Merge pull request #8318 from thinkyhead/bf1_sprintf_p_fix
[1.1] Patch G33 misuse of PROBE_MANUALLY
This commit is contained in:
commit
50a1352f7f
@ -453,13 +453,6 @@
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*/
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#define HAS_Z_SERVO_ENDSTOP (defined(Z_ENDSTOP_SERVO_NR) && Z_ENDSTOP_SERVO_NR >= 0)
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/**
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* UBL has its own manual probing, so this just causes trouble.
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*/
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#if ENABLED(AUTO_BED_LEVELING_UBL)
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#undef PROBE_MANUALLY
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#endif
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/**
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* Set a flag for any enabled probe
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*/
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@ -854,10 +854,23 @@
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#define QUIET_PROBING (HAS_BED_PROBE && (ENABLED(PROBING_HEATERS_OFF) || ENABLED(PROBING_FANS_OFF) || DELAY_BEFORE_PROBING > 0))
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#define HEATER_IDLE_HANDLER (ENABLED(ADVANCED_PAUSE_FEATURE) || ENABLED(PROBING_HEATERS_OFF))
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/**
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* Only constrain Z on DELTA / SCARA machines
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*/
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#if IS_KINEMATIC
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#undef MIN_SOFTWARE_ENDSTOP_X
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#undef MIN_SOFTWARE_ENDSTOP_Y
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#undef MAX_SOFTWARE_ENDSTOP_X
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#undef MAX_SOFTWARE_ENDSTOP_Y
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#endif
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/**
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* Delta radius/rod trimmers/angle trimmers
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*/
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#if ENABLED(DELTA)
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#ifndef DELTA_PROBEABLE_RADIUS
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#define DELTA_PROBEABLE_RADIUS DELTA_PRINTABLE_RADIUS
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#endif
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#ifndef DELTA_CALIBRATION_RADIUS
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#define DELTA_CALIBRATION_RADIUS DELTA_PRINTABLE_RADIUS - 10
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#endif
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@ -878,7 +891,6 @@
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/**
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* Set granular options based on the specific type of leveling
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*/
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#define UBL_DELTA (ENABLED(AUTO_BED_LEVELING_UBL) && (ENABLED(DELTA) || ENABLED(UBL_GRANULAR_SEGMENTATION_FOR_CARTESIAN)))
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#define ABL_PLANAR (ENABLED(AUTO_BED_LEVELING_LINEAR) || ENABLED(AUTO_BED_LEVELING_3POINT))
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#define ABL_GRID (ENABLED(AUTO_BED_LEVELING_LINEAR) || ENABLED(AUTO_BED_LEVELING_BILINEAR))
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@ -977,6 +989,18 @@
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#endif
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#endif
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/**
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* VIKI2, miniVIKI, and AZSMZ_12864 require DOGLCD_SCK and DOGLCD_MOSI to be defined.
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*/
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#if ENABLED(VIKI2) || ENABLED(miniVIKI) || ENABLED(AZSMZ_12864)
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#ifndef DOGLCD_SCK
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#define DOGLCD_SCK SCK_PIN
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#endif
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#ifndef DOGLCD_MOSI
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#define DOGLCD_MOSI MOSI_PIN
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#endif
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#endif
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/**
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* Z_HOMING_HEIGHT / Z_CLEARANCE_BETWEEN_PROBES
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*/
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@ -1038,11 +1062,6 @@
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// Add commands that need sub-codes to this list
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#define USE_GCODE_SUBCODES ENABLED(G38_PROBE_TARGET) || ENABLED(CNC_COORDINATE_SYSTEMS)
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// MESH_BED_LEVELING overrides PROBE_MANUALLY
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#if ENABLED(MESH_BED_LEVELING)
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#undef PROBE_MANUALLY
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#endif
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// Parking Extruder
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#if ENABLED(PARKING_EXTRUDER)
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#ifndef PARKING_EXTRUDER_GRAB_DISTANCE
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@ -5450,8 +5450,6 @@ void home_all_axes() { gcode_G28(true); }
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#endif // HAS_BED_PROBE
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#if PROBE_SELECTED
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#if ENABLED(DELTA_AUTO_CALIBRATION)
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constexpr uint8_t _7P_STEP = 1, // 7-point step - to change number of calibration points
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@ -5567,7 +5565,7 @@ void home_all_axes() { gcode_G28(true); }
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_7p_6_centre = probe_points >= 5 && probe_points <= 7,
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_7p_9_centre = probe_points >= 8;
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#if DISABLED(PROBE_MANUALLY)
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#if HAS_BED_PROBE
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const float dx = (X_PROBE_OFFSET_FROM_EXTRUDER),
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dy = (Y_PROBE_OFFSET_FROM_EXTRUDER);
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#endif
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@ -5578,10 +5576,10 @@ void home_all_axes() { gcode_G28(true); }
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if (!_7p_no_intermediates && !_7p_4_intermediates && !_7p_11_intermediates) { // probe the center
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z_at_pt[CEN] +=
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#if ENABLED(PROBE_MANUALLY)
