1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3 * CEC driver for ChromeOS Embedded Controller
4 *
5 * Copyright (c) 2018 BayLibre, SAS
6 * Author: Neil Armstrong <narmstrong@baylibre.com>
7 */
8
9 #include <linux/kernel.h>
10 #include <linux/module.h>
11 #include <linux/mod_devicetable.h>
12 #include <linux/platform_device.h>
13 #include <linux/dmi.h>
14 #include <linux/pci.h>
15 #include <linux/cec.h>
16 #include <linux/slab.h>
17 #include <linux/interrupt.h>
18 #include <linux/platform_data/cros_ec_commands.h>
19 #include <linux/platform_data/cros_ec_proto.h>
20 #include <media/cec.h>
21 #include <media/cec-notifier.h>
22
23 #define DRV_NAME "cros-ec-cec"
24
25 /**
26 * struct cros_ec_cec_port - Driver data for a single EC CEC port
27 *
28 * @port_num: port number
29 * @adap: CEC adapter
30 * @notify: CEC notifier pointer
31 * @rx_msg: storage for a received message
32 * @cros_ec_cec: pointer to the parent struct
33 */
34 struct cros_ec_cec_port {
35 int port_num;
36 struct cec_adapter *adap;
37 struct cec_notifier *notify;
38 struct cec_msg rx_msg;
39 struct cros_ec_cec *cros_ec_cec;
40 };
41
42 /**
43 * struct cros_ec_cec - Driver data for EC CEC
44 *
45 * @cros_ec: Pointer to EC device
46 * @notifier: Notifier info for responding to EC events
47 * @write_cmd_version: Highest supported version of EC_CMD_CEC_WRITE_MSG.
48 * @num_ports: Number of CEC ports
49 * @ports: Array of ports
50 */
51 struct cros_ec_cec {
52 struct cros_ec_device *cros_ec;
53 struct notifier_block notifier;
54 int write_cmd_version;
55 int num_ports;
56 struct cros_ec_cec_port *ports[EC_CEC_MAX_PORTS];
57 };
58
cros_ec_cec_received_message(struct cros_ec_cec_port * port,uint8_t * msg,uint8_t len)59 static void cros_ec_cec_received_message(struct cros_ec_cec_port *port,
60 uint8_t *msg, uint8_t len)
61 {
62 if (len > CEC_MAX_MSG_SIZE)
63 len = CEC_MAX_MSG_SIZE;
64
65 port->rx_msg.len = len;
66 memcpy(port->rx_msg.msg, msg, len);
67
68 cec_received_msg(port->adap, &port->rx_msg);
69 }
70
handle_cec_message(struct cros_ec_cec * cros_ec_cec)71 static void handle_cec_message(struct cros_ec_cec *cros_ec_cec)
72 {
73 struct cros_ec_device *cros_ec = cros_ec_cec->cros_ec;
74 uint8_t *cec_message = cros_ec->event_data.data.cec_message;
75 unsigned int len = cros_ec->event_size;
76 struct cros_ec_cec_port *port;
77 /*
78 * There are two ways of receiving CEC messages:
79 * 1. Old EC firmware which only supports one port sends the data in a
80 * cec_message MKBP event.
81 * 2. New EC firmware which supports multiple ports uses
82 * EC_MKBP_CEC_HAVE_DATA to notify that data is ready and
83 * EC_CMD_CEC_READ_MSG to read it.
84 * Check that the EC only has one CEC port, and then we can assume the
85 * message is from port 0.
