xref: /openbmc/linux/drivers/hid/hid-alps.c (revision 5d8c720d3b74413cc62d5015f23f57a51dc06112)
12562756dSMasaki Ota /*
22562756dSMasaki Ota  *  Copyright (c) 2016 Masaki Ota <masaki.ota@jp.alps.com>
32562756dSMasaki Ota  *
42562756dSMasaki Ota  * This program is free software; you can redistribute it and/or modify it
52562756dSMasaki Ota  * under the terms of the GNU General Public License as published by the Free
62562756dSMasaki Ota  * Software Foundation; either version 2 of the License, or (at your option)
72562756dSMasaki Ota  * any later version.
82562756dSMasaki Ota  */
92562756dSMasaki Ota 
102562756dSMasaki Ota #include <linux/kernel.h>
112562756dSMasaki Ota #include <linux/hid.h>
122562756dSMasaki Ota #include <linux/input.h>
132562756dSMasaki Ota #include <linux/input/mt.h>
142562756dSMasaki Ota #include <linux/module.h>
152562756dSMasaki Ota #include <asm/unaligned.h>
162562756dSMasaki Ota #include "hid-ids.h"
172562756dSMasaki Ota 
182562756dSMasaki Ota /* ALPS Device Product ID */
192562756dSMasaki Ota #define HID_PRODUCT_ID_T3_BTNLESS	0xD0C0
202562756dSMasaki Ota #define HID_PRODUCT_ID_COSMO		0x1202
212562756dSMasaki Ota #define HID_PRODUCT_ID_U1_PTP_1		0x1207
222562756dSMasaki Ota #define HID_PRODUCT_ID_U1			0x1209
232562756dSMasaki Ota #define HID_PRODUCT_ID_U1_PTP_2		0x120A
242562756dSMasaki Ota #define HID_PRODUCT_ID_U1_DUAL		0x120B
252562756dSMasaki Ota #define HID_PRODUCT_ID_T4_BTNLESS	0x120C
262562756dSMasaki Ota 
272562756dSMasaki Ota #define DEV_SINGLEPOINT				0x01
282562756dSMasaki Ota #define DEV_DUALPOINT				0x02
292562756dSMasaki Ota 
302562756dSMasaki Ota #define U1_MOUSE_REPORT_ID			0x01 /* Mouse data ReportID */
312562756dSMasaki Ota #define U1_ABSOLUTE_REPORT_ID		0x03 /* Absolute data ReportID */
322562756dSMasaki Ota #define U1_FEATURE_REPORT_ID		0x05 /* Feature ReportID */
332562756dSMasaki Ota #define U1_SP_ABSOLUTE_REPORT_ID	0x06 /* Feature ReportID */
342562756dSMasaki Ota 
352562756dSMasaki Ota #define U1_FEATURE_REPORT_LEN		0x08 /* Feature Report Length */
362562756dSMasaki Ota #define U1_FEATURE_REPORT_LEN_ALL	0x0A
372562756dSMasaki Ota #define U1_CMD_REGISTER_READ		0xD1
382562756dSMasaki Ota #define U1_CMD_REGISTER_WRITE		0xD2
392562756dSMasaki Ota 
402562756dSMasaki Ota #define	U1_DEVTYPE_SP_SUPPORT		0x10 /* SP Support */
412562756dSMasaki Ota #define	U1_DISABLE_DEV				0x01
422562756dSMasaki Ota #define U1_TP_ABS_MODE				0x02
432562756dSMasaki Ota #define	U1_SP_ABS_MODE				0x80
442562756dSMasaki Ota 
452562756dSMasaki Ota #define ADDRESS_U1_DEV_CTRL_1	0x00800040
462562756dSMasaki Ota #define ADDRESS_U1_DEVICE_TYP	0x00800043
472562756dSMasaki Ota #define ADDRESS_U1_NUM_SENS_X	0x00800047
482562756dSMasaki Ota #define ADDRESS_U1_NUM_SENS_Y	0x00800048
492562756dSMasaki Ota #define ADDRESS_U1_PITCH_SENS_X	0x00800049
502562756dSMasaki Ota #define ADDRESS_U1_PITCH_SENS_Y	0x0080004A
512562756dSMasaki Ota #define ADDRESS_U1_RESO_DWN_ABS 0x0080004E
522562756dSMasaki Ota #define ADDRESS_U1_PAD_BTN		0x00800052
532562756dSMasaki Ota #define ADDRESS_U1_SP_BTN		0x0080009F
542562756dSMasaki Ota 
552562756dSMasaki Ota #define MAX_TOUCHES	5
