xref: /openbmc/linux/drivers/net/ethernet/sfc/efx.c (revision c2f3b8e3)
1874aeea5SJeff Kirsher /****************************************************************************
2874aeea5SJeff Kirsher  * Driver for Solarflare Solarstorm network controllers and boards
3874aeea5SJeff Kirsher  * Copyright 2005-2006 Fen Systems Ltd.
4874aeea5SJeff Kirsher  * Copyright 2005-2011 Solarflare Communications Inc.
5874aeea5SJeff Kirsher  *
6874aeea5SJeff Kirsher  * This program is free software; you can redistribute it and/or modify it
7874aeea5SJeff Kirsher  * under the terms of the GNU General Public License version 2 as published
8874aeea5SJeff Kirsher  * by the Free Software Foundation, incorporated herein by reference.
9874aeea5SJeff Kirsher  */
10874aeea5SJeff Kirsher 
11874aeea5SJeff Kirsher #include <linux/module.h>
12874aeea5SJeff Kirsher #include <linux/pci.h>
13874aeea5SJeff Kirsher #include <linux/netdevice.h>
14874aeea5SJeff Kirsher #include <linux/etherdevice.h>
15874aeea5SJeff Kirsher #include <linux/delay.h>
16874aeea5SJeff Kirsher #include <linux/notifier.h>
17874aeea5SJeff Kirsher #include <linux/ip.h>
18874aeea5SJeff Kirsher #include <linux/tcp.h>
19874aeea5SJeff Kirsher #include <linux/in.h>
20874aeea5SJeff Kirsher #include <linux/crc32.h>
21874aeea5SJeff Kirsher #include <linux/ethtool.h>
22874aeea5SJeff Kirsher #include <linux/topology.h>
23874aeea5SJeff Kirsher #include <linux/gfp.h>
24874aeea5SJeff Kirsher #include <linux/cpu_rmap.h>
25874aeea5SJeff Kirsher #include "net_driver.h"
26874aeea5SJeff Kirsher #include "efx.h"
27874aeea5SJeff Kirsher #include "nic.h"
28dd40781eSBen Hutchings #include "selftest.h"
29874aeea5SJeff Kirsher 
30874aeea5SJeff Kirsher #include "mcdi.h"
31874aeea5SJeff Kirsher #include "workarounds.h"
32874aeea5SJeff Kirsher 
33874aeea5SJeff Kirsher /**************************************************************************
34874aeea5SJeff Kirsher  *
35874aeea5SJeff Kirsher  * Type name strings
36874aeea5SJeff Kirsher  *
37874aeea5SJeff Kirsher  **************************************************************************
38874aeea5SJeff Kirsher  */
39874aeea5SJeff Kirsher 
40874aeea5SJeff Kirsher /* Loopback mode names (see LOOPBACK_MODE()) */
41874aeea5SJeff Kirsher const unsigned int efx_loopback_mode_max = LOOPBACK_MAX;
4218e83e4cSBen Hutchings const char *const efx_loopback_mode_names[] = {
43874aeea5SJeff Kirsher 	[LOOPBACK_NONE]		= "NONE",
44874aeea5SJeff Kirsher 	[LOOPBACK_DATA]		= "DATAPATH",
45874aeea5SJeff Kirsher 	[LOOPBACK_GMAC]		= "GMAC",
46874aeea5SJeff Kirsher 	[LOOPBACK_XGMII]	= "XGMII",
47874aeea5SJeff Kirsher 	[LOOPBACK_XGXS]		= "XGXS",
48874aeea5SJeff Kirsher 	[LOOPBACK_XAUI]		= "XAUI",
49874aeea5SJeff Kirsher 	[LOOPBACK_GMII]		= "GMII",
50874aeea5SJeff Kirsher 	[LOOPBACK_SGMII]	= "SGMII",
51874aeea5SJeff Kirsher 	[LOOPBACK_XGBR]		= "XGBR",
52874aeea5SJeff Kirsher 	[LOOPBACK_XFI]		= "XFI",
53874aeea5SJeff Kirsher 	[LOOPBACK_XAUI_FAR]	= "XAUI_FAR",
54874aeea5SJeff Kirsher 	[LOOPBACK_GMII_FAR]	= "GMII_FAR",
55874aeea5SJeff Kirsher 	[LOOPBACK_SGMII_FAR]	= "SGMII_FAR",
56874aeea5SJeff Kirsher 	[LOOPBACK_XFI_FAR]	= "XFI_FAR",
57874aeea5SJeff Kirsher 	[LOOPBACK_GPHY]		= "GPHY",
58874aeea5SJeff Kirsher 	[LOOPBACK_PHYXS]	= "PHYXS",
59874aeea5SJeff Kirsher 	[LOOPBACK_PCS]		= "PCS",
60874aeea5SJeff Kirsher 	[LOOPBACK_PMAPMD]	= "PMA/PMD",
61874aeea5SJeff Kirsher 	[LOOPBACK_XPORT]	= "XPORT",
62874aeea5SJeff Kirsher 	[LOOPBACK_XGMII_WS]	= "XGMII_WS",
63874aeea5SJeff Kirsher 	[LOOPBACK_XAUI_WS]	= "XAUI_WS",
64874aeea5SJeff Kirsher 	[LOOPBACK_XAUI_WS_FAR]  = "XAUI_WS_FAR",
65874aeea5SJeff Kirsher 	[LOOPBACK_XAUI_WS_NEAR] = "XAUI_WS_NEAR",
66874aeea5SJeff Kirsher 	[LOOPBACK_GMII_WS]	= "GMII_WS",
67874aeea5SJeff Kirsher 	[LOOPBACK_XFI_WS]	= "XFI_WS",
68874aeea5SJeff Kirsher 	[LOOPBACK_XFI_WS_FAR]	= "XFI_WS_FAR",
69874aeea5SJeff Kirsher 	[LOOPBACK_PHYXS_WS]	= "PHYXS_WS",
70874aeea5SJeff Kirsher };
71874aeea5SJeff Kirsher 
72874aeea5SJeff Kirsher const unsigned int efx_reset_type_max = RESET_TYPE_MAX;
7318e83e4cSBen Hutchings const char *const efx_reset_type_names[] = {
74874aeea5SJeff Kirsher 	[RESET_TYPE_INVISIBLE]     = "INVISIBLE",
75874aeea5SJeff Kirsher 	[RESET_TYPE_ALL]           = "ALL",
76874aeea5SJeff Kirsher 	[RESET_TYPE_WORLD]         = "WORLD",
77874aeea5SJeff Kirsher 	[RESET_TYPE_DISABLE]       = "DISABLE",
78874aeea5SJeff Kirsher 	[RESET_TYPE_TX_WATCHDOG]   = "TX_WATCHDOG",
79874aeea5SJeff Kirsher 	[RESET_TYPE_INT_ERROR]     = "INT_ERROR",
80874aeea5SJeff Kirsher 	[RESET_TYPE_RX_RECOVERY]   = "RX_RECOVERY",
81874aeea5SJeff Kirsher 	[RESET_TYPE_RX_DESC_FETCH] = "RX_DESC_FETCH",
82874aeea5SJeff Kirsher 	[RESET_TYPE_TX_DESC_FETCH] = "TX_DESC_FETCH",
83874aeea5SJeff Kirsher 	[RESET_TYPE_TX_SKIP]       = "TX_SKIP",
84874aeea5SJeff Kirsher 	[RESET_TYPE_MC_FAILURE]    = "MC_FAILURE",
85874aeea5SJeff Kirsher };
86874aeea5SJeff Kirsher 
87874aeea5SJeff Kirsher #define EFX_MAX_MTU (9 * 1024)
88874aeea5SJeff Kirsher 
89874aeea5SJeff Kirsher /* Reset workqueue. If any NIC has a hardware failure then a reset will be
90874aeea5SJeff Kirsher  * queued onto this work queue. This is not a per-nic work queue, because
91874aeea5SJeff Kirsher  * efx_reset_work() acquires the rtnl lock, so resets are naturally serialised.
92874aeea5SJeff Kirsher  */
93874aeea5SJeff Kirsher static struct workqueue_struct *reset_workqueue;
94874aeea5SJeff Kirsher 
95874aeea5SJeff Kirsher /**************************************************************************
96874aeea5SJeff Kirsher  *
97874aeea5SJeff Kirsher  * Configurable values
98874aeea5SJeff Kirsher  *
99874aeea5SJeff Kirsher  *************************************************************************/
100874aeea5SJeff Kirsher 
101874aeea5SJeff Kirsher /*
102874aeea5SJeff Kirsher  * Use separate channels for TX and RX events
103874aeea5SJeff Kirsher  *
104874aeea5SJeff Kirsher  * Set this to 1 to use separate channels for TX and RX. It allows us
105874aeea5SJeff Kirsher  * to control interrupt affinity separately for TX and RX.
106874aeea5SJeff Kirsher  *
107874aeea5SJeff Kirsher  * This is only used in MSI-X interrupt mode
108874aeea5SJeff Kirsher  */
109874aeea5SJeff Kirsher static unsigned int separate_tx_channels;
110874aeea5SJeff Kirsher module_param(separate_tx_channels, uint, 0444);
111874aeea5SJeff Kirsher MODULE_PARM_DESC(separate_tx_channels,
112874aeea5SJeff Kirsher 		 "Use separate channels for TX and RX");
113874aeea5SJeff Kirsher 
114874aeea5SJeff Kirsher /* This is the weight assigned to each of the (per-channel) virtual
115874aeea5SJeff Kirsher  * NAPI devices.
116874aeea5SJeff Kirsher  */
117874aeea5SJeff Kirsher static int napi_weight = 64;
118874aeea5SJeff Kirsher 
119874aeea5SJeff Kirsher /* This is the time (in jiffies) between invocations of the hardware
120874aeea5SJeff Kirsher  * monitor.  On Falcon-based NICs, this will:
121874aeea5SJeff Kirsher  * - Check the on-board hardware monitor;
122874aeea5SJeff Kirsher  * - Poll the link state and reconfigure the hardware as necessary.
123874aeea5SJeff Kirsher  */
124874aeea5SJeff Kirsher static unsigned int efx_monitor_interval = 1 * HZ;
125874aeea5SJeff Kirsher 
126874aeea5SJeff Kirsher /* Initial interrupt moderation settings.  They can be modified after
127874aeea5SJeff Kirsher  * module load with ethtool.
128874aeea5SJeff Kirsher  *
129874aeea5SJeff Kirsher  * The default for RX should strike a balance between increasing the
130874aeea5SJeff Kirsher  * round-trip latency and reducing overhead.
131874aeea5SJeff Kirsher  */
132874aeea5SJeff Kirsher static unsigned int rx_irq_mod_usec = 60;
133874aeea5SJeff Kirsher 
134874aeea5SJeff Kirsher /* Initial interrupt moderation settings.  They can be modified after
135874aeea5SJeff Kirsher  * module load with ethtool.
136874aeea5SJeff Kirsher  *
137874aeea5SJeff Kirsher  * This default is chosen to ensure that a 10G link does not go idle
138874aeea5SJeff Kirsher  * while a TX queue is stopped after it has become full.  A queue is
139874aeea5SJeff Kirsher  * restarted when it drops below half full.  The time this takes (assuming
140874aeea5SJeff Kirsher  * worst case 3 descriptors per packet and 1024 descriptors) is
141874aeea5SJeff Kirsher  *   512 / 3 * 1.2 = 205 usec.
142874aeea5SJeff Kirsher  */
143874aeea5SJeff Kirsher static unsigned int tx_irq_mod_usec = 150;
144874aeea5SJeff Kirsher 
145874aeea5SJeff Kirsher /* This is the first interrupt mode to try out of:
146874aeea5SJeff Kirsher  * 0 => MSI-X
147874aeea5SJeff Kirsher  * 1 => MSI
148874aeea5SJeff Kirsher  * 2 => legacy
149874aeea5SJeff Kirsher  */
150874aeea5SJeff Kirsher static unsigned int interrupt_mode;
151874aeea5SJeff Kirsher 
152874aeea5SJeff Kirsher /* This is the requested number of CPUs to use for Receive-Side Scaling (RSS),
153874aeea5SJeff Kirsher  * i.e. the number of CPUs among which we may distribute simultaneous
154874aeea5SJeff Kirsher  * interrupt handling.
155874aeea5SJeff Kirsher  *
156874aeea5SJeff Kirsher  * Cards without MSI-X will only target one CPU via legacy or MSI interrupt.
157cdb08f8fSBen Hutchings  * The default (0) means to assign an interrupt to each core.
158874aeea5SJeff Kirsher  */
159874aeea5SJeff Kirsher static unsigned int rss_cpus;
160874aeea5SJeff Kirsher module_param(rss_cpus, uint, 0444);
161874aeea5SJeff Kirsher MODULE_PARM_DESC(rss_cpus, "Number of CPUs to use for Receive-Side Scaling");
162874aeea5SJeff Kirsher 
163874aeea5SJeff Kirsher static int phy_flash_cfg;
164874aeea5SJeff Kirsher module_param(phy_flash_cfg, int, 0644);
165874aeea5SJeff Kirsher MODULE_PARM_DESC(phy_flash_cfg, "Set PHYs into reflash mode initially");
166874aeea5SJeff Kirsher 
167e7bed9c8SBen Hutchings static unsigned irq_adapt_low_thresh = 8000;
168874aeea5SJeff Kirsher module_param(irq_adapt_low_thresh, uint, 0644);
169874aeea5SJeff Kirsher MODULE_PARM_DESC(irq_adapt_low_thresh,
170874aeea5SJeff Kirsher 		 "Threshold score for reducing IRQ moderation");
171874aeea5SJeff Kirsher 
172e7bed9c8SBen Hutchings static unsigned irq_adapt_high_thresh = 16000;
173874aeea5SJeff Kirsher module_param(irq_adapt_high_thresh, uint, 0644);
174874aeea5SJeff Kirsher MODULE_PARM_DESC(irq_adapt_high_thresh,
175874aeea5SJeff Kirsher 		 "Threshold score for increasing IRQ moderation");
176874aeea5SJeff Kirsher 
177874aeea5SJeff Kirsher static unsigned debug = (NETIF_MSG_DRV | NETIF_MSG_PROBE |
178874aeea5SJeff Kirsher 			 NETIF_MSG_LINK | NETIF_MSG_IFDOWN |
179874aeea5SJeff Kirsher 			 NETIF_MSG_IFUP | NETIF_MSG_RX_ERR |
180874aeea5SJeff Kirsher 			 NETIF_MSG_TX_ERR | NETIF_MSG_HW);
181874aeea5SJeff Kirsher module_param(debug, uint, 0);
182874aeea5SJeff Kirsher MODULE_PARM_DESC(debug, "Bitmapped debugging message enable value");
183874aeea5SJeff Kirsher 
184874aeea5SJeff Kirsher /**************************************************************************
185874aeea5SJeff Kirsher  *
186874aeea5SJeff Kirsher  * Utility functions and prototypes
187874aeea5SJeff Kirsher  *
188874aeea5SJeff Kirsher  *************************************************************************/
189874aeea5SJeff Kirsher 
1907f967c01SBen Hutchings static void efx_start_interrupts(struct efx_nic *efx, bool may_keep_eventq);
1917f967c01SBen Hutchings static void efx_stop_interrupts(struct efx_nic *efx, bool may_keep_eventq);
1927f967c01SBen Hutchings static void efx_remove_channel(struct efx_channel *channel);
193874aeea5SJeff Kirsher static void efx_remove_channels(struct efx_nic *efx);
1947f967c01SBen Hutchings static const struct efx_channel_type efx_default_channel_type;
195874aeea5SJeff Kirsher static void efx_remove_port(struct efx_nic *efx);
1967f967c01SBen Hutchings static void efx_init_napi_channel(struct efx_channel *channel);
197874aeea5SJeff Kirsher static void efx_fini_napi(struct efx_nic *efx);
198874aeea5SJeff Kirsher static void efx_fini_napi_channel(struct efx_channel *channel);
199874aeea5SJeff Kirsher static void efx_fini_struct(struct efx_nic *efx);
200874aeea5SJeff Kirsher static void efx_start_all(struct efx_nic *efx);
201874aeea5SJeff Kirsher static void efx_stop_all(struct efx_nic *efx);
202874aeea5SJeff Kirsher 
203874aeea5SJeff Kirsher #define EFX_ASSERT_RESET_SERIALISED(efx)		\
204874aeea5SJeff Kirsher 	do {						\
205f16aeea0SBen Hutchings 		if ((efx->state == STATE_READY) ||	\
206874aeea5SJeff Kirsher 		    (efx->state == STATE_DISABLED))	\
207874aeea5SJeff Kirsher 			ASSERT_RTNL();			\
208874aeea5SJeff Kirsher 	} while (0)
209874aeea5SJeff Kirsher 
2108b7325b4SBen Hutchings static int efx_check_disabled(struct efx_nic *efx)
2118b7325b4SBen Hutchings {
2128b7325b4SBen Hutchings 	if (efx->state == STATE_DISABLED) {
2138b7325b4SBen Hutchings 		netif_err(efx, drv, efx->net_dev,
2148b7325b4SBen Hutchings 			  "device is disabled due to earlier errors\n");
2158b7325b4SBen Hutchings 		return -EIO;
2168b7325b4SBen Hutchings 	}
2178b7325b4SBen Hutchings 	return 0;
2188b7325b4SBen Hutchings }
2198b7325b4SBen Hutchings 
220874aeea5SJeff Kirsher /**************************************************************************
221874aeea5SJeff Kirsher  *
222874aeea5SJeff Kirsher  * Event queue processing
223874aeea5SJeff Kirsher  *
224874aeea5SJeff Kirsher  *************************************************************************/
225874aeea5SJeff Kirsher 
226874aeea5SJeff Kirsher /* Process channel's event queue
227874aeea5SJeff Kirsher  *
228874aeea5SJeff Kirsher  * This function is responsible for processing the event queue of a
229874aeea5SJeff Kirsher  * single channel.  The caller must guarantee that this function will
230874aeea5SJeff Kirsher  * never be concurrently called more than once on the same channel,
231874aeea5SJeff Kirsher  * though different channels may be being processed concurrently.
232874aeea5SJeff Kirsher  */
233874aeea5SJeff Kirsher static int efx_process_channel(struct efx_channel *channel, int budget)
234874aeea5SJeff Kirsher {
235874aeea5SJeff Kirsher 	int spent;
236874aeea5SJeff Kirsher 
2379f2cb71cSBen Hutchings 	if (unlikely(!channel->enabled))
238874aeea5SJeff Kirsher 		return 0;
239874aeea5SJeff Kirsher 
240874aeea5SJeff Kirsher 	spent = efx_nic_process_eventq(channel, budget);
241d9ab7007SBen Hutchings 	if (spent && efx_channel_has_rx_queue(channel)) {
242d9ab7007SBen Hutchings 		struct efx_rx_queue *rx_queue =
243d9ab7007SBen Hutchings 			efx_channel_get_rx_queue(channel);
244874aeea5SJeff Kirsher 
245874aeea5SJeff Kirsher 		/* Deliver last RX packet. */
246874aeea5SJeff Kirsher 		if (channel->rx_pkt) {
247db339569SBen Hutchings 			__efx_rx_packet(channel, channel->rx_pkt);
248874aeea5SJeff Kirsher 			channel->rx_pkt = NULL;
249874aeea5SJeff Kirsher 		}
2509f2cb71cSBen Hutchings 		if (rx_queue->enabled) {
251874aeea5SJeff Kirsher 			efx_rx_strategy(channel);
252d9ab7007SBen Hutchings 			efx_fast_push_rx_descriptors(rx_queue);
253d9ab7007SBen Hutchings 		}
2549f2cb71cSBen Hutchings 	}
255874aeea5SJeff Kirsher 
256874aeea5SJeff Kirsher 	return spent;
257874aeea5SJeff Kirsher }
258874aeea5SJeff Kirsher 
259874aeea5SJeff Kirsher /* Mark channel as finished processing
260874aeea5SJeff Kirsher  *
261874aeea5SJeff Kirsher  * Note that since we will not receive further interrupts for this
262874aeea5SJeff Kirsher  * channel before we finish processing and call the eventq_read_ack()
263874aeea5SJeff Kirsher  * method, there is no need to use the interrupt hold-off timers.
264874aeea5SJeff Kirsher  */
265874aeea5SJeff Kirsher static inline void efx_channel_processed(struct efx_channel *channel)
266874aeea5SJeff Kirsher {
267874aeea5SJeff Kirsher 	/* The interrupt handler for this channel may set work_pending
268874aeea5SJeff Kirsher 	 * as soon as we acknowledge the events we've seen.  Make sure
269874aeea5SJeff Kirsher 	 * it's cleared before then. */
270874aeea5SJeff Kirsher 	channel->work_pending = false;
271874aeea5SJeff Kirsher 	smp_wmb();
272874aeea5SJeff Kirsher 
273874aeea5SJeff Kirsher 	efx_nic_eventq_read_ack(channel);
274874aeea5SJeff Kirsher }
275874aeea5SJeff Kirsher 
276874aeea5SJeff Kirsher /* NAPI poll handler
277874aeea5SJeff Kirsher  *
278874aeea5SJeff Kirsher  * NAPI guarantees serialisation of polls of the same device, which
279874aeea5SJeff Kirsher  * provides the guarantee required by efx_process_channel().
280874aeea5SJeff Kirsher  */
281874aeea5SJeff Kirsher static int efx_poll(struct napi_struct *napi, int budget)
282874aeea5SJeff Kirsher {
283874aeea5SJeff Kirsher 	struct efx_channel *channel =
284874aeea5SJeff Kirsher 		container_of(napi, struct efx_channel, napi_str);
285874aeea5SJeff Kirsher 	struct efx_nic *efx = channel->efx;
286874aeea5SJeff Kirsher 	int spent;
287874aeea5SJeff Kirsher 
288874aeea5SJeff Kirsher 	netif_vdbg(efx, intr, efx->net_dev,
289874aeea5SJeff Kirsher 		   "channel %d NAPI poll executing on CPU %d\n",
290874aeea5SJeff Kirsher 		   channel->channel, raw_smp_processor_id());
291874aeea5SJeff Kirsher 
292874aeea5SJeff Kirsher 	spent = efx_process_channel(channel, budget);
293874aeea5SJeff Kirsher 
294874aeea5SJeff Kirsher 	if (spent < budget) {
2959d9a6973SBen Hutchings 		if (efx_channel_has_rx_queue(channel) &&
296874aeea5SJeff Kirsher 		    efx->irq_rx_adaptive &&
297874aeea5SJeff Kirsher 		    unlikely(++channel->irq_count == 1000)) {
298874aeea5SJeff Kirsher 			if (unlikely(channel->irq_mod_score <
299874aeea5SJeff Kirsher 				     irq_adapt_low_thresh)) {
300874aeea5SJeff Kirsher 				if (channel->irq_moderation > 1) {
301874aeea5SJeff Kirsher 					channel->irq_moderation -= 1;
302874aeea5SJeff Kirsher 					efx->type->push_irq_moderation(channel);
303874aeea5SJeff Kirsher 				}
304874aeea5SJeff Kirsher 			} else if (unlikely(channel->irq_mod_score >
305874aeea5SJeff Kirsher 					    irq_adapt_high_thresh)) {
306874aeea5SJeff Kirsher 				if (channel->irq_moderation <
307874aeea5SJeff Kirsher 				    efx->irq_rx_moderation) {
308874aeea5SJeff Kirsher 					channel->irq_moderation += 1;
309874aeea5SJeff Kirsher 					efx->type->push_irq_moderation(channel);
310874aeea5SJeff Kirsher 				}
311874aeea5SJeff Kirsher 			}
312874aeea5SJeff Kirsher 			channel->irq_count = 0;
313874aeea5SJeff Kirsher 			channel->irq_mod_score = 0;
314874aeea5SJeff Kirsher 		}
315874aeea5SJeff Kirsher 
316874aeea5SJeff Kirsher 		efx_filter_rfs_expire(channel);
317874aeea5SJeff Kirsher 
318874aeea5SJeff Kirsher 		/* There is no race here; although napi_disable() will
319874aeea5SJeff Kirsher 		 * only wait for napi_complete(), this isn't a problem
320874aeea5SJeff Kirsher 		 * since efx_channel_processed() will have no effect if
321874aeea5SJeff Kirsher 		 * interrupts have already been disabled.
322874aeea5SJeff Kirsher 		 */
323874aeea5SJeff Kirsher 		napi_complete(napi);
324874aeea5SJeff Kirsher 		efx_channel_processed(channel);
325874aeea5SJeff Kirsher 	}
326874aeea5SJeff Kirsher 
327874aeea5SJeff Kirsher 	return spent;
328874aeea5SJeff Kirsher }
329874aeea5SJeff Kirsher 
330874aeea5SJeff Kirsher /* Process the eventq of the specified channel immediately on this CPU
331874aeea5SJeff Kirsher  *
332874aeea5SJeff Kirsher  * Disable hardware generated interrupts, wait for any existing
333874aeea5SJeff Kirsher  * processing to finish, then directly poll (and ack ) the eventq.
334874aeea5SJeff Kirsher  * Finally reenable NAPI and interrupts.
335874aeea5SJeff Kirsher  *
336874aeea5SJeff Kirsher  * This is for use only during a loopback self-test.  It must not
337874aeea5SJeff Kirsher  * deliver any packets up the stack as this can result in deadlock.