86 */
87 if (cros_ec_cec->num_ports != 1) {
88 dev_err(cros_ec->dev,
89 "received cec_message on device with %d ports\n",
90 cros_ec_cec->num_ports);
91 return;
92 }
93 port = cros_ec_cec->ports[0];
94
95 cros_ec_cec_received_message(port, cec_message, len);
96 }
97
cros_ec_cec_read_message(struct cros_ec_cec_port * port)98 static void cros_ec_cec_read_message(struct cros_ec_cec_port *port)
99 {
100 struct cros_ec_device *cros_ec = port->cros_ec_cec->cros_ec;
101 struct ec_params_cec_read params = {
102 .port = port->port_num,
103 };
104 struct ec_response_cec_read response;
105 int ret;
106
107 ret = cros_ec_cmd(cros_ec, 0, EC_CMD_CEC_READ_MSG, ¶ms,
108 sizeof(params), &response, sizeof(response));
109 if (ret < 0) {
110 dev_err(cros_ec->dev,
111 "error reading CEC message on EC: %d\n", ret);
112 return;
113 }
114
115 cros_ec_cec_received_message(port, response.msg, response.msg_len);
116 }
117
handle_cec_event(struct cros_ec_cec * cros_ec_cec)118 static void handle_cec_event(struct cros_ec_cec *cros_ec_cec)
119 {
120 struct cros_ec_device *cros_ec = cros_ec_cec->cros_ec;
121 uint32_t cec_events = cros_ec->event_data.data.cec_events;
122 uint32_t port_num = EC_MKBP_EVENT_CEC_GET_PORT(cec_events);
123 uint32_t events = EC_MKBP_EVENT_CEC_GET_EVENTS(cec_events);
124 struct cros_ec_cec_port *port;
125
126 if (port_num >= cros_ec_cec->num_ports) {
127 dev_err(cros_ec->dev,
128 "received CEC event for invalid port %d\n", port_num);
129 return;
130 }
131 port = cros_ec_cec->ports[port_num];
132
133 if (events & EC_MKBP_CEC_SEND_OK)
134 cec_transmit_attempt_done(port->adap, CEC_TX_STATUS_OK);
135
136 /* FW takes care of all retries, tell core to avoid more retries */
137 if (events & EC_MKBP_CEC_SEND_FAILED)
138 cec_transmit_attempt_done(port->adap,
139 CEC_TX_STATUS_MAX_RETRIES |
140 CEC_TX_STATUS_NACK);
141
142 if (events & EC_MKBP_CEC_HAVE_DATA)
143 cros_ec_cec_read_message(port);
144 }
145
cros_ec_cec_event(struct notifier_block * nb,unsigned long queued_during_suspend,void * _notify)146 static int cros_ec_cec_event(struct notifier_block *nb,
147 unsigned long queued_during_suspend,
148 void *_notify)
149 {
150 struct cros_ec_cec *cros_ec_cec;
151 struct cros_ec_device *cros_ec;
152
153 cros_ec_cec = container_of(nb, struct cros_ec_cec, notifier);
154 cros_ec = cros_ec_cec->cros_ec;
155
156 if (cros_ec->event_data.event_type == EC_MKBP_EVENT_CEC_EVENT) {
157 handle_cec_event(cros_ec_cec);
158 return NOTIFY_OK;
159 }
160
161 if (cros_ec->event_data.event_type == EC_MKBP_EVENT_CEC_MESSAGE) {
162 handle_cec_message(cros_ec_cec);
163 return NOTIFY_OK;
164 }
165
166 return NOTIFY_DONE;
167 }
168
cros_ec_cec_set_log_addr(struct cec_adapter * adap,u8 logical_addr)169 static int cros_ec_cec_set_log_addr(struct cec_adapter *adap, u8 logical_addr)
170 {
171 struct cros_ec_cec_port *port = adap->priv;
172 struct cros_ec_cec *cros_ec_cec = port->cros_ec_cec;
173 struct cros_ec_device *cros_ec = cros_ec_cec->cros_ec;
174 struct ec_params_cec_set params = {
175 .cmd = CEC_CMD_LOGICAL_ADDRESS,
176 .port = port->port_num,
177 .val = logical_addr,
178 };
179 int ret;
180
181 ret = cros_ec_cmd(cros_ec, 0, EC_CMD_CEC_SET, ¶ms, sizeof(params),
182 NULL, 0);
183 if (ret < 0) {
184 dev_err(cros_ec->dev,
185 "error setting CEC logical address on EC: %d\n", ret);
186 return ret;
