#include <ch.h>
#include <hal.h>
#include "led.h"
#include "sleep_led.h"
#ifndef SLEEP_LED_GPT_DRIVER
# if defined(STM32F0XX)
# define SLEEP_LED_GPT_DRIVER GPTD14
# endif
#endif
#if defined(KL2x) || defined(K20x) || defined(SLEEP_LED_GPT_DRIVER)
static const uint8_t breathing_table[64] = {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 2, 4, 6, 10, 15, 23, 32, 44, 58, 74, 93, 113, 135, 157, 179, 199, 218, 233, 245, 252, 255, 252, 245, 233, 218, 199, 179, 157, 135, 113, 93, 74, 58, 44, 32, 23, 15, 10, 6, 4, 2, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0};
void sleep_led_timer_callback(void) {
static union {
uint16_t row;
struct {
uint8_t count : 8;
uint8_t duration : 2;
uint8_t index : 6;
} pwm;
} timer = {.row = 0};
timer.row++;
if (timer.pwm.count == 0) {
led_set(1 << USB_LED_CAPS_LOCK);
}
if (timer.pwm.count == breathing_table[timer.pwm.index]) {
led_set(0);
}
}
#endif
#if defined(KL2x) || defined(K20x)
# define TIMER_INTERRUPT_VECTOR KINETIS_LPTMR0_IRQ_VECTOR
# define RESET_COUNTER LPTMR0->CSR |= LPTMRx_CSR_TCF
# define LPTMR_CLOCK_MCGIRCLK 0
# define LPTMR_CLOCK_LPO 1
# define LPTMR_CLOCK_ERCLK32K 2
# define LPTMR_CLOCK_OSCERCLK 3
# if !defined(SIM_SCGC5_LPTMR)
# define SIM_SCGC5_LPTMR SIM_SCGC5_LPTIMER
# endif
OSAL_IRQ_HANDLER(TIMER_INTERRUPT_VECTOR) {
OSAL_IRQ_PROLOGUE();
sleep_led_timer_callback();
RESET_COUNTER;
OSAL_IRQ_EPILOGUE();
}
void sleep_led_init(void) {
SIM->SCGC5 |= SIM_SCGC5_LPTMR;
LPTMR0->CSR = 0;
LPTMR0->CMR = 0;
# if 0
LPTMR0->PSR = LPTMRx_PSR_PCS(LPTMR_CLOCK_LPO)|LPTMRx_PSR_PBYP;
# endif
# if 1
MCG->C2 |= MCG_C2_IRCS; # if defined(KL27)
MCG->MC |= MCG_MC_LIRC_DIV2_DIV2;
# endif
MCG->C1 |= MCG_C1_IRCLKEN; LPTMR0->PSR = LPTMRx_PSR_PCS(LPTMR_CLOCK_MCGIRCLK) | LPTMRx_PSR_PRESCALE(6);
# endif
# if 0
OSC0->CR |= OSC_CR_ERCLKEN; LPTMR0->PSR = LPTMRx_PSR_PCS(LPTMR_CLOCK_OSCERCLK)|LPTMRx_PSR_PRESCALE(7);
# endif
nvicEnableVector(LPTMR0_IRQn, 2); LPTMR0->CSR |= LPTMRx_CSR_TIE;
}
void sleep_led_enable(void) {
LPTMR0->CSR |= LPTMRx_CSR_TEN;
}
void sleep_led_disable(void) {
LPTMR0->CSR &= ~LPTMRx_CSR_TEN;
}
void sleep_led_toggle(void) {
LPTMR0->CSR ^= LPTMRx_CSR_TEN;
}
#elif defined(SLEEP_LED_GPT_DRIVER)
static void gptTimerCallback(GPTDriver *gptp) {
(void)gptp;
sleep_led_timer_callback();
}
static const GPTConfig gptcfg = {1000000, gptTimerCallback, 0, 0};
void sleep_led_init(void) { gptStart(&SLEEP_LED_GPT_DRIVER, &gptcfg); }
void sleep_led_enable(void) { gptStartContinuous(&SLEEP_LED_GPT_DRIVER, gptcfg.frequency / 0xFFFF); }
void sleep_led_disable(void) { gptStopTimer(&SLEEP_LED_GPT_DRIVER); }
void sleep_led_toggle(void) { (SLEEP_LED_GPT_DRIVER.state == GPT_READY) ? sleep_led_enable() : sleep_led_disable(); }
#else
void sleep_led_init(void) {}
void sleep_led_enable(void) { led_set(1 << USB_LED_CAPS_LOCK); }
void sleep_led_disable(void) { led_set(0); }
void sleep_led_toggle(void) {
}
#endif