1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3  * Copyright 2015-2017 Google, Inc
4  *
5  * USB Type-C Port Controller Interface.
6  */
7 
8 #include <linux/delay.h>
9 #include <linux/kernel.h>
10 #include <linux/module.h>
11 #include <linux/i2c.h>
12 #include <linux/interrupt.h>
13 #include <linux/property.h>
14 #include <linux/regmap.h>
15 #include <linux/usb/pd.h>
16 #include <linux/usb/tcpm.h>
17 #include <linux/usb/typec.h>
18 
19 #include "tcpci.h"
20 
21 #define PD_RETRY_COUNT 3
22 
23 struct tcpci {
24 	struct device *dev;
25 
26 	struct tcpm_port *port;
27 
28 	struct regmap *regmap;
29 
30 	bool controls_vbus;
31 
32 	struct tcpc_dev tcpc;
33 	struct tcpci_data *data;
34 };
35 
36 struct tcpci_chip {
37 	struct tcpci *tcpci;
38 	struct tcpci_data data;
39 };
40 
tcpc_to_tcpci(struct tcpc_dev * tcpc)41 static inline struct tcpci *tcpc_to_tcpci(struct tcpc_dev *tcpc)
42 {
43 	return container_of(tcpc, struct tcpci, tcpc);
44 }
45 
tcpci_read16(struct tcpci * tcpci,unsigned int reg,u16 * val)46 static int tcpci_read16(struct tcpci *tcpci, unsigned int reg, u16 *val)
47 {
48 	return regmap_raw_read(tcpci->regmap, reg, val, sizeof(u16));
49 }
50 
tcpci_write16(struct tcpci * tcpci,unsigned int reg,u16 val)51 static int tcpci_write16(struct tcpci *tcpci, unsigned int reg, u16 val)
52 {
53 	return regmap_raw_write(tcpci->regmap, reg, &val, sizeof(u16));
54 }
55 
tcpci_set_cc(struct tcpc_dev * tcpc,enum typec_cc_status cc)56 static int tcpci_set_cc(struct tcpc_dev *tcpc, enum typec_cc_status cc)
57 {
58 	struct tcpci *tcpci = tcpc_to_tcpci(tcpc);
59 	unsigned int reg;
60 	int ret;
61 
62 	switch (cc) {
63 	case TYPEC_CC_RA:
64 		reg = (TCPC_ROLE_CTRL_CC_RA << TCPC_ROLE_CTRL_CC1_SHIFT) |
65 			(TCPC_ROLE_CTRL_CC_RA << TCPC_ROLE_CTRL_CC2_SHIFT);
66 		break;
67 	case TYPEC_CC_RD:
68 		reg = (TCPC_ROLE_CTRL_CC_RD << TCPC_ROLE_CTRL_CC1_SHIFT) |
69 			(TCPC_ROLE_CTRL_CC_RD << TCPC_ROLE_CTRL_CC2_SHIFT);
70 		break;
71 	case TYPEC_CC_RP_DEF:
72 		reg = (TCPC_ROLE_CTRL_CC_RP << TCPC_ROLE_CTRL_CC1_SHIFT) |
73 			(TCPC_ROLE_CTRL_CC_RP << TCPC_ROLE_CTRL_CC2_SHIFT) |
74 			(TCPC_ROLE_CTRL_RP_VAL_DEF <<
75 			 TCPC_ROLE_CTRL_RP_VAL_SHIFT);
76 		break;
77 	case TYPEC_CC_RP_1_5:
78 		reg = (TCPC_ROLE_CTRL_CC_RP << TCPC_ROLE_CTRL_CC1_SHIFT) |
79 			(TCPC_ROLE_CTRL_CC_RP << TCPC_ROLE_CTRL_CC2_SHIFT) |
80 			(TCPC_ROLE_CTRL_RP_VAL_1_5 <<
81 			 TCPC_ROLE_CTRL_RP_VAL_SHIFT);
82 		break;
83 	case TYPEC_CC_RP_3_0:
84 		reg = (TCPC_ROLE_CTRL_CC_RP << TCPC_ROLE_CTRL_CC1_SHIFT) |
