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v4.6
 
   1/*
   2 * Copyright (C) 2012 Simon Budig, <simon.budig@kernelconcepts.de>
   3 * Daniel Wagener <daniel.wagener@kernelconcepts.de> (M09 firmware support)
   4 * Lothar Waßmann <LW@KARO-electronics.de> (DT support)
   5 *
   6 * This software is licensed under the terms of the GNU General Public
   7 * License version 2, as published by the Free Software Foundation, and
   8 * may be copied, distributed, and modified under those terms.
   9 *
  10 * This program is distributed in the hope that it will be useful,
  11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
  12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
  13 * GNU General Public License for more details.
  14 *
  15 * You should have received a copy of the GNU General Public
  16 * License along with this library; if not, write to the Free Software
  17 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
  18 */
  19
  20/*
  21 * This is a driver for the EDT "Polytouch" family of touch controllers
  22 * based on the FocalTech FT5x06 line of chips.
  23 *
  24 * Development of this driver has been sponsored by Glyn:
  25 *    http://www.glyn.com/Products/Displays
  26 */
  27
  28#include <linux/module.h>
  29#include <linux/ratelimit.h>
  30#include <linux/irq.h>
  31#include <linux/interrupt.h>
  32#include <linux/input.h>
  33#include <linux/i2c.h>
  34#include <linux/uaccess.h>
  35#include <linux/delay.h>
  36#include <linux/debugfs.h>
  37#include <linux/slab.h>
  38#include <linux/gpio/consumer.h>
 
 
 
  39#include <linux/input/mt.h>
  40#include <linux/input/touchscreen.h>
  41#include <linux/of_device.h>
 
 
 
 
 
 
 
 
 
 
  42
  43#define WORK_REGISTER_THRESHOLD		0x00
  44#define WORK_REGISTER_REPORT_RATE	0x08
  45#define WORK_REGISTER_GAIN		0x30
  46#define WORK_REGISTER_OFFSET		0x31
  47#define WORK_REGISTER_NUM_X		0x33
  48#define WORK_REGISTER_NUM_Y		0x34
  49
 
 
 
  50#define M09_REGISTER_THRESHOLD		0x80
  51#define M09_REGISTER_GAIN		0x92
  52#define M09_REGISTER_OFFSET		0x93
  53#define M09_REGISTER_NUM_X		0x94
  54#define M09_REGISTER_NUM_Y		0x95
  55
 
 
 
 
 
 
 
  56#define NO_REGISTER			0xff
  57
  58#define WORK_REGISTER_OPMODE		0x3c
  59#define FACTORY_REGISTER_OPMODE		0x01
 
  60
  61#define TOUCH_EVENT_DOWN		0x00
  62#define TOUCH_EVENT_UP			0x01
  63#define TOUCH_EVENT_ON			0x02
  64#define TOUCH_EVENT_RESERVED		0x03
  65
  66#define EDT_NAME_LEN			23
  67#define EDT_SWITCH_MODE_RETRIES		10
  68#define EDT_SWITCH_MODE_DELAY		5 /* msec */
  69#define EDT_RAW_DATA_RETRIES		100
  70#define EDT_RAW_DATA_DELAY		1 /* msec */
 
 
 
 
 
 
 
 
 
 
 
 
  71
  72enum edt_ver {
  73	M06,
  74	M09,
 
 
 
  75};
  76
  77struct edt_reg_addr {
  78	int reg_threshold;
  79	int reg_report_rate;
  80	int reg_gain;
  81	int reg_offset;
 
 
  82	int reg_num_x;
  83	int reg_num_y;
  84};
  85
  86struct edt_ft5x06_ts_data {
  87	struct i2c_client *client;
  88	struct input_dev *input;
 
  89	u16 num_x;
  90	u16 num_y;
 
 
  91
  92	struct gpio_desc *reset_gpio;
  93	struct gpio_desc *wake_gpio;
  94
 
 
  95#if defined(CONFIG_DEBUG_FS)
  96	struct dentry *debug_dir;
  97	u8 *raw_buffer;
  98	size_t raw_bufsize;
  99#endif
 100
 101	struct mutex mutex;
 102	bool factory_mode;
 
 103	int threshold;
 104	int gain;
 105	int offset;
 
 
 106	int report_rate;
 107	int max_support_points;
 
 
 
 
 108
 109	char name[EDT_NAME_LEN];
 
 110
 111	struct edt_reg_addr reg_addr;
 112	enum edt_ver version;
 
 
 113};
 114
 115struct edt_i2c_chip_data {
 116	int  max_support_points;
 117};
 118
 119static int edt_ft5x06_ts_readwrite(struct i2c_client *client,
 120				   u16 wr_len, u8 *wr_buf,
 121				   u16 rd_len, u8 *rd_buf)
 122{
 123	struct i2c_msg wrmsg[2];
 124	int i = 0;
 125	int ret;
 126
 127	if (wr_len) {
 128		wrmsg[i].addr  = client->addr;
 129		wrmsg[i].flags = 0;
 130		wrmsg[i].len = wr_len;
 131		wrmsg[i].buf = wr_buf;
 132		i++;
 133	}
 134	if (rd_len) {
 135		wrmsg[i].addr  = client->addr;
 136		wrmsg[i].flags = I2C_M_RD;
 137		wrmsg[i].len = rd_len;
 138		wrmsg[i].buf = rd_buf;
 139		i++;
 140	}
 141
 142	ret = i2c_transfer(client->adapter, wrmsg, i);
 143	if (ret < 0)
 144		return ret;
 145	if (ret != i)
 146		return -EIO;
 147
 148	return 0;
 149}
 150
 151static bool edt_ft5x06_ts_check_crc(struct edt_ft5x06_ts_data *tsdata,
 152				    u8 *buf, int buflen)
 153{
 154	int i;
 155	u8 crc = 0;
 156
 157	for (i = 0; i < buflen - 1; i++)
 158		crc ^= buf[i];
 159
 160	if (crc != buf[buflen-1]) {
 
 161		dev_err_ratelimited(&tsdata->client->dev,
 162				    "crc error: 0x%02x expected, got 0x%02x\n",
 163				    crc, buf[buflen-1]);
 164		return false;
 165	}
 166
 167	return true;
 168}
 169
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 170static irqreturn_t edt_ft5x06_ts_isr(int irq, void *dev_id)
 171{
 172	struct edt_ft5x06_ts_data *tsdata = dev_id;
 173	struct device *dev = &tsdata->client->dev;
 174	u8 cmd;
 175	u8 rdbuf[63];
 176	int i, type, x, y, id;
 177	int offset, tplen, datalen, crclen;
 178	int error;
 179
 180	switch (tsdata->version) {
 181	case M06:
 182		cmd = 0xf9; /* tell the controller to send touch data */
 183		offset = 5; /* where the actual touch data starts */
 184		tplen = 4;  /* data comes in so called frames */
 185		crclen = 1; /* length of the crc data */
 186		break;
 187
 188	case M09:
 189		cmd = 0x0;
 190		offset = 3;
 191		tplen = 6;
 192		crclen = 0;
 193		break;
 194
 195	default:
 196		goto out;
 197	}
 198
 199	memset(rdbuf, 0, sizeof(rdbuf));
 200	datalen = tplen * tsdata->max_support_points + offset + crclen;
 201
 202	error = edt_ft5x06_ts_readwrite(tsdata->client,
 203					sizeof(cmd), &cmd,
 204					datalen, rdbuf);
 205	if (error) {
 206		dev_err_ratelimited(dev, "Unable to fetch data, error: %d\n",
 207				    error);
 208		goto out;
 209	}
 210
 211	/* M09 does not send header or CRC */
 212	if (tsdata->version == M06) {
 213		if (rdbuf[0] != 0xaa || rdbuf[1] != 0xaa ||
 214			rdbuf[2] != datalen) {
 215			dev_err_ratelimited(dev,
 216					"Unexpected header: %02x%02x%02x!\n",
 217					rdbuf[0], rdbuf[1], rdbuf[2]);
 218			goto out;
 219		}
 220
 221		if (!edt_ft5x06_ts_check_crc(tsdata, rdbuf, datalen))
 222			goto out;
 223	}
 224
 225	for (i = 0; i < tsdata->max_support_points; i++) {
 226		u8 *buf = &rdbuf[i * tplen + offset];
 227		bool down;
 228
 229		type = buf[0] >> 6;
 230		/* ignore Reserved events */
 231		if (type == TOUCH_EVENT_RESERVED)
 232			continue;
 233
 234		/* M06 sometimes sends bogus coordinates in TOUCH_DOWN */
 235		if (tsdata->version == M06 && type == TOUCH_EVENT_DOWN)
 236			continue;
 237
 238		x = ((buf[0] << 8) | buf[1]) & 0x0fff;
 239		y = ((buf[2] << 8) | buf[3]) & 0x0fff;
 
 
 
 
 240		id = (buf[2] >> 4) & 0x0f;
 241		down = type != TOUCH_EVENT_UP;
 242
 243		input_mt_slot(tsdata->input, id);
 244		input_mt_report_slot_state(tsdata->input, MT_TOOL_FINGER, down);
 245
 246		if (!down)
 247			continue;
 248
 249		input_report_abs(tsdata->input, ABS_MT_POSITION_X, x);
 250		input_report_abs(tsdata->input, ABS_MT_POSITION_Y, y);
 251	}
 252
 253	input_mt_report_pointer_emulation(tsdata->input, true);
 254	input_sync(tsdata->input);
 255
 256out:
 257	return IRQ_HANDLED;
 258}
 259
 260static int edt_ft5x06_register_write(struct edt_ft5x06_ts_data *tsdata,
 261				     u8 addr, u8 value)
 262{
 263	u8 wrbuf[4];
 264
 265	switch (tsdata->version) {
 266	case M06:
 267		wrbuf[0] = tsdata->factory_mode ? 0xf3 : 0xfc;
 268		wrbuf[1] = tsdata->factory_mode ? addr & 0x7f : addr & 0x3f;
 269		wrbuf[2] = value;
 270		wrbuf[3] = wrbuf[0] ^ wrbuf[1] ^ wrbuf[2];
 271		return edt_ft5x06_ts_readwrite(tsdata->client, 4,
 272					wrbuf, 0, NULL);
 273	case M09:
 274		wrbuf[0] = addr;
 275		wrbuf[1] = value;
 276
 277		return edt_ft5x06_ts_readwrite(tsdata->client, 2,
 278					wrbuf, 0, NULL);
 279
 280	default:
 281		return -EINVAL;
 282	}
 283}
 284
 285static int edt_ft5x06_register_read(struct edt_ft5x06_ts_data *tsdata,
 286				    u8 addr)
 287{
 288	u8 wrbuf[2], rdbuf[2];
 289	int error;
 290
 291	switch (tsdata->version) {
 292	case M06:
 293		wrbuf[0] = tsdata->factory_mode ? 0xf3 : 0xfc;
 294		wrbuf[1] = tsdata->factory_mode ? addr & 0x7f : addr & 0x3f;
 295		wrbuf[1] |= tsdata->factory_mode ? 0x80 : 0x40;
 296
 297		error = edt_ft5x06_ts_readwrite(tsdata->client, 2, wrbuf, 2,
 298						rdbuf);
 299		if (error)
 300			return error;
 301
 302		if ((wrbuf[0] ^ wrbuf[1] ^ rdbuf[0]) != rdbuf[1]) {
 303			dev_err(&tsdata->client->dev,
 304				"crc error: 0x%02x expected, got 0x%02x\n",
 305				wrbuf[0] ^ wrbuf[1] ^ rdbuf[0],
 306				rdbuf[1]);
 307			return -EIO;
 308		}
 309		break;
 310
 311	case M09:
 312		wrbuf[0] = addr;
 313		error = edt_ft5x06_ts_readwrite(tsdata->client, 1,
 314						wrbuf, 1, rdbuf);
 315		if (error)
 316			return error;
 317		break;
 318
 319	default:
 320		return -EINVAL;
 321	}
 322
 323	return rdbuf[0];
 324}
 325
 326struct edt_ft5x06_attribute {
 327	struct device_attribute dattr;
 328	size_t field_offset;
 329	u8 limit_low;
 330	u8 limit_high;
 331	u8 addr_m06;
 332	u8 addr_m09;
 
 333};
 334
 335#define EDT_ATTR(_field, _mode, _addr_m06, _addr_m09,			\
 336		_limit_low, _limit_high)				\
 337	struct edt_ft5x06_attribute edt_ft5x06_attr_##_field = {	\
 338		.dattr = __ATTR(_field, _mode,				\
 339				edt_ft5x06_setting_show,		\
 340				edt_ft5x06_setting_store),		\
 341		.field_offset = offsetof(struct edt_ft5x06_ts_data, _field), \
 342		.addr_m06 = _addr_m06,					\
 343		.addr_m09 = _addr_m09,					\
 
 344		.limit_low = _limit_low,				\
 345		.limit_high = _limit_high,				\
 346	}
 347
 348static ssize_t edt_ft5x06_setting_show(struct device *dev,
 349				       struct device_attribute *dattr,
 350				       char *buf)
 351{
 352	struct i2c_client *client = to_i2c_client(dev);
 353	struct edt_ft5x06_ts_data *tsdata = i2c_get_clientdata(client);
 354	struct edt_ft5x06_attribute *attr =
 355			container_of(dattr, struct edt_ft5x06_attribute, dattr);
 356	u8 *field = (u8 *)tsdata + attr->field_offset;
 357	int val;
 358	size_t count = 0;
 359	int error = 0;
 360	u8 addr;
 361
 362	mutex_lock(&tsdata->mutex);
 363
 364	if (tsdata->factory_mode) {
 365		error = -EIO;
 366		goto out;
 367	}
 368
 369	switch (tsdata->version) {
 370	case M06:
 371		addr = attr->addr_m06;
 372		break;
 373
 374	case M09:
 
