mcdi_port.c 28 KB

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  1. /****************************************************************************
  2. * Driver for Solarflare network controllers and boards
  3. * Copyright 2009-2013 Solarflare Communications Inc.
  4. *
  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.
  8. */
  9. /*
  10. * Driver for PHY related operations via MCDI.
  11. */
  12. #include <linux/slab.h>
  13. #include "efx.h"
  14. #include "phy.h"
  15. #include "mcdi.h"
  16. #include "mcdi_pcol.h"
  17. #include "nic.h"
  18. #include "selftest.h"
  19. struct efx_mcdi_phy_data {
  20. u32 flags;
  21. u32 type;
  22. u32 supported_cap;
  23. u32 channel;
  24. u32 port;
  25. u32 stats_mask;
  26. u8 name[20];
  27. u32 media;
  28. u32 mmd_mask;
  29. u8 revision[20];
  30. u32 forced_cap;
  31. };
  32. static int
  33. efx_mcdi_get_phy_cfg(struct efx_nic *efx, struct efx_mcdi_phy_data *cfg)
  34. {
  35. MCDI_DECLARE_BUF(outbuf, MC_CMD_GET_PHY_CFG_OUT_LEN);
  36. size_t outlen;
  37. int rc;
  38. BUILD_BUG_ON(MC_CMD_GET_PHY_CFG_IN_LEN != 0);
  39. BUILD_BUG_ON(MC_CMD_GET_PHY_CFG_OUT_NAME_LEN != sizeof(cfg->name));
  40. rc = efx_mcdi_rpc(efx, MC_CMD_GET_PHY_CFG, NULL, 0,
  41. outbuf, sizeof(outbuf), &outlen);
  42. if (rc)
  43. goto fail;
  44. if (outlen < MC_CMD_GET_PHY_CFG_OUT_LEN) {
  45. rc = -EIO;
  46. goto fail;
  47. }
  48. cfg->flags = MCDI_DWORD(outbuf, GET_PHY_CFG_OUT_FLAGS);
  49. cfg->type = MCDI_DWORD(outbuf, GET_PHY_CFG_OUT_TYPE);
  50. cfg->supported_cap =
  51. MCDI_DWORD(outbuf, GET_PHY_CFG_OUT_SUPPORTED_CAP);
  52. cfg->channel = MCDI_DWORD(outbuf, GET_PHY_CFG_OUT_CHANNEL);
  53. cfg->port = MCDI_DWORD(outbuf, GET_PHY_CFG_OUT_PRT);
  54. cfg->stats_mask = MCDI_DWORD(outbuf, GET_PHY_CFG_OUT_STATS_MASK);
  55. memcpy(cfg->name, MCDI_PTR(outbuf, GET_PHY_CFG_OUT_NAME),
  56. sizeof(cfg->name));
  57. cfg->media = MCDI_DWORD(outbuf, GET_PHY_CFG_OUT_MEDIA_TYPE);
  58. cfg->mmd_mask = MCDI_DWORD(outbuf, GET_PHY_CFG_OUT_MMD_MASK);
  59. memcpy(cfg->revision, MCDI_PTR(outbuf, GET_PHY_CFG_OUT_REVISION),
  60. sizeof(cfg->revision));
  61. return 0;
  62. fail:
  63. netif_err(efx, hw, efx->net_dev, "%s: failed rc=%d\n", __func__, rc);
  64. return rc;
  65. }
  66. static int efx_mcdi_set_link(struct efx_nic *efx, u32 capabilities,
  67. u32 flags, u32 loopback_mode,
  68. u32 loopback_speed)
  69. {
  70. MCDI_DECLARE_BUF(inbuf, MC_CMD_SET_LINK_IN_LEN);
  71. int rc;
  72. BUILD_BUG_ON(MC_CMD_SET_LINK_OUT_LEN != 0);
  73. MCDI_SET_DWORD(inbuf, SET_LINK_IN_CAP, capabilities);
  74. MCDI_SET_DWORD(inbuf, SET_LINK_IN_FLAGS, flags);
  75. MCDI_SET_DWORD(inbuf, SET_LINK_IN_LOOPBACK_MODE, loopback_mode);
  76. MCDI_SET_DWORD(inbuf, SET_LINK_IN_LOOPBACK_SPEED, loopback_speed);
  77. rc = efx_mcdi_rpc(efx, MC_CMD_SET_LINK, inbuf, sizeof(inbuf),
  78. NULL, 0, NULL);
  79. return rc;
  80. }
  81. static int efx_mcdi_loopback_modes(struct efx_nic *efx, u64 *loopback_modes)
  82. {
  83. MCDI_DECLARE_BUF(outbuf, MC_CMD_GET_LOOPBACK_MODES_OUT_LEN);
  84. size_t outlen;
  85. int rc;
  86. rc = efx_mcdi_rpc(efx, MC_CMD_GET_LOOPBACK_MODES, NULL, 0,
  87. outbuf, sizeof(outbuf), &outlen);
  88. if (rc)
  89. goto fail;
  90. if (outlen < (MC_CMD_GET_LOOPBACK_MODES_OUT_SUGGESTED_OFST +
  91. MC_CMD_GET_LOOPBACK_MODES_OUT_SUGGESTED_LEN)) {
  92. rc = -EIO;
  93. goto fail;
  94. }
  95. *loopback_modes = MCDI_QWORD(outbuf, GET_LOOPBACK_MODES_OUT_SUGGESTED);
  96. return 0;
  97. fail:
  98. netif_err(efx, hw, efx->net_dev, "%s: failed rc=%d\n", __func__, rc);
  99. return rc;
  100. }
  101. static int efx_mcdi_mdio_read(struct net_device *net_dev,
  102. int prtad, int devad, u16 addr)
  103. {
  104. struct efx_nic *efx = netdev_priv(net_dev);
  105. MCDI_DECLARE_BUF(inbuf, MC_CMD_MDIO_READ_IN_LEN);
  106. MCDI_DECLARE_BUF(outbuf, MC_CMD_MDIO_READ_OUT_LEN);
  107. size_t outlen;
  108. int rc;
  109. MCDI_SET_DWORD(inbuf, MDIO_READ_IN_BUS, efx->mdio_bus);
  110. MCDI_SET_DWORD(inbuf, MDIO_READ_IN_PRTAD, prtad);
  111. MCDI_SET_DWORD(inbuf, MDIO_READ_IN_DEVAD, devad);
  112. MCDI_SET_DWORD(inbuf, MDIO_READ_IN_ADDR, addr);
  113. rc = efx_mcdi_rpc(efx, MC_CMD_MDIO_READ, inbuf, sizeof(inbuf),
