1// SPDX-License-Identifier: GPL-2.0 2/* 3 * Software nodes for the firmware node framework. 4 * 5 * Copyright (C) 2018, Intel Corporation 6 * Author: Heikki Krogerus <heikki.krogerus@linux.intel.com> 7 */ 8 9#include <linux/device.h> 10#include <linux/kernel.h> 11#include <linux/property.h> 12#include <linux/slab.h> 13 14struct swnode { 15 int id; 16 struct kobject kobj; 17 struct fwnode_handle fwnode; 18 const struct software_node *node; 19 20 /* hierarchy */ 21 struct ida child_ids; 22 struct list_head entry; 23 struct list_head children; 24 struct swnode *parent; 25 26 unsigned int allocated:1; 27}; 28 29static DEFINE_IDA(swnode_root_ids); 30static struct kset *swnode_kset; 31 32#define kobj_to_swnode(_kobj_) container_of(_kobj_, struct swnode, kobj) 33 34static const struct fwnode_operations software_node_ops; 35 36bool is_software_node(const struct fwnode_handle *fwnode) 37{ 38 return !IS_ERR_OR_NULL(fwnode) && fwnode->ops == &software_node_ops; 39} 40EXPORT_SYMBOL_GPL(is_software_node); 41 42#define to_swnode(__fwnode) \ 43 ({ \ 44 typeof(__fwnode) __to_swnode_fwnode = __fwnode; \ 45 \ 46 is_software_node(__to_swnode_fwnode) ? \ 47 container_of(__to_swnode_fwnode, \ 48 struct swnode, fwnode) : NULL; \ 49 }) 50 51static struct swnode * 52software_node_to_swnode(const struct software_node *node) 53{ 54 struct swnode *swnode = NULL; 55 struct kobject *k; 56 57 if (!node) 58 return NULL; 59 60 spin_lock(&swnode_kset->list_lock); 61 62 list_for_each_entry(k, &swnode_kset->list, entry) { 63 swnode = kobj_to_swnode(k); 64 if (swnode->node == node) 65 break; 66 swnode = NULL; 67 } 68 69 spin_unlock(&swnode_kset->list_lock); 70 71 return swnode; 72} 73 74const struct software_node *to_software_node(const struct fwnode_handle *fwnode) 75{ 76 const struct swnode *swnode = to_swnode(fwnode); 77 78 return swnode ? swnode->node : NULL; 79} 80EXPORT_SYMBOL_GPL(to_software_node); 81 82struct fwnode_handle *software_node_fwnode(const struct software_node *node) 83{ 84 struct swnode *swnode = software_node_to_swnode(node); 85 86 return swnode ? &swnode->fwnode : NULL; 87} 88EXPORT_SYMBOL_GPL(software_node_fwnode); 89 90/* -------------------------------------------------------------------------- */ 91/* property_entry processing */ 92 93static const struct property_entry * 94property_entry_get(const struct property_entry *prop, const char *name) 95{ 96 if (!prop) 97 return NULL; 98 99 for (; prop->name; prop++) 100 if (!strcmp(name, prop->name)) 101 return prop; 102 103 return NULL; 104} 105 106static const void *property_get_pointer(const struct property_entry *prop) 107{ 108 if (!prop->length) 109 return NULL; 110 111 return prop->is_inline ? &prop->value : prop->pointer; 112} 113 114static const void *property_entry_find(const struct property_entry *props, 115 const char *propname, size_t length) 116{ 117 const struct property_entry *prop; 118 const void *pointer; 119 120 prop = property_entry_get(props, propname); 121 if (!prop) 122 return ERR_PTR(-EINVAL); 123 pointer = property_get_pointer(prop); 124 if (!pointer) 125 return ERR_PTR(-ENODATA); 126 if (length > prop->length) 127 return ERR_PTR(-EOVERFLOW); 128 return pointer; 129} 130 131static int 132property_entry_count_elems_of_size(const struct property_entry *props, 133 const char *propname, size_t length) 134{ 135 const struct property_entry *prop; 136 137 prop = property_entry_get(props, propname); 138 if (!prop) 139 return -EINVAL; 140 141 return prop->length / length; 142} 143 144static int property_entry_read_int_array(const struct property_entry *props, 145 const char *name, 146 unsigned int elem_size, void *val, 147 size_t nval) 148{ 149 const void *pointer; 150 size_t length; 151 152 if (!val) 153 return property_entry_count_elems_of_size(props, name, 154 elem_size); 155 156 if (!is_power_of_2(elem_size) || elem_size > sizeof(u64)) 157 return -ENXIO; 