Input: ads7846 - fix uninitialized var warning
[deliverable/linux.git] / drivers / input / touchscreen / ads7846.c
CommitLineData
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1/*
2 * ADS7846 based touchscreen and sensor driver
3 *
4 * Copyright (c) 2005 David Brownell
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5 * Copyright (c) 2006 Nokia Corporation
6 * Various changes: Imre Deak <imre.deak@nokia.com>
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7 *
8 * Using code from:
9 * - corgi_ts.c
10 * Copyright (C) 2004-2005 Richard Purdie
11 * - omap_ts.[hc], ads7846.h, ts_osk.c
12 * Copyright (C) 2002 MontaVista Software
13 * Copyright (C) 2004 Texas Instruments
14 * Copyright (C) 2005 Dirk Behme
15 *
16 * This program is free software; you can redistribute it and/or modify
17 * it under the terms of the GNU General Public License version 2 as
18 * published by the Free Software Foundation.
19 */
2c8dc071 20#include <linux/hwmon.h>
ffa458c1 21#include <linux/init.h>
2c8dc071 22#include <linux/err.h>
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23#include <linux/delay.h>
24#include <linux/input.h>
25#include <linux/interrupt.h>
26#include <linux/slab.h>
27#include <linux/spi/spi.h>
28#include <linux/spi/ads7846.h>
3ac8bf07 29#include <asm/irq.h>
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30
31#ifdef CONFIG_ARM
32#include <asm/mach-types.h>
33#ifdef CONFIG_ARCH_OMAP
34#include <asm/arch/gpio.h>
35#endif
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36#endif
37
38
39/*
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40 * This code has been heavily tested on a Nokia 770, and lightly
41 * tested on other ads7846 devices (OSK/Mistral, Lubbock).
bff0de5f 42 * TSC2046 is just newer ads7846 silicon.
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43 * Support for ads7843 tested on Atmel at91sam926x-EK.
44 * Support for ads7845 has only been stubbed in.
ffa458c1 45 *
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46 * IRQ handling needs a workaround because of a shortcoming in handling
47 * edge triggered IRQs on some platforms like the OMAP1/2. These
48 * platforms don't handle the ARM lazy IRQ disabling properly, thus we
49 * have to maintain our own SW IRQ disabled status. This should be
50 * removed as soon as the affected platform's IRQ handling is fixed.
51 *
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52 * app note sbaa036 talks in more detail about accurate sampling...
53 * that ought to help in situations like LCDs inducing noise (which
54 * can also be helped by using synch signals) and more generally.
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55 * This driver tries to utilize the measures described in the app
56 * note. The strength of filtering can be set in the board-* specific
57 * files.
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58 */
59
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60#define TS_POLL_DELAY (1 * 1000000) /* ns delay before the first sample */
61#define TS_POLL_PERIOD (5 * 1000000) /* ns delay between samples */
ffa458c1 62
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63/* this driver doesn't aim at the peak continuous sample rate */
64#define SAMPLE_BITS (8 /*cmd*/ + 16 /*sample*/ + 2 /* before, after */)
65
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66struct ts_event {
67 /* For portability, we can't read 12 bit values using SPI (which
68 * would make the controller deliver them as native byteorder u16
d93f70b2 69 * with msbs zeroed). Instead, we read them as two 8-bit values,
da970e69 70 * *** WHICH NEED BYTESWAPPING *** and range adjustment.
ffa458c1 71 */
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72 u16 x;
73 u16 y;
74 u16 z1, z2;
2c8dc071 75 int ignore;
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76};
77
78struct ads7846 {
a90f7e98 79 struct input_dev *input;
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80 char phys[32];
81
82 struct spi_device *spi;
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83
84#if defined(CONFIG_HWMON) || defined(CONFIG_HWMON_MODULE)
8dd51650 85 struct attribute_group *attr_group;
1beeffe4 86 struct device *hwmon;
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87#endif
88
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89 u16 model;
90 u16 vref_delay_usecs;
91 u16 x_plate_ohms;
d5b415c9 92 u16 pressure_max;
ffa458c1 93
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94 u8 read_x, read_y, read_z1, read_z2, pwrdown;
95 u16 dummy; /* for the pwrdown read */
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96 struct ts_event tc;
97
e4f48861 98 struct spi_transfer xfer[18];
0b7018aa 99 struct spi_message msg[5];
d5b415c9 100 struct spi_message *last_msg;
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101 int msg_idx;
102 int read_cnt;
d5b415c9 103 int read_rep;
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104 int last_read;
105
106 u16 debounce_max;
107 u16 debounce_tol;
d5b415c9 108 u16 debounce_rep;
ffa458c1 109
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110 u16 penirq_recheck_delay_usecs;
111
ffa458c1 112 spinlock_t lock;
1936d590 113 struct hrtimer timer;
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114 unsigned pendown:1; /* P: lock */
115 unsigned pending:1; /* P: lock */
116// FIXME remove "irq_disabled"
117 unsigned irq_disabled:1; /* P: lock */
7de90a8c 118 unsigned disabled:1;
fbb38e30 119 unsigned is_suspended:1;
c9e617a5 120
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121 int (*filter)(void *data, int data_idx, int *val);
122 void *filter_data;
123 void (*filter_cleanup)(void *data);
c9e617a5 124 int (*get_pendown_state)(void);
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125};
126
127/* leave chip selected when we're done, for quicker re-select? */
128#if 0
129#define CS_CHANGE(xfer) ((xfer).cs_change = 1)
130#else
131#define CS_CHANGE(xfer) ((xfer).cs_change = 0)
132#endif
133
134/*--------------------------------------------------------------------------*/
135
136/* The ADS7846 has touchscreen and other sensors.
137 * Earlier ads784x chips are somewhat compatible.
