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 2006-2012 Solarflare Communications Inc.
6  */
7 
8 #include <linux/netdevice.h>
9 #include <linux/module.h>
10 #include <linux/delay.h>
11 #include <linux/kernel_stat.h>
12 #include <linux/pci.h>
13 #include <linux/ethtool.h>
14 #include <linux/ip.h>
15 #include <linux/in.h>
16 #include <linux/udp.h>
17 #include <linux/rtnetlink.h>
18 #include <linux/slab.h>
19 #include "net_driver.h"
20 #include "efx.h"
21 #include "nic.h"
22 #include "selftest.h"
23 #include "workarounds.h"
24 
25 /* IRQ latency can be enormous because:
26  * - All IRQs may be disabled on a CPU for a *long* time by e.g. a
27  *   slow serial console or an old IDE driver doing error recovery
28  * - The PREEMPT_RT patches mostly deal with this, but also allow a
29  *   tasklet or normal task to be given higher priority than our IRQ
30  *   threads
31  * Try to avoid blaming the hardware for this.
32  */
33 #define IRQ_TIMEOUT HZ
34 
35 /*
36  * Loopback test packet structure
37  *
38  * The self-test should stress every RSS vector, and unfortunately
39  * Falcon only performs RSS on TCP/UDP packets.
40  */
41 struct ef4_loopback_payload {
42 	char pad[2]; /* Ensures ip is 4-byte aligned */
43 	struct ethhdr header;
44 	struct iphdr ip;
45 	struct udphdr udp;
46 	__be16 iteration;
47 	char msg[64];
48 } __packed __aligned(4);
49 #define EF4_LOOPBACK_PAYLOAD_LEN	(sizeof(struct ef4_loopback_payload) - \
50 					 offsetof(struct ef4_loopback_payload, \
51 						  header))
52 
53 /* Loopback test source MAC address */
54 static const u8 payload_source[ETH_ALEN] __aligned(2) = {
55 	0x00, 0x0f, 0x53, 0x1b, 0x1b, 0x1b,
56 };
57 
58 static const char payload_msg[] =
59 	"Hello world! This is an Efx loopback test in progress!";
60 
61 /* Interrupt mode names */
62 static const unsigned int ef4_interrupt_mode_max = EF4_INT_MODE_MAX;
63 static const char *const ef4_interrupt_mode_names[] = {
64 	[EF4_INT_MODE_MSIX]   = "MSI-X",
65 	[EF4_INT_MODE_MSI]    = "MSI",
66 	[EF4_INT_MODE_LEGACY] = "legacy",
67 };
68 #define INT_MODE(efx) \
69 	STRING_TABLE_LOOKUP(efx->interrupt_mode, ef4_interrupt_mode)
70 
71 /**
72  * struct ef4_loopback_state - persistent state during a loopback selftest
73  * @flush:		Drop all packets in ef4_loopback_rx_packet
74  * @packet_count:	Number of packets being used in this test
75  * @skbs:		An array of skbs transmitted
76  * @offload_csum:	Checksums are being offloaded
77  * @rx_good:		RX good packet count
78  * @rx_bad:		RX bad packet count
79  * @payload:		Payload used in tests
80  */
81 struct ef4_loopback_state {
82 	bool flush;
83 	int packet_count;
84 	struct sk_buff **skbs;
85 	bool offload_csum;
86 	atomic_t rx_good;
87 	atomic_t rx_bad;
88 	struct ef4_loopback_payload payload;
89 };
90 
91 /* How long to wait for all the packets to arrive (in ms) */
92 #define LOOPBACK_TIMEOUT_MS 1000
93 
94 /**************************************************************************
