Support for two switching extruders
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@ -142,7 +142,10 @@
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//#define SWITCHING_EXTRUDER
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#if ENABLED(SWITCHING_EXTRUDER)
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#define SWITCHING_EXTRUDER_SERVO_NR 0
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#define SWITCHING_EXTRUDER_SERVO_ANGLES { 0, 90 } // Angles for E0, E1
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#define SWITCHING_EXTRUDER_SERVO_ANGLES { 0, 90 } // Angles for E0, E1[, E2, E3]
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#if EXTRUDERS > 3
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#define SWITCHING_EXTRUDER_E23_SERVO_NR 1
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#endif
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#endif
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// A dual-nozzle that uses a servomotor to raise/lower one of the nozzles
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@ -9843,25 +9843,41 @@ inline void gcode_M999() {
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}
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#if ENABLED(SWITCHING_EXTRUDER)
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inline void move_extruder_servo(uint8_t e) {
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const int angles[2] = SWITCHING_EXTRUDER_SERVO_ANGLES;
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MOVE_SERVO(SWITCHING_EXTRUDER_SERVO_NR, angles[e]);
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safe_delay(500);
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#if EXTRUDERS > 3
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#define REQ_ANGLES 4
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#define _SERVO_NR (e < 2 ? SWITCHING_EXTRUDER_SERVO_NR : SWITCHING_EXTRUDER_E23_SERVO_NR)
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#else
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#define REQ_ANGLES 2
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#define _SERVO_NR SWITCHING_EXTRUDER_SERVO_NR
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#endif
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inline void move_extruder_servo(const uint8_t e) {
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constexpr int16_t angles[] = SWITCHING_EXTRUDER_SERVO_ANGLES;
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static_assert(COUNT(angles) == REQ_ANGLES, "SWITCHING_EXTRUDER_SERVO_ANGLES needs " STRINGIFY(REQ_ANGLES) " angles.");
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stepper.synchronize();
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#if EXTRUDERS & 1
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if (e < EXTRUDERS - 1)
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#endif
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{
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MOVE_SERVO(_SERVO_NR, angles[e]);
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safe_delay(500);
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}
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}
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#endif
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#endif // SWITCHING_EXTRUDER
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#if ENABLED(SWITCHING_NOZZLE)
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inline void move_nozzle_servo(uint8_t e) {
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const int angles[2] = SWITCHING_NOZZLE_SERVO_ANGLES;
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inline void move_nozzle_servo(const uint8_t e) {
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const int16_t angles[2] = SWITCHING_NOZZLE_SERVO_ANGLES;
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stepper.synchronize();
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MOVE_SERVO(SWITCHING_NOZZLE_SERVO_NR, angles[e]);
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safe_delay(500);
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}
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#endif
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inline void invalid_extruder_error(const uint8_t &e) {
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inline void invalid_extruder_error(const uint8_t e) {
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SERIAL_ECHO_START();
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SERIAL_CHAR('T');
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SERIAL_ECHO_F(e, DEC);
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SERIAL_CHAR(' ');
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SERIAL_ECHOLN(MSG_INVALID_EXTRUDER);
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}
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@ -9881,10 +9897,10 @@ void tool_change(const uint8_t tmp_extruder, const float fr_mm_s/*=0.0*/, bool n
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#else // !MIXING_EXTRUDER || MIXING_VIRTUAL_TOOLS <= 1
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#if HOTENDS > 1
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if (tmp_extruder >= EXTRUDERS)
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return invalid_extruder_error(tmp_extruder);
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if (tmp_extruder >= EXTRUDERS)
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return invalid_extruder_error(tmp_extruder);
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#if HOTENDS > 1
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const float old_feedrate_mm_s = fr_mm_s > 0.0 ? fr_mm_s : feedrate_mm_s;
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@ -10006,6 +10022,7 @@ void tool_change(const uint8_t tmp_extruder, const float fr_mm_s/*=0.0*/, bool n
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#else // !DUAL_X_CARRIAGE
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#if ENABLED(SWITCHING_NOZZLE)
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#define DONT_SWITCH (SWITCHING_EXTRUDER_SERVO_NR == SWITCHING_NOZZLE_SERVO_NR)
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// <0 if the new nozzle is higher, >0 if lower. A bigger raise when lower.