158 159 length = nval * elem_size; 160 161 pointer = property_entry_find(props, name, length); 162 if (IS_ERR(pointer)) 163 return PTR_ERR(pointer); 164 165 memcpy(val, pointer, length); 166 return 0; 167} 168 169static int property_entry_read_string_array(const struct property_entry *props, 170 const char *propname, 171 const char **strings, size_t nval) 172{ 173 const void *pointer; 174 size_t length; 175 int array_len; 176 177 /* Find out the array length. */ 178 array_len = property_entry_count_elems_of_size(props, propname, 179 sizeof(const char *)); 180 if (array_len < 0) 181 return array_len; 182 183 /* Return how many there are if strings is NULL. */ 184 if (!strings) 185 return array_len; 186 187 array_len = min_t(size_t, nval, array_len); 188 length = array_len * sizeof(*strings); 189 190 pointer = property_entry_find(props, propname, length); 191 if (IS_ERR(pointer)) 192 return PTR_ERR(pointer); 193 194 memcpy(strings, pointer, length); 195 196 return array_len; 197} 198 199static void property_entry_free_data(const struct property_entry *p) 200{ 201 const char * const *src_str; 202 size_t i, nval; 203 204 if (p->type == DEV_PROP_STRING) { 205 src_str = property_get_pointer(p); 206 nval = p->length / sizeof(*src_str); 207 for (i = 0; i < nval; i++) 208 kfree(src_str[i]); 209 } 210 211 if (!p->is_inline) 212 kfree(p->pointer); 213 214 kfree(p->name); 215} 216 217static bool property_copy_string_array(const char **dst_ptr, 218 const char * const *src_ptr, 219 size_t nval) 220{ 221 int i; 222 223 for (i = 0; i < nval; i++) { 224 dst_ptr[i] = kstrdup(src_ptr[i], GFP_KERNEL); 225 if (!dst_ptr[i] && src_ptr[i]) { 226 while (--i >= 0) 227 kfree(dst_ptr[i]); 228 return false; 229 } 230 } 231 232 return true; 233} 234 235static int property_entry_copy_data(struct property_entry *dst, 236 const struct property_entry *src) 237{ 238 const void *pointer = property_get_pointer(src); 239 void *dst_ptr; 240 size_t nval; 241 242 /* 243 * Properties with no data should not be marked as stored 244 * out of line. 245 */ 246 if (!src->is_inline && !src->length) 247 return -ENODATA; 248 249 /* 250 * Reference properties are never stored inline as 251 * they are too big. 252 */ 253 if (src->type == DEV_PROP_REF && src->is_inline) 254 return -EINVAL; 255 256 if (src->length <= sizeof(dst->value)) { 257 dst_ptr = &dst->value; 258 dst->is_inline = true; 259 } else { 260 dst_ptr = kmalloc(src->length, GFP_KERNEL); 261 if (!dst_ptr) 262 return -ENOMEM; 263 dst->pointer = dst_ptr; 264 } 265 266 if (src->type == DEV_PROP_STRING) { 267 nval = src->length / sizeof(const char *); 268 if (!property_copy_string_array(dst_ptr, pointer, nval)) { 269 if (!dst->is_inline) 270 kfree(dst->pointer); 271 return -ENOMEM; 272 } 273 } else { 274 memcpy(dst_ptr, pointer, src->length); 275 } 276 277 dst->length = src->length; 278 dst->type = src->type; 279 dst->name = kstrdup(src->name, GFP_KERNEL); 280 if (!dst->name) { 281 property_entry_free_data(dst); 282 return -ENOMEM; 283 } 284 285 return 0; 286} 287 288/** 289 * property_entries_dup - duplicate array of properties 290 * @properties: array of properties to copy 291 * 292 * This function creates a deep copy of the given NULL-terminated array 293 * of property entries. 294 */ 295struct property_entry * 296property_entries_dup(const struct property_entry *properties) 297{ 298 struct property_entry *p; 299 int i, n = 0; 300 int ret; 301 302 if (!properties) 303 return NULL; 304 305 while (properties[n].name) 306 n++; 307 308 p = kcalloc(n + 1, sizeof(*p), GFP_KERNEL); 309 if (!p) 310 return ERR_PTR(-ENOMEM); 311 312 for (i = 0; i < n; i++) { 313 ret = property_entry_copy_data(&p[i], &properties[i]); 314 if (ret) { 315 while (--i >= 0) 316 property_entry_free_data(&p[i]); 317 kfree(p); 318 return ERR_PTR(ret); 319 } 320 } 321 322 return p; 323} 324EXPORT_SYMBOL_GPL(property_entries_dup); 325 