Agent skill

init-makefiles

Quellcode ansehen: yigitkonur/skills-by-yigitkonur

#201Globales Ranking · von 201 SkillsSafe

Installation

npx skills add yigitkonur/skills-by-yigitkonur --skill init-makefiles

12

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init-makefiles

Make is the project's control plane. Generate one Makefile per app (root + up to 3 sub-Makefiles in monorepos), zero required arguments, scenario-appropriate targets only, with safe replacement of any prior scaffold.

This is the consolidated successor to the old make-local, make-railway, and make-vercel direction. Do not recreate provider-specific Makefile skills — classify the project's scenario here, then generate only the targets that scenario needs.

When to use this skill

Trigger on any of these:

  • "set up make for this project" / "scaffold a Makefile" / "init Makefile targets"
  • "add a make deploy target" / "wire deploy via make" / "give me make local and make prod"
  • "my make local is broken / port-stuck / out of date" — refresh stale targets
  • "this monorepo has three different Makefiles" — unify them under one banner
  • "ship this Mac app to my macbook over rsync" — Scenario G
  • "add make tunnel / make funnel" for Tailscale exposure
  • "sync the AGENTS.md make-targets section" after editing the Makefile
  • "generate the GitHub Actions deploy workflow that backs make deploy"

Do NOT use this skill when:

  • The user wants a one-off shell script — use bash, not make
  • Railway logs, scale, restart, env edits, or ad-hoc CLI ops are the job → use run-railway
  • The job is broad AGENTS hierarchy / REVIEW.md / folder-scoped agent config → use init-agent-config
  • The job is hosted-MCP architecture beyond a local MCP control target → use build-mcp-use-server

Three principles (apply without exception)

  1. Scenarios beat providers. Don't ask "is this a Vercel project?" — ask "what is this project?" The provider stack (Vercel, Railway, Supabase) falls out of the scenario, never the other way around.
  2. Local = real dev builds, never toy builds. Next.js / Turborepo / monorepo projects use the actual dev pipeline. No shortcuts that diverge from production behavior.
  3. Exposure is opt-in. make local binds 127.0.0.1. make local-lan binds 0.0.0.0. make tunnel runs Tailscale Serve (tailnet-only). make funnel is PUBLIC and gated behind explicit PUBLIC_FUNNEL=1. Funnel never enables as a side effect of any other command.

Hard rules baked into every generated Makefile

  • Max 4 Makefiles per project — root + up to 3 app sub-Makefiles. If a monorepo has more apps, ask which three.
  • Every target works with zero arguments. Env vars are overridable (make local PORT=4000) but defaults must work. Sole exception: make supabase-migrate-new name=<n>.
  • Universal preambleSHELL := bash, .SHELLFLAGS := -eu -o pipefail -c, .ONESHELL:, .DELETE_ON_ERROR:, MAKEFLAGS += --warn-undefined-variables --no-builtin-rules, .DEFAULT_GOAL := help. Full preamble in references/makefile-base.md.
  • Port hygiene mandatory — use the _free-port-% helper from references/port-hygiene.md. Only kill our own dev processes (node|next-server|turbo|turbopack|next|bun|deno); refuse foreign holders, suggest +10 port.
  • Localhost binding by default. LAN binding via make local-lan. Tailscale Serve via make tunnel (tailnet-only). Tailscale Funnel via make funnel (PUBLIC, opt-in only).
  • Helper targets prefix with _ (_check-vercel-tokens, _free-port-%, _print-banner-*). They do not appear in make help.
  • Replace, don't edit. Never edit a Makefile incrementally — preview, manifest, snapshot, delete, regenerate. The targeted snapshot commit is the safety net.

