2 * Elantech Touchpad driver (v6)
4 * Copyright (C) 2007-2009 Arjan Opmeer <arjan@opmeer.net>
6 * This program is free software; you can redistribute it and/or modify it
7 * under the terms of the GNU General Public License version 2 as published
8 * by the Free Software Foundation.
10 * Trademarks are the property of their respective owners.
13 #include <linux/delay.h>
14 #include <linux/dmi.h>
15 #include <linux/slab.h>
16 #include <linux/module.h>
17 #include <linux/input.h>
18 #include <linux/input/mt.h>
19 #include <linux/serio.h>
20 #include <linux/libps2.h>
24 #define elantech_debug(fmt, ...) \
27 psmouse_printk(KERN_DEBUG, psmouse, \
28 fmt, ##__VA_ARGS__); \
32 * Send a Synaptics style sliced query command
34 static int synaptics_send_cmd(struct psmouse
*psmouse
, unsigned char c
,
37 if (psmouse_sliced_command(psmouse
, c
) ||
38 ps2_command(&psmouse
->ps2dev
, param
, PSMOUSE_CMD_GETINFO
)) {
39 psmouse_err(psmouse
, "%s query 0x%02x failed.\n", __func__
, c
);
47 * V3 and later support this fast command
49 static int elantech_send_cmd(struct psmouse
*psmouse
, unsigned char c
,
52 struct ps2dev
*ps2dev
= &psmouse
->ps2dev
;
54 if (ps2_command(ps2dev
, NULL
, ETP_PS2_CUSTOM_COMMAND
) ||
55 ps2_command(ps2dev
, NULL
, c
) ||
56 ps2_command(ps2dev
, param
, PSMOUSE_CMD_GETINFO
)) {
57 psmouse_err(psmouse
, "%s query 0x%02x failed.\n", __func__
, c
);
65 * A retrying version of ps2_command
67 static int elantech_ps2_command(struct psmouse
*psmouse
,
68 unsigned char *param
, int command
)
70 struct ps2dev
*ps2dev
= &psmouse
->ps2dev
;
71 struct elantech_data
*etd
= psmouse
->private;
73 int tries
= ETP_PS2_COMMAND_TRIES
;
76 rc
= ps2_command(ps2dev
, param
, command
);
80 elantech_debug("retrying ps2 command 0x%02x (%d).\n",
82 msleep(ETP_PS2_COMMAND_DELAY
);
86 psmouse_err(psmouse
, "ps2 command 0x%02x failed.\n", command
);
92 * Send an Elantech style special command to read a value from a register
94 static int elantech_read_reg(struct psmouse
*psmouse
, unsigned char reg
,
97 struct elantech_data
*etd
= psmouse
->private;
98 unsigned char param
[3];
101 if (reg
< 0x07 || reg
> 0x26)
104 if (reg
> 0x11 && reg
< 0x20)
107 switch (etd
->hw_version
) {
109 if (psmouse_sliced_command(psmouse
, ETP_REGISTER_READ
) ||
110 psmouse_sliced_command(psmouse
, reg
) ||
111 ps2_command(&psmouse
->ps2dev
, param
, PSMOUSE_CMD_GETINFO
)) {
117 if (elantech_ps2_command(psmouse
, NULL
, ETP_PS2_CUSTOM_COMMAND
) ||
118 elantech_ps2_command(psmouse
, NULL
, ETP_REGISTER_READ
) ||
119 elantech_ps2_command(psmouse
, NULL
, ETP_PS2_CUSTOM_COMMAND
) ||
120 elantech_ps2_command(psmouse
, NULL
, reg
) ||
121 elantech_ps2_command(psmouse
, param
, PSMOUSE_CMD_GETINFO
)) {
127 if (elantech_ps2_command(psmouse
, NULL
, ETP_PS2_CUSTOM_COMMAND
) ||
128 elantech_ps2_command(psmouse
, NULL
, ETP_REGISTER_READWRITE
) ||
129 elantech_ps2_command(psmouse
, NULL
, ETP_PS2_CUSTOM_COMMAND
) ||
130 elantech_ps2_command(psmouse
, NULL
, reg
) ||
131 elantech_ps2_command(psmouse
, param
, PSMOUSE_CMD_GETINFO
)) {
138 psmouse_err(psmouse
, "failed to read register 0x%02x.\n", reg
);
139 else if (etd
->hw_version
!= 4)
148 * Send an Elantech style special command to write a register with a value
150 static int elantech_write_reg(struct psmouse
*psmouse
, unsigned char reg
,
153 struct elantech_data
*etd
= psmouse
->private;
156 if (reg
< 0x07 || reg
> 0x26)
159 if (reg
> 0x11 && reg
< 0x20)
162 switch (etd
->hw_version
) {
164 if (psmouse_sliced_command(psmouse
, ETP_REGISTER_WRITE
) ||
165 psmouse_sliced_command(psmouse
, reg
) ||
166 psmouse_sliced_command(psmouse
, val
) ||
167 ps2_command(&psmouse
->ps2dev
, NULL
, PSMOUSE_CMD_SETSCALE11
)) {
173 if (elantech_ps2_command(psmouse
, NULL
, ETP_PS2_CUSTOM_COMMAND
) ||
174 elantech_ps2_command(psmouse
, NULL
, ETP_REGISTER_WRITE
) ||
175 elantech_ps2_command(psmouse
, NULL
, ETP_PS2_CUSTOM_COMMAND
) ||
176 elantech_ps2_command(psmouse
, NULL
, reg
) ||
177 elantech_ps2_command(psmouse
, NULL
, ETP_PS2_CUSTOM_COMMAND
) ||
178 elantech_ps2_command(psmouse
, NULL
, val
) ||
179 elantech_ps2_command(psmouse
, NULL
, PSMOUSE_CMD_SETSCALE11
)) {
185 if (elantech_ps2_command(psmouse
, NULL
, ETP_PS2_CUSTOM_COMMAND
) ||
186 elantech_ps2_command(psmouse
, NULL
, ETP_REGISTER_READWRITE
) ||
187 elantech_ps2_command(psmouse
, NULL
, ETP_PS2_CUSTOM_COMMAND
) ||
188 elantech_ps2_command(psmouse
, NULL
, reg
) ||
189 elantech_ps2_command(psmouse
, NULL
, ETP_PS2_CUSTOM_COMMAND
) ||
190 elantech_ps2_command(psmouse
, NULL
, val
) ||
191 elantech_ps2_command(psmouse
, NULL
, PSMOUSE_CMD_SETSCALE11
)) {
197 if (elantech_ps2_command(psmouse
, NULL
, ETP_PS2_CUSTOM_COMMAND
) ||
198 elantech_ps2_command(psmouse
