718c41634f
1.项目后端整体迁移至PaddleOCR-NCNN算法,已通过基本的兼容性测试 2.工程改为使用CMake组织,后续为了更好地兼容第三方库,不再提供QMake工程 3.重整权利声明文件,重整代码工程,确保最小化侵权风险 Log: 切换后端至PaddleOCR-NCNN,切换工程为CMake Change-Id: I4d5d2c5d37505a4a24b389b1a4c5d12f17bfa38c
203 lines
5.4 KiB
C++
203 lines
5.4 KiB
C++
// Tencent is pleased to support the open source community by making ncnn available.
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//
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// Copyright (C) 2020 THL A29 Limited, a Tencent company. All rights reserved.
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//
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// Licensed under the BSD 3-Clause License (the "License"); you may not use this file except
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// in compliance with the License. You may obtain a copy of the License at
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//
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// https://opensource.org/licenses/BSD-3-Clause
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//
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// Unless required by applicable law or agreed to in writing, software distributed
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// under the License is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR
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// CONDITIONS OF ANY KIND, either express or implied. See the License for the
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// specific language governing permissions and limitations under the License.
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#include "layer/slice.h"
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#include "testutil.h"
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static ncnn::Mat IntArrayMat(int a0)
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{
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ncnn::Mat m(1);
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int* p = m;
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p[0] = a0;
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return m;
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}
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static ncnn::Mat IntArrayMat(int a0, int a1)
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{
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ncnn::Mat m(2);
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int* p = m;
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p[0] = a0;
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p[1] = a1;
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return m;
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}
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static ncnn::Mat IntArrayMat(int a0, int a1, int a2)
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{
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ncnn::Mat m(3);
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int* p = m;
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p[0] = a0;
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p[1] = a1;
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p[2] = a2;
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return m;
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}
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static void print_int_array(const ncnn::Mat& a)
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{
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const int* pa = a;
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fprintf(stderr, "[");
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for (int i = 0; i < a.w; i++)
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{
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fprintf(stderr, " %d", pa[i]);
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}
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fprintf(stderr, " ]");
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}
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static int test_slice(const ncnn::Mat& a, const ncnn::Mat& slices, int axis)
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{
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ncnn::ParamDict pd;
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pd.set(0, slices);
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pd.set(1, axis);
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std::vector<ncnn::Mat> weights(0);
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std::vector<ncnn::Mat> a0(1);
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a0[0] = a;
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int ret = test_layer<ncnn::Slice>("Slice", pd, weights, a0, slices.w);
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if (ret != 0)
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{
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fprintf(stderr, "test_slice failed a.dims=%d a=(%d %d %d)", a.dims, a.w, a.h, a.c);
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fprintf(stderr, " slices=");
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print_int_array(slices);
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fprintf(stderr, " axis=%d\n", axis);
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}
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return ret;
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}
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static int test_slice_0()
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{
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ncnn::Mat a = RandomMat(48, 36, 48);
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return 0
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|| test_slice(a, IntArrayMat(-233, -233, -233), 0)
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|| test_slice(a, IntArrayMat(-233, -233, -233), 1)
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|| test_slice(a, IntArrayMat(-233, -233, -233), 2)
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|| test_slice(a, IntArrayMat(-233, -233, -233), -1)
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|| test_slice(a, IntArrayMat(-233, -233, -233), -2)
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|| test_slice(a, IntArrayMat(-233, -233, -233), -3);
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}
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static int test_slice_1()
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{
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ncnn::Mat a = RandomMat(17, 13, 32);
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ncnn::Mat b = RandomMat(16, 15, 40);
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ncnn::Mat c = RandomMat(15, 14, 20);
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return 0
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|| test_slice(a, IntArrayMat(3, 16, -233), 0)
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|| test_slice(a, IntArrayMat(3, 16, -233), -3)
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|| test_slice(b, IntArrayMat(8, 32), 0)
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|| test_slice(b, IntArrayMat(8, 32), -3)
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|| test_slice(c, IntArrayMat(4, -233), 0)
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|| test_slice(c, IntArrayMat(4, -233), -3);
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}
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static int test_slice_2()
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{
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ncnn::Mat a = RandomMat(17, 32, 11);
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ncnn::Mat b = RandomMat(17, 32, 24);
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ncnn::Mat c = RandomMat(17, 32, 48);
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return 0
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|| test_slice(a, IntArrayMat(3, 16, -233), 1)
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|| test_slice(a, IntArrayMat(3, 16, -233), -2)
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|| test_slice(b, IntArrayMat(8, 3, -233), 1)
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|| test_slice(b, IntArrayMat(8, 3, -233), -2)
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|| test_slice(c, IntArrayMat(3, 16, 5), 1)
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|| test_slice(c, IntArrayMat(3, 16, 5), -2);
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}
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static int test_slice_3()
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{
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ncnn::Mat a = RandomMat(16, 17, 11);
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ncnn::Mat b = RandomMat(16, 17, 24);
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ncnn::Mat c = RandomMat(16, 17, 16);
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return 0
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|| test_slice(a, IntArrayMat(5, 4, 7), 2)
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|| test_slice(a, IntArrayMat(5, 4, 7), -1)
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|| test_slice(b, IntArrayMat(5, 4, 7), 2)
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|| test_slice(b, IntArrayMat(5, 4, 7), -1)
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|| test_slice(c, IntArrayMat(5, 4, 7), 2)
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|| test_slice(c, IntArrayMat(5, 4, 7), -1);
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}
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static int test_slice_4()
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{
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ncnn::Mat a = RandomMat(37, 32);
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ncnn::Mat b = RandomMat(36, 40);
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ncnn::Mat c = RandomMat(35, 20);
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ncnn::Mat d = RandomMat(15, 11);
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ncnn::Mat e = RandomMat(32, 64);
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ncnn::Mat f = RandomMat(32, 24);
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return 0
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|| test_slice(a, IntArrayMat(3, 16, 5), 0)
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|| test_slice(a, IntArrayMat(3, 16, 5), -2)
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|| test_slice(b, IntArrayMat(32, -233), 0)
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|| test_slice(b, IntArrayMat(32, -233), -2)
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|| test_slice(c, IntArrayMat(4, -233), 0)
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|| test_slice(c, IntArrayMat(4, -233), -2)
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|| test_slice(d, IntArrayMat(3, -233, -233), 1)
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|| test_slice(d, IntArrayMat(3, -233, -233), -1)
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|| test_slice(e, IntArrayMat(5, 8, -233), 1)
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|| test_slice(e, IntArrayMat(5, 8, -233), -1)
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|| test_slice(f, IntArrayMat(3, 16, 5), 1)
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|| test_slice(f, IntArrayMat(3, 16, 5), -1);
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}
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static int test_slice_5()
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{
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ncnn::Mat a = RandomMat(32);
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ncnn::Mat b = RandomMat(20);
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ncnn::Mat c = RandomMat(24);
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return 0
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|| test_slice(a, IntArrayMat(3, 16, 5), 0)
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|| test_slice(a, IntArrayMat(3, 16, 5), -1)
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|| test_slice(b, IntArrayMat(4, -233), 0)
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|| test_slice(b, IntArrayMat(4, -233), -1)
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|| test_slice(c, IntArrayMat(4, 16, -233), 0)
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|| test_slice(c, IntArrayMat(4, 16, -233), -1);
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}
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int main()
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{
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SRAND(7767517);
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return 0
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|| test_slice_0()
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|| test_slice_1()
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|| test_slice_2()
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|| test_slice_3()
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|| test_slice_4()
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|| test_slice_5();
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}
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