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// SPDX-License-Identifier: GPL-2.0-or-later
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/*
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* w1_therm . c
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*
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* Copyright ( c ) 2004 Evgeniy Polyakov < zbr @ ioremap . net >
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*/
# include <asm/types.h>
# include <linux/kernel.h>
# include <linux/module.h>
# include <linux/moduleparam.h>
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# include <linux/sched.h>
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# include <linux/device.h>
# include <linux/types.h>
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# include <linux/slab.h>
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# include <linux/delay.h>
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# include <linux/hwmon.h>
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# include <linux/string.h>
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# include <linux/w1.h>
# define W1_THERM_DS18S20 0x10
# define W1_THERM_DS1822 0x22
# define W1_THERM_DS18B20 0x28
# define W1_THERM_DS1825 0x3B
# define W1_THERM_DS28EA00 0x42
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/*
* Allow the strong pullup to be disabled , but default to enabled .
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* If it was disabled a parasite powered device might not get the require
* current to do a temperature conversion . If it is enabled parasite powered
* devices have a better chance of getting the current required .
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* In case the parasite power - detection is not working ( seems to be the case
* for some DS18S20 ) the strong pullup can also be forced , regardless of the
* power state of the devices .
*
* Summary of options :
* - strong_pullup = 0 Disable strong pullup completely
* - strong_pullup = 1 Enable automatic strong pullup detection
* - strong_pullup = 2 Force strong pullup
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*/
static int w1_strong_pullup = 1 ;
module_param_named ( strong_pullup , w1_strong_pullup , int , 0 ) ;
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/* Nb of try for an operation */
# define W1_THERM_MAX_TRY 5
/* ms delay to retry bus mutex */
# define W1_THERM_RETRY_DELAY 20
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/* Helpers Macros */
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/*
* return the power mode of the sl slave : 1 - ext , 0 - parasite , < 0 unknown
* always test family data existence before using this macro
*/
# define SLAVE_POWERMODE(sl) \
( ( ( struct w1_therm_family_data * ) ( sl - > family_data ) ) - > external_powered )
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/* return the address of the refcnt in the family data */
# define THERM_REFCNT(family_data) \
( & ( ( struct w1_therm_family_data * ) family_data ) - > refcnt )
/* Structs definition */
/**
* struct w1_therm_family_converter - bind device specific functions
* @ broken : flag for non - registred families
* @ reserved : not used here
* @ f : pointer to the device binding structure
* @ convert : pointer to the device conversion function
* @ precision : pointer to the device precision function
* @ eeprom : pointer to eeprom function
*/
struct w1_therm_family_converter {
u8 broken ;
u16 reserved ;
struct w1_family * f ;
int ( * convert ) ( u8 rom [ 9 ] ) ;
int ( * precision ) ( struct device * device , int val ) ;
int ( * eeprom ) ( struct device * device ) ;
} ;
/**
* struct w1_therm_family_data - device data
* @ rom : ROM device id ( 64 bit Lasered ROM code + 1 CRC byte )
* @ refcnt : ref count
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* @ external_powered : 1 device powered externally ,
* 0 device parasite powered ,
* - x error or undefined
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*/
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struct w1_therm_family_data {
uint8_t rom [ 9 ] ;
atomic_t refcnt ;
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int external_powered ;
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} ;
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/**
* struct therm_info - store temperature reading
* @ rom : read device data ( 8 data bytes + 1 CRC byte )
* @ crc : computed crc from rom
* @ verdict : 1 crc checked , 0 crc not matching
*/
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struct therm_info {
u8 rom [ 9 ] ;
u8 crc ;
u8 verdict ;
} ;
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/* Hardware Functions declaration */
/**
* reset_select_slave ( ) - reset and select a slave
* @ sl : the slave to select
*
* Resets the bus and select the slave by sending a ROM MATCH cmd
* w1_reset_select_slave ( ) from w1_io . c could not be used here because
* it sent a SKIP ROM command if only one device is on the line .
* At the beginning of the such process , sl - > master - > slave_count is 1 even if
* more devices are on the line , causing collision on the line .
*
* Context : The w1 master lock must be held .
*
* Return : 0 if success , negative kernel error code otherwise .
*/
static int reset_select_slave ( struct w1_slave * sl ) ;
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/**
* read_powermode ( ) - Query the power mode of the slave
* @ sl : slave to retrieve the power mode
*
* Ask the device to get its power mode ( external or parasite )
* and store the power status in the & struct w1_therm_family_data .
