Best for
- Use when the user wants to study a document through GitHub Copilot CLI, Amp, or Claude Code, apply an author's frameworks while working, or build a reusable knowledge base from a file.
virgiliojr94/book-to-skill/SKILL.md
Converts books and documents (PDF, EPUB, DOCX, HTML, Markdown, plain text, RTF, MOBI/AZW with Calibre) into structured agent skills, extracting frameworks, mental models, principles, techniques, and anti-patterns. Use when the user wants to study a document through GitHub Copilot CLI, Amp, or Claude Code, apply an author's frameworks while working, or build a reusable knowledge base from a file.
Decision brief
Transform written knowledge into actionable agent skills by extracting structure — not producing summaries.
Compatibility matrix
| Platform | Status | Evidence | What to check |
|---|---|---|---|
| Codex | Not declared | No explicit evidence | Portability before use |
| Claude Code | Declared | Source record | Install path and trigger |
| Cursor | Not declared | No explicit evidence | Portability before use |
| Gemini CLI | Not declared | No explicit evidence | Portability before use |
Installation
The source command is displayed only when detected. A safe inspection prompt is always available so your agent can explain every action before execution.
npx skills add https://github.com/virgiliojr94/book-to-skillInspect the Agent Skill "book-to-skill" from https://github.com/virgiliojr94/book-to-skill/blob/8a2cae63f0b1d1a3add14fc8b7688ba9cfafd9c4/SKILL.md at commit 8a2cae63f0b1d1a3add14fc8b7688ba9cfafd9c4. 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
If no arguments are provided, stop and respond: "book-to-skill requires a supported document path, folder, or glob pattern. Usage: book-to-skill ... [skill-name-slug]"
Verify that there is at least one supported file, directory, or glob pattern among the INPUTPATHS. For directories and globs, expand them to find matching supported files (.pdf, .epub, .docx, .txt, .md, .markdown, .rst, .adoc, .html, .htm, .rtf, .mobi, .azw, .azw3).
Before extracting, ask the user:
Run the extraction script, passing the input paths:
Read this run's metadata.json (the Meta - path from the extraction output) and present the user with an estimate before doing any generation:
Permission review
The documentation asks the agent to run terminal commands or scripts.
adds `shell_command`. The skill needs shell (to run extract.py) and fileThe documentation asks the agent to run terminal commands or scripts.
Run the extraction script, passing the input paths:The documentation asks the agent to read local files, directories, or repositories.
Inspired by the Recursive Language Model (RLM) paradigm: treat `full_text.txt` as a queryable corpus, not a single read. Loading the whole file into context burns budget you will need later for generation.The documentation asks the agent to create, modify, or delete local files.
## Step 6 — Create skill directory structureThe documentation asks the agent to create, modify, or delete local files.
Remove **the work directory this run actually used** — the `Workdir ->` path from theThe documentation includes network, browsing, or remote request actions.
If the user declines, stop here. Requirements: the `gh` CLI, authenticated (check `gh auth status`). If `gh` is missing or unauthenticated, offer to set it up (`brew install gh` or https://cli.github.com, then `gh auth login`) — or use the The documentation includes network, browsing, or remote request actions.
Add a repo `README.md` inside `$SKILLS_HOME/<skill_name>/` (never overwrite an existing file) — the skill title, a one-paragraph description ("Agent skill generated from *<Title>* by <Author> with [book-to-skill](https://github.com/virgilioThe documentation asks the agent to read local files, directories, or repositories.
**Updates/Revisions to existing chapters**: If a section of the new content directly updates or expands an existing chapter's topic, read the existing chapter file, merge the new details into it, and rewrite the file.Evidence record
| Signal | Value | Evidence type | Meaning |
|---|---|---|---|
| Quality score | 93/100 | Computed | Documentation, specificity, maintenance, and trust rules |
| Repository stars | 25,592 | Source | Repository attention, not individual Skill quality |
| Compatibility | 1 platforms | Source | Declared in the catalog source record |
| Usage guide | automated source guide | Editorial | Generated or reviewed according to the visible evidence level |
Pinned source
Transform written knowledge into actionable agent skills by extracting structure — not producing summaries.
