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Eric Fiselier780b51d2016-12-28 05:53:01 +00001//===----------------------------------------------------------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is dual licensed under the MIT and the University of Illinois Open
6// Source Licenses. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9
10#ifndef TEST_SUPPORT_DEBUG_MODE_HELPER_H
11#define TEST_SUPPORT_DEBUG_MODE_HELPER_H
12
13#ifndef _LIBCPP_DEBUG
14#error _LIBCPP_DEBUG must be defined before including this header
15#endif
16#ifndef _LIBCPP_DEBUG_USE_EXCEPTIONS
17#error _LIBCPP_DEBUG_USE_EXCEPTIONS must be defined before including this header
18#endif
19
20#include <ciso646>
21#ifndef _LIBCPP_VERSION
22#error This header may only be used for libc++ tests"
23#endif
24
25#include <__debug>
26#include <utility>
27#include <cstddef>
28#include <cstdlib>
29#include <cassert>
30
31#include "test_macros.h"
32#include "assert_checkpoint.h"
33#include "test_allocator.h"
34
35// These test make use of 'if constexpr'.
36#if TEST_STD_VER <= 14
37#error This header may only be used in C++17 and greater
38#endif
39#ifdef TEST_HAS_NO_EXCEPTIONS
40#error These tests require exceptions
41#endif
42
43#ifndef __cpp_if_constexpr
44#error These tests require if constexpr
45#endif
46
47/// Assert that the specified expression throws a libc++ debug exception.
48#define CHECK_DEBUG_THROWS(...) assert((CheckDebugThrows( [&]() { __VA_ARGS__; } )))
49
50template <class Func>
51inline bool CheckDebugThrows(Func&& func) {
52 try {
53 func();
54 } catch (std::__libcpp_debug_exception const&) {
55 return true;
56 }
57 return false;
58}
59
60namespace IteratorDebugChecks {
61
62enum ContainerType {
63 CT_None,
64 CT_String,
65 CT_Vector,
66 CT_VectorBool,
67 CT_List,
68 CT_Deque,
69 CT_ForwardList,
70 CT_Map,
71 CT_Set,
72 CT_MultiMap,
73 CT_MultiSet,
74 CT_UnorderedMap,
75 CT_UnorderedSet,
76 CT_UnorderedMultiMap,
77 CT_UnorderedMultiSet
78};
79
80constexpr bool isSequential(ContainerType CT) {
81 return CT_Vector >= CT && CT_ForwardList <= CT;
82}
83
84constexpr bool isAssociative(ContainerType CT) {
85 return CT_Map >= CT && CT_MultiSet <= CT;
86}
87
88constexpr bool isUnordered(ContainerType CT) {
89 return CT_UnorderedMap >= CT && CT_UnorderedMultiSet <= CT;
90}
91
92constexpr bool isSet(ContainerType CT) {
93 return CT == CT_Set
94 || CT == CT_MultiSet
95 || CT == CT_UnorderedSet
96 || CT == CT_UnorderedMultiSet;
97}
98
99constexpr bool isMap(ContainerType CT) {
100 return CT == CT_Map
101 || CT == CT_MultiMap
102 || CT == CT_UnorderedMap
103 || CT == CT_UnorderedMultiMap;
104}
105
106constexpr bool isMulti(ContainerType CT) {
107 return CT == CT_MultiMap
108 || CT == CT_MultiSet
109 || CT == CT_UnorderedMultiMap
110 || CT == CT_UnorderedMultiSet;
111}
112
113template <class Container, class ValueType = typename Container::value_type>
114struct ContainerDebugHelper {
115 static_assert(std::is_constructible<ValueType, int>::value,
116 "must be constructible from int");
117
118 static ValueType makeValueType(int val = 0, int = 0) {
119 return ValueType(val);
120 }
121};
122
123template <class Container>
124struct ContainerDebugHelper<Container, char> {
125 static char makeValueType(int = 0, int = 0) {
126 return 'A';
127 }
128};
129
130template <class Container, class Key, class Value>
131struct ContainerDebugHelper<Container, std::pair<const Key, Value> > {
132 using ValueType = std::pair<const Key, Value>;
133 static_assert(std::is_constructible<Key, int>::value,
134 "must be constructible from int");
