* auto fixes * auto fix pt2 and transitive deps and undefined var checking locals() * manual fixes (ignored or letta-code fixed) * fix circular import * remove all ignores, add FastAPI rules and Ruff rules * add ty and precommit * ruff stuff * ty check fixes * ty check fixes pt 2 * error on invalid
245 lines
13 KiB
Python
245 lines
13 KiB
Python
from typing import Any, Dict, List, Literal, Optional
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from pydantic import ConfigDict, Field, model_validator
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from letta.constants import (
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FUNCTION_RETURN_CHAR_LIMIT,
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LETTA_BUILTIN_TOOL_MODULE_NAME,
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LETTA_CORE_TOOL_MODULE_NAME,
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LETTA_FILES_TOOL_MODULE_NAME,
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LETTA_MULTI_AGENT_TOOL_MODULE_NAME,
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LETTA_VOICE_TOOL_MODULE_NAME,
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MCP_TOOL_TAG_NAME_PREFIX,
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)
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from letta.schemas.enums import PrimitiveType
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# MCP Tool metadata constants for schema health status
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MCP_TOOL_METADATA_SCHEMA_STATUS = f"{MCP_TOOL_TAG_NAME_PREFIX}:SCHEMA_STATUS"
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MCP_TOOL_METADATA_SCHEMA_WARNINGS = f"{MCP_TOOL_TAG_NAME_PREFIX}:SCHEMA_WARNINGS"
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from letta.functions.functions import get_json_schema_from_module
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from letta.functions.mcp_client.types import MCPTool
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from letta.functions.schema_generator import generate_tool_schema_for_mcp
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from letta.log import get_logger
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from letta.schemas.enums import ToolType
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from letta.schemas.letta_base import LettaBase
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from letta.schemas.npm_requirement import NpmRequirement
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from letta.schemas.pip_requirement import PipRequirement
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logger = get_logger(__name__)
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class BaseTool(LettaBase):
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__id_prefix__ = PrimitiveType.TOOL.value
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class Tool(BaseTool):
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"""Representation of a tool, which is a function that can be called by the agent."""
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id: str = BaseTool.generate_id_field()
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tool_type: ToolType = Field(ToolType.CUSTOM, description="The type of the tool.")
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description: Optional[str] = Field(None, description="The description of the tool.")
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source_type: Optional[str] = Field(None, description="The type of the source code.")
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name: Optional[str] = Field(None, description="The name of the function.")
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tags: List[str] = Field([], description="Metadata tags.")
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# code
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source_code: Optional[str] = Field(None, description="The source code of the function.")
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json_schema: Optional[Dict] = Field(None, description="The JSON schema of the function.")
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args_json_schema: Optional[Dict] = Field(None, description="The args JSON schema of the function.")
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# tool configuration
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return_char_limit: int = Field(
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FUNCTION_RETURN_CHAR_LIMIT,
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description="The maximum number of characters in the response.",
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ge=1,
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le=1_000_000,
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)
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pip_requirements: list[PipRequirement] | None = Field(None, description="Optional list of pip packages required by this tool.")
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npm_requirements: list[NpmRequirement] | None = Field(None, description="Optional list of npm packages required by this tool.")
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default_requires_approval: Optional[bool] = Field(
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None, description="Default value for whether or not executing this tool requires approval."
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)
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enable_parallel_execution: Optional[bool] = Field(
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False, description="If set to True, then this tool will potentially be executed concurrently with other tools. Default False."
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)
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# metadata fields
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created_by_id: Optional[str] = Field(None, description="The id of the user that made this Tool.")
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last_updated_by_id: Optional[str] = Field(None, description="The id of the user that made this Tool.")
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metadata_: Optional[Dict[str, Any]] = Field(default_factory=dict, description="A dictionary of additional metadata for the tool.")
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# project scoping
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project_id: Optional[str] = Field(None, description="The project id of the tool.")
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@model_validator(mode="after")
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def refresh_source_code_and_json_schema(self):
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"""
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Refresh name, description, source_code, and json_schema.
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Note: Schema generation for custom tools is now handled at creation/update time in ToolManager.
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This method only handles built-in Letta tools.