Books contain crystallized expertise: frameworks, principles, and techniques that took years to develop. This skill extracts that knowledge into a format GitHub Copilot CLI, Amp, Claude Code, or another compatible agent can leverage repeatedly.
Extract structure, not summaries. A skill isn't a book report. It's a toolkit of:
Preserve the author's precision. Frameworks often have specific names for reasons. "The 5 Whys" isn't interchangeable with "ask why multiple times." Capture the exact formulation.
Layer depth appropriately. Simple books → simple skills. Complex books with 10+ frameworks → skills with reference files and on-demand chapters.
Four paths available. Route based on what the user asks:
Trigger: User provides one or more document/directory/glob paths without special instructions Action: Run all steps below (Steps 0–9) Output: Complete skill with SKILL.md, chapters/, glossary, patterns, cheatsheet
Trigger: User says "analyze", "just extract", or "I want to review before generating" Action: Run Steps 0–3, then produce a structured extraction report (frameworks, principles, techniques found). Stop — do NOT generate skill files. Output: Analysis report for user review
Trigger: User has existing analysis notes or previously ran analyze-only Action: Skip Steps 0–3, use the provided analysis as input, run Steps 4–9 Output: Skill files from the provided analysis
Trigger: User provides one or more new source paths and indicates they want to update an existing skill (either by pointing to the existing skill folder, providing a skill slug that already exists in SKILLS_HOME, or explicitly requesting an update).
Action: Run Step 0 (out-of-scope check), Step 1 (validate inputs), Step 1.5 (identify book type), and Step 2 (extract new files). Then skip to Step 5 (identify/detect existing skill path) and run the Update / Fold-in Workflow to merge the new content into the existing skill files.
Output: Updated existing skill with new/revised chapter summaries and merged indexes/glossaries.
This converter can run from multiple skill systems. When looking for this converter's helper script or writing the generated book skill, prefer these locations in order:
~/.copilot/skills/~/.agents/skills/~/.claude/skills/.github/skills/.claude/skills/.agents/skills/~/.config/agents/skills/~/.config/amp/skills/For generated book skills, pick a destination that the user's host agent can actually discover (see Step 5). When more than one valid root exists, ask the user once and remember the answer for the session — do not silently default.
If no arguments are provided, stop and respond:
"book-to-skill requires a supported document path, folder, or glob pattern. Usage:
book-to-skill <path-to-document-folder-or-glob>... [skill-name-slug]"
Throughout the workflow:
SKILL_NAME.INPUT_PATHS.SKILL.md and a chapters/ sub-folder), or if SKILL_NAME matches an existing skill slug in SKILLS_HOME, flag this run as an Update/Fold-in operation (Mode 4).Verify that there is at least one supported file, directory, or glob pattern among the INPUT_PATHS.
For directories and globs, expand them to find matching supported files (.pdf, .epub, .docx, .txt, .md, .markdown, .rst, .adoc, .html, .htm, .rtf, .mobi, .azw, .azw3).
If no supported files are found, stop with a clear error message.
Before extracting, ask the user:
"What kind of content do these sources have? This helps me choose the best extraction method.
- Technical — has code blocks, tables, formulas, diagrams (e.g. programming books, academic papers, architecture guides)
- Text-heavy — mostly prose, few or no tables/code (e.g. management, productivity, narrative non-fiction)
- Not sure — I'll use the fast method and warn you if quality seems limited"
Store the answer as BOOK_TYPE:
BOOK_TYPE=technicalBOOK_TYPE=textBOOK_TYPE=textIf BOOK_TYPE=technical, inform the user before proceeding:
"📐 Technical mode selected — using Docling for structure-aware extraction (tables, code blocks, formulas preserved as markdown). This takes ~1.5s per page, so expect a few minutes for longer sources. Starting now…"
If BOOK_TYPE=text, inform:
"📄 Text mode selected — using the fastest suitable extractor for each file type. Plain text/Markdown/HTML are usually ready in seconds; PDFs use pdftotext when available."
