client.py 27.3 KB
Newer Older
1
# SPDX-License-Identifier: Apache-2.0
2
# SPDX-FileCopyrightText: Copyright contributors to the vLLM project
3

4
5
6
7
import asyncio
import copy
import pickle
from contextlib import contextmanager, suppress
8
from typing import (Any, AsyncGenerator, Dict, Iterator, List, Mapping,
9
                    Optional, Union, cast)
10
11

import cloudpickle
12
import psutil
13
14
15
16
17
import zmq
import zmq.asyncio
from zmq import Frame  # type: ignore[attr-defined]
from zmq.asyncio import Socket

18
from vllm import PoolingParams
19
from vllm.config import DecodingConfig, ModelConfig, VllmConfig
20
from vllm.core.scheduler import SchedulerOutputs
21
22
# yapf conflicts with isort for this block
# yapf: disable
23
24
from vllm.engine.async_llm_engine import (
    build_guided_decoding_logits_processor_async)
25
26
27
28
from vllm.engine.multiprocessing import (ENGINE_DEAD_ERROR, IPC_DATA_EXT,
                                         IPC_HEALTH_EXT, IPC_INPUT_EXT,
                                         IPC_OUTPUT_EXT, RPC_REQUEST_T,
                                         VLLM_RPC_SUCCESS_STR, RPCAbortRequest,
29
                                         RPCAdapterLoadedResponse, RPCError,
30
31
                                         RPCIsSleepingRequest,
                                         RPCIsSleepingResponse,
32
                                         RPCLoadAdapterRequest,
33
                                         RPCProcessRequest,
34
                                         RPCResetMultiModalCacheRequest,
35
                                         RPCResetPrefixCacheRequest,
36
37
38
                                         RPCSleepRequest, RPCStartupRequest,
                                         RPCStartupResponse,
                                         RPCUProfileRequest, RPCWakeUpRequest)
39
from vllm.engine.protocol import EngineClient
40
41
# yapf: enable
from vllm.envs import VLLM_RPC_TIMEOUT
42
from vllm.inputs import PromptType
43
from vllm.inputs.preprocess import InputPreprocessor
44
45
from vllm.logger import init_logger
from vllm.lora.request import LoRARequest
46
from vllm.model_executor.layers.sampler import SamplerOutput
47
from vllm.outputs import PoolingRequestOutput, RequestOutput
48
from vllm.sampling_params import SamplingParams
49
from vllm.transformers_utils.tokenizer_group import init_tokenizer_from_configs
50
from vllm.utils import Device
51
52
53
54
55
56

logger = init_logger(__name__)


class MQClientClosedError(Exception):
    """Exception class raised when the client is used post-close.
57

58
    The client can be closed, which closes the ZMQ context. This normally
59
60
    happens on server shutdown. In some cases, methods like abort and
    do_log_stats will still be called and then try to open a socket, which
61
62
63
64
65
    causes a ZMQError and creates a huge stack trace.
    So, we throw this error such that we can suppress it.
    """


66
class MQLLMEngineClient(EngineClient):
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
    """A client wrapper for MQLLMEngine that conforms to the
    EngineClient protocol.

    MQLLMEngine and MQLLMEngineClient are intended to run in separate
    processes communicating via zeromq ipc sockets.

    The entrypoint to MQLLMEngineClient is through the generate()
    method. On generate() MQLLMEngine does three things:
        - Creates an asyncio output queue
        - Sends a RPCGenerateRequest to the MQLLMEngine via zmq
        - Pulls RequestOutputs from its queue and yields them

    MQLLMEngine runs two background loops:
        - output_loop: the output loop pulls List[RequestOutput]
            from the MQLLMEngine via zmq (each list is the output
            of one engine_step in the LLMEngine). It then parses
            the list and pushes individual request_outputs into
            the corresponding output_queue such that they can be
            consumed by the .generate() method.
        - health_loop: the health loop queries the health socket
            every N seconds, confirming the engine is healthy
    """

90
    def __init__(self, ipc_path: str, engine_config: VllmConfig,
91
                 engine_pid: int):
92
93
94
95
        self.context = zmq.asyncio.Context()
        self._errored_with: Optional[BaseException] = None

        # Get the configs.
96
        self.vllm_config = engine_config
97
98
99
        self.model_config = engine_config.model_config
        self.decoding_config = engine_config.decoding_config

