mirror of
https://git.kernel.org/pub/scm/network/iproute2/iproute2.git
synced 2024-11-15 22:15:13 +08:00
b0a688a542
Instead of doing open-coded solution to generate JSON and prints, let's reuse existing infrastructure and APIs to do the same as ip/*. Before this change: if (rd->json_output) jsonw_uint_field(rd->jw, "sm_lid", sm_lid); else pr_out("sm_lid %u ", sm_lid); After this change: print_uint(PRINT_ANY, "sm_lid", "sm_lid %u ", sm_lid); All the print functions are converted to support color but for now the type of color is COLOR_NONE. This is done as a preparation to addition of color enable option. Such change will require rewrite of command line arguments parser which is out-of-scope for this patch. Signed-off-by: Ido Kalir <idok@mellanox.com> Signed-off-by: Leon Romanovsky <leonro@mellanox.com> Signed-off-by: David Ahern <dsahern@gmail.com>
385 lines
9.3 KiB
C
385 lines
9.3 KiB
C
// SPDX-License-Identifier: GPL-2.0 OR Linux-OpenIB
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/*
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* link.c RDMA tool
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* Authors: Leon Romanovsky <leonro@mellanox.com>
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*/
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#include "rdma.h"
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static int link_help(struct rd *rd)
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{
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pr_out("Usage: %s link show [DEV/PORT_INDEX]\n", rd->filename);
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pr_out("Usage: %s link add NAME type TYPE netdev NETDEV\n",
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rd->filename);
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pr_out("Usage: %s link delete NAME\n", rd->filename);
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return 0;
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}
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static const char *caps_to_str(uint32_t idx)
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{
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#define RDMA_PORT_FLAGS_LOW(x) \
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x(RESERVED, 0) \
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x(SM, 1) \
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x(NOTICE, 2) \
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x(TRAP, 3) \
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x(OPT_IPD, 4) \
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x(AUTO_MIGR, 5) \
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x(SL_MAP, 6) \
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x(MKEY_NVRAM, 7) \
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x(PKEY_NVRAM, 8) \
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x(LED_INFO, 9) \
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x(SM_DISABLED, 10) \
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x(SYS_IMAGE_GUID, 11) \
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x(PKEY_SW_EXT_PORT_TRAP, 12) \
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x(CABLE_INFO, 13) \
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x(EXTENDED_SPEEDS, 14) \
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x(CAP_MASK2, 15) \
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x(CM, 16) \
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x(SNMP_TUNNEL, 17) \
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x(REINIT, 18) \
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x(DEVICE_MGMT, 19) \
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x(VENDOR_CLASS, 20) \
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x(DR_NOTICE, 21) \
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x(CAP_MASK_NOTICE, 22) \
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x(BOOT_MGMT, 23) \
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x(LINK_LATENCY, 24) \
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x(CLIENT_REG, 25) \
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x(OTHER_LOCAL_CHANGES, 26) \
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x(LINK_SPPED_WIDTH, 27) \
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x(VENDOR_SPECIFIC_MADS, 28) \
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x(MULT_PKER_TRAP, 29) \
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x(MULT_FDB, 30) \
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x(HIERARCHY_INFO, 31)
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#define RDMA_PORT_FLAGS_HIGH(x) \
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x(SET_NODE_DESC, 0) \
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x(EXT_INFO, 1) \
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x(VIRT, 2) \
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x(SWITCH_POR_STATE_TABLE, 3) \
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x(LINK_WIDTH_2X, 4) \
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x(LINK_SPEED_HDR, 5)
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/*
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* Separation below is needed to allow compilation of rdmatool
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* on 32bits systems. On such systems, C-enum is limited to be
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* int and can't hold more than 32 bits.
