1 /****************************************************************************
2 * Driver for Solarflare network controllers and boards
3 * Copyright 2009-2013 Solarflare Communications Inc.
5 * This program is free software; you can redistribute it and/or modify it
6 * under the terms of the GNU General Public License version 2 as published
7 * by the Free Software Foundation, incorporated herein by reference.
11 * Driver for PHY related operations via MCDI.
14 #include <linux/slab.h>
18 #include "mcdi_pcol.h"
22 struct efx_mcdi_phy_data
{
37 efx_mcdi_get_phy_cfg(struct efx_nic
*efx
, struct efx_mcdi_phy_data
*cfg
)
39 MCDI_DECLARE_BUF(outbuf
, MC_CMD_GET_PHY_CFG_OUT_LEN
);
43 BUILD_BUG_ON(MC_CMD_GET_PHY_CFG_IN_LEN
!= 0);
44 BUILD_BUG_ON(MC_CMD_GET_PHY_CFG_OUT_NAME_LEN
!= sizeof(cfg
->name
));
46 rc
= efx_mcdi_rpc(efx
, MC_CMD_GET_PHY_CFG
, NULL
, 0,
47 outbuf
, sizeof(outbuf
), &outlen
);
51 if (outlen
< MC_CMD_GET_PHY_CFG_OUT_LEN
) {
56 cfg
->flags
= MCDI_DWORD(outbuf
, GET_PHY_CFG_OUT_FLAGS
);
57 cfg
->type
= MCDI_DWORD(outbuf
, GET_PHY_CFG_OUT_TYPE
);
59 MCDI_DWORD(outbuf
, GET_PHY_CFG_OUT_SUPPORTED_CAP
);
60 cfg
->channel
= MCDI_DWORD(outbuf
, GET_PHY_CFG_OUT_CHANNEL
);
61 cfg
->port
= MCDI_DWORD(outbuf
, GET_PHY_CFG_OUT_PRT
);
62 cfg
->stats_mask
= MCDI_DWORD(outbuf
, GET_PHY_CFG_OUT_STATS_MASK
);
63 memcpy(cfg
->name
, MCDI_PTR(outbuf
, GET_PHY_CFG_OUT_NAME
),
65 cfg
->media
= MCDI_DWORD(outbuf
, GET_PHY_CFG_OUT_MEDIA_TYPE
);
66 cfg
->mmd_mask
= MCDI_DWORD(outbuf
, GET_PHY_CFG_OUT_MMD_MASK
);
67 memcpy(cfg
->revision
, MCDI_PTR(outbuf
, GET_PHY_CFG_OUT_REVISION
),
68 sizeof(cfg
->revision
));
73 netif_err(efx
, hw
, efx
->net_dev
, "%s: failed rc=%d\n", __func__
, rc
);
77 static int efx_mcdi_set_link(struct efx_nic
*efx
, u32 capabilities
,
78 u32 flags
, u32 loopback_mode
,
81 MCDI_DECLARE_BUF(inbuf
, MC_CMD_SET_LINK_IN_LEN
);
84 BUILD_BUG_ON(MC_CMD_SET_LINK_OUT_LEN
!= 0);
86 MCDI_SET_DWORD(inbuf
, SET_LINK_IN_CAP
, capabilities
);
87 MCDI_SET_DWORD(inbuf
, SET_LINK_IN_FLAGS
, flags
);
88 MCDI_SET_DWORD(inbuf
, SET_LINK_IN_LOOPBACK_MODE
, loopback_mode
);
89 MCDI_SET_DWORD(inbuf
, SET_LINK_IN_LOOPBACK_SPEED
, loopback_speed
);
91 rc
= efx_mcdi_rpc(efx
, MC_CMD_SET_LINK
, inbuf
, sizeof(inbuf
),
96 static int efx_mcdi_loopback_modes(struct efx_nic
*efx
, u64
*loopback_modes
)
98 MCDI_DECLARE_BUF(outbuf
, MC_CMD_GET_LOOPBACK_MODES_OUT_LEN
);
102 rc
= efx_mcdi_rpc(efx
, MC_CMD_GET_LOOPBACK_MODES
, NULL
, 0,
103 outbuf
, sizeof(outbuf
), &outlen
);
107 if (outlen
< (MC_CMD_GET_LOOPBACK_MODES_OUT_SUGGESTED_OFST
+
108 MC_CMD_GET_LOOPBACK_MODES_OUT_SUGGESTED_LEN
)) {
113 *loopback_modes
= MCDI_QWORD(outbuf
, GET_LOOPBACK_MODES_OUT_SUGGESTED
);
118 netif_err(efx
, hw
, efx
->net_dev
, "%s: failed rc=%d\n", __func__
, rc
);
122 static int efx_mcdi_mdio_read(struct net_device
*net_dev
,
123 int prtad
, int devad
, u16 addr
)
125 struct efx_nic
*efx
= netdev_priv(net_dev
);
126 MCDI_DECLARE_BUF(inbuf
, MC_CMD_MDIO_READ_IN_LEN
);
127 MCDI_DECLARE_BUF(outbuf
, MC_CMD_MDIO_READ_OUT_LEN
);
131 MCDI_SET_DWORD(inbuf
, MDIO_READ_IN_BUS
, efx
->mdio_bus
);
132 MCDI_SET_DWORD(inbuf
, MDIO_READ_IN_PRTAD
, prtad
);
133 MCDI_SET_DWORD(inbuf
, MDIO_READ_IN_DEVAD
, devad
);
134 MCDI_SET_DWORD(inbuf
, MDIO_READ_IN_ADDR
, addr
);
136 rc
= efx_mcdi_rpc(efx
, MC_CMD_MDIO_READ
, inbuf
, sizeof(inbuf
),
137 outbuf
, sizeof(outbuf
), &outlen
);
141 if (MCDI_DWORD(outbuf
, MDIO_READ_OUT_STATUS
) !=
142 MC_CMD_MDIO_STATUS_GOOD
)
145 return (u16
)MCDI_DWORD(outbuf
, MDIO_READ_OUT_VALUE
);
