Line data Source code
1 : /**
2 : * Copyright (c) 2025 Huawei Technologies Co., Ltd.
3 : * This program is free software, you can redistribute it and/or modify it under the terms and conditions of
4 : * CANN Open Software License Agreement Version 2.0 (the "License").
5 : * Please refer to the License for details. You may not use this file except in compliance with the License.
6 : * THIS SOFTWARE IS PROVIDED ON AN "AS IS" BASIS, WITHOUT WARRANTIES OF ANY KIND, EITHER EXPRESS OR IMPLIED,
7 : * INCLUDING BUT NOT LIMITED TO NON-INFRINGEMENT, MERCHANTABILITY, OR FITNESS FOR A PARTICULAR PURPOSE.
8 : * See LICENSE in the root of the software repository for the full text of the License.
9 : */
10 :
11 : /*!
12 : * \file kernel_vec_select_check.cpp
13 : * \brief
14 : */
15 :
16 : #include "kernel_check_params.h"
17 : #include "kernel_vec_select_check.h"
18 :
19 : namespace AscendC {
20 : namespace check {
21 0 : bool TikcppSelectBinaryCheck::CommonCheck()
22 : {
23 0 : const std::string supportPos = "VECIN/VECOUT/VECCALC";
24 0 : ASCENDC_CHECK(CheckTensorScope(param_.dstLogicPos, static_cast<uint8_t>(HardWareIndex::UB), "dst", supportPos));
25 0 : ASCENDC_CHECK(
26 : CheckTensorScope(param_.selMaskLogicPos, static_cast<uint8_t>(HardWareIndex::UB), "selMask", supportPos));
27 0 : ASCENDC_CHECK(CheckTensorScope(param_.src0LogicPos, static_cast<uint8_t>(HardWareIndex::UB), "src0", supportPos));
28 0 : ASCENDC_CHECK(CheckTensorScope(param_.src1LogicPos, static_cast<uint8_t>(HardWareIndex::UB), "src1", supportPos));
29 :
30 0 : ASCENDC_CHECK(CheckBufferSizeOverFlow(
31 : param_.dstSize, GlobalParams::Instance().bufferSizeMap.at(param_.dstPos),
32 : "check dst tensor buffersize failed"));
33 0 : ASCENDC_CHECK(CheckBufferSizeOverFlow(
34 : param_.selMaskSize, GlobalParams::Instance().bufferSizeMap.at(param_.selMaskPos),
35 : "check selMask tensor buffersize failed"));
36 0 : ASCENDC_CHECK(CheckBufferSizeOverFlow(
37 : param_.src0Size, GlobalParams::Instance().bufferSizeMap.at(param_.src0Pos),
38 : "check src0 tensor buffersize failed"));
39 0 : ASCENDC_CHECK(CheckBufferSizeOverFlow(
40 : param_.src1Size, GlobalParams::Instance().bufferSizeMap.at(param_.src1Pos),
41 : "check src1 tensor buffersize failed"));
42 0 : ASCENDC_CHECK(CheckAddrAlign());
43 0 : return true;
44 0 : }
45 :
46 0 : bool TikcppSelectBinaryCheck::CheckAllLowLevel(std::vector<uint64_t> maskArray)
47 : {
48 0 : ASCENDC_CHECK(CommonCheck());
49 : TensorOverflowParams params = {
50 0 : param_.dstSize,
51 0 : param_.dstDtypeBytes,
52 0 : static_cast<uint64_t>(param_.repeatTimes),
53 0 : static_cast<uint64_t>(param_.dstBlockStride),
54 0 : static_cast<uint64_t>(param_.dstRepeatStride),
55 0 : false};
56 0 : ASCENDC_CHECK(CheckTensorOverflowLow(maskArray, params, "dstLocal"));
57 0 : params = {
58 0 : param_.src0Size,
59 0 : param_.src0DtypeBytes,
60 0 : static_cast<uint64_t>(param_.repeatTimes),
61 0 : static_cast<uint64_t>(param_.src0BlockStride),
62 0 : static_cast<uint64_t>(param_.src0RepeatStride),
63 0 : false};
64 0 : ASCENDC_CHECK(CheckTensorOverflowLow(maskArray, params, "src0Local"));
65 0 : params = {
66 0 : param_.src1Size,
67 0 : param_.src1DtypeBytes,
68 0 : static_cast<uint64_t>(param_.repeatTimes),
69 0 : static_cast<uint64_t>(param_.src1BlockStride),
70 0 : static_cast<uint64_t>(param_.src1RepeatStride),
71 0 : false};
72 0 : ASCENDC_CHECK(CheckTensorOverflowLow(maskArray, params, "src1Local"));
73 0 : return true;
74 : }
75 :
76 0 : bool TikcppSelectBinaryCheck::CheckAllHighLevel()
77 : {
78 0 : ASCENDC_CHECK(CommonCheck());
79 0 : ASCENDC_CHECK(CheckTensorOverflowHigh(param_.dstDtypeBytes, param_.dstSize, param_.calCount, "dstLocal"));
80 0 : ASCENDC_CHECK(CheckTensorOverflowHigh(param_.src0DtypeBytes, param_.src0Size, param_.calCount, "src0Local"));
81 0 : ASCENDC_CHECK(CheckTensorOverflowHigh(param_.src1DtypeBytes, param_.src1Size, param_.calCount, "src1Local"));
82 0 : return true;
83 : }
84 :
85 0 : bool TikcppSelectBinaryCheck::CheckAddrAlign()
86 : {
87 0 : bool dstRes = CheckTensorAddrAlign(param_.dstAddr, param_.dstPos, ONE_BLK_SIZE, "dst");
88 0 : bool selMaskRes = CheckTensorAddrAlign(param_.selMaskAddr, param_.selMaskPos, ONE_BLK_SIZE, "selMask");
89 0 : bool src0Res = CheckTensorAddrAlign(param_.src0Addr, param_.src0Pos, ONE_BLK_SIZE, "src0");
90 0 : bool src1Res = CheckTensorAddrAlign(param_.src1Addr, param_.src1Pos, ONE_BLK_SIZE, "src1");
91 0 : return dstRes && selMaskRes && src0Res && src1Res;
92 : }
93 : } // namespace check
94 : } // namespace AscendC
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