blob: 27c731ab71b8f9a861cf77a878cb6dace317385b [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 driver provides the core support for a single RMI4-based device.
6 *
7 * The RMI4 specification can be found here (URL split for line length):
8 *
9 * http://www.synaptics.com/sites/default/files/
10 * 511-000136-01-Rev-E-RMI4-Interfacing-Guide.pdf
11 *
12 * This program is free software; you can redistribute it and/or modify it
13 * under the terms of the GNU General Public License version 2 as published by
14 * the Free Software Foundation.
15 */
16
17#include <linux/bitmap.h>
18#include <linux/delay.h>
19#include <linux/fs.h>
Bjorn Andersson3aeed5b2016-11-08 16:34:57 -080020#include <linux/irq.h>
Andrew Duggan2b6a3212016-03-10 15:35:49 -080021#include <linux/kconfig.h>
22#include <linux/pm.h>
23#include <linux/slab.h>
Andrew Duggand8a8b3e2016-03-10 15:46:32 -080024#include <linux/of.h>
Andrew Duggan2b6a3212016-03-10 15:35:49 -080025#include <uapi/linux/input.h>
26#include <linux/rmi.h>
27#include "rmi_bus.h"
28#include "rmi_driver.h"
29
30#define HAS_NONSTANDARD_PDT_MASK 0x40
31#define RMI4_MAX_PAGE 0xff
32#define RMI4_PAGE_SIZE 0x100
33#define RMI4_PAGE_MASK 0xFF00
34
35#define RMI_DEVICE_RESET_CMD 0x01
36#define DEFAULT_RESET_DELAY_MS 100
37
Nick Dyer29fd0ec2016-11-22 17:44:12 -080038void rmi_free_function_list(struct rmi_device *rmi_dev)
Andrew Duggan2b6a3212016-03-10 15:35:49 -080039{
40 struct rmi_function *fn, *tmp;
41 struct rmi_driver_data *data = dev_get_drvdata(&rmi_dev->dev);
42
Nick Dyer6bd0dcf2016-11-07 17:35:15 -080043 rmi_dbg(RMI_DEBUG_CORE, &rmi_dev->dev, "Freeing function list\n");
44
Nick Dyer29fd0ec2016-11-22 17:44:12 -080045 devm_kfree(&rmi_dev->dev, data->irq_memory);
46 data->irq_memory = NULL;
47 data->irq_status = NULL;
48 data->fn_irq_bits = NULL;
49 data->current_irq_mask = NULL;
50 data->new_irq_mask = NULL;
51
Andrew Duggan2b6a3212016-03-10 15:35:49 -080052 data->f01_container = NULL;
Nick Dyer29fd0ec2016-11-22 17:44:12 -080053 data->f34_container = NULL;
Andrew Duggan2b6a3212016-03-10 15:35:49 -080054
55 /* Doing it in the reverse order so F01 will be removed last */
56 list_for_each_entry_safe_reverse(fn, tmp,
57 &data->function_list, node) {
58 list_del(&fn->node);
59 rmi_unregister_function(fn);
60 }
61}
Nick Dyer29fd0ec2016-11-22 17:44:12 -080062EXPORT_SYMBOL_GPL(rmi_free_function_list);
Andrew Duggan2b6a3212016-03-10 15:35:49 -080063
64static int reset_one_function(struct rmi_function *fn)
65{
66 struct rmi_function_handler *fh;
67 int retval = 0;
68
69 if (!fn || !fn->dev.driver)
70 return 0;
71
72 fh = to_rmi_function_handler(fn->dev.driver);
73 if (fh->reset) {
74 retval = fh->reset(fn);
75 if (retval < 0)
76 dev_err(&fn->dev, "Reset failed with code %d.\n",
77 retval);
78 }
79
80 return retval;
81}
82
83static int configure_one_function(struct rmi_function *fn)
84{
85 struct rmi_function_handler *fh;
86 int retval = 0;
87
88 if (!fn || !fn->dev.driver)
89 return 0;
90
91 fh = to_rmi_function_handler(fn->dev.driver);
92 if (fh->config) {
93 retval = fh->config(fn);
94 if (retval < 0)
95 dev_err(&fn->dev, "Config failed with code %d.\n",
96 retval);
97 }
98
99 return retval;
100}
101
102static int rmi_driver_process_reset_requests(struct rmi_device *rmi_dev)
103{
104 struct rmi_driver_data *data = dev_get_drvdata(&rmi_dev->dev);
105 struct rmi_function *entry;
106 int retval;
107
108 list_for_each_entry(entry, &data->function_list, node) {
109 retval = reset_one_function(entry);
110 if (retval < 0)
111 return retval;
112 }
113
114 return 0;
115}
116
117static int rmi_driver_process_config_requests(struct rmi_device *rmi_dev)
118{
119 struct rmi_driver_data *data = dev_get_drvdata(&rmi_dev->dev);
120 struct rmi_function *entry;
121 int retval;
122
123 list_for_each_entry(entry, &data->function_list, node) {
124 retval = configure_one_function(entry);
125 if (retval < 0)
126 return retval;
127 }
128
129 return 0;
130}
131
132static void process_one_interrupt(struct rmi_driver_data *data,
133 struct rmi_function *fn)
134{
135 struct rmi_function_handler *fh;
136
137 if (!fn || !fn->dev.driver)
138 return;
139
140 fh = to_rmi_function_handler(fn->dev.driver);
Andrew Duggana1376d32016-03-17 17:06:24 -0700141 if (fh->attention) {
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800142 bitmap_and(data->fn_irq_bits, data->irq_status, fn->irq_mask,
143 data->irq_count);
144 if (!bitmap_empty(data->fn_irq_bits, data->irq_count))
145 fh->attention(fn, data->fn_irq_bits);
146 }
147}
148
Bjorn Andersson3aeed5b2016-11-08 16:34:57 -0800149static int rmi_process_interrupt_requests(struct rmi_device *rmi_dev)
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800150{
151 struct rmi_driver_data *data = dev_get_drvdata(&rmi_dev->dev);
152 struct device *dev = &rmi_dev->dev;
153 struct rmi_function *entry;
154 int error;
155
156 if (!data)
157 return 0;
158
159 if (!rmi_dev->xport->attn_data) {
160 error = rmi_read_block(rmi_dev,
161 data->f01_container->fd.data_base_addr + 1,
162 data->irq_status, data->num_of_irq_regs);
163 if (error < 0) {
164 dev_err(dev, "Failed to read irqs, code=%d\n", error);
165 return error;
166 }
167 }
168
Benjamin Tissoirese155d4e2016-11-30 16:59:30 -0800169 mutex_lock(&data->irq_mutex);
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800170 bitmap_and(data->irq_status, data->irq_status, data->current_irq_mask,
171 data->irq_count);
Benjamin Tissoirese155d4e2016-11-30 16:59:30 -0800172 /*
173 * At this point, irq_status has all bits that are set in the
174 * interrupt status register and are enabled.
