mirror of https://github.com/hak5/openwrt-owl.git
parent
f2934ef6d4
commit
809bc0321f
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@ -29,8 +29,7 @@
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#include <asm/unistd.h>
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#include <linux/errno.h>
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#include <asm/danube/danube.h>
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#include <asm/danube/port.h>
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#include <asm/danube/danube_led.h>
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#include <asm/danube/danube_gpio.h>
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#include <asm/danube/danube_gptu.h>
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#define LED_CONFIG 0x01
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@ -79,17 +78,6 @@ extern int danube_led_config(struct led_config_param *);
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#define RISING_EDGE 0
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#define FALLING_EDGE 1
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#define port_reserve_pin danube_port_reserve_pin
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#define port_free_pin danube_port_free_pin
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#define port_set_altsel0 danube_port_set_altsel0
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#define port_clear_altsel0 danube_port_clear_altsel0
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#define port_set_altsel1 danube_port_set_altsel1
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#define port_clear_altsel1 danube_port_clear_altsel1
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#define port_set_dir_out danube_port_set_dir_out
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#define port_clear_dir_out danube_port_clear_dir_out
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#define port_set_open_drain danube_port_set_open_drain
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#define port_clear_open_drain danube_port_clear_open_drain
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#define LED_SH_PORT 0
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#define LED_SH_PIN 4
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#define LED_SH_DIR 1
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@ -134,138 +122,112 @@ extern int danube_led_config(struct led_config_param *);
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#endif
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#if LED_SH_DIR
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#define LED_SH_DIR_SETUP port_set_dir_out
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#define LED_SH_DIR_SETUP danube_port_set_dir_out
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#else
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#define LED_SH_DIR_SETUP port_clear_dir_out
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#define LED_SH_DIR_SETUP danube_port_clear_dir_out
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#endif
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#if LED_SH_ALTSEL0
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#define LED_SH_ALTSEL0_SETUP port_set_altsel0
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#define LED_SH_ALTSEL0_SETUP danube_port_set_altsel0
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#else
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#define LED_SH_ALTSEL0_SETUP port_clear_altsel0
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#define LED_SH_ALTSEL0_SETUP danube_port_clear_altsel0
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#endif
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#if LED_SH_ALTSEL1
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#define LED_SH_ALTSEL1_SETUP port_set_altsel1
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#define LED_SH_ALTSEL1_SETUP danube_port_set_altsel1
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#else
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#define LED_SH_ALTSEL1_SETUP port_clear_altsel1
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#define LED_SH_ALTSEL1_SETUP danube_port_clear_altsel1
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#endif
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#if LED_SH_OPENDRAIN
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#define LED_SH_OPENDRAIN_SETUP port_set_open_drain
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#define LED_SH_OPENDRAIN_SETUP danube_port_set_open_drain
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#else
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#define LED_SH_OPENDRAIN_SETUP port_clear_open_drain
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#define LED_SH_OPENDRAIN_SETUP danube_port_clear_open_drain
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#endif
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#if LED_D_DIR
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#define LED_D_DIR_SETUP port_set_dir_out
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#define LED_D_DIR_SETUP danube_port_set_dir_out
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#else
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#define LED_D_DIR_SETUP port_clear_dir_out
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#define LED_D_DIR_SETUP danube_port_clear_dir_out
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#endif
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#if LED_D_ALTSEL0
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#define LED_D_ALTSEL0_SETUP port_set_altsel0
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#define LED_D_ALTSEL0_SETUP danube_port_set_altsel0
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#else
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#define LED_D_ALTSEL0_SETUP port_clear_altsel0
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#define LED_D_ALTSEL0_SETUP danube_port_clear_altsel0
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#endif
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#if LED_D_ALTSEL1
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#define LED_D_ALTSEL1_SETUP port_set_altsel1
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#define LED_D_ALTSEL1_SETUP danube_port_set_altsel1
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#else
