queue
464 data
+= EF4_ETHTOOL_SW_STAT_COUNT
;
466 spin_unlock_bh(&efx
->stats_lock
);
468 ef4_for_each_channel(channel
, efx
) {
469 if (ef4_channel_has_tx_queues(channel
)) {
471 ef4_for_each_channel_tx_queue(tx_queue
, channel
) {
472 *data
+= tx_queue
->tx_packets
;
477 ef4_for_each_channel(channel
, efx
) {
478 if (ef4_channel_has_rx_queue(channel
)) {
480 ef4_for_each_channel_rx_queue(rx_queue
, channel
) {
481 *data
+= rx_queue
->rx_packets
;
488 static void ef4_ethtool_self_test(struct net_device
*net_dev
,
489 struct ethtool_test
*test
, u64
*data
)
491 struct ef4_nic
*efx
= netdev_priv(net_dev
);
492 struct ef4_self_tests
*ef4_tests
;
496 ef4_tests
= kzalloc(sizeof(*ef4_tests
), GFP_KERNEL
);
500 if (efx
->state
!= STATE_READY
) {
505 netif_info(efx
, drv
, efx
->net_dev
, "starting %sline testing\n",
506 (test
->flags
& ETH_TEST_FL_OFFLINE
) ? "off" : "on");
508 /* We need rx buffers and interrupts. */
509 already_up
= (efx
->net_dev
->flags
& IFF_UP
);
511 rc
= dev_open(efx
->net_dev
, NULL
);
513 netif_err(efx
, drv
, efx
->net_dev
,
514 "failed opening device.\n");
519 rc
= ef4_selftest(efx
, ef4_tests
, test
->flags
);
522 dev_close(efx
->net_dev
);
524 netif_info(efx
, drv
, efx
->net_dev
, "%s %sline self-tests\n",
525 rc
== 0 ? "passed" : "failed",
526 (test
->flags
& ETH_TEST_FL_OFFLINE
) ? "off" : "on");
529 ef4_ethtool_fill_self_tests(efx
, ef4_tests
, NULL
, data
);
533 test
->flags
|= ETH_TEST_FL_FAILED
;
536 /* Restart autonegotiation */
537 static int ef4_ethtool_nway_reset(struct net_device
*net_dev
)
539 struct ef4_nic
*efx
= netdev_priv(net_dev
);
541 return mdio45_nway_restart(&efx
->mdio
);
545 * Each channel has a single IRQ and moderation timer, started by any
546 * completion (or other event). Unless the module parameter
547 * separate_tx_channels is set, IRQs and moderation are therefore
548 * shared between RX and TX completions. In this case, when RX IRQ
549 * moderation is explicitly changed then TX IRQ moderation is
550 * automatically changed too, but otherwise we fail if the two values
551 * are requested to be different.
553 * The hardware does not support a limit on the number of completions
554 * before an IRQ, so we do not use the max_frames fields. We should
555 * report and require that max_frames == (usecs != 0), but this would
556 * invalidate existing user documentation.
558 * The hardware does not have distinct settings for interrupt
559 * moderation while the previous IRQ is being handled, so we should
560 * not use the 'irq' fields. However, an earlier developer
561 * misunderstood the meaning of the 'irq' fields and the driver did
562 * not support the standard fields. To avoid invalidating existing
563 * user documentation, we report and accept changes through either the
564 * standard or 'irq' fields. If both are changed at the same time, we
565 * prefer the standard field.
567 * We implement adaptive IRQ moderation, but use a different algorithm
568 * from that assumed in the definition of struct ethtool_coalesce.
569 * Therefore we do not use any of the adaptive moderation parameters
573 static int ef4_ethtool_get_coalesce(struct net_device
*net_dev
,
574 struct ethtool_coalesce
*coalesce
,
575 struct kernel_ethtool_coalesce
*kernel_coal
,
576 struct netlink_ext_ack
*extack
)
578 struct ef4_nic
*efx
= netdev_priv(net_dev
);
579 unsigned int tx_usecs
, rx_usecs
;
582 ef4_get_irq_moderation(efx
, &tx_usecs
, &rx_usecs
, &rx_adaptive
);
584 coalesce
->tx_coalesce_usecs
= tx_usecs
;
585 coalesce
->tx_coalesce_usecs_irq
= tx_usecs
;
586 coalesce
->rx_coalesce_usecs
= rx_usecs
;
587 coalesce
->rx_coalesce_usecs_irq
= rx_usecs
;
588 coalesce
->use_adaptive_rx_coalesce
= rx_adaptive
;
593 static int ef4_ethtool_set_coalesce(struct net_device
*net_dev
,
594 struct ethtool_coalesce
*coalesce
,
595 struct kernel_ethtool_coalesce
*kernel_coal
,
596 struct netlink_ext_ack
*extack
)
598 struct ef4_nic
*efx
= netdev_priv(net_dev
);
599 struct ef4_channel
*channel
;
600 unsigned int tx_usecs
, rx_usecs
;
601 bool adaptive
, rx_may_override_tx
;
604 ef4_get_irq_moderation(efx
, &tx_usecs
, &rx_usecs
, &adaptive
);
606 if (coalesce
->rx_coalesce_usecs
!= rx_usecs
)
607 rx_usecs
= coalesce
->rx_coalesce_usecs
;
609 rx_usecs
= coalesce
->rx_coalesce_usecs_irq
;
611 adaptive
= coalesce
->use_adaptive_rx_coalesce
;
613 /* If channels are shared, TX IRQ moderation can be quietly
614 * overridden unless it is changed from its old value.
