* Copyright (c) 2026 Huawei Technologies Co., Ltd.
* This program is free software, you can redistribute it and/or modify it under the terms and conditions of
* CANN Open Software License Agreement Version 2.0 (the "License").
* Please refer to the License for details. You may not use this file except in compliance with the License.
* THIS SOFTWARE IS PROVIDED ON AN "AS IS" BASIS, WITHOUT WARRANTIES OF ANY KIND, EITHER EXPRESS OR IMPLIED,
* INCLUDING BUT NOT LIMITED TO NON-INFRINGEMENT, MERCHANTABILITY, OR FITNESS FOR A PARTICULAR PURPOSE.
* See LICENSE in the root of the software repository for the full text of the License.
*/
* \file swiglu_group_quant.cpp
* \brief
*/
#include "arch35/swiglu_group_quant_perf.h"
#include "arch35/swiglu_mx_quant_perf.h"
#include "arch35/swiglu_mxfp4_quant_perf.h"
#include "arch35/swiglu_dynamic_group_quant_hifp8.h"
#include "arch35/swiglu_static_group_quant_hifp8.h"
#define BLOCK_QUANT_TILING_KEY 1000
#define BLOCK_QUANT_YORIGIN_TILING_KEY 1100
#define MX_QUANT_TILING_KEY 2000
#define MX_QUANT_YORIGIN_TILING_KEY 2100
#define MXFP4_QUANT_TILING_KEY 3000
#define DYNAMIC_HIFP8_QUANT_TILING_KEY 4000
#define STATIC_HIFP8_QUANT_TILING_KEY 4100
using namespace AscendC;
extern "C" __global__ __aicore__ void swiglu_group_quant(GM_ADDR x, GM_ADDR weight, GM_ADDR groupIndex, GM_ADDR scale,
GM_ADDR y, GM_ADDR yScale, GM_ADDR yOrigin, GM_ADDR workspace,
GM_ADDR tiling)
{
if (workspace == nullptr) {
return;
}
GM_ADDR userWs = GetUserWorkspace(workspace);
if (userWs == nullptr) {
return;
}
TPipe pipe;
int64_t oriOverflowMode = AscendC::GetCtrlSpr<FLOAT_OVERFLOW_MODE_CTRL, FLOAT_OVERFLOW_MODE_CTRL>();
if (TILING_KEY_IS(BLOCK_QUANT_TILING_KEY)) {
GET_TILING_DATA_WITH_STRUCT(SwigluGroupQuantTilingData, tilingData, tiling);
SwigluGroupQuant::SwigluGroupQuantPerf<DTYPE_X, DTYPE_Y, DTYPE_Y_SCALE, false> op;
op.Init(x, weight, groupIndex, y, yScale, yOrigin, userWs, &tilingData, &pipe);
op.Process();
} else if (TILING_KEY_IS(BLOCK_QUANT_YORIGIN_TILING_KEY)) {
GET_TILING_DATA_WITH_STRUCT(SwigluGroupQuantTilingData, tilingData, tiling);
SwigluGroupQuant::SwigluGroupQuantPerf<DTYPE_X, DTYPE_Y, DTYPE_Y_SCALE, true> op;
op.Init(x, weight, groupIndex, y, yScale, yOrigin, userWs, &tilingData, &pipe);
op.Process();
} else if (TILING_KEY_IS(MX_QUANT_TILING_KEY)) {
GET_TILING_DATA_WITH_STRUCT(SwigluGroupQuantTilingData, tilingData, tiling);
SwigluGroupQuant::SwigluMxQuantPerf<DTYPE_X, DTYPE_Y, DTYPE_Y_SCALE, false> op;
op.Init(x, weight, groupIndex, y, yScale, yOrigin, userWs, &tilingData, &pipe);
op.Process();
} else if (TILING_KEY_IS(MX_QUANT_YORIGIN_TILING_KEY)) {
GET_TILING_DATA_WITH_STRUCT(SwigluGroupQuantTilingData, tilingData, tiling);
SwigluGroupQuant::SwigluMxQuantPerf<DTYPE_X, DTYPE_Y, DTYPE_Y_SCALE, true> op;
op.Init(x, weight, groupIndex, y, yScale, yOrigin, userWs, &tilingData, &pipe);
op.Process();
} else if (TILING_KEY_IS(MXFP4_QUANT_TILING_KEY)) {
GET_TILING_DATA_WITH_STRUCT(SwigluGroupQuantTilingData, tilingData, tiling);
SwigluGroupQuant::SwigluMxFp4QuantPerf<DTYPE_X, DTYPE_Y, DTYPE_Y_SCALE> op;
op.Init(x, weight, groupIndex, y, yScale, userWs, &tilingData, &pipe);
op.Process();
} else if (TILING_KEY_IS(DYNAMIC_HIFP8_QUANT_TILING_KEY)) {
GET_TILING_DATA_WITH_STRUCT(SwigluGroupQuantHifp8TilingData, hifp8TilingData, tiling);
SwigluGroupQuantDynamicHifp8Ops::SwigluGroupQuantDynamicHifp8Kernel<DTYPE_X> op;
op.Init(x, weight, groupIndex, y, yScale, yOrigin, userWs, &hifp8TilingData, &pipe);
op.Process();
} else if (TILING_KEY_IS(STATIC_HIFP8_QUANT_TILING_KEY)) {
GET_TILING_DATA_WITH_STRUCT(SwigluGroupQuantHifp8TilingData, hifp8TilingData, tiling);
SwigluGroupQuantStaticHifp8Ops::SwigluGroupQuantStaticHifp8Kernel<DTYPE_X> op;
op.Init(x, weight, groupIndex, scale, y, yOrigin, userWs, &hifp8TilingData, &pipe);
op.Process();
}
AscendC::SetCtrlSpr<FLOAT_OVERFLOW_MODE_CTRL, FLOAT_OVERFLOW_MODE_CTRL>(oriOverflowMode);
}