1 // SPDX-License-Identifier: GPL-2.0-only
2 /****************************************************************************
3 * Driver for Solarflare network controllers and boards
4 * Copyright 2019 Solarflare Communications Inc.
5 *
6 * This program is free software; you can redistribute it and/or modify it
7 * under the terms of the GNU General Public License version 2 as published
8 * by the Free Software Foundation, incorporated herein by reference.
9 */
10 #include <linux/module.h>
11 #include <linux/netdevice.h>
12 #include "net_driver.h"
13 #include "mcdi.h"
14 #include "nic.h"
15 #include "selftest.h"
16 #include "rx_common.h"
17 #include "ethtool_common.h"
18 #include "mcdi_port_common.h"
19
20 struct efx_sw_stat_desc {
21 const char *name;
22 enum {
23 EFX_ETHTOOL_STAT_SOURCE_nic,
24 EFX_ETHTOOL_STAT_SOURCE_channel,
25 EFX_ETHTOOL_STAT_SOURCE_tx_queue
26 } source;
27 unsigned int offset;
28 u64 (*get_stat)(void *field); /* Reader function */
29 };
30
31 /* Initialiser for a struct efx_sw_stat_desc with type-checking */
32 #define EFX_ETHTOOL_STAT(stat_name, source_name, field, field_type, \
33 get_stat_function) { \
34 .name = #stat_name, \
35 .source = EFX_ETHTOOL_STAT_SOURCE_##source_name, \
36 .offset = ((((field_type *) 0) == \
37 &((struct efx_##source_name *)0)->field) ? \
38 offsetof(struct efx_##source_name, field) : \
39 offsetof(struct efx_##source_name, field)), \
40 .get_stat = get_stat_function, \
41 }
42
efx_get_uint_stat(void * field)43 static u64 efx_get_uint_stat(void *field)
44 {
45 return *(unsigned int *)field;
46 }
47
efx_get_atomic_stat(void * field)48 static u64 efx_get_atomic_stat(void *field)
49 {
50 return atomic_read((atomic_t *) field);
51 }
52
53 #define EFX_ETHTOOL_ATOMIC_NIC_ERROR_STAT(field) \
54 EFX_ETHTOOL_STAT(field, nic, field, \
55 atomic_t, efx_get_atomic_stat)
56
57 #define EFX_ETHTOOL_UINT_CHANNEL_STAT(field) \
58 EFX_ETHTOOL_STAT(field, channel, n_##field, \
59 unsigned int, efx_get_uint_stat)
60 #define EFX_ETHTOOL_UINT_CHANNEL_STAT_NO_N(field) \
61 EFX_ETHTOOL_STAT(field, channel, field, \
62 unsigned int, efx_get_uint_stat)
63
64 #define EFX_ETHTOOL_UINT_TXQ_STAT(field) \
65 EFX_ETHTOOL_STAT(tx_##field, tx_queue, field, \
66 unsigned int, efx_get_uint_stat)
67
68 static const struct efx_sw_stat_desc efx_sw_stat_desc[] = {
69 EFX_ETHTOOL_UINT_TXQ_STAT(merge_events),
70 EFX_ETHTOOL_UINT_TXQ_STAT(tso_bursts),
71 EFX_ETHTOOL_UINT_TXQ_STAT(tso_long_headers),
72 EFX_ETHTOOL_UINT_TXQ_STAT(tso_packets),
73 EFX_ETHTOOL_UINT_TXQ_STAT(tso_fallbacks),
74 EFX_ETHTOOL_UINT_TXQ_STAT(pushes),
75 EFX_ETHTOOL_UINT_TXQ_STAT(pio_packets),
76 EFX_ETHTOOL_UINT_TXQ_STAT(cb_packets),
77 EFX_ETHTOOL_ATOMIC_NIC_ERROR_STAT(rx_reset),
78 EFX_ETHTOOL_UINT_CHANNEL_STAT(rx_tobe_disc),
79 EFX_ETHTOOL_UINT_CHANNEL_STAT(rx_ip_hdr_chksum_err),
80 EFX_ETHTOOL_UINT_CHANNEL_STAT(rx_tcp_udp_chksum_err),
81 EFX_ETHTOOL_UINT_CHANNEL_STAT(rx_inner_ip_hdr_chksum_err),
82 EFX_ETHTOOL_UINT_CHANNEL_STAT(rx_inner_tcp_udp_chksum_err),
83 EFX_ETHTOOL_UINT_CHANNEL_STAT(rx_outer_ip_hdr_chksum_err),
84 EFX_ETHTOOL_UINT_CHANNEL_STAT(rx_outer_tcp_udp_chksum_err),
85 EFX_ETHTOOL_UINT_CHANNEL_STAT(rx_eth_crc_err),
86 EFX_ETHTOOL_UINT_CHANNEL_STAT(rx_mcast_mismatch),
87 EFX_ETHTOOL_UINT_CHANNEL_STAT(rx_frm_trunc),
88 EFX_ETHTOOL_UINT_CHANNEL_STAT(rx_merge_events),
89 EFX_ETHTOOL_UINT_CHANNEL_STAT(rx_merge_packets),
90 EFX_ETHTOOL_UINT_CHANNEL_STAT(rx_xdp_drops),
91 EFX_ETHTOOL_UINT_CHANNEL_STAT(rx_xdp_bad_drops),
92 EFX_ETHTOOL_UINT_CHANNEL_STAT(rx_xdp_tx),
93 EFX_ETHTOOL_UINT_CHANNEL_STAT(rx_xdp_redirect),
94 #ifdef CONFIG_RFS_ACCEL
95 EFX_ETHTOOL_UINT_CHANNEL_STAT_NO_N(rfs_filter_count),
96 EFX_ETHTOOL_UINT_CHANNEL_STAT(rfs_succeeded),
97 EFX_ETHTOOL_UINT_CHANNEL_STAT(rfs_failed),
98 #endif
99 };
100
101 #define EFX_ETHTOOL_SW_STAT_COUNT ARRAY_SIZE(efx_sw_stat_desc)
102
efx_ethtool_get_drvinfo(struct net_device * net_dev,struct ethtool_drvinfo * info)103 void efx_ethtool_get_drvinfo(struct net_device *net_dev,
104 struct ethtool_drvinfo *info)
105 {
106 struct efx_nic *efx = netdev_priv(net_dev);
107
108 strlcpy(info->driver, KBUILD_MODNAME, sizeof(info->driver));
109 efx_mcdi_print_fwver(efx, info->fw_version,
110 sizeof(info->fw_version));
111 strlcpy(info->bus_info, pci_name(efx->pci_dev), sizeof(info->bus_info));
112 }
113
efx_ethtool_get_msglevel(struct net_device * net_dev)114 u32 efx_ethtool_get_msglevel(struct net_device *net_dev)
115 {
116 struct efx_nic *efx = netdev_priv(net_dev);
117
118 return efx->msg_enable;
119 }
120
efx_ethtool_set_msglevel(struct net_device * net_dev,u32 msg_enable)121 void efx_ethtool_set_msglevel(struct net_device *net_dev, u32 msg_enable)
122 {
123 struct efx_nic *efx = netdev_priv(net_dev);
124
125 efx->msg_enable = msg_enable;
126 }
127
efx_ethtool_self_test(struct net_device * net_dev,struct ethtool_test * test,u64 * data)128 void efx_ethtool_self_test(struct net_device *net_dev,
129 struct ethtool_test *test, u64 *data)
130 {
131 struct efx_nic *efx = netdev_priv(net_dev);
132 struct efx_self_tests *efx_tests;
133 bool already_up;
134 int rc = -ENOMEM;
135
136 efx_tests = kzalloc(sizeof(*efx_tests), GFP_KERNEL);
137 if (!efx_tests)
138 goto fail;
139
140 if (!efx_net_active(efx->state)) {
141 rc = -EBUSY;
142 goto out;
143 }
144
145 netif_info(efx, drv, efx->net_dev, "starting %sline testing\n",
146 (test->flags & ETH_TEST_FL_OFFLINE) ? "off" : "on");
147
148 /* We need rx buffers and interrupts. */
149 already_up = (efx->net_dev->flags & IFF_UP);
150 if (!already_up) {
151 rc = dev_open(efx->net_dev, NULL);
152 if (rc) {
153 netif_err(efx, drv, efx->net_dev,
154 "failed opening device.\n");
155 goto out;
156 }
157 }
158
159 rc = efx_selftest(efx, efx_tests, test->flags);
160
161 if (!already_up)
162 dev_close(efx->net_dev);
163
164 netif_info(efx, drv, efx->net_dev, "%s %sline self-tests\n",
165 rc == 0 ? "passed" : "failed",
166 (test->flags & ETH_TEST_FL_OFFLINE) ? "off" : "on");
