refactor(cad): use direct stack dependencies

This commit is contained in:
Hakan Seven 2026-08-10 15:03:31 +03:00
commit ac8183ec91
36 changed files with 87 additions and 101 deletions

13
Cargo.lock generated
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@ -7,9 +7,11 @@ name = "OpenCADStudio"
version = "0.9.4"
dependencies = [
"acadifc",
"acadrust",
"ashpd",
"bincode",
"bytemuck",
"cadkernel",
"clap",
"console_error_panic_hook",
"cosmic-text 0.15.0",
@ -70,11 +72,9 @@ checksum = "366ffbaa4442f4684d91e2cd7c5ea7c4ed8add41959a31447066e279e432b618"
[[package]]
name = "acadifc"
version = "0.5.0"
source = "git+https://github.com/OpenAEC-Foundation/acadifc.git?rev=6767b22#6767b22f17ac760f789edb82ec1e32760a8b6cca"
source = "git+https://github.com/OpenAEC-Foundation/acadifc.git?rev=47b5603#47b5603a06303dd9935af041d45c8bc4c37545a6"
dependencies = [
"acadrust",
"base64",
"cadkernel",
"serde",
"serde_json",
"sha2 0.10.9",
@ -890,8 +890,9 @@ checksum = "fc652a48c352aef3ea3aed32080501cf3ef6ed5da78602a020c991775b0aff04"
[[package]]
name = "cadkernel"
version = "0.1.0"
source = "git+https://github.com/HakanSeven12/cadkernel.git?rev=ba7292c#ba7292c152ef5069b0bcf8c86730db75339fc383"
source = "git+https://github.com/HakanSeven12/cadkernel.git?rev=6b6a995#6b6a99546b1a871007a8e3da73530b3aa4502dea"
dependencies = [
"acadrust",
"cavalier_contours",
"spade",
]
@ -3747,7 +3748,7 @@ dependencies = [
name = "ocs_plugin_api"
version = "0.1.0"
dependencies = [
"acadifc",
"acadrust",
"bincode",
"getrandom 0.2.17",
"interprocess",
@ -3762,7 +3763,7 @@ dependencies = [
name = "ocs_web_worker"
version = "0.1.0"
dependencies = [
"acadifc",
"acadrust",
"bincode",
"console_error_panic_hook",
"getrandom 0.3.4",

View file

@ -12,6 +12,10 @@ members = [
"crates/dwg-thumbnailer-win",
]
[features]
default = []
ifc = ["dep:acadifc"]
[target.'cfg(windows)'.build-dependencies]
winresource = "0.1"
@ -27,10 +31,9 @@ glam = { version = "0.33", features = ["bytemuck"] }
rfd = "0.17"
clap = { version = "4", features = ["derive"] }
env_logger = "0.11"
# The CAD stack is reached through acadifc, which re-exports the codec and
# the geometry kernel. Aliased to `acadrust` so existing `use acadrust::…`
# paths keep resolving.
acadrust = { package = "acadifc", git = "https://github.com/OpenAEC-Foundation/acadifc.git", rev = "6767b22", features = ["serde", "offset"] }
acadrust = { git = "https://github.com/HakanSeven12/cadcodec.git", rev = "7e2fa8c", features = ["serde"] }
cadkernel = { git = "https://github.com/HakanSeven12/cadkernel.git", rev = "6b6a995", features = ["acis", "offset"] }
acadifc = { git = "https://github.com/OpenAEC-Foundation/acadifc.git", rev = "47b5603", optional = true }
dwg-thumbnailer = { path = "crates/dwg-thumbnailer" }
flate2 = "1"
image = { version = "0.25", default-features = false, features = ["png", "jpeg", "bmp", "tiff"] }

