chore: vendor sglang v0.5.10 snapshot
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313
third_party/sglang/scripts/ci/cuda/warmup_server.py
vendored
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313
third_party/sglang/scripts/ci/cuda/warmup_server.py
vendored
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"""
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Full server warmup to pre-warm Triton autotuning and CUDA graph capture.
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On cold H200 nodes (new nodes or after container recreation), CUDA graph capture
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triggers Triton autotuning which takes ~330s per server launch. This script
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launches actual servers with CUDA graphs enabled to cache the autotuned kernels,
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so subsequent test launches are fast (~30-60s).
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Uses marker files to skip warmup on already-warm nodes. Marker files are
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invalidated when Python, Triton, or PyTorch versions change.
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Usage:
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python3 scripts/ci/cuda/warmup_server.py \
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deepseek-ai/DeepSeek-V3-0324:8 \
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inclusionAI/Ring-2.5-1T:8
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"""
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import hashlib
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import json
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import os
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import signal
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import subprocess
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import sys
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import tempfile
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import time
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from pathlib import Path
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# Reuse helpers from warmup_deep_gemm (same directory)
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sys.path.insert(0, os.path.dirname(__file__))
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from warmup_deep_gemm import get_architecture_key, get_config_json
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MARKER_DIR = os.path.join(os.path.expanduser("~"), ".cache", "sglang", "warmup_markers")
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HEALTH_POLL_INTERVAL = 10 # seconds between health checks
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SERVER_STARTUP_TIMEOUT = 900 # 15 min max to wait for server ready
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DEFAULT_PORT = 39876
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def get_version_key():
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"""Hash of Python + Triton + PyTorch versions to invalidate markers on upgrades."""
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parts = [sys.version]
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try:
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import triton
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parts.append(f"triton={triton.__version__}")
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except ImportError:
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parts.append("triton=none")
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try:
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import torch
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parts.append(f"torch={torch.__version__}")
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except ImportError:
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parts.append("torch=none")
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return hashlib.sha256("|".join(parts).encode()).hexdigest()[:12]
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def get_marker_path(model, tp):
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"""Get the marker file path for a model:tp pair."""
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version_key = get_version_key()
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safe_model = model.replace("/", "--")
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return os.path.join(
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MARKER_DIR, f"server_warmup_{safe_model}_tp{tp}_{version_key}.done"
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)
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def check_marker(model, tp):
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"""Check if warmup marker exists (node already warm)."""
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marker = get_marker_path(model, tp)
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return os.path.exists(marker)
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def write_marker(model, tp):
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"""Write warmup marker after successful warmup."""
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marker = get_marker_path(model, tp)
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os.makedirs(os.path.dirname(marker), exist_ok=True)
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Path(marker).write_text(
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json.dumps(
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{
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"model": model,
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"tp": tp,
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"version_key": get_version_key(),
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"timestamp": time.time(),
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}
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)
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)
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print(f" Wrote marker: {marker}")
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def kill_server(proc):
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"""Kill server process tree."""
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if proc.poll() is not None:
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return
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try:
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os.killpg(os.getpgid(proc.pid), signal.SIGTERM)
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except (ProcessLookupError, OSError):
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pass
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try:
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proc.wait(timeout=15)
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except subprocess.TimeoutExpired:
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try:
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os.killpg(os.getpgid(proc.pid), signal.SIGKILL)
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except (ProcessLookupError, OSError):
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pass
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try:
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proc.wait(timeout=5)
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except subprocess.TimeoutExpired:
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pass
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def wait_for_server(base_url, proc, timeout):
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"""Poll /health_generate until server is ready or timeout."""
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import requests
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start = time.time()
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while time.time() - start < timeout:
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ret = proc.poll()
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if ret is not None:
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return False, f"Server exited with code {ret}"
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try:
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resp = requests.get(f"{base_url}/health_generate", timeout=5)
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if resp.status_code == 200:
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return True, None
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except requests.RequestException:
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pass
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time.sleep(HEALTH_POLL_INTERVAL)
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return False, "Timed out waiting for server"
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def send_generate_request(base_url):
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"""Send one /generate request to exercise the full inference path."""
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import requests
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payload = {
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"input_ids": [0, 1, 2, 3],
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"sampling_params": {
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"max_new_tokens": 8,
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"temperature": 0,
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},
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}
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try:
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resp = requests.post(f"{base_url}/generate", json=payload, timeout=120)
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if resp.status_code == 200:
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print(" Generate request succeeded")
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else:
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print(f" Warning: generate request returned {resp.status_code}")
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except requests.RequestException as e:
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print(f" Warning: generate request failed: {e}")
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def warmup_one_model(model, tp, port):
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"""Launch server, wait for ready, send one request, then kill."""
