Root `make check` only ever ran the frontend, so the "main is always green" policy was satisfied vacuously: the Go backend could be entirely broken and the root gate stayed green. - The backend moves onto scripts-to-rule-them-all. Its test, lint, fmt, fmt-check, build, run and clean implementations now live in `backend/script/`, and `backend/Makefile` is thin shims. The backend is its own project (own module, README, LICENSE, linter config, Dockerfile stage), and `Dockerfile.backend` only copies `backend/` into its builder, so its scripts have to live under `backend/`. - The root `script/test`, `script/lint`, `script/fmt` and `script/fmt-check` now run the frontend step and then the matching `backend/script/*` step, so `script/check` — and therefore the pre-commit hook — gates both halves. The frontend-only steps moved into `script/frontend-*` so nothing is duplicated. - `script/bootstrap` now provisions the backend's toolchain as well, because widening the gate without widening bootstrap left the documented fresh-clone path (`make setup`) installing a pre-commit hook that rejected every commit with `golangci-lint: not found`. golangci-lint is installed at exactly `2.7.2`, the version `Dockerfile.backend` pins, so local findings match CI. Go is reused only when the installed version falls inside a window — at least `backend/go.mod`'s floor, and no newer in major.minor than the Go the pinned linter was built with — otherwise `go1.25.7` is installed. The upper bound is load-bearing: golangci-lint links `go/types` from its own build toolchain, so the pinned `2.7.2` (built with `go1.25.4`) panics with "file requires newer Go version go1.26" against a host Go 1.26, which would leave `make setup` exiting 0 and every commit rejected. Both tools come from a specific release archive whose sha256 is hardcoded here and verified before anything is unpacked — never an install script piped to a shell — and both are symlinked onto `PATH`, since nvm-style activation does not reach `make` or the git hook. - `script/bootstrap` links only into `~/.local/bin` and never into a system-wide prefix. `/usr/local/bin` is shared with other users and with a package manager — on an Intel Mac it is the Homebrew prefix — and pointing an entry there at one user's `$HOME` breaks it for everyone else. It also refuses, non-zero, to replace anything it did not create: only a symlink already pointing into its own toolchain directory is overwritten, so a pre-existing binary is reported rather than deleted. `corepack enable` is given `--install-directory` so its four shims (`yarn`, `yarnpkg`, `pnpm`, `pnpx`) land inside that same toolchain directory instead of beside the corepack binary, and only `yarn` is linked onto `PATH`. - `script/bootstrap` exits non-zero when it cannot guarantee the pinned toolchain is the one the gate will run. Reporting success while knowing a different linter or a newer Go precedes `~/.local/bin` is the same defect this commit exists to remove, so the final step re-resolves `go`, `gofmt`, `golangci-lint`, `node` and `yarn` against the caller's own `PATH` and fails with what it found and how to fix it. The three tools that carry a version constraint are re-checked with the same predicates their installs use, not for bare presence: `gofmt` is a gate tool — `backend/script/fmt-check` runs it — and its output is not guaranteed identical across Go releases, so a `gofmt` built by a different Go than the one that compiles the code counts as missing. `go` and `gofmt` are relinked on every run in which the pinned toolchain is the one in use, rather than only on the run that unpacked the archive, so a deleted link is repaired instead of falling through to whatever `gofmt` the host happens to have. The failure text separates a tool that resolves to the wrong build (something shadows `~/.local/bin`) from one that does not resolve at all (nothing is shadowing it, it was never installed), and always names a real directory rather than interpolating an unset one. - `script/frontend-check` is the frontend half of the gate, exposed as the `frontend-check` target, for the frontend Dockerfile: its build stage is a node image with no Go toolchain. The backend half is gated by `Dockerfile.backend`, and `script/cibuild` builds both images, so the two Dockerfiles together still gate the whole repo. The `backend-check` target is the mirror of it. Both targets are named after the script they shim, like every other target. - `script/cibuild` builds both images through one `build_image` helper, and the Gitea workflow's only build step is `script/cibuild`; the raw `docker build -f Dockerfile.backend .` is gone from the workflow. `script/docker` likewise builds and tags both images. - `backend/Makefile`'s `hooks` target is removed. It wrote the same `.git/hooks/pre-commit` as `script/install-precommit`, so the two clobbered each other and the developer silently ended up gating on only one half of the repo. `script/install-precommit` is now the only installer, and the hook it writes runs the repo-wide `script/check`. - `backend/Makefile`'s `docker` target is removed too: the backend image builds from the repo root with a root-level Dockerfile, so it belongs to the root `script/docker` and `script/cibuild` rather than to a backend script that would have to reach outside `backend/`. - `backend/script/lint` verifies that `.golangci.yml` still matches its pinned sha256 before running the linter. Offline hash comparison, no network. The pin is marked provisional in the file: it is the config currently on `main`, and the comment names PR #31 and the canonical hash that must replace it when #31 lands. - Every script locates the repo root with the mandated `$(cd "$(dirname "$0")/.." && pwd -P)` idiom, `cd`s there, and calls siblings as `"$ROOT/script/<name>"`; the `SCRIPT_DIR` variant is gone. READMEs at the root and in `backend/` document every script, the backend's Getting Started separates commands run from `backend/` from those run at the repo root, and `TODO.md` records the change.
