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GerbilManager/tools/import/rpro3_pedigree.py
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feat(deploy): TrueNAS Custom-App + Auto-Deploy, plus aufgelaufene Arbeit
Deployment:
- custom-app.compose.yaml: self-contained Compose fuer TrueNAS "Custom App"
  (absolute Host-Bind-Pfade, postgres:18, pull_policy always, Port 8090)
- scripts/truenas-deploy.sh: Host-Skript create/redeploy via midclt (App
  bleibt unter Apps sichtbar) inkl. Image-Pull + Health-Check
- ci.yml Deploy-Job: laeuft auf ubuntu-latest-Runner, kopiert Deploy-Dateien
  per SSH auf den NAS-Host und triggert truenas-deploy.sh (statt runs-on goldeye)
- compose.yaml/.env.example: postgres:18 (Locale-Match zur Quell-DB), Port 8090
- .gitignore: .agents/, tools/rag/, deploy/truenas/.env (Secrets/Scratch)

Aufgelaufene Feature-Arbeit (verified/Freeze, Migrationen, Import-Triage):
- GerbilOverride/VerifiedGerbil-Endpoints + GerbilSnapshotService + Tests
- EF-Migrationen (ShowInChronicle, Stillborn, BirthOrder, ManualFlag, DSGVO)
- Frontend VerifizierteTierePage + verified-API + e2e-Spec
- diverse Import-/Triage-Skripte und -Tests

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-19 09:19:11 +02:00

83 lines
2.5 KiB
Python

# -*- coding: utf-8 -*-
"""Rekursive Ahnentafel aus _rpro3.db: verfolgt Eltern-Zeiger (pid_raw/mid_raw)
ueber ALLE Generationen zurueck. Gibt Vorfahren + Eltern-Kind-Links aus.
python -X utf8 rpro3_pedigree.py "<Name>" [dob]
"""
import sys
import compare_rpro3 as C
DB = "_rpro3.db"
def build():
R = C.load_rpro3(DB)
A = R["animals"]
by_rid = {a["rid"]: a for a in A}
return A, by_rid
def norm(s):
import re
s = (s or "").lower()
s = re.split(r"\bvon\b|\bof\b|\bv\.d\.\b|\bgen\.?\b", s)[0]
return re.sub(r"[\s._-]", "", s)
def find(A, name, dob=None):
cs = [a for a in A if norm(a["name"]) == norm(name)]
if dob:
m = next((a for a in cs if a["dob"] == dob), None)
if m:
return m
return cs[0] if len(cs) == 1 else None
def walk(root, by_rid):
"""Return (nodes {rid:animal}, links [(child_rid, father_rid, mother_rid)]) via ancestors."""
nodes, links, seen = {}, [], set()
stack = [root]
while stack:
a = stack.pop()
if not a or a["rid"] in seen:
continue
seen.add(a["rid"])
nodes[a["rid"]] = a
f = by_rid.get(a.get("pid_raw"))
m = by_rid.get(a.get("mid_raw"))
if f or m:
links.append((a["rid"], f["rid"] if f else None, m["rid"] if m else None))
for p in (f, m):
if p and p["rid"] not in seen:
stack.append(p)
return nodes, links
if __name__ == "__main__":
name = sys.argv[1]
dob = sys.argv[2] if len(sys.argv) > 2 else None
A, by_rid = build()
root = find(A, name, dob)
if not root:
print("nicht gefunden"); sys.exit(1)
nodes, links = walk(root, by_rid)
print(f"Wurzel: {root['name']} (*{root['dob']}) | Vorfahren gesamt: {len(nodes)-1} | Links: {len(links)}")
# depth per node
depth = {root["rid"]: 0}
changed = True
while changed:
changed = False
for c, f, m in links:
for p in (f, m):
if p and c in depth and depth.get(p, -1) < depth[c] + 1:
depth[p] = depth[c] + 1
changed = True
for rid in sorted(nodes, key=lambda r: depth.get(r, 0)):
a = nodes[rid]
d = depth.get(rid, 0)
print(f" gen{d}: {a['name']} (*{a['dob']}, {a['farbe']} [{a['fcode']}], Herkunft {a['origin']})")
print("\nLinks (Kind <- Vater x Mutter):")
for c, f, m in links:
print(f" {nodes[c]['name']} (*{nodes[c]['dob']}) <- "
f"{nodes[f]['name'] if f else '?'} x {nodes[m]['name'] if m else '?'}")