blob: 9f3ef387a047deea3ce7c2049d3eff74d4163f9e [file] [log] [blame]
Ben Hutchings8ceee662008-04-27 12:55:59 +01001/****************************************************************************
2 * Driver for Solarflare Solarstorm network controllers and boards
3 * Copyright 2005-2006 Fen Systems Ltd.
4 * Copyright 2005-2008 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
11#include <linux/module.h>
12#include <linux/pci.h>
13#include <linux/netdevice.h>
14#include <linux/etherdevice.h>
15#include <linux/delay.h>
16#include <linux/notifier.h>
17#include <linux/ip.h>
18#include <linux/tcp.h>
19#include <linux/in.h>
20#include <linux/crc32.h>
21#include <linux/ethtool.h>
Ben Hutchingsaa6ef272008-07-18 19:03:10 +010022#include <linux/topology.h>
Ben Hutchings8ceee662008-04-27 12:55:59 +010023#include "net_driver.h"
Ben Hutchings8ceee662008-04-27 12:55:59 +010024#include "efx.h"
25#include "mdio_10g.h"
26#include "falcon.h"
Ben Hutchings8ceee662008-04-27 12:55:59 +010027
Ben Hutchingsc4593022009-11-23 16:08:17 +000028/**************************************************************************
29 *
30 * Type name strings
31 *
32 **************************************************************************
33 */
34
35/* Loopback mode names (see LOOPBACK_MODE()) */
36const unsigned int efx_loopback_mode_max = LOOPBACK_MAX;
37const char *efx_loopback_mode_names[] = {
38 [LOOPBACK_NONE] = "NONE",
39 [LOOPBACK_GMAC] = "GMAC",
40 [LOOPBACK_XGMII] = "XGMII",
41 [LOOPBACK_XGXS] = "XGXS",
42 [LOOPBACK_XAUI] = "XAUI",
43 [LOOPBACK_GPHY] = "GPHY",
44 [LOOPBACK_PHYXS] = "PHYXS",
45 [LOOPBACK_PCS] = "PCS",
46 [LOOPBACK_PMAPMD] = "PMA/PMD",
47 [LOOPBACK_NETWORK] = "NETWORK",
48};
49
50/* Interrupt mode names (see INT_MODE())) */
51const unsigned int efx_interrupt_mode_max = EFX_INT_MODE_MAX;
52const char *efx_interrupt_mode_names[] = {
53 [EFX_INT_MODE_MSIX] = "MSI-X",
54 [EFX_INT_MODE_MSI] = "MSI",
55 [EFX_INT_MODE_LEGACY] = "legacy",
56};
57
58const unsigned int efx_reset_type_max = RESET_TYPE_MAX;
59const char *efx_reset_type_names[] = {
60 [RESET_TYPE_INVISIBLE] = "INVISIBLE",
61 [RESET_TYPE_ALL] = "ALL",
62 [RESET_TYPE_WORLD] = "WORLD",
63 [RESET_TYPE_DISABLE] = "DISABLE",
64 [RESET_TYPE_TX_WATCHDOG] = "TX_WATCHDOG",
65 [RESET_TYPE_INT_ERROR] = "INT_ERROR",
66 [RESET_TYPE_RX_RECOVERY] = "RX_RECOVERY",
67 [RESET_TYPE_RX_DESC_FETCH] = "RX_DESC_FETCH",
68 [RESET_TYPE_TX_DESC_FETCH] = "TX_DESC_FETCH",
69 [RESET_TYPE_TX_SKIP] = "TX_SKIP",
70};
71
Ben Hutchings8ceee662008-04-27 12:55:59 +010072#define EFX_MAX_MTU (9 * 1024)
73
74/* RX slow fill workqueue. If memory allocation fails in the fast path,
75 * a work item is pushed onto this work queue to retry the allocation later,
76 * to avoid the NIC being starved of RX buffers. Since this is a per cpu
77 * workqueue, there is nothing to be gained in making it per NIC
78 */
79static struct workqueue_struct *refill_workqueue;
80
Steve Hodgson1ab00622008-12-12 21:33:02 -080081/* Reset workqueue. If any NIC has a hardware failure then a reset will be
82 * queued onto this work queue. This is not a per-nic work queue, because
83 * efx_reset_work() acquires the rtnl lock, so resets are naturally serialised.
84 */
85static struct workqueue_struct *reset_workqueue;
86
Ben Hutchings8ceee662008-04-27 12:55:59 +010087/**************************************************************************
88 *
89 * Configurable values
90 *
91 *************************************************************************/
92
93/*
Ben Hutchings8ceee662008-04-27 12:55:59 +010094 * Use separate channels for TX and RX events
95 *
Neil Turton28b581a2008-12-12 21:41:06 -080096 * Set this to 1 to use separate channels for TX and RX. It allows us
97 * to control interrupt affinity separately for TX and RX.
Ben Hutchings8ceee662008-04-27 12:55:59 +010098 *
Neil Turton28b581a2008-12-12 21:41:06 -080099 * This is only used in MSI-X interrupt mode
Ben Hutchings8ceee662008-04-27 12:55:59 +0100100 */
Neil Turton28b581a2008-12-12 21:41:06 -0800101static unsigned int separate_tx_channels;
102module_param(separate_tx_channels, uint, 0644);
103MODULE_PARM_DESC(separate_tx_channels,
104 "Use separate channels for TX and RX");
Ben Hutchings8ceee662008-04-27 12:55:59 +0100105
106/* This is the weight assigned to each of the (per-channel) virtual
107 * NAPI devices.
108 */
109static int napi_weight = 64;
110
111/* This is the time (in jiffies) between invocations of the hardware
112 * monitor, which checks for known hardware bugs and resets the
113 * hardware and driver as necessary.
114 */
115unsigned int efx_monitor_interval = 1 * HZ;
116
Ben Hutchings8ceee662008-04-27 12:55:59 +0100117/* This controls whether or not the driver will initialise devices
118 * with invalid MAC addresses stored in the EEPROM or flash. If true,
119 * such devices will be initialised with a random locally-generated
120 * MAC address. This allows for loading the sfc_mtd driver to
121 * reprogram the flash, even if the flash contents (including the MAC
122 * address) have previously been erased.
123 */
124static unsigned int allow_bad_hwaddr;
125
126/* Initial interrupt moderation settings. They can be modified after
127 * module load with ethtool.
128 *
129 * The default for RX should strike a balance between increasing the
130 * round-trip latency and reducing overhead.
131 */
132static unsigned int rx_irq_mod_usec = 60;
133
134/* Initial interrupt moderation settings. They can be modified after
135 * module load with ethtool.
136 *
137 * This default is chosen to ensure that a 10G link does not go idle
138 * while a TX queue is stopped after it has become full. A queue is
139 * restarted when it drops below half full. The time this takes (assuming
140 * worst case 3 descriptors per packet and 1024 descriptors) is
141 * 512 / 3 * 1.2 = 205 usec.
142 */
143static unsigned int tx_irq_mod_usec = 150;
144
145/* This is the first interrupt mode to try out of:
146 * 0 => MSI-X
147 * 1 => MSI
148 * 2 => legacy
149 */
150static unsigned int interrupt_mode;
151
152/* This is the requested number of CPUs to use for Receive-Side Scaling (RSS),
153 * i.e. the number of CPUs among which we may distribute simultaneous
154 * interrupt handling.
155 *
156 * Cards without MSI-X will only target one CPU via legacy or MSI interrupt.
157 * The default (0) means to assign an interrupt to each package (level II cache)
158 */
159static unsigned int rss_cpus;
160module_param(rss_cpus, uint, 0444);
161MODULE_PARM_DESC(rss_cpus, "Number of CPUs to use for Receive-Side Scaling");
162
Ben Hutchings84ae48f2008-12-12 21:34:54 -0800163static int phy_flash_cfg;
164module_param(phy_flash_cfg, int, 0644);
165MODULE_PARM_DESC(phy_flash_cfg, "Set PHYs into reflash mode initially");
166
Ben Hutchings6fb70fd2009-03-20 13:30:37 +0000167static unsigned irq_adapt_low_thresh = 10000;
168module_param(irq_adapt_low_thresh, uint, 0644);
169MODULE_PARM_DESC(irq_adapt_low_thresh,
170 "Threshold score for reducing IRQ moderation");
171
172static unsigned irq_adapt_high_thresh = 20000;
173module_param(irq_adapt_high_thresh, uint, 0644);
174MODULE_PARM_DESC(irq_adapt_high_thresh,
175 "Threshold score for increasing IRQ moderation");
176
Ben Hutchings8ceee662008-04-27 12:55:59 +0100177/**************************************************************************
178 *
179 * Utility functions and prototypes
180 *
181 *************************************************************************/
182static void efx_remove_channel(struct efx_channel *channel);
183static void efx_remove_port(struct efx_nic *efx);
184static void efx_fini_napi(struct efx_nic *efx);
185static void efx_fini_channels(struct efx_nic *efx);
186
187#define EFX_ASSERT_RESET_SERIALISED(efx) \
188 do { \
Ben Hutchings332c1ce2009-11-25 16:08:52 +0000189 if ((efx->state == STATE_RUNNING) || \
190 (efx->state == STATE_DISABLED)) \
Ben Hutchings8ceee662008-04-27 12:55:59 +0100191 ASSERT_RTNL(); \
192 } while (0)
193
194/**************************************************************************
195 *
196 * Event queue processing
197 *
198 *************************************************************************/
199
200/* Process channel's event queue
201 *
202 * This function is responsible for processing the event queue of a
203 * single channel. The caller must guarantee that this function will
204 * never be concurrently called more than once on the same channel,
205 * though different channels may be being processed concurrently.
206 */
Ben Hutchings4d566062008-09-01 12:47:12 +0100207static int efx_process_channel(struct efx_channel *channel, int rx_quota)
Ben Hutchings8ceee662008-04-27 12:55:59 +0100208{
Ben Hutchings42cbe2d2008-09-01 12:48:08 +0100209 struct efx_nic *efx = channel->efx;
210 int rx_packets;
Ben Hutchings8ceee662008-04-27 12:55:59 +0100211
Ben Hutchings42cbe2d2008-09-01 12:48:08 +0100212 if (unlikely(efx->reset_pending != RESET_TYPE_NONE ||
Ben Hutchings8ceee662008-04-27 12:55:59 +0100213 !channel->enabled))
Ben Hutchings42cbe2d2008-09-01 12:48:08 +0100214 return 0;
Ben Hutchings8ceee662008-04-27 12:55:59 +0100215
Ben Hutchings42cbe2d2008-09-01 12:48:08 +0100216 rx_packets = falcon_process_eventq(channel, rx_quota);
217 if (rx_packets == 0)
218 return 0;
Ben Hutchings8ceee662008-04-27 12:55:59 +0100219
220 /* Deliver last RX packet. */
221 if (channel->rx_pkt) {
222 __efx_rx_packet(channel, channel->rx_pkt,
223 channel->rx_pkt_csummed);
224 channel->rx_pkt = NULL;
225 }
226
Ben Hutchings8ceee662008-04-27 12:55:59 +0100227 efx_rx_strategy(channel);
228
Ben Hutchings42cbe2d2008-09-01 12:48:08 +0100229 efx_fast_push_rx_descriptors(&efx->rx_queue[channel->channel]);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100230
Ben Hutchings42cbe2d2008-09-01 12:48:08 +0100231 return rx_packets;
Ben Hutchings8ceee662008-04-27 12:55:59 +0100232}
233
234/* Mark channel as finished processing
235 *
236 * Note that since we will not receive further interrupts for this
237 * channel before we finish processing and call the eventq_read_ack()
238 * method, there is no need to use the interrupt hold-off timers.
239 */
240static inline void efx_channel_processed(struct efx_channel *channel)
241{
Ben Hutchings5b9e2072008-05-16 21:18:14 +0100242 /* The interrupt handler for this channel may set work_pending
243 * as soon as we acknowledge the events we've seen. Make sure
244 * it's cleared before then. */
Ben Hutchingsdc8cfa52008-09-01 12:46:50 +0100245 channel->work_pending = false;
Ben Hutchings5b9e2072008-05-16 21:18:14 +0100246 smp_wmb();
247
Ben Hutchings8ceee662008-04-27 12:55:59 +0100248 falcon_eventq_read_ack(channel);
249}
250
251/* NAPI poll handler
252 *
253 * NAPI guarantees serialisation of polls of the same device, which
254 * provides the guarantee required by efx_process_channel().
255 */
256static int efx_poll(struct napi_struct *napi, int budget)
257{
258 struct efx_channel *channel =
259 container_of(napi, struct efx_channel, napi_str);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100260 int rx_packets;
261
262 EFX_TRACE(channel->efx, "channel %d NAPI poll executing on CPU %d\n",
263 channel->channel, raw_smp_processor_id());
264
Ben Hutchings42cbe2d2008-09-01 12:48:08 +0100265 rx_packets = efx_process_channel(channel, budget);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100266
267 if (rx_packets < budget) {
Ben Hutchings6fb70fd2009-03-20 13:30:37 +0000268 struct efx_nic *efx = channel->efx;
269
270 if (channel->used_flags & EFX_USED_BY_RX &&
271 efx->irq_rx_adaptive &&
272 unlikely(++channel->irq_count == 1000)) {
Ben Hutchings6fb70fd2009-03-20 13:30:37 +0000273 if (unlikely(channel->irq_mod_score <
274 irq_adapt_low_thresh)) {
Ben Hutchings0d86ebd2009-10-23 08:32:13 +0000275 if (channel->irq_moderation > 1) {
276 channel->irq_moderation -= 1;
277 falcon_set_int_moderation(channel);
278 }
Ben Hutchings6fb70fd2009-03-20 13:30:37 +0000279 } else if (unlikely(channel->irq_mod_score >
280 irq_adapt_high_thresh)) {
Ben Hutchings0d86ebd2009-10-23 08:32:13 +0000281 if (channel->irq_moderation <
282 efx->irq_rx_moderation) {
283 channel->irq_moderation += 1;
284 falcon_set_int_moderation(channel);
285 }
Ben Hutchings6fb70fd2009-03-20 13:30:37 +0000286 }
Ben Hutchings6fb70fd2009-03-20 13:30:37 +0000287 channel->irq_count = 0;
288 channel->irq_mod_score = 0;
289 }
290
Ben Hutchings8ceee662008-04-27 12:55:59 +0100291 /* There is no race here; although napi_disable() will
Ben Hutchings288379f2009-01-19 16:43:59 -0800292 * only wait for napi_complete(), this isn't a problem
Ben Hutchings8ceee662008-04-27 12:55:59 +0100293 * since efx_channel_processed() will have no effect if
294 * interrupts have already been disabled.