85 			(TCPC_ROLE_CTRL_CC_RP << TCPC_ROLE_CTRL_CC2_SHIFT) |
86 			(TCPC_ROLE_CTRL_RP_VAL_3_0 <<
87 			 TCPC_ROLE_CTRL_RP_VAL_SHIFT);
88 		break;
89 	case TYPEC_CC_OPEN:
90 	default:
91 		reg = (TCPC_ROLE_CTRL_CC_OPEN << TCPC_ROLE_CTRL_CC1_SHIFT) |
92 			(TCPC_ROLE_CTRL_CC_OPEN << TCPC_ROLE_CTRL_CC2_SHIFT);
93 		break;
94 	}
95 
96 	ret = regmap_write(tcpci->regmap, TCPC_ROLE_CTRL, reg);
97 	if (ret < 0)
98 		return ret;
99 
100 	return 0;
101 }
102 
tcpci_start_drp_toggling(struct tcpc_dev * tcpc,enum typec_cc_status cc)103 static int tcpci_start_drp_toggling(struct tcpc_dev *tcpc,
104 				    enum typec_cc_status cc)
105 {
106 	int ret;
107 	struct tcpci *tcpci = tcpc_to_tcpci(tcpc);
108 	unsigned int reg = TCPC_ROLE_CTRL_DRP;
109 
110 	/* Handle vendor drp toggling */
111 	if (tcpci->data->start_drp_toggling) {
112 		ret = tcpci->data->start_drp_toggling(tcpci, tcpci->data, cc);
113 		if (ret < 0)
114 			return ret;
115 	}
116 
117 	switch (cc) {
118 	default:
119 	case TYPEC_CC_RP_DEF:
120 		reg |= (TCPC_ROLE_CTRL_RP_VAL_DEF <<
121 			TCPC_ROLE_CTRL_RP_VAL_SHIFT);
122 		break;
123 	case TYPEC_CC_RP_1_5:
124 		reg |= (TCPC_ROLE_CTRL_RP_VAL_1_5 <<
125 			TCPC_ROLE_CTRL_RP_VAL_SHIFT);
126 		break;
127 	case TYPEC_CC_RP_3_0:
128 		reg |= (TCPC_ROLE_CTRL_RP_VAL_3_0 <<
129 			TCPC_ROLE_CTRL_RP_VAL_SHIFT);
130 		break;
131 	}
132 
133 	if (cc == TYPEC_CC_RD)
134 		reg |= (TCPC_ROLE_CTRL_CC_RD << TCPC_ROLE_CTRL_CC1_SHIFT) |
135 			   (TCPC_ROLE_CTRL_CC_RD << TCPC_ROLE_CTRL_CC2_SHIFT);
136 	else
137 		reg |= (TCPC_ROLE_CTRL_CC_RP << TCPC_ROLE_CTRL_CC1_SHIFT) |
138 			   (TCPC_ROLE_CTRL_CC_RP << TCPC_ROLE_CTRL_CC2_SHIFT);
139 	ret = regmap_write(tcpci->regmap, TCPC_ROLE_CTRL, reg);
140 	if (ret < 0)
141 		return ret;
142 	return regmap_write(tcpci->regmap, TCPC_COMMAND,
143 			    TCPC_CMD_LOOK4CONNECTION);
144 }
145 
tcpci_to_typec_cc(unsigned int cc,bool sink)146 static enum typec_cc_status tcpci_to_typec_cc(unsigned int cc, bool sink)
147 {
148 	switch (cc) {
149 	case 0x1:
150 		return sink ? TYPEC_CC_RP_DEF : TYPEC_CC_RA;
151 	case 0x2:
152 		return sink ? TYPEC_CC_RP_1_5 : TYPEC_CC_RD;
153 	case 0x3:
154 		if (sink)
155 			return TYPEC_CC_RP_3_0;
156 		/* fall through */
157 	case 0x0:
158 	default:
159 		return TYPEC_CC_OPEN;
160 	}
161 }
162 
tcpci_get_cc(struct tcpc_dev * tcpc,enum typec_cc_status * cc1,enum typec_cc_status * cc2)163 static int tcpci_get_cc(struct tcpc_dev *tcpc,
164 			enum typec_cc_status *cc1, enum typec_cc_status *cc2)
165 {
166 	struct tcpci *tcpci = tcpc_to_tcpci(tcpc);