616 rx_may_override_tx
= (coalesce
->tx_coalesce_usecs
== tx_usecs
&&
617 coalesce
->tx_coalesce_usecs_irq
== tx_usecs
);
618 if (coalesce
->tx_coalesce_usecs
!= tx_usecs
)
619 tx_usecs
= coalesce
->tx_coalesce_usecs
;
621 tx_usecs
= coalesce
->tx_coalesce_usecs_irq
;
623 rc
= ef4_init_irq_moderation(efx
, tx_usecs
, rx_usecs
, adaptive
,
628 ef4_for_each_channel(channel
, efx
)
629 efx
->type
->push_irq_moderation(channel
);
635 ef4_ethtool_get_ringparam(struct net_device
*net_dev
,
636 struct ethtool_ringparam
*ring
,
637 struct kernel_ethtool_ringparam
*kernel_ring
,
638 struct netlink_ext_ack
*extack
)
640 struct ef4_nic
*efx
= netdev_priv(net_dev
);
642 ring
->rx_max_pending
= EF4_MAX_DMAQ_SIZE
;
643 ring
->tx_max_pending
= EF4_MAX_DMAQ_SIZE
;
644 ring
->rx_pending
= efx
->rxq_entries
;
645 ring
->tx_pending
= efx
->txq_entries
;
649 ef4_ethtool_set_ringparam(struct net_device
*net_dev
,
650 struct ethtool_ringparam
*ring
,
651 struct kernel_ethtool_ringparam
*kernel_ring
,
652 struct netlink_ext_ack
*extack
)
654 struct ef4_nic
*efx
= netdev_priv(net_dev
);
657 if (ring
->rx_mini_pending
|| ring
->rx_jumbo_pending
||
658 ring
->rx_pending
> EF4_MAX_DMAQ_SIZE
||
659 ring
->tx_pending
> EF4_MAX_DMAQ_SIZE
)
662 if (ring
->rx_pending
< EF4_RXQ_MIN_ENT
) {
663 netif_err(efx
, drv
, efx
->net_dev
,
664 "RX queues cannot be smaller than %u\n",
669 txq_entries
= max(ring
->tx_pending
, EF4_TXQ_MIN_ENT(efx
));
670 if (txq_entries
!= ring
->tx_pending
)
671 netif_warn(efx
, drv
, efx
->net_dev
,
672 "increasing TX queue size to minimum of %u\n",
675 return ef4_realloc_channels(efx
, ring
->rx_pending
, txq_entries
);
678 static int ef4_ethtool_set_pauseparam(struct net_device
*net_dev
,
679 struct ethtool_pauseparam
*pause
)
681 struct ef4_nic
*efx
= netdev_priv(net_dev
);
682 u8 wanted_fc
, old_fc
;
686 mutex_lock(&efx
->mac_lock
);
688 wanted_fc
= ((pause
->rx_pause
? EF4_FC_RX
: 0) |
689 (pause
->tx_pause
? EF4_FC_TX
: 0) |
690 (pause
->autoneg
? EF4_FC_AUTO
: 0));
692 if ((wanted_fc
& EF4_FC_TX
) && !(wanted_fc
& EF4_FC_RX
)) {
693 netif_dbg(efx
, drv
, efx
->net_dev
,
694 "Flow control unsupported: tx ON rx OFF\n");
699 if ((wanted_fc
& EF4_FC_AUTO
) && !efx
->link_advertising
) {
700 netif_dbg(efx
, drv
, efx
->net_dev
,
701 "Autonegotiation is disabled\n");
706 /* Hook for Falcon bug 11482 workaround */
707 if (efx
->type
->prepare_enable_fc_tx
&&
708 (wanted_fc
& EF4_FC_TX
) && !(efx
->wanted_fc
& EF4_FC_TX
))
709 efx
->type
->prepare_enable_fc_tx(efx
);
711 old_adv
= efx
->link_advertising
;
712 old_fc
= efx
->wanted_fc
;
713 ef4_link_set_wanted_fc(efx
, wanted_fc
);
714 if (efx
->link_advertising
!= old_adv
||
715 (efx
->wanted_fc
^ old_fc
) & EF4_FC_AUTO
) {
716 rc
= efx
->phy_op
->reconfigure(efx
);
718 netif_err(efx
, drv
, efx
->net_dev
,
719 "Unable to advertise requested flow "
720 "control setting\n");
725 /* Reconfigure the MAC. The PHY *may* generate a link state change event
726 * if the user just changed the advertised capabilities, but there's no
