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dyoshikawa/rulesync/.rulesync/skills/porting-another-repository/SKILL.md

porting-another-repository

Plan how to port a feature, configuration, or implementation from this repository into another repository. Analyzes the source feature here and the target repo's conventions, then writes a multi-file porting plan (overview, source analysis, target analysis, plan, diff) to tmp/porting-another-repository-{YYYYMMDD-HHmm}/*.md for the user to review and apply manually.

Source repository stars
1,263
Declared platforms
0
Static risk flags
0
Last source update
2026-07-28
Source checked
2026-07-28

Decision brief

What it does—and where it fits

Compute a single timestamp once and reuse it for every file:

Best for

    Not for

    • Tasks that require unconfirmed production actions or broad system permissions.
    • Environments where the pinned source and install steps cannot be inspected.

    Compatibility matrix

    Platform support, with evidence labels

    PlatformStatusEvidenceWhat to check
    CodexNot declaredNo explicit evidencePortability before use
    Claude CodeNot declaredNo explicit evidencePortability before use
    CursorNot declaredNo explicit evidencePortability before use
    Gemini CLINot declaredNo explicit evidencePortability before use
    Open the compatibility checker

    Installation

    Inspect first. Install second.

    The source command is displayed only when detected. A safe inspection prompt is always available so your agent can explain every action before execution.

    Source-detected install commandSource
    npx skills add https://github.com/dyoshikawa/rulesync --skill ".rulesync/skills/porting-another-repository"
    Safe inspection promptEditorial

    Inspect the Agent Skill "porting-another-repository" from https://github.com/dyoshikawa/rulesync/blob/310b711fbe8cffc14debb276ade8a384c2b89083/.rulesync/skills/porting-another-repository/SKILL.md at commit 310b711fbe8cffc14debb276ade8a384c2b89083. List every install step, command, network request, credential, file read/write, external action, and rollback step. Explain whether it fits my task. Do not install or execute anything until I approve.

    Workflow

    What the source asks the agent to do

    1. 01

      Step 0: Prepare the Output Directory

      Compute a single timestamp once and reuse it for every file:

      Compute a single timestamp once and reuse it for every file:All artifacts in this run go under ${out}/. Do not recompute the timestamp per file — every file must share the same directory.
    2. 02

      Step 1: Analyze the Source (This Repository)

      Understand exactly what is being ported. Prefer targeted symbol and search tools over reading whole files.

      The entry points and the files that implement it.Its dependencies within this repo (shared utilities, base classes, types, config) that would also need to come along.Any build/test/tooling wiring it relies on (scripts, configs, fixtures, CI steps).
    3. 03

      Step 2: Analyze the Target Repository

      Understand the target's conventions so the port fits in naturally.

      If targetrepo is a local path, inspect it directly (grep/read).If it is owner/repo or a URL, use gh repo view, gh api repos//contents/, and the deepwiki MCP (mcpdeepwikiaskquestion, mcpdeepwikireadwikicontents) to learn its structure.Language, package manager, build/test tooling, and directory layout.
    4. 04

      Step 3: Produce the Porting Plan

      Map source concepts onto the target. Use a small mapping table (source path/symbol → target path/symbol) — it is far easier to read than prose for this.

      A step-by-step sequence of changes, ordered so the target stays buildable.Required dependency additions (with versions) and tooling/config changes.Adaptations needed to match the target's conventions (renames, refactors, API shape changes).
    5. 05

      Step 4: Produce Concrete Diffs

      For each step in the plan, write the concrete code/config the user should add to the target, in fenced blocks labeled with their target file paths. Where an existing target file changes, show a unified-diff-style snippet. Keep these ready to copy-paste.

      For each step in the plan, write the concrete code/config the user should add to the target, in fenced blocks labeled with their target file paths. Where an existing target file changes, show a unified-diff-style snippe…Write the result to ${out}/04-diff.md.

    Permission review

    Static risk signals and limitations

    No configured static risk pattern was detected

    This is not proof of safety. Runtime behavior, indirect dependencies, and hidden external systems are outside the static scan.

