62060ba124
Sixth skill via the boss pattern. planner is the spec→executable- plan transformation; plan-recon is its read-only file-mapper. Vocabulary substitutions: - AILang → "this project" - milestone → cycle - Boss → orchestrator - ailang-plan-recon → plan-recon - "the architect's Lockstep invariants table" → "the project's CLAUDE.md lockstep-invariant pairs" (the lockstep pairs are project-specific; the plugin only carries the pattern that the orchestrator may declare them) AILang-specific bits dropped or generalized: - `docs/specs/<milestone>.md` / `docs/plans/NNNN-<iteration>.md` → `paths.spec_dir` / `paths.plan_dir` - `cargo test --workspace -p <crate>` → "the project's test command from commands.test, scoped to this test" + generic template - `cargo check`, `cargo expand` → "the project's type-checker / compiler" and "the project's macro-expansion tool" with Rust/TypeScript examples in parentheses - Rust code-snippet template in Step 3 → language-neutral placeholder with `(exact source code here)` annotations - Specific past-iter references (loop-recur.1, loop-recur.2, loop-recur.tidy, remove-mut-var-assign.1, form_a.md, iter-revert Concern 2, iter effect-doc-honesty Task 2, iter loop-recur.3 Concern) → generic "recurring defect family in this project's history" (the discipline survives; the AILang iter codes that wouldn't parse for a plugin reader go away) - `error[E0061]` Rust-specific compiler error code → "hard compile error" (universal) Universal substance preserved verbatim: - Iron Law (3 lines) - Six-step process (read spec → map structure → write tasks → header → self-review → hand off) - Step 5 self-review checklist — all 8 calibrated checks (spec coverage, placeholder scan, type consistency, step granularity, no commit steps, pin/replacement substring contiguity, compile-gate vs deferred-caller ordering, verification-command filter strings must resolve) - All 6 Common Rationalisations rows - All 6 Red Flags bullets - plan-recon's nine-step process incl. compile-driven enumeration (Step 5) and spec-named-path existence table (Step 6) - plan-recon's output format including all five sections (Files, Compile-driven site set, Non-compile-checked sites, Spec-named-path existence table, Anchors not yet present) - plan-recon's 8 Common Rationalisations rows and 9 Red Flags bullets Calibrated discipline kept (per memory feedback_dont_strip_ repeated_discipline.md): the three plan-defect families flagged by user memory (pin/replacement soft-wrap, compile-gate vs deferred caller, verification filter must resolve) all stay verbatim — they are project-history scaffolding, just de-AILang'd in the references.
276 lines
10 KiB
Markdown
276 lines
10 KiB
Markdown
---
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name: planner
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description: Use when a cycle spec exists under paths.spec_dir and a new iteration is starting. Produces a placeholder-free, bite-sized implementation plan under paths.plan_dir that the implement skill can execute task-by-task. Hard-gate before any implementation work.
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---
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# planner — spec → executable plan
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> **Violating the letter of these rules is violating the spirit.**
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## Overview
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A plan is the contract between design (spec) and execution
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(`implement`). It commits the file structure, names every
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file that will be created or modified, and decomposes work
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into bites small enough that a subagent can execute one in
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2-5 minutes without making judgement calls outside its remit.
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Plans live under the project's `paths.plan_dir` with a name
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shape governed by the project's `naming.policy` (see profile
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schema). The header references the parent spec. The plan
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decomposes work into tasks; each task is the unit of review
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(spec-compliance and quality gates inside `implement`), not
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the unit of commit. Commits are an orchestrator-only decision
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taken at the end of the iter against the full working-tree
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diff.
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## When to Use / Skipping
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Triggers:
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- A spec under `paths.spec_dir` for the active cycle is
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approved.
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- A new iteration within an active cycle is starting.
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May be skipped when:
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- The work is a bug fix where the RED test from `debug` IS
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the plan (handoff goes straight to `implement` mini-mode).
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- The work is a trivial mechanical edit (one file, ≤30 LOC,
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no design judgement).
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**Never skipped** for a standard iteration within an active
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cycle. "I know the cycle, plan from memory" is exactly the
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failure mode this skill prevents.
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## The Iron Law
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```
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NO PLACEHOLDERS — TBD, TODO, "implement later", "similar to Task N",
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or "add appropriate error handling" are PLAN FAILURES.
