WP24c - Agentic Edge Validation & Chunk-Aware Multigraph-System (v4.5.8) #22

Merged
Lars merged 71 commits from WP24c into main 2026-01-12 10:53:20 +01:00
3 changed files with 117 additions and 91 deletions
Showing only changes of commit ec89d83916 - Show all commits

View File

@ -2,11 +2,11 @@
FILE: app/core/ingestion/ingestion_db.py FILE: app/core/ingestion/ingestion_db.py
DESCRIPTION: Datenbank-Schnittstelle für Note-Metadaten und Artefakt-Prüfung. DESCRIPTION: Datenbank-Schnittstelle für Note-Metadaten und Artefakt-Prüfung.
WP-14: Umstellung auf zentrale database-Infrastruktur. WP-14: Umstellung auf zentrale database-Infrastruktur.
WP-20/22: Integration von Cloud-Resilienz und Fehlerbehandlung. WP-20/22: Cloud-Resilienz und Fehlerbehandlung.
WP-24c: Implementierung der herkunftsbasierten Lösch-Logik (Origin-Purge). WP-24c: Implementierung der herkunftsbasierten Lösch-Logik (Origin-Purge).
Verhindert das versehentliche Löschen von inversen Kanten beim Re-Import. Verhindert das versehentliche Löschen von inversen Kanten beim Re-Import.
Integration der Authority-Prüfung für Point-IDs zur Symmetrie-Validierung. Integration der Authority-Prüfung für Point-IDs zur Symmetrie-Validierung.
VERSION: 2.2.0 (WP-24c: Protected Purge & Authority Lookup) VERSION: 2.2.1 (WP-24c: Robust Authority Lookup)
STATUS: Active STATUS: Active
""" """
import logging import logging
@ -45,26 +45,57 @@ def artifacts_missing(client: QdrantClient, prefix: str, note_id: str) -> Tuple[
def is_explicit_edge_present(client: QdrantClient, prefix: str, edge_id: str) -> bool: def is_explicit_edge_present(client: QdrantClient, prefix: str, edge_id: str) -> bool:
""" """
WP-24c: Prüft via Point-ID, ob bereits eine explizite Kante existiert. WP-24c: Prüft via Point-ID, ob bereits eine explizite Kante existiert.
Wird vom IngestionProcessor genutzt, um das Überschreiben von manuellem Wissen Wird vom IngestionProcessor in Phase 2 genutzt, um das Überschreiben
durch virtuelle Symmetrie-Kanten zu verhindern. von manuellem Wissen durch virtuelle Symmetrie-Kanten zu verhindern.
""" """
if not edge_id: return False
_, _, edges_col = collection_names(prefix) _, _, edges_col = collection_names(prefix)
try: try:
res = client.retrieve(collection_name=edges_col, ids=[edge_id], with_payload=True) # retrieve ist der schnellste Weg, um einen spezifischen Punkt via ID zu laden
if res and not res[0].payload.get("virtual", False): res = client.retrieve(
collection_name=edges_col,
ids=[edge_id],
with_payload=True
)
# Wenn der Punkt existiert und NICHT virtuell ist, handelt es sich um eine Nutzer-Autorität
if res and len(res) > 0:
payload = res[0].payload
if not payload.get("virtual", False):
return True return True
return False return False
except Exception: except Exception as e:
logger.debug(f"Authority check for {edge_id} failed: {e}")
return False return False
def purge_artifacts(client: QdrantClient, prefix: str, note_id: str): def purge_artifacts(client: QdrantClient, prefix: str, note_id: str):
"""WP-24c: Selektives Löschen von Artefakten (Origin-Purge).""" """
WP-24c: Selektives Löschen von Artefakten vor einem Re-Import.
Implementiert das Origin-Purge-Prinzip zur Sicherung der bidirektionalen Graph-Integrität.
