1 // SPDX-License-Identifier: GPL-2.0-only 2 /* 3 * Enclosure Services 4 * 5 * Copyright (C) 2008 James Bottomley <James.Bottomley@HansenPartnership.com> 6 * 7 **----------------------------------------------------------------------------- 8 ** 9 ** 10 **----------------------------------------------------------------------------- 11 */ 12 #include <linux/device.h> 13 #include <linux/enclosure.h> 14 #include <linux/err.h> 15 #include <linux/list.h> 16 #include <linux/kernel.h> 17 #include <linux/module.h> 18 #include <linux/mutex.h> 19 #include <linux/slab.h> 20 #include <linux/string_choices.h> 21 22 static LIST_HEAD(container_list); 23 static DEFINE_MUTEX(container_list_lock); 24 static struct class enclosure_class; 25 26 /** 27 * enclosure_find - find an enclosure given a parent device 28 * @dev: the parent to match against 29 * @start: Optional enclosure device to start from (NULL if none) 30 * 31 * Looks through the list of registered enclosures to find all those 32 * with @dev as a parent. Returns NULL if no enclosure is 33 * found. @start can be used as a starting point to obtain multiple 34 * enclosures per parent (should begin with NULL and then be set to 35 * each returned enclosure device). Obtains a reference to the 36 * enclosure class device which must be released with put_device(). 37 * If @start is not NULL, a reference must be taken on it which is 38 * released before returning (this allows a loop through all 39 * enclosures to exit with only the reference on the enclosure of 40 * interest held). Note that the @dev may correspond to the actual 41 * device housing the enclosure, in which case no iteration via @start 42 * is required. 43 */ 44 struct enclosure_device *enclosure_find(struct device *dev, 45 struct enclosure_device *start) 46 { 47 struct enclosure_device *edev; 48 49 mutex_lock(&container_list_lock); 50 edev = list_prepare_entry(start, &container_list, node); 51 if (start) 52 put_device(&start->edev); 53 54 list_for_each_entry_continue(edev, &container_list, node) { 55 struct device *parent = edev->edev.parent; 56 /* parent might not be immediate, so iterate up to 57 * the root of the tree if necessary */ 58 while (parent) { 59 if (parent == dev) { 60 get_device(&edev->edev); 61 mutex_unlock(&container_list_lock); 62 return edev; 63 } 64 parent = parent->parent; 65 } 66 } 67 mutex_unlock(&container_list_lock); 68 69 return NULL; 70 } 71 EXPORT_SYMBOL_GPL(enclosure_find); 72 73 /** 74 * enclosure_for_each_device - calls a function for each enclosure 75 * @fn: the function to call 76 * @data: the data to pass to each call 77 * 78 * Loops over all the enclosures calling the function. 79 * 80 * Note, this function uses a mutex which will be held across calls to 81 * @fn, so it must have non atomic context, and @fn may (although it 82 * should not) sleep or otherwise cause the mutex to be held for 83 * indefinite periods 84 */ 85 int enclosure_for_each_device(int (*fn)(struct enclosure_device *, void *), 86 void *data) 87 { 88 int error = 0; 89 struct enclosure_device *edev; 90 91 mutex_lock(&container_list_lock); 92 list_for_each_entry(edev, &container_list, node) { 93 error = fn(edev, data); 94 if (error) 95 break; 96 } 97 mutex_unlock(&container_list_lock); 98 99 return error; 100 } 101 EXPORT_SYMBOL_GPL(enclosure_for_each_device); 102 103 /** 104 * enclosure_register - register device as an enclosure 105 * 106 * @dev: device