295 */
Ben Hutchings288379f2009-01-19 16:43:59 -0800296 napi_complete(napi);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100297 efx_channel_processed(channel);
298 }
299
300 return rx_packets;
301}
302
303/* Process the eventq of the specified channel immediately on this CPU
304 *
305 * Disable hardware generated interrupts, wait for any existing
306 * processing to finish, then directly poll (and ack ) the eventq.
307 * Finally reenable NAPI and interrupts.
308 *
309 * Since we are touching interrupts the caller should hold the suspend lock
310 */
311void efx_process_channel_now(struct efx_channel *channel)
312{
313 struct efx_nic *efx = channel->efx;
314
315 BUG_ON(!channel->used_flags);
316 BUG_ON(!channel->enabled);
317
318 /* Disable interrupts and wait for ISRs to complete */
319 falcon_disable_interrupts(efx);
320 if (efx->legacy_irq)
321 synchronize_irq(efx->legacy_irq);
Ben Hutchings64ee3122008-09-01 12:47:38 +0100322 if (channel->irq)
Ben Hutchings8ceee662008-04-27 12:55:59 +0100323 synchronize_irq(channel->irq);
324
325 /* Wait for any NAPI processing to complete */
326 napi_disable(&channel->napi_str);
327
328 /* Poll the channel */
Ben Hutchings3ffeabd2009-10-23 08:30:58 +0000329 efx_process_channel(channel, EFX_EVQ_SIZE);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100330
331 /* Ack the eventq. This may cause an interrupt to be generated
332 * when they are reenabled */
333 efx_channel_processed(channel);
334
335 napi_enable(&channel->napi_str);
336 falcon_enable_interrupts(efx);
337}
338
339/* Create event queue
340 * Event queue memory allocations are done only once. If the channel
341 * is reset, the memory buffer will be reused; this guards against
342 * errors during channel reset and also simplifies interrupt handling.
343 */
344static int efx_probe_eventq(struct efx_channel *channel)
345{
346 EFX_LOG(channel->efx, "chan %d create event queue\n", channel->channel);
347
348 return falcon_probe_eventq(channel);
349}
350
351/* Prepare channel's event queue */
Ben Hutchingsbc3c90a2008-09-01 12:48:46 +0100352static void efx_init_eventq(struct efx_channel *channel)
Ben Hutchings8ceee662008-04-27 12:55:59 +0100353{
354 EFX_LOG(channel->efx, "chan %d init event queue\n", channel->channel);
355
356 channel->eventq_read_ptr = 0;
357
Ben Hutchingsbc3c90a2008-09-01 12:48:46 +0100358 falcon_init_eventq(channel);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100359}
360
361static void efx_fini_eventq(struct efx_channel *channel)
362{
363 EFX_LOG(channel->efx, "chan %d fini event queue\n", channel->channel);
364
365 falcon_fini_eventq(channel);
366}
367
368static void efx_remove_eventq(struct efx_channel *channel)
369{
370 EFX_LOG(channel->efx, "chan %d remove event queue\n", channel->channel);
371
372 falcon_remove_eventq(channel);
373}
374
375/**************************************************************************
376 *
377 * Channel handling
378 *
379 *************************************************************************/
380
Ben Hutchings8ceee662008-04-27 12:55:59 +0100381static int efx_probe_channel(struct efx_channel *channel)
382{
383 struct efx_tx_queue *tx_queue;
384 struct efx_rx_queue *rx_queue;
385 int rc;
386
387 EFX_LOG(channel->efx, "creating channel %d\n", channel->channel);
388
389 rc = efx_probe_eventq(channel);
390 if (rc)
391 goto fail1;
392
393 efx_for_each_channel_tx_queue(tx_queue, channel) {
394 rc = efx_probe_tx_queue(tx_queue);
395 if (rc)
396 goto fail2;
397 }
398
399 efx_for_each_channel_rx_queue(rx_queue, channel) {
400 rc = efx_probe_rx_queue(rx_queue);
401 if (rc)
402 goto fail3;
403 }
404
405 channel->n_rx_frm_trunc = 0;
406
407 return 0;
408
409 fail3:
410 efx_for_each_channel_rx_queue(rx_queue, channel)
411 efx_remove_rx_queue(rx_queue);
412 fail2:
413 efx_for_each_channel_tx_queue(tx_queue, channel)
414 efx_remove_tx_queue(tx_queue);
415 fail1:
416 return rc;
417}
418
419
Ben Hutchings56536e92008-12-12 21:37:02 -0800420static void efx_set_channel_names(struct efx_nic *efx)
421{
422 struct efx_channel *channel;
423 const char *type = "";
424 int number;
425
426 efx_for_each_channel(channel, efx) {
427 number = channel->channel;
428 if (efx->n_channels > efx->n_rx_queues) {
429 if (channel->channel < efx->n_rx_queues) {
430 type = "-rx";
431 } else {
432 type = "-tx";
433 number -= efx->n_rx_queues;
434 }
435 }
436 snprintf(channel->name, sizeof(channel->name),
437 "%s%s-%d", efx->name, type, number);
438 }
439}
440
Ben Hutchings8ceee662008-04-27 12:55:59 +0100441/* Channels are shutdown and reinitialised whilst the NIC is running
442 * to propagate configuration changes (mtu, checksum offload), or
443 * to clear hardware error conditions
444 */
Ben Hutchingsbc3c90a2008-09-01 12:48:46 +0100445static void efx_init_channels(struct efx_nic *efx)
Ben Hutchings8ceee662008-04-27 12:55:59 +0100446{
447 struct efx_tx_queue *tx_queue;
448 struct efx_rx_queue *rx_queue;
449 struct efx_channel *channel;
Ben Hutchings8ceee662008-04-27 12:55:59 +0100450
Ben Hutchingsf7f13b02008-05-16 21:15:06 +0100451 /* Calculate the rx buffer allocation parameters required to
452 * support the current MTU, including padding for header
453 * alignment and overruns.
454 */
455 efx->rx_buffer_len = (max(EFX_PAGE_IP_ALIGN, NET_IP_ALIGN) +
456 EFX_MAX_FRAME_LEN(efx->net_dev->mtu) +
457 efx->type->rx_buffer_padding);
458 efx->rx_buffer_order = get_order(efx->rx_buffer_len);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100459
460 /* Initialise the channels */
461 efx_for_each_channel(channel, efx) {
462 EFX_LOG(channel->efx, "init chan %d\n", channel->channel);
463
Ben Hutchingsbc3c90a2008-09-01 12:48:46 +0100464 efx_init_eventq(channel);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100465
Ben Hutchingsbc3c90a2008-09-01 12:48:46 +0100466 efx_for_each_channel_tx_queue(tx_queue, channel)
467 efx_init_tx_queue(tx_queue);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100468
469 /* The rx buffer allocation strategy is MTU dependent */
470 efx_rx_strategy(channel);
471
Ben Hutchingsbc3c90a2008-09-01 12:48:46 +0100472 efx_for_each_channel_rx_queue(rx_queue, channel)
473 efx_init_rx_queue(rx_queue);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100474
475 WARN_ON(channel->rx_pkt != NULL);
476 efx_rx_strategy(channel);
477 }
Ben Hutchings8ceee662008-04-27 12:55:59 +0100478}
479
480/* This enables event queue processing and packet transmission.
481 *
482 * Note that this function is not allowed to fail, since that would
483 * introduce too much complexity into the suspend/resume path.
484 */
485static void efx_start_channel(struct efx_channel *channel)
486{
487 struct efx_rx_queue *rx_queue;
488
489 EFX_LOG(channel->efx, "starting chan %d\n", channel->channel);
490
Ben Hutchings5b9e2072008-05-16 21:18:14 +0100491 /* The interrupt handler for this channel may set work_pending
492 * as soon as we enable it. Make sure it's cleared before
493 * then. Similarly, make sure it sees the enabled flag set. */
Ben Hutchingsdc8cfa52008-09-01 12:46:50 +0100494 channel->work_pending = false;
495 channel->enabled = true;
Ben Hutchings5b9e2072008-05-16 21:18:14 +0100496 smp_wmb();
Ben Hutchings8ceee662008-04-27 12:55:59 +0100497
498 napi_enable(&channel->napi_str);
499
500 /* Load up RX descriptors */
501 efx_for_each_channel_rx_queue(rx_queue, channel)
502 efx_fast_push_rx_descriptors(rx_queue);
503}
504
505/* This disables event queue processing and packet transmission.
506 * This function does not guarantee that all queue processing
507 * (e.g. RX refill) is complete.
508 */
509static void efx_stop_channel(struct efx_channel *channel)
510{
511 struct efx_rx_queue *rx_queue;
512
513 if (!channel->enabled)
514 return;
515
516 EFX_LOG(channel->efx, "stop chan %d\n", channel->channel);
517
Ben Hutchingsdc8cfa52008-09-01 12:46:50 +0100518 channel->enabled = false;
Ben Hutchings8ceee662008-04-27 12:55:59 +0100519 napi_disable(&channel->napi_str);
520
521 /* Ensure that any worker threads have exited or will be no-ops */
522 efx_for_each_channel_rx_queue(rx_queue, channel) {
523 spin_lock_bh(&rx_queue->add_lock);
524 spin_unlock_bh(&rx_queue->add_lock);
525 }
526}
527
528static void efx_fini_channels(struct efx_nic *efx)
529{
530 struct efx_channel *channel;
531 struct efx_tx_queue *tx_queue;
532 struct efx_rx_queue *rx_queue;
Ben Hutchings6bc5d3a2008-09-01 12:49:37 +0100533 int rc;
Ben Hutchings8ceee662008-04-27 12:55:59 +0100534
535 EFX_ASSERT_RESET_SERIALISED(efx);
536 BUG_ON(efx->port_enabled);
537
Ben Hutchings6bc5d3a2008-09-01 12:49:37 +0100538 rc = falcon_flush_queues(efx);
539 if (rc)
540 EFX_ERR(efx, "failed to flush queues\n");
541 else
542 EFX_LOG(efx, "successfully flushed all queues\n");
543
Ben Hutchings8ceee662008-04-27 12:55:59 +0100544 efx_for_each_channel(channel, efx) {
545 EFX_LOG(channel->efx, "shut down chan %d\n", channel->channel);
546
547 efx_for_each_channel_rx_queue(rx_queue, channel)
548 efx_fini_rx_queue(rx_queue);
549 efx_for_each_channel_tx_queue(tx_queue, channel)
550 efx_fini_tx_queue(tx_queue);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100551 efx_fini_eventq(channel);
552 }
553}
554
555static void efx_remove_channel(struct efx_channel *channel)
556{
557 struct efx_tx_queue *tx_queue;
558 struct efx_rx_queue *rx_queue;
559
560 EFX_LOG(channel->efx, "destroy chan %d\n", channel->channel);
561
562 efx_for_each_channel_rx_queue(rx_queue, channel)
563 efx_remove_rx_queue(rx_queue);
564 efx_for_each_channel_tx_queue(tx_queue, channel)
565 efx_remove_tx_queue(tx_queue);
566 efx_remove_eventq(channel);
567
568 channel->used_flags = 0;
569}
570
571void efx_schedule_slow_fill(struct efx_rx_queue *rx_queue, int delay)
572{
573 queue_delayed_work(refill_workqueue, &rx_queue->work, delay);
574}
575
576/**************************************************************************
577 *
578 * Port handling
579 *
580 **************************************************************************/
581
582/* This ensures that the kernel is kept informed (via
583 * netif_carrier_on/off) of the link status, and also maintains the
584 * link status's stop on the port's TX queue.
