1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3 * Force feedback driver for USB HID PID compliant devices
4 *
5 * Copyright (c) 2005, 2006 Anssi Hannula <anssi.hannula@gmail.com>
6 * Upgraded 2025 by Oleg Makarenko and Tomasz Pakuła
7 */
8
9 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
10
11 #include "hid-pidff.h"
12 #include <linux/hid.h>
13 #include <linux/input.h>
14 #include <linux/math64.h>
15 #include <linux/minmax.h>
16 #include <linux/slab.h>
17 #include <linux/stringify.h>
18 #include <linux/usb.h>
19
20 #define PID_EFFECTS_MAX 64
21 #define PID_INFINITE U16_MAX
22
23 /* Linux Force Feedback API uses miliseconds as time unit */
24 #define FF_TIME_EXPONENT -3
25 #define FF_INFINITE 0
26
27 /* Report usage table used to put reports into an array */
28 #define PID_SET_EFFECT 0
29 #define PID_EFFECT_OPERATION 1
30 #define PID_DEVICE_GAIN 2
31 #define PID_POOL 3
32 #define PID_BLOCK_LOAD 4
33 #define PID_BLOCK_FREE 5
34 #define PID_DEVICE_CONTROL 6
35 #define PID_CREATE_NEW_EFFECT 7
36
37 #define PID_REQUIRED_REPORTS 8
38
39 #define PID_SET_ENVELOPE 8
40 #define PID_SET_CONDITION 9
41 #define PID_SET_PERIODIC 10
42 #define PID_SET_CONSTANT 11
43 #define PID_SET_RAMP 12
44 static const u8 pidff_reports[] = {
45 0x21, 0x77, 0x7d, 0x7f, 0x89, 0x90, 0x96, 0xab,
46 0x5a, 0x5f, 0x6e, 0x73, 0x74
47 };
48 /*
49 * device_control is really 0x95, but 0x96 specified
50 * as it is the usage of the only field in that report.
51 */
52
53 /* PID special fields */
54 #define PID_EFFECT_TYPE 0x25
55 #define PID_AXES_ENABLE 0x55
56 #define PID_DIRECTION 0x57
57 #define PID_EFFECT_OPERATION_ARRAY 0x78
58 #define PID_BLOCK_LOAD_STATUS 0x8b
59 #define PID_DEVICE_CONTROL_ARRAY 0x96
60
61 /* Value usage tables used to put fields and values into arrays */
62 #define PID_EFFECT_BLOCK_INDEX 0
63
64 #define PID_DURATION 1
65 #define PID_GAIN 2
66 #define PID_TRIGGER_BUTTON 3
67 #define PID_TRIGGER_REPEAT_INT 4
68 #define PID_DIRECTION_ENABLE 5
69 #define PID_START_DELAY 6
70 static const u8 pidff_set_effect[] = {
71 0x22, 0x50, 0x52, 0x53, 0x54, 0x56, 0xa7
72 };
73
74 #define PID_ATTACK_LEVEL 1
75 #define PID_ATTACK_TIME 2
76 #define PID_FADE_LEVEL 3
77 #define PID_FADE_TIME 4
78 static const u8 pidff_set_envelope[] = { 0x22, 0x5b, 0x5c, 0x5d, 0x5e };
79
80 #define PID_PARAM_BLOCK_OFFSET 1
81 #define PID_CP_OFFSET 2
82 #define PID_POS_COEFFICIENT 3
83 #define PID_NEG_COEFFICIENT 4
84 #define PID_POS_SATURATION 5
85 #define PID_NEG_SATURATION 6
86 #define PID_DEADBAND 7
87 static const u8 pidff_set_condition[] = {
88 0x22, 0x23, 0x60, 0x61, 0x62, 0x63, 0x64, 0x65
89 };
90
91 #define PID_MAGNITUDE 1
92 #define PID_OFFSET 2
93 #define PID_PHASE 3
94 #define PID_PERIOD 4
95 static const u8 pidff_set_periodic[] = { 0x22, 0x70, 0x6f, 0x71, 0x72 };
96 static const u8 pidff_set_constant[] = { 0x22, 0x70 };
97
98 #define PID_RAMP_START 1
99 #define PID_RAMP_END 2
100 static const u8 pidff_set_ramp[] = { 0x22, 0x75, 0x76 };
101
102 #define PID_RAM_POOL_AVAILABLE 1
103 static const u8 pidff_block_load[] = { 0x22, 0xac };
104
105 #define PID_LOOP_COUNT 1
106 static const u8 pidff_effect_operation[] = { 0x22, 0x7c };
107
108 static const u8 pidff_block_free[] = { 0x22 };
109
110 #define PID_DEVICE_GAIN_FIELD 0
111 static const u8 pidff_device_gain[] = { 0x7e };
112
113 #define PID_RAM_POOL_SIZE 0
114 #define PID_SIMULTANEOUS_MAX 1
115 #define PID_DEVICE_MANAGED_POOL 2
116 static const u8 pidff_pool[] = { 0x80, 0x83, 0xa9 };
117
118 /* Special field key tables used to put special field keys into arrays */
119 #define PID_ENABLE_ACTUATORS 0
120 #define PID_DISABLE_ACTUATORS 1
121 #define PID_STOP_ALL_EFFECTS 2
122 #define PID_RESET 3
123 #define PID_PAUSE 4
124 #define PID_CONTINUE 5
125 static const u8 pidff_device_control[] = { 0x97, 0x98, 0x99, 0x9a, 0x9b, 0x9c };
126
127 #define PID_CONSTANT 0
128 #define PID_RAMP 1
129 #define PID_SQUARE 2
130 #define PID_SINE 3
131 #define PID_TRIANGLE 4
132 #define PID_SAW_UP 5
133 #define PID_SAW_DOWN 6
134 #define PID_SPRING 7
135 #define PID_DAMPER 8
136 #define PID_INERTIA 9
137 #define PID_FRICTION 10
138 static const u8 pidff_effect_types[] = {
139 0x26, 0x27, 0x30, 0x31, 0x32, 0x33, 0x34,
140 0x40, 0x41, 0x42, 0x43
141 };
142
143 #define PID_BLOCK_LOAD_SUCCESS 0
144 #define PID_BLOCK_LOAD_FULL 1
145 #define PID_BLOCK_LOAD_ERROR 2
146 static const u8 pidff_block_load_status[] = { 0x8c, 0x8d, 0x8e };
147
148 #define PID_EFFECT_START 0
149 #define PID_EFFECT_STOP 1
150 static const u8 pidff_effect_operation_status[] = { 0x79, 0x7b };
151
152 #define PID_DIRECTION_NORTH 0x0000
153 #define PID_DIRECTION_EAST 0x4000
154 #define PID_DIRECTION_SOUTH 0x8000
155 #define PID_DIRECTION_WEST 0xc000
156
157 #define PIDFF_FIXED_WHEEL_DIRECTION PID_DIRECTION_EAST
158
159 /* AXES_ENABLE and DIRECTION axes */
160 enum pid_axes {
161 PID_AXIS_X,
162 PID_AXIS_Y,
163 PID_AXIS_Z,
164 PID_AXIS_RX,
165 PID_AXIS_RY,
166 PID_AXIS_RZ,
167 PID_AXIS_SLIDER,
168 PID_AXIS_DIAL,
169 PID_AXIS_WHEEL,
170 PID_AXES_COUNT,
171 };
172 static const u8 pidff_direction_axis[] = {
173 HID_USAGE & HID_GD_X,
174 HID_USAGE & HID_GD_Y,
175 HID_USAGE & HID_GD_Z,
176 HID_USAGE & HID_GD_RX,
177 HID_USAGE & HID_GD_RY,
178 HID_USAGE & HID_GD_RZ,
179 HID_USAGE & HID_GD_SLIDER,
180 HID_USAGE & HID_GD_DIAL,
181 HID_USAGE & HID_GD_WHEEL,
182 };
183
184 struct pidff_usage {
185 struct hid_field *field;
186 s32 *value;
187 };
188
189 struct pidff_effect {
190 int pid_id;
191 int is_infinite;
192 unsigned int loop_count;
193 };
194
195 struct pidff_device {
196 struct hid_device *hid;
197
198 struct hid_report *reports[ARRAY_SIZE(pidff_reports)];
199
200 struct pidff_usage set_effect[ARRAY_SIZE(pidff_set_effect)];
201 struct pidff_usage set_envelope[ARRAY_SIZE(pidff_set_envelope)];
202 struct pidff_usage set_condition[ARRAY_SIZE(pidff_set_condition)];
203 struct pidff_usage set_periodic[ARRAY_SIZE(pidff_set_periodic)];
204 struct pidff_usage set_constant[ARRAY_SIZE(pidff_set_constant)];
205 struct pidff_usage set_ramp[ARRAY_SIZE(pidff_set_ramp)];
206
207 struct pidff_usage device_gain[ARRAY_SIZE(pidff_device_gain)];
208 struct pidff_usage block_load[ARRAY_SIZE(pidff_block_load)];
209 struct pidff_usage pool[ARRAY_SIZE(pidff_pool)];
210 struct pidff_usage effect_operation[ARRAY_SIZE(pidff_effect_operation)];
211 struct pidff_usage block_free[ARRAY_SIZE(pidff_block_free)];
212
213 struct pidff_effect effect[PID_EFFECTS_MAX];
214
215 /*
216 * Special field is a field that is not composed of
217 * usage<->value pairs that pidff_usage values are
218 */
219
220 /* Special field in create_new_effect */
221 struct hid_field *create_new_effect_type;
222
223 /* Special fields in set_effect */
224 struct hid_field *set_effect_type;
225 struct hid_field *effect_direction;
226 struct hid_field *axes_enable;
227
228 /* Special field in device_control */
229 struct hid_field *device_control;
230
231 /* Special field in block_load */
232 struct hid_field *block_load_status;
233
234 /* Special field in effect_operation */
235 struct hid_field *effect_operation_status;
236
237 int control_id[ARRAY_SIZE(pidff_device_control)];
238 int type_id[ARRAY_SIZE(pidff_effect_types)];
239 int status_id[ARRAY_SIZE(pidff_block_load_status)];
240 int operation_id[ARRAY_SIZE(pidff_effect_operation_status)];
241 int direction_axis_id[ARRAY_SIZE(pidff_direction_axis)];
242
243 u32 quirks;
244 u8 effect_count;
245 u8 axis_count;
246 };
247
pidff_is_effect_conditional(struct ff_effect * effect)248 static int pidff_is_effect_conditional(struct ff_effect *effect)
249 {
250 return effect->type == FF_SPRING ||
251 effect->type == FF_DAMPER ||
252 effect->type == FF_INERTIA ||
253 effect->type == FF_FRICTION;
254 }
255
pidff_is_duration_infinite(u16 duration)256 static int pidff_is_duration_infinite(u16 duration)
257 {
258 return duration == FF_INFINITE || duration == PID_INFINITE;
259 }
260
261 /*
262 * Get PID effect index from FF effect type.
