1 /*
2  * USB PHY defines
3  *
4  * These APIs may be used between USB controllers.  USB device drivers
5  * (for either host or peripheral roles) don't use these calls; they
6  * continue to use just usb_device and usb_gadget.
7  */
8 
9 #ifndef __LINUX_USB_PHY_H
10 #define __LINUX_USB_PHY_H
11 
12 #include <linux/notifier.h>
13 #include <linux/usb.h>
14 
15 enum usb_phy_interface {
16 	USBPHY_INTERFACE_MODE_UNKNOWN,
17 	USBPHY_INTERFACE_MODE_UTMI,
18 	USBPHY_INTERFACE_MODE_UTMIW,
19 	USBPHY_INTERFACE_MODE_ULPI,
20 	USBPHY_INTERFACE_MODE_SERIAL,
21 	USBPHY_INTERFACE_MODE_HSIC,
22 };
23 
24 enum usb_phy_events {
25 	USB_EVENT_NONE,         /* no events or cable disconnected */
26 	USB_EVENT_VBUS,         /* vbus valid event */
27 	USB_EVENT_ID,           /* id was grounded */
28 	USB_EVENT_CHARGER,      /* usb dedicated charger */
29 	USB_EVENT_ENUMERATED,   /* gadget driver enumerated */
30 };
31 
32 /* associate a type with PHY */
33 enum usb_phy_type {
34 	USB_PHY_TYPE_UNDEFINED,
35 	USB_PHY_TYPE_USB2,
36 	USB_PHY_TYPE_USB3,
37 };
38 
39 /* OTG defines lots of enumeration states before device reset */
40 enum usb_otg_state {
41 	OTG_STATE_UNDEFINED = 0,
42 
43 	/* single-role peripheral, and dual-role default-b */
44 	OTG_STATE_B_IDLE,
45 	OTG_STATE_B_SRP_INIT,
46 	OTG_STATE_B_PERIPHERAL,
47 
48 	/* extra dual-role default-b states */
49 	OTG_STATE_B_WAIT_ACON,
50 	OTG_STATE_B_HOST,
51 
52 	/* dual-role default-a */
53 	OTG_STATE_A_IDLE,
54 	OTG_STATE_A_WAIT_VRISE,
55 	OTG_STATE_A_WAIT_BCON,
56 	OTG_STATE_A_HOST,
57 	OTG_STATE_A_SUSPEND,
58 	OTG_STATE_A_PERIPHERAL,
59 	OTG_STATE_A_WAIT_VFALL,
60 	OTG_STATE_A_VBUS_ERR,
61 };
62 
63 struct usb_phy;
64 struct usb_otg;
65 
66 /* for transceivers connected thru an ULPI interface, the user must
67  * provide access ops
68  */
69 struct usb_phy_io_ops {
70 	int (*read)(struct usb_phy *x, u32 reg);
71 	int (*write)(struct usb_phy *x, u32 val, u32 reg);
72 };
73 
74 struct usb_phy {
75 	struct device		*dev;
76 	const char		*label;
77 	unsigned int		 flags;
78 
79 	enum usb_phy_type	type;
80 	enum usb_phy_events	last_event;
81 
82 	struct usb_otg		*otg;
83 
84 	struct device		*io_dev;
85 	struct usb_phy_io_ops	*io_ops;
86 	void __iomem		*io_priv;
87 
88 	/* for notification of usb_phy_events */
89 	struct atomic_notifier_head	notifier;
90 
91 	/* to pass extra port status to the root hub */
92 	u16			port_status;
93 	u16			port_change;
94 
95 	/* to support controllers that have multiple transceivers */
96 	struct list_head	head;
97 
98 	/* initialize/shutdown the OTG controller */
99 	int	(*init)(struct usb_phy *x);
100 	void	(*shutdown)(struct usb_phy *x);
101 
102 	/* enable/disable VBUS */
103 	int	(*set_vbus)(struct usb_phy *x, int on);
104 
105 	/* effective for B devices, ignored for A-peripheral */
106 	int	(*set_power)(struct usb_phy *x,
107 				unsigned mA);
108 
109 	/* Set transceiver into suspend mode */
110 	int	(*set_suspend)(struct usb_phy *x,
111 				int suspend);
112 
113 	/*
114 	 * Set wakeup enable for PHY, in that case, the PHY can be
115 	 * woken up from suspend status due to external events,
116 	 * like vbus change, dp/dm change and id.