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EVERY STEP THAT CHANGES CODE INCLUDES THE CODE.
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EVERY STEP THAT RUNS A COMMAND INCLUDES THE COMMAND AND EXPECTED OUTPUT.
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```
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Non-negotiable.
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## The Process
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### Step 1 — Read the parent spec
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Read the spec under `paths.spec_dir` in full. NOT from memory.
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Even if the spec is recent and you wrote it yourself, re-read
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it before planning.
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The spec is the source of truth; the plan is the projection
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of one iteration's worth of work onto a task list.
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### Step 2 — Map file structure
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Dispatch `plan-recon` with the spec path and iteration scope.
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Read the returned file-map. Lift the relevant entries into
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the plan's "Files this plan creates or modifies" section; the
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orchestrator may add or amend entries that recon missed.
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Dispatch carrier:
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| Field | Content |
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|-------|---------|
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| `spec_path` | path to the parent spec |
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| `iteration_scope` | which sections of the spec this iteration covers |
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| `focus_hint` | optional — subsystem or symbol to prioritise |
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Recon does NOT decide decomposition. Two recon dispatches per
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planner run is unusual but legitimate (e.g. one for the main
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spec sections, one with a sharper `focus_hint` for a tricky
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subsystem). Three or more is a smell — re-read the spec; the
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iteration scope is probably too broad.
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The plan's "Files this plan creates or modifies" section
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keeps the same shape:
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```markdown
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**Files this plan creates or modifies:**
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- Create: `<exact path>` — <one-line responsibility>
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- Modify: `<exact path>:<line range if known>`
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- Test: `<exact path>` — <one-line case description>
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```
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Files that change together stay in the same task. Files that
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change independently get separate tasks.
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### Step 3 — Write tasks, bite-sized
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Each task is a logical unit of change (one feature, one fix,
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one extension). Each task contains steps; each step is ONE
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action that takes 2-5 minutes:
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```markdown
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### Task N: <Component Name>
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**Files:**
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- Create: `<exact path>`
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- Modify: `<exact path>:<line range if known>`
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- Test: `<exact path>`
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- [ ] **Step 1: Write the failing test**
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(exact test source code here)
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- [ ] **Step 2: Run test to verify it fails**
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Run: `<the project's test command from commands.test, scoped to this test>`
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Expected: FAIL with "<exact expected message>"
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- [ ] **Step 3: Write minimal implementation**
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(exact implementation source code here)
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- [ ] **Step 4: Run test to verify it passes**
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Run: `<the same test command>`
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Expected: PASS
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```
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No `git commit` step. Implement tasks leave their work in
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the working tree; the orchestrator commits at the end of the
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iter.
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### Step 4 — Plan header
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Every plan starts with this header:
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```markdown
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# <Iteration Title> — Implementation Plan
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> **Parent spec:** `<path under paths.spec_dir>`
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>
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> **For agentic workers:** REQUIRED SUB-SKILL: use the
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> `implement` skill to run this plan. Steps use `- [ ]`
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> checkboxes for tracking.
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**Goal:** <one sentence>
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**Architecture:** <2-3 sentences>
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**Tech Stack:** <key components touched>
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---
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```
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### Step 5 — Self-review
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Before handing the plan off, run this checklist inline:
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1. **Spec coverage:** every spec section has a task that
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implements it. If a section has no task, add one.
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2. **Placeholder scan:** grep for "TBD", "TODO", "implement
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later", "similar to Task", "add appropriate error
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handling". Any hit is a plan failure to fix.
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3. **Type consistency:** function names, type names, file
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paths referenced across tasks must match.
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`clearLayers()` in Task 3 and `clearFullLayers()` in
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Task 7 is a bug.
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4. **Step granularity:** every step is 2-5 minutes. If a
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step is "implement the parser", split it.
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5. **No commit steps:** task templates must not contain
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`git commit` instructions. Implement tasks leave work in
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the working tree.
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6. **Pin/replacement substring contiguity:** when a task
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ships a test asserting `contains("<substring>")` (or a
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grep) AND another task's verbatim replacement body is
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what must contain that substring, the substring must
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appear *contiguously* in that replacement body — no
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soft-wrap splitting it across two lines. Two
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authoritative artefacts (exact pin vs. exact replacement)
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that cannot both be applied literally is a plan defect,
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not an implementer judgement call. This is a recurring
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defect family — scrub it here, every plan that pairs a
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presence-pin with a verbatim text edit.