148 static int efx_mcdi_mdio_write(struct net_device
*net_dev
,
149 int prtad
, int devad
, u16 addr
, u16 value
)
151 struct efx_nic
*efx
= netdev_priv(net_dev
);
152 MCDI_DECLARE_BUF(inbuf
, MC_CMD_MDIO_WRITE_IN_LEN
);
153 MCDI_DECLARE_BUF(outbuf
, MC_CMD_MDIO_WRITE_OUT_LEN
);
157 MCDI_SET_DWORD(inbuf
, MDIO_WRITE_IN_BUS
, efx
->mdio_bus
);
158 MCDI_SET_DWORD(inbuf
, MDIO_WRITE_IN_PRTAD
, prtad
);
159 MCDI_SET_DWORD(inbuf
, MDIO_WRITE_IN_DEVAD
, devad
);
160 MCDI_SET_DWORD(inbuf
, MDIO_WRITE_IN_ADDR
, addr
);
161 MCDI_SET_DWORD(inbuf
, MDIO_WRITE_IN_VALUE
, value
);
163 rc
= efx_mcdi_rpc(efx
, MC_CMD_MDIO_WRITE
, inbuf
, sizeof(inbuf
),
164 outbuf
, sizeof(outbuf
), &outlen
);
168 if (MCDI_DWORD(outbuf
, MDIO_WRITE_OUT_STATUS
) !=
169 MC_CMD_MDIO_STATUS_GOOD
)
175 static u32
mcdi_to_ethtool_cap(u32 media
, u32 cap
)
180 case MC_CMD_MEDIA_KX4
:
181 result
|= SUPPORTED_Backplane
;
182 if (cap
& (1 << MC_CMD_PHY_CAP_1000FDX_LBN
))
183 result
|= SUPPORTED_1000baseKX_Full
;
184 if (cap
& (1 << MC_CMD_PHY_CAP_10000FDX_LBN
))
185 result
|= SUPPORTED_10000baseKX4_Full
;
186 if (cap
& (1 << MC_CMD_PHY_CAP_40000FDX_LBN
))
187 result
|= SUPPORTED_40000baseKR4_Full
;
190 case MC_CMD_MEDIA_XFP
:
191 case MC_CMD_MEDIA_SFP_PLUS
:
192 result
|= SUPPORTED_FIBRE
;
195 case MC_CMD_MEDIA_QSFP_PLUS
:
196 result
|= SUPPORTED_FIBRE
;
197 if (cap
& (1 << MC_CMD_PHY_CAP_40000FDX_LBN
))
198 result
|= SUPPORTED_40000baseCR4_Full
;
201 case MC_CMD_MEDIA_BASE_T
:
202 result
|= SUPPORTED_TP
;
203 if (cap
& (1 << MC_CMD_PHY_CAP_10HDX_LBN
))
204 result
|= SUPPORTED_10baseT_Half
;
205 if (cap
& (1 << MC_CMD_PHY_CAP_10FDX_LBN
))
206 result
|= SUPPORTED_10baseT_Full
;
207 if (cap
& (1 << MC_CMD_PHY_CAP_100HDX_LBN
))
208 result
|= SUPPORTED_100baseT_Half
;
209 if (cap
& (1 << MC_CMD_PHY_CAP_100FDX_LBN
))
210 result
|= SUPPORTED_100baseT_Full
;
211 if (cap
& (1 << MC_CMD_PHY_CAP_1000HDX_LBN
))
212 result
|= SUPPORTED_1000baseT_Half
;
213 if (cap
& (1 << MC_CMD_PHY_CAP_1000FDX_LBN
))
214 result
|= SUPPORTED_1000baseT_Full
;
215 if (cap
& (1 << MC_CMD_PHY_CAP_10000FDX_LBN
))
216 result
|= SUPPORTED_10000baseT_Full
;
220 if (cap
& (1 << MC_CMD_PHY_CAP_PAUSE_LBN
))
221 result
|= SUPPORTED_Pause
;
222 if (cap
& (1 << MC_CMD_PHY_CAP_ASYM_LBN
))
223 result
|= SUPPORTED_Asym_Pause
;
224 if (cap
& (1 << MC_CMD_PHY_CAP_AN_LBN
))
225 result
|= SUPPORTED_Autoneg
;
230 static u32
ethtool_to_mcdi_cap(u32 cap
)
234 if (cap
& SUPPORTED_10baseT_Half
)
235 result
|= (1 << MC_CMD_PHY_CAP_10HDX_LBN
);
236 if (cap
& SUPPORTED_10baseT_Full
)
237 result
|= (1 << MC_CMD_PHY_CAP_10FDX_LBN
);
238 if (cap
& SUPPORTED_100baseT_Half
)
239 result
|= (1 << MC_CMD_PHY_CAP_100HDX_LBN
);
240 if (cap
& SUPPORTED_100baseT_Full
)
241 result
|= (1 << MC_CMD_PHY_CAP_100FDX_LBN
);
242 if (cap
& SUPPORTED_1000baseT_Half
)
243 result
|= (1 << MC_CMD_PHY_CAP_1000HDX_LBN
);
244 if (cap
& (SUPPORTED_1000baseT_Full
| SUPPORTED_1000baseKX_Full
))
245 result
|= (1 << MC_CMD_PHY_CAP_1000FDX_LBN
);
246 if (cap
& (SUPPORTED_10000baseT_Full
| SUPPORTED_10000baseKX4_Full
))
247 result
|= (1 << MC_CMD_PHY_CAP_10000FDX_LBN
);
248 if (cap
& (SUPPORTED_40000baseCR4_Full
| SUPPORTED_40000baseKR4_Full
))
249 result
|= (1 << MC_CMD_PHY_CAP_40000FDX_LBN
);
250 if (cap
& SUPPORTED_Pause
)
251 result
|= (1 << MC_CMD_PHY_CAP_PAUSE_LBN
);
252 if (cap
& SUPPORTED_Asym_Pause
)
253 result
|= (1 << MC_CMD_PHY_CAP_ASYM_LBN
);
254 if (cap
& SUPPORTED_Autoneg
)
255 result
|= (1 << MC_CMD_PHY_CAP_AN_LBN
);
260 static u32
efx_get_mcdi_phy_flags(struct efx_nic
*efx
)
262 struct efx_mcdi_phy_data