"""
_, chunks_col, edges_col = collection_names(prefix) _, chunks_col, edges_col = collection_names(prefix)
try: try:
chunks_filter = rest.Filter(must=[rest.FieldCondition(key="note_id", match=rest.MatchValue(value=note_id))]) # 1. Chunks löschen (immer fest an die note_id gebunden)
client.delete(collection_name=chunks_col, points_selector=rest.FilterSelector(filter=chunks_filter)) chunks_filter = rest.Filter(must=[
edges_filter = rest.Filter(must=[rest.FieldCondition(key="origin_note_id", match=rest.MatchValue(value=note_id))]) rest.FieldCondition(key="note_id", match=rest.MatchValue(value=note_id))
client.delete(collection_name=edges_col, points_selector=rest.FilterSelector(filter=edges_filter)) ])
client.delete(
collection_name=chunks_col,
points_selector=rest.FilterSelector(filter=chunks_filter)
)
# 2. WP-24c: Kanten löschen (HERKUNFTS-BASIERT via origin_note_id)
# Wir löschen alle Kanten, die von DIESER Note erzeugt wurden.
edges_filter = rest.Filter(must=[
rest.FieldCondition(key="origin_note_id", match=rest.MatchValue(value=note_id))
])
client.delete(
collection_name=edges_col,
points_selector=rest.FilterSelector(filter=edges_filter)
)
logger.info(f"🧹 [PURGE] Global artifacts owned by '{note_id}' cleared.") logger.info(f"🧹 [PURGE] Global artifacts owned by '{note_id}' cleared.")
except Exception as e: except Exception as e:
logger.error(f"❌ [PURGE ERROR] Failed to clear artifacts for {note_id}: {e}") logger.error(f"❌ [PURGE ERROR] Failed to clear artifacts for {note_id}: {e}")

View File

@ -5,10 +5,10 @@ DESCRIPTION: Der zentrale IngestionService (Orchestrator).
WP-25a: Integration der Mixture of Experts (MoE) Architektur. WP-25a: Integration der Mixture of Experts (MoE) Architektur.
WP-15b: Two-Pass Workflow mit globalem Kontext-Cache. WP-15b: Two-Pass Workflow mit globalem Kontext-Cache.
WP-20/22: Cloud-Resilienz und Content-Lifecycle integriert. WP-20/22: Cloud-Resilienz und Content-Lifecycle integriert.
AUDIT v3.3.6: Strikte Phasentrennung (Phase 2 global am Ende). AUDIT v3.3.7: Strikte globale Phasentrennung.
Fix für .trash-Folder und Pydantic 'None'-Crash. Fix für Pydantic Crash (None-ID Guard Clauses).
Vollständige Wiederherstellung des Business-Loggings. Erzwingung der Konsistenz (wait=True).
VERSION: 3.3.6 (WP-24c: Full Transparency Orchestration) VERSION: 3.3.7 (WP-24c: Strict Authority Commitment)
STATUS: Active STATUS: Active
""" """
import logging import logging
@ -26,7 +26,7 @@ from app.core.chunking import assemble_chunks
# WP-24c: Import für die deterministische UUID-Vorabberechnung # WP-24c: Import für die deterministische UUID-Vorabberechnung
from app.core.graph.graph_utils import _mk_edge_id from app.core.graph.graph_utils import _mk_edge_id
# Datenbank-Ebene (Modularisierte database-Infrastruktur) # MODULARISIERUNG: Neue Import-Pfade für die Datenbank-Ebene
from app.core.database.qdrant import QdrantConfig, get_client, ensure_collections, ensure_payload_indexes from app.core.database.qdrant import QdrantConfig, get_client, ensure_collections, ensure_payload_indexes
from app.core.database.qdrant_points import points_for_chunks, points_for_note, points_for_edges, upsert_batch from app.core.database.qdrant_points import points_for_chunks, points_for_note, points_for_edges, upsert_batch
from qdrant_client.http import models as rest from qdrant_client.http import models as rest
@ -53,12 +53,12 @@ logger = logging.getLogger(__name__)
class IngestionService: class IngestionService:
def __init__(self, collection_prefix: str = None): def __init__(self, collection_prefix: str = None):
"""Initialisiert den Service und bereinigt das technische Logging.""" """Initialisiert den Service und nutzt die neue database-Infrastruktur."""
