118 lines
		
	
	
	
		
			4.5 KiB
			
		
	
	
	
		
			C
		
	
	
	
	
	
		
		
			
		
	
	
			118 lines
		
	
	
	
		
			4.5 KiB
			
		
	
	
	
		
			C
		
	
	
	
	
	
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								/*
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								 * Summit Microelectronics SMB347 Battery Charger Driver
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								 *
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								 * Copyright (C) 2011, Intel Corporation
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								 *
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								 * Authors: Bruce E. Robertson <bruce.e.robertson@intel.com>
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								 *          Mika Westerberg <mika.westerberg@linux.intel.com>
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								 *
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								 * This program is free software; you can redistribute it and/or modify
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								 * it under the terms of the GNU General Public License version 2 as
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								 * published by the Free Software Foundation.
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								 */
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								#ifndef SMB347_CHARGER_H
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								#define SMB347_CHARGER_H
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								#include <linux/types.h>
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								#include <linux/power_supply.h>
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								enum {
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									/* use the default compensation method */
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									SMB347_SOFT_TEMP_COMPENSATE_DEFAULT = -1,
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									SMB347_SOFT_TEMP_COMPENSATE_NONE,
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									SMB347_SOFT_TEMP_COMPENSATE_CURRENT,
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									SMB347_SOFT_TEMP_COMPENSATE_VOLTAGE,
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								};
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								/* Use default factory programmed value for hard/soft temperature limit */
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								#define SMB347_TEMP_USE_DEFAULT		-273
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								/*
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								 * Charging enable can be controlled by software (via i2c) by
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								 * smb347-charger driver or by EN pin (active low/high).
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								 */
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								enum smb347_chg_enable {
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									SMB347_CHG_ENABLE_SW,
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									SMB347_CHG_ENABLE_PIN_ACTIVE_LOW,
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									SMB347_CHG_ENABLE_PIN_ACTIVE_HIGH,
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								};
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								/**
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								 * struct smb347_charger_platform_data - platform data for SMB347 charger
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								 * @battery_info: Information about the battery
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								 * @max_charge_current: maximum current (in uA) the battery can be charged
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								 * @max_charge_voltage: maximum voltage (in uV) the battery can be charged
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								 * @pre_charge_current: current (in uA) to use in pre-charging phase
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								 * @termination_current: current (in uA) used to determine when the
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								 *			 charging cycle terminates
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								 * @pre_to_fast_voltage: voltage (in uV) treshold used for transitioning to
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								 *			 pre-charge to fast charge mode
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								 * @mains_current_limit: maximum input current drawn from AC/DC input (in uA)
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								 * @usb_hc_current_limit: maximum input high current (in uA) drawn from USB
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								 *			  input
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								 * @chip_temp_threshold: die temperature where device starts limiting charge
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								 *			 current [%100 - %130] (in degree C)
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								 * @soft_cold_temp_limit: soft cold temperature limit [%0 - %15] (in degree C),
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								 *			  granularity is 5 deg C.
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								 * @soft_hot_temp_limit: soft hot temperature limit [%40 - %55] (in degree  C),
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								 *			 granularity is 5 deg C.
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								 * @hard_cold_temp_limit: hard cold temperature limit [%-5 - %10] (in degree C),
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								 *			  granularity is 5 deg C.
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								 * @hard_hot_temp_limit: hard hot temperature limit [%50 - %65] (in degree C),
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								 *			 granularity is 5 deg C.
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								 * @suspend_on_hard_temp_limit: suspend charging when hard limit is hit
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								 * @soft_temp_limit_compensation: compensation method when soft temperature
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								 *				  limit is hit
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								 * @charge_current_compensation: current (in uA) for charging compensation
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								 *				 current when temperature hits soft limits
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								 * @use_mains: AC/DC input can be used
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								 * @use_usb: USB input can be used
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								 * @use_usb_otg: USB OTG output can be used (not implemented yet)
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								 * @irq_gpio: GPIO number used for interrupts (%-1 if not used)
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								 * @enable_control: how charging enable/disable is controlled
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								 *		    (driver/pin controls)
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								 *
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								 * @use_main, @use_usb, and @use_usb_otg are means to enable/disable
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								 * hardware support for these. This is useful when we want to have for
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								 * example OTG charging controlled via OTG transceiver driver and not by
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								 * the SMB347 hardware.
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								 *
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								 * Hard and soft temperature limit values are given as described in the
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								 * device data sheet and assuming NTC beta value is %3750. Even if this is
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								 * not the case, these values should be used. They can be mapped to the
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								 * corresponding NTC beta values with the help of table %2 in the data
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								 * sheet. So for example if NTC beta is %3375 and we want to program hard
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								 * hot limit to be %53 deg C, @hard_hot_temp_limit should be set to %50.
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								 *
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								 * If zero value is given in any of the current and voltage values, the
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								 * factory programmed default will be used. For soft/hard temperature
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								 * values, pass in %SMB347_TEMP_USE_DEFAULT instead.
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								 */
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								struct smb347_charger_platform_data {
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									struct power_supply_info battery_info;
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									unsigned int	max_charge_current;
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									unsigned int	max_charge_voltage;
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									unsigned int	pre_charge_current;
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									unsigned int	termination_current;
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									unsigned int	pre_to_fast_voltage;
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									unsigned int	mains_current_limit;
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									unsigned int	usb_hc_current_limit;
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									unsigned int	chip_temp_threshold;
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									int		soft_cold_temp_limit;
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									int		soft_hot_temp_limit;
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									int		hard_cold_temp_limit;
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									int		hard_hot_temp_limit;
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									bool		suspend_on_hard_temp_limit;
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									unsigned int	soft_temp_limit_compensation;
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									unsigned int	charge_current_compensation;
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									bool		use_mains;
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									bool		use_usb;
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									bool		use_usb_otg;
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									int		irq_gpio;
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									enum smb347_chg_enable enable_control;
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								};
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								#endif /* SMB347_CHARGER_H */
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