Commit 86b2f51a authored by Milo Yip's avatar Milo Yip

Use branchlut implementation for itoa conversion.

parent 74a13567
#ifndef RAPIDJSON_ITOA_
#define RAPIDJSON_ITOA_
namespace rapidjson {
namespace internal {
// Modified from https://github.com/miloyip/itoa-benchmark/blob/master/src/branchlut.cpp
// API is changed to return the character passed the end of string, without writing '\0'
inline const char* GetDigitsLut() {
static const char cDigitsLut[200] = {
'0','0','0','1','0','2','0','3','0','4','0','5','0','6','0','7','0','8','0','9',
'1','0','1','1','1','2','1','3','1','4','1','5','1','6','1','7','1','8','1','9',
'2','0','2','1','2','2','2','3','2','4','2','5','2','6','2','7','2','8','2','9',
'3','0','3','1','3','2','3','3','3','4','3','5','3','6','3','7','3','8','3','9',
'4','0','4','1','4','2','4','3','4','4','4','5','4','6','4','7','4','8','4','9',
'5','0','5','1','5','2','5','3','5','4','5','5','5','6','5','7','5','8','5','9',
'6','0','6','1','6','2','6','3','6','4','6','5','6','6','6','7','6','8','6','9',
'7','0','7','1','7','2','7','3','7','4','7','5','7','6','7','7','7','8','7','9',
'8','0','8','1','8','2','8','3','8','4','8','5','8','6','8','7','8','8','8','9',
'9','0','9','1','9','2','9','3','9','4','9','5','9','6','9','7','9','8','9','9'
};
return cDigitsLut;
}
inline char* u32toa(uint32_t value, char* buffer) {
const char* cDigitsLut = GetDigitsLut();
if (value < 10000) {
const uint32_t d1 = (value / 100) << 1;
const uint32_t d2 = (value % 100) << 1;
if (value >= 1000)
*buffer++ = cDigitsLut[d1];
if (value >= 100)
*buffer++ = cDigitsLut[d1 + 1];
if (value >= 10)
*buffer++ = cDigitsLut[d2];
*buffer++ = cDigitsLut[d2 + 1];
}
else if (value < 100000000) {
// value = bbbbcccc
const uint32_t b = value / 10000;
const uint32_t c = value % 10000;
const uint32_t d1 = (b / 100) << 1;
const uint32_t d2 = (b % 100) << 1;
const uint32_t d3 = (c / 100) << 1;
const uint32_t d4 = (c % 100) << 1;
if (value >= 10000000)
*buffer++ = cDigitsLut[d1];
if (value >= 1000000)
*buffer++ = cDigitsLut[d1 + 1];
if (value >= 100000)
*buffer++ = cDigitsLut[d2];
*buffer++ = cDigitsLut[d2 + 1];
*buffer++ = cDigitsLut[d3];
*buffer++ = cDigitsLut[d3 + 1];
*buffer++ = cDigitsLut[d4];
*buffer++ = cDigitsLut[d4 + 1];
}
else {
// value = aabbbbcccc in decimal
const uint32_t a = value / 100000000; // 1 to 42
value %= 100000000;
if (a >= 10) {
const unsigned i = a << 1;
*buffer++ = cDigitsLut[i];
*buffer++ = cDigitsLut[i + 1];
}
else
*buffer++ = '0' + static_cast<char>(a);
const uint32_t b = value / 10000; // 0 to 9999
const uint32_t c = value % 10000; // 0 to 9999
const uint32_t d1 = (b / 100) << 1;