135 static_assert(std::is_constructible<Value, int>::value,
136 "must be constructible from int");
137
138 static ValueType makeValueType(int key = 0, int val = 0) {
139 return ValueType(key, val);
140 }
141};
142
143template <class Container, ContainerType CT,
144 class Helper = ContainerDebugHelper<Container> >
145struct BasicContainerChecks {
146 using value_type = typename Container::value_type;
147 using iterator = typename Container::iterator;
148 using const_iterator = typename Container::const_iterator;
149 using allocator_type = typename Container::allocator_type;
150 using traits = std::iterator_traits<iterator>;
151 using category = typename traits::iterator_category;
152
153 static_assert(std::is_same<test_allocator<value_type>, allocator_type>::value,
154 "the container must use a test allocator");
155
156 static constexpr bool IsBiDir =
157 std::is_convertible<category, std::bidirectional_iterator_tag>::value;
158
159public:
160 static void run() {
161 run_iterator_tests();
162 run_container_tests();
163 run_allocator_aware_tests();
164 }
165
166 static void run_iterator_tests() {
167 try {
168 TestNullIterators<iterator>();
169 TestNullIterators<const_iterator>();
170 if constexpr (IsBiDir) { DecrementBegin(); }
171 IncrementEnd();
172 DerefEndIterator();
173 } catch (...) {
174 assert(false && "uncaught debug exception");
175 }
176 }
177
178 static void run_container_tests() {
179 try {
180 CopyInvalidatesIterators();
181 MoveInvalidatesIterators();
182 if constexpr (CT != CT_ForwardList) {
183 EraseIter();
184 EraseIterIter();
185 }
186 } catch (...) {
187 assert(false && "uncaught debug exception");
188 }
189 }
190
191 static void run_allocator_aware_tests() {
192 try {
193 SwapNonEqualAllocators();
194 if constexpr (CT != CT_ForwardList) {
195 SwapInvalidatesIterators(); // FIXME: This should work
196 }
197 } catch (...) {
198 assert(false && "uncaught debug exception");
199 }
200 }
201
202 static Container makeContainer(int size, allocator_type A = allocator_type()) {
203 Container C(A);
204 if constexpr (CT == CT_ForwardList) {
205 for (int i = 0; i < size; ++i)
206 C.insert_after(C.before_begin(), Helper::makeValueType(i));
207 } else {
208 for (int i = 0; i < size; ++i)
209 C.insert(C.end(), Helper::makeValueType(i));
210 assert(C.size() == static_cast<std::size_t>(size));
211 }
212 return C;
213 }
214
215 static value_type makeValueType(int value) {
216 return Helper::makeValueType(value);
217 }
218
219private:
220 // Iterator tests
221 template <class Iter>
222 static void TestNullIterators() {
223 CHECKPOINT("testing null iterator");
224 Iter it;
225 CHECK_DEBUG_THROWS( ++it );
226 CHECK_DEBUG_THROWS( it++ );
227 CHECK_DEBUG_THROWS( *it );
228 if constexpr (CT != CT_VectorBool) {
229 CHECK_DEBUG_THROWS( it.operator->() );
230 }
231 if constexpr (IsBiDir) {
232 CHECK_DEBUG_THROWS( --it );
233 CHECK_DEBUG_THROWS( it-- );
234 }
235 }
236
237 static void DecrementBegin() {
238 CHECKPOINT("testing decrement on begin");
239 Container C = makeContainer(1);
240 iterator i = C.end();
241 const_iterator ci = C.cend();
242 --i;
243 --ci;
244 assert(i == C.begin());
245 CHECK_DEBUG_THROWS( --i );
246 CHECK_DEBUG_THROWS( i-- );
247 CHECK_DEBUG_THROWS( --ci );
248 CHECK_DEBUG_THROWS( ci-- );
249 }
250
251 static void IncrementEnd() {
252 CHECKPOINT("testing increment on end");
253 Container C = makeContainer(1);
254 iterator i = C.begin();
255 const_iterator ci = C.begin();
256 ++i;
257 ++ci;
258 assert(i == C.end());
259 CHECK_DEBUG_THROWS( ++i );
260 CHECK_DEBUG_THROWS( i++ );
261 CHECK_DEBUG_THROWS( ++ci );