, NULL
, ETP_REGISTER_READWRITE
) ||
199 elantech_ps2_command(psmouse
, NULL
, ETP_PS2_CUSTOM_COMMAND
) ||
200 elantech_ps2_command(psmouse
, NULL
, reg
) ||
201 elantech_ps2_command(psmouse
, NULL
, ETP_PS2_CUSTOM_COMMAND
) ||
202 elantech_ps2_command(psmouse
, NULL
, ETP_REGISTER_READWRITE
) ||
203 elantech_ps2_command(psmouse
, NULL
, ETP_PS2_CUSTOM_COMMAND
) ||
204 elantech_ps2_command(psmouse
, NULL
, val
) ||
205 elantech_ps2_command(psmouse
, NULL
, PSMOUSE_CMD_SETSCALE11
)) {
213 "failed to write register 0x%02x with value 0x%02x.\n",
220 * Dump a complete mouse movement packet to the syslog
222 static void elantech_packet_dump(struct psmouse
*psmouse
)
226 psmouse_printk(KERN_DEBUG
, psmouse
, "PS/2 packet [");
227 for (i
= 0; i
< psmouse
->pktsize
; i
++)
228 printk("%s0x%02x ", i
? ", " : " ", psmouse
->packet
[i
]);
233 * Interpret complete data packets and report absolute mode input events for
234 * hardware version 1. (4 byte packets)
236 static void elantech_report_absolute_v1(struct psmouse
*psmouse
)
238 struct input_dev
*dev
= psmouse
->dev
;
239 struct elantech_data
*etd
= psmouse
->private;
240 unsigned char *packet
= psmouse
->packet
;
243 if (etd
->fw_version
< 0x020000) {
245 * byte 0: D U p1 p2 1 p3 R L
246 * byte 1: f 0 th tw x9 x8 y9 y8
248 fingers
= ((packet
[1] & 0x80) >> 7) +
249 ((packet
[1] & 0x30) >> 4);
252 * byte 0: n1 n0 p2 p1 1 p3 R L
253 * byte 1: 0 0 0 0 x9 x8 y9 y8
255 fingers
= (packet
[0] & 0xc0) >> 6;
258 if (etd
->jumpy_cursor
) {
260 etd
->single_finger_reports
= 0;
261 } else if (etd
->single_finger_reports
< 2) {
262 /* Discard first 2 reports of one finger, bogus */
263 etd
->single_finger_reports
++;
264 elantech_debug("discarding packet\n");
269 input_report_key(dev
, BTN_TOUCH
, fingers
!= 0);
272 * byte 2: x7 x6 x5 x4 x3 x2 x1 x0
273 * byte 3: y7 y6 y5 y4 y3 y2 y1 y0
276 input_report_abs(dev
, ABS_X
,
277 ((packet
[1] & 0x0c) << 6) | packet
[2]);
278 input_report_abs(dev
, ABS_Y
,
279 etd
->y_max
- (((packet
[1] & 0x03) << 8) | packet
[3]));
282 input_report_key(dev
, BTN_TOOL_FINGER
, fingers
== 1);
283 input_report_key(dev
, BTN_TOOL_DOUBLETAP
, fingers
== 2);
284 input_report_key(dev
, BTN_TOOL_TRIPLETAP
, fingers
== 3);
285 input_report_key(dev
, BTN_LEFT
, packet
[0] & 0x01);
286 input_report_key(dev
, BTN_RIGHT
, packet
[0] & 0x02);
288 if (etd
->fw_version
< 0x020000 &&
289 (etd
->capabilities
[0] & ETP_CAP_HAS_ROCKER
)) {
291 input_report_key(dev
, BTN_FORWARD
, packet
[0] & 0x40);
293 input_report_key(dev
, BTN_BACK
, packet
[0] & 0x80);
299 static void elantech_set_slot(struct input_dev
*dev
, int slot
, bool active
,
300 unsigned int x
, unsigned int y
)
302 input_mt_slot(dev
, slot
);
303 input_mt_report_slot_state(dev
, MT_TOOL_FINGER
, active
);
305 input_report_abs(dev
, ABS_MT_POSITION_X
, x
);
306 input_report_abs(dev
, ABS_MT_POSITION_Y
, y
);
310 /* x1 < x2 and y1 < y2 when two fingers, x = y = 0 when not pressed */
311 static void elantech_report_semi_mt_data(struct input_dev
*dev
,
312 unsigned int num_fingers
,
313 unsigned int x1
, unsigned int y1
,
314 unsigned int x2
, unsigned int y2
)
316 elantech_set_slot(dev
, 0, num_fingers
!= 0, x1
, y1
);
317 elantech_set_slot(dev
, 1, num_fingers
== 2, x2
, y2
);
321 * Interpret complete data packets and report absolute mode input events for
322 * hardware version 2. (6 byte packets)
324 static void elantech_report_absolute_v2(struct psmouse
*psmouse
)
326 struct elantech_data
*etd
= psmouse
->private;
327 struct input_dev
*dev
= psmouse
->dev
;
328 unsigned char *packet
= psmouse
->packet
;
329 unsigned int fingers
, x1
= 0, y1
= 0, x2
= 0, y2
= 0;
330 unsigned int width
= 0, pres
= 0;
332 /* byte 0: n1 n0 . . . . R L */
333 fingers
= (packet
[0] & 0xc0) >> 6;
338 * Same as one finger, except report of more than 3 fingers:
339 * byte 3: n4 . w1 w0 . . . .
341 if (packet
[3] & 0x80)
343 /* pass through... */
346 * byte 1: . . . . x11 x10 x9 x8
347 * byte 2: x7 x6 x5 x4 x4 x2 x1 x0
349 x1
= ((packet
[1] & 0x0f) << 8) | packet
[2];
351 * byte 4: . . . . y11 y10 y9 y8
352 * byte 5: y7 y6 y5 y4 y3 y2 y1 y0
354 y1
= etd
->y_max
- (((packet
[4] & 0x0f) << 8) | packet
[5]);
356 pres
= (packet
[1] & 0xf0) | ((packet
[4] & 0xf0) >> 4);
357 width
= ((packet
[0] & 0x30) >> 2) | ((packet
[3] & 0x30) >> 4);
362 * The coordinate of each finger is reported separately
363 * with a lower resolution for two finger touches:
364 * byte 0: . . ay8 ax8 . . . .
365 * byte 1: ax7 ax6 ax5 ax4 ax3 ax2 ax1 ax0
367 x1
= (((packet
[0] & 0x10) << 4) | packet
[1]) << 2;
368 /* byte 2: ay7 ay6 ay5 ay4 ay3 ay2 ay1 ay0 */
370 ((((packet
[0] & 0x20) << 3) | packet
[2]) << 2);
372 * byte 3: . . by8 bx8 . . . .
