1 /* 2 * Copyright (c) 2004, 2005 Topspin Communications. All rights reserved. 3 * Copyright (c) 2005 Mellanox Technologies Ltd. All rights reserved. 4 * Copyright (c) 2005 Sun Microsystems, Inc. All rights reserved. 5 * 6 * This software is available to you under a choice of one of two 7 * licenses. You may choose to be licensed under the terms of the GNU 8 * General Public License (GPL) Version 2, available from the file 9 * COPYING in the main directory of this source tree, or the 10 * OpenIB.org BSD license below: 11 * 12 * Redistribution and use in source and binary forms, with or 13 * without modification, are permitted provided that the following 14 * conditions are met: 15 * 16 * - Redistributions of source code must retain the above 17 * copyright notice, this list of conditions and the following 18 * disclaimer. 19 * 20 * - Redistributions in binary form must reproduce the above 21 * copyright notice, this list of conditions and the following 22 * disclaimer in the documentation and/or other materials 23 * provided with the distribution. 24 * 25 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, 26 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF 27 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND 28 * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS 29 * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN 30 * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN 31 * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE 32 * SOFTWARE. 33 */ 34 35 #include "core_priv.h" 36 37 #include <linux/slab.h> 38 #include <linux/stat.h> 39 #include <linux/string.h> 40 #include <linux/netdevice.h> 41 #include <linux/ethtool.h> 42 43 #include <rdma/ib_mad.h> 44 #include <rdma/ib_pma.h> 45 #include <rdma/ib_cache.h> 46 47 struct ib_port; 48 49 struct gid_attr_group { 50 struct ib_port *port; 51 struct kobject kobj; 52 struct attribute_group ndev; 53 struct attribute_group type; 54 }; 55 struct ib_port { 56 struct kobject kobj; 57 struct ib_device *ibdev; 58 struct gid_attr_group *gid_attr_group; 59 struct attribute_group gid_group; 60 struct attribute_group pkey_group; 61 struct attribute_group *pma_table; 62 struct attribute_group *hw_stats_ag; 63 struct rdma_hw_stats *hw_stats; 64 u8 port_num; 65 }; 66 67 struct port_attribute { 68 struct attribute attr; 69 ssize_t (*show)(struct ib_port *, struct port_attribute *, char *buf); 70 ssize_t (*store)(struct ib_port *, struct port_attribute *, 71 const char *buf, size_t count); 72 }; 73 74 #define PORT_ATTR(_name, _mode, _show, _store) \ 75 struct port_attribute port_attr_##_name = __ATTR(_name, _mode, _show, _store) 76 77 #define PORT_ATTR_RO(_name) \ 78 struct port_attribute port_attr_##_name = __ATTR_RO(_name) 79 80 struct port_table_attribute { 81 struct port_attribute attr; 82 char name[8]; 83 int index; 84 __be16 attr_id; 85 }; 86 87 struct hw_stats_attribute { 88 struct attribute attr; 89 ssize_t (*show)(struct kobject *kobj, 90 struct attribute *attr, char *buf); 91 ssize_t (*store)(struct kobject *kobj, 92 struct attribute *attr, 93 const char *buf, 94 size_t count); 95 int index; 96 u8 port_num; 97 }; 98 99 static ssize_t port_attr_show(struct kobject *kobj, 100 struct attribute *attr, char *buf) 101 { 102 struct port_attribute *port_attr = 103 container_of(attr, struct port_attribute, attr); 104 struct ib_port *p = container_of(kobj, struct ib_port, kobj); 105 106 if (!port_attr->show) 107 return -EIO; 108 109 return port_attr->show(p, port_attr, buf); 110 } 111 112 static ssize_t port_attr_store(struct kobject *kobj, 113 struct attribute *attr, 114 const char *buf, size_t count) 115 { 116 struct port_attribute *port_attr = 117 container_of(attr, struct port_attribute, attr); 118 struct ib_port *p = container_of(kobj, struct ib_port, kobj); 119 120 if (!port_attr->store) 121 return -EIO; 122 return port_attr->store(p, port_attr, buf, count); 123 } 124 125 static const struct sysfs_ops port_sysfs_ops = { 126 .show = port_attr_show, 127 .store = port_attr_store 128 }; 129 130 static ssize_t gid_attr_show(struct kobject *kobj, 131 struct attribute *attr, char *buf) 132 { 133 struct port_attribute *port_attr = 134 container_of(attr, struct port_attribute, attr); 135 struct ib_port *p = container_of(kobj, struct gid_attr_group, 136 kobj)->port; 137 138 if (!port_attr->show) 139 return -EIO; 140 141 return port_attr->show(p, port_attr, buf); 142 } 143 144 static const struct sysfs_ops gid_attr_sysfs_ops = { 145 .show = gid_attr_show 146 }; 147 148 static ssize_t state_show(struct ib_port *p, struct port_attribute *unused, 149 char *buf) 150 { 151 struct ib_port_attr attr; 152 ssize_t ret; 153 154 static const char *state_name[] = { 155 [IB_PORT_NOP] = "NOP", 156 [IB_PORT_DOWN] = "DOWN", 157 [IB_PORT_INIT] = "INIT", 158 [IB_PORT_ARMED] = "ARMED", 159 [IB_PORT_ACTIVE] = "ACTIVE", 160 [IB_PORT_ACTIVE_DEFER] = "ACTIVE_DEFER" 161 }; 162 163 ret = ib_query_port(p->ibdev, p->port_num, &attr); 164 if (ret) 165 return ret; 166 167 return sprintf(buf, "%d: %s\n", attr.state, 168 attr.state >= 0 && attr.state < ARRAY_SIZE(state_name) ? 