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Ben Hutchings8ceee662008-04-27 12:55:59 +01001/****************************************************************************
Ben Hutchingsf7a6d2c2013-08-29 23:32:48 +01002 * Driver for Solarflare network controllers and boards
Ben Hutchings8ceee662008-04-27 12:55:59 +01003 * Copyright 2005-2006 Fen Systems Ltd.
Ben Hutchingsf7a6d2c2013-08-29 23:32:48 +01004 * Copyright 2006-2013 Solarflare Communications Inc.
Ben Hutchings8ceee662008-04-27 12:55:59 +01005 *
6 * This program is free software; you can redistribute it and/or modify it
7 * under the terms of the GNU General Public License version 2 as published
8 * by the Free Software Foundation, incorporated herein by reference.
9 */
10
Ben Hutchings744093c2009-11-29 15:12:08 +000011#ifndef EFX_NIC_H
12#define EFX_NIC_H
Ben Hutchings8ceee662008-04-27 12:55:59 +010013
Stuart Hodgson7c236c42012-09-03 11:09:36 +010014#include <linux/net_tstamp.h>
Ben Hutchings5c16a962009-11-23 16:05:28 +000015#include <linux/i2c-algo-bit.h>
Ben Hutchings8ceee662008-04-27 12:55:59 +010016#include "net_driver.h"
Ben Hutchings177dfcd2008-12-12 21:50:08 -080017#include "efx.h"
Ben Hutchings8880f4e2009-11-29 15:15:41 +000018#include "mcdi.h"
Ben Hutchings8ceee662008-04-27 12:55:59 +010019
Ben Hutchingsdaeda632009-11-28 05:36:04 +000020enum {
21 EFX_REV_FALCON_A0 = 0,
22 EFX_REV_FALCON_A1 = 1,
23 EFX_REV_FALCON_B0 = 2,
Ben Hutchings8880f4e2009-11-29 15:15:41 +000024 EFX_REV_SIENA_A0 = 3,
Ben Hutchings8127d662013-08-29 19:19:29 +010025 EFX_REV_HUNT_A0 = 4,
Ben Hutchings8ceee662008-04-27 12:55:59 +010026};
27
Ben Hutchingsdaeda632009-11-28 05:36:04 +000028static inline int efx_nic_rev(struct efx_nic *efx)
Ben Hutchings55668612008-05-16 21:16:10 +010029{
Ben Hutchingsdaeda632009-11-28 05:36:04 +000030 return efx->type->revision;
Ben Hutchings55668612008-05-16 21:16:10 +010031}
Ben Hutchings8ceee662008-04-27 12:55:59 +010032
Joe Perches00aef982013-09-23 11:37:59 -070033u32 efx_farch_fpga_ver(struct efx_nic *efx);
Ben Hutchings152b6a62009-11-29 03:43:56 +000034
35/* NIC has two interlinked PCI functions for the same port. */
36static inline bool efx_nic_is_dual_func(struct efx_nic *efx)
37{
38 return efx_nic_rev(efx) < EFX_REV_FALCON_B0;
39}
40
Ben Hutchings86094f72013-08-21 19:51:04 +010041/* Read the current event from the event queue */
42static inline efx_qword_t *efx_event(struct efx_channel *channel,
43 unsigned int index)
44{
45 return ((efx_qword_t *) (channel->eventq.buf.addr)) +
46 (index & channel->eventq_mask);
47}
48
49/* See if an event is present
50 *
51 * We check both the high and low dword of the event for all ones. We
52 * wrote all ones when we cleared the event, and no valid event can
53 * have all ones in either its high or low dwords. This approach is
54 * robust against reordering.
55 *
56 * Note that using a single 64-bit comparison is incorrect; even
57 * though the CPU read will be atomic, the DMA write may not be.
58 */
59static inline int efx_event_present(efx_qword_t *event)
60{
61 return !(EFX_DWORD_IS_ALL_ONES(event->dword[0]) |
62 EFX_DWORD_IS_ALL_ONES(event->dword[1]));
63}
64
65/* Returns a pointer to the specified transmit descriptor in the TX
66 * descriptor queue belonging to the specified channel.
67 */
68static inline efx_qword_t *
69efx_tx_desc(struct efx_tx_queue *tx_queue, unsigned int index)
70{
71 return ((efx_qword_t *) (tx_queue->txd.buf.addr)) + index;
72}
73
Edward Cree70b33fb2014-10-17 15:32:25 +010074/* Get partner of a TX queue, seen as part of the same net core queue */
75static struct efx_tx_queue *efx_tx_queue_partner(struct efx_tx_queue *tx_queue)
76{
77 if (tx_queue->queue & EFX_TXQ_TYPE_OFFLOAD)
78 return tx_queue - EFX_TXQ_TYPE_OFFLOAD;
79 else
80 return tx_queue + EFX_TXQ_TYPE_OFFLOAD;
81}
82
83/* Report whether this TX queue would be empty for the given write_count.
84 * May return false negative.
Ben Hutchings306a2782013-06-28 21:47:15 +010085 */
86static inline bool __efx_nic_tx_is_empty(struct efx_tx_queue *tx_queue,
87 unsigned int write_count)
88{
89 unsigned int empty_read_count = ACCESS_ONCE(tx_queue->empty_read_count);
90
91 if (empty_read_count == 0)
92 return false;
93
94 return ((empty_read_count ^ write_count) & ~EFX_EMPTY_COUNT_VALID) == 0;
95}
96
Edward Cree70b33fb2014-10-17 15:32:25 +010097/* Decide whether we can use TX PIO, ie. write packet data directly into
98 * a buffer on the device. This can reduce latency at the expense of
99 * throughput, so we only do this if both hardware and software TX rings
100 * are empty. This also ensures that only one packet at a time can be
101 * using the PIO buffer.