138 */
139#define ADS_START (1 << 7)
140#define ADS_A2A1A0_d_y (1 << 4) /* differential */
141#define ADS_A2A1A0_d_z1 (3 << 4) /* differential */
142#define ADS_A2A1A0_d_z2 (4 << 4) /* differential */
143#define ADS_A2A1A0_d_x (5 << 4) /* differential */
144#define ADS_A2A1A0_temp0 (0 << 4) /* non-differential */
145#define ADS_A2A1A0_vbatt (2 << 4) /* non-differential */
146#define ADS_A2A1A0_vaux (6 << 4) /* non-differential */
147#define ADS_A2A1A0_temp1 (7 << 4) /* non-differential */
148#define ADS_8_BIT (1 << 3)
149#define ADS_12_BIT (0 << 3)
150#define ADS_SER (1 << 2) /* non-differential */
151#define ADS_DFR (0 << 2) /* differential */
152#define ADS_PD10_PDOWN (0 << 0) /* lowpower mode + penirq */
153#define ADS_PD10_ADC_ON (1 << 0) /* ADC on */
154#define ADS_PD10_REF_ON (2 << 0) /* vREF on + penirq */
155#define ADS_PD10_ALL_ON (3 << 0) /* ADC + vREF on */
156
157#define MAX_12BIT ((1<<12)-1)
158
159/* leave ADC powered up (disables penirq) between differential samples */
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160#define READ_12BIT_DFR(x, adc, vref) (ADS_START | ADS_A2A1A0_d_ ## x \
161 | ADS_12_BIT | ADS_DFR | \
162 (adc ? ADS_PD10_ADC_ON : 0) | (vref ? ADS_PD10_REF_ON : 0))
ffa458c1 163
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164#define READ_Y(vref) (READ_12BIT_DFR(y, 1, vref))
165#define READ_Z1(vref) (READ_12BIT_DFR(z1, 1, vref))
166#define READ_Z2(vref) (READ_12BIT_DFR(z2, 1, vref))
53a0ef89 167
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168#define READ_X(vref) (READ_12BIT_DFR(x, 1, vref))
169#define PWRDOWN (READ_12BIT_DFR(y, 0, 0)) /* LAST */
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170
171/* single-ended samples need to first power up reference voltage;
172 * we leave both ADC and VREF powered
173 */
174#define READ_12BIT_SER(x) (ADS_START | ADS_A2A1A0_ ## x \
175 | ADS_12_BIT | ADS_SER)
176
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177#define REF_ON (READ_12BIT_DFR(x, 1, 1))
178#define REF_OFF (READ_12BIT_DFR(y, 0, 0))
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179
180/*--------------------------------------------------------------------------*/
181
182/*
183 * Non-touchscreen sensors only use single-ended conversions.
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184 * The range is GND..vREF. The ads7843 and ads7835 must use external vREF;
185 * ads7846 lets that pin be unconnected, to use internal vREF.
ffa458c1 186 */
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187static unsigned vREF_mV;
188module_param(vREF_mV, uint, 0);
189MODULE_PARM_DESC(vREF_mV, "external vREF voltage, in milliVolts");
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190
191struct ser_req {
d93f70b2 192 u8 ref_on;
ffa458c1 193 u8 command;
d93f70b2 194 u8 ref_off;
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195 u16 scratch;
196 __be16 sample;
197 struct spi_message msg;
198 struct spi_transfer xfer[6];
199};
200
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201static void ads7846_enable(struct ads7846 *ts);
202static void ads7846_disable(struct ads7846 *ts);
203
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204static int device_suspended(struct device *dev)
205{
206 struct ads7846 *ts = dev_get_drvdata(dev);
fbb38e30 207 return ts->is_suspended || ts->disabled;
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208}
209
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210static int ads7846_read12_ser(struct device *dev, unsigned command)
211{
212 struct spi_device *spi = to_spi_device(dev);
213 struct ads7846 *ts = dev_get_drvdata(dev);
e94b1766 214 struct ser_req *req = kzalloc(sizeof *req, GFP_KERNEL);
ffa458c1 215 int status;
05be5fc4 216 int uninitialized_var(sample);
2c8dc071 217 int use_internal;
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218
219 if (!req)
220 return -ENOMEM;
221
0b7018aa 222 spi_message_init(&req->msg);
8275c642 223
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224 /* FIXME boards with ads7846 might use external vref instead ... */
225 use_internal = (ts->model == 7846);
226
227 /* maybe turn on internal vREF, and let it settle */
228 if (use_internal) {
229 req->ref_on = REF_ON;
230 req->xfer[0].tx_buf = &req->ref_on;
231 req->xfer[0].len = 1;
232 spi_message_add_tail(&req->xfer[0], &req->msg);
233
234 req->xfer[1].rx_buf = &req->scratch;
235 req->xfer[1].len = 2;
236
237 /* for 1uF, settle for 800 usec; no cap, 100 usec. */
238 req->xfer[1].delay_usecs = ts->vref_delay_usecs;
239 spi_message_add_tail(&req->xfer[1], &req->msg);
240 }
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241
242 /* take sample */
243 req->command = (u8) command;
244 req->xfer[2].tx_buf = &req->command;
245 req->xfer[2].len = 1;
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246 spi_message_add_tail(&req->xfer[2], &req->msg);
247
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248 req->xfer[3].rx_buf = &req->sample;
249 req->xfer[3].len = 2;
2c8dc071 250 spi_message_add_tail(&req->xfer[3], &req->msg);
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251
252 /* REVISIT: take a few more samples, and compare ... */
253
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254 /* converter in low power mode & enable PENIRQ */
255 req->ref_off = PWRDOWN;
256 req->xfer[4].tx_buf = &req->ref_off;
257 req->xfer[4].len = 1;
258 spi_message_add_tail(&req->xfer[4], &req->msg);
259
260 req->xfer[5].rx_buf = &req->scratch;
261 req->xfer[5].len = 2;
262 CS_CHANGE(req->xfer[5]);
263 spi_message_add_tail(&req->xfer[5], &req->msg);
ffa458c1 264
c9e617a5 265 ts->irq_disabled = 1;
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266 disable_irq(spi->irq);
267 status = spi_sync(spi, &req->msg);
c9e617a5 268 ts->irq_disabled = 0;
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269 enable_irq(spi->irq);
270
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271 if (status == 0) {
272 /* on-wire is a must-ignore bit, a BE12 value, then padding */
273 sample = be16_to_cpu(req->sample);
274 sample = sample >> 3;
275 sample &= 0x0fff;
276 }
ffa458c1 277
9084533e 278 kfree(req);
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279 return status ? status : sample;
280}
281
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282#if defined(CONFIG_HWMON) || defined(CONFIG_HWMON_MODULE)
283
284#define SHOW(name, var, adjust) static ssize_t \
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285name ## _show(struct device *dev, struct device_attribute *attr, char *buf) \
286{ \
2c8dc071 287 struct ads7846 *ts = dev_get_drvdata(dev); \
ffa458c1 288 ssize_t v = ads7846_read12_ser(dev, \
2c8dc071 289 READ_12BIT_SER(var) | ADS_PD10_ALL_ON); \
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290 if (v < 0) \
291 return v; \
2c8dc071 292 return sprintf(buf, "%u\n", adjust(ts, v)); \
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293} \
294static DEVICE_ATTR(name, S_IRUGO, name ## _show, NULL);
295
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296
297/* Sysfs conventions report temperatures in millidegrees Celcius.
