nfp_net_ethtool.c 38 KB

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  1. /*
  2. * Copyright (C) 2015-2017 Netronome Systems, Inc.
  3. *
  4. * This software is dual licensed under the GNU General License Version 2,
  5. * June 1991 as shown in the file COPYING in the top-level directory of this
  6. * source tree or the BSD 2-Clause License provided below. You have the
  7. * option to license this software under the complete terms of either license.
  8. *
  9. * The BSD 2-Clause License:
  10. *
  11. * Redistribution and use in source and binary forms, with or
  12. * without modification, are permitted provided that the following
  13. * conditions are met:
  14. *
  15. * 1. Redistributions of source code must retain the above
  16. * copyright notice, this list of conditions and the following
  17. * disclaimer.
  18. *
  19. * 2. Redistributions in binary form must reproduce the above
  20. * copyright notice, this list of conditions and the following
  21. * disclaimer in the documentation and/or other materials
  22. * provided with the distribution.
  23. *
  24. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
  25. * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
  26. * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
  27. * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
  28. * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
  29. * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
  30. * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
  31. * SOFTWARE.
  32. */
  33. /*
  34. * nfp_net_ethtool.c
  35. * Netronome network device driver: ethtool support
  36. * Authors: Jakub Kicinski <jakub.kicinski@netronome.com>
  37. * Jason McMullan <jason.mcmullan@netronome.com>
  38. * Rolf Neugebauer <rolf.neugebauer@netronome.com>
  39. * Brad Petrus <brad.petrus@netronome.com>
  40. */
  41. #include <linux/bitfield.h>
  42. #include <linux/kernel.h>
  43. #include <linux/netdevice.h>
  44. #include <linux/etherdevice.h>
  45. #include <linux/interrupt.h>
  46. #include <linux/pci.h>
  47. #include <linux/ethtool.h>
  48. #include <linux/firmware.h>
  49. #include "nfpcore/nfp.h"
  50. #include "nfpcore/nfp_nsp.h"
  51. #include "nfp_app.h"
  52. #include "nfp_main.h"
  53. #include "nfp_net_ctrl.h"
  54. #include "nfp_net.h"
  55. #include "nfp_port.h"
  56. struct nfp_et_stat {
  57. char name[ETH_GSTRING_LEN];
  58. int off;
  59. };
  60. static const struct nfp_et_stat nfp_net_et_stats[] = {
  61. /* Stats from the device */
  62. { "dev_rx_discards", NFP_NET_CFG_STATS_RX_DISCARDS },
  63. { "dev_rx_errors", NFP_NET_CFG_STATS_RX_ERRORS },
  64. { "dev_rx_bytes", NFP_NET_CFG_STATS_RX_OCTETS },
  65. { "dev_rx_uc_bytes", NFP_NET_CFG_STATS_RX_UC_OCTETS },
  66. { "dev_rx_mc_bytes", NFP_NET_CFG_STATS_RX_MC_OCTETS },
  67. { "dev_rx_bc_bytes", NFP_NET_CFG_STATS_RX_BC_OCTETS },
  68. { "dev_rx_pkts", NFP_NET_CFG_STATS_RX_FRAMES },
  69. { "dev_rx_mc_pkts", NFP_NET_CFG_STATS_RX_MC_FRAMES },
  70. { "dev_rx_bc_pkts", NFP_NET_CFG_STATS_RX_BC_FRAMES },
  71. { "dev_tx_discards", NFP_NET_CFG_STATS_TX_DISCARDS },
  72. { "dev_tx_errors", NFP_NET_CFG_STATS_TX_ERRORS },
  73. { "dev_tx_bytes", NFP_NET_CFG_STATS_TX_OCTETS },
  74. { "dev_tx_uc_bytes", NFP_NET_CFG_STATS_TX_UC_OCTETS },
  75. { "dev_tx_mc_bytes", NFP_NET_CFG_STATS_TX_MC_OCTETS },
  76. { "dev_tx_bc_bytes", NFP_NET_CFG_STATS_TX_BC_OCTETS },
  77. { "dev_tx_pkts", NFP_NET_CFG_STATS_TX_FRAMES },
  78. { "dev_tx_mc_pkts", NFP_NET_CFG_STATS_TX_MC_FRAMES },
  79. { "dev_tx_bc_pkts", NFP_NET_CFG_STATS_TX_BC_FRAMES },
  80. { "bpf_pass_pkts", NFP_NET_CFG_STATS_APP0_FRAMES },
  81. { "bpf_pass_bytes", NFP_NET_CFG_STATS_APP0_BYTES },
  82. /* see comments in outro functions in nfp_bpf_jit.c to find out
  83. * how different BPF modes use app-specific counters
  84. */
  85. { "bpf_app1_pkts", NFP_NET_CFG_STATS_APP1_FRAMES },
  86. { "bpf_app1_bytes", NFP_NET_CFG_STATS_APP1_BYTES },
  87. { "bpf_app2_pkts", NFP_NET_CFG_STATS_APP2_FRAMES },
  88. { "bpf_app2_bytes", NFP_NET_CFG_STATS_APP2_BYTES },
  89. { "bpf_app3_pkts", NFP_NET_CFG_STATS_APP3_FRAMES },
  90. { "bpf_app3_bytes", NFP_NET_CFG_STATS_APP3_BYTES },
  91. };
  92. static const struct nfp_et_stat nfp_mac_et_stats[] = {
  93. { "rx_octets", NFP_MAC_STATS_RX_IN_OCTETS, },
  94. { "rx_frame_too_long_errors",
  95. NFP_MAC_STATS_RX_FRAME_TOO_LONG_ERRORS, },
  96. { "rx_range_length_errors", NFP_MAC_STATS_RX_RANGE_LENGTH_ERRORS, },
  97. { "rx_vlan_received_ok", NFP_MAC_STATS_RX_VLAN_RECEIVED_OK, },
  98. { "rx_errors", NFP_MAC_STATS_RX_IN_ERRORS, },
  99. { "rx_broadcast_pkts", NFP_MAC_STATS_RX_IN_BROADCAST_PKTS, },
  100. { "rx_drop_events", NFP_MAC_STATS_RX_DROP_EVENTS, },
  101. { "rx_alignment_errors", NFP_MAC_STATS_RX_ALIGNMENT_ERRORS, },
  102. { "rx_pause_mac_ctrl_frames",
  103. NFP_MAC_STATS_RX_PAUSE_MAC_CTRL_FRAMES, },
  104. { "rx_frames_received_ok", NFP_MAC_STATS_RX_FRAMES_RECEIVED_OK, },
  105. { "rx_frame_check_sequence_errors",
  106. NFP_MAC_STATS_RX_FRAME_CHECK_SEQUENCE_ERRORS, },
  107. { "rx_unicast_pkts", NFP_MAC_STATS_RX_UNICAST_PKTS, },
  108. { "rx_multicast_pkts", NFP_MAC_STATS_RX_MULTICAST_PKTS, },
  109. { "rx_pkts", NFP_MAC_STATS_RX_PKTS, },
  110. { "rx_undersize_pkts", NFP_MAC_STATS_RX_UNDERSIZE_PKTS, },
  111. { "rx_pkts_64_octets", NFP_MAC_STATS_RX_PKTS_64_OCTETS, },
  112. { "rx_pkts_65_to_127_octets",
  113. NFP_MAC_STATS_RX_PKTS_65_TO_127_OCTETS, },
  114. { "rx_pkts_128_to_255_octets",
  115. NFP_MAC_STATS_RX_PKTS_128_TO_255_OCTETS, },
  116. { "rx_pkts_256_to_511_octets",
  117. NFP_MAC_STATS_RX_PKTS_256_TO_511_OCTETS, },
  118. { "rx_pkts_512_to_1023_octets",
  119. NFP_MAC_STATS_RX_PKTS_512_TO_1023_OCTETS, },
  120. { "rx_pkts_1024_to_1518_octets",
  121. NFP_MAC_STATS_RX_PKTS_1024_TO_1518_OCTETS, },
  122. { "rx_pkts_1519_to_max_octets",
