""" Copyright 2024, Zep Software, Inc. Licensed under the Apache License, Version 2.0 (the "License"); you may not use this file except in compliance with the License. You may obtain a copy of the License at http://www.apache.org/licenses/LICENSE-2.0 Unless required by applicable law or agreed to in writing, software distributed under the License is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License for the specific language governing permissions and limitations under the License. """ import json import logging from abc import ABC, abstractmethod from datetime import datetime from enum import Enum from time import time from typing import Any from uuid import uuid4 from pydantic import BaseModel, ConfigDict, Field, field_validator from typing_extensions import LiteralString from graphiti_core.driver.driver import ( GraphDriver, GraphProvider, ) from graphiti_core.embedder import EmbedderClient from graphiti_core.errors import NodeNotFoundError from graphiti_core.helpers import parse_db_date, validate_node_labels from graphiti_core.models.nodes.node_db_queries import ( COMMUNITY_NODE_RETURN, COMMUNITY_NODE_RETURN_NEPTUNE, EPISODIC_NODE_RETURN, EPISODIC_NODE_RETURN_NEPTUNE, SAGA_NODE_RETURN, SAGA_NODE_RETURN_NEPTUNE, get_community_node_save_query, get_entity_node_return_query, get_entity_node_save_query, get_episode_node_save_query, get_saga_node_save_query, ) from graphiti_core.utils.datetime_utils import utc_now logger = logging.getLogger(__name__) class EpisodeType(Enum): """ Enumeration of different types of episodes that can be processed. This enum defines the various sources or formats of episodes that the system can handle. It's used to categorize and potentially handle different types of input data differently. Attributes: ----------- message : str Represents a standard message-type episode. The content for this type should be formatted as "actor: content". For example, "user: Hello, how are you?" or "assistant: I'm doing well, thank you for asking." json : str Represents an episode containing a JSON string object with structured data. text : str Represents a plain text episode. """ message = 'message' json = 'json' text = 'text' fact_triple = 'fact_triple' @staticmethod def from_str(episode_type: str): if episode_type == 'message': return EpisodeType.message if episode_type == 'json': return EpisodeType.json if episode_type == 'text': return EpisodeType.text if episode_type == 'fact_triple': return EpisodeType.fact_triple logger.error(f'Episode type: {episode_type} not implemented') raise NotImplementedError class Node(BaseModel, ABC): uuid: str = Field(default_factory=lambda: str(uuid4())) name: str = Field(description='name of the node') group_id: str = Field(description='partition of the graph') labels: list[str] = Field(default_factory=list) created_at: datetime = Field(default_factory=lambda: utc_now()) model_config = ConfigDict(validate_assignment=True) @field_validator('labels') @classmethod def validate_labels(cls, value: list[str]) -> list[str]: validate_node_labels(value) return value @abstractmethod async def save(self, driver: GraphDriver): ... async def delete(self, driver: GraphDriver): if driver.graph_operations_interface: try: return await driver.graph_operations_interface.node_delete(self, driver) except NotImplementedError: pass match driver.provider: case GraphProvider.NEO4J: records, _, _ = await driver.execute_query( """ MATCH (n {uuid: $uuid}) WHERE n:Entity OR n:Episodic OR n:Community OPTIONAL MATCH (n)-[r]-() WITH collect(r.uuid) AS edge_uuids, n DETACH DELETE n RETURN edge_uuids """, uuid=self.uuid, ) case GraphProvider.KUZU: for label in ['Episodic', 'Community']: await driver.execute_query( f""" MATCH (n:{label} {{uuid: $uuid}}) DETACH DELETE n """, uuid=self.uuid, ) # Entity edges are actually nodes in Kuzu, so simple `DETACH