263 * Return 0 if invalid.
264 */
pidff_effect_ff_to_pid(struct ff_effect * effect)265 static int pidff_effect_ff_to_pid(struct ff_effect *effect)
266 {
267 switch (effect->type) {
268 case FF_CONSTANT:
269 return PID_CONSTANT;
270 case FF_RAMP:
271 return PID_RAMP;
272 case FF_SPRING:
273 return PID_SPRING;
274 case FF_DAMPER:
275 return PID_DAMPER;
276 case FF_INERTIA:
277 return PID_INERTIA;
278 case FF_FRICTION:
279 return PID_FRICTION;
280 case FF_PERIODIC:
281 switch (effect->u.periodic.waveform) {
282 case FF_SQUARE:
283 return PID_SQUARE;
284 case FF_TRIANGLE:
285 return PID_TRIANGLE;
286 case FF_SINE:
287 return PID_SINE;
288 case FF_SAW_UP:
289 return PID_SAW_UP;
290 case FF_SAW_DOWN:
291 return PID_SAW_DOWN;
292 }
293 }
294 pr_err("invalid effect type\n");
295 return -EINVAL;
296 }
297
298 /*
299 * Get effect id in the device descriptor.
300 * Return 0 if invalid.
301 */
pidff_get_effect_type_id(struct pidff_device * pidff,struct ff_effect * effect)302 static int pidff_get_effect_type_id(struct pidff_device *pidff,
303 struct ff_effect *effect)
304 {
305 int id = pidff_effect_ff_to_pid(effect);
306
307 if (id < 0)
308 return 0;
309
310 if (effect->type == FF_PERIODIC &&
311 pidff->quirks & HID_PIDFF_QUIRK_PERIODIC_SINE_ONLY)
312 id = PID_SINE;
313
314 return pidff->type_id[id];
315 }
316
317 /*
318 * Clamp value for a given field
319 */
pidff_clamp(s32 i,struct hid_field * field)320 static s32 pidff_clamp(s32 i, struct hid_field *field)
321 {
322 return (s32)clamp(i, field->logical_minimum, field->logical_maximum);
323 }
324
325 /*
326 * Scale an unsigned value with range 0..max for the given field
327 */
pidff_rescale(int i,int max,struct hid_field * field)328 static int pidff_rescale(int i, int max, struct hid_field *field)
329 {
330 /* 64 bits needed for big values during rescale */
331 s64 result = field->logical_maximum - field->logical_minimum;
332
333 return div_s64(result * i, max) + field->logical_minimum;
334 }
335
336 /*
337 * Scale a signed value in range S16_MIN..S16_MAX for the given field
338 */
pidff_rescale_signed(int i,struct hid_field * field)339 static int pidff_rescale_signed(int i, struct hid_field *field)
340 {
341 if (i > 0)
342 return i * field->logical_maximum / S16_MAX;
343 if (i < 0)
344 return i * field->logical_minimum / S16_MIN;
345 return 0;
346 }
347
348 /*
349 * Scale time value from Linux default (ms) to field units
350 */
pidff_rescale_time(u16 time,struct hid_field * field)351 static u32 pidff_rescale_time(u16 time, struct hid_field *field)
352 {
353 u32 scaled_time = time;
354 int exponent = field->unit_exponent;
355
356 pr_debug("time field exponent: %d\n", exponent);
357 for (; exponent < FF_TIME_EXPONENT; exponent++)
358 scaled_time *= 10;
359 for (; exponent > FF_TIME_EXPONENT; exponent--)
360 scaled_time /= 10;
361
362 pr_debug("time calculated from %d to %d\n", time, scaled_time);
363 return scaled_time;
364 }
365
pidff_set(struct pidff_usage * usage,u16 value)366 static void pidff_set(struct pidff_usage *usage, u16 value)
367 {
368 usage->value[0] = pidff_rescale(value, U16_MAX, usage->field);
369 pr_debug("calculated from %d to %d\n", value, usage->value[0]);
370 }
371
pidff_set_signed(struct pidff_usage * usage,s16 value)372 static void pidff_set_signed(struct pidff_usage *usage, s16 value)
373 {
374 if (usage->field->logical_minimum < 0)
375 usage->value[0] = pidff_rescale_signed(value, usage->field);
376 else {
377 if (value < 0)
378 usage->value[0] =
379 pidff_rescale(-value, -S16_MIN, usage->field);
380 else
381 usage->value[0] =
382 pidff_rescale(value, S16_MAX, usage->field);
383 }
384 pr_debug("calculated from %d to %d\n", value, usage->value[0]);
385 }
386
pidff_set_time(struct pidff_usage * usage,u16 time)387 static void pidff_set_time(struct pidff_usage *usage, u16 time)
388 {
389 usage->value[0] = pidff_clamp(pidff_rescale_time(time, usage->field),
390 usage->field);
391 }
392
pidff_set_duration(struct pidff_usage * usage,u16 duration)393 static void pidff_set_duration(struct pidff_usage *usage, u16 duration)
394 {
395 /* PID defines INFINITE as the max possible value for duration field */
396 if (pidff_is_duration_infinite(duration)) {
397 usage->value[0] = (1U << usage->field->report_size) - 1;
398 return;
399 }
400
401 pidff_set_time(usage, duration);
402 }
403
pidff_set_effect_direction(struct pidff_device * pidff,struct ff_effect * effect)404 static void pidff_set_effect_direction(struct pidff_device *pidff,
405 struct ff_effect *effect)
406 {
407 u16 direction = effect->direction;
408 int direction_enable = 1;
409
410 /* Use fixed direction if needed */
411 if (pidff->quirks & HID_PIDFF_QUIRK_FIX_CONDITIONAL_DIRECTION &&
412 pidff_is_effect_conditional(effect))
413 direction = PIDFF_FIXED_WHEEL_DIRECTION;
414
415 pidff->set_effect[PID_DIRECTION_ENABLE].value[0] = direction_enable;
416 pidff->effect_direction->value[0] =
417 pidff_rescale(direction, U16_MAX, pidff->effect_direction);
418
419 if (direction_enable)
420 return;
421
422 /*
423 * For use with improved FFB API
424 * We want to read the selected axes and their direction from the effect
425 * struct and only enable those. For now, enable all axes.