102 */
103static inline bool efx_nic_may_tx_pio(struct efx_tx_queue *tx_queue)
Ben Hutchings306a2782013-06-28 21:47:15 +0100104{
Edward Cree70b33fb2014-10-17 15:32:25 +0100105 struct efx_tx_queue *partner = efx_tx_queue_partner(tx_queue);
106 return tx_queue->piobuf &&
107 __efx_nic_tx_is_empty(tx_queue, tx_queue->insert_count) &&
108 __efx_nic_tx_is_empty(partner, partner->insert_count);
Ben Hutchings306a2782013-06-28 21:47:15 +0100109}
110
Ben Hutchings86094f72013-08-21 19:51:04 +0100111/* Decide whether to push a TX descriptor to the NIC vs merely writing
112 * the doorbell. This can reduce latency when we are adding a single
113 * descriptor to an empty queue, but is otherwise pointless. Further,
114 * Falcon and Siena have hardware bugs (SF bug 33851) that may be
115 * triggered if we don't check this.
Edward Cree70b33fb2014-10-17 15:32:25 +0100116 * We use the write_count used for the last doorbell push, to get the
117 * NIC's view of the tx queue.
Ben Hutchings86094f72013-08-21 19:51:04 +0100118 */
119static inline bool efx_nic_may_push_tx_desc(struct efx_tx_queue *tx_queue,
120 unsigned int write_count)
121{
Ben Hutchings306a2782013-06-28 21:47:15 +0100122 bool was_empty = __efx_nic_tx_is_empty(tx_queue, write_count);
Ben Hutchings86094f72013-08-21 19:51:04 +0100123
124 tx_queue->empty_read_count = 0;
Ben Hutchings306a2782013-06-28 21:47:15 +0100125 return was_empty && tx_queue->write_count - write_count == 1;
Ben Hutchings86094f72013-08-21 19:51:04 +0100126}
127
128/* Returns a pointer to the specified descriptor in the RX descriptor queue */
129static inline efx_qword_t *
130efx_rx_desc(struct efx_rx_queue *rx_queue, unsigned int index)
131{
132 return ((efx_qword_t *) (rx_queue->rxd.buf.addr)) + index;
133}
134
Ben Hutchingsc1c4f452009-11-29 15:08:55 +0000135enum {
136 PHY_TYPE_NONE = 0,
137 PHY_TYPE_TXC43128 = 1,
138 PHY_TYPE_88E1111 = 2,
139 PHY_TYPE_SFX7101 = 3,
140 PHY_TYPE_QT2022C2 = 4,
141 PHY_TYPE_PM8358 = 6,
142 PHY_TYPE_SFT9001A = 8,
143 PHY_TYPE_QT2025C = 9,
144 PHY_TYPE_SFT9001B = 10,
145};
146
147#define FALCON_XMAC_LOOPBACKS \
148 ((1 << LOOPBACK_XGMII) | \
149 (1 << LOOPBACK_XGXS) | \
150 (1 << LOOPBACK_XAUI))
151
Ben Hutchings5b6262d2012-02-02 21:21:15 +0000152/* Alignment of PCIe DMA boundaries (4KB) */
153#define EFX_PAGE_SIZE 4096
154/* Size and alignment of buffer table entries (same) */
155#define EFX_BUF_SIZE EFX_PAGE_SIZE
156
Edward Creee4d112e2014-07-15 11:58:12 +0100157/* NIC-generic software stats */
158enum {
159 GENERIC_STAT_rx_noskb_drops,
160 GENERIC_STAT_rx_nodesc_trunc,
161 GENERIC_STAT_COUNT
162};
163
Ben Hutchings5c16a962009-11-23 16:05:28 +0000164/**
Ben Hutchings44838a42009-11-25 16:09:41 +0000165 * struct falcon_board_type - board operations and type information
166 * @id: Board type id, as found in NVRAM
Ben Hutchings37594332009-11-23 16:05:45 +0000167 * @init: Allocate resources and initialise peripheral hardware
168 * @init_phy: Do board-specific PHY initialisation
Ben Hutchings44838a42009-11-25 16:09:41 +0000169 * @fini: Shut down hardware and free resources
Ben Hutchings37594332009-11-23 16:05:45 +0000170 * @set_id_led: Set state of identifying LED or revert to automatic function
171 * @monitor: Board-specific health check function
Ben Hutchings44838a42009-11-25 16:09:41 +0000172 */
173struct falcon_board_type {
174 u8 id;
Ben Hutchings44838a42009-11-25 16:09:41 +0000175 int (*init) (struct efx_nic *nic);
176 void (*init_phy) (struct efx_nic *efx);
177 void (*fini) (struct efx_nic *nic);
178 void (*set_id_led) (struct efx_nic *efx, enum efx_led_mode mode);
179 int (*monitor) (struct efx_nic *nic);
180};
181
182/**
183 * struct falcon_board - board information
184 * @type: Type of board
185 * @major: Major rev. ('A', 'B' ...)
186 * @minor: Minor rev. (0, 1, ...)
Ben Hutchingse775fb92009-11-23 16:06:02 +0000187 * @i2c_adap: I2C adapter for on-board peripherals
188 * @i2c_data: Data for bit-banging algorithm
Ben Hutchings37594332009-11-23 16:05:45 +0000189 * @hwmon_client: I2C client for hardware monitor
190 * @ioexp_client: I2C client for power/port control
191 */
192struct falcon_board {
Ben Hutchings44838a42009-11-25 16:09:41 +0000193 const struct falcon_board_type *type;
Ben Hutchings37594332009-11-23 16:05:45 +0000194 int major;
195 int minor;
Ben Hutchingse775fb92009-11-23 16:06:02 +0000196 struct i2c_adapter i2c_adap;
197 struct i2c_algo_bit_data i2c_data;
Ben Hutchings37594332009-11-23 16:05:45 +0000198 struct i2c_client *hwmon_client, *ioexp_client;
199};
200
201/**
Ben Hutchings45a3fd52012-11-28 04:38:14 +0000202 * struct falcon_spi_device - a Falcon SPI (Serial Peripheral Interface) device
203 * @device_id: Controller's id for the device
204 * @size: Size (in bytes)
205 * @addr_len: Number of address bytes in read/write commands
206 * @munge_address: Flag whether addresses should be munged.