95  *
96  * MII, NVRAM and register tests
97  *
98  **************************************************************************/
99 
100 static int ef4_test_phy_alive(struct ef4_nic *efx, struct ef4_self_tests *tests)
101 {
102 	int rc = 0;
103 
104 	if (efx->phy_op->test_alive) {
105 		rc = efx->phy_op->test_alive(efx);
106 		tests->phy_alive = rc ? -1 : 1;
107 	}
108 
109 	return rc;
110 }
111 
112 static int ef4_test_nvram(struct ef4_nic *efx, struct ef4_self_tests *tests)
113 {
114 	int rc = 0;
115 
116 	if (efx->type->test_nvram) {
117 		rc = efx->type->test_nvram(efx);
118 		if (rc == -EPERM)
119 			rc = 0;
120 		else
121 			tests->nvram = rc ? -1 : 1;
122 	}
123 
124 	return rc;
125 }
126 
127 /**************************************************************************
128  *
129  * Interrupt and event queue testing
130  *
131  **************************************************************************/
132 
133 /* Test generation and receipt of interrupts */
134 static int ef4_test_interrupts(struct ef4_nic *efx,
135 			       struct ef4_self_tests *tests)
136 {
137 	unsigned long timeout, wait;
138 	int cpu;
139 	int rc;
140 
141 	netif_dbg(efx, drv, efx->net_dev, "testing interrupts\n");
142 	tests->interrupt = -1;
143 
144 	rc = ef4_nic_irq_test_start(efx);
145 	if (rc == -ENOTSUPP) {
146 		netif_dbg(efx, drv, efx->net_dev,
147 			  "direct interrupt testing not supported\n");
148 		tests->interrupt = 0;
149 		return 0;
150 	}
151 
152 	timeout = jiffies + IRQ_TIMEOUT;
153 	wait = 1;
154 
155 	/* Wait for arrival of test interrupt. */
156 	netif_dbg(efx, drv, efx->net_dev, "waiting for test interrupt\n");
157 	do {
158 		schedule_timeout_uninterruptible(wait);
159 		cpu = ef4_nic_irq_test_irq_cpu(efx);
160 		if (cpu >= 0)
161 			goto success;
162 		wait *= 2;
163 	} while (time_before(jiffies, timeout));
164 
165 	netif_err(efx, drv, efx->net_dev, "timed out waiting for interrupt\n");
166 	return -ETIMEDOUT;
167 
168  success:
169 	netif_dbg(efx, drv, efx->net_dev, "%s test interrupt seen on CPU%d\n",
170 		  INT_MODE(efx), cpu);
171 	tests->interrupt = 1;
172 	return 0;
173 }
174 
175 /* Test generation and receipt of interrupting events */
176 static int ef4_test_eventq_irq(struct ef4_nic *efx,
177 			       struct ef4_self_tests *tests)
178 {
179 	struct ef4_channel *channel;
180 	unsigned int read_ptr[EF4_MAX_CHANNELS];
181 	unsigned long napi_ran = 0, dma_pend = 0, int_pend = 0;
182 	unsigned long timeout, wait;
183 
184 	BUILD_BUG_ON(EF4_MAX_CHANNELS > BITS_PER_LONG);
185 
186 	ef4_for_each_channel(channel, efx) {
187 		read_ptr[channel->channel] = channel->eventq_read_ptr;
188 		set_bit(channel->channel, &dma_pend);
189 		set_bit(channel->channel, &int_pend);
190 		ef4_nic_event_test_start(channel);
191 	}
192 
193 	timeout = jiffies + IRQ_TIMEOUT;
194 	wait = 1;
195 
196 	/* Wait for arrival of interrupts.  NAPI processing may or may
197 	 * not complete in time, but we can cope in any case.