585 */
586static void efx_link_status_changed(struct efx_nic *efx)
587{
Ben Hutchingseb50c0d2009-11-23 16:06:30 +0000588 struct efx_link_state *link_state = &efx->link_state;
589
Ben Hutchings8ceee662008-04-27 12:55:59 +0100590 /* SFC Bug 5356: A net_dev notifier is registered, so we must ensure
591 * that no events are triggered between unregister_netdev() and the
592 * driver unloading. A more general condition is that NETDEV_CHANGE
593 * can only be generated between NETDEV_UP and NETDEV_DOWN */
594 if (!netif_running(efx->net_dev))
595 return;
596
Ben Hutchings8c8661e2008-09-01 12:49:02 +0100597 if (efx->port_inhibited) {
598 netif_carrier_off(efx->net_dev);
599 return;
600 }
601
Ben Hutchingseb50c0d2009-11-23 16:06:30 +0000602 if (link_state->up != netif_carrier_ok(efx->net_dev)) {
Ben Hutchings8ceee662008-04-27 12:55:59 +0100603 efx->n_link_state_changes++;
604
Ben Hutchingseb50c0d2009-11-23 16:06:30 +0000605 if (link_state->up)
Ben Hutchings8ceee662008-04-27 12:55:59 +0100606 netif_carrier_on(efx->net_dev);
607 else
608 netif_carrier_off(efx->net_dev);
609 }
610
611 /* Status message for kernel log */
Ben Hutchingseb50c0d2009-11-23 16:06:30 +0000612 if (link_state->up) {
Ben Hutchingsf31a45d2008-12-12 21:43:33 -0800613 EFX_INFO(efx, "link up at %uMbps %s-duplex (MTU %d)%s\n",
Ben Hutchingseb50c0d2009-11-23 16:06:30 +0000614 link_state->speed, link_state->fd ? "full" : "half",
Ben Hutchings8ceee662008-04-27 12:55:59 +0100615 efx->net_dev->mtu,
616 (efx->promiscuous ? " [PROMISC]" : ""));
617 } else {
618 EFX_INFO(efx, "link down\n");
619 }
620
621}
622
Ben Hutchings115122a2009-03-04 09:52:52 +0000623static void efx_fini_port(struct efx_nic *efx);
624
Ben Hutchings8ceee662008-04-27 12:55:59 +0100625/* This call reinitialises the MAC to pick up new PHY settings. The
626 * caller must hold the mac_lock */
Ben Hutchings8c8661e2008-09-01 12:49:02 +0100627void __efx_reconfigure_port(struct efx_nic *efx)
Ben Hutchings8ceee662008-04-27 12:55:59 +0100628{
629 WARN_ON(!mutex_is_locked(&efx->mac_lock));
630
631 EFX_LOG(efx, "reconfiguring MAC from PHY settings on CPU %d\n",
632 raw_smp_processor_id());
633
Ben Hutchingsa816f752008-09-01 12:49:12 +0100634 /* Serialise the promiscuous flag with efx_set_multicast_list. */
635 if (efx_dev_registered(efx)) {
636 netif_addr_lock_bh(efx->net_dev);
637 netif_addr_unlock_bh(efx->net_dev);
638 }
639
Ben Hutchings177dfcd2008-12-12 21:50:08 -0800640 falcon_deconfigure_mac_wrapper(efx);
641
642 /* Reconfigure the PHY, disabling transmit in mac level loopback. */
643 if (LOOPBACK_INTERNAL(efx))
644 efx->phy_mode |= PHY_MODE_TX_DISABLED;
645 else
646 efx->phy_mode &= ~PHY_MODE_TX_DISABLED;
647 efx->phy_op->reconfigure(efx);
648
649 if (falcon_switch_mac(efx))
650 goto fail;
651
652 efx->mac_op->reconfigure(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100653
654 /* Inform kernel of loss/gain of carrier */
655 efx_link_status_changed(efx);
Ben Hutchings177dfcd2008-12-12 21:50:08 -0800656 return;
657
658fail:
659 EFX_ERR(efx, "failed to reconfigure MAC\n");
Ben Hutchings115122a2009-03-04 09:52:52 +0000660 efx->port_enabled = false;
661 efx_fini_port(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100662}
663
664/* Reinitialise the MAC to pick up new PHY settings, even if the port is
665 * disabled. */
666void efx_reconfigure_port(struct efx_nic *efx)
667{
668 EFX_ASSERT_RESET_SERIALISED(efx);
669
670 mutex_lock(&efx->mac_lock);
671 __efx_reconfigure_port(efx);
672 mutex_unlock(&efx->mac_lock);
673}
674
675/* Asynchronous efx_reconfigure_port work item. To speed up efx_flush_all()
676 * we don't efx_reconfigure_port() if the port is disabled. Care is taken
677 * in efx_stop_all() and efx_start_port() to prevent PHY events being lost */
Ben Hutchings766ca0f2008-12-12 21:59:24 -0800678static void efx_phy_work(struct work_struct *data)
Ben Hutchings8ceee662008-04-27 12:55:59 +0100679{
Ben Hutchings766ca0f2008-12-12 21:59:24 -0800680 struct efx_nic *efx = container_of(data, struct efx_nic, phy_work);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100681
682 mutex_lock(&efx->mac_lock);
683 if (efx->port_enabled)
684 __efx_reconfigure_port(efx);
685 mutex_unlock(&efx->mac_lock);
686}
687
Ben Hutchings766ca0f2008-12-12 21:59:24 -0800688static void efx_mac_work(struct work_struct *data)
689{
690 struct efx_nic *efx = container_of(data, struct efx_nic, mac_work);
691
692 mutex_lock(&efx->mac_lock);
693 if (efx->port_enabled)
694 efx->mac_op->irq(efx);
695 mutex_unlock(&efx->mac_lock);
696}
697
Ben Hutchings8ceee662008-04-27 12:55:59 +0100698static int efx_probe_port(struct efx_nic *efx)
699{
700 int rc;
701
702 EFX_LOG(efx, "create port\n");
703
704 /* Connect up MAC/PHY operations table and read MAC address */
705 rc = falcon_probe_port(efx);
706 if (rc)
707 goto err;
708
Ben Hutchings84ae48f2008-12-12 21:34:54 -0800709 if (phy_flash_cfg)
710 efx->phy_mode = PHY_MODE_SPECIAL;
711
Ben Hutchings8ceee662008-04-27 12:55:59 +0100712 /* Sanity check MAC address */
713 if (is_valid_ether_addr(efx->mac_address)) {
714 memcpy(efx->net_dev->dev_addr, efx->mac_address, ETH_ALEN);
715 } else {
Johannes Berge1749612008-10-27 15:59:26 -0700716 EFX_ERR(efx, "invalid MAC address %pM\n",
717 efx->mac_address);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100718 if (!allow_bad_hwaddr) {
719 rc = -EINVAL;
720 goto err;
721 }
722 random_ether_addr(efx->net_dev->dev_addr);
Johannes Berge1749612008-10-27 15:59:26 -0700723 EFX_INFO(efx, "using locally-generated MAC %pM\n",
724 efx->net_dev->dev_addr);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100725 }
726
727 return 0;
728
729 err:
730 efx_remove_port(efx);
731 return rc;
732}
733
734static int efx_init_port(struct efx_nic *efx)
735{
736 int rc;
737
738 EFX_LOG(efx, "init port\n");
739
Ben Hutchings177dfcd2008-12-12 21:50:08 -0800740 rc = efx->phy_op->init(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100741 if (rc)
742 return rc;
Ben Hutchings177dfcd2008-12-12 21:50:08 -0800743 mutex_lock(&efx->mac_lock);
Steve Hodgson4b988282009-01-29 17:50:51 +0000744 efx->phy_op->reconfigure(efx);
Ben Hutchings177dfcd2008-12-12 21:50:08 -0800745 rc = falcon_switch_mac(efx);
746 mutex_unlock(&efx->mac_lock);
747 if (rc)
748 goto fail;
749 efx->mac_op->reconfigure(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100750
Ben Hutchingsdc8cfa52008-09-01 12:46:50 +0100751 efx->port_initialized = true;
Ben Hutchings1974cc22009-01-29 18:00:07 +0000752 efx_stats_enable(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100753 return 0;
Ben Hutchings177dfcd2008-12-12 21:50:08 -0800754
755fail:
756 efx->phy_op->fini(efx);
757 return rc;
Ben Hutchings8ceee662008-04-27 12:55:59 +0100758}
759
760/* Allow efx_reconfigure_port() to be scheduled, and close the window
761 * between efx_stop_port and efx_flush_all whereby a previously scheduled
Ben Hutchings766ca0f2008-12-12 21:59:24 -0800762 * efx_phy_work()/efx_mac_work() may have been cancelled */
Ben Hutchings8ceee662008-04-27 12:55:59 +0100763static void efx_start_port(struct efx_nic *efx)
764{
765 EFX_LOG(efx, "start port\n");
766 BUG_ON(efx->port_enabled);
767
768 mutex_lock(&efx->mac_lock);
Ben Hutchingsdc8cfa52008-09-01 12:46:50 +0100769 efx->port_enabled = true;
Ben Hutchings8ceee662008-04-27 12:55:59 +0100770 __efx_reconfigure_port(efx);
Ben Hutchings766ca0f2008-12-12 21:59:24 -0800771 efx->mac_op->irq(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100772 mutex_unlock(&efx->mac_lock);
773}
774
Ben Hutchings766ca0f2008-12-12 21:59:24 -0800775/* Prevent efx_phy_work, efx_mac_work, and efx_monitor() from executing,
776 * and efx_set_multicast_list() from scheduling efx_phy_work. efx_phy_work
777 * and efx_mac_work may still be scheduled via NAPI processing until
778 * efx_flush_all() is called */
Ben Hutchings8ceee662008-04-27 12:55:59 +0100779static void efx_stop_port(struct efx_nic *efx)
780{
781 EFX_LOG(efx, "stop port\n");
782
783 mutex_lock(&efx->mac_lock);
Ben Hutchingsdc8cfa52008-09-01 12:46:50 +0100784 efx->port_enabled = false;
Ben Hutchings8ceee662008-04-27 12:55:59 +0100785 mutex_unlock(&efx->mac_lock);
786
787 /* Serialise against efx_set_multicast_list() */
Ben Hutchings55668612008-05-16 21:16:10 +0100788 if (efx_dev_registered(efx)) {
David S. Millerb9e40852008-07-15 00:15:08 -0700789 netif_addr_lock_bh(efx->net_dev);
790 netif_addr_unlock_bh(efx->net_dev);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100791 }
792}
793
794static void efx_fini_port(struct efx_nic *efx)
795{
796 EFX_LOG(efx, "shut down port\n");
797
798 if (!efx->port_initialized)
799 return;
800
Ben Hutchings1974cc22009-01-29 18:00:07 +0000801 efx_stats_disable(efx);
Ben Hutchings177dfcd2008-12-12 21:50:08 -0800802 efx->phy_op->fini(efx);
Ben Hutchingsdc8cfa52008-09-01 12:46:50 +0100803 efx->port_initialized = false;
Ben Hutchings8ceee662008-04-27 12:55:59 +0100804
Ben Hutchingseb50c0d2009-11-23 16:06:30 +0000805 efx->link_state.up = false;
Ben Hutchings8ceee662008-04-27 12:55:59 +0100806 efx_link_status_changed(efx);
807}
808
809static void efx_remove_port(struct efx_nic *efx)
810{
811 EFX_LOG(efx, "destroying port\n");
812
813 falcon_remove_port(efx);
814}
815
816/**************************************************************************
817 *
818 * NIC handling
819 *
820 **************************************************************************/
821
822/* This configures the PCI device to enable I/O and DMA. */
823static int efx_init_io(struct efx_nic *efx)
824{
825 struct pci_dev *pci_dev = efx->pci_dev;
826 dma_addr_t dma_mask = efx->type->max_dma_mask;
827 int rc;
828
829 EFX_LOG(efx, "initialising I/O\n");
830
831 rc = pci_enable_device(pci_dev);
832 if (rc) {
833 EFX_ERR(efx, "failed to enable PCI device\n");
834 goto fail1;
835 }
836
837 pci_set_master(pci_dev);
838
839 /* Set the PCI DMA mask. Try all possibilities from our
840 * genuine mask down to 32 bits, because some architectures
841 * (e.g. x86_64 with iommu_sac_force set) will allow 40 bit
842 * masks event though they reject 46 bit masks.
843 */
844 while (dma_mask > 0x7fffffffUL) {
845 if (pci_dma_supported(pci_dev, dma_mask) &&
846 ((rc = pci_set_dma_mask(pci_dev, dma_mask)) == 0))
847 break;
848 dma_mask >>= 1;
849 }
850 if (rc) {
851 EFX_ERR(efx, "could not find a suitable DMA mask\n");
852 goto fail2;
853 }
854 EFX_LOG(efx, "using DMA mask %llx\n", (unsigned long long) dma_mask);
855 rc = pci_set_consistent_dma_mask(pci_dev, dma_mask);
856 if (rc) {
857 /* pci_set_consistent_dma_mask() is not *allowed* to
858 * fail with a mask that pci_set_dma_mask() accepted,
859 * but just in case...
860 */
861 EFX_ERR(efx, "failed to set consistent DMA mask\n");
862 goto fail2;
863 }
864
Ben Hutchingsdc803df2009-10-23 08:32:33 +0000865 efx->membase_phys = pci_resource_start(efx->pci_dev, EFX_MEM_BAR);
866 rc = pci_request_region(pci_dev, EFX_MEM_BAR, "sfc");
Ben Hutchings8ceee662008-04-27 12:55:59 +0100867 if (rc) {
868 EFX_ERR(efx, "request for memory BAR failed\n");
869 rc = -EIO;
870 goto fail3;
871 }
872 efx->membase = ioremap_nocache(efx->membase_phys,
873 efx->type->mem_map_size);
874 if (!efx->membase) {
Ben Hutchingsdc803df2009-10-23 08:32:33 +0000875 EFX_ERR(efx, "could not map memory BAR at %llx+%x\n",
Ben Hutchings086ea352008-05-16 21:17:06 +0100876 (unsigned long long)efx->membase_phys,
Ben Hutchings8ceee662008-04-27 12:55:59 +0100877 efx->type->mem_map_size);
878 rc = -ENOMEM;
879 goto fail4;
880 }
Ben Hutchingsdc803df2009-10-23 08:32:33 +0000881 EFX_LOG(efx, "memory BAR at %llx+%x (virtual %p)\n",
882 (unsigned long long)efx->membase_phys,
Ben Hutchings086ea352008-05-16 21:17:06 +0100883 efx->type->mem_map_size, efx->membase);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100884
885 return 0;
886
887 fail4:
Ben Hutchingsdc803df2009-10-23 08:32:33 +0000888 pci_release_region(efx->pci_dev, EFX_MEM_BAR);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100889 fail3:
Ben Hutchings2c118e02008-05-16 21:15:29 +0100890 efx->membase_phys = 0;
Ben Hutchings8ceee662008-04-27 12:55:59 +0100891 fail2:
892 pci_disable_device(efx->pci_dev);
893 fail1:
894 return rc;
895}
896
897static void efx_fini_io(struct efx_nic *efx)
898{
899 EFX_LOG(efx, "shutting down I/O\n");
900
901 if (efx->membase) {
902 iounmap(efx->membase);
903 efx->membase = NULL;
904 }
905
906 if (efx->membase_phys) {
Ben Hutchingsdc803df2009-10-23 08:32:33 +0000907 pci_release_region(efx->pci_dev, EFX_MEM_BAR);
Ben Hutchings2c118e02008-05-16 21:15:29 +0100908 efx->membase_phys = 0;
Ben Hutchings8ceee662008-04-27 12:55:59 +0100909 }
910
911 pci_disable_device(efx->pci_dev);
912}
913
Ben Hutchings46123d02008-09-01 12:47:33 +0100914/* Get number of RX queues wanted. Return number of online CPU
915 * packages in the expectation that an IRQ balancer will spread
916 * interrupts across them. */
917static int efx_wanted_rx_queues(void)
918{
Rusty Russell2f8975f2009-01-10 21:58:09 -0800919 cpumask_var_t core_mask;
Ben Hutchings46123d02008-09-01 12:47:33 +0100920 int count;
921 int cpu;
922
Li Zefan79f55992009-06-15 14:58:26 +0800923 if (unlikely(!zalloc_cpumask_var(&core_mask, GFP_KERNEL))) {
Rusty Russell2f8975f2009-01-10 21:58:09 -0800924 printk(KERN_WARNING
Mike Travis3977d032009-05-12 10:48:36 +0000925 "sfc: RSS disabled due to allocation failure\n");
Rusty Russell2f8975f2009-01-10 21:58:09 -0800926 return 1;
927 }
928
Ben Hutchings46123d02008-09-01 12:47:33 +0100929 count = 0;
930 for_each_online_cpu(cpu) {
Rusty Russell2f8975f2009-01-10 21:58:09 -0800931 if (!cpumask_test_cpu(cpu, core_mask)) {
Ben Hutchings46123d02008-09-01 12:47:33 +0100932 ++count;
Rusty Russell2f8975f2009-01-10 21:58:09 -0800933 cpumask_or(core_mask, core_mask,
Rusty Russellfbd59a82009-01-10 21:58:08 -0800934 topology_core_cpumask(cpu));
Ben Hutchings46123d02008-09-01 12:47:33 +0100935 }
936 }
937
Rusty Russell2f8975f2009-01-10 21:58:09 -0800938 free_cpumask_var(core_mask);
Ben Hutchings46123d02008-09-01 12:47:33 +0100939 return count;
940}
941
942/* Probe the number and type of interrupts we are able to obtain, and
943 * the resulting numbers of channels and RX queues.