326/** 327 * property_entries_free - free previously allocated array of properties 328 * @properties: array of properties to destroy 329 * 330 * This function frees given NULL-terminated array of property entries, 331 * along with their data. 332 */ 333void property_entries_free(const struct property_entry *properties) 334{ 335 const struct property_entry *p; 336 337 if (!properties) 338 return; 339 340 for (p = properties; p->name; p++) 341 property_entry_free_data(p); 342 343 kfree(properties); 344} 345EXPORT_SYMBOL_GPL(property_entries_free); 346 347/* -------------------------------------------------------------------------- */ 348/* fwnode operations */ 349 350static struct fwnode_handle *software_node_get(struct fwnode_handle *fwnode) 351{ 352 struct swnode *swnode = to_swnode(fwnode); 353 354 kobject_get(&swnode->kobj); 355 356 return &swnode->fwnode; 357} 358 359static void software_node_put(struct fwnode_handle *fwnode) 360{ 361 struct swnode *swnode = to_swnode(fwnode); 362 363 kobject_put(&swnode->kobj); 364} 365 366static bool software_node_property_present(const struct fwnode_handle *fwnode, 367 const char *propname) 368{ 369 struct swnode *swnode = to_swnode(fwnode); 370 371 return !!property_entry_get(swnode->node->properties, propname); 372} 373 374static int software_node_read_int_array(const struct fwnode_handle *fwnode, 375 const char *propname, 376 unsigned int elem_size, void *val, 377 size_t nval) 378{ 379 struct swnode *swnode = to_swnode(fwnode); 380 381 return property_entry_read_int_array(swnode->node->properties, propname, 382 elem_size, val, nval); 383} 384 385static int software_node_read_string_array(const struct fwnode_handle *fwnode, 386 const char *propname, 387 const char **val, size_t nval) 388{ 389 struct swnode *swnode = to_swnode(fwnode); 390 391 return property_entry_read_string_array(swnode->node->properties, 392 propname, val, nval); 393} 394 395static const char * 396software_node_get_name(const struct fwnode_handle *fwnode) 397{ 398 const struct swnode *swnode = to_swnode(fwnode); 399 400 if (!swnode) 401 return "(null)"; 402 403 return kobject_name(&swnode->kobj); 404} 405 406static const char * 407software_node_get_name_prefix(const struct fwnode_handle *fwnode) 408{ 409 struct fwnode_handle *parent; 410 const char *prefix; 411 412 parent = fwnode_get_parent(fwnode); 413 if (!parent) 414 return ""; 415 416 /* Figure out the prefix from the parents. */ 417 while (is_software_node(parent)) 418 parent = fwnode_get_next_parent(parent); 419 420 prefix = fwnode_get_name_prefix(parent); 421 fwnode_handle_put(parent); 422 423 /* Guess something if prefix was NULL. */ 424 return prefix ?: "/"; 425} 426 427static struct fwnode_handle * 428software_node_get_parent(const struct fwnode_handle *fwnode) 429{ 430 struct swnode *swnode = to_swnode(fwnode); 431 432 if (!swnode || !swnode->parent) 433 return NULL; 434 435 return fwnode_handle_get(&swnode->parent->fwnode); 436} 437 438static struct fwnode_handle * 439software_node_get_next_child(const struct fwnode_handle *fwnode, 440 struct fwnode_handle *child) 441{ 442 struct swnode *p = to_swnode(fwnode); 443 struct swnode *c = to_swnode(child); 444 445 if (!p || list_empty(&p->children) || 446 (c && list_is_last(&c->entry, &p->children))) { 447 fwnode_handle_put(child); 448 return NULL; 449 } 450 451 if (c) 452 c = list_next_entry(c, entry); 453 else 454 c = list_first_entry(&p->children, struct swnode, entry); 455 456 fwnode_handle_put(child); 457 return fwnode_handle_get(&c->fwnode); 458} 459 460static struct fwnode_handle * 461software_node_get_named_child_node(const struct fwnode_handle *fwnode, 462 const char *childname) 463{ 464 struct swnode *swnode = to_swnode(fwnode); 465 struct swnode *child; 466 467 if (!swnode || list_empty(&swnode->children)) 468 return NULL; 469 470 list_for_each_entry(child, &swnode->children, entry) { 