338874aeea5SJeff Kirsher  */
339874aeea5SJeff Kirsher void efx_process_channel_now(struct efx_channel *channel)
340874aeea5SJeff Kirsher {
341874aeea5SJeff Kirsher 	struct efx_nic *efx = channel->efx;
342874aeea5SJeff Kirsher 
343874aeea5SJeff Kirsher 	BUG_ON(channel->channel >= efx->n_channels);
344874aeea5SJeff Kirsher 	BUG_ON(!channel->enabled);
345874aeea5SJeff Kirsher 	BUG_ON(!efx->loopback_selftest);
346874aeea5SJeff Kirsher 
347874aeea5SJeff Kirsher 	/* Disable interrupts and wait for ISRs to complete */
348874aeea5SJeff Kirsher 	efx_nic_disable_interrupts(efx);
349874aeea5SJeff Kirsher 	if (efx->legacy_irq) {
350874aeea5SJeff Kirsher 		synchronize_irq(efx->legacy_irq);
351874aeea5SJeff Kirsher 		efx->legacy_irq_enabled = false;
352874aeea5SJeff Kirsher 	}
353874aeea5SJeff Kirsher 	if (channel->irq)
354874aeea5SJeff Kirsher 		synchronize_irq(channel->irq);
355874aeea5SJeff Kirsher 
356874aeea5SJeff Kirsher 	/* Wait for any NAPI processing to complete */
357874aeea5SJeff Kirsher 	napi_disable(&channel->napi_str);
358874aeea5SJeff Kirsher 
359874aeea5SJeff Kirsher 	/* Poll the channel */
360874aeea5SJeff Kirsher 	efx_process_channel(channel, channel->eventq_mask + 1);
361874aeea5SJeff Kirsher 
362874aeea5SJeff Kirsher 	/* Ack the eventq. This may cause an interrupt to be generated
363874aeea5SJeff Kirsher 	 * when they are reenabled */
364874aeea5SJeff Kirsher 	efx_channel_processed(channel);
365874aeea5SJeff Kirsher 
366874aeea5SJeff Kirsher 	napi_enable(&channel->napi_str);
367874aeea5SJeff Kirsher 	if (efx->legacy_irq)
368874aeea5SJeff Kirsher 		efx->legacy_irq_enabled = true;
369874aeea5SJeff Kirsher 	efx_nic_enable_interrupts(efx);
370874aeea5SJeff Kirsher }
371874aeea5SJeff Kirsher 
372874aeea5SJeff Kirsher /* Create event queue
373874aeea5SJeff Kirsher  * Event queue memory allocations are done only once.  If the channel
374874aeea5SJeff Kirsher  * is reset, the memory buffer will be reused; this guards against
375874aeea5SJeff Kirsher  * errors during channel reset and also simplifies interrupt handling.
376874aeea5SJeff Kirsher  */
377874aeea5SJeff Kirsher static int efx_probe_eventq(struct efx_channel *channel)
378874aeea5SJeff Kirsher {
379874aeea5SJeff Kirsher 	struct efx_nic *efx = channel->efx;
380874aeea5SJeff Kirsher 	unsigned long entries;
381874aeea5SJeff Kirsher 
38286ee5302SBen Hutchings 	netif_dbg(efx, probe, efx->net_dev,
383874aeea5SJeff Kirsher 		  "chan %d create event queue\n", channel->channel);
384874aeea5SJeff Kirsher 
385874aeea5SJeff Kirsher 	/* Build an event queue with room for one event per tx and rx buffer,
386874aeea5SJeff Kirsher 	 * plus some extra for link state events and MCDI completions. */
387874aeea5SJeff Kirsher 	entries = roundup_pow_of_two(efx->rxq_entries + efx->txq_entries + 128);
388874aeea5SJeff Kirsher 	EFX_BUG_ON_PARANOID(entries > EFX_MAX_EVQ_SIZE);
389874aeea5SJeff Kirsher 	channel->eventq_mask = max(entries, EFX_MIN_EVQ_SIZE) - 1;
390874aeea5SJeff Kirsher 
391874aeea5SJeff Kirsher 	return efx_nic_probe_eventq(channel);
392874aeea5SJeff Kirsher }
393874aeea5SJeff Kirsher 
394874aeea5SJeff Kirsher /* Prepare channel's event queue */
395874aeea5SJeff Kirsher static void efx_init_eventq(struct efx_channel *channel)
396874aeea5SJeff Kirsher {
397874aeea5SJeff Kirsher 	netif_dbg(channel->efx, drv, channel->efx->net_dev,
398874aeea5SJeff Kirsher 		  "chan %d init event queue\n", channel->channel);
399874aeea5SJeff Kirsher 
400874aeea5SJeff Kirsher 	channel->eventq_read_ptr = 0;
401874aeea5SJeff Kirsher 
402874aeea5SJeff Kirsher 	efx_nic_init_eventq(channel);
403874aeea5SJeff Kirsher }
404874aeea5SJeff Kirsher 
4059f2cb71cSBen Hutchings /* Enable event queue processing and NAPI */
4069f2cb71cSBen Hutchings static void efx_start_eventq(struct efx_channel *channel)
4079f2cb71cSBen Hutchings {
4089f2cb71cSBen Hutchings 	netif_dbg(channel->efx, ifup, channel->efx->net_dev,
4099f2cb71cSBen Hutchings 		  "chan %d start event queue\n", channel->channel);
4109f2cb71cSBen Hutchings 
4119f2cb71cSBen Hutchings 	/* The interrupt handler for this channel may set work_pending
4129f2cb71cSBen Hutchings 	 * as soon as we enable it.  Make sure it's cleared before
4139f2cb71cSBen Hutchings 	 * then.  Similarly, make sure it sees the enabled flag set.
4149f2cb71cSBen Hutchings 	 */
4159f2cb71cSBen Hutchings 	channel->work_pending = false;
4169f2cb71cSBen Hutchings 	channel->enabled = true;
4179f2cb71cSBen Hutchings 	smp_wmb();
4189f2cb71cSBen Hutchings 
4199f2cb71cSBen Hutchings 	napi_enable(&channel->napi_str);
4209f2cb71cSBen Hutchings 	efx_nic_eventq_read_ack(channel);
4219f2cb71cSBen Hutchings }
4229f2cb71cSBen Hutchings 
4239f2cb71cSBen Hutchings /* Disable event queue processing and NAPI */
4249f2cb71cSBen Hutchings static void efx_stop_eventq(struct efx_channel *channel)
4259f2cb71cSBen Hutchings {
4269f2cb71cSBen Hutchings 	if (!channel->enabled)
4279f2cb71cSBen Hutchings 		return;
4289f2cb71cSBen Hutchings 
4299f2cb71cSBen Hutchings 	napi_disable(&channel->napi_str);
4309f2cb71cSBen Hutchings 	channel->enabled = false;
4319f2cb71cSBen Hutchings }
4329f2cb71cSBen Hutchings 
433874aeea5SJeff Kirsher static void efx_fini_eventq(struct efx_channel *channel)
434874aeea5SJeff Kirsher {
435874aeea5SJeff Kirsher 	netif_dbg(channel->efx, drv, channel->efx->net_dev,
436874aeea5SJeff Kirsher 		  "chan %d fini event queue\n", channel->channel);
437874aeea5SJeff Kirsher 
438874aeea5SJeff Kirsher 	efx_nic_fini_eventq(channel);
439874aeea5SJeff Kirsher }
440874aeea5SJeff Kirsher 
441874aeea5SJeff Kirsher static void efx_remove_eventq(struct efx_channel *channel)
442874aeea5SJeff Kirsher {
443874aeea5SJeff Kirsher 	netif_dbg(channel->efx, drv, channel->efx->net_dev,
444874aeea5SJeff Kirsher 		  "chan %d remove event queue\n", channel->channel);
445874aeea5SJeff Kirsher 
446874aeea5SJeff Kirsher 	efx_nic_remove_eventq(channel);
447874aeea5SJeff Kirsher }
448874aeea5SJeff Kirsher 
449874aeea5SJeff Kirsher /**************************************************************************
450874aeea5SJeff Kirsher  *
451874aeea5SJeff Kirsher  * Channel handling
452874aeea5SJeff Kirsher  *
453874aeea5SJeff Kirsher  *************************************************************************/
454874aeea5SJeff Kirsher 
4557f967c01SBen Hutchings /* Allocate and initialise a channel structure. */
456874aeea5SJeff Kirsher static struct efx_channel *
457874aeea5SJeff Kirsher efx_alloc_channel(struct efx_nic *efx, int i, struct efx_channel *old_channel)
458874aeea5SJeff Kirsher {
459874aeea5SJeff Kirsher 	struct efx_channel *channel;
460874aeea5SJeff Kirsher 	struct efx_rx_queue *rx_queue;
461874aeea5SJeff Kirsher 	struct efx_tx_queue *tx_queue;
462874aeea5SJeff Kirsher 	int j;
463874aeea5SJeff Kirsher 
4647f967c01SBen Hutchings 	channel = kzalloc(sizeof(*channel), GFP_KERNEL);
4657f967c01SBen Hutchings 	if (!channel)
4667f967c01SBen Hutchings 		return NULL;
4677f967c01SBen Hutchings 
4687f967c01SBen Hutchings 	channel->efx = efx;
4697f967c01SBen Hutchings 	channel->channel = i;
4707f967c01SBen Hutchings 	channel->type = &efx_default_channel_type;
4717f967c01SBen Hutchings 
4727f967c01SBen Hutchings 	for (j = 0; j < EFX_TXQ_TYPES; j++) {
4737f967c01SBen Hutchings 		tx_queue = &channel->tx_queue[j];
4747f967c01SBen Hutchings 		tx_queue->efx = efx;
4757f967c01SBen Hutchings 		tx_queue->queue = i * EFX_TXQ_TYPES + j;
4767f967c01SBen Hutchings 		tx_queue->channel = channel;
4777f967c01SBen Hutchings 	}
4787f967c01SBen Hutchings 
4797f967c01SBen Hutchings 	rx_queue = &channel->rx_queue;
4807f967c01SBen Hutchings 	rx_queue->efx = efx;
4817f967c01SBen Hutchings 	setup_timer(&rx_queue->slow_fill, efx_rx_slow_fill,
4827f967c01SBen Hutchings 		    (unsigned long)rx_queue);
4837f967c01SBen Hutchings 
4847f967c01SBen Hutchings 	return channel;
4857f967c01SBen Hutchings }
4867f967c01SBen Hutchings 
4877f967c01SBen Hutchings /* Allocate and initialise a channel structure, copying parameters
4887f967c01SBen Hutchings  * (but not resources) from an old channel structure.
4897f967c01SBen Hutchings  */
4907f967c01SBen Hutchings static struct efx_channel *
4917f967c01SBen Hutchings efx_copy_channel(const struct efx_channel *old_channel)
4927f967c01SBen Hutchings {
4937f967c01SBen Hutchings 	struct efx_channel *channel;
4947f967c01SBen Hutchings 	struct efx_rx_queue *rx_queue;
4957f967c01SBen Hutchings 	struct efx_tx_queue *tx_queue;
4967f967c01SBen Hutchings 	int j;
4977f967c01SBen Hutchings 
498874aeea5SJeff Kirsher 	channel = kmalloc(sizeof(*channel), GFP_KERNEL);
499874aeea5SJeff Kirsher 	if (!channel)
500874aeea5SJeff Kirsher 		return NULL;
501874aeea5SJeff Kirsher 
502874aeea5SJeff Kirsher 	*channel = *old_channel;
503874aeea5SJeff Kirsher 
504874aeea5SJeff Kirsher 	channel->napi_dev = NULL;
505874aeea5SJeff Kirsher 	memset(&channel->eventq, 0, sizeof(channel->eventq));
506874aeea5SJeff Kirsher 
507874aeea5SJeff Kirsher 	for (j = 0; j < EFX_TXQ_TYPES; j++) {
508874aeea5SJeff Kirsher 		tx_queue = &channel->tx_queue[j];
509874aeea5SJeff Kirsher 		if (tx_queue->channel)
510874aeea5SJeff Kirsher 			tx_queue->channel = channel;
511874aeea5SJeff Kirsher 		tx_queue->buffer = NULL;
512874aeea5SJeff Kirsher 		memset(&tx_queue->txd, 0, sizeof(tx_queue->txd));
513874aeea5SJeff Kirsher 	}
514874aeea5SJeff Kirsher 
515874aeea5SJeff Kirsher 	rx_queue = &channel->rx_queue;
5167f967c01SBen Hutchings 	rx_queue->buffer = NULL;
5177f967c01SBen Hutchings 	memset(&rx_queue->rxd, 0, sizeof(rx_queue->rxd));
518874aeea5SJeff Kirsher 	setup_timer(&rx_queue->slow_fill, efx_rx_slow_fill,
519874aeea5SJeff Kirsher 		    (unsigned long)rx_queue);
520874aeea5SJeff Kirsher 
521874aeea5SJeff Kirsher 	return channel;
522874aeea5SJeff Kirsher }
523874aeea5SJeff Kirsher 
524874aeea5SJeff Kirsher static int efx_probe_channel(struct efx_channel *channel)
525874aeea5SJeff Kirsher {
526874aeea5SJeff Kirsher 	struct efx_tx_queue *tx_queue;
527874aeea5SJeff Kirsher 	struct efx_rx_queue *rx_queue;
528874aeea5SJeff Kirsher 	int rc;
529874aeea5SJeff Kirsher 
530874aeea5SJeff Kirsher 	netif_dbg(channel->efx, probe, channel->efx->net_dev,
531874aeea5SJeff Kirsher 		  "creating channel %d\n", channel->channel);
532874aeea5SJeff Kirsher 
5337f967c01SBen Hutchings 	rc = channel->type->pre_probe(channel);
5347f967c01SBen Hutchings 	if (rc)
5357f967c01SBen Hutchings 		goto fail;
5367f967c01SBen Hutchings 
537874aeea5SJeff Kirsher 	rc = efx_probe_eventq(channel);
538874aeea5SJeff Kirsher 	if (rc)
5397f967c01SBen Hutchings 		goto fail;
540874aeea5SJeff Kirsher 
541874aeea5SJeff Kirsher 	efx_for_each_channel_tx_queue(tx_queue, channel) {
542874aeea5SJeff Kirsher 		rc = efx_probe_tx_queue(tx_queue);
543874aeea5SJeff Kirsher 		if (rc)
5447f967c01SBen Hutchings 			goto fail;
545874aeea5SJeff Kirsher 	}
546874aeea5SJeff Kirsher 
547874aeea5SJeff Kirsher 	efx_for_each_channel_rx_queue(rx_queue, channel) {
548874aeea5SJeff Kirsher 		rc = efx_probe_rx_queue(rx_queue);
549874aeea5SJeff Kirsher 		if (rc)
5507f967c01SBen Hutchings 			goto fail;
551874aeea5SJeff Kirsher 	}
552874aeea5SJeff Kirsher 
553874aeea5SJeff Kirsher 	channel->n_rx_frm_trunc = 0;
554874aeea5SJeff Kirsher 
555874aeea5SJeff Kirsher 	return 0;
556874aeea5SJeff Kirsher 
5577f967c01SBen Hutchings fail:
5587f967c01SBen Hutchings 	efx_remove_channel(channel);
559874aeea5SJeff Kirsher 	return rc;
560874aeea5SJeff Kirsher }
561874aeea5SJeff Kirsher 
5627f967c01SBen Hutchings static void
5637f967c01SBen Hutchings efx_get_channel_name(struct efx_channel *channel, char *buf, size_t len)
5647f967c01SBen Hutchings {
5657f967c01SBen Hutchings 	struct efx_nic *efx = channel->efx;
5667f967c01SBen Hutchings 	const char *type;
5677f967c01SBen Hutchings 	int number;
5687f967c01SBen Hutchings 
5697f967c01SBen Hutchings 	number = channel->channel;
5707f967c01SBen Hutchings 	if (efx->tx_channel_offset == 0) {
5717f967c01SBen Hutchings 		type = "";
5727f967c01SBen Hutchings 	} else if (channel->channel < efx->tx_channel_offset) {
5737f967c01SBen Hutchings 		type = "-rx";
5747f967c01SBen Hutchings 	} else {
5757f967c01SBen Hutchings 		type = "-tx";
5767f967c01SBen Hutchings 		number -= efx->tx_channel_offset;
5777f967c01SBen Hutchings 	}
5787f967c01SBen Hutchings 	snprintf(buf, len, "%s%s-%d", efx->name, type, number);
5797f967c01SBen Hutchings }
580874aeea5SJeff Kirsher 
581874aeea5SJeff Kirsher static void efx_set_channel_names(struct efx_nic *efx)
582874aeea5SJeff Kirsher {
583874aeea5SJeff Kirsher 	struct efx_channel *channel;
584874aeea5SJeff Kirsher 
5857f967c01SBen Hutchings 	efx_for_each_channel(channel, efx)
5867f967c01SBen Hutchings 		channel->type->get_name(channel,
5877f967c01SBen Hutchings 					efx->channel_name[channel->channel],
5887f967c01SBen Hutchings 					sizeof(efx->channel_name[0]));
589874aeea5SJeff Kirsher }
590874aeea5SJeff Kirsher 
591874aeea5SJeff Kirsher static int efx_probe_channels(struct efx_nic *efx)
592874aeea5SJeff Kirsher {
593874aeea5SJeff Kirsher 	struct efx_channel *channel;
594874aeea5SJeff Kirsher 	int rc;
595874aeea5SJeff Kirsher 
596874aeea5SJeff Kirsher 	/* Restart special buffer allocation */
597874aeea5SJeff Kirsher 	efx->next_buffer_table = 0;
598874aeea5SJeff Kirsher 
599c92aaff1SBen Hutchings 	/* Probe channels in reverse, so that any 'extra' channels
600c92aaff1SBen Hutchings 	 * use the start of the buffer table. This allows the traffic
601c92aaff1SBen Hutchings 	 * channels to be resized without moving them or wasting the
602c92aaff1SBen Hutchings 	 * entries before them.
603c92aaff1SBen Hutchings 	 */
604c92aaff1SBen Hutchings 	efx_for_each_channel_rev(channel, efx) {
605874aeea5SJeff Kirsher 		rc = efx_probe_channel(channel);
606874aeea5SJeff Kirsher 		if (rc) {
607874aeea5SJeff Kirsher 			netif_err(efx, probe, efx->net_dev,
608874aeea5SJeff Kirsher 				  "failed to create channel %d\n",
609874aeea5SJeff Kirsher 				  channel->channel);
610874aeea5SJeff Kirsher 			goto fail;
611874aeea5SJeff Kirsher 		}
612874aeea5SJeff Kirsher 	}
613874aeea5SJeff Kirsher 	efx_set_channel_names(efx);
614874aeea5SJeff Kirsher 
615874aeea5SJeff Kirsher 	return 0;
616874aeea5SJeff Kirsher 
617874aeea5SJeff Kirsher fail:
618874aeea5SJeff Kirsher 	efx_remove_channels(efx);
619874aeea5SJeff Kirsher 	return rc;
620874aeea5SJeff Kirsher }
621874aeea5SJeff Kirsher 
622874aeea5SJeff Kirsher /* Channels are shutdown and reinitialised whilst the NIC is running
623874aeea5SJeff Kirsher  * to propagate configuration changes (mtu, checksum offload), or
624874aeea5SJeff Kirsher  * to clear hardware error conditions
625874aeea5SJeff Kirsher  */
6269f2cb71cSBen Hutchings static void efx_start_datapath(struct efx_nic *efx)
627874aeea5SJeff Kirsher {
628874aeea5SJeff Kirsher 	struct efx_tx_queue *tx_queue;
629874aeea5SJeff Kirsher 	struct efx_rx_queue *rx_queue;
630874aeea5SJeff Kirsher 	struct efx_channel *channel;
631874aeea5SJeff Kirsher 
632874aeea5SJeff Kirsher 	/* Calculate the rx buffer allocation parameters required to
633874aeea5SJeff Kirsher 	 * support the current MTU, including padding for header
634874aeea5SJeff Kirsher 	 * alignment and overruns.
635874aeea5SJeff Kirsher 	 */
636874aeea5SJeff Kirsher 	efx->rx_buffer_len = (max(EFX_PAGE_IP_ALIGN, NET_IP_ALIGN) +
637874aeea5SJeff Kirsher 			      EFX_MAX_FRAME_LEN(efx->net_dev->mtu) +
638874aeea5SJeff Kirsher 			      efx->type->rx_buffer_hash_size +
639874aeea5SJeff Kirsher 			      efx->type->rx_buffer_padding);
640874aeea5SJeff Kirsher 	efx->rx_buffer_order = get_order(efx->rx_buffer_len +
641874aeea5SJeff Kirsher 					 sizeof(struct efx_rx_page_state));
642874aeea5SJeff Kirsher 
64314bf718fSBen Hutchings 	/* We must keep at least one descriptor in a TX ring empty.
64414bf718fSBen Hutchings 	 * We could avoid this when the queue size does not exactly
64514bf718fSBen Hutchings 	 * match the hardware ring size, but it's not that important.
64614bf718fSBen Hutchings 	 * Therefore we stop the queue when one more skb might fill
64714bf718fSBen Hutchings 	 * the ring completely.  We wake it when half way back to
64814bf718fSBen Hutchings 	 * empty.
64914bf718fSBen Hutchings 	 */
65014bf718fSBen Hutchings 	efx->txq_stop_thresh = efx->txq_entries - efx_tx_max_skb_descs(efx);
65114bf718fSBen Hutchings 	efx->txq_wake_thresh = efx->txq_stop_thresh / 2;
65214bf718fSBen Hutchings 
653874aeea5SJeff Kirsher 	/* Initialise the channels */
654874aeea5SJeff Kirsher 	efx_for_each_channel(channel, efx) {
655874aeea5SJeff Kirsher 		efx_for_each_channel_tx_queue(tx_queue, channel)
656874aeea5SJeff Kirsher 			efx_init_tx_queue(tx_queue);
657874aeea5SJeff Kirsher 
658874aeea5SJeff Kirsher 		/* The rx buffer allocation strategy is MTU dependent */
659874aeea5SJeff Kirsher 		efx_rx_strategy(channel);
660874aeea5SJeff Kirsher 
6619f2cb71cSBen Hutchings 		efx_for_each_channel_rx_queue(rx_queue, channel) {
662874aeea5SJeff Kirsher 			efx_init_rx_queue(rx_queue);
6639f2cb71cSBen Hutchings 			efx_nic_generate_fill_event(rx_queue);
6649f2cb71cSBen Hutchings 		}
665874aeea5SJeff Kirsher 
666874aeea5SJeff Kirsher 		WARN_ON(channel->rx_pkt != NULL);
667874aeea5SJeff Kirsher 		efx_rx_strategy(channel);
668874aeea5SJeff Kirsher 	}
6699f2cb71cSBen Hutchings 
6709f2cb71cSBen Hutchings 	if (netif_device_present(efx->net_dev))
6719f2cb71cSBen Hutchings 		netif_tx_wake_all_queues(efx->net_dev);
672874aeea5SJeff Kirsher }
673874aeea5SJeff Kirsher 
6749f2cb71cSBen Hutchings static void efx_stop_datapath(struct efx_nic *efx)
675874aeea5SJeff Kirsher {
676874aeea5SJeff Kirsher 	struct efx_channel *channel;
677874aeea5SJeff Kirsher 	struct efx_tx_queue *tx_queue;
678874aeea5SJeff Kirsher 	struct efx_rx_queue *rx_queue;
6793dca9d2dSStuart Hodgson 	struct pci_dev *dev = efx->pci_dev;
680874aeea5SJeff Kirsher 	int rc;
681874aeea5SJeff Kirsher 
682874aeea5SJeff Kirsher 	EFX_ASSERT_RESET_SERIALISED(efx);
683874aeea5SJeff Kirsher 	BUG_ON(efx->port_enabled);
684874aeea5SJeff Kirsher 
6853dca9d2dSStuart Hodgson 	/* Only perform flush if dma is enabled */
6863dca9d2dSStuart Hodgson 	if (dev->is_busmaster) {
687874aeea5SJeff Kirsher 		rc = efx_nic_flush_queues(efx);
6883dca9d2dSStuart Hodgson 
689874aeea5SJeff Kirsher 		if (rc && EFX_WORKAROUND_7803(efx)) {
690874aeea5SJeff Kirsher 			/* Schedule a reset to recover from the flush failure. The
691874aeea5SJeff Kirsher 			 * descriptor caches reference memory we're about to free,
692874aeea5SJeff Kirsher 			 * but falcon_reconfigure_mac_wrapper() won't reconnect
693874aeea5SJeff Kirsher 			 * the MACs because of the pending reset. */
694874aeea5SJeff Kirsher 			netif_err(efx, drv, efx->net_dev,
695874aeea5SJeff Kirsher 				  "Resetting to recover from flush failure\n");
696874aeea5SJeff Kirsher 			efx_schedule_reset(efx, RESET_TYPE_ALL);
697874aeea5SJeff Kirsher 		} else if (rc) {
698874aeea5SJeff Kirsher 			netif_err(efx, drv, efx->net_dev, "failed to flush queues\n");
699874aeea5SJeff Kirsher 		} else {
700874aeea5SJeff Kirsher 			netif_dbg(efx, drv, efx->net_dev,
701874aeea5SJeff Kirsher 				  "successfully flushed all queues\n");
702874aeea5SJeff Kirsher 		}
7033dca9d2dSStuart Hodgson 	}
704874aeea5SJeff Kirsher 
705874aeea5SJeff Kirsher 	efx_for_each_channel(channel, efx) {
7069f2cb71cSBen Hutchings 		/* RX packet processing is pipelined, so wait for the
7079f2cb71cSBen Hutchings 		 * NAPI handler to complete.  At least event queue 0
7089f2cb71cSBen Hutchings 		 * might be kept active by non-data events, so don't
7099f2cb71cSBen Hutchings 		 * use napi_synchronize() but actually disable NAPI
7109f2cb71cSBen Hutchings 		 * temporarily.
