1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3 * Apple USB Touchpad (for post-February 2005 PowerBooks and MacBooks) driver
4 *
5 * Copyright (C) 2001-2004 Greg Kroah-Hartman (greg@kroah.com)
6 * Copyright (C) 2005-2008 Johannes Berg (johannes@sipsolutions.net)
7 * Copyright (C) 2005-2008 Stelian Pop (stelian@popies.net)
8 * Copyright (C) 2005 Frank Arnold (frank@scirocco-5v-turbo.de)
9 * Copyright (C) 2005 Peter Osterlund (petero2@telia.com)
10 * Copyright (C) 2005 Michael Hanselmann (linux-kernel@hansmi.ch)
11 * Copyright (C) 2006 Nicolas Boichat (nicolas@boichat.ch)
12 * Copyright (C) 2007-2008 Sven Anders (anders@anduras.de)
13 *
14 * Thanks to Alex Harper <basilisk@foobox.net> for his inputs.
15 */
16
17 #include <linux/kernel.h>
18 #include <linux/errno.h>
19 #include <linux/slab.h>
20 #include <linux/module.h>
21 #include <linux/usb/input.h>
22
23 /*
24 * Note: We try to keep the touchpad aspect ratio while still doing only
25 * simple arithmetics:
26 * 0 <= x <= (xsensors - 1) * xfact
27 * 0 <= y <= (ysensors - 1) * yfact
28 */
29 struct atp_info {
30 int xsensors; /* number of X sensors */
31 int xsensors_17; /* 17" models have more sensors */
32 int ysensors; /* number of Y sensors */
33 int xfact; /* X multiplication factor */
34 int yfact; /* Y multiplication factor */
35 int datalen; /* size of USB transfers */
36 void (*callback)(struct urb *); /* callback function */
37 int fuzz; /* fuzz touchpad generates */
38 };
39
40 static void atp_complete_geyser_1_2(struct urb *urb);
41 static void atp_complete_geyser_3_4(struct urb *urb);
42
43 static const struct atp_info fountain_info = {
44 .xsensors = 16,
45 .xsensors_17 = 26,
46 .ysensors = 16,
47 .xfact = 64,
48 .yfact = 43,
49 .datalen = 81,
50 .callback = atp_complete_geyser_1_2,
51 .fuzz = 16,
52 };
53
54 static const struct atp_info geyser1_info = {
55 .xsensors = 16,
56 .xsensors_17 = 26,
57 .ysensors = 16,
58 .xfact = 64,
59 .yfact = 43,
60 .datalen = 81,
61 .callback = atp_complete_geyser_1_2,
62 .fuzz = 16,
63 };
64
65 static const struct atp_info geyser2_info = {
66 .xsensors = 15,
67 .xsensors_17 = 20,
68 .ysensors = 9,
69 .xfact = 64,
70 .yfact = 43,
71 .datalen = 64,
72 .callback = atp_complete_geyser_1_2,
73 .fuzz = 0,
74 };
75
76 static const struct atp_info geyser3_info = {
77 .xsensors = 20,
78 .ysensors = 10,
79 .xfact = 64,
80 .yfact = 64,
81 .datalen = 64,
82 .callback = atp_complete_geyser_3_4,
83 .fuzz = 0,
84 };
85
86 static const struct atp_info geyser4_info = {
87 .xsensors = 20,
88 .ysensors = 10,
89 .xfact = 64,
90 .yfact = 64,
91 .datalen = 64,
92 .callback = atp_complete_geyser_3_4,
93 .fuzz = 0,
94 };
95
96 #define ATP_DEVICE(prod, info) \
97 { \
98 .match_flags = USB_DEVICE_ID_MATCH_DEVICE | \
99 USB_DEVICE_ID_MATCH_INT_CLASS | \
100 USB_DEVICE_ID_MATCH_INT_PROTOCOL, \
101 .idVendor = 0x05ac, /* Apple */ \
102 .idProduct = (prod), \
103 .bInterfaceClass = 0x03, \
104 .bInterfaceProtocol = 0x02, \
105 .driver_info = (unsigned long) &info, \
106 }
107
108 /*
109 * Table of devices (Product IDs) that work with this driver.
110 * (The names come from Info.plist in AppleUSBTrackpad.kext,
111 * According to Info.plist Geyser IV is the same as Geyser III.)