*phy_cfg
= efx
->phy_data
;
263 enum efx_phy_mode mode
, supported
;
266 /* TODO: Advertise the capabilities supported by this PHY */
268 if (phy_cfg
->flags
& (1 << MC_CMD_GET_PHY_CFG_OUT_TXDIS_LBN
))
269 supported
|= PHY_MODE_TX_DISABLED
;
270 if (phy_cfg
->flags
& (1 << MC_CMD_GET_PHY_CFG_OUT_LOWPOWER_LBN
))
271 supported
|= PHY_MODE_LOW_POWER
;
272 if (phy_cfg
->flags
& (1 << MC_CMD_GET_PHY_CFG_OUT_POWEROFF_LBN
))
273 supported
|= PHY_MODE_OFF
;
275 mode
= efx
->phy_mode
& supported
;
278 if (mode
& PHY_MODE_TX_DISABLED
)
279 flags
|= (1 << MC_CMD_SET_LINK_IN_TXDIS_LBN
);
280 if (mode
& PHY_MODE_LOW_POWER
)
281 flags
|= (1 << MC_CMD_SET_LINK_IN_LOWPOWER_LBN
);
282 if (mode
& PHY_MODE_OFF
)
283 flags
|= (1 << MC_CMD_SET_LINK_IN_POWEROFF_LBN
);
288 static u32
mcdi_to_ethtool_media(u32 media
)
291 case MC_CMD_MEDIA_XAUI
:
292 case MC_CMD_MEDIA_CX4
:
293 case MC_CMD_MEDIA_KX4
:
296 case MC_CMD_MEDIA_XFP
:
297 case MC_CMD_MEDIA_SFP_PLUS
:
298 case MC_CMD_MEDIA_QSFP_PLUS
:
301 case MC_CMD_MEDIA_BASE_T
:
309 static void efx_mcdi_phy_decode_link(struct efx_nic
*efx
,
310 struct efx_link_state
*link_state
,
311 u32 speed
, u32 flags
, u32 fcntl
)
314 case MC_CMD_FCNTL_AUTO
:
315 WARN_ON(1); /* This is not a link mode */
316 link_state
->fc
= EFX_FC_AUTO
| EFX_FC_TX
| EFX_FC_RX
;
318 case MC_CMD_FCNTL_BIDIR
:
319 link_state
->fc
= EFX_FC_TX
| EFX_FC_RX
;
321 case MC_CMD_FCNTL_RESPOND
:
322 link_state
->fc
= EFX_FC_RX
;
326 case MC_CMD_FCNTL_OFF
:
331 link_state
->up
= !!(flags
& (1 << MC_CMD_GET_LINK_OUT_LINK_UP_LBN
));
332 link_state
->fd
= !!(flags
& (1 << MC_CMD_GET_LINK_OUT_FULL_DUPLEX_LBN
));
333 link_state
->speed
= speed
;
336 static int efx_mcdi_phy_probe(struct efx_nic
*efx
)
338 struct efx_mcdi_phy_data
*phy_data
;
339 MCDI_DECLARE_BUF(outbuf
, MC_CMD_GET_LINK_OUT_LEN
);
343 /* Initialise and populate phy_data */
344 phy_data
= kzalloc(sizeof(*phy_data
), GFP_KERNEL
);
345 if (phy_data
== NULL
)
348 rc
= efx_mcdi_get_phy_cfg(efx
, phy_data
);
352 /* Read initial link advertisement */
353 BUILD_BUG_ON(MC_CMD_GET_LINK_IN_LEN
!= 0);
354 rc
= efx_mcdi_rpc(efx
, MC_CMD_GET_LINK
, NULL
, 0,
355 outbuf
, sizeof(outbuf
), NULL
);
359 /* Fill out nic state */
360 efx
->phy_data
= phy_data
;
361 efx
->phy_type
= phy_data
->type
;
363 efx
->mdio_bus
= phy_data
->channel
;
364 efx
->mdio
.prtad
= phy_data
->port
;
365 efx
->mdio
.mmds
= phy_data
->mmd_mask
& ~(1 << MC_CMD_MMD_CLAUSE22
);
366 efx
->mdio
.mode_support
= 0;
367 if (phy_data
->mmd_mask
& (1 << MC_CMD_MMD_CLAUSE22
))
368 efx
->mdio
.mode_support
|= MDIO_SUPPORTS_C22
;
369 if (phy_data
->mmd_mask
& ~(1 << MC_CMD_MMD_CLAUSE22
))
370 efx
->mdio
.mode_support
|= MDIO_SUPPORTS_C45
| MDIO_EMULATE_C22
;
372 caps
= MCDI_DWORD(outbuf
, GET_LINK_OUT_CAP
);
373 if (caps
& (1 << MC_CMD_PHY_CAP_AN_LBN
))
374 efx
->link_advertising
=
375 mcdi_to_ethtool_cap(phy_data
->media
, caps
);
377 phy_data
->forced_cap
= caps
;
379 /* Assert that we can map efx -> mcdi loopback modes */
380 BUILD_BUG_ON(LOOPBACK_NONE
!= MC_CMD_LOOPBACK_NONE
);
381 BUILD_BUG_ON(LOOPBACK_DATA
!= MC_CMD_LOOPBACK_DATA
);
382 BUILD_BUG_ON(LOOPBACK_GMAC
!= MC_CMD_LOOPBACK_GMAC
);
383 BUILD_BUG_ON(LOOPBACK_XGMII
!= MC_CMD_LOOPBACK_XGMII
);
384 BUILD_BUG_ON(LOOPBACK_XGXS
!= MC_CMD_LOOPBACK_XGXS
);
385 BUILD_BUG_ON(LOOPBACK_XAUI
!= MC_CMD_LOOPBACK_XAUI
);
386 BUILD_BUG_ON(LOOPBACK_GMII
!= MC_CMD_LOOPBACK_GMII
);
387 BUILD_BUG_ON(LOOPBACK_SGMII
!= MC_CMD_LOOPBACK_SGMII
);
388 BUILD_BUG_ON(LOOPBACK_XGBR
!= MC_CMD_LOOPBACK_XGBR
);
389 BUILD_BUG_ON(LOOPBACK_XFI
