1 //===- llvm/unittest/ADT/SmallVectorTest.cpp ------------------------------===//
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 // SmallVector unit tests.
11 //
12 //===----------------------------------------------------------------------===//
13
14 #include "llvm/ADT/ArrayRef.h"
15 #include "llvm/ADT/SmallVector.h"
16 #include "llvm/Support/Compiler.h"
17 #include "gtest/gtest.h"
18 #include <list>
19 #include <stdarg.h>
20
21 using namespace llvm;
22
23 namespace {
24
25 /// A helper class that counts the total number of constructor and
26 /// destructor calls.
27 class Constructable {
28 private:
29 static int numConstructorCalls;
30 static int numMoveConstructorCalls;
31 static int numCopyConstructorCalls;
32 static int numDestructorCalls;
33 static int numAssignmentCalls;
34 static int numMoveAssignmentCalls;
35 static int numCopyAssignmentCalls;
36
37 bool constructed;
38 int value;
39
40 public:
Constructable()41 Constructable() : constructed(true), value(0) {
42 ++numConstructorCalls;
43 }
44
Constructable(int val)45 Constructable(int val) : constructed(true), value(val) {
46 ++numConstructorCalls;
47 }
48
Constructable(const Constructable & src)49 Constructable(const Constructable & src) : constructed(true) {
50 value = src.value;
51 ++numConstructorCalls;
52 ++numCopyConstructorCalls;
53 }
54
Constructable(Constructable && src)55 Constructable(Constructable && src) : constructed(true) {
56 value = src.value;
57 ++numConstructorCalls;
58 ++numMoveConstructorCalls;
59 }
60
~Constructable()61 ~Constructable() {
62 EXPECT_TRUE(constructed);
63 ++numDestructorCalls;
64 constructed = false;
65 }
66
operator =(const Constructable & src)67 Constructable & operator=(const Constructable & src) {
68 EXPECT_TRUE(constructed);
69 value = src.value;
70 ++numAssignmentCalls;
71 ++numCopyAssignmentCalls;
72 return *this;
73 }
74
operator =(Constructable && src)75 Constructable & operator=(Constructable && src) {
76 EXPECT_TRUE(constructed);
77 value = src.value;
78 ++numAssignmentCalls;
79 ++numMoveAssignmentCalls;
80 return *this;
81 }
82
getValue() const83 int getValue() const {
84 return abs(value);
85 }
86
reset()87 static void reset() {
88 numConstructorCalls = 0;
89 numMoveConstructorCalls = 0;
90 numCopyConstructorCalls = 0;
91 numDestructorCalls = 0;
92 numAssignmentCalls = 0;
93 numMoveAssignmentCalls = 0;
94 numCopyAssignmentCalls = 0;
95 }
96
getNumConstructorCalls()97 static int getNumConstructorCalls() {
98 return numConstructorCalls;
99 }
100
getNumMoveConstructorCalls()101 static int getNumMoveConstructorCalls() {
102 return numMoveConstructorCalls;
103 }
104
getNumCopyConstructorCalls()105 static int getNumCopyConstructorCalls() {
106 return numCopyConstructorCalls;
107 }
108
getNumDestructorCalls()109 static int getNumDestructorCalls() {
110 return numDestructorCalls;
111 }
112
getNumAssignmentCalls()113 static int getNumAssignmentCalls() {
114 return numAssignmentCalls;
115 }
116
getNumMoveAssignmentCalls()117 static int getNumMoveAssignmentCalls() {
118 return numMoveAssignmentCalls;
119 }
120
getNumCopyAssignmentCalls()121 static int getNumCopyAssignmentCalls() {
122 return numCopyAssignmentCalls;
123 }
124
operator ==(const Constructable & c0,const Constructable & c1)125 friend bool operator==(const Constructable & c0, const Constructable & c1) {
126 return c0.getValue() == c1.getValue();
127 }
128
129 friend bool LLVM_ATTRIBUTE_UNUSED
operator !=(const Constructable & c0,const Constructable & c1)130 operator!=(const Constructable & c0, const Constructable & c1) {
131 return c0.getValue() != c1.getValue();
132 }
133 };
134
135 int Constructable::numConstructorCalls;
136 int Constructable::numCopyConstructorCalls;
137 int Constructable::numMoveConstructorCalls;
138 int Constructable::numDestructorCalls;
139 int Constructable::numAssignmentCalls;
140 int Constructable::numCopyAssignmentCalls;
141 int Constructable::numMoveAssignmentCalls;
142
143 struct NonCopyable {
NonCopyable__anone41481820111::NonCopyable144 NonCopyable() {}
NonCopyable__anone41481820111::NonCopyable145 NonCopyable(NonCopyable &&) {}
operator =__anone41481820111::NonCopyable146 NonCopyable &operator=(NonCopyable &&) { return *this; }
147 private:
148 NonCopyable(const NonCopyable &) = delete;
149 NonCopyable &operator=(const NonCopyable &) = delete;
150 };
151
CompileTest()152 LLVM_ATTRIBUTE_USED void CompileTest() {
153 SmallVector<NonCopyable, 0> V;
154 V.resize(42);
155 }
156
157 class SmallVectorTestBase : public testing::Test {
158 protected:
SetUp()159 void SetUp() override { Constructable::reset(); }
160
161 template <typename VectorT>
assertEmpty(VectorT & v)162 void assertEmpty(VectorT & v) {
163 // Size tests
164 EXPECT_EQ(0u, v.size());
165 EXPECT_TRUE(v.empty());
166
167 // Iterator tests
168 EXPECT_TRUE(v.begin() == v.end());
169 }
170
171 // Assert that v contains the specified values, in order.
