8cebb4f4e9
- unified_search: Hybride Suche (PostgreSQL FTS + pgvector + RRF Fusion) - 5 Search Providers (Contact, Company, Mail, File, Event) - KI Query Understanding (Fuzzy, Facetten via LiteLLM) - DMS Text-Extraction (PDF, DOCX, XLSX, PPTX) - Embedding Pipeline (ollama/nomic-embed-text, 768 Dim) - Background Jobs für Indexierung - Plugin-basierte Provider Registry - ai_proactive: Proaktiver KI-Agent - Context-Tracking (Frontend → Backend → Event Bus) - Proactive Engine mit LLM Suggestion-Generierung - SSE Real-time Push an Frontend - 6 AI Tools für Tool Registry - Rate-Limiting + User Settings - Deep Analysis Background Jobs - Frontend Integration: - useAIContext Hook, SuggestionSidebar, SuggestionBadge - ProactiveAISettings Page, Search API Client - Globale Suche auf neue API umgestellt - Tests: test_unified_search.py + test_ai_proactive.py (alle bestanden) - Config: Ollama Cloud DeepSeek V4 als Default, konfigurierbar - Dependencies: PyMuPDF, python-docx, python-pptx, pgvector - Bugfixes: notification type_key length, migration IF NOT EXISTS
253 lines
7.8 KiB
Python
253 lines
7.8 KiB
Python
"""Hybrid search engine: FTS + pgvector with RRF fusion."""
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from __future__ import annotations
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import logging
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import uuid
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from typing import Any
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from sqlalchemy import text
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from sqlalchemy.ext.asyncio import AsyncSession
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from app.plugins.builtins.unified_search.embedding import generate_embedding
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from app.plugins.builtins.unified_search.provider_registry import get_search_registry
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logger = logging.getLogger(__name__)
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# Entity type -> (table_name, tsv_column, embedding_column)
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SEARCHABLE_ENTITIES: dict[str, tuple[str, str, str]] = {
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"contact": ("contacts", "search_tsv", "embedding"),
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"company": ("companies", "search_tsv", "embedding"),
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"mail": ("mails", "body_tsv", "embedding"),
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"file": ("files", "content_tsv", "embedding"),
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"event": ("calendar_entries", "search_tsv", "embedding"),
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}
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RRF_K = 60
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RRF_ALPHA = 0.5
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RRF_BETA = 0.5
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def rrf_fusion(
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fts_results: list[dict[str, Any]],
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vec_results: list[dict[str, Any]],
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entity_type: str,
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k: int = RRF_K,
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alpha: float = RRF_ALPHA,
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beta: float = RRF_BETA,
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) -> list[dict[str, Any]]:
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"""Reciprocal Rank Fusion of FTS and vector search results.
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score = alpha * (1/(k+rank_fts)) + beta * (1/(k+rank_vec))
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"""
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fused: dict[str, dict[str, Any]] = {}
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for rank, item in enumerate(fts_results):
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eid = str(item.get("id", ""))
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if not eid:
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continue
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rrf_score = alpha * (1.0 / (k + rank + 1))
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if eid not in fused:
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fused[eid] = {**item, "_score": 0.0, "_entity_type": entity_type}
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fused[eid]["_score"] += rrf_score
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for rank, item in enumerate(vec_results):
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eid = str(item.get("id", ""))
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if not eid:
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continue
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rrf_score = beta * (1.0 / (k + rank + 1))
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if eid not in fused:
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fused[eid] = {**item, "_score": 0.0, "_entity_type": entity_type}
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fused[eid]["_score"] += rrf_score
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return sorted(fused.values(), key=lambda x: x.get("_score", 0.0), reverse=True)
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async def hybrid_search(
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db: AsyncSession,
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query_analysis: dict[str, Any],
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tenant_id: uuid.UUID,
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entity_types: list[str] | None = None,
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limit: int = 20,
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) -> list[dict[str, Any]]:
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"""Perform hybrid search across all entity types.
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For each entity: FTS search + vector search + RRF fusion.
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Merge all results, sort by fused score, return top limit.