 
 375		addr = attr->addr_m09;
 376		break;
 377
 
 
 
 
 378	default:
 379		error = -ENODEV;
 380		goto out;
 381	}
 382
 383	if (addr != NO_REGISTER) {
 384		val = edt_ft5x06_register_read(tsdata, addr);
 385		if (val < 0) {
 386			error = val;
 387			dev_err(&tsdata->client->dev,
 388				"Failed to fetch attribute %s, error %d\n",
 389				dattr->attr.name, error);
 390			goto out;
 391		}
 392	} else {
 393		val = *field;
 394	}
 395
 396	if (val != *field) {
 397		dev_warn(&tsdata->client->dev,
 398			 "%s: read (%d) and stored value (%d) differ\n",
 399			 dattr->attr.name, val, *field);
 400		*field = val;
 401	}
 402
 403	count = scnprintf(buf, PAGE_SIZE, "%d\n", val);
 404out:
 405	mutex_unlock(&tsdata->mutex);
 406	return error ?: count;
 407}
 408
 409static ssize_t edt_ft5x06_setting_store(struct device *dev,
 410					struct device_attribute *dattr,
 411					const char *buf, size_t count)
 412{
 413	struct i2c_client *client = to_i2c_client(dev);
 414	struct edt_ft5x06_ts_data *tsdata = i2c_get_clientdata(client);
 415	struct edt_ft5x06_attribute *attr =
 416			container_of(dattr, struct edt_ft5x06_attribute, dattr);
 417	u8 *field = (u8 *)tsdata + attr->field_offset;
 418	unsigned int val;
 419	int error;
 420	u8 addr;
 421
 422	mutex_lock(&tsdata->mutex);
 423
 424	if (tsdata->factory_mode) {
 425		error = -EIO;
 426		goto out;
 427	}
 428
 429	error = kstrtouint(buf, 0, &val);
 430	if (error)
 431		goto out;
 432
 433	if (val < attr->limit_low || val > attr->limit_high) {
 434		error = -ERANGE;
 435		goto out;
 436	}
 437
 438	switch (tsdata->version) {
 439	case M06:
 440		addr = attr->addr_m06;
 441		break;
 442
 443	case M09:
 
 
 444		addr = attr->addr_m09;
 445		break;
 446
 
 
 
 
 447	default:
 448		error = -ENODEV;
 449		goto out;
 450	}
 451
 452	if (addr != NO_REGISTER) {
 453		error = edt_ft5x06_register_write(tsdata, addr, val);
 454		if (error) {
 455			dev_err(&tsdata->client->dev,
 456				"Failed to update attribute %s, error: %d\n",
 457				dattr->attr.name, error);
 458			goto out;
 459		}
 460	}
 461	*field = val;
 462
 463out:
 464	mutex_unlock(&tsdata->mutex);
 465	return error ?: count;
 466}
 467
 
 468static EDT_ATTR(gain, S_IWUSR | S_IRUGO, WORK_REGISTER_GAIN,
 469		M09_REGISTER_GAIN, 0, 31);
 
 470static EDT_ATTR(offset, S_IWUSR | S_IRUGO, WORK_REGISTER_OFFSET,
 471		M09_REGISTER_OFFSET, 0, 31);
 
 
 
 
 
 
 
 472static EDT_ATTR(threshold, S_IWUSR | S_IRUGO, WORK_REGISTER_THRESHOLD,
 473		M09_REGISTER_THRESHOLD, 20, 80);
 
 474static EDT_ATTR(report_rate, S_IWUSR | S_IRUGO, WORK_REGISTER_REPORT_RATE,
 475		NO_REGISTER, 3, 14);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 476
 477static struct attribute *edt_ft5x06_attrs[] = {
 478	&edt_ft5x06_attr_gain.dattr.attr,
 479	&edt_ft5x06_attr_offset.dattr.attr,
 
 
 480	&edt_ft5x06_attr_threshold.dattr.attr,
 481	&edt_ft5x06_attr_report_rate.dattr.attr,
 
 
 
 
 482	NULL
 483};
 
 484
 485static const struct attribute_group edt_ft5x06_attr_group = {
 486	.attrs = edt_ft5x06_attrs,
 487};
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 488
 489#ifdef CONFIG_DEBUG_FS
 490static int edt_ft5x06_factory_mode(struct edt_ft5x06_ts_data *tsdata)
 491{
 492	struct i2c_client *client = tsdata->client;
 493	int retries = EDT_SWITCH_MODE_RETRIES;
 494	int ret;
 495	int error;
 496
 
 
 
 
 
 
 497	disable_irq(client->irq);
 498
 499	if (!tsdata->raw_buffer) {
 500		tsdata->raw_bufsize = tsdata->num_x * tsdata->num_y *
 501				      sizeof(u16);
 502		tsdata->raw_buffer = kzalloc(tsdata->raw_bufsize, GFP_KERNEL);
 503		if (!tsdata->raw_buffer) {
 504			error = -ENOMEM;
 505			goto err_out;
 506		}
 507	}
 508
 509	/* mode register is 0x3c when in the work mode */
 510	if (tsdata->version == M09)
 511		goto m09_out;
 512
 513	error = edt_ft5x06_register_write(tsdata, WORK_REGISTER_OPMODE, 0x03);
 514	if (error) {
 515		dev_err(&client->dev,
 516			"failed to switch to factory mode, error %d\n", error);
 517		goto err_out;
 518	}
 519
 520	tsdata->factory_mode = true;
 521	do {
 522		mdelay(EDT_SWITCH_MODE_DELAY);
 523		/* mode register is 0x01 when in factory mode */
 524		ret = edt_ft5x06_register_read(tsdata, FACTORY_REGISTER_OPMODE);
 525		if (ret == 0x03)
 
 526			break;
 527	} while (--retries > 0);
 528
 529	if (retries == 0) {
 530		dev_err(&client->dev, "not in factory mode after %dms.\n",
 531			EDT_SWITCH_MODE_RETRIES * EDT_SWITCH_MODE_DELAY);
 532		error = -EIO;
 533		goto err_out;
 534	}
 535
 536	return 0;
 537
 538err_out:
 539	kfree(tsdata->raw_buffer);
 540	tsdata->raw_buffer = NULL;
 541	tsdata->factory_mode = false;
 542	enable_irq(client->irq);
 543
 544	return error;
 545
 546m09_out:
 547	dev_err(&client->dev, "No factory mode support for M09\n");
 548	return -EINVAL;
 549
 550}
 551
 552static int edt_ft5x06_work_mode(struct edt_ft5x06_ts_data *tsdata)
 553{
 554	struct i2c_client *client = tsdata->client;
 555	int retries = EDT_SWITCH_MODE_RETRIES;
 556	struct edt_reg_addr *reg_addr = &tsdata->reg_addr;
 557	int ret;
 558	int error;
 559
 560	/* mode register is 0x01 when in the factory mode */
 561	error = edt_ft5x06_register_write(tsdata, FACTORY_REGISTER_OPMODE, 0x1);
 562	if (error) {
 563		dev_err(&client->dev,
 564			"failed to switch to work mode, error: %d\n", error);
 565		return error;
 566	}
 567
 568	tsdata->factory_mode = false;
 569
 570	do {
 571		mdelay(EDT_SWITCH_MODE_DELAY);
 572		/* mode register is 0x01 when in factory mode */
 573		ret = edt_ft5x06_register_read(tsdata, WORK_REGISTER_OPMODE);
 574		if (ret == 0x01)
 575			break;
 576	} while (--retries > 0);
 577
 578	if (retries == 0) {
 579		dev_err(&client->dev, "not in work mode after %dms.\n",
 580			EDT_SWITCH_MODE_RETRIES * EDT_SWITCH_MODE_DELAY);
 581		tsdata->factory_mode = true;
 582		return -EIO;
 583	}
 584
 585	kfree(tsdata->raw_buffer);
 586	tsdata->raw_buffer = NULL;
 587
 588	/* restore parameters */
 589	edt_ft5x06_register_write(tsdata, reg_addr->reg_threshold,
 590				  tsdata->threshold);
 591	edt_ft5x06_register_write(tsdata, reg_addr->reg_gain,
 592				  tsdata->gain);
 593	edt_ft5x06_register_write(tsdata, reg_addr->reg_offset,
 594				  tsdata->offset);
 595	if (reg_addr->reg_report_rate)
 596		edt_ft5x06_register_write(tsdata, reg_addr->reg_report_rate,
 597				  tsdata->report_rate);
 598
 599	enable_irq(client->irq);
 600
 601	return 0;
 602}
 603
 604static int edt_ft5x06_debugfs_mode_get(void *data, u64 *mode)
 605{
 606	struct edt_ft5x06_ts_data *tsdata = data;
 607
 608	*mode = tsdata->factory_mode;
 609
 610	return 0;
 611};
 612
 613static int edt_ft5x06_debugfs_mode_set(void *data, u64 mode)
 614{
 615	struct edt_ft5x06_ts_data *tsdata = data;
 616	int retval = 0;
 617
 618	if (mode > 1)
 619		return -ERANGE;
 620
 621	mutex_lock(&tsdata->mutex);
 622
 623	if (mode != tsdata->factory_mode) {
 624		retval = mode ? edt_ft5x06_factory_mode(tsdata) :
 625				edt_ft5x06_work_mode(tsdata);
 626	}
 627
 628	mutex_unlock(&tsdata->mutex);
 629
 630	return retval;
 631};
 632
 633DEFINE_SIMPLE_ATTRIBUTE(debugfs_mode_fops, edt_ft5x06_debugfs_mode_get,
 634			edt_ft5x06_debugfs_mode_set, "%llu\n");
 635
 636static ssize_t edt_ft5x06_debugfs_raw_data_read(struct file *file,
 637				char __user *buf, size_t count, loff_t *off)
 
 638{
 639	struct edt_ft5x06_ts_data *tsdata = file->private_data;
 640	struct i2c_client *client = tsdata->client;
 641	int retries  = EDT_RAW_DATA_RETRIES;
 642	int val, i, error;
 
 643	size_t read = 0;
 644	int colbytes;
 645	char wrbuf[3];
 646	u8 *rdbuf;
 647
 648	if (*off < 0 || *off >= tsdata->raw_bufsize)
 649		return 0;
 650
 651	mutex_lock(&tsdata->mutex);
 652
 653	if (!tsdata->factory_mode || !tsdata->raw_buffer) {
 654		error = -EIO;
 655		goto out;
 656	}
 657
 658	error = edt_ft5x06_register_write(tsdata, 0x08, 0x01);
 659	if (error) {
 660		dev_dbg(&client->dev,
 661			"failed to write 0x08 register, error %d\n", error);
 662		goto out;
 663	}
 664
 665	do {
 666		msleep(EDT_RAW_DATA_DELAY);
 667		val = edt_ft5x06_register_read(tsdata, 0x08);
 668		if (val < 1)
 
 
 
 
 
 
 
 669			break;
 670	} while (--retries > 0);
 671
 672	if (val < 0) {
 673		error = val;
 674		dev_dbg(&client->dev,
 675			"failed to read 0x08 register, error %d\n", error);
 676		goto out;
 677	}
 678
 679	if (retries == 0) {
 680		dev_dbg(&client->dev,
 681			"timed out waiting for register to settle\n");
 682		error = -ETIMEDOUT;
 683		goto out;
 684	}
 685
 686	rdbuf = tsdata->raw_buffer;
 687	colbytes = tsdata->num_y * sizeof(u16);
 688
 689	wrbuf[0] = 0xf5;
 690	wrbuf[1] = 0x0e;
 691	for (i = 0; i < tsdata->num_x; i++) {
 692		wrbuf[2] = i;  /* column index */
 693		error = edt_ft5x06_ts_readwrite(tsdata->client,
 694						sizeof(wrbuf), wrbuf,
 695						colbytes, rdbuf);
 696		if (error)
 697			goto out;
 698
 699		rdbuf += colbytes;
 700	}
 701
 702	read = min_t(size_t, count, tsdata->raw_bufsize - *off);
 703	if (copy_to_user(buf, tsdata->raw_buffer + *off, read)) {
 704		error = -EFAULT;
 705		goto out;
 706	}
 707
 708	*off += read;
 709out:
 710	mutex_unlock(&tsdata->mutex);
 711	return error ?: read;
 712};
 713
 714static const struct file_operations debugfs_raw_data_fops = {
 715	.open = simple_open,
 716	.read = edt_ft5x06_debugfs_raw_data_read,
 717};
 718
 719static void
 720edt_ft5x06_ts_prepare_debugfs(struct edt_ft5x06_ts_data *tsdata,
 721			      const char *debugfs_name)
 722{
 723	tsdata->debug_dir = debugfs_create_dir(debugfs_name, NULL);
 724	if (!tsdata->debug_dir)
 725		return;
 726
 727	debugfs_create_u16("num_x", S_IRUSR, tsdata->debug_dir, &tsdata->num_x);
 728	debugfs_create_u16("num_y", S_IRUSR, tsdata->debug_dir, &tsdata->num_y);
 729
 730	debugfs_create_file("mode", S_IRUSR | S_IWUSR,
 731			    tsdata->debug_dir, tsdata, &debugfs_mode_fops);
 732	debugfs_create_file("raw_data", S_IRUSR,
 733			    tsdata->debug_dir, tsdata, &debugfs_raw_data_fops);
 734}
 735
 736static void
 737edt_ft5x06_ts_teardown_debugfs(struct edt_ft5x06_ts_data *tsdata)
 738{
 739	debugfs_remove_recursive(tsdata->debug_dir);
 740	kfree(tsdata->raw_buffer);
 741}
 742
 743#else
 744
 745static inline void
 746edt_ft5x06_ts_prepare_debugfs(struct edt_ft5x06_ts_data *tsdata,
 747			      const char *debugfs_name)
 
