1 // SPDX-License-Identifier: GPL-2.0 2 /* 3 * USB Type-C Connector Class 4 * 5 * Copyright (C) 2017, Intel Corporation 6 * Author: Heikki Krogerus <heikki.krogerus@linux.intel.com> 7 */ 8 9 #include <linux/module.h> 10 #include <linux/mutex.h> 11 #include <linux/property.h> 12 #include <linux/slab.h> 13 #include <linux/usb/pd_vdo.h> 14 #include <linux/usb/typec_mux.h> 15 16 #include "bus.h" 17 #include "class.h" 18 19 static DEFINE_IDA(typec_index_ida); 20 21 struct class typec_class = { 22 .name = "typec", 23 .owner = THIS_MODULE, 24 }; 25 26 /* ------------------------------------------------------------------------- */ 27 /* Common attributes */ 28 29 static const char * const typec_accessory_modes[] = { 30 [TYPEC_ACCESSORY_NONE] = "none", 31 [TYPEC_ACCESSORY_AUDIO] = "analog_audio", 32 [TYPEC_ACCESSORY_DEBUG] = "debug", 33 }; 34 35 /* Product types defined in USB PD Specification R3.0 V2.0 */ 36 static const char * const product_type_ufp[8] = { 37 [IDH_PTYPE_NOT_UFP] = "not_ufp", 38 [IDH_PTYPE_HUB] = "hub", 39 [IDH_PTYPE_PERIPH] = "peripheral", 40 [IDH_PTYPE_PSD] = "psd", 41 [IDH_PTYPE_AMA] = "ama", 42 }; 43 44 static const char * const product_type_dfp[8] = { 45 [IDH_PTYPE_NOT_DFP] = "not_dfp", 46 [IDH_PTYPE_DFP_HUB] = "hub", 47 [IDH_PTYPE_DFP_HOST] = "host", 48 [IDH_PTYPE_DFP_PB] = "power_brick", 49 }; 50 51 static const char * const product_type_cable[8] = { 52 [IDH_PTYPE_NOT_CABLE] = "not_cable", 53 [IDH_PTYPE_PCABLE] = "passive", 54 [IDH_PTYPE_ACABLE] = "active", 55 [IDH_PTYPE_VPD] = "vpd", 56 }; 57 get_pd_identity(struct device * dev)58 static struct usb_pd_identity *get_pd_identity(struct device *dev) 59 { 60 if (is_typec_partner(dev)) { 61 struct typec_partner *partner = to_typec_partner(dev); 62 63 return partner->identity; 64 } else if (is_typec_cable(dev)) { 65 struct typec_cable *cable = to_typec_cable(dev); 66 67 return cable->identity; 68 } 69 return NULL; 70 } 71 get_pd_product_type(struct device * dev)72 static const char *get_pd_product_type(struct device *dev) 73 { 74 struct typec_port *port = to_typec_port(dev->parent); 75 struct usb_pd_identity *id = get_pd_identity(dev); 76 const char *ptype = NULL; 77 78 if (is_typec_partner(dev)) { 79 if (!id) 80 return NULL; 81 82 if (port->data_role == TYPEC_HOST) 83 ptype = product_type_ufp[PD_IDH_PTYPE(id->id_header)]; 84 else 85 ptype = product_type_dfp[PD_IDH_DFP_PTYPE(id->id_header)]; 86 } else if (is_typec_cable(dev)) { 87 if (id) 88 ptype = product_type_cable[PD_IDH_PTYPE(id->id_header)]; 89 else 90 ptype = to_typec_cable(dev)->active ? 91 product_type_cable[IDH_PTYPE_ACABLE] : 92 product_type_cable[IDH_PTYPE_PCABLE]; 93 } 94 95 return ptype; 96 } 97 id_header_show(struct device * dev,struct device_attribute * attr,char * buf)98 static ssize_t id_header_show(struct device *dev, struct device_attribute *attr, 99 char *buf) 100 { 101 struct usb_pd_identity *id = get_pd_identity(dev); 102 103 return sprintf(buf, "0x%08x\n", id->id_header); 104 } 105 static DEVICE_ATTR_RO(id_header); 106 cert_stat_show(struct device * dev,struct device_attribute * attr,char * buf)107 static ssize_t cert_stat_show(struct device *dev, struct device_attribute *attr, 108 char *buf) 109 { 110 struct usb_pd_identity *id = get_pd_identity(dev); 111 112 return sprintf(buf, "0x%08x\n", id->cert_stat); 113 } 114 static DEVICE_ATTR_RO(cert_stat); 115 product_show(struct device * dev,struct device_attribute * attr,char * buf)116 static ssize_t product_show(struct device *dev, struct device_attribute *attr, 117 char *buf) 118 { 119 struct usb_pd_identity *id = get_pd_identity(dev); 120 121 return sprintf(buf, "0x%08x\n", id->product); 122 } 123 static DEVICE_ATTR_RO(product); 124 product_type_vdo1_show(struct device * dev,struct device_attribute * attr,char * buf)125 static ssize_t product_type_vdo1_show(struct device *dev, struct device_attribute *attr, 126 char *buf) 127 { 128 struct usb_pd_identity *id = get_pd_identity(dev); 129 130 return sysfs_emit(buf, "0x%08x\n", id->vdo[0]); 131 } 132 static DEVICE_ATTR_RO(product_type_vdo1); 133 product_type_vdo2_show(struct device * dev,struct device_attribute * attr,char * buf)134 static ssize_t product_type_vdo2_show(struct device *dev, struct device_attribute *attr, 135 char *buf) 136 { 137 struct usb_pd_identity *id = get_pd_identity(dev); 138 139 return sysfs_emit(buf, "0x%08x\n", id->vdo[1]); 140 } 141 static DEVICE_ATTR_RO(product_type_vdo2); 142 product_type_vdo3_show(struct device * dev,struct device_attribute * attr,char * buf)143 static ssize_t product_type_vdo3_show(struct device *dev, struct device_attribute *attr, 144 char *buf) 145 { 146 struct usb_pd_identity *id = get_pd_identity(dev); 147 148 return sysfs_emit(buf, "0x%08x\n", id->vdo[2]); 149 } 150 static DEVICE_ATTR_RO(product_type_vdo3); 151 152 static struct attribute *usb_pd_id_attrs[] = { 153 &dev_attr_id_header.attr, 154 &dev_attr_cert_stat.attr, 155 &dev_attr_product.attr, 156 &dev_attr_product_type_vdo1.attr, 157 &dev_attr_product_type_vdo2.attr, 158 &dev_attr_product_type_vdo3.attr, 159 NULL 160 }; 161 162 static const struct attribute_group usb_pd_id_group = { 163 .name = "identity", 164 .attrs = usb_pd_id_attrs, 165 }; 166 167 static const struct attribute_group *usb_pd_id_groups[] = { 168 &usb_pd_id_group, 169 NULL, 170 }; 171 typec_product_type_notify(struct device * dev)172 static void typec_product_type_notify(struct device *dev) 173 { 174 char *envp[2] = { }; 175 const char *ptype; 176 177 ptype = get_pd_product_type(dev); 178 if (!ptype) 179 return; 180 181 sysfs_notify(&dev->kobj, NULL, "type"); 182 183 envp[0] = kasprintf(GFP_KERNEL, "PRODUCT_TYPE=%s", ptype); 184 if (!envp[0]) 185 return; 186 187 kobject_uevent_env(&dev->kobj, KOBJ_CHANGE, envp); 188 kfree(envp[0]); 189 } 190 typec_report_identity(struct device * dev)191 static void typec_report_identity(struct device *dev) 192 { 193 sysfs_notify(&dev->kobj, "identity", "id_header"); 194 sysfs_notify(&dev->kobj, "identity", "cert_stat"); 195 sysfs_notify(&dev->kobj, "identity", "product"); 196 sysfs_notify(&dev->kobj, "identity", "product_type_vdo1"); 197 sysfs_notify(&dev->kobj, "identity", "product_type_vdo2"); 198 sysfs_notify(&dev->kobj, "identity", "product_type_vdo3"); 199 typec_product_type_notify(dev); 200 } 201 202 static ssize_t type_show(struct device * dev,struct device_attribute * attr,char * buf)203 type_show(struct device *dev, struct device_attribute *attr, char *buf) 204 { 205 const char *ptype; 206 207 ptype = get_pd_product_type(dev); 208 if (!ptype) 209 return 0; 210 211 return sysfs_emit(buf, "%s\n", ptype); 212 } 213 static DEVICE_ATTR_RO(type); 214 215 static ssize_t usb_power_delivery_revision_show(struct device *dev, 216 struct device_attribute *attr, 217 char *buf); 218 static DEVICE_ATTR_RO(usb_power_delivery_revision); 219 220 /* ------------------------------------------------------------------------- */ 221 /* Alternate Modes */ 222 altmode_match(struct device * dev,void * data)223 static int altmode_match(struct device *dev, void *data) 224 { 225 struct typec_altmode *adev = to_typec_altmode(dev); 226 struct typec_device_id *id = data; 227 228 if (!is_typec_altmode(dev)) 229 return 0; 230 231 return ((adev->svid == id->svid) && (adev->mode == id->mode)); 232 } 233 typec_altmode_set_partner(struct altmode * altmode)234 static void typec_altmode_set_partner(struct altmode *altmode) 235 { 236 struct typec_altmode *adev = &altmode->adev; 237 struct typec_device_id id = { adev->svid, adev->mode, }; 238 struct typec_port *port = typec_altmode2port(adev); 239 struct altmode *partner; 240 struct device *dev; 241 242 dev = device_find_child(&port->dev, &id, altmode_match); 243 if (!dev) 244 return; 245 246 /* Bind the port alt mode to the partner/plug alt mode. */ 247 partner = to_altmode(to_typec_altmode(dev)); 248 altmode->partner = partner; 249 250 /* Bind the partner/plug alt mode to the port alt mode. */ 251 if (is_typec_plug(adev->dev.parent)) { 252 struct typec_plug *plug = to_typec_plug(adev->dev.parent); 253 254 partner->plug[plug->index] = altmode; 255 } else { 256 partner->partner = altmode; 257 } 258 } 259 typec_altmode_put_partner(struct altmode * altmode)260 static void typec_altmode_put_partner(struct altmode *altmode) 261 { 262 struct altmode *partner = altmode->partner; 263 struct typec_altmode *adev; 264 struct typec_altmode *partner_adev; 265 266 if (!partner) 267 return; 268 269 adev = &altmode->adev; 270 partner_adev = &partner->adev; 271 272 if (is_typec_plug(adev->dev.parent)) { 273 struct typec_plug *plug = to_typec_plug(adev->dev.parent); 274 275 partner->plug[plug->index] = NULL; 276 } else { 277 partner->partner = NULL; 278 } 279 put_device(&partner_adev->dev); 280 } 281 282 /** 283 * typec_altmode_update_active - Report Enter/Exit mode 284 * @adev: Handle