373 * byte 4: bx7 bx6 bx5 bx4 bx3 bx2 bx1 bx0
375 x2
= (((packet
[3] & 0x10) << 4) | packet
[4]) << 2;
376 /* byte 5: by7 by8 by5 by4 by3 by2 by1 by0 */
378 ((((packet
[3] & 0x20) << 3) | packet
[5]) << 2);
380 /* Unknown so just report sensible values */
386 input_report_key(dev
, BTN_TOUCH
, fingers
!= 0);
388 input_report_abs(dev
, ABS_X
, x1
);
389 input_report_abs(dev
, ABS_Y
, y1
);
391 elantech_report_semi_mt_data(dev
, fingers
, x1
, y1
, x2
, y2
);
392 input_report_key(dev
, BTN_TOOL_FINGER
, fingers
== 1);
393 input_report_key(dev
, BTN_TOOL_DOUBLETAP
, fingers
== 2);
394 input_report_key(dev
, BTN_TOOL_TRIPLETAP
, fingers
== 3);
395 input_report_key(dev
, BTN_TOOL_QUADTAP
, fingers
== 4);
396 input_report_key(dev
, BTN_LEFT
, packet
[0] & 0x01);
397 input_report_key(dev
, BTN_RIGHT
, packet
[0] & 0x02);
398 if (etd
->reports_pressure
) {
399 input_report_abs(dev
, ABS_PRESSURE
, pres
);
400 input_report_abs(dev
, ABS_TOOL_WIDTH
, width
);
407 * Interpret complete data packets and report absolute mode input events for
408 * hardware version 3. (12 byte packets for two fingers)
410 static void elantech_report_absolute_v3(struct psmouse
*psmouse
,
413 struct input_dev
*dev
= psmouse
->dev
;
414 struct elantech_data
*etd
= psmouse
->private;
415 unsigned char *packet
= psmouse
->packet
;
416 unsigned int fingers
= 0, x1
= 0, y1
= 0, x2
= 0, y2
= 0;
417 unsigned int width
= 0, pres
= 0;
419 /* byte 0: n1 n0 . . . . R L */
420 fingers
= (packet
[0] & 0xc0) >> 6;
426 * byte 1: . . . . x11 x10 x9 x8
427 * byte 2: x7 x6 x5 x4 x4 x2 x1 x0
429 x1
= ((packet
[1] & 0x0f) << 8) | packet
[2];
431 * byte 4: . . . . y11 y10 y9 y8
432 * byte 5: y7 y6 y5 y4 y3 y2 y1 y0
434 y1
= etd
->y_max
- (((packet
[4] & 0x0f) << 8) | packet
[5]);
438 if (packet_type
== PACKET_V3_HEAD
) {
440 * byte 1: . . . . ax11 ax10 ax9 ax8
441 * byte 2: ax7 ax6 ax5 ax4 ax3 ax2 ax1 ax0
443 etd
->mt
[0].x
= ((packet
[1] & 0x0f) << 8) | packet
[2];
445 * byte 4: . . . . ay11 ay10 ay9 ay8
446 * byte 5: ay7 ay6 ay5 ay4 ay3 ay2 ay1 ay0
448 etd
->mt
[0].y
= etd
->y_max
-
449 (((packet
[4] & 0x0f) << 8) | packet
[5]);
451 * wait for next packet
456 /* packet_type == PACKET_V3_TAIL */
459 x2
= ((packet
[1] & 0x0f) << 8) | packet
[2];
460 y2
= etd
->y_max
- (((packet
[4] & 0x0f) << 8) | packet
[5]);
464 pres
= (packet
[1] & 0xf0) | ((packet
[4] & 0xf0) >> 4);
465 width
= ((packet
[0] & 0x30) >> 2) | ((packet
[3] & 0x30) >> 4);
467 input_report_key(dev
, BTN_TOUCH
, fingers
!= 0);
469 input_report_abs(dev
, ABS_X
, x1
);
470 input_report_abs(dev
, ABS_Y
, y1
);
472 elantech_report_semi_mt_data(dev
, fingers
, x1
, y1
, x2
, y2
);
473 input_report_key(dev
, BTN_TOOL_FINGER
, fingers
== 1);
474 input_report_key(dev
, BTN_TOOL_DOUBLETAP
, fingers
== 2);
475 input_report_key(dev
, BTN_TOOL_TRIPLETAP
, fingers
== 3);
477 /* For clickpads map both buttons to BTN_LEFT */
478 if (etd
->fw_version
& 0x001000) {
479 input_report_key(dev
, BTN_LEFT
, packet
[0] & 0x03);
481 input_report_key(dev
, BTN_LEFT
, packet
[0] & 0x01);
482 input_report_key(dev
, BTN_RIGHT
, packet
[0] & 0x02);
485 input_report_abs(dev
, ABS_PRESSURE
, pres
);
486 input_report_abs(dev
, ABS_TOOL_WIDTH
, width
);
491 static void elantech_input_sync_v4(struct psmouse
*psmouse
)
493 struct input_dev
*dev
= psmouse
->dev
;
494 struct elantech_data
*etd
= psmouse
->private;
495 unsigned char *packet
= psmouse
->packet
;
497 /* For clickpads map both buttons to BTN_LEFT */
498 if (etd
->fw_version
& 0x001000) {
499 input_report_key(dev
, BTN_LEFT
, packet
[0] & 0x03);
501 input_report_key(dev
, BTN_LEFT
, packet
[0] & 0x01);
502 input_report_key(dev
, BTN_RIGHT
, packet
[0] & 0x02);
505 input_mt_report_pointer_emulation(dev
, true);
509 static void process_packet_status_v4(struct psmouse
*psmouse
)
511 struct input_dev
*dev
= psmouse
->dev
;
512 unsigned char *packet
= psmouse
->packet
;
516 /* notify finger state change */
517 fingers
= packet
[1] & 0x1f;
518 for (i
= 0; i
< ETP_MAX_FINGERS
; i
++) {
519 if ((fingers
& (1 << i
)) == 0) {
520 input_mt_slot(dev
, i
);
521 input_mt_report_slot_state(dev
, MT_TOOL_FINGER
, false);
525 elantech_input_sync_v4(psmouse
);
528 static void process_packet_head_v4(struct psmouse
*psmouse
)
530 struct input_dev
*dev
= psmouse
->dev
;
531 struct elantech_data
*etd
= psmouse
->private;
532 unsigned char *packet
= psmouse
->packet
;
533 int id
= ((packet
[3] & 0xe0) >> 5) - 1;
539 etd
->mt
[id
].x
= ((packet
[1] & 0x0f) << 8) | packet
[2];
540 etd
->mt
[id
].y
= etd
->y_max
- (((packet
[4] & 0x0f) << 8) | packet
[5]);
541 pres
= (packet
[1] & 0xf0) | ((packet
[4] & 0xf0) >> 4);
542 traces
= (packet
[0] & 0xf0) >> 4;
544 input_mt_slot(dev
, id
);
545 input_mt_report_slot_state(dev
, MT_TOOL_FINGER
, true);
547 input_report_abs(dev
, ABS_MT_POSITION_X
, etd
->mt
[id
].x
);
548 input_report_abs(dev
, ABS_MT_POSITION_Y
, etd
->mt
[id
].y
);
549 input_report_abs(dev
, ABS_MT_PRESSURE
, pres
);
550 input_report_abs(dev
, ABS_MT_TOUCH_MAJOR
, traces
* etd
->width
);
551 /* report this for backwards compatibility */
552 input_report_abs(dev
, ABS_TOOL_WIDTH
, traces
);
554 elantech_input_sync_v4(psmouse
);
557 static void process_packet_motion_v4(struct psmouse
*psmouse
)
559 struct input_dev
*dev
= psmouse
->dev
;
560 struct elantech_data
*etd
= psmouse
->private;
561 unsigned char *packet
= psmouse
->packet
;
562 int weight
, delta_x1
= 0, delta_y1
= 0, delta_x2
= 0, delta_y2
= 0;
565 id
= ((packet
[0] & 0xe0) >> 5) - 1;
569 sid
= ((packet
[3] & 0xe0) >> 5) - 1;
570 weight
= (packet
[0] & 0x10) ? ETP_WEIGHT_VALUE
: 1;
572 * Motion packets give us the delta of x, y values of specific fingers,
573 * but in two's complement. Let the compiler do the conversion for us.