Run the extraction script, passing the input paths:
SCRIPT_PATH=""
for candidate in \
"$HOME/.copilot/skills/book-to-skill/scripts/extract.py" \
"$HOME/.agents/skills/book-to-skill/scripts/extract.py" \
"$HOME/.claude/skills/book-to-skill/scripts/extract.py" \
".github/skills/book-to-skill/scripts/extract.py" \
".claude/skills/book-to-skill/scripts/extract.py" \
".agents/skills/book-to-skill/scripts/extract.py" \
"$HOME/.config/agents/skills/book-to-skill/scripts/extract.py" \
"$HOME/.config/amp/skills/book-to-skill/scripts/extract.py"
do
if [ -f "$candidate" ]; then
SCRIPT_PATH="$candidate"
break
fi
done
if [ -z "$SCRIPT_PATH" ]; then
echo "Could not find scripts/extract.py for book-to-skill" >&2
exit 1
fi
PYTHON_BIN="${PYTHON_BIN:-python3}"
if ! command -v "$PYTHON_BIN" >/dev/null 2>&1; then
PYTHON_BIN="python"
fi
"$PYTHON_BIN" "$SCRIPT_PATH" $INPUT_PATHS --mode <BOOK_TYPE> --install-missing ask
Before extraction, the script checks optional Python packages needed for the detected format. If a better extractor is missing, it prompts the user with the available fallback. Non-interactive sessions default to fallback unless install mode is explicitly yes.
Tip — preflight the environment: run "$PYTHON_BIN" "$SCRIPT_PATH" --check to print a per-format report of which extractors are installed and the exact command to install whatever is missing, without processing any file. Useful when a user reports a setup or quality problem.
This creates a per-run work directory — <tempdir>/book_skill_work-<pid>/ by default, or exactly the path you set in BOOK_SKILL_WORKDIR — containing:
full_text.txt — combined extracted text of all sources with clear visually demarcated boundaries.metadata.json — overall combined size, words, pages, token counts, dropped EPUB image counts, the resolved workdir, and a detailed list of individual processed sources.The run prints all three paths on completion (Workdir ->, Text ->, Meta ->). Take the paths from that output (or from metadata.json's own workdir field) rather than assuming a fixed location — the directory name differs per run so that concurrent extractions on one machine cannot overwrite each other's results.
Read that run's metadata.json to inspect the results.
Always confirm the extraction is the document you asked for before generating anything: check filename / source_file in metadata.json, or the SOURCE: header on the first line of full_text.txt. If you are waiting on a background run, wait on its specific workdir — polling a shared path can surface a different run's output.
Read this run's metadata.json (the Meta -> path from the extraction output) and present the user with an estimate before doing any generation:
📖 Sources detected: <total_sources> source(s)
<list each source filename and format from the sources metadata list>
<if images_dropped > 5: warn that N source images were not read>
📄 Combined Pages/Sections: ~<N> | Words: ~<N> | Total tokens: ~<N>K
💰 Estimated token cost (Full Conversion / Update):
Input (reading + prompts): ~<N>K tokens
Output (skill files generated/updated): ~<N>K tokens
Total: ~<N>K tokens
Cost: multiply the token counts above by your model's current
input/output per-1M-token rates (prices and model names change often —
do not hardcode them; quote today's rate and label it as an estimate).
⏱ Estimated time: ~<N> minutes
📁 Files to be generated/updated:
SKILL.md + chapter files + glossary + patterns + cheatsheet
➡ Proceed with Full Conversion / Update? (or type "analyze only" to preview first)
How to estimate:
estimated_tokens from metadata × 1.3 (prompts overhead per chapter pass)BOOK_TYPE (DEPTH is decided later in Step 4 and can raise it): text ≈ 1,000, technical ≈ 1,800. If the user has already indicated reference-only vs deep study, use the matching row of the Step 7 matrix.Wait for the user to confirm before proceeding. If they say "analyze only", switch to Mode 2.
Inspired by the Recursive Language Model (RLM) paradigm: treat full_text.txt as a queryable corpus, not a single read. Loading the whole file into context burns budget you will need later for generation.