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*/
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enum { RDMA_PORT_FLAGS_LOW(RDMA_BITMAP_ENUM) };
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enum { RDMA_PORT_FLAGS_HIGH(RDMA_BITMAP_ENUM) };
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static const char * const
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rdma_port_names_low[] = { RDMA_PORT_FLAGS_LOW(RDMA_BITMAP_NAMES) };
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static const char * const
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rdma_port_names_high[] = { RDMA_PORT_FLAGS_HIGH(RDMA_BITMAP_NAMES) };
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uint32_t high_idx;
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#undef RDMA_PORT_FLAGS_LOW
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#undef RDMA_PORT_FLAGS_HIGH
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if (idx < ARRAY_SIZE(rdma_port_names_low) && rdma_port_names_low[idx])
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return rdma_port_names_low[idx];
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high_idx = idx - ARRAY_SIZE(rdma_port_names_low);
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if (high_idx < ARRAY_SIZE(rdma_port_names_high) &&
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rdma_port_names_high[high_idx])
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return rdma_port_names_high[high_idx];
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return "UNKNOWN";
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}
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static void link_print_caps(struct rd *rd, struct nlattr **tb)
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{
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uint64_t caps;
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uint32_t idx;
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if (!tb[RDMA_NLDEV_ATTR_CAP_FLAGS])
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return;
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caps = mnl_attr_get_u64(tb[RDMA_NLDEV_ATTR_CAP_FLAGS]);
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print_color_string(PRINT_FP, COLOR_NONE, NULL, "\n caps: <", NULL);
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open_json_array(PRINT_JSON, "caps");
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for (idx = 0; caps; idx++) {
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if (caps & 0x1)
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print_color_string(PRINT_ANY, COLOR_NONE, NULL,
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caps >> 0x1 ? "%s, " : "%s",
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caps_to_str(idx));
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caps >>= 0x1;
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}
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close_json_array(PRINT_ANY, ">");
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}
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static void link_print_subnet_prefix(struct rd *rd, struct nlattr **tb)
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{
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uint64_t subnet_prefix;
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uint16_t vp[4];
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char str[32];
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if (!tb[RDMA_NLDEV_ATTR_SUBNET_PREFIX])
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return;
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subnet_prefix = mnl_attr_get_u64(tb[RDMA_NLDEV_ATTR_SUBNET_PREFIX]);
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memcpy(vp, &subnet_prefix, sizeof(uint64_t));
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snprintf(str, 32, "%04x:%04x:%04x:%04x", vp[3], vp[2], vp[1], vp[0]);
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print_color_string(PRINT_ANY, COLOR_NONE, "subnet_prefix",
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"subnet_prefix %s ", str);
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}
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static void link_print_lid(struct rd *rd, struct nlattr **tb)
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{
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uint32_t lid;
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if (!tb[RDMA_NLDEV_ATTR_LID])
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return;
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lid = mnl_attr_get_u32(tb[RDMA_NLDEV_ATTR_LID]);
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print_color_uint(PRINT_ANY, COLOR_NONE, "lid", "lid %u ", lid);
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}
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static void link_print_sm_lid(struct rd *rd, struct nlattr **tb)
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{
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uint32_t sm_lid;
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if (!tb[RDMA_NLDEV_ATTR_SM_LID])
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return;
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sm_lid = mnl_attr_get_u32(tb[RDMA_NLDEV_ATTR_SM_LID]);
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print_color_uint(PRINT_ANY, COLOR_NONE, "sm_lid", "sm_lid %u ", sm_lid);
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}
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static void link_print_lmc(struct rd *rd, struct nlattr **tb)
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{
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uint8_t lmc;
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if (!tb[RDMA_NLDEV_ATTR_LMC])
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return;
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lmc = mnl_attr_get_u8(tb[RDMA_NLDEV_ATTR_LMC]);
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print_color_uint(PRINT_ANY, COLOR_NONE, "lmc", "lmc %u ", lmc);
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}
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static const char *link_state_to_str(uint8_t link_state)
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{
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static const char * const link_state_str[] = { "NOP", "DOWN",
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"INIT", "ARMED",
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"ACTIVE",
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"ACTIVE_DEFER" };
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if (link_state < ARRAY_SIZE(link_state_str))
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return link_state_str[link_state];
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return "UNKNOWN";
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}
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static void link_print_state(struct rd *rd, struct nlattr **tb)
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{