112 */
113
114 static const struct usb_device_id atp_table[] = {
115 /* PowerBooks Feb 2005, iBooks G4 */
116 ATP_DEVICE(0x020e, fountain_info), /* FOUNTAIN ANSI */
117 ATP_DEVICE(0x020f, fountain_info), /* FOUNTAIN ISO */
118 ATP_DEVICE(0x030a, fountain_info), /* FOUNTAIN TP ONLY */
119 ATP_DEVICE(0x030b, geyser1_info), /* GEYSER 1 TP ONLY */
120
121 /* PowerBooks Oct 2005 */
122 ATP_DEVICE(0x0214, geyser2_info), /* GEYSER 2 ANSI */
123 ATP_DEVICE(0x0215, geyser2_info), /* GEYSER 2 ISO */
124 ATP_DEVICE(0x0216, geyser2_info), /* GEYSER 2 JIS */
125
126 /* Core Duo MacBook & MacBook Pro */
127 ATP_DEVICE(0x0217, geyser3_info), /* GEYSER 3 ANSI */
128 ATP_DEVICE(0x0218, geyser3_info), /* GEYSER 3 ISO */
129 ATP_DEVICE(0x0219, geyser3_info), /* GEYSER 3 JIS */
130
131 /* Core2 Duo MacBook & MacBook Pro */
132 ATP_DEVICE(0x021a, geyser4_info), /* GEYSER 4 ANSI */
133 ATP_DEVICE(0x021b, geyser4_info), /* GEYSER 4 ISO */
134 ATP_DEVICE(0x021c, geyser4_info), /* GEYSER 4 JIS */
135
136 /* Core2 Duo MacBook3,1 */
137 ATP_DEVICE(0x0229, geyser4_info), /* GEYSER 4 HF ANSI */
138 ATP_DEVICE(0x022a, geyser4_info), /* GEYSER 4 HF ISO */
139 ATP_DEVICE(0x022b, geyser4_info), /* GEYSER 4 HF JIS */
140
141 /* Terminating entry */
142 { }
143 };
144 MODULE_DEVICE_TABLE(usb, atp_table);
145
146 /* maximum number of sensors */
147 #define ATP_XSENSORS 26
148 #define ATP_YSENSORS 16
149
150 /*
151 * The largest possible bank of sensors with additional buffer of 4 extra values
152 * on either side, for an array of smoothed sensor values.
153 */
154 #define ATP_SMOOTHSIZE 34
155
156 /* maximum pressure this driver will report */
157 #define ATP_PRESSURE 300
158
159 /*
160 * Threshold for the touchpad sensors. Any change less than ATP_THRESHOLD is
161 * ignored.
162 */
163 #define ATP_THRESHOLD 5
164
165 /*
166 * How far we'll bitshift our sensor values before averaging them. Mitigates
167 * rounding errors.
168 */
169 #define ATP_SCALE 12
170
171 /* Geyser initialization constants */
172 #define ATP_GEYSER_MODE_READ_REQUEST_ID 1
173 #define ATP_GEYSER_MODE_WRITE_REQUEST_ID 9
174 #define ATP_GEYSER_MODE_REQUEST_VALUE 0x300
175 #define ATP_GEYSER_MODE_REQUEST_INDEX 0
176 #define ATP_GEYSER_MODE_VENDOR_VALUE 0x04
177
178 /**
179 * enum atp_status_bits - status bit meanings
180 *
181 * These constants represent the meaning of the status bits.
182 * (only Geyser 3/4)
183 *
184 * @ATP_STATUS_BUTTON: The button was pressed
185 * @ATP_STATUS_BASE_UPDATE: Update of the base values (untouched pad)
186 * @ATP_STATUS_FROM_RESET: Reset previously performed
187 */
188 enum atp_status_bits {
189 ATP_STATUS_BUTTON = BIT(0),
190 ATP_STATUS_BASE_UPDATE = BIT(2),
191 ATP_STATUS_FROM_RESET = BIT(4),
192 };
193
194 /* Structure to hold all of our device specific stuff */
195 struct atp {
196 char phys[64];
197 struct usb_device *udev; /* usb device */
198 struct usb_interface *intf; /* usb interface */
199 struct urb *urb; /* usb request block */
200 u8 *data; /* transferred data */
201 struct input_dev *input; /* input dev */
202 const struct atp_info *info; /* touchpad model */
203 bool valid; /* are the samples valid? */
204 bool size_detect_done;
205 bool overflow_warned;
206 int fingers_old; /* last reported finger count */
207 int x_old; /* last reported x/y, */
208 int y_old; /* used for smoothing */
209 signed char xy_cur[ATP_XSENSORS + ATP_YSENSORS];
210 signed char xy_old[ATP_XSENSORS + ATP_YSENSORS];
211 int xy_acc[ATP_XSENSORS + ATP_YSENSORS];
212 int smooth[ATP_SMOOTHSIZE];
213 int smooth_tmp[ATP_SMOOTHSIZE];
214 int idlecount; /* number of empty packets */
215 struct work_struct work;
216 };
217
218 #define dbg_dump(msg, tab) \
219 if (debug > 1) { \
220 int __i; \
221 printk(KERN_DEBUG "appletouch: %s", msg); \
222 for (__i = 0; __i < ATP_XSENSORS + ATP_YSENSORS; __i++) \
223 printk(" %02x", tab[__i]); \
224 printk("\n"); \
225 }
226
227 #define dprintk(format, a...) \
228 do { \
229 if (debug) \
230 printk(KERN_DEBUG format, ##a); \
231 } while (0)
232
233 MODULE_AUTHOR("Johannes Berg");
234 MODULE_AUTHOR("Stelian Pop");
235 MODULE_AUTHOR("Frank Arnold");
236 MODULE_AUTHOR("Michael Hanselmann");
237 MODULE_AUTHOR("Sven Anders");
238 MODULE_DESCRIPTION("Apple PowerBook and MacBook USB touchpad driver");
239 MODULE_LICENSE("GPL");
240
241 /*
242 * Make the threshold a module parameter
243 */
244 static int threshold = ATP_THRESHOLD;
245 module_param(threshold, int, 0644);
246 MODULE_PARM_DESC(threshold, "Discard any change in data from a sensor"
247 " (the trackpad has many of these sensors)"
248 " less than this value.");
249
250 static int debug;
251 module_param(debug, int, 0644);
252 MODULE_PARM_DESC(debug, "Activate debugging output");
253
254 /*
255 * By default newer Geyser devices send standard USB HID mouse
256 * packets (Report ID 2). This code changes device mode, so it
257 * sends raw sensor reports (Report ID 5).
