commit
8f4e99b2e5
@ -51,7 +51,8 @@ This project adheres to [Semantic Versioning](http://semver.org/).
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* Fix Document::Parse(const Ch*) for transcoding (#478)
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* encodings.h: fix typo in preprocessor condition (#495)
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* Custom Microsoft headers are necessary only for Visual Studio 2012 and lower (#559)
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*
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* Fix memory leak for invalid regex (26e69ffde95ba4773ab06db6457b78f308716f4b)
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* Fix a bug in schema minimum/maximum keywords for 64-bit integer (e7149d665941068ccf8c565e77495521331cf390)
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### Changed
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* Clarify problematic JSON license (#392)
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@ -375,14 +375,14 @@ private:
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bool Eval(Stack<Allocator>& operandStack, Operator op) {
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switch (op) {
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case kConcatenation:
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if (operandStack.GetSize() >= sizeof(Frag) * 2) {
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RAPIDJSON_ASSERT(operandStack.GetSize() >= sizeof(Frag) * 2);
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{
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Frag e2 = *operandStack.template Pop<Frag>(1);
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Frag e1 = *operandStack.template Pop<Frag>(1);
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Patch(e1.out, e2.start);
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*operandStack.template Push<Frag>() = Frag(e1.start, e2.out, Min(e1.minIndex, e2.minIndex));
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return true;
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}
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return false;
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return true;
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case kAlternation:
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if (operandStack.GetSize() >= sizeof(Frag) * 2) {
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@ -413,7 +413,8 @@ private:
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}
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return false;
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case kOneOrMore:
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default:
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RAPIDJSON_ASSERT(op == kOneOrMore);
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if (operandStack.GetSize() >= sizeof(Frag)) {
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Frag e = *operandStack.template Pop<Frag>(1);
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SizeType s = NewState(kRegexInvalidState, e.start, 0);
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@ -422,16 +423,12 @@ private:
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return true;
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}
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return false;
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default:
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return false;
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}
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}
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bool EvalQuantifier(Stack<Allocator>& operandStack, unsigned n, unsigned m) {
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RAPIDJSON_ASSERT(n <= m);
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if (operandStack.GetSize() < sizeof(Frag))
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return false;
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RAPIDJSON_ASSERT(operandStack.GetSize() >= sizeof(Frag));
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if (n == 0) {
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if (m == 0) // a{0} not support
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@ -647,8 +644,7 @@ private:
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// Return whether the added states is a match state
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bool AddState(Stack<Allocator>& l, SizeType index) const {
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if (index == kRegexInvalidState)
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return true;
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RAPIDJSON_ASSERT(index != kRegexInvalidState);
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const State& s = GetState(index);
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if (s.out1 != kRegexInvalidState) { // Split
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@ -635,8 +635,7 @@ private:
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RAPIDJSON_PARSE_ERROR(kParseErrorTermination, is.Tell());
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return;
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default:
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RAPIDJSON_PARSE_ERROR(kParseErrorObjectMissCommaOrCurlyBracket, is.Tell());
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break;
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RAPIDJSON_PARSE_ERROR(kParseErrorObjectMissCommaOrCurlyBracket, is.Tell()); break; // This useless break is only for making warning and coverage happy
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}
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if (parseFlags & kParseTrailingCommasFlag) {
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@ -1793,8 +1792,7 @@ private:
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case IterativeParsingKeyValueDelimiterState:
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case IterativeParsingArrayInitialState:
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case IterativeParsingElementDelimiterState: RAPIDJSON_PARSE_ERROR(kParseErrorValueInvalid, is.Tell()); return;
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case IterativeParsingElementState: RAPIDJSON_PARSE_ERROR(kParseErrorArrayMissCommaOrSquareBracket, is.Tell()); return;
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default: RAPIDJSON_PARSE_ERROR(kParseErrorUnspecificSyntaxError, is.Tell()); return;
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default: RAPIDJSON_ASSERT(src == IterativeParsingElementState); RAPIDJSON_PARSE_ERROR(kParseErrorArrayMissCommaOrSquareBracket, is.Tell()); return;
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}
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}
