mirror of https://github.com/microsoft/autogen.git
Rename fields in agent id (#334)
Co-authored-by: Eric Zhu <ekzhu@users.noreply.github.com>
This commit is contained in:
parent
9f0bdb154c
commit
437dbefc32
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@ -2,6 +2,7 @@ syntax = "proto3";
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package agents;
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// TODO: update
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message AgentId {
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string name = 1;
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string namespace = 2;
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@ -60,18 +60,18 @@ class GroupChatManager(TypeRoutedAgent):
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for key, value in transitions.items():
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if not value:
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# Make sure no empty transitions are provided.
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raise ValueError(f"Empty transition list provided for {key.name}.")
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raise ValueError(f"Empty transition list provided for {key.type}.")
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if key not in participants:
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# Make sure all keys are in the list of participants.
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raise ValueError(f"Transition key {key.name} not found in participants.")
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raise ValueError(f"Transition key {key.type} not found in participants.")
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for v in value:
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if v not in participants:
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# Make sure all values are in the list of participants.
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raise ValueError(f"Transition value {v.name} not found in participants.")
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raise ValueError(f"Transition value {v.type} not found in participants.")
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if self._client is None:
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# Make sure there is only one transition for each key if no model client is provided.
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if len(value) > 1:
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raise ValueError(f"Multiple transitions provided for {key.name} but no model client is provided.")
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raise ValueError(f"Multiple transitions provided for {key.type} but no model client is provided.")
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self._tranistions = transitions
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self._on_message_received = on_message_received
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@ -100,7 +100,7 @@ class GroupChatManager(TypeRoutedAgent):
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# Get the last speaker.
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last_speaker_name = message.source
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last_speaker_index = next((i for i, p in enumerate(self._participants) if p.name == last_speaker_name), None)
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last_speaker_index = next((i for i, p in enumerate(self._participants) if p.type == last_speaker_name), None)
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# Get the candidates for the next speaker.
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if last_speaker_index is not None:
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@ -112,7 +112,7 @@ class GroupChatManager(TypeRoutedAgent):
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candidates = self._participants
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else:
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candidates = self._participants
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logger.debug(f"Group chat manager next speaker candidates: {[c.name for c in candidates]}")
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logger.debug(f"Group chat manager next speaker candidates: {[c.type for c in candidates]}")
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# Select speaker.
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if len(candidates) == 0:
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@ -138,7 +138,7 @@ class GroupChatManager(TypeRoutedAgent):
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)
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speaker = candidates[speaker_index]
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logger.debug(f"Group chat manager selected speaker: {speaker.name if speaker is not None else None}")
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logger.debug(f"Group chat manager selected speaker: {speaker.type if speaker is not None else None}")
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if speaker is not None:
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# Send the message to the selected speaker to ask it to publish a response.
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@ -136,7 +136,7 @@ Some additional points to consider:
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# Find the speaker.
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try:
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speaker = next(agent for agent in self._specialists if agent.name == data["next_speaker"]["answer"])
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speaker = next(agent for agent in self._specialists if agent.type == data["next_speaker"]["answer"])
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except StopIteration as e:
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raise ValueError(f"Invalid next speaker: {data['next_speaker']['answer']}") from e
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@ -171,11 +171,11 @@ Some additional points to consider:
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# A reusable description of the team.
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team = "\n".join(
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[
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agent.name + ": " + (await self.runtime.agent_metadata(agent))["description"]
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agent.type + ": " + (await self.runtime.agent_metadata(agent))["description"]
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for agent in self._specialists
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]
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)
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names = ", ".join([agent.name for agent in self._specialists])
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names = ", ".join([agent.type for agent in self._specialists])
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# A place to store relevant facts.
