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DC frequency dummy functions for odd architectures step #6
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@ -125,6 +125,11 @@ void DCCTimer::reset() {
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while(true){}
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while(true){}
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}
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}
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void DCCTimer::DCCEXanalogWriteFrequency(uint8_t pin, uint32_t f) {
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}
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void DCCTimer::DCCEXanalogWriteFrequencyInternal(uint8_t pin, uint32_t fbits) {
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}
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int16_t ADCee::ADCmax() {
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int16_t ADCee::ADCmax() {
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return 4095;
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return 4095;
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}
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}
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@ -156,6 +156,11 @@ void DCCTimer::reset() {
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while(true) {};
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while(true) {};
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}
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}
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void DCCTimer::DCCEXanalogWriteFrequency(uint8_t pin, uint32_t f) {
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}
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void DCCTimer::DCCEXanalogWriteFrequencyInternal(uint8_t pin, uint32_t fbits) {
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}
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#define NUM_ADC_INPUTS NUM_ANALOG_INPUTS
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#define NUM_ADC_INPUTS NUM_ANALOG_INPUTS
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uint16_t ADCee::usedpins = 0;
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uint16_t ADCee::usedpins = 0;
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@ -141,6 +141,11 @@ void DCCTimer::reset() {
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SCB_AIRCR = 0x05FA0004;
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SCB_AIRCR = 0x05FA0004;
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}
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}
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void DCCTimer::DCCEXanalogWriteFrequency(uint8_t pin, uint32_t f) {
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}
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void DCCTimer::DCCEXanalogWriteFrequencyInternal(uint8_t pin, uint32_t fbits) {
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}
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int16_t ADCee::ADCmax() {
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int16_t ADCee::ADCmax() {
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return 4095;
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return 4095;
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}
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}
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