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#define LED_D_ALTSEL1_SETUP port_clear_altsel1
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#define LED_D_ALTSEL1_SETUP danube_port_clear_altsel1
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#endif
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#if LED_D_OPENDRAIN
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#define LED_D_OPENDRAIN_SETUP port_set_open_drain
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#define LED_D_OPENDRAIN_SETUP danube_port_set_open_drain
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#else
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#define LED_D_OPENDRAIN_SETUP port_clear_open_drain
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#define LED_D_OPENDRAIN_SETUP danube_port_clear_open_drain
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#endif
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#if LED_ST_DIR
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#define LED_ST_DIR_SETUP port_set_dir_out
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#define LED_ST_DIR_SETUP danube_port_set_dir_out
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#else
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#define LED_ST_DIR_SETUP port_clear_dir_out
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#define LED_ST_DIR_SETUP danube_port_clear_dir_out
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#endif
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#if LED_ST_ALTSEL0
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#define LED_ST_ALTSEL0_SETUP port_set_altsel0
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#define LED_ST_ALTSEL0_SETUP danube_port_set_altsel0
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#else
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#define LED_ST_ALTSEL0_SETUP port_clear_altsel0
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#define LED_ST_ALTSEL0_SETUP danube_port_clear_altsel0
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#endif
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#if LED_ST_ALTSEL1
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#define LED_ST_ALTSEL1_SETUP port_set_altsel1
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#define LED_ST_ALTSEL1_SETUP danube_port_set_altsel1
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#else
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#define LED_ST_ALTSEL1_SETUP port_clear_altsel1
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#define LED_ST_ALTSEL1_SETUP danube_port_clear_altsel1
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#endif
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#if LED_ST_OPENDRAIN
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#define LED_ST_OPENDRAIN_SETUP port_set_open_drain
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#define LED_ST_OPENDRAIN_SETUP danube_port_set_open_drain
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#else
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#define LED_ST_OPENDRAIN_SETUP port_clear_open_drain
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#define LED_ST_OPENDRAIN_SETUP danube_port_clear_open_drain
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#endif
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#if LED_ADSL0_DIR
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#define LED_ADSL0_DIR_SETUP port_set_dir_out
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#define LED_ADSL0_DIR_SETUP danube_port_set_dir_out
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#else
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#define LED_ADSL0_DIR_SETUP port_clear_dir_out
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#define LED_ADSL0_DIR_SETUP danube_port_clear_dir_out
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#endif
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#if LED_ADSL0_ALTSEL0
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#define LED_ADSL0_ALTSEL0_SETUP port_set_altsel0
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#define LED_ADSL0_ALTSEL0_SETUP danube_port_set_altsel0
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#else
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#define LED_ADSL0_ALTSEL0_SETUP port_clear_altsel0
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#define LED_ADSL0_ALTSEL0_SETUP danube_port_clear_altsel0
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#endif
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#if LED_ADSL0_ALTSEL1
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#define LED_ADSL0_ALTSEL1_SETUP port_set_altsel1
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#define LED_ADSL0_ALTSEL1_SETUP danube_port_set_altsel1
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#else
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#define LED_ADSL0_ALTSEL1_SETUP port_clear_altsel1
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#define LED_ADSL0_ALTSEL1_SETUP danube_port_clear_altsel1
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#endif
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#if LED_ADSL0_OPENDRAIN
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#define LED_ADSL0_OPENDRAIN_SETUP port_set_open_drain
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#define LED_ADSL0_OPENDRAIN_SETUP danube_port_set_open_drain
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#else
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#define LED_ADSL0_OPENDRAIN_SETUP port_clear_open_drain
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#define LED_ADSL0_OPENDRAIN_SETUP danube_port_clear_open_drain
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#endif
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#if LED_ADSL1_DIR
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#define LED_ADSL1_DIR_SETUP port_set_dir_out
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#define LED_ADSL1_DIR_SETUP danube_port_set_dir_out
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#else
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#define LED_ADSL1_DIR_SETUP port_clear_dir_out
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#define LED_ADSL1_DIR_SETUP danube_port_clear_dir_out
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#endif
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#if LED_ADSL1_ALTSEL0
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#define LED_ADSL1_ALTSEL0_SETUP port_set_altsel0