containing the enclosure 107 * @name: chosen device name 108 * @components: number of components in the enclosure 109 * @cb: platform call-backs 110 * 111 * This sets up the device for being an enclosure. Note that @dev does 112 * not have to be a dedicated enclosure device. It may be some other type 113 * of device that additionally responds to enclosure services 114 */ 115 struct enclosure_device * 116 enclosure_register(struct device *dev, const char *name, int components, 117 struct enclosure_component_callbacks *cb) 118 { 119 struct enclosure_device *edev = 120 kzalloc(struct_size(edev, component, components), GFP_KERNEL); 121 int err, i; 122 123 BUG_ON(!cb); 124 125 if (!edev) 126 return ERR_PTR(-ENOMEM); 127 128 edev->components = components; 129 130 edev->edev.class = &enclosure_class; 131 edev->edev.parent = get_device(dev); 132 edev->cb = cb; 133 dev_set_name(&edev->edev, "%s", name); 134 err = device_register(&edev->edev); 135 if (err) 136 goto err; 137 138 for (i = 0; i < components; i++) { 139 edev->component[i].number = -1; 140 edev->component[i].slot = -1; 141 edev->component[i].power_status = -1; 142 } 143 144 mutex_lock(&container_list_lock); 145 list_add_tail(&edev->node, &container_list); 146 mutex_unlock(&container_list_lock); 147 148 return edev; 149 150 err: 151 put_device(edev->edev.parent); 152 kfree(edev); 153 return ERR_PTR(err); 154 } 155 EXPORT_SYMBOL_GPL(enclosure_register); 156 157 static struct enclosure_component_callbacks enclosure_null_callbacks; 158 159 /** 160 * enclosure_unregister - remove an enclosure 161 * 162 * @edev: the registered enclosure to remove; 163 */ 164 void enclosure_unregister(struct enclosure_device *edev) 165 { 166 int i; 167 168 mutex_lock(&container_list_lock); 169 list_del(&edev->node); 170 mutex_unlock(&container_list_lock); 171 172 for (i = 0; i < edev->components; i++) 173 if (edev->component[i].number != -1) 174 device_unregister(&edev->component[i].cdev); 175 176 /* prevent any callbacks into service user */ 177 edev->cb = &enclosure_null_callbacks; 178 device_unregister(&edev->edev); 179 } 180 EXPORT_SYMBOL_GPL(enclosure_unregister); 181 182 #define ENCLOSURE_NAME_SIZE 64 183 #define COMPONENT_NAME_SIZE 64 184 185 static void enclosure_link_name(struct enclosure_component *cdev, char *name) 186 { 187 strcpy(name, "enclosure_device:"); 188 strcat(name, dev_name(&cdev->cdev)); 189 } 190 191 static void enclosure_remove_links(struct enclosure_component *cdev) 192 { 193 char name[ENCLOSURE_NAME_SIZE]; 194 195 enclosure_link_name(cdev, name); 196 197 /* 198 * In odd circumstances, like multipath devices, something else may 199 * already have removed the links, so check for this condition first. 200 */ 201 if (cdev->dev->kobj.sd) 202 sysfs_remove_link(&cdev->dev->kobj, name); 203 204 if (cdev->cdev.kobj.sd) 205 sysfs_remove_link(&cdev->cdev.kobj, "device"); 206 } 207 208 static int enclosure_add_links(struct enclosure_component *cdev) 209 { 210 int error; 211 char name[ENCLOSURE_NAME_SIZE]; 212 213 error = sysfs_create_link(&cdev->cdev.kobj, &cdev->dev->kobj, "device"); 214 if (error) 215 return error; 216 217 enclosure_link_name(cdev, name); 218 error = sysfs_create_link(&cdev->dev->kobj, &cdev->cdev.kobj, name); 219 if (error) 220 sysfs_remove_link(&cdev->cdev.kobj, "device"); 221 222 return error; 223 } 224 225 static void enclosure_release(struct device *cdev) 226 { 227 struct enclosure_device *edev = to_enclosure_device(cdev); 228 229 put_device(cdev->parent); 230 kfree(edev); 231 } 232 233 static void enclosure_component_release(struct device *dev) 234 { 235 struct enclosure_component *cdev = to_enclosure_component(dev); 236 237 if (cdev->dev) { 238 enclosure_remove_links(cdev); 239 put_device(cdev->dev); 240 } 241 put_device(dev->parent); 242 } 243 244 static struct enclosure_component * 245 enclosure_component_find_by_name(struct enclosure_device *edev, 246 const char *name) 247 { 248 int i; 249 const char *cname; 250 struct enclosure_component *ecomp; 251 252 if (!edev || !name || !name[0]) 253 return NULL; 254 255 for (i = 0; i < edev->components; i++) { 256 ecomp = &edev->component[i]; 257 cname = dev_name(&ecomp->cdev); 258 if (ecomp->number != -1 && 259 cname && cname[0] && 260 !strcmp(cname, name)) 261 return ecomp; 262 } 263 264 return NULL; 265 } 266 267 static const struct attribute_group *enclosure_component_groups[]; 268 269 /** 270 * enclosure_component_alloc - prepare a new enclosure component 271 * @edev: the enclosure to add the component 272 * @number: the device number 273 * @type: the type of component being added 274 * @name: an optional name to appear in sysfs (leave NULL if none) 275 * 276 * The name is optional for enclosures that give their components a unique 277 * name. If not, leave the field NULL and a name will be assigned. 278 * 279 * Returns a pointer to the enclosure component or an error. 280 */ 281 struct enclosure_component * 282 enclosure_component_alloc(struct enclosure_device *edev, 283 unsigned int number, 284 enum enclosure_component_type type, 285 const char *name) 286 { 287 struct enclosure_component *ecomp; 288 struct device *cdev; 289 int i; 290 char newname[COMPONENT_NAME_SIZE]; 291 292 if (number >= edev->components) 293 return ERR_PTR(-EINVAL); 294 295 ecomp = &edev->component[number]; 296 297 if (ecomp->number != -1) 298 return ERR_PTR(-EINVAL); 299 300 ecomp->type = type; 301 ecomp->number = number; 302 cdev = &ecomp->cdev; 303 cdev->parent = get_device(&edev->edev); 304 305 if (name && name[0]) { 306 /* Some hardware (e.g. enclosure in RX300 S6) has components 307 * with non unique names. Registering duplicates in sysfs 308 * will lead to warnings during bootup. So make the names 309 * unique by appending consecutive numbers -1, -2, ... */ 310 i = 1; 311 snprintf(newname, COMPONENT_NAME_SIZE, 312 "%s", name); 313 while (enclosure_component_find_by_name(edev, newname)) 314 snprintf(newname, COMPONENT_NAME_SIZE, 315 "%s-%i", name, i++); 316 dev_set_name(cdev, "%s", newname); 317 } else 318 dev_set_name(cdev, "%u", number); 319 320 cdev->release = enclosure_component_release; 321 cdev->groups = enclosure_component_groups; 322 323 return ecomp; 324 } 325 EXPORT_SYMBOL_GPL(enclosure_component_alloc); 326 327 /** 328 * enclosure_component_register - publishes an initialized enclosure component 329 * @ecomp: component to add 330 * 331 * Returns 0 on successful registration, releases the component otherwise 332 */ 333 int enclosure_component_register(struct enclosure_component *ecomp) 334 { 335 struct device *cdev; 336 int err; 337 338 cdev = &ecomp->cdev; 339 err = device_register(cdev); 340 if (err) { 341 ecomp->number = -1; 342 put_device(cdev); 343 return err; 344 } 345 346 return 0; 347 } 348 EXPORT_SYMBOL_GPL(enclosure_component_register); 349 350 /** 351 * enclosure_add_device - add a device as being part of an enclosure 352 * @edev: the enclosure device being added to. 353 * @component: the number of the component 354 * @dev: the device being added 355 * 356 * Declares a real device to reside in slot (or identifier) @num of an 357 * enclosure. This will cause the relevant sysfs links to appear. 