187 }
188
189 return 0;
190 }
191
cros_ec_cec_transmit(struct cec_adapter * adap,u8 attempts,u32 signal_free_time,struct cec_msg * cec_msg)192 static int cros_ec_cec_transmit(struct cec_adapter *adap, u8 attempts,
193 u32 signal_free_time, struct cec_msg *cec_msg)
194 {
195 struct cros_ec_cec_port *port = adap->priv;
196 struct cros_ec_cec *cros_ec_cec = port->cros_ec_cec;
197 struct cros_ec_device *cros_ec = cros_ec_cec->cros_ec;
198 struct ec_params_cec_write params;
199 struct ec_params_cec_write_v1 params_v1;
200 int ret;
201
202 if (cros_ec_cec->write_cmd_version == 0) {
203 memcpy(params.msg, cec_msg->msg, cec_msg->len);
204 ret = cros_ec_cmd(cros_ec, 0, EC_CMD_CEC_WRITE_MSG, ¶ms,
205 cec_msg->len, NULL, 0);
206 } else {
207 params_v1.port = port->port_num;
208 params_v1.msg_len = cec_msg->len;
209 memcpy(params_v1.msg, cec_msg->msg, cec_msg->len);
210 ret = cros_ec_cmd(cros_ec, cros_ec_cec->write_cmd_version,
211 EC_CMD_CEC_WRITE_MSG, ¶ms_v1,
212 sizeof(params_v1), NULL, 0);
213 }
214
215 if (ret < 0) {
216 dev_err(cros_ec->dev,
217 "error writing CEC msg on EC: %d\n", ret);
218 return ret;
219 }
220
221 return 0;
222 }
223
cros_ec_cec_adap_enable(struct cec_adapter * adap,bool enable)224 static int cros_ec_cec_adap_enable(struct cec_adapter *adap, bool enable)
225 {
226 struct cros_ec_cec_port *port = adap->priv;
227 struct cros_ec_cec *cros_ec_cec = port->cros_ec_cec;
228 struct cros_ec_device *cros_ec = cros_ec_cec->cros_ec;
229 struct ec_params_cec_set params = {
230 .cmd = CEC_CMD_ENABLE,
231 .port = port->port_num,
232 .val = enable,
233 };
234 int ret;
235
236 ret = cros_ec_cmd(cros_ec, 0, EC_CMD_CEC_SET, ¶ms, sizeof(params),
237 NULL, 0);
238 if (ret < 0) {
239 dev_err(cros_ec->dev,
240 "error %sabling CEC on EC: %d\n",
241 (enable ? "en" : "dis"), ret);
242 return ret;
243 }
244
245 return 0;
246 }
247
248 static const struct cec_adap_ops cros_ec_cec_ops = {
249 .adap_enable = cros_ec_cec_adap_enable,
250 .adap_log_addr = cros_ec_cec_set_log_addr,
251 .adap_transmit = cros_ec_cec_transmit,
252 };
253
254 #ifdef CONFIG_PM_SLEEP
cros_ec_cec_suspend(struct device * dev)255 static int cros_ec_cec_suspend(struct device *dev)
256 {
257 struct platform_device *pdev = to_platform_device(dev);
258 struct cros_ec_cec *cros_ec_cec = dev_get_drvdata(&pdev->dev);
259
260 if (device_may_wakeup(dev))
261 enable_irq_wake(cros_ec_cec->cros_ec->irq);
262
263 return 0;
264 }
265
cros_ec_cec_resume(struct device * dev)266 static int cros_ec_cec_resume(struct device *dev)
267 {
268 struct platform_device *pdev = to_platform_device(dev);
269 struct cros_ec_cec *cros_ec_cec = dev_get_drvdata(&pdev->dev);
270
271 if (device_may_wakeup(dev))
272 disable_irq_wake(cros_ec_cec->cros_ec->irq);
273
274 return 0;
275 }
276 #endif
277
278 static SIMPLE_DEV_PM_OPS(cros_ec_cec_pm_ops,
279 cros_ec_cec_suspend, cros_ec_cec_resume);
280
281 #if IS_ENABLED(CONFIG_PCI) && IS_ENABLED(CONFIG_DMI)
282
283 /*
284 * Specify the DRM device name handling the HDMI output and the HDMI connector
285 * corresponding to each CEC port. The order of connectors must match the order
286 * in the EC (first connector is EC port 0, ...), and the number of connectors
287 * must match the number of ports in the EC (which can be queried using the
288 * EC_CMD_CEC_PORT_COUNT host command).