426 *
427 */
428 for (int i = 0; i < PID_AXES_COUNT; i++) {
429 /* HID index starts with 1 */
430 int index = pidff->direction_axis_id[i] - 1;
431
432 if (index < 0)
433 continue;
434
435 pidff->axes_enable->value[index] = 1;
436 pidff->effect_direction->value[index] = pidff_rescale(
437 direction, U16_MAX, pidff->effect_direction);
438 }
439 }
440
441 /*
442 * Send envelope report to the device
443 */
pidff_set_envelope_report(struct pidff_device * pidff,struct ff_envelope * envelope)444 static void pidff_set_envelope_report(struct pidff_device *pidff,
445 struct ff_envelope *envelope)
446 {
447 pidff->set_envelope[PID_EFFECT_BLOCK_INDEX].value[0] =
448 pidff->block_load[PID_EFFECT_BLOCK_INDEX].value[0];
449
450 pidff->set_envelope[PID_ATTACK_LEVEL].value[0] =
451 pidff_rescale(envelope->attack_level >
452 S16_MAX ? S16_MAX : envelope->attack_level, S16_MAX,
453 pidff->set_envelope[PID_ATTACK_LEVEL].field);
454 pidff->set_envelope[PID_FADE_LEVEL].value[0] =
455 pidff_rescale(envelope->fade_level >
456 S16_MAX ? S16_MAX : envelope->fade_level, S16_MAX,
457 pidff->set_envelope[PID_FADE_LEVEL].field);
458
459 pidff_set_time(&pidff->set_envelope[PID_ATTACK_TIME],
460 envelope->attack_length);
461 pidff_set_time(&pidff->set_envelope[PID_FADE_TIME],
462 envelope->fade_length);
463
464 hid_hw_request(pidff->hid, pidff->reports[PID_SET_ENVELOPE],
465 HID_REQ_SET_REPORT);
466 }
467
468 /*
469 * Test if the new envelope differs from old one
470 */
pidff_needs_set_envelope(struct ff_envelope * envelope,struct ff_envelope * old)471 static int pidff_needs_set_envelope(struct ff_envelope *envelope,
472 struct ff_envelope *old)
473 {
474 int needs_new_envelope;
475
476 needs_new_envelope = envelope->attack_level != 0 ||
477 envelope->fade_level != 0 ||
478 envelope->attack_length != 0 ||
479 envelope->fade_length != 0;
480
481 if (!needs_new_envelope)
482 return 0;
483 if (!old)
484 return needs_new_envelope;
485
486 return envelope->attack_level != old->attack_level ||
487 envelope->fade_level != old->fade_level ||
488 envelope->attack_length != old->attack_length ||
489 envelope->fade_length != old->fade_length;
490 }
491
492 /*
493 * Send constant force report to the device
494 */
pidff_set_constant_report(struct pidff_device * pidff,struct ff_effect * effect)495 static void pidff_set_constant_report(struct pidff_device *pidff,
496 struct ff_effect *effect)
497 {
498 pidff->set_constant[PID_EFFECT_BLOCK_INDEX].value[0] =
499 pidff->block_load[PID_EFFECT_BLOCK_INDEX].value[0];
500 pidff_set_signed(&pidff->set_constant[PID_MAGNITUDE],
501 effect->u.constant.level);
502
503 hid_hw_request(pidff->hid, pidff->reports[PID_SET_CONSTANT],
504 HID_REQ_SET_REPORT);
505 }
506
507 /*
508 * Test if the constant parameters have changed between effects
509 */
pidff_needs_set_constant(struct ff_effect * effect,struct ff_effect * old)510 static int pidff_needs_set_constant(struct ff_effect *effect,
511 struct ff_effect *old)
512 {
513 return effect->u.constant.level != old->u.constant.level;
514 }
515
516 /*
517 * Send set effect report to the device
518 */
pidff_set_effect_report(struct pidff_device * pidff,struct ff_effect * effect)519 static void pidff_set_effect_report(struct pidff_device *pidff,
520 struct ff_effect *effect)
521 {
522 pidff->set_effect[PID_EFFECT_BLOCK_INDEX].value[0] =
523 pidff->block_load[PID_EFFECT_BLOCK_INDEX].value[0];
524 pidff->set_effect_type->value[0] =
525 pidff->create_new_effect_type->value[0];
526
527 pidff_set_duration(&pidff->set_effect[PID_DURATION],
528 effect->replay.length);
529
530 /* Some games set this to random values that can be out of range */
531 s32 trigger_button_max =
532 pidff->set_effect[PID_TRIGGER_BUTTON].field->logical_maximum;
533 if (effect->trigger.button <= trigger_button_max) {
534 pidff->set_effect[PID_TRIGGER_BUTTON].value[0] =
535 effect->trigger.button;
536 pidff_set_time(&pidff->set_effect[PID_TRIGGER_REPEAT_INT],
537 effect->trigger.interval);
538 } else {
539 pidff->set_effect[PID_TRIGGER_BUTTON].value[0] = 0;
540 pidff->set_effect[PID_TRIGGER_REPEAT_INT].value[0] = 0;
541 }
542
543 pidff->set_effect[PID_GAIN].value[0] =
544 pidff->set_effect[PID_GAIN].field->logical_maximum;
545
546 pidff_set_effect_direction(pidff, effect);
547
548 /* Omit setting delay field if it's missing */
549 if (!(pidff->quirks & HID_PIDFF_QUIRK_MISSING_DELAY))
550 pidff_set_time(&pidff->set_effect[PID_START_DELAY],
551 effect->replay.delay);
552
553 hid_hw_request(pidff->hid, pidff->reports[PID_SET_EFFECT],
554 HID_REQ_SET_REPORT);
555 }
556
557 /*
558 * Test if the values used in set_effect have changed
559 */
pidff_needs_set_effect(struct ff_effect * effect,struct ff_effect * old)560 static int pidff_needs_set_effect(struct ff_effect *effect,
561 struct ff_effect *old)
562 {
563 return effect->replay.length != old->replay.length ||
564 effect->trigger.interval != old->trigger.interval ||
565 effect->trigger.button != old->trigger.button ||
566 effect->direction != old->direction ||
567 effect->replay.delay != old->replay.delay;
568 }
569
570 /*
571 * Send periodic effect report to the device
572 */
pidff_set_periodic_report(struct pidff_device * pidff,struct ff_effect * effect)573 static void pidff_set_periodic_report(struct pidff_device *pidff,
574 struct ff_effect *effect)
575 {
576 pidff->set_periodic[PID_EFFECT_BLOCK_INDEX].value[0] =
577 pidff->block_load[PID_EFFECT_BLOCK_INDEX].value[0];
578 pidff_set_signed(&pidff->set_periodic[PID_MAGNITUDE],
579 effect->u.periodic.magnitude);
580 pidff_set_signed(&pidff->set_periodic[PID_OFFSET],
581 effect->u.periodic.offset);
582 pidff_set(&pidff->set_periodic[PID_PHASE], effect->u.periodic.phase);
583 pidff_set_time(&pidff->set_periodic[PID_PERIOD],
584 effect->u.periodic.period);
585
586 hid_hw_request(pidff->hid, pidff->reports[PID_SET_PERIODIC],
587 HID_REQ_SET_REPORT);
588 }
589
590 /*
591 * Test if periodic effect parameters have changed
592 */
pidff_needs_set_periodic(struct ff_effect * effect,struct ff_effect * old)593 static int pidff_needs_set_periodic(struct ff_effect *effect,
594 struct ff_effect *old)
595 {
596 return effect->u.periodic.magnitude != old->u.periodic.magnitude ||
597 effect->u.periodic.offset != old->u.periodic.offset ||
598 effect->u.periodic.phase != old->u.periodic.phase ||
599 effect->u.periodic.period != old->u.periodic.period;
600 }
601
602 /*
603 * Send condition effect reports to the device
604 */
pidff_set_condition_report(struct pidff_device * pidff,struct ff_effect * effect)605 static void pidff_set_condition_report(struct pidff_device *pidff,
606 struct ff_effect *effect)
607 {
608 int i, max_axis;
609
610 /* Devices missing Parameter Block Offset can only have one axis */
611 max_axis = pidff->quirks & HID_PIDFF_QUIRK_MISSING_PBO ? 1 : 2;
612
613 pidff->set_condition[PID_EFFECT_BLOCK_INDEX].value[0] =
614 pidff->block_load[PID_EFFECT_BLOCK_INDEX].value[0];
615
616 for (i = 0; i < max_axis; i++) {
617 /* Omit Parameter Block Offset if missing */
618 if (!(pidff->quirks & HID_PIDFF_QUIRK_MISSING_PBO))
619 pidff->set_condition[PID_PARAM_BLOCK_OFFSET].value[0] = i;
620
