A data-science environment installing fluksio waited for lxml, aiohttp and the rest of a connector stack it has nothing to talk to. Outbound mail, error reporting and the MQTT and InfluxDB clients moved to `fluksio[server]`, which the image installs; each import is guarded and names the extra. `tenacity` had no import site at all and is gone. 23 fewer packages and the compiled ones among them — a bare `pip install fluksio` still serves, runs every python node, and registers the mqtt and influxdb node types, which only need the library when one is actually built. sentry-sdk arrives anyway underneath `fastapi[standard]`; what changed there is that nothing of ours requires it. The dev environment keeps every extra: the suite exercises the connectors and strict mypy checks their call sites. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_019Hra4ndWMCLU5F3KjUuVAc
217 lines
12 KiB
Makefile
217 lines
12 KiB
Makefile
# ─── Fluksio app Makefile ───
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# Convenience targets for development, testing, linting, and deployment.
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# The workspace root delegates to these (see ../Makefile).
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.PHONY: dev-utils dev dev-local dev-lan rebuild-frontend up down update install dev-backend dev-frontend \
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generate-client sync-example test test-backend test-frontend soak bench-startup lint lint-backend \
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lint-frontend format-frontend umami build docs docs-serve clean help
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COMPOSE_ROOT := $(CURDIR)
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# Explicit project name keeps this stack isolated from the sibling website
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# stack (otherwise both default to "docker", the directory their compose
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# files live in).
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COMPOSE_PROJECT := fluksio-app
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# Compose interpolation needs the project-local .env before reading compose.yml.
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COMPOSE := docker compose -p $(COMPOSE_PROJECT) --env-file $(COMPOSE_ROOT)/.env
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COMPOSE_PROD := $(COMPOSE) -f docker/compose.yml
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# Production also runs autoheal, which restarts the backend when its deep
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# health check fails. It is profile-gated because it mounts the Docker socket.
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COMPOSE_PROD_RUN := $(COMPOSE_PROD) --profile autoheal
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# Host port `make dev-lan` publishes the frontend on.
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APP_PORT ?= 8080
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COMPOSE_DEV := $(COMPOSE_PROD) -f docker/compose.dev.yml
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# Integrated local stack: dev stack wired onto the shared `proxy` network.
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COMPOSE_LOCAL := $(COMPOSE_DEV) -f docker/compose.local.yml
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# Same stack, with the frontend also published on APP_PORT and proxying the API
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# there, for clients that cannot resolve app.$(DOMAIN).
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COMPOSE_LAN := $(COMPOSE_LOCAL) -f docker/compose.lan.yml
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help: ## Show available targets
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@awk 'BEGIN{FS=":.*?## "} /^[a-zA-Z_-]+:.*?##/ {printf " \033[36m%-18s\033[0m %s\n", $$1, $$2}' $(MAKEFILE_LIST)
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# ── Development (Docker) ──────────────────────────────────────────
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# Hostname the local stack is served under. Never .env's DOMAIN: a checkout
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# configured for a deployment carries that deployment's domain, and a local
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# stack started under it answers to the same names the live installation does.
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# Target-specific on purpose — an exported DOMAIN outranks --env-file in
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# compose interpolation, which would put the *production* targets on localhost.
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# `make dev DOMAIN=fluksio.com` still wins.
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dev dev-utils dev-local dev-lan rebuild-frontend: export DOMAIN ?= localhost
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dev-utils: ## Start only the utility containers (proxy, mailcatcher)
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$(COMPOSE_DEV) up --build proxy mailcatcher
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dev: ## Start the full dev stack (includes a local Traefik proxy)
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$(COMPOSE_DEV) up --build
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dev-local: ## Start the integrated local stack (called by the root `make dev`)
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DOMAIN=$${DOMAIN:-localhost} ENVIRONMENT=$${ENVIRONMENT:-local} \
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$(COMPOSE_LOCAL) up --build -d proxy backend frontend docs mailcatcher
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dev-lan: ## Same, plus the app on http://<host-ip>:$(APP_PORT) (no DNS needed)
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DOMAIN=$${DOMAIN:-localhost} ENVIRONMENT=$${ENVIRONMENT:-local} APP_PORT=$(APP_PORT) \
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$(COMPOSE_LAN) up --build -d proxy backend frontend mailcatcher
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# The frontend is an nginx image, so a UI change needs a rebuild. DOMAIN comes
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# off the running stack: VITE_API_URL is baked in at build time, and a rebuild
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# under a different domain leaves the SPA calling an API that answers elsewhere.
