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Dominik Laskowski0bacf272020-10-22 14:08:27 -07001/*
2 * Copyright 2020 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#include <ftl/SmallVector.h>
18#include <gtest/gtest.h>
19
20#include <algorithm>
21#include <iterator>
22#include <string>
23#include <utility>
24
25using namespace std::string_literals;
26
27namespace android::test {
28
29using ftl::SmallVector;
30
31// Keep in sync with example usage in header file.
32TEST(SmallVector, Example) {
33 ftl::SmallVector<char, 3> vector;
34 EXPECT_TRUE(vector.empty());
35 EXPECT_FALSE(vector.dynamic());
36
37 vector = {'a', 'b', 'c'};
38 EXPECT_EQ(vector.size(), 3u);
39 EXPECT_FALSE(vector.dynamic());
40
41 vector.push_back('d');
42 EXPECT_TRUE(vector.dynamic());
43
44 vector.unstable_erase(vector.begin());
45 EXPECT_EQ(vector, (ftl::SmallVector{'d', 'b', 'c'}));
46
47 vector.pop_back();
48 EXPECT_EQ(vector.back(), 'b');
49 EXPECT_TRUE(vector.dynamic());
50
51 const char array[] = "hi";
52 vector = ftl::SmallVector(array);
53 EXPECT_EQ(vector, (ftl::SmallVector{'h', 'i', '\0'}));
54 EXPECT_FALSE(vector.dynamic());
Dominik Laskowskiccd50a42020-10-30 19:56:38 -070055
56 ftl::SmallVector strings = ftl::init::list<std::string>("abc")("123456", 3u)(3u, '?');
57 ASSERT_EQ(strings.size(), 3u);
58 EXPECT_FALSE(strings.dynamic());
59
60 EXPECT_EQ(strings[0], "abc");
61 EXPECT_EQ(strings[1], "123");
62 EXPECT_EQ(strings[2], "???");
Dominik Laskowski0bacf272020-10-22 14:08:27 -070063}
64
65TEST(SmallVector, Construct) {
66 {
67 // Default constructor.
68 SmallVector<std::string, 2> vector;
69
70 EXPECT_TRUE(vector.empty());
71 EXPECT_FALSE(vector.dynamic());
72 }
73 {
74 // Array constructor.
75 const float kFloats[] = {.1f, .2f, .3f};
76 SmallVector vector(kFloats);
77
78 EXPECT_EQ(vector, (SmallVector{.1f, .2f, .3f}));
79 EXPECT_FALSE(vector.dynamic());
80 }
81 {
82 // Iterator constructor.
83 const char chars[] = "abcdef";
84 std::string string(chars);
85 SmallVector<char, sizeof(chars)> vector(string.begin(), string.end());
86
87 EXPECT_STREQ(vector.begin(), chars);
88 EXPECT_FALSE(vector.dynamic());
89 }
90 {
91 // Variadic constructor with same types.
92 SmallVector vector = {1, 2, 3};
93
94 static_assert(std::is_same_v<decltype(vector), SmallVector<int, 3>>);
95 EXPECT_EQ(vector, (SmallVector{1, 2, 3}));
96 EXPECT_FALSE(vector.dynamic());
97 }
98 {
99 // Variadic constructor with different types.
100 const auto copy = "quince"s;
101 auto move = "tart"s;
102 SmallVector vector = {copy, std::move(move)};
103
104 static_assert(std::is_same_v<decltype(vector), SmallVector<std::string, 2>>);
105 EXPECT_EQ(vector, (SmallVector{"quince"s, "tart"s}));
106 EXPECT_FALSE(vector.dynamic());
107 }
108 {
109 // In-place constructor with same types.
Dominik Laskowskiccd50a42020-10-30 19:56:38 -0700110 SmallVector vector =
111 ftl::init::list<std::string>("redolent", 3u)("velveteen", 6u)("cakewalk", 4u);
Dominik Laskowski0bacf272020-10-22 14:08:27 -0700112
113 static_assert(std::is_same_v<decltype(vector), SmallVector<std::string, 3>>);
114 EXPECT_EQ(vector, (SmallVector{"red"s, "velvet"s, "cake"s}));
115 EXPECT_FALSE(vector.dynamic());
116 }
117 {
118 // In-place constructor with different types.
