88e86b3faccd
Rebuild benchmarks as a clean single-root reposi
2 months ago
| 1 | #!/usr/bin/env python3
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| 2 | """One command, one verdict: is this Oak changeset better, same, or worse?
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| 3 |
|
| 4 | The inner loop for agents developing Oak against this suite:
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| 5 |
|
| 6 | 1. Resolve (or `cargo build --release`) the local Oak binary from the Oak
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| 7 | source checkout.
|
| 8 | 2. Measure the host's noise floor with an A/A null test: the SAME baseline
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| 9 | binary runs as two subjects on the micro profile, and the spread between
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| 10 | them is what zero looks like on this machine right now. Latency deltas
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| 11 | smaller than the floor are never claimed (a benchmark that doesn't know
|
| 12 | its own noise will happily report it as signal).
|
| 13 | 3. Run the comparison lanes (core, workflow, contention) with git, the
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| 14 | installed Oak baseline, and the local changeset.
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e9b767a51662
Preserve measured agent failures and validate ca
9 days ago
| 15 | 4. Print a one-screen verdict and exit 0 (PASS), 1 (REGRESSED), or 2 (UNMEASURED).
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88e86b3faccd
Rebuild benchmarks as a clean single-root reposi
2 months ago
| 16 |
|
| 17 | Examples:
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| 18 |
|
| 19 | python3 scripts/devloop.py # build ../oak, full quick loop
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| 20 | python3 scripts/devloop.py --oak-local-bin ../oak/target/release/oak --skip-build
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| 21 | python3 scripts/devloop.py --lanes core # fastest signal only
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| 22 |
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| 23 | Thresholds follow the suite's regression policy: efficiency gates (exact
|
| 24 | metrics: tool calls, output bytes) apply to the Oak-baseline comparison only
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| 25 | (ADR-0004); the Git comparison is a latency guardrail.
|
| 26 | """
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| 27 |
|
| 28 | from __future__ import annotations
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| 29 |
|
| 30 | import argparse
|
| 31 | import dataclasses
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| 32 | import json
|
| 33 | import shutil
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| 34 | import statistics
|
| 35 | import subprocess
|
| 36 | import sys
|
| 37 | import time
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| 38 | from datetime import datetime, timezone
|
| 39 | from pathlib import Path
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| 40 | from typing import Any, Optional
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| 41 |
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| 42 | from oakbench import remotes as oakbench_remotes
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e9b767a51662
Preserve measured agent failures and validate ca
9 days ago
| 43 | from oakbench.reporting import percentile_nearest, slower_pct, symmetric_ratio_spread_pct
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88e86b3faccd
Rebuild benchmarks as a clean single-root reposi
2 months ago
| 44 | from oakbench.rows import output_bytes as row_output_bytes
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| 45 | from oakbench.rows import row_returncode
|
| 46 | from oakbench.rows import token_total as row_token_total
|
| 47 | from oakbench.rows import tool_calls as row_tool_calls
|
| 48 | from oakbench.subjects import DEFAULT_OAK_REPO
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| 49 |
|
| 50 | ROOT = Path(__file__).resolve().parents[1]
|
| 51 | SCRIPTS = ROOT / "scripts"
|
| 52 | LANES = ("core", "workflow", "contention")
|
| 53 | DEFAULT_CONTENTION_WORKERS = "2,8"
|
| 54 | DEFAULT_CONTENTION_COMMITS_PER_WORKER = 3
|
| 55 | DEFAULT_CONTENTION_MODES = "shared_checkout,workspace_per_task,clone_push_storm"
|
| 56 | SKIP_RETURNCODE = 77
|
| 57 |
|
| 58 | # Operations excluded from the noise floor: process spawn and sub-steps have
|
| 59 | # the largest relative jitter and are not the deltas the verdict gates on.
|
| 60 | NOISE_FLOOR_EXCLUDED = ("proc.spawn",)
|
| 61 | NOISE_FLOOR_MIN_PCT = 3.0
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| 62 |
|
| 63 |
|
| 64 | def parse_args() -> argparse.Namespace:
|
| 65 | parser = argparse.ArgumentParser(description=__doc__, formatter_class=argparse.RawDescriptionHelpFormatter)
|
| 66 | parser.add_argument("--oak-repo", type=Path, default=DEFAULT_OAK_REPO)
|
| 67 | parser.add_argument("--oak-local-bin", type=Path, help="Use this binary instead of building --oak-repo.")
|
| 68 | parser.add_argument(
|
| 69 | "--oak-baseline-bin",
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| 70 | type=Path,
|
| 71 | help="Oak baseline binary (default: `oak` on PATH = released install).",
|
| 72 | )
|
| 73 | parser.add_argument("--skip-build", action="store_true", help="Never run cargo; require --oak-local-bin.")
|
| 74 | parser.add_argument("--lanes", default="core,workflow,contention", help=f"Comma list from: {', '.join(LANES)}")
|
| 75 | parser.add_argument(
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| 76 | "--contention-workers",
|
| 77 | default=DEFAULT_CONTENTION_WORKERS,
|
| 78 | help="Comma-separated worker tiers for the contention lane; launch gates use 16,32,64,128.",
|
| 79 | )
|
| 80 | parser.add_argument(
|
| 81 | "--contention-commits-per-worker",
|
| 82 | type=int,
|
| 83 | default=DEFAULT_CONTENTION_COMMITS_PER_WORKER,
|
| 84 | )
|
| 85 | parser.add_argument(
|
| 86 | "--contention-modes",
|
| 87 | default=DEFAULT_CONTENTION_MODES,
|
| 88 | help="Comma-separated parallel_contention modes to run in devloop.",
|
| 89 | )
|
| 90 | parser.add_argument("--runs", type=int, default=2, help="Repetitions per comparison lane.")
|
| 91 | parser.add_argument("--noise-floor-runs", type=int, default=3, help="A/A repetitions on the micro profile.")
|
| 92 | parser.add_argument("--skip-noise-floor", action="store_true")
|
| 93 | parser.add_argument("--results", type=Path, default=ROOT / "results" / "devloop")
|
| 94 | parser.add_argument("--oak-threshold-pct", type=float, default=10.0)
|
| 95 | parser.add_argument("--git-threshold-pct", type=float, default=25.0)
|
| 96 | parser.add_argument("--min-delta-ms", type=float, default=5.0)
|
| 97 | parser.add_argument("--output-bytes-threshold-pct", type=float, default=25.0)
|
| 98 | parser.add_argument(
|
| 99 | "--scorecard",
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| 100 | action="store_true",
|
| 101 | help="Append a target scorecard vs the CURRENT Git Baseline Book (informational; never changes the verdict exit code).",
|
| 102 | )
|
| 103 | return parser.parse_args()
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| 104 |
|
| 105 |
|
| 106 | def scorecard_lines(rows: list[dict[str, Any]], root: Path = ROOT, noise_floor_pct: float | None = None) -> list[str]:
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| 107 | """Target-TDD lines for the devloop report; regression-TDD owns the exit code."""