621 pidff_set_signed(&pidff->set_condition[PID_CP_OFFSET],
622 effect->u.condition[i].center);
623 pidff_set_signed(&pidff->set_condition[PID_POS_COEFFICIENT],
624 effect->u.condition[i].right_coeff);
625 pidff_set(&pidff->set_condition[PID_POS_SATURATION],
626 effect->u.condition[i].right_saturation);
627
628 /* Omit Negative Coefficient if missing */
629 if (!(pidff->quirks & HID_PIDFF_QUIRK_MISSING_NEG_COEFFICIENT))
630 pidff_set_signed(&pidff->set_condition[PID_NEG_COEFFICIENT],
631 effect->u.condition[i].left_coeff);
632
633 /* Omit Negative Saturation if missing */
634 if (!(pidff->quirks & HID_PIDFF_QUIRK_MISSING_NEG_SATURATION))
635 pidff_set_signed(&pidff->set_condition[PID_NEG_SATURATION],
636 effect->u.condition[i].left_saturation);
637
638 /* Omit Deadband field if missing */
639 if (!(pidff->quirks & HID_PIDFF_QUIRK_MISSING_DEADBAND))
640 pidff_set(&pidff->set_condition[PID_DEADBAND],
641 effect->u.condition[i].deadband);
642
643 hid_hw_request(pidff->hid, pidff->reports[PID_SET_CONDITION],
644 HID_REQ_SET_REPORT);
645 }
646 }
647
648 /*
649 * Test if condition effect parameters have changed
650 */
pidff_needs_set_condition(struct ff_effect * effect,struct ff_effect * old)651 static int pidff_needs_set_condition(struct ff_effect *effect,
652 struct ff_effect *old)
653 {
654 int i;
655 int ret = 0;
656
657 for (i = 0; i < 2; i++) {
658 struct ff_condition_effect *cond = &effect->u.condition[i];
659 struct ff_condition_effect *old_cond = &old->u.condition[i];
660
661 ret |= cond->center != old_cond->center ||
662 cond->right_coeff != old_cond->right_coeff ||
663 cond->left_coeff != old_cond->left_coeff ||
664 cond->right_saturation != old_cond->right_saturation ||
665 cond->left_saturation != old_cond->left_saturation ||
666 cond->deadband != old_cond->deadband;
667 }
668
669 return ret;
670 }
671
672 /*
673 * Send ramp force report to the device
674 */
pidff_set_ramp_report(struct pidff_device * pidff,struct ff_effect * effect)675 static void pidff_set_ramp_report(struct pidff_device *pidff,
676 struct ff_effect *effect)
677 {
678 pidff->set_ramp[PID_EFFECT_BLOCK_INDEX].value[0] =
679 pidff->block_load[PID_EFFECT_BLOCK_INDEX].value[0];
680 pidff_set_signed(&pidff->set_ramp[PID_RAMP_START],
681 effect->u.ramp.start_level);
682 pidff_set_signed(&pidff->set_ramp[PID_RAMP_END],
683 effect->u.ramp.end_level);
684 hid_hw_request(pidff->hid, pidff->reports[PID_SET_RAMP],
685 HID_REQ_SET_REPORT);
686 }
687
688 /*
689 * Test if ramp force parameters have changed
690 */
pidff_needs_set_ramp(struct ff_effect * effect,struct ff_effect * old)691 static int pidff_needs_set_ramp(struct ff_effect *effect, struct ff_effect *old)
692 {
693 return effect->u.ramp.start_level != old->u.ramp.start_level ||
694 effect->u.ramp.end_level != old->u.ramp.end_level;
695 }
696
697 /*
698 * Set device gain
699 */
pidff_set_gain_report(struct pidff_device * pidff,u16 gain)700 static void pidff_set_gain_report(struct pidff_device *pidff, u16 gain)
701 {
702 if (!pidff->device_gain[PID_DEVICE_GAIN_FIELD].field)
703 return;
704
705 pidff_set(&pidff->device_gain[PID_DEVICE_GAIN_FIELD], gain);
706 hid_hw_request(pidff->hid, pidff->reports[PID_DEVICE_GAIN],
707 HID_REQ_SET_REPORT);
708 }
709
710 /*
711 * Send device control report to the device
712 */
pidff_set_device_control(struct pidff_device * pidff,int field)713 static void pidff_set_device_control(struct pidff_device *pidff, int field)
714 {
715 const int field_index = pidff->control_id[field];
716
717 if (field_index < 1)
718 return;
719
720 /* Detect if the field is a bitmask variable or an array */
721 if (pidff->device_control->flags & HID_MAIN_ITEM_VARIABLE) {
722 hid_dbg(pidff->hid, "DEVICE_CONTROL is a bitmask\n");
723
724 /* Clear current bitmask */
725 for (int i = 0; i < ARRAY_SIZE(pidff_device_control); i++) {
726 int index = pidff->control_id[i];
727
728 if (index < 1)
729 continue;
730
731 pidff->device_control->value[index - 1] = 0;
732 }
733
734 pidff->device_control->value[field_index - 1] = 1;
735 } else {
736 hid_dbg(pidff->hid, "DEVICE_CONTROL is an array\n");
737 pidff->device_control->value[0] = field_index;
738 }
739
740 hid_hw_request(pidff->hid, pidff->reports[PID_DEVICE_CONTROL], HID_REQ_SET_REPORT);
741 hid_hw_wait(pidff->hid);
742 hid_dbg(pidff->hid, "Device control command 0x%02x sent",
743 pidff_device_control[field]);
744 }
745
746 /*
747 * Reset the device, stop all effects, enable actuators
748 */
pidff_reset(struct pidff_device * pidff)749 static void pidff_reset(struct pidff_device *pidff)
750 {
751 /* We reset twice as sometimes hid_wait_io isn't waiting long enough */
752 pidff_set_device_control(pidff, PID_RESET);
753 pidff_set_device_control(pidff, PID_RESET);
754 pidff->effect_count = 0;
755
756 pidff_set_device_control(pidff, PID_STOP_ALL_EFFECTS);
757 pidff_set_device_control(pidff, PID_ENABLE_ACTUATORS);
758 }
759
760 /*
761 * Fetch pool report
762 */
pidff_fetch_pool(struct pidff_device * pidff)763 static void pidff_fetch_pool(struct pidff_device *pidff)
764 {
765 int i;
766 struct hid_device *hid = pidff->hid;
767
768 /* Repeat if PID_SIMULTANEOUS_MAX < 2 to make sure it's correct */
769 for (i = 0; i < 20; i++) {
770 hid_hw_request(hid, pidff->reports[PID_POOL], HID_REQ_GET_REPORT);
771 hid_hw_wait(hid);
772
773 if (!pidff->pool[PID_SIMULTANEOUS_MAX].value)
774 return;
775 if (pidff->pool[PID_SIMULTANEOUS_MAX].value[0] >= 2)
776 return;
777 }
778 hid_warn(hid, "device reports %d simultaneous effects\n",
779 pidff->pool[PID_SIMULTANEOUS_MAX].value[0]);
780 }
781
782 /*
783 * Send a request for effect upload to the device
784 *
785 * Reset and enable actuators if no effects were present on the device
786 *
787 * Returns 0 if device reported success, -ENOSPC if the device reported memory
788 * is full. Upon unknown response the function will retry for 60 times, if
789 * still unsuccessful -EIO is returned.
790 */
pidff_request_effect_upload(struct pidff_device * pidff,int efnum)791 static int pidff_request_effect_upload(struct pidff_device *pidff, int efnum)
792 {
793 pidff->create_new_effect_type->value[0] = efnum;
794 hid_hw_request(pidff->hid, pidff->reports[PID_CREATE_NEW_EFFECT],
795 HID_REQ_SET_REPORT);
796 hid_dbg(pidff->hid, "create_new_effect sent, type: %d\n", efnum);
797
798 pidff->block_load[PID_EFFECT_BLOCK_INDEX].value[0] = 0;
799 pidff->block_load_status->value[0] = 0;
800 hid_hw_wait(pidff->hid);
801
802 for (int i = 0; i < 60; i++) {
803 hid_dbg(pidff->hid, "pid_block_load requested\n");
804 hid_hw_request(pidff->hid, pidff->reports[PID_BLOCK_LOAD],
805 HID_REQ_GET_REPORT);
806 hid_hw_wait(pidff->hid);
807 if (pidff->block_load_status->value[0] ==
808 pidff->status_id[PID_BLOCK_LOAD_SUCCESS]) {
809 hid_dbg(pidff->hid, "device reported free memory: %d bytes\n",
810 pidff->block_load[PID_RAM_POOL_AVAILABLE].value ?
811 pidff->block_load[PID_RAM_POOL_AVAILABLE].value[0] : -1);
812 return 0;
813 }
814 if (pidff->block_load_status->value[0] ==
815 pidff->status_id[PID_BLOCK_LOAD_FULL]) {
816 hid_dbg(pidff->hid, "not enough memory free: %d bytes\n",
817 pidff->block_load[PID_RAM_POOL_AVAILABLE].value ?
