← Garden room - 4x3 - Design Profile Demo

Front Right Wall Panel

v3 Gemini approved

Create the front right OSB/EPS SIP wall panel, 1453x122x2310mm. Include a spline joint on its right edge to mate with the corner post spline groove, and a vertical spline groove on its left edge for the door header. Base sits on the sole plate.

Dependencies

front_right_sole_plate.top_face front_right_corner_post.left_spline

Interfaces Provided

top_face (face) header_spline (spline)
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Agent initialized (status: waiting_for_dependencies, action: check_dependencies)
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Provider: google | Profile: balanced
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Received interface front_right_sole_plate.top_face: %{name: "top_face", type: "face", value: %{}, agent_id: "front_right_sole_plate"}
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Received interface front_right_corner_post.left_spline: %{name: "left_spline", type: "spline", value: %{}, agent_id: "front_right_corner_post"}
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All dependencies resolved, starting generation
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Generating v1
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Received interface front_right_corner_post.back_spline: %{name: "back_spline", type: "spline", value: %{}, agent_id: "front_right_corner_post"}
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Calling Gemini API for code generation (gemini-3.1-pro-preview)...
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Generation token budget: max_tokens=12288, thinking_budget=0 (retry_count=0)
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Provider updated to google / balanced
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Received response (1784 tokens)
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front_right_sip_v1.py · 140 lines
import FreeCAD, Part
from FreeCAD import Vector

# === PARAMETERS ===
LENGTH = 1453      # Total width of the panel (X)
WIDTH = 122        # Total thickness of the panel (Y)
HEIGHT = 2310      # Total height of the panel (Z)

FACE_T = 11        # Thickness of OSB faces
CORE_T = 100       # Thickness of EPS core
GROOVE_D = 45      # Depth of the spline/plate routing in the EPS core

# === DOCUMENT ===
doc = FreeCAD.ActiveDocument or FreeCAD.newDocument("Model")

# === BUILD GEOMETRY ===
# Front OSB face
face_front = Part.makeBox(LENGTH, FACE_T, HEIGHT, Vector(0, 0, 0))

# Back OSB face
face_back = Part.makeBox(LENGTH, FACE_T, HEIGHT, Vector(0, FACE_T + CORE_T, 0))

# EPS Core (recessed by GROOVE_D on top, bottom, left, and right edges)
# This accommodates the sole plate, top plate, left spline, and right spline joint.
core_length = LENGTH - 2 * GROOVE_D
core_height = HEIGHT - 2 * GROOVE_D
core = Part.makeBox(
    core_length, 
    CORE_T, 
    core_height, 
    Vector(GROOVE_D, FACE_T, GROOVE_D)
)

# Fuse layers into a single panel solid
panel = face_front.fuse(core).fuse(face_back)
panel = panel.removeSplitter()

# === PART CODE ===
PART_CODE = "C-2"
PRINT_SCALE = 50  # 1:50 model scale — adjust if printing at a different scale

def _emboss_part_code(shape, code, print_scale=PRINT_SCALE):
    """Cut part code into largest face. Returns shape unmodified on any failure."""
    import os, math
    depth_raw = 0.6 * print_scale
    try:
        # --- font ---
        rd = FreeCAD.getResourceDir()
        font = None
        for fn in ("osifont-lgpl3fe.ttf", "FreeSans.ttf", "FreeCAD.ttf"):
            fp = os.path.join(rd, "Mod", "TechDraw", "Resources", "fonts", fn)
            if os.path.exists(fp):
                font = fp; break
        if font is None:
            return shape

        # --- cap depth at 33% of thinnest component dimension ---
        all_dims = sorted([shape.BoundBox.XLength, shape.BoundBox.YLength, shape.BoundBox.ZLength])
        depth = min(depth_raw, all_dims[0] * 0.33)

        # --- find largest face ---
        best = max(shape.Faces, key=lambda f: f.Area)
        n = best.normalAt(0, 0)
        c = best.CenterOfMass

        # --- text height: 2 mm at print scale, capped at 80% of longest face edge ---
        fb = best.BoundBox
        fb_dims = sorted([d for d in (fb.XLength, fb.YLength, fb.ZLength) if d > 1.0])
        text_h = min(2.0 * print_scale, (fb_dims[-1] * 0.80) if fb_dims else 2.0 * print_scale)

        # --- orthonormal face frame: right (r), up (u), out (n) ---
        wz = Vector(0, 0, 1)
        wy = Vector(0, 1, 0)
        up_ref = wy if abs(n.dot(wz)) > 0.9 else wz
        r = up_ref.cross(n).normalize()
        u = n.cross(r).normalize()