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lcd_probe_pt(0, 0)
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#else
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#if HAS_BED_PROBE
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probe_pt(dx, dy, stow_after_each, 1, false)
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#else
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lcd_probe_pt(0, 0)
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#endif
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;
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}
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@ -5593,10 +5591,10 @@ void home_all_axes() { gcode_G28(true); }
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const float a = RADIANS(210 + (360 / NPP) * (axis - 1)),
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r = delta_calibration_radius * 0.1;
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z_at_pt[CEN] +=
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#if ENABLED(PROBE_MANUALLY)
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lcd_probe_pt(cos(a) * r, sin(a) * r)
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#else
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#if HAS_BED_PROBE
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probe_pt(cos(a) * r + dx, sin(a) * r + dy, stow_after_each, 1)
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#else
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lcd_probe_pt(cos(a) * r, sin(a) * r)
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#endif
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;
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}
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@ -5622,10 +5620,10 @@ void home_all_axes() { gcode_G28(true); }
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r = delta_calibration_radius * (1 + 0.1 * (zig_zag ? circle : - circle)),
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interpol = fmod(axis, 1);
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const float z_temp =
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#if ENABLED(PROBE_MANUALLY)
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lcd_probe_pt(cos(a) * r, sin(a) * r)
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#else
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#if HAS_BED_PROBE
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probe_pt(cos(a) * r + dx, sin(a) * r + dy, stow_after_each, 1)
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#else
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lcd_probe_pt(cos(a) * r, sin(a) * r)
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#endif
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;
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// split probe point to neighbouring calibration points
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@ -5656,7 +5654,7 @@ void home_all_axes() { gcode_G28(true); }
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return 0.00001;
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}
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#if DISABLED(PROBE_MANUALLY)
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#if HAS_BED_PROBE
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static void G33_auto_tune() {
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float z_at_pt[NPP + 1] = { 0.0 },
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@ -5780,7 +5778,7 @@ void home_all_axes() { gcode_G28(true); }
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SERIAL_EOL();
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}
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#endif // !PROBE_MANUALLY
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#endif // HAS_BED_PROBE
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/**
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* G33 - Delta '1-4-7-point' Auto-Calibration
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@ -5902,10 +5900,10 @@ void home_all_axes() { gcode_G28(true); }
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}
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if (auto_tune) {
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#if ENABLED(PROBE_MANUALLY)
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SERIAL_PROTOCOLLNPGM("A probe is needed for auto-tune");
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#else
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#if HAS_BED_PROBE
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G33_auto_tune();
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#else
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SERIAL_PROTOCOLLNPGM("A probe is needed for auto-tune");
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#endif
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G33_CLEANUP();
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return;
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@ -5970,7 +5968,7 @@ void home_all_axes() { gcode_G28(true); }
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#define Z2(I) ZP(2, I)
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#define Z1(I) ZP(1, I)
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#if ENABLED(PROBE_MANUALLY)
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#if !HAS_BED_PROBE
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test_precision = 0.00; // forced end
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#endif
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@ -6052,7 +6050,7 @@ void home_all_axes() { gcode_G28(true); }
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if ((zero_std_dev >= test_precision && iterations > force_iterations) || zero_std_dev <= calibration_precision) { // end iterations
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SERIAL_PROTOCOLPGM("Calibration OK");
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SERIAL_PROTOCOL_SP(32);
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#if DISABLED(PROBE_MANUALLY)
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#if HAS_BED_PROBE
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if (zero_std_dev >= test_precision && !_1p_calibration)
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SERIAL_PROTOCOLPGM("rolling back.");
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else
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@ -6119,8 +6117,6 @@ void home_all_axes() { gcode_G28(true); }
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#endif // DELTA_AUTO_CALIBRATION
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#endif // PROBE_SELECTED
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#if ENABLED(G38_PROBE_TARGET)
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static bool G38_run_probe() {
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@ -567,10 +567,8 @@ static_assert(1 >= 0
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#error "You probably want to use Max Endstops for DELTA!"
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#elif ENABLED(ENABLE_LEVELING_FADE_HEIGHT) && DISABLED(AUTO_BED_LEVELING_BILINEAR) && !UBL_DELTA
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#error "ENABLE_LEVELING_FADE_HEIGHT on DELTA requires AUTO_BED_LEVELING_BILINEAR or AUTO_BED_LEVELING_UBL."