100
101
102
103
104
105
106
107
108
109
        if self.vllm_config.model_config.skip_tokenizer_init:
            self.tokenizer = None

        else:
            # Create the tokenizer group.
            self.tokenizer = init_tokenizer_from_configs(
                model_config=self.model_config,
                scheduler_config=engine_config.scheduler_config,
                lora_config=engine_config.lora_config)

110
111
        self.input_preprocessor = InputPreprocessor(self.model_config,
                                                    self.tokenizer)
112
113
114
115
116
117
118
119
120

        # Send RPCGenerateRequest to the MQLLMEngine.
        self.input_socket: Socket = self.context.socket(zmq.constants.PUSH)
        self.input_socket.connect(f"{ipc_path}{IPC_INPUT_EXT}")

        # Receive streams of RequestOutput from the MQLLMEngine.
        self.output_socket: Socket = self.context.socket(zmq.constants.PULL)
        self.output_socket.connect(f"{ipc_path}{IPC_OUTPUT_EXT}")

121
122
123
        # IPC path for acking heartbeats.
        self.heartbeat_socket: Socket = self.context.socket(zmq.constants.PULL)
        self.heartbeat_socket.connect(f"{ipc_path}{IPC_HEALTH_EXT}")
124
125
126
127
128
129

        # IPC path for the data socket.
        self.data_ipc_path = f"{ipc_path}{IPC_DATA_EXT}"

        # Stream for each individual request.
        self.output_queues: Dict[str, asyncio.Queue] = {}
130
131
132
133
134

        # Loop to handle output of the LLMEngine periodically.
        # Started after the MQLLMEngine is ready so that we can
        # build the Client in an executor to enable clean shutdown.
        self.output_loop: Optional[asyncio.Task] = None
135
136
137
138

        # Loop to check health of the LLMEngine periodically.
        # Started after the MQLLMEngine is ready.
        self.health_loop: Optional[asyncio.Task] = None
139
        self._engine_process = psutil.Process(engine_pid)
140
141

    @staticmethod
142
    def is_unsupported_config(vllm_config: VllmConfig):
143
        # Pipeline parallel not yet supported
144
        return vllm_config.parallel_config.pipeline_parallel_size > 1
145
146
147
148
149
150
151
152
153
154

    @contextmanager
    def get_data_socket(self) -> Iterator[Socket]:
        socket = self.context.socket(zmq.constants.DEALER)
        try:
            socket.connect(self.data_ipc_path)
            yield socket
        finally:
            socket.close(linger=0)

155
    async def run_heartbeat_loop(self, timeout: int):
156
157
        """Background loop that continually checks to ensure the engine process
        is still alive.
158
159
160
        """
        try:
            while True:
161
162
163
164
                # Check if the engine process is running:
                if not self._engine_process.is_running() or (
                        self._engine_process.status() == psutil.STATUS_ZOMBIE):
                    # NB: is_running() returns True for zombies
165
                    self._set_errored(
166
167
168
                        RuntimeError(
                            f"Engine process (pid {self._engine_process.pid}) "
                            "died."))
169
170
                    break

171
                if await self.heartbeat_socket.poll(timeout=timeout):
172
                    # Heartbeat received- check the message
173
                    await self._check_success(
174
175
                        error_message="Heartbeat failed.",
                        socket=self.heartbeat_socket)
176

177
                logger.debug("Heartbeat successful.")
178
179
180
181

        except asyncio.CancelledError:
            logger.debug("Shutting down MQLLMEngineClient check health loop.")

182
183
184
185
186
        except psutil.NoSuchProcess:
            self._set_errored(
                RuntimeError(
                    f"Engine process (pid {self._engine_process.pid}) died."))

187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
        except Exception as e:
            self._set_errored(e)

    async def run_output_handler_loop(self):
        """Get RequestOutputs from Engine and stream to Request Queues"""

        try:
            while True:
                # Poll, checking for ENGINE_DEAD
                while await self.output_socket.poll(timeout=VLLM_RPC_TIMEOUT
                                                    ) == 0:
                    logger.debug("Waiting for output from MQLLMEngine.")

