11256805dSOphir Munk /* SPDX-License-Identifier: BSD-3-Clause 21256805dSOphir Munk * Copyright 2015 6WIND S.A. 31256805dSOphir Munk * Copyright 2015 Mellanox Technologies, Ltd 41256805dSOphir Munk */ 51256805dSOphir Munk 61256805dSOphir Munk #include <stddef.h> 71256805dSOphir Munk #include <inttypes.h> 81256805dSOphir Munk #include <unistd.h> 91256805dSOphir Munk #include <stdbool.h> 101256805dSOphir Munk #include <stdint.h> 111256805dSOphir Munk #include <stdio.h> 121256805dSOphir Munk #include <string.h> 131256805dSOphir Munk #include <stdlib.h> 141256805dSOphir Munk #include <errno.h> 151256805dSOphir Munk #include <dirent.h> 161256805dSOphir Munk #include <net/if.h> 171256805dSOphir Munk #include <sys/ioctl.h> 181256805dSOphir Munk #include <sys/socket.h> 191256805dSOphir Munk #include <netinet/in.h> 201256805dSOphir Munk #include <linux/ethtool.h> 211256805dSOphir Munk #include <linux/sockios.h> 221256805dSOphir Munk #include <fcntl.h> 231256805dSOphir Munk #include <stdalign.h> 241256805dSOphir Munk #include <sys/un.h> 251256805dSOphir Munk #include <time.h> 261256805dSOphir Munk 27df96fd0dSBruce Richardson #include <ethdev_driver.h> 281256805dSOphir Munk #include <rte_bus_pci.h> 291256805dSOphir Munk #include <rte_mbuf.h> 301256805dSOphir Munk #include <rte_common.h> 311256805dSOphir Munk #include <rte_interrupts.h> 321256805dSOphir Munk #include <rte_malloc.h> 331256805dSOphir Munk #include <rte_string_fns.h> 341256805dSOphir Munk #include <rte_rwlock.h> 351256805dSOphir Munk #include <rte_cycles.h> 361256805dSOphir Munk 371256805dSOphir Munk #include <mlx5_glue.h> 381256805dSOphir Munk #include <mlx5_devx_cmds.h> 391256805dSOphir Munk #include <mlx5_common.h> 402175c4dcSSuanming Mou #include <mlx5_malloc.h> 411256805dSOphir Munk 421256805dSOphir Munk #include "mlx5.h" 431256805dSOphir Munk #include "mlx5_rxtx.h" 441256805dSOphir Munk #include "mlx5_utils.h" 451256805dSOphir Munk 461256805dSOphir Munk /* Supported speed values found in /usr/include/linux/ethtool.h */ 471256805dSOphir Munk #ifndef HAVE_SUPPORTED_40000baseKR4_Full 481256805dSOphir Munk #define SUPPORTED_40000baseKR4_Full (1 << 23) 491256805dSOphir Munk #endif 501256805dSOphir Munk #ifndef HAVE_SUPPORTED_40000baseCR4_Full 511256805dSOphir Munk #define SUPPORTED_40000baseCR4_Full (1 << 24) 521256805dSOphir Munk #endif 531256805dSOphir Munk #ifndef HAVE_SUPPORTED_40000baseSR4_Full 541256805dSOphir Munk #define SUPPORTED_40000baseSR4_Full (1 << 25) 551256805dSOphir Munk #endif 561256805dSOphir Munk #ifndef HAVE_SUPPORTED_40000baseLR4_Full 571256805dSOphir Munk #define SUPPORTED_40000baseLR4_Full (1 << 26) 581256805dSOphir Munk #endif 591256805dSOphir Munk #ifndef HAVE_SUPPORTED_56000baseKR4_Full 601256805dSOphir Munk #define SUPPORTED_56000baseKR4_Full (1 << 27) 611256805dSOphir Munk #endif 621256805dSOphir Munk #ifndef HAVE_SUPPORTED_56000baseCR4_Full 631256805dSOphir Munk #define SUPPORTED_56000baseCR4_Full (1 << 28) 641256805dSOphir Munk #endif 651256805dSOphir Munk #ifndef HAVE_SUPPORTED_56000baseSR4_Full 661256805dSOphir Munk #define SUPPORTED_56000baseSR4_Full (1 << 29) 671256805dSOphir Munk #endif 681256805dSOphir Munk #ifndef HAVE_SUPPORTED_56000baseLR4_Full 691256805dSOphir Munk #define SUPPORTED_56000baseLR4_Full (1 << 30) 701256805dSOphir Munk #endif 711256805dSOphir Munk 721256805dSOphir Munk /* Add defines in case the running kernel is not the same as user headers. */ 731256805dSOphir Munk #ifndef ETHTOOL_GLINKSETTINGS 741256805dSOphir Munk struct ethtool_link_settings { 751256805dSOphir Munk uint32_t cmd; 761256805dSOphir Munk uint32_t speed; 771256805dSOphir Munk uint8_t duplex; 781256805dSOphir Munk uint8_t port; 791256805dSOphir Munk uint8_t phy_address; 801256805dSOphir Munk uint8_t autoneg; 811256805dSOphir Munk uint8_t mdio_support; 821256805dSOphir Munk uint8_t eth_to_mdix; 831256805dSOphir Munk uint8_t eth_tp_mdix_ctrl; 841256805dSOphir Munk int8_t link_mode_masks_nwords; 851256805dSOphir Munk uint32_t reserved[8]; 861256805dSOphir Munk uint32_t link_mode_masks[]; 871256805dSOphir Munk }; 881256805dSOphir Munk 891256805dSOphir Munk /* The kernel values can be found in /include/uapi/linux/ethtool.h */ 901256805dSOphir Munk #define ETHTOOL_GLINKSETTINGS 0x0000004c 911256805dSOphir Munk #define ETHTOOL_LINK_MODE_1000baseT_Full_BIT 5 921256805dSOphir Munk #define ETHTOOL_LINK_MODE_Autoneg_BIT 6 931256805dSOphir Munk #define ETHTOOL_LINK_MODE_1000baseKX_Full_BIT 17 941256805dSOphir Munk #define ETHTOOL_LINK_MODE_10000baseKX4_Full_BIT 18 951256805dSOphir Munk #define ETHTOOL_LINK_MODE_10000baseKR_Full_BIT 19 961256805dSOphir Munk #define ETHTOOL_LINK_MODE_10000baseR_FEC_BIT 20 971256805dSOphir Munk #define ETHTOOL_LINK_MODE_20000baseMLD2_Full_BIT 21 981256805dSOphir Munk #define ETHTOOL_LINK_MODE_20000baseKR2_Full_BIT 22 991256805dSOphir Munk #define ETHTOOL_LINK_MODE_40000baseKR4_Full_BIT 23 1001256805dSOphir Munk #define ETHTOOL_LINK_MODE_40000baseCR4_Full_BIT 24 1011256805dSOphir Munk #define ETHTOOL_LINK_MODE_40000baseSR4_Full_BIT 25 1021256805dSOphir Munk #define ETHTOOL_LINK_MODE_40000baseLR4_Full_BIT 26 1031256805dSOphir Munk #define ETHTOOL_LINK_MODE_56000baseKR4_Full_BIT 27 1041256805dSOphir Munk #define ETHTOOL_LINK_MODE_56000baseCR4_Full_BIT 28 1051256805dSOphir Munk #define ETHTOOL_LINK_MODE_56000baseSR4_Full_BIT 29 1061256805dSOphir Munk #define ETHTOOL_LINK_MODE_56000baseLR4_Full_BIT 30 1071256805dSOphir Munk #endif 1081256805dSOphir Munk #ifndef HAVE_ETHTOOL_LINK_MODE_25G 1091256805dSOphir Munk #define ETHTOOL_LINK_MODE_25000baseCR_Full_BIT 31 1101256805dSOphir Munk #define ETHTOOL_LINK_MODE_25000baseKR_Full_BIT 32 1111256805dSOphir Munk #define ETHTOOL_LINK_MODE_25000baseSR_Full_BIT 33 1121256805dSOphir Munk #endif 1131256805dSOphir Munk #ifndef HAVE_ETHTOOL_LINK_MODE_50G 1141256805dSOphir Munk #define ETHTOOL_LINK_MODE_50000baseCR2_Full_BIT 34 1151256805dSOphir Munk #define ETHTOOL_LINK_MODE_50000baseKR2_Full_BIT 35 1161256805dSOphir Munk #endif 1171256805dSOphir Munk #ifndef HAVE_ETHTOOL_LINK_MODE_100G 1181256805dSOphir Munk #define ETHTOOL_LINK_MODE_100000baseKR4_Full_BIT 36 1191256805dSOphir Munk #define ETHTOOL_LINK_MODE_100000baseSR4_Full_BIT 37 1201256805dSOphir Munk #define ETHTOOL_LINK_MODE_100000baseCR4_Full_BIT 38 1211256805dSOphir Munk #define ETHTOOL_LINK_MODE_100000baseLR4_ER4_Full_BIT 39 1221256805dSOphir Munk #endif 1231256805dSOphir Munk #ifndef HAVE_ETHTOOL_LINK_MODE_200G 1241256805dSOphir Munk #define ETHTOOL_LINK_MODE_200000baseKR4_Full_BIT 62 1251256805dSOphir Munk #define ETHTOOL_LINK_MODE_200000baseSR4_Full_BIT 63 1261256805dSOphir Munk #define ETHTOOL_LINK_MODE_200000baseLR4_ER4_FR4_Full_BIT 0 /* 64 - 64 */ 1271256805dSOphir Munk #define ETHTOOL_LINK_MODE_200000baseDR4_Full_BIT 1 /* 65 - 64 */ 1281256805dSOphir Munk #define ETHTOOL_LINK_MODE_200000baseCR4_Full_BIT 2 /* 66 - 64 */ 1291256805dSOphir Munk #endif 1301256805dSOphir Munk 1311256805dSOphir Munk 1321256805dSOphir Munk /** 1331256805dSOphir Munk * Get interface name from private structure. 1341256805dSOphir Munk * 135aec086c9SMatan Azrad * This is a port representor-aware version of mlx5_get_ifname_sysfs(). 1361256805dSOphir Munk * 1371256805dSOphir Munk * @param[in] dev 1381256805dSOphir Munk * Pointer to Ethernet device. 1391256805dSOphir Munk * @param[out] ifname 1401256805dSOphir Munk * Interface name output buffer. 1411256805dSOphir Munk * 1421256805dSOphir Munk * @return 1431256805dSOphir Munk * 0 on success, a negative errno value otherwise and rte_errno is set. 1441256805dSOphir Munk */ 1451256805dSOphir Munk int 14628743807STal Shnaiderman mlx5_get_ifname(const struct rte_eth_dev *dev, char (*ifname)[MLX5_NAMESIZE]) 1471256805dSOphir Munk { 1481256805dSOphir Munk struct mlx5_priv *priv = dev->data->dev_private; 1491256805dSOphir Munk unsigned int ifindex; 1501256805dSOphir Munk 1511256805dSOphir Munk MLX5_ASSERT(priv); 1521256805dSOphir Munk MLX5_ASSERT(priv->sh); 153f5f4c482SXueming Li if (priv->master && priv->sh->bond.ifindex > 0) { 154f5f4c482SXueming Li memcpy(ifname, priv->sh->bond.ifname, MLX5_NAMESIZE); 155c21e5facSXueming Li return 0; 156c21e5facSXueming Li } 1571256805dSOphir Munk ifindex = mlx5_ifindex(dev); 1581256805dSOphir Munk if (!ifindex) { 1591256805dSOphir Munk if (!priv->representor) 160aec086c9SMatan Azrad return mlx5_get_ifname_sysfs(priv->sh->ibdev_path, 161aec086c9SMatan Azrad *ifname); 1621256805dSOphir Munk rte_errno = ENXIO; 1631256805dSOphir Munk return -rte_errno; 1641256805dSOphir Munk } 1651256805dSOphir Munk if (if_indextoname(ifindex, &(*ifname)[0])) 1661256805dSOphir Munk return 0; 1671256805dSOphir Munk rte_errno = errno; 1681256805dSOphir Munk return -rte_errno; 1691256805dSOphir Munk } 1701256805dSOphir Munk 1711256805dSOphir Munk /** 1727ed15acdSXueming Li * Perform ifreq ioctl() on associated netdev ifname. 1737ed15acdSXueming Li * 1747ed15acdSXueming Li * @param[in] ifname 1757ed15acdSXueming Li * Pointer to netdev name. 1767ed15acdSXueming Li * @param req 1777ed15acdSXueming Li * Request number to pass to ioctl(). 1787ed15acdSXueming Li * @param[out] ifr 1797ed15acdSXueming Li * Interface request structure output buffer. 1807ed15acdSXueming Li * 1817ed15acdSXueming Li * @return 1827ed15acdSXueming Li * 0 on success, a negative errno value otherwise and rte_errno is set. 1837ed15acdSXueming Li */ 1847ed15acdSXueming Li static int 1857ed15acdSXueming Li mlx5_ifreq_by_ifname(const char *ifname, int req, struct ifreq *ifr) 1867ed15acdSXueming Li { 1877ed15acdSXueming Li int sock = socket(PF_INET, SOCK_DGRAM, IPPROTO_IP); 1887ed15acdSXueming Li int ret = 0; 1897ed15acdSXueming Li 1907ed15acdSXueming Li if (sock == -1) { 1917ed15acdSXueming Li rte_errno = errno; 1927ed15acdSXueming Li return -rte_errno; 1937ed15acdSXueming Li } 1947ed15acdSXueming Li rte_strscpy(ifr->ifr_name, ifname, sizeof(ifr->ifr_name)); 1957ed15acdSXueming Li ret = ioctl(sock, req, ifr); 1967ed15acdSXueming Li if (ret == -1) { 1977ed15acdSXueming Li rte_errno = errno; 1987ed15acdSXueming Li goto error; 1997ed15acdSXueming Li } 2007ed15acdSXueming Li close(sock); 2017ed15acdSXueming Li return 0; 2027ed15acdSXueming Li error: 2037ed15acdSXueming Li close(sock); 2047ed15acdSXueming Li return -rte_errno; 2057ed15acdSXueming Li } 2067ed15acdSXueming Li 2077ed15acdSXueming Li /** 2081256805dSOphir Munk * Perform ifreq ioctl() on associated Ethernet device. 