1 /****************************************************************************
2 * Driver for Solarflare network controllers and boards
3 * Copyright 2005-2006 Fen Systems Ltd.
4 * Copyright 2006-2012 Solarflare Communications Inc.
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.
11 #include <linux/netdevice.h>
12 #include <linux/module.h>
13 #include <linux/delay.h>
14 #include <linux/kernel_stat.h>
15 #include <linux/pci.h>
16 #include <linux/ethtool.h>
19 #include <linux/udp.h>
20 #include <linux/rtnetlink.h>
21 #include <linux/slab.h>
22 #include "net_driver.h"
26 #include "workarounds.h"
28 /* IRQ latency can be enormous because:
29 * - All IRQs may be disabled on a CPU for a *long* time by e.g. a
30 * slow serial console or an old IDE driver doing error recovery
31 * - The PREEMPT_RT patches mostly deal with this, but also allow a
32 * tasklet or normal task to be given higher priority than our IRQ
34 * Try to avoid blaming the hardware for this.
36 #define IRQ_TIMEOUT HZ
39 * Loopback test packet structure
41 * The self-test should stress every RSS vector, and unfortunately
42 * Falcon only performs RSS on TCP/UDP packets.
44 struct ef4_loopback_payload
{
52 /* Loopback test source MAC address */
53 static const u8 payload_source
[ETH_ALEN
] __aligned(2) = {
54 0x00, 0x0f, 0x53, 0x1b, 0x1b, 0x1b,
57 static const char payload_msg
[] =
58 "Hello world! This is an Efx loopback test in progress!";
60 /* Interrupt mode names */
61 static const unsigned int ef4_interrupt_mode_max
= EF4_INT_MODE_MAX
;
62 static const char *const ef4_interrupt_mode_names
[] = {
63 [EF4_INT_MODE_MSIX
] = "MSI-X",
64 [EF4_INT_MODE_MSI
] = "MSI",
65 [EF4_INT_MODE_LEGACY
] = "legacy",
67 #define INT_MODE(efx) \
68 STRING_TABLE_LOOKUP(efx->interrupt_mode, ef4_interrupt_mode)
71 * ef4_loopback_state - persistent state during a loopback selftest
72 * @flush: Drop all packets in ef4_loopback_rx_packet
73 * @packet_count: Number of packets being used in this test
74 * @skbs: An array of skbs transmitted
75 * @offload_csum: Checksums are being offloaded
76 * @rx_good: RX good packet count
77 * @rx_bad: RX bad packet count
78 * @payload: Payload used in tests
80 struct ef4_loopback_state
{
83 struct sk_buff
**skbs
;
87 struct ef4_loopback_payload payload
;
90 /* How long to wait for all the packets to arrive (in ms) */
91 #define LOOPBACK_TIMEOUT_MS 1000
93 /**************************************************************************
95 * MII, NVRAM and register tests
97 **************************************************************************/
99 static int ef4_test_phy_alive(struct ef4_nic
*efx
, struct ef4_self_tests
*tests
)
103 if (efx
->phy_op
->test_alive
) {
104 rc
= efx
->phy_op
->test_alive(efx
);
105 tests
->phy_alive
= rc
? -1 : 1;
111 static int ef4_test_nvram(struct ef4_nic
*efx
, struct ef4_self_tests
*tests
)
115 if (efx
->type
->test_nvram
) {
116 rc
= efx
->type
->test_nvram(efx
);
120 tests
->nvram
= rc
? -1 : 1;
126 /**************************************************************************
128 * Interrupt and event queue testing
130 **************************************************************************/
132 /* Test generation and receipt of interrupts */
133 static int ef4_test_interrupts(struct ef4_nic
*efx
,
134 struct ef4_self_tests
*tests
)
136 unsigned long timeout
, wait
;
140 netif_dbg(efx
, drv
, efx
->net_dev
, "testing interrupts\n");
141 tests
->interrupt
= -1;
143 rc
= ef4_nic_irq_test_start(efx
);
144 if (rc
== -ENOTSUPP
) {
145 netif_dbg(efx
, drv
, efx
->net_dev
,
