2 * linux/drivers/mfd/ucb1x00-core.c
4 * Copyright (C) 2001 Russell King, All Rights Reserved.
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License.
10 * The UCB1x00 core driver provides basic services for handling IO,
11 * the ADC, interrupts, and accessing registers. It is designed
12 * such that everything goes through this layer, thereby providing
13 * a consistent locking methodology, as well as allowing the drivers
14 * to be used on other non-MCP-enabled hardware platforms.
16 * Note that all locks are private to this file. Nothing else may
19 #include <linux/module.h>
20 #include <linux/kernel.h>
21 #include <linux/sched.h>
22 #include <linux/slab.h>
23 #include <linux/init.h>
24 #include <linux/errno.h>
25 #include <linux/interrupt.h>
26 #include <linux/irq.h>
27 #include <linux/device.h>
28 #include <linux/mutex.h>
29 #include <linux/mfd/ucb1x00.h>
31 #include <linux/gpio.h>
33 static DEFINE_MUTEX(ucb1x00_mutex
);
34 static LIST_HEAD(ucb1x00_drivers
);
35 static LIST_HEAD(ucb1x00_devices
);
38 * ucb1x00_io_set_dir - set IO direction
39 * @ucb: UCB1x00 structure describing chip
40 * @in: bitfield of IO pins to be set as inputs
41 * @out: bitfield of IO pins to be set as outputs
43 * Set the IO direction of the ten general purpose IO pins on
44 * the UCB1x00 chip. The @in bitfield has priority over the
45 * @out bitfield, in that if you specify a pin as both input
46 * and output, it will end up as an input.
48 * ucb1x00_enable must have been called to enable the comms
49 * before using this function.
51 * This function takes a spinlock, disabling interrupts.
53 void ucb1x00_io_set_dir(struct ucb1x00
*ucb
, unsigned int in
, unsigned int out
)
57 spin_lock_irqsave(&ucb
->io_lock
, flags
);
61 ucb1x00_reg_write(ucb
, UCB_IO_DIR
, ucb
->io_dir
);
62 spin_unlock_irqrestore(&ucb
->io_lock
, flags
);
66 * ucb1x00_io_write - set or clear IO outputs
67 * @ucb: UCB1x00 structure describing chip
68 * @set: bitfield of IO pins to set to logic '1'
69 * @clear: bitfield of IO pins to set to logic '0'
71 * Set the IO output state of the specified IO pins. The value
72 * is retained if the pins are subsequently configured as inputs.
73 * The @clear bitfield has priority over the @set bitfield -
74 * outputs will be cleared.
76 * ucb1x00_enable must have been called to enable the comms
77 * before using this function.
79 * This function takes a spinlock, disabling interrupts.
81 void ucb1x00_io_write(struct ucb1x00
*ucb
, unsigned int set
, unsigned int clear
)
85 spin_lock_irqsave(&ucb
->io_lock
, flags
);
87 ucb
->io_out
&= ~clear
;
89 ucb1x00_reg_write(ucb
, UCB_IO_DATA
, ucb
->io_out
);
90 spin_unlock_irqrestore(&ucb
->io_lock
, flags
);
94 * ucb1x00_io_read - read the current state of the IO pins
95 * @ucb: UCB1x00 structure describing chip
97 * Return a bitfield describing the logic state of the ten
98 * general purpose IO pins.
100 * ucb1x00_enable must have been called to enable the comms
101 * before using this function.
103 * This function does not take any mutexes or spinlocks.
