blob: ed805d21633a36e77e3e99d73e0750f51b2abfdb [file] [log] [blame]
Andrew Duggan2b6a3212016-03-10 15:35:49 -08001/*
2 * Copyright (c) 2011-2016 Synaptics Incorporated
3 * Copyright (c) 2011 Unixphere
4 *
5 * This program is free software; you can redistribute it and/or modify it
6 * under the terms of the GNU General Public License version 2 as published by
7 * the Free Software Foundation.
8 */
9
10#include <linux/kernel.h>
11#include <linux/kconfig.h>
12#include <linux/rmi.h>
13#include <linux/slab.h>
14#include <linux/uaccess.h>
15#include <linux/of.h>
Nick Dyerce363f02017-01-31 15:44:49 -080016#include <asm/unaligned.h>
Andrew Duggan2b6a3212016-03-10 15:35:49 -080017#include "rmi_driver.h"
18
19#define RMI_PRODUCT_ID_LENGTH 10
20#define RMI_PRODUCT_INFO_LENGTH 2
21
22#define RMI_DATE_CODE_LENGTH 3
23
24#define PRODUCT_ID_OFFSET 0x10
25#define PRODUCT_INFO_OFFSET 0x1E
26
27
28/* Force a firmware reset of the sensor */
29#define RMI_F01_CMD_DEVICE_RESET 1
30
31/* Various F01_RMI_QueryX bits */
32
33#define RMI_F01_QRY1_CUSTOM_MAP BIT(0)
34#define RMI_F01_QRY1_NON_COMPLIANT BIT(1)
35#define RMI_F01_QRY1_HAS_LTS BIT(2)
36#define RMI_F01_QRY1_HAS_SENSOR_ID BIT(3)
37#define RMI_F01_QRY1_HAS_CHARGER_INP BIT(4)
38#define RMI_F01_QRY1_HAS_ADJ_DOZE BIT(5)
39#define RMI_F01_QRY1_HAS_ADJ_DOZE_HOFF BIT(6)
40#define RMI_F01_QRY1_HAS_QUERY42 BIT(7)
41
42#define RMI_F01_QRY5_YEAR_MASK 0x1f
43#define RMI_F01_QRY6_MONTH_MASK 0x0f
44#define RMI_F01_QRY7_DAY_MASK 0x1f
45
46#define RMI_F01_QRY2_PRODINFO_MASK 0x7f
47
48#define RMI_F01_BASIC_QUERY_LEN 21 /* From Query 00 through 20 */
49
50struct f01_basic_properties {
51 u8 manufacturer_id;
52 bool has_lts;
53 bool has_adjustable_doze;
54 bool has_adjustable_doze_holdoff;
55 char dom[11]; /* YYYY/MM/DD + '\0' */
56 u8 product_id[RMI_PRODUCT_ID_LENGTH + 1];
57 u16 productinfo;
58 u32 firmware_id;
Nick Dyerce363f02017-01-31 15:44:49 -080059 u32 package_id;
Andrew Duggan2b6a3212016-03-10 15:35:49 -080060};
61
62/* F01 device status bits */
63
64/* Most recent device status event */
65#define RMI_F01_STATUS_CODE(status) ((status) & 0x0f)
66/* The device has lost its configuration for some reason. */
67#define RMI_F01_STATUS_UNCONFIGURED(status) (!!((status) & 0x80))
Nick Dyer29fd0ec2016-11-22 17:44:12 -080068/* The device is in bootloader mode */
69#define RMI_F01_STATUS_BOOTLOADER(status) ((status) & 0x40)
Andrew Duggan2b6a3212016-03-10 15:35:49 -080070
71/* Control register bits */
72
73/*
74 * Sleep mode controls power management on the device and affects all
75 * functions of the device.
76 */
77#define RMI_F01_CTRL0_SLEEP_MODE_MASK 0x03
78
79#define RMI_SLEEP_MODE_NORMAL 0x00
80#define RMI_SLEEP_MODE_SENSOR_SLEEP 0x01
81#define RMI_SLEEP_MODE_RESERVED0 0x02
82#define RMI_SLEEP_MODE_RESERVED1 0x03
83
84/*
85 * This bit disables whatever sleep mode may be selected by the sleep_mode
86 * field and forces the device to run at full power without sleeping.