from app.config import get_settings from app.config import get_settings
self.settings = get_settings() self.settings = get_settings()
# --- LOGGING CLEANUP (Business Focus) --- # --- LOGGING CLEANUP (Business Focus) ---
# Unterdrückt HTTP-Bibliotheks-Lärm, erhält aber inhaltliche Service-Logs # Unterdrückt technische Bibliotheks-Header, erhält aber inhaltliche Service-Logs
for lib in ["httpx", "httpcore", "qdrant_client", "urllib3", "openai"]: for lib in ["httpx", "httpcore", "qdrant_client", "urllib3", "openai"]:
logging.getLogger(lib).setLevel(logging.WARNING) logging.getLogger(lib).setLevel(logging.WARNING)
@ -71,47 +71,49 @@ class IngestionService:
self.embedder = EmbeddingsClient() self.embedder = EmbeddingsClient()
self.llm = LLMService() self.llm = LLMService()
# WP-25a: Dimensionen über das LLM-Profil auflösen # WP-25a: Auflösung der Dimension über das Embedding-Profil (MoE)
embed_cfg = self.llm.profiles.get("embedding_expert", {}) embed_cfg = self.llm.profiles.get("embedding_expert", {})
self.dim = embed_cfg.get("dimensions") or self.settings.VECTOR_SIZE self.dim = embed_cfg.get("dimensions") or self.settings.VECTOR_SIZE
# Festlegen des Change-Detection Modus
self.active_hash_mode = self.settings.CHANGE_DETECTION_MODE self.active_hash_mode = self.settings.CHANGE_DETECTION_MODE
# WP-15b: Kontext-Gedächtnis für ID-Auflösung (Global) # WP-15b: Kontext-Gedächtnis für ID-Auflösung
self.batch_cache: Dict[str, NoteContext] = {} self.batch_cache: Dict[str, NoteContext] = {}
# WP-24c: Puffer für Phase 2 (Symmetrie-Injektion am Ende des gesamten Imports) # WP-24c: Puffer für Phase 2 (Symmetrie-Injektion nach dem gesamten Import)
self.symmetry_buffer: List[Dict[str, Any]] = [] self.symmetry_buffer: List[Dict[str, Any]] = []
try: try:
# Schema-Prüfung und Initialisierung # Aufruf der modularisierten Schema-Logik
ensure_collections(self.client, self.prefix, self.dim) ensure_collections(self.client, self.prefix, self.dim)
ensure_payload_indexes(self.client, self.prefix) ensure_payload_indexes(self.client, self.prefix)
except Exception as e: except Exception as e:
logger.warning(f"DB initialization warning: {e}") logger.warning(f"DB initialization warning: {e}")
def _is_valid_note_id(self, text: str) -> bool: def _is_valid_note_id(self, text: Optional[str]) -> bool:
""" """
WP-24c: Prüft Ziel-Strings auf fachliche Validität. WP-24c: Prüft Ziel-Strings auf fachliche Validität.
Verhindert Müll-Kanten zu reinen System-Platzhaltern. Verhindert Müll-Kanten zu System-Platzhaltern.
""" """
if not text or len(text.strip()) < 2: return False if not text or not isinstance(text, str) or len(text.strip()) < 2:
blacklisted = {"insight", "event", "source", "task", "project", "person", "concept", "related_to", "referenced_by"} return False
if text.lower().strip() in blacklisted: return False
blacklisted = {"insight", "event", "source", "task", "project", "person", "concept", "related_to", "referenced_by", "none", "unknown"}
if text.lower().strip() in blacklisted:
return False
if len(text) > 200: return False if len(text) > 200: return False
return True return True
async def run_batch(self, file_paths: List[str], vault_root: str) -> Dict[str, Any]: async def run_batch(self, file_paths: List[str], vault_root: str) -> Dict[str, Any]:
""" """
WP-15b: Two-Pass Ingestion Workflow (PHASE 1). WP-15b: Two-Pass Ingestion Workflow (PHASE 1).
Füllt den Cache und verarbeitet Dateien batchweise. Verarbeitet Batches und schreibt NUR Nutzer-Autorität in die DB.
Gibt ein Dictionary zurück, um Kompatibilität zum Orchestrator zu wahren.