167 	unsigned int reg;
168 	int ret;
169 
170 	ret = regmap_read(tcpci->regmap, TCPC_CC_STATUS, &reg);
171 	if (ret < 0)
172 		return ret;
173 
174 	*cc1 = tcpci_to_typec_cc((reg >> TCPC_CC_STATUS_CC1_SHIFT) &
175 				 TCPC_CC_STATUS_CC1_MASK,
176 				 reg & TCPC_CC_STATUS_TERM);
177 	*cc2 = tcpci_to_typec_cc((reg >> TCPC_CC_STATUS_CC2_SHIFT) &
178 				 TCPC_CC_STATUS_CC2_MASK,
179 				 reg & TCPC_CC_STATUS_TERM);
180 
181 	return 0;
182 }
183 
tcpci_set_polarity(struct tcpc_dev * tcpc,enum typec_cc_polarity polarity)184 static int tcpci_set_polarity(struct tcpc_dev *tcpc,
185 			      enum typec_cc_polarity polarity)
186 {
187 	struct tcpci *tcpci = tcpc_to_tcpci(tcpc);
188 	unsigned int reg;
189 	int ret;
190 
191 	/* Keep the disconnect cc line open */
192 	ret = regmap_read(tcpci->regmap, TCPC_ROLE_CTRL, &reg);
193 	if (ret < 0)
194 		return ret;
195 
196 	if (polarity == TYPEC_POLARITY_CC2)
197 		reg |= TCPC_ROLE_CTRL_CC_OPEN << TCPC_ROLE_CTRL_CC1_SHIFT;
198 	else
199 		reg |= TCPC_ROLE_CTRL_CC_OPEN << TCPC_ROLE_CTRL_CC2_SHIFT;
200 	ret = regmap_write(tcpci->regmap, TCPC_ROLE_CTRL, reg);
201 	if (ret < 0)
202 		return ret;
203 
204 	return regmap_write(tcpci->regmap, TCPC_TCPC_CTRL,
205 			   (polarity == TYPEC_POLARITY_CC2) ?
206 			   TCPC_TCPC_CTRL_ORIENTATION : 0);
207 }
208 
tcpci_set_vconn(struct tcpc_dev * tcpc,bool enable)209 static int tcpci_set_vconn(struct tcpc_dev *tcpc, bool enable)
210 {
211 	struct tcpci *tcpci = tcpc_to_tcpci(tcpc);
212 	int ret;
213 
214 	/* Handle vendor set vconn */
215 	if (tcpci->data->set_vconn) {
216 		ret = tcpci->data->set_vconn(tcpci, tcpci->data, enable);
217 		if (ret < 0)
218 			return ret;
219 	}
220 
221 	return regmap_update_bits(tcpci->regmap, TCPC_POWER_CTRL,
222 				TCPC_POWER_CTRL_VCONN_ENABLE,
223 				enable ? TCPC_POWER_CTRL_VCONN_ENABLE : 0);
224 }
225 
tcpci_set_roles(struct tcpc_dev * tcpc,bool attached,enum typec_role role,enum typec_data_role data)226 static int tcpci_set_roles(struct tcpc_dev *tcpc, bool attached,
227 			   enum typec_role role, enum typec_data_role data)
228 {
229 	struct tcpci *tcpci = tcpc_to_tcpci(tcpc);
230 	unsigned int reg;
231 	int ret;
232 
233 	reg = PD_REV20 << TCPC_MSG_HDR_INFO_REV_SHIFT;
234 	if (role == TYPEC_SOURCE)
235 		reg |= TCPC_MSG_HDR_INFO_PWR_ROLE;
236 	if (data == TYPEC_HOST)
237 		reg |= TCPC_MSG_HDR_INFO_DATA_ROLE;
238 	ret = regmap_write(tcpci->regmap, TCPC_MSG_HDR_INFO, reg);
239 	if (ret < 0)
240 		return ret;
241 
242 	return 0;
243 }
244 