87 */
Nick Dyere9000b72016-05-19 09:22:49 -070088#define RMI_F01_CTRL0_NOSLEEP_BIT BIT(2)
Andrew Duggan2b6a3212016-03-10 15:35:49 -080089
90/*
91 * When this bit is set, the touch controller employs a noise-filtering
92 * algorithm designed for use with a connected battery charger.
93 */
Nick Dyere9000b72016-05-19 09:22:49 -070094#define RMI_F01_CTRL0_CHARGER_BIT BIT(5)
Andrew Duggan2b6a3212016-03-10 15:35:49 -080095
96/*
97 * Sets the report rate for the device. The effect of this setting is
98 * highly product dependent. Check the spec sheet for your particular
99 * touch sensor.
100 */
Nick Dyere9000b72016-05-19 09:22:49 -0700101#define RMI_F01_CTRL0_REPORTRATE_BIT BIT(6)
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800102
103/*
104 * Written by the host as an indicator that the device has been
105 * successfully configured.
106 */
Nick Dyere9000b72016-05-19 09:22:49 -0700107#define RMI_F01_CTRL0_CONFIGURED_BIT BIT(7)
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800108
109/**
110 * @ctrl0 - see the bit definitions above.
111 * @doze_interval - controls the interval between checks for finger presence
112 * when the touch sensor is in doze mode, in units of 10ms.
113 * @wakeup_threshold - controls the capacitance threshold at which the touch
114 * sensor will decide to wake up from that low power state.
115 * @doze_holdoff - controls how long the touch sensor waits after the last
116 * finger lifts before entering the doze state, in units of 100ms.
117 */
118struct f01_device_control {
119 u8 ctrl0;
120 u8 doze_interval;
121 u8 wakeup_threshold;
122 u8 doze_holdoff;
123};
124
125struct f01_data {
126 struct f01_basic_properties properties;
127 struct f01_device_control device_control;
128
129 u16 doze_interval_addr;
130 u16 wakeup_threshold_addr;
131 u16 doze_holdoff_addr;
132
133 bool suspended;
134 bool old_nosleep;
135
136 unsigned int num_of_irq_regs;
137};
138
139static int rmi_f01_read_properties(struct rmi_device *rmi_dev,
140 u16 query_base_addr,
141 struct f01_basic_properties *props)
142{
143 u8 queries[RMI_F01_BASIC_QUERY_LEN];
144 int ret;
145 int query_offset = query_base_addr;
146 bool has_ds4_queries = false;
147 bool has_query42 = false;
148 bool has_sensor_id = false;
149 bool has_package_id_query = false;
150 bool has_build_id_query = false;
151 u16 prod_info_addr;
152 u8 ds4_query_len;
153
154 ret = rmi_read_block(rmi_dev, query_offset,
155 queries, RMI_F01_BASIC_QUERY_LEN);
156 if (ret) {
157 dev_err(&rmi_dev->dev,
158 "Failed to read device query registers: %d\n", ret);
159 return ret;
160 }
161
162 prod_info_addr = query_offset + 17;
163 query_offset += RMI_F01_BASIC_QUERY_LEN;
164
165 /* Now parse what we got */
166 props->manufacturer_id = queries[0];
167
168 props->has_lts = queries[1] & RMI_F01_QRY1_HAS_LTS;
169 props->has_adjustable_doze =
170 queries[1] & RMI_F01_QRY1_HAS_ADJ_DOZE;
171 props->has_adjustable_doze_holdoff =
172 queries[1] & RMI_F01_QRY1_HAS_ADJ_DOZE_HOFF;
173 has_query42 = queries[1] & RMI_F01_QRY1_HAS_QUERY42;
174 has_sensor_id = queries[1] & RMI_F01_QRY1_HAS_SENSOR_ID;
175
176 snprintf(props->dom, sizeof(props->dom), "20%02d/%02d/%02d",
177 queries[5] & RMI_F01_QRY5_YEAR_MASK,
178 queries[6] & RMI_F01_QRY6_MONTH_MASK,
179 queries[7] & RMI_F01_QRY7_DAY_MASK);
180
181 memcpy(props->product_id, &queries[11],
182 RMI_PRODUCT_ID_LENGTH);