|
| 108 | targets_path = root / "config" / "targets.json"
|
| 109 | if not targets_path.exists():
|
| 110 | return ["- no targets config (config/targets.json missing)"]
|
| 111 | current = root / "baselines" / "git" / "CURRENT"
|
| 112 | if not current.exists():
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| 113 | return ["- no baseline book (baselines/git/CURRENT missing); run scripts/baseline_campaign.py run"]
|
| 114 | book_id = current.read_text().strip()
|
| 115 | book_path = root / "baselines" / "git" / book_id / "book.json"
|
| 116 | if not book_path.exists():
|
| 117 | return [f"- baseline book {book_id!r} is named by CURRENT but has no book.json"]
|
| 118 | from oakbench.baseline_book import load_baseline_book, load_targets
|
| 119 | from oakbench.scorecard import evaluate_targets
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| 120 |
|
| 121 | baseline = load_baseline_book(book_path)
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| 122 | if noise_floor_pct is not None:
|
| 123 | baseline = {
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| 124 | key: dataclasses.replace(
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| 125 | cell,
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| 126 | noise_floor_pct=max(float(cell.noise_floor_pct or 0.0), float(noise_floor_pct)),
|
| 127 | )
|
| 128 | for key, cell in baseline.items()
|
| 129 | }
|
| 130 | results = evaluate_targets(rows, load_targets(targets_path), baseline)
|
| 131 | lines = []
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| 132 | for item in results:
|
| 133 | ratio = item.get("ratio")
|
| 134 | ratio_text = "" if ratio is None else f" ratio {ratio:.3f} vs goal {item['goal_value']:.3f}"
|
| 135 | notes = "; ".join(str(note) for note in item.get("messages") or [])
|
| 136 | lines.append(f"- {item['verdict']} `{item['target_id']}`{ratio_text}" + (f" β {notes}" if notes else ""))
|
| 137 | return lines or ["- no targets defined"]
|
| 138 |
|
| 139 |
|
| 140 | def run_lane(command: list[str], label: str) -> None:
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| 141 | print(f"[devloop] {label}: {' '.join(str(part) for part in command)}", flush=True)
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| 142 | proc = subprocess.run(command, cwd=ROOT, check=False)
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| 143 | # Lane exit codes signal benchmark-operation failures; the verdict reads
|
| 144 | # those from the rows, so a nonzero lane exit is not fatal here.
|
| 145 | if proc.returncode not in (0, 1):
|
| 146 | raise SystemExit(f"{label} failed to run (exit {proc.returncode})")
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| 147 |
|
| 148 |
|
| 149 | def _csv(value: str) -> list[str]:
|
| 150 | return [item.strip() for item in value.split(",") if item.strip()]
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| 151 |
|
| 152 |
|
| 153 | def remote_preflight_requirements(
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| 154 | lanes: list[str],
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| 155 | *,
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| 156 | contention_modes: list[str] | None = None,
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| 157 | contention_workers: list[str] | None = None,
|
| 158 | ) -> list[oakbench_remotes.RemoteRequirement]:
|
| 159 | requirements: list[oakbench_remotes.RemoteRequirement] = []
|
| 160 | if "core" in lanes:
|
| 161 | requirements.append(
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| 162 | oakbench_remotes.RemoteRequirement(
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| 163 | purpose="default",
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| 164 | lane="devloop/core",
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| 165 | operations=(
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| 166 | "remote.net.push.first",
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| 167 | "remote.net.clone.cold",
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| 168 | "remote.net.fetch.uptodate",
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| 169 | ),
|
| 170 | )
|
| 171 | )
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| 172 | if "workflow" in lanes:
|
| 173 | requirements.append(
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| 174 | oakbench_remotes.RemoteRequirement(
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| 175 | purpose="sync",
|
| 176 | lane="devloop/workflow",
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| 177 | operations=(
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| 178 | "sync_push_divergence/workflow.skipped",
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| 179 | "sync_pull_upstream/workflow.skipped",
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| 180 | "sync_pull_dirty/workflow.skipped",
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| 181 | "sync_non_ff_after_amend/workflow.skipped",
|
| 182 | ),
|
| 183 | )
|
| 184 | )
|
| 185 | if "contention" in lanes:
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| 186 | modes = contention_modes or _csv(DEFAULT_CONTENTION_MODES)
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| 187 | workers = contention_workers or _csv(DEFAULT_CONTENTION_WORKERS)
|
| 188 | operations: list[str] = []
|
| 189 | if "workspace_per_task" in modes:
|
| 190 | operations.extend(
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| 191 | f"contention_workspace_per_task_w{workers_level}/parallel.total"
|
| 192 | for workers_level in workers
|
| 193 | )
|
| 194 | if "clone_push_storm" in modes:
|
| 195 | operations.extend(
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| 196 | f"contention_clone_push_storm_w{workers_level}/parallel.total"
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| 197 | for workers_level in workers
|
| 198 | )
|
| 199 | if operations:
|
| 200 | requirements.append(
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| 201 | oakbench_remotes.RemoteRequirement(
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| 202 | purpose="fleet",
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| 203 | lane="devloop/contention",
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| 204 | operations=tuple(operations),
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| 205 | )
|
| 206 | )
|
| 207 | return requirements
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| 208 |
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| 209 |
|
| 210 | def build_oak_local(oak_repo: Path) -> Path:
|
| 211 | cargo_toml = oak_repo / "Cargo.toml"
|
| 212 | if not cargo_toml.exists():
|
| 213 | raise SystemExit(
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| 214 | f"No Cargo.toml at {oak_repo}; pass --oak-local-bin or --oak-repo. "
|
| 215 | "devloop never mutates the Oak source checkout, it only builds it."
|
| 216 | )
|
| 217 | if shutil.which("cargo") is None:
|
| 218 | raise SystemExit("cargo is not installed; pass --oak-local-bin instead of building.")