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const float z_diff = hotend_offset[Z_AXIS][active_extruder] - hotend_offset[Z_AXIS][tmp_extruder],
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z_raise = 0.3 + (z_diff > 0.0 ? z_diff : 0.0);
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@ -10013,16 +10030,7 @@ void tool_change(const uint8_t tmp_extruder, const float fr_mm_s/*=0.0*/, bool n
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// Always raise by some amount (destination copied from current_position earlier)
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current_position[Z_AXIS] += z_raise;
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planner.buffer_line_kinematic(current_position, planner.max_feedrate_mm_s[Z_AXIS], active_extruder);
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stepper.synchronize();
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move_nozzle_servo(active_extruder);
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#endif
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#if ENABLED(SWITCHING_EXTRUDER)
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#if !(ENABLED(SWITCHING_NOZZLE) && (SWITCHING_EXTRUDER_SERVO_NR == SWITCHING_NOZZLE_SERVO_NR))
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stepper.synchronize();
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move_extruder_servo(active_extruder);
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#endif
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move_nozzle_servo(tmp_extruder);
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#endif
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/**
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@ -10167,19 +10175,18 @@ void tool_change(const uint8_t tmp_extruder, const float fr_mm_s/*=0.0*/, bool n
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#else // HOTENDS <= 1
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// Set the new active extruder
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active_extruder = tmp_extruder;
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UNUSED(fr_mm_s);
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UNUSED(no_move);
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#if ENABLED(SWITCHING_EXTRUDER)
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stepper.synchronize();
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move_extruder_servo(active_extruder);
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#endif
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// Set the new active extruder
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active_extruder = tmp_extruder;
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#endif // HOTENDS <= 1
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#if ENABLED(SWITCHING_EXTRUDER) && !DONT_SWITCH
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move_extruder_servo(active_extruder);
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#endif
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SERIAL_ECHO_START();
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SERIAL_ECHOLNPAIR(MSG_ACTIVE_EXTRUDER, (int)active_extruder);
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@ -355,12 +355,14 @@
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#endif
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/**
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* A dual nozzle x-carriage with switching servo
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* A Dual Nozzle carriage with switching servo
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*/
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#if ENABLED(SWITCHING_NOZZLE)
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#if ENABLED(SINGLENOZZLE)
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#if ENABLED(DUAL_X_CARRIAGE)
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#error "SWITCHING_NOZZLE and DUAL_X_CARRIAGE are incompatible."
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#elif ENABLED(SINGLENOZZLE)
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#error "SWITCHING_NOZZLE and SINGLENOZZLE are incompatible."
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#elif EXTRUDERS < 2
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#elif EXTRUDERS != 2
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#error "SWITCHING_NOZZLE requires exactly 2 EXTRUDERS."
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#elif NUM_SERVOS < 1
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#error "SWITCHING_NOZZLE requires NUM_SERVOS >= 1."
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@ -370,14 +372,8 @@
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/**
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* Single Stepper Dual Extruder with switching servo
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*/
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#if ENABLED(SWITCHING_EXTRUDER)
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#if ENABLED(DUAL_X_CARRIAGE)
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#error "SWITCHING_EXTRUDER and DUAL_X_CARRIAGE are incompatible."
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#elif EXTRUDERS != 2
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#error "SWITCHING_EXTRUDER requires exactly 2 EXTRUDERS."
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#elif NUM_SERVOS < 1
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#error "SWITCHING_EXTRUDER requires NUM_SERVOS >= 1."
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#endif
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#if ENABLED(SWITCHING_EXTRUDER) && NUM_SERVOS < 1
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#error "SWITCHING_EXTRUDER requires NUM_SERVOS >= 1."
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#endif
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/**
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@ -938,21 +934,21 @@ static_assert(1 >= 0
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#endif
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/**
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* Test Extruder Pins
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* Test Extruder Stepper Pins
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*/
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#if EXTRUDERS > 4
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#if E_STEPPERS > 4
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#if !PIN_EXISTS(E4_STEP) || !PIN_EXISTS(E4_DIR) || !PIN_EXISTS(E4_ENABLE)
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#error "E4_STEP_PIN, E4_DIR_PIN, or E4_ENABLE_PIN not defined for this board."
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#endif
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#elif EXTRUDERS > 3
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#elif E_STEPPERS > 3
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#if !PIN_EXISTS(E3_STEP) || !PIN_EXISTS(E3_DIR) || !PIN_EXISTS(E3_ENABLE)
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#error "E3_STEP_PIN, E3_DIR_PIN, or E3_ENABLE_PIN not defined for this board."
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#endif
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#elif EXTRUDERS > 2
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#elif E_STEPPERS > 2
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#if !PIN_EXISTS(E2_STEP) || !PIN_EXISTS(E2_DIR) || !PIN_EXISTS(E2_ENABLE)
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#error "E2_STEP_PIN, E2_DIR_PIN, or E2_ENABLE_PIN not defined for this board."
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#endif
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#elif EXTRUDERS > 1
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#elif E_STEPPERS > 1
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#if !PIN_EXISTS(E1_STEP) || !PIN_EXISTS(E1_DIR) || !PIN_EXISTS(E1_ENABLE)
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#error "E1_STEP_PIN, E1_DIR_PIN, or E1_ENABLE_PIN not defined for this board."
