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import asyncio
import sys
from typing import cast

import pytest
from mcp import McpError
from pydantic import AnyUrl

from fastmcp.client import Client
from fastmcp.client.transports import (
    FastMCPTransport,
    MCPConfigTransport,
    SSETransport,
    StdioTransport,
    StreamableHttpTransport,
    infer_transport,
)
from fastmcp.exceptions import ResourceError, ToolError
from fastmcp.server.server import FastMCP


@pytest.fixture
def fastmcp_server():
    """Fixture that creates a FastMCP server with tools, resources, and prompts."""
    server = FastMCP("TestServer")

    # Add a tool
    @server.tool()
    def greet(name: str) -> str:
        """Greet someone by name."""
        return f"Hello, {name}!"

    # Add a second tool
    @server.tool()
    def add(a: int, b: int) -> int:
        """Add two numbers together."""
        return a + b

    @server.tool()
    async def sleep(seconds: float) -> str:
        """Sleep for a given number of seconds."""
        await asyncio.sleep(seconds)
        return f"Slept for {seconds} seconds"

    # Add a resource
    @server.resource(uri="data://users")
    async def get_users():
        return ["Alice", "Bob", "Charlie"]

    # Add a resource template
    @server.resource(uri="data://user/{user_id}")
    async def get_user(user_id: str):
        return {"id": user_id, "name": f"User {user_id}", "active": True}

    # Add a prompt
    @server.prompt()
    def welcome(name: str) -> str:
        """Example greeting prompt."""
        return f"Welcome to FastMCP, {name}!"

    return server


@pytest.fixture
def tagged_resources_server():
    """Fixture that creates a FastMCP server with tagged resources and templates."""
    server = FastMCP("TaggedResourcesServer")

    # Add a resource with tags
    @server.resource(
        uri="data://tagged", tags={"test", "metadata"}, description="A tagged resource"
    )
    async def get_tagged_data():
        return {"type": "tagged_data"}

    # Add a resource template with tags
    @server.resource(
        uri="template://{id}",
        tags={"template", "parameterized"},
        description="A tagged template",
    )
    async def get_template_data(id: str):
        return {"id": id, "type": "template_data"}

    return server


async def test_list_tools(fastmcp_server):
    """Test listing tools with InMemoryClient."""
    client = Client(transport=FastMCPTransport(fastmcp_server))

    async with client:
        result = await client.list_tools()

        # Check that our tools are available
        assert len(result) == 3
        assert set(tool.name for tool in result) == {"greet", "add", "sleep"}


async def test_list_tools_mcp(fastmcp_server):
    """Test the list_tools_mcp method that returns raw MCP protocol objects."""
    client = Client(transport=FastMCPTransport(fastmcp_server))

    async with client:
        result = await client.list_tools_mcp()

        # Check that we got the raw MCP ListToolsResult object
        assert hasattr(result, "tools")
        assert len(result.tools) == 3
        assert set(tool.name for tool in result.tools) == {"greet", "add", "sleep"}


async def test_call_tool(fastmcp_server):
    """Test calling a tool with InMemoryClient."""
    client = Client(transport=FastMCPTransport(fastmcp_server))

    async with client:
        result = await client.call_tool("greet", {"name": "World"})

        # The result content should contain our greeting
        content_str = str(result[0])
        assert "Hello, World!" in content_str


async def test_call_tool_mcp(fastmcp_server):
    """Test the call_tool_mcp method that returns raw MCP protocol objects."""
    client = Client(transport=FastMCPTransport(fastmcp_server))

    async with client:
        result = await client.call_tool_mcp("greet", {"name": "World"})

        # Check that we got the raw MCP CallToolResult object
        assert hasattr(result, "content")
        assert hasattr(result, "isError")
        assert result.isError is False
        # The content is a list, so we'll check the first element
        # by properly accessing it
        content = result.content
        assert len(content) > 0
        first_content = content[0]
        content_str = str(first_content)
        assert "Hello, World!" in content_str


async def test_list_resources(fastmcp_server):
    """Test listing resources with InMemoryClient."""
    client = Client(transport=FastMCPTransport(fastmcp_server))

    async with client:
        result = await client.list_resources()