!= MC_CMD_LOOPBACK_XFI
);
390 BUILD_BUG_ON(LOOPBACK_XAUI_FAR
!= MC_CMD_LOOPBACK_XAUI_FAR
);
391 BUILD_BUG_ON(LOOPBACK_GMII_FAR
!= MC_CMD_LOOPBACK_GMII_FAR
);
392 BUILD_BUG_ON(LOOPBACK_SGMII_FAR
!= MC_CMD_LOOPBACK_SGMII_FAR
);
393 BUILD_BUG_ON(LOOPBACK_XFI_FAR
!= MC_CMD_LOOPBACK_XFI_FAR
);
394 BUILD_BUG_ON(LOOPBACK_GPHY
!= MC_CMD_LOOPBACK_GPHY
);
395 BUILD_BUG_ON(LOOPBACK_PHYXS
!= MC_CMD_LOOPBACK_PHYXS
);
396 BUILD_BUG_ON(LOOPBACK_PCS
!= MC_CMD_LOOPBACK_PCS
);
397 BUILD_BUG_ON(LOOPBACK_PMAPMD
!= MC_CMD_LOOPBACK_PMAPMD
);
398 BUILD_BUG_ON(LOOPBACK_XPORT
!= MC_CMD_LOOPBACK_XPORT
);
399 BUILD_BUG_ON(LOOPBACK_XGMII_WS
!= MC_CMD_LOOPBACK_XGMII_WS
);
400 BUILD_BUG_ON(LOOPBACK_XAUI_WS
!= MC_CMD_LOOPBACK_XAUI_WS
);
401 BUILD_BUG_ON(LOOPBACK_XAUI_WS_FAR
!= MC_CMD_LOOPBACK_XAUI_WS_FAR
);
402 BUILD_BUG_ON(LOOPBACK_XAUI_WS_NEAR
!= MC_CMD_LOOPBACK_XAUI_WS_NEAR
);
403 BUILD_BUG_ON(LOOPBACK_GMII_WS
!= MC_CMD_LOOPBACK_GMII_WS
);
404 BUILD_BUG_ON(LOOPBACK_XFI_WS
!= MC_CMD_LOOPBACK_XFI_WS
);
405 BUILD_BUG_ON(LOOPBACK_XFI_WS_FAR
!= MC_CMD_LOOPBACK_XFI_WS_FAR
);
406 BUILD_BUG_ON(LOOPBACK_PHYXS_WS
!= MC_CMD_LOOPBACK_PHYXS_WS
);
408 rc
= efx_mcdi_loopback_modes(efx
, &efx
->loopback_modes
);
411 /* The MC indicates that LOOPBACK_NONE is a valid loopback mode,
412 * but by convention we don't */
413 efx
->loopback_modes
&= ~(1 << LOOPBACK_NONE
);
415 /* Set the initial link mode */
416 efx_mcdi_phy_decode_link(
417 efx
, &efx
->link_state
,
418 MCDI_DWORD(outbuf
, GET_LINK_OUT_LINK_SPEED
),
419 MCDI_DWORD(outbuf
, GET_LINK_OUT_FLAGS
),
420 MCDI_DWORD(outbuf
, GET_LINK_OUT_FCNTL
));
422 /* Default to Autonegotiated flow control if the PHY supports it */
423 efx
->wanted_fc
= EFX_FC_RX
| EFX_FC_TX
;
424 if (phy_data
->supported_cap
& (1 << MC_CMD_PHY_CAP_AN_LBN
))
425 efx
->wanted_fc
|= EFX_FC_AUTO
;
426 efx_link_set_wanted_fc(efx
, efx
->wanted_fc
);
435 int efx_mcdi_port_reconfigure(struct efx_nic
*efx
)
437 struct efx_mcdi_phy_data
*phy_cfg
= efx
->phy_data
;
438 u32 caps
= (efx
->link_advertising
?
439 ethtool_to_mcdi_cap(efx
->link_advertising
) :
440 phy_cfg
->forced_cap
);
442 return efx_mcdi_set_link(efx
, caps
, efx_get_mcdi_phy_flags(efx
),
443 efx
->loopback_mode
, 0);
446 /* Verify that the forced flow control settings (!EFX_FC_AUTO) are
447 * supported by the link partner. Warn the user if this isn't the case
449 static void efx_mcdi_phy_check_fcntl(struct efx_nic
*efx
, u32 lpa
)
451 struct efx_mcdi_phy_data
*phy_cfg
= efx
->phy_data
;
454 /* The link partner capabilities are only relevant if the
455 * link supports flow control autonegotiation */
456 if (~phy_cfg
->supported_cap
& (1 << MC_CMD_PHY_CAP_AN_LBN
))
459 /* If flow control autoneg is supported and enabled, then fine */
460 if (efx
->wanted_fc
& EFX_FC_AUTO
)
464 if (lpa
& (1 << MC_CMD_PHY_CAP_PAUSE_LBN
))
465 rmtadv
|= ADVERTISED_Pause
;
466 if (lpa
& (1 << MC_CMD_PHY_CAP_ASYM_LBN
))
467 rmtadv
|= ADVERTISED_Asym_Pause
;
469 if ((efx
->wanted_fc
& EFX_FC_TX
) && rmtadv
== ADVERTISED_Asym_Pause
)
470 netif_err(efx
, link
, efx
->net_dev
,
471 "warning: link partner doesn't support pause frames");
474 static bool efx_mcdi_phy_poll(struct efx_nic
*efx
)
476 struct efx_link_state old_state
= efx
->link_state
;
477 MCDI_DECLARE_BUF(outbuf
, MC_CMD_GET_LINK_OUT_LEN
);
480 WARN_ON(!mutex_is_locked(&efx
->mac_lock
));
482 BUILD_BUG_ON(MC_CMD_GET_LINK_IN_LEN
!= 0);
484 rc
= efx_mcdi_rpc(efx
, MC_CMD_GET_LINK
, NULL
, 0,
485 outbuf
, sizeof(outbuf
), NULL
);
487 efx
->link_state
.up
= false;
489 efx_mcdi_phy_decode_link(
490 efx
, &efx