944 */
Ben Hutchings8ceee662008-04-27 12:55:59 +0100945static void efx_probe_interrupts(struct efx_nic *efx)
946{
Ben Hutchings46123d02008-09-01 12:47:33 +0100947 int max_channels =
948 min_t(int, efx->type->phys_addr_channels, EFX_MAX_CHANNELS);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100949 int rc, i;
950
951 if (efx->interrupt_mode == EFX_INT_MODE_MSIX) {
Ben Hutchings46123d02008-09-01 12:47:33 +0100952 struct msix_entry xentries[EFX_MAX_CHANNELS];
953 int wanted_ints;
Neil Turton28b581a2008-12-12 21:41:06 -0800954 int rx_queues;
Ben Hutchings8ceee662008-04-27 12:55:59 +0100955
Ben Hutchings46123d02008-09-01 12:47:33 +0100956 /* We want one RX queue and interrupt per CPU package
957 * (or as specified by the rss_cpus module parameter).
958 * We will need one channel per interrupt.
959 */
Neil Turton28b581a2008-12-12 21:41:06 -0800960 rx_queues = rss_cpus ? rss_cpus : efx_wanted_rx_queues();
961 wanted_ints = rx_queues + (separate_tx_channels ? 1 : 0);
962 wanted_ints = min(wanted_ints, max_channels);
Ben Hutchingsaa6ef272008-07-18 19:03:10 +0100963
Neil Turton28b581a2008-12-12 21:41:06 -0800964 for (i = 0; i < wanted_ints; i++)
Ben Hutchings8ceee662008-04-27 12:55:59 +0100965 xentries[i].entry = i;
Neil Turton28b581a2008-12-12 21:41:06 -0800966 rc = pci_enable_msix(efx->pci_dev, xentries, wanted_ints);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100967 if (rc > 0) {
Neil Turton28b581a2008-12-12 21:41:06 -0800968 EFX_ERR(efx, "WARNING: Insufficient MSI-X vectors"
969 " available (%d < %d).\n", rc, wanted_ints);
970 EFX_ERR(efx, "WARNING: Performance may be reduced.\n");
971 EFX_BUG_ON_PARANOID(rc >= wanted_ints);
972 wanted_ints = rc;
Ben Hutchings8ceee662008-04-27 12:55:59 +0100973 rc = pci_enable_msix(efx->pci_dev, xentries,
Neil Turton28b581a2008-12-12 21:41:06 -0800974 wanted_ints);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100975 }
976
977 if (rc == 0) {
Neil Turton28b581a2008-12-12 21:41:06 -0800978 efx->n_rx_queues = min(rx_queues, wanted_ints);
979 efx->n_channels = wanted_ints;
980 for (i = 0; i < wanted_ints; i++)
Ben Hutchings8ceee662008-04-27 12:55:59 +0100981 efx->channel[i].irq = xentries[i].vector;
Ben Hutchings8ceee662008-04-27 12:55:59 +0100982 } else {
983 /* Fall back to single channel MSI */
984 efx->interrupt_mode = EFX_INT_MODE_MSI;
985 EFX_ERR(efx, "could not enable MSI-X\n");
986 }
987 }
988
989 /* Try single interrupt MSI */
990 if (efx->interrupt_mode == EFX_INT_MODE_MSI) {
Ben Hutchings8831da72008-09-01 12:47:48 +0100991 efx->n_rx_queues = 1;
Neil Turton28b581a2008-12-12 21:41:06 -0800992 efx->n_channels = 1;
Ben Hutchings8ceee662008-04-27 12:55:59 +0100993 rc = pci_enable_msi(efx->pci_dev);
994 if (rc == 0) {
995 efx->channel[0].irq = efx->pci_dev->irq;
Ben Hutchings8ceee662008-04-27 12:55:59 +0100996 } else {
997 EFX_ERR(efx, "could not enable MSI\n");
998 efx->interrupt_mode = EFX_INT_MODE_LEGACY;
999 }
1000 }
1001
1002 /* Assume legacy interrupts */
1003 if (efx->interrupt_mode == EFX_INT_MODE_LEGACY) {
Ben Hutchings8831da72008-09-01 12:47:48 +01001004 efx->n_rx_queues = 1;
Neil Turton28b581a2008-12-12 21:41:06 -08001005 efx->n_channels = 1 + (separate_tx_channels ? 1 : 0);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001006 efx->legacy_irq = efx->pci_dev->irq;
1007 }
1008}
1009
1010static void efx_remove_interrupts(struct efx_nic *efx)
1011{
1012 struct efx_channel *channel;
1013
1014 /* Remove MSI/MSI-X interrupts */
Ben Hutchings64ee3122008-09-01 12:47:38 +01001015 efx_for_each_channel(channel, efx)
Ben Hutchings8ceee662008-04-27 12:55:59 +01001016 channel->irq = 0;
1017 pci_disable_msi(efx->pci_dev);
1018 pci_disable_msix(efx->pci_dev);
1019
1020 /* Remove legacy interrupt */
1021 efx->legacy_irq = 0;
1022}
1023
Ben Hutchings8831da72008-09-01 12:47:48 +01001024static void efx_set_channels(struct efx_nic *efx)
Ben Hutchings8ceee662008-04-27 12:55:59 +01001025{
1026 struct efx_tx_queue *tx_queue;
1027 struct efx_rx_queue *rx_queue;
Ben Hutchings8ceee662008-04-27 12:55:59 +01001028
Ben Hutchings60ac1062008-09-01 12:44:59 +01001029 efx_for_each_tx_queue(tx_queue, efx) {
Neil Turton28b581a2008-12-12 21:41:06 -08001030 if (separate_tx_channels)
1031 tx_queue->channel = &efx->channel[efx->n_channels-1];
Ben Hutchings60ac1062008-09-01 12:44:59 +01001032 else
1033 tx_queue->channel = &efx->channel[0];
1034 tx_queue->channel->used_flags |= EFX_USED_BY_TX;
1035 }
Ben Hutchings8ceee662008-04-27 12:55:59 +01001036
Ben Hutchings8831da72008-09-01 12:47:48 +01001037 efx_for_each_rx_queue(rx_queue, efx) {
1038 rx_queue->channel = &efx->channel[rx_queue->queue];
1039 rx_queue->channel->used_flags |= EFX_USED_BY_RX;
Ben Hutchings8ceee662008-04-27 12:55:59 +01001040 }
1041}
1042
1043static int efx_probe_nic(struct efx_nic *efx)
1044{
1045 int rc;
1046
1047 EFX_LOG(efx, "creating NIC\n");
1048
1049 /* Carry out hardware-type specific initialisation */
1050 rc = falcon_probe_nic(efx);
1051 if (rc)
1052 return rc;
1053
1054 /* Determine the number of channels and RX queues by trying to hook
1055 * in MSI-X interrupts. */
1056 efx_probe_interrupts(efx);
1057
Ben Hutchings8831da72008-09-01 12:47:48 +01001058 efx_set_channels(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001059
1060 /* Initialise the interrupt moderation settings */
Ben Hutchings6fb70fd2009-03-20 13:30:37 +00001061 efx_init_irq_moderation(efx, tx_irq_mod_usec, rx_irq_mod_usec, true);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001062
1063 return 0;
1064}
1065
1066static void efx_remove_nic(struct efx_nic *efx)
1067{
1068 EFX_LOG(efx, "destroying NIC\n");
1069
1070 efx_remove_interrupts(efx);
1071 falcon_remove_nic(efx);
1072}
1073
1074/**************************************************************************
1075 *
1076 * NIC startup/shutdown
1077 *
1078 *************************************************************************/
1079
1080static int efx_probe_all(struct efx_nic *efx)
1081{
1082 struct efx_channel *channel;
1083 int rc;
1084
1085 /* Create NIC */
1086 rc = efx_probe_nic(efx);
1087 if (rc) {
1088 EFX_ERR(efx, "failed to create NIC\n");
1089 goto fail1;
1090 }
1091
1092 /* Create port */
1093 rc = efx_probe_port(efx);
1094 if (rc) {
1095 EFX_ERR(efx, "failed to create port\n");
1096 goto fail2;
1097 }
1098
1099 /* Create channels */
1100 efx_for_each_channel(channel, efx) {
1101 rc = efx_probe_channel(channel);
1102 if (rc) {
1103 EFX_ERR(efx, "failed to create channel %d\n",
1104 channel->channel);
1105 goto fail3;
1106 }
1107 }
Ben Hutchings56536e92008-12-12 21:37:02 -08001108 efx_set_channel_names(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001109
1110 return 0;
1111
1112 fail3:
1113 efx_for_each_channel(channel, efx)
1114 efx_remove_channel(channel);
1115 efx_remove_port(efx);
1116 fail2:
1117 efx_remove_nic(efx);
1118 fail1:
1119 return rc;
1120}
1121
1122/* Called after previous invocation(s) of efx_stop_all, restarts the
1123 * port, kernel transmit queue, NAPI processing and hardware interrupts,
1124 * and ensures that the port is scheduled to be reconfigured.
1125 * This function is safe to call multiple times when the NIC is in any
1126 * state. */
1127static void efx_start_all(struct efx_nic *efx)
1128{
1129 struct efx_channel *channel;
1130
1131 EFX_ASSERT_RESET_SERIALISED(efx);
1132
1133 /* Check that it is appropriate to restart the interface. All
1134 * of these flags are safe to read under just the rtnl lock */
1135 if (efx->port_enabled)
1136 return;
1137 if ((efx->state != STATE_RUNNING) && (efx->state != STATE_INIT))
1138 return;
Ben Hutchings55668612008-05-16 21:16:10 +01001139 if (efx_dev_registered(efx) && !netif_running(efx->net_dev))
Ben Hutchings8ceee662008-04-27 12:55:59 +01001140 return;
1141
1142 /* Mark the port as enabled so port reconfigurations can start, then
1143 * restart the transmit interface early so the watchdog timer stops */
1144 efx_start_port(efx);
Steve Hodgsondacccc72008-09-01 12:48:20 +01001145 if (efx_dev_registered(efx))
1146 efx_wake_queue(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001147
1148 efx_for_each_channel(channel, efx)
1149 efx_start_channel(channel);
1150
1151 falcon_enable_interrupts(efx);
1152
1153 /* Start hardware monitor if we're in RUNNING */
1154 if (efx->state == STATE_RUNNING)
1155 queue_delayed_work(efx->workqueue, &efx->monitor_work,
1156 efx_monitor_interval);
1157}
1158
1159/* Flush all delayed work. Should only be called when no more delayed work
1160 * will be scheduled. This doesn't flush pending online resets (efx_reset),
1161 * since we're holding the rtnl_lock at this point. */
1162static void efx_flush_all(struct efx_nic *efx)
1163{
1164 struct efx_rx_queue *rx_queue;
1165
1166 /* Make sure the hardware monitor is stopped */
1167 cancel_delayed_work_sync(&efx->monitor_work);
1168
1169 /* Ensure that all RX slow refills are complete. */
Ben Hutchingsb3475642008-05-16 21:15:49 +01001170 efx_for_each_rx_queue(rx_queue, efx)
Ben Hutchings8ceee662008-04-27 12:55:59 +01001171 cancel_delayed_work_sync(&rx_queue->work);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001172
1173 /* Stop scheduled port reconfigurations */
Ben Hutchings766ca0f2008-12-12 21:59:24 -08001174 cancel_work_sync(&efx->mac_work);
1175 cancel_work_sync(&efx->phy_work);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001176
1177}
1178
1179/* Quiesce hardware and software without bringing the link down.
