* Add basic Span class based on ISO++20. * Use Span<Entry const> instead of Inst in SparsePage. * Add DeviceSpan in HostDeviceVector, use it in regression obj.
424 lines
8.3 KiB
C++
424 lines
8.3 KiB
C++
/*!
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* Copyright 2018 XGBoost contributors
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*/
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#include <gtest/gtest.h>
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#include <vector>
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#include "../../../src/common/span.h"
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#include "test_span.h"
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namespace xgboost {
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namespace common {
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TEST(Span, TestStatus) {
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int status = 1;
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TestTestStatus {&status}();
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ASSERT_EQ(status, -1);
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}
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TEST(Span, DlfConstructors) {
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// Dynamic extent
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{
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Span<int> s;
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ASSERT_EQ(s.size(), 0);
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ASSERT_EQ(s.data(), nullptr);
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Span<int const> cs;
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ASSERT_EQ(cs.size(), 0);
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ASSERT_EQ(cs.data(), nullptr);
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}
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// Static extent
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{
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Span<int, 0> s;
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ASSERT_EQ(s.size(), 0);
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ASSERT_EQ(s.data(), nullptr);
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Span<int const, 0> cs;
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ASSERT_EQ(cs.size(), 0);
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ASSERT_EQ(cs.data(), nullptr);
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}
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// Init list.
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{
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Span<float> s {};
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ASSERT_EQ(s.size(), 0);
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ASSERT_EQ(s.data(), nullptr);
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Span<int const> cs {};
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ASSERT_EQ(cs.size(), 0);
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ASSERT_EQ(cs.data(), nullptr);
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}
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}
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TEST(Span, FromNullPtr) {
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// dynamic extent
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{
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Span<float> s {nullptr, static_cast<Span<float>::index_type>(0)};
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ASSERT_EQ(s.size(), 0);
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ASSERT_EQ(s.data(), nullptr);
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Span<float const> cs {nullptr, static_cast<Span<float>::index_type>(0)};
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ASSERT_EQ(cs.size(), 0);
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ASSERT_EQ(cs.data(), nullptr);
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}
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// static extent
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{
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Span<float, 0> s {nullptr, static_cast<Span<float>::index_type>(0)};
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ASSERT_EQ(s.size(), 0);
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ASSERT_EQ(s.data(), nullptr);
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Span<float const, 0> cs {nullptr, static_cast<Span<float>::index_type>(0)};
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ASSERT_EQ(cs.size(), 0);
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ASSERT_EQ(cs.data(), nullptr);
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}
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}
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TEST(Span, FromPtrLen) {
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float arr[16];
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InitializeRange(arr, arr+16);
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// static extent
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{
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Span<float> s (arr, 16);
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ASSERT_EQ (s.size(), 16);
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ASSERT_EQ (s.data(), arr);
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for (Span<float>::index_type i = 0; i < 16; ++i) {
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ASSERT_EQ (s[i], arr[i]);
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}
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Span<float const> cs (arr, 16);
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ASSERT_EQ (cs.size(), 16);
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ASSERT_EQ (cs.data(), arr);
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for (Span<float const>::index_type i = 0; i < 16; ++i) {
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ASSERT_EQ (cs[i], arr[i]);
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}
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}
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{
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EXPECT_ANY_THROW(Span<float> tmp (arr, -1););
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}
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// dynamic extent
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{
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Span<float, 16> s (arr, 16);
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ASSERT_EQ (s.size(), 16);
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ASSERT_EQ (s.data(), arr);
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for (size_t i = 0; i < 16; ++i) {
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ASSERT_EQ (s[i], arr[i]);
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}
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Span<float const, 16> cs (arr, 16);
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ASSERT_EQ (cs.size(), 16);
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ASSERT_EQ (cs.data(), arr);
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for (Span<float const>::index_type i = 0; i < 16; ++i) {
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ASSERT_EQ (cs[i], arr[i]);
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}
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}
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}
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TEST(Span, FromFirstLast) {
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float arr[16];
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InitializeRange(arr, arr+16);
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// dynamic extent
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{
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Span<float> s (arr, arr + 16);
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ASSERT_EQ (s.size(), 16);
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ASSERT_EQ (s.data(), arr);
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ASSERT_EQ (s.data() + s.size(), arr + 16);
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for (size_t i = 0; i < 16; ++i) {
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ASSERT_EQ (s[i], arr[i]);
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}