727 * harm doing this twice */
728 ef4_mac_reconfigure(efx
);
731 mutex_unlock(&efx
->mac_lock
);
736 static void ef4_ethtool_get_pauseparam(struct net_device
*net_dev
,
737 struct ethtool_pauseparam
*pause
)
739 struct ef4_nic
*efx
= netdev_priv(net_dev
);
741 pause
->rx_pause
= !!(efx
->wanted_fc
& EF4_FC_RX
);
742 pause
->tx_pause
= !!(efx
->wanted_fc
& EF4_FC_TX
);
743 pause
->autoneg
= !!(efx
->wanted_fc
& EF4_FC_AUTO
);
746 static void ef4_ethtool_get_wol(struct net_device
*net_dev
,
747 struct ethtool_wolinfo
*wol
)
749 struct ef4_nic
*efx
= netdev_priv(net_dev
);
750 return efx
->type
->get_wol(efx
, wol
);
754 static int ef4_ethtool_set_wol(struct net_device
*net_dev
,
755 struct ethtool_wolinfo
*wol
)
757 struct ef4_nic
*efx
= netdev_priv(net_dev
);
758 return efx
->type
->set_wol(efx
, wol
->wolopts
);
761 static int ef4_ethtool_reset(struct net_device
*net_dev
, u32
*flags
)
763 struct ef4_nic
*efx
= netdev_priv(net_dev
);
766 rc
= efx
->type
->map_reset_flags(flags
);
770 return ef4_reset(efx
, rc
);
773 /* MAC address mask including only I/G bit */
774 static const u8 mac_addr_ig_mask
[ETH_ALEN
] __aligned(2) = {0x01, 0, 0, 0, 0, 0};
776 #define IP4_ADDR_FULL_MASK ((__force __be32)~0)
777 #define IP_PROTO_FULL_MASK 0xFF
778 #define PORT_FULL_MASK ((__force __be16)~0)
779 #define ETHER_TYPE_FULL_MASK ((__force __be16)~0)
781 static inline void ip6_fill_mask(__be32
*mask
)
783 mask
[0] = mask
[1] = mask
[2] = mask
[3] = ~(__be32
)0;
786 static int ef4_ethtool_get_class_rule(struct ef4_nic
*efx
,
787 struct ethtool_rx_flow_spec
*rule
)
789 struct ethtool_tcpip4_spec
*ip_entry
= &rule
->h_u
.tcp_ip4_spec
;
790 struct ethtool_tcpip4_spec
*ip_mask
= &rule
->m_u
.tcp_ip4_spec
;
791 struct ethtool_usrip4_spec
*uip_entry
= &rule
->h_u
.usr_ip4_spec
;
792 struct ethtool_usrip4_spec
*uip_mask
= &rule
->m_u
.usr_ip4_spec
;
793 struct ethtool_tcpip6_spec
*ip6_entry
= &rule
->h_u
.tcp_ip6_spec
;
794 struct ethtool_tcpip6_spec
*ip6_mask
= &rule
->m_u
.tcp_ip6_spec
;
795 struct ethtool_usrip6_spec
*uip6_entry
= &rule
->h_u
.usr_ip6_spec
;
796 struct ethtool_usrip6_spec
*uip6_mask
= &rule
->m_u
.usr_ip6_spec
;
797 struct ethhdr
*mac_entry
= &rule
->h_u
.ether_spec
;
798 struct ethhdr
*mac_mask
= &rule
->m_u
.ether_spec
;
799 struct ef4_filter_spec spec
;
802 rc
= ef4_filter_get_filter_safe(efx
, EF4_FILTER_PRI_MANUAL
,
803 rule
->location
, &spec
);
807 if (spec
.dmaq_id
== EF4_FILTER_RX_DMAQ_ID_DROP
)
808 rule
->ring_cookie
= RX_CLS_FLOW_DISC
;
810 rule
->ring_cookie
= spec
.dmaq_id
;
812 if ((spec
.match_flags
& EF4_FILTER_MATCH_ETHER_TYPE
) &&
813 spec
.ether_type
== htons(ETH_P_IP
) &&
814 (spec
.match_flags
& EF4_FILTER_MATCH_IP_PROTO
) &&
815 (spec
.ip_proto
== IPPROTO_TCP
|| spec
.ip_proto
== IPPROTO_UDP
) &&
817 ~(EF4_FILTER_MATCH_ETHER_TYPE
| EF4_FILTER_MATCH_OUTER_VID
|
818 EF4_FILTER_MATCH_LOC_HOST
| EF4_FILTER_MATCH_REM_HOST
|
819 EF4_FILTER_MATCH_IP_PROTO
|
820 EF4_FILTER_MATCH_LOC_PORT
| EF4_FILTER_MATCH_REM_PORT
))) {
821 rule
->flow_type
= ((spec
.ip_proto
== IPPROTO_TCP
) ?
