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@ -44,22 +44,14 @@ Model01::Model01(void) {
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}
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void Model01::enableScannerPower(void) {
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// PC7
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//pinMode(13, OUTPUT);
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//digitalWrite(13, HIGH);
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// Turn on power to the LED net
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DDRC |= _BV(7);
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PORTC |= _BV(7);
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}
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// This lets the keyboard pull up to 1.6 amps from
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// the host. That violates the USB spec. But it sure
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// is pretty looking
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void Model01::enableHighPowerLeds(void) {
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// PE6
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// pinMode(7, OUTPUT);
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// digitalWrite(7, LOW);
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// This lets the keyboard pull up to 1.6 amps from the host.
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// That violates the USB spec. But it sure is pretty looking
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DDRE |= _BV(6);
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PORTE &= ~_BV(6);
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@ -76,9 +68,8 @@ void Model01::setup(void) {
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delay(100);
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enableScannerPower();
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// Consider not doing this until 30s after keyboard
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// boot up, to make it easier to rescue things
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// in case of power draw issues.
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// TODO: Consider not doing this until 30s after keyboard
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// boot up, to make it easier to rescue things in case of power draw issues.
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enableHighPowerLeds();
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leftHandState.all = 0;
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rightHandState.all = 0;
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@ -134,7 +125,7 @@ cRGB Model01::getCrgbAt(int8_t i) {
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if (i < 32) {
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return leftHand.ledData.leds[i];
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} else {
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return rightHand.ledData.leds[i - 32] ;
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return rightHand.ledData.leds[i - 32];
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}
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}
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@ -142,6 +133,12 @@ void Model01::syncLeds() {
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if (!isLEDChanged)
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return;
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// LED Data is stored in four "banks" for each side
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// We send it all at once to make it look nicer.
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// We alternate left and right hands because otherwise
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// we run into a race condition with updating the next bank
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// on an ATTiny before it's done writing the previous one to memory
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leftHand.sendLEDData();
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rightHand.sendLEDData();
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