15 #ifndef RAPIDJSON_WRITER_H_
16 #define RAPIDJSON_WRITER_H_
27 #if defined(RAPIDJSON_SIMD) && defined(_MSC_VER)
29 #pragma intrinsic(_BitScanForward)
31 #ifdef RAPIDJSON_SSE42
32 #include <nmmintrin.h>
33 #elif defined(RAPIDJSON_SSE2)
34 #include <emmintrin.h>
35 #elif defined(RAPIDJSON_NEON)
41 RAPIDJSON_DIAG_OFF(padded)
42 RAPIDJSON_DIAG_OFF(unreachable-code)
43 RAPIDJSON_DIAG_OFF(c++98-compat)
44 #elif defined(_MSC_VER)
46 RAPIDJSON_DIAG_OFF(4127)
60 #ifndef RAPIDJSON_WRITE_DEFAULT_FLAGS
61 #define RAPIDJSON_WRITE_DEFAULT_FLAGS kWriteNoFlags
88 template<
typename OutputStream,
typename SourceEncoding = UTF8<>,
typename TargetEncoding = UTF8<>,
typename StackAllocator = CrtAllocator,
unsigned writeFlags = kWriteDefaultFlags>
91 typedef typename SourceEncoding::Ch
Ch;
108 #if RAPIDJSON_HAS_CXX11_RVALUE_REFS
209 #if RAPIDJSON_HAS_STDSTRING
210 bool String(
const std::basic_string<Ch>& str) {
223 #if RAPIDJSON_HAS_STDSTRING
224 bool Key(
const std::basic_string<Ch>& str)
316 for (
const char* p = buffer; p != end; ++p)
317 PutUnsafe(*
os_,
static_cast<typename OutputStream::Ch
>(*p));
325 for (
const char* p = buffer; p != end; ++p)
326 PutUnsafe(*
os_,
static_cast<typename OutputStream::Ch
>(*p));
334 for (
const char* p = buffer; p != end; ++p)
335 PutUnsafe(*
os_,
static_cast<typename OutputStream::Ch
>(*p));
343 for (
char* p = buffer; p != end; ++p)
344 PutUnsafe(*
os_,
static_cast<typename OutputStream::Ch
>(*p));
371 for (
char* p = buffer; p != end; ++p)
372 PutUnsafe(*
os_,
static_cast<typename OutputStream::Ch
>(*p));
377 static const typename OutputStream::Ch hexDigits[16] = {
'0',
'1',
'2',
'3',
'4',
'5',
'6',
'7',
'8',
'9',
'A',
'B',
'C',
'D',
'E',
'F' };
378 static const char escape[256] = {
379 #define Z16 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0
381 'u',
'u',
'u',
'u',
'u',
'u',
'u',
'u',
'b',
't',
'n',
'u',
'f',
'r',
'u',
'u',
382 'u',
'u',
'u',
'u',
'u',
'u',
'u',
'u',
'u',
'u',
'u',
'u',
'u',
'u',
'u',
'u',
383 0, 0,
'"', 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
385 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
'\\', 0, 0, 0,
390 if (TargetEncoding::supportUnicode)
399 if (!TargetEncoding::supportUnicode &&
static_cast<unsigned>(c) >= 0x80) {
406 if (codepoint <= 0xD7FF || (codepoint >= 0xE000 && codepoint <= 0xFFFF)) {
415 unsigned s = codepoint - 0x010000;
416 unsigned lead = (s >> 10) + 0xD800;
417 unsigned trail = (s & 0x3FF) + 0xDC00;
430 else if ((
sizeof(
Ch) == 1 ||
static_cast<unsigned>(c) < 256) &&
RAPIDJSON_UNLIKELY(escape[
static_cast<unsigned char>(c)])) {
433 PutUnsafe(*
os_,
static_cast<typename OutputStream::Ch
>(escape[
static_cast<unsigned char>(c)]));
434 if (escape[
static_cast<unsigned char>(c)] ==
'u') {
437 PutUnsafe(*
os_, hexDigits[
static_cast<unsigned char>(c) >> 4]);
438 PutUnsafe(*
os_, hexDigits[
static_cast<unsigned char>(c) & 0xF]);
515 char *buffer = os_->Push(11);
517 os_->Pop(
static_cast<size_t>(11 - (end - buffer)));
523 char *buffer = os_->Push(10);
525 os_->Pop(
static_cast<size_t>(10 - (end - buffer)));
531 char *buffer = os_->Push(21);
533 os_->Pop(
static_cast<size_t>(21 - (end - buffer)));
539 char *buffer = os_->Push(20);
541 os_->Pop(
static_cast<size_t>(20 - (end - buffer)));
567 char *buffer = os_->Push(25);
569 os_->Pop(
static_cast<size_t>(25 - (end - buffer)));
573 #if defined(RAPIDJSON_SSE2) || defined(RAPIDJSON_SSE42)
582 const char* p = is.