 
 
 
 748{
 749}
 750
 751static inline void
 752edt_ft5x06_ts_teardown_debugfs(struct edt_ft5x06_ts_data *tsdata)
 753{
 754}
 755
 756#endif /* CONFIG_DEBUGFS */
 757
 758static int edt_ft5x06_ts_identify(struct i2c_client *client,
 759					struct edt_ft5x06_ts_data *tsdata,
 760					char *fw_version)
 761{
 762	u8 rdbuf[EDT_NAME_LEN];
 763	char *p;
 764	int error;
 765	char *model_name = tsdata->name;
 
 766
 767	/* see what we find if we assume it is a M06 *
 768	 * if we get less than EDT_NAME_LEN, we don't want
 769	 * to have garbage in there
 770	 */
 771	memset(rdbuf, 0, sizeof(rdbuf));
 772	error = edt_ft5x06_ts_readwrite(client, 1, "\xbb",
 773					EDT_NAME_LEN - 1, rdbuf);
 774	if (error)
 775		return error;
 776
 777	/* if we find something consistent, stay with that assumption
 778	 * at least M09 won't send 3 bytes here
 
 779	 */
 780	if (!(strncasecmp(rdbuf + 1, "EP0", 3))) {
 781		tsdata->version = M06;
 782
 783		/* remove last '$' end marker */
 784		rdbuf[EDT_NAME_LEN - 1] = '\0';
 785		if (rdbuf[EDT_NAME_LEN - 2] == '$')
 786			rdbuf[EDT_NAME_LEN - 2] = '\0';
 787
 788		/* look for Model/Version separator */
 789		p = strchr(rdbuf, '*');
 790		if (p)
 791			*p++ = '\0';
 792		strlcpy(model_name, rdbuf + 1, EDT_NAME_LEN);
 793		strlcpy(fw_version, p ? p : "", EDT_NAME_LEN);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 794	} else {
 795		/* since there are only two versions around (M06, M09) */
 796		tsdata->version = M09;
 
 
 
 
 
 
 
 
 797
 798		error = edt_ft5x06_ts_readwrite(client, 1, "\xA6",
 799						2, rdbuf);
 800		if (error)
 801			return error;
 802
 803		strlcpy(fw_version, rdbuf, 2);
 804
 805		error = edt_ft5x06_ts_readwrite(client, 1, "\xA8",
 806						1, rdbuf);
 807		if (error)
 808			return error;
 809
 810		snprintf(model_name, EDT_NAME_LEN, "EP0%i%i0M09",
 811			rdbuf[0] >> 4, rdbuf[0] & 0x0F);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 812	}
 813
 814	return 0;
 815}
 816
 817static void edt_ft5x06_ts_get_defaults(struct device *dev,
 818				       struct edt_ft5x06_ts_data *tsdata)
 819{
 820	struct edt_reg_addr *reg_addr = &tsdata->reg_addr;
 
 821	u32 val;
 822	int error;
 823
 824	error = device_property_read_u32(dev, "threshold", &val);
 825	if (!error) {
 826		edt_ft5x06_register_write(tsdata, reg_addr->reg_threshold, val);
 827		tsdata->threshold = val;
 828	}
 829
 830	error = device_property_read_u32(dev, "gain", &val);
 831	if (!error) {
 832		edt_ft5x06_register_write(tsdata, reg_addr->reg_gain, val);
 833		tsdata->gain = val;
 834	}
 835
 836	error = device_property_read_u32(dev, "offset", &val);
 837	if (!error) {
 838		edt_ft5x06_register_write(tsdata, reg_addr->reg_offset, val);
 
 839		tsdata->offset = val;
 840	}
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 841}
 842
 843static void
 844edt_ft5x06_ts_get_parameters(struct edt_ft5x06_ts_data *tsdata)
 845{
 846	struct edt_reg_addr *reg_addr = &tsdata->reg_addr;
 
 
 847
 848	tsdata->threshold = edt_ft5x06_register_read(tsdata,
 849						     reg_addr->reg_threshold);
 850	tsdata->gain = edt_ft5x06_register_read(tsdata, reg_addr->reg_gain);
 851	tsdata->offset = edt_ft5x06_register_read(tsdata, reg_addr->reg_offset);
 
 
 
 
 852	if (reg_addr->reg_report_rate != NO_REGISTER)
 853		tsdata->report_rate = edt_ft5x06_register_read(tsdata,
 854						reg_addr->reg_report_rate);
 855	tsdata->num_x = edt_ft5x06_register_read(tsdata, reg_addr->reg_num_x);
 856	tsdata->num_y = edt_ft5x06_register_read(tsdata, reg_addr->reg_num_y);
 
 
 
 
 
 
 
 
 857}
 858
 859static void
 860edt_ft5x06_ts_set_regs(struct edt_ft5x06_ts_data *tsdata)
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 861{
 862	struct edt_reg_addr *reg_addr = &tsdata->reg_addr;
 863
 864	switch (tsdata->version) {
 865	case M06:
 866		reg_addr->reg_threshold = WORK_REGISTER_THRESHOLD;
 867		reg_addr->reg_report_rate = WORK_REGISTER_REPORT_RATE;
 868		reg_addr->reg_gain = WORK_REGISTER_GAIN;
 869		reg_addr->reg_offset = WORK_REGISTER_OFFSET;
 
 
 870		reg_addr->reg_num_x = WORK_REGISTER_NUM_X;
 871		reg_addr->reg_num_y = WORK_REGISTER_NUM_Y;
 872		break;
 873
 874	case M09:
 
 875		reg_addr->reg_threshold = M09_REGISTER_THRESHOLD;
 
 
 876		reg_addr->reg_gain = M09_REGISTER_GAIN;
 877		reg_addr->reg_offset = M09_REGISTER_OFFSET;
 
 
 878		reg_addr->reg_num_x = M09_REGISTER_NUM_X;
 879		reg_addr->reg_num_y = M09_REGISTER_NUM_Y;
 880		break;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 881	}
 882}
 883
 884static int edt_ft5x06_ts_probe(struct i2c_client *client,
 885					 const struct i2c_device_id *id)
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 886{
 
 887	const struct edt_i2c_chip_data *chip_data;
 888	struct edt_ft5x06_ts_data *tsdata;
 
 889	struct input_dev *input;
 890	unsigned long irq_flags;
 891	int error;
 892	char fw_version[EDT_NAME_LEN];
 893
 894	dev_dbg(&client->dev, "probing for EDT FT5x06 I2C\n");
 895
 896	tsdata = devm_kzalloc(&client->dev, sizeof(*tsdata), GFP_KERNEL);
 897	if (!tsdata) {
 898		dev_err(&client->dev, "failed to allocate driver data.\n");
 899		return -ENOMEM;
 900	}
 901
 902	chip_data = of_device_get_match_data(&client->dev);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 903	if (!chip_data)
 904		chip_data = (const struct edt_i2c_chip_data *)id->driver_data;
 905	if (!chip_data || !chip_data->max_support_points) {
 906		dev_err(&client->dev, "invalid or missing chip data\n");
 907		return -EINVAL;
 908	}
 909
 910	tsdata->max_support_points = chip_data->max_support_points;
 911
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 912	tsdata->reset_gpio = devm_gpiod_get_optional(&client->dev,
 913						     "reset", GPIOD_OUT_HIGH);
 914	if (IS_ERR(tsdata->reset_gpio)) {
 915		error = PTR_ERR(tsdata->reset_gpio);
 916		dev_err(&client->dev,
 917			"Failed to request GPIO reset pin, error %d\n", error);
 918		return error;
 919	}
 920
 921	tsdata->wake_gpio = devm_gpiod_get_optional(&client->dev,
 922						    "wake", GPIOD_OUT_LOW);
 923	if (IS_ERR(tsdata->wake_gpio)) {
 924		error = PTR_ERR(tsdata->wake_gpio);
 925		dev_err(&client->dev,
 926			"Failed to request GPIO wake pin, error %d\n", error);
 927		return error;
 928	}
 929
 
 
 
 
 
 
 
 
 
 
 
 
 
 930	if (tsdata->wake_gpio) {
 931		usleep_range(5000, 6000);
 932		gpiod_set_value_cansleep(tsdata->wake_gpio, 1);
 
 933	}
 934
 935	if (tsdata->reset_gpio) {
 936		usleep_range(5000, 6000);
 937		gpiod_set_value_cansleep(tsdata->reset_gpio, 0);
 938		msleep(300);
 939	}
 940
 941	input = devm_input_allocate_device(&client->dev);
 942	if (!input) {
 943		dev_err(&client->dev, "failed to allocate input device.\n");
 944		return -ENOMEM;
 945	}
 946
 947	mutex_init(&tsdata->mutex);
 948	tsdata->client = client;
 949	tsdata->input = input;
 950	tsdata->factory_mode = false;
 
 951
 952	error = edt_ft5x06_ts_identify(client, tsdata, fw_version);
 953	if (error) {
 954		dev_err(&client->dev, "touchscreen probe failed\n");
 955		return error;
 956	}
 957
 
 
 
 
 
 
 
 958	edt_ft5x06_ts_set_regs(tsdata);
 959	edt_ft5x06_ts_get_defaults(&client->dev, tsdata);
 960	edt_ft5x06_ts_get_parameters(tsdata);
 961
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 962	dev_dbg(&client->dev,
 963		"Model \"%s\", Rev. \"%s\", %dx%d sensors\n",
 964		tsdata->name, fw_version, tsdata->num_x, tsdata->num_y);
 965
 966	input->name = tsdata->name;
 967	input->id.bustype = BUS_I2C;
 968	input->dev.parent = &client->dev;
 969
 970	input_set_abs_params(input, ABS_MT_POSITION_X,
 971			     0, tsdata->num_x * 64 - 1, 0, 0);
 972	input_set_abs_params(input, ABS_MT_POSITION_Y,
 973			     0, tsdata->num_y * 64 - 1, 0, 0);
 974
 975	touchscreen_parse_properties(input, true);
 976
 977	error = input_mt_init_slots(input, tsdata->max_support_points,
 978				INPUT_MT_DIRECT);
 979	if (error) {
 980		dev_err(&client->dev, "Unable to init MT slots.\n");
 981		return error;
 982	}
 983
 984	input_set_drvdata(input, tsdata);
 985	i2c_set_clientdata(client, tsdata);
 986
 987	irq_flags = irq_get_trigger_type(client->irq);
 988	if (irq_flags == IRQF_TRIGGER_NONE)
 989		irq_flags = IRQF_TRIGGER_FALLING;
 990	irq_flags |= IRQF_ONESHOT;
 991
 992	error = devm_request_threaded_irq(&client->dev, client->irq,
 993					NULL, edt_ft5x06_ts_isr, irq_flags,
 994					client->name, tsdata);
 995	if (error) {
 996		dev_err(&client->dev, "Unable to request touchscreen IRQ.\n");
 997		return error;
 998	}
 999
1000	error = sysfs_create_group(&client->dev.kobj, &edt_ft5x06_attr_group);
1001	if (error)
1002		return error;
1003
1004	error = input_register_device(input);
1005	if (error)
1006		goto err_remove_attrs;
1007
1008	edt_ft5x06_ts_prepare_debugfs(tsdata, dev_driver_string(&client->dev));
1009	device_init_wakeup(&client->dev, 1);
1010
1011	dev_dbg(&client->dev,
1012		"EDT FT5x06 initialized: IRQ %d, WAKE pin %d, Reset pin %d.\n",
1013		client->irq,
1014		tsdata->wake_gpio ? desc_to_gpio(tsdata->wake_gpio) : -1,
1015		tsdata->reset_gpio ? desc_to_gpio(tsdata->reset_gpio) : -1);
1016
1017	return 0;
1018
1019err_remove_attrs:
1020	sysfs_remove_group(&client->dev.kobj, &edt_ft5x06_attr_group);
1021	return error;
1022}
1023
1024static int edt_ft5x06_ts_remove(struct i2c_client *client)
1025{
1026	struct edt_ft5x06_ts_data *tsdata = i2c_get_clientdata(client);
1027
1028	edt_ft5x06_ts_teardown_debugfs(tsdata);
1029	sysfs_remove_group(&client->dev.kobj, &edt_ft5x06_attr_group);
1030
1031	return 0;
1032}
1033
1034static int __maybe_unused edt_ft5x06_ts_suspend(struct device *dev)
1035{
1036	struct i2c_client *client = to_i2c_client(dev);
 
