1 // SPDX-License-Identifier: GPL-2.0-only
3 * Description: keypad driver for ADP5589, ADP5585
4 * I2C QWERTY Keypad and IO Expander
5 * Bugs: Enter bugs at http://blackfin.uclinux.org/
7 * Copyright (C) 2010-2011 Analog Devices Inc.
10 #include <linux/bitops.h>
11 #include <linux/module.h>
12 #include <linux/interrupt.h>
13 #include <linux/irq.h>
14 #include <linux/workqueue.h>
15 #include <linux/errno.h>
17 #include <linux/pm_wakeirq.h>
18 #include <linux/platform_device.h>
19 #include <linux/input.h>
20 #include <linux/i2c.h>
21 #include <linux/gpio/driver.h>
22 #include <linux/slab.h>
24 #include <linux/input/adp5589.h>
26 /* ADP5589/ADP5585 Common Registers */
27 #define ADP5589_5_ID 0x00
28 #define ADP5589_5_INT_STATUS 0x01
29 #define ADP5589_5_STATUS 0x02
30 #define ADP5589_5_FIFO_1 0x03
31 #define ADP5589_5_FIFO_2 0x04
32 #define ADP5589_5_FIFO_3 0x05
33 #define ADP5589_5_FIFO_4 0x06
34 #define ADP5589_5_FIFO_5 0x07
35 #define ADP5589_5_FIFO_6 0x08
36 #define ADP5589_5_FIFO_7 0x09
37 #define ADP5589_5_FIFO_8 0x0A
38 #define ADP5589_5_FIFO_9 0x0B
39 #define ADP5589_5_FIFO_10 0x0C
40 #define ADP5589_5_FIFO_11 0x0D
41 #define ADP5589_5_FIFO_12 0x0E
42 #define ADP5589_5_FIFO_13 0x0F
43 #define ADP5589_5_FIFO_14 0x10
44 #define ADP5589_5_FIFO_15 0x11
45 #define ADP5589_5_FIFO_16 0x12
46 #define ADP5589_5_GPI_INT_STAT_A 0x13
47 #define ADP5589_5_GPI_INT_STAT_B 0x14
49 /* ADP5589 Registers */
50 #define ADP5589_GPI_INT_STAT_C 0x15
51 #define ADP5589_GPI_STATUS_A 0x16
52 #define ADP5589_GPI_STATUS_B 0x17
53 #define ADP5589_GPI_STATUS_C 0x18
54 #define ADP5589_RPULL_CONFIG_A 0x19
55 #define ADP5589_RPULL_CONFIG_B 0x1A
56 #define ADP5589_RPULL_CONFIG_C 0x1B
57 #define ADP5589_RPULL_CONFIG_D 0x1C
58 #define ADP5589_RPULL_CONFIG_E 0x1D
59 #define ADP5589_GPI_INT_LEVEL_A 0x1E
60 #define ADP5589_GPI_INT_LEVEL_B 0x1F
61 #define ADP5589_GPI_INT_LEVEL_C 0x20
62 #define ADP5589_GPI_EVENT_EN_A 0x21
63 #define ADP5589_GPI_EVENT_EN_B 0x22
64 #define ADP5589_GPI_EVENT_EN_C 0x23
65 #define ADP5589_GPI_INTERRUPT_EN_A 0x24
66 #define ADP5589_GPI_INTERRUPT_EN_B 0x25
67 #define ADP5589_GPI_INTERRUPT_EN_C 0x26
68 #define ADP5589_DEBOUNCE_DIS_A 0x27
69 #define ADP5589_DEBOUNCE_DIS_B 0x28
70 #define ADP5589_DEBOUNCE_DIS_C 0x29
71 #define ADP5589_GPO_DATA_OUT_A 0x2A
72 #define ADP5589_GPO_DATA_OUT_B 0x2B
73 #define ADP5589_GPO_DATA_OUT_C 0x2C
74 #define ADP5589_GPO_OUT_MODE_A 0x2D
75 #define ADP5589_GPO_OUT_MODE_B 0x2E
76 #define ADP5589_GPO_OUT_MODE_C 0x2F
77 #define ADP5589_GPIO_DIRECTION_A 0x30
78 #define ADP5589_GPIO_DIRECTION_B 0x31
79 #define ADP5589_GPIO_DIRECTION_C 0x32
80 #define ADP5589_UNLOCK1 0x33
81 #define ADP5589_UNLOCK2 0x34
82 #define ADP5589_EXT_LOCK_EVENT 0x35
83 #define ADP5589_UNLOCK_TIMERS 0x36
84 #define ADP5589_LOCK_CFG 0x37
85 #define ADP5589_RESET1_EVENT_A 0x38
86 #define ADP5589_RESET1_EVENT_B 0x39
87 #define ADP5589_RESET1_EVENT_C 0x3A
88 #define ADP5589_RESET2_EVENT_A 0x3B
89 #define ADP5589_RESET2_EVENT_B 0x3C
90 #define ADP5589_RESET_CFG 0x3D
91 #define ADP5589_PWM_OFFT_LOW 0x3E
92 #define ADP5589_PWM_OFFT_HIGH 0x3F
93 #define ADP5589_PWM_ONT_LOW 0x40
94 #define ADP5589_PWM_ONT_HIGH 0x41
95 #define ADP5589_PWM_CFG 0x42
96 #define ADP5589_CLOCK_DIV_CFG 0x43
97 #define ADP5589_LOGIC_1_CFG 0x44
98 #define ADP5589_LOGIC_2_CFG 0x45
99 #define ADP5589_LOGIC_FF_CFG 0x46
100 #define ADP5589_LOGIC_INT_EVENT_EN 0x47
101 #define ADP5589_POLL_PTIME_CFG 0x48
102 #define ADP5589_PIN_CONFIG_A 0x49
103 #define ADP5589_PIN_CONFIG_B 0x4A
104 #define ADP5589_PIN_CONFIG_C 0x4B
105 #define ADP5589_PIN_CONFIG_D 0x4C
