blob: 82a4964e5eb9103837883a5b9594d32a01555cef [file] [log] [blame]
Andrew Dugganb43d2c12016-03-10 15:55:29 -08001/*
2 * Copyright (c) 2012-2016 Synaptics Incorporated
3 *
4 * This program is free software; you can redistribute it and/or modify it
5 * under the terms of the GNU General Public License version 2 as published by
6 * the Free Software Foundation.
7 */
8#include <linux/input.h>
9#include <linux/input/mt.h>
10#include <linux/rmi.h>
11#include "rmi_driver.h"
12#include "rmi_2d_sensor.h"
13
14enum rmi_f12_object_type {
15 RMI_F12_OBJECT_NONE = 0x00,
16 RMI_F12_OBJECT_FINGER = 0x01,
17 RMI_F12_OBJECT_STYLUS = 0x02,
18 RMI_F12_OBJECT_PALM = 0x03,
19 RMI_F12_OBJECT_UNCLASSIFIED = 0x04,
20 RMI_F12_OBJECT_GLOVED_FINGER = 0x06,
21 RMI_F12_OBJECT_NARROW_OBJECT = 0x07,
22 RMI_F12_OBJECT_HAND_EDGE = 0x08,
23 RMI_F12_OBJECT_COVER = 0x0A,
24 RMI_F12_OBJECT_STYLUS_2 = 0x0B,
25 RMI_F12_OBJECT_ERASER = 0x0C,
26 RMI_F12_OBJECT_SMALL_OBJECT = 0x0D,
27};
28
Andrew Duggan6d0dbea2016-11-08 16:46:20 -080029#define F12_DATA1_BYTES_PER_OBJ 8
30
Andrew Dugganb43d2c12016-03-10 15:55:29 -080031struct f12_data {
Andrew Dugganb43d2c12016-03-10 15:55:29 -080032 struct rmi_2d_sensor sensor;
33 struct rmi_2d_sensor_platform_data sensor_pdata;
Andrew Duggan24f63b12016-11-08 16:47:58 -080034 bool has_dribble;
Andrew Dugganb43d2c12016-03-10 15:55:29 -080035
36 u16 data_addr;
37
38 struct rmi_register_descriptor query_reg_desc;
39 struct rmi_register_descriptor control_reg_desc;
40 struct rmi_register_descriptor data_reg_desc;
41
42 /* F12 Data1 describes sensed objects */
43 const struct rmi_register_desc_item *data1;
44 u16 data1_offset;
45
46 /* F12 Data5 describes finger ACM */
47 const struct rmi_register_desc_item *data5;
48 u16 data5_offset;
49
50 /* F12 Data5 describes Pen */
51 const struct rmi_register_desc_item *data6;
52 u16 data6_offset;
53
54
55 /* F12 Data9 reports relative data */
56 const struct rmi_register_desc_item *data9;
57 u16 data9_offset;
58
59 const struct rmi_register_desc_item *data15;
60 u16 data15_offset;
61};
62
63static int rmi_f12_read_sensor_tuning(struct f12_data *f12)
64{
65 const struct rmi_register_desc_item *item;
66 struct rmi_2d_sensor *sensor = &f12->sensor;
67 struct rmi_function *fn = sensor->fn;
68 struct rmi_device *rmi_dev = fn->rmi_dev;
69 int ret;
70 int offset;
Andrew Duggane4add7b2016-07-19 17:53:59 -070071 u8 buf[15];
Andrew Dugganb43d2c12016-03-10 15:55:29 -080072 int pitch_x = 0;
73 int pitch_y = 0;
74 int clip_x_low = 0;
75 int clip_x_high = 0;
76 int clip_y_low = 0;
77 int clip_y_high = 0;
78 int rx_receivers = 0;
79 int tx_receivers = 0;
80 int sensor_flags = 0;
81
82 item = rmi_get_register_desc_item(&f12->control_reg_desc, 8);
83 if (!item) {
84 dev_err(&fn->dev,
85 "F12 does not have the sensor tuning control register\n");
86 return -ENODEV;
87 }
88
89 offset = rmi_register_desc_calc_reg_offset(&f12->control_reg_desc, 8);
90
Andrew Duggane4add7b2016-07-19 17:53:59 -070091 if (item->reg_size > sizeof(buf)) {
92 dev_err(&fn->dev,