 
 
1037
1038	if (device_may_wakeup(dev))
1039		enable_irq_wake(client->irq);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1040
1041	return 0;
1042}
1043
1044static int __maybe_unused edt_ft5x06_ts_resume(struct device *dev)
1045{
1046	struct i2c_client *client = to_i2c_client(dev);
 
 
1047
1048	if (device_may_wakeup(dev))
1049		disable_irq_wake(client->irq);
1050
1051	return 0;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1052}
1053
1054static SIMPLE_DEV_PM_OPS(edt_ft5x06_ts_pm_ops,
1055			 edt_ft5x06_ts_suspend, edt_ft5x06_ts_resume);
1056
1057static const struct edt_i2c_chip_data edt_ft5x06_data = {
1058	.max_support_points = 5,
1059};
1060
 
 
 
 
1061static const struct edt_i2c_chip_data edt_ft5506_data = {
1062	.max_support_points = 10,
1063};
1064
 
 
 
 
 
 
 
 
 
 
 
 
1065static const struct i2c_device_id edt_ft5x06_ts_id[] = {
1066	{ .name = "edt-ft5x06", .driver_data = (long)&edt_ft5x06_data },
1067	{ .name = "edt-ft5506", .driver_data = (long)&edt_ft5506_data },
 
 
 
 
 
 
1068	{ /* sentinel */ }
1069};
1070MODULE_DEVICE_TABLE(i2c, edt_ft5x06_ts_id);
1071
1072#ifdef CONFIG_OF
1073static const struct of_device_id edt_ft5x06_of_match[] = {
1074	{ .compatible = "edt,edt-ft5206", .data = &edt_ft5x06_data },
1075	{ .compatible = "edt,edt-ft5306", .data = &edt_ft5x06_data },
1076	{ .compatible = "edt,edt-ft5406", .data = &edt_ft5x06_data },
1077	{ .compatible = "edt,edt-ft5506", .data = &edt_ft5506_data },
 
 
 
 
 
 
 
1078	{ /* sentinel */ }
1079};
1080MODULE_DEVICE_TABLE(of, edt_ft5x06_of_match);
1081#endif
1082
1083static struct i2c_driver edt_ft5x06_ts_driver = {
1084	.driver = {
1085		.name = "edt_ft5x06",
1086		.of_match_table = of_match_ptr(edt_ft5x06_of_match),
1087		.pm = &edt_ft5x06_ts_pm_ops,
 
 
1088	},
1089	.id_table = edt_ft5x06_ts_id,
1090	.probe    = edt_ft5x06_ts_probe,
1091	.remove   = edt_ft5x06_ts_remove,
1092};
1093
1094module_i2c_driver(edt_ft5x06_ts_driver);
1095
1096MODULE_AUTHOR("Simon Budig <simon.budig@kernelconcepts.de>");
1097MODULE_DESCRIPTION("EDT FT5x06 I2C Touchscreen Driver");
1098MODULE_LICENSE("GPL");
v6.13.7
   1// SPDX-License-Identifier: GPL-2.0
   2/*
   3 * Copyright (C) 2012 Simon Budig, <simon.budig@kernelconcepts.de>
   4 * Daniel Wagener <daniel.wagener@kernelconcepts.de> (M09 firmware support)
   5 * Lothar Waßmann <LW@KARO-electronics.de> (DT support)
   6 * Dario Binacchi <dario.binacchi@amarulasolutions.com> (regmap support)
 
 
 
 
 
 
 
 
 
 
 
 
   7 */
   8
   9/*
  10 * This is a driver for the EDT "Polytouch" family of touch controllers
  11 * based on the FocalTech FT5x06 line of chips.
  12 *
  13 * Development of this driver has been sponsored by Glyn:
  14 *    http://www.glyn.com/Products/Displays
  15 */
  16
 
 
 
 
 
 
 
 
  17#include <linux/debugfs.h>
  18#include <linux/delay.h>
  19#include <linux/gpio/consumer.h>
  20#include <linux/i2c.h>
  21#include <linux/interrupt.h>
  22#include <linux/input.h>
  23#include <linux/input/mt.h>
  24#include <linux/input/touchscreen.h>
  25#include <linux/irq.h>
  26#include <linux/kernel.h>
  27#include <linux/module.h>
  28#include <linux/property.h>
  29#include <linux/ratelimit.h>
  30#include <linux/regmap.h>
  31#include <linux/regulator/consumer.h>
  32#include <linux/slab.h>
  33#include <linux/uaccess.h>
  34
  35#include <linux/unaligned.h>
  36
  37#define WORK_REGISTER_THRESHOLD		0x00
  38#define WORK_REGISTER_REPORT_RATE	0x08
  39#define WORK_REGISTER_GAIN		0x30
  40#define WORK_REGISTER_OFFSET		0x31
  41#define WORK_REGISTER_NUM_X		0x33
  42#define WORK_REGISTER_NUM_Y		0x34
  43
  44#define PMOD_REGISTER_ACTIVE		0x00
  45#define PMOD_REGISTER_HIBERNATE		0x03
  46
  47#define M09_REGISTER_THRESHOLD		0x80
  48#define M09_REGISTER_GAIN		0x92
  49#define M09_REGISTER_OFFSET		0x93
  50#define M09_REGISTER_NUM_X		0x94
  51#define M09_REGISTER_NUM_Y		0x95
  52
  53#define M12_REGISTER_REPORT_RATE	0x88
  54
  55#define EV_REGISTER_THRESHOLD		0x40
  56#define EV_REGISTER_GAIN		0x41
  57#define EV_REGISTER_OFFSET_Y		0x45
  58#define EV_REGISTER_OFFSET_X		0x46
  59
  60#define NO_REGISTER			0xff
  61
  62#define WORK_REGISTER_OPMODE		0x3c
  63#define FACTORY_REGISTER_OPMODE		0x01
  64#define PMOD_REGISTER_OPMODE		0xa5
  65
  66#define TOUCH_EVENT_DOWN		0x00
  67#define TOUCH_EVENT_UP			0x01
  68#define TOUCH_EVENT_ON			0x02
  69#define TOUCH_EVENT_RESERVED		0x03
  70
  71#define EDT_NAME_LEN			23
  72#define EDT_SWITCH_MODE_RETRIES		10
  73#define EDT_SWITCH_MODE_DELAY		5 /* msec */
  74#define EDT_RAW_DATA_RETRIES		100
  75#define EDT_RAW_DATA_DELAY		1000 /* usec */
  76
  77#define EDT_DEFAULT_NUM_X		1024
  78#define EDT_DEFAULT_NUM_Y		1024
  79
  80#define M06_REG_CMD(factory) ((factory) ? 0xf3 : 0xfc)
  81#define M06_REG_ADDR(factory, addr) ((factory) ? (addr) & 0x7f : (addr) & 0x3f)
  82
  83enum edt_pmode {
  84	EDT_PMODE_NOT_SUPPORTED,
  85	EDT_PMODE_HIBERNATE,
  86	EDT_PMODE_POWEROFF,
  87};
  88
  89enum edt_ver {
  90	EDT_M06,
  91	EDT_M09,
  92	EDT_M12,
  93	EV_FT,
  94	GENERIC_FT,
  95};
  96
  97struct edt_reg_addr {
  98	int reg_threshold;
  99	int reg_report_rate;
 100	int reg_gain;
 101	int reg_offset;
 102	int reg_offset_x;
 103	int reg_offset_y;
 104	int reg_num_x;
 105	int reg_num_y;
 106};
 107
 108struct edt_ft5x06_ts_data {
 109	struct i2c_client *client;
 110	struct input_dev *input;
 111	struct touchscreen_properties prop;
 112	u16 num_x;
 113	u16 num_y;
 114	struct regulator *vcc;
 115	struct regulator *iovcc;
 116
 117	struct gpio_desc *reset_gpio;
 118	struct gpio_desc *wake_gpio;
 119
 120	struct regmap *regmap;
 121
 122#if defined(CONFIG_DEBUG_FS)
 123	struct dentry *debug_dir;
 124	u8 *raw_buffer;
 125	size_t raw_bufsize;
 126#endif
 127
 128	struct mutex mutex;
 129	bool factory_mode;
 130	enum edt_pmode suspend_mode;
 131	int threshold;
 132	int gain;
 133	int offset;
 134	int offset_x;
 135	int offset_y;
 136	int report_rate;
 137	int max_support_points;
 138	int point_len;
 139	u8 tdata_cmd;
 140	int tdata_len;
 141	int tdata_offset;
 142
 143	char name[EDT_NAME_LEN];
 144	char fw_version[EDT_NAME_LEN];
 145
 146	struct edt_reg_addr reg_addr;
 147	enum edt_ver version;
 148	unsigned int crc_errors;
 149	unsigned int header_errors;
 150};
 151
 152struct edt_i2c_chip_data {
 153	int  max_support_points;
 154};
 155
 156static const struct regmap_config edt_ft5x06_i2c_regmap_config = {
 157	.reg_bits = 8,
 158	.val_bits = 8,
 159};
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 160
 161static bool edt_ft5x06_ts_check_crc(struct edt_ft5x06_ts_data *tsdata,
 162				    u8 *buf, int buflen)
 163{
 164	int i;
 165	u8 crc = 0;
 166
 167	for (i = 0; i < buflen - 1; i++)
 168		crc ^= buf[i];
 169
 170	if (crc != buf[buflen - 1]) {
 171		tsdata->crc_errors++;
 172		dev_err_ratelimited(&tsdata->client->dev,
 173				    "crc error: 0x%02x expected, got 0x%02x\n",
 174				    crc, buf[buflen - 1]);
 175		return false;
 176	}
 177
 178	return true;
 179}
 180
 181static int edt_M06_i2c_read(void *context, const void *reg_buf, size_t reg_size,
 182			    void *val_buf, size_t val_size)
 183{
 184	struct device *dev = context;
 185	struct i2c_client *i2c = to_i2c_client(dev);
 186	struct edt_ft5x06_ts_data *tsdata = i2c_get_clientdata(i2c);
 187	struct i2c_msg xfer[2];
 188	bool reg_read = false;
 189	u8 addr;
 190	u8 wlen;
 191	u8 wbuf[4], rbuf[3];
 192	int ret;
 193
 194	addr = *((u8 *)reg_buf);
 195	wbuf[0] = addr;
 196	switch (addr) {
 197	case 0xf5:
 198		wlen = 3;
 199		wbuf[0] = 0xf5;
 200		wbuf[1] = 0xe;
 201		wbuf[2] = *((u8 *)val_buf);
 202		break;
 203	case 0xf9:
 204		wlen = 1;
 205		break;
 206	default:
 207		wlen = 2;
 208		reg_read = true;
 209		wbuf[0] = M06_REG_CMD(tsdata->factory_mode);
 210		wbuf[1] = M06_REG_ADDR(tsdata->factory_mode, addr);
 211		wbuf[1] |= tsdata->factory_mode ? 0x80 : 0x40;
 212	}
 213
 214	xfer[0].addr  = i2c->addr;
 215	xfer[0].flags = 0;
 216	xfer[0].len = wlen;
 217	xfer[0].buf = wbuf;
 218
 219	xfer[1].addr = i2c->addr;
 220	xfer[1].flags = I2C_M_RD;
 221	xfer[1].len = reg_read ? 2 : val_size;
 222	xfer[1].buf = reg_read ? rbuf : val_buf;
 223
 224	ret = i2c_transfer(i2c->adapter, xfer, 2);
 225	if (ret != 2) {
 226		if (ret < 0)
 227			return ret;
 228
 229		return -EIO;
 230	}
 231
 232	if (addr == 0xf9) {
 233		u8 *buf = (u8 *)val_buf;
 234
 235		if (buf[0] != 0xaa || buf[1] != 0xaa ||
 236		    buf[2] != val_size) {
 237			tsdata->header_errors++;
 238			dev_err_ratelimited(dev,
 239					    "Unexpected header: %02x%02x%02x\n",
 240					    buf[0], buf[1], buf[2]);
 241			return -EIO;
 242		}
 243
 244		if (!edt_ft5x06_ts_check_crc(tsdata, val_buf, val_size))
 245			return -EIO;
 246	} else if (reg_read) {
 247		wbuf[2] = rbuf[0];
 248		wbuf[3] = rbuf[1];
 249		if (!edt_ft5x06_ts_check_crc(tsdata, wbuf, 4))
 250			return -EIO;
 251
 252		*((u8 *)val_buf) = rbuf[0];
 253	}
 254
 255	return 0;
 256}
 257
 258static int edt_M06_i2c_write(void *context, const void *data, size_t count)
 259{
 260	struct device *dev = context;
 261	struct i2c_client *i2c = to_i2c_client(dev);
 262	struct edt_ft5x06_ts_data *tsdata = i2c_get_clientdata(i2c);
 263	u8 addr, val;
 264	u8 wbuf[4];
 265	struct i2c_msg xfer;
 266	int ret;
 267
 268	addr = *((u8 *)data);
 269	val = *((u8 *)data + 1);
 270
 271	wbuf[0] = M06_REG_CMD(tsdata->factory_mode);
 272	wbuf[1] = M06_REG_ADDR(tsdata->factory_mode, addr);
 273	wbuf[2] = val;
 274	wbuf[3] = wbuf[0] ^ wbuf[1] ^ wbuf[2];
 275
 276	xfer.addr  = i2c->addr;
 277	xfer.flags = 0;
 278	xfer.len = 4;
 279	xfer.buf = wbuf;
 280
 281	ret = i2c_transfer(i2c->adapter, &xfer, 1);
 282	if (ret != 1) {
 283		if (ret < 0)
 284			return ret;
 285
 286		return -EIO;
 287	}
 288
 289	return 0;
 290}
 291
 292static const struct regmap_config edt_M06_i2c_regmap_config = {
 293	.reg_bits = 8,
 294	.val_bits = 8,
 295	.read = edt_M06_i2c_read,
 296	.write = edt_M06_i2c_write,
 297};
 298
 299static irqreturn_t edt_ft5x06_ts_isr(int irq, void *dev_id)
 300{
 301	struct edt_ft5x06_ts_data *tsdata = dev_id;
 302	struct device *dev = &tsdata->client->dev;
 