|
| 219 | print(f"[devloop] building oak from {oak_repo} (cargo build --release)", flush=True)
|
| 220 | start = time.perf_counter()
|
| 221 | proc = subprocess.run(
|
| 222 | ["cargo", "build", "--release"],
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| 223 | cwd=oak_repo,
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| 224 | text=True,
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| 225 | stdout=subprocess.PIPE,
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| 226 | stderr=subprocess.STDOUT,
|
| 227 | check=False,
|
| 228 | )
|
| 229 | elapsed = time.perf_counter() - start
|
| 230 | if proc.returncode != 0:
|
| 231 | tail = "\n".join(proc.stdout.splitlines()[-25:])
|
| 232 | raise SystemExit(f"cargo build failed (exit {proc.returncode}) after {elapsed:.0f}s:\n{tail}")
|
| 233 | binary = oak_repo / "target" / "release" / "oak"
|
| 234 | if not binary.exists():
|
| 235 | raise SystemExit(f"build succeeded but {binary} does not exist")
|
| 236 | print(f"[devloop] built {binary} in {elapsed:.0f}s", flush=True)
|
| 237 | return binary
|
| 238 |
|
| 239 |
|
| 240 | def load_jsonl(path: Path) -> list[dict[str, Any]]:
|
| 241 | try:
|
| 242 | text = path.read_text()
|
| 243 | except FileNotFoundError:
|
| 244 | raise SystemExit(f"[devloop] result JSONL missing: {path}") from None
|
| 245 | except OSError as exc:
|
| 246 | raise SystemExit(f"[devloop] result JSONL unreadable: {path}: {exc}") from None
|
| 247 |
|
| 248 | rows: list[dict[str, Any]] = []
|
| 249 | for line_number, line in enumerate(text.splitlines(), start=1):
|
| 250 | stripped = line.strip()
|
| 251 | if not stripped:
|
| 252 | continue
|
| 253 | try:
|
| 254 | row = json.loads(stripped)
|
| 255 | except json.JSONDecodeError as exc:
|
| 256 | raise SystemExit(
|
| 257 | f"[devloop] malformed result JSONL: {path}:{line_number}: {exc.msg}"
|
| 258 | ) from None
|
| 259 | if not isinstance(row, dict):
|
| 260 | raise SystemExit(f"[devloop] result JSONL row is not an object: {path}:{line_number}") from None
|
| 261 | rows.append(row)
|
| 262 |
|
| 263 | if not rows:
|
| 264 | raise SystemExit(f"[devloop] result JSONL contains no rows: {path}")
|
| 265 | return rows
|
| 266 |
|
| 267 |
|
| 268 | def median_by_key(
|
| 269 | rows: list[dict[str, Any]], value_of, *, successful_only: bool = True
|
| 270 | ) -> dict[tuple[str, str, str], float]:
|
| 271 | grouped: dict[tuple[str, str, str], list[float]] = {}
|
| 272 | for row in rows:
|
| 273 | operation = str(row.get("operation") or "")
|
| 274 | if operation.endswith((".add", ".commit")):
|
| 275 | continue
|
| 276 | if successful_only and row_returncode(row) != 0:
|
| 277 | continue
|
| 278 | value = value_of(row)
|
| 279 | if value is None:
|
| 280 | continue
|
| 281 | key = (str(row.get("subject")), str(row.get("scenario")), operation)
|
| 282 | grouped.setdefault(key, []).append(float(value))
|
| 283 | return {key: float(statistics.median(values)) for key, values in grouped.items()}
|
| 284 |
|
| 285 |
|
| 286 | def outcome_counts_by_key(rows: list[dict[str, Any]]) -> dict[tuple[str, str, str], dict[str, int]]:
|
| 287 | counts: dict[tuple[str, str, str], dict[str, int]] = {}
|
| 288 | for row in rows:
|
| 289 | operation = str(row.get("operation") or "")
|
| 290 | if operation.endswith((".add", ".commit")):
|
| 291 | continue
|
| 292 | key = (str(row.get("subject")), str(row.get("scenario")), operation)
|
| 293 | item = counts.setdefault(key, {"success": 0, "failure": 0, "skip": 0})
|
| 294 | returncode = row_returncode(row)
|
| 295 | if returncode == 0 and not row.get("skipped"):
|
| 296 | item["success"] += 1
|
| 297 | elif returncode == SKIP_RETURNCODE or row.get("skipped"):
|
| 298 | item["skip"] += 1
|
| 299 | else:
|
| 300 | item["failure"] += 1
|
| 301 | return counts
|
| 302 |
|
| 303 |
|
| 304 | def diagnostic_operation(operation: str) -> bool:
|
| 305 | return operation.endswith((".determinism", ".inforecall"))
|
| 306 |
|
| 307 |
|
| 308 | def measure_noise_floor(aa_dir: Path, baseline_bin: Path, runs: int) -> tuple[float, int]:
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| 309 | """A/A null test: same binary as both subjects. Returns (p95 symmetric ratio spread, ops)."""
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| 310 | run_lane(
|
| 311 | [
|
| 312 | sys.executable,
|
| 313 | str(SCRIPTS / "bench.py"),
|
| 314 | "--profile",
|
| 315 | "micro",
|
| 316 | "--runs",
|
| 317 | str(runs),
|
| 318 | "--subjects",
|
| 319 | "oak_installed,oak_local",
|
| 320 | "--oak-installed-bin",
|
| 321 | str(baseline_bin),
|
| 322 | "--oak-local-bin",
|
| 323 | str(baseline_bin),
|
| 324 | "--skip-determinism-probe",
|
| 325 | "--skip-remote",
|
| 326 | "--randomize-subject-order",
|
| 327 | "--results",
|
| 328 | str(aa_dir),
|
| 329 | ],
|
| 330 | "noise floor (A/A)",
|
| 331 | )
|
| 332 | rows = load_jsonl(aa_dir / "latest.jsonl")
|
| 333 | medians = median_by_key(rows, lambda row: row.get("elapsed_ms"))
|
| 334 | spreads: list[float] = []
|
| 335 | for (subject, scenario, operation), value in medians.items():
|
| 336 | if subject != "oak_installed" or operation in NOISE_FLOOR_EXCLUDED or operation.startswith("mode.setup"):
|
| 337 | continue
|
| 338 | other = medians.get(("oak_local", scenario, operation))
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| 339 | pct = symmetric_ratio_spread_pct(value, other)
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| 340 | if pct is not None:
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| 341 | spreads.append(pct)
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| 342 | if not spreads:
|
| 343 | return NOISE_FLOOR_MIN_PCT, 0
|
| 344 | p95 = percentile_nearest(spreads, 95.0) or NOISE_FLOOR_MIN_PCT
|
| 345 | return max(p95, NOISE_FLOOR_MIN_PCT), len(spreads)
|
| 346 |
|
| 347 |
|
| 348 | def vcs_operations(rows: list[dict[str, Any]]) -> set[tuple[str, str]]:
|
| 349 | """(scenario, operation) pairs that actually invoke the subject's VCS.
|
| 350 |
|
| 351 | Latency gates apply only to these: search/read/edit/test steps run
|
| 352 | identical commands for every subject, so a delta there is host noise, not
|
| 353 | the changeset.