NetWatch is an MIT-licensed JavaScript single-page application by @sneak that provides real-time network latency monitoring to common internet hosts, displayed with color-coded figures and sparkline graphs, served from a static bucket or Docker container.
Getting Started
# Install dependencies
yarn install
# Development server
yarn dev
# Production build
yarn build
# Preview production build
yarn preview
# Docker
docker build -t netwatch .
docker run -p 8080:8080 netwatch
Entrypoints
This repository adheres to the
Scripts to Rule Them All
standard: normalized scripts in script/ are the entrypoints for the
development workflow, and the Makefile targets are thin shims that call them.
The repo holds two projects: the frontend at the repo root and the Go backend in
backend/, which has its own script/ directory and its own shim Makefile. The
root scripts cover both, so make check at the root fails if either half is
broken. We provide:
script/bootstrap— install all dependencies, assuming nothing is present: pinned node via nvm if needed, yarn via corepack,yarn install --frozen-lockfile, and the backend's toolchain — Go (an already-installed Go is reused only when its version falls inside the window the pinned golangci-lint can analyse; a newer Go is ignored, not preferred) and golangci-lint at the versionDockerfile.backendpins. Everything not installed by the system package manager comes from a hash-verified release archive and is symlinked into~/.local/bin, somake checkworks in a plain shell afterwardsscript/setup— make a fresh clone ready for development: bootstrap plus the git pre-commit hookscript/projectname— print the project name (used for the Docker image tags)script/test— run the whole repo's tests:script/frontend-test, thenbackend/script/testscript/lint— lint the whole repo:script/frontend-lint, thenbackend/script/lintscript/fmt— format the whole repo (writes):script/frontend-fmt, thenbackend/script/fmtscript/fmt-check— check formatting across the whole repo (read-only)script/check— run test, lint, and fmt-check; this is the repo-wide gatescript/frontend-test— the frontend's test: the production build (no unit tests yet)script/frontend-lint— run prettier in check modescript/frontend-fmt— format everything prettier understands (writes)script/frontend-fmt-check— check prettier formatting (read-only)script/frontend-check— the frontend half ofscript/check, shimmed bymake frontend-checkand used byDockerfile, whose build stage is a node image with no Go toolchain. Its mirrormake backend-checkshims tobackend/script/checkscript/docker— build both images, tagged viascript/projectname:netwatchfromDockerfileandnetwatch-serverfromDockerfile.backendscript/cibuild— CI entrypoint: builds both images; the only build step in the Gitea workflowscript/precommit— run by the git pre-commit hook; runsscript/check, so a commit is gated on both halves of the reposcript/install-precommit— install the git pre-commit hook; this is the repo's only pre-commit hook installer
The backend's scripts are shimmed by backend/Makefile and are also called by
the root scripts above:
backend/script/build— compilenetwatch-serverwith version and architecture stamped inbackend/script/test— run the Go tests under a 30-second timeoutbackend/script/lint— assert.golangci.ymlstill matches its pinned sha256, then run golangci-lintbackend/script/fmt— format the Go sources (writes)backend/script/fmt-check— check Go formatting (read-only)backend/script/check— run the backend's test, lint, and fmt-checkbackend/script/run— build and run the server locallybackend/script/clean— remove build artifacts
Rationale
When debugging network issues, it's useful to have a persistent at-a-glance view of latency and reachability to multiple well-known internet endpoints. NetWatch provides this as a zero-dependency SPA that can be deployed anywhere static files are served, with no backend required.
