build: unify the gate so root make check covers the backend (closes #16) #38

Open
clawbot wants to merge 1 commits from fix/unify-check-gate into main
30 changed files with 912 additions and 97 deletions

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@@ -6,5 +6,6 @@ jobs:
steps: steps:
# actions/checkout v4.2.2, 2026-02-22 # actions/checkout v4.2.2, 2026-02-22
- uses: actions/checkout@11bd71901bbe5b1630ceea73d27597364c9af683 - uses: actions/checkout@11bd71901bbe5b1630ceea73d27597364c9af683
# script/cibuild builds both images; it is the only build
# step, so how the repo builds stays defined in script/.
- run: script/cibuild - run: script/cibuild
- run: docker build -f Dockerfile.backend .

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@@ -5,10 +5,14 @@ COPY package.json yarn.lock ./
RUN yarn install --frozen-lockfile RUN yarn install --frozen-lockfile
RUN apk add --no-cache git make RUN apk add --no-cache git make
COPY . . COPY . .
# make check runs script/check (test + lint + fmt-check); its test step # make frontend-check runs script/frontend-check (test + lint +
# is the production yarn build, so this both produces dist/ and gates the # fmt-check for the frontend); its test step is the production yarn
# image on lint/fmt-check/test regressions, not merely a broken build. # build, so this both produces dist/ and gates the image on
RUN make check # lint/fmt-check/test regressions, not merely a broken build. It is the
# frontend half of `make check` rather than all of it because this stage
# is a node image with no Go toolchain; the backend half is gated by
# Dockerfile.backend, and script/cibuild builds both images.
RUN make frontend-check
# nginx:stable-alpine as of 2026-02-22 # nginx:stable-alpine as of 2026-02-22
FROM nginx@sha256:15e96e59aa3b0aada3a121296e3bce117721f42d88f5f64217ef4b18f458c6ab FROM nginx@sha256:15e96e59aa3b0aada3a121296e3bce117721f42d88f5f64217ef4b18f458c6ab

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@@ -1,8 +1,10 @@
.PHONY: bootstrap setup dev test lint fmt fmt-check check docker hooks .PHONY: bootstrap setup dev test lint fmt fmt-check check frontend-check \
backend-check docker hooks
# Standard targets are thin shims; the implementations live in script/ # Standard targets are thin shims; the implementations live in script/
# per the scripts-to-rule-them-all pattern (see the Entrypoints section # per the scripts-to-rule-them-all pattern (see the Entrypoints section
# of README.md). # of README.md). test, lint, fmt, fmt-check and check all cover the
# whole repo: the frontend at the root and the Go backend in backend/.
bootstrap: bootstrap:
@script/bootstrap @script/bootstrap
@@ -28,6 +30,15 @@ fmt-check:
check: check:
@script/check @script/check
# Half-repo gates. Used by the two Dockerfiles, whose build stages only
# have the toolchain for their own half; prefer `make check` otherwise.
# Each is named after the script it shims, like every other target here.
frontend-check:
@script/frontend-check
backend-check:
@backend/script/check
docker: docker:
@script/docker @script/docker

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@@ -28,23 +28,64 @@ docker run -p 8080:8080 netwatch
This repository adheres to the This repository adheres to the
[Scripts to Rule Them All](https://github.com/github/scripts-to-rule-them-all) [Scripts to Rule Them All](https://github.com/github/scripts-to-rule-them-all)
standard: normalized scripts in `script/` are the entrypoints for the standard: normalized scripts in `script/` are the entrypoints for the
development workflow, and the Makefile targets are thin shims that call them. We development workflow, and the Makefile targets are thin shims that call them.
provide:
- `script/bootstrap` — install all dependencies (pinned node via nvm if needed, The repo holds two projects: the frontend at the repo root and the Go backend in
yarn via corepack, `yarn install --frozen-lockfile`) `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 version `Dockerfile.backend` pins. Everything not
installed by the system package manager comes from a hash-verified release
archive and is symlinked into `~/.local/bin`, so `make check` works in a plain
shell afterwards
- `script/setup` — make a fresh clone ready for development: bootstrap plus the - `script/setup` — make a fresh clone ready for development: bootstrap plus the
git pre-commit hook git pre-commit hook
- `script/projectname` — print the project name (used for the Docker image tag) - `script/projectname` — print the project name (used for the Docker image tags)
- `script/test` — run the production build as the test (no unit tests yet) - `script/test` — run the whole repo's tests: `script/frontend-test`, then
- `script/lint` — run prettier in check mode `backend/script/test`
- `script/fmt`format all files (writes) - `script/lint`lint the whole repo: `script/frontend-lint`, then
- `script/fmt-check` — check formatting (read-only) `backend/script/lint`
- `script/check` — run test, lint, and fmt-check - `script/fmt` — format the whole repo (writes): `script/frontend-fmt`, then
- `script/docker` — build the Docker image tagged via `script/projectname` `backend/script/fmt`
- `script/cibuild` — CI entrypoint: plain `docker build .` - `script/fmt-check` — check formatting across the whole repo (read-only)
- `script/precommit` — run by the git pre-commit hook; runs `script/check` - `script/check` — run test, lint, and fmt-check; this is the repo-wide gate
- `script/install-precommit` — install the git pre-commit hook - `script/frontend-test` — the frontend's test: the production build (no unit
tests yet)
- `script/frontend-lint` — run prettier in check mode
- `script/frontend-fmt` — format everything prettier understands (writes)
- `script/frontend-fmt-check` — check prettier formatting (read-only)
- `script/frontend-check` — the frontend half of `script/check`, shimmed by
`make frontend-check` and used by `Dockerfile`, whose build stage is a node
image with no Go toolchain. Its mirror `make backend-check` shims to
`backend/script/check`
- `script/docker` — build both images, tagged via `script/projectname`:
`netwatch` from `Dockerfile` and `netwatch-server` from `Dockerfile.backend`
- `script/cibuild` — CI entrypoint: builds both images; the only build step in
the Gitea workflow
- `script/precommit` — run by the git pre-commit hook; runs `script/check`, so a
commit is gated on both halves of the repo
- `script/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` — compile `netwatch-server` with version and
architecture stamped in
- `backend/script/test` — run the Go tests under a 30-second timeout
- `backend/script/lint` — assert `.golangci.yml` still matches its pinned
sha256, then run golangci-lint
- `backend/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-check
- `backend/script/run` — build and run the server locally
- `backend/script/clean` — remove build artifacts
## Rationale ## Rationale