562562756dSMasaki Ota 
572562756dSMasaki Ota /**
582562756dSMasaki Ota  * struct u1_data
592562756dSMasaki Ota  *
602562756dSMasaki Ota  * @input: pointer to the kernel input device
612562756dSMasaki Ota  * @input2: pointer to the kernel input2 device
622562756dSMasaki Ota  * @hdev: pointer to the struct hid_device
632562756dSMasaki Ota  *
642562756dSMasaki Ota  * @dev_ctrl: device control parameter
652562756dSMasaki Ota  * @dev_type: device type
662562756dSMasaki Ota  * @sen_line_num_x: number of sensor line of X
672562756dSMasaki Ota  * @sen_line_num_y: number of sensor line of Y
682562756dSMasaki Ota  * @pitch_x: sensor pitch of X
692562756dSMasaki Ota  * @pitch_y: sensor pitch of Y
702562756dSMasaki Ota  * @resolution: resolution
712562756dSMasaki Ota  * @btn_info: button information
722562756dSMasaki Ota  * @x_active_len_mm: active area length of X (mm)
732562756dSMasaki Ota  * @y_active_len_mm: active area length of Y (mm)
742562756dSMasaki Ota  * @x_max: maximum x coordinate value
752562756dSMasaki Ota  * @y_max: maximum y coordinate value
762562756dSMasaki Ota  * @btn_cnt: number of buttons
772562756dSMasaki Ota  * @sp_btn_cnt: number of stick buttons
78*5d8c720dSMasaki Ota  * @has_sp: boolean of sp existense
792562756dSMasaki Ota  */
802562756dSMasaki Ota struct u1_dev {
812562756dSMasaki Ota 	struct input_dev *input;
822562756dSMasaki Ota 	struct input_dev *input2;
832562756dSMasaki Ota 	struct hid_device *hdev;
842562756dSMasaki Ota 
852562756dSMasaki Ota 	u8	dev_ctrl;
862562756dSMasaki Ota 	u8	dev_type;
872562756dSMasaki Ota 	u8	sen_line_num_x;
882562756dSMasaki Ota 	u8	sen_line_num_y;
892562756dSMasaki Ota 	u8	pitch_x;
902562756dSMasaki Ota 	u8	pitch_y;
912562756dSMasaki Ota 	u8	resolution;
922562756dSMasaki Ota 	u8	btn_info;
932562756dSMasaki Ota 	u8	sp_btn_info;
942562756dSMasaki Ota 	u32	x_active_len_mm;
952562756dSMasaki Ota 	u32	y_active_len_mm;
962562756dSMasaki Ota 	u32	x_max;
972562756dSMasaki Ota 	u32	y_max;
982562756dSMasaki Ota 	u32	btn_cnt;
992562756dSMasaki Ota 	u32	sp_btn_cnt;
100*5d8c720dSMasaki Ota 	u8	has_sp;
1012562756dSMasaki Ota };
1022562756dSMasaki Ota 
1032562756dSMasaki Ota static int u1_read_write_register(struct hid_device *hdev, u32 address,
1042562756dSMasaki Ota 	u8 *read_val, u8 write_val, bool read_flag)
1052562756dSMasaki Ota {
1062562756dSMasaki Ota 	int ret, i;
1072562756dSMasaki Ota 	u8 check_sum;
1082562756dSMasaki Ota 	u8 *input;
1092562756dSMasaki Ota 	u8 *readbuf;
1102562756dSMasaki Ota 
111819d64e5SMasaki Ota 	input = kzalloc(U1_FEATURE_REPORT_LEN, GFP_KERNEL);
1122562756dSMasaki Ota 	if (!input)
1132562756dSMasaki Ota 		return -ENOMEM;
1142562756dSMasaki Ota 
1152562756dSMasaki Ota 	input[0] = U1_FEATURE_REPORT_ID;
1162562756dSMasaki Ota 	if (read_flag) {
1172562756dSMasaki Ota 		input[1] = U1_CMD_REGISTER_READ;
1182562756dSMasaki Ota 		input[6] = 0x00;
1192562756dSMasaki Ota 	} else {
1202562756dSMasaki Ota 		input[1] = U1_CMD_REGISTER_WRITE;
1212562756dSMasaki Ota 		input[6] = write_val;
1222562756dSMasaki Ota 	}
1232562756dSMasaki Ota 
1242562756dSMasaki Ota 	put_unaligned_le32(address, input + 2);
1252562756dSMasaki Ota 