93 "F12 control8 should be no bigger than %zd bytes, not: %ld\n",
94 sizeof(buf), item->reg_size);
Andrew Dugganb43d2c12016-03-10 15:55:29 -080095 return -ENODEV;
96 }
97
98 ret = rmi_read_block(rmi_dev, fn->fd.control_base_addr + offset, buf,
99 item->reg_size);
100 if (ret)
101 return ret;
102
103 offset = 0;
104 if (rmi_register_desc_has_subpacket(item, 0)) {
105 sensor->max_x = (buf[offset + 1] << 8) | buf[offset];
106 sensor->max_y = (buf[offset + 3] << 8) | buf[offset + 2];
107 offset += 4;
108 }
109
110 rmi_dbg(RMI_DEBUG_FN, &fn->dev, "%s: max_x: %d max_y: %d\n", __func__,
111 sensor->max_x, sensor->max_y);
112
113 if (rmi_register_desc_has_subpacket(item, 1)) {
114 pitch_x = (buf[offset + 1] << 8) | buf[offset];
115 pitch_y = (buf[offset + 3] << 8) | buf[offset + 2];
116 offset += 4;
117 }
118
119 if (rmi_register_desc_has_subpacket(item, 2)) {
120 sensor->axis_align.clip_x_low = buf[offset];
121 sensor->axis_align.clip_x_high = sensor->max_x
122 - buf[offset + 1];
123 sensor->axis_align.clip_y_low = buf[offset + 2];
124 sensor->axis_align.clip_y_high = sensor->max_y
125 - buf[offset + 3];
126 offset += 4;
127 }
128
129 rmi_dbg(RMI_DEBUG_FN, &fn->dev, "%s: x low: %d x high: %d y low: %d y high: %d\n",
130 __func__, clip_x_low, clip_x_high, clip_y_low, clip_y_high);
131
132 if (rmi_register_desc_has_subpacket(item, 3)) {
133 rx_receivers = buf[offset];
134 tx_receivers = buf[offset + 1];
135 offset += 2;
136 }
137
138 if (rmi_register_desc_has_subpacket(item, 4)) {
139 sensor_flags = buf[offset];
140 offset += 1;
141 }
142
143 sensor->x_mm = (pitch_x * rx_receivers) >> 12;
144 sensor->y_mm = (pitch_y * tx_receivers) >> 12;
145
146 rmi_dbg(RMI_DEBUG_FN, &fn->dev, "%s: x_mm: %d y_mm: %d\n", __func__,
147 sensor->x_mm, sensor->y_mm);
148
149 return 0;
150}
151
Andrew Duggan6d0dbea2016-11-08 16:46:20 -0800152static void rmi_f12_process_objects(struct f12_data *f12, u8 *data1, int size)
Andrew Dugganb43d2c12016-03-10 15:55:29 -0800153{
154 int i;
155 struct rmi_2d_sensor *sensor = &f12->sensor;
Andrew Duggan6d0dbea2016-11-08 16:46:20 -0800156 int objects = f12->data1->num_subpackets;
Andrew Dugganb43d2c12016-03-10 15:55:29 -0800157
Andrew Duggan6d0dbea2016-11-08 16:46:20 -0800158 if ((f12->data1->num_subpackets * F12_DATA1_BYTES_PER_OBJ) > size)
159 objects = size / F12_DATA1_BYTES_PER_OBJ;
160
161 for (i = 0; i < objects; i++) {
Andrew Dugganb43d2c12016-03-10 15:55:29 -0800162 struct rmi_2d_sensor_abs_object *obj = &sensor->objs[i];
163
164 obj->type = RMI_2D_OBJECT_NONE;
165 obj->mt_tool = MT_TOOL_FINGER;
166
167 switch (data1[0]) {
168 case RMI_F12_OBJECT_FINGER:
169 obj->type = RMI_2D_OBJECT_FINGER;
170 break;
171 case RMI_F12_OBJECT_STYLUS:
172 obj->type = RMI_2D_OBJECT_STYLUS;
173 obj->mt_tool = MT_TOOL_PEN;
174 break;
175 case RMI_F12_OBJECT_PALM:
176 obj->type = RMI_2D_OBJECT_PALM;
177 obj->mt_tool = MT_TOOL_PALM;
178 break;
179 case RMI_F12_OBJECT_UNCLASSIFIED:
180 obj->type = RMI_2D_OBJECT_UNCLASSIFIED;
181 break;
182 }
183