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7. **Compile-gate vs. deferred-caller ordering:** when a
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task changes a function signature (or any change that
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makes the whole compilation unit fail to compile until N
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call sites are updated) AND that task ends with a
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"0 errors" build gate, every caller the signature change
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touches MUST be threaded *inside that same task* — not
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deferred to a later task. A "0-errors" gate is
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unsatisfiable while any caller is still unthreaded
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(hard compile error), so a plan that defers a caller
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(e.g. "the X call site is handled in Task 4") past an
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earlier task's compile gate is internally contradictory:
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the executor is forced to pull the deferred code forward
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to satisfy the gate, silently resequencing the plan.
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Either fold all caller-threading into the
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signature-change task, or make the gate a *partial* build
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of just the changed module with the workspace-wide build
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deferred to the task that finishes threading. This is a
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recurring defect family — scrub it here, every plan with
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a signature-change task.
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8. **Verification-command filter strings must resolve.**
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Every literal test-filter / grep pattern / test-target
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in a Run step is itself a load-bearing artefact: if its
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filter substring matches **no** test (or its target file
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does not exist), the step silently asserts nothing — a
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green "0 ran" reads as success while proving the opposite
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of the gate's intent. For every such command, either
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(a) the filter substring must be one verified to match
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≥1 real named test/line in the current tree (name it, do
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not guess from the feature word), or (b) use the
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unfiltered suite plus an explicit result-count assertion
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so "nothing ran" cannot masquerade as "nothing
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regressed". This is a recurring defect family — scrub
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every Run step whose assertion lives in a filter string.
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Fix issues inline.
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### Step 6 — Hand off
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The plan sits in the working tree as an unstaged file under
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`paths.plan_dir`. Hand off to `implement` with: path to the
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plan file + optional task focus ("only Tasks 1-3 this run").
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The orchestrator commits the plan when handing it forward
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(suggested commit subject: `plan: <iteration> <subject>`).
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The planner skill does not perform the commit itself.
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## Handoff Contract
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| Direction | Carrier |
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|-----------|---------|
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| `brainstorm` → `planner` | path to the spec under `paths.spec_dir` + iteration scope ("this iteration covers spec section X+Y") |
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| `planner` → `implement` | path to the plan under `paths.plan_dir` + optional task-range focus |
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| `planner` → `brainstorm` (bounce) | spec contains placeholders or contradictions: name the offending section, request revision |
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## Common Rationalisations
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| Excuse | Reality |
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|--------|---------|
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| "TBD in step 4 lets me ship the plan tonight, fill in tomorrow" | Half-decided plans get re-litigated mid-iteration, costing more than the night's sleep saved. Make the decision tonight or close the laptop. |
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| "Bundle Tasks 3 and 4, both small" | Tasks are the unit of review (spec-check + quality-check fire once per task). Bundling collapses two reviews into one and hides the smaller change inside the bigger one. If 3 and 4 are inseparable, they're one task — rewrite the decomposition. |
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| "Spec is recent, I wrote it, plan from memory" | Memory diverges from disk. 15 minutes of re-reading is the cheapest insurance in the cycle. |
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| "Step 5 'implement the parser' is fine, I'll detail it at execution time" | Then it's not a step, it's a wish. Steps are bite-sized OR the plan isn't done. |
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| "Task 7 is similar to Task 4, just say so" | The executor may read tasks out of order. Repeat the code. |
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| "The spec has a TBD too, I can pass it through" | Bounce back to `brainstorm`. Plans inherit spec gaps; spec gaps are not plan placeholders. |
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## Red Flags — STOP
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- Any of: "TBD", "TODO", "fill in later", "similar to",
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"add appropriate <X>" — fix or bounce.
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- Steps that describe what to do without showing how
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- Function/type/path names that don't match across tasks
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- Step descriptions longer than the code they describe
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- Header missing parent spec reference
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- Self-review skipped because "the plan looks fine"
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## Cross-references
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- **Input source:** `../brainstorm/SKILL.md` — produces the
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spec this skill consumes.
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- **Output target:** `../implement/SKILL.md` — runs the plan
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task-by-task.
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- **Agents dispatched:**
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- `agents/plan-recon.md` — Step 2, file-structure mapping
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(read-only). Mandatory; the orchestrator does NOT do
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recon in-context.
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