to the alternate mode 285 * @active: True when the mode has been entered 286 * 287 * If a partner or cable plug executes Enter/Exit Mode command successfully, the 288 * drivers use this routine to report the updated state of the mode. 289 */ typec_altmode_update_active(struct typec_altmode * adev,bool active)290 void typec_altmode_update_active(struct typec_altmode *adev, bool active) 291 { 292 char dir[6]; 293 294 if (adev->active == active) 295 return; 296 297 if (!is_typec_port(adev->dev.parent) && adev->dev.driver) { 298 if (!active) 299 module_put(adev->dev.driver->owner); 300 else 301 WARN_ON(!try_module_get(adev->dev.driver->owner)); 302 } 303 304 adev->active = active; 305 snprintf(dir, sizeof(dir), "mode%d", adev->mode); 306 sysfs_notify(&adev->dev.kobj, dir, "active"); 307 sysfs_notify(&adev->dev.kobj, NULL, "active"); 308 kobject_uevent(&adev->dev.kobj, KOBJ_CHANGE); 309 } 310 EXPORT_SYMBOL_GPL(typec_altmode_update_active); 311 312 /** 313 * typec_altmode2port - Alternate Mode to USB Type-C port 314 * @alt: The Alternate Mode 315 * 316 * Returns handle to the port that a cable plug or partner with @alt is 317 * connected to. 318 */ typec_altmode2port(struct typec_altmode * alt)319 struct typec_port *typec_altmode2port(struct typec_altmode *alt) 320 { 321 if (is_typec_plug(alt->dev.parent)) 322 return to_typec_port(alt->dev.parent->parent->parent); 323 if (is_typec_partner(alt->dev.parent)) 324 return to_typec_port(alt->dev.parent->parent); 325 if (is_typec_port(alt->dev.parent)) 326 return to_typec_port(alt->dev.parent); 327 328 return NULL; 329 } 330 EXPORT_SYMBOL_GPL(typec_altmode2port); 331 332 static ssize_t vdo_show(struct device * dev,struct device_attribute * attr,char * buf)333 vdo_show(struct device *dev, struct device_attribute *attr, char *buf) 334 { 335 struct typec_altmode *alt = to_typec_altmode(dev); 336 337 return sprintf(buf, "0x%08x\n", alt->vdo); 338 } 339 static DEVICE_ATTR_RO(vdo); 340 341 static ssize_t description_show(struct device * dev,struct device_attribute * attr,char * buf)342 description_show(struct device *dev, struct device_attribute *attr, char *buf) 343 { 344 struct typec_altmode *alt = to_typec_altmode(dev); 345 346 return sprintf(buf, "%s\n", alt->desc ? alt->desc : ""); 347 } 348 static DEVICE_ATTR_RO(description); 349 350 static ssize_t active_show(struct device * dev,struct device_attribute * attr,char * buf)351 active_show(struct device *dev, struct device_attribute *attr, char *buf) 352 { 353 struct typec_altmode *alt = to_typec_altmode(dev); 354 355 return sprintf(buf, "%s\n", alt->active ? "yes" : "no"); 356 } 357 active_store(struct device * dev,struct device_attribute * attr,const char * buf,size_t size)358 static ssize_t active_store(struct device *dev, struct device_attribute *attr, 359 const char *buf, size_t size) 360 { 361 struct typec_altmode *adev = to_typec_altmode(dev); 362 struct altmode *altmode = to_altmode(adev); 363 bool enter; 364 int ret; 365 366 ret = kstrtobool(buf, &enter); 367 if (ret) 368 return ret; 369 370 if (adev->active == enter) 371 return size; 372 373 if (is_typec_port(adev->dev.parent)) { 374 typec_altmode_update_active(adev, enter); 375 376 /* Make sure that the partner exits the mode before disabling */ 377 if (altmode->partner && !enter && altmode->partner->adev.active) 378 typec_altmode_exit(&altmode->partner->adev); 379 } else if (altmode->partner) { 380 if (enter && !altmode->partner->adev.active) { 381 dev_warn(dev, "port has the mode disabled\n"); 382 return -EPERM; 383 } 384 } 385 386 /* Note: If there is no driver, the mode will not be entered */ 387 if (adev->ops && adev->ops->activate) { 388 ret = adev->ops->activate(adev, enter); 389 if (ret) 390 return ret; 391 } 392 393 return size; 394 } 395 static DEVICE_ATTR_RW(active); 396 397 static ssize_t supported_roles_show(struct device * dev,struct device_attribute * attr,char * buf)398 supported_roles_show(struct device *dev, struct device_attribute *attr, 399 char *buf) 400 { 401 struct altmode *alt = to_altmode(to_typec_altmode(dev)); 402 ssize_t ret; 403 404 switch (alt->roles) { 405 case TYPEC_PORT_SRC: 406 ret = sprintf(buf, "source\n"); 407 break; 408 case TYPEC_PORT_SNK: 409 ret = sprintf(buf, "sink\n"); 410 break; 411 case TYPEC_PORT_DRP: 412 default: 413 ret = sprintf(buf, "source sink\n"); 414 break; 415 } 416 return ret; 417 } 418 static DEVICE_ATTR_RO(supported_roles); 419 420 static ssize_t mode_show(struct device * dev,struct device_attribute * attr,char * buf)421 mode_show(struct device *dev, struct device_attribute *attr, char *buf) 422 { 423 struct typec_altmode *adev = to_typec_altmode(dev); 424 425 return sprintf(buf, "%u\n", adev->mode); 426 } 427 static DEVICE_ATTR_RO(mode); 428 429 static ssize_t svid_show(struct device * dev,struct device_attribute * attr,char * buf)430 svid_show(struct device *dev, struct device_attribute *attr, char *buf) 431 { 432 struct typec_altmode *adev = to_typec_altmode(dev); 433 434 return sprintf(buf, "%04x\n", adev->svid); 435 } 436 static DEVICE_ATTR_RO(svid); 437 438 static struct attribute *typec_altmode_attrs[] = { 439 &dev_attr_active.attr, 440 &dev_attr_mode.attr, 441 &dev_attr_svid.attr, 442 &dev_attr_vdo.attr, 443 NULL 444 }; 445 typec_altmode_attr_is_visible(struct kobject * kobj,struct attribute * attr,int n)446 static umode_t typec_altmode_attr_is_visible(struct kobject *kobj, 447 struct attribute *attr, int n) 448 { 449 struct typec_altmode *adev = to_typec_altmode(kobj_to_dev(kobj)); 450 451 if (attr == &dev_attr_active.attr) 452 if (!adev->ops || !adev->ops->activate) 453 return 0444; 454 455 return attr->mode; 456 } 457 458 static const struct attribute_group typec_altmode_group = { 459 .is_visible = typec_altmode_attr_is_visible, 460 .attrs = typec_altmode_attrs, 461 }; 462 463 static const struct attribute_group *typec_altmode_groups[] = { 464 &typec_altmode_group, 465 NULL 466 }; 467 altmode_id_get(struct device * dev)468 static int altmode_id_get(struct device *dev) 469 { 470 struct ida *ids; 471 472 if (is_typec_partner(dev)) 473 ids = &to_typec_partner(dev)->mode_ids; 474 else if (is_typec_plug(dev)) 475 ids = &to_typec_plug(dev)->mode_ids; 476 else 477 ids = &to_typec_port(dev)->mode_ids; 478 479 return ida_simple_get(ids, 0, 0, GFP_KERNEL); 480 } 481 altmode_id_remove(struct device * dev,int id)482 static void altmode_id_remove(struct device *dev, int id) 483 { 484 struct ida *ids; 485 486 if (is_typec_partner(dev)) 487 ids = &to_typec_partner(dev)->mode_ids; 488 else if (is_typec_plug(dev)) 489 ids = &to_typec_plug(dev)->mode_ids; 490 else 491 ids = &to_typec_port(dev)->mode_ids; 492 493 ida_simple_remove(ids, id); 494 } 495 typec_altmode_release(struct device * dev)496 static void typec_altmode_release(struct device *dev) 497 { 498 struct altmode *alt = to_altmode(to_typec_altmode(dev)); 499 500 if (!is_typec_port(dev->parent)) 501 typec_altmode_put_partner(alt); 502 503 altmode_id_remove(alt->adev.dev.parent, alt->id); 504 kfree(alt); 505 } 506 507 const struct device_type typec_altmode_dev_type = { 508 .name = "typec_alternate_mode", 509 .groups = typec_altmode_groups, 510 .release = typec_altmode_release, 511 }; 512 513 static struct typec_altmode * typec_register_altmode(struct device * parent,const struct typec_altmode_desc * desc)514 typec_register_altmode(struct device *parent, 515 const struct typec_altmode_desc *desc) 516 { 517 unsigned int id = altmode_id_get(parent); 518 bool is_port = is_typec_port(parent); 519 struct altmode *alt; 520 int ret; 521 522 alt = kzalloc(sizeof(*alt), GFP_KERNEL); 523 if (!alt) { 524 altmode_id_remove(parent, id); 525 return ERR_PTR(-ENOMEM); 526 } 527 528 alt->adev.svid = desc->svid; 529 alt->adev.mode = desc->mode; 530 alt->adev.vdo = desc->vdo; 531 alt->roles = desc->roles; 532 alt->id = id; 533 534 alt->attrs[0] = &dev_attr_vdo.attr; 535 alt->attrs[1] = &dev_attr_description.attr; 536 alt->attrs[2] = &dev_attr_active.attr; 537 538 if (is_port) { 539 alt->attrs[3] = &dev_attr_supported_roles.attr; 540 alt->adev.active = true; /* Enabled by default */ 541 } 542 543 sprintf(alt->group_name, "mode%d", desc->mode); 544 alt->group.name = alt->group_name; 545 alt->group.attrs = alt->attrs; 546 alt->groups[0] = &alt->group; 547 548 alt->adev.dev.parent = parent; 549 alt->adev.dev.groups = alt->groups; 550 alt->adev.dev.type = &typec_altmode_dev_type; 551 dev_set_name(&alt->adev.dev, "%s.