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1/* 2 * Media device 3 * 4 * Copyright (C) 2010 Nokia Corporation 5 * 6 * Contacts: Laurent Pinchart <laurent.pinchart@ideasonboard.com> 7 * Sakari Ailus <sakari.ailus@iki.fi> 8 * 9 * This program is free software; you can redistribute it and/or modify 10 * it under the terms of the GNU General Public License version 2 as 11 * published by the Free Software Foundation. 12 * 13 * This program is distributed in the hope that it will be useful, 14 * but WITHOUT ANY WARRANTY; without even the implied warranty of 15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 16 * GNU General Public License for more details. 17 */ 18 19/* We need to access legacy defines from linux/media.h */ 20#define __NEED_MEDIA_LEGACY_API 21 22#include <linux/compat.h> 23#include <linux/export.h> 24#include <linux/idr.h> 25#include <linux/ioctl.h> 26#include <linux/media.h> 27#include <linux/slab.h> 28#include <linux/types.h> 29#include <linux/pci.h> 30#include <linux/usb.h> 31 32#include <media/media-device.h> 33#include <media/media-devnode.h> 34#include <media/media-entity.h> 35 36#ifdef CONFIG_MEDIA_CONTROLLER 37 38/* ----------------------------------------------------------------------------- 39 * Userspace API 40 */ 41 42static inline void __user *media_get_uptr(__u64 arg) 43{ 44 return (void __user *)(uintptr_t)arg; 45} 46 47static int media_device_open(struct file *filp) 48{ 49 return 0; 50} 51 52static int media_device_close(struct file *filp) 53{ 54 return 0; 55} 56 57static int media_device_get_info(struct media_device *dev, 58 struct media_device_info *info) 59{ 60 memset(info, 0, sizeof(*info)); 61 62 if (dev->driver_name[0]) 63 strlcpy(info->driver, dev->driver_name, sizeof(info->driver)); 64 else 65 strlcpy(info->driver, dev->dev->driver->name, 66 sizeof(info->driver)); 67 68 strlcpy(info->model, dev->model, sizeof(info->model)); 69 strlcpy(info->serial, dev->serial, sizeof(info->serial)); 70 strlcpy(info->bus_info, dev->bus_info, sizeof(info->bus_info)); 71 72 info->media_version = LINUX_VERSION_CODE; 73 info->driver_version = info->media_version; 74 info->hw_revision = dev->hw_revision; 75 76 return 0; 77} 78 79static struct media_entity *find_entity(struct media_device *mdev, u32 id) 80{ 81 struct media_entity *entity; 82 int next = id & MEDIA_ENT_ID_FLAG_NEXT; 83 84 id &= ~MEDIA_ENT_ID_FLAG_NEXT; 85 86 media_device_for_each_entity(entity, mdev) { 87 if (((media_entity_id(entity) == id) && !next) || 88 ((media_entity_id(entity) > id) && next)) { 89 return entity; 90 } 91 } 92 93 return NULL; 94} 95 96static long media_device_enum_entities(struct media_device *mdev, 97 struct media_entity_desc *entd) 98{ 99 struct media_entity *ent; 100 101 ent = find_entity(mdev, entd->id); 102 if (ent == NULL) 103 return -EINVAL; 104 105 memset(entd, 0, sizeof(*entd)); 106 107 entd->id = media_entity_id(ent); 108 if (ent->name) 109 strlcpy(entd->name, ent->name, sizeof(entd->name)); 110 entd->type = ent->function; 111 entd->revision = 0; /* Unused */ 112 entd->flags = ent->flags; 113 entd->group_id = 0; /* Unused */ 114 entd->pads = ent->num_pads; 115 entd->links = ent->num_links - ent->num_backlinks; 116 117 /* 118 * Workaround for a bug at media-ctl <= v1.10 that makes it to 119 * do the wrong thing if the entity function doesn't belong to 120 * either MEDIA_ENT_F_OLD_BASE or MEDIA_ENT_F_OLD_SUBDEV_BASE 121 * Ranges. 