198 	 */
199 	do {
200 		schedule_timeout_uninterruptible(wait);
201 
202 		ef4_for_each_channel(channel, efx) {
203 			ef4_stop_eventq(channel);
204 			if (channel->eventq_read_ptr !=
205 			    read_ptr[channel->channel]) {
206 				set_bit(channel->channel, &napi_ran);
207 				clear_bit(channel->channel, &dma_pend);
208 				clear_bit(channel->channel, &int_pend);
209 			} else {
210 				if (ef4_nic_event_present(channel))
211 					clear_bit(channel->channel, &dma_pend);
212 				if (ef4_nic_event_test_irq_cpu(channel) >= 0)
213 					clear_bit(channel->channel, &int_pend);
214 			}
215 			ef4_start_eventq(channel);
216 		}
217 
218 		wait *= 2;
219 	} while ((dma_pend || int_pend) && time_before(jiffies, timeout));
220 
221 	ef4_for_each_channel(channel, efx) {
222 		bool dma_seen = !test_bit(channel->channel, &dma_pend);
223 		bool int_seen = !test_bit(channel->channel, &int_pend);
224 
225 		tests->eventq_dma[channel->channel] = dma_seen ? 1 : -1;
226 		tests->eventq_int[channel->channel] = int_seen ? 1 : -1;
227 
228 		if (dma_seen && int_seen) {
229 			netif_dbg(efx, drv, efx->net_dev,
230 				  "channel %d event queue passed (with%s NAPI)\n",
231 				  channel->channel,
232 				  test_bit(channel->channel, &napi_ran) ?
233 				  "" : "out");
234 		} else {
235 			/* Report failure and whether either interrupt or DMA
236 			 * worked
237 			 */
238 			netif_err(efx, drv, efx->net_dev,
239 				  "channel %d timed out waiting for event queue\n",
240 				  channel->channel);
241 			if (int_seen)
242 				netif_err(efx, drv, efx->net_dev,
243 					  "channel %d saw interrupt "
244 					  "during event queue test\n",
245 					  channel->channel);
246 			if (dma_seen)
247 				netif_err(efx, drv, efx->net_dev,
248 					  "channel %d event was generated, but "
249 					  "failed to trigger an interrupt\n",
250 					  channel->channel);
251 		}
252 	}
253 
254 	return (dma_pend || int_pend) ? -ETIMEDOUT : 0;
255 }
256 
257 static int ef4_test_phy(struct ef4_nic *efx, struct ef4_self_tests *tests,
258 			unsigned flags)
259 {
260 	int rc;
261 
262 	if (!efx->phy_op->run_tests)
263 		return 0;
264 
265 	mutex_lock(&efx->mac_lock);
266 	rc = efx->phy_op->run_tests(efx, tests->phy_ext, flags);
267 	mutex_unlock(&efx->mac_lock);
268 	if (rc == -EPERM)
269 		rc = 0;
270 	else
271 		netif_info(efx, drv, efx->net_dev,
272 			   "%s phy selftest\n", rc ? "Failed" : "Passed");
273 
274 	return rc;
275 }
276 
277 /**************************************************************************
278  *
279  * Loopback testing
280  * NB Only one loopback test can be executing concurrently.
281  *
282  **************************************************************************/
283 
284 /* Loopback test RX callback
285  * This is called for each received packet during loopback testing.
286  */
287 void ef4_loopback_rx_packet(struct ef4_nic *efx,
288 			    const char *buf_ptr, int pkt_len)
289 {
290 	struct ef4_loopback_state *state = efx->loopback_selftest;
291 	struct ef4_loopback_payload received;
292 	struct ef4_loopback_payload *payload;
293 
294 	BUG_ON(!buf_ptr);
295 
296 	/* If we are just flushing, then drop the packet */
297 	if ((state == NULL) || state->flush)
298 		return;
299 
300 	payload = &state->payload;
301 
302 	memcpy(&received.header, buf_ptr,
303 	       min_t(int, pkt_len, EF4_LOOPBACK_PAYLOAD_LEN));
304 	received.ip.saddr = payload->ip.saddr;
305 	if (state->offload_csum)