  123. NFP_MAC_STATS_RX_PKTS_1519_TO_MAX_OCTETS, },
  124. { "rx_jabbers", NFP_MAC_STATS_RX_JABBERS, },
  125. { "rx_fragments", NFP_MAC_STATS_RX_FRAGMENTS, },
  126. { "rx_oversize_pkts", NFP_MAC_STATS_RX_OVERSIZE_PKTS, },
  127. { "rx_pause_frames_class0", NFP_MAC_STATS_RX_PAUSE_FRAMES_CLASS0, },
  128. { "rx_pause_frames_class1", NFP_MAC_STATS_RX_PAUSE_FRAMES_CLASS1, },
  129. { "rx_pause_frames_class2", NFP_MAC_STATS_RX_PAUSE_FRAMES_CLASS2, },
  130. { "rx_pause_frames_class3", NFP_MAC_STATS_RX_PAUSE_FRAMES_CLASS3, },
  131. { "rx_pause_frames_class4", NFP_MAC_STATS_RX_PAUSE_FRAMES_CLASS4, },
  132. { "rx_pause_frames_class5", NFP_MAC_STATS_RX_PAUSE_FRAMES_CLASS5, },
  133. { "rx_pause_frames_class6", NFP_MAC_STATS_RX_PAUSE_FRAMES_CLASS6, },
  134. { "rx_pause_frames_class7", NFP_MAC_STATS_RX_PAUSE_FRAMES_CLASS7, },
  135. { "rx_mac_ctrl_frames_received",
  136. NFP_MAC_STATS_RX_MAC_CTRL_FRAMES_RECEIVED, },
  137. { "rx_mac_head_drop", NFP_MAC_STATS_RX_MAC_HEAD_DROP, },
  138. { "tx_queue_drop", NFP_MAC_STATS_TX_QUEUE_DROP, },
  139. { "tx_octets", NFP_MAC_STATS_TX_OUT_OCTETS, },
  140. { "tx_vlan_transmitted_ok", NFP_MAC_STATS_TX_VLAN_TRANSMITTED_OK, },
  141. { "tx_errors", NFP_MAC_STATS_TX_OUT_ERRORS, },
  142. { "tx_broadcast_pkts", NFP_MAC_STATS_TX_BROADCAST_PKTS, },
  143. { "tx_pause_mac_ctrl_frames",
  144. NFP_MAC_STATS_TX_PAUSE_MAC_CTRL_FRAMES, },
  145. { "tx_frames_transmitted_ok",
  146. NFP_MAC_STATS_TX_FRAMES_TRANSMITTED_OK, },
  147. { "tx_unicast_pkts", NFP_MAC_STATS_TX_UNICAST_PKTS, },
  148. { "tx_multicast_pkts", NFP_MAC_STATS_TX_MULTICAST_PKTS, },
  149. { "tx_pkts_64_octets", NFP_MAC_STATS_TX_PKTS_64_OCTETS, },
  150. { "tx_pkts_65_to_127_octets",
  151. NFP_MAC_STATS_TX_PKTS_65_TO_127_OCTETS, },
  152. { "tx_pkts_128_to_255_octets",
  153. NFP_MAC_STATS_TX_PKTS_128_TO_255_OCTETS, },
  154. { "tx_pkts_256_to_511_octets",
  155. NFP_MAC_STATS_TX_PKTS_256_TO_511_OCTETS, },
  156. { "tx_pkts_512_to_1023_octets",
  157. NFP_MAC_STATS_TX_PKTS_512_TO_1023_OCTETS, },
  158. { "tx_pkts_1024_to_1518_octets",
  159. NFP_MAC_STATS_TX_PKTS_1024_TO_1518_OCTETS, },
  160. { "tx_pkts_1519_to_max_octets",
  161. NFP_MAC_STATS_TX_PKTS_1519_TO_MAX_OCTETS, },
  162. { "tx_pause_frames_class0", NFP_MAC_STATS_TX_PAUSE_FRAMES_CLASS0, },
  163. { "tx_pause_frames_class1", NFP_MAC_STATS_TX_PAUSE_FRAMES_CLASS1, },
  164. { "tx_pause_frames_class2", NFP_MAC_STATS_TX_PAUSE_FRAMES_CLASS2, },
  165. { "tx_pause_frames_class3", NFP_MAC_STATS_TX_PAUSE_FRAMES_CLASS3, },
  166. { "tx_pause_frames_class4", NFP_MAC_STATS_TX_PAUSE_FRAMES_CLASS4, },
  167. { "tx_pause_frames_class5", NFP_MAC_STATS_TX_PAUSE_FRAMES_CLASS5, },
  168. { "tx_pause_frames_class6", NFP_MAC_STATS_TX_PAUSE_FRAMES_CLASS6, },
  169. { "tx_pause_frames_class7", NFP_MAC_STATS_TX_PAUSE_FRAMES_CLASS7, },
  170. };
  171. #define NN_ET_GLOBAL_STATS_LEN ARRAY_SIZE(nfp_net_et_stats)
  172. #define NN_ET_SWITCH_STATS_LEN 9
  173. #define NN_RVEC_GATHER_STATS 9
  174. #define NN_RVEC_PER_Q_STATS 3
  175. static void nfp_net_get_nspinfo(struct nfp_app *app, char *version)
  176. {
  177. struct nfp_nsp *nsp;
  178. if (!app)
  179. return;
  180. nsp = nfp_nsp_open(app->cpp);
  181. if (IS_ERR(nsp))
  182. return;
  183. snprintf(version, ETHTOOL_FWVERS_LEN, "%hu.%hu",
  184. nfp_nsp_get_abi_ver_major(nsp),
  185. nfp_nsp_get_abi_ver_minor(nsp));
  186. nfp_nsp_close(nsp);
  187. }
  188. static void
  189. nfp_get_drvinfo(struct nfp_app *app, struct pci_dev *pdev,
  190. const char *vnic_version, struct ethtool_drvinfo *drvinfo)
  191. {
  192. char nsp_version[ETHTOOL_FWVERS_LEN] = {};
  193. strlcpy(drvinfo->driver, pdev->driver->name, sizeof(drvinfo->driver));
  194. strlcpy(drvinfo->version, nfp_driver_version, sizeof(drvinfo->version));
  195. nfp_net_get_nspinfo(app, nsp_version);
  196. snprintf(drvinfo->fw_version, sizeof(drvinfo->fw_version),
  197. "%s %s %s %s", vnic_version, nsp_version,
  198. nfp_app_mip_name(app), nfp_app_name(app));
  199. }
  200. static void
  201. nfp_net_get_drvinfo(struct net_device *netdev, struct ethtool_drvinfo *drvinfo)
  202. {
  203. char vnic_version[ETHTOOL_FWVERS_LEN] = {};
  204. struct nfp_net *nn = netdev_priv(netdev);
  205. snprintf(vnic_version, sizeof(vnic_version), "%d.%d.%d.%d",
  206. nn->fw_ver.resv, nn->fw_ver.class,
  207. nn->fw_ver.major, nn->fw_ver.minor);
  208. strlcpy(drvinfo->bus_info, pci_name(nn->pdev),
  209. sizeof(drvinfo->bus_info));
  210. nfp_get_drvinfo(nn->app, nn->pdev, vnic_version, drvinfo);
  211. }
  212. static void
  213. nfp_app_get_drvinfo(struct net_device *netdev, struct ethtool_drvinfo *drvinfo)
  214. {
  215. struct nfp_app *app;
  216. app = nfp_app_from_netdev(netdev);
  217. if (!app)
  218. return;
  219. nfp_get_drvinfo(app, app->pdev, "*", drvinfo);
  220. }
  221. static void
  222. nfp_net_set_fec_link_mode(struct nfp_eth_table_port *eth_port,
  223. struct ethtool_link_ksettings *c)
  224. {
  225. unsigned int modes;
  226. ethtool_link_ksettings_add_link_mode(c, supported, FEC_NONE);
  227. if (!nfp_eth_can_support_fec(eth_port)) {
  228. ethtool_link_ksettings_add_link_mode(c, advertising, FEC_NONE);
  229. return;
  230. }
  231. modes = nfp_eth_supported_fec_modes(eth_port);
  232. if (modes & NFP_FEC_BASER) {
  233. ethtool_link_ksettings_add_link_mode(c, supported, FEC_BASER);
  234. ethtool_link_ksettings_add_link_mode(c, advertising, FEC_BASER);
  235. }
  236. if (modes & NFP_FEC_REED_SOLOMON) {
  237. ethtool_link_ksettings_add_link_mode(c, supported, FEC_RS);
  238. ethtool_link_ksettings_add_link_mode(c, advertising, FEC_RS);
  239. }
  240. }
  241. /**
  242. * nfp_net_get_link_ksettings - Get Link Speed settings
  243. * @netdev: network interface device structure
  244. * @cmd: ethtool command
  245. *
  246. * Reports speed settings based on info in the BAR provided by the fw.