175 */
176 mutex_unlock(&data->irq_mutex);
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800177
178 /*
179 * It would be nice to be able to use irq_chip to handle these
180 * nested IRQs. Unfortunately, most of the current customers for
181 * this driver are using older kernels (3.0.x) that don't support
182 * the features required for that. Once they've shifted to more
183 * recent kernels (say, 3.3 and higher), this should be switched to
184 * use irq_chip.
185 */
186 list_for_each_entry(entry, &data->function_list, node)
Andrew Duggana1376d32016-03-17 17:06:24 -0700187 process_one_interrupt(data, entry);
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800188
189 if (data->input)
190 input_sync(data->input);
191
192 return 0;
193}
Bjorn Andersson3aeed5b2016-11-08 16:34:57 -0800194
195static irqreturn_t rmi_irq_fn(int irq, void *dev_id)
196{
197 struct rmi_device *rmi_dev = dev_id;
198 int ret;
199
200 ret = rmi_process_interrupt_requests(rmi_dev);
201 if (ret)
202 rmi_dbg(RMI_DEBUG_CORE, &rmi_dev->dev,
203 "Failed to process interrupt request: %d\n", ret);
204
205 return IRQ_HANDLED;
206}
207
208static int rmi_irq_init(struct rmi_device *rmi_dev)
209{
210 struct rmi_device_platform_data *pdata = rmi_get_platform_data(rmi_dev);
Benjamin Tissoiresa64ea312016-11-29 17:42:13 -0800211 struct rmi_driver_data *data = dev_get_drvdata(&rmi_dev->dev);
Bjorn Andersson3aeed5b2016-11-08 16:34:57 -0800212 int irq_flags = irq_get_trigger_type(pdata->irq);
213 int ret;
214
215 if (!irq_flags)
216 irq_flags = IRQF_TRIGGER_LOW;
217
218 ret = devm_request_threaded_irq(&rmi_dev->dev, pdata->irq, NULL,
219 rmi_irq_fn, irq_flags | IRQF_ONESHOT,
220 dev_name(rmi_dev->xport->dev),
221 rmi_dev);
222 if (ret < 0) {
223 dev_err(&rmi_dev->dev, "Failed to register interrupt %d\n",
224 pdata->irq);
225
226 return ret;
227 }
228
Benjamin Tissoiresa64ea312016-11-29 17:42:13 -0800229 data->enabled = true;
230
Bjorn Andersson3aeed5b2016-11-08 16:34:57 -0800231 return 0;
232}
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800233
234static int suspend_one_function(struct rmi_function *fn)
235{
236 struct rmi_function_handler *fh;
237 int retval = 0;
238
239 if (!fn || !fn->dev.driver)
240 return 0;
241
242 fh = to_rmi_function_handler(fn->dev.driver);
243 if (fh->suspend) {
244 retval = fh->suspend(fn);
245 if (retval < 0)
246 dev_err(&fn->dev, "Suspend failed with code %d.\n",
247 retval);
248 }
249
250 return retval;
251}
252
253static int rmi_suspend_functions(struct rmi_device *rmi_dev)
254{
255 struct rmi_driver_data *data = dev_get_drvdata(&rmi_dev->dev);
256 struct rmi_function *entry;
257 int retval;
258
259 list_for_each_entry(entry, &data->function_list, node) {
260 retval = suspend_one_function(entry);
Benjamin Tissoirese155d4e2016-11-30 16:59:30 -0800261 if (retval < 0)
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800262 return retval;
263 }
264
265 return 0;
266}
267
268static int resume_one_function(struct rmi_function *fn)
269{
270 struct rmi_function_handler *fh;
271 int retval = 0;
272
273 if (!fn || !fn->dev.driver)
274 return 0;
275
276 fh = to_rmi_function_handler(fn->dev.driver);
277 if (fh->resume) {
278 retval = fh->resume(fn);
279 if (retval < 0)
280 dev_err(&fn->dev, "Resume failed with code %d.\n",
281 retval);
282 }
283
284 return retval;
285}
286
287static int rmi_resume_functions(struct rmi_device *rmi_dev)
288{
289 struct rmi_driver_data *data = dev_get_drvdata(&rmi_dev->dev);
290 struct rmi_function *entry;
291 int retval;
292
293 list_for_each_entry(entry, &data->function_list, node) {
294 retval = resume_one_function(entry);
Benjamin Tissoirese155d4e2016-11-30 16:59:30 -0800295 if (retval < 0)
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800296 return retval;
297 }
298
299 return 0;
300}
301
Nick Dyer29fd0ec2016-11-22 17:44:12 -0800302int rmi_enable_sensor(struct rmi_device *rmi_dev)
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800303{
304 int retval = 0;
305
306 retval = rmi_driver_process_config_requests(rmi_dev);
307 if (retval < 0)
308 return retval;
309
310 return rmi_process_interrupt_requests(rmi_dev);
311}
Nick Dyer29fd0ec2016-11-22 17:44:12 -0800312EXPORT_SYMBOL_GPL(rmi_enable_sensor);
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800313
314/**
315 * rmi_driver_set_input_params - set input device id and other data.