184 obj->x = (data1[2] << 8) | data1[1];
185 obj->y = (data1[4] << 8) | data1[3];
186 obj->z = data1[5];
187 obj->wx = data1[6];
188 obj->wy = data1[7];
189
190 rmi_2d_sensor_abs_process(sensor, obj, i);
191
Andrew Duggan6d0dbea2016-11-08 16:46:20 -0800192 data1 += F12_DATA1_BYTES_PER_OBJ;
Andrew Dugganb43d2c12016-03-10 15:55:29 -0800193 }
194
195 if (sensor->kernel_tracking)
196 input_mt_assign_slots(sensor->input,
197 sensor->tracking_slots,
198 sensor->tracking_pos,
199 sensor->nbr_fingers,
200 sensor->dmax);
201
Andrew Duggan6d0dbea2016-11-08 16:46:20 -0800202 for (i = 0; i < objects; i++)
Andrew Dugganb43d2c12016-03-10 15:55:29 -0800203 rmi_2d_sensor_abs_report(sensor, &sensor->objs[i], i);
204}
205
206static int rmi_f12_attention(struct rmi_function *fn,
207 unsigned long *irq_nr_regs)
208{
209 int retval;
210 struct rmi_device *rmi_dev = fn->rmi_dev;
211 struct f12_data *f12 = dev_get_drvdata(&fn->dev);
212 struct rmi_2d_sensor *sensor = &f12->sensor;
Andrew Duggan6d0dbea2016-11-08 16:46:20 -0800213 int valid_bytes = sensor->pkt_size;
Andrew Dugganb43d2c12016-03-10 15:55:29 -0800214
215 if (rmi_dev->xport->attn_data) {
Andrew Duggan6d0dbea2016-11-08 16:46:20 -0800216 if (sensor->attn_size > rmi_dev->xport->attn_size)
217 valid_bytes = rmi_dev->xport->attn_size;
218 else
219 valid_bytes = sensor->attn_size;
Andrew Dugganb43d2c12016-03-10 15:55:29 -0800220 memcpy(sensor->data_pkt, rmi_dev->xport->attn_data,
Andrew Duggan6d0dbea2016-11-08 16:46:20 -0800221 valid_bytes);
Andrew Dugganb43d2c12016-03-10 15:55:29 -0800222 rmi_dev->xport->attn_data += sensor->attn_size;
223 rmi_dev->xport->attn_size -= sensor->attn_size;
224 } else {
225 retval = rmi_read_block(rmi_dev, f12->data_addr,
226 sensor->data_pkt, sensor->pkt_size);
227 if (retval < 0) {
228 dev_err(&fn->dev, "Failed to read object data. Code: %d.\n",
229 retval);
230 return retval;
231 }
232 }
233
234 if (f12->data1)
235 rmi_f12_process_objects(f12,
Andrew Duggan6d0dbea2016-11-08 16:46:20 -0800236 &sensor->data_pkt[f12->data1_offset], valid_bytes);
Andrew Dugganb43d2c12016-03-10 15:55:29 -0800237
238 input_mt_sync_frame(sensor->input);
239
240 return 0;
241}
242
Andrew Duggan24f63b12016-11-08 16:47:58 -0800243static int rmi_f12_write_control_regs(struct rmi_function *fn)
244{
245 int ret;
246 const struct rmi_register_desc_item *item;
247 struct rmi_device *rmi_dev = fn->rmi_dev;
248 struct f12_data *f12 = dev_get_drvdata(&fn->dev);
249 int control_size;
250 char buf[3];
251 u16 control_offset = 0;
252 u8 subpacket_offset = 0;
253
254 if (f12->has_dribble
255 && (f12->sensor.dribble != RMI_REG_STATE_DEFAULT)) {
256 item = rmi_get_register_desc_item(&f12->control_reg_desc, 20);
257 if (item) {
258 control_offset = rmi_register_desc_calc_reg_offset(
259 &f12->control_reg_desc, 20);
260
261 /*
262 * The byte containing the EnableDribble bit will be
263 * in either byte 0 or byte 2 of control 20. Depending
264 * on the existence of subpacket 0. If control 20 is
265 * larger then 3 bytes, just read the first 3.