167
168 out:
169 efx_ethtool_fill_self_tests(efx, efx_tests, NULL, data);
170 kfree(efx_tests);
171 fail:
172 if (rc)
173 test->flags |= ETH_TEST_FL_FAILED;
174 }
175
efx_ethtool_get_pauseparam(struct net_device * net_dev,struct ethtool_pauseparam * pause)176 void efx_ethtool_get_pauseparam(struct net_device *net_dev,
177 struct ethtool_pauseparam *pause)
178 {
179 struct efx_nic *efx = netdev_priv(net_dev);
180
181 pause->rx_pause = !!(efx->wanted_fc & EFX_FC_RX);
182 pause->tx_pause = !!(efx->wanted_fc & EFX_FC_TX);
183 pause->autoneg = !!(efx->wanted_fc & EFX_FC_AUTO);
184 }
185
efx_ethtool_set_pauseparam(struct net_device * net_dev,struct ethtool_pauseparam * pause)186 int efx_ethtool_set_pauseparam(struct net_device *net_dev,
187 struct ethtool_pauseparam *pause)
188 {
189 struct efx_nic *efx = netdev_priv(net_dev);
190 u8 wanted_fc, old_fc;
191 u32 old_adv;
192 int rc = 0;
193
194 mutex_lock(&efx->mac_lock);
195
196 wanted_fc = ((pause->rx_pause ? EFX_FC_RX : 0) |
197 (pause->tx_pause ? EFX_FC_TX : 0) |
198 (pause->autoneg ? EFX_FC_AUTO : 0));
199
200 if ((wanted_fc & EFX_FC_TX) && !(wanted_fc & EFX_FC_RX)) {
201 netif_dbg(efx, drv, efx->net_dev,
202 "Flow control unsupported: tx ON rx OFF\n");
203 rc = -EINVAL;
204 goto out;
205 }
206
207 if ((wanted_fc & EFX_FC_AUTO) && !efx->link_advertising[0]) {
208 netif_dbg(efx, drv, efx->net_dev,
209 "Autonegotiation is disabled\n");
210 rc = -EINVAL;
211 goto out;
212 }
213
214 /* Hook for Falcon bug 11482 workaround */
215 if (efx->type->prepare_enable_fc_tx &&
216 (wanted_fc & EFX_FC_TX) && !(efx->wanted_fc & EFX_FC_TX))
217 efx->type->prepare_enable_fc_tx(efx);
218
219 old_adv = efx->link_advertising[0];
220 old_fc = efx->wanted_fc;
221 efx_link_set_wanted_fc(efx, wanted_fc);
222 if (efx->link_advertising[0] != old_adv ||
223 (efx->wanted_fc ^ old_fc) & EFX_FC_AUTO) {
224 rc = efx_mcdi_port_reconfigure(efx);
225 if (rc) {
226 netif_err(efx, drv, efx->net_dev,
227 "Unable to advertise requested flow "
228 "control setting\n");
229 goto out;
230 }
231 }
232
233 /* Reconfigure the MAC. The PHY *may* generate a link state change event
234 * if the user just changed the advertised capabilities, but there's no
235 * harm doing this twice */
236 efx_mac_reconfigure(efx, false);
237
238 out:
239 mutex_unlock(&efx->mac_lock);
240
241 return rc;
242 }
243
244 /**
245 * efx_fill_test - fill in an individual self-test entry
246 * @test_index: Index of the test
247 * @strings: Ethtool strings, or %NULL
248 * @data: Ethtool test results, or %NULL
249 * @test: Pointer to test result (used only if data != %NULL)
250 * @unit_format: Unit name format (e.g. "chan\%d")
251 * @unit_id: Unit id (e.g. 0 for "chan0")
252 * @test_format: Test name format (e.g. "loopback.\%s.tx.sent")
253 * @test_id: Test id (e.g. "PHYXS" for "loopback.PHYXS.tx_sent")
254 *
255 * Fill in an individual self-test entry.
256 */
efx_fill_test(unsigned int test_index,u8 * strings,u64 * data,int * test,const char * unit_format,int unit_id,const char * test_format,const char * test_id)257 static void efx_fill_test(unsigned int test_index, u8 *strings, u64 *data,
258 int *test, const char *unit_format, int unit_id,
259 const char *test_format, const char *test_id)
260 {
261 char unit_str[ETH_GSTRING_LEN], test_str[ETH_GSTRING_LEN];
262
263 /* Fill data value, if applicable */
264 if (data)
265 data[test_index] = *test;
266
267 /* Fill string, if applicable */
268 if (strings) {
269 if (strchr(unit_format, '%'))
270 snprintf(unit_str, sizeof(unit_str),
271 unit_format, unit_id);
272 else
273 strcpy(unit_str, unit_format);
274 snprintf(test_str, sizeof(test_str), test_format, test_id);
275 snprintf(strings + test_index * ETH_GSTRING_LEN,
276 ETH_GSTRING_LEN,
277 "%-6s %-24s", unit_str, test_str);
278 }
279 }
280
281 #define EFX_CHANNEL_NAME(_channel) "chan%d", _channel->channel
282 #define EFX_TX_QUEUE_NAME(_tx_queue) "txq%d", _tx_queue->label
283 #define EFX_LOOPBACK_NAME(_mode, _counter) \
284 "loopback.%s." _counter, STRING_TABLE_LOOKUP(_mode, efx_loopback_mode)
285
286 /**
287 * efx_fill_loopback_test - fill in a block of loopback self-test entries
288 * @efx: Efx NIC
289 * @lb_tests: Efx loopback self-test results structure
290 * @mode: Loopback test mode
291 * @test_index: Starting index of the test
292 * @strings: Ethtool strings, or %NULL
293 * @data: Ethtool test results, or %NULL
294 *
295 * Fill in a block of loopback self-test entries. Return new test
296 * index.
297 */
efx_fill_loopback_test(struct efx_nic * efx,struct efx_loopback_self_tests * lb_tests,enum efx_loopback_mode mode,unsigned int test_index,u8 * strings,u64 * data)298 static int efx_fill_loopback_test(struct efx_nic *efx,
299 struct efx_loopback_self_tests *lb_tests,
300 enum efx_loopback_mode mode,
301 unsigned int test_index,
302 u8 *strings, u64 *data)
303 {
304 struct efx_channel *channel =
305 efx_get_channel(efx, efx->tx_channel_offset);
306 struct efx_tx_queue *tx_queue;
307
308 efx_for_each_channel_tx_queue(tx_queue, channel) {
309 efx_fill_test(test_index++, strings, data,
310 &lb_tests->tx_sent[tx_queue->label],
311 EFX_TX_QUEUE_NAME(tx_queue),
312 EFX_LOOPBACK_NAME(mode, "tx_sent"));
313 efx_fill_test(test_index++, strings, data,
314 &lb_tests->tx_done[tx_queue->label],
315 EFX_TX_QUEUE_NAME(tx_queue),
316 EFX_LOOPBACK_NAME(mode, "tx_done"));
317 }
318 efx_fill_test(test_index++, strings, data,
319 &lb_tests->rx_good,
320 "rx", 0,
321 EFX_LOOPBACK_NAME(mode, "rx_good"));
322 efx_fill_test(test_index++, strings, data,
323 &lb_tests->rx_bad,
324 "rx", 0,
325 EFX_LOOPBACK_NAME(mode, "rx_bad"));
326
327 return test_index;
328 }
329
330 /**
331 * efx_ethtool_fill_self_tests - get self-test details
332 * @efx: Efx NIC
333 * @tests: Efx self-test results structure, or %NULL
334 * @strings: Ethtool strings, or %NULL
335 * @data: Ethtool test results, or %NULL
336 *
337 * Get self-test number of strings, strings, and/or test results.