tcpci_set_pd_rx(struct tcpc_dev * tcpc,bool enable)245 static int tcpci_set_pd_rx(struct tcpc_dev *tcpc, bool enable)
246 {
247 	struct tcpci *tcpci = tcpc_to_tcpci(tcpc);
248 	unsigned int reg = 0;
249 	int ret;
250 
251 	if (enable)
252 		reg = TCPC_RX_DETECT_SOP | TCPC_RX_DETECT_HARD_RESET;
253 	ret = regmap_write(tcpci->regmap, TCPC_RX_DETECT, reg);
254 	if (ret < 0)
255 		return ret;
256 
257 	return 0;
258 }
259 
tcpci_get_vbus(struct tcpc_dev * tcpc)260 static int tcpci_get_vbus(struct tcpc_dev *tcpc)
261 {
262 	struct tcpci *tcpci = tcpc_to_tcpci(tcpc);
263 	unsigned int reg;
264 	int ret;
265 
266 	ret = regmap_read(tcpci->regmap, TCPC_POWER_STATUS, &reg);
267 	if (ret < 0)
268 		return ret;
269 
270 	return !!(reg & TCPC_POWER_STATUS_VBUS_PRES);
271 }
272 
tcpci_set_vbus(struct tcpc_dev * tcpc,bool source,bool sink)273 static int tcpci_set_vbus(struct tcpc_dev *tcpc, bool source, bool sink)
274 {
275 	struct tcpci *tcpci = tcpc_to_tcpci(tcpc);
276 	int ret;
277 
278 	/* Disable both source and sink first before enabling anything */
279 
280 	if (!source) {
281 		ret = regmap_write(tcpci->regmap, TCPC_COMMAND,
282 				   TCPC_CMD_DISABLE_SRC_VBUS);
283 		if (ret < 0)
284 			return ret;
285 	}
286 
287 	if (!sink) {
288 		ret = regmap_write(tcpci->regmap, TCPC_COMMAND,
289 				   TCPC_CMD_DISABLE_SINK_VBUS);
290 		if (ret < 0)
291 			return ret;
292 	}
293 
294 	if (source) {
295 		ret = regmap_write(tcpci->regmap, TCPC_COMMAND,
296 				   TCPC_CMD_SRC_VBUS_DEFAULT);
297 		if (ret < 0)
298 			return ret;
299 	}
300 
301 	if (sink) {
302 		ret = regmap_write(tcpci->regmap, TCPC_COMMAND,
303 				   TCPC_CMD_SINK_VBUS);
304 		if (ret < 0)
305 			return ret;
306 	}
307 
308 	return 0;
309 }
310 
tcpci_pd_transmit(struct tcpc_dev * tcpc,enum tcpm_transmit_type type,const struct pd_message * msg)311 static int tcpci_pd_transmit(struct tcpc_dev *tcpc,
312 			     enum tcpm_transmit_type type,
313 			     const struct pd_message *msg)
314 {
315 	struct tcpci *tcpci = tcpc_to_tcpci(tcpc);
316 	u16 header = msg ? le16_to_cpu(msg->header) : 0;
317 	unsigned int reg, cnt;
318 	int ret;
319 
320 	cnt = msg ? pd_header_cnt(header) * 4 : 0;
321 	ret = regmap_write(tcpci->regmap, TCPC_TX_BYTE_CNT, cnt + 2);
322 	if (ret < 0)
323 		return ret;
324 
325 	ret = tcpci_write16(tcpci, TCPC_TX_HDR, header);
326 	if (ret < 0)
327 		return ret;
328 
329 	if (cnt > 0) {
330 		ret = regmap_raw_write(tcpci->regmap, TCPC_TX_DATA,
331 				       &msg->payload, cnt);
332 		if (ret < 0)
333 			return ret;
334 	}
335 