818 pidff->block_load[PID_RAM_POOL_AVAILABLE].value[0] : -1);
819 return -ENOSPC;
820 }
821 if (pidff->block_load_status->value[0] ==
822 pidff->status_id[PID_BLOCK_LOAD_ERROR]) {
823 hid_dbg(pidff->hid, "device error during effect creation\n");
824 return -EREMOTEIO;
825 }
826 }
827 hid_err(pidff->hid, "pid_block_load failed 60 times\n");
828 return -EIO;
829 }
830
pidff_needs_playback(struct pidff_device * pidff,int effect_id,int n)831 static int pidff_needs_playback(struct pidff_device *pidff, int effect_id, int n)
832 {
833 return !pidff->effect[effect_id].is_infinite ||
834 pidff->effect[effect_id].loop_count != n;
835 }
836
837 /*
838 * Play the effect with PID id n times
839 */
pidff_playback_pid(struct pidff_device * pidff,int pid_id,int n)840 static void pidff_playback_pid(struct pidff_device *pidff, int pid_id, int n)
841 {
842 pidff->effect_operation[PID_EFFECT_BLOCK_INDEX].value[0] = pid_id;
843
844 hid_dbg(pidff->hid, "%s PID effect %d", n == 0 ? "stopping" : "playing",
845 pid_id);
846
847 if (n == 0) {
848 pidff->effect_operation_status->value[0] =
849 pidff->operation_id[PID_EFFECT_STOP];
850 } else {
851 pidff->effect_operation_status->value[0] =
852 pidff->operation_id[PID_EFFECT_START];
853 pidff->effect_operation[PID_LOOP_COUNT].value[0] =
854 pidff_clamp(n, pidff->effect_operation[PID_LOOP_COUNT].field);
855 }
856
857 hid_hw_request(pidff->hid, pidff->reports[PID_EFFECT_OPERATION],
858 HID_REQ_SET_REPORT);
859 }
860
861 /*
862 * Play the effect with effect id @effect_id for @value times
863 */
pidff_playback(struct input_dev * dev,int effect_id,int value)864 static int pidff_playback(struct input_dev *dev, int effect_id, int value)
865 {
866 struct pidff_device *pidff = dev->ff->private;
867
868 if (!pidff_needs_playback(pidff, effect_id, value))
869 return 0;
870
871 hid_dbg(pidff->hid, "requesting %s on FF effect %d",
872 value == 0 ? "stop" : "playback", effect_id);
873
874 pidff->effect[effect_id].loop_count = value;
875 pidff_playback_pid(pidff, pidff->effect[effect_id].pid_id, value);
876 return 0;
877 }
878
879 /*
880 * Erase effect with PID id
881 * Decrease the device effect counter
882 */
pidff_erase_pid(struct pidff_device * pidff,int pid_id)883 static void pidff_erase_pid(struct pidff_device *pidff, int pid_id)
884 {
885 pidff->block_free[PID_EFFECT_BLOCK_INDEX].value[0] = pid_id;
886 hid_hw_request(pidff->hid, pidff->reports[PID_BLOCK_FREE],
887 HID_REQ_SET_REPORT);
888 }
889
890 /*
891 * Stop and erase effect with effect_id
892 */
pidff_erase_effect(struct input_dev * dev,int effect_id)893 static int pidff_erase_effect(struct input_dev *dev, int effect_id)
894 {
895 struct pidff_device *pidff = dev->ff->private;
896 int pid_id = pidff->effect[effect_id].pid_id;
897
898 hid_dbg(pidff->hid, "starting to erase %d/%d\n", effect_id, pid_id);
899
900 /*
901 * Wait for the queue to clear. We do not want
902 * a full fifo to prevent the effect removal.
903 */
904 hid_hw_wait(pidff->hid);
905 pidff_playback_pid(pidff, pid_id, 0);
906 pidff_erase_pid(pidff, pid_id);
907
908 if (pidff->effect_count > 0)
909 pidff->effect_count--;
910
911 hid_dbg(pidff->hid, "current effect count: %d", pidff->effect_count);
912 return 0;
913 }
914
915 #define PIDFF_SET_REPORT_IF_NEEDED(type, effect, old) \
916 ({ if (!old || pidff_needs_set_## type(effect, old)) \
917 pidff_set_ ##type## _report(pidff, effect); })
918
919 #define PIDFF_SET_ENVELOPE_IF_NEEDED(type, effect, old) \
920 ({ if (pidff_needs_set_envelope(&effect->u.type.envelope, \
921 old ? &old->u.type.envelope : NULL)) \
922 pidff_set_envelope_report(pidff, &effect->u.type.envelope); })
923
924 /*
925 * Effect upload handler
926 */
pidff_upload_effect(struct input_dev * dev,struct ff_effect * new,struct ff_effect * old)927 static int pidff_upload_effect(struct input_dev *dev, struct ff_effect *new,
928 struct ff_effect *old)
929 {
930 struct pidff_device *pidff = dev->ff->private;
931 const int type_id = pidff_get_effect_type_id(pidff, new);
932
933 if (!type_id) {
934 hid_err(pidff->hid, "effect type not supported\n");
935 return -EINVAL;
936 }
937
938 if (!pidff->effect_count)
939 pidff_reset(pidff);
940
941 if (!old) {
942 int error = pidff_request_effect_upload(pidff, type_id);
943
944 if (error)
945 return error;
946
947 pidff->effect_count++;
948 hid_dbg(pidff->hid, "current effect count: %d", pidff->effect_count);
949 pidff->effect[new->id].loop_count = 0;
950 pidff->effect[new->id].pid_id =
951 pidff->block_load[PID_EFFECT_BLOCK_INDEX].value[0];
952 }
953
954 pidff->effect[new->id].is_infinite =
955 pidff_is_duration_infinite(new->replay.length);
956
957 pidff->block_load[PID_EFFECT_BLOCK_INDEX].value[0] =
958 pidff->effect[new->id].pid_id;
959
960 PIDFF_SET_REPORT_IF_NEEDED(effect, new, old);
961 switch (new->type) {
962 case FF_CONSTANT:
963 PIDFF_SET_REPORT_IF_NEEDED(constant, new, old);
964 PIDFF_SET_ENVELOPE_IF_NEEDED(constant, new, old);
965 break;
966
967 case FF_PERIODIC:
968 PIDFF_SET_REPORT_IF_NEEDED(periodic, new, old);
969 PIDFF_SET_ENVELOPE_IF_NEEDED(periodic, new, old);
970 break;
971
972 case FF_RAMP:
973 PIDFF_SET_REPORT_IF_NEEDED(ramp, new, old);
974 PIDFF_SET_ENVELOPE_IF_NEEDED(ramp, new, old);
975 break;
976
977 case FF_SPRING:
978 case FF_DAMPER:
979 case FF_INERTIA:
980 case FF_FRICTION:
981 PIDFF_SET_REPORT_IF_NEEDED(condition, new, old);
982 break;
983 }
984 hid_dbg(pidff->hid, "uploaded\n");
985 return 0;
986 }
987
988 /*
989 * set_gain() handler
990 */
pidff_set_gain(struct input_dev * dev,u16 gain)991 static void pidff_set_gain(struct input_dev *dev, u16 gain)
992 {
993 pidff_set_gain_report(dev->ff->private, gain);
994 }
995
pidff_autocenter(struct pidff_device * pidff,u16 magnitude)996 static void pidff_autocenter(struct pidff_device *pidff, u16 magnitude)
997 {
998 struct hid_field *field =
999 pidff->block_load[PID_EFFECT_BLOCK_INDEX].field;
1000
1001 if (!magnitude) {
1002 pidff_playback_pid(pidff, field->logical_minimum, 0);
1003 return;
1004 }
1005
1006 pidff_playback_pid(pidff, field->logical_minimum, 1);
1007
1008 pidff->set_effect[PID_EFFECT_BLOCK_INDEX].value[0] =
1009 pidff->block_load[PID_EFFECT_BLOCK_INDEX].field->logical_minimum;
1010 pidff->set_effect_type->value[0] = pidff->type_id[PID_SPRING];
1011 pidff->set_effect[PID_DURATION].value[0] = 0;
1012 pidff->set_effect[PID_TRIGGER_BUTTON].value[0] = 0;
1013 pidff->set_effect[PID_TRIGGER_REPEAT_INT].value[0] = 0;
1014 pidff_set(&pidff->set_effect[PID_GAIN], magnitude);
1015 pidff->set_effect[PID_DIRECTION_ENABLE].value[0] = 1;
1016
1017 /* Omit setting delay field if it's missing */
1018 if (!(pidff->quirks & HID_PIDFF_QUIRK_MISSING_DELAY))
