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| Author | SHA1 | Date | |
|---|---|---|---|
|
|
871b986978 |
@@ -4,6 +4,3 @@ tmp
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.DS_Store
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*.log
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.claude
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# .git is sent so the build can stamp the version, without its config.
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.git/config
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+6
-23
@@ -20,10 +20,7 @@ RUN make lint
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# golang:1.25-alpine (2026-02-27)
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FROM golang:1.25-alpine@sha256:f6751d823c26342f9506c03797d2527668d095b0a15f1862cddb4d927a7a4ced AS builder
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# gcc and musl-dev are for make test: its race detector needs cgo, which
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# Go turns on by itself once a C compiler is present. make build still
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# sets CGO_ENABLED=0, so the binary stays static.
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RUN apk add --no-cache gcc git make musl-dev
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RUN apk add --no-cache make
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WORKDIR /src
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@@ -40,24 +37,11 @@ RUN make test
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# make build is a shim around backend/script/build, the one definition
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# of the build command:
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# CGO_ENABLED=0 go build -trimpath -ldflags "-s -w -X main.Version=..."
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# CGO_ENABLED=0 go build -trimpath -ldflags "-s -w -X main.Version=... -X main.Buildarch=..."
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# That script reads VERSION from the environment, so it is handed over
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# there rather than as a make variable.
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#
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# The version is the VERSION build argument when one is given, otherwise
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# `git describe --tags --always` of the repo's .git: the tag on a tagged
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# commit, tag-N-gHASH on a commit after one, the short commit when no
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# tag is reachable. A version that still comes out empty, dev or unknown
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# fails the build. .git goes to /git, not /src/.git, where go build would
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# find it and record VCS details of a work tree holding only backend/.
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COPY .git /git
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ARG VERSION
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RUN version="${VERSION:-$(git --git-dir=/git describe --tags --always)}"; \
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case "$version" in ""|dev|unknown) \
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echo "version is '$version' although .git is present" >&2; \
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exit 1 ;; \
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esac; \
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VERSION="$version" make build
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ARG VERSION=dev
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RUN VERSION="${VERSION}" make build
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# Frontend stage
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# node:22-alpine as of 2026-02-22
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@@ -68,9 +52,8 @@ RUN yarn install --frozen-lockfile
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RUN apk add --no-cache git make
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COPY . .
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# make frontend-check is the frontend half of make check (test + lint +
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# fmt-check); its test step runs the unit tests, then the production
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# yarn build, so this both produces dist/ and gates the image on
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# lint/fmt-check/test regressions.
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# fmt-check); its test step is the production yarn build, so this both
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# produces dist/ and gates the image on lint/fmt-check/test regressions.
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# This node stage has neither Go nor Docker; the lint and builder stages
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# above gate the backend half.
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RUN make frontend-check
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@@ -39,23 +39,21 @@ halves, so the root `make check` fails if either one is broken. We provide:
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- `script/bootstrap` — install all dependencies (the pinned node via nvm unless
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one new enough for the frontend's dependencies is installed, yarn via
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corepack, `yarn install --frozen-lockfile`, the pinned Go unless one at least
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as new as `backend/go.mod` asks for is installed, the Go modules, and gcc with
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the C library headers unless gcc is installed, for the race detector in
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`make test`), linking what it installs itself into `~/.local/bin`, which has
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to be on `PATH`. It installs no Go linter and not Docker: `make lint` runs the
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linter in Docker
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as new as `backend/go.mod` asks for is installed, and the Go modules), linking
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what it installs itself into `~/.local/bin`, which has to be on `PATH`. It
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installs no Go linter and not Docker: `make lint` runs the linter in Docker
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- `script/setup` — make a fresh clone ready for development: bootstrap plus the
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git pre-commit hook
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- `script/projectname` — print the project name (used for the Docker image tag)
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- `script/test` — run `script/frontend-test`, then the backend's Go tests, each
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under its own 30-second timeout
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- `script/test` — run `script/frontend-test`, then the backend's Go tests, both
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within one 30-second timeout
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- `script/lint` — run `script/frontend-lint`, then golangci-lint in Docker, by
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building the lint stage of `Dockerfile` without the cache
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- `script/fmt` — format all files (writes): prettier, then gofmt over `backend/`
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- `script/fmt-check` — check formatting (read-only): prettier, then gofmt
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- `script/check` — run test, lint, and fmt-check
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- `script/frontend-test` — run the unit tests in `test/unit/` with Node's
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built-in test runner, then the production build
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- `script/frontend-test` — run the production build as the frontend's test (no
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unit tests yet)
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- `script/frontend-lint` — run prettier in check mode
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- `script/frontend-fmt` — format everything prettier understands (writes)
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- `script/frontend-fmt-check` — check prettier formatting (read-only)
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@@ -104,10 +102,9 @@ code lives in `src/main.js` with a class-based architecture:
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color-coded line segments, error regions, and DPR-aware scaling
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- **UI functions**: `buildUI()` constructs the DOM, `updateHostRow()` /
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`updateSummary()` / `updateHealthBox()` handle incremental updates
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- **`tick()`**: Main loop — measures all hosts in parallel, pushing each host's
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sample and redrawing its row as soon as its check ends, then sorts and redraws
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the summary and health box once the last check ends. When paused, pushes blank
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markers (no probes, no false outage)
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- **`tick()`**: Main loop — measures all hosts in parallel via `Promise.all`,
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pushes samples, redraws UI. When paused, pushes blank markers (no probes, no
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false outage)
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- **`Reporter`**: Posts collected samples to the backend
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### Reporting
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@@ -139,14 +136,8 @@ Local hosts are tracked separately from WAN stats.
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### Latency measurement
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HEAD requests with `mode: 'no-cors'` and `cache: 'no-store'`, timed with
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`performance.now()`. Each check times out after 80% of the refresh interval (24
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seconds at 30 seconds) and is then recorded as a timeout, so a round's checks
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have all finished before the next round is due. When no WAN host answers, a
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recovery probe checks 4 random WAN hosts every half second, giving up the checks
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it started half a second before. As soon as one answers, a new round starts at
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once, as it does after an interval change. A round started early gives up the
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last round's checks if they are still waiting, and that round records nothing
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more, so rounds never overlap. IPv4 only.
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`performance.now()`. 1-second timeout; anything over 1000ms is clamped to
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unreachable. IPv4 only.
