mdio_10g.c 9.8 KB

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  1. /****************************************************************************
  2. * Driver for Solarflare Solarstorm network controllers and boards
  3. * Copyright 2006-2009 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. * Useful functions for working with MDIO clause 45 PHYs
  11. */
  12. #include <linux/types.h>
  13. #include <linux/ethtool.h>
  14. #include <linux/delay.h>
  15. #include "net_driver.h"
  16. #include "mdio_10g.h"
  17. #include "workarounds.h"
  18. #include "nic.h"
  19. unsigned efx_mdio_id_oui(u32 id)
  20. {
  21. unsigned oui = 0;
  22. int i;
  23. /* The bits of the OUI are designated a..x, with a=0 and b variable.
  24. * In the id register c is the MSB but the OUI is conventionally
  25. * written as bytes h..a, p..i, x..q. Reorder the bits accordingly. */
  26. for (i = 0; i < 22; ++i)
  27. if (id & (1 << (i + 10)))
  28. oui |= 1 << (i ^ 7);
  29. return oui;
  30. }
  31. int efx_mdio_reset_mmd(struct efx_nic *port, int mmd,
  32. int spins, int spintime)
  33. {
  34. u32 ctrl;
  35. /* Catch callers passing values in the wrong units (or just silly) */
  36. EFX_BUG_ON_PARANOID(spins * spintime >= 5000);
  37. efx_mdio_write(port, mmd, MDIO_CTRL1, MDIO_CTRL1_RESET);
  38. /* Wait for the reset bit to clear. */
  39. do {
  40. msleep(spintime);
  41. ctrl = efx_mdio_read(port, mmd, MDIO_CTRL1);
  42. spins--;
  43. } while (spins && (ctrl & MDIO_CTRL1_RESET));
  44. return spins ? spins : -ETIMEDOUT;
  45. }
  46. static int efx_mdio_check_mmd(struct efx_nic *efx, int mmd, int fault_fatal)
  47. {
  48. int status;
  49. if (LOOPBACK_INTERNAL(efx))
  50. return 0;
  51. if (mmd != MDIO_MMD_AN) {
  52. /* Read MMD STATUS2 to check it is responding. */
  53. status = efx_mdio_read(efx, mmd, MDIO_STAT2);
  54. if ((status & MDIO_STAT2_DEVPRST) != MDIO_STAT2_DEVPRST_VAL) {
  55. netif_err(efx, hw, efx->net_dev,
  56. "PHY MMD %d not responding.\n", mmd);
  57. return -EIO;
  58. }
  59. }
  60. /* Read MMD STATUS 1 to check for fault. */
  61. status = efx_mdio_read(efx, mmd, MDIO_STAT1);
  62. if (status & MDIO_STAT1_FAULT) {
  63. if (fault_fatal) {
  64. netif_err(efx, hw, efx->net_dev,
  65. "PHY MMD %d reporting fatal"
  66. " fault: status %x\n", mmd, status);
  67. return -EIO;
  68. } else {
  69. netif_dbg(efx, hw, efx->net_dev,
  70. "PHY MMD %d reporting status"
  71. " %x (expected)\n", mmd, status);
  72. }
  73. }
  74. return 0;
  75. }
  76. /* This ought to be ridiculous overkill. We expect it to fail rarely */
  77. #define MDIO45_RESET_TIME 1000 /* ms */
  78. #define MDIO45_RESET_ITERS 100
  79. int efx_mdio_wait_reset_mmds(struct efx_nic *efx, unsigned int mmd_mask)
  80. {
  81. const int spintime = MDIO45_RESET_TIME / MDIO45_RESET_ITERS;
  82. int tries = MDIO45_RESET_ITERS;
  83. int rc = 0;
  84. int in_reset;
  85. while (tries) {
  86. int mask = mmd_mask;
  87. int mmd = 0;
  88. int stat;
  89. in_reset = 0;
  90. while (mask) {
  91. if (mask & 1) {
  92. stat = efx_mdio_read(efx, mmd, MDIO_CTRL1);
  93. if (stat < 0) {
  94. netif_err(efx, hw, efx->net_dev,
  95. "failed to read status of"
  96. " MMD %d\n", mmd);
  97. return -EIO;
  98. }
  99. if (stat & MDIO_CTRL1_RESET)
  100. in_reset |= (1 << mmd);
  101. }
  102. mask = mask >> 1;
  103. mmd++;
  104. }
  105. if (!in_reset)
  106. break;
  107. tries--;
  108. msleep(spintime);
  109. }
  110. if (in_reset != 0) {
  111. netif_err(efx, hw, efx->net_dev,
  112. "not all MMDs came out of reset in time."