        # --- build text faces from wires (handles letters with holes) ---
        ss = Part.makeShapeString(String=code, FontFile=font, Size=text_h, Tracking=0)
        wires = sorted(ss.Wires, key=lambda w: w.BoundBox.DiagonalLength, reverse=True)
        faces_out = []
        used = set()
        for i, ow in enumerate(wires):
            if i in used:
                continue
            ob = ow.BoundBox
            holes = []
            for j, iw in enumerate(wires):
                if j <= i or j in used:
                    continue
                ib = iw.BoundBox
                if ob.XMin < ib.XMin and ob.XMax > ib.XMax and ob.YMin < ib.YMin and ob.YMax > ib.YMax:
                    holes.append(iw)
                    used.add(j)
            used.add(i)
            try:
                faces_out.append(Part.Face([ow] + holes) if holes else Part.Face(ow))
            except Exception:
                try:
                    faces_out.append(Part.Face(ow))
                except Exception:
                    pass
        if not faces_out:
            return shape
        tf = Part.Compound(faces_out) if len(faces_out) > 1 else faces_out[0]

        # --- combined matrix: center text → rotate onto face → translate to face center ---
        tb = tf.BoundBox
        mc = FreeCAD.Matrix()          # center text at local origin
        mc.A14 = -tb.XLength / 2
        mc.A24 = -tb.YLength / 2
        mr = FreeCAD.Matrix()          # rotate: X→r, Y→u, Z→n
        mr.A11 = r.x;  mr.A12 = u.x;  mr.A13 = n.x
        mr.A21 = r.y;  mr.A22 = u.y;  mr.A23 = n.y
        mr.A31 = r.z;  mr.A32 = u.z;  mr.A33 = n.z
        mt = FreeCAD.Matrix()          # translate to face center, offset 5% outward
        mt.A14 = c.x + n.x * depth * 0.05
        mt.A24 = c.y + n.y * depth * 0.05
        mt.A34 = c.z + n.z * depth * 0.05
        tf2 = tf.transformGeometry(mt.multiply(mr.multiply(mc)))

        # --- extrude inward and cut ---
        extrude_vec = Vector(-n.x * depth * 1.1, -n.y * depth * 1.1, -n.z * depth * 1.1)
        text_solid = tf2.extrude(extrude_vec)
        return shape.cut(text_solid)

    except Exception as e:
        print(f"[part_code] emboss skipped: {e}")
        return shape

panel = _emboss_part_code(panel, PART_CODE)

# === ADD TO DOCUMENT ===
obj = doc.addObject("Part::Feature", "FrontRightWallPanel")
obj.Shape = panel

doc.recompute()

if FreeCAD.GuiUp:
    FreeCAD.Gui.ActiveDocument.ActiveView.fitAll()
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Executing in FreeCAD...
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StepAnalyzer failed: FreeCAD could not read STEP file: FreeCAD exception thrown (File to load not existing or not readable) — skipping
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FreeCAD execution succeeded
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Exported: model.stl
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Generation succeeded and component was auto-approved (v1)
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Provider updated to google / balanced
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Provider updated to google / balanced
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Provider updated to google / balanced
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Provider updated to google / balanced
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Provider updated to google / balanced
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Provider updated to google / balanced
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Provider updated to google / balanced
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Upstream interface changed: front_right_sole_plate.top_face
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Received interface front_right_corner_post.left_spline: %{name: "left_spline", type: "spline", value: %{}, agent_id: "front_right_corner_post"}
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Received interface front_right_corner_post.back_spline: %{name: "back_spline", type: "spline", value: %{}, agent_id: "front_right_corner_post"}
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Regeneration requested by user
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Generating v2
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Calling Gemini API for code generation (gemini-3.1-pro-preview)...
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Generation token budget: max_tokens=12288, thinking_budget=0 (retry_count=0)
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Received response (1861 tokens)
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front_right_sip_v2.py · 138 lines
import FreeCAD
import Part
import os
import math
from FreeCAD import Vector

# === PARAMETERS ===
LENGTH = 1453.0       # Panel width/length in X
THICKNESS = 122.0     # Total panel thickness in Y
HEIGHT = 2310.0       # Panel height in Z

OSB_THICKNESS = 11.0  # Thickness of OSB faces
CORE_THICKNESS = 100.0 # Thickness of EPS core (122 - 2*11)