207 * Some devices with 9-bit addresses (e.g. AT25040A EEPROM)
208 * use bit 3 of the command byte as address bit A8, rather
209 * than having a two-byte address. If this flag is set, then
210 * commands should be munged in this way.
211 * @erase_command: Erase command (or 0 if sector erase not needed).
212 * @erase_size: Erase sector size (in bytes)
213 * Erase commands affect sectors with this size and alignment.
214 * This must be a power of two.
215 * @block_size: Write block size (in bytes).
216 * Write commands are limited to blocks with this size and alignment.
217 */
218struct falcon_spi_device {
219 int device_id;
220 unsigned int size;
221 unsigned int addr_len;
222 unsigned int munge_address:1;
223 u8 erase_command;
224 unsigned int erase_size;
225 unsigned int block_size;
226};
227
228static inline bool falcon_spi_present(const struct falcon_spi_device *spi)
229{
230 return spi->size != 0;
231}
232
Ben Hutchingscd0ecc92012-12-14 21:52:56 +0000233enum {
Edward Creee4d112e2014-07-15 11:58:12 +0100234 FALCON_STAT_tx_bytes = GENERIC_STAT_COUNT,
Ben Hutchingscd0ecc92012-12-14 21:52:56 +0000235 FALCON_STAT_tx_packets,
236 FALCON_STAT_tx_pause,
237 FALCON_STAT_tx_control,
238 FALCON_STAT_tx_unicast,
239 FALCON_STAT_tx_multicast,
240 FALCON_STAT_tx_broadcast,
241 FALCON_STAT_tx_lt64,
242 FALCON_STAT_tx_64,
243 FALCON_STAT_tx_65_to_127,
244 FALCON_STAT_tx_128_to_255,
245 FALCON_STAT_tx_256_to_511,
246 FALCON_STAT_tx_512_to_1023,
247 FALCON_STAT_tx_1024_to_15xx,
248 FALCON_STAT_tx_15xx_to_jumbo,
249 FALCON_STAT_tx_gtjumbo,
250 FALCON_STAT_tx_non_tcpudp,
251 FALCON_STAT_tx_mac_src_error,
252 FALCON_STAT_tx_ip_src_error,
253 FALCON_STAT_rx_bytes,
254 FALCON_STAT_rx_good_bytes,
255 FALCON_STAT_rx_bad_bytes,
256 FALCON_STAT_rx_packets,
257 FALCON_STAT_rx_good,
258 FALCON_STAT_rx_bad,
259 FALCON_STAT_rx_pause,
260 FALCON_STAT_rx_control,
261 FALCON_STAT_rx_unicast,
262 FALCON_STAT_rx_multicast,
263 FALCON_STAT_rx_broadcast,
264 FALCON_STAT_rx_lt64,
265 FALCON_STAT_rx_64,
266 FALCON_STAT_rx_65_to_127,
267 FALCON_STAT_rx_128_to_255,
268 FALCON_STAT_rx_256_to_511,
269 FALCON_STAT_rx_512_to_1023,
270 FALCON_STAT_rx_1024_to_15xx,
271 FALCON_STAT_rx_15xx_to_jumbo,
272 FALCON_STAT_rx_gtjumbo,
273 FALCON_STAT_rx_bad_lt64,
274 FALCON_STAT_rx_bad_gtjumbo,
275 FALCON_STAT_rx_overflow,
276 FALCON_STAT_rx_symbol_error,
277 FALCON_STAT_rx_align_error,
278 FALCON_STAT_rx_length_error,
279 FALCON_STAT_rx_internal_error,
280 FALCON_STAT_rx_nodesc_drop_cnt,
281 FALCON_STAT_COUNT
282};
283
Ben Hutchings45a3fd52012-11-28 04:38:14 +0000284/**
Ben Hutchings5c16a962009-11-23 16:05:28 +0000285 * struct falcon_nic_data - Falcon NIC state
Ben Hutchings89863522009-11-25 16:09:04 +0000286 * @pci_dev2: Secondary function of Falcon A
Ben Hutchings37594332009-11-23 16:05:45 +0000287 * @board: Board state and functions
Ben Hutchingscd0ecc92012-12-14 21:52:56 +0000288 * @stats: Hardware statistics
Ben Hutchings55edc6e2009-11-25 16:11:35 +0000289 * @stats_disable_count: Nest count for disabling statistics fetches
290 * @stats_pending: Is there a pending DMA of MAC statistics.
291 * @stats_timer: A timer for regularly fetching MAC statistics.