  114. outbuf, sizeof(outbuf), &outlen);
  115. if (rc)
  116. return rc;
  117. if (MCDI_DWORD(outbuf, MDIO_READ_OUT_STATUS) !=
  118. MC_CMD_MDIO_STATUS_GOOD)
  119. return -EIO;
  120. return (u16)MCDI_DWORD(outbuf, MDIO_READ_OUT_VALUE);
  121. }
  122. static int efx_mcdi_mdio_write(struct net_device *net_dev,
  123. int prtad, int devad, u16 addr, u16 value)
  124. {
  125. struct efx_nic *efx = netdev_priv(net_dev);
  126. MCDI_DECLARE_BUF(inbuf, MC_CMD_MDIO_WRITE_IN_LEN);
  127. MCDI_DECLARE_BUF(outbuf, MC_CMD_MDIO_WRITE_OUT_LEN);
  128. size_t outlen;
  129. int rc;
  130. MCDI_SET_DWORD(inbuf, MDIO_WRITE_IN_BUS, efx->mdio_bus);
  131. MCDI_SET_DWORD(inbuf, MDIO_WRITE_IN_PRTAD, prtad);
  132. MCDI_SET_DWORD(inbuf, MDIO_WRITE_IN_DEVAD, devad);
  133. MCDI_SET_DWORD(inbuf, MDIO_WRITE_IN_ADDR, addr);
  134. MCDI_SET_DWORD(inbuf, MDIO_WRITE_IN_VALUE, value);
  135. rc = efx_mcdi_rpc(efx, MC_CMD_MDIO_WRITE, inbuf, sizeof(inbuf),
  136. outbuf, sizeof(outbuf), &outlen);
  137. if (rc)
  138. return rc;
  139. if (MCDI_DWORD(outbuf, MDIO_WRITE_OUT_STATUS) !=
  140. MC_CMD_MDIO_STATUS_GOOD)
  141. return -EIO;
  142. return 0;
  143. }
  144. static u32 mcdi_to_ethtool_cap(u32 media, u32 cap)
  145. {
  146. u32 result = 0;
  147. switch (media) {
  148. case MC_CMD_MEDIA_KX4:
  149. result |= SUPPORTED_Backplane;
  150. if (cap & (1 << MC_CMD_PHY_CAP_1000FDX_LBN))
  151. result |= SUPPORTED_1000baseKX_Full;
  152. if (cap & (1 << MC_CMD_PHY_CAP_10000FDX_LBN))
  153. result |= SUPPORTED_10000baseKX4_Full;
  154. break;
  155. case MC_CMD_MEDIA_XFP:
  156. case MC_CMD_MEDIA_SFP_PLUS:
  157. result |= SUPPORTED_FIBRE;
  158. break;
  159. case MC_CMD_MEDIA_BASE_T:
  160. result |= SUPPORTED_TP;
  161. if (cap & (1 << MC_CMD_PHY_CAP_10HDX_LBN))
  162. result |= SUPPORTED_10baseT_Half;
  163. if (cap & (1 << MC_CMD_PHY_CAP_10FDX_LBN))
  164. result |= SUPPORTED_10baseT_Full;
  165. if (cap & (1 << MC_CMD_PHY_CAP_100HDX_LBN))
  166. result |= SUPPORTED_100baseT_Half;
  167. if (cap & (1 << MC_CMD_PHY_CAP_100FDX_LBN))
  168. result |= SUPPORTED_100baseT_Full;
  169. if (cap & (1 << MC_CMD_PHY_CAP_1000HDX_LBN))
  170. result |= SUPPORTED_1000baseT_Half;
  171. if (cap & (1 << MC_CMD_PHY_CAP_1000FDX_LBN))
  172. result |= SUPPORTED_1000baseT_Full;
  173. if (cap & (1 << MC_CMD_PHY_CAP_10000FDX_LBN))
  174. result |= SUPPORTED_10000baseT_Full;
  175. break;
  176. }
  177. if (cap & (1 << MC_CMD_PHY_CAP_PAUSE_LBN))
  178. result |= SUPPORTED_Pause;
  179. if (cap & (1 << MC_CMD_PHY_CAP_ASYM_LBN))
  180. result |= SUPPORTED_Asym_Pause;
  181. if (cap & (1 << MC_CMD_PHY_CAP_AN_LBN))
  182. result |= SUPPORTED_Autoneg;
  183. return result;
  184. }
  185. static u32 ethtool_to_mcdi_cap(u32 cap)
  186. {
  187. u32 result = 0;
  188. if (cap & SUPPORTED_10baseT_Half)
  189. result |= (1 << MC_CMD_PHY_CAP_10HDX_LBN);
  190. if (cap & SUPPORTED_10baseT_Full)
  191. result |= (1 << MC_CMD_PHY_CAP_10FDX_LBN);
  192. if (cap & SUPPORTED_100baseT_Half)
  193. result |= (1 << MC_CMD_PHY_CAP_100HDX_LBN);
  194. if (cap & SUPPORTED_100baseT_Full)
  195. result |= (1 << MC_CMD_PHY_CAP_100FDX_LBN);
  196. if (cap & SUPPORTED_1000baseT_Half)
  197. result |= (1 << MC_CMD_PHY_CAP_1000HDX_LBN);
  198. if (cap & (SUPPORTED_1000baseT_Full | SUPPORTED_1000baseKX_Full))
  199. result |= (1 << MC_CMD_PHY_CAP_1000FDX_LBN);
  200. if (cap & (SUPPORTED_10000baseT_Full | SUPPORTED_10000baseKX4_Full))
  201. result |= (1 << MC_CMD_PHY_CAP_10000FDX_LBN);
  202. if (cap & SUPPORTED_Pause)
  203. result |= (1 << MC_CMD_PHY_CAP_PAUSE_LBN);
  204. if (cap & SUPPORTED_Asym_Pause)
  205. result |= (1 << MC_CMD_PHY_CAP_ASYM_LBN);
  206. if (cap & SUPPORTED_Autoneg)
  207. result |= (1 << MC_CMD_PHY_CAP_AN_LBN);
  208. return result;
  209. }
  210. static u32 efx_get_mcdi_phy_flags(struct efx_nic *efx)
  211. {
  212. struct efx_mcdi_phy_data *phy_cfg = efx->phy_data;
  213. enum efx_phy_mode mode, supported;
  214. u32 flags;
  215. /* TODO: Advertise the capabilities supported by this PHY */
  216. supported = 0;
  217. if (phy_cfg->flags & (1 << MC_CMD_GET_PHY_CFG_OUT_TXDIS_LBN))
  218. supported |= PHY_MODE_TX_DISABLED;