574 * Also _enlarge_ the numbers to int, in case of overflow.
576 delta_x1
= (signed char)packet
[1];
577 delta_y1
= (signed char)packet
[2];
578 delta_x2
= (signed char)packet
[4];
579 delta_y2
= (signed char)packet
[5];
581 etd
->mt
[id
].x
+= delta_x1
* weight
;
582 etd
->mt
[id
].y
-= delta_y1
* weight
;
583 input_mt_slot(dev
, id
);
584 input_report_abs(dev
, ABS_MT_POSITION_X
, etd
->mt
[id
].x
);
585 input_report_abs(dev
, ABS_MT_POSITION_Y
, etd
->mt
[id
].y
);
588 etd
->mt
[sid
].x
+= delta_x2
* weight
;
589 etd
->mt
[sid
].y
-= delta_y2
* weight
;
590 input_mt_slot(dev
, sid
);
591 input_report_abs(dev
, ABS_MT_POSITION_X
, etd
->mt
[sid
].x
);
592 input_report_abs(dev
, ABS_MT_POSITION_Y
, etd
->mt
[sid
].y
);
595 elantech_input_sync_v4(psmouse
);
598 static void elantech_report_absolute_v4(struct psmouse
*psmouse
,
601 switch (packet_type
) {
602 case PACKET_V4_STATUS
:
603 process_packet_status_v4(psmouse
);
607 process_packet_head_v4(psmouse
);
610 case PACKET_V4_MOTION
:
611 process_packet_motion_v4(psmouse
);
616 /* impossible to get here */
621 static int elantech_packet_check_v1(struct psmouse
*psmouse
)
623 struct elantech_data
*etd
= psmouse
->private;
624 unsigned char *packet
= psmouse
->packet
;
625 unsigned char p1
, p2
, p3
;
627 /* Parity bits are placed differently */
628 if (etd
->fw_version
< 0x020000) {
629 /* byte 0: D U p1 p2 1 p3 R L */
630 p1
= (packet
[0] & 0x20) >> 5;
631 p2
= (packet
[0] & 0x10) >> 4;
633 /* byte 0: n1 n0 p2 p1 1 p3 R L */
634 p1
= (packet
[0] & 0x10) >> 4;
635 p2
= (packet
[0] & 0x20) >> 5;
638 p3
= (packet
[0] & 0x04) >> 2;
640 return etd
->parity
[packet
[1]] == p1
&&
641 etd
->parity
[packet
[2]] == p2
&&
642 etd
->parity
[packet
[3]] == p3
;
645 static int elantech_debounce_check_v2(struct psmouse
*psmouse
)
648 * When we encounter packet that matches this exactly, it means the
649 * hardware is in debounce status. Just ignore the whole packet.
651 const u8 debounce_packet
[] = { 0x84, 0xff, 0xff, 0x02, 0xff, 0xff };
652 unsigned char *packet
= psmouse
->packet
;
654 return !memcmp(packet
, debounce_packet
, sizeof(debounce_packet
));
657 static int elantech_packet_check_v2(struct psmouse
*psmouse
)
659 struct elantech_data
*etd
= psmouse
->private;
660 unsigned char *packet
= psmouse
->packet
;
663 * V2 hardware has two flavors. Older ones that do not report pressure,
664 * and newer ones that reports pressure and width. With newer ones, all
665 * packets (1, 2, 3 finger touch) have the same constant bits. With
666 * older ones, 1/3 finger touch packets and 2 finger touch packets
667 * have different constant bits.
668 * With all three cases, if the constant bits are not exactly what I
669 * expected, I consider them invalid.
671 if (etd
->reports_pressure
)
672 return (packet
[0] & 0x0c) == 0x04 &&
673 (packet
[3] & 0x0f) == 0x02;
675 if ((packet
[0] & 0xc0) == 0x80)
676 return (packet
[0] & 0x0c) == 0x0c &&
677 (packet
[3] & 0x0e) == 0x08;
679 return (packet
[0] & 0x3c) == 0x3c &&
680 (packet
[1] & 0xf0) == 0x00 &&
681 (packet
[3] & 0x3e) == 0x38 &&
682 (packet
[4] & 0xf0) == 0x00;
686 * We check the constant bits to determine what packet type we get,
687 * so packet checking is mandatory for v3 and later hardware.
689 static int elantech_packet_check_v3(struct psmouse
*psmouse
)
691 struct elantech_data
*etd
= psmouse
->private;
692 const u8 debounce_packet
[] = { 0xc4, 0xff, 0xff, 0x02, 0xff, 0xff };
693 unsigned char *packet
= psmouse
->packet
;
696 * check debounce first, it has the same signature in byte 0
697 * and byte 3 as PACKET_V3_HEAD.
699 if (!memcmp(packet
, debounce_packet
, sizeof(debounce_packet
)))
700 return PACKET_DEBOUNCE
;
703 * If the hardware flag 'crc_enabled' is set the packets have
704 * different signatures.
706 if (etd
->crc_enabled
) {
707 if ((packet
[3] & 0x09) == 0x08)
708 return PACKET_V3_HEAD
;
710 if ((packet
[3] & 0x09) == 0x09)
711 return PACKET_V3_TAIL
;
713 if ((packet
[0] & 0x0c) == 0x04 && (packet
[3] & 0xcf) == 0x02)
714 return PACKET_V3_HEAD
;
716 if ((packet
[0] & 0x0c) == 0x0c && (packet
[3] & 0xce) == 0x0c)
717 return PACKET_V3_TAIL
;
720 return PACKET_UNKNOWN
;
723 static int elantech_packet_check_v4(struct psmouse
*psmouse
)
725 struct elantech_data
*etd
= psmouse
->private;
726 unsigned char *packet
= psmouse
->packet
;
727 unsigned char packet_type
= packet
[3] & 0x03;
731 * Sanity check based on the constant bits of a packet.