1262562756dSMasaki Ota 	/* Calculate the checksum */
1272562756dSMasaki Ota 	check_sum = U1_FEATURE_REPORT_LEN_ALL;
1282562756dSMasaki Ota 	for (i = 0; i < U1_FEATURE_REPORT_LEN - 1; i++)
1292562756dSMasaki Ota 		check_sum += input[i];
1302562756dSMasaki Ota 
1312562756dSMasaki Ota 	input[7] = check_sum;
1322562756dSMasaki Ota 	ret = hid_hw_raw_request(hdev, U1_FEATURE_REPORT_ID, input,
133819d64e5SMasaki Ota 			U1_FEATURE_REPORT_LEN,
134819d64e5SMasaki Ota 			HID_FEATURE_REPORT, HID_REQ_SET_REPORT);
1352562756dSMasaki Ota 
1362562756dSMasaki Ota 	if (ret < 0) {
1372562756dSMasaki Ota 		dev_err(&hdev->dev, "failed to read command (%d)\n", ret);
1382562756dSMasaki Ota 		goto exit;
1392562756dSMasaki Ota 	}
1402562756dSMasaki Ota 
1412562756dSMasaki Ota 	if (read_flag) {
142819d64e5SMasaki Ota 		readbuf = kzalloc(U1_FEATURE_REPORT_LEN, GFP_KERNEL);
143819d64e5SMasaki Ota 		if (!readbuf) {
1447ee2eaa3SAxel Lin 			ret = -ENOMEM;
1457ee2eaa3SAxel Lin 			goto exit;
146819d64e5SMasaki Ota 		}
147819d64e5SMasaki Ota 
1482562756dSMasaki Ota 		ret = hid_hw_raw_request(hdev, U1_FEATURE_REPORT_ID, readbuf,
149819d64e5SMasaki Ota 				U1_FEATURE_REPORT_LEN,
15063b3a7d0SJiri Kosina 				HID_FEATURE_REPORT, HID_REQ_GET_REPORT);
1512562756dSMasaki Ota 
1522562756dSMasaki Ota 		if (ret < 0) {
1532562756dSMasaki Ota 			dev_err(&hdev->dev, "failed read register (%d)\n", ret);
1547ee2eaa3SAxel Lin 			kfree(readbuf);
1552562756dSMasaki Ota 			goto exit;
1562562756dSMasaki Ota 		}
1572562756dSMasaki Ota 
1582562756dSMasaki Ota 		*read_val = readbuf[6];
159819d64e5SMasaki Ota 
160819d64e5SMasaki Ota 		kfree(readbuf);
1612562756dSMasaki Ota 	}
1622562756dSMasaki Ota 
163819d64e5SMasaki Ota 	ret = 0;
1642562756dSMasaki Ota 
1652562756dSMasaki Ota exit:
1662562756dSMasaki Ota 	kfree(input);
1672562756dSMasaki Ota 	return ret;
1682562756dSMasaki Ota }
1692562756dSMasaki Ota 
1702562756dSMasaki Ota static int alps_raw_event(struct hid_device *hdev,
1712562756dSMasaki Ota 		struct hid_report *report, u8 *data, int size)
1722562756dSMasaki Ota {
173819d64e5SMasaki Ota 	unsigned int x, y, z;
174819d64e5SMasaki Ota 	int i;
175819d64e5SMasaki Ota 	short sp_x, sp_y;
1762562756dSMasaki Ota 	struct u1_dev *hdata = hid_get_drvdata(hdev);
1772562756dSMasaki Ota 
1782562756dSMasaki Ota 	switch (data[0]) {
1792562756dSMasaki Ota 	case U1_MOUSE_REPORT_ID:
1802562756dSMasaki Ota 		break;
1812562756dSMasaki Ota 	case U1_FEATURE_REPORT_ID:
1822562756dSMasaki Ota 		break;
1832562756dSMasaki Ota 	case U1_ABSOLUTE_REPORT_ID:
1842562756dSMasaki Ota 		for (i = 0; i < MAX_TOUCHES; i++) {
185819d64e5SMasaki Ota 			u8 *contact = &data[i * 5];
186819d64e5SMasaki Ota 
187819d64e5SMasaki Ota 			x = get_unaligned_le16(contact + 3);
188819d64e5SMasaki Ota 			y = get_unaligned_le16(contact + 5);
189819d64e5SMasaki Ota 			z = contact[7] & 0x7F;
1902562756dSMasaki Ota 
1912562756dSMasaki Ota 			input_mt_slot(hdata->input, i);
1922562756dSMasaki Ota 
193819d64e5SMasaki Ota 			if (z != 0) {
1942562756dSMasaki Ota 				input_mt_report_slot_state(hdata->input,
1952562756dSMasaki Ota 					MT_TOOL_FINGER, 1);
