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* feat(memory): add mem0 HTTP memory backend * fix(memory): address mem0 review feedback --------- Co-authored-by: Willem Jiang <willem.jiang@gmail.com>
510 lines
22 KiB
Python
510 lines
22 KiB
Python
"""Memory API router for retrieving and managing global memory data."""
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import asyncio
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from typing import Any, Literal
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from fastapi import APIRouter, HTTPException, Request
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from pydantic import BaseModel, Field, field_validator
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from app.gateway.internal_auth import get_trusted_internal_owner_user_id
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from deerflow.agents.memory import MemoryConflictError, MemoryCorruptionError, MemoryManager, get_memory_manager
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from deerflow.config.memory_config import get_memory_config
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from deerflow.config.paths import make_safe_user_id
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from deerflow.runtime.user_context import get_effective_user_id
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router = APIRouter(prefix="/api", tags=["memory"])
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def _resolve_memory_user_id(request: Request) -> str:
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"""Resolve the memory owner for this request.
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Honors the trusted internal owner header that channel workers attach when
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acting for a connection owner, so an IM ``/memory`` command reads the bound
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owner's memory instead of the synthetic internal user. The header is only
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honored after ``AuthMiddleware`` validated the internal token (see
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``get_trusted_internal_owner_user_id``). Browser/API callers are never
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internal, so this falls back to the normal contextvar-based effective user.
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The trusted owner header carries the *raw* owner id, so sanitize it through
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``make_safe_user_id`` (the same normalization the channel file pipeline applies
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via ``_safe_user_id_for_run``/``prepare_user_dir_for_raw_id``). This keeps the
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memory bucket aligned with the owner's file/upload bucket and avoids a 500 when
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the raw id contains characters ``_validate_user_id`` would reject.
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"""
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raw_owner = get_trusted_internal_owner_user_id(request)
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if raw_owner:
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return make_safe_user_id(raw_owner)
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return get_effective_user_id()
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class ContextSection(BaseModel):
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"""Model for context sections (user and history)."""
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summary: str = Field(default="", description="Summary content")
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updatedAt: str = Field(default="", description="Last update timestamp")
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class UserContext(BaseModel):
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"""Model for user context."""
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workContext: ContextSection = Field(default_factory=ContextSection)
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personalContext: ContextSection = Field(default_factory=ContextSection)
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topOfMind: ContextSection = Field(default_factory=ContextSection)
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class HistoryContext(BaseModel):
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"""Model for history context."""
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recentMonths: ContextSection = Field(default_factory=ContextSection)
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earlierContext: ContextSection = Field(default_factory=ContextSection)
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longTermBackground: ContextSection = Field(default_factory=ContextSection)
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class Fact(BaseModel):
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"""Model for a memory fact."""
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id: str = Field(..., description="Unique identifier for the fact")
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content: str = Field(..., description="Fact content")
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category: str = Field(default="context", description="Fact category")
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categoryExtension: str | None = Field(default=None, description="Extension category when category is 'other'")
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topics: list[str] | None = Field(default=None, description="Retrieval-oriented topic labels")
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confidence: float = Field(default=0.5, description="Confidence score (0-1)")
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createdAt: str = Field(default="", description="Creation timestamp")
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source: str = Field(default="unknown", description="Legacy source string; structured metadata remains internal to storage")
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sourceError: str | None = Field(default=None, description="Optional description of the prior mistake or wrong approach")
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schemaVersion: int | None = Field(default=None, description="Per-fact schema version")
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status: str | None = Field(default=None, description="Fact lifecycle status")
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scope: dict[str, str | None] | None = Field(default=None, description="Canonical user/agent scope")
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revision: int | None = Field(default=None, description="Fact optimistic revision")
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updatedAt: str | None = Field(default=None, description="Last fact update timestamp")
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consolidatedAt: str | None = None
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consolidatedFrom: list[str] | None = None
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@field_validator("source", mode="before")
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@classmethod
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def _legacy_source_string(cls, value: Any) -> str:
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"""Keep the HTTP contract stable while Markdown stores rich metadata."""