338 * Return number of strings (== number of test results).
339 *
340 * The reason for merging these three functions is to make sure that
341 * they can never be inconsistent.
342 */
efx_ethtool_fill_self_tests(struct efx_nic * efx,struct efx_self_tests * tests,u8 * strings,u64 * data)343 int efx_ethtool_fill_self_tests(struct efx_nic *efx,
344 struct efx_self_tests *tests,
345 u8 *strings, u64 *data)
346 {
347 struct efx_channel *channel;
348 unsigned int n = 0, i;
349 enum efx_loopback_mode mode;
350
351 efx_fill_test(n++, strings, data, &tests->phy_alive,
352 "phy", 0, "alive", NULL);
353 efx_fill_test(n++, strings, data, &tests->nvram,
354 "core", 0, "nvram", NULL);
355 efx_fill_test(n++, strings, data, &tests->interrupt,
356 "core", 0, "interrupt", NULL);
357
358 /* Event queues */
359 efx_for_each_channel(channel, efx) {
360 efx_fill_test(n++, strings, data,
361 &tests->eventq_dma[channel->channel],
362 EFX_CHANNEL_NAME(channel),
363 "eventq.dma", NULL);
364 efx_fill_test(n++, strings, data,
365 &tests->eventq_int[channel->channel],
366 EFX_CHANNEL_NAME(channel),
367 "eventq.int", NULL);
368 }
369
370 efx_fill_test(n++, strings, data, &tests->memory,
371 "core", 0, "memory", NULL);
372 efx_fill_test(n++, strings, data, &tests->registers,
373 "core", 0, "registers", NULL);
374
375 for (i = 0; true; ++i) {
376 const char *name;
377
378 EFX_WARN_ON_PARANOID(i >= EFX_MAX_PHY_TESTS);
379 name = efx_mcdi_phy_test_name(efx, i);
380 if (name == NULL)
381 break;
382
383 efx_fill_test(n++, strings, data, &tests->phy_ext[i], "phy", 0, name, NULL);
384 }
385
386 /* Loopback tests */
387 for (mode = LOOPBACK_NONE; mode <= LOOPBACK_TEST_MAX; mode++) {
388 if (!(efx->loopback_modes & (1 << mode)))
389 continue;
390 n = efx_fill_loopback_test(efx,
391 &tests->loopback[mode], mode, n,
392 strings, data);
393 }
394
395 return n;
396 }
397
efx_describe_per_queue_stats(struct efx_nic * efx,u8 * strings)398 static size_t efx_describe_per_queue_stats(struct efx_nic *efx, u8 *strings)
399 {
400 size_t n_stats = 0;
401 struct efx_channel *channel;
402
403 efx_for_each_channel(channel, efx) {
404 if (efx_channel_has_tx_queues(channel)) {
405 n_stats++;
406 if (strings != NULL) {
407 snprintf(strings, ETH_GSTRING_LEN,
408 "tx-%u.tx_packets",
409 channel->tx_queue[0].queue /
410 EFX_MAX_TXQ_PER_CHANNEL);
411
412 strings += ETH_GSTRING_LEN;
413 }
414 }
415 }
416 efx_for_each_channel(channel, efx) {
417 if (efx_channel_has_rx_queue(channel)) {
418 n_stats++;
419 if (strings != NULL) {
420 snprintf(strings, ETH_GSTRING_LEN,
421 "rx-%d.rx_packets", channel->channel);
422 strings += ETH_GSTRING_LEN;
423 }
424 }
425 }
426 if (efx->xdp_tx_queue_count && efx->xdp_tx_queues) {
427 unsigned short xdp;
428
429 for (xdp = 0; xdp < efx->xdp_tx_queue_count; xdp++) {
430 n_stats++;
431 if (strings) {
432 snprintf(strings, ETH_GSTRING_LEN,
433 "tx-xdp-cpu-%hu.tx_packets", xdp);
434 strings += ETH_GSTRING_LEN;
435 }
436 }
437 }
438
439 return n_stats;
440 }
441
efx_ethtool_get_sset_count(struct net_device * net_dev,int string_set)442 int efx_ethtool_get_sset_count(struct net_device *net_dev, int string_set)
443 {
444 struct efx_nic *efx = netdev_priv(net_dev);
445
446 switch (string_set) {
447 case ETH_SS_STATS:
448 return efx->type->describe_stats(efx, NULL) +
449 EFX_ETHTOOL_SW_STAT_COUNT +
450 efx_describe_per_queue_stats(efx, NULL) +
451 efx_ptp_describe_stats(efx, NULL);
452 case ETH_SS_TEST:
453 return efx_ethtool_fill_self_tests(efx, NULL, NULL, NULL);
454 default:
455 return -EINVAL;
456 }
457 }
458
efx_ethtool_get_strings(struct net_device * net_dev,u32 string_set,u8 * strings)459 void efx_ethtool_get_strings(struct net_device *net_dev,
460 u32 string_set, u8 *strings)
461 {
462 struct efx_nic *efx = netdev_priv(net_dev);
463 int i;
464
465 switch (string_set) {
466 case ETH_SS_STATS:
467 strings += (efx->type->describe_stats(efx, strings) *
468 ETH_GSTRING_LEN);
469 for (i = 0; i < EFX_ETHTOOL_SW_STAT_COUNT; i++)
470 strlcpy(strings + i * ETH_GSTRING_LEN,
471 efx_sw_stat_desc[i].name, ETH_GSTRING_LEN);
472 strings += EFX_ETHTOOL_SW_STAT_COUNT * ETH_GSTRING_LEN;
473 strings += (efx_describe_per_queue_stats(efx, strings) *
474 ETH_GSTRING_LEN);
475 efx_ptp_describe_stats(efx, strings);
476 break;
477 case ETH_SS_TEST:
478 efx_ethtool_fill_self_tests(efx, NULL, strings, NULL);
479 break;
480 default:
481 /* No other string sets */
482 break;
483 }
484 }
485
efx_ethtool_get_stats(struct net_device * net_dev,struct ethtool_stats * stats,u64 * data)486 void efx_ethtool_get_stats(struct net_device *net_dev,
487 struct ethtool_stats *stats,
488 u64 *data)
489 {
490 struct efx_nic *efx = netdev_priv(net_dev);
491 const struct efx_sw_stat_desc *stat;
492 struct efx_channel *channel;
493 struct efx_tx_queue *tx_queue;
494 struct efx_rx_queue *rx_queue;
495 int i;
496
497 spin_lock_bh(&efx->stats_lock);
498
499 /* Get NIC statistics */
500 data += efx->type->update_stats(efx, data, NULL);
501
502 /* Get software statistics */
503 for (i = 0; i < EFX_ETHTOOL_SW_STAT_COUNT; i++) {
504 stat = &efx_sw_stat_desc[i];
505 switch (stat->source) {
506 case EFX_ETHTOOL_STAT_SOURCE_nic:
507 data[i] = stat->get_stat((void *)efx + stat->offset);
508 break;
509 case EFX_ETHTOOL_STAT_SOURCE_channel:
510 data[i] = 0;
511 efx_for_each_channel(channel, efx)
512 data[i] += stat->get_stat((void *)channel +
513 stat->offset);
514 break;
515 case EFX_ETHTOOL_STAT_SOURCE_tx_queue:
516 data[i] = 0;
517 efx_for_each_channel(channel, efx) {
518 efx_for_each_channel_tx_queue(tx_queue, channel)
