valuetest.cpp 46 KB

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  1. // Tencent is pleased to support the open source community by making RapidJSON available.
  2. //
  3. // Copyright (C) 2015 THL A29 Limited, a Tencent company, and Milo Yip. All rights reserved.
  4. //
  5. // Licensed under the MIT License (the "License"); you may not use this file except
  6. // in compliance with the License. You may obtain a copy of the License at
  7. //
  8. // http://opensource.org/licenses/MIT
  9. //
  10. // Unless required by applicable law or agreed to in writing, software distributed
  11. // under the License is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR
  12. // CONDITIONS OF ANY KIND, either express or implied. See the License for the
  13. // specific language governing permissions and limitations under the License.
  14. #include "unittest.h"
  15. #include "rapidjson/document.h"
  16. #include <algorithm>
  17. #ifdef __clang__
  18. RAPIDJSON_DIAG_PUSH
  19. RAPIDJSON_DIAG_OFF(c++98-compat)
  20. #endif
  21. using namespace rapidjson;
  22. TEST(Value, DefaultConstructor) {
  23. Value x;
  24. EXPECT_EQ(kNullType, x.GetType());
  25. EXPECT_TRUE(x.IsNull());
  26. //std::cout << "sizeof(Value): " << sizeof(x) << std::endl;
  27. }
  28. // Should not pass compilation
  29. //TEST(Value, copy_constructor) {
  30. // Value x(1234);
  31. // Value y = x;
  32. //}
  33. #if RAPIDJSON_HAS_CXX11_RVALUE_REFS
  34. #if 0 // Many old compiler does not support these. Turn it off temporaily.
  35. #include <type_traits>
  36. TEST(Value, Traits) {
  37. typedef GenericValue<UTF8<>, CrtAllocator> Value;
  38. static_assert(std::is_constructible<Value>::value, "");
  39. static_assert(std::is_default_constructible<Value>::value, "");
  40. #ifndef _MSC_VER
  41. static_assert(!std::is_copy_constructible<Value>::value, "");
  42. #endif
  43. static_assert(std::is_move_constructible<Value>::value, "");
  44. #ifndef _MSC_VER
  45. static_assert(std::is_nothrow_constructible<Value>::value, "");
  46. static_assert(std::is_nothrow_default_constructible<Value>::value, "");
  47. static_assert(!std::is_nothrow_copy_constructible<Value>::value, "");
  48. static_assert(std::is_nothrow_move_constructible<Value>::value, "");
  49. #endif
  50. static_assert(std::is_assignable<Value,Value>::value, "");
  51. #ifndef _MSC_VER
  52. static_assert(!std::is_copy_assignable<Value>::value, "");
  53. #endif
  54. static_assert(std::is_move_assignable<Value>::value, "");
  55. #ifndef _MSC_VER
  56. static_assert(std::is_nothrow_assignable<Value, Value>::value, "");
  57. #endif
  58. static_assert(!std::is_nothrow_copy_assignable<Value>::value, "");
  59. #ifndef _MSC_VER
  60. static_assert(std::is_nothrow_move_assignable<Value>::value, "");
  61. #endif
  62. static_assert(std::is_destructible<Value>::value, "");
  63. #ifndef _MSC_VER
  64. static_assert(std::is_nothrow_destructible<Value>::value, "");
  65. #endif
  66. }
  67. #endif
  68. TEST(Value, MoveConstructor) {
  69. typedef GenericValue<UTF8<>, CrtAllocator> Value;
  70. Value::AllocatorType allocator;
  71. Value x((Value(kArrayType)));
  72. x.Reserve(4u, allocator);
  73. x.PushBack(1, allocator).PushBack(2, allocator).PushBack(3, allocator).PushBack(4, allocator);
  74. EXPECT_TRUE(x.IsArray());
  75. EXPECT_EQ(4u, x.Size());
  76. // Value y(x); // does not compile (!is_copy_constructible)
  77. Value y(std::move(x));
  78. EXPECT_TRUE(x.IsNull());
  79. EXPECT_TRUE(y.IsArray());
  80. EXPECT_EQ(4u, y.Size());
  81. // Value z = y; // does not compile (!is_copy_assignable)
  82. Value z = std::move(y);
  83. EXPECT_TRUE(y.IsNull());
  84. EXPECT_TRUE(z.IsArray());
  85. EXPECT_EQ(4u, z.Size());
  86. }
  87. #endif // RAPIDJSON_HAS_CXX11_RVALUE_REFS
  88. TEST(Value, AssignmentOperator) {
  89. Value x(1234);
  90. Value y;
  91. y = x;
  92. EXPECT_TRUE(x.IsNull()); // move semantic
  93. EXPECT_EQ(1234, y.GetInt());
  94. y = 5678;
  95. EXPECT_TRUE(y.IsInt());
  96. EXPECT_EQ(5678, y.GetInt());
  97. x = "Hello";
  98. EXPECT_TRUE(x.IsString());
  99. EXPECT_STREQ(x.GetString(),"Hello");
  100. y = StringRef(x.GetString(),x.GetStringLength());
  101. EXPECT_TRUE(y.IsString());
  102. EXPECT_EQ(y.GetString(),x.GetString());
  103. EXPECT_EQ(y.GetStringLength(),x.GetStringLength());
  104. static char mstr[] = "mutable";
  105. // y = mstr; // should not compile
  106. y = StringRef(mstr);
  107. EXPECT_TRUE(y.IsString());
  108. EXPECT_EQ(y.GetString(),mstr);
  109. #if RAPIDJSON_HAS_CXX11_RVALUE_REFS
  110. // C++11 move assignment
  111. x = Value("World");
  112. EXPECT_TRUE(x.IsString());
  113. EXPECT_STREQ("World", x.GetString());
  114. x = std::move(y);
  115. EXPECT_TRUE(y.IsNull());
  116. EXPECT_TRUE(x.IsString());
  117. EXPECT_EQ(x.GetString(), mstr);
  118. y = std::move(Value().SetInt(1234));
  119. EXPECT_TRUE(y.IsInt());
  120. EXPECT_EQ(1234, y);
  121. #endif // RAPIDJSON_HAS_CXX11_RVALUE_REFS
  122. }
  123. template <typename A, typename B>
  124. void TestEqual(const A& a, const B& b) {
  125. EXPECT_TRUE (a == b);
  126. EXPECT_FALSE(a != b);
  127. EXPECT_TRUE (b == a);
  128. EXPECT_FALSE(b != a);
  129. }
  130. template <typename A, typename B>
  131. void TestUnequal(const A& a, const B& b) {
  132. EXPECT_FALSE(a == b);
  133. EXPECT_TRUE (a != b);
  134. EXPECT_FALSE(b == a);
  135. EXPECT_TRUE (b != a);
  136. }
  137. TEST(Value, EqualtoOperator) {
  138. Value::AllocatorType allocator;
  139. Value x(kObjectType);
  140. x.AddMember("hello", "world", allocator)
  141. .AddMember("t", Value(true).Move(), allocator)
  142. .AddMember("f", Value(false).Move(), allocator)
  143. .AddMember("n", Value(kNullType).Move(), allocator)
  144. .AddMember("i", 123, allocator)
  145. .AddMember("pi", 3.14, allocator)
  146. .AddMember("a", Value(kArrayType).Move().PushBack(1, allocator).PushBack(2, allocator).PushBack(3, allocator), allocator);
  147. // Test templated operator==() and operator!=()
  148. TestEqual(x["hello"], "world");
  149. const char* cc = "world";
  150. TestEqual(x["hello"], cc);
  151. char* c = strdup("world");
  152. TestEqual(x["hello"], c);
  153. free(c);
  154. TestEqual(x["t"], true);
  155. TestEqual(x["f"], false);
  156. TestEqual(x["i"], 123);
  157. TestEqual(x["pi"], 3.14);
  158. // Test operator==() (including different allocators)
  159. CrtAllocator crtAllocator;
  160. GenericValue<UTF8<>, CrtAllocator> y;
  161. GenericDocument<UTF8<>, CrtAllocator> z(&crtAllocator);
  162. y.CopyFrom(x, crtAllocator);
  163. z.CopyFrom(y, z.GetAllocator());
  164. TestEqual(x, y);
  165. TestEqual(y, z);
  166. TestEqual(z, x);
  167. // Swapping member order should be fine.
