373 lines
10 KiB
C
373 lines
10 KiB
C
/*
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* Copyright (c) 2016, Freescale Semiconductor, Inc.
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* Copyright 2016-2017, 2020 NXP
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* All rights reserved.
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*
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* SPDX-License-Identifier: BSD-3-Clause
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*/
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#include "fsl_gint.h"
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/* Component ID definition, used by tools. */
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#ifndef FSL_COMPONENT_ID
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#define FSL_COMPONENT_ID "platform.drivers.gint"
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#endif
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/*******************************************************************************
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* Variables
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******************************************************************************/
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/*! @brief Pointers to GINT bases for each instance. */
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static GINT_Type *const s_gintBases[FSL_FEATURE_SOC_GINT_COUNT] = GINT_BASE_PTRS;
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#if !(defined(FSL_SDK_DISABLE_DRIVER_CLOCK_CONTROL) && FSL_SDK_DISABLE_DRIVER_CLOCK_CONTROL)
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/*! @brief Clocks for each instance. */
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static const clock_ip_name_t s_gintClocks[FSL_FEATURE_SOC_GINT_COUNT] = GINT_CLOCKS;
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#endif /* FSL_SDK_DISABLE_DRIVER_CLOCK_CONTROL */
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#if !(defined(FSL_SDK_DISABLE_DRIVER_RESET_CONTROL) && FSL_SDK_DISABLE_DRIVER_RESET_CONTROL)
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/*! @brief Resets for each instance. */
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static const reset_ip_name_t s_gintResets[FSL_FEATURE_SOC_GINT_COUNT] = GINT_RSTS;
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#endif /* FSL_SDK_DISABLE_DRIVER_RESET_CONTROL */
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/* @brief Irq number for each instance */
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static const IRQn_Type s_gintIRQ[FSL_FEATURE_SOC_GINT_COUNT] = GINT_IRQS;
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/*! @brief Callback function array for GINT(s). */
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static gint_cb_t s_gintCallback[FSL_FEATURE_SOC_GINT_COUNT];
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/*******************************************************************************
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* Code
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******************************************************************************/
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static uint32_t GINT_GetInstance(GINT_Type *base)
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{
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uint32_t instance;
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/* Find the instance index from base address mappings. */
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for (instance = 0; instance < ARRAY_SIZE(s_gintBases); instance++)
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{
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if (s_gintBases[instance] == base)
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{
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break;
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}
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}
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assert(instance < ARRAY_SIZE(s_gintBases));
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return instance;
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}
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/*!
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* brief Initialize GINT peripheral.
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* This function initializes the GINT peripheral and enables the clock.
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*
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* param base Base address of the GINT peripheral.
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*
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* retval None.
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*/
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void GINT_Init(GINT_Type *base)
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{
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uint32_t instance;
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instance = GINT_GetInstance(base);
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s_gintCallback[instance] = NULL;
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#if !(defined(FSL_SDK_DISABLE_DRIVER_CLOCK_CONTROL) && FSL_SDK_DISABLE_DRIVER_CLOCK_CONTROL)
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/* Enable the peripheral clock */
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CLOCK_EnableClock(s_gintClocks[instance]);
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#endif /* FSL_SDK_DISABLE_DRIVER_CLOCK_CONTROL */
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#if !(defined(FSL_SDK_DISABLE_DRIVER_RESET_CONTROL) && FSL_SDK_DISABLE_DRIVER_RESET_CONTROL)
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/* Reset the module. */
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RESET_PeripheralReset(s_gintResets[instance]);
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#endif /* FSL_SDK_DISABLE_DRIVER_RESET_CONTROL */
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}
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/*!
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* brief Setup GINT peripheral control parameters.
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* This function sets the control parameters of GINT peripheral.
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*
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* param base Base address of the GINT peripheral.
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* param comb Controls if the enabled inputs are logically ORed or ANDed for interrupt generation.
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* param trig Controls if the enabled inputs are level or edge sensitive based on polarity.
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* param callback This function is called when configured group interrupt is generated.
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*
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* retval None.
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*/
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void GINT_SetCtrl(GINT_Type *base, gint_comb_t comb, gint_trig_t trig, gint_cb_t callback)
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{
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uint32_t instance;
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instance = GINT_GetInstance(base);
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base->CTRL = (GINT_CTRL_COMB(comb) | GINT_CTRL_TRIG(trig));
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/* Save callback pointer */
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s_gintCallback[instance] = callback;
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}
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/*!
