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executing-plans

Use when executing a written implementation plan across sessions or with review checkpoints. Small or single-slice plans stay inline. For same-session independent tasks, use subagent-driven-development instead.

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Part of ganyuanran/aegis — 21 skills

Install

skills CLI npx skills add https://github.com/GanyuanRan/Aegis/tree/main/skills/executing-plans
Claude Code claude plugin marketplace add https://llmmart.ai/marketplace.json && claude plugin install ganyuanran-aegis@llmmart
Git git clone https://github.com/GanyuanRan/Aegis.git

The skills CLI installs just this skill, for any of its supported agents. Claude Code installs the whole ganyuanran/aegis collection as a plugin from our marketplace. Git is the plain clone.

Skill manifest

Executing Plans

Overview

Load plan, review critically, execute all tasks, report when complete.

Announce at start: "I'm using the executing-plans skill to implement this plan."

For non-trivial execution, include Aegis Visibility: briefly tie the active slice to its plan, checkpoint, drift or verification boundary. At completion, pass plan adherence, evidence, complexity and residual risk to verification-before-completion for the unified receipt.

If subagents are available and the plan has genuinely independent tasks, prefer subagent-driven-development; lack of subagent support does not block inline execution. Same-task agents share one workspace, and the coordinator remains the only Git mutation owner.

The Process

Step 1: Load and Review Plan

  1. Read plan file
  2. If the plan or active checkpoint includes an Execution Readiness View, read it before implementation and compare the plan against its intent lock, scope fence, baseline lock, owner / contract constraints, compatibility boundary, retirement boundary, test obligations, review gates, drift / rewind rules, and evidence required before completion.
  3. Review critically - identify any questions or concerns about the plan
  4. If the view contradicts the plan, baseline, or current worktree evidence, return to plan review or refresh the advisory handoff before editing.
  5. Run the TDD Route Guard before implementation: confirm Mode, Decision, Strict authority, strict signals, light eligibility, Test posture, and verification. Strict steps require either an explicit user/project request or a recorded auto decision; plan approval or risk labels alone are not authority. An off-mode missing record may be repaired only as Mode: off / Decision: skipped without loading TDD. Missing/unsupported auto decisions return to plan review. An auto-light record is unsupported when any strict signal is present or when its tiny/low-risk/single-owner/no-behavior-change proof is incomplete. Only Decision: strict with recorded strict authority may authorize steps named Write failing test, Verify RED, GREEN, or REFACTOR. Do not infer strict during execution.
  6. If concerns: Raise them with your human partner before starting
  7. Before the first write, capture TaskStartSnapshot: root, HEAD, branch or detached state, upstream divergence, staged/unstaged/untracked paths, active Git operations, and git worktree list --porcelain. Preserve task-preexisting state; do not stash, reset, clean, or commit it.
  8. Reuse the current branch unless rules require independent history or another goal owns it. If justified, switch/create it in the current workspace when safe; a worktree still requires concurrent checkout or blocking dirty state.
  9. If no concerns: Create TodoWrite and proceed

Step 1.5: Long-Task Checkpoint Setup

If the plan has multiple tasks, may span sessions, or includes architecture / contract / workflow changes:

  1. Announce: "I'm using the long-task-continuation skill to keep this plan checkpointed and drift-aware."
  2. Load aegis:long-task-continuation.
  3. Create the initial checkpoint from the plan:
    • current todo
    • active task
    • completed tasks
    • evidence refs
    • blockers
    • next step
  4. Before each task, restate the current checkpoint.
  5. After each task, update checkpoint, evidence refs, and drift check.

Before a verification-driven unplanned edit, read retained PatchShape, CanonicalOwner, UpwardDrillSignal, outcome, and evidence refs. Route their comparison with the candidate to systematic-debugging before editing; it decides whether the directions converge. A proven independent canonical-owner root stays on the normal plan path.

Step 2: Execute Tasks

For each task:

  1. Mark as in_progress

  2. Follow each step exactly (plan has bite-sized steps)

  3. Before any new source-code path is added by a task, restate the plan's Change Necessity or create a compact one if the plan failed to carry it forward. Plan approval is not by itself proof that a new helper, small guard, new branch, fallback, adapter, or owner is necessary.