->link_state
,
491 MCDI_DWORD(outbuf
, GET_LINK_OUT_LINK_SPEED
),
492 MCDI_DWORD(outbuf
, GET_LINK_OUT_FLAGS
),
493 MCDI_DWORD(outbuf
, GET_LINK_OUT_FCNTL
));
495 return !efx_link_state_equal(&efx
->link_state
, &old_state
);
498 static void efx_mcdi_phy_remove(struct efx_nic
*efx
)
500 struct efx_mcdi_phy_data
*phy_data
= efx
->phy_data
;
502 efx
->phy_data
= NULL
;
506 static void efx_mcdi_phy_get_settings(struct efx_nic
*efx
, struct ethtool_cmd
*ecmd
)
508 struct efx_mcdi_phy_data
*phy_cfg
= efx
->phy_data
;
509 MCDI_DECLARE_BUF(outbuf
, MC_CMD_GET_LINK_OUT_LEN
);
513 mcdi_to_ethtool_cap(phy_cfg
->media
, phy_cfg
->supported_cap
);
514 ecmd
->advertising
= efx
->link_advertising
;
515 ethtool_cmd_speed_set(ecmd
, efx
->link_state
.speed
);
516 ecmd
->duplex
= efx
->link_state
.fd
;
517 ecmd
->port
= mcdi_to_ethtool_media(phy_cfg
->media
);
518 ecmd
->phy_address
= phy_cfg
->port
;
519 ecmd
->transceiver
= XCVR_INTERNAL
;
520 ecmd
->autoneg
= !!(efx
->link_advertising
& ADVERTISED_Autoneg
);
521 ecmd
->mdio_support
= (efx
->mdio
.mode_support
&
522 (MDIO_SUPPORTS_C45
| MDIO_SUPPORTS_C22
));
524 BUILD_BUG_ON(MC_CMD_GET_LINK_IN_LEN
!= 0);
525 rc
= efx_mcdi_rpc(efx
, MC_CMD_GET_LINK
, NULL
, 0,
526 outbuf
, sizeof(outbuf
), NULL
);
529 ecmd
->lp_advertising
=
530 mcdi_to_ethtool_cap(phy_cfg
->media
,
531 MCDI_DWORD(outbuf
, GET_LINK_OUT_LP_CAP
));
534 static int efx_mcdi_phy_set_settings(struct efx_nic
*efx
, struct ethtool_cmd
*ecmd
)
536 struct efx_mcdi_phy_data
*phy_cfg
= efx
->phy_data
;
541 caps
= (ethtool_to_mcdi_cap(ecmd
->advertising
) |
542 1 << MC_CMD_PHY_CAP_AN_LBN
);
543 } else if (ecmd
->duplex
) {
544 switch (ethtool_cmd_speed(ecmd
)) {
545 case 10: caps
= 1 << MC_CMD_PHY_CAP_10FDX_LBN
; break;
546 case 100: caps
= 1 << MC_CMD_PHY_CAP_100FDX_LBN
; break;
547 case 1000: caps
= 1 << MC_CMD_PHY_CAP_1000FDX_LBN
; break;
548 case 10000: caps
= 1 << MC_CMD_PHY_CAP_10000FDX_LBN
; break;
549 case 40000: caps
= 1 << MC_CMD_PHY_CAP_40000FDX_LBN
; break;
550 default: return -EINVAL
;
553 switch (ethtool_cmd_speed(ecmd
)) {
554 case 10: caps
= 1 << MC_CMD_PHY_CAP_10HDX_LBN
; break;
555 case 100: caps
= 1 << MC_CMD_PHY_CAP_100HDX_LBN
; break;
556 case 1000: caps
= 1 << MC_CMD_PHY_CAP_1000HDX_LBN
; break;
557 default: return -EINVAL
;
561 rc
= efx_mcdi_set_link(efx
, caps
, efx_get_mcdi_phy_flags(efx
),
562 efx
->loopback_mode
, 0);
567 efx_link_set_advertising(
568 efx
, ecmd
->advertising
| ADVERTISED_Autoneg
);
569 phy_cfg
->forced_cap
= 0;
571 efx_link_set_advertising(efx
, 0);
572 phy_cfg
->forced_cap
= caps
;
577 static int efx_mcdi_phy_test_alive(struct efx_nic
*efx
)
579 MCDI_DECLARE_BUF(outbuf
, MC_CMD_GET_PHY_STATE_OUT_LEN
);
583 BUILD_BUG_ON(MC_CMD_GET_PHY_STATE_IN_LEN
!= 0);
585 rc
= efx_mcdi_rpc(efx
, MC_CMD_GET_PHY_STATE
, NULL
, 0,
586 outbuf
, sizeof(outbuf
), &outlen
);
590 if (outlen
< MC_CMD_GET_PHY_STATE_OUT_LEN
)
592 if (MCDI_DWORD(outbuf
, GET_PHY_STATE_OUT_STATE
) != MC_CMD_PHY_STATE_OK
)
598 static const char *const mcdi_sft9001_cable_diag_names
[] = {
599 "cable.pairA.length",
600 "cable.pairB.length",
601 "cable.pairC.length",
602 "cable.pairD.length",
603 "cable.pairA.status",
604 "cable.pairB.status",
605 "cable.pairC.status",
606 "cable.pairD.status",
609 static int efx_mcdi_bist(struct efx_nic
*efx
, unsigned int bist_mode
,
612 unsigned int retry
, i
, count
= 0;
615 MCDI_DECLARE_BUF(inbuf
, MC_CMD_START_BIST_IN_LEN
);
616 MCDI_DECLARE_BUF(outbuf
, MC_CMD_POLL_BIST_OUT_SFT9001_LEN
);
620 BUILD_BUG_ON(MC_CMD_START_BIST_OUT_LEN
!= 0);