14
TODO.md
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@@ -22,6 +22,20 @@ files, so merging it also closes most compliance gaps.
# Completed Steps # Completed Steps
- 2026-08-09: unified the gate: the root `make check` now covers the Go backend
as well as the frontend, the backend moved onto scripts-to-rule-them-all
(`backend/script/*` with `backend/Makefile` as thin shims), the duplicate
pre-commit hook installer in `backend/Makefile` was removed, `script/cibuild`
now builds both images as the workflow's only build step, and
`script/bootstrap` provisions the backend toolchain (pinned, hash-verified Go
and golangci-lint) so a fresh clone can pass the widened gate. Bootstrap
matches the Go pin rather than treating it as a floor, because the pinned
golangci-lint cannot analyse packages built by a newer Go; it links only into
`~/.local/bin`, never a system-wide prefix, and refuses to replace anything it
did not create; and it exits non-zero rather than reporting success when the
tools on the caller's `PATH` are not the pinned ones — `gofmt` included, held
to the same version agreement as `go` and relinked on every run so a deleted
link cannot leave another Go's `gofmt` gating the repo
- 2026-07-07 Adopted scripts-to-rule-them-all: `script/` entrypoints, Makefile - 2026-07-07 Adopted scripts-to-rule-them-all: `script/` entrypoints, Makefile
shims, README Entrypoints section shims, README Entrypoints section
- 2026-02-27: backend with buffered zstd-compressed report storage; CI workflow - 2026-02-27: backend with buffered zstd-compressed report storage; CI workflow

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@@ -1,53 +1,38 @@
UNAME_S := $(shell uname -s) # Standard targets are thin shims; the implementations live in
VERSION := $(shell git describe --always --dirty) # backend/script/ per the scripts-to-rule-them-all pattern (see the
BUILDARCH := $(shell uname -m) # Entrypoints section of README.md).
BINARY := netwatch-server #
# There is no `hooks` target here: the repo has exactly one pre-commit
# hook installer, the root `script/install-precommit`, and the hook it
# installs gates both halves of the repo. There is no `docker` target
# either: the backend image is built from Dockerfile.backend with the
# repo root as its context, so it belongs to the root `make docker` and
# `script/cibuild`.
GOLDFLAGS += -X main.Version=$(VERSION) .PHONY: all build test lint fmt fmt-check check run clean
GOLDFLAGS += -X main.Buildarch=$(BUILDARCH)
ifeq ($(UNAME_S),Darwin)
GOFLAGS := -ldflags "$(GOLDFLAGS)"
else
GOFLAGS = -ldflags "-linkmode external -extldflags -static $(GOLDFLAGS)"
endif
.PHONY: all build test lint fmt fmt-check check docker hooks run clean
all: build all: build
build: ./$(BINARY) build:
@script/build
./$(BINARY): $(shell find . -name '*.go' -type f) go.mod go.sum
go build -o $@ $(GOFLAGS) ./cmd/netwatch-server/
test: test:
timeout 30 go test ./... @script/test
lint: lint:
golangci-lint run ./... @script/lint
fmt: fmt:
go fmt ./... @script/fmt
fmt-check: fmt-check:
@test -z "$$(gofmt -l .)" || \ @script/fmt-check
(echo "Files not formatted:"; gofmt -l .; exit 1)
check: test lint fmt-check check:
@script/check
docker: run:
timeout 300 docker build -t netwatch-server -f ../Dockerfile.backend .. @script/run
hooks:
@printf '#!/bin/sh\ncd backend && make check\n' > \
$$(git rev-parse --show-toplevel)/.git/hooks/pre-commit
@chmod +x \
$$(git rev-parse --show-toplevel)/.git/hooks/pre-commit
@echo "Pre-commit hook installed"
run: build
./$(BINARY)
clean: clean:
rm -f ./$(BINARY) @script/clean

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@@ -4,18 +4,54 @@ SPA and persists them as zstd-compressed JSONL files on disk.
## Getting Started ## Getting Started
From this directory (`backend/`):
```bash ```bash
# Build and run locally # Build and run locally
make run make run
# Run tests, lint, and format check # Run the backend's tests, lint, and format check
make check make check
```
# Docker From the repo root, one directory up — `Dockerfile.backend` lives there and its
docker build -t netwatch-server . build context is the repo root, so there is no `docker` target here:
```bash
# Build both images, including netwatch-server
make docker
# Run the backend image
docker run -p 8080:8080 netwatch-server docker run -p 8080:8080 netwatch-server
``` ```
## Entrypoints
This project follows the same
[Scripts to Rule Them All](https://github.com/github/scripts-to-rule-them-all)
pattern as the repo root: the implementations live in `backend/script/` and the
targets in `backend/Makefile` are thin shims that call them. The repo root's
`script/test`, `script/lint`, `script/fmt` and `script/fmt-check` call these
too, so the root `make check` covers the backend.
- `script/build` — compile `netwatch-server` with the version and architecture
stamped in via ldflags (statically linked on Linux)
- `script/test` — run the Go tests under a 30-second timeout
- `script/lint` — assert `.golangci.yml` still matches its pinned sha256, then
run golangci-lint
- `script/fmt` — format the Go sources (writes)
- `script/fmt-check` — check Go formatting (read-only)
- `script/check` — run test, lint, and fmt-check
- `script/run` — build and run the server locally
- `script/clean` — remove build artifacts
There is deliberately no `hooks` target here: the repo has exactly one
pre-commit hook installer, the root `script/install-precommit`, and the hook it
installs runs the root `script/check`, which gates both halves of the repo.
There is no `docker` target either: `Dockerfile.backend` lives at the repo root
and builds with the repo root as its context, so the backend image is built by
the root `make docker` and by `script/cibuild`.
## Rationale ## Rationale
The NetWatch frontend collects latency measurements from the browser but has no The NetWatch frontend collects latency measurements from the browser but has no