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@ -9,7 +9,7 @@ license = "GPL-3.0-only"
# Pulled in only by the `host` feature, which adds the `acadrust`-typed
# `HostApi` runtime surface. The default crate stays dependency-free so engine
# crates and external tooling can depend on the manifest/ribbon contract cheaply.
acadrust = { package = "acadifc", git = "https://github.com/OpenAEC-Foundation/acadifc.git", rev = "6767b22", optional = true, features = ["serde"] }
acadrust = { git = "https://github.com/HakanSeven12/cadcodec.git", rev = "7e2fa8c", optional = true, features = ["serde"] }
# Runtime IPC and serialization (host feature only).
interprocess = { version = "2", optional = true }

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@ -8,7 +8,7 @@ publish = false
crate-type = ["cdylib"]
[dependencies]
acadrust = { package = "acadifc", git = "https://github.com/OpenAEC-Foundation/acadifc.git", rev = "6767b22", features = ["serde"] }
acadrust = { git = "https://github.com/HakanSeven12/cadcodec.git", rev = "7e2fa8c", features = ["serde"] }
bincode = "1.3"
console_error_panic_hook = "0.1"
getrandom = { version = "0.3", features = ["wasm_js"] }

View file

@ -7,7 +7,7 @@
// cylinder afterwards, and saves as one.
use acadrust::entities::Solid3D;
use acadrust::kernel::brep::Body;
use cadkernel::brep::Body;
use acadrust::{EntityType, Handle};
use iced::Task;

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@ -1158,7 +1158,7 @@ pub enum CmdResult {
/// rendering). Ends the command.
CommitSolid {
entity: EntityType,
solid: Box<acadrust::kernel::brep::Body>,
solid: Box<cadkernel::brep::Body>,
},
/// Commit an acadrust entity, end the command, and open the in-place text
/// editor on it (used by MLEADER to type the annotation after placement).

View file

@ -587,7 +587,7 @@ pub fn parse_angle_deg(value: &str) -> Option<f64> {
/// Re-exported rather than imported at each call site so the twelve modules
/// that already reach for `entities::common::BulgeArc` keep working, and so
/// there is one obvious place to see that the maths moved out.
pub use acadrust::kernel::geom2d::BulgeArc;
pub use cadkernel::geom2d::BulgeArc;
/// Triangulate the solid bands a `wide_fills` returns into the flat WCS f64
/// triangle list `RenderEntity::pick_tris` carries, so a wide polyline is
@ -694,7 +694,7 @@ pub(crate) fn tapered_band_points(
if bulge.abs() < 1e-9 {
push(p1[0], p1[1], ew0 as f32);
} else if let Some(arc) = BulgeArc::from_bulge(p0, p1, bulge) {
let samples = arc.tessellate_angle(acadrust::kernel::tessellation::DEFAULT_ANGLE);
let samples = arc.tessellate_angle(cadkernel::tessellation::DEFAULT_ANGLE);
let segments = samples.len().saturating_sub(1).max(1);
for (index, s) in samples.into_iter().enumerate().skip(1) {
let t = index as f64 / segments as f64;