  247. */
  248. static int
  249. nfp_net_get_link_ksettings(struct net_device *netdev,
  250. struct ethtool_link_ksettings *cmd)
  251. {
  252. static const u32 ls_to_ethtool[] = {
  253. [NFP_NET_CFG_STS_LINK_RATE_UNSUPPORTED] = 0,
  254. [NFP_NET_CFG_STS_LINK_RATE_UNKNOWN] = SPEED_UNKNOWN,
  255. [NFP_NET_CFG_STS_LINK_RATE_1G] = SPEED_1000,
  256. [NFP_NET_CFG_STS_LINK_RATE_10G] = SPEED_10000,
  257. [NFP_NET_CFG_STS_LINK_RATE_25G] = SPEED_25000,
  258. [NFP_NET_CFG_STS_LINK_RATE_40G] = SPEED_40000,
  259. [NFP_NET_CFG_STS_LINK_RATE_50G] = SPEED_50000,
  260. [NFP_NET_CFG_STS_LINK_RATE_100G] = SPEED_100000,
  261. };
  262. struct nfp_eth_table_port *eth_port;
  263. struct nfp_port *port;
  264. struct nfp_net *nn;
  265. u32 sts, ls;
  266. /* Init to unknowns */
  267. ethtool_link_ksettings_add_link_mode(cmd, supported, FIBRE);
  268. cmd->base.port = PORT_OTHER;
  269. cmd->base.speed = SPEED_UNKNOWN;
  270. cmd->base.duplex = DUPLEX_UNKNOWN;
  271. port = nfp_port_from_netdev(netdev);
  272. eth_port = nfp_port_get_eth_port(port);
  273. if (eth_port) {
  274. cmd->base.autoneg = eth_port->aneg != NFP_ANEG_DISABLED ?
  275. AUTONEG_ENABLE : AUTONEG_DISABLE;
  276. nfp_net_set_fec_link_mode(eth_port, cmd);
  277. }
  278. if (!netif_carrier_ok(netdev))
  279. return 0;
  280. /* Use link speed from ETH table if available, otherwise try the BAR */
  281. if (eth_port) {
  282. cmd->base.port = eth_port->port_type;
  283. cmd->base.speed = eth_port->speed;
  284. cmd->base.duplex = DUPLEX_FULL;
  285. return 0;
  286. }
  287. if (!nfp_netdev_is_nfp_net(netdev))
  288. return -EOPNOTSUPP;
  289. nn = netdev_priv(netdev);
  290. sts = nn_readl(nn, NFP_NET_CFG_STS);
  291. ls = FIELD_GET(NFP_NET_CFG_STS_LINK_RATE, sts);
  292. if (ls == NFP_NET_CFG_STS_LINK_RATE_UNSUPPORTED)
  293. return -EOPNOTSUPP;
  294. if (ls == NFP_NET_CFG_STS_LINK_RATE_UNKNOWN ||
  295. ls >= ARRAY_SIZE(ls_to_ethtool))
  296. return 0;
  297. cmd->base.speed = ls_to_ethtool[ls];
  298. cmd->base.duplex = DUPLEX_FULL;
  299. return 0;
  300. }
  301. static int
  302. nfp_net_set_link_ksettings(struct net_device *netdev,
  303. const struct ethtool_link_ksettings *cmd)
  304. {
  305. struct nfp_eth_table_port *eth_port;
  306. struct nfp_port *port;
  307. struct nfp_nsp *nsp;
  308. int err;
  309. port = nfp_port_from_netdev(netdev);
  310. eth_port = __nfp_port_get_eth_port(port);
  311. if (!eth_port)
  312. return -EOPNOTSUPP;
  313. if (netif_running(netdev)) {
  314. netdev_warn(netdev, "Changing settings not allowed on an active interface. It may cause the port to be disabled until driver reload.\n");
  315. return -EBUSY;
  316. }
  317. nsp = nfp_eth_config_start(port->app->cpp, eth_port->index);
  318. if (IS_ERR(nsp))
  319. return PTR_ERR(nsp);
  320. err = __nfp_eth_set_aneg(nsp, cmd->base.autoneg == AUTONEG_ENABLE ?
  321. NFP_ANEG_AUTO : NFP_ANEG_DISABLED);
  322. if (err)
  323. goto err_bad_set;
  324. if (cmd->base.speed != SPEED_UNKNOWN) {
  325. u32 speed = cmd->base.speed / eth_port->lanes;
  326. err = __nfp_eth_set_speed(nsp, speed);
  327. if (err)
  328. goto err_bad_set;
  329. }
  330. err = nfp_eth_config_commit_end(nsp);
  331. if (err > 0)
  332. return 0; /* no change */
  333. nfp_net_refresh_port_table(port);
  334. return err;
  335. err_bad_set:
  336. nfp_eth_config_cleanup_end(nsp);
  337. return err;
  338. }
  339. static void nfp_net_get_ringparam(struct net_device *netdev,
  340. struct ethtool_ringparam *ring)
  341. {
  342. struct nfp_net *nn = netdev_priv(netdev);
  343. ring->rx_max_pending = NFP_NET_MAX_RX_DESCS;
  344. ring->tx_max_pending = NFP_NET_MAX_TX_DESCS;
  345. ring->rx_pending = nn->dp.rxd_cnt;
  346. ring->tx_pending = nn->dp.txd_cnt;
  347. }
  348. static int nfp_net_set_ring_size(struct nfp_net *nn, u32 rxd_cnt, u32 txd_cnt)
  349. {
  350. struct nfp_net_dp *dp;
  351. dp = nfp_net_clone_dp(nn);
  352. if (!dp)
  353. return -ENOMEM;
  354. dp->rxd_cnt = rxd_cnt;
  355. dp->txd_cnt = txd_cnt;
  356. return nfp_net_ring_reconfig(nn, dp, NULL);
  357. }
  358. static int nfp_net_set_ringparam(struct net_device *netdev,
  359. struct ethtool_ringparam *ring)
  360. {
  361. struct nfp_net *nn = netdev_priv(netdev);
  362. u32 rxd_cnt, txd_cnt;
  363. /* We don't have separate queues/rings for small/large frames. */
  364. if (ring->rx_mini_pending || ring->rx_jumbo_pending)
  365. return -EINVAL;
  366. /* Round up to supported values */
  367. rxd_cnt = roundup_pow_of_two(ring->rx_pending);
  368. txd_cnt = roundup_pow_of_two(ring->tx_pending);
  369. if (rxd_cnt < NFP_NET_MIN_RX_DESCS || rxd_cnt > NFP_NET_MAX_RX_DESCS ||
  370. txd_cnt < NFP_NET_MIN_TX_DESCS || txd_cnt > NFP_NET_MAX_TX_DESCS)
  371. return -EINVAL;
  372. if (nn->dp.rxd_cnt == rxd_cnt && nn->dp.txd_cnt == txd_cnt)
  373. return 0;
  374. nn_dbg(nn, "Change ring size: RxQ %u->%u, TxQ %u->%u\n",
  375. nn->dp.rxd_cnt, rxd_cnt, nn->dp.txd_cnt, txd_cnt);
  376. return nfp_net_set_ring_size(nn, rxd_cnt, txd_cnt);
  377. }
  378. static __printf(2, 3) u8 *nfp_pr_et(u8 *data, const char *fmt, ...)