For books over ~50k tokens, prefer programmatic probes over Read(full_text.txt) without bounds:
# Size check before any Read
wc -w "$FULL_TEXT_PATH"
# Find chapter offsets without loading the whole file
grep -n -E "^\s*(Chapter|CHAPTER)\s+[0-9]+" "$FULL_TEXT_PATH" | head -40
# Pull only the chapter you need (lines start..end inclusive)
sed -n '<start>,<end>p' "$FULL_TEXT_PATH"
# Verify a framework is actually mentioned before claiming it in SKILL.md
grep -c -i "westrum\|dora" "$FULL_TEXT_PATH"
# Targeted Read with offset/limit avoids dumping the full file
# Read(file_path=full_text.txt, offset=<line>, limit=<lines>)
Use this approach for Step 3 (structure analysis), Step 7 (per-chapter summaries), and Step 8 (glossary / patterns extraction). On books under 50k tokens, a single Read is fine.
Why this matters: a 200-page book is ~75k tokens. Re-reading it once per chapter (28 passes) costs ~2M input tokens; using grep + sed to pull only relevant slices keeps generation cost proportional to the output, not the source.
Read the first 8,000 characters of the extracted full_text.txt to identify:
Then read the Table of Contents section if present to map all chapters.
If mode is "Analyze Only": produce the extraction report now and stop. Structure:
## Extraction Report — <Title>
### Author's Core Frameworks
- **<Framework Name>**: <what it is and when to apply>
### Key Principles
- <Principle>: <actionable rule>
### Techniques & Methods
- <Technique>: <step-by-step or how-to>
### Anti-patterns
- <What to avoid>: <why>
### Suggested Skill Name
`{author-lastname}-{core-concept}` — e.g. `cialdini-influence`
### Chapters Detected
| # | Title | Main Frameworks |
Before generating, ask the user:
"What should this skill help you do? (Pick one or more)
- Apply the author's frameworks while working
- Think with the author's mental models
- Reference specific chapters and concepts
- All of the above"
Use the answer to weight what gets highlighted in the SKILL.md Core section.
Derive DEPTH from the answer (no extra prompt):
DEPTH=reference — lean, fast-lookup chapters.DEPTH=study — deeper chapters with more worked detail, examples, and reasoning.DEPTH and BOOK_TYPE together set the per-chapter token budget in Step 7. Do not ask a separate "study vs reference" question — it is inferred here. (In Modes 2/3, where Step 4 is skipped, default DEPTH=study.)
If SKILL_NAME was provided, use it as the skill slug.
Otherwise, propose two options and let the user choose:
{author-lastname}-{core-concept} (e.g. cialdini-influence, meadows-systems)designing-data-intensive-apps)Default to author-concept format if the book has a strong methodological identity.
Choose the destination skill root (SKILLS_HOME). Probe the user's filesystem for existing skill homes and pick by the host the user is running in:
| Host agent | Personal skill root (probe in order) | Project-local root |
|---|---|---|
| GitHub Copilot CLI | ~/.copilot/skills → ~/.agents/skills | .github/skills → .claude/skills → .agents/skills |
| Amp | ~/.agents/skills → ~/.config/agents/skills → ~/.config/amp/skills | .agents/skills |
| Claude Code | ~/.claude/skills | .claude/skills |
| OpenAI Codex | ~/.agents/skills (discovered natively; follows symlinks) | .agents/skills |
Selection rules:
Set SKILLS_HOME to the selected root and check if $SKILLS_HOME/<skill_name>/ already exists.