258 */
atp_geyser_init(struct atp * dev)259 static int atp_geyser_init(struct atp *dev)
260 {
261 struct usb_device *udev = dev->udev;
262 char *data;
263 int size;
264 int i;
265 int ret;
266
267 data = kmalloc(8, GFP_KERNEL);
268 if (!data) {
269 dev_err(&dev->intf->dev, "Out of memory\n");
270 return -ENOMEM;
271 }
272
273 size = usb_control_msg(udev, usb_rcvctrlpipe(udev, 0),
274 ATP_GEYSER_MODE_READ_REQUEST_ID,
275 USB_DIR_IN | USB_TYPE_CLASS | USB_RECIP_INTERFACE,
276 ATP_GEYSER_MODE_REQUEST_VALUE,
277 ATP_GEYSER_MODE_REQUEST_INDEX, data, 8, 5000);
278
279 if (size != 8) {
280 dprintk("atp_geyser_init: read error\n");
281 for (i = 0; i < 8; i++)
282 dprintk("appletouch[%d]: %d\n", i, data[i]);
283
284 dev_err(&dev->intf->dev, "Failed to read mode from device.\n");
285 ret = -EIO;
286 goto out_free;
287 }
288
289 /* Apply the mode switch */
290 data[0] = ATP_GEYSER_MODE_VENDOR_VALUE;
291
292 size = usb_control_msg(udev, usb_sndctrlpipe(udev, 0),
293 ATP_GEYSER_MODE_WRITE_REQUEST_ID,
294 USB_DIR_OUT | USB_TYPE_CLASS | USB_RECIP_INTERFACE,
295 ATP_GEYSER_MODE_REQUEST_VALUE,
296 ATP_GEYSER_MODE_REQUEST_INDEX, data, 8, 5000);
297
298 if (size != 8) {
299 dprintk("atp_geyser_init: write error\n");
300 for (i = 0; i < 8; i++)
301 dprintk("appletouch[%d]: %d\n", i, data[i]);
302
303 dev_err(&dev->intf->dev, "Failed to request geyser raw mode\n");
304 ret = -EIO;
305 goto out_free;
306 }
307 ret = 0;
308 out_free:
309 kfree(data);
310 return ret;
311 }
312
313 /*
314 * Reinitialise the device. This usually stops stream of empty packets
315 * coming from it.
316 */
atp_reinit(struct work_struct * work)317 static void atp_reinit(struct work_struct *work)
318 {
319 struct atp *dev = container_of(work, struct atp, work);
320 int retval;
321
322 dprintk("appletouch: putting appletouch to sleep (reinit)\n");
323 atp_geyser_init(dev);
324
325 retval = usb_submit_urb(dev->urb, GFP_ATOMIC);
326 if (retval)
327 dev_err(&dev->intf->dev,
328 "atp_reinit: usb_submit_urb failed with error %d\n",
329 retval);
330 }
331
atp_calculate_abs(struct atp * dev,int offset,int nb_sensors,int fact,int * z,int * fingers)332 static int atp_calculate_abs(struct atp *dev, int offset, int nb_sensors,
333 int fact, int *z, int *fingers)
334 {
335 int i, pass;
336
337 /*
338 * Use offset to point xy_sensors at the first value in dev->xy_acc
339 * for whichever dimension we're looking at this particular go-round.
340 */
341 int *xy_sensors = dev->xy_acc + offset;
342
343 /* values to calculate mean */
344 int pcum = 0, psum = 0;
345 int is_increasing = 0;
346
347 *fingers = 0;
348
349 for (i = 0; i < nb_sensors; i++) {
350 if (xy_sensors[i] < threshold) {
351 if (is_increasing)
352 is_increasing = 0;
353
354 /*
355 * Makes the finger detection more versatile. For example,
356 * two fingers with no gap will be detected. Also, my
357 * tests show it less likely to have intermittent loss
358 * of multiple finger readings while moving around (scrolling).