358 * This function may also be used to change a device associated with 359 * an enclosure without having to call enclosure_remove_device() in 360 * between. 361 * 362 * Returns zero on success or an error. 363 */ 364 int enclosure_add_device(struct enclosure_device *edev, int component, 365 struct device *dev) 366 { 367 struct enclosure_component *cdev; 368 int err; 369 370 if (!edev || component >= edev->components) 371 return -EINVAL; 372 373 cdev = &edev->component[component]; 374 375 if (cdev->dev == dev) 376 return -EEXIST; 377 378 if (cdev->dev) { 379 enclosure_remove_links(cdev); 380 put_device(cdev->dev); 381 } 382 cdev->dev = get_device(dev); 383 err = enclosure_add_links(cdev); 384 if (err) { 385 put_device(cdev->dev); 386 cdev->dev = NULL; 387 } 388 return err; 389 } 390 EXPORT_SYMBOL_GPL(enclosure_add_device); 391 392 /** 393 * enclosure_remove_device - remove a device from an enclosure 394 * @edev: the enclosure device 395 * @dev: device to remove/put 396 * 397 * Returns zero on success or an error. 398 * 399 */ 400 int enclosure_remove_device(struct enclosure_device *edev, struct device *dev) 401 { 402 struct enclosure_component *cdev; 403 int i; 404 405 if (!edev || !dev) 406 return -EINVAL; 407 408 for (i = 0; i < edev->components; i++) { 409 cdev = &edev->component[i]; 410 if (cdev->dev == dev) { 411 enclosure_remove_links(cdev); 412 put_device(dev); 413 cdev->dev = NULL; 414 return 0; 415 } 416 } 417 return -ENODEV; 418 } 419 EXPORT_SYMBOL_GPL(enclosure_remove_device); 420 421 /* 422 * sysfs pieces below 423 */ 424 425 static ssize_t components_show(struct device *cdev, 426 struct device_attribute *attr, char *buf) 427 { 428 struct enclosure_device *edev = to_enclosure_device(cdev); 429 430 return sysfs_emit(buf, "%d\n", edev->components); 431 } 432 static DEVICE_ATTR_RO(components); 433 434 static ssize_t id_show(struct device *cdev, 435 struct device_attribute *attr, 436 char *buf) 437 { 438 struct enclosure_device *edev = to_enclosure_device(cdev); 439 440 if (edev->cb->show_id) 441 return edev->cb->show_id(edev, buf); 442 return -EINVAL; 443 } 444 static DEVICE_ATTR_RO(id); 445 446 static struct attribute *enclosure_class_attrs[] = { 447 &dev_attr_components.attr, 448 &dev_attr_id.attr, 449 NULL, 450 }; 451 ATTRIBUTE_GROUPS(enclosure_class); 452 453 static struct class enclosure_class = { 454 .name = "enclosure", 455 .dev_release = enclosure_release, 456 .dev_groups = enclosure_class_groups, 457 }; 458 459 static const char *const enclosure_status[] = { 460 [ENCLOSURE_STATUS_UNSUPPORTED] = "unsupported", 461 [ENCLOSURE_STATUS_OK] = "OK", 462 [ENCLOSURE_STATUS_CRITICAL] = "critical", 463 [ENCLOSURE_STATUS_NON_CRITICAL] = "non-critical", 464 [ENCLOSURE_STATUS_UNRECOVERABLE] = "unrecoverable", 465 [ENCLOSURE_STATUS_NOT_INSTALLED] = "not installed", 466 [ENCLOSURE_STATUS_UNKNOWN] = "unknown", 467 [ENCLOSURE_STATUS_UNAVAILABLE] = "unavailable", 468 [ENCLOSURE_STATUS_MAX] = NULL, 469 }; 470 471 static const char *const enclosure_type[] = { 472 [ENCLOSURE_COMPONENT_DEVICE] = "device", 473 [ENCLOSURE_COMPONENT_ARRAY_DEVICE] = "array