7119f2cb71cSBen Hutchings 		 */
7129f2cb71cSBen Hutchings 		if (efx_channel_has_rx_queue(channel)) {
7139f2cb71cSBen Hutchings 			efx_stop_eventq(channel);
7149f2cb71cSBen Hutchings 			efx_start_eventq(channel);
7159f2cb71cSBen Hutchings 		}
716874aeea5SJeff Kirsher 
717874aeea5SJeff Kirsher 		efx_for_each_channel_rx_queue(rx_queue, channel)
718874aeea5SJeff Kirsher 			efx_fini_rx_queue(rx_queue);
719874aeea5SJeff Kirsher 		efx_for_each_possible_channel_tx_queue(tx_queue, channel)
720874aeea5SJeff Kirsher 			efx_fini_tx_queue(tx_queue);
721874aeea5SJeff Kirsher 	}
722874aeea5SJeff Kirsher }
723874aeea5SJeff Kirsher 
724874aeea5SJeff Kirsher static void efx_remove_channel(struct efx_channel *channel)
725874aeea5SJeff Kirsher {
726874aeea5SJeff Kirsher 	struct efx_tx_queue *tx_queue;
727874aeea5SJeff Kirsher 	struct efx_rx_queue *rx_queue;
728874aeea5SJeff Kirsher 
729874aeea5SJeff Kirsher 	netif_dbg(channel->efx, drv, channel->efx->net_dev,
730874aeea5SJeff Kirsher 		  "destroy chan %d\n", channel->channel);
731874aeea5SJeff Kirsher 
732874aeea5SJeff Kirsher 	efx_for_each_channel_rx_queue(rx_queue, channel)
733874aeea5SJeff Kirsher 		efx_remove_rx_queue(rx_queue);
734874aeea5SJeff Kirsher 	efx_for_each_possible_channel_tx_queue(tx_queue, channel)
735874aeea5SJeff Kirsher 		efx_remove_tx_queue(tx_queue);
736874aeea5SJeff Kirsher 	efx_remove_eventq(channel);
737c31e5f9fSStuart Hodgson 	channel->type->post_remove(channel);
738874aeea5SJeff Kirsher }
739874aeea5SJeff Kirsher 
740874aeea5SJeff Kirsher static void efx_remove_channels(struct efx_nic *efx)
741874aeea5SJeff Kirsher {
742874aeea5SJeff Kirsher 	struct efx_channel *channel;
743874aeea5SJeff Kirsher 
744874aeea5SJeff Kirsher 	efx_for_each_channel(channel, efx)
745874aeea5SJeff Kirsher 		efx_remove_channel(channel);
746874aeea5SJeff Kirsher }
747874aeea5SJeff Kirsher 
748874aeea5SJeff Kirsher int
749874aeea5SJeff Kirsher efx_realloc_channels(struct efx_nic *efx, u32 rxq_entries, u32 txq_entries)
750874aeea5SJeff Kirsher {
751874aeea5SJeff Kirsher 	struct efx_channel *other_channel[EFX_MAX_CHANNELS], *channel;
752874aeea5SJeff Kirsher 	u32 old_rxq_entries, old_txq_entries;
7537f967c01SBen Hutchings 	unsigned i, next_buffer_table = 0;
7548b7325b4SBen Hutchings 	int rc;
7558b7325b4SBen Hutchings 
7568b7325b4SBen Hutchings 	rc = efx_check_disabled(efx);
7578b7325b4SBen Hutchings 	if (rc)
7588b7325b4SBen Hutchings 		return rc;
7597f967c01SBen Hutchings 
7607f967c01SBen Hutchings 	/* Not all channels should be reallocated. We must avoid
7617f967c01SBen Hutchings 	 * reallocating their buffer table entries.
7627f967c01SBen Hutchings 	 */
7637f967c01SBen Hutchings 	efx_for_each_channel(channel, efx) {
7647f967c01SBen Hutchings 		struct efx_rx_queue *rx_queue;
7657f967c01SBen Hutchings 		struct efx_tx_queue *tx_queue;
7667f967c01SBen Hutchings 
7677f967c01SBen Hutchings 		if (channel->type->copy)
7687f967c01SBen Hutchings 			continue;
7697f967c01SBen Hutchings 		next_buffer_table = max(next_buffer_table,
7707f967c01SBen Hutchings 					channel->eventq.index +
7717f967c01SBen Hutchings 					channel->eventq.entries);
7727f967c01SBen Hutchings 		efx_for_each_channel_rx_queue(rx_queue, channel)
7737f967c01SBen Hutchings 			next_buffer_table = max(next_buffer_table,
7747f967c01SBen Hutchings 						rx_queue->rxd.index +
7757f967c01SBen Hutchings 						rx_queue->rxd.entries);
7767f967c01SBen Hutchings 		efx_for_each_channel_tx_queue(tx_queue, channel)
7777f967c01SBen Hutchings 			next_buffer_table = max(next_buffer_table,
7787f967c01SBen Hutchings 						tx_queue->txd.index +
7797f967c01SBen Hutchings 						tx_queue->txd.entries);
7807f967c01SBen Hutchings 	}
781874aeea5SJeff Kirsher 
782874aeea5SJeff Kirsher 	efx_stop_all(efx);
7837f967c01SBen Hutchings 	efx_stop_interrupts(efx, true);
784874aeea5SJeff Kirsher 
7857f967c01SBen Hutchings 	/* Clone channels (where possible) */
786874aeea5SJeff Kirsher 	memset(other_channel, 0, sizeof(other_channel));
787874aeea5SJeff Kirsher 	for (i = 0; i < efx->n_channels; i++) {
7887f967c01SBen Hutchings 		channel = efx->channel[i];
7897f967c01SBen Hutchings 		if (channel->type->copy)
7907f967c01SBen Hutchings 			channel = channel->type->copy(channel);
791874aeea5SJeff Kirsher 		if (!channel) {
792874aeea5SJeff Kirsher 			rc = -ENOMEM;
793874aeea5SJeff Kirsher 			goto out;
794874aeea5SJeff Kirsher 		}
795874aeea5SJeff Kirsher 		other_channel[i] = channel;
796874aeea5SJeff Kirsher 	}
797874aeea5SJeff Kirsher 
798874aeea5SJeff Kirsher 	/* Swap entry counts and channel pointers */
799874aeea5SJeff Kirsher 	old_rxq_entries = efx->rxq_entries;
800874aeea5SJeff Kirsher 	old_txq_entries = efx->txq_entries;
801874aeea5SJeff Kirsher 	efx->rxq_entries = rxq_entries;
802874aeea5SJeff Kirsher 	efx->txq_entries = txq_entries;
803874aeea5SJeff Kirsher 	for (i = 0; i < efx->n_channels; i++) {
804874aeea5SJeff Kirsher 		channel = efx->channel[i];
805874aeea5SJeff Kirsher 		efx->channel[i] = other_channel[i];
806874aeea5SJeff Kirsher 		other_channel[i] = channel;
807874aeea5SJeff Kirsher 	}
808874aeea5SJeff Kirsher 
8097f967c01SBen Hutchings 	/* Restart buffer table allocation */
8107f967c01SBen Hutchings 	efx->next_buffer_table = next_buffer_table;
8117f967c01SBen Hutchings 
8127f967c01SBen Hutchings 	for (i = 0; i < efx->n_channels; i++) {
8137f967c01SBen Hutchings 		channel = efx->channel[i];
8147f967c01SBen Hutchings 		if (!channel->type->copy)
8157f967c01SBen Hutchings 			continue;
8167f967c01SBen Hutchings 		rc = efx_probe_channel(channel);
817874aeea5SJeff Kirsher 		if (rc)
818874aeea5SJeff Kirsher 			goto rollback;
8197f967c01SBen Hutchings 		efx_init_napi_channel(efx->channel[i]);
820874aeea5SJeff Kirsher 	}
821874aeea5SJeff Kirsher 
8227f967c01SBen Hutchings out:
8237f967c01SBen Hutchings 	/* Destroy unused channel structures */
8247f967c01SBen Hutchings 	for (i = 0; i < efx->n_channels; i++) {
8257f967c01SBen Hutchings 		channel = other_channel[i];
8267f967c01SBen Hutchings 		if (channel && channel->type->copy) {
8277f967c01SBen Hutchings 			efx_fini_napi_channel(channel);
8287f967c01SBen Hutchings 			efx_remove_channel(channel);
8297f967c01SBen Hutchings 			kfree(channel);
8307f967c01SBen Hutchings 		}
8317f967c01SBen Hutchings 	}
8327f967c01SBen Hutchings 
8337f967c01SBen Hutchings 	efx_start_interrupts(efx, true);
834874aeea5SJeff Kirsher 	efx_start_all(efx);
835874aeea5SJeff Kirsher 	return rc;
836874aeea5SJeff Kirsher 
837874aeea5SJeff Kirsher rollback:
838874aeea5SJeff Kirsher 	/* Swap back */
839874aeea5SJeff Kirsher 	efx->rxq_entries = old_rxq_entries;
840874aeea5SJeff Kirsher 	efx->txq_entries = old_txq_entries;
841874aeea5SJeff Kirsher 	for (i = 0; i < efx->n_channels; i++) {
842874aeea5SJeff Kirsher 		channel = efx->channel[i];
843874aeea5SJeff Kirsher 		efx->channel[i] = other_channel[i];
844874aeea5SJeff Kirsher 		other_channel[i] = channel;
845874aeea5SJeff Kirsher 	}
846874aeea5SJeff Kirsher 	goto out;
847874aeea5SJeff Kirsher }
848874aeea5SJeff Kirsher 
849874aeea5SJeff Kirsher void efx_schedule_slow_fill(struct efx_rx_queue *rx_queue)
850874aeea5SJeff Kirsher {
851874aeea5SJeff Kirsher 	mod_timer(&rx_queue->slow_fill, jiffies + msecs_to_jiffies(100));
852874aeea5SJeff Kirsher }
853874aeea5SJeff Kirsher 
8547f967c01SBen Hutchings static const struct efx_channel_type efx_default_channel_type = {
8557f967c01SBen Hutchings 	.pre_probe		= efx_channel_dummy_op_int,
856c31e5f9fSStuart Hodgson 	.post_remove		= efx_channel_dummy_op_void,
8577f967c01SBen Hutchings 	.get_name		= efx_get_channel_name,
8587f967c01SBen Hutchings 	.copy			= efx_copy_channel,
8597f967c01SBen Hutchings 	.keep_eventq		= false,
8607f967c01SBen Hutchings };
8617f967c01SBen Hutchings 
8627f967c01SBen Hutchings int efx_channel_dummy_op_int(struct efx_channel *channel)
8637f967c01SBen Hutchings {
8647f967c01SBen Hutchings 	return 0;
8657f967c01SBen Hutchings }
8667f967c01SBen Hutchings 
867c31e5f9fSStuart Hodgson void efx_channel_dummy_op_void(struct efx_channel *channel)
868c31e5f9fSStuart Hodgson {
869c31e5f9fSStuart Hodgson }
870c31e5f9fSStuart Hodgson 
871874aeea5SJeff Kirsher /**************************************************************************
872874aeea5SJeff Kirsher  *
873874aeea5SJeff Kirsher  * Port handling
874874aeea5SJeff Kirsher  *
875874aeea5SJeff Kirsher  **************************************************************************/
876874aeea5SJeff Kirsher 
877874aeea5SJeff Kirsher /* This ensures that the kernel is kept informed (via
878874aeea5SJeff Kirsher  * netif_carrier_on/off) of the link status, and also maintains the
879874aeea5SJeff Kirsher  * link status's stop on the port's TX queue.
880874aeea5SJeff Kirsher  */
881874aeea5SJeff Kirsher void efx_link_status_changed(struct efx_nic *efx)
882874aeea5SJeff Kirsher {
883874aeea5SJeff Kirsher 	struct efx_link_state *link_state = &efx->link_state;
884874aeea5SJeff Kirsher 
885874aeea5SJeff Kirsher 	/* SFC Bug 5356: A net_dev notifier is registered, so we must ensure
886874aeea5SJeff Kirsher 	 * that no events are triggered between unregister_netdev() and the
887874aeea5SJeff Kirsher 	 * driver unloading. A more general condition is that NETDEV_CHANGE
888874aeea5SJeff Kirsher 	 * can only be generated between NETDEV_UP and NETDEV_DOWN */
889874aeea5SJeff Kirsher 	if (!netif_running(efx->net_dev))
890874aeea5SJeff Kirsher 		return;
891874aeea5SJeff Kirsher 
892874aeea5SJeff Kirsher 	if (link_state->up != netif_carrier_ok(efx->net_dev)) {
893874aeea5SJeff Kirsher 		efx->n_link_state_changes++;
894874aeea5SJeff Kirsher 
895874aeea5SJeff Kirsher 		if (link_state->up)
896874aeea5SJeff Kirsher 			netif_carrier_on(efx->net_dev);
897874aeea5SJeff Kirsher 		else
898874aeea5SJeff Kirsher 			netif_carrier_off(efx->net_dev);
899874aeea5SJeff Kirsher 	}
900874aeea5SJeff Kirsher 
901874aeea5SJeff Kirsher 	/* Status message for kernel log */
9022aa9ef11SBen Hutchings 	if (link_state->up)
903874aeea5SJeff Kirsher 		netif_info(efx, link, efx->net_dev,
904874aeea5SJeff Kirsher 			   "link up at %uMbps %s-duplex (MTU %d)%s\n",
905874aeea5SJeff Kirsher 			   link_state->speed, link_state->fd ? "full" : "half",
906874aeea5SJeff Kirsher 			   efx->net_dev->mtu,
907874aeea5SJeff Kirsher 			   (efx->promiscuous ? " [PROMISC]" : ""));
9082aa9ef11SBen Hutchings 	else
909874aeea5SJeff Kirsher 		netif_info(efx, link, efx->net_dev, "link down\n");
910874aeea5SJeff Kirsher }
911874aeea5SJeff Kirsher 
912874aeea5SJeff Kirsher void efx_link_set_advertising(struct efx_nic *efx, u32 advertising)
913874aeea5SJeff Kirsher {
914874aeea5SJeff Kirsher 	efx->link_advertising = advertising;
915874aeea5SJeff Kirsher 	if (advertising) {
916874aeea5SJeff Kirsher 		if (advertising & ADVERTISED_Pause)
917874aeea5SJeff Kirsher 			efx->wanted_fc |= (EFX_FC_TX | EFX_FC_RX);
918874aeea5SJeff Kirsher 		else
919874aeea5SJeff Kirsher 			efx->wanted_fc &= ~(EFX_FC_TX | EFX_FC_RX);
920874aeea5SJeff Kirsher 		if (advertising & ADVERTISED_Asym_Pause)
921874aeea5SJeff Kirsher 			efx->wanted_fc ^= EFX_FC_TX;
922874aeea5SJeff Kirsher 	}
923874aeea5SJeff Kirsher }
924874aeea5SJeff Kirsher 
925874aeea5SJeff Kirsher void efx_link_set_wanted_fc(struct efx_nic *efx, u8 wanted_fc)
926874aeea5SJeff Kirsher {
927874aeea5SJeff Kirsher 	efx->wanted_fc = wanted_fc;
928874aeea5SJeff Kirsher 	if (efx->link_advertising) {
929874aeea5SJeff Kirsher 		if (wanted_fc & EFX_FC_RX)
930874aeea5SJeff Kirsher 			efx->link_advertising |= (ADVERTISED_Pause |
931874aeea5SJeff Kirsher 						  ADVERTISED_Asym_Pause);
932874aeea5SJeff Kirsher 		else
933874aeea5SJeff Kirsher 			efx->link_advertising &= ~(ADVERTISED_Pause |
934874aeea5SJeff Kirsher 						   ADVERTISED_Asym_Pause);
935874aeea5SJeff Kirsher 		if (wanted_fc & EFX_FC_TX)
936874aeea5SJeff Kirsher 			efx->link_advertising ^= ADVERTISED_Asym_Pause;
937874aeea5SJeff Kirsher 	}
938874aeea5SJeff Kirsher }
939874aeea5SJeff Kirsher 
940874aeea5SJeff Kirsher static void efx_fini_port(struct efx_nic *efx);
941874aeea5SJeff Kirsher 
942874aeea5SJeff Kirsher /* Push loopback/power/transmit disable settings to the PHY, and reconfigure
943874aeea5SJeff Kirsher  * the MAC appropriately. All other PHY configuration changes are pushed
944874aeea5SJeff Kirsher  * through phy_op->set_settings(), and pushed asynchronously to the MAC
945874aeea5SJeff Kirsher  * through efx_monitor().
946874aeea5SJeff Kirsher  *
947874aeea5SJeff Kirsher  * Callers must hold the mac_lock
948874aeea5SJeff Kirsher  */
949874aeea5SJeff Kirsher int __efx_reconfigure_port(struct efx_nic *efx)
950874aeea5SJeff Kirsher {
951874aeea5SJeff Kirsher 	enum efx_phy_mode phy_mode;
952874aeea5SJeff Kirsher 	int rc;
953874aeea5SJeff Kirsher 
954874aeea5SJeff Kirsher 	WARN_ON(!mutex_is_locked(&efx->mac_lock));
955874aeea5SJeff Kirsher 
9560fca8c97SBen Hutchings 	/* Serialise the promiscuous flag with efx_set_rx_mode. */
957874aeea5SJeff Kirsher 	netif_addr_lock_bh(efx->net_dev);
958874aeea5SJeff Kirsher 	netif_addr_unlock_bh(efx->net_dev);
959874aeea5SJeff Kirsher 
960874aeea5SJeff Kirsher 	/* Disable PHY transmit in mac level loopbacks */
961874aeea5SJeff Kirsher 	phy_mode = efx->phy_mode;
962874aeea5SJeff Kirsher 	if (LOOPBACK_INTERNAL(efx))
963874aeea5SJeff Kirsher 		efx->phy_mode |= PHY_MODE_TX_DISABLED;
964874aeea5SJeff Kirsher 	else
965874aeea5SJeff Kirsher 		efx->phy_mode &= ~PHY_MODE_TX_DISABLED;
966874aeea5SJeff Kirsher 
967874aeea5SJeff Kirsher 	rc = efx->type->reconfigure_port(efx);
968874aeea5SJeff Kirsher 
969874aeea5SJeff Kirsher 	if (rc)
970874aeea5SJeff Kirsher 		efx->phy_mode = phy_mode;
971874aeea5SJeff Kirsher 
972874aeea5SJeff Kirsher 	return rc;
973874aeea5SJeff Kirsher }
974874aeea5SJeff Kirsher 
975874aeea5SJeff Kirsher /* Reinitialise the MAC to pick up new PHY settings, even if the port is
976874aeea5SJeff Kirsher  * disabled. */
977874aeea5SJeff Kirsher int efx_reconfigure_port(struct efx_nic *efx)
978874aeea5SJeff Kirsher {
979874aeea5SJeff Kirsher 	int rc;
980874aeea5SJeff Kirsher 
981874aeea5SJeff Kirsher 	EFX_ASSERT_RESET_SERIALISED(efx);
982874aeea5SJeff Kirsher 
983874aeea5SJeff Kirsher 	mutex_lock(&efx->mac_lock);
984874aeea5SJeff Kirsher 	rc = __efx_reconfigure_port(efx);
985874aeea5SJeff Kirsher 	mutex_unlock(&efx->mac_lock);
986874aeea5SJeff Kirsher 
987874aeea5SJeff Kirsher 	return rc;
988874aeea5SJeff Kirsher }
989874aeea5SJeff Kirsher 
990874aeea5SJeff Kirsher /* Asynchronous work item for changing MAC promiscuity and multicast
991874aeea5SJeff Kirsher  * hash.  Avoid a drain/rx_ingress enable by reconfiguring the current
992874aeea5SJeff Kirsher  * MAC directly. */
993874aeea5SJeff Kirsher static void efx_mac_work(struct work_struct *data)
994874aeea5SJeff Kirsher {
995874aeea5SJeff Kirsher 	struct efx_nic *efx = container_of(data, struct efx_nic, mac_work);
996874aeea5SJeff Kirsher 
997874aeea5SJeff Kirsher 	mutex_lock(&efx->mac_lock);
99830b81cdaSBen Hutchings 	if (efx->port_enabled)
999710b208dSBen Hutchings 		efx->type->reconfigure_mac(efx);
1000874aeea5SJeff Kirsher 	mutex_unlock(&efx->mac_lock);
1001874aeea5SJeff Kirsher }
1002874aeea5SJeff Kirsher 
1003874aeea5SJeff Kirsher static int efx_probe_port(struct efx_nic *efx)
1004874aeea5SJeff Kirsher {
1005874aeea5SJeff Kirsher 	int rc;
1006874aeea5SJeff Kirsher 
1007874aeea5SJeff Kirsher 	netif_dbg(efx, probe, efx->net_dev, "create port\n");
1008874aeea5SJeff Kirsher 
1009874aeea5SJeff Kirsher 	if (phy_flash_cfg)
1010874aeea5SJeff Kirsher 		efx->phy_mode = PHY_MODE_SPECIAL;
1011874aeea5SJeff Kirsher 
1012874aeea5SJeff Kirsher 	/* Connect up MAC/PHY operations table */
1013874aeea5SJeff Kirsher 	rc = efx->type->probe_port(efx);
1014874aeea5SJeff Kirsher 	if (rc)
1015874aeea5SJeff Kirsher 		return rc;
1016874aeea5SJeff Kirsher 
1017e332bcb3SBen Hutchings 	/* Initialise MAC address to permanent address */
1018e332bcb3SBen Hutchings 	memcpy(efx->net_dev->dev_addr, efx->net_dev->perm_addr, ETH_ALEN);
1019874aeea5SJeff Kirsher 
1020874aeea5SJeff Kirsher 	return 0;
1021874aeea5SJeff Kirsher }
1022874aeea5SJeff Kirsher 
1023874aeea5SJeff Kirsher static int efx_init_port(struct efx_nic *efx)
1024874aeea5SJeff Kirsher {
1025874aeea5SJeff Kirsher 	int rc;
1026874aeea5SJeff Kirsher 
1027874aeea5SJeff Kirsher 	netif_dbg(efx, drv, efx->net_dev, "init port\n");
1028874aeea5SJeff Kirsher 
1029874aeea5SJeff Kirsher 	mutex_lock(&efx->mac_lock);
1030874aeea5SJeff Kirsher 
1031874aeea5SJeff Kirsher 	rc = efx->phy_op->init(efx);
1032874aeea5SJeff Kirsher 	if (rc)
1033874aeea5SJeff Kirsher 		goto fail1;
1034874aeea5SJeff Kirsher 
1035874aeea5SJeff Kirsher 	efx->port_initialized = true;
1036874aeea5SJeff Kirsher 
1037874aeea5SJeff Kirsher 	/* Reconfigure the MAC before creating dma queues (required for
1038874aeea5SJeff Kirsher 	 * Falcon/A1 where RX_INGR_EN/TX_DRAIN_EN isn't supported) */
1039710b208dSBen Hutchings 	efx->type->reconfigure_mac(efx);
1040874aeea5SJeff Kirsher 
1041874aeea5SJeff Kirsher 	/* Ensure the PHY advertises the correct flow control settings */
1042874aeea5SJeff Kirsher 	rc = efx->phy_op->reconfigure(efx);
1043874aeea5SJeff Kirsher 	if (rc)
1044874aeea5SJeff Kirsher 		goto fail2;
1045874aeea5SJeff Kirsher 
1046874aeea5SJeff Kirsher 	mutex_unlock(&efx->mac_lock);
1047874aeea5SJeff Kirsher 	return 0;
1048874aeea5SJeff Kirsher 
1049874aeea5SJeff Kirsher fail2:
1050874aeea5SJeff Kirsher 	efx->phy_op->fini(efx);
1051874aeea5SJeff Kirsher fail1:
1052874aeea5SJeff Kirsher 	mutex_unlock(&efx->mac_lock);
1053874aeea5SJeff Kirsher 	return rc;
1054874aeea5SJeff Kirsher }
1055874aeea5SJeff Kirsher 
1056874aeea5SJeff Kirsher static void efx_start_port(struct efx_nic *efx)
1057874aeea5SJeff Kirsher {
1058874aeea5SJeff Kirsher 	netif_dbg(efx, ifup, efx->net_dev, "start port\n");
1059874aeea5SJeff Kirsher 	BUG_ON(efx->port_enabled);
1060874aeea5SJeff Kirsher 
1061874aeea5SJeff Kirsher 	mutex_lock(&efx->mac_lock);
1062874aeea5SJeff Kirsher 	efx->port_enabled = true;
1063874aeea5SJeff Kirsher 
1064874aeea5SJeff Kirsher 	/* efx_mac_work() might have been scheduled after efx_stop_port(),
1065874aeea5SJeff Kirsher 	 * and then cancelled by efx_flush_all() */
1066710b208dSBen Hutchings 	efx->type->reconfigure_mac(efx);
1067874aeea5SJeff Kirsher 
1068874aeea5SJeff Kirsher 	mutex_unlock(&efx->mac_lock);
1069874aeea5SJeff Kirsher }
1070874aeea5SJeff Kirsher 
1071874aeea5SJeff Kirsher /* Prevent efx_mac_work() and efx_monitor() from working */
1072874aeea5SJeff Kirsher static void efx_stop_port(struct efx_nic *efx)
1073874aeea5SJeff Kirsher {
1074874aeea5SJeff Kirsher 	netif_dbg(efx, ifdown, efx->net_dev, "stop port\n");
1075874aeea5SJeff Kirsher 
1076874aeea5SJeff Kirsher 	mutex_lock(&efx->mac_lock);
1077874aeea5SJeff Kirsher 	efx->port_enabled = false;
1078874aeea5SJeff Kirsher 	mutex_unlock(&efx->mac_lock);
1079874aeea5SJeff Kirsher 
1080874aeea5SJeff Kirsher 	/* Serialise against efx_set_multicast_list() */
1081874aeea5SJeff Kirsher 	netif_addr_lock_bh(efx->net_dev);
1082874aeea5SJeff Kirsher 	netif_addr_unlock_bh(efx->net_dev);
1083874aeea5SJeff Kirsher }
1084874aeea5SJeff Kirsher 
1085874aeea5SJeff Kirsher static void efx_fini_port(struct efx_nic *efx)
1086874aeea5SJeff Kirsher {
1087874aeea5SJeff Kirsher 	netif_dbg(efx, drv, efx->net_dev, "shut down port\n");
1088874aeea5SJeff Kirsher 
1089874aeea5SJeff Kirsher 	if (!efx->port_initialized)
1090874aeea5SJeff Kirsher 		return;
1091874aeea5SJeff Kirsher 
1092874aeea5SJeff Kirsher 	efx->phy_op->fini(efx);
1093874aeea5SJeff Kirsher 	efx->port_initialized = false;
1094874aeea5SJeff Kirsher 
1095874aeea5SJeff Kirsher 	efx->link_state.up = false;
1096874aeea5SJeff Kirsher 	efx_link_status_changed(efx);
1097874aeea5SJeff Kirsher }
1098874aeea5SJeff Kirsher 
1099874aeea5SJeff Kirsher static void efx_remove_port(struct efx_nic *efx)
1100874aeea5SJeff Kirsher {
1101874aeea5SJeff Kirsher 	netif_dbg(efx, drv, efx->net_dev, "destroying port\n");
1102874aeea5SJeff Kirsher 
1103874aeea5SJeff Kirsher 	efx->type->remove_port(efx);
1104874aeea5SJeff Kirsher }
1105874aeea5SJeff Kirsher 
1106874aeea5SJeff Kirsher /**************************************************************************
1107874aeea5SJeff Kirsher  *
1108874aeea5SJeff Kirsher  * NIC handling
1109874aeea5SJeff Kirsher  *
1110874aeea5SJeff Kirsher  **************************************************************************/
1111874aeea5SJeff Kirsher 
1112874aeea5SJeff Kirsher /* This configures the PCI device to enable I/O and DMA. */
1113874aeea5SJeff Kirsher static int efx_init_io(struct efx_nic *efx)
1114874aeea5SJeff Kirsher {
1115874aeea5SJeff Kirsher 	struct pci_dev *pci_dev = efx->pci_dev;
1116874aeea5SJeff Kirsher 	dma_addr_t dma_mask = efx->type->max_dma_mask;
1117874aeea5SJeff Kirsher 	int rc;
1118874aeea5SJeff Kirsher 
1119874aeea5SJeff Kirsher 	netif_dbg(efx, probe, efx->net_dev, "initialising I/O\n");
1120874aeea5SJeff Kirsher 
1121874aeea5SJeff Kirsher 	rc = pci_enable_device(pci_dev);
1122874aeea5SJeff Kirsher 	if (rc) {
1123874aeea5SJeff Kirsher 		netif_err(efx, probe, efx->net_dev,
1124874aeea5SJeff Kirsher 			  "failed to enable PCI device\n");
1125874aeea5SJeff Kirsher 		goto fail1;
1126874aeea5SJeff Kirsher 	}
1127874aeea5SJeff Kirsher 
1128874aeea5SJeff Kirsher 	pci_set_master(pci_dev);
1129874aeea5SJeff Kirsher 
1130874aeea5SJeff Kirsher 	/* Set the PCI DMA mask.  Try all possibilities from our
1131874aeea5SJeff Kirsher 	 * genuine mask down to 32 bits, because some architectures
1132874aeea5SJeff Kirsher 	 * (e.g. x86_64 with iommu_sac_force set) will allow 40 bit
1133874aeea5SJeff Kirsher 	 * masks event though they reject 46 bit masks.