|
| 354 | """
|
| 355 | ops: set[tuple[str, str]] = set()
|
| 356 | for row in rows:
|
| 357 | if int(row.get("vcs_tool_call_count", 0) or 0) >= 1:
|
| 358 | ops.add((str(row.get("scenario")), str(row.get("operation"))))
|
| 359 | return ops
|
| 360 |
|
| 361 |
|
| 362 | def embedded_null_p95(rows: list[dict[str, Any]], target: str, baseline: str) -> tuple[float, int]:
|
| 363 | """Noise estimate from identical-command steps: the spread between subjects
|
| 364 | on operations with zero VCS calls is what zero looks like in this lane."""
|
| 365 | latency = median_by_key(rows, lambda row: row.get("elapsed_ms"))
|
| 366 | vcs_ops = vcs_operations(rows)
|
| 367 | outcomes = outcome_counts_by_key(rows)
|
| 368 | spreads: list[float] = []
|
| 369 | for (subject, scenario, operation), value in latency.items():
|
| 370 | if subject != baseline or (scenario, operation) in vcs_ops or diagnostic_operation(operation):
|
| 371 | continue
|
| 372 | baseline_outcome = outcomes.get((baseline, scenario, operation), {})
|
| 373 | target_outcome = outcomes.get((target, scenario, operation), {})
|
| 374 | if baseline_outcome.get("failure", 0) or baseline_outcome.get("skip", 0):
|
| 375 | continue
|
| 376 | if target_outcome.get("failure", 0) or target_outcome.get("skip", 0):
|
| 377 | continue
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| 378 | pct = symmetric_ratio_spread_pct(value, latency.get((target, scenario, operation)))
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| 379 | if pct is not None:
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| 380 | spreads.append(pct)
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| 381 | if not spreads:
|
| 382 | return 0.0, 0
|
| 383 | return percentile_nearest(spreads, 95.0) or 0.0, len(spreads)
|
| 384 |
|
| 385 |
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| 386 | def same_patch_failure(left: dict[str, Any], right: dict[str, Any]) -> bool:
|
| 387 | if left.get("patch_failure_source") == "subject_tree_manifest_comparison":
|
| 388 | fields = ("patch_failure_source", "patch_failure_reason", "patch_oracle_version",
|
| 389 | "patch_input_sha256", "patch_expected_tree_sha256", "patch_subject_tree_after_sha256")
|
| 390 | return (left.get("patch_apply_ok") is False and right.get("patch_apply_ok") is False
|
| 391 | and left.get("patch_failure_reason") == "diff_mutated_subject_tree"
|
| 392 | and all(isinstance(left.get(field), str) and len(left[field]) == 64 for field in fields[3:])
|
| 393 | and all(left.get(field) == right.get(field) for field in fields))
|
| 394 | fields = ("patch_input_sha256", "patch_expected_tree_sha256", "patch_apply_returncode",
|
| 395 | "patch_failure_reason", "patch_oracle_version", "patch_instrument_sha256",
|
| 396 | "patch_instrument_version")
|
| 397 | fingerprints = all(isinstance(left.get(field), str) and len(left[field]) == 64
|
| 398 | for field in fields[:2])
|
| 399 | return (fingerprints and left.get("patch_apply_ok") is False and right.get("patch_apply_ok") is False
|
| 400 | and type(left.get("patch_apply_returncode")) is int
|
| 401 | and bool(left.get("patch_failure_reason")) and bool(left.get("patch_oracle_version"))
|
| 402 | and isinstance(left.get("patch_instrument_sha256"), str) and len(left["patch_instrument_sha256"]) == 64
|
| 403 | and bool(left.get("patch_instrument_version"))
|
| 404 | and all(left.get(field) == right.get(field) for field in fields))
|
| 405 |
|
| 406 |
|
| 407 | def preexisting_patch_breach(breach: str, rows: list[dict[str, Any]]) -> bool:
|
| 408 | target_rows = [row for row in rows if row.get("subject") == "oak_local"
|
| 409 | and breach.startswith(f"{breach.split(' ', 1)[0]} `{row.get('scenario')}/{row.get('operation')}`:")]
|
| 410 | if not target_rows:
|
| 411 | return False
|
| 412 | for target_row in target_rows:
|
| 413 | baseline_rows = [row for row in rows if row.get("subject") == "oak_installed"
|
| 414 | and (row.get("scenario"), row.get("operation")) ==
|
| 415 | (target_row.get("scenario"), target_row.get("operation"))]
|
| 416 | baseline_rows = [base for base in baseline_rows if base.get("run") == target_row.get("run")]
|
| 417 | if not baseline_rows or not all(same_patch_failure(target_row, base) for base in baseline_rows):
|
| 418 | return False
|
| 419 | return True
|
| 420 |
|
| 421 |
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| 422 | def compare_subjects(
|
| 423 | rows: list[dict[str, Any]],
|
| 424 | target: str,
|
| 425 | baseline: str,
|
| 426 | label: str,
|
| 427 | latency_threshold_pct: float,
|
| 428 | min_delta_ms: float,
|
| 429 | *,
|
| 430 | efficiency_gates: bool,
|
| 431 | output_bytes_threshold_pct: float,
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| 432 | diagnostics: list[str] | None = None,
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| 433 | ) -> tuple[list[str], list[str]]:
|
| 434 | """Returns (regressions, improvements) lines for one baseline comparison."""