169 state_name[attr.state] : "UNKNOWN"); 170 } 171 172 static ssize_t lid_show(struct ib_port *p, struct port_attribute *unused, 173 char *buf) 174 { 175 struct ib_port_attr attr; 176 ssize_t ret; 177 178 ret = ib_query_port(p->ibdev, p->port_num, &attr); 179 if (ret) 180 return ret; 181 182 return sprintf(buf, "0x%x\n", attr.lid); 183 } 184 185 static ssize_t lid_mask_count_show(struct ib_port *p, 186 struct port_attribute *unused, 187 char *buf) 188 { 189 struct ib_port_attr attr; 190 ssize_t ret; 191 192 ret = ib_query_port(p->ibdev, p->port_num, &attr); 193 if (ret) 194 return ret; 195 196 return sprintf(buf, "%d\n", attr.lmc); 197 } 198 199 static ssize_t sm_lid_show(struct ib_port *p, struct port_attribute *unused, 200 char *buf) 201 { 202 struct ib_port_attr attr; 203 ssize_t ret; 204 205 ret = ib_query_port(p->ibdev, p->port_num, &attr); 206 if (ret) 207 return ret; 208 209 return sprintf(buf, "0x%x\n", attr.sm_lid); 210 } 211 212 static ssize_t sm_sl_show(struct ib_port *p, struct port_attribute *unused, 213 char *buf) 214 { 215 struct ib_port_attr attr; 216 ssize_t ret; 217 218 ret = ib_query_port(p->ibdev, p->port_num, &attr); 219 if (ret) 220 return ret; 221 222 return sprintf(buf, "%d\n", attr.sm_sl); 223 } 224 225 static ssize_t cap_mask_show(struct ib_port *p, struct port_attribute *unused, 226 char *buf) 227 { 228 struct ib_port_attr attr; 229 ssize_t ret; 230 231 ret = ib_query_port(p->ibdev, p->port_num, &attr); 232 if (ret) 233 return ret; 234 235 return sprintf(buf, "0x%08x\n", attr.port_cap_flags); 236 } 237 238 static ssize_t rate_show(struct ib_port *p, struct port_attribute *unused, 239 char *buf) 240 { 241 struct ib_port_attr attr; 242 char *speed = ""; 243 int rate; /* in deci-Gb/sec */ 244 ssize_t ret; 245 246 ret = ib_query_port(p->ibdev, p->port_num, &attr); 247 if (ret) 248 return ret; 249 250 switch (attr.active_speed) { 251 case IB_SPEED_DDR: 252 speed = " DDR"; 253 rate = 50; 254 break; 255 case IB_SPEED_QDR: 256 speed = " QDR"; 257 rate = 100; 258 break; 259 case IB_SPEED_FDR10: 260 speed = " FDR10"; 261 rate = 100; 262 break; 263 case IB_SPEED_FDR: 264 speed = " FDR"; 265 rate = 140; 266 break; 267 case IB_SPEED_EDR: 268 speed = " EDR"; 269 rate = 250; 270 break; 271 case IB_SPEED_HDR: 272 speed = " HDR"; 273 rate = 500; 274 break; 275 case IB_SPEED_SDR: 276 default: /* default to SDR for invalid rates */ 277 speed = " SDR"; 278 rate = 25; 279 break; 280 } 281 282 rate *= ib_width_enum_to_int(attr.active_width); 283 if (rate < 0) 284 return -EINVAL; 285 286 return sprintf(buf, "%d%s Gb/sec (%dX%s)\n", 287 rate / 10, rate % 10 ? ".5" : "", 288 ib_width_enum_to_int(attr.active_width), speed); 289 } 290 291 static ssize_t phys_state_show(struct ib_port *p, struct port_attribute *unused, 292 char *buf) 293 { 294 struct ib_port_attr attr; 295 296 ssize_t ret; 297 298 ret = ib_query_port(p->ibdev, p->port_num, &attr); 299 if (ret) 300 return ret; 301 302 switch (attr.phys_state) { 303 case 1: return sprintf(buf, "1: Sleep\n"); 304 case 2: return sprintf(buf, "2: Polling\n"); 305 case 3: return sprintf(buf, "3: Disabled\n"); 306 case 4: return sprintf(buf, "4: PortConfigurationTraining\n"); 307 case 5: return sprintf(buf, "5: LinkUp\n"); 308 case 6: return sprintf(buf, "6: LinkErrorRecovery\n"); 309 case 7: return sprintf(buf, "7: Phy Test\n"); 310 default: return sprintf(buf, "%d: <unknown>\n", attr.phys_state); 311 } 312 } 313 314 static ssize_t link_layer_show(struct ib_port *p, struct port_attribute *unused, 315 char *buf) 316 { 317 switch (rdma_port_get_link_layer(p->ibdev, p->port_num)) { 318 case IB_LINK_LAYER_INFINIBAND: 319 return sprintf(buf, "%s\n", "InfiniBand"); 320 case IB_LINK_LAYER_ETHERNET: 321 return sprintf(buf, "%s\n", "Ethernet"); 322 default: 323 return sprintf(buf, "%s\n", "Unknown"); 324 } 325 } 326 327 static PORT_ATTR_RO(state); 328 static PORT_ATTR_RO(lid); 329 static PORT_ATTR_RO(lid_mask_count); 330 static PORT_ATTR_RO(sm_lid); 331 static PORT_ATTR_RO(sm_sl); 332 static PORT_ATTR_RO(cap_mask); 333 static PORT_ATTR_RO(rate); 334 static PORT_ATTR_RO(phys_state); 335 static PORT_ATTR_RO(link_layer); 336 337 static struct attribute *port_default_attrs[] = { 338 &port_attr_state.attr, 339 &port_attr_lid.attr, 340 &port_attr_lid_mask_count.attr, 341 &port_attr_sm_lid.attr, 342 &port_attr_sm_sl.attr, 343 &port_attr_cap_mask.attr, 344 &port_attr_rate.attr, 345 &port_attr_phys_state.attr, 346 &port_attr_link_layer.attr, 347 NULL 348 }; 349 350 static size_t print_ndev(const struct ib_gid_attr *gid_attr, char *buf) 351 { 352 struct net_device *ndev; 353 size_t ret = -EINVAL; 354 355 rcu_read_lock(); 356 ndev = rcu_dereference(gid_attr->ndev); 357 if (ndev) 358 ret = sprintf(buf, "%s\n", ndev->name); 359 rcu_read_unlock(); 360 return ret; 361 } 362 363 static size_t print_gid_type(const struct ib_gid_attr *gid_attr, char *buf) 364 { 365 return sprintf(buf, "%s\n", ib_cache_gid_type_str(gid_attr->gid_type)); 366 } 367 368 static ssize_t _show_port_gid_attr( 369 struct