146 "direct interrupt testing not supported\n");
147 tests
->interrupt
= 0;
151 timeout
= jiffies
+ IRQ_TIMEOUT
;
154 /* Wait for arrival of test interrupt. */
155 netif_dbg(efx
, drv
, efx
->net_dev
, "waiting for test interrupt\n");
157 schedule_timeout_uninterruptible(wait
);
158 cpu
= ef4_nic_irq_test_irq_cpu(efx
);
162 } while (time_before(jiffies
, timeout
));
164 netif_err(efx
, drv
, efx
->net_dev
, "timed out waiting for interrupt\n");
168 netif_dbg(efx
, drv
, efx
->net_dev
, "%s test interrupt seen on CPU%d\n",
170 tests
->interrupt
= 1;
174 /* Test generation and receipt of interrupting events */
175 static int ef4_test_eventq_irq(struct ef4_nic
*efx
,
176 struct ef4_self_tests
*tests
)
178 struct ef4_channel
*channel
;
179 unsigned int read_ptr
[EF4_MAX_CHANNELS
];
180 unsigned long napi_ran
= 0, dma_pend
= 0, int_pend
= 0;
181 unsigned long timeout
, wait
;
183 BUILD_BUG_ON(EF4_MAX_CHANNELS
> BITS_PER_LONG
);
185 ef4_for_each_channel(channel
, efx
) {
186 read_ptr
[channel
->channel
] = channel
->eventq_read_ptr
;
187 set_bit(channel
->channel
, &dma_pend
);
188 set_bit(channel
->channel
, &int_pend
);
189 ef4_nic_event_test_start(channel
);
192 timeout
= jiffies
+ IRQ_TIMEOUT
;
195 /* Wait for arrival of interrupts. NAPI processing may or may
196 * not complete in time, but we can cope in any case.
199 schedule_timeout_uninterruptible(wait
);
201 ef4_for_each_channel(channel
, efx
) {
202 ef4_stop_eventq(channel
);
203 if (channel
->eventq_read_ptr
!=
204 read_ptr
[channel
->channel
]) {
205 set_bit(channel
->channel
, &napi_ran
);
206 clear_bit(channel
->channel
, &dma_pend
);
207 clear_bit(channel
->channel
, &int_pend
);
209 if (ef4_nic_event_present(channel
))
210 clear_bit(channel
->channel
, &dma_pend
);
211 if (ef4_nic_event_test_irq_cpu(channel
) >= 0)
212 clear_bit(channel
->channel
, &int_pend
);
214 ef4_start_eventq(channel
);
218 } while ((dma_pend
|| int_pend
) && time_before(jiffies
, timeout
));
220 ef4_for_each_channel(channel
, efx
) {
221 bool dma_seen
= !test_bit(channel
->channel
, &dma_pend
);
222 bool int_seen
= !test_bit(channel
->channel
, &int_pend
);
224 tests
->eventq_dma
[channel
->channel
] = dma_seen
? 1 : -1;
225 tests
->eventq_int
[channel
->channel
] = int_seen
? 1 : -1;
227 if (dma_seen
&& int_seen
) {
228 netif_dbg(efx
, drv
, efx
->net_dev
,
229 "channel %d event queue passed (with%s NAPI)\n",
231 test_bit(channel
->channel
, &napi_ran
) ?
234 /* Report failure and whether either interrupt or DMA
237 netif_err(efx
, drv
, efx
->net_dev
,
238 "channel %d timed out waiting for event queue\n",
241 netif_err(efx
, drv
, efx
->net_dev
,
242 "channel %d saw interrupt "
243 "during event queue test\n",
246 netif_err(efx
, drv
, efx
->net_dev
,
247 "channel %d event was generated, but "
248 "failed to trigger an interrupt\n",
253 return (dma_pend
|| int_pend
) ? -ETIMEDOUT
: 0;
256 static int ef4_test_phy(struct ef4_nic
*efx
, struct ef4_self_tests
*tests
,
261 if (!efx
->phy_op
->run_tests
)
264 mutex_lock(&efx
->mac_lock
);
265 rc
= efx
->phy_op
->run_tests(efx
, tests
->phy_ext
, flags
);
266 mutex_unlock(&efx
->mac_lock
);
270 netif_info(efx
, drv
, efx
->net_dev
,
271 "%s phy selftest\n", rc
? "Failed" : "Passed");
276 /**************************************************************************
279 * NB Only one loopback test can be executing concurrently.
281 **************************************************************************/
283 /* Loopback test RX callback
284 * This is called for each received packet during loopback testing.