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rebuild-frontend: ## Rebuild and restart the local frontend (after a UI change)
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@domain=$$(docker inspect fluksio-app 2>/dev/null \
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| grep -o 'Host(`app\.[^`]*`)' | head -1 | sed 's/Host(`app\.//;s/`)//'); \
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DOMAIN=$${domain:-$$DOMAIN} ENVIRONMENT=$${ENVIRONMENT:-local} \
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$(COMPOSE_LOCAL) up --build -d frontend
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up: ## Start the production stack
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$(COMPOSE_PROD_RUN) up --build -d
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umami: ## Provision + start the optional Umami site-analytics service (idempotent)
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# Guard: the dashboard is internet-facing on analytics.$(DOMAIN); refuse to
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# start when its session-signing secret is unset or still the placeholder.
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@secret=$$(grep -E '^UMAMI_APP_SECRET=' $(COMPOSE_ROOT)/.env 2>/dev/null | head -1 | cut -d= -f2-); \
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if [ -z "$$secret" ] || [ "$$secret" = "changethis" ]; then \
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echo "ERROR: UMAMI_APP_SECRET is empty or 'changethis' in .env — run the workspace root's scripts/setup.sh (or set it: openssl rand -hex 32) before 'make umami'." >&2; \
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exit 1; \
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fi
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# --no-recreate: reuse an already-running db instead of recreating it under
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# the prod compose set, which would blip every service that depends on it.
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$(COMPOSE_PROD) up -d --wait --no-recreate db
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# Least-privilege role owning only the umami database, so the third-party
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# image never holds the shared superuser credentials.
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@pguser=$$(grep -E '^POSTGRES_USER=' $(COMPOSE_ROOT)/.env 2>/dev/null | head -1 | cut -d= -f2-); pguser=$${pguser:-postgres}; \
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role=$$(grep -E '^UMAMI_DB_USER=' $(COMPOSE_ROOT)/.env 2>/dev/null | head -1 | cut -d= -f2-); role=$${role:-umami}; \
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pw=$$(grep -E '^UMAMI_DB_PASSWORD=' $(COMPOSE_ROOT)/.env 2>/dev/null | head -1 | cut -d= -f2-); \
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db=$$(grep -E '^UMAMI_DB=' $(COMPOSE_ROOT)/.env 2>/dev/null | head -1 | cut -d= -f2-); db=$${db:-umami}; \
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if [ -z "$$pw" ] || [ "$$pw" = "changethis" ]; then \
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echo "ERROR: UMAMI_DB_PASSWORD is empty or 'changethis' in .env — run the workspace root's scripts/setup.sh before 'make umami'." >&2; \
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exit 1; \
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fi; \
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$(COMPOSE_PROD) exec -T db psql -v ON_ERROR_STOP=1 -U "$$pguser" -d postgres \
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-v role="$$role" -v pw="$$pw" -v db="$$db" < docker/provision-umami-db.sql
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# --no-deps: only (re)create umami, never restart the shared db underneath it.
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$(COMPOSE_PROD) --profile analytics up -d --no-deps umami
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update: ## Pull, rebuild using the layer cache, and recreate changed containers
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git pull
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$(COMPOSE_PROD_RUN) build
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$(COMPOSE_PROD_RUN) up -d --remove-orphans
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docker image prune -f
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down: ## Stop all running containers
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-$(COMPOSE_LOCAL) down
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-$(COMPOSE_PROD_RUN) down
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# ── Development (local, no Docker) ───────────────────────────────
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# Run `make dev-backend` and `make dev-frontend` in two separate terminals.
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install: ## Install all dependencies (backend + frontend)
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# Every extra: the suite exercises the connectors that moved into
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# `fluksio[server]`, and strict mypy checks their call sites.
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cd backend && uv sync --all-extras
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cd frontend && bun install
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dev-backend: ## Start the FastAPI backend with hot-reload (local)
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cd backend && uv run --all-extras fastapi dev fluksio/main.py
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dev-frontend: ## Start the Vite dev server (local)
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cd frontend && bun dev
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generate-client: ## Regenerate the frontend SDK from the backend's OpenAPI schema
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bash scripts/generate-client.sh
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sync-example: ## Upload `examples/myresearch` the way a data scientist would
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# The same command the docs give, against whichever engine `fluksio login`
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# last talked to. The nodes import the package from this checkout, so the
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# engine has to be one that can see this path.
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cd backend && uv run fluksio sync ../examples/myresearch
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# ── Testing ───────────────────────────────────────────────────────
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test: test-backend test-frontend ## Run all tests (backend + frontend)
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test-backend: ## Run backend tests (pytest + coverage)
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# Its own SQLite file in a temp directory (tests/__init__.py), so this needs
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# nothing running and touches no development data.
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cd backend && uv run --all-extras bash scripts/test.sh
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PW_VERSION = $(shell sed -n 's/.*"@playwright\/test": "[^0-9]*\([0-9.]*\)".*/\1/p' frontend/package.json | head -1)
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# This suite creates and deletes flows, dashboards and users, so the hostname it
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# is pointed at is not taken from any file: it is read off the running stack
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# (the frontend container's own Traefik rule) and mapped onto the local Traefik
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# by address, so DNS never decides. tests/guard.ts is the second line.