1019 pidff->set_effect[PID_START_DELAY].value[0] = 0;
1020
1021 hid_hw_request(pidff->hid, pidff->reports[PID_SET_EFFECT],
1022 HID_REQ_SET_REPORT);
1023 }
1024
1025 /*
1026 * pidff_set_autocenter() handler
1027 */
pidff_set_autocenter(struct input_dev * dev,u16 magnitude)1028 static void pidff_set_autocenter(struct input_dev *dev, u16 magnitude)
1029 {
1030 pidff_autocenter(dev->ff->private, magnitude);
1031 }
1032
1033 /*
1034 * Find specific usage in a given hid_field
1035 */
pidff_find_usage(struct hid_field * fld,unsigned int usage_code)1036 static int pidff_find_usage(struct hid_field *fld, unsigned int usage_code)
1037 {
1038 for (int i = 0; i < fld->maxusage; i++) {
1039 if (fld->usage[i].hid == usage_code)
1040 return i;
1041 }
1042 return -1;
1043 }
1044
1045 /*
1046 * Find hid_field with a specific usage. Return the usage index as well
1047 */
pidff_find_field_with_usage(int * usage_index,struct hid_report * report,unsigned int usage_code)1048 static int pidff_find_field_with_usage(int *usage_index,
1049 struct hid_report *report,
1050 unsigned int usage_code)
1051 {
1052 for (int i = 0; i < report->maxfield; i++) {
1053 struct hid_field *fld = report->field[i];
1054
1055 if (fld->maxusage != fld->report_count) {
1056 pr_debug("maxusage and report_count do not match, skipping\n");
1057 continue;
1058 }
1059
1060 int index = pidff_find_usage(fld, usage_code);
1061
1062 if (index >= 0) {
1063 *usage_index = index;
1064 return i;
1065 }
1066 }
1067 return -1;
1068 }
1069
1070 #define PIDFF_MISSING_FIELD(name, quirks) \
1071 ({ pr_debug("%s field not found, but that's OK\n", __stringify(name)); \
1072 pr_debug("Setting MISSING_%s quirk\n", __stringify(name)); \
1073 *quirks |= HID_PIDFF_QUIRK_MISSING_ ## name; })
1074
1075 /*
1076 * Find fields from a report and fill a pidff_usage
1077 */
pidff_find_fields(struct pidff_usage * usage,const u8 * table,struct hid_report * report,int count,int strict,u32 * quirks)1078 static int pidff_find_fields(struct pidff_usage *usage, const u8 *table,
1079 struct hid_report *report, int count, int strict,
1080 u32 *quirks)
1081 {
1082 if (!report) {
1083 pr_debug("%s, null report\n", __func__);
1084 return -1;
1085 }
1086
1087 for (int i = 0; i < count; i++) {
1088 int index;
1089 int found = pidff_find_field_with_usage(&index, report,
1090 HID_UP_PID | table[i]);
1091
1092 if (found >= 0) {
1093 pr_debug("found %d at %d->%d\n", i, found, index);
1094 usage[i].field = report->field[found];
1095 usage[i].value = &report->field[found]->value[index];
1096 continue;
1097 }
1098
1099 /* Field quirks auto-detection */
1100 if (table[i] == pidff_set_effect[PID_START_DELAY])
1101 PIDFF_MISSING_FIELD(DELAY, quirks);
1102
1103 else if (table[i] == pidff_set_condition[PID_PARAM_BLOCK_OFFSET])
1104 PIDFF_MISSING_FIELD(PBO, quirks);
1105
1106 else if (table[i] == pidff_set_condition[PID_NEG_COEFFICIENT])
1107 PIDFF_MISSING_FIELD(NEG_COEFFICIENT, quirks);
1108
1109 else if (table[i] == pidff_set_condition[PID_NEG_SATURATION])
1110 PIDFF_MISSING_FIELD(NEG_SATURATION, quirks);
1111
1112 else if (table[i] == pidff_set_condition[PID_DEADBAND])
1113 PIDFF_MISSING_FIELD(DEADBAND, quirks);
1114
1115 else if (strict) {
1116 pr_debug("failed to locate %d\n", i);
1117 return -1;
1118 }
1119 }
1120 return 0;
1121 }
1122
1123 /*
1124 * Return index into pidff_reports for the given usage
1125 */
pidff_check_usage(int usage)1126 static int pidff_check_usage(int usage)
1127 {
1128 int i;
1129
1130 for (i = 0; i < ARRAY_SIZE(pidff_reports); i++)
1131 if (usage == (HID_UP_PID | pidff_reports[i]))
1132 return i;
1133
1134 return -1;
1135 }
1136
1137 /*
1138 * Find the reports and fill pidff->reports[]
1139 * report_type specifies either OUTPUT or FEATURE reports
1140 */
pidff_find_reports(struct hid_device * hid,int report_type,struct pidff_device * pidff)1141 static void pidff_find_reports(struct hid_device *hid, int report_type,
1142 struct pidff_device *pidff)
1143 {
1144 struct hid_report *report;
1145 int i, ret;
1146
1147 list_for_each_entry(report,
1148 &hid->report_enum[report_type].report_list, list) {
1149 if (report->maxfield < 1)
1150 continue;
1151 ret = pidff_check_usage(report->field[0]->logical);
1152 if (ret != -1) {
1153 hid_dbg(hid, "found usage 0x%02x from field->logical\n",
1154 pidff_reports[ret]);
1155 pidff->reports[ret] = report;
1156 continue;
1157 }
1158
1159 /*
1160 * Sometimes logical collections are stacked to indicate
1161 * different usages for the report and the field, in which
1162 * case we want the usage of the parent. However, Linux HID
1163 * implementation hides this fact, so we have to dig it up
1164 * ourselves
1165 */
1166 i = report->field[0]->usage[0].collection_index;
1167 if (i <= 0 ||
1168 hid->collection[i - 1].type != HID_COLLECTION_LOGICAL)
1169 continue;
1170 ret = pidff_check_usage(hid->collection[i - 1].usage);
1171 if (ret != -1 && !pidff->reports[ret]) {
1172 hid_dbg(hid,
1173 "found usage 0x%02x from collection array\n",
1174 pidff_reports[ret]);
1175 pidff->reports[ret] = report;
1176 }
1177 }
1178 }
1179
1180 /*
1181 * Test if the required reports have been found
1182 */
pidff_reports_ok(struct pidff_device * pidff)1183 static int pidff_reports_ok(struct pidff_device *pidff)
1184 {
1185 for (int i = 0; i < PID_REQUIRED_REPORTS; i++) {
1186 if (!pidff->reports[i]) {
1187 hid_dbg(pidff->hid, "%d missing\n", i);
1188 return 0;
1189 }
1190 }
1191
1192 return 1;
1193 }
1194
1195 /*
1196 * Find a field with a specific usage within a report
1197 */
pidff_find_special_field(struct hid_report * report,int usage,int enforce_min)1198 static struct hid_field *pidff_find_special_field(struct hid_report *report,
1199 int usage, int enforce_min)
1200 {
1201 if (!report) {
1202 pr_debug("%s, null report\n", __func__);
1203 return NULL;
1204 }
1205
1206 for (int i = 0; i < report->maxfield; i++) {
1207 if (report->field[i]->logical == (HID_UP_PID | usage) &&
1208 report->field[i]->report_count > 0) {
1209 if (!enforce_min ||
1210 report->field[i]->logical_minimum == 1)
1211 return report->field[i];
1212
1213 pr_err("logical_minimum is not 1 as it should be\n");
1214 return NULL;
1215 }
1216 }
1217 return NULL;
1218 }
1219
1220 /*
1221 * Fill a pidff->*_id struct table
1222 */
pidff_find_special_keys(int * keys,struct hid_field * fld,const u8 * usagetable,int count,unsigned int usage_page)1223 static int pidff_find_special_keys(int *keys, struct hid_field *fld,
1224 const u8 *usagetable, int count,
1225 unsigned int usage_page)
1226 {
1227 int found = 0;
1228
1229 if (!fld)
1230 return 0;
1231
1232 for (int i = 0; i < count; i++) {
1233 keys[i] = pidff_find_usage(fld, usage_page | usagetable[i]) + 1;
