Show system profile popup on select: name, star type, hop distance, corridor, GTTR excerpt, body count, population, adjacent systems. Edge rendering changed to show no edges by default, only selected system's gate lines on click. Star map data extended with wiki fields for all 301 systems. Ticket: #780 Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com>
240 lines
8.2 KiB
Python
Executable File
240 lines
8.2 KiB
Python
Executable File
#!/usr/bin/env python3
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"""Generate client/data/star_map_data.json from star-map.json + systems.db + wiki.
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Run from any directory — paths are resolved relative to this script's location:
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python3 tooling/generate-star-map-data.py
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python3 tooling/generate-star-map-data.py --check # exit 1 if committed JSON is stale
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Sources:
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docs/design/star-map.json — graph topology (nodes + edges)
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server/server/data/systems.db — proper names, geographic sectors
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wiki/star-systems/ — star type, bodies, population, GTTR excerpt
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Output:
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client/data/star_map_data.json — self-contained client data for the star map UI
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"""
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import json
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import os
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import re
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import sqlite3
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import sys
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import tempfile
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# Resolve project root from this script's location: tooling/ is one level below root.
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# Works regardless of cwd — no fragile relative path guessing.
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_SCRIPT_DIR = os.path.dirname(os.path.abspath(__file__))
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_PROJECT_ROOT = os.path.dirname(_SCRIPT_DIR)
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# Worktree layout: settled-reach/{client,server,main}/
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# This script lives in client/tooling/, so _PROJECT_ROOT = client/.
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# The parent of _PROJECT_ROOT is the worktree parent where sibling dirs live.
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_WORKTREE_PARENT = os.path.dirname(_PROJECT_ROOT)
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STAR_MAP_PATH = os.path.join(_PROJECT_ROOT, "docs", "design", "star-map.json")
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SYSTEMS_DB_PATH = os.path.join(_WORKTREE_PARENT, "server", "server", "data", "systems.db")
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WIKI_PATH = os.path.join(_PROJECT_ROOT, "wiki", "star-systems")
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OUTPUT_PATH = os.path.join(_PROJECT_ROOT, "client", "data", "star_map_data.json")
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def system_id_to_wiki_slug(system_id: str) -> str:
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"""Convert system_id to wiki folder slug. 'GJ 71' → 'GJ-71'."""
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return system_id.replace(" ", "-")
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def parse_wiki_index(system_id: str) -> dict:
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"""Extract star type, bodies summary, and population from index.md.
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Returns dict with keys: star_type, bodies, population (all strings, may be empty).
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"""
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slug = system_id_to_wiki_slug(system_id)
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path = os.path.join(WIKI_PATH, slug, "index.md")
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result = {"star_type": "", "bodies": "", "population": ""}
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if not os.path.exists(path):
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return result
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with open(path, encoding="utf-8") as f:
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content = f.read()
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# Star row: | **Star** | G8V · 11.9 ly |
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m = re.search(r"\|\s*\*\*Star\*\*\s*\|\s*([^|]+?)\s*\|", content)
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if m:
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raw = m.group(1).strip()
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# Extract spectral class — everything before " ·" or end of string
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star_type = raw.split("·")[0].strip()
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result["star_type"] = star_type
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# Bodies row: | **Bodies** | 2 habitable · 3 inhabited |
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m = re.search(r"\|\s*\*\*Bodies\*\*\s*\|\s*([^|]+?)\s*\|", content)
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if m:
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result["bodies"] = m.group(1).strip()
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# Population row: | **Population** | 1,200,000,000 |
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m = re.search(r"\|\s*\*\*Population\*\*\s*\|\s*([^|]+?)\s*\|", content)
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if m:
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result["population"] = m.group(1).strip()
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return result
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def parse_gttr_excerpt(system_id: str) -> str:
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"""Extract the first body paragraph from gttr.md as the GTTR excerpt."""
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slug = system_id_to_wiki_slug(system_id)
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path = os.path.join(WIKI_PATH, slug, "gttr.md")
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if not os.path.exists(path):
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return ""
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with open(path, encoding="utf-8") as f:
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lines = f.readlines()
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# Skip the H1 heading line, then find the first non-empty paragraph
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in_content = False
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paragraph_lines = []
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for line in lines:
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stripped = line.strip()
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if not in_content:
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# Skip heading and blank lines at start
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if stripped.startswith("# "):
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in_content = True
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continue
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if not stripped:
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# Blank line ends the paragraph if we've collected lines
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if paragraph_lines:
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break
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else:
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if not stripped.startswith("#"):
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paragraph_lines.append(stripped)
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return " ".join(paragraph_lines)
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def build_adjacency(edges: list) -> dict:
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"""Build a map from system_id to list of adjacent system_ids from edges."""