  168. EXPECT_TRUE(y.RemoveMember("t"));
  169. TestUnequal(x, y);
  170. TestUnequal(z, y);
  171. EXPECT_TRUE(z.RemoveMember("t"));
  172. TestUnequal(x, z);
  173. TestEqual(y, z);
  174. y.AddMember("t", false, crtAllocator);
  175. z.AddMember("t", false, z.GetAllocator());
  176. TestUnequal(x, y);
  177. TestUnequal(z, x);
  178. y["t"] = true;
  179. z["t"] = true;
  180. TestEqual(x, y);
  181. TestEqual(y, z);
  182. TestEqual(z, x);
  183. // Swapping element order is not OK
  184. x["a"][0].Swap(x["a"][1]);
  185. TestUnequal(x, y);
  186. x["a"][0].Swap(x["a"][1]);
  187. TestEqual(x, y);
  188. // Array of different size
  189. x["a"].PushBack(4, allocator);
  190. TestUnequal(x, y);
  191. x["a"].PopBack();
  192. TestEqual(x, y);
  193. // Issue #129: compare Uint64
  194. x.SetUint64(RAPIDJSON_UINT64_C2(0xFFFFFFFF, 0xFFFFFFF0));
  195. y.SetUint64(RAPIDJSON_UINT64_C2(0xFFFFFFFF, 0xFFFFFFFF));
  196. TestUnequal(x, y);
  197. }
  198. template <typename Value>
  199. void TestCopyFrom() {
  200. typename Value::AllocatorType a;
  201. Value v1(1234);
  202. Value v2(v1, a); // deep copy constructor
  203. EXPECT_TRUE(v1.GetType() == v2.GetType());
  204. EXPECT_EQ(v1.GetInt(), v2.GetInt());
  205. v1.SetString("foo");
  206. v2.CopyFrom(v1, a);
  207. EXPECT_TRUE(v1.GetType() == v2.GetType());
  208. EXPECT_STREQ(v1.GetString(), v2.GetString());
  209. EXPECT_EQ(v1.GetString(), v2.GetString()); // string NOT copied
  210. v1.SetString("bar", a); // copy string
  211. v2.CopyFrom(v1, a);
  212. EXPECT_TRUE(v1.GetType() == v2.GetType());
  213. EXPECT_STREQ(v1.GetString(), v2.GetString());
  214. EXPECT_NE(v1.GetString(), v2.GetString()); // string copied
  215. v1.SetArray().PushBack(1234, a);
  216. v2.CopyFrom(v1, a);
  217. EXPECT_TRUE(v2.IsArray());
  218. EXPECT_EQ(v1.Size(), v2.Size());
  219. v1.PushBack(Value().SetString("foo", a), a); // push string copy
  220. EXPECT_TRUE(v1.Size() != v2.Size());
  221. v2.CopyFrom(v1, a);
  222. EXPECT_TRUE(v1.Size() == v2.Size());
  223. EXPECT_STREQ(v1[1].GetString(), v2[1].GetString());
  224. EXPECT_NE(v1[1].GetString(), v2[1].GetString()); // string got copied
  225. }
  226. TEST(Value, CopyFrom) {
  227. TestCopyFrom<Value>();
  228. TestCopyFrom<GenericValue<UTF8<>, CrtAllocator> >();
  229. }
  230. TEST(Value, Swap) {
  231. Value v1(1234);
  232. Value v2(kObjectType);
  233. EXPECT_EQ(&v1, &v1.Swap(v2));
  234. EXPECT_TRUE(v1.IsObject());
  235. EXPECT_TRUE(v2.IsInt());
  236. EXPECT_EQ(1234, v2.GetInt());
  237. // testing std::swap compatibility
  238. using std::swap;
  239. swap(v1, v2);
  240. EXPECT_TRUE(v1.IsInt());
  241. EXPECT_TRUE(v2.IsObject());
  242. }
  243. TEST(Value, Null) {
  244. // Default constructor
  245. Value x;
  246. EXPECT_EQ(kNullType, x.GetType());
  247. EXPECT_TRUE(x.IsNull());
  248. EXPECT_FALSE(x.IsTrue());
  249. EXPECT_FALSE(x.IsFalse());
  250. EXPECT_FALSE(x.IsNumber());
  251. EXPECT_FALSE(x.IsString());
  252. EXPECT_FALSE(x.IsObject());
  253. EXPECT_FALSE(x.IsArray());
  254. // Constructor with type
  255. Value y(kNullType);
  256. EXPECT_TRUE(y.IsNull());
  257. // SetNull();
  258. Value z(true);
  259. z.SetNull();
  260. EXPECT_TRUE(z.IsNull());
  261. }
  262. TEST(Value, True) {
  263. // Constructor with bool
  264. Value x(true);
  265. EXPECT_EQ(kTrueType, x.GetType());
  266. EXPECT_TRUE(x.GetBool());
  267. EXPECT_TRUE(x.IsBool());
  268. EXPECT_TRUE(x.IsTrue());
  269. EXPECT_FALSE(x.IsNull());
  270. EXPECT_FALSE(x.IsFalse());
  271. EXPECT_FALSE(x.IsNumber());
  272. EXPECT_FALSE(x.IsString());
  273. EXPECT_FALSE(x.IsObject());
  274. EXPECT_FALSE(x.IsArray());
  275. // Constructor with type
  276. Value y(kTrueType);
  277. EXPECT_TRUE(y.IsTrue());
  278. // SetBool()
  279. Value z;
  280. z.SetBool(true);
  281. EXPECT_TRUE(z.IsTrue());
  282. }
  283. TEST(Value, False) {
  284. // Constructor with bool
  285. Value x(false);
  286. EXPECT_EQ(kFalseType, x.GetType());
  287. EXPECT_TRUE(x.IsBool());
  288. EXPECT_TRUE(x.IsFalse());
  289. EXPECT_FALSE(x.IsNull());
  290. EXPECT_FALSE(x.IsTrue());
  291. EXPECT_FALSE(x.GetBool());
  292. //EXPECT_FALSE((bool)x);
  293. EXPECT_FALSE(x.IsNumber());
  294. EXPECT_FALSE(x.IsString());
  295. EXPECT_FALSE(x.IsObject());
  296. EXPECT_FALSE(x.IsArray());
  297. // Constructor with type
  298. Value y(kFalseType);
  299. EXPECT_TRUE(y.IsFalse());
  300. // SetBool()
  301. Value z;
  302. z.SetBool(false);
  303. EXPECT_TRUE(z.IsFalse());
  304. }
  305. TEST(Value, Int) {
  306. // Constructor with int
  307. Value x(1234);
  308. EXPECT_EQ(kNumberType, x.GetType());
  309. EXPECT_EQ(1234, x.GetInt());
  310. EXPECT_EQ(1234u, x.GetUint());
  311. EXPECT_EQ(1234, x.GetInt64());
  312. EXPECT_EQ(1234u, x.GetUint64());
  313. EXPECT_NEAR(1234.0, x.GetDouble(), 0.0);
  314. //EXPECT_EQ(1234, (int)x);
  315. //EXPECT_EQ(1234, (unsigned)x);
  316. //EXPECT_EQ(1234, (int64_t)x);
  317. //EXPECT_EQ(1234, (uint64_t)x);
  318. //EXPECT_EQ(1234, (double)x);
  319. EXPECT_TRUE(x.IsNumber());
  320. EXPECT_TRUE(x.IsInt());
  321. EXPECT_TRUE(x.IsUint());
  322. EXPECT_TRUE(x.IsInt64());
  323. EXPECT_TRUE(x.IsUint64());
  324. EXPECT_FALSE(x.IsDouble());
  325. EXPECT_FALSE(x.IsNull());
  326. EXPECT_FALSE(x.IsBool());
  327. EXPECT_FALSE(x.IsFalse());
  328. EXPECT_FALSE(x.IsTrue());
  329. EXPECT_FALSE(x.IsString());
  330. EXPECT_FALSE(x.IsObject());
  331. EXPECT_FALSE(x.IsArray());
  332. Value nx(-1234);
  333. EXPECT_EQ(-1234, nx.GetInt());
  334. EXPECT_EQ(-1234, nx.GetInt64());
  335. EXPECT_TRUE(nx.IsInt());
  336. EXPECT_TRUE(nx.IsInt64());
  337. EXPECT_FALSE(nx.IsUint());
  338. EXPECT_FALSE(nx.IsUint64());
  339. // Constructor with type
  340. Value y(kNumberType);
  341. EXPECT_TRUE(y.IsNumber());
  342. EXPECT_TRUE(y.IsInt());
  343. EXPECT_EQ(0, y.GetInt());
  344. // SetInt()
  345. Value z;
  346. z.SetInt(1234);
  347. EXPECT_EQ(1234, z.GetInt());
  348. // operator=(int)
  349. z = 5678;