*
* Return :
* * 0 parasite powered device
* * 1 externally powered device
* * < 0 kernel error code
*/
static int read_powermode ( struct w1_slave * sl ) ;
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/* Sysfs interface declaration */
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static ssize_t w1_slave_show ( struct device * device ,
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struct device_attribute * attr , char * buf ) ;
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static ssize_t w1_slave_store ( struct device * device ,
struct device_attribute * attr , const char * buf , size_t size ) ;
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static ssize_t w1_seq_show ( struct device * device ,
struct device_attribute * attr , char * buf ) ;
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static ssize_t ext_power_show ( struct device * device ,
struct device_attribute * attr , char * buf ) ;
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/* Attributes declarations */
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static DEVICE_ATTR_RW ( w1_slave ) ;
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static DEVICE_ATTR_RO ( w1_seq ) ;
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static DEVICE_ATTR_RO ( ext_power ) ;
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/* Interface Functions declaration */
/**
* w1_therm_add_slave ( ) - Called when a new slave is discovered
* @ sl : slave just discovered by the master .
*
* Called by the master when the slave is discovered on the bus . Used to
* initialize slave state before the beginning of any communication .
*
* Return : 0 - If success , negative kernel code otherwise
*/
static int w1_therm_add_slave ( struct w1_slave * sl ) ;
/**
* w1_therm_remove_slave ( ) - Called when a slave is removed
* @ sl : slave to be removed .
*
* Called by the master when the slave is considered not to be on the bus
* anymore . Used to free memory .
*/
static void w1_therm_remove_slave ( struct w1_slave * sl ) ;
/* Family attributes */
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static struct attribute * w1_therm_attrs [ ] = {
& dev_attr_w1_slave . attr ,
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& dev_attr_ext_power . attr ,
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NULL ,
} ;
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static struct attribute * w1_ds28ea00_attrs [ ] = {
& dev_attr_w1_slave . attr ,
& dev_attr_w1_seq . attr ,
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& dev_attr_ext_power . attr ,
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NULL ,
} ;
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/* Attribute groups */
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ATTRIBUTE_GROUPS ( w1_therm ) ;
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ATTRIBUTE_GROUPS ( w1_ds28ea00 ) ;
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# if IS_REACHABLE(CONFIG_HWMON)
static int w1_read_temp ( struct device * dev , u32 attr , int channel ,
long * val ) ;
static umode_t w1_is_visible ( const void * _data , enum hwmon_sensor_types type ,
u32 attr , int channel )
{
return attr = = hwmon_temp_input ? 0444 : 0 ;
}
static int w1_read ( struct device * dev , enum hwmon_sensor_types type ,
u32 attr , int channel , long * val )
{
switch ( type ) {
case hwmon_temp :
return w1_read_temp ( dev , attr , channel , val ) ;
default :
return - EOPNOTSUPP ;
}
}
static const u32 w1_temp_config [ ] = {
HWMON_T_INPUT ,
0
} ;
static const struct hwmon_channel_info w1_temp = {
. type = hwmon_temp ,
. config = w1_temp_config ,
} ;
static const struct hwmon_channel_info * w1_info [ ] = {
& w1_temp ,
NULL
} ;
static const struct hwmon_ops w1_hwmon_ops = {
. is_visible = w1_is_visible ,
. read = w1_read ,
} ;
static const struct hwmon_chip_info w1_chip_info = {
. ops = & w1_hwmon_ops ,
. info = w1_info ,
} ;
# define W1_CHIPINFO (&w1_chip_info)
# else
# define W1_CHIPINFO NULL
# endif
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/* Family operations */
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static struct w1_family_ops w1_therm_fops = {
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. add_slave = w1_therm_add_slave ,
. remove_slave = w1_therm_remove_slave ,
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. groups = w1_therm_groups ,
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. chip_info = W1_CHIPINFO ,
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} ;
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static struct w1_family_ops w1_ds28ea00_fops = {
. add_slave = w1_therm_add_slave ,
. remove_slave = w1_therm_remove_slave ,
. groups = w1_ds28ea00_groups ,
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. chip_info = W1_CHIPINFO ,
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} ;
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/* Family binding operations struct */