1180 * Safe to call multiple times, when the nic and interface is in any
1181 * state. The caller is guaranteed to subsequently be in a position
1182 * to modify any hardware and software state they see fit without
1183 * taking locks. */
1184static void efx_stop_all(struct efx_nic *efx)
1185{
1186 struct efx_channel *channel;
1187
1188 EFX_ASSERT_RESET_SERIALISED(efx);
1189
1190 /* port_enabled can be read safely under the rtnl lock */
1191 if (!efx->port_enabled)
1192 return;
1193
1194 /* Disable interrupts and wait for ISR to complete */
1195 falcon_disable_interrupts(efx);
1196 if (efx->legacy_irq)
1197 synchronize_irq(efx->legacy_irq);
Ben Hutchings64ee3122008-09-01 12:47:38 +01001198 efx_for_each_channel(channel, efx) {
Ben Hutchings8ceee662008-04-27 12:55:59 +01001199 if (channel->irq)
1200 synchronize_irq(channel->irq);
Ben Hutchingsb3475642008-05-16 21:15:49 +01001201 }
Ben Hutchings8ceee662008-04-27 12:55:59 +01001202
1203 /* Stop all NAPI processing and synchronous rx refills */
1204 efx_for_each_channel(channel, efx)
1205 efx_stop_channel(channel);
1206
1207 /* Stop all asynchronous port reconfigurations. Since all
1208 * event processing has already been stopped, there is no
1209 * window to loose phy events */
1210 efx_stop_port(efx);
1211
Ben Hutchings766ca0f2008-12-12 21:59:24 -08001212 /* Flush efx_phy_work, efx_mac_work, refill_workqueue, monitor_work */
Ben Hutchings8ceee662008-04-27 12:55:59 +01001213 efx_flush_all(efx);
1214
1215 /* Isolate the MAC from the TX and RX engines, so that queue
1216 * flushes will complete in a timely fashion. */
Ben Hutchings5c8af3b2009-08-26 08:18:13 +00001217 falcon_deconfigure_mac_wrapper(efx);
1218 msleep(10); /* Let the Rx FIFO drain */
Ben Hutchings8ceee662008-04-27 12:55:59 +01001219 falcon_drain_tx_fifo(efx);
1220
1221 /* Stop the kernel transmit interface late, so the watchdog
1222 * timer isn't ticking over the flush */
Ben Hutchings55668612008-05-16 21:16:10 +01001223 if (efx_dev_registered(efx)) {
Steve Hodgsondacccc72008-09-01 12:48:20 +01001224 efx_stop_queue(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001225 netif_tx_lock_bh(efx->net_dev);
1226 netif_tx_unlock_bh(efx->net_dev);
1227 }
1228}
1229
1230static void efx_remove_all(struct efx_nic *efx)
1231{
1232 struct efx_channel *channel;
1233
1234 efx_for_each_channel(channel, efx)
1235 efx_remove_channel(channel);
1236 efx_remove_port(efx);
1237 efx_remove_nic(efx);
1238}
1239
1240/* A convinience function to safely flush all the queues */
Ben Hutchingsbc3c90a2008-09-01 12:48:46 +01001241void efx_flush_queues(struct efx_nic *efx)
Ben Hutchings8ceee662008-04-27 12:55:59 +01001242{
Ben Hutchings8ceee662008-04-27 12:55:59 +01001243 EFX_ASSERT_RESET_SERIALISED(efx);
1244
1245 efx_stop_all(efx);
1246
1247 efx_fini_channels(efx);
Ben Hutchingsbc3c90a2008-09-01 12:48:46 +01001248 efx_init_channels(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001249
1250 efx_start_all(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001251}
1252
1253/**************************************************************************
1254 *
1255 * Interrupt moderation
1256 *
1257 **************************************************************************/
1258
Ben Hutchings0d86ebd2009-10-23 08:32:13 +00001259static unsigned irq_mod_ticks(int usecs, int resolution)
1260{
1261 if (usecs <= 0)
1262 return 0; /* cannot receive interrupts ahead of time :-) */
1263 if (usecs < resolution)
1264 return 1; /* never round down to 0 */
1265 return usecs / resolution;
1266}
1267
Ben Hutchings8ceee662008-04-27 12:55:59 +01001268/* Set interrupt moderation parameters */
Ben Hutchings6fb70fd2009-03-20 13:30:37 +00001269void efx_init_irq_moderation(struct efx_nic *efx, int tx_usecs, int rx_usecs,
1270 bool rx_adaptive)
Ben Hutchings8ceee662008-04-27 12:55:59 +01001271{
1272 struct efx_tx_queue *tx_queue;
1273 struct efx_rx_queue *rx_queue;
Ben Hutchings0d86ebd2009-10-23 08:32:13 +00001274 unsigned tx_ticks = irq_mod_ticks(tx_usecs, FALCON_IRQ_MOD_RESOLUTION);
1275 unsigned rx_ticks = irq_mod_ticks(rx_usecs, FALCON_IRQ_MOD_RESOLUTION);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001276
1277 EFX_ASSERT_RESET_SERIALISED(efx);
1278
1279 efx_for_each_tx_queue(tx_queue, efx)
Ben Hutchings0d86ebd2009-10-23 08:32:13 +00001280 tx_queue->channel->irq_moderation = tx_ticks;
Ben Hutchings8ceee662008-04-27 12:55:59 +01001281
Ben Hutchings6fb70fd2009-03-20 13:30:37 +00001282 efx->irq_rx_adaptive = rx_adaptive;
Ben Hutchings0d86ebd2009-10-23 08:32:13 +00001283 efx->irq_rx_moderation = rx_ticks;
Ben Hutchings8ceee662008-04-27 12:55:59 +01001284 efx_for_each_rx_queue(rx_queue, efx)
Ben Hutchings0d86ebd2009-10-23 08:32:13 +00001285 rx_queue->channel->irq_moderation = rx_ticks;
Ben Hutchings8ceee662008-04-27 12:55:59 +01001286}
1287
1288/**************************************************************************
1289 *
1290 * Hardware monitor
1291 *
1292 **************************************************************************/
1293
1294/* Run periodically off the general workqueue. Serialised against
1295 * efx_reconfigure_port via the mac_lock */
1296static void efx_monitor(struct work_struct *data)
1297{
1298 struct efx_nic *efx = container_of(data, struct efx_nic,
1299 monitor_work.work);
Ben Hutchings766ca0f2008-12-12 21:59:24 -08001300 int rc;
Ben Hutchings8ceee662008-04-27 12:55:59 +01001301
1302 EFX_TRACE(efx, "hardware monitor executing on CPU %d\n",
1303 raw_smp_processor_id());
1304
Ben Hutchings8ceee662008-04-27 12:55:59 +01001305 /* If the mac_lock is already held then it is likely a port
1306 * reconfiguration is already in place, which will likely do
1307 * most of the work of check_hw() anyway. */
Ben Hutchings766ca0f2008-12-12 21:59:24 -08001308 if (!mutex_trylock(&efx->mac_lock))
1309 goto out_requeue;
1310 if (!efx->port_enabled)
1311 goto out_unlock;
Ben Hutchings278c0622009-11-23 16:05:12 +00001312 rc = falcon_board(efx)->monitor(efx);
Ben Hutchings766ca0f2008-12-12 21:59:24 -08001313 if (rc) {
1314 EFX_ERR(efx, "Board sensor %s; shutting down PHY\n",
1315 (rc == -ERANGE) ? "reported fault" : "failed");
1316 efx->phy_mode |= PHY_MODE_LOW_POWER;
1317 falcon_sim_phy_event(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001318 }
Ben Hutchings766ca0f2008-12-12 21:59:24 -08001319 efx->phy_op->poll(efx);
1320 efx->mac_op->poll(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001321
Ben Hutchings766ca0f2008-12-12 21:59:24 -08001322out_unlock:
Ben Hutchings8ceee662008-04-27 12:55:59 +01001323 mutex_unlock(&efx->mac_lock);
Ben Hutchings766ca0f2008-12-12 21:59:24 -08001324out_requeue:
Ben Hutchings8ceee662008-04-27 12:55:59 +01001325 queue_delayed_work(efx->workqueue, &efx->monitor_work,
1326 efx_monitor_interval);
1327}
1328
1329/**************************************************************************
1330 *
1331 * ioctls
1332 *
1333 *************************************************************************/
1334
1335/* Net device ioctl
1336 * Context: process, rtnl_lock() held.
1337 */
1338static int efx_ioctl(struct net_device *net_dev, struct ifreq *ifr, int cmd)
1339{
Ben Hutchings767e4682008-09-01 12:43:14 +01001340 struct efx_nic *efx = netdev_priv(net_dev);
Ben Hutchings68e7f452009-04-29 08:05:08 +00001341 struct mii_ioctl_data *data = if_mii(ifr);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001342
1343 EFX_ASSERT_RESET_SERIALISED(efx);
1344
Ben Hutchings68e7f452009-04-29 08:05:08 +00001345 /* Convert phy_id from older PRTAD/DEVAD format */
1346 if ((cmd == SIOCGMIIREG || cmd == SIOCSMIIREG) &&
1347 (data->phy_id & 0xfc00) == 0x0400)
1348 data->phy_id ^= MDIO_PHY_ID_C45 | 0x0400;
1349
1350 return mdio_mii_ioctl(&efx->mdio, data, cmd);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001351}
1352
1353/**************************************************************************
1354 *
1355 * NAPI interface
1356 *
1357 **************************************************************************/
1358
1359static int efx_init_napi(struct efx_nic *efx)
1360{
1361 struct efx_channel *channel;
Ben Hutchings8ceee662008-04-27 12:55:59 +01001362
1363 efx_for_each_channel(channel, efx) {
1364 channel->napi_dev = efx->net_dev;
Ben Hutchings718cff12009-04-14 19:47:46 -07001365 netif_napi_add(channel->napi_dev, &channel->napi_str,
1366 efx_poll, napi_weight);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001367 }
1368 return 0;
Ben Hutchings8ceee662008-04-27 12:55:59 +01001369}
1370
1371static void efx_fini_napi(struct efx_nic *efx)
1372{
1373 struct efx_channel *channel;
1374
1375 efx_for_each_channel(channel, efx) {
Ben Hutchings718cff12009-04-14 19:47:46 -07001376 if (channel->napi_dev)
1377 netif_napi_del(&channel->napi_str);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001378 channel->napi_dev = NULL;
1379 }
1380}
1381
1382/**************************************************************************
1383 *
1384 * Kernel netpoll interface
1385 *
1386 *************************************************************************/
1387
1388#ifdef CONFIG_NET_POLL_CONTROLLER
1389
1390/* Although in the common case interrupts will be disabled, this is not
1391 * guaranteed. However, all our work happens inside the NAPI callback,
1392 * so no locking is required.
1393 */
1394static void efx_netpoll(struct net_device *net_dev)
1395{
Ben Hutchings767e4682008-09-01 12:43:14 +01001396 struct efx_nic *efx = netdev_priv(net_dev);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001397 struct efx_channel *channel;
1398
Ben Hutchings64ee3122008-09-01 12:47:38 +01001399 efx_for_each_channel(channel, efx)
Ben Hutchings8ceee662008-04-27 12:55:59 +01001400 efx_schedule_channel(channel);
1401}
1402
1403#endif
1404
1405/**************************************************************************
1406 *
1407 * Kernel net device interface
1408 *
1409 *************************************************************************/
1410
1411/* Context: process, rtnl_lock() held. */
1412static int efx_net_open(struct net_device *net_dev)
1413{
Ben Hutchings767e4682008-09-01 12:43:14 +01001414 struct efx_nic *efx = netdev_priv(net_dev);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001415 EFX_ASSERT_RESET_SERIALISED(efx);
1416
1417 EFX_LOG(efx, "opening device %s on CPU %d\n", net_dev->name,
1418 raw_smp_processor_id());
1419
Ben Hutchingsf4bd9542008-12-26 13:48:51 -08001420 if (efx->state == STATE_DISABLED)
1421 return -EIO;
Ben Hutchingsf8b87c12008-09-01 12:48:17 +01001422 if (efx->phy_mode & PHY_MODE_SPECIAL)
1423 return -EBUSY;
1424
Ben Hutchings8ceee662008-04-27 12:55:59 +01001425 efx_start_all(efx);
1426 return 0;
1427}
1428
1429/* Context: process, rtnl_lock() held.
1430 * Note that the kernel will ignore our return code; this method
1431 * should really be a void.
1432 */
1433static int efx_net_stop(struct net_device *net_dev)
1434{
Ben Hutchings767e4682008-09-01 12:43:14 +01001435 struct efx_nic *efx = netdev_priv(net_dev);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001436
1437 EFX_LOG(efx, "closing %s on CPU %d\n", net_dev->name,
1438 raw_smp_processor_id());
1439
Ben Hutchingsf4bd9542008-12-26 13:48:51 -08001440 if (efx->state != STATE_DISABLED) {
1441 /* Stop the device and flush all the channels */
1442 efx_stop_all(efx);
1443 efx_fini_channels(efx);
1444 efx_init_channels(efx);
1445 }
Ben Hutchings8ceee662008-04-27 12:55:59 +01001446
1447 return 0;
1448}
1449
Ben Hutchings1974cc22009-01-29 18:00:07 +00001450void efx_stats_disable(struct efx_nic *efx)
1451{
1452 spin_lock(&efx->stats_lock);
1453 ++efx->stats_disable_count;
1454 spin_unlock(&efx->stats_lock);
1455}
1456
1457void efx_stats_enable(struct efx_nic *efx)
1458{
1459 spin_lock(&efx->stats_lock);
1460 --efx->stats_disable_count;
1461 spin_unlock(&efx->stats_lock);
1462}
1463
Ben Hutchings5b9e2072008-05-16 21:18:14 +01001464/* Context: process, dev_base_lock or RTNL held, non-blocking. */
Ben Hutchings8ceee662008-04-27 12:55:59 +01001465static struct net_device_stats *efx_net_stats(struct net_device *net_dev)
1466{
Ben Hutchings767e4682008-09-01 12:43:14 +01001467 struct efx_nic *efx = netdev_priv(net_dev);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001468 struct efx_mac_stats *mac_stats = &efx->mac_stats;
1469 struct net_device_stats *stats = &net_dev->stats;
1470
Ben Hutchings5b9e2072008-05-16 21:18:14 +01001471 /* Update stats if possible, but do not wait if another thread
Ben Hutchings1974cc22009-01-29 18:00:07 +00001472 * is updating them or if MAC stats fetches are temporarily
1473 * disabled; slightly stale stats are acceptable.