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### Color coding
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@@ -23,31 +23,6 @@ latest run passes.
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# Completed Steps
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- 2026-10-03: each target's row shows its result as soon as its check ends
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(issue #91), where every row waited for the round's slowest check, up to 24
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seconds at a 30-second interval. Sorting, the summary, the health box and
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offline detection still run once, when the round's last check ends. A check
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that ends after the user pauses or after its round is given up shows nothing,
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and the first round is still discarded as a whole
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- 2026-10-03: the Go tests run with the race detector and coverage (issue #88):
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`backend/script/test` runs `go test -timeout 30s -race -cover ./...` and, if
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that fails, runs it again with `-v` and fails. Go's `-timeout` bounds the
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tests, not their compile; the root `script/test` no longer puts one 30-second
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timeout around both halves, which a cold Go build cache could use up on
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compiling alone. The race detector needs a C compiler: the builder stage of
|
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`Dockerfile` has gcc and musl-dev, and `script/bootstrap` installs gcc, with
|
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the C library headers on apt and apk, when gcc is missing; the binary is still
|
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built with `CGO_ENABLED=0`. New tests cover the health check's answer, a valid
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report's answer, a report file's exact contents, and the flush when the buffer
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reaches 10 MiB; the handlers' `TestImport` stub is gone
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- 2026-10-03: each target check times out after 80% of the refresh interval
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(issue #78), 24 seconds at 30 seconds, where it was capped at 3 seconds. A
|
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round started early, after an interval change or when the recovery probe finds
|
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a target answering, gives up the last round's checks if they are still
|
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waiting, so rounds never overlap; the recovery probe gives up its own checks
|
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after half a second. The frontend has its first unit tests, run by
|
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`script/frontend-test` with Node's built-in test runner; for them,
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`index.html` now links `src/styles.css`, which `src/main.js` used to import
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- 2026-09-29: the container sets up its own data directory (issue #75):
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`bin/entrypoint.sh`, still as root, creates `DATA_DIR` if missing and gives it
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and `/data` to the `netwatch` user with mode 750 before starting the backend
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+2
-5
@@ -32,13 +32,10 @@ pattern as the repo root: the targets in `backend/Makefile` are thin shims over
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`test`, `fmt` and `fmt-check`:
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- `script/build` — compile the static `netwatch-server` binary with its version
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stamped in. The version is `VERSION` from the environment;
|
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and architecture stamped in. The version is `VERSION` from the environment;
|
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when that is unset or empty, it falls back to `git describe` inside a git
|
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checkout, then to `dev`
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- `script/test` — run the Go tests with the race detector and coverage. Go's
|
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`-timeout 30s` bounds the tests, not their compile. If they fail, they run
|
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again with `-v` for the details, and the script fails. The race detector needs
|
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a C compiler
|
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- `script/test` — run the Go tests under a 30-second timeout
|
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- `script/lint` — check `.golangci.yml` against its pinned sha256, then run
|
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golangci-lint. It runs inside the golangci-lint image of the lint stage of
|
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the root `Dockerfile`; from a checkout, run `make lint` at the repo root,
|
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@@ -19,8 +19,9 @@ import (
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//nolint:gochecknoglobals // set via ldflags at build time
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var (
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Appname = "netwatch-server"
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Version string
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Appname = "netwatch-server"
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Version string
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Buildarch string
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)
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func main() {
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@@ -39,6 +40,7 @@ func main() {
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globals.Appname = Appname
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globals.Version = Version
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globals.Buildarch = Buildarch
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fx.New(
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fx.Provide(
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@@ -10,18 +10,22 @@ var (
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Appname string
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// Version is the git version tag.
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Version string
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// Buildarch is the build architecture.
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Buildarch string
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)
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|
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// Globals holds build-time metadata for the application.
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type Globals struct {
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Appname string
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Version string
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Appname string
|
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Version string
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Buildarch string
|
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}
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|
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// New creates a Globals instance from package-level variables.
|
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func New(_ fx.Lifecycle) (*Globals, error) {
|
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return &Globals{
|
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Appname: Appname,
|
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Version: Version,
|
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Appname: Appname,
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Buildarch: Buildarch,
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Version: Version,
|
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}, nil
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}
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@@ -0,0 +1,13 @@
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package handlers_test
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|
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import (
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"testing"
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|
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_ "sneak.berlin/go/netwatch/internal/handlers"
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)
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|
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func TestImport(t *testing.T) {
|
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t.Parallel()
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// Compilation check — verifies the package parses
|
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// and all imports resolve.
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}
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@@ -1,120 +0,0 @@
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package handlers_test
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|
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import (
|
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"encoding/json"
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"maps"
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"net/http"
|
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"net/http/httptest"
|
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"slices"
|
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"testing"
|
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"time"
|
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|
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"sneak.berlin/go/netwatch/internal/globals"
|
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"sneak.berlin/go/netwatch/internal/handlers"
|
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"sneak.berlin/go/netwatch/internal/healthcheck"
|
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"sneak.berlin/go/netwatch/internal/logger"
|
||||
|
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"go.uber.org/fx/fxtest"
|
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)
|
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|
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// newStartedHandlers builds Handlers with a real health check for the
|
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// server named in g, and starts them, which records the time the
|
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// uptime counts from.
|
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func newStartedHandlers(t *testing.T, g *globals.Globals) *handlers.Handlers {
|
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t.Helper()
|
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|
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lc := fxtest.NewLifecycle(t)
|
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|
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log, err := logger.New(lc, logger.Params{Globals: g})
|
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if err != nil {
|
||||
t.Fatalf("logger: %v", err)
|
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}
|
||||
|
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hc, err := healthcheck.New(lc,
|
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healthcheck.Params{Globals: g, Logger: log})
|
||||
if err != nil {
|
||||
t.Fatalf("health check: %v", err)
|
||||
}
|
||||
|
||||
h, err := handlers.New(lc,
|
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handlers.Params{Globals: g, Healthcheck: hc, Logger: log})
|
||||
if err != nil {
|
||||
t.Fatalf("handlers: %v", err)
|
||||
}
|
||||
|
||||
lc.RequireStart()
|
||||
t.Cleanup(lc.RequireStop)
|
||||
|
||||
return h
|
||||
}
|
||||
|
||||
// TestHandleHealthCheck checks the health check's answer: 200, a JSON
|
||||
// content type, and a JSON object with exactly the fields of
|
||||
// healthcheck.Response, carrying this server's name and version and
|
||||
// an uptime counted from its start.