 303	u8 rdbuf[63];
 304	int i, type, x, y, id;
 
 305	int error;
 306
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 307	memset(rdbuf, 0, sizeof(rdbuf));
 308	error = regmap_bulk_read(tsdata->regmap, tsdata->tdata_cmd, rdbuf,
 309				 tsdata->tdata_len);
 
 
 
 310	if (error) {
 311		dev_err_ratelimited(dev, "Unable to fetch data, error: %d\n",
 312				    error);
 313		goto out;
 314	}
 315
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 316	for (i = 0; i < tsdata->max_support_points; i++) {
 317		u8 *buf = &rdbuf[i * tsdata->point_len + tsdata->tdata_offset];
 
 318
 319		type = buf[0] >> 6;
 320		/* ignore Reserved events */
 321		if (type == TOUCH_EVENT_RESERVED)
 322			continue;
 323
 324		/* M06 sometimes sends bogus coordinates in TOUCH_DOWN */
 325		if (tsdata->version == EDT_M06 && type == TOUCH_EVENT_DOWN)
 326			continue;
 327
 328		x = get_unaligned_be16(buf) & 0x0fff;
 329		y = get_unaligned_be16(buf + 2) & 0x0fff;
 330		/* The FT5x26 send the y coordinate first */
 331		if (tsdata->version == EV_FT)
 332			swap(x, y);
 333
 334		id = (buf[2] >> 4) & 0x0f;
 
 335
 336		input_mt_slot(tsdata->input, id);
 337		if (input_mt_report_slot_state(tsdata->input, MT_TOOL_FINGER,
 338					       type != TOUCH_EVENT_UP))
 339			touchscreen_report_pos(tsdata->input, &tsdata->prop,
 340					       x, y, true);
 
 
 
 341	}
 342
 343	input_mt_report_pointer_emulation(tsdata->input, true);
 344	input_sync(tsdata->input);
 345
 346out:
 347	return IRQ_HANDLED;
 348}
 349
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 350struct edt_ft5x06_attribute {
 351	struct device_attribute dattr;
 352	size_t field_offset;
 353	u8 limit_low;
 354	u8 limit_high;
 355	u8 addr_m06;
 356	u8 addr_m09;
 357	u8 addr_ev;
 358};
 359
 360#define EDT_ATTR(_field, _mode, _addr_m06, _addr_m09, _addr_ev,		\
 361		_limit_low, _limit_high)				\
 362	struct edt_ft5x06_attribute edt_ft5x06_attr_##_field = {	\
 363		.dattr = __ATTR(_field, _mode,				\
 364				edt_ft5x06_setting_show,		\
 365				edt_ft5x06_setting_store),		\
 366		.field_offset = offsetof(struct edt_ft5x06_ts_data, _field), \
 367		.addr_m06 = _addr_m06,					\
 368		.addr_m09 = _addr_m09,					\
 369		.addr_ev  = _addr_ev,					\
 370		.limit_low = _limit_low,				\
 371		.limit_high = _limit_high,				\
 372	}
 373
 374static ssize_t edt_ft5x06_setting_show(struct device *dev,
 375				       struct device_attribute *dattr,
 376				       char *buf)
 377{
 378	struct i2c_client *client = to_i2c_client(dev);
 379	struct edt_ft5x06_ts_data *tsdata = i2c_get_clientdata(client);
 380	struct edt_ft5x06_attribute *attr =
 381			container_of(dattr, struct edt_ft5x06_attribute, dattr);
 382	u8 *field = (u8 *)tsdata + attr->field_offset;
 383	unsigned int val;
 384	size_t count = 0;
 385	int error = 0;
 386	u8 addr;
 387
 388	mutex_lock(&tsdata->mutex);
 389
 390	if (tsdata->factory_mode) {
 391		error = -EIO;
 392		goto out;
 393	}
 394
 395	switch (tsdata->version) {
 396	case EDT_M06:
 397		addr = attr->addr_m06;
 398		break;
 399
 400	case EDT_M09:
 401	case EDT_M12:
 402	case GENERIC_FT:
 403		addr = attr->addr_m09;
 404		break;
 405
 406	case EV_FT:
 407		addr = attr->addr_ev;
 408		break;
 409
 410	default:
 411		error = -ENODEV;
 412		goto out;
 413	}
 414
 415	if (addr != NO_REGISTER) {
 416		error = regmap_read(tsdata->regmap, addr, &val);
 417		if (error) {
 
 418			dev_err(&tsdata->client->dev,
 419				"Failed to fetch attribute %s, error %d\n",
 420				dattr->attr.name, error);
 421			goto out;
 422		}
 423	} else {
 424		val = *field;
 425	}
 426
 427	if (val != *field) {
 428		dev_warn(&tsdata->client->dev,
 429			 "%s: read (%d) and stored value (%d) differ\n",
 430			 dattr->attr.name, val, *field);
 431		*field = val;
 432	}
 433
 434	count = sysfs_emit(buf, "%d\n", val);
 435out:
 436	mutex_unlock(&tsdata->mutex);
 437	return error ?: count;
 438}
 439
 440static ssize_t edt_ft5x06_setting_store(struct device *dev,
 441					struct device_attribute *dattr,
 442					const char *buf, size_t count)
 443{
 444	struct i2c_client *client = to_i2c_client(dev);
 445	struct edt_ft5x06_ts_data *tsdata = i2c_get_clientdata(client);
 446	struct edt_ft5x06_attribute *attr =
 447			container_of(dattr, struct edt_ft5x06_attribute, dattr);
 448	u8 *field = (u8 *)tsdata + attr->field_offset;
 449	unsigned int val;
 450	int error;
 451	u8 addr;
 452
 453	mutex_lock(&tsdata->mutex);
 454
 455	if (tsdata->factory_mode) {
 456		error = -EIO;
 457		goto out;
 458	}
 459
 460	error = kstrtouint(buf, 0, &val);
 461	if (error)
 462		goto out;
 463
 464	if (val < attr->limit_low || val > attr->limit_high) {
 465		error = -ERANGE;
 466		goto out;
 467	}
 468
 469	switch (tsdata->version) {
 470	case EDT_M06:
 471		addr = attr->addr_m06;
 472		break;
 473
 474	case EDT_M09:
 475	case EDT_M12:
 476	case GENERIC_FT:
 477		addr = attr->addr_m09;
 478		break;
 479
 480	case EV_FT:
 481		addr = attr->addr_ev;
 482		break;
 483
 484	default:
 485		error = -ENODEV;
 486		goto out;
 487	}
 488
 489	if (addr != NO_REGISTER) {
 490		error = regmap_write(tsdata->regmap, addr, val);
 491		if (error) {
 492			dev_err(&tsdata->client->dev,
 493				"Failed to update attribute %s, error: %d\n",
 494				dattr->attr.name, error);
 495			goto out;
 496		}
 497	}
 498	*field = val;
 499
 500out:
 501	mutex_unlock(&tsdata->mutex);
 502	return error ?: count;
 503}
 504
 505/* m06, m09: range 0-31, m12: range 0-5 */
 506static EDT_ATTR(gain, S_IWUSR | S_IRUGO, WORK_REGISTER_GAIN,
 507		M09_REGISTER_GAIN, EV_REGISTER_GAIN, 0, 31);
 508/* m06, m09: range 0-31, m12: range 0-16 */
 509static EDT_ATTR(offset, S_IWUSR | S_IRUGO, WORK_REGISTER_OFFSET,
 510		M09_REGISTER_OFFSET, NO_REGISTER, 0, 31);
 511/* m06, m09, m12: no supported, ev_ft: range 0-80 */
 512static EDT_ATTR(offset_x, S_IWUSR | S_IRUGO, NO_REGISTER, NO_REGISTER,
 513		EV_REGISTER_OFFSET_X, 0, 80);
 514/* m06, m09, m12: no supported, ev_ft: range 0-80 */
 515static EDT_ATTR(offset_y, S_IWUSR | S_IRUGO, NO_REGISTER, NO_REGISTER,
 516		EV_REGISTER_OFFSET_Y, 0, 80);
 517/* m06: range 20 to 80, m09: range 0 to 30, m12: range 1 to 255... */
 518static EDT_ATTR(threshold, S_IWUSR | S_IRUGO, WORK_REGISTER_THRESHOLD,
 519		M09_REGISTER_THRESHOLD, EV_REGISTER_THRESHOLD, 0, 255);
 520/* m06: range 3 to 14, m12: range 1 to 255 */
 521static EDT_ATTR(report_rate, S_IWUSR | S_IRUGO, WORK_REGISTER_REPORT_RATE,
 522		M12_REGISTER_REPORT_RATE, NO_REGISTER, 0, 255);
 523
 524static ssize_t model_show(struct device *dev, struct device_attribute *attr,
 525			  char *buf)
 526{
 527	struct i2c_client *client = to_i2c_client(dev);
 528	struct edt_ft5x06_ts_data *tsdata = i2c_get_clientdata(client);
 529
 530	return sysfs_emit(buf, "%s\n", tsdata->name);
 531}
 532
 533static DEVICE_ATTR_RO(model);
 534
 535static ssize_t fw_version_show(struct device *dev,
 536			       struct device_attribute *attr, char *buf)
 537{
 538	struct i2c_client *client = to_i2c_client(dev);
 539	struct edt_ft5x06_ts_data *tsdata = i2c_get_clientdata(client);
 540
 541	return sysfs_emit(buf, "%s\n", tsdata->fw_version);
 542}
 543
 544static DEVICE_ATTR_RO(fw_version);
 545
 546/* m06 only */
 547static ssize_t header_errors_show(struct device *dev,
 548				  struct device_attribute *attr, char *buf)
 549{
 550	struct i2c_client *client = to_i2c_client(dev);
 551	struct edt_ft5x06_ts_data *tsdata = i2c_get_clientdata(client);
 552
 553	return sysfs_emit(buf, "%d\n", tsdata->header_errors);
 554}
 555
 556static DEVICE_ATTR_RO(header_errors);
 557
 558/* m06 only */
 559static ssize_t crc_errors_show(struct device *dev,
 560			       struct device_attribute *attr, char *buf)
 561{
 562	struct i2c_client *client = to_i2c_client(dev);
 563	struct edt_ft5x06_ts_data *tsdata = i2c_get_clientdata(client);
 564
 565	return sysfs_emit(buf, "%d\n", tsdata->crc_errors);
 566}
 567
 568static DEVICE_ATTR_RO(crc_errors);
 569
 570static struct attribute *edt_ft5x06_attrs[] = {
 571	&edt_ft5x06_attr_gain.dattr.attr,
 572	&edt_ft5x06_attr_offset.dattr.attr,
 573	&edt_ft5x06_attr_offset_x.dattr.attr,
 574	&edt_ft5x06_attr_offset_y.dattr.attr,
 575	&edt_ft5x06_attr_threshold.dattr.attr,
 576	&edt_ft5x06_attr_report_rate.dattr.attr,
 577	&dev_attr_model.attr,
 578	&dev_attr_fw_version.attr,
 579	&dev_attr_header_errors.attr,
 580	&dev_attr_crc_errors.attr,
 581	NULL
 582};
 583ATTRIBUTE_GROUPS(edt_ft5x06);
 584
 585static void edt_ft5x06_restore_reg_parameters(struct edt_ft5x06_ts_data *tsdata)
 586{
 587	struct edt_reg_addr *reg_addr = &tsdata->reg_addr;
 588	struct regmap *regmap = tsdata->regmap;
 589
 590	regmap_write(regmap, reg_addr->reg_threshold, tsdata->threshold);
 591	regmap_write(regmap, reg_addr->reg_gain, tsdata->gain);
 592	if (reg_addr->reg_offset != NO_REGISTER)
 593		regmap_write(regmap, reg_addr->reg_offset, tsdata->offset);
 594	if (reg_addr->reg_offset_x != NO_REGISTER)
 595		regmap_write(regmap, reg_addr->reg_offset_x, tsdata->offset_x);
 596	if (reg_addr->reg_offset_y != NO_REGISTER)
 597		regmap_write(regmap, reg_addr->reg_offset_y, tsdata->offset_y);
 598	if (reg_addr->reg_report_rate != NO_REGISTER)
 599		regmap_write(regmap, reg_addr->reg_report_rate,
 600			     tsdata->report_rate);
 601}
 602
 603#ifdef CONFIG_DEBUG_FS
 604static int edt_ft5x06_factory_mode(struct edt_ft5x06_ts_data *tsdata)
 605{
 606	struct i2c_client *client = tsdata->client;
 607	int retries = EDT_SWITCH_MODE_RETRIES;
 608	unsigned int val;
 609	int error;
 610
 611	if (tsdata->version != EDT_M06) {
 612		dev_err(&client->dev,
 613			"No factory mode support for non-M06 devices\n");
 614		return -EINVAL;
 615	}
 616
 617	disable_irq(client->irq);
 618
 619	if (!tsdata->raw_buffer) {
 620		tsdata->raw_bufsize = tsdata->num_x * tsdata->num_y *
 621				      sizeof(u16);
 622		tsdata->raw_buffer = kzalloc(tsdata->raw_bufsize, GFP_KERNEL);
 623		if (!tsdata->raw_buffer) {
 624			error = -ENOMEM;
 625			goto err_out;
 626		}
 627	}
 628
 629	/* mode register is 0x3c when in the work mode */
 630	error = regmap_write(tsdata->regmap, WORK_REGISTER_OPMODE, 0x03);
 