27
backend/script/build Executable file
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@@ -0,0 +1,27 @@
#!/bin/sh
# script/build: compile the netwatch-server binary into the backend
# project root. Version and architecture are stamped into the binary via
# ldflags; on Linux the binary is statically linked.
set -eu
ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
BINARY="netwatch-server"
main() {
cd "$ROOT"
# git describe fails outside a working repo (e.g. a source tarball),
# which must not abort the build.
version="$(git describe --always --dirty 2>/dev/null || echo unknown)"
buildarch="$(uname -m)"
ldflags="-X main.Version=$version -X main.Buildarch=$buildarch"
if [ "$(uname -s)" != "Darwin" ]; then
ldflags="-linkmode external -extldflags -static $ldflags"
fi
go build -o "$BINARY" -ldflags "$ldflags" ./cmd/netwatch-server/
}
main "$@"

16
backend/script/check Executable file
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@@ -0,0 +1,16 @@
#!/bin/sh
# script/check: run all backend checks (test, lint, fmt-check). Must not
# modify any files. The root script/check calls this, so the repo-wide
# gate covers the backend.
set -eu
ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
main() {
cd "$ROOT"
"$ROOT/script/test"
"$ROOT/script/lint"
"$ROOT/script/fmt-check"
}
main "$@"

12
backend/script/clean Executable file
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@@ -0,0 +1,12 @@
#!/bin/sh
# script/clean: remove build artifacts.
set -eu
ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
main() {
cd "$ROOT"
rm -f netwatch-server
}
main "$@"

12
backend/script/fmt Executable file
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@@ -0,0 +1,12 @@
#!/bin/sh
# script/fmt: format all Go sources in the backend (writes).
set -eu
ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
main() {
cd "$ROOT"
go fmt ./...
}
main "$@"

18
backend/script/fmt-check Executable file
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@@ -0,0 +1,18 @@
#!/bin/sh
# script/fmt-check: check Go formatting (read-only). Same scope as
# script/fmt, but fails instead of writing.
set -eu
ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
main() {
cd "$ROOT"
unformatted="$(gofmt -l .)"
if [ -n "$unformatted" ]; then
echo "Files not formatted:"
echo "$unformatted"
exit 1
fi
}
main "$@"

56
backend/script/lint Executable file
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@@ -0,0 +1,56 @@
#!/bin/sh
# script/lint: run the Go linter over the backend.
#
# .golangci.yml is standardized org-wide and must never be edited here
# (REPO_POLICIES.md). Its last silent drift replaced the v2 schema with
# v1 keys, which left every threshold in the file inert while the build
# stayed green. This script therefore asserts the file still matches the
# pinned copy byte for byte before the linter runs. The check is a local
# hash comparison: no network, no remote schema, nothing unpinned in the
# build path.
set -eu
ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
# sha256 of the pinned backend/.golangci.yml.
#
# PROVISIONAL. The hash below is the file currently on main, which is
# the schema-invalid v1-keyed config described above: it is pinned only
# so this branch and main stay green, NOT because it is canonical.
#
# The canonical org-wide .golangci.yml is
# 021cc83f4e6fc7c31b95b34b846723dfcf20b66b7baeea1dc40406e643346bcb,
# and PR #31 replaces backend/.golangci.yml with it. When #31 lands,
# GOLANGCI_CONFIG_SHA256 must be updated to that hash in the same
# commit. Until then, do not treat the pinned file as the standard.
GOLANGCI_CONFIG_SHA256="33ba2bf7fe4a44779d09b0fb31d6daf03685f8dc9d2bc417f963d7aabb0d17dc"
# sha256 <file>: print the file's sha256, coreutils or Darwin/busybox.
sha256() {
if command -v sha256sum >/dev/null 2>&1; then
sha256sum "$1" | cut -d' ' -f1
else
shasum -a 256 "$1" | cut -d' ' -f1
fi
}
check_config_hash() {
actual="$(sha256 .golangci.yml)"
if [ "$actual" != "$GOLANGCI_CONFIG_SHA256" ]; then
echo ".golangci.yml has drifted from the pinned config."
echo " expected $GOLANGCI_CONFIG_SHA256"
echo " actual $actual"
echo "Restore it verbatim from sneak/prompts; do not edit it."
echo "Only update GOLANGCI_CONFIG_SHA256 in this script when the"
echo "pinned config is deliberately replaced with a new standard."
exit 1
fi
}
main() {
cd "$ROOT"
check_config_hash
golangci-lint run ./...
}
main "$@"

13
backend/script/run Executable file
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@@ -0,0 +1,13 @@
#!/bin/sh
# script/run: build and run netwatch-server locally.
set -eu
ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
main() {
cd "$ROOT"
"$ROOT/script/build"
exec ./netwatch-server "$@"
}
main "$@"

12
backend/script/test Executable file
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@@ -0,0 +1,12 @@
#!/bin/sh
# script/test: run the backend test suite.
set -eu
ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
main() {
cd "$ROOT"
timeout 30 go test ./...
}
main "$@"