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#endif
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@ -330,7 +330,17 @@
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#define _E3_PINS
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#define _E4_PINS
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#if EXTRUDERS > 1
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#if ENABLED(SWITCHING_EXTRUDER)
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// Tools 0 and 1 use E0
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#if EXTRUDERS > 2 // Tools 2 and 3 use E1
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#undef _E1_PINS
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#define _E1_PINS E1_STEP_PIN, E1_DIR_PIN, E1_ENABLE_PIN, E1_MS1_PIN, E1_MS2_PIN,
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#if EXTRUDERS > 4 // Tools 4 and 5 use E2
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#undef _E2_PINS
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#define _E2_PINS E2_STEP_PIN, E2_DIR_PIN, E2_ENABLE_PIN,
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#endif
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#endif
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#elif EXTRUDERS > 1
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#undef _E1_PINS
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#define _E1_PINS E1_STEP_PIN, E1_DIR_PIN, E1_ENABLE_PIN, E1_MS1_PIN, E1_MS2_PIN,
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#if EXTRUDERS > 2
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@ -416,9 +416,19 @@
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* Extruder indirection for the single E axis
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*/
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#if ENABLED(SWITCHING_EXTRUDER)
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#define E_STEP_WRITE(v) E0_STEP_WRITE(v)
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#define NORM_E_DIR() E0_DIR_WRITE(current_block->active_extruder ? INVERT_E0_DIR : !INVERT_E0_DIR)
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#define REV_E_DIR() E0_DIR_WRITE(current_block->active_extruder ? !INVERT_E0_DIR : INVERT_E0_DIR)
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#if EXTRUDERS == 2
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#define E_STEP_WRITE(v) E0_STEP_WRITE(v)
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#define NORM_E_DIR() E0_DIR_WRITE(current_block->active_extruder ? INVERT_E0_DIR : !INVERT_E0_DIR)
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#define REV_E_DIR() E0_DIR_WRITE(current_block->active_extruder ? !INVERT_E0_DIR : INVERT_E0_DIR)
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#elif EXTRUDERS > 4
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#define E_STEP_WRITE(v) { if (current_block->active_extruder < 2) E0_STEP_WRITE(v); else if (current_block->active_extruder < 4) E1_STEP_WRITE(v); else E2_STEP_WRITE(v); }
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#define NORM_E_DIR() { switch (current_block->active_extruder) { case 0: E0_DIR_WRITE(!INVERT_E0_DIR); break; case 1: E0_DIR_WRITE(INVERT_E0_DIR); break; case 2: E1_DIR_WRITE(!INVERT_E1_DIR); break; case 3: E1_DIR_WRITE(INVERT_E1_DIR); break; case 4: E2_DIR_WRITE(!INVERT_E2_DIR); } }
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#define REV_E_DIR() { switch (current_block->active_extruder) { case 0: E0_DIR_WRITE(INVERT_E0_DIR); break; case 1: E0_DIR_WRITE(!INVERT_E0_DIR); break; case 2: E1_DIR_WRITE(INVERT_E1_DIR); break; case 3: E1_DIR_WRITE(!INVERT_E1_DIR); break; case 4: E2_DIR_WRITE(INVERT_E2_DIR); } }
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#elif EXTRUDERS > 2
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#define E_STEP_WRITE(v) { if (current_block->active_extruder < 2) E0_STEP_WRITE(v); else if (current_block->active_extruder < 4) E1_STEP_WRITE(v); else E1_STEP_WRITE(v); }
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#define NORM_E_DIR() { switch (current_block->active_extruder) { case 0: E0_DIR_WRITE(!INVERT_E0_DIR); break; case 1: E0_DIR_WRITE(INVERT_E0_DIR); break; case 2: E1_DIR_WRITE(!INVERT_E1_DIR); break; case 3: E1_DIR_WRITE(INVERT_E1_DIR); } }
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#define REV_E_DIR() { switch (current_block->active_extruder) { case 0: E0_DIR_WRITE(INVERT_E0_DIR); break; case 1: E0_DIR_WRITE(!INVERT_E0_DIR); break; case 2: E1_DIR_WRITE(INVERT_E1_DIR); break; case 3: E1_DIR_WRITE(!INVERT_E1_DIR); } }
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#endif
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#elif EXTRUDERS > 4
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#define E_STEP_WRITE(v) { switch (current_block->active_extruder) { case 0: E0_STEP_WRITE(v); break; case 1: E1_STEP_WRITE(v); break; case 2: E2_STEP_WRITE(v); break; case 3: E3_STEP_WRITE(v); break; case 4: E4_STEP_WRITE(v); } }
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#define NORM_E_DIR() { switch (current_block->active_extruder) { case 0: E0_DIR_WRITE(!INVERT_E0_DIR); break; case 1: E1_DIR_WRITE(!INVERT_E1_DIR); break; case 2: E2_DIR_WRITE(!INVERT_E2_DIR); break; case 3: E3_DIR_WRITE(!INVERT_E3_DIR); break; case 4: E4_DIR_WRITE(!INVERT_E4_DIR); } }
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