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@ -159,7 +159,6 @@ public:
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virtual uint64_t GetHashCode(void* hasher) = 0;
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virtual void DestroryHasher(void* hasher) = 0;
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virtual void* MallocState(size_t size) = 0;
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virtual void* ReallocState(void* originalPtr, size_t originalSize, size_t newSize) = 0;
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virtual void FreeState(void* p) = 0;
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};
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@ -1006,6 +1005,7 @@ private:
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RegexType* r = new (allocator_->Malloc(sizeof(RegexType))) RegexType(value.GetString());
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if (!r->IsValid()) {
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r->~RegexType();
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AllocatorType::Free(r);
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r = 0;
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}
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return r;
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@ -1108,6 +1108,9 @@ private:
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if (exclusiveMinimum_ ? i <= minimum_.GetInt64() : i < minimum_.GetInt64())
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RAPIDJSON_INVALID_KEYWORD_RETURN(GetMinimumString());
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}
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else if (minimum_.IsUint64()) {
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RAPIDJSON_INVALID_KEYWORD_RETURN(GetMinimumString()); // i <= max(int64_t) < minimum.GetUint64()
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}
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else if (!CheckDoubleMinimum(context, static_cast<double>(i)))
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return false;
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}
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@ -1117,6 +1120,8 @@ private:
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if (exclusiveMaximum_ ? i >= maximum_.GetInt64() : i > maximum_.GetInt64())
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RAPIDJSON_INVALID_KEYWORD_RETURN(GetMaximumString());
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}
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else if (maximum_.IsUint64())
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/* do nothing */; // i <= max(int64_t) < maximum_.GetUint64()
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else if (!CheckDoubleMaximum(context, static_cast<double>(i)))
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return false;
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}
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@ -1142,6 +1147,8 @@ private:
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if (exclusiveMinimum_ ? i <= minimum_.GetUint64() : i < minimum_.GetUint64())
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RAPIDJSON_INVALID_KEYWORD_RETURN(GetMinimumString());
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}
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else if (minimum_.IsInt64())
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/* do nothing */; // i >= 0 > minimum.Getint64()
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else if (!CheckDoubleMinimum(context, static_cast<double>(i)))
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return false;
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}
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@ -1151,6 +1158,8 @@ private:
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if (exclusiveMaximum_ ? i >= maximum_.GetUint64() : i > maximum_.GetUint64())
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RAPIDJSON_INVALID_KEYWORD_RETURN(GetMaximumString());
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}
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else if (maximum_.IsInt64())
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RAPIDJSON_INVALID_KEYWORD_RETURN(GetMaximumString()); // i >= 0 > maximum_
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else if (!CheckDoubleMaximum(context, static_cast<double>(i)))
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return false;
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}
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@ -1428,8 +1437,6 @@ private:
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const SchemaType* s = GetSchema(pointer);
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if (!s)
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CreateSchema(schema, pointer, v, document);
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else if (schema)
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*schema = s;
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for (typename ValueType::ConstMemberIterator itr = v.MemberBegin(); itr != v.MemberEnd(); ++itr)
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CreateSchemaRecursive(0, pointer.Append(itr->name, allocator_), itr->value, document);
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@ -1766,10 +1773,6 @@ RAPIDJSON_MULTILINEMACRO_END
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return GetStateAllocator().Malloc(size);
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}
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virtual void* ReallocState(void* originalPtr, size_t originalSize, size_t newSize) {
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return GetStateAllocator().Realloc(originalPtr, originalSize, newSize);
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}
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virtual void FreeState(void* p) {
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return StateAllocator::Free(p);
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}
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@ -423,3 +423,28 @@ TEST(EncodingsTest, UTF32) {
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}
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}
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}
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TEST(EncodingsTest, ASCII) {
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StringBuffer os, os2;
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for (unsigned codepoint = 0; codepoint < 128; codepoint++) {
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os.Clear();
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ASCII<>::Encode(os, codepoint);
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const ASCII<>::Ch* encodedStr = os.GetString();