822 TCP_V4_FLOW
: UDP_V4_FLOW
);
823 if (spec
.match_flags
& EF4_FILTER_MATCH_LOC_HOST
) {
824 ip_entry
->ip4dst
= spec
.loc_host
[0];
825 ip_mask
->ip4dst
= IP4_ADDR_FULL_MASK
;
827 if (spec
.match_flags
& EF4_FILTER_MATCH_REM_HOST
) {
828 ip_entry
->ip4src
= spec
.rem_host
[0];
829 ip_mask
->ip4src
= IP4_ADDR_FULL_MASK
;
831 if (spec
.match_flags
& EF4_FILTER_MATCH_LOC_PORT
) {
832 ip_entry
->pdst
= spec
.loc_port
;
833 ip_mask
->pdst
= PORT_FULL_MASK
;
835 if (spec
.match_flags
& EF4_FILTER_MATCH_REM_PORT
) {
836 ip_entry
->psrc
= spec
.rem_port
;
837 ip_mask
->psrc
= PORT_FULL_MASK
;
839 } else if ((spec
.match_flags
& EF4_FILTER_MATCH_ETHER_TYPE
) &&
840 spec
.ether_type
== htons(ETH_P_IPV6
) &&
841 (spec
.match_flags
& EF4_FILTER_MATCH_IP_PROTO
) &&
842 (spec
.ip_proto
== IPPROTO_TCP
|| spec
.ip_proto
== IPPROTO_UDP
) &&
844 ~(EF4_FILTER_MATCH_ETHER_TYPE
| EF4_FILTER_MATCH_OUTER_VID
|
845 EF4_FILTER_MATCH_LOC_HOST
| EF4_FILTER_MATCH_REM_HOST
|
846 EF4_FILTER_MATCH_IP_PROTO
|
847 EF4_FILTER_MATCH_LOC_PORT
| EF4_FILTER_MATCH_REM_PORT
))) {
848 rule
->flow_type
= ((spec
.ip_proto
== IPPROTO_TCP
) ?
849 TCP_V6_FLOW
: UDP_V6_FLOW
);
850 if (spec
.match_flags
& EF4_FILTER_MATCH_LOC_HOST
) {
851 memcpy(ip6_entry
->ip6dst
, spec
.loc_host
,
852 sizeof(ip6_entry
->ip6dst
));
853 ip6_fill_mask(ip6_mask
->ip6dst
);
855 if (spec
.match_flags
& EF4_FILTER_MATCH_REM_HOST
) {
856 memcpy(ip6_entry
->ip6src
, spec
.rem_host
,
857 sizeof(ip6_entry
->ip6src
));
858 ip6_fill_mask(ip6_mask
->ip6src
);
860 if (spec
.match_flags
& EF4_FILTER_MATCH_LOC_PORT
) {
861 ip6_entry
->pdst
= spec
.loc_port
;
862 ip6_mask
->pdst
= PORT_FULL_MASK
;
864 if (spec
.match_flags
& EF4_FILTER_MATCH_REM_PORT
) {
865 ip6_entry
->psrc
= spec
.rem_port
;
866 ip6_mask
->psrc
= PORT_FULL_MASK
;
868 } else if (!(spec
.match_flags
&
869 ~(EF4_FILTER_MATCH_LOC_MAC
| EF4_FILTER_MATCH_LOC_MAC_IG
|
870 EF4_FILTER_MATCH_REM_MAC
| EF4_FILTER_MATCH_ETHER_TYPE
|
871 EF4_FILTER_MATCH_OUTER_VID
))) {
872 rule
->flow_type
= ETHER_FLOW
;
873 if (spec
.match_flags
&
874 (EF4_FILTER_MATCH_LOC_MAC
| EF4_FILTER_MATCH_LOC_MAC_IG
)) {
875 ether_addr_copy(mac_entry
->h_dest
, spec
.loc_mac
);
876 if (spec
.match_flags
& EF4_FILTER_MATCH_LOC_MAC
)
877 eth_broadcast_addr(mac_mask
->h_dest
);
879 ether_addr_copy(mac_mask
->h_dest
,
882 if (spec
.match_flags
& EF4_FILTER_MATCH_REM_MAC
) {
883 ether_addr_copy(mac_entry
->h_source
, spec
.rem_mac
);
884 eth_broadcast_addr(mac_mask
->h_source
);
886 if (spec
.match_flags
& EF4_FILTER_MATCH_ETHER_TYPE
) {
887 mac_entry
->h_proto
= spec
.ether_type
;
888 mac_mask
->h_proto
= ETHER_TYPE_FULL_MASK
;
890 } else if (spec
.match_flags
& EF4_FILTER_MATCH_ETHER_TYPE
&&
891 spec
.ether_type
== htons(ETH_P_IP
) &&
893 ~(EF4_FILTER_MATCH_ETHER_TYPE
| EF4_FILTER_MATCH_OUTER_VID
|
894 EF4_FILTER_MATCH_LOC_HOST
| EF4_FILTER_MATCH_REM_HOST
|
895 EF4_FILTER_MATCH_IP_PROTO
))) {
896 rule
->flow_type
= IPV4_USER_FLOW
;
897 uip_entry
->ip_ver
= ETH_RX_NFC_IP4
;
898 if (spec
.match_flags
& EF4_FILTER_MATCH_IP_PROTO
) {
899 uip_mask
->proto
= IP_PROTO_FULL_MASK
;
900 uip_entry
->proto
= spec
.ip_proto
;
902 if (spec
.match_flags
& EF4_FILTER_MATCH_LOC_HOST
) {
903 uip_entry
->ip4dst
= spec
.loc_host
[0];
904 uip_mask
->ip4dst
= IP4_ADDR_FULL_MASK
;
906 if (spec
.match_flags
& EF4_FILTER_MATCH_REM_HOST
) {
907 uip_entry
->ip4src
= spec
.rem_host
[0];
908 uip_mask
->ip4src
= IP4_ADDR_FULL_MASK
;
910 } else if (spec
.match_flags
& EF4_FILTER_MATCH_ETHER_TYPE
&&
911 spec
.ether_type
== htons(ETH_P_IPV6
) &&
913 ~(EF4_FILTER_MATCH_ETHER_TYPE