306 		received.ip.check = payload->ip.check;
307 
308 	/* Check that header exists */
309 	if (pkt_len < sizeof(received.header)) {
310 		netif_err(efx, drv, efx->net_dev,
311 			  "saw runt RX packet (length %d) in %s loopback "
312 			  "test\n", pkt_len, LOOPBACK_MODE(efx));
313 		goto err;
314 	}
315 
316 	/* Check that the ethernet header exists */
317 	if (memcmp(&received.header, &payload->header, ETH_HLEN) != 0) {
318 		netif_err(efx, drv, efx->net_dev,
319 			  "saw non-loopback RX packet in %s loopback test\n",
320 			  LOOPBACK_MODE(efx));
321 		goto err;
322 	}
323 
324 	/* Check packet length */
325 	if (pkt_len != EF4_LOOPBACK_PAYLOAD_LEN) {
326 		netif_err(efx, drv, efx->net_dev,
327 			  "saw incorrect RX packet length %d (wanted %d) in "
328 			  "%s loopback test\n", pkt_len,
329 			  (int)EF4_LOOPBACK_PAYLOAD_LEN, LOOPBACK_MODE(efx));
330 		goto err;
331 	}
332 
333 	/* Check that IP header matches */
334 	if (memcmp(&received.ip, &payload->ip, sizeof(payload->ip)) != 0) {
335 		netif_err(efx, drv, efx->net_dev,
336 			  "saw corrupted IP header in %s loopback test\n",
337 			  LOOPBACK_MODE(efx));
338 		goto err;
339 	}
340 
341 	/* Check that msg and padding matches */
342 	if (memcmp(&received.msg, &payload->msg, sizeof(received.msg)) != 0) {
343 		netif_err(efx, drv, efx->net_dev,
344 			  "saw corrupted RX packet in %s loopback test\n",
345 			  LOOPBACK_MODE(efx));
346 		goto err;
347 	}
348 
349 	/* Check that iteration matches */
350 	if (received.iteration != payload->iteration) {
351 		netif_err(efx, drv, efx->net_dev,
352 			  "saw RX packet from iteration %d (wanted %d) in "
353 			  "%s loopback test\n", ntohs(received.iteration),
354 			  ntohs(payload->iteration), LOOPBACK_MODE(efx));
355 		goto err;
356 	}
357 
358 	/* Increase correct RX count */
359 	netif_vdbg(efx, drv, efx->net_dev,
360 		   "got loopback RX in %s loopback test\n", LOOPBACK_MODE(efx));
361 
362 	atomic_inc(&state->rx_good);
363 	return;
364 
365  err:
366 #ifdef DEBUG
367 	if (atomic_read(&state->rx_bad) == 0) {
368 		netif_err(efx, drv, efx->net_dev, "received packet:\n");
369 		print_hex_dump(KERN_ERR, "", DUMP_PREFIX_OFFSET, 0x10, 1,
370 			       buf_ptr, pkt_len, 0);
371 		netif_err(efx, drv, efx->net_dev, "expected packet:\n");
372 		print_hex_dump(KERN_ERR, "", DUMP_PREFIX_OFFSET, 0x10, 1,
373 			       &state->payload.header, EF4_LOOPBACK_PAYLOAD_LEN,
374 			       0);
375 	}
376 #endif
377 	atomic_inc(&state->rx_bad);
378 }
379 
380 /* Initialise an ef4_selftest_state for a new iteration */
381 static void ef4_iterate_state(struct ef4_nic *efx)
382 {
383 	struct ef4_loopback_state *state = efx->loopback_selftest;
384 	struct net_device *net_dev = efx->net_dev;
385 	struct ef4_loopback_payload *payload = &state->payload;
386 
387 	/* Initialise the layerII header */
388 	ether_addr_copy((u8 *)&payload->header.h_dest, net_dev->dev_addr);
389 	ether_addr_copy((u8 *)&payload->header.h_source, payload_source);
390 	payload->header.h_proto = htons(ETH_P_IP);
391 
392 	/* saddr set later and used as incrementing count */
393 	payload->ip.daddr = htonl(INADDR_LOOPBACK);
394 	payload->ip.ihl = 5;
395 	payload->ip.check = (__force __sum16) htons(0xdead);
396 	payload->ip.tot_len = htons(sizeof(*payload) -
397 				    offsetof(struct ef4_loopback_payload, ip));
398 	payload->ip.version = IPVERSION;
399 	payload->ip.protocol = IPPROTO_UDP;