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{
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StringStream is(encodedStr);
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unsigned decodedCodepoint;
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bool result = ASCII<>::Decode(is, &decodedCodepoint);
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if (!result || codepoint != decodedCodepoint)
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std::cout << std::hex << codepoint << " " << decodedCodepoint << std::endl;
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}
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// Validate
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{
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StringStream is(encodedStr);
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os2.Clear();
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bool result = ASCII<>::Validate(is, os2);
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EXPECT_TRUE(result);
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EXPECT_EQ(0, StrCmp(encodedStr, os2.GetString()));
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}
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}
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}
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@ -17,6 +17,14 @@
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using namespace rapidjson::internal;
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TEST(Regex, Single) {
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Regex re("a");
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ASSERT_TRUE(re.IsValid());
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EXPECT_TRUE(re.Match("a"));
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EXPECT_FALSE(re.Match(""));
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EXPECT_FALSE(re.Match("b"));
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}
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TEST(Regex, Concatenation) {
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Regex re("abc");
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ASSERT_TRUE(re.IsValid());
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@ -560,6 +568,9 @@ TEST(Regex, Invalid) {
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TEST_INVALID("a{1,0}");
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TEST_INVALID("a{-1,0}");
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TEST_INVALID("a{-1,1}");
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TEST_INVALID("a{4294967296}"); // overflow of unsigned
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TEST_INVALID("a{1a}");
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TEST_INVALID("[");
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TEST_INVALID("[]");
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TEST_INVALID("[^]");
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TEST_INVALID("[\\a]");
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@ -51,6 +51,11 @@ TEST(SchemaValidator, Hasher) {
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TEST_HASHER("false", "null", false);
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TEST_HASHER("1", "1", true);
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TEST_HASHER("2147483648", "2147483648", true); // 2^31 can only be fit in unsigned
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TEST_HASHER("-2147483649", "-2147483649", true); // -2^31 - 1 can only be fit in int64_t
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TEST_HASHER("2147483648", "2147483648", true); // 2^31 can only be fit in unsigned
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TEST_HASHER("4294967296", "4294967296", true); // 2^32 can only be fit in int64_t
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TEST_HASHER("9223372036854775808", "9223372036854775808", true); // 2^63 can only be fit in uint64_t
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TEST_HASHER("1.5", "1.5", true);
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TEST_HASHER("1", "1.0", true);
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TEST_HASHER("1", "-1", false);
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@ -316,6 +321,10 @@ TEST(SchemaValidator, String) {
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VALIDATE(s, "\"I'm a string\"", true);
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INVALIDATE(s, "42", "", "type", "");
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INVALIDATE(s, "2147483648", "", "type", ""); // 2^31 can only be fit in unsigned
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INVALIDATE(s, "-2147483649", "", "type", ""); // -2^31 - 1 can only be fit in int64_t
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INVALIDATE(s, "4294967296", "", "type", ""); // 2^32 can only be fit in int64_t
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INVALIDATE(s, "3.1415926", "", "type", "");
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}
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TEST(SchemaValidator, String_LengthRange) {
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@ -340,6 +349,16 @@ TEST(SchemaValidator, String_Pattern) {
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INVALIDATE(s, "\"(888)555-1212 ext. 532\"", "", "pattern", "");
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INVALIDATE(s, "\"(800)FLOWERS\"", "", "pattern", "");
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}
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TEST(SchemaValidator, String_Pattern_Invalid) {
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Document sd;
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sd.Parse("{\"type\":\"string\",\"pattern\":\"a{0}\"}"); // TODO: report regex is invalid somehow
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SchemaDocument s(sd);
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VALIDATE(s, "\"\"", true);
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VALIDATE(s, "\"a\"", true);
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VALIDATE(s, "\"aa\"", true);
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}
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#endif
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TEST(SchemaValidator, Integer) {
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@ -349,6 +368,10 @@ TEST(SchemaValidator, Integer) {
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VALIDATE(s, "42", true);
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VALIDATE(s, "-1", true);
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VALIDATE(s, "2147483648", true); // 2^31 can only be fit in unsigned
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VALIDATE(s, "-2147483649", true); // -2^31 - 1 can only be fit in int64_t