|
||||
func TestHandleHealthCheck(t *testing.T) {
|
||||
t.Parallel()
|
||||
|
||||
g := &globals.Globals{Appname: "netwatch-server", Version: "v1.2.3"}
|
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h := newStartedHandlers(t, g)
|
||||
|
||||
rec := httptest.NewRecorder()
|
||||
req := httptest.NewRequestWithContext(t.Context(),
|
||||
http.MethodGet, "/.well-known/healthcheck", http.NoBody)
|
||||
|
||||
h.HandleHealthCheck().ServeHTTP(rec, req)
|
||||
|
||||
if rec.Code != http.StatusOK {
|
||||
t.Fatalf("status = %d, want %d", rec.Code, http.StatusOK)
|
||||
}
|
||||
|
||||
contentType := rec.Header().Get("Content-Type")
|
||||
if contentType != "application/json; charset=utf-8" {
|
||||
t.Errorf("Content-Type = %q, want %q",
|
||||
contentType, "application/json; charset=utf-8")
|
||||
}
|
||||
|
||||
var body map[string]any
|
||||
|
||||
err := json.Unmarshal(rec.Body.Bytes(), &body)
|
||||
if err != nil {
|
||||
t.Fatalf("body not a JSON object: %v (%q)", err, rec.Body.String())
|
||||
}
|
||||
|
||||
fields := []string{
|
||||
"appname", "now", "status", "uptimeHuman", "uptimeSeconds", "version",
|
||||
}
|
||||
if got := slices.Sorted(maps.Keys(body)); !slices.Equal(got, fields) {
|
||||
t.Fatalf("fields = %v, want %v", got, fields)
|
||||
}
|
||||
|
||||
for field, want := range map[string]string{
|
||||
"appname": g.Appname, "status": "ok", "version": g.Version,
|
||||
} {
|
||||
if body[field] != want {
|
||||
t.Errorf("%s = %v, want %q", field, body[field], want)
|
||||
}
|
||||
}
|
||||
|
||||
now, _ := body["now"].(string)
|
||||
|
||||
at, err := time.Parse(time.RFC3339Nano, now)
|
||||
if err != nil || time.Since(at).Abs() > time.Minute {
|
||||
t.Errorf("now = %q, want the current time in RFC 3339 (%v)", now, err)
|
||||
}
|
||||
|
||||
// Started just now, so the uptime is well under a minute.
|
||||
human, _ := body["uptimeHuman"].(string)
|
||||
|
||||
uptime, err := time.ParseDuration(human)
|
||||
if err != nil || uptime > time.Minute {
|
||||
t.Errorf("uptimeHuman = %q, want a duration under a minute (%v)",
|
||||
human, err)
|
||||
}
|
||||
|
||||
seconds, ok := body["uptimeSeconds"].(float64)
|
||||
if !ok || seconds < 0 || seconds > time.Minute.Seconds() {
|
||||
t.Errorf("uptimeSeconds = %v, want a number of seconds under a minute",
|
||||
body["uptimeSeconds"])
|
||||
}
|
||||
}
|
||||
@@ -46,63 +46,6 @@ func decodeStatus(t *testing.T, body []byte) string {
|
||||
return resp.Status
|
||||
}
|
||||
|
||||
// TestHandleReportAcceptsValidReports checks the answer to a valid
|
||||
// report, one with no hosts and one shaped as the frontend sends them:
|
||||
// 200 and {"status":"ok"} as JSON.
|
||||
func TestHandleReportAcceptsValidReports(t *testing.T) {
|
||||
t.Parallel()
|
||||
|
||||
tests := []struct {
|
||||
name string
|
||||
body string
|
||||
}{
|
||||
{
|
||||
name: "no hosts",
|
||||
body: `{"clientId":"c1","geo":null,"hosts":[],` +
|
||||
`"timestamp":"2026-10-03T12:00:00.000Z"}`,
|
||||
},
|
||||
{
|
||||
name: "a host with a latency and an error sample",
|
||||
body: `{"clientId":"c1","geo":null,"hosts":[{` +
|
||||
`"name":"Example","url":"https://example.com/",` +
|
||||
`"status":"error","history":[` +
|
||||
`{"t":1790000000000,"latency":42,"error":null},` +
|
||||
`{"t":1790000003000,"latency":null,"error":"timeout"}]}],` +
|
||||
`"timestamp":"2026-10-03T12:00:00.000Z"}`,
|
||||
},
|
||||
}
|
||||
|
||||
for _, tt := range tests {
|
||||
t.Run(tt.name, func(t *testing.T) {
|
||||
t.Parallel()
|
||||
|
||||
h := newTestHandlers(stubAppender{}, io.Discard)
|
||||
|
||||
rec := httptest.NewRecorder()
|
||||
req := httptest.NewRequestWithContext(t.Context(),
|
||||
http.MethodPost, "/api/v1/reports",
|
||||
strings.NewReader(tt.body),
|
||||
)
|
||||
|
||||
h.HandleReport().ServeHTTP(rec, req)
|
||||
|
||||
if rec.Code != http.StatusOK {
|
||||
t.Fatalf("status = %d, want %d", rec.Code, http.StatusOK)
|
||||
}
|
||||
|
||||
contentType := rec.Header().Get("Content-Type")
|
||||
if contentType != "application/json; charset=utf-8" {
|
||||
t.Errorf("Content-Type = %q, want %q",
|
||||
contentType, "application/json; charset=utf-8")
|
||||
}
|
||||
|
||||
if got := rec.Body.String(); got != "{\"status\":\"ok\"}\n" {
|
||||
t.Errorf("body = %q, want %q", got, "{\"status\":\"ok\"}\n")
|
||||
}
|
||||
})
|
||||
}
|
||||
}
|
||||
|
||||
func TestHandleReportStorageFailureIsNon2xx(t *testing.T) {
|
||||
t.Parallel()
|
||||
|
||||
|
||||
@@ -5,7 +5,6 @@ package logger
|
||||
import (
|
||||
"log/slog"
|
||||
"os"
|
||||
"runtime"
|
||||
|
||||
"sneak.berlin/go/netwatch/internal/globals"
|
||||
|
||||
@@ -96,6 +95,6 @@ func (l *Logger) Identify() {
|
||||
l.log.Info("starting",
|
||||
"appname", l.params.Globals.Appname,
|
||||
"version", l.params.Globals.Version,
|
||||
"arch", runtime.GOARCH,
|
||||
"buildarch", l.params.Globals.Buildarch,
|
||||
)
|
||||
}
|
||||
|
||||
@@ -2,10 +2,6 @@ package reportbuf
|
||||
|
||||
import "time"
|
||||
|
||||
// FlushSizeThreshold exposes the buffer size at which Append starts
|
||||
// writing a report file to the external tests.
