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Nick Kledzik4d6d9812014-02-05 22:22:56 +00001//===- llvm/unittest/ADT/ArrayRefTest.cpp - ArrayRef unit tests -----------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9
10#include "llvm/ADT/ArrayRef.h"
11#include "llvm/Support/Allocator.h"
12#include "llvm/Support/raw_ostream.h"
13#include "gtest/gtest.h"
Aaron Ballmana9614172015-02-17 17:44:07 +000014#include <vector>
Nick Kledzik4d6d9812014-02-05 22:22:56 +000015using namespace llvm;
16
David Blaikieee03ead2014-08-31 01:33:41 +000017// Check that the ArrayRef-of-pointer converting constructor only allows adding
18// cv qualifiers (not removing them, or otherwise changing the type)
19static_assert(
20 std::is_convertible<ArrayRef<int *>, ArrayRef<const int *>>::value,
21 "Adding const");
22static_assert(
23 std::is_convertible<ArrayRef<int *>, ArrayRef<volatile int *>>::value,
24 "Adding volatile");
25static_assert(!std::is_convertible<ArrayRef<int *>, ArrayRef<float *>>::value,
26 "Changing pointer of one type to a pointer of another");
27static_assert(
28 !std::is_convertible<ArrayRef<const int *>, ArrayRef<int *>>::value,
29 "Removing const");
30static_assert(
31 !std::is_convertible<ArrayRef<volatile int *>, ArrayRef<int *>>::value,
32 "Removing volatile");
33
Benjamin Kramer07f42cd2015-08-04 15:52:56 +000034namespace {
Nick Kledzik4d6d9812014-02-05 22:22:56 +000035
36TEST(ArrayRefTest, AllocatorCopy) {
37 BumpPtrAllocator Alloc;
38 static const uint16_t Words1[] = { 1, 4, 200, 37 };
39 ArrayRef<uint16_t> Array1 = makeArrayRef(Words1, 4);
40 static const uint16_t Words2[] = { 11, 4003, 67, 64000, 13 };
41 ArrayRef<uint16_t> Array2 = makeArrayRef(Words2, 5);
42 ArrayRef<uint16_t> Array1c = Array1.copy(Alloc);
Aaron Ballman3182ee92015-06-09 12:03:46 +000043 ArrayRef<uint16_t> Array2c = Array2.copy(Alloc);
Nick Kledzik4d6d9812014-02-05 22:22:56 +000044 EXPECT_TRUE(Array1.equals(Array1c));
45 EXPECT_NE(Array1.data(), Array1c.data());
46 EXPECT_TRUE(Array2.equals(Array2c));
47 EXPECT_NE(Array2.data(), Array2c.data());
Benjamin Kramer07f42cd2015-08-04 15:52:56 +000048
49 // Check that copy can cope with uninitialized memory.
50 struct NonAssignable {
51 const char *Ptr;
52
Benjamin Kramerbee48592015-08-05 09:39:41 +000053 NonAssignable(const char *Ptr) : Ptr(Ptr) {}
Benjamin Kramer07f42cd2015-08-04 15:52:56 +000054 NonAssignable(const NonAssignable &RHS) = default;
55 void operator=(const NonAssignable &RHS) { assert(RHS.Ptr != nullptr); }
56 bool operator==(const NonAssignable &RHS) const { return Ptr == RHS.Ptr; }
Benjamin Kramerbee48592015-08-05 09:39:41 +000057 } Array3Src[] = {"hello", "world"};
Benjamin Kramer07f42cd2015-08-04 15:52:56 +000058 ArrayRef<NonAssignable> Array3Copy = makeArrayRef(Array3Src).copy(Alloc);
59 EXPECT_EQ(makeArrayRef(Array3Src), Array3Copy);
60 EXPECT_NE(makeArrayRef(Array3Src).data(), Array3Copy.data());
Nick Kledzik4d6d9812014-02-05 22:22:56 +000061}
62
David Majnemer45647d82014-07-05 06:12:30 +000063TEST(ArrayRefTest, DropBack) {
64 static const int TheNumbers[] = {4, 8, 15, 16, 23, 42};
65 ArrayRef<int> AR1(TheNumbers);
66 ArrayRef<int> AR2(TheNumbers, AR1.size() - 1);
67 EXPECT_TRUE(AR1.drop_back().equals(AR2));
Ahmed Bougacha31a8a8e2016-06-02 17:26:03 +000068
69 // Check that drop_back accepts size_t-sized numbers.