122 * 123 * Non-subdevices are expected to be at the MEDIA_ENT_F_OLD_BASE, 124 * or, otherwise, will be silently ignored by media-ctl when 125 * printing the graphviz diagram. So, map them into the devnode 126 * old range. 127 */ 128 if (ent->function < MEDIA_ENT_F_OLD_BASE || 129 ent->function > MEDIA_ENT_F_TUNER) { 130 if (is_media_entity_v4l2_subdev(ent)) 131 entd->type = MEDIA_ENT_F_V4L2_SUBDEV_UNKNOWN; 132 else if (ent->function != MEDIA_ENT_F_IO_V4L) 133 entd->type = MEDIA_ENT_T_DEVNODE_UNKNOWN; 134 } 135 136 memcpy(&entd->raw, &ent->info, sizeof(ent->info)); 137 138 return 0; 139} 140 141static void media_device_kpad_to_upad(const struct media_pad *kpad, 142 struct media_pad_desc *upad) 143{ 144 upad->entity = media_entity_id(kpad->entity); 145 upad->index = kpad->index; 146 upad->flags = kpad->flags; 147} 148 149static long media_device_enum_links(struct media_device *mdev, 150 struct media_links_enum *links) 151{ 152 struct media_entity *entity; 153 154 entity = find_entity(mdev, links->entity); 155 if (entity == NULL) 156 return -EINVAL; 157 158 if (links->pads) { 159 unsigned int p; 160 161 for (p = 0; p < entity->num_pads; p++) { 162 struct media_pad_desc pad; 163 164 memset(&pad, 0, sizeof(pad)); 165 media_device_kpad_to_upad(&entity->pads[p], &pad); 166 if (copy_to_user(&links->pads[p], &pad, sizeof(pad))) 167 return -EFAULT; 168 } 169 } 170 171 if (links->links) { 172 struct media_link *link; 173 struct media_link_desc __user *ulink_desc = links->links; 174 175 list_for_each_entry(link, &entity->links, list) { 176 struct media_link_desc klink_desc; 177 178 /* Ignore backlinks. */ 179 if (link->source->entity != entity) 180 continue; 181 memset(&klink_desc, 0, sizeof(klink_desc)); 182 media_device_kpad_to_upad(link->source, 183 &klink_desc.source); 184 media_device_kpad_to_upad(link->sink, 185 &klink_desc.sink); 186 klink_desc.flags = link->flags; 187 if (copy_to_user(ulink_desc, &klink_desc, 188 sizeof(*ulink_desc))) 189 return -EFAULT; 190 ulink_desc++; 191 } 192 } 193 194 return 0; 195} 196 197static long media_device_setup_link(struct media_device *mdev, 198 struct media_link_desc *linkd) 199{ 200 struct media_link *link = NULL; 201 struct media_entity *source; 202 struct media_entity *sink; 203 204 /* Find the source and sink entities and link. 205 */ 206 source = find_entity(mdev, linkd->source.entity); 207 sink = find_entity(mdev, linkd->sink.entity); 208 209 if (source == NULL || sink == NULL) 210 return -EINVAL; 211 212 if (linkd->source.index >= source->num_pads || 213 linkd->sink.index >= sink->num_pads) 214 return -EINVAL; 215 216 link = media_entity_find_link(&source->pads[linkd->source.index], 217 &sink->pads[linkd->sink.index]); 218 if (link == NULL) 219 return -EINVAL; 220 221 /* Setup the link on both entities. */ 222 