                    # If errored, alert all running requests.
                    if self.errored:
                        for queue_j in tuple(self.output_queues.values()):
                            queue_j.put_nowait(
                                ENGINE_DEAD_ERROR(self._errored_with))
                        return

                message: Frame = await self.output_socket.recv(copy=False)
                request_outputs = pickle.loads(message.buffer)

                is_error = isinstance(request_outputs,
                                      (BaseException, RPCError))
                if is_error:
                    if isinstance(request_outputs, RPCError):
                        rpc_error: RPCError = request_outputs
                        request_id = rpc_error.request_id
                        exception = rpc_error.exception
                        is_engine_errored = rpc_error.is_engine_errored
                    else:
                        # MPLLMEngine should always return an RPCError to
                        # the output_socket when an issue arises.
                        # If we are here, we are in a bad state and
                        # should shut down the server.
                        error: BaseException = request_outputs
                        logger.error(
                            "Received Exception %s rather than RPCError from "
                            "MPLLMEngine. This should never happen.", error)
                        request_id = None
                        exception = error
                        is_engine_errored = True

                    # Set to error state only on engine critical error
                    # (and record only the first one)
                    if is_engine_errored and not self._errored_with:
                        self._errored_with = exception
235
236
237
238
239
240
241
                        # If engine is errored, no matter the type of exception
                        # it will no longer be able to receive new requests,
                        # therefore we have to inform that the current
                        # processed requests failed as well. Send back a dead
                        # engine error give this feedback and also give a
                        # 'hint' to the server to shutdown next.
                        exception = self.dead_error
242
243

                    if request_id is None:
244
245
246
247
248
                        # If request_id is None, then the engine raised an
                        # exception for a batch, and we may not know the
                        # request that caused it, neither if it was actually
                        # caused by any of them (e.g. CUDA OOM). Therefore we
                        # broadcast the same exception for all requests.
249
250
251
252
253
254
                        for queue_i in tuple(self.output_queues.values()):
                            queue_i.put_nowait(exception)
                    else:
                        queue = self.output_queues.get(request_id)
                        if queue is not None:
                            queue.put_nowait(exception)
255
                # Put each output into the appropriate queue.
256
257
258
                elif isinstance(
                        request_outputs,
                    (RPCAdapterLoadedResponse, RPCIsSleepingResponse)):
259
                    self._add_output(request_outputs)
260
261
                else:
                    for request_output in request_outputs:
262
                        self._add_output(request_output)
263
264
265
266

        except asyncio.CancelledError:
            logger.debug("Shutting down MQLLMEngineClient output handler.")

267
    def _add_output(self, request_output: Union[RequestOutput,
268
269
                                                RPCAdapterLoadedResponse,
                                                RPCIsSleepingResponse]):
270
271
272
273
        queue = self.output_queues.get(request_output.request_id)
        if queue is not None:
            queue.put_nowait(request_output)

274
275
276
    async def setup(self):
        """Setup the client before it starts sending server requests."""

277
        # Start output_loop
278
279
280
281
282
283
284
285
        if self.output_loop is None:
            # only generate once to avoid multiple concurrent output_loops
            # this will lead to race conditions and wrong orders of tokens
            # returned by the engine
            # setup will be called multiple times during the startup of
            # the engine
            self.output_loop = asyncio.create_task(
                self.run_output_handler_loop())
286

287
288
289
290
291
292
293
        with self.get_data_socket() as socket:
            # Wait until server is ready.
            response = await self._wait_for_server_rpc(socket)

            self.tracing_flag = response.tracing_enabled

            # Start health_loop.
294
295
296
            if self.health_loop is None:
                self.health_loop = asyncio.create_task(
                    self.run_heartbeat_loop(timeout=VLLM_RPC_TIMEOUT))
297
298
299
300
301
302
303
304
305

    def close(self):
        """Destroy the ZeroMQ Context."""
        # Close all sockets and terminate the context.
        self.context.destroy(linger=0)

        # Cancel background tasks.
        if self.health_loop is not None:
            self.health_loop.cancel()
306
307
        if self.output_loop is not None:
            self.output_loop.cancel()
308
309
310
311
312
313
314
315
316
317
318
319
320
321
322
323
324
325
326
327
328
329
330
331
332
333
334
335
336
337
338
339
340
341
342
343
344
345
346
347
348
349
350
351
352
353
354
355
356
357
358
359
360
361
362
363
364
365
366
367
368
369
370
371
372
373
374
375
376
377
378

    def _set_errored(self, e: BaseException):
        logger.exception(repr(e))
        if self._errored_with is None:
            self._errored_with = e

    @staticmethod
    async def _send_get_data_rpc_request(request: RPCStartupRequest,
                                         expected_type: Any,
                                         error_message: str,
                                         socket: Socket) -> Any:
        """Send an RPC request that is expecting data back."""

