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Marat Dukhan6f8d4d32019-10-25 17:07:09 -07001// Copyright 2019 Google LLC
2//
3// This source code is licensed under the BSD-style license found in the
4// LICENSE file in the root directory of this source tree.
5
6#pragma once
7
8#include <gtest/gtest.h>
9
10#include <algorithm>
11#include <cassert>
12#include <cstddef>
13#include <cstdlib>
14#include <functional>
15#include <random>
16#include <vector>
17
18#include <xnnpack.h>
19#include <xnnpack/params.h>
20
21
22class RAddExtExpMicrokernelTester {
23 public:
Marat Dukhan4c4eb002019-12-08 21:27:49 -080024 inline RAddExtExpMicrokernelTester& elements(size_t elements) {
25 assert(elements != 0);
26 this->elements_ = elements;
Marat Dukhan6f8d4d32019-10-25 17:07:09 -070027 return *this;
28 }
29
Marat Dukhan4c4eb002019-12-08 21:27:49 -080030 inline size_t elements() const {
31 return this->elements_;
Marat Dukhan6f8d4d32019-10-25 17:07:09 -070032 }
33
34 inline RAddExtExpMicrokernelTester& iterations(size_t iterations) {
35 this->iterations_ = iterations;
36 return *this;
37 }
38
39 inline size_t iterations() const {
40 return this->iterations_;
41 }
42
Marat Dukhan4c4eb002019-12-08 21:27:49 -080043 void Test(xnn_f32_raddextexp_ukernel_function raddextexp) const {
Marat Dukhan6f8d4d32019-10-25 17:07:09 -070044 std::random_device random_device;
45 auto rng = std::mt19937(random_device());
46 // Choose such range that expf(x[i]) overflows, but double-precision exp doesn't overflow.
47 auto f32rng = std::bind(std::uniform_real_distribution<float>(90.0f, 100.0f), rng);
48
Marat Dukhan4c4eb002019-12-08 21:27:49 -080049 std::vector<float> x(elements() + XNN_EXTRA_BYTES / sizeof(float));
Marat Dukhan6f8d4d32019-10-25 17:07:09 -070050 for (size_t iteration = 0; iteration < iterations(); iteration++) {
51 std::generate(x.begin(), x.end(), std::ref(f32rng));
52
53 // Compute reference results.
54 double sum_ref = 0.0f;
Marat Dukhan4c4eb002019-12-08 21:27:49 -080055 for (size_t i = 0; i < elements(); i++) {
Marat Dukhan6f8d4d32019-10-25 17:07:09 -070056 sum_ref += exp(double(x[i]));
57 }
58
59 // Call optimized micro-kernel.
60 float sum[2] = { nanf(""), nanf("") };
Marat Dukhan4c4eb002019-12-08 21:27:49 -080061 raddextexp(elements() * sizeof(float), x.data(), sum);
Marat Dukhan6f8d4d32019-10-25 17:07:09 -070062
63 // Verify results.
64 ASSERT_NEAR(sum_ref, exp2(double(sum[1])) * double(sum[0]), std::abs(sum_ref) * 1.0e-6)
Marat Dukhan4c4eb002019-12-08 21:27:49 -080065 << "elements = " << elements() << ", y:value = " << sum[0] << ", y:exponent = " << sum[1];
Marat Dukhan6f8d4d32019-10-25 17:07:09 -070066 }
67 }
68
69 private:
Marat Dukhan4c4eb002019-12-08 21:27:49 -080070 size_t elements_{1};
Marat Dukhan6f8d4d32019-10-25 17:07:09 -070071 size_t iterations_{15};
72};