src_;
583 const char* end = is.
head_ + length;
584 const char* nextAligned =
reinterpret_cast<const char*
>((
reinterpret_cast<size_t>(p) + 15) &
static_cast<size_t>(~15));
585 const char* endAligned =
reinterpret_cast<const char*
>(
reinterpret_cast<size_t>(end) &
static_cast<size_t>(~15));
586 if (nextAligned > end)
589 while (p != nextAligned)
590 if (*p < 0x20 || *p ==
'\"' || *p ==
'\\') {
595 os_->PutUnsafe(*p++);
598 static const char dquote[16] = {
'\"',
'\"',
'\"',
'\"',
'\"',
'\"',
'\"',
'\"',
'\"',
'\"',
'\"',
'\"',
'\"',
'\"',
'\"',
'\"' };
599 static const char bslash[16] = {
'\\',
'\\',
'\\',
'\\',
'\\',
'\\',
'\\',
'\\',
'\\',
'\\',
'\\',
'\\',
'\\',
'\\',
'\\',
'\\' };
600 static const char space[16] = { 0x1F, 0x1F, 0x1F, 0x1F, 0x1F, 0x1F, 0x1F, 0x1F, 0x1F, 0x1F, 0x1F, 0x1F, 0x1F, 0x1F, 0x1F, 0x1F };
601 const __m128i dq = _mm_loadu_si128(
reinterpret_cast<const __m128i *
>(&dquote[0]));
602 const __m128i bs = _mm_loadu_si128(
reinterpret_cast<const __m128i *
>(&bslash[0]));
603 const __m128i sp = _mm_loadu_si128(
reinterpret_cast<const __m128i *
>(&space[0]));
605 for (; p != endAligned; p += 16) {
606 const __m128i s = _mm_load_si128(
reinterpret_cast<const __m128i *
>(p));
607 const __m128i
t1 = _mm_cmpeq_epi8(s, dq);
608 const __m128i
t2 = _mm_cmpeq_epi8(s, bs);
609 const __m128i
t3 = _mm_cmpeq_epi8(_mm_max_epu8(s, sp), sp);
610 const __m128i x = _mm_or_si128(_mm_or_si128(
t1,
t2),
t3);
611 unsigned short r =
static_cast<unsigned short>(_mm_movemask_epi8(x));
615 unsigned long offset;
616 _BitScanForward(&offset, r);
619 len =
static_cast<SizeType>(__builtin_ffs(r) - 1);
621 char* q =
reinterpret_cast<char*
>(os_->PushUnsafe(len));
622 for (
size_t i = 0; i < len; i++)
628 _mm_storeu_si128(
reinterpret_cast<__m128i *
>(os_->PushUnsafe(16)), s);
634 #elif defined(RAPIDJSON_NEON)
643 const char* p = is.
src_;
644 const char* end = is.
head_ + length;
645 const char* nextAligned =
reinterpret_cast<const char*
>((
reinterpret_cast<size_t>(p) + 15) &
static_cast<size_t>(~15));
646 const char* endAligned =
reinterpret_cast<const char*
>(
reinterpret_cast<size_t>(end) &
static_cast<size_t>(~15));
647 if (nextAligned > end)
650 while (p != nextAligned)
651 if (*p < 0x20 || *p ==
'\"' || *p ==
'\\') {
656 os_->PutUnsafe(*p++);
659 const uint8x16_t s0 = vmovq_n_u8(
'"');
660 const uint8x16_t s1 = vmovq_n_u8(
'\\');
661 const uint8x16_t s2 = vmovq_n_u8(
'\b');
662 const uint8x16_t s3 = vmovq_n_u8(32);
664 for (; p != endAligned; p += 16) {
665 const uint8x16_t s = vld1q_u8(
reinterpret_cast<const uint8_t *
>(p));
666 uint8x16_t x = vceqq_u8(s, s0);
667 x = vorrq_u8(x, vceqq_u8(s, s1));
668 x = vorrq_u8(x, vceqq_u8(s, s2));
669 x = vorrq_u8(x, vcltq_u8(s, s3));
672 uint64_t low = vgetq_lane_u64(
reinterpret_cast<uint64x2_t
>(x), 0);
673 uint64_t high = vgetq_lane_u64(
reinterpret_cast<uint64x2_t
>(x), 1);
676 bool escaped =
false;
679 unsigned lz = (unsigned)__builtin_clzll(high);
684 unsigned lz = (unsigned)__builtin_clzll(low);
689 char* q =
reinterpret_cast<char*
>(os_->PushUnsafe(len));
690 for (
size_t i = 0; i < len; i++)
696 vst1q_u8(
reinterpret_cast<uint8_t *
>(os_->PushUnsafe(16)), s);
706 #if defined(_MSC_VER) || defined(__clang__)
bool EndObject(SizeType memberCount=0)
bool IsComplete() const
Checks whether the output is a complete JSON.