316 *
317 * @rmi_dev: Pointer to an RMI device
318 * @input: Pointer to input device
319 *
320 */
321static int rmi_driver_set_input_params(struct rmi_device *rmi_dev,
322 struct input_dev *input)
323{
324 input->name = SYNAPTICS_INPUT_DEVICE_NAME;
325 input->id.vendor = SYNAPTICS_VENDOR_ID;
326 input->id.bustype = BUS_RMI;
327 return 0;
328}
329
330static void rmi_driver_set_input_name(struct rmi_device *rmi_dev,
331 struct input_dev *input)
332{
333 struct rmi_driver_data *data = dev_get_drvdata(&rmi_dev->dev);
334 char *device_name = rmi_f01_get_product_ID(data->f01_container);
335 char *name;
336
337 name = devm_kasprintf(&rmi_dev->dev, GFP_KERNEL,
338 "Synaptics %s", device_name);
339 if (!name)
340 return;
341
342 input->name = name;
343}
344
345static int rmi_driver_set_irq_bits(struct rmi_device *rmi_dev,
346 unsigned long *mask)
347{
348 int error = 0;
349 struct rmi_driver_data *data = dev_get_drvdata(&rmi_dev->dev);
350 struct device *dev = &rmi_dev->dev;
351
352 mutex_lock(&data->irq_mutex);
353 bitmap_or(data->new_irq_mask,
354 data->current_irq_mask, mask, data->irq_count);
355
356 error = rmi_write_block(rmi_dev,
357 data->f01_container->fd.control_base_addr + 1,
358 data->new_irq_mask, data->num_of_irq_regs);
359 if (error < 0) {
360 dev_err(dev, "%s: Failed to change enabled interrupts!",
361 __func__);
362 goto error_unlock;
363 }
364 bitmap_copy(data->current_irq_mask, data->new_irq_mask,
365 data->num_of_irq_regs);
366
367error_unlock:
368 mutex_unlock(&data->irq_mutex);
369 return error;
370}
371
372static int rmi_driver_clear_irq_bits(struct rmi_device *rmi_dev,
373 unsigned long *mask)
374{
375 int error = 0;
376 struct rmi_driver_data *data = dev_get_drvdata(&rmi_dev->dev);
377 struct device *dev = &rmi_dev->dev;
378
379 mutex_lock(&data->irq_mutex);
380 bitmap_andnot(data->new_irq_mask,
381 data->current_irq_mask, mask, data->irq_count);
382
383 error = rmi_write_block(rmi_dev,
384 data->f01_container->fd.control_base_addr + 1,
385 data->new_irq_mask, data->num_of_irq_regs);
386 if (error < 0) {
387 dev_err(dev, "%s: Failed to change enabled interrupts!",
388 __func__);
389 goto error_unlock;
390 }
391 bitmap_copy(data->current_irq_mask, data->new_irq_mask,
392 data->num_of_irq_regs);
393
394error_unlock:
395 mutex_unlock(&data->irq_mutex);
396 return error;
397}
398
399static int rmi_driver_reset_handler(struct rmi_device *rmi_dev)
400{
401 struct rmi_driver_data *data = dev_get_drvdata(&rmi_dev->dev);
402 int error;
403
404 /*
405 * Can get called before the driver is fully ready to deal with
406 * this situation.
407 */
408 if (!data || !data->f01_container) {
409 dev_warn(&rmi_dev->dev,
410 "Not ready to handle reset yet!\n");
411 return 0;
412 }
413
414 error = rmi_read_block(rmi_dev,
415 data->f01_container->fd.control_base_addr + 1,
416 data->current_irq_mask, data->num_of_irq_regs);
417 if (error < 0) {
418 dev_err(&rmi_dev->dev, "%s: Failed to read current IRQ mask.\n",
419 __func__);
420 return error;
421 }
422
423 error = rmi_driver_process_reset_requests(rmi_dev);
424 if (error < 0)
425 return error;
426
427 error = rmi_driver_process_config_requests(rmi_dev);
428 if (error < 0)
429 return error;
430
431 return 0;
432}
433
434int rmi_read_pdt_entry(struct rmi_device *rmi_dev, struct pdt_entry *entry,
435 u16 pdt_address)
436{
437 u8 buf[RMI_PDT_ENTRY_SIZE];
438 int error;
439
440 error = rmi_read_block(rmi_dev, pdt_address, buf, RMI_PDT_ENTRY_SIZE);
441 if (error) {
442 dev_err(&rmi_dev->dev, "Read PDT entry at %#06x failed, code: %d.\n",
443 pdt_address, error);
444 return error;
445 }
446
447 entry->page_start = pdt_address & RMI4_PAGE_MASK;
448 entry->query_base_addr = buf[0];
449 entry->command_base_addr = buf[1];
450 entry->control_base_addr = buf[2];
451 entry->data_base_addr = buf[3];
452 entry->interrupt_source_count = buf[4] & RMI_PDT_INT_SOURCE_COUNT_MASK;
453 entry->function_version = (buf[4] & RMI_PDT_FUNCTION_VERSION_MASK) >> 5;
454 entry->function_number = buf[5];
455
456 return 0;
457}
458EXPORT_SYMBOL_GPL(rmi_read_pdt_entry);
459
460static void rmi_driver_copy_pdt_to_fd(const struct pdt_entry *pdt,
461 struct rmi_function_descriptor *fd)
462{
463 fd->query_base_addr = pdt->query_base_addr + pdt->page_start;
464 fd->command_base_addr = pdt->command_base_addr + pdt->page_start;
465 fd->control_base_addr = pdt->control_base_addr + pdt->page_start;
466 fd->data_base_addr = pdt->data_base_addr + pdt->page_start;
467 fd->function_number = pdt->function_number;
468 fd->interrupt_source_count = pdt->interrupt_source_count;
469 fd->function_version = pdt->function_version;
470}
471
472#define RMI_SCAN_CONTINUE 0
473#define RMI_SCAN_DONE 1
474
475static int rmi_scan_pdt_page(struct rmi_device *rmi_dev,
476 int page,
Nick Dyerad338e82016-11-07 17:33:07 -0800477 int *empty_pages,
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800478 void *ctx,
479 int (*callback)(struct rmi_device *rmi_dev,
480 void *ctx,
481 const struct pdt_entry *entry))
482{
483 struct rmi_driver_data *data = dev_get_drvdata(&rmi_dev->dev);
484 struct pdt_entry pdt_entry;
485 u16 page_start = RMI4_PAGE_SIZE * page;
486 u16 pdt_start = page_start + PDT_START_SCAN_LOCATION;
487 u16 pdt_end = page_start + PDT_END_SCAN_LOCATION;
488 u16 addr;
489 int error;
490 int retval;
491
492 for (addr = pdt_start; addr >= pdt_end; addr -= RMI_PDT_ENTRY_SIZE) {
493 error = rmi_read_pdt_entry(rmi_dev, &pdt_entry, addr);
494 if (error)
495 return error;
496
497 if (RMI4_END_OF_PDT(pdt_entry.function_number))
498 break;
499
500 retval = callback(rmi_dev, ctx, &pdt_entry);
501 if (retval != RMI_SCAN_CONTINUE)
502 return retval;
503 }
504
Nick Dyerad338e82016-11-07 17:33:07 -0800505 /*
506 * Count number of empty PDT pages. If a gap of two pages
507 * or more is found, stop scanning.