266 */
267 control_size = min(item->reg_size, 3UL);
268
269 ret = rmi_read_block(rmi_dev, fn->fd.control_base_addr
270 + control_offset, buf, control_size);
271 if (ret)
272 return ret;
273
274 if (rmi_register_desc_has_subpacket(item, 0))
275 subpacket_offset += 1;
276
277 switch (f12->sensor.dribble) {
278 case RMI_REG_STATE_OFF:
279 buf[subpacket_offset] &= ~BIT(2);
280 break;
281 case RMI_REG_STATE_ON:
282 buf[subpacket_offset] |= BIT(2);
283 break;
284 case RMI_REG_STATE_DEFAULT:
285 default:
286 break;
287 }
288
289 ret = rmi_write_block(rmi_dev,
290 fn->fd.control_base_addr + control_offset,
291 buf, control_size);
292 if (ret)
293 return ret;
294 }
295 }
296
297 return 0;
298
299}
300
Andrew Dugganb43d2c12016-03-10 15:55:29 -0800301static int rmi_f12_config(struct rmi_function *fn)
302{
303 struct rmi_driver *drv = fn->rmi_dev->driver;
Andrew Duggan24f63b12016-11-08 16:47:58 -0800304 int ret;
Andrew Dugganb43d2c12016-03-10 15:55:29 -0800305
306 drv->set_irq_bits(fn->rmi_dev, fn->irq_mask);
307
Andrew Duggan24f63b12016-11-08 16:47:58 -0800308 ret = rmi_f12_write_control_regs(fn);
309 if (ret)
310 dev_warn(&fn->dev,
311 "Failed to write F12 control registers: %d\n", ret);
312
Andrew Dugganb43d2c12016-03-10 15:55:29 -0800313 return 0;
314}
315
316static int rmi_f12_probe(struct rmi_function *fn)
317{
318 struct f12_data *f12;
319 int ret;
320 struct rmi_device *rmi_dev = fn->rmi_dev;
321 char buf;
322 u16 query_addr = fn->fd.query_base_addr;
323 const struct rmi_register_desc_item *item;
324 struct rmi_2d_sensor *sensor;
325 struct rmi_device_platform_data *pdata = rmi_get_platform_data(rmi_dev);
326 struct rmi_transport_dev *xport = rmi_dev->xport;
327 u16 data_offset = 0;
328
329 rmi_dbg(RMI_DEBUG_FN, &fn->dev, "%s\n", __func__);
330
331 ret = rmi_read(fn->rmi_dev, query_addr, &buf);
332 if (ret < 0) {
333 dev_err(&fn->dev, "Failed to read general info register: %d\n",
334 ret);
335 return -ENODEV;
336 }
337 ++query_addr;
338
Andrew Duggan24f63b12016-11-08 16:47:58 -0800339 if (!(buf & BIT(0))) {
Andrew Dugganb43d2c12016-03-10 15:55:29 -0800340 dev_err(&fn->dev,
341 "Behavior of F12 without register descriptors is undefined.\n");
342 return -ENODEV;
343 }
344
345 f12 = devm_kzalloc(&fn->dev, sizeof(struct f12_data), GFP_KERNEL);
346 if (!f12)
347 return -ENOMEM;
348