const uint32_t d2 = (b % 100) << 1;
const uint32_t d3 = (c / 100) << 1;
const uint32_t d4 = (c % 100) << 1;
*buffer++ = cDigitsLut[d1];
*buffer++ = cDigitsLut[d1 + 1];
*buffer++ = cDigitsLut[d2];
*buffer++ = cDigitsLut[d2 + 1];
*buffer++ = cDigitsLut[d3];
*buffer++ = cDigitsLut[d3 + 1];
*buffer++ = cDigitsLut[d4];
*buffer++ = cDigitsLut[d4 + 1];
}
return buffer;
}
inline char* i32toa(int32_t value, char* buffer) {
if (value < 0) {
*buffer++ = '-';
value = -value;
}
return u32toa(static_cast<uint32_t>(value), buffer);
}
inline char* u64toa(uint64_t value, char* buffer) {
const char* cDigitsLut = GetDigitsLut();
if (value < 100000000) {
uint32_t v = static_cast<uint32_t>(value);
if (v < 10000) {
const uint32_t d1 = (v / 100) << 1;
const uint32_t d2 = (v % 100) << 1;
if (v >= 1000)
*buffer++ = cDigitsLut[d1];
if (v >= 100)
*buffer++ = cDigitsLut[d1 + 1];
if (v >= 10)
*buffer++ = cDigitsLut[d2];
*buffer++ = cDigitsLut[d2 + 1];
}
else {
// value = bbbbcccc
const uint32_t b = v / 10000;
const uint32_t c = v % 10000;
const uint32_t d1 = (b / 100) << 1;
const uint32_t d2 = (b % 100) << 1;
const uint32_t d3 = (c / 100) << 1;
const uint32_t d4 = (c % 100) << 1;
if (value >= 10000000)
*buffer++ = cDigitsLut[d1];
if (value >= 1000000)
*buffer++ = cDigitsLut[d1 + 1];
if (value >= 100000)
*buffer++ = cDigitsLut[d2];
*buffer++ = cDigitsLut[d2 + 1];
*buffer++ = cDigitsLut[d3];
*buffer++ = cDigitsLut[d3 + 1];
*buffer++ = cDigitsLut[d4];
*buffer++ = cDigitsLut[d4 + 1];
}
}
else if (value < 10000000000000000) {
const uint32_t v0 = static_cast<uint32_t>(value / 100000000);
const uint32_t v1 = static_cast<uint32_t>(value % 100000000);
const uint32_t b0 = v0 / 10000;
const uint32_t c0 = v0 % 10000;
const uint32_t d1 = (b0 / 100) << 1;
const uint32_t d2 = (b0 % 100) << 1;
const uint32_t d3 = (c0 / 100) << 1;
const uint32_t d4 = (c0 % 100) << 1;
const uint32_t b1 = v1 / 10000;
const uint32_t c1 = v1 % 10000;
const uint32_t d5 = (b1 / 100) << 1;
const uint32_t d6 = (b1 % 100) << 1;
const uint32_t d7 = (c1 / 100) << 1;
const uint32_t d8 = (c1 % 100) << 1;
if (value >= 1000000000000000)
*buffer++ = cDigitsLut[d1];
if (value >= 100000000000000)
*buffer++ = cDigitsLut[d1 + 1];
if (value >= 10000000000000)
*buffer++ = cDigitsLut[d2];
if (value >= 1000000000000)
*buffer++ = cDigitsLut[d2 + 1];
if (value >= 100000000000)
*buffer++ = cDigitsLut[d3];
if (value >= 10000000000)
*buffer++ = cDigitsLut[d3 + 1];
if (value >= 1000000000)
*buffer++ = cDigitsLut[d4];
if (value >= 100000000)
*buffer++ = cDigitsLut[d4 + 1];
*buffer++ = cDigitsLut[d5];
*buffer++ = cDigitsLut[d5 + 1];
*buffer++ = cDigitsLut[d6];
*buffer++ = cDigitsLut[d6 + 1];