400 
401 	/* Initialise udp header */
402 	payload->udp.source = 0;
403 	payload->udp.len = htons(sizeof(*payload) -
404 				 offsetof(struct ef4_loopback_payload, udp));
405 	payload->udp.check = 0;	/* checksum ignored */
406 
407 	/* Fill out payload */
408 	payload->iteration = htons(ntohs(payload->iteration) + 1);
409 	memcpy(&payload->msg, payload_msg, sizeof(payload_msg));
410 
411 	/* Fill out remaining state members */
412 	atomic_set(&state->rx_good, 0);
413 	atomic_set(&state->rx_bad, 0);
414 	smp_wmb();
415 }
416 
417 static int ef4_begin_loopback(struct ef4_tx_queue *tx_queue)
418 {
419 	struct ef4_nic *efx = tx_queue->efx;
420 	struct ef4_loopback_state *state = efx->loopback_selftest;
421 	struct ef4_loopback_payload *payload;
422 	struct sk_buff *skb;
423 	int i;
424 	netdev_tx_t rc;
425 
426 	/* Transmit N copies of buffer */
427 	for (i = 0; i < state->packet_count; i++) {
428 		/* Allocate an skb, holding an extra reference for
429 		 * transmit completion counting */
430 		skb = alloc_skb(EF4_LOOPBACK_PAYLOAD_LEN, GFP_KERNEL);
431 		if (!skb)
432 			return -ENOMEM;
433 		state->skbs[i] = skb;
434 		skb_get(skb);
435 
436 		/* Copy the payload in, incrementing the source address to
437 		 * exercise the rss vectors */
438 		payload = skb_put(skb, sizeof(state->payload));
439 		memcpy(payload, &state->payload, sizeof(state->payload));
440 		payload->ip.saddr = htonl(INADDR_LOOPBACK | (i << 2));
441 		/* Strip off the leading padding */
442 		skb_pull(skb, offsetof(struct ef4_loopback_payload, header));
443 
444 		/* Ensure everything we've written is visible to the
445 		 * interrupt handler. */
446 		smp_wmb();
447 
448 		netif_tx_lock_bh(efx->net_dev);
449 		rc = ef4_enqueue_skb(tx_queue, skb);
450 		netif_tx_unlock_bh(efx->net_dev);
451 
452 		if (rc != NETDEV_TX_OK) {
453 			netif_err(efx, drv, efx->net_dev,
454 				  "TX queue %d could not transmit packet %d of "
455 				  "%d in %s loopback test\n", tx_queue->queue,
456 				  i + 1, state->packet_count,
457 				  LOOPBACK_MODE(efx));
458 
459 			/* Defer cleaning up the other skbs for the caller */
460 			kfree_skb(skb);
461 			return -EPIPE;
462 		}
463 	}
464 
465 	return 0;
466 }
467 
468 static int ef4_poll_loopback(struct ef4_nic *efx)
469 {
470 	struct ef4_loopback_state *state = efx->loopback_selftest;
471 
472 	return atomic_read(&state->rx_good) == state->packet_count;
473 }
474 
475 static int ef4_end_loopback(struct ef4_tx_queue *tx_queue,
476 			    struct ef4_loopback_self_tests *lb_tests)
477 {
478 	struct ef4_nic *efx = tx_queue->efx;
479 	struct ef4_loopback_state *state = efx->loopback_selftest;
480 	struct sk_buff *skb;
481 	int tx_done = 0, rx_good, rx_bad;
482 	int i, rc = 0;
483 
484 	netif_tx_lock_bh(efx->net_dev);
485 
486 	/* Count the number of tx completions, and decrement the refcnt. Any
487 	 * skbs not already completed will be free'd when the queue is flushed */
488 	for (i = 0; i < state->packet_count; i++) {
489 		skb = state->skbs[i];
490 		if (skb && !skb_shared(skb))
491 			++tx_done;
492 		dev_kfree_skb(skb);
493 	}
494 
495 	netif_tx_unlock_bh(efx->net_dev);
496 
497 	/* Check TX completion and received packet counts */
498 	rx_good = atomic_read(&state->rx_good);
499 	rx_bad = atomic_read(&state->rx_bad);
500 	if (tx_done != state->packet_count) {
501 		/* Don't free the skbs; they will be picked up on TX
502 		 * overflow or channel teardown.
