engine.py 15.1 KB
Newer Older
1
2
import pickle
import signal
3
4
import threading
import time
5
6
7
8
9
10
from contextlib import contextmanager
from typing import Iterator, List, Optional, Union

import cloudpickle
import zmq

11
from vllm import AsyncEngineArgs, LLMEngine, SamplingParams
12
13
14
15
16
17
18
19
from vllm.config import (DecodingConfig, LoRAConfig, ModelConfig,
                         ParallelConfig, SchedulerConfig)
# yapf conflicts with isort for this block
# yapf: disable
from vllm.engine.multiprocessing import (ENGINE_DEAD_ERROR, IPC_DATA_EXT,
                                         IPC_HEALTH_EXT, IPC_INPUT_EXT,
                                         IPC_OUTPUT_EXT, REQUEST_OUTPUTS_T,
                                         VLLM_RPC_SUCCESS_STR, RPCAbortRequest,
20
                                         RPCError, RPCProcessRequest,
21
22
                                         RPCStartupRequest, RPCStartupResponse,
                                         RPCUProfileRequest)
23
# yapf: enable
24
from vllm.envs import VLLM_RPC_TIMEOUT
25
from vllm.executor.gpu_executor import GPUExecutor
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
from vllm.logger import init_logger
from vllm.outputs import RequestOutput
from vllm.usage.usage_lib import UsageContext

CONFIG_TYPE = Union[ModelConfig, DecodingConfig, ParallelConfig,
                    SchedulerConfig, LoRAConfig]

logger = init_logger(__name__)

POLLING_TIMEOUT_MS = 10000
HEALTHY_RESPONSE = (pickle.dumps(VLLM_RPC_SUCCESS_STR), )


class MQLLMEngine:
    """A multiprocessing wrapper for :class:`LLMEngine`.

    This class is used to wrap the :class:`LLMEngine` class to enable use
    in concurrnet manner. It runs a background loop and uses zeromq to 
    receive new requests and stream outputs incrementally via ipc.
    
46
47
    The :class:`LLMEngine` generate or encode process is kicked off when a new
    RPCProcessRequest is received by the input_socket.
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
    
    The self.engine_loop checks the input_socket for new requests,
    adds them to the LLMEngine if there are any, calls the internal
    :class:`LLMEngine.step()`, and sends the RequestOutputs back over
    the output_socket.

    If use_async_sockets is set, the logic associated with reading new
    requests from the socket and sending data to the socket is passed
    as a callback to the llm_engine, which calls the logic asynchronously
    such that the IPC can be overlapped with the GPU.

    Args:
        ipc_path: Base path for zeromq interprocess messaging
        use_async_sockets: Whether to make send/recv async with GPU
        log_requests: Whether to log the requests.
        *args: Arguments for :class:`LLMEngine`.
        **kwargs: Arguments for :class:`LLMEngine`.
    """

    def __init__(self,
                 ipc_path: str,
                 use_async_sockets: bool,
                 *args,
                 log_requests: bool = True,
                 **kwargs) -> None:
73
74
75
76
77
78
79
80
        # For MQLLMEngine, we can use cached outputs, since each new request
        # output is immediately pickled and send over the socket, which frees
        # the python object to be reused again.
        use_cached_outputs = True

        self.engine = LLMEngine(*args,
                                **kwargs,
                                use_cached_outputs=use_cached_outputs)
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
        self.log_requests = log_requests

        self.use_async_sockets = use_async_sockets
        if self.use_async_sockets:
            self.engine.process_request_outputs_callback = \
                self._async_socket_engine_callback

        self.ctx = zmq.Context()  # type: ignore[attr-defined]

        # Receive input from the client.
        self.input_socket = self.ctx.socket(zmq.constants.PULL)
        self.input_socket.bind(f"{ipc_path}{IPC_INPUT_EXT}")

        # Send output stream back to client.
        self.output_socket = self.ctx.socket(zmq.constants.PUSH)
        self.output_socket.bind(f"{ipc_path}{IPC_OUTPUT_EXT}")

98
99
100
        # Send heartbeats back to client.
        self.heartbeat_socket = self.ctx.socket(zmq.constants.PUSH)
        self.heartbeat_socket.bind(f"{ipc_path}{IPC_HEALTH_EXT}")
101
102
103
104
105
106
107

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

        # Error state.
        self._errored_with: Optional[BaseException] = None

108
109
110
111
112
113
114
115
116
117
118
119
120
121
        # Heartbeat thread
        self.heartbeat_thread = threading.Thread(target=self._heartbeat_loop,
                                                 daemon=True)
        self._heartbeat_stop_event = threading.Event()
        # The heartbeat needs to be faster than what the client will wait for
        # The VLLM_RPC_TIMEOUT duration is in ms, and we need one in seconds
        self.heartbeat_interval_seconds = VLLM_RPC_TIMEOUT / 5000.0

        self._last_alive_time = time.time()
        # The heartbeats can tolerate a long period of the engine chugging
        # away at a generation request.
        # The VLLM_RPC_TIMEOUT duration is in ms, and we need one in seconds
        self.last_alive_threshold = VLLM_RPC_TIMEOUT * 3.0 / 1000.0