 
 
 631	if (error) {
 632		dev_err(&client->dev,
 633			"failed to switch to factory mode, error %d\n", error);
 634		goto err_out;
 635	}
 636
 637	tsdata->factory_mode = true;
 638	do {
 639		mdelay(EDT_SWITCH_MODE_DELAY);
 640		/* mode register is 0x01 when in factory mode */
 641		error = regmap_read(tsdata->regmap, FACTORY_REGISTER_OPMODE,
 642				    &val);
 643		if (!error && val == 0x03)
 644			break;
 645	} while (--retries > 0);
 646
 647	if (retries == 0) {
 648		dev_err(&client->dev, "not in factory mode after %dms.\n",
 649			EDT_SWITCH_MODE_RETRIES * EDT_SWITCH_MODE_DELAY);
 650		error = -EIO;
 651		goto err_out;
 652	}
 653
 654	return 0;
 655
 656err_out:
 657	kfree(tsdata->raw_buffer);
 658	tsdata->raw_buffer = NULL;
 659	tsdata->factory_mode = false;
 660	enable_irq(client->irq);
 661
 662	return error;
 
 
 
 
 
 663}
 664
 665static int edt_ft5x06_work_mode(struct edt_ft5x06_ts_data *tsdata)
 666{
 667	struct i2c_client *client = tsdata->client;
 668	int retries = EDT_SWITCH_MODE_RETRIES;
 669	unsigned int val;
 
 670	int error;
 671
 672	/* mode register is 0x01 when in the factory mode */
 673	error = regmap_write(tsdata->regmap, FACTORY_REGISTER_OPMODE, 0x1);
 674	if (error) {
 675		dev_err(&client->dev,
 676			"failed to switch to work mode, error: %d\n", error);
 677		return error;
 678	}
 679
 680	tsdata->factory_mode = false;
 681
 682	do {
 683		mdelay(EDT_SWITCH_MODE_DELAY);
 684		/* mode register is 0x01 when in factory mode */
 685		error = regmap_read(tsdata->regmap, WORK_REGISTER_OPMODE, &val);
 686		if (!error && val == 0x01)
 687			break;
 688	} while (--retries > 0);
 689
 690	if (retries == 0) {
 691		dev_err(&client->dev, "not in work mode after %dms.\n",
 692			EDT_SWITCH_MODE_RETRIES * EDT_SWITCH_MODE_DELAY);
 693		tsdata->factory_mode = true;
 694		return -EIO;
 695	}
 696
 697	kfree(tsdata->raw_buffer);
 698	tsdata->raw_buffer = NULL;
 699
 700	edt_ft5x06_restore_reg_parameters(tsdata);
 
 
 
 
 
 
 
 
 
 
 701	enable_irq(client->irq);
 702
 703	return 0;
 704}
 705
 706static int edt_ft5x06_debugfs_mode_get(void *data, u64 *mode)
 707{
 708	struct edt_ft5x06_ts_data *tsdata = data;
 709
 710	*mode = tsdata->factory_mode;
 711
 712	return 0;
 713};
 714
 715static int edt_ft5x06_debugfs_mode_set(void *data, u64 mode)
 716{
 717	struct edt_ft5x06_ts_data *tsdata = data;
 718	int retval = 0;
 719
 720	if (mode > 1)
 721		return -ERANGE;
 722
 723	mutex_lock(&tsdata->mutex);
 724
 725	if (mode != tsdata->factory_mode) {
 726		retval = mode ? edt_ft5x06_factory_mode(tsdata) :
 727				edt_ft5x06_work_mode(tsdata);
 728	}
 729
 730	mutex_unlock(&tsdata->mutex);
 731
 732	return retval;
 733};
 734
 735DEFINE_SIMPLE_ATTRIBUTE(debugfs_mode_fops, edt_ft5x06_debugfs_mode_get,
 736			edt_ft5x06_debugfs_mode_set, "%llu\n");
 737
 738static ssize_t edt_ft5x06_debugfs_raw_data_read(struct file *file,
 739						char __user *buf, size_t count,
 740						loff_t *off)
 741{
 742	struct edt_ft5x06_ts_data *tsdata = file->private_data;
 743	struct i2c_client *client = tsdata->client;
 744	int retries  = EDT_RAW_DATA_RETRIES;
 745	unsigned int val;
 746	int i, error;
 747	size_t read = 0;
 748	int colbytes;
 
 749	u8 *rdbuf;
 750
 751	if (*off < 0 || *off >= tsdata->raw_bufsize)
 752		return 0;
 753
 754	mutex_lock(&tsdata->mutex);
 755
 756	if (!tsdata->factory_mode || !tsdata->raw_buffer) {
 757		error = -EIO;
 758		goto out;
 759	}
 760
 761	error = regmap_write(tsdata->regmap, 0x08, 0x01);
 762	if (error) {
 763		dev_err(&client->dev,
 764			"failed to write 0x08 register, error %d\n", error);
 765		goto out;
 766	}
 767
 768	do {
 769		usleep_range(EDT_RAW_DATA_DELAY, EDT_RAW_DATA_DELAY + 100);
 770		error = regmap_read(tsdata->regmap, 0x08, &val);
 771		if (error) {
 772			dev_err(&client->dev,
 773				"failed to read 0x08 register, error %d\n",
 774				error);
 775			goto out;
 776		}
 777
 778		if (val == 1)
 779			break;
 780	} while (--retries > 0);
 781
 
 
 
 
 
 
 
 782	if (retries == 0) {
 783		dev_err(&client->dev,
 784			"timed out waiting for register to settle\n");
 785		error = -ETIMEDOUT;
 786		goto out;
 787	}
 788
 789	rdbuf = tsdata->raw_buffer;
 790	colbytes = tsdata->num_y * sizeof(u16);
 791
 
 
 792	for (i = 0; i < tsdata->num_x; i++) {
 793		rdbuf[0] = i;  /* column index */
 794		error = regmap_bulk_read(tsdata->regmap, 0xf5, rdbuf, colbytes);
 
 
 795		if (error)
 796			goto out;
 797
 798		rdbuf += colbytes;
 799	}
 800
 801	read = min_t(size_t, count, tsdata->raw_bufsize - *off);
 802	if (copy_to_user(buf, tsdata->raw_buffer + *off, read)) {
 803		error = -EFAULT;
 804		goto out;
 805	}
 806
 807	*off += read;
 808out:
 809	mutex_unlock(&tsdata->mutex);
 810	return error ?: read;
 811};
 812
 813static const struct file_operations debugfs_raw_data_fops = {
 814	.open = simple_open,
 815	.read = edt_ft5x06_debugfs_raw_data_read,
 816};
 817
 818static void edt_ft5x06_ts_prepare_debugfs(struct edt_ft5x06_ts_data *tsdata,
 819					  const char *debugfs_name)
 
 820{
 821	tsdata->debug_dir = debugfs_create_dir(debugfs_name, NULL);
 
 
 822
 823	debugfs_create_u16("num_x", S_IRUSR, tsdata->debug_dir, &tsdata->num_x);
 824	debugfs_create_u16("num_y", S_IRUSR, tsdata->debug_dir, &tsdata->num_y);
 825
 826	debugfs_create_file("mode", S_IRUSR | S_IWUSR,
 827			    tsdata->debug_dir, tsdata, &debugfs_mode_fops);
 828	debugfs_create_file("raw_data", S_IRUSR,
 829			    tsdata->debug_dir, tsdata, &debugfs_raw_data_fops);
 830}
 831
 832static void edt_ft5x06_ts_teardown_debugfs(struct edt_ft5x06_ts_data *tsdata)
 
 833{
 834	debugfs_remove_recursive(tsdata->debug_dir);
 835	kfree(tsdata->raw_buffer);
 836}
 837
 838#else
 839
 840static int edt_ft5x06_factory_mode(struct edt_ft5x06_ts_data *tsdata)
 841{
 842	return -ENOSYS;
 843}
 844
 845static void edt_ft5x06_ts_prepare_debugfs(struct edt_ft5x06_ts_data *tsdata,
 846					  const char *debugfs_name)
 847{
 848}
 849
 850static void edt_ft5x06_ts_teardown_debugfs(struct edt_ft5x06_ts_data *tsdata)
 
 851{
 852}
 853
 854#endif /* CONFIG_DEBUGFS */
 855
 856static int edt_ft5x06_ts_identify(struct i2c_client *client,
 857				  struct edt_ft5x06_ts_data *tsdata)
 
 858{
 859	u8 rdbuf[EDT_NAME_LEN];
 860	char *p;
 861	int error;
 862	char *model_name = tsdata->name;
 863	char *fw_version = tsdata->fw_version;
 864
 865	/* see what we find if we assume it is a M06 *
 866	 * if we get less than EDT_NAME_LEN, we don't want
 867	 * to have garbage in there
 868	 */
 869	memset(rdbuf, 0, sizeof(rdbuf));
 870	error = regmap_bulk_read(tsdata->regmap, 0xBB, rdbuf, EDT_NAME_LEN - 1);
 
 871	if (error)
 872		return error;
 873
 874	/* Probe content for something consistent.
 875	 * M06 starts with a response byte, M12 gives the data directly.
 876	 * M09/Generic does not provide model number information.
 877	 */
 878	if (!strncasecmp(rdbuf + 1, "EP0", 3)) {
 879		tsdata->version = EDT_M06;
 880
 881		/* remove last '$' end marker */
 882		rdbuf[EDT_NAME_LEN - 1] = '\0';
 883		if (rdbuf[EDT_NAME_LEN - 2] == '$')
 884			rdbuf[EDT_NAME_LEN - 2] = '\0';
 885
 886		/* look for Model/Version separator */
 887		p = strchr(rdbuf, '*');
 888		if (p)
 889			*p++ = '\0';
 890		strscpy(model_name, rdbuf + 1, EDT_NAME_LEN);
 891		strscpy(fw_version, p ? p : "", EDT_NAME_LEN);
 892
 893		regmap_exit(tsdata->regmap);
 894		tsdata->regmap = regmap_init_i2c(client,
 895						 &edt_M06_i2c_regmap_config);
 896		if (IS_ERR(tsdata->regmap)) {
 897			dev_err(&client->dev, "regmap allocation failed\n");
 898			return PTR_ERR(tsdata->regmap);
 899		}
 900	} else if (!strncasecmp(rdbuf, "EP0", 3)) {
 901		tsdata->version = EDT_M12;
 902
 903		/* remove last '$' end marker */
 904		rdbuf[EDT_NAME_LEN - 2] = '\0';
 905		if (rdbuf[EDT_NAME_LEN - 3] == '$')
 906			rdbuf[EDT_NAME_LEN - 3] = '\0';
 907
 908		/* look for Model/Version separator */
 909		p = strchr(rdbuf, '*');
 910		if (p)
 911			*p++ = '\0';
 912		strscpy(model_name, rdbuf, EDT_NAME_LEN);
 913		strscpy(fw_version, p ? p : "", EDT_NAME_LEN);
 914	} else {
 915		/* If it is not an EDT M06/M12 touchscreen, then the model
 916		 * detection is a bit hairy. The different ft5x06
 917		 * firmwares around don't reliably implement the
 918		 * identification registers. Well, we'll take a shot.
 919		 *
 920		 * The main difference between generic focaltec based
 921		 * touches and EDT M09 is that we know how to retrieve
 922		 * the max coordinates for the latter.
 923		 */
 924		tsdata->version = GENERIC_FT;
 925
 926		error = regmap_bulk_read(tsdata->regmap, 0xA6, rdbuf, 2);
 
 927		if (error)
 928			return error;
 929
 930		strscpy(fw_version, rdbuf, 2);
 931
 932		error = regmap_bulk_read(tsdata->regmap, 0xA8, rdbuf, 1);
 