172 template <typename VectorT>
assertValuesInOrder(VectorT & v,size_t size,...)173 void assertValuesInOrder(VectorT & v, size_t size, ...) {
174 EXPECT_EQ(size, v.size());
175
176 va_list ap;
177 va_start(ap, size);
178 for (size_t i = 0; i < size; ++i) {
179 int value = va_arg(ap, int);
180 EXPECT_EQ(value, v[i].getValue());
181 }
182
183 va_end(ap);
184 }
185
186 // Generate a sequence of values to initialize the vector.
187 template <typename VectorT>
makeSequence(VectorT & v,int start,int end)188 void makeSequence(VectorT & v, int start, int end) {
189 for (int i = start; i <= end; ++i) {
190 v.push_back(Constructable(i));
191 }
192 }
193 };
194
195 // Test fixture class
196 template <typename VectorT>
197 class SmallVectorTest : public SmallVectorTestBase {
198 protected:
199 VectorT theVector;
200 VectorT otherVector;
201 };
202
203
204 typedef ::testing::Types<SmallVector<Constructable, 0>,
205 SmallVector<Constructable, 1>,
206 SmallVector<Constructable, 2>,
207 SmallVector<Constructable, 4>,
208 SmallVector<Constructable, 5>
209 > SmallVectorTestTypes;
210 TYPED_TEST_CASE(SmallVectorTest, SmallVectorTestTypes);
211
212 // New vector test.
TYPED_TEST(SmallVectorTest,EmptyVectorTest)213 TYPED_TEST(SmallVectorTest, EmptyVectorTest) {
214 SCOPED_TRACE("EmptyVectorTest");
215 this->assertEmpty(this->theVector);
216 EXPECT_TRUE(this->theVector.rbegin() == this->theVector.rend());
217 EXPECT_EQ(0, Constructable::getNumConstructorCalls());
218 EXPECT_EQ(0, Constructable::getNumDestructorCalls());
219 }
220
221 // Simple insertions and deletions.
TYPED_TEST(SmallVectorTest,PushPopTest)222 TYPED_TEST(SmallVectorTest, PushPopTest) {
223 SCOPED_TRACE("PushPopTest");
224
225 // Track whether the vector will potentially have to grow.
226 bool RequiresGrowth = this->theVector.capacity() < 3;
227
228 // Push an element
229 this->theVector.push_back(Constructable(1));
230
231 // Size tests
232 this->assertValuesInOrder(this->theVector, 1u, 1);
233 EXPECT_FALSE(this->theVector.begin() == this->theVector.end());
234 EXPECT_FALSE(this->theVector.empty());
235
236 // Push another element
237 this->theVector.push_back(Constructable(2));
238 this->assertValuesInOrder(this->theVector, 2u, 1, 2);
239
240 // Insert at beginning
241 this->theVector.insert(this->theVector.begin(), this->theVector[1]);
242 this->assertValuesInOrder(this->theVector, 3u, 2, 1, 2);
243
244 // Pop one element
245 this->theVector.pop_back();
246 this->assertValuesInOrder(this->theVector, 2u, 2, 1);
247
248 // Pop remaining elements
249 this->theVector.pop_back();
250 this->theVector.pop_back();
251 this->assertEmpty(this->theVector);
252
253 // Check number of constructor calls. Should be 2 for each list element,
254 // one for the argument to push_back, one for the argument to insert,
255 // and one for the list element itself.
256 if (!RequiresGrowth) {
257 EXPECT_EQ(5, Constructable::getNumConstructorCalls());
258 EXPECT_EQ(5, Constructable::getNumDestructorCalls());
259 } else {
260 // If we had to grow the vector, these only have a lower bound, but should
261 // always be equal.
262 EXPECT_LE(5, Constructable::getNumConstructorCalls());
263 EXPECT_EQ(Constructable::getNumConstructorCalls(),
264 Constructable::getNumDestructorCalls());
265 }
266 }
267
268 // Clear test.
TYPED_TEST(SmallVectorTest,ClearTest)269 TYPED_TEST(SmallVectorTest, ClearTest) {
270 SCOPED_TRACE("ClearTest");
271
272 this->theVector.reserve(2);
273 this->makeSequence(this->theVector, 1, 2);
274 this->theVector.clear();
275
276 this->assertEmpty(this->theVector);
277 EXPECT_EQ(4, Constructable::getNumConstructorCalls());
278 EXPECT_EQ(4, Constructable::getNumDestructorCalls());
279 }
280
281 // Resize smaller test.
TYPED_TEST(SmallVectorTest,ResizeShrinkTest)282 TYPED_TEST(SmallVectorTest, ResizeShrinkTest) {
283 SCOPED_TRACE("ResizeShrinkTest");
284
285 this->theVector.reserve(3);
286 this->makeSequence(this->theVector, 1, 3);
287 this->theVector.resize(1);
288
289 this->assertValuesInOrder(this->theVector, 1u, 1);
290 EXPECT_EQ(6, Constructable::getNumConstructorCalls());
291 EXPECT_EQ(5, Constructable::getNumDestructorCalls());
292 }
293
294 // Resize bigger test.