105 unsigned int ucb1x00_io_read(struct ucb1x00
*ucb
)
107 return ucb1x00_reg_read(ucb
, UCB_IO_DATA
);
110 static void ucb1x00_gpio_set(struct gpio_chip
*chip
, unsigned offset
, int value
)
112 struct ucb1x00
*ucb
= container_of(chip
, struct ucb1x00
, gpio
);
115 spin_lock_irqsave(&ucb
->io_lock
, flags
);
117 ucb
->io_out
|= 1 << offset
;
119 ucb
->io_out
&= ~(1 << offset
);
122 ucb1x00_reg_write(ucb
, UCB_IO_DATA
, ucb
->io_out
);
123 ucb1x00_disable(ucb
);
124 spin_unlock_irqrestore(&ucb
->io_lock
, flags
);
127 static int ucb1x00_gpio_get(struct gpio_chip
*chip
, unsigned offset
)
129 struct ucb1x00
*ucb
= container_of(chip
, struct ucb1x00
, gpio
);
133 val
= ucb1x00_reg_read(ucb
, UCB_IO_DATA
);
134 ucb1x00_disable(ucb
);
136 return val
& (1 << offset
);
139 static int ucb1x00_gpio_direction_input(struct gpio_chip
*chip
, unsigned offset
)
141 struct ucb1x00
*ucb
= container_of(chip
, struct ucb1x00
, gpio
);
144 spin_lock_irqsave(&ucb
->io_lock
, flags
);
145 ucb
->io_dir
&= ~(1 << offset
);
147 ucb1x00_reg_write(ucb
, UCB_IO_DIR
, ucb
->io_dir
);
148 ucb1x00_disable(ucb
);
149 spin_unlock_irqrestore(&ucb
->io_lock
, flags
);
154 static int ucb1x00_gpio_direction_output(struct gpio_chip
*chip
, unsigned offset
157 struct ucb1x00
*ucb
= container_of(chip
, struct ucb1x00
, gpio
);
159 unsigned old
, mask
= 1 << offset
;
161 spin_lock_irqsave(&ucb
->io_lock
, flags
);
166 ucb
->io_out
&= ~mask
;
169 if (old
!= ucb
->io_out
)
170 ucb1x00_reg_write(ucb
, UCB_IO_DATA
, ucb
->io_out
);
172 if (!(ucb
->io_dir
& mask
)) {
174 ucb1x00_reg_write(ucb
, UCB_IO_DIR
, ucb
->io_dir
);
176 ucb1x00_disable(ucb
);
177 spin_unlock_irqrestore(&ucb
->io_lock
, flags
);
182 static int ucb1x00_to_irq(struct gpio_chip
*chip
, unsigned offset
)
184 struct ucb1x00
*ucb
= container_of(chip
, struct ucb1x00
, gpio
);
186 return ucb
->irq_base
> 0 ? ucb
->irq_base
+ offset
: -ENXIO
;
190 * UCB1300 data sheet says we must:
191 * 1. enable ADC => 5us (including reference startup time)
192 * 2. select input => 51*tsibclk => 4.3us
193 * 3. start conversion => 102*tsibclk => 8.5us
194 * (tsibclk = 1/11981000)
195 * Period between SIB 128-bit frames = 10.7us
199 * ucb1x00_adc_enable - enable the ADC converter
200 * @ucb: UCB1x00 structure describing chip
202 * Enable the ucb1x00 and ADC converter on the UCB1x00 for use.
203 * Any code wishing to use the ADC converter must call this
204 * function prior to using it.
206 * This function takes the ADC mutex to prevent two or more
207 * concurrent uses, and therefore may sleep. As a result, it
208 * can only be called from process context, not interrupt
211 * You should release the ADC as soon as possible using
212 * ucb1x00_adc_disable.
214 void ucb1x00_adc_enable(struct ucb1x00
*ucb
)
216 mutex_lock(&ucb
->adc_mutex
);
218 ucb
->adc_cr
|= UCB_ADC_ENA
;
221 ucb1x00_reg_write(ucb
, UCB_ADC_CR
, ucb
->adc_cr
);
225 * ucb1x00_adc_read - read the specified ADC channel
226 * @ucb: UCB1x00 structure describing chip
227 * @adc_channel: ADC channel mask
228 * @sync: wait for syncronisation pulse.
230 * Start an ADC conversion and wait for the result. Note that
231 * synchronised ADC conversions (via the ADCSYNC pin) must wait
232 * until the trigger is asserted and the conversion is finished.
234 * This function currently spins waiting for the conversion to
235 * complete (2 frames max without sync).
237 * If called for a synchronised ADC conversion, it may sleep
238 * with the ADC mutex held.