        # Check that our resource is available
        assert len(result) == 1
        assert str(result[0].uri) == "data://users"


async def test_list_resources_mcp(fastmcp_server):
    """Test the list_resources_mcp method that returns raw MCP protocol objects."""
    client = Client(transport=FastMCPTransport(fastmcp_server))

    async with client:
        result = await client.list_resources_mcp()

        # Check that we got the raw MCP ListResourcesResult object
        assert hasattr(result, "resources")
        assert len(result.resources) == 1
        assert str(result.resources[0].uri) == "data://users"


async def test_list_prompts(fastmcp_server):
    """Test listing prompts with InMemoryClient."""
    client = Client(transport=FastMCPTransport(fastmcp_server))

    async with client:
        result = await client.list_prompts()

        # Check that our prompt is available
        assert len(result) == 1
        assert result[0].name == "welcome"


async def test_list_prompts_mcp(fastmcp_server):
    """Test the list_prompts_mcp method that returns raw MCP protocol objects."""
    client = Client(transport=FastMCPTransport(fastmcp_server))

    async with client:
        result = await client.list_prompts_mcp()

        # Check that we got the raw MCP ListPromptsResult object
        assert hasattr(result, "prompts")
        assert len(result.prompts) == 1
        assert result.prompts[0].name == "welcome"


async def test_get_prompt(fastmcp_server):
    """Test getting a prompt with InMemoryClient."""
    client = Client(transport=FastMCPTransport(fastmcp_server))

    async with client:
        result = await client.get_prompt("welcome", {"name": "Developer"})

        # The result should contain our welcome message
        assert result.messages[0].content.text == "Welcome to FastMCP, Developer!"  # type: ignore[attr-defined]
        assert result.description == "Example greeting prompt."


async def test_get_prompt_mcp(fastmcp_server):
    """Test the get_prompt_mcp method that returns raw MCP protocol objects."""
    client = Client(transport=FastMCPTransport(fastmcp_server))

    async with client:
        result = await client.get_prompt_mcp("welcome", {"name": "Developer"})

        # The result should contain our welcome message
        assert result.messages[0].content.text == "Welcome to FastMCP, Developer!"  # type: ignore[attr-defined]
        assert result.description == "Example greeting prompt."


async def test_read_resource_invalid_uri(fastmcp_server):
    """Test reading a resource with an invalid URI."""
    client = Client(transport=FastMCPTransport(fastmcp_server))
    with pytest.raises(ValueError, match="Provided resource URI is invalid"):
        await client.read_resource("invalid_uri")


async def test_read_resource(fastmcp_server):
    """Test reading a resource with InMemoryClient."""
    client = Client(transport=FastMCPTransport(fastmcp_server))

    async with client:
        # Use the URI from the resource we know exists in our server
        uri = cast(
            AnyUrl, "data://users"
        )  # Use cast for type hint only, the URI is valid
        result = await client.read_resource(uri)

        # The contents should include our user list
        contents_str = str(result[0])
        assert "Alice" in contents_str
        assert "Bob" in contents_str
        assert "Charlie" in contents_str


async def test_read_resource_mcp(fastmcp_server):
    """Test the read_resource_mcp method that returns raw MCP protocol objects."""
    client = Client(transport=FastMCPTransport(fastmcp_server))

    async with client:
        # Use the URI from the resource we know exists in our server
        uri = cast(
            AnyUrl, "data://users"
        )  # Use cast for type hint only, the URI is valid
        result = await client.read_resource_mcp(uri)

        # Check that we got the raw MCP ReadResourceResult object
        assert hasattr(result, "contents")
        assert len(result.contents) > 0
        contents_str = str(result.contents[0])
        assert "Alice" in contents_str
        assert "Bob" in contents_str
        assert "Charlie" in contents_str


async def test_client_connection(fastmcp_server):
    """Test that connect is idempotent."""
    client = Client(transport=FastMCPTransport(fastmcp_server))

    # Connect idempotently
    async with client:
        assert client.is_connected()
        # Make a request to ensure connection is working
        await client.ping()
    assert not client.is_connected()


async def test_initialize_result_connected(fastmcp_server):
    """Test that initialize_result returns the correct result when connected."""
    client = Client(transport=FastMCPTransport(fastmcp_server))

    # Initialize result should not be accessible before connection
    with pytest.raises(RuntimeError, match="Client is not connected"):
        _ = client.initialize_result

    async with client:
        # Once connected, initialize_result should be available
        result = client.initialize_result

