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uart_binary.c
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65 lines (55 loc) · 1.93 KB
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/**
* Copyright (c) 2020 Raspberry Pi (Trading) Ltd.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#include "pico/stdlib.h"
#include "hardware/uart.h"
#include "hardware/structs/pads_qspi.h"
#include "hardware/structs/io_qspi.h"
#ifndef LED_DELAY_MS
#define LED_DELAY_MS 500
#endif
// Initialize the GPIO for the LED
void pico_led_init(void) {
#ifdef PICO_DEFAULT_LED_PIN
// A device like Pico that uses a GPIO for the LED will define PICO_DEFAULT_LED_PIN
// so we can use normal GPIO functionality to turn the led on and off
gpio_init(PICO_DEFAULT_LED_PIN);
gpio_set_dir(PICO_DEFAULT_LED_PIN, GPIO_OUT);
#endif
}
// Turn the LED on or off
void pico_set_led(bool led_on) {
#if defined(PICO_DEFAULT_LED_PIN)
// Just set the GPIO on or off
gpio_put(PICO_DEFAULT_LED_PIN, led_on);
#endif
}
// Set function for QSPI GPIO pin
void qspi_gpio_set_function(uint gpio, gpio_function_t fn) {
// Set input enable on, output disable off
hw_write_masked(&pads_qspi_hw->io[gpio],
PADS_QSPI_GPIO_QSPI_SD2_IE_BITS,
PADS_QSPI_GPIO_QSPI_SD2_IE_BITS | PADS_QSPI_GPIO_QSPI_SD2_OD_BITS
);
// Zero all fields apart from fsel; we want this IO to do what the peripheral tells it.
// This doesn't affect e.g. pullup/pulldown, as these are in pad controls.
io_qspi_hw->io[gpio].ctrl = fn << IO_QSPI_GPIO_QSPI_SD2_CTRL_FUNCSEL_LSB;
// Remove pad isolation now that the correct peripheral is in control of the pad
hw_clear_bits(&pads_qspi_hw->io[gpio], PADS_QSPI_GPIO_QSPI_SD2_ISO_BITS);
}
int main() {
pico_led_init();
// SD2 is QSPI GPIO 3, SD3 is QSPI GPIO 4
qspi_gpio_set_function(3, GPIO_FUNC_UART_AUX);
qspi_gpio_set_function(4, GPIO_FUNC_UART_AUX);
uart_init(uart0, 1000000);
while (true) {
uart_puts(uart0, "Hello, world\n");
pico_set_led(true);
sleep_ms(LED_DELAY_MS);
pico_set_led(false);
sleep_ms(LED_DELAY_MS);
}
}