621 MCDI_SET_DWORD(inbuf
, START_BIST_IN_TYPE
, bist_mode
);
622 rc
= efx_mcdi_rpc(efx
, MC_CMD_START_BIST
,
623 inbuf
, MC_CMD_START_BIST_IN_LEN
, NULL
, 0, NULL
);
627 /* Wait up to 10s for BIST to finish */
628 for (retry
= 0; retry
< 100; ++retry
) {
629 BUILD_BUG_ON(MC_CMD_POLL_BIST_IN_LEN
!= 0);
630 rc
= efx_mcdi_rpc(efx
, MC_CMD_POLL_BIST
, NULL
, 0,
631 outbuf
, sizeof(outbuf
), &outlen
);
635 status
= MCDI_DWORD(outbuf
, POLL_BIST_OUT_RESULT
);
636 if (status
!= MC_CMD_POLL_BIST_RUNNING
)
646 results
[count
++] = (status
== MC_CMD_POLL_BIST_PASSED
) ? 1 : -1;
648 /* SFT9001 specific cable diagnostics output */
649 if (efx
->phy_type
== PHY_TYPE_SFT9001B
&&
650 (bist_mode
== MC_CMD_PHY_BIST_CABLE_SHORT
||
651 bist_mode
== MC_CMD_PHY_BIST_CABLE_LONG
)) {
652 ptr
= MCDI_PTR(outbuf
, POLL_BIST_OUT_SFT9001_CABLE_LENGTH_A
);
653 if (status
== MC_CMD_POLL_BIST_PASSED
&&
654 outlen
>= MC_CMD_POLL_BIST_OUT_SFT9001_LEN
) {
655 for (i
= 0; i
< 8; i
++) {
657 EFX_DWORD_FIELD(((efx_dword_t
*)ptr
)[i
],
669 static int efx_mcdi_phy_run_tests(struct efx_nic
*efx
, int *results
,
672 struct efx_mcdi_phy_data
*phy_cfg
= efx
->phy_data
;
676 if (phy_cfg
->flags
& (1 << MC_CMD_GET_PHY_CFG_OUT_BIST_LBN
)) {
677 rc
= efx_mcdi_bist(efx
, MC_CMD_PHY_BIST
, results
);
684 /* If we support both LONG and SHORT, then run each in response to
685 * break or not. Otherwise, run the one we support */
687 if (phy_cfg
->flags
& (1 << MC_CMD_GET_PHY_CFG_OUT_BIST_CABLE_SHORT_LBN
)) {
688 if ((flags
& ETH_TEST_FL_OFFLINE
) &&
690 (1 << MC_CMD_GET_PHY_CFG_OUT_BIST_CABLE_LONG_LBN
)))
691 mode
= MC_CMD_PHY_BIST_CABLE_LONG
;
693 mode
= MC_CMD_PHY_BIST_CABLE_SHORT
;
694 } else if (phy_cfg
->flags
&
695 (1 << MC_CMD_GET_PHY_CFG_OUT_BIST_CABLE_LONG_LBN
))
696 mode
= MC_CMD_PHY_BIST_CABLE_LONG
;
699 rc
= efx_mcdi_bist(efx
, mode
, results
);
708 static const char *efx_mcdi_phy_test_name(struct efx_nic
*efx
,
711 struct efx_mcdi_phy_data
*phy_cfg
= efx
->phy_data
;
713 if (phy_cfg
->flags
& (1 << MC_CMD_GET_PHY_CFG_OUT_BIST_LBN
)) {
719 if (phy_cfg
->flags
& ((1 << MC_CMD_GET_PHY_CFG_OUT_BIST_CABLE_SHORT_LBN
) |
720 (1 << MC_CMD_GET_PHY_CFG_OUT_BIST_CABLE_LONG_LBN
))) {
725 if (efx
->phy_type
== PHY_TYPE_SFT9001B
) {
726 if (index
< ARRAY_SIZE(mcdi_sft9001_cable_diag_names
))
727 return mcdi_sft9001_cable_diag_names
[index
];
728 index
-= ARRAY_SIZE(mcdi_sft9001_cable_diag_names
);
735 #define SFP_PAGE_SIZE 128
736 #define SFP_NUM_PAGES 2
737 static int efx_mcdi_phy_get_module_eeprom(struct efx_nic
*efx
,
738 struct ethtool_eeprom
*ee
, u8
*data
)
740 MCDI_DECLARE_BUF(outbuf
, MC_CMD_GET_PHY_MEDIA_INFO_OUT_LENMAX
);
741 MCDI_DECLARE_BUF(inbuf
, MC_CMD_GET_PHY_MEDIA_INFO_IN_LEN
);
744 unsigned int payload_len
;
745 unsigned int space_remaining
= ee
->len
;
747 unsigned int page_off
;
748 unsigned int to_copy
;
749 u8
*user_data
= data
;
751 BUILD_BUG_ON(SFP_PAGE_SIZE
* SFP_NUM_PAGES
!= ETH_MODULE_SFF_8079_LEN
);
753 page_off
= ee
->offset
% SFP_PAGE_SIZE
;
754 page
= ee
->offset
/ SFP_PAGE_SIZE
;
756 while (space_remaining
&& (page
< SFP_NUM_PAGES
)) {
757 MCDI_SET_DWORD(inbuf
, GET_PHY_MEDIA_INFO_IN_PAGE
, page
);
759 rc
= efx_mcdi_rpc(efx
, MC_CMD_GET_PHY_MEDIA_INFO
,
760 inbuf
, sizeof(inbuf
),
761 outbuf
, sizeof(outbuf
),
766 if (outlen
< (MC_CMD_GET_PHY_MEDIA_INFO_OUT_DATA_OFST
+
770 payload_len
= MCDI_DWORD(outbuf
,
771 GET_PHY_MEDIA_INFO_OUT_DATALEN
);
772 if (payload_len
!= SFP_PAGE_SIZE
)
775 /* Copy as much as we can into data */
776 payload_len
-= page_off
;
777 to_copy
= (space_remaining
< payload_len
) ?