122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
    @property
    def dead_error(self) -> BaseException:
        if self._errored_with is not None:
            return ENGINE_DEAD_ERROR(self._errored_with)
        else:
            return ENGINE_DEAD_ERROR()

    @classmethod
    def from_engine_args(cls, engine_args: AsyncEngineArgs,
                         usage_context: UsageContext, ipc_path: str):
        """Creates an MQLLMEngine from the engine arguments."""

        engine_config = engine_args.create_engine_config()

        executor_class = LLMEngine._get_executor_cls(engine_config)

        return cls(
            ipc_path=ipc_path,
            use_async_sockets=engine_config.model_config.use_async_output_proc,
            **engine_config.to_dict(),
            executor_class=executor_class,
            log_requests=not engine_args.disable_log_requests,
            log_stats=not engine_args.disable_log_stats,
            usage_context=usage_context)

    def start(self):
        try:
            try:
                logger.debug("Starting Startup Loop.")
                self.run_startup_loop()
152
153
                logger.debug("Starting heartbeat thread")
                self.heartbeat_thread.start()
154
155
156
157
158
159
160
161
162
163
164
165
166
                logger.debug("Starting Engine Loop.")
                self.run_engine_loop()
            except Exception as e:
                logger.exception(repr(e))
        except KeyboardInterrupt:
            logger.debug("Shutting down MQLLMEngine.")
        finally:
            logger.debug("MQLLMEngine is shut down.")
            self.cleanup()

    def cleanup(self):
        """Cleanup zeromq state on shutdown."""
        # Closes all sockets and destroys context.
167
        self._heartbeat_stop_event.set()
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
        self.ctx.destroy(linger=0)
        del self.engine

    @contextmanager
    def make_data_socket(
            self) -> Iterator[zmq.Socket]:  # type: ignore[name-defined]
        socket = self.ctx.socket(zmq.constants.ROUTER)
        try:
            socket.bind(self.data_ipc_path)
            yield socket
        finally:
            socket.close(linger=0)

    def run_startup_loop(self) -> None:
        """Startup loop for sending data from Engine -> Client."""

        with self.make_data_socket() as socket:
            response: Union[RPCStartupResponse, BaseException]
            try:
                identity, message = socket.recv_multipart(copy=False)
                request: RPCStartupRequest = pickle.loads(message.buffer)

                # Handle the query from the Client.
                if request == RPCStartupRequest.IS_SERVER_READY:
                    tracing_enabled = self.engine.is_tracing_enabled()
                    response = RPCStartupResponse(
                        tracing_enabled=tracing_enabled)

            except Exception as e:
                response = e

            socket.send_multipart((identity, pickle.dumps(response)),
                                  copy=False)

    def run_engine_loop(self):
        """Core busy loop of the LLMEngine."""

        while True:
206
            self._alive()
207
208
209
            if not self.engine.has_unfinished_requests():
                # Poll until there is work to do.
                while self.input_socket.poll(timeout=POLLING_TIMEOUT_MS) == 0:
210
                    self._alive()
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
243
244
                    self.engine.do_log_stats()
                    logger.debug("Waiting for new requests in engine loop.")

            # Handle any input from the client.
            self.handle_new_input()

            # Engine step.
            request_outputs = self.engine_step()

            # Send request outputs (if async, done in engine_step callback).
            if not self.use_async_sockets:
                self._send_outputs(request_outputs)

    def engine_step(self) -> List[RequestOutput]:
        """Engine step wrapper with error handling."""
        try:
            return self.engine.step()
        except SystemExit:
            raise
        except BaseException as e:
            self._set_errored(e)
            rpc_err = RPCError(request_id=None,
                               is_engine_errored=True,
                               exception=e)
            self._send_outputs(rpc_err)
            raise e

    def handle_new_input(self):
        """Handle new input from the socket"""
        try:
            while self.input_socket.poll(timeout=0) != 0:
                frames = self.input_socket.recv_multipart(copy=False)
                request = pickle.loads(frames[0].buffer)

245
                if isinstance(request, RPCProcessRequest):
246
247
                    if len(frames) > 1:
                        # Use cloudpickle for logits processors
248
                        assert isinstance(request.params, SamplingParams)
249
                        lprocs = cloudpickle.loads(frames[1].buffer)
250
251
                        request.params.logits_processors = lprocs
                    self._handle_process_request(request)
252
253
                elif isinstance(request, RPCAbortRequest):
                    self._handle_abort_request(request)
254
255
256
257
258
                elif isinstance(request, RPCUProfileRequest):
                    if request == RPCUProfileRequest.START_PROFILE:
                        self.start_profile()
                    else:
                        self.stop_profile()
259
                else:
260
261
                    raise ValueError("Unknown RPCRequest Type: "
                                     f"{type(request)}")
262
263
264
265
266
267

        except Exception as e:
            self._set_errored(e)
            self._send_unhealthy(e)
            raise e