%u", dev_name(parent), id); 552 553 /* Link partners and plugs with the ports */ 554 if (!is_port) 555 typec_altmode_set_partner(alt); 556 557 /* The partners are bind to drivers */ 558 if (is_typec_partner(parent)) 559 alt->adev.dev.bus = &typec_bus; 560 561 /* Plug alt modes need a class to generate udev events. */ 562 if (is_typec_plug(parent)) 563 alt->adev.dev.class = &typec_class; 564 565 ret = device_register(&alt->adev.dev); 566 if (ret) { 567 dev_err(parent, "failed to register alternate mode (%d)\n", 568 ret); 569 put_device(&alt->adev.dev); 570 return ERR_PTR(ret); 571 } 572 573 return &alt->adev; 574 } 575 576 /** 577 * typec_unregister_altmode - Unregister Alternate Mode 578 * @adev: The alternate mode to be unregistered 579 * 580 * Unregister device created with typec_partner_register_altmode(), 581 * typec_plug_register_altmode() or typec_port_register_altmode(). 582 */ typec_unregister_altmode(struct typec_altmode * adev)583 void typec_unregister_altmode(struct typec_altmode *adev) 584 { 585 if (IS_ERR_OR_NULL(adev)) 586 return; 587 typec_mux_put(to_altmode(adev)->mux); 588 device_unregister(&adev->dev); 589 } 590 EXPORT_SYMBOL_GPL(typec_unregister_altmode); 591 592 /* ------------------------------------------------------------------------- */ 593 /* Type-C Partners */ 594 accessory_mode_show(struct device * dev,struct device_attribute * attr,char * buf)595 static ssize_t accessory_mode_show(struct device *dev, 596 struct device_attribute *attr, 597 char *buf) 598 { 599 struct typec_partner *p = to_typec_partner(dev); 600 601 return sprintf(buf, "%s\n", typec_accessory_modes[p->accessory]); 602 } 603 static DEVICE_ATTR_RO(accessory_mode); 604 supports_usb_power_delivery_show(struct device * dev,struct device_attribute * attr,char * buf)605 static ssize_t supports_usb_power_delivery_show(struct device *dev, 606 struct device_attribute *attr, 607 char *buf) 608 { 609 struct typec_partner *p = to_typec_partner(dev); 610 611 return sprintf(buf, "%s\n", p->usb_pd ? "yes" : "no"); 612 } 613 static DEVICE_ATTR_RO(supports_usb_power_delivery); 614 number_of_alternate_modes_show(struct device * dev,struct device_attribute * attr,char * buf)615 static ssize_t number_of_alternate_modes_show(struct device *dev, struct device_attribute *attr, 616 char *buf) 617 { 618 struct typec_partner *partner; 619 struct typec_plug *plug; 620 int num_altmodes; 621 622 if (is_typec_partner(dev)) { 623 partner = to_typec_partner(dev); 624 num_altmodes = partner->num_altmodes; 625 } else if (is_typec_plug(dev)) { 626 plug = to_typec_plug(dev); 627 num_altmodes = plug->num_altmodes; 628 } else { 629 return 0; 630 } 631 632 return sysfs_emit(buf, "%d\n", num_altmodes); 633 } 634 static DEVICE_ATTR_RO(number_of_alternate_modes); 635 636 static struct attribute *typec_partner_attrs[] = { 637 &dev_attr_accessory_mode.attr, 638 &dev_attr_supports_usb_power_delivery.attr, 639 &dev_attr_number_of_alternate_modes.attr, 640 &dev_attr_type.attr, 641 &dev_attr_usb_power_delivery_revision.attr, 642 NULL 643 }; 644 typec_partner_attr_is_visible(struct kobject * kobj,struct attribute * attr,int n)645 static umode_t typec_partner_attr_is_visible(struct kobject *kobj, struct attribute *attr, int n) 646 { 647 struct typec_partner *partner = to_typec_partner(kobj_to_dev(kobj)); 648 649 if (attr == &dev_attr_number_of_alternate_modes.attr) { 650 if (partner->num_altmodes < 0) 651 return 0; 652 } 653 654 if (attr == &dev_attr_type.attr) 655 if (!get_pd_product_type(kobj_to_dev(kobj))) 656 return 0; 657 658 return attr->mode; 659 } 660 661 static const struct attribute_group typec_partner_group = { 662 .is_visible = typec_partner_attr_is_visible, 663 .attrs = typec_partner_attrs 664 }; 665 666 static const struct attribute_group *typec_partner_groups[] = { 667 &typec_partner_group, 668 NULL 669 }; 670 typec_partner_release(struct device * dev)671 static void typec_partner_release(struct device *dev) 672 { 673 struct typec_partner *partner = to_typec_partner(dev); 674 675 ida_destroy(&partner->mode_ids); 676 kfree(partner); 677 } 678 679 const struct device_type typec_partner_dev_type = { 680 .name = "typec_partner", 681 .groups = typec_partner_groups, 682 .release = typec_partner_release, 683 }; 684 685 /** 686 * typec_partner_set_identity - Report result from Discover Identity command 687 * @partner: The partner updated identity values 688 * 689 * This routine is used to report that the result of Discover Identity USB power 690 * delivery command has become available. 691 */ typec_partner_set_identity(struct typec_partner * partner)692 int typec_partner_set_identity(struct typec_partner *partner) 693 { 694 if (!partner->identity) 695 return -EINVAL; 696 697 typec_report_identity(&partner->dev); 698 return 0; 699 } 700 EXPORT_SYMBOL_GPL(typec_partner_set_identity); 701 702 /** 703 * typec_partner_set_pd_revision - Set the PD revision supported by the partner 704 * @partner: The partner to be updated. 705 * @pd_revision: USB Power Delivery Specification Revision supported by partner 706 * 707 * This routine is used to report that the PD revision of the port partner has 708 * become available. 709 */ typec_partner_set_pd_revision(struct typec_partner * partner,u16 pd_revision)710 void typec_partner_set_pd_revision(struct typec_partner *partner, u16 pd_revision) 711 { 712 if (partner->pd_revision == pd_revision) 713 return; 714 715 partner->pd_revision = pd_revision; 716 sysfs_notify(&partner->dev.kobj, NULL, "usb_power_delivery_revision"); 717 if (pd_revision != 0 && !partner->usb_pd) { 718 partner->usb_pd = 1; 719 sysfs_notify(&partner->dev.kobj, NULL, 720 "supports_usb_power_delivery"); 721 } 722 kobject_uevent(&partner->dev.kobj, KOBJ_CHANGE); 723 } 724 EXPORT_SYMBOL_GPL(typec_partner_set_pd_revision); 725 726 /** 727 * typec_partner_set_num_altmodes - Set the number of available partner altmodes 728 * @partner: The partner to be updated. 729 * @num_altmodes: The number of altmodes we want to specify as available. 730 * 731 * This routine is used to report the number of alternate modes supported by the 732 * partner. This value is *not* enforced in alternate mode registration routines. 733 * 734 * @partner.num_altmodes is set to -1 on partner registration, denoting that 735 * a valid value has not been set for it yet. 736 * 737 * Returns 0 on success or negative error number on failure. 738 */ typec_partner_set_num_altmodes(struct typec_partner * partner,int num_altmodes)739 int typec_partner_set_num_altmodes(struct typec_partner *partner, int num_altmodes) 740 { 741 int ret; 742 743 if (num_altmodes < 0) 744 return -EINVAL; 745 746 partner->num_altmodes = num_altmodes; 747 ret = sysfs_update_group(&partner->dev.kobj, &typec_partner_group); 748 if (ret < 0) 749 return ret; 750 751 sysfs_notify(&partner->dev.kobj, NULL, "number_of_alternate_modes"); 752 kobject_uevent(&partner->dev.kobj, KOBJ_CHANGE); 753 754 return 0; 755 } 756 EXPORT_SYMBOL_GPL(typec_partner_set_num_altmodes); 757 758 /** 759 * typec_partner_register_altmode - Register USB Type-C Partner Alternate Mode 760 * @partner: USB Type-C Partner that supports the alternate mode 761 * @desc: Description of the alternate mode 762 * 763 * This routine is used to register each alternate mode individually that 764 * @partner has listed in response to Discover SVIDs command. The modes for a 765 * SVID listed in response to Discover Modes command need to be listed in an 766 * array in @desc. 767 * 768 * Returns handle to the alternate mode on success or ERR_PTR on failure. 769 */ 770 struct typec_altmode * typec_partner_register_altmode(struct typec_partner * partner,const struct typec_altmode_desc * desc)771 typec_partner_register_altmode(struct typec_partner *partner, 772 const struct typec_altmode_desc *desc) 773 { 774 return typec_register_altmode(&partner->dev, desc); 775 } 776 EXPORT_SYMBOL_GPL(typec_partner_register_altmode); 777 778 /** 779 * typec_partner_set_svdm_version - Set negotiated Structured VDM (SVDM) Version 780 * @partner: USB Type-C Partner that supports SVDM 781 * @svdm_version: Negotiated SVDM Version 782 * 783 * This routine is used to save the negotiated SVDM Version. 784 */ typec_partner_set_svdm_version(struct typec_partner * partner,enum usb_pd_svdm_ver svdm_version)785 void typec_partner_set_svdm_version(struct typec_partner *partner, 786 enum usb_pd_svdm_ver svdm_version) 787 { 788 partner->svdm_version = svdm_version; 789 } 790 EXPORT_SYMBOL_GPL(typec_partner_set_svdm_version); 791 792 /** 793 * typec_register_partner - Register a USB Type-C Partner 794 * @port: The USB Type-C Port the partner is connected to 795 * @desc: Description of the partner 796 * 797 * Registers a device for USB Type-C Partner described in @desc. 798 * 799 * Returns handle to the partner on success or ERR_PTR on failure. 