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#elif ENABLED(DELTA_AUTO_CALIBRATION) && !PROBE_SELECTED
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#error "DELTA_AUTO_CALIBRATION requires a probe: PROBE_MANUALLY, FIX_MOUNTED_PROBE, BLTOUCH, SOLENOID_PROBE, Z_PROBE_ALLEN_KEY, Z_PROBE_SLED, Z Servo."
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#elif ENABLED(DELTA_AUTO_CALIBRATION) && ENABLED(PROBE_MANUALLY) && DISABLED(ULTIPANEL)
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#error "DELTA_AUTO_CALIBRATION requires an LCD controller with PROBE_MANUALLY."
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#elif ENABLED(DELTA_AUTO_CALIBRATION) && !(HAS_BED_PROBE || ENABLED(ULTIPANEL))
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#error "DELTA_AUTO_CALIBRATION requires either a probe or an LCD Controller."
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#elif ABL_GRID
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#if (GRID_MAX_POINTS_X & 1) == 0 || (GRID_MAX_POINTS_Y & 1) == 0
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#error "DELTA requires GRID_MAX_POINTS_X and GRID_MAX_POINTS_Y to be odd numbers."
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@ -612,7 +610,7 @@ static_assert(1 >= 0
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, "Please enable only one probe option: PROBE_MANUALLY, FIX_MOUNTED_PROBE, BLTOUCH, SOLENOID_PROBE, Z_PROBE_ALLEN_KEY, Z_PROBE_SLED, or Z Servo."
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);
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#if PROBE_SELECTED
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#if HAS_BED_PROBE
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/**
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* Z_PROBE_SLED is incompatible with DELTA
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@ -660,14 +658,14 @@ static_assert(1 >= 0
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#if !HAS_Z_MIN_PROBE_PIN
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#error "Z_MIN_PROBE_ENDSTOP requires the Z_MIN_PROBE_PIN to be defined."
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#endif
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#elif DISABLED(PROBE_MANUALLY)
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#else
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#error "You must enable either Z_MIN_PROBE_ENDSTOP or Z_MIN_PROBE_USES_Z_MIN_ENDSTOP_PIN to use a probe."
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#endif
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/**
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* Make sure Z raise values are set
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*/
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#if !defined(Z_CLEARANCE_DEPLOY_PROBE)
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#ifndef Z_CLEARANCE_DEPLOY_PROBE
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#error "You must define Z_CLEARANCE_DEPLOY_PROBE in your configuration."
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#elif !defined(Z_CLEARANCE_BETWEEN_PROBES)
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#error "You must define Z_CLEARANCE_BETWEEN_PROBES in your configuration."
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@ -682,14 +680,14 @@ static_assert(1 >= 0
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/**
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* Require some kind of probe for bed leveling and probe testing
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*/
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#if OLDSCHOOL_ABL
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#if OLDSCHOOL_ABL && !PROBE_SELECTED
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#error "Auto Bed Leveling requires one of these: PROBE_MANUALLY, FIX_MOUNTED_PROBE, BLTOUCH, SOLENOID_PROBE, Z_PROBE_ALLEN_KEY, Z_PROBE_SLED, or a Z Servo."
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#endif
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#if ENABLED(Z_MIN_PROBE_REPEATABILITY_TEST)
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#error "Z_MIN_PROBE_REPEATABILITY_TEST requires a probe: FIX_MOUNTED_PROBE, BLTOUCH, SOLENOID_PROBE, Z_PROBE_ALLEN_KEY, Z_PROBE_SLED, or Z Servo."
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#endif
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#if ENABLED(Z_MIN_PROBE_REPEATABILITY_TEST) && !HAS_BED_PROBE
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#error "Z_MIN_PROBE_REPEATABILITY_TEST requires a probe: FIX_MOUNTED_PROBE, BLTOUCH, SOLENOID_PROBE, Z_PROBE_ALLEN_KEY, Z_PROBE_SLED, or Z Servo."
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#endif
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/**
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@ -724,6 +722,9 @@ static_assert(1 >= 0
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* Unified Bed Leveling
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*/
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// Hide PROBE_MANUALLY from the rest of the code
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#undef PROBE_MANUALLY
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#if IS_SCARA
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#error "AUTO_BED_LEVELING_UBL does not yet support SCARA printers."
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#elif DISABLED(EEPROM_SETTINGS)
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@ -739,7 +740,7 @@ static_assert(1 >= 0
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static_assert(WITHIN(UBL_PROBE_PT_3_Y, MIN_PROBE_Y, MAX_PROBE_Y), "UBL_PROBE_PT_3_Y can't be reached by the Z probe.");
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#endif
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#elif HAS_ABL
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#elif OLDSCHOOL_ABL
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/**
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* Auto Bed Leveling
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@ -788,6 +789,9 @@ static_assert(1 >= 0
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#elif ENABLED(MESH_BED_LEVELING)
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// Hide PROBE_MANUALLY from the rest of the code
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#undef PROBE_MANUALLY
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/**
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* Mesh Bed Leveling
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*/
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@ -806,8 +810,8 @@ static_assert(1 >= 0
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#if ENABLED(LCD_BED_LEVELING)
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#if DISABLED(ULTIPANEL)
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#error "LCD_BED_LEVELING requires an LCD controller."