*buffer++ = cDigitsLut[d7];
*buffer++ = cDigitsLut[d7 + 1];
*buffer++ = cDigitsLut[d8];
*buffer++ = cDigitsLut[d8 + 1];
}
else {
const uint32_t a = static_cast<uint32_t>(value / 10000000000000000); // 1 to 1844
value %= 10000000000000000;
if (a < 10)
*buffer++ = '0' + static_cast<char>(a);
else if (a < 100) {
const uint32_t i = a << 1;
*buffer++ = cDigitsLut[i];
*buffer++ = cDigitsLut[i + 1];
}
else if (a < 1000) {
*buffer++ = '0' + static_cast<char>(a / 100);
const uint32_t i = (a % 100) << 1;
*buffer++ = cDigitsLut[i];
*buffer++ = cDigitsLut[i + 1];
}
else {
const uint32_t i = (a / 100) << 1;
const uint32_t j = (a % 100) << 1;
*buffer++ = cDigitsLut[i];
*buffer++ = cDigitsLut[i + 1];
*buffer++ = cDigitsLut[j];
*buffer++ = cDigitsLut[j + 1];
}
const uint32_t v0 = static_cast<uint32_t>(value / 100000000);
const uint32_t v1 = static_cast<uint32_t>(value % 100000000);
const uint32_t b0 = v0 / 10000;
const uint32_t c0 = v0 % 10000;
const uint32_t d1 = (b0 / 100) << 1;
const uint32_t d2 = (b0 % 100) << 1;
const uint32_t d3 = (c0 / 100) << 1;
const uint32_t d4 = (c0 % 100) << 1;
const uint32_t b1 = v1 / 10000;
const uint32_t c1 = v1 % 10000;
const uint32_t d5 = (b1 / 100) << 1;
const uint32_t d6 = (b1 % 100) << 1;
const uint32_t d7 = (c1 / 100) << 1;
const uint32_t d8 = (c1 % 100) << 1;
*buffer++ = cDigitsLut[d1];
*buffer++ = cDigitsLut[d1 + 1];
*buffer++ = cDigitsLut[d2];
*buffer++ = cDigitsLut[d2 + 1];
*buffer++ = cDigitsLut[d3];
*buffer++ = cDigitsLut[d3 + 1];
*buffer++ = cDigitsLut[d4];
*buffer++ = cDigitsLut[d4 + 1];
*buffer++ = cDigitsLut[d5];
*buffer++ = cDigitsLut[d5 + 1];
*buffer++ = cDigitsLut[d6];
*buffer++ = cDigitsLut[d6 + 1];
*buffer++ = cDigitsLut[d7];
*buffer++ = cDigitsLut[d7 + 1];
*buffer++ = cDigitsLut[d8];
*buffer++ = cDigitsLut[d8 + 1];
}
return buffer;
}
inline char* i64toa(int64_t value, char* buffer) {
if (value < 0) {
*buffer++ = '-';
value = -value;
}
return u64toa(static_cast<uint64_t>(value), buffer);
}
} // namespace internal
} // namespace rapidjson
#endif // RAPIDJSON_ITOA_
......@@ -360,11 +360,14 @@ struct GenericInsituStringStream {
size_t Tell() { return static_cast<size_t>(src_ - head_); }
// Write
Ch* PutBegin() { return dst_ = src_; }
void Put(Ch c) { RAPIDJSON_ASSERT(dst_ != 0); *dst_++ = c; }
Ch* Allocate(size_t count) { Ch* begin = dst_; dst_ += count; return begin; }
void Flush() {}
Ch* PutBegin() { return dst_ = src_; }
size_t PutEnd(Ch* begin) { return static_cast<size_t>(dst_ - begin); }
void Flush() {}
Ch* Push(size_t count) { Ch* begin = dst_; dst_ += count; return begin; }
void Pop(size_t count) { dst_ -= count; }
Ch* src_;
Ch* dst_;
......