Ben Hutchings4de92182010-12-02 13:47:29 +0000292 * @spi_flash: SPI flash device
293 * @spi_eeprom: SPI EEPROM device
294 * @spi_lock: SPI bus lock
Ben Hutchings4833f022010-12-02 13:47:35 +0000295 * @mdio_lock: MDIO bus lock
Ben Hutchingscef68bd2010-12-02 13:47:51 +0000296 * @xmac_poll_required: XMAC link state needs polling
Ben Hutchings5c16a962009-11-23 16:05:28 +0000297 */
298struct falcon_nic_data {
299 struct pci_dev *pci_dev2;
Ben Hutchings37594332009-11-23 16:05:45 +0000300 struct falcon_board board;
Ben Hutchingscd0ecc92012-12-14 21:52:56 +0000301 u64 stats[FALCON_STAT_COUNT];
Ben Hutchings55edc6e2009-11-25 16:11:35 +0000302 unsigned int stats_disable_count;
303 bool stats_pending;
304 struct timer_list stats_timer;
Ben Hutchingsecd0a6f2012-11-28 04:12:41 +0000305 struct falcon_spi_device spi_flash;
306 struct falcon_spi_device spi_eeprom;
Ben Hutchings4de92182010-12-02 13:47:29 +0000307 struct mutex spi_lock;
Ben Hutchings4833f022010-12-02 13:47:35 +0000308 struct mutex mdio_lock;
Ben Hutchingscef68bd2010-12-02 13:47:51 +0000309 bool xmac_poll_required;
Ben Hutchings5c16a962009-11-23 16:05:28 +0000310};
311
Ben Hutchings278c0622009-11-23 16:05:12 +0000312static inline struct falcon_board *falcon_board(struct efx_nic *efx)
313{
Ben Hutchings37594332009-11-23 16:05:45 +0000314 struct falcon_nic_data *data = efx->nic_data;
315 return &data->board;
Ben Hutchings278c0622009-11-23 16:05:12 +0000316}
317
Ben Hutchingscd0ecc92012-12-14 21:52:56 +0000318enum {
Edward Creee4d112e2014-07-15 11:58:12 +0100319 SIENA_STAT_tx_bytes = GENERIC_STAT_COUNT,
Ben Hutchingscd0ecc92012-12-14 21:52:56 +0000320 SIENA_STAT_tx_good_bytes,
321 SIENA_STAT_tx_bad_bytes,
322 SIENA_STAT_tx_packets,
323 SIENA_STAT_tx_bad,
324 SIENA_STAT_tx_pause,
325 SIENA_STAT_tx_control,
326 SIENA_STAT_tx_unicast,
327 SIENA_STAT_tx_multicast,
328 SIENA_STAT_tx_broadcast,
329 SIENA_STAT_tx_lt64,
330 SIENA_STAT_tx_64,
331 SIENA_STAT_tx_65_to_127,
332 SIENA_STAT_tx_128_to_255,
333 SIENA_STAT_tx_256_to_511,
334 SIENA_STAT_tx_512_to_1023,
335 SIENA_STAT_tx_1024_to_15xx,
336 SIENA_STAT_tx_15xx_to_jumbo,
337 SIENA_STAT_tx_gtjumbo,
338 SIENA_STAT_tx_collision,
339 SIENA_STAT_tx_single_collision,
340 SIENA_STAT_tx_multiple_collision,
341 SIENA_STAT_tx_excessive_collision,
342 SIENA_STAT_tx_deferred,
343 SIENA_STAT_tx_late_collision,
344 SIENA_STAT_tx_excessive_deferred,
345 SIENA_STAT_tx_non_tcpudp,
346 SIENA_STAT_tx_mac_src_error,
347 SIENA_STAT_tx_ip_src_error,
348 SIENA_STAT_rx_bytes,
349 SIENA_STAT_rx_good_bytes,
350 SIENA_STAT_rx_bad_bytes,
351 SIENA_STAT_rx_packets,
352 SIENA_STAT_rx_good,
353 SIENA_STAT_rx_bad,
354 SIENA_STAT_rx_pause,
355 SIENA_STAT_rx_control,
356 SIENA_STAT_rx_unicast,
357 SIENA_STAT_rx_multicast,
358 SIENA_STAT_rx_broadcast,
359 SIENA_STAT_rx_lt64,
360 SIENA_STAT_rx_64,
361 SIENA_STAT_rx_65_to_127,
362 SIENA_STAT_rx_128_to_255,
363 SIENA_STAT_rx_256_to_511,
364 SIENA_STAT_rx_512_to_1023,
365 SIENA_STAT_rx_1024_to_15xx,
366 SIENA_STAT_rx_15xx_to_jumbo,
367 SIENA_STAT_rx_gtjumbo,
368 SIENA_STAT_rx_bad_gtjumbo,
369 SIENA_STAT_rx_overflow,
370 SIENA_STAT_rx_false_carrier,
371 SIENA_STAT_rx_symbol_error,
372 SIENA_STAT_rx_align_error,
373 SIENA_STAT_rx_length_error,
374 SIENA_STAT_rx_internal_error,
375 SIENA_STAT_rx_nodesc_drop_cnt,
376 SIENA_STAT_COUNT
377};
378
Ben Hutchings8880f4e2009-11-29 15:15:41 +0000379/**
380 * struct siena_nic_data - Siena NIC state
Shradha Shah2dc313e2014-11-05 12:16:18 +0000381 * @efx: Pointer back to main interface structure
Ben Hutchings8880f4e2009-11-29 15:15:41 +0000382 * @wol_filter_id: Wake-on-LAN packet filter id
Ben Hutchingscd0ecc92012-12-14 21:52:56 +0000383 * @stats: Hardware statistics
Daniel Pieczkobf3d0152015-05-06 00:55:36 +0100384 * @vf: Array of &struct siena_vf objects
Shradha Shah2dc313e2014-11-05 12:16:18 +0000385 * @vf_buftbl_base: The zeroth buffer table index used to back VF queues.
386 * @vfdi_status: Common VFDI status page to be dmad to VF address space.
387 * @local_addr_list: List of local addresses. Protected by %local_lock.
388 * @local_page_list: List of DMA addressable pages used to broadcast
389 * %local_addr_list. Protected by %local_lock.
390 * @local_lock: Mutex protecting %local_addr_list and %local_page_list.
391 * @peer_work: Work item to broadcast peer addresses to VMs.