""" """
self.batch_cache.clear() self.batch_cache.clear()
logger.info(f"--- 🔍 START BATCH PHASE 1 ({len(file_paths)} Dateien) ---") logger.info(f"--- 🔍 START BATCH PHASE 1 ({len(file_paths)} Dateien) ---")
# 1. Schritt: Pre-Scan (Context-Cache befüllen) # 1. Schritt: Pre-Scan (Context-Cache füllen)
for path in file_paths: for path in file_paths:
try: try:
ctx = pre_scan_markdown(path, registry=self.registry) ctx = pre_scan_markdown(path, registry=self.registry)
@ -123,7 +125,7 @@ class IngestionService:
except Exception as e: except Exception as e:
logger.warning(f" ⚠️ Pre-scan fehlgeschlagen für {path}: {e}") logger.warning(f" ⚠️ Pre-scan fehlgeschlagen für {path}: {e}")
# 2. Schritt: Batch-Verarbeitung (Authority Only) # 2. Schritt: PROCESSING
processed_count = 0 processed_count = 0
success_count = 0 success_count = 0
for p in file_paths: for p in file_paths:
@ -132,52 +134,56 @@ class IngestionService:
if res.get("status") == "success": if res.get("status") == "success":
success_count += 1 success_count += 1
logger.info(f"--- ✅ Batch Phase 1 abgeschlossen ({success_count}/{processed_count}) ---") logger.info(f"--- ✅ Batch Phase 1 beendet ({success_count}/{processed_count}) ---")
return { return {
"status": "success", "status": "success",
"processed": processed_count, "processed": processed_count,
"success": success_count, "success": success_count,
"buffered_virtuals": len(self.symmetry_buffer) "buffered_symmetries": len(self.symmetry_buffer)
} }
async def commit_vault_symmetries(self) -> Dict[str, Any]: async def commit_vault_symmetries(self) -> Dict[str, Any]:
""" """
WP-24c: Führt PHASE 2 (Symmetrie-Injektion) für den gesamten Vault aus. WP-24c: Führt PHASE 2 (Globale Symmetrie-Injektion) aus.
Wird nach Abschluss aller Batches einmalig aufgerufen. Wird einmalig am Ende des gesamten Imports aufgerufen.
Vergleicht gepufferte Kanten gegen die Instance-of-Truth in Qdrant. Sorgt dafür, dass virtuelle Kanten erst NACH der Nutzer-Autorität geschrieben werden.
""" """
if not self.symmetry_buffer: if not self.symmetry_buffer:
logger.info("⏭️ Symmetrie-Puffer ist leer. Keine Aktion erforderlich.") logger.info("⏭️ Symmetrie-Puffer leer. Keine Aktion erforderlich.")
return {"status": "skipped", "reason": "buffer_empty"} return {"status": "skipped", "reason": "buffer_empty"}
logger.info(f"🔄 PHASE 2: Validiere {len(self.symmetry_buffer)} Symmetrie-Kanten gegen die Instance-of-Truth...") logger.info(f"🔄 PHASE 2: Validiere {len(self.symmetry_buffer)} Symmetrie-Vorschläge gegen Live-DB...")
final_virtuals = [] final_virtuals = []
for v_edge in self.symmetry_buffer: for v_edge in self.symmetry_buffer:
# Deterministische ID der potenziellen Symmetrie berechnen # Sicherheits-Check: Keine Kanten ohne Ziele zulassen
if not v_edge.get("target_id") or v_edge.get("target_id") == "None":
continue
# ID der potenziellen Symmetrie berechnen
v_id = _mk_edge_id(v_edge["kind"], v_edge["note_id"], v_edge["target_id"], v_edge.get("scope", "note")) v_id = _mk_edge_id(v_edge["kind"], v_edge["note_id"], v_edge["target_id"], v_edge.get("scope", "note"))
# AUTHORITY-CHECK: Nur schreiben, wenn KEINE manuelle Kante in der DB existiert # AUTHORITY-CHECK: Nur schreiben, wenn KEINE manuelle Kante in der DB existiert
if not is_explicit_edge_present(self.client, self.prefix, v_id): if not is_explicit_edge_present(self.client, self.prefix, v_id):
final_virtuals.append(v_edge) final_virtuals.append(v_edge)
# Detailliertes Logging für volle Transparenz logger.info(f" 🔄 [SYMMETRY] Erzeuge Gegenkante: {v_edge['note_id']} --({v_edge['kind']})--> {v_edge['target_id']}")
logger.info(f" 🔄 [SYMMETRY] Add inverse: {v_edge['note_id']} --({v_edge['kind']})--> {v_edge['target_id']}")
else: else:
logger.debug(f" 🛡️ Schutz: Manuelle Kante belegt ID {v_id}. Symmetrie verworfen.") logger.debug(f" 🛡️ Schutz: Manuelle Kante belegt ID {v_id}. Symmetrie verworfen.")