117 	 */
118 	int	(*set_wakeup)(struct usb_phy *x, bool enabled);
119 
120 	/* notify phy connect status change */
121 	int	(*notify_connect)(struct usb_phy *x,
122 			enum usb_device_speed speed);
123 	int	(*notify_disconnect)(struct usb_phy *x,
124 			enum usb_device_speed speed);
125 };
126 
127 /**
128  * struct usb_phy_bind - represent the binding for the phy
129  * @dev_name: the device name of the device that will bind to the phy
130  * @phy_dev_name: the device name of the phy
131  * @index: used if a single controller uses multiple phys
132  * @phy: reference to the phy
133  * @list: to maintain a linked list of the binding information
134  */
135 struct usb_phy_bind {
136 	const char	*dev_name;
137 	const char	*phy_dev_name;
138 	u8		index;
139 	struct usb_phy	*phy;
140 	struct list_head list;
141 };
142 
143 /* for board-specific init logic */
144 extern int usb_add_phy(struct usb_phy *, enum usb_phy_type type);
145 extern int usb_add_phy_dev(struct usb_phy *);
146 extern void usb_remove_phy(struct usb_phy *);
147 
148 /* helpers for direct access thru low-level io interface */
usb_phy_io_read(struct usb_phy * x,u32 reg)149 static inline int usb_phy_io_read(struct usb_phy *x, u32 reg)
150 {
151 	if (x && x->io_ops && x->io_ops->read)
152 		return x->io_ops->read(x, reg);
153 
154 	return -EINVAL;
155 }
156 
usb_phy_io_write(struct usb_phy * x,u32 val,u32 reg)157 static inline int usb_phy_io_write(struct usb_phy *x, u32 val, u32 reg)
158 {
159 	if (x && x->io_ops && x->io_ops->write)
160 		return x->io_ops->write(x, val, reg);
161 
162 	return -EINVAL;
163 }
164 
165 static inline int
usb_phy_init(struct usb_phy * x)166 usb_phy_init(struct usb_phy *x)
167 {
168 	if (x && x->init)
169 		return x->init(x);
170 
171 	return 0;
172 }
173 
174 static inline void
usb_phy_shutdown(struct usb_phy * x)175 usb_phy_shutdown(struct usb_phy *x)
176 {
177 	if (x && x->shutdown)
178 		x->shutdown(x);
179 }
180 
181 static inline int
usb_phy_vbus_on(struct usb_phy * x)182 usb_phy_vbus_on(struct usb_phy *x)
183 {
184 	if (!x || !x->set_vbus)
185 		return 0;
186 
187 	return x->set_vbus(x, true);
188 }
189 
190 static inline int
usb_phy_vbus_off(struct usb_phy * x)191 usb_phy_vbus_off(struct usb_phy *x)
192 {
193 	if (!x || !x->set_vbus)
194 		return 0;
195 
196 	return x->set_vbus(x, false);
197 }
198 
199 /* for usb host and peripheral controller drivers */
200 #if IS_ENABLED(CONFIG_USB_PHY)
201 extern struct usb_phy *usb_get_phy(enum usb_phy_type type);
202 extern struct usb_phy *devm_usb_get_phy(struct device *dev,
203 	enum usb_phy_type type);
204 extern struct usb_phy *usb_get_phy_dev(struct device *dev, u8 index);
205 extern struct usb_phy *devm_usb_get_phy_dev(struct device *dev, u8 index);
206 extern struct usb_phy *devm_usb_get_phy_by_phandle(struct device *dev,
207 	const char *phandle, u8 index);
208 extern void usb_put_phy(struct usb_phy *);
209 extern void devm_usb_put_phy(struct device *dev, struct usb_phy *x);
210 extern int usb_bind_phy(const char *dev_name, u8 index,
211 				const char *phy_dev_name);
212 extern void usb_phy_set_event(struct usb_phy *x, unsigned long event);
213 #else
usb_get_phy(enum usb_phy_type type)214 static inline struct usb_phy *usb_get_phy(enum usb_phy_type type)
215 {
216 	return ERR_PTR(-ENXIO);
217 }
218 
devm_usb_get_phy(struct device * dev,enum usb_phy_type type)219 static inline struct usb_phy *devm_usb_get_phy(struct device *dev,
220 	enum usb_phy_type type)