1134874aeea5SJeff Kirsher 	 */
1135874aeea5SJeff Kirsher 	while (dma_mask > 0x7fffffffUL) {
11360e33d870SBen Hutchings 		if (dma_supported(&pci_dev->dev, dma_mask)) {
11370e33d870SBen Hutchings 			rc = dma_set_mask(&pci_dev->dev, dma_mask);
1138e9e01846SBen Hutchings 			if (rc == 0)
1139874aeea5SJeff Kirsher 				break;
1140e9e01846SBen Hutchings 		}
1141874aeea5SJeff Kirsher 		dma_mask >>= 1;
1142874aeea5SJeff Kirsher 	}
1143874aeea5SJeff Kirsher 	if (rc) {
1144874aeea5SJeff Kirsher 		netif_err(efx, probe, efx->net_dev,
1145874aeea5SJeff Kirsher 			  "could not find a suitable DMA mask\n");
1146874aeea5SJeff Kirsher 		goto fail2;
1147874aeea5SJeff Kirsher 	}
1148874aeea5SJeff Kirsher 	netif_dbg(efx, probe, efx->net_dev,
1149874aeea5SJeff Kirsher 		  "using DMA mask %llx\n", (unsigned long long) dma_mask);
11500e33d870SBen Hutchings 	rc = dma_set_coherent_mask(&pci_dev->dev, dma_mask);
1151874aeea5SJeff Kirsher 	if (rc) {
11520e33d870SBen Hutchings 		/* dma_set_coherent_mask() is not *allowed* to
11530e33d870SBen Hutchings 		 * fail with a mask that dma_set_mask() accepted,
1154874aeea5SJeff Kirsher 		 * but just in case...
1155874aeea5SJeff Kirsher 		 */
1156874aeea5SJeff Kirsher 		netif_err(efx, probe, efx->net_dev,
1157874aeea5SJeff Kirsher 			  "failed to set consistent DMA mask\n");
1158874aeea5SJeff Kirsher 		goto fail2;
1159874aeea5SJeff Kirsher 	}
1160874aeea5SJeff Kirsher 
1161874aeea5SJeff Kirsher 	efx->membase_phys = pci_resource_start(efx->pci_dev, EFX_MEM_BAR);
1162874aeea5SJeff Kirsher 	rc = pci_request_region(pci_dev, EFX_MEM_BAR, "sfc");
1163874aeea5SJeff Kirsher 	if (rc) {
1164874aeea5SJeff Kirsher 		netif_err(efx, probe, efx->net_dev,
1165874aeea5SJeff Kirsher 			  "request for memory BAR failed\n");
1166874aeea5SJeff Kirsher 		rc = -EIO;
1167874aeea5SJeff Kirsher 		goto fail3;
1168874aeea5SJeff Kirsher 	}
1169874aeea5SJeff Kirsher 	efx->membase = ioremap_nocache(efx->membase_phys,
1170874aeea5SJeff Kirsher 				       efx->type->mem_map_size);
1171874aeea5SJeff Kirsher 	if (!efx->membase) {
1172874aeea5SJeff Kirsher 		netif_err(efx, probe, efx->net_dev,
1173874aeea5SJeff Kirsher 			  "could not map memory BAR at %llx+%x\n",
1174874aeea5SJeff Kirsher 			  (unsigned long long)efx->membase_phys,
1175874aeea5SJeff Kirsher 			  efx->type->mem_map_size);
1176874aeea5SJeff Kirsher 		rc = -ENOMEM;
1177874aeea5SJeff Kirsher 		goto fail4;
1178874aeea5SJeff Kirsher 	}
1179874aeea5SJeff Kirsher 	netif_dbg(efx, probe, efx->net_dev,
1180874aeea5SJeff Kirsher 		  "memory BAR at %llx+%x (virtual %p)\n",
1181874aeea5SJeff Kirsher 		  (unsigned long long)efx->membase_phys,
1182874aeea5SJeff Kirsher 		  efx->type->mem_map_size, efx->membase);
1183874aeea5SJeff Kirsher 
1184874aeea5SJeff Kirsher 	return 0;
1185874aeea5SJeff Kirsher 
1186874aeea5SJeff Kirsher  fail4:
1187874aeea5SJeff Kirsher 	pci_release_region(efx->pci_dev, EFX_MEM_BAR);
1188874aeea5SJeff Kirsher  fail3:
1189874aeea5SJeff Kirsher 	efx->membase_phys = 0;
1190874aeea5SJeff Kirsher  fail2:
1191874aeea5SJeff Kirsher 	pci_disable_device(efx->pci_dev);
1192874aeea5SJeff Kirsher  fail1:
1193874aeea5SJeff Kirsher 	return rc;
1194874aeea5SJeff Kirsher }
1195874aeea5SJeff Kirsher 
1196874aeea5SJeff Kirsher static void efx_fini_io(struct efx_nic *efx)
1197874aeea5SJeff Kirsher {
1198874aeea5SJeff Kirsher 	netif_dbg(efx, drv, efx->net_dev, "shutting down I/O\n");
1199874aeea5SJeff Kirsher 
1200874aeea5SJeff Kirsher 	if (efx->membase) {
1201874aeea5SJeff Kirsher 		iounmap(efx->membase);
1202874aeea5SJeff Kirsher 		efx->membase = NULL;
1203874aeea5SJeff Kirsher 	}
1204874aeea5SJeff Kirsher 
1205874aeea5SJeff Kirsher 	if (efx->membase_phys) {
1206874aeea5SJeff Kirsher 		pci_release_region(efx->pci_dev, EFX_MEM_BAR);
1207874aeea5SJeff Kirsher 		efx->membase_phys = 0;
1208874aeea5SJeff Kirsher 	}
1209874aeea5SJeff Kirsher 
1210874aeea5SJeff Kirsher 	pci_disable_device(efx->pci_dev);
1211874aeea5SJeff Kirsher }
1212874aeea5SJeff Kirsher 
1213a9a52506SBen Hutchings static unsigned int efx_wanted_parallelism(struct efx_nic *efx)
1214874aeea5SJeff Kirsher {
1215cdb08f8fSBen Hutchings 	cpumask_var_t thread_mask;
1216a16e5b24SBen Hutchings 	unsigned int count;
1217874aeea5SJeff Kirsher 	int cpu;
1218874aeea5SJeff Kirsher 
1219cd2d5b52SBen Hutchings 	if (rss_cpus) {
1220cd2d5b52SBen Hutchings 		count = rss_cpus;
1221cd2d5b52SBen Hutchings 	} else {
1222cdb08f8fSBen Hutchings 		if (unlikely(!zalloc_cpumask_var(&thread_mask, GFP_KERNEL))) {
1223a9a52506SBen Hutchings 			netif_warn(efx, probe, efx->net_dev,
1224a9a52506SBen Hutchings 				   "RSS disabled due to allocation failure\n");
1225874aeea5SJeff Kirsher 			return 1;
1226874aeea5SJeff Kirsher 		}
1227874aeea5SJeff Kirsher 
1228874aeea5SJeff Kirsher 		count = 0;
1229874aeea5SJeff Kirsher 		for_each_online_cpu(cpu) {
1230cdb08f8fSBen Hutchings 			if (!cpumask_test_cpu(cpu, thread_mask)) {
1231874aeea5SJeff Kirsher 				++count;
1232cdb08f8fSBen Hutchings 				cpumask_or(thread_mask, thread_mask,
1233cdb08f8fSBen Hutchings 					   topology_thread_cpumask(cpu));
1234874aeea5SJeff Kirsher 			}
1235874aeea5SJeff Kirsher 		}
1236874aeea5SJeff Kirsher 
1237cdb08f8fSBen Hutchings 		free_cpumask_var(thread_mask);
1238cd2d5b52SBen Hutchings 	}
1239cd2d5b52SBen Hutchings 
1240cd2d5b52SBen Hutchings 	/* If RSS is requested for the PF *and* VFs then we can't write RSS
1241cd2d5b52SBen Hutchings 	 * table entries that are inaccessible to VFs
1242cd2d5b52SBen Hutchings 	 */
1243cd2d5b52SBen Hutchings 	if (efx_sriov_wanted(efx) && efx_vf_size(efx) > 1 &&
1244cd2d5b52SBen Hutchings 	    count > efx_vf_size(efx)) {
1245cd2d5b52SBen Hutchings 		netif_warn(efx, probe, efx->net_dev,
1246cd2d5b52SBen Hutchings 			   "Reducing number of RSS channels from %u to %u for "
1247cd2d5b52SBen Hutchings 			   "VF support. Increase vf-msix-limit to use more "
1248cd2d5b52SBen Hutchings 			   "channels on the PF.\n",
1249cd2d5b52SBen Hutchings 			   count, efx_vf_size(efx));
1250cd2d5b52SBen Hutchings 		count = efx_vf_size(efx);
1251cd2d5b52SBen Hutchings 	}
1252cd2d5b52SBen Hutchings 
1253874aeea5SJeff Kirsher 	return count;
1254874aeea5SJeff Kirsher }
1255874aeea5SJeff Kirsher 
1256874aeea5SJeff Kirsher static int
1257874aeea5SJeff Kirsher efx_init_rx_cpu_rmap(struct efx_nic *efx, struct msix_entry *xentries)
1258874aeea5SJeff Kirsher {
1259874aeea5SJeff Kirsher #ifdef CONFIG_RFS_ACCEL
1260a16e5b24SBen Hutchings 	unsigned int i;
1261a16e5b24SBen Hutchings 	int rc;
1262874aeea5SJeff Kirsher 
1263874aeea5SJeff Kirsher 	efx->net_dev->rx_cpu_rmap = alloc_irq_cpu_rmap(efx->n_rx_channels);
1264874aeea5SJeff Kirsher 	if (!efx->net_dev->rx_cpu_rmap)
1265874aeea5SJeff Kirsher 		return -ENOMEM;
1266874aeea5SJeff Kirsher 	for (i = 0; i < efx->n_rx_channels; i++) {
1267874aeea5SJeff Kirsher 		rc = irq_cpu_rmap_add(efx->net_dev->rx_cpu_rmap,
1268874aeea5SJeff Kirsher 				      xentries[i].vector);
1269874aeea5SJeff Kirsher 		if (rc) {
1270874aeea5SJeff Kirsher 			free_irq_cpu_rmap(efx->net_dev->rx_cpu_rmap);
1271874aeea5SJeff Kirsher 			efx->net_dev->rx_cpu_rmap = NULL;
1272874aeea5SJeff Kirsher 			return rc;
1273874aeea5SJeff Kirsher 		}
1274874aeea5SJeff Kirsher 	}
1275874aeea5SJeff Kirsher #endif
1276874aeea5SJeff Kirsher 	return 0;
1277874aeea5SJeff Kirsher }
1278874aeea5SJeff Kirsher 
1279874aeea5SJeff Kirsher /* Probe the number and type of interrupts we are able to obtain, and
1280874aeea5SJeff Kirsher  * the resulting numbers of channels and RX queues.
1281874aeea5SJeff Kirsher  */
1282874aeea5SJeff Kirsher static int efx_probe_interrupts(struct efx_nic *efx)
1283874aeea5SJeff Kirsher {
1284a16e5b24SBen Hutchings 	unsigned int max_channels =
1285a16e5b24SBen Hutchings 		min(efx->type->phys_addr_channels, EFX_MAX_CHANNELS);
12867f967c01SBen Hutchings 	unsigned int extra_channels = 0;
12877f967c01SBen Hutchings 	unsigned int i, j;
1288a16e5b24SBen Hutchings 	int rc;
1289874aeea5SJeff Kirsher 
12907f967c01SBen Hutchings 	for (i = 0; i < EFX_MAX_EXTRA_CHANNELS; i++)
12917f967c01SBen Hutchings 		if (efx->extra_channel_type[i])
12927f967c01SBen Hutchings 			++extra_channels;
12937f967c01SBen Hutchings 
1294874aeea5SJeff Kirsher 	if (efx->interrupt_mode == EFX_INT_MODE_MSIX) {
1295874aeea5SJeff Kirsher 		struct msix_entry xentries[EFX_MAX_CHANNELS];
1296a16e5b24SBen Hutchings 		unsigned int n_channels;
1297874aeea5SJeff Kirsher 
1298a9a52506SBen Hutchings 		n_channels = efx_wanted_parallelism(efx);
1299874aeea5SJeff Kirsher 		if (separate_tx_channels)
1300874aeea5SJeff Kirsher 			n_channels *= 2;
13017f967c01SBen Hutchings 		n_channels += extra_channels;
1302874aeea5SJeff Kirsher 		n_channels = min(n_channels, max_channels);
1303874aeea5SJeff Kirsher 
1304874aeea5SJeff Kirsher 		for (i = 0; i < n_channels; i++)
1305874aeea5SJeff Kirsher 			xentries[i].entry = i;
1306874aeea5SJeff Kirsher 		rc = pci_enable_msix(efx->pci_dev, xentries, n_channels);
1307874aeea5SJeff Kirsher 		if (rc > 0) {
1308874aeea5SJeff Kirsher 			netif_err(efx, drv, efx->net_dev,
1309874aeea5SJeff Kirsher 				  "WARNING: Insufficient MSI-X vectors"
1310a16e5b24SBen Hutchings 				  " available (%d < %u).\n", rc, n_channels);
1311874aeea5SJeff Kirsher 			netif_err(efx, drv, efx->net_dev,
1312874aeea5SJeff Kirsher 				  "WARNING: Performance may be reduced.\n");
1313874aeea5SJeff Kirsher 			EFX_BUG_ON_PARANOID(rc >= n_channels);
1314874aeea5SJeff Kirsher 			n_channels = rc;
1315874aeea5SJeff Kirsher 			rc = pci_enable_msix(efx->pci_dev, xentries,
1316874aeea5SJeff Kirsher 					     n_channels);
1317874aeea5SJeff Kirsher 		}
1318874aeea5SJeff Kirsher 
1319874aeea5SJeff Kirsher 		if (rc == 0) {
1320874aeea5SJeff Kirsher 			efx->n_channels = n_channels;
13217f967c01SBen Hutchings 			if (n_channels > extra_channels)
13227f967c01SBen Hutchings 				n_channels -= extra_channels;
1323874aeea5SJeff Kirsher 			if (separate_tx_channels) {
13247f967c01SBen Hutchings 				efx->n_tx_channels = max(n_channels / 2, 1U);
13257f967c01SBen Hutchings 				efx->n_rx_channels = max(n_channels -
13267f967c01SBen Hutchings 							 efx->n_tx_channels,
13277f967c01SBen Hutchings 							 1U);
1328874aeea5SJeff Kirsher 			} else {
13297f967c01SBen Hutchings 				efx->n_tx_channels = n_channels;
13307f967c01SBen Hutchings 				efx->n_rx_channels = n_channels;
1331874aeea5SJeff Kirsher 			}
1332874aeea5SJeff Kirsher 			rc = efx_init_rx_cpu_rmap(efx, xentries);
1333874aeea5SJeff Kirsher 			if (rc) {
1334874aeea5SJeff Kirsher 				pci_disable_msix(efx->pci_dev);
1335874aeea5SJeff Kirsher 				return rc;
1336874aeea5SJeff Kirsher 			}
13377f967c01SBen Hutchings 			for (i = 0; i < efx->n_channels; i++)
1338874aeea5SJeff Kirsher 				efx_get_channel(efx, i)->irq =
1339874aeea5SJeff Kirsher 					xentries[i].vector;
1340874aeea5SJeff Kirsher 		} else {
1341874aeea5SJeff Kirsher 			/* Fall back to single channel MSI */
1342874aeea5SJeff Kirsher 			efx->interrupt_mode = EFX_INT_MODE_MSI;
1343874aeea5SJeff Kirsher 			netif_err(efx, drv, efx->net_dev,
1344874aeea5SJeff Kirsher 				  "could not enable MSI-X\n");
1345874aeea5SJeff Kirsher 		}
1346874aeea5SJeff Kirsher 	}
1347874aeea5SJeff Kirsher 
1348874aeea5SJeff Kirsher 	/* Try single interrupt MSI */
1349874aeea5SJeff Kirsher 	if (efx->interrupt_mode == EFX_INT_MODE_MSI) {
1350874aeea5SJeff Kirsher 		efx->n_channels = 1;
1351874aeea5SJeff Kirsher 		efx->n_rx_channels = 1;
1352874aeea5SJeff Kirsher 		efx->n_tx_channels = 1;
1353874aeea5SJeff Kirsher 		rc = pci_enable_msi(efx->pci_dev);
1354874aeea5SJeff Kirsher 		if (rc == 0) {
1355874aeea5SJeff Kirsher 			efx_get_channel(efx, 0)->irq = efx->pci_dev->irq;
1356874aeea5SJeff Kirsher 		} else {
1357874aeea5SJeff Kirsher 			netif_err(efx, drv, efx->net_dev,
1358874aeea5SJeff Kirsher 				  "could not enable MSI\n");
1359874aeea5SJeff Kirsher 			efx->interrupt_mode = EFX_INT_MODE_LEGACY;
1360874aeea5SJeff Kirsher 		}
1361874aeea5SJeff Kirsher 	}
1362874aeea5SJeff Kirsher 
1363874aeea5SJeff Kirsher 	/* Assume legacy interrupts */
1364874aeea5SJeff Kirsher 	if (efx->interrupt_mode == EFX_INT_MODE_LEGACY) {
1365874aeea5SJeff Kirsher 		efx->n_channels = 1 + (separate_tx_channels ? 1 : 0);
1366874aeea5SJeff Kirsher 		efx->n_rx_channels = 1;
1367874aeea5SJeff Kirsher 		efx->n_tx_channels = 1;
1368874aeea5SJeff Kirsher 		efx->legacy_irq = efx->pci_dev->irq;
1369874aeea5SJeff Kirsher 	}
1370874aeea5SJeff Kirsher 
13717f967c01SBen Hutchings 	/* Assign extra channels if possible */
13727f967c01SBen Hutchings 	j = efx->n_channels;
13737f967c01SBen Hutchings 	for (i = 0; i < EFX_MAX_EXTRA_CHANNELS; i++) {
13747f967c01SBen Hutchings 		if (!efx->extra_channel_type[i])
13757f967c01SBen Hutchings 			continue;
13767f967c01SBen Hutchings 		if (efx->interrupt_mode != EFX_INT_MODE_MSIX ||
13777f967c01SBen Hutchings 		    efx->n_channels <= extra_channels) {
13787f967c01SBen Hutchings 			efx->extra_channel_type[i]->handle_no_channel(efx);
13797f967c01SBen Hutchings 		} else {
13807f967c01SBen Hutchings 			--j;
13817f967c01SBen Hutchings 			efx_get_channel(efx, j)->type =
13827f967c01SBen Hutchings 				efx->extra_channel_type[i];
13837f967c01SBen Hutchings 		}
13847f967c01SBen Hutchings 	}
13857f967c01SBen Hutchings 
1386cd2d5b52SBen Hutchings 	/* RSS might be usable on VFs even if it is disabled on the PF */
13873132d282SBen Hutchings 	efx->rss_spread = ((efx->n_rx_channels > 1 || !efx_sriov_wanted(efx)) ?
1388cd2d5b52SBen Hutchings 			   efx->n_rx_channels : efx_vf_size(efx));
1389cd2d5b52SBen Hutchings 
1390874aeea5SJeff Kirsher 	return 0;
1391874aeea5SJeff Kirsher }
1392874aeea5SJeff Kirsher 
13939f2cb71cSBen Hutchings /* Enable interrupts, then probe and start the event queues */
13947f967c01SBen Hutchings static void efx_start_interrupts(struct efx_nic *efx, bool may_keep_eventq)
13959f2cb71cSBen Hutchings {
13969f2cb71cSBen Hutchings 	struct efx_channel *channel;
13979f2cb71cSBen Hutchings 
13988b7325b4SBen Hutchings 	BUG_ON(efx->state == STATE_DISABLED);
13998b7325b4SBen Hutchings 
14009f2cb71cSBen Hutchings 	if (efx->legacy_irq)
14019f2cb71cSBen Hutchings 		efx->legacy_irq_enabled = true;
14029f2cb71cSBen Hutchings 	efx_nic_enable_interrupts(efx);
14039f2cb71cSBen Hutchings 
14049f2cb71cSBen Hutchings 	efx_for_each_channel(channel, efx) {
14057f967c01SBen Hutchings 		if (!channel->type->keep_eventq || !may_keep_eventq)
14069f2cb71cSBen Hutchings 			efx_init_eventq(channel);
14079f2cb71cSBen Hutchings 		efx_start_eventq(channel);
14089f2cb71cSBen Hutchings 	}
14099f2cb71cSBen Hutchings 
14109f2cb71cSBen Hutchings 	efx_mcdi_mode_event(efx);
14119f2cb71cSBen Hutchings }
14129f2cb71cSBen Hutchings 
14137f967c01SBen Hutchings static void efx_stop_interrupts(struct efx_nic *efx, bool may_keep_eventq)
14149f2cb71cSBen Hutchings {
14159f2cb71cSBen Hutchings 	struct efx_channel *channel;
14169f2cb71cSBen Hutchings 
14178b7325b4SBen Hutchings 	if (efx->state == STATE_DISABLED)
14188b7325b4SBen Hutchings 		return;
14198b7325b4SBen Hutchings 
14209f2cb71cSBen Hutchings 	efx_mcdi_mode_poll(efx);
14219f2cb71cSBen Hutchings 
14229f2cb71cSBen Hutchings 	efx_nic_disable_interrupts(efx);
14239f2cb71cSBen Hutchings 	if (efx->legacy_irq) {
14249f2cb71cSBen Hutchings 		synchronize_irq(efx->legacy_irq);
14259f2cb71cSBen Hutchings 		efx->legacy_irq_enabled = false;
14269f2cb71cSBen Hutchings 	}
14279f2cb71cSBen Hutchings 
14289f2cb71cSBen Hutchings 	efx_for_each_channel(channel, efx) {
14299f2cb71cSBen Hutchings 		if (channel->irq)
14309f2cb71cSBen Hutchings 			synchronize_irq(channel->irq);
14319f2cb71cSBen Hutchings 
14329f2cb71cSBen Hutchings 		efx_stop_eventq(channel);
14337f967c01SBen Hutchings 		if (!channel->type->keep_eventq || !may_keep_eventq)
14349f2cb71cSBen Hutchings 			efx_fini_eventq(channel);
14359f2cb71cSBen Hutchings 	}
14369f2cb71cSBen Hutchings }
14379f2cb71cSBen Hutchings 
1438874aeea5SJeff Kirsher static void efx_remove_interrupts(struct efx_nic *efx)
1439874aeea5SJeff Kirsher {
1440874aeea5SJeff Kirsher 	struct efx_channel *channel;
1441874aeea5SJeff Kirsher 
1442874aeea5SJeff Kirsher 	/* Remove MSI/MSI-X interrupts */
1443874aeea5SJeff Kirsher 	efx_for_each_channel(channel, efx)
1444874aeea5SJeff Kirsher 		channel->irq = 0;
1445874aeea5SJeff Kirsher 	pci_disable_msi(efx->pci_dev);
1446874aeea5SJeff Kirsher 	pci_disable_msix(efx->pci_dev);
1447874aeea5SJeff Kirsher 
1448874aeea5SJeff Kirsher 	/* Remove legacy interrupt */
1449874aeea5SJeff Kirsher 	efx->legacy_irq = 0;
1450874aeea5SJeff Kirsher }
1451874aeea5SJeff Kirsher 
1452874aeea5SJeff Kirsher static void efx_set_channels(struct efx_nic *efx)
1453874aeea5SJeff Kirsher {
1454874aeea5SJeff Kirsher 	struct efx_channel *channel;
1455874aeea5SJeff Kirsher 	struct efx_tx_queue *tx_queue;
1456874aeea5SJeff Kirsher 
1457874aeea5SJeff Kirsher 	efx->tx_channel_offset =
1458874aeea5SJeff Kirsher 		separate_tx_channels ? efx->n_channels - efx->n_tx_channels : 0;
1459874aeea5SJeff Kirsher 
146079d68b37SStuart Hodgson 	/* We need to mark which channels really have RX and TX
146179d68b37SStuart Hodgson 	 * queues, and adjust the TX queue numbers if we have separate
1462874aeea5SJeff Kirsher 	 * RX-only and TX-only channels.