Andrew Duggan24f63b12016-11-08 16:47:58 -0800349 f12->has_dribble = !!(buf & BIT(3));
350
Andrew Dugganb43d2c12016-03-10 15:55:29 -0800351 if (fn->dev.of_node) {
352 ret = rmi_2d_sensor_of_probe(&fn->dev, &f12->sensor_pdata);
353 if (ret)
354 return ret;
Benjamin Tissoires0a135b82016-11-30 17:01:50 -0800355 } else {
356 f12->sensor_pdata = pdata->sensor_pdata;
Andrew Dugganb43d2c12016-03-10 15:55:29 -0800357 }
358
359 ret = rmi_read_register_desc(rmi_dev, query_addr,
360 &f12->query_reg_desc);
361 if (ret) {
362 dev_err(&fn->dev,
363 "Failed to read the Query Register Descriptor: %d\n",
364 ret);
365 return ret;
366 }
367 query_addr += 3;
368
369 ret = rmi_read_register_desc(rmi_dev, query_addr,
370 &f12->control_reg_desc);
371 if (ret) {
372 dev_err(&fn->dev,
373 "Failed to read the Control Register Descriptor: %d\n",
374 ret);
375 return ret;
376 }
377 query_addr += 3;
378
379 ret = rmi_read_register_desc(rmi_dev, query_addr,
380 &f12->data_reg_desc);
381 if (ret) {
382 dev_err(&fn->dev,
383 "Failed to read the Data Register Descriptor: %d\n",
384 ret);
385 return ret;
386 }
387 query_addr += 3;
388
389 sensor = &f12->sensor;
390 sensor->fn = fn;
391 f12->data_addr = fn->fd.data_base_addr;
392 sensor->pkt_size = rmi_register_desc_calc_size(&f12->data_reg_desc);
393
394 sensor->axis_align =
395 f12->sensor_pdata.axis_align;
396
397 sensor->x_mm = f12->sensor_pdata.x_mm;
398 sensor->y_mm = f12->sensor_pdata.y_mm;
Andrew Duggan24f63b12016-11-08 16:47:58 -0800399 sensor->dribble = f12->sensor_pdata.dribble;
Andrew Dugganb43d2c12016-03-10 15:55:29 -0800400
401 if (sensor->sensor_type == rmi_sensor_default)
402 sensor->sensor_type =
403 f12->sensor_pdata.sensor_type;
404
405 rmi_dbg(RMI_DEBUG_FN, &fn->dev, "%s: data packet size: %d\n", __func__,
406 sensor->pkt_size);
407 sensor->data_pkt = devm_kzalloc(&fn->dev, sensor->pkt_size, GFP_KERNEL);
408 if (!sensor->data_pkt)
409 return -ENOMEM;
410
411 dev_set_drvdata(&fn->dev, f12);
412
413 ret = rmi_f12_read_sensor_tuning(f12);
414 if (ret)
415 return ret;
416
417 /*
418 * Figure out what data is contained in the data registers. HID devices
419 * may have registers defined, but their data is not reported in the
420 * HID attention report. Registers which are not reported in the HID
421 * attention report check to see if the device is receiving data from
422 * HID attention reports.