|
||||
const FlushSizeThreshold = flushSizeThreshold
|
||||
|
||||
// Flush writes the buffered reports to a file now, as the periodic
|
||||
// flush does, so tests need not wait a minute for it.
|
||||
func (b *Buffer) Flush() error {
|
||||
|
||||
@@ -334,11 +334,7 @@ func TestTwoFlushesInOneMillisecond(t *testing.T) {
|
||||
}
|
||||
}
|
||||
|
||||
files, err := readReportFiles(dir)
|
||||
if err != nil {
|
||||
t.Fatalf("read report files: %v", err)
|
||||
}
|
||||
|
||||
files := readReportFiles(t, dir)
|
||||
if len(files) != flushes {
|
||||
t.Fatalf("%d report files after %d flushes", len(files), flushes)
|
||||
}
|
||||
@@ -351,88 +347,6 @@ func TestTwoFlushesInOneMillisecond(t *testing.T) {
|
||||
}
|
||||
}
|
||||
|
||||
// TestReportFileHoldsTheLinesAppended flushes three reports and reads
|
||||
// their file back: it must decompress to exactly their JSON lines, in
|
||||
// the order they were appended.
|
||||
func TestReportFileHoldsTheLinesAppended(t *testing.T) {
|
||||
dir := t.TempDir()
|
||||
t.Setenv("DATA_DIR", dir)
|
||||
|
||||
buf := startBuffer(t)
|
||||
|
||||
for _, id := range []int{1, 2, 3} {
|
||||
err := buf.Append(map[string]int{"id": id})
|
||||
if err != nil {
|
||||
t.Fatalf("append report %d: %v", id, err)
|
||||
}
|
||||
}
|
||||
|
||||
err := buf.Flush()
|
||||
if err != nil {
|
||||
t.Fatalf("flush: %v", err)
|
||||
}
|
||||
|
||||
files, err := readReportFiles(dir)
|
||||
if err != nil {
|
||||
t.Fatalf("read report files: %v", err)
|
||||
}
|
||||
|
||||
want := `{"id":1}` + "\n" + `{"id":2}` + "\n" + `{"id":3}` + "\n"
|
||||
if len(files) != 1 || files[0] != want {
|
||||
t.Fatalf("report files = %q, want one holding %q", files, want)
|
||||
}
|
||||
}
|
||||
|
||||
// TestFlushAtSizeThreshold appends reports until the buffer holds
|
||||
// FlushSizeThreshold bytes. The append that gets it there must write
|
||||
// them all to one report file, with no call to Flush and the periodic
|
||||
// flush a minute away, and no earlier append may write one.
|
||||
func TestFlushAtSizeThreshold(t *testing.T) {
|
||||
dir := t.TempDir()
|
||||
t.Setenv("DATA_DIR", dir)
|
||||
|
||||
buf := startBuffer(t)
|
||||
|
||||
// Large reports, so the threshold takes a few hundred appends.
|
||||
pad := strings.Repeat("a", 64<<10)
|
||||
|
||||
var appended strings.Builder
|
||||
|
||||
for id := 0; appended.Len() < reportbuf.FlushSizeThreshold; id++ {
|
||||
report := map[string]any{"id": id, "pad": pad}
|
||||
|
||||
err := buf.Append(report)
|
||||
if err != nil {
|
||||
t.Fatalf("append report %d: %v", id, err)
|
||||
}
|
||||
|
||||
line, err := json.Marshal(report)
|
||||
if err != nil {
|
||||
t.Fatalf("marshal report %d: %v", id, err)
|
||||
}
|
||||
|
||||
appended.Write(line)
|
||||
appended.WriteByte('\n')
|
||||
}
|
||||
|
||||
// Append writes the file in the background, so wait for it.
|
||||
deadline := time.Now().Add(10 * time.Second)
|
||||
|
||||
for {
|
||||
files, err := readReportFiles(dir)
|
||||
if err == nil && len(files) == 1 && files[0] == appended.String() {
|
||||
return
|
||||
}
|
||||
|
||||
if time.Now().After(deadline) {
|
||||
t.Fatalf("%d report files (error: %v), want one holding the "+
|
||||
"%d bytes appended", len(files), err, appended.Len())
|
||||
}
|
||||
|
||||
time.Sleep(10 * time.Millisecond)
|
||||
}
|
||||
}
|
||||
|
||||
// reportFilesBytes returns the total size of the report files in dir.
|
||||
func reportFilesBytes(t *testing.T, dir string) int64 {
|
||||
t.Helper()
|
||||
@@ -457,19 +371,20 @@ func reportFilesBytes(t *testing.T, dir string) int64 {
|
||||
}
|
||||
|
||||
// readReportFiles returns the decompressed contents of each report
|
||||
// file in dir. A file still being written does not decompress, so it
|
||||
// gives an error.
|
||||
func readReportFiles(dir string) ([]string, error) {
|
||||
// file in dir.