        # Verify the initialize result has expected properties
        assert hasattr(result, "serverInfo")
        assert result.serverInfo.name == "TestServer"
        assert result.serverInfo.version is not None


async def test_initialize_result_disconnected(fastmcp_server):
    """Test that initialize_result raises an error when not connected."""
    client = Client(transport=FastMCPTransport(fastmcp_server))

    # Initialize result should not be accessible before connection
    with pytest.raises(RuntimeError, match="Client is not connected"):
        _ = client.initialize_result

    # Connect and then disconnect
    async with client:
        assert client.is_connected()

    # After disconnection, initialize_result should raise an error
    assert not client.is_connected()
    with pytest.raises(RuntimeError, match="Client is not connected"):
        _ = client.initialize_result


async def test_client_nested_context_manager(fastmcp_server):
    """Test that the client connects and disconnects once in nested context manager."""

    client = Client(fastmcp_server)

    # Before connection
    assert not client.is_connected()
    assert client._session is None

    # During connection
    async with client:
        assert client.is_connected()
        assert client._session is not None
        session = client._session

        # Re-use the same session
        async with client:
            assert client.is_connected()
            assert client._session is session

        # Re-use the same session
        async with client:
            assert client.is_connected()
            assert client._session is session

    # After connection
    assert not client.is_connected()
    assert client._session is None


async def test_concurrent_client_context_managers():
    """
    Test that concurrent client usage doesn't cause cross-task cancel scope issues.
    https://github.com/jlowin/fastmcp/pull/643
    """
    # Create a simple server
    server = FastMCP("Test Server")

    @server.tool()
    def echo(text: str) -> str:
        """Echo tool"""
        return text

    # Create client
    client = Client(server)

    # Track results
    results = {}
    errors = []

    async def use_client(task_id: str, delay: float = 0):
        """Use the client with a small delay to ensure overlap"""
        try:
            async with client:
                # Add a small delay to ensure contexts overlap
                await asyncio.sleep(delay)
                # Make an actual call to exercise the session
                tools = await client.list_tools()
                results[task_id] = len(tools)
        except Exception as e:
            errors.append((task_id, str(e)))

    # Run multiple tasks concurrently
    # The key is having them enter and exit the context at different times
    await asyncio.gather(
        use_client("task1", 0.0),
        use_client("task2", 0.01),  # Slight delay to ensure overlap
        use_client("task3", 0.02),
        return_exceptions=False,
    )

    assert len(errors) == 0, f"Errors occurred: {errors}"
    assert len(results) == 3
    assert all(count == 1 for count in results.values())  # All should see 1 tool


async def test_resource_template(fastmcp_server):
    """Test using a resource template with InMemoryClient."""
    client = Client(transport=FastMCPTransport(fastmcp_server))

    async with client:
        # First, list templates
        result = await client.list_resource_templates()

        # Check that our template is available
        assert len(result) == 1
        assert "data://user/{user_id}" in result[0].uriTemplate

        # Now use the template with a specific user_id
        uri = cast(AnyUrl, "data://user/123")
        result = await client.read_resource(uri)

        # Check the content matches what we expect for the provided user_id
        content_str = str(result[0])
        assert '"id": "123"' in content_str
        assert '"name": "User 123"' in content_str
        assert '"active": true' in content_str


async def test_list_resource_templates_mcp(fastmcp_server):
    """Test the list_resource_templates_mcp method that returns raw MCP protocol objects."""
    client = Client(transport=FastMCPTransport(fastmcp_server))

    async with client:
        result = await client.list_resource_templates_mcp()

        # Check that we got the raw MCP ListResourceTemplatesResult object
        assert hasattr(result, "resourceTemplates")
        assert len(result.resourceTemplates) == 1
        assert "data://user/{user_id}" in result.resourceTemplates[0].uriTemplate


async def test_mcp_resource_generation(fastmcp_server):
    """Test that resources are properly generated in MCP format."""
    client = Client(transport=FastMCPTransport(fastmcp_server))

    async with client:
        resources = await client.list_resources()
        assert len(resources) == 1
        resource = resources[0]