 933		if (error)
 934			return error;
 935
 936		/* This "model identification" is not exact. Unfortunately
 937		 * not all firmwares for the ft5x06 put useful values in
 938		 * the identification registers.
 939		 */
 940		switch (rdbuf[0]) {
 941		case 0x11:   /* EDT EP0110M09 */
 942		case 0x35:   /* EDT EP0350M09 */
 943		case 0x43:   /* EDT EP0430M09 */
 944		case 0x50:   /* EDT EP0500M09 */
 945		case 0x57:   /* EDT EP0570M09 */
 946		case 0x70:   /* EDT EP0700M09 */
 947			tsdata->version = EDT_M09;
 948			snprintf(model_name, EDT_NAME_LEN, "EP0%i%i0M09",
 949				 rdbuf[0] >> 4, rdbuf[0] & 0x0F);
 950			break;
 951		case 0xa1:   /* EDT EP1010ML00 */
 952			tsdata->version = EDT_M09;
 953			snprintf(model_name, EDT_NAME_LEN, "EP%i%i0ML00",
 954				 rdbuf[0] >> 4, rdbuf[0] & 0x0F);
 955			break;
 956		case 0x5a:   /* Solomon Goldentek Display */
 957			snprintf(model_name, EDT_NAME_LEN, "GKTW50SCED1R0");
 958			break;
 959		case 0x59:  /* Evervision Display with FT5xx6 TS */
 960			tsdata->version = EV_FT;
 961			error = regmap_bulk_read(tsdata->regmap, 0x53, rdbuf, 1);
 962			if (error)
 963				return error;
 964			strscpy(fw_version, rdbuf, 1);
 965			snprintf(model_name, EDT_NAME_LEN,
 966				 "EVERVISION-FT5726NEi");
 967			break;
 968		default:
 969			snprintf(model_name, EDT_NAME_LEN,
 970				 "generic ft5x06 (%02x)",
 971				 rdbuf[0]);
 972			break;
 973		}
 974	}
 975
 976	return 0;
 977}
 978
 979static void edt_ft5x06_ts_get_defaults(struct device *dev,
 980				       struct edt_ft5x06_ts_data *tsdata)
 981{
 982	struct edt_reg_addr *reg_addr = &tsdata->reg_addr;
 983	struct regmap *regmap = tsdata->regmap;
 984	u32 val;
 985	int error;
 986
 987	error = device_property_read_u32(dev, "threshold", &val);
 988	if (!error) {
 989		regmap_write(regmap, reg_addr->reg_threshold, val);
 990		tsdata->threshold = val;
 991	}
 992
 993	error = device_property_read_u32(dev, "gain", &val);
 994	if (!error) {
 995		regmap_write(regmap, reg_addr->reg_gain, val);
 996		tsdata->gain = val;
 997	}
 998
 999	error = device_property_read_u32(dev, "offset", &val);
1000	if (!error) {
1001		if (reg_addr->reg_offset != NO_REGISTER)
1002			regmap_write(regmap, reg_addr->reg_offset, val);
1003		tsdata->offset = val;
1004	}
1005
1006	error = device_property_read_u32(dev, "offset-x", &val);
1007	if (!error) {
1008		if (reg_addr->reg_offset_x != NO_REGISTER)
1009			regmap_write(regmap, reg_addr->reg_offset_x, val);
1010		tsdata->offset_x = val;
1011	}
1012
1013	error = device_property_read_u32(dev, "offset-y", &val);
1014	if (!error) {
1015		if (reg_addr->reg_offset_y != NO_REGISTER)
1016			regmap_write(regmap, reg_addr->reg_offset_y, val);
1017		tsdata->offset_y = val;
1018	}
1019}
1020
1021static void edt_ft5x06_ts_get_parameters(struct edt_ft5x06_ts_data *tsdata)
 
1022{
1023	struct edt_reg_addr *reg_addr = &tsdata->reg_addr;
1024	struct regmap *regmap = tsdata->regmap;
1025	unsigned int val;
1026
1027	regmap_read(regmap, reg_addr->reg_threshold, &tsdata->threshold);
1028	regmap_read(regmap, reg_addr->reg_gain, &tsdata->gain);
1029	if (reg_addr->reg_offset != NO_REGISTER)
1030		regmap_read(regmap, reg_addr->reg_offset, &tsdata->offset);
1031	if (reg_addr->reg_offset_x != NO_REGISTER)
1032		regmap_read(regmap, reg_addr->reg_offset_x, &tsdata->offset_x);
1033	if (reg_addr->reg_offset_y != NO_REGISTER)
1034		regmap_read(regmap, reg_addr->reg_offset_y, &tsdata->offset_y);
1035	if (reg_addr->reg_report_rate != NO_REGISTER)
1036		regmap_read(regmap, reg_addr->reg_report_rate,
1037			    &tsdata->report_rate);
1038	tsdata->num_x = EDT_DEFAULT_NUM_X;
1039	if (reg_addr->reg_num_x != NO_REGISTER) {
1040		if (!regmap_read(regmap, reg_addr->reg_num_x, &val))
1041			tsdata->num_x = val;
1042	}
1043	tsdata->num_y = EDT_DEFAULT_NUM_Y;
1044	if (reg_addr->reg_num_y != NO_REGISTER) {
1045		if (!regmap_read(regmap, reg_addr->reg_num_y, &val))
1046			tsdata->num_y = val;
1047	}
1048}
1049
1050static void edt_ft5x06_ts_set_tdata_parameters(struct edt_ft5x06_ts_data *tsdata)
1051{
1052	int crclen;
1053
1054	if (tsdata->version == EDT_M06) {
1055		tsdata->tdata_cmd = 0xf9;
1056		tsdata->tdata_offset = 5;
1057		tsdata->point_len = 4;
1058		crclen = 1;
1059	} else {
1060		tsdata->tdata_cmd = 0x0;
1061		tsdata->tdata_offset = 3;
1062		tsdata->point_len = 6;
1063		crclen = 0;
1064	}
1065
1066	tsdata->tdata_len = tsdata->point_len * tsdata->max_support_points +
1067		tsdata->tdata_offset + crclen;
1068}
1069
1070static void edt_ft5x06_ts_set_regs(struct edt_ft5x06_ts_data *tsdata)
1071{
1072	struct edt_reg_addr *reg_addr = &tsdata->reg_addr;
1073
1074	switch (tsdata->version) {
1075	case EDT_M06:
1076		reg_addr->reg_threshold = WORK_REGISTER_THRESHOLD;
1077		reg_addr->reg_report_rate = WORK_REGISTER_REPORT_RATE;
1078		reg_addr->reg_gain = WORK_REGISTER_GAIN;
1079		reg_addr->reg_offset = WORK_REGISTER_OFFSET;
1080		reg_addr->reg_offset_x = NO_REGISTER;
1081		reg_addr->reg_offset_y = NO_REGISTER;
1082		reg_addr->reg_num_x = WORK_REGISTER_NUM_X;
1083		reg_addr->reg_num_y = WORK_REGISTER_NUM_Y;
1084		break;
1085
1086	case EDT_M09:
1087	case EDT_M12:
1088		reg_addr->reg_threshold = M09_REGISTER_THRESHOLD;
1089		reg_addr->reg_report_rate = tsdata->version == EDT_M12 ?
1090			M12_REGISTER_REPORT_RATE : NO_REGISTER;
1091		reg_addr->reg_gain = M09_REGISTER_GAIN;
1092		reg_addr->reg_offset = M09_REGISTER_OFFSET;
1093		reg_addr->reg_offset_x = NO_REGISTER;
1094		reg_addr->reg_offset_y = NO_REGISTER;
1095		reg_addr->reg_num_x = M09_REGISTER_NUM_X;
1096		reg_addr->reg_num_y = M09_REGISTER_NUM_Y;
1097		break;
1098
1099	case EV_FT:
1100		reg_addr->reg_threshold = EV_REGISTER_THRESHOLD;
1101		reg_addr->reg_report_rate = NO_REGISTER;
1102		reg_addr->reg_gain = EV_REGISTER_GAIN;
1103		reg_addr->reg_offset = NO_REGISTER;
1104		reg_addr->reg_offset_x = EV_REGISTER_OFFSET_X;
1105		reg_addr->reg_offset_y = EV_REGISTER_OFFSET_Y;
1106		reg_addr->reg_num_x = NO_REGISTER;
1107		reg_addr->reg_num_y = NO_REGISTER;
1108		break;
1109
1110	case GENERIC_FT:
1111		/* this is a guesswork */
1112		reg_addr->reg_threshold = M09_REGISTER_THRESHOLD;
1113		reg_addr->reg_report_rate = NO_REGISTER;
1114		reg_addr->reg_gain = M09_REGISTER_GAIN;
1115		reg_addr->reg_offset = M09_REGISTER_OFFSET;
1116		reg_addr->reg_offset_x = NO_REGISTER;
1117		reg_addr->reg_offset_y = NO_REGISTER;
1118		reg_addr->reg_num_x = NO_REGISTER;
1119		reg_addr->reg_num_y = NO_REGISTER;
1120		break;
1121	}
1122}
1123
1124static void edt_ft5x06_exit_regmap(void *arg)
1125{
1126	struct edt_ft5x06_ts_data *data = arg;
1127
1128	if (!IS_ERR_OR_NULL(data->regmap))
1129		regmap_exit(data->regmap);
1130}
1131
1132static void edt_ft5x06_disable_regulators(void *arg)
1133{
1134	struct edt_ft5x06_ts_data *data = arg;
1135
1136	regulator_disable(data->vcc);
1137	regulator_disable(data->iovcc);
1138}
1139
1140static int edt_ft5x06_ts_probe(struct i2c_client *client)
1141{
1142	const struct i2c_device_id *id = i2c_client_get_device_id(client);
1143	const struct edt_i2c_chip_data *chip_data;
1144	struct edt_ft5x06_ts_data *tsdata;
1145	unsigned int val;
1146	struct input_dev *input;
1147	unsigned long irq_flags;
1148	int error;
1149	u32 report_rate;
1150
1151	dev_dbg(&client->dev, "probing for EDT FT5x06 I2C\n");
1152
1153	tsdata = devm_kzalloc(&client->dev, sizeof(*tsdata), GFP_KERNEL);
1154	if (!tsdata) {
1155		dev_err(&client->dev, "failed to allocate driver data.\n");
1156		return -ENOMEM;
1157	}
1158
1159	tsdata->regmap = regmap_init_i2c(client, &edt_ft5x06_i2c_regmap_config);
1160	if (IS_ERR(tsdata->regmap)) {
1161		dev_err(&client->dev, "regmap allocation failed\n");
1162		return PTR_ERR(tsdata->regmap);
1163	}
1164
1165	/*
1166	 * We are not using devm_regmap_init_i2c() and instead install a
1167	 * custom action because we may replace regmap with M06-specific one
1168	 * and we need to make sure that it will not be released too early.
1169	 */
1170	error = devm_add_action_or_reset(&client->dev, edt_ft5x06_exit_regmap,
1171					 tsdata);
1172	if (error)
1173		return error;
1174
1175	chip_data = device_get_match_data(&client->dev);
1176	if (!chip_data)
1177		chip_data = (const struct edt_i2c_chip_data *)id->driver_data;
1178	if (!chip_data || !chip_data->max_support_points) {
1179		dev_err(&client->dev, "invalid or missing chip data\n");
1180		return -EINVAL;
1181	}
1182
1183	tsdata->max_support_points = chip_data->max_support_points;
1184
1185	tsdata->vcc = devm_regulator_get(&client->dev, "vcc");
1186	if (IS_ERR(tsdata->vcc))
1187		return dev_err_probe(&client->dev, PTR_ERR(tsdata->vcc),
1188				     "failed to request regulator\n");
1189
1190	tsdata->iovcc = devm_regulator_get(&client->dev, "iovcc");
1191	if (IS_ERR(tsdata->iovcc)) {
1192		error = PTR_ERR(tsdata->iovcc);
1193		if (error != -EPROBE_DEFER)
1194			dev_err(&client->dev,
1195				"failed to request iovcc regulator: %d\n", error);
1196		return error;
1197	}
1198
1199	error = regulator_enable(tsdata->iovcc);
1200	if (error < 0) {
1201		dev_err(&client->dev, "failed to enable iovcc: %d\n", error);
1202		return error;
1203	}
1204
1205	/* Delay enabling VCC for > 10us (T_ivd) after IOVCC */
1206	usleep_range(10, 100);
1207
1208	error = regulator_enable(tsdata->vcc);
1209	if (error < 0) {
1210		dev_err(&client->dev, "failed to enable vcc: %d\n", error);
1211		regulator_disable(tsdata->iovcc);
1212		return error;
1213	}
1214
1215	error = devm_add_action_or_reset(&client->dev,
1216					 edt_ft5x06_disable_regulators,
1217					 tsdata);
1218	if (error)
1219		return error;
1220
1221	tsdata->reset_gpio = devm_gpiod_get_optional(&client->dev,
1222						     "reset", GPIOD_OUT_HIGH);
1223	if (IS_ERR(tsdata->reset_gpio)) {
1224		error = PTR_ERR(tsdata->reset_gpio);
1225		dev_err(&client->dev,
1226			"Failed to request GPIO reset pin, error %d\n", error);
1227		return error;
1228	}
1229
1230	tsdata->wake_gpio = devm_gpiod_get_optional(&client->dev,
1231						    "wake", GPIOD_OUT_LOW);
1232	if (IS_ERR(tsdata->wake_gpio)) {
1233		error = PTR_ERR(tsdata->wake_gpio);
1234		dev_err(&client->dev,
1235			"Failed to request GPIO wake pin, error %d\n", error);
1236		return error;
1237	}
1238
1239	/*
1240	 * Check which sleep modes we can support. Power-off requires the
1241	 * reset-pin to ensure correct power-down/power-up behaviour. Start with
1242	 * the EDT_PMODE_POWEROFF test since this is the deepest possible sleep
1243	 * mode.
1244	 */
1245	if (tsdata->reset_gpio)
1246		tsdata->suspend_mode = EDT_PMODE_POWEROFF;
1247	else if (tsdata->wake_gpio)
1248		tsdata->suspend_mode = EDT_PMODE_HIBERNATE;
1249	else
1250		tsdata->suspend_mode = EDT_PMODE_NOT_SUPPORTED;
1251
1252	if (tsdata->wake_gpio) {
1253		usleep_range(5000, 6000);
1254		gpiod_set_value_cansleep(tsdata->wake_gpio, 1);
1255		usleep_range(5000, 6000);
1256	}
1257
1258	if (tsdata->reset_gpio) {
1259		usleep_range(5000, 6000);
1260		gpiod_set_value_cansleep(tsdata->reset_gpio, 0);
1261		msleep(300);
1262	}
1263
1264	input = devm_input_allocate_device(&client->dev);
1265	if (!input) {
1266		dev_err(&client->dev, "failed to allocate input device.\n");
1267		return -ENOMEM;
1268	}
1269
1270	mutex_init(&tsdata->mutex);
1271	tsdata->client = client;
1272	tsdata->input = input;
1273	tsdata->factory_mode = false;
1274	i2c_set_clientdata(client, tsdata);
1275
1276	error = edt_ft5x06_ts_identify(client, tsdata);
1277	if (error) {
1278		dev_err(&client->dev, "touchscreen probe failed\n");
1279		return error;
1280	}
1281
1282	/*
1283	 * Dummy read access. EP0700MLP1 returns bogus data on the first
1284	 * register read access and ignores writes.
1285	 */
1286	regmap_read(tsdata->regmap, 0x00, &val);
1287
1288	edt_ft5x06_ts_set_tdata_parameters(tsdata);
1289	edt_ft5x06_ts_set_regs(tsdata);
1290	edt_ft5x06_ts_get_defaults(&client->dev, tsdata);
1291	edt_ft5x06_ts_get_parameters(tsdata);
1292
1293	if (tsdata->reg_addr.reg_report_rate != NO_REGISTER &&
1294	    !device_property_read_u32(&client->dev,
1295				      "report-rate-hz", &report_rate)) {
1296		if (tsdata->version == EDT_M06)
1297			tsdata->report_rate = clamp_val(report_rate, 30, 140);
1298		else
1299			tsdata->report_rate = clamp_val(report_rate, 1, 255);
1300
1301		if (report_rate != tsdata->report_rate)
1302			dev_warn(&client->dev,
1303				 "report-rate %dHz is unsupported, use %dHz\n",
1304				 report_rate, tsdata->report_rate);
1305
1306		if (tsdata->version == EDT_M06)
1307			tsdata->report_rate /= 10;
1308
1309		regmap_write(tsdata->regmap, tsdata->reg_addr.reg_report_rate,
1310			     tsdata->report_rate);
1311	}
1312
1313	dev_dbg(&client->dev,
1314		"Model \"%s\", Rev. \"%s\", %dx%d sensors\n",
1315		tsdata->name, tsdata->fw_version, tsdata->num_x, tsdata->num_y);
1316
1317	input->name = tsdata->name;
1318	input->id.bustype = BUS_I2C;
1319	input->dev.parent = &client->dev;
1320
1321	input_set_abs_params(input, ABS_MT_POSITION_X,
1322			     0, tsdata->num_x * 64 - 1, 0, 0);
1323	input_set_abs_params(input, ABS_MT_POSITION_Y,
1324			     0, tsdata->num_y * 64 - 1, 0, 0);
1325
1326	touchscreen_parse_properties(input, true, &tsdata->prop);
1327
1328	error = input_mt_init_slots(input, tsdata->max_support_points,
1329				    INPUT_MT_DIRECT);
1330	if (error) {
1331		dev_err(&client->dev, "Unable to init MT slots.\n");
1332		return error;
1333	}
1334
 