Scenario classification

Pick exactly one scenario per deployable app. The seven:

# Scenario Primary signal What's in scope
A Frontend-only next.config.* / vite.config.* / etc.; no backend dir; no Supabase Local, LAN, tunnel; Vercel deploy by default. Cloudflare Pages is opt-in only — switch to it when (and only when) the user explicitly says "Cloudflare", "Pages", "Wrangler", or names the Pages product. Disk signals alone (a stray wrangler.toml for R2/Workers) never flip the default.
B MCP server @modelcontextprotocol/sdk or mcp-use in deps Local; no deploy; inspect target
C Frontend + backend A signals + apps/api (or similar) with Express/Hono/Fastify Frontend + Vercel + Railway
D Frontend + Supabase A signals + @supabase/supabase-js + supabase/ dir Frontend + Vercel + Supabase CLI ops
E Multi-service Railway Multiple service dirs / railway.toml files Railway only; parallel deploy where safe
F Build-artifact Cargo / Go / Swift / native CLI; no HTTP framework, no remote target Build + run locally; no deploy
G MacBook ship .xcodeproj / Package.swift Mac target + remote-Mac SSH alias Build + ship via rsync + atomic swap + verify

For single-app projects, the final classification has one tag. For monorepos, each deployable app gets one tag and the root gets a dominant orchestration tag. Use the supported combined tag C+D only when a custom backend deploys separately and Supabase is also in scope.

If detection is ambiguous → ask one targeted question, never guess. Sample disambiguation prompts in references/scenario-detection.md.

Workflow

1. Inspect (read-only)

Capture the project's state before writing anything:

# Package manager
ls bun.lockb pnpm-lock.yaml yarn.lock package-lock.json 2>/dev/null

# Framework signals (frontend)
ls next.config.* vite.config.* astro.config.* nuxt.config.* svelte.config.* remix.config.* 2>/dev/null

# Supabase
ls supabase/config.toml 2>/dev/null
jq -r '.dependencies | keys[]?' package.json 2>/dev/null | grep -i supabase

# Monorepo
ls turbo.json pnpm-workspace.yaml apps/ packages/ 2>/dev/null
jq -r '.workspaces' package.json 2>/dev/null

# Backend signals
find apps server services -maxdepth 2 -name "package.json" 2>/dev/null | head

# MCP server
jq -r '.dependencies | keys[]?' package.json 2>/dev/null | grep -E 'modelcontextprotocol|mcp-use'

# Mac signals
ls *.xcodeproj *.xcworkspace Package.swift Info.plist 2>/dev/null

# Existing Make scaffolding
ls Makefile *.mk scripts/dev.sh scripts/deploy.sh 2>/dev/null
find . -maxdepth 3 -name "Makefile" -not -path "./node_modules/*"

# AGENTS.md / CLAUDE.md state
ls -la AGENTS.md CLAUDE.md 2>/dev/null

Then run the bundled detector for a second, low-freedom signal pass. Resolve scripts/scenario-detect.sh relative to this skill directory and pass the downstream project root:

bash scripts/scenario-detect.sh /path/to/project

The detector is read-only and heuristic-only; it prints observed signals and candidate scenarios, not the final answer. Full detection cheat sheet in references/scenario-detection.md; detector implementation notes in scripts/scenario-detect.md.

If a precondition fails (no package.json, no dev script, no SSH alias for Mac scenario), surface it before generating. Do not generate something that breaks on first run.

2. Classify and announce

Before generating files, print this block:

Scenario: <A-G, or C+D for supported combined shape>
Scope: <repo root or per-app paths>
Confidence: <high|medium>
Signals: <observed files/deps/commands>
Excluded scenarios: <why the near misses were rejected>
Provider scope: <Vercel/Railway/Supabase/MacBook/local-only>
Makefiles to generate: <root + app paths, max 4>
Ambiguity resolved: <none or the answered question>

3. Preview and read existing scaffolding

Run the bundled wipe preview before touching files. Resolve scripts/preview-makefile-wipe.sh relative to this skill directory and pass the downstream project root:

bash scripts/preview-makefile-wipe.sh /path/to/project
bash scripts/preview-makefile-wipe.sh /path/to/project --paths-only > /tmp/init-makefiles-candidates.txt

The script is read-only. It prints exact paths, match reasons, tracked state, and uncommitted status; implementation notes live in scripts/preview-makefile-wipe.md.

For every candidate Makefile, *.mk, make-*.sh, scripts/dev.sh, and scripts/deploy.sh: read the file before classifying it as scaffold. Note useful patterns the user encoded (custom env handling, project-specific port choices, framework-specific dev commands) — those inform regenerated targets.

Write a deletion manifest containing only paths approved for replacement:

DELETION_MANIFEST=/tmp/init-makefiles-delete-manifest.txt
# write one approved path per line, exactly as printed by the preview

Refuse to continue if a candidate has uncommitted non-scaffold edits the agent cannot classify. If unrelated dirty files exist, leave them untouched and state that they were not snapshotted.

