🎨 Tweak VALIDATE_MESH_TILT
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@@ -1489,7 +1489,7 @@ void unified_bed_leveling::smart_fill_mesh() {
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float measured_z;
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bool abort_flag = false;
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#ifdef VALIDATE_MESH_TILT
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#if ENABLED(VALIDATE_MESH_TILT)
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float z1, z2, z3; // Needed for algorithm validation below
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#endif
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@@ -1505,9 +1505,7 @@ void unified_bed_leveling::smart_fill_mesh() {
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abort_flag = true;
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else {
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measured_z -= get_z_correction(points[0]);
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#ifdef VALIDATE_MESH_TILT
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z1 = measured_z;
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#endif
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TERN_(VALIDATE_MESH_TILT, z1 = measured_z);
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if (param.V_verbosity > 3) {
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serial_spaces(16);
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SERIAL_ECHOLNPGM("Corrected_Z=", measured_z);
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@@ -1520,9 +1518,7 @@ void unified_bed_leveling::smart_fill_mesh() {
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TERN_(HAS_STATUS_MESSAGE, ui.status_printf(0, F(S_FMT " 2/3"), GET_TEXT(MSG_LCD_TILTING_MESH)));
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measured_z = probe.probe_at_point(points[1], PROBE_PT_RAISE, param.V_verbosity);
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#ifdef VALIDATE_MESH_TILT
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z2 = measured_z;
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#endif
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TERN_(VALIDATE_MESH_TILT, z2 = measured_z);
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if (isnan(measured_z))
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abort_flag = true;
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else {
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@@ -1540,9 +1536,7 @@ void unified_bed_leveling::smart_fill_mesh() {
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TERN_(HAS_STATUS_MESSAGE, ui.status_printf(0, F(S_FMT " 3/3"), GET_TEXT(MSG_LCD_TILTING_MESH)));
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measured_z = probe.probe_at_point(points[2], PROBE_PT_LAST_STOW, param.V_verbosity);
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#ifdef VALIDATE_MESH_TILT
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z3 = measured_z;
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#endif
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TERN_(VALIDATE_MESH_TILT, z3 = measured_z);
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if (isnan(measured_z))
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abort_flag = true;
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else {
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@@ -1689,7 +1683,7 @@ void unified_bed_leveling::smart_fill_mesh() {
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* The Z error between the probed point locations and the get_z_correction()
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* numbers for those locations should be 0.
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*/
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#ifdef VALIDATE_MESH_TILT
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#if ENABLED(VALIDATE_MESH_TILT)
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auto d_from = []{ DEBUG_ECHOPGM("D from "); };
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auto normed = [&](const xy_pos_t &pos, const_float_t zadd) {
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return normal.x * pos.x + normal.y * pos.y + zadd;
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