View file

@ -32,11 +32,11 @@ use acadrust::entities::{
Arc as ArcEnt, Circle as CircleEnt, Ellipse as EllipseEnt, LwPolyline as LwPolylineEnt,
Polyline2D, Spline as SplineEnt,
};
use acadrust::kernel::geom2d::{
use cadkernel::geom2d::{
characteristic_points, Arc, Circle, Curve, Ellipse, EllipseArc, Line, Polyline, PolylineVertex,
Ray, SnapKind, Transform, XLine,
};
use acadrust::kernel::space::{PlanarCurve, Plane, Vec3};
use cadkernel::space::{PlanarCurve, Plane, Vec3};
use acadrust::types::Vector3;
use acadrust::EntityType;
@ -333,7 +333,7 @@ pub fn entity_curve_xy(entity: &EntityType) -> Option<Curve> {
/// World-space wire points sampled by the kernel's angular policy.
pub fn curve_points(curve: &PlanarCurve) -> Vec<[f64; 3]> {
curve.tessellate_angle(acadrust::kernel::tessellation::DEFAULT_ANGLE)
curve.tessellate_angle(cadkernel::tessellation::DEFAULT_ANGLE)
}
/// The snap candidates an entity's curve offers, in the two channels the
@ -705,12 +705,12 @@ mod tests {
/// where it happens rather than the next time somebody reaches for it.
#[test]
fn the_solid_layer_and_the_acis_bridge_are_reachable() {
let solid = acadrust::kernel::brep::make::cuboid([0.0; 3], [1.0; 3])
let solid = cadkernel::brep::make::cuboid([0.0; 3], [1.0; 3])
.expect("the kernel builds its own primitives");
assert!(solid.validate().is_empty());
assert_eq!(solid.euler_characteristic(), 2);
let document = acadrust::entities::acis::types::SatDocument::new();
let (bodies, loss) = acadrust::acis::lift(&document);
let (bodies, loss) = cadkernel::acis::lift(&document);
assert!(bodies.is_empty() && loss.is_empty(), "an empty document lifts to nothing");
}
@ -742,14 +742,14 @@ mod tests {
ray.base_point = v3(1.0, 1.0, 0.0);
ray.direction = v3(2.0, 0.0, 0.0);
let curve = entity_curve(&EntityType::Ray(ray)).unwrap();
assert_eq!(curve.extent(), acadrust::kernel::geom2d::Extent::Forward);
assert_eq!(curve.extent(), cadkernel::geom2d::Extent::Forward);
assert_eq!(curve.point_at(1.0), [3.0, 1.0, 0.0]);
let mut line = XLineEnt::default();
line.base_point = v3(0.0, 0.0, 0.0);
line.direction = v3(0.0, 3.0, 0.0);
let curve = entity_curve(&EntityType::XLine(line)).unwrap();
assert_eq!(curve.extent(), acadrust::kernel::geom2d::Extent::Infinite);
assert_eq!(curve.extent(), cadkernel::geom2d::Extent::Infinite);
assert_eq!(curve.point_at(-1.0), [0.0, -3.0, 0.0]);
}
}

View file

@ -1,5 +1,5 @@
use acadrust::entities::{BoundaryEdge, Hatch};
use acadrust::kernel::geom2d::{
use cadkernel::geom2d::{
Arc as KernelArc, Curve as KernelCurve, Ellipse as KernelEllipse,
EllipseArc as KernelEllipseArc, Line as KernelLine, NurbsCurve as KernelNurbs,
Parameterization, Polyline as KernelPolyline, PolylineVertex as KernelVertex,
@ -999,7 +999,7 @@ impl FallbackTess for Hatch {
continue;
};
let local = curve
.tessellate_angle(acadrust::kernel::tessellation::DEFAULT_ANGLE);
.tessellate_angle(cadkernel::tessellation::DEFAULT_ANGLE);
if local.len() < 2 {
continue;
}

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@ -309,7 +309,7 @@ fn to_render(pline: &LwPolyline) -> RenderEntity {
radius: arc.radius as f32,
});
for s in arc
.tessellate_angle(acadrust::kernel::tessellation::DEFAULT_ANGLE)
.tessellate_angle(cadkernel::tessellation::DEFAULT_ANGLE)
.into_iter()
.skip(1)
{
@ -410,7 +410,7 @@ fn to_render(pline: &LwPolyline) -> RenderEntity {
crate::entities::common::BulgeArc::from_bulge([ox0, oy0], [ox1, oy1], bulge)
{
for s in arc
.tessellate_angle(acadrust::kernel::tessellation::DEFAULT_ANGLE)
.tessellate_angle(cadkernel::tessellation::DEFAULT_ANGLE)
.into_iter()
.skip(1)
{

View file

@ -259,7 +259,7 @@ fn tessellate_polyline2d(pl: &Polyline2D) -> RenderEntity {
radius: arc.radius as f32,
});
for s in arc
.tessellate_angle(acadrust::kernel::tessellation::DEFAULT_ANGLE)
.tessellate_angle(cadkernel::tessellation::DEFAULT_ANGLE)
.into_iter()
.skip(1)
{