298 * ADS7846 could use the low-accuracy two-sample scheme, but can't do the high
299 * accuracy scheme without calibration data. For now we won't try either;
300 * userspace sees raw sensor values, and must scale/calibrate appropriately.
301 */
302static inline unsigned null_adjust(struct ads7846 *ts, ssize_t v)
303{
304 return v;
305}
306
307SHOW(temp0, temp0, null_adjust) /* temp1_input */
308SHOW(temp1, temp1, null_adjust) /* temp2_input */
309
310
311/* sysfs conventions report voltages in millivolts. We can convert voltages
312 * if we know vREF. userspace may need to scale vAUX to match the board's
313 * external resistors; we assume that vBATT only uses the internal ones.
314 */
315static inline unsigned vaux_adjust(struct ads7846 *ts, ssize_t v)
316{
317 unsigned retval = v;
318
319 /* external resistors may scale vAUX into 0..vREF */
320 retval *= vREF_mV;
321 retval = retval >> 12;
322 return retval;
323}
324
325static inline unsigned vbatt_adjust(struct ads7846 *ts, ssize_t v)
326{
327 unsigned retval = vaux_adjust(ts, v);
328
329 /* ads7846 has a resistor ladder to scale this signal down */
330 if (ts->model == 7846)
331 retval *= 4;
332 return retval;
333}
334
335SHOW(in0_input, vaux, vaux_adjust)
336SHOW(in1_input, vbatt, vbatt_adjust)
337
338
339static struct attribute *ads7846_attributes[] = {
340 &dev_attr_temp0.attr,
341 &dev_attr_temp1.attr,
342 &dev_attr_in0_input.attr,
343 &dev_attr_in1_input.attr,
344 NULL,
345};
346
347static struct attribute_group ads7846_attr_group = {
348 .attrs = ads7846_attributes,
349};
350
351static struct attribute *ads7843_attributes[] = {
352 &dev_attr_in0_input.attr,
353 &dev_attr_in1_input.attr,
354 NULL,
355};
356
357static struct attribute_group ads7843_attr_group = {
358 .attrs = ads7843_attributes,
359};
360
361static struct attribute *ads7845_attributes[] = {
362 &dev_attr_in0_input.attr,
363 NULL,
364};
365
366static struct attribute_group ads7845_attr_group = {
367 .attrs = ads7845_attributes,
368};
369
370static int ads784x_hwmon_register(struct spi_device *spi, struct ads7846 *ts)
371{
1beeffe4 372 struct device *hwmon;
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373 int err;
374
375 /* hwmon sensors need a reference voltage */
376 switch (ts->model) {
377 case 7846:
378 if (!vREF_mV) {
379 dev_dbg(&spi->dev, "assuming 2.5V internal vREF\n");
380 vREF_mV = 2500;
381 }
382 break;
383 case 7845:
384 case 7843:
385 if (!vREF_mV) {
386 dev_warn(&spi->dev,
387 "external vREF for ADS%d not specified\n",
388 ts->model);
389 return 0;
390 }
391 break;
392 }
393
394 /* different chips have different sensor groups */
395 switch (ts->model) {
396 case 7846:
397 ts->attr_group = &ads7846_attr_group;
398 break;
399 case 7845:
400 ts->attr_group = &ads7845_attr_group;
401 break;
402 case 7843:
403 ts->attr_group = &ads7843_attr_group;
404 break;
405 default:
406 dev_dbg(&spi->dev, "ADS%d not recognized\n", ts->model);
407 return 0;
408 }
409
410 err = sysfs_create_group(&spi->dev.kobj, ts->attr_group);
411 if (err)
412 return err;
413
414 hwmon = hwmon_device_register(&spi->dev);
415 if (IS_ERR(hwmon)) {
416 sysfs_remove_group(&spi->dev.kobj, ts->attr_group);
417 return PTR_ERR(hwmon);
418 }
419
420 ts->hwmon = hwmon;
421 return 0;
422}
423
424static void ads784x_hwmon_unregister(struct spi_device *spi,
425 struct ads7846 *ts)
426{
427 if (ts->hwmon) {
428 sysfs_remove_group(&spi->dev.kobj, ts->attr_group);
429 hwmon_device_unregister(ts->hwmon);
430 }
431}
432
433#else
434static inline int ads784x_hwmon_register(struct spi_device *spi,
435 struct ads7846 *ts)
436{
437 return 0;
438}
439
440static inline void ads784x_hwmon_unregister(struct spi_device *spi,
441 struct ads7846 *ts)
442{
443}
444#endif
ffa458c1 445
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446static int is_pen_down(struct device *dev)
447{
2c8dc071 448 struct ads7846 *ts = dev_get_drvdata(dev);
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449
450 return ts->pendown;
451}
452
453static ssize_t ads7846_pen_down_show(struct device *dev,
454 struct device_attribute *attr, char *buf)
455{
456 return sprintf(buf, "%u\n", is_pen_down(dev));
457}
458
459static DEVICE_ATTR(pen_down, S_IRUGO, ads7846_pen_down_show, NULL);
460
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461static ssize_t ads7846_disable_show(struct device *dev,
462 struct device_attribute *attr, char *buf)
463{
464 struct ads7846 *ts = dev_get_drvdata(dev);
465
466 return sprintf(buf, "%u\n", ts->disabled);
467}
468
469static ssize_t ads7846_disable_store(struct device *dev,
470 struct device_attribute *attr,
471 const char *buf, size_t count)
472{
473 struct ads7846 *ts = dev_get_drvdata(dev);
474 char *endp;
475 int i;
476
477 i = simple_strtoul(buf, &endp, 10);
478 spin_lock_irq(&ts->lock);
479
480 if (i)
481 ads7846_disable(ts);
482 else
483 ads7846_enable(ts);
484
485 spin_unlock_irq(&ts->lock);
486
487 return count;
488}
489
490static DEVICE_ATTR(disable, 0664, ads7846_disable_show, ads7846_disable_store);
491
2c8dc071 492static struct attribute *ads784x_attributes[] = {
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493 &dev_attr_pen_down.attr,
494 &dev_attr_disable.attr,
495 NULL,
496};
497
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498static struct attribute_group ads784x_attr_group = {
499 .attrs = ads784x_attributes,
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500};
501
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502/*--------------------------------------------------------------------------*/
503
504/*
505 * PENIRQ only kicks the timer. The timer only reissues the SPI transfer,
506 * to retrieve touchscreen status.