508 */
509 if (addr == pdt_start)
510 ++*empty_pages;
511 else
512 *empty_pages = 0;
513
514 return (data->f01_bootloader_mode || *empty_pages >= 2) ?
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800515 RMI_SCAN_DONE : RMI_SCAN_CONTINUE;
516}
517
Nick Dyer29fd0ec2016-11-22 17:44:12 -0800518int rmi_scan_pdt(struct rmi_device *rmi_dev, void *ctx,
519 int (*callback)(struct rmi_device *rmi_dev,
520 void *ctx, const struct pdt_entry *entry))
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800521{
522 int page;
Nick Dyerad338e82016-11-07 17:33:07 -0800523 int empty_pages = 0;
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800524 int retval = RMI_SCAN_DONE;
525
526 for (page = 0; page <= RMI4_MAX_PAGE; page++) {
Nick Dyerad338e82016-11-07 17:33:07 -0800527 retval = rmi_scan_pdt_page(rmi_dev, page, &empty_pages,
528 ctx, callback);
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800529 if (retval != RMI_SCAN_CONTINUE)
530 break;
531 }
532
533 return retval < 0 ? retval : 0;
534}
Nick Dyer29fd0ec2016-11-22 17:44:12 -0800535EXPORT_SYMBOL_GPL(rmi_scan_pdt);
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800536
537int rmi_read_register_desc(struct rmi_device *d, u16 addr,
538 struct rmi_register_descriptor *rdesc)
539{
540 int ret;
541 u8 size_presence_reg;
542 u8 buf[35];
543 int presense_offset = 1;
544 u8 *struct_buf;
545 int reg;
546 int offset = 0;
547 int map_offset = 0;
548 int i;
549 int b;
550
551 /*
552 * The first register of the register descriptor is the size of
553 * the register descriptor's presense register.
554 */
555 ret = rmi_read(d, addr, &size_presence_reg);
556 if (ret)
557 return ret;
558 ++addr;
559
560 if (size_presence_reg < 0 || size_presence_reg > 35)
561 return -EIO;
562
563 memset(buf, 0, sizeof(buf));
564
565 /*
566 * The presence register contains the size of the register structure
567 * and a bitmap which identified which packet registers are present
568 * for this particular register type (ie query, control, or data).
569 */
570 ret = rmi_read_block(d, addr, buf, size_presence_reg);
571 if (ret)
572 return ret;
573 ++addr;
574
575 if (buf[0] == 0) {
576 presense_offset = 3;
577 rdesc->struct_size = buf[1] | (buf[2] << 8);
578 } else {
579 rdesc->struct_size = buf[0];
580 }
581
582 for (i = presense_offset; i < size_presence_reg; i++) {
583 for (b = 0; b < 8; b++) {
584 if (buf[i] & (0x1 << b))
585 bitmap_set(rdesc->presense_map, map_offset, 1);
586 ++map_offset;
587 }
588 }
589
590 rdesc->num_registers = bitmap_weight(rdesc->presense_map,
591 RMI_REG_DESC_PRESENSE_BITS);
592
593 rdesc->registers = devm_kzalloc(&d->dev, rdesc->num_registers *
594 sizeof(struct rmi_register_desc_item),
595 GFP_KERNEL);
596 if (!rdesc->registers)
597 return -ENOMEM;
598
599 /*
600 * Allocate a temporary buffer to hold the register structure.
601 * I'm not using devm_kzalloc here since it will not be retained
602 * after exiting this function
603 */
604 struct_buf = kzalloc(rdesc->struct_size, GFP_KERNEL);
605 if (!struct_buf)
606 return -ENOMEM;
607
608 /*
609 * The register structure contains information about every packet
610 * register of this type. This includes the size of the packet
611 * register and a bitmap of all subpackets contained in the packet
612 * register.