800 */ typec_register_partner(struct typec_port * port,struct typec_partner_desc * desc)801 struct typec_partner *typec_register_partner(struct typec_port *port, 802 struct typec_partner_desc *desc) 803 { 804 struct typec_partner *partner; 805 int ret; 806 807 partner = kzalloc(sizeof(*partner), GFP_KERNEL); 808 if (!partner) 809 return ERR_PTR(-ENOMEM); 810 811 ida_init(&partner->mode_ids); 812 partner->usb_pd = desc->usb_pd; 813 partner->accessory = desc->accessory; 814 partner->num_altmodes = -1; 815 partner->pd_revision = desc->pd_revision; 816 partner->svdm_version = port->cap->svdm_version; 817 818 if (desc->identity) { 819 /* 820 * Creating directory for the identity only if the driver is 821 * able to provide data to it. 822 */ 823 partner->dev.groups = usb_pd_id_groups; 824 partner->identity = desc->identity; 825 } 826 827 partner->dev.class = &typec_class; 828 partner->dev.parent = &port->dev; 829 partner->dev.type = &typec_partner_dev_type; 830 dev_set_name(&partner->dev, "%s-partner", dev_name(&port->dev)); 831 832 ret = device_register(&partner->dev); 833 if (ret) { 834 dev_err(&port->dev, "failed to register partner (%d)\n", ret); 835 put_device(&partner->dev); 836 return ERR_PTR(ret); 837 } 838 839 return partner; 840 } 841 EXPORT_SYMBOL_GPL(typec_register_partner); 842 843 /** 844 * typec_unregister_partner - Unregister a USB Type-C Partner 845 * @partner: The partner to be unregistered 846 * 847 * Unregister device created with typec_register_partner(). 848 */ typec_unregister_partner(struct typec_partner * partner)849 void typec_unregister_partner(struct typec_partner *partner) 850 { 851 if (!IS_ERR_OR_NULL(partner)) 852 device_unregister(&partner->dev); 853 } 854 EXPORT_SYMBOL_GPL(typec_unregister_partner); 855 856 /* ------------------------------------------------------------------------- */ 857 /* Type-C Cable Plugs */ 858 typec_plug_release(struct device * dev)859 static void typec_plug_release(struct device *dev) 860 { 861 struct typec_plug *plug = to_typec_plug(dev); 862 863 ida_destroy(&plug->mode_ids); 864 kfree(plug); 865 } 866 867 static struct attribute *typec_plug_attrs[] = { 868 &dev_attr_number_of_alternate_modes.attr, 869 NULL 870 }; 871 typec_plug_attr_is_visible(struct kobject * kobj,struct attribute * attr,int n)872 static umode_t typec_plug_attr_is_visible(struct kobject *kobj, struct attribute *attr, int n) 873 { 874 struct typec_plug *plug = to_typec_plug(kobj_to_dev(kobj)); 875 876 if (attr == &dev_attr_number_of_alternate_modes.attr) { 877 if (plug->num_altmodes < 0) 878 return 0; 879 } 880 881 return attr->mode; 882 } 883 884 static const struct attribute_group typec_plug_group = { 885 .is_visible = typec_plug_attr_is_visible, 886 .attrs = typec_plug_attrs 887 }; 888 889 static const struct attribute_group *typec_plug_groups[] = { 890 &typec_plug_group, 891 NULL 892 }; 893 894 const struct device_type typec_plug_dev_type = { 895 .name = "typec_plug", 896 .groups = typec_plug_groups, 897 .release = typec_plug_release, 898 }; 899 900 /** 901 * typec_plug_set_num_altmodes - Set the number of available plug altmodes 902 * @plug: The plug to be updated. 903 * @num_altmodes: The number of altmodes we want to specify as available. 904 * 905 * This routine is used to report the number of alternate modes supported by the 906 * plug. This value is *not* enforced in alternate mode registration routines. 907 * 908 * @plug.num_altmodes is set to -1 on plug registration, denoting that 909 * a valid value has not been set for it yet. 910 * 911 * Returns 0 on success or negative error number on failure. 912 */ typec_plug_set_num_altmodes(struct typec_plug * plug,int num_altmodes)913 int typec_plug_set_num_altmodes(struct typec_plug *plug, int num_altmodes) 914 { 915 int ret; 916 917 if (num_altmodes < 0) 918 return -EINVAL; 919 920 plug->num_altmodes = num_altmodes; 921 ret = sysfs_update_group(&plug->dev.kobj, &typec_plug_group); 922 if (ret < 0) 923 return ret; 924 925 sysfs_notify(&plug->dev.kobj, NULL, "number_of_alternate_modes"); 926 kobject_uevent(&plug->dev.kobj, KOBJ_CHANGE); 927 928 return 0; 929 } 930 EXPORT_SYMBOL_GPL(typec_plug_set_num_altmodes); 931 932 /** 933 * typec_plug_register_altmode - Register USB Type-C Cable Plug Alternate Mode 934 * @plug: USB Type-C Cable Plug that supports the alternate mode 935 * @desc: Description of the alternate mode 936 * 937 * This routine is used to register each alternate mode individually that @plug 938 * has listed in response to Discover SVIDs command. The modes for a SVID that 939 * the plug lists in response to Discover Modes command need to be listed in an 940 * array in @desc. 941 * 942 * Returns handle to the alternate mode on success or ERR_PTR on failure. 943 */ 944 struct typec_altmode * typec_plug_register_altmode(struct typec_plug * plug,const struct typec_altmode_desc * desc)945 typec_plug_register_altmode(struct typec_plug *plug, 946 const struct typec_altmode_desc *desc) 947 { 948 return typec_register_altmode(&plug->dev, desc); 949 } 950 EXPORT_SYMBOL_GPL(typec_plug_register_altmode); 951 952 /** 953 * typec_register_plug - Register a USB Type-C Cable Plug 954 * @cable: USB Type-C Cable with the plug 955 * @desc: Description of the cable plug 956 * 957 * Registers a device for USB Type-C Cable Plug described in @desc. A USB Type-C 958 * Cable Plug represents a plug with electronics in it that can response to USB 959 * Power Delivery SOP Prime or SOP Double Prime packages. 960 * 961 * Returns handle to the cable plug on success or ERR_PTR on failure. 962 */ typec_register_plug(struct typec_cable * cable,struct typec_plug_desc * desc)963 struct typec_plug *typec_register_plug(struct typec_cable *cable, 964 struct typec_plug_desc *desc) 965 { 966 struct typec_plug *plug; 967 char name[8]; 968 int ret; 969 970 plug = kzalloc(sizeof(*plug), GFP_KERNEL); 971 if (!plug) 972 return ERR_PTR(-ENOMEM); 973 974 sprintf(name, "plug%d", desc->index); 975 976 ida_init(&plug->mode_ids); 977 plug->num_altmodes = -1; 978 plug->index = desc->index; 979 plug->dev.class = &typec_class; 980 plug->dev.parent = &cable->dev; 981 plug->dev.type = &typec_plug_dev_type; 982 dev_set_name(&plug->dev, "%s-%s", dev_name(cable->dev.parent), name); 983 984 ret = device_register(&plug->dev); 985 if (ret) { 986 dev_err(&cable->dev, "failed to register plug (%d)\n", ret); 987 put_device(&plug->dev); 988 return ERR_PTR(ret); 989 } 990 991 return plug; 992 } 993 EXPORT_SYMBOL_GPL(typec_register_plug); 994 995 /** 996 * typec_unregister_plug - Unregister a USB Type-C Cable Plug 997 * @plug: The cable plug to be unregistered 998 * 999 * Unregister device created with typec_register_plug(). 1000 */ typec_unregister_plug(struct typec_plug * plug)1001 void typec_unregister_plug(struct typec_plug *plug) 1002 { 1003 if (!IS_ERR_OR_NULL(plug)) 1004 device_unregister(&plug->dev); 1005 } 1006 EXPORT_SYMBOL_GPL(typec_unregister_plug); 1007 1008 /* Type-C Cables */ 1009 1010 static const char * const typec_plug_types[] = { 1011 [USB_PLUG_NONE] = "unknown", 1012 [USB_PLUG_TYPE_A] = "type-a", 1013 [USB_PLUG_TYPE_B] = "type-b", 1014 [USB_PLUG_TYPE_C] = "type-c", 1015 [USB_PLUG_CAPTIVE] = "captive", 1016 }; 1017 plug_type_show(struct device * dev,struct device_attribute * attr,char * buf)1018 static ssize_t plug_type_show(struct device *dev, 1019 struct device_attribute *attr, char *buf) 1020 { 1021 struct typec_cable *cable = to_typec_cable(dev); 1022 1023 return sprintf(buf, "%s\n", typec_plug_types[cable->type]); 1024 } 1025 static DEVICE_ATTR_RO(plug_type); 1026 1027 static struct attribute *typec_cable_attrs[] = { 1028 &dev_attr_type.attr, 1029 &dev_attr_plug_type.attr, 1030 &dev_attr_usb_power_delivery_revision.attr, 1031 NULL 1032 }; 1033 ATTRIBUTE_GROUPS(typec_cable); 1034 typec_cable_release(struct device * dev)1035 static void typec_cable_release(struct device *dev) 1036 { 1037 struct typec_cable *cable = to_typec_cable(dev); 1038 1039 kfree(cable); 1040 } 1041 1042 const struct device_type typec_cable_dev_type = { 1043 .name = "typec_cable", 1044 .groups = typec_cable_groups, 1045 .release = typec_cable_release, 1046 }; 1047 cable_match(struct device * dev,void * data)1048 static int cable_match(struct device *dev, void *data) 1049 { 1050 return is_typec_cable(dev); 1051 } 1052 1053 /** 1054 * typec_cable_get - Get a reference to the USB Type-C cable 1055 * @port: The USB Type-C Port the cable is connected to 1056 * 1057 * The caller must decrement the reference count with typec_cable_put() after 1058 * use. 1059 */ typec_cable_get(struct typec_port * port)1060 struct typec_cable *typec_cable_get(struct typec_port *port) 1061 { 1062 struct device *dev; 1063 1064 dev = device_find_child(&port->dev, NULL, cable_match); 1065 if (!dev) 1066 return NULL; 1067 1068 return to_typec_cable(dev); 1069 } 1070 EXPORT_SYMBOL_GPL(typec_cable_get); 1071 1072 /** 1073 * typec_cable_put - Decrement the reference count on USB Type-C cable 1074 * @cable: The USB Type-C cable 1075 */ typec_cable_put(struct typec_cable * cable)1076 void typec_cable_put(struct typec_cable *cable) 1077 { 1078 put_device(&cable->dev); 1079 } 1080 EXPORT_SYMBOL_GPL(typec_cable_put); 1081 1082 /** 1083 * typec_cable_is_active - Check is the USB Type-C cable active or passive 1084 * @cable: The USB Type-C Cable 1085 * 1086 * Return 1 if the cable is active or 0 if it's passive. 