70 ArrayRef<char> AR3((const char *)0x10000, SIZE_MAX - 0x10000);
71 EXPECT_EQ(1U, AR3.drop_back(AR3.size() - 1).size());
David Majnemer45647d82014-07-05 06:12:30 +000072}
73
Reid Kleckner1e4ba372016-05-03 20:53:20 +000074TEST(ArrayRefTest, DropFront) {
75 static const int TheNumbers[] = {4, 8, 15, 16, 23, 42};
76 ArrayRef<int> AR1(TheNumbers);
77 ArrayRef<int> AR2(&TheNumbers[2], AR1.size() - 2);
78 EXPECT_TRUE(AR1.drop_front(2).equals(AR2));
Ahmed Bougacha31a8a8e2016-06-02 17:26:03 +000079
80 // Check that drop_front accepts size_t-sized numbers.
81 ArrayRef<char> AR3((const char *)0x10000, SIZE_MAX - 0x10000);
82 EXPECT_EQ(1U, AR3.drop_front(AR3.size() - 1).size());
Reid Kleckner1e4ba372016-05-03 20:53:20 +000083}
84
Chandler Carruth3ea985b2014-07-27 01:11:19 +000085TEST(ArrayRefTest, Equals) {
86 static const int A1[] = {1, 2, 3, 4, 5, 6, 7, 8};
87 ArrayRef<int> AR1(A1);
Benjamin Kramer030133c2015-03-01 21:05:05 +000088 EXPECT_TRUE(AR1.equals({1, 2, 3, 4, 5, 6, 7, 8}));
89 EXPECT_FALSE(AR1.equals({8, 1, 2, 4, 5, 6, 6, 7}));
90 EXPECT_FALSE(AR1.equals({2, 4, 5, 6, 6, 7, 8, 1}));
91 EXPECT_FALSE(AR1.equals({0, 1, 2, 4, 5, 6, 6, 7}));
92 EXPECT_FALSE(AR1.equals({1, 2, 42, 4, 5, 6, 7, 8}));
93 EXPECT_FALSE(AR1.equals({42, 2, 3, 4, 5, 6, 7, 8}));
94 EXPECT_FALSE(AR1.equals({1, 2, 3, 4, 5, 6, 7, 42}));
95 EXPECT_FALSE(AR1.equals({1, 2, 3, 4, 5, 6, 7}));
96 EXPECT_FALSE(AR1.equals({1, 2, 3, 4, 5, 6, 7, 8, 9}));
Chandler Carruth3ea985b2014-07-27 01:11:19 +000097
98 ArrayRef<int> AR1a = AR1.drop_back();
Benjamin Kramer030133c2015-03-01 21:05:05 +000099 EXPECT_TRUE(AR1a.equals({1, 2, 3, 4, 5, 6, 7}));
100 EXPECT_FALSE(AR1a.equals({1, 2, 3, 4, 5, 6, 7, 8}));
Chandler Carruth3ea985b2014-07-27 01:11:19 +0000101
102 ArrayRef<int> AR1b = AR1a.slice(2, 4);
Benjamin Kramer030133c2015-03-01 21:05:05 +0000103 EXPECT_TRUE(AR1b.equals({3, 4, 5, 6}));
104 EXPECT_FALSE(AR1b.equals({2, 3, 4, 5, 6}));
105 EXPECT_FALSE(AR1b.equals({3, 4, 5, 6, 7}));
Chandler Carruth3ea985b2014-07-27 01:11:19 +0000106}
Nick Kledzik4d6d9812014-02-05 22:22:56 +0000107
Duncan P. N. Exon Smith349f6982014-08-19 19:18:46 +0000108TEST(ArrayRefTest, EmptyEquals) {
109 EXPECT_TRUE(ArrayRef<unsigned>() == ArrayRef<unsigned>());
110}
111
Ahmed Bougacha31a8a8e2016-06-02 17:26:03 +0000112TEST(ArrayRefTest, Slice) {
113 // Check that slice accepts size_t-sized numbers.