Ben Hutchings5b9e2072008-05-16 21:18:14 +01001474 */
Ben Hutchings8ceee662008-04-27 12:55:59 +01001475 if (!spin_trylock(&efx->stats_lock))
1476 return stats;
Ben Hutchings1974cc22009-01-29 18:00:07 +00001477 if (!efx->stats_disable_count) {
Ben Hutchings177dfcd2008-12-12 21:50:08 -08001478 efx->mac_op->update_stats(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001479 falcon_update_nic_stats(efx);
1480 }
1481 spin_unlock(&efx->stats_lock);
1482
1483 stats->rx_packets = mac_stats->rx_packets;
1484 stats->tx_packets = mac_stats->tx_packets;
1485 stats->rx_bytes = mac_stats->rx_bytes;
1486 stats->tx_bytes = mac_stats->tx_bytes;
1487 stats->multicast = mac_stats->rx_multicast;
1488 stats->collisions = mac_stats->tx_collision;
1489 stats->rx_length_errors = (mac_stats->rx_gtjumbo +
1490 mac_stats->rx_length_error);
1491 stats->rx_over_errors = efx->n_rx_nodesc_drop_cnt;
1492 stats->rx_crc_errors = mac_stats->rx_bad;
1493 stats->rx_frame_errors = mac_stats->rx_align_error;
1494 stats->rx_fifo_errors = mac_stats->rx_overflow;
1495 stats->rx_missed_errors = mac_stats->rx_missed;
1496 stats->tx_window_errors = mac_stats->tx_late_collision;
1497
1498 stats->rx_errors = (stats->rx_length_errors +
1499 stats->rx_over_errors +
1500 stats->rx_crc_errors +
1501 stats->rx_frame_errors +
1502 stats->rx_fifo_errors +
1503 stats->rx_missed_errors +
1504 mac_stats->rx_symbol_error);
1505 stats->tx_errors = (stats->tx_window_errors +
1506 mac_stats->tx_bad);
1507
1508 return stats;
1509}
1510
1511/* Context: netif_tx_lock held, BHs disabled. */
1512static void efx_watchdog(struct net_device *net_dev)
1513{
Ben Hutchings767e4682008-09-01 12:43:14 +01001514 struct efx_nic *efx = netdev_priv(net_dev);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001515
Ben Hutchings739bb23d2008-11-04 20:35:36 +00001516 EFX_ERR(efx, "TX stuck with stop_count=%d port_enabled=%d:"
1517 " resetting channels\n",
1518 atomic_read(&efx->netif_stop_count), efx->port_enabled);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001519
Ben Hutchings739bb23d2008-11-04 20:35:36 +00001520 efx_schedule_reset(efx, RESET_TYPE_TX_WATCHDOG);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001521}
1522
1523
1524/* Context: process, rtnl_lock() held. */
1525static int efx_change_mtu(struct net_device *net_dev, int new_mtu)
1526{
Ben Hutchings767e4682008-09-01 12:43:14 +01001527 struct efx_nic *efx = netdev_priv(net_dev);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001528 int rc = 0;
1529
1530 EFX_ASSERT_RESET_SERIALISED(efx);
1531
1532 if (new_mtu > EFX_MAX_MTU)
1533 return -EINVAL;
1534
1535 efx_stop_all(efx);
1536
1537 EFX_LOG(efx, "changing MTU to %d\n", new_mtu);
1538
1539 efx_fini_channels(efx);
1540 net_dev->mtu = new_mtu;
Ben Hutchingsbc3c90a2008-09-01 12:48:46 +01001541 efx_init_channels(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001542
1543 efx_start_all(efx);
1544 return rc;
Ben Hutchings8ceee662008-04-27 12:55:59 +01001545}
1546
1547static int efx_set_mac_address(struct net_device *net_dev, void *data)
1548{
Ben Hutchings767e4682008-09-01 12:43:14 +01001549 struct efx_nic *efx = netdev_priv(net_dev);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001550 struct sockaddr *addr = data;
1551 char *new_addr = addr->sa_data;
1552
1553 EFX_ASSERT_RESET_SERIALISED(efx);
1554
1555 if (!is_valid_ether_addr(new_addr)) {
Johannes Berge1749612008-10-27 15:59:26 -07001556 EFX_ERR(efx, "invalid ethernet MAC address requested: %pM\n",
1557 new_addr);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001558 return -EINVAL;
1559 }
1560
1561 memcpy(net_dev->dev_addr, new_addr, net_dev->addr_len);
1562
1563 /* Reconfigure the MAC */
1564 efx_reconfigure_port(efx);
1565
1566 return 0;
1567}
1568
Ben Hutchingsa816f752008-09-01 12:49:12 +01001569/* Context: netif_addr_lock held, BHs disabled. */
Ben Hutchings8ceee662008-04-27 12:55:59 +01001570static void efx_set_multicast_list(struct net_device *net_dev)
1571{
Ben Hutchings767e4682008-09-01 12:43:14 +01001572 struct efx_nic *efx = netdev_priv(net_dev);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001573 struct dev_mc_list *mc_list = net_dev->mc_list;
1574 union efx_multicast_hash *mc_hash = &efx->multicast_hash;
Ben Hutchingsa816f752008-09-01 12:49:12 +01001575 bool promiscuous = !!(net_dev->flags & IFF_PROMISC);
1576 bool changed = (efx->promiscuous != promiscuous);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001577 u32 crc;
1578 int bit;
1579 int i;
1580
Ben Hutchingsa816f752008-09-01 12:49:12 +01001581 efx->promiscuous = promiscuous;
Ben Hutchings8ceee662008-04-27 12:55:59 +01001582
1583 /* Build multicast hash table */
1584 if (promiscuous || (net_dev->flags & IFF_ALLMULTI)) {
1585 memset(mc_hash, 0xff, sizeof(*mc_hash));
1586 } else {
1587 memset(mc_hash, 0x00, sizeof(*mc_hash));
1588 for (i = 0; i < net_dev->mc_count; i++) {
1589 crc = ether_crc_le(ETH_ALEN, mc_list->dmi_addr);
1590 bit = crc & (EFX_MCAST_HASH_ENTRIES - 1);
1591 set_bit_le(bit, mc_hash->byte);
1592 mc_list = mc_list->next;
1593 }
1594 }
1595
Ben Hutchingsa816f752008-09-01 12:49:12 +01001596 if (!efx->port_enabled)
1597 /* Delay pushing settings until efx_start_port() */
1598 return;
1599
1600 if (changed)
Ben Hutchings766ca0f2008-12-12 21:59:24 -08001601 queue_work(efx->workqueue, &efx->phy_work);
Ben Hutchingsa816f752008-09-01 12:49:12 +01001602
Ben Hutchings8ceee662008-04-27 12:55:59 +01001603 /* Create and activate new global multicast hash table */
1604 falcon_set_multicast_hash(efx);
1605}
1606
Stephen Hemmingerc3ecb9f2008-11-21 17:32:54 -08001607static const struct net_device_ops efx_netdev_ops = {
1608 .ndo_open = efx_net_open,
1609 .ndo_stop = efx_net_stop,
1610 .ndo_get_stats = efx_net_stats,
1611 .ndo_tx_timeout = efx_watchdog,
1612 .ndo_start_xmit = efx_hard_start_xmit,
1613 .ndo_validate_addr = eth_validate_addr,
1614 .ndo_do_ioctl = efx_ioctl,
1615 .ndo_change_mtu = efx_change_mtu,
1616 .ndo_set_mac_address = efx_set_mac_address,
1617 .ndo_set_multicast_list = efx_set_multicast_list,
1618#ifdef CONFIG_NET_POLL_CONTROLLER
1619 .ndo_poll_controller = efx_netpoll,
1620#endif
1621};
1622
Ben Hutchings7dde5962008-12-12 22:09:38 -08001623static void efx_update_name(struct efx_nic *efx)
1624{
1625 strcpy(efx->name, efx->net_dev->name);
1626 efx_mtd_rename(efx);
1627 efx_set_channel_names(efx);
1628}
1629
Ben Hutchings8ceee662008-04-27 12:55:59 +01001630static int efx_netdev_event(struct notifier_block *this,
1631 unsigned long event, void *ptr)
1632{
Ben Hutchingsd3208b52008-05-16 21:20:00 +01001633 struct net_device *net_dev = ptr;
Ben Hutchings8ceee662008-04-27 12:55:59 +01001634
Ben Hutchings7dde5962008-12-12 22:09:38 -08001635 if (net_dev->netdev_ops == &efx_netdev_ops &&
1636 event == NETDEV_CHANGENAME)
1637 efx_update_name(netdev_priv(net_dev));
Ben Hutchings8ceee662008-04-27 12:55:59 +01001638
1639 return NOTIFY_DONE;
1640}
1641
1642static struct notifier_block efx_netdev_notifier = {
1643 .notifier_call = efx_netdev_event,
1644};
1645
Ben Hutchings06d5e192008-12-12 21:47:23 -08001646static ssize_t
1647show_phy_type(struct device *dev, struct device_attribute *attr, char *buf)
1648{
1649 struct efx_nic *efx = pci_get_drvdata(to_pci_dev(dev));
1650 return sprintf(buf, "%d\n", efx->phy_type);
1651}
1652static DEVICE_ATTR(phy_type, 0644, show_phy_type, NULL);
1653
Ben Hutchings8ceee662008-04-27 12:55:59 +01001654static int efx_register_netdev(struct efx_nic *efx)
1655{
1656 struct net_device *net_dev = efx->net_dev;
1657 int rc;
1658
1659 net_dev->watchdog_timeo = 5 * HZ;
1660 net_dev->irq = efx->pci_dev->irq;
Stephen Hemmingerc3ecb9f2008-11-21 17:32:54 -08001661 net_dev->netdev_ops = &efx_netdev_ops;
Ben Hutchings8ceee662008-04-27 12:55:59 +01001662 SET_NETDEV_DEV(net_dev, &efx->pci_dev->dev);
1663 SET_ETHTOOL_OPS(net_dev, &efx_ethtool_ops);
1664
Ben Hutchings8ceee662008-04-27 12:55:59 +01001665 /* Clear MAC statistics */
Ben Hutchings177dfcd2008-12-12 21:50:08 -08001666 efx->mac_op->update_stats(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001667 memset(&efx->mac_stats, 0, sizeof(efx->mac_stats));
1668
Ben Hutchings7dde5962008-12-12 22:09:38 -08001669 rtnl_lock();
Ben Hutchingsaed06282009-08-26 08:16:27 +00001670
1671 rc = dev_alloc_name(net_dev, net_dev->name);
1672 if (rc < 0)
1673 goto fail_locked;
Ben Hutchings7dde5962008-12-12 22:09:38 -08001674 efx_update_name(efx);
Ben Hutchingsaed06282009-08-26 08:16:27 +00001675
1676 rc = register_netdevice(net_dev);
1677 if (rc)
1678 goto fail_locked;
1679
1680 /* Always start with carrier off; PHY events will detect the link */
1681 netif_carrier_off(efx->net_dev);
1682
Ben Hutchings7dde5962008-12-12 22:09:38 -08001683 rtnl_unlock();
Ben Hutchings8ceee662008-04-27 12:55:59 +01001684
Ben Hutchings06d5e192008-12-12 21:47:23 -08001685 rc = device_create_file(&efx->pci_dev->dev, &dev_attr_phy_type);
1686 if (rc) {
1687 EFX_ERR(efx, "failed to init net dev attributes\n");
1688 goto fail_registered;
1689 }
1690
Ben Hutchings8ceee662008-04-27 12:55:59 +01001691 return 0;
Ben Hutchings06d5e192008-12-12 21:47:23 -08001692
Ben Hutchingsaed06282009-08-26 08:16:27 +00001693fail_locked:
1694 rtnl_unlock();
1695 EFX_ERR(efx, "could not register net dev\n");
1696 return rc;
1697
Ben Hutchings06d5e192008-12-12 21:47:23 -08001698fail_registered:
1699 unregister_netdev(net_dev);
1700 return rc;
Ben Hutchings8ceee662008-04-27 12:55:59 +01001701}
1702
1703static void efx_unregister_netdev(struct efx_nic *efx)
1704{
1705 struct efx_tx_queue *tx_queue;
1706
1707 if (!efx->net_dev)
1708 return;
1709
Ben Hutchings767e4682008-09-01 12:43:14 +01001710 BUG_ON(netdev_priv(efx->net_dev) != efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001711
1712 /* Free up any skbs still remaining. This has to happen before
1713 * we try to unregister the netdev as running their destructors
1714 * may be needed to get the device ref. count to 0. */
1715 efx_for_each_tx_queue(tx_queue, efx)
1716 efx_release_tx_buffers(tx_queue);
1717
Ben Hutchings55668612008-05-16 21:16:10 +01001718 if (efx_dev_registered(efx)) {
Ben Hutchings8ceee662008-04-27 12:55:59 +01001719 strlcpy(efx->name, pci_name(efx->pci_dev), sizeof(efx->name));
Ben Hutchings06d5e192008-12-12 21:47:23 -08001720 device_remove_file(&efx->pci_dev->dev, &dev_attr_phy_type);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001721 unregister_netdev(efx->net_dev);
1722 }
1723}
1724
1725/**************************************************************************
1726 *
1727 * Device reset and suspend
1728 *
1729 **************************************************************************/
1730
Ben Hutchings2467ca42008-09-01 12:48:50 +01001731/* Tears down the entire software state and most of the hardware state
1732 * before reset. */
Steve Hodgson4b988282009-01-29 17:50:51 +00001733void efx_reset_down(struct efx_nic *efx, enum reset_type method,
1734 struct ethtool_cmd *ecmd)
Ben Hutchings8ceee662008-04-27 12:55:59 +01001735{
Ben Hutchings8ceee662008-04-27 12:55:59 +01001736 EFX_ASSERT_RESET_SERIALISED(efx);
1737
Ben Hutchings1974cc22009-01-29 18:00:07 +00001738 efx_stats_disable(efx);
Ben Hutchings2467ca42008-09-01 12:48:50 +01001739 efx_stop_all(efx);
1740 mutex_lock(&efx->mac_lock);
Ben Hutchingsf4150722008-11-04 20:34:28 +00001741 mutex_lock(&efx->spi_lock);
Ben Hutchings2467ca42008-09-01 12:48:50 +01001742
Ben Hutchings177dfcd2008-12-12 21:50:08 -08001743 efx->phy_op->get_settings(efx, ecmd);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001744
1745 efx_fini_channels(efx);
Steve Hodgson4b988282009-01-29 17:50:51 +00001746 if (efx->port_initialized && method != RESET_TYPE_INVISIBLE)
1747 efx->phy_op->fini(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001748}
1749
Ben Hutchings2467ca42008-09-01 12:48:50 +01001750/* This function will always ensure that the locks acquired in
1751 * efx_reset_down() are released. A failure return code indicates
1752 * that we were unable to reinitialise the hardware, and the
1753 * driver should be disabled. If ok is false, then the rx and tx
1754 * engines are not restarted, pending a RESET_DISABLE. */
Steve Hodgson4b988282009-01-29 17:50:51 +00001755int efx_reset_up(struct efx_nic *efx, enum reset_type method,
1756 struct ethtool_cmd *ecmd, bool ok)
Ben Hutchings8ceee662008-04-27 12:55:59 +01001757{
1758 int rc;
1759
Ben Hutchings2467ca42008-09-01 12:48:50 +01001760 EFX_ASSERT_RESET_SERIALISED(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001761
Ben Hutchings2467ca42008-09-01 12:48:50 +01001762 rc = falcon_init_nic(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001763 if (rc) {
Ben Hutchings2467ca42008-09-01 12:48:50 +01001764 EFX_ERR(efx, "failed to initialise NIC\n");
1765 ok = false;
Ben Hutchings8ceee662008-04-27 12:55:59 +01001766 }
1767
Steve Hodgson4b988282009-01-29 17:50:51 +00001768 if (efx->port_initialized && method != RESET_TYPE_INVISIBLE) {
1769 if (ok) {
1770 rc = efx->phy_op->init(efx);
1771 if (rc)
1772 ok = false;
Ben Hutchings115122a2009-03-04 09:52:52 +00001773 }
1774 if (!ok)
Steve Hodgson4b988282009-01-29 17:50:51 +00001775 efx->port_initialized = false;
1776 }
1777
Ben Hutchings2467ca42008-09-01 12:48:50 +01001778 if (ok) {
1779 efx_init_channels(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001780
Ben Hutchings177dfcd2008-12-12 21:50:08 -08001781 if (efx->phy_op->set_settings(efx, ecmd))
Ben Hutchings2467ca42008-09-01 12:48:50 +01001782 EFX_ERR(efx, "could not restore PHY settings\n");
1783 }
1784
Ben Hutchingsf4150722008-11-04 20:34:28 +00001785 mutex_unlock(&efx->spi_lock);
Ben Hutchings2467ca42008-09-01 12:48:50 +01001786 mutex_unlock(&efx->mac_lock);
1787
Ben Hutchings8c8661e2008-09-01 12:49:02 +01001788 if (ok) {
Ben Hutchings2467ca42008-09-01 12:48:50 +01001789 efx_start_all(efx);
Ben Hutchings1974cc22009-01-29 18:00:07 +00001790 efx_stats_enable(efx);
Ben Hutchings8c8661e2008-09-01 12:49:02 +01001791 }
Ben Hutchings8ceee662008-04-27 12:55:59 +01001792 return rc;
1793}
1794
1795/* Reset the NIC as transparently as possible. Do not reset the PHY
1796 * Note that the reset may fail, in which case the card will be left
1797 * in a most-probably-unusable state.
