1 /* 2 * Copyright (c) 2005 Cisco Systems. All rights reserved. 3 * Copyright (c) 2005 Mellanox Technologies Ltd. All rights reserved. 4 * 5 * This software is available to you under a choice of one of two 6 * licenses. You may choose to be licensed under the terms of the GNU 7 * General Public License (GPL) Version 2, available from the file 8 * COPYING in the main directory of this source tree, or the 9 * OpenIB.org BSD license below: 10 * 11 * Redistribution and use in source and binary forms, with or 12 * without modification, are permitted provided that the following 13 * conditions are met: 14 * 15 * - Redistributions of source code must retain the above 16 * copyright notice, this list of conditions and the following 17 * disclaimer. 18 * 19 * - Redistributions in binary form must reproduce the above 20 * copyright notice, this list of conditions and the following 21 * disclaimer in the documentation and/or other materials 22 * provided with the distribution. 23 * 24 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, 25 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF 26 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND 27 * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS 28 * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN 29 * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN 30 * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE 31 * SOFTWARE. 32 */ 33 34 #include <config.h> 35 36 #include <stdio.h> 37 #include <stdlib.h> 38 #include <unistd.h> 39 #include <string.h> 40 #include <getopt.h> 41 #include <infiniband/endian.h> 42 #include <inttypes.h> 43 44 #include <infiniband/verbs.h> 45 #include <infiniband/driver.h> 46 47 static int verbose; 48 49 static int null_gid(union ibv_gid *gid) 50 { 51 return !(gid->raw[8] | gid->raw[9] | gid->raw[10] | gid->raw[11] | 52 gid->raw[12] | gid->raw[13] | gid->raw[14] | gid->raw[15]); 53 } 54 55 static const char *guid_str(__be64 _node_guid, char *str) 56 { 57 uint64_t node_guid = be64toh(_node_guid); 58 sprintf(str, "%04x:%04x:%04x:%04x", 59 (unsigned) (node_guid >> 48) & 0xffff, 60 (unsigned) (node_guid >> 32) & 0xffff, 61 (unsigned) (node_guid >> 16) & 0xffff, 62 (unsigned) (node_guid >> 0) & 0xffff); 63 return str; 64 } 65 66 static const char *transport_str(enum ibv_transport_type transport) 67 { 68 switch (transport) { 69 case IBV_TRANSPORT_IB: return "InfiniBand"; 70 case IBV_TRANSPORT_IWARP: return "iWARP"; 71 case IBV_TRANSPORT_USNIC: return "usNIC"; 72 case IBV_TRANSPORT_USNIC_UDP: return "usNIC UDP"; 73 default: return "invalid transport"; 74 } 75 } 76 77 static const char *port_state_str(enum ibv_port_state pstate) 78 { 79 switch (pstate) { 80 case IBV_PORT_DOWN: return "PORT_DOWN"; 81 case IBV_PORT_INIT: return "PORT_INIT"; 82 case IBV_PORT_ARMED: return "PORT_ARMED"; 83 case IBV_PORT_ACTIVE: return "PORT_ACTIVE"; 84 default: return "invalid state"; 85 } 86 } 87 88 static const char *port_phy_state_str(uint8_t phys_state) 89 { 90 switch (phys_state) { 91 case 1: return "SLEEP"; 92 case 2: return "POLLING"; 93 case 3: return "DISABLED"; 94 case 4: return "PORT_CONFIGURATION TRAINNING"; 95 case 5: return "LINK_UP"; 96 case 6: return "LINK_ERROR_RECOVERY"; 97 case 7: return "PHY TEST"; 98 default: return "invalid physical state"; 99 } 100 } 101 102 static const char *atomic_cap_str(enum ibv_atomic_cap atom_cap) 103 { 104 switch (atom_cap) { 105 case IBV_ATOMIC_NONE: return "ATOMIC_NONE"; 106 case IBV_ATOMIC_HCA: return "ATOMIC_HCA"; 107 case IBV_ATOMIC_GLOB: return "ATOMIC_GLOB"; 108 default: return "invalid atomic capability"; 109 } 110 } 111 112 static const char *mtu_str(enum ibv_mtu max_mtu) 113 { 114 switch (max_mtu) { 115 case IBV_MTU_256: return "256"; 116 case IBV_MTU_512: return "512"; 117 case IBV_MTU_1024: return "1024"; 118 case IBV_MTU_2048: return "2048"; 119 case IBV_MTU_4096: return "4096"; 120 default: return "invalid MTU"; 121 } 122 } 123 124 static const char *width_str(uint8_t width) 125 { 126 switch (width) { 127 case 1: return "1"; 128 case 2: return "4"; 129 case 4: return "8"; 130 case 8: return "12"; 131 case 16: return "2"; 132 default: return "invalid width"; 133 } 134 } 135 136 static const char *speed_str(uint8_t speed) 137 { 138 switch (speed) { 139 case 1: return "2.5 Gbps"; 140 case 2: return "5.0 Gbps"; 141 142 case 4: /* fall through */ 143 case 8: return "10.0 Gbps"; 144 145 case 16: return "14.0 Gbps"; 146 case 32: return "25.0 Gbps"; 147 case 64: return "50.0 Gbps"; 148 case 128: return "100.0 Gbps"; 149 default: return "invalid speed"; 150 } 151 } 152 153 static const char *vl_str(uint8_t vl_num) 154 { 155 switch (vl_num) { 156 case 1: return "1"; 157 case 2: return "2"; 158 case 3: return "4"; 159 case 4: return "8"; 160 case 5: return "15"; 161 default: return "invalid value"; 162 } 163 } 164 165 static int print_all_port_gids(struct ibv_context *ctx, uint8_t port_num, int tbl_len) 166 { 167 union ibv_gid gid; 168 int rc = 0; 169 int i; 170 171 for (i = 0; i < tbl_len; i++) { 172 rc = ibv_query_gid(ctx, port_num, i, &gid); 173 if (rc) { 174 fprintf(stderr, "Failed to query gid to port %d, index %d\n", 175 port_num, i); 176 return rc; 177 } 178 if (!null_gid(&gid)) 179 printf("\t\t\tGID[%3d]:\t\t%02x%02x:%02x%02x:%02x%02x:%02x%02x:%02x%02x:%02x%02x:%02x%02x:%02x%02x\n", 180 i, 181 gid.raw[ 0], gid.raw[ 1], 182 gid.raw[ 2], gid.raw[ 3], 183 gid.raw[ 4], gid.raw[ 5], 184 gid.raw[ 6], gid.raw[ 7], 185 gid.raw[ 8], gid.raw[ 9], 186 gid.raw[10], gid.raw[11], 187 gid.raw[12], gid.raw[13], 188 gid.raw[14], gid.raw[15]); 189 } 190 return rc; 191 } 192 193 static const char *link_layer_str(uint8_t link_layer) 194 { 195 switch (link_layer) { 196 case IBV_LINK_LAYER_UNSPECIFIED: 197 case IBV_LINK_LAYER_INFINIBAND: 198 return "InfiniBand"; 199 case IBV_LINK_LAYER_ETHERNET: 200 return "Ethernet"; 201 default: 202 return "Unknown"; 203 } 204 } 205 206 static void print_device_cap_flags(uint32_t dev_cap_flags) 207 { 208 uint32_t unknown_flags = ~(IBV_DEVICE_RESIZE_MAX_WR | 209 IBV_DEVICE_BAD_PKEY_CNTR | 210 IBV_DEVICE_BAD_QKEY_CNTR | 211 IBV_DEVICE_RAW_MULTI | 212 