1use serde::{Deserialize, Serialize};
2use wasm_bindgen::prelude::*;
3
4pub mod panic_hook;
9
10#[path = "geometry/tolerance.rs"]
11mod tolerance;
12pub use tolerance::{
13 curve_model_scale, model_scale, report_scale_migration, solid_model_scale, solid_scale,
14 offset_construction_band, vertex_tolerance_from_edges, KernelTolerances,
15 MeasuredTolerance, OFFSET_CONSTRUCTION_FLOOR, OFFSET_CONSTRUCTION_REL,
16 VERTEX_MATCH_FLOOR,
17};
18#[path = "geometry/entity_tolerance.rs"]
23mod entity_tolerance;
24pub use entity_tolerance::{EntityTolerances, EDGE_CAP_FRACTION, VERTEX_CAP_FRACTION};
25#[path = "props/diagnostics.rs"]
26mod diagnostics;
27pub use diagnostics::{
28 DiagnosticEvent, DiagnosticSeverity, KernelDiagnostics, KernelOutcome, KernelRefusal, KernelStage,
29 OrRefuse, RefusalClass,
30};
31#[path = "geometry/polygon.rs"]
32mod polygon;
33#[path = "geometry/curve.rs"]
34mod curve;
35pub use curve::{
36 make_arc, make_circle, make_hyperbola, make_line, make_parabola, uniform_clamped_knots,
37 KnotVector, NurbsCurve, Vec4,
38};
39#[path = "blending/blend/mod.rs"]
40mod blend;
41pub use blend::{
42 blend_closed_edge, blend_edge_variable, blend_open_edge, blend_smooth_chain,
43 round_convex_corner,
44};
45#[path = "blending/fillet.rs"]
46mod fillet;
47pub use fillet::{
48 chamfer_edge, chamfer_edge_angle, chamfer_edge_asymmetric, chamfer_edges_angle,
49 chamfer_edges_asymmetric, fillet_edge, fillet_edges, fillet_edges_variable,
50 fillet_edges_variable_law, fillet_edges_variable_vertex_radii,
51};
52#[path = "blending/law.rs"]
53mod law;
54pub use law::{LawSegment, RadiusLaw};
55#[path = "geometry/fit.rs"]
56mod fit;
57pub use fit::{
58 fit_polyline, interpolate_curve, interpolate_curve_closed, interpolate_curve_local,
59 interpolate_curve_thinned, interpolate_curve_with_end_tangents, simplify_polyline,
60 solve_banded, solve_dense, PolylineFit,
61};
62#[path = "geometry/image_curve.rs"]
63mod image_curve;
64pub use image_curve::{affine_image_curve, image_curve, image_curve_pair, ImageCurve, ImageCurveTier};
65#[path = "geometry/surface.rs"]
66mod surface;
67pub use surface::{
68 carrier_preview_patch, make_cone_surface, make_cylinder_surface, make_extrusion, make_plane,
69 make_revolution, make_sphere_surface, make_sphere_surface_framed, make_torus_surface,
70 NurbsSurface,
71};
72#[path = "geometry/analytic_surface.rs"]
73mod analytic_surface;
74pub use analytic_surface::{
75 circle_angle_to_parameter, intersect_analytic_pair, revolution_structure, AnalyticSurface,
76 RevolutionFrame, RevolutionStructure,
77};
78#[path = "geometry/sphere_chart.rs"]
79mod sphere_chart;
80pub use sphere_chart::{
81 canonicalize_points, chart_grid_divisions, chart_grid_parameters, corner_index,
82 cube_edge_corner, cube_edge_divisions, cube_edge_index, cube_edge_parameters,
83 cube_edge_parts, Chart, ChartSegment, ChartSide, SphereAtlas,
84 SphericalRegion, CHART_COUNT, CUBE_CORNER_COUNT, CUBE_EDGE_COUNT,
85};
86#[path = "brep/solid_codec.rs"]
87mod solid_codec;
88pub use solid_codec::{decode_solid, encode_solid, SolidNames, SOLID_CODEC_VERSION};
89#[path = "brep/topology.rs"]
90mod topology;
91pub use topology::{
92 make_box_brep, make_cylinder_brep, make_pyramid_brep, BrepSolid, FaceRecord, IssueKind,