359 *
360 * Changes the multiple finger detection to counting humps on
361 * sensors (transitions from nonincreasing to increasing)
362 * instead of counting transitions from low sensors (no
363 * finger reading) to high sensors (finger above
364 * sensor)
365 *
366 * - Jason Parekh <jasonparekh@gmail.com>
367 */
368
369 } else if (i < 1 ||
370 (!is_increasing && xy_sensors[i - 1] < xy_sensors[i])) {
371 (*fingers)++;
372 is_increasing = 1;
373 } else if (i > 0 && (xy_sensors[i - 1] - xy_sensors[i] > threshold)) {
374 is_increasing = 0;
375 }
376 }
377
378 if (*fingers < 1) /* No need to continue if no fingers are found. */
379 return 0;
380
381 /*
382 * Use a smoothed version of sensor data for movement calculations, to
383 * combat noise without needing to rely so heavily on a threshold.
384 * This improves tracking.
385 *
386 * The smoothed array is bigger than the original so that the smoothing
387 * doesn't result in edge values being truncated.
388 */
389
390 memset(dev->smooth, 0, 4 * sizeof(dev->smooth[0]));
391 /* Pull base values, scaled up to help avoid truncation errors. */
392 for (i = 0; i < nb_sensors; i++)
393 dev->smooth[i + 4] = xy_sensors[i] << ATP_SCALE;
394 memset(&dev->smooth[nb_sensors + 4], 0, 4 * sizeof(dev->smooth[0]));
395
396 for (pass = 0; pass < 4; pass++) {
397 /* Handle edge. */
398 dev->smooth_tmp[0] = (dev->smooth[0] + dev->smooth[1]) / 2;
399
400 /* Average values with neighbors. */
401 for (i = 1; i < nb_sensors + 7; i++)
402 dev->smooth_tmp[i] = (dev->smooth[i - 1] +
403 dev->smooth[i] * 2 +
404 dev->smooth[i + 1]) / 4;
405
406 /* Handle other edge. */
407 dev->smooth_tmp[i] = (dev->smooth[i - 1] + dev->smooth[i]) / 2;
408
409 memcpy(dev->smooth, dev->smooth_tmp, sizeof(dev->smooth));
410 }
411
412 for (i = 0; i < nb_sensors + 8; i++) {
413 /*
414 * Skip values if they're small enough to be truncated to 0
415 * by scale. Mostly noise.
416 */
417 if ((dev->smooth[i] >> ATP_SCALE) > 0) {
418 pcum += dev->smooth[i] * i;
419 psum += dev->smooth[i];
420 }
421 }
422
423 if (psum > 0) {
424 *z = psum >> ATP_SCALE; /* Scale down pressure output. */
425 return pcum * fact / psum;
426 }
427
428 return 0;
429 }
430
atp_report_fingers(struct input_dev * input,int fingers)431 static inline void atp_report_fingers(struct input_dev *input, int fingers)
432 {
433 input_report_key(input, BTN_TOOL_FINGER, fingers == 1);
434 input_report_key(input, BTN_TOOL_DOUBLETAP, fingers == 2);
435 input_report_key(input, BTN_TOOL_TRIPLETAP, fingers > 2);
436 }
437
438 /* Check URB status and for correct length of data package */
439
440 #define ATP_URB_STATUS_SUCCESS 0
441 #define ATP_URB_STATUS_ERROR 1
442 #define ATP_URB_STATUS_ERROR_FATAL 2
443
atp_status_check(struct urb * urb)444 static int atp_status_check(struct urb *urb)
445 {
446 struct atp *dev = urb->context;
447 struct usb_interface *intf = dev->intf;
448
449 switch (urb->status) {
450 case 0:
451 /* success */
452 break;
453 case -EOVERFLOW:
454 if (!dev->overflow_warned) {
455 dev_warn(&intf->dev,
456 "appletouch: OVERFLOW with data length %d, actual length is %d\n",
457 dev->info->datalen, dev->urb->actual_length);
458 dev->overflow_warned = true;
459 }
460 fallthrough;
461 case -ECONNRESET:
462 case -ENOENT:
463 case -ESHUTDOWN:
464 /* This urb is terminated, clean up */
465 dev_dbg(&intf->dev,
466 "atp_complete: urb shutting down with status: %d\n",
467 urb->status);
468 return ATP_URB_STATUS_ERROR_FATAL;
469
470 default:
471 dev_dbg(&intf->dev,
472 "atp_complete: nonzero urb status received: %d\n",
473 urb->status);
474 return ATP_URB_STATUS_ERROR;
475 }
476
477 /* drop incomplete datasets */
478 if (dev->urb->actual_length != dev->info->datalen) {
479 dprintk("appletouch: incomplete data package"
480 " (first byte: %d, length: %d).\n",
481 dev->data[0], dev->urb->actual_length);
482 return ATP_URB_STATUS_ERROR;
483 }
484
485 return ATP_URB_STATUS_SUCCESS;
486 }
487