......@@ -22,7 +22,8 @@ struct GenericStringBuffer {
void Flush() {}
void Clear() { stack_.Clear(); }
Ch* Allocate(size_t count) { return stack_.template Push<Ch>(count); }
Ch* Push(size_t count) { return stack_.template Push<Ch>(count); }
void Pop(size_t count) { stack_.template Pop<Ch>(count); }
const Ch* GetString() const {
// Push and pop a null terminator. This is safe.
......
......@@ -4,6 +4,8 @@
#include "rapidjson.h"
#include "internal/stack.h"
#include "internal/strfunc.h"
#include "internal/itoa.h"
#include "stringbuffer.h"
#include <cstdio> // snprintf() or _sprintf_s()
#include <new> // placement new
......@@ -44,6 +46,10 @@ public:
os_(&os), level_stack_(allocator, levelDepth * sizeof(Level)),
doublePrecision_(kDefaultDoublePrecision), hasRoot_(false) {}
Writer(Allocator* allocator = 0, size_t levelDepth = kDefaultLevelDepth) :
os_(0), level_stack_(allocator, levelDepth * sizeof(Level)),
doublePrecision_(kDefaultDoublePrecision), hasRoot_(false) {}
//! Reset the writer with a new stream.
/*!
This function reset the writer with a new stream and default settings,
......@@ -208,49 +214,34 @@ protected:
}
bool WriteInt(int i) {
if (i < 0) {
os_->Put('-');
i = -i;
}
return WriteUint((unsigned)i);
char buffer[11];
const char* end = internal::i32toa(i, buffer);
for (const char* p = buffer; p != end; ++p)
os_->Put(*p);
return true;
}
bool WriteUint(unsigned u) {
char buffer[10];
char *p = buffer;
do {
*p++ = char(u % 10) + '0';
u /= 10;
} while (u > 0);
do {
--p;
const char* end = internal::u32toa(u, buffer);
for (const char* p = buffer; p != end; ++p)
os_->Put(*p);
} while (p != buffer);
return true;
}
bool WriteInt64(int64_t i64) {
if (i64 < 0) {
os_->Put('-');
i64 = -i64;
}
WriteUint64((uint64_t)i64);
char buffer[21];
const char* end = internal::i64toa(i64, buffer);
for (const char* p = buffer; p != end; ++p)
os_->Put(*p);
return true;
}
bool WriteUint64(uint64_t u64) {
char buffer[20];
char *p = buffer;
do {
*p++ = char(u64 % 10) + '0';
u64 /= 10;
} while (u64 > 0);
do {
--p;
char buffer[11];
const char* end = internal::u64toa(u64, buffer);
for (const char* p = buffer; p != end; ++p)
os_->Put(*p);
} while (p != buffer);
return true;
}
......@@ -378,6 +369,40 @@ private:
Writer& operator=(const Writer&);
};
// Full specialization for StringStream to prevent memory copying
template<>
inline bool Writer<StringBuffer>::WriteInt(int i) {
char *buffer = os_->Push(11);
const char* end = internal::i32toa(i, buffer);
os_->Pop(11 - (end - buffer));
return true;
}
template<>
inline bool Writer<StringBuffer>::WriteUint(unsigned u) {
char *buffer = os_->Push(10);
const char* end = internal::u32toa(u, buffer);
os_->Pop(10 - (end - buffer));
return true;
}
template<>
inline bool Writer<StringBuffer>::WriteInt64(int64_t i64) {
char *buffer = os_->Push(21);
const char* end = internal::i64toa(i64, buffer);
os_->Pop(21 - (end - buffer));
return true;
}
template<>
inline bool Writer<StringBuffer>::WriteUint64(uint64_t u) {
char *buffer = os_->Push(20);
const char* end = internal::u64toa(u, buffer);
os_->Pop(20 - (end - buffer));
return true;
}
} // namespace rapidjson
#ifdef _MSC_VER
......