106 #define ADP5589_GENERAL_CFG 0x4D
107 #define ADP5589_INT_EN 0x4E
109 /* ADP5585 Registers */
110 #define ADP5585_GPI_STATUS_A 0x15
111 #define ADP5585_GPI_STATUS_B 0x16
112 #define ADP5585_RPULL_CONFIG_A 0x17
113 #define ADP5585_RPULL_CONFIG_B 0x18
114 #define ADP5585_RPULL_CONFIG_C 0x19
115 #define ADP5585_RPULL_CONFIG_D 0x1A
116 #define ADP5585_GPI_INT_LEVEL_A 0x1B
117 #define ADP5585_GPI_INT_LEVEL_B 0x1C
118 #define ADP5585_GPI_EVENT_EN_A 0x1D
119 #define ADP5585_GPI_EVENT_EN_B 0x1E
120 #define ADP5585_GPI_INTERRUPT_EN_A 0x1F
121 #define ADP5585_GPI_INTERRUPT_EN_B 0x20
122 #define ADP5585_DEBOUNCE_DIS_A 0x21
123 #define ADP5585_DEBOUNCE_DIS_B 0x22
124 #define ADP5585_GPO_DATA_OUT_A 0x23
125 #define ADP5585_GPO_DATA_OUT_B 0x24
126 #define ADP5585_GPO_OUT_MODE_A 0x25
127 #define ADP5585_GPO_OUT_MODE_B 0x26
128 #define ADP5585_GPIO_DIRECTION_A 0x27
129 #define ADP5585_GPIO_DIRECTION_B 0x28
130 #define ADP5585_RESET1_EVENT_A 0x29
131 #define ADP5585_RESET1_EVENT_B 0x2A
132 #define ADP5585_RESET1_EVENT_C 0x2B
133 #define ADP5585_RESET2_EVENT_A 0x2C
134 #define ADP5585_RESET2_EVENT_B 0x2D
135 #define ADP5585_RESET_CFG 0x2E
136 #define ADP5585_PWM_OFFT_LOW 0x2F
137 #define ADP5585_PWM_OFFT_HIGH 0x30
138 #define ADP5585_PWM_ONT_LOW 0x31
139 #define ADP5585_PWM_ONT_HIGH 0x32
140 #define ADP5585_PWM_CFG 0x33
141 #define ADP5585_LOGIC_CFG 0x34
142 #define ADP5585_LOGIC_FF_CFG 0x35
143 #define ADP5585_LOGIC_INT_EVENT_EN 0x36
144 #define ADP5585_POLL_PTIME_CFG 0x37
145 #define ADP5585_PIN_CONFIG_A 0x38
146 #define ADP5585_PIN_CONFIG_B 0x39
147 #define ADP5585_PIN_CONFIG_D 0x3A
148 #define ADP5585_GENERAL_CFG 0x3B
149 #define ADP5585_INT_EN 0x3C
152 #define ADP5589_5_DEVICE_ID_MASK 0xF
153 #define ADP5589_5_MAN_ID_MASK 0xF
154 #define ADP5589_5_MAN_ID_SHIFT 4
155 #define ADP5589_5_MAN_ID 0x02
157 /* GENERAL_CFG Register */
158 #define OSC_EN BIT(7)
159 #define CORE_CLK(x) (((x) & 0x3) << 5)
160 #define LCK_TRK_LOGIC BIT(4) /* ADP5589 only */
161 #define LCK_TRK_GPI BIT(3) /* ADP5589 only */
162 #define INT_CFG BIT(1)
163 #define RST_CFG BIT(0)
165 /* INT_EN Register */
166 #define LOGIC2_IEN BIT(5) /* ADP5589 only */
167 #define LOGIC1_IEN BIT(4)
168 #define LOCK_IEN BIT(3) /* ADP5589 only */
169 #define OVRFLOW_IEN BIT(2)
170 #define GPI_IEN BIT(1)
171 #define EVENT_IEN BIT(0)
173 /* Interrupt Status Register */
174 #define LOGIC2_INT BIT(5) /* ADP5589 only */
175 #define LOGIC1_INT BIT(4)
176 #define LOCK_INT BIT(3) /* ADP5589 only */
177 #define OVRFLOW_INT BIT(2)
178 #define GPI_INT BIT(1)
179 #define EVENT_INT BIT(0)
181 /* STATUS Register */
182 #define LOGIC2_STAT BIT(7) /* ADP5589 only */
183 #define LOGIC1_STAT BIT(6)
184 #define LOCK_STAT BIT(5) /* ADP5589 only */
187 /* PIN_CONFIG_D Register */
188 #define C4_EXTEND_CFG BIT(6) /* RESET2 */
189 #define R4_EXTEND_CFG BIT(5) /* RESET1 */
192 #define LOCK_EN BIT(0)
194 #define PTIME_MASK 0x3
195 #define LTIME_MASK 0x3 /* ADP5589 only */
197 /* Key Event Register xy */
198 #define KEY_EV_PRESSED BIT(7)
199 #define KEY_EV_MASK 0x7F
201 #define KEYP_MAX_EVENT 16
202 #define ADP5589_MAXGPIO 19
203 #define ADP5585_MAXGPIO 11 /* 10 on the ADP5585-01, 11 on ADP5585-02 */
211 struct adp_constants
{
226 u8 (*bank
) (u8 offset
);
227 u8 (*bit
) (u8 offset
);
231 struct adp5589_kpad
{
232 struct i2c_client
*client
;
233 struct input_dev
*input
;
234 const struct adp_constants
*var
;
235 unsigned short keycode
[ADP5589_KEYMAPSIZE
];
236 const struct adp5589_gpi_map
*gpimap
;
237 unsigned short gpimapsize
;
241 #ifdef CONFIG_GPIOLIB
242 unsigned char gpiomap