  350. EXPECT_EQ(5678, z.GetInt());
  351. }
  352. TEST(Value, Uint) {
  353. // Constructor with int
  354. Value x(1234u);
  355. EXPECT_EQ(kNumberType, x.GetType());
  356. EXPECT_EQ(1234, x.GetInt());
  357. EXPECT_EQ(1234u, x.GetUint());
  358. EXPECT_EQ(1234, x.GetInt64());
  359. EXPECT_EQ(1234u, x.GetUint64());
  360. EXPECT_TRUE(x.IsNumber());
  361. EXPECT_TRUE(x.IsInt());
  362. EXPECT_TRUE(x.IsUint());
  363. EXPECT_TRUE(x.IsInt64());
  364. EXPECT_TRUE(x.IsUint64());
  365. EXPECT_NEAR(1234.0, x.GetDouble(), 0.0); // Number can always be cast as double but !IsDouble().
  366. EXPECT_FALSE(x.IsDouble());
  367. EXPECT_FALSE(x.IsNull());
  368. EXPECT_FALSE(x.IsBool());
  369. EXPECT_FALSE(x.IsFalse());
  370. EXPECT_FALSE(x.IsTrue());
  371. EXPECT_FALSE(x.IsString());
  372. EXPECT_FALSE(x.IsObject());
  373. EXPECT_FALSE(x.IsArray());
  374. // SetUint()
  375. Value z;
  376. z.SetUint(1234);
  377. EXPECT_EQ(1234u, z.GetUint());
  378. // operator=(unsigned)
  379. z = 5678u;
  380. EXPECT_EQ(5678u, z.GetUint());
  381. z = 2147483648u; // 2^31, cannot cast as int
  382. EXPECT_EQ(2147483648u, z.GetUint());
  383. EXPECT_FALSE(z.IsInt());
  384. EXPECT_TRUE(z.IsInt64()); // Issue 41: Incorrect parsing of unsigned int number types
  385. }
  386. TEST(Value, Int64) {
  387. // Constructor with int
  388. Value x(int64_t(1234));
  389. EXPECT_EQ(kNumberType, x.GetType());
  390. EXPECT_EQ(1234, x.GetInt());
  391. EXPECT_EQ(1234u, x.GetUint());
  392. EXPECT_EQ(1234, x.GetInt64());
  393. EXPECT_EQ(1234u, x.GetUint64());
  394. EXPECT_TRUE(x.IsNumber());
  395. EXPECT_TRUE(x.IsInt());
  396. EXPECT_TRUE(x.IsUint());
  397. EXPECT_TRUE(x.IsInt64());
  398. EXPECT_TRUE(x.IsUint64());
  399. EXPECT_FALSE(x.IsDouble());
  400. EXPECT_FALSE(x.IsNull());
  401. EXPECT_FALSE(x.IsBool());
  402. EXPECT_FALSE(x.IsFalse());
  403. EXPECT_FALSE(x.IsTrue());
  404. EXPECT_FALSE(x.IsString());
  405. EXPECT_FALSE(x.IsObject());
  406. EXPECT_FALSE(x.IsArray());
  407. Value nx(int64_t(-1234));
  408. EXPECT_EQ(-1234, nx.GetInt());
  409. EXPECT_EQ(-1234, nx.GetInt64());
  410. EXPECT_TRUE(nx.IsInt());
  411. EXPECT_TRUE(nx.IsInt64());
  412. EXPECT_FALSE(nx.IsUint());
  413. EXPECT_FALSE(nx.IsUint64());
  414. // SetInt64()
  415. Value z;
  416. z.SetInt64(1234);
  417. EXPECT_EQ(1234, z.GetInt64());
  418. z.SetInt64(2147483648u); // 2^31, cannot cast as int
  419. EXPECT_FALSE(z.IsInt());
  420. EXPECT_TRUE(z.IsUint());
  421. EXPECT_NEAR(2147483648.0, z.GetDouble(), 0.0);
  422. z.SetInt64(int64_t(4294967295u) + 1); // 2^32, cannot cast as uint
  423. EXPECT_FALSE(z.IsInt());
  424. EXPECT_FALSE(z.IsUint());
  425. EXPECT_NEAR(4294967296.0, z.GetDouble(), 0.0);
  426. z.SetInt64(-int64_t(2147483648u) - 1); // -2^31-1, cannot cast as int
  427. EXPECT_FALSE(z.IsInt());
  428. EXPECT_NEAR(-2147483649.0, z.GetDouble(), 0.0);
  429. z.SetInt64(static_cast<int64_t>(RAPIDJSON_UINT64_C2(0x80000000, 00000000)));
  430. EXPECT_DOUBLE_EQ(-9223372036854775808.0, z.GetDouble());
  431. }
  432. TEST(Value, Uint64) {
  433. // Constructor with int
  434. Value x(uint64_t(1234));
  435. EXPECT_EQ(kNumberType, x.GetType());
  436. EXPECT_EQ(1234, x.GetInt());
  437. EXPECT_EQ(1234u, x.GetUint());
  438. EXPECT_EQ(1234, x.GetInt64());
  439. EXPECT_EQ(1234u, x.GetUint64());
  440. EXPECT_TRUE(x.IsNumber());
  441. EXPECT_TRUE(x.IsInt());
  442. EXPECT_TRUE(x.IsUint());
  443. EXPECT_TRUE(x.IsInt64());
  444. EXPECT_TRUE(x.IsUint64());
  445. EXPECT_FALSE(x.IsDouble());
  446. EXPECT_FALSE(x.IsNull());
  447. EXPECT_FALSE(x.IsBool());
  448. EXPECT_FALSE(x.IsFalse());
  449. EXPECT_FALSE(x.IsTrue());
  450. EXPECT_FALSE(x.IsString());
  451. EXPECT_FALSE(x.IsObject());
  452. EXPECT_FALSE(x.IsArray());
  453. // SetUint64()
  454. Value z;
  455. z.SetUint64(1234);
  456. EXPECT_EQ(1234u, z.GetUint64());
  457. z.SetUint64(uint64_t(2147483648u)); // 2^31, cannot cast as int
  458. EXPECT_FALSE(z.IsInt());
  459. EXPECT_TRUE(z.IsUint());
  460. EXPECT_TRUE(z.IsInt64());
  461. z.SetUint64(uint64_t(4294967295u) + 1); // 2^32, cannot cast as uint
  462. EXPECT_FALSE(z.IsInt());
  463. EXPECT_FALSE(z.IsUint());
  464. EXPECT_TRUE(z.IsInt64());
  465. z.SetUint64(RAPIDJSON_UINT64_C2(0x80000000, 0x00000000)); // 2^63 cannot cast as int64
  466. EXPECT_FALSE(z.IsInt64());
  467. EXPECT_EQ(RAPIDJSON_UINT64_C2(0x80000000, 0x00000000), z.GetUint64()); // Issue 48
  468. EXPECT_DOUBLE_EQ(9223372036854775808.0, z.GetDouble());
  469. }
  470. TEST(Value, Double) {
  471. // Constructor with double
  472. Value x(12.34);
  473. EXPECT_EQ(kNumberType, x.GetType());
  474. EXPECT_NEAR(12.34, x.GetDouble(), 0.0);
  475. EXPECT_TRUE(x.IsNumber());
  476. EXPECT_TRUE(x.IsDouble());
  477. EXPECT_FALSE(x.IsInt());
  478. EXPECT_FALSE(x.IsNull());
  479. EXPECT_FALSE(x.IsBool());
  480. EXPECT_FALSE(x.IsFalse());
  481. EXPECT_FALSE(x.IsTrue());
  482. EXPECT_FALSE(x.IsString());
  483. EXPECT_FALSE(x.IsObject());
  484. EXPECT_FALSE(x.IsArray());
  485. // SetDouble()
  486. Value z;
  487. z.SetDouble(12.34);
  488. EXPECT_NEAR(12.34, z.GetDouble(), 0.0);
  489. z = 56.78;
  490. EXPECT_NEAR(56.78, z.GetDouble(), 0.0);
  491. }
  492. TEST(Value, Float) {
  493. // Constructor with double
  494. Value x(12.34f);
  495. EXPECT_EQ(kNumberType, x.GetType());
  496. EXPECT_NEAR(12.34f, x.GetFloat(), 0.0);
  497. EXPECT_TRUE(x.IsNumber());
  498. EXPECT_TRUE(x.IsDouble());
  499. EXPECT_TRUE(x.IsFloat());
  500. EXPECT_FALSE(x.IsInt());
  501. EXPECT_FALSE(x.IsNull());
  502. EXPECT_FALSE(x.IsBool());
  503. EXPECT_FALSE(x.IsFalse());
  504. EXPECT_FALSE(x.IsTrue());
  505. EXPECT_FALSE(x.IsString());
  506. EXPECT_FALSE(x.IsObject());
  507. EXPECT_FALSE(x.IsArray());