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#define LED_ADSL1_ALTSEL0_SETUP danube_port_set_altsel0
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#else
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#define LED_ADSL1_ALTSEL0_SETUP port_clear_altsel0
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#define LED_ADSL1_ALTSEL0_SETUP danube_port_clear_altsel0
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#endif
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#if LED_ADSL1_ALTSEL1
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#define LED_ADSL1_ALTSEL1_SETUP port_set_altsel1
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#define LED_ADSL1_ALTSEL1_SETUP danube_port_set_altsel1
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#else
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#define LED_ADSL1_ALTSEL1_SETUP port_clear_altsel1
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#define LED_ADSL1_ALTSEL1_SETUP danube_port_clear_altsel1
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#endif
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#if LED_ADSL1_OPENDRAIN
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#define LED_ADSL1_OPENDRAIN_SETUP port_set_open_drain
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#define LED_ADSL1_OPENDRAIN_SETUP danube_port_set_open_drain
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#else
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#define LED_ADSL1_OPENDRAIN_SETUP port_clear_open_drain
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#define LED_ADSL1_OPENDRAIN_SETUP danube_port_clear_open_drain
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#endif
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#define SET_BITS(x, msb, lsb, value) (((x) & ~(((1 << ((msb) + 1)) - 1) ^ ((1 << (lsb)) - 1))) | (((value) & ((1 << (1 + (msb) - (lsb))) - 1)) << (lsb)))
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static inline int update_led(void);
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static inline unsigned int set_update_source(unsigned int, unsigned long, unsigned long);
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static inline unsigned int set_blink_in_batch(unsigned int, unsigned long, unsigned long);
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static inline unsigned int set_data_clock_edge(unsigned int, unsigned long);
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static inline unsigned int set_update_clock(unsigned int, unsigned long, unsigned long);
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static inline unsigned int set_store_mode(unsigned int, unsigned long);
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static inline unsigned int set_shift_clock(unsigned int, unsigned long);
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static inline unsigned int set_data_offset(unsigned int, unsigned long);
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static inline unsigned int set_number_of_enabled_led(unsigned int, unsigned long);
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static inline unsigned int set_data_in_batch(unsigned int, unsigned long, unsigned long);
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static inline unsigned int set_access_right(unsigned int, unsigned long, unsigned long);
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static inline void enable_led(void);
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static inline void disable_led(void);
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static inline int setup_gpio_port(unsigned long);
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static inline void release_gpio_port(unsigned long);
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static inline int setup_gpt(int, unsigned long);
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static inline void release_gpt(int);
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static inline int turn_on_led(unsigned long);
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static inline void turn_off_led(unsigned long);
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static struct semaphore led_sem;
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static unsigned long gpt_on = 0;
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static unsigned long adsl_on = 0;
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static unsigned long f_led_on = 0;
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static int module_id;
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static inline int
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update_led (void)
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{
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@ -331,11 +290,20 @@ set_update_clock (unsigned int reg, unsigned long clock, unsigned long fpid)
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{
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switch ( clock )
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{
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case 0: reg &= ~0xC0000000; break;
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case 1: reg = (reg & ~0xC0000000) | 0x40000000; break;
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case 2: reg = (reg & ~0xCF800000) | 0x80000000 | ((fpid & 0x1F) << 23); break;
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case 0:
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reg &= ~0xC0000000;
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break;
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case 1:
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reg = (reg & ~0xC0000000) | 0x40000000;
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break;
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case 2:
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reg = (reg & ~0xCF800000) | 0x80000000 | ((fpid & 0x1F) << 23);
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break;
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}
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return reg;
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return reg;
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}
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static inline unsigned int
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@ -383,16 +351,33 @@ enable_led (void)