240 unsigned int ucb1x00_adc_read(struct ucb1x00
*ucb
, int adc_channel
, int sync
)
245 adc_channel
|= UCB_ADC_SYNC_ENA
;
247 ucb1x00_reg_write(ucb
, UCB_ADC_CR
, ucb
->adc_cr
| adc_channel
);
248 ucb1x00_reg_write(ucb
, UCB_ADC_CR
, ucb
->adc_cr
| adc_channel
| UCB_ADC_START
);
251 val
= ucb1x00_reg_read(ucb
, UCB_ADC_DATA
);
252 if (val
& UCB_ADC_DAT_VAL
)
254 /* yield to other processes */
255 set_current_state(TASK_INTERRUPTIBLE
);
259 return UCB_ADC_DAT(val
);
263 * ucb1x00_adc_disable - disable the ADC converter
264 * @ucb: UCB1x00 structure describing chip
266 * Disable the ADC converter and release the ADC mutex.
268 void ucb1x00_adc_disable(struct ucb1x00
*ucb
)
270 ucb
->adc_cr
&= ~UCB_ADC_ENA
;
271 ucb1x00_reg_write(ucb
, UCB_ADC_CR
, ucb
->adc_cr
);
272 ucb1x00_disable(ucb
);
274 mutex_unlock(&ucb
->adc_mutex
);
278 * UCB1x00 Interrupt handling.
280 * The UCB1x00 can generate interrupts when the SIBCLK is stopped.
281 * Since we need to read an internal register, we must re-enable
282 * SIBCLK to talk to the chip. We leave the clock running until
283 * we have finished processing all interrupts from the chip.
285 static void ucb1x00_irq(unsigned int irq
, struct irq_desc
*desc
)
287 struct ucb1x00
*ucb
= irq_desc_get_handler_data(desc
);
291 isr
= ucb1x00_reg_read(ucb
, UCB_IE_STATUS
);
292 ucb1x00_reg_write(ucb
, UCB_IE_CLEAR
, isr
);
293 ucb1x00_reg_write(ucb
, UCB_IE_CLEAR
, 0);
295 for (i
= 0; i
< 16 && isr
; i
++, isr
>>= 1, irq
++)
297 generic_handle_irq(ucb
->irq_base
+ i
);
298 ucb1x00_disable(ucb
);
301 static void ucb1x00_irq_update(struct ucb1x00
*ucb
, unsigned mask
)
304 if (ucb
->irq_ris_enbl
& mask
)
305 ucb1x00_reg_write(ucb
, UCB_IE_RIS
, ucb
->irq_ris_enbl
&
307 if (ucb
->irq_fal_enbl
& mask
)
308 ucb1x00_reg_write(ucb
, UCB_IE_FAL
, ucb
->irq_fal_enbl
&
310 ucb1x00_disable(ucb
);
313 static void ucb1x00_irq_noop(struct irq_data
*data
)
317 static void ucb1x00_irq_mask(struct irq_data
*data
)
319 struct ucb1x00
*ucb
= irq_data_get_irq_chip_data(data
);
320 unsigned mask
= 1 << (data
->irq
- ucb
->irq_base
);
322 raw_spin_lock(&ucb
->irq_lock
);
323 ucb
->irq_mask
&= ~mask
;
324 ucb1x00_irq_update(ucb
, mask
);
325 raw_spin_unlock(&ucb
->irq_lock
);
328 static void ucb1x00_irq_unmask(struct irq_data
*data
)
330 struct ucb1x00
*ucb
= irq_data_get_irq_chip_data(data
);
331 unsigned mask
= 1 << (data
->irq
- ucb
->irq_base
);
333 raw_spin_lock(&ucb
->irq_lock
);
334 ucb
->irq_mask
|= mask
;
335 ucb1x00_irq_update(ucb
, mask
);
336 raw_spin_unlock(&ucb
->irq_lock
);
339 static int ucb1x00_irq_set_type(struct irq_data
*data
, unsigned int type
