test_gemm_accuracy.cpp 3.8 KB
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/* Copyright (c) 2018 PaddlePaddle Authors. All Rights Reserved.

Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at

    http://www.apache.org/licenses/LICENSE-2.0

Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License. */

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#include <cstdlib>
#include <ctime>
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#include <iostream>
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#include "../test_helper.h"
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#include "common/log.h"
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#include "memory/t_malloc.h"
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#include "operators/math/gemm.h"
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#define a(i, j) a[(i)*lda + (j)]
#define b(i, j) b[(i)*ldb + (j)]
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#define c(i, j) c[(i)*ldc + (j)]
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#define c1(i, j) c1[(i)*ldc + (j)]

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void print_matirx(int m, int n, int ldc, float *c) {
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  for (int i = 0; i < m; ++i) {
    std::cout << c(i, 0);
    for (int j = 1; j < n; ++j) {
      std::cout << " | " << c(i, j);
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    }
    std::cout << std::endl;
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  }
  std::cout << std::endl;
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}

int do_sgemm(int m, int n, int k, bool relu, int t1, int t2, int pr) {
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  int lda = k;
  int ldb = n;
  int ldc = n;
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  float *a =
      static_cast<float *>(paddle_mobile::memory::Alloc(sizeof(float) * m * k));
  float *b =
      static_cast<float *>(paddle_mobile::memory::Alloc(sizeof(float) * k * n));
  float *c =
      static_cast<float *>(paddle_mobile::memory::Alloc(sizeof(float) * m * n));
  float *c1 =
      static_cast<float *>(paddle_mobile::memory::Alloc(sizeof(float) * m * n));
  float *scale =
      static_cast<float *>(paddle_mobile::memory::Alloc(sizeof(float) * m));
  float *bias =
      static_cast<float *>(paddle_mobile::memory::Alloc(sizeof(float) * m));
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  srand(unsigned(time(0)));
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  for (int i = 0; i < m * k; ++i) {
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    a[i] = t1 + rand() % t2;
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  }
  for (int i = 0; i < k * n; ++i) {
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    b[i] = t1 + rand() % t2;
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  }
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  for (int i = 0; i < m; ++i) {
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    scale[i] = t1 + rand() % t2;
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  }
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  for (int i = 0; i < m; ++i) {
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    bias[i] = t1 + rand() % t2;
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  }
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  for (int i = 0; i < m; ++i) {
    for (int j = 0; j < n; ++j) {
      float r = 0;
      for (int p = 0; p < k; p++) {
        r += a(i, p) * b(p, j);
      }
      r *= scale[i];
      r += bias[i];
      if (relu && (r < 0)) {
        r = 0;
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      }
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      c1(i, j) = r;
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    }
  }
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  paddle_mobile::operators::math::Gemm gemm;
  gemm.SgemmWithBn(m, n, k, 0.9, a, lda, b, ldb, 0.3, c, ldc, relu, scale, bias,
                   nullptr);
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  int eq = 0;
  int neq = 0;
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  for (int i = 0; i < m * n; ++i) {
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    if (static_cast<int>(c[i]) == static_cast<int>(c1[i])) {
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      ++eq;
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    } else {
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      ++neq;
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    }
  }
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  if (pr > 0) {
    std::cout << "A:" << std::endl;
    print_matirx(m, k, lda, a);
    std::cout << "B:" << std::endl;
    print_matirx(k, n, ldb, b);
    std::cout << "C:" << std::endl;
    print_matirx(m, n, ldc, c);
    std::cout << "C1:" << std::endl;
    print_matirx(m, n, ldc, c1);
  }
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  std::cout << "mnk=" << m << " " << n << " " << k << " relu=" << relu
            << "   eq=" << eq << " neq=" << neq << std::endl;
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  paddle_mobile::memory::Free(a);
  paddle_mobile::memory::Free(b);
  paddle_mobile::memory::Free(c);
  paddle_mobile::memory::Free(c1);
  paddle_mobile::memory::Free(scale);
  paddle_mobile::memory::Free(bias);
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  return 0;
}

int main() {
  do_sgemm(9, 9, 9, true, 10, 10, 10);
  do_sgemm(10, 6, 12, false, 10, 10, 0);
  do_sgemm(512, 256, 384, false, 10, 10, 0);
  do_sgemm(1366, 768, 256, false, 10, 10, 0);
  do_sgemm(1255, 755, 333, false, 10, 10, 0);
  do_sgemm(555, 777, 999, false, 10, 10, 0);
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  do_sgemm(10, 6, 12, true, -4, 10, 0);
  do_sgemm(512, 256, 384, true, -4, 10, 0);
  do_sgemm(1366, 768, 256, true, -4, 10, 0);
  do_sgemm(1255, 755, 333, true, -4, 10, 0);
  do_sgemm(555, 777, 999, true, -4, 10, 0);
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  return 0;
}