[ADP5589_MAXGPIO
];
244 struct mutex gpio_lock
; /* Protect cached dir, dat_out */
251 * ADP5589 / ADP5585 derivative / variant handling
257 static unsigned char adp5589_bank(unsigned char offset
)
262 static unsigned char adp5589_bit(unsigned char offset
)
264 return 1u << (offset
& 0x7);
267 static unsigned char adp5589_reg(unsigned char reg
)
272 static const struct adp_constants const_adp5589
= {
273 .maxgpio
= ADP5589_MAXGPIO
,
274 .keymapsize
= ADP5589_KEYMAPSIZE
,
275 .gpi_pin_row_base
= ADP5589_GPI_PIN_ROW_BASE
,
276 .gpi_pin_row_end
= ADP5589_GPI_PIN_ROW_END
,
277 .gpi_pin_col_base
= ADP5589_GPI_PIN_COL_BASE
,
278 .gpi_pin_base
= ADP5589_GPI_PIN_BASE
,
279 .gpi_pin_end
= ADP5589_GPI_PIN_END
,
280 .gpimapsize_max
= ADP5589_GPIMAPSIZE_MAX
,
282 .max_row_num
= ADP5589_MAX_ROW_NUM
,
283 .max_col_num
= ADP5589_MAX_COL_NUM
,
284 .row_mask
= ADP5589_ROW_MASK
,
285 .col_mask
= ADP5589_COL_MASK
,
286 .col_shift
= ADP5589_COL_SHIFT
,
287 .bank
= adp5589_bank
,
294 static unsigned char adp5585_bank(unsigned char offset
)
296 return offset
> ADP5585_MAX_ROW_NUM
;
299 static unsigned char adp5585_bit(unsigned char offset
)
301 return (offset
> ADP5585_MAX_ROW_NUM
) ?
302 1u << (offset
- ADP5585_COL_SHIFT
) : 1u << offset
;
305 static const unsigned char adp5585_reg_lut
[] = {
306 [ADP5589_GPI_STATUS_A
] = ADP5585_GPI_STATUS_A
,
307 [ADP5589_GPI_STATUS_B
] = ADP5585_GPI_STATUS_B
,
308 [ADP5589_RPULL_CONFIG_A
] = ADP5585_RPULL_CONFIG_A
,
309 [ADP5589_RPULL_CONFIG_B
] = ADP5585_RPULL_CONFIG_B
,
310 [ADP5589_RPULL_CONFIG_C
] = ADP5585_RPULL_CONFIG_C
,
311 [ADP5589_RPULL_CONFIG_D
] = ADP5585_RPULL_CONFIG_D
,
312 [ADP5589_GPI_INT_LEVEL_A
] = ADP5585_GPI_INT_LEVEL_A
,
313 [ADP5589_GPI_INT_LEVEL_B
] = ADP5585_GPI_INT_LEVEL_B
,
314 [ADP5589_GPI_EVENT_EN_A
] = ADP5585_GPI_EVENT_EN_A
,
315 [ADP5589_GPI_EVENT_EN_B
] = ADP5585_GPI_EVENT_EN_B
,
316 [ADP5589_GPI_INTERRUPT_EN_A
] = ADP5585_GPI_INTERRUPT_EN_A
,
317 [ADP5589_GPI_INTERRUPT_EN_B
] = ADP5585_GPI_INTERRUPT_EN_B
,
318 [ADP5589_DEBOUNCE_DIS_A
] = ADP5585_DEBOUNCE_DIS_A
,
319 [ADP5589_DEBOUNCE_DIS_B
] = ADP5585_DEBOUNCE_DIS_B
,
320 [ADP5589_GPO_DATA_OUT_A
] = ADP5585_GPO_DATA_OUT_A
,
321 [ADP5589_GPO_DATA_OUT_B
] = ADP5585_GPO_DATA_OUT_B
,
322 [ADP5589_GPO_OUT_MODE_A
] = ADP5585_GPO_OUT_MODE_A
,
323 [ADP5589_GPO_OUT_MODE_B
] = ADP5585_GPO_OUT_MODE_B
,
324 [ADP5589_GPIO_DIRECTION_A
] = ADP5585_GPIO_DIRECTION_A
,
325 [ADP5589_GPIO_DIRECTION_B
] = ADP5585_GPIO_DIRECTION_B
,
326 [ADP5589_RESET1_EVENT_A
] = ADP5585_RESET1_EVENT_A
,
327 [ADP5589_RESET1_EVENT_B
] = ADP5585_RESET1_EVENT_B
,
328 [ADP5589_RESET1_EVENT_C
] = ADP5585_RESET1_EVENT_C
,
329 [ADP5589_RESET2_EVENT_A
] = ADP5585_RESET2_EVENT_A
,
330 [ADP5589_RESET2_EVENT_B
] = ADP5585_RESET2_EVENT_B
,
331 [ADP5589_RESET_CFG
] = ADP5585_RESET_CFG
,
332 [ADP5589_PWM_OFFT_LOW
] = ADP5585_PWM_OFFT_LOW
,
333 [ADP5589_PWM_OFFT_HIGH
] = ADP5585_PWM_OFFT_HIGH
,
334 [ADP5589_PWM_ONT_LOW
] = ADP5585_PWM_ONT_LOW
,
335 [ADP5589_PWM_ONT_HIGH
] = ADP5585_PWM_ONT_HIGH
,
336 [ADP5589_PWM_CFG
] = ADP5585_PWM_CFG
,
337 [ADP5589_LOGIC_1_CFG
] = ADP5585_LOGIC_CFG
,
338 [ADP5589_LOGIC_FF_CFG
] = ADP5585_LOGIC_FF_CFG
,
339 [ADP5589_LOGIC_INT_EVENT_EN
] = ADP5585_LOGIC_INT_EVENT_EN
,
340 [ADP5589_POLL_PTIME_CFG
] = ADP5585_POLL_PTIME_CFG
,
341 [ADP5589_PIN_CONFIG_A
] = ADP5585_PIN_CONFIG_A
,
342 [ADP5589_PIN_CONFIG_B
] = ADP5585_PIN_CONFIG_B
,
343 [ADP5589_PIN_CONFIG_D
] = ADP5585_PIN_CONFIG_D
,
344 [ADP5589_GENERAL_CFG
] = ADP5585_GENERAL_CFG
,
345 [ADP5589_INT_EN
] = ADP5585_INT_EN
,
348 static unsigned char adp5585_reg(unsigned char reg
)