return __media_entity_setup_link(link, linkd->flags); 223} 224 225static long media_device_get_topology(struct media_device *mdev, 226 struct media_v2_topology *topo) 227{ 228 struct media_entity *entity; 229 struct media_interface *intf; 230 struct media_pad *pad; 231 struct media_link *link; 232 struct media_v2_entity kentity, __user *uentity; 233 struct media_v2_interface kintf, __user *uintf; 234 struct media_v2_pad kpad, __user *upad; 235 struct media_v2_link klink, __user *ulink; 236 unsigned int i; 237 int ret = 0; 238 239 topo->topology_version = mdev->topology_version; 240 241 /* Get entities and number of entities */ 242 i = 0; 243 uentity = media_get_uptr(topo->ptr_entities); 244 media_device_for_each_entity(entity, mdev) { 245 i++; 246 if (ret || !uentity) 247 continue; 248 249 if (i > topo->num_entities) { 250 ret = -ENOSPC; 251 continue; 252 } 253 254 /* Copy fields to userspace struct if not error */ 255 memset(&kentity, 0, sizeof(kentity)); 256 kentity.id = entity->graph_obj.id; 257 kentity.function = entity->function; 258 strncpy(kentity.name, entity->name, 259 sizeof(kentity.name)); 260 261 if (copy_to_user(uentity, &kentity, sizeof(kentity))) 262 ret = -EFAULT; 263 uentity++; 264 } 265 topo->num_entities = i; 266 267 /* Get interfaces and number of interfaces */ 268 i = 0; 269 uintf = media_get_uptr(topo->ptr_interfaces); 270 media_device_for_each_intf(intf, mdev) { 271 i++; 272 if (ret || !uintf) 273 continue; 274 275 if (i > topo->num_interfaces) { 276 ret = -ENOSPC; 277 continue; 278 } 279 280 memset(&kintf, 0, sizeof(kintf)); 281 282 /* Copy intf fields to userspace struct */ 283 kintf.id = intf->graph_obj.id; 284 kintf.intf_type = intf->type; 285 kintf.flags = intf->flags; 286 287 if (media_type(&intf->graph_obj) == MEDIA_GRAPH_INTF_DEVNODE) { 288 struct media_intf_devnode *devnode; 289 290 devnode = intf_to_devnode(intf); 291 292 kintf.devnode.major = devnode->major; 293 kintf.devnode.minor = devnode->minor; 294 } 295 296 if (copy_to_user(uintf, &kintf, sizeof(kintf))) 297 ret = -EFAULT; 298 uintf++; 299 } 300 topo->num_interfaces = i; 301 302 /* Get pads and number of pads */ 303 i = 0; 304 upad = media_get_uptr(topo->ptr_pads); 305 media_device_for_each_pad(pad, mdev) { 306 i++; 307 if (ret || !upad) 308 continue; 309 310 if (i > topo->num_pads) { 311 ret = -ENOSPC; 312 continue; 313 } 314 315 memset(&kpad, 0, sizeof(kpad)); 316 317 /* Copy pad fields to userspace struct */ 318 kpad.id = pad->graph_obj.id; 319 kpad.entity_id = pad->entity->graph_obj.id; 320 kpad.flags = pad->flags; 321 322 if (copy_to_user(upad, &kpad, sizeof(kpad))) 323 ret = -EFAULT; 324 upad++; 325 } 326 topo->num_pads = i; 327 328 /* Get links and number of links */ 329 i = 0; 330 ulink = media_get_uptr(topo->ptr_links); 331 media_device_for_each_link(link, mdev) { 332 if (link->is_backlink) 333 continue; 334 335 i++; 336 337 if (ret || !ulink) 338 continue; 339 340 if (i > topo->num_links) { 341 ret = -ENOSPC; 342 continue; 343 } 344 345 memset(&klink, 0, sizeof(klink)); 346 347 /* Copy link fields to userspace struct */ 348 klink.id = link->graph_obj.id; 