519 data[i] +=
520 stat->get_stat((void *)tx_queue
521 + stat->offset);
522 }
523 break;
524 }
525 }
526 data += EFX_ETHTOOL_SW_STAT_COUNT;
527
528 spin_unlock_bh(&efx->stats_lock);
529
530 efx_for_each_channel(channel, efx) {
531 if (efx_channel_has_tx_queues(channel)) {
532 *data = 0;
533 efx_for_each_channel_tx_queue(tx_queue, channel) {
534 *data += tx_queue->tx_packets;
535 }
536 data++;
537 }
538 }
539 efx_for_each_channel(channel, efx) {
540 if (efx_channel_has_rx_queue(channel)) {
541 *data = 0;
542 efx_for_each_channel_rx_queue(rx_queue, channel) {
543 *data += rx_queue->rx_packets;
544 }
545 data++;
546 }
547 }
548 if (efx->xdp_tx_queue_count && efx->xdp_tx_queues) {
549 int xdp;
550
551 for (xdp = 0; xdp < efx->xdp_tx_queue_count; xdp++) {
552 data[0] = efx->xdp_tx_queues[xdp]->tx_packets;
553 data++;
554 }
555 }
556
557 efx_ptp_update_stats(efx, data);
558 }
559
560 /* This must be called with rtnl_lock held. */
efx_ethtool_get_link_ksettings(struct net_device * net_dev,struct ethtool_link_ksettings * cmd)561 int efx_ethtool_get_link_ksettings(struct net_device *net_dev,
562 struct ethtool_link_ksettings *cmd)
563 {
564 struct efx_nic *efx = netdev_priv(net_dev);
565 struct efx_link_state *link_state = &efx->link_state;
566
567 mutex_lock(&efx->mac_lock);
568 efx_mcdi_phy_get_link_ksettings(efx, cmd);
569 mutex_unlock(&efx->mac_lock);
570
571 /* Both MACs support pause frames (bidirectional and respond-only) */
572 ethtool_link_ksettings_add_link_mode(cmd, supported, Pause);
573 ethtool_link_ksettings_add_link_mode(cmd, supported, Asym_Pause);
574
575 if (LOOPBACK_INTERNAL(efx)) {
576 cmd->base.speed = link_state->speed;
577 cmd->base.duplex = link_state->fd ? DUPLEX_FULL : DUPLEX_HALF;
578 }
579
580 return 0;
581 }
582
583 /* This must be called with rtnl_lock held. */
efx_ethtool_set_link_ksettings(struct net_device * net_dev,const struct ethtool_link_ksettings * cmd)584 int efx_ethtool_set_link_ksettings(struct net_device *net_dev,
585 const struct ethtool_link_ksettings *cmd)
586 {
587 struct efx_nic *efx = netdev_priv(net_dev);
588 int rc;
589
590 /* GMAC does not support 1000Mbps HD */
591 if ((cmd->base.speed == SPEED_1000) &&
592 (cmd->base.duplex != DUPLEX_FULL)) {
593 netif_dbg(efx, drv, efx->net_dev,
594 "rejecting unsupported 1000Mbps HD setting\n");
595 return -EINVAL;
596 }
597
598 mutex_lock(&efx->mac_lock);
599 rc = efx_mcdi_phy_set_link_ksettings(efx, cmd);
600 mutex_unlock(&efx->mac_lock);
601 return rc;
602 }
603
efx_ethtool_get_fecparam(struct net_device * net_dev,struct ethtool_fecparam * fecparam)604 int efx_ethtool_get_fecparam(struct net_device *net_dev,
605 struct ethtool_fecparam *fecparam)
606 {
607 struct efx_nic *efx = netdev_priv(net_dev);
608 int rc;
609
610 mutex_lock(&efx->mac_lock);
611 rc = efx_mcdi_phy_get_fecparam(efx, fecparam);
612 mutex_unlock(&efx->mac_lock);
613
614 return rc;
615 }
616
efx_ethtool_set_fecparam(struct net_device * net_dev,struct ethtool_fecparam * fecparam)617 int efx_ethtool_set_fecparam(struct net_device *net_dev,
618 struct ethtool_fecparam *fecparam)
619 {
620 struct efx_nic *efx = netdev_priv(net_dev);
621 int rc;
622
623 mutex_lock(&efx->mac_lock);
624 rc = efx_mcdi_phy_set_fecparam(efx, fecparam);
625 mutex_unlock(&efx->mac_lock);
626
627 return rc;
628 }
629
630 /* MAC address mask including only I/G bit */
631 static const u8 mac_addr_ig_mask[ETH_ALEN] __aligned(2) = {0x01, 0, 0, 0, 0, 0};
632
633 #define IP4_ADDR_FULL_MASK ((__force __be32)~0)
634 #define IP_PROTO_FULL_MASK 0xFF
635 #define PORT_FULL_MASK ((__force __be16)~0)
636 #define ETHER_TYPE_FULL_MASK ((__force __be16)~0)
637
ip6_fill_mask(__be32 * mask)638 static inline void ip6_fill_mask(__be32 *mask)
639 {
640 mask[0] = mask[1] = mask[2] = mask[3] = ~(__be32)0;
641 }
642
efx_ethtool_get_class_rule(struct efx_nic * efx,struct ethtool_rx_flow_spec * rule,u32 * rss_context)643 static int efx_ethtool_get_class_rule(struct efx_nic *efx,
644 struct ethtool_rx_flow_spec *rule,
645 u32 *rss_context)
646 {
647 struct ethtool_tcpip4_spec *ip_entry = &rule->h_u.tcp_ip4_spec;
648 struct ethtool_tcpip4_spec *ip_mask = &rule->m_u.tcp_ip4_spec;
649 struct ethtool_usrip4_spec *uip_entry = &rule->h_u.usr_ip4_spec;
650 struct ethtool_usrip4_spec *uip_mask = &rule->m_u.usr_ip4_spec;
651 struct ethtool_tcpip6_spec *ip6_entry = &rule->h_u.tcp_ip6_spec;
652 struct ethtool_tcpip6_spec *ip6_mask = &rule->m_u.tcp_ip6_spec;
653 struct ethtool_usrip6_spec *uip6_entry = &rule->h_u.usr_ip6_spec;
654 struct ethtool_usrip6_spec *uip6_mask = &rule->m_u.usr_ip6_spec;
655 struct ethhdr *mac_entry = &rule->h_u.ether_spec;
656 struct ethhdr *mac_mask = &rule->m_u.ether_spec;
657 struct efx_filter_spec spec;
658 int rc;
659
660 rc = efx_filter_get_filter_safe(efx, EFX_FILTER_PRI_MANUAL,
661 rule->location, &spec);
662 if (rc)
663 return rc;
664
665 if (spec.dmaq_id == EFX_FILTER_RX_DMAQ_ID_DROP)
666 rule->ring_cookie = RX_CLS_FLOW_DISC;
667 else
668 rule->ring_cookie = spec.dmaq_id;
669
670 if ((spec.match_flags & EFX_FILTER_MATCH_ETHER_TYPE) &&
671 spec.ether_type == htons(ETH_P_IP) &&
672 (spec.match_flags & EFX_FILTER_MATCH_IP_PROTO) &&
673 (spec.ip_proto == IPPROTO_TCP || spec.ip_proto == IPPROTO_UDP) &&
674 !(spec.match_flags &
675 ~(EFX_FILTER_MATCH_ETHER_TYPE | EFX_FILTER_MATCH_OUTER_VID |
676 EFX_FILTER_MATCH_LOC_HOST | EFX_FILTER_MATCH_REM_HOST |
677 EFX_FILTER_MATCH_IP_PROTO |
678 EFX_FILTER_MATCH_LOC_PORT | EFX_FILTER_MATCH_REM_PORT))) {
679 rule->flow_type = ((spec.ip_proto == IPPROTO_TCP) ?