503 		 */
504 		netif_err(efx, drv, efx->net_dev,
505 			  "TX queue %d saw only %d out of an expected %d "
506 			  "TX completion events in %s loopback test\n",
507 			  tx_queue->queue, tx_done, state->packet_count,
508 			  LOOPBACK_MODE(efx));
509 		rc = -ETIMEDOUT;
510 		/* Allow to fall through so we see the RX errors as well */
511 	}
512 
513 	/* We may always be up to a flush away from our desired packet total */
514 	if (rx_good != state->packet_count) {
515 		netif_dbg(efx, drv, efx->net_dev,
516 			  "TX queue %d saw only %d out of an expected %d "
517 			  "received packets in %s loopback test\n",
518 			  tx_queue->queue, rx_good, state->packet_count,
519 			  LOOPBACK_MODE(efx));
520 		rc = -ETIMEDOUT;
521 		/* Fall through */
522 	}
523 
524 	/* Update loopback test structure */
525 	lb_tests->tx_sent[tx_queue->queue] += state->packet_count;
526 	lb_tests->tx_done[tx_queue->queue] += tx_done;
527 	lb_tests->rx_good += rx_good;
528 	lb_tests->rx_bad += rx_bad;
529 
530 	return rc;
531 }
532 
533 static int
534 ef4_test_loopback(struct ef4_tx_queue *tx_queue,
535 		  struct ef4_loopback_self_tests *lb_tests)
536 {
537 	struct ef4_nic *efx = tx_queue->efx;
538 	struct ef4_loopback_state *state = efx->loopback_selftest;
539 	int i, begin_rc, end_rc;
540 
541 	for (i = 0; i < 3; i++) {
542 		/* Determine how many packets to send */
543 		state->packet_count = efx->txq_entries / 3;
544 		state->packet_count = min(1 << (i << 2), state->packet_count);
545 		state->skbs = kcalloc(state->packet_count,
546 				      sizeof(state->skbs[0]), GFP_KERNEL);
547 		if (!state->skbs)
548 			return -ENOMEM;
549 		state->flush = false;
550 
551 		netif_dbg(efx, drv, efx->net_dev,
552 			  "TX queue %d testing %s loopback with %d packets\n",
553 			  tx_queue->queue, LOOPBACK_MODE(efx),
554 			  state->packet_count);
555 
556 		ef4_iterate_state(efx);
557 		begin_rc = ef4_begin_loopback(tx_queue);
558 
559 		/* This will normally complete very quickly, but be
560 		 * prepared to wait much longer. */
561 		msleep(1);
562 		if (!ef4_poll_loopback(efx)) {
563 			msleep(LOOPBACK_TIMEOUT_MS);
564 			ef4_poll_loopback(efx);
565 		}
566 
567 		end_rc = ef4_end_loopback(tx_queue, lb_tests);
568 		kfree(state->skbs);
569 
570 		if (begin_rc || end_rc) {
571 			/* Wait a while to ensure there are no packets
572 			 * floating around after a failure. */
573 			schedule_timeout_uninterruptible(HZ / 10);
574 			return begin_rc ? begin_rc : end_rc;
575 		}
576 	}
577 
578 	netif_dbg(efx, drv, efx->net_dev,
579 		  "TX queue %d passed %s loopback test with a burst length "
580 		  "of %d packets\n", tx_queue->queue, LOOPBACK_MODE(efx),
581 		  state->packet_count);
582 
583 	return 0;
584 }
585 
586 /* Wait for link up. On Falcon, we would prefer to rely on ef4_monitor, but
587  * any contention on the mac lock (via e.g. ef4_mac_mcast_work) causes it
588  * to delay and retry. Therefore, it's safer to just poll directly. Wait
589  * for link up and any faults to dissipate. */
590 static int ef4_wait_for_link(struct ef4_nic *efx)
591 {
592 	struct ef4_link_state *link_state = &efx->link_state;
593 	int count, link_up_count = 0;
594 	bool link_up;
595 
596 	for (count = 0; count < 40; count++) {
597 		schedule_timeout_uninterruptible(HZ / 10);
598 
599 		if (efx->type->monitor != NULL) {
600 			mutex_lock(&efx->mac_lock);
601 			efx->type->monitor(efx);
602 			mutex_unlock(&efx->mac_lock);
603 		}
604 
605 		mutex_lock(&efx->mac_lock);
606 		link_up = link_state->up;
607 		if (link_up)
608 			link_up = !efx->type->check_mac_fault(efx);
609 		mutex_unlock(&efx->mac_lock);
