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@ -391,7 +391,7 @@ static uint8_t target_extruder; |
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}; |
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#endif |
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#if HAS_Z_ENDSTOP_SERVO |
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#if HAS_Z_SERVO_ENDSTOP |
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const int z_servo_angle[2] = Z_SERVO_ANGLES; |
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#endif |
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@ -746,7 +746,7 @@ void servo_init() { |
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servo[3].detach(); |
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#endif |
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#if HAS_Z_ENDSTOP_SERVO |
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#if HAS_Z_SERVO_ENDSTOP |
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endstops.enable_z_probe(false); |
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@ -760,7 +760,7 @@ void servo_init() { |
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* |
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*/ |
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STOW_Z_SERVO(); |
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#endif // HAS_Z_ENDSTOP_SERVO
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#endif // HAS_Z_SERVO_ENDSTOP
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} |
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@ -1829,7 +1829,7 @@ static void setup_for_endstop_move() { |
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if (endstops.z_probe_enabled) return; |
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#if HAS_Z_ENDSTOP_SERVO |
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#if HAS_Z_SERVO_ENDSTOP |
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// Engage Z Servo endstop if enabled
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DEPLOY_Z_SERVO(); |
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@ -1916,7 +1916,7 @@ static void setup_for_endstop_move() { |
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} |
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static void stow_z_probe(bool doRaise = true) { |
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#if !(HAS_Z_ENDSTOP_SERVO && (Z_RAISE_AFTER_PROBING > 0)) |
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#if !(HAS_Z_SERVO_ENDSTOP && (Z_RAISE_AFTER_PROBING > 0)) |
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UNUSED(doRaise); |
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#endif |
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#if ENABLED(DEBUG_LEVELING_FEATURE) |
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@ -1925,7 +1925,7 @@ static void setup_for_endstop_move() { |
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if (!endstops.z_probe_enabled) return; |
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#if HAS_Z_ENDSTOP_SERVO |
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#if HAS_Z_SERVO_ENDSTOP |
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// Retract Z Servo endstop if enabled
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#if Z_RAISE_AFTER_PROBING > 0 |
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@ -2156,7 +2156,7 @@ static void setup_for_endstop_move() { |
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#endif // DELTA
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#if HAS_Z_ENDSTOP_SERVO && DISABLED(Z_PROBE_SLED) |
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#if HAS_Z_SERVO_ENDSTOP |
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/**
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* Raise Z to a minimum height to make room for a servo to move |
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@ -2283,7 +2283,7 @@ static void homeaxis(AxisEnum axis) { |
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#define _Z_STOW (stow_z_probe()) |
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#define _Z_SERVO_TEST (axis != Z_AXIS) // already deployed Z
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#define _Z_SERVO_SUBTEST false // Z will never be invoked
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#elif HAS_Z_ENDSTOP_SERVO |
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#elif HAS_Z_SERVO_ENDSTOP |
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#define _Z_DEPLOY do{ raise_z_for_servo(Z_RAISE_BEFORE_PROBING); DEPLOY_Z_SERVO(); endstops.z_probe_enabled = true; }while(0) |
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#define _Z_STOW do{ raise_z_for_servo(Z_RAISE_AFTER_PROBING); STOW_Z_SERVO(); endstops.z_probe_enabled = false; }while(0) |
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#define _Z_SERVO_TEST true // Z not deployed yet
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@ -2291,7 +2291,7 @@ static void homeaxis(AxisEnum axis) { |
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#endif |
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// Homing Z towards the bed? Deploy the Z probe or endstop.
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#if ENABLED(Z_PROBE_SLED) || SERVO_LEVELING || ENABLED(FIX_MOUNTED_PROBE) || HAS_Z_ENDSTOP_SERVO |
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#if ENABLED(Z_PROBE_SLED) || SERVO_LEVELING || ENABLED(FIX_MOUNTED_PROBE) || HAS_Z_SERVO_ENDSTOP |
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if (axis == Z_AXIS && axis_home_dir < 0) { |
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#if ENABLED(DEBUG_LEVELING_FEATURE) |
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if (DEBUGGING(LEVELING)) SERIAL_ECHOLNPGM("> SERVO_LEVELING > " STRINGIFY(_Z_DEPLOY)); |
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@ -2414,7 +2414,7 @@ static void homeaxis(AxisEnum axis) { |
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axis_homed[axis] = true; |
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// Put away the Z probe
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#if ENABLED(Z_PROBE_SLED) || SERVO_LEVELING || ENABLED(FIX_MOUNTED_PROBE) || HAS_Z_ENDSTOP_SERVO |
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#if ENABLED(Z_PROBE_SLED) || SERVO_LEVELING || ENABLED(FIX_MOUNTED_PROBE) || HAS_Z_SERVO_ENDSTOP |
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if (axis == Z_AXIS && axis_home_dir < 0) { |
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#if ENABLED(DEBUG_LEVELING_FEATURE) |
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if (DEBUGGING(LEVELING)) SERIAL_ECHOLNPGM("> SERVO_LEVELING > " STRINGIFY(_Z_STOW)); |
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@ -3764,7 +3764,7 @@ inline void gcode_G28() { |
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#endif |
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current_position[Z_AXIS] = -zprobe_zoffset + (z_tmp - real_z) |
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#if HAS_Z_ENDSTOP_SERVO || ENABLED(Z_PROBE_ALLEN_KEY) || ENABLED(Z_PROBE_SLED) |
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#if HAS_Z_SERVO_ENDSTOP || ENABLED(Z_PROBE_ALLEN_KEY) || ENABLED(Z_PROBE_SLED) |
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+ Z_RAISE_AFTER_PROBING |
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#endif |
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; |
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@ -3779,7 +3779,7 @@ inline void gcode_G28() { |
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// Sled assembly for Cartesian bots
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#if ENABLED(Z_PROBE_SLED) |
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dock_sled(true); // dock the sled
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#elif !HAS_Z_ENDSTOP_SERVO && DISABLED(Z_PROBE_ALLEN_KEY) && DISABLED(Z_PROBE_SLED) |
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#elif !HAS_Z_SERVO_ENDSTOP && DISABLED(Z_PROBE_ALLEN_KEY) && DISABLED(Z_PROBE_SLED) |
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// Raise Z axis for non-delta and non servo based probes
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raise_z_after_probing(); |
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#endif |
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@ -3823,7 +3823,7 @@ inline void gcode_G28() { |
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* G30: Do a single Z probe at the current XY |
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*/ |
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inline void gcode_G30() { |
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#if HAS_Z_ENDSTOP_SERVO |
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#if HAS_Z_SERVO_ENDSTOP |
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raise_z_for_servo(Z_RAISE_BEFORE_PROBING); |
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#endif |
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deploy_z_probe(); // Engage Z Servo endstop if available. Z_PROBE_SLED is missed here.