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if isinstance(value, str):
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return value
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if not isinstance(value, dict):
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return "unknown"
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source_type = value.get("type")
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thread_id = value.get("threadId")
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if source_type == "conversation" and isinstance(thread_id, str) and thread_id:
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return thread_id
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if isinstance(source_type, str) and source_type:
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return source_type
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if isinstance(thread_id, str) and thread_id:
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return thread_id
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return "unknown"
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class MemoryResponse(BaseModel):
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"""Response model for memory data."""
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version: str = Field(default="1.0", description="Memory schema version")
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revision: int | None = Field(default=None, description="Manifest revision")
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lastUpdated: str = Field(default="", description="Last update timestamp")
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user: UserContext = Field(default_factory=UserContext)
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history: HistoryContext = Field(default_factory=HistoryContext)
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facts: list[Fact] = Field(default_factory=list)
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def _map_memory_fact_value_error(exc: ValueError) -> HTTPException:
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"""Convert updater validation errors into stable API responses."""
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if exc.args and exc.args[0] == "confidence":
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detail = "Invalid confidence value; must be between 0 and 1."
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elif exc.args and exc.args[0] == "agent_name":
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detail = "An agent name is required for fact operations; user-global memory stores summaries only."
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else:
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detail = "Memory fact content cannot be empty."
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return HTTPException(status_code=400, detail=detail)
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def _map_memory_manager_error(exc: MemoryConflictError | MemoryCorruptionError) -> HTTPException:
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"""Map backend-neutral manager errors without importing a storage plugin."""
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if isinstance(exc, MemoryConflictError):
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return HTTPException(status_code=409, detail="Memory changed concurrently; reload and retry.")
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return HTTPException(status_code=500, detail="Stored memory data is corrupted.")
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def _unsupported_501(manager: object, label: str) -> HTTPException:
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"""501 for an unsupported memory operation.
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Tier-3 hooks (``reload_memory`` / ``create_fact`` / ``delete_fact`` /
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``update_fact``) and tier-2 management ops (``get_memory`` / ``clear_memory``
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/ ``import_memory``) all default to ``raise NotImplementedError``; backends
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that support them override, unsupported ones inherit the raise. Before the
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contract change these were ``@abstractmethod`` (every backend implemented
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them, so the endpoints could never raise); now a minimal backend (only
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``add`` + ``get_context``) inherits the raise, so endpoints invoke the
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method directly and catch ``NotImplementedError`` -> this 501. There is no
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global ``NotImplementedError`` handler, so an uncaught raise is a raw 500.
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"""
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return HTTPException(
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status_code=501,
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detail=f"Operation '{label}' not supported by memory backend '{type(manager).__name__}'.",
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)
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async def _get_memory_or_501(manager: MemoryManager, user_id: str, label: str) -> dict[str, Any]:
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"""Read the full memory doc; 501 if the backend doesn't expose one.
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``get_memory`` is tier-2 (default ``raise NotImplementedError``); a minimal
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backend doesn't expose a full doc. The standalone read endpoints (GET
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/memory, /memory/export, /memory/status) and the /memory/reload fallback all
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route reads through here so an unsupported backend gets a clean 501 instead
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of a raw 500. ``label`` is the operation name in the 501 detail (the
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endpoint's verb, e.g. "get memory" / "export memory" / "reload memory").
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"""
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try:
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return await asyncio.to_thread(manager.get_memory, user_id=user_id)
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except NotImplementedError:
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raise _unsupported_501(manager, label) from None
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except (MemoryConflictError, MemoryCorruptionError) as exc:
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raise _map_memory_manager_error(exc) from exc
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class FactCreateRequest(BaseModel):
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"""Request model for creating a memory fact."""
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content: str = Field(..., min_length=1, description="Fact content")
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category: str = Field(default="context", description="Fact category")
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confidence: float = Field(default=0.5, ge=0.0, le=1.0, description="Confidence score (0-1)")
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class FactPatchRequest(BaseModel):
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"""PATCH request model that preserves existing values for omitted fields."""
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content: str | None = Field(default=None, min_length=1, description="Fact content")
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category: str | None = Field(default=None, description="Fact category")
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confidence: float | None = Field(default=None, ge=0.0, le=1.0, description="Confidence score (0-1)")
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class MemoryConfigResponse(BaseModel):
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"""Response model for memory configuration."""
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enabled: bool = Field(..., description="Whether the memory mechanism is enabled (call-site gate).")