119 const auto copy = "red"s;
120 auto move = "velvet"s;
121 std::initializer_list<char> list = {'c', 'a', 'k', 'e'};
Dominik Laskowskiccd50a42020-10-30 19:56:38 -0700122 SmallVector vector = ftl::init::list<std::string>(copy.c_str())(std::move(move))(list);
Dominik Laskowski0bacf272020-10-22 14:08:27 -0700123
124 static_assert(std::is_same_v<decltype(vector), SmallVector<std::string, 3>>);
Dominik Laskowskiccd50a42020-10-30 19:56:38 -0700125 EXPECT_TRUE(move.empty());
Dominik Laskowski0bacf272020-10-22 14:08:27 -0700126 EXPECT_EQ(vector, (SmallVector{"red"s, "velvet"s, "cake"s}));
127 EXPECT_FALSE(vector.dynamic());
128 }
129 {
130 // Conversion from StaticVector.
131 ftl::StaticVector doubles = {.1, .2, .3};
132 SmallVector vector = std::move(doubles);
133 EXPECT_TRUE(doubles.empty());
134
135 static_assert(std::is_same_v<decltype(vector), SmallVector<double, 3>>);
136 EXPECT_EQ(vector, (SmallVector{.1, .2, .3}));
137 EXPECT_FALSE(vector.dynamic());
138 }
139}
140
141TEST(SmallVector, String) {
142 SmallVector<char, 10> chars;
143 char c = 'a';
144 std::generate_n(std::back_inserter(chars), chars.max_size(), [&c] { return c++; });
145 chars.push_back('\0');
146
147 EXPECT_TRUE(chars.dynamic());
148 EXPECT_EQ(chars.size(), 11u);
149 EXPECT_STREQ(chars.begin(), "abcdefghij");
150
151 // Constructor takes iterator range.
152 const char kString[] = "123456";
153 SmallVector<char, 10> string(std::begin(kString), std::end(kString));
154
155 EXPECT_FALSE(string.dynamic());
156 EXPECT_STREQ(string.begin(), "123456");
157 EXPECT_EQ(string.size(), 7u);
158
159 // Similar to emplace, but replaces rather than inserts.
160 string.replace(string.begin() + 5, '\0');
161 EXPECT_STREQ(string.begin(), "12345");
162
163 swap(chars, string);
164
165 EXPECT_STREQ(chars.begin(), "12345");
166 EXPECT_STREQ(string.begin(), "abcdefghij");
167
168 EXPECT_FALSE(chars.dynamic());
169 EXPECT_TRUE(string.dynamic());
170}
171
172TEST(SmallVector, CopyableElement) {
173 struct Pair {
174 // Needed because std::vector emplace does not use uniform initialization.
175 Pair(int a, int b) : a(a), b(b) {}
176
177 const int a, b;
178 bool operator==(Pair p) const { return p.a == a && p.b == b; }
179 };
180
181 SmallVector<Pair, 5> pairs;
182
183 EXPECT_TRUE(pairs.empty());
184 EXPECT_EQ(pairs.max_size(), 5u);
185
186 for (size_t i = 0; i < pairs.max_size(); ++i) {
187 EXPECT_EQ(pairs.size(), i);
188
189 const int a = static_cast<int>(i) * 2;
190 EXPECT_EQ(pairs.emplace_back(a, a + 1), Pair(a, a + 1));
191 }
192
193 EXPECT_EQ(pairs.size(), 5u);
194 EXPECT_FALSE(pairs.dynamic());
195
196 // The vector is promoted when full.
197 EXPECT_EQ(pairs.emplace_back(10, 11), Pair(10, 11));
198 EXPECT_TRUE(pairs.dynamic());
199
200 EXPECT_EQ(pairs,
201 (SmallVector{Pair{0, 1}, Pair{2, 3}, Pair{4, 5}, Pair{6, 7}, Pair{8, 9},
202 Pair{10, 11}}));
203
204 // Constructor takes at most N elements.
205 SmallVector<int, 6> sums = {0, 0, 0, 0, 0, 0};
206 EXPECT_FALSE(sums.dynamic());
207
208 // Random-access iterators comply with standard.
209 std::transform(pairs.begin(), pairs.end(), sums.begin(), [](Pair p) { return p.a + p.b; });
210 EXPECT_EQ(sums, (SmallVector{1, 5, 9, 13, 17, 21}));
211
212 sums.pop_back();
213 std::reverse(sums.begin(), sums.end());
214
215 EXPECT_EQ(sums, (SmallVector{17, 13, 9, 5, 1}));
216}
217
218TEST(SmallVector, MovableElement) {
Dominik Laskowskiccd50a42020-10-30 19:56:38 -0700219 // Construct std::string elements in place from per-element arguments.