1798 *
1799 * This function will sleep. You cannot reset from within an atomic
1800 * state; use efx_schedule_reset() instead.
1801 *
1802 * Grabs the rtnl_lock.
1803 */
1804static int efx_reset(struct efx_nic *efx)
1805{
1806 struct ethtool_cmd ecmd;
1807 enum reset_type method = efx->reset_pending;
Ben Hutchingsf4bd9542008-12-26 13:48:51 -08001808 int rc = 0;
Ben Hutchings8ceee662008-04-27 12:55:59 +01001809
1810 /* Serialise with kernel interfaces */
1811 rtnl_lock();
1812
1813 /* If we're not RUNNING then don't reset. Leave the reset_pending
1814 * flag set so that efx_pci_probe_main will be retried */
1815 if (efx->state != STATE_RUNNING) {
1816 EFX_INFO(efx, "scheduled reset quenched. NIC not RUNNING\n");
Ben Hutchingsf4bd9542008-12-26 13:48:51 -08001817 goto out_unlock;
Ben Hutchings8ceee662008-04-27 12:55:59 +01001818 }
1819
Ben Hutchingsc4593022009-11-23 16:08:17 +00001820 EFX_INFO(efx, "resetting (%s)\n", RESET_TYPE(method));
Ben Hutchings8ceee662008-04-27 12:55:59 +01001821
Steve Hodgson4b988282009-01-29 17:50:51 +00001822 efx_reset_down(efx, method, &ecmd);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001823
1824 rc = falcon_reset_hw(efx, method);
1825 if (rc) {
1826 EFX_ERR(efx, "failed to reset hardware\n");
Ben Hutchingsf4bd9542008-12-26 13:48:51 -08001827 goto out_disable;
Ben Hutchings8ceee662008-04-27 12:55:59 +01001828 }
1829
1830 /* Allow resets to be rescheduled. */
1831 efx->reset_pending = RESET_TYPE_NONE;
1832
1833 /* Reinitialise bus-mastering, which may have been turned off before
1834 * the reset was scheduled. This is still appropriate, even in the
1835 * RESET_TYPE_DISABLE since this driver generally assumes the hardware
1836 * can respond to requests. */
1837 pci_set_master(efx->pci_dev);
1838
Ben Hutchings8ceee662008-04-27 12:55:59 +01001839 /* Leave device stopped if necessary */
1840 if (method == RESET_TYPE_DISABLE) {
Steve Hodgson4b988282009-01-29 17:50:51 +00001841 efx_reset_up(efx, method, &ecmd, false);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001842 rc = -EIO;
Ben Hutchingsf4bd9542008-12-26 13:48:51 -08001843 } else {
Steve Hodgson4b988282009-01-29 17:50:51 +00001844 rc = efx_reset_up(efx, method, &ecmd, true);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001845 }
1846
Ben Hutchingsf4bd9542008-12-26 13:48:51 -08001847out_disable:
1848 if (rc) {
1849 EFX_ERR(efx, "has been disabled\n");
1850 efx->state = STATE_DISABLED;
1851 dev_close(efx->net_dev);
1852 } else {
1853 EFX_LOG(efx, "reset complete\n");
1854 }
Ben Hutchings8ceee662008-04-27 12:55:59 +01001855
Ben Hutchingsf4bd9542008-12-26 13:48:51 -08001856out_unlock:
Ben Hutchings8ceee662008-04-27 12:55:59 +01001857 rtnl_unlock();
Ben Hutchings8ceee662008-04-27 12:55:59 +01001858 return rc;
1859}
1860
1861/* The worker thread exists so that code that cannot sleep can
1862 * schedule a reset for later.
1863 */
1864static void efx_reset_work(struct work_struct *data)
1865{
1866 struct efx_nic *nic = container_of(data, struct efx_nic, reset_work);
1867
1868 efx_reset(nic);
1869}
1870
1871void efx_schedule_reset(struct efx_nic *efx, enum reset_type type)
1872{
1873 enum reset_type method;
1874
1875 if (efx->reset_pending != RESET_TYPE_NONE) {
1876 EFX_INFO(efx, "quenching already scheduled reset\n");
1877 return;
1878 }
1879
1880 switch (type) {
1881 case RESET_TYPE_INVISIBLE:
1882 case RESET_TYPE_ALL:
1883 case RESET_TYPE_WORLD:
1884 case RESET_TYPE_DISABLE:
1885 method = type;
1886 break;
1887 case RESET_TYPE_RX_RECOVERY:
1888 case RESET_TYPE_RX_DESC_FETCH:
1889 case RESET_TYPE_TX_DESC_FETCH:
1890 case RESET_TYPE_TX_SKIP:
1891 method = RESET_TYPE_INVISIBLE;
1892 break;
1893 default:
1894 method = RESET_TYPE_ALL;
1895 break;
1896 }
1897
1898 if (method != type)
Ben Hutchingsc4593022009-11-23 16:08:17 +00001899 EFX_LOG(efx, "scheduling %s reset for %s\n",
1900 RESET_TYPE(method), RESET_TYPE(type));
Ben Hutchings8ceee662008-04-27 12:55:59 +01001901 else
Ben Hutchingsc4593022009-11-23 16:08:17 +00001902 EFX_LOG(efx, "scheduling %s reset\n", RESET_TYPE(method));
Ben Hutchings8ceee662008-04-27 12:55:59 +01001903
1904 efx->reset_pending = method;
1905
Steve Hodgson1ab00622008-12-12 21:33:02 -08001906 queue_work(reset_workqueue, &efx->reset_work);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001907}
1908
1909/**************************************************************************
1910 *
1911 * List of NICs we support
1912 *
1913 **************************************************************************/
1914
1915/* PCI device ID table */
1916static struct pci_device_id efx_pci_table[] __devinitdata = {
1917 {PCI_DEVICE(EFX_VENDID_SFC, FALCON_A_P_DEVID),
1918 .driver_data = (unsigned long) &falcon_a_nic_type},
1919 {PCI_DEVICE(EFX_VENDID_SFC, FALCON_B_P_DEVID),
1920 .driver_data = (unsigned long) &falcon_b_nic_type},
1921 {0} /* end of list */
1922};
1923
1924/**************************************************************************
1925 *
Ben Hutchings37594332009-11-23 16:05:45 +00001926 * Dummy PHY/MAC operations
Ben Hutchings8ceee662008-04-27 12:55:59 +01001927 *
Ben Hutchings01aad7b2008-09-01 12:48:36 +01001928 * Can be used for some unimplemented operations
Ben Hutchings8ceee662008-04-27 12:55:59 +01001929 * Needed so all function pointers are valid and do not have to be tested
1930 * before use
1931 *
1932 **************************************************************************/
1933int efx_port_dummy_op_int(struct efx_nic *efx)
1934{
1935 return 0;
1936}
1937void efx_port_dummy_op_void(struct efx_nic *efx) {}
Ben Hutchings398468e2009-11-23 16:03:45 +00001938void efx_port_dummy_op_set_id_led(struct efx_nic *efx, enum efx_led_mode mode)
1939{
1940}
Ben Hutchings8ceee662008-04-27 12:55:59 +01001941
Ben Hutchings177dfcd2008-12-12 21:50:08 -08001942static struct efx_mac_operations efx_dummy_mac_operations = {
1943 .reconfigure = efx_port_dummy_op_void,
Ben Hutchings766ca0f2008-12-12 21:59:24 -08001944 .poll = efx_port_dummy_op_void,
1945 .irq = efx_port_dummy_op_void,
Ben Hutchings177dfcd2008-12-12 21:50:08 -08001946};
1947
Ben Hutchings8ceee662008-04-27 12:55:59 +01001948static struct efx_phy_operations efx_dummy_phy_operations = {
1949 .init = efx_port_dummy_op_int,
1950 .reconfigure = efx_port_dummy_op_void,
Ben Hutchings766ca0f2008-12-12 21:59:24 -08001951 .poll = efx_port_dummy_op_void,
Ben Hutchings8ceee662008-04-27 12:55:59 +01001952 .fini = efx_port_dummy_op_void,
1953 .clear_interrupt = efx_port_dummy_op_void,
Ben Hutchings8ceee662008-04-27 12:55:59 +01001954};
1955
Ben Hutchings8ceee662008-04-27 12:55:59 +01001956/**************************************************************************
1957 *
1958 * Data housekeeping
1959 *
1960 **************************************************************************/
1961
1962/* This zeroes out and then fills in the invariants in a struct
1963 * efx_nic (including all sub-structures).
1964 */
1965static int efx_init_struct(struct efx_nic *efx, struct efx_nic_type *type,
1966 struct pci_dev *pci_dev, struct net_device *net_dev)
1967{
1968 struct efx_channel *channel;
1969 struct efx_tx_queue *tx_queue;
1970 struct efx_rx_queue *rx_queue;
Steve Hodgson1ab00622008-12-12 21:33:02 -08001971 int i;
Ben Hutchings8ceee662008-04-27 12:55:59 +01001972
1973 /* Initialise common structures */
1974 memset(efx, 0, sizeof(*efx));
1975 spin_lock_init(&efx->biu_lock);
1976 spin_lock_init(&efx->phy_lock);
Ben Hutchingsf4150722008-11-04 20:34:28 +00001977 mutex_init(&efx->spi_lock);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001978 INIT_WORK(&efx->reset_work, efx_reset_work);
1979 INIT_DELAYED_WORK(&efx->monitor_work, efx_monitor);
1980 efx->pci_dev = pci_dev;
1981 efx->state = STATE_INIT;
1982 efx->reset_pending = RESET_TYPE_NONE;
1983 strlcpy(efx->name, pci_name(pci_dev), sizeof(efx->name));
Ben Hutchings8ceee662008-04-27 12:55:59 +01001984
1985 efx->net_dev = net_dev;
Ben Hutchingsdc8cfa52008-09-01 12:46:50 +01001986 efx->rx_checksum_enabled = true;
Ben Hutchings8ceee662008-04-27 12:55:59 +01001987 spin_lock_init(&efx->netif_stop_lock);
1988 spin_lock_init(&efx->stats_lock);
Ben Hutchings1974cc22009-01-29 18:00:07 +00001989 efx->stats_disable_count = 1;
Ben Hutchings8ceee662008-04-27 12:55:59 +01001990 mutex_init(&efx->mac_lock);
Ben Hutchings177dfcd2008-12-12 21:50:08 -08001991 efx->mac_op = &efx_dummy_mac_operations;
Ben Hutchings8ceee662008-04-27 12:55:59 +01001992 efx->phy_op = &efx_dummy_phy_operations;
Ben Hutchings68e7f452009-04-29 08:05:08 +00001993 efx->mdio.dev = net_dev;
Ben Hutchings766ca0f2008-12-12 21:59:24 -08001994 INIT_WORK(&efx->phy_work, efx_phy_work);
1995 INIT_WORK(&efx->mac_work, efx_mac_work);
Ben Hutchings8ceee662008-04-27 12:55:59 +01001996 atomic_set(&efx->netif_stop_count, 1);
1997
1998 for (i = 0; i < EFX_MAX_CHANNELS; i++) {
1999 channel = &efx->channel[i];
2000 channel->efx = efx;
2001 channel->channel = i;
Ben Hutchingsdc8cfa52008-09-01 12:46:50 +01002002 channel->work_pending = false;
Ben Hutchings8ceee662008-04-27 12:55:59 +01002003 }
Ben Hutchings60ac1062008-09-01 12:44:59 +01002004 for (i = 0; i < EFX_TX_QUEUE_COUNT; i++) {
Ben Hutchings8ceee662008-04-27 12:55:59 +01002005 tx_queue = &efx->tx_queue[i];
2006 tx_queue->efx = efx;
2007 tx_queue->queue = i;
2008 tx_queue->buffer = NULL;
2009 tx_queue->channel = &efx->channel[0]; /* for safety */
Ben Hutchingsb9b39b62008-05-07 12:51:12 +01002010 tx_queue->tso_headers_free = NULL;
Ben Hutchings8ceee662008-04-27 12:55:59 +01002011 }
2012 for (i = 0; i < EFX_MAX_RX_QUEUES; i++) {
2013 rx_queue = &efx->rx_queue[i];
2014 rx_queue->efx = efx;
2015 rx_queue->queue = i;
2016 rx_queue->channel = &efx->channel[0]; /* for safety */
2017 rx_queue->buffer = NULL;
2018 spin_lock_init(&rx_queue->add_lock);
2019 INIT_DELAYED_WORK(&rx_queue->work, efx_rx_work);
2020 }
2021
2022 efx->type = type;
2023
Ben Hutchings8ceee662008-04-27 12:55:59 +01002024 /* As close as we can get to guaranteeing that we don't overflow */
Ben Hutchings3ffeabd2009-10-23 08:30:58 +00002025 BUILD_BUG_ON(EFX_EVQ_SIZE < EFX_TXQ_SIZE + EFX_RXQ_SIZE);
2026
Ben Hutchings8ceee662008-04-27 12:55:59 +01002027 EFX_BUG_ON_PARANOID(efx->type->phys_addr_channels > EFX_MAX_CHANNELS);
2028
2029 /* Higher numbered interrupt modes are less capable! */
2030 efx->interrupt_mode = max(efx->type->max_interrupt_mode,
2031 interrupt_mode);
2032
Ben Hutchings6977dc62008-12-26 13:44:39 -08002033 /* Would be good to use the net_dev name, but we're too early */
2034 snprintf(efx->workqueue_name, sizeof(efx->workqueue_name), "sfc%s",
2035 pci_name(pci_dev));
2036 efx->workqueue = create_singlethread_workqueue(efx->workqueue_name);
Steve Hodgson1ab00622008-12-12 21:33:02 -08002037 if (!efx->workqueue)
2038 return -ENOMEM;
Ben Hutchings8d9853d2008-07-18 19:01:20 +01002039
Ben Hutchings8ceee662008-04-27 12:55:59 +01002040 return 0;
Ben Hutchings8ceee662008-04-27 12:55:59 +01002041}
2042
2043static void efx_fini_struct(struct efx_nic *efx)
2044{
2045 if (efx->workqueue) {
2046 destroy_workqueue(efx->workqueue);
2047 efx->workqueue = NULL;
2048 }
2049}
2050
2051/**************************************************************************
2052 *
2053 * PCI interface
2054 *
2055 **************************************************************************/
2056
2057/* Main body of final NIC shutdown code
2058 * This is called only at module unload (or hotplug removal).