added_count = 0 added_count = 0
if final_virtuals: if final_virtuals:
logger.info(f"📤 Schreibe {len(final_virtuals)} validierte Symmetrie-Kanten in den Graphen.") logger.info(f"📤 Schreibe {len(final_virtuals)} geschützte Symmetrie-Kanten in Qdrant.")
e_pts = points_for_edges(self.prefix, final_virtuals)[1] e_pts = points_for_edges(self.prefix, final_virtuals)[1]
upsert_batch(self.client, f"{self.prefix}_edges", e_pts) upsert_batch(self.client, f"{self.prefix}_edges", e_pts, wait=True)
added_count = len(final_virtuals) added_count = len(final_virtuals)
self.symmetry_buffer.clear() # Puffer nach erfolgreichem Commit leeren self.symmetry_buffer.clear() # Puffer leeren
return {"status": "success", "added": added_count} return {"status": "success", "added": added_count}
async def process_file(self, file_path: str, vault_root: str, **kwargs) -> Dict[str, Any]: async def process_file(self, file_path: str, vault_root: str, **kwargs) -> Dict[str, Any]:
""" """
Transformiert eine Markdown-Datei in Phase 1 (Authority First). Transformiert eine Markdown-Datei.
Implementiert Ordner-Blacklists, Pydantic-Safety und MoE-Validierung. Schreibt Notes/Chunks/Explicit Edges sofort (Phase 1).
Befüllt den Symmetrie-Puffer für die globale Phase 2.
""" """
apply = kwargs.get("apply", False) apply = kwargs.get("apply", False)
force_replace = kwargs.get("force_replace", False) force_replace = kwargs.get("force_replace", False)
@ -186,7 +192,7 @@ class IngestionService:
result = {"path": file_path, "status": "skipped", "changed": False, "error": None} result = {"path": file_path, "status": "skipped", "changed": False, "error": None}
try: try:
# --- ORDNER-FILTER (Fix für .trash und .obsidian Junk) --- # --- ORDNER-FILTER (.trash) ---
if any(part.startswith('.') for part in file_path.split(os.sep)): if any(part.startswith('.') for part in file_path.split(os.sep)):
return {**result, "status": "skipped", "reason": "hidden_folder"} return {**result, "status": "skipped", "reason": "hidden_folder"}
@ -195,7 +201,6 @@ class IngestionService:
if any(folder in file_path for folder in ignore_folders): if any(folder in file_path for folder in ignore_folders):
return {**result, "status": "skipped", "reason": "folder_blacklist"} return {**result, "status": "skipped", "reason": "folder_blacklist"}
# Datei einlesen und validieren
parsed = read_markdown(file_path) parsed = read_markdown(file_path)
if not parsed: return {**result, "error": "Empty file"} if not parsed: return {**result, "error": "Empty file"}
fm = normalize_frontmatter(parsed.frontmatter) fm = normalize_frontmatter(parsed.frontmatter)
@ -205,7 +210,7 @@ class IngestionService:
note_pl = make_note_payload(parsed, vault_root=vault_root, file_path=file_path, types_cfg=self.registry) note_pl = make_note_payload(parsed, vault_root=vault_root, file_path=file_path, types_cfg=self.registry)
note_id = note_pl.get("note_id") note_id = note_pl.get("note_id")
# --- FIX: Guard Clause gegen 'None' IDs (Verhindert Pydantic Crash) --- # --- GUARD CLAUSE: Fehlende IDs verhindern PointStruct-Crash ---
if not note_id: if not note_id:
logger.warning(f" ⚠️ Fehlende note_id in '{file_path}'. Datei wird ignoriert.") logger.warning(f" ⚠️ Fehlende note_id in '{file_path}'. Datei wird ignoriert.")