349 klink.source_id = link->gobj0->id; 350 klink.sink_id = link->gobj1->id; 351 klink.flags = link->flags; 352 353 if (copy_to_user(ulink, &klink, sizeof(klink))) 354 ret = -EFAULT; 355 ulink++; 356 } 357 topo->num_links = i; 358 359 return ret; 360} 361 362static long copy_arg_from_user(void *karg, void __user *uarg, unsigned int cmd) 363{ 364 /* All media IOCTLs are _IOWR() */ 365 if (copy_from_user(karg, uarg, _IOC_SIZE(cmd))) 366 return -EFAULT; 367 368 return 0; 369} 370 371static long copy_arg_to_user(void __user *uarg, void *karg, unsigned int cmd) 372{ 373 /* All media IOCTLs are _IOWR() */ 374 if (copy_to_user(uarg, karg, _IOC_SIZE(cmd))) 375 return -EFAULT; 376 377 return 0; 378} 379 380/* Do acquire the graph mutex */ 381#define MEDIA_IOC_FL_GRAPH_MUTEX BIT(0) 382 383#define MEDIA_IOC_ARG(__cmd, func, fl, from_user, to_user) \ 384 [_IOC_NR(MEDIA_IOC_##__cmd)] = { \ 385 .cmd = MEDIA_IOC_##__cmd, \ 386 .fn = (long (*)(struct media_device *, void *))func, \ 387 .flags = fl, \ 388 .arg_from_user = from_user, \ 389 .arg_to_user = to_user, \ 390 } 391 392#define MEDIA_IOC(__cmd, func, fl) \ 393 MEDIA_IOC_ARG(__cmd, func, fl, copy_arg_from_user, copy_arg_to_user) 394 395/* the table is indexed by _IOC_NR(cmd) */ 396struct media_ioctl_info { 397 unsigned int cmd; 398 unsigned short flags; 399 long (*fn)(struct media_device *dev, void *arg); 400 long (*arg_from_user)(void *karg, void __user *uarg, unsigned int cmd); 401 long (*arg_to_user)(void __user *uarg, void *karg, unsigned int cmd); 402}; 403 404static const struct media_ioctl_info ioctl_info[] = { 405 MEDIA_IOC(DEVICE_INFO, media_device_get_info, MEDIA_IOC_FL_GRAPH_MUTEX), 406 MEDIA_IOC(ENUM_ENTITIES, media_device_enum_entities, MEDIA_IOC_FL_GRAPH_MUTEX), 407 MEDIA_IOC(ENUM_LINKS, media_device_enum_links, MEDIA_IOC_FL_GRAPH_MUTEX), 408 MEDIA_IOC(SETUP_LINK, media_device_setup_link, MEDIA_IOC_FL_GRAPH_MUTEX), 409 MEDIA_IOC(G_TOPOLOGY, media_device_get_topology, MEDIA_IOC_FL_GRAPH_MUTEX), 410}; 411 412static long media_device_ioctl(struct file *filp, unsigned int cmd, 413 unsigned long __arg) 414{ 415 struct media_devnode *devnode = media_devnode_data(filp); 416 struct media_device *dev = devnode->media_dev; 417 const struct media_ioctl_info *info; 418 void __user *arg = (void __user *)__arg; 419 char __karg[256], *karg = __karg; 420 long ret; 421 422 if (_IOC_NR(cmd) >= ARRAY_SIZE(ioctl_info) 423 || ioctl_info[_IOC_NR(cmd)].cmd != cmd) 424 return -ENOIOCTLCMD; 425 426 info = &ioctl_info[_IOC_NR(cmd)]; 427 428 if (_IOC_SIZE(info->cmd) > sizeof(__karg)) { 429 karg = kmalloc(_IOC_SIZE(info->cmd), GFP_KERNEL); 430 if (!karg) 431 return -ENOMEM; 432 } 433 434 if (info->arg_from_user) { 435 ret = info->arg_from_user(karg, arg, cmd); 436 if (ret) 437 goto out_free; 438 } 439 440 if (info->flags & MEDIA_IOC_FL_GRAPH_MUTEX) 441 mutex_lock(&dev->graph_mutex); 442 443 ret = info->fn(dev, karg); 444 445 if (info->flags & MEDIA_IOC_FL_GRAPH_MUTEX) 446 mutex_unlock(&dev->graph_mutex); 447 448 if (!ret && info->arg_to_user) 449 ret = info->arg_to_user(arg, karg, cmd); 450 451out_free: 452 if (karg != __karg) 453 kfree(karg); 454 455 return ret; 456} 457 458#ifdef CONFIG_COMPAT 459 460struct media_links_enum32 { 461 __u32 entity; 462 compat_uptr_t pads; /* struct media_pad_desc * */ 463 compat_uptr_t links; /* struct media_link_desc * */ 464 __u32 reserved[4]; 465}; 466 467static long media_device_enum_links32(struct media_device *mdev, 468 struct media_links_enum32 __user *ulinks) 469{ 470 struct media_links_enum links; 471 compat_uptr_t pads_ptr, links_ptr; 472 473 memset(&links, 0, sizeof(links)); 474 475 if (get_user(links.entity, &ulinks->entity) 476 || get_user(pads_ptr, &ulinks->pads) 477 || get_user(links_ptr, &ulinks->links)) 478 return -EFAULT; 479 480 links.pads = compat_ptr(pads_ptr); 481 links.links = compat_ptr(links_ptr); 482 483 return media_device_enum_links(mdev, &links); 484} 485 486#define MEDIA_IOC_ENUM_LINKS32 _IOWR('|', 0x02, struct media_links_enum32) 487 488static long media_device_compat_ioctl(struct file *filp, unsigned int cmd, 489 unsigned long arg) 490{ 491 struct media_devnode *devnode = media_devnode_data(filp); 492 struct media_device *dev = devnode->media_dev; 493 long ret; 494 495 switch (cmd) { 496 case MEDIA_IOC_ENUM_LINKS32: 497 mutex_lock(&dev->graph_mutex); 498 ret = media_device_enum_links32(dev, 499 (struct media_links_enum32 __user *)arg); 500 mutex_unlock(&dev->graph_mutex); 501 break; 502 503 default: 504 return media_device_ioctl(filp, cmd, arg); 505 } 506 507 return ret; 508} 509#endif /* CONFIG_COMPAT */ 510 511static const struct media_file_operations media_device_fops = { 512 .owner = THIS_MODULE, 513 .open = media_device_open, 514 .ioctl = media_device_ioctl, 515#ifdef CONFIG_COMPAT 516 .compat_ioctl = media_device_compat_ioctl, 517#endif /* CONFIG_COMPAT */ 518 .release = media_device_close, 519}; 520 521/* ----------------------------------------------------------------------------- 522 * sysfs 523 */ 524 525static ssize_t show_model(struct device *cd, 526 struct device_attribute *attr, char *buf) 527{ 528 struct media_devnode *devnode = to_media_devnode(cd); 529 struct media_device *mdev = devnode->media_dev; 530 531 return sprintf(buf, "%.*s\n", (int)sizeof(mdev->model), mdev->model); 532} 533 534static DEVICE_ATTR(model, S_IRUGO, show_model, NULL); 535 536/* ----------------------------------------------------------------------------- 537 * Registration/unregistration 538 */ 539 540static void media_device_release(struct media_devnode *devnode) 541{ 542 dev_dbg(devnode->parent, "Media device released\n"); 543} 544 545/** 546 * media_device_register_entity - Register an entity with a media device 547 * @mdev: The media device 548 * @entity: The entity 549 */ 550int __must_check media_device_register_entity(struct media_device *mdev, 551 struct media_entity *entity) 552{ 553 struct media_entity_notify *notify, *next; 554 unsigned int i; 555 int ret; 556 557 if (entity->function == MEDIA_ENT_F_V4L2_SUBDEV_UNKNOWN || 558 entity->function == MEDIA_ENT_F_UNKNOWN) 559 dev_warn(mdev->dev, 560 "Entity type for entity %s was not initialized!