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| 435 | diagnostics = diagnostics if diagnostics is not None else []
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| 436 | gate_ops = vcs_operations(rows)
|
| 437 | latency = median_by_key(rows, lambda row: row.get("elapsed_ms"))
|
| 438 | tools = median_by_key(rows, row_tool_calls)
|
| 439 | bytes_out = median_by_key(rows, row_output_bytes)
|
| 440 | tokens = median_by_key(rows, row_token_total)
|
| 441 | outcomes = outcome_counts_by_key(rows)
|
| 442 |
|
| 443 | regressions: list[str] = []
|
| 444 | improvements: list[str] = []
|
| 445 | scenario_ops = sorted(
|
| 446 | {
|
| 447 | (scenario, op)
|
| 448 | for subject, scenario, op in set(latency) | set(outcomes)
|
| 449 | if subject in {target, baseline}
|
| 450 | }
|
| 451 | )
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| 452 | target_kinds = {row.get("subject_kind") for row in rows if row.get("subject") == target} - {None}
|
| 453 | baseline_kinds = {row.get("subject_kind") for row in rows if row.get("subject") == baseline} - {None}
|
| 454 | incompatible_remote = (target_kinds == {"oak"} and baseline_kinds == {"git"}) or (target_kinds == {"git"} and baseline_kinds == {"oak"})
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| 455 | for scenario, operation in scenario_ops:
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| 456 | if incompatible_remote and operation.startswith("remote."):
|
| 457 | diagnostics.append(f"INFO TRANSPORT `{scenario}/{operation}`: local Git and network Oak operations are not comparable")
|
| 458 | continue
|
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| 459 | if (scenario, operation) not in gate_ops or diagnostic_operation(operation):
|
| 460 | continue
|
| 461 | target_key = (target, scenario, operation)
|
| 462 | baseline_key = (baseline, scenario, operation)
|
| 463 |
|
| 464 | target_outcome = outcomes.get(target_key, {"success": 0, "failure": 0, "skip": 0})
|
| 465 | baseline_outcome = outcomes.get(baseline_key, {"success": 0, "failure": 0, "skip": 0})
|
| 466 | target_successes = target_outcome["success"]
|
| 467 | target_failures = target_outcome["failure"]
|
| 468 | target_skips = target_outcome["skip"]
|
| 469 | baseline_successes = baseline_outcome["success"]
|
| 470 | baseline_failures = baseline_outcome["failure"]
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| 471 | if baseline_successes and target_successes == 0 and target_failures == 0 and target_skips > 0:
|
| 472 | diagnostics.append(f"UNMEASURED `{scenario}/{operation}` vs {label}: "
|
| 473 | f"target has no measured attempts ({target_skips} skipped)")
|
| 474 | elif baseline_successes and target_successes == 0:
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| 475 | regressions.append(
|
| 476 | f"NO SUCCESS `{scenario}/{operation}` vs {label}: target had 0 successful run(s) "
|
| 477 | f"({target_failures} failed, {target_skips} skipped), baseline had {baseline_successes}"
|
| 478 | )
|
| 479 | else:
|
| 480 | target_attempts = target_successes + target_failures
|
| 481 | baseline_attempts = baseline_successes + baseline_failures
|
| 482 | if target_attempts and baseline_attempts:
|
| 483 | target_failure_rate = target_failures / target_attempts
|
| 484 | baseline_failure_rate = baseline_failures / baseline_attempts
|
| 485 | target_less_reliable = target_failures > baseline_failures or target_successes < baseline_successes
|
| 486 | if target_failure_rate > baseline_failure_rate and target_less_reliable:
|
| 487 | if baseline_failures == 0:
|
| 488 | regressions.append(
|
| 489 | f"FAIL `{scenario}/{operation}` vs {label}: {target_failures} failed run(s), "
|
| 490 | "baseline clean"
|
| 491 | )
|
| 492 | else:
|
| 493 | regressions.append(
|
| 494 | f"FAIL-RATE `{scenario}/{operation}` vs {label}: "
|
| 495 | f"{baseline_failures}/{baseline_attempts} -> {target_failures}/{target_attempts} "
|
| 496 | f"failed run(s); successes {baseline_successes} -> {target_successes}"
|
| 497 | )
|
| 498 |
|
| 499 | if baseline_key not in latency:
|
| 500 | continue
|
| 501 |
|
| 502 | pct = slower_pct(latency[baseline_key], latency.get(target_key))
|
| 503 | delta = (latency.get(target_key) or 0) - latency[baseline_key]
|
| 504 | if pct is not None:
|
| 505 | if pct >= latency_threshold_pct and delta >= min_delta_ms:
|
| 506 | regressions.append(
|
| 507 | f"SLOWER `{scenario}/{operation}` vs {label}: {pct:+.1f}% "
|
| 508 | f"({latency[baseline_key]:.1f} -> {latency[target_key]:.1f} ms)"
|
| 509 | )
|
| 510 | elif pct <= -latency_threshold_pct and -delta >= min_delta_ms:
|
| 511 | improvements.append(
|
| 512 | f"faster `{scenario}/{operation}` vs {label}: {pct:+.1f}% "
|
| 513 | f"({latency[baseline_key]:.1f} -> {latency[target_key]:.1f} ms)"
|
| 514 | )
|
| 515 |
|
| 516 | if efficiency_gates:
|
| 517 | tool_pct = slower_pct(tools.get(baseline_key), tools.get(target_key))
|
| 518 | if tool_pct is not None and tool_pct > 0:
|
| 519 | regressions.append(
|
| 520 | f"TOOLS `{scenario}/{operation}` vs {label}: {tool_pct:+.1f}% "
|
| 521 | f"({tools[baseline_key]:.0f} -> {tools[target_key]:.0f} calls)"
|
| 522 | )
|
| 523 | bytes_pct = slower_pct(bytes_out.get(baseline_key), bytes_out.get(target_key))
|
| 524 | if bytes_pct is not None and bytes_pct > output_bytes_threshold_pct:
|
| 525 | regressions.append(
|
| 526 | f"OUTPUT `{scenario}/{operation}` vs {label}: {bytes_pct:+.1f}% "
|
| 527 | f"({bytes_out[baseline_key]:.0f} -> {bytes_out[target_key]:.0f} bytes)"
|
| 528 | )
|
| 529 | elif bytes_pct is not None and bytes_pct < -output_bytes_threshold_pct:
|
| 530 | improvements.append(
|
| 531 | f"leaner `{scenario}/{operation}` vs {label}: {bytes_pct:+.1f}% output bytes"
|
| 532 | )
|
| 533 | token_pct = slower_pct(tokens.get(baseline_key), tokens.get(target_key))
|
| 534 | if token_pct is not None and token_pct < -output_bytes_threshold_pct:
|
| 535 | improvements.append(f"fewer tokens `{scenario}/{operation}` vs {label}: {token_pct:+.1f}%")
|
| 536 |
|
| 537 | # Output-sufficiency gates: exact semantic metrics from the inforecall
|
| 538 | # probe rows, always on. A changeset can win every token/latency gate by
|
| 539 | # dropping changed-file names from output or breaking piped-diff
|
| 540 | # structure; that is a regression, not an optimization.