GROOVE_DEPTH_LEFT = 45.0  # Depth of spline groove on the left edge
GROOVE_DEPTH_RIGHT = 45.0 # Depth of spline groove on the right edge

# === PART CODE ===
PART_CODE = "C-2"
PRINT_SCALE = 50  # 1:50 model scale — adjust if printing at a different scale

def _emboss_part_code(shape, code, print_scale=PRINT_SCALE):
    """Cut part code into largest face. Returns shape unmodified on any failure."""
    depth_raw = 0.6 * print_scale
    try:
        # --- font ---
        rd = FreeCAD.getResourceDir()
        font = None
        for fn in ("osifont-lgpl3fe.ttf", "FreeSans.ttf", "FreeCAD.ttf"):
            fp = os.path.join(rd, "Mod", "TechDraw", "Resources", "fonts", fn)
            if os.path.exists(fp):
                font = fp; break
        if font is None:
            return shape

        # --- cap depth at 33% of thinnest component dimension ---
        all_dims = sorted([shape.BoundBox.XLength, shape.BoundBox.YLength, shape.BoundBox.ZLength])
        depth = min(depth_raw, all_dims[0] * 0.33)

        # --- find largest face ---
        best = max(shape.Faces, key=lambda f: f.Area)
        n = best.normalAt(0, 0)
        c = best.CenterOfMass

        # --- text height: 2 mm at print scale, capped at 80% of longest face edge ---
        fb = best.BoundBox
        fb_dims = sorted([d for d in (fb.XLength, fb.YLength, fb.ZLength) if d > 1.0])
        text_h = min(2.0 * print_scale, (fb_dims[-1] * 0.80) if fb_dims else 2.0 * print_scale)

        # --- orthonormal face frame: right (r), up (u), out (n) ---
        wz = Vector(0, 0, 1)
        wy = Vector(0, 1, 0)
        up_ref = wy if abs(n.dot(wz)) > 0.9 else wz
        r = up_ref.cross(n).normalize()
        u = n.cross(r).normalize()

        # --- build text faces from wires (handles letters with holes) ---
        ss = Part.makeShapeString(String=code, FontFile=font, Size=text_h, Tracking=0)
        wires = sorted(ss.Wires, key=lambda w: w.BoundBox.DiagonalLength, reverse=True)
        faces_out = []
        used = set()
        for i, ow in enumerate(wires):
            if i in used:
                continue
            ob = ow.BoundBox
            holes = []
            for j, iw in enumerate(wires):
                if j <= i or j in used:
                    continue
                ib = iw.BoundBox
                if ob.XMin < ib.XMin and ob.XMax > ib.XMax and ob.YMin < ib.YMin and ob.YMax > ib.YMax:
                    holes.append(iw)
                    used.add(j)
            used.add(i)
            try:
                faces_out.append(Part.Face([ow] + holes) if holes else Part.Face(ow))
            except Exception:
                try:
                    faces_out.append(Part.Face(ow))
                except Exception:
                    pass
        if not faces_out:
            return shape
        tf = Part.Compound(faces_out) if len(faces_out) > 1 else faces_out[0]

        # --- combined matrix: center text → rotate onto face → translate to face center ---
        tb = tf.BoundBox
        mc = FreeCAD.Matrix()          # center text at local origin
        mc.A14 = -tb.XLength / 2
        mc.A24 = -tb.YLength / 2
        mr = FreeCAD.Matrix()          # rotate: X→r, Y→u, Z→n
        mr.A11 = r.x;  mr.A12 = u.x;  mr.A13 = n.x
        mr.A21 = r.y;  mr.A22 = u.y;  mr.A23 = n.y
        mr.A31 = r.z;  mr.A32 = u.z;  mr.A33 = n.z
        mt = FreeCAD.Matrix()          # translate to face center, offset 5% outward
        mt.A14 = c.x + n.x * depth * 0.05
        mt.A24 = c.y + n.y * depth * 0.05
        mt.A34 = c.z + n.z * depth * 0.05
        tf2 = tf.transformGeometry(mt.multiply(mr.multiply(mc)))

        # --- extrude inward and cut ---
        extrude_vec = Vector(-n.x * depth * 1.1, -n.y * depth * 1.1, -n.z * depth * 1.1)
        text_solid = tf2.extrude(extrude_vec)
        return shape.cut(text_solid)

    except Exception as e:
        print(f"[part_code] emboss skipped: {e}")
        return shape