262 CHECK_DEBUG_THROWS( ci++ );
263 }
264
265 static void DerefEndIterator() {
266 CHECKPOINT("testing deref end iterator");
267 Container C = makeContainer(1);
268 iterator i = C.begin();
269 const_iterator ci = C.cbegin();
270 (void)*i; (void)*ci;
271 if constexpr (CT != CT_VectorBool) {
272 i.operator->();
273 ci.operator->();
274 }
275 ++i; ++ci;
276 assert(i == C.end());
277 CHECK_DEBUG_THROWS( *i );
278 CHECK_DEBUG_THROWS( *ci );
279 if constexpr (CT != CT_VectorBool) {
280 CHECK_DEBUG_THROWS( i.operator->() );
281 CHECK_DEBUG_THROWS( ci.operator->() );
282 }
283 }
284
285 // Container tests
286 static void CopyInvalidatesIterators() {
287 CHECKPOINT("copy invalidates iterators");
288 Container C1 = makeContainer(3);
289 iterator i = C1.begin();
290 Container C2 = C1;
291 if constexpr (CT == CT_ForwardList) {
292 iterator i_next = i;
293 ++i_next;
294 (void)*i_next;
295 CHECK_DEBUG_THROWS( C2.erase_after(i) );
296 C1.erase_after(i);
297 CHECK_DEBUG_THROWS( *i_next );
298 } else {
299 CHECK_DEBUG_THROWS( C2.erase(i) );
300 (void)*i;
301 C1.erase(i);
302 CHECK_DEBUG_THROWS( *i );
303 }
304 }
305
306 static void MoveInvalidatesIterators() {
307 CHECKPOINT("copy move invalidates iterators");
308 Container C1 = makeContainer(3);
309 iterator i = C1.begin();
310 Container C2 = std::move(C1);
311 (void) *i;
312 if constexpr (CT == CT_ForwardList) {
313 CHECK_DEBUG_THROWS( C1.erase_after(i) );
314 C2.erase_after(i);
315 } else {
316 CHECK_DEBUG_THROWS( C1.erase(i) );
317 C2.erase(i);
318 CHECK_DEBUG_THROWS(*i);
319 }
320 }
321
322 static void EraseIter() {
323 CHECKPOINT("testing erase invalidation");
324 Container C1 = makeContainer(2);
325 iterator it1 = C1.begin();
326 iterator it1_next = it1;
327 ++it1_next;
328 Container C2 = C1;
329 CHECK_DEBUG_THROWS( C2.erase(it1) ); // wrong container
330 CHECK_DEBUG_THROWS( C2.erase(C2.end()) ); // erase with end
331 C1.erase(it1_next);
332 CHECK_DEBUG_THROWS( C1.erase(it1_next) ); // invalidated iterator
333 C1.erase(it1);
334 CHECK_DEBUG_THROWS( C1.erase(it1) ); // invalidated iterator
335 }
336
337 static void EraseIterIter() {
338 CHECKPOINT("testing erase iter iter invalidation");
339 Container C1 = makeContainer(2);
340 iterator it1 = C1.begin();
341 iterator it1_next = it1;
342 ++it1_next;
343 Container C2 = C1;
344 iterator it2 = C2.begin();
345 iterator it2_next = it2;
346 ++it2_next;
347 CHECK_DEBUG_THROWS( C2.erase(it1, it1_next) ); // begin from wrong container
348 CHECK_DEBUG_THROWS( C2.erase(it1, it2_next) ); // end from wrong container
349 CHECK_DEBUG_THROWS( C2.erase(it2, it1_next) ); // both from wrong container
350 C2.erase(it2, it2_next);
351 }
352
353 // Allocator aware tests
354 static void SwapInvalidatesIterators() {
355 CHECKPOINT("testing swap invalidates iterators");
356 Container C1 = makeContainer(3);
357 Container C2 = makeContainer(3);
358 iterator it1 = C1.begin();
359 iterator it2 = C2.begin();
360 swap(C1, C2);
361 CHECK_DEBUG_THROWS( C1.erase(it1) );
362 C1.erase(it2);
363 //C2.erase(it1);
364 CHECK_DEBUG_THROWS( C1.erase(it1) );
365 }
366
367 static void SwapNonEqualAllocators() {
368 CHECKPOINT("testing swap with non-equal allocators");
369 Container C1 = makeContainer(3, allocator_type(1));
370 Container C2 = makeContainer(1, allocator_type(2));
371 Container C3 = makeContainer(2, allocator_type(2));
372 swap(C2, C3);
373 CHECK_DEBUG_THROWS( swap(C1, C2) );
374 }
375
376private:
377 BasicContainerChecks() = delete;
378};
379
380} // namespace IteratorDebugChecks
381
382#endif // TEST_SUPPORT_DEBUG_MODE_HELPER_H