2091256805dSOphir Munk * 2101256805dSOphir Munk * @param[in] dev 2111256805dSOphir Munk * Pointer to Ethernet device. 2121256805dSOphir Munk * @param req 2131256805dSOphir Munk * Request number to pass to ioctl(). 2141256805dSOphir Munk * @param[out] ifr 2151256805dSOphir Munk * Interface request structure output buffer. 2161256805dSOphir Munk * 2171256805dSOphir Munk * @return 2181256805dSOphir Munk * 0 on success, a negative errno value otherwise and rte_errno is set. 2191256805dSOphir Munk */ 22098c4b12aSOphir Munk static int 2211256805dSOphir Munk mlx5_ifreq(const struct rte_eth_dev *dev, int req, struct ifreq *ifr) 2221256805dSOphir Munk { 2237ed15acdSXueming Li char ifname[sizeof(ifr->ifr_name)]; 2247ed15acdSXueming Li int ret; 2251256805dSOphir Munk 2267ed15acdSXueming Li ret = mlx5_get_ifname(dev, &ifname); 2271256805dSOphir Munk if (ret) 2281256805dSOphir Munk return -rte_errno; 2297ed15acdSXueming Li return mlx5_ifreq_by_ifname(ifname, req, ifr); 2301256805dSOphir Munk } 2311256805dSOphir Munk 2321256805dSOphir Munk /** 2331256805dSOphir Munk * Get device MTU. 2341256805dSOphir Munk * 2351256805dSOphir Munk * @param dev 2361256805dSOphir Munk * Pointer to Ethernet device. 2371256805dSOphir Munk * @param[out] mtu 2381256805dSOphir Munk * MTU value output buffer. 2391256805dSOphir Munk * 2401256805dSOphir Munk * @return 2411256805dSOphir Munk * 0 on success, a negative errno value otherwise and rte_errno is set. 2421256805dSOphir Munk */ 2431256805dSOphir Munk int 2441256805dSOphir Munk mlx5_get_mtu(struct rte_eth_dev *dev, uint16_t *mtu) 2451256805dSOphir Munk { 2461256805dSOphir Munk struct ifreq request; 2471256805dSOphir Munk int ret = mlx5_ifreq(dev, SIOCGIFMTU, &request); 2481256805dSOphir Munk 2491256805dSOphir Munk if (ret) 2501256805dSOphir Munk return ret; 2511256805dSOphir Munk *mtu = request.ifr_mtu; 2521256805dSOphir Munk return 0; 2531256805dSOphir Munk } 2541256805dSOphir Munk 2551256805dSOphir Munk /** 2561256805dSOphir Munk * Set device MTU. 2571256805dSOphir Munk * 2581256805dSOphir Munk * @param dev 2591256805dSOphir Munk * Pointer to Ethernet device. 2601256805dSOphir Munk * @param mtu 2611256805dSOphir Munk * MTU value to set. 2621256805dSOphir Munk * 2631256805dSOphir Munk * @return 2641256805dSOphir Munk * 0 on success, a negative errno value otherwise and rte_errno is set. 2651256805dSOphir Munk */ 2661256805dSOphir Munk int 2671256805dSOphir Munk mlx5_set_mtu(struct rte_eth_dev *dev, uint16_t mtu) 2681256805dSOphir Munk { 2691256805dSOphir Munk struct ifreq request = { .ifr_mtu = mtu, }; 2701256805dSOphir Munk 2711256805dSOphir Munk return mlx5_ifreq(dev, SIOCSIFMTU, &request); 2721256805dSOphir Munk } 2731256805dSOphir Munk 2741256805dSOphir Munk /** 2751256805dSOphir Munk * Set device flags. 2761256805dSOphir Munk * 2771256805dSOphir Munk * @param dev 2781256805dSOphir Munk * Pointer to Ethernet device. 2791256805dSOphir Munk * @param keep 2801256805dSOphir Munk * Bitmask for flags that must remain untouched. 2811256805dSOphir Munk * @param flags 2821256805dSOphir Munk * Bitmask for flags to modify. 2831256805dSOphir Munk * 2841256805dSOphir Munk * @return 2851256805dSOphir Munk * 0 on success, a negative errno value otherwise and rte_errno is set. 2861256805dSOphir Munk */ 28798c4b12aSOphir Munk static int 2881256805dSOphir Munk mlx5_set_flags(struct rte_eth_dev *dev, unsigned int keep, unsigned int flags) 2891256805dSOphir Munk { 2901256805dSOphir Munk struct ifreq request; 2911256805dSOphir Munk int ret = mlx5_ifreq(dev, SIOCGIFFLAGS, &request); 2921256805dSOphir Munk 2931256805dSOphir Munk if (ret) 2941256805dSOphir Munk return ret; 2951256805dSOphir Munk request.ifr_flags &= keep; 2961256805dSOphir Munk request.ifr_flags |= flags & ~keep; 2971256805dSOphir Munk return mlx5_ifreq(dev, SIOCSIFFLAGS, &request); 2981256805dSOphir Munk } 2991256805dSOphir Munk 3001256805dSOphir Munk /** 3011256805dSOphir Munk * Get device current raw clock counter 3021256805dSOphir Munk * 3031256805dSOphir Munk * @param dev 3041256805dSOphir Munk * Pointer to Ethernet device structure. 3051256805dSOphir Munk * @param[out] time 3061256805dSOphir Munk * Current raw clock counter of the device. 3071256805dSOphir Munk * 3081256805dSOphir Munk * @return 3091256805dSOphir Munk * 0 if the clock has correctly been read 3101256805dSOphir Munk * The value of errno in case of error 3111256805dSOphir Munk */ 3121256805dSOphir Munk int 3131256805dSOphir Munk mlx5_read_clock(struct rte_eth_dev *dev, uint64_t *clock) 3141256805dSOphir Munk { 3151256805dSOphir Munk struct mlx5_priv *priv = dev->data->dev_private; 3161256805dSOphir Munk struct ibv_context *ctx = priv->sh->ctx; 3171256805dSOphir Munk struct ibv_values_ex values; 3181256805dSOphir Munk int err = 0; 3191256805dSOphir Munk 3201256805dSOphir Munk values.comp_mask = IBV_VALUES_MASK_RAW_CLOCK; 3211256805dSOphir Munk err = mlx5_glue->query_rt_values_ex(ctx, &values); 3221256805dSOphir Munk if (err != 0) { 3231256805dSOphir Munk DRV_LOG(WARNING, "Could not query the clock !"); 3241256805dSOphir Munk return err; 3251256805dSOphir Munk } 3261256805dSOphir Munk *clock = values.raw_clock.tv_nsec; 3271256805dSOphir Munk return 0; 3281256805dSOphir Munk } 3291256805dSOphir Munk 3301256805dSOphir Munk /** 3311256805dSOphir Munk * Retrieve the master device for representor in the same switch domain. 3321256805dSOphir Munk * 3331256805dSOphir Munk * @param dev 3341256805dSOphir Munk * Pointer to representor Ethernet device structure. 3351256805dSOphir Munk * 3361256805dSOphir Munk * @return 3371256805dSOphir Munk * Master device structure on success, NULL otherwise. 3381256805dSOphir Munk */ 3391256805dSOphir Munk static struct rte_eth_dev * 3401256805dSOphir Munk mlx5_find_master_dev(struct rte_eth_dev *dev) 3411256805dSOphir Munk { 3421256805dSOphir Munk struct mlx5_priv *priv; 3431256805dSOphir Munk uint16_t port_id; 3441256805dSOphir Munk uint16_t domain_id; 3451256805dSOphir Munk 3461256805dSOphir Munk priv = dev->data->dev_private; 3471256805dSOphir Munk domain_id = priv->domain_id; 3481256805dSOphir Munk MLX5_ASSERT(priv->representor); 3491256805dSOphir Munk MLX5_ETH_FOREACH_DEV(port_id, priv->pci_dev) { 3501256805dSOphir Munk struct mlx5_priv *opriv = 3511256805dSOphir Munk rte_eth_devices[port_id].data->dev_private; 3521256805dSOphir Munk if (opriv && 3531256805dSOphir Munk opriv->master && 3541256805dSOphir Munk opriv->domain_id == domain_id && 3551256805dSOphir Munk opriv->sh == priv->sh) 3561256805dSOphir Munk return &rte_eth_devices[port_id]; 3571256805dSOphir Munk } 3581256805dSOphir Munk return NULL; 3591256805dSOphir Munk } 3601256805dSOphir Munk 3611256805dSOphir Munk /** 3621256805dSOphir Munk * DPDK callback to retrieve physical link information. 3631256805dSOphir Munk * 3641256805dSOphir Munk * @param dev 3651256805dSOphir Munk * Pointer to Ethernet device structure. 3661256805dSOphir Munk * @param[out] link 3671256805dSOphir Munk * Storage for current link status. 3681256805dSOphir Munk * 3691256805dSOphir Munk * @return 3701256805dSOphir Munk * 0 on success, a negative errno value otherwise and rte_errno is set. 3711256805dSOphir Munk */ 3721256805dSOphir Munk static int 3731256805dSOphir Munk mlx5_link_update_unlocked_gset(struct rte_eth_dev *dev, 3741256805dSOphir Munk struct rte_eth_link *link) 3751256805dSOphir Munk { 3761256805dSOphir Munk struct mlx5_priv *priv = dev->data->dev_private; 3771256805dSOphir Munk struct ethtool_cmd edata = { 3781256805dSOphir Munk .cmd = ETHTOOL_GSET /* Deprecated since Linux v4.5. */ 3791256805dSOphir Munk }; 3801256805dSOphir Munk struct ifreq ifr; 3811256805dSOphir Munk struct rte_eth_link dev_link; 3821256805dSOphir Munk int link_speed = 0; 3831256805dSOphir Munk int ret; 3841256805dSOphir Munk 3851256805dSOphir Munk ret = mlx5_ifreq(dev, SIOCGIFFLAGS, &ifr); 3861256805dSOphir Munk if (ret) { 3871256805dSOphir Munk DRV_LOG(WARNING, "port %u ioctl(SIOCGIFFLAGS) failed: %s", 3881256805dSOphir Munk dev->data->port_id, strerror(rte_errno)); 3891256805dSOphir Munk return ret; 3901256805dSOphir Munk } 3911256805dSOphir Munk dev_link = (struct rte_eth_link) { 3921256805dSOphir Munk .link_status = ((ifr.ifr_flags & IFF_UP) && 3931256805dSOphir Munk (ifr.ifr_flags & IFF_RUNNING)), 3941256805dSOphir Munk }; 3951256805dSOphir Munk ifr = (struct ifreq) { 3961256805dSOphir Munk .ifr_data = (void *)&edata, 3971256805dSOphir Munk }; 3981256805dSOphir Munk ret = mlx5_ifreq(dev, SIOCETHTOOL, &ifr); 3991256805dSOphir Munk if (ret) { 4001256805dSOphir Munk if (ret == -ENOTSUP && priv->representor) { 4011256805dSOphir Munk struct rte_eth_dev *master; 4021256805dSOphir Munk 4031256805dSOphir Munk /* 4041256805dSOphir Munk * For representors we can try to inherit link 4051256805dSOphir Munk * settings from the master device. Actually 4061256805dSOphir Munk * link settings do not make a lot of sense 4071256805dSOphir Munk * for representors due to missing physical 4081256805dSOphir Munk * link. The old kernel drivers supported 4091256805dSOphir Munk * emulated settings query for representors, 4101256805dSOphir Munk * the new ones do not, so we have to add 4111256805dSOphir Munk * this code for compatibility issues. 