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static struct w1_family w1_therm_family_DS18S20 = {
. fid = W1_THERM_DS18S20 ,
. fops = & w1_therm_fops ,
} ;
static struct w1_family w1_therm_family_DS18B20 = {
. fid = W1_THERM_DS18B20 ,
. fops = & w1_therm_fops ,
} ;
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static struct w1_family w1_therm_family_DS1822 = {
. fid = W1_THERM_DS1822 ,
. fops = & w1_therm_fops ,
} ;
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static struct w1_family w1_therm_family_DS28EA00 = {
. fid = W1_THERM_DS28EA00 ,
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. fops = & w1_ds28ea00_fops ,
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} ;
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static struct w1_family w1_therm_family_DS1825 = {
. fid = W1_THERM_DS1825 ,
. fops = & w1_therm_fops ,
} ;
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/* Device dependent func */
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/* write configuration to eeprom */
static inline int w1_therm_eeprom ( struct device * device ) ;
/* DS18S20 does not feature configuration register */
static inline int w1_DS18S20_precision ( struct device * device , int val )
{
return 0 ;
}
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/* Set precision for conversion */
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static inline int w1_DS18B20_precision ( struct device * device , int val )
{
struct w1_slave * sl = dev_to_w1_slave ( device ) ;
struct w1_master * dev = sl - > master ;
u8 rom [ 9 ] , crc ;
int ret , max_trying = 10 ;
u8 * family_data = sl - > family_data ;
uint8_t precision_bits ;
uint8_t mask = 0x60 ;
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if ( val > 12 | | val < 9 ) {
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pr_warn ( " Unsupported precision \n " ) ;
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ret = - EINVAL ;
goto error ;
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}
if ( ! sl - > family_data ) {
ret = - ENODEV ;
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goto error ;
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}
/* prevent the slave from going away in sleep */
atomic_inc ( THERM_REFCNT ( family_data ) ) ;
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ret = mutex_lock_interruptible ( & dev - > bus_mutex ) ;
if ( ret ! = 0 )
goto dec_refcnt ;
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memset ( rom , 0 , sizeof ( rom ) ) ;
/* translate precision to bitmask (see datasheet page 9) */
switch ( val ) {
case 9 :
precision_bits = 0x00 ;
break ;
case 10 :
precision_bits = 0x20 ;
break ;
case 11 :
precision_bits = 0x40 ;
break ;
case 12 :
default :
precision_bits = 0x60 ;
break ;
}
while ( max_trying - - ) {
crc = 0 ;
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if ( ! reset_select_slave ( sl ) ) {
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int count = 0 ;
/* read values to only alter precision bits */
w1_write_8 ( dev , W1_READ_SCRATCHPAD ) ;
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count = w1_read_block ( dev , rom , 9 ) ;
if ( count ! = 9 )
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dev_warn ( device , " w1_read_block() returned %u instead of 9. \n " , count ) ;
crc = w1_calc_crc8 ( rom , 8 ) ;
if ( rom [ 8 ] = = crc ) {
rom [ 4 ] = ( rom [ 4 ] & ~ mask ) | ( precision_bits & mask ) ;
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if ( ! reset_select_slave ( sl ) ) {
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w1_write_8 ( dev , W1_WRITE_SCRATCHPAD ) ;
w1_write_8 ( dev , rom [ 2 ] ) ;
w1_write_8 ( dev , rom [ 3 ] ) ;
w1_write_8 ( dev , rom [ 4 ] ) ;
break ;
}
}
}
}
mutex_unlock ( & dev - > bus_mutex ) ;
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dec_refcnt :
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atomic_dec ( THERM_REFCNT ( family_data ) ) ;
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error :
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return ret ;
}
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/**
* w1_DS18B20_convert_temp ( ) - temperature computation for DS18B20
* @ rom : data read from device RAM ( 8 data bytes + 1 CRC byte )
*
* Can be called for any DS18B20 compliant device .
*
* Return : value in millidegrees Celsius .
*/
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static inline int w1_DS18B20_convert_temp ( u8 rom [ 9 ] )
{
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s16 t = le16_to_cpup ( ( __le16 * ) rom ) ;
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return t * 1000 / 16 ;
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}
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/**
* w1_DS18S20_convert_temp ( ) - temperature computation for DS18S20
* @ rom : data read from device RAM ( 8 data bytes + 1 CRC byte )
*
* Can be called for any DS18S20 compliant device .
*
* Return : value in millidegrees Celsius .