Ben Hutchings8880f4e2009-11-29 15:15:41 +0000392 */
393struct siena_nic_data {
Shradha Shah2dc313e2014-11-05 12:16:18 +0000394 struct efx_nic *efx;
Ben Hutchings8880f4e2009-11-29 15:15:41 +0000395 int wol_filter_id;
Ben Hutchingscd0ecc92012-12-14 21:52:56 +0000396 u64 stats[SIENA_STAT_COUNT];
Shradha Shah2dc313e2014-11-05 12:16:18 +0000397#ifdef CONFIG_SFC_SRIOV
Daniel Pieczkobf3d0152015-05-06 00:55:36 +0100398 struct siena_vf *vf;
Shradha Shah2dc313e2014-11-05 12:16:18 +0000399 struct efx_channel *vfdi_channel;
400 unsigned vf_buftbl_base;
401 struct efx_buffer vfdi_status;
402 struct list_head local_addr_list;
403 struct list_head local_page_list;
404 struct mutex local_lock;
405 struct work_struct peer_work;
406#endif
Ben Hutchings8880f4e2009-11-29 15:15:41 +0000407};
408
Ben Hutchings8127d662013-08-29 19:19:29 +0100409enum {
Edward Creee4d112e2014-07-15 11:58:12 +0100410 EF10_STAT_tx_bytes = GENERIC_STAT_COUNT,
Ben Hutchings8127d662013-08-29 19:19:29 +0100411 EF10_STAT_tx_packets,
412 EF10_STAT_tx_pause,
413 EF10_STAT_tx_control,
414 EF10_STAT_tx_unicast,
415 EF10_STAT_tx_multicast,
416 EF10_STAT_tx_broadcast,
417 EF10_STAT_tx_lt64,
418 EF10_STAT_tx_64,
419 EF10_STAT_tx_65_to_127,
420 EF10_STAT_tx_128_to_255,
421 EF10_STAT_tx_256_to_511,
422 EF10_STAT_tx_512_to_1023,
423 EF10_STAT_tx_1024_to_15xx,
424 EF10_STAT_tx_15xx_to_jumbo,
425 EF10_STAT_rx_bytes,
426 EF10_STAT_rx_bytes_minus_good_bytes,
427 EF10_STAT_rx_good_bytes,
428 EF10_STAT_rx_bad_bytes,
429 EF10_STAT_rx_packets,
430 EF10_STAT_rx_good,
431 EF10_STAT_rx_bad,
432 EF10_STAT_rx_pause,
433 EF10_STAT_rx_control,
434 EF10_STAT_rx_unicast,
435 EF10_STAT_rx_multicast,
436 EF10_STAT_rx_broadcast,
437 EF10_STAT_rx_lt64,
438 EF10_STAT_rx_64,
439 EF10_STAT_rx_65_to_127,
440 EF10_STAT_rx_128_to_255,
441 EF10_STAT_rx_256_to_511,
442 EF10_STAT_rx_512_to_1023,
443 EF10_STAT_rx_1024_to_15xx,
444 EF10_STAT_rx_15xx_to_jumbo,
445 EF10_STAT_rx_gtjumbo,
446 EF10_STAT_rx_bad_gtjumbo,
447 EF10_STAT_rx_overflow,
448 EF10_STAT_rx_align_error,
449 EF10_STAT_rx_length_error,
450 EF10_STAT_rx_nodesc_drops,
Edward Cree568d7a02013-09-25 17:32:09 +0100451 EF10_STAT_rx_pm_trunc_bb_overflow,
452 EF10_STAT_rx_pm_discard_bb_overflow,
453 EF10_STAT_rx_pm_trunc_vfifo_full,
454 EF10_STAT_rx_pm_discard_vfifo_full,
455 EF10_STAT_rx_pm_trunc_qbb,
456 EF10_STAT_rx_pm_discard_qbb,
457 EF10_STAT_rx_pm_discard_mapping,
458 EF10_STAT_rx_dp_q_disabled_packets,
459 EF10_STAT_rx_dp_di_dropped_packets,
460 EF10_STAT_rx_dp_streaming_packets,
Shradha Shah79ac47a2013-11-28 18:48:49 +0000461 EF10_STAT_rx_dp_hlb_fetch,
462 EF10_STAT_rx_dp_hlb_wait,
Ben Hutchings8127d662013-08-29 19:19:29 +0100463 EF10_STAT_COUNT
464};
465
Ben Hutchings183233b2013-06-28 21:47:12 +0100466/* Maximum number of TX PIO buffers we may allocate to a function.
467 * This matches the total number of buffers on each SFC9100-family
468 * controller.
469 */
470#define EF10_TX_PIOBUF_COUNT 16
471
Ben Hutchings8127d662013-08-29 19:19:29 +0100472/**
473 * struct efx_ef10_nic_data - EF10 architecture NIC state
474 * @mcdi_buf: DMA buffer for MCDI
475 * @warm_boot_count: Last seen MC warm boot count
476 * @vi_base: Absolute index of first VI in this function
477 * @n_allocated_vis: Number of VIs allocated to this function
478 * @must_realloc_vis: Flag: VIs have yet to be reallocated after MC reboot
479 * @must_restore_filters: Flag: filters have yet to be restored after MC reboot
Ben Hutchings183233b2013-06-28 21:47:12 +0100480 * @n_piobufs: Number of PIO buffers allocated to this function
481 * @wc_membase: Base address of write-combining mapping of the memory BAR
482 * @pio_write_base: Base address for writing PIO buffers
483 * @pio_write_vi_base: Relative VI number for @pio_write_base
484 * @piobuf_handle: Handle of each PIO buffer allocated
485 * @must_restore_piobufs: Flag: PIO buffers have yet to be restored after MC
486 * reboot
Ben Hutchings8127d662013-08-29 19:19:29 +0100487 * @rx_rss_context: Firmware handle for our RSS context
488 * @stats: Hardware statistics
489 * @workaround_35388: Flag: firmware supports workaround for bug 35388
Ben Hutchingsa915ccc2013-09-05 22:51:55 +0100490 * @must_check_datapath_caps: Flag: @datapath_caps needs to be revalidated
491 * after MC reboot
Ben Hutchings8127d662013-08-29 19:19:29 +0100492 * @datapath_caps: Capabilities of datapath firmware (FLAGS1 field of
493 * %MC_CMD_GET_CAPABILITIES response)
Daniel Pieczko8d9f9dd2015-05-06 00:56:55 +0100494 * @rx_dpcpu_fw_id: Firmware ID of the RxDPCPU
495 * @tx_dpcpu_fw_id: Firmware ID of the TxDPCPU
Daniel Pieczko45b24492015-05-06 00:57:14 +0100496 * @vport_id: The function's vport ID, only relevant for PFs
Daniel Pieczko6d8aaaf2015-05-06 00:57:34 +0100497 * @must_probe_vswitching: Flag: vswitching has yet to be setup after MC reboot
Daniel Pieczko1cd9ecb2015-05-06 00:57:53 +0100498 * @pf_index: The number for this PF, or the parent PF if this is a VF
Ben Hutchings8127d662013-08-29 19:19:29 +0100499 */
500struct efx_ef10_nic_data {