        # Ping RPCServer with a request.
        await socket.send_multipart((pickle.dumps(request), ), copy=False)

        # Make sure the server responds in time.
        if await socket.poll(timeout=VLLM_RPC_TIMEOUT) == 0:
            raise TimeoutError("RPCServer didn't reply within "
                               f"{VLLM_RPC_TIMEOUT} ms")

        # Await the data from the Server.
        frame = await socket.recv(copy=False)
        data = pickle.loads(frame.buffer)

        if isinstance(data, BaseException):
            raise data
        elif not isinstance(data, expected_type):
            raise ValueError(error_message)

        return data

    @staticmethod
    async def _send_one_way_rpc_request(request: RPC_REQUEST_T,
                                        socket: Socket):
        """Send one-way RPC request to trigger an action."""

        if socket.closed:
            raise MQClientClosedError()

        await socket.send_multipart((pickle.dumps(request), ))

    async def _await_ack(self, error_message: str, socket: Socket):
        """Await acknowledgement that a request succeeded."""

        if socket.closed:
            raise MQClientClosedError()

        if await socket.poll(timeout=VLLM_RPC_TIMEOUT) == 0:
            raise TimeoutError("MQLLMEngine didn't reply within "
                               f"{VLLM_RPC_TIMEOUT}ms")

        await self._check_success(error_message, socket)

    @staticmethod
    async def _check_success(error_message: str, socket: Socket):
        """Confirm that socket has a VLLM_RPC_SUCCESS_STR message"""

        if socket.closed:
            raise MQClientClosedError()

        frame = await socket.recv(copy=False)
        response = pickle.loads(frame.buffer)

        # Raise error if unsuccessful
        if isinstance(response, BaseException):
            raise response
        elif (not isinstance(response, str)
              or response != VLLM_RPC_SUCCESS_STR):
            raise ValueError(error_message)

379
380
381
    async def get_input_preprocessor(self) -> InputPreprocessor:
        return self.input_preprocessor

382
    async def get_tokenizer(self, lora_request: Optional[LoRARequest] = None):
383
384
385
386
        if self.tokenizer is None:
            return None
        else:
            return await self.tokenizer.get_lora_tokenizer_async(lora_request)
387

388
389
390
    async def get_vllm_config(self) -> VllmConfig:
        return self.vllm_config

391
392
393
394
395
396
397
398
399
400
401
402
403
404
405
406
407
408
409
410
411
412
413
414
415
    async def get_decoding_config(self) -> DecodingConfig:
        return self.decoding_config

    async def get_model_config(self) -> ModelConfig:
        return self.model_config

    async def is_tracing_enabled(self) -> bool:
        return self.tracing_flag

    async def _wait_for_server_rpc(self, socket: Socket) -> RPCStartupResponse:
        """Wait for the RPCServer to start up."""

        return await self._send_get_data_rpc_request(
            request=RPCStartupRequest.IS_SERVER_READY,
            expected_type=RPCStartupResponse,
            error_message="Unable to start RPC Server",
            socket=socket)

    async def abort(self, request_id: str):
        """Send an ABORT_REQUEST signal to the RPC Server"""

        with suppress(MQClientClosedError):
            await self._send_one_way_rpc_request(
                request=RPCAbortRequest(request_id), socket=self.input_socket)

416
417
418
419
420
421
422
423
    async def do_log_stats(
        self,
        scheduler_outputs: Optional[SchedulerOutputs] = None,
        model_output: Optional[List[SamplerOutput]] = None,
    ) -> None:
        """
        Ignore do_log_stats (handled on MQLLMEngine polling)
        """
424
425
426
427
428
        pass

    async def check_health(self):
        """
        The check health loop probes the health status of the
429
        Engine's health every N seconds and sets _errored_with
430
431
432
433
434
435
436
437
438
439
440
441
442
443
444
445
446
        if the engine is unhealthy.
        """
        if self._errored_with is not None:
            raise self._errored_with

    @property
    def is_running(self) -> bool:
        return not self.errored

    @property
    def is_stopped(self) -> bool:
        return self.errored

    @property
    def errored(self) -> bool:
        return self._errored_with is not None

447
448
    @property
    def dead_error(self) -> BaseException:
449
        return ENGINE_DEAD_ERROR(self._errored_with)
450

451
    def generate(
452
        self,
453
        prompt: PromptType,
454
455
456
457
        sampling_params: SamplingParams,
        request_id: str,
        lora_request: Optional[LoRARequest] = None,
        trace_headers: Optional[Mapping[str, str]] = None,
458
        priority: int = 0,
459
    ) -> AsyncGenerator[RequestOutput, None]:
460
461
462
463
464
465
466
        """Generate outputs for a request.

