mirror of
https://github.com/pewdiepie-archdaemon/odysseus.git
synced 2026-06-18 02:35:23 -04:00
252 lines
8.6 KiB
Python
252 lines
8.6 KiB
Python
"""
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memory_vector.py
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ChromaDB-backed vector store for memory entries.
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Shares the EmbeddingClient with RAG to save memory.
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Stores pre-computed embeddings (ChromaDB does not manage embedding).
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"""
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import logging
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from typing import List, Dict, Optional
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from src.embedding_lanes import (
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LANE_CUSTOM,
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LANE_FASTEMBED,
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build_embedding_lanes,
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collection_name,
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dedupe_results,
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lane_count,
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migrate_legacy_collection,
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)
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logger = logging.getLogger(__name__)
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class MemoryVectorStore:
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"""Vector index over memory entries for semantic retrieval."""
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COLLECTION_NAME = "odysseus_memories"
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def __init__(self, data_dir: str, embedding_model=None):
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self._model = embedding_model
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self._collection = None
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self._lanes = []
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self._healthy = False
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self._initialize()
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def _initialize(self):
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try:
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self._lanes = build_embedding_lanes(self.COLLECTION_NAME)
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if not self._lanes:
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raise RuntimeError("No embedding lanes available")
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self._healthy = True
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self._collection = next(
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(lane.collection for lane in self._lanes if lane.name == LANE_FASTEMBED),
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self._lanes[0].collection,
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)
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migrate_legacy_collection(self.COLLECTION_NAME, self._lanes)
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logger.info(
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"MemoryVectorStore ready (lanes=%s entries=%s)",
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[lane.name for lane in self._lanes],
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self.count(),
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)
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except Exception as e:
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logger.error(f"MemoryVectorStore init failed: {e}")
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@property
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def healthy(self) -> bool:
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return self._healthy
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def _embed(self, texts: List[str]) -> List[List[float]]:
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if not self._lanes:
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return []
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return self._lanes[0].encode(texts)
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def count(self) -> int:
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"""Return the number of stored vectors."""
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if not self._healthy:
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return 0
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return lane_count(self._lanes)
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def _collections_for_delete(self):
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collections = []
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seen = set()
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def add(collection) -> None:
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if collection is None:
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return
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key = getattr(collection, "name", None) or id(collection)
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if key in seen:
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return
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seen.add(key)
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collections.append(collection)
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for lane in self._lanes:
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add(lane.collection)
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try:
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from src.chroma_client import get_chroma_client
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client = get_chroma_client()
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for lane_name in (LANE_CUSTOM, LANE_FASTEMBED):
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try:
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add(client.get_collection(collection_name(self.COLLECTION_NAME, lane_name)))
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except Exception:
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pass
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except Exception:
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pass
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return collections
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def add(self, memory_id: str, text: str):
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"""Add a single memory entry to the vector index."""
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if not self._healthy:
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return
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for lane in self._lanes:
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try:
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existing = lane.collection.get(ids=[memory_id])
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if existing["ids"]:
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continue
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lane.collection.add(
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ids=[memory_id],
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embeddings=lane.encode([text]),
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documents=[text],
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metadatas=[{"source": "memory"}],
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)
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except Exception as e:
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logger.warning("memory add failed in %s lane for %s: %s", lane.name, memory_id, e)
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def remove(self, memory_id: str):
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"""Remove a memory entry. O(1) — no rebuild needed."""
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if not self._healthy:
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return
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for collection in self._collections_for_delete():
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try:
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collection.delete(ids=[memory_id])
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except Exception as e:
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logger.warning(f"memory remove {memory_id}: {e}")
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def search(self, query: str, k: int = 8) -> List[Dict]:
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"""Search for the most relevant memory IDs by semantic similarity.
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Returns list of {"memory_id": str, "score": float}.
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ChromaDB cosine distance = 1 - cosine_similarity.
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We convert back: similarity = 1.0 - distance.
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"""
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if not self._healthy or self.count() == 0:
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return []
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out = []
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lane_priority = {LANE_CUSTOM: 0, LANE_FASTEMBED: 1}
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for lane in self._lanes:
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try:
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if lane.count() == 0:
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continue
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results = lane.collection.query(
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query_embeddings=lane.encode([query]),
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n_results=min(k, lane.count()),
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include=["distances"],
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)
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for idx, mid in enumerate(results["ids"][0]):
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distance = results["distances"][0][idx]
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out.append({
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"memory_id": mid,
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"score": round(1.0 - distance, 4),
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"embedding_lane": lane.name,
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})
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except Exception as e:
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logger.warning("memory search failed in %s lane: %s", lane.name, e)
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out.sort(key=lambda row: (-row["score"], lane_priority.get(row["embedding_lane"], 99)))
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return dedupe_results(out, id_key="memory_id", limit=k)
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def find_similar(self, text: str, threshold: float = 0.92) -> Optional[str]:
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"""Check if a near-duplicate exists. Returns memory_id if found, else None."""
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if not self._healthy or self.count() == 0:
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return None
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for lane in self._lanes:
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try:
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if lane.count() == 0:
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continue
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results = lane.collection.query(
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query_embeddings=lane.encode([text]),
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n_results=1,
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include=["distances"],
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)
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if results["ids"][0]:
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distance = results["distances"][0][0]
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similarity = 1.0 - distance
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if similarity >= threshold:
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return results["ids"][0][0]
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except Exception as e:
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logger.warning("memory similarity search failed in %s lane: %s", lane.name, e)
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return None
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def rebuild(self, memories: List[Dict]):
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"""Rebuild the entire index from a list of memory entries.
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Each entry must have 'id' and 'text' keys."""
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if not self._healthy:
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return
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from src.chroma_client import get_chroma_client
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client = get_chroma_client()
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lane_names = [
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self.COLLECTION_NAME,
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collection_name(self.COLLECTION_NAME, LANE_CUSTOM),
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collection_name(self.COLLECTION_NAME, LANE_FASTEMBED),
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]
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for name in lane_names:
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try:
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client.delete_collection(name)
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except Exception:
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pass
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# Explicit rebuilds must start from the supplied memory list, so clear
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# legacy unsuffixed collections too.
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self._lanes = build_embedding_lanes(self.COLLECTION_NAME)
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self._collection = next(
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(lane.collection for lane in self._lanes if lane.name == LANE_FASTEMBED),
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self._lanes[0].collection if self._lanes else None,
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)
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texts = []
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ids = []
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for mem in memories:
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text = mem.get("text", "").strip()
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mid = mem.get("id", "")
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if text and mid:
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texts.append(text)
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ids.append(mid)
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if texts:
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# Batch in chunks of 100 to avoid oversized requests
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failed_lanes = set()
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for i in range(0, len(texts), 100):
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batch_texts = texts[i:i + 100]
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batch_ids = ids[i:i + 100]
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for lane in self._lanes:
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if lane.name in failed_lanes:
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continue
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try:
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lane.collection.add(
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ids=batch_ids,
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embeddings=lane.encode(batch_texts),
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documents=batch_texts,
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metadatas=[{"source": "memory"}] * len(batch_ids),
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)
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except Exception as e:
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failed_lanes.add(lane.name)
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logger.warning("memory rebuild failed in %s lane: %s", lane.name, e)
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logger.info(f"MemoryVectorStore rebuilt with {len(ids)} entries across {len(self._lanes)} lanes")
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def get_stats(self) -> Dict:
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return {
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"healthy": self.healthy,
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"count": self.count(),
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"lanes": [lane.stats() for lane in self._lanes],
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}
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