ib_port *p, struct port_attribute *attr, char *buf, 370 size_t (*print)(const struct ib_gid_attr *gid_attr, char *buf)) 371 { 372 struct port_table_attribute *tab_attr = 373 container_of(attr, struct port_table_attribute, attr); 374 const struct ib_gid_attr *gid_attr; 375 ssize_t ret; 376 377 gid_attr = rdma_get_gid_attr(p->ibdev, p->port_num, tab_attr->index); 378 if (IS_ERR(gid_attr)) 379 return PTR_ERR(gid_attr); 380 381 ret = print(gid_attr, buf); 382 rdma_put_gid_attr(gid_attr); 383 return ret; 384 } 385 386 static ssize_t show_port_gid(struct ib_port *p, struct port_attribute *attr, 387 char *buf) 388 { 389 struct port_table_attribute *tab_attr = 390 container_of(attr, struct port_table_attribute, attr); 391 const struct ib_gid_attr *gid_attr; 392 ssize_t ret; 393 394 gid_attr = rdma_get_gid_attr(p->ibdev, p->port_num, tab_attr->index); 395 if (IS_ERR(gid_attr)) { 396 const union ib_gid zgid = {}; 397 398 /* If reading GID fails, it is likely due to GID entry being 399 * empty (invalid) or reserved GID in the table. User space 400 * expects to read GID table entries as long as it given index 401 * is within GID table size. Administrative/debugging tool 402 * fails to query rest of the GID entries if it hits error 403 * while querying a GID of the given index. To avoid user 404 * space throwing such error on fail to read gid, return zero 405 * GID as before. This maintains backward compatibility. 406 */ 407 return sprintf(buf, "%pI6\n", zgid.raw); 408 } 409 410 ret = sprintf(buf, "%pI6\n", gid_attr->gid.raw); 411 rdma_put_gid_attr(gid_attr); 412 return ret; 413 } 414 415 static ssize_t show_port_gid_attr_ndev(struct ib_port *p, 416 struct port_attribute *attr, char *buf) 417 { 418 return _show_port_gid_attr(p, attr, buf, print_ndev); 419 } 420 421 static ssize_t show_port_gid_attr_gid_type(struct ib_port *p, 422 struct port_attribute *attr, 423 char *buf) 424 { 425 return _show_port_gid_attr(p, attr, buf, print_gid_type); 426 } 427 428 static ssize_t show_port_pkey(struct ib_port *p, struct port_attribute *attr, 429 char *buf) 430 { 431 struct port_table_attribute *tab_attr = 432 container_of(attr, struct port_table_attribute, attr); 433 u16 pkey; 434 ssize_t ret; 435 436 ret = ib_query_pkey(p->ibdev, p->port_num, tab_attr->index, &pkey); 437 if (ret) 438 return ret; 439 440 return sprintf(buf, "0x%04x\n", pkey); 441 } 442 443 #define PORT_PMA_ATTR(_name, _counter, _width, _offset) \ 444 struct port_table_attribute port_pma_attr_##_name = { \ 445 .attr = __ATTR(_name, S_IRUGO, show_pma_counter, NULL), \ 446 .index = (_offset) | ((_width) << 16) | ((_counter) << 24), \ 447 .attr_id = IB_PMA_PORT_COUNTERS , \ 448 } 449 450 #define PORT_PMA_ATTR_EXT(_name, _width, _offset) \ 451 struct port_table_attribute port_pma_attr_ext_##_name = { \ 452 .attr = __ATTR(_name, S_IRUGO, show_pma_counter, NULL), \ 453 .index = (_offset) | ((_width) << 16), \ 454 .attr_id = IB_PMA_PORT_COUNTERS_EXT , \ 455 } 456 457 /* 458 * Get a Perfmgmt MAD block of data. 459 * Returns error code or the number of bytes retrieved. 460 */ 461 static int get_perf_mad(struct ib_device *dev, int port_num, __be16 attr, 462 void *data, int offset, size_t size) 463 { 464 struct ib_mad *in_mad; 465 struct ib_mad *out_mad; 466 size_t mad_size = sizeof(*out_mad); 467 u16 out_mad_pkey_index = 0; 468 ssize_t ret; 469 470 if (!dev->ops.process_mad) 471 return -ENOSYS; 472 473 in_mad = kzalloc(sizeof *in_mad, GFP_KERNEL); 474 out_mad = kmalloc(sizeof *out_mad, GFP_KERNEL); 475 if (!in_mad || !out_mad) { 476 ret = -ENOMEM; 477 goto out; 478 } 479 480 in_mad->mad_hdr.base_version = 1; 481 in_mad->mad_hdr.mgmt_class = IB_MGMT_CLASS_PERF_MGMT; 482 in_mad->mad_hdr.class_version = 1; 483 in_mad->mad_hdr.method = IB_MGMT_METHOD_GET; 484 in_mad->mad_hdr.attr_id = attr; 485 486 if (attr != IB_PMA_CLASS_PORT_INFO) 487 in_mad->data[41] = port_num; /* PortSelect field */ 488 489 if ((dev->ops.process_mad(dev, IB_MAD_IGNORE_MKEY, 490 port_num, NULL, NULL, 491 (const struct ib_mad_hdr *)in_mad, mad_size, 492 (struct ib_mad_hdr *)out_mad, &mad_size, 493 &out_mad_pkey_index) & 494 (IB_MAD_RESULT_SUCCESS | IB_MAD_RESULT_REPLY)) != 495 (IB_MAD_RESULT_SUCCESS | IB_MAD_RESULT_REPLY)) { 496 ret = -EINVAL; 497 goto out; 498 } 499 memcpy(data, out_mad->data + offset, size); 500 ret = size; 501 out: 502 kfree(in_mad); 503 kfree(out_mad); 504 return ret; 505 } 506 507 static ssize_t show_pma_counter(struct ib_port *p, struct port_attribute *attr, 508 char *buf) 509 { 510 struct port_table_attribute *tab_attr = 511 container_of(attr, struct port_table_attribute, attr); 512 int offset = tab_attr->index & 0xffff; 513 int width = (tab_attr->index >> 16) & 0xff; 514 ssize_t ret; 515 u8 data[8]; 516 517 ret = get_perf_mad(p->ibdev, p->port_num, tab_attr->attr_id, &data, 518 40 + offset / 8, sizeof(data)); 519 if (ret < 0) 520 return ret; 521 522 switch (width) { 523 case 4: 524 ret = sprintf(buf, "%u\n", (*data >> 525 (4 - (offset % 8))) & 0xf); 526 break; 527 case 8: 528 ret = sprintf(buf, "%u\n", *data); 529 break; 530 case 16: 531 