1463874aeea5SJeff Kirsher 	 */
1464874aeea5SJeff Kirsher 	efx_for_each_channel(channel, efx) {
146579d68b37SStuart Hodgson 		if (channel->channel < efx->n_rx_channels)
146679d68b37SStuart Hodgson 			channel->rx_queue.core_index = channel->channel;
146779d68b37SStuart Hodgson 		else
146879d68b37SStuart Hodgson 			channel->rx_queue.core_index = -1;
146979d68b37SStuart Hodgson 
1470874aeea5SJeff Kirsher 		efx_for_each_channel_tx_queue(tx_queue, channel)
1471874aeea5SJeff Kirsher 			tx_queue->queue -= (efx->tx_channel_offset *
1472874aeea5SJeff Kirsher 					    EFX_TXQ_TYPES);
1473874aeea5SJeff Kirsher 	}
1474874aeea5SJeff Kirsher }
1475874aeea5SJeff Kirsher 
1476874aeea5SJeff Kirsher static int efx_probe_nic(struct efx_nic *efx)
1477874aeea5SJeff Kirsher {
1478874aeea5SJeff Kirsher 	size_t i;
1479874aeea5SJeff Kirsher 	int rc;
1480874aeea5SJeff Kirsher 
1481874aeea5SJeff Kirsher 	netif_dbg(efx, probe, efx->net_dev, "creating NIC\n");
1482874aeea5SJeff Kirsher 
1483874aeea5SJeff Kirsher 	/* Carry out hardware-type specific initialisation */
1484874aeea5SJeff Kirsher 	rc = efx->type->probe(efx);
1485874aeea5SJeff Kirsher 	if (rc)
1486874aeea5SJeff Kirsher 		return rc;
1487874aeea5SJeff Kirsher 
1488874aeea5SJeff Kirsher 	/* Determine the number of channels and queues by trying to hook
1489874aeea5SJeff Kirsher 	 * in MSI-X interrupts. */
1490874aeea5SJeff Kirsher 	rc = efx_probe_interrupts(efx);
1491874aeea5SJeff Kirsher 	if (rc)
1492874aeea5SJeff Kirsher 		goto fail;
1493874aeea5SJeff Kirsher 
149428e47c49SBen Hutchings 	efx->type->dimension_resources(efx);
149528e47c49SBen Hutchings 
1496874aeea5SJeff Kirsher 	if (efx->n_channels > 1)
1497874aeea5SJeff Kirsher 		get_random_bytes(&efx->rx_hash_key, sizeof(efx->rx_hash_key));
1498874aeea5SJeff Kirsher 	for (i = 0; i < ARRAY_SIZE(efx->rx_indir_table); i++)
1499278bc429SBen Hutchings 		efx->rx_indir_table[i] =
1500cd2d5b52SBen Hutchings 			ethtool_rxfh_indir_default(i, efx->rss_spread);
1501874aeea5SJeff Kirsher 
1502874aeea5SJeff Kirsher 	efx_set_channels(efx);
1503874aeea5SJeff Kirsher 	netif_set_real_num_tx_queues(efx->net_dev, efx->n_tx_channels);
1504874aeea5SJeff Kirsher 	netif_set_real_num_rx_queues(efx->net_dev, efx->n_rx_channels);
1505874aeea5SJeff Kirsher 
1506874aeea5SJeff Kirsher 	/* Initialise the interrupt moderation settings */
15079e393b30SBen Hutchings 	efx_init_irq_moderation(efx, tx_irq_mod_usec, rx_irq_mod_usec, true,
15089e393b30SBen Hutchings 				true);
1509874aeea5SJeff Kirsher 
1510874aeea5SJeff Kirsher 	return 0;
1511874aeea5SJeff Kirsher 
1512874aeea5SJeff Kirsher fail:
1513874aeea5SJeff Kirsher 	efx->type->remove(efx);
1514874aeea5SJeff Kirsher 	return rc;
1515874aeea5SJeff Kirsher }
1516874aeea5SJeff Kirsher 
1517874aeea5SJeff Kirsher static void efx_remove_nic(struct efx_nic *efx)
1518874aeea5SJeff Kirsher {
1519874aeea5SJeff Kirsher 	netif_dbg(efx, drv, efx->net_dev, "destroying NIC\n");
1520874aeea5SJeff Kirsher 
1521874aeea5SJeff Kirsher 	efx_remove_interrupts(efx);
1522874aeea5SJeff Kirsher 	efx->type->remove(efx);
1523874aeea5SJeff Kirsher }
1524874aeea5SJeff Kirsher 
1525874aeea5SJeff Kirsher /**************************************************************************
1526874aeea5SJeff Kirsher  *
1527874aeea5SJeff Kirsher  * NIC startup/shutdown
1528874aeea5SJeff Kirsher  *
1529874aeea5SJeff Kirsher  *************************************************************************/
1530874aeea5SJeff Kirsher 
1531874aeea5SJeff Kirsher static int efx_probe_all(struct efx_nic *efx)
1532874aeea5SJeff Kirsher {
1533874aeea5SJeff Kirsher 	int rc;
1534874aeea5SJeff Kirsher 
1535874aeea5SJeff Kirsher 	rc = efx_probe_nic(efx);
1536874aeea5SJeff Kirsher 	if (rc) {
1537874aeea5SJeff Kirsher 		netif_err(efx, probe, efx->net_dev, "failed to create NIC\n");
1538874aeea5SJeff Kirsher 		goto fail1;
1539874aeea5SJeff Kirsher 	}
1540874aeea5SJeff Kirsher 
1541874aeea5SJeff Kirsher 	rc = efx_probe_port(efx);
1542874aeea5SJeff Kirsher 	if (rc) {
1543874aeea5SJeff Kirsher 		netif_err(efx, probe, efx->net_dev, "failed to create port\n");
1544874aeea5SJeff Kirsher 		goto fail2;
1545874aeea5SJeff Kirsher 	}
1546874aeea5SJeff Kirsher 
15477e6d06f0SBen Hutchings 	BUILD_BUG_ON(EFX_DEFAULT_DMAQ_SIZE < EFX_RXQ_MIN_ENT);
15487e6d06f0SBen Hutchings 	if (WARN_ON(EFX_DEFAULT_DMAQ_SIZE < EFX_TXQ_MIN_ENT(efx))) {
15497e6d06f0SBen Hutchings 		rc = -EINVAL;
15507e6d06f0SBen Hutchings 		goto fail3;
15517e6d06f0SBen Hutchings 	}
1552874aeea5SJeff Kirsher 	efx->rxq_entries = efx->txq_entries = EFX_DEFAULT_DMAQ_SIZE;
1553874aeea5SJeff Kirsher 
1554874aeea5SJeff Kirsher 	rc = efx_probe_filters(efx);
1555874aeea5SJeff Kirsher 	if (rc) {
1556874aeea5SJeff Kirsher 		netif_err(efx, probe, efx->net_dev,
1557874aeea5SJeff Kirsher 			  "failed to create filter tables\n");
15587f967c01SBen Hutchings 		goto fail3;
1559874aeea5SJeff Kirsher 	}
1560874aeea5SJeff Kirsher 
15617f967c01SBen Hutchings 	rc = efx_probe_channels(efx);
15627f967c01SBen Hutchings 	if (rc)
15637f967c01SBen Hutchings 		goto fail4;
15647f967c01SBen Hutchings 
1565874aeea5SJeff Kirsher 	return 0;
1566874aeea5SJeff Kirsher 
1567874aeea5SJeff Kirsher  fail4:
15687f967c01SBen Hutchings 	efx_remove_filters(efx);
1569874aeea5SJeff Kirsher  fail3:
1570874aeea5SJeff Kirsher 	efx_remove_port(efx);
1571874aeea5SJeff Kirsher  fail2:
1572874aeea5SJeff Kirsher 	efx_remove_nic(efx);
1573874aeea5SJeff Kirsher  fail1:
1574874aeea5SJeff Kirsher 	return rc;
1575874aeea5SJeff Kirsher }
1576874aeea5SJeff Kirsher 
15778b7325b4SBen Hutchings /* If the interface is supposed to be running but is not, start
15788b7325b4SBen Hutchings  * the hardware and software data path, regular activity for the port
15798b7325b4SBen Hutchings  * (MAC statistics, link polling, etc.) and schedule the port to be
15808b7325b4SBen Hutchings  * reconfigured.  Interrupts must already be enabled.  This function
15818b7325b4SBen Hutchings  * is safe to call multiple times, so long as the NIC is not disabled.
15828b7325b4SBen Hutchings  * Requires the RTNL lock.
15839f2cb71cSBen Hutchings  */
1584874aeea5SJeff Kirsher static void efx_start_all(struct efx_nic *efx)
1585874aeea5SJeff Kirsher {
1586874aeea5SJeff Kirsher 	EFX_ASSERT_RESET_SERIALISED(efx);
15878b7325b4SBen Hutchings 	BUG_ON(efx->state == STATE_DISABLED);
1588874aeea5SJeff Kirsher 
1589874aeea5SJeff Kirsher 	/* Check that it is appropriate to restart the interface. All
1590874aeea5SJeff Kirsher 	 * of these flags are safe to read under just the rtnl lock */
15918b7325b4SBen Hutchings 	if (efx->port_enabled || !netif_running(efx->net_dev))
1592874aeea5SJeff Kirsher 		return;
1593874aeea5SJeff Kirsher 
1594874aeea5SJeff Kirsher 	efx_start_port(efx);
15959f2cb71cSBen Hutchings 	efx_start_datapath(efx);
1596874aeea5SJeff Kirsher 
1597874aeea5SJeff Kirsher 	/* Start the hardware monitor if there is one. Otherwise (we're link
1598874aeea5SJeff Kirsher 	 * event driven), we have to poll the PHY because after an event queue
1599874aeea5SJeff Kirsher 	 * flush, we could have a missed a link state change */
1600874aeea5SJeff Kirsher 	if (efx->type->monitor != NULL) {
1601874aeea5SJeff Kirsher 		queue_delayed_work(efx->workqueue, &efx->monitor_work,
1602874aeea5SJeff Kirsher 				   efx_monitor_interval);
1603874aeea5SJeff Kirsher 	} else {
1604874aeea5SJeff Kirsher 		mutex_lock(&efx->mac_lock);
1605874aeea5SJeff Kirsher 		if (efx->phy_op->poll(efx))
1606874aeea5SJeff Kirsher 			efx_link_status_changed(efx);
1607874aeea5SJeff Kirsher 		mutex_unlock(&efx->mac_lock);
1608874aeea5SJeff Kirsher 	}
1609874aeea5SJeff Kirsher 
1610874aeea5SJeff Kirsher 	efx->type->start_stats(efx);
1611874aeea5SJeff Kirsher }
1612874aeea5SJeff Kirsher 
1613874aeea5SJeff Kirsher /* Flush all delayed work. Should only be called when no more delayed work
1614874aeea5SJeff Kirsher  * will be scheduled. This doesn't flush pending online resets (efx_reset),
1615874aeea5SJeff Kirsher  * since we're holding the rtnl_lock at this point. */
1616874aeea5SJeff Kirsher static void efx_flush_all(struct efx_nic *efx)
1617874aeea5SJeff Kirsher {
1618dd40781eSBen Hutchings 	/* Make sure the hardware monitor and event self-test are stopped */
1619874aeea5SJeff Kirsher 	cancel_delayed_work_sync(&efx->monitor_work);
1620dd40781eSBen Hutchings 	efx_selftest_async_cancel(efx);
1621874aeea5SJeff Kirsher 	/* Stop scheduled port reconfigurations */
1622874aeea5SJeff Kirsher 	cancel_work_sync(&efx->mac_work);
1623874aeea5SJeff Kirsher }
1624874aeea5SJeff Kirsher 
16258b7325b4SBen Hutchings /* Quiesce the hardware and software data path, and regular activity
16268b7325b4SBen Hutchings  * for the port without bringing the link down.  Safe to call multiple
16278b7325b4SBen Hutchings  * times with the NIC in almost any state, but interrupts should be
16288b7325b4SBen Hutchings  * enabled.  Requires the RTNL lock.
16298b7325b4SBen Hutchings  */
1630874aeea5SJeff Kirsher static void efx_stop_all(struct efx_nic *efx)
1631874aeea5SJeff Kirsher {
1632874aeea5SJeff Kirsher 	EFX_ASSERT_RESET_SERIALISED(efx);
1633874aeea5SJeff Kirsher 
1634874aeea5SJeff Kirsher 	/* port_enabled can be read safely under the rtnl lock */
1635874aeea5SJeff Kirsher 	if (!efx->port_enabled)
1636874aeea5SJeff Kirsher 		return;
1637874aeea5SJeff Kirsher 
1638874aeea5SJeff Kirsher 	efx->type->stop_stats(efx);
1639874aeea5SJeff Kirsher 	efx_stop_port(efx);
1640874aeea5SJeff Kirsher 
1641874aeea5SJeff Kirsher 	/* Flush efx_mac_work(), refill_workqueue, monitor_work */
1642874aeea5SJeff Kirsher 	efx_flush_all(efx);
1643874aeea5SJeff Kirsher 
1644874aeea5SJeff Kirsher 	/* Stop the kernel transmit interface late, so the watchdog
1645874aeea5SJeff Kirsher 	 * timer isn't ticking over the flush */
16469f2cb71cSBen Hutchings 	netif_tx_disable(efx->net_dev);
16479f2cb71cSBen Hutchings 
16489f2cb71cSBen Hutchings 	efx_stop_datapath(efx);
1649874aeea5SJeff Kirsher }
1650874aeea5SJeff Kirsher 
1651874aeea5SJeff Kirsher static void efx_remove_all(struct efx_nic *efx)
1652874aeea5SJeff Kirsher {
1653874aeea5SJeff Kirsher 	efx_remove_channels(efx);
16547f967c01SBen Hutchings 	efx_remove_filters(efx);
1655874aeea5SJeff Kirsher 	efx_remove_port(efx);
1656874aeea5SJeff Kirsher 	efx_remove_nic(efx);
1657874aeea5SJeff Kirsher }
1658874aeea5SJeff Kirsher 
1659874aeea5SJeff Kirsher /**************************************************************************
1660874aeea5SJeff Kirsher  *
1661874aeea5SJeff Kirsher  * Interrupt moderation
1662874aeea5SJeff Kirsher  *
1663874aeea5SJeff Kirsher  **************************************************************************/
1664874aeea5SJeff Kirsher 
1665cc180b69SBen Hutchings static unsigned int irq_mod_ticks(unsigned int usecs, unsigned int quantum_ns)
1666874aeea5SJeff Kirsher {
1667b548f976SBen Hutchings 	if (usecs == 0)
1668b548f976SBen Hutchings 		return 0;
1669cc180b69SBen Hutchings 	if (usecs * 1000 < quantum_ns)
1670874aeea5SJeff Kirsher 		return 1; /* never round down to 0 */
1671cc180b69SBen Hutchings 	return usecs * 1000 / quantum_ns;
1672874aeea5SJeff Kirsher }
1673874aeea5SJeff Kirsher 
1674874aeea5SJeff Kirsher /* Set interrupt moderation parameters */
16759e393b30SBen Hutchings int efx_init_irq_moderation(struct efx_nic *efx, unsigned int tx_usecs,
16769e393b30SBen Hutchings 			    unsigned int rx_usecs, bool rx_adaptive,
16779e393b30SBen Hutchings 			    bool rx_may_override_tx)
1678874aeea5SJeff Kirsher {
1679874aeea5SJeff Kirsher 	struct efx_channel *channel;
1680cc180b69SBen Hutchings 	unsigned int irq_mod_max = DIV_ROUND_UP(efx->type->timer_period_max *
1681cc180b69SBen Hutchings 						efx->timer_quantum_ns,
1682cc180b69SBen Hutchings 						1000);
1683cc180b69SBen Hutchings 	unsigned int tx_ticks;
1684cc180b69SBen Hutchings 	unsigned int rx_ticks;
1685874aeea5SJeff Kirsher 
1686874aeea5SJeff Kirsher 	EFX_ASSERT_RESET_SERIALISED(efx);
1687874aeea5SJeff Kirsher 
1688cc180b69SBen Hutchings 	if (tx_usecs > irq_mod_max || rx_usecs > irq_mod_max)
16899e393b30SBen Hutchings 		return -EINVAL;
16909e393b30SBen Hutchings 
1691cc180b69SBen Hutchings 	tx_ticks = irq_mod_ticks(tx_usecs, efx->timer_quantum_ns);
1692cc180b69SBen Hutchings 	rx_ticks = irq_mod_ticks(rx_usecs, efx->timer_quantum_ns);
1693cc180b69SBen Hutchings 
16949e393b30SBen Hutchings 	if (tx_ticks != rx_ticks && efx->tx_channel_offset == 0 &&
16959e393b30SBen Hutchings 	    !rx_may_override_tx) {
16969e393b30SBen Hutchings 		netif_err(efx, drv, efx->net_dev, "Channels are shared. "
16979e393b30SBen Hutchings 			  "RX and TX IRQ moderation must be equal\n");
16989e393b30SBen Hutchings 		return -EINVAL;
16999e393b30SBen Hutchings 	}
17009e393b30SBen Hutchings 
1701874aeea5SJeff Kirsher 	efx->irq_rx_adaptive = rx_adaptive;
1702874aeea5SJeff Kirsher 	efx->irq_rx_moderation = rx_ticks;
1703874aeea5SJeff Kirsher 	efx_for_each_channel(channel, efx) {
1704874aeea5SJeff Kirsher 		if (efx_channel_has_rx_queue(channel))
1705874aeea5SJeff Kirsher 			channel->irq_moderation = rx_ticks;
1706874aeea5SJeff Kirsher 		else if (efx_channel_has_tx_queues(channel))
1707874aeea5SJeff Kirsher 			channel->irq_moderation = tx_ticks;
1708874aeea5SJeff Kirsher 	}
17099e393b30SBen Hutchings 
17109e393b30SBen Hutchings 	return 0;
1711874aeea5SJeff Kirsher }
1712874aeea5SJeff Kirsher 
1713a0c4faf5SBen Hutchings void efx_get_irq_moderation(struct efx_nic *efx, unsigned int *tx_usecs,
1714a0c4faf5SBen Hutchings 			    unsigned int *rx_usecs, bool *rx_adaptive)
1715a0c4faf5SBen Hutchings {
1716cc180b69SBen Hutchings 	/* We must round up when converting ticks to microseconds
1717cc180b69SBen Hutchings 	 * because we round down when converting the other way.
1718cc180b69SBen Hutchings 	 */
1719cc180b69SBen Hutchings 
1720a0c4faf5SBen Hutchings 	*rx_adaptive = efx->irq_rx_adaptive;
1721cc180b69SBen Hutchings 	*rx_usecs = DIV_ROUND_UP(efx->irq_rx_moderation *
1722cc180b69SBen Hutchings 				 efx->timer_quantum_ns,
1723cc180b69SBen Hutchings 				 1000);
1724a0c4faf5SBen Hutchings 
1725a0c4faf5SBen Hutchings 	/* If channels are shared between RX and TX, so is IRQ
1726a0c4faf5SBen Hutchings 	 * moderation.  Otherwise, IRQ moderation is the same for all
1727a0c4faf5SBen Hutchings 	 * TX channels and is not adaptive.
1728a0c4faf5SBen Hutchings 	 */
1729a0c4faf5SBen Hutchings 	if (efx->tx_channel_offset == 0)
1730a0c4faf5SBen Hutchings 		*tx_usecs = *rx_usecs;
1731a0c4faf5SBen Hutchings 	else
1732cc180b69SBen Hutchings 		*tx_usecs = DIV_ROUND_UP(
1733a0c4faf5SBen Hutchings 			efx->channel[efx->tx_channel_offset]->irq_moderation *
1734cc180b69SBen Hutchings 			efx->timer_quantum_ns,
1735cc180b69SBen Hutchings 			1000);
1736a0c4faf5SBen Hutchings }
1737a0c4faf5SBen Hutchings 
1738874aeea5SJeff Kirsher /**************************************************************************
1739874aeea5SJeff Kirsher  *
1740874aeea5SJeff Kirsher  * Hardware monitor
1741874aeea5SJeff Kirsher  *
1742874aeea5SJeff Kirsher  **************************************************************************/
1743874aeea5SJeff Kirsher 
1744874aeea5SJeff Kirsher /* Run periodically off the general workqueue */
1745874aeea5SJeff Kirsher static void efx_monitor(struct work_struct *data)
1746874aeea5SJeff Kirsher {
1747874aeea5SJeff Kirsher 	struct efx_nic *efx = container_of(data, struct efx_nic,
1748874aeea5SJeff Kirsher 					   monitor_work.work);
1749874aeea5SJeff Kirsher 
1750874aeea5SJeff Kirsher 	netif_vdbg(efx, timer, efx->net_dev,
1751874aeea5SJeff Kirsher 		   "hardware monitor executing on CPU %d\n",
1752874aeea5SJeff Kirsher 		   raw_smp_processor_id());
1753874aeea5SJeff Kirsher 	BUG_ON(efx->type->monitor == NULL);
1754874aeea5SJeff Kirsher 
1755874aeea5SJeff Kirsher 	/* If the mac_lock is already held then it is likely a port
1756874aeea5SJeff Kirsher 	 * reconfiguration is already in place, which will likely do
1757874aeea5SJeff Kirsher 	 * most of the work of monitor() anyway. */
1758874aeea5SJeff Kirsher 	if (mutex_trylock(&efx->mac_lock)) {
1759874aeea5SJeff Kirsher 		if (efx->port_enabled)
1760874aeea5SJeff Kirsher 			efx->type->monitor(efx);
1761874aeea5SJeff Kirsher 		mutex_unlock(&efx->mac_lock);
1762874aeea5SJeff Kirsher 	}
1763874aeea5SJeff Kirsher 
1764874aeea5SJeff Kirsher 	queue_delayed_work(efx->workqueue, &efx->monitor_work,
1765874aeea5SJeff Kirsher 			   efx_monitor_interval);
1766874aeea5SJeff Kirsher }
1767874aeea5SJeff Kirsher 
1768874aeea5SJeff Kirsher /**************************************************************************
1769874aeea5SJeff Kirsher  *
1770874aeea5SJeff Kirsher  * ioctls
1771874aeea5SJeff Kirsher  *
1772874aeea5SJeff Kirsher  *************************************************************************/
1773874aeea5SJeff Kirsher 
1774874aeea5SJeff Kirsher /* Net device ioctl
1775874aeea5SJeff Kirsher  * Context: process, rtnl_lock() held.
1776874aeea5SJeff Kirsher  */
1777874aeea5SJeff Kirsher static int efx_ioctl(struct net_device *net_dev, struct ifreq *ifr, int cmd)
1778874aeea5SJeff Kirsher {
1779874aeea5SJeff Kirsher 	struct efx_nic *efx = netdev_priv(net_dev);
1780874aeea5SJeff Kirsher 	struct mii_ioctl_data *data = if_mii(ifr);
1781874aeea5SJeff Kirsher 
17827c236c43SStuart Hodgson 	if (cmd == SIOCSHWTSTAMP)
17837c236c43SStuart Hodgson 		return efx_ptp_ioctl(efx, ifr, cmd);
17847c236c43SStuart Hodgson 
1785874aeea5SJeff Kirsher 	/* Convert phy_id from older PRTAD/DEVAD format */
1786874aeea5SJeff Kirsher 	if ((cmd == SIOCGMIIREG || cmd == SIOCSMIIREG) &&
1787874aeea5SJeff Kirsher 	    (data->phy_id & 0xfc00) == 0x0400)
1788874aeea5SJeff Kirsher 		data->phy_id ^= MDIO_PHY_ID_C45 | 0x0400;
1789874aeea5SJeff Kirsher 
1790874aeea5SJeff Kirsher 	return mdio_mii_ioctl(&efx->mdio, data, cmd);
1791874aeea5SJeff Kirsher }
1792874aeea5SJeff Kirsher 
1793874aeea5SJeff Kirsher /**************************************************************************
1794874aeea5SJeff Kirsher  *
1795874aeea5SJeff Kirsher  * NAPI interface
1796874aeea5SJeff Kirsher  *
1797874aeea5SJeff Kirsher  **************************************************************************/
1798874aeea5SJeff Kirsher 
17997f967c01SBen Hutchings static void efx_init_napi_channel(struct efx_channel *channel)
1800874aeea5SJeff Kirsher {
18017f967c01SBen Hutchings 	struct efx_nic *efx = channel->efx;
1802874aeea5SJeff Kirsher 
1803874aeea5SJeff Kirsher 	channel->napi_dev = efx->net_dev;
1804874aeea5SJeff Kirsher 	netif_napi_add(channel->napi_dev, &channel->napi_str,
1805874aeea5SJeff Kirsher 		       efx_poll, napi_weight);
1806874aeea5SJeff Kirsher }
18077f967c01SBen Hutchings 
18087f967c01SBen Hutchings static void efx_init_napi(struct efx_nic *efx)
18097f967c01SBen Hutchings {
18107f967c01SBen Hutchings 	struct efx_channel *channel;
18117f967c01SBen Hutchings 
18127f967c01SBen Hutchings 	efx_for_each_channel(channel, efx)
18137f967c01SBen Hutchings 		efx_init_napi_channel(channel);
1814874aeea5SJeff Kirsher }
1815874aeea5SJeff Kirsher 
1816874aeea5SJeff Kirsher static void efx_fini_napi_channel(struct efx_channel *channel)
1817874aeea5SJeff Kirsher {
1818874aeea5SJeff Kirsher 	if (channel->napi_dev)
1819874aeea5SJeff Kirsher 		netif_napi_del(&channel->napi_str);
1820874aeea5SJeff Kirsher 	channel->napi_dev = NULL;
1821874aeea5SJeff Kirsher }
1822874aeea5SJeff Kirsher 
1823874aeea5SJeff Kirsher static void efx_fini_napi(struct efx_nic *efx)
1824874aeea5SJeff Kirsher {
1825874aeea5SJeff Kirsher 	struct efx_channel *channel;
1826874aeea5SJeff Kirsher 
1827874aeea5SJeff Kirsher 	efx_for_each_channel(channel, efx)
1828874aeea5SJeff Kirsher 		efx_fini_napi_channel(channel);
1829874aeea5SJeff Kirsher }
1830874aeea5SJeff Kirsher 
1831874aeea5SJeff Kirsher /**************************************************************************
1832874aeea5SJeff Kirsher  *
1833874aeea5SJeff Kirsher  * Kernel netpoll interface
1834874aeea5SJeff Kirsher  *
1835874aeea5SJeff Kirsher  *************************************************************************/
1836874aeea5SJeff Kirsher 
1837874aeea5SJeff Kirsher #ifdef CONFIG_NET_POLL_CONTROLLER
1838874aeea5SJeff Kirsher 
1839874aeea5SJeff Kirsher /* Although in the common case interrupts will be disabled, this is not
1840874aeea5SJeff Kirsher  * guaranteed. However, all our work happens inside the NAPI callback,
1841874aeea5SJeff Kirsher  * so no locking is required.