613 */
614 ret = rmi_read_block(d, addr, struct_buf, rdesc->struct_size);
615 if (ret)
616 goto free_struct_buff;
617
618 reg = find_first_bit(rdesc->presense_map, RMI_REG_DESC_PRESENSE_BITS);
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800619 for (i = 0; i < rdesc->num_registers; i++) {
620 struct rmi_register_desc_item *item = &rdesc->registers[i];
621 int reg_size = struct_buf[offset];
622
623 ++offset;
624 if (reg_size == 0) {
625 reg_size = struct_buf[offset] |
626 (struct_buf[offset + 1] << 8);
627 offset += 2;
628 }
629
630 if (reg_size == 0) {
631 reg_size = struct_buf[offset] |
632 (struct_buf[offset + 1] << 8) |
633 (struct_buf[offset + 2] << 16) |
634 (struct_buf[offset + 3] << 24);
635 offset += 4;
636 }
637
638 item->reg = reg;
639 item->reg_size = reg_size;
640
Andrew Duggan3e29d6b2016-08-22 11:28:11 -0700641 map_offset = 0;
642
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800643 do {
644 for (b = 0; b < 7; b++) {
645 if (struct_buf[offset] & (0x1 << b))
646 bitmap_set(item->subpacket_map,
647 map_offset, 1);
648 ++map_offset;
649 }
650 } while (struct_buf[offset++] & 0x80);
651
652 item->num_subpackets = bitmap_weight(item->subpacket_map,
653 RMI_REG_DESC_SUBPACKET_BITS);
654
655 rmi_dbg(RMI_DEBUG_CORE, &d->dev,
656 "%s: reg: %d reg size: %ld subpackets: %d\n", __func__,
657 item->reg, item->reg_size, item->num_subpackets);
658
659 reg = find_next_bit(rdesc->presense_map,
660 RMI_REG_DESC_PRESENSE_BITS, reg + 1);
661 }
662
663free_struct_buff:
664 kfree(struct_buf);
665 return ret;
666}
667EXPORT_SYMBOL_GPL(rmi_read_register_desc);
668
669const struct rmi_register_desc_item *rmi_get_register_desc_item(
670 struct rmi_register_descriptor *rdesc, u16 reg)
671{
672 const struct rmi_register_desc_item *item;
673 int i;
674
675 for (i = 0; i < rdesc->num_registers; i++) {
676 item = &rdesc->registers[i];
677 if (item->reg == reg)
678 return item;
679 }
680
681 return NULL;
682}
683EXPORT_SYMBOL_GPL(rmi_get_register_desc_item);
684
685size_t rmi_register_desc_calc_size(struct rmi_register_descriptor *rdesc)
686{
687 const struct rmi_register_desc_item *item;
688 int i;
689 size_t size = 0;
690
691 for (i = 0; i < rdesc->num_registers; i++) {
692 item = &rdesc->registers[i];
693 size += item->reg_size;
694 }
695 return size;
696}
697EXPORT_SYMBOL_GPL(rmi_register_desc_calc_size);
698
699/* Compute the register offset relative to the base address */
700int rmi_register_desc_calc_reg_offset(
701 struct rmi_register_descriptor *rdesc, u16 reg)
702{
703 const struct rmi_register_desc_item *item;
704 int offset = 0;
705 int i;
706
707 for (i = 0; i < rdesc->num_registers; i++) {
708 item = &rdesc->registers[i];
709 if (item->reg == reg)
710 return offset;
711 ++offset;
712 }
713 return -1;
714}
715EXPORT_SYMBOL_GPL(rmi_register_desc_calc_reg_offset);
716
717bool rmi_register_desc_has_subpacket(const struct rmi_register_desc_item *item,
718 u8 subpacket)
719{
720 return find_next_bit(item->subpacket_map, RMI_REG_DESC_PRESENSE_BITS,
721 subpacket) == subpacket;
722}
723
724/* Indicates that flash programming is enabled (bootloader mode). */
725#define RMI_F01_STATUS_BOOTLOADER(status) (!!((status) & 0x40))
726
727/*
728 * Given the PDT entry for F01, read the device status register to determine
729 * if we're stuck in bootloader mode or not.
730 *
731 */
732static int rmi_check_bootloader_mode(struct rmi_device *rmi_dev,
733 const struct pdt_entry *pdt)
734{
735 int error;
736 u8 device_status;
737
738 error = rmi_read(rmi_dev, pdt->data_base_addr + pdt->page_start,
739 &device_status);
740 if (error) {
741 dev_err(&rmi_dev->dev,
742 "Failed to read device status: %d.\n", error);
743 return error;
744 }
745
746 return RMI_F01_STATUS_BOOTLOADER(device_status);
747}
748
749static int rmi_count_irqs(struct rmi_device *rmi_dev,
750 void *ctx, const struct pdt_entry *pdt)
751{
752 struct rmi_driver_data *data = dev_get_drvdata(&rmi_dev->dev);
753 int *irq_count = ctx;
754
755 *irq_count += pdt->interrupt_source_count;
Nick Dyer29fd0ec2016-11-22 17:44:12 -0800756 if (pdt->function_number == 0x01)
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800757 data->f01_bootloader_mode =
758 rmi_check_bootloader_mode(rmi_dev, pdt);
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800759
760 return RMI_SCAN_CONTINUE;
761}
762
Nick Dyer29fd0ec2016-11-22 17:44:12 -0800763int rmi_initial_reset(struct rmi_device *rmi_dev, void *ctx,
764 const struct pdt_entry *pdt)
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800765{
766 int error;
767
768 if (pdt->function_number == 0x01) {
769 u16 cmd_addr = pdt->page_start + pdt->command_base_addr;
770 u8 cmd_buf = RMI_DEVICE_RESET_CMD;
771 const struct rmi_device_platform_data *pdata =
772 rmi_get_platform_data(rmi_dev);
773
774 if (rmi_dev->xport->ops->reset) {
775 error = rmi_dev->xport->ops->reset(rmi_dev->xport,
776 cmd_addr);
777 if (error)
778 return error;
779
780 return RMI_SCAN_DONE;
781 }
782
Nick Dyer8029a282016-11-07 17:36:57 -0800783 rmi_dbg(RMI_DEBUG_CORE, &rmi_dev->dev, "Sending reset\n");
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800784 error = rmi_write_block(rmi_dev, cmd_addr, &cmd_buf, 1);
785 if (error) {
786 dev_err(&rmi_dev->dev,
787 "Initial reset failed. Code = %d.\n", error);
788 return error;
789 }
790
791 mdelay(pdata->reset_delay_ms ?: DEFAULT_RESET_DELAY_MS);
792
793 return RMI_SCAN_DONE;
794 }
795
796 /* F01 should always be on page 0. If we don't find it there, fail. */
797 return pdt->page_start == 0 ? RMI_SCAN_CONTINUE : -ENODEV;
798}
Nick Dyer29fd0ec2016-11-22 17:44:12 -0800799EXPORT_SYMBOL_GPL(rmi_initial_reset);
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800800
801static int rmi_create_function(struct rmi_device *rmi_dev,
802 void *ctx, const struct pdt_entry *pdt)
803{
804 struct device *dev = &rmi_dev->dev;
805 struct rmi_driver_data *data = dev_get_drvdata(&rmi_dev->dev);
806 int *current_irq_count = ctx;
807 struct rmi_function *fn;
808 int i;
809 int error;
810