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mode: Literal["middleware", "tool"] = Field(..., description="Memory operation mode: 'middleware' (passive per-turn LLM summarization) or 'tool' (model calls memory tools directly). Mechanism-level, applies to any backend.")
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injection_enabled: bool = Field(..., description="Whether memory is injected into the system prompt (call-site gate).")
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shutdown_flush_timeout_seconds: float = Field(..., description="Hard budget (s) to drain pending memory updates on Gateway graceful shutdown; must fit inside the pod's K8s terminationGracePeriodSeconds.")
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manager_class: str = Field(..., description="Active memory backend selector (backend name or dotted path).")
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backend_config: dict = Field(..., description="Backend-private config (self-interpreted by the backend).")
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class MemoryStatusResponse(BaseModel):
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"""Response model for memory status."""
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config: MemoryConfigResponse
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data: MemoryResponse
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@router.get(
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"/memory",
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response_model=MemoryResponse,
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response_model_exclude_none=True,
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summary="Get Memory Data",
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description="Retrieve the current global memory data including user context, history, and facts.",
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)
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async def get_memory(http_request: Request) -> MemoryResponse:
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"""Get the current global memory data.
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Returns:
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The current memory data with user context, history, and facts.
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Example Response:
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```json
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{
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"version": "1.0",
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"lastUpdated": "2024-01-15T10:30:00Z",
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"user": {
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"workContext": {"summary": "Working on DeerFlow project", "updatedAt": "..."},
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"personalContext": {"summary": "Prefers concise responses", "updatedAt": "..."},
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"topOfMind": {"summary": "Building memory API", "updatedAt": "..."}
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},
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"history": {
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"recentMonths": {"summary": "Recent development activities", "updatedAt": "..."},
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"earlierContext": {"summary": "", "updatedAt": ""},
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"longTermBackground": {"summary": "", "updatedAt": ""}
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},
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"facts": [
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{
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"id": "fact_abc123",
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"content": "User prefers TypeScript over JavaScript",
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"category": "preference",
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"confidence": 0.9,
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"createdAt": "2024-01-15T10:30:00Z",
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"source": "thread_xyz"
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}
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]
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}
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```
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"""
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manager = await asyncio.to_thread(get_memory_manager)
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memory_data = await _get_memory_or_501(manager, _resolve_memory_user_id(http_request), "get memory")
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return MemoryResponse(**memory_data)
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@router.post(
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"/memory/reload",
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response_model=MemoryResponse,
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response_model_exclude_none=True,
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summary="Reload Memory Data",
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description="Reload memory data from the storage file, refreshing the in-memory cache.",
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)
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async def reload_memory(http_request: Request) -> MemoryResponse:
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"""Reload memory data from file.
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This forces a reload of the memory data from the storage file,
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useful when the file has been modified externally.
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Returns:
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The reloaded memory data.
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"""
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user_id = _resolve_memory_user_id(http_request)
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manager = await asyncio.to_thread(get_memory_manager)
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try:
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memory_data = await asyncio.to_thread(manager.reload_memory, user_id=user_id)
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except NotImplementedError:
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# Non-DeerMem backends have no reload concept; fall back to get_memory
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# (read-only refresh, so degrading is safe and still useful -- vs fact
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# CRUD writes, which fail loud at 501 since silently no-op'ing a write
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# would hide data loss). If get_memory is also unsupported (a minimal
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# backend with no full doc), surface 501 rather than a raw 500: reads
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# degrade only when there is a doc to degrade to.
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memory_data = await _get_memory_or_501(manager, user_id, "reload memory")
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except (MemoryConflictError, MemoryCorruptionError) as exc:
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raise _map_memory_manager_error(exc) from exc
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return MemoryResponse(**memory_data)
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@router.delete(
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"/memory",
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response_model=MemoryResponse,
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response_model_exclude_none=True,
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summary="Clear All Memory Data",
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description="Delete all saved memory data and reset the memory structure to an empty state.",
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)
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async def clear_memory(http_request: Request) -> MemoryResponse:
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"""Clear all persisted memory data."""
