Composite GEMM: K-loop accumulator residency, pinned operands, sweep + deck
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
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"""Sweep GEMM shapes through kernbench and dump PE_accelerator engine times.
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For each shape:
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- run benches.matmul_composite via the same run_bench path the CLI uses
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- read result.engine.op_log
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- filter to per-PE engines: pe_dma, pe_fetch_store, pe_gemm, pe_math
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- record sum-of-durations (engine occupancy) AND wall-clock active interval
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Output: docs/diagrams/gemm_sweep.json
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"""
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from __future__ import annotations
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import json
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import os
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import sys
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import time
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from pathlib import Path
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# Default sweep covering under-tile, single-tile, multi-tile, and asymmetric regimes.
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# Each entry is either a single integer (square M=K=N=S) or "MxKxN".
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# Override via env: SWEEP_SHAPES="16,32,16x2048x16,..."
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DEFAULT_SHAPES = [
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"32x32x32", # 1 tile, K=32 < TILE_K=64 → under-tile in K
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"32x64x32", # 1 tile, exact single-tile fit
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"32x128x32", # 2 tiles, aligned
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"32x128x128", # 8 tiles, aligned
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"32x3072x32", # 48 tiles, all K-axis (tall-skinny)
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"8x128x128", # 8 tiles, but M=8 < TILE_M=32 → MAC array under-fed
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"128x8x128", # 16 tiles, but K=8 < TILE_K=64 → MAC array under-fed
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"512", # 2048 tiles, fully aligned — "well-pipelined" reference
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]
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# Operand-staging variants exercised per shape.
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VARIANTS = ["ref_ref", "load_ref", "load_load"]
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# Engines whose timings we collect (component_id suffix match).
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ENGINES = ["pe_dma", "pe_fetch_store", "pe_gemm", "pe_math"]
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# Per-stage breakdown labels (StageType enum names from pe_types.py).
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STAGES = ["DMA_READ", "DMA_WRITE", "FETCH", "STORE", "GEMM", "MATH"]
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# Scheduler tile sizes (mirror of PeSchedulerComponent.TILE_M/K/N).
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TILE_M, TILE_K, TILE_N = 32, 64, 32
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OUT_PATH = Path(__file__).parent.parent / "docs" / "diagrams" / "gemm_sweep.json"
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def _engine_wall_ns(records, suffix: str) -> float:
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"""Wall-clock interval the engine was active (union of overlapping ops)."""
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intervals = [(r.t_start, r.t_end) for r in records
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if r.component_id.endswith("." + suffix)]
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if not intervals:
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return 0.0
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intervals.sort()
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merged_end = intervals[0][1]
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merged_start = intervals[0][0]
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total = 0.0
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for s, e in intervals[1:]:
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if s <= merged_end:
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merged_end = max(merged_end, e)
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else:
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total += merged_end - merged_start
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merged_start, merged_end = s, e
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total += merged_end - merged_start
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return total
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def _engine_occupancy_ns(records, suffix: str) -> float:
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return sum(r.t_end - r.t_start for r in records
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if r.component_id.endswith("." + suffix))
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def _engine_count(records, suffix: str) -> int:
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return sum(1 for r in records if r.component_id.endswith("." + suffix))
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def _stage_occupancy_ns(records, stage_type: str) -> float:
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"""Sum t_end - t_start over op_log records whose params.stage_type matches.
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Requires op_log records produced post the TileToken stage_type capture
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(sim_engine/op_log.py).
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"""
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return sum(
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r.t_end - r.t_start
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for r in records
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if r.params.get("stage_type") == stage_type
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)
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def _stage_wall_ns(records, stage_type: str) -> float:
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"""Interval-union wall-clock for records whose stage_type matches."""
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intervals = sorted(
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(r.t_start, r.t_end) for r in records
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if r.params.get("stage_type") == stage_type
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)
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if not intervals:
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return 0.0
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total = 0.0
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cs, ce = intervals[0]
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for s, e in intervals[1:]:
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if s <= ce:
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ce = max(ce, e)
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else:
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total += ce - cs
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cs, ce = s, e
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total += ce - cs
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return total
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def _stage_count(records, stage_type: str) -> int:
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return sum(1 for r in records if r.params.get("stage_type") == stage_type)
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def _run_one(M: int, K: int, N: int, topology: str, variant: str = "ref_ref") -> dict:
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os.environ["MATMUL_M"] = str(M)
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os.environ["MATMUL_K"] = str(K)
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os.environ["MATMUL_N"] = str(N)
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os.environ["MATMUL_VARIANT"] = variant
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# Late imports so env vars are read by benches/matmul_composite at module load.