610 
611 		if (link_up) {
612 			if (++link_up_count == 2)
613 				return 0;
614 		} else {
615 			link_up_count = 0;
616 		}
617 	}
618 
619 	return -ETIMEDOUT;
620 }
621 
622 static int ef4_test_loopbacks(struct ef4_nic *efx, struct ef4_self_tests *tests,
623 			      unsigned int loopback_modes)
624 {
625 	enum ef4_loopback_mode mode;
626 	struct ef4_loopback_state *state;
627 	struct ef4_channel *channel =
628 		ef4_get_channel(efx, efx->tx_channel_offset);
629 	struct ef4_tx_queue *tx_queue;
630 	int rc = 0;
631 
632 	/* Set the port loopback_selftest member. From this point on
633 	 * all received packets will be dropped. Mark the state as
634 	 * "flushing" so all inflight packets are dropped */
635 	state = kzalloc(sizeof(*state), GFP_KERNEL);
636 	if (state == NULL)
637 		return -ENOMEM;
638 	BUG_ON(efx->loopback_selftest);
639 	state->flush = true;
640 	efx->loopback_selftest = state;
641 
642 	/* Test all supported loopback modes */
643 	for (mode = LOOPBACK_NONE; mode <= LOOPBACK_TEST_MAX; mode++) {
644 		if (!(loopback_modes & (1 << mode)))
645 			continue;
646 
647 		/* Move the port into the specified loopback mode. */
648 		state->flush = true;
649 		mutex_lock(&efx->mac_lock);
650 		efx->loopback_mode = mode;
651 		rc = __ef4_reconfigure_port(efx);
652 		mutex_unlock(&efx->mac_lock);
653 		if (rc) {
654 			netif_err(efx, drv, efx->net_dev,
655 				  "unable to move into %s loopback\n",
656 				  LOOPBACK_MODE(efx));
657 			goto out;
658 		}
659 
660 		rc = ef4_wait_for_link(efx);
661 		if (rc) {
662 			netif_err(efx, drv, efx->net_dev,
663 				  "loopback %s never came up\n",
664 				  LOOPBACK_MODE(efx));
665 			goto out;
666 		}
667 
668 		/* Test all enabled types of TX queue */
669 		ef4_for_each_channel_tx_queue(tx_queue, channel) {
670 			state->offload_csum = (tx_queue->queue &
671 					       EF4_TXQ_TYPE_OFFLOAD);
672 			rc = ef4_test_loopback(tx_queue,
673 					       &tests->loopback[mode]);
674 			if (rc)
675 				goto out;
676 		}
677 	}
678 
679  out:
680 	/* Remove the flush. The caller will remove the loopback setting */
681 	state->flush = true;
682 	efx->loopback_selftest = NULL;
683 	wmb();
684 	kfree(state);
685 
686 	if (rc == -EPERM)
687 		rc = 0;
688 
689 	return rc;
690 }
691 
692 /**************************************************************************
693  *
694  * Entry point
695  *
696  *************************************************************************/
697 
698 int ef4_selftest(struct ef4_nic *efx, struct ef4_self_tests *tests,
699 		 unsigned flags)
700 {
701 	enum ef4_loopback_mode loopback_mode = efx->loopback_mode;
702 	int phy_mode = efx->phy_mode;
703 	int rc_test = 0, rc_reset, rc;
704 
705 	ef4_selftest_async_cancel(efx);
706 
707 	/* Online (i.e. non-disruptive) testing
708 	 * This checks interrupt generation, event delivery and PHY presence. */
709 
710 	rc = ef4_test_phy_alive(efx, tests);
711 	if (rc && !rc_test)
712 		rc_test = rc;
713 
714 	rc = ef4_test_nvram(efx, tests);
715 	if (rc && !rc_test)
716 		rc_test = rc;
717 
718 	rc = ef4_test_interrupts(efx, tests);
719 	if (rc && !rc_test)
720 		rc_test = rc;
721 
722 	rc = ef4_test_eventq_irq(efx, tests);
723 	if (rc && !rc_test)
724 		rc_test = rc;
725 
726 	if (rc_test)
727 		return rc_test;
728 
729 	if (!(flags & ETH_TEST_FL_OFFLINE))
730 		return ef4_test_phy(efx, tests, flags);
731 
732 	/* Offline (i.e. disruptive) testing
733 	 * This checks MAC and PHY loopback on the specified port. */
734 
735 	/* Detach the device so the kernel doesn't transmit during the
736 	 * loopback test and the watchdog timeout doesn't fire.
