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	iio: counter: Add support for STM32 LPTimer
Add support for STM32 Low-Power Timer, that can be used as counter or quadrature encoder. Signed-off-by: Fabrice Gasnier <fabrice.gasnier@st.com> Reviewed-by: Jonathan Cameron <Jonathan.Cameron@huawei.com> Signed-off-by: Lee Jones <lee.jones@linaro.org>
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					 4 changed files with 450 additions and 0 deletions
				
			
		
							
								
								
									
										57
									
								
								Documentation/ABI/testing/sysfs-bus-iio-lptimer-stm32
									
									
									
									
									
										Normal file
									
								
							
							
						
						
									
										57
									
								
								Documentation/ABI/testing/sysfs-bus-iio-lptimer-stm32
									
									
									
									
									
										Normal file
									
								
							| 
						 | 
				
			
			@ -0,0 +1,57 @@
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What:		/sys/bus/iio/devices/iio:deviceX/in_count0_preset
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KernelVersion:	4.13
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Contact:	fabrice.gasnier@st.com
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Description:
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		Reading returns the current preset value. Writing sets the
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		preset value. Encoder counts continuously from 0 to preset
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		value, depending on direction (up/down).
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What:		/sys/bus/iio/devices/iio:deviceX/in_count_quadrature_mode_available
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KernelVersion:	4.13
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Contact:	fabrice.gasnier@st.com
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Description:
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		Reading returns the list possible quadrature modes.
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What:		/sys/bus/iio/devices/iio:deviceX/in_count0_quadrature_mode
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KernelVersion:	4.13
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Contact:	fabrice.gasnier@st.com
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Description:
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		Configure the device counter quadrature modes:
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		- non-quadrature:
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			Encoder IN1 input servers as the count input (up
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			direction).
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		- quadrature:
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			Encoder IN1 and IN2 inputs are mixed to get direction
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			and count.
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What:		/sys/bus/iio/devices/iio:deviceX/in_count_polarity_available
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KernelVersion:	4.13
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Contact:	fabrice.gasnier@st.com
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Description:
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		Reading returns the list possible active edges.
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What:		/sys/bus/iio/devices/iio:deviceX/in_count0_polarity
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KernelVersion:	4.13
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Contact:	fabrice.gasnier@st.com
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Description:
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		Configure the device encoder/counter active edge:
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		- rising-edge
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		- falling-edge
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		- both-edges
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		In non-quadrature mode, device counts up on active edge.
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		In quadrature mode, encoder counting scenarios are as follows:
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		----------------------------------------------------------------
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		| Active  | Level on |      IN1 signal    |     IN2 signal     |
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		| edge    | opposite |------------------------------------------
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		|         | signal   |  Rising  | Falling |  Rising  | Falling |
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		----------------------------------------------------------------
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		| Rising  | High ->  |   Down   |    -    |    Up    |    -    |
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		| edge    | Low  ->  |    Up    |    -    |   Down   |    -    |
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		----------------------------------------------------------------
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		| Falling | High ->  |    -     |    Up   |    -     |   Down  |
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		| edge    | Low  ->  |    -     |   Down  |    -     |    Up   |
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		----------------------------------------------------------------
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		| Both    | High ->  |   Down   |    Up   |    Up    |   Down  |
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		| edges   | Low  ->  |    Up    |   Down  |   Down   |    Up   |
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		----------------------------------------------------------------
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| 
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			@ -21,4 +21,13 @@ config 104_QUAD_8
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	  The base port addresses for the devices may be configured via the base
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	  array module parameter.
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config STM32_LPTIMER_CNT
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	tristate "STM32 LP Timer encoder counter driver"
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	depends on MFD_STM32_LPTIMER || COMPILE_TEST
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	help
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	  Select this option to enable STM32 Low-Power Timer quadrature encoder
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	  and counter driver.
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	  To compile this driver as a module, choose M here: the
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	  module will be called stm32-lptimer-cnt.
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endmenu
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			@ -5,3 +5,4 @@
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# When adding new entries keep the list in alphabetical order
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obj-$(CONFIG_104_QUAD_8)	+= 104-quad-8.o
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obj-$(CONFIG_STM32_LPTIMER_CNT)	+= stm32-lptimer-cnt.o
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										383
									
								
								drivers/iio/counter/stm32-lptimer-cnt.c
									
									
									