507 *
508 * The SPI transfer completion callback does the real work. It reports
509 * touchscreen events and reactivates the timer (or IRQ) as appropriate.
510 */
511
512static void ads7846_rx(void *ads)
513{
a90f7e98 514 struct ads7846 *ts = ads;
a90f7e98 515 unsigned Rt;
a90f7e98 516 u16 x, y, z1, z2;
ffa458c1 517
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518 /* ads7846_rx_val() did in-place conversion (including byteswap) from
519 * on-the-wire format as part of debouncing to get stable readings.
ffa458c1 520 */
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521 x = ts->tc.x;
522 y = ts->tc.y;
523 z1 = ts->tc.z1;
524 z2 = ts->tc.z2;
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525
526 /* range filtering */
527 if (x == MAX_12BIT)
528 x = 0;
529
15e3589e 530 if (likely(x && z1)) {
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531 /* compute touch pressure resistance using equation #2 */
532 Rt = z2;
533 Rt -= z1;
534 Rt *= x;
535 Rt *= ts->x_plate_ohms;
536 Rt /= z1;
537 Rt = (Rt + 2047) >> 12;
538 } else
539 Rt = 0;
540
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541 if (ts->model == 7843)
542 Rt = ts->pressure_max / 2;
543
d5b415c9 544 /* Sample found inconsistent by debouncing or pressure is beyond
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545 * the maximum. Don't report it to user space, repeat at least
546 * once more the measurement
547 */
d5b415c9 548 if (ts->tc.ignore || Rt > ts->pressure_max) {
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549#ifdef VERBOSE
550 pr_debug("%s: ignored %d pressure %d\n",
551 ts->spi->dev.bus_id, ts->tc.ignore, Rt);
552#endif
1936d590 553 hrtimer_start(&ts->timer, ktime_set(0, TS_POLL_PERIOD),
c9cb2e3d 554 HRTIMER_MODE_REL);
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555 return;
556 }
557
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558 /* Maybe check the pendown state before reporting. This discards
559 * false readings when the pen is lifted.
560 */
561 if (ts->penirq_recheck_delay_usecs) {
562 udelay(ts->penirq_recheck_delay_usecs);
563 if (!ts->get_pendown_state())
564 Rt = 0;
565 }
566
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567 /* NOTE: We can't rely on the pressure to determine the pen down
568 * state, even this controller has a pressure sensor. The pressure
569 * value can fluctuate for quite a while after lifting the pen and
570 * in some cases may not even settle at the expected value.
ffa458c1 571 *
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572 * The only safe way to check for the pen up condition is in the
573 * timer by reading the pen signal state (it's a GPIO _and_ IRQ).
ffa458c1 574 */
ffa458c1 575 if (Rt) {
15e3589e 576 struct input_dev *input = ts->input;
ae82d5ab 577
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578 if (!ts->pendown) {
579 input_report_key(input, BTN_TOUCH, 1);
580 ts->pendown = 1;
581#ifdef VERBOSE
582 dev_dbg(&ts->spi->dev, "DOWN\n");
ffa458c1 583#endif
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584 }
585 input_report_abs(input, ABS_X, x);
586 input_report_abs(input, ABS_Y, y);
587 input_report_abs(input, ABS_PRESSURE, Rt);
ffa458c1 588
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589 input_sync(input);
590#ifdef VERBOSE
591 dev_dbg(&ts->spi->dev, "%4d/%4d/%4d\n", x, y, Rt);
592#endif
593 }
ffa458c1 594
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595 hrtimer_start(&ts->timer, ktime_set(0, TS_POLL_PERIOD),
596 HRTIMER_MODE_REL);
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597}
598
da970e69 599static int ads7846_debounce(void *ads, int data_idx, int *val)
0b7018aa
ID
600{
601 struct ads7846 *ts = ads;
0b7018aa 602
da970e69
ID
603 if (!ts->read_cnt || (abs(ts->last_read - *val) > ts->debounce_tol)) {
604 /* Start over collecting consistent readings. */
605 ts->read_rep = 0;
d5b415c9
ID
606 /* Repeat it, if this was the first read or the read
607 * wasn't consistent enough. */
608 if (ts->read_cnt < ts->debounce_max) {
da970e69 609 ts->last_read = *val;
d5b415c9 610 ts->read_cnt++;
da970e69 611 return ADS7846_FILTER_REPEAT;
d5b415c9
ID
612 } else {
613 /* Maximum number of debouncing reached and still
614 * not enough number of consistent readings. Abort
615 * the whole sample, repeat it in the next sampling
616 * period.