View file

@ -6,7 +6,7 @@
// caller translates the mesh vertices to match.
use acadrust::entities::{Body, Region, Solid3D, Surface};
use acadrust::kernel::space::polygon;
use cadkernel::space::polygon;
use crate::t;
use crate::command::EntityTransform;
use crate::entities::common::{center_grip, edit_prop as edit, parse_f64, ro_prop as ro};

View file

@ -1,6 +1,6 @@
use acadrust::entities::Spline;
use crate::t;
use acadrust::kernel::space::NurbsCurve3;
use cadkernel::space::NurbsCurve3;
use crate::command::EntityTransform;
use crate::entities::common::{edit_prop as edit, parse_f64, ro_prop as ro, square_grip};
@ -171,7 +171,7 @@ pub(crate) fn measurement_polyline(spl: &Spline) -> Vec<[f64; 3]> {
});
match NurbsCurve3::new(degree, controls, spl.knots.clone(), weights) {
Some(curve) => {
curve.tessellate_angle(acadrust::kernel::tessellation::DEFAULT_ANGLE)
curve.tessellate_angle(cadkernel::tessellation::DEFAULT_ANGLE)
}
None => spl.control_points.iter().map(|p| [p.x, p.y, p.z]).collect(),
}
@ -240,10 +240,10 @@ fn catmull_rom_polyline(pts: &[acadrust::types::Vector3], closed: bool) -> Vec<[
}
q
};
let sampled = acadrust::kernel::tessellation::sample_curve3_angle(
let sampled = cadkernel::tessellation::sample_curve3_angle(
point_at,
tangent_at,
acadrust::kernel::tessellation::DEFAULT_ANGLE,
cadkernel::tessellation::DEFAULT_ANGLE,
);
out.extend(sampled.into_iter().skip(usize::from(seg > 0)));
}
@ -363,10 +363,10 @@ fn fit_spline_polyline(spl: &Spline) -> Vec<[f64; 3]> {
}
q
};
let sampled = acadrust::kernel::tessellation::sample_curve3_angle(
let sampled = cadkernel::tessellation::sample_curve3_angle(
point_at,
tangent_at,
acadrust::kernel::tessellation::DEFAULT_ANGLE,
cadkernel::tessellation::DEFAULT_ANGLE,
);
out.extend(sampled.into_iter().skip(usize::from(i > 0)));
}

View file

@ -11,7 +11,7 @@ use crate::command::{CadCommand, CmdResult};
use crate::modules::{IconKind, ModuleEvent, ToolDef};
use crate::scene::model::wire_model::WireModel;
use glam::DVec3;
use acadrust::kernel::space::NurbsCurve3;
use cadkernel::space::NurbsCurve3;
#[allow(dead_code)]
pub fn tool() -> ToolDef {

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@ -1,4 +1,4 @@
use acadrust::kernel::space::polygon;
use cadkernel::space::polygon;
use acadrust::{EntityType, Handle};
use glam::DVec3;

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@ -2,7 +2,7 @@
// MEASURE command — place Point entities at fixed-distance intervals along an entity.
use acadrust::entities::Point as PointEnt;
use acadrust::kernel::space::PlanarCurve;
use cadkernel::space::PlanarCurve;
use acadrust::types::Vector3;
use acadrust::{EntityType, Handle};
use glam::DVec3;

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@ -6,12 +6,12 @@
//! geometric curvature (G2).
use acadrust::entities::{EntityCommon, Spline};
use acadrust::kernel::space::curve as space_curve;
use cadkernel::space::curve as space_curve;
use acadrust::types::Vector3;
use acadrust::{EntityType, Handle};
use glam::DVec3;
use crate::t;
use acadrust::kernel::space::NurbsCurve3;
use cadkernel::space::NurbsCurve3;
use crate::command::{CadCommand, CmdOption, CmdResult};
use crate::entities::common::BulgeArc;