  219. if (phy_cfg->flags & (1 << MC_CMD_GET_PHY_CFG_OUT_LOWPOWER_LBN))
  220. supported |= PHY_MODE_LOW_POWER;
  221. if (phy_cfg->flags & (1 << MC_CMD_GET_PHY_CFG_OUT_POWEROFF_LBN))
  222. supported |= PHY_MODE_OFF;
  223. mode = efx->phy_mode & supported;
  224. flags = 0;
  225. if (mode & PHY_MODE_TX_DISABLED)
  226. flags |= (1 << MC_CMD_SET_LINK_IN_TXDIS_LBN);
  227. if (mode & PHY_MODE_LOW_POWER)
  228. flags |= (1 << MC_CMD_SET_LINK_IN_LOWPOWER_LBN);
  229. if (mode & PHY_MODE_OFF)
  230. flags |= (1 << MC_CMD_SET_LINK_IN_POWEROFF_LBN);
  231. return flags;
  232. }
  233. static u32 mcdi_to_ethtool_media(u32 media)
  234. {
  235. switch (media) {
  236. case MC_CMD_MEDIA_XAUI:
  237. case MC_CMD_MEDIA_CX4:
  238. case MC_CMD_MEDIA_KX4:
  239. return PORT_OTHER;
  240. case MC_CMD_MEDIA_XFP:
  241. case MC_CMD_MEDIA_SFP_PLUS:
  242. return PORT_FIBRE;
  243. case MC_CMD_MEDIA_BASE_T:
  244. return PORT_TP;
  245. default:
  246. return PORT_OTHER;
  247. }
  248. }
  249. static void efx_mcdi_phy_decode_link(struct efx_nic *efx,
  250. struct efx_link_state *link_state,
  251. u32 speed, u32 flags, u32 fcntl)
  252. {
  253. switch (fcntl) {
  254. case MC_CMD_FCNTL_AUTO:
  255. WARN_ON(1); /* This is not a link mode */
  256. link_state->fc = EFX_FC_AUTO | EFX_FC_TX | EFX_FC_RX;
  257. break;
  258. case MC_CMD_FCNTL_BIDIR:
  259. link_state->fc = EFX_FC_TX | EFX_FC_RX;
  260. break;
  261. case MC_CMD_FCNTL_RESPOND:
  262. link_state->fc = EFX_FC_RX;
  263. break;
  264. default:
  265. WARN_ON(1);
  266. case MC_CMD_FCNTL_OFF:
  267. link_state->fc = 0;
  268. break;
  269. }
  270. link_state->up = !!(flags & (1 << MC_CMD_GET_LINK_OUT_LINK_UP_LBN));
  271. link_state->fd = !!(flags & (1 << MC_CMD_GET_LINK_OUT_FULL_DUPLEX_LBN));
  272. link_state->speed = speed;
  273. }
  274. static int efx_mcdi_phy_probe(struct efx_nic *efx)
  275. {
  276. struct efx_mcdi_phy_data *phy_data;
  277. MCDI_DECLARE_BUF(outbuf, MC_CMD_GET_LINK_OUT_LEN);
  278. u32 caps;
  279. int rc;
  280. /* Initialise and populate phy_data */
  281. phy_data = kzalloc(sizeof(*phy_data), GFP_KERNEL);
  282. if (phy_data == NULL)
  283. return -ENOMEM;
  284. rc = efx_mcdi_get_phy_cfg(efx, phy_data);
  285. if (rc != 0)
  286. goto fail;
  287. /* Read initial link advertisement */
  288. BUILD_BUG_ON(MC_CMD_GET_LINK_IN_LEN != 0);
  289. rc = efx_mcdi_rpc(efx, MC_CMD_GET_LINK, NULL, 0,
  290. outbuf, sizeof(outbuf), NULL);
  291. if (rc)
  292. goto fail;
  293. /* Fill out nic state */
  294. efx->phy_data = phy_data;
  295. efx->phy_type = phy_data->type;
  296. efx->mdio_bus = phy_data->channel;
  297. efx->mdio.prtad = phy_data->port;
  298. efx->mdio.mmds = phy_data->mmd_mask & ~(1 << MC_CMD_MMD_CLAUSE22);
  299. efx->mdio.mode_support = 0;
  300. if (phy_data->mmd_mask & (1 << MC_CMD_MMD_CLAUSE22))
  301. efx->mdio.mode_support |= MDIO_SUPPORTS_C22;
  302. if (phy_data->mmd_mask & ~(1 << MC_CMD_MMD_CLAUSE22))
  303. efx->mdio.mode_support |= MDIO_SUPPORTS_C45 | MDIO_EMULATE_C22;
  304. caps = MCDI_DWORD(outbuf, GET_LINK_OUT_CAP);
  305. if (caps & (1 << MC_CMD_PHY_CAP_AN_LBN))
  306. efx->link_advertising =
  307. mcdi_to_ethtool_cap(phy_data->media, caps);
  308. else
  309. phy_data->forced_cap = caps;
  310. /* Assert that we can map efx -> mcdi loopback modes */
  311. BUILD_BUG_ON(LOOPBACK_NONE != MC_CMD_LOOPBACK_NONE);
  312. BUILD_BUG_ON(LOOPBACK_DATA != MC_CMD_LOOPBACK_DATA);
  313. BUILD_BUG_ON(LOOPBACK_GMAC != MC_CMD_LOOPBACK_GMAC);
  314. BUILD_BUG_ON(LOOPBACK_XGMII != MC_CMD_LOOPBACK_XGMII);
  315. BUILD_BUG_ON(LOOPBACK_XGXS != MC_CMD_LOOPBACK_XGXS);
  316. BUILD_BUG_ON(LOOPBACK_XAUI != MC_CMD_LOOPBACK_XAUI);
  317. BUILD_BUG_ON(LOOPBACK_GMII != MC_CMD_LOOPBACK_GMII);
  318. BUILD_BUG_ON(LOOPBACK_SGMII != MC_CMD_LOOPBACK_SGMII);
  319. BUILD_BUG_ON(LOOPBACK_XGBR != MC_CMD_LOOPBACK_XGBR);
  320. BUILD_BUG_ON(LOOPBACK_XFI != MC_CMD_LOOPBACK_XFI);
  321. BUILD_BUG_ON(LOOPBACK_XAUI_FAR != MC_CMD_LOOPBACK_XAUI_FAR);
  322. BUILD_BUG_ON(LOOPBACK_GMII_FAR != MC_CMD_LOOPBACK_GMII_FAR);
  323. BUILD_BUG_ON(LOOPBACK_SGMII_FAR != MC_CMD_LOOPBACK_SGMII_FAR);
  324. BUILD_BUG_ON(LOOPBACK_XFI_FAR != MC_CMD_LOOPBACK_XFI_FAR);