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@ -3845,7 +3845,7 @@ inline void gcode_G28() { |
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clean_up_after_endstop_move(); // Too early. must be done after the stowing.
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#if HAS_Z_ENDSTOP_SERVO |
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#if HAS_Z_SERVO_ENDSTOP |
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raise_z_for_servo(Z_RAISE_AFTER_PROBING); |
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#endif |
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stow_z_probe(false); // Retract Z Servo endstop if available. Z_PROBE_SLED is missed here.
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@ -5980,13 +5980,13 @@ inline void gcode_M303() { |
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*/ |
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inline void gcode_M400() { stepper.synchronize(); } |
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#if ENABLED(AUTO_BED_LEVELING_FEATURE) && DISABLED(Z_PROBE_SLED) && (HAS_Z_ENDSTOP_SERVO || ENABLED(Z_PROBE_ALLEN_KEY)) |
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#if ENABLED(AUTO_BED_LEVELING_FEATURE) && DISABLED(Z_PROBE_SLED) && (HAS_Z_SERVO_ENDSTOP || ENABLED(Z_PROBE_ALLEN_KEY)) |
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/**
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* M401: Engage Z Servo endstop if available |
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*/ |
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inline void gcode_M401() { |
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#if HAS_Z_ENDSTOP_SERVO |
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#if HAS_Z_SERVO_ENDSTOP |
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raise_z_for_servo(Z_RAISE_BEFORE_PROBING); |
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#endif |
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deploy_z_probe(); |
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@ -5996,13 +5996,13 @@ inline void gcode_M400() { stepper.synchronize(); } |
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* M402: Retract Z Servo endstop if enabled |
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*/ |
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inline void gcode_M402() { |
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#if HAS_Z_ENDSTOP_SERVO |
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#if HAS_Z_SERVO_ENDSTOP |
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raise_z_for_servo(Z_RAISE_AFTER_PROBING); |
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#endif |
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stow_z_probe(false); |
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} |
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#endif // AUTO_BED_LEVELING_FEATURE && (HAS_Z_ENDSTOP_SERVO || Z_PROBE_ALLEN_KEY) && !Z_PROBE_SLED
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#endif // AUTO_BED_LEVELING_FEATURE && (HAS_Z_SERVO_ENDSTOP || Z_PROBE_ALLEN_KEY) && !Z_PROBE_SLED
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#if ENABLED(FILAMENT_WIDTH_SENSOR) |
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@ -7299,14 +7299,14 @@ void process_next_command() { |
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gcode_M400(); |
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break; |
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#if ENABLED(AUTO_BED_LEVELING_FEATURE) && (HAS_Z_ENDSTOP_SERVO || ENABLED(Z_PROBE_ALLEN_KEY)) && DISABLED(Z_PROBE_SLED) |
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#if ENABLED(AUTO_BED_LEVELING_FEATURE) && (HAS_Z_SERVO_ENDSTOP || ENABLED(Z_PROBE_ALLEN_KEY)) && DISABLED(Z_PROBE_SLED) |
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case 401: |
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gcode_M401(); |
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break; |
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case 402: |
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gcode_M402(); |
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break; |
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#endif // AUTO_BED_LEVELING_FEATURE && (HAS_Z_ENDSTOP_SERVO || Z_PROBE_ALLEN_KEY) && !Z_PROBE_SLED
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#endif // AUTO_BED_LEVELING_FEATURE && (HAS_Z_SERVO_ENDSTOP || Z_PROBE_ALLEN_KEY) && !Z_PROBE_SLED
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#if ENABLED(FILAMENT_WIDTH_SENSOR) |
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case 404: //M404 Enter the nominal filament width (3mm, 1.75mm ) N<3.0> or display nominal filament width
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