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base_url = f"http://127.0.0.1:{port}"
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cmd = [
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sys.executable,
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"-m",
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"sglang.launch_server",
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"--model-path",
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model,
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"--tp",
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str(tp),
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"--host",
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"127.0.0.1",
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"--port",
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str(port),
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"--trust-remote-code",
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"--model-loader-extra-config",
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'{"enable_multithread_load": true, "num_threads": 64}',
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]
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# Use a temp file for server output to avoid pipe buffer deadlock
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# (server logs can exceed the 64KB pipe buffer during CUDA graph capture)
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log_file = tempfile.NamedTemporaryFile(
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mode="w", prefix="warmup_server_", suffix=".log", delete=False
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)
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log_path = log_file.name
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print(f" Launching server: {' '.join(cmd)}")
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print(f" Server log: {log_path}")
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proc = subprocess.Popen(
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cmd,
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stdout=log_file,
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stderr=subprocess.STDOUT,
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preexec_fn=os.setsid,
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)
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try:
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# Wait for server to be ready (includes CUDA graph capture)
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print(
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f" Waiting for server (timeout={SERVER_STARTUP_TIMEOUT}s, "
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f"polling every {HEALTH_POLL_INTERVAL}s)..."
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)
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ok, err = wait_for_server(base_url, proc, SERVER_STARTUP_TIMEOUT)
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if not ok:
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print(f" Warning: server not ready: {err}")
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# Dump last lines of server log for debugging
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try:
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log_file.flush()
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with open(log_path) as f:
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lines = f.readlines()
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for line in lines[-20:]:
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print(f" | {line.rstrip()}")
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except Exception:
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pass
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return False
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print(" Server ready, sending generate request...")
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send_generate_request(base_url)
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return True
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finally:
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print(" Killing server...")
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kill_server(proc)
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log_file.close()
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try:
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os.unlink(log_path)
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except OSError:
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pass
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def main():
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if len(sys.argv) < 2 or sys.argv[1] in ("-h", "--help"):
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print("Usage: warmup_server.py model1:tp1 [model2:tp2 ...]")
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print(
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"\nLaunches full servers with CUDA graphs enabled to pre-warm"
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" Triton autotuning."
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)
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print("Skips instantly on warm nodes (marker file exists).")
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sys.exit(0)
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# Parse model:tp pairs
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model_tp_pairs = []
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for arg in sys.argv[1:]:
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if ":" not in arg:
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print(f"Error: expected model:tp format, got '{arg}'")
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sys.exit(1)
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model, tp_str = arg.rsplit(":", 1)
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model_tp_pairs.append((model, int(tp_str)))
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print(f"=== Server CUDA Graph Warmup ({len(model_tp_pairs)} model(s)) ===")
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print(f" Marker dir: {MARKER_DIR}")
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print(f" Version key: {get_version_key()}\n")
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# Deduplicate by architecture and check markers
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seen_keys = {}
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to_warmup = []
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for model, tp in model_tp_pairs:
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# Check marker first (fast path)
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if check_marker(model, tp):
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print(f" SKIP {model} (tp={tp}): already warm (marker exists)")
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continue
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# Architecture dedup
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config = get_config_json(model)
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if config is not None:
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key = get_architecture_key(config, tp)
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if key in seen_keys:
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print(
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f" DEDUP {model} (tp={tp}): same architecture as {seen_keys[key]}"
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)
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continue
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seen_keys[key] = model
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to_warmup.append((model, tp))
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print(f" QUEUE {model} (tp={tp}): needs warmup")
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if not to_warmup:
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print("\nAll models already warm. Done.")
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return
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print(f"\n{len(to_warmup)} model(s) to warm up.\n")
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port = DEFAULT_PORT
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for i, (model, tp) in enumerate(to_warmup, 1):
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print(f"\n{'=' * 60}")
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print(f"[{i}/{len(to_warmup)}] {model} (tp={tp})")
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print(f"{'=' * 60}")
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t0 = time.time()
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success = warmup_one_model(model, tp, port)
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elapsed = time.time() - t0
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if success:
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print(f" Completed in {elapsed:.0f}s")
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write_marker(model, tp)
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# Also write markers for dedup'd models that share this architecture
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config = get_config_json(model)
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if config is not None:
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key = get_architecture_key(config, tp)
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for other_model, other_tp in model_tp_pairs:
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if (other_model, other_tp) == (model, tp):
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continue
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other_config = get_config_json(other_model)
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if other_config is not None:
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other_key = get_architecture_key(other_config, other_tp)
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if other_key == key and not check_marker(other_model, other_tp):
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write_marker(other_model, other_tp)
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print(
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f" Also marked {other_model} (tp={other_tp}) as warm (same arch)"
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)
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else:
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print(
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f" Warning: warmup failed after {elapsed:.0f}s (non-fatal, tests will still work)"
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)
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# Use a different port for the next model to avoid bind conflicts
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port += 100
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print("\nServer CUDA graph warmup complete.")
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if __name__ == "__main__":
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main()
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