DELETE` will not work. # Explicitly delete the "edge" nodes first, then the entity node. await driver.execute_query( """ MATCH (n:Entity {uuid: $uuid})-[:RELATES_TO]->(e:RelatesToNode_) DETACH DELETE e """, uuid=self.uuid, ) await driver.execute_query( """ MATCH (n:Entity {uuid: $uuid}) DETACH DELETE n """, uuid=self.uuid, ) case _: # FalkorDB, Neptune for label in ['Entity', 'Episodic', 'Community']: await driver.execute_query( f""" MATCH (n:{label} {{uuid: $uuid}}) DETACH DELETE n """, uuid=self.uuid, ) logger.debug(f'Deleted Node: {self.uuid}') def __hash__(self): return hash(self.uuid) def __eq__(self, other): if isinstance(other, Node): return self.uuid == other.uuid return False @classmethod async def delete_by_group_id(cls, driver: GraphDriver, group_id: str, batch_size: int = 100): if driver.graph_operations_interface: try: return await driver.graph_operations_interface.node_delete_by_group_id( cls, driver, group_id, batch_size ) except NotImplementedError: pass match driver.provider: case GraphProvider.NEO4J: async with driver.session() as session: await session.run( """ MATCH (n:Entity|Episodic|Community {group_id: $group_id}) CALL (n) { DETACH DELETE n } IN TRANSACTIONS OF $batch_size ROWS """, group_id=group_id, batch_size=batch_size, ) case GraphProvider.KUZU: for label in ['Episodic', 'Community']: await driver.execute_query( f""" MATCH (n:{label} {{group_id: $group_id}}) DETACH DELETE n """, group_id=group_id, ) # Entity edges are actually nodes in Kuzu, so simple `DETACH DELETE` will not work. # Explicitly delete the "edge" nodes first, then the entity node. await driver.execute_query( """ MATCH (n:Entity {group_id: $group_id})-[:RELATES_TO]->(e:RelatesToNode_) DETACH DELETE e """, group_id=group_id, ) await driver.execute_query( """ MATCH (n:Entity {group_id: $group_id}) DETACH DELETE n """, group_id=group_id, ) case _: # FalkorDB, Neptune for label in ['Entity', 'Episodic', 'Community']: await driver.execute_query( f""" MATCH (n:{label} {{group_id: $group_id}}) DETACH DELETE n """, group_id=group_id, ) @classmethod async def delete_by_uuids(cls, driver: GraphDriver, uuids: list[str], batch_size: int = 100): if driver.graph_operations_interface: try: return await driver.graph_operations_interface.node_delete_by_uuids( cls, driver, uuids, group_id=None, batch_size=batch_size ) except NotImplementedError: pass match driver.provider: case GraphProvider.FALKORDB: for label in ['Entity', 'Episodic', 'Community']: await driver.execute_query( f""" MATCH (n:{label}) WHERE n.uuid IN $uuids DETACH DELETE n """, uuids=uuids, ) case GraphProvider.KUZU: for label in ['Episodic', 'Community']: await driver.execute_query( f""" MATCH (n:{label}) WHERE n.uuid IN $uuids DETACH DELETE n """, uuids=uuids, ) # Entity edges are actually nodes in Kuzu, so simple `DETACH DELETE` will not work. # Explicitly delete the "edge" nodes first, then the entity node. await driver.execute_query( """ MATCH (n:Entity)-[:RELATES_TO]->(e:RelatesToNode_) WHERE n.uuid IN $uuids DETACH DELETE e """, uuids=uuids, ) await driver.execute_query( """ MATCH (n:Entity) WHERE n.uuid IN $uuids DETACH DELETE n """, uuids=uuids, ) case _: # Neo4J, Neptune async with driver.session() as session: # Collect all edge UUIDs before deleting nodes await session.run( """ MATCH (n:Entity|Episodic|Community) WHERE n.uuid IN $uuids MATCH (n)-[r]-() RETURN collect(r.uuid) AS edge_uuids """, uuids=uuids, ) # Now delete the nodes in batches await session.run( """ MATCH (n:Entity|Episodic|Community) WHERE n.uuid IN $uuids CALL (n) { DETACH DELETE n } IN TRANSACTIONS OF $batch_size ROWS """, uuids=uuids, batch_size=batch_size, ) @classmethod async def get_by_uuid(cls, driver: GraphDriver, uuid: str): ... @classmethod async def get_by_uuids(cls, driver: GraphDriver, uuids: list[str]): ... class EpisodicNode(Node): source: EpisodeType = Field(description='source type') source_description: str = Field(description='description of the data source') content: str = Field(description='raw episode data') valid_at: datetime = Field( description='datetime of when the original document was created', ) entity_edges: list[str] = Field( description='list of entity edges referenced in this episode', default_factory=list, ) episode_metadata: dict[str, Any] | None = Field( description='customer-defined metadata key-value pairs for filtering', default=None, ) async def save(self, driver: GraphDriver): if driver.graph_operations_interface: try: return await driver.graph_operations_interface.episodic_node_save(self, driver) except NotImplementedError: pass episode_args = { 'uuid': self.uuid, 'name': self.name, 'group_id': self.group_id, 'source_description': self.source_description, 'content': self.content, 'entity_edges': self.entity_edges, 'created_at': self.created_at, 'valid_at': self.valid_at, 'source': self.source.value, } result = await driver.execute_query( get_episode_node_save_query(driver.provider), **episode_args ) logger.debug(f'Saved Node to Graph: {self.uuid}') return result @classmethod async def get_by_uuid(cls, driver: GraphDriver, uuid: str): if driver.graph_operations_interface: try: return await driver.graph_operations_interface.episodic_node_get_by_uuid( cls, driver, uuid ) except NotImplementedError: pass records, _, _ = await driver.execute_query( """ MATCH (e:Episodic {uuid: $uuid}) RETURN """ + ( EPISODIC_NODE_RETURN_NEPTUNE if driver.provider == GraphProvider.NEPTUNE else EPISODIC_NODE_RETURN ), uuid=uuid, routing_='r', ) episodes = [get_episodic_node_from_record(record) for record in records] if len(episodes) == 0: raise NodeNotFoundError(uuid) return episodes[0] @classmethod async def get_by_uuids(cls, driver: GraphDriver, uuids: list[str]): if driver.graph_operations_interface: try: return await driver.graph_operations_interface.episodic_node_get_by_uuids( cls, driver, uuids ) except NotImplementedError: pass records, _, _ = await driver.execute_query( """ MATCH (e:Episodic) WHERE e.uuid IN $uuids RETURN DISTINCT """ + ( EPISODIC_NODE_RETURN_NEPTUNE if driver.provider == GraphProvider.NEPTUNE else EPISODIC_NODE_RETURN ), uuids=uuids, routing_='r', ) episodes = [get_episodic_node_from_record(record) for record in records] return episodes @classmethod async def get_by_group_ids( cls, driver: GraphDriver, group_ids: list[str], limit: int | None = None, uuid_cursor: str | None = None, ): if driver.graph_operations_interface: try: return await driver.graph_operations_interface.episodic_node_get_by_group_ids( cls, driver, group_ids, limit, uuid_cursor ) except NotImplementedError: pass cursor_query: LiteralString = 'AND e.uuid < $uuid' if uuid_cursor else '' limit_query: LiteralString = 'LIMIT $limit' if limit is not None else '' records, _, _ = await driver.execute_query( """ MATCH (e:Episodic) WHERE e.group_id IN $group_ids """ + cursor_query + """ RETURN DISTINCT """ + ( EPISODIC_NODE_RETURN_NEPTUNE if driver.provider == GraphProvider.NEPTUNE else EPISODIC_NODE_RETURN ) + """ ORDER BY uuid DESC """ + limit_query, group_ids=group_ids, uuid=uuid_cursor, limit=limit, routing_='r', ) episodes = [get_episodic_node_from_record(record) for record in records] return episodes @classmethod async def get_by_entity_node_uuid(cls, driver: GraphDriver, entity_node_uuid: str): if driver.graph_operations_interface: try: return ( await driver.graph_operations_interface.episodic_node_get_by_entity_node_uuid( cls, driver, entity_node_uuid ) ) except NotImplementedError: pass records, _, _ = await driver.execute_query( """ MATCH (e:Episodic)-[r:MENTIONS]->(n:Entity {uuid: $entity_node_uuid}) RETURN DISTINCT """ + ( EPISODIC_NODE_RETURN_NEPTUNE if driver.provider == GraphProvider.NEPTUNE else