289 */
290
291 struct cec_dmi_match {
292 const char *sys_vendor;
293 const char *product_name;
294 const char *devname;
295 const char *const *conns;
296 };
297
298 static const char *const port_b_conns[] = { "Port B", NULL };
299 static const char *const port_db_conns[] = { "Port D", "Port B", NULL };
300 static const char *const port_ba_conns[] = { "Port B", "Port A", NULL };
301 static const char *const port_ab_conns[] = { "Port A", "Port B", NULL };
302 static const char *const port_d_conns[] = { "Port D", NULL };
303
304 static const struct cec_dmi_match cec_dmi_match_table[] = {
305 /* Google Fizz */
306 { "Google", "Fizz", "0000:00:02.0", port_b_conns },
307 /* Google Brask */
308 { "Google", "Brask", "0000:00:02.0", port_b_conns },
309 /* Google Moli */
310 { "Google", "Moli", "0000:00:02.0", port_b_conns },
311 /* Google Kinox */
312 { "Google", "Kinox", "0000:00:02.0", port_b_conns },
313 /* Google Kuldax */
314 { "Google", "Kuldax", "0000:00:02.0", port_b_conns },
315 /* Google Aurash */
316 { "Google", "Aurash", "0000:00:02.0", port_b_conns },
317 /* Google Gladios */
318 { "Google", "Gladios", "0000:00:02.0", port_b_conns },
319 /* Google Lisbon */
320 { "Google", "Lisbon", "0000:00:02.0", port_b_conns },
321 /* Google Dibbi */
322 { "Google", "Dibbi", "0000:00:02.0", port_db_conns },
323 /* Google Constitution */
324 { "Google", "Constitution", "0000:00:02.0", port_ba_conns },
325 /* Google Boxy */
326 { "Google", "Boxy", "0000:00:02.0", port_d_conns },
327 /* Google Taranza */
328 { "Google", "Taranza", "0000:00:02.0", port_db_conns },
329 /* Google Dexi */
330 { "Google", "Dexi", "0000:00:02.0", port_db_conns },
331 /* Google Dita */
332 { "Google", "Dita", "0000:00:02.0", port_db_conns },
333 /* Google Dirks */
334 { "Google", "Dirks", "0000:00:02.0", port_ab_conns },
335 /* Google Moxie */
336 { "Google", "Moxie", "0000:00:02.0", port_b_conns },
337 };
338
cros_ec_cec_find_hdmi_dev(struct device * dev,const char * const ** conns)339 static struct device *cros_ec_cec_find_hdmi_dev(struct device *dev,
340 const char * const **conns)
341 {
342 int i;
343
344 for (i = 0 ; i < ARRAY_SIZE(cec_dmi_match_table) ; ++i) {
345 const struct cec_dmi_match *m = &cec_dmi_match_table[i];
346
347 if (dmi_match(DMI_SYS_VENDOR, m->sys_vendor) &&
348 dmi_match(DMI_PRODUCT_NAME, m->product_name)) {
349 struct device *d;
350
351 /* Find the device, bail out if not yet registered */
352 d = bus_find_device_by_name(&pci_bus_type, NULL,
353 m->devname);
354 if (!d)
355 return ERR_PTR(-EPROBE_DEFER);
356 put_device(d);
357 *conns = m->conns;
358 return d;
359 }
360 }
361
362 /* Hardware support must be added in the cec_dmi_match_table */
363 dev_warn(dev, "CEC notifier not configured for this hardware\n");
364
365 return ERR_PTR(-ENODEV);
366 }
367
368 #else
369
cros_ec_cec_find_hdmi_dev(struct device * dev,const char * const ** conns)370 static struct device *cros_ec_cec_find_hdmi_dev(struct device *dev,
371 const char * const **conns)
372 {
373 return ERR_PTR(-ENODEV);
374 }
375
376 #endif
377
cros_ec_cec_get_num_ports(struct cros_ec_cec * cros_ec_cec)378 static int cros_ec_cec_get_num_ports(struct cros_ec_cec *cros_ec_cec)
379 {
380 struct ec_response_cec_port_count response;
381 int ret;
382
383 ret = cros_ec_cmd(cros_ec_cec->cros_ec, 0, EC_CMD_CEC_PORT_COUNT, NULL,
384 0, &response, sizeof(response));
385 if (ret < 0) {
386 /*
387 * Old EC firmware only supports one port and does not support
388 * the port count command, so fall back to assuming one port.