If it does, prompt the user to choose:
-2 or use a different custom slug.If the user selects Update / Fold-in, proceed immediately to the Update / Fold-in Workflow section after Step 2.5 (skipping Steps 3, 4, 6, 7, 8, 9).
mkdir -p "$SKILLS_HOME/<skill_name>/chapters"
TOKEN BUDGET RULE — CRITICAL (adaptive):
The per-chapter budget scales with BOOK_TYPE and DEPTH. Technical chapters need room for code and tables; study depth needs room for worked reasoning. Pick the budget from this matrix:
DEPTH=reference | DEPTH=study | |
|---|---|---|
BOOK_TYPE=text | 800–1,200 tokens | 1,000–1,800 tokens |
BOOK_TYPE=technical | 1,200–1,800 tokens | 2,000–3,000 tokens |
DEPTH=study is earned with content, not a bigger number. The standard section template (Core Idea → Connects To) naturally lands a dense prose chapter around 700–900 tokens. To reach the study budget honestly — not by padding — a study-depth chapter must add concrete material:
## Worked Example section. This is the single biggest lever and the main thing a learner returns for.If a chapter genuinely has no worked example and resists expansion, let it land below the study floor rather than padding — and note that the chapter is thin in its Core Idea. A reference-depth chapter, by contrast, deliberately omits worked examples and keeps only the decision-ready essentials.
For EACH chapter/major section identified in Step 3:
Read the corresponding section of the extracted full_text.txt (use character offsets or grep for chapter headings).
Create $SKILLS_HOME/<skill_name>/chapters/ch<NN>-<slug>.md using the structure below.
Adapt emphasis based on BOOK_TYPE:
technical → prioritize "Code Examples", "Reference Tables", and "Commands & APIs" sections; preserve exact syntaxtext → prioritize "Frameworks Introduced", "Mental Models", and "Key Takeaways"; skip empty technical sections# Chapter N: <Full Title>
## Core Idea
<1–2 sentences: the single most important thing this chapter teaches>
## Frameworks Introduced
- **<Framework Name>**: <exact formulation — preserve the author's naming>
- When to use: <specific situation>
- How: <steps or criteria>
## Key Concepts
- **<Term>**: <precise definition in 1 sentence>
(5–10 most important terms from this chapter)
## Mental Models
<2–4 frameworks or thinking tools. Write as "Use X when Y" or "Think of X as Y">
## Anti-patterns
- **<What to avoid>**: <why it fails>
## Code Examples *(technical books only — omit if BOOK_TYPE=text)*
<!-- Copy the most instructive snippet from the chapter. Preserve indentation exactly. -->
```<language>
<key code example from this chapter>
(3–7 takeaways a practitioner must remember)
---
## Step 8 — Generate supporting files
### glossary.md
Create `$SKILLS_HOME/<skill_name>/glossary.md`:
- Every significant term from the book, alphabetically sorted
- Format: `**Term** — definition (Ch N)`
- Max 1,500 tokens
### patterns.md
Create `$SKILLS_HOME/<skill_name>/patterns.md`:
- All concrete techniques, design patterns, algorithms from the book
- Format: `## Pattern Name\n**When to use**: ...\n**How**: ...\n**Trade-offs**: ...`
- Max 2,000 tokens
### cheatsheet.md
Create `$SKILLS_HOME/<skill_name>/cheatsheet.md`:
**This is the most differentiated layer of the skill — treat it as a reasoning aid, not a keyword list.** Anyone can grep the glossary for a term. The cheatsheet captures the author's *judgment*: the decisions they'd make and why. It's the file that turns "I know the words" into "I'd act the way the author would".
Prioritize, in order:
1. **Decision rules** — "When X, do Y, because Z." The if/then logic the author applies, stated so the reader can apply it without re-reading the book.
2. **Decision trees / flowcharts** (as nested bullets or a small table) — for choices with more than two branches.
3. **Trade-off matrices** — competing options scored on the dimensions the author cares about, so the reader can pick under their own constraints.
4. **Thresholds & defaults** — the specific numbers, ratios, or rules of thumb the author commits to (e.g. "keep functions under ~20 lines", "alert when error budget < 10%").
5. **Tells & smells** — fast heuristics for recognizing a situation ("if you see X, you're probably in trouble Y").
Avoid: bare term→definition rows (that's the glossary), and prose paragraphs (that's the chapters). Every line should help the reader *decide* something.
- Format mostly as compact tables and decision rules; the content you'd want on a single printed page kept beside you while working.
- Max 1,200 tokens.