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facts = ""
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@ -98,7 +98,7 @@ async def chat_room(runtime: AgentRuntime, app: TextualChatApp) -> None:
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alice = await runtime.register_and_get_proxy(
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"Alice",
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lambda: ChatRoomAgent(
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name=AgentInstantiationContext.current_agent_id().name,
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name=AgentInstantiationContext.current_agent_id().type,
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description="Alice in the chat room.",
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background_story="Alice is a software engineer who loves to code.",
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memory=BufferedChatMemory(buffer_size=10),
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@ -108,7 +108,7 @@ async def chat_room(runtime: AgentRuntime, app: TextualChatApp) -> None:
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bob = await runtime.register_and_get_proxy(
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"Bob",
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lambda: ChatRoomAgent(
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name=AgentInstantiationContext.current_agent_id().name,
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name=AgentInstantiationContext.current_agent_id().type,
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description="Bob in the chat room.",
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background_story="Bob is a data scientist who loves to analyze data.",
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memory=BufferedChatMemory(buffer_size=10),
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@ -118,7 +118,7 @@ async def chat_room(runtime: AgentRuntime, app: TextualChatApp) -> None:
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charlie = await runtime.register_and_get_proxy(
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"Charlie",
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lambda: ChatRoomAgent(
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name=AgentInstantiationContext.current_agent_id().name,
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name=AgentInstantiationContext.current_agent_id().type,
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description="Charlie in the chat room.",
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background_story="Charlie is a designer who loves to create art.",
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memory=BufferedChatMemory(buffer_size=10),
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@ -126,9 +126,9 @@ async def chat_room(runtime: AgentRuntime, app: TextualChatApp) -> None:
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),
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)
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app.welcoming_notice = f"""Welcome to the chat room demo with the following participants:
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1. 👧 {alice.id.name}: {(await alice.metadata)['description']}
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2. 👱🏼♂️ {bob.id.name}: {(await bob.metadata)['description']}
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3. 👨🏾🦳 {charlie.id.name}: {(await charlie.metadata)['description']}
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1. 👧 {alice.id.type}: {(await alice.metadata)['description']}
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2. 👱🏼♂️ {bob.id.type}: {(await bob.metadata)['description']}
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3. 👨🏾🦳 {charlie.id.type}: {(await charlie.metadata)['description']}
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Each participant decides on its own whether to respond to the latest message.
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@ -170,16 +170,16 @@ class SingleThreadedAgentRuntime(AgentRuntime):
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# )
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future = asyncio.get_event_loop().create_future()
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if recipient.name not in self._known_agent_names:
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if recipient.type not in self._known_agent_names:
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future.set_exception(Exception("Recipient not found"))
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if sender is not None and sender.namespace != recipient.namespace:
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if sender is not None and sender.key != recipient.key:
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raise ValueError("Sender and recipient must be in the same namespace to communicate.")
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await self._process_seen_namespace(recipient.namespace)
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await self._process_seen_namespace(recipient.key)
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content = message.__dict__ if hasattr(message, "__dict__") else message
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logger.info(f"Sending message of type {type(message).__name__} to {recipient.name}: {content}")
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logger.info(f"Sending message of type {type(message).__name__} to {recipient.type}: {content}")
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self._message_queue.append(
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SendMessageEnvelope(
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@ -221,7 +221,7 @@ class SingleThreadedAgentRuntime(AgentRuntime):
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if sender is None and namespace is None:
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raise ValueError("Namespace must be provided if sender is not provided.")
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sender_namespace = sender.namespace if sender is not None else None
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sender_namespace = sender.key if sender is not None else None
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explicit_namespace = namespace
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if explicit_namespace is not None and sender_namespace is not None and explicit_namespace != sender_namespace:
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raise ValueError(
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@ -250,7 +250,7 @@ class SingleThreadedAgentRuntime(AgentRuntime):
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async def load_state(self, state: Mapping[str, Any]) -> None:
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for agent_id_str in state:
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agent_id = AgentId.from_str(agent_id_str)
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if agent_id.name in self._known_agent_names:
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if agent_id.type in self._known_agent_names:
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(await self._get_agent(agent_id)).load_state(state[str(agent_id)])
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async def _process_send(self, message_envelope: SendMessageEnvelope) -> None:
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@ -259,7 +259,8 @@ class SingleThreadedAgentRuntime(AgentRuntime):
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# assert recipient in self._agents