  113. " MMDs still in reset: %x\n", in_reset);
  114. rc = -ETIMEDOUT;
  115. }
  116. return rc;
  117. }
  118. int efx_mdio_check_mmds(struct efx_nic *efx,
  119. unsigned int mmd_mask, unsigned int fatal_mask)
  120. {
  121. int mmd = 0, probe_mmd, devs1, devs2;
  122. u32 devices;
  123. /* Historically we have probed the PHYXS to find out what devices are
  124. * present,but that doesn't work so well if the PHYXS isn't expected
  125. * to exist, if so just find the first item in the list supplied. */
  126. probe_mmd = (mmd_mask & MDIO_DEVS_PHYXS) ? MDIO_MMD_PHYXS :
  127. __ffs(mmd_mask);
  128. /* Check all the expected MMDs are present */
  129. devs1 = efx_mdio_read(efx, probe_mmd, MDIO_DEVS1);
  130. devs2 = efx_mdio_read(efx, probe_mmd, MDIO_DEVS2);
  131. if (devs1 < 0 || devs2 < 0) {
  132. netif_err(efx, hw, efx->net_dev,
  133. "failed to read devices present\n");
  134. return -EIO;
  135. }
  136. devices = devs1 | (devs2 << 16);
  137. if ((devices & mmd_mask) != mmd_mask) {
  138. netif_err(efx, hw, efx->net_dev,
  139. "required MMDs not present: got %x, wanted %x\n",
  140. devices, mmd_mask);
  141. return -ENODEV;
  142. }
  143. netif_vdbg(efx, hw, efx->net_dev, "Devices present: %x\n", devices);
  144. /* Check all required MMDs are responding and happy. */
  145. while (mmd_mask) {
  146. if (mmd_mask & 1) {
  147. int fault_fatal = fatal_mask & 1;
  148. if (efx_mdio_check_mmd(efx, mmd, fault_fatal))
  149. return -EIO;
  150. }
  151. mmd_mask = mmd_mask >> 1;
  152. fatal_mask = fatal_mask >> 1;
  153. mmd++;
  154. }
  155. return 0;
  156. }
  157. bool efx_mdio_links_ok(struct efx_nic *efx, unsigned int mmd_mask)
  158. {
  159. /* If the port is in loopback, then we should only consider a subset
  160. * of mmd's */
  161. if (LOOPBACK_INTERNAL(efx))
  162. return true;
  163. else if (LOOPBACK_MASK(efx) & LOOPBACKS_WS)
  164. return false;
  165. else if (efx_phy_mode_disabled(efx->phy_mode))
  166. return false;
  167. else if (efx->loopback_mode == LOOPBACK_PHYXS)
  168. mmd_mask &= ~(MDIO_DEVS_PHYXS |
  169. MDIO_DEVS_PCS |
  170. MDIO_DEVS_PMAPMD |
  171. MDIO_DEVS_AN);
  172. else if (efx->loopback_mode == LOOPBACK_PCS)
  173. mmd_mask &= ~(MDIO_DEVS_PCS |
  174. MDIO_DEVS_PMAPMD |
  175. MDIO_DEVS_AN);
  176. else if (efx->loopback_mode == LOOPBACK_PMAPMD)
  177. mmd_mask &= ~(MDIO_DEVS_PMAPMD |
  178. MDIO_DEVS_AN);
  179. return mdio45_links_ok(&efx->mdio, mmd_mask);
  180. }
  181. void efx_mdio_transmit_disable(struct efx_nic *efx)
  182. {
  183. efx_mdio_set_flag(efx, MDIO_MMD_PMAPMD,