4121256805dSOphir Munk */ 4131256805dSOphir Munk master = mlx5_find_master_dev(dev); 4141256805dSOphir Munk if (master) { 4151256805dSOphir Munk ifr = (struct ifreq) { 4161256805dSOphir Munk .ifr_data = (void *)&edata, 4171256805dSOphir Munk }; 4181256805dSOphir Munk ret = mlx5_ifreq(master, SIOCETHTOOL, &ifr); 4191256805dSOphir Munk } 4201256805dSOphir Munk } 4211256805dSOphir Munk if (ret) { 4221256805dSOphir Munk DRV_LOG(WARNING, 4231256805dSOphir Munk "port %u ioctl(SIOCETHTOOL," 4241256805dSOphir Munk " ETHTOOL_GSET) failed: %s", 4251256805dSOphir Munk dev->data->port_id, strerror(rte_errno)); 4261256805dSOphir Munk return ret; 4271256805dSOphir Munk } 4281256805dSOphir Munk } 4291256805dSOphir Munk link_speed = ethtool_cmd_speed(&edata); 4301256805dSOphir Munk if (link_speed == -1) 4311688c580SBenoît Ganne dev_link.link_speed = ETH_SPEED_NUM_UNKNOWN; 4321256805dSOphir Munk else 4331256805dSOphir Munk dev_link.link_speed = link_speed; 4341256805dSOphir Munk priv->link_speed_capa = 0; 4351256805dSOphir Munk if (edata.supported & (SUPPORTED_1000baseT_Full | 4361256805dSOphir Munk SUPPORTED_1000baseKX_Full)) 4371256805dSOphir Munk priv->link_speed_capa |= ETH_LINK_SPEED_1G; 4381256805dSOphir Munk if (edata.supported & SUPPORTED_10000baseKR_Full) 4391256805dSOphir Munk priv->link_speed_capa |= ETH_LINK_SPEED_10G; 4401256805dSOphir Munk if (edata.supported & (SUPPORTED_40000baseKR4_Full | 4411256805dSOphir Munk SUPPORTED_40000baseCR4_Full | 4421256805dSOphir Munk SUPPORTED_40000baseSR4_Full | 4431256805dSOphir Munk SUPPORTED_40000baseLR4_Full)) 4441256805dSOphir Munk priv->link_speed_capa |= ETH_LINK_SPEED_40G; 4451256805dSOphir Munk dev_link.link_duplex = ((edata.duplex == DUPLEX_HALF) ? 4461256805dSOphir Munk ETH_LINK_HALF_DUPLEX : ETH_LINK_FULL_DUPLEX); 4471256805dSOphir Munk dev_link.link_autoneg = !(dev->data->dev_conf.link_speeds & 4481256805dSOphir Munk ETH_LINK_SPEED_FIXED); 4491256805dSOphir Munk *link = dev_link; 4501256805dSOphir Munk return 0; 4511256805dSOphir Munk } 4521256805dSOphir Munk 4531256805dSOphir Munk /** 4541256805dSOphir Munk * Retrieve physical link information (unlocked version using new ioctl). 4551256805dSOphir Munk * 4561256805dSOphir Munk * @param dev 4571256805dSOphir Munk * Pointer to Ethernet device structure. 4581256805dSOphir Munk * @param[out] link 4591256805dSOphir Munk * Storage for current link status. 4601256805dSOphir Munk * 4611256805dSOphir Munk * @return 4621256805dSOphir Munk * 0 on success, a negative errno value otherwise and rte_errno is set. 4631256805dSOphir Munk */ 4641256805dSOphir Munk static int 4651256805dSOphir Munk mlx5_link_update_unlocked_gs(struct rte_eth_dev *dev, 4661256805dSOphir Munk struct rte_eth_link *link) 4671256805dSOphir Munk 4681256805dSOphir Munk { 4691256805dSOphir Munk struct mlx5_priv *priv = dev->data->dev_private; 4701256805dSOphir Munk struct ethtool_link_settings gcmd = { .cmd = ETHTOOL_GLINKSETTINGS }; 4711256805dSOphir Munk struct ifreq ifr; 4721256805dSOphir Munk struct rte_eth_link dev_link; 4731256805dSOphir Munk struct rte_eth_dev *master = NULL; 4741256805dSOphir Munk uint64_t sc; 4751256805dSOphir Munk int ret; 4761256805dSOphir Munk 4771256805dSOphir Munk ret = mlx5_ifreq(dev, SIOCGIFFLAGS, &ifr); 4781256805dSOphir Munk if (ret) { 4791256805dSOphir Munk DRV_LOG(WARNING, "port %u ioctl(SIOCGIFFLAGS) failed: %s", 4801256805dSOphir Munk dev->data->port_id, strerror(rte_errno)); 4811256805dSOphir Munk return ret; 4821256805dSOphir Munk } 4831256805dSOphir Munk dev_link = (struct rte_eth_link) { 4841256805dSOphir Munk .link_status = ((ifr.ifr_flags & IFF_UP) && 4851256805dSOphir Munk (ifr.ifr_flags & IFF_RUNNING)), 4861256805dSOphir Munk }; 4871256805dSOphir Munk ifr = (struct ifreq) { 4881256805dSOphir Munk .ifr_data = (void *)&gcmd, 4891256805dSOphir Munk }; 4901256805dSOphir Munk ret = mlx5_ifreq(dev, SIOCETHTOOL, &ifr); 4911256805dSOphir Munk if (ret) { 4921256805dSOphir Munk if (ret == -ENOTSUP && priv->representor) { 4931256805dSOphir Munk /* 4941256805dSOphir Munk * For representors we can try to inherit link 4951256805dSOphir Munk * settings from the master device. Actually 4961256805dSOphir Munk * link settings do not make a lot of sense 4971256805dSOphir Munk * for representors due to missing physical 4981256805dSOphir Munk * link. The old kernel drivers supported 4991256805dSOphir Munk * emulated settings query for representors, 5001256805dSOphir Munk * the new ones do not, so we have to add 5011256805dSOphir Munk * this code for compatibility issues. 5021256805dSOphir Munk */ 5031256805dSOphir Munk master = mlx5_find_master_dev(dev); 5041256805dSOphir Munk if (master) { 5051256805dSOphir Munk ifr = (struct ifreq) { 5061256805dSOphir Munk .ifr_data = (void *)&gcmd, 5071256805dSOphir Munk }; 5081256805dSOphir Munk ret = mlx5_ifreq(master, SIOCETHTOOL, &ifr); 5091256805dSOphir Munk } 5101256805dSOphir Munk } 5111256805dSOphir Munk if (ret) { 5121256805dSOphir Munk DRV_LOG(DEBUG, 5131256805dSOphir Munk "port %u ioctl(SIOCETHTOOL," 5141256805dSOphir Munk " ETHTOOL_GLINKSETTINGS) failed: %s", 5151256805dSOphir Munk dev->data->port_id, strerror(rte_errno)); 5161256805dSOphir Munk return ret; 5171256805dSOphir Munk } 5181256805dSOphir Munk } 5191256805dSOphir Munk gcmd.link_mode_masks_nwords = -gcmd.link_mode_masks_nwords; 5201256805dSOphir Munk 5211256805dSOphir Munk alignas(struct ethtool_link_settings) 5221256805dSOphir Munk uint8_t data[offsetof(struct ethtool_link_settings, link_mode_masks) + 5231256805dSOphir Munk sizeof(uint32_t) * gcmd.link_mode_masks_nwords * 3]; 5241256805dSOphir Munk struct ethtool_link_settings *ecmd = (void *)data; 5251256805dSOphir Munk 5261256805dSOphir Munk *ecmd = gcmd; 5271256805dSOphir Munk ifr.ifr_data = (void *)ecmd; 5281256805dSOphir Munk ret = mlx5_ifreq(master ? master : dev, SIOCETHTOOL, &ifr); 5291256805dSOphir Munk if (ret) { 5301256805dSOphir Munk DRV_LOG(DEBUG, 5311256805dSOphir Munk "port %u ioctl(SIOCETHTOOL," 5321256805dSOphir Munk "ETHTOOL_GLINKSETTINGS) failed: %s", 5331256805dSOphir Munk dev->data->port_id, strerror(rte_errno)); 5341256805dSOphir Munk return ret; 5351256805dSOphir Munk } 5361688c580SBenoît Ganne dev_link.link_speed = (ecmd->speed == UINT32_MAX) ? 5371688c580SBenoît Ganne ETH_SPEED_NUM_UNKNOWN : ecmd->speed; 5381256805dSOphir Munk sc = ecmd->link_mode_masks[0] | 5391256805dSOphir Munk ((uint64_t)ecmd->link_mode_masks[1] << 32); 5401256805dSOphir Munk priv->link_speed_capa = 0; 5411256805dSOphir Munk if (sc & (MLX5_BITSHIFT(ETHTOOL_LINK_MODE_1000baseT_Full_BIT) | 5421256805dSOphir Munk MLX5_BITSHIFT(ETHTOOL_LINK_MODE_1000baseKX_Full_BIT))) 5431256805dSOphir Munk priv->link_speed_capa |= ETH_LINK_SPEED_1G; 5441256805dSOphir Munk if (sc & (MLX5_BITSHIFT(ETHTOOL_LINK_MODE_10000baseKX4_Full_BIT) | 5451256805dSOphir Munk MLX5_BITSHIFT(ETHTOOL_LINK_MODE_10000baseKR_Full_BIT) | 5461256805dSOphir Munk MLX5_BITSHIFT(ETHTOOL_LINK_MODE_10000baseR_FEC_BIT))) 5471256805dSOphir Munk priv->link_speed_capa |= ETH_LINK_SPEED_10G; 5481256805dSOphir Munk if (sc & (MLX5_BITSHIFT(ETHTOOL_LINK_MODE_20000baseMLD2_Full_BIT) | 5491256805dSOphir Munk MLX5_BITSHIFT(ETHTOOL_LINK_MODE_20000baseKR2_Full_BIT))) 5501256805dSOphir Munk priv->link_speed_capa |= ETH_LINK_SPEED_20G; 5511256805dSOphir Munk if (sc & (MLX5_BITSHIFT(ETHTOOL_LINK_MODE_40000baseKR4_Full_BIT) | 5521256805dSOphir Munk MLX5_BITSHIFT(ETHTOOL_LINK_MODE_40000baseCR4_Full_BIT) | 5531256805dSOphir Munk MLX5_BITSHIFT(ETHTOOL_LINK_MODE_40000baseSR4_Full_BIT) | 5541256805dSOphir Munk MLX5_BITSHIFT(ETHTOOL_LINK_MODE_40000baseLR4_Full_BIT))) 5551256805dSOphir Munk priv->link_speed_capa |= ETH_LINK_SPEED_40G; 5561256805dSOphir Munk if (sc & (MLX5_BITSHIFT(ETHTOOL_LINK_MODE_56000baseKR4_Full_BIT) | 5571256805dSOphir Munk MLX5_BITSHIFT(ETHTOOL_LINK_MODE_56000baseCR4_Full_BIT) | 5581256805dSOphir Munk MLX5_BITSHIFT(ETHTOOL_LINK_MODE_56000baseSR4_Full_BIT) | 5591256805dSOphir Munk MLX5_BITSHIFT(ETHTOOL_LINK_MODE_56000baseLR4_Full_BIT))) 5601256805dSOphir Munk priv->link_speed_capa |= ETH_LINK_SPEED_56G; 5611256805dSOphir Munk if (sc & (MLX5_BITSHIFT(ETHTOOL_LINK_MODE_25000baseCR_Full_BIT) | 5621256805dSOphir Munk MLX5_BITSHIFT(ETHTOOL_LINK_MODE_25000baseKR_Full_BIT) | 5631256805dSOphir Munk MLX5_BITSHIFT(ETHTOOL_LINK_MODE_25000baseSR_Full_BIT))) 5641256805dSOphir Munk priv->link_speed_capa |= ETH_LINK_SPEED_25G; 5651256805dSOphir Munk if (sc & (MLX5_BITSHIFT(ETHTOOL_LINK_MODE_50000baseCR2_Full_BIT) | 5661256805dSOphir Munk MLX5_BITSHIFT(ETHTOOL_LINK_MODE_50000baseKR2_Full_BIT))) 5671256805dSOphir Munk priv->link_speed_capa |= ETH_LINK_SPEED_50G; 5681256805dSOphir Munk if (sc & (MLX5_BITSHIFT(ETHTOOL_LINK_MODE_100000baseKR4_Full_BIT) | 5691256805dSOphir Munk MLX5_BITSHIFT(ETHTOOL_LINK_MODE_100000baseSR4_Full_BIT) | 5701256805dSOphir Munk MLX5_BITSHIFT(ETHTOOL_LINK_MODE_100000baseCR4_Full_BIT) | 5711256805dSOphir Munk MLX5_BITSHIFT(ETHTOOL_LINK_MODE_100000baseLR4_ER4_Full_BIT))) 5721256805dSOphir Munk priv->link_speed_capa |= ETH_LINK_SPEED_100G; 5731256805dSOphir Munk if (sc & (MLX5_BITSHIFT(ETHTOOL_LINK_MODE_200000baseKR4_Full_BIT) | 5741256805dSOphir Munk MLX5_BITSHIFT(ETHTOOL_LINK_MODE_200000baseSR4_Full_BIT))) 5751256805dSOphir Munk priv->link_speed_capa |= ETH_LINK_SPEED_200G; 5761256805dSOphir Munk 5771256805dSOphir Munk sc = ecmd->link_mode_masks[2] | 5781256805dSOphir Munk ((uint64_t)ecmd->link_mode_masks[3] << 32); 5791256805dSOphir Munk if (sc & (MLX5_BITSHIFT(ETHTOOL_LINK_MODE_200000baseCR4_Full_BIT) | 5801256805dSOphir Munk MLX5_BITSHIFT 5811256805dSOphir Munk (ETHTOOL_LINK_MODE_200000baseLR4_ER4_FR4_Full_BIT) | 5821256805dSOphir Munk MLX5_BITSHIFT(ETHTOOL_LINK_MODE_200000baseDR4_Full_BIT))) 5831256805dSOphir Munk priv->link_speed_capa |= ETH_LINK_SPEED_200G; 5841256805dSOphir Munk dev_link.link_duplex = ((ecmd->duplex == DUPLEX_HALF) ? 