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try:
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sender_name = message_envelope.sender.name if message_envelope.sender is not None else "Unknown"
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# TODO use id
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sender_name = message_envelope.sender.type if message_envelope.sender is not None else "Unknown"
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logger.info(
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f"Calling message handler for {recipient} with message type {type(message_envelope.message).__name__} sent by {sender_name}"
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)
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@ -297,15 +298,16 @@ class SingleThreadedAgentRuntime(AgentRuntime):
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for agent_id in self._per_type_subscribers[
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(target_namespace, MESSAGE_TYPE_REGISTRY.type_name(message_envelope.message))
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]:
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if message_envelope.sender is not None and agent_id.name == message_envelope.sender.name:
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if message_envelope.sender is not None and agent_id.type == message_envelope.sender.type:
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continue
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sender_agent = (
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await self._get_agent(message_envelope.sender) if message_envelope.sender is not None else None
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)
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# TODO use id
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sender_name = sender_agent.metadata["name"] if sender_agent is not None else "Unknown"
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logger.info(
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f"Calling message handler for {agent_id.name} with message type {type(message_envelope.message).__name__} published by {sender_name}"
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f"Calling message handler for {agent_id.type} with message type {type(message_envelope.message).__name__} published by {sender_name}"
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)
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# event_logger.info(
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# MessageEvent(
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@ -342,7 +344,7 @@ class SingleThreadedAgentRuntime(AgentRuntime):
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else message_envelope.message
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)
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logger.info(
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f"Resolving response with message type {type(message_envelope.message).__name__} for recipient {message_envelope.recipient} from {message_envelope.sender.name}: {content}"
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f"Resolving response with message type {type(message_envelope.message).__name__} for recipient {message_envelope.recipient} from {message_envelope.sender.type}: {content}"
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)
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# event_logger.info(
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# MessageEvent(
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@ -455,7 +457,7 @@ class SingleThreadedAgentRuntime(AgentRuntime):
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# For all already prepared namespaces we need to prepare this agent
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for namespace in self._known_namespaces:
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await self._get_agent(AgentId(name=name, namespace=namespace))
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await self._get_agent(AgentId(type=name, key=namespace))
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async def _invoke_agent_factory(
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self,
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@ -482,23 +484,23 @@ class SingleThreadedAgentRuntime(AgentRuntime):
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return agent
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async def _get_agent(self, agent_id: AgentId) -> Agent:
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await self._process_seen_namespace(agent_id.namespace)
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await self._process_seen_namespace(agent_id.key)
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if agent_id in self._instantiated_agents:
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return self._instantiated_agents[agent_id]
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if agent_id.name not in self._agent_factories:
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raise LookupError(f"Agent with name {agent_id.name} not found.")
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if agent_id.type not in self._agent_factories:
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raise LookupError(f"Agent with name {agent_id.type} not found.")
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agent_factory = self._agent_factories[agent_id.name]
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agent_factory = self._agent_factories[agent_id.type]
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agent = await self._invoke_agent_factory(agent_factory, agent_id)
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for message_type in agent.metadata["subscriptions"]:
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self._per_type_subscribers[(agent_id.namespace, message_type)].add(agent_id)
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self._per_type_subscribers[(agent_id.key, message_type)].add(agent_id)
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self._instantiated_agents[agent_id] = agent
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return agent
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async def get(self, name: str, *, namespace: str = "default") -> AgentId:
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return (await self._get_agent(AgentId(name=name, namespace=namespace))).id
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return (await self._get_agent(AgentId(type=name, key=namespace))).id
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async def get_proxy(self, name: str, *, namespace: str = "default") -> AgentProxy:
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id = await self.get(name, namespace=namespace)
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@ -506,14 +508,14 @@ class SingleThreadedAgentRuntime(AgentRuntime):
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# TODO: uncomment out the following type ignore when this is fixed in mypy: https://github.com/python/mypy/issues/3737
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async def try_get_underlying_agent_instance(self, id: AgentId, type: Type[T] = Agent) -> T: # type: ignore[assignment]
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if id.name not in self._agent_factories:
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raise LookupError(f"Agent with name {id.name} not found.")
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if id.type not in self._agent_factories:
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raise LookupError(f"Agent with name {id.type} not found.")