  325. BUILD_BUG_ON(LOOPBACK_GPHY != MC_CMD_LOOPBACK_GPHY);
  326. BUILD_BUG_ON(LOOPBACK_PHYXS != MC_CMD_LOOPBACK_PHYXS);
  327. BUILD_BUG_ON(LOOPBACK_PCS != MC_CMD_LOOPBACK_PCS);
  328. BUILD_BUG_ON(LOOPBACK_PMAPMD != MC_CMD_LOOPBACK_PMAPMD);
  329. BUILD_BUG_ON(LOOPBACK_XPORT != MC_CMD_LOOPBACK_XPORT);
  330. BUILD_BUG_ON(LOOPBACK_XGMII_WS != MC_CMD_LOOPBACK_XGMII_WS);
  331. BUILD_BUG_ON(LOOPBACK_XAUI_WS != MC_CMD_LOOPBACK_XAUI_WS);
  332. BUILD_BUG_ON(LOOPBACK_XAUI_WS_FAR != MC_CMD_LOOPBACK_XAUI_WS_FAR);
  333. BUILD_BUG_ON(LOOPBACK_XAUI_WS_NEAR != MC_CMD_LOOPBACK_XAUI_WS_NEAR);
  334. BUILD_BUG_ON(LOOPBACK_GMII_WS != MC_CMD_LOOPBACK_GMII_WS);
  335. BUILD_BUG_ON(LOOPBACK_XFI_WS != MC_CMD_LOOPBACK_XFI_WS);
  336. BUILD_BUG_ON(LOOPBACK_XFI_WS_FAR != MC_CMD_LOOPBACK_XFI_WS_FAR);
  337. BUILD_BUG_ON(LOOPBACK_PHYXS_WS != MC_CMD_LOOPBACK_PHYXS_WS);
  338. rc = efx_mcdi_loopback_modes(efx, &efx->loopback_modes);
  339. if (rc != 0)
  340. goto fail;
  341. /* The MC indicates that LOOPBACK_NONE is a valid loopback mode,
  342. * but by convention we don't */
  343. efx->loopback_modes &= ~(1 << LOOPBACK_NONE);
  344. /* Set the initial link mode */
  345. efx_mcdi_phy_decode_link(
  346. efx, &efx->link_state,
  347. MCDI_DWORD(outbuf, GET_LINK_OUT_LINK_SPEED),
  348. MCDI_DWORD(outbuf, GET_LINK_OUT_FLAGS),
  349. MCDI_DWORD(outbuf, GET_LINK_OUT_FCNTL));
  350. /* Default to Autonegotiated flow control if the PHY supports it */
  351. efx->wanted_fc = EFX_FC_RX | EFX_FC_TX;
  352. if (phy_data->supported_cap & (1 << MC_CMD_PHY_CAP_AN_LBN))
  353. efx->wanted_fc |= EFX_FC_AUTO;
  354. efx_link_set_wanted_fc(efx, efx->wanted_fc);
  355. return 0;
  356. fail:
  357. kfree(phy_data);
  358. return rc;
  359. }
  360. int efx_mcdi_port_reconfigure(struct efx_nic *efx)
  361. {
  362. struct efx_mcdi_phy_data *phy_cfg = efx->phy_data;
  363. u32 caps = (efx->link_advertising ?
  364. ethtool_to_mcdi_cap(efx->link_advertising) :
  365. phy_cfg->forced_cap);
  366. return efx_mcdi_set_link(efx, caps, efx_get_mcdi_phy_flags(efx),
  367. efx->loopback_mode, 0);
  368. }
  369. /* Verify that the forced flow control settings (!EFX_FC_AUTO) are
  370. * supported by the link partner. Warn the user if this isn't the case
  371. */
  372. static void efx_mcdi_phy_check_fcntl(struct efx_nic *efx, u32 lpa)
  373. {
  374. struct efx_mcdi_phy_data *phy_cfg = efx->phy_data;
  375. u32 rmtadv;
  376. /* The link partner capabilities are only relevant if the
  377. * link supports flow control autonegotiation */
  378. if (~phy_cfg->supported_cap & (1 << MC_CMD_PHY_CAP_AN_LBN))
  379. return;
  380. /* If flow control autoneg is supported and enabled, then fine */
  381. if (efx->wanted_fc & EFX_FC_AUTO)
  382. return;
  383. rmtadv = 0;
  384. if (lpa & (1 << MC_CMD_PHY_CAP_PAUSE_LBN))
  385. rmtadv |= ADVERTISED_Pause;
  386. if (lpa & (1 << MC_CMD_PHY_CAP_ASYM_LBN))
  387. rmtadv |= ADVERTISED_Asym_Pause;
  388. if ((efx->wanted_fc & EFX_FC_TX) && rmtadv == ADVERTISED_Asym_Pause)
  389. netif_err(efx, link, efx->net_dev,
  390. "warning: link partner doesn't support pause frames");
  391. }
  392. static bool efx_mcdi_phy_poll(struct efx_nic *efx)
  393. {
  394. struct efx_link_state old_state = efx->link_state;
  395. MCDI_DECLARE_BUF(outbuf, MC_CMD_GET_LINK_OUT_LEN);
  396. int rc;
  397. WARN_ON(!mutex_is_locked(&efx->mac_lock));
  398. BUILD_BUG_ON(MC_CMD_GET_LINK_IN_LEN != 0);
  399. rc = efx_mcdi_rpc(efx, MC_CMD_GET_LINK, NULL, 0,
  400. outbuf, sizeof(outbuf), NULL);
  401. if (rc)
  402. efx->link_state.up = false;
  403. else
  404. efx_mcdi_phy_decode_link(
  405. efx, &efx->link_state,
  406. MCDI_DWORD(outbuf, GET_LINK_OUT_LINK_SPEED),
  407. MCDI_DWORD(outbuf, GET_LINK_OUT_FLAGS),
  408. MCDI_DWORD(outbuf, GET_LINK_OUT_FCNTL));
  409. return !efx_link_state_equal(&efx->link_state, &old_state);
  410. }
  411. static void efx_mcdi_phy_remove(struct efx_nic *efx)
  412. {
  413. struct efx_mcdi_phy_data *phy_data = efx->phy_data;
  414. efx->phy_data = NULL;
  415. kfree(phy_data);
  416. }
  417. static void efx_mcdi_phy_get_settings(struct efx_nic *efx, struct ethtool_cmd *ecmd)
  418. {
  419. struct efx_mcdi_phy_data *phy_cfg = efx->phy_data;