|
||||
func readReportFiles(t *testing.T, dir string) []string {
|
||||
t.Helper()
|
||||
|
||||
files := os.DirFS(dir)
|
||||
|
||||
names, err := fs.Glob(files, "reports-*.jsonl.zst")
|
||||
if err != nil {
|
||||
return nil, fmt.Errorf("list report files: %w", err)
|
||||
t.Fatalf("list report files: %v", err)
|
||||
}
|
||||
|
||||
dec, err := zstd.NewReader(nil)
|
||||
if err != nil {
|
||||
return nil, fmt.Errorf("create zstd decoder: %w", err)
|
||||
t.Fatalf("create zstd decoder: %v", err)
|
||||
}
|
||||
defer dec.Close()
|
||||
|
||||
@@ -478,18 +393,18 @@ func readReportFiles(dir string) ([]string, error) {
|
||||
for _, name := range names {
|
||||
compressed, readErr := fs.ReadFile(files, name)
|
||||
if readErr != nil {
|
||||
return nil, fmt.Errorf("read %s: %w", name, readErr)
|
||||
t.Fatalf("read %s: %v", name, readErr)
|
||||
}
|
||||
|
||||
data, decErr := dec.DecodeAll(compressed, nil)
|
||||
if decErr != nil {
|
||||
return nil, fmt.Errorf("decompress %s: %w", name, decErr)
|
||||
t.Fatalf("decompress %s: %v", name, decErr)
|
||||
}
|
||||
|
||||
contents = append(contents, string(data))
|
||||
}
|
||||
|
||||
return contents, nil
|
||||
return contents
|
||||
}
|
||||
|
||||
func writeBytes(t *testing.T, path string, n int) {
|
||||
|
||||
@@ -4,7 +4,6 @@ import (
|
||||
"errors"
|
||||
"net"
|
||||
"net/http"
|
||||
"runtime"
|
||||
"strconv"
|
||||
"time"
|
||||
|
||||
@@ -54,7 +53,7 @@ func (s *Server) listenAndServe() {
|
||||
s.log.Info("http begin listen",
|
||||
"listenaddr", s.httpServer.Addr,
|
||||
"version", s.params.Globals.Version,
|
||||
"arch", runtime.GOARCH,
|
||||
"buildarch", s.params.Globals.Buildarch,
|
||||
)
|
||||
|
||||
err := s.httpServer.ListenAndServe()
|
||||
|
||||
@@ -1,6 +1,6 @@
|
||||
#!/bin/sh
|
||||
# script/build: compile the static netwatch-server binary into the
|
||||
# backend project root, with its version stamped in.
|
||||
# backend project root, with its version and architecture stamped in.
|
||||
set -eu
|
||||
|
||||
ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
|
||||
@@ -14,7 +14,7 @@ main() {
|
||||
version="${VERSION:-$(git describe --always --dirty 2>/dev/null || echo dev)}"
|
||||
|
||||
CGO_ENABLED=0 go build -trimpath \
|
||||
-ldflags "-s -w -X main.Version=$version" \
|
||||
-ldflags "-s -w -X main.Version=$version -X main.Buildarch=$(uname -m)" \
|
||||
-o netwatch-server ./cmd/netwatch-server/
|
||||
}
|
||||
|
||||
|
||||
+2
-10
@@ -1,20 +1,12 @@
|
||||
#!/bin/sh
|
||||
# script/test: run the backend test suite with the race detector and
|
||||
# coverage. Go's own -timeout bounds the tests and not their compile,
|
||||
# so a cold build cache cannot fail it. The race detector needs cgo,
|
||||
# and so a C compiler. If the tests fail, they run again with -v for
|
||||
# the details, and the script fails even if that run passes.
|
||||
# script/test: run the backend test suite.
|
||||
set -eu
|
||||
|
||||
ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
|
||||
|
||||
main() {
|
||||
cd "$ROOT"
|
||||
go test -timeout 30s -race -cover ./... || {
|
||||
echo "--- Rerunning with -v for details ---"
|
||||
go test -timeout 30s -race -v ./...
|
||||
exit 1
|
||||
}
|
||||
timeout 30 go test ./...
|
||||
}
|
||||
|
||||
main "$@"
|
||||
|
||||
@@ -9,9 +9,6 @@
|
||||
type="image/svg+xml"
|
||||
href="data:image/svg+xml,<svg xmlns='http://www.w3.org/2000/svg' viewBox='0 0 100 100'><text y='.9em' font-size='90'>📡</text></svg>"
|
||||
/>
|
||||
<!-- Linked here, not imported by src/main.js, so the unit tests can
|
||||
import that module in Node, which cannot import CSS. -->
|
||||
<link rel="stylesheet" href="/src/styles.css" />
|
||||
</head>
|
||||
<body class="bg-gray-900 text-white min-h-screen">
|
||||
<div id="app"></div>
|
||||
|
||||
+3
-10
@@ -64,8 +64,7 @@ detect_pkgmgr() {
|
||||
fi
|
||||
}
|
||||
|
||||
# pkg_install <nix-attr> <apt-pkgs> <brew-formula> <apk-pkgs>: the apt
|
||||
# and apk arguments may each list several packages, separated by spaces.
|
||||
# pkg_install <nix-attr> <apt-pkg> <brew-formula> <apk-pkg>
|
||||
pkg_install() {
|
||||
detect_pkgmgr
|
||||
case "$PKGMGR" in
|
||||
@@ -75,10 +74,10 @@ pkg_install() {
|
||||
$SUDO env DEBIAN_FRONTEND=noninteractive apt-get update
|
||||
APT_UPDATED=1
|
||||
fi
|
||||
$SUDO env DEBIAN_FRONTEND=noninteractive apt-get install -y $2
|
||||
$SUDO env DEBIAN_FRONTEND=noninteractive apt-get install -y "$2"
|
||||
;;
|
||||
brew) brew install "$3" ;;
|
||||
apk) apk add --no-cache $4 ;;
|
||||
apk) apk add --no-cache "$4" ;;
|
||||
esac
|
||||
}
|
||||
|
||||
@@ -254,12 +253,6 @@ main() {
|
||||
|
||||
if missing make; then pkg_install gnumake make make make; fi
|
||||
if missing git; then pkg_install git git git git; fi
|
||||
# The race detector in make test needs cgo, which Go turns on only
|
||||
# when it finds its C compiler, gcc on Linux. apt and apk ship the C
|
||||
# library headers apart from gcc.
|
||||
if missing gcc; then
|
||||
pkg_install gcc "gcc libc6-dev" gcc "gcc musl-dev"
|
||||
fi
|
||||
|
||||
ensure_node
|
||||
ensure_yarn
|
||||
|
||||
+3
-2
@@ -16,8 +16,9 @@ main() {
|
||||
"$SCRIPT_DIR/check"
