The Engineering Thesis

Rethinking land surveying and geometric subdivision from foundational computational principles.

Traditional CAD platforms were designed primarily for generic 2D/3D drafting, leaving land partitioning and geodetic conditioning to manual trial-and-error or fragmented plugins. QismaCAD bridges computational geometry with field surveying, unifying land partitioning, terrain modeling, and openBIM interoperability inside a native desktop engine.

Four Foundational Pillars

Architectural principles governing software design and development.

DESKTOP NATIVE

01 // Independent Desktop Architecture

Built with Tauri, Rust, and TypeScript. A lean, memory-safe native execution model replacing legacy monolithic CAD runtime bloat.

DETERMINISM

02 // Deterministic Mathematics

Formulated on LocalMetricFrame barycentric projection, constrained Delaunay triangulation, and multi-objective Pareto optimization.

OPEN STANDARDS

03 // Vendor-Neutral Interoperability

Commitment to open standards: openBIM IFC, LandXML, Pregeo DAT cadastral records, and standard DXF interchange without proprietary lock-in.

SCIENTIFIC RIGOR

04 // Epistemic Integrity

Governed by the rule: SHOW -> TEST -> EVIDENCE -> CLAIM. No fabricated testimonials, unverified benchmarks, or artificial superiority claims.

Capability Manifest Transparency

Software maturity tracked against verifiable release manifests.

The web platform acts strictly as an objective consumer of release capability manifests. Features are never promoted to available without verified tests and released build artifacts.