732 * The constant bits change depending on the value of
733 * the hardware flag 'crc_enabled' but are the same for
734 * every packet, regardless of the type.
736 if (etd
->crc_enabled
)
737 sanity_check
= ((packet
[3] & 0x08) == 0x00);
739 sanity_check
= ((packet
[0] & 0x0c) == 0x04 &&
740 (packet
[3] & 0x1c) == 0x10);
743 return PACKET_UNKNOWN
;
745 switch (packet_type
) {
747 return PACKET_V4_STATUS
;
750 return PACKET_V4_HEAD
;
753 return PACKET_V4_MOTION
;
756 return PACKET_UNKNOWN
;
760 * Process byte stream from mouse and handle complete packets
762 static psmouse_ret_t
elantech_process_byte(struct psmouse
*psmouse
)
764 struct elantech_data
*etd
= psmouse
->private;
767 if (psmouse
->pktcnt
< psmouse
->pktsize
)
768 return PSMOUSE_GOOD_DATA
;
771 elantech_packet_dump(psmouse
);
773 switch (etd
->hw_version
) {
775 if (etd
->paritycheck
&& !elantech_packet_check_v1(psmouse
))
776 return PSMOUSE_BAD_DATA
;
778 elantech_report_absolute_v1(psmouse
);
782 /* ignore debounce */
783 if (elantech_debounce_check_v2(psmouse
))
784 return PSMOUSE_FULL_PACKET
;
786 if (etd
->paritycheck
&& !elantech_packet_check_v2(psmouse
))
787 return PSMOUSE_BAD_DATA
;
789 elantech_report_absolute_v2(psmouse
);
793 packet_type
= elantech_packet_check_v3(psmouse
);
794 /* ignore debounce */
795 if (packet_type
== PACKET_DEBOUNCE
)
796 return PSMOUSE_FULL_PACKET
;
798 if (packet_type
== PACKET_UNKNOWN
)
799 return PSMOUSE_BAD_DATA
;
801 elantech_report_absolute_v3(psmouse
, packet_type
);
805 packet_type
= elantech_packet_check_v4(psmouse
);
806 if (packet_type
== PACKET_UNKNOWN
)
807 return PSMOUSE_BAD_DATA
;
809 elantech_report_absolute_v4(psmouse
, packet_type
);
813 return PSMOUSE_FULL_PACKET
;
817 * Put the touchpad into absolute mode
819 static int elantech_set_absolute_mode(struct psmouse
*psmouse
)
821 struct elantech_data
*etd
= psmouse
->private;
823 int tries
= ETP_READ_BACK_TRIES
;
826 switch (etd
->hw_version
) {
830 if (elantech_write_reg(psmouse
, 0x10, etd
->reg_10
) ||
831 elantech_write_reg(psmouse
, 0x11, etd
->reg_11
)) {
837 /* Windows driver values */
839 etd
->reg_11
= 0x88; /* 0x8a */
840 etd
->reg_21
= 0x60; /* 0x00 */
841 if (elantech_write_reg(psmouse
, 0x10, etd
->reg_10
) ||
842 elantech_write_reg(psmouse
, 0x11, etd
->reg_11
) ||
843 elantech_write_reg(psmouse
, 0x21, etd
->reg_21
)) {
849 if (etd
->set_hw_resolution
)
854 if (elantech_write_reg(psmouse
, 0x10, etd
->reg_10
))
861 if (elantech_write_reg(psmouse
, 0x07, etd
->reg_07
))
864 goto skip_readback_reg_10
; /* v4 has no reg 0x10 to read */
869 * Read back reg 0x10. For hardware version 1 we must make
870 * sure the absolute mode bit is set. For hardware version 2
871 * the touchpad is probably initializing and not ready until
872 * we read back the value we just wrote.
875 rc
= elantech_read_reg(psmouse
, 0x10, &val
);
879 elantech_debug("retrying read (%d).\n", tries
);
880 msleep(ETP_READ_BACK_DELAY
);
885 "failed to read back register 0x10.\n");
886 } else if (etd
->hw_version
== 1 &&
887 !(val
& ETP_R10_ABSOLUTE_MODE
)) {
889 "touchpad refuses to switch to absolute mode.\n");
894 skip_readback_reg_10
:
896 psmouse_err(psmouse
, "failed to initialise registers.\n");
901 static int elantech_set_range(struct psmouse
*psmouse
,
902 unsigned int *x_min
, unsigned int *y_min
,
903 unsigned int *x_max
, unsigned int *y_max
,
906 struct elantech_data
*etd
= psmouse
->private;
907 unsigned char param
[3];
908 unsigned char traces
;
910 switch (etd
->hw_version
) {
912 *x_min
= ETP_XMIN_V1
;
913 *y_min
= ETP_YMIN_V1
;
914 *x_max
= ETP_XMAX_V1
;
915 *y_max
= ETP_YMAX_V1
;
919 if (etd
->fw_version
== 0x020800 ||
920 etd
->fw_version
== 0x020b00 ||
921 etd
->fw_version
== 0x020030) {
922 *x_min
= ETP_XMIN_V2
;
923 *y_min
= ETP_YMIN_V2
;
924 *x_max
= ETP_XMAX_V2
;
925 *y_max
= ETP_YMAX_V2
;
930 i
= (etd
->fw_version
> 0x020800 &&
931 etd
->fw_version
< 0x020900) ? 1 : 2;
933 if (etd
->send_cmd(psmouse
, ETP_FW_ID_QUERY
, param
))
936 fixed_dpi
= param
[1] & 0x10;
938 if (((etd
->fw_version
>> 16) == 0x14) && fixed_dpi
) {
939 if (etd
->send_cmd(psmouse
, ETP_SAMPLE_QUERY
, param
))
942 *x_max
= (etd
->capabilities
[1] - i
) * param
[1] / 2;
943 *y_max
= (etd
->capabilities
[2] - i
) * param
[2] / 2;
944 } else if (etd
->fw_version
== 0x040216) {
947 } else if (etd
->fw_version
== 0x040219 || etd
->fw_version
== 0x040215) {
951 *x_max
= (etd
->capabilities
[1] - i
) * 64;
952 *y_max
= (etd
->capabilities
[2] - i
) * 64;
958 if (etd
->send_cmd(psmouse