IBV_DEVICE_AUTO_PATH_MIG | 213 IBV_DEVICE_CHANGE_PHY_PORT | 214 IBV_DEVICE_UD_AV_PORT_ENFORCE | 215 IBV_DEVICE_CURR_QP_STATE_MOD | 216 IBV_DEVICE_SHUTDOWN_PORT | 217 IBV_DEVICE_INIT_TYPE | 218 IBV_DEVICE_PORT_ACTIVE_EVENT | 219 IBV_DEVICE_SYS_IMAGE_GUID | 220 IBV_DEVICE_RC_RNR_NAK_GEN | 221 IBV_DEVICE_SRQ_RESIZE | 222 IBV_DEVICE_N_NOTIFY_CQ | 223 IBV_DEVICE_MEM_WINDOW | 224 IBV_DEVICE_UD_IP_CSUM | 225 IBV_DEVICE_XRC | 226 IBV_DEVICE_MEM_MGT_EXTENSIONS | 227 IBV_DEVICE_MEM_WINDOW_TYPE_2A | 228 IBV_DEVICE_MEM_WINDOW_TYPE_2B | 229 IBV_DEVICE_RC_IP_CSUM | 230 IBV_DEVICE_RAW_IP_CSUM | 231 IBV_DEVICE_MANAGED_FLOW_STEERING); 232 233 if (dev_cap_flags & IBV_DEVICE_RESIZE_MAX_WR) 234 printf("\t\t\t\t\tRESIZE_MAX_WR\n"); 235 if (dev_cap_flags & IBV_DEVICE_BAD_PKEY_CNTR) 236 printf("\t\t\t\t\tBAD_PKEY_CNTR\n"); 237 if (dev_cap_flags & IBV_DEVICE_BAD_QKEY_CNTR) 238 printf("\t\t\t\t\tBAD_QKEY_CNTR\n"); 239 if (dev_cap_flags & IBV_DEVICE_RAW_MULTI) 240 printf("\t\t\t\t\tRAW_MULTI\n"); 241 if (dev_cap_flags & IBV_DEVICE_AUTO_PATH_MIG) 242 printf("\t\t\t\t\tAUTO_PATH_MIG\n"); 243 if (dev_cap_flags & IBV_DEVICE_CHANGE_PHY_PORT) 244 printf("\t\t\t\t\tCHANGE_PHY_PORT\n"); 245 if (dev_cap_flags & IBV_DEVICE_UD_AV_PORT_ENFORCE) 246 printf("\t\t\t\t\tUD_AV_PORT_ENFORCE\n"); 247 if (dev_cap_flags & IBV_DEVICE_CURR_QP_STATE_MOD) 248 printf("\t\t\t\t\tCURR_QP_STATE_MOD\n"); 249 if (dev_cap_flags & IBV_DEVICE_SHUTDOWN_PORT) 250 printf("\t\t\t\t\tSHUTDOWN_PORT\n"); 251 if (dev_cap_flags & IBV_DEVICE_INIT_TYPE) 252 printf("\t\t\t\t\tINIT_TYPE\n"); 253 if (dev_cap_flags & IBV_DEVICE_PORT_ACTIVE_EVENT) 254 printf("\t\t\t\t\tPORT_ACTIVE_EVENT\n"); 255 if (dev_cap_flags & IBV_DEVICE_SYS_IMAGE_GUID) 256 printf("\t\t\t\t\tSYS_IMAGE_GUID\n"); 257 if (dev_cap_flags & IBV_DEVICE_RC_RNR_NAK_GEN) 258 printf("\t\t\t\t\tRC_RNR_NAK_GEN\n"); 259 if (dev_cap_flags & IBV_DEVICE_SRQ_RESIZE) 260 printf("\t\t\t\t\tSRQ_RESIZE\n"); 261 if (dev_cap_flags & IBV_DEVICE_N_NOTIFY_CQ) 262 printf("\t\t\t\t\tN_NOTIFY_CQ\n"); 263 if (dev_cap_flags & IBV_DEVICE_MEM_WINDOW) 264 printf("\t\t\t\t\tMEM_WINDOW\n"); 265 if (dev_cap_flags & IBV_DEVICE_UD_IP_CSUM) 266 printf("\t\t\t\t\tUD_IP_CSUM\n"); 267 if (dev_cap_flags & IBV_DEVICE_XRC) 268 printf("\t\t\t\t\tXRC\n"); 269 if (dev_cap_flags & IBV_DEVICE_MEM_MGT_EXTENSIONS) 270 printf("\t\t\t\t\tMEM_MGT_EXTENSIONS\n"); 271 if (dev_cap_flags & IBV_DEVICE_MEM_WINDOW_TYPE_2A) 272 printf("\t\t\t\t\tMEM_WINDOW_TYPE_2A\n"); 273 if (dev_cap_flags & IBV_DEVICE_MEM_WINDOW_TYPE_2B) 274 printf("\t\t\t\t\tMEM_WINDOW_TYPE_2B\n"); 275 if (dev_cap_flags & IBV_DEVICE_RC_IP_CSUM) 276 printf("\t\t\t\t\tRC_IP_CSUM\n"); 277 if (dev_cap_flags & IBV_DEVICE_RAW_IP_CSUM) 278 printf("\t\t\t\t\tRAW_IP_CSUM\n"); 279 if (dev_cap_flags & IBV_DEVICE_MANAGED_FLOW_STEERING) 280 printf("\t\t\t\t\tMANAGED_FLOW_STEERING\n"); 281 if (dev_cap_flags & unknown_flags) 282 printf("\t\t\t\t\tUnknown flags: 0x%" PRIX32 "\n", 283 dev_cap_flags & unknown_flags); 284 } 285 286 static void print_odp_trans_caps(uint32_t trans) 287 { 288 uint32_t unknown_transport_caps = ~(IBV_ODP_SUPPORT_SEND | 289 IBV_ODP_SUPPORT_RECV | 290 IBV_ODP_SUPPORT_WRITE | 291 IBV_ODP_SUPPORT_READ | 292 IBV_ODP_SUPPORT_ATOMIC); 293 294 if (!trans) { 295 printf("\t\t\t\t\tNO SUPPORT\n"); 296 } else { 297 if (trans & IBV_ODP_SUPPORT_SEND) 298 printf("\t\t\t\t\tSUPPORT_SEND\n"); 299 if (trans & IBV_ODP_SUPPORT_RECV) 300 printf("\t\t\t\t\tSUPPORT_RECV\n"); 301 if (trans & IBV_ODP_SUPPORT_WRITE) 302 printf("\t\t\t\t\tSUPPORT_WRITE\n"); 303 if (trans & IBV_ODP_SUPPORT_READ) 304 printf("\t\t\t\t\tSUPPORT_READ\n"); 305 if (trans & IBV_ODP_SUPPORT_ATOMIC) 306 printf("\t\t\t\t\tSUPPORT_ATOMIC\n"); 307 if (trans & unknown_transport_caps) 308 printf("\t\t\t\t\tUnknown flags: 0x%" PRIX32 "\n", 309 trans & unknown_transport_caps); 310 } 311 } 312 313 static void print_odp_caps(const struct ibv_odp_caps *caps) 314 { 315 uint64_t unknown_general_caps = ~(IBV_ODP_SUPPORT); 316 317 /* general odp caps */ 318 printf("\tgeneral_odp_caps:\n"); 319 if (caps->general_caps & IBV_ODP_SUPPORT) 320 printf("\t\t\t\t\tODP_SUPPORT\n"); 321 if (caps->general_caps & unknown_general_caps) 322 printf("\t\t\t\t\tUnknown flags: 0x%" PRIX64 "\n", 323 caps->general_caps & unknown_general_caps); 324 325 /* RC transport */ 326 printf("\trc_odp_caps:\n"); 327 print_odp_trans_caps(caps->per_transport_caps.rc_odp_caps); 328 printf("\tuc_odp_caps:\n"); 329 print_odp_trans_caps(caps->per_transport_caps.uc_odp_caps); 330 printf("\tud_odp_caps:\n"); 331 print_odp_trans_caps(caps->per_transport_caps.ud_odp_caps); 332 } 333 334 static void print_device_cap_flags_ex(uint64_t device_cap_flags_ex) 335 { 336 uint64_t ex_flags = device_cap_flags_ex & 0xffffffff00000000ULL; 337 uint64_t unknown_flags = ~(IBV_DEVICE_RAW_SCATTER_FCS); 338 339 if (ex_flags & IBV_DEVICE_RAW_SCATTER_FCS) 340 printf("\t\t\t\t\tRAW_SCATTER_FCS\n"); 341 if (ex_flags & unknown_flags) 342 printf("\t\t\t\t\tUnknown flags: 0x%" PRIX64 "\n", 343 ex_flags & unknown_flags); 344 } 345 346 static void print_tso_caps(const struct ibv_tso_caps *caps) 347 { 348 uint32_t unknown_general_caps = ~(1 << IBV_QPT_RAW_PACKET | 349 1 << IBV_QPT_UD); 350 printf("\ttso_caps:\n"); 351 printf("\tmax_tso:\t\t\t%d\n", caps->max_tso); 352 353 if (caps->max_tso) { 354 printf("\tsupported_qp:\n"); 355 if (ibv_is_qpt_supported(caps->supported_qpts, IBV_QPT_RAW_PACKET)) 356 printf("\t\t\t\t\tSUPPORT_RAW_PACKET\n"); 357 if (ibv_is_qpt_supported(caps->supported_qpts, IBV_QPT_UD)) 358 printf("\t\t\t\t\tSUPPORT_UD\n"); 359 if (caps->supported_qpts & unknown_general_caps) 360 printf("\t\t\t\t\tUnknown flags: 0x%" PRIX32 "\n", 361 caps->supported_qpts & unknown_general_caps); 362 } 363 } 364 365 static void print_rss_caps(const struct ibv_rss_caps *caps) 366 { 367 uint32_t unknown_general_caps = ~(1 << IBV_QPT_RAW_PACKET | 368 1 << IBV_QPT_UD); 369 printf("\trss_caps:\n"); 370 printf("\t\tmax_rwq_indirection_tables:\t\t\t%u\n", caps->max_rwq_indirection_tables); 371 printf("\t\tmax_rwq_indirection_table_size:\t\t\t%u\n", caps->max_rwq_indirection_table_size); 372 