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manager = await asyncio.to_thread(get_memory_manager)
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try:
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memory_data = await asyncio.to_thread(manager.clear_memory, user_id=_resolve_memory_user_id(http_request))
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except NotImplementedError:
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raise _unsupported_501(manager, "clear memory") from None
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except (MemoryConflictError, MemoryCorruptionError) as exc:
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raise _map_memory_manager_error(exc) from exc
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except OSError as exc:
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raise HTTPException(status_code=500, detail="Failed to clear memory data.") from exc
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return MemoryResponse(**memory_data)
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@router.post(
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"/memory/facts",
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response_model=MemoryResponse,
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response_model_exclude_none=True,
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summary="Create Memory Fact",
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description="Create a single saved memory fact manually.",
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)
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async def create_memory_fact_endpoint(request: FactCreateRequest, http_request: Request) -> MemoryResponse:
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"""Create a single fact manually."""
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manager = await asyncio.to_thread(get_memory_manager)
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try:
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memory_data, fact_id = await asyncio.to_thread(
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manager.create_fact,
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content=request.content,
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category=request.category,
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confidence=request.confidence,
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user_id=_resolve_memory_user_id(http_request),
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)
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except NotImplementedError:
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raise _unsupported_501(manager, "create fact") from None
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except ValueError as exc:
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raise _map_memory_fact_value_error(exc) from exc
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except (MemoryConflictError, MemoryCorruptionError) as exc:
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raise _map_memory_manager_error(exc) from exc
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except OSError as exc:
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raise HTTPException(status_code=500, detail="Failed to create memory fact.") from exc
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if fact_id is None:
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# max_facts cap evicted the new (lower-confidence) fact; it was not stored.
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raise HTTPException(status_code=409, detail="Fact was not stored because memory.max_facts kept higher-confidence facts")
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return MemoryResponse(**memory_data)
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@router.delete(
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"/memory/facts/{fact_id}",
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response_model=MemoryResponse,
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response_model_exclude_none=True,
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summary="Delete Memory Fact",
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description="Delete a single saved memory fact by its fact id.",
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)
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async def delete_memory_fact_endpoint(fact_id: str, http_request: Request) -> MemoryResponse:
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"""Delete a single fact from memory by fact id."""
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manager = await asyncio.to_thread(get_memory_manager)
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try:
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memory_data = await asyncio.to_thread(manager.delete_fact, fact_id, user_id=_resolve_memory_user_id(http_request))
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except NotImplementedError:
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raise _unsupported_501(manager, "delete fact") from None
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except KeyError as exc:
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raise HTTPException(status_code=404, detail=f"Memory fact '{fact_id}' not found.") from exc
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except (MemoryConflictError, MemoryCorruptionError) as exc:
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raise _map_memory_manager_error(exc) from exc
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except OSError as exc:
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raise HTTPException(status_code=500, detail="Failed to delete memory fact.") from exc
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return MemoryResponse(**memory_data)
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@router.patch(
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"/memory/facts/{fact_id}",
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response_model=MemoryResponse,
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response_model_exclude_none=True,
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summary="Patch Memory Fact",
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description="Partially update a single saved memory fact by its fact id while preserving omitted fields.",
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)
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async def update_memory_fact_endpoint(fact_id: str, request: FactPatchRequest, http_request: Request) -> MemoryResponse:
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"""Partially update a single fact manually."""
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manager = await asyncio.to_thread(get_memory_manager)
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try:
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memory_data = await asyncio.to_thread(
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manager.update_fact,
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fact_id=fact_id,
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content=request.content,
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category=request.category,
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confidence=request.confidence,
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user_id=_resolve_memory_user_id(http_request),
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)
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except NotImplementedError:
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raise _unsupported_501(manager, "update fact") from None
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except ValueError as exc:
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raise _map_memory_fact_value_error(exc) from exc
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except KeyError as exc:
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raise HTTPException(status_code=404, detail=f"Memory fact '{fact_id}' not found.") from exc
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except (MemoryConflictError, MemoryCorruptionError) as exc:
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raise _map_memory_manager_error(exc) from exc
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except OSError as exc:
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raise HTTPException(status_code=500, detail="Failed to update memory fact.") from exc
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return MemoryResponse(**memory_data)
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@router.get(
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"/memory/export",
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response_model=MemoryResponse,
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response_model_exclude_none=True,
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summary="Export Memory Data",
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description="Export the current global memory data as JSON for backup or transfer.",
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)
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async def export_memory(http_request: Request) -> MemoryResponse:
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"""Export the current memory data."""