680 TCP_V4_FLOW : UDP_V4_FLOW);
681 if (spec.match_flags & EFX_FILTER_MATCH_LOC_HOST) {
682 ip_entry->ip4dst = spec.loc_host[0];
683 ip_mask->ip4dst = IP4_ADDR_FULL_MASK;
684 }
685 if (spec.match_flags & EFX_FILTER_MATCH_REM_HOST) {
686 ip_entry->ip4src = spec.rem_host[0];
687 ip_mask->ip4src = IP4_ADDR_FULL_MASK;
688 }
689 if (spec.match_flags & EFX_FILTER_MATCH_LOC_PORT) {
690 ip_entry->pdst = spec.loc_port;
691 ip_mask->pdst = PORT_FULL_MASK;
692 }
693 if (spec.match_flags & EFX_FILTER_MATCH_REM_PORT) {
694 ip_entry->psrc = spec.rem_port;
695 ip_mask->psrc = PORT_FULL_MASK;
696 }
697 } else if ((spec.match_flags & EFX_FILTER_MATCH_ETHER_TYPE) &&
698 spec.ether_type == htons(ETH_P_IPV6) &&
699 (spec.match_flags & EFX_FILTER_MATCH_IP_PROTO) &&
700 (spec.ip_proto == IPPROTO_TCP || spec.ip_proto == IPPROTO_UDP) &&
701 !(spec.match_flags &
702 ~(EFX_FILTER_MATCH_ETHER_TYPE | EFX_FILTER_MATCH_OUTER_VID |
703 EFX_FILTER_MATCH_LOC_HOST | EFX_FILTER_MATCH_REM_HOST |
704 EFX_FILTER_MATCH_IP_PROTO |
705 EFX_FILTER_MATCH_LOC_PORT | EFX_FILTER_MATCH_REM_PORT))) {
706 rule->flow_type = ((spec.ip_proto == IPPROTO_TCP) ?
707 TCP_V6_FLOW : UDP_V6_FLOW);
708 if (spec.match_flags & EFX_FILTER_MATCH_LOC_HOST) {
709 memcpy(ip6_entry->ip6dst, spec.loc_host,
710 sizeof(ip6_entry->ip6dst));
711 ip6_fill_mask(ip6_mask->ip6dst);
712 }
713 if (spec.match_flags & EFX_FILTER_MATCH_REM_HOST) {
714 memcpy(ip6_entry->ip6src, spec.rem_host,
715 sizeof(ip6_entry->ip6src));
716 ip6_fill_mask(ip6_mask->ip6src);
717 }
718 if (spec.match_flags & EFX_FILTER_MATCH_LOC_PORT) {
719 ip6_entry->pdst = spec.loc_port;
720 ip6_mask->pdst = PORT_FULL_MASK;
721 }
722 if (spec.match_flags & EFX_FILTER_MATCH_REM_PORT) {
723 ip6_entry->psrc = spec.rem_port;
724 ip6_mask->psrc = PORT_FULL_MASK;
725 }
726 } else if (!(spec.match_flags &
727 ~(EFX_FILTER_MATCH_LOC_MAC | EFX_FILTER_MATCH_LOC_MAC_IG |
728 EFX_FILTER_MATCH_REM_MAC | EFX_FILTER_MATCH_ETHER_TYPE |
729 EFX_FILTER_MATCH_OUTER_VID))) {
730 rule->flow_type = ETHER_FLOW;
731 if (spec.match_flags &
732 (EFX_FILTER_MATCH_LOC_MAC | EFX_FILTER_MATCH_LOC_MAC_IG)) {
733 ether_addr_copy(mac_entry->h_dest, spec.loc_mac);
734 if (spec.match_flags & EFX_FILTER_MATCH_LOC_MAC)
735 eth_broadcast_addr(mac_mask->h_dest);
736 else
737 ether_addr_copy(mac_mask->h_dest,
738 mac_addr_ig_mask);
739 }
740 if (spec.match_flags & EFX_FILTER_MATCH_REM_MAC) {
741 ether_addr_copy(mac_entry->h_source, spec.rem_mac);
742 eth_broadcast_addr(mac_mask->h_source);
743 }
744 if (spec.match_flags & EFX_FILTER_MATCH_ETHER_TYPE) {
745 mac_entry->h_proto = spec.ether_type;
746 mac_mask->h_proto = ETHER_TYPE_FULL_MASK;
747 }
748 } else if (spec.match_flags & EFX_FILTER_MATCH_ETHER_TYPE &&
749 spec.ether_type == htons(ETH_P_IP) &&
750 !(spec.match_flags &
751 ~(EFX_FILTER_MATCH_ETHER_TYPE | EFX_FILTER_MATCH_OUTER_VID |
752 EFX_FILTER_MATCH_LOC_HOST | EFX_FILTER_MATCH_REM_HOST |
753 EFX_FILTER_MATCH_IP_PROTO))) {
754 rule->flow_type = IPV4_USER_FLOW;
755 uip_entry->ip_ver = ETH_RX_NFC_IP4;
756 if (spec.match_flags & EFX_FILTER_MATCH_IP_PROTO) {
757 uip_mask->proto = IP_PROTO_FULL_MASK;
758 uip_entry->proto = spec.ip_proto;
759 }
760 if (spec.match_flags & EFX_FILTER_MATCH_LOC_HOST) {
761 uip_entry->ip4dst = spec.loc_host[0];
762 uip_mask->ip4dst = IP4_ADDR_FULL_MASK;
763 }
764 if (spec.match_flags & EFX_FILTER_MATCH_REM_HOST) {
765 uip_entry->ip4src = spec.rem_host[0];
766 uip_mask->ip4src = IP4_ADDR_FULL_MASK;
767 }
768 } else if (spec.match_flags & EFX_FILTER_MATCH_ETHER_TYPE &&
769 spec.ether_type == htons(ETH_P_IPV6) &&
770 !(spec.match_flags &
771 ~(EFX_FILTER_MATCH_ETHER_TYPE | EFX_FILTER_MATCH_OUTER_VID |
772 EFX_FILTER_MATCH_LOC_HOST | EFX_FILTER_MATCH_REM_HOST |
773 EFX_FILTER_MATCH_IP_PROTO))) {
774 rule->flow_type = IPV6_USER_FLOW;
775 if (spec.match_flags & EFX_FILTER_MATCH_IP_PROTO) {
776 uip6_mask->l4_proto = IP_PROTO_FULL_MASK;
777 uip6_entry->l4_proto = spec.ip_proto;
778 }
779 if (spec.match_flags & EFX_FILTER_MATCH_LOC_HOST) {
780 memcpy(uip6_entry->ip6dst, spec.loc_host,
781 sizeof(uip6_entry->ip6dst));
782 ip6_fill_mask(uip6_mask->ip6dst);
783 }
784 if (spec.match_flags & EFX_FILTER_MATCH_REM_HOST) {
785 memcpy(uip6_entry->ip6src, spec.rem_host,
786 sizeof(uip6_entry->ip6src));
787 ip6_fill_mask(uip6_mask->ip6src);
788 }
789 } else {
790 /* The above should handle all filters that we insert */
791 WARN_ON(1);
792 return -EINVAL;
793 }
794
795 if (spec.match_flags & EFX_FILTER_MATCH_OUTER_VID) {
796 rule->flow_type |= FLOW_EXT;
797 rule->h_ext.vlan_tci = spec.outer_vid;
798 rule->m_ext.vlan_tci = htons(0xfff);
799 }
800
801 if (spec.flags & EFX_FILTER_FLAG_RX_RSS) {