# === DOCUMENT SETUP ===
doc = FreeCAD.ActiveDocument or FreeCAD.newDocument("FrontRightSIPPanel")

# === GEOMETRY CONSTRUCTION ===
# Create the front OSB face
front_osb = Part.makeBox(LENGTH, OSB_THICKNESS, HEIGHT, Vector(0, 0, 0))

# Create the EPS core, recessed from both ends for spline grooves
core_length = LENGTH - GROOVE_DEPTH_LEFT - GROOVE_DEPTH_RIGHT
eps_core = Part.makeBox(core_length, CORE_THICKNESS, HEIGHT, Vector(GROOVE_DEPTH_LEFT, OSB_THICKNESS, 0))

# Create the back OSB face
back_osb = Part.makeBox(LENGTH, OSB_THICKNESS, HEIGHT, Vector(0, OSB_THICKNESS + CORE_THICKNESS, 0))

# Combine the layers into a single panel solid
panel_solid = front_osb.fuse([eps_core, back_osb])
panel_solid = panel_solid.removeSplitter()

# Emboss part code
panel_solid = _emboss_part_code(panel_solid, PART_CODE)

# === ADD TO DOCUMENT ===
panel_feature = doc.addObject("Part::Feature", "FrontRightSIPPanel")
panel_feature.Shape = panel_solid

# === FINALIZE ===
doc.recompute()
if FreeCAD.GuiUp:
    FreeCAD.Gui.ActiveDocument.ActiveView.fitAll()
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Executing in FreeCAD...
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StepAnalyzer failed: FreeCAD could not read STEP file: FreeCAD exception thrown (File to load not existing or not readable) — skipping
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FreeCAD execution succeeded
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Exported: model.stl
◉
Generation succeeded and component was auto-approved (v2)
◉
Upstream interface changed: front_right_corner_post.left_spline
◉
Regeneration requested by user
◉
Generating v3
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Calling Gemini API for code generation (gemini-3.1-pro-preview)...
◉
Generation token budget: max_tokens=12288, thinking_budget=0 (retry_count=0)
●
Received response (1932 tokens)
◆
front_right_sip_v3.py · 154 lines
import FreeCAD
import Part
from FreeCAD import Vector

# === PARAMETERS ===
LENGTH = 1453      # Overall bounding box length including protruding spline
THICKNESS = 122    # Overall panel thickness
HEIGHT = 2310      # Overall panel height

FACE_T = 11        # OSB face thickness
CORE_T = 100       # EPS core thickness (122 - 2*11)
SPLINE_W = 45      # Spline protrusion / groove depth
PLATE_H = 45       # Recess depth for sole plate and top plate

# The OSB panels cover the main wall length up to the protruding spline
OSB_LENGTH = LENGTH - SPLINE_W

doc = FreeCAD.ActiveDocument or FreeCAD.newDocument("Model")

# === BUILD GEOMETRY ===

# 1. Front OSB Face (Y = 0)
face1 = Part.makeBox(OSB_LENGTH, FACE_T, HEIGHT, Vector(0, 0, 0))

# 2. Back OSB Face (Y = 111)
face2 = Part.makeBox(OSB_LENGTH, FACE_T, HEIGHT, Vector(0, FACE_T + CORE_T, 0))

# 3. EPS Foam Core
# The core is recessed on all 4 edges by 45mm to accommodate splines and plates
core_length = OSB_LENGTH - 2 * SPLINE_W
core_height = HEIGHT - 2 * PLATE_H
core = Part.makeBox(
    core_length, 
    CORE_T, 
    core_height, 
    Vector(SPLINE_W, FACE_T, PLATE_H)
)

# 4. Right Edge Spline (Protruding Joint)
# Solid timber block that fills the right groove and protrudes to mate with the corner post
spline_total_w = 2 * SPLINE_W
spline = Part.makeBox(
    spline_total_w, 
    CORE_T, 
    core_height, 
    Vector(OSB_LENGTH - SPLINE_W, FACE_T, PLATE_H)
)

# Fuse components together
result = face1.fuse([face2, core, spline])
result = result.removeSplitter()

# === PART CODE ===
PART_CODE = "C-2"
PRINT_SCALE = 50  # 1:50 model scale — adjust if printing at a different scale

def _emboss_part_code(shape, code, print_scale=PRINT_SCALE):
    """Cut part code into largest face. Returns shape unmodified on any failure."""
    import os, math
    depth_raw = 0.6 * print_scale
    try:
        # --- font ---
        rd = FreeCAD.getResourceDir()
        font = None
        for fn in ("osifont-lgpl3fe.ttf", "FreeSans.ttf", "FreeCAD.ttf"):
            fp = os.path.join(rd, "Mod", "TechDraw", "Resources", "fonts", fn)
            if os.path.exists(fp):
                font = fp; break
        if font is None:
            return shape