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VALIDATE(s, "2147483648", true); // 2^31 can only be fit in unsigned
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VALIDATE(s, "4294967296", true); // 2^32 can only be fit in int64_t
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INVALIDATE(s, "3.1415926", "", "type", "");
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INVALIDATE(s, "\"42\"", "", "type", "");
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}
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@ -368,11 +391,34 @@ TEST(SchemaValidator, Integer_Range) {
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TEST(SchemaValidator, Integer_Range64Boundary) {
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Document sd;
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sd.Parse("{\"type\":\"integer\",\"minimum\":-9223372036854775807,\"maximum\":18446744073709551614}");
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sd.Parse("{\"type\":\"integer\",\"minimum\":-9223372036854775807,\"maximum\":9223372036854775806}");
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SchemaDocument s(sd);
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INVALIDATE(s, "-9223372036854775808", "", "minimum", "");
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VALIDATE(s, "-9223372036854775807", true);
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VALIDATE(s, "-2147483648", true); // int min
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VALIDATE(s, "0", true);
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VALIDATE(s, "2147483647", true); // int max
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VALIDATE(s, "2147483648", true); // unsigned first
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VALIDATE(s, "4294967295", true); // unsigned max
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VALIDATE(s, "9223372036854775806", true);
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INVALIDATE(s, "9223372036854775807", "", "maximum", "");
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INVALIDATE(s, "18446744073709551615", "", "maximum", ""); // uint64_t max
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}
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TEST(SchemaValidator, Integer_RangeU64Boundary) {
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Document sd;
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sd.Parse("{\"type\":\"integer\",\"minimum\":9223372036854775808,\"maximum\":18446744073709551614}");
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SchemaDocument s(sd);
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INVALIDATE(s, "-9223372036854775808", "", "minimum", "");
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INVALIDATE(s, "9223372036854775807", "", "minimum", "");
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INVALIDATE(s, "-2147483648", "", "minimum", ""); // int min
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INVALIDATE(s, "0", "", "minimum", "");
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INVALIDATE(s, "2147483647", "", "minimum", ""); // int max
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INVALIDATE(s, "2147483648", "", "minimum", ""); // unsigned first
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INVALIDATE(s, "4294967295", "", "minimum", ""); // unsigned max
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VALIDATE(s, "9223372036854775808", true);
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VALIDATE(s, "18446744073709551614", true);
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INVALIDATE(s, "18446744073709551615", "", "maximum", "");
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}
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@ -418,10 +464,73 @@ TEST(SchemaValidator, Number_Range) {
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INVALIDATE(s, "-1", "", "minimum", "");
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VALIDATE(s, "0", true);
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VALIDATE(s, "0.1", true);
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VALIDATE(s, "10", true);
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VALIDATE(s, "99", true);
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VALIDATE(s, "99.9", true);
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INVALIDATE(s, "100", "", "maximum", "");
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INVALIDATE(s, "100.0", "", "maximum", "");
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INVALIDATE(s, "101.5", "", "maximum", "");
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}
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TEST(SchemaValidator, Number_RangeInt) {
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Document sd;
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sd.Parse("{\"type\":\"number\",\"minimum\":-100,\"maximum\":-1,\"exclusiveMaximum\":true}");
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SchemaDocument s(sd);
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INVALIDATE(s, "-101", "", "minimum", "");
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INVALIDATE(s, "-100.1", "", "minimum", "");
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VALIDATE(s, "-100", true);
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VALIDATE(s, "-2", true);
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INVALIDATE(s, "-1", "", "maximum", "");
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INVALIDATE(s, "-0.9", "", "maximum", "");
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INVALIDATE(s, "0", "", "maximum", "");
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INVALIDATE(s, "2147483647", "", "maximum", ""); // int max
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INVALIDATE(s, "2147483648", "", "maximum", ""); // unsigned first
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INVALIDATE(s, "4294967295", "", "maximum", ""); // unsigned max
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INVALIDATE(s, "9223372036854775808", "", "maximum", "");
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INVALIDATE(s, "18446744073709551614", "", "maximum", "");
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INVALIDATE(s, "18446744073709551615", "", "maximum", "");
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}
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TEST(SchemaValidator, Number_RangeDouble) {
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Document sd;
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sd.Parse("{\"type\":\"number\",\"minimum\":0.1,\"maximum\":100.1,\"exclusiveMaximum\":true}");
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SchemaDocument s(sd);
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INVALIDATE(s, "-9223372036854775808", "", "minimum", "");