617 */
d5b415c9 618 ts->read_cnt = 0;
da970e69 619 return ADS7846_FILTER_IGNORE;
d5b415c9 620 }
0b7018aa 621 } else {
d5b415c9
ID
622 if (++ts->read_rep > ts->debounce_rep) {
623 /* Got a good reading for this coordinate,
624 * go for the next one. */
d5b415c9
ID
625 ts->read_cnt = 0;
626 ts->read_rep = 0;
da970e69
ID
627 return ADS7846_FILTER_OK;
628 } else {
d5b415c9
ID
629 /* Read more values that are consistent. */
630 ts->read_cnt++;
da970e69
ID
631 return ADS7846_FILTER_REPEAT;
632 }
633 }
634}
635
636static int ads7846_no_filter(void *ads, int data_idx, int *val)
637{
638 return ADS7846_FILTER_OK;
639}
640
641static void ads7846_rx_val(void *ads)
642{
643 struct ads7846 *ts = ads;
644 struct spi_message *m;
645 struct spi_transfer *t;
646 u16 *rx_val;
647 int val;
648 int action;
649 int status;
650
651 m = &ts->msg[ts->msg_idx];
652 t = list_entry(m->transfers.prev, struct spi_transfer, transfer_list);
653 rx_val = t->rx_buf;
654
655 /* adjust: on-wire is a must-ignore bit, a BE12 value, then padding;
656 * built from two 8 bit values written msb-first.
657 */
658 val = be16_to_cpu(*rx_val) >> 3;
659
660 action = ts->filter(ts->filter_data, ts->msg_idx, &val);
661 switch (action) {
662 case ADS7846_FILTER_REPEAT:
663 break;
664 case ADS7846_FILTER_IGNORE:
665 ts->tc.ignore = 1;
666 /* Last message will contain ads7846_rx() as the
667 * completion function.
668 */
669 m = ts->last_msg;
670 break;
671 case ADS7846_FILTER_OK:
672 *rx_val = val;
673 ts->tc.ignore = 0;
674 m = &ts->msg[++ts->msg_idx];
675 break;
676 default:
677 BUG();
0b7018aa
ID
678 }
679 status = spi_async(ts->spi, m);
680 if (status)
681 dev_err(&ts->spi->dev, "spi_async --> %d\n",
682 status);
683}
684
c9cb2e3d 685static enum hrtimer_restart ads7846_timer(struct hrtimer *handle)
ffa458c1 686{
1936d590 687 struct ads7846 *ts = container_of(handle, struct ads7846, timer);
ffa458c1 688 int status = 0;
0b7018aa 689
c9e617a5
ID
690 spin_lock_irq(&ts->lock);
691
15e3589e
ID
692 if (unlikely(!ts->get_pendown_state() ||
693 device_suspended(&ts->spi->dev))) {
694 if (ts->pendown) {
695 struct input_dev *input = ts->input;
696
697 input_report_key(input, BTN_TOUCH, 0);
698 input_report_abs(input, ABS_PRESSURE, 0);
699 input_sync(input);
700
701 ts->pendown = 0;
702#ifdef VERBOSE
703 dev_dbg(&ts->spi->dev, "UP\n");
704#endif
705 }
706
9084533e 707 /* measurement cycle ended */
c9e617a5
ID
708 if (!device_suspended(&ts->spi->dev)) {
709 ts->irq_disabled = 0;
710 enable_irq(ts->spi->irq);
711 }
712 ts->pending = 0;
c9e617a5
ID
713 } else {
714 /* pen is still down, continue with the measurement */
715 ts->msg_idx = 0;
716 status = spi_async(ts->spi, &ts->msg[0]);
717 if (status)
718 dev_err(&ts->spi->dev, "spi_async --> %d\n", status);
719 }
720
721 spin_unlock_irq(&ts->lock);
1936d590 722 return HRTIMER_NORESTART;
0b7018aa
ID
723}
724
7d12e780 725static irqreturn_t ads7846_irq(int irq, void *handle)
0b7018aa
ID
726{
727 struct ads7846 *ts = handle;
728 unsigned long flags;
ffa458c1
DB
729
730 spin_lock_irqsave(&ts->lock, flags);
c9e617a5 731 if (likely(ts->get_pendown_state())) {
ffa458c1 732 if (!ts->irq_disabled) {
9084533e
DB
733 /* The ARM do_simple_IRQ() dispatcher doesn't act
734 * like the other dispatchers: it will report IRQs
735 * even after they've been disabled. We work around
736 * that here. (The "generic irq" framework may help...)
0b7018aa 737 */
ffa458c1
DB
738 ts->irq_disabled = 1;
739 disable_irq(ts->spi->irq);
0b7018aa 740 ts->pending = 1;
1936d590 741 hrtimer_start(&ts->timer, ktime_set(0, TS_POLL_DELAY),
c9cb2e3d 742 HRTIMER_MODE_REL);
0b7018aa 743 }
ffa458c1
DB
744 }
745 spin_unlock_irqrestore(&ts->lock, flags);
7de90a8c
ID
746
747 return IRQ_HANDLED;
ffa458c1
DB
748}
749
750/*--------------------------------------------------------------------------*/
751
7de90a8c
ID
752/* Must be called with ts->lock held */
753static void ads7846_disable(struct ads7846 *ts)
ffa458c1 754{
7de90a8c
ID
755 if (ts->disabled)
756 return;
ffa458c1 757
c9e617a5
ID
758 ts->disabled = 1;
759
ffa458c1 760 /* are we waiting for IRQ, or polling? */
c9e617a5
ID
761 if (!ts->pending) {
762 ts->irq_disabled = 1;
763 disable_irq(ts->spi->irq);
ffa458c1 764 } else {
c9e617a5
ID
765 /* the timer will run at least once more, and
766 * leave everything in a clean state, IRQ disabled
ffa458c1 767 */
c9e617a5 768 while (ts->pending) {
7de90a8c 769 spin_unlock_irq(&ts->lock);
c4febb94 770 msleep(1);
7de90a8c 771 spin_lock_irq(&ts->lock);
ffa458c1
DB
772 }
773 }
774
775 /* we know the chip's in lowpower mode since we always
776 * leave it that way after every request
777 */
778
7de90a8c
ID
779}
780
781/* Must be called with ts->lock held */
782static void ads7846_enable(struct ads7846 *ts)
783{
784 if (!ts->disabled)
785 return;
786
787 ts->disabled = 0;
788 ts->irq_disabled = 0;
789 enable_irq(ts->spi->irq);