336 	reg = (PD_RETRY_COUNT << TCPC_TRANSMIT_RETRY_SHIFT) |
337 		(type << TCPC_TRANSMIT_TYPE_SHIFT);
338 	ret = regmap_write(tcpci->regmap, TCPC_TRANSMIT, reg);
339 	if (ret < 0)
340 		return ret;
341 
342 	return 0;
343 }
344 
tcpci_init(struct tcpc_dev * tcpc)345 static int tcpci_init(struct tcpc_dev *tcpc)
346 {
347 	struct tcpci *tcpci = tcpc_to_tcpci(tcpc);
348 	unsigned long timeout = jiffies + msecs_to_jiffies(2000); /* XXX */
349 	unsigned int reg;
350 	int ret;
351 
352 	while (time_before_eq(jiffies, timeout)) {
353 		ret = regmap_read(tcpci->regmap, TCPC_POWER_STATUS, &reg);
354 		if (ret < 0)
355 			return ret;
356 		if (!(reg & TCPC_POWER_STATUS_UNINIT))
357 			break;
358 		usleep_range(10000, 20000);
359 	}
360 	if (time_after(jiffies, timeout))
361 		return -ETIMEDOUT;
362 
363 	/* Handle vendor init */
364 	if (tcpci->data->init) {
365 		ret = tcpci->data->init(tcpci, tcpci->data);
366 		if (ret < 0)
367 			return ret;
368 	}
369 
370 	/* Clear all events */
371 	ret = tcpci_write16(tcpci, TCPC_ALERT, 0xffff);
372 	if (ret < 0)
373 		return ret;
374 
375 	if (tcpci->controls_vbus)
376 		reg = TCPC_POWER_STATUS_VBUS_PRES;
377 	else
378 		reg = 0;
379 	ret = regmap_write(tcpci->regmap, TCPC_POWER_STATUS_MASK, reg);
380 	if (ret < 0)
381 		return ret;
382 
383 	/* Enable Vbus detection */
384 	ret = regmap_write(tcpci->regmap, TCPC_COMMAND,
385 			   TCPC_CMD_ENABLE_VBUS_DETECT);
386 	if (ret < 0)
387 		return ret;
388 
389 	reg = TCPC_ALERT_TX_SUCCESS | TCPC_ALERT_TX_FAILED |
390 		TCPC_ALERT_TX_DISCARDED | TCPC_ALERT_RX_STATUS |
391 		TCPC_ALERT_RX_HARD_RST | TCPC_ALERT_CC_STATUS;
392 	if (tcpci->controls_vbus)
393 		reg |= TCPC_ALERT_POWER_STATUS;
394 	return tcpci_write16(tcpci, TCPC_ALERT_MASK, reg);
395 }
396 
tcpci_irq(struct tcpci * tcpci)397 irqreturn_t tcpci_irq(struct tcpci *tcpci)
398 {
399 	u16 status;
400 
401 	tcpci_read16(tcpci, TCPC_ALERT, &status);
402 
403 	/*
404 	 * Clear alert status for everything except RX_STATUS, which shouldn't
405 	 * be cleared until we have successfully retrieved message.
406 	 */
407 	if (status & ~TCPC_ALERT_RX_STATUS)
408 		tcpci_write16(tcpci, TCPC_ALERT,
409 			      status & ~TCPC_ALERT_RX_STATUS);
410 
411 	if (status & TCPC_ALERT_CC_STATUS)
412 		tcpm_cc_change(tcpci->port);
413 
414 	if (status & TCPC_ALERT_POWER_STATUS) {
415 		unsigned int reg;
416 
417 		regmap_read(tcpci->regmap, TCPC_POWER_STATUS_MASK, &reg);
418 
419 		/*
420 		 * If power status mask has been reset, then the TCPC
421 		 * has reset.
