Fix stepper direction macros, multi-nozzle scope (#13569)
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@ -859,11 +859,10 @@ void clean_up_after_endstop_or_probe_move() {
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#if HAS_DUPLICATION_MODE
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#if HAS_DUPLICATION_MODE
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bool extruder_duplication_enabled,
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bool extruder_duplication_enabled,
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mirrored_duplication_mode;
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mirrored_duplication_mode;
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#endif
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#if ENABLED(MULTI_NOZZLE_DUPLICATION)
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#if ENABLED(MULTI_NOZZLE_DUPLICATION) && HOTENDS > 2
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uint8_t duplication_e_mask; // = 0
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uint8_t duplication_e_mask; // = 0
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#endif
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#endif
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#endif
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#if ENABLED(DUAL_X_CARRIAGE)
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#if ENABLED(DUAL_X_CARRIAGE)
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@ -318,10 +318,9 @@ void homeaxis(const AxisEnum axis);
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#if HAS_DUPLICATION_MODE
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#if HAS_DUPLICATION_MODE
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extern bool extruder_duplication_enabled, // Used in Dual X mode 2
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extern bool extruder_duplication_enabled, // Used in Dual X mode 2
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mirrored_duplication_mode; // Used in Dual X mode 3
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mirrored_duplication_mode; // Used in Dual X mode 3
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#if ENABLED(MULTI_NOZZLE_DUPLICATION)
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extern uint8_t duplication_e_mask;
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#endif
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#endif
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#if ENABLED(MULTI_NOZZLE_DUPLICATION) && HOTENDS > 2
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uint8_t duplication_e_mask;
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#endif
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#endif
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/**
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/**
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@ -618,14 +618,20 @@ void reset_stepper_drivers(); // Called by settings.load / settings.reset
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#define _REV_E_DIR(E) do{ if (E == 0) { E0_DIR_WRITE( INVERT_E0_DIR); } else { E1_DIR_WRITE( INVERT_E1_DIR); } }while(0)
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#define _REV_E_DIR(E) do{ if (E == 0) { E0_DIR_WRITE( INVERT_E0_DIR); } else { E1_DIR_WRITE( INVERT_E1_DIR); } }while(0)
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#endif
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#endif
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#if EITHER(DUAL_X_CARRIAGE, MULTI_NOZZLE_DUPLICATION)
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#if HAS_DUPLICATION_MODE
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#if ENABLED(MULTI_NOZZLE_DUPLICATION)
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#define _DUPE(N,T,V) do{ if (TEST(duplication_e_mask, N)) E##N##_##T##_WRITE(V); }while(0)
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#else
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#define _DUPE(N,T,V) E##N##_##T##_WRITE(V)
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#endif
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#define NDIR(N) _DUPE(N,DIR,!INVERT_E##N##_DIR)
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#define RDIR(N) _DUPE(N,DIR, INVERT_E##N##_DIR)
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#define NDIR(N) _DUPE(DIR,!INVERT_E##N##_DIR)
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#define RDIR(N) _DUPE(DIR, INVERT_E##N##_DIR)
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#define E_STEP_WRITE(E,V) do{ if (extruder_duplication_enabled) { DUPE(STEP,V); } else _E_STEP_WRITE(E,V); }while(0)
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#define E_STEP_WRITE(E,V) do{ if (extruder_duplication_enabled) { DUPE(STEP,V); } else _E_STEP_WRITE(E,V); }while(0)
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#if E_STEPPERS > 2
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#if E_STEPPERS > 2
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#define _DUPE(N,T,V) do{ if (duplication_e_mask <= (N)) E##N##_##T##_WRITE(V); }while(0)
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#if E_STEPPERS > 5
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#if E_STEPPERS > 5
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#define DUPE(T,V) do{ _DUPE(0,T,V); _DUPE(1,T,V); _DUPE(2,T,V); _DUPE(3,T,V); _DUPE(4,T,V); _DUPE(5,T,V); }while(0)
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#define DUPE(T,V) do{ _DUPE(0,T,V); _DUPE(1,T,V); _DUPE(2,T,V); _DUPE(3,T,V); _DUPE(4,T,V); _DUPE(5,T,V); }while(0)
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#define NORM_E_DIR(E) do{ if (extruder_duplication_enabled) { NDIR(0); NDIR(1); NDIR(2); NDIR(3); NDIR(4); NDIR(5); } else _NORM_E_DIR(E); }while(0)
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#define NORM_E_DIR(E) do{ if (extruder_duplication_enabled) { NDIR(0); NDIR(1); NDIR(2); NDIR(3); NDIR(4); NDIR(5); } else _NORM_E_DIR(E); }while(0)
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@ -644,8 +650,7 @@ void reset_stepper_drivers(); // Called by settings.load / settings.reset
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#define REV_E_DIR(E) do{ if (extruder_duplication_enabled) { RDIR(0); RDIR(1); RDIR(2); } else _REV_E_DIR(E); }while(0)
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#define REV_E_DIR(E) do{ if (extruder_duplication_enabled) { RDIR(0); RDIR(1); RDIR(2); } else _REV_E_DIR(E); }while(0)
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#endif
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#endif
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#else
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#else
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#define _DUPE(T,V) do{ E0_##T##_WRITE(V); E1_##T##_WRITE(V); }while(0)
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#define DUPE(T,V) do{ _DUPE(0,T,V); _DUPE(1,T,V); } while(0)
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#define DUPE(T,V) _DUPE(T,V)
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#define NORM_E_DIR(E) do{ if (extruder_duplication_enabled) { NDIR(0); NDIR(1); } else _NORM_E_DIR(E); }while(0)
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#define NORM_E_DIR(E) do{ if (extruder_duplication_enabled) { NDIR(0); NDIR(1); } else _NORM_E_DIR(E); }while(0)
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#define REV_E_DIR(E) do{ if (extruder_duplication_enabled) { RDIR(0); RDIR(1); } else _REV_E_DIR(E); }while(0)
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#define REV_E_DIR(E) do{ if (extruder_duplication_enabled) { RDIR(0); RDIR(1); } else _REV_E_DIR(E); }while(0)
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#endif
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#endif
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