    Change Necessity:
    - User-visible need:
    - No-change / non-code option:
    - Why code change is necessary:
    - Minimum change boundary:
    - Decision: no-change | docs/config-only | code-change | needs-clarification
    

    If the decision is not code-change, pause execution and return to plan review instead of editing. If the decision is code-change, carry the minimum boundary into the edit and verification scope.

  4. Before any non-trivial source edit, run the plan's Pre-Edit Complexity Check or create a compact one:

    Use using-aegis/references/complexity-governance.md for shared artifact classes, pressure signals, and over-budget handling.

    Complexity Budget:
    - Artifact class:
    - Target files / artifacts:
    - Current pressure:
    - Projected post-change pressure:
    - Budget result: within-budget | at-risk | over-budget
    - Planned governance:
    
    Pre-Edit Complexity Check:
    - Target edit file:
    - Existing pressure signal:
    - Safer edit boundary:
    - Decision: edit-in-place | extract helper | add owner file | split task | pause for plan update
    
    Pre-Edit Owner-Fit Decision:
    - Edit intent: wiring-only | move-out / extract-first | local-fix-without-new-responsibility | new-responsibility | emergency / compatibility patch
    - Owner fit:
    - Safer edit boundary:
    - Decision: edit-in-place | extract helper | add owner file | split task | pause for plan update
    

    If the check contradicts the plan's file boundary, pause and return to plan review instead of silently stuffing logic into an overloaded owner. If the budget result is over-budget and the task does not also govern that overrun, stop execution and return to plan review rather than pushing the task through as if it were still atomic. When the target edit file is over-budget or mixed-purpose, new-responsibility must not be added in place by default. wiring-only, move-out / extract-first, and local-fix-without-new-responsibility may proceed only when they do not add a new responsibility and the verification boundary is clear. emergency / compatibility patch requires residual risk and a retirement trigger.

  5. Run verifications as specified

  6. The coordinator is the Git mutation owner. After the coherent Task passes its planned verification, use verification-before-completion before a default local commit, stage only task-owned paths, and read back HEAD, the committed file list, and remaining task delta. no commit, read-only, no-change, and failed-verification tasks create no normal commit.

  7. Update TodoCheckpointDraft and DriftCheckDraft before marking the task completed. When an Execution Readiness View exists, the drift check must explicitly compare the active slice against the view's intent lock, scope fence, baseline lock, compatibility boundary, retirement boundary, test obligations, and review gates.

  8. Mark as completed

Step 3: Complete Development

After all tasks complete and verified:

  • if Aegis created a branch/worktree or the user requests integration handling, use aegis:finishing-a-development-branch;
  • otherwise use verification-before-completion, report the local task commit and Task clean / Repository clean, and do not invent merge/PR ceremony.

When to Stop and Ask for Help

STOP executing immediately when:

  • Hit a blocker (missing dependency, test fails, instruction unclear)
  • Plan has critical gaps preventing starting
  • You don't understand an instruction
  • Verification fails repeatedly

Ask for clarification rather than guessing.

When to Revisit Earlier Steps

Return to Review (Step 1) when:

  • Partner updates the plan based on your feedback
  • Fundamental approach needs rethinking

Don't force through blockers - stop and ask.

Remember

  • Review plan critically first
  • Follow plan steps exactly
  • Don't skip verifications
  • Reference skills when plan says to
  • Stop when blocked, don't guess
  • Do not create a branch merely because the current branch is main/master
  • Do not let task complexity, TDD, planning, or subagents alone trigger a worktree

Integration

Required workflow skills:

  • aegis:writing-plans - Creates the plan this skill executes
  • aegis:using-git-worktrees - Only when the approved Git lifecycle says a concurrent checkout is necessary
  • aegis:finishing-a-development-branch - Only when branch/worktree integration or cleanup is in scope
Files (aegis)
  • SKILL.md 8.8 KB
    ---
    name: executing-plans
    description: "Use when executing a written implementation plan across sessions or with review checkpoints. Small or single-slice plans stay inline. For same-session independent tasks, use subagent-driven-development instead."
    ---
    
    # Executing Plans
    
    ## Overview
    
    Load plan, review critically, execute all tasks, report when complete.
    
