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| The i.MX6 CPU GPIO are also able to function as interrupts on rising and falling edges. This is accessible from the kernel as well as userspace. Userspace IRQs are exposed through the sysfs gpio mechanism. This example will trigger on a falling edge for GPIO 48: | | The i.MX6UL CPU GPIO are also able to function as interrupts on rising and falling edges. This is accessible from the kernel as well as userspace. Userspace IRQs and handled via libgpiod. |
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| <source lang=bash>
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| echo "48" > /sys/class/gpio/export
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| echo "in" > /sys/class/gpio/gpio48/direction
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| echo "falling" > /sys/class/gpio/gpio48/edge
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| </source>
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| From here, you would need to use a lower level language to poll() or select() on /sys/class/gpio/gpio48/value.
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| <source lang=c>
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| #include <stdio.h>
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| #include <fcntl.h>
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| #include <sys/select.h>
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| #include <sys/stat.h>
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| #include <unistd.h>
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|
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| int main(int argc, char **argv)
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| {
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| char gpio_irq[64];
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| int ret, irqfd = 0, i = 0;
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| fd_set fds;
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|
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| if(argc < 2) {
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| printf("Usage: %s <gpio number>\n", argv[0]);
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| return 1;
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| }
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|
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| snprintf(gpio_irq, sizeof(gpio_irq), "/sys/class/gpio/gpio%d/value", atoi(argv[1]));
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| irqfd = open(gpio_irq, O_RDONLY, S_IREAD);
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|
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| if(irqfd == -1) {
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| printf("Could not open IRQ %s\n", argv[1]);
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| printf("Make sure the GPIO is already exported", argv[1]);
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| return 1;
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| }
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|
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| while(1) {
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| int buf; // Holds irq junk data
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| FD_SET(irqfd, &fds); //add the fd to the set
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| // See if the IRQ has any data available to read
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| ret = select(irqfd + 1, NULL, NULL, &fds, NULL);
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|
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| if(FD_ISSET(irqfd, &fds))
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| {
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| FD_CLR(irqfd, &fds); //Remove the filedes from set
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| printf("IRQ detected %d\n", i);
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| i++;
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| // Clear the junk data in the IRQ file
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| lseek(irqfd, 0, 0);
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| read(irqfd, &buf, sizeof(buf));
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| }
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|
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| //Sleep, or do any other processing here
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| usleep(10000);
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| }
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|
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| return 0;
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| }
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| </source>
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| This example can be run as "./irqtest 48" which will echo every time the pin changes, but will otherwise take no cpu time.
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