1969a54cf46SMasaki Ota 				input_report_abs(hdata->input,
1979a54cf46SMasaki Ota 					ABS_MT_POSITION_X, x);
1989a54cf46SMasaki Ota 				input_report_abs(hdata->input,
1999a54cf46SMasaki Ota 					ABS_MT_POSITION_Y, y);
2009a54cf46SMasaki Ota 				input_report_abs(hdata->input,
2019a54cf46SMasaki Ota 					ABS_MT_PRESSURE, z);
2022562756dSMasaki Ota 			} else {
2032562756dSMasaki Ota 				input_mt_report_slot_state(hdata->input,
2042562756dSMasaki Ota 					MT_TOOL_FINGER, 0);
2052562756dSMasaki Ota 			}
2062562756dSMasaki Ota 		}
2072562756dSMasaki Ota 
2082562756dSMasaki Ota 		input_mt_sync_frame(hdata->input);
2092562756dSMasaki Ota 
210819d64e5SMasaki Ota 		input_report_key(hdata->input, BTN_LEFT,
211819d64e5SMasaki Ota 			data[1] & 0x1);
212819d64e5SMasaki Ota 		input_report_key(hdata->input, BTN_RIGHT,
213819d64e5SMasaki Ota 			(data[1] & 0x2));
214819d64e5SMasaki Ota 		input_report_key(hdata->input, BTN_MIDDLE,
215819d64e5SMasaki Ota 			(data[1] & 0x4));
216819d64e5SMasaki Ota 
217819d64e5SMasaki Ota 		input_sync(hdata->input);
2182562756dSMasaki Ota 
2192562756dSMasaki Ota 		return 1;
2202562756dSMasaki Ota 
2212562756dSMasaki Ota 	case U1_SP_ABSOLUTE_REPORT_ID:
222819d64e5SMasaki Ota 		sp_x = get_unaligned_le16(data+2);
223819d64e5SMasaki Ota 		sp_y = get_unaligned_le16(data+4);
2242562756dSMasaki Ota 
2252562756dSMasaki Ota 		sp_x = sp_x / 8;
2262562756dSMasaki Ota 		sp_y = sp_y / 8;
2272562756dSMasaki Ota 
228819d64e5SMasaki Ota 		input_report_rel(hdata->input2, REL_X, sp_x);
229819d64e5SMasaki Ota 		input_report_rel(hdata->input2, REL_Y, sp_y);
2302562756dSMasaki Ota 
231819d64e5SMasaki Ota 		input_report_key(hdata->input2, BTN_LEFT,
232819d64e5SMasaki Ota 			data[1] & 0x1);
233819d64e5SMasaki Ota 		input_report_key(hdata->input2, BTN_RIGHT,
234819d64e5SMasaki Ota 			(data[1] & 0x2));
235819d64e5SMasaki Ota 		input_report_key(hdata->input2, BTN_MIDDLE,
236819d64e5SMasaki Ota 			(data[1] & 0x4));
2372562756dSMasaki Ota 
238819d64e5SMasaki Ota 		input_sync(hdata->input2);
2392562756dSMasaki Ota 
2402562756dSMasaki Ota 		return 1;
2412562756dSMasaki Ota 	}
2422562756dSMasaki Ota 
2432562756dSMasaki Ota 	return 0;
2442562756dSMasaki Ota }
2452562756dSMasaki Ota 
2462562756dSMasaki Ota #ifdef CONFIG_PM
2472562756dSMasaki Ota static int alps_post_reset(struct hid_device *hdev)
2482562756dSMasaki Ota {
2492562756dSMasaki Ota 	return u1_read_write_register(hdev, ADDRESS_U1_DEV_CTRL_1,
25004fd4cb0SKai-Heng Feng 				NULL, U1_TP_ABS_MODE | U1_SP_ABS_MODE, false);
2512562756dSMasaki Ota }
2522562756dSMasaki Ota 
2532562756dSMasaki Ota static int alps_post_resume(struct hid_device *hdev)
2542562756dSMasaki Ota {
2552562756dSMasaki Ota 	return u1_read_write_register(hdev, ADDRESS_U1_DEV_CTRL_1,
25604fd4cb0SKai-Heng Feng 				NULL, U1_TP_ABS_MODE | U1_SP_ABS_MODE, false);
2572562756dSMasaki Ota }
2582562756dSMasaki Ota #endif /* CONFIG_PM */
2592562756dSMasaki Ota 
260*5d8c720dSMasaki Ota static int u1_init(struct hid_device *hdev, struct u1_dev *pri_data)
261*5d8c720dSMasaki Ota {
262*5d8c720dSMasaki Ota 	int ret;
263*5d8c720dSMasaki Ota 
264*5d8c720dSMasaki Ota 	/* Device initialization */