, ETP_FW_ID_QUERY
, param
))
961 *x_max
= (0x0f & param
[0]) << 8 | param
[1];
962 *y_max
= (0xf0 & param
[0]) << 4 | param
[2];
966 if (etd
->send_cmd(psmouse
, ETP_FW_ID_QUERY
, param
))
969 *x_max
= (0x0f & param
[0]) << 8 | param
[1];
970 *y_max
= (0xf0 & param
[0]) << 4 | param
[2];
971 traces
= etd
->capabilities
[1];
972 if ((traces
< 2) || (traces
> *x_max
))
975 *width
= *x_max
/ (traces
- 1);
983 * (value from firmware) * 10 + 790 = dpi
984 * we also have to convert dpi to dots/mm (*10/254 to avoid floating point)
986 static unsigned int elantech_convert_res(unsigned int val
)
988 return (val
* 10 + 790) * 10 / 254;
991 static int elantech_get_resolution_v4(struct psmouse
*psmouse
,
995 unsigned char param
[3];
997 if (elantech_send_cmd(psmouse
, ETP_RESOLUTION_QUERY
, param
))
1000 *x_res
= elantech_convert_res(param
[1] & 0x0f);
1001 *y_res
= elantech_convert_res((param
[1] & 0xf0) >> 4);
1007 * Advertise INPUT_PROP_BUTTONPAD for clickpads. The testing of bit 12 in
1008 * fw_version for this is based on the following fw_version & caps table:
1010 * Laptop-model: fw_version: caps: buttons:
1011 * Acer S3 0x461f00 10, 13, 0e clickpad
1012 * Acer S7-392 0x581f01 50, 17, 0d clickpad
1013 * Acer V5-131 0x461f02 01, 16, 0c clickpad
1014 * Acer V5-551 0x461f00 ? clickpad
1015 * Asus K53SV 0x450f01 78, 15, 0c 2 hw buttons
1016 * Asus G46VW 0x460f02 00, 18, 0c 2 hw buttons
1017 * Asus G750JX 0x360f00 00, 16, 0c 2 hw buttons
1018 * Asus UX31 0x361f00 20, 15, 0e clickpad
1019 * Asus UX32VD 0x361f02 00, 15, 0e clickpad
1020 * Avatar AVIU-145A2 0x361f00 ? clickpad
1021 * Gigabyte U2442 0x450f01 58, 17, 0c 2 hw buttons
1022 * Lenovo L430 0x350f02 b9, 15, 0c 2 hw buttons (*)
1023 * Samsung NF210 0x150b00 78, 14, 0a 2 hw buttons
1024 * Samsung NP770Z5E 0x575f01 10, 15, 0f clickpad
1025 * Samsung NP700Z5B 0x361f06 21, 15, 0f clickpad
1026 * Samsung NP900X3E-A02 0x575f03 ? clickpad
1027 * Samsung NP-QX410 0x851b00 19, 14, 0c clickpad
1028 * Samsung RC512 0x450f00 08, 15, 0c 2 hw buttons
1029 * Samsung RF710 0x450f00 ? 2 hw buttons
1030 * System76 Pangolin 0x250f01 ? 2 hw buttons
1031 * (*) + 3 trackpoint buttons
1033 static void elantech_set_buttonpad_prop(struct psmouse
*psmouse
)
1035 struct input_dev
*dev
= psmouse
->dev
;
1036 struct elantech_data
*etd
= psmouse
->private;
1038 if (etd
->fw_version
& 0x001000) {
1039 __set_bit(INPUT_PROP_BUTTONPAD
, dev
->propbit
);
1040 __clear_bit(BTN_RIGHT
, dev
->keybit
);
1045 * Set the appropriate event bits for the input subsystem
1047 static int elantech_set_input_params(struct psmouse
*psmouse
)
1049 struct input_dev
*dev
= psmouse
->dev
;
1050 struct elantech_data
*etd
= psmouse
->private;
1051 unsigned int x_min
= 0, y_min
= 0, x_max
= 0, y_max
= 0, width
= 0;
1052 unsigned int x_res
= 0, y_res
= 0;
1054 if (elantech_set_range(psmouse
, &x_min
, &y_min
, &x_max
, &y_max
, &width
))
1057 __set_bit(INPUT_PROP_POINTER
, dev
->propbit
);
1058 __set_bit(EV_KEY
, dev
->evbit
);
1059 __set_bit(EV_ABS
, dev
->evbit
);
1060 __clear_bit(EV_REL
, dev
->evbit
);
1062 __set_bit(BTN_LEFT
, dev
->keybit
);
1063 __set_bit(BTN_RIGHT
, dev
->keybit
);
1065 __set_bit(BTN_TOUCH
, dev
->keybit
);
1066 __set_bit(BTN_TOOL_FINGER
, dev
->keybit
);
1067 __set_bit(BTN_TOOL_DOUBLETAP
, dev
->keybit
);
1068 __set_bit(BTN_TOOL_TRIPLETAP
, dev
->keybit
);
1070 switch (etd
->hw_version
) {
1073 if (etd
->fw_version
< 0x020000 &&
1074 (etd
->capabilities
[0] & ETP_CAP_HAS_ROCKER
)) {
1075 __set_bit(BTN_FORWARD
, dev
->keybit
);
1076 __set_bit(BTN_BACK
, dev
->keybit
);
1078 input_set_abs_params(dev
, ABS_X
, x_min
, x_max
, 0, 0);
1079 input_set_abs_params(dev
, ABS_Y
, y_min
, y_max
, 0, 0);
1083 __set_bit(BTN_TOOL_QUADTAP
, dev
->keybit
);
1084 __set_bit(INPUT_PROP_SEMI_MT
, dev
->propbit
);
1087 if (etd
->hw_version
== 3)
1088 elantech_set_buttonpad_prop(psmouse
);
1089 input_set_abs_params(dev
, ABS_X
, x_min
, x_max
, 0, 0);
1090 input_set_abs_params(dev
, ABS_Y
, y_min
, y_max
, 0, 0);
1091 if (etd
->reports_pressure
) {
1092 input_set_abs_params(dev
, ABS_PRESSURE
, ETP_PMIN_V2
,
1094 input_set_abs_params(dev
, ABS_TOOL_WIDTH
, ETP_WMIN_V2
,
1097 input_mt_init_slots(dev
, 2, 0);
1098 input_set_abs_params(dev
, ABS_MT_POSITION_X
, x_min
, x_max
, 0, 0);
1099 input_set_abs_params(dev
, ABS_MT_POSITION_Y
, y_min
, y_max
, 0, 0);
1103 if (elantech_get_resolution_v4(psmouse
, &x_res
, &y_res
)) {
1105 * if query failed, print a warning and leave the values
1106 * zero to resemble synaptics.c behavior.