350 return adp5585_reg_lut
[reg
];
353 static const struct adp_constants const_adp5585
= {
354 .maxgpio
= ADP5585_MAXGPIO
,
355 .keymapsize
= ADP5585_KEYMAPSIZE
,
356 .gpi_pin_row_base
= ADP5585_GPI_PIN_ROW_BASE
,
357 .gpi_pin_row_end
= ADP5585_GPI_PIN_ROW_END
,
358 .gpi_pin_col_base
= ADP5585_GPI_PIN_COL_BASE
,
359 .gpi_pin_base
= ADP5585_GPI_PIN_BASE
,
360 .gpi_pin_end
= ADP5585_GPI_PIN_END
,
361 .gpimapsize_max
= ADP5585_GPIMAPSIZE_MAX
,
363 .max_row_num
= ADP5585_MAX_ROW_NUM
,
364 .max_col_num
= ADP5585_MAX_COL_NUM
,
365 .row_mask
= ADP5585_ROW_MASK
,
366 .col_mask
= ADP5585_COL_MASK
,
367 .col_shift
= ADP5585_COL_SHIFT
,
368 .bank
= adp5585_bank
,
373 static int adp5589_read(struct i2c_client
*client
, u8 reg
)
375 int ret
= i2c_smbus_read_byte_data(client
, reg
);
378 dev_err(&client
->dev
, "Read Error\n");
383 static int adp5589_write(struct i2c_client
*client
, u8 reg
, u8 val
)
385 return i2c_smbus_write_byte_data(client
, reg
, val
);
388 #ifdef CONFIG_GPIOLIB
389 static int adp5589_gpio_get_value(struct gpio_chip
*chip
, unsigned off
)
391 struct adp5589_kpad
*kpad
= gpiochip_get_data(chip
);
392 unsigned int bank
= kpad
->var
->bank(kpad
->gpiomap
[off
]);
393 unsigned int bit
= kpad
->var
->bit(kpad
->gpiomap
[off
]);
396 mutex_lock(&kpad
->gpio_lock
);
397 if (kpad
->dir
[bank
] & bit
)
398 val
= kpad
->dat_out
[bank
];
400 val
= adp5589_read(kpad
->client
,
401 kpad
->var
->reg(ADP5589_GPI_STATUS_A
) + bank
);
402 mutex_unlock(&kpad
->gpio_lock
);
404 return !!(val
& bit
);
407 static void adp5589_gpio_set_value(struct gpio_chip
*chip
,
408 unsigned off
, int val
)
410 struct adp5589_kpad
*kpad
= gpiochip_get_data(chip
);
411 unsigned int bank
= kpad
->var
->bank(kpad
->gpiomap
[off
]);
412 unsigned int bit
= kpad
->var
->bit(kpad
->gpiomap
[off
]);
414 guard(mutex
)(&kpad
->gpio_lock
);
417 kpad
->dat_out
[bank
] |= bit
;
419 kpad
->dat_out
[bank
] &= ~bit
;
421 adp5589_write(kpad
->client
, kpad
->var
->reg(ADP5589_GPO_DATA_OUT_A
) +
422 bank
, kpad
->dat_out
[bank
]);
425 static int adp5589_gpio_direction_input(struct gpio_chip
*chip
, unsigned off
)
427 struct adp5589_kpad
*kpad
= gpiochip_get_data(chip
);
428 unsigned int bank
= kpad
->var
->bank(kpad
->gpiomap
[off
]);
429 unsigned int bit
= kpad
->var
->bit(kpad
->gpiomap
[off
]);
431 guard(mutex
)(&kpad
->gpio_lock
);
433 kpad
->dir
[bank
] &= ~bit
;
434 return adp5589_write(kpad
->client
,
435 kpad
->var
->reg(ADP5589_GPIO_DIRECTION_A
) + bank
,
439 static int adp5589_gpio_direction_output(struct gpio_chip
*chip
,
440 unsigned off
, int val
)
442 struct adp5589_kpad
*kpad
= gpiochip_get_data(chip
);
443 unsigned int bank
= kpad
->var
->bank(kpad
->gpiomap
[off
]);
444 unsigned int bit
= kpad
->var
->bit(kpad
->gpiomap
[off
]);
447 guard(mutex
)(&kpad
->gpio_lock
);
449 kpad
->dir
[bank
] |= bit
;
452 kpad
->dat_out
[bank
] |= bit
;
454 kpad
->dat_out
[bank
] &= ~bit
;
456 error
= adp5589_write(kpad
->client
,
457 kpad
->var
->reg(ADP5589_GPO_DATA_OUT_A
) + bank
,
458 kpad
->dat_out
[bank
]);
462 error
= adp5589_write(kpad
->client
,
463 kpad
->var
->reg(ADP5589_GPIO_DIRECTION_A
) + bank
,
471 static int adp5589_build_gpiomap(struct adp5589_kpad
*kpad
,
472 const struct adp5589_kpad_platform_data
*pdata
)
474 bool pin_used
[ADP5589_MAXGPIO
];
478 memset(pin_used
, false, sizeof(pin_used
));
480 for (i
= 0; i
< kpad
->var
->maxgpio
; i
++)
481 if (pdata
->keypad_en_mask
& BIT(i
))
484 for (i
= 0; i
< kpad
->gpimapsize
; i
++)
485 pin_used
[kpad
->gpimap
[i
].pin
- kpad
->var
->gpi_pin_base
] = true;
487 if (kpad
->extend_cfg