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@ -14,7 +14,7 @@ use acadrust::entities::{Arc as ArcEnt, Line as LineEnt, LwPolyline};
// Shared plane geometry, from cadkernel via the local adapters.
use super::geom;
use super::geom::{arc_points as arc_pts, line_line as ll, normalize_angle as norm_angle};
use acadrust::kernel::geom2d::{
use cadkernel::geom2d::{
circle_circle_points as circle_circle_pts, fillet_between_rays, fillets_between, line_circle,
Arc as KernelArc, Curve as KernelCurve, Fillet as KernelFillet,
Line as KernelLine, Tolerance,

View file

@ -11,11 +11,11 @@
//! resident render path splits the `f64` into a high/low pair instead. Only a
//! caller knows which of the two it is.
use acadrust::kernel::geom2d::{self, Ellipse};
use cadkernel::geom2d::{self, Ellipse};
/// Re-exported unchanged: these already speak in plain `f64`, so there is no
/// call-shape difference for this module to absorb.
pub use acadrust::kernel::geom2d::{arc_parameter, lerp, normalize_angle};
pub use cadkernel::geom2d::{arc_parameter, lerp, normalize_angle};
/// Preview geometry keeps the density the commands have always used.
const SEGMENTS_PER_RADIAN: f64 = geom2d::DEFAULT_SEGMENTS_PER_RADIAN;

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@ -11,7 +11,7 @@ use crate::modules::draw::modify::spline_ops::{spline_cut, spline_to_nurbs};
use acadrust::entities::{
Arc as ArcEnt, Ellipse as EllipseEnt, Line as LineEnt, LwPolyline, Spline as SplineEnt,
};
use acadrust::kernel::geom2d::{
use cadkernel::geom2d::{
Curve, Ellipse as KernelEllipse, EllipseArc as KernelEllipseArc,
};
use acadrust::types::Vector3;

View file

@ -20,8 +20,8 @@ use acadrust::entities::{
use acadrust::{EntityType, Handle};
// Polyline offsetting, and the angle normalisation that goes with it, come
// from the kernel; only the entity conversion stays here.
use acadrust::kernel::geom2d::nurbs::clamped_uniform_knots;
use acadrust::kernel::geom2d::{
use cadkernel::geom2d::nurbs::clamped_uniform_knots;
use cadkernel::geom2d::{
offset_polyline, Polyline as KernelPolyline, PolylineVertex as KernelVertex,
};
use glam::{DVec3, Vec3};
@ -361,7 +361,7 @@ fn perp_distance(entity: &EntityType, pt: Vec3) -> f64 {
// ── Wire preview points ─────────────────────────────────────────────────────
/// Preview density, matching the figure the drawn wires use.
const PREVIEW_SEGMENTS_PER_RADIAN: f64 = acadrust::kernel::geom2d::DEFAULT_SEGMENTS_PER_RADIAN;
const PREVIEW_SEGMENTS_PER_RADIAN: f64 = cadkernel::geom2d::DEFAULT_SEGMENTS_PER_RADIAN;
/// Preview points for an entity, from its own curve.
///

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@ -12,8 +12,8 @@
// straightens every segment.
use acadrust::entities::LwVertex;
use acadrust::kernel::geom2d::nurbs::clamped_uniform_knots;
use acadrust::kernel::geom2d::NurbsCurve;
use cadkernel::geom2d::nurbs::clamped_uniform_knots;
use cadkernel::geom2d::NurbsCurve;
use acadrust::types::Vector2;
use acadrust::{EntityType, Handle};
use glam::{DVec2, DVec3};

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@ -10,8 +10,8 @@
// fine until it is measured.
use acadrust::entities::Spline;
use acadrust::kernel::geom2d::{NurbsCurve, Parameterization};
use acadrust::kernel::space::Plane;
use cadkernel::geom2d::{NurbsCurve, Parameterization};
use cadkernel::space::Plane;
use acadrust::types::Vector3;
use acadrust::Handle;