---
## Step 9 — Generate the master SKILL.md
**CRITICAL TOKEN BUDGET: Keep SKILL.md body under 4,000 tokens.**
Compaction truncates from the END — put the most important content FIRST.
Create `$SKILLS_HOME/<skill_name>/SKILL.md`:
```markdown
---
name: <skill_name>
description: "Knowledge base from \"<Full Title>\" by <Author(s)>. Use when applying <author>'s frameworks for <key topics, 3–6 terms>, studying the book, or referencing its concepts."
---
<!-- argument-hint: [topic, framework name, or chapter number] -->
# <Full Title>
**Author**: <Author(s)> | **Pages**: ~<N> | **Chapters**: <N> | **Generated**: <YYYY-MM-DD>
## How to Use This Skill
- **Without arguments** — load core frameworks for reference
- **With a topic** — ask about `replication`, `pricing`, or another indexed topic; I find and read the relevant chapter
- **With chapter** — ask for `ch05`; I load that specific chapter
- **Browse** — ask "what chapters do you have?" to see the full index
When you ask about a topic not covered in Core Frameworks below, I will read
the relevant chapter file before answering.
---
## Core Frameworks & Mental Models
<!-- ~2,000 tokens: the author's most important named frameworks and principles.
Preserve exact names. Write as "Use X when Y", "Prefer X over Y because Z".
This is a toolkit, not a summary. -->
<generate 2,000 tokens of the most critical frameworks and insights here>
---
## Chapter Index
| # | Title | Key Frameworks |
|---|-------|----------------|
| [ch01](chapters/ch01-<slug>.md) | <Title> | <framework1>, <framework2> |
| [ch02](chapters/ch02-<slug>.md) | <Title> | <framework1>, <framework2> |
...
## Topic Index
<!-- Alphabetical. Major terms/frameworks → chapter(s) that cover them. -->
- **<Term>** → ch<N>[, ch<N>]
- **<Term>** → ch<N>
## Supporting Files
- [glossary.md](glossary.md) — all key terms with definitions
- [patterns.md](patterns.md) — all techniques and design patterns
- [cheatsheet.md](cheatsheet.md) — quick reference tables and decision guides
---
## Scope & Limits
This skill covers the book content only. For hands-on implementation in your codebase,
combine with project-specific tools. For topics beyond this book, check related skills
or ask the agent directly.
<if images_dropped > 5: state that N source images were not read>
Before reporting success, loading the skill in another session, or publishing it, run the advisory security scan:
SKILL_CONVERTER_ROOT="$(cd "$(dirname "$SCRIPT_PATH")/.." && pwd)"
"$PYTHON_BIN" "$SKILL_CONVERTER_ROOT/tools/scan_generated_skill.py" "$SKILLS_HOME/<skill_name>"
If the scanner exits non-zero, stop and ask a human to review its file/line findings. Do not silently rewrite the generated files, and do not load or publish the skill until the findings are resolved or explicitly accepted.
PYTHON_BIN="${PYTHON_BIN:-python3}"
if ! command -v "$PYTHON_BIN" >/dev/null 2>&1; then
PYTHON_BIN="python"
fi
Remove **the work directory this run actually used** — the `Workdir ->` path from the
extraction output, which is also stored as `workdir` in `metadata.json`. Never delete a
directory you did not create: another extraction may be running beside yours.
```bash
# WORKDIR is the path this run reported; quote it in case of spaces.
rm -rf "$WORKDIR"
Equivalently, if you still have the metadata file:
"$PYTHON_BIN" - "$WORKDIR_METADATA_JSON" <<'PY'
import json
import shutil
import sys
from pathlib import Path
meta_path = Path(sys.argv[1])
workdir = json.loads(meta_path.read_text(encoding="utf-8")).get("workdir")
if workdir:
shutil.rmtree(workdir, ignore_errors=True)
PY
Older copies of this file removed a single fixed book_skill_work directory. That path is
no longer used, so such a cleanup is now a harmless no-op rather than something that could
delete a concurrent run's output.