1234 if (keys[i])
1235 found++;
1236 }
1237 return found;
1238 }
1239
1240 #define PIDFF_FIND_SPECIAL_KEYS(keys, field, name) \
1241 pidff_find_special_keys(pidff->keys, pidff->field, pidff_ ## name, \
1242 ARRAY_SIZE(pidff_ ## name), HID_UP_PID)
1243
1244 #define PIDFF_FIND_GENERAL_DESKTOP(keys, field, name) \
1245 pidff_find_special_keys(pidff->keys, pidff->field, pidff_ ## name, \
1246 ARRAY_SIZE(pidff_ ## name), HID_UP_GENDESK)
1247
1248 /*
1249 * Find and check the special fields
1250 */
pidff_find_special_fields(struct pidff_device * pidff)1251 static int pidff_find_special_fields(struct pidff_device *pidff)
1252 {
1253 hid_dbg(pidff->hid, "finding special fields\n");
1254
1255 pidff->create_new_effect_type =
1256 pidff_find_special_field(pidff->reports[PID_CREATE_NEW_EFFECT],
1257 PID_EFFECT_TYPE, 1);
1258 pidff->set_effect_type =
1259 pidff_find_special_field(pidff->reports[PID_SET_EFFECT],
1260 PID_EFFECT_TYPE, 1);
1261 pidff->axes_enable =
1262 pidff_find_special_field(pidff->reports[PID_SET_EFFECT],
1263 PID_AXES_ENABLE, 0);
1264 pidff->effect_direction =
1265 pidff_find_special_field(pidff->reports[PID_SET_EFFECT],
1266 PID_DIRECTION, 0);
1267 pidff->device_control =
1268 pidff_find_special_field(pidff->reports[PID_DEVICE_CONTROL],
1269 PID_DEVICE_CONTROL_ARRAY, 1);
1270
1271 /* Detect and set permissive control quirk */
1272 if (!pidff->device_control) {
1273 pr_debug("Setting PERMISSIVE_CONTROL quirk\n");
1274 pidff->quirks |= HID_PIDFF_QUIRK_PERMISSIVE_CONTROL;
1275 pidff->device_control = pidff_find_special_field(
1276 pidff->reports[PID_DEVICE_CONTROL],
1277 PID_DEVICE_CONTROL_ARRAY, 0);
1278 }
1279
1280 pidff->block_load_status =
1281 pidff_find_special_field(pidff->reports[PID_BLOCK_LOAD],
1282 PID_BLOCK_LOAD_STATUS, 1);
1283 pidff->effect_operation_status =
1284 pidff_find_special_field(pidff->reports[PID_EFFECT_OPERATION],
1285 PID_EFFECT_OPERATION_ARRAY, 1);
1286
1287 hid_dbg(pidff->hid, "search done\n");
1288
1289 if (!pidff->create_new_effect_type || !pidff->set_effect_type) {
1290 hid_err(pidff->hid, "effect lists not found\n");
1291 return -1;
1292 }
1293
1294 if (!pidff->effect_direction) {
1295 hid_err(pidff->hid, "direction field not found\n");
1296 return -1;
1297 }
1298
1299 if (!pidff->device_control) {
1300 hid_err(pidff->hid, "device control field not found\n");
1301 return -1;
1302 }
1303
1304 if (!pidff->block_load_status) {
1305 hid_err(pidff->hid, "block load status field not found\n");
1306 return -1;
1307 }
1308
1309 if (!pidff->effect_operation_status) {
1310 hid_err(pidff->hid, "effect operation field not found\n");
1311 return -1;
1312 }
1313
1314 PIDFF_FIND_SPECIAL_KEYS(control_id, device_control, device_control);
1315
1316 if (!PIDFF_FIND_SPECIAL_KEYS(type_id, create_new_effect_type,
1317 effect_types)) {
1318 hid_err(pidff->hid, "no effect types found\n");
1319 return -1;
1320 }
1321
1322 if (PIDFF_FIND_SPECIAL_KEYS(status_id, block_load_status,
1323 block_load_status) !=
1324 ARRAY_SIZE(pidff_block_load_status)) {
1325 hid_err(pidff->hid,
1326 "block load status identifiers not found\n");
1327 return -1;
1328 }
1329
1330 if (PIDFF_FIND_SPECIAL_KEYS(operation_id, effect_operation_status,
1331 effect_operation_status) !=
1332 ARRAY_SIZE(pidff_effect_operation_status)) {
1333 hid_err(pidff->hid, "effect operation identifiers not found\n");
1334 return -1;
1335 }
1336
1337 if (!pidff->axes_enable) {
1338 hid_info(pidff->hid, "axes enable field not found!\n");
1339 return 0;
1340 }
1341
1342 hid_dbg(pidff->hid, "axes enable report count: %u\n",
1343 pidff->axes_enable->report_count);
1344
1345 uint found = PIDFF_FIND_GENERAL_DESKTOP(direction_axis_id, axes_enable,
1346 direction_axis);
1347
1348 pidff->axis_count = found;
1349 hid_dbg(pidff->hid, "found direction axes: %u", found);
1350
1351 for (int i = 0; i < ARRAY_SIZE(pidff_direction_axis); i++) {
1352 if (!pidff->direction_axis_id[i])
1353 continue;
1354
1355 hid_dbg(pidff->hid, "axis %d, usage: 0x%04x, index: %d", i + 1,
1356 pidff_direction_axis[i], pidff->direction_axis_id[i]);
1357 }
1358
1359 if (pidff->axes_enable && found != pidff->axes_enable->report_count)
1360 hid_warn(pidff->hid, "axes_enable: %u != direction axes: %u",
1361 pidff->axes_enable->report_count, found);
1362
1363 return 0;
1364 }
1365
1366 /*
1367 * Find the implemented effect types
1368 */
pidff_find_effects(struct pidff_device * pidff,struct input_dev * dev)1369 static int pidff_find_effects(struct pidff_device *pidff,
1370 struct input_dev *dev)
1371 {
1372 int i;
1373
1374 for (i = 0; i < ARRAY_SIZE(pidff_effect_types); i++) {
1375 int pidff_type = pidff->type_id[i];
1376
1377 if (pidff->set_effect_type->usage[pidff_type].hid !=
1378 pidff->create_new_effect_type->usage[pidff_type].hid) {
1379 hid_err(pidff->hid,
1380 "effect type number %d is invalid\n", i);
1381 return -1;
1382 }
1383 }
1384
1385 if (pidff->type_id[PID_CONSTANT])
1386 set_bit(FF_CONSTANT, dev->ffbit);
1387 if (pidff->type_id[PID_RAMP])
1388 set_bit(FF_RAMP, dev->ffbit);
1389 if (pidff->type_id[PID_SQUARE]) {
1390 set_bit(FF_SQUARE, dev->ffbit);
1391 set_bit(FF_PERIODIC, dev->ffbit);
1392 }
1393 if (pidff->type_id[PID_SINE]) {
1394 set_bit(FF_SINE, dev->ffbit);
1395 set_bit(FF_PERIODIC, dev->ffbit);
1396 }
1397 if (pidff->type_id[PID_TRIANGLE]) {
1398 set_bit(FF_TRIANGLE, dev->ffbit);
1399 set_bit(FF_PERIODIC, dev->ffbit);
1400 }
1401 if (pidff->type_id[PID_SAW_UP]) {
1402 set_bit(FF_SAW_UP, dev->ffbit);
1403 set_bit(FF_PERIODIC, dev->ffbit);
1404 }
1405 if (pidff->type_id[PID_SAW_DOWN]) {
1406 set_bit(FF_SAW_DOWN, dev->ffbit);
1407 set_bit(FF_PERIODIC, dev->ffbit);
1408 }
1409 if (pidff->type_id[PID_SPRING])
1410 set_bit(FF_SPRING, dev->ffbit);
1411 if (pidff->type_id[PID_DAMPER])
1412 set_bit(FF_DAMPER, dev->ffbit);
1413 if (pidff->type_id[PID_INERTIA])
1414 set_bit(FF_INERTIA, dev->ffbit);
1415 if (pidff->type_id[PID_FRICTION])
1416 set_bit(FF_FRICTION, dev->ffbit);
1417
1418 return 0;
1419 }
1420
1421 #define PIDFF_FIND_FIELDS(name, report, strict) \
1422 pidff_find_fields(pidff->name, pidff_ ## name, \
1423 pidff->reports[report], \
1424 ARRAY_SIZE(pidff_ ## name), strict, &pidff->quirks)
1425
1426 /*
1427 * Fill and check the pidff_usages
1428 */
pidff_init_fields(struct pidff_device * pidff,struct input_dev * dev)1429 static int pidff_init_fields(struct pidff_device *pidff, struct input_dev *dev)
1430 {
1431 if (PIDFF_FIND_FIELDS(set_effect, PID_SET_EFFECT, 1)) {
1432 hid_err(pidff->hid, "unknown set_effect report layout\n");
1433 return -ENODEV;
1434 }
1435
1436 PIDFF_FIND_FIELDS(block_load, PID_BLOCK_LOAD, 0);
1437 if (!pidff->block_load[PID_EFFECT_BLOCK_INDEX].value) {