& R4_EXTEND_CFG
)
490 if (kpad
->extend_cfg
& C4_EXTEND_CFG
)
491 pin_used
[kpad
->var
->c4_extend_cfg
] = true;
493 if (!kpad
->support_row5
)
496 for (i
= 0; i
< kpad
->var
->maxgpio
; i
++)
498 kpad
->gpiomap
[n_unused
++] = i
;
503 static int adp5589_gpio_add(struct adp5589_kpad
*kpad
)
505 struct device
*dev
= &kpad
->client
->dev
;
506 const struct adp5589_kpad_platform_data
*pdata
= dev_get_platdata(dev
);
507 const struct adp5589_gpio_platform_data
*gpio_data
= pdata
->gpio_data
;
513 kpad
->gc
.parent
= dev
;
514 kpad
->gc
.ngpio
= adp5589_build_gpiomap(kpad
, pdata
);
515 if (kpad
->gc
.ngpio
== 0) {
516 dev_info(dev
, "No unused gpios left to export\n");
520 kpad
->gc
.direction_input
= adp5589_gpio_direction_input
;
521 kpad
->gc
.direction_output
= adp5589_gpio_direction_output
;
522 kpad
->gc
.get
= adp5589_gpio_get_value
;
523 kpad
->gc
.set
= adp5589_gpio_set_value
;
524 kpad
->gc
.can_sleep
= 1;
526 kpad
->gc
.base
= gpio_data
->gpio_start
;
527 kpad
->gc
.label
= kpad
->client
->name
;
528 kpad
->gc
.owner
= THIS_MODULE
;
530 mutex_init(&kpad
->gpio_lock
);
532 error
= devm_gpiochip_add_data(dev
, &kpad
->gc
, kpad
);
536 for (i
= 0; i
<= kpad
->var
->bank(kpad
->var
->maxgpio
); i
++) {
537 kpad
->dat_out
[i
] = adp5589_read(kpad
->client
, kpad
->var
->reg(
538 ADP5589_GPO_DATA_OUT_A
) + i
);
539 kpad
->dir
[i
] = adp5589_read(kpad
->client
, kpad
->var
->reg(
540 ADP5589_GPIO_DIRECTION_A
) + i
);
546 static inline int adp5589_gpio_add(struct adp5589_kpad
*kpad
)
552 static void adp5589_report_switches(struct adp5589_kpad
*kpad
,
553 int key
, int key_val
)
557 for (i
= 0; i
< kpad
->gpimapsize
; i
++) {
558 if (key_val
== kpad
->gpimap
[i
].pin
) {
559 input_report_switch(kpad
->input
,
560 kpad
->gpimap
[i
].sw_evt
,
561 key
& KEY_EV_PRESSED
);
567 static void adp5589_report_events(struct adp5589_kpad
*kpad
, int ev_cnt
)
571 for (i
= 0; i
< ev_cnt
; i
++) {
572 int key
= adp5589_read(kpad
->client
, ADP5589_5_FIFO_1
+ i
);
573 int key_val
= key
& KEY_EV_MASK
;
575 if (key_val
>= kpad
->var
->gpi_pin_base
&&
576 key_val
<= kpad
->var
->gpi_pin_end
) {
577 adp5589_report_switches(kpad
, key
, key_val
);
579 input_report_key(kpad
->input
,
580 kpad
->keycode
[key_val
- 1],
581 key
& KEY_EV_PRESSED
);
586 static irqreturn_t
adp5589_irq(int irq
, void *handle
)
588 struct adp5589_kpad
*kpad
= handle
;
589 struct i2c_client
*client
= kpad
->client
;
592 status
= adp5589_read(client
, ADP5589_5_INT_STATUS
);
594 if (status
& OVRFLOW_INT
) /* Unlikely and should never happen */
595 dev_err(&client
->dev
, "Event Overflow Error\n");
597 if (status
& EVENT_INT
) {
598 ev_cnt
= adp5589_read(client
, ADP5589_5_STATUS
) & KEC
;
600 adp5589_report_events(kpad
, ev_cnt
);
601 input_sync(kpad
->input
);
605 adp5589_write(client
, ADP5589_5_INT_STATUS
, status
); /* Status is W1C */
610 static int adp5589_get_evcode(struct adp5589_kpad
*kpad
, unsigned short key
)
614 for (i
= 0; i
< kpad
->var
->keymapsize
; i
++)
615 if (key
== kpad
->keycode
[i
])
616 return (i
+ 1) | KEY_EV_PRESSED
;
618 dev_err(&kpad
->client
->dev
, "RESET/UNLOCK key not in keycode map\n");
623 static int adp5589_setup(struct adp5589_kpad
*kpad
)
625 struct i2c_client
*client
= kpad
->client
;
626 const struct adp5589_kpad_platform_data
*pdata
=
627 dev_get_platdata(&client
->dev
);
628 u8 (*reg
) (u8
) = kpad
->var
->reg
;
629 unsigned char evt_mode1
= 0, evt_mode2
= 0, evt_mode3
= 0;
630 unsigned char pull_mask
= 0;
633 ret
= adp5589_write(client
, reg(ADP5589_PIN_CONFIG_A
),
634 pdata
->keypad_en_mask
& kpad
->var
->row_mask