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"""
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if self.tool_type == ToolType.CUSTOM:
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# Custom tools should already have their schema set during creation/update
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# No schema generation happens here anymore
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if not self.json_schema:
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logger.warning(
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"Custom tool with id=%s name=%s is missing json_schema. Schema should be set during creation/update.",
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self.id,
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self.name,
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)
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elif self.tool_type in {ToolType.LETTA_CORE, ToolType.LETTA_MEMORY_CORE, ToolType.LETTA_SLEEPTIME_CORE}:
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# If it's letta core tool, we generate the json_schema on the fly here
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self.json_schema = get_json_schema_from_module(module_name=LETTA_CORE_TOOL_MODULE_NAME, function_name=self.name)
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elif self.tool_type in {ToolType.LETTA_MULTI_AGENT_CORE}:
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# If it's letta multi-agent tool, we also generate the json_schema on the fly here
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self.json_schema = get_json_schema_from_module(module_name=LETTA_MULTI_AGENT_TOOL_MODULE_NAME, function_name=self.name)
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elif self.tool_type in {ToolType.LETTA_VOICE_SLEEPTIME_CORE}:
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# If it's letta voice tool, we generate the json_schema on the fly here
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self.json_schema = get_json_schema_from_module(module_name=LETTA_VOICE_TOOL_MODULE_NAME, function_name=self.name)
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elif self.tool_type in {ToolType.LETTA_BUILTIN}:
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# If it's letta voice tool, we generate the json_schema on the fly here
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self.json_schema = get_json_schema_from_module(module_name=LETTA_BUILTIN_TOOL_MODULE_NAME, function_name=self.name)
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elif self.tool_type in {ToolType.LETTA_FILES_CORE}:
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# If it's letta files tool, we generate the json_schema on the fly here
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self.json_schema = get_json_schema_from_module(module_name=LETTA_FILES_TOOL_MODULE_NAME, function_name=self.name)
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return self
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class ToolCreate(LettaBase):
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description: Optional[str] = Field(None, description="The description of the tool.")
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tags: Optional[List[str]] = Field(None, description="Metadata tags.")
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source_code: str = Field(..., description="The source code of the function.")
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source_type: str = Field("python", description="The source type of the function.")
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json_schema: Optional[Dict] = Field(
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None, description="The JSON schema of the function (auto-generated from source_code if not provided)"
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)
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args_json_schema: Optional[Dict] = Field(None, description="The args JSON schema of the function.")
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return_char_limit: int = Field(
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FUNCTION_RETURN_CHAR_LIMIT,
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description="The maximum number of characters in the response.",
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ge=1,
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le=1_000_000,
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)
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pip_requirements: list[PipRequirement] | None = Field(None, description="Optional list of pip packages required by this tool.")
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npm_requirements: list[NpmRequirement] | None = Field(None, description="Optional list of npm packages required by this tool.")
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default_requires_approval: Optional[bool] = Field(None, description="Whether or not to require approval before executing this tool.")
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enable_parallel_execution: Optional[bool] = Field(
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False, description="If set to True, then this tool will potentially be executed concurrently with other tools. Default False."
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)
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@model_validator(mode="after")
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def validate_typescript_requires_schema(self):
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"""
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TypeScript tools require an explicit json_schema since we don't support
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docstring parsing for TypeScript.
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"""
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if self.source_type == "typescript" and not self.json_schema:
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raise ValueError(
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"TypeScript tools require an explicit json_schema parameter. "
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"Unlike Python tools, schema cannot be auto-generated from TypeScript source code."
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)
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return self
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@classmethod
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def from_mcp(cls, mcp_server_name: str, mcp_tool: MCPTool) -> "ToolCreate":
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from letta.functions.helpers import generate_mcp_tool_wrapper
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# Pass the MCP tool to the schema generator
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json_schema = generate_tool_schema_for_mcp(mcp_tool=mcp_tool)
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# Store health status in json_schema metadata if available
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if mcp_tool.health:
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json_schema[MCP_TOOL_METADATA_SCHEMA_STATUS] = mcp_tool.health.status
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json_schema[MCP_TOOL_METADATA_SCHEMA_WARNINGS] = mcp_tool.health.reasons
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# Return a ToolCreate instance
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description = mcp_tool.description
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source_type = "python"
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tags = [f"{MCP_TOOL_TAG_NAME_PREFIX}:{mcp_server_name}"]
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_wrapper_func_name, wrapper_function_str = generate_mcp_tool_wrapper(mcp_tool.name)
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return cls(
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description=description,
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source_type=source_type,
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tags=tags,
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source_code=wrapper_function_str,
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json_schema=json_schema,
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)
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def model_dump(self, to_orm: bool = False, **kwargs):
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"""
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Override LettaBase.model_dump to explicitly handle 'tags' being None,
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ensuring that the output includes 'tags' as None (or any current value).