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# TODO: check if remote
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agent_instance = await self._get_agent(id)
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if not isinstance(agent_instance, type):
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raise TypeError(f"Agent with name {id.name} is not of type {type.__name__}")
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raise TypeError(f"Agent with name {id.type} is not of type {type.__name__}")
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return agent_instance
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@ -525,4 +527,4 @@ class SingleThreadedAgentRuntime(AgentRuntime):
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self._known_namespaces.add(namespace)
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for name in self._known_agent_names:
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await self._get_agent(AgentId(name=name, namespace=namespace))
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await self._get_agent(AgentId(type=name, key=namespace))
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@ -2,7 +2,7 @@ import json
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from enum import Enum
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from typing import Any, cast
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from ...core import Agent
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from agnext.core import AgentId
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class LLMCallEvent:
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@ -57,16 +57,16 @@ class MessageEvent:
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self,
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*,
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payload: Any,
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sender: Agent | None,
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receiver: Agent | None,
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sender: AgentId | None,
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receiver: AgentId | None,
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kind: MessageKind,
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delivery_stage: DeliveryStage,
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**kwargs: Any,
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) -> None:
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self.kwargs = kwargs
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self.kwargs["payload"] = payload
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self.kwargs["sender"] = None if sender is None else sender.metadata["name"]
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self.kwargs["receiver"] = None if receiver is None else receiver.metadata["name"]
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self.kwargs["sender"] = None if sender is None else str(sender)
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self.kwargs["receiver"] = None if receiver is None else str(receiver)
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self.kwargs["kind"] = kind
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self.kwargs["delivery_stage"] = delivery_stage
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self.kwargs["type"] = "Message"
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@ -68,16 +68,12 @@ class ClosureAgent(Agent):
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def metadata(self) -> AgentMetadata:
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assert self._id is not None
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return AgentMetadata(
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namespace=self._id.namespace,
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name=self._id.name,
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namespace=self._id.key,
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name=self._id.type,
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description=self._description,
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subscriptions=self._subscriptions,
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)
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@property
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def name(self) -> str:
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return self.id.name
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@property
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def id(self) -> AgentId:
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return self._id
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@ -43,4 +43,4 @@ class TypeSubscription(Subscription):
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raise CantHandleException("TopicId does not match the subscription")
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# TODO: Update agentid to reflect agent type and key
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return AgentId(name=self._agent_type, namespace=topic_id.source)
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return AgentId(type=self._agent_type, key=topic_id.source)
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@ -2,33 +2,39 @@ from typing_extensions import Self
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class AgentId:
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def __init__(self, name: str, namespace: str) -> None:
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self._name = name
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self._namespace = namespace
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def __init__(self, type: str, key: str) -> None:
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if type.isidentifier() is False:
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raise ValueError(f"Invalid type: {type}")
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def __str__(self) -> str:
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return f"{self._namespace}/{self._name}"
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self._type = type
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self._key = key
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def __hash__(self) -> int:
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return hash((self._namespace, self._name))
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return hash((self._type, self._key))
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def __str__(self) -> str:
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return f"{self._type}:{self._key}"
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def __repr__(self) -> str:
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return f"AgentId({self._name}, {self._namespace})"
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return f'AgentId(type="{self._type}", key="{self._key}")'
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def __eq__(self, value: object) -> bool:
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if not isinstance(value, AgentId):
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return False
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return self._name == value.name and self._namespace == value.namespace
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return self._type == value.type and self._key == value.key
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@classmethod
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def from_str(cls, agent_id: str) -> Self:
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namespace, name = agent_id.split("/")