Then report to the user:
✅ Skill created: $SKILLS_HOME/<skill_name>/
📚 Book: <Full Title> — <Author>
📄 Pages: ~<N> | Chapters: <N>
Files generated:
SKILL.md — core frameworks + index (~X tokens)
chapters/ — <N> chapter summaries (~X tokens each, ~X total)
glossary.md — key terms (~X tokens)
patterns.md — techniques & patterns (~X tokens)
cheatsheet.md — quick reference (~X tokens)
─────────────────────────────────────────────────────
Total skill size: ~X tokens (loaded on-demand, not all at once)
💡 Tip: check your agent's session cost/usage command to see actual token usage.
Usage:
Ask for <skill_name> → load core frameworks
Ask <skill_name> about <topic> → find and explain a topic
Ask <skill_name> for ch<N> → dive into a specific chapter
Reload (if your agent doesn't auto-detect new skills):
GitHub Copilot CLI: /skills reload
Claude Code: restart the session
Amp: restart the session
Share this skill (optional):
GitHub repo, installable on any host (Step 11): say "publish"
Copilot ecosystem: gh skill publish $SKILLS_HOME/<skill_name>
After the Step 10 report, offer once — and only if the Step 9.5 scan passed:
"Want me to publish this skill to GitHub so any Agent Skills host can install it with
npx skills add? (yes / skip)"
If the user declines, stop here. Requirements: the gh CLI, authenticated (check gh auth status). If gh is missing or unauthenticated, offer to set it up (brew install gh or https://cli.github.com, then gh auth login) — or use the no-gh path: the user creates an empty repo of the chosen visibility in the GitHub web UI, then you run the git init/add/commit commands below followed by git remote add origin <repo-url> && git push -u origin main. The visibility rule below applies to the web-created repo exactly the same.
Visibility is a separate closed question — never inferred, never read out of an earlier answer. Once the user accepts, ask it on its own and require a one-word reply:
"Private or public repository? Reply with one word:
privateorpublic."
The reply must be public, not merely contain it — a hard rule, not a suggestion. Run gh repo create with --private in every case except one: the answer to the visibility question is the bare word public. Substring matching is forbidden, because a sentence about the source's licence is not a visibility answer — "it's public domain", "the book is public domain", "it's publicly available" all describe the material, not the repository, and all resolve to --private. A paraphrase, a sentence, an ambiguous answer, silence, or your own inference is NOT consent: re-ask once, and if the reply is still not the bare word, use --private and say so in the report. A private repo can be flipped public later; a public push of book-derived content cannot be un-published.
Copyright gate — always apply before creating the repo: chapter files are synthesized summaries, not raw text, but they still derive from the source material. Per the README's Copyright & fair use policy, skills generated from third-party copyrighted books must stay private; offer public only when the source is the user's own writing, openly licensed content, or material the user explicitly confirms they are authorized to redistribute publicly — and state which case applies. Having access to internal company material is not permission to disclose it: skills from internal docs stay private unless the user states they hold publication rights.
If accepted:
README.md inside $SKILLS_HOME/<skill_name>/ (never overwrite an existing file) — the skill title, a one-paragraph description ("Agent skill generated from by with book-to-skill"), the install command from step 3 below, the file inventory, and a note that the content is synthesized summaries, not the book text.<skill_name>; let the user override — some prefer a <skill_name>-skill suffix). Nested-repo guard: first check whether the skill folder already sits inside a git repository (git -C "$SKILLS_HOME/<skill_name>" rev-parse --show-toplevel — always the case for project-local roots like .claude/skills/). If it does, do NOT git init in place: the outer repository would record the folder as an embedded repo (gitlink, mode 160000) without .gitmodules, and fresh clones of the outer project would silently omit the skill. Instead, copy the skill folder to a scratch directory, run the commands below from the copy, and tell the user the published repo — not the project-local folder — is the remote's working copy.cd "$SKILLS_HOME/<skill_name>"
git init -b main
git add -A
git commit -m "Add <skill_name> skill"
gh repo create <repo_name> --private --source . --push
# --private is the default; substitute --public ONLY under the visibility rule above
# (the visibility answer WAS the bare word "public" AND the copyright gate allows it)
✅ Published: https://github.com/<owner>/<repo_name> (<private|public>)
Install on any Agent Skills host:
npx skills add https://github.com/<owner>/<repo_name> --skill <skill_name>
When the nested-repo guard fired and the repo was published from a scratch copy, add one line — that local folder never gains a remote, so the Update/Fold-in push offer will never appear for it:
⚠️ Published from a copy: <skill folder> sits inside another git repository, so it has
no remote of its own. To publish a later update, re-run Step 11, or clone
https://github.com/<owner>/<repo_name> and fold new material into the clone.