printf("\t\trx_hash_function:\t\t\t\t0x%x\n", caps->rx_hash_function); 373 printf("\t\trx_hash_fields_mask:\t\t\t\t0x%" PRIX64 "\n", caps->rx_hash_fields_mask); 374 375 if (caps->supported_qpts) { 376 printf("\t\tsupported_qp:\n"); 377 if (ibv_is_qpt_supported(caps->supported_qpts, IBV_QPT_RAW_PACKET)) 378 printf("\t\t\t\t\tSUPPORT_RAW_PACKET\n"); 379 if (ibv_is_qpt_supported(caps->supported_qpts, IBV_QPT_UD)) 380 printf("\t\t\t\t\tSUPPORT_UD\n"); 381 if (caps->supported_qpts & unknown_general_caps) 382 printf("\t\t\t\t\tUnknown flags: 0x%" PRIX32 "\n", 383 caps->supported_qpts & unknown_general_caps); 384 } 385 } 386 387 static void print_packet_pacing_caps(const struct ibv_packet_pacing_caps *caps) 388 { 389 uint32_t unknown_general_caps = ~(1 << IBV_QPT_RAW_PACKET | 390 1 << IBV_QPT_UD); 391 printf("\tpacket_pacing_caps:\n"); 392 printf("\t\tqp_rate_limit_min:\t%ukbps\n", caps->qp_rate_limit_min); 393 printf("\t\tqp_rate_limit_max:\t%ukbps\n", caps->qp_rate_limit_max); 394 395 if (caps->qp_rate_limit_max) { 396 printf("\t\tsupported_qp:\n"); 397 if (ibv_is_qpt_supported(caps->supported_qpts, IBV_QPT_RAW_PACKET)) 398 printf("\t\t\t\t\tSUPPORT_RAW_PACKET\n"); 399 if (ibv_is_qpt_supported(caps->supported_qpts, IBV_QPT_UD)) 400 printf("\t\t\t\t\tSUPPORT_UD\n"); 401 if (caps->supported_qpts & unknown_general_caps) 402 printf("\t\t\t\t\tUnknown flags: 0x%" PRIX32 "\n", 403 caps->supported_qpts & unknown_general_caps); 404 } 405 } 406 407 static void print_raw_packet_caps(uint32_t raw_packet_caps) 408 { 409 printf("\traw packet caps:\n"); 410 if (raw_packet_caps & IBV_RAW_PACKET_CAP_CVLAN_STRIPPING) 411 printf("\t\t\t\t\tC-VLAN stripping offload\n"); 412 if (raw_packet_caps & IBV_RAW_PACKET_CAP_SCATTER_FCS) 413 printf("\t\t\t\t\tScatter FCS offload\n"); 414 if (raw_packet_caps & IBV_RAW_PACKET_CAP_IP_CSUM) 415 printf("\t\t\t\t\tIP csum offload\n"); 416 } 417 418 static int print_hca_cap(struct ibv_device *ib_dev, uint8_t ib_port) 419 { 420 struct ibv_context *ctx; 421 struct ibv_device_attr_ex device_attr; 422 struct ibv_port_attr port_attr; 423 int rc = 0; 424 uint8_t port; 425 char buf[256]; 426 427 ctx = ibv_open_device(ib_dev); 428 if (!ctx) { 429 fprintf(stderr, "Failed to open device\n"); 430 rc = 1; 431 goto cleanup; 432 } 433 if (ibv_query_device_ex(ctx, NULL, &device_attr)) { 434 fprintf(stderr, "Failed to query device props\n"); 435 rc = 2; 436 goto cleanup; 437 } 438 if (ib_port && ib_port > device_attr.orig_attr.phys_port_cnt) { 439 fprintf(stderr, "Invalid port requested for device\n"); 440 /* rc = 3 is taken by failure to clean up */ 441 rc = 4; 442 goto cleanup; 443 } 444 445 printf("hca_id:\t%s\n", ibv_get_device_name(ib_dev)); 446 printf("\ttransport:\t\t\t%s (%d)\n", 447 transport_str(ib_dev->transport_type), ib_dev->transport_type); 448 if (strlen(device_attr.orig_attr.fw_ver)) 449 printf("\tfw_ver:\t\t\t\t%s\n", device_attr.orig_attr.fw_ver); 450 printf("\tnode_guid:\t\t\t%s\n", guid_str(device_attr.orig_attr.node_guid, buf)); 451 printf("\tsys_image_guid:\t\t\t%s\n", guid_str(device_attr.orig_attr.sys_image_guid, buf)); 