4. Snapshot and wipe from manifest

Create a targeted snapshot commit before deletion. Stage only manifest paths:

git status --porcelain
while IFS= read -r path; do
  [ -n "$path" ] || continue
  git add -- "$path"
done < "$DELETION_MANIFEST"
git commit -m "chore(make): snapshot existing scaffold before init-makefiles regen"

Never use git add -A for the snapshot. Never auto-commit unrelated work.

Print recovery before deleting:

SNAPSHOT_SHA=$(git rev-parse --short HEAD)
printf 'Recovery: git revert %s\n' "$SNAPSHOT_SHA"
printf 'Single file: git restore --source=%s -- path/to/Makefile\n' "$SNAPSHOT_SHA"

Delete only manifest paths:

while IFS= read -r path; do
  [ -n "$path" ] || continue
  rm -f -- "$path"
done < "$DELETION_MANIFEST"

5. Generate core Makefiles

Compose the new Makefile(s) from the scenario's references:

  • Universal preamble + ANSI palette + helper conventions: references/makefile-base.md (every Makefile uses this)
  • Scenario A / C / D frontend targets (default for Scenario A): references/makefile-frontend.md (local, local-lan, tunnel, deploy-vercel, verify, env-pull, build-check)
  • Scenario A — Cloudflare Pages variant (opt-in only, when the user explicitly mentions Cloudflare / Pages / Wrangler): references/makefile-cloudflare-pages.md (deploy-cloudflare, cf-project-init, cf-list, cf-tail, _redirects, Pages 25 MiB/file + 20k-file limits)
  • R2 media bucket — single-file ops, CORS, hardlink staging, rclone bulk copy (≤20 transfers), wrangler-OAuth fallback: references/makefile-r2-bulk.md (orthogonal — works regardless of whether the frontend is hosted on Vercel or Pages, opt-in when R2 is part of the workflow)
  • Scenario C / E backend targets: references/makefile-backend.md (Railway deploy, multi-service parallel, healthcheck rules, railway.toml baseline)
  • Scenario D Supabase targets: references/makefile-supabase.md (supabase-link, -migrate-*, -functions, -types, -secrets-*)
  • Scenario G ship pipeline: references/makefile-macbook.md (preflights, rsync, atomic swap, kill-then-launch, verify)
  • Monorepo delegation and 4-file ceiling: references/makefile-monorepo.md

Always pull tunnel/funnel rules from references/tailscale-funnel-rules.md (macOS DNS quirks, Funnel port restrictions, ACL preflight) and port-kill behavior from references/port-hygiene.md (kill-only-our-own pattern, default-port squat list, SIGTERM-then-SIGKILL escalation).

Env conventions per scenario live in references/env-vars-conventions.md (.env.local vs .env.railway, Vercel sensitivity defaults, Railway built-in vars).

6. Update AGENTS.md / CLAUDE.md

Apply the 5-state machine in references/agents-md-update.md. The contract:

  • AGENTS.md is the source of truth
  • CLAUDE.md is a symlink → AGENTS.md (or absent)
  • Only the downstream project's ## Make targets section is written/updated, listing every generated target, env-var knob, and what the skill will and will not do
  • Same-directory CLAUDE.md → AGENTS.md compatibility links are in scope
  • Hand-written ## Make targets sections require explicit replacement consent
  • Skip the rewrite if the existing section is already accurate (no churn)
  • Broad AGENTS-first governance, nested folder instructions, and REVIEW.md remain the job of init-agent-config

7. Verify core generation

Run the verification ladder in references/verification-ladder.md. The skill claims at most rung 5 (external curl from this machine, no proxy). Rung 6 (independent client — phone on cellular) is a manual user step printed in the post-deploy banner.

Per scenario:

  • A / C / D: make local opens browser; make deploy returns Ready URL; make verify HTTP-probes
  • B: make local starts MCP on 127.0.0.1:<port>; make inspect returns tool schema
  • E: make deploy-all deploys services in parallel; make verify HTTP-probes each
  • F: make build produces a binary; ./build/<name> --version runs without error
  • G: make ship rsyncs and pgrep -x "$(APP_NAME)" returns a PID after sleep 2

Core generation is complete when Makefiles, AGENTS.md sync, and verification are done. The skill remains useful and complete if CI/CD is declined.