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@ -27,8 +27,8 @@ use acadrust::entities::{
use acadrust::types::Vector3;
use acadrust::{EntityType, Handle};
use glam::DVec3;
use acadrust::kernel::geom2d::nurbs::clamped_uniform_knots;
use acadrust::kernel::geom2d::{
use cadkernel::geom2d::nurbs::clamped_uniform_knots;
use cadkernel::geom2d::{
intersect as kernel_intersect, Arc as KernelArc, Circle as KernelCircle, Curve,
Extent as KernelExtent,
Ellipse as KernelEllipse, EllipseArc as KernelEllipseArc, Line as KernelLine,
@ -77,7 +77,7 @@ const TRIM_EXTENT: f64 = 1_000_000.0;
/// Sampling density for the plan-view point lists the fence and preview
/// passes walk. The renderer's own figure, so a preview cut lands where the
/// drawn geometry is rather than a chord away from it.
const SAMPLE_SEGMENTS_PER_RADIAN: f64 = acadrust::kernel::geom2d::DEFAULT_SEGMENTS_PER_RADIAN;
const SAMPLE_SEGMENTS_PER_RADIAN: f64 = cadkernel::geom2d::DEFAULT_SEGMENTS_PER_RADIAN;
/// If a trim interval endpoint is beyond this threshold it is treated as "infinite".
#[derive(Clone)]

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@ -11,7 +11,7 @@ use acadrust::entities::Solid3D;
use acadrust::{primitives, EntityType};
use glam::DVec3;
use crate::t;
use acadrust::kernel::brep::Body;
use cadkernel::brep::Body;
use crate::command::{CadCommand, CmdResult, WorkingPlane};
use crate::scene::model::solid_model;

View file

@ -1,6 +1,6 @@
use super::*;
use acadrust::kernel::geom2d::{bounded_faces, Line, Tolerance};
use cadkernel::geom2d::{bounded_faces, Line, Tolerance};
/// How far apart two points may be and still be taken for the same one.
///

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@ -1,30 +1,12 @@
//! Export a B-rep [`Body`] to an exact ACIS `SatDocument`.
//! Export a kernel [`Body`] to an exact ACIS `SatDocument`.
//!
//! A solid built by the Model tab, by EXTRUDE / REVOLVE, or by a boolean
//! carries no ACIS geometry of its own, so other CAD applications drop it on
//! open. Writing the body out as real modeller geometry is what stops that.
//!
//! # Exact, not facetted
//!
//! The kernel keeps analytic surfaces — a cylinder is a `cylinder` record and
//! a sphere a `sphere` — so what lands in the document is the shape itself
//! rather than a triangulation of it. That is the whole reason the Model tab
//! builds bodies at all: a facetted export is a one-way door, and the next
//! application to open the file would have no way back to the circle.
//!
//! The writing is [`acis::append`], which lives with the codec because it has
//! to know both sides. What is left here is the small matter of putting one
//! body into a fresh document.
//! Analytic surfaces remain analytic instead of becoming facets.
use acadrust::acis::append;
use cadkernel::acis::append;
use acadrust::entities::acis::SatDocument;
use acadrust::kernel::brep::Body;
use cadkernel::brep::Body;
/// An exact ACIS document holding `body`, or `None` when the kernel has no
/// record form for something in it — a spline curve, at present.
///
/// Refusing is the point: a document missing a face is one that parses into a
/// different solid, and nothing downstream could tell.
/// Returns `None` when the body contains an unsupported record form.
pub fn planar_solid_to_sat(body: &Body) -> Option<SatDocument> {
let mut document = SatDocument::new();
append(body, &mut document).ok()?;