ret = sprintf(buf, "%u\n", 532 be16_to_cpup((__be16 *)data)); 533 break; 534 case 32: 535 ret = sprintf(buf, "%u\n", 536 be32_to_cpup((__be32 *)data)); 537 break; 538 case 64: 539 ret = sprintf(buf, "%llu\n", 540 be64_to_cpup((__be64 *)data)); 541 break; 542 543 default: 544 ret = 0; 545 } 546 547 return ret; 548 } 549 550 static PORT_PMA_ATTR(symbol_error , 0, 16, 32); 551 static PORT_PMA_ATTR(link_error_recovery , 1, 8, 48); 552 static PORT_PMA_ATTR(link_downed , 2, 8, 56); 553 static PORT_PMA_ATTR(port_rcv_errors , 3, 16, 64); 554 static PORT_PMA_ATTR(port_rcv_remote_physical_errors, 4, 16, 80); 555 static PORT_PMA_ATTR(port_rcv_switch_relay_errors , 5, 16, 96); 556 static PORT_PMA_ATTR(port_xmit_discards , 6, 16, 112); 557 static PORT_PMA_ATTR(port_xmit_constraint_errors , 7, 8, 128); 558 static PORT_PMA_ATTR(port_rcv_constraint_errors , 8, 8, 136); 559 static PORT_PMA_ATTR(local_link_integrity_errors , 9, 4, 152); 560 static PORT_PMA_ATTR(excessive_buffer_overrun_errors, 10, 4, 156); 561 static PORT_PMA_ATTR(VL15_dropped , 11, 16, 176); 562 static PORT_PMA_ATTR(port_xmit_data , 12, 32, 192); 563 static PORT_PMA_ATTR(port_rcv_data , 13, 32, 224); 564 static PORT_PMA_ATTR(port_xmit_packets , 14, 32, 256); 565 static PORT_PMA_ATTR(port_rcv_packets , 15, 32, 288); 566 static PORT_PMA_ATTR(port_xmit_wait , 0, 32, 320); 567 568 /* 569 * Counters added by extended set 570 */ 571 static PORT_PMA_ATTR_EXT(port_xmit_data , 64, 64); 572 static PORT_PMA_ATTR_EXT(port_rcv_data , 64, 128); 573 static PORT_PMA_ATTR_EXT(port_xmit_packets , 64, 192); 574 static PORT_PMA_ATTR_EXT(port_rcv_packets , 64, 256); 575 static PORT_PMA_ATTR_EXT(unicast_xmit_packets , 64, 320); 576 static PORT_PMA_ATTR_EXT(unicast_rcv_packets , 64, 384); 577 static PORT_PMA_ATTR_EXT(multicast_xmit_packets , 64, 448); 578 static PORT_PMA_ATTR_EXT(multicast_rcv_packets , 64, 512); 579 580 static struct attribute *pma_attrs[] = { 581 &port_pma_attr_symbol_error.attr.attr, 582 &port_pma_attr_link_error_recovery.attr.attr, 583 &port_pma_attr_link_downed.attr.attr, 584 &port_pma_attr_port_rcv_errors.attr.attr, 585 &port_pma_attr_port_rcv_remote_physical_errors.attr.attr, 586 &port_pma_attr_port_rcv_switch_relay_errors.attr.attr, 587 &port_pma_attr_port_xmit_discards.attr.attr, 588 &port_pma_attr_port_xmit_constraint_errors.attr.attr, 589 &port_pma_attr_port_rcv_constraint_errors.attr.attr, 590 &port_pma_attr_local_link_integrity_errors.attr.attr, 591 &port_pma_attr_excessive_buffer_overrun_errors.attr.attr, 592 &port_pma_attr_VL15_dropped.attr.attr, 593 &port_pma_attr_port_xmit_data.attr.attr, 594 &port_pma_attr_port_rcv_data.attr.attr, 595 &port_pma_attr_port_xmit_packets.attr.attr, 596 &port_pma_attr_port_rcv_packets.attr.attr, 597 &port_pma_attr_port_xmit_wait.attr.attr, 598 NULL 599 }; 600 601 static struct attribute *pma_attrs_ext[] = { 602 &port_pma_attr_symbol_error.attr.attr, 603 &port_pma_attr_link_error_recovery.attr.attr, 604 &port_pma_attr_link_downed.attr.attr, 605 &port_pma_attr_port_rcv_errors.attr.attr, 606 &port_pma_attr_port_rcv_remote_physical_errors.attr.attr, 607 &port_pma_attr_port_rcv_switch_relay_errors.attr.attr, 608 &port_pma_attr_port_xmit_discards.attr.attr, 609 &port_pma_attr_port_xmit_constraint_errors.attr.attr, 610 &port_pma_attr_port_rcv_constraint_errors.attr.attr, 611 &port_pma_attr_local_link_integrity_errors.attr.attr, 612 &port_pma_attr_excessive_buffer_overrun_errors.attr.attr, 613 &port_pma_attr_VL15_dropped.attr.attr, 614 &port_pma_attr_ext_port_xmit_data.attr.attr, 615 &port_pma_attr_ext_port_rcv_data.attr.attr, 616 &port_pma_attr_ext_port_xmit_packets.attr.attr, 617 &port_pma_attr_port_xmit_wait.attr.attr, 618 &port_pma_attr_ext_port_rcv_packets.attr.attr, 619 &port_pma_attr_ext_unicast_rcv_packets.attr.attr, 620 &port_pma_attr_ext_unicast_xmit_packets.attr.attr, 621 &port_pma_attr_ext_multicast_rcv_packets.attr.attr, 622 &port_pma_attr_ext_multicast_xmit_packets.attr.attr, 623 NULL 624 }; 625 626 static struct attribute *pma_attrs_noietf[] = { 627 &port_pma_attr_symbol_error.attr.attr, 628 &port_pma_attr_link_error_recovery.attr.attr, 629 &port_pma_attr_link_downed.attr.attr, 630 &port_pma_attr_port_rcv_errors.attr.attr, 631 &port_pma_attr_port_rcv_remote_physical_errors.attr.attr, 632 &port_pma_attr_port_rcv_switch_relay_errors.attr.attr, 633 &port_pma_attr_port_xmit_discards.attr.attr, 634 &port_pma_attr_port_xmit_constraint_errors.attr.attr, 635 &port_pma_attr_port_rcv_constraint_errors.attr.attr, 636 &port_pma_attr_local_link_integrity_errors.attr.attr, 637 &port_pma_attr_excessive_buffer_overrun_errors.attr.attr, 638 &port_pma_attr_VL15_dropped.attr.attr, 639 &port_pma_attr_ext_port_xmit_data.attr.attr, 640 &port_pma_attr_ext_port_rcv_data.attr.attr, 641 &port_pma_attr_ext_port_xmit_packets.attr.attr, 642 &port_pma_attr_ext_port_rcv_packets.attr.attr, 643 &port_pma_attr_port_xmit_wait.attr.attr, 644 NULL 645 }; 646 647 static struct attribute_group pma_group = { 648 .name = "counters", 649 .attrs = pma_attrs 650 }; 651 652 static struct attribute_group