atp_detect_size(struct atp * dev)488 static void atp_detect_size(struct atp *dev)
489 {
490 int i;
491
492 /* 17" Powerbooks have extra X sensors */
493 for (i = dev->info->xsensors; i < ATP_XSENSORS; i++) {
494 if (dev->xy_cur[i]) {
495
496 dev_info(&dev->intf->dev,
497 "appletouch: 17\" model detected.\n");
498
499 input_set_abs_params(dev->input, ABS_X, 0,
500 (dev->info->xsensors_17 - 1) *
501 dev->info->xfact - 1,
502 dev->info->fuzz, 0);
503 break;
504 }
505 }
506 }
507
508 /*
509 * USB interrupt callback functions
510 */
511
512 /* Interrupt function for older touchpads: FOUNTAIN/GEYSER1/GEYSER2 */
513
atp_complete_geyser_1_2(struct urb * urb)514 static void atp_complete_geyser_1_2(struct urb *urb)
515 {
516 int x, y, x_z, y_z, x_f, y_f;
517 int retval, i, j;
518 int key, fingers;
519 struct atp *dev = urb->context;
520 int status = atp_status_check(urb);
521
522 if (status == ATP_URB_STATUS_ERROR_FATAL)
523 return;
524 else if (status == ATP_URB_STATUS_ERROR)
525 goto exit;
526
527 /* reorder the sensors values */
528 if (dev->info == &geyser2_info) {
529 memset(dev->xy_cur, 0, sizeof(dev->xy_cur));
530
531 /*
532 * The values are laid out like this:
533 * Y1, Y2, -, Y3, Y4, -, ..., X1, X2, -, X3, X4, -, ...
534 * '-' is an unused value.
535 */
536
537 /* read X values */
538 for (i = 0, j = 19; i < 20; i += 2, j += 3) {
539 dev->xy_cur[i] = dev->data[j];
540 dev->xy_cur[i + 1] = dev->data[j + 1];
541 }
542
543 /* read Y values */
544 for (i = 0, j = 1; i < 9; i += 2, j += 3) {
545 dev->xy_cur[ATP_XSENSORS + i] = dev->data[j];
546 dev->xy_cur[ATP_XSENSORS + i + 1] = dev->data[j + 1];
547 }
548 } else {
549 for (i = 0; i < 8; i++) {
550 /* X values */
551 dev->xy_cur[i + 0] = dev->data[5 * i + 2];
552 dev->xy_cur[i + 8] = dev->data[5 * i + 4];
553 dev->xy_cur[i + 16] = dev->data[5 * i + 42];
554 if (i < 2)
555 dev->xy_cur[i + 24] = dev->data[5 * i + 44];
556
557 /* Y values */
558 dev->xy_cur[ATP_XSENSORS + i] = dev->data[5 * i + 1];
559 dev->xy_cur[ATP_XSENSORS + i + 8] = dev->data[5 * i + 3];
560 }
561 }
562
563 dbg_dump("sample", dev->xy_cur);
564
565 if (!dev->valid) {
566 /* first sample */
567 dev->valid = true;
568 dev->x_old = dev->y_old = -1;
569
570 /* Store first sample */
571 memcpy(dev->xy_old, dev->xy_cur, sizeof(dev->xy_old));
572
573 /* Perform size detection, if not done already */
574 if (unlikely(!dev->size_detect_done)) {
575 atp_detect_size(dev);
576 dev->size_detect_done = true;
577 goto exit;
578 }
579 }
580
581 for (i = 0; i < ATP_XSENSORS + ATP_YSENSORS; i++) {
582 /* accumulate the change */
583 signed char change = dev->xy_old[i] - dev->xy_cur[i];
584 dev->xy_acc[i] -= change;
585
586 /* prevent down drifting */
587 if (dev->xy_acc[i] < 0)
588 dev->xy_acc[i] = 0;
589 }
590
591 memcpy(dev->xy_old, dev->xy_cur, sizeof(dev->xy_old));
592
593 dbg_dump("accumulator", dev->xy_acc);
594
595 x = atp_calculate_abs(dev, 0, ATP_XSENSORS,
596 dev->info->xfact, &x_z, &x_f);
597 y = atp_calculate_abs(dev, ATP_XSENSORS, ATP_YSENSORS,
598 dev->info->yfact, &y_z, &y_f);
599 key = dev->data[dev->info->datalen - 1] & ATP_STATUS_BUTTON;
600
601 fingers = max(x_f, y_f);
602
603 if (x && y && fingers == dev->fingers_old) {
604 if (dev->x_old != -1) {
605 x = (dev->x_old * 7 + x) >> 3;
606 y = (dev->y_old * 7 + y) >> 3;
607 dev->x_old = x;
608 dev->y_old = y;
609
610 if (debug > 1)
611 printk(KERN_DEBUG "appletouch: "
612 "X: %3d Y: %3d Xz: %3d Yz: %3d\n",
613 x, y, x_z, y_z);
614
615 input_report_key(dev->input, BTN_TOUCH, 1);
616 input_report_abs(dev->input, ABS_X, x);
617 input_report_abs(dev->input, ABS_Y, y);
618 input_report_abs(dev->input, ABS_PRESSURE,
619 min(ATP_PRESSURE, x_z + y_z));
620 atp_report_fingers(dev->input, fingers);
621 }
622 dev->x_old = x;
623 dev->y_old = y;
624
625 } else if (!x && !y) {
626
627 dev->x_old = dev->y_old = -1;
628 dev->fingers_old = 0;
629 input_report_key(dev->input, BTN_TOUCH, 0);
630 input_report_abs(dev->input, ABS_PRESSURE, 0);
631 atp_report_fingers(dev->input, 0);