TYPED_TEST(SmallVectorTest,ResizeGrowTest)295 TYPED_TEST(SmallVectorTest, ResizeGrowTest) {
296 SCOPED_TRACE("ResizeGrowTest");
297
298 this->theVector.resize(2);
299
300 EXPECT_EQ(2, Constructable::getNumConstructorCalls());
301 EXPECT_EQ(0, Constructable::getNumDestructorCalls());
302 EXPECT_EQ(2u, this->theVector.size());
303 }
304
TYPED_TEST(SmallVectorTest,ResizeWithElementsTest)305 TYPED_TEST(SmallVectorTest, ResizeWithElementsTest) {
306 this->theVector.resize(2);
307
308 Constructable::reset();
309
310 this->theVector.resize(4);
311
312 size_t Ctors = Constructable::getNumConstructorCalls();
313 EXPECT_TRUE(Ctors == 2 || Ctors == 4);
314 size_t MoveCtors = Constructable::getNumMoveConstructorCalls();
315 EXPECT_TRUE(MoveCtors == 0 || MoveCtors == 2);
316 size_t Dtors = Constructable::getNumDestructorCalls();
317 EXPECT_TRUE(Dtors == 0 || Dtors == 2);
318 }
319
320 // Resize with fill value.
TYPED_TEST(SmallVectorTest,ResizeFillTest)321 TYPED_TEST(SmallVectorTest, ResizeFillTest) {
322 SCOPED_TRACE("ResizeFillTest");
323
324 this->theVector.resize(3, Constructable(77));
325 this->assertValuesInOrder(this->theVector, 3u, 77, 77, 77);
326 }
327
328 // Overflow past fixed size.
TYPED_TEST(SmallVectorTest,OverflowTest)329 TYPED_TEST(SmallVectorTest, OverflowTest) {
330 SCOPED_TRACE("OverflowTest");
331
332 // Push more elements than the fixed size.
333 this->makeSequence(this->theVector, 1, 10);
334
335 // Test size and values.
336 EXPECT_EQ(10u, this->theVector.size());
337 for (int i = 0; i < 10; ++i) {
338 EXPECT_EQ(i+1, this->theVector[i].getValue());
339 }
340
341 // Now resize back to fixed size.
342 this->theVector.resize(1);
343
344 this->assertValuesInOrder(this->theVector, 1u, 1);
345 }
346
347 // Iteration tests.
TYPED_TEST(SmallVectorTest,IterationTest)348 TYPED_TEST(SmallVectorTest, IterationTest) {
349 this->makeSequence(this->theVector, 1, 2);
350
351 // Forward Iteration
352 typename TypeParam::iterator it = this->theVector.begin();
353 EXPECT_TRUE(*it == this->theVector.front());
354 EXPECT_TRUE(*it == this->theVector[0]);
355 EXPECT_EQ(1, it->getValue());
356 ++it;
357 EXPECT_TRUE(*it == this->theVector[1]);
358 EXPECT_TRUE(*it == this->theVector.back());
359 EXPECT_EQ(2, it->getValue());
360 ++it;
361 EXPECT_TRUE(it == this->theVector.end());
362 --it;
363 EXPECT_TRUE(*it == this->theVector[1]);
364 EXPECT_EQ(2, it->getValue());
365 --it;
366 EXPECT_TRUE(*it == this->theVector[0]);
367 EXPECT_EQ(1, it->getValue());
368
369 // Reverse Iteration
370 typename TypeParam::reverse_iterator rit = this->theVector.rbegin();
371 EXPECT_TRUE(*rit == this->theVector[1]);
372 EXPECT_EQ(2, rit->getValue());
373 ++rit;
374 EXPECT_TRUE(*rit == this->theVector[0]);
375 EXPECT_EQ(1, rit->getValue());
376 ++rit;
377 EXPECT_TRUE(rit == this->theVector.rend());
378 --rit;
379 EXPECT_TRUE(*rit == this->theVector[0]);
380 EXPECT_EQ(1, rit->getValue());
381 --rit;
382 EXPECT_TRUE(*rit == this->theVector[1]);
383 EXPECT_EQ(2, rit->getValue());
384 }
385
386 // Swap test.