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/* Activate LED module in PMU. */
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int i = 1000000;
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*(unsigned long *)0xBF10201C &= ~(1 << 11);
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while ( --i && (*(unsigned long *)0xBF102020 & (1 << 11)) );
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if ( !i )
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writel(readl(DANUBE_PMU_PWDCR) & ~DANUBE_PMU_PWDCR_LED, DANUBE_PMU_PWDCR);
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while (--i && (readl(DANUBE_PMU_PWDSR) & DANUBE_PMU_PWDCR_LED)) {}
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if (!i)
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panic("Activating LED in PMU failed!");
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}
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static inline void
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disable_led (void)
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{
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*(unsigned long *)0xBF10201C |= 1 << 11;
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writel(readl(DANUBE_PMU_PWDCR) | DANUBE_PMU_PWDCR_LED, DANUBE_PMU_PWDCR);
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}
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static inline void
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release_gpio_port (unsigned long adsl)
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{
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if ( adsl )
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{
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danube_port_free_pin(LED_ADSL0_PORT, LED_ADSL0_PIN);
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danube_port_free_pin(LED_ADSL1_PORT, LED_ADSL1_PIN);
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}
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else
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{
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danube_port_free_pin(LED_ST_PORT, LED_ST_PIN);
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danube_port_free_pin(LED_D_PORT, LED_D_PIN);
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danube_port_free_pin(LED_SH_PORT, LED_SH_PIN);
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}
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}
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static inline int
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*/
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if ( adsl )
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{
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ret |= port_reserve_pin(LED_ADSL0_PORT, LED_ADSL0_PIN, module_id);
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ret |= port_reserve_pin(LED_ADSL1_PORT, LED_ADSL1_PIN, module_id);
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ret |= danube_port_reserve_pin(LED_ADSL0_PORT, LED_ADSL0_PIN);
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ret |= danube_port_reserve_pin(LED_ADSL1_PORT, LED_ADSL1_PIN);
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}
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else
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{
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ret |= port_reserve_pin(LED_ST_PORT, LED_ST_PIN, module_id);
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ret |= port_reserve_pin(LED_D_PORT, LED_D_PIN, module_id);
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ret |= port_reserve_pin(LED_SH_PORT, LED_SH_PIN, module_id);
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ret |= danube_port_reserve_pin(LED_ST_PORT, LED_ST_PIN);
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ret |= danube_port_reserve_pin(LED_D_PORT, LED_D_PIN);
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ret |= danube_port_reserve_pin(LED_SH_PORT, LED_SH_PIN);
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}
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if ( ret )
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{
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if ( adsl )
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{
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LED_ADSL0_ALTSEL0_SETUP(LED_ADSL0_PORT, LED_ADSL0_PIN, module_id);
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LED_ADSL0_ALTSEL1_SETUP(LED_ADSL0_PORT, LED_ADSL0_PIN, module_id);
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LED_ADSL0_DIR_SETUP(LED_ADSL0_PORT, LED_ADSL0_PIN, module_id);
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LED_ADSL0_OPENDRAIN_SETUP(LED_ADSL0_PORT, LED_ADSL0_PIN, module_id);
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LED_ADSL0_ALTSEL0_SETUP(LED_ADSL0_PORT, LED_ADSL0_PIN);
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LED_ADSL0_ALTSEL1_SETUP(LED_ADSL0_PORT, LED_ADSL0_PIN);
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LED_ADSL0_DIR_SETUP(LED_ADSL0_PORT, LED_ADSL0_PIN);
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LED_ADSL0_OPENDRAIN_SETUP(LED_ADSL0_PORT, LED_ADSL0_PIN);
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LED_ADSL1_ALTSEL0_SETUP(LED_ADSL1_PORT, LED_ADSL1_PIN, module_id);
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LED_ADSL1_ALTSEL1_SETUP(LED_ADSL1_PORT, LED_ADSL1_PIN, module_id);
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LED_ADSL1_DIR_SETUP(LED_ADSL1_PORT, LED_ADSL1_PIN, module_id);
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LED_ADSL1_OPENDRAIN_SETUP(LED_ADSL1_PORT, LED_ADSL1_PIN, module_id);
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LED_ADSL1_ALTSEL0_SETUP(LED_ADSL1_PORT, LED_ADSL1_PIN);
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LED_ADSL1_ALTSEL1_SETUP(LED_ADSL1_PORT, LED_ADSL1_PIN);
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LED_ADSL1_DIR_SETUP(LED_ADSL1_PORT, LED_ADSL1_PIN);
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LED_ADSL1_OPENDRAIN_SETUP(LED_ADSL1_PORT, LED_ADSL1_PIN);
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}
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else
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{
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* I don't check the return value, because I'm sure the value is valid
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* and the pins are reserved already.