        Generate outputs for a request. This method is a coroutine. It adds the
        request into the waiting queue of the LLMEngine and streams the outputs
        from the LLMEngine to the caller.

        Args:
467
468
469
            prompt: The prompt to the LLM. See
                [`PromptType`][vllm.inputs.PromptType] for more details about
                the format of each input.
470
471
472
473
            sampling_params: The sampling parameters of the request.
            request_id: The unique id of the request.
            lora_request: LoRA request to use for generation, if any.
            trace_headers: OpenTelemetry trace headers.
474
475
            priority: Priority of the request (lower means earlier handling).
                Any priority other than 0 will lead to an error if the
476
                scheduling policy is not "priority".
477
        """
478
479
480
        return cast(
            AsyncGenerator[RequestOutput, None],
            self._process_request(prompt, sampling_params, request_id,
481
                                  lora_request, trace_headers, priority))
482
483
484

    def encode(
        self,
485
        prompt: PromptType,
486
487
488
489
        pooling_params: PoolingParams,
        request_id: str,
        lora_request: Optional[LoRARequest] = None,
        trace_headers: Optional[Mapping[str, str]] = None,
490
        priority: int = 0,
491
    ) -> AsyncGenerator[PoolingRequestOutput, None]:
492
        """Generate outputs for a request from a pooling model.
493
494
495
496
497
498

        Generate outputs for a request. This method is a coroutine. It adds the
        request into the waiting queue of the LLMEngine and streams the outputs
        from the LLMEngine to the caller.

        Args:
499
500
501
            prompt: The prompt to the LLM. See
                [`PromptType`][vllm.inputs.PromptType] for more details about
                the format of each input.
502
503
504
505
506
507
            pooling_params: The pooling parameters of the request.
            request_id: The unique id of the request.
            lora_request: LoRA request to use for generation, if any.
            trace_headers: OpenTelemetry trace headers.

        Yields:
508
            The output `PoolingRequestOutput` objects from the LLMEngine
509
510
            for the request.
        """
511
        return cast(
512
            AsyncGenerator[PoolingRequestOutput, None],
513
514
515
516
517
518
            self._process_request(prompt,
                                  pooling_params,
                                  request_id,
                                  lora_request,
                                  trace_headers,
                                  priority=priority))
519
520
521

    async def _process_request(
        self,
522
        prompt: PromptType,
523
524
525
526
        params: Union[SamplingParams, PoolingParams],
        request_id: str,
        lora_request: Optional[LoRARequest] = None,
        trace_headers: Optional[Mapping[str, str]] = None,
527
        priority: int = 0,
528
    ) -> Union[AsyncGenerator[RequestOutput, None], AsyncGenerator[
529
            PoolingRequestOutput, None]]:
530
531
532
533
534
535
        """Send an RPCGenerateRequest to the RPCServer and stream responses."""

        # If already dead, error out.
        if self._errored_with is not None:
            raise ENGINE_DEAD_ERROR(self._errored_with)

536
537
538
539
        # Ensure the request id is unique among running requests
        if request_id in self.output_queues:
            raise ValueError(f"Request {request_id} already exists")

540
541
542
543
544
545
546
547
548
        # Constructing guided decoding logits processors is expensive, so we do
        # it here to avoid contending with cpu resources and the GIL on the
        # backend process.
        if isinstance(params, SamplingParams) and \
            params.guided_decoding is not None:
            params = await \
                build_guided_decoding_logits_processor_async(
                    sampling_params=params,
                    tokenizer=await self.get_tokenizer(lora_request),
549
                    default_guided_backend=(self.decoding_config.backend
550
                        if self.decoding_config
551
                        else DecodingConfig.backend),
552
553
                    model_config=self.model_config,
                    reasoning_backend=self.decoding_config.reasoning_backend,
554
555
                )