									
									
										Normal file
									
								
							
							
						
						
									
										383
									
								
								drivers/iio/counter/stm32-lptimer-cnt.c
									
									
									
									
									
										Normal file
									
								
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			@ -0,0 +1,383 @@
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/*
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 * STM32 Low-Power Timer Encoder and Counter driver
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 *
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 * Copyright (C) STMicroelectronics 2017
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 *
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 * Author: Fabrice Gasnier <fabrice.gasnier@st.com>
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 *
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 * Inspired by 104-quad-8 and stm32-timer-trigger drivers.
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 *
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 * License terms:  GNU General Public License (GPL), version 2
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 */
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#include <linux/bitfield.h>
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#include <linux/iio/iio.h>
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#include <linux/mfd/stm32-lptimer.h>
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#include <linux/module.h>
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#include <linux/platform_device.h>
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struct stm32_lptim_cnt {
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	struct device *dev;
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	struct regmap *regmap;
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	struct clk *clk;
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	u32 preset;
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	u32 polarity;
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	u32 quadrature_mode;
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};
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static int stm32_lptim_is_enabled(struct stm32_lptim_cnt *priv)
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{
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	u32 val;
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	int ret;
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	ret = regmap_read(priv->regmap, STM32_LPTIM_CR, &val);
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	if (ret)
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		return ret;
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	return FIELD_GET(STM32_LPTIM_ENABLE, val);
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}
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static int stm32_lptim_set_enable_state(struct stm32_lptim_cnt *priv,
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					int enable)
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{
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	int ret;
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	u32 val;
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	val = FIELD_PREP(STM32_LPTIM_ENABLE, enable);
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	ret = regmap_write(priv->regmap, STM32_LPTIM_CR, val);
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	if (ret)
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		return ret;
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	if (!enable) {
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		clk_disable(priv->clk);
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		return 0;
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	}
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	/* LP timer must be enabled before writing CMP & ARR */
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	ret = regmap_write(priv->regmap, STM32_LPTIM_ARR, priv->preset);
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	if (ret)
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		return ret;
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	ret = regmap_write(priv->regmap, STM32_LPTIM_CMP, 0);
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	if (ret)
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		return ret;
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	/* ensure CMP & ARR registers are properly written */
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	ret = regmap_read_poll_timeout(priv->regmap, STM32_LPTIM_ISR, val,
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				       (val & STM32_LPTIM_CMPOK_ARROK),
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				       100, 1000);
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	if (ret)
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		return ret;
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	ret = regmap_write(priv->regmap, STM32_LPTIM_ICR,
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			   STM32_LPTIM_CMPOKCF_ARROKCF);
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	if (ret)
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		return ret;
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	ret = clk_enable(priv->clk);
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	if (ret) {
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		regmap_write(priv->regmap, STM32_LPTIM_CR, 0);
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		return ret;
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	}
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	/* Start LP timer in continuous mode */
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	return regmap_update_bits(priv->regmap, STM32_LPTIM_CR,
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				  STM32_LPTIM_CNTSTRT, STM32_LPTIM_CNTSTRT);
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}
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static int stm32_lptim_setup(struct stm32_lptim_cnt *priv, int enable)
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{
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	u32 mask = STM32_LPTIM_ENC | STM32_LPTIM_COUNTMODE |
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		   STM32_LPTIM_CKPOL | STM32_LPTIM_PRESC;
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	u32 val;
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	/* Setup LP timer encoder/counter and polarity, without prescaler */
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	if (priv->quadrature_mode)
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		val = enable ? STM32_LPTIM_ENC : 0;
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	else
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		val = enable ? STM32_LPTIM_COUNTMODE : 0;
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	val |= FIELD_PREP(STM32_LPTIM_CKPOL, enable ? priv->polarity : 0);
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	return regmap_update_bits(priv->regmap, STM32_LPTIM_CFGR, mask, val);
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}
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static int stm32_lptim_write_raw(struct iio_dev *indio_dev,
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				 struct iio_chan_spec const *chan,
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				 int val, int val2, long mask)
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{
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	struct stm32_lptim_cnt *priv = iio_priv(indio_dev);
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	int ret;
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	switch (mask) {
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	case IIO_CHAN_INFO_ENABLE:
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		if (val < 0 || val > 1)
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			return -EINVAL;
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		/* Check nobody uses the timer, or already disabled/enabled */
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		ret = stm32_lptim_is_enabled(priv);
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		if ((ret < 0) || (!ret && !val))
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			return ret;
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		if (val && ret)
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			return -EBUSY;
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		ret = stm32_lptim_setup(priv, val);
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		if (ret)
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			return ret;
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		return stm32_lptim_set_enable_state(priv, val);
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	default:
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		return -EINVAL;