TYPED_TEST(SmallVectorTest,SwapTest)387 TYPED_TEST(SmallVectorTest, SwapTest) {
388 SCOPED_TRACE("SwapTest");
389
390 this->makeSequence(this->theVector, 1, 2);
391 std::swap(this->theVector, this->otherVector);
392
393 this->assertEmpty(this->theVector);
394 this->assertValuesInOrder(this->otherVector, 2u, 1, 2);
395 }
396
397 // Append test
TYPED_TEST(SmallVectorTest,AppendTest)398 TYPED_TEST(SmallVectorTest, AppendTest) {
399 SCOPED_TRACE("AppendTest");
400
401 this->makeSequence(this->otherVector, 2, 3);
402
403 this->theVector.push_back(Constructable(1));
404 this->theVector.append(this->otherVector.begin(), this->otherVector.end());
405
406 this->assertValuesInOrder(this->theVector, 3u, 1, 2, 3);
407 }
408
409 // Append repeated test
TYPED_TEST(SmallVectorTest,AppendRepeatedTest)410 TYPED_TEST(SmallVectorTest, AppendRepeatedTest) {
411 SCOPED_TRACE("AppendRepeatedTest");
412
413 this->theVector.push_back(Constructable(1));
414 this->theVector.append(2, Constructable(77));
415 this->assertValuesInOrder(this->theVector, 3u, 1, 77, 77);
416 }
417
418 // Assign test
TYPED_TEST(SmallVectorTest,AssignTest)419 TYPED_TEST(SmallVectorTest, AssignTest) {
420 SCOPED_TRACE("AssignTest");
421
422 this->theVector.push_back(Constructable(1));
423 this->theVector.assign(2, Constructable(77));
424 this->assertValuesInOrder(this->theVector, 2u, 77, 77);
425 }
426
427 // Move-assign test
TYPED_TEST(SmallVectorTest,MoveAssignTest)428 TYPED_TEST(SmallVectorTest, MoveAssignTest) {
429 SCOPED_TRACE("MoveAssignTest");
430
431 // Set up our vector with a single element, but enough capacity for 4.
432 this->theVector.reserve(4);
433 this->theVector.push_back(Constructable(1));
434
435 // Set up the other vector with 2 elements.
436 this->otherVector.push_back(Constructable(2));
437 this->otherVector.push_back(Constructable(3));
438
439 // Move-assign from the other vector.
440 this->theVector = std::move(this->otherVector);
441
442 // Make sure we have the right result.
443 this->assertValuesInOrder(this->theVector, 2u, 2, 3);
444
445 // Make sure the # of constructor/destructor calls line up. There
446 // are two live objects after clearing the other vector.
447 this->otherVector.clear();
448 EXPECT_EQ(Constructable::getNumConstructorCalls()-2,
449 Constructable::getNumDestructorCalls());
450
451 // There shouldn't be any live objects any more.
452 this->theVector.clear();
453 EXPECT_EQ(Constructable::getNumConstructorCalls(),
454 Constructable::getNumDestructorCalls());
455 }
456
457 // Erase a single element
TYPED_TEST(SmallVectorTest,EraseTest)458 TYPED_TEST(SmallVectorTest, EraseTest) {
459 SCOPED_TRACE("EraseTest");
460
461 this->makeSequence(this->theVector, 1, 3);
462 this->theVector.erase(this->theVector.begin());
463 this->assertValuesInOrder(this->theVector, 2u, 2, 3);
464 }
465
466 // Erase a range of elements
TYPED_TEST(SmallVectorTest,EraseRangeTest)467 TYPED_TEST(SmallVectorTest, EraseRangeTest) {
468 SCOPED_TRACE("EraseRangeTest");
469
470 this->makeSequence(this->theVector, 1, 3);
471 this->theVector.erase(this->theVector.begin(), this->theVector.begin() + 2);
472 this->assertValuesInOrder(this->theVector, 1u, 3);
473 }
474
475 // Insert a single element.
TYPED_TEST(SmallVectorTest,InsertTest)476 TYPED_TEST(SmallVectorTest, InsertTest) {
477 SCOPED_TRACE("InsertTest");
478
479 this->makeSequence(this->theVector, 1, 3);
480 typename TypeParam::iterator I =
481 this->theVector.insert(this->theVector.begin() + 1, Constructable(77));
482 EXPECT_EQ(this->theVector.begin() + 1, I);
483 this->assertValuesInOrder(this->theVector, 4u, 1, 77, 2, 3);
484 }
485
486 // Insert a copy of a single element.
TYPED_TEST(SmallVectorTest,InsertCopy)487 TYPED_TEST(SmallVectorTest, InsertCopy) {
488 SCOPED_TRACE("InsertTest");
489
490 this->makeSequence(this->theVector, 1, 3);
491 Constructable C(77);
492 typename TypeParam::iterator I =
493 this->theVector.insert(this->theVector.begin() + 1, C);
494 EXPECT_EQ(this->theVector.begin() + 1, I);
495 this->assertValuesInOrder(this->theVector, 4u, 1, 77, 2, 3);
496 }
497
498 // Insert repeated elements.
TYPED_TEST(SmallVectorTest,InsertRepeatedTest)499 TYPED_TEST(SmallVectorTest, InsertRepeatedTest) {
500 SCOPED_TRACE("InsertRepeatedTest");
501
502 this->makeSequence(this->theVector, 1, 4);
503 Constructable::reset();
504 auto I =
505 this->theVector.insert(this->theVector.begin() + 1, 2, Constructable(16));
506 // Move construct the top element into newly allocated space, and optionally
507 // reallocate the whole buffer, move constructing into it.
508 // FIXME: This is inefficient, we shouldn't move things into newly allocated
509 // space, then move them up/around, there should only be 2 or 4 move
510 // constructions here.
511 EXPECT_TRUE(Constructable::getNumMoveConstructorCalls() == 2 ||
512 Constructable::getNumMoveConstructorCalls() == 6);
513 // Move assign the next two to shift them up and make a gap.
