Update LED configuration
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@ -25,21 +25,14 @@
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#define USRSW_PRESSED (1)
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/* LED */
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#define PYB_LED1_PORT (GPIOA) // Blue LED
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#define PYB_LED1_PIN (GPIO_Pin_10)
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#define PYB_LED2_PORT (GPIOC) // White LED (aka Power)
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#define PYB_LED2_PIN (GPIO_Pin_13)
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#define PYB_LED3_PORT (GPIOA) // Same as Led(1)
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#define PYB_LED3_PIN (GPIO_Pin_10)
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#define PYB_LED4_PORT (GPIOC) // Same as Led(2)
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#define PYB_LED4_PIN (GPIO_Pin_13)
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#define PYB_LED1 (pin_A10) // Blue LED
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#define PYB_LED2 (pin_C13) // White LED (aka Power)
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#define PYB_LED3 (pin_A10) // Same as Led(1)
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#define PYB_LED4 (pin_C13) // Same as Led(2)
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#define PYB_OTYPE (GPIO_OType_PP)
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#define PYB_LED_ON(port, pin) (port->BSRRL = pin)
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#define PYB_LED_OFF(port, pin) (port->BSRRH = pin)
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#define PYB_LED_ON(pin) (pin->gpio->BSRRL = pin->pin_mask)
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#define PYB_LED_OFF(pin) (pin->gpio->BSRRH = pin->pin_mask)
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#define HSE_VALUE (25000000)
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@ -21,19 +21,12 @@
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#define USRSW_PRESSED (0)
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/* LED */
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#define PYB_LED1_PORT (GPIOA)
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#define PYB_LED1_PIN (GPIO_Pin_8)
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#define PYB_LED1 (pin_A8) // R1 - red
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#define PYB_LED2 (pin_A10) // R2 - red
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#define PYB_LED3 (pin_C4) // G1 - green
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#define PYB_LED4 (pin_C5) // G2 - green
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#define PYB_LED2_PORT (GPIOA)
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#define PYB_LED2_PIN (GPIO_Pin_10)
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#define PYB_OTYPE (GPIO_OType_PP)
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#define PYB_LED3_PORT (GPIOC)
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#define PYB_LED3_PIN (GPIO_Pin_4)
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#define PYB_LED4_PORT (GPIOC)
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#define PYB_LED4_PIN (GPIO_Pin_5)
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#define PYB_OTYPE (GPIO_OType_OD)
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#define PYB_LED_ON(port, pin) (port->BSRRH = pin)
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#define PYB_LED_OFF(port, pin) (port->BSRRL = pin)
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#define PYB_LED_ON(pin) (pin->gpio->BSRRH = pin->pin_mask)
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#define PYB_LED_OFF(pin) (pin->gpio->BSRRL = pin->pin_mask)
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@ -21,19 +21,13 @@
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#define USRSW_PRESSED (0)
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/* LED */
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#define PYB_LED1_PORT (GPIOA)
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#define PYB_LED1_PIN (GPIO_Pin_13)
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#define PYB_LED2_PORT (GPIOA)
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#define PYB_LED2_PIN (GPIO_Pin_14)
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#define PYB_LED3_PORT (GPIOA)
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#define PYB_LED3_PIN (GPIO_Pin_15)
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#define PYB_LED4_PORT (GPIOB)
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#define PYB_LED4_PIN (GPIO_Pin_4)
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#define PYB_LED1 (pin_A13) // red
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#define PYB_LED2 (pin_A14) // green
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#define PYB_LED3 (pin_A15) // yellow
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#define PYB_LED4 (pin_B4) // blue
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#define PYB_OTYPE (GPIO_OType_PP)
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#define PYB_LED_ON(port, pin) (port->BSRRL = pin)
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#define PYB_LED_OFF(port, pin) (port->BSRRH = pin)
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#define PYB_LED_ON(pin) (pin->gpio->BSRRL = pin->pin_mask)
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#define PYB_LED_OFF(pin) (pin->gpio->BSRRH = pin->pin_mask)
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@ -21,20 +21,13 @@
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#define USRSW_PRESSED (1)
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/* LED */
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#define PYB_LED1_PORT (GPIOD)
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#define PYB_LED1_PIN (GPIO_Pin_14)
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#define PYB_LED2_PORT (GPIOD)
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#define PYB_LED2_PIN (GPIO_Pin_12)
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#define PYB_LED3_PORT (GPIOD)
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#define PYB_LED3_PIN (GPIO_Pin_15)
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#define PYB_LED4_PORT (GPIOD)
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#define PYB_LED4_PIN (GPIO_Pin_13)
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#define PYB_LED1 (pin_D14) // red
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#define PYB_LED2 (pin_D12) // green
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#define PYB_LED3 (pin_D13) // orange
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#define PYB_LED4 (pin_D15) // blue
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#define PYB_OTYPE (GPIO_OType_PP)
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#define PYB_LED_ON(port, pin) (port->BSRRL = pin)
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#define PYB_LED_OFF(port, pin) (port->BSRRH = pin)
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#define PYB_LED_ON(pin) (pin->gpio->BSRRL = pin->pin_mask)
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#define PYB_LED_OFF(pin) (pin->gpio->BSRRH = pin->pin_mask)
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121
stm/led.c
121
stm/led.c
@ -7,12 +7,22 @@
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#include "qstr.h"
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#include "obj.h"
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#include "led.h"
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#include "pin.h"
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#include "build/pins.h"
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/* LED numbers, used internally */
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#define PYB_LED_1 (1)
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#define PYB_LED_2 (2)
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#define PYB_LED_3 (3)
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#define PYB_LED_4 (4)
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static const pin_obj_t *gLed[] = {
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&PYB_LED1,
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#if defined(PYB_LED2)
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&PYB_LED2,
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#if defined(PYB_LED3)
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&PYB_LED3,
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#if defined(PYB_LED4)
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&PYB_LED4,
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#endif
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#endif
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#endif
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};
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#define NUM_LEDS (sizeof(gLed) / sizeof(gLed[0]))
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void led_init(void) {
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/* GPIO structure */
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@ -24,92 +34,43 @@ void led_init(void) {
