From b5e27af4da354ef0128dcb434a18e6b67734524a Mon Sep 17 00:00:00 2001 From: Daniel Lemire Date: Mon, 14 Jul 2025 15:55:00 -0400 Subject: [PATCH] release candidate 4.0.0 --- CMakeLists.txt | 6 +- Doxyfile | 2 +- include/simdjson/arm64/implementation.h | 1 - include/simdjson/fallback/implementation.h | 1 - include/simdjson/haswell/implementation.h | 1 - include/simdjson/icelake/implementation.h | 1 - include/simdjson/implementation.h | 17 - include/simdjson/lasx/implementation.h | 1 - include/simdjson/lsx/implementation.h | 1 - include/simdjson/ppc64/implementation.h | 1 - include/simdjson/simdjson_version.h | 6 +- include/simdjson/westmere/implementation.h | 1 - singleheader/simdjson.cpp | 493 +- singleheader/simdjson.h | 11695 ++++++++++++++++++- singleheader/singleheader.zip | Bin 8071720 -> 8041220 bytes src/arm64.cpp | 4 - src/fallback.cpp | 4 - src/generic/stage2/stringparsing.h | 98 - src/haswell.cpp | 4 - src/icelake.cpp | 4 - src/implementation.cpp | 9 - src/lasx.cpp | 4 - src/lsx.cpp | 4 - src/ppc64.cpp | 4 - src/westmere.cpp | 5 - 25 files changed, 12131 insertions(+), 236 deletions(-) diff --git a/CMakeLists.txt b/CMakeLists.txt index af1e25d97..e720aa2b3 100644 --- a/CMakeLists.txt +++ b/CMakeLists.txt @@ -5,7 +5,7 @@ cmake_policy(VERSION 3.5) # For doctest project( simdjson # The version number is modified by tools/release.py - VERSION 3.13.0 + VERSION 4.0.0 DESCRIPTION "Parsing gigabytes of JSON per second" HOMEPAGE_URL "https://simdjson.org/" LANGUAGES CXX C @@ -22,8 +22,8 @@ string( # ---- Options, variables ---- # These version numbers are modified by tools/release.py -set(SIMDJSON_LIB_VERSION "26.0.0" CACHE STRING "simdjson library version") -set(SIMDJSON_LIB_SOVERSION "26" CACHE STRING "simdjson library soversion") +set(SIMDJSON_LIB_VERSION "28.0.0" CACHE STRING "simdjson library version") +set(SIMDJSON_LIB_SOVERSION "28" CACHE STRING "simdjson library soversion") option(SIMDJSON_BUILD_STATIC_LIB "Build simdjson_static library along with simdjson (only makes sense if BUILD_SHARED_LIBS=ON)" OFF) if(SIMDJSON_BUILD_STATIC_LIB AND NOT BUILD_SHARED_LIBS) diff --git a/Doxyfile b/Doxyfile index e76055f67..676ca1015 100644 --- a/Doxyfile +++ b/Doxyfile @@ -38,7 +38,7 @@ PROJECT_NAME = simdjson # could be handy for archiving the generated documentation or if some version # control system is used. -PROJECT_NUMBER = "3.13.0" +PROJECT_NUMBER = "4.0.0" # Using the PROJECT_BRIEF tag one can provide an optional one line description # for a project that appears at the top of each page and should give viewer a diff --git a/include/simdjson/arm64/implementation.h b/include/simdjson/arm64/implementation.h index 00c5bf566..c9b7dd753 100644 --- a/include/simdjson/arm64/implementation.h +++ b/include/simdjson/arm64/implementation.h @@ -23,7 +23,6 @@ public: ) const noexcept final; simdjson_warn_unused error_code minify(const uint8_t *buf, size_t len, uint8_t *dst, size_t &dst_len) const noexcept final; simdjson_warn_unused bool validate_utf8(const char *buf, size_t len) const noexcept final; - simdjson_warn_unused size_t write_string_escaped(const std::string_view input, char *out) const noexcept final; }; } // namespace arm64 diff --git a/include/simdjson/fallback/implementation.h b/include/simdjson/fallback/implementation.h index e607253a0..523f06d2e 100644 --- a/include/simdjson/fallback/implementation.h +++ b/include/simdjson/fallback/implementation.h @@ -26,7 +26,6 @@ public: ) const noexcept final; simdjson_warn_unused error_code minify(const uint8_t *buf, size_t len, uint8_t *dst, size_t &dst_len) const noexcept final; simdjson_warn_unused bool validate_utf8(const char *buf, size_t