2 * STMicroelectronics STMPE811 Touchscreen Driver
4 * (C) 2010 Luotao Fu <l.fu@pengutronix.de>
7 * This program is free software; you can redistribute it and/or modify it
8 * under the terms of the GNU General Public License as published by the
9 * Free Software Foundation; either version 2 of the License, or (at your
10 * option) any later version.
14 #include <linux/kernel.h>
15 #include <linux/module.h>
16 #include <linux/sched.h>
17 #include <linux/interrupt.h>
18 #include <linux/init.h>
19 #include <linux/device.h>
21 #include <linux/platform_device.h>
22 #include <linux/input.h>
23 #include <linux/slab.h>
24 #include <linux/delay.h>
25 #include <linux/i2c.h>
26 #include <linux/workqueue.h>
28 #include <linux/mfd/stmpe.h>
30 /* Register layouts and functionalities are identical on all stmpexxx variants
31 * with touchscreen controller
33 #define STMPE_REG_INT_STA 0x0B
34 #define STMPE_REG_ADC_CTRL1 0x20
35 #define STMPE_REG_ADC_CTRL2 0x21
36 #define STMPE_REG_TSC_CTRL 0x40
37 #define STMPE_REG_TSC_CFG 0x41
38 #define STMPE_REG_FIFO_TH 0x4A
39 #define STMPE_REG_FIFO_STA 0x4B
40 #define STMPE_REG_FIFO_SIZE 0x4C
41 #define STMPE_REG_TSC_DATA_XYZ 0x52
42 #define STMPE_REG_TSC_FRACTION_Z 0x56
43 #define STMPE_REG_TSC_I_DRIVE 0x58
47 #define STMPE_TSC_CTRL_TSC_EN (1<<0)
49 #define STMPE_FIFO_STA_RESET (1<<0)
51 #define STMPE_IRQ_TOUCH_DET 0
53 #define SAMPLE_TIME(x) ((x & 0xf) << 4)
54 #define MOD_12B(x) ((x & 0x1) << 3)
55 #define REF_SEL(x) ((x & 0x1) << 1)
56 #define ADC_FREQ(x) (x & 0x3)
57 #define AVE_CTRL(x) ((x & 0x3) << 6)
58 #define DET_DELAY(x) ((x & 0x7) << 3)
59 #define SETTLING(x) (x & 0x7)
60 #define FRACTION_Z(x) (x & 0x7)
61 #define I_DRIVE(x) (x & 0x1)
62 #define OP_MODE(x) ((x & 0x7) << 1)
64 #define STMPE_TS_NAME "stmpe-ts"
69 struct input_dev
*idev
;
70 struct delayed_work work
;
83 static int __stmpe_reset_fifo(struct stmpe
*stmpe
)
87 ret
= stmpe_set_bits(stmpe
, STMPE_REG_FIFO_STA
,
88 STMPE_FIFO_STA_RESET
, STMPE_FIFO_STA_RESET
);
92 return stmpe_set_bits(stmpe
, STMPE_REG_FIFO_STA
,
93 STMPE_FIFO_STA_RESET
, 0);
96 static void stmpe_work(struct work_struct
*work
)
101 struct stmpe_touch
*ts
=
102 container_of(work
, struct stmpe_touch
, work
.work
);
104 int_sta
= stmpe_reg_read(ts
->stmpe
, STMPE_REG_INT_STA
);
107 * touch_det sometimes get desasserted or just get stuck. This appears
108 * to be a silicon bug, We still have to clearify this with the
109 * manufacture. As a workaround We release the key anyway if the
110 * touch_det keeps coming in after 4ms, while the FIFO contains no value
111 * during the whole time.
113 while ((int_sta
& (1 << STMPE_IRQ_TOUCH_DET
)) && (timeout
> 0)) {
115 int_sta
= stmpe_reg_read(ts
->stmpe
, STMPE_REG_INT_STA
);
119 /* reset the FIFO before we report release event */
120 __stmpe_reset_fifo(ts
->stmpe
);
122 input_report_abs(ts
->idev
, ABS_PRESSURE
, 0);
123 input_report_key(ts
->idev
, BTN_TOUCH
, 0);
124 input_sync(ts
->idev
);
127 static irqreturn_t
stmpe_ts_handler(int irq
, void *data
)
131 struct stmpe_touch
*ts
= data
;
134 * Cancel scheduled polling for release if we have new value
135 * available. Wait if the polling is already running.