  184. MDIO_PMA_TXDIS, MDIO_PMD_TXDIS_GLOBAL,
  185. efx->phy_mode & PHY_MODE_TX_DISABLED);
  186. }
  187. void efx_mdio_phy_reconfigure(struct efx_nic *efx)
  188. {
  189. efx_mdio_set_flag(efx, MDIO_MMD_PMAPMD,
  190. MDIO_CTRL1, MDIO_PMA_CTRL1_LOOPBACK,
  191. efx->loopback_mode == LOOPBACK_PMAPMD);
  192. efx_mdio_set_flag(efx, MDIO_MMD_PCS,
  193. MDIO_CTRL1, MDIO_PCS_CTRL1_LOOPBACK,
  194. efx->loopback_mode == LOOPBACK_PCS);
  195. efx_mdio_set_flag(efx, MDIO_MMD_PHYXS,
  196. MDIO_CTRL1, MDIO_PHYXS_CTRL1_LOOPBACK,
  197. efx->loopback_mode == LOOPBACK_PHYXS_WS);
  198. }
  199. static void efx_mdio_set_mmd_lpower(struct efx_nic *efx,
  200. int lpower, int mmd)
  201. {
  202. int stat = efx_mdio_read(efx, mmd, MDIO_STAT1);
  203. netif_vdbg(efx, drv, efx->net_dev, "Setting low power mode for MMD %d to %d\n",
  204. mmd, lpower);
  205. if (stat & MDIO_STAT1_LPOWERABLE) {
  206. efx_mdio_set_flag(efx, mmd, MDIO_CTRL1,
  207. MDIO_CTRL1_LPOWER, lpower);
  208. }
  209. }
  210. void efx_mdio_set_mmds_lpower(struct efx_nic *efx,
  211. int low_power, unsigned int mmd_mask)
  212. {
  213. int mmd = 0;
  214. mmd_mask &= ~MDIO_DEVS_AN;
  215. while (mmd_mask) {
  216. if (mmd_mask & 1)
  217. efx_mdio_set_mmd_lpower(efx, low_power, mmd);
  218. mmd_mask = (mmd_mask >> 1);
  219. mmd++;
  220. }
  221. }
  222. /**
  223. * efx_mdio_set_settings - Set (some of) the PHY settings over MDIO.
  224. * @efx: Efx NIC
  225. * @ecmd: New settings
  226. */
  227. int efx_mdio_set_settings(struct efx_nic *efx, struct ethtool_cmd *ecmd)
  228. {
  229. struct ethtool_cmd prev;
  230. efx->phy_op->get_settings(efx, &prev);
  231. if (ecmd->advertising == prev.advertising &&
  232. ecmd->speed == prev.speed &&
  233. ecmd->duplex == prev.duplex &&
  234. ecmd->port == prev.port &&
  235. ecmd->autoneg == prev.autoneg)
  236. return 0;
  237. /* We can only change these settings for -T PHYs */
  238. if (prev.port != PORT_TP || ecmd->port != PORT_TP)
  239. return -EINVAL;
  240. /* Check that PHY supports these settings */
  241. if (!ecmd->autoneg ||
  242. (ecmd->advertising | SUPPORTED_Autoneg) & ~prev.supported)
  243. return -EINVAL;
  244. efx_link_set_advertising(efx, ecmd->advertising | ADVERTISED_Autoneg);
  245. efx_mdio_an_reconfigure(efx);
  246. return 0;
  247. }
  248. /**
  249. * efx_mdio_an_reconfigure - Push advertising flags and restart autonegotiation
  250. * @efx: Efx NIC
  251. */
  252. void efx_mdio_an_reconfigure(struct efx_nic *efx)
  253. {
  254. bool xnp = (efx->link_advertising & ADVERTISED_10000baseT_Full