802 rule->flow_type |= FLOW_RSS;
803 *rss_context = spec.rss_context;
804 }
805
806 return rc;
807 }
808
efx_ethtool_get_rxnfc(struct net_device * net_dev,struct ethtool_rxnfc * info,u32 * rule_locs)809 int efx_ethtool_get_rxnfc(struct net_device *net_dev,
810 struct ethtool_rxnfc *info, u32 *rule_locs)
811 {
812 struct efx_nic *efx = netdev_priv(net_dev);
813 u32 rss_context = 0;
814 s32 rc = 0;
815
816 switch (info->cmd) {
817 case ETHTOOL_GRXRINGS:
818 info->data = efx->n_rx_channels;
819 return 0;
820
821 case ETHTOOL_GRXFH: {
822 struct efx_rss_context *ctx = &efx->rss_context;
823 __u64 data;
824
825 mutex_lock(&efx->rss_lock);
826 if (info->flow_type & FLOW_RSS && info->rss_context) {
827 ctx = efx_find_rss_context_entry(efx, info->rss_context);
828 if (!ctx) {
829 rc = -ENOENT;
830 goto out_unlock;
831 }
832 }
833
834 data = 0;
835 if (!efx_rss_active(ctx)) /* No RSS */
836 goto out_setdata_unlock;
837
838 switch (info->flow_type & ~FLOW_RSS) {
839 case UDP_V4_FLOW:
840 case UDP_V6_FLOW:
841 if (ctx->rx_hash_udp_4tuple)
842 data = (RXH_L4_B_0_1 | RXH_L4_B_2_3 |
843 RXH_IP_SRC | RXH_IP_DST);
844 else
845 data = RXH_IP_SRC | RXH_IP_DST;
846 break;
847 case TCP_V4_FLOW:
848 case TCP_V6_FLOW:
849 data = (RXH_L4_B_0_1 | RXH_L4_B_2_3 |
850 RXH_IP_SRC | RXH_IP_DST);
851 break;
852 case SCTP_V4_FLOW:
853 case SCTP_V6_FLOW:
854 case AH_ESP_V4_FLOW:
855 case AH_ESP_V6_FLOW:
856 case IPV4_FLOW:
857 case IPV6_FLOW:
858 data = RXH_IP_SRC | RXH_IP_DST;
859 break;
860 default:
861 break;
862 }
863 out_setdata_unlock:
864 info->data = data;
865 out_unlock:
866 mutex_unlock(&efx->rss_lock);
867 return rc;
868 }
869
870 case ETHTOOL_GRXCLSRLCNT:
871 info->data = efx_filter_get_rx_id_limit(efx);
872 if (info->data == 0)
873 return -EOPNOTSUPP;
874 info->data |= RX_CLS_LOC_SPECIAL;
875 info->rule_cnt =
876 efx_filter_count_rx_used(efx, EFX_FILTER_PRI_MANUAL);
877 return 0;
878
879 case ETHTOOL_GRXCLSRULE:
880 if (efx_filter_get_rx_id_limit(efx) == 0)
881 return -EOPNOTSUPP;
882 rc = efx_ethtool_get_class_rule(efx, &info->fs, &rss_context);
883 if (rc < 0)
884 return rc;
885 if (info->fs.flow_type & FLOW_RSS)
886 info->rss_context = rss_context;
887 return 0;
888
889 case ETHTOOL_GRXCLSRLALL:
890 info->data = efx_filter_get_rx_id_limit(efx);
891 if (info->data == 0)
892 return -EOPNOTSUPP;
893 rc = efx_filter_get_rx_ids(efx, EFX_FILTER_PRI_MANUAL,
894 rule_locs, info->rule_cnt);
895 if (rc < 0)
896 return rc;
897 info->rule_cnt = rc;
898 return 0;
899
900 default:
901 return -EOPNOTSUPP;
902 }
903 }
904
ip6_mask_is_full(__be32 mask[4])905 static inline bool ip6_mask_is_full(__be32 mask[4])
906 {
907 return !~(mask[0] & mask[1] & mask[2] & mask[3]);
908 }
909
ip6_mask_is_empty(__be32 mask[4])910 static inline bool ip6_mask_is_empty(__be32 mask[4])
911 {
912 return !(mask[0] | mask[1] | mask[2] | mask[3]);
913 }
914
efx_ethtool_set_class_rule(struct efx_nic * efx,struct ethtool_rx_flow_spec * rule,u32 rss_context)915 static int efx_ethtool_set_class_rule(struct efx_nic *efx,
916 struct ethtool_rx_flow_spec *rule,
917 u32 rss_context)
918 {
919 struct ethtool_tcpip4_spec *ip_entry = &rule->h_u.tcp_ip4_spec;
920 struct ethtool_tcpip4_spec *ip_mask = &rule->m_u.tcp_ip4_spec;
921 struct ethtool_usrip4_spec *uip_entry = &rule->h_u.usr_ip4_spec;
922 struct ethtool_usrip4_spec *uip_mask = &rule->m_u.usr_ip4_spec;
923 struct ethtool_tcpip6_spec *ip6_entry = &rule->h_u.tcp_ip6_spec;
924 struct ethtool_tcpip6_spec *ip6_mask = &rule->m_u.tcp_ip6_spec;
925 struct ethtool_usrip6_spec *uip6_entry = &rule->h_u.usr_ip6_spec;
926 struct ethtool_usrip6_spec *uip6_mask = &rule->m_u.usr_ip6_spec;
927 u32 flow_type = rule->flow_type & ~(FLOW_EXT | FLOW_RSS);
928 struct ethhdr *mac_entry = &rule->h_u.ether_spec;
929 struct ethhdr *mac_mask = &rule->m_u.ether_spec;
930 enum efx_filter_flags flags = 0;
931 struct efx_filter_spec spec;
932 int rc;
933
934 /* Check that user wants us to choose the location */
935 if (rule->location != RX_CLS_LOC_ANY)
936 return -EINVAL;
937
938 /* Range-check ring_cookie */
939 if (rule->ring_cookie >= efx->n_rx_channels &&
940 rule->ring_cookie != RX_CLS_FLOW_DISC)
941 return -EINVAL;
942
943 /* Check for unsupported extensions */
944 if ((rule->flow_type & FLOW_EXT) &&
945 (rule->m_ext.vlan_etype || rule->m_ext.data[0] ||
946 rule->m_ext.data[1]))
947 return -EINVAL;
948
949 if (efx->rx_scatter)
950 flags |= EFX_FILTER_FLAG_RX_SCATTER;
951 if (rule->flow_type & FLOW_RSS)
952 flags |= EFX_FILTER_FLAG_RX_RSS;
953
954 efx_filter_init_rx(&spec, EFX_FILTER_PRI_MANUAL, flags,
955 (rule->ring_cookie == RX_CLS_FLOW_DISC) ?