1087 */ typec_cable_is_active(struct typec_cable * cable)1088 int typec_cable_is_active(struct typec_cable *cable) 1089 { 1090 return cable->active; 1091 } 1092 EXPORT_SYMBOL_GPL(typec_cable_is_active); 1093 1094 /** 1095 * typec_cable_set_identity - Report result from Discover Identity command 1096 * @cable: The cable updated identity values 1097 * 1098 * This routine is used to report that the result of Discover Identity USB power 1099 * delivery command has become available. 1100 */ typec_cable_set_identity(struct typec_cable * cable)1101 int typec_cable_set_identity(struct typec_cable *cable) 1102 { 1103 if (!cable->identity) 1104 return -EINVAL; 1105 1106 typec_report_identity(&cable->dev); 1107 return 0; 1108 } 1109 EXPORT_SYMBOL_GPL(typec_cable_set_identity); 1110 1111 /** 1112 * typec_register_cable - Register a USB Type-C Cable 1113 * @port: The USB Type-C Port the cable is connected to 1114 * @desc: Description of the cable 1115 * 1116 * Registers a device for USB Type-C Cable described in @desc. The cable will be 1117 * parent for the optional cable plug devises. 1118 * 1119 * Returns handle to the cable on success or ERR_PTR on failure. 1120 */ typec_register_cable(struct typec_port * port,struct typec_cable_desc * desc)1121 struct typec_cable *typec_register_cable(struct typec_port *port, 1122 struct typec_cable_desc *desc) 1123 { 1124 struct typec_cable *cable; 1125 int ret; 1126 1127 cable = kzalloc(sizeof(*cable), GFP_KERNEL); 1128 if (!cable) 1129 return ERR_PTR(-ENOMEM); 1130 1131 cable->type = desc->type; 1132 cable->active = desc->active; 1133 cable->pd_revision = desc->pd_revision; 1134 1135 if (desc->identity) { 1136 /* 1137 * Creating directory for the identity only if the driver is 1138 * able to provide data to it. 1139 */ 1140 cable->dev.groups = usb_pd_id_groups; 1141 cable->identity = desc->identity; 1142 } 1143 1144 cable->dev.class = &typec_class; 1145 cable->dev.parent = &port->dev; 1146 cable->dev.type = &typec_cable_dev_type; 1147 dev_set_name(&cable->dev, "%s-cable", dev_name(&port->dev)); 1148 1149 ret = device_register(&cable->dev); 1150 if (ret) { 1151 dev_err(&port->dev, "failed to register cable (%d)\n", ret); 1152 put_device(&cable->dev); 1153 return ERR_PTR(ret); 1154 } 1155 1156 return cable; 1157 } 1158 EXPORT_SYMBOL_GPL(typec_register_cable); 1159 1160 /** 1161 * typec_unregister_cable - Unregister a USB Type-C Cable 1162 * @cable: The cable to be unregistered 1163 * 1164 * Unregister device created with typec_register_cable(). 1165 */ typec_unregister_cable(struct typec_cable * cable)1166 void typec_unregister_cable(struct typec_cable *cable) 1167 { 1168 if (!IS_ERR_OR_NULL(cable)) 1169 device_unregister(&cable->dev); 1170 } 1171 EXPORT_SYMBOL_GPL(typec_unregister_cable); 1172 1173 /* ------------------------------------------------------------------------- */ 1174 /* USB Type-C ports */ 1175 1176 static const char * const typec_orientations[] = { 1177 [TYPEC_ORIENTATION_NONE] = "unknown", 1178 [TYPEC_ORIENTATION_NORMAL] = "normal", 1179 [TYPEC_ORIENTATION_REVERSE] = "reverse", 1180 }; 1181 1182 static const char * const typec_roles[] = { 1183 [TYPEC_SINK] = "sink", 1184 [TYPEC_SOURCE] = "source", 1185 }; 1186 1187 static const char * const typec_data_roles[] = { 1188 [TYPEC_DEVICE] = "device", 1189 [TYPEC_HOST] = "host", 1190 }; 1191 1192 static const char * const typec_port_power_roles[] = { 1193 [TYPEC_PORT_SRC] = "source", 1194 [TYPEC_PORT_SNK] = "sink", 1195 [TYPEC_PORT_DRP] = "dual", 1196 }; 1197 1198 static const char * const typec_port_data_roles[] = { 1199 [TYPEC_PORT_DFP] = "host", 1200 [TYPEC_PORT_UFP] = "device", 1201 [TYPEC_PORT_DRD] = "dual", 1202 }; 1203 1204 static const char * const typec_port_types_drp[] = { 1205 [TYPEC_PORT_SRC] = "dual [source] sink", 1206 [TYPEC_PORT_SNK] = "dual source [sink]", 1207 [TYPEC_PORT_DRP] = "[dual] source sink", 1208 }; 1209 1210 static ssize_t preferred_role_store(struct device * dev,struct device_attribute * attr,const char * buf,size_t size)1211 preferred_role_store(struct device *dev, struct device_attribute *attr, 1212 const char *buf, size_t size) 1213 { 1214 struct typec_port *port = to_typec_port(dev); 1215 int role; 1216 int ret; 1217 1218 if (port->cap->type != TYPEC_PORT_DRP) { 1219 dev_dbg(dev, "Preferred role only supported with DRP ports\n"); 1220 return -EOPNOTSUPP; 1221 } 1222 1223 if (!port->ops || !port->ops->try_role) { 1224 dev_dbg(dev, "Setting preferred role not supported\n"); 1225 return -EOPNOTSUPP; 1226 } 1227 1228 role = sysfs_match_string(typec_roles, buf); 1229 if (role < 0) { 1230 if (sysfs_streq(buf, "none")) 1231 role = TYPEC_NO_PREFERRED_ROLE; 1232 else 1233 return -EINVAL; 1234 } 1235 1236 ret = port->ops->try_role(port, role); 1237 if (ret) 1238 return ret; 1239 1240 port->prefer_role = role; 1241 return size; 1242 } 1243 1244 static ssize_t preferred_role_show(struct device * dev,struct device_attribute * attr,char * buf)1245 preferred_role_show(struct device *dev, struct device_attribute *attr, 1246 char *buf) 1247 { 1248 struct typec_port *port = to_typec_port(dev); 1249 1250 if (port->cap->type != TYPEC_PORT_DRP) 1251 return 0; 1252 1253 if (port->prefer_role < 0) 1254 return 0; 1255 1256 return sprintf(buf, "%s\n", typec_roles[port->prefer_role]); 1257 } 1258 static DEVICE_ATTR_RW(preferred_role); 1259 data_role_store(struct device * dev,struct device_attribute * attr,const char * buf,size_t size)1260 static ssize_t data_role_store(struct device *dev, 1261 struct device_attribute *attr, 1262 const char *buf, size_t size) 1263 { 1264 struct typec_port *port = to_typec_port(dev); 1265 int ret; 1266 1267 if (!port->ops || !port->ops->dr_set) { 1268 dev_dbg(dev, "data role swapping not supported\n"); 1269 return -EOPNOTSUPP; 1270 } 1271 1272 ret = sysfs_match_string(typec_data_roles, buf); 1273 if (ret < 0) 1274 return ret; 1275 1276 mutex_lock(&port->port_type_lock); 1277 if (port->cap->data != TYPEC_PORT_DRD) { 1278 ret = -EOPNOTSUPP; 1279 goto unlock_and_ret; 1280 } 1281 1282 ret = port->ops->dr_set(port, ret); 1283 if (ret) 1284 goto unlock_and_ret; 1285 1286 ret = size; 1287 unlock_and_ret: 1288 mutex_unlock(&port->port_type_lock); 1289 return ret; 1290 } 1291 data_role_show(struct device * dev,struct device_attribute * attr,char * buf)1292 static ssize_t data_role_show(struct device *dev, 1293 struct device_attribute *attr, char *buf) 1294 { 1295 struct typec_port *port = to_typec_port(dev); 1296 1297 if (port->cap->data == TYPEC_PORT_DRD) 1298 return sprintf(buf, "%s\n", port->data_role == TYPEC_HOST ? 1299 "[host] device" : "host [device]"); 1300 1301 return sprintf(buf, "[%s]\n", typec_data_roles[port->data_role]); 1302 } 1303 static DEVICE_ATTR_RW(data_role); 1304 power_role_store(struct device * dev,struct device_attribute * attr,const char * buf,size_t size)1305 static ssize_t power_role_store(struct device *dev, 1306 struct device_attribute *attr, 1307 const char *buf, size_t size) 1308 { 1309 struct typec_port *port = to_typec_port(dev); 1310 int ret; 1311 1312 if (!port->ops || !port->ops->pr_set) { 1313 dev_dbg(dev, "power role swapping not supported\n"); 1314 return -EOPNOTSUPP; 1315 } 1316 1317 if (port->pwr_opmode != TYPEC_PWR_MODE_PD) { 1318 dev_dbg(dev, "partner unable to swap power role\n"); 1319 return -EIO; 1320 } 1321 1322 ret = sysfs_match_string(typec_roles, buf); 1323 if (ret < 0) 1324 return ret; 1325 1326 mutex_lock(&port->port_type_lock); 1327 if (port->port_type != TYPEC_PORT_DRP) { 1328 dev_dbg(dev, "port type fixed at \"%s\"", 1329 typec_port_power_roles[port->port_type]); 1330 ret = -EOPNOTSUPP; 1331 goto unlock_and_ret; 1332 } 1333 1334 ret = port->ops->pr_set(port, ret); 1335 if (ret) 1336 goto unlock_and_ret; 1337 1338 ret = size; 1339 unlock_and_ret: 1340 mutex_unlock(&port->port_type_lock); 1341 return ret; 1342 } 1343 power_role_show(struct device * dev,struct device_attribute * attr,char * buf)1344 static ssize_t power_role_show(struct device *dev, 1345 struct device_attribute *attr, char *buf) 1346 { 1347 struct typec_port *port = to_typec_port(dev); 1348 1349 if (port->cap->type == TYPEC_PORT_DRP) 1350 return sprintf(buf, "%s\n", port->pwr_role == TYPEC_SOURCE ? 