137 cancel_delayed_work_sync(&ts
->work
);
140 * The FIFO sometimes just crashes and stops generating interrupts. This
141 * appears to be a silicon bug. We still have to clearify this with
142 * the manufacture. As a workaround we disable the TSC while we are
143 * collecting data and flush the FIFO after reading
145 stmpe_set_bits(ts
->stmpe
, STMPE_REG_TSC_CTRL
,
146 STMPE_TSC_CTRL_TSC_EN
, 0);
148 stmpe_block_read(ts
->stmpe
, STMPE_REG_TSC_DATA_XYZ
, 4, data_set
);
150 x
= (data_set
[0] << 4) | (data_set
[1] >> 4);
151 y
= ((data_set
[1] & 0xf) << 8) | data_set
[2];
154 input_report_abs(ts
->idev
, ABS_X
, x
);
155 input_report_abs(ts
->idev
, ABS_Y
, y
);
156 input_report_abs(ts
->idev
, ABS_PRESSURE
, z
);
157 input_report_key(ts
->idev
, BTN_TOUCH
, 1);
158 input_sync(ts
->idev
);
160 /* flush the FIFO after we have read out our values. */
161 __stmpe_reset_fifo(ts
->stmpe
);
163 /* reenable the tsc */
164 stmpe_set_bits(ts
->stmpe
, STMPE_REG_TSC_CTRL
,
165 STMPE_TSC_CTRL_TSC_EN
, STMPE_TSC_CTRL_TSC_EN
);
167 /* start polling for touch_det to detect release */
168 schedule_delayed_work(&ts
->work
, HZ
/ 50);
173 static int stmpe_init_hw(struct stmpe_touch
*ts
)
176 u8 adc_ctrl1
, adc_ctrl1_mask
, tsc_cfg
, tsc_cfg_mask
;
177 struct stmpe
*stmpe
= ts
->stmpe
;
178 struct device
*dev
= ts
->dev
;
180 ret
= stmpe_enable(stmpe
, STMPE_BLOCK_TOUCHSCREEN
| STMPE_BLOCK_ADC
);
182 dev_err(dev
, "Could not enable clock for ADC and TS\n");
186 adc_ctrl1
= SAMPLE_TIME(ts
->sample_time
) | MOD_12B(ts
->mod_12b
) |
187 REF_SEL(ts
->ref_sel
);
188 adc_ctrl1_mask
= SAMPLE_TIME(0xff) | MOD_12B(0xff) | REF_SEL(0xff);
190 ret
= stmpe_set_bits(stmpe
, STMPE_REG_ADC_CTRL1
,
191 adc_ctrl1_mask
, adc_ctrl1
);
193 dev_err(dev
, "Could not setup ADC\n");
197 ret
= stmpe_set_bits(stmpe
, STMPE_REG_ADC_CTRL2
,
198 ADC_FREQ(0xff), ADC_FREQ(ts
->adc_freq
));
200 dev_err(dev
, "Could not setup ADC\n");
204 tsc_cfg
= AVE_CTRL(ts
->ave_ctrl
) | DET_DELAY(ts
->touch_det_delay
) |
205 SETTLING(ts
->settling
);
206 tsc_cfg_mask
= AVE_CTRL(0xff) | DET_DELAY(0xff) | SETTLING(0xff);
208 ret
= stmpe_set_bits(stmpe
, STMPE_REG_TSC_CFG
, tsc_cfg_mask
, tsc_cfg
);
210 dev_err(dev
, "Could not config touch\n");
214 ret
= stmpe_set_bits(stmpe
, STMPE_REG_TSC_FRACTION_Z
,
215 FRACTION_Z(0xff), FRACTION_Z(ts
->fraction_z
));
217 dev_err(dev
, "Could not config touch\n");
221 ret
= stmpe_set_bits(stmpe
, STMPE_REG_TSC_I_DRIVE
,
222 I_DRIVE(0xff), I_DRIVE(ts
->i_drive
));
224 dev_err(dev
, "Could not config touch\n");
228 /* set FIFO to 1 for single point reading */
229 ret
= stmpe_reg_write(stmpe
, STMPE_REG_FIFO_TH
, 1);
231 dev_err(dev
, "Could not set FIFO\n");
235 ret
= stmpe_set_bits(stmpe
, STMPE_REG_TSC_CTRL
,
236 OP_MODE(0xff), OP_MODE(OP_MOD_XYZ
));
238 dev_err(dev
, "Could not set mode\n");
245 static int stmpe_ts_open(struct input_dev
*dev
)
247 struct stmpe_touch
*ts
= input_get_drvdata(dev
);
250 ret
= __stmpe_reset_fifo(ts
->stmpe
);
254 return stmpe_set_bits(ts
->stmpe
, STMPE_REG_TSC_CTRL
,
255 STMPE_TSC_CTRL_TSC_EN
, STMPE_TSC_CTRL_TSC_EN
);
258 static void stmpe_ts_close(struct input_dev
*dev
)
260 struct stmpe_touch
*ts
= input_get_drvdata(dev
);
262 cancel_delayed_work_sync(&ts
->work
);
264 stmpe_set_bits(ts
->stmpe
, STMPE_REG_TSC_CTRL
,
