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@ -81,13 +81,50 @@ void rn42_task(void)
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}
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}
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/* Low voltage alert */
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if (battery_status() == LOW_VOLTAGE) {
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battery_led(LED_ON);
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} else {
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battery_led(LED_CHARGER);
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static uint16_t prev_timer = 0;
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static uint8_t sec = 0;
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// NOTE: not exact 1 sec
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if (timer_elapsed(prev_timer) > 1000) {
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/* every second */
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prev_timer = timer_read();
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/* Low voltage alert */
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uint8_t bs = battery_status();
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if (bs == LOW_VOLTAGE) {
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battery_led(LED_ON);
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} else {
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battery_led(LED_CHARGER);
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}
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static uint8_t prev_status = UNKNOWN;
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if (bs != prev_status) {
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prev_status = bs;
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switch (bs) {
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case FULL_CHARGED: xprintf("FULL_CHARGED\n"); break;
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case CHARGING: xprintf("CHARGING\n"); break;
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case DISCHARGING: xprintf("DISCHARGING\n"); break;
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case LOW_VOLTAGE: xprintf("LOW_VOLTAGE\n"); break;
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default: xprintf("UNKNOWN STATUS\n"); break;
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};
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}
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/* every minute */
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if (sec == 0) {
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uint32_t t = timer_read32()/1000;
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uint16_t v = battery_voltage();
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uint8_t h = t/3600;
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uint8_t m = t%3600/60;
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uint8_t s = t%60;
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xprintf("%02u:%02u:%02u\t%umV\n", h, m, s, v);
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/* TODO: xprintf doesn't work for this.
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xprintf("%02u:%02u:%02u\t%umV\n", (t/3600), (t%3600/60), (t%60), v);
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*/
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}
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sec++; sec = sec%60;
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}
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/* Connection monitor */
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if (rn42_linked()) {
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status_led(true);
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