265*5d8c720dSMasaki Ota 	ret = u1_read_write_register(hdev, ADDRESS_U1_DEV_CTRL_1,
266*5d8c720dSMasaki Ota 			&pri_data->dev_ctrl, 0, true);
267*5d8c720dSMasaki Ota 	if (ret < 0) {
268*5d8c720dSMasaki Ota 		dev_err(&hdev->dev, "failed U1_DEV_CTRL_1 (%d)\n", ret);
269*5d8c720dSMasaki Ota 		goto exit;
270*5d8c720dSMasaki Ota 	}
271*5d8c720dSMasaki Ota 
272*5d8c720dSMasaki Ota 	pri_data->dev_ctrl &= ~U1_DISABLE_DEV;
273*5d8c720dSMasaki Ota 	pri_data->dev_ctrl |= U1_TP_ABS_MODE;
274*5d8c720dSMasaki Ota 	ret = u1_read_write_register(hdev, ADDRESS_U1_DEV_CTRL_1,
275*5d8c720dSMasaki Ota 			NULL, pri_data->dev_ctrl, false);
276*5d8c720dSMasaki Ota 	if (ret < 0) {
277*5d8c720dSMasaki Ota 		dev_err(&hdev->dev, "failed to change TP mode (%d)\n", ret);
278*5d8c720dSMasaki Ota 		goto exit;
279*5d8c720dSMasaki Ota 	}
280*5d8c720dSMasaki Ota 
281*5d8c720dSMasaki Ota 	ret = u1_read_write_register(hdev, ADDRESS_U1_NUM_SENS_X,
282*5d8c720dSMasaki Ota 			&pri_data->sen_line_num_x, 0, true);
283*5d8c720dSMasaki Ota 	if (ret < 0) {
284*5d8c720dSMasaki Ota 		dev_err(&hdev->dev, "failed U1_NUM_SENS_X (%d)\n", ret);
285*5d8c720dSMasaki Ota 		goto exit;
286*5d8c720dSMasaki Ota 	}
287*5d8c720dSMasaki Ota 
288*5d8c720dSMasaki Ota 	ret = u1_read_write_register(hdev, ADDRESS_U1_NUM_SENS_Y,
289*5d8c720dSMasaki Ota 			&pri_data->sen_line_num_y, 0, true);
290*5d8c720dSMasaki Ota 		if (ret < 0) {
291*5d8c720dSMasaki Ota 		dev_err(&hdev->dev, "failed U1_NUM_SENS_Y (%d)\n", ret);
292*5d8c720dSMasaki Ota 		goto exit;
293*5d8c720dSMasaki Ota 	}
294*5d8c720dSMasaki Ota 
295*5d8c720dSMasaki Ota 	ret = u1_read_write_register(hdev, ADDRESS_U1_PITCH_SENS_X,
296*5d8c720dSMasaki Ota 			&pri_data->pitch_x, 0, true);
297*5d8c720dSMasaki Ota 	if (ret < 0) {
298*5d8c720dSMasaki Ota 		dev_err(&hdev->dev, "failed U1_PITCH_SENS_X (%d)\n", ret);
299*5d8c720dSMasaki Ota 		goto exit;
300*5d8c720dSMasaki Ota 	}
301*5d8c720dSMasaki Ota 
302*5d8c720dSMasaki Ota 	ret = u1_read_write_register(hdev, ADDRESS_U1_PITCH_SENS_Y,
303*5d8c720dSMasaki Ota 			&pri_data->pitch_y, 0, true);
304*5d8c720dSMasaki Ota 	if (ret < 0) {
305*5d8c720dSMasaki Ota 		dev_err(&hdev->dev, "failed U1_PITCH_SENS_Y (%d)\n", ret);
306*5d8c720dSMasaki Ota 		goto exit;
307*5d8c720dSMasaki Ota 	}
308*5d8c720dSMasaki Ota 
309*5d8c720dSMasaki Ota 	ret = u1_read_write_register(hdev, ADDRESS_U1_RESO_DWN_ABS,
310*5d8c720dSMasaki Ota 		&pri_data->resolution, 0, true);
311*5d8c720dSMasaki Ota 	if (ret < 0) {
312*5d8c720dSMasaki Ota 		dev_err(&hdev->dev, "failed U1_RESO_DWN_ABS (%d)\n", ret);
313*5d8c720dSMasaki Ota 		goto exit;
314*5d8c720dSMasaki Ota 	}
315*5d8c720dSMasaki Ota 	pri_data->x_active_len_mm =
316*5d8c720dSMasaki Ota 		(pri_data->pitch_x * (pri_data->sen_line_num_x - 1)) / 10;
317*5d8c720dSMasaki Ota 	pri_data->y_active_len_mm =
318*5d8c720dSMasaki Ota 		(pri_data->pitch_y * (pri_data->sen_line_num_y - 1)) / 10;
319*5d8c720dSMasaki Ota 
320*5d8c720dSMasaki Ota 	pri_data->x_max =
321*5d8c720dSMasaki Ota 		(pri_data->resolution << 2) * (pri_data->sen_line_num_x - 1);
322*5d8c720dSMasaki Ota 	pri_data->y_max =
323*5d8c720dSMasaki Ota 		(pri_data->resolution << 2) * (pri_data->sen_line_num_y - 1);