286 void ef4_loopback_rx_packet(struct ef4_nic
*efx
,
287 const char *buf_ptr
, int pkt_len
)
289 struct ef4_loopback_state
*state
= efx
->loopback_selftest
;
290 struct ef4_loopback_payload
*received
;
291 struct ef4_loopback_payload
*payload
;
295 /* If we are just flushing, then drop the packet */
296 if ((state
== NULL
) || state
->flush
)
299 payload
= &state
->payload
;
301 received
= (struct ef4_loopback_payload
*) buf_ptr
;
302 received
->ip
.saddr
= payload
->ip
.saddr
;
303 if (state
->offload_csum
)
304 received
->ip
.check
= payload
->ip
.check
;
306 /* Check that header exists */
307 if (pkt_len
< sizeof(received
->header
)) {
308 netif_err(efx
, drv
, efx
->net_dev
,
309 "saw runt RX packet (length %d) in %s loopback "
310 "test\n", pkt_len
, LOOPBACK_MODE(efx
));
314 /* Check that the ethernet header exists */
315 if (memcmp(&received
->header
, &payload
->header
, ETH_HLEN
) != 0) {
316 netif_err(efx
, drv
, efx
->net_dev
,
317 "saw non-loopback RX packet in %s loopback test\n",
322 /* Check packet length */
323 if (pkt_len
!= sizeof(*payload
)) {
324 netif_err(efx
, drv
, efx
->net_dev
,
325 "saw incorrect RX packet length %d (wanted %d) in "
326 "%s loopback test\n", pkt_len
, (int)sizeof(*payload
),
331 /* Check that IP header matches */
332 if (memcmp(&received
->ip
, &payload
->ip
, sizeof(payload
->ip
)) != 0) {
333 netif_err(efx
, drv
, efx
->net_dev
,
334 "saw corrupted IP header in %s loopback test\n",
339 /* Check that msg and padding matches */
340 if (memcmp(&received
->msg
, &payload
->msg
, sizeof(received
->msg
)) != 0) {
341 netif_err(efx
, drv
, efx
->net_dev
,
342 "saw corrupted RX packet in %s loopback test\n",
347 /* Check that iteration matches */
348 if (received
->iteration
!= payload
->iteration
) {
349 netif_err(efx
, drv
, efx
->net_dev
,
350 "saw RX packet from iteration %d (wanted %d) in "
351 "%s loopback test\n", ntohs(received
->iteration
),
352 ntohs(payload
->iteration
), LOOPBACK_MODE(efx
));
356 /* Increase correct RX count */
357 netif_vdbg(efx
, drv
, efx
->net_dev
,
358 "got loopback RX in %s loopback test\n", LOOPBACK_MODE(efx
));
360 atomic_inc(&state
->rx_good
);
365 if (atomic_read(&state
->rx_bad
) == 0) {
366 netif_err(efx
, drv
, efx
->net_dev
, "received packet:\n");
367 print_hex_dump(KERN_ERR
, "", DUMP_PREFIX_OFFSET
, 0x10, 1,
368 buf_ptr
, pkt_len
, 0);
369 netif_err(efx
, drv
, efx
->net_dev
, "expected packet:\n");
370 print_hex_dump(KERN_ERR
, "", DUMP_PREFIX_OFFSET
, 0x10, 1,
371 &state
->payload
, sizeof(state
->payload
), 0);
374 atomic_inc(&state
->rx_bad
);
377 /* Initialise an ef4_selftest_state for a new iteration */
378 static void ef4_iterate_state(struct ef4_nic
*efx
)
380 struct ef4_loopback_state
*state
= efx
->loopback_selftest
;
381 struct net_device
*net_dev
= efx
->net_dev
;
382 struct ef4_loopback_payload
*payload
= &state
->payload
;
384 /* Initialise the layerII header */
385 ether_addr_copy((u8
*)&payload
->header
.h_dest
, net_dev
->dev_addr
);
386 ether_addr_copy((u8
*)&payload
->header
.h_source
, payload_source
);
387 payload
->header
.h_proto
= htons(ETH_P_IP
);
389 /* saddr set later and used as incrementing count */