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uint8_t state;
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if (!tb[RDMA_NLDEV_ATTR_PORT_STATE])
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return;
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state = mnl_attr_get_u8(tb[RDMA_NLDEV_ATTR_PORT_STATE]);
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print_color_string(PRINT_ANY, COLOR_NONE, "state", "state %s ",
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link_state_to_str(state));
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}
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static const char *phys_state_to_str(uint8_t phys_state)
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{
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static const char * const phys_state_str[] = { "NOP", "SLEEP",
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"POLLING", "DISABLED",
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"ARMED", "LINK_UP",
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"LINK_ERROR_RECOVER",
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"PHY_TEST", "UNKNOWN",
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"OPA_OFFLINE",
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"UNKNOWN", "OPA_TEST" };
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if (phys_state < ARRAY_SIZE(phys_state_str))
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return phys_state_str[phys_state];
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return "UNKNOWN";
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};
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static void link_print_phys_state(struct rd *rd, struct nlattr **tb)
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{
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uint8_t phys_state;
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if (!tb[RDMA_NLDEV_ATTR_PORT_PHYS_STATE])
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return;
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phys_state = mnl_attr_get_u8(tb[RDMA_NLDEV_ATTR_PORT_PHYS_STATE]);
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print_color_string(PRINT_ANY, COLOR_NONE, "physical_state",
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"physical_state %s ", phys_state_to_str(phys_state));
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}
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static void link_print_netdev(struct rd *rd, struct nlattr **tb)
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{
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const char *netdev_name;
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uint32_t idx;
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if (!tb[RDMA_NLDEV_ATTR_NDEV_NAME] || !tb[RDMA_NLDEV_ATTR_NDEV_INDEX])
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return;
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netdev_name = mnl_attr_get_str(tb[RDMA_NLDEV_ATTR_NDEV_NAME]);
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idx = mnl_attr_get_u32(tb[RDMA_NLDEV_ATTR_NDEV_INDEX]);
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print_color_string(PRINT_ANY, COLOR_NONE, "netdev", "netdev %s ",
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netdev_name);
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print_color_uint(PRINT_ANY, COLOR_NONE, "netdev_index",
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rd->show_details ? "netdev_index %u " : "", idx);
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}
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static int link_parse_cb(const struct nlmsghdr *nlh, void *data)
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{
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struct nlattr *tb[RDMA_NLDEV_ATTR_MAX] = {};
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struct rd *rd = data;
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uint32_t port, idx;
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const char *name;
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mnl_attr_parse(nlh, 0, rd_attr_cb, tb);
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if (!tb[RDMA_NLDEV_ATTR_DEV_INDEX] || !tb[RDMA_NLDEV_ATTR_DEV_NAME])
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return MNL_CB_ERROR;
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if (!tb[RDMA_NLDEV_ATTR_PORT_INDEX]) {
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pr_err("This tool doesn't support switches yet\n");
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return MNL_CB_ERROR;
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}
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idx = mnl_attr_get_u32(tb[RDMA_NLDEV_ATTR_DEV_INDEX]);
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port = mnl_attr_get_u32(tb[RDMA_NLDEV_ATTR_PORT_INDEX]);
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name = mnl_attr_get_str(tb[RDMA_NLDEV_ATTR_DEV_NAME]);
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open_json_object(NULL);
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print_color_uint(PRINT_JSON, COLOR_NONE, "ifindex", NULL, idx);
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print_color_string(PRINT_ANY, COLOR_NONE, "ifname", "link %s/", name);
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print_color_uint(PRINT_ANY, COLOR_NONE, "port", "%u ", port);
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link_print_subnet_prefix(rd, tb);
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link_print_lid(rd, tb);
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link_print_sm_lid(rd, tb);
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link_print_lmc(rd, tb);
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link_print_state(rd, tb);
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link_print_phys_state(rd, tb);
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link_print_netdev(rd, tb);
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if (rd->show_details)
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link_print_caps(rd, tb);
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newline(rd);
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return MNL_CB_OK;
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}
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static int link_no_args(struct rd *rd)
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{
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uint32_t seq;
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int ret;
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rd_prepare_msg(rd, RDMA_NLDEV_CMD_PORT_GET, &seq,
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(NLM_F_REQUEST | NLM_F_ACK));
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mnl_attr_put_u32(rd->nlh, RDMA_NLDEV_ATTR_DEV_INDEX, rd->dev_idx);
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mnl_attr_put_u32(rd->nlh, RDMA_NLDEV_ATTR_PORT_INDEX, rd->port_idx);
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ret = rd_send_msg(rd);