    Evidence record

    Why each signal appears

    EvidenceSourceComputedTestedEditorial
    SignalValueEvidence typeMeaning
    Quality score84/100ComputedDocumentation, specificity, maintenance, and trust rules
    Repository stars1,263SourceRepository attention, not individual Skill quality
    Compatibility0 platformsSourceDeclared in the catalog source record
    Usage guideautomated source guideEditorialGenerated or reviewed according to the visible evidence level

    Pinned source

    Provenance and original SKILL.md

    Repository
    dyoshikawa/rulesync
    Skill path
    .rulesync/skills/porting-another-repository/SKILL.md
    Commit
    310b711fbe8cffc14debb276ade8a384c2b89083
    License
    MIT
    Collected
    2026-07-28
    Default branch
    main
    View the original SKILL.md

    arguments = the user's request

    Parse arguments as:

    • target_repo: the repository to port INTO, in owner/repo form, a URL, or a local path
    • scope: what to port from THIS repository (a feature name, directory, file, or rough description)

    If target_repo is not provided, ask the user which repository to port into. If scope is not provided, ask the user what part of this repository they want to port.

    The direction is fixed: the source is this repository, the target is target_repo. This skill never modifies the target repository directly — it only produces a porting plan on disk for the user to apply manually.

    Step 0: Prepare the Output Directory

    Compute a single timestamp once and reuse it for every file:

    ts="$(date +%Y%m%d-%H%M)"
    out="tmp/porting-another-repository-${ts}"
    mkdir -p "${out}"
    

    All artifacts in this run go under ${out}/. Do not recompute the timestamp per file — every file must share the same directory.

    Step 1: Analyze the Source (This Repository)

    Understand exactly what is being ported. Prefer targeted symbol and search tools over reading whole files.

    Identify, for the requested scope:

    • The entry points and the files that implement it.
    • Its dependencies within this repo (shared utilities, base classes, types, config) that would also need to come along.
    • Any build/test/tooling wiring it relies on (scripts, configs, fixtures, CI steps).
    • External package dependencies it pulls in.

    Write the result to ${out}/01-source-analysis.md.

    Step 2: Analyze the Target Repository

    Understand the target's conventions so the port fits in naturally.

    • If target_repo is a local path, inspect it directly (grep/read).
    • If it is owner/repo or a URL, use gh repo view, gh api repos/<owner/repo>/contents/<path>, and the deepwiki MCP (mcp__deepwiki__ask_question, mcp__deepwiki__read_wiki_contents) to learn its structure.

    Capture:

    • Language, package manager, build/test tooling, and directory layout.
    • Where the equivalent of the source feature would live in the target's structure.
    • Naming, style, and architectural conventions the port must follow.
    • Existing functionality that overlaps or conflicts with what is being ported.

    Write the result to ${out}/02-target-analysis.md.

    Step 3: Produce the Porting Plan

    Map source concepts onto the target. Use a small mapping table (source path/symbol → target path/symbol) — it is far easier to read than prose for this.

    Cover:

    • A step-by-step sequence of changes, ordered so the target stays buildable.
    • Required dependency additions (with versions) and tooling/config changes.
    • Adaptations needed to match the target's conventions (renames, refactors, API shape changes).
    • Risks, open questions, and anything deliberately out of scope.
    • A short test/verification plan for the target.

    Write the result to ${out}/03-porting-plan.md.

    Step 4: Produce Concrete Diffs

    For each step in the plan, write the concrete code/config the user should add to the target, in fenced blocks labeled with their target file paths. Where an existing target file changes, show a unified-diff-style snippet. Keep these ready to copy-paste.

    Write the result to ${out}/04-diff.md.

    Step 5: Write the Overview and Report

    Write ${out}/00-overview.md last, as the index for the run. It must contain:

    • Source repo and scope, target repo, and the timestamp.
    • A one-paragraph summary of what is being ported and the recommended approach.
    • A links list to the other files (01-source-analysis.md04-diff.md) with a one-line description of each.
    • Top risks and open questions surfaced during the analysis.

    Then report to the user:

    • The absolute path of ${out}/.
    • A one-line summary of the port (what moves, where it lands).
    • The top open questions the user needs to decide before applying the plan.

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