  420. MCDI_DECLARE_BUF(outbuf, MC_CMD_GET_LINK_OUT_LEN);
  421. int rc;
  422. ecmd->supported =
  423. mcdi_to_ethtool_cap(phy_cfg->media, phy_cfg->supported_cap);
  424. ecmd->advertising = efx->link_advertising;
  425. ethtool_cmd_speed_set(ecmd, efx->link_state.speed);
  426. ecmd->duplex = efx->link_state.fd;
  427. ecmd->port = mcdi_to_ethtool_media(phy_cfg->media);
  428. ecmd->phy_address = phy_cfg->port;
  429. ecmd->transceiver = XCVR_INTERNAL;
  430. ecmd->autoneg = !!(efx->link_advertising & ADVERTISED_Autoneg);
  431. ecmd->mdio_support = (efx->mdio.mode_support &
  432. (MDIO_SUPPORTS_C45 | MDIO_SUPPORTS_C22));
  433. BUILD_BUG_ON(MC_CMD_GET_LINK_IN_LEN != 0);
  434. rc = efx_mcdi_rpc(efx, MC_CMD_GET_LINK, NULL, 0,
  435. outbuf, sizeof(outbuf), NULL);
  436. if (rc)
  437. return;
  438. ecmd->lp_advertising =
  439. mcdi_to_ethtool_cap(phy_cfg->media,
  440. MCDI_DWORD(outbuf, GET_LINK_OUT_LP_CAP));
  441. }
  442. static int efx_mcdi_phy_set_settings(struct efx_nic *efx, struct ethtool_cmd *ecmd)
  443. {
  444. struct efx_mcdi_phy_data *phy_cfg = efx->phy_data;
  445. u32 caps;
  446. int rc;
  447. if (ecmd->autoneg) {
  448. caps = (ethtool_to_mcdi_cap(ecmd->advertising) |
  449. 1 << MC_CMD_PHY_CAP_AN_LBN);
  450. } else if (ecmd->duplex) {
  451. switch (ethtool_cmd_speed(ecmd)) {
  452. case 10: caps = 1 << MC_CMD_PHY_CAP_10FDX_LBN; break;
  453. case 100: caps = 1 << MC_CMD_PHY_CAP_100FDX_LBN; break;
  454. case 1000: caps = 1 << MC_CMD_PHY_CAP_1000FDX_LBN; break;
  455. case 10000: caps = 1 << MC_CMD_PHY_CAP_10000FDX_LBN; break;
  456. case 40000: caps = 1 << MC_CMD_PHY_CAP_40000FDX_LBN; break;
  457. default: return -EINVAL;
  458. }
  459. } else {
  460. switch (ethtool_cmd_speed(ecmd)) {
  461. case 10: caps = 1 << MC_CMD_PHY_CAP_10HDX_LBN; break;
  462. case 100: caps = 1 << MC_CMD_PHY_CAP_100HDX_LBN; break;
  463. case 1000: caps = 1 << MC_CMD_PHY_CAP_1000HDX_LBN; break;
  464. default: return -EINVAL;
  465. }
  466. }
  467. rc = efx_mcdi_set_link(efx, caps, efx_get_mcdi_phy_flags(efx),
  468. efx->loopback_mode, 0);
  469. if (rc)
  470. return rc;
  471. if (ecmd->autoneg) {
  472. efx_link_set_advertising(
  473. efx, ecmd->advertising | ADVERTISED_Autoneg);
  474. phy_cfg->forced_cap = 0;
  475. } else {
  476. efx_link_set_advertising(efx, 0);
  477. phy_cfg->forced_cap = caps;
  478. }
  479. return 0;
  480. }
  481. static int efx_mcdi_phy_test_alive(struct efx_nic *efx)
  482. {
  483. MCDI_DECLARE_BUF(outbuf, MC_CMD_GET_PHY_STATE_OUT_LEN);
  484. size_t outlen;
  485. int rc;
  486. BUILD_BUG_ON(MC_CMD_GET_PHY_STATE_IN_LEN != 0);
  487. rc = efx_mcdi_rpc(efx, MC_CMD_GET_PHY_STATE, NULL, 0,
  488. outbuf, sizeof(outbuf), &outlen);
  489. if (rc)
  490. return rc;
  491. if (outlen < MC_CMD_GET_PHY_STATE_OUT_LEN)
  492. return -EIO;
  493. if (MCDI_DWORD(outbuf, GET_PHY_STATE_OUT_STATE) != MC_CMD_PHY_STATE_OK)
  494. return -EINVAL;
  495. return 0;
  496. }
  497. static const char *const mcdi_sft9001_cable_diag_names[] = {
  498. "cable.pairA.length",
  499. "cable.pairB.length",
  500. "cable.pairC.length",
  501. "cable.pairD.length",
  502. "cable.pairA.status",
  503. "cable.pairB.status",
  504. "cable.pairC.status",
  505. "cable.pairD.status",
  506. };
  507. static int efx_mcdi_bist(struct efx_nic *efx, unsigned int bist_mode,
  508. int *results)
  509. {
  510. unsigned int retry, i, count = 0;
  511. size_t outlen;
  512. u32 status;
  513. MCDI_DECLARE_BUF(inbuf, MC_CMD_START_BIST_IN_LEN);
  514. MCDI_DECLARE_BUF(outbuf, MC_CMD_POLL_BIST_OUT_SFT9001_LEN);
  515. u8 *ptr;
  516. int rc;
  517. BUILD_BUG_ON(MC_CMD_START_BIST_OUT_LEN != 0);
  518. MCDI_SET_DWORD(inbuf, START_BIST_IN_TYPE, bist_mode);
  519. rc = efx_mcdi_rpc(efx, MC_CMD_START_BIST,
  520. inbuf, MC_CMD_START_BIST_IN_LEN, NULL, 0, NULL);
  521. if (rc)
  522. goto out;
  523. /* Wait up to 10s for BIST to finish */
  524. for (retry = 0; retry < 100; ++retry) {
  525. BUILD_BUG_ON(MC_CMD_POLL_BIST_IN_LEN != 0);
  526. rc = efx_mcdi_rpc(efx, MC_CMD_POLL_BIST, NULL, 0,
  527. outbuf, sizeof(outbuf), &outlen);
  528. if (rc)
  529. goto out;