)
341 struct ucb1x00
*ucb
= irq_data_get_irq_chip_data(data
);
342 unsigned mask
= 1 << (data
->irq
- ucb
->irq_base
);
344 raw_spin_lock(&ucb
->irq_lock
);
345 if (type
& IRQ_TYPE_EDGE_RISING
)
346 ucb
->irq_ris_enbl
|= mask
;
348 ucb
->irq_ris_enbl
&= ~mask
;
350 if (type
& IRQ_TYPE_EDGE_FALLING
)
351 ucb
->irq_fal_enbl
|= mask
;
353 ucb
->irq_fal_enbl
&= ~mask
;
354 if (ucb
->irq_mask
& mask
) {
355 ucb1x00_reg_write(ucb
, UCB_IE_RIS
, ucb
->irq_ris_enbl
&
357 ucb1x00_reg_write(ucb
, UCB_IE_FAL
, ucb
->irq_fal_enbl
&
360 raw_spin_unlock(&ucb
->irq_lock
);
365 static int ucb1x00_irq_set_wake(struct irq_data
*data
, unsigned int on
)
367 struct ucb1x00
*ucb
= irq_data_get_irq_chip_data(data
);
368 struct ucb1x00_plat_data
*pdata
= ucb
->mcp
->attached_device
.platform_data
;
369 unsigned mask
= 1 << (data
->irq
- ucb
->irq_base
);
371 if (!pdata
|| !pdata
->can_wakeup
)
374 raw_spin_lock(&ucb
->irq_lock
);
376 ucb
->irq_wake
|= mask
;
378 ucb
->irq_wake
&= ~mask
;
379 raw_spin_unlock(&ucb
->irq_lock
);
384 static struct irq_chip ucb1x00_irqchip
= {
386 .irq_ack
= ucb1x00_irq_noop
,
387 .irq_mask
= ucb1x00_irq_mask
,
388 .irq_unmask
= ucb1x00_irq_unmask
,
389 .irq_set_type
= ucb1x00_irq_set_type
,
390 .irq_set_wake
= ucb1x00_irq_set_wake
,
393 static int ucb1x00_add_dev(struct ucb1x00
*ucb
, struct ucb1x00_driver
*drv
)
395 struct ucb1x00_dev
*dev
;
398 dev
= kmalloc(sizeof(struct ucb1x00_dev
), GFP_KERNEL
);
406 list_add_tail(&dev
->dev_node
, &ucb
->devs
);
407 list_add_tail(&dev
->drv_node
, &drv
->devs
);
415 static void ucb1x00_remove_dev(struct ucb1x00_dev
*dev
)
417 dev
->drv
->remove(dev
);
418 list_del(&dev
->dev_node
);
419 list_del(&dev
->drv_node
);
424 * Try to probe our interrupt, rather than relying on lots of
425 * hard-coded machine dependencies. For reference, the expected
428 * Machine Default IRQ
429 * adsbitsy IRQ_GPCIN4
430 * cerf IRQ_GPIO_UCB1200_IRQ
431 * flexanet IRQ_GPIO_GUI
432 * freebird IRQ_GPIO_FREEBIRD_UCB1300_IRQ
433 * graphicsclient ADS_EXT_IRQ(8)
434 * graphicsmaster ADS_EXT_IRQ(8)
435 * lart LART_IRQ_UCB1200
436 * omnimeter IRQ_GPIO23
437 * pfs168 IRQ_GPIO_UCB1300_IRQ
438 * simpad IRQ_GPIO_UCB1300_IRQ
439 * shannon SHANNON_IRQ_GPIO_IRQ_CODEC
440 * yopy IRQ_GPIO_UCB1200_IRQ
442 static int ucb1x00_detect_irq(struct ucb1x00
*ucb
)
446 mask
= probe_irq_on();
453 * Enable the ADC interrupt.
455 ucb1x00_reg_write(ucb
, UCB_IE_RIS
, UCB_IE_ADC
);
456 ucb1x00_reg_write(ucb
, UCB_IE_FAL
, UCB_IE_ADC
);
457 ucb1x00_reg_write(ucb
, UCB_IE_CLEAR
, 0xffff);
458 ucb1x00_reg_write(ucb
, UCB_IE_CLEAR
, 0);
461 * Cause an ADC interrupt.