514 EXPECT_EQ(1, Constructable::getNumMoveAssignmentCalls());
515 // Copy construct the two new elements from the parameter.
516 EXPECT_EQ(2, Constructable::getNumCopyAssignmentCalls());
517 // All without any copy construction.
518 EXPECT_EQ(0, Constructable::getNumCopyConstructorCalls());
519 EXPECT_EQ(this->theVector.begin() + 1, I);
520 this->assertValuesInOrder(this->theVector, 6u, 1, 16, 16, 2, 3, 4);
521 }
522
523
TYPED_TEST(SmallVectorTest,InsertRepeatedAtEndTest)524 TYPED_TEST(SmallVectorTest, InsertRepeatedAtEndTest) {
525 SCOPED_TRACE("InsertRepeatedTest");
526
527 this->makeSequence(this->theVector, 1, 4);
528 Constructable::reset();
529 auto I = this->theVector.insert(this->theVector.end(), 2, Constructable(16));
530 // Just copy construct them into newly allocated space
531 EXPECT_EQ(2, Constructable::getNumCopyConstructorCalls());
532 // Move everything across if reallocation is needed.
533 EXPECT_TRUE(Constructable::getNumMoveConstructorCalls() == 0 ||
534 Constructable::getNumMoveConstructorCalls() == 4);
535 // Without ever moving or copying anything else.
536 EXPECT_EQ(0, Constructable::getNumCopyAssignmentCalls());
537 EXPECT_EQ(0, Constructable::getNumMoveAssignmentCalls());
538
539 EXPECT_EQ(this->theVector.begin() + 4, I);
540 this->assertValuesInOrder(this->theVector, 6u, 1, 2, 3, 4, 16, 16);
541 }
542
TYPED_TEST(SmallVectorTest,InsertRepeatedEmptyTest)543 TYPED_TEST(SmallVectorTest, InsertRepeatedEmptyTest) {
544 SCOPED_TRACE("InsertRepeatedTest");
545
546 this->makeSequence(this->theVector, 10, 15);
547
548 // Empty insert.
549 EXPECT_EQ(this->theVector.end(),
550 this->theVector.insert(this->theVector.end(),
551 0, Constructable(42)));
552 EXPECT_EQ(this->theVector.begin() + 1,
553 this->theVector.insert(this->theVector.begin() + 1,
554 0, Constructable(42)));
555 }
556
557 // Insert range.
TYPED_TEST(SmallVectorTest,InsertRangeTest)558 TYPED_TEST(SmallVectorTest, InsertRangeTest) {
559 SCOPED_TRACE("InsertRangeTest");
560
561 Constructable Arr[3] =
562 { Constructable(77), Constructable(77), Constructable(77) };
563
564 this->makeSequence(this->theVector, 1, 3);
565 Constructable::reset();
566 auto I = this->theVector.insert(this->theVector.begin() + 1, Arr, Arr + 3);
567 // Move construct the top 3 elements into newly allocated space.
568 // Possibly move the whole sequence into new space first.
569 // FIXME: This is inefficient, we shouldn't move things into newly allocated
570 // space, then move them up/around, there should only be 2 or 3 move
571 // constructions here.
572 EXPECT_TRUE(Constructable::getNumMoveConstructorCalls() == 2 ||
573 Constructable::getNumMoveConstructorCalls() == 5);
574 // Copy assign the lower 2 new elements into existing space.
575 EXPECT_EQ(2, Constructable::getNumCopyAssignmentCalls());
576 // Copy construct the third element into newly allocated space.
577 EXPECT_EQ(1, Constructable::getNumCopyConstructorCalls());
578 EXPECT_EQ(this->theVector.begin() + 1, I);
579 this->assertValuesInOrder(this->theVector, 6u, 1, 77, 77, 77, 2, 3);
580 }
581
582
TYPED_TEST(SmallVectorTest,InsertRangeAtEndTest)583 TYPED_TEST(SmallVectorTest, InsertRangeAtEndTest) {
584 SCOPED_TRACE("InsertRangeTest");
585
586 Constructable Arr[3] =
587 { Constructable(77), Constructable(77), Constructable(77) };
588
589 this->makeSequence(this->theVector, 1, 3);
590
591 // Insert at end.
592 Constructable::reset();
593 auto I = this->theVector.insert(this->theVector.end(), Arr, Arr+3);
594 // Copy construct the 3 elements into new space at the top.
595 EXPECT_EQ(3, Constructable::getNumCopyConstructorCalls());
596 // Don't copy/move anything else.
597 EXPECT_EQ(0, Constructable::getNumCopyAssignmentCalls());
598 // Reallocation might occur, causing all elements to be moved into the new
599 // buffer.
600 EXPECT_TRUE(Constructable::getNumMoveConstructorCalls() == 0 ||
601 Constructable::getNumMoveConstructorCalls() == 3);
602 EXPECT_EQ(0, Constructable::getNumMoveAssignmentCalls());
603 EXPECT_EQ(this->theVector.begin() + 3, I);
604 this->assertValuesInOrder(this->theVector, 6u,
605 1, 2, 3, 77, 77, 77);
606 }
607
TYPED_TEST(SmallVectorTest,InsertEmptyRangeTest)608 TYPED_TEST(SmallVectorTest, InsertEmptyRangeTest) {
609 SCOPED_TRACE("InsertRangeTest");
610
611 this->makeSequence(this->theVector, 1, 3);
612
613 // Empty insert.