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* brief Get GINT peripheral control parameters.
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* This function returns the control parameters of GINT peripheral.
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*
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* param base Base address of the GINT peripheral.
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* param comb Pointer to store combine input value.
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* param trig Pointer to store trigger value.
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* param callback Pointer to store callback function.
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*
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* retval None.
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*/
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void GINT_GetCtrl(GINT_Type *base, gint_comb_t *comb, gint_trig_t *trig, gint_cb_t *callback)
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{
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uint32_t instance;
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uint32_t combValue;
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uint32_t trigValue;
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instance = GINT_GetInstance(base);
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combValue = (base->CTRL & GINT_CTRL_COMB_MASK) >> GINT_CTRL_COMB_SHIFT;
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*comb = (gint_comb_t)combValue;
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trigValue = (base->CTRL & GINT_CTRL_TRIG_MASK) >> GINT_CTRL_TRIG_SHIFT;
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*trig = (gint_trig_t)trigValue;
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*callback = s_gintCallback[instance];
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}
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/*!
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* brief Configure GINT peripheral pins.
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* This function enables and controls the polarity of enabled pin(s) of a given port.
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*
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* param base Base address of the GINT peripheral.
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* param port Port number.
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* param polarityMask Each bit position selects the polarity of the corresponding enabled pin.
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* 0 = The pin is active LOW. 1 = The pin is active HIGH.
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* param enableMask Each bit position selects if the corresponding pin is enabled or not.
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* 0 = The pin is disabled. 1 = The pin is enabled.
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*
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* retval None.
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*/
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void GINT_ConfigPins(GINT_Type *base, gint_port_t port, uint32_t polarityMask, uint32_t enableMask)
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{
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base->PORT_POL[port] = polarityMask;
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base->PORT_ENA[port] = enableMask;
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}
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/*!
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* brief Get GINT peripheral pin configuration.
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* This function returns the pin configuration of a given port.
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*
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* param base Base address of the GINT peripheral.
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* param port Port number.
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* param polarityMask Pointer to store the polarity mask Each bit position indicates the polarity of the corresponding
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enabled pin.
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* 0 = The pin is active LOW. 1 = The pin is active HIGH.
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* param enableMask Pointer to store the enable mask. Each bit position indicates if the corresponding pin is enabled
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or not.
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* 0 = The pin is disabled. 1 = The pin is enabled.
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*
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* retval None.
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*/
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void GINT_GetConfigPins(GINT_Type *base, gint_port_t port, uint32_t *polarityMask, uint32_t *enableMask)
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{
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*polarityMask = base->PORT_POL[port];
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*enableMask = base->PORT_ENA[port];
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}
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/*!
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* brief Enable callback.
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* This function enables the interrupt for the selected GINT peripheral. Although the pin(s) are monitored
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* as soon as they are enabled, the callback function is not enabled until this function is called.
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*
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* param base Base address of the GINT peripheral.
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*
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* retval None.
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*/
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void GINT_EnableCallback(GINT_Type *base)
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{
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uint32_t instance;
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instance = GINT_GetInstance(base);
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/* If GINT is configured in "AND" mode a spurious interrupt is generated.
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Clear status and pending interrupt before enabling the irq in NVIC. */
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GINT_ClrStatus(base);
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NVIC_ClearPendingIRQ(s_gintIRQ[instance]);
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(void)EnableIRQ(s_gintIRQ[instance]);
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}
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/*!
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* brief Disable callback.
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* This function disables the interrupt for the selected GINT peripheral. Although the pins are still
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* being monitored but the callback function is not called.
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*
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* param base Base address of the peripheral.
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*
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* retval None.
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*/
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void GINT_DisableCallback(GINT_Type *base)
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{
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uint32_t instance;
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instance = GINT_GetInstance(base);
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(void)DisableIRQ(s_gintIRQ[instance]);
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GINT_ClrStatus(base);
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NVIC_ClearPendingIRQ(s_gintIRQ[instance]);
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}
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/*!
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* brief Deinitialize GINT peripheral.
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* This function disables the GINT clock.
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*
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* param base Base address of the GINT peripheral.
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*
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* retval None.