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@@ -5,11 +5,50 @@
# or apk (detected in that order); assumes nothing is present. Node is # or apk (detected in that order); assumes nothing is present. Node is
# used directly if installed; otherwise it is installed at a pinned # used directly if installed; otherwise it is installed at a pinned
# version via nvm (installing nvm itself first, from a hash-verified # version via nvm (installing nvm itself first, from a hash-verified
# release archive, never curl | sh). # release archive, never curl | sh). Go is used directly only if its
# version falls inside the pinned window described at GO_MAX_MINOR below
# -- a newer Go is ignored, not preferred -- and golangci-lint is
# installed at the exact pinned version; both come from hash-verified
# official release archives, never an install script.
#
# The backend's toolchain is bootstrapped here because script/check runs
# backend/script/test and backend/script/lint, so a machine that cannot
# run go and golangci-lint cannot pass the repo-wide gate or the
# pre-commit hook that script/setup installs.
#
# Anything installed outside the system package manager is symlinked
# into ~/.local/bin, so a later `make check` in a plain shell finds it.
# nvm only puts node on PATH for shells that source nvm.sh, which
# neither make nor the git hook does.
#
# Three rules govern what this script is allowed to touch:
#
# 1. Everything it installs itself lands under $HOME, using $TMPDIR
# only for scratch downloads it then deletes. The one exception is
# the system package manager, which it shells out to for base
# tooling (see pkg_install) and which owns those paths already. A
# per-repo bootstrap has no business writing to /usr/local/bin, a
# Homebrew prefix, or any other system-wide location behind that
# package manager's back.
# 2. It never replaces something it did not create. Only a symlink
# that already points into one of its own managed directories is
# overwritten; anything else is left alone and bootstrap exits
# non-zero telling you what to remove.
# 3. It never reports success while the tools a later `make check`
# would pick up are not the ones it provisioned. If it cannot
# guarantee the pinned toolchain wins on your PATH, it exits
# non-zero rather than leaving you a green bootstrap and a broken
# gate.
set -eu set -eu
ROOT="$(cd "$(dirname "$0")/.." && pwd -P)" ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
# The PATH as the caller had it, captured before ensure_bin_dir amends
# it. verify_toolchain checks against this rather than against the PATH
# this script builds for itself, so what it reports is what a later
# `make check` in the user's own shell will actually resolve.
ORIG_PATH="$PATH"
# Pinned versions, 2026-07-07 # Pinned versions, 2026-07-07
NODE_VERSION="22.17.0" NODE_VERSION="22.17.0"
NVM_VERSION="0.40.3" NVM_VERSION="0.40.3"
@@ -17,9 +56,58 @@ NVM_VERSION="0.40.3"
NVM_SHA256="5f4d6aaa04a177dc93c985e31dbc411ab6b8c6e1e21d8015dbc1372625fcd1d0" NVM_SHA256="5f4d6aaa04a177dc93c985e31dbc411ab6b8c6e1e21d8015dbc1372625fcd1d0"
YARN_VERSION="1.22.22" YARN_VERSION="1.22.22"
# Go 1.25.7 (2026-08-09). This is the toolchain inside the pinned
# golang:1.25-alpine builder of Dockerfile.backend, so a local build
# uses the same compiler CI does.
#
# The Go pin is a compatibility constraint to match, not a floor to
# clear. golangci-lint links go/types from the Go release it was built
# with, and go/types refuses to load packages compiled by a newer Go:
# with the pinned linter (built with go1.25.4) and a host Go 1.26,
# `make check` dies with
#
# panic: file requires newer Go version go1.26
# (application built with go1.25)
#
# So an already-installed go is reused only inside a window:
# GO_MIN_VERSION is the floor from backend/go.mod, and GO_MAX_MINOR is
# the major.minor of the Go the pinned golangci-lint was built with.
# Anything outside that window is ignored and GO_VERSION is installed
# instead. GO_MAX_MINOR is therefore coupled to GOLANGCI_LINT_VERSION
# below and must be revisited whenever that pin moves; `golangci-lint
# version` prints the "built with goX.Y.Z" it needs.
GO_VERSION="1.25.7"
GO_MIN_VERSION="1.25.5"
GO_MAX_MINOR="1.25"
# golangci-lint 2.7.2 (2026-08-09). MUST stay equal to the golangci-lint
# pinned in Dockerfile.backend (currently commit
# 9f61b0f53f80672872fced07b6874397c3ed197b, which is tag v2.7.2), so a
# local `make lint` and CI's in-image `make check` report the same
# findings.
#
# Reconciliation note: PR #31 moves Dockerfile.backend to golangci-lint
# v2.12.2, commit c0d3ddc9cf3faa61a4e378e879ece580256d76e5. When that
# lands, GOLANGCI_LINT_VERSION and every hash in golangci_lint_sha256()
# below must be updated to the v2.12.2 release archives in the same
# commit, or local and CI will disagree. GO_MAX_MINOR must move with
# it, to the major.minor that release reports as "built with".
GOLANGCI_LINT_VERSION="2.7.2"
# Where hash-verified archives are unpacked. Version-scoped, so bumping
# a pin installs alongside the old copy instead of half-overwriting it.
# Filled in by main() from script/projectname. TOOLCHAIN is also the
# ownership boundary used by link_bin: a symlink pointing inside it is
# one this script created and may replace.
TOOLCHAIN=""
GO_DIR=""
GOLANGCI_LINT_DIR=""
PKGMGR="" PKGMGR=""
SUDO="" SUDO=""
APT_UPDATED="" APT_UPDATED=""
BIN_DIR=""
NODE_BIN=""
detect_pkgmgr() { detect_pkgmgr() {
[ -n "$PKGMGR" ] && return 0 [ -n "$PKGMGR" ] && return 0
@@ -79,6 +167,119 @@ verify_sha256() {
fi fi
} }
# fetch_verified <url> <expected-hash> <dest>: download a release
# archive and check it against a hash hardcoded in this script before
# anything is unpacked or run. Never pipe a remote script to a shell.
fetch_verified() {
if missing curl; then pkg_install curl curl curl curl; fi
curl -fsSL -o "$3" "$1"
verify_sha256 "$3" "$2"
}
# platform: <os>-<arch> as used in the Go and golangci-lint release
# archive filenames.
platform() {
plat_os="$(uname -s)"
plat_arch="$(uname -m)"
case "$plat_os" in
Linux) plat_os="linux" ;;
Darwin) plat_os="darwin" ;;
*)
echo "bootstrap: unsupported OS $plat_os" >&2
exit 1
;;
esac
case "$plat_arch" in
x86_64 | amd64) plat_arch="amd64" ;;
aarch64 | arm64) plat_arch="arm64" ;;
*)
echo "bootstrap: unsupported architecture $plat_arch" >&2
exit 1
;;
esac
echo "$plat_os-$plat_arch"
}
# ver_ge <have> <want>: succeed if dotted version <have> is at least
# <want>, comparing up to three numeric components.
ver_ge() {
awk -v have="$1" -v want="$2" '
BEGIN {
n = split(have, h, ".")
m = split(want, w, ".")
for (i = 1; i <= 3; i++) {
hv = (i <= n) ? h[i] + 0 : 0
wv = (i <= m) ? w[i] + 0 : 0
if (hv > wv) exit 0
if (hv < wv) exit 1
}
exit 0
}'
}