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Span<float const> cs (arr, arr + 16);
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ASSERT_EQ (cs.size(), 16);
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ASSERT_EQ (cs.data(), arr);
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ASSERT_EQ (cs.data() + cs.size(), arr + 16);
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for (size_t i = 0; i < 16; ++i) {
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ASSERT_EQ (cs[i], arr[i]);
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}
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}
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// static extent
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{
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Span<float, 16> s (arr, arr + 16);
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ASSERT_EQ (s.size(), 16);
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ASSERT_EQ (s.data(), arr);
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ASSERT_EQ (s.data() + s.size(), arr + 16);
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for (size_t i = 0; i < 16; ++i) {
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ASSERT_EQ (s[i], arr[i]);
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}
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Span<float const> cs (arr, arr + 16);
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ASSERT_EQ (cs.size(), 16);
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ASSERT_EQ (cs.data(), arr);
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ASSERT_EQ (cs.data() + cs.size(), arr + 16);
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for (size_t i = 0; i < 16; ++i) {
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ASSERT_EQ (cs[i], arr[i]);
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}
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}
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}
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struct BaseClass {
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virtual void operator()() {}
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};
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struct DerivedClass : public BaseClass {
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virtual void operator()() {}
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};
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TEST(Span, FromOther) {
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// convert constructor
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{
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Span<DerivedClass> derived;
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Span<BaseClass> base { derived };
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ASSERT_EQ(base.size(), derived.size());
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ASSERT_EQ(base.data(), derived.data());
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}
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float arr[16];
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InitializeRange(arr, arr + 16);
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// default copy constructor
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{
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Span<float> s0 (arr);
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Span<float> s1 (s0);
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ASSERT_EQ(s0.size(), s1.size());
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ASSERT_EQ(s0.data(), s1.data());
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}
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}
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TEST(Span, FromArray) {
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float arr[16];
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InitializeRange(arr, arr + 16);
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{
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Span<float> s (arr);
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ASSERT_EQ(&arr[0], s.data());
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ASSERT_EQ(s.size(), 16);
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for (size_t i = 0; i < 16; ++i) {
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ASSERT_EQ(arr[i], s[i]);
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}
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}
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{
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Span<float, 16> s (arr);
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ASSERT_EQ(&arr[0], s.data());
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ASSERT_EQ(s.size(), 16);
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for (size_t i = 0; i < 16; ++i) {
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ASSERT_EQ(arr[i], s[i]);
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}
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}
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}
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TEST(Span, FromContainer) {
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std::vector<float> vec (16);
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InitializeRange(vec.begin(), vec.end());
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Span<float> s(vec);
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ASSERT_EQ(s.size(), vec.size());
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ASSERT_EQ(s.data(), vec.data());
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bool res = std::equal(vec.begin(), vec.end(), s.begin());
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ASSERT_TRUE(res);
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}
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TEST(Span, Assignment) {
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int status = 1;
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TestAssignment{&status}();
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ASSERT_EQ(status, 1);
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}
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TEST(SpanIter, Construct) {
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int status = 1;
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TestIterConstruct{&status}();
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ASSERT_EQ(status, 1);
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}
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TEST(SpanIter, Ref) {
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int status = 1;
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TestIterRef{&status}();
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ASSERT_EQ(status, 1);
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}
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TEST(SpanIter, Calculate) {
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int status = 1;
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TestIterCalculate{&status}();
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ASSERT_EQ(status, 1);
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}
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TEST(SpanIter, Compare) {
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int status = 1;
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TestIterCompare{&status}();
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ASSERT_EQ(status, 1);
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}
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TEST(Span, BeginEnd) {
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int status = 1;
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TestBeginEnd{&status}();
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ASSERT_EQ(status, 1);
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}
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TEST(Span, RBeginREnd) {
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int status = 1;
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TestRBeginREnd{&status}();
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ASSERT_EQ(status, 1);
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}
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TEST(Span, ElementAccess) {
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float arr[16];