);
635 ret
|= adp5589_write(client
, reg(ADP5589_PIN_CONFIG_B
),
636 (pdata
->keypad_en_mask
>> kpad
->var
->col_shift
) &
637 kpad
->var
->col_mask
);
639 if (!kpad
->is_adp5585
)
640 ret
|= adp5589_write(client
, ADP5589_PIN_CONFIG_C
,
641 (pdata
->keypad_en_mask
>> 16) & 0xFF);
643 if (!kpad
->is_adp5585
&& pdata
->en_keylock
) {
644 ret
|= adp5589_write(client
, ADP5589_UNLOCK1
,
646 ret
|= adp5589_write(client
, ADP5589_UNLOCK2
,
648 ret
|= adp5589_write(client
, ADP5589_UNLOCK_TIMERS
,
649 pdata
->unlock_timer
& LTIME_MASK
);
650 ret
|= adp5589_write(client
, ADP5589_LOCK_CFG
, LOCK_EN
);
653 for (i
= 0; i
< KEYP_MAX_EVENT
; i
++)
654 ret
|= adp5589_read(client
, ADP5589_5_FIFO_1
+ i
);
656 for (i
= 0; i
< pdata
->gpimapsize
; i
++) {
657 unsigned short pin
= pdata
->gpimap
[i
].pin
;
659 if (pin
<= kpad
->var
->gpi_pin_row_end
) {
660 evt_mode1
|= BIT(pin
- kpad
->var
->gpi_pin_row_base
);
663 BIT(pin
- kpad
->var
->gpi_pin_col_base
) & 0xFF;
664 if (!kpad
->is_adp5585
)
666 BIT(pin
- kpad
->var
->gpi_pin_col_base
) >> 8;
670 if (pdata
->gpimapsize
) {
671 ret
|= adp5589_write(client
, reg(ADP5589_GPI_EVENT_EN_A
),
673 ret
|= adp5589_write(client
, reg(ADP5589_GPI_EVENT_EN_B
),
675 if (!kpad
->is_adp5585
)
676 ret
|= adp5589_write(client
,
677 reg(ADP5589_GPI_EVENT_EN_C
),
681 if (pdata
->pull_dis_mask
& pdata
->pullup_en_100k
&
682 pdata
->pullup_en_300k
& pdata
->pulldown_en_300k
)
683 dev_warn(&client
->dev
, "Conflicting pull resistor config\n");
685 for (i
= 0; i
<= kpad
->var
->max_row_num
; i
++) {
686 unsigned int val
= 0, bit
= BIT(i
);
687 if (pdata
->pullup_en_300k
& bit
)
689 else if (pdata
->pulldown_en_300k
& bit
)
691 else if (pdata
->pullup_en_100k
& bit
)
693 else if (pdata
->pull_dis_mask
& bit
)
696 pull_mask
|= val
<< (2 * (i
& 0x3));
698 if (i
% 4 == 3 || i
== kpad
->var
->max_row_num
) {
699 ret
|= adp5589_write(client
, reg(ADP5585_RPULL_CONFIG_A
)
700 + (i
>> 2), pull_mask
);
705 for (i
= 0; i
<= kpad
->var
->max_col_num
; i
++) {
706 unsigned int val
= 0, bit
= BIT(i
+ kpad
->var
->col_shift
);
707 if (pdata
->pullup_en_300k
& bit
)
709 else if (pdata
->pulldown_en_300k
& bit
)
711 else if (pdata
->pullup_en_100k
& bit
)
713 else if (pdata
->pull_dis_mask
& bit
)
716 pull_mask
|= val
<< (2 * (i
& 0x3));
718 if (i
% 4 == 3 || i
== kpad
->var
->max_col_num
) {
719 ret
|= adp5589_write(client
,
720 reg(ADP5585_RPULL_CONFIG_C
) +
721 (i
>> 2), pull_mask
);
726 if (pdata
->reset1_key_1
&& pdata
->reset1_key_2
&& pdata
->reset1_key_3
) {
727 ret
|= adp5589_write(client
, reg(ADP5589_RESET1_EVENT_A
),
728 adp5589_get_evcode(kpad
,
729 pdata
->reset1_key_1
));
730 ret
|= adp5589_write(client
, reg(ADP5589_RESET1_EVENT_B
),
731 adp5589_get_evcode(kpad
,
732 pdata
->reset1_key_2
));
733 ret
|= adp5589_write(client
, reg(ADP5589_RESET1_EVENT_C
),
734 adp5589_get_evcode(kpad
,
735 pdata
->reset1_key_3
));
736 kpad
->extend_cfg
|= R4_EXTEND_CFG
;
739 if (pdata
->reset2_key_1
&& pdata
->reset2_key_2
) {
740 ret
|= adp5589_write(client
, reg(ADP5589_RESET2_EVENT_A
),
741 adp5589_get_evcode(kpad
,
742 pdata
->reset2_key_1
));
743 ret
|= adp5589_write(client
, reg(ADP5589_RESET2_EVENT_B
),
744 adp5589_get_evcode(kpad
,
745 pdata
->reset2_key_2
));
746 kpad
->extend_cfg
|= C4_EXTEND_CFG
;
749 if (kpad
->extend_cfg
) {
750 ret
|= adp5589_write(client
, reg(ADP5589_RESET_CFG
),
752 ret
|= adp5589_write(client
, reg(ADP5589_PIN_CONFIG_D
),
756 ret
|= adp5589_write(client
, reg(ADP5589_DEBOUNCE_DIS_A
),
757 pdata
->debounce_dis_mask
& kpad
->var
->row_mask
);
759 ret
|= adp5589_write(client