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# Force re-import to pick up new env values.
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for mod_name in [m for m in list(sys.modules) if m.startswith("benches.matmul_composite")]:
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del sys.modules[mod_name]
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from benches.loader import resolve_bench
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from kernbench.runtime_api.bench_runner import run_bench
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from kernbench.runtime_api.types import resolve_device
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from kernbench.sim_engine.engine import GraphEngine
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from kernbench.topology.builder import resolve_topology
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topo = resolve_topology(topology)
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bench = resolve_bench("matmul_composite")
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device = resolve_device(None)
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t0 = time.time()
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result = run_bench(
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topology=topo, bench_fn=bench, device=device,
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engine_factory=lambda t, d: GraphEngine(
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getattr(t, "topology_obj", t), enable_data=True,
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),
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)
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wall = time.time() - t0
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op_log = result.engine.op_log
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if not result.completion.ok:
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raise RuntimeError(f"bench failed at M={M},K={K},N={N}: {result.completion}")
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# Bytes touched at f16 (2 B): full A + full B + full out (each operand
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# streamed once through HBM by the composite plan).
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bytes_total = (M * K + K * N + M * N) * 2
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row = {
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"M": M, "K": K, "N": N,
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"variant": variant,
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"flops": 2 * M * K * N,
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"bytes_hbm": bytes_total,
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"arith_intensity": (2 * M * K * N) / bytes_total, # flops/byte
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"tile_count_expected": _ceil(M, TILE_M) * _ceil(N, TILE_N) * _ceil(K, TILE_K),
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"sim_wall_clock_s": round(wall, 3),
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"engines": {},
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}
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for eng in ENGINES:
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row["engines"][eng] = {
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"occupancy_ns": _engine_occupancy_ns(op_log, eng),
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"wall_ns": _engine_wall_ns(op_log, eng),
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"record_count": _engine_count(op_log, eng),
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}
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row["stages"] = {}
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for stage in STAGES:
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row["stages"][stage] = {
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"occupancy_ns": _stage_occupancy_ns(op_log, stage),
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"wall_ns": _stage_wall_ns(op_log, stage),
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"record_count": _stage_count(op_log, stage),
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}
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# Kernel-window wall-clock = max t_end - min t_start over PE engine records.
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pe_records = [r for r in op_log
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if any(r.component_id.endswith("." + e) for e in ENGINES)]
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if pe_records:
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row["pe_window_ns"] = max(r.t_end for r in pe_records) \
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- min(r.t_start for r in pe_records)
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else:
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row["pe_window_ns"] = 0.0
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return row
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def _ceil(a: int, b: int) -> int:
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return (a + b - 1) // b
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def main() -> int:
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shapes_env = os.environ.get("SWEEP_SHAPES")
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raw = (shapes_env.split(",") if shapes_env else DEFAULT_SHAPES)
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shapes: list[tuple[int, int, int]] = []
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for s in raw:
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s = s.strip()
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if not s:
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continue
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if "x" in s.lower():
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parts = s.lower().split("x")
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shapes.append((int(parts[0]), int(parts[1]), int(parts[2])))
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else:
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v = int(s)
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shapes.append((v, v, v))
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topology = os.environ.get("SWEEP_TOPOLOGY", "topology.yaml")
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rows = []
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for M, K, N in shapes:
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for variant in VARIANTS:
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print(f"[sweep] M={M} K={K} N={N} variant={variant} ...", flush=True)
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row = _run_one(M, K, N, topology, variant=variant)
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rows.append(row)
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eng_dma = row["engines"]["pe_dma"]
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eng_gem = row["engines"]["pe_gemm"]
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print(f" tiles={row['tile_count_expected']:>6} "
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f"pe_window={row['pe_window_ns']:8.1f}ns "
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f"dma_occ={eng_dma['occupancy_ns']:9.1f} "
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f"gemm_occ={eng_gem['occupancy_ns']:8.1f} "
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f"(sim {row['sim_wall_clock_s']:.1f}s)")
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OUT_PATH.parent.mkdir(parents=True, exist_ok=True)
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OUT_PATH.write_text(json.dumps({
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"tile_sizes": {"M": TILE_M, "K": TILE_K, "N": TILE_N},
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"engines": ENGINES,
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"stages": STAGES,
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"variants": VARIANTS,
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"rows": rows,
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}, indent=2))
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print(f"\n[sweep] wrote {OUT_PATH}")
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return 0
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if __name__ == "__main__":
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raise SystemExit(main())
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