1351 "[source] sink" : "source [sink]"); 1352 1353 return sprintf(buf, "[%s]\n", typec_roles[port->pwr_role]); 1354 } 1355 static DEVICE_ATTR_RW(power_role); 1356 1357 static ssize_t port_type_store(struct device * dev,struct device_attribute * attr,const char * buf,size_t size)1358 port_type_store(struct device *dev, struct device_attribute *attr, 1359 const char *buf, size_t size) 1360 { 1361 struct typec_port *port = to_typec_port(dev); 1362 int ret; 1363 enum typec_port_type type; 1364 1365 if (port->cap->type != TYPEC_PORT_DRP || 1366 !port->ops || !port->ops->port_type_set) { 1367 dev_dbg(dev, "changing port type not supported\n"); 1368 return -EOPNOTSUPP; 1369 } 1370 1371 ret = sysfs_match_string(typec_port_power_roles, buf); 1372 if (ret < 0) 1373 return ret; 1374 1375 type = ret; 1376 mutex_lock(&port->port_type_lock); 1377 1378 if (port->port_type == type) { 1379 ret = size; 1380 goto unlock_and_ret; 1381 } 1382 1383 ret = port->ops->port_type_set(port, type); 1384 if (ret) 1385 goto unlock_and_ret; 1386 1387 port->port_type = type; 1388 ret = size; 1389 1390 unlock_and_ret: 1391 mutex_unlock(&port->port_type_lock); 1392 return ret; 1393 } 1394 1395 static ssize_t port_type_show(struct device * dev,struct device_attribute * attr,char * buf)1396 port_type_show(struct device *dev, struct device_attribute *attr, 1397 char *buf) 1398 { 1399 struct typec_port *port = to_typec_port(dev); 1400 1401 if (port->cap->type == TYPEC_PORT_DRP) 1402 return sprintf(buf, "%s\n", 1403 typec_port_types_drp[port->port_type]); 1404 1405 return sprintf(buf, "[%s]\n", typec_port_power_roles[port->cap->type]); 1406 } 1407 static DEVICE_ATTR_RW(port_type); 1408 1409 static const char * const typec_pwr_opmodes[] = { 1410 [TYPEC_PWR_MODE_USB] = "default", 1411 [TYPEC_PWR_MODE_1_5A] = "1.5A", 1412 [TYPEC_PWR_MODE_3_0A] = "3.0A", 1413 [TYPEC_PWR_MODE_PD] = "usb_power_delivery", 1414 }; 1415 power_operation_mode_show(struct device * dev,struct device_attribute * attr,char * buf)1416 static ssize_t power_operation_mode_show(struct device *dev, 1417 struct device_attribute *attr, 1418 char *buf) 1419 { 1420 struct typec_port *port = to_typec_port(dev); 1421 1422 return sprintf(buf, "%s\n", typec_pwr_opmodes[port->pwr_opmode]); 1423 } 1424 static DEVICE_ATTR_RO(power_operation_mode); 1425 vconn_source_store(struct device * dev,struct device_attribute * attr,const char * buf,size_t size)1426 static ssize_t vconn_source_store(struct device *dev, 1427 struct device_attribute *attr, 1428 const char *buf, size_t size) 1429 { 1430 struct typec_port *port = to_typec_port(dev); 1431 bool source; 1432 int ret; 1433 1434 if (!port->cap->pd_revision) { 1435 dev_dbg(dev, "VCONN swap depends on USB Power Delivery\n"); 1436 return -EOPNOTSUPP; 1437 } 1438 1439 if (!port->ops || !port->ops->vconn_set) { 1440 dev_dbg(dev, "VCONN swapping not supported\n"); 1441 return -EOPNOTSUPP; 1442 } 1443 1444 ret = kstrtobool(buf, &source); 1445 if (ret) 1446 return ret; 1447 1448 ret = port->ops->vconn_set(port, (enum typec_role)source); 1449 if (ret) 1450 return ret; 1451 1452 return size; 1453 } 1454 vconn_source_show(struct device * dev,struct device_attribute * attr,char * buf)1455 static ssize_t vconn_source_show(struct device *dev, 1456 struct device_attribute *attr, char *buf) 1457 { 1458 struct typec_port *port = to_typec_port(dev); 1459 1460 return sprintf(buf, "%s\n", 1461 port->vconn_role == TYPEC_SOURCE ? "yes" : "no"); 1462 } 1463 static DEVICE_ATTR_RW(vconn_source); 1464 supported_accessory_modes_show(struct device * dev,struct device_attribute * attr,char * buf)1465 static ssize_t supported_accessory_modes_show(struct device *dev, 1466 struct device_attribute *attr, 1467 char *buf) 1468 { 1469 struct typec_port *port = to_typec_port(dev); 1470 ssize_t ret = 0; 1471 int i; 1472 1473 for (i = 0; i < ARRAY_SIZE(port->cap->accessory); i++) { 1474 if (port->cap->accessory[i]) 1475 ret += sprintf(buf + ret, "%s ", 1476 typec_accessory_modes[port->cap->accessory[i]]); 1477 } 1478 1479 if (!ret) 1480 return sprintf(buf, "none\n"); 1481 1482 buf[ret - 1] = '\n'; 1483 1484 return ret; 1485 } 1486 static DEVICE_ATTR_RO(supported_accessory_modes); 1487 usb_typec_revision_show(struct device * dev,struct device_attribute * attr,char * buf)1488 static ssize_t usb_typec_revision_show(struct device *dev, 1489 struct device_attribute *attr, 1490 char *buf) 1491 { 1492 struct typec_port *port = to_typec_port(dev); 1493 u16 rev = port->cap->revision; 1494 1495 return sprintf(buf, "%d.%d\n", (rev >> 8) & 0xff, (rev >> 4) & 0xf); 1496 } 1497 static DEVICE_ATTR_RO(usb_typec_revision); 1498 usb_power_delivery_revision_show(struct device * dev,struct device_attribute * attr,char * buf)1499 static ssize_t usb_power_delivery_revision_show(struct device *dev, 1500 struct device_attribute *attr, 1501 char *buf) 1502 { 1503 u16 rev = 0; 1504 1505 if (is_typec_partner(dev)) { 1506 struct typec_partner *partner = to_typec_partner(dev); 1507 1508 rev = partner->pd_revision; 1509 } else if (is_typec_cable(dev)) { 1510 struct typec_cable *cable = to_typec_cable(dev); 1511 1512 rev = cable->pd_revision; 1513 } else if (is_typec_port(dev)) { 1514 struct typec_port *p = to_typec_port(dev); 1515 1516 rev = p->cap->pd_revision; 1517 } 1518 return sysfs_emit(buf, "%d.%d\n", (rev >> 8) & 0xff, (rev >> 4) & 0xf); 1519 } 1520 orientation_show(struct device * dev,struct device_attribute * attr,char * buf)1521 static ssize_t orientation_show(struct device *dev, 1522 struct device_attribute *attr, 1523 char *buf) 1524 { 1525 struct typec_port *port = to_typec_port(dev); 1526 1527 return sprintf(buf, "%s\n", typec_orientations[port->orientation]); 1528 } 1529 static DEVICE_ATTR_RO(orientation); 1530 1531 static struct attribute *typec_attrs[] = { 1532 &dev_attr_data_role.attr, 1533 &dev_attr_power_operation_mode.attr, 1534 &dev_attr_power_role.attr, 1535 &dev_attr_preferred_role.attr, 1536 &dev_attr_supported_accessory_modes.attr, 1537 &dev_attr_usb_power_delivery_revision.attr, 1538 &dev_attr_usb_typec_revision.attr, 1539 &dev_attr_vconn_source.attr, 1540 &dev_attr_port_type.attr, 1541 &dev_attr_orientation.attr, 1542 NULL, 1543 }; 1544 typec_attr_is_visible(struct kobject * kobj,struct attribute * attr,int n)1545 static umode_t typec_attr_is_visible(struct kobject *kobj, 1546 struct attribute *attr, int n) 1547 { 1548 struct typec_port *port = to_typec_port(kobj_to_dev(kobj)); 1549 1550 if (attr == &dev_attr_data_role.attr) { 1551 if (port->cap->data != TYPEC_PORT_DRD || 1552 !port->ops || !port->ops->dr_set) 1553 return 0444; 1554 } else if (attr == &dev_attr_power_role.attr) { 1555 if (port->cap->type != TYPEC_PORT_DRP || 1556 !port->ops || !port->ops->pr_set) 1557 return 0444; 1558 } else if (attr == &dev_attr_vconn_source.attr) { 1559 if (!port->cap->pd_revision || 1560 !port->ops || !port->ops->vconn_set) 1561 return 0444; 1562 } else if (attr == &dev_attr_preferred_role.attr) { 1563 if (port->cap->type != TYPEC_PORT_DRP || 1564 !port->ops || !port->ops->try_role) 1565 return 0444; 1566 } else if (attr == &dev_attr_port_type.attr) { 1567 if (!port->ops || !port->ops->port_type_set) 1568 return 0; 1569 if (port->cap->type != TYPEC_PORT_DRP) 1570 return 0444; 1571 } else if (attr == &dev_attr_orientation.attr) { 1572 if (port->cap->orientation_aware) 1573 return 0444; 1574 return 0; 1575 } 1576 1577 return attr->mode; 1578 } 1579 1580 static const struct attribute_group typec_group = { 1581 .is_visible = typec_attr_is_visible, 1582 .attrs = typec_attrs, 1583 }; 1584 1585 static const struct attribute_group *typec_groups[] = { 1586 &typec_group, 1587 NULL 1588 }; 1589 typec_uevent(struct device * dev,struct kobj_uevent_env * env)1590 static int typec_uevent(struct device *dev, struct kobj_uevent_env *env) 1591 { 1592 int ret; 1593 1594 ret = add_uevent_var(env, "TYPEC_PORT=%s", dev_name(dev)); 1595 if (ret) 1596 dev_err(dev, "failed to add uevent TYPEC_PORT\n"); 1597 1598 return ret; 1599 } 1600 typec_release(struct device * dev)1601 static void typec_release(struct device *dev) 1602 { 1603 struct typec_port *port = to_typec_port(dev); 1604 1605 ida_simple_remove(&typec_index_ida, port->id); 1606 ida_destroy(&port->mode_ids); 1607 typec_switch_put(port->sw); 1608 typec_mux_put(port->mux); 1609 kfree(port->cap); 1610 kfree(port); 1611 } 1612 1613 const struct device_type typec_port_dev_type = { 1614 .name = "typec_port", 1615 .groups = typec_groups, 1616 .uevent = typec_uevent, 1617 .release = typec_release, 1618 }; 1619 1620 /* --------------------------------------- */ 1621 /* Driver callbacks to report role updates */ 1622 partner_match(struct device * dev,void * data)1623 static int partner_match(struct device *dev, void *data) 1624 { 1625 return is_typec_partner(dev); 1626 } 1627 1628 /** 1629 * typec_set_data_role - Report data role change 1630 * @port: The USB Type-C Port where the role was changed 1631 * @role: The new data role 1632 * 1633 * This routine is used by the port drivers to report data role changes. 