  508. // SetFloat()
  509. Value z;
  510. z.SetFloat(12.34f);
  511. EXPECT_NEAR(12.34f, z.GetFloat(), 0.0f);
  512. z = 56.78f;
  513. EXPECT_NEAR(56.78f, z.GetFloat(), 0.0f);
  514. }
  515. TEST(Value, IsLosslessDouble) {
  516. EXPECT_TRUE(Value(12.34).IsLosslessDouble());
  517. EXPECT_TRUE(Value(-123).IsLosslessDouble());
  518. EXPECT_TRUE(Value(2147483648u).IsLosslessDouble());
  519. EXPECT_TRUE(Value(static_cast<int64_t>(-RAPIDJSON_UINT64_C2(0x40000000, 0x00000000))).IsLosslessDouble());
  520. EXPECT_TRUE(Value(RAPIDJSON_UINT64_C2(0xA0000000, 0x00000000)).IsLosslessDouble());
  521. EXPECT_FALSE(Value(static_cast<int64_t>(-RAPIDJSON_UINT64_C2(0x7FFFFFFF, 0xFFFFFFFF))).IsLosslessDouble());
  522. EXPECT_FALSE(Value(RAPIDJSON_UINT64_C2(0xFFFFFFFF, 0xFFFFFFFF)).IsLosslessDouble());
  523. }
  524. TEST(Value, IsLosslessFloat) {
  525. EXPECT_TRUE(Value(12.25).IsLosslessFloat());
  526. EXPECT_TRUE(Value(-123).IsLosslessFloat());
  527. EXPECT_TRUE(Value(2147483648u).IsLosslessFloat());
  528. EXPECT_TRUE(Value(3.4028234e38f).IsLosslessFloat());
  529. EXPECT_TRUE(Value(-3.4028234e38f).IsLosslessFloat());
  530. EXPECT_FALSE(Value(3.4028235e38).IsLosslessFloat());
  531. EXPECT_FALSE(Value(0.3).IsLosslessFloat());
  532. }
  533. TEST(Value, String) {
  534. // Construction with const string
  535. Value x("Hello", 5); // literal
  536. EXPECT_EQ(kStringType, x.GetType());
  537. EXPECT_TRUE(x.IsString());
  538. EXPECT_STREQ("Hello", x.GetString());
  539. EXPECT_EQ(5u, x.GetStringLength());
  540. EXPECT_FALSE(x.IsNumber());
  541. EXPECT_FALSE(x.IsNull());
  542. EXPECT_FALSE(x.IsBool());
  543. EXPECT_FALSE(x.IsFalse());
  544. EXPECT_FALSE(x.IsTrue());
  545. EXPECT_FALSE(x.IsObject());
  546. EXPECT_FALSE(x.IsArray());
  547. static const char cstr[] = "World"; // const array
  548. Value(cstr).Swap(x);
  549. EXPECT_TRUE(x.IsString());
  550. EXPECT_EQ(x.GetString(), cstr);
  551. EXPECT_EQ(x.GetStringLength(), sizeof(cstr)-1);
  552. static char mstr[] = "Howdy"; // non-const array
  553. // Value(mstr).Swap(x); // should not compile
  554. Value(StringRef(mstr)).Swap(x);
  555. EXPECT_TRUE(x.IsString());
  556. EXPECT_EQ(x.GetString(), mstr);
  557. EXPECT_EQ(x.GetStringLength(), sizeof(mstr)-1);
  558. strncpy(mstr,"Hello", sizeof(mstr));
  559. EXPECT_STREQ(x.GetString(), "Hello");
  560. const char* pstr = cstr;
  561. //Value(pstr).Swap(x); // should not compile
  562. Value(StringRef(pstr)).Swap(x);
  563. EXPECT_TRUE(x.IsString());
  564. EXPECT_EQ(x.GetString(), cstr);
  565. EXPECT_EQ(x.GetStringLength(), sizeof(cstr)-1);
  566. char* mpstr = mstr;
  567. Value(StringRef(mpstr,sizeof(mstr)-1)).Swap(x);
  568. EXPECT_TRUE(x.IsString());
  569. EXPECT_EQ(x.GetString(), mstr);
  570. EXPECT_EQ(x.GetStringLength(), 5u);
  571. EXPECT_STREQ(x.GetString(), "Hello");
  572. // Constructor with copy string
  573. MemoryPoolAllocator<> allocator;
  574. Value c(x.GetString(), x.GetStringLength(), allocator);
  575. EXPECT_NE(x.GetString(), c.GetString());
  576. EXPECT_EQ(x.GetStringLength(), c.GetStringLength());
  577. EXPECT_STREQ(x.GetString(), c.GetString());
  578. //x.SetString("World");
  579. x.SetString("World", 5);
  580. EXPECT_STREQ("Hello", c.GetString());
  581. EXPECT_EQ(5u, c.GetStringLength());
  582. // Constructor with type
  583. Value y(kStringType);
  584. EXPECT_TRUE(y.IsString());
  585. EXPECT_STREQ("", y.GetString()); // Empty string should be "" instead of 0 (issue 226)
  586. EXPECT_EQ(0u, y.GetStringLength());
  587. // SetConsttring()
  588. Value z;
  589. z.SetString("Hello");
  590. EXPECT_TRUE(x.IsString());
  591. z.SetString("Hello", 5);
  592. EXPECT_STREQ("Hello", z.GetString());
  593. EXPECT_STREQ("Hello", z.GetString());
  594. EXPECT_EQ(5u, z.GetStringLength());
  595. z.SetString("Hello");
  596. EXPECT_TRUE(z.IsString());
  597. EXPECT_STREQ("Hello", z.GetString());
  598. //z.SetString(mstr); // should not compile
  599. //z.SetString(pstr); // should not compile
  600. z.SetString(StringRef(mstr));
  601. EXPECT_TRUE(z.IsString());
  602. EXPECT_STREQ(z.GetString(), mstr);
  603. z.SetString(cstr);
  604. EXPECT_TRUE(z.IsString());
  605. EXPECT_EQ(cstr, z.GetString());
  606. z = cstr;
  607. EXPECT_TRUE(z.IsString());
  608. EXPECT_EQ(cstr, z.GetString());
  609. // SetString()
  610. char s[] = "World";
  611. Value w;
  612. w.SetString(s, static_cast<SizeType>(strlen(s)), allocator);
  613. s[0] = '\0';
  614. EXPECT_STREQ("World", w.GetString());
  615. EXPECT_EQ(5u, w.GetStringLength());
  616. #if RAPIDJSON_HAS_STDSTRING
  617. {
  618. std::string str = "Hello World";
  619. str[5] = '\0';
  620. EXPECT_STREQ(str.data(),"Hello"); // embedded '\0'
  621. EXPECT_EQ(str.size(), 11u);
  622. // no copy
  623. Value vs0(StringRef(str));
  624. EXPECT_TRUE(vs0.IsString());
  625. EXPECT_EQ(vs0.GetString(), str.data());
  626. EXPECT_EQ(vs0.GetStringLength(), str.size());
  627. TestEqual(vs0, str);
  628. // do copy
  629. Value vs1(str, allocator);
  630. EXPECT_TRUE(vs1.IsString());
  631. EXPECT_NE(vs1.GetString(), str.data());
  632. EXPECT_NE(vs1.GetString(), str); // not equal due to embedded '\0'
  633. EXPECT_EQ(vs1.GetStringLength(), str.size());
  634. TestEqual(vs1, str);
  635. // SetString
  636. str = "World";
  637. vs0.SetNull().SetString(str, allocator);
  638. EXPECT_TRUE(vs0.IsString());
  639. EXPECT_STREQ(vs0.GetString(), str.c_str());
  640. EXPECT_EQ(vs0.GetStringLength(), str.size());
  641. TestEqual(str, vs0);
  642. TestUnequal(str, vs1);
  643. // vs1 = str; // should not compile
  644. vs1 = StringRef(str);
  645. TestEqual(str, vs1);
  646. TestEqual(vs0, vs1);
  647. }
  648. #endif // RAPIDJSON_HAS_STDSTRING
  649. }