# ensure_bin_dir: the directory provisioned tools are linked into. It is
# always ~/.local/bin: per-user, never a system-wide or package-manager
# prefix. It is put at the front of PATH for the rest of this run, and
# reported if the caller's own PATH did not already contain it.
ensure_bin_dir() {
[ -n "$BIN_DIR" ] && return 0
BIN_DIR="$HOME/.local/bin"
mkdir -p "$BIN_DIR"
case "$PATH" in
"$BIN_DIR":*) ;;
*)
PATH="$BIN_DIR:$PATH"
export PATH
;;
esac
case ":$ORIG_PATH:" in
*":$BIN_DIR:"*) ;;
*)
echo "bootstrap: add $BIN_DIR to the front of your PATH, e.g." >&2
echo " export PATH=\"\$HOME/.local/bin:\$PATH\"" >&2
;;
esac
}
# owned_path <path>: true when <path> lies inside a directory this
# script provisions, i.e. a link to it is one this script created and
# may replace. Everything else belongs to the user or to a package
# manager and is never touched.
owned_path() {
case "$1" in
"$TOOLCHAIN"/*) return 0 ;;
"$HOME"/.nvm/*) return 0 ;;
*) return 1 ;;
esac
}
# refuse_clobber <path> <what>: report that <path> is not ours and stop.
refuse_clobber() {
echo "bootstrap: $1 already exists and $2." >&2
echo " Refusing to replace something this script did not create." >&2
echo " Remove or rename it and re-run bootstrap." >&2
exit 1
}
# link_bin <target> <name>: idempotently expose one provisioned binary
# on PATH. Only an existing symlink into one of our own directories is
# replaced; a regular file, a directory, or a symlink pointing anywhere
# else is left intact and bootstrap fails.
link_bin() {
ensure_bin_dir
link="$BIN_DIR/$2"
if [ -L "$link" ]; then
existing="$(readlink "$link")"
if ! owned_path "$existing"; then
refuse_clobber "$link" \
"is a symlink to $existing, outside this repo's toolchain"
fi
elif [ -e "$link" ]; then
refuse_clobber "$link" "is not a symlink"
fi
ln -sfn "$1" "$link"
}
# nvm is a bash script; run a command in a bash with nvm loaded # nvm is a bash script; run a command in a bash with nvm loaded
nvm_sh() { nvm_sh() {
bash -c ". \"\$HOME/.nvm/nvm.sh\" && $*" bash -c ". \"\$HOME/.nvm/nvm.sh\" && $*"
@@ -91,9 +292,9 @@ ensure_nvm() {
if missing curl; then pkg_install curl curl curl curl; fi if missing curl; then pkg_install curl curl curl curl; fi
if missing git; then pkg_install git git git git; fi if missing git; then pkg_install git git git git; fi
tmp="$(mktemp -d)" tmp="$(mktemp -d)"
curl -fsSL -o "$tmp/nvm.tar.gz" \ fetch_verified \
"https://github.com/nvm-sh/nvm/archive/refs/tags/v${NVM_VERSION}.tar.gz" "https://github.com/nvm-sh/nvm/archive/refs/tags/v${NVM_VERSION}.tar.gz" \
verify_sha256 "$tmp/nvm.tar.gz" "$NVM_SHA256" "$NVM_SHA256" "$tmp/nvm.tar.gz"
mkdir -p "$HOME/.nvm" mkdir -p "$HOME/.nvm"
tar -xzf "$tmp/nvm.tar.gz" -C "$HOME/.nvm" --strip-components=1 tar -xzf "$tmp/nvm.tar.gz" -C "$HOME/.nvm" --strip-components=1
rm -rf "$tmp" rm -rf "$tmp"
@@ -103,18 +304,37 @@ ensure_node() {
if ! missing node; then return 0; fi if ! missing node; then return 0; fi
ensure_nvm ensure_nvm
nvm_sh "nvm install $NODE_VERSION" nvm_sh "nvm install $NODE_VERSION"
NODE_BIN="$HOME/.nvm/versions/node/v$NODE_VERSION/bin"
for nb in node npm npx corepack; do
if [ -e "$NODE_BIN/$nb" ]; then link_bin "$NODE_BIN/$nb" "$nb"; fi
done
} }
# ensure_yarn: yarn comes from corepack. Left to itself, `corepack
# enable` writes its shims next to the corepack binary it resolved, and
# it writes four of them (yarn, yarnpkg, pnpm, pnpx), not the one asked
# for. --install-directory keeps all four inside this repo's own
# toolchain directory, and only yarn is then linked onto PATH. The
# no-corepack fallback likewise installs into a per-user npm prefix
# under the toolchain directory instead of npm's global one. Nothing
# here writes outside $HOME.
ensure_yarn() { ensure_yarn() {
if ! missing yarn; then return 0; fi if ! missing yarn; then return 0; fi
yarn_bin="$TOOLCHAIN/corepack-shims"
mkdir -p "$yarn_bin"
if ! missing corepack; then if ! missing corepack; then
corepack enable corepack enable --install-directory "$yarn_bin"
corepack prepare "yarn@$YARN_VERSION" --activate corepack prepare "yarn@$YARN_VERSION" --activate
elif [ -s "$HOME/.nvm/nvm.sh" ]; then elif [ -s "$HOME/.nvm/nvm.sh" ]; then
nvm_sh "nvm use $NODE_VERSION >/dev/null && corepack enable && \ nvm_sh "nvm use $NODE_VERSION >/dev/null && \
corepack enable --install-directory \"$yarn_bin\" && \
corepack prepare yarn@$YARN_VERSION --activate" corepack prepare yarn@$YARN_VERSION --activate"
else else
npm install -g "yarn@$YARN_VERSION" yarn_bin="$TOOLCHAIN/npm-global/bin"
npm install -g --prefix "$TOOLCHAIN/npm-global" "yarn@$YARN_VERSION"
fi
if [ -e "$yarn_bin/yarn" ]; then
link_bin "$yarn_bin/yarn" yarn
fi fi
} }
@@ -127,9 +347,247 @@ install_js_deps() {
fi fi
} }
# go_sha256 <platform>: sha256 of
# https://go.dev/dl/go1.25.7.<platform>.tar.gz, from the signed release
# index at https://go.dev/dl/?mode=json (2026-08-09).
go_sha256() {
case "$1" in
linux-amd64)
echo "12e6d6a191091ae27dc31f6efc630e3a3b8ba409baf3573d955b196fdf086005"
;;
linux-arm64)
echo "ba611a53534135a81067240eff9508cd7e256c560edd5d8c2fef54f083c07129"
;;
darwin-amd64)
echo "bf5050a2152f4053837b886e8d9640c829dbacbc3370f913351eb0904cb706f5"
;;
darwin-arm64)
echo "ff18369ffad05c57d5bed888b660b31385f3c913670a83ef557cdfd98ea9ae1b"
;;
*)
echo "bootstrap: no pinned Go archive hash for $1" >&2
exit 1
;;
esac
}
# go_ok: an already-installed go is acceptable only inside the window
# described at GO_MAX_MINOR: at least GO_MIN_VERSION, and no newer in
# major.minor than the Go the pinned golangci-lint was built with. A
# newer host Go is not "good enough", it makes `make check` panic, so it
# is treated exactly like a missing one.
go_ok() {
if missing go; then return 1; fi
have="$(go version 2>/dev/null | awk '{print $3}')"
have="${have#go}"
[ -n "$have" ] || return 1
ver_ge "$have" "$GO_MIN_VERSION" || return 1
ver_ge "$GO_MAX_MINOR" "$(echo "$have" | cut -d. -f1,2)"
}
# gofmt_ok: gofmt is a gate tool -- backend/script/fmt-check runs it --
# and its output is not guaranteed byte-identical across Go releases, so
# a gofmt from a different release than the go that compiles the code is
# treated exactly like a missing one, the same way a mismatched
# golangci-lint is. `go version <file>` prints the toolchain a Go binary
# was built with, so this compares the gofmt that resolves on PATH
# against the go that resolves on PATH, without depending on where
# either one lives. Anything it cannot read -- no go to ask, gofmt
# absent, not a Go binary -- fails closed.
gofmt_ok() {
if missing go; then return 1; fi
if missing gofmt; then return 1; fi
go_have="$(go version 2>/dev/null | awk '{print $3}')"
[ -n "$go_have" ] || return 1
fmt_have="$(go version "$(command -v gofmt)" 2>/dev/null | awk '{print $NF}')"
[ "$fmt_have" = "$go_have" ]
}