956 EFX_FILTER_RX_DMAQ_ID_DROP : rule->ring_cookie);
957
958 if (rule->flow_type & FLOW_RSS)
959 spec.rss_context = rss_context;
960
961 switch (flow_type) {
962 case TCP_V4_FLOW:
963 case UDP_V4_FLOW:
964 spec.match_flags = (EFX_FILTER_MATCH_ETHER_TYPE |
965 EFX_FILTER_MATCH_IP_PROTO);
966 spec.ether_type = htons(ETH_P_IP);
967 spec.ip_proto = flow_type == TCP_V4_FLOW ? IPPROTO_TCP
968 : IPPROTO_UDP;
969 if (ip_mask->ip4dst) {
970 if (ip_mask->ip4dst != IP4_ADDR_FULL_MASK)
971 return -EINVAL;
972 spec.match_flags |= EFX_FILTER_MATCH_LOC_HOST;
973 spec.loc_host[0] = ip_entry->ip4dst;
974 }
975 if (ip_mask->ip4src) {
976 if (ip_mask->ip4src != IP4_ADDR_FULL_MASK)
977 return -EINVAL;
978 spec.match_flags |= EFX_FILTER_MATCH_REM_HOST;
979 spec.rem_host[0] = ip_entry->ip4src;
980 }
981 if (ip_mask->pdst) {
982 if (ip_mask->pdst != PORT_FULL_MASK)
983 return -EINVAL;
984 spec.match_flags |= EFX_FILTER_MATCH_LOC_PORT;
985 spec.loc_port = ip_entry->pdst;
986 }
987 if (ip_mask->psrc) {
988 if (ip_mask->psrc != PORT_FULL_MASK)
989 return -EINVAL;
990 spec.match_flags |= EFX_FILTER_MATCH_REM_PORT;
991 spec.rem_port = ip_entry->psrc;
992 }
993 if (ip_mask->tos)
994 return -EINVAL;
995 break;
996
997 case TCP_V6_FLOW:
998 case UDP_V6_FLOW:
999 spec.match_flags = (EFX_FILTER_MATCH_ETHER_TYPE |
1000 EFX_FILTER_MATCH_IP_PROTO);
1001 spec.ether_type = htons(ETH_P_IPV6);
1002 spec.ip_proto = flow_type == TCP_V6_FLOW ? IPPROTO_TCP
1003 : IPPROTO_UDP;
1004 if (!ip6_mask_is_empty(ip6_mask->ip6dst)) {
1005 if (!ip6_mask_is_full(ip6_mask->ip6dst))
1006 return -EINVAL;
1007 spec.match_flags |= EFX_FILTER_MATCH_LOC_HOST;
1008 memcpy(spec.loc_host, ip6_entry->ip6dst, sizeof(spec.loc_host));
1009 }
1010 if (!ip6_mask_is_empty(ip6_mask->ip6src)) {
1011 if (!ip6_mask_is_full(ip6_mask->ip6src))
1012 return -EINVAL;
1013 spec.match_flags |= EFX_FILTER_MATCH_REM_HOST;
1014 memcpy(spec.rem_host, ip6_entry->ip6src, sizeof(spec.rem_host));
1015 }
1016 if (ip6_mask->pdst) {
1017 if (ip6_mask->pdst != PORT_FULL_MASK)
1018 return -EINVAL;
1019 spec.match_flags |= EFX_FILTER_MATCH_LOC_PORT;
1020 spec.loc_port = ip6_entry->pdst;
1021 }
1022 if (ip6_mask->psrc) {
1023 if (ip6_mask->psrc != PORT_FULL_MASK)
1024 return -EINVAL;
1025 spec.match_flags |= EFX_FILTER_MATCH_REM_PORT;
1026 spec.rem_port = ip6_entry->psrc;
1027 }
1028 if (ip6_mask->tclass)
1029 return -EINVAL;
1030 break;
1031
1032 case IPV4_USER_FLOW:
1033 if (uip_mask->l4_4_bytes || uip_mask->tos || uip_mask->ip_ver ||
1034 uip_entry->ip_ver != ETH_RX_NFC_IP4)
1035 return -EINVAL;
1036 spec.match_flags = EFX_FILTER_MATCH_ETHER_TYPE;
1037 spec.ether_type = htons(ETH_P_IP);
1038 if (uip_mask->ip4dst) {
1039 if (uip_mask->ip4dst != IP4_ADDR_FULL_MASK)
1040 return -EINVAL;
1041 spec.match_flags |= EFX_FILTER_MATCH_LOC_HOST;
1042 spec.loc_host[0] = uip_entry->ip4dst;
1043 }
1044 if (uip_mask->ip4src) {
1045 if (uip_mask->ip4src != IP4_ADDR_FULL_MASK)
1046 return -EINVAL;
1047 spec.match_flags |= EFX_FILTER_MATCH_REM_HOST;
1048 spec.rem_host[0] = uip_entry->ip4src;
1049 }
1050 if (uip_mask->proto) {
1051 if (uip_mask->proto != IP_PROTO_FULL_MASK)
1052 return -EINVAL;
1053 spec.match_flags |= EFX_FILTER_MATCH_IP_PROTO;
1054 spec.ip_proto = uip_entry->proto;
1055 }
1056 break;
1057
1058 case IPV6_USER_FLOW:
1059 if (uip6_mask->l4_4_bytes || uip6_mask->tclass)
1060 return -EINVAL;
1061 spec.match_flags = EFX_FILTER_MATCH_ETHER_TYPE;
1062 spec.ether_type = htons(ETH_P_IPV6);
1063 if (!ip6_mask_is_empty(uip6_mask->ip6dst)) {
1064 if (!ip6_mask_is_full(uip6_mask->ip6dst))
1065 return -EINVAL;
1066 spec.match_flags |= EFX_FILTER_MATCH_LOC_HOST;
1067 memcpy(spec.loc_host, uip6_entry->ip6dst, sizeof(spec.loc_host));
1068 }
1069 if (!ip6_mask_is_empty(uip6_mask->ip6src)) {
1070 if (!ip6_mask_is_full(uip6_mask->ip6src))
1071 return -EINVAL;
1072 spec.match_flags |= EFX_FILTER_MATCH_REM_HOST;
1073 memcpy(spec.rem_host, uip6_entry->ip6src, sizeof(spec.rem_host));
1074 }
1075 if (uip6_mask->l4_proto) {
1076 if (uip6_mask->l4_proto != IP_PROTO_FULL_MASK)
1077 return -EINVAL;
1078 spec.match_flags |= EFX_FILTER_MATCH_IP_PROTO;
1079 spec.ip_proto = uip6_entry->l4_proto;
1080 }
1081 break;
1082
1083 case ETHER_FLOW:
1084 if (!is_zero_ether_addr(mac_mask->h_dest)) {
1085 if (ether_addr_equal(mac_mask->h_dest,
1086 mac_addr_ig_mask))
1087 spec.match_flags |= EFX_FILTER_MATCH_LOC_MAC_IG;
1088 else if (is_broadcast_ether_addr(mac_mask->h_dest))
1089 spec.match_flags |= EFX_FILTER_MATCH_LOC_MAC;
1090 else
1091 return -EINVAL;
1092 ether_addr_copy(spec.loc_mac, mac_entry->h_dest);
1093 }
1094 if (!is_zero_ether_addr(mac_mask->h_source)) {
1095 if (!is_broadcast_ether_addr(mac_mask->h_source))
1096 return -EINVAL;
1097 spec.match_flags |= EFX_FILTER_MATCH_REM_MAC;
1098 ether_addr_copy(spec.rem_mac, mac_entry->h_source);
1099 }
1100 if (mac_mask->h_proto) {
1101 if (mac_mask->h_proto != ETHER_TYPE_FULL_MASK)
1102 return -EINVAL;
1103 spec.match_flags |= EFX_FILTER_MATCH_ETHER_TYPE;
1104 spec.ether_type = mac_entry->h_proto;
1105 }
1106 break;
1107
1108 default:
1109 return -EINVAL;
1110 }
1111
1112 if ((rule->flow_type & FLOW_EXT) && rule->m_ext.vlan_tci) {
1113 if (rule->m_ext.vlan_tci != htons(0xfff))
1114 return -EINVAL;
1115 spec.match_flags |= EFX_FILTER_MATCH_OUTER_VID;
1116 spec.outer_vid = rule->h_ext.vlan_tci;
1117 }
1118
1119 rc = efx_filter_insert_filter(efx, &spec, true);
1120 if (rc < 0)
1121 return rc;
1122
1123 rule->location = rc;
1124 return 0;
1125 }
1126
efx_ethtool_set_rxnfc(struct net_device * net_dev,struct ethtool_rxnfc * info)1127 int efx_ethtool_set_rxnfc(struct net_device *net_dev,
1128 struct ethtool_rxnfc *info)
1129 {
1130 struct efx_nic *efx = netdev_priv(net_dev);
1131
1132 if (efx_filter_get_rx_id_limit(efx) == 0)
1133 return -EOPNOTSUPP;
1134
1135 switch (info->cmd) {
1136 case ETHTOOL_SRXCLSRLINS:
1137 return efx_ethtool_set_class_rule(efx, &info->fs,
1138 info->rss_context);
1139
1140 case ETHTOOL_SRXCLSRLDEL:
1141 return efx_filter_remove_id_safe(efx, EFX_FILTER_PRI_MANUAL,