632
633 /* reset the accumulator on release */
634 memset(dev->xy_acc, 0, sizeof(dev->xy_acc));
635 }
636
637 if (fingers != dev->fingers_old)
638 dev->x_old = dev->y_old = -1;
639 dev->fingers_old = fingers;
640
641 input_report_key(dev->input, BTN_LEFT, key);
642 input_sync(dev->input);
643
644 exit:
645 retval = usb_submit_urb(dev->urb, GFP_ATOMIC);
646 if (retval)
647 dev_err(&dev->intf->dev,
648 "atp_complete: usb_submit_urb failed with result %d\n",
649 retval);
650 }
651
652 /* Interrupt function for older touchpads: GEYSER3/GEYSER4 */
653
atp_complete_geyser_3_4(struct urb * urb)654 static void atp_complete_geyser_3_4(struct urb *urb)
655 {
656 int x, y, x_z, y_z, x_f, y_f;
657 int retval, i, j;
658 int key, fingers;
659 struct atp *dev = urb->context;
660 int status = atp_status_check(urb);
661
662 if (status == ATP_URB_STATUS_ERROR_FATAL)
663 return;
664 else if (status == ATP_URB_STATUS_ERROR)
665 goto exit;
666
667 /* Reorder the sensors values:
668 *
669 * The values are laid out like this:
670 * -, Y1, Y2, -, Y3, Y4, -, ..., -, X1, X2, -, X3, X4, ...
671 * '-' is an unused value.
672 */
673
674 /* read X values */
675 for (i = 0, j = 19; i < 20; i += 2, j += 3) {
676 dev->xy_cur[i] = dev->data[j + 1];
677 dev->xy_cur[i + 1] = dev->data[j + 2];
678 }
679 /* read Y values */
680 for (i = 0, j = 1; i < 9; i += 2, j += 3) {
681 dev->xy_cur[ATP_XSENSORS + i] = dev->data[j + 1];
682 dev->xy_cur[ATP_XSENSORS + i + 1] = dev->data[j + 2];
683 }
684
685 dbg_dump("sample", dev->xy_cur);
686
687 /* Just update the base values (i.e. touchpad in untouched state) */
688 if (dev->data[dev->info->datalen - 1] & ATP_STATUS_BASE_UPDATE) {
689
690 dprintk("appletouch: updated base values\n");
691
692 memcpy(dev->xy_old, dev->xy_cur, sizeof(dev->xy_old));
693 goto exit;
694 }
695
696 for (i = 0; i < ATP_XSENSORS + ATP_YSENSORS; i++) {
697 /* calculate the change */
698 dev->xy_acc[i] = dev->xy_cur[i] - dev->xy_old[i];
699
700 /* this is a round-robin value, so couple with that */
701 if (dev->xy_acc[i] > 127)
702 dev->xy_acc[i] -= 256;
703
704 if (dev->xy_acc[i] < -127)
705 dev->xy_acc[i] += 256;
706
707 /* prevent down drifting */
708 if (dev->xy_acc[i] < 0)
709 dev->xy_acc[i] = 0;
710 }
711
712 dbg_dump("accumulator", dev->xy_acc);
713
714 x = atp_calculate_abs(dev, 0, ATP_XSENSORS,
715 dev->info->xfact, &x_z, &x_f);
716 y = atp_calculate_abs(dev, ATP_XSENSORS, ATP_YSENSORS,
717 dev->info->yfact, &y_z, &y_f);
718
719 key = dev->data[dev->info->datalen - 1] & ATP_STATUS_BUTTON;
720
721 fingers = max(x_f, y_f);
722
723 if (x && y && fingers == dev->fingers_old) {
724 if (dev->x_old != -1) {
725 x = (dev->x_old * 7 + x) >> 3;
726 y = (dev->y_old * 7 + y) >> 3;
727 dev->x_old = x;
728 dev->y_old = y;
729
730 if (debug > 1)
731 printk(KERN_DEBUG "appletouch: X: %3d Y: %3d "
732 "Xz: %3d Yz: %3d\n",
733 x, y, x_z, y_z);
734
735 input_report_key(dev->input, BTN_TOUCH, 1);
736 input_report_abs(dev->input, ABS_X, x);
737 input_report_abs(dev->input, ABS_Y, y);
738 input_report_abs(dev->input, ABS_PRESSURE,
739 min(ATP_PRESSURE, x_z + y_z));
740 atp_report_fingers(dev->input, fingers);
741 }
742 dev->x_old = x;
743 dev->y_old = y;
744
745 } else if (!x && !y) {
746
747 dev->x_old = dev->y_old = -1;
748 dev->fingers_old = 0;
749 input_report_key(dev->input, BTN_TOUCH, 0);
750 input_report_abs(dev->input, ABS_PRESSURE, 0);
751 atp_report_fingers(dev->input, 0);
752
753 /* reset the accumulator on release */
754 memset(dev->xy_acc, 0, sizeof(dev->xy_acc));
755 }
756
757 if (fingers != dev->fingers_old)
758 dev->x_old = dev->y_old = -1;
759 dev->fingers_old = fingers;
760
761 input_report_key(dev->input, BTN_LEFT, key);
762 input_sync(dev->input);
763
764 /*
765 * Geysers 3/4 will continue to send packets continually after
766 * the first touch unless reinitialised. Do so if it's been
767 * idle for a while in order to avoid waking the kernel up
768 * several hundred times a second.
