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@ -17,6 +17,7 @@ bool process_joystick(uint16_t keycode, keyrecord_t *record) { |
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return true; |
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} |
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__attribute__((weak)) |
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void joystick_task(void) { |
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if (process_joystick_analogread() && (joystick_status.status & JS_UPDATED)) { |
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send_joystick_packet(&joystick_status); |
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@ -40,20 +41,39 @@ bool process_joystick_buttons(uint16_t keycode, keyrecord_t *record) { |
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return true; |
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} |
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uint8_t savePinState(uint8_t pin) { |
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uint16_t savePinState(uint32_t pin) { |
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#ifdef __AVR__ |
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uint8_t pinNumber = pin & 0xF; |
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return ((PORTx_ADDRESS(pin) >> pinNumber) & 0x1) << 1 | ((DDRx_ADDRESS(pin) >> pinNumber) & 0x1); |
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#elif defined(PROTOCOL_CHIBIOS) |
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/*
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The pin configuration is backed up in the following format :
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bit 15 9 8 7 6 5 4 3 2 1 0 |
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|unused|ODR|IDR|PUPDR|OSPEEDR|OTYPER|MODER| |
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*/ |
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return (( PAL_PORT(pin)->MODER >> (2*PAL_PAD(pin))) & 0x3) |
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| (((PAL_PORT(pin)->OTYPER >> (1*PAL_PAD(pin))) & 0x1) << 2)
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| (((PAL_PORT(pin)->OSPEEDR >> (2*PAL_PAD(pin))) & 0x3) << 3) |
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| (((PAL_PORT(pin)->PUPDR >> (2*PAL_PAD(pin))) & 0x3) << 5) |
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| (((PAL_PORT(pin)->IDR >> (1*PAL_PAD(pin))) & 0x1) << 7) |
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| (((PAL_PORT(pin)->ODR >> (1*PAL_PAD(pin))) & 0x1) << 8); |
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#else |
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return 0; |
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#endif |
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} |
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void restorePinState(uint8_t pin, uint8_t restoreState) { |
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void restorePinState(uint32_t pin, uint16_t restoreState) { |
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#ifdef __AVR__ |
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uint8_t pinNumber = pin & 0xF; |
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PORTx_ADDRESS(pin) = (PORTx_ADDRESS(pin) & ~_BV(pinNumber)) | (((restoreState >> 1) & 0x1) << pinNumber); |
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DDRx_ADDRESS(pin) = (DDRx_ADDRESS(pin) & ~_BV(pinNumber)) | ((restoreState & 0x1) << pinNumber); |
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#elif defined(PROTOCOL_CHIBIOS) |
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PAL_PORT(pin)->MODER = (PAL_PORT(pin)->MODER & ~(0x3<< (2*PAL_PAD(pin)))) | (restoreState & 0x3) << (2*PAL_PAD(pin)); |
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PAL_PORT(pin)->OTYPER = (PAL_PORT(pin)->OTYPER & ~(0x1<< (1*PAL_PAD(pin)))) | ((restoreState>>2) & 0x1) << (1*PAL_PAD(pin)); |
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PAL_PORT(pin)->OSPEEDR= (PAL_PORT(pin)->OSPEEDR & ~(0x3<< (2*PAL_PAD(pin)))) | ((restoreState>>3) & 0x3) << (2*PAL_PAD(pin)); |
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PAL_PORT(pin)->PUPDR = (PAL_PORT(pin)->PUPDR & ~(0x3<< (2*PAL_PAD(pin)))) | ((restoreState>>5) & 0x3) << (2*PAL_PAD(pin)); |
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PAL_PORT(pin)->IDR = (PAL_PORT(pin)->IDR & ~(0x1<< (1*PAL_PAD(pin)))) | ((restoreState>>7) & 0x1) << (1*PAL_PAD(pin)); |
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PAL_PORT(pin)->ODR = (PAL_PORT(pin)->ODR & ~(0x1<< (1*PAL_PAD(pin)))) | ((restoreState>>8) & 0x1) << (1*PAL_PAD(pin)); |
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#else |
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return; |
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#endif |
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@ -69,7 +89,7 @@ bool process_joystick_analogread_quantum() { |
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} |
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// save previous input pin status as well
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uint8_t inputSavedState = savePinState(joystick_axes[axis_index].input_pin); |
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uint16_t inputSavedState = savePinState(joystick_axes[axis_index].input_pin); |
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// disable pull-up resistor
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writePinLow(joystick_axes[axis_index].input_pin); |
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@ -81,7 +101,7 @@ bool process_joystick_analogread_quantum() { |
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wait_us(10); |
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// save and apply output pin status
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uint8_t outputSavedState = 0; |
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uint16_t outputSavedState = 0; |
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if (joystick_axes[axis_index].output_pin != JS_VIRTUAL_AXIS) { |
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// save previous output pin status
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outputSavedState = savePinState(joystick_axes[axis_index].output_pin); |
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@ -90,7 +110,7 @@ bool process_joystick_analogread_quantum() { |
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writePinHigh(joystick_axes[axis_index].output_pin); |
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} |
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uint8_t groundSavedState = 0; |
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uint16_t groundSavedState = 0; |
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if (joystick_axes[axis_index].ground_pin != JS_VIRTUAL_AXIS) { |
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// save previous output pin status
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groundSavedState = savePinState(joystick_axes[axis_index].ground_pin); |
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@ -126,7 +146,7 @@ bool process_joystick_analogread_quantum() { |
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//clamp the result in the valid range
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ranged_val = ranged_val<-127 ? -127 : ranged_val; |
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ranged_val = ranged_val>127 ? 127 : ranged_val; |
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if (ranged_val != joystick_status.axes[axis_index]) { |
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joystick_status.axes[axis_index] = ranged_val; |
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joystick_status.status |= JS_UPDATED; |
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