|
||||
# Own line: a failing command substitution inside an argument does
|
||||
# not trip `set -e`, so the inline form degrades silently to an
|
||||
# empty constant. The VERSION build argument takes precedence over
|
||||
# the version a build stage derives from the .git in the context.
|
||||
# empty constant. VERSION is computed here because .dockerignore
|
||||
# excludes .git, so `git describe` in a build stage yields an empty
|
||||
# version without failing.
|
||||
version="$(git describe --tags --always --dirty 2>/dev/null || true)"
|
||||
[ -n "$version" ] || version="unknown"
|
||||
docker build --no-cache \
|
||||
|
||||
+3
-2
@@ -12,8 +12,9 @@ main() {
|
||||
cd "$ROOT"
|
||||
# Own line: a failing command substitution inside an argument does
|
||||
# not trip `set -e`, so the inline form degrades silently to an
|
||||
# empty constant. The VERSION build argument takes precedence over
|
||||
# the version a build stage derives from the .git in the context.
|
||||
# empty constant. VERSION is computed here because .dockerignore
|
||||
# excludes .git, so `git describe` in a build stage yields an empty
|
||||
# version without failing.
|
||||
version="$(git describe --tags --always --dirty 2>/dev/null || true)"
|
||||
[ -n "$version" ] || version="unknown"
|
||||
docker build --no-cache \
|
||||
|
||||
@@ -1,14 +1,13 @@
|
||||
#!/bin/sh
|
||||
# script/frontend-test: run the frontend test suite: the unit tests in
|
||||
# test/unit/ with Node's built-in test runner, then the production
|
||||
# build, which fails on broken code.
|
||||
# script/frontend-test: run the frontend test suite. The frontend has no
|
||||
# unit tests; the production build serves as the test (fails on broken
|
||||
# code).
|
||||
set -eu
|
||||
|
||||
ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
|
||||
|
||||
main() {
|
||||
cd "$ROOT"
|
||||
timeout 30 node --test test/unit/*.test.js
|
||||
timeout 30 yarn build
|
||||
}
|
||||
|
||||
|
||||
+3
-6
@@ -1,17 +1,14 @@
|
||||
#!/bin/sh
|
||||
# script/test: run the test suite for the whole repo: the frontend at
|
||||
# the repo root, then the Go backend in backend/. Each half has its own
|
||||
# 30-second limit, and there is none around both: from a cold Go build
|
||||
# cache, compiling the backend's tests with the race detector can take
|
||||
# 30 seconds on its own, and Go's -timeout leaves the compile out.
|
||||
# the repo root, then the Go backend in backend/. Both halves together
|
||||
# get 30 seconds; each also keeps its own limit for the Dockerfiles.
|
||||
set -eu
|
||||
|
||||
ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
|
||||
|
||||
main() {
|
||||
cd "$ROOT"
|
||||
script/frontend-test
|
||||
backend/script/test
|
||||
timeout 30 sh -c 'script/frontend-test && backend/script/test'
|
||||
}
|
||||
|
||||
main "$@"
|
||||
|
||||
+38
-70
@@ -1,14 +1,14 @@
|
||||
import "./styles.css";
|
||||
|
||||
// --- Configuration -----------------------------------------------------------
|
||||
|
||||
// Timing, axis labels, and display constants. A target check times out
|
||||
// after requestTimeout, 80% of updateInterval, so a round's checks have
|
||||
// all finished before the next round is due; latency above maxLatency is
|
||||
// recorded as a timeout. The sparkline Y-axis is capped at
|
||||
// Timing, axis labels, and display constants. Latency above maxLatency is
|
||||
// clamped to "unreachable". The sparkline Y-axis is capped at
|
||||
// graphMaxLatency — values above it pin to the top of the chart but still
|
||||
// display their real value in the latency figure. The history buffer holds
|
||||
// maxHistoryPoints samples (historyDuration / updateInterval).
|
||||
// reportInterval is how often collected samples are POSTed to the backend.
|
||||
export const CONFIG = {
|
||||
const CONFIG = {
|
||||
updateInterval: 3000,
|
||||
maxHistoryPoints: 100,
|
||||
reportInterval: 60000,
|
||||
@@ -16,7 +16,7 @@ export const CONFIG = {
|
||||
return (this.maxHistoryPoints * this.updateInterval) / 1000;
|
||||
},
|
||||
get requestTimeout() {
|
||||
return this.updateInterval * 0.8;
|
||||
return Math.min(this.updateInterval - 100, 3000);
|
||||
},
|
||||
get maxLatency() {
|
||||
return this.requestTimeout;
|
||||
@@ -263,7 +263,7 @@ class HostState {
|
||||
}
|
||||
}
|
||||
|
||||
export class AppState {
|
||||
class AppState {
|
||||
constructor(localHosts) {
|
||||
this.wan = WAN_HOSTS.map(
|
||||
(h) => new HostState(h, h.name === "datavi.be"),
|
||||
@@ -503,16 +503,12 @@ class Reporter {
|
||||
|
||||
// --- Latency Measurement -----------------------------------------------------
|
||||
|
||||
// Checks one target. The check times out after CONFIG.requestTimeout; the
|
||||
// caller can give it up sooner through the optional signal, which also ends
|
||||
// it as a timeout.
|
||||
export async function measureLatency(url, signal) {
|
||||
async function measureLatency(url) {
|
||||
const controller = new AbortController();
|
||||
const timeoutId = setTimeout(
|
||||
() => controller.abort(),
|
||||
CONFIG.requestTimeout,
|
||||
);
|
||||
signal?.addEventListener("abort", () => controller.abort());
|
||||
|
||||
const targetUrl = new URL(url);
|
||||
targetUrl.searchParams.set("_cb", Date.now().toString());
|
||||
@@ -1105,7 +1101,7 @@ function sortAndRebuildWAN(state) {
|
||||
|
||||
// --- Main Loop ---------------------------------------------------------------
|
||||
|
||||
export async function tick(state, signal, onOffline) {
|
||||
async function tick(state, onOffline) {
|
||||
const ts = Date.now();
|
||||
|
||||
if (state.paused) {
|
||||
@@ -1126,27 +1122,12 @@ export async function tick(state, signal, onOffline) {
|
||||
|
||||
log.debug(`Tick #${state.tickCount + 1} started`);
|
||||
|
||||
// Each host's row shows its result as soon as its check ends. The
|
||||
// result is discarded if by then the user has paused or the next round
|
||||
// has given up this one's checks, and in the first tick (tickCount is
|
||||
// still 0), which is discarded as a whole below. The row is looked up
|
||||
// when the check ends, as a pin click may have re-sorted the rows since
|
||||
// the round started.