220 SmallVector strings = ftl::init::list<std::string>()()()("cake")("velvet")("red")();
Dominik Laskowski0bacf272020-10-22 14:08:27 -0700221 strings.pop_back();
222
223 EXPECT_EQ(strings.max_size(), 7u);
224 EXPECT_EQ(strings.size(), 6u);
225
226 // Erase "cake" and append a substring copy.
227 {
228 const auto it = std::find_if(strings.begin(), strings.end(),
229 [](const auto& s) { return !s.empty(); });
230 ASSERT_FALSE(it == strings.end());
231 EXPECT_EQ(*it, "cake");
232
Dominik Laskowskiccd50a42020-10-30 19:56:38 -0700233 // Construct std::string from first 4 characters of string literal.
Dominik Laskowski0bacf272020-10-22 14:08:27 -0700234 strings.unstable_erase(it);
235 EXPECT_EQ(strings.emplace_back("cakewalk", 4u), "cake"s);
236 }
237
238 strings[1] = "quince"s;
239
240 // Replace last empty string with "tart".
241 {
242 const auto rit = std::find(strings.rbegin(), strings.rend(), std::string());
243 ASSERT_FALSE(rit == strings.rend());
244
245 std::initializer_list<char> list = {'t', 'a', 'r', 't'};
246 strings.replace(rit.base() - 1, list);
247 }
248
249 strings.front().assign("pie");
250
251 EXPECT_EQ(strings, (SmallVector{"pie"s, "quince"s, "tart"s, "red"s, "velvet"s, "cake"s}));
252
253 strings.push_back("nougat");
254 strings.push_back("oreo");
255 EXPECT_TRUE(strings.dynamic());
256
257 std::rotate(strings.begin(), strings.end() - 2, strings.end());
258
259 EXPECT_EQ(strings,
260 (SmallVector{"nougat"s, "oreo"s, "pie"s, "quince"s, "tart"s, "red"s, "velvet"s,
261 "cake"s}));
262}
263
264TEST(SmallVector, Replace) {
265 // Replacing does not require a copy/move assignment operator.
266 struct Word {
267 explicit Word(std::string str) : str(std::move(str)) {}
268 const std::string str;
269
270 bool operator==(const Word& other) const { return other.str == str; }
271 };
272
Dominik Laskowskiccd50a42020-10-30 19:56:38 -0700273 SmallVector words = ftl::init::list<Word>("colored")("velour");
Dominik Laskowski0bacf272020-10-22 14:08:27 -0700274
275 // The replaced element can be referenced by the replacement.
276 {
277 const Word& word = words.replace(words.last(), words.back().str.substr(0, 3) + "vet");
278 EXPECT_EQ(word, Word("velvet"));
279 }
280
281 // The vector is not promoted if replacing while full.
282 EXPECT_FALSE(words.dynamic());
283
284 words.emplace_back("cake");
285 EXPECT_TRUE(words.dynamic());
286
287 {
288 const Word& word = words.replace(words.begin(), words.front().str.substr(4));
289 EXPECT_EQ(word, Word("red"));
290 }
291
292 EXPECT_EQ(words, (SmallVector{Word("red"), Word("velvet"), Word("cake")}));
293}
294
295TEST(SmallVector, ReverseAppend) {
296 SmallVector strings = {"red"s, "velvet"s, "cake"s};
297 EXPECT_FALSE(strings.dynamic());
298
299 auto rit = strings.rbegin();
300 while (rit != strings.rend()) {
301 // Iterator and reference are invalidated on insertion.
302 const auto i = std::distance(strings.begin(), rit.base());
303 std::string s = *rit;
304
305 strings.push_back(std::move(s));
306 rit = std::make_reverse_iterator(strings.begin() + i) + 1;
307 }
308
309 EXPECT_EQ(strings, (SmallVector{"red"s, "velvet"s, "cake"s, "cake"s, "velvet"s, "red"s}));
310 EXPECT_TRUE(strings.dynamic());
311}
312
313TEST(SmallVector, Sort) {
Dominik Laskowskiccd50a42020-10-30 19:56:38 -0700314 SmallVector strings = ftl::init::list<std::string>("pie")("quince")("tart")("red")("velvet");
Dominik Laskowski0bacf272020-10-22 14:08:27 -0700315 strings.push_back("cake"s);
316
317 auto sorted = std::move(strings);
318 EXPECT_TRUE(strings.empty());
319
320 EXPECT_TRUE(sorted.dynamic());
321 EXPECT_TRUE(strings.dynamic());
322
323 std::sort(sorted.begin(), sorted.end());
324 EXPECT_EQ(sorted, (SmallVector{"cake"s, "pie"s, "quince"s, "red"s, "tart"s, "velvet"s}));
325
326 // Constructor takes array reference.