8. Optional — CI/CD

Ask first: "Generate GitHub Actions deploy wiring locally? (y/n)". If yes, follow references/ci-cd-workflow.md:

  1. Detect GitHub repo via gh repo view --json nameWithOwner -q .nameWithOwner
  2. Generate .github/workflows/deploy.yml for the providers in scope only
  3. Prompt user for ONLY the tokens needed (Vercel / Railway / Supabase)
  4. gh secret set <NAME> --body "$pasted" for each required secret
  5. Verify required secrets by name with gh secret list
  6. Commit the workflow locally
  7. Ask for explicit push authorization
  8. Push only after that authorization; never force-push

If declined, leave .github/workflows/ untouched. No half-baked YAML.

Decision rules

  • Localhost-only by default. make local binds 127.0.0.1. LAN exposure must be explicit (make local-lan).
  • Funnel never auto-enables. make funnel is the only target that uses Funnel, and only with PUBLIC_FUNNEL=1.
  • Backends don't run locally by default. Local hosts the frontend or an MCP server. Backend stays remote in dev unless LOCAL_BACKEND=1 is set explicitly.
  • Provider scope is conditional. Vercel only if there's a frontend. Railway only if there's a custom backend. Supabase only if supabase/ exists. MacBook only if a Mac project + remote-Mac target.
  • No improvised commands. Inspect first; pick the canonical command from the relevant reference.
  • Replace before regenerating. Preview, read, manifest, targeted snapshot, print recovery, then delete only manifest paths. Never edit Makefiles incrementally.
  • Max 4 Makefiles. Ask if there are more apps than slots.
  • Detection ambiguous → ask one question, never guess.

Recovery from wipe

git log --oneline -- Makefile
git show --stat <snapshot-sha>
git revert <snapshot-sha>
# or restore a single file:
git restore --source=<snapshot-sha> -- path/to/Makefile

Failure modes (and where to fix them)

Symptom Cause Fix
make local fails with "port :PORT held by orbstack" Foreign port holder; refused per port-hygiene rule Pick a different port (make local PORT=4000); don't kill OrbStack
make tunnel reports "tailscale not signed in" Tailscale daemon up but account not linked tailscale up interactively; this skill assumes Tailscale is signed in
make deploy-vercel fails with "Project not found" .vercel/project.json missing or wrong project name Re-run vercel link --yes --project <name> --token=$VERCEL_TOKEN
make deploy-railway returns 502 "Application Failed to Respond" App listens on localhost:3000 not 0.0.0.0:$PORT Fix app's bind address; redeploy
make supabase-migrate-apply no-ops with "no migrations to apply" Migration files already in remote history Run make supabase-pull to detect drift
make ship fails preflight with "ssh alias not found" Host macbook not in ~/.ssh/config Add the Host block; make ship re-checks
AGENTS.md and CLAUDE.md both exist with different content State 1 of the symlink machine Skill prompts user; merges into AGENTS.md per references/agents-md-update.md
gh secret set fails with "auth required" Not authenticated gh auth login; CI/CD step re-runs
Vercel build fails with function over 250 MB Heavy bundled deps make build-check surfaces sizes; references/makefile-frontend.md lists mitigations
make funnel rejects port 3000 Funnel allows only 443/8443/10000 Use make funnel TUNNEL_PORT=443 (and PUBLIC_FUNNEL=1)
make tunnel works but host <node>.<tailnet>.ts.net fails on macOS macOS DNS quirk: host/nslookup/bare dig bypass system resolver Use tailscale dns query <fqdn> or dscacheutil -q host -a name <fqdn>

Final report contract

Return this shape when the downstream project work is done:

Scenario: <chosen scenario and confidence>
Generated files: <paths>
Deleted/replaced scaffold paths: <paths or none>
Snapshot: <sha and recovery command>
AGENTS.md / CLAUDE.md: <state>
CI/CD: <skipped | generated locally | secrets wired | pushed>
Verification: <rung actually reached per target>
Manual verification still required: <targets, especially rung 6>

