CoreXY Babystepping hotfix
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@ -2526,12 +2526,12 @@ void Stepper::report_positions() {
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#elif IS_CORE
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#define BABYSTEP_CORE(A, B, INV, DIR) do{ \
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#define BABYSTEP_CORE(A, B, INV, DIR, ALT) do{ \
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const xy_byte_t old_dir = { _READ_DIR(A), _READ_DIR(B) }; \
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_ENABLE_AXIS(A); _ENABLE_AXIS(B); \
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DIR_WAIT_BEFORE(); \
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_APPLY_DIR(A, _INVERT_DIR(A)^DIR^INV); \
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_APPLY_DIR(B, _INVERT_DIR(B)^DIR^INV^(CORESIGN(1)<0)); \
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_APPLY_DIR(B, _INVERT_DIR(B)^DIR^INV^ALT); \
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DIR_WAIT_AFTER(); \
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_SAVE_START(); \
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_APPLY_STEP(A, !_INVERT_STEP_PIN(A), true); \
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@ -2560,21 +2560,21 @@ void Stepper::report_positions() {
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case X_AXIS:
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#if CORE_IS_XY
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BABYSTEP_CORE(X, Y, false, direction);
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BABYSTEP_CORE(X, Y, 0, direction, 0);
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#elif CORE_IS_XZ
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BABYSTEP_CORE(X, Z, false, direction);
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BABYSTEP_CORE(X, Z, 0, direction, 0);
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#else
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BABYSTEP_AXIS(X, false, direction);
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BABYSTEP_AXIS(X, 0, direction, 0);
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#endif
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break;
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case Y_AXIS:
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#if CORE_IS_XY
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BABYSTEP_CORE(X, Y, false, direction);
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BABYSTEP_CORE(X, Y, 0, direction, (CORESIGN(1)<0));
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#elif CORE_IS_YZ
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BABYSTEP_CORE(Y, Z, false, direction);
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BABYSTEP_CORE(Y, Z, 0, direction, (CORESIGN(1)<0));
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#else
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BABYSTEP_AXIS(Y, false, direction);
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BABYSTEP_AXIS(Y, 0, direction, (CORESIGN(1)<0));
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#endif
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break;
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@ -2583,11 +2583,11 @@ void Stepper::report_positions() {
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case Z_AXIS: {
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#if CORE_IS_XZ
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BABYSTEP_CORE(X, Z, BABYSTEP_INVERT_Z, direction);
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BABYSTEP_CORE(X, Z, BABYSTEP_INVERT_Z, direction, (CORESIGN(1)<0));
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#elif CORE_IS_YZ
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BABYSTEP_CORE(Y, Z, BABYSTEP_INVERT_Z, direction);
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BABYSTEP_CORE(Y, Z, BABYSTEP_INVERT_Z, direction, (CORESIGN(1)<0));
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#elif DISABLED(DELTA)
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BABYSTEP_AXIS(Z, BABYSTEP_INVERT_Z, direction);
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BABYSTEP_AXIS(Z, BABYSTEP_INVERT_Z, direction, (CORESIGN(1)<0));
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#else // DELTA
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