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manager = await asyncio.to_thread(get_memory_manager)
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memory_data = await _get_memory_or_501(manager, _resolve_memory_user_id(http_request), "export memory")
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return MemoryResponse(**memory_data)
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@router.post(
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"/memory/import",
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response_model=MemoryResponse,
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response_model_exclude_none=True,
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summary="Import Memory Data",
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description="Import and overwrite the current global memory data from a JSON payload.",
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)
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async def import_memory(request: MemoryResponse, http_request: Request) -> MemoryResponse:
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"""Import and persist memory data."""
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manager = await asyncio.to_thread(get_memory_manager)
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try:
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memory_data = await asyncio.to_thread(
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manager.import_memory,
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request.model_dump(exclude_none=True),
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user_id=_resolve_memory_user_id(http_request),
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)
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except NotImplementedError:
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raise _unsupported_501(manager, "import memory") from None
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except (MemoryConflictError, MemoryCorruptionError) as exc:
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raise _map_memory_manager_error(exc) from exc
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except OSError as exc:
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raise HTTPException(status_code=500, detail="Failed to import memory data.") from exc
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return MemoryResponse(**memory_data)
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@router.get(
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"/memory/config",
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response_model=MemoryConfigResponse,
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summary="Get Memory Configuration",
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description="Retrieve the current memory system configuration.",
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)
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async def get_memory_config_endpoint() -> MemoryConfigResponse:
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"""Get the memory system configuration.
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Returns:
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The current memory configuration. The response is backend-agnostic:
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``enabled`` / ``injection_enabled`` / ``mode`` are mechanism-level
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fields that apply to any backend (``mode`` selects middleware vs tool
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operation), and ``backend_config`` is an opaque dict the active
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backend (``manager_class``) self-interprets. DeerMem's knobs
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(``storage_path``, ``max_facts``, ``debounce_seconds``, ...) live under
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``backend_config`` -- they are NOT top-level, because a non-DeerMem
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backend has its own (different) knobs.
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|
Example Response:
|
|
```json
|
|
{
|
|
"enabled": true,
|
|
"injection_enabled": true,
|
|
"shutdown_flush_timeout_seconds": 30.0,
|
|
"mode": "middleware",
|
|
"manager_class": "deermem",
|
|
"backend_config": {
|
|
"storage_path": "/.../.deer-flow",
|
|
"debounce_seconds": 30,
|
|
"max_facts": 100,
|
|
"fact_confidence_threshold": 0.7,
|
|
"max_injection_tokens": 2000,
|
|
"token_counting": "tiktoken"
|
|
}
|
|
}
|
|
```
|
|
"""
|
|
config = get_memory_config()
|
|
return MemoryConfigResponse(
|
|
enabled=config.enabled,
|
|
mode=config.mode,
|
|
injection_enabled=config.injection_enabled,
|
|
shutdown_flush_timeout_seconds=config.shutdown_flush_timeout_seconds,
|
|
manager_class=config.manager_class,
|
|
backend_config=config.backend_config,
|
|
)
|
|
|
|
|
|
@router.get(
|
|
"/memory/status",
|
|
response_model=MemoryStatusResponse,
|
|
response_model_exclude_none=True,
|
|
summary="Get Memory Status",
|
|
description="Retrieve both memory configuration and current data in a single request.",
|
|
)
|
|
async def get_memory_status(http_request: Request) -> MemoryStatusResponse:
|
|
"""Get the memory system status including configuration and data.
|
|
|
|
Returns:
|
|
Combined memory configuration and current data.
|
|
"""
|
|
config = get_memory_config()
|
|
manager = await asyncio.to_thread(get_memory_manager)
|
|
memory_data = await _get_memory_or_501(manager, _resolve_memory_user_id(http_request), "get memory status")
|
|
|
|
return MemoryStatusResponse(
|
|
config=MemoryConfigResponse(
|
|
enabled=config.enabled,
|
|
mode=config.mode,
|
|
injection_enabled=config.injection_enabled,
|
|
shutdown_flush_timeout_seconds=config.shutdown_flush_timeout_seconds,
|
|
manager_class=config.manager_class,
|
|
backend_config=config.backend_config,
|
|
),
|
|
data=MemoryResponse(**memory_data),
|
|
)
|