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INVALIDATE(s, "-2147483648", "", "minimum", ""); // int min
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INVALIDATE(s, "-1", "", "minimum", "");
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VALIDATE(s, "0.1", true);
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VALIDATE(s, "10", true);
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VALIDATE(s, "99", true);
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VALIDATE(s, "100", true);
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INVALIDATE(s, "101", "", "maximum", "");
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INVALIDATE(s, "101.5", "", "maximum", "");
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INVALIDATE(s, "18446744073709551614", "", "maximum", "");
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INVALIDATE(s, "18446744073709551615", "", "maximum", "");
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INVALIDATE(s, "2147483647", "", "maximum", ""); // int max
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INVALIDATE(s, "2147483648", "", "maximum", ""); // unsigned first
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INVALIDATE(s, "4294967295", "", "maximum", ""); // unsigned max
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||||
INVALIDATE(s, "9223372036854775808", "", "maximum", "");
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INVALIDATE(s, "18446744073709551614", "", "maximum", "");
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INVALIDATE(s, "18446744073709551615", "", "maximum", "");
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}
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TEST(SchemaValidator, Number_RangeDoubleU64Boundary) {
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Document sd;
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sd.Parse("{\"type\":\"number\",\"minimum\":9223372036854775808.0,\"maximum\":18446744073709550000.0}");
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SchemaDocument s(sd);
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INVALIDATE(s, "-9223372036854775808", "", "minimum", "");
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INVALIDATE(s, "-2147483648", "", "minimum", ""); // int min
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INVALIDATE(s, "0", "", "minimum", "");
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INVALIDATE(s, "2147483647", "", "minimum", ""); // int max
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INVALIDATE(s, "2147483648", "", "minimum", ""); // unsigned first
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INVALIDATE(s, "4294967295", "", "minimum", ""); // unsigned max
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VALIDATE(s, "9223372036854775808", true);
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VALIDATE(s, "18446744073709540000", true);
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INVALIDATE(s, "18446744073709551615", "", "maximum", "");
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}
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TEST(SchemaValidator, Number_MultipleOf) {
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@ -434,6 +543,13 @@ TEST(SchemaValidator, Number_MultipleOf) {
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VALIDATE(s, "-10", true);
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VALIDATE(s, "20", true);
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INVALIDATE(s, "23", "", "multipleOf", "");
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INVALIDATE(s, "-2147483648", "", "multipleOf", ""); // int min
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||||
VALIDATE(s, "-2147483640", true);
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INVALIDATE(s, "2147483647", "", "multipleOf", ""); // int max
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||||
INVALIDATE(s, "2147483648", "", "multipleOf", ""); // unsigned first
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||||
VALIDATE(s, "2147483650", true);
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||||
INVALIDATE(s, "4294967295", "", "multipleOf", ""); // unsigned max
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||||
VALIDATE(s, "4294967300", true);
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}
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||||
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||||
TEST(SchemaValidator, Number_MultipleOfOne) {
|
||||
@ -844,6 +960,19 @@ TEST(SchemaValidator, AllOf_Nested) {
|
||||
INVALIDATE(s, "123", "", "allOf", "");
|
||||
}
|
||||
|
||||
TEST(SchemaValidator, EscapedPointer) {
|
||||
Document sd;
|
||||
sd.Parse(
|
||||
"{"
|
||||
" \"type\": \"object\","
|
||||
" \"properties\": {"
|
||||
" \"~/\": { \"type\": \"number\" }"
|
||||
" }"
|
||||
"}");
|
||||
SchemaDocument s(sd);
|
||||
INVALIDATE(s, "{\"~/\":true}", "/properties/~0~1", "type", "/~0~1");
|
||||
}
|
||||
|
||||
template <typename Allocator>
|
||||
static char* ReadFile(const char* filename, Allocator& allocator) {
|
||||
const char *paths[] = {
|
||||
|
@ -100,29 +100,60 @@ struct ScanCopyUnescapedStringHandler : BaseReaderHandler<UTF8<>, ScanCopyUnesca
|
||||
memcpy(buffer, str, length + 1);
|
||||
return true;
|
||||
}
|
||||
char buffer[1024 + 5];
|
||||
char buffer[1024 + 5 + 32];
|
||||
};
|
||||
|
||||
template <unsigned parseFlags, typename StreamType>
|
||||
void TestScanCopyUnescapedString() {
|
||||
for (size_t step = 0; step < 1024; step++) {
|
||||
char json[1024 + 5];
|
||||
char *p = json;
|
||||
*p ++= '\"';
|
||||
for (size_t i = 0; i < step; i++)
|
||||
*p++= "ABCD"[i % 4];
|
||||
*p++ = '\\';
|
||||
*p++ = '\\';
|
||||
*p++ = '\"';
|
||||
*p++ = '\0';
|
||||
char buffer[1024 + 5 + 32];
|
||||
char backup[1024 + 5 + 32];
|
||||
|
||||
StreamType s(json);
|
||||
Reader reader;
|
||||
ScanCopyUnescapedStringHandler h;
|
||||
reader.Parse<parseFlags>(s, h);
|
||||
EXPECT_TRUE(memcmp(h.buffer, json + 1, step) == 0);
|
||||
EXPECT_EQ('\\', h.buffer[step]); // escaped
|
||||
EXPECT_EQ('\0', h.buffer[step + 1]);
|
||||
// Test "ABCDABCD...\\"
|
||||
for (size_t offset = 0; offset < 32; offset++) {
|
||||
for (size_t step = 0; step < 1024; step++) {
|
||||
char* json = buffer + offset;
|
||||
char *p = json;
|
||||
*p++ = '\"';
|
||||
for (size_t i = 0; i < step; i++)
|
||||
*p++ = "ABCD"[i % 4];
|
||||
*p++ = '\\';
|
||||
*p++ = '\\';
|
||||
*p++ = '\"';
|
||||
*p++ = '\0';
|
||||
strcpy(backup, json); // insitu parsing will overwrite buffer, so need to backup first
|
||||
|
||||
StreamType s(json);
|
||||
Reader reader;
|
||||
ScanCopyUnescapedStringHandler h;
|
||||
reader.Parse<parseFlags>(s, h);
|
||||
EXPECT_TRUE(memcmp(h.buffer, backup + 1, step) == 0);
|
||||
EXPECT_EQ('\\', h.buffer[step]); // escaped
|
||||
EXPECT_EQ('\0', h.buffer[step + 1]);
|
||||
}
|
||||
}
|
||||
|
||||
// Test "\\ABCDABCD..."