| EF4_FILTER_MATCH_OUTER_VID
|
914 EF4_FILTER_MATCH_LOC_HOST
| EF4_FILTER_MATCH_REM_HOST
|
915 EF4_FILTER_MATCH_IP_PROTO
))) {
916 rule
->flow_type
= IPV6_USER_FLOW
;
917 if (spec
.match_flags
& EF4_FILTER_MATCH_IP_PROTO
) {
918 uip6_mask
->l4_proto
= IP_PROTO_FULL_MASK
;
919 uip6_entry
->l4_proto
= spec
.ip_proto
;
921 if (spec
.match_flags
& EF4_FILTER_MATCH_LOC_HOST
) {
922 memcpy(uip6_entry
->ip6dst
, spec
.loc_host
,
923 sizeof(uip6_entry
->ip6dst
));
924 ip6_fill_mask(uip6_mask
->ip6dst
);
926 if (spec
.match_flags
& EF4_FILTER_MATCH_REM_HOST
) {
927 memcpy(uip6_entry
->ip6src
, spec
.rem_host
,
928 sizeof(uip6_entry
->ip6src
));
929 ip6_fill_mask(uip6_mask
->ip6src
);
932 /* The above should handle all filters that we insert */
937 if (spec
.match_flags
& EF4_FILTER_MATCH_OUTER_VID
) {
938 rule
->flow_type
|= FLOW_EXT
;
939 rule
->h_ext
.vlan_tci
= spec
.outer_vid
;
940 rule
->m_ext
.vlan_tci
= htons(0xfff);
947 ef4_ethtool_get_rxnfc(struct net_device
*net_dev
,
948 struct ethtool_rxnfc
*info
, u32
*rule_locs
)
950 struct ef4_nic
*efx
= netdev_priv(net_dev
);
953 case ETHTOOL_GRXRINGS
:
954 info
->data
= efx
->n_rx_channels
;
957 case ETHTOOL_GRXFH
: {
958 unsigned min_revision
= 0;
961 switch (info
->flow_type
) {
963 info
->data
|= RXH_L4_B_0_1
| RXH_L4_B_2_3
;
969 info
->data
|= RXH_IP_SRC
| RXH_IP_DST
;
970 min_revision
= EF4_REV_FALCON_B0
;
975 if (ef4_nic_rev(efx
) < min_revision
)
980 case ETHTOOL_GRXCLSRLCNT
:
981 info
->data
= ef4_filter_get_rx_id_limit(efx
);
984 info
->data
|= RX_CLS_LOC_SPECIAL
;
986 ef4_filter_count_rx_used(efx
, EF4_FILTER_PRI_MANUAL
);
989 case ETHTOOL_GRXCLSRULE
:
990 if (ef4_filter_get_rx_id_limit(efx
) == 0)
992 return ef4_ethtool_get_class_rule(efx
, &info
->fs
);
994 case ETHTOOL_GRXCLSRLALL
: {
996 info
->data
= ef4_filter_get_rx_id_limit(efx
);
999 rc
= ef4_filter_get_rx_ids(efx
, EF4_FILTER_PRI_MANUAL
,
1000 rule_locs
, info
->rule_cnt
);
1003 info
->rule_cnt
= rc
;
1012 static inline bool ip6_mask_is_full(__be32 mask
[4])
1014 return !~(mask
[0] & mask
[1] & mask
[2] & mask
[3]);
1017 static inline bool ip6_mask_is_empty(__be32 mask
[4])
1019 return !(mask
[0] | mask
[1] | mask
[2] | mask
[3]);
1022 static int ef4_ethtool_set_class_rule(struct ef4_nic
*efx
,
1023 struct ethtool_rx_flow_spec
*rule
)
1025 struct ethtool_tcpip4_spec
*ip_entry
= &rule
->h_u
.tcp_ip4_spec
;
1026 struct ethtool_tcpip4_spec
*ip_mask
= &rule
->m_u
.tcp_ip4_spec
;
1027 struct ethtool_usrip4_spec
*uip_entry
= &rule
->h_u
.usr_ip4_spec
;
1028 struct ethtool_usrip4_spec
*uip_mask
= &rule
->m_u
.usr_ip4_spec
;
1029 struct ethtool_tcpip6_spec
*ip6_entry
= &rule
->h_u
.tcp_ip6_spec
;
1030 struct ethtool_tcpip6_spec
*ip6_mask
= &rule
->m_u
.tcp_ip6_spec
;
1031 struct ethtool_usrip6_spec
*uip6_entry
= &rule
->h_u
.usr_ip6_spec
;
1032 struct ethtool_usrip6_spec
*uip6_mask
= &rule
->m_u
.usr_ip6_spec
;
1033 struct ethhdr
*mac_entry
= &rule
->h_u
.ether_spec
;
1034 struct ethhdr
*mac_mask
= &rule
->m_u
.ether_spec
;
1035 struct ef4_filter_spec spec
;
1038 /* Check that user wants us to choose the location */
1039 if (rule
->location
!= RX_CLS_LOC_ANY
)
1042 /* Range-check ring_cookie */
1043 if (rule
->ring_cookie
>= efx
->n_rx_channels
&&
1044 rule
->ring_cookie
!= RX_CLS_FLOW_DISC
)
1047 /* Check for unsupported extensions */
1048 if ((rule
->flow_type
& FLOW_EXT
) &&
1049 (rule
->m_ext
.vlan_etype
|| rule
->m_ext
.data
[0] ||
1050 rule
->m_ext
.data
[1]))
1053 ef4_filter_init_rx(&spec
, EF4_FILTER_PRI_MANUAL
,
1054 efx
->rx_scatter
? EF4_FILTER_FLAG_RX_SCATTER
: 0,
1055 (rule
->ring_cookie
== RX_CLS_FLOW_DISC
) ?