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	}
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}
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static int stm32_lptim_read_raw(struct iio_dev *indio_dev,
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				struct iio_chan_spec const *chan,
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				int *val, int *val2, long mask)
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{
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	struct stm32_lptim_cnt *priv = iio_priv(indio_dev);
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	u32 dat;
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	int ret;
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	switch (mask) {
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	case IIO_CHAN_INFO_RAW:
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		ret = regmap_read(priv->regmap, STM32_LPTIM_CNT, &dat);
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		if (ret)
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			return ret;
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		*val = dat;
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		return IIO_VAL_INT;
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	case IIO_CHAN_INFO_ENABLE:
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		ret = stm32_lptim_is_enabled(priv);
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		if (ret < 0)
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			return ret;
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		*val = ret;
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		return IIO_VAL_INT;
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	case IIO_CHAN_INFO_SCALE:
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		/* Non-quadrature mode: scale = 1 */
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		*val = 1;
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		*val2 = 0;
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		if (priv->quadrature_mode) {
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			/*
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			 * Quadrature encoder mode:
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			 * - both edges, quarter cycle, scale is 0.25
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			 * - either rising/falling edge scale is 0.5
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			 */
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			if (priv->polarity > 1)
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				*val2 = 2;
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			else
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				*val2 = 1;
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		}
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		return IIO_VAL_FRACTIONAL_LOG2;
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	default:
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		return -EINVAL;
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	}
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}
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static const struct iio_info stm32_lptim_cnt_iio_info = {
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	.read_raw = stm32_lptim_read_raw,
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	.write_raw = stm32_lptim_write_raw,
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	.driver_module = THIS_MODULE,
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};
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static const char *const stm32_lptim_quadrature_modes[] = {
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	"non-quadrature",
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	"quadrature",
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};
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static int stm32_lptim_get_quadrature_mode(struct iio_dev *indio_dev,
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					   const struct iio_chan_spec *chan)
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{
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	struct stm32_lptim_cnt *priv = iio_priv(indio_dev);
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	return priv->quadrature_mode;
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}
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static int stm32_lptim_set_quadrature_mode(struct iio_dev *indio_dev,
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					   const struct iio_chan_spec *chan,
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					   unsigned int type)
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{
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	struct stm32_lptim_cnt *priv = iio_priv(indio_dev);
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	if (stm32_lptim_is_enabled(priv))
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		return -EBUSY;
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	priv->quadrature_mode = type;
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	return 0;
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}
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static const struct iio_enum stm32_lptim_quadrature_mode_en = {
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	.items = stm32_lptim_quadrature_modes,
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	.num_items = ARRAY_SIZE(stm32_lptim_quadrature_modes),
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	.get = stm32_lptim_get_quadrature_mode,
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	.set = stm32_lptim_set_quadrature_mode,
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};
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static const char * const stm32_lptim_cnt_polarity[] = {
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	"rising-edge", "falling-edge", "both-edges",
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};
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static int stm32_lptim_cnt_get_polarity(struct iio_dev *indio_dev,
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					const struct iio_chan_spec *chan)
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{
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	struct stm32_lptim_cnt *priv = iio_priv(indio_dev);
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	return priv->polarity;
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}
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static int stm32_lptim_cnt_set_polarity(struct iio_dev *indio_dev,
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					const struct iio_chan_spec *chan,
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					unsigned int type)
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{
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	struct stm32_lptim_cnt *priv = iio_priv(indio_dev);
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	if (stm32_lptim_is_enabled(priv))
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		return -EBUSY;
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	priv->polarity = type;
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	return 0;
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}
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static const struct iio_enum stm32_lptim_cnt_polarity_en = {
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	.items = stm32_lptim_cnt_polarity,
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	.num_items = ARRAY_SIZE(stm32_lptim_cnt_polarity),
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	.get = stm32_lptim_cnt_get_polarity,
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	.set = stm32_lptim_cnt_set_polarity,
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};
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static ssize_t stm32_lptim_cnt_get_preset(struct iio_dev *indio_dev,
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					  uintptr_t private,
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					  const struct iio_chan_spec *chan,
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					  char *buf)
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{
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	struct stm32_lptim_cnt *priv = iio_priv(indio_dev);
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	return snprintf(buf, PAGE_SIZE, "%u\n", priv->preset);
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}
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static ssize_t stm32_lptim_cnt_set_preset(struct iio_dev *indio_dev,
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					  uintptr_t private,
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					  const struct iio_chan_spec *chan,
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					  const char *buf, size_t len)
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{
 | 
			