1842874aeea5SJeff Kirsher  */
1843874aeea5SJeff Kirsher static void efx_netpoll(struct net_device *net_dev)
1844874aeea5SJeff Kirsher {
1845874aeea5SJeff Kirsher 	struct efx_nic *efx = netdev_priv(net_dev);
1846874aeea5SJeff Kirsher 	struct efx_channel *channel;
1847874aeea5SJeff Kirsher 
1848874aeea5SJeff Kirsher 	efx_for_each_channel(channel, efx)
1849874aeea5SJeff Kirsher 		efx_schedule_channel(channel);
1850874aeea5SJeff Kirsher }
1851874aeea5SJeff Kirsher 
1852874aeea5SJeff Kirsher #endif
1853874aeea5SJeff Kirsher 
1854874aeea5SJeff Kirsher /**************************************************************************
1855874aeea5SJeff Kirsher  *
1856874aeea5SJeff Kirsher  * Kernel net device interface
1857874aeea5SJeff Kirsher  *
1858874aeea5SJeff Kirsher  *************************************************************************/
1859874aeea5SJeff Kirsher 
1860874aeea5SJeff Kirsher /* Context: process, rtnl_lock() held. */
1861874aeea5SJeff Kirsher static int efx_net_open(struct net_device *net_dev)
1862874aeea5SJeff Kirsher {
1863874aeea5SJeff Kirsher 	struct efx_nic *efx = netdev_priv(net_dev);
18648b7325b4SBen Hutchings 	int rc;
18658b7325b4SBen Hutchings 
1866874aeea5SJeff Kirsher 	netif_dbg(efx, ifup, efx->net_dev, "opening device on CPU %d\n",
1867874aeea5SJeff Kirsher 		  raw_smp_processor_id());
1868874aeea5SJeff Kirsher 
18698b7325b4SBen Hutchings 	rc = efx_check_disabled(efx);
18708b7325b4SBen Hutchings 	if (rc)
18718b7325b4SBen Hutchings 		return rc;
1872874aeea5SJeff Kirsher 	if (efx->phy_mode & PHY_MODE_SPECIAL)
1873874aeea5SJeff Kirsher 		return -EBUSY;
1874874aeea5SJeff Kirsher 	if (efx_mcdi_poll_reboot(efx) && efx_reset(efx, RESET_TYPE_ALL))
1875874aeea5SJeff Kirsher 		return -EIO;
1876874aeea5SJeff Kirsher 
1877874aeea5SJeff Kirsher 	/* Notify the kernel of the link state polled during driver load,
1878874aeea5SJeff Kirsher 	 * before the monitor starts running */
1879874aeea5SJeff Kirsher 	efx_link_status_changed(efx);
1880874aeea5SJeff Kirsher 
1881874aeea5SJeff Kirsher 	efx_start_all(efx);
1882dd40781eSBen Hutchings 	efx_selftest_async_start(efx);
1883874aeea5SJeff Kirsher 	return 0;
1884874aeea5SJeff Kirsher }
1885874aeea5SJeff Kirsher 
1886874aeea5SJeff Kirsher /* Context: process, rtnl_lock() held.
1887874aeea5SJeff Kirsher  * Note that the kernel will ignore our return code; this method
1888874aeea5SJeff Kirsher  * should really be a void.
1889874aeea5SJeff Kirsher  */
1890874aeea5SJeff Kirsher static int efx_net_stop(struct net_device *net_dev)
1891874aeea5SJeff Kirsher {
1892874aeea5SJeff Kirsher 	struct efx_nic *efx = netdev_priv(net_dev);
1893874aeea5SJeff Kirsher 
1894874aeea5SJeff Kirsher 	netif_dbg(efx, ifdown, efx->net_dev, "closing on CPU %d\n",
1895874aeea5SJeff Kirsher 		  raw_smp_processor_id());
1896874aeea5SJeff Kirsher 
1897874aeea5SJeff Kirsher 	/* Stop the device and flush all the channels */
1898874aeea5SJeff Kirsher 	efx_stop_all(efx);
1899874aeea5SJeff Kirsher 
1900874aeea5SJeff Kirsher 	return 0;
1901874aeea5SJeff Kirsher }
1902874aeea5SJeff Kirsher 
1903874aeea5SJeff Kirsher /* Context: process, dev_base_lock or RTNL held, non-blocking. */
19042aa9ef11SBen Hutchings static struct rtnl_link_stats64 *efx_net_stats(struct net_device *net_dev,
19052aa9ef11SBen Hutchings 					       struct rtnl_link_stats64 *stats)
1906874aeea5SJeff Kirsher {
1907874aeea5SJeff Kirsher 	struct efx_nic *efx = netdev_priv(net_dev);
1908874aeea5SJeff Kirsher 	struct efx_mac_stats *mac_stats = &efx->mac_stats;
1909874aeea5SJeff Kirsher 
1910874aeea5SJeff Kirsher 	spin_lock_bh(&efx->stats_lock);
19111cb34522SBen Hutchings 
1912874aeea5SJeff Kirsher 	efx->type->update_stats(efx);
1913874aeea5SJeff Kirsher 
1914874aeea5SJeff Kirsher 	stats->rx_packets = mac_stats->rx_packets;
1915874aeea5SJeff Kirsher 	stats->tx_packets = mac_stats->tx_packets;
1916874aeea5SJeff Kirsher 	stats->rx_bytes = mac_stats->rx_bytes;
1917874aeea5SJeff Kirsher 	stats->tx_bytes = mac_stats->tx_bytes;
1918874aeea5SJeff Kirsher 	stats->rx_dropped = efx->n_rx_nodesc_drop_cnt;
1919874aeea5SJeff Kirsher 	stats->multicast = mac_stats->rx_multicast;
1920874aeea5SJeff Kirsher 	stats->collisions = mac_stats->tx_collision;
1921874aeea5SJeff Kirsher 	stats->rx_length_errors = (mac_stats->rx_gtjumbo +
1922874aeea5SJeff Kirsher 				   mac_stats->rx_length_error);
1923874aeea5SJeff Kirsher 	stats->rx_crc_errors = mac_stats->rx_bad;
1924874aeea5SJeff Kirsher 	stats->rx_frame_errors = mac_stats->rx_align_error;
1925874aeea5SJeff Kirsher 	stats->rx_fifo_errors = mac_stats->rx_overflow;
1926874aeea5SJeff Kirsher 	stats->rx_missed_errors = mac_stats->rx_missed;
1927874aeea5SJeff Kirsher 	stats->tx_window_errors = mac_stats->tx_late_collision;
1928874aeea5SJeff Kirsher 
1929874aeea5SJeff Kirsher 	stats->rx_errors = (stats->rx_length_errors +
1930874aeea5SJeff Kirsher 			    stats->rx_crc_errors +
1931874aeea5SJeff Kirsher 			    stats->rx_frame_errors +
1932874aeea5SJeff Kirsher 			    mac_stats->rx_symbol_error);
1933874aeea5SJeff Kirsher 	stats->tx_errors = (stats->tx_window_errors +
1934874aeea5SJeff Kirsher 			    mac_stats->tx_bad);
1935874aeea5SJeff Kirsher 
19361cb34522SBen Hutchings 	spin_unlock_bh(&efx->stats_lock);
19371cb34522SBen Hutchings 
1938874aeea5SJeff Kirsher 	return stats;
1939874aeea5SJeff Kirsher }
1940874aeea5SJeff Kirsher 
1941874aeea5SJeff Kirsher /* Context: netif_tx_lock held, BHs disabled. */
1942874aeea5SJeff Kirsher static void efx_watchdog(struct net_device *net_dev)
1943874aeea5SJeff Kirsher {
1944874aeea5SJeff Kirsher 	struct efx_nic *efx = netdev_priv(net_dev);
1945874aeea5SJeff Kirsher 
1946874aeea5SJeff Kirsher 	netif_err(efx, tx_err, efx->net_dev,
1947874aeea5SJeff Kirsher 		  "TX stuck with port_enabled=%d: resetting channels\n",
1948874aeea5SJeff Kirsher 		  efx->port_enabled);
1949874aeea5SJeff Kirsher 
1950874aeea5SJeff Kirsher 	efx_schedule_reset(efx, RESET_TYPE_TX_WATCHDOG);
1951874aeea5SJeff Kirsher }
1952874aeea5SJeff Kirsher 
1953874aeea5SJeff Kirsher 
1954874aeea5SJeff Kirsher /* Context: process, rtnl_lock() held. */
1955874aeea5SJeff Kirsher static int efx_change_mtu(struct net_device *net_dev, int new_mtu)
1956874aeea5SJeff Kirsher {
1957874aeea5SJeff Kirsher 	struct efx_nic *efx = netdev_priv(net_dev);
19588b7325b4SBen Hutchings 	int rc;
1959874aeea5SJeff Kirsher 
19608b7325b4SBen Hutchings 	rc = efx_check_disabled(efx);
19618b7325b4SBen Hutchings 	if (rc)
19628b7325b4SBen Hutchings 		return rc;
1963874aeea5SJeff Kirsher 	if (new_mtu > EFX_MAX_MTU)
1964874aeea5SJeff Kirsher 		return -EINVAL;
1965874aeea5SJeff Kirsher 
1966874aeea5SJeff Kirsher 	efx_stop_all(efx);
1967874aeea5SJeff Kirsher 
1968874aeea5SJeff Kirsher 	netif_dbg(efx, drv, efx->net_dev, "changing MTU to %d\n", new_mtu);
1969874aeea5SJeff Kirsher 
1970874aeea5SJeff Kirsher 	mutex_lock(&efx->mac_lock);
1971874aeea5SJeff Kirsher 	net_dev->mtu = new_mtu;
1972710b208dSBen Hutchings 	efx->type->reconfigure_mac(efx);
1973874aeea5SJeff Kirsher 	mutex_unlock(&efx->mac_lock);
1974874aeea5SJeff Kirsher 
1975874aeea5SJeff Kirsher 	efx_start_all(efx);
19766c8eef4aSBen Hutchings 	return 0;
1977874aeea5SJeff Kirsher }
1978874aeea5SJeff Kirsher 
1979874aeea5SJeff Kirsher static int efx_set_mac_address(struct net_device *net_dev, void *data)
1980874aeea5SJeff Kirsher {
1981874aeea5SJeff Kirsher 	struct efx_nic *efx = netdev_priv(net_dev);
1982874aeea5SJeff Kirsher 	struct sockaddr *addr = data;
1983874aeea5SJeff Kirsher 	char *new_addr = addr->sa_data;
1984874aeea5SJeff Kirsher 
1985874aeea5SJeff Kirsher 	if (!is_valid_ether_addr(new_addr)) {
1986874aeea5SJeff Kirsher 		netif_err(efx, drv, efx->net_dev,
1987874aeea5SJeff Kirsher 			  "invalid ethernet MAC address requested: %pM\n",
1988874aeea5SJeff Kirsher 			  new_addr);
1989504f9b5aSDanny Kukawka 		return -EADDRNOTAVAIL;
1990874aeea5SJeff Kirsher 	}
1991874aeea5SJeff Kirsher 
1992874aeea5SJeff Kirsher 	memcpy(net_dev->dev_addr, new_addr, net_dev->addr_len);
1993cd2d5b52SBen Hutchings 	efx_sriov_mac_address_changed(efx);
1994874aeea5SJeff Kirsher 
1995874aeea5SJeff Kirsher 	/* Reconfigure the MAC */
1996874aeea5SJeff Kirsher 	mutex_lock(&efx->mac_lock);
1997710b208dSBen Hutchings 	efx->type->reconfigure_mac(efx);
1998874aeea5SJeff Kirsher 	mutex_unlock(&efx->mac_lock);
1999874aeea5SJeff Kirsher 
2000874aeea5SJeff Kirsher 	return 0;
2001874aeea5SJeff Kirsher }
2002874aeea5SJeff Kirsher 
2003874aeea5SJeff Kirsher /* Context: netif_addr_lock held, BHs disabled. */
20040fca8c97SBen Hutchings static void efx_set_rx_mode(struct net_device *net_dev)
2005874aeea5SJeff Kirsher {
2006874aeea5SJeff Kirsher 	struct efx_nic *efx = netdev_priv(net_dev);
2007874aeea5SJeff Kirsher 	struct netdev_hw_addr *ha;
2008874aeea5SJeff Kirsher 	union efx_multicast_hash *mc_hash = &efx->multicast_hash;
2009874aeea5SJeff Kirsher 	u32 crc;
2010874aeea5SJeff Kirsher 	int bit;
2011874aeea5SJeff Kirsher 
2012874aeea5SJeff Kirsher 	efx->promiscuous = !!(net_dev->flags & IFF_PROMISC);
2013874aeea5SJeff Kirsher 
2014874aeea5SJeff Kirsher 	/* Build multicast hash table */
2015874aeea5SJeff Kirsher 	if (efx->promiscuous || (net_dev->flags & IFF_ALLMULTI)) {
2016874aeea5SJeff Kirsher 		memset(mc_hash, 0xff, sizeof(*mc_hash));
2017874aeea5SJeff Kirsher 	} else {
2018874aeea5SJeff Kirsher 		memset(mc_hash, 0x00, sizeof(*mc_hash));
2019874aeea5SJeff Kirsher 		netdev_for_each_mc_addr(ha, net_dev) {
2020874aeea5SJeff Kirsher 			crc = ether_crc_le(ETH_ALEN, ha->addr);
2021874aeea5SJeff Kirsher 			bit = crc & (EFX_MCAST_HASH_ENTRIES - 1);
202232766ec8SBen Hutchings 			__set_bit_le(bit, mc_hash);
2023874aeea5SJeff Kirsher 		}
2024874aeea5SJeff Kirsher 
2025874aeea5SJeff Kirsher 		/* Broadcast packets go through the multicast hash filter.
2026874aeea5SJeff Kirsher 		 * ether_crc_le() of the broadcast address is 0xbe2612ff
2027874aeea5SJeff Kirsher 		 * so we always add bit 0xff to the mask.
2028874aeea5SJeff Kirsher 		 */
202932766ec8SBen Hutchings 		__set_bit_le(0xff, mc_hash);
2030874aeea5SJeff Kirsher 	}
2031874aeea5SJeff Kirsher 
2032874aeea5SJeff Kirsher 	if (efx->port_enabled)
2033874aeea5SJeff Kirsher 		queue_work(efx->workqueue, &efx->mac_work);
2034874aeea5SJeff Kirsher 	/* Otherwise efx_start_port() will do this */
2035874aeea5SJeff Kirsher }
2036874aeea5SJeff Kirsher 
2037c8f44affSMichał Mirosław static int efx_set_features(struct net_device *net_dev, netdev_features_t data)
2038874aeea5SJeff Kirsher {
2039874aeea5SJeff Kirsher 	struct efx_nic *efx = netdev_priv(net_dev);
2040874aeea5SJeff Kirsher 
2041874aeea5SJeff Kirsher 	/* If disabling RX n-tuple filtering, clear existing filters */
2042874aeea5SJeff Kirsher 	if (net_dev->features & ~data & NETIF_F_NTUPLE)
2043874aeea5SJeff Kirsher 		efx_filter_clear_rx(efx, EFX_FILTER_PRI_MANUAL);
2044874aeea5SJeff Kirsher 
2045874aeea5SJeff Kirsher 	return 0;
2046874aeea5SJeff Kirsher }
2047874aeea5SJeff Kirsher 
2048874aeea5SJeff Kirsher static const struct net_device_ops efx_netdev_ops = {
2049874aeea5SJeff Kirsher 	.ndo_open		= efx_net_open,
2050874aeea5SJeff Kirsher 	.ndo_stop		= efx_net_stop,
2051874aeea5SJeff Kirsher 	.ndo_get_stats64	= efx_net_stats,
2052874aeea5SJeff Kirsher 	.ndo_tx_timeout		= efx_watchdog,
2053874aeea5SJeff Kirsher 	.ndo_start_xmit		= efx_hard_start_xmit,
2054874aeea5SJeff Kirsher 	.ndo_validate_addr	= eth_validate_addr,
2055874aeea5SJeff Kirsher 	.ndo_do_ioctl		= efx_ioctl,
2056874aeea5SJeff Kirsher 	.ndo_change_mtu		= efx_change_mtu,
2057874aeea5SJeff Kirsher 	.ndo_set_mac_address	= efx_set_mac_address,
20580fca8c97SBen Hutchings 	.ndo_set_rx_mode	= efx_set_rx_mode,
2059874aeea5SJeff Kirsher 	.ndo_set_features	= efx_set_features,
2060cd2d5b52SBen Hutchings #ifdef CONFIG_SFC_SRIOV
2061cd2d5b52SBen Hutchings 	.ndo_set_vf_mac		= efx_sriov_set_vf_mac,
2062cd2d5b52SBen Hutchings 	.ndo_set_vf_vlan	= efx_sriov_set_vf_vlan,
2063cd2d5b52SBen Hutchings 	.ndo_set_vf_spoofchk	= efx_sriov_set_vf_spoofchk,
2064cd2d5b52SBen Hutchings 	.ndo_get_vf_config	= efx_sriov_get_vf_config,
2065cd2d5b52SBen Hutchings #endif
2066874aeea5SJeff Kirsher #ifdef CONFIG_NET_POLL_CONTROLLER
2067874aeea5SJeff Kirsher 	.ndo_poll_controller = efx_netpoll,
2068874aeea5SJeff Kirsher #endif
2069874aeea5SJeff Kirsher 	.ndo_setup_tc		= efx_setup_tc,
2070874aeea5SJeff Kirsher #ifdef CONFIG_RFS_ACCEL
2071874aeea5SJeff Kirsher 	.ndo_rx_flow_steer	= efx_filter_rfs,
2072874aeea5SJeff Kirsher #endif
2073874aeea5SJeff Kirsher };
2074874aeea5SJeff Kirsher 
2075874aeea5SJeff Kirsher static void efx_update_name(struct efx_nic *efx)
2076874aeea5SJeff Kirsher {
2077874aeea5SJeff Kirsher 	strcpy(efx->name, efx->net_dev->name);
2078874aeea5SJeff Kirsher 	efx_mtd_rename(efx);
2079874aeea5SJeff Kirsher 	efx_set_channel_names(efx);
2080874aeea5SJeff Kirsher }
2081874aeea5SJeff Kirsher 
2082874aeea5SJeff Kirsher static int efx_netdev_event(struct notifier_block *this,
2083874aeea5SJeff Kirsher 			    unsigned long event, void *ptr)
2084874aeea5SJeff Kirsher {
2085874aeea5SJeff Kirsher 	struct net_device *net_dev = ptr;
2086874aeea5SJeff Kirsher 
2087874aeea5SJeff Kirsher 	if (net_dev->netdev_ops == &efx_netdev_ops &&
2088874aeea5SJeff Kirsher 	    event == NETDEV_CHANGENAME)
2089874aeea5SJeff Kirsher 		efx_update_name(netdev_priv(net_dev));
2090874aeea5SJeff Kirsher 
2091874aeea5SJeff Kirsher 	return NOTIFY_DONE;
2092874aeea5SJeff Kirsher }
2093874aeea5SJeff Kirsher 
2094874aeea5SJeff Kirsher static struct notifier_block efx_netdev_notifier = {
2095874aeea5SJeff Kirsher 	.notifier_call = efx_netdev_event,
2096874aeea5SJeff Kirsher };
2097874aeea5SJeff Kirsher 
2098874aeea5SJeff Kirsher static ssize_t
2099874aeea5SJeff Kirsher show_phy_type(struct device *dev, struct device_attribute *attr, char *buf)
2100874aeea5SJeff Kirsher {
2101874aeea5SJeff Kirsher 	struct efx_nic *efx = pci_get_drvdata(to_pci_dev(dev));
2102874aeea5SJeff Kirsher 	return sprintf(buf, "%d\n", efx->phy_type);
2103874aeea5SJeff Kirsher }
2104874aeea5SJeff Kirsher static DEVICE_ATTR(phy_type, 0644, show_phy_type, NULL);
2105874aeea5SJeff Kirsher 
2106874aeea5SJeff Kirsher static int efx_register_netdev(struct efx_nic *efx)
2107874aeea5SJeff Kirsher {
2108874aeea5SJeff Kirsher 	struct net_device *net_dev = efx->net_dev;
2109874aeea5SJeff Kirsher 	struct efx_channel *channel;
2110874aeea5SJeff Kirsher 	int rc;
2111874aeea5SJeff Kirsher 
2112874aeea5SJeff Kirsher 	net_dev->watchdog_timeo = 5 * HZ;
2113874aeea5SJeff Kirsher 	net_dev->irq = efx->pci_dev->irq;
2114874aeea5SJeff Kirsher 	net_dev->netdev_ops = &efx_netdev_ops;
2115874aeea5SJeff Kirsher 	SET_ETHTOOL_OPS(net_dev, &efx_ethtool_ops);
21167e6d06f0SBen Hutchings 	net_dev->gso_max_segs = EFX_TSO_MAX_SEGS;
2117874aeea5SJeff Kirsher 
2118874aeea5SJeff Kirsher 	rtnl_lock();
2119874aeea5SJeff Kirsher 
21207153f623SBen Hutchings 	/* Enable resets to be scheduled and check whether any were
21217153f623SBen Hutchings 	 * already requested.  If so, the NIC is probably hosed so we
21227153f623SBen Hutchings 	 * abort.