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if (ret)
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return ret;
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ret = rd_recv_msg(rd, link_parse_cb, rd, seq);
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return ret;
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}
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static int link_one_show(struct rd *rd)
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{
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const struct rd_cmd cmds[] = {
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{ NULL, link_no_args},
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{ 0 }
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};
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if (!rd->port_idx)
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return 0;
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return rd_exec_cmd(rd, cmds, "parameter");
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}
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static int link_show(struct rd *rd)
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{
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return rd_exec_link(rd, link_one_show, true);
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}
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static int link_add_netdev(struct rd *rd)
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{
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char *link_netdev;
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uint32_t seq;
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if (rd_no_arg(rd)) {
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pr_err("Please provide a net device name.\n");
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return -EINVAL;
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}
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link_netdev = rd_argv(rd);
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rd_prepare_msg(rd, RDMA_NLDEV_CMD_NEWLINK, &seq,
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(NLM_F_REQUEST | NLM_F_ACK));
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mnl_attr_put_strz(rd->nlh, RDMA_NLDEV_ATTR_DEV_NAME, rd->link_name);
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mnl_attr_put_strz(rd->nlh, RDMA_NLDEV_ATTR_LINK_TYPE, rd->link_type);
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mnl_attr_put_strz(rd->nlh, RDMA_NLDEV_ATTR_NDEV_NAME, link_netdev);
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return rd_sendrecv_msg(rd, seq);
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}
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static int link_add_type(struct rd *rd)
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{
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const struct rd_cmd cmds[] = {
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{ NULL, link_help},
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{ "netdev", link_add_netdev},
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{ 0 }
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};
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if (rd_no_arg(rd)) {
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pr_err("Please provide a link type name.\n");
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return -EINVAL;
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}
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rd->link_type = rd_argv(rd);
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rd_arg_inc(rd);
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return rd_exec_cmd(rd, cmds, "parameter");
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}
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static int link_add(struct rd *rd)
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{
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const struct rd_cmd cmds[] = {
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{ NULL, link_help},
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{ "type", link_add_type},
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{ 0 }
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};
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if (rd_no_arg(rd)) {
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pr_err("Please provide a link name to add.\n");
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return -EINVAL;
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}
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rd->link_name = rd_argv(rd);
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rd_arg_inc(rd);
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return rd_exec_cmd(rd, cmds, "parameter");
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}
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static int _link_del(struct rd *rd)
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{
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uint32_t seq;
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if (!rd_no_arg(rd)) {
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pr_err("Unknown parameter %s\n", rd_argv(rd));
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return -EINVAL;
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}
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rd_prepare_msg(rd, RDMA_NLDEV_CMD_DELLINK, &seq,
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(NLM_F_REQUEST | NLM_F_ACK));
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mnl_attr_put_u32(rd->nlh, RDMA_NLDEV_ATTR_DEV_INDEX, rd->dev_idx);
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return rd_sendrecv_msg(rd, seq);
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}
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static int link_del(struct rd *rd)
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{
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return rd_exec_require_dev(rd, _link_del);
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}
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int cmd_link(struct rd *rd)
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{
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const struct rd_cmd cmds[] = {
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{ NULL, link_show },
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{ "add", link_add },
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{ "delete", link_del },
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{ "show", link_show },
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{ "list", link_show },
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{ "help", link_help },
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{ 0 }
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};
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return rd_exec_cmd(rd, cmds, "link command");
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}
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