*/
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static inline int w1_DS18S20_convert_temp ( u8 rom [ 9 ] )
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{
int t , h ;
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if ( ! rom [ 7 ] )
return 0 ;
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if ( rom [ 1 ] = = 0 )
t = ( ( s32 ) rom [ 0 ] > > 1 ) * 1000 ;
else
t = 1000 * ( - 1 * ( s32 ) ( 0x100 - rom [ 0 ] ) > > 1 ) ;
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t - = 250 ;
h = 1000 * ( ( s32 ) rom [ 7 ] - ( s32 ) rom [ 6 ] ) ;
h / = ( s32 ) rom [ 7 ] ;
t + = h ;
return t ;
}
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/* Device capability description */
static struct w1_therm_family_converter w1_therm_families [ ] = {
{
. f = & w1_therm_family_DS18S20 ,
. convert = w1_DS18S20_convert_temp ,
. precision = w1_DS18S20_precision ,
. eeprom = w1_therm_eeprom
} ,
{
. f = & w1_therm_family_DS1822 ,
. convert = w1_DS18B20_convert_temp ,
. precision = w1_DS18S20_precision ,
. eeprom = w1_therm_eeprom
} ,
{
. f = & w1_therm_family_DS18B20 ,
. convert = w1_DS18B20_convert_temp ,
. precision = w1_DS18B20_precision ,
. eeprom = w1_therm_eeprom
} ,
{
. f = & w1_therm_family_DS28EA00 ,
. convert = w1_DS18B20_convert_temp ,
. precision = w1_DS18S20_precision ,
. eeprom = w1_therm_eeprom
} ,
{
. f = & w1_therm_family_DS1825 ,
. convert = w1_DS18B20_convert_temp ,
. precision = w1_DS18S20_precision ,
. eeprom = w1_therm_eeprom
}
} ;
/* Helpers Functions */
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/**
* bus_mutex_lock ( ) - Acquire the mutex
* @ lock : w1 bus mutex to acquire
*
* It try to acquire the mutex W1_THERM_MAX_TRY times and wait
* W1_THERM_RETRY_DELAY between 2 attempts .
*
* Return : true is mutex is acquired and lock , false otherwise
*/
static inline bool bus_mutex_lock ( struct mutex * lock )
{
int max_trying = W1_THERM_MAX_TRY ;
/* try to acquire the mutex, if not, sleep retry_delay before retry) */
while ( mutex_lock_interruptible ( lock ) ! = 0 & & max_trying > 0 ) {
unsigned long sleep_rem ;
sleep_rem = msleep_interruptible ( W1_THERM_RETRY_DELAY ) ;
if ( ! sleep_rem )
max_trying - - ;
}
if ( ! max_trying )
return false ; /* Didn't acquire the bus mutex */
return true ;
}
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/**
* w1_convert_temp ( ) - temperature conversion binding function
* @ rom : data read from device RAM ( 8 data bytes + 1 CRC byte )
* @ fid : device family id
*
* The function call the temperature computation function according to
* device family .
*
* Return : value in millidegrees Celsius .
*/
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static inline int w1_convert_temp ( u8 rom [ 9 ] , u8 fid )
{
int i ;
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for ( i = 0 ; i < ARRAY_SIZE ( w1_therm_families ) ; + + i )
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if ( w1_therm_families [ i ] . f - > fid = = fid )
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return w1_therm_families [ i ] . convert ( rom ) ;
return 0 ;
}
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/* Interface Functions */
static int w1_therm_add_slave ( struct w1_slave * sl )
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{
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sl - > family_data = kzalloc ( sizeof ( struct w1_therm_family_data ) ,
GFP_KERNEL ) ;
if ( ! sl - > family_data )
return - ENOMEM ;
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atomic_set ( THERM_REFCNT ( sl - > family_data ) , 1 ) ;
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/* Getting the power mode of the device {external, parasite} */
SLAVE_POWERMODE ( sl ) = read_powermode ( sl ) ;
if ( SLAVE_POWERMODE ( sl ) < 0 ) {
/* no error returned as device has been added */
dev_warn ( & sl - > dev ,
" %s: Device has been added, but power_mode may be corrupted. err=%d \n " ,