614 EXPECT_EQ(this->theVector.end(),
615 this->theVector.insert(this->theVector.end(),
616 this->theVector.begin(),
617 this->theVector.begin()));
618 EXPECT_EQ(this->theVector.begin() + 1,
619 this->theVector.insert(this->theVector.begin() + 1,
620 this->theVector.begin(),
621 this->theVector.begin()));
622 }
623
624 // Comparison tests.
TYPED_TEST(SmallVectorTest,ComparisonTest)625 TYPED_TEST(SmallVectorTest, ComparisonTest) {
626 SCOPED_TRACE("ComparisonTest");
627
628 this->makeSequence(this->theVector, 1, 3);
629 this->makeSequence(this->otherVector, 1, 3);
630
631 EXPECT_TRUE(this->theVector == this->otherVector);
632 EXPECT_FALSE(this->theVector != this->otherVector);
633
634 this->otherVector.clear();
635 this->makeSequence(this->otherVector, 2, 4);
636
637 EXPECT_FALSE(this->theVector == this->otherVector);
638 EXPECT_TRUE(this->theVector != this->otherVector);
639 }
640
641 // Constant vector tests.
TYPED_TEST(SmallVectorTest,ConstVectorTest)642 TYPED_TEST(SmallVectorTest, ConstVectorTest) {
643 const TypeParam constVector;
644
645 EXPECT_EQ(0u, constVector.size());
646 EXPECT_TRUE(constVector.empty());
647 EXPECT_TRUE(constVector.begin() == constVector.end());
648 }
649
650 // Direct array access.
TYPED_TEST(SmallVectorTest,DirectVectorTest)651 TYPED_TEST(SmallVectorTest, DirectVectorTest) {
652 EXPECT_EQ(0u, this->theVector.size());
653 this->theVector.reserve(4);
654 EXPECT_LE(4u, this->theVector.capacity());
655 EXPECT_EQ(0, Constructable::getNumConstructorCalls());
656 this->theVector.push_back(1);
657 this->theVector.push_back(2);
658 this->theVector.push_back(3);
659 this->theVector.push_back(4);
660 EXPECT_EQ(4u, this->theVector.size());
661 EXPECT_EQ(8, Constructable::getNumConstructorCalls());
662 EXPECT_EQ(1, this->theVector[0].getValue());
663 EXPECT_EQ(2, this->theVector[1].getValue());
664 EXPECT_EQ(3, this->theVector[2].getValue());
665 EXPECT_EQ(4, this->theVector[3].getValue());
666 }
667
TYPED_TEST(SmallVectorTest,IteratorTest)668 TYPED_TEST(SmallVectorTest, IteratorTest) {
669 std::list<int> L;
670 this->theVector.insert(this->theVector.end(), L.begin(), L.end());
671 }
672
673 template <typename InvalidType> class DualSmallVectorsTest;
674
675 template <typename VectorT1, typename VectorT2>
676 class DualSmallVectorsTest<std::pair<VectorT1, VectorT2>> : public SmallVectorTestBase {
677 protected:
678 VectorT1 theVector;
679 VectorT2 otherVector;
680
681 template <typename T, unsigned N>
NumBuiltinElts(const SmallVector<T,N> &)682 static unsigned NumBuiltinElts(const SmallVector<T, N>&) { return N; }
683 };
684
685 typedef ::testing::Types<
686 // Small mode -> Small mode.
687 std::pair<SmallVector<Constructable, 4>, SmallVector<Constructable, 4>>,
688 // Small mode -> Big mode.
689 std::pair<SmallVector<Constructable, 4>, SmallVector<Constructable, 2>>,
690 // Big mode -> Small mode.
691 std::pair<SmallVector<Constructable, 2>, SmallVector<Constructable, 4>>,
692 // Big mode -> Big mode.
693 std::pair<SmallVector<Constructable, 2>, SmallVector<Constructable, 2>>
694 > DualSmallVectorTestTypes;
695
696 TYPED_TEST_CASE(DualSmallVectorsTest, DualSmallVectorTestTypes);
697
TYPED_TEST(DualSmallVectorsTest,MoveAssignment)698 TYPED_TEST(DualSmallVectorsTest, MoveAssignment) {
699 SCOPED_TRACE("MoveAssignTest-DualVectorTypes");
700
701 // Set up our vector with four elements.
702 for (unsigned I = 0; I < 4; ++I)
703 this->otherVector.push_back(Constructable(I));
704
705 const Constructable *OrigDataPtr = this->otherVector.data();
706
707 // Move-assign from the other vector.
708 this->theVector =
709 std::move(static_cast<SmallVectorImpl<Constructable>&>(this->otherVector));
710
711 // Make sure we have the right result.
712 this->assertValuesInOrder(this->theVector, 4u, 0, 1, 2, 3);
713
714 // Make sure the # of constructor/destructor calls line up. There
715 // are two live objects after clearing the other vector.
716 this->otherVector.clear();
717 EXPECT_EQ(Constructable::getNumConstructorCalls()-4,
718 Constructable::getNumDestructorCalls());
719
720 // If the source vector (otherVector) was in small-mode, assert that we just
721 // moved the data pointer over.