324*5d8c720dSMasaki Ota 
325*5d8c720dSMasaki Ota 	ret = u1_read_write_register(hdev, ADDRESS_U1_PAD_BTN,
326*5d8c720dSMasaki Ota 			&pri_data->btn_info, 0, true);
327*5d8c720dSMasaki Ota 	if (ret < 0) {
328*5d8c720dSMasaki Ota 		dev_err(&hdev->dev, "failed U1_PAD_BTN (%d)\n", ret);
329*5d8c720dSMasaki Ota 		goto exit;
330*5d8c720dSMasaki Ota 	}
331*5d8c720dSMasaki Ota 
332*5d8c720dSMasaki Ota 	pri_data->has_sp = 0;
333*5d8c720dSMasaki Ota 	/* Check StickPointer device */
334*5d8c720dSMasaki Ota 	ret = u1_read_write_register(hdev, ADDRESS_U1_DEVICE_TYP,
335*5d8c720dSMasaki Ota 			&pri_data->dev_type, 0, true);
336*5d8c720dSMasaki Ota 	if (ret < 0) {
337*5d8c720dSMasaki Ota 		dev_err(&hdev->dev, "failed U1_DEVICE_TYP (%d)\n", ret);
338*5d8c720dSMasaki Ota 		goto exit;
339*5d8c720dSMasaki Ota 	}
340*5d8c720dSMasaki Ota 
341*5d8c720dSMasaki Ota 	if (pri_data->dev_type & U1_DEVTYPE_SP_SUPPORT) {
342*5d8c720dSMasaki Ota 		pri_data->dev_ctrl |= U1_SP_ABS_MODE;
343*5d8c720dSMasaki Ota 		ret = u1_read_write_register(hdev, ADDRESS_U1_DEV_CTRL_1,
344*5d8c720dSMasaki Ota 			NULL, pri_data->dev_ctrl, false);
345*5d8c720dSMasaki Ota 		if (ret < 0) {
346*5d8c720dSMasaki Ota 			dev_err(&hdev->dev, "failed SP mode (%d)\n", ret);
347*5d8c720dSMasaki Ota 			goto exit;
348*5d8c720dSMasaki Ota 		}
349*5d8c720dSMasaki Ota 
350*5d8c720dSMasaki Ota 		ret = u1_read_write_register(hdev, ADDRESS_U1_SP_BTN,
351*5d8c720dSMasaki Ota 			&pri_data->sp_btn_info, 0, true);
352*5d8c720dSMasaki Ota 		if (ret < 0) {
353*5d8c720dSMasaki Ota 			dev_err(&hdev->dev, "failed U1_SP_BTN (%d)\n", ret);
354*5d8c720dSMasaki Ota 			goto exit;
355*5d8c720dSMasaki Ota 		}
356*5d8c720dSMasaki Ota 		pri_data->has_sp = 1;
357*5d8c720dSMasaki Ota 	}
358*5d8c720dSMasaki Ota 
359*5d8c720dSMasaki Ota exit:
360*5d8c720dSMasaki Ota 	return ret;
361*5d8c720dSMasaki Ota }
362*5d8c720dSMasaki Ota 
3632562756dSMasaki Ota static int alps_input_configured(struct hid_device *hdev, struct hid_input *hi)
3642562756dSMasaki Ota {
3652562756dSMasaki Ota 	struct u1_dev *data = hid_get_drvdata(hdev);
3662562756dSMasaki Ota 	struct input_dev *input = hi->input, *input2;
3672562756dSMasaki Ota 	int ret;
3682562756dSMasaki Ota 	int res_x, res_y, i;
3692562756dSMasaki Ota 
3702562756dSMasaki Ota 	data->input = input;
3712562756dSMasaki Ota 
3722562756dSMasaki Ota 	hid_dbg(hdev, "Opening low level driver\n");
3732562756dSMasaki Ota 	ret = hid_hw_open(hdev);
3742562756dSMasaki Ota 	if (ret)
3752562756dSMasaki Ota 		return ret;
3762562756dSMasaki Ota 
3772562756dSMasaki Ota 	/* Allow incoming hid reports */
3782562756dSMasaki Ota 	hid_device_io_start(hdev);
3792562756dSMasaki Ota 
380*5d8c720dSMasaki Ota 	ret = u1_init(hdev, data);
381*5d8c720dSMasaki Ota 
382*5d8c720dSMasaki Ota 	if (ret)
3832562756dSMasaki Ota 		goto exit;
3842562756dSMasaki Ota 
3852562756dSMasaki Ota 	__set_bit(EV_ABS, input->evbit);
386ce6abcf8SMasaki Ota 	input_set_abs_params(input, ABS_MT_POSITION_X, 1, data->x_max, 0, 0);
387ce6abcf8SMasaki Ota 	input_set_abs_params(input, ABS_MT_POSITION_Y, 1, data->y_max, 0, 0);
3882562756dSMasaki Ota 