790}
791
792static int ads7846_suspend(struct spi_device *spi, pm_message_t message)
793{
794 struct ads7846 *ts = dev_get_drvdata(&spi->dev);
795
796 spin_lock_irq(&ts->lock);
797
fbb38e30 798 ts->is_suspended = 1;
7de90a8c
ID
799 ads7846_disable(ts);
800
801 spin_unlock_irq(&ts->lock);
802
ffa458c1 803 return 0;
7de90a8c 804
ffa458c1
DB
805}
806
2e5a7bd9 807static int ads7846_resume(struct spi_device *spi)
ffa458c1 808{
2e5a7bd9 809 struct ads7846 *ts = dev_get_drvdata(&spi->dev);
ffa458c1 810
7de90a8c
ID
811 spin_lock_irq(&ts->lock);
812
fbb38e30 813 ts->is_suspended = 0;
7de90a8c
ID
814 ads7846_enable(ts);
815
816 spin_unlock_irq(&ts->lock);
817
ffa458c1
DB
818 return 0;
819}
820
2e5a7bd9 821static int __devinit ads7846_probe(struct spi_device *spi)
ffa458c1 822{
ffa458c1 823 struct ads7846 *ts;
a90f7e98 824 struct input_dev *input_dev;
2e5a7bd9 825 struct ads7846_platform_data *pdata = spi->dev.platform_data;
0b7018aa 826 struct spi_message *m;
ffa458c1 827 struct spi_transfer *x;
de2defd9 828 int vref;
a90f7e98 829 int err;
ffa458c1
DB
830
831 if (!spi->irq) {
2e5a7bd9 832 dev_dbg(&spi->dev, "no IRQ?\n");
ffa458c1
DB
833 return -ENODEV;
834 }
835
836 if (!pdata) {
2e5a7bd9 837 dev_dbg(&spi->dev, "no platform data?\n");
ffa458c1
DB
838 return -ENODEV;
839 }
840
841 /* don't exceed max specified sample rate */
d93f70b2 842 if (spi->max_speed_hz > (125000 * SAMPLE_BITS)) {
2e5a7bd9 843 dev_dbg(&spi->dev, "f(sample) %d KHz?\n",
d93f70b2 844 (spi->max_speed_hz/SAMPLE_BITS)/1000);
ffa458c1
DB
845 return -EINVAL;
846 }
847
9084533e
DB
848 /* REVISIT when the irq can be triggered active-low, or if for some
849 * reason the touchscreen isn't hooked up, we don't need to access
850 * the pendown state.
851 */
c9e617a5
ID
852 if (pdata->get_pendown_state == NULL) {
853 dev_dbg(&spi->dev, "no get_pendown_state function?\n");
854 return -EINVAL;
855 }
856
9084533e
DB
857 /* We'd set TX wordsize 8 bits and RX wordsize to 13 bits ... except
858 * that even if the hardware can do that, the SPI controller driver
859 * may not. So we stick to very-portable 8 bit words, both RX and TX.
ffa458c1 860 */
9084533e 861 spi->bits_per_word = 8;
230ffc8e 862 spi->mode = SPI_MODE_0;
7937e86a
ID
863 err = spi_setup(spi);
864 if (err < 0)
865 return err;
ffa458c1 866
a90f7e98
DT
867 ts = kzalloc(sizeof(struct ads7846), GFP_KERNEL);
868 input_dev = input_allocate_device();
869 if (!ts || !input_dev) {
870 err = -ENOMEM;
871 goto err_free_mem;
872 }
ffa458c1 873
2e5a7bd9 874 dev_set_drvdata(&spi->dev, ts);
ffa458c1
DB
875
876 ts->spi = spi;
a90f7e98 877 ts->input = input_dev;
ffa458c1 878
c9cb2e3d 879 hrtimer_init(&ts->timer, CLOCK_MONOTONIC, HRTIMER_MODE_REL);
ffa458c1
DB
880 ts->timer.function = ads7846_timer;
881
7de90a8c
ID
882 spin_lock_init(&ts->lock);
883
ffa458c1
DB
884 ts->model = pdata->model ? : 7846;
885 ts->vref_delay_usecs = pdata->vref_delay_usecs ? : 100;
886 ts->x_plate_ohms = pdata->x_plate_ohms ? : 400;
d5b415c9 887 ts->pressure_max = pdata->pressure_max ? : ~0;
da970e69
ID
888
889 if (pdata->filter != NULL) {
890 if (pdata->filter_init != NULL) {
891 err = pdata->filter_init(pdata, &ts->filter_data);
892 if (err < 0)
893 goto err_free_mem;
894 }
895 ts->filter = pdata->filter;
896 ts->filter_cleanup = pdata->filter_cleanup;
897 } else if (pdata->debounce_max) {
d5b415c9 898 ts->debounce_max = pdata->debounce_max;
da970e69
ID
899 if (ts->debounce_max < 2)
900 ts->debounce_max = 2;
d5b415c9
ID
901 ts->debounce_tol = pdata->debounce_tol;
902 ts->debounce_rep = pdata->debounce_rep;
da970e69
ID
903 ts->filter = ads7846_debounce;
904 ts->filter_data = ts;
d5b415c9 905 } else
da970e69 906 ts->filter = ads7846_no_filter;
c9e617a5 907 ts->get_pendown_state = pdata->get_pendown_state;
ffa458c1 908
1d25891f
SH
909 if (pdata->penirq_recheck_delay_usecs)
910 ts->penirq_recheck_delay_usecs =
911 pdata->penirq_recheck_delay_usecs;
912
a90f7e98 913 snprintf(ts->phys, sizeof(ts->phys), "%s/input0", spi->dev.bus_id);
ffa458c1 914
a90f7e98
DT
915 input_dev->name = "ADS784x Touchscreen";
916 input_dev->phys = ts->phys;
a5394fb0 917 input_dev->dev.parent = &spi->dev;
ffa458c1 918
7b19ada2
JS
919 input_dev->evbit[0] = BIT_MASK(EV_KEY) | BIT_MASK(EV_ABS);
920 input_dev->keybit[BIT_WORD(BTN_TOUCH)] = BIT_MASK(BTN_TOUCH);
a90f7e98 921 input_set_abs_params(input_dev, ABS_X,
ffa458c1
DB
922 pdata->x_min ? : 0,
923 pdata->x_max ? : MAX_12BIT,
924 0, 0);
a90f7e98 925 input_set_abs_params(input_dev, ABS_Y,
ffa458c1
DB
926 pdata->y_min ? : 0,
927 pdata->y_max ? : MAX_12BIT,
928 0, 0);
a90f7e98 929 input_set_abs_params(input_dev, ABS_PRESSURE,
ffa458c1
DB
930 pdata->pressure_min, pdata->pressure_max, 0, 0);
931
de2defd9
ID
932 vref = pdata->keep_vref_on;
933
ffa458c1
DB
934 /* set up the transfers to read touchscreen state; this assumes we
935 * use formula #2 for pressure, not #3.