452 printf("\tvendor_id:\t\t\t0x%04x\n", device_attr.orig_attr.vendor_id); 453 printf("\tvendor_part_id:\t\t\t%d\n", device_attr.orig_attr.vendor_part_id); 454 printf("\thw_ver:\t\t\t\t0x%X\n", device_attr.orig_attr.hw_ver); 455 456 if (ibv_read_sysfs_file(ib_dev->ibdev_path, "board_id", buf, sizeof buf) > 0) 457 printf("\tboard_id:\t\t\t%s\n", buf); 458 459 printf("\tphys_port_cnt:\t\t\t%d\n", device_attr.orig_attr.phys_port_cnt); 460 461 if (verbose) { 462 printf("\tmax_mr_size:\t\t\t0x%llx\n", 463 (unsigned long long) device_attr.orig_attr.max_mr_size); 464 printf("\tpage_size_cap:\t\t\t0x%llx\n", 465 (unsigned long long) device_attr.orig_attr.page_size_cap); 466 printf("\tmax_qp:\t\t\t\t%d\n", device_attr.orig_attr.max_qp); 467 printf("\tmax_qp_wr:\t\t\t%d\n", device_attr.orig_attr.max_qp_wr); 468 printf("\tdevice_cap_flags:\t\t0x%08x\n", device_attr.orig_attr.device_cap_flags); 469 print_device_cap_flags(device_attr.orig_attr.device_cap_flags); 470 printf("\tmax_sge:\t\t\t%d\n", device_attr.orig_attr.max_sge); 471 printf("\tmax_sge_rd:\t\t\t%d\n", device_attr.orig_attr.max_sge_rd); 472 printf("\tmax_cq:\t\t\t\t%d\n", device_attr.orig_attr.max_cq); 473 printf("\tmax_cqe:\t\t\t%d\n", device_attr.orig_attr.max_cqe); 474 printf("\tmax_mr:\t\t\t\t%d\n", device_attr.orig_attr.max_mr); 475 printf("\tmax_pd:\t\t\t\t%d\n", device_attr.orig_attr.max_pd); 476 printf("\tmax_qp_rd_atom:\t\t\t%d\n", device_attr.orig_attr.max_qp_rd_atom); 477 printf("\tmax_ee_rd_atom:\t\t\t%d\n", device_attr.orig_attr.max_ee_rd_atom); 478 printf("\tmax_res_rd_atom:\t\t%d\n", device_attr.orig_attr.max_res_rd_atom); 479 printf("\tmax_qp_init_rd_atom:\t\t%d\n", device_attr.orig_attr.max_qp_init_rd_atom); 480 printf("\tmax_ee_init_rd_atom:\t\t%d\n", device_attr.orig_attr.max_ee_init_rd_atom); 481 printf("\tatomic_cap:\t\t\t%s (%d)\n", 482 atomic_cap_str(device_attr.orig_attr.atomic_cap), device_attr.orig_attr.atomic_cap); 483 printf("\tmax_ee:\t\t\t\t%d\n", device_attr.orig_attr.max_ee); 484 printf("\tmax_rdd:\t\t\t%d\n", device_attr.orig_attr.max_rdd); 485 printf("\tmax_mw:\t\t\t\t%d\n", device_attr.orig_attr.max_mw); 486 printf("\tmax_raw_ipv6_qp:\t\t%d\n", device_attr.orig_attr.max_raw_ipv6_qp); 487 printf("\tmax_raw_ethy_qp:\t\t%d\n", device_attr.orig_attr.max_raw_ethy_qp); 488 printf("\tmax_mcast_grp:\t\t\t%d\n", device_attr.orig_attr.max_mcast_grp); 489 printf("\tmax_mcast_qp_attach:\t\t%d\n", device_attr.orig_attr.max_mcast_qp_attach); 490 printf("\tmax_total_mcast_qp_attach:\t%d\n", 491 device_attr.orig_attr.max_total_mcast_qp_attach); 492 printf("\tmax_ah:\t\t\t\t%d\n", device_attr.orig_attr.max_ah); 493 printf("\tmax_fmr:\t\t\t%d\n", device_attr.orig_attr.max_fmr); 494 if (device_attr.orig_attr.max_fmr) 495 printf("\tmax_map_per_fmr:\t\t%d\n", device_attr.orig_attr.max_map_per_fmr); 496 printf("\tmax_srq:\t\t\t%d\n", device_attr.orig_attr.max_srq); 497 if (device_attr.orig_attr.max_srq) { 498 printf("\tmax_srq_wr:\t\t\t%d\n", device_attr.orig_attr.max_srq_wr); 499 