EPISODIC_NODE_RETURN ), entity_node_uuid=entity_node_uuid, routing_='r', ) episodes = [get_episodic_node_from_record(record) for record in records] return episodes class EntityNode(Node): name_embedding: list[float] | None = Field(default=None, description='embedding of the name') summary: str = Field(description='regional summary of surrounding edges', default_factory=str) attributes: dict[str, Any] = Field( default={}, description='Additional attributes of the node. Dependent on node labels' ) async def generate_name_embedding(self, embedder: EmbedderClient): start = time() text = self.name.replace('\n', ' ') self.name_embedding = await embedder.create(input_data=[text]) end = time() logger.debug( f'embedded entity {self.uuid} name ({len(text)} chars) in {(end - start) * 1000} ms' ) return self.name_embedding async def load_name_embedding(self, driver: GraphDriver): if driver.graph_operations_interface: try: return await driver.graph_operations_interface.node_load_embeddings(self, driver) except NotImplementedError: pass if driver.provider == GraphProvider.NEPTUNE: query: LiteralString = """ MATCH (n:Entity {uuid: $uuid}) RETURN [x IN split(n.name_embedding, ",") | toFloat(x)] as name_embedding """ else: query: LiteralString = """ MATCH (n:Entity {uuid: $uuid}) RETURN n.name_embedding AS name_embedding """ records, _, _ = await driver.execute_query( query, uuid=self.uuid, routing_='r', ) if len(records) == 0: raise NodeNotFoundError(self.uuid) self.name_embedding = records[0]['name_embedding'] async def save(self, driver: GraphDriver): if driver.graph_operations_interface: try: return await driver.graph_operations_interface.node_save(self, driver) except NotImplementedError: pass entity_data: dict[str, Any] = { 'uuid': self.uuid, 'name': self.name, 'name_embedding': self.name_embedding, 'group_id': self.group_id, 'summary': self.summary, 'created_at': self.created_at, } if driver.provider == GraphProvider.KUZU: entity_data['attributes'] = json.dumps(self.attributes) entity_data['labels'] = list(set(self.labels + ['Entity'])) result = await driver.execute_query( get_entity_node_save_query(driver.provider, labels=''), **entity_data, ) else: for k, v in (self.attributes or {}).items(): if k not in entity_data: entity_data[k] = v labels = ':'.join(self.labels + ['Entity']) result = await driver.execute_query( get_entity_node_save_query(driver.provider, labels), entity_data=entity_data, ) logger.debug(f'Saved Node to Graph: {self.uuid}') return result @classmethod async def get_by_uuid(cls, driver: GraphDriver, uuid: str): if driver.graph_operations_interface: try: return await driver.graph_operations_interface.node_get_by_uuid(cls, driver, uuid) except NotImplementedError: pass records, _, _ = await driver.execute_query( """ MATCH (n:Entity {uuid: $uuid}) RETURN """ + get_entity_node_return_query(driver.provider), uuid=uuid, routing_='r', ) nodes = [get_entity_node_from_record(record, driver.provider) for record in records] if len(nodes) == 0: raise NodeNotFoundError(uuid) return nodes[0] @classmethod async def get_by_uuids(cls, driver: GraphDriver, uuids: list[str], group_id: str | None = None): if driver.graph_operations_interface: try: return await driver.graph_operations_interface.node_get_by_uuids( cls, driver, uuids, group_id ) except NotImplementedError: pass records, _, _ = await driver.execute_query( """ MATCH (n:Entity) WHERE n.uuid IN $uuids RETURN """ + get_entity_node_return_query(driver.provider), uuids=uuids, routing_='r', ) nodes = [get_entity_node_from_record(record, driver.provider) for record in records] return nodes @classmethod async def get_by_group_ids( cls, driver: GraphDriver, group_ids: list[str], limit: int | None = None, uuid_cursor: str | None = None, with_embeddings: bool = False, ): if driver.graph_operations_interface: try: return await