__func__ , SLAVE_POWERMODE ( sl ) ) ;
}
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return 0 ;
}
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static void w1_therm_remove_slave ( struct w1_slave * sl )
{
int refcnt = atomic_sub_return ( 1 , THERM_REFCNT ( sl - > family_data ) ) ;
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while ( refcnt ) {
msleep ( 1000 ) ;
refcnt = atomic_read ( THERM_REFCNT ( sl - > family_data ) ) ;
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}
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kfree ( sl - > family_data ) ;
sl - > family_data = NULL ;
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}
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/* Hardware Functions */
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/* Safe version of reset_select_slave - avoid using the one in w_io.c */
static int reset_select_slave ( struct w1_slave * sl )
{
u8 match [ 9 ] = { W1_MATCH_ROM , } ;
u64 rn = le64_to_cpu ( * ( ( u64 * ) & sl - > reg_num ) ) ;
if ( w1_reset_bus ( sl - > master ) )
return - ENODEV ;
memcpy ( & match [ 1 ] , & rn , 8 ) ;
w1_write_block ( sl - > master , match , 9 ) ;
return 0 ;
}
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static ssize_t read_therm ( struct device * device ,
struct w1_slave * sl , struct therm_info * info )
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{
struct w1_master * dev = sl - > master ;
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u8 external_power ;
int ret , max_trying = 10 ;
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u8 * family_data = sl - > family_data ;
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if ( ! family_data ) {
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ret = - ENODEV ;
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goto error ;
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}
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/* prevent the slave from going away in sleep */
atomic_inc ( THERM_REFCNT ( family_data ) ) ;
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ret = mutex_lock_interruptible ( & dev - > bus_mutex ) ;
if ( ret ! = 0 )
goto dec_refcnt ;
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memset ( info - > rom , 0 , sizeof ( info - > rom ) ) ;
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while ( max_trying - - ) {
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info - > verdict = 0 ;
info - > crc = 0 ;
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2020-05-11 23:36:10 +03:00
if ( ! reset_select_slave ( sl ) ) {
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int count = 0 ;
unsigned int tm = 750 ;
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unsigned long sleep_rem ;
w1_write_8 ( dev , W1_READ_PSUPPLY ) ;
external_power = w1_read_8 ( dev ) ;
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if ( reset_select_slave ( sl ) )
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continue ;
2005-04-17 02:20:36 +04:00
2008-10-16 09:04:43 +04:00
/* 750ms strong pullup (or delay) after the convert */
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if ( w1_strong_pullup = = 2 | |
( ! external_power & & w1_strong_pullup ) )
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w1_next_pullup ( dev , tm ) ;
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2005-04-17 02:20:36 +04:00
w1_write_8 ( dev , W1_CONVERT_TEMP ) ;
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if ( external_power ) {
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mutex_unlock ( & dev - > bus_mutex ) ;
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sleep_rem = msleep_interruptible ( tm ) ;
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if ( sleep_rem ! = 0 ) {
ret = - EINTR ;
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goto dec_refcnt ;
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}
2011-11-16 03:43:16 +04:00