        # --- cap depth at 33% of thinnest component dimension ---
        all_dims = sorted([shape.BoundBox.XLength, shape.BoundBox.YLength, shape.BoundBox.ZLength])
        depth = min(depth_raw, all_dims[0] * 0.33)

        # --- find largest face ---
        best = max(shape.Faces, key=lambda f: f.Area)
        n = best.normalAt(0, 0)
        c = best.CenterOfMass

        # --- text height: 2 mm at print scale, capped at 80% of longest face edge ---
        fb = best.BoundBox
        fb_dims = sorted([d for d in (fb.XLength, fb.YLength, fb.ZLength) if d > 1.0])
        text_h = min(2.0 * print_scale, (fb_dims[-1] * 0.80) if fb_dims else 2.0 * print_scale)

        # --- orthonormal face frame: right (r), up (u), out (n) ---
        wz = Vector(0, 0, 1)
        wy = Vector(0, 1, 0)
        up_ref = wy if abs(n.dot(wz)) > 0.9 else wz
        r = up_ref.cross(n).normalize()
        u = n.cross(r).normalize()

        # --- build text faces from wires (handles letters with holes) ---
        ss = Part.makeShapeString(String=code, FontFile=font, Size=text_h, Tracking=0)
        wires = sorted(ss.Wires, key=lambda w: w.BoundBox.DiagonalLength, reverse=True)
        faces_out = []
        used = set()
        for i, ow in enumerate(wires):
            if i in used:
                continue
            ob = ow.BoundBox
            holes = []
            for j, iw in enumerate(wires):
                if j <= i or j in used:
                    continue
                ib = iw.BoundBox
                if ob.XMin < ib.XMin and ob.XMax > ib.XMax and ob.YMin < ib.YMin and ob.YMax > ib.YMax:
                    holes.append(iw)
                    used.add(j)
            used.add(i)
            try:
                faces_out.append(Part.Face([ow] + holes) if holes else Part.Face(ow))
            except Exception:
                try:
                    faces_out.append(Part.Face(ow))
                except Exception:
                    pass
        if not faces_out:
            return shape
        tf = Part.Compound(faces_out) if len(faces_out) > 1 else faces_out[0]

        # --- combined matrix: center text → rotate onto face → translate to face center ---
        tb = tf.BoundBox
        mc = FreeCAD.Matrix()          # center text at local origin
        mc.A14 = -tb.XLength / 2
        mc.A24 = -tb.YLength / 2
        mr = FreeCAD.Matrix()          # rotate: X→r, Y→u, Z→n
        mr.A11 = r.x;  mr.A12 = u.x;  mr.A13 = n.x
        mr.A21 = r.y;  mr.A22 = u.y;  mr.A23 = n.y
        mr.A31 = r.z;  mr.A32 = u.z;  mr.A33 = n.z
        mt = FreeCAD.Matrix()          # translate to face center, offset 5% outward
        mt.A14 = c.x + n.x * depth * 0.05
        mt.A24 = c.y + n.y * depth * 0.05
        mt.A34 = c.z + n.z * depth * 0.05
        tf2 = tf.transformGeometry(mt.multiply(mr.multiply(mc)))

        # --- extrude inward and cut ---
        extrude_vec = Vector(-n.x * depth * 1.1, -n.y * depth * 1.1, -n.z * depth * 1.1)
        text_solid = tf2.extrude(extrude_vec)
        return shape.cut(text_solid)

    except Exception as e:
        print(f"[part_code] emboss skipped: {e}")
        return shape

result = _emboss_part_code(result, PART_CODE)

# === ADD TO DOCUMENT ===
obj = doc.addObject("Part::Feature", "Body")
obj.Shape = result

doc.recompute()
if FreeCAD.GuiUp:
    FreeCAD.Gui.ActiveDocument.ActiveView.fitAll()
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Executing in FreeCAD...
◉
StepAnalyzer failed: FreeCAD could not read STEP file: FreeCAD exception thrown (File to load not existing or not readable) — skipping
●
FreeCAD execution succeeded
●
Exported: model.stl
◉
Generation succeeded and component was auto-approved (v3)
◉
Provider updated to google / balanced
◉
Provider updated to google / balanced
◉
Provider updated to google / balanced
◉
Provider updated to google / balanced
◉
Provider updated to google / balanced
v0.0.985