const arg to inverse_kinematics
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@ -315,7 +315,7 @@ float code_value_temp_diff();
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extern float delta_diagonal_rod_trim_tower_1;
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extern float delta_diagonal_rod_trim_tower_2;
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extern float delta_diagonal_rod_trim_tower_3;
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void inverse_kinematics(float cartesian[3]);
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void inverse_kinematics(const float cartesian[3]);
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void recalc_delta_settings(float radius, float diagonal_rod);
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#if ENABLED(AUTO_BED_LEVELING_FEATURE)
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extern int delta_grid_spacing[2];
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@ -323,7 +323,7 @@ float code_value_temp_diff();
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#endif
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#elif ENABLED(SCARA)
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extern float axis_scaling[3]; // Build size scaling
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void inverse_kinematics(float cartesian[3]);
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void inverse_kinematics(const float cartesian[3]);
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void forward_kinematics_SCARA(float f_scara[3]);
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#endif
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@ -7737,7 +7737,7 @@ void clamp_to_software_endstops(float target[3]) {
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delta_diagonal_rod_2_tower_3 = sq(diagonal_rod + delta_diagonal_rod_trim_tower_3);
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}
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void inverse_kinematics(float cartesian[3]) {
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void inverse_kinematics(const float in_cartesian[3]) {
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delta[TOWER_1] = sqrt(delta_diagonal_rod_2_tower_1
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- sq(delta_tower1_x - cartesian[X_AXIS])
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@ -8353,7 +8353,7 @@ void prepare_move_to_destination() {
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//SERIAL_ECHOPGM(" delta[Y_AXIS]="); SERIAL_ECHOLN(delta[Y_AXIS]);
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}
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void inverse_kinematics(float cartesian[3]) {
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void inverse_kinematics(const float cartesian[3]) {
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// Inverse kinematics.
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// Perform SCARA IK and place results in delta[3].
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// The maths and first version were done by QHARLEY.
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