737 	 */
738 	ef4_device_detach_sync(efx);
739 
740 	if (efx->type->test_chip) {
741 		rc_reset = efx->type->test_chip(efx, tests);
742 		if (rc_reset) {
743 			netif_err(efx, hw, efx->net_dev,
744 				  "Unable to recover from chip test\n");
745 			ef4_schedule_reset(efx, RESET_TYPE_DISABLE);
746 			return rc_reset;
747 		}
748 
749 		if ((tests->memory < 0 || tests->registers < 0) && !rc_test)
750 			rc_test = -EIO;
751 	}
752 
753 	/* Ensure that the phy is powered and out of loopback
754 	 * for the bist and loopback tests */
755 	mutex_lock(&efx->mac_lock);
756 	efx->phy_mode &= ~PHY_MODE_LOW_POWER;
757 	efx->loopback_mode = LOOPBACK_NONE;
758 	__ef4_reconfigure_port(efx);
759 	mutex_unlock(&efx->mac_lock);
760 
761 	rc = ef4_test_phy(efx, tests, flags);
762 	if (rc && !rc_test)
763 		rc_test = rc;
764 
765 	rc = ef4_test_loopbacks(efx, tests, efx->loopback_modes);
766 	if (rc && !rc_test)
767 		rc_test = rc;
768 
769 	/* restore the PHY to the previous state */
770 	mutex_lock(&efx->mac_lock);
771 	efx->phy_mode = phy_mode;
772 	efx->loopback_mode = loopback_mode;
773 	__ef4_reconfigure_port(efx);
774 	mutex_unlock(&efx->mac_lock);
775 
776 	netif_device_attach(efx->net_dev);
777 
778 	return rc_test;
779 }
780 
781 void ef4_selftest_async_start(struct ef4_nic *efx)
782 {
783 	struct ef4_channel *channel;
784 
785 	ef4_for_each_channel(channel, efx)
786 		ef4_nic_event_test_start(channel);
787 	schedule_delayed_work(&efx->selftest_work, IRQ_TIMEOUT);
788 }
789 
790 void ef4_selftest_async_cancel(struct ef4_nic *efx)
791 {
792 	cancel_delayed_work_sync(&efx->selftest_work);
793 }
794 
795 void ef4_selftest_async_work(struct work_struct *data)
796 {
797 	struct ef4_nic *efx = container_of(data, struct ef4_nic,
798 					   selftest_work.work);
799 	struct ef4_channel *channel;
800 	int cpu;
801 
802 	ef4_for_each_channel(channel, efx) {
803 		cpu = ef4_nic_event_test_irq_cpu(channel);
804 		if (cpu < 0)
805 			netif_err(efx, ifup, efx->net_dev,
806 				  "channel %d failed to trigger an interrupt\n",
807 				  channel->channel);
808 		else
809 			netif_dbg(efx, ifup, efx->net_dev,
810 				  "channel %d triggered interrupt on CPU %d\n",
811 				  channel->channel, cpu);
812 	}
813 }
814