183 props->product_id[RMI_PRODUCT_ID_LENGTH] = '\0';
184
185 props->productinfo =
186 ((queries[2] & RMI_F01_QRY2_PRODINFO_MASK) << 7) |
187 (queries[3] & RMI_F01_QRY2_PRODINFO_MASK);
188
189 if (has_sensor_id)
190 query_offset++;
191
192 if (has_query42) {
193 ret = rmi_read(rmi_dev, query_offset, queries);
194 if (ret) {
195 dev_err(&rmi_dev->dev,
196 "Failed to read query 42 register: %d\n", ret);
197 return ret;
198 }
199
200 has_ds4_queries = !!(queries[0] & BIT(0));
201 query_offset++;
202 }
203
204 if (has_ds4_queries) {
205 ret = rmi_read(rmi_dev, query_offset, &ds4_query_len);
206 if (ret) {
207 dev_err(&rmi_dev->dev,
208 "Failed to read DS4 queries length: %d\n", ret);
209 return ret;
210 }
211 query_offset++;
212
213 if (ds4_query_len > 0) {
214 ret = rmi_read(rmi_dev, query_offset, queries);
215 if (ret) {
216 dev_err(&rmi_dev->dev,
217 "Failed to read DS4 queries: %d\n",
218 ret);
219 return ret;
220 }
221
222 has_package_id_query = !!(queries[0] & BIT(0));
223 has_build_id_query = !!(queries[0] & BIT(1));
224 }
225
Nick Dyerce363f02017-01-31 15:44:49 -0800226 if (has_package_id_query) {
227 ret = rmi_read_block(rmi_dev, prod_info_addr,
228 queries, sizeof(__le64));
229 if (ret) {
230 dev_err(&rmi_dev->dev,
231 "Failed to read package info: %d\n",
232 ret);
233 return ret;
234 }
235
236 props->package_id = get_unaligned_le64(queries);
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800237 prod_info_addr++;
Nick Dyerce363f02017-01-31 15:44:49 -0800238 }
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800239
240 if (has_build_id_query) {
241 ret = rmi_read_block(rmi_dev, prod_info_addr, queries,
242 3);
243 if (ret) {
244 dev_err(&rmi_dev->dev,
245 "Failed to read product info: %d\n",
246 ret);
247 return ret;
248 }
249
250 props->firmware_id = queries[1] << 8 | queries[0];
251 props->firmware_id += queries[2] * 65536;
252 }
253 }
254
255 return 0;
256}
257
Nick Dyerce363f02017-01-31 15:44:49 -0800258const char *rmi_f01_get_product_ID(struct rmi_function *fn)
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800259{
260 struct f01_data *f01 = dev_get_drvdata(&fn->dev);
261
262 return f01->properties.product_id;
263}
264
Nick Dyerce363f02017-01-31 15:44:49 -0800265static ssize_t rmi_driver_manufacturer_id_show(struct device *dev,
266 struct device_attribute *dattr,
267 char *buf)
268{
269 struct rmi_driver_data *data = dev_get_drvdata(dev);
270 struct f01_data *f01 = dev_get_drvdata(&data->f01_container->dev);
271
272 return scnprintf(buf, PAGE_SIZE, "%d\n",
273 f01->properties.manufacturer_id);
274}
275
276static DEVICE_ATTR(manufacturer_id, 0444,
277 rmi_driver_manufacturer_id_show, NULL);
278
279static ssize_t rmi_driver_dom_show(struct device *dev,
280 struct device_attribute *dattr, char *buf)
281{
282 struct rmi_driver_data *data = dev_get_drvdata(dev);
283 struct f01_data *f01 = dev_get_drvdata(&data->f01_container->dev);
284
285 return scnprintf(buf, PAGE_SIZE, "%s\n", f01->properties.dom);
286}
287
288static DEVICE_ATTR(date_of_manufacture, 0444, rmi_driver_dom_show, NULL);
289
290static ssize_t rmi_driver_product_id_show(struct device *dev,
291 struct device_attribute *dattr,
292 char *buf)
293{
294 struct rmi_driver_data *data = dev_get_drvdata(dev);
295 struct f01_data *f01 = dev_get_drvdata(&data->f01_container->dev);
296
297 return scnprintf(buf, PAGE_SIZE, "%s\n", f01->properties.product_id);