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| 541 | oracle_versions: dict[tuple[str, str, str], set[Any]] = {}
|
| 542 | for row in rows:
|
| 543 | if "information_recall" in row or "information_precision" in row:
|
| 544 | key = (str(row.get("subject")), str(row.get("scenario")), str(row.get("operation")))
|
| 545 | oracle_versions.setdefault(key, set()).add(row.get("output_oracle_version"))
|
| 546 | incompatible_output = set()
|
| 547 | for (subject, scenario, operation), versions in oracle_versions.items():
|
| 548 | if subject != target:
|
| 549 | continue
|
| 550 | baseline_versions = oracle_versions.get((baseline, scenario, operation))
|
| 551 | if baseline_versions is not None and (len(versions) != 1 or versions != baseline_versions):
|
| 552 | incompatible_output.add((scenario, operation))
|
| 553 | regressions.append(f"OUTPUT-ORACLE `{scenario}/{operation}`: incompatible output oracle versions")
|
| 554 | output_rows = [row for row in rows if (str(row.get("scenario")), str(row.get("operation"))) not in incompatible_output]
|
| 555 | recall = median_by_key(output_rows, lambda row: row.get("information_recall"))
|
| 556 | precision = median_by_key(output_rows, lambda row: row.get("information_precision"))
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| 557 | pipe_compat = median_by_key(
|
| 558 | rows,
|
| 559 | lambda row: (
|
| 560 | 1.0
|
| 561 | if row.get("pipe_compatible_unified") is True
|
| 562 | else (0.0 if row.get("pipe_compatible_unified") is False else None)
|
| 563 | ),
|
| 564 | )
|
| 565 | for (subject, scenario, operation), value in sorted(recall.items()):
|
| 566 | if subject != target:
|
| 567 | continue
|
| 568 | base_value = recall.get((baseline, scenario, operation))
|
| 569 | if base_value is not None and value < base_value - 1e-6:
|
| 570 | regressions.append(
|
| 571 | f"RECALL `{scenario}/{operation}` vs {label}: changed-file recall "
|
| 572 | f"{base_value:.3f} -> {value:.3f} (output got cheaper by losing information)"
|
| 573 | )
|
| 574 | for (subject, scenario, operation), value in sorted(pipe_compat.items()):
|
| 575 | if subject != target:
|
| 576 | continue
|
| 577 | base_value = pipe_compat.get((baseline, scenario, operation))
|
| 578 | if base_value is not None and value < base_value - 1e-6:
|
| 579 | regressions.append(
|
| 580 | f"PIPE-COMPAT `{scenario}/{operation}` vs {label}: unified-diff structure lost "
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| 581 | f"(rate {base_value:.2f} -> {value:.2f}); this legacy metric checks structure only"
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| 582 | )
|
| 583 |
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| 584 | for (subject, scenario, operation), value in sorted(precision.items()):
|
| 585 | if subject == target:
|
| 586 | base_value = precision.get((baseline, scenario, operation))
|
| 587 | if base_value is not None and value < base_value - 1e-6:
|
| 588 | regressions.append(f"PRECISION `{scenario}/{operation}` vs {label}: {base_value:.3f} -> {value:.3f}")
|
| 589 | patch_cells = {}
|
| 590 | for item in rows:
|
| 591 | if item.get("patch_application_required") is True or "patch_apply_ok" in item:
|
| 592 | key = (str(item.get("subject")), str(item.get("scenario")), str(item.get("operation")))
|
| 593 | patch_cells.setdefault(key, []).append(item)
|
| 594 | for scenario, operation in sorted({(key[1], key[2]) for key in patch_cells if key[0] in {target, baseline}}):
|
| 595 | base_rows = patch_cells.get((baseline, scenario, operation), [])
|
| 596 | target_rows = patch_cells.get((target, scenario, operation), [])
|
| 597 | proven_baseline = any(item.get("patch_apply_ok") is True and item.get("patch_application_required") is True
|
| 598 | for item in base_rows)
|
| 599 | prefix = f"PATCH-APPLY `{scenario}/{operation}`"
|
| 600 | if not target_rows:
|
| 601 | if proven_baseline:
|
| 602 | regressions.append(prefix + ": target omitted previously measured patch evidence")
|
| 603 | elif any(base.get("patch_apply_ok") is True for base in base_rows):
|
| 604 | diagnostics.append("INFO " + prefix + ": target omitted previously measured optional patch evidence")
|
| 605 | continue
|
| 606 | for item in target_rows:
|
| 607 | if item.get("patch_apply_ok") is None:
|
| 608 | severity = "UNMEASURED " if item.get("patch_application_required") is True else "INFO "
|
| 609 | diagnostics.append(severity + prefix + ": " + str(item.get("patch_skip_reason") or "patch evidence unavailable"))
|
| 610 | continue
|
| 611 | instrument_rows = [probe for probe in [item, *[base for base in base_rows if base.get("run") == item.get("run")]]
|
| 612 | if probe.get("patch_apply_ok") is not None
|
| 613 | and probe.get("patch_failure_source") != "subject_tree_manifest_comparison"]
|
| 614 | if any(not isinstance(probe.get("patch_instrument_sha256"), str)
|
| 615 | or len(probe["patch_instrument_sha256"]) != 64
|
| 616 | or not probe.get("patch_instrument_version") for probe in instrument_rows):
|
| 617 | severity = "UNMEASURED " if item.get("patch_application_required") is True else "INFO "
|
| 618 | diagnostics.append(severity + prefix + ": patch instrument identity unavailable")
|
| 619 | continue
|
| 620 | versions = {base.get("patch_oracle_version") for base in base_rows if base.get("patch_apply_ok") is not None}
|
| 621 | if versions and versions != {item.get("patch_oracle_version")}:
|
| 622 | message = f"PATCH-ORACLE `{scenario}/{operation}`: incompatible or missing patch oracle version"
|
| 623 | if item.get("patch_application_required") is True:
|
| 624 | regressions.append(message)
|
| 625 | else:
|
| 626 | diagnostics.append("INFO " + message)
|
| 627 | elif item.get("patch_apply_ok") is False and (item.get("patch_application_required") is True
|
| 628 | or item.get("patch_failure_source") == "subject_tree_manifest_comparison"):
|
| 629 | matched_rows = [base for base in base_rows if base.get("run") == item.get("run")]
|
| 630 | identical_failure = bool(matched_rows) and all(same_patch_failure(item, base) for base in matched_rows)
|
| 631 | if identical_failure:
|
| 632 | diagnostics.append("PREEXISTING " + prefix + ": same measured defect in baseline and target")
|
| 633 | else:
|
| 634 | regressions.append(prefix + ": exact patch application failed")