268
269
    def _handle_process_request(self, request: RPCProcessRequest):
        """Handle RPCProcessRequest by adding it to the LLMEngine."""
270
271
272
273
274
275
276
277
278
279
280
        request_id = request.request_id

        if self._errored_with is not None:
            rpc_err = RPCError(request_id=request_id,
                               is_engine_errored=True,
                               exception=ENGINE_DEAD_ERROR(self._errored_with))
            self._send_outputs(rpc_err)

        try:
            self.engine.add_request(
                request_id=request_id,
281
                inputs=request.inputs,
282
                params=request.params,
283
284
285
286
287
288
289
290
291
292
293
294
295
296
297
298
299
300
301
302
303
304
305
306
307
                lora_request=request.lora_request,
                trace_headers=request.trace_headers,
                prompt_adapter_request=request.prompt_adapter_request)

            if self.log_requests:
                logger.info("Added request %s.", request.request_id)

        except Exception as e:
            # We do not set self._errored = True here, since the error
            # is due to an issue adding this request to the engine,
            # rather than an issue with the engine itself.
            is_errored = self._errored_with is not None
            rpc_err = RPCError(request_id=request_id,
                               is_engine_errored=is_errored,
                               exception=e)
            self._send_outputs(rpc_err)

            # Remove request from the engine.
            self.engine.abort_request(request_id)

    def _handle_abort_request(self, request: RPCAbortRequest):
        self.engine.abort_request(request.request_id)
        if self.log_requests:
            logger.info("Aborted request %s.", request.request_id)

308
309
310
311
312
313
314
315
316
317
    def _heartbeat_loop(self):
        while not self._heartbeat_stop_event.wait(
                timeout=self.heartbeat_interval_seconds):
            # Loops until the stop event is set
            self._heartbeat()

        logger.debug("Exiting MQLLMEngine heartbeat thread")

    def _heartbeat(self):
        # Send unhealthy if engine has already errored
318
319
320
        if self._errored_with is not None:
            self._send_unhealthy(self._errored_with)

321
322
323
324
325
326
327
328
329
330
331
332
333
        # Check for life of the main loop
        elif time.time() - self._last_alive_time > self.last_alive_threshold:
            self._send_unhealthy(RuntimeError("Engine loop has died"))

        else:
            # Otherwise- check health of the engine
            # self.engine.check_health() raises on unhealthy
            try:
                self.engine.check_health()
                self._send_healthy()
            except Exception as e:
                self._set_errored(e)
                self._send_unhealthy(e)
334
335
336
337
338
339
340
341
342

    def _send_outputs(self, outputs: REQUEST_OUTPUTS_T):
        """Send List of RequestOutput to RPCClient."""
        if outputs:
            output_bytes = pickle.dumps(outputs)
            self.output_socket.send_multipart((output_bytes, ), copy=False)

    def _send_healthy(self):
        """Send HEALTHY message to RPCClient."""
343
344
        if not self.heartbeat_socket.closed:
            self.heartbeat_socket.send_multipart(HEALTHY_RESPONSE, copy=False)
345
346
347

    def _send_unhealthy(self, error: BaseException):
        """Send UNHEALTHY message to RPCClient."""
348
349
350
        if not self.heartbeat_socket.closed:
            error_bytes = pickle.dumps(error)
            self.heartbeat_socket.send_multipart((error_bytes, ), copy=False)
351
352
353
354
355
356
357
358
359
360
361
362

    def _async_socket_engine_callback(self,
                                      request_outputs: REQUEST_OUTPUTS_T):
        """Callback used by engine to make socket handling async with GPU."""
        self._send_outputs(request_outputs)
        self.handle_new_input()

    def _set_errored(self, e: BaseException):
        """Log and set errored status if this is the first issue."""
        if self._errored_with is None:
            self._errored_with = e

363
364
365
    def _alive(self):
        self._last_alive_time = time.time()

366
367
368
369
370
371
372
373
374
375
376
377
    def start_profile(self) -> None:
        if type(self.engine.model_executor) is GPUExecutor:
            self.engine.model_executor.start_profile()
        else:
            self.engine.model_executor._run_workers("start_profile")

    def stop_profile(self) -> None:
        if type(self.engine.model_executor) is GPUExecutor:
            self.engine.model_executor.stop_profile()
        else:
            self.engine.model_executor._run_workers("stop_profile")

378
379
380
381
382
383
384
385
386
387
388
389
390
391

def run_mp_engine(engine_args: AsyncEngineArgs, usage_context: UsageContext,
                  ipc_path: str):

    def signal_handler(*_) -> None:
        # Interrupt server on sigterm
        raise KeyboardInterrupt("MQLLMEngine terminated")

    signal.signal(signal.SIGTERM, signal_handler)

    engine = MQLLMEngine.from_engine_args(engine_args=engine_args,
                                          usage_context=usage_context,
                                          ipc_path=ipc_path)
    engine.start()