|
||||
for (size_t offset = 0; offset < 32; offset++) {
|
||||
for (size_t step = 0; step < 1024; step++) {
|
||||
char* json = buffer + offset;
|
||||
char *p = json;
|
||||
*p++ = '\"';
|
||||
*p++ = '\\';
|
||||
*p++ = '\\';
|
||||
for (size_t i = 0; i < step; i++)
|
||||
*p++ = "ABCD"[i % 4];
|
||||
*p++ = '\"';
|
||||
*p++ = '\0';
|
||||
strcpy(backup, json); // insitu parsing will overwrite buffer, so need to backup first
|
||||
|
||||
StreamType s(json);
|
||||
Reader reader;
|
||||
ScanCopyUnescapedStringHandler h;
|
||||
reader.Parse<parseFlags>(s, h);
|
||||
EXPECT_TRUE(memcmp(h.buffer + 1, backup + 3, step) == 0);
|
||||
EXPECT_EQ('\\', h.buffer[0]); // escaped
|
||||
EXPECT_EQ('\0', h.buffer[step + 1]);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
@ -132,47 +163,50 @@ TEST(SIMD, SIMD_SUFFIX(ScanCopyUnescapedString)) {
|
||||
}
|
||||
|
||||
TEST(SIMD, SIMD_SUFFIX(ScanWriteUnescapedString)) {
|
||||
for (size_t step = 0; step < 1024; step++) {
|
||||
char s[2048 + 1];
|
||||
char *p = s;
|
||||
for (size_t i = 0; i < step; i++)
|
||||
*p++= "ABCD"[i % 4];
|
||||
char escape = "\0\n\\\""[step % 4];
|
||||
*p++ = escape;
|
||||
for (size_t i = 0; i < step; i++)
|
||||
*p++= "ABCD"[i % 4];
|
||||
char buffer[2048 + 1 + 32];
|
||||
for (size_t offset = 0; offset < 32; offset++) {
|
||||
for (size_t step = 0; step < 1024; step++) {
|
||||
char* s = buffer + offset;
|
||||
char* p = s;
|
||||
for (size_t i = 0; i < step; i++)
|
||||
*p++ = "ABCD"[i % 4];
|
||||
char escape = "\0\n\\\""[step % 4];
|
||||
*p++ = escape;
|
||||
for (size_t i = 0; i < step; i++)
|
||||
*p++ = "ABCD"[i % 4];
|
||||
|
||||
StringBuffer sb;
|
||||
Writer<StringBuffer> writer(sb);
|
||||
writer.String(s, SizeType(step * 2 + 1));
|
||||
const char* q = sb.GetString();
|
||||
EXPECT_EQ('\"', *q++);
|
||||
for (size_t i = 0; i < step; i++)
|
||||
EXPECT_EQ("ABCD"[i % 4], *q++);
|
||||
if (escape == '\0') {
|
||||
EXPECT_EQ('\\', *q++);
|
||||
EXPECT_EQ('u', *q++);
|
||||
EXPECT_EQ('0', *q++);
|
||||
EXPECT_EQ('0', *q++);
|
||||
EXPECT_EQ('0', *q++);
|
||||
EXPECT_EQ('0', *q++);
|
||||
}
|
||||
else if (escape == '\n') {
|
||||
EXPECT_EQ('\\', *q++);
|
||||
EXPECT_EQ('n', *q++);
|
||||
}
|
||||
else if (escape == '\\') {
|
||||
EXPECT_EQ('\\', *q++);
|
||||
EXPECT_EQ('\\', *q++);
|
||||
}
|
||||
else if (escape == '\"') {
|
||||
EXPECT_EQ('\\', *q++);
|
||||
StringBuffer sb;
|
||||
Writer<StringBuffer> writer(sb);
|
||||
writer.String(s, SizeType(step * 2 + 1));
|
||||