, reg(ADP5589_DEBOUNCE_DIS_B
),
760 (pdata
->debounce_dis_mask
>> kpad
->var
->col_shift
)
761 & kpad
->var
->col_mask
);
763 if (!kpad
->is_adp5585
)
764 ret
|= adp5589_write(client
, reg(ADP5589_DEBOUNCE_DIS_C
),
765 (pdata
->debounce_dis_mask
>> 16) & 0xFF);
767 ret
|= adp5589_write(client
, reg(ADP5589_POLL_PTIME_CFG
),
768 pdata
->scan_cycle_time
& PTIME_MASK
);
769 ret
|= adp5589_write(client
, ADP5589_5_INT_STATUS
,
770 (kpad
->is_adp5585
? 0 : LOGIC2_INT
) |
771 LOGIC1_INT
| OVRFLOW_INT
|
772 (kpad
->is_adp5585
? 0 : LOCK_INT
) |
773 GPI_INT
| EVENT_INT
); /* Status is W1C */
775 ret
|= adp5589_write(client
, reg(ADP5589_GENERAL_CFG
),
776 INT_CFG
| OSC_EN
| CORE_CLK(3));
777 ret
|= adp5589_write(client
, reg(ADP5589_INT_EN
),
778 OVRFLOW_IEN
| GPI_IEN
| EVENT_IEN
);
781 dev_err(&client
->dev
, "Write Error\n");
788 static void adp5589_report_switch_state(struct adp5589_kpad
*kpad
)
790 int gpi_stat_tmp
, pin_loc
;
792 int gpi_stat1
= adp5589_read(kpad
->client
,
793 kpad
->var
->reg(ADP5589_GPI_STATUS_A
));
794 int gpi_stat2
= adp5589_read(kpad
->client
,
795 kpad
->var
->reg(ADP5589_GPI_STATUS_B
));
796 int gpi_stat3
= !kpad
->is_adp5585
?
797 adp5589_read(kpad
->client
, ADP5589_GPI_STATUS_C
) : 0;
799 for (i
= 0; i
< kpad
->gpimapsize
; i
++) {
800 unsigned short pin
= kpad
->gpimap
[i
].pin
;
802 if (pin
<= kpad
->var
->gpi_pin_row_end
) {
803 gpi_stat_tmp
= gpi_stat1
;
804 pin_loc
= pin
- kpad
->var
->gpi_pin_row_base
;
805 } else if ((pin
- kpad
->var
->gpi_pin_col_base
) < 8) {
806 gpi_stat_tmp
= gpi_stat2
;
807 pin_loc
= pin
- kpad
->var
->gpi_pin_col_base
;
809 gpi_stat_tmp
= gpi_stat3
;
810 pin_loc
= pin
- kpad
->var
->gpi_pin_col_base
- 8;
813 if (gpi_stat_tmp
< 0) {
814 dev_err(&kpad
->client
->dev
,
815 "Can't read GPIO_DAT_STAT switch %d, default to OFF\n",
820 input_report_switch(kpad
->input
,
821 kpad
->gpimap
[i
].sw_evt
,
822 !(gpi_stat_tmp
& BIT(pin_loc
)));
825 input_sync(kpad
->input
);
828 static int adp5589_keypad_add(struct adp5589_kpad
*kpad
, unsigned int revid
)
830 struct i2c_client
*client
= kpad
->client
;
831 const struct adp5589_kpad_platform_data
*pdata
=
832 dev_get_platdata(&client
->dev
);
833 struct input_dev
*input
;
837 if (!((pdata
->keypad_en_mask
& kpad
->var
->row_mask
) &&
838 (pdata
->keypad_en_mask
>> kpad
->var
->col_shift
)) ||
840 dev_err(&client
->dev
, "no rows, cols or keymap from pdata\n");
844 if (pdata
->keymapsize
!= kpad
->var
->keymapsize
) {
845 dev_err(&client
->dev
, "invalid keymapsize\n");
849 if (!pdata
->gpimap
&& pdata
->gpimapsize
) {
850 dev_err(&client
->dev
, "invalid gpimap from pdata\n");
854 if (pdata
->gpimapsize
> kpad
->var
->gpimapsize_max
) {
855 dev_err(&client
->dev
, "invalid gpimapsize\n");
859 for (i
= 0; i
< pdata
->gpimapsize
; i
++) {
860 unsigned short pin
= pdata
->gpimap
[i
].pin
;
862 if (pin
< kpad
->var
->gpi_pin_base
||
863 pin
> kpad
->var
->gpi_pin_end
) {
864 dev_err(&client
->dev
, "invalid gpi pin data\n");
868 if (BIT(pin
- kpad
->var
->gpi_pin_row_base
) &
869 pdata
->keypad_en_mask
) {
870 dev_err(&client
->dev
, "invalid gpi row/col data\n");
876 dev_err(&client
->dev
, "no IRQ?\n");
880 input
= devm_input_allocate_device(&client
->dev
);
886 input
->name
= client
->name
;
887 input
->phys
= "adp5589-keys/input0";
888 input
->dev
.parent
= &client
->dev
;
890 input_set_drvdata(input
, kpad
);
892 input
->id
.bustype
= BUS_I2C
;
893 input
->id
.vendor
= 0x0001;
894 input
->id
.product
= 0x0001;
895 input
->id
.version
= revid
;
897 input
->keycodesize
= sizeof(kpad
->keycode
[0]);
898 input