769 */
770
771 /*
772 * Button must not be pressed when entering suspend,
773 * otherwise we will never release the button.
774 */
775 if (!x && !y && !key) {
776 dev->idlecount++;
777 if (dev->idlecount == 10) {
778 dev->x_old = dev->y_old = -1;
779 dev->idlecount = 0;
780 schedule_work(&dev->work);
781 /* Don't resubmit urb here, wait for reinit */
782 return;
783 }
784 } else
785 dev->idlecount = 0;
786
787 exit:
788 retval = usb_submit_urb(dev->urb, GFP_ATOMIC);
789 if (retval)
790 dev_err(&dev->intf->dev,
791 "atp_complete: usb_submit_urb failed with result %d\n",
792 retval);
793 }
794
atp_open(struct input_dev * input)795 static int atp_open(struct input_dev *input)
796 {
797 struct atp *dev = input_get_drvdata(input);
798
799 if (usb_submit_urb(dev->urb, GFP_KERNEL))
800 return -EIO;
801
802 return 0;
803 }
804
atp_close(struct input_dev * input)805 static void atp_close(struct input_dev *input)
806 {
807 struct atp *dev = input_get_drvdata(input);
808
809 usb_kill_urb(dev->urb);
810 cancel_work_sync(&dev->work);
811 }
812
atp_handle_geyser(struct atp * dev)813 static int atp_handle_geyser(struct atp *dev)
814 {
815 if (dev->info != &fountain_info) {
816 /* switch to raw sensor mode */
817 if (atp_geyser_init(dev))
818 return -EIO;
819
820 dev_info(&dev->intf->dev, "Geyser mode initialized.\n");
821 }
822
823 return 0;
824 }
825
atp_probe(struct usb_interface * iface,const struct usb_device_id * id)826 static int atp_probe(struct usb_interface *iface,
827 const struct usb_device_id *id)
828 {
829 struct atp *dev;
830 struct input_dev *input_dev;
831 struct usb_device *udev = interface_to_usbdev(iface);
832 struct usb_host_interface *iface_desc;
833 struct usb_endpoint_descriptor *endpoint;
834 int int_in_endpointAddr = 0;
835 int i, error = -ENOMEM;
836 const struct atp_info *info = (const struct atp_info *)id->driver_info;
837
838 /* set up the endpoint information */
839 /* use only the first interrupt-in endpoint */
840 iface_desc = iface->cur_altsetting;
841 for (i = 0; i < iface_desc->desc.bNumEndpoints; i++) {
842 endpoint = &iface_desc->endpoint[i].desc;
843 if (!int_in_endpointAddr && usb_endpoint_is_int_in(endpoint)) {
844 /* we found an interrupt in endpoint */
845 int_in_endpointAddr = endpoint->bEndpointAddress;
846 break;
847 }
848 }
849 if (!int_in_endpointAddr) {
850 dev_err(&iface->dev, "Could not find int-in endpoint\n");
851 return -EIO;
852 }
853
854 /* allocate memory for our device state and initialize it */
855 dev = kzalloc_obj(*dev);
856 input_dev = input_allocate_device();
857 if (!dev || !input_dev) {
858 dev_err(&iface->dev, "Out of memory\n");
859 goto err_free_devs;
860 }
861
862 dev->udev = udev;
863 dev->intf = iface;
864 dev->input = input_dev;
865 dev->info = info;
866 dev->overflow_warned = false;
867
868 dev->urb = usb_alloc_urb(0, GFP_KERNEL);
869 if (!dev->urb)
870 goto err_free_devs;
871
872 dev->data = usb_alloc_coherent(dev->udev, dev->info->datalen, GFP_KERNEL,
873 &dev->urb->transfer_dma);
874 if (!dev->data)
875 goto err_free_urb;
876
877 usb_fill_int_urb(dev->urb, udev,
878 usb_rcvintpipe(udev, int_in_endpointAddr),
879 dev->data, dev->info->datalen,
880 dev->info->callback, dev, 1);
881
882 error = atp_handle_geyser(dev);
883 if (error)
884 goto err_free_buffer;
885
886 usb_make_path(udev, dev->phys, sizeof(dev->phys));
887 strlcat(dev->phys, "/input0", sizeof(dev->phys));