		||||
	struct stm32_lptim_cnt *priv = iio_priv(indio_dev);
 | 
			
		||||
	int ret;
 | 
			
		||||
 | 
			
		||||
	if (stm32_lptim_is_enabled(priv))
 | 
			
		||||
		return -EBUSY;
 | 
			
		||||
 | 
			
		||||
	ret = kstrtouint(buf, 0, &priv->preset);
 | 
			
		||||
	if (ret)
 | 
			
		||||
		return ret;
 | 
			
		||||
 | 
			
		||||
	if (priv->preset > STM32_LPTIM_MAX_ARR)
 | 
			
		||||
		return -EINVAL;
 | 
			
		||||
 | 
			
		||||
	return len;
 | 
			
		||||
}
 | 
			
		||||
 | 
			
		||||
/* LP timer with encoder */
 | 
			
		||||
static const struct iio_chan_spec_ext_info stm32_lptim_enc_ext_info[] = {
 | 
			
		||||
	{
 | 
			
		||||
		.name = "preset",
 | 
			
		||||
		.shared = IIO_SEPARATE,
 | 
			
		||||
		.read = stm32_lptim_cnt_get_preset,
 | 
			
		||||
		.write = stm32_lptim_cnt_set_preset,
 | 
			
		||||
	},
 | 
			
		||||
	IIO_ENUM("polarity", IIO_SEPARATE, &stm32_lptim_cnt_polarity_en),
 | 
			
		||||
	IIO_ENUM_AVAILABLE("polarity", &stm32_lptim_cnt_polarity_en),
 | 
			
		||||
	IIO_ENUM("quadrature_mode", IIO_SEPARATE,
 | 
			
		||||
		 &stm32_lptim_quadrature_mode_en),
 | 
			
		||||
	IIO_ENUM_AVAILABLE("quadrature_mode", &stm32_lptim_quadrature_mode_en),
 | 
			
		||||
	{}
 | 
			
		||||
};
 | 
			
		||||
 | 
			
		||||
static const struct iio_chan_spec stm32_lptim_enc_channels = {
 | 
			
		||||
	.type = IIO_COUNT,
 | 
			
		||||
	.channel = 0,
 | 
			
		||||
	.info_mask_separate = BIT(IIO_CHAN_INFO_RAW) |
 | 
			
		||||
			      BIT(IIO_CHAN_INFO_ENABLE) |
 | 
			
		||||
			      BIT(IIO_CHAN_INFO_SCALE),
 | 
			
		||||
	.ext_info = stm32_lptim_enc_ext_info,
 | 
			
		||||
	.indexed = 1,
 | 
			
		||||
};
 | 
			
		||||
 | 
			
		||||
/* LP timer without encoder (counter only) */
 | 
			
		||||
static const struct iio_chan_spec_ext_info stm32_lptim_cnt_ext_info[] = {
 | 
			