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*/
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void GINT_Deinit(GINT_Type *base)
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{
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uint32_t instance;
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instance = GINT_GetInstance(base);
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/* Cleanup */
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GINT_DisableCallback(base);
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s_gintCallback[instance] = NULL;
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#if !(defined(FSL_SDK_DISABLE_DRIVER_RESET_CONTROL) && FSL_SDK_DISABLE_DRIVER_RESET_CONTROL)
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/* Reset the module. */
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RESET_PeripheralReset(s_gintResets[instance]);
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#endif /* FSL_SDK_DISABLE_DRIVER_RESET_CONTROL */
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#if !(defined(FSL_SDK_DISABLE_DRIVER_CLOCK_CONTROL) && FSL_SDK_DISABLE_DRIVER_CLOCK_CONTROL)
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/* Disable the peripheral clock */
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CLOCK_DisableClock(s_gintClocks[instance]);
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#endif /* FSL_SDK_DISABLE_DRIVER_CLOCK_CONTROL */
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}
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/* IRQ handler functions overloading weak symbols in the startup */
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#if defined(GINT0)
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void GINT0_DriverIRQHandler(void);
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void GINT0_DriverIRQHandler(void)
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{
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/* Clear interrupt before callback */
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s_gintBases[0]->CTRL |= GINT_CTRL_INT_MASK;
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/* Call user function */
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if (s_gintCallback[0] != NULL)
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{
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s_gintCallback[0]();
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}
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SDK_ISR_EXIT_BARRIER;
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}
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#endif
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#if defined(GINT1)
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void GINT1_DriverIRQHandler(void);
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void GINT1_DriverIRQHandler(void)
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{
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/* Clear interrupt before callback */
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s_gintBases[1]->CTRL |= GINT_CTRL_INT_MASK;
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/* Call user function */
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if (s_gintCallback[1] != NULL)
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{
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s_gintCallback[1]();
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}
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SDK_ISR_EXIT_BARRIER;
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}
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#endif
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#if defined(GINT2)
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void GINT2_DriverIRQHandler(void);
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void GINT2_DriverIRQHandler(void)
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{
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/* Clear interrupt before callback */
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s_gintBases[2]->CTRL |= GINT_CTRL_INT_MASK;
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/* Call user function */
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if (s_gintCallback[2] != NULL)
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{
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s_gintCallback[2]();
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}
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SDK_ISR_EXIT_BARRIER;
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}
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#endif
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#if defined(GINT3)
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void GINT3_DriverIRQHandler(void);
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void GINT3_DriverIRQHandler(void)
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{
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/* Clear interrupt before callback */
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s_gintBases[3]->CTRL |= GINT_CTRL_INT_MASK;
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/* Call user function */
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if (s_gintCallback[3] != NULL)
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{
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s_gintCallback[3]();
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}
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SDK_ISR_EXIT_BARRIER;
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}
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#endif
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#if defined(GINT4)
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void GINT4_DriverIRQHandler(void);
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void GINT4_DriverIRQHandler(void)
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{
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/* Clear interrupt before callback */
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s_gintBases[4]->CTRL |= GINT_CTRL_INT_MASK;
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/* Call user function */
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if (s_gintCallback[4] != NULL)
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{
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s_gintCallback[4]();
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}
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SDK_ISR_EXIT_BARRIER;
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}
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#endif
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#if defined(GINT5)
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void GINT5_DriverIRQHandler(void);
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void GINT5_DriverIRQHandler(void)
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{
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/* Clear interrupt before callback */
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s_gintBases[5]->CTRL |= GINT_CTRL_INT_MASK;
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/* Call user function */
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if (s_gintCallback[5] != NULL)
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{
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s_gintCallback[5]();
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}
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SDK_ISR_EXIT_BARRIER;
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}
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#endif
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#if defined(GINT6)
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void GINT6_DriverIRQHandler(void);
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void GINT6_DriverIRQHandler(void)
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{
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/* Clear interrupt before callback */
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s_gintBases[6]->CTRL |= GINT_CTRL_INT_MASK;
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/* Call user function */
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if (s_gintCallback[6] != NULL)
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{
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s_gintCallback[6]();
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}
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SDK_ISR_EXIT_BARRIER;
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}
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#endif
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#if defined(GINT7)
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void GINT7_DriverIRQHandler(void);
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void GINT7_DriverIRQHandler(void)
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{
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/* Clear interrupt before callback */
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s_gintBases[7]->CTRL |= GINT_CTRL_INT_MASK;
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/* Call user function */
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if (s_gintCallback[7] != NULL)
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{
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s_gintCallback[7]();
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}
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SDK_ISR_EXIT_BARRIER;
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}
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#endif
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