390 payload
->ip
.daddr
= htonl(INADDR_LOOPBACK
);
392 payload
->ip
.check
= (__force __sum16
) htons(0xdead);
393 payload
->ip
.tot_len
= htons(sizeof(*payload
) - sizeof(struct ethhdr
));
394 payload
->ip
.version
= IPVERSION
;
395 payload
->ip
.protocol
= IPPROTO_UDP
;
397 /* Initialise udp header */
398 payload
->udp
.source
= 0;
399 payload
->udp
.len
= htons(sizeof(*payload
) - sizeof(struct ethhdr
) -
400 sizeof(struct iphdr
));
401 payload
->udp
.check
= 0; /* checksum ignored */
403 /* Fill out payload */
404 payload
->iteration
= htons(ntohs(payload
->iteration
) + 1);
405 memcpy(&payload
->msg
, payload_msg
, sizeof(payload_msg
));
407 /* Fill out remaining state members */
408 atomic_set(&state
->rx_good
, 0);
409 atomic_set(&state
->rx_bad
, 0);
413 static int ef4_begin_loopback(struct ef4_tx_queue
*tx_queue
)
415 struct ef4_nic
*efx
= tx_queue
->efx
;
416 struct ef4_loopback_state
*state
= efx
->loopback_selftest
;
417 struct ef4_loopback_payload
*payload
;
422 /* Transmit N copies of buffer */
423 for (i
= 0; i
< state
->packet_count
; i
++) {
424 /* Allocate an skb, holding an extra reference for
425 * transmit completion counting */
426 skb
= alloc_skb(sizeof(state
->payload
), GFP_KERNEL
);
429 state
->skbs
[i
] = skb
;
432 /* Copy the payload in, incrementing the source address to
433 * exercise the rss vectors */
434 payload
= ((struct ef4_loopback_payload
*)
435 skb_put(skb
, sizeof(state
->payload
)));
436 memcpy(payload
, &state
->payload
, sizeof(state
->payload
));
437 payload
->ip
.saddr
= htonl(INADDR_LOOPBACK
| (i
<< 2));
439 /* Ensure everything we've written is visible to the
440 * interrupt handler. */
443 netif_tx_lock_bh(efx
->net_dev
);
444 rc
= ef4_enqueue_skb(tx_queue
, skb
);
445 netif_tx_unlock_bh(efx
->net_dev
);
447 if (rc
!= NETDEV_TX_OK
) {
448 netif_err(efx
, drv
, efx
->net_dev
,
449 "TX queue %d could not transmit packet %d of "
450 "%d in %s loopback test\n", tx_queue
->queue
,
451 i
+ 1, state
->packet_count
,
454 /* Defer cleaning up the other skbs for the caller */
463 static int ef4_poll_loopback(struct ef4_nic
*efx
)
465 struct ef4_loopback_state
*state
= efx
->loopback_selftest
;
467 return atomic_read(&state
->rx_good
) == state
->packet_count
;
470 static int ef4_end_loopback(struct ef4_tx_queue
*tx_queue
,
471 struct ef4_loopback_self_tests
*lb_tests
)
473 struct ef4_nic
*efx
= tx_queue
->efx
;
474 struct ef4_loopback_state
*state
= efx
->loopback_selftest
;
476 int tx_done
= 0, rx_good
, rx_bad
;
479 netif_tx_lock_bh(efx
->net_dev
);
481 /* Count the number of tx completions, and decrement the refcnt. Any
482 * skbs not already completed will be free'd when the queue is flushed */
483 for (i
= 0; i
< state
->packet_count
; i
++) {
484 skb
= state
->skbs
[i
];
485 if (skb
&& !skb_shared(skb
))
490 netif_tx_unlock_bh(efx
->net_dev
);
492 /* Check TX completion and received packet counts */
493 rx_good
= atomic_read(&state
->rx_good
);
494 rx_bad
= atomic_read(&state
->rx_bad
);
495 if (tx_done
!= state
->packet_count
) {
496 /* Don't free the skbs; they will be picked up on TX
497 * overflow or channel teardown.