pma_group_ext = { 653 .name = "counters", 654 .attrs = pma_attrs_ext 655 }; 656 657 static struct attribute_group pma_group_noietf = { 658 .name = "counters", 659 .attrs = pma_attrs_noietf 660 }; 661 662 static void ib_port_release(struct kobject *kobj) 663 { 664 struct ib_port *p = container_of(kobj, struct ib_port, kobj); 665 struct attribute *a; 666 int i; 667 668 if (p->gid_group.attrs) { 669 for (i = 0; (a = p->gid_group.attrs[i]); ++i) 670 kfree(a); 671 672 kfree(p->gid_group.attrs); 673 } 674 675 if (p->pkey_group.attrs) { 676 for (i = 0; (a = p->pkey_group.attrs[i]); ++i) 677 kfree(a); 678 679 kfree(p->pkey_group.attrs); 680 } 681 682 kfree(p); 683 } 684 685 static void ib_port_gid_attr_release(struct kobject *kobj) 686 { 687 struct gid_attr_group *g = container_of(kobj, struct gid_attr_group, 688 kobj); 689 struct attribute *a; 690 int i; 691 692 if (g->ndev.attrs) { 693 for (i = 0; (a = g->ndev.attrs[i]); ++i) 694 kfree(a); 695 696 kfree(g->ndev.attrs); 697 } 698 699 if (g->type.attrs) { 700 for (i = 0; (a = g->type.attrs[i]); ++i) 701 kfree(a); 702 703 kfree(g->type.attrs); 704 } 705 706 kfree(g); 707 } 708 709 static struct kobj_type port_type = { 710 .release = ib_port_release, 711 .sysfs_ops = &port_sysfs_ops, 712 .default_attrs = port_default_attrs 713 }; 714 715 static struct kobj_type gid_attr_type = { 716 .sysfs_ops = &gid_attr_sysfs_ops, 717 .release = ib_port_gid_attr_release 718 }; 719 720 static struct attribute ** 721 alloc_group_attrs(ssize_t (*show)(struct ib_port *, 722 struct port_attribute *, char *buf), 723 int len) 724 { 725 struct attribute **tab_attr; 726 struct port_table_attribute *element; 727 int i; 728 729 tab_attr = kcalloc(1 + len, sizeof(struct attribute *), GFP_KERNEL); 730 if (!tab_attr) 731 return NULL; 732 733 for (i = 0; i < len; i++) { 734 element = kzalloc(sizeof(struct port_table_attribute), 735 GFP_KERNEL); 736 if (!element) 737 goto err; 738 739 if (snprintf(element->name, sizeof(element->name), 740 "%d", i) >= sizeof(element->name)) { 741 kfree(element); 742 goto err; 743 } 744 745 element->attr.attr.name = element->name; 746 element->attr.attr.mode = S_IRUGO; 747 element->attr.show = show; 748 element->index = i; 749 sysfs_attr_init(&element->attr.attr); 750 751 tab_attr[i] = &element->attr.attr; 752 } 753 754 return tab_attr; 755 756 err: 757 while (--i >= 0) 758 kfree(tab_attr[i]); 759 kfree(tab_attr); 760 return NULL; 761 } 762 763 /* 764 * Figure out which counter table to use depending on 765 * the device capabilities. 766 */ 767 static struct attribute_group *get_counter_table(struct ib_device *dev, 768 int port_num) 769 { 770 struct ib_class_port_info cpi; 771 772 if (get_perf_mad(dev, port_num, IB_PMA_CLASS_PORT_INFO, 773 &cpi, 40, sizeof(cpi)) >= 0) { 774 if (cpi.capability_mask & IB_PMA_CLASS_CAP_EXT_WIDTH) 775 /* We have extended counters */ 776 return &pma_group_ext; 777 778 if (cpi.capability_mask & IB_PMA_CLASS_CAP_EXT_WIDTH_NOIETF) 779 /* But not the IETF ones */ 780 return &pma_group_noietf; 781 } 782 783 /* Fall back to normal counters */ 784 return &pma_group; 785 } 786 787 static int update_hw_stats(struct ib_device *dev, struct rdma_hw_stats *stats, 788 u8 port_num, int index) 789 { 790 int ret; 791 792 if (time_is_after_eq_jiffies(stats->timestamp + stats->lifespan)) 793 return 0; 794 ret = dev->ops.get_hw_stats(dev, stats, port_num, index); 795 if (ret < 0) 796 return ret; 797 if (ret == stats->num_counters) 798 stats->timestamp = jiffies; 799 800 return 0; 801 } 802 803 static ssize_t print_hw_stat(struct rdma_hw_stats *stats, int index, char *buf) 804 { 805 return sprintf(buf, "%llu\n", stats->value[index]); 806 } 807 808 static ssize_t show_hw_stats(struct kobject *kobj, struct attribute *attr, 809 char *buf) 810 { 811 struct ib_device *dev; 812 struct ib_port *port; 813 struct hw_stats_attribute *hsa; 814 struct rdma_hw_stats *stats; 815 int ret; 816 817 hsa = container_of(attr, struct hw_stats_attribute, attr); 818 if (!hsa->port_num) { 819 dev = container_of((struct device *)kobj, 820 struct ib_device, dev); 821 stats = dev->hw_stats; 822 } else { 823 port = container_of(kobj, struct ib_port, kobj); 824 dev = port->ibdev; 825 stats = port->hw_stats; 826 } 827 mutex_lock(&stats->lock); 828 ret = update_hw_stats(dev, stats, hsa->port_num, hsa->index); 829 if (ret) 830 goto unlock; 831 ret = print_hw_stat(stats, hsa->index, buf); 832 unlock: 833 mutex_unlock(&stats->lock); 834 835 return ret; 836 } 837 838 static ssize_t show_stats_lifespan(struct kobject *kobj, 839 struct attribute *attr, 840 char *buf) 841 { 842 struct hw_stats_attribute *hsa; 843 struct rdma_hw_stats *stats; 844 int msecs; 845 846 hsa = container_of(attr, struct hw_stats_attribute, attr); 847 if (!hsa->port_num) { 848 struct ib_device *dev = container_of((struct device *)kobj, 849 struct ib_device, dev); 850 851 stats = dev->hw_stats; 852 } else { 853 struct ib_port *p = container_of(kobj, struct ib_port, kobj); 854 855 stats = p->hw_stats; 856 } 857 858 mutex_lock(&stats->lock); 859 msecs = jiffies_to_msecs(stats->lifespan); 