471 if (!strcmp(childname, kobject_name(&child->kobj))) { 472 kobject_get(&child->kobj); 473 return &child->fwnode; 474 } 475 } 476 return NULL; 477} 478 479static int 480software_node_get_reference_args(const struct fwnode_handle *fwnode, 481 const char *propname, const char *nargs_prop, 482 unsigned int nargs, unsigned int index, 483 struct fwnode_reference_args *args) 484{ 485 struct swnode *swnode = to_swnode(fwnode); 486 const struct software_node_ref_args *ref_array; 487 const struct software_node_ref_args *ref; 488 const struct property_entry *prop; 489 struct fwnode_handle *refnode; 490 u32 nargs_prop_val; 491 int error; 492 int i; 493 494 if (!swnode) 495 return -ENOENT; 496 497 prop = property_entry_get(swnode->node->properties, propname); 498 if (!prop) 499 return -ENOENT; 500 501 if (prop->type != DEV_PROP_REF) 502 return -EINVAL; 503 504 /* 505 * We expect that references are never stored inline, even 506 * single ones, as they are too big. 507 */ 508 if (prop->is_inline) 509 return -EINVAL; 510 511 if (index * sizeof(*ref) >= prop->length) 512 return -ENOENT; 513 514 ref_array = prop->pointer; 515 ref = &ref_array[index]; 516 517 refnode = software_node_fwnode(ref->node); 518 if (!refnode) 519 return -ENOENT; 520 521 if (nargs_prop) { 522 error = property_entry_read_int_array(ref->node->properties, 523 nargs_prop, sizeof(u32), 524 &nargs_prop_val, 1); 525 if (error) 526 return error; 527 528 nargs = nargs_prop_val; 529 } 530 531 if (nargs > NR_FWNODE_REFERENCE_ARGS) 532 return -EINVAL; 533 534 if (!args) 535 return 0; 536 537 args->fwnode = software_node_get(refnode); 538 args->nargs = nargs; 539 540 for (i = 0; i < nargs; i++) 541 args->args[i] = ref->args[i]; 542 543 return 0; 544} 545 546static const struct fwnode_operations software_node_ops = { 547 .get = software_node_get, 548 .put = software_node_put, 549 .property_present = software_node_property_present, 550 .property_read_int_array = software_node_read_int_array, 551 .property_read_string_array = software_node_read_string_array, 552 .get_name = software_node_get_name, 553 .get_name_prefix = software_node_get_name_prefix, 554 .get_parent = software_node_get_parent, 555 .get_next_child_node = software_node_get_next_child, 556 .get_named_child_node = software_node_get_named_child_node, 557 .get_reference_args = software_node_get_reference_args 558}; 559 560/* -------------------------------------------------------------------------- */ 561 562/** 563 * software_node_find_by_name - Find software node by name 564 * @parent: Parent of the software node 565 * @name: Name of the software node 566 * 567 * The function will find a node that is child of @parent and that is named 568 * @name. If no node is found, the function returns NULL. 569 * 570 * NOTE: you will need to drop the reference with fwnode_handle_put() after use. 571 */ 572const struct software_node * 573software_node_find_by_name(const struct software_node *parent, const char *name) 574{ 575 struct swnode *swnode = NULL; 576 struct kobject *k; 577 578 if (!name) 579 return NULL; 580 581 spin_lock(&swnode_kset->list_lock); 582 583 list_for_each_entry(k, &swnode_kset->list, entry) { 584 swnode = kobj_to_swnode(k); 585 if (parent == swnode->node->parent && swnode->node->name && 586 !strcmp(name, swnode->node->name)) { 587 kobject_get(&swnode->kobj); 588 break; 589 } 590 swnode = NULL; 591 } 592 593 spin_unlock(&swnode_kset->list_lock); 594 595 return swnode ? swnode->node : NULL; 596} 597EXPORT_SYMBOL_GPL(software_node_find_by_name); 598 599static int 600software_node_register_properties(struct software_node *node, 601 const struct property_entry *properties) 602{ 603 struct property_entry *props; 604 605 props = property_entries_dup(properties); 606 if (IS_ERR(props)) 607 return PTR_ERR(props); 608 609 node->properties = props; 610 611 return 0; 612} 613 614static void