Skip to content
KernelIndex
Search⌘K

submission 683594

Leon · python · License unknown

Use it

Vendorable · source mirrored · license unknownView source →

No package. Vendor the mirrored source: 150 lines, June 9 Researcher Reciprocity License v1.0.

submission.py
curl "https://kernelindex.com/api/v1/implementations/kernelbot-amd-moe-mxfp4-683594?include=source"
interfacepython
Compatibility
measured onAMD Instinct MI355X
declared hardwareAMD Instinct MI355X
architecturesgfx950
dtypesbf16, fp32, fp8_e8m0, int32, mxfp4

Benchmark evidence

1 measurement across 1 GPU, fastest first.

Operation / workload
Hardware
Latency
Rank
Observed
AMD MXFP4 MoEsuite of 7 cases
AMD Instinct MI355X
145.8µs
#134 of 782
2026-04-01

Reported · How evidence levels are derived →

Source and license

sourceavailable
revision digestsha256:1ba6b2f3b1e8c50af7aa0749d3b0c163d998a1f7c2c8381d05b5f5e084224d6c
license declaredunknown
license concludedunknown
authorsLeon
imported2026-08-15

Kernel source

submission.py150 lines
#!POPCORN leaderboard amd-moe-mxfp4
#!POPCORN gpu MI355X

import torch
from typing import Dict
from task import input_t, output_t

from aiter import ActivationType, QuantType, dtypes
from aiter.fused_moe import fused_moe
import aiter.fused_moe as _fm

# ── EXP-104 best config: FlyDSL gemm2 shapes 6+7 ──
# Shapes 1,2: CK 256x32 ksplit=4
# Shape 3: CSV default (64x32)
# Shapes 4,5: CK 256x32 ksplit=2
# Shape 5: block_size_M=32 override
# Shape 6: CK gemm1 256x64 + FlyDSL gemm2 t64x256x256_reduce (-22%)
# Shape 7: CK gemm1 256x64 + FlyDSL gemm2 t64x256x256_atomic (-2.4%)


def _preload_and_inject():
    try:
        cu = _fm.get_cu_count() if hasattr(_fm, 'get_cu_count') else 256
        act = ActivationType.Silu
        dtype_t = torch.bfloat16
        q_a_t = dtypes.fp4x2
        q_w_t = dtypes.fp4x2
        q_type_t = QuantType.per_1x32

        _fm.get_2stage_cfgs(
            16, 7168, 256, 257, 9,
            dtype_t, q_a_t, q_w_t, q_type_t,
            True, act, False,
            0, 0, True
        )
        # Also init for secret shapes with different d_hidden
        for s_bs, s_n, s_k, s_e, s_topk in [
            (8, 4096, 1024, 257, 9),   # S-A
            (32, 7168, 2048, 33, 9),   # S-B
            (128, 4096, 1536, 65, 7),  # S-C
        ]:
            try:
                _fm.get_2stage_cfgs(
                    s_bs, s_n, s_k, s_e, s_topk,
                    dtype_t, q_a_t, q_w_t, q_type_t,
                    True, act, False,
                    0, 0, True
                )
            except Exception:
                pass

        cfg = _fm.cfg_2stages
        if cfg is None:
            return

        act_s = str(act)
        dtype_s = str(dtype_t)
        q_a = str(q_a_t)
        q_w = str(q_w_t)
        q_type = str(q_type_t)

        kn1_32 = 'moe_ck2stages_gemm1_256x32x128x128_1x4_MulABScaleShuffled_v3_Nswizzle0_Quant3_MulRoutedWeight0_silu_FP4X2_FP4X2_B16'
        kn2_32 = 'moe_ck2stages_gemm2_256x32x128x128_1x4_MulABScaleExpertWeightShuffled_v1_Nswizzle0_Quant3_MulRoutedWeight1_FP4X2_FP4X2_B16'
        kn1_64 = 'moe_ck2stages_gemm1_256x64x128x128_1x4_MulABScaleShuffled_v3_Nswizzle0_Quant3_MulRoutedWeight0_silu_FP4X2_FP4X2_B16'
        kn2_fly64_reduce = 'flydsl_moe2_afp4_wfp4_bf16_t64x256x256_reduce'
        kn2_fly64_atomic = 'flydsl_moe2_afp4_wfp4_bf16_t64x256x256_atomic'