device", 474 }; 475 476 static ssize_t get_component_fault(struct device *cdev, 477 struct device_attribute *attr, char *buf) 478 { 479 struct enclosure_device *edev = to_enclosure_device(cdev->parent); 480 struct enclosure_component *ecomp = to_enclosure_component(cdev); 481 482 if (edev->cb->get_fault) 483 edev->cb->get_fault(edev, ecomp); 484 return sysfs_emit(buf, "%d\n", ecomp->fault); 485 } 486 487 static ssize_t set_component_fault(struct device *cdev, 488 struct device_attribute *attr, 489 const char *buf, size_t count) 490 { 491 struct enclosure_device *edev = to_enclosure_device(cdev->parent); 492 struct enclosure_component *ecomp = to_enclosure_component(cdev); 493 int val = simple_strtoul(buf, NULL, 0); 494 495 if (edev->cb->set_fault) 496 edev->cb->set_fault(edev, ecomp, val); 497 return count; 498 } 499 500 static ssize_t get_component_status(struct device *cdev, 501 struct device_attribute *attr,char *buf) 502 { 503 struct enclosure_device *edev = to_enclosure_device(cdev->parent); 504 struct enclosure_component *ecomp = to_enclosure_component(cdev); 505 506 if (edev->cb->get_status) 507 edev->cb->get_status(edev, ecomp); 508 return sysfs_emit(buf, "%s\n", enclosure_status[ecomp->status]); 509 } 510 511 static ssize_t set_component_status(struct device *cdev, 512 struct device_attribute *attr, 513 const char *buf, size_t count) 514 { 515 struct enclosure_device *edev = to_enclosure_device(cdev->parent); 516 struct enclosure_component *ecomp = to_enclosure_component(cdev); 517 int i; 518 519 for (i = 0; enclosure_status[i]; i++) { 520 if (strncmp(buf, enclosure_status[i], 521 strlen(enclosure_status[i])) == 0 && 522 (buf[strlen(enclosure_status[i])] == '\n' || 523 buf[strlen(enclosure_status[i])] == '\0')) 524 break; 525 } 526 527 if (enclosure_status[i] && edev->cb->set_status) { 528 edev->cb->set_status(edev, ecomp, i); 529 return count; 530 } else 531 return -EINVAL; 532 } 533 534 static ssize_t get_component_active(struct device *cdev, 535 struct device_attribute *attr, char *buf) 536 { 537 struct enclosure_device *edev = to_enclosure_device(cdev->parent); 538 struct enclosure_component *ecomp = to_enclosure_component(cdev); 539 540 if (edev->cb->get_active) 541 edev->cb->get_active(edev, ecomp); 542 return sysfs_emit(buf, "%d\n", ecomp->active); 543 } 544 545 static ssize_t set_component_active(struct device *cdev, 546 struct device_attribute *attr, 547 const char *buf, size_t count) 548 { 549 struct enclosure_device *edev = to_enclosure_device(cdev->parent); 550 struct enclosure_component *ecomp = to_enclosure_component(cdev); 551 int val = simple_strtoul(buf, NULL, 0); 552 553 if (edev->cb->set_active) 554 edev->cb->set_active(edev, ecomp, val); 555 return count; 556 } 557 558 static ssize_t get_component_locate(struct device *cdev, 559 struct device_attribute *attr, char *buf) 560 { 561 struct enclosure_device *edev = to_enclosure_device(cdev->parent); 562 struct enclosure_component *ecomp = to_enclosure_component(cdev); 563 564 if (edev->cb->get_locate) 565 edev->cb->get_locate(edev, ecomp); 566 return sysfs_emit(buf, "%d\n", ecomp->locate); 567 } 568 569 static ssize_t set_component_locate(struct device *cdev, 570 struct device_attribute *attr, 571 const char *buf, size_t count) 572 { 573 struct enclosure_device *edev = to_enclosure_device(cdev->parent); 574 struct enclosure_component *ecomp = to_enclosure_component(cdev); 