Return Z position in run_z_probe
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1f48b5c30f
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@ -1993,7 +1993,7 @@ static void clean_up_after_endstop_or_probe_move() {
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// Do a single Z probe and return with current_position[Z_AXIS]
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// at the height where the probe triggered.
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static void run_z_probe() {
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static float run_z_probe() {
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float old_feedrate = feedrate;
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@ -2076,6 +2076,8 @@ static void clean_up_after_endstop_or_probe_move() {
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#endif // !DELTA
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feedrate = old_feedrate;
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return current_position[Z_AXIS];
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}
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#endif // HAS_BED_PROBE
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@ -2134,8 +2136,7 @@ static void clean_up_after_endstop_or_probe_move() {
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deploy_z_probe();
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}
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run_z_probe();
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float measured_z = current_position[Z_AXIS];
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float measured_z = run_z_probe();
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if (probe_action & ProbeStow) {
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#if ENABLED(DEBUG_LEVELING_FEATURE)
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@ -3851,14 +3852,14 @@ inline void gcode_G28() {
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stepper.synchronize();
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// TODO: clear the leveling matrix or the planner will be set incorrectly
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run_z_probe(); // clears the ABL non-delta matrix only
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float measured_z = run_z_probe(); // clears the ABL non-delta matrix only
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SERIAL_PROTOCOLPGM("Bed X: ");
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SERIAL_PROTOCOL(current_position[X_AXIS] + X_PROBE_OFFSET_FROM_EXTRUDER + 0.0001);
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SERIAL_PROTOCOLPGM(" Y: ");
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SERIAL_PROTOCOL(current_position[Y_AXIS] + Y_PROBE_OFFSET_FROM_EXTRUDER + 0.0001);
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SERIAL_PROTOCOLPGM(" Z: ");
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SERIAL_PROTOCOL(current_position[Z_AXIS] + 0.0001);
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SERIAL_PROTOCOL(measured_z + 0.0001);
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SERIAL_EOL;
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stow_z_probe();
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