View file

@ -8,9 +8,9 @@
//!
//! Lift and tessellation failures are reported as an incomplete result.
use acadrust::acis::lift;
use cadkernel::acis::lift;
use acadrust::entities::acis::SatDocument;
use acadrust::kernel::brep;
use cadkernel::brep;
use crate::scene::convert::solid3d_tess::{body_transform, finalize_mesh};
use crate::scene::model::mesh_model::{CurvedGen, MeshLodSet};
@ -53,7 +53,7 @@ pub fn tessellate_sat(
} else {
1.0
};
let max_angle = acadrust::kernel::tessellation::DEFAULT_ANGLE / resolution;
let max_angle = cadkernel::tessellation::DEFAULT_ANGLE / resolution;
// Positions stay f64 until `finalize_mesh` splits them into the coarse
// and fine pair, so a solid at survey coordinates keeps its millimetres.
@ -240,7 +240,7 @@ mod tests {
#[test]
fn a_round_surface_gets_the_same_sides_whatever_its_size() {
let angle = acadrust::kernel::tessellation::DEFAULT_ANGLE;
let angle = cadkernel::tessellation::DEFAULT_ANGLE;
assert!(sides(angle) > 24.0, "{}", sides(angle));
assert!(sides(angle) < 96.0, "{}", sides(angle));
}

View file

@ -1401,7 +1401,7 @@ impl Scene {
if let Some(curve) = crate::entities::hatch::edge_curve(edge) {
edge_polys.push(
curve
.tessellate_angle(acadrust::kernel::tessellation::DEFAULT_ANGLE)
.tessellate_angle(cadkernel::tessellation::DEFAULT_ANGLE)
.into_iter()
.map(|point| to_xy(point[0], point[1]))
.collect(),

View file

@ -1231,7 +1231,7 @@ fn transform_block_mesh_lod_set(
xform.apply_rotation(Vector3::UNIT_Z),
];
out.curved_gens.retain_mut(|generator| {
let transformed = acadrust::kernel::brep::mesh::transform_silhouette_affine(
let transformed = cadkernel::brep::mesh::transform_silhouette_affine(
&generator.source,
vectors.map(|vector| [vector.x, vector.y, vector.z]),
[origin.x, origin.y, origin.z],
@ -1665,7 +1665,7 @@ pub struct Scene {
/// here to be combined) and the exact-geometry save path, which writes
/// each one back out as ACIS rather than as facets. Not persisted —
/// rebuilt only by creating or combining primitives in-session.
pub solid_models: HashMap<Handle, acadrust::kernel::brep::Body>,
pub solid_models: HashMap<Handle, cadkernel::brep::Body>,
/// GPU render data for raster images (RasterImage entities), keyed by handle.
pub images: HashMap<Handle, ImageModel>,
/// The viewport that is currently "entered" (MSPACE mode).
@ -2606,7 +2606,7 @@ impl Scene {
/// pipeline under `handle`. The body is in the same offset-relative frame
/// the mesh pipeline uses, so the mesh is stored as-is (Model-tab geometry
/// is authored at world_offset 0).
pub fn register_solid_model(&mut self, handle: Handle, solid: acadrust::kernel::brep::Body) {
pub fn register_solid_model(&mut self, handle: Handle, solid: cadkernel::brep::Body) {
let entity = self.document.get_entity(handle);
let color = entity
.map(|e| self.render_style(e).0)

View file

@ -6,7 +6,7 @@
use std::sync::Arc;
use acadrust::kernel::geom2d::{
use cadkernel::geom2d::{
inside_spans, Curve as KernelCurve, Line as KernelLine, Tolerance, XLine as KernelXLine,
};

View file

@ -45,7 +45,7 @@ pub struct MeshModel {
/// Kernel-owned source for a view-dependent silhouette.
#[derive(Clone, Debug)]
pub struct CurvedGen {
pub source: acadrust::kernel::brep::mesh::SilhouetteSource,
pub source: cadkernel::brep::mesh::SilhouetteSource,
}
#[derive(Clone, Copy, Debug, Default)]