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adj: dict = {}
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for edge in edges:
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if len(edge) < 2:
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continue
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a, b = edge[0], edge[1]
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adj.setdefault(a, [])
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adj.setdefault(b, [])
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if b not in adj[a]:
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adj[a].append(b)
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if a not in adj[b]:
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adj[b].append(a)
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return adj
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def generate() -> dict:
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"""Generate the enriched star map data dict."""
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if not os.path.exists(STAR_MAP_PATH):
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print(f"ERROR: star-map.json not found at {STAR_MAP_PATH}", file=sys.stderr)
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sys.exit(1)
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if not os.path.exists(SYSTEMS_DB_PATH):
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print(f"ERROR: systems.db not found at {SYSTEMS_DB_PATH}", file=sys.stderr)
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sys.exit(1)
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with open(STAR_MAP_PATH) as f:
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star_map = json.load(f)
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conn = sqlite3.connect(SYSTEMS_DB_PATH)
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conn.row_factory = sqlite3.Row
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cur = conn.cursor()
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cur.execute(
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"SELECT system_id, proper_name, geographic_sector, geographic_band "
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"FROM star_systems"
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)
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db_lookup = {row["system_id"]: dict(row) for row in cur.fetchall()}
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conn.close()
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adjacency = build_adjacency(star_map["edges"])
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nodes = []
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wiki_hits = 0
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gttr_hits = 0
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for n in star_map["nodes"]:
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sid = n["system_id"]
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db = db_lookup.get(sid, {})
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wiki = parse_wiki_index(sid)
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gttr = parse_gttr_excerpt(sid)
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if wiki["star_type"]:
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wiki_hits += 1
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if gttr:
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gttr_hits += 1
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entry = {
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"system_id": sid,
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"proper_name": db.get("proper_name", ""),
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"geographic_sector": db.get("geographic_sector", "unknown"),
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"geographic_band": db.get("geographic_band", ""),
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"gate_topology": n["gate_topology"],
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"aperture_count": n["aperture_count"],
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"gate_connections": n["gate_connections"],
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"hop_distance": n["hop_distance_from_gateway"],
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"adjacent_systems": adjacency.get(sid, []),
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}
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if wiki["star_type"]:
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entry["star_type"] = wiki["star_type"]
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if wiki["bodies"]:
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entry["bodies"] = wiki["bodies"]
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if wiki["population"]:
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entry["population"] = wiki["population"]
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if gttr:
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entry["gttr_excerpt"] = gttr
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if n.get("is_gateway"):
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entry["is_gateway"] = True
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nodes.append(entry)
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nodes.sort(key=lambda x: (x["hop_distance"], x["system_id"]))
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print(f" Wiki index data: {wiki_hits}/{len(nodes)} systems")
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print(f" GTTR excerpts: {gttr_hits}/{len(nodes)} systems")
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return {
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"_meta": {
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"generated_from": "star-map.json + systems.db + wiki/star-systems",
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"system_count": len(nodes),
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"edge_count": len(star_map["edges"]),
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"note": "Client-side star map data. Regenerate with: tooling/generate-star-map-data.py",
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},
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"nodes": nodes,
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"edges": star_map["edges"],
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}
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def write_output(data: dict, path: str) -> None:
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os.makedirs(os.path.dirname(path), exist_ok=True)
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with open(path, "w") as f:
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json.dump(data, f, indent=2, ensure_ascii=False)
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f.write("\n")
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def main() -> None:
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check_mode = "--check" in sys.argv
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data = generate()
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if check_mode:
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# Generate to temp file and compare against committed JSON
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if not os.path.exists(OUTPUT_PATH):
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print(f"STALE: {OUTPUT_PATH} does not exist — run without --check to generate")
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sys.exit(1)
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with tempfile.NamedTemporaryFile(mode="w", suffix=".json", delete=False) as tmp:
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json.dump(data, tmp, indent=2, ensure_ascii=False)
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tmp.write("\n")
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tmp_path = tmp.name
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try:
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with open(tmp_path) as a, open(OUTPUT_PATH) as b:
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if a.read() != b.read():
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print(f"STALE: {OUTPUT_PATH} differs from generated output")
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print("Run: python3 tooling/generate-star-map-data.py")
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sys.exit(1)
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print(f"OK: {OUTPUT_PATH} is up to date")
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finally:
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os.unlink(tmp_path)
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else:
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write_output(data, OUTPUT_PATH)
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print(f"Generated {OUTPUT_PATH}")
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print(f" Nodes: {data['_meta']['system_count']}, Edges: {data['_meta']['edge_count']}")
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if __name__ == "__main__":
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main()
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