499 netif_err(efx
, drv
, efx
->net_dev
,
500 "TX queue %d saw only %d out of an expected %d "
501 "TX completion events in %s loopback test\n",
502 tx_queue
->queue
, tx_done
, state
->packet_count
,
505 /* Allow to fall through so we see the RX errors as well */
508 /* We may always be up to a flush away from our desired packet total */
509 if (rx_good
!= state
->packet_count
) {
510 netif_dbg(efx
, drv
, efx
->net_dev
,
511 "TX queue %d saw only %d out of an expected %d "
512 "received packets in %s loopback test\n",
513 tx_queue
->queue
, rx_good
, state
->packet_count
,
519 /* Update loopback test structure */
520 lb_tests
->tx_sent
[tx_queue
->queue
] += state
->packet_count
;
521 lb_tests
->tx_done
[tx_queue
->queue
] += tx_done
;
522 lb_tests
->rx_good
+= rx_good
;
523 lb_tests
->rx_bad
+= rx_bad
;
529 ef4_test_loopback(struct ef4_tx_queue
*tx_queue
,
530 struct ef4_loopback_self_tests
*lb_tests
)
532 struct ef4_nic
*efx
= tx_queue
->efx
;
533 struct ef4_loopback_state
*state
= efx
->loopback_selftest
;
534 int i
, begin_rc
, end_rc
;
536 for (i
= 0; i
< 3; i
++) {
537 /* Determine how many packets to send */
538 state
->packet_count
= efx
->txq_entries
/ 3;
539 state
->packet_count
= min(1 << (i
<< 2), state
->packet_count
);
540 state
->skbs
= kcalloc(state
->packet_count
,
541 sizeof(state
->skbs
[0]), GFP_KERNEL
);
544 state
->flush
= false;
546 netif_dbg(efx
, drv
, efx
->net_dev
,
547 "TX queue %d testing %s loopback with %d packets\n",
548 tx_queue
->queue
, LOOPBACK_MODE(efx
),
549 state
->packet_count
);
551 ef4_iterate_state(efx
);
552 begin_rc
= ef4_begin_loopback(tx_queue
);
554 /* This will normally complete very quickly, but be
555 * prepared to wait much longer. */
557 if (!ef4_poll_loopback(efx
)) {
558 msleep(LOOPBACK_TIMEOUT_MS
);
559 ef4_poll_loopback(efx
);
562 end_rc
= ef4_end_loopback(tx_queue
, lb_tests
);
565 if (begin_rc
|| end_rc
) {
566 /* Wait a while to ensure there are no packets
567 * floating around after a failure. */
568 schedule_timeout_uninterruptible(HZ
/ 10);
569 return begin_rc
? begin_rc
: end_rc
;
573 netif_dbg(efx
, drv
, efx
->net_dev
,
574 "TX queue %d passed %s loopback test with a burst length "
575 "of %d packets\n", tx_queue
->queue
, LOOPBACK_MODE(efx
),
576 state
->packet_count
);
581 /* Wait for link up. On Falcon, we would prefer to rely on ef4_monitor, but
582 * any contention on the mac lock (via e.g. ef4_mac_mcast_work) causes it
583 * to delay and retry. Therefore, it's safer to just poll directly. Wait
584 * for link up and any faults to dissipate. */
585 static int ef4_wait_for_link(struct ef4_nic
*efx
)
587 struct ef4_link_state
*link_state
= &efx
->link_state
;
588 int count
, link_up_count
= 0;
591 for (count
= 0; count
< 40; count
++) {
592 schedule_timeout_uninterruptible(HZ
/ 10);
594 if (efx
->type
->monitor
!= NULL
) {
595 mutex_lock(&efx
->mac_lock
);
596 efx
->type
->monitor(efx
);
597 mutex_unlock(&efx
->mac_lock
);
600 mutex_lock(&efx
->mac_lock
);
601 link_up
= link_state
->up
;
603 link_up
= !efx
->type
->check_mac_fault(efx
);
604 mutex_unlock(&efx
->mac_lock
);
607 if (++link_up_count
== 2)
617 static int ef4_test_loopbacks(struct ef4_nic
*efx
, struct ef4_self_tests
*tests
,
618 unsigned int loopback_modes
)
620 enum ef4_loopback_mode mode
;
621 struct ef4_loopback_state
*state
;
622 struct ef4_channel
*channel
=
623 ef4_get_channel(efx
, efx
->tx_channel_offset
);
624 struct ef4_tx_queue
*tx_queue
;
627 /* Set the port loopback_selftest member. From this point on
628 * all received packets will be dropped. Mark the state as
629 * "flushing" so all inflight packets are dropped */
630 state
= kzalloc(sizeof(*state
), GFP_KERNEL
);
633 BUG_ON(efx
->loopback_selftest
);
635 efx
->loopback_selftest