298}
299
300static DEVICE_ATTR(product_id, 0444, rmi_driver_product_id_show, NULL);
301
302static ssize_t rmi_driver_firmware_id_show(struct device *dev,
303 struct device_attribute *dattr,
304 char *buf)
305{
306 struct rmi_driver_data *data = dev_get_drvdata(dev);
307 struct f01_data *f01 = dev_get_drvdata(&data->f01_container->dev);
308
309 return scnprintf(buf, PAGE_SIZE, "%d\n", f01->properties.firmware_id);
310}
311
312static DEVICE_ATTR(firmware_id, 0444, rmi_driver_firmware_id_show, NULL);
313
314static ssize_t rmi_driver_package_id_show(struct device *dev,
315 struct device_attribute *dattr,
316 char *buf)
317{
318 struct rmi_driver_data *data = dev_get_drvdata(dev);
319 struct f01_data *f01 = dev_get_drvdata(&data->f01_container->dev);
320
321 u32 package_id = f01->properties.package_id;
322
323 return scnprintf(buf, PAGE_SIZE, "%04x.%04x\n",
324 package_id & 0xffff, (package_id >> 16) & 0xffff);
325}
326
327static DEVICE_ATTR(package_id, 0444, rmi_driver_package_id_show, NULL);
328
329static struct attribute *rmi_f01_attrs[] = {
330 &dev_attr_manufacturer_id.attr,
331 &dev_attr_date_of_manufacture.attr,
332 &dev_attr_product_id.attr,
333 &dev_attr_firmware_id.attr,
334 &dev_attr_package_id.attr,
335 NULL
336};
337
338static struct attribute_group rmi_f01_attr_group = {
339 .attrs = rmi_f01_attrs,
340};
341
Andrew Duggand8a8b3e2016-03-10 15:46:32 -0800342#ifdef CONFIG_OF
343static int rmi_f01_of_probe(struct device *dev,
344 struct rmi_device_platform_data *pdata)
345{
346 int retval;
347 u32 val;
348
349 retval = rmi_of_property_read_u32(dev,
350 (u32 *)&pdata->power_management.nosleep,
351 "syna,nosleep-mode", 1);
352 if (retval)
353 return retval;
354
355 retval = rmi_of_property_read_u32(dev, &val,
356 "syna,wakeup-threshold", 1);
357 if (retval)
358 return retval;
359
360 pdata->power_management.wakeup_threshold = val;
361
362 retval = rmi_of_property_read_u32(dev, &val,
363 "syna,doze-holdoff-ms", 1);
364 if (retval)
365 return retval;
366
367 pdata->power_management.doze_holdoff = val * 100;
368
369 retval = rmi_of_property_read_u32(dev, &val,
370 "syna,doze-interval-ms", 1);
371 if (retval)
372 return retval;
373
374 pdata->power_management.doze_interval = val / 10;
375
376 return 0;
377}
378#else
379static inline int rmi_f01_of_probe(struct device *dev,
380 struct rmi_device_platform_data *pdata)
381{
382 return -ENODEV;
383}
384#endif
385
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800386static int rmi_f01_probe(struct rmi_function *fn)
387{
388 struct rmi_device *rmi_dev = fn->rmi_dev;
389 struct rmi_driver_data *driver_data = dev_get_drvdata(&rmi_dev->dev);
390 struct rmi_device_platform_data *pdata = rmi_get_platform_data(rmi_dev);
391 struct f01_data *f01;
392 int error;
393 u16 ctrl_base_addr = fn->fd.control_base_addr;
394 u8 device_status;
395 u8 temp;
396
Andrew Duggand8a8b3e2016-03-10 15:46:32 -0800397 if (fn->dev.of_node) {
398 error = rmi_f01_of_probe(&fn->dev, pdata);
399 if (error)
400 return error;
401 }
402
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800403 f01 = devm_kzalloc(&fn->dev, sizeof(struct f01_data), GFP_KERNEL);
404 if (!f01)
405 return -ENOMEM;
406
407 f01->num_of_irq_regs = driver_data->num_of_irq_regs;
408
409 /*
410 * Set the configured bit and (optionally) other important stuff
411 * in the device control register.