        def make_entry(block_m, ksplit, kn1, kn2):
            return {
                'block_m': block_m, 'ksplit': ksplit,
                'kernelName1': kn1, 'kernelName2': kn2,
                'run_1stage': 0,
                'us': 0.0, 'us1': 0.0, 'us2': 0.0,
                'err1': '0', 'err2': '0',
                'tflops': 0.0, 'bw': 0.0, '_tag': float('nan'),
            }

        # Shape 1 (bs=16, E=257, d=256): CK 256x32 ksplit=4
        cfg[(cu, 16, 7168, 256, 257, 9, act_s, dtype_s, q_a, q_w, q_type, True, False)] = \
            make_entry(32, 4, kn1_32, kn2_32)
        # Shape 2 (bs=128, E=257, d=256): CK 256x32 ksplit=4
        cfg[(cu, 128, 7168, 256, 257, 9, act_s, dtype_s, q_a, q_w, q_type, True, False)] = \
            make_entry(32, 4, kn1_32, kn2_32)
        # Shape 3 (bs=512, E=257, d=256): NO injection — CSV default
        # Shape 4 (bs=16, E=33, d=512): CK 256x32 ksplit=2
        cfg[(cu, 16, 7168, 512, 33, 9, act_s, dtype_s, q_a, q_w, q_type, True, False)] = \
            make_entry(32, 2, kn1_32, kn2_32)
        # Shape 5 (bs=128, E=33, d=512): CK 256x32 ksplit=2
        cfg[(cu, 128, 7168, 512, 33, 9, act_s, dtype_s, q_a, q_w, q_type, True, False)] = \
            make_entry(32, 2, kn1_32, kn2_32)
        # Shape 6 (bs=512, E=33, d=512): CK gemm1 256x64 + FlyDSL gemm2 t64 reduce
        cfg[(cu, 512, 7168, 512, 33, 9, act_s, dtype_s, q_a, q_w, q_type, True, False)] = \
            make_entry(64, 0, kn1_64, kn2_fly64_reduce)
        # Shape 7 (bs=512, E=33, d=2048): CK gemm1 256x64 + FlyDSL gemm2 t64 atomic
        cfg[(cu, 512, 7168, 2048, 33, 9, act_s, dtype_s, q_a, q_w, q_type, True, False)] = \
            make_entry(64, 0, kn1_64, kn2_fly64_atomic)

        # === Secret shape injections ===
        # S-A (bs=8, E=257, d_hidden=4096, d_expert=1024): like s1 → CK 256x32 ksplit=4
        cfg[(cu, 8, 4096, 1024, 257, 9, act_s, dtype_s, q_a, q_w, q_type, True, False)] = \
            make_entry(32, 4, kn1_32, kn2_32)
        # S-B (bs=32, E=33, d_hidden=7168, d_expert=2048): like s4/s7 → CK 256x32 ksplit=2
        cfg[(cu, 32, 7168, 2048, 33, 9, act_s, dtype_s, q_a, q_w, q_type, True, False)] = \
            make_entry(32, 2, kn1_32, kn2_32)
        # S-C (bs=128, E=65, d_hidden=4096, d_expert=1536): new E → CK 256x32 ksplit=4
        cfg[(cu, 128, 4096, 1536, 65, 7, act_s, dtype_s, q_a, q_w, q_type, True, False)] = \
            make_entry(32, 4, kn1_32, kn2_32)

        if hasattr(_fm.get_2stage_cfgs, 'cache_clear'):
            _fm.get_2stage_cfgs.cache_clear()
        for fn_name in ['get_block_size_M', 'use_nt', 'get_ksplit']:
            fn = getattr(_fm, fn_name, None)
            if fn and hasattr(fn, 'cache_clear'):
                fn.cache_clear()

    except Exception as e:
        import traceback; traceback.print_exc()