  379. {
  380. va_list args;
  381. va_start(args, fmt);
  382. vsnprintf(data, ETH_GSTRING_LEN, fmt, args);
  383. va_end(args);
  384. return data + ETH_GSTRING_LEN;
  385. }
  386. static unsigned int nfp_vnic_get_sw_stats_count(struct net_device *netdev)
  387. {
  388. struct nfp_net *nn = netdev_priv(netdev);
  389. return NN_RVEC_GATHER_STATS + nn->dp.num_r_vecs * NN_RVEC_PER_Q_STATS;
  390. }
  391. static u8 *nfp_vnic_get_sw_stats_strings(struct net_device *netdev, u8 *data)
  392. {
  393. struct nfp_net *nn = netdev_priv(netdev);
  394. int i;
  395. for (i = 0; i < nn->dp.num_r_vecs; i++) {
  396. data = nfp_pr_et(data, "rvec_%u_rx_pkts", i);
  397. data = nfp_pr_et(data, "rvec_%u_tx_pkts", i);
  398. data = nfp_pr_et(data, "rvec_%u_tx_busy", i);
  399. }
  400. data = nfp_pr_et(data, "hw_rx_csum_ok");
  401. data = nfp_pr_et(data, "hw_rx_csum_inner_ok");
  402. data = nfp_pr_et(data, "hw_rx_csum_complete");
  403. data = nfp_pr_et(data, "hw_rx_csum_err");
  404. data = nfp_pr_et(data, "rx_replace_buf_alloc_fail");
  405. data = nfp_pr_et(data, "hw_tx_csum");
  406. data = nfp_pr_et(data, "hw_tx_inner_csum");
  407. data = nfp_pr_et(data, "tx_gather");
  408. data = nfp_pr_et(data, "tx_lso");
  409. return data;
  410. }
  411. static u64 *nfp_vnic_get_sw_stats(struct net_device *netdev, u64 *data)
  412. {
  413. u64 gathered_stats[NN_RVEC_GATHER_STATS] = {};
  414. struct nfp_net *nn = netdev_priv(netdev);
  415. u64 tmp[NN_RVEC_GATHER_STATS];
  416. unsigned int i, j;
  417. for (i = 0; i < nn->dp.num_r_vecs; i++) {
  418. unsigned int start;
  419. do {
  420. start = u64_stats_fetch_begin(&nn->r_vecs[i].rx_sync);
  421. data[0] = nn->r_vecs[i].rx_pkts;
  422. tmp[0] = nn->r_vecs[i].hw_csum_rx_ok;
  423. tmp[1] = nn->r_vecs[i].hw_csum_rx_inner_ok;
  424. tmp[2] = nn->r_vecs[i].hw_csum_rx_complete;
  425. tmp[3] = nn->r_vecs[i].hw_csum_rx_error;
  426. tmp[4] = nn->r_vecs[i].rx_replace_buf_alloc_fail;
  427. } while (u64_stats_fetch_retry(&nn->r_vecs[i].rx_sync, start));
  428. do {
  429. start = u64_stats_fetch_begin(&nn->r_vecs[i].tx_sync);
  430. data[1] = nn->r_vecs[i].tx_pkts;
  431. data[2] = nn->r_vecs[i].tx_busy;
  432. tmp[5] = nn->r_vecs[i].hw_csum_tx;
  433. tmp[6] = nn->r_vecs[i].hw_csum_tx_inner;
  434. tmp[7] = nn->r_vecs[i].tx_gather;
  435. tmp[8] = nn->r_vecs[i].tx_lso;
  436. } while (u64_stats_fetch_retry(&nn->r_vecs[i].tx_sync, start));
  437. data += NN_RVEC_PER_Q_STATS;
  438. for (j = 0; j < NN_RVEC_GATHER_STATS; j++)
  439. gathered_stats[j] += tmp[j];
  440. }
  441. for (j = 0; j < NN_RVEC_GATHER_STATS; j++)
  442. *data++ = gathered_stats[j];
  443. return data;
  444. }
  445. static unsigned int
  446. nfp_vnic_get_hw_stats_count(unsigned int rx_rings, unsigned int tx_rings)
  447. {
  448. return NN_ET_GLOBAL_STATS_LEN + (rx_rings + tx_rings) * 2;
  449. }
  450. static u8 *
  451. nfp_vnic_get_hw_stats_strings(u8 *data, unsigned int rx_rings,
  452. unsigned int tx_rings, bool repr)
  453. {
  454. int swap_off, i;
  455. BUILD_BUG_ON(NN_ET_GLOBAL_STATS_LEN < NN_ET_SWITCH_STATS_LEN * 2);
  456. /* If repr is true first add SWITCH_STATS_LEN and then subtract it
  457. * effectively swapping the RX and TX statistics (giving us the RX
  458. * and TX from perspective of the switch).
  459. */
  460. swap_off = repr * NN_ET_SWITCH_STATS_LEN;
  461. for (i = 0; i < NN_ET_SWITCH_STATS_LEN; i++)
  462. data = nfp_pr_et(data, nfp_net_et_stats[i + swap_off].name);
  463. for (i = NN_ET_SWITCH_STATS_LEN; i < NN_ET_SWITCH_STATS_LEN * 2; i++)
  464. data = nfp_pr_et(data, nfp_net_et_stats[i - swap_off].name);
  465. for (i = NN_ET_SWITCH_STATS_LEN * 2; i < NN_ET_GLOBAL_STATS_LEN; i++)
  466. data = nfp_pr_et(data, nfp_net_et_stats[i].name);
  467. for (i = 0; i < tx_rings; i++) {
  468. data = nfp_pr_et(data, "txq_%u_pkts", i);
  469. data = nfp_pr_et(data, "txq_%u_bytes", i);
  470. }
  471. for (i = 0; i < rx_rings; i++) {
  472. data = nfp_pr_et(data, "rxq_%u_pkts", i);
  473. data = nfp_pr_et(data, "rxq_%u_bytes", i);
  474. }
  475. return data;
  476. }
  477. static u64 *
  478. nfp_vnic_get_hw_stats(u64 *data, u8 __iomem *mem,
  479. unsigned int rx_rings, unsigned int tx_rings)
  480. {
  481. unsigned int i;
  482. for (i = 0; i < NN_ET_GLOBAL_STATS_LEN; i++)
  483. *data++ = readq(mem + nfp_net_et_stats[i].off);
  484. for (i = 0; i < tx_rings; i++) {
  485. *data++ = readq(mem + NFP_NET_CFG_TXR_STATS(i));
  486. *data++ = readq(mem + NFP_NET_CFG_TXR_STATS(i) + 8);
  487. }
  488. for (i = 0; i < rx_rings; i++) {
  489. *data++ = readq(mem + NFP_NET_CFG_RXR_STATS(i));
  490. *data++ = readq(mem + NFP_NET_CFG_RXR_STATS(i) + 8);
  491. }
  492. return data;
  493. }
  494. static unsigned int nfp_mac_get_stats_count(struct net_device *netdev)
  495. {
  496. struct nfp_port *port;
  497. port = nfp_port_from_netdev(netdev);
  498. if (!__nfp_port_get_eth_port(port) || !port->eth_stats)
  499. return 0;
  500. return ARRAY_SIZE(nfp_mac_et_stats);
  501. }
  502. static u8 *nfp_mac_get_stats_strings(struct net_device *netdev, u8 *data)
  503. {
  504. struct nfp_port *port;
  505. unsigned int i;
  506. port = nfp_port_from_netdev(netdev);
  507. if (!__nfp_port_get_eth_port(port) || !port->eth_stats)
  508. return data;