		||||
	{
 | 
			
		||||
		.name = "preset",
 | 
			
		||||
		.shared = IIO_SEPARATE,
 | 
			
		||||
		.read = stm32_lptim_cnt_get_preset,
 | 
			
		||||
		.write = stm32_lptim_cnt_set_preset,
 | 
			
		||||
	},
 | 
			
		||||
	IIO_ENUM("polarity", IIO_SEPARATE, &stm32_lptim_cnt_polarity_en),
 | 
			
		||||
	IIO_ENUM_AVAILABLE("polarity", &stm32_lptim_cnt_polarity_en),
 | 
			
		||||
	{}
 | 
			
		||||
};
 | 
			
		||||
 | 
			
		||||
static const struct iio_chan_spec stm32_lptim_cnt_channels = {
 | 
			
		||||
	.type = IIO_COUNT,
 | 
			
		||||
	.channel = 0,
 | 
			
		||||
	.info_mask_separate = BIT(IIO_CHAN_INFO_RAW) |
 | 
			
		||||
			      BIT(IIO_CHAN_INFO_ENABLE) |
 | 
			
		||||
			      BIT(IIO_CHAN_INFO_SCALE),
 | 
			
		||||
	.ext_info = stm32_lptim_cnt_ext_info,
 | 
			
		||||
	.indexed = 1,
 | 
			
		||||
};
 | 
			
		||||
 | 
			
		||||
static int stm32_lptim_cnt_probe(struct platform_device *pdev)
 | 
			
		||||
{
 | 
			
		||||
	struct stm32_lptimer *ddata = dev_get_drvdata(pdev->dev.parent);
 | 
			
		||||
	struct stm32_lptim_cnt *priv;
 | 
			
		||||
	struct iio_dev *indio_dev;
 | 
			
		||||
 | 
			
		||||
	if (IS_ERR_OR_NULL(ddata))
 | 
			
		||||
		return -EINVAL;
 | 
			
		||||
 | 
			
		||||
	indio_dev = devm_iio_device_alloc(&pdev->dev, sizeof(*priv));
 | 
			
		||||
	if (!indio_dev)
 | 
			
		||||
		return -ENOMEM;
 | 
			
		||||
 | 
			
		||||
	priv = iio_priv(indio_dev);
 | 
			
		||||
	priv->dev = &pdev->dev;
 | 
			
		||||
	priv->regmap = ddata->regmap;
 | 
			
		||||
	priv->clk = ddata->clk;
 | 
			
		||||
	priv->preset = STM32_LPTIM_MAX_ARR;
 | 
			
		||||
 | 
			
		||||
	indio_dev->name = dev_name(&pdev->dev);
 | 
			
		||||
	indio_dev->dev.parent = &pdev->dev;
 | 
			
		||||
	indio_dev->dev.of_node = pdev->dev.of_node;
 | 
			
		||||
	indio_dev->info = &stm32_lptim_cnt_iio_info;
 | 
			
		||||
	if (ddata->has_encoder)
 | 
			
		||||
		indio_dev->channels = &stm32_lptim_enc_channels;
 | 
			
		||||
	else
 | 
			
		||||
		indio_dev->channels = &stm32_lptim_cnt_channels;
 | 
			
		||||
	indio_dev->num_channels = 1;
 | 
			
		||||
 | 
			
		||||
	platform_set_drvdata(pdev, priv);
 | 
			
		||||
 | 
			
		||||
	return devm_iio_device_register(&pdev->dev, indio_dev);
 | 
			
		||||
}
 | 
			
		||||
 | 
			
		||||
static const struct of_device_id stm32_lptim_cnt_of_match[] = {
 | 
			
		||||
	{ .compatible = "st,stm32-lptimer-counter", },
 | 
			
		||||
	{},
 | 
			
		||||
};
 | 
			
		||||
MODULE_DEVICE_TABLE(of, stm32_lptim_cnt_of_match);
 | 
			
		||||
 | 
			
		||||
static struct platform_driver stm32_lptim_cnt_driver = {
 | 
			
		||||
	.probe = stm32_lptim_cnt_probe,
 | 
			
		||||
	.driver = {
 | 
			
		||||
		.name = "stm32-lptimer-counter",
 | 
			
		||||
		.of_match_table = stm32_lptim_cnt_of_match,
 | 
			
		||||
	},
 | 
			
		||||
};
 | 
			
		||||
module_platform_driver(stm32_lptim_cnt_driver);
 | 
			
		||||
 | 
			
		||||
MODULE_AUTHOR("Fabrice Gasnier <fabrice.gasnier@st.com>");
 | 
			
		||||
MODULE_ALIAS("platform:stm32-lptimer-counter");
 | 
			
		||||
MODULE_DESCRIPTION("STMicroelectronics STM32 LPTIM counter driver");
 | 
			
		||||
MODULE_LICENSE("GPL v2");
 | 
			
		||||
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		Reference in a new issue