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chore: import upstream snapshot with attribution
2026-07-13 12:38:16 +08:00

162 lines
5.5 KiB
Python

from __future__ import annotations
import logging
from typing import TYPE_CHECKING, List
import numpy as np
import tqdm
from sglang.srt.disaggregation.utils import FAKE_BOOTSTRAP_HOST
from sglang.srt.managers.io_struct import GenerateReqInput
if TYPE_CHECKING:
from sglang.srt.managers.tokenizer_manager import TokenizerManager
logger = logging.getLogger(__file__)
_warmup_registry = {}
def warmup(name: str):
def decorator(fn):
_warmup_registry[name] = fn
return fn
return decorator
async def execute_warmups(
disaggregation_mode: str,
warmup_names: List[str],
tokenizer_manager: TokenizerManager,
):
for warmup_name in warmup_names:
if warmup_name not in _warmup_registry:
logger.warning(f"Could not find custom warmup {warmup_name}")
continue
logger.info(f"Running warmup {warmup_name}")
await _warmup_registry[warmup_name](disaggregation_mode, tokenizer_manager)
@warmup("whisper_autodetect")
async def whisper_autodetect(
disaggregation_mode: str, tokenizer_manager: TokenizerManager
):
"""Pre-compile the xgrammar FSM for both Whisper auto-detect regexes.
The first request that uses each structured-generation regex incurs a
~15-20s compilation cost. xgrammar caches compiled grammars by the
exact regex string, so we warm both the notimestamps and timestamps
variants here — otherwise the first ``language=None +
timestamp_granularities`` request would still pay the full spike.
"""
# A short silent audio encoded as base64 WAV (0.1s, 16kHz, mono) —
# soundfile produces the WAV header + PCM data from a list of floats.
import base64
import io
import soundfile as sf
from sglang.srt.entrypoints.openai.transcription_adapters.whisper import (
FUSED_AUTODETECT_FLAG,
WHISPER_AUTODETECT_REGEX,
WHISPER_AUTODETECT_TS_REGEX,
)
sr, dur = 16000, 0.1
n = int(sr * dur)
buf = io.BytesIO()
sf.write(buf, [0.0] * n, sr, format="WAV")
audio_b64 = base64.b64encode(buf.getvalue()).decode()
audio_data_uri = f"data:audio/wav;base64,{audio_b64}"
for variant_name, regex in (
("notimestamps", WHISPER_AUTODETECT_REGEX),
("timestamps", WHISPER_AUTODETECT_TS_REGEX),
):
logger.info(
"Compiling Whisper auto-detect regex FSM (%s, one-time, ~15-20s)...",
variant_name,
)
req = GenerateReqInput(
text="",
audio_data=audio_data_uri,
sampling_params={
"max_new_tokens": 4,
"temperature": 0,
"regex": regex,
"skip_special_tokens": False,
"spaces_between_special_tokens": False,
FUSED_AUTODETECT_FLAG: True,
},
modalities=["audio"],
)
# PD prefill servers assert req.bootstrap_room is not None in the
# default follow_bootstrap_room scheduler; the fake values match
# what the voice_chat warmup uses for the same reason.
if disaggregation_mode != "null":
req.bootstrap_room = 0
req.bootstrap_host = FAKE_BOOTSTRAP_HOST
# Drain the generator so the FSM is fully installed and any
# downstream exception surfaces instead of being swallowed after
# the first yield.
async for _ in tokenizer_manager.generate_request(req, None):
pass
logger.info("Whisper auto-detect regex FSMs compiled.")
@warmup("voice_chat")
async def voice_chat(disaggregation_mode: str, tokenizer_manager: TokenizerManager):
# this warms up the fused_moe triton kernels and caches them
# if we don't do this we break real time inference for voice chat
for i in tqdm.trange(1, 512):
size = i * 4
generate_req_input = GenerateReqInput(
input_ids=(np.random.randint(2**16, size=[size])).tolist(),
sampling_params={
"max_new_tokens": 30,
"temperature": 0.8,
"stop_token_ids": [1],
"min_p": 0.0,
},
)
if disaggregation_mode != "null":
generate_req_input.bootstrap_room = 0
generate_req_input.bootstrap_host = FAKE_BOOTSTRAP_HOST
await tokenizer_manager.generate_request(generate_req_input, None).__anext__()
@warmup("prefill_shapes")
async def prefill_shapes(disaggregation_mode: str, tokenizer_manager: TokenizerManager):
"""Warmup Triton kernels across a wide range of prefill seq_lens (up to 32K).
Uses power-of-2 sizes plus intermediate points to cover the shape space
that fused_moe, attention extend, and other Triton kernels may encounter.
"""
page_size = 64
sizes = set()
base = 64
while base <= 32768:
sizes.add(base)
mid = base * 3 // 2
mid = (mid + page_size - 1) // page_size * page_size
if mid <= 32768:
sizes.add(mid)
base *= 2
sizes = sorted(sizes)
for size in tqdm.tqdm(sizes, desc="Warmup prefill shapes (up to 32K)"):
generate_req_input = GenerateReqInput(
input_ids=(np.random.randint(2**16, size=[size])).tolist(),
sampling_params={
"max_new_tokens": 1,
"temperature": 0.0,
},
)
if disaggregation_mode != "null":
generate_req_input.bootstrap_room = 0
generate_req_input.bootstrap_host = FAKE_BOOTSTRAP_HOST
await tokenizer_manager.generate_request(generate_req_input, None).__anext__()