5851256805dSOphir Munk ETH_LINK_HALF_DUPLEX : ETH_LINK_FULL_DUPLEX); 5861256805dSOphir Munk dev_link.link_autoneg = !(dev->data->dev_conf.link_speeds & 5871256805dSOphir Munk ETH_LINK_SPEED_FIXED); 5881256805dSOphir Munk *link = dev_link; 5891256805dSOphir Munk return 0; 5901256805dSOphir Munk } 5911256805dSOphir Munk 5921256805dSOphir Munk /** 5931256805dSOphir Munk * DPDK callback to retrieve physical link information. 5941256805dSOphir Munk * 5951256805dSOphir Munk * @param dev 5961256805dSOphir Munk * Pointer to Ethernet device structure. 5971256805dSOphir Munk * @param wait_to_complete 5981256805dSOphir Munk * Wait for request completion. 5991256805dSOphir Munk * 6001256805dSOphir Munk * @return 6011256805dSOphir Munk * 0 if link status was not updated, positive if it was, a negative errno 6021256805dSOphir Munk * value otherwise and rte_errno is set. 6031256805dSOphir Munk */ 6041256805dSOphir Munk int 6051256805dSOphir Munk mlx5_link_update(struct rte_eth_dev *dev, int wait_to_complete) 6061256805dSOphir Munk { 6071256805dSOphir Munk int ret; 6081256805dSOphir Munk struct rte_eth_link dev_link; 6091256805dSOphir Munk time_t start_time = time(NULL); 6101256805dSOphir Munk int retry = MLX5_GET_LINK_STATUS_RETRY_COUNT; 6111256805dSOphir Munk 6121256805dSOphir Munk do { 6131256805dSOphir Munk ret = mlx5_link_update_unlocked_gs(dev, &dev_link); 6141256805dSOphir Munk if (ret == -ENOTSUP) 6151256805dSOphir Munk ret = mlx5_link_update_unlocked_gset(dev, &dev_link); 6161256805dSOphir Munk if (ret == 0) 6171256805dSOphir Munk break; 6181256805dSOphir Munk /* Handle wait to complete situation. */ 6191256805dSOphir Munk if ((wait_to_complete || retry) && ret == -EAGAIN) { 6201256805dSOphir Munk if (abs((int)difftime(time(NULL), start_time)) < 6211256805dSOphir Munk MLX5_LINK_STATUS_TIMEOUT) { 6221256805dSOphir Munk usleep(0); 6231256805dSOphir Munk continue; 6241256805dSOphir Munk } else { 6251256805dSOphir Munk rte_errno = EBUSY; 6261256805dSOphir Munk return -rte_errno; 6271256805dSOphir Munk } 6281256805dSOphir Munk } else if (ret < 0) { 6291256805dSOphir Munk return ret; 6301256805dSOphir Munk } 6311256805dSOphir Munk } while (wait_to_complete || retry-- > 0); 6321256805dSOphir Munk ret = !!memcmp(&dev->data->dev_link, &dev_link, 6331256805dSOphir Munk sizeof(struct rte_eth_link)); 6341256805dSOphir Munk dev->data->dev_link = dev_link; 6351256805dSOphir Munk return ret; 6361256805dSOphir Munk } 6371256805dSOphir Munk 6381256805dSOphir Munk /** 6391256805dSOphir Munk * DPDK callback to get flow control status. 6401256805dSOphir Munk * 6411256805dSOphir Munk * @param dev 6421256805dSOphir Munk * Pointer to Ethernet device structure. 6431256805dSOphir Munk * @param[out] fc_conf 6441256805dSOphir Munk * Flow control output buffer. 6451256805dSOphir Munk * 6461256805dSOphir Munk * @return 6471256805dSOphir Munk * 0 on success, a negative errno value otherwise and rte_errno is set. 6481256805dSOphir Munk */ 6491256805dSOphir Munk int 6501256805dSOphir Munk mlx5_dev_get_flow_ctrl(struct rte_eth_dev *dev, struct rte_eth_fc_conf *fc_conf) 6511256805dSOphir Munk { 6521256805dSOphir Munk struct ifreq ifr; 6531256805dSOphir Munk struct ethtool_pauseparam ethpause = { 6541256805dSOphir Munk .cmd = ETHTOOL_GPAUSEPARAM 6551256805dSOphir Munk }; 6561256805dSOphir Munk int ret; 6571256805dSOphir Munk 6581256805dSOphir Munk ifr.ifr_data = (void *)ðpause; 6591256805dSOphir Munk ret = mlx5_ifreq(dev, SIOCETHTOOL, &ifr); 6601256805dSOphir Munk if (ret) { 6611256805dSOphir Munk DRV_LOG(WARNING, 6621256805dSOphir Munk "port %u ioctl(SIOCETHTOOL, ETHTOOL_GPAUSEPARAM) failed:" 6631256805dSOphir Munk " %s", 6641256805dSOphir Munk dev->data->port_id, strerror(rte_errno)); 6651256805dSOphir Munk return ret; 6661256805dSOphir Munk } 6671256805dSOphir Munk fc_conf->autoneg = ethpause.autoneg; 6681256805dSOphir Munk if (ethpause.rx_pause && ethpause.tx_pause) 6691256805dSOphir Munk fc_conf->mode = RTE_FC_FULL; 6701256805dSOphir Munk else if (ethpause.rx_pause) 6711256805dSOphir Munk fc_conf->mode = RTE_FC_RX_PAUSE; 6721256805dSOphir Munk else if (ethpause.tx_pause) 6731256805dSOphir Munk fc_conf->mode = RTE_FC_TX_PAUSE; 6741256805dSOphir Munk else 6751256805dSOphir Munk fc_conf->mode = RTE_FC_NONE; 6761256805dSOphir Munk return 0; 6771256805dSOphir Munk } 6781256805dSOphir Munk 6791256805dSOphir Munk /** 6801256805dSOphir Munk * DPDK callback to modify flow control parameters. 6811256805dSOphir Munk * 6821256805dSOphir Munk * @param dev 6831256805dSOphir Munk * Pointer to Ethernet device structure. 6841256805dSOphir Munk * @param[in] fc_conf 6851256805dSOphir Munk * Flow control parameters. 6861256805dSOphir Munk * 6871256805dSOphir Munk * @return 6881256805dSOphir Munk * 0 on success, a negative errno value otherwise and rte_errno is set. 6891256805dSOphir Munk */ 6901256805dSOphir Munk int 6911256805dSOphir Munk mlx5_dev_set_flow_ctrl(struct rte_eth_dev *dev, struct rte_eth_fc_conf *fc_conf) 6921256805dSOphir Munk { 6931256805dSOphir Munk struct ifreq ifr; 6941256805dSOphir Munk struct ethtool_pauseparam ethpause = { 6951256805dSOphir Munk .cmd = ETHTOOL_SPAUSEPARAM 6961256805dSOphir Munk }; 6971256805dSOphir Munk int ret; 6981256805dSOphir Munk 6991256805dSOphir Munk ifr.ifr_data = (void *)ðpause; 7001256805dSOphir Munk ethpause.autoneg = fc_conf->autoneg; 7011256805dSOphir Munk if (((fc_conf->mode & RTE_FC_FULL) == RTE_FC_FULL) || 7021256805dSOphir Munk (fc_conf->mode & RTE_FC_RX_PAUSE)) 7031256805dSOphir Munk ethpause.rx_pause = 1; 7041256805dSOphir Munk else 7051256805dSOphir Munk ethpause.rx_pause = 0; 7061256805dSOphir Munk 7071256805dSOphir Munk if (((fc_conf->mode & RTE_FC_FULL) == RTE_FC_FULL) || 7081256805dSOphir Munk (fc_conf->mode & RTE_FC_TX_PAUSE)) 7091256805dSOphir Munk ethpause.tx_pause = 1; 7101256805dSOphir Munk else 7111256805dSOphir Munk ethpause.tx_pause = 0; 7121256805dSOphir Munk ret = mlx5_ifreq(dev, SIOCETHTOOL, &ifr); 7131256805dSOphir Munk if (ret) { 7141256805dSOphir Munk DRV_LOG(WARNING, 7151256805dSOphir Munk "port %u ioctl(SIOCETHTOOL, ETHTOOL_SPAUSEPARAM)" 7161256805dSOphir Munk " failed: %s", 7171256805dSOphir Munk dev->data->port_id, strerror(rte_errno)); 7181256805dSOphir Munk return ret; 7191256805dSOphir Munk } 7201256805dSOphir Munk return 0; 7211256805dSOphir Munk } 7221256805dSOphir Munk 7231256805dSOphir Munk /** 7241256805dSOphir Munk * Handle asynchronous removal event for entire multiport device. 7251256805dSOphir Munk * 7261256805dSOphir Munk * @param sh 7271256805dSOphir Munk * Infiniband device shared context. 7281256805dSOphir Munk */ 7291256805dSOphir Munk static void 7301256805dSOphir Munk mlx5_dev_interrupt_device_fatal(struct mlx5_dev_ctx_shared *sh) 7311256805dSOphir Munk { 7321256805dSOphir Munk uint32_t i; 7331256805dSOphir Munk 7341256805dSOphir Munk for (i = 0; i < sh->max_port; ++i) { 7351256805dSOphir Munk struct rte_eth_dev *dev; 7361256805dSOphir Munk 7371256805dSOphir Munk if (sh->port[i].ih_port_id >= RTE_MAX_ETHPORTS) { 7381256805dSOphir Munk /* 7391256805dSOphir Munk * Or not existing port either no 7401256805dSOphir Munk * handler installed for this port. 7411256805dSOphir Munk */ 7421256805dSOphir Munk continue; 7431256805dSOphir Munk } 7441256805dSOphir Munk dev = &rte_eth_devices[sh->port[i].ih_port_id]; 7451256805dSOphir Munk MLX5_ASSERT(dev); 7461256805dSOphir Munk if (dev->data->dev_conf.intr_conf.rmv) 7475723fbedSFerruh Yigit rte_eth_dev_callback_process 7481256805dSOphir Munk (dev, RTE_ETH_EVENT_INTR_RMV, NULL); 7491256805dSOphir Munk } 7501256805dSOphir Munk } 7511256805dSOphir Munk 7521256805dSOphir Munk /** 7531256805dSOphir Munk * Handle shared asynchronous events the NIC (removal event 7541256805dSOphir Munk * and link status change). Supports multiport IB device. 7551256805dSOphir Munk * 7561256805dSOphir Munk * @param cb_arg 7571256805dSOphir Munk * Callback argument. 7581256805dSOphir Munk */ 7591256805dSOphir Munk void 7601256805dSOphir Munk mlx5_dev_interrupt_handler(void *cb_arg) 7611256805dSOphir Munk { 7621256805dSOphir Munk struct mlx5_dev_ctx_shared *sh = cb_arg; 7631256805dSOphir Munk struct ibv_async_event event; 7641256805dSOphir Munk 7651256805dSOphir Munk /* Read all message from the IB device and acknowledge them. */ 7661256805dSOphir Munk for (;;) { 7671256805dSOphir Munk struct rte_eth_dev *dev; 7681256805dSOphir Munk uint32_t tmp; 7691256805dSOphir Munk 7701256805dSOphir Munk if (mlx5_glue->get_async_event(sh->ctx, &event)) 7711256805dSOphir Munk break; 7721256805dSOphir Munk /* Retrieve and check IB port index. */ 7731256805dSOphir Munk tmp = (uint32_t)event.element.port_num; 7741256805dSOphir Munk if (!tmp && event.event_type == IBV_EVENT_DEVICE_FATAL) { 7751256805dSOphir Munk /* 7761256805dSOphir Munk * The DEVICE_FATAL event is called once for 7771256805dSOphir Munk * entire device without port specifying. 7781256805dSOphir Munk * We should notify all existing ports. 