389 */
390 cros_ec_cec->num_ports = 1;
391 return 0;
392 }
393
394 if (response.port_count == 0) {
395 dev_err(cros_ec_cec->cros_ec->dev,
396 "EC reports 0 CEC ports\n");
397 return -ENODEV;
398 }
399
400 if (response.port_count > EC_CEC_MAX_PORTS) {
401 dev_err(cros_ec_cec->cros_ec->dev,
402 "EC reports too many ports: %d\n", response.port_count);
403 return -EINVAL;
404 }
405
406 cros_ec_cec->num_ports = response.port_count;
407 return 0;
408 }
409
cros_ec_cec_get_write_cmd_version(struct cros_ec_cec * cros_ec_cec)410 static int cros_ec_cec_get_write_cmd_version(struct cros_ec_cec *cros_ec_cec)
411 {
412 struct cros_ec_device *cros_ec = cros_ec_cec->cros_ec;
413 struct ec_params_get_cmd_versions_v1 params = {
414 .cmd = EC_CMD_CEC_WRITE_MSG,
415 };
416 struct ec_response_get_cmd_versions response;
417 int ret;
418
419 ret = cros_ec_cmd(cros_ec, 1, EC_CMD_GET_CMD_VERSIONS, ¶ms,
420 sizeof(params), &response, sizeof(response));
421 if (ret < 0) {
422 dev_err(cros_ec->dev,
423 "error getting CEC write command version: %d\n", ret);
424 return ret;
425 }
426
427 if (response.version_mask & EC_VER_MASK(1)) {
428 cros_ec_cec->write_cmd_version = 1;
429 } else {
430 if (cros_ec_cec->num_ports != 1) {
431 dev_err(cros_ec->dev,
432 "v0 write command only supports 1 port, %d reported\n",
433 cros_ec_cec->num_ports);
434 return -EINVAL;
435 }
436 cros_ec_cec->write_cmd_version = 0;
437 }
438
439 return 0;
440 }
441
cros_ec_cec_init_port(struct device * dev,struct cros_ec_cec * cros_ec_cec,int port_num,struct device * hdmi_dev,const char * const * conns)442 static int cros_ec_cec_init_port(struct device *dev,
443 struct cros_ec_cec *cros_ec_cec,
444 int port_num, struct device *hdmi_dev,
445 const char * const *conns)
446 {
447 struct cros_ec_cec_port *port;
448 int ret;
449
450 port = devm_kzalloc(dev, sizeof(*port), GFP_KERNEL);
451 if (!port)
452 return -ENOMEM;
453
454 port->cros_ec_cec = cros_ec_cec;
455 port->port_num = port_num;
456
457 port->adap = cec_allocate_adapter(&cros_ec_cec_ops, port, DRV_NAME,
458 CEC_CAP_DEFAULTS |
459 CEC_CAP_CONNECTOR_INFO, 1);
460 if (IS_ERR(port->adap))
461 return PTR_ERR(port->adap);
462
463 if (!conns[port_num]) {
464 dev_err(dev, "no conn for port %d\n", port_num);
465 ret = -ENODEV;
466 goto out_probe_adapter;
467 }
468
469 port->notify = cec_notifier_cec_adap_register(hdmi_dev, conns[port_num],
470 port->adap);
471 if (!port->notify) {
472 ret = -ENOMEM;
473 goto out_probe_adapter;
474 }
475
476 ret = cec_register_adapter(port->adap, dev);
477 if (ret < 0)
478 goto out_probe_notify;
479
480 cros_ec_cec->ports[port_num] = port;
481
482 return 0;
483
484 out_probe_notify:
485 cec_notifier_cec_adap_unregister(port->notify, port->adap);
486 out_probe_adapter:
487 cec_delete_adapter(port->adap);
488 return ret;
489 }
490
cros_ec_cec_probe(struct platform_device * pdev)491 static int cros_ec_cec_probe(struct platform_device *pdev)
492 {
493 struct cros_ec_dev *ec_dev = dev_get_drvdata(pdev->dev.parent);
494 struct cros_ec_device *cros_ec = ec_dev->ec_dev;
495 struct cros_ec_cec *cros_ec_cec;
496 struct cros_ec_cec_port *port;
497 struct device *hdmi_dev;