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#elif DISABLED(MESH_BED_LEVELING) && !(HAS_ABL && ENABLED(PROBE_MANUALLY))
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#error "LCD_BED_LEVELING requires MESH_BED_LEVELING or PROBE_MANUALLY with auto bed leveling enabled."
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#elif !(ENABLED(MESH_BED_LEVELING) || (OLDSCHOOL_ABL && ENABLED(PROBE_MANUALLY)))
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#error "LCD_BED_LEVELING requires MESH_BED_LEVELING or ABL with PROBE_MANUALLY."
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#endif
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#endif
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@ -2682,26 +2682,9 @@ void kill_screen(const char* lcd_msg) {
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float move_menu_scale;
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#if ENABLED(DELTA_CALIBRATION_MENU)
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#if ENABLED(DELTA_CALIBRATION_MENU) || (ENABLED(DELTA_AUTO_CALIBRATION) && !HAS_BED_PROBE)
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void lcd_move_z();
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void lcd_delta_calibrate_menu();
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void _lcd_calibrate_homing() {
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if (lcdDrawUpdate) lcd_implementation_drawmenu_static(LCD_HEIGHT >= 4 ? 1 : 0, PSTR(MSG_LEVEL_BED_HOMING));
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lcdDrawUpdate = LCDVIEW_CALL_REDRAW_NEXT;
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if (axis_homed[X_AXIS] && axis_homed[Y_AXIS] && axis_homed[Z_AXIS])
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lcd_goto_previous_menu();
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}
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void _lcd_delta_calibrate_home() {
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#if HAS_LEVELING
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reset_bed_level(); // After calibration bed-level data is no longer valid
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#endif
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enqueue_and_echo_commands_P(PSTR("G28"));
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lcd_goto_screen(_lcd_calibrate_homing);
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}
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void _man_probe_pt(const float rx, const float ry) {
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#if HAS_LEVELING
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@ -2719,6 +2702,10 @@ void kill_screen(const char* lcd_msg) {
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lcd_goto_screen(lcd_move_z);
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}
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#endif // DELTA_CALIBRATION_MENU || (DELTA_AUTO_CALIBRATION && !HAS_BED_PROBE)
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#if ENABLED(DELTA_AUTO_CALIBRATION) && !HAS_BED_PROBE
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float lcd_probe_pt(const float &rx, const float &ry) {
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_man_probe_pt(rx, ry);
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KEEPALIVE_STATE(PAUSED_FOR_USER);
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@ -2730,6 +2717,26 @@ void kill_screen(const char* lcd_msg) {
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return current_position[Z_AXIS];
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}
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#endif // DELTA_AUTO_CALIBRATION && !HAS_BED_PROBE
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#if ENABLED(DELTA_CALIBRATION_MENU)
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void _lcd_calibrate_homing() {
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if (lcdDrawUpdate) lcd_implementation_drawmenu_static(LCD_HEIGHT >= 4 ? 1 : 0, PSTR(MSG_LEVEL_BED_HOMING));
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lcdDrawUpdate = LCDVIEW_CALL_REDRAW_NEXT;
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if (axis_homed[X_AXIS] && axis_homed[Y_AXIS] && axis_homed[Z_AXIS])
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lcd_goto_previous_menu();
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}
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void _lcd_delta_calibrate_home() {
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#if HAS_LEVELING
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reset_bed_level(); // After calibration bed-level data is no longer valid
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#endif
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enqueue_and_echo_commands_P(PSTR("G28"));
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lcd_goto_screen(_lcd_calibrate_homing);
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}
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void _goto_tower_x() { _man_probe_pt(cos(RADIANS(210)) * delta_calibration_radius, sin(RADIANS(210)) * delta_calibration_radius); }
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void _goto_tower_y() { _man_probe_pt(cos(RADIANS(330)) * delta_calibration_radius, sin(RADIANS(330)) * delta_calibration_radius); }
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void _goto_tower_z() { _man_probe_pt(cos(RADIANS( 90)) * delta_calibration_radius, sin(RADIANS( 90)) * delta_calibration_radius); }
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@ -201,7 +201,7 @@ void lcd_reset_status();
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float lcd_z_offset_edit();
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#endif
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#if ENABLED(DELTA_CALIBRATION_MENU)
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#if ENABLED(DELTA_AUTO_CALIBRATION) && !HAS_BED_PROBE
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float lcd_probe_pt(const float &rx, const float &ry);
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#endif
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