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"""
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registry = get_search_registry()
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all_entity_types = entity_types or registry.get_entity_types()
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normalized_query = query_analysis.get("normalized_query", "")
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semantic_terms = query_analysis.get("semantic_terms", [])
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# Build tsquery string
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tsquery_parts = [normalized_query] + semantic_terms
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tsquery = " & ".join(
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part.strip().replace(" ", " & ")
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for part in tsquery_parts
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if part and part.strip()
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)
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if not tsquery:
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tsquery = normalized_query
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# Generate query embedding
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query_text = normalized_query
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if semantic_terms:
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query_text = f"{normalized_query} {' '.join(semantic_terms)}"
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query_embedding = await generate_embedding(query_text)
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all_results: list[dict[str, Any]] = []
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fetch_limit = limit * 2
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for entity_type in all_entity_types:
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provider = registry.get(entity_type)
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if provider is None:
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continue
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fts_results: list[dict[str, Any]] = []
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vec_results: list[dict[str, Any]] = []
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try:
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fts_results = await provider.search_fts(db, tsquery, tenant_id, fetch_limit)
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except Exception:
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logger.exception("FTS search failed for %s", entity_type)
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if query_embedding:
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try:
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vec_results = await provider.search_vector(db, query_embedding, tenant_id, fetch_limit)
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except Exception:
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logger.exception("Vector search failed for %s", entity_type)
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fused = rrf_fusion(fts_results, vec_results, entity_type)
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# Convert to search result format
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for item in fused:
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result = provider.to_search_result(item)
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result["score"] = item.get("_score", 0.0)
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all_results.append(result)
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all_results.sort(key=lambda x: x.get("score", 0.0), reverse=True)
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return all_results[:limit]
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async def find_similar_all_types(
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db: AsyncSession,
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entity_type: str,
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entity_id: uuid.UUID,
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tenant_id: uuid.UUID,
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limit: int = 5,
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) -> dict[str, list[dict[str, Any]]]:
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"""Find similar entities across all types based on embedding.
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Gets the embedding of the source entity, then searches all other tables.
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"""
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table_map = SEARCHABLE_ENTITIES
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source_info = table_map.get(entity_type)
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if not source_info:
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return {}
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table_name, _, emb_col = source_info
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# Get source embedding
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sql = text(
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f"SELECT {emb_col} AS embedding FROM {table_name} "
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f"WHERE id = :eid AND tenant_id = :tid"
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)
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result = await db.execute(sql, {"eid": entity_id, "tid": tenant_id})
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row = result.mappings().first()
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if not row or not row.get("embedding"):
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return {}
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source_embedding_str = str(row["embedding"])
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registry = get_search_registry()
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similar: dict[str, list[dict[str, Any]]] = {}
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for etype, (tbl, _, emb) in table_map.items():
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if etype == entity_type:
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continue
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provider = registry.get(etype)
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if provider is None:
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continue
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try:
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sql_sim = text(
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f"""
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SELECT *, 1 - ({emb} <=> cast(:emb_str AS vector)) AS score
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FROM {tbl}
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WHERE tenant_id = :tid
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AND deleted_at IS NULL
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AND {emb} IS NOT NULL
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ORDER BY {emb} <=> cast(:emb_str AS vector)
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LIMIT :lim
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"""
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)
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res = await db.execute(
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sql_sim,
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{"emb_str": source_embedding_str, "tid": tenant_id, "lim": limit},
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)
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rows = res.mappings().all()
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results = []
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for r in rows:
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sr = provider.to_search_result(dict(r))
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sr["score"] = float(r.get("score", 0.0))
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results.append(sr)
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similar[etype] = results
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except Exception:
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logger.exception("Similar search failed for %s", etype)
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similar[etype] = []
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return similar
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async def autocomplete(
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db: AsyncSession,
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query: str,
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tenant_id: uuid.UUID,
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limit: int = 10,
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) -> list[str]:
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"""Autocomplete using FTS prefix search.
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Uses to_tsquery with :* suffix for prefix matching.
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"""
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query_clean = query.strip().replace(" ", " & ")
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if not query_clean:
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return []
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tsquery = f"{query_clean}:*"
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suggestions: list[str] = []
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registry = get_search_registry()
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for entity_type in registry.get_entity_types():
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provider = registry.get(entity_type)
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if provider is None:
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continue
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entity_info = SEARCHABLE_ENTITIES.get(entity_type)
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if not entity_info:
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continue
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table_name, tsv_col, _ = entity_info
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try:
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sql = text(
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f"""
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SELECT * FROM {table_name}
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WHERE tenant_id = :tid
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AND deleted_at IS NULL
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AND {tsv_col} @@ to_tsquery('pg_catalog.german', :q)
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LIMIT :lim
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"""
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)
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result = await db.execute(
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sql,
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{"q": tsquery, "tid": tenant_id, "lim": limit},
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)
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rows = result.mappings().all()
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for r in rows:
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sr = provider.to_search_result(dict(r))
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title = sr.get("title", "")
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if title and title not in suggestions:
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suggestions.append(title)
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except Exception:
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logger.debug("Autocomplete failed for %s", entity_type)
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return suggestions[:limit]
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