1056 EF4_FILTER_RX_DMAQ_ID_DROP
: rule
->ring_cookie
);
1058 switch (rule
->flow_type
& ~FLOW_EXT
) {
1061 spec
.match_flags
= (EF4_FILTER_MATCH_ETHER_TYPE
|
1062 EF4_FILTER_MATCH_IP_PROTO
);
1063 spec
.ether_type
= htons(ETH_P_IP
);
1064 spec
.ip_proto
= ((rule
->flow_type
& ~FLOW_EXT
) == TCP_V4_FLOW
?
1065 IPPROTO_TCP
: IPPROTO_UDP
);
1066 if (ip_mask
->ip4dst
) {
1067 if (ip_mask
->ip4dst
!= IP4_ADDR_FULL_MASK
)
1069 spec
.match_flags
|= EF4_FILTER_MATCH_LOC_HOST
;
1070 spec
.loc_host
[0] = ip_entry
->ip4dst
;
1072 if (ip_mask
->ip4src
) {
1073 if (ip_mask
->ip4src
!= IP4_ADDR_FULL_MASK
)
1075 spec
.match_flags
|= EF4_FILTER_MATCH_REM_HOST
;
1076 spec
.rem_host
[0] = ip_entry
->ip4src
;
1078 if (ip_mask
->pdst
) {
1079 if (ip_mask
->pdst
!= PORT_FULL_MASK
)
1081 spec
.match_flags
|= EF4_FILTER_MATCH_LOC_PORT
;
1082 spec
.loc_port
= ip_entry
->pdst
;
1084 if (ip_mask
->psrc
) {
1085 if (ip_mask
->psrc
!= PORT_FULL_MASK
)
1087 spec
.match_flags
|= EF4_FILTER_MATCH_REM_PORT
;
1088 spec
.rem_port
= ip_entry
->psrc
;
1096 spec
.match_flags
= (EF4_FILTER_MATCH_ETHER_TYPE
|
1097 EF4_FILTER_MATCH_IP_PROTO
);
1098 spec
.ether_type
= htons(ETH_P_IPV6
);
1099 spec
.ip_proto
= ((rule
->flow_type
& ~FLOW_EXT
) == TCP_V6_FLOW
?