Reference routing

File Read when
references/scenario-detection.md Classifying a project; resolving ambiguity; sample disambiguation prompts
references/makefile-base.md Universal preamble, ANSI palette, helper conventions; every Makefile uses this
references/makefile-frontend.md Generating Scenarios A / C / D frontend targets (local, local-lan, tunnel, deploy-vercel, verify, env-pull, build-check)
references/makefile-cloudflare-pages.md Scenario A Cloudflare Pages variant — opt-in only. Read this reference only when the user explicitly mentions Cloudflare / Pages / Wrangler. The Scenario A default is Vercel (makefile-frontend.md). Contents: deploy-cloudflare, cf-project-init, cf-list, cf-tail, wrangler.toml shape, _redirects proxying, 25 MiB-per-file / 20k-file limit checks.
references/makefile-r2-bulk.md Cloudflare R2 media (opt-in when R2 is part of the workflow; works with either Vercel or Pages-hosted frontends): r2-info, r2-cors-apply, single-file r2-put/r2-get/r2-rm, hardlink r2-stage, rclone-configure/rclone-check, r2-sync (rclone copy — additive default for mixed-tenant safety), wrangler-OAuth bulk fallback, public-access audit
references/makefile-backend.md Generating Scenarios C / E backend targets (Railway deploy, multi-service parallel, healthcheck rules, railway.toml baseline)
references/makefile-supabase.md Generating Scenario D Supabase targets (supabase-link, -migrate-*, -functions, -types, -secrets-*)
references/makefile-macbook.md Generating Scenario G ship pipeline (preflights, rsync, atomic swap, kill-then-launch, verify)
references/makefile-monorepo.md Multi-Makefile delegation; 4-file ceiling; per-app namespacing; root-Makefile $(MAKE) -C pattern
references/tailscale-funnel-rules.md Tunnel/Funnel target generation; macOS DNS quirks; Funnel port restrictions; ACL preflight
references/port-hygiene.md The kill-only-our-own pattern; default-port squat list; SIGTERM-then-SIGKILL escalation; banner conventions
references/agents-md-update.md The 5-state machine for AGENTS.md / CLAUDE.md; the ## Make targets section template; idempotency rule
references/ci-cd-workflow.md Wiring GitHub Actions; gh secret set sequence; concurrency rules; rotation hint
references/env-vars-conventions.md Where envs live per scenario; .env.local vs .env.railway; Vercel sensitivity defaults; Railway built-in vars
references/verification-ladder.md The 6 rungs; per-target verification; banner template for the user's manual rung-6 step
scripts/scenario-detect.md Read-only heuristic detector script; use before final classification and ambiguity questions
scripts/preview-makefile-wipe.md Read-only wipe preview script; use before manifest, targeted snapshot, and deletion

Cross-skill handoffs

  • run-railway — for ad-hoc Railway CLI ops not covered by deploy targets (logs, scale, restart, env management beyond what the Makefile exposes)
  • build-mcp-use-server — for hosted-MCP scenarios beyond local-only MCP servers (Scenario B is for local-facing MCP only)
  • Mac-app development standards (framework choice, SwiftUI patterns) are out of scope — this skill only does Make scaffolding.
  • init-agent-config — for AGENTS hierarchy, REVIEW.md, folder-scoped agent config, and broad repo governance