463 ucb1x00_reg_write(ucb
, UCB_ADC_CR
, UCB_ADC_ENA
);
464 ucb1x00_reg_write(ucb
, UCB_ADC_CR
, UCB_ADC_ENA
| UCB_ADC_START
);
467 * Wait for the conversion to complete.
469 while ((ucb1x00_reg_read(ucb
, UCB_ADC_DATA
) & UCB_ADC_DAT_VAL
) == 0);
470 ucb1x00_reg_write(ucb
, UCB_ADC_CR
, 0);
473 * Disable and clear interrupt.
475 ucb1x00_reg_write(ucb
, UCB_IE_RIS
, 0);
476 ucb1x00_reg_write(ucb
, UCB_IE_FAL
, 0);
477 ucb1x00_reg_write(ucb
, UCB_IE_CLEAR
, 0xffff);
478 ucb1x00_reg_write(ucb
, UCB_IE_CLEAR
, 0);
481 * Read triggered interrupt.
483 return probe_irq_off(mask
);
486 static void ucb1x00_release(struct device
*dev
)
488 struct ucb1x00
*ucb
= classdev_to_ucb1x00(dev
);
492 static struct class ucb1x00_class
= {
494 .dev_release
= ucb1x00_release
,
497 static int ucb1x00_probe(struct mcp
*mcp
)
499 struct ucb1x00_plat_data
*pdata
= mcp
->attached_device
.platform_data
;
500 struct ucb1x00_driver
*drv
;
502 unsigned id
, i
, irq_base
;
505 /* Tell the platform to deassert the UCB1x00 reset */
506 if (pdata
&& pdata
->reset
)
507 pdata
->reset(UCB_RST_PROBE
);
510 id
= mcp_reg_read(mcp
, UCB_ID
);
513 if (id
!= UCB_ID_1200
&& id
!= UCB_ID_1300
&& id
!= UCB_ID_TC35143
) {
514 printk(KERN_WARNING
"UCB1x00 ID not found: %04x\n", id
);
518 ucb
= kzalloc(sizeof(struct ucb1x00
), GFP_KERNEL
);
523 device_initialize(&ucb
->dev
);
524 ucb
->dev
.class = &ucb1x00_class
;
525 ucb
->dev
.parent
= &mcp
->attached_device
;
526 dev_set_name(&ucb
->dev
, "ucb1x00");
528 raw_spin_lock_init(&ucb
->irq_lock
);
529 spin_lock_init(&ucb
->io_lock
);
530 mutex_init(&ucb
->adc_mutex
);
535 ret
= device_add(&ucb
->dev
);
540 ucb
->irq
= ucb1x00_detect_irq(ucb
);
541 ucb1x00_disable(ucb
);
542 if (ucb
->irq
== NO_IRQ
) {
543 dev_err(&ucb
->dev
, "IRQ probe failed\n");
549 irq_base
= pdata
? pdata
->irq_base
: 0;
550 ucb
->irq_base
= irq_alloc_descs(-1, irq_base
, 16, -1);
551 if (ucb
->irq_base
< 0) {
552 dev_err(&ucb
->dev
, "unable to allocate 16 irqs: %d\n",
557 for (i
= 0; i
< 16; i
++) {
558 unsigned irq
= ucb
->irq_base
+ i
;
560 irq_set_chip_and_handler(irq
, &ucb1x00_irqchip
, handle_edge_irq
);
561 irq_set_chip_data(irq
, ucb
);
562 set_irq_flags(irq
, IRQF_VALID
| IRQ_NOREQUEST
);
565 irq_set_irq_type(ucb
->irq
, IRQ_TYPE_EDGE_RISING
);
566 irq_set_handler_data(ucb
->irq
, ucb
);
567 irq_set_chained_handler(ucb
->irq
, ucb1x00_irq
);
569 if (pdata
&& pdata
->gpio_base
) {
570 ucb
->gpio
.label
= dev_name(&ucb
->dev
);
571 ucb
->gpio
.dev
= &ucb
->dev
;
572 ucb
->gpio
.owner
= THIS_MODULE
;
573 ucb
->gpio
.base
= pdata
->gpio_base
;
574 ucb
->gpio