422 		 */
423 		if (reg == 0xff)
424 			tcpm_tcpc_reset(tcpci->port);
425 		else
426 			tcpm_vbus_change(tcpci->port);
427 	}
428 
429 	if (status & TCPC_ALERT_RX_STATUS) {
430 		struct pd_message msg;
431 		unsigned int cnt;
432 		u16 header;
433 
434 		regmap_read(tcpci->regmap, TCPC_RX_BYTE_CNT, &cnt);
435 
436 		tcpci_read16(tcpci, TCPC_RX_HDR, &header);
437 		msg.header = cpu_to_le16(header);
438 
439 		if (WARN_ON(cnt > sizeof(msg.payload)))
440 			cnt = sizeof(msg.payload);
441 
442 		if (cnt > 0)
443 			regmap_raw_read(tcpci->regmap, TCPC_RX_DATA,
444 					&msg.payload, cnt);
445 
446 		/* Read complete, clear RX status alert bit */
447 		tcpci_write16(tcpci, TCPC_ALERT, TCPC_ALERT_RX_STATUS);
448 
449 		tcpm_pd_receive(tcpci->port, &msg);
450 	}
451 
452 	if (status & TCPC_ALERT_RX_HARD_RST)
453 		tcpm_pd_hard_reset(tcpci->port);
454 
455 	if (status & TCPC_ALERT_TX_SUCCESS)
456 		tcpm_pd_transmit_complete(tcpci->port, TCPC_TX_SUCCESS);
457 	else if (status & TCPC_ALERT_TX_DISCARDED)
458 		tcpm_pd_transmit_complete(tcpci->port, TCPC_TX_DISCARDED);
459 	else if (status & TCPC_ALERT_TX_FAILED)
460 		tcpm_pd_transmit_complete(tcpci->port, TCPC_TX_FAILED);
461 
462 	return IRQ_HANDLED;
463 }
464 EXPORT_SYMBOL_GPL(tcpci_irq);
465 
_tcpci_irq(int irq,void * dev_id)466 static irqreturn_t _tcpci_irq(int irq, void *dev_id)
467 {
468 	struct tcpci_chip *chip = dev_id;
469 
470 	return tcpci_irq(chip->tcpci);
471 }
472 
473 static const struct regmap_config tcpci_regmap_config = {
474 	.reg_bits = 8,
475 	.val_bits = 8,
476 
477 	.max_register = 0x7F, /* 0x80 .. 0xFF are vendor defined */
478 };
479 
tcpci_parse_config(struct tcpci * tcpci)480 static int tcpci_parse_config(struct tcpci *tcpci)
481 {
482 	tcpci->controls_vbus = true; /* XXX */
483 
484 	tcpci->tcpc.fwnode = device_get_named_child_node(tcpci->dev,
485 							 "connector");
486 	if (!tcpci->tcpc.fwnode) {
487 		dev_err(tcpci->dev, "Can't find connector node.\n");
488 		return -EINVAL;
489 	}
490 
491 	return 0;
492 }
493 
tcpci_register_port(struct device * dev,struct tcpci_data * data)494 struct tcpci *tcpci_register_port(struct device *dev, struct tcpci_data *data)
495 {
496 	struct tcpci *tcpci;
497 	int err;
498 
499 	tcpci = devm_kzalloc(dev, sizeof(*tcpci), GFP_KERNEL);
500 	if (!tcpci)
501 		return ERR_PTR(-ENOMEM);
502 
503 	tcpci->dev = dev;
504 	tcpci->data = data;
505 	tcpci->regmap = data->regmap;
506 
507 	tcpci->tcpc.init = tcpci_init;
508 	tcpci->tcpc.get_vbus = tcpci_get_vbus;
509 	tcpci->tcpc.set_vbus = tcpci_set_vbus;
510 	tcpci->tcpc.set_cc = tcpci_set_cc;
511 	tcpci->tcpc.get_cc = tcpci_get_cc;
512 	tcpci->tcpc.set_polarity = tcpci_set_polarity;
513 	tcpci->tcpc.set_vconn = tcpci_set_vconn;
514 	tcpci->tcpc.start_drp_toggling = tcpci_start_drp_toggling;
515 