498 const char * const *conns = NULL;
499 int ret;
500
501 hdmi_dev = cros_ec_cec_find_hdmi_dev(&pdev->dev, &conns);
502 if (IS_ERR(hdmi_dev))
503 return PTR_ERR(hdmi_dev);
504
505 cros_ec_cec = devm_kzalloc(&pdev->dev, sizeof(*cros_ec_cec),
506 GFP_KERNEL);
507 if (!cros_ec_cec)
508 return -ENOMEM;
509
510 platform_set_drvdata(pdev, cros_ec_cec);
511 cros_ec_cec->cros_ec = cros_ec;
512
513 device_init_wakeup(&pdev->dev, 1);
514
515 ret = cros_ec_cec_get_num_ports(cros_ec_cec);
516 if (ret)
517 return ret;
518
519 ret = cros_ec_cec_get_write_cmd_version(cros_ec_cec);
520 if (ret)
521 return ret;
522
523 for (int i = 0; i < cros_ec_cec->num_ports; i++) {
524 ret = cros_ec_cec_init_port(&pdev->dev, cros_ec_cec, i,
525 hdmi_dev, conns);
526 if (ret)
527 goto unregister_ports;
528 }
529
530 /* Get CEC events from the EC. */
531 cros_ec_cec->notifier.notifier_call = cros_ec_cec_event;
532 ret = blocking_notifier_chain_register(&cros_ec->event_notifier,
533 &cros_ec_cec->notifier);
534 if (ret) {
535 dev_err(&pdev->dev, "failed to register notifier\n");
536 goto unregister_ports;
537 }
538
539 return 0;
540
541 unregister_ports:
542 /*
543 * Unregister any adapters which have been registered. We don't add the
544 * port to the array until the adapter has been registered successfully,
545 * so any non-NULL ports must have been registered.
546 */
547 for (int i = 0; i < cros_ec_cec->num_ports; i++) {
548 port = cros_ec_cec->ports[i];
549 if (!port)
550 break;
551 cec_notifier_cec_adap_unregister(port->notify, port->adap);
552 cec_unregister_adapter(port->adap);
553 }
554 return ret;
555 }
556
cros_ec_cec_remove(struct platform_device * pdev)557 static void cros_ec_cec_remove(struct platform_device *pdev)
558 {
559 struct cros_ec_cec *cros_ec_cec = platform_get_drvdata(pdev);
560 struct device *dev = &pdev->dev;
561 struct cros_ec_cec_port *port;
562 int ret;
563
564 /*
565 * blocking_notifier_chain_unregister() only fails if the notifier isn't
566 * in the list. We know it was added to it by .probe(), so there should
567 * be no need for error checking. Be cautious and still check.
568 */
569 ret = blocking_notifier_chain_unregister(
570 &cros_ec_cec->cros_ec->event_notifier,
571 &cros_ec_cec->notifier);
572 if (ret)
573 dev_err(dev, "failed to unregister notifier\n");
574
575 for (int i = 0; i < cros_ec_cec->num_ports; i++) {
576 port = cros_ec_cec->ports[i];
577 cec_notifier_cec_adap_unregister(port->notify, port->adap);
578 cec_unregister_adapter(port->adap);
579 }
580 }
581
582 static const struct platform_device_id cros_ec_cec_id[] = {
583 { DRV_NAME, 0 },
584 {}
585 };
586 MODULE_DEVICE_TABLE(platform, cros_ec_cec_id);
587
588 static struct platform_driver cros_ec_cec_driver = {
589 .probe = cros_ec_cec_probe,
590 .remove = cros_ec_cec_remove,
591 .driver = {
592 .name = DRV_NAME,
593 .pm = &cros_ec_cec_pm_ops,
594 },
595 .id_table = cros_ec_cec_id,
596 };
597
598 module_platform_driver(cros_ec_cec_driver);
599
600 MODULE_DESCRIPTION("CEC driver for ChromeOS ECs");
601 MODULE_AUTHOR("Neil Armstrong <narmstrong@baylibre.com>");
602 MODULE_LICENSE("GPL");
603