811 rmi_dbg(RMI_DEBUG_CORE, dev, "Initializing F%02X.\n",
812 pdt->function_number);
813
814 fn = kzalloc(sizeof(struct rmi_function) +
815 BITS_TO_LONGS(data->irq_count) * sizeof(unsigned long),
816 GFP_KERNEL);
817 if (!fn) {
818 dev_err(dev, "Failed to allocate memory for F%02X\n",
819 pdt->function_number);
820 return -ENOMEM;
821 }
822
823 INIT_LIST_HEAD(&fn->node);
824 rmi_driver_copy_pdt_to_fd(pdt, &fn->fd);
825
826 fn->rmi_dev = rmi_dev;
827
828 fn->num_of_irqs = pdt->interrupt_source_count;
829 fn->irq_pos = *current_irq_count;
830 *current_irq_count += fn->num_of_irqs;
831
832 for (i = 0; i < fn->num_of_irqs; i++)
833 set_bit(fn->irq_pos + i, fn->irq_mask);
834
835 error = rmi_register_function(fn);
836 if (error)
837 goto err_put_fn;
838
839 if (pdt->function_number == 0x01)
840 data->f01_container = fn;
Nick Dyer29fd0ec2016-11-22 17:44:12 -0800841 else if (pdt->function_number == 0x34)
842 data->f34_container = fn;
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800843
844 list_add_tail(&fn->node, &data->function_list);
845
846 return RMI_SCAN_CONTINUE;
847
848err_put_fn:
849 put_device(&fn->dev);
850 return error;
851}
852
Benjamin Tissoiresa64ea312016-11-29 17:42:13 -0800853void rmi_enable_irq(struct rmi_device *rmi_dev, bool clear_wake)
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800854{
Bjorn Andersson3aeed5b2016-11-08 16:34:57 -0800855 struct rmi_device_platform_data *pdata = rmi_get_platform_data(rmi_dev);
Benjamin Tissoiresa64ea312016-11-29 17:42:13 -0800856 struct rmi_driver_data *data = dev_get_drvdata(&rmi_dev->dev);
Bjorn Andersson3aeed5b2016-11-08 16:34:57 -0800857 int irq = pdata->irq;
Benjamin Tissoiresa64ea312016-11-29 17:42:13 -0800858 int irq_flags;
859 int retval;
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800860
Benjamin Tissoiresa64ea312016-11-29 17:42:13 -0800861 mutex_lock(&data->enabled_mutex);
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800862
Benjamin Tissoiresa64ea312016-11-29 17:42:13 -0800863 if (data->enabled)
864 goto out;
865
866 enable_irq(irq);
867 data->enabled = true;
868 if (clear_wake && device_may_wakeup(rmi_dev->xport->dev)) {
869 retval = disable_irq_wake(irq);
870 if (!retval)
871 dev_warn(&rmi_dev->dev,
872 "Failed to disable irq for wake: %d\n",
873 retval);
874 }
875
876 /*
877 * Call rmi_process_interrupt_requests() after enabling irq,
878 * otherwise we may lose interrupt on edge-triggered systems.
879 */
880 irq_flags = irq_get_trigger_type(pdata->irq);
881 if (irq_flags & IRQ_TYPE_EDGE_BOTH)
882 rmi_process_interrupt_requests(rmi_dev);
883
884out:
885 mutex_unlock(&data->enabled_mutex);
886}
887
888void rmi_disable_irq(struct rmi_device *rmi_dev, bool enable_wake)
889{
890 struct rmi_device_platform_data *pdata = rmi_get_platform_data(rmi_dev);
891 struct rmi_driver_data *data = dev_get_drvdata(&rmi_dev->dev);
892 int irq = pdata->irq;
893 int retval;
894
895 mutex_lock(&data->enabled_mutex);
896
897 if (!data->enabled)
898 goto out;
899
900 data->enabled = false;
Bjorn Andersson3aeed5b2016-11-08 16:34:57 -0800901 disable_irq(irq);
902 if (enable_wake && device_may_wakeup(rmi_dev->xport->dev)) {
903 retval = enable_irq_wake(irq);
904 if (!retval)
905 dev_warn(&rmi_dev->dev,
906 "Failed to enable irq for wake: %d\n",
907 retval);
908 }
Benjamin Tissoiresa64ea312016-11-29 17:42:13 -0800909
910out:
911 mutex_unlock(&data->enabled_mutex);
912}
913
914int rmi_driver_suspend(struct rmi_device *rmi_dev, bool enable_wake)
915{
916 int retval;
917
918 retval = rmi_suspend_functions(rmi_dev);
919 if (retval)
920 dev_warn(&rmi_dev->dev, "Failed to suspend functions: %d\n",
921 retval);
922
923 rmi_disable_irq(rmi_dev, enable_wake);
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800924 return retval;
925}
926EXPORT_SYMBOL_GPL(rmi_driver_suspend);
927
Bjorn Andersson3aeed5b2016-11-08 16:34:57 -0800928int rmi_driver_resume(struct rmi_device *rmi_dev, bool clear_wake)
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800929{
930 int retval;
931
Benjamin Tissoiresa64ea312016-11-29 17:42:13 -0800932 rmi_enable_irq(rmi_dev, clear_wake);
Bjorn Andersson3aeed5b2016-11-08 16:34:57 -0800933
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800934 retval = rmi_resume_functions(rmi_dev);
935 if (retval)
936 dev_warn(&rmi_dev->dev, "Failed to suspend functions: %d\n",
937 retval);
938
939 return retval;
940}
941EXPORT_SYMBOL_GPL(rmi_driver_resume);
942
943static int rmi_driver_remove(struct device *dev)
944{
945 struct rmi_device *rmi_dev = to_rmi_device(dev);
Bjorn Andersson3aeed5b2016-11-08 16:34:57 -0800946
Benjamin Tissoiresa64ea312016-11-29 17:42:13 -0800947 rmi_disable_irq(rmi_dev, false);
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800948
Nick Dyer29fd0ec2016-11-22 17:44:12 -0800949 rmi_f34_remove_sysfs(rmi_dev);
Andrew Duggan2b6a3212016-03-10 15:35:49 -0800950 rmi_free_function_list(rmi_dev);
951
952 return 0;
953}
954
Andrew Duggand8a8b3e2016-03-10 15:46:32 -0800955#ifdef CONFIG_OF
956static int rmi_driver_of_probe(struct device *dev,
957 struct rmi_device_platform_data *pdata)
958{
959 int retval;
960
961 retval = rmi_of_property_read_u32(dev, &pdata->reset_delay_ms,
962 "syna,reset-delay-ms", 1);
963 if (retval)
964 return retval;
965
966 return 0;
967}
968#else
969static inline int rmi_driver_of_probe(struct device *dev,
970 struct rmi_device_platform_data *pdata)
971{
972 return -ENODEV;
973}
974#endif
975
Nick Dyer29fd0ec2016-11-22 17:44:12 -0800976int rmi_probe_interrupts(struct rmi_driver_data *data)
Nick Dyer6bd0dcf2016-11-07 17:35:15 -0800977{
978 struct rmi_device *rmi_dev = data->rmi_dev;
979 struct device *dev = &rmi_dev->dev;
980 int irq_count;
981 size_t size;
Nick Dyer6bd0dcf2016-11-07 17:35:15 -0800982 int retval;
983
984 /*
985 * We need to count the IRQs and allocate their storage before scanning
986 * the PDT and creating the function entries, because adding a new
987 * function can trigger events that result in the IRQ related storage
988 * being accessed.