        # Verify resource has correct MCP format
        assert hasattr(resource, "uri")
        assert hasattr(resource, "name")
        assert hasattr(resource, "description")
        assert str(resource.uri) == "data://users"


async def test_mcp_template_generation(fastmcp_server):
    """Test that templates are properly generated in MCP format."""
    client = Client(transport=FastMCPTransport(fastmcp_server))

    async with client:
        templates = await client.list_resource_templates()
        assert len(templates) == 1
        template = templates[0]

        # Verify template has correct MCP format
        assert hasattr(template, "uriTemplate")
        assert hasattr(template, "name")
        assert hasattr(template, "description")
        assert "data://user/{user_id}" in template.uriTemplate


async def test_template_access_via_client(fastmcp_server):
    """Test that templates can be accessed through a client."""
    client = Client(transport=FastMCPTransport(fastmcp_server))

    async with client:
        # Verify template works correctly when accessed
        uri = cast(AnyUrl, "data://user/456")
        result = await client.read_resource(uri)
        content_str = str(result[0])
        assert '"id": "456"' in content_str


async def test_tagged_resource_metadata(tagged_resources_server):
    """Test that resource metadata is preserved in MCP format."""
    client = Client(transport=FastMCPTransport(tagged_resources_server))

    async with client:
        resources = await client.list_resources()
        assert len(resources) == 1
        resource = resources[0]

        # Verify resource metadata is preserved
        assert str(resource.uri) == "data://tagged"
        assert resource.description == "A tagged resource"


async def test_tagged_template_metadata(tagged_resources_server):
    """Test that template metadata is preserved in MCP format."""
    client = Client(transport=FastMCPTransport(tagged_resources_server))

    async with client:
        templates = await client.list_resource_templates()
        assert len(templates) == 1
        template = templates[0]

        # Verify template metadata is preserved
        assert "template://{id}" in template.uriTemplate
        assert template.description == "A tagged template"


async def test_tagged_template_functionality(tagged_resources_server):
    """Test that tagged templates function correctly when accessed."""
    client = Client(transport=FastMCPTransport(tagged_resources_server))

    async with client:
        # Verify template functionality
        uri = cast(AnyUrl, "template://123")
        result = await client.read_resource(uri)
        content_str = str(result[0])
        assert '"id": "123"' in content_str
        assert '"type": "template_data"' in content_str


class TestErrorHandling:
    async def test_general_tool_exceptions_are_not_masked_by_default(self):
        mcp = FastMCP("TestServer")

        @mcp.tool()
        def error_tool():
            raise ValueError("This is a test error (abc)")

        client = Client(transport=FastMCPTransport(mcp))

        async with client:
            result = await client.call_tool_mcp("error_tool", {})
            assert result.isError
            assert "test error" in result.content[0].text  # type: ignore[attr-defined]
            assert "abc" in result.content[0].text  # type: ignore[attr-defined]

    async def test_general_tool_exceptions_are_masked_when_enabled(self):
        mcp = FastMCP("TestServer", mask_error_details=True)

        @mcp.tool()
        def error_tool():
            raise ValueError("This is a test error (abc)")

        client = Client(transport=FastMCPTransport(mcp))

        async with client:
            result = await client.call_tool_mcp("error_tool", {})
            assert result.isError
            assert "test error" not in result.content[0].text  # type: ignore[attr-defined]
            assert "abc" not in result.content[0].text  # type: ignore[attr-defined]

    async def test_specific_tool_errors_are_sent_to_client(self):
        mcp = FastMCP("TestServer")

        @mcp.tool()
        def custom_error_tool():
            raise ToolError("This is a test error (abc)")

        client = Client(transport=FastMCPTransport(mcp))

        async with client:
            result = await client.call_tool_mcp("custom_error_tool", {})
            assert result.isError
            assert "test error" in result.content[0].text  # type: ignore[attr-defined]
            assert "abc" in result.content[0].text  # type: ignore[attr-defined]

    async def test_general_resource_exceptions_are_not_masked_by_default(self):
        mcp = FastMCP("TestServer")

        @mcp.resource(uri="exception://resource")
        async def exception_resource():
            raise ValueError("This is an internal error (sensitive)")

        client = Client(transport=FastMCPTransport(mcp))

        async with client:
            with pytest.raises(Exception) as excinfo:
                await client.read_resource(AnyUrl("exception://resource"))
            assert "Error reading resource" in str(excinfo.value)
            assert "sensitive" in str(excinfo.value)
            assert "internal error" in str(excinfo.value)

    async def test_general_resource_exceptions_are_masked_when_enabled(self):
        mcp = FastMCP("TestServer", mask_error_details=True)

