263 lines
13 KiB
Python
263 lines
13 KiB
Python
#!/usr/bin/env python3
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"""Run the fixed P3 lighting sweep and retain raw per-frame GPU measurements.
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The Forward+ threshold in the summary is a measurement result, not an automatic
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renderer switch. Apply it to the Linux physical reference GPU; keep other devices
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as separate functional/performance observations.
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"""
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from __future__ import annotations
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import argparse
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import csv
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import json
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import math
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from pathlib import Path
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import statistics
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import subprocess
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import sys
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LIGHT_COUNTS = (0, 4, 16, 32, 64, 128)
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VISIBILITY_MODES = ("direct", "gpu-frustum", "gpu-occlusion")
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REPEATS = (1, 2, 3)
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WARMUP_FRAMES = 10
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MEASURED_FRAMES = 30
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WIDTH, HEIGHT = 1920, 1080
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REQUIRED_COLUMNS = (
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"light_count", "shadows", "visibility", "frame", "device", "driver",
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"commit", "gpu_main_raster_ms", "gpu_ms", "gpu_shadow_ms", "cpu_ms",
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"readback_cpu_ms", "validation_errors", "run_index", "effective_visibility",
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"lighting_path", "submitted_local_lights", "omitted_local_lights",
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"shadow_tiles", "draw_calls", "gpu_bytes", "validation_enabled", "width", "height",
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)
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TIMING_COLUMNS = ("gpu_main_raster_ms", "gpu_ms", "gpu_shadow_ms", "cpu_ms",
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"readback_cpu_ms")
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def build_runs(shadows: str = "both") -> list[dict]:
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if shadows not in ("off", "on", "both"):
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raise ValueError(f"Unsupported shadow setting: {shadows}")
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settings = ("off", "on") if shadows == "both" else (shadows,)
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return [{"shadows": shadow, "visibility": mode, "light_count": lights,
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"repeat": repeat}
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for shadow in settings for mode in VISIBILITY_MODES
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for lights in LIGHT_COUNTS for repeat in REPEATS]
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def median(values: list[float]) -> float:
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if not values:
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raise ValueError("Cannot summarize empty measurements")
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return float(statistics.median(values))
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def p95(values: list[float]) -> float:
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if not values:
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raise ValueError("Cannot summarize empty measurements")
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ordered = sorted(values)
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return ordered[math.ceil(.95 * len(ordered)) - 1]
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def _measurement(row: dict, name: str) -> float:
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try:
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value = float(row[name])
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except (KeyError, TypeError, ValueError) as error:
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raise ValueError(f"Invalid {name} in benchmark CSV") from error
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if not math.isfinite(value) or value < 0:
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raise ValueError(f"Invalid {name} in benchmark CSV: {value}")
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return value
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def summarize_rows(rows: list[dict]) -> dict:
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"""Use the median of each independent run's median, then compare like baselines."""
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grouped: dict[tuple[str, str, int], dict[int, list[dict]]] = {}
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for row in rows:
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try:
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key = (row["shadows"], row["visibility"], int(row["light_count"]))
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repeat = int(row["run_index"])
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except (KeyError, TypeError, ValueError) as error:
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raise ValueError("Benchmark row lacks shadow/mode/light/repeat identity") from error
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if key[0] not in ("off", "on") or key[1] not in VISIBILITY_MODES or repeat < 1:
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raise ValueError(f"Invalid benchmark configuration: {key}, repeat {repeat}")
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for name in TIMING_COLUMNS:
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_measurement(row, name)
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grouped.setdefault(key, {}).setdefault(repeat, []).append(row)
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configurations = []
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lookup = {}
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for (shadows, visibility, lights), repeats in sorted(grouped.items()):
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run_summaries = []
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for repeat, samples in sorted(repeats.items()):
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run_summaries.append({
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"run_index": repeat, "frames": len(samples),
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"median_ms": {name: median([_measurement(row, name) for row in samples])
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for name in TIMING_COLUMNS},
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})
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entry = {
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"shadows": shadows, "visibility": visibility, "light_count": lights,
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"runs": run_summaries,
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"median_ms": {name: median([run["median_ms"][name] for run in run_summaries])