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test-frontend: ## Run frontend tests (Playwright e2e) against the local stack
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@ip=$$(docker network inspect proxy \
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--format '{{range .Containers}}{{if eq .Name "fluksio-app-proxy-1"}}{{.IPv4Address}}{{end}}{{end}}' \
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2>/dev/null | cut -d/ -f1); \
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[ -n "$$ip" ] || { echo " ✗ proxy network or Traefik container not found — is the stack up?"; exit 1; }; \
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domain=$$(docker inspect fluksio-app 2>/dev/null \
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| grep -o 'Host(`app\.[^`]*`)' | head -1 | sed 's/Host(`app\.//;s/`)//'); \
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[ -n "$$domain" ] || { echo " ✗ no running app stack to test — 'make dev' first"; exit 1; }; \
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docker run --rm --network proxy --ipc=host \
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--user $$(id -u):$$(id -g) -e HOME=/tmp \
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--add-host app.$$domain:$$ip --add-host api.$$domain:$$ip \
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-v $(COMPOSE_ROOT):/app -w /app/frontend \
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-e PLAYWRIGHT_BASE_URL=http://app.$$domain \
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-e PLAYWRIGHT_API_URL=http://api.$$domain \
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-e HOST_RESOLVER_RULES="MAP app.$$domain $$ip, MAP api.$$domain $$ip" \
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-e CI=$${CI:-1} \
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-e FIRST_SUPERUSER="$$(sed -n 's/^FIRST_SUPERUSER=//p' $(COMPOSE_ROOT)/.env | head -1)" \
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-e FIRST_SUPERUSER_PASSWORD="$$(sed -n 's/^FIRST_SUPERUSER_PASSWORD=//p' $(COMPOSE_ROOT)/.env | head -1)" \
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mcr.microsoft.com/playwright:v$(PW_VERSION)-noble \
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npx playwright test $(PLAYWRIGHT_ARGS)
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# Load and chaos against a *running* stack, never part of `make test`: it
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# restarts this stack's containers. `SOAK_ARGS="--dry-run"` only looks.
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soak: ## Run the soak/chaos harness (SOAK_ARGS="--minutes 30 --scenario redis")
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cd backend && uv run python scripts/soak.py $(SOAK_ARGS)
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bench-startup: ## Time submitting a run (BENCH_ARGS="--kedro ../some/kedro/project")
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cd backend && uv run python scripts/bench_startup.py $(BENCH_ARGS)
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# In-process, so it needs no stack: what a message costs the engine in work
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# and in time. `BENCH_ARGS="--redis <host>"` measures it against a real Redis,
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# which is where the round trips are.
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bench-engine: ## Engine throughput and per-message cost (BENCH_ARGS="--redis localhost")
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cd backend && uv run python scripts/bench_engine.py $(BENCH_ARGS)
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# ── Linting ───────────────────────────────────────────────────────
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build: ## Build the fluksio and fluksio-worker wheels into dist/
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uv build --all-packages --out-dir dist
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lint: lint-backend lint-frontend ## Run all linters
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lint-backend: ## Lint backend with ruff + mypy
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cd backend && uv run --all-extras ruff check .
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cd backend && uv run --all-extras ruff format --check .
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cd backend && uv run --all-extras mypy fluksio
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cd worker && uv run --no-project --with mypy mypy fluksio_worker
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lint-frontend: ## Lint frontend with biome
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cd frontend && bun run lint
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format-frontend: ## Apply biome's fixes to the frontend (what `lint-frontend` only reports)
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cd frontend && bun run format
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# ── Documentation ─────────────────────────────────────────────────
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# The public site on docs.${DOMAIN}, served by the `docs` service in
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# docker/compose.yml. These targets are for local authoring: zensical runs on
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# demand via uvx, so it never touches the backend environment. Pinned to the
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# version docker/Dockerfile.docs and .gitea/workflows/docs.yml ship, so local
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# authoring builds with what docs.fluksio.com actually gets.
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ZENSICAL := zensical==0.0.46
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docs: ## Build the documentation site into ./site
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uvx $(ZENSICAL) build --clean
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docs-serve: ## Serve the documentation site locally with live reload
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uvx $(ZENSICAL) serve
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# ── Cleanup ───────────────────────────────────────────────────────
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clean: ## Remove build artifacts and caches
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rm -rf frontend/dist frontend/blob-report frontend/test-results
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rm -rf backend/.pytest_cache backend/htmlcov site
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find backend -type d -name __pycache__ -exec rm -rf {} + 2>/dev/null || true
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