......@@ -29,6 +29,10 @@
#pragma warning (pop)
#endif
#define protected public
#include "rapidjson/writer.h"
#undef private
class Misc : public PerfTest {
};
......@@ -358,7 +362,7 @@ static const char digits[201] =
// Prevent code being optimized out
//#define OUTPUT_LENGTH(length) printf("", length)
#define OUTPUT_LENGTH(length) printf("%d\n", length)
#define OUTPUT_LENGTH(length) printf("%u\n", (unsigned)length)
template<typename OutputStream>
class Writer1 {
......@@ -430,7 +434,7 @@ bool Writer1<rapidjson::StringBuffer>::WriteUint(unsigned u) {
u /= 10;
} while (u > 0);
char* d = os_->Allocate(p - buffer);
char* d = os_->Push(p - buffer);
do {
--p;
*d++ = *p;
......@@ -597,28 +601,28 @@ private:
template<>
inline bool Writer3<rapidjson::StringBuffer>::WriteUint(unsigned u) {
unsigned digit = CountDecimalDigit_fast(u);
WriteUintReverse(os_->Allocate(digit) + digit, u);
WriteUintReverse(os_->Push(digit) + digit, u);
return true;
}
template<>
inline bool Writer3<rapidjson::InsituStringStream>::WriteUint(unsigned u) {
unsigned digit = CountDecimalDigit_fast(u);
WriteUintReverse(os_->Allocate(digit) + digit, u);
WriteUintReverse(os_->Push(digit) + digit, u);
return true;
}
template<>
inline bool Writer3<rapidjson::StringBuffer>::WriteUint64(uint64_t u) {
unsigned digit = CountDecimalDigit64_fast(u);
WriteUint64Reverse(os_->Allocate(digit) + digit, u);
WriteUint64Reverse(os_->Push(digit) + digit, u);
return true;
}
template<>
inline bool Writer3<rapidjson::InsituStringStream>::WriteUint64(uint64_t u) {
unsigned digit = CountDecimalDigit64_fast(u);
WriteUint64Reverse(os_->Allocate(digit) + digit, u);
WriteUint64Reverse(os_->Push(digit) + digit, u);
return true;
}
......@@ -739,28 +743,28 @@ private:
template<>
inline bool Writer4<rapidjson::StringBuffer>::WriteUint(unsigned u) {
unsigned digit = CountDecimalDigit_fast(u);
WriteUintReverse(os_->Allocate(digit) + digit, u);
WriteUintReverse(os_->Push(digit) + digit, u);
return true;
}
template<>
inline bool Writer4<rapidjson::InsituStringStream>::WriteUint(unsigned u) {
unsigned digit = CountDecimalDigit_fast(u);
WriteUintReverse(os_->Allocate(digit) + digit, u);
WriteUintReverse(os_->Push(digit) + digit, u);
return true;
}
template<>
inline bool Writer4<rapidjson::StringBuffer>::WriteUint64(uint64_t u) {
unsigned digit = CountDecimalDigit64_fast(u);
WriteUint64Reverse(os_->Allocate(digit) + digit, u);
WriteUint64Reverse(os_->Push(digit) + digit, u);
return true;
}
template<>
inline bool Writer4<rapidjson::InsituStringStream>::WriteUint64(uint64_t u) {
unsigned digit = CountDecimalDigit64_fast(u);
WriteUint64Reverse(os_->Allocate(digit) + digit, u);
WriteUint64Reverse(os_->Push(digit) + digit, u);
return true;
}
......@@ -896,35 +900,82 @@ void itoa64_Writer_InsituStringStream() {
OUTPUT_LENGTH(length);
};
// Full specialization for InsituStringStream to prevent memory copying