  650. // Issue 226: Value of string type should not point to NULL
  651. TEST(Value, SetStringNullException) {
  652. Value v;
  653. EXPECT_THROW(v.SetString(0, 0), AssertException);
  654. }
  655. TEST(Value, Array) {
  656. Value x(kArrayType);
  657. const Value& y = x;
  658. Value::AllocatorType allocator;
  659. EXPECT_EQ(kArrayType, x.GetType());
  660. EXPECT_TRUE(x.IsArray());
  661. EXPECT_TRUE(x.Empty());
  662. EXPECT_EQ(0u, x.Size());
  663. EXPECT_TRUE(y.IsArray());
  664. EXPECT_TRUE(y.Empty());
  665. EXPECT_EQ(0u, y.Size());
  666. EXPECT_FALSE(x.IsNull());
  667. EXPECT_FALSE(x.IsBool());
  668. EXPECT_FALSE(x.IsFalse());
  669. EXPECT_FALSE(x.IsTrue());
  670. EXPECT_FALSE(x.IsString());
  671. EXPECT_FALSE(x.IsObject());
  672. // PushBack()
  673. Value v;
  674. x.PushBack(v, allocator);
  675. v.SetBool(true);
  676. x.PushBack(v, allocator);
  677. v.SetBool(false);
  678. x.PushBack(v, allocator);
  679. v.SetInt(123);
  680. x.PushBack(v, allocator);
  681. //x.PushBack((const char*)"foo", allocator); // should not compile
  682. x.PushBack("foo", allocator);
  683. EXPECT_FALSE(x.Empty());
  684. EXPECT_EQ(5u, x.Size());
  685. EXPECT_FALSE(y.Empty());
  686. EXPECT_EQ(5u, y.Size());
  687. EXPECT_TRUE(x[SizeType(0)].IsNull());
  688. EXPECT_TRUE(x[1].IsTrue());
  689. EXPECT_TRUE(x[2].IsFalse());
  690. EXPECT_TRUE(x[3].IsInt());
  691. EXPECT_EQ(123, x[3].GetInt());
  692. EXPECT_TRUE(y[SizeType(0)].IsNull());
  693. EXPECT_TRUE(y[1].IsTrue());
  694. EXPECT_TRUE(y[2].IsFalse());
  695. EXPECT_TRUE(y[3].IsInt());
  696. EXPECT_EQ(123, y[3].GetInt());
  697. EXPECT_TRUE(y[4].IsString());
  698. EXPECT_STREQ("foo", y[4].GetString());
  699. #if RAPIDJSON_HAS_CXX11_RVALUE_REFS
  700. // PushBack(GenericValue&&, Allocator&);
  701. {
  702. Value y2(kArrayType);
  703. y2.PushBack(Value(true), allocator);
  704. y2.PushBack(std::move(Value(kArrayType).PushBack(Value(1), allocator).PushBack("foo", allocator)), allocator);
  705. EXPECT_EQ(2u, y2.Size());
  706. EXPECT_TRUE(y2[0].IsTrue());
  707. EXPECT_TRUE(y2[1].IsArray());
  708. EXPECT_EQ(2u, y2[1].Size());
  709. EXPECT_TRUE(y2[1][0].IsInt());
  710. EXPECT_TRUE(y2[1][1].IsString());
  711. }
  712. #endif
  713. // iterator
  714. Value::ValueIterator itr = x.Begin();
  715. EXPECT_TRUE(itr != x.End());
  716. EXPECT_TRUE(itr->IsNull());
  717. ++itr;
  718. EXPECT_TRUE(itr != x.End());
  719. EXPECT_TRUE(itr->IsTrue());
  720. ++itr;
  721. EXPECT_TRUE(itr != x.End());
  722. EXPECT_TRUE(itr->IsFalse());
  723. ++itr;
  724. EXPECT_TRUE(itr != x.End());
  725. EXPECT_TRUE(itr->IsInt());
  726. EXPECT_EQ(123, itr->GetInt());
  727. ++itr;
  728. EXPECT_TRUE(itr != x.End());
  729. EXPECT_TRUE(itr->IsString());
  730. EXPECT_STREQ("foo", itr->GetString());
  731. // const iterator
  732. Value::ConstValueIterator citr = y.Begin();
  733. EXPECT_TRUE(citr != y.End());
  734. EXPECT_TRUE(citr->IsNull());
  735. ++citr;
  736. EXPECT_TRUE(citr != y.End());
  737. EXPECT_TRUE(citr->IsTrue());
  738. ++citr;
  739. EXPECT_TRUE(citr != y.End());
  740. EXPECT_TRUE(citr->IsFalse());
  741. ++citr;
  742. EXPECT_TRUE(citr != y.End());
  743. EXPECT_TRUE(citr->IsInt());
  744. EXPECT_EQ(123, citr->GetInt());
  745. ++citr;
  746. EXPECT_TRUE(citr != y.End());
  747. EXPECT_TRUE(citr->IsString());
  748. EXPECT_STREQ("foo", citr->GetString());
  749. // PopBack()
  750. x.PopBack();
  751. EXPECT_EQ(4u, x.Size());
  752. EXPECT_TRUE(y[SizeType(0)].IsNull());
  753. EXPECT_TRUE(y[1].IsTrue());
  754. EXPECT_TRUE(y[2].IsFalse());
  755. EXPECT_TRUE(y[3].IsInt());
  756. // Clear()
  757. x.Clear();
  758. EXPECT_TRUE(x.Empty());
  759. EXPECT_EQ(0u, x.Size());
  760. EXPECT_TRUE(y.Empty());
  761. EXPECT_EQ(0u, y.Size());
  762. // Erase(ValueIterator)
  763. // Use array of array to ensure removed elements' destructor is called.
  764. // [[0],[1],[2],...]
  765. for (int i = 0; i < 10; i++)
  766. x.PushBack(Value(kArrayType).PushBack(i, allocator).Move(), allocator);
  767. // Erase the first
  768. itr = x.Erase(x.Begin());
  769. EXPECT_EQ(x.Begin(), itr);
  770. EXPECT_EQ(9u, x.Size());
  771. for (int i = 0; i < 9; i++)
  772. EXPECT_EQ(i + 1, x[static_cast<SizeType>(i)][0].GetInt());
  773. // Ease the last
  774. itr = x.Erase(x.End() - 1);
  775. EXPECT_EQ(x.End(), itr);
  776. EXPECT_EQ(8u, x.Size());
  777. for (int i = 0; i < 8; i++)
  778. EXPECT_EQ(i + 1, x[static_cast<SizeType>(i)][0].GetInt());
  779. // Erase the middle
  780. itr = x.Erase(x.Begin() + 4);
  781. EXPECT_EQ(x.Begin() + 4, itr);
  782. EXPECT_EQ(7u, x.Size());
  783. for (int i = 0; i < 4; i++)
  784. EXPECT_EQ(i + 1, x[static_cast<SizeType>(i)][0].GetInt());
  785. for (int i = 4; i < 7; i++)
  786. EXPECT_EQ(i + 2, x[static_cast<SizeType>(i)][0].GetInt());
  787. // Erase(ValueIterator, ValueIterator)
  788. // Exhaustive test with all 0 <= first < n, first <= last <= n cases
  789. const unsigned n = 10;
  790. for (unsigned first = 0; first < n; first++) {
  791. for (unsigned last = first; last <= n; last++) {
  792. x.Clear();
  793. for (unsigned i = 0; i < n; i++)
  794. x.PushBack(Value(kArrayType).PushBack(i, allocator).Move(), allocator);
  795. itr = x.Erase(x.Begin() + first, x.Begin() + last);
  796. if (last == n)
  797. EXPECT_EQ(x.End(), itr);
  798. else
  799. EXPECT_EQ(x.Begin() + first, itr);
  800. size_t removeCount = last - first;
  801. EXPECT_EQ(n - removeCount, x.Size());
  802. for (unsigned i = 0; i < first; i++)
  803. EXPECT_EQ(i, x[i][0].GetUint());
  804. for (unsigned i = first; i < n - removeCount; i++)
  805. EXPECT_EQ(i + removeCount, x[static_cast<SizeType>(i)][0].GetUint());
  806. }
  807. }
  808. // Working in gcc without C++11, but VS2013 cannot compile. To be diagnosed.
