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https://github.com/AetherDroid/android_kernel_samsung_on5xelte.git
synced 2025-11-02 17:15:37 +01:00
Fixed MTP to work with TWRP
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commit
f6dfaef42e
50820 changed files with 20846062 additions and 0 deletions
213
drivers/net/wireless/ath/ath5k/gpio.c
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213
drivers/net/wireless/ath/ath5k/gpio.c
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/*
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* Copyright (c) 2004-2008 Reyk Floeter <reyk@openbsd.org>
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* Copyright (c) 2006-2008 Nick Kossifidis <mickflemm@gmail.com>
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*
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* Permission to use, copy, modify, and distribute this software for any
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* purpose with or without fee is hereby granted, provided that the above
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* copyright notice and this permission notice appear in all copies.
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*
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* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
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* WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
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* MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
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* ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
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* WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
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* ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
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* OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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*
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*/
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/****************\
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GPIO Functions
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\****************/
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#include "ath5k.h"
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#include "reg.h"
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#include "debug.h"
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/**
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* DOC: GPIO/LED functions
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*
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* Here we control the 6 bidirectional GPIO pins provided by the hw.
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* We can set a GPIO pin to be an input or an output pin on GPIO control
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* register and then read or set its status from GPIO data input/output
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* registers.
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*
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* We also control the two LED pins provided by the hw, LED_0 is our
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* "power" LED and LED_1 is our "network activity" LED but many scenarios
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* are available from hw. Vendors might also provide LEDs connected to the
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* GPIO pins, we handle them through the LED subsystem on led.c
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*/
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/**
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* ath5k_hw_set_ledstate() - Set led state
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* @ah: The &struct ath5k_hw
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* @state: One of AR5K_LED_*
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*
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* Used to set the LED blinking state. This only
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* works for the LED connected to the LED_0, LED_1 pins,
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* not the GPIO based.
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*/
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void
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ath5k_hw_set_ledstate(struct ath5k_hw *ah, unsigned int state)
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{
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u32 led;
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/*5210 has different led mode handling*/
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u32 led_5210;
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/*Reset led status*/
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if (ah->ah_version != AR5K_AR5210)
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AR5K_REG_DISABLE_BITS(ah, AR5K_PCICFG,
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AR5K_PCICFG_LEDMODE | AR5K_PCICFG_LED);
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else
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AR5K_REG_DISABLE_BITS(ah, AR5K_PCICFG, AR5K_PCICFG_LED);
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/*
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* Some blinking values, define at your wish
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*/
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switch (state) {
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case AR5K_LED_SCAN:
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case AR5K_LED_AUTH:
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led = AR5K_PCICFG_LEDMODE_PROP | AR5K_PCICFG_LED_PEND;
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led_5210 = AR5K_PCICFG_LED_PEND | AR5K_PCICFG_LED_BCTL;
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break;
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case AR5K_LED_INIT:
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led = AR5K_PCICFG_LEDMODE_PROP | AR5K_PCICFG_LED_NONE;
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led_5210 = AR5K_PCICFG_LED_PEND;
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break;
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case AR5K_LED_ASSOC:
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case AR5K_LED_RUN:
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led = AR5K_PCICFG_LEDMODE_PROP | AR5K_PCICFG_LED_ASSOC;
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led_5210 = AR5K_PCICFG_LED_ASSOC;
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break;
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default:
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led = AR5K_PCICFG_LEDMODE_PROM | AR5K_PCICFG_LED_NONE;
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led_5210 = AR5K_PCICFG_LED_PEND;
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break;
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}
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/*Write new status to the register*/
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if (ah->ah_version != AR5K_AR5210)
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AR5K_REG_ENABLE_BITS(ah, AR5K_PCICFG, led);
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else
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AR5K_REG_ENABLE_BITS(ah, AR5K_PCICFG, led_5210);