bool Key(const Ch *str, SizeType length, bool copy=false)
bool Double(double d)
Writes the given double value to the stream.
bool WriteUint(unsigned u)
bool String(const Ch *const &str)
Simpler but slower overload.
bool Uint64(uint64_t u64)
void SetMaxDecimalPlaces(int maxDecimalPlaces)
Sets the maximum number of decimal places for double output.
Writer(StackAllocator *allocator=0, size_t levelDepth=kDefaultLevelDepth)
bool String(const Ch *str, SizeType length, bool copy=false)
void Reset(OutputStream &os)
Reset the writer with a new stream.
void Flush()
Flush the output stream.
bool WriteRawValue(const Ch *json, size_t length)
bool ScanWriteUnescapedString(GenericStringStream< SourceEncoding > &is, size_t length)
static const size_t kDefaultLevelDepth
internal::Stack< StackAllocator > level_stack_
bool WriteInt64(int64_t i64)
static const int kDefaultMaxDecimalPlaces
bool Key(const Ch *const &str)
bool EndArray(SizeType elementCount=0)
bool WriteString(const Ch *str, SizeType length)
bool WriteUint64(uint64_t u64)
int GetMaxDecimalPlaces() const
bool RawNumber(const Ch *str, SizeType length, bool copy=false)
bool RawValue(const Ch *json, size_t length, Type type)
Write a raw JSON value.
bool WriteDouble(double d)
Writer(OutputStream &os, StackAllocator *stackAllocator=0, size_t levelDepth=kDefaultLevelDepth)
Constructor.
void PutUnsafe(Stream &stream, typename Stream::Ch c)
Write character to a stream, presuming buffer is reserved.
#define RAPIDJSON_LIKELY(x)
Compiler branching hint for expression with high probability to be true.
#define RAPIDJSON_UNLIKELY(x)
Compiler branching hint for expression with low probability to be true.
#define RAPIDJSON_ASSERT(x)
Assertion.
#define RAPIDJSON_NAMESPACE_BEGIN
provide custom rapidjson namespace (opening expression)
#define RAPIDJSON_NAMESPACE_END
provide custom rapidjson namespace (closing expression)
Level
Represents enumeration for severity level used to determine level of logging.
char * dtoa(double value, char *buffer, int maxDecimalPlaces=324)
char * i64toa(int64_t value, char *buffer)
char * i32toa(int32_t value, char *buffer)
char * u32toa(uint32_t value, char *buffer)
SizeType StrLen(const Ch *s)
Custom strlen() which works on different character types.
char * u64toa(uint64_t value, char *buffer)
void copy(key &AA, const key &A)
const T & move(const T &t)
RAPIDJSON_NAMESPACE_BEGIN typedef unsigned SizeType
Size type (for string lengths, array sizes, etc.)
unsigned __int64 uint64_t
void PutReserve(Stream &stream, size_t count)
Reserve n characters for writing to a stream.
const Ch * head_
Original head of the string.
const Ch * src_
Current read position.
Information for each nested level.
size_t valueCount
number of values in this level
bool inArray
true if in array, otherwise in object
#define RAPIDJSON_WRITE_DEFAULT_FLAGS
WriteFlag
Combination of writeFlags.
@ kWriteNanAndInfFlag
Allow writing of Infinity, -Infinity and NaN.
@ kWriteValidateEncodingFlag
Validate encoding of JSON strings.
@ kWriteDefaultFlags
Default write flags. Can be customized by defining RAPIDJSON_WRITE_DEFAULT_FLAGS.
@ kWriteNoFlags
No flags are set.