2059 */
2060static void efx_pci_remove_main(struct efx_nic *efx)
2061{
Ben Hutchingsf01865f2009-10-23 08:31:37 +00002062 falcon_fini_interrupt(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +01002063 efx_fini_channels(efx);
2064 efx_fini_port(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +01002065 efx_fini_napi(efx);
2066 efx_remove_all(efx);
2067}
2068
2069/* Final NIC shutdown
2070 * This is called only at module unload (or hotplug removal).
2071 */
2072static void efx_pci_remove(struct pci_dev *pci_dev)
2073{
2074 struct efx_nic *efx;
2075
2076 efx = pci_get_drvdata(pci_dev);
2077 if (!efx)
2078 return;
2079
2080 /* Mark the NIC as fini, then stop the interface */
2081 rtnl_lock();
2082 efx->state = STATE_FINI;
2083 dev_close(efx->net_dev);
2084
2085 /* Allow any queued efx_resets() to complete */
2086 rtnl_unlock();
2087
Ben Hutchings8ceee662008-04-27 12:55:59 +01002088 efx_unregister_netdev(efx);
2089
Ben Hutchings7dde5962008-12-12 22:09:38 -08002090 efx_mtd_remove(efx);
2091
Ben Hutchings8ceee662008-04-27 12:55:59 +01002092 /* Wait for any scheduled resets to complete. No more will be
2093 * scheduled from this point because efx_stop_all() has been
2094 * called, we are no longer registered with driverlink, and
2095 * the net_device's have been removed. */
Steve Hodgson1ab00622008-12-12 21:33:02 -08002096 cancel_work_sync(&efx->reset_work);
Ben Hutchings8ceee662008-04-27 12:55:59 +01002097
2098 efx_pci_remove_main(efx);
2099
Ben Hutchings8ceee662008-04-27 12:55:59 +01002100 efx_fini_io(efx);
2101 EFX_LOG(efx, "shutdown successful\n");
2102
2103 pci_set_drvdata(pci_dev, NULL);
2104 efx_fini_struct(efx);
2105 free_netdev(efx->net_dev);
2106};
2107
2108/* Main body of NIC initialisation
2109 * This is called at module load (or hotplug insertion, theoretically).
2110 */
2111static int efx_pci_probe_main(struct efx_nic *efx)
2112{
2113 int rc;
2114
2115 /* Do start-of-day initialisation */
2116 rc = efx_probe_all(efx);
2117 if (rc)
2118 goto fail1;
2119
2120 rc = efx_init_napi(efx);
2121 if (rc)
2122 goto fail2;
2123
Ben Hutchings8ceee662008-04-27 12:55:59 +01002124 rc = falcon_init_nic(efx);
2125 if (rc) {
2126 EFX_ERR(efx, "failed to initialise NIC\n");
Ben Hutchings278c0622009-11-23 16:05:12 +00002127 goto fail3;
Ben Hutchings8ceee662008-04-27 12:55:59 +01002128 }
2129
2130 rc = efx_init_port(efx);
2131 if (rc) {
2132 EFX_ERR(efx, "failed to initialise port\n");
Ben Hutchings278c0622009-11-23 16:05:12 +00002133 goto fail4;
Ben Hutchings8ceee662008-04-27 12:55:59 +01002134 }
2135
Ben Hutchingsbc3c90a2008-09-01 12:48:46 +01002136 efx_init_channels(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +01002137
2138 rc = falcon_init_interrupt(efx);
2139 if (rc)
Ben Hutchings278c0622009-11-23 16:05:12 +00002140 goto fail5;
Ben Hutchings8ceee662008-04-27 12:55:59 +01002141
2142 return 0;
2143
Ben Hutchings278c0622009-11-23 16:05:12 +00002144 fail5:
Ben Hutchingsbc3c90a2008-09-01 12:48:46 +01002145 efx_fini_channels(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +01002146 efx_fini_port(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +01002147 fail4:
2148 fail3:
2149 efx_fini_napi(efx);
2150 fail2:
2151 efx_remove_all(efx);
2152 fail1:
2153 return rc;
2154}
2155
2156/* NIC initialisation
2157 *
2158 * This is called at module load (or hotplug insertion,
2159 * theoretically). It sets up PCI mappings, tests and resets the NIC,
2160 * sets up and registers the network devices with the kernel and hooks
2161 * the interrupt service routine. It does not prepare the device for
2162 * transmission; this is left to the first time one of the network
2163 * interfaces is brought up (i.e. efx_net_open).
2164 */
2165static int __devinit efx_pci_probe(struct pci_dev *pci_dev,
2166 const struct pci_device_id *entry)
2167{
2168 struct efx_nic_type *type = (struct efx_nic_type *) entry->driver_data;
2169 struct net_device *net_dev;
2170 struct efx_nic *efx;
2171 int i, rc;
2172
2173 /* Allocate and initialise a struct net_device and struct efx_nic */
2174 net_dev = alloc_etherdev(sizeof(*efx));
2175 if (!net_dev)
2176 return -ENOMEM;
Ben Hutchingsb9b39b62008-05-07 12:51:12 +01002177 net_dev->features |= (NETIF_F_IP_CSUM | NETIF_F_SG |
Ben Hutchings97bc5412009-05-19 16:19:08 -07002178 NETIF_F_HIGHDMA | NETIF_F_TSO |
2179 NETIF_F_GRO);
Ben Hutchings285065632008-09-01 12:46:54 +01002180 /* Mask for features that also apply to VLAN devices */
2181 net_dev->vlan_features |= (NETIF_F_ALL_CSUM | NETIF_F_SG |
Ben Hutchings740847d2008-09-01 12:48:23 +01002182 NETIF_F_HIGHDMA | NETIF_F_TSO);
Ben Hutchings767e4682008-09-01 12:43:14 +01002183 efx = netdev_priv(net_dev);
Ben Hutchings8ceee662008-04-27 12:55:59 +01002184 pci_set_drvdata(pci_dev, efx);
2185 rc = efx_init_struct(efx, type, pci_dev, net_dev);
2186 if (rc)
2187 goto fail1;
2188
2189 EFX_INFO(efx, "Solarflare Communications NIC detected\n");
2190
2191 /* Set up basic I/O (BAR mappings etc) */
2192 rc = efx_init_io(efx);
2193 if (rc)
2194 goto fail2;
2195
2196 /* No serialisation is required with the reset path because
2197 * we're in STATE_INIT. */
2198 for (i = 0; i < 5; i++) {
2199 rc = efx_pci_probe_main(efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +01002200
2201 /* Serialise against efx_reset(). No more resets will be
2202 * scheduled since efx_stop_all() has been called, and we
2203 * have not and never have been registered with either
2204 * the rtnetlink or driverlink layers. */
Steve Hodgson1ab00622008-12-12 21:33:02 -08002205 cancel_work_sync(&efx->reset_work);
Ben Hutchings8ceee662008-04-27 12:55:59 +01002206
Steve Hodgsonfa402b22008-12-12 22:08:16 -08002207 if (rc == 0) {
2208 if (efx->reset_pending != RESET_TYPE_NONE) {
2209 /* If there was a scheduled reset during
2210 * probe, the NIC is probably hosed anyway */
2211 efx_pci_remove_main(efx);
2212 rc = -EIO;
2213 } else {
2214 break;
2215 }
2216 }
2217
Ben Hutchings8ceee662008-04-27 12:55:59 +01002218 /* Retry if a recoverably reset event has been scheduled */
2219 if ((efx->reset_pending != RESET_TYPE_INVISIBLE) &&
2220 (efx->reset_pending != RESET_TYPE_ALL))
2221 goto fail3;
2222
2223 efx->reset_pending = RESET_TYPE_NONE;
2224 }
2225
2226 if (rc) {
2227 EFX_ERR(efx, "Could not reset NIC\n");
2228 goto fail4;
2229 }
2230
2231 /* Switch to the running state before we expose the device to
2232 * the OS. This is to ensure that the initial gathering of
2233 * MAC stats succeeds. */
Ben Hutchings8ceee662008-04-27 12:55:59 +01002234 efx->state = STATE_RUNNING;
Ben Hutchings7dde5962008-12-12 22:09:38 -08002235
Ben Hutchings8ceee662008-04-27 12:55:59 +01002236 rc = efx_register_netdev(efx);
2237 if (rc)
2238 goto fail5;
2239
2240 EFX_LOG(efx, "initialisation successful\n");
Ben Hutchingsa5211bb2009-10-23 08:33:09 +00002241
2242 rtnl_lock();
2243 efx_mtd_probe(efx); /* allowed to fail */
2244 rtnl_unlock();
Ben Hutchings8ceee662008-04-27 12:55:59 +01002245 return 0;
2246
2247 fail5:
2248 efx_pci_remove_main(efx);
2249 fail4:
2250 fail3:
2251 efx_fini_io(efx);
2252 fail2:
2253 efx_fini_struct(efx);
2254 fail1:
2255 EFX_LOG(efx, "initialisation failed. rc=%d\n", rc);
2256 free_netdev(net_dev);
2257 return rc;
2258}
2259
2260static struct pci_driver efx_pci_driver = {
2261 .name = EFX_DRIVER_NAME,
2262 .id_table = efx_pci_table,
2263 .probe = efx_pci_probe,
2264 .remove = efx_pci_remove,
2265};
2266
2267/**************************************************************************
2268 *
2269 * Kernel module interface
2270 *
2271 *************************************************************************/
2272
2273module_param(interrupt_mode, uint, 0444);
2274MODULE_PARM_DESC(interrupt_mode,
2275 "Interrupt mode (0=>MSIX 1=>MSI 2=>legacy)");
2276
2277static int __init efx_init_module(void)
2278{
2279 int rc;
2280
2281 printk(KERN_INFO "Solarflare NET driver v" EFX_DRIVER_VERSION "\n");
2282
2283 rc = register_netdevice_notifier(&efx_netdev_notifier);
2284 if (rc)
2285 goto err_notifier;
2286
2287 refill_workqueue = create_workqueue("sfc_refill");
2288 if (!refill_workqueue) {
2289 rc = -ENOMEM;
2290 goto err_refill;
2291 }
Steve Hodgson1ab00622008-12-12 21:33:02 -08002292 reset_workqueue = create_singlethread_workqueue("sfc_reset");
2293 if (!reset_workqueue) {
2294 rc = -ENOMEM;
2295 goto err_reset;
2296 }
Ben Hutchings8ceee662008-04-27 12:55:59 +01002297
2298 rc = pci_register_driver(&efx_pci_driver);
2299 if (rc < 0)
2300 goto err_pci;
2301
2302 return 0;
2303
2304 err_pci:
Steve Hodgson1ab00622008-12-12 21:33:02 -08002305 destroy_workqueue(reset_workqueue);
2306 err_reset:
Ben Hutchings8ceee662008-04-27 12:55:59 +01002307 destroy_workqueue(refill_workqueue);
2308 err_refill:
2309 unregister_netdevice_notifier(&efx_netdev_notifier);
2310 err_notifier:
2311 return rc;
2312}
2313
2314static void __exit efx_exit_module(void)
2315{
2316 printk(KERN_INFO "Solarflare NET driver unloading\n");
2317
2318 pci_unregister_driver(&efx_pci_driver);
Steve Hodgson1ab00622008-12-12 21:33:02 -08002319 destroy_workqueue(reset_workqueue);
Ben Hutchings8ceee662008-04-27 12:55:59 +01002320 destroy_workqueue(refill_workqueue);
2321 unregister_netdevice_notifier(&efx_netdev_notifier);
2322
2323}
2324
2325module_init(efx_init_module);
2326module_exit(efx_exit_module);
2327
2328MODULE_AUTHOR("Michael Brown <mbrown@fensystems.co.uk> and "
2329 "Solarflare Communications");
2330MODULE_DESCRIPTION("Solarflare Communications network driver");
2331MODULE_LICENSE("GPL");
2332MODULE_DEVICE_TABLE(pci, efx_pci_table);