389ce6abcf8SMasaki Ota 	if (data->x_active_len_mm && data->y_active_len_mm) {
390ce6abcf8SMasaki Ota 		res_x = (data->x_max - 1) / data->x_active_len_mm;
391ce6abcf8SMasaki Ota 		res_y = (data->y_max - 1) / data->y_active_len_mm;
3922562756dSMasaki Ota 
3932562756dSMasaki Ota 		input_abs_set_res(input, ABS_MT_POSITION_X, res_x);
3942562756dSMasaki Ota 		input_abs_set_res(input, ABS_MT_POSITION_Y, res_y);
3952562756dSMasaki Ota 	}
3962562756dSMasaki Ota 
3972562756dSMasaki Ota 	input_set_abs_params(input, ABS_MT_PRESSURE, 0, 64, 0, 0);
3982562756dSMasaki Ota 
3992562756dSMasaki Ota 	input_mt_init_slots(input, MAX_TOUCHES, INPUT_MT_POINTER);
4002562756dSMasaki Ota 
4012562756dSMasaki Ota 	__set_bit(EV_KEY, input->evbit);
402ce6abcf8SMasaki Ota 	if ((data->btn_info & 0x0F) == (data->btn_info & 0xF0) >> 4) {
403ce6abcf8SMasaki Ota 		data->btn_cnt = (data->btn_info & 0x0F);
4042562756dSMasaki Ota 	} else {
4052562756dSMasaki Ota 		/* Button pad */
406ce6abcf8SMasaki Ota 		data->btn_cnt = 1;
4072562756dSMasaki Ota 		__set_bit(INPUT_PROP_BUTTONPAD, input->propbit);
4082562756dSMasaki Ota 	}
4092562756dSMasaki Ota 
410ce6abcf8SMasaki Ota 	for (i = 0; i < data->btn_cnt; i++)
4112562756dSMasaki Ota 		__set_bit(BTN_LEFT + i, input->keybit);
4122562756dSMasaki Ota 
4132562756dSMasaki Ota 
4142562756dSMasaki Ota 	/* Stick device initialization */
415*5d8c720dSMasaki Ota 	if (data->has_sp) {
4162562756dSMasaki Ota 		input2 = input_allocate_device();
4172562756dSMasaki Ota 		if (!input2) {
41846a41b51SWei Yongjun 			ret = -ENOMEM;
4192562756dSMasaki Ota 			goto exit;
4202562756dSMasaki Ota 		}
4212562756dSMasaki Ota 
422819d64e5SMasaki Ota 		data->input2 = input2;
4232562756dSMasaki Ota 		input2->phys = input->phys;
4242562756dSMasaki Ota 		input2->name = "DualPoint Stick";
4252562756dSMasaki Ota 		input2->id.bustype = BUS_I2C;
4262562756dSMasaki Ota 		input2->id.vendor  = input->id.vendor;
4272562756dSMasaki Ota 		input2->id.product = input->id.product;
4282562756dSMasaki Ota 		input2->id.version = input->id.version;
4292562756dSMasaki Ota 		input2->dev.parent = input->dev.parent;
4302562756dSMasaki Ota 
4312562756dSMasaki Ota 		__set_bit(EV_KEY, input2->evbit);
432ce6abcf8SMasaki Ota 		data->sp_btn_cnt = (data->sp_btn_info & 0x0F);
433ce6abcf8SMasaki Ota 		for (i = 0; i < data->sp_btn_cnt; i++)
4342562756dSMasaki Ota 			__set_bit(BTN_LEFT + i, input2->keybit);
4352562756dSMasaki Ota 
4362562756dSMasaki Ota 		__set_bit(EV_REL, input2->evbit);
4372562756dSMasaki Ota 		__set_bit(REL_X, input2->relbit);
4382562756dSMasaki Ota 		__set_bit(REL_Y, input2->relbit);
4392562756dSMasaki Ota 		__set_bit(INPUT_PROP_POINTER, input2->propbit);
4402562756dSMasaki Ota 		__set_bit(INPUT_PROP_POINTING_STICK, input2->propbit);
4412562756dSMasaki Ota 
44246a41b51SWei Yongjun 		ret = input_register_device(data->input2);
44346a41b51SWei Yongjun 		if (ret) {
4442562756dSMasaki Ota 			input_free_device(input2);
4452562756dSMasaki Ota 			goto exit;
4462562756dSMasaki Ota 		}
4472562756dSMasaki Ota 	}
4482562756dSMasaki Ota 
4492562756dSMasaki Ota exit:
4502562756dSMasaki Ota 	hid_device_io_stop(hdev);