.ngpio
= 10;
575 ucb
->gpio
.set
= ucb1x00_gpio_set
;
576 ucb
->gpio
.get
= ucb1x00_gpio_get
;
577 ucb
->gpio
.direction_input
= ucb1x00_gpio_direction_input
;
578 ucb
->gpio
.direction_output
= ucb1x00_gpio_direction_output
;
579 ucb
->gpio
.to_irq
= ucb1x00_to_irq
;
580 ret
= gpiochip_add(&ucb
->gpio
);
584 dev_info(&ucb
->dev
, "gpio_base not set so no gpiolib support");
586 mcp_set_drvdata(mcp
, ucb
);
589 device_set_wakeup_capable(&ucb
->dev
, pdata
->can_wakeup
);
591 INIT_LIST_HEAD(&ucb
->devs
);
592 mutex_lock(&ucb1x00_mutex
);
593 list_add_tail(&ucb
->node
, &ucb1x00_devices
);
594 list_for_each_entry(drv
, &ucb1x00_drivers
, node
) {
595 ucb1x00_add_dev(ucb
, drv
);
597 mutex_unlock(&ucb1x00_mutex
);
602 irq_set_chained_handler(ucb
->irq
, NULL
);
604 if (ucb
->irq_base
> 0)
605 irq_free_descs(ucb
->irq_base
, 16);
607 device_del(&ucb
->dev
);
609 put_device(&ucb
->dev
);
611 if (pdata
&& pdata
->reset
)
612 pdata
->reset(UCB_RST_PROBE_FAIL
);
616 static void ucb1x00_remove(struct mcp
*mcp
)
618 struct ucb1x00_plat_data
*pdata
= mcp
->attached_device
.platform_data
;
619 struct ucb1x00
*ucb
= mcp_get_drvdata(mcp
);
620 struct list_head
*l
, *n
;
623 mutex_lock(&ucb1x00_mutex
);
624 list_del(&ucb
->node
);
625 list_for_each_safe(l
, n
, &ucb
->devs
) {
626 struct ucb1x00_dev
*dev
= list_entry(l
, struct ucb1x00_dev
, dev_node
);
627 ucb1x00_remove_dev(dev
);
629 mutex_unlock(&ucb1x00_mutex
);
631 if (ucb
->gpio
.base
!= -1) {
632 ret
= gpiochip_remove(&ucb
->gpio
);
634 dev_err(&ucb
->dev
, "Can't remove gpio chip: %d\n", ret
);
637 irq_set_chained_handler(ucb
->irq
, NULL
);
638 irq_free_descs(ucb
->irq_base
, 16);
639 device_unregister(&ucb
->dev
);
641 if (pdata
&& pdata
->reset
)
642 pdata
->reset(UCB_RST_REMOVE
);
645 int ucb1x00_register_driver(struct ucb1x00_driver
*drv
)
649 INIT_LIST_HEAD(&drv
->devs
);
650 mutex_lock(&ucb1x00_mutex
);
651 list_add_tail(&drv
->node
, &ucb1x00_drivers
);
652 list_for_each_entry(ucb
, &ucb1x00_devices
, node
) {
653 ucb1x00_add_dev(ucb
, drv
);
655 mutex_unlock(&ucb1x00_mutex
);
659 void ucb1x00_unregister_driver(struct ucb1x00_driver
*drv
)
661 struct list_head
*n
, *l
;
663 mutex_lock(&ucb1x00_mutex
);
664 list_del(&drv
->node
);
665 list_for_each_safe(l
, n
, &drv
->devs
) {
666 struct ucb1x00_dev
*dev
= list_entry(l
, struct ucb1x00_dev
, drv_node
);
667 ucb1x00_remove_dev(dev
);
669 mutex_unlock(&ucb1x00_mutex
);
672 static int ucb1x00_suspend(struct device
*dev
)
674 struct ucb1x00_plat_data
*pdata
= dev
->platform_data
;
675 struct ucb1x00
*ucb
= dev_get_drvdata(dev
);
676 struct ucb1x00_dev