1634 */ typec_set_data_role(struct typec_port * port,enum typec_data_role role)1635 void typec_set_data_role(struct typec_port *port, enum typec_data_role role) 1636 { 1637 struct device *partner_dev; 1638 1639 if (port->data_role == role) 1640 return; 1641 1642 port->data_role = role; 1643 sysfs_notify(&port->dev.kobj, NULL, "data_role"); 1644 kobject_uevent(&port->dev.kobj, KOBJ_CHANGE); 1645 1646 partner_dev = device_find_child(&port->dev, NULL, partner_match); 1647 if (!partner_dev) 1648 return; 1649 1650 if (to_typec_partner(partner_dev)->identity) 1651 typec_product_type_notify(partner_dev); 1652 1653 put_device(partner_dev); 1654 } 1655 EXPORT_SYMBOL_GPL(typec_set_data_role); 1656 1657 /** 1658 * typec_set_pwr_role - Report power role change 1659 * @port: The USB Type-C Port where the role was changed 1660 * @role: The new data role 1661 * 1662 * This routine is used by the port drivers to report power role changes. 1663 */ typec_set_pwr_role(struct typec_port * port,enum typec_role role)1664 void typec_set_pwr_role(struct typec_port *port, enum typec_role role) 1665 { 1666 if (port->pwr_role == role) 1667 return; 1668 1669 port->pwr_role = role; 1670 sysfs_notify(&port->dev.kobj, NULL, "power_role"); 1671 kobject_uevent(&port->dev.kobj, KOBJ_CHANGE); 1672 } 1673 EXPORT_SYMBOL_GPL(typec_set_pwr_role); 1674 1675 /** 1676 * typec_set_vconn_role - Report VCONN source change 1677 * @port: The USB Type-C Port which VCONN role changed 1678 * @role: Source when @port is sourcing VCONN, or Sink when it's not 1679 * 1680 * This routine is used by the port drivers to report if the VCONN source is 1681 * changes. 1682 */ typec_set_vconn_role(struct typec_port * port,enum typec_role role)1683 void typec_set_vconn_role(struct typec_port *port, enum typec_role role) 1684 { 1685 if (port->vconn_role == role) 1686 return; 1687 1688 port->vconn_role = role; 1689 sysfs_notify(&port->dev.kobj, NULL, "vconn_source"); 1690 kobject_uevent(&port->dev.kobj, KOBJ_CHANGE); 1691 } 1692 EXPORT_SYMBOL_GPL(typec_set_vconn_role); 1693 1694 /** 1695 * typec_set_pwr_opmode - Report changed power operation mode 1696 * @port: The USB Type-C Port where the mode was changed 1697 * @opmode: New power operation mode 1698 * 1699 * This routine is used by the port drivers to report changed power operation 1700 * mode in @port. The modes are USB (default), 1.5A, 3.0A as defined in USB 1701 * Type-C specification, and "USB Power Delivery" when the power levels are 1702 * negotiated with methods defined in USB Power Delivery specification. 1703 */ typec_set_pwr_opmode(struct typec_port * port,enum typec_pwr_opmode opmode)1704 void typec_set_pwr_opmode(struct typec_port *port, 1705 enum typec_pwr_opmode opmode) 1706 { 1707 struct device *partner_dev; 1708 1709 if (port->pwr_opmode == opmode) 1710 return; 1711 1712 port->pwr_opmode = opmode; 1713 sysfs_notify(&port->dev.kobj, NULL, "power_operation_mode"); 1714 kobject_uevent(&port->dev.kobj, KOBJ_CHANGE); 1715 1716 partner_dev = device_find_child(&port->dev, NULL, partner_match); 1717 if (partner_dev) { 1718 struct typec_partner *partner = to_typec_partner(partner_dev); 1719 1720 if (opmode == TYPEC_PWR_MODE_PD && !partner->usb_pd) { 1721 partner->usb_pd = 1; 1722 sysfs_notify(&partner_dev->kobj, NULL, 1723 "supports_usb_power_delivery"); 1724 kobject_uevent(&partner_dev->kobj, KOBJ_CHANGE); 1725 } 1726 put_device(partner_dev); 1727 } 1728 } 1729 EXPORT_SYMBOL_GPL(typec_set_pwr_opmode); 1730 1731 /** 1732 * typec_find_pwr_opmode - Get the typec power operation mode capability 1733 * @name: power operation mode string 1734 * 1735 * This routine is used to find the typec_pwr_opmode by its string @name. 1736 * 1737 * Returns typec_pwr_opmode if success, otherwise negative error code. 1738 */ typec_find_pwr_opmode(const char * name)1739 int typec_find_pwr_opmode(const char *name) 1740 { 1741 return match_string(typec_pwr_opmodes, 1742 ARRAY_SIZE(typec_pwr_opmodes), name); 1743 } 1744 EXPORT_SYMBOL_GPL(typec_find_pwr_opmode); 1745 1746 /** 1747 * typec_find_orientation - Convert orientation string to enum typec_orientation 1748 * @name: Orientation string 1749 * 1750 * This routine is used to find the typec_orientation by its string name @name. 1751 * 1752 * Returns the orientation value on success, otherwise negative error code. 1753 */ typec_find_orientation(const char * name)1754 int typec_find_orientation(const char *name) 1755 { 1756 return match_string(typec_orientations, ARRAY_SIZE(typec_orientations), 1757 name); 1758 } 1759 EXPORT_SYMBOL_GPL(typec_find_orientation); 1760 1761 /** 1762 * typec_find_port_power_role - Get the typec port power capability 1763 * @name: port power capability string 1764 * 1765 * This routine is used to find the typec_port_type by its string name. 1766 * 1767 * Returns typec_port_type if success, otherwise negative error code. 1768 */ typec_find_port_power_role(const char * name)1769 int typec_find_port_power_role(const char *name) 1770 { 1771 return match_string(typec_port_power_roles, 1772 ARRAY_SIZE(typec_port_power_roles), name); 1773 } 1774 EXPORT_SYMBOL_GPL(typec_find_port_power_role); 1775 1776 /** 1777 * typec_find_power_role - Find the typec one specific power role 1778 * @name: power role string 1779 * 1780 * This routine is used to find the typec_role by its string name. 1781 * 1782 * Returns typec_role if success, otherwise negative error code. 1783 */ typec_find_power_role(const char * name)1784 int typec_find_power_role(const char *name) 1785 { 1786 return match_string(typec_roles, ARRAY_SIZE(typec_roles), name); 1787 } 1788 EXPORT_SYMBOL_GPL(typec_find_power_role); 1789 1790 /** 1791 * typec_find_port_data_role - Get the typec port data capability 1792 * @name: port data capability string 1793 * 1794 * This routine is used to find the typec_port_data by its string name. 1795 * 1796 * Returns typec_port_data if success, otherwise negative error code. 1797 */ typec_find_port_data_role(const char * name)1798 int typec_find_port_data_role(const char *name) 1799 { 1800 return match_string(typec_port_data_roles, 1801 ARRAY_SIZE(typec_port_data_roles), name); 1802 } 1803 EXPORT_SYMBOL_GPL(typec_find_port_data_role); 1804 1805 /* ------------------------------------------ */ 1806 /* API for Multiplexer/DeMultiplexer Switches */ 1807 1808 /** 1809 * typec_set_orientation - Set USB Type-C cable plug orientation 1810 * @port: USB Type-C Port 1811 * @orientation: USB Type-C cable plug orientation 1812 * 1813 * Set cable plug orientation for @port. 1814 */ typec_set_orientation(struct typec_port * port,enum typec_orientation orientation)1815 int typec_set_orientation(struct typec_port *port, 1816 enum typec_orientation orientation) 1817 { 1818 int ret; 1819 1820 ret = typec_switch_set(port->sw, orientation); 1821 if (ret) 1822 return ret; 1823 1824 port->orientation = orientation; 1825 sysfs_notify(&port->dev.kobj, NULL, "orientation"); 1826 kobject_uevent(&port->dev.kobj, KOBJ_CHANGE); 1827 1828 return 0; 1829 } 1830 EXPORT_SYMBOL_GPL(typec_set_orientation); 1831 1832 /** 1833 * typec_get_orientation - Get USB Type-C cable plug orientation 1834 * @port: USB Type-C Port 1835 * 1836 * Get current cable plug orientation for @port. 1837 */ typec_get_orientation(struct typec_port * port)1838 enum typec_orientation typec_get_orientation(struct typec_port *port) 1839 { 1840 return port->orientation; 1841 } 1842 EXPORT_SYMBOL_GPL(typec_get_orientation); 1843 1844 /** 1845 * typec_set_mode - Set mode of operation for USB Type-C connector 1846 * @port: USB Type-C connector 1847 * @mode: Accessory Mode, USB Operation or Safe State 1848 * 1849 * Configure @port for Accessory Mode @mode. This function will configure the 1850 * muxes needed for @mode. 1851 */ typec_set_mode(struct typec_port * port,int mode)1852 int typec_set_mode(struct typec_port *port, int mode) 1853 { 1854 struct typec_mux_state state = { }; 1855 1856 state.mode = mode; 1857 1858 return typec_mux_set(port->mux, &state); 1859 } 1860 EXPORT_SYMBOL_GPL(typec_set_mode); 1861 1862 /* --------------------------------------- */ 1863 1864 /** 1865 * typec_get_negotiated_svdm_version - Get negotiated SVDM Version 1866 * @port: USB Type-C Port. 1867 * 1868 * Get the negotiated SVDM Version. The Version is set to the port default 1869 * value stored in typec_capability on partner registration, and updated after 1870 * a successful Discover Identity if the negotiated value is less than the 1871 * default value. 1872 * 1873 * Returns usb_pd_svdm_ver if the partner has been registered otherwise -ENODEV. 