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@ -13,7 +13,7 @@
// The resulting `Body` is cached per entity handle on the Scene so the
// Design-group boolean tools can run on it.
use acadrust::kernel::brep::{self, Body};
use cadkernel::brep::{self, Body};
use crate::scene::model::mesh_model::{MeshLodSet, MeshModel};
@ -24,7 +24,7 @@ fn tessellation(body: &Body) -> brep::mesh::BodyMesh {
brep::mesh::tessellate(
body,
brep::mesh::TessellationTolerance::new(
acadrust::kernel::tessellation::DEFAULT_ANGLE,
cadkernel::tessellation::DEFAULT_ANGLE,
TOL,
),
)
@ -346,7 +346,7 @@ pub fn centre(body: &Body) -> Option<[f64; 3]> {
/// exists to test with.
#[cfg(test)]
pub fn volume(body: &Body) -> f64 {
use acadrust::kernel::space::Vec3;
use cadkernel::space::Vec3;
let mesh = tessellation(body).mesh;
let Some(middle) = centre(body) else {
return 0.0;

View file

@ -12,9 +12,9 @@
// approximated into a surface nobody asked for. That is the kernel's answer
// and this module passes it on.
use acadrust::kernel::brep::{self, Body};
use acadrust::kernel::geom2d::Curve;
use acadrust::kernel::space::{PlanarCurve, Plane};
use cadkernel::brep::{self, Body};
use cadkernel::geom2d::Curve;
use cadkernel::space::{PlanarCurve, Plane};
use acadrust::EntityType;
use crate::entities::curve::entity_curve;
@ -57,7 +57,7 @@ pub fn profile_of(entity: &EntityType) -> Option<Profile> {
/// A circle as four arcs.
fn quarters(centre: [f64; 2], radius: f64) -> Vec<Curve> {
use acadrust::kernel::geom2d::Arc;
use cadkernel::geom2d::Arc;
use std::f64::consts::FRAC_PI_2;
(0..4)
.map(|quarter| {
@ -112,7 +112,7 @@ use crate::scene::model::mesh_model::{MeshLodSet, MeshModel};
/// SWEEP through the kernel's tolerance-driven mesh API.
pub fn swept(profile: &EntityType, path: &EntityType, color: [f32; 4]) -> Option<MeshLodSet> {
let max_angle = acadrust::kernel::tessellation::DEFAULT_ANGLE;
let max_angle = cadkernel::tessellation::DEFAULT_ANGLE;
let surface = brep::mesh::sweep_surface(
&entity_curve(profile)?,
&entity_curve(path)?,
@ -124,7 +124,7 @@ pub fn swept(profile: &EntityType, path: &EntityType, color: [f32; 4]) -> Option
/// LOFT through the kernel's tolerance-driven mesh API.
pub fn lofted(profiles: &[EntityType], color: [f32; 4]) -> Option<MeshLodSet> {
let curves: Vec<PlanarCurve> = profiles.iter().filter_map(entity_curve).collect();
let max_angle = acadrust::kernel::tessellation::DEFAULT_ANGLE;
let max_angle = cadkernel::tessellation::DEFAULT_ANGLE;
mesh_set(brep::mesh::loft_surface(&curves, max_angle)?, color, 1e-9)
}

View file

@ -698,8 +698,8 @@ impl Scene {
translate_split(high, low);
}
for generator in &mut set.curved_gens {
let placement = acadrust::kernel::brep::Placement::at(delta);
if let Some(source) = acadrust::kernel::brep::mesh::transform_silhouette(
let placement = cadkernel::brep::Placement::at(delta);
if let Some(source) = cadkernel::brep::mesh::transform_silhouette(
&generator.source,
&placement,
) {

View file

@ -2327,7 +2327,7 @@ impl Pipeline {
}
};
for generator in &set.curved_gens {
for point in acadrust::kernel::brep::mesh::silhouette(
for point in cadkernel::brep::mesh::silhouette(
&generator.source,
[view.x, view.y, view.z],
) {