93 ValidationReport,
94};
95#[path = "brep/soundness.rs"]
96mod soundness;
97pub use soundness::{
98 solid_connectivity, solid_self_intersections, ConnectivityReport, FaceCrossing,
99 SelfIntersectionOptions, SelfIntersectionReport, ShellConnectivity,
100};
101#[path = "brep/topology_arena.rs"]
102mod topology_arena;
103pub use topology_arena::{
104 ArenaCoedge, ArenaEdge, ArenaFace, ArenaLoop, ArenaShell, ArenaVertex, CoedgeId, EdgeId,
105 FaceId, LoopId, ShellId, TopologyArena, VertexId,
106};
107#[path = "brep/analytic_topology.rs"]
108mod analytic_topology;
109pub use analytic_topology::{
110 make_cone_brep, make_sphere_brep, make_sphere_brep_framed, make_torus_brep,
111};
112#[path = "construction/sweep_topology.rs"]
113mod sweep_topology;
114pub use sweep_topology::{
115 extrude_profile_brep, extrude_profile_brep_draft, fit_helix_curve, helix_sample_points,
116 profile_anchor, rib_from_profile, RibExtrusion,
117 sweep_profile_along_chain, sweep_profile_along_chain_with_stations, sweep_profile_along_path,
118 sweep_profile_along_path_anchored,
119 sweep_profile_helix,
120 sweep_profile_twisted, sweep_profile_twisted_anchored, ProfileAnchor, SectionPlacement,
121};
122#[path = "construction/revolve_topology.rs"]
123mod revolve_topology;
124pub use revolve_topology::{revolve_profile_brep, revolve_profile_brep_named};
125#[path = "construction/loft_topology.rs"]
126mod loft_topology;
127pub use loft_topology::{
128 loft_profile_brep, loft_profile_brep_closed, loft_profile_brep_guided,
129 loft_profile_brep_guided_frame, loft_profile_brep_tangent,
130};
131#[path = "brep/transform_topology.rs"]
132mod transform_topology;
133pub use transform_topology::{mirror_brep, transform_brep, AffineTransform};
134#[path = "edit/split.rs"]
135mod split;
136pub use split::{
137 split_solid_by_face_surface, split_solid_by_plane, split_solid_by_surface, SplitSurface,
138};
139#[path = "props/mass_properties.rs"]
140mod mass_properties;
141pub use mass_properties::{
142 curve_arc_length, edge_arc_length, face_area, face_boundary_length, face_volume_contribution,
143 parameter_space_area, solid_edge_length_total, solid_mass_properties,
144 solid_mass_properties_full, solid_signed_volume, trim_polygons, DensityMassProperties,
145 FullMassProperties, MassProperties,
146};
147#[path = "meshing/tessellation.rs"]
148mod tessellation;
149pub use tessellation::{tessellate_brep, tessellate_face, TessellationOptions};
150#[path = "meshing/watertight_tessellation/mod.rs"]
151mod watertight_tessellation;
152pub use watertight_tessellation::{
153 sample_edge_polylines, sample_edges_encoded, tessellate_brep_watertight,
154 tessellate_brep_watertight_face_stride, tessellate_brep_watertight_face_stride_with_samples,
155};
156#[path = "feature_pipeline/mod.rs"]
161mod feature_pipeline;
162pub use feature_pipeline::execute_history_json;
163pub use feature_pipeline::{first_reference_name, reference_names};
164pub use feature_pipeline::{
167 clear_history_cache, execute_history, execute_history_observed, AddedSolid, Axis,
168 ComponentRecord, FeatureDescriptor, FeatureResult, Frame, HistoryProgress, HistoryRequest,
169 HistoryResult, PortKind, PortRecord, ProfileLoop, ScenePoint, SketchProfile,