1100 IPPROTO_TCP
: IPPROTO_UDP
);
1101 if (!ip6_mask_is_empty(ip6_mask
->ip6dst
)) {
1102 if (!ip6_mask_is_full(ip6_mask
->ip6dst
))
1104 spec
.match_flags
|= EF4_FILTER_MATCH_LOC_HOST
;
1105 memcpy(spec
.loc_host
, ip6_entry
->ip6dst
, sizeof(spec
.loc_host
));
1107 if (!ip6_mask_is_empty(ip6_mask
->ip6src
)) {
1108 if (!ip6_mask_is_full(ip6_mask
->ip6src
))
1110 spec
.match_flags
|= EF4_FILTER_MATCH_REM_HOST
;
1111 memcpy(spec
.rem_host
, ip6_entry
->ip6src
, sizeof(spec
.rem_host
));
1113 if (ip6_mask
->pdst
) {
1114 if (ip6_mask
->pdst
!= PORT_FULL_MASK
)
1116 spec
.match_flags
|= EF4_FILTER_MATCH_LOC_PORT
;
1117 spec
.loc_port
= ip6_entry
->pdst
;
1119 if (ip6_mask
->psrc
) {
1120 if (ip6_mask
->psrc
!= PORT_FULL_MASK
)
1122 spec
.match_flags
|= EF4_FILTER_MATCH_REM_PORT
;
1123 spec
.rem_port
= ip6_entry
->psrc
;
1125 if (ip6_mask
->tclass
)
1129 case IPV4_USER_FLOW
:
1130 if (uip_mask
->l4_4_bytes
|| uip_mask
->tos
|| uip_mask
->ip_ver
||
1131 uip_entry
->ip_ver
!= ETH_RX_NFC_IP4
)
1133 spec
.match_flags
= EF4_FILTER_MATCH_ETHER_TYPE
;
1134 spec
.ether_type
= htons(ETH_P_IP
);
1135 if (uip_mask
->ip4dst
) {
1136 if (uip_mask
->ip4dst
!= IP4_ADDR_FULL_MASK
)
1138 spec
.match_flags
|= EF4_FILTER_MATCH_LOC_HOST
;
1139 spec
.loc_host
[0] = uip_entry
->ip4dst
;
1141 if (uip_mask
->ip4src
) {
1142 if (uip_mask
->ip4src
!= IP4_ADDR_FULL_MASK
)
1144 spec
.match_flags
|= EF4_FILTER_MATCH_REM_HOST
;
1145 spec
.rem_host
[0] = uip_entry
->ip4src
;
1147 if (uip_mask
->proto
) {
1148 if (uip_mask
->proto
!= IP_PROTO_FULL_MASK
)
1150 spec
.match_flags
|= EF4_FILTER_MATCH_IP_PROTO
;
1151 spec
.ip_proto
= uip_entry
->proto
;
1155 case IPV6_USER_FLOW
:
1156 if (uip6_mask
->l4_4_bytes
|| uip6_mask
->tclass
)
1158 spec
.match_flags
= EF4_FILTER_MATCH_ETHER_TYPE
;
1159 spec
.ether_type
= htons(ETH_P_IPV6
);
1160 if (!ip6_mask_is_empty(uip6_mask
->ip6dst
)) {
1161 if (!ip6_mask_is_full(uip6_mask
->ip6dst
))
1163 spec
.match_flags
|= EF4_FILTER_MATCH_LOC_HOST
;
1164 memcpy(spec
.loc_host
, uip6_entry
->ip6dst
, sizeof(spec
.loc_host
));
1166 if (!ip6_mask_is_empty(uip6_mask
->ip6src
)) {
1167 if (!ip6_mask_is_full(uip6_mask
->ip6src
))
1169 spec
.match_flags
|= EF4_FILTER_MATCH_REM_HOST
;
1170 memcpy(spec
.rem_host
, uip6_entry
->ip6src
, sizeof(spec
.rem_host
));
1172 if (uip6_mask
->l4_proto
) {
1173 if (uip6_mask
->l4_proto
!= IP_PROTO_FULL_MASK
)
1175 spec
.match_flags
|= EF4_FILTER_MATCH_IP_PROTO
;
1176 spec
.ip_proto
= uip6_entry
->l4_proto
;
1181 if (!is_zero_ether_addr(mac_mask
->h_dest
)) {
1182 if (ether_addr_equal(mac_mask
->h_dest
,
1184 spec
.match_flags
|= EF4_FILTER_MATCH_LOC_MAC_IG
;
1185 else if (is_broadcast_ether_addr(mac_mask
->h_dest
))
1186 spec
.match_flags
|= EF4_FILTER_MATCH_LOC_MAC
;
1189 ether_addr_copy(spec
.loc_mac
, mac_entry
->h_dest
);
1191 if (!is_zero_ether_addr(mac_mask
->h_source
)) {
1192 if (!is_broadcast_ether_addr(mac_mask
->h_source
))
1194 spec
.match_flags
|= EF4_FILTER_MATCH_REM_MAC
;
1195 ether_addr_copy(spec
.rem_mac
, mac_entry
->h_source
);
1197 if (mac_mask
->h_proto
) {
1198 if (mac_mask
->h_proto
!= ETHER_TYPE_FULL_MASK
)
1200 spec
.match_flags
|= EF4_FILTER_MATCH_ETHER_TYPE
;
1201 spec
.ether_type
= mac_entry
->h_proto
;
1209 if ((rule
->flow_type
& FLOW_EXT
) && rule
->m_ext
.vlan_tci
) {
1210 if (rule
->m_ext
.vlan_tci
!= htons(0xfff))
1212 spec
.match_flags
|= EF4_FILTER_MATCH_OUTER_VID
;
1213 spec
.outer_vid
= rule
->h_ext
.vlan_tci
;
1216 rc
= ef4_filter_insert_filter(efx
, &spec
, true);
1220 rule
->location
= rc
;
1224 static int ef4_ethtool_set_rxnfc(struct net_device
*net_dev
,
1225 struct ethtool_rxnfc
*info
)
1227 struct ef4_nic
*efx
= netdev_priv(net_dev
);
1229 if (ef4_filter_get_rx_id_limit(efx
) == 0)
1232 switch (info
->cmd
) {
1233 case ETHTOOL_SRXCLSRLINS
:
1234 return ef4_ethtool_set_class_rule(efx
, &info
->fs
);
1236 case ETHTOOL_SRXCLSRLDEL
:
1237 return ef4_filter_remove_id_safe(efx
, EF4_FILTER_PRI_MANUAL
,
1245 static u32
ef4_ethtool_get_rxfh_indir_size(struct net_device
*net_dev
)
1247 struct ef4_nic
*efx
= netdev_priv(net_dev
);
1249 return ((ef4_nic_rev(efx
) < EF4_REV_FALCON_B0
||
1250 efx
->n_rx_channels
== 1) ?