|
| 635 | elif item.get("patch_apply_ok") is False:
|
| 636 | diagnostics.append("INFO " + prefix + ": optional exact patch application failed")
|
| 637 |
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| 638 | return regressions, improvements
|
| 639 |
|
| 640 |
|
| 641 | def contention_checks(rows: list[dict[str, Any]], target: str, baseline: str) -> tuple[list[str], list[str]]:
|
| 642 | regressions: list[str] = []
|
| 643 | improvements: list[str] = []
|
| 644 | totals: dict[tuple[str, str], dict[str, Any]] = {}
|
| 645 | for row in rows:
|
| 646 | if row.get("operation") != "parallel.total" or row.get("skipped"):
|
| 647 | continue
|
| 648 | totals[(str(row.get("subject")), str(row.get("scenario")))] = row
|
| 649 |
|
| 650 | for (subject, scenario), row in sorted(totals.items()):
|
| 651 | if subject != target:
|
| 652 | continue
|
| 653 | metrics = row.get("parallel_metrics", {})
|
| 654 | if metrics.get("integrity_check_passed") is False:
|
| 655 | regressions.append(f"INTEGRITY `{scenario}`: post-contention check failed for {target}")
|
| 656 | if (metrics.get("lost_updates_detected") or 0) > 0:
|
| 657 | regressions.append(
|
| 658 | f"LOST UPDATES `{scenario}`: {metrics['lost_updates_detected']} payload(s) lost for {target}"
|
| 659 | )
|
| 660 | base = totals.get((baseline, scenario))
|
| 661 | if base:
|
| 662 | target_tp = metrics.get("commit_throughput_per_s")
|
| 663 | base_tp = base.get("parallel_metrics", {}).get("commit_throughput_per_s")
|
| 664 | if target_tp and base_tp:
|
| 665 | pct = ((target_tp - base_tp) / base_tp) * 100.0
|
| 666 | if pct < -15.0:
|
| 667 | regressions.append(
|
| 668 | f"THROUGHPUT `{scenario}` vs Oak baseline: {pct:+.1f}% "
|
| 669 | f"({base_tp:.1f} -> {target_tp:.1f} snapshots/s)"
|
| 670 | )
|
| 671 | elif pct > 15.0:
|
| 672 | improvements.append(f"throughput `{scenario}` vs Oak baseline: {pct:+.1f}%")
|
| 673 | return regressions, improvements
|
| 674 |
|
| 675 |
|
| 676 | def main() -> int:
|
| 677 | args = parse_args()
|
| 678 | lanes = [lane.strip() for lane in args.lanes.split(",") if lane.strip()]
|
| 679 | unknown = [lane for lane in lanes if lane not in LANES]
|
| 680 | if unknown:
|
| 681 | raise SystemExit(f"unknown lanes: {', '.join(unknown)}; valid: {', '.join(LANES)}")
|
| 682 | contention_modes = _csv(args.contention_modes)
|
| 683 | contention_workers = _csv(args.contention_workers)
|
| 684 | oakbench_remotes.print_remote_preflight_warnings(
|
| 685 | oakbench_remotes.oak_remote_preflight_warnings(
|
| 686 | remote_preflight_requirements(
|
| 687 | lanes,
|
| 688 | contention_modes=contention_modes,
|
| 689 | contention_workers=contention_workers,
|
| 690 | )
|
| 691 | )
|
| 692 | )
|
| 693 |
|
| 694 | baseline_bin = args.oak_baseline_bin or (Path(shutil.which("oak")) if shutil.which("oak") else None)
|
| 695 | if baseline_bin is None:
|
| 696 | raise SystemExit("No Oak baseline: install oak or pass --oak-baseline-bin")
|
| 697 | if args.oak_local_bin:
|
| 698 | local_bin = args.oak_local_bin.resolve()
|
| 699 | if not local_bin.exists():
|
| 700 | raise SystemExit(f"--oak-local-bin does not exist: {local_bin}")
|
| 701 | elif args.skip_build:
|
| 702 | raise SystemExit("--skip-build requires --oak-local-bin")
|
| 703 | else:
|
| 704 | local_bin = build_oak_local(args.oak_repo)
|
| 705 |
|
| 706 | bench_id = datetime.now(timezone.utc).strftime("%Y%m%dT%H%M%SZ")
|
| 707 | out = args.results / bench_id
|
| 708 | out.mkdir(parents=True, exist_ok=True)
|
| 709 | started = time.perf_counter()
|
| 710 |
|
| 711 | noise_pct = NOISE_FLOOR_MIN_PCT
|
| 712 | noise_ops = 0
|
| 713 | if not args.skip_noise_floor:
|
| 714 | noise_pct, noise_ops = measure_noise_floor(out / "aa", baseline_bin, args.noise_floor_runs)
|
| 715 | effective_oak_threshold = max(args.oak_threshold_pct, 2.0 * noise_pct)
|
| 716 | effective_git_threshold = max(args.git_threshold_pct, 2.0 * noise_pct)
|
| 717 |
|
| 718 | subject_flags = [
|
| 719 | "--subjects",
|
| 720 | "git,oak_installed,oak_local",
|
| 721 | "--oak-installed-bin",
|
| 722 | str(baseline_bin),
|
| 723 | "--oak-local-bin",
|
| 724 | str(local_bin),
|
| 725 | ]
|
| 726 |
|
| 727 | if "core" in lanes:
|
| 728 | run_lane(
|
| 729 | [
|
| 730 | sys.executable,
|
| 731 | str(SCRIPTS / "bench.py"),
|
| 732 | "--profile",
|
| 733 | "smoke",
|
| 734 | "--runs",
|
| 735 | str(args.runs),
|
| 736 | "--randomize-subject-order",
|
| 737 | *subject_flags,
|
| 738 | "--results",
|
| 739 | str(out / "core"),
|
| 740 | ],
|
| 741 | "core lane",
|
| 742 | )
|
| 743 | if "workflow" in lanes:
|
| 744 | run_lane(
|
| 745 | [
|
| 746 | sys.executable,
|
| 747 | str(SCRIPTS / "workflow_ab.py"),
|
| 748 | "--workflows",
|
| 749 | "all",
|
| 750 | "--runs",
|
| 751 | str(args.runs),
|
| 752 | "--randomize-subject-order",
|
| 753 | *subject_flags,
|
| 754 | "--results",
|
| 755 | str(out / "workflow"),
|
| 756 | ],
|
| 757 | "workflow lane",
|
| 758 | )
|
| 759 | if "contention" in lanes:
|
| 760 | run_lane(
|
| 761 | [
|
| 762 | sys.executable,
|
| 763 | str(SCRIPTS / "parallel_contention.py"),
|
| 764 | "--workers",
|
| 765 | args.contention_workers,
|
| 766 | "--commits-per-worker",
|
| 767 | str(args.contention_commits_per_worker),
|
| 768 | "--modes",
|
| 769 | args.contention_modes,
|
| 770 | *subject_flags,
|
| 771 | "--results",
|
| 772 | str(out / "contention"),
|
| 773 | ],
|
| 774 | "contention lane",
|
| 775 | )
|
| 776 |
|
| 777 | regressions: list[str] = []
|
| 778 | improvements: list[str] = []
|
| 779 | guardrails: list[str] = []
|
| 780 | known_gaps: list[str] = []
|
| 781 | null_notes: list[str] = []
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| 782 | measurement_notes: list[str] = []
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| 783 | scorecard_rows: list[dict[str, Any]] = []
|
| 784 | for lane in ("core", "workflow"):
|
| 785 | if lane not in lanes:
|
| 786 | continue
|
| 787 | rows = load_jsonl(out / lane / "latest.jsonl")
|
| 788 | scorecard_rows += rows
|
| 789 | # Per-lane embedded null control: identical-command steps (search,
|
| 790 | # read, edit, test) cannot differ between subjects, so their spread is
|
| 791 | # this lane's live noise measurement; thresholds rise to clear it.