936 */
0b7018aa 937 m = &ts->msg[0];
ffa458c1
DB
938 x = ts->xfer;
939
0b7018aa
ID
940 spi_message_init(m);
941
ffa458c1 942 /* y- still on; turn on only y+ (and ADC) */
de2defd9 943 ts->read_y = READ_Y(vref);
d93f70b2 944 x->tx_buf = &ts->read_y;
ffa458c1 945 x->len = 1;
0b7018aa 946 spi_message_add_tail(x, m);
d93f70b2 947
ffa458c1
DB
948 x++;
949 x->rx_buf = &ts->tc.y;
950 x->len = 2;
0b7018aa
ID
951 spi_message_add_tail(x, m);
952
e4f48861
SH
953 /* the first sample after switching drivers can be low quality;
954 * optionally discard it, using a second one after the signals
955 * have had enough time to stabilize.
956 */
957 if (pdata->settle_delay_usecs) {
958 x->delay_usecs = pdata->settle_delay_usecs;
959
960 x++;
961 x->tx_buf = &ts->read_y;
962 x->len = 1;
963 spi_message_add_tail(x, m);
964
965 x++;
966 x->rx_buf = &ts->tc.y;
967 x->len = 2;
968 spi_message_add_tail(x, m);
969 }
970
da970e69 971 m->complete = ads7846_rx_val;
0b7018aa
ID
972 m->context = ts;
973
974 m++;
975 spi_message_init(m);
976
977 /* turn y- off, x+ on, then leave in lowpower */
978 x++;
de2defd9 979 ts->read_x = READ_X(vref);
0b7018aa
ID
980 x->tx_buf = &ts->read_x;
981 x->len = 1;
982 spi_message_add_tail(x, m);
983
984 x++;
985 x->rx_buf = &ts->tc.x;
986 x->len = 2;
987 spi_message_add_tail(x, m);
988
e4f48861
SH
989 /* ... maybe discard first sample ... */
990 if (pdata->settle_delay_usecs) {
991 x->delay_usecs = pdata->settle_delay_usecs;
992
993 x++;
994 x->tx_buf = &ts->read_x;
995 x->len = 1;
996 spi_message_add_tail(x, m);
997
998 x++;
999 x->rx_buf = &ts->tc.x;
1000 x->len = 2;
1001 spi_message_add_tail(x, m);
1002 }
1003
da970e69 1004 m->complete = ads7846_rx_val;
0b7018aa 1005 m->context = ts;
ffa458c1
DB
1006
1007 /* turn y+ off, x- on; we'll use formula #2 */
1008 if (ts->model == 7846) {
0b7018aa
ID
1009 m++;
1010 spi_message_init(m);
1011
d93f70b2 1012 x++;
de2defd9 1013 ts->read_z1 = READ_Z1(vref);
d93f70b2 1014 x->tx_buf = &ts->read_z1;
ffa458c1 1015 x->len = 1;
0b7018aa 1016 spi_message_add_tail(x, m);
d93f70b2 1017
ffa458c1
DB
1018 x++;
1019 x->rx_buf = &ts->tc.z1;
1020 x->len = 2;
0b7018aa
ID
1021 spi_message_add_tail(x, m);
1022
e4f48861
SH
1023 /* ... maybe discard first sample ... */
1024 if (pdata->settle_delay_usecs) {
1025 x->delay_usecs = pdata->settle_delay_usecs;
1026
1027 x++;
1028 x->tx_buf = &ts->read_z1;
1029 x->len = 1;
1030 spi_message_add_tail(x, m);
1031
1032 x++;
1033 x->rx_buf = &ts->tc.z1;
1034 x->len = 2;
1035 spi_message_add_tail(x, m);
1036 }
1037
da970e69 1038 m->complete = ads7846_rx_val;
0b7018aa
ID
1039 m->context = ts;
1040
1041 m++;
1042 spi_message_init(m);
ffa458c1 1043
d93f70b2 1044 x++;
de2defd9 1045 ts->read_z2 = READ_Z2(vref);
d93f70b2 1046 x->tx_buf = &ts->read_z2;
ffa458c1 1047 x->len = 1;
0b7018aa 1048 spi_message_add_tail(x, m);
d93f70b2 1049
ffa458c1
DB
1050 x++;
1051 x->rx_buf = &ts->tc.z2;
1052 x->len = 2;
0b7018aa 1053 spi_message_add_tail(x, m);
ffa458c1 1054
e4f48861
SH
1055 /* ... maybe discard first sample ... */
1056 if (pdata->settle_delay_usecs) {
1057 x->delay_usecs = pdata->settle_delay_usecs;
1058
1059 x++;
1060 x->tx_buf = &ts->read_z2;
1061 x->len = 1;
1062 spi_message_add_tail(x, m);
1063
1064 x++;
1065 x->rx_buf = &ts->tc.z2;
1066 x->len = 2;
1067 spi_message_add_tail(x, m);
1068 }
1069
da970e69 1070 m->complete = ads7846_rx_val;
0b7018aa
ID
1071 m->context = ts;
1072 }
53a0ef89
ID
1073
1074 /* power down */
0b7018aa
ID
1075 m++;
1076 spi_message_init(m);
1077
53a0ef89
ID
1078 x++;
1079 ts->pwrdown = PWRDOWN;
1080 x->tx_buf = &ts->pwrdown;
1081 x->len = 1;
0b7018aa 1082 spi_message_add_tail(x, m);
53a0ef89
ID
1083
1084 x++;
1085 x->rx_buf = &ts->dummy;
1086 x->len = 2;
d93f70b2 1087 CS_CHANGE(*x);
0b7018aa 1088 spi_message_add_tail(x, m);
ffa458c1 1089
0b7018aa
ID
1090 m->complete = ads7846_rx;
1091 m->context = ts;
ffa458c1 1092
d5b415c9
ID
1093 ts->last_msg = m;
1094
dace1453 1095 if (request_irq(spi->irq, ads7846_irq, IRQF_TRIGGER_FALLING,
9084533e 1096 spi->dev.driver->name, ts)) {
2e5a7bd9 1097 dev_dbg(&spi->dev, "irq %d busy?\n", spi->irq);
a90f7e98 1098 err = -EBUSY;
da970e69 1099 goto err_cleanup_filter;
ffa458c1 1100 }
ffa458c1 1101
2c8dc071
DB
1102 err = ads784x_hwmon_register(spi, ts);
1103 if (err)
1104 goto err_free_irq;
1105
2e5a7bd9 1106 dev_info(&spi->dev, "touchscreen, irq %d\n", spi->irq);
ffa458c1 1107
2c8dc071 1108 /* take a first sample, leaving nPENIRQ active and vREF off; avoid
ffa458c1
DB
1109 * the touchscreen, in case it's not connected.