327 {
328 const char* kStrings[] = {"cake", "lie"};
329 strings = SmallVector(kStrings);
330 EXPECT_FALSE(strings.dynamic());
331 }
332
333 EXPECT_GT(sorted, strings);
334 swap(sorted, strings);
335 EXPECT_LT(sorted, strings);
336
337 EXPECT_FALSE(sorted.dynamic());
338 EXPECT_TRUE(strings.dynamic());
339
340 // Append remaining elements, such that "pie" is the only difference.
341 for (const char* str : {"quince", "red", "tart", "velvet"}) {
342 sorted.emplace_back(str);
343 }
344 EXPECT_TRUE(sorted.dynamic());
345
346 EXPECT_NE(sorted, strings);
347
348 // Replace second element with "pie".
349 const auto it = sorted.begin() + 1;
350 EXPECT_EQ(sorted.replace(it, 'p' + it->substr(1)), "pie");
351
352 EXPECT_EQ(sorted, strings);
353}
354
355namespace {
356
357struct DestroyCounts {
358 DestroyCounts(int& live, int& dead) : counts{live, dead} {}
359 DestroyCounts(const DestroyCounts& other) : counts(other.counts) {}
360 DestroyCounts(DestroyCounts&& other) : counts(other.counts) { other.alive = false; }
361 ~DestroyCounts() { ++(alive ? counts.live : counts.dead); }
362
363 struct {
364 int& live;
365 int& dead;
366 } counts;
367
368 bool alive = true;
369};
370
371void swap(DestroyCounts& lhs, DestroyCounts& rhs) {
372 std::swap(lhs.alive, rhs.alive);
373}
374
375} // namespace
376
377TEST(SmallVector, Destroy) {
378 int live = 0;
379 int dead = 0;
380
381 { SmallVector<DestroyCounts, 3> counts; }
382 EXPECT_EQ(0, live);
383 EXPECT_EQ(0, dead);
384
385 {
386 SmallVector<DestroyCounts, 3> counts;
387 counts.emplace_back(live, dead);
388 counts.emplace_back(live, dead);
389 counts.emplace_back(live, dead);
390
391 EXPECT_FALSE(counts.dynamic());
392 }
393 EXPECT_EQ(3, live);
394 EXPECT_EQ(0, dead);
395
396 live = 0;
397 {
398 SmallVector<DestroyCounts, 3> counts;
399 counts.emplace_back(live, dead);
400 counts.emplace_back(live, dead);
401 counts.emplace_back(live, dead);
402 counts.emplace_back(live, dead);
403
404 EXPECT_TRUE(counts.dynamic());
405 }
406 EXPECT_EQ(4, live);
407 EXPECT_EQ(3, dead);
408
409 live = dead = 0;
410 {
411 SmallVector<DestroyCounts, 2> counts;
412 counts.emplace_back(live, dead);
413 counts.emplace_back(live, dead);
414 counts.emplace_back(live, dead);
415
416 auto copy = counts;
417 EXPECT_TRUE(copy.dynamic());
418 }
419 EXPECT_EQ(6, live);
420 EXPECT_EQ(2, dead);
421
422 live = dead = 0;
423 {
424 SmallVector<DestroyCounts, 2> counts;
425 counts.emplace_back(live, dead);
426 counts.emplace_back(live, dead);
427 counts.emplace_back(live, dead);
428
429 auto move = std::move(counts);
430 EXPECT_TRUE(move.dynamic());
431 }
432 EXPECT_EQ(3, live);
433 EXPECT_EQ(2, dead);
434
435 live = dead = 0;
436 {
437 SmallVector<DestroyCounts, 2> counts1;
438 counts1.emplace_back(live, dead);
439 counts1.emplace_back(live, dead);
440 counts1.emplace_back(live, dead);
441
442 EXPECT_TRUE(counts1.dynamic());
443 EXPECT_EQ(2, dead);
444 dead = 0;
445
446 SmallVector<DestroyCounts, 2> counts2;
447 counts2.emplace_back(live, dead);
448
449 EXPECT_FALSE(counts2.dynamic());
450
451 swap(counts1, counts2);
452
453 EXPECT_FALSE(counts1.dynamic());
454 EXPECT_TRUE(counts2.dynamic());
455
456 EXPECT_EQ(0, live);
457 EXPECT_EQ(1, dead);
458
459 dead = 0;
460 }
461 EXPECT_EQ(4, live);
462 EXPECT_EQ(0, dead);
463}
464
465} // namespace android::test