1874 */ typec_get_negotiated_svdm_version(struct typec_port * port)1875 int typec_get_negotiated_svdm_version(struct typec_port *port) 1876 { 1877 enum usb_pd_svdm_ver svdm_version; 1878 struct device *partner_dev; 1879 1880 partner_dev = device_find_child(&port->dev, NULL, partner_match); 1881 if (!partner_dev) 1882 return -ENODEV; 1883 1884 svdm_version = to_typec_partner(partner_dev)->svdm_version; 1885 put_device(partner_dev); 1886 1887 return svdm_version; 1888 } 1889 EXPORT_SYMBOL_GPL(typec_get_negotiated_svdm_version); 1890 1891 /** 1892 * typec_get_drvdata - Return private driver data pointer 1893 * @port: USB Type-C port 1894 */ typec_get_drvdata(struct typec_port * port)1895 void *typec_get_drvdata(struct typec_port *port) 1896 { 1897 return dev_get_drvdata(&port->dev); 1898 } 1899 EXPORT_SYMBOL_GPL(typec_get_drvdata); 1900 typec_get_fw_cap(struct typec_capability * cap,struct fwnode_handle * fwnode)1901 int typec_get_fw_cap(struct typec_capability *cap, 1902 struct fwnode_handle *fwnode) 1903 { 1904 const char *cap_str; 1905 int ret; 1906 1907 cap->fwnode = fwnode; 1908 1909 ret = fwnode_property_read_string(fwnode, "power-role", &cap_str); 1910 if (ret < 0) 1911 return ret; 1912 1913 ret = typec_find_port_power_role(cap_str); 1914 if (ret < 0) 1915 return ret; 1916 cap->type = ret; 1917 1918 /* USB data support is optional */ 1919 ret = fwnode_property_read_string(fwnode, "data-role", &cap_str); 1920 if (ret == 0) { 1921 ret = typec_find_port_data_role(cap_str); 1922 if (ret < 0) 1923 return ret; 1924 cap->data = ret; 1925 } 1926 1927 /* Get the preferred power role for a DRP */ 1928 if (cap->type == TYPEC_PORT_DRP) { 1929 cap->prefer_role = TYPEC_NO_PREFERRED_ROLE; 1930 1931 ret = fwnode_property_read_string(fwnode, "try-power-role", &cap_str); 1932 if (ret == 0) { 1933 ret = typec_find_power_role(cap_str); 1934 if (ret < 0) 1935 return ret; 1936 cap->prefer_role = ret; 1937 } 1938 } 1939 1940 return 0; 1941 } 1942 EXPORT_SYMBOL_GPL(typec_get_fw_cap); 1943 1944 /** 1945 * typec_port_register_altmode - Register USB Type-C Port Alternate Mode 1946 * @port: USB Type-C Port that supports the alternate mode 1947 * @desc: Description of the alternate mode 1948 * 1949 * This routine is used to register an alternate mode that @port is capable of 1950 * supporting. 1951 * 1952 * Returns handle to the alternate mode on success or ERR_PTR on failure. 1953 */ 1954 struct typec_altmode * typec_port_register_altmode(struct typec_port * port,const struct typec_altmode_desc * desc)1955 typec_port_register_altmode(struct typec_port *port, 1956 const struct typec_altmode_desc *desc) 1957 { 1958 struct typec_altmode *adev; 1959 struct typec_mux *mux; 1960 1961 mux = typec_mux_get(&port->dev, desc); 1962 if (IS_ERR(mux)) 1963 return ERR_CAST(mux); 1964 1965 adev = typec_register_altmode(&port->dev, desc); 1966 if (IS_ERR(adev)) 1967 typec_mux_put(mux); 1968 else 1969 to_altmode(adev)->mux = mux; 1970 1971 return adev; 1972 } 1973 EXPORT_SYMBOL_GPL(typec_port_register_altmode); 1974 typec_port_register_altmodes(struct typec_port * port,const struct typec_altmode_ops * ops,void * drvdata,struct typec_altmode ** altmodes,size_t n)1975 void typec_port_register_altmodes(struct typec_port *port, 1976 const struct typec_altmode_ops *ops, void *drvdata, 1977 struct typec_altmode **altmodes, size_t n) 1978 { 1979 struct fwnode_handle *altmodes_node, *child; 1980 struct typec_altmode_desc desc; 1981 struct typec_altmode *alt; 1982 size_t index = 0; 1983 u32 svid, vdo; 1984 int ret; 1985 1986 altmodes_node = device_get_named_child_node(&port->dev, "altmodes"); 1987 if (!altmodes_node) 1988 return; /* No altmodes specified */ 1989 1990 fwnode_for_each_child_node(altmodes_node, child) { 1991 ret = fwnode_property_read_u32(child, "svid", &svid); 1992 if (ret) { 1993 dev_err(&port->dev, "Error reading svid for altmode %s\n", 1994 fwnode_get_name(child)); 1995 continue; 1996 } 1997 1998 ret = fwnode_property_read_u32(child, "vdo", &vdo); 1999 if (ret) { 2000 dev_err(&port->dev, "Error reading vdo for altmode %s\n", 2001 fwnode_get_name(child)); 2002 continue; 2003 } 2004 2005 if (index >= n) { 2006 dev_err(&port->dev, "Error not enough space for altmode %s\n", 2007 fwnode_get_name(child)); 2008 continue; 2009 } 2010 2011 desc.svid = svid; 2012 desc.vdo = vdo; 2013 desc.mode = index + 1; 2014 alt = typec_port_register_altmode(port, &desc); 2015 if (IS_ERR(alt)) { 2016 dev_err(&port->dev, "Error registering altmode %s\n", 2017 fwnode_get_name(child)); 2018 continue; 2019 } 2020 2021 alt->ops = ops; 2022 typec_altmode_set_drvdata(alt, drvdata); 2023 altmodes[index] = alt; 2024 index++; 2025 } 2026 } 2027 EXPORT_SYMBOL_GPL(typec_port_register_altmodes); 2028 2029 /** 2030 * typec_register_port - Register a USB Type-C Port 2031 * @parent: Parent device 2032 * @cap: Description of the port 2033 * 2034 * Registers a device for USB Type-C Port described in @cap. 2035 * 2036 * Returns handle to the port on success or ERR_PTR on failure. 2037 */ typec_register_port(struct device * parent,const struct typec_capability * cap)2038 struct typec_port *typec_register_port(struct device *parent, 2039 const struct typec_capability *cap) 2040 { 2041 struct typec_port *port; 2042 int ret; 2043 int id; 2044 2045 port = kzalloc(sizeof(*port), GFP_KERNEL); 2046 if (!port) 2047 return ERR_PTR(-ENOMEM); 2048 2049 id = ida_simple_get(&typec_index_ida, 0, 0, GFP_KERNEL); 2050 if (id < 0) { 2051 kfree(port); 2052 return ERR_PTR(id); 2053 } 2054 2055 switch (cap->type) { 2056 case TYPEC_PORT_SRC: 2057 port->pwr_role = TYPEC_SOURCE; 2058 port->vconn_role = TYPEC_SOURCE; 2059 break; 2060 case TYPEC_PORT_SNK: 2061 port->pwr_role = TYPEC_SINK; 2062 port->vconn_role = TYPEC_SINK; 2063 break; 2064 case TYPEC_PORT_DRP: 2065 if (cap->prefer_role != TYPEC_NO_PREFERRED_ROLE) 2066 port->pwr_role = cap->prefer_role; 2067 else 2068 port->pwr_role = TYPEC_SINK; 2069 break; 2070 } 2071 2072 switch (cap->data) { 2073 case TYPEC_PORT_DFP: 2074 port->data_role = TYPEC_HOST; 2075 break; 2076 case TYPEC_PORT_UFP: 2077 port->data_role = TYPEC_DEVICE; 2078 break; 2079 case TYPEC_PORT_DRD: 2080 if (cap->prefer_role == TYPEC_SOURCE) 2081 port->data_role = TYPEC_HOST; 2082 else 2083 port->data_role = TYPEC_DEVICE; 2084 break; 2085 } 2086 2087 ida_init(&port->mode_ids); 2088 mutex_init(&port->port_type_lock); 2089 mutex_init(&port->port_list_lock); 2090 INIT_LIST_HEAD(&port->port_list); 2091 2092 port->id = id; 2093 port->ops = cap->ops; 2094 port->port_type = cap->type; 2095 port->prefer_role = cap->prefer_role; 2096 2097 device_initialize(&port->dev); 2098 port->dev.class = &typec_class; 2099 port->dev.parent = parent; 2100 port->dev.fwnode = cap->fwnode; 2101 port->dev.type = &typec_port_dev_type; 2102 dev_set_name(&port->dev, "port%d", id); 2103 dev_set_drvdata(&port->dev, cap->driver_data); 2104 2105 port->cap = kmemdup(cap, sizeof(*cap), GFP_KERNEL); 2106 if (!port->cap) { 2107 put_device(&port->dev); 2108 return ERR_PTR(-ENOMEM); 2109 } 2110 2111 port->sw = typec_switch_get(&port->dev); 2112 if (IS_ERR(port->sw)) { 2113 ret = PTR_ERR(port->sw); 2114 put_device(&port->dev); 2115 return ERR_PTR(ret); 2116 } 2117 2118 port->mux = typec_mux_get(&port->dev, NULL); 2119 if (IS_ERR(port->mux)) { 2120 ret = PTR_ERR(port->mux); 2121 put_device(&port->dev); 2122 return ERR_PTR(ret); 2123 } 2124 2125 ret = device_add(&port->dev); 2126 if (ret) { 2127 dev_err(parent, "failed to register port (%d)\n", ret); 2128 put_device(&port->dev); 2129 return ERR_PTR(ret); 2130 } 2131 2132 ret = typec_link_ports(port); 2133 if (ret) 2134 dev_warn(&port->dev, "failed to create symlinks (%d)\n", ret); 2135 2136 return port; 2137 } 2138 EXPORT_SYMBOL_GPL(typec_register_port); 2139 2140 /** 2141 * typec_unregister_port - Unregister a USB Type-C Port 2142 * @port: The port to be unregistered 2143 * 2144 * Unregister device created with typec_register_port(). 2145 */ typec_unregister_port(struct typec_port * port)2146 void typec_unregister_port(struct typec_port *port) 2147 { 2148 if (!IS_ERR_OR_NULL(port)) { 2149 typec_unlink_ports(port); 2150 device_unregister(&port->dev); 2151 } 2152 } 2153 EXPORT_SYMBOL_GPL(typec_unregister_port); 2154 typec_init(void)2155 static int __init typec_init(void) 2156 { 2157 int ret; 2158 2159 ret = bus_register(&typec_bus); 2160 if (ret) 2161 return ret; 2162 2163 ret = class_register(&typec_mux_class); 2164 if (ret) 2165 goto err_unregister_bus; 2166 2167 ret = class_register(&typec_class); 2168 if (ret) 2169 goto err_unregister_mux_class; 2170 2171 return 0; 2172 2173 err_unregister_mux_class: 2174 class_unregister(&typec_mux_class); 2175 2176 err_unregister_bus: 2177 bus_unregister(&typec_bus); 2178 2179 return ret; 2180 } 2181 subsys_initcall(typec_init); 2182 typec_exit(void)2183 static void __exit typec_exit(void) 2184 { 2185 class_unregister(&typec_class); 2186 ida_destroy(&typec_index_ida); 2187 bus_unregister(&typec_bus); 2188 class_unregister(&typec_mux_class); 2189 } 2190 module_exit(typec_exit); 2191 2192 MODULE_AUTHOR("Heikki Krogerus <heikki.krogerus@linux.intel.com>"); 2193 MODULE_LICENSE("GPL v2"); 2194 MODULE_DESCRIPTION("USB Type-C Connector Class"); 2195