358 lines
13 KiB
Python
358 lines
13 KiB
Python
"""
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MCP (Model Context Protocol) tests for Response API.
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Tests MCP tool calling in both streaming and non-streaming modes.
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These tests should work across all backends that support MCP (OpenAI, XAI).
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"""
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import json
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from basic_crud import ResponseAPIBaseTest
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class MCPTests(ResponseAPIBaseTest):
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"""Tests for MCP tool calling in both streaming and non-streaming modes."""
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# Class attribute to control validation strictness
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# Subclasses can override this to enable strict validation
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mcp_validation_mode = "relaxed"
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# Shared constants for MCP tests
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BRAVE_MCP_TOOL = {
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"type": "mcp",
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"server_label": "brave",
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"server_description": "A Tool to do web search",
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"server_url": "http://localhost:8001/sse",
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"require_approval": "never",
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}
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MCP_TEST_PROMPT = (
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"show me some news about sglang router, use the tool to just search "
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"one result and return one sentence response"
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)
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GET_WEATHER_FUNCTION = {
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"type": "function",
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"name": "get_weather",
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"description": "Get the current weather in a given location",
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"parameters": {
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"type": "object",
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"properties": {"location": {"type": "string"}},
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"required": ["location"],
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},
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}
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def test_mcp_basic_tool_call(self):
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"""Test basic MCP tool call (non-streaming).
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Validation strictness is controlled by the class attribute `mcp_validation_mode`.
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Set to "strict" in subclasses for additional HTTP-specific validation.
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"""
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resp = self.create_response(
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self.MCP_TEST_PROMPT,
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tools=[self.BRAVE_MCP_TOOL],
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stream=False,
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reasoning={"effort": "low"},
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)
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# Should successfully make the request
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self.assertIsNone(resp.error)
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# Basic response structure
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self.assertIsNotNone(resp.id)
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self.assertEqual(resp.status, "completed")
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self.assertIsNotNone(resp.model)
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self.assertIsNotNone(resp.output)
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# Verify output array is not empty
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self.assertGreater(len(resp.output_text), 0)
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# Check for MCP-specific output types
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output_types = [item.type for item in resp.output]
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# Should have mcp_list_tools - tools are listed before calling
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self.assertIn(
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"mcp_list_tools", output_types, "Response should contain mcp_list_tools"
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)
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# Should have at least one mcp_call
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mcp_calls = [item for item in resp.output if item.type == "mcp_call"]
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self.assertGreater(
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len(mcp_calls), 0, "Response should contain at least one mcp_call"
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)
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# Verify mcp_call structure
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for mcp_call in mcp_calls:
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self.assertIsNotNone(mcp_call.id)
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self.assertEqual(mcp_call.status, "completed")
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self.assertEqual(mcp_call.server_label, "brave")
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self.assertIsNotNone(mcp_call.name)
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self.assertIsNotNone(mcp_call.arguments)
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self.assertIsNotNone(mcp_call.output)
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# Strict mode: additional validation for HTTP backends
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if self.mcp_validation_mode == "strict":
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# Should have final message output
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messages = [item for item in resp.output if item.type == "message"]
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self.assertGreater(
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len(messages), 0, "Response should contain at least one message"
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)
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# Verify message structure
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for msg in messages:
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self.assertIsNotNone(msg.content)
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self.assertIsInstance(msg.content, list)
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# Check content has text
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for content_item in msg.content:
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if content_item.type == "output_text":
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self.assertIsNotNone(content_item.text)
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self.assertIsInstance(content_item.text, str)
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self.assertGreater(len(content_item.text), 0)
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def test_mcp_basic_tool_call_streaming(self):
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"""Test basic MCP tool call (streaming).
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Validation strictness is controlled by the class attribute `mcp_validation_mode`.
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Set to "strict" in subclasses for additional HTTP-specific validation.
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"""
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resp = self.create_response(
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self.MCP_TEST_PROMPT,
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tools=[self.BRAVE_MCP_TOOL],
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stream=True,
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reasoning={"effort": "low"},
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)
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# Should successfully make the request
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events = [event for event in resp]
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self.assertGreater(len(events), 0)
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event_types = [event.type for event in events]
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# Check for lifecycle events
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self.assertIn(
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"response.created", event_types, "Should have response.created event"
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)
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self.assertIn(
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"response.completed", event_types, "Should have response.completed event"
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)
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# Check for MCP list tools events
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self.assertIn(
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"response.output_item.added",
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event_types,
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"Should have output_item.added events",
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)
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self.assertIn(
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"response.mcp_list_tools.in_progress",
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event_types,
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"Should have mcp_list_tools.in_progress event",
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)
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self.assertIn(
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"response.mcp_list_tools.completed",
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event_types,
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"Should have mcp_list_tools.completed event",
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)
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# Check for MCP call events
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self.assertIn(
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"response.mcp_call.in_progress",
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event_types,
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"Should have mcp_call.in_progress event",
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)
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self.assertIn(
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"response.mcp_call_arguments.delta",
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event_types,
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"Should have mcp_call_arguments.delta event",
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)
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self.assertIn(
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"response.mcp_call_arguments.done",
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event_types,
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"Should have mcp_call_arguments.done event",
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)
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self.assertIn(
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"response.mcp_call.completed",
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event_types,
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"Should have mcp_call.completed event",
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)
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# Verify final completed event has full response
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completed_events = [e for e in events if e.type == "response.completed"]
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self.assertEqual(len(completed_events), 1)
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final_response = completed_events[0].response
