| name | token-budget-gate |
| description | Estimates token cost before a multi-step task and outputs a Green/Yellow/Red gate verdict. Tracks actual vs. estimated after completion for calibration. Triggers on "token budget", "how much will this cost", "will this be expensive", "estimate tokens", before long multi-agent tasks. |
| user-invocable | true |
| allowed-tools | ["Read","Bash"] |
| model | sonnet |
| complexity_routing | {"base":"sonnet","high":"opus","escalate_when":["multi_project_scope","unknown_task_type"]} |
token-budget-gate — Pre-Task Token Cost Gate
Multi-step and multi-agent tasks can silently consume large token budgets. This skill estimates cost before execution, outputs a gate verdict, and calibrates estimates against actual usage after completion — preventing surprise overruns without blocking legitimate work.
FH context: FH default execution tier is standard (~15K tokens). This skill gates against accidental full (~30K) or max (~60K+) consumption on tasks that could be handled lighter.
Triggers
/token-budget-gate
- "token budget", "token cost", "how expensive", "will this use a lot of tokens"
- "estimate tokens", "token estimate before we start"
- Before invoking:
agent-composer, sim-conductor, steel-quench (max-tier skills)
- Automatically proposed when task description contains: multi-agent, parallel dispatch, full suite, all files, entire codebase
Gate Thresholds (defaults — user-configurable)
| Signal | Verdict | Action |
|---|
| Estimated < 10K tokens | 🟢 GREEN | Proceed without comment |
| 10K–30K tokens | 🟡 YELLOW | Proceed with notice — suggest lighter approach if one exists |
| 30K–60K tokens | 🟠 ORANGE | Confirm before proceeding — present scope reduction options |
| > 60K tokens | 🔴 RED | Block + require explicit approval — present mandatory reduction |
Custom threshold: user can set TOKEN_BUDGET_MAX=N in conversation or .claude/settings.json.
Execution Steps
Step 1. Parse Task Description
Extract task dimensions:
| Dimension | Low (×1) | Medium (×2) | High (×4) |
|---|
| File scope | 1–3 files | 4–10 files | 11+ files / whole codebase |
| Agent count | 0 (inline) | 1–2 agents | 3+ agents / parallel |
| Step depth | 1–3 steps | 4–8 steps | 9+ steps |
| Iteration | None | 1 round | 2+ rounds (wave/loop) |
| Output size | Short answer | Medium doc | Full report / deck |
Step 2. Estimate Token Cost
Base estimates per task type:
| Task Type | Base Estimate | Notes |
|---|
| Single file edit | 2K | Read + edit + verify |
| Code review (1 PR) | 5K | Diff + analysis + comments |
| Skill creation (1 SKILL.md) | 8K | Design + write + CATALOG update |
| Agent dispatch (1 agent) | 10K | Context card + agent overhead |
| Parallel dispatch (3 agents) | 25K | 3× agent + orchestration |
| sim-conductor full run | 30K | All 5 simulation axes |
| steel-quench 4-wave | 50K | All waves + prescriptions |
| Full harvest-loop cycle | 40K | 8-step pipeline + PRs |
Apply dimension multipliers from Step 1 to the base estimate.
Final formula:
Estimated = base × file_multiplier × agent_multiplier × iteration_multiplier
Round to nearest 1K.
Step 3. Output Gate Verdict
## Token Budget Gate
Task: {one-line task description}
Estimated cost: ~{N}K tokens
Threshold: {user max or default}
Verdict: 🟡 YELLOW — within budget but consider lighter approach
Breakdown:
Base (skill creation): 8K
× 2 agents: ×2 = 16K
× 1 iteration: ×1 = 16K
Total: ~16K
Lighter alternative:
→ Inline (no agent dispatch): ~8K (-50%)
→ Single agent, not parallel: ~12K (-25%)
Proceed? (y to continue / n to adjust scope)
For 🟢 GREEN: output one line only — "Token estimate: ~{N}K — GREEN, proceeding."
Step 4. Proceed / Adjust
- GREEN / YELLOW + user confirms: proceed, note start marker
- ORANGE: present scope reduction table, wait for user selection
- RED: present mandatory reduction — do not proceed until user explicitly approves
Scope reduction options table (ORANGE/RED):
| Option | Reduction | Trade-off |
|---|
| Drop parallel → sequential | -30% | Slower, same quality |
| Reduce agent count (3→1) | -50% | Less parallelism |
| Narrow file scope | -40% | Shallower coverage |
| Use lighter skill variant | -60% | Fewer waves/probes |
| Split into 2 sessions | -50%/session | No quality loss |
Step 5. Post-Task Calibration (optional)
After task completion, if user says "how much did that cost" or "calibrate":
## Calibration
Estimated: ~16K tokens
Actual: ~{actual}K tokens
Error: {+/-N}%
Calibration note saved → improves next estimate for this task type.
Write calibration data:
mkdir -p .claude/token_calibration/
Calibration data improves future estimates for the same task type (no model training — local record only).
Done When
- Gate verdict output (GREEN/YELLOW/ORANGE/RED) with estimated cost breakdown
- For ORANGE/RED: scope reduction options presented and user decision recorded
- Calibration offered after task completion (optional, not mandatory)
Chains
Upstream (proposed before these skills):
- →
agent-composer (multi-agent orchestration)
- →
sim-conductor (5-axis simulation)
- →
steel-quench (4-wave adversarial review)
- →
harvest-loop (8-step pipeline)
Downstream:
- No mandatory chain — gate verdict is the output; task execution follows user decision
External anchor (independent convergence)
arXiv:2606.27009 (Semantic Early-Stopping for Iterative LLM Agent Loops, 2026-06-25, verified
2026-06-27) measures −38% tokens by stopping iterative agent loops on semantic convergence instead
of a fixed iteration cap — external evidence that the largest avoidable spend in loop-shaped work is
over-iteration, the cost class this gate exists to flag. Caveat (provenance-honest): the same paper
found judge-gated stopping counterproductive (judging cost outweighs the saving), so the saving is
real only when the convergence signal is cheap. Pairs with convergence-loop (the stop-rule side of
the same finding).