860 mutex_unlock(&stats->lock); 861 862 return sprintf(buf, "%d\n", msecs); 863 } 864 865 static ssize_t set_stats_lifespan(struct kobject *kobj, 866 struct attribute *attr, 867 const char *buf, size_t count) 868 { 869 struct hw_stats_attribute *hsa; 870 struct rdma_hw_stats *stats; 871 int msecs; 872 int jiffies; 873 int ret; 874 875 ret = kstrtoint(buf, 10, &msecs); 876 if (ret) 877 return ret; 878 if (msecs < 0 || msecs > 10000) 879 return -EINVAL; 880 jiffies = msecs_to_jiffies(msecs); 881 hsa = container_of(attr, struct hw_stats_attribute, attr); 882 if (!hsa->port_num) { 883 struct ib_device *dev = container_of((struct device *)kobj, 884 struct ib_device, dev); 885 886 stats = dev->hw_stats; 887 } else { 888 struct ib_port *p = container_of(kobj, struct ib_port, kobj); 889 890 stats = p->hw_stats; 891 } 892 893 mutex_lock(&stats->lock); 894 stats->lifespan = jiffies; 895 mutex_unlock(&stats->lock); 896 897 return count; 898 } 899 900 static void free_hsag(struct kobject *kobj, struct attribute_group *attr_group) 901 { 902 struct attribute **attr; 903 904 sysfs_remove_group(kobj, attr_group); 905 906 for (attr = attr_group->attrs; *attr; attr++) 907 kfree(*attr); 908 kfree(attr_group); 909 } 910 911 static struct attribute *alloc_hsa(int index, u8 port_num, const char *name) 912 { 913 struct hw_stats_attribute *hsa; 914 915 hsa = kmalloc(sizeof(*hsa), GFP_KERNEL); 916 if (!hsa) 917 return NULL; 918 919 hsa->attr.name = (char *)name; 920 hsa->attr.mode = S_IRUGO; 921 hsa->show = show_hw_stats; 922 hsa->store = NULL; 923 hsa->index = index; 924 hsa->port_num = port_num; 925 926 return &hsa->attr; 927 } 928 929 static struct attribute *alloc_hsa_lifespan(char *name, u8 port_num) 930 { 931 struct hw_stats_attribute *hsa; 932 933 hsa = kmalloc(sizeof(*hsa), GFP_KERNEL); 934 if (!hsa) 935 return NULL; 936 937 hsa->attr.name = name; 938 hsa->attr.mode = S_IWUSR | S_IRUGO; 939 hsa->show = show_stats_lifespan; 940 hsa->store = set_stats_lifespan; 941 hsa->index = 0; 942 hsa->port_num = port_num; 943 944 return &hsa->attr; 945 } 946 947 static void setup_hw_stats(struct ib_device *device, struct ib_port *port, 948 u8 port_num) 949 { 950 struct attribute_group *hsag; 951 struct rdma_hw_stats *stats; 952 int i, ret; 953 954 stats = device->ops.alloc_hw_stats(device, port_num); 955 956 if (!stats) 957 return; 958 959 if (!stats->names || stats->num_counters <= 0) 960 goto err_free_stats; 961 962 /* 963 * Two extra attribue elements here, one for the lifespan entry and 964 * one to NULL terminate the list for the sysfs core code 965 */ 966 hsag = kzalloc(sizeof(*hsag) + 967 sizeof(void *) * (stats->num_counters + 2), 968 GFP_KERNEL); 969 if (!hsag) 970 goto err_free_stats; 971 972 ret = device->ops.get_hw_stats(device, stats, port_num, 973 stats->num_counters); 974 if (ret != stats->num_counters) 975 goto err_free_hsag; 976 977 stats->timestamp = jiffies; 978 979 hsag->name = "hw_counters"; 980 hsag->attrs = (void *)hsag + sizeof(*hsag); 981 982 for (i = 0; i < stats->num_counters; i++) { 983 hsag->attrs[i] = alloc_hsa(i, port_num, stats->names[i]); 984 if (!hsag->attrs[i]) 985 goto err; 986 sysfs_attr_init(hsag->attrs[i]); 987 } 988 989 mutex_init(&stats->lock); 990 /* treat an error here as non-fatal */ 991 hsag->attrs[i] = alloc_hsa_lifespan("lifespan", port_num); 992 if (hsag->attrs[i]) 993 sysfs_attr_init(hsag->attrs[i]); 994 995 if (port) { 996 struct kobject *kobj = &port->kobj; 997 ret = sysfs_create_group(kobj, hsag); 998 if (ret) 999 goto err; 1000 port->hw_stats_ag = hsag; 1001 port->hw_stats = stats; 1002 } else { 1003 struct kobject *kobj = &device->dev.kobj; 1004 ret = sysfs_create_group(kobj, hsag); 1005 if (ret) 1006 goto err; 1007 device->hw_stats_ag = hsag; 1008 device->hw_stats = stats; 1009 } 1010 1011 return; 1012 1013 err: 1014 for (; i >= 0; i--) 1015 kfree(hsag->attrs[i]); 1016 err_free_hsag: 1017 kfree(hsag); 1018 err_free_stats: 1019 kfree(stats); 1020 return; 1021 } 1022 1023 static int add_port(struct ib_core_device *coredev, int port_num) 1024 { 1025 struct ib_device *device = rdma_device_to_ibdev(&coredev->dev); 1026 bool is_full_dev = &device->coredev == coredev; 1027 struct ib_port *p; 1028 struct ib_port_attr attr; 1029 int i; 1030 int ret; 1031 1032 ret = ib_query_port(device, port_num, &attr); 1033 if (ret) 1034 return ret; 1035 1036 p = kzalloc(sizeof *p, GFP_KERNEL); 1037 if (!p) 1038 return -ENOMEM; 1039 1040 p->ibdev = device; 1041 p->port_num = port_num; 1042 1043 ret = kobject_init_and_add(&p->kobj, &port_type, 1044 coredev->ports_kobj, 1045 "%d", port_num); 1046 if (ret) { 1047 kfree(p); 1048 return ret; 1049 } 1050 1051 p->gid_attr_group = kzalloc(sizeof(*p->gid_attr_group), GFP_KERNEL); 1052 if (!p->gid_attr_group) { 1053 ret = -ENOMEM; 1054 goto err_put; 1055 } 1056 1057 p->gid_attr_group->port = p; 1058 ret = kobject_init_and_add(&p->gid_attr_group->kobj, &gid_attr_type, 1059 &p->kobj, "gid_attrs"); 1060 if (ret) { 1061 kfree(p->gid_attr_group); 1062 goto err_put; 1063 } 1064 1065 if (device->ops.process_mad && is_full_dev) { 1066 p->pma_table = get_counter_table(device, port_num); 1067 ret = sysfs_create_group(&p->kobj, p->pma_table); 1068 if (ret) 1069 goto err_put_gid_attrs; 1070 } 1071 1072 p->gid_group.name = "gids"; 1073 p->gid_group.attrs = alloc_group_attrs(show_port_gid, attr.gid_tbl_len); 1074 if (!p->gid_group.attrs) { 1075 ret = -ENOMEM; 1076 goto err_remove_pma; 1077 } 1078 1079 ret = sysfs_create_group(&p->kobj, &p->gid_group); 1080 if (ret) 1081 goto err_free_gid; 1082 1083 p->gid_attr_group->ndev.name = "ndevs"; 1084 p->gid_attr_group->ndev.attrs = alloc_group_attrs(show_port_gid_attr_ndev, 1085 attr.gid_tbl_len); 1086 if (!p->gid_attr_group->ndev.attrs) { 1087 ret = -ENOMEM; 1088 goto err_remove_gid; 1089 } 1090 1091 ret = sysfs_create_group(&p->gid_attr_group->kobj, 1092 &p->gid_attr_group->ndev); 1093 if (ret) 1094 goto err_free_gid_ndev; 1095 1096 p->gid_attr_group->type.name = "types"; 1097 p->gid_attr_group->type.attrs = alloc_group_attrs(show_port_gid_attr_gid_type, 1098 attr.gid_tbl_len); 1099 if (!p->gid_attr_group->type.attrs) { 1100 ret = -ENOMEM; 1101 goto err_remove_gid_ndev; 1102 } 1103 1104 ret = sysfs_create_group(&p->gid_attr_group->kobj, 1105 &p->gid_attr_group->type); 1106 if (ret) 1107 goto err_free_gid_type; 1108 1109 p->pkey_group.name = "pkeys"; 1110 p->pkey_group.attrs = alloc_group_attrs(show_port_pkey, 1111 attr.pkey_tbl_len); 1112 if (!p->pkey_group.attrs) { 1113 ret = -ENOMEM; 1114 goto err_remove_gid_type; 1115 } 1116 1117 ret = sysfs_create_group(&p->kobj, &p->pkey_group); 1118 if (ret) 1119 goto err_free_pkey; 1120 1121 if (device->ops.init_port && is_full_dev) { 1122 ret = device->ops.init_port(device, port_num, &p->kobj); 1123 if (ret) 1124 goto err_remove_pkey; 1125 } 1126 1127 /* 1128 * If port == 0, it means hw_counters are per device and not per 1129 * port, so holder should be device. Therefore skip per port conunter 1130 * initialization. 1131 */ 1132 if (device->ops.alloc_hw_stats && port_num && is_full_dev) 1133 setup_hw_stats(device, p, port_num); 1134 1135 list_add_tail(&p->kobj.entry, &coredev->port_list); 1136 1137 kobject_uevent(&p->kobj, KOBJ_ADD); 1138 return 0; 1139 1140 err_remove_pkey: 1141 sysfs_remove_group(&p->kobj, &p->pkey_group); 1142 1143 err_free_pkey: 1144 for (i = 0; i < attr.pkey_tbl_len; ++i) 1145 kfree(p->pkey_group.attrs[i]); 1146 1147 kfree(p->pkey_group.attrs); 1148 p->pkey_group.attrs = NULL; 1149 1150 err_remove_gid_type: 1151 sysfs_remove_group(&p->gid_attr_group->kobj, 1152 &p->gid_attr_group->type); 1153 1154 err_free_gid_type: 1155 for (i = 0; i < attr.gid_tbl_len; ++i) 1156 kfree(p->gid_attr_group->type.attrs[i]); 1157 1158 kfree(p->gid_attr_group->type.attrs); 1159 p->gid_attr_group->type.attrs = NULL; 1160 1161 err_remove_gid_ndev: 1162 sysfs_remove_group(&p->gid_attr_group->kobj, 1163 &p->gid_attr_group->ndev); 1164 1165 err_free_gid_ndev: 1166 for (i = 0; i < attr.gid_tbl_len; ++i) 1167 kfree(p->gid_attr_group->ndev.attrs[i]); 1168 1169 kfree(p->gid_attr_group->ndev.attrs); 1170 p->gid_attr_group->ndev.attrs = NULL; 1171 1172 err_remove_gid: 1173 sysfs_remove_group(&p->kobj, &p->gid_group); 1174 1175 err_free_gid: 1176 for (i = 0; i < attr.gid_tbl_len; ++i) 1177 kfree(p->gid_group.attrs[i]); 1178 1179 kfree(p->gid_group.attrs); 1180 p->gid_group.attrs = NULL; 1181 1182 err_remove_pma: 1183 if (p->pma_table) 1184 sysfs_remove_group(&p->kobj, p->pma_table); 1185 1186 err_put_gid_attrs: 1187 kobject_put(&p->gid_attr_group->kobj); 1188 1189 err_put: 1190 kobject_put(&p->kobj); 1191 return ret; 1192 } 1193 1194 static ssize_t node_type_show(struct device *device, 1195 struct device_attribute *attr, char *buf) 1196 { 1197 struct ib_device *dev = rdma_device_to_ibdev(device); 1198 1199 switch (dev->node_type) { 1200 case RDMA_NODE_IB_CA: return sprintf(buf, "%d: CA\n", dev->node_type); 1201 case RDMA_NODE_RNIC: return sprintf(buf, "%d: RNIC\n", dev->node_type); 1202 case RDMA_NODE_USNIC: return sprintf(buf, "%d: usNIC\n", dev->node_type); 1203 case RDMA_NODE_USNIC_UDP: return sprintf(buf, "%d: usNIC UDP\n", dev->node_type); 1204 case RDMA_NODE_UNSPECIFIED: return sprintf(buf, "%d: unspecified\n", dev->node_type); 1205 case RDMA_NODE_IB_SWITCH: return sprintf(buf, "%d: switch\n", dev->node_type); 1206 case RDMA_NODE_IB_ROUTER: return sprintf(buf, "%d: router\n", dev->node_type); 1207 default: return sprintf(buf, "%d: <unknown>\n", dev->node_type); 1208 } 1209 } 1210 static DEVICE_ATTR_RO(node_type); 1211 1212 static ssize_t sys_image_guid_show(struct device *device, 1213 struct device_attribute *dev_attr, char *buf) 1214 { 1215 struct ib_device *dev = rdma_device_to_ibdev(device); 1216 1217 return sprintf(buf, "%04x:%04x:%04x:%04x\n", 1218 be16_to_cpu(((__be16 *) &dev->attrs.sys_image_guid)[0]), 1219 be16_to_cpu(((__be16 *) &dev->attrs.sys_image_guid)[1]), 1220 be16_to_cpu(((__be16 *) &dev->attrs.sys_image_guid)[2]), 1221 be16_to_cpu(((__be16 *) &dev->attrs.sys_image_guid)[3])); 1222 } 1223 static DEVICE_ATTR_RO(sys_image_guid); 1224 1225 static ssize_t node_guid_show(struct