        @mcp.resource(uri="exception://resource")
        async def exception_resource():
            raise ValueError("This is an internal error (sensitive)")

        client = Client(transport=FastMCPTransport(mcp))

        async with client:
            with pytest.raises(Exception) as excinfo:
                await client.read_resource(AnyUrl("exception://resource"))
            assert "Error reading resource" in str(excinfo.value)
            assert "sensitive" not in str(excinfo.value)
            assert "internal error" not in str(excinfo.value)

    async def test_resource_errors_are_sent_to_client(self):
        mcp = FastMCP("TestServer")

        @mcp.resource(uri="error://resource")
        async def error_resource():
            raise ResourceError("This is a resource error (xyz)")

        client = Client(transport=FastMCPTransport(mcp))

        async with client:
            with pytest.raises(Exception) as excinfo:
                await client.read_resource(AnyUrl("error://resource"))
            assert "This is a resource error (xyz)" in str(excinfo.value)

    async def test_general_template_exceptions_are_not_masked_by_default(self):
        mcp = FastMCP("TestServer")

        @mcp.resource(uri="exception://resource/{id}")
        async def exception_resource(id: str):
            raise ValueError("This is an internal error (sensitive)")

        client = Client(transport=FastMCPTransport(mcp))

        async with client:
            with pytest.raises(Exception) as excinfo:
                await client.read_resource(AnyUrl("exception://resource/123"))
            assert "Error reading resource" in str(excinfo.value)
            assert "sensitive" in str(excinfo.value)
            assert "internal error" in str(excinfo.value)

    async def test_general_template_exceptions_are_masked_when_enabled(self):
        mcp = FastMCP("TestServer", mask_error_details=True)

        @mcp.resource(uri="exception://resource/{id}")
        async def exception_resource(id: str):
            raise ValueError("This is an internal error (sensitive)")

        client = Client(transport=FastMCPTransport(mcp))

        async with client:
            with pytest.raises(Exception) as excinfo:
                await client.read_resource(AnyUrl("exception://resource/123"))
            assert "Error reading resource" in str(excinfo.value)
            assert "sensitive" not in str(excinfo.value)
            assert "internal error" not in str(excinfo.value)

    async def test_template_errors_are_sent_to_client(self):
        mcp = FastMCP("TestServer")

        @mcp.resource(uri="error://resource/{id}")
        async def error_resource(id: str):
            raise ResourceError("This is a resource error (xyz)")

        client = Client(transport=FastMCPTransport(mcp))

        async with client:
            with pytest.raises(Exception) as excinfo:
                await client.read_resource(AnyUrl("error://resource/123"))
            assert "This is a resource error (xyz)" in str(excinfo.value)


@pytest.mark.skipif(
    sys.platform == "win32",
    reason="Timeout tests are flaky on Windows. Timeouts *are* supported but the tests are unreliable.",
)
class TestTimeout:
    async def test_timeout(self, fastmcp_server: FastMCP):
        async with Client(
            transport=FastMCPTransport(fastmcp_server), timeout=0.05
        ) as client:
            with pytest.raises(
                McpError,
                match="Timed out while waiting for response to ClientRequest. Waited 0.05 seconds",
            ):
                await client.call_tool("sleep", {"seconds": 0.1})

    async def test_timeout_tool_call(self, fastmcp_server: FastMCP):
        async with Client(transport=FastMCPTransport(fastmcp_server)) as client:
            with pytest.raises(McpError):
                await client.call_tool("sleep", {"seconds": 0.1}, timeout=0.01)

    async def test_timeout_tool_call_overrides_client_timeout(
        self, fastmcp_server: FastMCP
    ):
        async with Client(
            transport=FastMCPTransport(fastmcp_server),
            timeout=2,
        ) as client:
            with pytest.raises(McpError):
                await client.call_tool("sleep", {"seconds": 0.1}, timeout=0.01)

    @pytest.mark.skipif(
        sys.platform == "win32",
        reason="This test is flaky on Windows. Sometimes the client timeout is respected and sometimes it is not.",
    )
    async def test_timeout_tool_call_overrides_client_timeout_even_if_lower(
        self, fastmcp_server: FastMCP
    ):
        async with Client(
            transport=FastMCPTransport(fastmcp_server),
            timeout=0.01,
        ) as client:
            await client.call_tool("sleep", {"seconds": 0.1}, timeout=2)


class TestInferTransport:
    """Tests for the infer_transport function."""