const char* q = sb.GetString();
|
||||
EXPECT_EQ('\"', *q++);
|
||||
for (size_t i = 0; i < step; i++)
|
||||
EXPECT_EQ("ABCD"[i % 4], *q++);
|
||||
if (escape == '\0') {
|
||||
EXPECT_EQ('\\', *q++);
|
||||
EXPECT_EQ('u', *q++);
|
||||
EXPECT_EQ('0', *q++);
|
||||
EXPECT_EQ('0', *q++);
|
||||
EXPECT_EQ('0', *q++);
|
||||
EXPECT_EQ('0', *q++);
|
||||
}
|
||||
else if (escape == '\n') {
|
||||
EXPECT_EQ('\\', *q++);
|
||||
EXPECT_EQ('n', *q++);
|
||||
}
|
||||
else if (escape == '\\') {
|
||||
EXPECT_EQ('\\', *q++);
|
||||
EXPECT_EQ('\\', *q++);
|
||||
}
|
||||
else if (escape == '\"') {
|
||||
EXPECT_EQ('\\', *q++);
|
||||
EXPECT_EQ('\"', *q++);
|
||||
}
|
||||
for (size_t i = 0; i < step; i++)
|
||||
EXPECT_EQ("ABCD"[i % 4], *q++);
|
||||
EXPECT_EQ('\"', *q++);
|
||||
EXPECT_EQ('\0', *q++);
|
||||
}
|
||||
for (size_t i = 0; i < step; i++)
|
||||
EXPECT_EQ("ABCD"[i % 4], *q++);
|
||||
EXPECT_EQ('\"', *q++);
|
||||
EXPECT_EQ('\0', *q++);
|
||||
}
|
||||
}
|
||||
|
||||
|
@ -402,6 +402,7 @@ TEST(Value, Int) {
|
||||
EXPECT_TRUE(x.IsUint64());
|
||||
|
||||
EXPECT_FALSE(x.IsDouble());
|
||||
EXPECT_FALSE(x.IsFloat());
|
||||
EXPECT_FALSE(x.IsNull());
|
||||
EXPECT_FALSE(x.IsBool());
|
||||
EXPECT_FALSE(x.IsFalse());
|
||||
@ -456,6 +457,7 @@ TEST(Value, Uint) {
|
||||
EXPECT_NEAR(1234.0, x.GetDouble(), 0.0); // Number can always be cast as double but !IsDouble().
|
||||
|
||||
EXPECT_FALSE(x.IsDouble());
|
||||
EXPECT_FALSE(x.IsFloat());
|
||||
EXPECT_FALSE(x.IsNull());
|
||||
EXPECT_FALSE(x.IsBool());
|
||||
EXPECT_FALSE(x.IsFalse());
|
||||
@ -500,6 +502,7 @@ TEST(Value, Int64) {
|
||||
EXPECT_TRUE(x.IsUint64());
|
||||
|
||||
EXPECT_FALSE(x.IsDouble());
|
||||
EXPECT_FALSE(x.IsFloat());
|
||||
EXPECT_FALSE(x.IsNull());
|
||||
EXPECT_FALSE(x.IsBool());
|
||||
EXPECT_FALSE(x.IsFalse());
|
||||
@ -561,6 +564,7 @@ TEST(Value, Uint64) {
|
||||
EXPECT_TRUE(x.IsUint64());
|
||||
|
||||
EXPECT_FALSE(x.IsDouble());
|
||||
EXPECT_FALSE(x.IsFloat());
|
||||
EXPECT_FALSE(x.IsNull());
|
||||
EXPECT_FALSE(x.IsBool());
|
||||
EXPECT_FALSE(x.IsFalse());
|
||||
|
@ -18,6 +18,7 @@
|
||||
#include "rapidjson/reader.h"
|
||||
#include "rapidjson/writer.h"
|
||||
#include "rapidjson/stringbuffer.h"
|
||||
#include "rapidjson/memorybuffer.h"
|
||||
|
||||
using namespace rapidjson;
|
||||
|
||||
@ -94,6 +95,19 @@ TEST(Writer, String) {
|
||||
#endif
|
||||
}
|
||||
|
||||
TEST(Writer, ScanWriteUnescapedString) {
|
||||
const char json[] = "[\" \\\"0123456789ABCDEF\"]";
|
||||
// ^ scanning stops here.