170};
171pub use feature_pipeline::wire_harness::{
175 bundle_diameter, Attachment as SplineAttachment, PortSide, RouteResult, RouteStatus,
176 WireHarnessBundle, WireHarnessConnection,
177 WireHarnessEndpoint, WireHarnessReport, WireHarnessState, WIRE_HARNESS_FEATURE_ID,
178 WIRE_HARNESS_FEATURE_TYPE,
179};
180pub use feature_pipeline::pmi::{
184 clamp_text_size, format_dimension, format_number, pmi_schema_catalogue, pmi_type,
185 resolve_state as pmi_resolve_state, FcfFrame, PmiAnnotation, PmiAnnotationReport, PmiCamera,
186 PmiDisplay, PmiGeometry, PmiPlane, PmiProjection, PmiReport, PmiState, PmiStatus, PmiTypeDef, PmiView,
187 PmiViewReport, ToleranceBlock, ToleranceMode, PMI_TYPES,
188};
189pub use feature_pipeline::pmi::layout::{present as pmi_present, LayoutStyle as PmiLayoutStyle, Presentation as PmiPresentation};
190pub use feature_pipeline::pmi::annotations::fcf::{characteristic as pmi_characteristic, Characteristic as PmiCharacteristic, CHARACTERISTICS as PMI_CHARACTERISTICS};
191pub use feature_pipeline::assign_sketch_loop_ids;
195pub use feature_pipeline::{flat_pattern_dxf, flat_pattern_svg, is_sheet_metal_handle};
197pub use feature_pipeline::{native_import_payload, native_import_payload_with_appearance};
201pub use feature_pipeline::IsolatedSceneMetadata;
204pub use feature_pipeline::scene_metadata_colors_json;
207pub use feature_pipeline::{
210 add_part_to_library, install_parts_library, missing_library_parts, parts_library_json,
211 parts_library_map, parts_library_revision, refresh_library_entry, stable_json_hash, PartsLibraryEntry,
212 PartsLibraryMap,
213};
214pub use feature_pipeline::assembly::{
217 assembly_add_constraint_json, assembly_apply_document_json,
218 assembly_apply_inferred_constraints_json, assembly_dof_json,
219 assembly_infer_constraints_json, assembly_inferable_types_json,
220 assembly_move_constraint_json, assembly_overlay_json, assembly_pose_updates_json,
221 assembly_remove_constraint_json, assembly_run_solve_json,
222 assembly_set_constraint_enabled_json, assembly_set_constraint_open_json,
223 assembly_state_json, assembly_statuses_json, assembly_update_constraint_json,
224 constraint_schema_catalogue,
225};
226pub use feature_pipeline::{AssemblyState, ConstraintEntry};
227pub use feature_pipeline::assembly::transform_to_pose_params;
230pub use feature_pipeline::feature_schema_catalogue;
233pub use feature_pipeline::assembly::{constraint_type, ConstraintTypeDef, CONSTRAINT_TYPES};
236pub use feature_pipeline::{feature_context_applicable, SelectionProbe};
237pub use feature_pipeline::Env;
243
244pub fn eval_expression(
249 expressions: &str,
250 configurator_json: &serde_json::Value,
251 source: &str,
252) -> Result<f64, String> {
253 Env::build(expressions, configurator_json).and_then(|env| env.eval(source))
254}
255
256#[cfg(feature = "wasm-threads")]
263pub use wasm_bindgen_rayon::init_thread_pool;
264#[path = "geometry/projection.rs"]
265mod projection;
266pub use projection::{
267 project_point_to_curve, project_point_to_surface, project_point_to_surface_seeded,
268 CurveProjection, SurfaceProjection,
269};
270#[path = "intersect/curve_surface_intersection.rs"]
271mod curve_surface_intersection;