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*/
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LED_ST_ALTSEL0_SETUP(LED_ST_PORT, LED_ST_PIN, module_id);
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LED_ST_ALTSEL1_SETUP(LED_ST_PORT, LED_ST_PIN, module_id);
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LED_ST_DIR_SETUP(LED_ST_PORT, LED_ST_PIN, module_id);
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LED_ST_OPENDRAIN_SETUP(LED_ST_PORT, LED_ST_PIN, module_id);
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LED_ST_ALTSEL0_SETUP(LED_ST_PORT, LED_ST_PIN);
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LED_ST_ALTSEL1_SETUP(LED_ST_PORT, LED_ST_PIN);
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LED_ST_DIR_SETUP(LED_ST_PORT, LED_ST_PIN);
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LED_ST_OPENDRAIN_SETUP(LED_ST_PORT, LED_ST_PIN);
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/*
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* Set LED_D
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*/
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LED_D_ALTSEL0_SETUP(LED_D_PORT, LED_D_PIN, module_id);
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LED_D_ALTSEL1_SETUP(LED_D_PORT, LED_D_PIN, module_id);
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LED_D_DIR_SETUP(LED_D_PORT, LED_D_PIN, module_id);
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LED_D_OPENDRAIN_SETUP(LED_D_PORT, LED_D_PIN, module_id);
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LED_D_ALTSEL0_SETUP(LED_D_PORT, LED_D_PIN);
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LED_D_ALTSEL1_SETUP(LED_D_PORT, LED_D_PIN);
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LED_D_DIR_SETUP(LED_D_PORT, LED_D_PIN);
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LED_D_OPENDRAIN_SETUP(LED_D_PORT, LED_D_PIN);
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/*
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* Set LED_SH
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*/
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LED_SH_ALTSEL0_SETUP(LED_SH_PORT, LED_SH_PIN, module_id);
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LED_SH_ALTSEL1_SETUP(LED_SH_PORT, LED_SH_PIN, module_id);
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LED_SH_DIR_SETUP(LED_SH_PORT, LED_SH_PIN, module_id);
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LED_SH_OPENDRAIN_SETUP(LED_SH_PORT, LED_SH_PIN, module_id);
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LED_SH_ALTSEL0_SETUP(LED_SH_PORT, LED_SH_PIN);
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LED_SH_ALTSEL1_SETUP(LED_SH_PORT, LED_SH_PIN);
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LED_SH_DIR_SETUP(LED_SH_PORT, LED_SH_PIN);
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LED_SH_OPENDRAIN_SETUP(LED_SH_PORT, LED_SH_PIN);
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}
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return 0;
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}
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static inline void
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release_gpio_port (unsigned long adsl)
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{
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||||
if ( adsl )
|
||||
{
|
||||
port_free_pin(LED_ADSL0_PORT, LED_ADSL0_PIN, module_id);
|
||||
port_free_pin(LED_ADSL1_PORT, LED_ADSL1_PIN, module_id);
|
||||
}
|
||||
else
|
||||
{
|
||||
port_free_pin(LED_ST_PORT, LED_ST_PIN, module_id);
|
||||
port_free_pin(LED_D_PORT, LED_D_PIN, module_id);
|
||||
port_free_pin(LED_SH_PORT, LED_SH_PIN, module_id);
|
||||
}
|
||||
}
|
||||
|
||||
static inline int
|
||||
setup_gpt (int timer, unsigned long freq)
|
||||
{
|
||||
|
@ -880,8 +849,6 @@ danube_led_init (void)
|
|||
printk(KERN_INFO "led: misc_register on minor = %d\n", led_miscdev.minor);
|
||||
}
|
||||
|
||||
module_id = THIS_MODULE ? (int)THIS_MODULE : ((MISC_MAJOR << 8) | led_miscdev.minor);
|
||||
|
||||
up(&led_sem);
|
||||
|
||||
/* Add to enable hardware relay */
|
||||
|
|
|
@ -160,9 +160,11 @@
|
|||
|
||||
#define DANUBE_PMU_BASE_ADDR (KSEG1 + 0x1F102000)
|
||||
|
||||
/* power down control */
|
||||
#define DANUBE_PMU_PWDCR ((u32*)(DANUBE_PMU_BASE_ADDR + 0x001C))
|
||||
#define DANUBE_PMU_PWDSR ((u32*)(DANUBE_PMU_BASE_ADDR + 0x0020))
|
||||
|
||||
#define DANUBE_PMU_PWDCR_DMA 0x20
|
||||
#define DANUBE_PMU_PWDCR_LED 0x800
|
||||
#define DANUBE_PMU_PWDCR_GPT 0x1000
|
||||
#define DANUBE_PMU_PWDCR_PPE 0x2000
|
||||
#define DANUBE_PMU_PWDCR_FPI 0x4000
|
||||
|
|
Loading…
Reference in New Issue