501 struct efx_buffer mcdi_buf;
502 u16 warm_boot_count;
503 unsigned int vi_base;
504 unsigned int n_allocated_vis;
505 bool must_realloc_vis;
506 bool must_restore_filters;
Ben Hutchings183233b2013-06-28 21:47:12 +0100507 unsigned int n_piobufs;
508 void __iomem *wc_membase, *pio_write_base;
509 unsigned int pio_write_vi_base;
510 unsigned int piobuf_handle[EF10_TX_PIOBUF_COUNT];
511 bool must_restore_piobufs;
Ben Hutchings8127d662013-08-29 19:19:29 +0100512 u32 rx_rss_context;
513 u64 stats[EF10_STAT_COUNT];
514 bool workaround_35388;
Ben Hutchingsa915ccc2013-09-05 22:51:55 +0100515 bool must_check_datapath_caps;
Ben Hutchings8127d662013-08-29 19:19:29 +0100516 u32 datapath_caps;
Daniel Pieczko8d9f9dd2015-05-06 00:56:55 +0100517 unsigned int rx_dpcpu_fw_id;
518 unsigned int tx_dpcpu_fw_id;
Daniel Pieczko45b24492015-05-06 00:57:14 +0100519 unsigned int vport_id;
Daniel Pieczko6d8aaaf2015-05-06 00:57:34 +0100520 bool must_probe_vswitching;
Daniel Pieczko1cd9ecb2015-05-06 00:57:53 +0100521 unsigned int pf_index;
Ben Hutchings8127d662013-08-29 19:19:29 +0100522};
523
Joe Perches00aef982013-09-23 11:37:59 -0700524int efx_init_sriov(void);
Joe Perches00aef982013-09-23 11:37:59 -0700525void efx_fini_sriov(void);
Ben Hutchingscd2d5b52012-02-14 00:48:07 +0000526
Stuart Hodgson7c236c42012-09-03 11:09:36 +0100527struct ethtool_ts_info;
Ben Hutchingsac36baf2013-10-15 17:54:56 +0100528int efx_ptp_probe(struct efx_nic *efx, struct efx_channel *channel);
529void efx_ptp_defer_probe_with_channel(struct efx_nic *efx);
530void efx_ptp_remove(struct efx_nic *efx);
Ben Hutchings433dc9b2013-11-14 01:26:21 +0000531int efx_ptp_set_ts_config(struct efx_nic *efx, struct ifreq *ifr);
532int efx_ptp_get_ts_config(struct efx_nic *efx, struct ifreq *ifr);
Joe Perches00aef982013-09-23 11:37:59 -0700533void efx_ptp_get_ts_info(struct efx_nic *efx, struct ethtool_ts_info *ts_info);
534bool efx_ptp_is_ptp_tx(struct efx_nic *efx, struct sk_buff *skb);
Daniel Pieczko9ec06592013-11-21 17:11:25 +0000535int efx_ptp_get_mode(struct efx_nic *efx);
536int efx_ptp_change_mode(struct efx_nic *efx, bool enable_wanted,
537 unsigned int new_mode);
Joe Perches00aef982013-09-23 11:37:59 -0700538int efx_ptp_tx(struct efx_nic *efx, struct sk_buff *skb);
539void efx_ptp_event(struct efx_nic *efx, efx_qword_t *ev);
Ben Hutchings99691c42013-12-11 02:36:08 +0000540size_t efx_ptp_describe_stats(struct efx_nic *efx, u8 *strings);
541size_t efx_ptp_update_stats(struct efx_nic *efx, u64 *stats);
Jon Cooperbd9a2652013-11-18 12:54:41 +0000542void efx_time_sync_event(struct efx_channel *channel, efx_qword_t *ev);
543void __efx_rx_skb_attach_timestamp(struct efx_channel *channel,
544 struct sk_buff *skb);
545static inline void efx_rx_skb_attach_timestamp(struct efx_channel *channel,
546 struct sk_buff *skb)
547{
548 if (channel->sync_events_state == SYNC_EVENTS_VALID)
549 __efx_rx_skb_attach_timestamp(channel, skb);
550}
Alexandre Rames2ea4dc22013-11-08 10:20:31 +0000551void efx_ptp_start_datapath(struct efx_nic *efx);
552void efx_ptp_stop_datapath(struct efx_nic *efx);
Stuart Hodgson7c236c42012-09-03 11:09:36 +0100553
stephen hemminger6c8c2512011-04-14 05:50:12 +0000554extern const struct efx_nic_type falcon_a1_nic_type;
555extern const struct efx_nic_type falcon_b0_nic_type;
556extern const struct efx_nic_type siena_a0_nic_type;
Ben Hutchings8127d662013-08-29 19:19:29 +0100557extern const struct efx_nic_type efx_hunt_a0_nic_type;
Ben Hutchings8ceee662008-04-27 12:55:59 +0100558
559/**************************************************************************
560 *
561 * Externs
562 *
563 **************************************************************************
564 */
565
Joe Perches00aef982013-09-23 11:37:59 -0700566int falcon_probe_board(struct efx_nic *efx, u16 revision_info);
Ben Hutchings5087b542009-10-23 08:29:51 +0000567
Ben Hutchings8ceee662008-04-27 12:55:59 +0100568/* TX data path */
Ben Hutchings86094f72013-08-21 19:51:04 +0100569static inline int efx_nic_probe_tx(struct efx_tx_queue *tx_queue)
570{
571 return tx_queue->efx->type->tx_probe(tx_queue);
572}
573static inline void efx_nic_init_tx(struct efx_tx_queue *tx_queue)
574{
575 tx_queue->efx->type->tx_init(tx_queue);
576}
577static inline void efx_nic_remove_tx(struct efx_tx_queue *tx_queue)
578{
579 tx_queue->efx->type->tx_remove(tx_queue);
580}
581static inline void efx_nic_push_buffers(struct efx_tx_queue *tx_queue)
582{
583 tx_queue->efx->type->tx_write(tx_queue);
584}
Ben Hutchings8ceee662008-04-27 12:55:59 +0100585
586/* RX data path */
Ben Hutchings86094f72013-08-21 19:51:04 +0100587static inline int efx_nic_probe_rx(struct efx_rx_queue *rx_queue)
588{
589 return rx_queue->efx->type->rx_probe(rx_queue);
590}
591static inline void efx_nic_init_rx(struct efx_rx_queue *rx_queue)
592{
593 rx_queue->efx->type->rx_init(rx_queue);
594}
595static inline void efx_nic_remove_rx(struct efx_rx_queue *rx_queue)
596{
597 rx_queue->efx->type->rx_remove(rx_queue);
598}