21237153f623SBen Hutchings 	 */
21247153f623SBen Hutchings 	efx->state = STATE_READY;
21257153f623SBen Hutchings 	smp_mb(); /* ensure we change state before checking reset_pending */
21267153f623SBen Hutchings 	if (efx->reset_pending) {
21277153f623SBen Hutchings 		netif_err(efx, probe, efx->net_dev,
21287153f623SBen Hutchings 			  "aborting probe due to scheduled reset\n");
21297153f623SBen Hutchings 		rc = -EIO;
21307153f623SBen Hutchings 		goto fail_locked;
21317153f623SBen Hutchings 	}
21327153f623SBen Hutchings 
2133874aeea5SJeff Kirsher 	rc = dev_alloc_name(net_dev, net_dev->name);
2134874aeea5SJeff Kirsher 	if (rc < 0)
2135874aeea5SJeff Kirsher 		goto fail_locked;
2136874aeea5SJeff Kirsher 	efx_update_name(efx);
2137874aeea5SJeff Kirsher 
21388f8b3d51SBen Hutchings 	/* Always start with carrier off; PHY events will detect the link */
21398f8b3d51SBen Hutchings 	netif_carrier_off(net_dev);
21408f8b3d51SBen Hutchings 
2141874aeea5SJeff Kirsher 	rc = register_netdevice(net_dev);
2142874aeea5SJeff Kirsher 	if (rc)
2143874aeea5SJeff Kirsher 		goto fail_locked;
2144874aeea5SJeff Kirsher 
2145874aeea5SJeff Kirsher 	efx_for_each_channel(channel, efx) {
2146874aeea5SJeff Kirsher 		struct efx_tx_queue *tx_queue;
2147874aeea5SJeff Kirsher 		efx_for_each_channel_tx_queue(tx_queue, channel)
2148874aeea5SJeff Kirsher 			efx_init_tx_queue_core_txq(tx_queue);
2149874aeea5SJeff Kirsher 	}
2150874aeea5SJeff Kirsher 
2151874aeea5SJeff Kirsher 	rtnl_unlock();
2152874aeea5SJeff Kirsher 
2153874aeea5SJeff Kirsher 	rc = device_create_file(&efx->pci_dev->dev, &dev_attr_phy_type);
2154874aeea5SJeff Kirsher 	if (rc) {
2155874aeea5SJeff Kirsher 		netif_err(efx, drv, efx->net_dev,
2156874aeea5SJeff Kirsher 			  "failed to init net dev attributes\n");
2157874aeea5SJeff Kirsher 		goto fail_registered;
2158874aeea5SJeff Kirsher 	}
2159874aeea5SJeff Kirsher 
2160874aeea5SJeff Kirsher 	return 0;
2161874aeea5SJeff Kirsher 
21627153f623SBen Hutchings fail_registered:
21637153f623SBen Hutchings 	rtnl_lock();
21647153f623SBen Hutchings 	unregister_netdevice(net_dev);
2165874aeea5SJeff Kirsher fail_locked:
21667153f623SBen Hutchings 	efx->state = STATE_UNINIT;
2167874aeea5SJeff Kirsher 	rtnl_unlock();
2168874aeea5SJeff Kirsher 	netif_err(efx, drv, efx->net_dev, "could not register net dev\n");
2169874aeea5SJeff Kirsher 	return rc;
2170874aeea5SJeff Kirsher }
2171874aeea5SJeff Kirsher 
2172874aeea5SJeff Kirsher static void efx_unregister_netdev(struct efx_nic *efx)
2173874aeea5SJeff Kirsher {
2174874aeea5SJeff Kirsher 	struct efx_channel *channel;
2175874aeea5SJeff Kirsher 	struct efx_tx_queue *tx_queue;
2176874aeea5SJeff Kirsher 
2177874aeea5SJeff Kirsher 	if (!efx->net_dev)
2178874aeea5SJeff Kirsher 		return;
2179874aeea5SJeff Kirsher 
2180874aeea5SJeff Kirsher 	BUG_ON(netdev_priv(efx->net_dev) != efx);
2181874aeea5SJeff Kirsher 
2182874aeea5SJeff Kirsher 	/* Free up any skbs still remaining. This has to happen before
2183874aeea5SJeff Kirsher 	 * we try to unregister the netdev as running their destructors
2184874aeea5SJeff Kirsher 	 * may be needed to get the device ref. count to 0. */
2185874aeea5SJeff Kirsher 	efx_for_each_channel(channel, efx) {
2186874aeea5SJeff Kirsher 		efx_for_each_channel_tx_queue(tx_queue, channel)
2187874aeea5SJeff Kirsher 			efx_release_tx_buffers(tx_queue);
2188874aeea5SJeff Kirsher 	}
2189874aeea5SJeff Kirsher 
2190874aeea5SJeff Kirsher 	strlcpy(efx->name, pci_name(efx->pci_dev), sizeof(efx->name));
2191874aeea5SJeff Kirsher 	device_remove_file(&efx->pci_dev->dev, &dev_attr_phy_type);
21927153f623SBen Hutchings 
21937153f623SBen Hutchings 	rtnl_lock();
21947153f623SBen Hutchings 	unregister_netdevice(efx->net_dev);
21957153f623SBen Hutchings 	efx->state = STATE_UNINIT;
21967153f623SBen Hutchings 	rtnl_unlock();
2197874aeea5SJeff Kirsher }
2198874aeea5SJeff Kirsher 
2199874aeea5SJeff Kirsher /**************************************************************************
2200874aeea5SJeff Kirsher  *
2201874aeea5SJeff Kirsher  * Device reset and suspend
2202874aeea5SJeff Kirsher  *
2203874aeea5SJeff Kirsher  **************************************************************************/
2204874aeea5SJeff Kirsher 
2205874aeea5SJeff Kirsher /* Tears down the entire software state and most of the hardware state
2206874aeea5SJeff Kirsher  * before reset.  */
2207874aeea5SJeff Kirsher void efx_reset_down(struct efx_nic *efx, enum reset_type method)
2208874aeea5SJeff Kirsher {
2209874aeea5SJeff Kirsher 	EFX_ASSERT_RESET_SERIALISED(efx);
2210874aeea5SJeff Kirsher 
2211874aeea5SJeff Kirsher 	efx_stop_all(efx);
22127f967c01SBen Hutchings 	efx_stop_interrupts(efx, false);
22135642ceefSBen Hutchings 
22145642ceefSBen Hutchings 	mutex_lock(&efx->mac_lock);
2215874aeea5SJeff Kirsher 	if (efx->port_initialized && method != RESET_TYPE_INVISIBLE)
2216874aeea5SJeff Kirsher 		efx->phy_op->fini(efx);
2217874aeea5SJeff Kirsher 	efx->type->fini(efx);
2218874aeea5SJeff Kirsher }
2219874aeea5SJeff Kirsher 
2220874aeea5SJeff Kirsher /* This function will always ensure that the locks acquired in
2221874aeea5SJeff Kirsher  * efx_reset_down() are released. A failure return code indicates
2222874aeea5SJeff Kirsher  * that we were unable to reinitialise the hardware, and the
2223874aeea5SJeff Kirsher  * driver should be disabled. If ok is false, then the rx and tx
2224874aeea5SJeff Kirsher  * engines are not restarted, pending a RESET_DISABLE. */
2225874aeea5SJeff Kirsher int efx_reset_up(struct efx_nic *efx, enum reset_type method, bool ok)
2226874aeea5SJeff Kirsher {
2227874aeea5SJeff Kirsher 	int rc;
2228874aeea5SJeff Kirsher 
2229874aeea5SJeff Kirsher 	EFX_ASSERT_RESET_SERIALISED(efx);
2230874aeea5SJeff Kirsher 
2231874aeea5SJeff Kirsher 	rc = efx->type->init(efx);
2232874aeea5SJeff Kirsher 	if (rc) {
2233874aeea5SJeff Kirsher 		netif_err(efx, drv, efx->net_dev, "failed to initialise NIC\n");
2234874aeea5SJeff Kirsher 		goto fail;
2235874aeea5SJeff Kirsher 	}
2236874aeea5SJeff Kirsher 
2237874aeea5SJeff Kirsher 	if (!ok)
2238874aeea5SJeff Kirsher 		goto fail;
2239874aeea5SJeff Kirsher 
2240874aeea5SJeff Kirsher 	if (efx->port_initialized && method != RESET_TYPE_INVISIBLE) {
2241874aeea5SJeff Kirsher 		rc = efx->phy_op->init(efx);
2242874aeea5SJeff Kirsher 		if (rc)
2243874aeea5SJeff Kirsher 			goto fail;
2244874aeea5SJeff Kirsher 		if (efx->phy_op->reconfigure(efx))
2245874aeea5SJeff Kirsher 			netif_err(efx, drv, efx->net_dev,
2246874aeea5SJeff Kirsher 				  "could not restore PHY settings\n");
2247874aeea5SJeff Kirsher 	}
2248874aeea5SJeff Kirsher 
2249710b208dSBen Hutchings 	efx->type->reconfigure_mac(efx);
2250874aeea5SJeff Kirsher 
22517f967c01SBen Hutchings 	efx_start_interrupts(efx, false);
2252874aeea5SJeff Kirsher 	efx_restore_filters(efx);
2253cd2d5b52SBen Hutchings 	efx_sriov_reset(efx);
2254874aeea5SJeff Kirsher 
2255874aeea5SJeff Kirsher 	mutex_unlock(&efx->mac_lock);
2256874aeea5SJeff Kirsher 
2257874aeea5SJeff Kirsher 	efx_start_all(efx);
2258874aeea5SJeff Kirsher 
2259874aeea5SJeff Kirsher 	return 0;
2260874aeea5SJeff Kirsher 
2261874aeea5SJeff Kirsher fail:
2262874aeea5SJeff Kirsher 	efx->port_initialized = false;
2263874aeea5SJeff Kirsher 
2264874aeea5SJeff Kirsher 	mutex_unlock(&efx->mac_lock);
2265874aeea5SJeff Kirsher 
2266874aeea5SJeff Kirsher 	return rc;
2267874aeea5SJeff Kirsher }
2268874aeea5SJeff Kirsher 
2269874aeea5SJeff Kirsher /* Reset the NIC using the specified method.  Note that the reset may
2270874aeea5SJeff Kirsher  * fail, in which case the card will be left in an unusable state.
2271874aeea5SJeff Kirsher  *
2272874aeea5SJeff Kirsher  * Caller must hold the rtnl_lock.
2273874aeea5SJeff Kirsher  */
2274874aeea5SJeff Kirsher int efx_reset(struct efx_nic *efx, enum reset_type method)
2275874aeea5SJeff Kirsher {
2276874aeea5SJeff Kirsher 	int rc, rc2;
2277874aeea5SJeff Kirsher 	bool disabled;
2278874aeea5SJeff Kirsher 
2279874aeea5SJeff Kirsher 	netif_info(efx, drv, efx->net_dev, "resetting (%s)\n",
2280874aeea5SJeff Kirsher 		   RESET_TYPE(method));
2281874aeea5SJeff Kirsher 
2282c2f3b8e3SDaniel Pieczko 	efx_device_detach_sync(efx);
2283874aeea5SJeff Kirsher 	efx_reset_down(efx, method);
2284874aeea5SJeff Kirsher 
2285874aeea5SJeff Kirsher 	rc = efx->type->reset(efx, method);
2286874aeea5SJeff Kirsher 	if (rc) {
2287874aeea5SJeff Kirsher 		netif_err(efx, drv, efx->net_dev, "failed to reset hardware\n");
2288874aeea5SJeff Kirsher 		goto out;
2289874aeea5SJeff Kirsher 	}
2290874aeea5SJeff Kirsher 
2291874aeea5SJeff Kirsher 	/* Clear flags for the scopes we covered.  We assume the NIC and
2292874aeea5SJeff Kirsher 	 * driver are now quiescent so that there is no race here.
2293874aeea5SJeff Kirsher 	 */
2294874aeea5SJeff Kirsher 	efx->reset_pending &= -(1 << (method + 1));
2295874aeea5SJeff Kirsher 
2296874aeea5SJeff Kirsher 	/* Reinitialise bus-mastering, which may have been turned off before
2297874aeea5SJeff Kirsher 	 * the reset was scheduled. This is still appropriate, even in the
2298874aeea5SJeff Kirsher 	 * RESET_TYPE_DISABLE since this driver generally assumes the hardware
2299874aeea5SJeff Kirsher 	 * can respond to requests. */
2300874aeea5SJeff Kirsher 	pci_set_master(efx->pci_dev);
2301874aeea5SJeff Kirsher 
2302874aeea5SJeff Kirsher out:
2303874aeea5SJeff Kirsher 	/* Leave device stopped if necessary */
2304874aeea5SJeff Kirsher 	disabled = rc || method == RESET_TYPE_DISABLE;
2305874aeea5SJeff Kirsher 	rc2 = efx_reset_up(efx, method, !disabled);
2306874aeea5SJeff Kirsher 	if (rc2) {
2307874aeea5SJeff Kirsher 		disabled = true;
2308874aeea5SJeff Kirsher 		if (!rc)
2309874aeea5SJeff Kirsher 			rc = rc2;
2310874aeea5SJeff Kirsher 	}
2311874aeea5SJeff Kirsher 
2312874aeea5SJeff Kirsher 	if (disabled) {
2313874aeea5SJeff Kirsher 		dev_close(efx->net_dev);
2314874aeea5SJeff Kirsher 		netif_err(efx, drv, efx->net_dev, "has been disabled\n");
2315874aeea5SJeff Kirsher 		efx->state = STATE_DISABLED;
2316874aeea5SJeff Kirsher 	} else {
2317874aeea5SJeff Kirsher 		netif_dbg(efx, drv, efx->net_dev, "reset complete\n");
2318874aeea5SJeff Kirsher 		netif_device_attach(efx->net_dev);
2319874aeea5SJeff Kirsher 	}
2320874aeea5SJeff Kirsher 	return rc;
2321874aeea5SJeff Kirsher }
2322874aeea5SJeff Kirsher 
2323874aeea5SJeff Kirsher /* The worker thread exists so that code that cannot sleep can
2324874aeea5SJeff Kirsher  * schedule a reset for later.
2325874aeea5SJeff Kirsher  */
2326874aeea5SJeff Kirsher static void efx_reset_work(struct work_struct *data)
2327874aeea5SJeff Kirsher {
2328874aeea5SJeff Kirsher 	struct efx_nic *efx = container_of(data, struct efx_nic, reset_work);
2329874aeea5SJeff Kirsher 	unsigned long pending = ACCESS_ONCE(efx->reset_pending);
2330874aeea5SJeff Kirsher 
2331874aeea5SJeff Kirsher 	if (!pending)
2332874aeea5SJeff Kirsher 		return;
2333874aeea5SJeff Kirsher 
2334874aeea5SJeff Kirsher 	rtnl_lock();
23357153f623SBen Hutchings 
23367153f623SBen Hutchings 	/* We checked the state in efx_schedule_reset() but it may
23377153f623SBen Hutchings 	 * have changed by now.  Now that we have the RTNL lock,
23387153f623SBen Hutchings 	 * it cannot change again.
23397153f623SBen Hutchings 	 */
23407153f623SBen Hutchings 	if (efx->state == STATE_READY)
2341874aeea5SJeff Kirsher 		(void)efx_reset(efx, fls(pending) - 1);
23427153f623SBen Hutchings 
2343874aeea5SJeff Kirsher 	rtnl_unlock();
2344874aeea5SJeff Kirsher }
2345874aeea5SJeff Kirsher 
2346874aeea5SJeff Kirsher void efx_schedule_reset(struct efx_nic *efx, enum reset_type type)
2347874aeea5SJeff Kirsher {
2348874aeea5SJeff Kirsher 	enum reset_type method;
2349874aeea5SJeff Kirsher 
2350874aeea5SJeff Kirsher 	switch (type) {
2351874aeea5SJeff Kirsher 	case RESET_TYPE_INVISIBLE:
2352874aeea5SJeff Kirsher 	case RESET_TYPE_ALL:
2353874aeea5SJeff Kirsher 	case RESET_TYPE_WORLD:
2354874aeea5SJeff Kirsher 	case RESET_TYPE_DISABLE:
2355874aeea5SJeff Kirsher 		method = type;
2356874aeea5SJeff Kirsher 		netif_dbg(efx, drv, efx->net_dev, "scheduling %s reset\n",
2357874aeea5SJeff Kirsher 			  RESET_TYPE(method));
2358874aeea5SJeff Kirsher 		break;
2359874aeea5SJeff Kirsher 	default:
2360874aeea5SJeff Kirsher 		method = efx->type->map_reset_reason(type);
2361874aeea5SJeff Kirsher 		netif_dbg(efx, drv, efx->net_dev,
2362874aeea5SJeff Kirsher 			  "scheduling %s reset for %s\n",
2363874aeea5SJeff Kirsher 			  RESET_TYPE(method), RESET_TYPE(type));
2364874aeea5SJeff Kirsher 		break;
2365874aeea5SJeff Kirsher 	}
2366874aeea5SJeff Kirsher 
2367874aeea5SJeff Kirsher 	set_bit(method, &efx->reset_pending);
23687153f623SBen Hutchings 	smp_mb(); /* ensure we change reset_pending before checking state */
23697153f623SBen Hutchings 
23707153f623SBen Hutchings 	/* If we're not READY then just leave the flags set as the cue
23717153f623SBen Hutchings 	 * to abort probing or reschedule the reset later.
23727153f623SBen Hutchings 	 */
23737153f623SBen Hutchings 	if (ACCESS_ONCE(efx->state) != STATE_READY)
23747153f623SBen Hutchings 		return;
2375874aeea5SJeff Kirsher 
2376874aeea5SJeff Kirsher 	/* efx_process_channel() will no longer read events once a
2377874aeea5SJeff Kirsher 	 * reset is scheduled. So switch back to poll'd MCDI completions. */
2378874aeea5SJeff Kirsher 	efx_mcdi_mode_poll(efx);
2379874aeea5SJeff Kirsher 
2380874aeea5SJeff Kirsher 	queue_work(reset_workqueue, &efx->reset_work);
2381874aeea5SJeff Kirsher }
2382874aeea5SJeff Kirsher 
2383874aeea5SJeff Kirsher /**************************************************************************
2384874aeea5SJeff Kirsher  *
2385874aeea5SJeff Kirsher  * List of NICs we support
2386874aeea5SJeff Kirsher  *
2387874aeea5SJeff Kirsher  **************************************************************************/
2388874aeea5SJeff Kirsher 
2389874aeea5SJeff Kirsher /* PCI device ID table */
2390874aeea5SJeff Kirsher static DEFINE_PCI_DEVICE_TABLE(efx_pci_table) = {
23910e59e7e7SLinus Torvalds 	{PCI_DEVICE(PCI_VENDOR_ID_SOLARFLARE,
23920e59e7e7SLinus Torvalds 		    PCI_DEVICE_ID_SOLARFLARE_SFC4000A_0),
2393874aeea5SJeff Kirsher 	 .driver_data = (unsigned long) &falcon_a1_nic_type},
23940e59e7e7SLinus Torvalds 	{PCI_DEVICE(PCI_VENDOR_ID_SOLARFLARE,
23950e59e7e7SLinus Torvalds 		    PCI_DEVICE_ID_SOLARFLARE_SFC4000B),
2396874aeea5SJeff Kirsher 	 .driver_data = (unsigned long) &falcon_b0_nic_type},
2397547c474fSBen Hutchings 	{PCI_DEVICE(PCI_VENDOR_ID_SOLARFLARE, 0x0803),	/* SFC9020 */
2398874aeea5SJeff Kirsher 	 .driver_data = (unsigned long) &siena_a0_nic_type},
2399547c474fSBen Hutchings 	{PCI_DEVICE(PCI_VENDOR_ID_SOLARFLARE, 0x0813),	/* SFL9021 */
2400874aeea5SJeff Kirsher 	 .driver_data = (unsigned long) &siena_a0_nic_type},
2401874aeea5SJeff Kirsher 	{0}			/* end of list */
2402874aeea5SJeff Kirsher };
2403874aeea5SJeff Kirsher 
2404874aeea5SJeff Kirsher /**************************************************************************
2405874aeea5SJeff Kirsher  *
2406874aeea5SJeff Kirsher  * Dummy PHY/MAC operations
2407874aeea5SJeff Kirsher  *
2408874aeea5SJeff Kirsher  * Can be used for some unimplemented operations
2409874aeea5SJeff Kirsher  * Needed so all function pointers are valid and do not have to be tested
2410874aeea5SJeff Kirsher  * before use
2411874aeea5SJeff Kirsher  *
2412874aeea5SJeff Kirsher  **************************************************************************/
2413874aeea5SJeff Kirsher int efx_port_dummy_op_int(struct efx_nic *efx)
2414874aeea5SJeff Kirsher {
2415874aeea5SJeff Kirsher 	return 0;
2416874aeea5SJeff Kirsher }
2417874aeea5SJeff Kirsher void efx_port_dummy_op_void(struct efx_nic *efx) {}
2418874aeea5SJeff Kirsher 
2419874aeea5SJeff Kirsher static bool efx_port_dummy_op_poll(struct efx_nic *efx)
2420874aeea5SJeff Kirsher {
2421874aeea5SJeff Kirsher 	return false;
2422874aeea5SJeff Kirsher }
2423874aeea5SJeff Kirsher 
2424874aeea5SJeff Kirsher static const struct efx_phy_operations efx_dummy_phy_operations = {
2425874aeea5SJeff Kirsher 	.init		 = efx_port_dummy_op_int,
2426874aeea5SJeff Kirsher 	.reconfigure	 = efx_port_dummy_op_int,
2427874aeea5SJeff Kirsher 	.poll		 = efx_port_dummy_op_poll,
2428874aeea5SJeff Kirsher 	.fini		 = efx_port_dummy_op_void,
2429874aeea5SJeff Kirsher };
2430874aeea5SJeff Kirsher 
2431874aeea5SJeff Kirsher /**************************************************************************
2432874aeea5SJeff Kirsher  *
2433874aeea5SJeff Kirsher  * Data housekeeping
2434874aeea5SJeff Kirsher  *
2435874aeea5SJeff Kirsher  **************************************************************************/
2436874aeea5SJeff Kirsher 
2437874aeea5SJeff Kirsher /* This zeroes out and then fills in the invariants in a struct
2438874aeea5SJeff Kirsher  * efx_nic (including all sub-structures).
2439874aeea5SJeff Kirsher  */
2440adeb15aaSBen Hutchings static int efx_init_struct(struct efx_nic *efx,
2441874aeea5SJeff Kirsher 			   struct pci_dev *pci_dev, struct net_device *net_dev)
2442874aeea5SJeff Kirsher {
2443874aeea5SJeff Kirsher 	int i;
2444874aeea5SJeff Kirsher 
2445874aeea5SJeff Kirsher 	/* Initialise common structures */
2446874aeea5SJeff Kirsher 	spin_lock_init(&efx->biu_lock);
2447874aeea5SJeff Kirsher #ifdef CONFIG_SFC_MTD
2448874aeea5SJeff Kirsher 	INIT_LIST_HEAD(&efx->mtd_list);
2449874aeea5SJeff Kirsher #endif
2450874aeea5SJeff Kirsher 	INIT_WORK(&efx->reset_work, efx_reset_work);
2451874aeea5SJeff Kirsher 	INIT_DELAYED_WORK(&efx->monitor_work, efx_monitor);
2452dd40781eSBen Hutchings 	INIT_DELAYED_WORK(&efx->selftest_work, efx_selftest_async_work);
2453874aeea5SJeff Kirsher 	efx->pci_dev = pci_dev;
2454874aeea5SJeff Kirsher 	efx->msg_enable = debug;
2455f16aeea0SBen Hutchings 	efx->state = STATE_UNINIT;
2456874aeea5SJeff Kirsher 	strlcpy(efx->name, pci_name(pci_dev), sizeof(efx->name));
2457874aeea5SJeff Kirsher 
2458874aeea5SJeff Kirsher 	efx->net_dev = net_dev;
2459874aeea5SJeff Kirsher 	spin_lock_init(&efx->stats_lock);
2460874aeea5SJeff Kirsher 	mutex_init(&efx->mac_lock);
2461874aeea5SJeff Kirsher 	efx->phy_op = &efx_dummy_phy_operations;
2462874aeea5SJeff Kirsher 	efx->mdio.dev = net_dev;
2463874aeea5SJeff Kirsher 	INIT_WORK(&efx->mac_work, efx_mac_work);
24649f2cb71cSBen Hutchings 	init_waitqueue_head(&efx->flush_wq);
2465874aeea5SJeff Kirsher 
2466874aeea5SJeff Kirsher 	for (i = 0; i < EFX_MAX_CHANNELS; i++) {
2467874aeea5SJeff Kirsher 		efx->channel[i] = efx_alloc_channel(efx, i, NULL);
2468874aeea5SJeff Kirsher 		if (!efx->channel[i])
2469874aeea5SJeff Kirsher 			goto fail;
2470874aeea5SJeff Kirsher 	}
2471874aeea5SJeff Kirsher 
2472874aeea5SJeff Kirsher 	EFX_BUG_ON_PARANOID(efx->type->phys_addr_channels > EFX_MAX_CHANNELS);
2473874aeea5SJeff Kirsher 
2474874aeea5SJeff Kirsher 	/* Higher numbered interrupt modes are less capable! */
2475874aeea5SJeff Kirsher 	efx->interrupt_mode = max(efx->type->max_interrupt_mode,
2476874aeea5SJeff Kirsher 				  interrupt_mode);
2477874aeea5SJeff Kirsher 
2478874aeea5SJeff Kirsher 	/* Would be good to use the net_dev name, but we're too early */
2479874aeea5SJeff Kirsher 	snprintf(efx->workqueue_name, sizeof(efx->workqueue_name), "sfc%s",
2480874aeea5SJeff Kirsher 		 pci_name(pci_dev));
2481874aeea5SJeff Kirsher 	efx->workqueue = create_singlethread_workqueue(efx->workqueue_name);
2482874aeea5SJeff Kirsher 	if (!efx->workqueue)
2483874aeea5SJeff Kirsher 		goto fail;
2484874aeea5SJeff Kirsher 
2485874aeea5SJeff Kirsher 	return 0;
2486874aeea5SJeff Kirsher 
2487874aeea5SJeff Kirsher fail:
2488874aeea5SJeff Kirsher 	efx_fini_struct(efx);
2489874aeea5SJeff Kirsher 	return -ENOMEM;
2490874aeea5SJeff Kirsher }
2491874aeea5SJeff Kirsher 
2492874aeea5SJeff Kirsher static void efx_fini_struct(struct efx_nic *efx)
2493874aeea5SJeff Kirsher {
2494874aeea5SJeff Kirsher 	int i;
2495874aeea5SJeff Kirsher 
2496874aeea5SJeff Kirsher 	for (i = 0; i < EFX_MAX_CHANNELS; i++)
2497874aeea5SJeff Kirsher 		kfree(efx->channel[i]);
2498874aeea5SJeff Kirsher 
2499874aeea5SJeff Kirsher 	if (efx->workqueue) {
2500874aeea5SJeff Kirsher 		destroy_workqueue(efx->workqueue);
2501874aeea5SJeff Kirsher 		efx->workqueue = NULL;
2502874aeea5SJeff Kirsher 	}
2503874aeea5SJeff Kirsher }
2504874aeea5SJeff Kirsher 
2505874aeea5SJeff Kirsher /**************************************************************************
2506874aeea5SJeff Kirsher  *
2507874aeea5SJeff Kirsher  * PCI interface
2508874aeea5SJeff Kirsher  *
2509874aeea5SJeff Kirsher  **************************************************************************/
2510874aeea5SJeff Kirsher 
2511874aeea5SJeff Kirsher /* Main body of final NIC shutdown code
2512874aeea5SJeff Kirsher  * This is called only at module unload (or hotplug removal).
2513874aeea5SJeff Kirsher  */
2514874aeea5SJeff Kirsher static void efx_pci_remove_main(struct efx_nic *efx)
2515874aeea5SJeff Kirsher {
25167153f623SBen Hutchings 	/* Flush reset_work. It can no longer be scheduled since we
25177153f623SBen Hutchings 	 * are not READY.
25187153f623SBen Hutchings 	 */
25197153f623SBen Hutchings 	BUG_ON(efx->state == STATE_READY);
25207153f623SBen Hutchings 	cancel_work_sync(&efx->reset_work);
25217153f623SBen Hutchings 
2522874aeea5SJeff Kirsher #ifdef CONFIG_RFS_ACCEL
2523874aeea5SJeff Kirsher 	free_irq_cpu_rmap(efx->net_dev->rx_cpu_rmap);
2524874aeea5SJeff Kirsher 	efx->net_dev->rx_cpu_rmap = NULL;
2525874aeea5SJeff Kirsher #endif
25267f967c01SBen Hutchings 	efx_stop_interrupts(efx, false);
2527874aeea5SJeff Kirsher 	efx_nic_fini_interrupt(efx);
2528874aeea5SJeff Kirsher 	efx_fini_port(efx);
2529874aeea5SJeff Kirsher 	efx->type->fini(efx);
2530874aeea5SJeff Kirsher 	efx_fini_napi(efx);
2531874aeea5SJeff Kirsher 	efx_remove_all(efx);
2532874aeea5SJeff Kirsher }
2533874aeea5SJeff Kirsher 
2534874aeea5SJeff Kirsher /* Final NIC shutdown
2535874aeea5SJeff Kirsher  * This is called only at module unload (or hotplug removal).
2536874aeea5SJeff Kirsher  */
2537874aeea5SJeff Kirsher static void efx_pci_remove(struct pci_dev *pci_dev)
2538874aeea5SJeff Kirsher {
2539874aeea5SJeff Kirsher 	struct efx_nic *efx;
2540874aeea5SJeff Kirsher 
2541874aeea5SJeff Kirsher 	efx = pci_get_drvdata(pci_dev);
2542874aeea5SJeff Kirsher 	if (!efx)
2543874aeea5SJeff Kirsher 		return;
2544874aeea5SJeff Kirsher 
2545874aeea5SJeff Kirsher 	/* Mark the NIC as fini, then stop the interface */
2546874aeea5SJeff Kirsher 	rtnl_lock();
2547874aeea5SJeff Kirsher 	dev_close(efx->net_dev);
25485642ceefSBen Hutchings 	efx_stop_interrupts(efx, false);
2549874aeea5SJeff Kirsher 	rtnl_unlock();
2550874aeea5SJeff Kirsher 
2551cd2d5b52SBen Hutchings 	efx_sriov_fini(efx);
2552874aeea5SJeff Kirsher 	efx_unregister_netdev(efx);
2553874aeea5SJeff Kirsher 
2554874aeea5SJeff Kirsher 	efx_mtd_remove(efx);
2555874aeea5SJeff Kirsher 
2556874aeea5SJeff Kirsher 	efx_pci_remove_main(efx);
2557874aeea5SJeff Kirsher 
2558874aeea5SJeff Kirsher 	efx_fini_io(efx);
2559874aeea5SJeff Kirsher 	netif_dbg(efx, drv, efx->net_dev, "shutdown successful\n");
2560874aeea5SJeff Kirsher 
2561874aeea5SJeff Kirsher 	efx_fini_struct(efx);
25623de4e301SBen Hutchings 	pci_set_drvdata(pci_dev, NULL);
2563874aeea5SJeff Kirsher 	free_netdev(efx->net_dev);
2564874aeea5SJeff Kirsher };
2565874aeea5SJeff Kirsher 
2566460eeaa0SBen Hutchings /* NIC VPD information
2567460eeaa0SBen Hutchings  * Called during probe to display the part number of the
2568460eeaa0SBen Hutchings  * installed NIC.  VPD is potentially very large but this should
2569460eeaa0SBen Hutchings  * always appear within the first 512 bytes.