575 int val = simple_strtoul(buf, NULL, 0); 576 577 if (edev->cb->set_locate) 578 edev->cb->set_locate(edev, ecomp, val); 579 return count; 580 } 581 582 static ssize_t get_component_power_status(struct device *cdev, 583 struct device_attribute *attr, 584 char *buf) 585 { 586 struct enclosure_device *edev = to_enclosure_device(cdev->parent); 587 struct enclosure_component *ecomp = to_enclosure_component(cdev); 588 589 if (edev->cb->get_power_status) 590 edev->cb->get_power_status(edev, ecomp); 591 592 /* If still uninitialized, the callback failed or does not exist. */ 593 if (ecomp->power_status == -1) 594 return (edev->cb->get_power_status) ? -EIO : -ENOTTY; 595 596 return sysfs_emit(buf, "%s\n", str_on_off(ecomp->power_status)); 597 } 598 599 static ssize_t set_component_power_status(struct device *cdev, 600 struct device_attribute *attr, 601 const char *buf, size_t count) 602 { 603 struct enclosure_device *edev = to_enclosure_device(cdev->parent); 604 struct enclosure_component *ecomp = to_enclosure_component(cdev); 605 int val; 606 607 if (strncmp(buf, "on", 2) == 0 && 608 (buf[2] == '\n' || buf[2] == '\0')) 609 val = 1; 610 else if (strncmp(buf, "off", 3) == 0 && 611 (buf[3] == '\n' || buf[3] == '\0')) 612 val = 0; 613 else 614 return -EINVAL; 615 616 if (edev->cb->set_power_status) 617 edev->cb->set_power_status(edev, ecomp, val); 618 return count; 619 } 620 621 static ssize_t get_component_type(struct device *cdev, 622 struct device_attribute *attr, char *buf) 623 { 624 struct enclosure_component *ecomp = to_enclosure_component(cdev); 625 626 return sysfs_emit(buf, "%s\n", enclosure_type[ecomp->type]); 627 } 628 629 static ssize_t get_component_slot(struct device *cdev, 630 struct device_attribute *attr, char *buf) 631 { 632 struct enclosure_component *ecomp = to_enclosure_component(cdev); 633 int slot; 634 635 /* if the enclosure does not override then use 'number' as a stand-in */ 636 if (ecomp->slot >= 0) 637 slot = ecomp->slot; 638 else 639 slot = ecomp->number; 640 641 return sysfs_emit(buf, "%d\n", slot); 642 } 643 644 static DEVICE_ATTR(fault, S_IRUGO | S_IWUSR, get_component_fault, 645 set_component_fault); 646 static DEVICE_ATTR(status, S_IRUGO | S_IWUSR, get_component_status, 647 set_component_status); 648 static DEVICE_ATTR(active, S_IRUGO | S_IWUSR, get_component_active, 649 set_component_active); 650 static DEVICE_ATTR(locate, S_IRUGO | S_IWUSR, get_component_locate, 651 set_component_locate); 652 static DEVICE_ATTR(power_status, S_IRUGO | S_IWUSR, get_component_power_status, 653 set_component_power_status); 654 static DEVICE_ATTR(type, S_IRUGO, get_component_type, NULL); 655 static DEVICE_ATTR(slot, S_IRUGO, get_component_slot, NULL); 656 657 static struct attribute *enclosure_component_attrs[] = { 658 &dev_attr_fault.attr, 659 &dev_attr_status.attr, 660 &dev_attr_active.attr, 661 &dev_attr_locate.attr, 662 &dev_attr_power_status.attr, 663 &dev_attr_type.attr, 664 &dev_attr_slot.attr, 665 NULL 666 }; 667 ATTRIBUTE_GROUPS(enclosure_component); 668 669 static int __init enclosure_init(void) 670 { 671 return class_register(&enclosure_class); 672 } 673 674 static void __exit enclosure_exit(void) 675 { 676 class_unregister(&enclosure_class); 677 } 678 679 module_init(enclosure_init); 680 module_exit(enclosure_exit); 681 682 MODULE_AUTHOR("James Bottomley"); 683 MODULE_DESCRIPTION("Enclosure Services"); 684 MODULE_LICENSE("GPL v2"); 685