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self.assertIsNotNone(final_response.id)
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self.assertEqual(final_response.status, "completed")
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self.assertIsNotNone(final_response.output)
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# Verify final output contains expected items
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final_output = final_response.output
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final_output_types = [item.type for item in final_output]
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self.assertIn("mcp_list_tools", final_output_types)
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self.assertIn("mcp_call", final_output_types)
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# Verify mcp_call items in final output
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mcp_calls = [item for item in final_output if item.type == "mcp_call"]
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self.assertGreater(len(mcp_calls), 0)
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for mcp_call in mcp_calls:
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self.assertEqual(mcp_call.status, "completed")
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self.assertEqual(mcp_call.server_label, "brave")
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self.assertIsNotNone(mcp_call.name)
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self.assertIsNotNone(mcp_call.arguments)
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self.assertIsNotNone(mcp_call.output)
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# Strict mode: additional validation for HTTP backends
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if self.mcp_validation_mode == "strict":
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# Check for text output events
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self.assertIn(
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"response.content_part.added",
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event_types,
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"Should have content_part.added event",
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)
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self.assertIn(
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"response.output_text.delta",
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event_types,
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"Should have output_text.delta events",
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)
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self.assertIn(
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"response.output_text.done",
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event_types,
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"Should have output_text.done event",
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)
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self.assertIn(
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"response.content_part.done",
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event_types,
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"Should have content_part.done event",
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)
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self.assertIn("message", final_output_types)
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# Verify text deltas combine to final message
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text_deltas = [
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e.delta for e in events if e.type == "response.output_text.delta"
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]
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self.assertGreater(len(text_deltas), 0, "Should have text deltas")
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# Get final text from output_text.done event
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text_done_events = [
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e for e in events if e.type == "response.output_text.done"
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]
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self.assertGreater(len(text_done_events), 0)
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final_text = text_done_events[0].text
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self.assertGreater(len(final_text), 0, "Final text should not be empty")
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def test_mixed_mcp_and_function_tools(self):
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"""Test mixed MCP and function tools (non-streaming)."""
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resp = self.create_response(
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"What is the weather in seattle now?",
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tools=[self.BRAVE_MCP_TOOL, self.GET_WEATHER_FUNCTION],
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stream=False,
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tool_choice="auto",
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)
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# Should successfully make the request
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self.assertIsNone(resp.error)
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# Basic response structure
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self.assertIsNotNone(resp.id)
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self.assertIsNotNone(resp.status)
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self.assertIsNotNone(resp.output)
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# Verify output array is not empty
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output = resp.output
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self.assertIsInstance(output, list)
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self.assertGreater(len(output), 0)
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# Check for function_call (not mcp_call for get_weather)
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function_calls = [item for item in output if item.type == "function_call"]
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self.assertGreater(
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len(function_calls), 0, "Response should contain at least one function_call"
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)
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# Verify function_call structure for get_weather
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weather_call = function_calls[0]
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self.assertEqual(weather_call.name, "get_weather")
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self.assertIsNotNone(weather_call.call_id)
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self.assertIsNotNone(weather_call.arguments)
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self.assertIsNotNone(weather_call.status)
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# Parse and verify arguments
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args = json.loads(weather_call.arguments)
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self.assertIn("location", args)
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self.assertIn("seattle", args["location"].lower())
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def test_mixed_mcp_and_function_tools_streaming(self):
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"""Test mixed MCP and function tools (streaming)."""
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resp = self.create_response(
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"What is the weather in seattle now?",
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tools=[self.BRAVE_MCP_TOOL, self.GET_WEATHER_FUNCTION],
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stream=True,
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tool_choice="auto", # Encourage tool usage
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)
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# Should successfully make the request
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events = [event for event in resp]
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self.assertGreater(len(events), 0)
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event_types = [e.type for e in events]
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# Check for lifecycle events
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self.assertIn(
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"response.created", event_types, "Should have response.created event"
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)
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# Should have mcp_list_tools events
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self.assertIn(
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"response.mcp_list_tools.completed",
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event_types,
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"Should have mcp_list_tools.completed event",
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)
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# Should have function_call_arguments events (not mcp_call_arguments)
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self.assertIn(
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"response.function_call_arguments.delta",
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event_types,
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"Should have function_call_arguments.delta event for function tools",
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)
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self.assertIn(
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"response.function_call_arguments.done",
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event_types,
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"Should have function_call_arguments.done event for function tools",
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)
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# Should NOT have mcp_call_arguments events for function tools
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# (get_weather should use function_call_arguments, not mcp_call_arguments)
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mcp_call_arg_events = [
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e
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for e in events
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if e.type == "response.mcp_call_arguments.delta"
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and "get_weather" in str(e.delta)
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]
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self.assertEqual(
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len(mcp_call_arg_events),
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0,
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"Should NOT emit mcp_call_arguments.delta for function tools (get_weather)",
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)
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# Verify function_call_arguments.delta event structure
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func_arg_deltas = [
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e for e in events if e.type == "response.function_call_arguments.delta"
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]
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self.assertGreater(
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len(func_arg_deltas), 0, "Should have function_call_arguments.delta events"
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)
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# Check that at least one delta event contains location arguments
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has_location = False
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for event in func_arg_deltas:
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delta = event.delta
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if "location" in delta.lower() or "seattle" in delta.lower():
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has_location = True
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break
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self.assertTrue(
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has_location,
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"function_call_arguments.delta should contain location/seattle",
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)
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