|
||||
await Promise.all(
|
||||
state.allHosts.map(async (host) => {
|
||||
const r = await measureLatency(host.url, signal);
|
||||
if (state.paused || signal.aborted || state.tickCount === 0) {
|
||||
return;
|
||||
}
|
||||
host.pushSample(ts, r);
|
||||
updateHostRow(host, state.allHosts.indexOf(host));
|
||||
log.debug(`${host.name}: ${r.error ? r.error : r.latency + "ms"}`);
|
||||
}),
|
||||
const results = await Promise.all(
|
||||
state.allHosts.map((h) => measureLatency(h.url)),
|
||||
);
|
||||
|
||||
// User may have paused, or the next round may have given up this
|
||||
// one's checks, while awaiting results — skip the rest of the round
|
||||
if (state.paused || signal.aborted) return;
|
||||
// User may have paused while awaiting results — discard them
|
||||
if (state.paused) return;
|
||||
|
||||
state.tickCount++;
|
||||
|
||||
@@ -1156,6 +1137,13 @@ export async function tick(state, signal, onOffline) {
|
||||
return;
|
||||
}
|
||||
|
||||
state.allHosts.forEach((host, i) => {
|
||||
const r = results[i];
|
||||
host.pushSample(ts, r);
|
||||
updateHostRow(host, i);
|
||||
log.debug(`${host.name}: ${r.error ? r.error : r.latency + "ms"}`);
|
||||
});
|
||||
|
||||
// Sort after the first real check, then every 10 ticks thereafter
|
||||
if (state.tickCount === 2 || state.tickCount % 10 === 1) {
|
||||
sortAndRebuildWAN(state);
|
||||
@@ -1180,10 +1168,9 @@ export async function tick(state, signal, onOffline) {
|
||||
|
||||
// --- Recovery Probe ----------------------------------------------------------
|
||||
|
||||
// When offline, check 4 random WAN hosts every 500ms, giving up the checks
|
||||
// started 500ms before, so at most 4 are ever waiting. As soon as one
|
||||
// answers, stop probing and start a new round at once.
|
||||
function startRecoveryProbe(state, startRounds) {
|
||||
// When offline, rapidly poll 4 random WAN hosts every 500ms. As soon as any
|
||||
// responds, stop probing and fire a normal tick to refresh all hosts.
|
||||
function startRecoveryProbe(state, triggerTick) {
|
||||
if (state._recoveryProbeId) return; // already running
|
||||
const candidates = [...state.wan];
|
||||
for (let i = candidates.length - 1; i > 0; i--) {
|
||||
@@ -1194,18 +1181,15 @@ function startRecoveryProbe(state, startRounds) {
|
||||
log.notice(
|
||||
`Recovery probe started (${canaries.map((h) => h.name).join(", ")})`,
|
||||
);
|
||||
state._recoveryProbeId = setInterval(() => {
|
||||
state._recoveryProbeId = setInterval(async () => {
|
||||
if (state.paused) return;
|
||||
state._recoveryProbeChecks?.abort();
|
||||
const checks = new AbortController();
|
||||
state._recoveryProbeChecks = checks;
|
||||
for (const host of canaries) {
|
||||
measureLatency(host.url, checks.signal).then((r) => {
|
||||
if (r.error !== null || checks.signal.aborted) return;
|
||||
log.notice("Recovery probe: connectivity detected");
|
||||
stopRecoveryProbe(state);
|
||||
startRounds();
|
||||
});
|
||||
const results = await Promise.all(
|
||||
canaries.map((h) => measureLatency(h.url)),
|
||||
);
|
||||
if (results.some((r) => r.error === null)) {
|
||||
log.notice("Recovery probe: connectivity detected");
|
||||
stopRecoveryProbe(state);
|
||||
triggerTick();
|
||||
}
|
||||
}, 500);
|
||||
}
|
||||
@@ -1214,7 +1198,6 @@ function stopRecoveryProbe(state) {
|
||||
if (state._recoveryProbeId) {
|
||||
clearInterval(state._recoveryProbeId);
|
||||
state._recoveryProbeId = null;
|
||||
state._recoveryProbeChecks?.abort();
|
||||
}
|
||||
}
|
||||
|
||||
@@ -1391,34 +1374,18 @@ async function init() {
|
||||
updateClocks();
|
||||
setInterval(updateClocks, 1000);
|
||||
|
||||
// Rounds never overlap: a round first gives up the last round's checks
|
||||
// if they are still waiting, and the last round then records nothing
|
||||
// more. At a steady interval they never are, as they time out at 80% of
|
||||
// it; they can be when a round starts early, after an interval change
|
||||
// or when the recovery probe finds a target answering.
|
||||
let roundChecks = new AbortController();
|
||||
function doTick() {
|
||||
roundChecks.abort();
|
||||
roundChecks = new AbortController();
|
||||
tick(state, roundChecks.signal, () =>
|
||||
startRecoveryProbe(state, startRounds),
|
||||
);
|
||||
tick(state, () => startRecoveryProbe(state, doTick));
|
||||
}
|
||||
|
||||
// Starts a round now and then one every CONFIG.updateInterval.
|
||||
let tickIntervalId;
|
||||
function startRounds() {
|
||||
clearInterval(tickIntervalId);
|
||||
doTick();
|
||||
tickIntervalId = setInterval(doTick, CONFIG.updateInterval);
|
||||
}
|
||||
|
||||
startRounds();
|
||||
doTick();
|
||||
let tickIntervalId = setInterval(doTick, CONFIG.updateInterval);
|
||||
|
||||
document
|
||||
.getElementById("interval-select")
|
||||
.addEventListener("change", (e) => {
|
||||
const newInterval = parseInt(e.target.value, 10);
|
||||
clearInterval(tickIntervalId);
|
||||
CONFIG.updateInterval = newInterval;
|
||||
log.notice(
|
||||
`Interval changed to ${humanDuration(newInterval / 1000)}, history reset`,
|
||||
@@ -1467,7 +1434,8 @@ async function init() {
|
||||
|
||||
// Start immediately with new interval
|
||||
stopRecoveryProbe(state);
|
||||
startRounds();
|
||||
doTick();
|
||||
tickIntervalId = setInterval(doTick, CONFIG.updateInterval);
|
||||
});
|
||||
|
||||
window.addEventListener("resize", () => handleResize(state));
|
||||
@@ -1476,7 +1444,7 @@ async function init() {
|
||||
|
||||
// Bootstrap only when loaded as the page: a real DOM containing the #app
|
||||
// mount point this module renders into. Importing the module in a unit test
|
||||
// (which has no #app) runs nothing, so its exports can be tested in isolation.
