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import chromadb
import uuid
import math
import json
from datetime import datetime, timezone
from typing import List, Optional

from models import Memory, MemoryType

# Phase 1: heuristic decay rates (per day)
DECAY_RATES = {
    MemoryType.STATE: 0.15,       # volatile β€” facts about the world
    MemoryType.EPISODIC: 0.03,    # moderate β€” specific past events
    MemoryType.SEMANTIC: 0.005,   # slow β€” abstracted patterns
    MemoryType.PROCEDURAL: 0.002, # very slow β€” how-to knowledge
}


class MemoryStore:
    def __init__(self, persist_dir: str = "./chroma_db"):
        self.client = chromadb.PersistentClient(path=persist_dir)
        self.collection = self.client.get_or_create_collection(
            name="agent_memories",
            metadata={"hnsw:space": "cosine"},
        )

    # ─── Write ────────────────────────────────────────────────────────────────

    def add_memory(
        self,
        content: str,
        memory_type: str,
        source: str = "agent",
        context_tags: Optional[List[str]] = None,
        summary: str = "",
        created_at: Optional[str] = None,
    ) -> Memory:
        memory_id = str(uuid.uuid4())[:8]
        now = created_at or datetime.now(timezone.utc).isoformat()

        mem_type = MemoryType(memory_type)
        decay_rate = DECAY_RATES.get(mem_type, 0.01)
        auto_summary = summary or (content[:60] + "…" if len(content) > 60 else content)

        metadata = {
            "type": memory_type,
            "created_at": now,
            "source": source,
            "context_tags": json.dumps(context_tags or []),
            "access_count": 0,
            "last_accessed": "",
            "relevance_score": 1.0,
            "decay_rate": decay_rate,
            "active": "true",
            "summary": auto_summary,
        }

        self.collection.add(
            ids=[memory_id],
            documents=[content],
            metadatas=[metadata],
        )

        return self._build(memory_id, content, metadata)

    def update_access(self, memory_id: str) -> None:
        try:
            result = self.collection.get(ids=[memory_id])
            if not result["ids"]:
                return
            meta = result["metadatas"][0]
            meta["access_count"] = int(meta.get("access_count", 0)) + 1
            meta["last_accessed"] = datetime.now(timezone.utc).isoformat()
            # Small heuristic boost on access, capped at 1.0
            meta["relevance_score"] = min(1.0, float(meta.get("relevance_score", 1.0)) + 0.05)
            self.collection.update(ids=[memory_id], metadatas=[meta])
        except Exception as e:
            print(f"[MemoryStore] update_access error for {memory_id}: {e}")

    def archive_memory(self, memory_id: str) -> bool:
        try:
            result = self.collection.get(ids=[memory_id])
            if not result["ids"]:
                return False
            meta = result["metadatas"][0]
            meta["active"] = "false"
            self.collection.update(ids=[memory_id], metadatas=[meta])
            return True
        except Exception:
            return False

    def reset(self) -> None:
        self.client.delete_collection("agent_memories")
        self.collection = self.client.get_or_create_collection(
            name="agent_memories",
            metadata={"hnsw:space": "cosine"},
        )

    # ─── Read ─────────────────────────────────────────────────────────────────

    def count(self) -> int:
        return self.collection.count()

    def search(
        self,
        query: str,
        n_results: int = 6,
        type_filter: Optional[str] = None,
    ) -> List[Memory]:
        total = self.collection.count()
        if total == 0:
            return []

        if type_filter:
            where: dict = {"$and": [{"active": {"$eq": "true"}}, {"type": {"$eq": type_filter}}]}
        else:
            where = {"active": {"$eq": "true"}}

        try:
            results = self.collection.query(
                query_texts=[query],
                n_results=min(n_results, total),
                where=where,
            )
        except Exception as e:
            print(f"[MemoryStore] search error: {e}")
            return []

        memories = []
        if results["ids"] and results["ids"][0]:
            for i, mem_id in enumerate(results["ids"][0]):
                content = results["documents"][0][i]
                meta = results["metadatas"][0][i]
                memories.append(self._build(mem_id, content, meta))
        return memories

    def list_memories(
        self,
        type_filter: Optional[str] = None,
        active_only: bool = True,
    ) -> List[Memory]:
        if active_only and type_filter:
            where: dict = {"$and": [{"active": {"$eq": "true"}}, {"type": {"$eq": type_filter}}]}
        elif active_only:
            where = {"active": {"$eq": "true"}}
        elif type_filter:
            where = {"type": {"$eq": type_filter}}
        else:
            where = None

        try:
            results = self.collection.get(where=where)
        except Exception as e:
            print(f"[MemoryStore] list error: {e}")
            return []

        memories = []
        for i, mem_id in enumerate(results["ids"]):
            content = results["documents"][i]
            meta = results["metadatas"][i]
            memories.append(self._build(mem_id, content, meta))

        memories.sort(key=lambda m: m.created_at, reverse=True)
        return memories

    # ─── Internal ─────────────────────────────────────────────────────────────

    def _compute_relevance(self, created_at: str, decay_rate: float, stored_score: float) -> float:
        try:
            created = datetime.fromisoformat(created_at)
            now = datetime.now(timezone.utc)
            if created.tzinfo is None:
                created = created.replace(tzinfo=timezone.utc)
            days_old = max(0.0, (now - created).total_seconds() / 86400)
            decayed = stored_score * math.exp(-decay_rate * days_old)
            return round(max(0.01, decayed), 3)
        except Exception:
            return stored_score

    def _build(self, mem_id: str, content: str, meta: dict) -> Memory:
        decay_rate = float(meta.get("decay_rate", 0.01))
        stored_score = float(meta.get("relevance_score", 1.0))
        current_relevance = self._compute_relevance(
            meta.get("created_at", ""), decay_rate, stored_score
        )

        tags = meta.get("context_tags", "[]")
        if isinstance(tags, str):
            try:
                tags = json.loads(tags)
            except Exception:
                tags = []

        active_raw = meta.get("active", "true")
        active = active_raw == "true" if isinstance(active_raw, str) else bool(active_raw)

        return Memory(
            id=mem_id,
            content=content,
            type=MemoryType(meta.get("type", "semantic")),
            created_at=meta.get("created_at", ""),
            source=meta.get("source", "agent"),
            context_tags=tags,
            access_count=int(meta.get("access_count", 0)),
            last_accessed=meta.get("last_accessed") or None,
            relevance_score=current_relevance,
            decay_rate=decay_rate,
            active=active,
            summary=meta.get("summary", content[:60]),
        )