len) const noexcept final; - simdjson_warn_unused size_t write_string_escaped(const std::string_view input, char *out) const noexcept final; }; } // namespace fallback diff --git a/include/simdjson/haswell/implementation.h b/include/simdjson/haswell/implementation.h index 984d9f7ed..6861e4298 100644 --- a/include/simdjson/haswell/implementation.h +++ b/include/simdjson/haswell/implementation.h @@ -28,7 +28,6 @@ public: ) const noexcept final; simdjson_warn_unused error_code minify(const uint8_t *buf, size_t len, uint8_t *dst, size_t &dst_len) const noexcept final; simdjson_warn_unused bool validate_utf8(const char *buf, size_t len) const noexcept final; - simdjson_warn_unused size_t write_string_escaped(const std::string_view input, char *out) const noexcept final; }; } // namespace haswell diff --git a/include/simdjson/icelake/implementation.h b/include/simdjson/icelake/implementation.h index d197b4309..940c5f992 100644 --- a/include/simdjson/icelake/implementation.h +++ b/include/simdjson/icelake/implementation.h @@ -28,7 +28,6 @@ public: ) const noexcept final; simdjson_warn_unused error_code minify(const uint8_t *buf, size_t len, uint8_t *dst, size_t &dst_len) const noexcept final; simdjson_warn_unused bool validate_utf8(const char *buf, size_t len) const noexcept final; - simdjson_warn_unused size_t write_string_escaped(const std::string_view input, char *out) const noexcept final; }; } // namespace icelake diff --git a/include/simdjson/implementation.h b/include/simdjson/implementation.h index 366d29119..19cb37162 100644 --- a/include/simdjson/implementation.h +++ b/include/simdjson/implementation.h @@ -26,15 +26,6 @@ simdjson_inline simdjson_warn_unused bool validate_utf8(const std::string_view s return validate_utf8(sv.data(), sv.size()); } -/** - * Write the string to the output buffer while escaping double-quote, backlash and ascii control characters. - * - * @param input the string_view to escape - * @param out output buffer (for escaped string): to be safe, it should have 6 * input.size() allocated bytes. - * @return number of bytes written - */ -simdjson_warn_unused size_t write_string_escaped(const std::string_view input, char *out) noexcept; - /** * Validate the UTF-8 string. * @@ -136,14 +127,6 @@ public: */ simdjson_warn_unused virtual bool validate_utf8(const char *buf, size_t len) const noexcept = 0; - /** - * Write the string to the output buffer while escaping double-quote, backlash and ascii control characters. - * - * @param input the string_view to escape - * @param out output buffer (for escaped string): to be safe, it should have 6 * input.size() allocated bytes. - * @return number of bytes written - */ - simdjson_warn_unused virtual size_t write_string_escaped(const std::string_view input, char *out) const noexcept = 0; protected: /** @private Construct an implementation with the given name and description. For subclasses. */ simdjson_inline implementation( diff --git a/include/simdjson/lasx/implementation.h b/include/simdjson/lasx/implementation.h index d64ec3e49..8aafbb8b8 100644 --- a/include/simdjson/lasx/implementation.h +++ b/include/simdjson/lasx/implementation.h @@ -23,7 +23,6 @@ public: ) const noexcept final; simdjson_warn_unused error_code minify(const uint8_t *buf, size_t len, uint8_t *dst, size_t &dst_len) const noexcept final; simdjson_warn_unused bool validate_utf8(const char *buf, size_t len) const noexcept final; - simdjson_warn_unused size_t write_string_escaped(const std::string_view input, char *out) const noexcept final; }; } // namespace lasx diff --git a/include/simdjson/lsx/implementation.h b/include/simdjson/lsx/implementation.h index