272pub use curve_surface_intersection::{intersect_curve_surface, CurveSurfaceIntersection};
273#[path = "intersect/curve_curve_intersection.rs"]
274mod curve_curve_intersection;
275pub use curve_curve_intersection::{intersect_curves, CurveCurveIntersection};
276#[path = "intersect/surface_surface_intersection.rs"]
277mod surface_surface_intersection;
278pub use surface_surface_intersection::{
279 intersect_surfaces, intersect_surfaces_supplemental, SurfaceIntersectionCurve,
280 SurfaceIntersectionOptions,
281};
282pub(crate) use surface_surface_intersection::TRANSVERSE_SEED_CROSS;
283#[path = "brep/classification.rs"]
284mod classification;
285pub use classification::{
286 classify_point, parameter_point_in_face, PointClass, PointClassification, PolygonClass,
287 SolidClassifier,
288};
289#[path = "geometry/spatial.rs"]
290mod spatial;
291pub use spatial::{Aabb, Bvh};
292#[path = "brep/pair_classification.rs"]
293mod pair_classification;
294pub use pair_classification::{
295 classify_surface_pair, classify_surface_pair_cached, SurfaceClassifyData,
296 SurfacePairClassification, SurfacePairRelation,
297};
298#[path = "intersect/arrangement.rs"]
299mod arrangement;
300pub use arrangement::{
301 arrange_segments, point_in_polygon, segment_intersection, ArrangementPiece, ArrangementRegion,
302 CycleUse, Segment2, Vec2,
303};
304#[path = "geometry/pcurve.rs"]
305mod pcurve;
306pub use pcurve::{
307 build_pcurve_on_surface, build_pcurve_on_surface_marched, build_pcurve_on_surface_range,
308 build_pcurve_on_surface_range_dense,
309};
310#[path = "csg/imprint.rs"]
311mod imprint;
312pub use imprint::{
313 build_imprints, EdgeSplitRecord, FaceImprints, FaceKey, FacePcurve, ImprintOptions,
314 ImprintPieceRecord, ImprintResultRecord, ImprintVertex,
315};
316#[path = "csg/edge_split.rs"]
317mod edge_split;
318pub use edge_split::{apply_edge_splits, apply_edge_splits_with_map};
319#[path = "csg/fragment.rs"]
320mod fragment;
321pub use fragment::{
322 fragment_face, fragment_solid, FaceFragmentRecord, FragmentCoedge, FragmentEdgeSource,
323 FragmentLoop,
324};
325#[path = "csg/boolean/mod.rs"]
326mod boolean;
327pub use boolean::{
328 boolean_operation, boolean_operation_nary, boolean_operation_with_diagnostics,
329 BooleanOperation, BooleanOptions,
330};
331#[path = "csg/oracle.rs"]
332mod oracle;
333pub use oracle::{
334 boolean_residual_fusables, boolean_semantic_disagreement, boolean_semantic_disagreement_nary,
335 OracleReport, ResidualFusable, ResidualKind, SemanticDisagreement, DISAGREEMENT_THRESHOLD,
336};
337#[path = "healing/heal.rs"]
338mod heal;
339#[path = "offset/point.rs"]
344mod offset_point;
345pub use offset_point::{OffsetEvaluator, OffsetNormal, OffsetSample};
346#[path = "offset/analytic_pair.rs"]
353mod offset_analytic_pair;
354#[path = "offset/retrim.rs"]
361mod offset_retrim;
362#[path = "offset/reintersect.rs"]
370mod offset_reintersect;
371#[path = "offset/measure.rs"]
381mod offset_measure;
382pub use offset_measure::{
383 measure_edge_against_pcurve_image, measure_surface_fit_against_pointwise_offset,
384 span_midpoint_error, vertex_endpoint_gap,
385};
386#[path = "offset/offset.rs"]
387mod offset;
388pub use offset::{
389 offset_face_carrier, offset_face_carrier_measured, offset_face_carrier_sided, offset_surface,