2570460eeaa0SBen Hutchings  */
2571460eeaa0SBen Hutchings #define SFC_VPD_LEN 512
2572460eeaa0SBen Hutchings static void efx_print_product_vpd(struct efx_nic *efx)
2573460eeaa0SBen Hutchings {
2574460eeaa0SBen Hutchings 	struct pci_dev *dev = efx->pci_dev;
2575460eeaa0SBen Hutchings 	char vpd_data[SFC_VPD_LEN];
2576460eeaa0SBen Hutchings 	ssize_t vpd_size;
2577460eeaa0SBen Hutchings 	int i, j;
2578460eeaa0SBen Hutchings 
2579460eeaa0SBen Hutchings 	/* Get the vpd data from the device */
2580460eeaa0SBen Hutchings 	vpd_size = pci_read_vpd(dev, 0, sizeof(vpd_data), vpd_data);
2581460eeaa0SBen Hutchings 	if (vpd_size <= 0) {
2582460eeaa0SBen Hutchings 		netif_err(efx, drv, efx->net_dev, "Unable to read VPD\n");
2583460eeaa0SBen Hutchings 		return;
2584460eeaa0SBen Hutchings 	}
2585460eeaa0SBen Hutchings 
2586460eeaa0SBen Hutchings 	/* Get the Read only section */
2587460eeaa0SBen Hutchings 	i = pci_vpd_find_tag(vpd_data, 0, vpd_size, PCI_VPD_LRDT_RO_DATA);
2588460eeaa0SBen Hutchings 	if (i < 0) {
2589460eeaa0SBen Hutchings 		netif_err(efx, drv, efx->net_dev, "VPD Read-only not found\n");
2590460eeaa0SBen Hutchings 		return;
2591460eeaa0SBen Hutchings 	}
2592460eeaa0SBen Hutchings 
2593460eeaa0SBen Hutchings 	j = pci_vpd_lrdt_size(&vpd_data[i]);
2594460eeaa0SBen Hutchings 	i += PCI_VPD_LRDT_TAG_SIZE;
2595460eeaa0SBen Hutchings 	if (i + j > vpd_size)
2596460eeaa0SBen Hutchings 		j = vpd_size - i;
2597460eeaa0SBen Hutchings 
2598460eeaa0SBen Hutchings 	/* Get the Part number */
2599460eeaa0SBen Hutchings 	i = pci_vpd_find_info_keyword(vpd_data, i, j, "PN");
2600460eeaa0SBen Hutchings 	if (i < 0) {
2601460eeaa0SBen Hutchings 		netif_err(efx, drv, efx->net_dev, "Part number not found\n");
2602460eeaa0SBen Hutchings 		return;
2603460eeaa0SBen Hutchings 	}
2604460eeaa0SBen Hutchings 
2605460eeaa0SBen Hutchings 	j = pci_vpd_info_field_size(&vpd_data[i]);
2606460eeaa0SBen Hutchings 	i += PCI_VPD_INFO_FLD_HDR_SIZE;
2607460eeaa0SBen Hutchings 	if (i + j > vpd_size) {
2608460eeaa0SBen Hutchings 		netif_err(efx, drv, efx->net_dev, "Incomplete part number\n");
2609460eeaa0SBen Hutchings 		return;
2610460eeaa0SBen Hutchings 	}
2611460eeaa0SBen Hutchings 
2612460eeaa0SBen Hutchings 	netif_info(efx, drv, efx->net_dev,
2613460eeaa0SBen Hutchings 		   "Part Number : %.*s\n", j, &vpd_data[i]);
2614460eeaa0SBen Hutchings }
2615460eeaa0SBen Hutchings 
2616460eeaa0SBen Hutchings 
2617874aeea5SJeff Kirsher /* Main body of NIC initialisation
2618874aeea5SJeff Kirsher  * This is called at module load (or hotplug insertion, theoretically).
2619874aeea5SJeff Kirsher  */
2620874aeea5SJeff Kirsher static int efx_pci_probe_main(struct efx_nic *efx)
2621874aeea5SJeff Kirsher {
2622874aeea5SJeff Kirsher 	int rc;
2623874aeea5SJeff Kirsher 
2624874aeea5SJeff Kirsher 	/* Do start-of-day initialisation */
2625874aeea5SJeff Kirsher 	rc = efx_probe_all(efx);
2626874aeea5SJeff Kirsher 	if (rc)
2627874aeea5SJeff Kirsher 		goto fail1;
2628874aeea5SJeff Kirsher 
2629874aeea5SJeff Kirsher 	efx_init_napi(efx);
2630874aeea5SJeff Kirsher 
2631874aeea5SJeff Kirsher 	rc = efx->type->init(efx);
2632874aeea5SJeff Kirsher 	if (rc) {
2633874aeea5SJeff Kirsher 		netif_err(efx, probe, efx->net_dev,
2634874aeea5SJeff Kirsher 			  "failed to initialise NIC\n");
2635874aeea5SJeff Kirsher 		goto fail3;
2636874aeea5SJeff Kirsher 	}
2637874aeea5SJeff Kirsher 
2638874aeea5SJeff Kirsher 	rc = efx_init_port(efx);
2639874aeea5SJeff Kirsher 	if (rc) {
2640874aeea5SJeff Kirsher 		netif_err(efx, probe, efx->net_dev,
2641874aeea5SJeff Kirsher 			  "failed to initialise port\n");
2642874aeea5SJeff Kirsher 		goto fail4;
2643874aeea5SJeff Kirsher 	}
2644874aeea5SJeff Kirsher 
2645874aeea5SJeff Kirsher 	rc = efx_nic_init_interrupt(efx);
2646874aeea5SJeff Kirsher 	if (rc)
2647874aeea5SJeff Kirsher 		goto fail5;
26487f967c01SBen Hutchings 	efx_start_interrupts(efx, false);
2649874aeea5SJeff Kirsher 
2650874aeea5SJeff Kirsher 	return 0;
2651874aeea5SJeff Kirsher 
2652874aeea5SJeff Kirsher  fail5:
2653874aeea5SJeff Kirsher 	efx_fini_port(efx);
2654874aeea5SJeff Kirsher  fail4:
2655874aeea5SJeff Kirsher 	efx->type->fini(efx);
2656874aeea5SJeff Kirsher  fail3:
2657874aeea5SJeff Kirsher 	efx_fini_napi(efx);
2658874aeea5SJeff Kirsher 	efx_remove_all(efx);
2659874aeea5SJeff Kirsher  fail1:
2660874aeea5SJeff Kirsher 	return rc;
2661874aeea5SJeff Kirsher }
2662874aeea5SJeff Kirsher 
2663874aeea5SJeff Kirsher /* NIC initialisation
2664874aeea5SJeff Kirsher  *
2665874aeea5SJeff Kirsher  * This is called at module load (or hotplug insertion,
266673ba7b68SBen Hutchings  * theoretically).  It sets up PCI mappings, resets the NIC,
2667874aeea5SJeff Kirsher  * sets up and registers the network devices with the kernel and hooks
2668874aeea5SJeff Kirsher  * the interrupt service routine.  It does not prepare the device for
2669874aeea5SJeff Kirsher  * transmission; this is left to the first time one of the network
2670874aeea5SJeff Kirsher  * interfaces is brought up (i.e. efx_net_open).
2671874aeea5SJeff Kirsher  */
2672874aeea5SJeff Kirsher static int __devinit efx_pci_probe(struct pci_dev *pci_dev,
2673874aeea5SJeff Kirsher 				   const struct pci_device_id *entry)
2674874aeea5SJeff Kirsher {
2675874aeea5SJeff Kirsher 	struct net_device *net_dev;
2676874aeea5SJeff Kirsher 	struct efx_nic *efx;
2677fadac6aaSBen Hutchings 	int rc;
2678874aeea5SJeff Kirsher 
2679874aeea5SJeff Kirsher 	/* Allocate and initialise a struct net_device and struct efx_nic */
2680874aeea5SJeff Kirsher 	net_dev = alloc_etherdev_mqs(sizeof(*efx), EFX_MAX_CORE_TX_QUEUES,
2681874aeea5SJeff Kirsher 				     EFX_MAX_RX_QUEUES);
2682874aeea5SJeff Kirsher 	if (!net_dev)
2683874aeea5SJeff Kirsher 		return -ENOMEM;
2684adeb15aaSBen Hutchings 	efx = netdev_priv(net_dev);
2685adeb15aaSBen Hutchings 	efx->type = (const struct efx_nic_type *) entry->driver_data;
2686adeb15aaSBen Hutchings 	net_dev->features |= (efx->type->offload_features | NETIF_F_SG |
2687874aeea5SJeff Kirsher 			      NETIF_F_HIGHDMA | NETIF_F_TSO |
2688874aeea5SJeff Kirsher 			      NETIF_F_RXCSUM);
2689adeb15aaSBen Hutchings 	if (efx->type->offload_features & NETIF_F_V6_CSUM)
2690874aeea5SJeff Kirsher 		net_dev->features |= NETIF_F_TSO6;
2691874aeea5SJeff Kirsher 	/* Mask for features that also apply to VLAN devices */
2692874aeea5SJeff Kirsher 	net_dev->vlan_features |= (NETIF_F_ALL_CSUM | NETIF_F_SG |
2693874aeea5SJeff Kirsher 				   NETIF_F_HIGHDMA | NETIF_F_ALL_TSO |
2694874aeea5SJeff Kirsher 				   NETIF_F_RXCSUM);
2695874aeea5SJeff Kirsher 	/* All offloads can be toggled */
2696874aeea5SJeff Kirsher 	net_dev->hw_features = net_dev->features & ~NETIF_F_HIGHDMA;
2697874aeea5SJeff Kirsher 	pci_set_drvdata(pci_dev, efx);
2698874aeea5SJeff Kirsher 	SET_NETDEV_DEV(net_dev, &pci_dev->dev);
2699adeb15aaSBen Hutchings 	rc = efx_init_struct(efx, pci_dev, net_dev);
2700874aeea5SJeff Kirsher 	if (rc)
2701874aeea5SJeff Kirsher 		goto fail1;
2702874aeea5SJeff Kirsher 
2703874aeea5SJeff Kirsher 	netif_info(efx, probe, efx->net_dev,
2704874aeea5SJeff Kirsher 		   "Solarflare NIC detected\n");
2705874aeea5SJeff Kirsher 
2706460eeaa0SBen Hutchings 	efx_print_product_vpd(efx);
2707460eeaa0SBen Hutchings 
2708874aeea5SJeff Kirsher 	/* Set up basic I/O (BAR mappings etc) */
2709874aeea5SJeff Kirsher 	rc = efx_init_io(efx);
2710874aeea5SJeff Kirsher 	if (rc)
2711874aeea5SJeff Kirsher 		goto fail2;
2712874aeea5SJeff Kirsher 
2713874aeea5SJeff Kirsher 	rc = efx_pci_probe_main(efx);
2714fadac6aaSBen Hutchings 	if (rc)
2715874aeea5SJeff Kirsher 		goto fail3;
2716874aeea5SJeff Kirsher 
2717874aeea5SJeff Kirsher 	rc = efx_register_netdev(efx);
2718874aeea5SJeff Kirsher 	if (rc)
2719fadac6aaSBen Hutchings 		goto fail4;
2720874aeea5SJeff Kirsher 
2721cd2d5b52SBen Hutchings 	rc = efx_sriov_init(efx);
2722cd2d5b52SBen Hutchings 	if (rc)
2723cd2d5b52SBen Hutchings 		netif_err(efx, probe, efx->net_dev,
2724cd2d5b52SBen Hutchings 			  "SR-IOV can't be enabled rc %d\n", rc);
2725cd2d5b52SBen Hutchings 
2726874aeea5SJeff Kirsher 	netif_dbg(efx, probe, efx->net_dev, "initialisation successful\n");
2727874aeea5SJeff Kirsher 
27287c43161cSBen Hutchings 	/* Try to create MTDs, but allow this to fail */
2729874aeea5SJeff Kirsher 	rtnl_lock();
27307c43161cSBen Hutchings 	rc = efx_mtd_probe(efx);
2731874aeea5SJeff Kirsher 	rtnl_unlock();
27327c43161cSBen Hutchings 	if (rc)
27337c43161cSBen Hutchings 		netif_warn(efx, probe, efx->net_dev,
27347c43161cSBen Hutchings 			   "failed to create MTDs (%d)\n", rc);
27357c43161cSBen Hutchings 
2736874aeea5SJeff Kirsher 	return 0;
2737874aeea5SJeff Kirsher 
2738874aeea5SJeff Kirsher  fail4:
2739fadac6aaSBen Hutchings 	efx_pci_remove_main(efx);
2740874aeea5SJeff Kirsher  fail3:
2741874aeea5SJeff Kirsher 	efx_fini_io(efx);
2742874aeea5SJeff Kirsher  fail2:
2743874aeea5SJeff Kirsher 	efx_fini_struct(efx);
2744874aeea5SJeff Kirsher  fail1:
27453de4e301SBen Hutchings 	pci_set_drvdata(pci_dev, NULL);
2746874aeea5SJeff Kirsher 	WARN_ON(rc > 0);
2747874aeea5SJeff Kirsher 	netif_dbg(efx, drv, efx->net_dev, "initialisation failed. rc=%d\n", rc);
2748874aeea5SJeff Kirsher 	free_netdev(net_dev);
2749874aeea5SJeff Kirsher 	return rc;
2750874aeea5SJeff Kirsher }
2751874aeea5SJeff Kirsher 
2752874aeea5SJeff Kirsher static int efx_pm_freeze(struct device *dev)
2753874aeea5SJeff Kirsher {
2754874aeea5SJeff Kirsher 	struct efx_nic *efx = pci_get_drvdata(to_pci_dev(dev));
2755874aeea5SJeff Kirsher 
275661da026dSBen Hutchings 	rtnl_lock();
275761da026dSBen Hutchings 
27586032fb56SBen Hutchings 	if (efx->state != STATE_DISABLED) {
2759f16aeea0SBen Hutchings 		efx->state = STATE_UNINIT;
2760874aeea5SJeff Kirsher 
2761c2f3b8e3SDaniel Pieczko 		efx_device_detach_sync(efx);
2762874aeea5SJeff Kirsher 
2763874aeea5SJeff Kirsher 		efx_stop_all(efx);
27647f967c01SBen Hutchings 		efx_stop_interrupts(efx, false);
27656032fb56SBen Hutchings 	}
2766874aeea5SJeff Kirsher 
276761da026dSBen Hutchings 	rtnl_unlock();
276861da026dSBen Hutchings 
2769874aeea5SJeff Kirsher 	return 0;
2770874aeea5SJeff Kirsher }
2771874aeea5SJeff Kirsher 
2772874aeea5SJeff Kirsher static int efx_pm_thaw(struct device *dev)
2773874aeea5SJeff Kirsher {
2774874aeea5SJeff Kirsher 	struct efx_nic *efx = pci_get_drvdata(to_pci_dev(dev));
2775874aeea5SJeff Kirsher 
277661da026dSBen Hutchings 	rtnl_lock();
277761da026dSBen Hutchings 
27786032fb56SBen Hutchings 	if (efx->state != STATE_DISABLED) {
27797f967c01SBen Hutchings 		efx_start_interrupts(efx, false);
2780874aeea5SJeff Kirsher 
2781874aeea5SJeff Kirsher 		mutex_lock(&efx->mac_lock);
2782874aeea5SJeff Kirsher 		efx->phy_op->reconfigure(efx);
2783874aeea5SJeff Kirsher 		mutex_unlock(&efx->mac_lock);
2784874aeea5SJeff Kirsher 
2785874aeea5SJeff Kirsher 		efx_start_all(efx);
2786874aeea5SJeff Kirsher 
2787874aeea5SJeff Kirsher 		netif_device_attach(efx->net_dev);
2788874aeea5SJeff Kirsher 
2789f16aeea0SBen Hutchings 		efx->state = STATE_READY;
2790874aeea5SJeff Kirsher 
2791874aeea5SJeff Kirsher 		efx->type->resume_wol(efx);
27926032fb56SBen Hutchings 	}
2793874aeea5SJeff Kirsher 
279461da026dSBen Hutchings 	rtnl_unlock();
279561da026dSBen Hutchings 
2796874aeea5SJeff Kirsher 	/* Reschedule any quenched resets scheduled during efx_pm_freeze() */
2797874aeea5SJeff Kirsher 	queue_work(reset_workqueue, &efx->reset_work);
2798874aeea5SJeff Kirsher 
2799874aeea5SJeff Kirsher 	return 0;
2800874aeea5SJeff Kirsher }
2801874aeea5SJeff Kirsher 
2802874aeea5SJeff Kirsher static int efx_pm_poweroff(struct device *dev)
2803874aeea5SJeff Kirsher {
2804874aeea5SJeff Kirsher 	struct pci_dev *pci_dev = to_pci_dev(dev);
2805874aeea5SJeff Kirsher 	struct efx_nic *efx = pci_get_drvdata(pci_dev);
2806874aeea5SJeff Kirsher 
2807874aeea5SJeff Kirsher 	efx->type->fini(efx);
2808874aeea5SJeff Kirsher 
2809874aeea5SJeff Kirsher 	efx->reset_pending = 0;
2810874aeea5SJeff Kirsher 
2811874aeea5SJeff Kirsher 	pci_save_state(pci_dev);
2812874aeea5SJeff Kirsher 	return pci_set_power_state(pci_dev, PCI_D3hot);
2813874aeea5SJeff Kirsher }
2814874aeea5SJeff Kirsher 
2815874aeea5SJeff Kirsher /* Used for both resume and restore */
2816874aeea5SJeff Kirsher static int efx_pm_resume(struct device *dev)
2817874aeea5SJeff Kirsher {
2818874aeea5SJeff Kirsher 	struct pci_dev *pci_dev = to_pci_dev(dev);
2819874aeea5SJeff Kirsher 	struct efx_nic *efx = pci_get_drvdata(pci_dev);
2820874aeea5SJeff Kirsher 	int rc;
2821874aeea5SJeff Kirsher 
2822874aeea5SJeff Kirsher 	rc = pci_set_power_state(pci_dev, PCI_D0);
2823874aeea5SJeff Kirsher 	if (rc)
2824874aeea5SJeff Kirsher 		return rc;
2825874aeea5SJeff Kirsher 	pci_restore_state(pci_dev);
2826874aeea5SJeff Kirsher 	rc = pci_enable_device(pci_dev);
2827874aeea5SJeff Kirsher 	if (rc)
2828874aeea5SJeff Kirsher 		return rc;
2829874aeea5SJeff Kirsher 	pci_set_master(efx->pci_dev);
2830874aeea5SJeff Kirsher 	rc = efx->type->reset(efx, RESET_TYPE_ALL);
2831874aeea5SJeff Kirsher 	if (rc)
2832874aeea5SJeff Kirsher 		return rc;
2833874aeea5SJeff Kirsher 	rc = efx->type->init(efx);
2834874aeea5SJeff Kirsher 	if (rc)
2835874aeea5SJeff Kirsher 		return rc;
2836874aeea5SJeff Kirsher 	efx_pm_thaw(dev);
2837874aeea5SJeff Kirsher 	return 0;
2838874aeea5SJeff Kirsher }
2839874aeea5SJeff Kirsher 
2840874aeea5SJeff Kirsher static int efx_pm_suspend(struct device *dev)
2841874aeea5SJeff Kirsher {
2842874aeea5SJeff Kirsher 	int rc;
2843874aeea5SJeff Kirsher 
2844874aeea5SJeff Kirsher 	efx_pm_freeze(dev);
2845874aeea5SJeff Kirsher 	rc = efx_pm_poweroff(dev);
2846874aeea5SJeff Kirsher 	if (rc)
2847874aeea5SJeff Kirsher 		efx_pm_resume(dev);
2848874aeea5SJeff Kirsher 	return rc;
2849874aeea5SJeff Kirsher }
2850874aeea5SJeff Kirsher 
285118e83e4cSBen Hutchings static const struct dev_pm_ops efx_pm_ops = {
2852874aeea5SJeff Kirsher 	.suspend	= efx_pm_suspend,
2853874aeea5SJeff Kirsher 	.resume		= efx_pm_resume,
2854874aeea5SJeff Kirsher 	.freeze		= efx_pm_freeze,
2855874aeea5SJeff Kirsher 	.thaw		= efx_pm_thaw,
2856874aeea5SJeff Kirsher 	.poweroff	= efx_pm_poweroff,
2857874aeea5SJeff Kirsher 	.restore	= efx_pm_resume,
2858874aeea5SJeff Kirsher };
2859874aeea5SJeff Kirsher 
2860874aeea5SJeff Kirsher static struct pci_driver efx_pci_driver = {
2861874aeea5SJeff Kirsher 	.name		= KBUILD_MODNAME,
2862874aeea5SJeff Kirsher 	.id_table	= efx_pci_table,
2863874aeea5SJeff Kirsher 	.probe		= efx_pci_probe,
2864874aeea5SJeff Kirsher 	.remove		= efx_pci_remove,
2865874aeea5SJeff Kirsher 	.driver.pm	= &efx_pm_ops,
2866874aeea5SJeff Kirsher };
2867874aeea5SJeff Kirsher 
2868874aeea5SJeff Kirsher /**************************************************************************
2869874aeea5SJeff Kirsher  *
2870874aeea5SJeff Kirsher  * Kernel module interface
2871874aeea5SJeff Kirsher  *
2872874aeea5SJeff Kirsher  *************************************************************************/
2873874aeea5SJeff Kirsher 
2874874aeea5SJeff Kirsher module_param(interrupt_mode, uint, 0444);
2875874aeea5SJeff Kirsher MODULE_PARM_DESC(interrupt_mode,
2876874aeea5SJeff Kirsher 		 "Interrupt mode (0=>MSIX 1=>MSI 2=>legacy)");
2877874aeea5SJeff Kirsher 
2878874aeea5SJeff Kirsher static int __init efx_init_module(void)
2879874aeea5SJeff Kirsher {
2880874aeea5SJeff Kirsher 	int rc;
2881874aeea5SJeff Kirsher 
2882874aeea5SJeff Kirsher 	printk(KERN_INFO "Solarflare NET driver v" EFX_DRIVER_VERSION "\n");
2883874aeea5SJeff Kirsher 
2884874aeea5SJeff Kirsher 	rc = register_netdevice_notifier(&efx_netdev_notifier);
2885874aeea5SJeff Kirsher 	if (rc)
2886874aeea5SJeff Kirsher 		goto err_notifier;
2887874aeea5SJeff Kirsher 
2888cd2d5b52SBen Hutchings 	rc = efx_init_sriov();
2889cd2d5b52SBen Hutchings 	if (rc)
2890cd2d5b52SBen Hutchings 		goto err_sriov;
2891cd2d5b52SBen Hutchings 
2892874aeea5SJeff Kirsher 	reset_workqueue = create_singlethread_workqueue("sfc_reset");
2893874aeea5SJeff Kirsher 	if (!reset_workqueue) {
2894874aeea5SJeff Kirsher 		rc = -ENOMEM;
2895874aeea5SJeff Kirsher 		goto err_reset;
2896874aeea5SJeff Kirsher 	}
2897874aeea5SJeff Kirsher 
2898874aeea5SJeff Kirsher 	rc = pci_register_driver(&efx_pci_driver);
2899874aeea5SJeff Kirsher 	if (rc < 0)
2900874aeea5SJeff Kirsher 		goto err_pci;
2901874aeea5SJeff Kirsher 
2902874aeea5SJeff Kirsher 	return 0;
2903874aeea5SJeff Kirsher 
2904874aeea5SJeff Kirsher  err_pci:
2905874aeea5SJeff Kirsher 	destroy_workqueue(reset_workqueue);
2906874aeea5SJeff Kirsher  err_reset:
2907cd2d5b52SBen Hutchings 	efx_fini_sriov();
2908cd2d5b52SBen Hutchings  err_sriov:
2909874aeea5SJeff Kirsher 	unregister_netdevice_notifier(&efx_netdev_notifier);
2910874aeea5SJeff Kirsher  err_notifier:
2911874aeea5SJeff Kirsher 	return rc;
2912874aeea5SJeff Kirsher }
2913874aeea5SJeff Kirsher 
2914874aeea5SJeff Kirsher static void __exit efx_exit_module(void)
2915874aeea5SJeff Kirsher {
2916874aeea5SJeff Kirsher 	printk(KERN_INFO "Solarflare NET driver unloading\n");
2917874aeea5SJeff Kirsher 
2918874aeea5SJeff Kirsher 	pci_unregister_driver(&efx_pci_driver);
2919874aeea5SJeff Kirsher 	destroy_workqueue(reset_workqueue);
2920cd2d5b52SBen Hutchings 	efx_fini_sriov();
2921874aeea5SJeff Kirsher 	unregister_netdevice_notifier(&efx_netdev_notifier);
2922874aeea5SJeff Kirsher 
2923874aeea5SJeff Kirsher }
2924874aeea5SJeff Kirsher 
2925874aeea5SJeff Kirsher module_init(efx_init_module);
2926874aeea5SJeff Kirsher module_exit(efx_exit_module);
2927874aeea5SJeff Kirsher 
2928874aeea5SJeff Kirsher MODULE_AUTHOR("Solarflare Communications and "
2929874aeea5SJeff Kirsher 	      "Michael Brown <mbrown@fensystems.co.uk>");
2930874aeea5SJeff Kirsher MODULE_DESCRIPTION("Solarflare Communications network driver");
2931874aeea5SJeff Kirsher MODULE_LICENSE("GPL");
2932874aeea5SJeff Kirsher MODULE_DEVICE_TABLE(pci, efx_pci_table);
2933