114 ArrayRef<char> AR((const char *)0x10000, SIZE_MAX - 0x10000);
115 EXPECT_EQ(1U, AR.slice(AR.size() - 1).size());
116 EXPECT_EQ(AR.size() - 1, AR.slice(1, AR.size() - 1).size());
117}
118
Craig Topperc9439cc2014-08-30 16:48:19 +0000119TEST(ArrayRefTest, ConstConvert) {
120 int buf[4];
121 for (int i = 0; i < 4; ++i)
122 buf[i] = i;
123
124 static int *A[] = {&buf[0], &buf[1], &buf[2], &buf[3]};
125 ArrayRef<const int *> a((ArrayRef<int *>(A)));
126 a = ArrayRef<int *>(A);
127}
128
Aaron Ballmana9614172015-02-17 17:44:07 +0000129static std::vector<int> ReturnTest12() { return {1, 2}; }
Aaron Ballmanfbb030f2015-02-17 17:08:08 +0000130static void ArgTest12(ArrayRef<int> A) {
Aaron Ballmana9614172015-02-17 17:44:07 +0000131 EXPECT_EQ(2U, A.size());
Aaron Ballmanfbb030f2015-02-17 17:08:08 +0000132 EXPECT_EQ(1, A[0]);
133 EXPECT_EQ(2, A[1]);
134}
135
Aaron Ballmanf4984a92015-02-17 15:37:53 +0000136TEST(ArrayRefTest, InitializerList) {
David Blaikie68ce7922016-08-25 22:09:13 +0000137 std::initializer_list<int> init_list = { 0, 1, 2, 3, 4 };
138 ArrayRef<int> A = init_list;
Aaron Ballmanf4984a92015-02-17 15:37:53 +0000139 for (int i = 0; i < 5; ++i)
140 EXPECT_EQ(i, A[i]);
Aaron Ballmanfbb030f2015-02-17 17:08:08 +0000141
Aaron Ballmana9614172015-02-17 17:44:07 +0000142 std::vector<int> B = ReturnTest12();
143 A = B;
Aaron Ballmanfbb030f2015-02-17 17:08:08 +0000144 EXPECT_EQ(1, A[0]);
145 EXPECT_EQ(2, A[1]);
146
147 ArgTest12({1, 2});
Aaron Ballmanf4984a92015-02-17 15:37:53 +0000148}
149
Mehdi Aminidefa5462015-09-10 00:05:04 +0000150// Test that makeArrayRef works on ArrayRef (no-op)
151TEST(ArrayRefTest, makeArrayRef) {
152 static const int A1[] = {1, 2, 3, 4, 5, 6, 7, 8};
153
154 // No copy expected for non-const ArrayRef (true no-op)
155 ArrayRef<int> AR1(A1);
156 ArrayRef<int> &AR1Ref = makeArrayRef(AR1);
157 EXPECT_EQ(&AR1, &AR1Ref);
158
159 // A copy is expected for non-const ArrayRef (thin copy)
160 const ArrayRef<int> AR2(A1);
161 const ArrayRef<int> &AR2Ref = makeArrayRef(AR2);
162 EXPECT_NE(&AR2Ref, &AR2);
163 EXPECT_TRUE(AR2.equals(AR2Ref));
164}
165
Nick Kledzik4d6d9812014-02-05 22:22:56 +0000166} // end anonymous namespace