1251 0 : ARRAY_SIZE(efx
->rx_indir_table
));
1254 static int ef4_ethtool_get_rxfh(struct net_device
*net_dev
,
1255 struct ethtool_rxfh_param
*rxfh
)
1257 struct ef4_nic
*efx
= netdev_priv(net_dev
);
1259 rxfh
->hfunc
= ETH_RSS_HASH_TOP
;
1261 memcpy(rxfh
->indir
, efx
->rx_indir_table
,
1262 sizeof(efx
->rx_indir_table
));
1266 static int ef4_ethtool_set_rxfh(struct net_device
*net_dev
,
1267 struct ethtool_rxfh_param
*rxfh
,
1268 struct netlink_ext_ack
*extack
)
1270 struct ef4_nic
*efx
= netdev_priv(net_dev
);
1272 /* We do not allow change in unsupported parameters */
1274 (rxfh
->hfunc
!= ETH_RSS_HASH_NO_CHANGE
&&
1275 rxfh
->hfunc
!= ETH_RSS_HASH_TOP
))
1280 return efx
->type
->rx_push_rss_config(efx
, true, rxfh
->indir
);
1283 static int ef4_ethtool_get_module_eeprom(struct net_device
*net_dev
,
1284 struct ethtool_eeprom
*ee
,
1287 struct ef4_nic
*efx
= netdev_priv(net_dev
);
1290 if (!efx
->phy_op
|| !efx
->phy_op
->get_module_eeprom
)
1293 mutex_lock(&efx
->mac_lock
);
1294 ret
= efx
->phy_op
->get_module_eeprom(efx
, ee
, data
);
1295 mutex_unlock(&efx
->mac_lock
);
1300 static int ef4_ethtool_get_module_info(struct net_device
*net_dev
,
1301 struct ethtool_modinfo
*modinfo
)
1303 struct ef4_nic
*efx
= netdev_priv(net_dev
);
1306 if (!efx
->phy_op
|| !efx
->phy_op
->get_module_info
)
1309 mutex_lock(&efx
->mac_lock
);
1310 ret
= efx
->phy_op
->get_module_info(efx
, modinfo
);
1311 mutex_unlock(&efx
->mac_lock
);
1316 const struct ethtool_ops ef4_ethtool_ops
= {
1317 .supported_coalesce_params
= ETHTOOL_COALESCE_USECS
|
1318 ETHTOOL_COALESCE_USECS_IRQ
|
1319 ETHTOOL_COALESCE_USE_ADAPTIVE_RX
,
1320 .get_drvinfo
= ef4_ethtool_get_drvinfo
,
1321 .get_regs_len
= ef4_ethtool_get_regs_len
,
1322 .get_regs
= ef4_ethtool_get_regs
,
1323 .get_msglevel
= ef4_ethtool_get_msglevel
,
1324 .set_msglevel
= ef4_ethtool_set_msglevel
,
1325 .nway_reset
= ef4_ethtool_nway_reset
,
1326 .get_link
= ethtool_op_get_link
,
1327 .get_coalesce
= ef4_ethtool_get_coalesce
,
1328 .set_coalesce
= ef4_ethtool_set_coalesce
,
1329 .get_ringparam
= ef4_ethtool_get_ringparam
,
1330 .set_ringparam
= ef4_ethtool_set_ringparam
,
1331 .get_pauseparam
= ef4_ethtool_get_pauseparam
,
1332 .set_pauseparam
= ef4_ethtool_set_pauseparam
,
1333 .get_sset_count
= ef4_ethtool_get_sset_count
,
1334 .self_test
= ef4_ethtool_self_test
,
1335 .get_strings
= ef4_ethtool_get_strings
,
1336 .set_phys_id
= ef4_ethtool_phys_id
,
1337 .get_ethtool_stats
= ef4_ethtool_get_stats
,
1338 .get_wol
= ef4_ethtool_get_wol
,
1339 .set_wol
= ef4_ethtool_set_wol
,
1340 .reset
= ef4_ethtool_reset
,
1341 .get_rxnfc
= ef4_ethtool_get_rxnfc
,
1342 .set_rxnfc
= ef4_ethtool_set_rxnfc
,
1343 .get_rxfh_indir_size
= ef4_ethtool_get_rxfh_indir_size
,
1344 .get_rxfh
= ef4_ethtool_get_rxfh
,
1345 .set_rxfh
= ef4_ethtool_set_rxfh
,
1346 .get_module_info
= ef4_ethtool_get_module_info
,
1347 .get_module_eeprom
= ef4_ethtool_get_module_eeprom
,
1348 .get_link_ksettings
= ef4_ethtool_get_link_ksettings
,
1349 .set_link_ksettings
= ef4_ethtool_set_link_ksettings
,