# ensure_go: reuse the host toolchain only when the go on PATH is inside
# the window AND a gofmt from that same release is on PATH with it. Both
# link_bin calls sit outside that early return, so whenever the pinned
# toolchain is the one in use they run on every bootstrap, not only on
# the run that unpacked the archive: a deleted or never-created gofmt
# link is restored rather than silently left to some other Go's gofmt.
ensure_go() {
if go_ok && gofmt_ok; then return 0; fi
if [ ! -x "$GO_DIR/bin/go" ]; then
plat="$(platform)"
tmp="$(mktemp -d)"
fetch_verified \
"https://go.dev/dl/go${GO_VERSION}.${plat}.tar.gz" \
"$(go_sha256 "$plat")" "$tmp/go.tar.gz"
rm -rf "$GO_DIR.partial"
mkdir -p "$GO_DIR.partial"
tar -xzf "$tmp/go.tar.gz" -C "$GO_DIR.partial" --strip-components=1
rm -rf "$GO_DIR"
mv "$GO_DIR.partial" "$GO_DIR"
rm -rf "$tmp"
fi
link_bin "$GO_DIR/bin/go" go
link_bin "$GO_DIR/bin/gofmt" gofmt
}
# golangci_lint_sha256 <platform>: sha256 of the golangci-lint 2.7.2
# release archive for that platform, from
# https://github.com/golangci/golangci-lint/releases/download/v2.7.2/golangci-lint-2.7.2-checksums.txt
# (2026-08-09).
golangci_lint_sha256() {
case "$1" in
linux-amd64)
echo "ce46a1f1d890e7b667259f70bb236297f5cf8791a9b6b98b41b283d93b5b6e88"
;;
linux-arm64)
echo "7028e810837722683dab679fb121336cfa303fecff39dfe248e3e36bc18d941b"
;;
darwin-amd64)
echo "6966554840a02229a14c52641bc38c2c7a14d396f4c59ba0c7c8bb0675ca25c9"
;;
darwin-arm64)
echo "6ce86a00e22b3709f7b994838659c322fdc9eae09e263db50439ad4f6ec5785c"
;;
*)
echo "bootstrap: no pinned golangci-lint archive hash for $1" >&2
exit 1
;;
esac
}
# golangci_lint_ok: unlike go, this must be the exact pinned version.
# A different version reports a different set of findings, so local
# results would stop matching what Dockerfile.backend gates on.
golangci_lint_ok() {
if missing golangci-lint; then return 1; fi
have="$(golangci-lint version 2>&1 | awk '
{
for (i = 1; i < NF; i++) {
if ($i == "version") {
v = $(i + 1)
sub(/^v/, "", v)
print v
exit
}
}
}')"
[ "$have" = "$GOLANGCI_LINT_VERSION" ]
}
ensure_golangci_lint() {
if golangci_lint_ok; then return 0; fi
if [ ! -x "$GOLANGCI_LINT_DIR/golangci-lint" ]; then
plat="$(platform)"
base="golangci-lint-${GOLANGCI_LINT_VERSION}-${plat}"
tmp="$(mktemp -d)"
fetch_verified \
"https://github.com/golangci/golangci-lint/releases/download/v${GOLANGCI_LINT_VERSION}/${base}.tar.gz" \
"$(golangci_lint_sha256 "$plat")" "$tmp/golangci-lint.tar.gz"
mkdir -p "$tmp/x"
tar -xzf "$tmp/golangci-lint.tar.gz" -C "$tmp/x" --strip-components=1
rm -rf "$GOLANGCI_LINT_DIR.partial"
mkdir -p "$GOLANGCI_LINT_DIR.partial"
cp "$tmp/x/golangci-lint" "$GOLANGCI_LINT_DIR.partial/golangci-lint"
chmod +x "$GOLANGCI_LINT_DIR.partial/golangci-lint"
rm -rf "$GOLANGCI_LINT_DIR"
mv "$GOLANGCI_LINT_DIR.partial" "$GOLANGCI_LINT_DIR"
rm -rf "$tmp"
fi
link_bin "$GOLANGCI_LINT_DIR/golangci-lint" golangci-lint
}
# verify_toolchain: bootstrap must not exit 0 while the tools the gate
# will actually run are not the provisioned ones. Everything above only
# guarantees the right tools exist and are linked into $BIN_DIR; if
# something earlier on the caller's PATH shadows them, `make check` --
# and the pre-commit hook script/setup installs -- still break, and a
# warning buried in a long bootstrap log is not enough. So the checks
# re-run against the PATH the caller will have (theirs, plus $BIN_DIR at
# the front if bootstrap had to ask for it), and a failure is fatal.
#
# Every gate tool that has a version constraint is checked with the same
# predicate its install used -- go_ok, gofmt_ok, golangci_lint_ok -- not
# with a bare presence test, because a wrong-version gate tool produces
# different results from the one CI runs, which is the failure this
# function exists to prevent. node and yarn have no pinned version to
# disagree about, so presence is the whole constraint for them.
verify_toolchain() {
# BIN_DIR is only set once something needed linking, but the remedy
# text must name a real directory in every reachable state, so fall
# back to the one ensure_bin_dir would have chosen.
bin_dir="${BIN_DIR:-$HOME/.local/bin}"
# Model the PATH the caller will actually have: their own, plus
# $BIN_DIR at the front only if bootstrap linked something there and
# therefore told them to add it.
verify_path="$ORIG_PATH"
if [ -n "$BIN_DIR" ]; then
case ":$ORIG_PATH:" in
*":$BIN_DIR:"*) ;;
*) verify_path="$BIN_DIR:$ORIG_PATH" ;;
esac
fi
saved_path="$PATH"
PATH="$verify_path"
export PATH
bad=""
go_ok || bad="$bad go"
gofmt_ok || bad="$bad gofmt"
golangci_lint_ok || bad="$bad golangci-lint"
for t in node yarn; do
if missing "$t"; then bad="$bad $t"; fi
done
PATH="$saved_path"
export PATH
[ -z "$bad" ] && return 0
# Two different faults land here and they need different remedies: a
# tool that resolves but is the wrong build is being shadowed, and
# telling the user to fix PATH is right; a tool that does not resolve
# at all is not being shadowed by anything, and saying so would send
# them hunting for a conflict that does not exist.
echo "bootstrap: the toolchain on your PATH cannot run the gate." >&2
wrong=""
absent=""
for t in $bad; do
where="$(
export PATH="$verify_path"
command -v "$t" 2>/dev/null || true
)"
if [ -n "$where" ]; then
echo " $t: $where (wrong version)" >&2
wrong="$wrong $t"
else
echo " $t: not found" >&2
absent="$absent $t"
fi
done
echo " The pinned toolchain is linked into $bin_dir." >&2
if [ -n "$wrong" ]; then
echo " The tools shown with a path resolve to a build this" >&2
echo " script did not provision: something earlier on your PATH" >&2
echo " shadows $bin_dir. Put $bin_dir first in" >&2
echo " PATH, or remove the conflicting tool, then re-run." >&2
fi
if [ -n "$absent" ]; then
echo " The tools shown as not found are on no directory of your" >&2
echo " PATH at all, so nothing is shadowing them. Add $bin_dir" >&2
echo " to PATH and re-run; if they are still not found after" >&2
echo " that, bootstrap failed to install them and that is a bug" >&2
echo " in this script, not in your environment." >&2
fi
echo " Failing rather than leaving you a bootstrap that reports" >&2
echo " success and a \`make check\` that does not run." >&2
exit 1
}
main() { main() {
cd "$ROOT" cd "$ROOT"
TOOLCHAIN="$HOME/.local/share/$("$ROOT/script/projectname")/toolchain"
GO_DIR="$TOOLCHAIN/go-$GO_VERSION"
GOLANGCI_LINT_DIR="$TOOLCHAIN/golangci-lint-$GOLANGCI_LINT_VERSION"
if missing make; then pkg_install gnumake make make make; fi if missing make; then pkg_install gnumake make make make; fi
if missing git; then pkg_install git git git git; fi if missing git; then pkg_install git git git git; fi
@@ -137,6 +595,11 @@ main() {
ensure_yarn ensure_yarn
install_js_deps install_js_deps
ensure_go
ensure_golangci_lint
verify_toolchain
echo "bootstrap complete" echo "bootstrap complete"
} }