1438 hid_err(pidff->hid, "unknown pid_block_load report layout\n");
1439 return -ENODEV;
1440 }
1441
1442 if (PIDFF_FIND_FIELDS(effect_operation, PID_EFFECT_OPERATION, 1)) {
1443 hid_err(pidff->hid, "unknown effect_operation report layout\n");
1444 return -ENODEV;
1445 }
1446
1447 if (PIDFF_FIND_FIELDS(block_free, PID_BLOCK_FREE, 1)) {
1448 hid_err(pidff->hid, "unknown pid_block_free report layout\n");
1449 return -ENODEV;
1450 }
1451
1452 if (pidff_find_special_fields(pidff) || pidff_find_effects(pidff, dev))
1453 return -ENODEV;
1454
1455 if (PIDFF_FIND_FIELDS(set_envelope, PID_SET_ENVELOPE, 1)) {
1456 if (test_and_clear_bit(FF_CONSTANT, dev->ffbit))
1457 hid_warn(pidff->hid,
1458 "has constant effect but no envelope\n");
1459 if (test_and_clear_bit(FF_RAMP, dev->ffbit))
1460 hid_warn(pidff->hid,
1461 "has ramp effect but no envelope\n");
1462
1463 if (test_and_clear_bit(FF_PERIODIC, dev->ffbit))
1464 hid_warn(pidff->hid,
1465 "has periodic effect but no envelope\n");
1466 }
1467
1468 if (PIDFF_FIND_FIELDS(set_constant, PID_SET_CONSTANT, 1) &&
1469 test_and_clear_bit(FF_CONSTANT, dev->ffbit))
1470 hid_warn(pidff->hid, "unknown constant effect layout\n");
1471
1472 if (PIDFF_FIND_FIELDS(set_ramp, PID_SET_RAMP, 1) &&
1473 test_and_clear_bit(FF_RAMP, dev->ffbit))
1474 hid_warn(pidff->hid, "unknown ramp effect layout\n");
1475
1476 if (PIDFF_FIND_FIELDS(set_condition, PID_SET_CONDITION, 1)) {
1477 bool test = false;
1478
1479 test |= test_and_clear_bit(FF_SPRING, dev->ffbit);
1480 test |= test_and_clear_bit(FF_DAMPER, dev->ffbit);
1481 test |= test_and_clear_bit(FF_FRICTION, dev->ffbit);
1482 test |= test_and_clear_bit(FF_INERTIA, dev->ffbit);
1483 if (test)
1484 hid_warn(pidff->hid, "unknown condition effect layout\n");
1485 }
1486
1487 if (PIDFF_FIND_FIELDS(set_periodic, PID_SET_PERIODIC, 1) &&
1488 test_and_clear_bit(FF_PERIODIC, dev->ffbit))
1489 hid_warn(pidff->hid, "unknown periodic effect layout\n");
1490
1491 PIDFF_FIND_FIELDS(pool, PID_POOL, 0);
1492
1493 if (!PIDFF_FIND_FIELDS(device_gain, PID_DEVICE_GAIN, 1))
1494 set_bit(FF_GAIN, dev->ffbit);
1495
1496 return 0;
1497 }
1498
1499 /*
1500 * Test if autocenter modification is using the supported method
1501 */
pidff_check_autocenter(struct pidff_device * pidff,struct input_dev * dev)1502 static int pidff_check_autocenter(struct pidff_device *pidff,
1503 struct input_dev *dev)
1504 {
1505 int error;
1506
1507 /*
1508 * Let's find out if autocenter modification is supported
1509 * Specification doesn't specify anything, so we request an
1510 * effect upload and cancel it immediately. If the approved
1511 * effect id was one above the minimum, then we assume the first
1512 * effect id is a built-in spring type effect used for autocenter
1513 */
1514
1515 error = pidff_request_effect_upload(pidff, 1);
1516 if (error) {
1517 hid_err(pidff->hid, "upload request failed\n");
1518 return error;
1519 }
1520
1521 if (pidff->block_load[PID_EFFECT_BLOCK_INDEX].value[0] ==
1522 pidff->block_load[PID_EFFECT_BLOCK_INDEX].field->logical_minimum + 1) {
1523 pidff_autocenter(pidff, U16_MAX);
1524 set_bit(FF_AUTOCENTER, dev->ffbit);
1525 } else {
1526 hid_notice(pidff->hid,
1527 "device has unknown autocenter control method\n");
1528 }
1529 pidff_erase_pid(pidff,
1530 pidff->block_load[PID_EFFECT_BLOCK_INDEX].value[0]);
1531
1532 return 0;
1533 }
1534
1535 /*
1536 * Check if the device is PID and initialize it
1537 * Set initial quirks
1538 */
hid_pidff_init_with_quirks(struct hid_device * hid,u32 initial_quirks)1539 int hid_pidff_init_with_quirks(struct hid_device *hid, u32 initial_quirks)
1540 {
1541 struct pidff_device *pidff;
1542 struct hid_input *hidinput =
1543 list_entry(hid->inputs.next, struct hid_input, list);
1544 struct input_dev *dev = hidinput->input;
1545 struct ff_device *ff;
1546 int max_effects;
1547 int error;
1548
1549 hid_dbg(hid, "starting pid init\n");
1550
1551 if (list_empty(&hid->report_enum[HID_OUTPUT_REPORT].report_list)) {
1552 hid_dbg(hid, "not a PID device, no output report\n");
1553 return -ENODEV;
1554 }
1555
1556 pidff = kzalloc_obj(*pidff);
1557 if (!pidff)
1558 return -ENOMEM;
1559
1560 pidff->hid = hid;
1561 pidff->quirks = initial_quirks;
1562 pidff->effect_count = 0;
1563
1564 hid_device_io_start(hid);
1565
1566 pidff_find_reports(hid, HID_OUTPUT_REPORT, pidff);
1567 pidff_find_reports(hid, HID_FEATURE_REPORT, pidff);
1568
1569 if (!pidff_reports_ok(pidff)) {
1570 hid_dbg(hid, "reports not ok, aborting\n");
1571 error = -ENODEV;
1572 goto fail;
1573 }
1574
1575 error = pidff_init_fields(pidff, dev);
1576 if (error)
1577 goto fail;
1578
1579 /* pool report is sometimes messed up, refetch it */
1580 pidff_fetch_pool(pidff);
1581 pidff_set_gain_report(pidff, U16_MAX);
1582 error = pidff_check_autocenter(pidff, dev);
1583 if (error)
1584 goto fail;
1585
1586 max_effects =
1587 pidff->block_load[PID_EFFECT_BLOCK_INDEX].field->logical_maximum -
1588 pidff->block_load[PID_EFFECT_BLOCK_INDEX].field->logical_minimum +
1589 1;
1590 hid_dbg(hid, "max effects is %d\n", max_effects);
1591
1592 if (max_effects > PID_EFFECTS_MAX)
1593 max_effects = PID_EFFECTS_MAX;
1594
1595 if (pidff->pool[PID_SIMULTANEOUS_MAX].value)
1596 hid_dbg(hid, "max simultaneous effects is %d\n",
1597 pidff->pool[PID_SIMULTANEOUS_MAX].value[0]);
1598
1599 if (pidff->pool[PID_RAM_POOL_SIZE].value)
1600 hid_dbg(hid, "device memory size is %d bytes\n",
1601 pidff->pool[PID_RAM_POOL_SIZE].value[0]);
1602
1603 if (pidff->pool[PID_DEVICE_MANAGED_POOL].value &&
1604 pidff->pool[PID_DEVICE_MANAGED_POOL].value[0] == 0) {
1605 error = -EPERM;
1606 hid_notice(hid,
1607 "device does not support device managed pool\n");
1608 goto fail;
1609 }
1610
1611 error = input_ff_create(dev, max_effects);
1612 if (error)
1613 goto fail;
1614
1615 ff = dev->ff;
1616 ff->private = pidff;
1617 ff->upload = pidff_upload_effect;
1618 ff->erase = pidff_erase_effect;
1619 ff->set_gain = pidff_set_gain;
1620 ff->set_autocenter = pidff_set_autocenter;
1621 ff->playback = pidff_playback;
1622
1623 hid_info(dev, "Force feedback for USB HID PID devices by Anssi Hannula\n");
1624 hid_dbg(dev, "Active quirks mask: 0x%08x\n", pidff->quirks);
1625
1626 hid_device_io_stop(hid);
1627
1628 return 0;
1629
1630 fail:
1631 hid_device_io_stop(hid);
1632
1633 kfree(pidff);
1634 return error;
1635 }
1636 EXPORT_SYMBOL_GPL(hid_pidff_init_with_quirks);
1637
1638 /*
1639 * Check if the device is PID and initialize it
1640 * Wrapper made to keep the compatibility with old
1641 * init function
1642 */
hid_pidff_init(struct hid_device * hid)1643 int hid_pidff_init(struct hid_device *hid)
1644 {
1645 return hid_pidff_init_with_quirks(hid, 0);
1646 }
1647