\n", 561 entity->name); 562 563 /* Warn if we apparently re-register an entity */ 564 WARN_ON(entity->graph_obj.mdev != NULL); 565 entity->graph_obj.mdev = mdev; 566 INIT_LIST_HEAD(&entity->links); 567 entity->num_links = 0; 568 entity->num_backlinks = 0; 569 570 if (!ida_pre_get(&mdev->entity_internal_idx, GFP_KERNEL)) 571 return -ENOMEM; 572 573 mutex_lock(&mdev->graph_mutex); 574 575 ret = ida_get_new_above(&mdev->entity_internal_idx, 1, 576 &entity->internal_idx); 577 if (ret < 0) { 578 mutex_unlock(&mdev->graph_mutex); 579 return ret; 580 } 581 582 mdev->entity_internal_idx_max = 583 max(mdev->entity_internal_idx_max, entity->internal_idx); 584 585 /* Initialize media_gobj embedded at the entity */ 586 media_gobj_create(mdev, MEDIA_GRAPH_ENTITY, &entity->graph_obj); 587 588 /* Initialize objects at the pads */ 589 for (i = 0; i < entity->num_pads; i++) 590 media_gobj_create(mdev, MEDIA_GRAPH_PAD, 591 &entity->pads[i].graph_obj); 592 593 /* invoke entity_notify callbacks */ 594 list_for_each_entry_safe(notify, next, &mdev->entity_notify, list) 595 notify->notify(entity, notify->notify_data); 596 597 if (mdev->entity_internal_idx_max 598 >= mdev->pm_count_walk.ent_enum.idx_max) { 599 struct media_graph new = { .top = 0 }; 600 601 /* 602 * Initialise the new graph walk before cleaning up 603 * the old one in order not to spoil the graph walk 604 * object of the media device if graph walk init fails. 605 */ 606 ret = media_graph_walk_init(&new, mdev); 607 if (ret) { 608 mutex_unlock(&mdev->graph_mutex); 609 return ret; 610 } 611 media_graph_walk_cleanup(&mdev->pm_count_walk); 612 mdev->pm_count_walk = new; 613 } 614 mutex_unlock(&mdev->graph_mutex); 615 616 return 0; 617} 618EXPORT_SYMBOL_GPL(media_device_register_entity); 619 620static void __media_device_unregister_entity(struct media_entity *entity) 621{ 622 struct media_device *mdev = entity->graph_obj.mdev; 623 struct media_link *link, *tmp; 624 struct media_interface *intf; 625 unsigned int i; 626 627 ida_simple_remove(&mdev->entity_internal_idx, entity->internal_idx); 628 629 /* Remove all interface links pointing to this entity */ 630 list_for_each_entry(intf, &mdev->interfaces, graph_obj.list) { 631 list_for_each_entry_safe(link, tmp, &intf->links, list) { 632 if (link->entity == entity) 633 __media_remove_intf_link(link); 634 } 635 } 636 637 /* Remove all data links that belong to this entity */ 638 __media_entity_remove_links(entity); 639 640 /* Remove all pads that belong to this entity */ 641 for (i = 0; i < entity->num_pads; i++) 642 media_gobj_destroy(&entity->pads[i].graph_obj); 643 644 /* Remove the entity */ 645 media_gobj_destroy(&entity->graph_obj); 646 647 /* invoke entity_notify callbacks to handle entity removal?? */ 648 649 entity->graph_obj.mdev = NULL; 650} 651 652void media_device_unregister_entity(struct media_entity *entity) 653{ 654 struct media_device *mdev = entity->graph_obj.mdev; 655 656 if (mdev == NULL) 657 return; 658 659 mutex_lock(&mdev->graph_mutex); 660 __media_device_unregister_entity(entity); 661 mutex_unlock(&mdev->graph_mutex); 662} 663EXPORT_SYMBOL_GPL(media_device_unregister_entity); 664 665/** 666 * media_device_init() - initialize a media device 667 * @mdev: The media device 668 * 669 * The caller is responsible for initializing the media device before 670 * registration. The following fields must be set: 671 * 672 * - dev must point to the parent device 673 * - model must be filled with the device model name 674 */ 675void media_device_init(struct media_device *mdev) 676{ 677 INIT_LIST_HEAD(&mdev->entities); 678 INIT_LIST_HEAD(&mdev->interfaces); 679 INIT_LIST_HEAD(&mdev->pads); 680 INIT_LIST_HEAD(&mdev->links); 681 INIT_LIST_HEAD(&mdev->entity_notify); 682 mutex_init(&mdev->graph_mutex); 683 ida_init(&mdev->entity_internal_idx); 684 685 dev_dbg(mdev->dev, "Media device initialized\n"); 686} 687EXPORT_SYMBOL_GPL(media_device_init); 688 689void media_device_cleanup(struct media_device *mdev) 690{ 691 ida_destroy(&mdev->entity_internal_idx); 692 mdev->entity_internal_idx_max = 0; 693 media_graph_walk_cleanup(&mdev->pm_count_walk); 694 mutex_destroy(&mdev->graph_mutex); 695} 696EXPORT_SYMBOL_GPL(media_device_cleanup); 697 698int __must_check __media_device_register(struct media_device *mdev, 699 struct module *owner) 700{ 701 struct media_devnode *devnode; 702 int ret; 703 704 devnode = kzalloc(sizeof(*devnode), GFP_KERNEL); 705 if (!devnode) 706 return -ENOMEM; 707 708 /* Register the device node. */ 709 mdev->devnode = devnode; 710 devnode->fops = &media_device_fops; 711 devnode->parent = mdev->dev; 712 devnode->release = media_device_release; 713 714 /* Set version 0 to indicate user-space that the graph is static */ 715 mdev->topology_version = 0; 716 717 ret = media_devnode_register(mdev, devnode, owner); 718 if (ret < 0) { 719 /* devnode free is handled in media_devnode_*() */ 720 mdev->devnode = NULL; 721 return ret; 722 } 723 724 ret = device_create_file(&devnode->dev, &dev_attr_model); 725 if (ret < 0) { 726 /* devnode free is handled in media_devnode_*() */ 727 mdev->devnode = NULL; 728 media_devnode_unregister_prepare(devnode); 729 media_devnode_unregister(devnode); 730 return ret; 731 } 732 733 dev_dbg(mdev->dev, "Media device registered\n"); 734 735 return 0; 736} 737EXPORT_SYMBOL_GPL(__media_device_register); 738 739int __must_check media_device_register_entity_notify(struct media_device *mdev, 740 struct media_entity_notify *nptr) 741{ 742 mutex_lock(&mdev->graph_mutex); 743 list_add_tail(&nptr->list, &mdev->entity_notify); 744 mutex_unlock(&mdev->graph_mutex); 745 return 0; 746} 747EXPORT_SYMBOL_GPL(media_device_register_entity_notify); 748 749/* 750 * Note: Should be called with mdev->lock held. 751 */ 752static void __media_device_unregister_entity_notify(struct media_device *mdev, 753 struct media_entity_notify *nptr) 754{ 755 list_del(&nptr->list); 756} 757 758void media_device_unregister_entity_notify(struct media_device *mdev, 759 struct media_entity_notify *nptr) 760{ 761 mutex_lock(&mdev->graph_mutex); 762 __media_device_unregister_entity_notify(mdev, nptr); 763 mutex_unlock(&mdev->graph_mutex); 764} 765EXPORT_SYMBOL_GPL(media_device_unregister_entity_notify); 766 767void media_device_unregister(struct media_device *mdev) 768{ 769 struct