View File

@@ -1,14 +1,16 @@
#!/bin/sh #!/bin/sh
# script/check: run all checks (test, lint, fmt-check). Our own # script/check: run all checks (test, lint, fmt-check) across the whole
# extension to scripts-to-rule-them-all. Must not modify any files. # repo, frontend and backend. Our own extension to
# scripts-to-rule-them-all. Must not modify any files.
set -eu set -eu
SCRIPT_DIR="$(cd "$(dirname "$0")" && pwd -P)" ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
main() { main() {
"$SCRIPT_DIR/test" cd "$ROOT"
"$SCRIPT_DIR/lint" "$ROOT/script/test"
"$SCRIPT_DIR/fmt-check" "$ROOT/script/lint"
"$ROOT/script/fmt-check"
} }
main "$@" main "$@"

View File

@@ -1,13 +1,24 @@
#!/bin/sh #!/bin/sh
# script/cibuild: run the CI build. The Dockerfile runs make check, so # script/cibuild: run the CI build. It builds every image in the repo:
# a successful build implies all checks pass. # the frontend image from Dockerfile and the backend image from
# Dockerfile.backend. Each Dockerfile runs its half of make check as a
# build step, so a successful cibuild implies the whole repo is green.
# This is the only build step the Gitea workflow runs.
set -eu set -eu
ROOT="$(cd "$(dirname "$0")/.." && pwd -P)" ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
# build_image <dockerfile>: build one image from the repo root context.
# Every docker build CI performs goes through here, so build-wide flags
# only ever have to be added in one place.
build_image() {
timeout 300 docker build -f "$1" .
}
main() { main() {
cd "$ROOT" cd "$ROOT"
docker build . build_image Dockerfile
build_image Dockerfile.backend
} }
main "$@" main "$@"