2015-05-09 03:51:50 +03:00
ret = mutex_lock_interruptible ( & dev - > bus_mutex ) ;
if ( ret ! = 0 )
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goto dec_refcnt ;
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} else if ( ! w1_strong_pullup ) {
sleep_rem = msleep_interruptible ( tm ) ;
if ( sleep_rem ! = 0 ) {
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ret = - EINTR ;
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goto mt_unlock ;
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}
}
2005-04-17 02:20:36 +04:00
2020-05-11 23:36:10 +03:00
if ( ! reset_select_slave ( sl ) ) {
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w1_write_8 ( dev , W1_READ_SCRATCHPAD ) ;
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count = w1_read_block ( dev , info - > rom , 9 ) ;
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if ( count ! = 9 ) {
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dev_warn ( device , " w1_read_block() "
" returned %u instead of 9. \n " ,
count ) ;
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}
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info - > crc = w1_calc_crc8 ( info - > rom , 8 ) ;
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2017-08-31 02:34:34 +03:00
if ( info - > rom [ 8 ] = = info - > crc )
info - > verdict = 1 ;
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}
}
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if ( info - > verdict )
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break ;
}
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mt_unlock :
mutex_unlock ( & dev - > bus_mutex ) ;
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dec_refcnt :
atomic_dec ( THERM_REFCNT ( family_data ) ) ;
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error :
return ret ;
}
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static inline int w1_therm_eeprom ( struct device * device )
{
struct w1_slave * sl = dev_to_w1_slave ( device ) ;
struct w1_master * dev = sl - > master ;
u8 rom [ 9 ] , external_power ;
int ret , max_trying = 10 ;
u8 * family_data = sl - > family_data ;
if ( ! sl - > family_data ) {
ret = - ENODEV ;
goto error ;
}
/* prevent the slave from going away in sleep */
atomic_inc ( THERM_REFCNT ( family_data ) ) ;
ret = mutex_lock_interruptible ( & dev - > bus_mutex ) ;
if ( ret ! = 0 )
goto dec_refcnt ;
memset ( rom , 0 , sizeof ( rom ) ) ;
while ( max_trying - - ) {
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if ( ! reset_select_slave ( sl ) ) {
2020-05-11 23:35:35 +03:00
unsigned int tm = 10 ;
unsigned long sleep_rem ;
/* check if in parasite mode */
w1_write_8 ( dev , W1_READ_PSUPPLY ) ;
external_power = w1_read_8 ( dev ) ;
2020-05-11 23:36:10 +03:00
if ( reset_select_slave ( sl ) )
2020-05-11 23:35:35 +03:00
continue ;
/* 10ms strong pullup/delay after the copy command */
if ( w1_strong_pullup = = 2 | |
( ! external_power & & w1_strong_pullup ) )
w1_next_pullup ( dev , tm ) ;
w1_write_8 ( dev , W1_COPY_SCRATCHPAD ) ;
if ( external_power ) {
mutex_unlock ( & dev - > bus_mutex ) ;
sleep_rem = msleep_interruptible ( tm ) ;
if ( sleep_rem ! = 0 ) {
ret = - EINTR ;
goto dec_refcnt ;
}
ret = mutex_lock_interruptible ( & dev - > bus_mutex ) ;
if ( ret ! = 0 )
goto dec_refcnt ;
} else if ( ! w1_strong_pullup ) {
sleep_rem = msleep_interruptible ( tm ) ;
if ( sleep_rem ! = 0 ) {
ret = - EINTR ;
goto mt_unlock ;
}
}
break ;
}
}
mt_unlock :
mutex_unlock ( & dev - > bus_mutex ) ;
dec_refcnt :
atomic_dec ( THERM_REFCNT ( family_data ) ) ;
error :
return ret ;
}
2020-05-11 23:36:50 +03:00
static int read_powermode ( struct w1_slave * sl )
{
struct w1_master * dev_master = sl - > master ;
int max_trying = W1_THERM_MAX_TRY ;
int ret = - ENODEV ;
if ( ! sl - > family_data )
goto error ;
/* prevent the slave from going away in sleep */
atomic_inc ( THERM_REFCNT ( sl - > family_data ) ) ;
if ( ! bus_mutex_lock ( & dev_master - > bus_mutex ) ) {