265 STMPE_TSC_CTRL_TSC_EN
, 0);
268 static void stmpe_ts_get_platform_info(struct platform_device
*pdev
,
269 struct stmpe_touch
*ts
)
271 struct stmpe
*stmpe
= dev_get_drvdata(pdev
->dev
.parent
);
272 struct device_node
*np
= pdev
->dev
.of_node
;
273 struct stmpe_ts_platform_data
*ts_pdata
= NULL
;
277 if (stmpe
->pdata
&& stmpe
->pdata
->ts
) {
278 ts_pdata
= stmpe
->pdata
->ts
;
280 ts
->sample_time
= ts_pdata
->sample_time
;
281 ts
->mod_12b
= ts_pdata
->mod_12b
;
282 ts
->ref_sel
= ts_pdata
->ref_sel
;
283 ts
->adc_freq
= ts_pdata
->adc_freq
;
284 ts
->ave_ctrl
= ts_pdata
->ave_ctrl
;
285 ts
->touch_det_delay
= ts_pdata
->touch_det_delay
;
286 ts
->settling
= ts_pdata
->settling
;
287 ts
->fraction_z
= ts_pdata
->fraction_z
;
288 ts
->i_drive
= ts_pdata
->i_drive
;
292 if (!of_property_read_u32(np
, "st,sample-time", &val
))
293 ts
->sample_time
= val
;
294 if (!of_property_read_u32(np
, "st,mod-12b", &val
))
296 if (!of_property_read_u32(np
, "st,ref-sel", &val
))
298 if (!of_property_read_u32(np
, "st,adc-freq", &val
))
300 if (!of_property_read_u32(np
, "st,ave-ctrl", &val
))
302 if (!of_property_read_u32(np
, "st,touch-det-delay", &val
))
303 ts
->touch_det_delay
= val
;
304 if (!of_property_read_u32(np
, "st,settling", &val
))
306 if (!of_property_read_u32(np
, "st,fraction-z", &val
))
307 ts
->fraction_z
= val
;
308 if (!of_property_read_u32(np
, "st,i-drive", &val
))
313 static int stmpe_input_probe(struct platform_device
*pdev
)
315 struct stmpe_touch
*ts
;
316 struct input_dev
*idev
;
320 ts_irq
= platform_get_irq_byname(pdev
, "FIFO_TH");
324 ts
= devm_kzalloc(&pdev
->dev
, sizeof(*ts
), GFP_KERNEL
);
328 idev
= devm_input_allocate_device(&pdev
->dev
);
332 platform_set_drvdata(pdev
, ts
);
334 ts
->dev
= &pdev
->dev
;
336 stmpe_ts_get_platform_info(pdev
, ts
);
338 INIT_DELAYED_WORK(&ts
->work
, stmpe_work
);
340 error
= devm_request_threaded_irq(&pdev
->dev
, ts_irq
,
341 NULL
, stmpe_ts_handler
,
342 IRQF_ONESHOT
, STMPE_TS_NAME
, ts
);
344 dev_err(&pdev
->dev
, "Failed to request IRQ %d\n", ts_irq
);
348 error
= stmpe_init_hw(ts
);
352 idev
->name
= STMPE_TS_NAME
;
353 idev
->phys
= STMPE_TS_NAME
"/input0";
354 idev
->id
.bustype
= BUS_I2C
;
355 idev
->evbit
[0] = BIT_MASK(EV_KEY
) | BIT_MASK(EV_ABS
);
356 idev
->keybit
[BIT_WORD(BTN_TOUCH
)] = BIT_MASK(BTN_TOUCH
);
358 idev
->open
= stmpe_ts_open
;
359 idev
->close
= stmpe_ts_close
;
361 input_set_drvdata(idev
, ts
);
363 input_set_abs_params(idev
, ABS_X
, 0, XY_MASK
, 0, 0);
364 input_set_abs_params(idev
, ABS_Y
, 0, XY_MASK
, 0, 0);
365 input_set_abs_params(idev
, ABS_PRESSURE
, 0x0, 0xff, 0, 0);
367 error
= input_register_device(idev
);
369 dev_err(&pdev
->dev
, "Could not register input device\n");
376 static int stmpe_ts_remove(struct platform_device
*pdev
)
378 struct stmpe_touch
*ts
= platform_get_drvdata(pdev
);
380 stmpe_disable(ts
->stmpe
, STMPE_BLOCK_TOUCHSCREEN
);
385 static struct platform_driver stmpe_ts_driver
= {
387 .name
= STMPE_TS_NAME
,
388 .owner
= THIS_MODULE
,
390 .probe
= stmpe_input_probe
,
391 .remove
= stmpe_ts_remove
,
393 module_platform_driver(stmpe_ts_driver
);
395 MODULE_AUTHOR("Luotao Fu <l.fu@pengutronix.de>");
396 MODULE_DESCRIPTION("STMPEXXX touchscreen driver");
397 MODULE_LICENSE("GPL");
398 MODULE_ALIAS("platform:" STMPE_TS_NAME
);