989 */
990 rmi_dbg(RMI_DEBUG_CORE, dev, "%s: Counting IRQs.\n", __func__);
991 irq_count = 0;
992 retval = rmi_scan_pdt(rmi_dev, &irq_count, rmi_count_irqs);
993 if (retval < 0) {
994 dev_err(dev, "IRQ counting failed with code %d.\n", retval);
995 return retval;
996 }
Nick Dyer29fd0ec2016-11-22 17:44:12 -0800997
998 if (data->f01_bootloader_mode)
999 dev_warn(&rmi_dev->dev, "Device in bootloader mode.\n");
1000
Nick Dyer6bd0dcf2016-11-07 17:35:15 -08001001 data->irq_count = irq_count;
1002 data->num_of_irq_regs = (data->irq_count + 7) / 8;
1003
1004 size = BITS_TO_LONGS(data->irq_count) * sizeof(unsigned long);
Nick Dyer29fd0ec2016-11-22 17:44:12 -08001005 data->irq_memory = devm_kzalloc(dev, size * 4, GFP_KERNEL);
1006 if (!data->irq_memory) {
Nick Dyer6bd0dcf2016-11-07 17:35:15 -08001007 dev_err(dev, "Failed to allocate memory for irq masks.\n");
1008 return retval;
1009 }
1010
Nick Dyer29fd0ec2016-11-22 17:44:12 -08001011 data->irq_status = data->irq_memory + size * 0;
1012 data->fn_irq_bits = data->irq_memory + size * 1;
1013 data->current_irq_mask = data->irq_memory + size * 2;
1014 data->new_irq_mask = data->irq_memory + size * 3;
Nick Dyer6bd0dcf2016-11-07 17:35:15 -08001015
1016 return retval;
1017}
Nick Dyer29fd0ec2016-11-22 17:44:12 -08001018EXPORT_SYMBOL_GPL(rmi_probe_interrupts);
Nick Dyer6bd0dcf2016-11-07 17:35:15 -08001019
Nick Dyer29fd0ec2016-11-22 17:44:12 -08001020int rmi_init_functions(struct rmi_driver_data *data)
Nick Dyer6bd0dcf2016-11-07 17:35:15 -08001021{
1022 struct rmi_device *rmi_dev = data->rmi_dev;
1023 struct device *dev = &rmi_dev->dev;
1024 int irq_count;
1025 int retval;
1026
1027 irq_count = 0;
1028 rmi_dbg(RMI_DEBUG_CORE, dev, "%s: Creating functions.\n", __func__);
1029 retval = rmi_scan_pdt(rmi_dev, &irq_count, rmi_create_function);
1030 if (retval < 0) {
1031 dev_err(dev, "Function creation failed with code %d.\n",
1032 retval);
1033 goto err_destroy_functions;
1034 }
1035
1036 if (!data->f01_container) {
1037 dev_err(dev, "Missing F01 container!\n");
1038 retval = -EINVAL;
1039 goto err_destroy_functions;
1040 }
1041
1042 retval = rmi_read_block(rmi_dev,
1043 data->f01_container->fd.control_base_addr + 1,
1044 data->current_irq_mask, data->num_of_irq_regs);
1045 if (retval < 0) {
1046 dev_err(dev, "%s: Failed to read current IRQ mask.\n",
1047 __func__);
1048 goto err_destroy_functions;
1049 }
1050
1051 return 0;
1052
1053err_destroy_functions:
1054 rmi_free_function_list(rmi_dev);
1055 return retval;
1056}
Nick Dyer29fd0ec2016-11-22 17:44:12 -08001057EXPORT_SYMBOL_GPL(rmi_init_functions);
Nick Dyer6bd0dcf2016-11-07 17:35:15 -08001058
Andrew Duggan2b6a3212016-03-10 15:35:49 -08001059static int rmi_driver_probe(struct device *dev)
1060{
1061 struct rmi_driver *rmi_driver;
1062 struct rmi_driver_data *data;
1063 struct rmi_device_platform_data *pdata;
1064 struct rmi_device *rmi_dev;
Andrew Duggan2b6a3212016-03-10 15:35:49 -08001065 int retval;
1066
1067 rmi_dbg(RMI_DEBUG_CORE, dev, "%s: Starting probe.\n",
1068 __func__);
1069
1070 if (!rmi_is_physical_device(dev)) {
1071 rmi_dbg(RMI_DEBUG_CORE, dev, "Not a physical device.\n");
1072 return -ENODEV;
1073 }
1074
1075 rmi_dev = to_rmi_device(dev);
1076 rmi_driver = to_rmi_driver(dev->driver);
1077 rmi_dev->driver = rmi_driver;
1078
1079 pdata = rmi_get_platform_data(rmi_dev);
1080
Andrew Duggand8a8b3e2016-03-10 15:46:32 -08001081 if (rmi_dev->xport->dev->of_node) {
1082 retval = rmi_driver_of_probe(rmi_dev->xport->dev, pdata);
1083 if (retval)
1084 return retval;
1085 }
1086
Andrew Duggan2b6a3212016-03-10 15:35:49 -08001087 data = devm_kzalloc(dev, sizeof(struct rmi_driver_data), GFP_KERNEL);
1088 if (!data)
1089 return -ENOMEM;
1090
1091 INIT_LIST_HEAD(&data->function_list);
1092 data->rmi_dev = rmi_dev;
1093 dev_set_drvdata(&rmi_dev->dev, data);
1094
1095 /*
1096 * Right before a warm boot, the sensor might be in some unusual state,
1097 * such as F54 diagnostics, or F34 bootloader mode after a firmware
1098 * or configuration update. In order to clear the sensor to a known
1099 * state and/or apply any updates, we issue a initial reset to clear any
1100 * previous settings and force it into normal operation.