ret = - EAGAIN ; /* Didn't acquire the mutex */
goto dec_refcnt ;
}
while ( ( max_trying - - ) & & ( ret < 0 ) ) {
/* safe version to select slave */
if ( ! reset_select_slave ( sl ) ) {
w1_write_8 ( dev_master , W1_READ_PSUPPLY ) ;
/*
* Emit a read time slot and read only one bit ,
* 1 is externally powered ,
* 0 is parasite powered
*/
ret = w1_touch_bit ( dev_master , 1 ) ;
/* ret should be either 1 either 0 */
}
}
mutex_unlock ( & dev_master - > bus_mutex ) ;
dec_refcnt :
atomic_dec ( THERM_REFCNT ( sl - > family_data ) ) ;
error :
return ret ;
}
2020-05-11 23:35:35 +03:00
/* Sysfs Interface definition */
2017-08-31 02:34:34 +03:00
static ssize_t w1_slave_show ( struct device * device ,
struct device_attribute * attr , char * buf )
{
struct w1_slave * sl = dev_to_w1_slave ( device ) ;
struct therm_info info ;
u8 * family_data = sl - > family_data ;
int ret , i ;
ssize_t c = PAGE_SIZE ;
u8 fid = sl - > family - > fid ;
ret = read_therm ( device , sl , & info ) ;
if ( ret )
return ret ;
2005-04-17 02:20:36 +04:00
for ( i = 0 ; i < 9 ; + + i )
2017-08-31 02:34:34 +03:00
c - = snprintf ( buf + PAGE_SIZE - c , c , " %02x " , info . rom [ i ] ) ;
2008-10-16 09:04:51 +04:00
c - = snprintf ( buf + PAGE_SIZE - c , c , " : crc=%02x %s \n " ,
2017-08-31 02:34:34 +03:00
info . crc , ( info . verdict ) ? " YES " : " NO " ) ;
if ( info . verdict )
memcpy ( family_data , info . rom , sizeof ( info . rom ) ) ;
2005-04-17 02:20:36 +04:00
else
2012-12-18 05:37:56 +04:00
dev_warn ( device , " Read failed CRC check \n " ) ;
2005-04-17 02:20:36 +04:00
for ( i = 0 ; i < 9 ; + + i )
2014-01-16 08:29:24 +04:00
c - = snprintf ( buf + PAGE_SIZE - c , c , " %02x " ,
2015-05-09 03:51:50 +03:00
( ( u8 * ) family_data ) [ i ] ) ;
2005-12-06 13:38:28 +03:00
2008-10-16 09:04:51 +04:00
c - = snprintf ( buf + PAGE_SIZE - c , c , " t=%d \n " ,
2017-08-31 02:34:34 +03:00
w1_convert_temp ( info . rom , fid ) ) ;
2015-05-09 03:51:50 +03:00
ret = PAGE_SIZE - c ;
return ret ;
2005-04-17 02:20:36 +04:00
}
2020-05-11 23:35:35 +03:00
static ssize_t w1_slave_store ( struct device * device ,
struct device_attribute * attr , const char * buf ,
size_t size )
{
int val , ret ;
struct w1_slave * sl = dev_to_w1_slave ( device ) ;
int i ;
ret = kstrtoint ( buf , 0 , & val ) ;
if ( ret )
return ret ;
for ( i = 0 ; i < ARRAY_SIZE ( w1_therm_families ) ; + + i ) {
if ( w1_therm_families [ i ] . f - > fid = = sl - > family - > fid ) {
/* zero value indicates to write current configuration to eeprom */
if ( val = = 0 )
ret = w1_therm_families [ i ] . eeprom ( device ) ;
else
ret = w1_therm_families [ i ] . precision ( device ,
val ) ;
break ;
}
}
return ret ? : size ;
}
2020-05-11 23:36:50 +03:00
static ssize_t ext_power_show ( struct device * device ,
struct device_attribute * attr , char * buf )
{
struct w1_slave * sl = dev_to_w1_slave ( device ) ;
if ( ! sl - > family_data ) {
dev_info ( device ,
" %s: Device not supported by the driver \n " , __func__ ) ;
return 0 ; /* No device family */
}
/* Getting the power mode of the device {external, parasite} */
SLAVE_POWERMODE ( sl ) = read_powermode ( sl ) ;
if ( SLAVE_POWERMODE ( sl ) < 0 ) {
dev_dbg ( device ,
" %s: Power_mode may be corrupted. err=%d \n " ,
__func__ , SLAVE_POWERMODE ( sl ) ) ;
}
return sprintf ( buf , " %d \n " , SLAVE_POWERMODE ( sl ) ) ;
}
2017-08-31 02:34:35 +03:00
# if IS_REACHABLE(CONFIG_HWMON)
static int w1_read_temp ( struct device * device , u32 attr , int channel ,
long * val )
{
struct w1_slave * sl = dev_get_drvdata ( device ) ;
struct therm_info info ;
u8 fid = sl - > family - > fid ;
int ret ;
switch ( attr ) {
case hwmon_temp_input :
ret = read_therm ( device , sl , & info ) ;
if ( ret )
return ret ;
if ( ! info . verdict ) {
ret = - EIO ;
return ret ;
}
* val = w1_convert_temp ( info . rom , fid ) ;
ret = 0 ;
break ;
default :
ret = - EOPNOTSUPP ;
break ;
}
return ret ;
}
# endif
2015-04-28 14:44:17 +03:00