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GPIO_InitStructure.GPIO_PuPd = GPIO_PuPd_NOPULL;
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GPIO_InitStructure.GPIO_OType = PYB_OTYPE;
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/* Turn off LEDs */
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PYB_LED_OFF(PYB_LED1_PORT, PYB_LED1_PIN);
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PYB_LED_OFF(PYB_LED2_PORT, PYB_LED2_PIN);
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PYB_LED_OFF(PYB_LED3_PORT, PYB_LED3_PIN);
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PYB_LED_OFF(PYB_LED4_PORT, PYB_LED4_PIN);
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/* Initialize LEDs */
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GPIO_InitStructure.GPIO_Pin = PYB_LED1_PIN;
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GPIO_Init(PYB_LED1_PORT, &GPIO_InitStructure);
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GPIO_InitStructure.GPIO_Pin = PYB_LED2_PIN;
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GPIO_Init(PYB_LED2_PORT, &GPIO_InitStructure);
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GPIO_InitStructure.GPIO_Pin = PYB_LED3_PIN;
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GPIO_Init(PYB_LED3_PORT, &GPIO_InitStructure);
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GPIO_InitStructure.GPIO_Pin = PYB_LED4_PIN;
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GPIO_Init(PYB_LED4_PORT, &GPIO_InitStructure);
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/* Turn off LEDs and initialize */
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for (int led = 0; led < NUM_LEDS; led++) {
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PYB_LED_OFF(gLed[led]);
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GPIO_InitStructure.GPIO_Pin = gLed[led]->pin_mask;
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GPIO_Init(gLed[led]->gpio, &GPIO_InitStructure);
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}
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}
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void led_state(pyb_led_t led, int state) {
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GPIO_TypeDef *port;
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uint32_t pin;
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switch (led) {
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case PYB_LED_1:
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pin = PYB_LED1_PIN;
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port = PYB_LED1_PORT;
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break;
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case PYB_LED_2:
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pin = PYB_LED2_PIN;
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port = PYB_LED2_PORT;
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break;
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case PYB_LED_3:
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pin = PYB_LED3_PIN;
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port = PYB_LED3_PORT;
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break;
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case PYB_LED_4:
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pin = PYB_LED4_PIN;
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port = PYB_LED4_PORT;
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break;
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default:
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return;
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if (led < 1 || led > NUM_LEDS) {
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return;
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}
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const pin_obj_t *led_pin = gLed[led - 1];
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if (state == 0) {
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// turn LED off
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PYB_LED_OFF(port, pin);
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PYB_LED_OFF(led_pin);
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} else {
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// turn LED on
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PYB_LED_ON(port, pin);
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PYB_LED_ON(led_pin);
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}
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}
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void led_toggle(pyb_led_t led) {
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GPIO_TypeDef *port;
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uint32_t pin;
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switch (led) {
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case PYB_LED_1:
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pin = PYB_LED1_PIN;
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port = PYB_LED1_PORT;
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break;
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case PYB_LED_2:
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pin = PYB_LED2_PIN;
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port = PYB_LED2_PORT;
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break;
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case PYB_LED_3:
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pin = PYB_LED3_PIN;
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port = PYB_LED3_PORT;
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break;
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case PYB_LED_4:
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pin = PYB_LED4_PIN;
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port = PYB_LED4_PORT;
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break;
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default:
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return;
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if (led < 1 || led > NUM_LEDS) {
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return;
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}
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const pin_obj_t *led_pin = gLed[led - 1];
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GPIO_TypeDef *gpio = led_pin->gpio;
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// XXX this assumes LED is driven by a high MCU output (false for PYBv3, true for PYBv4)
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if (port->ODR & pin) {
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// turn LED off
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PYB_LED_OFF(port, pin);
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// We don't know if we're turning the LED on or off, but we don't really
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// care. Just invert the state.
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if (gpio->ODR & led_pin->pin_mask) {
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// pin is high, make it low
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gpio->BSRRH = led_pin->pin_mask;
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} else {
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// turn LED on (output low)
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PYB_LED_ON(port, pin);
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// pin is low, make it high
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gpio->BSRRL = led_pin->pin_mask;
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}
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}
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@ -138,12 +99,20 @@ mp_obj_t led_obj_off(mp_obj_t self_in) {
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return mp_const_none;
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}
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mp_obj_t led_obj_toggle(mp_obj_t self_in) {
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pyb_led_obj_t *self = self_in;
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led_toggle(self->led_id);
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return mp_const_none;
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}
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static MP_DEFINE_CONST_FUN_OBJ_1(led_obj_on_obj, led_obj_on);
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static MP_DEFINE_CONST_FUN_OBJ_1(led_obj_off_obj, led_obj_off);
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static MP_DEFINE_CONST_FUN_OBJ_1(led_obj_toggle_obj, led_obj_toggle);
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static const mp_method_t led_methods[] = {
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{ "on", &led_obj_on_obj },
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{ "off", &led_obj_off_obj },
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{ "toggle", &led_obj_toggle_obj },
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{ NULL, NULL },
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};
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