7791256805dSOphir Munk */ 7801256805dSOphir Munk mlx5_glue->ack_async_event(&event); 7811256805dSOphir Munk mlx5_dev_interrupt_device_fatal(sh); 7821256805dSOphir Munk continue; 7831256805dSOphir Munk } 7841256805dSOphir Munk MLX5_ASSERT(tmp && (tmp <= sh->max_port)); 7851256805dSOphir Munk if (!tmp) { 7861256805dSOphir Munk /* Unsupported device level event. */ 7871256805dSOphir Munk mlx5_glue->ack_async_event(&event); 7881256805dSOphir Munk DRV_LOG(DEBUG, 7891256805dSOphir Munk "unsupported common event (type %d)", 7901256805dSOphir Munk event.event_type); 7911256805dSOphir Munk continue; 7921256805dSOphir Munk } 7931256805dSOphir Munk if (tmp > sh->max_port) { 7941256805dSOphir Munk /* Invalid IB port index. */ 7951256805dSOphir Munk mlx5_glue->ack_async_event(&event); 7961256805dSOphir Munk DRV_LOG(DEBUG, 7971256805dSOphir Munk "cannot handle an event (type %d)" 7981256805dSOphir Munk "due to invalid IB port index (%u)", 7991256805dSOphir Munk event.event_type, tmp); 8001256805dSOphir Munk continue; 8011256805dSOphir Munk } 8021256805dSOphir Munk if (sh->port[tmp - 1].ih_port_id >= RTE_MAX_ETHPORTS) { 8031256805dSOphir Munk /* No handler installed. */ 8041256805dSOphir Munk mlx5_glue->ack_async_event(&event); 8051256805dSOphir Munk DRV_LOG(DEBUG, 8061256805dSOphir Munk "cannot handle an event (type %d)" 8071256805dSOphir Munk "due to no handler installed for port %u", 8081256805dSOphir Munk event.event_type, tmp); 8091256805dSOphir Munk continue; 8101256805dSOphir Munk } 8111256805dSOphir Munk /* Retrieve ethernet device descriptor. */ 8121256805dSOphir Munk tmp = sh->port[tmp - 1].ih_port_id; 8131256805dSOphir Munk dev = &rte_eth_devices[tmp]; 8141256805dSOphir Munk MLX5_ASSERT(dev); 8151256805dSOphir Munk if ((event.event_type == IBV_EVENT_PORT_ACTIVE || 8161256805dSOphir Munk event.event_type == IBV_EVENT_PORT_ERR) && 8171256805dSOphir Munk dev->data->dev_conf.intr_conf.lsc) { 8181256805dSOphir Munk mlx5_glue->ack_async_event(&event); 8191256805dSOphir Munk if (mlx5_link_update(dev, 0) == -EAGAIN) { 8201256805dSOphir Munk usleep(0); 8211256805dSOphir Munk continue; 8221256805dSOphir Munk } 8235723fbedSFerruh Yigit rte_eth_dev_callback_process 8241256805dSOphir Munk (dev, RTE_ETH_EVENT_INTR_LSC, NULL); 8251256805dSOphir Munk continue; 8261256805dSOphir Munk } 8271256805dSOphir Munk DRV_LOG(DEBUG, 8281256805dSOphir Munk "port %u cannot handle an unknown event (type %d)", 8291256805dSOphir Munk dev->data->port_id, event.event_type); 8301256805dSOphir Munk mlx5_glue->ack_async_event(&event); 8311256805dSOphir Munk } 8321256805dSOphir Munk } 8331256805dSOphir Munk 8341256805dSOphir Munk /* 8351256805dSOphir Munk * Unregister callback handler safely. The handler may be active 8361256805dSOphir Munk * while we are trying to unregister it, in this case code -EAGAIN 8371256805dSOphir Munk * is returned by rte_intr_callback_unregister(). This routine checks 8381256805dSOphir Munk * the return code and tries to unregister handler again. 8391256805dSOphir Munk * 8401256805dSOphir Munk * @param handle 8411256805dSOphir Munk * interrupt handle 8421256805dSOphir Munk * @param cb_fn 8431256805dSOphir Munk * pointer to callback routine 8441256805dSOphir Munk * @cb_arg 8451256805dSOphir Munk * opaque callback parameter 8461256805dSOphir Munk */ 8471256805dSOphir Munk void 8481256805dSOphir Munk mlx5_intr_callback_unregister(const struct rte_intr_handle *handle, 8491256805dSOphir Munk rte_intr_callback_fn cb_fn, void *cb_arg) 8501256805dSOphir Munk { 8511256805dSOphir Munk /* 8521256805dSOphir Munk * Try to reduce timeout management overhead by not calling 8531256805dSOphir Munk * the timer related routines on the first iteration. If the 8541256805dSOphir Munk * unregistering succeeds on first call there will be no 8551256805dSOphir Munk * timer calls at all. 8561256805dSOphir Munk */ 8571256805dSOphir Munk uint64_t twait = 0; 8581256805dSOphir Munk uint64_t start = 0; 8591256805dSOphir Munk 8601256805dSOphir Munk do { 8611256805dSOphir Munk int ret; 8621256805dSOphir Munk 8631256805dSOphir Munk ret = rte_intr_callback_unregister(handle, cb_fn, cb_arg); 8641256805dSOphir Munk if (ret >= 0) 8651256805dSOphir Munk return; 8661256805dSOphir Munk if (ret != -EAGAIN) { 8671256805dSOphir Munk DRV_LOG(INFO, "failed to unregister interrupt" 8681256805dSOphir Munk " handler (error: %d)", ret); 8691256805dSOphir Munk MLX5_ASSERT(false); 8701256805dSOphir Munk return; 8711256805dSOphir Munk } 8721256805dSOphir Munk if (twait) { 8731256805dSOphir Munk struct timespec onems; 8741256805dSOphir Munk 8751256805dSOphir Munk /* Wait one millisecond and try again. */ 8761256805dSOphir Munk onems.tv_sec = 0; 8771256805dSOphir Munk onems.tv_nsec = NS_PER_S / MS_PER_S; 8781256805dSOphir Munk nanosleep(&onems, 0); 8791256805dSOphir Munk /* Check whether one second elapsed. */ 8801256805dSOphir Munk if ((rte_get_timer_cycles() - start) <= twait) 8811256805dSOphir Munk continue; 8821256805dSOphir Munk } else { 8831256805dSOphir Munk /* 8841256805dSOphir Munk * We get the amount of timer ticks for one second. 8851256805dSOphir Munk * If this amount elapsed it means we spent one 8861256805dSOphir Munk * second in waiting. This branch is executed once 8871256805dSOphir Munk * on first iteration. 8881256805dSOphir Munk */ 8891256805dSOphir Munk twait = rte_get_timer_hz(); 8901256805dSOphir Munk MLX5_ASSERT(twait); 8911256805dSOphir Munk } 8921256805dSOphir Munk /* 8931256805dSOphir Munk * Timeout elapsed, show message (once a second) and retry. 8941256805dSOphir Munk * We have no other acceptable option here, if we ignore 8951256805dSOphir Munk * the unregistering return code the handler will not 8961256805dSOphir Munk * be unregistered, fd will be closed and we may get the 8971256805dSOphir Munk * crush. Hanging and messaging in the loop seems not to be 8981256805dSOphir Munk * the worst choice. 8991256805dSOphir Munk */ 9001256805dSOphir Munk DRV_LOG(INFO, "Retrying to unregister interrupt handler"); 9011256805dSOphir Munk start = rte_get_timer_cycles(); 9021256805dSOphir Munk } while (true); 9031256805dSOphir Munk } 9041256805dSOphir Munk 9051256805dSOphir Munk /** 9061256805dSOphir Munk * Handle DEVX interrupts from the NIC. 9071256805dSOphir Munk * This function is probably called from the DPDK host thread. 9081256805dSOphir Munk * 9091256805dSOphir Munk * @param cb_arg 9101256805dSOphir Munk * Callback argument. 9111256805dSOphir Munk */ 9121256805dSOphir Munk void 9131256805dSOphir Munk mlx5_dev_interrupt_handler_devx(void *cb_arg) 9141256805dSOphir Munk { 9151256805dSOphir Munk #ifndef HAVE_IBV_DEVX_ASYNC 9161256805dSOphir Munk (void)cb_arg; 9171256805dSOphir Munk return; 9181256805dSOphir Munk #else 9191256805dSOphir Munk struct mlx5_dev_ctx_shared *sh = cb_arg; 9201256805dSOphir Munk union { 9211256805dSOphir Munk struct mlx5dv_devx_async_cmd_hdr cmd_resp; 9221256805dSOphir Munk uint8_t buf[MLX5_ST_SZ_BYTES(query_flow_counter_out) + 9231256805dSOphir Munk MLX5_ST_SZ_BYTES(traffic_counter) + 9241256805dSOphir Munk sizeof(struct mlx5dv_devx_async_cmd_hdr)]; 9251256805dSOphir Munk } out; 9261256805dSOphir Munk uint8_t *buf = out.buf + sizeof(out.cmd_resp); 9271256805dSOphir Munk 9281256805dSOphir Munk while (!mlx5_glue->devx_get_async_cmd_comp(sh->devx_comp, 9291256805dSOphir Munk &out.cmd_resp, 9301256805dSOphir Munk sizeof(out.buf))) 9311256805dSOphir Munk mlx5_flow_async_pool_query_handle 9321256805dSOphir Munk (sh, (uint64_t)out.cmd_resp.wr_id, 9331256805dSOphir Munk mlx5_devx_get_out_command_status(buf)); 9341256805dSOphir Munk #endif /* HAVE_IBV_DEVX_ASYNC */ 9351256805dSOphir Munk } 9361256805dSOphir Munk 9371256805dSOphir Munk /** 9381256805dSOphir Munk * DPDK callback to bring the link DOWN. 9391256805dSOphir Munk * 9401256805dSOphir Munk * @param dev 9411256805dSOphir Munk * Pointer to Ethernet device structure. 9421256805dSOphir Munk * 9431256805dSOphir Munk * @return 9441256805dSOphir Munk * 0 on success, a negative errno value otherwise and rte_errno is set. 9451256805dSOphir Munk */ 9461256805dSOphir Munk int 9471256805dSOphir Munk mlx5_set_link_down(struct rte_eth_dev *dev) 9481256805dSOphir Munk { 9491256805dSOphir Munk return mlx5_set_flags(dev, ~IFF_UP, ~IFF_UP); 9501256805dSOphir Munk } 9511256805dSOphir Munk 9521256805dSOphir Munk /** 9531256805dSOphir Munk * DPDK callback to bring the link UP. 9541256805dSOphir Munk * 9551256805dSOphir Munk * @param dev 9561256805dSOphir Munk * Pointer to Ethernet device structure. 9571256805dSOphir Munk * 9581256805dSOphir Munk * @return 9591256805dSOphir Munk * 0 on success, a negative errno value otherwise and rte_errno is set. 9601256805dSOphir Munk */ 9611256805dSOphir Munk int 9621256805dSOphir Munk mlx5_set_link_up(struct rte_eth_dev *dev) 9631256805dSOphir Munk { 9641256805dSOphir Munk return mlx5_set_flags(dev, ~IFF_UP, IFF_UP); 9651256805dSOphir Munk } 9661256805dSOphir Munk 9671256805dSOphir Munk /** 9681256805dSOphir Munk * Check if mlx5 device was removed. 9691256805dSOphir Munk * 9701256805dSOphir Munk * @param dev 9711256805dSOphir Munk * Pointer to Ethernet device structure. 9721256805dSOphir Munk * 9731256805dSOphir Munk * @return 9741256805dSOphir Munk * 1 when device is removed, otherwise 0. 9751256805dSOphir Munk */ 9761256805dSOphir Munk int 9771256805dSOphir Munk mlx5_is_removed(struct rte_eth_dev *dev) 9781256805dSOphir Munk { 9791256805dSOphir Munk struct ibv_device_attr device_attr; 9801256805dSOphir Munk struct mlx5_priv *priv = dev->data->dev_private; 9811256805dSOphir Munk 9821256805dSOphir Munk if (mlx5_glue->query_device(priv->sh->ctx, &device_attr) == EIO) 9831256805dSOphir Munk return 1; 9841256805dSOphir Munk return 0; 9851256805dSOphir Munk } 9861256805dSOphir Munk 9871256805dSOphir Munk /** 988ef9ee13fSOphir Munk * Analyze gathered port parameters via sysfs to recognize master 989ef9ee13fSOphir Munk * and representor devices for E-Switch configuration. 990ef9ee13fSOphir Munk * 991ef9ee13fSOphir Munk * @param[in] device_dir 992ef9ee13fSOphir Munk * flag of presence of "device" directory under port device key. 993ef9ee13fSOphir Munk * @param[inout] switch_info 994ef9ee13fSOphir Munk * Port information, including port name as a number and port name 995ef9ee13fSOphir Munk * type if recognized 996ef9ee13fSOphir Munk * 997ef9ee13fSOphir Munk * @return 998ef9ee13fSOphir Munk * master and representor flags are set in switch_info according to 999ef9ee13fSOphir Munk * recognized parameters (if any). 