778 space_remaining
: payload_len
;
781 MCDI_PTR(outbuf
, GET_PHY_MEDIA_INFO_OUT_DATA
) + page_off
,
784 space_remaining
-= to_copy
;
785 user_data
+= to_copy
;
793 static int efx_mcdi_phy_get_module_info(struct efx_nic
*efx
,
794 struct ethtool_modinfo
*modinfo
)
796 struct efx_mcdi_phy_data
*phy_cfg
= efx
->phy_data
;
798 switch (phy_cfg
->media
) {
799 case MC_CMD_MEDIA_SFP_PLUS
:
800 modinfo
->type
= ETH_MODULE_SFF_8079
;
801 modinfo
->eeprom_len
= ETH_MODULE_SFF_8079_LEN
;
808 static const struct efx_phy_operations efx_mcdi_phy_ops
= {
809 .probe
= efx_mcdi_phy_probe
,
810 .init
= efx_port_dummy_op_int
,
811 .reconfigure
= efx_mcdi_port_reconfigure
,
812 .poll
= efx_mcdi_phy_poll
,
813 .fini
= efx_port_dummy_op_void
,
814 .remove
= efx_mcdi_phy_remove
,
815 .get_settings
= efx_mcdi_phy_get_settings
,
816 .set_settings
= efx_mcdi_phy_set_settings
,
817 .test_alive
= efx_mcdi_phy_test_alive
,
818 .run_tests
= efx_mcdi_phy_run_tests
,
819 .test_name
= efx_mcdi_phy_test_name
,
820 .get_module_eeprom
= efx_mcdi_phy_get_module_eeprom
,
821 .get_module_info
= efx_mcdi_phy_get_module_info
,
824 u32
efx_mcdi_phy_get_caps(struct efx_nic
*efx
)
826 struct efx_mcdi_phy_data
*phy_data
= efx
->phy_data
;
828 return phy_data
->supported_cap
;
831 static unsigned int efx_mcdi_event_link_speed
[] = {
832 [MCDI_EVENT_LINKCHANGE_SPEED_100M
] = 100,
833 [MCDI_EVENT_LINKCHANGE_SPEED_1G
] = 1000,
834 [MCDI_EVENT_LINKCHANGE_SPEED_10G
] = 10000,
835 [MCDI_EVENT_LINKCHANGE_SPEED_40G
] = 40000,
838 void efx_mcdi_process_link_change(struct efx_nic
*efx
, efx_qword_t
*ev
)
840 u32 flags
, fcntl
, speed
, lpa
;
842 speed
= EFX_QWORD_FIELD(*ev
, MCDI_EVENT_LINKCHANGE_SPEED
);
843 EFX_BUG_ON_PARANOID(speed
>= ARRAY_SIZE(efx_mcdi_event_link_speed
));
844 speed
= efx_mcdi_event_link_speed
[speed
];
846 flags
= EFX_QWORD_FIELD(*ev
, MCDI_EVENT_LINKCHANGE_LINK_FLAGS
);
847 fcntl
= EFX_QWORD_FIELD(*ev
, MCDI_EVENT_LINKCHANGE_FCNTL
);
848 lpa
= EFX_QWORD_FIELD(*ev
, MCDI_EVENT_LINKCHANGE_LP_CAP
);
850 /* efx->link_state is only modified by efx_mcdi_phy_get_link(),
851 * which is only run after flushing the event queues. Therefore, it
852 * is safe to modify the link state outside of the mac_lock here.
854 efx_mcdi_phy_decode_link(efx
, &efx
->link_state
, speed
, flags
, fcntl
);
856 efx_mcdi_phy_check_fcntl(efx
, lpa
);
858 efx_link_status_changed(efx
);
861 int efx_mcdi_set_mac(struct efx_nic
*efx
)
864 MCDI_DECLARE_BUF(cmdbytes
, MC_CMD_SET_MAC_IN_LEN
);
866 BUILD_BUG_ON(MC_CMD_SET_MAC_OUT_LEN
!= 0);
868 /* This has no effect on EF10 */
869 ether_addr_copy(MCDI_PTR(cmdbytes
, SET_MAC_IN_ADDR
),
870 efx
->net_dev
->dev_addr
);
872 MCDI_SET_DWORD(cmdbytes
, SET_MAC_IN_MTU
,
873 EFX_MAX_FRAME_LEN(efx
->net_dev
->mtu
));
874 MCDI_SET_DWORD(cmdbytes
, SET_MAC_IN_DRAIN
, 0);
876 /* Set simple MAC filter for Siena */
877 MCDI_POPULATE_DWORD_1(cmdbytes
, SET_MAC_IN_REJECT
,
878 SET_MAC_IN_REJECT_UNCST
, efx
->unicast_filter
);
880 switch (efx
->wanted_fc
) {
881 case EFX_FC_RX
| EFX_FC_TX
:
882 fcntl
= MC_CMD_FCNTL_BIDIR
;
885 fcntl
= MC_CMD_FCNTL_RESPOND
;
888 fcntl
= MC_CMD_FCNTL_OFF
;
891 if (efx
->wanted_fc
& EFX_FC_AUTO
)
892 fcntl
= MC_CMD_FCNTL_AUTO
;
894 fcntl
= MC_CMD_FCNTL_OFF
;
896 MCDI_SET_DWORD(cmdbytes
, SET_MAC_IN_FCNTL
, fcntl
);
898 return efx_mcdi_rpc(efx
, MC_CMD_SET_MAC
, cmdbytes
, sizeof(cmdbytes
),
902 bool efx_mcdi_mac_check_fault(struct efx_nic
*efx
)
904 MCDI_DECLARE_BUF(outbuf
, MC_CMD_GET_LINK_OUT_LEN
);
908 BUILD_BUG_ON(MC_CMD_GET_LINK_IN_LEN
!= 0);
910 rc
= efx_mcdi_rpc(efx
, MC_CMD_GET_LINK
, NULL
, 0,
911 outbuf
, sizeof(outbuf
), &outlength
);
915 return MCDI_DWORD(outbuf
, GET_LINK_OUT_MAC_FAULT
) != 0;
918 enum efx_stats_action
{
924 static int efx_mcdi_mac_stats(struct efx_nic
*efx
,
925 enum efx_stats_action action
, int clear
)
927 struct efx_ef10_nic_data
*nic_data
= efx
->nic_data
;
928 MCDI_DECLARE_BUF(inbuf
, MC_CMD_MAC_STATS_IN_LEN
);
930 int change
= action
== EFX_STATS_PULL
? 0 : 1;
931 int enable
= action
== EFX_STATS_ENABLE
? 1 : 0;
932 int period
= action
== EFX_STATS_ENABLE
? 1000 : 0;
933 dma_addr_t dma_addr
= efx
->stats_buffer
.dma_addr
;
934 u32 dma_len
= action
!= EFX_STATS_DISABLE
?