221 {
222 	return ERR_PTR(-ENXIO);
223 }
224 
usb_get_phy_dev(struct device * dev,u8 index)225 static inline struct usb_phy *usb_get_phy_dev(struct device *dev, u8 index)
226 {
227 	return ERR_PTR(-ENXIO);
228 }
229 
devm_usb_get_phy_dev(struct device * dev,u8 index)230 static inline struct usb_phy *devm_usb_get_phy_dev(struct device *dev, u8 index)
231 {
232 	return ERR_PTR(-ENXIO);
233 }
234 
devm_usb_get_phy_by_phandle(struct device * dev,const char * phandle,u8 index)235 static inline struct usb_phy *devm_usb_get_phy_by_phandle(struct device *dev,
236 	const char *phandle, u8 index)
237 {
238 	return ERR_PTR(-ENXIO);
239 }
240 
usb_put_phy(struct usb_phy * x)241 static inline void usb_put_phy(struct usb_phy *x)
242 {
243 }
244 
devm_usb_put_phy(struct device * dev,struct usb_phy * x)245 static inline void devm_usb_put_phy(struct device *dev, struct usb_phy *x)
246 {
247 }
248 
usb_bind_phy(const char * dev_name,u8 index,const char * phy_dev_name)249 static inline int usb_bind_phy(const char *dev_name, u8 index,
250 				const char *phy_dev_name)
251 {
252 	return -EOPNOTSUPP;
253 }
254 
usb_phy_set_event(struct usb_phy * x,unsigned long event)255 static inline void usb_phy_set_event(struct usb_phy *x, unsigned long event)
256 {
257 }
258 #endif
259 
260 static inline int
usb_phy_set_power(struct usb_phy * x,unsigned mA)261 usb_phy_set_power(struct usb_phy *x, unsigned mA)
262 {
263 	if (x && x->set_power)
264 		return x->set_power(x, mA);
265 	return 0;
266 }
267 
268 /* Context: can sleep */
269 static inline int
usb_phy_set_suspend(struct usb_phy * x,int suspend)270 usb_phy_set_suspend(struct usb_phy *x, int suspend)
271 {
272 	if (x && x->set_suspend != NULL)
273 		return x->set_suspend(x, suspend);
274 	else
275 		return 0;
276 }
277 
278 static inline int
usb_phy_set_wakeup(struct usb_phy * x,bool enabled)279 usb_phy_set_wakeup(struct usb_phy *x, bool enabled)
280 {
281 	if (x && x->set_wakeup)
282 		return x->set_wakeup(x, enabled);
283 	else
284 		return 0;
285 }
286 
287 static inline int
usb_phy_notify_connect(struct usb_phy * x,enum usb_device_speed speed)288 usb_phy_notify_connect(struct usb_phy *x, enum usb_device_speed speed)
289 {
290 	if (x && x->notify_connect)
291 		return x->notify_connect(x, speed);
292 	else
293 		return 0;
294 }
295 
296 static inline int
usb_phy_notify_disconnect(struct usb_phy * x,enum usb_device_speed speed)297 usb_phy_notify_disconnect(struct usb_phy *x, enum usb_device_speed speed)
298 {
299 	if (x && x->notify_disconnect)
300 		return x->notify_disconnect(x, speed);
301 	else
302 		return 0;
303 }
304 
305 /* notifiers */
306 static inline int
usb_register_notifier(struct usb_phy * x,struct notifier_block * nb)307 usb_register_notifier(struct usb_phy *x, struct notifier_block *nb)
308 {
309 	return atomic_notifier_chain_register(&x->notifier, nb);
310 }
311 
312 static inline void
usb_unregister_notifier(struct usb_phy * x,struct notifier_block * nb)313 usb_unregister_notifier(struct usb_phy *x, struct notifier_block *nb)
314 {
315 	atomic_notifier_chain_unregister(&x->notifier, nb);
316 }
317 
usb_phy_type_string(enum usb_phy_type type)318 static inline const char *usb_phy_type_string(enum usb_phy_type type)
319 {
320 	switch (type) {
321 	case USB_PHY_TYPE_USB2:
322 		return "USB2 PHY";
323 	case USB_PHY_TYPE_USB3:
324 		return "USB3 PHY";
325 	default:
326 		return "UNKNOWN PHY TYPE";
327 	}
328 }
329 #endif /* __LINUX_USB_PHY_H */
330