  509. for (i = 0; i < ARRAY_SIZE(nfp_mac_et_stats); i++)
  510. data = nfp_pr_et(data, "mac.%s", nfp_mac_et_stats[i].name);
  511. return data;
  512. }
  513. static u64 *nfp_mac_get_stats(struct net_device *netdev, u64 *data)
  514. {
  515. struct nfp_port *port;
  516. unsigned int i;
  517. port = nfp_port_from_netdev(netdev);
  518. if (!__nfp_port_get_eth_port(port) || !port->eth_stats)
  519. return data;
  520. for (i = 0; i < ARRAY_SIZE(nfp_mac_et_stats); i++)
  521. *data++ = readq(port->eth_stats + nfp_mac_et_stats[i].off);
  522. return data;
  523. }
  524. static void nfp_net_get_strings(struct net_device *netdev,
  525. u32 stringset, u8 *data)
  526. {
  527. struct nfp_net *nn = netdev_priv(netdev);
  528. switch (stringset) {
  529. case ETH_SS_STATS:
  530. data = nfp_vnic_get_sw_stats_strings(netdev, data);
  531. data = nfp_vnic_get_hw_stats_strings(data, nn->dp.num_rx_rings,
  532. nn->dp.num_tx_rings,
  533. false);
  534. data = nfp_mac_get_stats_strings(netdev, data);
  535. break;
  536. }
  537. }
  538. static void
  539. nfp_net_get_stats(struct net_device *netdev, struct ethtool_stats *stats,
  540. u64 *data)
  541. {
  542. struct nfp_net *nn = netdev_priv(netdev);
  543. data = nfp_vnic_get_sw_stats(netdev, data);
  544. data = nfp_vnic_get_hw_stats(data, nn->dp.ctrl_bar,
  545. nn->dp.num_rx_rings, nn->dp.num_tx_rings);
  546. data = nfp_mac_get_stats(netdev, data);
  547. }
  548. static int nfp_net_get_sset_count(struct net_device *netdev, int sset)
  549. {
  550. struct nfp_net *nn = netdev_priv(netdev);
  551. switch (sset) {
  552. case ETH_SS_STATS:
  553. return nfp_vnic_get_sw_stats_count(netdev) +
  554. nfp_vnic_get_hw_stats_count(nn->dp.num_rx_rings,
  555. nn->dp.num_tx_rings) +
  556. nfp_mac_get_stats_count(netdev);
  557. default:
  558. return -EOPNOTSUPP;
  559. }
  560. }
  561. static void nfp_port_get_strings(struct net_device *netdev,
  562. u32 stringset, u8 *data)
  563. {
  564. struct nfp_port *port = nfp_port_from_netdev(netdev);
  565. switch (stringset) {
  566. case ETH_SS_STATS:
  567. if (nfp_port_is_vnic(port))
  568. data = nfp_vnic_get_hw_stats_strings(data, 0, 0, true);
  569. else
  570. data = nfp_mac_get_stats_strings(netdev, data);
  571. break;
  572. }
  573. }
  574. static void
  575. nfp_port_get_stats(struct net_device *netdev, struct ethtool_stats *stats,
  576. u64 *data)
  577. {
  578. struct nfp_port *port = nfp_port_from_netdev(netdev);
  579. if (nfp_port_is_vnic(port))
  580. data = nfp_vnic_get_hw_stats(data, port->vnic, 0, 0);
  581. else
  582. data = nfp_mac_get_stats(netdev, data);
  583. }
  584. static int nfp_port_get_sset_count(struct net_device *netdev, int sset)
  585. {
  586. struct nfp_port *port = nfp_port_from_netdev(netdev);
  587. unsigned int count;
  588. switch (sset) {
  589. case ETH_SS_STATS:
  590. if (nfp_port_is_vnic(port))
  591. count = nfp_vnic_get_hw_stats_count(0, 0);
  592. else
  593. count = nfp_mac_get_stats_count(netdev);
  594. return count;
  595. default:
  596. return -EOPNOTSUPP;
  597. }
  598. }
  599. static int nfp_port_fec_ethtool_to_nsp(u32 fec)
  600. {
  601. switch (fec) {
  602. case ETHTOOL_FEC_AUTO:
  603. return NFP_FEC_AUTO_BIT;
  604. case ETHTOOL_FEC_OFF:
  605. return NFP_FEC_DISABLED_BIT;
  606. case ETHTOOL_FEC_RS:
  607. return NFP_FEC_REED_SOLOMON_BIT;
  608. case ETHTOOL_FEC_BASER:
  609. return NFP_FEC_BASER_BIT;
  610. default:
  611. /* NSP only supports a single mode at a time */
  612. return -EOPNOTSUPP;
  613. }
  614. }
  615. static u32 nfp_port_fec_nsp_to_ethtool(u32 fec)
  616. {
  617. u32 result = 0;
  618. if (fec & NFP_FEC_AUTO)
  619. result |= ETHTOOL_FEC_AUTO;
  620. if (fec & NFP_FEC_BASER)
  621. result |= ETHTOOL_FEC_BASER;
  622. if (fec & NFP_FEC_REED_SOLOMON)
  623. result |= ETHTOOL_FEC_RS;
  624. if (fec & NFP_FEC_DISABLED)
  625. result |= ETHTOOL_FEC_OFF;
  626. return result ?: ETHTOOL_FEC_NONE;
  627. }
  628. static int
  629. nfp_port_get_fecparam(struct net_device *netdev,
  630. struct ethtool_fecparam *param)
  631. {
  632. struct nfp_eth_table_port *eth_port;
  633. struct nfp_port *port;
  634. param->active_fec = ETHTOOL_FEC_NONE_BIT;
  635. param->fec = ETHTOOL_FEC_NONE_BIT;
  636. port = nfp_port_from_netdev(netdev);
  637. eth_port = nfp_port_get_eth_port(port);
  638. if (!eth_port)
  639. return -EOPNOTSUPP;
  640. if (!nfp_eth_can_support_fec(eth_port))
  641. return 0;
  642. param->fec = nfp_port_fec_nsp_to_ethtool(eth_port->fec_modes_supported);
  643. param->active_fec = nfp_port_fec_nsp_to_ethtool(eth_port->fec);
  644. return 0;
  645. }
  646. static int
  647. nfp_port_set_fecparam(struct net_device *netdev,
  648. struct ethtool_fecparam *param)
  649. {
  650. struct nfp_eth_table_port *eth_port;
  651. struct nfp_port *port;
  652. int err, fec;
  653. port = nfp_port_from_netdev(netdev);
  654. eth_port = nfp_port_get_eth_port(port);
  655. if (!eth_port)
  656. return -EOPNOTSUPP;
  657. if (!nfp_eth_can_support_fec(eth_port))
  658. return -EOPNOTSUPP;
  659. fec = nfp_port_fec_ethtool_to_nsp(param->fec);
  660. if (fec < 0)
  661. return fec;
  662. err = nfp_eth_set_fec(port->app->cpp, eth_port->index, fec);
  663. if (!err)
  664. /* Only refresh if we did something */
  665. nfp_net_refresh_port_table(port);