888
889 input_dev->name = "appletouch";
890 input_dev->phys = dev->phys;
891 usb_to_input_id(dev->udev, &input_dev->id);
892 input_dev->dev.parent = &iface->dev;
893
894 input_set_drvdata(input_dev, dev);
895
896 input_dev->open = atp_open;
897 input_dev->close = atp_close;
898
899 set_bit(EV_ABS, input_dev->evbit);
900
901 input_set_abs_params(input_dev, ABS_X, 0,
902 (dev->info->xsensors - 1) * dev->info->xfact - 1,
903 dev->info->fuzz, 0);
904 input_set_abs_params(input_dev, ABS_Y, 0,
905 (dev->info->ysensors - 1) * dev->info->yfact - 1,
906 dev->info->fuzz, 0);
907 input_set_abs_params(input_dev, ABS_PRESSURE, 0, ATP_PRESSURE, 0, 0);
908
909 set_bit(EV_KEY, input_dev->evbit);
910 set_bit(BTN_TOUCH, input_dev->keybit);
911 set_bit(BTN_TOOL_FINGER, input_dev->keybit);
912 set_bit(BTN_TOOL_DOUBLETAP, input_dev->keybit);
913 set_bit(BTN_TOOL_TRIPLETAP, input_dev->keybit);
914 set_bit(BTN_LEFT, input_dev->keybit);
915
916 INIT_WORK(&dev->work, atp_reinit);
917
918 error = input_register_device(dev->input);
919 if (error)
920 goto err_free_buffer;
921
922 /* save our data pointer in this interface device */
923 usb_set_intfdata(iface, dev);
924
925 return 0;
926
927 err_free_buffer:
928 usb_free_coherent(dev->udev, dev->info->datalen,
929 dev->data, dev->urb->transfer_dma);
930 err_free_urb:
931 usb_free_urb(dev->urb);
932 err_free_devs:
933 usb_set_intfdata(iface, NULL);
934 kfree(dev);
935 input_free_device(input_dev);
936 return error;
937 }
938
atp_disconnect(struct usb_interface * iface)939 static void atp_disconnect(struct usb_interface *iface)
940 {
941 struct atp *dev = usb_get_intfdata(iface);
942
943 usb_set_intfdata(iface, NULL);
944 if (dev) {
945 usb_kill_urb(dev->urb);
946 input_unregister_device(dev->input);
947 usb_free_coherent(dev->udev, dev->info->datalen,
948 dev->data, dev->urb->transfer_dma);
949 usb_free_urb(dev->urb);
950 kfree(dev);
951 }
952 dev_info(&iface->dev, "input: appletouch disconnected\n");
953 }
954
atp_recover(struct atp * dev)955 static int atp_recover(struct atp *dev)
956 {
957 int error;
958
959 error = atp_handle_geyser(dev);
960 if (error)
961 return error;
962
963 guard(mutex)(&dev->input->mutex);
964 if (input_device_enabled(dev->input) && usb_submit_urb(dev->urb, GFP_KERNEL))
965 return -EIO;
966
967 return 0;
968 }
969
atp_suspend(struct usb_interface * iface,pm_message_t message)970 static int atp_suspend(struct usb_interface *iface, pm_message_t message)
971 {
972 struct atp *dev = usb_get_intfdata(iface);
973
974 usb_kill_urb(dev->urb);
975 return 0;
976 }
977
atp_resume(struct usb_interface * iface)978 static int atp_resume(struct usb_interface *iface)
979 {
980 struct atp *dev = usb_get_intfdata(iface);
981
982 guard(mutex)(&dev->input->mutex);
983 if (input_device_enabled(dev->input) && usb_submit_urb(dev->urb, GFP_KERNEL))
984 return -EIO;
985
986 return 0;
987 }
988
atp_reset_resume(struct usb_interface * iface)989 static int atp_reset_resume(struct usb_interface *iface)
990 {
991 struct atp *dev = usb_get_intfdata(iface);
992
993 return atp_recover(dev);
994 }
995
996 static struct usb_driver atp_driver = {
997 .name = "appletouch",
998 .probe = atp_probe,
999 .disconnect = atp_disconnect,
1000 .suspend = atp_suspend,
1001 .resume = atp_resume,
1002 .reset_resume = atp_reset_resume,
1003 .id_table = atp_table,
1004 };
1005
1006 module_usb_driver(atp_driver);
1007