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//
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// Created by MightyPork on 2017/12/15.
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//
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#include "platform.h"
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#include "framework/resources.h"
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#include "status_led.h"
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#include "pin_utils.h"
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static GPIO_TypeDef *led_periph;
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static uint32_t led_llpin;
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static uint32_t active_effect = STATUS_NONE;
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static uint32_t effect_time = 0;
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// counter of idle ticks since last indicator
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// used to allow or disallow heartbeat blink (to avoid interference)
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static uint32_t indicator_idle_ms = 0;
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#define IDLE_FOR_HEARTBEAT_MS 3000
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#define HB_MAX_SAFE_IVAL 500
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static uint32_t hb_elapsed = 0;
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/** Early init */
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void Indicator_PreInit(void)
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{
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bool suc = true;
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// Resolve pin
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led_periph = port2periph(STATUS_LED_PORT, &suc);
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led_llpin = pin2ll(STATUS_LED_PIN, &suc);
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// Configure for output
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LL_GPIO_SetPinMode(led_periph, led_llpin, LL_GPIO_MODE_OUTPUT);
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LL_GPIO_SetPinOutputType(led_periph, led_llpin, LL_GPIO_OUTPUT_PUSHPULL);
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LL_GPIO_SetPinSpeed(led_periph, led_llpin, LL_GPIO_SPEED_FREQ_LOW);
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assert_param(suc);
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}
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static inline void led_on(void)
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{
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LL_GPIO_SetOutputPin(led_periph, led_llpin);
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}
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static inline void led_off(void)
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{
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LL_GPIO_ResetOutputPin(led_periph, led_llpin);
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}
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/** Set up the LED */
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void Indicator_Init(void)
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{
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bool suc = true;
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// Resolve and claim resource
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Resource rsc = pin2resource(STATUS_LED_PORT, STATUS_LED_PIN, &suc);
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assert_param(suc);
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assert_param(E_SUCCESS == rsc_claim(&UNIT_SYSTEM, rsc));
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}
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/** Set indicator ON */
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void Indicator_Effect(enum GEX_StatusIndicator indicator)
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{
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if (indicator == STATUS_FAULT) {
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// Persistent light - start immediately
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led_on();
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}
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active_effect = indicator;
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effect_time = 0;
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}
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void Indicator_Off(enum GEX_StatusIndicator indicator)
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{
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if (active_effect == indicator) {
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led_off();
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active_effect = STATUS_NONE;
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indicator_idle_ms = 0;
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}
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}
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/** Millisecond tick */
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void Indicator_Tick(void)
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{
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if (active_effect == STATUS_NONE) {
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indicator_idle_ms++;
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if (hb_elapsed < HB_MAX_SAFE_IVAL && indicator_idle_ms > IDLE_FOR_HEARTBEAT_MS &&
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(indicator_idle_ms % 10 == 0)) {
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Indicator_Effect(STATUS_HEARTBEAT);
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}
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}
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if (active_effect != STATUS_NONE) {
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indicator_idle_ms = 0;
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if (active_effect == STATUS_HEARTBEAT) {
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if (effect_time == 0) led_on();
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else if (effect_time == 50) {
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led_off();
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active_effect = STATUS_NONE;
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}
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}
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else if (active_effect == STATUS_DISK_ATTACHED) {
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if (effect_time == 0) led_on();
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else if (effect_time == 100) led_off();
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else if (effect_time == 250) led_on();
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else if (effect_time == 750) {
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led_off();
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active_effect = STATUS_NONE;
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}
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}
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else if (active_effect == STATUS_DISK_REMOVED) {
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if (effect_time == 0) led_on();
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else if (effect_time == 500) led_off();
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else if (effect_time == 650) led_on();
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else if (effect_time == 750) {
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led_off();
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active_effect = STATUS_NONE;
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}
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}
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else if (active_effect == STATUS_DISK_BUSY) {
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if (effect_time >= 400) {
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led_off();
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active_effect = STATUS_NONE;
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}
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else if (effect_time % 100 == 0) led_on();
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else if (effect_time % 100 == 50) led_off();
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}
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else if (active_effect == STATUS_WELCOME) {
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if (effect_time == 0) led_on();
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else if (effect_time == 200) led_off();
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else if (effect_time == 300) led_on();
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else if (effect_time == 500) {
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led_off();
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active_effect = STATUS_NONE;
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}
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}
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effect_time++;
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}
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}
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/** Heartbeat callback from the main thread */
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void Indicator_Heartbeat(void)
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{
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hb_elapsed = 0;
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// this is called every ~ 100 ms from the main loop
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}
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