  666. return err < 0 ? err : 0;
  667. }
  668. /* RX network flow classification (RSS, filters, etc)
  669. */
  670. static u32 ethtool_flow_to_nfp_flag(u32 flow_type)
  671. {
  672. static const u32 xlate_ethtool_to_nfp[IPV6_FLOW + 1] = {
  673. [TCP_V4_FLOW] = NFP_NET_CFG_RSS_IPV4_TCP,
  674. [TCP_V6_FLOW] = NFP_NET_CFG_RSS_IPV6_TCP,
  675. [UDP_V4_FLOW] = NFP_NET_CFG_RSS_IPV4_UDP,
  676. [UDP_V6_FLOW] = NFP_NET_CFG_RSS_IPV6_UDP,
  677. [IPV4_FLOW] = NFP_NET_CFG_RSS_IPV4,
  678. [IPV6_FLOW] = NFP_NET_CFG_RSS_IPV6,
  679. };
  680. if (flow_type >= ARRAY_SIZE(xlate_ethtool_to_nfp))
  681. return 0;
  682. return xlate_ethtool_to_nfp[flow_type];
  683. }
  684. static int nfp_net_get_rss_hash_opts(struct nfp_net *nn,
  685. struct ethtool_rxnfc *cmd)
  686. {
  687. u32 nfp_rss_flag;
  688. cmd->data = 0;
  689. if (!(nn->cap & NFP_NET_CFG_CTRL_RSS_ANY))
  690. return -EOPNOTSUPP;
  691. nfp_rss_flag = ethtool_flow_to_nfp_flag(cmd->flow_type);
  692. if (!nfp_rss_flag)
  693. return -EINVAL;
  694. cmd->data |= RXH_IP_SRC | RXH_IP_DST;
  695. if (nn->rss_cfg & nfp_rss_flag)
  696. cmd->data |= RXH_L4_B_0_1 | RXH_L4_B_2_3;
  697. return 0;
  698. }
  699. static int nfp_net_get_rxnfc(struct net_device *netdev,
  700. struct ethtool_rxnfc *cmd, u32 *rule_locs)
  701. {
  702. struct nfp_net *nn = netdev_priv(netdev);
  703. switch (cmd->cmd) {
  704. case ETHTOOL_GRXRINGS:
  705. cmd->data = nn->dp.num_rx_rings;
  706. return 0;
  707. case ETHTOOL_GRXFH:
  708. return nfp_net_get_rss_hash_opts(nn, cmd);
  709. default:
  710. return -EOPNOTSUPP;
  711. }
  712. }
  713. static int nfp_net_set_rss_hash_opt(struct nfp_net *nn,
  714. struct ethtool_rxnfc *nfc)
  715. {
  716. u32 new_rss_cfg = nn->rss_cfg;
  717. u32 nfp_rss_flag;
  718. int err;
  719. if (!(nn->cap & NFP_NET_CFG_CTRL_RSS_ANY))
  720. return -EOPNOTSUPP;
  721. /* RSS only supports IP SA/DA and L4 src/dst ports */
  722. if (nfc->data & ~(RXH_IP_SRC | RXH_IP_DST |
  723. RXH_L4_B_0_1 | RXH_L4_B_2_3))
  724. return -EINVAL;
  725. /* We need at least the IP SA/DA fields for hashing */
  726. if (!(nfc->data & RXH_IP_SRC) ||
  727. !(nfc->data & RXH_IP_DST))
  728. return -EINVAL;
  729. nfp_rss_flag = ethtool_flow_to_nfp_flag(nfc->flow_type);
  730. if (!nfp_rss_flag)
  731. return -EINVAL;
  732. switch (nfc->data & (RXH_L4_B_0_1 | RXH_L4_B_2_3)) {
  733. case 0:
  734. new_rss_cfg &= ~nfp_rss_flag;
  735. break;
  736. case (RXH_L4_B_0_1 | RXH_L4_B_2_3):
  737. new_rss_cfg |= nfp_rss_flag;
  738. break;
  739. default:
  740. return -EINVAL;
  741. }
  742. new_rss_cfg |= FIELD_PREP(NFP_NET_CFG_RSS_HFUNC, nn->rss_hfunc);
  743. new_rss_cfg |= NFP_NET_CFG_RSS_MASK;
  744. if (new_rss_cfg == nn->rss_cfg)
  745. return 0;
  746. writel(new_rss_cfg, nn->dp.ctrl_bar + NFP_NET_CFG_RSS_CTRL);
  747. err = nfp_net_reconfig(nn, NFP_NET_CFG_UPDATE_RSS);
  748. if (err)
  749. return err;
  750. nn->rss_cfg = new_rss_cfg;
  751. nn_dbg(nn, "Changed RSS config to 0x%x\n", nn->rss_cfg);
  752. return 0;
  753. }
  754. static int nfp_net_set_rxnfc(struct net_device *netdev,
  755. struct ethtool_rxnfc *cmd)
  756. {
  757. struct nfp_net *nn = netdev_priv(netdev);
  758. switch (cmd->cmd) {
  759. case ETHTOOL_SRXFH:
  760. return nfp_net_set_rss_hash_opt(nn, cmd);
  761. default:
  762. return -EOPNOTSUPP;
  763. }
  764. }
  765. static u32 nfp_net_get_rxfh_indir_size(struct net_device *netdev)
  766. {
  767. struct nfp_net *nn = netdev_priv(netdev);
  768. if (!(nn->cap & NFP_NET_CFG_CTRL_RSS_ANY))
  769. return 0;
  770. return ARRAY_SIZE(nn->rss_itbl);
  771. }
  772. static u32 nfp_net_get_rxfh_key_size(struct net_device *netdev)
  773. {
  774. struct nfp_net *nn = netdev_priv(netdev);
  775. if (!(nn->cap & NFP_NET_CFG_CTRL_RSS_ANY))
  776. return -EOPNOTSUPP;
  777. return nfp_net_rss_key_sz(nn);
  778. }
  779. static int nfp_net_get_rxfh(struct net_device *netdev, u32 *indir, u8 *key,
  780. u8 *hfunc)
  781. {
  782. struct nfp_net *nn = netdev_priv(netdev);
  783. int i;
  784. if (!(nn->cap & NFP_NET_CFG_CTRL_RSS_ANY))
  785. return -EOPNOTSUPP;
  786. if (indir)
  787. for (i = 0; i < ARRAY_SIZE(nn->rss_itbl); i++)
  788. indir[i] = nn->rss_itbl[i];
  789. if (key)
  790. memcpy(key, nn->rss_key, nfp_net_rss_key_sz(nn));
  791. if (hfunc) {
  792. *hfunc = nn->rss_hfunc;
  793. if (*hfunc >= 1 << ETH_RSS_HASH_FUNCS_COUNT)
  794. *hfunc = ETH_RSS_HASH_UNKNOWN;
  795. }
  796. return 0;
  797. }
  798. static int nfp_net_set_rxfh(struct net_device *netdev,
  799. const u32 *indir, const u8 *key,
  800. const u8 hfunc)
  801. {
  802. struct nfp_net *nn = netdev_priv(netdev);
  803. int i;
  804. if (!(nn->cap & NFP_NET_CFG_CTRL_RSS_ANY) ||
  805. !(hfunc == ETH_RSS_HASH_NO_CHANGE || hfunc == nn->rss_hfunc))
  806. return -EOPNOTSUPP;
  807. if (!key && !indir)
  808. return 0;
  809. if (key) {
  810. memcpy(nn->rss_key, key, nfp_net_rss_key_sz(nn));
  811. nfp_net_rss_write_key(nn);
  812. }
  813. if (indir) {
  814. for (i = 0; i < ARRAY_SIZE(nn->rss_itbl); i++)
  815. nn->rss_itbl[i] = indir[i];
  816. nfp_net_rss_write_itbl(nn);
  817. }
  818. return nfp_net_reconfig(nn, NFP_NET_CFG_UPDATE_RSS);
  819. }
  820. /* Dump BAR registers
  821. */
  822. static int nfp_net_get_regs_len(struct net_device *netdev)
  823. {
