mirror of https://github.com/meshcore-dev/MeshCore
10 changed files with 207 additions and 11 deletions
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#pragma once |
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#include <Arduino.h> |
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enum class RotaryInputEvent : uint8_t { |
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None, |
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Next, |
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Prev, |
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}; |
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class RotaryInput { |
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public: |
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virtual ~RotaryInput() = default; |
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virtual bool begin() = 0; |
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virtual RotaryInputEvent poll() = 0; |
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virtual bool isReady() const = 0; |
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}; |
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#include "HeltecRC32RotaryInput.h" |
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#include <Wire.h> |
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namespace { |
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constexpr uint8_t TCA6408_ADDR = 0x20; |
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constexpr uint8_t TCA6408_INPUT_REG = 0x00; |
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constexpr uint8_t TCA6408_POLARITY_REG = 0x02; |
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constexpr uint8_t TCA6408_CONFIG_REG = 0x03; |
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constexpr uint8_t TCA6408_ROTARY_A_MASK = 0x01; |
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constexpr uint8_t TCA6408_ROTARY_B_MASK = 0x02; |
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constexpr uint8_t TCA6408_ROTARY_MASK = TCA6408_ROTARY_A_MASK | TCA6408_ROTARY_B_MASK; |
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constexpr uint32_t TCA6408_DEBOUNCE_MS = 5; |
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} |
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bool HeltecRC32RotaryInput::begin() { |
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initialized = true; |
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ready = false; |
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input_state = TCA6408_ROTARY_MASK; |
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active_low_phase = false; |
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if (periph_power && !power_claimed) { |
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periph_power->claim(); |
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power_claimed = true; |
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delay(12); |
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} |
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if (!writeRegister(TCA6408_POLARITY_REG, 0x00) || !writeRegister(TCA6408_CONFIG_REG, 0xFF)) { |
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return false; |
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} |
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uint8_t state = 0; |
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if (!readInput(state)) { |
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return false; |
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} |
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input_state = state & TCA6408_ROTARY_MASK; |
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ready = true; |
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return true; |
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} |
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RotaryInputEvent HeltecRC32RotaryInput::poll() { |
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if (!initialized) { |
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begin(); |
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return RotaryInputEvent::None; |
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} |
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if (!ready) { |
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return RotaryInputEvent::None; |
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} |
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uint8_t new_state = 0; |
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if (!readInput(new_state)) { |
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return RotaryInputEvent::None; |
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} |
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new_state &= TCA6408_ROTARY_MASK; |
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RotaryInputEvent event = handleTransition(new_state); |
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input_state = new_state; |
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return event; |
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} |
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bool HeltecRC32RotaryInput::writeRegister(uint8_t reg, uint8_t value) { |
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Wire.beginTransmission(TCA6408_ADDR); |
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Wire.write(reg); |
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Wire.write(value); |
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return Wire.endTransmission() == 0; |
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} |
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bool HeltecRC32RotaryInput::readInput(uint8_t& value) { |
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Wire.beginTransmission(TCA6408_ADDR); |
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Wire.write(TCA6408_INPUT_REG); |
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if (Wire.endTransmission(false) != 0) { |
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return false; |
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} |
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if (Wire.requestFrom(TCA6408_ADDR, static_cast<uint8_t>(1)) != 1) { |
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return false; |
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} |
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value = Wire.read(); |
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return true; |
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} |
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RotaryInputEvent HeltecRC32RotaryInput::handleTransition(uint8_t newState) { |
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uint8_t changed = (input_state ^ newState) & TCA6408_ROTARY_MASK; |
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RotaryInputEvent event = RotaryInputEvent::None; |
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bool a_low = (newState & TCA6408_ROTARY_A_MASK) == 0; |
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bool b_low = (newState & TCA6408_ROTARY_B_MASK) == 0; |
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if (!a_low && !b_low) { |
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active_low_phase = false; |
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} |
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if (!active_low_phase && (changed & TCA6408_ROTARY_A_MASK) && a_low && !b_low) { |
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event = RotaryInputEvent::Prev; |
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active_low_phase = true; |
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} else if (!active_low_phase && (changed & TCA6408_ROTARY_B_MASK) && b_low && !a_low) { |
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event = RotaryInputEvent::Next; |
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active_low_phase = true; |
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} |
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if (event == RotaryInputEvent::None && !active_low_phase && (changed & TCA6408_ROTARY_A_MASK)) { |
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bool a_rising = (newState & TCA6408_ROTARY_A_MASK) != 0; |
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if (a_rising && b_low) { |
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event = RotaryInputEvent::Prev; |
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} |
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} |
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if (event == RotaryInputEvent::None && !active_low_phase && (changed & TCA6408_ROTARY_B_MASK)) { |
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bool b_rising = (newState & TCA6408_ROTARY_B_MASK) != 0; |
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if (b_rising && a_low) { |
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event = RotaryInputEvent::Next; |
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} |
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} |
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if (event == RotaryInputEvent::None || (millis() - last_event_ms) < TCA6408_DEBOUNCE_MS) { |
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return RotaryInputEvent::None; |
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} |
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last_event_ms = millis(); |
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return event; |
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} |
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@ -0,0 +1,26 @@ |
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#pragma once |
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#include <helpers/RefCountedDigitalPin.h> |
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#include <helpers/ui/RotaryInput.h> |
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class HeltecRC32RotaryInput : public RotaryInput { |
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public: |
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explicit HeltecRC32RotaryInput(RefCountedDigitalPin* periphPower = nullptr) : periph_power(periphPower) { } |
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bool begin() override; |
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RotaryInputEvent poll() override; |
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bool isReady() const override { return ready; } |
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private: |
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bool writeRegister(uint8_t reg, uint8_t value); |
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bool readInput(uint8_t& value); |
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RotaryInputEvent handleTransition(uint8_t newState); |
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uint8_t input_state = 0x03; |
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uint32_t last_event_ms = 0; |
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bool ready = false; |
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bool initialized = false; |
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bool power_claimed = false; |
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bool active_low_phase = false; |
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RefCountedDigitalPin* periph_power = nullptr; |
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}; |
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