driver.graph_operations_interface.node_get_by_group_ids( cls, driver, group_ids, limit, uuid_cursor ) except NotImplementedError: pass cursor_query: LiteralString = 'AND n.uuid < $uuid' if uuid_cursor else '' limit_query: LiteralString = 'LIMIT $limit' if limit is not None else '' with_embeddings_query: LiteralString = ( """, n.name_embedding AS name_embedding """ if with_embeddings else '' ) records, _, _ = await driver.execute_query( """ MATCH (n:Entity) WHERE n.group_id IN $group_ids """ + cursor_query + """ RETURN """ + get_entity_node_return_query(driver.provider) + with_embeddings_query + """ ORDER BY n.uuid DESC """ + limit_query, group_ids=group_ids, uuid=uuid_cursor, limit=limit, routing_='r', ) nodes = [get_entity_node_from_record(record, driver.provider) for record in records] return nodes class CommunityNode(Node): name_embedding: list[float] | None = Field(default=None, description='embedding of the name') summary: str = Field(description='region summary of member nodes', default_factory=str) async def save(self, driver: GraphDriver): if driver.graph_operations_interface: try: return await driver.graph_operations_interface.community_node_save(self, driver) except NotImplementedError: pass if driver.provider == GraphProvider.NEPTUNE: await driver.save_to_aoss( # pyright: ignore reportAttributeAccessIssue 'communities', [{'name': self.name, 'uuid': self.uuid, 'group_id': self.group_id}], ) result = await driver.execute_query( get_community_node_save_query(driver.provider), # type: ignore uuid=self.uuid, name=self.name, group_id=self.group_id, summary=self.summary, name_embedding=self.name_embedding, created_at=self.created_at, ) logger.debug(f'Saved Node to Graph: {self.uuid}') return result async def generate_name_embedding(self, embedder: EmbedderClient): start = time() text = self.name.replace('\n', ' ') self.name_embedding = await embedder.create(input_data=[text]) end = time() logger.debug( f'embedded entity {self.uuid} name ({len(text)} chars) in {(end - start) * 1000} ms' ) return self.name_embedding async def load_name_embedding(self, driver: GraphDriver): if driver.graph_operations_interface: try: return await driver.graph_operations_interface.community_node_load_name_embedding( self, driver ) except NotImplementedError: pass if driver.provider == GraphProvider.NEPTUNE: query: LiteralString = """ MATCH (c:Community {uuid: $uuid}) RETURN [x IN split(c.name_embedding, ",") | toFloat(x)] as name_embedding """ else: query: LiteralString = """ MATCH (c:Community {uuid: $uuid}) RETURN c.name_embedding AS name_embedding """ records, _, _ = await driver.execute_query( query, uuid=self.uuid, routing_='r', ) if len(records) == 0: raise NodeNotFoundError(self.uuid) self.name_embedding = records[0]['name_embedding'] @classmethod async def get_by_uuid(cls, driver: GraphDriver, uuid: str): if driver.graph_operations_interface: try: return await driver.graph_operations_interface.community_node_get_by_uuid( cls, driver, uuid ) except NotImplementedError: pass records, _, _ = await driver.execute_query( """ MATCH (c:Community {uuid: $uuid}) RETURN """ + ( COMMUNITY_NODE_RETURN_NEPTUNE if driver.provider == GraphProvider.NEPTUNE else COMMUNITY_NODE_RETURN ), uuid=uuid, routing_='r', ) nodes = [get_community_node_from_record(record) for record in records] if len(nodes) == 0: raise NodeNotFoundError(uuid) return nodes[0] @classmethod async def get_by_uuids(cls, driver: GraphDriver, uuids: list[str]): if driver.graph_operations_interface: try: return await driver.graph_operations_interface.community_node_get_by_uuids( cls, driver, uuids ) except NotImplementedError: pass records, _, _ = await driver.execute_query( """ MATCH (c:Community) WHERE c.uuid IN $uuids RETURN """ + ( COMMUNITY_NODE_RETURN_NEPTUNE if driver.provider == GraphProvider.NEPTUNE else COMMUNITY_NODE_RETURN ), uuids=uuids, routing_='r', ) communities = [get_community_node_from_record(record) for record in records] return communities @classmethod async def get_by_group_ids( cls, driver: GraphDriver, group_ids: list[str], limit: int | None = None, uuid_cursor: str | None = None, ): if driver.graph_operations_interface: try: return await driver.graph_operations_interface.community_node_get_by_group_ids( cls, driver, group_ids, limit, uuid_cursor ) except NotImplementedError: pass cursor_query: LiteralString = 'AND c.uuid < $uuid' if uuid_cursor else '' limit_query: LiteralString = 'LIMIT $limit' if limit is not None else '' records, _, _ = await driver.execute_query( """ MATCH (c:Community) WHERE c.group_id IN $group_ids """ + cursor_query + """ RETURN """ + ( COMMUNITY_NODE_RETURN_NEPTUNE if driver.provider == GraphProvider.NEPTUNE else COMMUNITY_NODE_RETURN ) + """ ORDER BY c.uuid DESC """ + limit_query, group_ids=group_ids, uuid=uuid_cursor, limit=limit, routing_='r', ) communities = [get_community_node_from_record(record) for record in records] return communities class SagaNode(Node): summary: str = '' first_episode_uuid: str | None = None last_episode_uuid: str | None = None last_summarized_at: datetime | None = None # Maximum ``valid_at`` (episode reference time) across all episodes covered # by the most recent summary. ``last_summarized_at`` is wall-clock and is # used as the watermark for the next incremental summarize run; this field # carries the episode-time semantics for public/temporal consumers. last_summarized_episode_valid_at: datetime | None = None async def save(self, driver: GraphDriver): if driver.graph_operations_interface: try: return await driver.graph_operations_interface.saga_node_save(self, driver) except NotImplementedError: pass result = await driver.execute_query( get_saga_node_save_query(driver.provider), uuid=self.uuid, name=self.name, group_id=self.group_id, created_at=self.created_at, summary=self.summary, first_episode_uuid=self.first_episode_uuid, last_episode_uuid=self.last_episode_uuid, last_summarized_at=self.last_summarized_at, last_summarized_episode_valid_at=self.last_summarized_episode_valid_at, ) logger.debug(f'Saved Node to Graph: {self.uuid}') return result async def delete(self, driver: GraphDriver): if driver.graph_operations_interface: try: return await driver.graph_operations_interface.saga_node_delete(self, driver) except NotImplementedError: pass await driver.execute_query( """ MATCH (n:Saga {uuid: $uuid}) DETACH DELETE n """, uuid=self.uuid, ) logger.debug(f'Deleted Node: {self.uuid}') @classmethod async def get_by_uuid(cls, driver: GraphDriver, uuid: str): if driver.graph_operations_interface: try: return await driver.graph_operations_interface.saga_node_get_by_uuid( cls, driver, uuid ) except NotImplementedError: pass records, _, _ = await driver.execute_query( """ MATCH (s:Saga {uuid: $uuid}) RETURN """ + ( SAGA_NODE_RETURN_NEPTUNE if driver.provider == GraphProvider.NEPTUNE else SAGA_NODE_RETURN ), uuid=uuid, routing_='r', ) nodes = [get_saga_node_from_record(record) for record in records] if len(nodes) == 0: raise NodeNotFoundError(uuid) return nodes[0] @classmethod async def get_by_uuids(cls, driver: GraphDriver, uuids: list[str]): if driver.graph_operations_interface: try: return await driver.graph_operations_interface.saga_node_get_by_uuids( cls, driver, uuids ) except NotImplementedError: pass records, _, _ = await driver.execute_query( """ MATCH (s:Saga) WHERE s.uuid IN $uuids RETURN """ + ( SAGA_NODE_RETURN_NEPTUNE if driver.provider == GraphProvider.NEPTUNE else SAGA_NODE_RETURN ), uuids=uuids, routing_='r', ) sagas = [get_saga_node_from_record(record) for record in records] return sagas @classmethod async def get_by_group_ids( cls, driver: GraphDriver, group_ids: list[str], limit: int | None = None, uuid_cursor: str | None = None, ): if driver.graph_operations_interface: try: return await driver.graph_operations_interface.saga_node_get_by_group_ids( cls, driver, group_ids, limit, uuid_cursor ) except NotImplementedError: pass cursor_query: LiteralString = 'AND s.uuid < $uuid' if uuid_cursor else '' limit_query: LiteralString = 'LIMIT $limit' if limit is not None else '' records, _, _ = await driver.execute_query( """ MATCH (s:Saga) WHERE s.group_id IN $group_ids """ + cursor_query + """ RETURN """ + ( SAGA_NODE_RETURN_NEPTUNE if driver.provider == GraphProvider.NEPTUNE else SAGA_NODE_RETURN ) + """ ORDER BY s.uuid DESC """ + limit_query, group_ids=group_ids, uuid=uuid_cursor, limit=limit, routing_='r', ) sagas = [get_saga_node_from_record(record) for record in records] return sagas # Node helpers def get_episodic_node_from_record(record: Any) -> EpisodicNode: created_at = parse_db_date(record['created_at']) valid_at = parse_db_date(record['valid_at']) if created_at is None: raise ValueError(f'created_at cannot be None for episode {record.get("uuid", "unknown")}') if valid_at is None: raise ValueError(f'valid_at cannot be None for episode {record.get("uuid", "unknown")}') return EpisodicNode( content=record['content'], created_at=created_at, valid_at=valid_at, uuid=record['uuid'], group_id=record['group_id'], source=EpisodeType.from_str(record['source']), name=record['name'], source_description=record['source_description'], entity_edges=record['entity_edges'], ) def get_entity_node_from_record(record: Any, provider: GraphProvider) -> EntityNode: if provider == GraphProvider.KUZU: attributes = json.loads(record['attributes']) if record['attributes'] else {} else: attributes = record['attributes'] attributes.pop('uuid', None) attributes.pop('name', None) attributes.pop('group_id', None) attributes.pop('name_embedding', None) attributes.pop('summary', None) attributes.pop('created_at', None) attributes.pop('labels', None) labels = record.get('labels', []) group_id = record.get('group_id') if 'Entity_' + group_id.replace('-', '') in labels: labels.remove('Entity_' + group_id.replace('-', '')) entity_node = EntityNode( uuid=record['uuid'], name=record['name'], name_embedding=record.get('name_embedding'), group_id=group_id, labels=labels, created_at=parse_db_date(record['created_at']), # type: ignore summary=record['summary'], attributes=attributes, ) return entity_node def get_community_node_from_record(record: Any) -> CommunityNode: return CommunityNode( uuid=record['uuid'], name=record['name'], group_id=record['group_id'], name_embedding=record['name_embedding'], created_at=parse_db_date(record['created_at']), # type: ignore summary=record['summary'], ) def get_saga_node_from_record(record: Any) -> SagaNode: last_summarized_at = record.get('last_summarized_at') last_summarized_episode_valid_at = record.get('last_summarized_episode_valid_at') return SagaNode( uuid=record['uuid'], name=record['name'], group_id=record['group_id'], created_at=parse_db_date(record['created_at']), # type: ignore summary=record.get('summary', '') or '', first_episode_uuid=record.get('first_episode_uuid'), last_episode_uuid=record.get('last_episode_uuid'), last_summarized_at=parse_db_date(last_summarized_at) if last_summarized_at else None, # type: ignore last_summarized_episode_valid_at=( parse_db_date(last_summarized_episode_valid_at) # type: ignore if last_summarized_episode_valid_at else None ), ) async def create_entity_node_embeddings(embedder: EmbedderClient, nodes: list[EntityNode]): # filter out falsey values from nodes filtered_nodes = [node for node in nodes if node.name] if not filtered_nodes: return name_embeddings = await embedder.create_batch([node.name for node in filtered_nodes]) for node, name_embedding in zip(filtered_nodes, name_embeddings, strict=True): node.name_embedding = name_embedding