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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