The root-level SKILL.md layout is exactly what the skills CLI detects, so the repo is installable as-is — no restructuring needed. Outside the nested-repo case the local folder stays the live install for this machine and is the remote's working copy, so later Update/Fold-in runs can commit and push their changes to the same remote.
When performing an Update/Fold-in operation on an existing skill at $SKILLS_HOME/<skill_name>/:
Read and parse the existing skill's files:
$SKILLS_HOME/<skill_name>/SKILL.md to parse the existing Chapter Index, Topic Index, metadata (author, total chapters), and Core Frameworks.$SKILLS_HOME/<skill_name>/chapters/ to find the highest chapter number (e.g. ch12).$SKILLS_HOME/<skill_name>/glossary.md, $SKILLS_HOME/<skill_name>/patterns.md, and $SKILLS_HOME/<skill_name>/cheatsheet.md to see what terms and frameworks are already indexed.Analyze the new extracted text in this run's full_text.txt (the Text -> path from the extraction output) to identify if the new content represents:
chapters/. Start numbering these files after the highest existing chapter number (e.g. if the existing chapters stop at ch12, create ch13-*.md, ch14-*.md, etc.).For each new or revised chapter:
$SKILLS_HOME/<skill_name>/chapters/.$SKILLS_HOME/<skill_name>/glossary.md.**Term** — definition (Ch 4, Ch 13)).$SKILLS_HOME/<skill_name>/glossary.md with the fully merged, alphabetized list.$SKILLS_HOME/<skill_name>/patterns.md.$SKILLS_HOME/<skill_name>/cheatsheet.md.Update the master skill file $SKILLS_HOME/<skill_name>/SKILL.md:
Generated date to the current date.- **Topic** → ch05, ch13).Once the files are successfully written and merged, run Step 9.5, then proceed to Step 10 to perform cleanup and print a custom update report summarizing the newly added chapters, merged glossary terms, and updated indices. If the skill folder is a git repository with a remote (published via Step 11), offer to commit the update and push it.
Frequently asked questions
Transform written knowledge into actionable agent skills by extracting structure — not producing summaries.
The source record exposes this install command: npx skills add https://github.com/virgiliojr94/book-to-skill. Inspect the command and pinned source before running it.
The pinned source record declares support for: claude code.
Static rules flagged exec-script, read-files, write-files, network in the source; the page lists the matching lines and excerpts.
Alternatives
Leutenegger/book-to-skill
Converts books and documents (PDF, EPUB, DOCX, HTML, Markdown, plain text, RTF, MOBI/AZW with Calibre) into structured agent skills, extracting frameworks, mental models, principles, techniques, and anti-patterns. Use when the user wants to study a document through GitHub Copilot CLI, Amp, or Claude Code, apply an author's frameworks while working, or build a reusable knowledge base from a file.
narrative-io/narrative-skills-marketplace
Translate a fuzzy analytical question into a rigorous investigation plan. Interrogates the ask, grounds the plan in the available data dictionary, applies analytical best practices, and produces a structured brief of query specifications for a downstream query-writing skill. Plans, does not write SQL. Use when: "why did X drop", "is there a relationship between A and B", "who are our highest-value customers", "what's driving the change in Y", "investigate this trend", "design an analysis for", "
brucesongs/kali-claw
Insecure Design (OWASP A06:2025) focuses on security flaws in system architecture and design phases, rather than code implementation-level bugs.
vasilyu1983/AI-Agents-public
Scans public GitHub repos for agent skills, dev practices, and code patterns. Use when enriching skills, setting team policy, or researching a build domain.