390 offset_surface_measured, offset_surface_measured_sided, CarrierDeviation, CarrierExtension,
391 MeasuredOffsetSurface, OffsetFaceCarrier, OffsetSurfaceLane,
392};
393#[path = "offset/thicken.rs"]
394mod thicken;
395pub use thicken::{thicken_face_sheet, thicken_trimmed_sheet};
396#[path = "healing/coalesce.rs"]
397mod coalesce;
398pub use coalesce::{concatenate_exact_curve_pieces, merge_curve_continuation_edges};
399#[path = "healing/face_merge.rs"]
400mod face_merge;
401#[allow(dead_code)]
404#[path = "healing/faceted_repair.rs"]
405mod faceted_repair;
406pub use face_merge::{merge_same_surface_faces, merge_same_surface_faces_excluding};
407pub use faceted_repair::mesh_to_faceted_brep;
408#[path = "offset/offset_shell.rs"]
409mod offset_shell;
410pub use offset_shell::{
411 offset_shell, offset_shell_with_diagnostics, OffsetFaceRole, OffsetShellFaceImageRecord,
412 OffsetShellResultRecord,
413};
414#[path = "io/step_matrix.rs"]
415mod step_matrix;
416#[path = "io/step.rs"]
417mod step;
418pub use step::{
419 assembly_export_tree, audit_step_manifold, audit_step_pcurves, export_step,
420 export_step_assembly, export_step_assembly_report, export_step_report,
421 export_step_report_named, Mat4, StepAssemblyExport, StepExportOccurrence, StepExportProduct,
422 StepExportReport, StepPmi,
423};
424#[path = "io/appearance.rs"]
428mod appearance;
429pub use appearance::{BodyAppearance, ImportedColor, COLOR_METADATA_KEY};
430#[path = "io/step_import/mod.rs"]
431mod step_import;
432pub use step_import::{
433 import_step, import_step_report, import_step_with_appearance, read_step_assembly,
434 read_step_pmi, StepAssembly, StepOccurrence, StepProduct,
435};
436#[doc(hidden)]
438pub fn io_step_text_for_tests(value: &str) -> String {
439 step::pmi::step_text(value)
440}
441#[doc(hidden)]
442pub fn io_step_decode_text_for_tests(value: &str) -> String {
443 step_import::decode_step_text_for_tests(value)
444}
445#[path = "io/iges/mod.rs"]
446mod iges;
447pub use iges::{export_iges, import_iges};
448#[path = "io/mesh_io.rs"]
449mod mesh_io;
450pub use mesh_io::{
451 read_binary_stl, read_obj, write_binary_stl, write_obj, ObjReadResult, StlReadResult,
452};
453#[path = "io/snapshot.rs"]
457mod snapshot;
458pub use snapshot::{
459 restore_solids, snapshot_resident_solids, snapshot_solids, RestoredSnapshot, RestoredSolid,
460 SNAPSHOT_FORMAT_VERSION,
461};
462#[path = "solvers/linear_algebra.rs"]
463mod solver_linear_algebra;
464#[path = "solvers/sketch_solver.rs"]
465mod sketch_solver;
466pub use sketch_solver::{
467 sketch_id_key, solve_sketch, solve_sketch_from_json, SketchSolverSettings, SolveSketchRequest,
468};
469#[path = "solvers/assembly_solver.rs"]
470mod assembly_solver;
471pub use assembly_solver::{
472 solve_assembly, AssemblyBody, AssemblyMate, AssemblySolution, AssemblySolveOptions, BodyPose,
473 MateAlign, MateAxis, MateKind, MatePlane, MateResidualReport, SolveStrategy,
474};
475#[path = "solvers/assembly_resolve.rs"]
479mod assembly_resolve;
480pub use assembly_resolve::{
481 is_component_reference, resolve_component_point, resolve_edge_selection,
482 resolve_face_selection, resolve_named_selection, resolve_vertex_selection,