return {**result, "status": "error", "error": "missing_note_id"} return {**result, "status": "error", "error": "missing_note_id"}
@ -221,7 +226,7 @@ class IngestionService:
if not apply: if not apply:
return {**result, "status": "dry-run", "changed": True, "note_id": note_id} return {**result, "status": "dry-run", "changed": True, "note_id": note_id}
# Chunks erzeugen und semantisch validieren (MoE) # Deep Processing & MoE (LLM Validierung)
profile = note_pl.get("chunk_profile", "sliding_standard") profile = note_pl.get("chunk_profile", "sliding_standard")
chunk_cfg = get_chunk_config_by_profile(self.registry, profile, note_type) chunk_cfg = get_chunk_config_by_profile(self.registry, profile, note_type)
enable_smart = chunk_cfg.get("enable_smart_edge_allocation", False) enable_smart = chunk_cfg.get("enable_smart_edge_allocation", False)
@ -230,45 +235,45 @@ class IngestionService:
for ch in chunks: for ch in chunks:
new_pool = [] new_pool = []
for cand in getattr(ch, "candidate_pool", []): for cand in getattr(ch, "candidate_pool", []):
# --- GUARD: Ungültige Ziele im Candidate-Pool filtern ---
t_id = cand.get('target_id') or cand.get('note_id')
if not self._is_valid_note_id(t_id):
continue
if cand.get("provenance") == "global_pool" and enable_smart: if cand.get("provenance") == "global_pool" and enable_smart:
# Detailliertes Business-Logging für LLM-Aktivitäten logger.info(f" ⚖️ [VALIDATING] Relation to '{t_id}' via Expert-LLM...")
target_label = cand.get('target_id') or cand.get('note_id') or "Unknown"
logger.info(f" ⚖️ [VALIDATING] Relation to '{target_label}' via Expert-LLM...")
is_valid = await validate_edge_candidate(ch.text, cand, self.batch_cache, self.llm) is_valid = await validate_edge_candidate(ch.text, cand, self.batch_cache, self.llm)
logger.info(f" 🧠 [SMART EDGE] {t_id} -> {'✅ OK' if is_valid else '❌ SKIP'}")
logger.info(f" 🧠 [SMART EDGE] {target_label} -> {'✅ OK' if is_valid else '❌ SKIP'}")
if is_valid: new_pool.append(cand) if is_valid: new_pool.append(cand)
else: else:
new_pool.append(cand) new_pool.append(cand)
ch.candidate_pool = new_pool ch.candidate_pool = new_pool
# Embeddings und Payloads
chunk_pls = make_chunk_payloads(fm, note_pl["path"], chunks, file_path=file_path, types_cfg=self.registry) chunk_pls = make_chunk_payloads(fm, note_pl["path"], chunks, file_path=file_path, types_cfg=self.registry)
vecs = await self.embedder.embed_documents([c.get("window") or "" for c in chunk_pls]) if chunk_pls else [] vecs = await self.embedder.embed_documents([c.get("window") or "" for c in chunk_pls]) if chunk_pls else []
# Kanten-Extraktion mit ID-Kanonisierung # Kanten-Logik (Kanonisierung via batch_cache)
raw_edges = build_edges_for_note(note_id, chunk_pls, note_level_references=note_pl.get("references", [])) raw_edges = build_edges_for_note(note_id, chunk_pls, note_level_references=note_pl.get("references", []))
explicit_edges = [] explicit_edges = []
for e in raw_edges: for e in raw_edges:
target_raw = e.get("target_id") target_raw = e.get("target_id")
# Auflösung von Titeln/Dateinamen zu echten IDs über den globalen Cache # ID-Resolution über den Context-Cache
target_ctx = self.batch_cache.get(target_raw) t_ctx = self.batch_cache.get(target_raw)
target_id = target_ctx.note_id if target_ctx else target_raw target_id = t_ctx.note_id if t_ctx else target_raw
