Files
Stirling-PDF/frontend
James BruntonandGitHub b4f7b1d8a9 Add bidirectional API types to frontend (#6867)
# Description of Changes
Fix https://github.com/Stirling-Tools/Stirling-PDF-SaaS/issues/281. Add
generated backend API mappings to the frontend code, and the logic to
convert from a backend API to frontend parameters objects.

Previously, it was impossible to tell if changing the backend API would
require a change to the frontend to support it because the frontend had
no static type information about the backend API. This PR adds
autogenerated tool API types to the frontend (in `toolApiTypes.ts`) and
adds explicit typed mappings between the frontend parameter types and
the backend API types, so theoretically the type checker should be able
to catch issues when changing one puts us in an invalid state with the
other. During development, it pointed out several inconsistencies that
we have between the frontend and backend types, some of which were
genuine bugs, and others were only happening to work because the backend
is more permissive than its API claims to be.

This also unlocks the ability for us to render the frontend settings on
saved backend API structures, which we've previously had to avoid doing
because we had no reverse mapping.
2026-07-07 07:47:07 +00:00
..
2026-04-27 11:35:50 +01:00
2026-05-22 13:40:34 +01:00

Frontend

All frontend commands are run from the repository root using Task:

  • task frontend:dev — start Vite dev server (localhost:5173)
  • task frontend:build — production build
  • task frontend:test — run tests
  • task frontend:test:watch — run tests in watch mode
  • task frontend:lint — run ESLint + cycle detection
  • task frontend:typecheck — run TypeScript type checking
  • task frontend:check — run typecheck + lint + test
  • task frontend:install — install npm dependencies

For desktop app development, see the Tauri section below.

Layout

frontend/ is a workspace containing one or more apps. Today it holds the PDF editor under frontend/editor/; new apps (the developer portal, etc.) will sit alongside it as siblings. Shared tooling — package.json, node_modules, .storybook/, ESLint, Prettier — lives at frontend/ so every app installs once and lints with the same config.

Environment Variables

The editor's environment variables live in committed .env files at frontend/editor/:

  • .env — used by all builds (core, proprietary, and as the base for desktop/SaaS)
  • .env.desktop — additional vars loaded in desktop (Tauri) mode
  • .env.saas — additional vars loaded in SaaS mode

These files contain non-secret defaults and are checked into Git, so most dev work needs no further setup.

To override values locally (API keys, machine-specific settings), create an uncommitted sibling editor/.env.local / editor/.env.desktop.local / editor/.env.saas.local. Vite automatically layers these on top of the committed files.

Docker Setup

For Docker deployments and configuration, see the Docker README.

Tauri

All desktop tasks are available via Task. From the root of the repo:

Dev

task desktop:dev

This ensures the JLink runtime and backend JAR exist (skipping if already built), then starts Tauri in dev mode.

Build

task desktop:build

This does a full clean rebuild of the backend JAR and JLink runtime, then builds the Tauri app for production.

Platform-specific dev builds are also available:

task desktop:build:dev           # No bundling
task desktop:build:dev:mac       # macOS .app bundle
task desktop:build:dev:windows   # Windows NSIS installer
task desktop:build:dev:linux     # Linux AppImage

You can also run JLink steps individually:

task desktop:jlink          # Build JAR + create JLink runtime
task desktop:jlink:jar      # Build backend JAR only
task desktop:jlink:runtime  # Create JLink custom JRE only
task desktop:jlink:clean    # Remove JLink artifacts

Clean

task desktop:clean

Removes all desktop build artifacts including JLink runtime, bundled JARs, Cargo build, and dist/build directories.