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for name in TIMING_COLUMNS},
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"p95_ms": {name: p95([_measurement(row, name) for samples in repeats.values()
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for row in samples]) for name in TIMING_COLUMNS},
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}
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configurations.append(entry)
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lookup[(shadows, visibility, lights)] = entry
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candidates = []
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evaluated = []
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for entry in configurations:
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if entry["light_count"] not in (32, 64, 128):
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continue
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baseline = lookup.get((entry["shadows"], entry["visibility"], 0))
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if baseline is None:
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raise ValueError("Forward+ gate requires a zero-light baseline for each mode/shadow setting")
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zero_gpu = baseline["median_ms"]["gpu_ms"]
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if zero_gpu <= 0:
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raise ValueError("Forward+ gate requires positive zero-light GPU frame timing")
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overhead = (entry["median_ms"]["gpu_main_raster_ms"] -
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baseline["median_ms"]["gpu_main_raster_ms"])
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result = {"shadows": entry["shadows"], "visibility": entry["visibility"],
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"light_count": entry["light_count"], "overhead_ms": overhead,
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"zero_light_gpu_ms": zero_gpu,
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"overhead_percent_of_zero_gpu": 100 * overhead / zero_gpu,
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"absolute_threshold_reached": overhead >= 1.0,
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"relative_threshold_reached": overhead >= .15 * zero_gpu}
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evaluated.append(result)
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if result["absolute_threshold_reached"] or result["relative_threshold_reached"]:
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candidates.append(result)
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return {"configurations": configurations,
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"forward_plus_gate": {"triggered": bool(candidates), "candidates": candidates,
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"evaluated": evaluated,
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"basis": "median of three independent run medians; same-mode/shadow zero-light GPU baseline"}}
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def _read_run_csv(path: Path, run: dict, commit: str) -> tuple[list[str], list[dict]]:
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with path.open(newline="", encoding="utf-8") as stream:
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reader = csv.DictReader(stream)
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columns = reader.fieldnames or []
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missing = sorted(set(REQUIRED_COLUMNS) - set(columns))
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if missing:
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raise ValueError(f"{path}: missing CSV column(s): {', '.join(missing)}")
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rows = list(reader)
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if len(rows) != MEASURED_FRAMES:
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raise ValueError(f"{path}: expected {MEASURED_FRAMES} measured frames, got {len(rows)}")
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frames = set()
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for row in rows:
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expected = {"light_count": str(run["light_count"]), "shadows": run["shadows"],
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"visibility": run["visibility"], "run_index": str(run["repeat"]),
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"commit": commit, "width": str(WIDTH), "height": str(HEIGHT)}
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for name, value in expected.items():
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if row[name] != value:
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raise ValueError(f"{path}: {name} mismatch: expected {value}, got {row[name]}")
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if row["effective_visibility"] != run["visibility"]:
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raise ValueError(f"{path}: effective_visibility fell back from {run['visibility']}")
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if row["submitted_local_lights"] != str(run["light_count"]) or row["omitted_local_lights"] != "0":
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raise ValueError(f"{path}: submitted_local_lights or omitted_local_lights disagrees with the workload")
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try:
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frame = int(row["frame"])
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errors = int(row["validation_errors"])
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except ValueError as error:
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raise ValueError(f"{path}: invalid frame or validation error count") from error
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if frame in frames or errors != 0:
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raise ValueError(f"{path}: duplicate frame or Vulkan validation error")
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frames.add(frame)
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if not row["device"] or not row["driver"] or not row["lighting_path"]:
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raise ValueError(f"{path}: device, driver and effective lighting path are required")
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for name in TIMING_COLUMNS:
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_measurement(row, name)
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return columns, rows
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def _git_revision() -> str:
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root = Path(__file__).resolve().parents[1]
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return subprocess.check_output(["git", "-C", str(root), "rev-parse", "HEAD"],
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text=True).strip()
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def sweep(executable: Path, output: Path, shadows: str, commit: str,
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validation: str = "off", driver: str | None = None) -> dict:
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if not executable.is_file():
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raise ValueError(f"Benchmark executable does not exist: {executable}")
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if driver is None or not driver.strip() or driver.strip().lower() == "unknown":