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"""
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data = super().model_dump(**kwargs)
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# TODO: consider making tags itself optional in the ORM
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# Ensure 'tags' is included even when None, but only if tags is in the dict
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# (i.e., don't add tags if exclude_unset=True was used and tags wasn't set)
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if "tags" in data and data["tags"] is None:
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data["tags"] = []
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return data
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class ToolUpdate(LettaBase):
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description: Optional[str] = Field(None, description="The description of the tool.")
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tags: Optional[List[str]] = Field(None, description="Metadata tags.")
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source_code: Optional[str] = Field(None, description="The source code of the function.")
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source_type: Optional[str] = Field(None, description="The type of the source code.")
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json_schema: Optional[Dict] = Field(
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None, description="The JSON schema of the function (auto-generated from source_code if not provided)"
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)
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args_json_schema: Optional[Dict] = Field(None, description="The args JSON schema of the function.")
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return_char_limit: Optional[int] = Field(
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None,
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description="The maximum number of characters in the response.",
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ge=1,
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le=1_000_000,
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)
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pip_requirements: list[PipRequirement] | None = Field(None, description="Optional list of pip packages required by this tool.")
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npm_requirements: list[NpmRequirement] | None = Field(None, description="Optional list of npm packages required by this tool.")
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metadata_: Optional[Dict[str, Any]] = Field(None, description="A dictionary of additional metadata for the tool.")
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default_requires_approval: Optional[bool] = Field(None, description="Whether or not to require approval before executing this tool.")
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enable_parallel_execution: Optional[bool] = Field(
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False, description="If set to True, then this tool will potentially be executed concurrently with other tools. Default False."
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)
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# name: Optional[str] = Field(None, description="The name of the tool (must match the JSON schema name and source code function name).")
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model_config = ConfigDict(extra="ignore") # Allows extra fields without validation errors
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# TODO: Remove this, and clean usage of ToolUpdate everywhere else
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class ToolRunFromSource(LettaBase):
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source_code: str = Field(..., description="The source code of the function.")
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args: Dict[str, Any] = Field(..., description="The arguments to pass to the tool.")
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env_vars: Dict[str, str] = Field(None, description="The environment variables to pass to the tool.")
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name: Optional[str] = Field(None, description="The name of the tool to run.")
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source_type: Optional[str] = Field(None, description="The type of the source code.")
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args_json_schema: Optional[Dict] = Field(None, description="The args JSON schema of the function.")
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json_schema: Optional[Dict] = Field(
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None, description="The JSON schema of the function (auto-generated from source_code if not provided)"
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)
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pip_requirements: list[PipRequirement] | None = Field(None, description="Optional list of pip packages required by this tool.")
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npm_requirements: list[NpmRequirement] | None = Field(None, description="Optional list of npm packages required by this tool.")
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class ToolSearchRequest(LettaBase):
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"""Request model for searching tools using semantic search."""
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query: Optional[str] = Field(None, description="Text query for semantic search.")
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search_mode: Literal["vector", "fts", "hybrid"] = Field("hybrid", description="Search mode: vector, fts, or hybrid.")
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tool_types: Optional[List[str]] = Field(None, description="Filter by tool types (e.g., 'custom', 'letta_core').")
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tags: Optional[List[str]] = Field(None, description="Filter by tags (match any).")
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limit: int = Field(50, description="Maximum number of results to return.", ge=1, le=100)
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class ToolSearchResult(LettaBase):
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"""Result from a tool search operation."""
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tool: Tool = Field(..., description="The matched tool.")
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embedded_text: Optional[str] = Field(None, description="The embedded text content used for matching.")
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fts_rank: Optional[int] = Field(None, description="Full-text search rank position.")
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vector_rank: Optional[int] = Field(None, description="Vector search rank position.")
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combined_score: float = Field(..., description="Combined relevance score (RRF for hybrid mode).")
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