  824. return NFP_NET_CFG_BAR_SZ;
  825. }
  826. static void nfp_net_get_regs(struct net_device *netdev,
  827. struct ethtool_regs *regs, void *p)
  828. {
  829. struct nfp_net *nn = netdev_priv(netdev);
  830. u32 *regs_buf = p;
  831. int i;
  832. regs->version = nn_readl(nn, NFP_NET_CFG_VERSION);
  833. for (i = 0; i < NFP_NET_CFG_BAR_SZ / sizeof(u32); i++)
  834. regs_buf[i] = readl(nn->dp.ctrl_bar + (i * sizeof(u32)));
  835. }
  836. static int nfp_net_get_coalesce(struct net_device *netdev,
  837. struct ethtool_coalesce *ec)
  838. {
  839. struct nfp_net *nn = netdev_priv(netdev);
  840. if (!(nn->cap & NFP_NET_CFG_CTRL_IRQMOD))
  841. return -EINVAL;
  842. ec->rx_coalesce_usecs = nn->rx_coalesce_usecs;
  843. ec->rx_max_coalesced_frames = nn->rx_coalesce_max_frames;
  844. ec->tx_coalesce_usecs = nn->tx_coalesce_usecs;
  845. ec->tx_max_coalesced_frames = nn->tx_coalesce_max_frames;
  846. return 0;
  847. }
  848. /* Other debug dumps
  849. */
  850. static int
  851. nfp_dump_nsp_diag(struct nfp_app *app, struct ethtool_dump *dump, void *buffer)
  852. {
  853. struct nfp_resource *res;
  854. int ret;
  855. if (!app)
  856. return -EOPNOTSUPP;
  857. dump->version = 1;
  858. dump->flag = NFP_DUMP_NSP_DIAG;
  859. res = nfp_resource_acquire(app->cpp, NFP_RESOURCE_NSP_DIAG);
  860. if (IS_ERR(res))
  861. return PTR_ERR(res);
  862. if (buffer) {
  863. if (dump->len != nfp_resource_size(res)) {
  864. ret = -EINVAL;
  865. goto exit_release;
  866. }
  867. ret = nfp_cpp_read(app->cpp, nfp_resource_cpp_id(res),
  868. nfp_resource_address(res),
  869. buffer, dump->len);
  870. if (ret != dump->len)
  871. ret = ret < 0 ? ret : -EIO;
  872. else
  873. ret = 0;
  874. } else {
  875. dump->len = nfp_resource_size(res);
  876. ret = 0;
  877. }
  878. exit_release:
  879. nfp_resource_release(res);
  880. return ret;
  881. }
  882. /* Set the dump flag/level. Calculate the dump length for flag > 0 only (new TLV
  883. * based dumps), since flag 0 (default) calculates the length in
  884. * nfp_app_get_dump_flag(), and we need to support triggering a level 0 dump
  885. * without setting the flag first, for backward compatibility.
  886. */
  887. static int nfp_app_set_dump(struct net_device *netdev, struct ethtool_dump *val)
  888. {
  889. struct nfp_app *app = nfp_app_from_netdev(netdev);
  890. s64 len;
  891. if (!app)
  892. return -EOPNOTSUPP;
  893. if (val->flag == NFP_DUMP_NSP_DIAG) {
  894. app->pf->dump_flag = val->flag;
  895. return 0;
  896. }
  897. if (!app->pf->dumpspec)
  898. return -EOPNOTSUPP;
  899. len = nfp_net_dump_calculate_size(app->pf, app->pf->dumpspec,
  900. val->flag);
  901. if (len < 0)
  902. return len;
  903. app->pf->dump_flag = val->flag;
  904. app->pf->dump_len = len;
  905. return 0;
  906. }
  907. static int
  908. nfp_app_get_dump_flag(struct net_device *netdev, struct ethtool_dump *dump)
  909. {
  910. struct nfp_app *app = nfp_app_from_netdev(netdev);
  911. if (!app)
  912. return -EOPNOTSUPP;
  913. if (app->pf->dump_flag == NFP_DUMP_NSP_DIAG)
  914. return nfp_dump_nsp_diag(app, dump, NULL);
  915. dump->flag = app->pf->dump_flag;
  916. dump->len = app->pf->dump_len;
  917. return 0;
  918. }
  919. static int
  920. nfp_app_get_dump_data(struct net_device *netdev, struct ethtool_dump *dump,
  921. void *buffer)
  922. {
  923. struct nfp_app *app = nfp_app_from_netdev(netdev);
  924. if (!app)
  925. return -EOPNOTSUPP;
  926. if (app->pf->dump_flag == NFP_DUMP_NSP_DIAG)
  927. return nfp_dump_nsp_diag(app, dump, buffer);
  928. dump->flag = app->pf->dump_flag;
  929. dump->len = app->pf->dump_len;
  930. return nfp_net_dump_populate_buffer(app->pf, app->pf->dumpspec, dump,
  931. buffer);
  932. }
  933. static int nfp_net_set_coalesce(struct net_device *netdev,
  934. struct ethtool_coalesce *ec)
  935. {
  936. struct nfp_net *nn = netdev_priv(netdev);
  937. unsigned int factor;
  938. if (ec->rx_coalesce_usecs_irq ||
  939. ec->rx_max_coalesced_frames_irq ||
  940. ec->tx_coalesce_usecs_irq ||
  941. ec->tx_max_coalesced_frames_irq ||
  942. ec->stats_block_coalesce_usecs ||
  943. ec->use_adaptive_rx_coalesce ||
  944. ec->use_adaptive_tx_coalesce ||
  945. ec->pkt_rate_low ||
  946. ec->rx_coalesce_usecs_low ||
  947. ec->rx_max_coalesced_frames_low ||
  948. ec->tx_coalesce_usecs_low ||
  949. ec->tx_max_coalesced_frames_low ||
  950. ec->pkt_rate_high ||
  951. ec->rx_coalesce_usecs_high ||
  952. ec->rx_max_coalesced_frames_high ||
  953. ec->tx_coalesce_usecs_high ||
  954. ec->tx_max_coalesced_frames_high ||
  955. ec->rate_sample_interval)
  956. return -EOPNOTSUPP;
  957. /* Compute factor used to convert coalesce '_usecs' parameters to
  958. * ME timestamp ticks. There are 16 ME clock cycles for each timestamp
  959. * count.
  960. */
  961. factor = nn->me_freq_mhz / 16;
  962. /* Each pair of (usecs, max_frames) fields specifies that interrupts
  963. * should be coalesced until
  964. * (usecs > 0 && time_since_first_completion >= usecs) ||
  965. * (max_frames > 0 && completed_frames >= max_frames)
  966. *
  967. * It is illegal to set both usecs and max_frames to zero as this would
  968. * cause interrupts to never be generated. To disable coalescing, set
  969. * usecs = 0 and max_frames = 1.