a17fb5532..14468777d 100644 --- a/include/simdjson/lsx/implementation.h +++ b/include/simdjson/lsx/implementation.h @@ -23,7 +23,6 @@ public: ) const noexcept final; simdjson_warn_unused error_code minify(const uint8_t *buf, size_t len, uint8_t *dst, size_t &dst_len) const noexcept final; simdjson_warn_unused bool validate_utf8(const char *buf, size_t len) const noexcept final; - simdjson_warn_unused size_t write_string_escaped(const std::string_view input, char *out) const noexcept final; }; } // namespace lsx diff --git a/include/simdjson/ppc64/implementation.h b/include/simdjson/ppc64/implementation.h index b3445af26..33436f534 100644 --- a/include/simdjson/ppc64/implementation.h +++ b/include/simdjson/ppc64/implementation.h @@ -32,7 +32,6 @@ public: size_t &dst_len) const noexcept final; simdjson_warn_unused bool validate_utf8(const char *buf, size_t len) const noexcept final; - simdjson_warn_unused size_t write_string_escaped(const std::string_view input, char *out) const noexcept final; }; } // namespace ppc64 diff --git a/include/simdjson/simdjson_version.h b/include/simdjson/simdjson_version.h index f06aa81f9..add79802f 100644 --- a/include/simdjson/simdjson_version.h +++ b/include/simdjson/simdjson_version.h @@ -4,18 +4,18 @@ #define SIMDJSON_SIMDJSON_VERSION_H /** The version of simdjson being used (major.minor.revision) */ -#define SIMDJSON_VERSION "3.13.0" +#define SIMDJSON_VERSION "4.0.0" namespace simdjson { enum { /** * The major version (MAJOR.minor.revision) of simdjson being used. */ - SIMDJSON_VERSION_MAJOR = 3, + SIMDJSON_VERSION_MAJOR = 4, /** * The minor version (major.MINOR.revision) of simdjson being used. */ - SIMDJSON_VERSION_MINOR = 13, + SIMDJSON_VERSION_MINOR = 0, /** * The revision (major.minor.REVISION) of simdjson being used. */ diff --git a/include/simdjson/westmere/implementation.h b/include/simdjson/westmere/implementation.h index c7e655b5e..37392be2a 100644 --- a/include/simdjson/westmere/implementation.h +++ b/include/simdjson/westmere/implementation.h @@ -24,7 +24,6 @@ public: ) const noexcept final; simdjson_warn_unused error_code minify(const uint8_t *buf, size_t len, uint8_t *dst, size_t &dst_len) const noexcept final; simdjson_warn_unused bool validate_utf8(const char *buf, size_t len) const noexcept final; - simdjson_warn_unused size_t write_string_escaped(const std::string_view input, char *out) const noexcept final; }; } // namespace westmere diff --git a/singleheader/simdjson.cpp b/singleheader/simdjson.cpp index 97ec9ee7a..7724757b3 100644 --- a/singleheader/simdjson.cpp +++ b/singleheader/simdjson.cpp @@ -1,4 +1,4 @@ -/* auto-generated on 2025-06-24 15:13:44 -0400. Do not edit! */ +/* auto-generated on 2025-07-14 15:43:52 -0400. Do not edit! */ /* including simdjson.cpp: */ /* begin file simdjson.cpp */ #define SIMDJSON_SRC_SIMDJSON_CPP @@ -77,12 +77,31 @@ #endif #endif +#ifndef SIMDJSON_CONSTEXPR_LAMBDA +#if SIMDJSON_CPLUSPLUS17 +#define SIMDJSON_CONSTEXPR_LAMBDA constexpr +#else +#define SIMDJSON_CONSTEXPR_LAMBDA +#endif +#endif + + + #ifdef __has_include #if __has_include() #include #endif #endif +// The current specification is unclear on how we detect +// static reflection, both __cpp_lib_reflection and +// __cpp_impl_reflection are proposed in the draft specification. +// For now, we disable static reflect by default. It must be +// specified at compiler time. +#ifndef SIMDJSON_STATIC_REFLECTION +#define SIMDJSON_STATIC_REFLECTION 0 // disabled by default. +#endif + #if defined(__apple_build_version__) #if __apple_build_version__ < 14000000 #define SIMDJSON_CONCEPT_DISABLED 1 // apple-clang/13 doesn't support std::convertible_to @@ -101,6 +120,14 @@ #define SIMDJSON_SUPPORTS_DESERIALIZATION 0 #endif // defined(__cpp_concepts) && !defined(SIMDJSON_CONCEPT_DISABLED) +#if !defined(SIMDJSON_CONSTEVAL) +#if defined(__cpp_consteval) && __cpp_consteval >= 201811L +#define SIMDJSON_CONSTEVAL 1 +#else +#define SIMDJSON_CONSTEVAL 0 +#endif // defined(__cpp_consteval) && __cpp_consteval >= 201811L +#endif // !defined(SIMDJSON_CONSTEVAL) + #endif // SIMDJSON_COMPILER_CHECK_H /* end file simdjson/compiler_check.h */ /* including simdjson/portability.h: #include "simdjson/portability.h" */ @@ -298,6 +325,7 @@ using std::size_t; #if defined(NDEBUG) || defined(__OPTIMIZE__) || (defined(_MSC_VER) && !defined(_DEBUG)) // If NDEBUG is set, or __OPTIMIZE__ is set, or we are under MSVC in release mode, // then do away with asserts and use __assume. +// We still recommend that our users set NDEBUG in release mode. #if SIMDJSON_VISUAL_STUDIO #define SIMDJSON_UNREACHABLE() __assume(0) #define SIMDJSON_ASSUME(COND) __assume(COND) @@ -2342,16 +2370,25 @@ namespace std { // It could also wrongly set SIMDJSON_DEVELOPMENT_CHECKS (e.g., if the programmer // sets _DEBUG in a release build under Visual Studio, or if some compiler fails to // set the __OPTIMIZE__ macro). +// We make it so that if NDEBUG is defined, then SIMDJSON_DEVELOPMENT_CHECKS +// is not defined, irrespective of the compiler. +// We recommend that users set NDEBUG in release builds, so that +// SIMDJSON_DEVELOPMENT_CHECKS is not defined in release builds by default, +// irrespective of the compiler. #ifndef SIMDJSON_DEVELOPMENT_CHECKS #ifdef _MSC_VER // Visual Studio seems to set _DEBUG for debug builds. -#ifdef _DEBUG +// We set SIMDJSON_DEVELOPMENT_CHECKS to 1 if _DEBUG is defined +// and NDEBUG is not defined. +#if defined(_DEBUG) && !defined(NDEBUG) #define SIMDJSON_DEVELOPMENT_CHECKS 1 #endif // _DEBUG #else // _MSC_VER // All other compilers appear to set __OPTIMIZE__ to a positive integer // when the compiler is optimizing. -#ifndef __OPTIMIZE__ +// We only set SIMDJSON_DEVELOPMENT_CHECKS if both __OPTIMIZE__ +// and NDEBUG are not defined. +#if !defined(__OPTIMIZE__) && !defined(NDEBUG) #define SIMDJSON_DEVELOPMENT_CHECKS 1 #endif // __OPTIMIZE__ #endif // _MSC_VER @@ -2463,7 +2500,8 @@ enum error_code { SCALAR_DOCUMENT_AS_VALUE, ///< A scalar document is treated as a value. OUT_OF_BOUNDS, ///< Attempted to access location outside of document. TRAILING_CONTENT, ///< Unexpected trailing content in the JSON input - NUM_ERROR_CODES + OUT_OF_CAPACITY, ///< The capacity was exceeded, we cannot allocate enough memory. + NUM_ERROR_CODES ///< Placeholder for end of error code list. }; /** @@ -8209,6 +8247,12 @@ namespace { tmp = vpaddq_u8(tmp, tmp); return vgetq_lane_u16(vreinterpretq_u16_u8(tmp), 0); } + // Returns 4-bit out of each byte, alternating between the high 4 bits and low + // bits result it is 64 bit. + simdjson_inline uint64_t to_bitmask64() const { + return vget_lane_u64( + vreinterpret_u64_u8(vshrn_n_u16(vreinterpretq_u16_u8(*this), 4)), 0); + } simdjson_inline bool any() const { return vmaxvq_u32(vreinterpretq_u32_u8(*this)) != 0; } }; @@ -8285,7 +8329,7 @@ namespace { // Bit-specific operations simdjson_inline simd8 any_bits_set(simd8 bits) const { return vtstq_u8(*this, bits); } - simdjson_inline bool any_bits_set_anywhere() const { return this->max_val() != 0; } + simdjson_inline bool any_bits_set_anywhere() const { return vmaxvq_u32(vreinterpretq_u32_u8(*this)) != 0; } simdjson_inline bool any_bits_set_anywhere(simd8 bits) const { return (*this & bits).any_bits_set_anywhere(); } template simdjson_inline simd8 shr() const { return vshrq_n_u8(*this, N); } @@ -8298,7 +8342,12 @@ namespace { return lookup_table.apply_lookup_16_to(*this); } - + // Returns 4-bit out of each byte, alternating between the high 4 bits and low + // bits result it is 64 bit. + simdjson_inline uint64_t to_bitmask64() const { + return vget_lane_u64( + vreinterpret_u64_u8(vshrn_n_u16(vreinterpretq_u16_u8(*this), 4)), 0); + } // Copies to 'output" all bytes corresponding to a 0 in the mask (interpreted as a bitset). // Passing a 0 value for mask would be equivalent to writing out every byte to output. // Only the first 16 - count_ones(mask) bytes of the result are significant but 16 bytes @@ -8621,6 +8670,32 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 16; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits) / 4; } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + (is_backslash | is_quote | is_control).to_bitmask64() + }; +} + + + } // unnamed namespace } // namespace arm64 } // namespace simdjson @@ -10991,6 +11066,12 @@ namespace { tmp = vpaddq_u8(tmp, tmp); return vgetq_lane_u16(vreinterpretq_u16_u8(tmp), 0); } + // Returns 4-bit out of each byte, alternating between the high 4 bits and low + // bits result it is 64 bit. + simdjson_inline uint64_t to_bitmask64() const { + return vget_lane_u64( + vreinterpret_u64_u8(vshrn_n_u16(vreinterpretq_u16_u8(*this), 4)), 0); + } simdjson_inline bool any() const { return vmaxvq_u32(vreinterpretq_u32_u8(*this)) != 0; } }; @@ -11067,7 +11148,7 @@ namespace { // Bit-specific operations simdjson_inline simd8 any_bits_set(simd8 bits) const { return vtstq_u8(*this, bits); } - simdjson_inline bool any_bits_set_anywhere() const { return this->max_val() != 0; } + simdjson_inline bool any_bits_set_anywhere() const { return vmaxvq_u32(vreinterpretq_u32_u8(*this)) != 0; } simdjson_inline bool any_bits_set_anywhere(simd8 bits) const { return (*this & bits).any_bits_set_anywhere(); } template simdjson_inline simd8 shr() const { return vshrq_n_u8(*this, N); } @@ -11080,7 +11161,12 @@ namespace { return lookup_table.apply_lookup_16_to(*this); } - + // Returns 4-bit out of each byte, alternating between the high 4 bits and low + // bits result it is 64 bit. + simdjson_inline uint64_t to_bitmask64() const { + return vget_lane_u64( + vreinterpret_u64_u8(vshrn_n_u16(vreinterpretq_u16_u8(*this), 4)), 0); + } // Copies to 'output" all bytes corresponding to a 0 in the mask (interpreted as a bitset). // Passing a 0 value for mask would be equivalent to writing out every byte to output. // Only the first 16 - count_ones(mask) bytes of the result are significant but 16 bytes @@ -11403,6 +11489,32 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 16; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits) / 4; } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + (is_backslash | is_quote | is_control).to_bitmask64() + }; +} + + + } // unnamed namespace } // namespace arm64 } // namespace simdjson @@ -13508,6 +13620,7 @@ simdjson_warn_unused simdjson_inline error_code json_iterator::visit_primitive(V /* end file generic/stage2/json_iterator.h for arm64 */ /* including generic/stage2/stringparsing.h for arm64: #include */ /* begin file generic/stage2/stringparsing.h for arm64 */ +#include #ifndef SIMDJSON_SRC_GENERIC_STAGE2_STRINGPARSING_H /* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ @@ -13747,6 +13860,7 @@ simdjson_warn_unused simdjson_inline uint8_t *parse_wobbly_string(const uint8_t } } // namespace stringparsing + } // unnamed namespace } // namespace arm64 } // namespace simdjson @@ -14998,6 +15112,31 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 32; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits); } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + uint64_t((is_backslash | is_quote | is_control).to_bitmask()) + }; +} + } // unnamed namespace } // namespace haswell } // namespace simdjson @@ -17651,6 +17790,31 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 32; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits); } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + uint64_t((is_backslash | is_quote | is_control).to_bitmask()) + }; +} + } // unnamed namespace } // namespace haswell } // namespace simdjson @@ -19754,6 +19918,7 @@ simdjson_warn_unused simdjson_inline error_code json_iterator::visit_primitive(V /* end file generic/stage2/json_iterator.h for haswell */ /* including generic/stage2/stringparsing.h for haswell: #include */ /* begin file generic/stage2/stringparsing.h for haswell */ +#include #ifndef SIMDJSON_SRC_GENERIC_STAGE2_STRINGPARSING_H /* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ @@ -19993,6 +20158,7 @@ simdjson_warn_unused simdjson_inline uint8_t *parse_wobbly_string(const uint8_t } } // namespace stringparsing + } // unnamed namespace } // namespace haswell } // namespace simdjson @@ -20834,7 +21000,6 @@ namespace simd { friend simdjson_really_inline uint64_t operator==(const simd8 lhs, const simd8 rhs) { return _mm512_cmpeq_epi8_mask(lhs, rhs); } - static const int SIZE = sizeof(base::value); template @@ -21177,6 +21342,35 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } + + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 64; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(uint64_t(escape_bits)); } + + __mmask64 escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + __mmask64 is_quote = _mm512_cmpeq_epi8_mask(v, _mm512_set1_epi8('"')); + __mmask64 is_backslash = _mm512_cmpeq_epi8_mask(v, _mm512_set1_epi8('\\')); + __mmask64 is_control = _mm512_cmplt_epi8_mask(v, _mm512_set1_epi8(32)); + return { + (is_backslash | is_quote | is_control) + }; +} + + + + } // unnamed namespace } // namespace icelake } // namespace simdjson @@ -23483,7 +23677,6 @@ namespace simd { friend simdjson_really_inline uint64_t operator==(const simd8 lhs, const simd8 rhs) { return _mm512_cmpeq_epi8_mask(lhs, rhs); } - static const int SIZE = sizeof(base::value); template @@ -23826,6 +24019,35 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } + + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 64; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(uint64_t(escape_bits)); } + + __mmask64 escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + __mmask64 is_quote = _mm512_cmpeq_epi8_mask(v, _mm512_set1_epi8('"')); + __mmask64 is_backslash = _mm512_cmpeq_epi8_mask(v, _mm512_set1_epi8('\\')); + __mmask64 is_control = _mm512_cmplt_epi8_mask(v, _mm512_set1_epi8(32)); + return { + (is_backslash | is_quote | is_control) + }; +} + + + + } // unnamed namespace } // namespace icelake } // namespace simdjson @@ -25989,6 +26211,7 @@ simdjson_warn_unused simdjson_inline error_code json_iterator::visit_primitive(V /* end file generic/stage2/json_iterator.h for icelake */ /* including generic/stage2/stringparsing.h for icelake: #include */ /* begin file generic/stage2/stringparsing.h for icelake */ +#include #ifndef SIMDJSON_SRC_GENERIC_STAGE2_STRINGPARSING_H /* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ @@ -26228,6 +26451,7 @@ simdjson_warn_unused simdjson_inline uint8_t *parse_wobbly_string(const uint8_t } } // namespace stringparsing + } // unnamed namespace } // namespace icelake } // namespace simdjson @@ -27630,6 +27854,32 @@ backslash_and_quote::copy_and_find(const uint8_t *src, uint8_t *dst) { }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 16; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits); } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + // We store it as a 64-bit bitmask even though we only need 16 bits. + uint64_t((is_backslash | is_quote | is_control).to_bitmask()) + }; +} + } // unnamed namespace } // namespace ppc64 } // namespace simdjson @@ -30394,6 +30644,32 @@ backslash_and_quote::copy_and_find(const uint8_t *src, uint8_t *dst) { }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 16; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits); } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + // We store it as a 64-bit bitmask even though we only need 16 bits. + uint64_t((is_backslash | is_quote | is_control).to_bitmask()) + }; +} + } // unnamed namespace } // namespace ppc64 } // namespace simdjson @@ -32499,6 +32775,7 @@ simdjson_warn_unused simdjson_inline error_code json_iterator::visit_primitive(V /* end file generic/stage2/json_iterator.h for ppc64 */ /* including generic/stage2/stringparsing.h for ppc64: #include */ /* begin file generic/stage2/stringparsing.h for ppc64 */ +#include #ifndef SIMDJSON_SRC_GENERIC_STAGE2_STRINGPARSING_H /* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ @@ -32738,6 +33015,7 @@ simdjson_warn_unused simdjson_inline uint8_t *parse_wobbly_string(const uint8_t } } // namespace stringparsing + } // unnamed namespace } // namespace ppc64 } // namespace simdjson @@ -34389,6 +34667,31 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 16; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits); } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + uint64_t((is_backslash | is_quote | is_control).to_bitmask()) + }; +} + } // unnamed namespace } // namespace westmere } // namespace simdjson @@ -37468,6 +37771,31 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 16; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits); } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + uint64_t((is_backslash | is_quote | is_control).to_bitmask()) + }; +} + } // unnamed namespace } // namespace westmere } // namespace simdjson @@ -39571,6 +39899,7 @@ simdjson_warn_unused simdjson_inline error_code json_iterator::visit_primitive(V /* end file generic/stage2/json_iterator.h for westmere */ /* including generic/stage2/stringparsing.h for westmere: #include */ /* begin file generic/stage2/stringparsing.h for westmere */ +#include #ifndef SIMDJSON_SRC_GENERIC_STAGE2_STRINGPARSING_H /* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ @@ -39810,6 +40139,7 @@ simdjson_warn_unused simdjson_inline uint8_t *parse_wobbly_string(const uint8_t } } // namespace stringparsing + } // unnamed namespace } // namespace westmere } // namespace simdjson @@ -40338,7 +40668,6 @@ simdjson_warn_unused error_code dom_parser_implementation::parse(const uint8_t * if (error) { return error; } return stage2(_doc); } - } // namespace westmere } // namespace simdjson @@ -40968,6 +41297,31 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 16; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits); } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + (is_backslash | is_quote | is_control).to_bitmask() + }; +} + } // unnamed namespace } // namespace lsx } // namespace simdjson @@ -43517,6 +43871,31 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 16; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits); } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + (is_backslash | is_quote | is_control).to_bitmask() + }; +} + } // unnamed namespace } // namespace lsx } // namespace simdjson @@ -45622,6 +46001,7 @@ simdjson_warn_unused simdjson_inline error_code