// (normally we will not use InsituStringStream for writing, just for testing)
namespace rapidjson {
template<>
bool rapidjson::Writer<InsituStringStream>::WriteInt(int i) {
char *buffer = os_->Push(11);
const char* end = internal::i32toa(i, buffer);
os_->Pop(11 - (end - buffer));
return true;
}
template<>
bool Writer<InsituStringStream>::WriteUint(unsigned u) {
char *buffer = os_->Push(10);
const char* end = internal::u32toa(u, buffer);
os_->Pop(10 - (end - buffer));
return true;
}
template<>
bool Writer<InsituStringStream>::WriteInt64(int64_t i64) {
char *buffer = os_->Push(21);
const char* end = internal::i64toa(i64, buffer);
os_->Pop(21 - (end - buffer));
return true;
}
template<>
bool Writer<InsituStringStream>::WriteUint64(uint64_t u) {
char *buffer = os_->Push(20);
const char* end = internal::u64toa(u, buffer);
os_->Pop(20 - (end - buffer));
return true;
}
} // namespace rapidjson
TEST_F(Misc, itoa_Writer_StringBufferVerify) { itoa_Writer_StringBufferVerify<rapidjson::Writer<rapidjson::StringBuffer> >(); }
TEST_F(Misc, itoa_Writer1_StringBufferVerify) { itoa_Writer_StringBufferVerify<Writer1<rapidjson::StringBuffer> >(); }
TEST_F(Misc, itoa_Writer2_StringBufferVerify) { itoa_Writer_StringBufferVerify<Writer2<rapidjson::StringBuffer> >(); }
TEST_F(Misc, itoa_Writer3_StringBufferVerify) { itoa_Writer_StringBufferVerify<Writer3<rapidjson::StringBuffer> >(); }
TEST_F(Misc, itoa_Writer4_StringBufferVerify) { itoa_Writer_StringBufferVerify<Writer4<rapidjson::StringBuffer> >(); }
TEST_F(Misc, itoa_Writer_InsituStringStreamVerify) { itoa_Writer_InsituStringStreamVerify<rapidjson::Writer<rapidjson::InsituStringStream> >(); }
TEST_F(Misc, itoa_Writer1_InsituStringStreamVerify) { itoa_Writer_InsituStringStreamVerify<Writer1<rapidjson::InsituStringStream> >(); }
TEST_F(Misc, itoa_Writer2_InsituStringStreamVerify) { itoa_Writer_InsituStringStreamVerify<Writer2<rapidjson::InsituStringStream> >(); }
TEST_F(Misc, itoa_Writer3_InsituStringStreamVerify) { itoa_Writer_InsituStringStreamVerify<Writer3<rapidjson::InsituStringStream> >(); }
TEST_F(Misc, itoa_Writer4_InsituStringStreamVerify) { itoa_Writer_InsituStringStreamVerify<Writer4<rapidjson::InsituStringStream> >(); }
TEST_F(Misc, itoa_Writer_StringBuffer) { itoa_Writer_StringBuffer<rapidjson::Writer<rapidjson::StringBuffer> >(); }
TEST_F(Misc, itoa_Writer1_StringBuffer) { itoa_Writer_StringBuffer<Writer1<rapidjson::StringBuffer> >(); }
TEST_F(Misc, itoa_Writer2_StringBuffer) { itoa_Writer_StringBuffer<Writer2<rapidjson::StringBuffer> >(); }
TEST_F(Misc, itoa_Writer3_StringBuffer) { itoa_Writer_StringBuffer<Writer3<rapidjson::StringBuffer> >(); }
TEST_F(Misc, itoa_Writer4_StringBuffer) { itoa_Writer_StringBuffer<Writer4<rapidjson::StringBuffer> >(); }
TEST_F(Misc, itoa_Writer_InsituStringStream) { itoa_Writer_InsituStringStream<rapidjson::Writer<rapidjson::InsituStringStream> >(); }
TEST_F(Misc, itoa_Writer1_InsituStringStream) { itoa_Writer_InsituStringStream<Writer1<rapidjson::InsituStringStream> >(); }