  809. // http://en.wikipedia.org/wiki/Erase-remove_idiom
  810. x.Clear();
  811. for (int i = 0; i < 10; i++)
  812. if (i % 2 == 0)
  813. x.PushBack(i, allocator);
  814. else
  815. x.PushBack(Value(kNullType).Move(), allocator);
  816. const Value null(kNullType);
  817. x.Erase(std::remove(x.Begin(), x.End(), null), x.End());
  818. EXPECT_EQ(5u, x.Size());
  819. for (int i = 0; i < 5; i++)
  820. EXPECT_EQ(i * 2, x[static_cast<SizeType>(i)]);
  821. // SetArray()
  822. Value z;
  823. z.SetArray();
  824. EXPECT_TRUE(z.IsArray());
  825. EXPECT_TRUE(z.Empty());
  826. }
  827. TEST(Value, Object) {
  828. Value x(kObjectType);
  829. const Value& y = x; // const version
  830. Value::AllocatorType allocator;
  831. EXPECT_EQ(kObjectType, x.GetType());
  832. EXPECT_TRUE(x.IsObject());
  833. EXPECT_TRUE(x.ObjectEmpty());
  834. EXPECT_EQ(0u, x.MemberCount());
  835. EXPECT_EQ(kObjectType, y.GetType());
  836. EXPECT_TRUE(y.IsObject());
  837. EXPECT_TRUE(y.ObjectEmpty());
  838. EXPECT_EQ(0u, y.MemberCount());
  839. // AddMember()
  840. x.AddMember("A", "Apple", allocator);
  841. EXPECT_FALSE(x.ObjectEmpty());
  842. EXPECT_EQ(1u, x.MemberCount());
  843. Value value("Banana", 6);
  844. x.AddMember("B", "Banana", allocator);
  845. EXPECT_EQ(2u, x.MemberCount());
  846. // AddMember<T>(StringRefType, T, Allocator)
  847. {
  848. Value o(kObjectType);
  849. o.AddMember("true", true, allocator);
  850. o.AddMember("false", false, allocator);
  851. o.AddMember("int", -1, allocator);
  852. o.AddMember("uint", 1u, allocator);
  853. o.AddMember("int64", int64_t(-4294967296), allocator);
  854. o.AddMember("uint64", uint64_t(4294967296), allocator);
  855. o.AddMember("double", 3.14, allocator);
  856. o.AddMember("string", "Jelly", allocator);
  857. EXPECT_TRUE(o["true"].GetBool());
  858. EXPECT_FALSE(o["false"].GetBool());
  859. EXPECT_EQ(-1, o["int"].GetInt());
  860. EXPECT_EQ(1u, o["uint"].GetUint());
  861. EXPECT_EQ(int64_t(-4294967296), o["int64"].GetInt64());
  862. EXPECT_EQ(uint64_t(4294967296), o["uint64"].GetUint64());
  863. EXPECT_STREQ("Jelly",o["string"].GetString());
  864. EXPECT_EQ(8u, o.MemberCount());
  865. }
  866. // AddMember<T>(Value&, T, Allocator)
  867. {
  868. Value o(kObjectType);
  869. Value n("s");
  870. o.AddMember(n, "string", allocator);
  871. EXPECT_EQ(1u, o.MemberCount());
  872. Value count("#");
  873. o.AddMember(count, o.MemberCount(), allocator);
  874. EXPECT_EQ(2u, o.MemberCount());
  875. }
  876. #if RAPIDJSON_HAS_STDSTRING
  877. {
  878. // AddMember(StringRefType, const std::string&, Allocator)
  879. Value o(kObjectType);
  880. o.AddMember("b", std::string("Banana"), allocator);
  881. EXPECT_STREQ("Banana", o["b"].GetString());
  882. // RemoveMember(const std::string&)
  883. o.RemoveMember(std::string("b"));
  884. EXPECT_TRUE(o.ObjectEmpty());
  885. }
  886. #endif
  887. #if RAPIDJSON_HAS_CXX11_RVALUE_REFS
  888. // AddMember(GenericValue&&, ...) variants
  889. {
  890. Value o(kObjectType);
  891. o.AddMember(Value("true"), Value(true), allocator);
  892. o.AddMember(Value("false"), Value(false).Move(), allocator); // value is lvalue ref
  893. o.AddMember(Value("int").Move(), Value(-1), allocator); // name is lvalue ref
  894. o.AddMember("uint", std::move(Value().SetUint(1u)), allocator); // name is literal, value is rvalue
  895. EXPECT_TRUE(o["true"].GetBool());
  896. EXPECT_FALSE(o["false"].GetBool());
  897. EXPECT_EQ(-1, o["int"].GetInt());
  898. EXPECT_EQ(1u, o["uint"].GetUint());
  899. EXPECT_EQ(4u, o.MemberCount());
  900. }
  901. #endif
  902. // Tests a member with null character
  903. Value name;
  904. const Value C0D("C\0D", 3);
  905. name.SetString(C0D.GetString(), 3);
  906. value.SetString("CherryD", 7);
  907. x.AddMember(name, value, allocator);
  908. // HasMember()
  909. EXPECT_TRUE(x.HasMember("A"));
  910. EXPECT_TRUE(x.HasMember("B"));
  911. EXPECT_TRUE(y.HasMember("A"));
  912. EXPECT_TRUE(y.HasMember("B"));
  913. #if RAPIDJSON_HAS_STDSTRING
  914. EXPECT_TRUE(x.HasMember(std::string("A")));
  915. #endif
  916. name.SetString("C\0D");
  917. EXPECT_TRUE(x.HasMember(name));
  918. EXPECT_TRUE(y.HasMember(name));
  919. GenericValue<UTF8<>, CrtAllocator> othername("A");
  920. EXPECT_TRUE(x.HasMember(othername));
  921. EXPECT_TRUE(y.HasMember(othername));
  922. othername.SetString("C\0D");
  923. EXPECT_TRUE(x.HasMember(othername));
  924. EXPECT_TRUE(y.HasMember(othername));
  925. // operator[]
  926. EXPECT_STREQ("Apple", x["A"].GetString());
  927. EXPECT_STREQ("Banana", x["B"].GetString());
  928. EXPECT_STREQ("CherryD", x[C0D].GetString());
  929. EXPECT_STREQ("CherryD", x[othername].GetString());
  930. EXPECT_THROW(x["nonexist"], AssertException);
  931. // const operator[]
  932. EXPECT_STREQ("Apple", y["A"].GetString());
  933. EXPECT_STREQ("Banana", y["B"].GetString());
  934. EXPECT_STREQ("CherryD", y[C0D].GetString());
  935. #if RAPIDJSON_HAS_STDSTRING
  936. EXPECT_STREQ("Apple", x["A"].GetString());
  937. EXPECT_STREQ("Apple", y[std::string("A")].GetString());
  938. #endif
  939. // member iterator
  940. Value::MemberIterator itr = x.MemberBegin();
  941. EXPECT_TRUE(itr != x.MemberEnd());
  942. EXPECT_STREQ("A", itr->name.GetString());
  943. EXPECT_STREQ("Apple", itr->value.GetString());
  944. ++itr;
  945. EXPECT_TRUE(itr != x.MemberEnd());
  946. EXPECT_STREQ("B", itr->name.GetString());
  947. EXPECT_STREQ("Banana", itr->value.GetString());
  948. ++itr;
  949. EXPECT_TRUE(itr != x.MemberEnd());
  950. EXPECT_TRUE(memcmp(itr->name.GetString(), "C\0D", 4) == 0);
  951. EXPECT_STREQ("CherryD", itr->value.GetString());
  952. ++itr;
  953. EXPECT_FALSE(itr != x.MemberEnd());
  954. // const member iterator
  955. Value::ConstMemberIterator citr = y.MemberBegin();
  956. EXPECT_TRUE(citr != y.MemberEnd());
  957. EXPECT_STREQ("A", citr->name.GetString());
  958. EXPECT_STREQ("Apple", citr->value.GetString());
  959. ++citr;
  960. EXPECT_TRUE(citr != y.MemberEnd());
  961. EXPECT_STREQ("B", citr->name.GetString());
  962. EXPECT_STREQ("Banana", citr->value.GetString());
  963. ++citr;
  964. EXPECT_TRUE(citr != y.MemberEnd());
  965. EXPECT_TRUE(memcmp(citr->name.GetString(), "C\0D", 4) == 0);
  966. EXPECT_STREQ("CherryD", citr->value.GetString());
  967. ++citr;
  968. EXPECT_FALSE(citr != y.MemberEnd());
  969. // member iterator conversions/relations
  970. itr = x.MemberBegin();
  971. citr = x.MemberBegin(); // const conversion
  972. TestEqual(itr, citr);
  973. EXPECT_TRUE(itr < x.MemberEnd());
  974. EXPECT_FALSE(itr > y.MemberEnd());
  975. EXPECT_TRUE(citr < x.MemberEnd());
  976. EXPECT_FALSE(citr > y.MemberEnd());
  977. ++citr;
  978. TestUnequal(itr, citr);
  979. EXPECT_FALSE(itr < itr);
  980. EXPECT_TRUE(itr < citr);
  981. EXPECT_FALSE(itr > itr);
  982. EXPECT_TRUE(citr > itr);
  983. EXPECT_EQ(1, citr - x.MemberBegin());
  984. EXPECT_EQ(0, itr - y.MemberBegin());
  985. itr += citr - x.MemberBegin();
  986. EXPECT_EQ(1, itr - y.MemberBegin());
  987. TestEqual(citr, itr);
  988. EXPECT_TRUE(itr <= citr);
  989. EXPECT_TRUE(citr <= itr);
  990. itr++;
  991. EXPECT_TRUE(itr >= citr);
  992. EXPECT_FALSE(citr >= itr);
  993. // RemoveMember()
  994. EXPECT_TRUE(x.RemoveMember("A"));
  995. EXPECT_FALSE(x.HasMember("A"));
  996. EXPECT_TRUE(x.RemoveMember("B"));
  997. EXPECT_FALSE(x.HasMember("B"));
  998. EXPECT_FALSE(x.RemoveMember("nonexist"));
  999. EXPECT_TRUE(x.RemoveMember(othername));
  1000. EXPECT_FALSE(x.HasMember(name));
  1001. EXPECT_TRUE(x.MemberBegin() == x.MemberEnd());
  1002. // EraseMember(ConstMemberIterator)
  1003. // Use array members to ensure removed elements' destructor is called.