printf("\tmax_srq_sge:\t\t\t%d\n", device_attr.orig_attr.max_srq_sge); 500 } 501 printf("\tmax_pkeys:\t\t\t%d\n", device_attr.orig_attr.max_pkeys); 502 printf("\tlocal_ca_ack_delay:\t\t%d\n", device_attr.orig_attr.local_ca_ack_delay); 503 504 print_odp_caps(&device_attr.odp_caps); 505 if (device_attr.completion_timestamp_mask) 506 printf("\tcompletion timestamp_mask:\t\t\t0x%016" PRIx64 "\n", 507 device_attr.completion_timestamp_mask); 508 else 509 printf("\tcompletion_timestamp_mask not supported\n"); 510 511 if (device_attr.hca_core_clock) 512 printf("\thca_core_clock:\t\t\t%" PRIu64 "kHZ\n", device_attr.hca_core_clock); 513 else 514 printf("\tcore clock not supported\n"); 515 516 if (device_attr.raw_packet_caps) 517 print_raw_packet_caps(device_attr.raw_packet_caps); 518 519 printf("\tdevice_cap_flags_ex:\t\t0x%" PRIX64 "\n", device_attr.device_cap_flags_ex); 520 print_device_cap_flags_ex(device_attr.device_cap_flags_ex); 521 print_tso_caps(&device_attr.tso_caps); 522 print_rss_caps(&device_attr.rss_caps); 523 printf("\tmax_wq_type_rq:\t\t\t%u\n", device_attr.max_wq_type_rq); 524 print_packet_pacing_caps(&device_attr.packet_pacing_caps); 525 } 526 527 for (port = 1; port <= device_attr.orig_attr.phys_port_cnt; ++port) { 528 /* if in the command line the user didn't ask for info about this port */ 529 if ((ib_port) && (port != ib_port)) 530 continue; 531 532 rc = ibv_query_port(ctx, port, &port_attr); 533 if (rc) { 534 fprintf(stderr, "Failed to query port %u props\n", port); 535 goto cleanup; 536 } 537 printf("\t\tport:\t%d\n", port); 538 printf("\t\t\tstate:\t\t\t%s (%d)\n", 539 port_state_str(port_attr.state), port_attr.state); 540 printf("\t\t\tmax_mtu:\t\t%s (%d)\n", 541 mtu_str(port_attr.max_mtu), port_attr.max_mtu); 542 printf("\t\t\tactive_mtu:\t\t%s (%d)\n", 543 mtu_str(port_attr.active_mtu), port_attr.active_mtu); 544 printf("\t\t\tsm_lid:\t\t\t%d\n", port_attr.sm_lid); 545 printf("\t\t\tport_lid:\t\t%d\n", port_attr.lid); 546 printf("\t\t\tport_lmc:\t\t0x%02x\n", port_attr.lmc); 547 printf("\t\t\tlink_layer:\t\t%s\n", 548 link_layer_str(port_attr.link_layer)); 549 550 if (verbose) { 551 printf("\t\t\tmax_msg_sz:\t\t0x%x\n", port_attr.max_msg_sz); 552 printf("\t\t\tport_cap_flags:\t\t0x%08x\n", port_attr.port_cap_flags); 553 printf("\t\t\tmax_vl_num:\t\t%s (%d)\n", 554 vl_str(port_attr.max_vl_num), port_attr.max_vl_num); 555 printf("\t\t\tbad_pkey_cntr:\t\t0x%x\n", port_attr.bad_pkey_cntr); 556 printf("\t\t\tqkey_viol_cntr:\t\t0x%x\n", port_attr.qkey_viol_cntr); 557 printf("\t\t\tsm_sl:\t\t\t%d\n", port_attr.sm_sl); 558 printf("\t\t\tpkey_tbl_len:\t\t%d\n", port_attr.pkey_tbl_len); 559 printf("\t\t\tgid_tbl_len:\t\t%d\n", port_attr.gid_tbl_len); 560 printf("\t\t\tsubnet_timeout:\t\t%d\n", port_attr.subnet_timeout); 561 printf("\t\t\tinit_type_reply:\t%d\n", port_attr.init_type_reply); 562 printf("\t\t\tactive_width:\t\t%sX (%d)\n", 563 width_str(port_attr.active_width), port_attr.active_width); 564 printf("\t\t\tactive_speed:\t\t%s (%d)\n", 565 speed_str(port_attr.active_speed), port_attr.active_speed); 566 if (ib_dev->transport_type == IBV_TRANSPORT_IB) 567 printf("\t\t\tphys_state:\t\t%s (%d)\n", 568 port_phy_state_str(port_attr.phys_state), port_attr.phys_state); 569 570 if (print_all_port_gids(ctx, port, port_attr.gid_tbl_len)) 571 goto cleanup; 572 } 573 printf("\n"); 574 } 575 cleanup: 576 if (ctx) 577 if (ibv_close_device(ctx)) { 578 fprintf(stderr, "Failed to close device"); 579 rc = 3; 580 } 581 return rc; 582 } 583 584 static void usage(const char *argv0) 585 { 586 printf("Usage: %s print the ca attributes\n", argv0); 587 printf("\n"); 588 printf("Options:\n"); 589 printf(" -d, --ib-dev=<dev> use IB device <dev> (default first device found)\n"); 590 printf(" -i, --ib-port=<port> use port <port> of IB device (default all ports)\n"); 591 printf(" -l, --list print only the IB devices names\n"); 592 printf(" -v, --verbose print all the attributes of the IB device(s)\n"); 593 } 594 595 int main(int argc, char *argv[]) 596 { 597 char *ib_devname = NULL; 598 int ret = 0; 599 struct ibv_device **dev_list, **orig_dev_list; 600 int num_of_hcas; 601 int ib_port = 0; 602 603 /* parse command line options */ 604 while (1) { 605 int c; 606 static struct option long_options[] = { 607 { .name = "ib-dev", .has_arg = 1, .val = 'd' }, 608 { .name = "ib-port", .has_arg = 1, .val = 'i' }, 609 { .name = "list", .has_arg = 0, .val = 'l' }, 610 { .name = "verbose", .has_arg = 0, .val = 'v' }, 611 { } 612 }; 613 614 c = getopt_long(argc, argv, "d:i:lv", long_options, NULL); 615 if (c == -1) 616 break; 617 618 switch (c) { 619 case 'd': 620 ib_devname = strdup(optarg); 621 break; 622 623 case 'i': 624 ib_port = strtol(optarg, NULL, 0); 625 if (ib_port <= 0) { 626 usage(argv[0]); 627 return 1; 628 } 629 break; 630 631 case 'v': 632 verbose = 1; 633 break; 634 635 case 'l': 636 dev_list = orig_dev_list = ibv_get_device_list(&num_of_hcas); 637 if (!dev_list) { 638 perror("Failed to get IB devices list"); 639 return -1; 640 } 641 642 printf("%d HCA%s found:\n", num_of_hcas, 643 num_of_hcas != 1 ? "s" : ""); 644 645 while (*dev_list) { 646 printf("\t%s\n", ibv_get_device_name(*dev_list)); 647 ++dev_list; 648 } 649 650 printf("\n"); 651 652 ibv_free_device_list(orig_dev_list); 653 654 return 0; 655 656 default: 657 usage(argv[0]); 658 return -1; 659 } 660 } 661 662 dev_list = orig_dev_list = ibv_get_device_list(NULL); 663 if (!dev_list) { 664 perror("Failed to get IB devices list"); 665 return -1; 666 } 667 668 if (ib_devname) { 669 while (*dev_list) { 670 if (!strcmp(ibv_get_device_name(*dev_list), ib_devname)) 671 break; 672 ++dev_list; 673 } 674 675 if (!*dev_list) { 676 fprintf(stderr, "IB device '%s' wasn't found\n", ib_devname); 677 return -1; 678 } 679 680 ret |= print_hca_cap(*dev_list, ib_port); 681 } else { 682 if (!*dev_list) { 683 fprintf(stderr, "No IB devices found\n"); 684 return -1; 685 } 686 687 while (*dev_list) { 688 ret |= print_hca_cap(*dev_list, ib_port); 689 ++dev_list; 690 } 691 } 692 693 if (ib_devname) 694 free(ib_devname); 695 696 ibv_free_device_list(orig_dev_list); 697 698 return ret; 699 } 700