599static inline void efx_nic_notify_rx_desc(struct efx_rx_queue *rx_queue)
600{
601 rx_queue->efx->type->rx_write(rx_queue);
602}
603static inline void efx_nic_generate_fill_event(struct efx_rx_queue *rx_queue)
604{
605 rx_queue->efx->type->rx_defer_refill(rx_queue);
606}
Ben Hutchings8ceee662008-04-27 12:55:59 +0100607
608/* Event data path */
Ben Hutchings86094f72013-08-21 19:51:04 +0100609static inline int efx_nic_probe_eventq(struct efx_channel *channel)
610{
611 return channel->efx->type->ev_probe(channel);
612}
Jon Cooper261e4d92013-04-15 18:51:54 +0100613static inline int efx_nic_init_eventq(struct efx_channel *channel)
Ben Hutchings86094f72013-08-21 19:51:04 +0100614{
Jon Cooper261e4d92013-04-15 18:51:54 +0100615 return channel->efx->type->ev_init(channel);
Ben Hutchings86094f72013-08-21 19:51:04 +0100616}
617static inline void efx_nic_fini_eventq(struct efx_channel *channel)
618{
619 channel->efx->type->ev_fini(channel);
620}
621static inline void efx_nic_remove_eventq(struct efx_channel *channel)
622{
623 channel->efx->type->ev_remove(channel);
624}
625static inline int
626efx_nic_process_eventq(struct efx_channel *channel, int quota)
627{
628 return channel->efx->type->ev_process(channel, quota);
629}
630static inline void efx_nic_eventq_read_ack(struct efx_channel *channel)
631{
632 channel->efx->type->ev_read_ack(channel);
633}
Joe Perches00aef982013-09-23 11:37:59 -0700634void efx_nic_event_test_start(struct efx_channel *channel);
Ben Hutchings86094f72013-08-21 19:51:04 +0100635
636/* Falcon/Siena queue operations */
Joe Perches00aef982013-09-23 11:37:59 -0700637int efx_farch_tx_probe(struct efx_tx_queue *tx_queue);
638void efx_farch_tx_init(struct efx_tx_queue *tx_queue);
639void efx_farch_tx_fini(struct efx_tx_queue *tx_queue);
640void efx_farch_tx_remove(struct efx_tx_queue *tx_queue);
641void efx_farch_tx_write(struct efx_tx_queue *tx_queue);
642int efx_farch_rx_probe(struct efx_rx_queue *rx_queue);
643void efx_farch_rx_init(struct efx_rx_queue *rx_queue);
644void efx_farch_rx_fini(struct efx_rx_queue *rx_queue);
645void efx_farch_rx_remove(struct efx_rx_queue *rx_queue);
646void efx_farch_rx_write(struct efx_rx_queue *rx_queue);
647void efx_farch_rx_defer_refill(struct efx_rx_queue *rx_queue);
648int efx_farch_ev_probe(struct efx_channel *channel);
649int efx_farch_ev_init(struct efx_channel *channel);
650void efx_farch_ev_fini(struct efx_channel *channel);
651void efx_farch_ev_remove(struct efx_channel *channel);
652int efx_farch_ev_process(struct efx_channel *channel, int quota);
653void efx_farch_ev_read_ack(struct efx_channel *channel);
654void efx_farch_ev_test_generate(struct efx_channel *channel);
Ben Hutchings86094f72013-08-21 19:51:04 +0100655
Ben Hutchingsadd72472012-11-08 01:46:53 +0000656/* Falcon/Siena filter operations */
Joe Perches00aef982013-09-23 11:37:59 -0700657int efx_farch_filter_table_probe(struct efx_nic *efx);
658void efx_farch_filter_table_restore(struct efx_nic *efx);
659void efx_farch_filter_table_remove(struct efx_nic *efx);
660void efx_farch_filter_update_rx_scatter(struct efx_nic *efx);
661s32 efx_farch_filter_insert(struct efx_nic *efx, struct efx_filter_spec *spec,
662 bool replace);
663int efx_farch_filter_remove_safe(struct efx_nic *efx,
664 enum efx_filter_priority priority,
665 u32 filter_id);
666int efx_farch_filter_get_safe(struct efx_nic *efx,
667 enum efx_filter_priority priority, u32 filter_id,
668 struct efx_filter_spec *);
Ben Hutchingsfbd79122013-11-21 19:15:03 +0000669int efx_farch_filter_clear_rx(struct efx_nic *efx,
670 enum efx_filter_priority priority);
Joe Perches00aef982013-09-23 11:37:59 -0700671u32 efx_farch_filter_count_rx_used(struct efx_nic *efx,
672 enum efx_filter_priority priority);
673u32 efx_farch_filter_get_rx_id_limit(struct efx_nic *efx);
674s32 efx_farch_filter_get_rx_ids(struct efx_nic *efx,
675 enum efx_filter_priority priority, u32 *buf,
676 u32 size);
Ben Hutchingsadd72472012-11-08 01:46:53 +0000677#ifdef CONFIG_RFS_ACCEL
Joe Perches00aef982013-09-23 11:37:59 -0700678s32 efx_farch_filter_rfs_insert(struct efx_nic *efx,
679 struct efx_filter_spec *spec);
680bool efx_farch_filter_rfs_expire_one(struct efx_nic *efx, u32 flow_id,
681 unsigned int index);
Ben Hutchingsadd72472012-11-08 01:46:53 +0000682#endif
Joe Perches00aef982013-09-23 11:37:59 -0700683void efx_farch_filter_sync_rx_mode(struct efx_nic *efx);
Ben Hutchingsadd72472012-11-08 01:46:53 +0000684
Joe Perches00aef982013-09-23 11:37:59 -0700685bool efx_nic_event_present(struct efx_channel *channel);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100686
Ben Hutchingsb7f514a2012-07-04 22:25:07 +0100687/* Some statistics are computed as A - B where A and B each increase
688 * linearly with some hardware counter(s) and the counters are read
689 * asynchronously. If the counters contributing to B are always read
690 * after those contributing to A, the computed value may be lower than
691 * the true value by some variable amount, and may decrease between
692 * subsequent computations.
