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"""Concurrent API correctness/load check for ds4-server session batching.
Each case is submitted twice with the same non-zero seed. The pairs run in one
cold concurrent wave and must return identical output, even though prompt sizes
and output limits differ across cases. A fresh nonce avoids accidental reuse of
an earlier run's in-memory or disk checkpoint.
"""
import argparse
import concurrent.futures
import json
import math
import statistics
import sys
import threading
import time
import urllib.error
import urllib.request
CASES = (
("short-greedy", 0, 80, 0.0, 101),
("medium-sampled", 384, 72, 0.7, 202),
("long-greedy", 2304, 48, 0.0, 303),
("short-sampled", 32, 96, 0.65, 404),
("very-long-sampled", 3600, 32, 0.75, 505),
("medium-greedy", 1024, 64, 0.0, 606),
("long-sampled", 2048, 40, 0.7, 707),
("tiny-sampled", 0, 96, 0.6, 808),
)
def percentile(values, fraction):
ordered = sorted(values)
return ordered[max(0, math.ceil(len(ordered) * fraction) - 1)]
def make_payload(case, case_number, nonce, stream):
name, filler_words, max_tokens, temperature, seed = case
filler = (" alpha beta gamma delta" * ((filler_words + 3) // 4))
filler = " ".join(filler.split()[:filler_words])
prompt = (
"This is batching test %s case %d (%s). Read the filler, then write "
"a concise explanation of why deterministic request isolation matters. "
"Do not quote the filler.\nFILLER:\n%s"
) % (nonce, case_number, name, filler)
payload = {
"model": "deepseek-chat",
"messages": [{"role": "user", "content": prompt}],
"max_tokens": max_tokens,
"temperature": temperature,
"top_p": 0.9,
"seed": seed + case_number * 1000,
"stream": stream,
}
if stream:
payload["stream_options"] = {"include_usage": True}
return name, filler_words, payload
def parse_stream(raw):
content = []
reasoning = []
finish = None
usage = None
for line in raw.decode("utf-8", errors="replace").splitlines():
if not line.startswith("data:"):
continue
data = line[5:].strip()
if not data or data == "[DONE]":
continue
event = json.loads(data)
if event.get("usage"):
usage = event["usage"]
choices = event.get("choices") or []
if not choices:
continue
choice = choices[0]
delta = choice.get("delta") or {}
if delta.get("content") is not None:
content.append(delta["content"])
if delta.get("reasoning_content") is not None:
reasoning.append(delta["reasoning_content"])
if choice.get("finish_reason") is not None:
finish = choice["finish_reason"]
return {
"content": "".join(content),
"reasoning": "".join(reasoning),
"finish": finish,
"completion_tokens": (usage or {}).get("completion_tokens"),
}
def post_chat(url, payload, timeout, start_event):
start_event.wait()
body = json.dumps(payload, separators=(",", ":")).encode("utf-8")
req = urllib.request.Request(
url.rstrip("/") + "/v1/chat/completions",
data=body,
headers={"Content-Type": "application/json"},
method="POST",
)
started = time.monotonic()
try:
with urllib.request.urlopen(req, timeout=timeout) as response:
raw = response.read()
except urllib.error.HTTPError as exc:
detail = exc.read().decode("utf-8", errors="replace")
raise RuntimeError("HTTP %d: %s" % (exc.code, detail)) from exc
elapsed = time.monotonic() - started
if payload["stream"]:
result = parse_stream(raw)
else:
response = json.loads(raw)
choice = response["choices"][0]
message = choice.get("message") or {}
result = {
"content": message.get("content") or "",
"reasoning": message.get("reasoning_content") or "",
"finish": choice.get("finish_reason"),
"completion_tokens": (response.get("usage") or {}).get(
"completion_tokens"
),
}
result["elapsed"] = elapsed
return result
def comparable(result):
return (
result["content"],
result["reasoning"],
result["finish"],
result["completion_tokens"],
)
def main():
parser = argparse.ArgumentParser()
parser.add_argument("--url", default="http://127.0.0.1:8000")
parser.add_argument("--pairs", type=int, default=4)
parser.add_argument("--workers", type=int, default=0)
parser.add_argument("--timeout", type=float, default=1800.0)
parser.add_argument("--stream", action="store_true")
parser.add_argument("--nonce", default="")
parser.add_argument(
"--case", choices=[case[0] for case in CASES],
help="repeat one case shape instead of cycling through mixed lengths",
)
args = parser.parse_args()
if args.pairs <= 0:
parser.error("--pairs must be positive")
nonce = args.nonce or "cold-%d" % time.time_ns()
requests = []
metadata = []
for i in range(args.pairs):
case = next((c for c in CASES if c[0] == args.case), None)
if case is None:
case = CASES[i % len(CASES)]
name, filler_words, payload = make_payload(case, i, nonce, args.stream)
for copy in range(2):
requests.append(payload)
metadata.append((i, copy, name, filler_words))
workers = args.workers or len(requests)
workers = max(1, min(workers, len(requests)))
start_event = threading.Event()
wall_start = time.monotonic()
with concurrent.futures.ThreadPoolExecutor(max_workers=workers) as executor:
futures = [
executor.submit(post_chat, args.url, payload, args.timeout, start_event)
for payload in requests
]
start_event.set()
results = [future.result() for future in futures]
wall = time.monotonic() - wall_start
failures = 0
for i in range(args.pairs):
a = results[2 * i]
b = results[2 * i + 1]
if comparable(a) != comparable(b):
failures += 1
print("MISMATCH pair=%d case=%s" % (i, metadata[2 * i][2]), file=sys.stderr)
print(" A=%s" % (json.dumps(a, ensure_ascii=True)[:1000]), file=sys.stderr)
print(" B=%s" % (json.dumps(b, ensure_ascii=True)[:1000]), file=sys.stderr)
latencies = [result["elapsed"] for result in results]
known_tokens = [
result["completion_tokens"]
for result in results
if result["completion_tokens"] is not None
]
summary = {
"status": "PASS" if failures == 0 else "FAIL",
"pairs": args.pairs,
"requests": len(requests),
"workers": workers,
"stream": args.stream,
"wall_seconds": round(wall, 3),
"latency_p50_seconds": round(statistics.median(latencies), 3),
"latency_p95_seconds": round(percentile(latencies, 0.95), 3),
"completion_tokens": sum(known_tokens) if known_tokens else None,
"completion_tokens_per_second": (
round(sum(known_tokens) / wall, 2) if known_tokens else None
),
"nonce": nonce,
}
print(json.dumps(summary, sort_keys=True))
return 0 if failures == 0 else 1
if __name__ == "__main__":
raise SystemExit(main())
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