556
557
558
559
560
561
562
563
        # 1) Create output queue for this requests.
        queue: asyncio.Queue[Union[RequestOutput,
                                   BaseException]] = asyncio.Queue()
        self.output_queues[request_id] = queue

        try:
            # 2) Detach logits processors so that they can be pickled
            # separately (may require cloudpickle which is slower)
564
            if isinstance(params, SamplingParams) and params.logits_processors:
565
                # Defensive shallow copy
566
567
568
                params = copy.copy(params)
                logits_processors = params.logits_processors
                params.logits_processors = None
569
570
571
572
573
                lp_bytes = cloudpickle.dumps(logits_processors)
            else:
                lp_bytes = None

            request_bytes = pickle.dumps(
574
                RPCProcessRequest(
575
                    prompt=prompt,
576
                    params=params,
577
578
579
                    request_id=request_id,
                    lora_request=lora_request,
                    trace_headers=trace_headers,
580
581
                    priority=priority,
                ))
582
583
584
585
586
587
588
589
590
591
592
593
594
595
596
597
598
599
600
601
602
603
604
605
606

            # 3) Send the RPCGenerateRequest to the MQLLMEngine.
            parts = (request_bytes,
                     lp_bytes) if lp_bytes else (request_bytes, )
            await self.input_socket.send_multipart(parts, copy=False)

            # 4) Stream the RequestOutputs from the output queue. Note
            # that the output_loop pushes RequestOutput objects to this
            # queue after pulling them from the zmq socket.
            finished = False
            try:
                while not finished:
                    request_output = await queue.get()

                    if isinstance(request_output, BaseException):
                        raise request_output

                    finished = request_output.finished
                    yield request_output
            finally:
                # Request was canceled by the client.
                if not finished and not self.errored:
                    await self.abort(request_id)
        finally:
            self.output_queues.pop(request_id)
607
608
609
610
611
612
613
614
615
616
617
618

    async def start_profile(self) -> None:
        """Start profiling the engine"""

        await self._send_one_way_rpc_request(
            request=RPCUProfileRequest.START_PROFILE, socket=self.input_socket)

    async def stop_profile(self) -> None:
        """Stop profiling the engine"""

        await self._send_one_way_rpc_request(
            request=RPCUProfileRequest.STOP_PROFILE, socket=self.input_socket)
619

620
621
622
623
624
625
626
    async def reset_mm_cache(self) -> None:
        """Reset the multi-modal cache"""

        await self._send_one_way_rpc_request(
            request=RPCResetMultiModalCacheRequest.RESET,
            socket=self.input_socket)

627
628
    async def reset_prefix_cache(self,
                                 device: Optional[Device] = None) -> None:
629
630
631
        """Reset the prefix cache"""

        await self._send_one_way_rpc_request(
632
            request=RPCResetPrefixCacheRequest(device),
633
634
            socket=self.input_socket)

635
636
637
638
639
    async def sleep(self, level: int = 1) -> None:
        """Sleep the engine for a given level"""
        return await self._send_one_way_rpc_request(
            request=RPCSleepRequest(level), socket=self.input_socket)

640
    async def wake_up(self, tags: Optional[list[str]] = None) -> None:
641
642
        """Wake up the engine"""
        return await self._send_one_way_rpc_request(
643
            request=RPCWakeUpRequest(tags), socket=self.input_socket)
644

645
646
647
648
649
650
651
652
653
654
655
656
657
658
659
660
661
662
    async def is_sleeping(self) -> bool:
        """Check whether the engine is sleeping"""
        request = RPCIsSleepingRequest()

        queue: asyncio.Queue[Union[BaseException,
                                   RPCIsSleepingResponse]] = asyncio.Queue()
        self.output_queues[request.request_id] = queue

        request_bytes = pickle.dumps(request)
        await self.input_socket.send_multipart((request_bytes, ), copy=False)

        request_output = await queue.get()
        self.output_queues.pop(request.request_id)

        if isinstance(request_output, BaseException):
            raise request_output
        return request_output.is_sleeping

663
664
665
666
667
668
669
670
671
672
673
674
675
676
677
678
679
680
681
682
    async def add_lora(self, lora_request: LoRARequest) -> None:
        """Load a new LoRA adapter into the engine for future requests."""
        # Uses the same I/O as generate requests
        request = RPCLoadAdapterRequest(lora_request)

        # Create output queue for this requests.
        queue: asyncio.Queue[Union[None, BaseException]] = asyncio.Queue()
        self.output_queues[request.request_id] = queue

        # Send the request
        request_bytes = pickle.dumps(request)
        await self.input_socket.send_multipart((request_bytes, ), copy=False)

        # Wait for the response
        request_output = await queue.get()
        self.output_queues.pop(request.request_id)

        # Raise on error, otherwise happily return None
        if isinstance(request_output, BaseException):
            raise request_output