412 */
413
414 error = rmi_read(rmi_dev, fn->fd.control_base_addr,
415 &f01->device_control.ctrl0);
416 if (error) {
417 dev_err(&fn->dev, "Failed to read F01 control: %d\n", error);
418 return error;
419 }
420
421 switch (pdata->power_management.nosleep) {
Andrew Duggan2775e522016-11-08 16:48:48 -0800422 case RMI_REG_STATE_DEFAULT:
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800423 break;
Andrew Duggan2775e522016-11-08 16:48:48 -0800424 case RMI_REG_STATE_OFF:
Nick Dyere9000b72016-05-19 09:22:49 -0700425 f01->device_control.ctrl0 &= ~RMI_F01_CTRL0_NOSLEEP_BIT;
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800426 break;
Andrew Duggan2775e522016-11-08 16:48:48 -0800427 case RMI_REG_STATE_ON:
Nick Dyere9000b72016-05-19 09:22:49 -0700428 f01->device_control.ctrl0 |= RMI_F01_CTRL0_NOSLEEP_BIT;
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800429 break;
430 }
431
432 /*
433 * Sleep mode might be set as a hangover from a system crash or
434 * reboot without power cycle. If so, clear it so the sensor
435 * is certain to function.
436 */
437 if ((f01->device_control.ctrl0 & RMI_F01_CTRL0_SLEEP_MODE_MASK) !=
438 RMI_SLEEP_MODE_NORMAL) {
439 dev_warn(&fn->dev,
440 "WARNING: Non-zero sleep mode found. Clearing...\n");
441 f01->device_control.ctrl0 &= ~RMI_F01_CTRL0_SLEEP_MODE_MASK;
442 }
443
Nick Dyere9000b72016-05-19 09:22:49 -0700444 f01->device_control.ctrl0 |= RMI_F01_CTRL0_CONFIGURED_BIT;
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800445
446 error = rmi_write(rmi_dev, fn->fd.control_base_addr,
447 f01->device_control.ctrl0);
448 if (error) {
449 dev_err(&fn->dev, "Failed to write F01 control: %d\n", error);
450 return error;
451 }
452
453 /* Dummy read in order to clear irqs */
454 error = rmi_read(rmi_dev, fn->fd.data_base_addr + 1, &temp);
455 if (error < 0) {
456 dev_err(&fn->dev, "Failed to read Interrupt Status.\n");
457 return error;
458 }
459
460 error = rmi_f01_read_properties(rmi_dev, fn->fd.query_base_addr,
461 &f01->properties);
462 if (error < 0) {
463 dev_err(&fn->dev, "Failed to read F01 properties.\n");
464 return error;
465 }
466
467 dev_info(&fn->dev, "found RMI device, manufacturer: %s, product: %s, fw id: %d\n",
468 f01->properties.manufacturer_id == 1 ? "Synaptics" : "unknown",
469 f01->properties.product_id, f01->properties.firmware_id);
470
471 /* Advance to interrupt control registers, then skip over them. */
472 ctrl_base_addr++;
473 ctrl_base_addr += f01->num_of_irq_regs;
474
475 /* read control register */
476 if (f01->properties.has_adjustable_doze) {
477 f01->doze_interval_addr = ctrl_base_addr;
478 ctrl_base_addr++;
479
480 if (pdata->power_management.doze_interval) {
481 f01->device_control.doze_interval =
482 pdata->power_management.doze_interval;
483 error = rmi_write(rmi_dev, f01->doze_interval_addr,
484 f01->device_control.doze_interval);
485 if (error) {
486 dev_err(&fn->dev,
487 "Failed to configure F01 doze interval register: %d\n",
488 error);
489 return error;
490 }
491 } else {
492 error = rmi_read(rmi_dev, f01->doze_interval_addr,
493 &f01->device_control.doze_interval);
494 if (error) {
495 dev_err(&fn->dev,
496 "Failed to read F01 doze interval register: %d\n",
497 error);
498 return error;
499 }
500 }
501
502 f01->wakeup_threshold_addr = ctrl_base_addr;
503 ctrl_base_addr++;
504
505 if (pdata->power_management.wakeup_threshold) {
506 f01->device_control.wakeup_threshold =