    @pytest.mark.parametrize(
        "url",
        [
            "http://example.com/api/sse/stream",
            "https://localhost:8080/mcp/sse/endpoint",
            "http://example.com/api/sse",
            "https://localhost:8080/mcp/sse",
            "http://example.com/api/sse?param=value",
            "https://localhost:8080/mcp/sse/?param=value",
            "https://localhost:8000/mcp/sse?x=1&y=2",
        ],
        ids=[
            "path_with_sse_directory",
            "path_with_sse_subdirectory",
            "path_ending_with_sse",
            "path_ending_with_sse_https",
            "path_with_sse_and_query_params",
            "path_with_sse_slash_and_query_params",
            "path_with_sse_and_ampersand_param",
        ],
    )
    def test_url_returns_sse_transport(self, url):
        """Test that URLs with /sse/ pattern return SSETransport."""
        assert isinstance(infer_transport(url), SSETransport)

    @pytest.mark.parametrize(
        "url",
        [
            "http://example.com/api",
            "https://localhost:8080/mcp",
            "http://example.com/asset/image.jpg",
            "https://localhost:8080/sservice/endpoint",
            "https://example.com/assets/file",
        ],
        ids=[
            "regular_http_url",
            "regular_https_url",
            "url_with_unrelated_path",
            "url_with_sservice_in_path",
            "url_with_assets_in_path",
        ],
    )
    def test_url_returns_streamable_http_transport(self, url):
        """Test that URLs without /sse/ pattern return StreamableHttpTransport."""
        assert isinstance(infer_transport(url), StreamableHttpTransport)

    def test_infer_remote_transport_from_config(self):
        config = {
            "mcpServers": {
                "test_server": {
                    "url": "http://localhost:8000/sse",
                    "headers": {"Authorization": "Bearer 123"},
                },
            }
        }
        transport = infer_transport(config)
        assert isinstance(transport, MCPConfigTransport)
        assert isinstance(transport.transport, SSETransport)
        assert transport.transport.url == "http://localhost:8000/sse"
        assert transport.transport.headers == {"Authorization": "Bearer 123"}

    def test_infer_local_transport_from_config(self):
        config = {
            "mcpServers": {
                "test_server": {
                    "command": "echo",
                    "args": ["hello"],
                },
            }
        }
        transport = infer_transport(config)
        assert isinstance(transport, MCPConfigTransport)
        assert isinstance(transport.transport, StdioTransport)
        assert transport.transport.command == "echo"
        assert transport.transport.args == ["hello"]

    def test_config_with_no_servers(self):
        """Test that an empty MCPConfig raises a ValueError."""
        config = {"mcpServers": {}}
        with pytest.raises(ValueError, match="No MCP servers defined in the config"):
            infer_transport(config)

    def test_mcpconfigtransport_with_no_servers(self):
        """Test that MCPConfigTransport raises a ValueError when initialized with an empty config."""
        config = {"mcpServers": {}}
        with pytest.raises(ValueError, match="No MCP servers defined in the config"):
            MCPConfigTransport(config=config)

    def test_infer_composite_client(self):
        config = {
            "mcpServers": {
                "local": {
                    "command": "echo",
                    "args": ["hello"],
                },
                "remote": {
                    "url": "http://localhost:8000/sse",
                    "headers": {"Authorization": "Bearer 123"},
                },
            }
        }
        transport = infer_transport(config)
        assert isinstance(transport, MCPConfigTransport)
        assert isinstance(transport.transport, FastMCPTransport)
        assert len(cast(FastMCP, transport.transport.server)._mounted_servers) == 2

    def test_infer_fastmcp_server(self, fastmcp_server):
        """FastMCP server instances should infer to FastMCPTransport."""
        transport = infer_transport(fastmcp_server)
        assert isinstance(transport, FastMCPTransport)

    def test_infer_fastmcp_v1_server(self):
        """FastMCP 1.0 server instances should infer to FastMCPTransport."""
        from mcp.server.fastmcp import FastMCP as FastMCP1

        server = FastMCP1()
        transport = infer_transport(server)
        assert isinstance(transport, FastMCPTransport)