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raise ValueError("A measured sweep requires an explicit --driver identity")
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if output.exists() and any(output.iterdir()):
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raise ValueError(f"Output directory must be new or empty: {output}")
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raw = output / "raw"
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raw.mkdir(parents=True)
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all_rows = []
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columns = None
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runs = build_runs(shadows)
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command_prefix = [sys.executable, str(executable)] if executable.suffix.lower() == ".py" else [str(executable)]
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for run in runs:
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filename = (f"shadows-{run['shadows']}_{run['visibility']}_"
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f"lights-{run['light_count']:03d}_run-{run['repeat']}.csv")
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target = raw / filename
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command = command_prefix + [
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"--lights", str(run["light_count"]), "--shadows", run["shadows"],
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"--visibility", run["visibility"], "--csv", str(target),
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"--run-index", str(run["repeat"]), "--commit", commit,
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"--validation", validation, "--width", str(WIDTH), "--height", str(HEIGHT),
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"--warmup", str(WARMUP_FRAMES), "--frames", str(MEASURED_FRAMES),
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]
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if driver is not None:
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command += ["--driver", driver]
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result = subprocess.run(command, capture_output=True, text=True, encoding="utf-8",
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errors="replace", timeout=180)
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if result.returncode != 0:
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raise RuntimeError(f"Benchmark failed for {filename}: {result.stderr[-2000:]}")
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run_columns, samples = _read_run_csv(target, run, commit)
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if columns is None:
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columns = run_columns
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elif columns != run_columns:
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raise ValueError(f"{target}: CSV schema differs from other runs")
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all_rows.extend({**row, "source_csv": filename} for row in samples)
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merged = output / "merged.csv"
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with merged.open("w", newline="", encoding="utf-8") as stream:
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writer = csv.DictWriter(stream, fieldnames=[*(columns or []), "source_csv"])
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writer.writeheader()
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writer.writerows(all_rows)
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summary = {"format": "faset.p3-lighting-benchmark", "version": 1,
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"commit": commit, "warmup_frames_per_run": WARMUP_FRAMES,
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"measured_frames_per_run": MEASURED_FRAMES, "width": WIDTH, "height": HEIGHT,
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"validation": validation, "driver": driver,
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"runs_completed": len(runs), "rows": len(all_rows),
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**summarize_rows(all_rows)}
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(output / "summary.json").write_text(json.dumps(summary, indent=2) + "\n",
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encoding="utf-8")
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return summary
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def main() -> int:
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parser = argparse.ArgumentParser(description=__doc__)
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mode = parser.add_mutually_exclusive_group(required=True)
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mode.add_argument("--list-runs", action="store_true", help="Print the deterministic sweep matrix as JSON")
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mode.add_argument("--sweep", action="store_true", help="Run every configuration and retain raw CSV")
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parser.add_argument("--shadows", choices=("off", "on", "both"), default="both")
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parser.add_argument("--executable", type=Path, help="Built C++ benchmark executable")
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parser.add_argument("--output", type=Path, help="New or empty evidence directory")
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parser.add_argument("--commit", help="Source revision; defaults to this checkout's HEAD")
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parser.add_argument("--driver", help="Required driver identity for a measured sweep")
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parser.add_argument("--validation", choices=("on", "off"), default="off")
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args = parser.parse_args()
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if args.list_runs:
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print(json.dumps({"format": "faset.p3-lighting-run-matrix", "version": 1,
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"runs": build_runs(args.shadows)}, indent=2))
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return 0
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if args.executable is None or args.output is None:
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parser.error("--sweep requires --executable and --output")
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try:
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summary = sweep(args.executable.resolve(), args.output.resolve(), args.shadows,
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args.commit or _git_revision(), args.validation, args.driver)
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except (OSError, ValueError, RuntimeError) as error:
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print(f"P3 lighting benchmark failed: {error}", file=sys.stderr)
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return 1
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print(json.dumps({"summary": str(args.output.resolve() / "summary.json"),
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"runs_completed": summary["runs_completed"],
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"forward_plus_threshold_reached": summary["forward_plus_gate"]["triggered"]}))
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return 0
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if __name__ == "__main__":
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raise SystemExit(main())
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