    **Announce at start:** "I'm using the executing-plans skill to implement this plan."
    
    For non-trivial execution, include `Aegis Visibility`: briefly tie the active
    slice to its plan, checkpoint, drift or verification boundary. At completion,
    pass plan adherence, evidence, complexity and residual risk to
    `verification-before-completion` for the unified receipt.
    
    If subagents are available and the plan has genuinely independent tasks,
    prefer `subagent-driven-development`; lack of subagent support does not block
    inline execution. Same-task agents share one workspace, and the coordinator
    remains the only Git mutation owner.
    
    ## The Process
    
    ### Step 1: Load and Review Plan
    1. Read plan file
    2. If the plan or active checkpoint includes an `Execution Readiness View`,
       read it before implementation and compare the plan against its intent lock,
       scope fence, baseline lock, owner / contract constraints, compatibility
       boundary, retirement boundary, test obligations, review gates, drift /
       rewind rules, and evidence required before completion.
    3. Review critically - identify any questions or concerns about the plan
    4. If the view contradicts the plan, baseline, or current worktree evidence,
       return to plan review or refresh the advisory handoff before editing.
    5. Run the TDD Route Guard before implementation: confirm `Mode`, `Decision`, `Strict authority`,
       strict signals, light eligibility, `Test posture`, and verification. Strict
       steps require either an explicit user/project request or a recorded auto
       decision; plan approval or risk labels alone are not authority. An
       off-mode missing record may be repaired only as `Mode: off / Decision:
       skipped` without loading TDD. Missing/unsupported auto decisions return to
       plan review. An auto-light record is unsupported when any strict signal is
       present or when its tiny/low-risk/single-owner/no-behavior-change proof is
       incomplete. Only `Decision: strict` with recorded strict authority may
       authorize steps named `Write failing test`, `Verify RED`, `GREEN`, or
       `REFACTOR`. Do not infer `strict` during execution.
    6. If concerns: Raise them with your human partner before starting
    7. Before the first write, capture `TaskStartSnapshot`: root, `HEAD`, branch or
       detached state, upstream divergence, staged/unstaged/untracked paths, active
       Git operations, and `git worktree list --porcelain`. Preserve task-preexisting
       state; do not stash, reset, clean, or commit it.
    8. Reuse the current branch unless rules require independent history or another
       goal owns it. If justified, switch/create it in the
       current workspace when safe; a worktree still requires
       concurrent checkout or blocking dirty state.
    9. If no concerns: Create TodoWrite and proceed
    
    ### Step 1.5: Long-Task Checkpoint Setup
    
    If the plan has multiple tasks, may span sessions, or includes architecture / contract / workflow changes:
    
    1. Announce: "I'm using the long-task-continuation skill to keep this plan checkpointed and drift-aware."
    2. Load aegis:long-task-continuation.
    3. Create the initial checkpoint from the plan:
       - current todo
       - active task
       - completed tasks
       - evidence refs
       - blockers
       - next step
    4. Before each task, restate the current checkpoint.
    5. After each task, update checkpoint, evidence refs, and drift check.
    
    Before a verification-driven unplanned edit, read retained `PatchShape`,
    `CanonicalOwner`, `UpwardDrillSignal`, outcome, and evidence refs. Route their
    comparison with the candidate to `systematic-debugging` before editing; it
    decides whether the directions converge. A proven independent canonical-owner
    root stays on the normal plan path.
    
    ### Step 2: Execute Tasks
    
    For each task:
    1. Mark as in_progress
    2. Follow each step exactly (plan has bite-sized steps)
    3. Before any new source-code path is added by a task, restate the plan's
       `Change Necessity` or create a compact one if the plan failed to carry it
       forward. Plan approval is not by itself proof that a new helper, small guard,
       new branch, fallback, adapter, or owner is necessary.
    