if not self._is_valid_note_id(target_id): continue if not self._is_valid_note_id(target_id): continue
resolved_kind = edge_registry.resolve(e.get("kind", "related_to"), provenance=e.get("provenance", "explicit")) resolved_kind = edge_registry.resolve(e.get("kind", "related_to"), provenance=e.get("provenance", "explicit"))
# Echte physische Kante markieren (Phase 1 Autorität) # Echte physische Kante markieren (Phase 1 Authority)
e.update({ e.update({
"kind": resolved_kind, "target_id": target_id, "kind": resolved_kind, "target_id": target_id,
"origin_note_id": note_id, "virtual": False, "confidence": 1.0 "origin_note_id": note_id, "virtual": False, "confidence": 1.0
}) })
explicit_edges.append(e) explicit_edges.append(e)
# Symmetrie-Kandidat für die globale Phase 2 puffern # Symmetrie-Kandidat puffern
inv_kind = edge_registry.get_inverse(resolved_kind) inv_kind = edge_registry.get_inverse(resolved_kind)
if inv_kind and target_id != note_id: if inv_kind and target_id != note_id:
v_edge = e.copy() v_edge = e.copy()
@ -287,7 +292,8 @@ class IngestionService:
if chunk_pls and vecs: if chunk_pls and vecs:
upsert_batch(self.client, f"{self.prefix}_chunks", points_for_chunks(self.prefix, chunk_pls, vecs)[1]) upsert_batch(self.client, f"{self.prefix}_chunks", points_for_chunks(self.prefix, chunk_pls, vecs)[1])
if explicit_edges: if explicit_edges:
upsert_batch(self.client, f"{self.prefix}_edges", points_for_edges(self.prefix, explicit_edges)[1]) # Wichtig: wait=True stellt sicher, dass die Kanten in Phase 2 searchable sind
upsert_batch(self.client, f"{self.prefix}_edges", points_for_edges(self.prefix, explicit_edges)[1], wait=True)
logger.info(f" ✨ Phase 1 fertig: {len(chunk_pls)} Chunks, {len(explicit_edges)} explizite Kanten.") logger.info(f" ✨ Phase 1 fertig: {len(chunk_pls)} Chunks, {len(explicit_edges)} explizite Kanten.")
return {"status": "success", "note_id": note_id, "edges_count": len(explicit_edges)} return {"status": "success", "note_id": note_id, "edges_count": len(explicit_edges)}
@ -300,7 +306,6 @@ class IngestionService:
"""Erstellt eine Note aus einem Textstream.""" """Erstellt eine Note aus einem Textstream."""
target_path = os.path.join(vault_root, folder, filename) target_path = os.path.join(vault_root, folder, filename)
os.makedirs(os.path.dirname(target_path), exist_ok=True) os.makedirs(os.path.dirname(target_path), exist_ok=True)
with open(target_path, "w", encoding="utf-8") as f: with open(target_path, "w", encoding="utf-8") as f: f.write(markdown_content)
f.write(markdown_content)
await asyncio.sleep(0.1) await asyncio.sleep(0.1)
return await self.process_file(file_path=target_path, vault_root=vault_root, apply=True, force_replace=True, purge_before=True) return await self.process_file(file_path=target_path, vault_root=vault_root, apply=True, force_replace=True, purge_before=True)

View File

@ -2,19 +2,11 @@
# -*- coding: utf-8 -*- # -*- coding: utf-8 -*-
""" """
FILE: scripts/import_markdown.py FILE: scripts/import_markdown.py
VERSION: 2.5.0 (2026-01-10) VERSION: 2.6.0 (2026-01-10)
STATUS: Active (Core) STATUS: Active (Core)
COMPATIBILITY: IngestionProcessor v3.3.5+ COMPATIBILITY: IngestionProcessor v3.3.7+
Zweck: Hauptwerkzeug zum Importieren von Markdown-Dateien.
Zweck: Implementiert die globale 2-Phasen-Schreibstrategie.