= state
;
637 /* Test all supported loopback modes */
638 for (mode
= LOOPBACK_NONE
; mode
<= LOOPBACK_TEST_MAX
; mode
++) {
639 if (!(loopback_modes
& (1 << mode
)))
642 /* Move the port into the specified loopback mode. */
644 mutex_lock(&efx
->mac_lock
);
645 efx
->loopback_mode
= mode
;
646 rc
= __ef4_reconfigure_port(efx
);
647 mutex_unlock(&efx
->mac_lock
);
649 netif_err(efx
, drv
, efx
->net_dev
,
650 "unable to move into %s loopback\n",
655 rc
= ef4_wait_for_link(efx
);
657 netif_err(efx
, drv
, efx
->net_dev
,
658 "loopback %s never came up\n",
663 /* Test all enabled types of TX queue */
664 ef4_for_each_channel_tx_queue(tx_queue
, channel
) {
665 state
->offload_csum
= (tx_queue
->queue
&
666 EF4_TXQ_TYPE_OFFLOAD
);
667 rc
= ef4_test_loopback(tx_queue
,
668 &tests
->loopback
[mode
]);
675 /* Remove the flush. The caller will remove the loopback setting */
677 efx
->loopback_selftest
= NULL
;
687 /**************************************************************************
691 *************************************************************************/
693 int ef4_selftest(struct ef4_nic
*efx
, struct ef4_self_tests
*tests
,
696 enum ef4_loopback_mode loopback_mode
= efx
->loopback_mode
;
697 int phy_mode
= efx
->phy_mode
;
698 int rc_test
= 0, rc_reset
, rc
;
700 ef4_selftest_async_cancel(efx
);
702 /* Online (i.e. non-disruptive) testing
703 * This checks interrupt generation, event delivery and PHY presence. */
705 rc
= ef4_test_phy_alive(efx
, tests
);
709 rc
= ef4_test_nvram(efx
, tests
);
713 rc
= ef4_test_interrupts(efx
, tests
);
717 rc
= ef4_test_eventq_irq(efx
, tests
);
724 if (!(flags
& ETH_TEST_FL_OFFLINE
))
725 return ef4_test_phy(efx
, tests
, flags
);
727 /* Offline (i.e. disruptive) testing
728 * This checks MAC and PHY loopback on the specified port. */
730 /* Detach the device so the kernel doesn't transmit during the
731 * loopback test and the watchdog timeout doesn't fire.
733 ef4_device_detach_sync(efx
);
735 if (efx
->type
->test_chip
) {
736 rc_reset
= efx
->type
->test_chip(efx
, tests
);
738 netif_err(efx
, hw
, efx
->net_dev
,
739 "Unable to recover from chip test\n");
740 ef4_schedule_reset(efx
, RESET_TYPE_DISABLE
);
744 if ((tests
->memory
< 0 || tests
->registers
< 0) && !rc_test
)
748 /* Ensure that the phy is powered and out of loopback
749 * for the bist and loopback tests */
750 mutex_lock(&efx
->mac_lock
);
751 efx
->phy_mode
&= ~PHY_MODE_LOW_POWER
;
752 efx
->loopback_mode
= LOOPBACK_NONE
;
753 __ef4_reconfigure_port(efx
);
754 mutex_unlock(&efx
->mac_lock
);
756 rc
= ef4_test_phy(efx
, tests
, flags
);
760 rc
= ef4_test_loopbacks(efx
, tests
, efx
->loopback_modes
);
764 /* restore the PHY to the previous state */
765 mutex_lock(&efx
->mac_lock
);
766 efx
->phy_mode
= phy_mode
;
767 efx
->loopback_mode
= loopback_mode
;
768 __ef4_reconfigure_port(efx
);
769 mutex_unlock(&efx
->mac_lock
);
771 netif_device_attach(efx
->net_dev
);
776 void ef4_selftest_async_start(struct ef4_nic
*efx
)
778 struct ef4_channel
*channel
;
780 ef4_for_each_channel(channel
, efx
)
781 ef4_nic_event_test_start(channel
);
782 schedule_delayed_work(&efx
->selftest_work
, IRQ_TIMEOUT
);
785 void ef4_selftest_async_cancel(struct ef4_nic
*efx
)
787 cancel_delayed_work_sync(&efx
->selftest_work
);
790 void ef4_selftest_async_work(struct work_struct
*data
)
792 struct ef4_nic
*efx
= container_of(data
, struct ef4_nic
,
794 struct ef4_channel
*channel
;
797 ef4_for_each_channel(channel
, efx
) {
798 cpu
= ef4_nic_event_test_irq_cpu(channel
);
800 netif_err(efx
, ifup
, efx
->net_dev
,
801 "channel %d failed to trigger an interrupt\n",
804 netif_dbg(efx
, ifup
, efx
->net_dev
,
805 "channel %d triggered interrupt on CPU %d\n",
806 channel
->channel
, cpu
);