|
||||
char buffer2[sizeof(json) + 32];
|
||||
|
||||
// Use different offset to test different alignments
|
||||
for (int i = 0; i < 32; i++) {
|
||||
char* p = buffer2 + i;
|
||||
memcpy(p, json, sizeof(json));
|
||||
TEST_ROUNDTRIP(p);
|
||||
}
|
||||
}
|
||||
|
||||
TEST(Writer, Double) {
|
||||
TEST_ROUNDTRIP("[1.2345,1.2345678,0.123456789012,1234567.8]");
|
||||
TEST_ROUNDTRIP("0.0");
|
||||
@ -107,35 +121,59 @@ TEST(Writer, Double) {
|
||||
|
||||
}
|
||||
|
||||
// UTF8 -> TargetEncoding -> UTF8
|
||||
template <typename TargetEncoding>
|
||||
void TestTranscode(const char* json) {
|
||||
StringStream s(json);
|
||||
GenericStringBuffer<TargetEncoding> buffer;
|
||||
Writer<GenericStringBuffer<TargetEncoding>, UTF8<>, TargetEncoding> writer(buffer);
|
||||
Reader reader;
|
||||
reader.Parse(s, writer);
|
||||
|
||||
StringBuffer buffer2;
|
||||
Writer<StringBuffer> writer2(buffer2);
|
||||
GenericReader<TargetEncoding, UTF8<> > reader2;
|
||||
GenericStringStream<TargetEncoding> s2(buffer.GetString());
|
||||
reader2.Parse(s2, writer2);
|
||||
|
||||
EXPECT_STREQ(json, buffer2.GetString());
|
||||
}
|
||||
|
||||
TEST(Writer, Transcode) {
|
||||
const char json[] = "{\"hello\":\"world\",\"t\":true,\"f\":false,\"n\":null,\"i\":123,\"pi\":3.1416,\"a\":[1,2,3],\"dollar\":\"\x24\",\"cents\":\"\xC2\xA2\",\"euro\":\"\xE2\x82\xAC\",\"gclef\":\"\xF0\x9D\x84\x9E\"}";
|
||||
|
||||
// UTF8 -> UTF16 -> UTF8
|
||||
{
|
||||
StringStream s(json);
|
||||
StringBuffer buffer;
|
||||
Writer<StringBuffer, UTF16<>, UTF8<> > writer(buffer);
|
||||
GenericReader<UTF8<>, UTF16<> > reader;
|
||||
reader.Parse(s, writer);
|
||||
EXPECT_STREQ(json, buffer.GetString());
|
||||
}
|
||||
TestTranscode<UTF8<> >(json);
|
||||
|
||||
// UTF8 -> UTF8 -> ASCII -> UTF8 -> UTF8
|
||||
{
|
||||
// UTF8 -> ASCII -> UTF8
|
||||
TestTranscode<ASCII<> >(json);
|
||||
|
||||
// UTF8 -> UTF16 -> UTF8
|
||||
TestTranscode<UTF16<> >(json);
|
||||
|
||||
// UTF8 -> UTF32 -> UTF8
|
||||
TestTranscode<UTF32<> >(json);
|
||||
|
||||
// UTF8 -> AutoUTF -> UTF8
|
||||
UTFType types[] = { kUTF8, kUTF16LE , kUTF16BE, kUTF32LE , kUTF32BE };
|
||||
for (size_t i = 0; i < 5; i++) {
|
||||
StringStream s(json);
|
||||
StringBuffer buffer;
|
||||
Writer<StringBuffer, UTF8<>, ASCII<> > writer(buffer);
|
||||
MemoryBuffer buffer;
|
||||
AutoUTFOutputStream<unsigned, MemoryBuffer> os(buffer, types[i], true);
|
||||
Writer<AutoUTFOutputStream<unsigned, MemoryBuffer>, UTF8<>, AutoUTF<unsigned> > writer(os);
|
||||
Reader reader;
|
||||
reader.Parse(s, writer);
|
||||
|
||||
StringBuffer buffer2;
|
||||
Writer<StringBuffer> writer2(buffer2);
|
||||
GenericReader<ASCII<>, UTF8<> > reader2;
|
||||
StringStream s2(buffer.GetString());
|
||||
reader2.Parse(s2, writer2);
|
||||
GenericReader<AutoUTF<unsigned>, UTF8<> > reader2;
|
||||
MemoryStream s2(buffer.GetBuffer(), buffer.GetSize());
|
||||
AutoUTFInputStream<unsigned, MemoryStream> is(s2);
|
||||
reader2.Parse(is, writer2);
|
||||
|
||||
EXPECT_STREQ(json, buffer2.GetString());
|
||||
}
|
||||
|
||||
}
|
||||
|
||||
#include <sstream>
|
||||
@ -410,6 +448,10 @@ TEST(Writer, NaN) {
|
||||
StringBuffer buffer;
|
||||
Writer<StringBuffer> writer(buffer);
|
||||
EXPECT_FALSE(writer.Double(nan));
|
||||
|
||||
GenericStringBuffer<UTF16<> > buffer2;
|
||||
Writer<GenericStringBuffer<UTF16<> > > writer2(buffer2);
|
||||
EXPECT_FALSE(writer2.Double(nan));
|
||||
}
|
||||
|
||||
TEST(Writer, Inf) {
|
||||
@ -418,7 +460,7 @@ TEST(Writer, Inf) {
|
||||
StringBuffer buffer;
|
||||
{
|
||||
Writer<StringBuffer> writer(buffer);
|
||||
EXPECT_FALSE(writer.Double(inf));
|
||||
EXPECT_FALSE(writer.Double(inf));
|
||||
}
|
||||
{
|
||||
Writer<StringBuffer> writer(buffer);
|
||||
|
Loading…
x
Reference in New Issue
Block a user