  1004. // { "a": [0], "b": [1],[2],...]
  1005. const char keys[][2] = { "a", "b", "c", "d", "e", "f", "g", "h", "i", "j" };
  1006. for (int i = 0; i < 10; i++)
  1007. x.AddMember(keys[i], Value(kArrayType).PushBack(i, allocator), allocator);
  1008. // MemberCount, iterator difference
  1009. EXPECT_EQ(x.MemberCount(), SizeType(x.MemberEnd() - x.MemberBegin()));
  1010. // Erase the first
  1011. itr = x.EraseMember(x.MemberBegin());
  1012. EXPECT_FALSE(x.HasMember(keys[0]));
  1013. EXPECT_EQ(x.MemberBegin(), itr);
  1014. EXPECT_EQ(9u, x.MemberCount());
  1015. for (; itr != x.MemberEnd(); ++itr) {
  1016. size_t i = static_cast<size_t>((itr - x.MemberBegin())) + 1;
  1017. EXPECT_STREQ(itr->name.GetString(), keys[i]);
  1018. EXPECT_EQ(i, itr->value[0].GetInt());
  1019. }
  1020. // Erase the last
  1021. itr = x.EraseMember(x.MemberEnd() - 1);
  1022. EXPECT_FALSE(x.HasMember(keys[9]));
  1023. EXPECT_EQ(x.MemberEnd(), itr);
  1024. EXPECT_EQ(8u, x.MemberCount());
  1025. for (; itr != x.MemberEnd(); ++itr) {
  1026. size_t i = static_cast<size_t>(itr - x.MemberBegin()) + 1;
  1027. EXPECT_STREQ(itr->name.GetString(), keys[i]);
  1028. EXPECT_EQ(i, itr->value[0].GetInt());
  1029. }
  1030. // Erase the middle
  1031. itr = x.EraseMember(x.MemberBegin() + 4);
  1032. EXPECT_FALSE(x.HasMember(keys[5]));
  1033. EXPECT_EQ(x.MemberBegin() + 4, itr);
  1034. EXPECT_EQ(7u, x.MemberCount());
  1035. for (; itr != x.MemberEnd(); ++itr) {
  1036. size_t i = static_cast<size_t>(itr - x.MemberBegin());
  1037. i += (i < 4) ? 1 : 2;
  1038. EXPECT_STREQ(itr->name.GetString(), keys[i]);
  1039. EXPECT_EQ(i, itr->value[0].GetInt());
  1040. }
  1041. // EraseMember(ConstMemberIterator, ConstMemberIterator)
  1042. // Exhaustive test with all 0 <= first < n, first <= last <= n cases
  1043. const unsigned n = 10;
  1044. for (unsigned first = 0; first < n; first++) {
  1045. for (unsigned last = first; last <= n; last++) {
  1046. Value(kObjectType).Swap(x);
  1047. for (unsigned i = 0; i < n; i++)
  1048. x.AddMember(keys[i], Value(kArrayType).PushBack(i, allocator), allocator);
  1049. itr = x.EraseMember(x.MemberBegin() + static_cast<int>(first), x.MemberBegin() + static_cast<int>(last));
  1050. if (last == n)
  1051. EXPECT_EQ(x.MemberEnd(), itr);
  1052. else
  1053. EXPECT_EQ(x.MemberBegin() + static_cast<int>(first), itr);
  1054. size_t removeCount = last - first;
  1055. EXPECT_EQ(n - removeCount, x.MemberCount());
  1056. for (unsigned i = 0; i < first; i++)
  1057. EXPECT_EQ(i, x[keys[i]][0].GetUint());
  1058. for (unsigned i = first; i < n - removeCount; i++)
  1059. EXPECT_EQ(i + removeCount, x[keys[i+removeCount]][0].GetUint());
  1060. }
  1061. }
  1062. // RemoveAllMembers()
  1063. x.RemoveAllMembers();
  1064. EXPECT_TRUE(x.ObjectEmpty());
  1065. EXPECT_EQ(0u, x.MemberCount());
  1066. // SetObject()
  1067. Value z;
  1068. z.SetObject();
  1069. EXPECT_TRUE(z.IsObject());
  1070. }
  1071. TEST(Value, EraseMember_String) {
  1072. Value::AllocatorType allocator;
  1073. Value x(kObjectType);
  1074. x.AddMember("A", "Apple", allocator);
  1075. x.AddMember("B", "Banana", allocator);
  1076. EXPECT_TRUE(x.EraseMember("B"));
  1077. EXPECT_FALSE(x.HasMember("B"));
  1078. EXPECT_FALSE(x.EraseMember("nonexist"));
  1079. GenericValue<UTF8<>, CrtAllocator> othername("A");
  1080. EXPECT_TRUE(x.EraseMember(othername));
  1081. EXPECT_FALSE(x.HasMember("A"));
  1082. EXPECT_TRUE(x.MemberBegin() == x.MemberEnd());
  1083. }
  1084. TEST(Value, BigNestedArray) {
  1085. MemoryPoolAllocator<> allocator;
  1086. Value x(kArrayType);
  1087. static const SizeType n = 200;
  1088. for (SizeType i = 0; i < n; i++) {
  1089. Value y(kArrayType);
  1090. for (SizeType j = 0; j < n; j++) {
  1091. Value number(static_cast<int>(i * n + j));
  1092. y.PushBack(number, allocator);
  1093. }
  1094. x.PushBack(y, allocator);
  1095. }
  1096. for (SizeType i = 0; i < n; i++)
  1097. for (SizeType j = 0; j < n; j++) {
  1098. EXPECT_TRUE(x[i][j].IsInt());
  1099. EXPECT_EQ(static_cast<int>(i * n + j), x[i][j].GetInt());
  1100. }
  1101. }
  1102. TEST(Value, BigNestedObject) {
  1103. MemoryPoolAllocator<> allocator;
  1104. Value x(kObjectType);
  1105. static const SizeType n = 200;
  1106. for (SizeType i = 0; i < n; i++) {
  1107. char name1[10];
  1108. sprintf(name1, "%d", i);
  1109. // Value name(name1); // should not compile
  1110. Value name(name1, static_cast<SizeType>(strlen(name1)), allocator);
  1111. Value object(kObjectType);
  1112. for (SizeType j = 0; j < n; j++) {
  1113. char name2[10];
  1114. sprintf(name2, "%d", j);
  1115. Value name3(name2, static_cast<SizeType>(strlen(name2)), allocator);
  1116. Value number(static_cast<int>(i * n + j));
  1117. object.AddMember(name3, number, allocator);
  1118. }
  1119. // x.AddMember(name1, object, allocator); // should not compile
  1120. x.AddMember(name, object, allocator);
  1121. }
  1122. for (SizeType i = 0; i < n; i++) {
  1123. char name1[10];
  1124. sprintf(name1, "%d", i);
  1125. for (SizeType j = 0; j < n; j++) {
  1126. char name2[10];
  1127. sprintf(name2, "%d", j);
  1128. x[name1];
  1129. EXPECT_EQ(static_cast<int>(i * n + j), x[name1][name2].GetInt());
  1130. }
  1131. }
  1132. }
  1133. // Issue 18: Error removing last element of object
  1134. // http://code.google.com/p/rapidjson/issues/detail?id=18
  1135. TEST(Value, RemoveLastElement) {
  1136. rapidjson::Document doc;
  1137. rapidjson::Document::AllocatorType& allocator = doc.GetAllocator();
  1138. rapidjson::Value objVal(rapidjson::kObjectType);
  1139. objVal.AddMember("var1", 123, allocator);
  1140. objVal.AddMember("var2", "444", allocator);
  1141. objVal.AddMember("var3", 555, allocator);
  1142. EXPECT_TRUE(objVal.HasMember("var3"));
  1143. objVal.RemoveMember("var3"); // Assertion here in r61
  1144. EXPECT_FALSE(objVal.HasMember("var3"));
  1145. }
  1146. // Issue 38: Segmentation fault with CrtAllocator
  1147. TEST(Document, CrtAllocator) {
  1148. typedef GenericValue<UTF8<>, CrtAllocator> V;
  1149. V::AllocatorType allocator;
  1150. V o(kObjectType);
  1151. o.AddMember("x", 1, allocator); // Should not call destructor on uninitialized name/value of newly allocated members.