|
||||
// (which has no #app) runs nothing, so buildReport can be tested in isolation.
|
||||
if (typeof document !== "undefined" && document.getElementById("app")) {
|
||||
if (document.readyState === "loading") {
|
||||
document.addEventListener("DOMContentLoaded", init);
|
||||
|
||||
@@ -1,122 +0,0 @@
|
||||
// Unit tests for src/main.js, run by script/frontend-test with Node's
|
||||
// built-in test runner. Importing the module does not start the page.
|
||||
|
||||
import { test } from "node:test";
|
||||
import assert from "node:assert/strict";
|
||||
import { AppState, CONFIG, measureLatency, tick } from "../../src/main.js";
|
||||
|
||||
// There is no page here, so the tests stand in for it. The debug log looks
|
||||
// for its panel by id and finds none. Each element of a host's row that
|
||||
// tick draws into is a plain object, made the first time it is looked up
|
||||
// and kept in elements under its selector. Drawing a sparkline does
|
||||
// nothing; it looks for the pixel ratio on window and finds none.
|
||||
const elements = {};
|
||||
const doNothing = () => {};
|
||||
const canvasContext = {
|
||||
clearRect: doNothing,
|
||||
beginPath: doNothing,
|
||||
moveTo: doNothing,
|
||||
lineTo: doNothing,
|
||||
stroke: doNothing,
|
||||
fill: doNothing,
|
||||
fillRect: doNothing,
|
||||
fillText: doNothing,
|
||||
arc: doNothing,
|
||||
};
|
||||
globalThis.window = {};
|
||||
globalThis.document = {
|
||||
getElementById: () => null,
|
||||
querySelector: (selector) =>
|
||||
(elements[selector] ??= { getContext: () => canvasContext }),
|
||||
};
|
||||
|
||||
// What tick last wrote into the latency figure in host's row, or undefined
|
||||
// if it has written nothing there.
|
||||
function latencyFigure(state, host) {
|
||||
const index = state.allHosts.indexOf(host);
|
||||
return elements[`.latency-value[data-host="${index}"]`]?.innerHTML;
|
||||
}
|
||||
|
||||
// Mocks the clock for test t, so that a check lasting seconds takes no real
|
||||
// time, and replaces fetch with targets that each answer after
|
||||
// answerAfter(url) milliseconds of that clock, or never when that is
|
||||
// Infinity. Both are restored when the test ends.
|
||||
function mockTargets(t, answerAfter) {
|
||||
t.mock.timers.enable({ apis: ["setTimeout", "Date"] });
|
||||
t.mock.method(performance, "now", () => Date.now());
|
||||
t.mock.method(
|
||||
globalThis,
|
||||
"fetch",
|
||||
(url, { signal }) =>
|
||||
new Promise((resolve, reject) => {
|
||||
if (answerAfter(url) !== Infinity) {
|
||||
setTimeout(resolve, answerAfter(url));
|
||||
}
|
||||
signal.addEventListener("abort", () => reject(signal.reason));
|
||||
}),
|
||||
);
|
||||
}
|
||||
|
||||
// The result of check if it has ended, otherwise "still waiting".
|
||||
function settled(check) {
|
||||
return Promise.race([
|
||||
check,
|
||||
new Promise((resolve) => setImmediate(resolve, "still waiting")),
|
||||
]);
|
||||
}
|
||||
|
||||
for (const interval of [10000, 30000]) {
|
||||
const timeout = interval * 0.8;
|
||||
// Over 3 seconds, which the timeout used to be capped at.
|
||||
const slowAnswer = timeout - 1000;
|
||||
|
||||
test(`at a ${interval}ms interval, an answer after ${slowAnswer}ms is recorded with its real time`, async (t) => {
|
||||
CONFIG.updateInterval = interval;
|
||||
mockTargets(t, () => slowAnswer);
|
||||
const check = measureLatency("https://target.test");
|
||||
t.mock.timers.tick(slowAnswer);
|
||||
assert.deepEqual(await settled(check), {
|
||||
latency: slowAnswer,
|
||||
error: null,
|
||||
});
|
||||
});
|
||||
|
||||
test(`at a ${interval}ms interval, a target that never answers is recorded as a timeout after ${timeout}ms`, async (t) => {
|
||||
CONFIG.updateInterval = interval;
|
||||
mockTargets(t, () => Infinity);
|
||||
const check = measureLatency("https://target.test");
|
||||
t.mock.timers.tick(timeout - 1);
|
||||
assert.equal(await settled(check), "still waiting");
|
||||
t.mock.timers.tick(1);
|
||||
assert.deepEqual(await settled(check), {
|
||||
latency: null,
|
||||
error: "timeout",
|
||||
});
|
||||
});
|
||||
}
|
||||
|
||||
test("at a 30000ms interval, a target answering after 1000ms shows in its row while another target's check is still waiting", async (t) => {
|
||||
CONFIG.updateInterval = 30000;
|
||||
const state = new AppState([
|
||||
{ name: "Answering", url: "https://answering.test" },
|
||||
]);
|
||||
const answering = state.local[0];
|
||||
const waiting = state.wan[0];
|
||||
// No target but the answering one ever answers.
|
||||
mockTargets(t, (url) => (url.startsWith(answering.url) ? 1000 : Infinity));
|
||||
// The third tick: the first is discarded as a whole, and the second ends
|
||||
// by sorting the rows, which rebuilds a page that is not here.
|
||||
state.tickCount = 2;
|
||||
|
||||
const round = tick(state, new AbortController().signal);
|
||||
t.mock.timers.tick(1000);
|
||||
assert.equal(await settled(round), "still waiting");
|
||||
assert.match(latencyFigure(state, answering), />1000</);
|
||||
assert.equal(latencyFigure(state, waiting), undefined);
|
||||
assert.equal(state.tickCount, 2);
|
||||
|
||||
// The round ends, once, when the last check times out.
|
||||
t.mock.timers.tick(CONFIG.requestTimeout - 1000);
|
||||
assert.notEqual(await settled(round), "still waiting");
|
||||
assert.equal(state.tickCount, 3);
|
||||
});
|
||||
Reference in New Issue
Block a user