  970. *
  971. * Some implementations ignore the value of max_frames and use the
  972. * condition time_since_first_completion >= usecs
  973. */
  974. if (!(nn->cap & NFP_NET_CFG_CTRL_IRQMOD))
  975. return -EINVAL;
  976. /* ensure valid configuration */
  977. if (!ec->rx_coalesce_usecs && !ec->rx_max_coalesced_frames)
  978. return -EINVAL;
  979. if (!ec->tx_coalesce_usecs && !ec->tx_max_coalesced_frames)
  980. return -EINVAL;
  981. if (ec->rx_coalesce_usecs * factor >= ((1 << 16) - 1))
  982. return -EINVAL;
  983. if (ec->tx_coalesce_usecs * factor >= ((1 << 16) - 1))
  984. return -EINVAL;
  985. if (ec->rx_max_coalesced_frames >= ((1 << 16) - 1))
  986. return -EINVAL;
  987. if (ec->tx_max_coalesced_frames >= ((1 << 16) - 1))
  988. return -EINVAL;
  989. /* configuration is valid */
  990. nn->rx_coalesce_usecs = ec->rx_coalesce_usecs;
  991. nn->rx_coalesce_max_frames = ec->rx_max_coalesced_frames;
  992. nn->tx_coalesce_usecs = ec->tx_coalesce_usecs;
  993. nn->tx_coalesce_max_frames = ec->tx_max_coalesced_frames;
  994. /* write configuration to device */
  995. nfp_net_coalesce_write_cfg(nn);
  996. return nfp_net_reconfig(nn, NFP_NET_CFG_UPDATE_IRQMOD);
  997. }
  998. static void nfp_net_get_channels(struct net_device *netdev,
  999. struct ethtool_channels *channel)
  1000. {
  1001. struct nfp_net *nn = netdev_priv(netdev);
  1002. unsigned int num_tx_rings;
  1003. num_tx_rings = nn->dp.num_tx_rings;
  1004. if (nn->dp.xdp_prog)
  1005. num_tx_rings -= nn->dp.num_rx_rings;
  1006. channel->max_rx = min(nn->max_rx_rings, nn->max_r_vecs);
  1007. channel->max_tx = min(nn->max_tx_rings, nn->max_r_vecs);
  1008. channel->max_combined = min(channel->max_rx, channel->max_tx);
  1009. channel->max_other = NFP_NET_NON_Q_VECTORS;
  1010. channel->combined_count = min(nn->dp.num_rx_rings, num_tx_rings);
  1011. channel->rx_count = nn->dp.num_rx_rings - channel->combined_count;
  1012. channel->tx_count = num_tx_rings - channel->combined_count;
  1013. channel->other_count = NFP_NET_NON_Q_VECTORS;
  1014. }
  1015. static int nfp_net_set_num_rings(struct nfp_net *nn, unsigned int total_rx,
  1016. unsigned int total_tx)
  1017. {
  1018. struct nfp_net_dp *dp;
  1019. dp = nfp_net_clone_dp(nn);
  1020. if (!dp)
  1021. return -ENOMEM;
  1022. dp->num_rx_rings = total_rx;
  1023. dp->num_tx_rings = total_tx;
  1024. /* nfp_net_check_config() will catch num_tx_rings > nn->max_tx_rings */
  1025. if (dp->xdp_prog)
  1026. dp->num_tx_rings += total_rx;
  1027. return nfp_net_ring_reconfig(nn, dp, NULL);
  1028. }
  1029. static int nfp_net_set_channels(struct net_device *netdev,
  1030. struct ethtool_channels *channel)
  1031. {
  1032. struct nfp_net *nn = netdev_priv(netdev);
  1033. unsigned int total_rx, total_tx;
  1034. /* Reject unsupported */
  1035. if (!channel->combined_count ||
  1036. channel->other_count != NFP_NET_NON_Q_VECTORS ||
  1037. (channel->rx_count && channel->tx_count))
  1038. return -EINVAL;
  1039. total_rx = channel->combined_count + channel->rx_count;
  1040. total_tx = channel->combined_count + channel->tx_count;
  1041. if (total_rx > min(nn->max_rx_rings, nn->max_r_vecs) ||
  1042. total_tx > min(nn->max_tx_rings, nn->max_r_vecs))
  1043. return -EINVAL;
  1044. return nfp_net_set_num_rings(nn, total_rx, total_tx);
  1045. }
  1046. static int
  1047. nfp_net_flash_device(struct net_device *netdev, struct ethtool_flash *flash)
  1048. {
  1049. const struct firmware *fw;
  1050. struct nfp_app *app;
  1051. struct nfp_nsp *nsp;
  1052. struct device *dev;
  1053. int err;
  1054. if (flash->region != ETHTOOL_FLASH_ALL_REGIONS)
  1055. return -EOPNOTSUPP;
  1056. app = nfp_app_from_netdev(netdev);
  1057. if (!app)
  1058. return -EOPNOTSUPP;
  1059. dev = &app->pdev->dev;
  1060. nsp = nfp_nsp_open(app->cpp);
  1061. if (IS_ERR(nsp)) {
  1062. err = PTR_ERR(nsp);
  1063. dev_err(dev, "Failed to access the NSP: %d\n", err);
  1064. return err;
  1065. }
  1066. err = request_firmware_direct(&fw, flash->data, dev);
  1067. if (err)
  1068. goto exit_close_nsp;
  1069. dev_info(dev, "Please be patient while writing flash image: %s\n",
  1070. flash->data);
  1071. dev_hold(netdev);
  1072. rtnl_unlock();
  1073. err = nfp_nsp_write_flash(nsp, fw);
  1074. if (err < 0) {
  1075. dev_err(dev, "Flash write failed: %d\n", err);
  1076. goto exit_rtnl_lock;
  1077. }
  1078. dev_info(dev, "Finished writing flash image\n");
  1079. exit_rtnl_lock:
  1080. rtnl_lock();
  1081. dev_put(netdev);
  1082. release_firmware(fw);
  1083. exit_close_nsp:
  1084. nfp_nsp_close(nsp);
  1085. return err;
  1086. }
  1087. static const struct ethtool_ops nfp_net_ethtool_ops = {
  1088. .get_drvinfo = nfp_net_get_drvinfo,
  1089. .get_link = ethtool_op_get_link,
  1090. .get_ringparam = nfp_net_get_ringparam,
  1091. .set_ringparam = nfp_net_set_ringparam,
  1092. .get_strings = nfp_net_get_strings,
  1093. .get_ethtool_stats = nfp_net_get_stats,
  1094. .get_sset_count = nfp_net_get_sset_count,
  1095. .get_rxnfc = nfp_net_get_rxnfc,
  1096. .set_rxnfc = nfp_net_set_rxnfc,
  1097. .flash_device = nfp_net_flash_device,
  1098. .get_rxfh_indir_size = nfp_net_get_rxfh_indir_size,
  1099. .get_rxfh_key_size = nfp_net_get_rxfh_key_size,
  1100. .get_rxfh = nfp_net_get_rxfh,
  1101. .set_rxfh = nfp_net_set_rxfh,
  1102. .get_regs_len = nfp_net_get_regs_len,
  1103. .get_regs = nfp_net_get_regs,
  1104. .set_dump = nfp_app_set_dump,
  1105. .get_dump_flag = nfp_app_get_dump_flag,
  1106. .get_dump_data = nfp_app_get_dump_data,
  1107. .get_coalesce = nfp_net_get_coalesce,
  1108. .set_coalesce = nfp_net_set_coalesce,
  1109. .get_channels = nfp_net_get_channels,
  1110. .set_channels = nfp_net_set_channels,
  1111. .get_link_ksettings = nfp_net_get_link_ksettings,
  1112. .set_link_ksettings = nfp_net_set_link_ksettings,
  1113. .get_fecparam = nfp_port_get_fecparam,
  1114. .set_fecparam = nfp_port_set_fecparam,
  1115. };
  1116. const struct ethtool_ops nfp_port_ethtool_ops = {
  1117. .get_drvinfo = nfp_app_get_drvinfo,
  1118. .get_link = ethtool_op_get_link,
  1119. .get_strings = nfp_port_get_strings,
  1120. .get_ethtool_stats = nfp_port_get_stats,
  1121. .get_sset_count = nfp_port_get_sset_count,
  1122. .flash_device = nfp_net_flash_device,
  1123. .set_dump = nfp_app_set_dump,
  1124. .get_dump_flag = nfp_app_get_dump_flag,
  1125. .get_dump_data = nfp_app_get_dump_data,
  1126. .get_link_ksettings = nfp_net_get_link_ksettings,
  1127. .set_link_ksettings = nfp_net_set_link_ksettings,
  1128. .get_fecparam = nfp_port_get_fecparam,
  1129. .set_fecparam = nfp_port_set_fecparam,
  1130. };
  1131. void nfp_net_set_ethtool_ops(struct net_device *netdev)
  1132. {
  1133. netdev->ethtool_ops = &nfp_net_ethtool_ops;
  1134. }