  255. || EFX_WORKAROUND_13204(efx));
  256. int reg;
  257. WARN_ON(!(efx->mdio.mmds & MDIO_DEVS_AN));
  258. /* Set up the base page */
  259. reg = ADVERTISE_CSMA;
  260. if (efx->link_advertising & ADVERTISED_10baseT_Half)
  261. reg |= ADVERTISE_10HALF;
  262. if (efx->link_advertising & ADVERTISED_10baseT_Full)
  263. reg |= ADVERTISE_10FULL;
  264. if (efx->link_advertising & ADVERTISED_100baseT_Half)
  265. reg |= ADVERTISE_100HALF;
  266. if (efx->link_advertising & ADVERTISED_100baseT_Full)
  267. reg |= ADVERTISE_100FULL;
  268. if (xnp)
  269. reg |= ADVERTISE_RESV;
  270. else if (efx->link_advertising & (ADVERTISED_1000baseT_Half |
  271. ADVERTISED_1000baseT_Full))
  272. reg |= ADVERTISE_NPAGE;
  273. if (efx->link_advertising & ADVERTISED_Pause)
  274. reg |= ADVERTISE_PAUSE_CAP;
  275. if (efx->link_advertising & ADVERTISED_Asym_Pause)
  276. reg |= ADVERTISE_PAUSE_ASYM;
  277. efx_mdio_write(efx, MDIO_MMD_AN, MDIO_AN_ADVERTISE, reg);
  278. /* Set up the (extended) next page if necessary */
  279. if (efx->phy_op->set_npage_adv)
  280. efx->phy_op->set_npage_adv(efx, efx->link_advertising);
  281. /* Enable and restart AN */
  282. reg = efx_mdio_read(efx, MDIO_MMD_AN, MDIO_CTRL1);
  283. reg |= MDIO_AN_CTRL1_ENABLE;
  284. if (!(EFX_WORKAROUND_15195(efx) && LOOPBACK_EXTERNAL(efx)))
  285. reg |= MDIO_AN_CTRL1_RESTART;
  286. if (xnp)
  287. reg |= MDIO_AN_CTRL1_XNP;
  288. else
  289. reg &= ~MDIO_AN_CTRL1_XNP;
  290. efx_mdio_write(efx, MDIO_MMD_AN, MDIO_CTRL1, reg);
  291. }
  292. enum efx_fc_type efx_mdio_get_pause(struct efx_nic *efx)
  293. {
  294. BUILD_BUG_ON(EFX_FC_AUTO & (EFX_FC_RX | EFX_FC_TX));
  295. if (!(efx->wanted_fc & EFX_FC_AUTO))
  296. return efx->wanted_fc;
  297. WARN_ON(!(efx->mdio.mmds & MDIO_DEVS_AN));
  298. return mii_resolve_flowctrl_fdx(
  299. mii_advertise_flowctrl(efx->wanted_fc),
  300. efx_mdio_read(efx, MDIO_MMD_AN, MDIO_AN_LPA));
  301. }
  302. int efx_mdio_test_alive(struct efx_nic *efx)
  303. {
  304. int rc;
  305. int devad = __ffs(efx->mdio.mmds);
  306. u16 physid1, physid2;
  307. mutex_lock(&efx->mac_lock);
  308. physid1 = efx_mdio_read(efx, devad, MDIO_DEVID1);
  309. physid2 = efx_mdio_read(efx, devad, MDIO_DEVID2);
  310. if ((physid1 == 0x0000) || (physid1 == 0xffff) ||
  311. (physid2 == 0x0000) || (physid2 == 0xffff)) {
  312. netif_err(efx, hw, efx->net_dev,
  313. "no MDIO PHY present with ID %d\n", efx->mdio.prtad);
  314. rc = -EINVAL;
  315. } else {
  316. rc = efx_mdio_check_mmds(efx, efx->mdio.mmds, 0);
  317. }
  318. mutex_unlock(&efx->mac_lock);
  319. return rc;
  320. }