722 EXPECT_TRUE(this->NumBuiltinElts(this->otherVector) == 4 ||
723 this->theVector.data() == OrigDataPtr);
724
725 // There shouldn't be any live objects any more.
726 this->theVector.clear();
727 EXPECT_EQ(Constructable::getNumConstructorCalls(),
728 Constructable::getNumDestructorCalls());
729
730 // We shouldn't have copied anything in this whole process.
731 EXPECT_EQ(Constructable::getNumCopyConstructorCalls(), 0);
732 }
733
734 struct notassignable {
735 int &x;
notassignable__anone41481820111::notassignable736 notassignable(int &x) : x(x) {}
737 };
738
TEST(SmallVectorCustomTest,NoAssignTest)739 TEST(SmallVectorCustomTest, NoAssignTest) {
740 int x = 0;
741 SmallVector<notassignable, 2> vec;
742 vec.push_back(notassignable(x));
743 x = 42;
744 EXPECT_EQ(42, vec.pop_back_val().x);
745 }
746
747 struct MovedFrom {
748 bool hasValue;
MovedFrom__anone41481820111::MovedFrom749 MovedFrom() : hasValue(true) {
750 }
MovedFrom__anone41481820111::MovedFrom751 MovedFrom(MovedFrom&& m) : hasValue(m.hasValue) {
752 m.hasValue = false;
753 }
operator =__anone41481820111::MovedFrom754 MovedFrom &operator=(MovedFrom&& m) {
755 hasValue = m.hasValue;
756 m.hasValue = false;
757 return *this;
758 }
759 };
760
TEST(SmallVectorTest,MidInsert)761 TEST(SmallVectorTest, MidInsert) {
762 SmallVector<MovedFrom, 3> v;
763 v.push_back(MovedFrom());
764 v.insert(v.begin(), MovedFrom());
765 for (MovedFrom &m : v)
766 EXPECT_TRUE(m.hasValue);
767 }
768
769 enum EmplaceableArgState {
770 EAS_Defaulted,
771 EAS_Arg,
772 EAS_LValue,
773 EAS_RValue,
774 EAS_Failure
775 };
776 template <int I> struct EmplaceableArg {
777 EmplaceableArgState State;
EmplaceableArg__anone41481820111::EmplaceableArg778 EmplaceableArg() : State(EAS_Defaulted) {}
EmplaceableArg__anone41481820111::EmplaceableArg779 EmplaceableArg(EmplaceableArg &&X)
780 : State(X.State == EAS_Arg ? EAS_RValue : EAS_Failure) {}
EmplaceableArg__anone41481820111::EmplaceableArg781 EmplaceableArg(EmplaceableArg &X)
782 : State(X.State == EAS_Arg ? EAS_LValue : EAS_Failure) {}
783
EmplaceableArg__anone41481820111::EmplaceableArg784 explicit EmplaceableArg(bool) : State(EAS_Arg) {}
785
786 private:
787 EmplaceableArg &operator=(EmplaceableArg &&) = delete;
788 EmplaceableArg &operator=(const EmplaceableArg &) = delete;
789 };
790
791 enum EmplaceableState { ES_Emplaced, ES_Moved };
792 struct Emplaceable {
793 EmplaceableArg<0> A0;
794 EmplaceableArg<1> A1;
795 EmplaceableArg<2> A2;
796 EmplaceableArg<3> A3;
797 EmplaceableState State;
798
Emplaceable__anone41481820111::Emplaceable799 Emplaceable() : State(ES_Emplaced) {}
800
801 template <class A0Ty>
Emplaceable__anone41481820111::Emplaceable802 explicit Emplaceable(A0Ty &&A0)
803 : A0(std::forward<A0Ty>(A0)), State(ES_Emplaced) {}
804
805 template <class A0Ty, class A1Ty>
Emplaceable__anone41481820111::Emplaceable806 Emplaceable(A0Ty &&A0, A1Ty &&A1)
807 : A0(std::forward<A0Ty>(A0)), A1(std::forward<A1Ty>(A1)),
808 State(ES_Emplaced) {}
809
810 template <class A0Ty, class A1Ty, class A2Ty>
Emplaceable__anone41481820111::Emplaceable811 Emplaceable(A0Ty &&A0, A1Ty &&A1, A2Ty &&A2)
812 : A0(std::forward<A0Ty>(A0)), A1(std::forward<A1Ty>(A1)),
813 A2(std::forward<A2Ty>(A2)), State(ES_Emplaced) {}
814
815 template <class A0Ty, class A1Ty, class A2Ty, class A3Ty>
Emplaceable__anone41481820111::Emplaceable816 Emplaceable(A0Ty &&A0, A1Ty &&A1, A2Ty &&A2, A3Ty &&A3)
817 : A0(std::forward<A0Ty>(A0)), A1(std::forward<A1Ty>(A1)),
818 A2(std::forward<A2Ty>(A2)), A3(std::forward<A3Ty>(A3)),
819 State(ES_Emplaced) {}
820