4512562756dSMasaki Ota 	hid_hw_close(hdev);
4522562756dSMasaki Ota 	return ret;
4532562756dSMasaki Ota }
4542562756dSMasaki Ota 
4552562756dSMasaki Ota static int alps_input_mapping(struct hid_device *hdev,
4562562756dSMasaki Ota 		struct hid_input *hi, struct hid_field *field,
4572562756dSMasaki Ota 		struct hid_usage *usage, unsigned long **bit, int *max)
4582562756dSMasaki Ota {
4592562756dSMasaki Ota 	return -1;
4602562756dSMasaki Ota }
4612562756dSMasaki Ota 
4622562756dSMasaki Ota static int alps_probe(struct hid_device *hdev, const struct hid_device_id *id)
4632562756dSMasaki Ota {
4642562756dSMasaki Ota 	struct u1_dev *data = NULL;
4652562756dSMasaki Ota 	int ret;
4662562756dSMasaki Ota 
4672562756dSMasaki Ota 	data = devm_kzalloc(&hdev->dev, sizeof(struct u1_dev), GFP_KERNEL);
4682562756dSMasaki Ota 	if (!data)
4692562756dSMasaki Ota 		return -ENOMEM;
4702562756dSMasaki Ota 
4712562756dSMasaki Ota 	data->hdev = hdev;
4722562756dSMasaki Ota 	hid_set_drvdata(hdev, data);
4732562756dSMasaki Ota 
4742562756dSMasaki Ota 	hdev->quirks |= HID_QUIRK_NO_INIT_REPORTS;
4752562756dSMasaki Ota 
4762562756dSMasaki Ota 	ret = hid_parse(hdev);
4772562756dSMasaki Ota 	if (ret) {
4782562756dSMasaki Ota 		hid_err(hdev, "parse failed\n");
4792562756dSMasaki Ota 		return ret;
4802562756dSMasaki Ota 	}
4812562756dSMasaki Ota 
4822562756dSMasaki Ota 	ret = hid_hw_start(hdev, HID_CONNECT_DEFAULT);
4832562756dSMasaki Ota 	if (ret) {
4842562756dSMasaki Ota 		hid_err(hdev, "hw start failed\n");
4852562756dSMasaki Ota 		return ret;
4862562756dSMasaki Ota 	}
4872562756dSMasaki Ota 
4882562756dSMasaki Ota 	return 0;
4892562756dSMasaki Ota }
4902562756dSMasaki Ota 
4912562756dSMasaki Ota static void alps_remove(struct hid_device *hdev)
4922562756dSMasaki Ota {
4932562756dSMasaki Ota 	hid_hw_stop(hdev);
4942562756dSMasaki Ota }
4952562756dSMasaki Ota 
4962562756dSMasaki Ota static const struct hid_device_id alps_id[] = {
4972562756dSMasaki Ota 	{ HID_DEVICE(HID_BUS_ANY, HID_GROUP_ANY,
498819d64e5SMasaki Ota 		USB_VENDOR_ID_ALPS_JP, HID_DEVICE_ID_ALPS_U1_DUAL) },
4992562756dSMasaki Ota 	{ }
5002562756dSMasaki Ota };
5012562756dSMasaki Ota MODULE_DEVICE_TABLE(hid, alps_id);
5022562756dSMasaki Ota 
5032562756dSMasaki Ota static struct hid_driver alps_driver = {
5042562756dSMasaki Ota 	.name = "hid-alps",
5052562756dSMasaki Ota 	.id_table		= alps_id,
5062562756dSMasaki Ota 	.probe			= alps_probe,
5072562756dSMasaki Ota 	.remove			= alps_remove,
5082562756dSMasaki Ota 	.raw_event		= alps_raw_event,
5092562756dSMasaki Ota 	.input_mapping		= alps_input_mapping,
5102562756dSMasaki Ota 	.input_configured	= alps_input_configured,
5112562756dSMasaki Ota #ifdef CONFIG_PM
5122562756dSMasaki Ota 	.resume			= alps_post_resume,
5132562756dSMasaki Ota 	.reset_resume		= alps_post_reset,
5142562756dSMasaki Ota #endif
5152562756dSMasaki Ota };
5162562756dSMasaki Ota 
5172562756dSMasaki Ota module_hid_driver(alps_driver);
5182562756dSMasaki Ota 
5192562756dSMasaki Ota MODULE_AUTHOR("Masaki Ota <masaki.ota@jp.alps.com>");
5202562756dSMasaki Ota MODULE_DESCRIPTION("ALPS HID driver");
5212562756dSMasaki Ota MODULE_LICENSE("GPL");
522