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return cls(name, namespace)
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items = agent_id.split(":", maxsplit=1)
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if len(items) != 2:
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raise ValueError(f"Invalid agent id: {agent_id}")
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type, key = items[0], items[1]
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return cls(type, key)
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@property
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def namespace(self) -> str:
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return self._namespace
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def type(self) -> str:
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return self._type
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@property
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def name(self) -> str:
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return self._name
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def key(self) -> str:
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return self._key
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|
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@ -15,8 +15,8 @@ class BaseAgent(ABC, Agent):
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def metadata(self) -> AgentMetadata:
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assert self._id is not None
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return AgentMetadata(
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namespace=self._id.namespace,
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name=self._id.name,
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namespace=self._id.key,
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name=self._id.type,
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description=self._description,
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subscriptions=self._subscriptions,
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)
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@ -38,8 +38,8 @@ class BaseAgent(ABC, Agent):
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self._subscriptions = subscriptions
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@property
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def name(self) -> str:
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return self.id.name
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def type(self) -> str:
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return self.id.type
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@property
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def id(self) -> AgentId:
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|
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@ -292,8 +292,8 @@ class WorkerAgentRuntime(AgentRuntime):
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runtime_message = Message(
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request=RpcRequest(
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request_id=request_id_str,
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target=AgentIdProto(name=recipient.name, namespace=recipient.namespace),
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source=AgentIdProto(name=sender.name, namespace=sender.namespace),
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target=AgentIdProto(name=recipient.type, namespace=recipient.key),
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source=AgentIdProto(name=sender.type, namespace=sender.key),
|
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data=message,
|
||||
)
|
||||
)
|
||||
|
@ -310,7 +310,7 @@ class WorkerAgentRuntime(AgentRuntime):
|
|||
cancellation_token: CancellationToken | None = None,
|
||||
) -> None:
|
||||
assert self._runtime_connection is not None
|
||||
sender_namespace = sender.namespace if sender is not None else None
|
||||
sender_namespace = sender.key if sender is not None else None
|
||||
explicit_namespace = namespace
|
||||
if explicit_namespace is not None and sender_namespace is not None and explicit_namespace != sender_namespace:
|
||||
raise ValueError(
|
||||
|
@ -356,7 +356,7 @@ class WorkerAgentRuntime(AgentRuntime):
|
|||
|
||||
# For all already prepared namespaces we need to prepare this agent
|
||||
for namespace in self._known_namespaces:
|
||||
await self._get_agent(AgentId(name=name, namespace=namespace))
|
||||
await self._get_agent(AgentId(type=name, key=namespace))
|
||||
|
||||
await self.send_register_agent_type(name)
|
||||
|
||||
|
@ -385,25 +385,25 @@ class WorkerAgentRuntime(AgentRuntime):
|
|||
return agent
|
||||
|
||||
async def _get_agent(self, agent_id: AgentId) -> Agent:
|
||||
await self._process_seen_namespace(agent_id.namespace)
|
||||
await self._process_seen_namespace(agent_id.key)
|
||||
if agent_id in self._instantiated_agents:
|
||||
return self._instantiated_agents[agent_id]
|
||||
|
||||
if agent_id.name not in self._agent_factories:
|
||||
raise ValueError(f"Agent with name {agent_id.name} not found.")
|
||||
if agent_id.type not in self._agent_factories:
|
||||
raise ValueError(f"Agent with name {agent_id.type} not found.")
|
||||
|
||||
agent_factory = self._agent_factories[agent_id.name]
|
||||
agent_factory = self._agent_factories[agent_id.type]
|
||||
|
||||
agent = await self._invoke_agent_factory(agent_factory, agent_id)
|
||||
|
||||
for message_type in agent.metadata["subscriptions"]:
|
||||
self._per_type_subscribers[(agent_id.namespace, message_type)].add(agent_id)
|
||||
self._per_type_subscribers[(agent_id.key, message_type)].add(agent_id)
|
||||
|
||||
self._instantiated_agents[agent_id] = agent
|
||||
return agent
|
||||
|
||||
async def get(self, name: str, *, namespace: str = "default") -> AgentId:
|
||||
return (await self._get_agent(AgentId(name=name, namespace=namespace))).id
|
||||
return (await self._get_agent(AgentId(type=name, key=namespace))).id
|
||||
|
||||
async def get_proxy(self, name: str, *, namespace: str = "default") -> AgentProxy:
|
||||
id = await self.get(name, namespace=namespace)
|
||||
|
@ -421,4 +421,4 @@ class WorkerAgentRuntime(AgentRuntime):
|
|||
|
||||
self._known_namespaces.add(namespace)
|
||||
for name in self._known_agent_names:
|
||||
await self._get_agent(AgentId(name=name, namespace=namespace))
|
||||
await self._get_agent(AgentId(type=name, key=namespace))
|
||||
|
|
|
@ -25,8 +25,8 @@ async def test_register_receives_publish() -> None:
|
|||
queue = asyncio.Queue[tuple[str, str]]()
|
||||
|
||||
async def log_message(_runtime: AgentRuntime, id: AgentId, message: Message, cancellation_token: CancellationToken) -> None:
|
||||
namespace = id.namespace
|
||||
await queue.put((namespace, message.content))
|
||||
key = id.key
|
||||
await queue.put((key, message.content))
|
||||
|
||||
await runtime.register("name", lambda: ClosureAgent("My agent", log_message))
|
||||
run_context = runtime.start()
|
||||
|
|
|
@ -16,7 +16,7 @@ def test_type_subscription_match() -> None:
|
|||
def test_type_subscription_map() -> None:
|
||||
sub = TypeSubscription(topic_type="t1", agent_type="a1")
|
||||
|
||||
assert sub.map_to_agent(TopicId(type="t1", source="s1")) == AgentId(name="a1", namespace="s1")
|
||||
assert sub.map_to_agent(TopicId(type="t1", source="s1")) == AgentId(type="a1", key="s1")
|
||||
|
||||
with pytest.raises(CantHandleException):
|
||||
_agent_id = sub.map_to_agent(TopicId(type="t0", source="s1"))
|
||||
|
|
Loading…
Reference in New Issue