_preload_and_inject()


def custom_kernel(data: input_t) -> output_t:
    (
        hidden_states, gate_up_weight, down_weight,
        gate_up_weight_scale, down_weight_scale,
        gate_up_weight_shuffled, down_weight_shuffled,
        gate_up_weight_scale_shuffled, down_weight_scale_shuffled,
        topk_weights, topk_ids, config,
    ) = data

    hidden_pad = config["d_hidden_pad"] - config["d_hidden"]
    intermediate_pad = config["d_expert_pad"] - config["d_expert"]

    try:
        bsm = 32 if hidden_states.shape[0] == 128 and gate_up_weight_shuffled.shape[0] == 33 else None
    except Exception:
        bsm = None

    return fused_moe(
        hidden_states, gate_up_weight_shuffled, down_weight_shuffled,
        topk_weights, topk_ids,
        expert_mask=None, activation=ActivationType.Silu,
        quant_type=QuantType.per_1x32, doweight_stage1=False,
        w1_scale=gate_up_weight_scale_shuffled,
        w2_scale=down_weight_scale_shuffled,
        a1_scale=None, a2_scale=None,
        block_size_M=bsm,
        hidden_pad=hidden_pad, intermediate_pad=intermediate_pad,
    )
scrolls · 150 lines total

Source code from GPU Mode and the KernelBot dataset · June 9 Researcher Reciprocity License v1.0

Changes from previous submission

Against this author's previous submission submission 681882.

⋯ 32 unchanged lines
True, act, False,
0, 0, True
)
+ # Also init for secret shapes with different d_hidden
+ for s_bs, s_n, s_k, s_e, s_topk in [
+ (8, 4096, 1024, 257, 9), # S-A
+ (32, 7168, 2048, 33, 9), # S-B
+ (128, 4096, 1536, 65, 7), # S-C
+ ]:
+ try:
+ _fm.get_2stage_cfgs(
+ s_bs, s_n, s_k, s_e, s_topk,
+ dtype_t, q_a_t, q_w_t, q_type_t,
+ True, act, False,
+ 0, 0, True
+ )
+ except Exception:
+ pass
cfg = _fm.cfg_2stages
if cfg is None:
⋯ 41 unchanged lines
cfg[(cu, 512, 7168, 2048, 33, 9, act_s, dtype_s, q_a, q_w, q_type, True, False)] = \
make_entry(64, 0, kn1_64, kn2_fly64_atomic)
+ # === Secret shape injections ===
+ # S-A (bs=8, E=257, d_hidden=4096, d_expert=1024): like s1 → CK 256x32 ksplit=4
+ cfg[(cu, 8, 4096, 1024, 257, 9, act_s, dtype_s, q_a, q_w, q_type, True, False)] = \
+ make_entry(32, 4, kn1_32, kn2_32)
+ # S-B (bs=32, E=33, d_hidden=7168, d_expert=2048): like s4/s7 → CK 256x32 ksplit=2
+ cfg[(cu, 32, 7168, 2048, 33, 9, act_s, dtype_s, q_a, q_w, q_type, True, False)] = \
+ make_entry(32, 2, kn1_32, kn2_32)
+ # S-C (bs=128, E=65, d_hidden=4096, d_expert=1536): new E → CK 256x32 ksplit=4
+ cfg[(cu, 128, 4096, 1536, 65, 7, act_s, dtype_s, q_a, q_w, q_type, True, False)] = \
+ make_entry(32, 4, kn1_32, kn2_32)
+
if hasattr(_fm.get_2stage_cfgs, 'cache_clear'):
_fm.get_2stage_cfgs.cache_clear()
for fn_name in ['get_block_size_M', 'use_nt', 'get_ksplit']:
scrolls · 40 diff lines total

Best evidence level for this revision: reported

JSON