|
| 792 | null_pct, null_ops = embedded_null_p95(rows, "oak_local", "oak_installed")
|
| 793 | lane_oak_threshold = max(effective_oak_threshold, 2.0 * null_pct)
|
| 794 | lane_git_threshold = max(effective_git_threshold, 2.0 * null_pct)
|
| 795 | if null_ops:
|
| 796 | null_notes.append(
|
| 797 | f"[{lane}] embedded null ({null_ops} identical-command ops): p95 spread {null_pct:.1f}%; "
|
| 798 | f"lane threshold {lane_oak_threshold:.1f}%"
|
| 799 | )
|
| 800 | lane_regressions, lane_improvements = compare_subjects(
|
| 801 | rows,
|
| 802 | "oak_local",
|
| 803 | "oak_installed",
|
| 804 | "Oak baseline",
|
| 805 | lane_oak_threshold,
|
| 806 | args.min_delta_ms,
|
| 807 | efficiency_gates=True,
|
| 808 | output_bytes_threshold_pct=args.output_bytes_threshold_pct,
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| 809 | diagnostics=measurement_notes,
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| 810 | )
|
| 811 | regressions += [f"[{lane}] {item}" for item in lane_regressions]
|
| 812 | improvements += [f"[{lane}] {item}" for item in lane_improvements]
|
| 813 |
|
| 814 | # Git guardrail: only breaches the CHANGESET introduced fail the
|
| 815 | # verdict. Pre-existing Oak-vs-Git gaps (also breached by the installed
|
| 816 | # baseline) are listed as known gaps β a verdict that fails every run
|
| 817 | # on inherited gaps teaches agents to ignore it (ADR-0004's lesson).
|
| 818 | local_breaches, git_improvements = compare_subjects(
|
| 819 | rows,
|
| 820 | "oak_local",
|
| 821 | "git",
|
| 822 | "Git guardrail",
|
| 823 | lane_git_threshold,
|
| 824 | max(args.min_delta_ms, 10.0),
|
| 825 | efficiency_gates=False,
|
| 826 | output_bytes_threshold_pct=args.output_bytes_threshold_pct,
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| 827 | diagnostics=measurement_notes,
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| 828 | )
|
| 829 | baseline_breaches, _ = compare_subjects(
|
| 830 | rows,
|
| 831 | "oak_installed",
|
| 832 | "git",
|
| 833 | "Git guardrail",
|
| 834 | lane_git_threshold,
|
| 835 | max(args.min_delta_ms, 10.0),
|
| 836 | efficiency_gates=False,
|
| 837 | output_bytes_threshold_pct=args.output_bytes_threshold_pct,
|
| 838 | )
|
| 839 | preexisting = {breach.split(":")[0] for breach in baseline_breaches}
|
| 840 | for breach in local_breaches:
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| 841 | is_patch = breach.startswith(("PATCH-APPLY ", "PATCH-ORACLE "))
|
| 842 | if breach.split(":")[0] in preexisting and (not is_patch or preexisting_patch_breach(breach, rows)):
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| 843 | known_gaps.append(f"[{lane}] {breach}")
|
| 844 | else:
|
| 845 | guardrails.append(f"[{lane}] {breach}")
|
| 846 | improvements += [f"[{lane}] {item}" for item in git_improvements]
|
| 847 | if "contention" in lanes:
|
| 848 | rows = load_jsonl(out / "contention" / "latest.jsonl")
|
| 849 | scorecard_rows += rows
|
| 850 | lane_regressions, lane_improvements = contention_checks(rows, "oak_local", "oak_installed")
|
| 851 | regressions += [f"[contention] {item}" for item in lane_regressions]
|
| 852 | improvements += [f"[contention] {item}" for item in lane_improvements]
|
| 853 |
|
| 854 | elapsed_s = time.perf_counter() - started
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| 855 | verdict = ("REGRESSED" if regressions or guardrails else
|
| 856 | "UNMEASURED" if any(note.startswith("UNMEASURED") for note in measurement_notes) else "PASS")
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| 857 | lines = [
|
| 858 | "# Devloop Verdict",
|
| 859 | "",
|
| 860 | f"**{verdict}** β oak_local ({local_bin}) vs Oak baseline ({baseline_bin}) and Git, "
|
| 861 | f"lanes: {', '.join(lanes)}, runs={args.runs}, total {elapsed_s:.0f}s.",
|
| 862 | "",
|
| 863 | f"- Noise floor (A/A null test, {noise_ops} ops): p95 spread {noise_pct:.1f}% on identical binaries.",
|
| 864 | f"- Effective latency thresholds: Oak {effective_oak_threshold:.1f}%, Git {effective_git_threshold:.1f}% "
|
| 865 | f"(deltas below the noise floor are never claimed).",
|
| 866 | f"- Efficiency gates (exact metrics) vs Oak baseline only (ADR-0004): any tool-call increase, "
|
| 867 | f">{args.output_bytes_threshold_pct:.0f}% output bytes.",
|
| 868 | *[f"- {note}" for note in null_notes],
|
| 869 | "",
|
| 870 | f"## Regressions vs Oak baseline ({len(regressions)})",
|
| 871 | "",
|
| 872 | *([f"- {item}" for item in regressions] or ["- none"]),
|
| 873 | "",
|
| 874 | f"## New Git-guardrail breaches introduced by this changeset ({len(guardrails)})",
|
| 875 | "",
|
| 876 | *([f"- {item}" for item in guardrails] or ["- none"]),
|
| 877 | "",
|
| 878 | f"## Known Git gaps, pre-existing in the baseline ({len(known_gaps)}) β tracked, not failing",
|
| 879 | "",
|
| 880 | *([f"- {item}" for item in known_gaps] or ["- none"]),
|
| 881 | "",
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| 882 | "## Correctness measurement notes",
|
| 883 | "",
|
| 884 | *([f"- {item}" for item in dict.fromkeys(measurement_notes)] or ["- none"]),
|
| 885 | "",
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| 886 | f"## Improvements ({len(improvements)})",
|
| 887 | "",
|
| 888 | *([f"- {item}" for item in improvements[:20]] or ["- none"]),
|
| 889 | "",
|
| 890 | f"Raw rows: {out}/",
|
| 891 | ]
|
| 892 | if args.scorecard:
|
| 893 | lines += [
|
| 894 | "",
|
| 895 | "## Scorecard vs Git Baseline Book (informational)",
|
| 896 | "",
|
| 897 | *scorecard_lines(scorecard_rows, noise_floor_pct=noise_pct),
|
| 898 | ]
|
| 899 | report = "\n".join(lines) + "\n"
|
| 900 | (out / "verdict.md").write_text(report)
|
| 901 | print()
|
| 902 | print(report)
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| 903 | return 0 if verdict == "PASS" else (2 if verdict == "UNMEASURED" else 1)
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| 904 |
|
| 905 |
|
| 906 | if __name__ == "__main__":
|
| 907 | raise SystemExit(main())
|