507 pdata->power_management.wakeup_threshold;
508 error = rmi_write(rmi_dev, f01->wakeup_threshold_addr,
509 f01->device_control.wakeup_threshold);
510 if (error) {
511 dev_err(&fn->dev,
512 "Failed to configure F01 wakeup threshold register: %d\n",
513 error);
514 return error;
515 }
516 } else {
517 error = rmi_read(rmi_dev, f01->wakeup_threshold_addr,
518 &f01->device_control.wakeup_threshold);
519 if (error < 0) {
520 dev_err(&fn->dev,
521 "Failed to read F01 wakeup threshold register: %d\n",
522 error);
523 return error;
524 }
525 }
526 }
527
528 if (f01->properties.has_lts)
529 ctrl_base_addr++;
530
531 if (f01->properties.has_adjustable_doze_holdoff) {
532 f01->doze_holdoff_addr = ctrl_base_addr;
533 ctrl_base_addr++;
534
535 if (pdata->power_management.doze_holdoff) {
536 f01->device_control.doze_holdoff =
537 pdata->power_management.doze_holdoff;
538 error = rmi_write(rmi_dev, f01->doze_holdoff_addr,
539 f01->device_control.doze_holdoff);
540 if (error) {
541 dev_err(&fn->dev,
542 "Failed to configure F01 doze holdoff register: %d\n",
543 error);
544 return error;
545 }
546 } else {
547 error = rmi_read(rmi_dev, f01->doze_holdoff_addr,
548 &f01->device_control.doze_holdoff);
549 if (error) {
550 dev_err(&fn->dev,
551 "Failed to read F01 doze holdoff register: %d\n",
552 error);
553 return error;
554 }
555 }
556 }
557
558 error = rmi_read(rmi_dev, fn->fd.data_base_addr, &device_status);
559 if (error < 0) {
560 dev_err(&fn->dev,
561 "Failed to read device status: %d\n", error);
562 return error;
563 }
564
565 if (RMI_F01_STATUS_UNCONFIGURED(device_status)) {
566 dev_err(&fn->dev,
567 "Device was reset during configuration process, status: %#02x!\n",
568 RMI_F01_STATUS_CODE(device_status));
569 return -EINVAL;
570 }
571
572 dev_set_drvdata(&fn->dev, f01);
573
Nick Dyerce363f02017-01-31 15:44:49 -0800574 error = sysfs_create_group(&fn->rmi_dev->dev.kobj, &rmi_f01_attr_group);
575 if (error)
576 dev_warn(&fn->dev, "Failed to create sysfs group: %d\n", error);
577
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800578 return 0;
579}
580
Nick Dyerce363f02017-01-31 15:44:49 -0800581static void rmi_f01_remove(struct rmi_function *fn)
582{
583 sysfs_remove_group(&fn->rmi_dev->dev.kobj, &rmi_f01_attr_group);
584}
585
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800586static int rmi_f01_config(struct rmi_function *fn)
587{
588 struct f01_data *f01 = dev_get_drvdata(&fn->dev);
589 int error;
590
591 error = rmi_write(fn->rmi_dev, fn->fd.control_base_addr,
592 f01->device_control.ctrl0);
593 if (error) {
594 dev_err(&fn->dev,
595 "Failed to write device_control register: %d\n", error);
596 return error;
597 }
598
599 if (f01->properties.has_adjustable_doze) {
600 error = rmi_write(fn->rmi_dev, f01->doze_interval_addr,
601 f01->device_control.doze_interval);
602 if (error) {
603 dev_err(&fn->dev,
604 "Failed to write doze interval: %d\n", error);
605 return error;
606 }
607
608 error = rmi_write_block(fn->rmi_dev,
609 f01->wakeup_threshold_addr,
610 &f01->device_control.wakeup_threshold,
611 sizeof(u8));
612 if (error) {
613 dev_err(&fn->dev,
614 "Failed to write wakeup threshold: %d\n",
615 error);
616 return error;
617 }
618 }
619
620 if (f01->properties.has_adjustable_doze_holdoff) {
621 error = rmi_write(fn->rmi_dev, f01->doze_holdoff_addr,
622 f01->device_control.doze_holdoff);
623 if (error) {
