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Superseded

This library was superseded by mbed-dev - https://os.mbed.com/users/mbed_official/code/mbed-dev/.

Development branch of the mbed library sources. This library is kept in synch with the latest changes from the mbed SDK and it is not guaranteed to work.

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The official Mbed 2 C/C++ SDK provides the software platform and libraries to build your applications.

targets/hal/TARGET_Freescale/TARGET_KLXX/TARGET_KL25Z/gpio_irq_api.c

Committer:
mbed_official
Date:
2014-03-06
Revision:
111:ae4891ca7084
Parent:
86:26fc69fd3b6c
Child:
113:65a335a675de

File content as of revision 111:ae4891ca7084:

/* mbed Microcontroller Library
 * Copyright (c) 2006-2013 ARM Limited
 *
 * Licensed under the Apache License, Version 2.0 (the "License");
 * you may not use this file except in compliance with the License.
 * You may obtain a copy of the License at
 *
 *     http://www.apache.org/licenses/LICENSE-2.0
 *
 * Unless required by applicable law or agreed to in writing, software
 * distributed under the License is distributed on an "AS IS" BASIS,
 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
 * See the License for the specific language governing permissions and
 * limitations under the License.
 */
#include <stddef.h>
#include "cmsis.h"

#include "gpio_irq_api.h"
#include "error.h"

#define CHANNEL_NUM    64

static uint32_t channel_ids[CHANNEL_NUM] = {0};
static gpio_irq_handler irq_handler;

#define IRQ_DISABLED        (0)
#define IRQ_RAISING_EDGE    PORT_PCR_IRQC(9)
#define IRQ_FALLING_EDGE    PORT_PCR_IRQC(10)
#define IRQ_EITHER_EDGE     PORT_PCR_IRQC(11)

static void handle_interrupt_in(PORT_Type *port, int ch_base) {
    uint32_t mask = 0, i;

    for (i = 0; i < 32; i++) {
        uint32_t pmask = (1 << i);
        if (port->ISFR & pmask) {
            mask |= pmask;
            uint32_t id = channel_ids[ch_base + i];
            if (id == 0) {
                continue;
            }

            FGPIO_Type *gpio;
            gpio_irq_event event = IRQ_NONE;
            switch (port->PCR[i] & PORT_PCR_IRQC_MASK) {
                case IRQ_RAISING_EDGE:
                    event = IRQ_RISE;
                    break;

                case IRQ_FALLING_EDGE:
                    event = IRQ_FALL;
                    break;

                case IRQ_EITHER_EDGE:
                    gpio = (port == PORTA) ? (FPTA) : (FPTD);
                    event = (gpio->PDIR & pmask) ? (IRQ_RISE) : (IRQ_FALL);
                    break;
            }
            if (event != IRQ_NONE) {
                irq_handler(id, event);
            }
        }
    }
    port->ISFR = mask;
}

void gpio_irqA(void) {handle_interrupt_in(PORTA, 0);}
void gpio_irqD(void) {handle_interrupt_in(PORTD, 32);}

int gpio_irq_init(gpio_irq_t *obj, PinName pin, gpio_irq_handler handler, uint32_t id) {
    if (pin == NC) return -1;

    irq_handler = handler;

    obj->port = pin >> PORT_SHIFT;
    obj->pin = (pin & 0x7F) >> 2;

    uint32_t ch_base, vector;
    IRQn_Type irq_n;
    switch (obj->port) {
            case PortA:
                ch_base = 0;  irq_n = PORTA_IRQn; vector = (uint32_t)gpio_irqA;
                break;

            case PortD:
                ch_base = 32; irq_n = PORTD_IRQn; vector = (uint32_t)gpio_irqD;
                break;

            default:
                error("gpio_irq only supported on port A and D\n");
                break;
    }
    NVIC_SetVector(irq_n, vector);
    NVIC_EnableIRQ(irq_n);

    obj->ch = ch_base + obj->pin;
    channel_ids[obj->ch] = id;

    return 0;
}

void gpio_irq_free(gpio_irq_t *obj) {
    channel_ids[obj->ch] = 0;
}

void gpio_irq_set(gpio_irq_t *obj, gpio_irq_event event, uint32_t enable) {
    PORT_Type *port = (PORT_Type *)(PORTA_BASE + 0x1000 * obj->port);

    uint32_t irq_settings = IRQ_DISABLED;

    switch (port->PCR[obj->pin] & PORT_PCR_IRQC_MASK) {
        case IRQ_DISABLED:
            if (enable) {
                irq_settings = (event == IRQ_RISE) ? (IRQ_RAISING_EDGE) : (IRQ_FALLING_EDGE);
            }
            break;

        case IRQ_RAISING_EDGE:
            if (enable) {
                irq_settings = (event == IRQ_RISE) ? (IRQ_RAISING_EDGE) : (IRQ_EITHER_EDGE);
            } else {
                if (event == IRQ_FALL)
                    irq_settings = IRQ_RAISING_EDGE;
            }
            break;

        case IRQ_FALLING_EDGE:
            if (enable) {
                irq_settings = (event == IRQ_FALL) ? (IRQ_FALLING_EDGE) : (IRQ_EITHER_EDGE);
            } else {
                if (event == IRQ_RISE)
                    irq_settings = IRQ_FALLING_EDGE;
            }
            break;

        case IRQ_EITHER_EDGE:
            if (enable) {
                irq_settings = IRQ_EITHER_EDGE;
            } else {
                irq_settings = (event == IRQ_RISE) ? (IRQ_FALLING_EDGE) : (IRQ_RAISING_EDGE);
            }
            break;
    }

    // Interrupt configuration and clear interrupt
    port->PCR[obj->pin] = (port->PCR[obj->pin] & ~PORT_PCR_IRQC_MASK) | irq_settings | PORT_PCR_ISF_MASK;
}

void gpio_irq_enable(gpio_irq_t *obj) {
    if (obj->port == PortA) {
        NVIC_EnableIRQ(PORTA_IRQn);
    } else if (obj->port == PortD) {
        NVIC_EnableIRQ(PORTD_IRQn);
    }
}

void gpio_irq_disable(gpio_irq_t *obj) {
    if (obj->port == PortA) {
        NVIC_DisableIRQ(PORTA_IRQn);
    } else if (obj->port == PortD) {
        NVIC_DisableIRQ(PORTD_IRQn);
    }
}

// Change the NMI pin to an input. This allows NMI pin to 
//  be used as a low power mode wakeup.  The application will
//  need to change the pin back to NMI_b or wakeup only occurs once!
extern void gpio_init(gpio_t *obj, PinName pin, PinDirection direction);
void NMI_Handler(void)
{
    gpio_t gpio;
    gpio_init(&gpio, PTA4, PIN_INPUT);
}