Design
The application is a single-page app built with Vite and Tailwind CSS v4. All
code lives in src/main.js with a class-based architecture:
CONFIG: Frozen configuration object (update interval, timeouts, axis ticks, etc.)HostState: Per-host state management — history buffer, latency tracking, status transitionsAppState: Top-level state container — WAN hosts, local hosts, pause state, aggregate statsSparklineRenderer: Canvas 2D sparkline drawing with fixed axes, color-coded line segments, error regions, and DPR-aware scaling- UI functions:
buildUI()constructs the DOM,updateHostRow()/updateSummary()/updateHealthBox()handle incremental updates tick(): Main loop — measures all hosts in parallel viaPromise.all, pushes samples, redraws UI. When paused, pushes blank markers (no probes, no false outage)
Monitoring targets
- 22 WAN hosts: datavi.be, Anthropic API, OpenAI API, AWS Console, GCP Console, Azure, Cloudflare, Fastly, Akamai, GitHub, B2, 7 S3 regional endpoints (Cape Town, London, Bahrain, Tokyo, Sydney, Oregon, São Paulo), 4 GCS locational endpoints (Iowa, Belgium, Singapore, Sydney)
- Local CPE: Cable modem at 192.168.100.1 (always monitored)
- Local Gateway: Auto-detected on startup by probing common default gateway addresses (192.168.1.1, 192.168.0.1, 192.168.8.1, 10.0.0.1); first responder wins. Note: modern browsers enforce Private Network Access restrictions that block public-origin pages from reaching RFC1918 addresses, so local targets only work when NetWatch is served from localhost or a private address.
Local hosts are tracked separately from WAN stats.
Latency measurement
HEAD requests with mode: 'no-cors' and cache: 'no-store', timed with
performance.now(). 1-second timeout; anything over 1000ms is clamped to
unreachable. IPv4 only.
Color coding
| Latency | Color |
|---|---|
| < 50ms | Green |
| < 100ms | Lime |
| < 200ms | Yellow |
| < 500ms | Orange |
| >= 500ms | Red |
| Unreachable | Gray |
Output structure
dist/
├── index.html
└── assets/
├── index-*.css
└── index-*.js
Features
- Real-time monitoring with 2s update interval and 300s history sparklines
- Health indicator: green (HEALTHY) or red (DEGRADED) based on WAN reachability
- Summary stats: reachable count, min/max/avg latency across WAN hosts only
- Fixed chart axes: Y-axis 0–1000ms, X-axis 0–300s
- Color-coded latency figures and sparkline line segments
- Play/pause: pause stops probes but history keeps scrolling (blank gaps, no false outage)
- Clickable service URLs
- Canvas-based sparkline rendering with devicePixelRatio scaling
- Zero runtime dependencies: all resources bundled into build artifacts
Deployment
After running yarn build, deploy the contents of the dist/ directory to any
static file host (S3, GCS, Cloudflare Pages, Vercel, Netlify, GitHub Pages) or
use the Docker image behind a reverse proxy.
The Docker image:
- Listens on port 8080 by default (override with
PORTenv var) - Trusts
X-Forwarded-Forfrom RFC1918 reverse proxies (10/8, 172.16/12, 192.168/16) - Sends access logs to stdout
- Caches static assets with immutable headers
Browser Compatibility
Requires a modern browser with ES modules, Fetch API, Canvas API, and CSS custom properties.
Limitations
- CORS: Some hosts may block cross-origin HEAD requests. The app uses
no-corsmode which allows the request but provides opaque responses. Latency is still measurable based on request timing. - Local gateway: The 192.168.100.1 endpoint requires the host to be accessible from your network.
- Network conditions: Measurements reflect browser-to-endpoint latency, which includes your local network, ISP, and internet routing.
TODO
- Add unit tests
- Add eslint for JS linting (currently lint target runs prettier only)
- Add configurable host list (environment variable or config file)
- Add latency history export (CSV/JSON)
- Add notification/alert when status changes to DEGRADED
License
MIT. See LICENSE.