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@ -157,26 +157,24 @@ Nozzle nozzle;
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* @param argument depends on the cleaning pattern
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* @param argument depends on the cleaning pattern
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*/
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*/
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void Nozzle::clean(const uint8_t &pattern, const uint8_t &strokes, const float &radius, const uint8_t &objects, const uint8_t cleans) {
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void Nozzle::clean(const uint8_t &pattern, const uint8_t &strokes, const float &radius, const uint8_t &objects, const uint8_t cleans) {
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xyz_pos_t start = NOZZLE_CLEAN_START_POINT, end = NOZZLE_CLEAN_END_POINT;
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xyz_pos_t start[HOTENDS] = NOZZLE_CLEAN_START_POINT, end[HOTENDS] = NOZZLE_CLEAN_END_POINT, middle[HOTENDS] = NOZZLE_CLEAN_CIRCLE_MIDDLE;
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if (pattern == 2) {
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if (pattern == 2) {
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if (!(cleans & (_BV(X_AXIS) | _BV(Y_AXIS)))) {
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if (!(cleans & (_BV(X_AXIS) | _BV(Y_AXIS)))) {
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SERIAL_ECHOLNPGM("Warning : Clean Circle requires XY");
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SERIAL_ECHOLNPGM("Warning : Clean Circle requires XY");
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return;
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return;
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}
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}
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constexpr xyz_pos_t middle NOZZLE_CLEAN_CIRCLE_MIDDLE;
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end = middle;
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}
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}
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else {
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else {
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if (!TEST(cleans, X_AXIS)) start.x = end.x = current_position.x;
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if (!TEST(cleans, X_AXIS)) start[active_extruder].x = end[active_extruder].x = current_position.x;
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if (!TEST(cleans, Y_AXIS)) start.y = end.y = current_position.y;
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if (!TEST(cleans, Y_AXIS)) start[active_extruder].y = end[active_extruder].y = current_position.y;
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}
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}
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if (!TEST(cleans, Z_AXIS)) start.z = end.z = current_position.z;
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if (!TEST(cleans, Z_AXIS)) start[active_extruder].z = end[active_extruder].z = current_position.z;
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switch (pattern) {
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switch (pattern) {
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case 1: zigzag(start, end, strokes, objects); break;
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case 1: zigzag(start[active_extruder], end[active_extruder], strokes, objects); break;
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case 2: circle(start, end, strokes, radius); break;
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case 2: circle(start[active_extruder], middle[active_extruder], strokes, radius); break;
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default: stroke(start, end, strokes);
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default: stroke(start[active_extruder], end[active_extruder], strokes);
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}
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}
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}
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}
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