*udev
;
678 mutex_lock(&ucb1x00_mutex
);
679 list_for_each_entry(udev
, &ucb
->devs
, dev_node
) {
680 if (udev
->drv
->suspend
)
681 udev
->drv
->suspend(udev
);
683 mutex_unlock(&ucb1x00_mutex
);
688 raw_spin_lock_irqsave(&ucb
->irq_lock
, flags
);
690 ucb1x00_reg_write(ucb
, UCB_IE_RIS
, ucb
->irq_ris_enbl
&
692 ucb1x00_reg_write(ucb
, UCB_IE_FAL
, ucb
->irq_fal_enbl
&
694 ucb1x00_disable(ucb
);
695 raw_spin_unlock_irqrestore(&ucb
->irq_lock
, flags
);
697 enable_irq_wake(ucb
->irq
);
698 } else if (pdata
&& pdata
->reset
)
699 pdata
->reset(UCB_RST_SUSPEND
);
704 static int ucb1x00_resume(struct device
*dev
)
706 struct ucb1x00_plat_data
*pdata
= dev
->platform_data
;
707 struct ucb1x00
*ucb
= dev_get_drvdata(dev
);
708 struct ucb1x00_dev
*udev
;
710 if (!ucb
->irq_wake
&& pdata
&& pdata
->reset
)
711 pdata
->reset(UCB_RST_RESUME
);
714 ucb1x00_reg_write(ucb
, UCB_IO_DATA
, ucb
->io_out
);
715 ucb1x00_reg_write(ucb
, UCB_IO_DIR
, ucb
->io_dir
);
720 raw_spin_lock_irqsave(&ucb
->irq_lock
, flags
);
721 ucb1x00_reg_write(ucb
, UCB_IE_RIS
, ucb
->irq_ris_enbl
&
723 ucb1x00_reg_write(ucb
, UCB_IE_FAL
, ucb
->irq_fal_enbl
&
725 raw_spin_unlock_irqrestore(&ucb
->irq_lock
, flags
);
727 disable_irq_wake(ucb
->irq
);
729 ucb1x00_disable(ucb
);
731 mutex_lock(&ucb1x00_mutex
);
732 list_for_each_entry(udev
, &ucb
->devs
, dev_node
) {
733 if (udev
->drv
->resume
)
734 udev
->drv
->resume(udev
);
736 mutex_unlock(&ucb1x00_mutex
);
740 static const struct dev_pm_ops ucb1x00_pm_ops
= {
741 SET_SYSTEM_SLEEP_PM_OPS(ucb1x00_suspend
, ucb1x00_resume
)
744 static struct mcp_driver ucb1x00_driver
= {
747 .owner
= THIS_MODULE
,
748 .pm
= &ucb1x00_pm_ops
,
750 .probe
= ucb1x00_probe
,
751 .remove
= ucb1x00_remove
,
754 static int __init
ucb1x00_init(void)
756 int ret
= class_register(&ucb1x00_class
);
758 ret
= mcp_driver_register(&ucb1x00_driver
);
760 class_unregister(&ucb1x00_class
);
765 static void __exit
ucb1x00_exit(void)
767 mcp_driver_unregister(&ucb1x00_driver
);
768 class_unregister(&ucb1x00_class
);
771 module_init(ucb1x00_init
);
772 module_exit(ucb1x00_exit
);
774 EXPORT_SYMBOL(ucb1x00_io_set_dir
);
775 EXPORT_SYMBOL(ucb1x00_io_write
);
776 EXPORT_SYMBOL(ucb1x00_io_read
);
778 EXPORT_SYMBOL(ucb1x00_adc_enable
);
779 EXPORT_SYMBOL(ucb1x00_adc_read
);
780 EXPORT_SYMBOL(ucb1x00_adc_disable
);
782 EXPORT_SYMBOL(ucb1x00_register_driver
);
783 EXPORT_SYMBOL(ucb1x00_unregister_driver
);
785 MODULE_ALIAS("mcp:ucb1x00");
786 MODULE_AUTHOR("Russell King <rmk@arm.linux.org.uk>");
787 MODULE_DESCRIPTION("UCB1x00 core driver");
788 MODULE_LICENSE("GPL");