Tweaks to TMC26XStepper
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@ -127,7 +127,7 @@ uint8_t current_scaling = 0;
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* dir_pin - the pin where the direction pin is connected
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* step_pin - the pin where the step pin is connected
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*/
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TMC26XStepper::TMC26XStepper(int16_t number_of_steps, int16_t cs_pin, int16_t dir_pin, int16_t step_pin, uint16_t current, uint16_t resistor) {
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TMC26XStepper::TMC26XStepper(const int16_t in_steps, int16_t cs_pin, int16_t dir_pin, int16_t step_pin, uint16_t current, uint16_t resistor) {
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// We are not started yet
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started = false;
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@ -165,7 +165,7 @@ TMC26XStepper::TMC26XStepper(int16_t number_of_steps, int16_t cs_pin, int16_t di
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// Set a nice microstepping value
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setMicrosteps(DEFAULT_MICROSTEPPING_VALUE);
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// Save the number of steps
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this->number_of_steps = number_of_steps;
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number_of_steps = in_steps;
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}
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@ -389,52 +389,29 @@ char TMC26XStepper::getStallGuardFilter(void) {
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* any value in between will be mapped to the next smaller value
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* 0 and 1 set the motor in full step mode
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*/
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void TMC26XStepper::setMicrosteps(int16_t number_of_steps) {
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long setting_pattern;
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//poor mans log
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if (number_of_steps >= 256) {
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setting_pattern = 0;
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microsteps = 256;
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}
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else if (number_of_steps >= 128) {
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setting_pattern = 1;
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microsteps = 128;
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}
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else if (number_of_steps >= 64) {
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setting_pattern = 2;
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microsteps = 64;
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}
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else if (number_of_steps >= 32) {
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setting_pattern = 3;
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microsteps = 32;
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}
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else if (number_of_steps >= 16) {
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setting_pattern = 4;
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microsteps = 16;
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}
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else if (number_of_steps >= 8) {
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setting_pattern = 5;
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microsteps = 8;
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}
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else if (number_of_steps >= 4) {
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setting_pattern = 6;
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microsteps = 4;
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}
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else if (number_of_steps >= 2) {
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setting_pattern = 7;
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microsteps = 2;
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//1 and 0 lead to full step
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}
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else if (number_of_steps <= 1) {
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setting_pattern = 8;
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microsteps = 1;
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}
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void TMC26XStepper::setMicrosteps(const int16_t in_steps) {
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uint16_t setting_pattern;
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if (in_steps >= 256) setting_pattern = 0;
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else if (in_steps >= 128) setting_pattern = 1;
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else if (in_steps >= 64) setting_pattern = 2;
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else if (in_steps >= 32) setting_pattern = 3;
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else if (in_steps >= 16) setting_pattern = 4;
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else if (in_steps >= 8) setting_pattern = 5;
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else if (in_steps >= 4) setting_pattern = 6;
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else if (in_steps >= 2) setting_pattern = 7;
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else if (in_steps <= 1) setting_pattern = 8; // 1 and 0 lead to full step
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microsteps = _BV(8 - setting_pattern);
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#ifdef TMC_DEBUG0 // crashes
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//SERIAL_PRINTF("Microstepping: ");
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SERIAL_ECHOPAIR("\n Microstepping: ", microsteps);
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#endif
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// Delete the old value
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this->driver_control_register_value &= 0xFFFF0UL;
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this->driver_control_register_value &= 0x000FFFF0UL;
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// Set the new value
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this->driver_control_register_value |= setting_pattern;
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@ -119,7 +119,7 @@ class TMC26XStepper {
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* You can select a different stepping with setMicrosteps() to aa different value.
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* \sa start(), setMicrosteps()
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*/
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TMC26XStepper(int16_t number_of_steps, int16_t cs_pin, int16_t dir_pin, int16_t step_pin, uint16_t current, uint16_t resistor=100); //resistor=150
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TMC26XStepper(const int16_t in_steps, int16_t cs_pin, int16_t dir_pin, int16_t step_pin, uint16_t current, uint16_t resistor=100); //resistor=150
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/*!
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* \brief configures and starts the TMC26X stepper driver. Before you called this function the stepper driver is in nonfunctional mode.
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@ -163,7 +163,7 @@ class TMC26XStepper {
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* If you give any other value it will be rounded to the next smaller number (3 would give a microstepping of 2).
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* You can always check the current microstepping with getMicrosteps().
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*/
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void setMicrosteps(int16_t number_of_steps);
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void setMicrosteps(const int16_t in_steps);
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/*!
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* \brief returns the effective current number of microsteps selected.
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