Emplaceable__anone41481820111::Emplaceable821 Emplaceable(Emplaceable &&) : State(ES_Moved) {}
operator =__anone41481820111::Emplaceable822 Emplaceable &operator=(Emplaceable &&) {
823 State = ES_Moved;
824 return *this;
825 }
826
827 private:
828 Emplaceable(const Emplaceable &) = delete;
829 Emplaceable &operator=(const Emplaceable &) = delete;
830 };
831
TEST(SmallVectorTest,EmplaceBack)832 TEST(SmallVectorTest, EmplaceBack) {
833 EmplaceableArg<0> A0(true);
834 EmplaceableArg<1> A1(true);
835 EmplaceableArg<2> A2(true);
836 EmplaceableArg<3> A3(true);
837 {
838 SmallVector<Emplaceable, 3> V;
839 V.emplace_back();
840 EXPECT_TRUE(V.size() == 1);
841 EXPECT_TRUE(V.back().State == ES_Emplaced);
842 EXPECT_TRUE(V.back().A0.State == EAS_Defaulted);
843 EXPECT_TRUE(V.back().A1.State == EAS_Defaulted);
844 EXPECT_TRUE(V.back().A2.State == EAS_Defaulted);
845 EXPECT_TRUE(V.back().A3.State == EAS_Defaulted);
846 }
847 {
848 SmallVector<Emplaceable, 3> V;
849 V.emplace_back(std::move(A0));
850 EXPECT_TRUE(V.size() == 1);
851 EXPECT_TRUE(V.back().State == ES_Emplaced);
852 EXPECT_TRUE(V.back().A0.State == EAS_RValue);
853 EXPECT_TRUE(V.back().A1.State == EAS_Defaulted);
854 EXPECT_TRUE(V.back().A2.State == EAS_Defaulted);
855 EXPECT_TRUE(V.back().A3.State == EAS_Defaulted);
856 }
857 {
858 SmallVector<Emplaceable, 3> V;
859 V.emplace_back(A0);
860 EXPECT_TRUE(V.size() == 1);
861 EXPECT_TRUE(V.back().State == ES_Emplaced);
862 EXPECT_TRUE(V.back().A0.State == EAS_LValue);
863 EXPECT_TRUE(V.back().A1.State == EAS_Defaulted);
864 EXPECT_TRUE(V.back().A2.State == EAS_Defaulted);
865 EXPECT_TRUE(V.back().A3.State == EAS_Defaulted);
866 }
867 {
868 SmallVector<Emplaceable, 3> V;
869 V.emplace_back(A0, A1);
870 EXPECT_TRUE(V.size() == 1);
871 EXPECT_TRUE(V.back().State == ES_Emplaced);
872 EXPECT_TRUE(V.back().A0.State == EAS_LValue);
873 EXPECT_TRUE(V.back().A1.State == EAS_LValue);
874 EXPECT_TRUE(V.back().A2.State == EAS_Defaulted);
875 EXPECT_TRUE(V.back().A3.State == EAS_Defaulted);
876 }
877 {
878 SmallVector<Emplaceable, 3> V;
879 V.emplace_back(std::move(A0), std::move(A1));
880 EXPECT_TRUE(V.size() == 1);
881 EXPECT_TRUE(V.back().State == ES_Emplaced);
882 EXPECT_TRUE(V.back().A0.State == EAS_RValue);
883 EXPECT_TRUE(V.back().A1.State == EAS_RValue);
884 EXPECT_TRUE(V.back().A2.State == EAS_Defaulted);
885 EXPECT_TRUE(V.back().A3.State == EAS_Defaulted);
886 }
887 {
888 SmallVector<Emplaceable, 3> V;
889 V.emplace_back(std::move(A0), A1, std::move(A2), A3);
890 EXPECT_TRUE(V.size() == 1);
891 EXPECT_TRUE(V.back().State == ES_Emplaced);
892 EXPECT_TRUE(V.back().A0.State == EAS_RValue);
893 EXPECT_TRUE(V.back().A1.State == EAS_LValue);
894 EXPECT_TRUE(V.back().A2.State == EAS_RValue);
895 EXPECT_TRUE(V.back().A3.State == EAS_LValue);
896 }
897 {
898 SmallVector<int, 1> V;
899 V.emplace_back();
900 V.emplace_back(42);
901 EXPECT_EQ(2U, V.size());
902 EXPECT_EQ(0, V[0]);
903 EXPECT_EQ(42, V[1]);
904 }
905 }
906
TEST(SmallVectorTest,InitializerList)907 TEST(SmallVectorTest, InitializerList) {
908 SmallVector<int, 2> V1 = {};
909 EXPECT_TRUE(V1.empty());
910 V1 = {0, 0};
911 EXPECT_TRUE(makeArrayRef(V1).equals({0, 0}));
912 V1 = {-1, -1};
913 EXPECT_TRUE(makeArrayRef(V1).equals({-1, -1}));
914
915 SmallVector<int, 2> V2 = {1, 2, 3, 4};
916 EXPECT_TRUE(makeArrayRef(V2).equals({1, 2, 3, 4}));
917 V2.assign({4});
918 EXPECT_TRUE(makeArrayRef(V2).equals({4}));
919 V2.append({3, 2});
920 EXPECT_TRUE(makeArrayRef(V2).equals({4, 3, 2}));
921 V2.insert(V2.begin() + 1, 5);
922 EXPECT_TRUE(makeArrayRef(V2).equals({4, 5, 3, 2}));
923 }
924
925 } // end namespace
926