software_node_release(struct kobject *kobj) 615{ 616 struct swnode *swnode = kobj_to_swnode(kobj); 617 618 if (swnode->parent) { 619 ida_simple_remove(&swnode->parent->child_ids, swnode->id); 620 list_del(&swnode->entry); 621 } else { 622 ida_simple_remove(&swnode_root_ids, swnode->id); 623 } 624 625 if (swnode->allocated) { 626 property_entries_free(swnode->node->properties); 627 kfree(swnode->node); 628 } 629 ida_destroy(&swnode->child_ids); 630 kfree(swnode); 631} 632 633static struct kobj_type software_node_type = { 634 .release = software_node_release, 635 .sysfs_ops = &kobj_sysfs_ops, 636}; 637 638static struct fwnode_handle * 639swnode_register(const struct software_node *node, struct swnode *parent, 640 unsigned int allocated) 641{ 642 struct swnode *swnode; 643 int ret; 644 645 swnode = kzalloc(sizeof(*swnode), GFP_KERNEL); 646 if (!swnode) { 647 ret = -ENOMEM; 648 goto out_err; 649 } 650 651 ret = ida_simple_get(parent ? &parent->child_ids : &swnode_root_ids, 652 0, 0, GFP_KERNEL); 653 if (ret < 0) { 654 kfree(swnode); 655 goto out_err; 656 } 657 658 swnode->id = ret; 659 swnode->node = node; 660 swnode->parent = parent; 661 swnode->allocated = allocated; 662 swnode->kobj.kset = swnode_kset; 663 swnode->fwnode.ops = &software_node_ops; 664 665 ida_init(&swnode->child_ids); 666 INIT_LIST_HEAD(&swnode->entry); 667 INIT_LIST_HEAD(&swnode->children); 668 669 if (node->name) 670 ret = kobject_init_and_add(&swnode->kobj, &software_node_type, 671 parent ? &parent->kobj : NULL, 672 "%s", node->name); 673 else 674 ret = kobject_init_and_add(&swnode->kobj, &software_node_type, 675 parent ? &parent->kobj : NULL, 676 "node%d", swnode->id); 677 if (ret) { 678 kobject_put(&swnode->kobj); 679 return ERR_PTR(ret); 680 } 681 682 if (parent) 683 list_add_tail(&swnode->entry, &parent->children); 684 685 kobject_uevent(&swnode->kobj, KOBJ_ADD); 686 return &swnode->fwnode; 687 688out_err: 689 if (allocated) 690 property_entries_free(node->properties); 691 return ERR_PTR(ret); 692} 693 694/** 695 * software_node_register_nodes - Register an array of software nodes 696 * @nodes: Zero terminated array of software nodes to be registered 697 * 698 * Register multiple software nodes at once. 699 */ 700int software_node_register_nodes(const struct software_node *nodes) 701{ 702 int ret; 703 int i; 704 705 for (i = 0; nodes[i].name; i++) { 706 ret = software_node_register(&nodes[i]); 707 if (ret) { 708 software_node_unregister_nodes(nodes); 709 return ret; 710 } 711 } 712 713 return 0; 714} 715EXPORT_SYMBOL_GPL(software_node_register_nodes); 716 717/** 718 * software_node_unregister_nodes - Unregister an array of software nodes 719 * @nodes: Zero terminated array of software nodes to be unregistered 720 * 721 * Unregister multiple software nodes at once. 722 * 723 * NOTE: Be careful using this call if the nodes had parent pointers set up in 724 * them before registering. If so, it is wiser to remove the nodes 725 * individually, in the correct order (child before parent) instead of relying 726 * on the sequential order of the list of nodes in the array. 727 */ 728void software_node_unregister_nodes(const struct software_node *nodes) 729{ 730 int i; 731 732 for (i = 0; nodes[i].name; i++) 733 software_node_unregister(&nodes[i]); 734} 735EXPORT_SYMBOL_GPL(software_node_unregister_nodes); 736 737/** 738 * software_node_register_node_group - Register a group of software nodes 739 * @node_group: NULL terminated array of software node pointers to be registered 740 * 741 * Register multiple software nodes at once. 742 */ 743int software_node_register_node_group(const struct software_node **node_group) 744{ 745 unsigned int i; 746 int ret; 747 748 if (!node_group) 749 return 0; 750 751 for (i = 0; node_group[i]; i++) { 752 ret = software_node_register(node_group[i]); 753 if (ret) { 754 software_node_unregister_node_group(node_group); 755 return