  530. status = MCDI_DWORD(outbuf, POLL_BIST_OUT_RESULT);
  531. if (status != MC_CMD_POLL_BIST_RUNNING)
  532. goto finished;
  533. msleep(100);
  534. }
  535. rc = -ETIMEDOUT;
  536. goto out;
  537. finished:
  538. results[count++] = (status == MC_CMD_POLL_BIST_PASSED) ? 1 : -1;
  539. /* SFT9001 specific cable diagnostics output */
  540. if (efx->phy_type == PHY_TYPE_SFT9001B &&
  541. (bist_mode == MC_CMD_PHY_BIST_CABLE_SHORT ||
  542. bist_mode == MC_CMD_PHY_BIST_CABLE_LONG)) {
  543. ptr = MCDI_PTR(outbuf, POLL_BIST_OUT_SFT9001_CABLE_LENGTH_A);
  544. if (status == MC_CMD_POLL_BIST_PASSED &&
  545. outlen >= MC_CMD_POLL_BIST_OUT_SFT9001_LEN) {
  546. for (i = 0; i < 8; i++) {
  547. results[count + i] =
  548. EFX_DWORD_FIELD(((efx_dword_t *)ptr)[i],
  549. EFX_DWORD_0);
  550. }
  551. }
  552. count += 8;
  553. }
  554. rc = count;
  555. out:
  556. return rc;
  557. }
  558. static int efx_mcdi_phy_run_tests(struct efx_nic *efx, int *results,
  559. unsigned flags)
  560. {
  561. struct efx_mcdi_phy_data *phy_cfg = efx->phy_data;
  562. u32 mode;
  563. int rc;
  564. if (phy_cfg->flags & (1 << MC_CMD_GET_PHY_CFG_OUT_BIST_LBN)) {
  565. rc = efx_mcdi_bist(efx, MC_CMD_PHY_BIST, results);
  566. if (rc < 0)
  567. return rc;
  568. results += rc;
  569. }
  570. /* If we support both LONG and SHORT, then run each in response to
  571. * break or not. Otherwise, run the one we support */
  572. mode = 0;
  573. if (phy_cfg->flags & (1 << MC_CMD_GET_PHY_CFG_OUT_BIST_CABLE_SHORT_LBN)) {
  574. if ((flags & ETH_TEST_FL_OFFLINE) &&
  575. (phy_cfg->flags &
  576. (1 << MC_CMD_GET_PHY_CFG_OUT_BIST_CABLE_LONG_LBN)))
  577. mode = MC_CMD_PHY_BIST_CABLE_LONG;
  578. else
  579. mode = MC_CMD_PHY_BIST_CABLE_SHORT;
  580. } else if (phy_cfg->flags &
  581. (1 << MC_CMD_GET_PHY_CFG_OUT_BIST_CABLE_LONG_LBN))
  582. mode = MC_CMD_PHY_BIST_CABLE_LONG;
  583. if (mode != 0) {
  584. rc = efx_mcdi_bist(efx, mode, results);
  585. if (rc < 0)
  586. return rc;
  587. results += rc;
  588. }
  589. return 0;
  590. }
  591. static const char *efx_mcdi_phy_test_name(struct efx_nic *efx,
  592. unsigned int index)
  593. {
  594. struct efx_mcdi_phy_data *phy_cfg = efx->phy_data;
  595. if (phy_cfg->flags & (1 << MC_CMD_GET_PHY_CFG_OUT_BIST_LBN)) {
  596. if (index == 0)
  597. return "bist";
  598. --index;
  599. }
  600. if (phy_cfg->flags & ((1 << MC_CMD_GET_PHY_CFG_OUT_BIST_CABLE_SHORT_LBN) |
  601. (1 << MC_CMD_GET_PHY_CFG_OUT_BIST_CABLE_LONG_LBN))) {
  602. if (index == 0)
  603. return "cable";
  604. --index;
  605. if (efx->phy_type == PHY_TYPE_SFT9001B) {
  606. if (index < ARRAY_SIZE(mcdi_sft9001_cable_diag_names))
  607. return mcdi_sft9001_cable_diag_names[index];
  608. index -= ARRAY_SIZE(mcdi_sft9001_cable_diag_names);
  609. }
  610. }
  611. return NULL;
  612. }
  613. #define SFP_PAGE_SIZE 128
  614. #define SFP_NUM_PAGES 2
  615. static int efx_mcdi_phy_get_module_eeprom(struct efx_nic *efx,
  616. struct ethtool_eeprom *ee, u8 *data)
  617. {
  618. MCDI_DECLARE_BUF(outbuf, MC_CMD_GET_PHY_MEDIA_INFO_OUT_LENMAX);
  619. MCDI_DECLARE_BUF(inbuf, MC_CMD_GET_PHY_MEDIA_INFO_IN_LEN);
  620. size_t outlen;
  621. int rc;
  622. unsigned int payload_len;
  623. unsigned int space_remaining = ee->len;
  624. unsigned int page;
  625. unsigned int page_off;
  626. unsigned int to_copy;
  627. u8 *user_data = data;
  628. BUILD_BUG_ON(SFP_PAGE_SIZE * SFP_NUM_PAGES != ETH_MODULE_SFF_8079_LEN);
  629. page_off = ee->offset % SFP_PAGE_SIZE;
  630. page = ee->offset / SFP_PAGE_SIZE;
  631. while (space_remaining && (page < SFP_NUM_PAGES)) {
  632. MCDI_SET_DWORD(inbuf, GET_PHY_MEDIA_INFO_IN_PAGE, page);
  633. rc = efx_mcdi_rpc(efx, MC_CMD_GET_PHY_MEDIA_INFO,
  634. inbuf, sizeof(inbuf),
  635. outbuf, sizeof(outbuf),
  636. &outlen);
  637. if (rc)
  638. return rc;
  639. if (outlen < (MC_CMD_GET_PHY_MEDIA_INFO_OUT_DATA_OFST +
  640. SFP_PAGE_SIZE))
  641. return -EIO;
  642. payload_len = MCDI_DWORD(outbuf,
  643. GET_PHY_MEDIA_INFO_OUT_DATALEN);
  644. if (payload_len != SFP_PAGE_SIZE)
  645. return -EIO;
  646. /* Copy as much as we can into data */
  647. payload_len -= page_off;
  648. to_copy = (space_remaining < payload_len) ?