693 *
694 * We should never allow statistics to decrease or to exceed the true
695 * value. Since the computed value will never be greater than the
696 * true value, we can achieve this by only storing the computed value
697 * when it increases.
698 */
699static inline void efx_update_diff_stat(u64 *stat, u64 diff)
700{
701 if ((s64)(diff - *stat) > 0)
702 *stat = diff;
703}
704
Ben Hutchings86094f72013-08-21 19:51:04 +0100705/* Interrupts */
Joe Perches00aef982013-09-23 11:37:59 -0700706int efx_nic_init_interrupt(struct efx_nic *efx);
707void efx_nic_irq_test_start(struct efx_nic *efx);
708void efx_nic_fini_interrupt(struct efx_nic *efx);
Ben Hutchings86094f72013-08-21 19:51:04 +0100709
710/* Falcon/Siena interrupts */
Joe Perches00aef982013-09-23 11:37:59 -0700711void efx_farch_irq_enable_master(struct efx_nic *efx);
712void efx_farch_irq_test_generate(struct efx_nic *efx);
713void efx_farch_irq_disable_master(struct efx_nic *efx);
714irqreturn_t efx_farch_msi_interrupt(int irq, void *dev_id);
715irqreturn_t efx_farch_legacy_interrupt(int irq, void *dev_id);
716irqreturn_t efx_farch_fatal_interrupt(struct efx_nic *efx);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100717
Ben Hutchingseee6f6a2012-02-28 23:37:35 +0000718static inline int efx_nic_event_test_irq_cpu(struct efx_channel *channel)
719{
Ben Hutchingsdd407812012-02-28 23:40:21 +0000720 return ACCESS_ONCE(channel->event_test_cpu);
Ben Hutchingseee6f6a2012-02-28 23:37:35 +0000721}
722static inline int efx_nic_irq_test_irq_cpu(struct efx_nic *efx)
723{
724 return ACCESS_ONCE(efx->last_irq_cpu);
725}
726
Ben Hutchings8ceee662008-04-27 12:55:59 +0100727/* Global Resources */
Joe Perches00aef982013-09-23 11:37:59 -0700728int efx_nic_flush_queues(struct efx_nic *efx);
729void siena_prepare_flush(struct efx_nic *efx);
730int efx_farch_fini_dmaq(struct efx_nic *efx);
Edward Creee2835462014-04-16 19:27:48 +0100731void efx_farch_finish_flr(struct efx_nic *efx);
Joe Perches00aef982013-09-23 11:37:59 -0700732void siena_finish_flush(struct efx_nic *efx);
733void falcon_start_nic_stats(struct efx_nic *efx);
734void falcon_stop_nic_stats(struct efx_nic *efx);
735int falcon_reset_xaui(struct efx_nic *efx);
736void efx_farch_dimension_resources(struct efx_nic *efx, unsigned sram_lim_qw);
737void efx_farch_init_common(struct efx_nic *efx);
738void efx_ef10_handle_drain_event(struct efx_nic *efx);
Joe Perches00aef982013-09-23 11:37:59 -0700739void efx_farch_rx_push_indir_table(struct efx_nic *efx);
Ben Hutchings152b6a62009-11-29 03:43:56 +0000740
741int efx_nic_alloc_buffer(struct efx_nic *efx, struct efx_buffer *buffer,
Ben Hutchings0d19a542012-09-18 21:59:52 +0100742 unsigned int len, gfp_t gfp_flags);
Ben Hutchings152b6a62009-11-29 03:43:56 +0000743void efx_nic_free_buffer(struct efx_nic *efx, struct efx_buffer *buffer);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100744
Ben Hutchings8c8661e2008-09-01 12:49:02 +0100745/* Tests */
Ben Hutchings86094f72013-08-21 19:51:04 +0100746struct efx_farch_register_test {
Ben Hutchings152b6a62009-11-29 03:43:56 +0000747 unsigned address;
748 efx_oword_t mask;
749};
Joe Perches00aef982013-09-23 11:37:59 -0700750int efx_farch_test_registers(struct efx_nic *efx,
751 const struct efx_farch_register_test *regs,
752 size_t n_regs);
Ben Hutchings8c8661e2008-09-01 12:49:02 +0100753
Joe Perches00aef982013-09-23 11:37:59 -0700754size_t efx_nic_get_regs_len(struct efx_nic *efx);
755void efx_nic_get_regs(struct efx_nic *efx, void *buf);
Ben Hutchings5b98c1b2010-06-21 03:06:53 +0000756
Joe Perches00aef982013-09-23 11:37:59 -0700757size_t efx_nic_describe_stats(const struct efx_hw_stat_desc *desc, size_t count,
758 const unsigned long *mask, u8 *names);
759void efx_nic_update_stats(const struct efx_hw_stat_desc *desc, size_t count,
760 const unsigned long *mask, u64 *stats,
761 const void *dma_buf, bool accumulate);
Jon Cooperf8f3b5a2013-09-30 17:36:50 +0100762void efx_nic_fix_nodesc_drop_stat(struct efx_nic *efx, u64 *stat);
Ben Hutchingscd0ecc92012-12-14 21:52:56 +0000763
Ben Hutchingsab0115f2012-09-13 01:11:31 +0100764#define EFX_MAX_FLUSH_TIME 5000
Ben Hutchings8ceee662008-04-27 12:55:59 +0100765
Joe Perches00aef982013-09-23 11:37:59 -0700766void efx_farch_generate_event(struct efx_nic *efx, unsigned int evq,
767 efx_qword_t *event);
Ben Hutchings8ceee662008-04-27 12:55:59 +0100768
Ben Hutchings744093c2009-11-29 15:12:08 +0000769#endif /* EFX_NIC_H */