423 */
424 item = rmi_get_register_desc_item(&f12->data_reg_desc, 0);
425 if (item && !xport->attn_data)
426 data_offset += item->reg_size;
427
428 item = rmi_get_register_desc_item(&f12->data_reg_desc, 1);
429 if (item) {
430 f12->data1 = item;
431 f12->data1_offset = data_offset;
432 data_offset += item->reg_size;
433 sensor->nbr_fingers = item->num_subpackets;
434 sensor->report_abs = 1;
435 sensor->attn_size += item->reg_size;
436 }
437
438 item = rmi_get_register_desc_item(&f12->data_reg_desc, 2);
439 if (item && !xport->attn_data)
440 data_offset += item->reg_size;
441
442 item = rmi_get_register_desc_item(&f12->data_reg_desc, 3);
443 if (item && !xport->attn_data)
444 data_offset += item->reg_size;
445
446 item = rmi_get_register_desc_item(&f12->data_reg_desc, 4);
447 if (item && !xport->attn_data)
448 data_offset += item->reg_size;
449
450 item = rmi_get_register_desc_item(&f12->data_reg_desc, 5);
451 if (item) {
452 f12->data5 = item;
453 f12->data5_offset = data_offset;
454 data_offset += item->reg_size;
455 sensor->attn_size += item->reg_size;
456 }
457
458 item = rmi_get_register_desc_item(&f12->data_reg_desc, 6);
459 if (item && !xport->attn_data) {
460 f12->data6 = item;
461 f12->data6_offset = data_offset;
462 data_offset += item->reg_size;
463 }
464
465 item = rmi_get_register_desc_item(&f12->data_reg_desc, 7);
466 if (item && !xport->attn_data)
467 data_offset += item->reg_size;
468
469 item = rmi_get_register_desc_item(&f12->data_reg_desc, 8);
470 if (item && !xport->attn_data)
471 data_offset += item->reg_size;
472
473 item = rmi_get_register_desc_item(&f12->data_reg_desc, 9);
474 if (item && !xport->attn_data) {
475 f12->data9 = item;
476 f12->data9_offset = data_offset;
477 data_offset += item->reg_size;
478 if (!sensor->report_abs)
479 sensor->report_rel = 1;
480 }
481
482 item = rmi_get_register_desc_item(&f12->data_reg_desc, 10);
483 if (item && !xport->attn_data)
484 data_offset += item->reg_size;
485
486 item = rmi_get_register_desc_item(&f12->data_reg_desc, 11);
487 if (item && !xport->attn_data)
488 data_offset += item->reg_size;
489
490 item = rmi_get_register_desc_item(&f12->data_reg_desc, 12);
491 if (item && !xport->attn_data)
492 data_offset += item->reg_size;
493
494 item = rmi_get_register_desc_item(&f12->data_reg_desc, 13);
495 if (item && !xport->attn_data)
496 data_offset += item->reg_size;
497
498 item = rmi_get_register_desc_item(&f12->data_reg_desc, 14);
499 if (item && !xport->attn_data)
500 data_offset += item->reg_size;
501
502 item = rmi_get_register_desc_item(&f12->data_reg_desc, 15);
503 if (item && !xport->attn_data) {
504 f12->data15 = item;
505 f12->data15_offset = data_offset;
506 data_offset += item->reg_size;
507 }
508
509 /* allocate the in-kernel tracking buffers */
510 sensor->tracking_pos = devm_kzalloc(&fn->dev,
511 sizeof(struct input_mt_pos) * sensor->nbr_fingers,
512 GFP_KERNEL);
513 sensor->tracking_slots = devm_kzalloc(&fn->dev,
514 sizeof(int) * sensor->nbr_fingers, GFP_KERNEL);
515 sensor->objs = devm_kzalloc(&fn->dev,
516 sizeof(struct rmi_2d_sensor_abs_object)
517 * sensor->nbr_fingers, GFP_KERNEL);
518 if (!sensor->tracking_pos || !sensor->tracking_slots || !sensor->objs)
519 return -ENOMEM;
520
521 ret = rmi_2d_sensor_configure_input(fn, sensor);
522 if (ret)
523 return ret;
524
525 return 0;
526}
527
528struct rmi_function_handler rmi_f12_handler = {
529 .driver = {
530 .name = "rmi4_f12",
531 },
532 .func = 0x12,
533 .probe = rmi_f12_probe,
534 .config = rmi_f12_config,
535 .attention = rmi_f12_attention,
536};