516 	tcpci->tcpc.set_pd_rx = tcpci_set_pd_rx;
517 	tcpci->tcpc.set_roles = tcpci_set_roles;
518 	tcpci->tcpc.pd_transmit = tcpci_pd_transmit;
519 
520 	err = tcpci_parse_config(tcpci);
521 	if (err < 0)
522 		return ERR_PTR(err);
523 
524 	tcpci->port = tcpm_register_port(tcpci->dev, &tcpci->tcpc);
525 	if (IS_ERR(tcpci->port))
526 		return ERR_CAST(tcpci->port);
527 
528 	return tcpci;
529 }
530 EXPORT_SYMBOL_GPL(tcpci_register_port);
531 
tcpci_unregister_port(struct tcpci * tcpci)532 void tcpci_unregister_port(struct tcpci *tcpci)
533 {
534 	tcpm_unregister_port(tcpci->port);
535 }
536 EXPORT_SYMBOL_GPL(tcpci_unregister_port);
537 
tcpci_probe(struct i2c_client * client,const struct i2c_device_id * i2c_id)538 static int tcpci_probe(struct i2c_client *client,
539 		       const struct i2c_device_id *i2c_id)
540 {
541 	struct tcpci_chip *chip;
542 	int err;
543 	u16 val = 0;
544 
545 	chip = devm_kzalloc(&client->dev, sizeof(*chip), GFP_KERNEL);
546 	if (!chip)
547 		return -ENOMEM;
548 
549 	chip->data.regmap = devm_regmap_init_i2c(client, &tcpci_regmap_config);
550 	if (IS_ERR(chip->data.regmap))
551 		return PTR_ERR(chip->data.regmap);
552 
553 	i2c_set_clientdata(client, chip);
554 
555 	/* Disable chip interrupts before requesting irq */
556 	err = regmap_raw_write(chip->data.regmap, TCPC_ALERT_MASK, &val,
557 			       sizeof(u16));
558 	if (err < 0)
559 		return err;
560 
561 	chip->tcpci = tcpci_register_port(&client->dev, &chip->data);
562 	if (IS_ERR(chip->tcpci))
563 		return PTR_ERR(chip->tcpci);
564 
565 	err = devm_request_threaded_irq(&client->dev, client->irq, NULL,
566 					_tcpci_irq,
567 					IRQF_ONESHOT | IRQF_TRIGGER_LOW,
568 					dev_name(&client->dev), chip);
569 	if (err < 0) {
570 		tcpci_unregister_port(chip->tcpci);
571 		return err;
572 	}
573 
574 	return 0;
575 }
576 
tcpci_remove(struct i2c_client * client)577 static int tcpci_remove(struct i2c_client *client)
578 {
579 	struct tcpci_chip *chip = i2c_get_clientdata(client);
580 
581 	tcpci_unregister_port(chip->tcpci);
582 
583 	return 0;
584 }
585 
586 static const struct i2c_device_id tcpci_id[] = {
587 	{ "tcpci", 0 },
588 	{ }
589 };
590 MODULE_DEVICE_TABLE(i2c, tcpci_id);
591 
592 #ifdef CONFIG_OF
593 static const struct of_device_id tcpci_of_match[] = {
594 	{ .compatible = "nxp,ptn5110", },
595 	{},
596 };
597 MODULE_DEVICE_TABLE(of, tcpci_of_match);
598 #endif
599 
600 static struct i2c_driver tcpci_i2c_driver = {
601 	.driver = {
602 		.name = "tcpci",
603 		.of_match_table = of_match_ptr(tcpci_of_match),
604 	},
605 	.probe = tcpci_probe,
606 	.remove = tcpci_remove,
607 	.id_table = tcpci_id,
608 };
609 module_i2c_driver(tcpci_i2c_driver);
610 
611 MODULE_DESCRIPTION("USB Type-C Port Controller Interface driver");
612 MODULE_LICENSE("GPL");
613