       ```text
       Change Necessity:
       - User-visible need:
       - No-change / non-code option:
       - Why code change is necessary:
       - Minimum change boundary:
       - Decision: no-change | docs/config-only | code-change | needs-clarification
       ```
    
       If the decision is not `code-change`, pause execution and return to plan
       review instead of editing. If the decision is `code-change`, carry the
       minimum boundary into the edit and verification scope.
    4. Before any non-trivial source edit, run the plan's
       `Pre-Edit Complexity Check` or create a compact one:
    
       Use `using-aegis/references/complexity-governance.md` for shared artifact
       classes, pressure signals, and `over-budget` handling.
    
       ```text
       Complexity Budget:
       - Artifact class:
       - Target files / artifacts:
       - Current pressure:
       - Projected post-change pressure:
       - Budget result: within-budget | at-risk | over-budget
       - Planned governance:
    
       Pre-Edit Complexity Check:
       - Target edit file:
       - Existing pressure signal:
       - Safer edit boundary:
       - Decision: edit-in-place | extract helper | add owner file | split task | pause for plan update
    
       Pre-Edit Owner-Fit Decision:
       - Edit intent: wiring-only | move-out / extract-first | local-fix-without-new-responsibility | new-responsibility | emergency / compatibility patch
       - Owner fit:
       - Safer edit boundary:
       - Decision: edit-in-place | extract helper | add owner file | split task | pause for plan update
       ```
    
       If the check contradicts the plan's file boundary, pause and return to plan
       review instead of silently stuffing logic into an overloaded owner. If the
       budget result is `over-budget` and the task does not also govern that
       overrun, stop execution and return to plan review rather than pushing the
       task through as if it were still atomic.
       When the target edit file is over-budget or mixed-purpose,
       `new-responsibility` must not be added in place by default. `wiring-only`,
       `move-out / extract-first`, and `local-fix-without-new-responsibility` may
       proceed only when they do not add a new responsibility and the verification
       boundary is clear. `emergency / compatibility patch` requires residual risk
       and a retirement trigger.
    5. Run verifications as specified
    6. The coordinator is the Git mutation owner. After the coherent Task passes
       its planned verification, use `verification-before-completion` before a
       default local commit, stage only task-owned paths, and read back `HEAD`, the
       committed file list, and remaining task delta. `no commit`, read-only,
       no-change, and failed-verification tasks create no normal commit.
    7. Update `TodoCheckpointDraft` and `DriftCheckDraft` before marking the task completed.
       When an `Execution Readiness View` exists, the drift check must explicitly
       compare the active slice against the view's intent lock, scope fence,
       baseline lock, compatibility boundary, retirement boundary, test
       obligations, and review gates.
    8. Mark as completed
    
    ### Step 3: Complete Development
    
    After all tasks complete and verified:
    
    - if Aegis created a branch/worktree or the user requests integration handling,
      use `aegis:finishing-a-development-branch`;
    - otherwise use `verification-before-completion`, report the local task commit
      and `Task clean` / `Repository clean`, and do not invent merge/PR ceremony.
    
    ## When to Stop and Ask for Help
    
    **STOP executing immediately when:**
    - Hit a blocker (missing dependency, test fails, instruction unclear)
    - Plan has critical gaps preventing starting
    - You don't understand an instruction
    - Verification fails repeatedly
    
    **Ask for clarification rather than guessing.**
    
    ## When to Revisit Earlier Steps
    
    **Return to Review (Step 1) when:**
    - Partner updates the plan based on your feedback
    - Fundamental approach needs rethinking
    
    **Don't force through blockers** - stop and ask.
    
    ## Remember
    - Review plan critically first
    - Follow plan steps exactly
    - Don't skip verifications
    - Reference skills when plan says to
    - Stop when blocked, don't guess
    - Do not create a branch merely because the current branch is `main`/`master`
    - Do not let task complexity, TDD, planning, or subagents alone trigger a worktree
    
    ## Integration
    
    **Required workflow skills:**
    - **aegis:writing-plans** - Creates the plan this skill executes
    - **aegis:using-git-worktrees** - Only when the approved Git lifecycle says a concurrent checkout is necessary
    - **aegis:finishing-a-development-branch** - Only when branch/worktree integration or cleanup is in scope
    

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