483 split_component_namespace, ResolveError, SelectionGeometry,
484};
485#[path = "edit/direct_edit.rs"]
486mod direct_edit;
487pub use direct_edit::{
488 delete_face_and_heal, delete_faces_and_heal, move_faces, offset_freeform_face,
489 offset_revolution_face, offset_ruled_face, offset_sphere_face, offset_torus_face,
490 resolve_face_by_point,
491};
492#[path = "healing/sew.rs"]
493mod sew;
494pub use sew::{sew_solid, split_pinched_vertices, SewReport};
495#[path = "meshing/mesh_weld.rs"]
496mod mesh_weld;
497#[path = "meshing/mesh_segment.rs"]
498mod mesh_segment;
499pub use mesh_segment::{
500 mesh_regions_to_brep, segment_mesh_faces, MeshRegion, MeshSegmentation, RegionCarrier,
501 SegmentOptions, UNASSIGNED_REGION,
502};
503
504#[derive(Clone, Copy, Debug, Default, Deserialize, Serialize)]
505pub struct Vec3 {
506 pub x: f64,
507 pub y: f64,
508 pub z: f64,
509}
510
511impl Vec3 {
512 pub fn new(x: f64, y: f64, z: f64) -> Self {
513 Self { x, y, z }
514 }
515 pub fn sub(self, rhs: Self) -> Self {
516 Self::new(self.x - rhs.x, self.y - rhs.y, self.z - rhs.z)
517 }
518 pub fn add(self, rhs: Self) -> Self {
519 Self::new(self.x + rhs.x, self.y + rhs.y, self.z + rhs.z)
520 }
521 pub fn scale(self, factor: f64) -> Self {
522 Self::new(self.x * factor, self.y * factor, self.z * factor)
523 }
524 pub fn cross(self, rhs: Self) -> Self {
525 Self::new(
526 self.y * rhs.z - self.z * rhs.y,
527 self.z * rhs.x - self.x * rhs.z,
528 self.x * rhs.y - self.y * rhs.x,
529 )
530 }
531 pub fn dot(self, rhs: Self) -> f64 {
532 self.x * rhs.x + self.y * rhs.y + self.z * rhs.z
533 }
534 pub fn length(self) -> f64 {
535 self.dot(self).sqrt()
536 }
537 pub fn length_squared(self) -> f64 {
538 self.dot(self)
539 }
540 pub fn normalized(self) -> Result<Self, String> {
541 let length = self.length();
542 if length <= 1e-12 {
543 return Err("Vec3.normalized: zero-length vector".into());
544 }
545 Ok(self.scale(1.0 / length))
546 }
547 pub fn perpendicular(self) -> Result<Self, String> {
548 let x = self.x.abs();
549 let y = self.y.abs();
550 let z = self.z.abs();
551 let axis = if x <= y && x <= z {
552 Self::new(1.0, 0.0, 0.0)
553 } else if y <= z {
554 Self::new(0.0, 1.0, 0.0)
555 } else {
556 Self::new(0.0, 0.0, 1.0)
557 };
558 self.cross(axis).normalized()
559 }
560}
561
562#[derive(Clone, Debug, Default, Deserialize, Serialize)]
563pub struct Mesh {
564 pub positions: Vec<f64>,
565 pub normals: Vec<f64>,
566 pub indices: Vec<u32>,
567 pub face_ids: Vec<u32>,
568}
569
570impl Mesh {
571 fn push_vertex(&mut self, point: Vec3, normal: Vec3) -> u32 {
572 self.positions.extend([point.x, point.y, point.z]);
573 self.normals.extend([normal.x, normal.y, normal.z]);
574 (self.positions.len() / 3 - 1) as u32
575 }
576
577 fn quad(&mut self, points: [Vec3; 4], normal: Vec3, face_id: u32) {
578 let base = self.push_vertex(points[0], normal);
579 for point in points.iter().skip(1) {
580 self.push_vertex(*point, normal);
581 }
582 self.indices
583 .extend([base, base + 1, base + 2, base, base + 2, base + 3]);
584 self.face_ids.extend([face_id, face_id]);
585 }
586
587 pub fn signed_volume(&self) -> f64 {
588 self.indices
589 .chunks_exact(3)
590 .map(|tri| {
591 let point = |index: u32| {
592 let i = index as usize * 3;