1000ef9ee13fSOphir Munk */ 1001ef9ee13fSOphir Munk static void 1002ef9ee13fSOphir Munk mlx5_sysfs_check_switch_info(bool device_dir, 1003ef9ee13fSOphir Munk struct mlx5_switch_info *switch_info) 1004ef9ee13fSOphir Munk { 1005ef9ee13fSOphir Munk switch (switch_info->name_type) { 1006ef9ee13fSOphir Munk case MLX5_PHYS_PORT_NAME_TYPE_UNKNOWN: 1007ef9ee13fSOphir Munk /* 1008ef9ee13fSOphir Munk * Name is not recognized, assume the master, 1009ef9ee13fSOphir Munk * check the device directory presence. 1010ef9ee13fSOphir Munk */ 1011ef9ee13fSOphir Munk switch_info->master = device_dir; 1012ef9ee13fSOphir Munk break; 1013ef9ee13fSOphir Munk case MLX5_PHYS_PORT_NAME_TYPE_NOTSET: 1014ef9ee13fSOphir Munk /* 1015ef9ee13fSOphir Munk * Name is not set, this assumes the legacy naming 1016ef9ee13fSOphir Munk * schema for master, just check if there is 1017ef9ee13fSOphir Munk * a device directory. 1018ef9ee13fSOphir Munk */ 1019ef9ee13fSOphir Munk switch_info->master = device_dir; 1020ef9ee13fSOphir Munk break; 1021ef9ee13fSOphir Munk case MLX5_PHYS_PORT_NAME_TYPE_UPLINK: 1022ef9ee13fSOphir Munk /* New uplink naming schema recognized. */ 1023ef9ee13fSOphir Munk switch_info->master = 1; 1024ef9ee13fSOphir Munk break; 1025ef9ee13fSOphir Munk case MLX5_PHYS_PORT_NAME_TYPE_LEGACY: 1026ef9ee13fSOphir Munk /* Legacy representors naming schema. */ 1027ef9ee13fSOphir Munk switch_info->representor = !device_dir; 1028ef9ee13fSOphir Munk break; 1029ef9ee13fSOphir Munk case MLX5_PHYS_PORT_NAME_TYPE_PFHPF: 1030ef9ee13fSOphir Munk /* Fallthrough */ 1031ef9ee13fSOphir Munk case MLX5_PHYS_PORT_NAME_TYPE_PFVF: 1032cb95feefSXueming Li /* Fallthrough */ 1033cb95feefSXueming Li case MLX5_PHYS_PORT_NAME_TYPE_PFSF: 1034ef9ee13fSOphir Munk /* New representors naming schema. */ 1035ef9ee13fSOphir Munk switch_info->representor = 1; 1036ef9ee13fSOphir Munk break; 103759df97f1SXueming Li default: 103859df97f1SXueming Li switch_info->master = device_dir; 103959df97f1SXueming Li break; 1040ef9ee13fSOphir Munk } 1041ef9ee13fSOphir Munk } 1042ef9ee13fSOphir Munk 1043ef9ee13fSOphir Munk /** 10441256805dSOphir Munk * Get switch information associated with network interface. 10451256805dSOphir Munk * 10461256805dSOphir Munk * @param ifindex 10471256805dSOphir Munk * Network interface index. 10481256805dSOphir Munk * @param[out] info 10491256805dSOphir Munk * Switch information object, populated in case of success. 10501256805dSOphir Munk * 10511256805dSOphir Munk * @return 10521256805dSOphir Munk * 0 on success, a negative errno value otherwise and rte_errno is set. 10531256805dSOphir Munk */ 10541256805dSOphir Munk int 10551256805dSOphir Munk mlx5_sysfs_switch_info(unsigned int ifindex, struct mlx5_switch_info *info) 10561256805dSOphir Munk { 10571256805dSOphir Munk char ifname[IF_NAMESIZE]; 10581256805dSOphir Munk char port_name[IF_NAMESIZE]; 10591256805dSOphir Munk FILE *file; 10601256805dSOphir Munk struct mlx5_switch_info data = { 10611256805dSOphir Munk .master = 0, 10621256805dSOphir Munk .representor = 0, 10631256805dSOphir Munk .name_type = MLX5_PHYS_PORT_NAME_TYPE_NOTSET, 10641256805dSOphir Munk .port_name = 0, 10651256805dSOphir Munk .switch_id = 0, 10661256805dSOphir Munk }; 10671256805dSOphir Munk DIR *dir; 10681256805dSOphir Munk bool port_switch_id_set = false; 10691256805dSOphir Munk bool device_dir = false; 10701256805dSOphir Munk char c; 10711256805dSOphir Munk int ret; 10721256805dSOphir Munk 10731256805dSOphir Munk if (!if_indextoname(ifindex, ifname)) { 10741256805dSOphir Munk rte_errno = errno; 10751256805dSOphir Munk return -rte_errno; 10761256805dSOphir Munk } 10771256805dSOphir Munk 10781256805dSOphir Munk MKSTR(phys_port_name, "/sys/class/net/%s/phys_port_name", 10791256805dSOphir Munk ifname); 10801256805dSOphir Munk MKSTR(phys_switch_id, "/sys/class/net/%s/phys_switch_id", 10811256805dSOphir Munk ifname); 10821256805dSOphir Munk MKSTR(pci_device, "/sys/class/net/%s/device", 10831256805dSOphir Munk ifname); 10841256805dSOphir Munk 10851256805dSOphir Munk file = fopen(phys_port_name, "rb"); 10861256805dSOphir Munk if (file != NULL) { 108763d1db71SMichael Baum ret = fscanf(file, "%" RTE_STR(IF_NAMESIZE) "s", port_name); 10881256805dSOphir Munk fclose(file); 10891256805dSOphir Munk if (ret == 1) 10901256805dSOphir Munk mlx5_translate_port_name(port_name, &data); 10911256805dSOphir Munk } 10921256805dSOphir Munk file = fopen(phys_switch_id, "rb"); 10931256805dSOphir Munk if (file == NULL) { 10941256805dSOphir Munk rte_errno = errno; 10951256805dSOphir Munk return -rte_errno; 10961256805dSOphir Munk } 10971256805dSOphir Munk port_switch_id_set = 10981256805dSOphir Munk fscanf(file, "%" SCNx64 "%c", &data.switch_id, &c) == 2 && 10991256805dSOphir Munk c == '\n'; 11001256805dSOphir Munk fclose(file); 11011256805dSOphir Munk dir = opendir(pci_device); 11021256805dSOphir Munk if (dir != NULL) { 11031256805dSOphir Munk closedir(dir); 11041256805dSOphir Munk device_dir = true; 11051256805dSOphir Munk } 11061256805dSOphir Munk if (port_switch_id_set) { 11071256805dSOphir Munk /* We have some E-Switch configuration. */ 11081256805dSOphir Munk mlx5_sysfs_check_switch_info(device_dir, &data); 11091256805dSOphir Munk } 11101256805dSOphir Munk *info = data; 11111256805dSOphir Munk MLX5_ASSERT(!(data.master && data.representor)); 11121256805dSOphir Munk if (data.master && data.representor) { 11131256805dSOphir Munk DRV_LOG(ERR, "ifindex %u device is recognized as master" 11141256805dSOphir Munk " and as representor", ifindex); 11151256805dSOphir Munk rte_errno = ENODEV; 11161256805dSOphir Munk return -rte_errno; 11171256805dSOphir Munk } 11181256805dSOphir Munk return 0; 11191256805dSOphir Munk } 11201256805dSOphir Munk 11211256805dSOphir Munk /** 1122c21e5facSXueming Li * Get bond information associated with network interface. 1123c21e5facSXueming Li * 1124c21e5facSXueming Li * @param pf_ifindex 1125c21e5facSXueming Li * Network interface index of bond slave interface 1126c21e5facSXueming Li * @param[out] ifindex 1127c21e5facSXueming Li * Pointer to bond ifindex. 1128c21e5facSXueming Li * @param[out] ifname 1129c21e5facSXueming Li * Pointer to bond ifname. 1130c21e5facSXueming Li * 1131c21e5facSXueming Li * @return 1132c21e5facSXueming Li * 0 on success, a negative errno value otherwise and rte_errno is set. 1133c21e5facSXueming Li */ 1134c21e5facSXueming Li int 1135c21e5facSXueming Li mlx5_sysfs_bond_info(unsigned int pf_ifindex, unsigned int *ifindex, 1136c21e5facSXueming Li char *ifname) 1137c21e5facSXueming Li { 1138c21e5facSXueming Li char name[IF_NAMESIZE]; 1139c21e5facSXueming Li FILE *file; 1140c21e5facSXueming Li unsigned int index; 1141c21e5facSXueming Li int ret; 1142c21e5facSXueming Li 1143c21e5facSXueming Li if (!if_indextoname(pf_ifindex, name) || !strlen(name)) { 1144c21e5facSXueming Li rte_errno = errno; 1145c21e5facSXueming Li return -rte_errno; 1146c21e5facSXueming Li } 1147c21e5facSXueming Li MKSTR(bond_if, "/sys/class/net/%s/master/ifindex", name); 1148c21e5facSXueming Li /* read bond ifindex */ 1149c21e5facSXueming Li file = fopen(bond_if, "rb"); 1150c21e5facSXueming Li if (file == NULL) { 1151c21e5facSXueming Li rte_errno = errno; 1152c21e5facSXueming Li return -rte_errno; 1153c21e5facSXueming Li } 1154c21e5facSXueming Li ret = fscanf(file, "%u", &index); 1155c21e5facSXueming Li fclose(file); 1156c21e5facSXueming Li if (ret <= 0) { 1157c21e5facSXueming Li rte_errno = errno; 1158c21e5facSXueming Li return -rte_errno; 1159c21e5facSXueming Li } 1160c21e5facSXueming Li if (ifindex) 1161c21e5facSXueming Li *ifindex = index; 1162c21e5facSXueming Li 1163c21e5facSXueming Li /* read bond device name from symbol link */ 1164c21e5facSXueming Li if (ifname) { 1165c21e5facSXueming Li if (!if_indextoname(index, ifname)) { 1166c21e5facSXueming Li rte_errno = errno; 1167c21e5facSXueming Li return -rte_errno; 1168c21e5facSXueming Li } 1169c21e5facSXueming Li } 1170c21e5facSXueming Li return 0; 1171c21e5facSXueming Li } 1172c21e5facSXueming Li 1173c21e5facSXueming Li /** 11741256805dSOphir Munk * DPDK callback to retrieve plug-in module EEPROM information (type and size). 11751256805dSOphir Munk * 11761256805dSOphir Munk * @param dev 11771256805dSOphir Munk * Pointer to Ethernet device structure. 11781256805dSOphir Munk * @param[out] modinfo 11791256805dSOphir Munk * Storage for plug-in module EEPROM information. 11801256805dSOphir Munk * 11811256805dSOphir Munk * @return 11821256805dSOphir Munk * 0 on success, a negative errno value otherwise and rte_errno is set. 11831256805dSOphir Munk */ 11841256805dSOphir Munk int 11851256805dSOphir Munk mlx5_get_module_info(struct rte_eth_dev *dev, 11861256805dSOphir Munk struct rte_eth_dev_module_info *modinfo) 11871256805dSOphir Munk { 11881256805dSOphir Munk struct ethtool_modinfo info = { 11891256805dSOphir Munk .cmd = ETHTOOL_GMODULEINFO, 11901256805dSOphir Munk }; 11911256805dSOphir Munk struct ifreq ifr = (struct ifreq) { 11921256805dSOphir Munk .ifr_data = (void *)&info, 11931256805dSOphir Munk }; 11941256805dSOphir Munk int ret = 0; 11951256805dSOphir Munk 1196*e2bd08d5SChengchang Tang if (!dev) { 11971256805dSOphir Munk DRV_LOG(WARNING, "missing argument, cannot get module info"); 11981256805dSOphir Munk rte_errno = EINVAL; 11991256805dSOphir Munk return -rte_errno; 12001256805dSOphir Munk } 12011256805dSOphir Munk ret = mlx5_ifreq(dev, SIOCETHTOOL, &ifr); 12021256805dSOphir Munk if (ret) { 12031256805dSOphir Munk DRV_LOG(WARNING, "port %u ioctl(SIOCETHTOOL) failed: %s", 12041256805dSOphir Munk dev->data->port_id, strerror(rte_errno)); 12051256805dSOphir Munk return ret; 12061256805dSOphir Munk } 12071256805dSOphir Munk modinfo->type = info.type; 12081256805dSOphir Munk modinfo->eeprom_len = info.eeprom_len; 12091256805dSOphir Munk return ret; 12101256805dSOphir Munk } 12111256805dSOphir Munk 12121256805dSOphir Munk /** 12131256805dSOphir Munk * DPDK callback to retrieve plug-in module EEPROM data. 12141256805dSOphir Munk * 12151256805dSOphir Munk * @param dev 12161256805dSOphir Munk * Pointer to Ethernet device structure. 