Guardrails

  • Never enable Funnel as a side effect. Funnel is never in make tunnel. Funnel only in make funnel with PUBLIC_FUNNEL=1 ack.
  • Never run tailscale serve reset / tailscale funnel reset without explicit user consent. They wipe ALL mappings on this node — other projects' included. Use targeted disable (tailscale serve --https=443 <port> off) instead.
  • Never kill -9 foreign processes on a port. Port hygiene refuses, suggests +10.
  • Never generate Railway config in projects without a custom backend. Skip Scenarios A / B / D / F / G.
  • Never generate Vercel config in projects without a frontend. Skip Scenarios E / F / G.
  • Default Scenario A to Vercel. Cloudflare Pages is opt-in: switch only when the user explicitly names Cloudflare / Pages / Wrangler / Workers. Disk signals are NOT enough — wrangler.toml commonly exists alongside Vercel-deployed frontends to drive R2 or Workers, with the frontend itself still on Vercel.
  • Never generate both Vercel and Cloudflare Pages deploy targets in the same Makefile. Pick one — having both makes make deploy ambiguous. The user's stated intent decides; signals only inform the question to ask.
  • Never default make r2-sync to rclone sync. R2 buckets are often multi-tenant; sync would delete other projects' data. Default to rclone copy (additive). See references/makefile-r2-bulk.md.
  • Never blanket-derive an R2 S3 Access Key ID from a cfat_* / cfut_* token. They are independent values — the dashboard issues both at token creation. rclone / aws-cli need the AKID + Secret pair, not the cfat_/cfut_ value. See references/makefile-r2-bulk.md.
  • Never declare an R2 upload complete without auditing the bucket for publicly-readable secrets. Custom-domain binding makes every key reachable. Probe likely-leak paths (.secrets/, .env, id_rsa, credentials.json) after first sync; surface anything 200 to the user.
  • Never generate Supabase migrations in projects without supabase/. Skip Scenarios A / B / C / E / F / G.
  • Never write tokens to disk except as gh secret set payloads. Never echo tokens back to the user.
  • Never edit a Makefile in place. Manifest, snapshot, delete, and regenerate. The targeted snapshot commit is the safety net.
  • Never delete scaffold paths that were not printed in the preview and copied into the deletion manifest.
  • Never push CI/CD workflow commits without explicit push authorization after local generation and secret verification.
  • Never set output: 'standalone' in next.config.js for Vercel-hosted Next.js. Standalone is for self-host (Railway/Docker) only.
  • Never use host / nslookup / bare dig to verify MagicDNS names on macOS — they bypass the system resolver. Use tailscale dns query <fqdn> or dscacheutil -q host -a name <fqdn>.
  • Never use RAILWAY_API_TOKEN (account scope) when a project token would do. CI uses project tokens.
  • Never blanket-import .env.local into Vercel production. Dev secrets leak that way.

Final checks

Before declaring done:

  • make help lists every generated target with one-line descriptions
  • Every target works with zero arguments (make X runs cleanly)
  • AGENTS.md ## Make targets section accurately reflects the generated Makefile
  • CLAUDE.md is a symlink → AGENTS.md (or absent)
  • No more than 4 Makefiles in the project tree
  • Snapshot commit exists in git log before the regen commit
  • Deletion manifest paths match the deleted/replaced scaffold paths
  • If CI/CD opted in: .github/workflows/deploy.yml exists; gh secret list shows the wired secrets; push was separately authorized
  • No Funnel mapping was created without explicit PUBLIC_FUNNEL=1
  • The Makefile preamble matches references/makefile-base.md
  • Port hygiene helper is present in any Makefile that opens a port
  • Cross-references in references/*.md use correct relative paths

So verwenden Sie diesen Skill

1

Install init-makefiles by running npx skills add yigitkonur/skills-by-yigitkonur --skill init-makefiles in your project directory. Führen Sie den obigen Installationsbefehl in Ihrem Projektverzeichnis aus. Die Skill-Datei wird von GitHub heruntergeladen und in Ihrem Projekt platziert.

2

Keine Konfiguration erforderlich. Ihr KI-Agent (Claude Code, Cursor, Windsurf usw.) erkennt installierte Skills automatisch und nutzt sie als Kontext bei der Code-Generierung.

3

Der Skill verbessert das Verständnis Ihres Agenten für init-makefiles, und hilft ihm, etablierte Muster zu befolgen, häufige Fehler zu vermeiden und produktionsreifen Code zu erzeugen.

Was Sie erhalten

Skills sind Klartext-Anweisungsdateien — kein ausführbarer Code. Sie kodieren Expertenwissen über Frameworks, Sprachen oder Tools, das Ihr KI-Agent liest, um seine Ausgabe zu verbessern. Das bedeutet null Laufzeit-Overhead, keine Abhängigkeitskonflikte und volle Transparenz: Sie können jede Anweisung vor der Installation lesen und prüfen.

Kompatibilität

Dieser Skill funktioniert mit jedem KI-Coding-Agenten, der das skills.sh-Format unterstützt, einschließlich Claude Code (Anthropic), Cursor, Windsurf, Cline, Aider und anderen Tools, die projektbezogene Kontextdateien lesen. Skills sind auf Transportebene framework-agnostisch — der Inhalt bestimmt, für welche Sprache oder welches Framework er gilt.

Data sourced from the skills.sh registry and GitHub. Install counts and security audits are updated regularly.