1101 *
1102 * We have to do this before actually building the PDT because
1103 * the reflash updates (if any) might cause various registers to move
1104 * around.
1105 *
1106 * For a number of reasons, this initial reset may fail to return
1107 * within the specified time, but we'll still be able to bring up the
1108 * driver normally after that failure. This occurs most commonly in
1109 * a cold boot situation (where then firmware takes longer to come up
1110 * than from a warm boot) and the reset_delay_ms in the platform data
1111 * has been set too short to accommodate that. Since the sensor will
1112 * eventually come up and be usable, we don't want to just fail here
1113 * and leave the customer's device unusable. So we warn them, and
1114 * continue processing.
1115 */
1116 retval = rmi_scan_pdt(rmi_dev, NULL, rmi_initial_reset);
1117 if (retval < 0)
1118 dev_warn(dev, "RMI initial reset failed! Continuing in spite of this.\n");
1119
1120 retval = rmi_read(rmi_dev, PDT_PROPERTIES_LOCATION, &data->pdt_props);
1121 if (retval < 0) {
1122 /*
1123 * we'll print out a warning and continue since
1124 * failure to get the PDT properties is not a cause to fail
1125 */
1126 dev_warn(dev, "Could not read PDT properties from %#06x (code %d). Assuming 0x00.\n",
1127 PDT_PROPERTIES_LOCATION, retval);
1128 }
1129
Andrew Duggan2b6a3212016-03-10 15:35:49 -08001130 mutex_init(&data->irq_mutex);
Benjamin Tissoiresa64ea312016-11-29 17:42:13 -08001131 mutex_init(&data->enabled_mutex);
Andrew Duggan2b6a3212016-03-10 15:35:49 -08001132
Nick Dyer6bd0dcf2016-11-07 17:35:15 -08001133 retval = rmi_probe_interrupts(data);
1134 if (retval)
Andrew Duggan2b6a3212016-03-10 15:35:49 -08001135 goto err;
Andrew Duggan2b6a3212016-03-10 15:35:49 -08001136
1137 if (rmi_dev->xport->input) {
1138 /*
1139 * The transport driver already has an input device.
1140 * In some cases it is preferable to reuse the transport
1141 * devices input device instead of creating a new one here.
1142 * One example is some HID touchpads report "pass-through"
1143 * button events are not reported by rmi registers.
1144 */
1145 data->input = rmi_dev->xport->input;
1146 } else {
1147 data->input = devm_input_allocate_device(dev);
1148 if (!data->input) {
1149 dev_err(dev, "%s: Failed to allocate input device.\n",
1150 __func__);
1151 retval = -ENOMEM;
Nick Dyer6bd0dcf2016-11-07 17:35:15 -08001152 goto err;
Andrew Duggan2b6a3212016-03-10 15:35:49 -08001153 }
1154 rmi_driver_set_input_params(rmi_dev, data->input);
1155 data->input->phys = devm_kasprintf(dev, GFP_KERNEL,
1156 "%s/input0", dev_name(dev));
1157 }
1158
Nick Dyer6bd0dcf2016-11-07 17:35:15 -08001159 retval = rmi_init_functions(data);
1160 if (retval)
1161 goto err;
Andrew Duggan2b6a3212016-03-10 15:35:49 -08001162
Nick Dyer29fd0ec2016-11-22 17:44:12 -08001163 retval = rmi_f34_create_sysfs(rmi_dev);
1164 if (retval)
1165 goto err;
1166
Andrew Duggan2b6a3212016-03-10 15:35:49 -08001167 if (data->input) {
1168 rmi_driver_set_input_name(rmi_dev, data->input);
1169 if (!rmi_dev->xport->input) {
1170 if (input_register_device(data->input)) {
1171 dev_err(dev, "%s: Failed to register input device.\n",
1172 __func__);
1173 goto err_destroy_functions;
1174 }
1175 }
1176 }
1177
Bjorn Andersson3aeed5b2016-11-08 16:34:57 -08001178 retval = rmi_irq_init(rmi_dev);
1179 if (retval < 0)
1180 goto err_destroy_functions;
1181
Andrew Duggan2b6a3212016-03-10 15:35:49 -08001182 if (data->f01_container->dev.driver)
1183 /* Driver already bound, so enable ATTN now. */
Nick Dyer29fd0ec2016-11-22 17:44:12 -08001184 return rmi_enable_sensor(rmi_dev);
Andrew Duggan2b6a3212016-03-10 15:35:49 -08001185
1186 return 0;
1187
1188err_destroy_functions:
1189 rmi_free_function_list(rmi_dev);
1190err:
1191 return retval < 0 ? retval : 0;
1192}
1193
1194static struct rmi_driver rmi_physical_driver = {
1195 .driver = {
1196 .owner = THIS_MODULE,
1197 .name = "rmi4_physical",
1198 .bus = &rmi_bus_type,
1199 .probe = rmi_driver_probe,
1200 .remove = rmi_driver_remove,
1201 },
1202 .reset_handler = rmi_driver_reset_handler,
1203 .clear_irq_bits = rmi_driver_clear_irq_bits,
1204 .set_irq_bits = rmi_driver_set_irq_bits,
1205 .set_input_params = rmi_driver_set_input_params,
1206};
1207
1208bool rmi_is_physical_driver(struct device_driver *drv)
1209{
1210 return drv == &rmi_physical_driver.driver;
1211}
1212
1213int __init rmi_register_physical_driver(void)
1214{
1215 int error;
1216
1217 error = driver_register(&rmi_physical_driver.driver);
1218 if (error) {
1219 pr_err("%s: driver register failed, code=%d.\n", __func__,
1220 error);
1221 return error;
1222 }
1223
1224 return 0;
1225}
1226
1227void __exit rmi_unregister_physical_driver(void)
1228{
1229 driver_unregister(&rmi_physical_driver.driver);
1230}