View File

@@ -1,14 +1,16 @@
#!/bin/sh #!/bin/sh
# script/docker: build the Docker image tagged with the project name. # script/docker: build the repo's Docker images, tagged from
# The tag comes from script/projectname. # script/projectname: the frontend image as <name> and the backend image
# as <name>-server. Both build from the repo root as their context.
set -eu set -eu
SCRIPT_DIR="$(cd "$(dirname "$0")" && pwd -P)" ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
ROOT="$(cd "$SCRIPT_DIR/.." && pwd -P)"
main() { main() {
cd "$ROOT" cd "$ROOT"
timeout 300 docker build -t "$("$SCRIPT_DIR/projectname")" . name="$("$ROOT/script/projectname")"
timeout 300 docker build -t "$name" -f Dockerfile .
timeout 300 docker build -t "$name-server" -f Dockerfile.backend .
} }
main "$@" main "$@"

View File

@@ -1,12 +1,14 @@
#!/bin/sh #!/bin/sh
# script/fmt: format all files (writes). # script/fmt: format the whole repo (writes): prettier over everything
# it understands, then gofmt over the Go backend.
set -eu set -eu
ROOT="$(cd "$(dirname "$0")/.." && pwd -P)" ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
main() { main() {
cd "$ROOT" cd "$ROOT"
yarn prettier --write . "$ROOT/script/frontend-fmt"
"$ROOT/backend/script/fmt"
} }
main "$@" main "$@"

View File

@@ -1,13 +1,14 @@
#!/bin/sh #!/bin/sh
# script/fmt-check: check formatting (read-only). Same scope as # script/fmt-check: check formatting across the whole repo (read-only).
# script/fmt, but fails instead of writing. # Same scope as script/fmt, but fails instead of writing.
set -eu set -eu
ROOT="$(cd "$(dirname "$0")/.." && pwd -P)" ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
main() { main() {
cd "$ROOT" cd "$ROOT"
yarn prettier --check . "$ROOT/script/frontend-fmt-check"
"$ROOT/backend/script/fmt-check"
} }
main "$@" main "$@"

18
script/frontend-check Executable file
View File

@@ -0,0 +1,18 @@
#!/bin/sh
# script/frontend-check: run the frontend half of the checks only (test,
# lint, fmt-check). This exists for the frontend Dockerfile, whose build
# stage is a node image with no Go toolchain; the backend half is gated
# by Dockerfile.backend. Everywhere else, use script/check, which covers
# the whole repo. Must not modify any files.
set -eu
ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
main() {
cd "$ROOT"
"$ROOT/script/frontend-test"
"$ROOT/script/frontend-lint"
"$ROOT/script/frontend-fmt-check"
}
main "$@"

14
script/frontend-fmt Executable file
View File

@@ -0,0 +1,14 @@
#!/bin/sh
# script/frontend-fmt: format the frontend and every other file prettier
# understands, repo-wide (writes). backend/ is in .prettierignore; Go
# sources are formatted by backend/script/fmt.
set -eu
ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
main() {
cd "$ROOT"
yarn prettier --write .
}
main "$@"

13
script/frontend-fmt-check Executable file
View File

@@ -0,0 +1,13 @@
#!/bin/sh
# script/frontend-fmt-check: check prettier formatting (read-only). Same
# scope as script/frontend-fmt, but fails instead of writing.
set -eu
ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
main() {
cd "$ROOT"
yarn prettier --check .
}
main "$@"

12
script/frontend-lint Executable file
View File

@@ -0,0 +1,12 @@
#!/bin/sh
# script/frontend-lint: run the frontend linter (prettier in check mode).
set -eu
ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
main() {
cd "$ROOT"
yarn prettier --check .
}
main "$@"

14
script/frontend-test Executable file
View File

@@ -0,0 +1,14 @@
#!/bin/sh
# 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 yarn build
}
main "$@"

View File

@@ -1,12 +1,14 @@
#!/bin/sh #!/bin/sh
# script/lint: run the linter (prettier in check mode). # script/lint: lint the whole repo: prettier over everything it
# understands, then golangci-lint over the Go backend.
set -eu set -eu
ROOT="$(cd "$(dirname "$0")/.." && pwd -P)" ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
main() { main() {
cd "$ROOT" cd "$ROOT"
yarn prettier --check . "$ROOT/script/frontend-lint"
"$ROOT/backend/script/lint"
} }
main "$@" main "$@"

View File

@@ -3,10 +3,11 @@
# checks fail. Our own extension to scripts-to-rule-them-all. # checks fail. Our own extension to scripts-to-rule-them-all.
set -eu set -eu
SCRIPT_DIR="$(cd "$(dirname "$0")" && pwd -P)" ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
main() { main() {
"$SCRIPT_DIR/check" cd "$ROOT"
"$ROOT/script/check"
} }
main "$@" main "$@"

View File

@@ -3,11 +3,12 @@
# installs dependencies and the git pre-commit hook. # installs dependencies and the git pre-commit hook.
set -eu set -eu
SCRIPT_DIR="$(cd "$(dirname "$0")" && pwd -P)" ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
main() { main() {
"$SCRIPT_DIR/bootstrap" cd "$ROOT"
"$SCRIPT_DIR/install-precommit" "$ROOT/script/bootstrap"
"$ROOT/script/install-precommit"
} }
main "$@" main "$@"

View File

@@ -1,13 +1,14 @@
#!/bin/sh #!/bin/sh
# script/test: run the test suite. This repo has no unit tests; the # script/test: run the test suite for the whole repo: the frontend at
# production build serves as the test (fails on broken code). # the repo root, then the Go backend in backend/.
set -eu set -eu
ROOT="$(cd "$(dirname "$0")/.." && pwd -P)" ROOT="$(cd "$(dirname "$0")/.." && pwd -P)"
main() { main() {
cd "$ROOT" cd "$ROOT"
timeout 30 yarn build "$ROOT/script/frontend-test"
"$ROOT/backend/script/test"
} }
main "$@" main "$@"