"""hh-cardex — turn a saved hack-house VM into a collectible "mythic creature" card. A VM in the host-global registry (`~/.hh/registry.json`) carries enough real signal — is the work done, is it reusable, how self-describing, how battle-tested, how much was installed — to *judge its value deterministically*. This module turns that judgement into a Pokemon-style card: a **PowerScore** (0-1000), a **rarity** tier, a 6-stat block, an elemental **type**, and a stable procedural **name**. Everything here is pure + deterministic: the same VM always yields the same card, seeded only by its label/tags/size — no model, no network, no randomness. The image pipeline (SVG card frame + creature art) is a separate, later layer that consumes the card dict this module emits. Scoring degrades gracefully: registry entries cache `purpose/status/todo/tags`, but `provenance/objective/usage/blockers` live in the VM's deeper `.hh-agent/manifest.yaml`. Pass that manifest dict in to score those axes too; omit it and those sub-scores simply read 0 (the card is still valid). """ from __future__ import annotations import argparse import hashlib import json import math import os from dataclasses import dataclass, asdict, field from pathlib import Path # ── tuning knobs (all in one place so the rubric is easy to retune) ─────────── BASE_MB = 128.0 # ~size of the empty hh-dev base image; payload = size - BASE SUBSCORE_MAX = 100 # completeness+reusability+richness+pedigree+heft caps sum POWER_MAX = 1000 # PowerScore = subscore_sum * 10 # Rarity by absolute PowerScore cutoff (user choice: stable & reproducible). RARITY_TIERS = [ ("Legendary", 825), ("Epic", 650), ("Rare", 450), ("Uncommon", 250), ("Common", 0), ] # tag → elemental type. First-matched tags (in entry order) pick up to 2 types. TYPE_MAP = { "recon": "Psychic", "osint": "Psychic", "scanner": "Psychic", "exploit": "Dark", "pwn": "Dark", "payload": "Dark", "c2": "Dark", "redteam": "Fire", "fuzz": "Fire", "brute": "Fire", "attack": "Fire", "http": "Electric", "web": "Electric", "api": "Electric", "crypto": "Ghost", "cipher": "Ghost", "harden": "Steel", "defense": "Steel", "blue": "Steel", "audit": "Steel", "network": "Flying", "dns": "Flying", "proxy": "Flying", "kali": "Dragon", "dev": "Normal", "build": "Normal", "lib": "Normal", "tooling": "Normal", } OFFENSIVE_TAGS = {"exploit", "pwn", "recon", "osint", "fuzz", "kali", "attack", "redteam", "payload", "c2", "scanner", "brute"} DEFENSIVE_TAGS = {"harden", "defense", "blue", "monitor", "audit", "forensics", "ids", "firewall", "steel"} # name building blocks, indexed by a hash of the VM label so names are stable. TYPE_PREFIX = { "Psychic": "Psy", "Dark": "Nox", "Fire": "Pyr", "Electric": "Volt", "Ghost": "Spec", "Steel": "Fer", "Flying": "Aer", "Dragon": "Dra", "Normal": "Neo", "Ground": "Terr", "Water": "Aqua", } RARITY_SUFFIX = { "Common": ["ling", "et", "ix"], "Uncommon": ["id", "ox", "ar"], "Rare": ["or", "yn", "ux"], "Epic": ["yx", "ron", "thys"], "Legendary": ["areth", "thar", "mereon"], } # generic words stripped when mining a name root out of the VM label. _STOP_WORDS = {"vm", "kit", "dev", "test", "lib", "library", "tool", "tools", "the", "a", "smoke", "snap", "image", "app"} def _clamp(x: float, lo: float = 0.0, hi: float = 1.0) -> float: return max(lo, min(hi, x)) # ── the five value sub-scores ──────────────────────────────────────────────── def _completeness(status: str, todo: list, blockers: list) -> float: s = (status or "").strip().lower() base = 25.0 if s in ("done", "complete", "completed") else (12.0 if s == "in_progress" else 0.0) base -= min(len(todo) * 3, 12) base -= len(blockers) * 5 return _clamp(base, 0, 25) def _reusability(shareable: bool, share_path: str, artifact_kind: str) -> float: v = 14.0 if (shareable and share_path) else 0.0 v += {"file": 6.0, "image": 2.0, "snapshot": 2.0}.get(artifact_kind, 0.0) return _clamp(v, 0, 20) def _richness(purpose: str, objective: str, tags: list, has_usage: bool) -> float: v = 0.0 v += 5 if purpose.strip() else 0 v += 5 if objective.strip() else 0 v += min(len(tags) * 2, 6) v += 4 if has_usage else 0 return _clamp(v, 0, 20) def _pedigree(provenance: list, created_by: str) -> float: v = min(len(provenance) * 3, 12) v += 3 if created_by.strip().lower() not in ("", "smoke", "pulled") else 0 return _clamp(v, 0, 15) def _heft(size_bytes: int) -> float: payload_mb = max(0.0, (size_bytes or 0) / 1e6 - BASE_MB) return _clamp(4.0 * math.log2(1 + payload_mb / 8.0), 0, 20) def _rarity_of(power: int) -> str: for name, floor in RARITY_TIERS: if power >= floor: return name return "Common" # ── stats: the same sub-scores, re-projected onto the 6 classic stats ───────── def _stat(frac: float) -> int: """Map a 0..1 fraction onto the Pokemon-ish 5..255 stat range.""" return int(round(5 + _clamp(frac) * 250)) def _types(tags: list) -> list: out: list[str] = [] for t in tags: ty = TYPE_MAP.get(t.strip().lower()) if ty and ty not in out: out.append(ty) if len(out) == 2: break return out or ["Normal"] # ── procedural name (deterministic; seeded by the VM label) ─────────────────── def _seed(label: str) -> int: return int(hashlib.sha256(label.encode()).hexdigest(), 16) def _root(label: str) -> str: """Mine a pronounceable name root from the VM label.""" toks = [t for t in "".join(c if c.isalnum() else " " for c in label).split() if t.lower() not in _STOP_WORDS and not t.isdigit()] if not toks: toks = [label or "vm"] # pick a token by hash, take its first 4 letters as the core syllable. tok = toks[_seed(label) % len(toks)].lower() return (tok[:4] or "mon") def _name(label: str, primary_type: str, rarity: str) -> str: h = _seed(label) prefix = TYPE_PREFIX.get(primary_type, "Neo") suffixes = RARITY_SUFFIX[rarity] suffix = suffixes[(h >> 8) % len(suffixes)] core = _root(label) # avoid a doubled letter at the prefix/core seam (Volt+tap -> Voltap) if prefix and core and prefix[-1].lower() == core[0].lower(): core = core[1:] return (prefix + core + suffix).capitalize() def _dex(label: str) -> int: return _seed(label) % 1000 + 1 @dataclass class Card: label: str name: str dex: int rarity: str power: int # 0..1000 types: list = field(default_factory=list) stats: dict = field(default_factory=dict) # HP/Attack/Defense/SpAtk/Speed/SpDef subscores: dict = field(default_factory=dict) shiny: bool = False # deterministic "holo pull" flavor: str = "" def to_dict(self) -> dict: return asdict(self) def card_from_entry(entry: dict, manifest: dict | None = None) -> Card: """Build a Card from a registry entry (+ optional deep .hh-agent manifest).""" m = manifest or {} state = m.get("state", {}) if isinstance(m.get("state"), dict) else {} goals = m.get("goals", {}) if isinstance(m.get("goals"), dict) else {} label = entry.get("label", "vm") tags = entry.get("tags") or [] blockers = state.get("blockers") or [] provenance = m.get("provenance") or [] objective = goals.get("objective", "") has_usage = bool(m.get("usage") or m.get("setup")) comp = _completeness(entry.get("status", ""), entry.get("todo") or [], blockers) reuse = _reusability(bool(entry.get("shareable")), entry.get("share_path", ""), entry.get("artifact_kind", "")) rich = _richness(entry.get("purpose", ""), objective, tags, has_usage) ped = _pedigree(provenance, entry.get("created_by", "")) heft = _heft(entry.get("size_bytes")) subs = {"completeness": round(comp, 1), "reusability": round(reuse, 1), "richness": round(rich, 1), "pedigree": round(ped, 1), "heft": round(heft, 1)} power = int(round(sum(subs.values()) / SUBSCORE_MAX * POWER_MAX)) power = max(0, min(POWER_MAX, power)) rarity = _rarity_of(power) types = _types(tags) # stat block — every stat gets a floor from overall power so a strong VM is # well-rounded, plus a specialized component from the axis that "owns" it. pf = power / POWER_MAX floor = 0.30 * pf low = [t.lower() for t in tags] off = min(sum(t in OFFENSIVE_TAGS for t in low), 3) / 3 dfn = min(sum(t in DEFENSIVE_TAGS for t in low), 3) / 3 payload_mb = max(0.0, (entry.get("size_bytes") or 0) / 1e6 - BASE_MB) speed_raw = _clamp(1 - payload_mb / 256) stats = { "HP": _stat(floor + 0.70 * (0.6 * heft / 20 + 0.4 * comp / 25)), "Attack": _stat(floor + 0.70 * off), "Defense": _stat(floor + 0.70 * (0.5 * dfn + 0.5 * comp / 25)), "SpAtk": _stat(floor + 0.70 * (rich / 20)), "Speed": _stat(floor + 0.70 * speed_raw), "SpDef": _stat(floor + 0.70 * (0.6 * reuse / 20 + 0.4 * ped / 15)), } shiny = (_seed(label) >> 16) % 16 == 0 # ~1/16, the classic shiny odds name = _name(label, types[0], rarity) purpose = entry.get("purpose") or objective or "an unknown sandbox" ty = "/".join(types) flavor = (f"A {rarity.lower()} {ty}-type born from {purpose.rstrip('.')}. " f"Base stat total {sum(stats.values())}.") return Card(label=label, name=name, dex=_dex(label), rarity=rarity, power=power, types=types, stats=stats, subscores=subs, shiny=shiny, flavor=flavor) # ── registry I/O + CLI ──────────────────────────────────────────────────────── def _registry_path() -> Path: base = os.environ.get("HOME", ".") return Path(base) / ".hh" / "registry.json" def load_entries(path: Path) -> list[dict]: data = json.loads(path.read_text()) return list(data.get("entries", {}).values()) _BAR = "█" def _render_table(cards: list[Card]) -> str: rows = [] rows.append(f"{'VM':<22} {'NAME':<14} {'#':>4} {'RARITY':<10} {'PWR':>4} " f"{'TYPE':<16} {'BST':>4} HP/Atk/Def/SpA/Spe/SpD") rows.append("-" * 104) for c in sorted(cards, key=lambda x: -x.power): s = c.stats line = (f"{c.label[:22]:<22} {c.name:<14} {c.dex:>4} " f"{(('*' if c.shiny else '') + c.rarity):<10} {c.power:>4} " f"{'/'.join(c.types):<16} {sum(s.values()):>4} " f"{s['HP']:>3}/{s['Attack']:>3}/{s['Defense']:>3}/" f"{s['SpAtk']:>3}/{s['Speed']:>3}/{s['SpDef']:>3}") rows.append(line) return "\n".join(rows) def main(argv=None) -> int: p = argparse.ArgumentParser(prog="hh-cardex", description="Score saved hack-house VMs as collectible cards.") p.add_argument("--registry", default=str(_registry_path()), help="path to registry.json (default: ~/.hh/registry.json)") p.add_argument("--label", help="only this VM") p.add_argument("--json", action="store_true", help="emit card JSON instead of a table") args = p.parse_args(argv) entries = load_entries(Path(args.registry)) if args.label: entries = [e for e in entries if e.get("label") == args.label] if not entries: print(f"no VM labelled '{args.label}' in {args.registry}") return 1 cards = [card_from_entry(e) for e in entries] if args.json: out = [c.to_dict() for c in cards] print(json.dumps(out[0] if args.label else out, indent=2)) else: print(_render_table(cards)) return 0 if __name__ == "__main__": raise SystemExit(main())