media_entity *entity; 770 struct media_entity *next; 771 struct media_interface *intf, *tmp_intf; 772 struct media_entity_notify *notify, *nextp; 773 774 if (mdev == NULL) 775 return; 776 777 mutex_lock(&mdev->graph_mutex); 778 779 /* Check if mdev was ever registered at all */ 780 if (!media_devnode_is_registered(mdev->devnode)) { 781 mutex_unlock(&mdev->graph_mutex); 782 return; 783 } 784 785 /* Clear the devnode register bit to avoid races with media dev open */ 786 media_devnode_unregister_prepare(mdev->devnode); 787 788 /* Remove all entities from the media device */ 789 list_for_each_entry_safe(entity, next, &mdev->entities, graph_obj.list) 790 __media_device_unregister_entity(entity); 791 792 /* Remove all entity_notify callbacks from the media device */ 793 list_for_each_entry_safe(notify, nextp, &mdev->entity_notify, list) 794 __media_device_unregister_entity_notify(mdev, notify); 795 796 /* Remove all interfaces from the media device */ 797 list_for_each_entry_safe(intf, tmp_intf, &mdev->interfaces, 798 graph_obj.list) { 799 /* 800 * Unlink the interface, but don't free it here; the 801 * module which created it is responsible for freeing 802 * it 803 */ 804 __media_remove_intf_links(intf); 805 media_gobj_destroy(&intf->graph_obj); 806 } 807 808 mutex_unlock(&mdev->graph_mutex); 809 810 dev_dbg(mdev->dev, "Media device unregistered\n"); 811 812 device_remove_file(&mdev->devnode->dev, &dev_attr_model); 813 media_devnode_unregister(mdev->devnode); 814 /* devnode free is handled in media_devnode_*() */ 815 mdev->devnode = NULL; 816} 817EXPORT_SYMBOL_GPL(media_device_unregister); 818 819#if IS_ENABLED(CONFIG_PCI) 820void media_device_pci_init(struct media_device *mdev, 821 struct pci_dev *pci_dev, 822 const char *name) 823{ 824 mdev->dev = &pci_dev->dev; 825 826 if (name) 827 strlcpy(mdev->model, name, sizeof(mdev->model)); 828 else 829 strlcpy(mdev->model, pci_name(pci_dev), sizeof(mdev->model)); 830 831 sprintf(mdev->bus_info, "PCI:%s", pci_name(pci_dev)); 832 833 mdev->hw_revision = (pci_dev->subsystem_vendor << 16) 834 | pci_dev->subsystem_device; 835 836 media_device_init(mdev); 837} 838EXPORT_SYMBOL_GPL(media_device_pci_init); 839#endif 840 841#if IS_ENABLED(CONFIG_USB) 842void __media_device_usb_init(struct media_device *mdev, 843 struct usb_device *udev, 844 const char *board_name, 845 const char *driver_name) 846{ 847 mdev->dev = &udev->dev; 848 849 if (driver_name) 850 strlcpy(mdev->driver_name, driver_name, 851 sizeof(mdev->driver_name)); 852 853 if (board_name) 854 strlcpy(mdev->model, board_name, sizeof(mdev->model)); 855 else if (udev->product) 856 strlcpy(mdev->model, udev->product, sizeof(mdev->model)); 857 else 858 strlcpy(mdev->model, "unknown model", sizeof(mdev->model)); 859 if (udev->serial) 860 strlcpy(mdev->serial, udev->serial, sizeof(mdev->serial)); 861 usb_make_path(udev, mdev->bus_info, sizeof(mdev->bus_info)); 862 mdev->hw_revision = le16_to_cpu(udev->descriptor.bcdDevice); 863 864 media_device_init(mdev); 865} 866EXPORT_SYMBOL_GPL(__media_device_usb_init); 867#endif 868 869 870#endif /* CONFIG_MEDIA_CONTROLLER */