- split-K removed entirely: tiled kernel walks K in one pass, no partials/semas workspace, no memset, single launch per call
- skinny GEMM (M<=8) dispatch table replaces the hand-written switch
- shape-driven four-family table replaces plan_gemm: wide-N (n>=4096) default {16,64,64,3,128} with BM=32 at M>16; narrow-N deep-K rings {16,32,256,2,64} while the grid fits one wave, {16,32,128,2,64} past it
- narrow-N is K-serial: widening the grid measurably does nothing (BN 64->32 ties, doubled m_tiles tie, kv at 4 blocks ties q/o at 24); deeper K chunks win until 72KB smem forces one CTA per SM and past one wave the 2-wave quantization loses to BK=128
- launch-check macros in common/launch.cuh; smem opt-in for the 72KB/60KB rings
- rename kernels/bf16_*.cu to gemm.cu/swiglu.cu; module names unchanged
- Python gate: lm_head (N>32768) falls back to cuBLAS, band narrows to M<=32
- drop the stale per-op benchmark narratives; fold the live numbers into cuda_kernels.md
Benchmark: NVIDIA L20 (sm_89, 92 SMs), CUDA 12.8, bf16, L2-thrash weight rotation, per-call medians at M=16: q/o 9.5us, kv 8.6us, gate/up 33.3us, down 33.7us (down -29% vs prior default). End-to-end 1B decode (gen 128, 3 trials, tokens/s vs cuBLAS): B=1 260 vs 252, B=8 1660 vs 1446, B=16 2464 vs 2437, B=32 3620 vs 3690. Prior split-K dispatch measured B=16 2243 / B=32 3393.
24 lines
538 B
Python
24 lines
538 B
Python
"""Stateless wrappers around compiled extension kernels."""
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from astrai.extension.ops.attention import (
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TensorLayout,
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attn_decode,
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attn_paged_decode,
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attn_paged_prefill,
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attn_prefill,
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)
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from astrai.extension.ops.gemm import bf16_gemm
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from astrai.extension.ops.rotary import rotary_emb
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from astrai.extension.ops.swiglu import bf16_swiglu
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__all__ = [
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"TensorLayout",
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"attn_decode",
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"attn_paged_decode",
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"attn_paged_prefill",
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"attn_prefill",
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"bf16_gemm",
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"bf16_swiglu",
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"rotary_emb",
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]
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