->keycodemax
= pdata
->keymapsize
;
899 input
->keycode
= kpad
->keycode
;
901 memcpy(kpad
->keycode
, pdata
->keymap
,
902 pdata
->keymapsize
* input
->keycodesize
);
904 kpad
->gpimap
= pdata
->gpimap
;
905 kpad
->gpimapsize
= pdata
->gpimapsize
;
907 /* setup input device */
908 __set_bit(EV_KEY
, input
->evbit
);
911 __set_bit(EV_REP
, input
->evbit
);
913 for (i
= 0; i
< input
->keycodemax
; i
++)
914 if (kpad
->keycode
[i
] <= KEY_MAX
)
915 __set_bit(kpad
->keycode
[i
], input
->keybit
);
916 __clear_bit(KEY_RESERVED
, input
->keybit
);
918 if (kpad
->gpimapsize
)
919 __set_bit(EV_SW
, input
->evbit
);
920 for (i
= 0; i
< kpad
->gpimapsize
; i
++)
921 __set_bit(kpad
->gpimap
[i
].sw_evt
, input
->swbit
);
923 error
= input_register_device(input
);
925 dev_err(&client
->dev
, "unable to register input device\n");
929 error
= devm_request_threaded_irq(&client
->dev
, client
->irq
,
931 IRQF_TRIGGER_FALLING
| IRQF_ONESHOT
,
932 client
->dev
.driver
->name
, kpad
);
934 dev_err(&client
->dev
, "unable to request irq %d\n", client
->irq
);
941 static void adp5589_clear_config(void *data
)
943 struct adp5589_kpad
*kpad
= data
;
945 adp5589_write(kpad
->client
, kpad
->var
->reg(ADP5589_GENERAL_CFG
), 0);
948 static int adp5589_probe(struct i2c_client
*client
)
950 const struct i2c_device_id
*id
= i2c_client_get_device_id(client
);
951 struct adp5589_kpad
*kpad
;
952 const struct adp5589_kpad_platform_data
*pdata
=
953 dev_get_platdata(&client
->dev
);
957 if (!i2c_check_functionality(client
->adapter
,
958 I2C_FUNC_SMBUS_BYTE_DATA
)) {
959 dev_err(&client
->dev
, "SMBUS Byte Data not Supported\n");
964 dev_err(&client
->dev
, "no platform data?\n");
968 kpad
= devm_kzalloc(&client
->dev
, sizeof(*kpad
), GFP_KERNEL
);
972 kpad
->client
= client
;
974 switch (id
->driver_data
) {
976 kpad
->support_row5
= true;
979 kpad
->is_adp5585
= true;
980 kpad
->var
= &const_adp5585
;
983 kpad
->support_row5
= true;
984 kpad
->var
= &const_adp5589
;
988 error
= devm_add_action_or_reset(&client
->dev
, adp5589_clear_config
,
993 ret
= adp5589_read(client
, ADP5589_5_ID
);
997 revid
= (u8
) ret
& ADP5589_5_DEVICE_ID_MASK
;
999 if (pdata
->keymapsize
) {
1000 error
= adp5589_keypad_add(kpad
, revid
);
1005 error
= adp5589_setup(kpad
);
1009 if (kpad
->gpimapsize
)
1010 adp5589_report_switch_state(kpad
);
1012 error
= adp5589_gpio_add(kpad
);
1016 dev_info(&client
->dev
, "Rev.%d keypad, irq %d\n", revid
, client
->irq
);
1020 static int adp5589_suspend(struct device
*dev
)
1022 struct i2c_client
*client
= to_i2c_client(dev
);
1023 struct adp5589_kpad
*kpad
= i2c_get_clientdata(client
);
1026 disable_irq(client
->irq
);
1031 static int adp5589_resume(struct device
*dev
)
1033 struct i2c_client
*client
= to_i2c_client(dev
);
1034 struct adp5589_kpad
*kpad
= i2c_get_clientdata(client
);
1037 enable_irq(client
->irq
);
1042 static DEFINE_SIMPLE_DEV_PM_OPS(adp5589_dev_pm_ops
, adp5589_suspend
, adp5589_resume
);
1044 static const struct i2c_device_id adp5589_id
[] = {
1045 {"adp5589-keys", ADP5589
},
1046 {"adp5585-keys", ADP5585_01
},
1047 {"adp5585-02-keys", ADP5585_02
}, /* Adds ROW5 to ADP5585 */
1051 MODULE_DEVICE_TABLE(i2c
, adp5589_id
);
1053 static struct i2c_driver adp5589_driver
= {
1055 .name
= KBUILD_MODNAME
,
1056 .pm
= pm_sleep_ptr(&adp5589_dev_pm_ops
),
1058 .probe
= adp5589_probe
,
1059 .id_table
= adp5589_id
,
1062 module_i2c_driver(adp5589_driver
);
1064 MODULE_LICENSE("GPL");
1065 MODULE_AUTHOR("Michael Hennerich <hennerich@blackfin.uclinux.org>");
1066 MODULE_DESCRIPTION("ADP5589/ADP5585 Keypad driver");