ret; 756 } 757 } 758 759 return 0; 760} 761EXPORT_SYMBOL_GPL(software_node_register_node_group); 762 763/** 764 * software_node_unregister_node_group - Unregister a group of software nodes 765 * @node_group: NULL terminated array of software node pointers to be unregistered 766 * 767 * Unregister multiple software nodes at once. 768 */ 769void software_node_unregister_node_group(const struct software_node **node_group) 770{ 771 unsigned int i; 772 773 if (!node_group) 774 return; 775 776 for (i = 0; node_group[i]; i++) 777 software_node_unregister(node_group[i]); 778} 779EXPORT_SYMBOL_GPL(software_node_unregister_node_group); 780 781/** 782 * software_node_register - Register static software node 783 * @node: The software node to be registered 784 */ 785int software_node_register(const struct software_node *node) 786{ 787 struct swnode *parent = software_node_to_swnode(node->parent); 788 789 if (software_node_to_swnode(node)) 790 return -EEXIST; 791 792 if (node->parent && !parent) 793 return -EINVAL; 794 795 return PTR_ERR_OR_ZERO(swnode_register(node, parent, 0)); 796} 797EXPORT_SYMBOL_GPL(software_node_register); 798 799/** 800 * software_node_unregister - Unregister static software node 801 * @node: The software node to be unregistered 802 */ 803void software_node_unregister(const struct software_node *node) 804{ 805 struct swnode *swnode; 806 807 swnode = software_node_to_swnode(node); 808 if (swnode) 809 fwnode_remove_software_node(&swnode->fwnode); 810} 811EXPORT_SYMBOL_GPL(software_node_unregister); 812 813struct fwnode_handle * 814fwnode_create_software_node(const struct property_entry *properties, 815 const struct fwnode_handle *parent) 816{ 817 struct software_node *node; 818 struct swnode *p = NULL; 819 int ret; 820 821 if (parent) { 822 if (IS_ERR(parent)) 823 return ERR_CAST(parent); 824 if (!is_software_node(parent)) 825 return ERR_PTR(-EINVAL); 826 p = to_swnode(parent); 827 } 828 829 node = kzalloc(sizeof(*node), GFP_KERNEL); 830 if (!node) 831 return ERR_PTR(-ENOMEM); 832 833 ret = software_node_register_properties(node, properties); 834 if (ret) { 835 kfree(node); 836 return ERR_PTR(ret); 837 } 838 839 node->parent = p ? p->node : NULL; 840 841 return swnode_register(node, p, 1); 842} 843EXPORT_SYMBOL_GPL(fwnode_create_software_node); 844 845void fwnode_remove_software_node(struct fwnode_handle *fwnode) 846{ 847 struct swnode *swnode = to_swnode(fwnode); 848 849 if (!swnode) 850 return; 851 852 kobject_put(&swnode->kobj); 853} 854EXPORT_SYMBOL_GPL(fwnode_remove_software_node); 855 856int software_node_notify(struct device *dev, unsigned long action) 857{ 858 struct fwnode_handle *fwnode = dev_fwnode(dev); 859 struct swnode *swnode; 860 int ret; 861 862 if (!fwnode) 863 return 0; 864 865 if (!is_software_node(fwnode)) 866 fwnode = fwnode->secondary; 867 if (!is_software_node(fwnode)) 868 return 0; 869 870 swnode = to_swnode(fwnode); 871 872 switch (action) { 873 case KOBJ_ADD: 874 ret = sysfs_create_link(&dev->kobj, &swnode->kobj, 875 "software_node"); 876 if (ret) 877 break; 878 879 ret = sysfs_create_link(&swnode->kobj, &dev->kobj, 880 dev_name(dev)); 881 if (ret) { 882 sysfs_remove_link(&dev->kobj, "software_node"); 883 break; 884 } 885 kobject_get(&swnode->kobj); 886 break; 887 case KOBJ_REMOVE: 888 sysfs_remove_link(&swnode->kobj, dev_name(dev)); 889 sysfs_remove_link(&dev->kobj, "software_node"); 890 kobject_put(&swnode->kobj); 891 break; 892 default: 893 break; 894 } 895 896 return 0; 897} 898 899static int __init software_node_init(void) 900{ 901 swnode_kset = kset_create_and_add("software_nodes", NULL, kernel_kobj); 902 if (!swnode_kset) 903 return -ENOMEM; 904 return 0; 905} 906postcore_initcall(software_node_init); 907 908static void __exit software_node_exit(void) 909{ 910 ida_destroy(&swnode_root_ids); 911 kset_unregister(swnode_kset); 912} 913__exitcall(software_node_exit); 914