1142 info->fs.location);
1143
1144 default:
1145 return -EOPNOTSUPP;
1146 }
1147 }
1148
efx_ethtool_get_rxfh_indir_size(struct net_device * net_dev)1149 u32 efx_ethtool_get_rxfh_indir_size(struct net_device *net_dev)
1150 {
1151 struct efx_nic *efx = netdev_priv(net_dev);
1152
1153 if (efx->n_rx_channels == 1)
1154 return 0;
1155 return ARRAY_SIZE(efx->rss_context.rx_indir_table);
1156 }
1157
efx_ethtool_get_rxfh_key_size(struct net_device * net_dev)1158 u32 efx_ethtool_get_rxfh_key_size(struct net_device *net_dev)
1159 {
1160 struct efx_nic *efx = netdev_priv(net_dev);
1161
1162 return efx->type->rx_hash_key_size;
1163 }
1164
efx_ethtool_get_rxfh(struct net_device * net_dev,u32 * indir,u8 * key,u8 * hfunc)1165 int efx_ethtool_get_rxfh(struct net_device *net_dev, u32 *indir, u8 *key,
1166 u8 *hfunc)
1167 {
1168 struct efx_nic *efx = netdev_priv(net_dev);
1169 int rc;
1170
1171 rc = efx->type->rx_pull_rss_config(efx);
1172 if (rc)
1173 return rc;
1174
1175 if (hfunc)
1176 *hfunc = ETH_RSS_HASH_TOP;
1177 if (indir)
1178 memcpy(indir, efx->rss_context.rx_indir_table,
1179 sizeof(efx->rss_context.rx_indir_table));
1180 if (key)
1181 memcpy(key, efx->rss_context.rx_hash_key,
1182 efx->type->rx_hash_key_size);
1183 return 0;
1184 }
1185
efx_ethtool_set_rxfh(struct net_device * net_dev,const u32 * indir,const u8 * key,const u8 hfunc)1186 int efx_ethtool_set_rxfh(struct net_device *net_dev, const u32 *indir,
1187 const u8 *key, const u8 hfunc)
1188 {
1189 struct efx_nic *efx = netdev_priv(net_dev);
1190
1191 /* Hash function is Toeplitz, cannot be changed */
1192 if (hfunc != ETH_RSS_HASH_NO_CHANGE && hfunc != ETH_RSS_HASH_TOP)
1193 return -EOPNOTSUPP;
1194 if (!indir && !key)
1195 return 0;
1196
1197 if (!key)
1198 key = efx->rss_context.rx_hash_key;
1199 if (!indir)
1200 indir = efx->rss_context.rx_indir_table;
1201
1202 return efx->type->rx_push_rss_config(efx, true, indir, key);
1203 }
1204
efx_ethtool_get_rxfh_context(struct net_device * net_dev,u32 * indir,u8 * key,u8 * hfunc,u32 rss_context)1205 int efx_ethtool_get_rxfh_context(struct net_device *net_dev, u32 *indir,
1206 u8 *key, u8 *hfunc, u32 rss_context)
1207 {
1208 struct efx_nic *efx = netdev_priv(net_dev);
1209 struct efx_rss_context *ctx;
1210 int rc = 0;
1211
1212 if (!efx->type->rx_pull_rss_context_config)
1213 return -EOPNOTSUPP;
1214
1215 mutex_lock(&efx->rss_lock);
1216 ctx = efx_find_rss_context_entry(efx, rss_context);
1217 if (!ctx) {
1218 rc = -ENOENT;
1219 goto out_unlock;
1220 }
1221 rc = efx->type->rx_pull_rss_context_config(efx, ctx);
1222 if (rc)
1223 goto out_unlock;
1224
1225 if (hfunc)
1226 *hfunc = ETH_RSS_HASH_TOP;
1227 if (indir)
1228 memcpy(indir, ctx->rx_indir_table, sizeof(ctx->rx_indir_table));
1229 if (key)
1230 memcpy(key, ctx->rx_hash_key, efx->type->rx_hash_key_size);
1231 out_unlock:
1232 mutex_unlock(&efx->rss_lock);
1233 return rc;
1234 }
1235
efx_ethtool_set_rxfh_context(struct net_device * net_dev,const u32 * indir,const u8 * key,const u8 hfunc,u32 * rss_context,bool delete)1236 int efx_ethtool_set_rxfh_context(struct net_device *net_dev,
1237 const u32 *indir, const u8 *key,
1238 const u8 hfunc, u32 *rss_context,
1239 bool delete)
1240 {
1241 struct efx_nic *efx = netdev_priv(net_dev);
1242 struct efx_rss_context *ctx;
1243 bool allocated = false;
1244 int rc;
1245
1246 if (!efx->type->rx_push_rss_context_config)
1247 return -EOPNOTSUPP;
1248 /* Hash function is Toeplitz, cannot be changed */
1249 if (hfunc != ETH_RSS_HASH_NO_CHANGE && hfunc != ETH_RSS_HASH_TOP)
1250 return -EOPNOTSUPP;
1251
1252 mutex_lock(&efx->rss_lock);
1253
1254 if (*rss_context == ETH_RXFH_CONTEXT_ALLOC) {
1255 if (delete) {
1256 /* alloc + delete == Nothing to do */
1257 rc = -EINVAL;
1258 goto out_unlock;
1259 }
1260 ctx = efx_alloc_rss_context_entry(efx);
1261 if (!ctx) {
1262 rc = -ENOMEM;
1263 goto out_unlock;
1264 }
1265 ctx->context_id = EFX_MCDI_RSS_CONTEXT_INVALID;
1266 /* Initialise indir table and key to defaults */
1267 efx_set_default_rx_indir_table(efx, ctx);
1268 netdev_rss_key_fill(ctx->rx_hash_key, sizeof(ctx->rx_hash_key));
1269 allocated = true;
1270 } else {
1271 ctx = efx_find_rss_context_entry(efx, *rss_context);
1272 if (!ctx) {
1273 rc = -ENOENT;
1274 goto out_unlock;
1275 }
1276 }
1277
1278 if (delete) {
1279 /* delete this context */
1280 rc = efx->type->rx_push_rss_context_config(efx, ctx, NULL, NULL);
1281 if (!rc)
1282 efx_free_rss_context_entry(ctx);
1283 goto out_unlock;
1284 }
1285
1286 if (!key)
1287 key = ctx->rx_hash_key;
1288 if (!indir)
1289 indir = ctx->rx_indir_table;
1290
1291 rc = efx->type->rx_push_rss_context_config(efx, ctx, indir, key);
1292 if (rc && allocated)
1293 efx_free_rss_context_entry(ctx);
1294 else
1295 *rss_context = ctx->user_id;
1296 out_unlock:
1297 mutex_unlock(&efx->rss_lock);
1298 return rc;
1299 }
1300
efx_ethtool_reset(struct net_device * net_dev,u32 * flags)1301 int efx_ethtool_reset(struct net_device *net_dev, u32 *flags)
1302 {
1303 struct efx_nic *efx = netdev_priv(net_dev);
1304 int rc;
1305
1306 rc = efx->type->map_reset_flags(flags);
1307 if (rc < 0)
1308 return rc;
1309
1310 return efx_reset(efx, rc);
1311 }
1312
efx_ethtool_get_module_eeprom(struct net_device * net_dev,struct ethtool_eeprom * ee,u8 * data)1313 int efx_ethtool_get_module_eeprom(struct net_device *net_dev,
1314 struct ethtool_eeprom *ee,
1315 u8 *data)
1316 {
1317 struct efx_nic *efx = netdev_priv(net_dev);
1318 int ret;
1319
1320 mutex_lock(&efx->mac_lock);
1321 ret = efx_mcdi_phy_get_module_eeprom(efx, ee, data);
1322 mutex_unlock(&efx->mac_lock);
1323
1324 return ret;
1325 }
1326
efx_ethtool_get_module_info(struct net_device * net_dev,struct ethtool_modinfo * modinfo)1327 int efx_ethtool_get_module_info(struct net_device *net_dev,
1328 struct ethtool_modinfo *modinfo)
1329 {
1330 struct efx_nic *efx = netdev_priv(net_dev);
1331 int ret;
1332
1333 mutex_lock(&efx->mac_lock);
1334 ret = efx_mcdi_phy_get_module_info(efx, modinfo);
1335 mutex_unlock(&efx->mac_lock);
1336
1337 return ret;
1338 }
1339