device *device, 1226 struct device_attribute *attr, char *buf) 1227 { 1228 struct ib_device *dev = rdma_device_to_ibdev(device); 1229 1230 return sprintf(buf, "%04x:%04x:%04x:%04x\n", 1231 be16_to_cpu(((__be16 *) &dev->node_guid)[0]), 1232 be16_to_cpu(((__be16 *) &dev->node_guid)[1]), 1233 be16_to_cpu(((__be16 *) &dev->node_guid)[2]), 1234 be16_to_cpu(((__be16 *) &dev->node_guid)[3])); 1235 } 1236 static DEVICE_ATTR_RO(node_guid); 1237 1238 static ssize_t node_desc_show(struct device *device, 1239 struct device_attribute *attr, char *buf) 1240 { 1241 struct ib_device *dev = rdma_device_to_ibdev(device); 1242 1243 return sprintf(buf, "%.64s\n", dev->node_desc); 1244 } 1245 1246 static ssize_t node_desc_store(struct device *device, 1247 struct device_attribute *attr, 1248 const char *buf, size_t count) 1249 { 1250 struct ib_device *dev = rdma_device_to_ibdev(device); 1251 struct ib_device_modify desc = {}; 1252 int ret; 1253 1254 if (!dev->ops.modify_device) 1255 return -EIO; 1256 1257 memcpy(desc.node_desc, buf, min_t(int, count, IB_DEVICE_NODE_DESC_MAX)); 1258 ret = ib_modify_device(dev, IB_DEVICE_MODIFY_NODE_DESC, &desc); 1259 if (ret) 1260 return ret; 1261 1262 return count; 1263 } 1264 static DEVICE_ATTR_RW(node_desc); 1265 1266 static ssize_t fw_ver_show(struct device *device, struct device_attribute *attr, 1267 char *buf) 1268 { 1269 struct ib_device *dev = rdma_device_to_ibdev(device); 1270 1271 ib_get_device_fw_str(dev, buf); 1272 strlcat(buf, "\n", IB_FW_VERSION_NAME_MAX); 1273 return strlen(buf); 1274 } 1275 static DEVICE_ATTR_RO(fw_ver); 1276 1277 static struct attribute *ib_dev_attrs[] = { 1278 &dev_attr_node_type.attr, 1279 &dev_attr_node_guid.attr, 1280 &dev_attr_sys_image_guid.attr, 1281 &dev_attr_fw_ver.attr, 1282 &dev_attr_node_desc.attr, 1283 NULL, 1284 }; 1285 1286 const struct attribute_group ib_dev_attr_group = { 1287 .attrs = ib_dev_attrs, 1288 }; 1289 1290 void ib_free_port_attrs(struct ib_core_device *coredev) 1291 { 1292 struct kobject *p, *t; 1293 1294 list_for_each_entry_safe(p, t, &coredev->port_list, entry) { 1295 struct ib_port *port = container_of(p, struct ib_port, kobj); 1296 1297 list_del(&p->entry); 1298 if (port->hw_stats_ag) 1299 free_hsag(&port->kobj, port->hw_stats_ag); 1300 kfree(port->hw_stats); 1301 1302 if (port->pma_table) 1303 sysfs_remove_group(p, port->pma_table); 1304 sysfs_remove_group(p, &port->pkey_group); 1305 sysfs_remove_group(p, &port->gid_group); 1306 sysfs_remove_group(&port->gid_attr_group->kobj, 1307 &port->gid_attr_group->ndev); 1308 sysfs_remove_group(&port->gid_attr_group->kobj, 1309 &port->gid_attr_group->type); 1310 kobject_put(&port->gid_attr_group->kobj); 1311 kobject_put(p); 1312 } 1313 1314 kobject_put(coredev->ports_kobj); 1315 } 1316 1317 int ib_setup_port_attrs(struct ib_core_device *coredev) 1318 { 1319 struct ib_device *device = rdma_device_to_ibdev(&coredev->dev); 1320 unsigned int port; 1321 int ret; 1322 1323 coredev->ports_kobj = kobject_create_and_add("ports", 1324 &coredev->dev.kobj); 1325 if (!coredev->ports_kobj) 1326 return -ENOMEM; 1327 1328 rdma_for_each_port (device, port) { 1329 ret = add_port(coredev, port); 1330 if (ret) 1331 goto err_put; 1332 } 1333 1334 return 0; 1335 1336 err_put: 1337 ib_free_port_attrs(coredev); 1338 return ret; 1339 } 1340 1341 int ib_device_register_sysfs(struct ib_device *device) 1342 { 1343 int ret; 1344 1345 ret = ib_setup_port_attrs(&device->coredev); 1346 if (ret) 1347 return ret; 1348 1349 if (device->ops.alloc_hw_stats) 1350 setup_hw_stats(device, NULL, 0); 1351 1352 return 0; 1353 } 1354 1355 void ib_device_unregister_sysfs(struct ib_device *device) 1356 { 1357 if (device->hw_stats_ag) 1358 free_hsag(&device->dev.kobj, device->hw_stats_ag); 1359 kfree(device->hw_stats); 1360 1361 ib_free_port_attrs(&device->coredev); 1362 } 1363 1364 /** 1365 * ib_port_register_module_stat - add module counters under relevant port 1366 * of IB device. 1367 * 1368 * @device: IB device to add counters 1369 * @port_num: valid port number 1370 * @kobj: pointer to the kobject to initialize 1371 * @ktype: pointer to the ktype for this kobject. 1372 * @name: the name of the kobject 1373 */ 1374 int ib_port_register_module_stat(struct ib_device *device, u8 port_num, 1375 struct kobject *kobj, struct kobj_type *ktype, 1376 const char *name) 1377 { 1378 struct kobject *p, *t; 1379 int ret; 1380 1381 list_for_each_entry_safe(p, t, &device->coredev.port_list, entry) { 1382 struct ib_port *port = container_of(p, struct ib_port, kobj); 1383 1384 if (port->port_num != port_num) 1385 continue; 1386 1387 ret = kobject_init_and_add(kobj, ktype, &port->kobj, "%s", 1388 name); 1389 if (ret) 1390 return ret; 1391 } 1392 1393 return 0; 1394 } 1395 EXPORT_SYMBOL(ib_port_register_module_stat); 1396 1397 /** 1398 * ib_port_unregister_module_stat - release module counters 1399 * @kobj: pointer to the kobject to release 1400 */ 1401 void ib_port_unregister_module_stat(struct kobject *kobj) 1402 { 1403 kobject_put(kobj); 1404 } 1405 EXPORT_SYMBOL(ib_port_unregister_module_stat); 1406