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}
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/**
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* ath5k_hw_set_gpio_input() - Set GPIO inputs
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* @ah: The &struct ath5k_hw
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* @gpio: GPIO pin to set as input
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*/
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int
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ath5k_hw_set_gpio_input(struct ath5k_hw *ah, u32 gpio)
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{
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if (gpio >= AR5K_NUM_GPIO)
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return -EINVAL;
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ath5k_hw_reg_write(ah,
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(ath5k_hw_reg_read(ah, AR5K_GPIOCR) & ~AR5K_GPIOCR_OUT(gpio))
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| AR5K_GPIOCR_IN(gpio), AR5K_GPIOCR);
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return 0;
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}
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/**
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* ath5k_hw_set_gpio_output() - Set GPIO outputs
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* @ah: The &struct ath5k_hw
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* @gpio: The GPIO pin to set as output
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*/
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int
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ath5k_hw_set_gpio_output(struct ath5k_hw *ah, u32 gpio)
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{
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if (gpio >= AR5K_NUM_GPIO)
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return -EINVAL;
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ath5k_hw_reg_write(ah,
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(ath5k_hw_reg_read(ah, AR5K_GPIOCR) & ~AR5K_GPIOCR_OUT(gpio))
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| AR5K_GPIOCR_OUT(gpio), AR5K_GPIOCR);
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return 0;
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}
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/**
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* ath5k_hw_get_gpio() - Get GPIO state
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* @ah: The &struct ath5k_hw
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* @gpio: The GPIO pin to read
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*/
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u32
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ath5k_hw_get_gpio(struct ath5k_hw *ah, u32 gpio)
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{
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if (gpio >= AR5K_NUM_GPIO)
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return 0xffffffff;
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/* GPIO input magic */
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return ((ath5k_hw_reg_read(ah, AR5K_GPIODI) & AR5K_GPIODI_M) >> gpio) &
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0x1;
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}
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/**
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* ath5k_hw_set_gpio() - Set GPIO state
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* @ah: The &struct ath5k_hw
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* @gpio: The GPIO pin to set
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* @val: Value to set (boolean)
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*/
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int
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ath5k_hw_set_gpio(struct ath5k_hw *ah, u32 gpio, u32 val)
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{
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u32 data;
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if (gpio >= AR5K_NUM_GPIO)
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return -EINVAL;
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/* GPIO output magic */
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data = ath5k_hw_reg_read(ah, AR5K_GPIODO);
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data &= ~(1 << gpio);
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data |= (val & 1) << gpio;
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ath5k_hw_reg_write(ah, data, AR5K_GPIODO);
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return 0;
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}
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/**
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* ath5k_hw_set_gpio_intr() - Initialize the GPIO interrupt (RFKill switch)
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* @ah: The &struct ath5k_hw
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* @gpio: The GPIO pin to use
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* @interrupt_level: True to generate interrupt on active pin (high)
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*
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* This function is used to set up the GPIO interrupt for the hw RFKill switch.
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* That switch is connected to a GPIO pin and it's number is stored on EEPROM.
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* It can either open or close the circuit to indicate that we should disable
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* RF/Wireless to save power (we also get that from EEPROM).
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*/
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void
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ath5k_hw_set_gpio_intr(struct ath5k_hw *ah, unsigned int gpio,
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u32 interrupt_level)
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{
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u32 data;
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if (gpio >= AR5K_NUM_GPIO)
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return;
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/*
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* Set the GPIO interrupt
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*/
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data = (ath5k_hw_reg_read(ah, AR5K_GPIOCR) &
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~(AR5K_GPIOCR_INT_SEL(gpio) | AR5K_GPIOCR_INT_SELH |
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AR5K_GPIOCR_INT_ENA | AR5K_GPIOCR_OUT(gpio))) |
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(AR5K_GPIOCR_INT_SEL(gpio) | AR5K_GPIOCR_INT_ENA);
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ath5k_hw_reg_write(ah, interrupt_level ? data :
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(data | AR5K_GPIOCR_INT_SELH), AR5K_GPIOCR);
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ah->ah_imr |= AR5K_IMR_GPIO;
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/* Enable GPIO interrupts */
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AR5K_REG_ENABLE_BITS(ah, AR5K_PIMR, AR5K_IMR_GPIO);
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}
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