1108 psmouse_warn(psmouse
, "couldn't query resolution data.\n");
1110 elantech_set_buttonpad_prop(psmouse
);
1111 __set_bit(BTN_TOOL_QUADTAP
, dev
->keybit
);
1112 /* For X to recognize me as touchpad. */
1113 input_set_abs_params(dev
, ABS_X
, x_min
, x_max
, 0, 0);
1114 input_set_abs_params(dev
, ABS_Y
, y_min
, y_max
, 0, 0);
1115 input_abs_set_res(dev
, ABS_X
, x_res
);
1116 input_abs_set_res(dev
, ABS_Y
, y_res
);
1118 * range of pressure and width is the same as v2,
1119 * report ABS_PRESSURE, ABS_TOOL_WIDTH for compatibility.
1121 input_set_abs_params(dev
, ABS_PRESSURE
, ETP_PMIN_V2
,
1123 input_set_abs_params(dev
, ABS_TOOL_WIDTH
, ETP_WMIN_V2
,
1125 /* Multitouch capable pad, up to 5 fingers. */
1126 input_mt_init_slots(dev
, ETP_MAX_FINGERS
, 0);
1127 input_set_abs_params(dev
, ABS_MT_POSITION_X
, x_min
, x_max
, 0, 0);
1128 input_set_abs_params(dev
, ABS_MT_POSITION_Y
, y_min
, y_max
, 0, 0);
1129 input_abs_set_res(dev
, ABS_MT_POSITION_X
, x_res
);
1130 input_abs_set_res(dev
, ABS_MT_POSITION_Y
, y_res
);
1131 input_set_abs_params(dev
, ABS_MT_PRESSURE
, ETP_PMIN_V2
,
1134 * The firmware reports how many trace lines the finger spans,
1135 * convert to surface unit as Protocol-B requires.
1137 input_set_abs_params(dev
, ABS_MT_TOUCH_MAJOR
, 0,
1138 ETP_WMAX_V2
* width
, 0, 0);
1148 struct elantech_attr_data
{
1149 size_t field_offset
;
1154 * Display a register value by reading a sysfs entry
1156 static ssize_t
elantech_show_int_attr(struct psmouse
*psmouse
, void *data
,
1159 struct elantech_data
*etd
= psmouse
->private;
1160 struct elantech_attr_data
*attr
= data
;
1161 unsigned char *reg
= (unsigned char *) etd
+ attr
->field_offset
;
1165 rc
= elantech_read_reg(psmouse
, attr
->reg
, reg
);
1167 return sprintf(buf
, "0x%02x\n", (attr
->reg
&& rc
) ? -1 : *reg
);
1171 * Write a register value by writing a sysfs entry
1173 static ssize_t
elantech_set_int_attr(struct psmouse
*psmouse
,
1174 void *data
, const char *buf
, size_t count
)
1176 struct elantech_data
*etd
= psmouse
->private;
1177 struct elantech_attr_data
*attr
= data
;
1178 unsigned char *reg
= (unsigned char *) etd
+ attr
->field_offset
;
1179 unsigned char value
;
1182 err
= kstrtou8(buf
, 16, &value
);
1186 /* Do we need to preserve some bits for version 2 hardware too? */
1187 if (etd
->hw_version
== 1) {
1188 if (attr
->reg
== 0x10)
1189 /* Force absolute mode always on */
1190 value
|= ETP_R10_ABSOLUTE_MODE
;
1191 else if (attr
->reg
== 0x11)
1192 /* Force 4 byte mode always on */
1193 value
|= ETP_R11_4_BYTE_MODE
;
1196 if (!attr
->reg
|| elantech_write_reg(psmouse
, attr
->reg
, value
) == 0)
1202 #define ELANTECH_INT_ATTR(_name, _register) \
1203 static struct elantech_attr_data elantech_attr_##_name = { \
1204 .field_offset = offsetof(struct elantech_data, _name), \
1207 PSMOUSE_DEFINE_ATTR(_name, S_IWUSR | S_IRUGO, \
1208 &elantech_attr_##_name, \
1209 elantech_show_int_attr, \
1210 elantech_set_int_attr)
1212 ELANTECH_INT_ATTR(reg_07
, 0x07);
1213 ELANTECH_INT_ATTR(reg_10
, 0x10);
1214 ELANTECH_INT_ATTR(reg_11
, 0x11);
1215 ELANTECH_INT_ATTR(reg_20
, 0x20);
1216 ELANTECH_INT_ATTR(reg_21
, 0x21);
1217 ELANTECH_INT_ATTR(reg_22
, 0x22);
1218 ELANTECH_INT_ATTR(reg_23
, 0x23);
1219 ELANTECH_INT_ATTR(reg_24
, 0x24);
1220 ELANTECH_INT_ATTR(reg_25
, 0x25);
1221 ELANTECH_INT_ATTR(reg_26
, 0x26);
1222 ELANTECH_INT_ATTR(debug
, 0);
1223 ELANTECH_INT_ATTR(paritycheck
, 0);
1225 static struct attribute
*elantech_attrs
[] = {
1226 &psmouse_attr_reg_07
.dattr
.attr
,
1227 &psmouse_attr_reg_10
.dattr
.attr
,
1228 &psmouse_attr_reg_11
.dattr
.attr
,
1229 &psmouse_attr_reg_20
.dattr
.attr
,
1230 &psmouse_attr_reg_21
.dattr
.attr
,
1231 &psmouse_attr_reg_22
.dattr
.attr
,
1232 &psmouse_attr_reg_23
.dattr
.attr
,
1233 &psmouse_attr_reg_24
.dattr
.attr
,
1234 &psmouse_attr_reg_25
.dattr
.attr
,
1235 &psmouse_attr_reg_26
.dattr
.attr
,
1236 &psmouse_attr_debug
.dattr
.attr
,
1237 &psmouse_attr_paritycheck
.dattr
.attr
,
1241 static struct attribute_group elantech_attr_group
= {
1242 .attrs
= elantech_attrs
,
1245 static bool elantech_is_signature_valid(const unsigned char *param
)
1247 static const unsigned char rates
[] = { 200, 100, 80, 60, 40, 20, 10 };
1256 for (i
= 0; i
< ARRAY_SIZE(rates
); i
++)
1257 if (param
[2] == rates
[i
])
1264 * Use magic knock to detect Elantech touchpad
1266 int elantech_detect(struct psmouse
*psmouse
, bool set_properties
)
1268 struct ps2dev
*ps2dev
= &psmouse
->ps2dev
;
1269 unsigned char param
[3];
1271 ps2_command(&psmouse
->ps2dev
, NULL
, PSMOUSE_CMD_RESET_DIS
);
1273 if (ps2_command(ps2dev
, NULL
, PSMOUSE_CMD_DISABLE
) ||
1274 ps2_command(ps2dev
, NULL
, PSMOUSE_CMD_SETSCALE11
) ||
1275 ps2_command(ps2dev
, NULL
, PSMOUSE_CMD_SETSCALE11
) ||
1276 ps2_command(ps2dev
, NULL
, PSMOUSE_CMD_SETSCALE11
) ||
1277 ps2_command(ps2dev
, param
, PSMOUSE_CMD_GETINFO
)) {
1278 psmouse_dbg(psmouse
, "sending Elantech magic knock failed.\n");
1283 * Report this in case there are Elantech models that use a different
1284 * set of magic numbers
1286 if (param
[0] != 0x3c || param
[1] != 0x03 ||
1287 (param
[2] != 0xc8 && param
[2] != 0x00)) {
1288 psmouse_dbg(psmouse
,
1289 "unexpected magic knock result 0x%02x, 0x%02x, 0x%02x.\n",
1290 param
[0], param
[1], param
[2]);
1295 * Query touchpad's firmware version and see if it reports known
1296 * value to avoid mis-detection. Logitech mice are known to respond
1297 * to Elantech magic knock and there might be more.