  1152. V a(kArrayType);
  1153. a.PushBack(1, allocator); // Should not call destructor on uninitialized Value of newly allocated elements.
  1154. }
  1155. static void TestShortStringOptimization(const char* str) {
  1156. const rapidjson::SizeType len = static_cast<rapidjson::SizeType>(strlen(str));
  1157. rapidjson::Document doc;
  1158. rapidjson::Value val;
  1159. val.SetString(str, len, doc.GetAllocator());
  1160. EXPECT_EQ(val.GetStringLength(), len);
  1161. EXPECT_STREQ(val.GetString(), str);
  1162. }
  1163. TEST(Value, AllocateShortString) {
  1164. TestShortStringOptimization(""); // edge case: empty string
  1165. TestShortStringOptimization("12345678"); // regular case for short strings: 8 chars
  1166. TestShortStringOptimization("12345678901"); // edge case: 11 chars in 32-bit mode (=> short string)
  1167. TestShortStringOptimization("123456789012"); // edge case: 12 chars in 32-bit mode (=> regular string)
  1168. TestShortStringOptimization("123456789012345"); // edge case: 15 chars in 64-bit mode (=> short string)
  1169. TestShortStringOptimization("1234567890123456"); // edge case: 16 chars in 64-bit mode (=> regular string)
  1170. }
  1171. template <int e>
  1172. struct TerminateHandler {
  1173. bool Null() { return e != 0; }
  1174. bool Bool(bool) { return e != 1; }
  1175. bool Int(int) { return e != 2; }
  1176. bool Uint(unsigned) { return e != 3; }
  1177. bool Int64(int64_t) { return e != 4; }
  1178. bool Uint64(uint64_t) { return e != 5; }
  1179. bool Double(double) { return e != 6; }
  1180. bool String(const char*, SizeType, bool) { return e != 7; }
  1181. bool StartObject() { return e != 8; }
  1182. bool Key(const char*, SizeType, bool) { return e != 9; }
  1183. bool EndObject(SizeType) { return e != 10; }
  1184. bool StartArray() { return e != 11; }
  1185. bool EndArray(SizeType) { return e != 12; }
  1186. };
  1187. #define TEST_TERMINATION(e, json)\
  1188. {\
  1189. Document d; \
  1190. EXPECT_FALSE(d.Parse(json).HasParseError()); \
  1191. Reader reader; \
  1192. TerminateHandler<e> h;\
  1193. EXPECT_FALSE(d.Accept(h));\
  1194. }
  1195. TEST(Value, AcceptTerminationByHandler) {
  1196. TEST_TERMINATION(0, "[null]");
  1197. TEST_TERMINATION(1, "[true]");
  1198. TEST_TERMINATION(1, "[false]");
  1199. TEST_TERMINATION(2, "[-1]");
  1200. TEST_TERMINATION(3, "[2147483648]");
  1201. TEST_TERMINATION(4, "[-1234567890123456789]");
  1202. TEST_TERMINATION(5, "[9223372036854775808]");
  1203. TEST_TERMINATION(6, "[0.5]");
  1204. TEST_TERMINATION(7, "[\"a\"]");
  1205. TEST_TERMINATION(8, "[{}]");
  1206. TEST_TERMINATION(9, "[{\"a\":1}]");
  1207. TEST_TERMINATION(10, "[{}]");
  1208. TEST_TERMINATION(11, "{\"a\":[]}");
  1209. TEST_TERMINATION(12, "{\"a\":[]}");
  1210. }
  1211. struct ValueIntComparer {
  1212. bool operator()(const Value& lhs, const Value& rhs) const {
  1213. return lhs.GetInt() < rhs.GetInt();
  1214. }
  1215. };
  1216. #if RAPIDJSON_HAS_CXX11_RVALUE_REFS
  1217. TEST(Value, Sorting) {
  1218. Value::AllocatorType allocator;
  1219. Value a(kArrayType);
  1220. a.PushBack(5, allocator);
  1221. a.PushBack(1, allocator);
  1222. a.PushBack(3, allocator);
  1223. std::sort(a.Begin(), a.End(), ValueIntComparer());
  1224. EXPECT_EQ(1, a[0].GetInt());
  1225. EXPECT_EQ(3, a[1].GetInt());
  1226. EXPECT_EQ(5, a[2].GetInt());
  1227. }
  1228. #endif
  1229. // http://stackoverflow.com/questions/35222230/
  1230. static void MergeDuplicateKey(Value& v, Value::AllocatorType& a) {
  1231. if (v.IsObject()) {
  1232. // Convert all key:value into key:[value]
  1233. for (Value::MemberIterator itr = v.MemberBegin(); itr != v.MemberEnd(); ++itr)
  1234. itr->value = Value(kArrayType).Move().PushBack(itr->value, a);
  1235. // Merge arrays if key is duplicated
  1236. for (Value::MemberIterator itr = v.MemberBegin(); itr != v.MemberEnd();) {
  1237. Value::MemberIterator itr2 = v.FindMember(itr->name);
  1238. if (itr != itr2) {
  1239. itr2->value.PushBack(itr->value[0], a);
  1240. itr = v.EraseMember(itr);
  1241. }
  1242. else
  1243. ++itr;
  1244. }
  1245. // Convert key:[values] back to key:value if there is only one value
  1246. for (Value::MemberIterator itr = v.MemberBegin(); itr != v.MemberEnd(); ++itr) {
  1247. if (itr->value.Size() == 1)
  1248. itr->value = itr->value[0];
  1249. MergeDuplicateKey(itr->value, a); // Recursion on the value
  1250. }
  1251. }
  1252. else if (v.IsArray())
  1253. for (Value::ValueIterator itr = v.Begin(); itr != v.End(); ++itr)
  1254. MergeDuplicateKey(*itr, a);
  1255. }
  1256. TEST(Value, MergeDuplicateKey) {
  1257. Document d;
  1258. d.Parse(
  1259. "{"
  1260. " \"key1\": {"
  1261. " \"a\": \"asdf\","
  1262. " \"b\": \"foo\","
  1263. " \"b\": \"bar\","
  1264. " \"c\": \"fdas\""
  1265. " }"
  1266. "}");
  1267. Document d2;
  1268. d2.Parse(
  1269. "{"
  1270. " \"key1\": {"
  1271. " \"a\": \"asdf\","
  1272. " \"b\": ["
  1273. " \"foo\","
  1274. " \"bar\""
  1275. " ],"
  1276. " \"c\": \"fdas\""
  1277. " }"
  1278. "}");
  1279. EXPECT_NE(d2, d);
  1280. MergeDuplicateKey(d, d.GetAllocator());
  1281. EXPECT_EQ(d2, d);
  1282. }
  1283. #ifdef __clang__
  1284. RAPIDJSON_DIAG_POP
  1285. #endif