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Fix CoreXY homing bug introduced by PR #1606
The Check Endstop logic must be: if (current_block->steps_x != current_block->steps_y || (TEST(out_bits, X_AXIS) == TEST(out_bits, Y_AXIS))) if (TEST(out_bits, X_HEAD)) not if (TEST(out_bits, X_HEAD) && (current_block->steps_x != current_block->steps_y || (TEST(out_bits, X_AXIS) == TEST(out_bits, Y_AXIS)))) Same applies for Y axis.
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@ -413,48 +413,49 @@ ISR(TIMER1_COMPA_vect) {
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#else
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// Head direction in -X axis for CoreXY bots.
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// If DeltaX == -DeltaY, the movement is only in Y axis
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if (TEST(out_bits, X_HEAD) && (current_block->steps_x != current_block->steps_y || (TEST(out_bits, X_AXIS) == TEST(out_bits, Y_AXIS))))
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if (current_block->steps_x != current_block->steps_y || (TEST(out_bits, X_AXIS) == TEST(out_bits, Y_AXIS)))
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if (TEST(out_bits, X_HEAD))
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#endif
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{ // -direction
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#ifdef DUAL_X_CARRIAGE
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// with 2 x-carriages, endstops are only checked in the homing direction for the active extruder
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if ((current_block->active_extruder == 0 && X_HOME_DIR == -1) || (current_block->active_extruder != 0 && X2_HOME_DIR == -1))
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#endif
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{
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#if defined(X_MIN_PIN) && X_MIN_PIN >= 0
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UPDATE_ENDSTOP(x, X, min, MIN);
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{ // -direction
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#ifdef DUAL_X_CARRIAGE
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// with 2 x-carriages, endstops are only checked in the homing direction for the active extruder
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if ((current_block->active_extruder == 0 && X_HOME_DIR == -1) || (current_block->active_extruder != 0 && X2_HOME_DIR == -1))
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#endif
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{
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#if defined(X_MIN_PIN) && X_MIN_PIN >= 0
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UPDATE_ENDSTOP(x, X, min, MIN);
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#endif
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}
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}
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else { // +direction
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#ifdef DUAL_X_CARRIAGE
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// with 2 x-carriages, endstops are only checked in the homing direction for the active extruder
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if ((current_block->active_extruder == 0 && X_HOME_DIR == 1) || (current_block->active_extruder != 0 && X2_HOME_DIR == 1))
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#endif
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{
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#if defined(X_MAX_PIN) && X_MAX_PIN >= 0
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UPDATE_ENDSTOP(x, X, max, MAX);
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#endif
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}
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}
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#ifndef COREXY
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if (TEST(out_bits, Y_AXIS)) // -direction
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#else
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// Head direction in -Y axis for CoreXY bots.
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// If DeltaX == DeltaY, the movement is only in X axis
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if (current_block->steps_x != current_block->steps_y || (TEST(out_bits, X_AXIS) != TEST(out_bits, Y_AXIS)))
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if (TEST(out_bits, Y_HEAD))
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#endif
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{ // -direction
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#if defined(Y_MIN_PIN) && Y_MIN_PIN >= 0
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UPDATE_ENDSTOP(y, Y, min, MIN);
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#endif
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}
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}
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else { // +direction
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#ifdef DUAL_X_CARRIAGE
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// with 2 x-carriages, endstops are only checked in the homing direction for the active extruder
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if ((current_block->active_extruder == 0 && X_HOME_DIR == 1) || (current_block->active_extruder != 0 && X2_HOME_DIR == 1))
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#endif
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{
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#if defined(X_MAX_PIN) && X_MAX_PIN >= 0
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UPDATE_ENDSTOP(x, X, max, MAX);
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else { // +direction
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#if defined(Y_MAX_PIN) && Y_MAX_PIN >= 0
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UPDATE_ENDSTOP(y, Y, max, MAX);
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#endif
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}
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}
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#ifndef COREXY
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if (TEST(out_bits, Y_AXIS)) // -direction
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#else
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// Head direction in -Y axis for CoreXY bots.
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// If DeltaX == DeltaY, the movement is only in X axis
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if (TEST(out_bits, Y_HEAD) && (current_block->steps_x != current_block->steps_y || (TEST(out_bits, X_AXIS) != TEST(out_bits, Y_AXIS))))
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#endif
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{ // -direction
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#if defined(Y_MIN_PIN) && Y_MIN_PIN >= 0
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UPDATE_ENDSTOP(y, Y, min, MIN);
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#endif
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}
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else { // +direction
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#if defined(Y_MAX_PIN) && Y_MAX_PIN >= 0
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UPDATE_ENDSTOP(y, Y, max, MAX);
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#endif
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}
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}
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if (TEST(out_bits, Z_AXIS)) { // -direction
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