593 Vec3::new(
594 self.positions[i],
595 self.positions[i + 1],
596 self.positions[i + 2],
597 )
598 };
599 point(tri[0]).dot(point(tri[1]).cross(point(tri[2]))) / 6.0
600 })
601 .sum()
602 }
603
604 pub fn validate(&self) -> Result<(), String> {
605 if self.positions.len() % 3 != 0 || self.normals.len() != self.positions.len() {
606 return Err("invalid vertex or normal buffer".into());
607 }
608 self.validate_geometry()
609 }
610
611 pub fn validate_geometry(&self) -> Result<(), String> {
616 if self.positions.len() % 3 != 0 {
617 return Err("invalid vertex buffer".into());
618 }
619 if self.indices.len() % 3 != 0 {
620 return Err("index buffer is not triangular".into());
621 }
622 let count = self.positions.len() / 3;
623 if self.indices.iter().any(|index| *index as usize >= count) {
624 return Err("index outside vertex buffer".into());
625 }
626 if !self.positions.iter().all(|value| value.is_finite()) {
627 return Err("non-finite vertex".into());
628 }
629 Ok(())
630 }
631}
632
633pub fn make_box(size_x: f64, size_y: f64, size_z: f64) -> Mesh {
634 let x = size_x.abs();
635 let y = size_y.abs();
636 let z = size_z.abs();
637 let p = [
638 Vec3::new(0.0, 0.0, 0.0),
639 Vec3::new(x, 0.0, 0.0),
640 Vec3::new(x, y, 0.0),
641 Vec3::new(0.0, y, 0.0),
642 Vec3::new(0.0, 0.0, z),
643 Vec3::new(x, 0.0, z),
644 Vec3::new(x, y, z),
645 Vec3::new(0.0, y, z),
646 ];
647 let mut mesh = Mesh::default();
648 mesh.quad([p[0], p[3], p[2], p[1]], Vec3::new(0.0, 0.0, -1.0), 0);
649 mesh.quad([p[4], p[5], p[6], p[7]], Vec3::new(0.0, 0.0, 1.0), 1);
650 mesh.quad([p[0], p[1], p[5], p[4]], Vec3::new(0.0, -1.0, 0.0), 2);
651 mesh.quad([p[3], p[7], p[6], p[2]], Vec3::new(0.0, 1.0, 0.0), 3);
652 mesh.quad([p[0], p[4], p[7], p[3]], Vec3::new(-1.0, 0.0, 0.0), 4);
653 mesh.quad([p[1], p[2], p[6], p[5]], Vec3::new(1.0, 0.0, 0.0), 5);
654 mesh
655}
656
657pub fn make_cylinder(radius: f64, height: f64, segments: usize) -> Mesh {
658 let radius = radius.abs();
659 let height = height.abs();
660 let segments = segments.max(3);
661 let mut mesh = Mesh::default();
662 for i in 0..segments {
663 let a = std::f64::consts::TAU * i as f64 / segments as f64;
664 let b = std::f64::consts::TAU * (i + 1) as f64 / segments as f64;
665 let (sa, ca) = a.sin_cos();
666 let (sb, cb) = b.sin_cos();
667 let pa = Vec3::new(radius * ca, 0.0, -radius * sa);
668 let pb = Vec3::new(radius * cb, 0.0, -radius * sb);
669 let ta = Vec3::new(pa.x, height, pa.z);
670 let tb = Vec3::new(pb.x, height, pb.z);
671 mesh.quad(
672 [pa, pb, tb, ta],
673 Vec3::new((ca + cb) * 0.5, 0.0, -(sa + sb) * 0.5),
674 0,
675 );
676 let bottom = mesh.push_vertex(Vec3::default(), Vec3::new(0.0, -1.0, 0.0));
677 let bi = mesh.push_vertex(pb, Vec3::new(0.0, -1.0, 0.0));
678 let bj = mesh.push_vertex(pa, Vec3::new(0.0, -1.0, 0.0));
679 mesh.indices.extend([bottom, bi, bj]);
680 mesh.face_ids.push(1);
681 let top = mesh.push_vertex(Vec3::new(0.0, height, 0.0), Vec3::new(0.0, 1.0, 0.0));
682 let ti = mesh.push_vertex(ta, Vec3::new(0.0, 1.0, 0.0));
683 let tj = mesh.push_vertex(tb, Vec3::new(0.0, 1.0, 0.0));
684 mesh.indices.extend([top, ti, tj]);
685 mesh.face_ids.push(2);
686 }
687 mesh
688}
689
690
691mod abi;
692pub use abi::*;
693
694