935 MC_CMD_MAC_NSTATS
* sizeof(u64
) : 0;
937 BUILD_BUG_ON(MC_CMD_MAC_STATS_OUT_DMA_LEN
!= 0);
939 MCDI_SET_QWORD(inbuf
, MAC_STATS_IN_DMA_ADDR
, dma_addr
);
940 MCDI_POPULATE_DWORD_7(inbuf
, MAC_STATS_IN_CMD
,
941 MAC_STATS_IN_DMA
, !!enable
,
942 MAC_STATS_IN_CLEAR
, clear
,
943 MAC_STATS_IN_PERIODIC_CHANGE
, change
,
944 MAC_STATS_IN_PERIODIC_ENABLE
, enable
,
945 MAC_STATS_IN_PERIODIC_CLEAR
, 0,
946 MAC_STATS_IN_PERIODIC_NOEVENT
, 1,
947 MAC_STATS_IN_PERIOD_MS
, period
);
948 MCDI_SET_DWORD(inbuf
, MAC_STATS_IN_DMA_LEN
, dma_len
);
949 MCDI_SET_DWORD(inbuf
, MAC_STATS_IN_PORT_ID
, nic_data
->vport_id
);
951 rc
= efx_mcdi_rpc_quiet(efx
, MC_CMD_MAC_STATS
, inbuf
, sizeof(inbuf
),
953 /* Expect ENOENT if DMA queues have not been set up */
954 if (rc
&& (rc
!= -ENOENT
|| atomic_read(&efx
->active_queues
)))
955 efx_mcdi_display_error(efx
, MC_CMD_MAC_STATS
, sizeof(inbuf
),
960 void efx_mcdi_mac_start_stats(struct efx_nic
*efx
)
962 __le64
*dma_stats
= efx
->stats_buffer
.addr
;
964 dma_stats
[MC_CMD_MAC_GENERATION_END
] = EFX_MC_STATS_GENERATION_INVALID
;
966 efx_mcdi_mac_stats(efx
, EFX_STATS_ENABLE
, 0);
969 void efx_mcdi_mac_stop_stats(struct efx_nic
*efx
)
971 efx_mcdi_mac_stats(efx
, EFX_STATS_DISABLE
, 0);
974 #define EFX_MAC_STATS_WAIT_US 100
975 #define EFX_MAC_STATS_WAIT_ATTEMPTS 10
977 void efx_mcdi_mac_pull_stats(struct efx_nic
*efx
)
979 __le64
*dma_stats
= efx
->stats_buffer
.addr
;
980 int attempts
= EFX_MAC_STATS_WAIT_ATTEMPTS
;
982 dma_stats
[MC_CMD_MAC_GENERATION_END
] = EFX_MC_STATS_GENERATION_INVALID
;
983 efx_mcdi_mac_stats(efx
, EFX_STATS_PULL
, 0);
985 while (dma_stats
[MC_CMD_MAC_GENERATION_END
] ==
986 EFX_MC_STATS_GENERATION_INVALID
&&
988 udelay(EFX_MAC_STATS_WAIT_US
);
991 int efx_mcdi_port_probe(struct efx_nic
*efx
)
995 /* Hook in PHY operations table */
996 efx
->phy_op
= &efx_mcdi_phy_ops
;
998 /* Set up MDIO structure for PHY */
999 efx
->mdio
.mode_support
= MDIO_SUPPORTS_C45
| MDIO_EMULATE_C22
;
1000 efx
->mdio
.mdio_read
= efx_mcdi_mdio_read
;
1001 efx
->mdio
.mdio_write
= efx_mcdi_mdio_write
;
1003 /* Fill out MDIO structure, loopback modes, and initial link state */
1004 rc
= efx
->phy_op
->probe(efx
);
1008 /* Allocate buffer for stats */
1009 rc
= efx_nic_alloc_buffer(efx
, &efx
->stats_buffer
,
1010 MC_CMD_MAC_NSTATS
* sizeof(u64
), GFP_KERNEL
);
1013 netif_dbg(efx
, probe
, efx
->net_dev
,
1014 "stats buffer at %llx (virt %p phys %llx)\n",
1015 (u64
)efx
->stats_buffer
.dma_addr
,
1016 efx
->stats_buffer
.addr
,
1017 (u64
)virt_to_phys(efx
->stats_buffer
.addr
));
1019 efx_mcdi_mac_stats(efx
, EFX_STATS_DISABLE
, 1);
1024 void efx_mcdi_port_remove(struct efx_nic
*efx
)
1026 efx
->phy_op
->remove(efx
);
1027 efx_nic_free_buffer(efx
, &efx
->stats_buffer
);
1030 /* Get physical port number (EF10 only; on Siena it is same as PF number) */
1031 int efx_mcdi_port_get_number(struct efx_nic
*efx
)
1033 MCDI_DECLARE_BUF(outbuf
, MC_CMD_GET_PORT_ASSIGNMENT_OUT_LEN
);
1036 rc
= efx_mcdi_rpc(efx
, MC_CMD_GET_PORT_ASSIGNMENT
, NULL
, 0,
1037 outbuf
, sizeof(outbuf
), NULL
);
1041 return MCDI_DWORD(outbuf
, GET_PORT_ASSIGNMENT_OUT_PORT
);