  649. space_remaining : payload_len;
  650. memcpy(user_data,
  651. MCDI_PTR(outbuf, GET_PHY_MEDIA_INFO_OUT_DATA) + page_off,
  652. to_copy);
  653. space_remaining -= to_copy;
  654. user_data += to_copy;
  655. page_off = 0;
  656. page++;
  657. }
  658. return 0;
  659. }
  660. static int efx_mcdi_phy_get_module_info(struct efx_nic *efx,
  661. struct ethtool_modinfo *modinfo)
  662. {
  663. struct efx_mcdi_phy_data *phy_cfg = efx->phy_data;
  664. switch (phy_cfg->media) {
  665. case MC_CMD_MEDIA_SFP_PLUS:
  666. modinfo->type = ETH_MODULE_SFF_8079;
  667. modinfo->eeprom_len = ETH_MODULE_SFF_8079_LEN;
  668. return 0;
  669. default:
  670. return -EOPNOTSUPP;
  671. }
  672. }
  673. static const struct efx_phy_operations efx_mcdi_phy_ops = {
  674. .probe = efx_mcdi_phy_probe,
  675. .init = efx_port_dummy_op_int,
  676. .reconfigure = efx_mcdi_port_reconfigure,
  677. .poll = efx_mcdi_phy_poll,
  678. .fini = efx_port_dummy_op_void,
  679. .remove = efx_mcdi_phy_remove,
  680. .get_settings = efx_mcdi_phy_get_settings,
  681. .set_settings = efx_mcdi_phy_set_settings,
  682. .test_alive = efx_mcdi_phy_test_alive,
  683. .run_tests = efx_mcdi_phy_run_tests,
  684. .test_name = efx_mcdi_phy_test_name,
  685. .get_module_eeprom = efx_mcdi_phy_get_module_eeprom,
  686. .get_module_info = efx_mcdi_phy_get_module_info,
  687. };
  688. u32 efx_mcdi_phy_get_caps(struct efx_nic *efx)
  689. {
  690. struct efx_mcdi_phy_data *phy_data = efx->phy_data;
  691. return phy_data->supported_cap;
  692. }
  693. static unsigned int efx_mcdi_event_link_speed[] = {
  694. [MCDI_EVENT_LINKCHANGE_SPEED_100M] = 100,
  695. [MCDI_EVENT_LINKCHANGE_SPEED_1G] = 1000,
  696. [MCDI_EVENT_LINKCHANGE_SPEED_10G] = 10000,
  697. [MCDI_EVENT_LINKCHANGE_SPEED_40G] = 40000,
  698. };
  699. void efx_mcdi_process_link_change(struct efx_nic *efx, efx_qword_t *ev)
  700. {
  701. u32 flags, fcntl, speed, lpa;
  702. speed = EFX_QWORD_FIELD(*ev, MCDI_EVENT_LINKCHANGE_SPEED);
  703. EFX_BUG_ON_PARANOID(speed >= ARRAY_SIZE(efx_mcdi_event_link_speed));
  704. speed = efx_mcdi_event_link_speed[speed];
  705. flags = EFX_QWORD_FIELD(*ev, MCDI_EVENT_LINKCHANGE_LINK_FLAGS);
  706. fcntl = EFX_QWORD_FIELD(*ev, MCDI_EVENT_LINKCHANGE_FCNTL);
  707. lpa = EFX_QWORD_FIELD(*ev, MCDI_EVENT_LINKCHANGE_LP_CAP);
  708. /* efx->link_state is only modified by efx_mcdi_phy_get_link(),
  709. * which is only run after flushing the event queues. Therefore, it
  710. * is safe to modify the link state outside of the mac_lock here.
  711. */
  712. efx_mcdi_phy_decode_link(efx, &efx->link_state, speed, flags, fcntl);
  713. efx_mcdi_phy_check_fcntl(efx, lpa);
  714. efx_link_status_changed(efx);
  715. }
  716. int efx_mcdi_set_mac(struct efx_nic *efx)
  717. {
  718. u32 fcntl;
  719. MCDI_DECLARE_BUF(cmdbytes, MC_CMD_SET_MAC_IN_LEN);
  720. BUILD_BUG_ON(MC_CMD_SET_MAC_OUT_LEN != 0);
  721. ether_addr_copy(MCDI_PTR(cmdbytes, SET_MAC_IN_ADDR),
  722. efx->net_dev->dev_addr);
  723. MCDI_SET_DWORD(cmdbytes, SET_MAC_IN_MTU,
  724. EFX_MAX_FRAME_LEN(efx->net_dev->mtu));
  725. MCDI_SET_DWORD(cmdbytes, SET_MAC_IN_DRAIN, 0);
  726. /* Set simple MAC filter for Siena */
  727. MCDI_POPULATE_DWORD_1(cmdbytes, SET_MAC_IN_REJECT,
  728. SET_MAC_IN_REJECT_UNCST, efx->unicast_filter);
  729. switch (efx->wanted_fc) {
  730. case EFX_FC_RX | EFX_FC_TX:
  731. fcntl = MC_CMD_FCNTL_BIDIR;
  732. break;
  733. case EFX_FC_RX:
  734. fcntl = MC_CMD_FCNTL_RESPOND;
  735. break;
  736. default:
  737. fcntl = MC_CMD_FCNTL_OFF;
  738. break;
  739. }
  740. if (efx->wanted_fc & EFX_FC_AUTO)
  741. fcntl = MC_CMD_FCNTL_AUTO;
  742. if (efx->fc_disable)
  743. fcntl = MC_CMD_FCNTL_OFF;
  744. MCDI_SET_DWORD(cmdbytes, SET_MAC_IN_FCNTL, fcntl);
  745. return efx_mcdi_rpc(efx, MC_CMD_SET_MAC, cmdbytes, sizeof(cmdbytes),
  746. NULL, 0, NULL);
  747. }
  748. bool efx_mcdi_mac_check_fault(struct efx_nic *efx)
  749. {
  750. MCDI_DECLARE_BUF(outbuf, MC_CMD_GET_LINK_OUT_LEN);
  751. size_t outlength;
  752. int rc;
  753. BUILD_BUG_ON(MC_CMD_GET_LINK_IN_LEN != 0);
  754. rc = efx_mcdi_rpc(efx, MC_CMD_GET_LINK, NULL, 0,
  755. outbuf, sizeof(outbuf), &outlength);
  756. if (rc)
  757. return true;
  758. return MCDI_DWORD(outbuf, GET_LINK_OUT_MAC_FAULT) != 0;
  759. }
  760. enum efx_stats_action {
  761. EFX_STATS_ENABLE,
  762. EFX_STATS_DISABLE,
  763. EFX_STATS_PULL,
  764. };
  765. static int efx_mcdi_mac_stats(struct efx_nic *efx,
  766. enum efx_stats_action action, int clear)
  767. {
  768. MCDI_DECLARE_BUF(inbuf, MC_CMD_MAC_STATS_IN_LEN);
  769. int rc;
  770. int change = action == EFX_STATS_PULL ? 0 : 1;
  771. int enable = action == EFX_STATS_ENABLE ? 1 : 0;
  772. int period = action == EFX_STATS_ENABLE ? 1000 : 0;
  773. dma_addr_t dma_addr = efx->stats_buffer.dma_addr;
  774. u32 dma_len = action != EFX_STATS_DISABLE ?