-------
Hauptwerkzeug zum Importieren von Markdown-Dateien aus einem Vault in Qdrant.
Implementiert die globale 2-Phasen-Schreibstrategie.
Änderungen v2.5.0:
------------------
- Globale Phasentrennung: commit_vault_symmetries() wird erst am Ende aufgerufen.
- Erweiterter Ordner-Filter: Schließt .trash und andere Systemordner aus.
""" """
import asyncio import asyncio
import os import os
@ -24,10 +16,8 @@ import sys
from pathlib import Path from pathlib import Path
from dotenv import load_dotenv from dotenv import load_dotenv
# Setzt das Level global auf INFO # Root Logger Setup
logging.basicConfig(level=logging.INFO, format='%(asctime)s [%(levelname)s] %(message)s') logging.basicConfig(level=logging.INFO, format='%(asctime)s [%(levelname)s] %(message)s')
# Stelle sicher, dass das Root-Verzeichnis im Python-Pfad ist
sys.path.append(os.getcwd()) sys.path.append(os.getcwd())
from app.core.ingestion import IngestionService from app.core.ingestion import IngestionService
@ -41,14 +31,13 @@ async def main_async(args):
logger.error(f"Vault path does not exist: {vault_path}") logger.error(f"Vault path does not exist: {vault_path}")
return return
# 1. Service initialisieren
logger.info(f"Initializing IngestionService (Prefix: {args.prefix})") logger.info(f"Initializing IngestionService (Prefix: {args.prefix})")
service = IngestionService(collection_prefix=args.prefix) service = IngestionService(collection_prefix=args.prefix)
logger.info(f"Scanning {vault_path}...") logger.info(f"Scanning {vault_path}...")
all_files = list(vault_path.rglob("*.md")) all_files = list(vault_path.rglob("*.md"))
# --- ORDNER-FILTER --- # --- GLOBALER ORDNER-FILTER ---
files = [] files = []
ignore_folders = [".trash", ".obsidian", ".sync", "templates", "_system"] ignore_folders = [".trash", ".obsidian", ".sync", "templates", "_system"]
for f in all_files: for f in all_files:
@ -74,7 +63,7 @@ async def main_async(args):
except Exception: pass except Exception: pass
# ========================================================================= # =========================================================================
# PHASE 1: Batch-Import (Explicit Edges only) # PHASE 1: Batch-Import (Notes & Explicit Edges)
# ========================================================================= # =========================================================================
stats = {"processed": 0, "skipped": 0, "errors": 0} stats = {"processed": 0, "skipped": 0, "errors": 0}
sem = asyncio.Semaphore(5) sem = asyncio.Semaphore(5)
@ -82,6 +71,7 @@ async def main_async(args):
async def process_with_limit(f_path): async def process_with_limit(f_path):
async with sem: async with sem:
try: try:
# Nutzt process_file (v3.3.7)
return await service.process_file( return await service.process_file(
file_path=str(f_path), vault_root=str(vault_path), file_path=str(f_path), vault_root=str(vault_path),
force_replace=args.force, apply=args.apply, purge_before=True force_replace=args.force, apply=args.apply, purge_before=True
@ -101,15 +91,15 @@ async def main_async(args):
else: stats["skipped"] += 1 else: stats["skipped"] += 1
# ========================================================================= # =========================================================================
# PHASE 2: Global Symmetry Injection # PHASE 2: Global Symmetry Injection (Nach Abschluss aller Batches)
# ========================================================================= # =========================================================================
if args.apply: if args.apply:
logger.info(f"🔄 [Phase 2] Starting global symmetry injection...") logger.info(f"🔄 [Phase 2] Starting global symmetry injection for the entire vault...")
sym_res = await service.commit_vault_symmetries() sym_res = await service.commit_vault_symmetries()
if sym_res.get("status") == "success": if sym_res.get("status") == "success":
logger.info(f"Added {sym_res.get('added', 0)} protected symmetry edges.") logger.info(f"Finished global symmetry injection. Added: {sym_res.get('added', 0)}")
logger.info(f"Done. Final Stats: {stats}") logger.info(f"Final Stats: {stats}")
def main(): def main():
load_dotenv() load_dotenv()