624 dev_err(&fn->dev,
625 "Failed to write doze holdoff: %d\n", error);
626 return error;
627 }
628 }
629
630 return 0;
631}
632
633static int rmi_f01_suspend(struct rmi_function *fn)
634{
635 struct f01_data *f01 = dev_get_drvdata(&fn->dev);
636 int error;
637
638 f01->old_nosleep =
Nick Dyere9000b72016-05-19 09:22:49 -0700639 f01->device_control.ctrl0 & RMI_F01_CTRL0_NOSLEEP_BIT;
640 f01->device_control.ctrl0 &= ~RMI_F01_CTRL0_NOSLEEP_BIT;
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800641
642 f01->device_control.ctrl0 &= ~RMI_F01_CTRL0_SLEEP_MODE_MASK;
643 if (device_may_wakeup(fn->rmi_dev->xport->dev))
644 f01->device_control.ctrl0 |= RMI_SLEEP_MODE_RESERVED1;
645 else
646 f01->device_control.ctrl0 |= RMI_SLEEP_MODE_SENSOR_SLEEP;
647
648 error = rmi_write(fn->rmi_dev, fn->fd.control_base_addr,
649 f01->device_control.ctrl0);
650 if (error) {
651 dev_err(&fn->dev, "Failed to write sleep mode: %d.\n", error);
652 if (f01->old_nosleep)
Nick Dyere9000b72016-05-19 09:22:49 -0700653 f01->device_control.ctrl0 |= RMI_F01_CTRL0_NOSLEEP_BIT;
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800654 f01->device_control.ctrl0 &= ~RMI_F01_CTRL0_SLEEP_MODE_MASK;
655 f01->device_control.ctrl0 |= RMI_SLEEP_MODE_NORMAL;
656 return error;
657 }
658
659 return 0;
660}
661
662static int rmi_f01_resume(struct rmi_function *fn)
663{
664 struct f01_data *f01 = dev_get_drvdata(&fn->dev);
665 int error;
666
667 if (f01->old_nosleep)
Nick Dyere9000b72016-05-19 09:22:49 -0700668 f01->device_control.ctrl0 |= RMI_F01_CTRL0_NOSLEEP_BIT;
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800669
670 f01->device_control.ctrl0 &= ~RMI_F01_CTRL0_SLEEP_MODE_MASK;
671 f01->device_control.ctrl0 |= RMI_SLEEP_MODE_NORMAL;
672
673 error = rmi_write(fn->rmi_dev, fn->fd.control_base_addr,
674 f01->device_control.ctrl0);
675 if (error) {
676 dev_err(&fn->dev,
677 "Failed to restore normal operation: %d.\n", error);
678 return error;
679 }
680
681 return 0;
682}
683
684static int rmi_f01_attention(struct rmi_function *fn,
685 unsigned long *irq_bits)
686{
687 struct rmi_device *rmi_dev = fn->rmi_dev;
688 int error;
689 u8 device_status;
690
691 error = rmi_read(rmi_dev, fn->fd.data_base_addr, &device_status);
692 if (error) {
693 dev_err(&fn->dev,
694 "Failed to read device status: %d.\n", error);
695 return error;
696 }
697
Nick Dyer29fd0ec2016-11-22 17:44:12 -0800698 if (RMI_F01_STATUS_BOOTLOADER(device_status))
699 dev_warn(&fn->dev,
700 "Device in bootloader mode, please update firmware\n");
701
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800702 if (RMI_F01_STATUS_UNCONFIGURED(device_status)) {
703 dev_warn(&fn->dev, "Device reset detected.\n");
704 error = rmi_dev->driver->reset_handler(rmi_dev);
705 if (error) {
706 dev_err(&fn->dev, "Device reset failed: %d\n", error);
707 return error;
708 }
709 }
710
711 return 0;
712}
713
714struct rmi_function_handler rmi_f01_handler = {
715 .driver = {
716 .name = "rmi4_f01",
717 /*
718 * Do not allow user unbinding F01 as it is critical
719 * function.
720 */
721 .suppress_bind_attrs = true,
722 },
723 .func = 0x01,
724 .probe = rmi_f01_probe,
Nick Dyerce363f02017-01-31 15:44:49 -0800725 .remove = rmi_f01_remove,
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800726 .config = rmi_f01_config,
727 .attention = rmi_f01_attention,
728 .suspend = rmi_f01_suspend,
729 .resume = rmi_f01_resume,
730};