  775. MC_CMD_MAC_NSTATS * sizeof(u64) : 0;
  776. BUILD_BUG_ON(MC_CMD_MAC_STATS_OUT_DMA_LEN != 0);
  777. MCDI_SET_QWORD(inbuf, MAC_STATS_IN_DMA_ADDR, dma_addr);
  778. MCDI_POPULATE_DWORD_7(inbuf, MAC_STATS_IN_CMD,
  779. MAC_STATS_IN_DMA, !!enable,
  780. MAC_STATS_IN_CLEAR, clear,
  781. MAC_STATS_IN_PERIODIC_CHANGE, change,
  782. MAC_STATS_IN_PERIODIC_ENABLE, enable,
  783. MAC_STATS_IN_PERIODIC_CLEAR, 0,
  784. MAC_STATS_IN_PERIODIC_NOEVENT, 1,
  785. MAC_STATS_IN_PERIOD_MS, period);
  786. MCDI_SET_DWORD(inbuf, MAC_STATS_IN_DMA_LEN, dma_len);
  787. rc = efx_mcdi_rpc(efx, MC_CMD_MAC_STATS, inbuf, sizeof(inbuf),
  788. NULL, 0, NULL);
  789. return rc;
  790. }
  791. void efx_mcdi_mac_start_stats(struct efx_nic *efx)
  792. {
  793. __le64 *dma_stats = efx->stats_buffer.addr;
  794. dma_stats[MC_CMD_MAC_GENERATION_END] = EFX_MC_STATS_GENERATION_INVALID;
  795. efx_mcdi_mac_stats(efx, EFX_STATS_ENABLE, 0);
  796. }
  797. void efx_mcdi_mac_stop_stats(struct efx_nic *efx)
  798. {
  799. efx_mcdi_mac_stats(efx, EFX_STATS_DISABLE, 0);
  800. }
  801. #define EFX_MAC_STATS_WAIT_US 100
  802. #define EFX_MAC_STATS_WAIT_ATTEMPTS 10
  803. void efx_mcdi_mac_pull_stats(struct efx_nic *efx)
  804. {
  805. __le64 *dma_stats = efx->stats_buffer.addr;
  806. int attempts = EFX_MAC_STATS_WAIT_ATTEMPTS;
  807. dma_stats[MC_CMD_MAC_GENERATION_END] = EFX_MC_STATS_GENERATION_INVALID;
  808. efx_mcdi_mac_stats(efx, EFX_STATS_PULL, 0);
  809. while (dma_stats[MC_CMD_MAC_GENERATION_END] ==
  810. EFX_MC_STATS_GENERATION_INVALID &&
  811. attempts-- != 0)
  812. udelay(EFX_MAC_STATS_WAIT_US);
  813. }
  814. int efx_mcdi_port_probe(struct efx_nic *efx)
  815. {
  816. int rc;
  817. /* Hook in PHY operations table */
  818. efx->phy_op = &efx_mcdi_phy_ops;
  819. /* Set up MDIO structure for PHY */
  820. efx->mdio.mode_support = MDIO_SUPPORTS_C45 | MDIO_EMULATE_C22;
  821. efx->mdio.mdio_read = efx_mcdi_mdio_read;
  822. efx->mdio.mdio_write = efx_mcdi_mdio_write;
  823. /* Fill out MDIO structure, loopback modes, and initial link state */
  824. rc = efx->phy_op->probe(efx);
  825. if (rc != 0)
  826. return rc;
  827. /* Allocate buffer for stats */
  828. rc = efx_nic_alloc_buffer(efx, &efx->stats_buffer,
  829. MC_CMD_MAC_NSTATS * sizeof(u64), GFP_KERNEL);
  830. if (rc)
  831. return rc;
  832. netif_dbg(efx, probe, efx->net_dev,
  833. "stats buffer at %llx (virt %p phys %llx)\n",
  834. (u64)efx->stats_buffer.dma_addr,
  835. efx->stats_buffer.addr,
  836. (u64)virt_to_phys(efx->stats_buffer.addr));
  837. efx_mcdi_mac_stats(efx, EFX_STATS_DISABLE, 1);
  838. return 0;
  839. }
  840. void efx_mcdi_port_remove(struct efx_nic *efx)
  841. {
  842. efx->phy_op->remove(efx);
  843. efx_nic_free_buffer(efx, &efx->stats_buffer);
  844. }
  845. /* Get physical port number (EF10 only; on Siena it is same as PF number) */
  846. int efx_mcdi_port_get_number(struct efx_nic *efx)
  847. {
  848. MCDI_DECLARE_BUF(outbuf, MC_CMD_GET_PORT_ASSIGNMENT_OUT_LEN);
  849. int rc;
  850. rc = efx_mcdi_rpc(efx, MC_CMD_GET_PORT_ASSIGNMENT, NULL, 0,
  851. outbuf, sizeof(outbuf), NULL);
  852. if (rc)
  853. return rc;
  854. return MCDI_DWORD(outbuf, GET_PORT_ASSIGNMENT_OUT_PORT);
  855. }