TEST_F(Misc, itoa_Writer2_InsituStringStream) { itoa_Writer_InsituStringStream<Writer2<rapidjson::InsituStringStream> >(); }
TEST_F(Misc, itoa_Writer3_InsituStringStream) { itoa_Writer_InsituStringStream<Writer3<rapidjson::InsituStringStream> >(); }
TEST_F(Misc, itoa_Writer4_InsituStringStream) { itoa_Writer_InsituStringStream<Writer4<rapidjson::InsituStringStream> >(); }
TEST_F(Misc, itoa64_Writer_StringBufferVerify) { itoa64_Writer_StringBufferVerify<rapidjson::Writer<rapidjson::StringBuffer> >(); }
TEST_F(Misc, itoa64_Writer1_StringBufferVerify) { itoa64_Writer_StringBufferVerify<Writer1<rapidjson::StringBuffer> >(); }
TEST_F(Misc, itoa64_Writer2_StringBufferVerify) { itoa64_Writer_StringBufferVerify<Writer2<rapidjson::StringBuffer> >(); }
TEST_F(Misc, itoa64_Writer3_StringBufferVerify) { itoa64_Writer_StringBufferVerify<Writer3<rapidjson::StringBuffer> >(); }
TEST_F(Misc, itoa64_Writer4_StringBufferVerify) { itoa64_Writer_StringBufferVerify<Writer4<rapidjson::StringBuffer> >(); }
TEST_F(Misc, itoa64_Writer_InsituStringStreamVerify) { itoa64_Writer_InsituStringStreamVerify<rapidjson::Writer<rapidjson::InsituStringStream> >(); }
TEST_F(Misc, itoa64_Writer1_InsituStringStreamVerify) { itoa64_Writer_InsituStringStreamVerify<Writer1<rapidjson::InsituStringStream> >(); }
TEST_F(Misc, itoa64_Writer2_InsituStringStreamVerify) { itoa64_Writer_InsituStringStreamVerify<Writer2<rapidjson::InsituStringStream> >(); }
TEST_F(Misc, itoa64_Writer3_InsituStringStreamVerify) { itoa64_Writer_InsituStringStreamVerify<Writer3<rapidjson::InsituStringStream> >(); }
TEST_F(Misc, itoa64_Writer4_InsituStringStreamVerify) { itoa64_Writer_InsituStringStreamVerify<Writer4<rapidjson::InsituStringStream> >(); }
TEST_F(Misc, itoa64_Writer_StringBuffer) { itoa64_Writer_StringBuffer<rapidjson::Writer<rapidjson::StringBuffer> >(); }
TEST_F(Misc, itoa64_Writer1_StringBuffer) { itoa64_Writer_StringBuffer<Writer1<rapidjson::StringBuffer> >(); }
TEST_F(Misc, itoa64_Writer2_StringBuffer) { itoa64_Writer_StringBuffer<Writer2<rapidjson::StringBuffer> >(); }
TEST_F(Misc, itoa64_Writer3_StringBuffer) { itoa64_Writer_StringBuffer<Writer3<rapidjson::StringBuffer> >(); }
TEST_F(Misc, itoa64_Writer4_StringBuffer) { itoa64_Writer_StringBuffer<Writer4<rapidjson::StringBuffer> >(); }
TEST_F(Misc, itoa64_Writer_InsituStringStream) { itoa64_Writer_InsituStringStream<rapidjson::Writer<rapidjson::InsituStringStream> >(); }
TEST_F(Misc, itoa64_Writer1_InsituStringStream) { itoa64_Writer_InsituStringStream<Writer1<rapidjson::InsituStringStream> >(); }
TEST_F(Misc, itoa64_Writer2_InsituStringStream) { itoa64_Writer_InsituStringStream<Writer2<rapidjson::InsituStringStream> >(); }
TEST_F(Misc, itoa64_Writer3_InsituStringStream) { itoa64_Writer_InsituStringStream<Writer3<rapidjson::InsituStringStream> >(); }
......
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