1299 if (synaptics_send_cmd(psmouse
, ETP_FW_VERSION_QUERY
, param
)) {
1300 psmouse_dbg(psmouse
, "failed to query firmware version.\n");
1304 psmouse_dbg(psmouse
,
1305 "Elantech version query result 0x%02x, 0x%02x, 0x%02x.\n",
1306 param
[0], param
[1], param
[2]);
1308 if (!elantech_is_signature_valid(param
)) {
1309 psmouse_dbg(psmouse
,
1310 "Probably not a real Elantech touchpad. Aborting.\n");
1314 if (set_properties
) {
1315 psmouse
->vendor
= "Elantech";
1316 psmouse
->name
= "Touchpad";
1323 * Clean up sysfs entries when disconnecting
1325 static void elantech_disconnect(struct psmouse
*psmouse
)
1327 sysfs_remove_group(&psmouse
->ps2dev
.serio
->dev
.kobj
,
1328 &elantech_attr_group
);
1329 kfree(psmouse
->private);
1330 psmouse
->private = NULL
;
1334 * Put the touchpad back into absolute mode when reconnecting
1336 static int elantech_reconnect(struct psmouse
*psmouse
)
1338 psmouse_reset(psmouse
);
1340 if (elantech_detect(psmouse
, 0))
1343 if (elantech_set_absolute_mode(psmouse
)) {
1344 psmouse_err(psmouse
,
1345 "failed to put touchpad back into absolute mode.\n");
1353 * Some hw_version 3 models go into error state when we try to set
1354 * bit 3 and/or bit 1 of r10.
1356 static const struct dmi_system_id no_hw_res_dmi_table
[] = {
1357 #if defined(CONFIG_DMI) && defined(CONFIG_X86)
1359 /* Gigabyte U2442 */
1361 DMI_MATCH(DMI_SYS_VENDOR
, "GIGABYTE"),
1362 DMI_MATCH(DMI_PRODUCT_NAME
, "U2442"),
1370 * determine hardware version and set some properties according to it.
1372 static int elantech_set_properties(struct elantech_data
*etd
)
1374 /* This represents the version of IC body. */
1375 int ver
= (etd
->fw_version
& 0x0f0000) >> 16;
1377 /* Early version of Elan touchpads doesn't obey the rule. */
1378 if (etd
->fw_version
< 0x020030 || etd
->fw_version
== 0x020600)
1379 etd
->hw_version
= 1;
1384 etd
->hw_version
= 2;
1387 etd
->hw_version
= 3;
1392 etd
->hw_version
= 4;
1399 /* decide which send_cmd we're gonna use early */
1400 etd
->send_cmd
= etd
->hw_version
>= 3 ? elantech_send_cmd
:
1403 /* Turn on packet checking by default */
1404 etd
->paritycheck
= 1;
1407 * This firmware suffers from misreporting coordinates when
1408 * a touch action starts causing the mouse cursor or scrolled page
1409 * to jump. Enable a workaround.
1412 (etd
->fw_version
== 0x020022 || etd
->fw_version
== 0x020600);
1414 if (etd
->hw_version
> 1) {
1415 /* For now show extra debug information */
1418 if (etd
->fw_version
>= 0x020800)
1419 etd
->reports_pressure
= true;
1423 * The signatures of v3 and v4 packets change depending on the
1424 * value of this hardware flag.
1426 etd
->crc_enabled
= ((etd
->fw_version
& 0x4000) == 0x4000);
1428 /* Enable real hardware resolution on hw_version 3 ? */
1429 etd
->set_hw_resolution
= !dmi_check_system(no_hw_res_dmi_table
);
1435 * Initialize the touchpad and create sysfs entries
1437 int elantech_init(struct psmouse
*psmouse
)
1439 struct elantech_data
*etd
;
1441 unsigned char param
[3];
1443 psmouse
->private = etd
= kzalloc(sizeof(struct elantech_data
), GFP_KERNEL
);
1447 psmouse_reset(psmouse
);
1450 for (i
= 1; i
< 256; i
++)
1451 etd
->parity
[i
] = etd
->parity
[i
& (i
- 1)] ^ 1;
1454 * Do the version query again so we can store the result
1456 if (synaptics_send_cmd(psmouse
, ETP_FW_VERSION_QUERY
, param
)) {
1457 psmouse_err(psmouse
, "failed to query firmware version.\n");
1460 etd
->fw_version
= (param
[0] << 16) | (param
[1] << 8) | param
[2];
1462 if (elantech_set_properties(etd
)) {
1463 psmouse_err(psmouse
, "unknown hardware version, aborting...\n");
1466 psmouse_info(psmouse
,
1467 "assuming hardware version %d (with firmware version 0x%02x%02x%02x)\n",
1468 etd
->hw_version
, param
[0], param
[1], param
[2]);
1470 if (etd
->send_cmd(psmouse
, ETP_CAPABILITIES_QUERY
,
1471 etd
->capabilities
)) {
1472 psmouse_err(psmouse
, "failed to query capabilities.\n");
1475 psmouse_info(psmouse
,
1476 "Synaptics capabilities query result 0x%02x, 0x%02x, 0x%02x.\n",
1477 etd
->capabilities
[0], etd
->capabilities
[1],
1478 etd
->capabilities
[2]);
1480 if (elantech_set_absolute_mode(psmouse
)) {
1481 psmouse_err(psmouse
,
1482 "failed to put touchpad into absolute mode.\n");
1486 if (elantech_set_input_params(psmouse
)) {
1487 psmouse_err(psmouse
, "failed to query touchpad range.\n");
1491 error
= sysfs_create_group(&psmouse
->ps2dev
.serio
->dev
.kobj
,
1492 &elantech_attr_group
);
1494 psmouse_err(psmouse
,
1495 "failed to create sysfs attributes, error: %d.\n",
1500 psmouse
->protocol_handler
= elantech_process_byte
;
1501 psmouse
->disconnect
= elantech_disconnect
;
1502 psmouse
->reconnect
= elantech_reconnect
;
1503 psmouse
->pktsize
= etd
->hw_version
> 1 ? 6 : 4;