{ "$schema": "https://schema.tauri.app/config/2", "productName": "RustyTorch Virtual Catheter", "version": "1.0.0", "identifier": "com.rustytorch.hemodynamics", "build": { "frontendDist": "../dist", "devUrl": "http://localhost:9090", "beforeDevCommand": "npm run dev", "beforeBuildCommand": "npm run build" }, "app": { "windows": [ { "title": "RustyTorch++ Virtual Catheter", "width": 1280, "height": 800, "resizable": true, "fullscreen": false, "center": true, "minWidth": 800, "minHeight": 600 } ], "security": { "csp": "default-src 'self'; script-src 'self' 'wasm-unsafe-eval'; style-src 'self' 'unsafe-inline'; img-src 'self' asset: data:; connect-src 'self' ipc: tauri:" } }, "bundle": { "active": true, "targets": "all", "icon": [ "icons/32x32.png", "icons/128x128.png", "icons/128x128@2x.png", "icons/icon.icns", "icons/icon.ico" ], "category": "Medical", "shortDescription": "Physics-informed neural network hemodynamics simulation", "longDescription": "A real-time hemodynamics simulation using RustyTorch++ PINN backend. Solve the inverse Navier-Stokes problem to infer pressure fields from velocity data - enabling non-invasive virtual catheterization." } }