 
 
1335	irq_flags = irq_get_trigger_type(client->irq);
1336	if (irq_flags == IRQF_TRIGGER_NONE)
1337		irq_flags = IRQF_TRIGGER_FALLING;
1338	irq_flags |= IRQF_ONESHOT;
1339
1340	error = devm_request_threaded_irq(&client->dev, client->irq,
1341					  NULL, edt_ft5x06_ts_isr, irq_flags,
1342					  client->name, tsdata);
1343	if (error) {
1344		dev_err(&client->dev, "Unable to request touchscreen IRQ.\n");
1345		return error;
1346	}
1347
 
 
 
 
1348	error = input_register_device(input);
1349	if (error)
1350		return error;
1351
1352	edt_ft5x06_ts_prepare_debugfs(tsdata, dev_driver_string(&client->dev));
 
1353
1354	dev_dbg(&client->dev,
1355		"EDT FT5x06 initialized: IRQ %d, WAKE pin %d, Reset pin %d.\n",
1356		client->irq,
1357		tsdata->wake_gpio ? desc_to_gpio(tsdata->wake_gpio) : -1,
1358		tsdata->reset_gpio ? desc_to_gpio(tsdata->reset_gpio) : -1);
1359
1360	return 0;
 
 
 
 
1361}
1362
1363static void edt_ft5x06_ts_remove(struct i2c_client *client)
1364{
1365	struct edt_ft5x06_ts_data *tsdata = i2c_get_clientdata(client);
1366
1367	edt_ft5x06_ts_teardown_debugfs(tsdata);
 
 
 
1368}
1369
1370static int edt_ft5x06_ts_suspend(struct device *dev)
1371{
1372	struct i2c_client *client = to_i2c_client(dev);
1373	struct edt_ft5x06_ts_data *tsdata = i2c_get_clientdata(client);
1374	struct gpio_desc *reset_gpio = tsdata->reset_gpio;
1375	int ret;
1376
1377	if (device_may_wakeup(dev))
1378		return 0;
1379
1380	if (tsdata->suspend_mode == EDT_PMODE_NOT_SUPPORTED)
1381		return 0;
1382
1383	/* Enter hibernate mode. */
1384	ret = regmap_write(tsdata->regmap, PMOD_REGISTER_OPMODE,
1385			   PMOD_REGISTER_HIBERNATE);
1386	if (ret)
1387		dev_warn(dev, "Failed to set hibernate mode\n");
1388
1389	if (tsdata->suspend_mode == EDT_PMODE_HIBERNATE)
1390		return 0;
1391
1392	/*
1393	 * Power-off according the datasheet. Cut the power may leaf the irq
1394	 * line in an undefined state depending on the host pull resistor
1395	 * settings. Disable the irq to avoid adjusting each host till the
1396	 * device is back in a full functional state.
1397	 */
1398	disable_irq(tsdata->client->irq);
1399
1400	gpiod_set_value_cansleep(reset_gpio, 1);
1401	usleep_range(1000, 2000);
1402
1403	ret = regulator_disable(tsdata->vcc);
1404	if (ret)
1405		dev_warn(dev, "Failed to disable vcc\n");
1406	ret = regulator_disable(tsdata->iovcc);
1407	if (ret)
1408		dev_warn(dev, "Failed to disable iovcc\n");
1409
1410	return 0;
1411}
1412
1413static int edt_ft5x06_ts_resume(struct device *dev)
1414{
1415	struct i2c_client *client = to_i2c_client(dev);
1416	struct edt_ft5x06_ts_data *tsdata = i2c_get_clientdata(client);
1417	int ret = 0;
1418
1419	if (device_may_wakeup(dev))
1420		return 0;
1421
1422	if (tsdata->suspend_mode == EDT_PMODE_NOT_SUPPORTED)
1423		return 0;
1424
1425	if (tsdata->suspend_mode == EDT_PMODE_POWEROFF) {
1426		struct gpio_desc *reset_gpio = tsdata->reset_gpio;
1427
1428		/*
1429		 * We can't check if the regulator is a dummy or a real
1430		 * regulator. So we need to specify the 5ms reset time (T_rst)
1431		 * here instead of the 100us T_rtp time. We also need to wait
1432		 * 300ms in case it was a real supply and the power was cutted
1433		 * of. Toggle the reset pin is also a way to exit the hibernate
1434		 * mode.
1435		 */
1436		gpiod_set_value_cansleep(reset_gpio, 1);
1437		usleep_range(5000, 6000);
1438
1439		ret = regulator_enable(tsdata->iovcc);
1440		if (ret) {
1441			dev_err(dev, "Failed to enable iovcc\n");
1442			return ret;
1443		}
1444
1445		/* Delay enabling VCC for > 10us (T_ivd) after IOVCC */
1446		usleep_range(10, 100);
1447
1448		ret = regulator_enable(tsdata->vcc);
1449		if (ret) {
1450			dev_err(dev, "Failed to enable vcc\n");
1451			regulator_disable(tsdata->iovcc);
1452			return ret;
1453		}
1454
1455		usleep_range(1000, 2000);
1456		gpiod_set_value_cansleep(reset_gpio, 0);
1457		msleep(300);
1458
1459		edt_ft5x06_restore_reg_parameters(tsdata);
1460		enable_irq(tsdata->client->irq);
1461
1462		if (tsdata->factory_mode)
1463			ret = edt_ft5x06_factory_mode(tsdata);
1464	} else {
1465		struct gpio_desc *wake_gpio = tsdata->wake_gpio;
1466
1467		gpiod_set_value_cansleep(wake_gpio, 0);
1468		usleep_range(5000, 6000);
1469		gpiod_set_value_cansleep(wake_gpio, 1);
1470	}
1471
1472	return ret;
1473}
1474
1475static DEFINE_SIMPLE_DEV_PM_OPS(edt_ft5x06_ts_pm_ops,
1476				edt_ft5x06_ts_suspend, edt_ft5x06_ts_resume);
1477
1478static const struct edt_i2c_chip_data edt_ft5x06_data = {
1479	.max_support_points = 5,
1480};
1481
1482static const struct edt_i2c_chip_data edt_ft5452_data = {
1483	.max_support_points = 5,
1484};
1485
1486static const struct edt_i2c_chip_data edt_ft5506_data = {
1487	.max_support_points = 10,
1488};
1489
1490static const struct edt_i2c_chip_data edt_ft6236_data = {
1491	.max_support_points = 2,
1492};
1493
1494static const struct edt_i2c_chip_data edt_ft8201_data = {
1495	.max_support_points = 10,
1496};
1497
1498static const struct edt_i2c_chip_data edt_ft8719_data = {
1499	.max_support_points = 10,
1500};
1501
1502static const struct i2c_device_id edt_ft5x06_ts_id[] = {
1503	{ .name = "edt-ft5x06", .driver_data = (long)&edt_ft5x06_data },
1504	{ .name = "edt-ft5506", .driver_data = (long)&edt_ft5506_data },
1505	{ .name = "ev-ft5726", .driver_data = (long)&edt_ft5506_data },
1506	{ .name = "ft5452", .driver_data = (long)&edt_ft5452_data },
1507	/* Note no edt- prefix for compatibility with the ft6236.c driver */
1508	{ .name = "ft6236", .driver_data = (long)&edt_ft6236_data },
1509	{ .name = "ft8201", .driver_data = (long)&edt_ft8201_data },
1510	{ .name = "ft8719", .driver_data = (long)&edt_ft8719_data },
1511	{ /* sentinel */ }
1512};
1513MODULE_DEVICE_TABLE(i2c, edt_ft5x06_ts_id);
1514
 
1515static const struct of_device_id edt_ft5x06_of_match[] = {
1516	{ .compatible = "edt,edt-ft5206", .data = &edt_ft5x06_data },
1517	{ .compatible = "edt,edt-ft5306", .data = &edt_ft5x06_data },
1518	{ .compatible = "edt,edt-ft5406", .data = &edt_ft5x06_data },
1519	{ .compatible = "edt,edt-ft5506", .data = &edt_ft5506_data },
1520	{ .compatible = "evervision,ev-ft5726", .data = &edt_ft5506_data },
1521	{ .compatible = "focaltech,ft5426", .data = &edt_ft5506_data },
1522	{ .compatible = "focaltech,ft5452", .data = &edt_ft5452_data },
1523	/* Note focaltech vendor prefix for compatibility with ft6236.c */
1524	{ .compatible = "focaltech,ft6236", .data = &edt_ft6236_data },
1525	{ .compatible = "focaltech,ft8201", .data = &edt_ft8201_data },
1526	{ .compatible = "focaltech,ft8719", .data = &edt_ft8719_data },
1527	{ /* sentinel */ }
1528};
1529MODULE_DEVICE_TABLE(of, edt_ft5x06_of_match);
 
1530
1531static struct i2c_driver edt_ft5x06_ts_driver = {
1532	.driver = {
1533		.name = "edt_ft5x06",
1534		.dev_groups = edt_ft5x06_groups,
1535		.of_match_table = edt_ft5x06_of_match,
1536		.pm = pm_sleep_ptr(&edt_ft5x06_ts_pm_ops),
1537		.probe_type = PROBE_PREFER_ASYNCHRONOUS,
1538	},
1539	.id_table = edt_ft5x06_ts_id,
1540	.probe    = edt_ft5x06_ts_probe,
1541	.remove   = edt_ft5x06_ts_remove,
1542};
1543
1544module_i2c_driver(edt_ft5x06_ts_driver);
1545
1546MODULE_AUTHOR("Simon Budig <simon.budig@kernelconcepts.de>");
1547MODULE_DESCRIPTION("EDT FT5x06 I2C Touchscreen Driver");
1548MODULE_LICENSE("GPL v2");