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InitializeRange(arr, arr + 16);
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Span<float> s (arr);
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size_t j = 0;
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for (auto i : s) {
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ASSERT_EQ(i, arr[j]);
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++j;
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}
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EXPECT_ANY_THROW(s[16]);
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EXPECT_ANY_THROW(s[-1]);
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EXPECT_ANY_THROW(s(16));
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EXPECT_ANY_THROW(s(-1));
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}
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TEST(Span, Obversers) {
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int status = 1;
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TestObservers{&status}();
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ASSERT_EQ(status, 1);
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}
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TEST(Span, FirstLast) {
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// static extent
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{
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float arr[16];
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InitializeRange(arr, arr + 16);
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Span<float> s (arr);
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Span<float, 4> first = s.first<4>();
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ASSERT_EQ(first.size(), 4);
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ASSERT_EQ(first.data(), arr);
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for (size_t i = 0; i < first.size(); ++i) {
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ASSERT_EQ(first[i], arr[i]);
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}
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EXPECT_ANY_THROW(s.first<-1>());
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EXPECT_ANY_THROW(s.first<17>());
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EXPECT_ANY_THROW(s.first<32>());
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}
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{
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float arr[16];
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InitializeRange(arr, arr + 16);
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Span<float> s (arr);
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Span<float, 4> last = s.last<4>();
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ASSERT_EQ(last.size(), 4);
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ASSERT_EQ(last.data(), arr + 12);
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for (size_t i = 0; i < last.size(); ++i) {
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ASSERT_EQ(last[i], arr[i+12]);
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}
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EXPECT_ANY_THROW(s.last<-1>());
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EXPECT_ANY_THROW(s.last<17>());
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EXPECT_ANY_THROW(s.last<32>());
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}
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// dynamic extent
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{
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float *arr = new float[16];
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InitializeRange(arr, arr + 16);
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Span<float> s (arr, 16);
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Span<float> first = s.first(4);
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ASSERT_EQ(first.size(), 4);
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ASSERT_EQ(first.data(), s.data());
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for (size_t i = 0; i < first.size(); ++i) {
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ASSERT_EQ(first[i], s[i]);
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}
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EXPECT_ANY_THROW(s.first(-1));
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EXPECT_ANY_THROW(s.first(17));
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EXPECT_ANY_THROW(s.first(32));
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delete [] arr;
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}
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{
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float *arr = new float[16];
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InitializeRange(arr, arr + 16);
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Span<float> s (arr, 16);
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Span<float> last = s.last(4);
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ASSERT_EQ(last.size(), 4);
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ASSERT_EQ(last.data(), s.data() + 12);
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for (size_t i = 0; i < last.size(); ++i) {
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ASSERT_EQ(s[12 + i], last[i]);
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}
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EXPECT_ANY_THROW(s.last(-1));
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EXPECT_ANY_THROW(s.last(17));
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EXPECT_ANY_THROW(s.last(32));
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delete [] arr;
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}
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}
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TEST(Span, Subspan) {
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int arr[16] {0};
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Span<int> s1 (arr);
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auto s2 = s1.subspan<4>();
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ASSERT_EQ(s1.size() - 4, s2.size());
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auto s3 = s1.subspan(2, 4);
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ASSERT_EQ(s1.data() + 2, s3.data());
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ASSERT_EQ(s3.size(), 4);
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auto s4 = s1.subspan(2, dynamic_extent);
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ASSERT_EQ(s1.data() + 2, s4.data());
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ASSERT_EQ(s4.size(), s1.size() - 2);
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EXPECT_ANY_THROW(s1.subspan(-1, 0));
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EXPECT_ANY_THROW(s1.subspan(16, 0));
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EXPECT_ANY_THROW(s1.subspan<-1>());
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EXPECT_ANY_THROW(s1.subspan<16>());
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}
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TEST(Span, Compare) {
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int status = 1;
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TestCompare{&status}();
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ASSERT_EQ(status, 1);
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}
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TEST(Span, AsBytes) {
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int status = 1;
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TestAsBytes{&status}();
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ASSERT_EQ(status, 1);
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}
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TEST(Span, AsWritableBytes) {
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int status = 1;
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TestAsWritableBytes{&status}();
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ASSERT_EQ(status, 1);
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}
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} // namespace common
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} // namespace xgboost
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