1110 */
2e5a7bd9 1111 (void) ads7846_read12_ser(&spi->dev,
ffa458c1
DB
1112 READ_12BIT_SER(vaux) | ADS_PD10_ALL_ON);
1113
2c8dc071 1114 err = sysfs_create_group(&spi->dev.kobj, &ads784x_attr_group);
8dd51650 1115 if (err)
2c8dc071 1116 goto err_remove_hwmon;
7de90a8c 1117
a90f7e98
DT
1118 err = input_register_device(input_dev);
1119 if (err)
8dd51650 1120 goto err_remove_attr_group;
a90f7e98 1121
ffa458c1 1122 return 0;
a90f7e98 1123
8dd51650 1124 err_remove_attr_group:
2c8dc071
DB
1125 sysfs_remove_group(&spi->dev.kobj, &ads784x_attr_group);
1126 err_remove_hwmon:
1127 ads784x_hwmon_unregister(spi, ts);
8dd51650 1128 err_free_irq:
a90f7e98 1129 free_irq(spi->irq, ts);
da970e69
ID
1130 err_cleanup_filter:
1131 if (ts->filter_cleanup)
1132 ts->filter_cleanup(ts->filter_data);
a90f7e98
DT
1133 err_free_mem:
1134 input_free_device(input_dev);
1135 kfree(ts);
1136 return err;
ffa458c1
DB
1137}
1138
2e5a7bd9 1139static int __devexit ads7846_remove(struct spi_device *spi)
ffa458c1 1140{
2e5a7bd9 1141 struct ads7846 *ts = dev_get_drvdata(&spi->dev);
ffa458c1 1142
2c8dc071 1143 ads784x_hwmon_unregister(spi, ts);
7de90a8c
ID
1144 input_unregister_device(ts->input);
1145
2e5a7bd9 1146 ads7846_suspend(spi, PMSG_SUSPEND);
ffa458c1 1147
2c8dc071 1148 sysfs_remove_group(&spi->dev.kobj, &ads784x_attr_group);
ffa458c1 1149
7de90a8c 1150 free_irq(ts->spi->irq, ts);
c9e617a5
ID
1151 /* suspend left the IRQ disabled */
1152 enable_irq(ts->spi->irq);
7de90a8c 1153
da970e69
ID
1154 if (ts->filter_cleanup)
1155 ts->filter_cleanup(ts->filter_data);
1156
ffa458c1
DB
1157 kfree(ts);
1158
2e5a7bd9 1159 dev_dbg(&spi->dev, "unregistered touchscreen\n");
ffa458c1
DB
1160 return 0;
1161}
1162
2e5a7bd9
DB
1163static struct spi_driver ads7846_driver = {
1164 .driver = {
1165 .name = "ads7846",
1166 .bus = &spi_bus_type,
1167 .owner = THIS_MODULE,
1168 },
ffa458c1 1169 .probe = ads7846_probe,
2e5a7bd9 1170 .remove = __devexit_p(ads7846_remove),
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1171 .suspend = ads7846_suspend,
1172 .resume = ads7846_resume,
1173};
1174
1175static int __init ads7846_init(void)
1176{
1177 /* grr, board-specific init should stay out of drivers!! */
1178
1179#ifdef CONFIG_ARCH_OMAP
1180 if (machine_is_omap_osk()) {
1181 /* GPIO4 = PENIRQ; GPIO6 = BUSY */
1182 omap_request_gpio(4);
1183 omap_set_gpio_direction(4, 1);
1184 omap_request_gpio(6);
1185 omap_set_gpio_direction(6, 1);
1186 }
1187 // also TI 1510 Innovator, bitbanging through FPGA
1188 // also Nokia 770
1189 // also Palm Tungsten T2
1190#endif
1191
1192 // PXA:
1193 // also Dell Axim X50
1194 // also HP iPaq H191x/H192x/H415x/H435x
2e5a7bd9 1195 // also Intel Lubbock (additional to UCB1400; as temperature sensor)
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1196 // also Sharp Zaurus C7xx, C8xx (corgi/sheperd/husky)
1197
2e5a7bd9
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1198 // Atmel at91sam9261-EK uses ads7843
1199
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1200 // also various AMD Au1x00 devel boards
1201
2e5a7bd9 1202 return spi_register_driver(&ads7846_driver);
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1203}
1204module_init(ads7846_init);
1205
1206static void __exit ads7846_exit(void)
1207{
2e5a7bd9 1208 spi_unregister_driver(&ads7846_driver);
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1209
1210#ifdef CONFIG_ARCH_OMAP
1211 if (machine_is_omap_osk()) {
1212 omap_free_gpio(4);
1213 omap_free_gpio(6);
1214 }
1215#endif
1216
1217}
1218module_exit(ads7846_exit);
1219
1220MODULE_DESCRIPTION("ADS7846 TouchScreen Driver");
1221MODULE_LICENSE("GPL");
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