# define W1_42_CHAIN 0x99
# define W1_42_CHAIN_OFF 0x3C
# define W1_42_CHAIN_OFF_INV 0xC3
# define W1_42_CHAIN_ON 0x5A
# define W1_42_CHAIN_ON_INV 0xA5
# define W1_42_CHAIN_DONE 0x96
# define W1_42_CHAIN_DONE_INV 0x69
# define W1_42_COND_READ 0x0F
# define W1_42_SUCCESS_CONFIRM_BYTE 0xAA
# define W1_42_FINISHED_BYTE 0xFF
static ssize_t w1_seq_show ( struct device * device ,
struct device_attribute * attr , char * buf )
{
struct w1_slave * sl = dev_to_w1_slave ( device ) ;
ssize_t c = PAGE_SIZE ;
int rv ;
int i ;
u8 ack ;
u64 rn ;
struct w1_reg_num * reg_num ;
int seq = 0 ;
2015-06-04 12:04:12 +03:00
mutex_lock ( & sl - > master - > bus_mutex ) ;
2015-04-28 14:44:17 +03:00
/* Place all devices in CHAIN state */
if ( w1_reset_bus ( sl - > master ) )
goto error ;
w1_write_8 ( sl - > master , W1_SKIP_ROM ) ;
w1_write_8 ( sl - > master , W1_42_CHAIN ) ;
w1_write_8 ( sl - > master , W1_42_CHAIN_ON ) ;
w1_write_8 ( sl - > master , W1_42_CHAIN_ON_INV ) ;
msleep ( sl - > master - > pullup_duration ) ;
/* check for acknowledgment */
ack = w1_read_8 ( sl - > master ) ;
if ( ack ! = W1_42_SUCCESS_CONFIRM_BYTE )
goto error ;
2020-05-11 23:35:35 +03:00
/* In case the bus fails to send 0xFF, limit */
2015-04-28 14:44:17 +03:00
for ( i = 0 ; i < = 64 ; i + + ) {
if ( w1_reset_bus ( sl - > master ) )
goto error ;
w1_write_8 ( sl - > master , W1_42_COND_READ ) ;
rv = w1_read_block ( sl - > master , ( u8 * ) & rn , 8 ) ;
reg_num = ( struct w1_reg_num * ) & rn ;
2015-06-01 12:55:37 +03:00
if ( reg_num - > family = = W1_42_FINISHED_BYTE )
2015-04-28 14:44:17 +03:00
break ;
if ( sl - > reg_num . id = = reg_num - > id )
seq = i ;
w1_write_8 ( sl - > master , W1_42_CHAIN ) ;
w1_write_8 ( sl - > master , W1_42_CHAIN_DONE ) ;
w1_write_8 ( sl - > master , W1_42_CHAIN_DONE_INV ) ;
w1_read_block ( sl - > master , & ack , sizeof ( ack ) ) ;
/* check for acknowledgment */
ack = w1_read_8 ( sl - > master ) ;
if ( ack ! = W1_42_SUCCESS_CONFIRM_BYTE )
goto error ;
}
/* Exit from CHAIN state */
if ( w1_reset_bus ( sl - > master ) )
goto error ;
w1_write_8 ( sl - > master , W1_SKIP_ROM ) ;
w1_write_8 ( sl - > master , W1_42_CHAIN ) ;
w1_write_8 ( sl - > master , W1_42_CHAIN_OFF ) ;
w1_write_8 ( sl - > master , W1_42_CHAIN_OFF_INV ) ;
/* check for acknowledgment */
ack = w1_read_8 ( sl - > master ) ;
if ( ack ! = W1_42_SUCCESS_CONFIRM_BYTE )
goto error ;
2015-06-04 12:04:12 +03:00
mutex_unlock ( & sl - > master - > bus_mutex ) ;
2015-04-28 14:44:17 +03:00
c - = snprintf ( buf + PAGE_SIZE - c , c , " %d \n " , seq ) ;
return PAGE_SIZE - c ;
error :
mutex_unlock ( & sl - > master - > bus_mutex ) ;
return - EIO ;
}
2005-04-17 02:20:36 +04:00
static int __init w1_therm_init ( void )
{
2005-04-17 22:58:14 +04:00
int err , i ;
2007-02-12 11:52:05 +03:00
for ( i = 0 ; i < ARRAY_SIZE ( w1_therm_families ) ; + + i ) {
2005-04-17 22:58:14 +04:00
err = w1_register_family ( w1_therm_families [ i ] . f ) ;
if ( err )
w1_therm_families [ i ] . broken = 1 ;
}
return 0 ;
2005-04-17 02:20:36 +04:00
}
static void __exit w1_therm_fini ( void )
{
2005-04-17 22:58:14 +04:00
int i ;
2007-02-12 11:52:05 +03:00
for ( i = 0 ; i < ARRAY_SIZE ( w1_therm_families ) ; + + i )
2005-04-17 22:58:14 +04:00
if ( ! w1_therm_families [ i ] . broken )
w1_unregister_family ( w1_therm_families [ i ] . f ) ;
2005-04-17 02:20:36 +04:00
}
module_init ( w1_therm_init ) ;
module_exit ( w1_therm_fini ) ;
2017-05-16 23:02:12 +03:00
MODULE_AUTHOR ( " Evgeniy Polyakov <zbr@ioremap.net> " ) ;
MODULE_DESCRIPTION ( " Driver for 1-wire Dallas network protocol, temperature family. " ) ;
MODULE_LICENSE ( " GPL " ) ;
MODULE_ALIAS ( " w1-family- " __stringify ( W1_THERM_DS18S20 ) ) ;
MODULE_ALIAS ( " w1-family- " __stringify ( W1_THERM_DS1822 ) ) ;
MODULE_ALIAS ( " w1-family- " __stringify ( W1_THERM_DS18B20 ) ) ;
MODULE_ALIAS ( " w1-family- " __stringify ( W1_THERM_DS1825 ) ) ;
MODULE_ALIAS ( " w1-family- " __stringify ( W1_THERM_DS28EA00 ) ) ;