12171256805dSOphir Munk * @param[out] info 12181256805dSOphir Munk * Storage for plug-in module EEPROM data. 12191256805dSOphir Munk * 12201256805dSOphir Munk * @return 12211256805dSOphir Munk * 0 on success, a negative errno value otherwise and rte_errno is set. 12221256805dSOphir Munk */ 12231256805dSOphir Munk int mlx5_get_module_eeprom(struct rte_eth_dev *dev, 12241256805dSOphir Munk struct rte_dev_eeprom_info *info) 12251256805dSOphir Munk { 12261256805dSOphir Munk struct ethtool_eeprom *eeprom; 12271256805dSOphir Munk struct ifreq ifr; 12281256805dSOphir Munk int ret = 0; 12291256805dSOphir Munk 1230*e2bd08d5SChengchang Tang if (!dev) { 12311256805dSOphir Munk DRV_LOG(WARNING, "missing argument, cannot get module eeprom"); 12321256805dSOphir Munk rte_errno = EINVAL; 12331256805dSOphir Munk return -rte_errno; 12341256805dSOphir Munk } 12352175c4dcSSuanming Mou eeprom = mlx5_malloc(MLX5_MEM_ZERO, 12362175c4dcSSuanming Mou (sizeof(struct ethtool_eeprom) + info->length), 0, 12372175c4dcSSuanming Mou SOCKET_ID_ANY); 12381256805dSOphir Munk if (!eeprom) { 12391256805dSOphir Munk DRV_LOG(WARNING, "port %u cannot allocate memory for " 12401256805dSOphir Munk "eeprom data", dev->data->port_id); 12411256805dSOphir Munk rte_errno = ENOMEM; 12421256805dSOphir Munk return -rte_errno; 12431256805dSOphir Munk } 12441256805dSOphir Munk eeprom->cmd = ETHTOOL_GMODULEEEPROM; 12451256805dSOphir Munk eeprom->offset = info->offset; 12461256805dSOphir Munk eeprom->len = info->length; 12471256805dSOphir Munk ifr = (struct ifreq) { 12481256805dSOphir Munk .ifr_data = (void *)eeprom, 12491256805dSOphir Munk }; 12501256805dSOphir Munk ret = mlx5_ifreq(dev, SIOCETHTOOL, &ifr); 12511256805dSOphir Munk if (ret) 12521256805dSOphir Munk DRV_LOG(WARNING, "port %u ioctl(SIOCETHTOOL) failed: %s", 12531256805dSOphir Munk dev->data->port_id, strerror(rte_errno)); 12541256805dSOphir Munk else 12551256805dSOphir Munk rte_memcpy(info->data, eeprom->data, info->length); 12562175c4dcSSuanming Mou mlx5_free(eeprom); 12571256805dSOphir Munk return ret; 12581256805dSOphir Munk } 125998c4b12aSOphir Munk 126098c4b12aSOphir Munk /** 126198c4b12aSOphir Munk * Read device counters table. 126298c4b12aSOphir Munk * 126398c4b12aSOphir Munk * @param dev 126498c4b12aSOphir Munk * Pointer to Ethernet device. 12657ed15acdSXueming Li * @param[in] pf 12667ed15acdSXueming Li * PF index in case of bonding device, -1 otherwise 126798c4b12aSOphir Munk * @param[out] stats 126898c4b12aSOphir Munk * Counters table output buffer. 126998c4b12aSOphir Munk * 127098c4b12aSOphir Munk * @return 127198c4b12aSOphir Munk * 0 on success and stats is filled, negative errno value otherwise and 127298c4b12aSOphir Munk * rte_errno is set. 127398c4b12aSOphir Munk */ 12747ed15acdSXueming Li static int 12757ed15acdSXueming Li _mlx5_os_read_dev_counters(struct rte_eth_dev *dev, int pf, uint64_t *stats) 127698c4b12aSOphir Munk { 127798c4b12aSOphir Munk struct mlx5_priv *priv = dev->data->dev_private; 127898c4b12aSOphir Munk struct mlx5_xstats_ctrl *xstats_ctrl = &priv->xstats_ctrl; 127998c4b12aSOphir Munk unsigned int i; 128098c4b12aSOphir Munk struct ifreq ifr; 128198c4b12aSOphir Munk unsigned int stats_sz = xstats_ctrl->stats_n * sizeof(uint64_t); 128298c4b12aSOphir Munk unsigned char et_stat_buf[sizeof(struct ethtool_stats) + stats_sz]; 128398c4b12aSOphir Munk struct ethtool_stats *et_stats = (struct ethtool_stats *)et_stat_buf; 128498c4b12aSOphir Munk int ret; 128598c4b12aSOphir Munk 128698c4b12aSOphir Munk et_stats->cmd = ETHTOOL_GSTATS; 128798c4b12aSOphir Munk et_stats->n_stats = xstats_ctrl->stats_n; 128898c4b12aSOphir Munk ifr.ifr_data = (caddr_t)et_stats; 12897ed15acdSXueming Li if (pf >= 0) 12907ed15acdSXueming Li ret = mlx5_ifreq_by_ifname(priv->sh->bond.ports[pf].ifname, 12917ed15acdSXueming Li SIOCETHTOOL, &ifr); 12927ed15acdSXueming Li else 129398c4b12aSOphir Munk ret = mlx5_ifreq(dev, SIOCETHTOOL, &ifr); 129498c4b12aSOphir Munk if (ret) { 129598c4b12aSOphir Munk DRV_LOG(WARNING, 129698c4b12aSOphir Munk "port %u unable to read statistic values from device", 129798c4b12aSOphir Munk dev->data->port_id); 129898c4b12aSOphir Munk return ret; 129998c4b12aSOphir Munk } 130098c4b12aSOphir Munk for (i = 0; i != xstats_ctrl->mlx5_stats_n; ++i) { 13017ed15acdSXueming Li if (xstats_ctrl->info[i].dev) 13027ed15acdSXueming Li continue; 13037ed15acdSXueming Li stats[i] += (uint64_t) 13047ed15acdSXueming Li et_stats->data[xstats_ctrl->dev_table_idx[i]]; 13057ed15acdSXueming Li } 13067ed15acdSXueming Li return 0; 13077ed15acdSXueming Li } 13087ed15acdSXueming Li 13097ed15acdSXueming Li /** 13107ed15acdSXueming Li * Read device counters. 13117ed15acdSXueming Li * 13127ed15acdSXueming Li * @param dev 13137ed15acdSXueming Li * Pointer to Ethernet device. 13147ed15acdSXueming Li * @param[out] stats 13157ed15acdSXueming Li * Counters table output buffer. 13167ed15acdSXueming Li * 13177ed15acdSXueming Li * @return 13187ed15acdSXueming Li * 0 on success and stats is filled, negative errno value otherwise and 13197ed15acdSXueming Li * rte_errno is set. 13207ed15acdSXueming Li */ 13217ed15acdSXueming Li int 13227ed15acdSXueming Li mlx5_os_read_dev_counters(struct rte_eth_dev *dev, uint64_t *stats) 13237ed15acdSXueming Li { 13247ed15acdSXueming Li struct mlx5_priv *priv = dev->data->dev_private; 13257ed15acdSXueming Li struct mlx5_xstats_ctrl *xstats_ctrl = &priv->xstats_ctrl; 13267ed15acdSXueming Li int ret = 0, i; 13277ed15acdSXueming Li 13287ed15acdSXueming Li memset(stats, 0, sizeof(*stats) * xstats_ctrl->mlx5_stats_n); 13297ed15acdSXueming Li /* Read ifreq counters. */ 13307ed15acdSXueming Li if (priv->master && priv->pf_bond >= 0) { 13317ed15acdSXueming Li /* Sum xstats from bonding device member ports. */ 13327ed15acdSXueming Li for (i = 0; i < priv->sh->bond.n_port; i++) { 13337ed15acdSXueming Li ret = _mlx5_os_read_dev_counters(dev, i, stats); 13347ed15acdSXueming Li if (ret) 13357ed15acdSXueming Li return ret; 13367ed15acdSXueming Li } 13377ed15acdSXueming Li } else { 13387ed15acdSXueming Li ret = _mlx5_os_read_dev_counters(dev, -1, stats); 13397ed15acdSXueming Li } 13407ed15acdSXueming Li /* Read IB counters. */ 13417ed15acdSXueming Li for (i = 0; i != xstats_ctrl->mlx5_stats_n; ++i) { 13427ed15acdSXueming Li if (!xstats_ctrl->info[i].dev) 13437ed15acdSXueming Li continue; 13447ed15acdSXueming Li ret = mlx5_os_read_dev_stat(priv, xstats_ctrl->info[i].ctr_name, 134598c4b12aSOphir Munk &stats[i]); 134698c4b12aSOphir Munk /* return last xstats counter if fail to read. */ 13477ed15acdSXueming Li if (ret != 0) 134898c4b12aSOphir Munk xstats_ctrl->xstats[i] = stats[i]; 134998c4b12aSOphir Munk else 135098c4b12aSOphir Munk stats[i] = xstats_ctrl->xstats[i]; 135198c4b12aSOphir Munk } 13527ed15acdSXueming Li return ret; 135398c4b12aSOphir Munk } 135498c4b12aSOphir Munk 135598c4b12aSOphir Munk /** 135698c4b12aSOphir Munk * Query the number of statistics provided by ETHTOOL. 135798c4b12aSOphir Munk * 135898c4b12aSOphir Munk * @param dev 135998c4b12aSOphir Munk * Pointer to Ethernet device. 136098c4b12aSOphir Munk * 136198c4b12aSOphir Munk * @return 136298c4b12aSOphir Munk * Number of statistics on success, negative errno value otherwise and 136398c4b12aSOphir Munk * rte_errno is set. 136498c4b12aSOphir Munk */ 136598c4b12aSOphir Munk int 136698c4b12aSOphir Munk mlx5_os_get_stats_n(struct rte_eth_dev *dev) 136798c4b12aSOphir Munk { 13687ed15acdSXueming Li struct mlx5_priv *priv = dev->data->dev_private; 136998c4b12aSOphir Munk struct ethtool_drvinfo drvinfo; 137098c4b12aSOphir Munk struct ifreq ifr; 137198c4b12aSOphir Munk int ret; 137298c4b12aSOphir Munk 137398c4b12aSOphir Munk drvinfo.cmd = ETHTOOL_GDRVINFO; 137498c4b12aSOphir Munk ifr.ifr_data = (caddr_t)&drvinfo; 13757ed15acdSXueming Li if (priv->master && priv->pf_bond >= 0) 13767ed15acdSXueming Li /* Bonding PF. */ 13777ed15acdSXueming Li ret = mlx5_ifreq_by_ifname(priv->sh->bond.ports[0].ifname, 13787ed15acdSXueming Li SIOCETHTOOL, &ifr); 13797ed15acdSXueming Li else 138098c4b12aSOphir Munk ret = mlx5_ifreq(dev, SIOCETHTOOL, &ifr); 138198c4b12aSOphir Munk if (ret) { 138298c4b12aSOphir Munk DRV_LOG(WARNING, "port %u unable to query number of statistics", 138398c4b12aSOphir Munk dev->data->port_id); 138498c4b12aSOphir Munk return ret; 138598c4b12aSOphir Munk } 138698c4b12aSOphir Munk return drvinfo.n_stats; 138798c4b12aSOphir Munk } 138898c4b12aSOphir Munk 138998c4b12aSOphir Munk static const struct mlx5_counter_ctrl mlx5_counters_init[] = { 139098c4b12aSOphir Munk { 13911101809bSViacheslav Ovsiienko .dpdk_name = "rx_unicast_bytes", 139298c4b12aSOphir Munk .ctr_name = "rx_vport_unicast_bytes", 139398c4b12aSOphir Munk }, 139498c4b12aSOphir Munk { 13951101809bSViacheslav Ovsiienko .dpdk_name = "rx_multicast_bytes", 139698c4b12aSOphir Munk .ctr_name = "rx_vport_multicast_bytes", 139798c4b12aSOphir Munk }, 139898c4b12aSOphir Munk { 13991101809bSViacheslav Ovsiienko .dpdk_name = "rx_broadcast_bytes", 140098c4b12aSOphir Munk .ctr_name = "rx_vport_broadcast_bytes", 140198c4b12aSOphir Munk }, 140298c4b12aSOphir Munk { 14031101809bSViacheslav Ovsiienko .dpdk_name = "rx_unicast_packets", 140498c4b12aSOphir Munk .ctr_name = "rx_vport_unicast_packets", 140598c4b12aSOphir Munk }, 140698c4b12aSOphir Munk { 14071101809bSViacheslav Ovsiienko .dpdk_name = "rx_multicast_packets", 140898c4b12aSOphir Munk .ctr_name = "rx_vport_multicast_packets", 140998c4b12aSOphir Munk }, 141098c4b12aSOphir Munk { 14111101809bSViacheslav Ovsiienko .dpdk_name = "rx_broadcast_packets", 141298c4b12aSOphir Munk .ctr_name = "rx_vport_broadcast_packets", 141398c4b12aSOphir Munk }, 141498c4b12aSOphir Munk { 14151101809bSViacheslav Ovsiienko .dpdk_name = "tx_unicast_bytes", 141698c4b12aSOphir Munk .ctr_name = "tx_vport_unicast_bytes", 141798c4b12aSOphir Munk }, 141898c4b12aSOphir Munk { 14191101809bSViacheslav Ovsiienko .dpdk_name = "tx_multicast_bytes", 142098c4b12aSOphir Munk .ctr_name = "tx_vport_multicast_bytes", 142198c4b12aSOphir Munk }, 142298c4b12aSOphir Munk { 14231101809bSViacheslav Ovsiienko .dpdk_name = "tx_broadcast_bytes", 142498c4b12aSOphir Munk .ctr_name = "tx_vport_broadcast_bytes", 142598c4b12aSOphir Munk }, 142698c4b12aSOphir Munk { 14271101809bSViacheslav Ovsiienko .dpdk_name = "tx_unicast_packets", 142898c4b12aSOphir Munk .ctr_name = "tx_vport_unicast_packets", 142998c4b12aSOphir Munk }, 143098c4b12aSOphir Munk { 14311101809bSViacheslav Ovsiienko .dpdk_name = "tx_multicast_packets", 143298c4b12aSOphir Munk .ctr_name = "tx_vport_multicast_packets", 143398c4b12aSOphir Munk }, 143498c4b12aSOphir Munk { 14351101809bSViacheslav Ovsiienko .dpdk_name = "tx_broadcast_packets", 143698c4b12aSOphir Munk .ctr_name = "tx_vport_broadcast_packets", 143798c4b12aSOphir Munk }, 143898c4b12aSOphir Munk { 14391101809bSViacheslav Ovsiienko .dpdk_name = "rx_wqe_errors", 144098c4b12aSOphir Munk .ctr_name = "rx_wqe_err", 144198c4b12aSOphir Munk }, 144298c4b12aSOphir Munk { 14431101809bSViacheslav Ovsiienko .dpdk_name = "rx_phy_crc_errors", 144498c4b12aSOphir Munk .ctr_name = "rx_crc_errors_phy", 144598c4b12aSOphir Munk }, 144698c4b12aSOphir Munk { 14471101809bSViacheslav Ovsiienko .dpdk_name = "rx_phy_in_range_len_errors", 144898c4b12aSOphir Munk .ctr_name = "rx_in_range_len_errors_phy", 144998c4b12aSOphir Munk }, 145098c4b12aSOphir Munk { 14511101809bSViacheslav Ovsiienko .dpdk_name = "rx_phy_symbol_errors", 145298c4b12aSOphir Munk .ctr_name = "rx_symbol_err_phy", 145398c4b12aSOphir Munk }, 145498c4b12aSOphir Munk { 14551101809bSViacheslav Ovsiienko .dpdk_name = "tx_phy_errors", 145698c4b12aSOphir Munk .ctr_name = "tx_errors_phy", 145798c4b12aSOphir Munk }, 145898c4b12aSOphir Munk { 145998c4b12aSOphir Munk .dpdk_name = "rx_out_of_buffer", 146098c4b12aSOphir Munk .ctr_name = "out_of_buffer", 146198c4b12aSOphir Munk .dev = 1, 146298c4b12aSOphir Munk }, 146398c4b12aSOphir Munk { 14641101809bSViacheslav Ovsiienko .dpdk_name = "tx_phy_packets", 146598c4b12aSOphir Munk .ctr_name = "tx_packets_phy", 146698c4b12aSOphir Munk }, 146798c4b12aSOphir Munk { 14681101809bSViacheslav Ovsiienko .dpdk_name = "rx_phy_packets", 146998c4b12aSOphir Munk .ctr_name = "rx_packets_phy", 147098c4b12aSOphir Munk }, 147198c4b12aSOphir Munk { 14721101809bSViacheslav Ovsiienko .dpdk_name = "tx_phy_discard_packets", 147398c4b12aSOphir Munk .ctr_name = "tx_discards_phy", 147498c4b12aSOphir Munk }, 147598c4b12aSOphir Munk { 14761101809bSViacheslav Ovsiienko .dpdk_name = "rx_phy_discard_packets", 147798c4b12aSOphir Munk .ctr_name = "rx_discards_phy", 147898c4b12aSOphir Munk }, 147998c4b12aSOphir Munk { 14801101809bSViacheslav Ovsiienko .dpdk_name = "tx_phy_bytes", 148198c4b12aSOphir Munk .ctr_name = "tx_bytes_phy", 148298c4b12aSOphir Munk }, 148398c4b12aSOphir Munk { 14841101809bSViacheslav Ovsiienko .dpdk_name = "rx_phy_bytes", 148598c4b12aSOphir Munk .ctr_name = "rx_bytes_phy", 148698c4b12aSOphir Munk }, 148798c4b12aSOphir Munk /* Representor only */ 148898c4b12aSOphir Munk { 14891101809bSViacheslav Ovsiienko .dpdk_name = "rx_vport_packets", 149098c4b12aSOphir Munk .ctr_name = "vport_rx_packets", 149198c4b12aSOphir Munk }, 149298c4b12aSOphir Munk { 14931101809bSViacheslav Ovsiienko .dpdk_name = "rx_vport_bytes", 149498c4b12aSOphir Munk .ctr_name = "vport_rx_bytes", 149598c4b12aSOphir Munk }, 149698c4b12aSOphir Munk { 14971101809bSViacheslav Ovsiienko .dpdk_name = "tx_vport_packets", 149898c4b12aSOphir Munk .ctr_name = "vport_tx_packets", 149998c4b12aSOphir Munk }, 150098c4b12aSOphir Munk { 15011101809bSViacheslav Ovsiienko .dpdk_name = "tx_vport_bytes", 150298c4b12aSOphir Munk .ctr_name = "vport_tx_bytes", 150398c4b12aSOphir Munk }, 150498c4b12aSOphir Munk }; 150598c4b12aSOphir Munk 150698c4b12aSOphir Munk static const unsigned int xstats_n = RTE_DIM(mlx5_counters_init); 150798c4b12aSOphir Munk 150898c4b12aSOphir Munk /** 150998c4b12aSOphir Munk * Init the structures to read device counters. 151098c4b12aSOphir Munk * 151198c4b12aSOphir Munk * @param dev 151298c4b12aSOphir Munk * Pointer to Ethernet device. 151398c4b12aSOphir Munk */ 151498c4b12aSOphir Munk void 151598c4b12aSOphir Munk mlx5_os_stats_init(struct rte_eth_dev *dev) 151698c4b12aSOphir Munk { 151798c4b12aSOphir Munk struct mlx5_priv *priv = dev->data->dev_private; 151898c4b12aSOphir Munk struct mlx5_xstats_ctrl *xstats_ctrl = &priv->xstats_ctrl; 151998c4b12aSOphir Munk struct mlx5_stats_ctrl *stats_ctrl = &priv->stats_ctrl; 152098c4b12aSOphir Munk unsigned int i; 152198c4b12aSOphir Munk unsigned int j; 152298c4b12aSOphir Munk struct ifreq ifr; 152398c4b12aSOphir Munk struct ethtool_gstrings *strings = NULL; 152498c4b12aSOphir Munk unsigned int dev_stats_n; 152598c4b12aSOphir Munk unsigned int str_sz; 152698c4b12aSOphir Munk int ret; 152798c4b12aSOphir Munk 152898c4b12aSOphir Munk /* So that it won't aggregate for each init. */ 152998c4b12aSOphir Munk xstats_ctrl->mlx5_stats_n = 0; 153098c4b12aSOphir Munk ret = mlx5_os_get_stats_n(dev); 153198c4b12aSOphir Munk if (ret < 0) { 153298c4b12aSOphir Munk DRV_LOG(WARNING, "port %u no extended statistics available", 153398c4b12aSOphir Munk dev->data->port_id); 153498c4b12aSOphir Munk return; 153598c4b12aSOphir Munk } 153698c4b12aSOphir Munk dev_stats_n = ret; 153798c4b12aSOphir Munk /* Allocate memory to grab stat names and values. */ 153898c4b12aSOphir Munk str_sz = dev_stats_n * ETH_GSTRING_LEN; 153998c4b12aSOphir Munk strings = (struct ethtool_gstrings *) 154098c4b12aSOphir Munk mlx5_malloc(0, str_sz + sizeof(struct ethtool_gstrings), 0, 154198c4b12aSOphir Munk SOCKET_ID_ANY); 154298c4b12aSOphir Munk if (!strings) { 154398c4b12aSOphir Munk DRV_LOG(WARNING, "port %u unable to allocate memory for xstats", 154498c4b12aSOphir Munk dev->data->port_id); 154598c4b12aSOphir Munk return; 154698c4b12aSOphir Munk } 154798c4b12aSOphir Munk strings->cmd = ETHTOOL_GSTRINGS; 154898c4b12aSOphir Munk strings->string_set = ETH_SS_STATS; 154998c4b12aSOphir Munk strings->len = dev_stats_n; 155098c4b12aSOphir Munk ifr.ifr_data = (caddr_t)strings; 15517ed15acdSXueming Li if (priv->master && priv->pf_bond >= 0) 15527ed15acdSXueming Li /* Bonding master. */ 15537ed15acdSXueming Li ret = mlx5_ifreq_by_ifname(priv->sh->bond.ports[0].ifname, 15547ed15acdSXueming Li SIOCETHTOOL, &ifr); 15557ed15acdSXueming Li else 155698c4b12aSOphir Munk ret = mlx5_ifreq(dev, SIOCETHTOOL, &ifr); 155798c4b12aSOphir Munk if (ret) { 155898c4b12aSOphir Munk DRV_LOG(WARNING, "port %u unable to get statistic names", 155998c4b12aSOphir Munk dev->data->port_id); 156098c4b12aSOphir Munk goto free; 156198c4b12aSOphir Munk } 156298c4b12aSOphir Munk for (i = 0; i != dev_stats_n; ++i) { 156398c4b12aSOphir Munk const char *curr_string = (const char *) 156498c4b12aSOphir Munk &strings->data[i * ETH_GSTRING_LEN]; 156598c4b12aSOphir Munk 156698c4b12aSOphir Munk for (j = 0; j != xstats_n; ++j) { 156798c4b12aSOphir Munk if (!strcmp(mlx5_counters_init[j].ctr_name, 156898c4b12aSOphir Munk curr_string)) { 156998c4b12aSOphir Munk unsigned int idx = xstats_ctrl->mlx5_stats_n++; 157098c4b12aSOphir Munk 157198c4b12aSOphir Munk xstats_ctrl->dev_table_idx[idx] = i; 157298c4b12aSOphir Munk xstats_ctrl->info[idx] = mlx5_counters_init[j]; 157398c4b12aSOphir Munk break; 157498c4b12aSOphir Munk } 157598c4b12aSOphir Munk } 157698c4b12aSOphir Munk } 157798c4b12aSOphir Munk /* Add dev counters. */ 157898c4b12aSOphir Munk for (i = 0; i != xstats_n; ++i) { 157998c4b12aSOphir Munk if (mlx5_counters_init[i].dev) { 158098c4b12aSOphir Munk unsigned int idx = xstats_ctrl->mlx5_stats_n++; 158198c4b12aSOphir Munk 158298c4b12aSOphir Munk xstats_ctrl->info[idx] = mlx5_counters_init[i]; 158398c4b12aSOphir Munk xstats_ctrl->hw_stats[idx] = 0; 158498c4b12aSOphir Munk } 158598c4b12aSOphir Munk } 158698c4b12aSOphir Munk MLX5_ASSERT(xstats_ctrl->mlx5_stats_n <= MLX5_MAX_XSTATS); 158798c4b12aSOphir Munk xstats_ctrl->stats_n = dev_stats_n; 158898c4b12aSOphir Munk /* Copy to base at first time. */ 158998c4b12aSOphir Munk ret = mlx5_os_read_dev_counters(dev, xstats_ctrl->base); 159098c4b12aSOphir Munk if (ret) 159198c4b12aSOphir Munk DRV_LOG(ERR, "port %u cannot read device counters: %s", 159298c4b12aSOphir Munk dev->data->port_id, strerror(rte_errno)); 159398c4b12aSOphir Munk mlx5_os_read_dev_stat(priv, "out_of_buffer", &stats_ctrl->imissed_base); 159498c4b12aSOphir Munk stats_ctrl->imissed = 0; 159598c4b12aSOphir Munk free: 159698c4b12aSOphir Munk mlx5_free(strings); 159798c4b12aSOphir Munk } 159898c4b12aSOphir Munk 159998c4b12aSOphir Munk /** 160098c4b12aSOphir Munk * Get MAC address by querying netdevice. 160198c4b12aSOphir Munk * 160298c4b12aSOphir Munk * @param[in] dev 160398c4b12aSOphir Munk * Pointer to Ethernet device. 160498c4b12aSOphir Munk * @param[out] mac 160598c4b12aSOphir Munk * MAC address output buffer. 160698c4b12aSOphir Munk * 160798c4b12aSOphir Munk * @return 160898c4b12aSOphir Munk * 0 on success, a negative errno value otherwise and rte_errno is set. 160998c4b12aSOphir Munk */ 161098c4b12aSOphir Munk int 161198c4b12aSOphir Munk mlx5_get_mac(struct rte_eth_dev *dev, uint8_t (*mac)[RTE_ETHER_ADDR_LEN]) 161298c4b12aSOphir Munk { 161398c4b12aSOphir Munk struct ifreq request; 161498c4b12aSOphir Munk int ret; 161598c4b12aSOphir Munk 161698c4b12aSOphir Munk ret = mlx5_ifreq(dev, SIOCGIFHWADDR, &request); 161798c4b12aSOphir Munk if (ret) 161898c4b12aSOphir Munk return ret; 161998c4b12aSOphir Munk memcpy(mac, request.ifr_hwaddr.sa_data, RTE_ETHER_ADDR_LEN); 162098c4b12aSOphir Munk return 0; 162198c4b12aSOphir Munk } 162298c4b12aSOphir Munk 1623