json_iterator::visit_primitive(V /* end file generic/stage2/json_iterator.h for lsx */ /* including generic/stage2/stringparsing.h for lsx: #include */ /* begin file generic/stage2/stringparsing.h for lsx */ +#include #ifndef SIMDJSON_SRC_GENERIC_STAGE2_STRINGPARSING_H /* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ @@ -45861,6 +46241,7 @@ simdjson_warn_unused simdjson_inline uint8_t *parse_wobbly_string(const uint8_t } } // namespace stringparsing + } // unnamed namespace } // namespace lsx } // namespace simdjson @@ -46994,6 +47375,31 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 16; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits); } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + (is_backslash | is_quote | is_control).to_bitmask() + }; +} + } // unnamed namespace } // namespace lasx } // namespace simdjson @@ -49559,6 +49965,31 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 16; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits); } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + (is_backslash | is_quote | is_control).to_bitmask() + }; +} + } // unnamed namespace } // namespace lasx } // namespace simdjson @@ -51664,6 +52095,7 @@ simdjson_warn_unused simdjson_inline error_code json_iterator::visit_primitive(V /* end file generic/stage2/json_iterator.h for lasx */ /* including generic/stage2/stringparsing.h for lasx: #include */ /* begin file generic/stage2/stringparsing.h for lasx */ +#include #ifndef SIMDJSON_SRC_GENERIC_STAGE2_STRINGPARSING_H /* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ @@ -51903,6 +52335,7 @@ simdjson_warn_unused simdjson_inline uint8_t *parse_wobbly_string(const uint8_t } } // namespace stringparsing + } // unnamed namespace } // namespace lasx } // namespace simdjson @@ -52532,6 +52965,24 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin return { src[0] }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 1; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits; } + simdjson_inline int escape_index() { return 0; } + + bool escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + dst[0] = src[0]; + return { (src[0] == '\\') || (src[0] == '"') || (src[0] < 32) }; +} + } // unnamed namespace } // namespace fallback } // namespace simdjson @@ -54686,6 +55137,24 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin return { src[0] }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 1; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits; } + simdjson_inline int escape_index() { return 0; } + + bool escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + dst[0] = src[0]; + return { (src[0] == '\\') || (src[0] == '"') || (src[0] < 32) }; +} + } // unnamed namespace } // namespace fallback } // namespace simdjson @@ -54892,6 +55361,7 @@ simdjson_inline uint32_t find_next_document_index(dom_parser_implementation &par /* end file generic/stage1/find_next_document_index.h for fallback */ /* including generic/stage2/stringparsing.h for fallback: #include */ /* begin file generic/stage2/stringparsing.h for fallback */ +#include #ifndef SIMDJSON_SRC_GENERIC_STAGE2_STRINGPARSING_H /* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ @@ -55131,6 +55601,7 @@ simdjson_warn_unused simdjson_inline uint8_t *parse_wobbly_string(const uint8_t } } // namespace stringparsing + } // unnamed namespace } // namespace fallback } // namespace simdjson diff --git a/singleheader/simdjson.h b/singleheader/simdjson.h index cc3bf0e1f..d1dbaad83 100644 --- a/singleheader/simdjson.h +++ b/singleheader/simdjson.h @@ -1,4 +1,4 @@ -/* auto-generated on 2025-06-24 15:13:44 -0400. Do not edit! */ +/* auto-generated on 2025-07-14 15:43:52 -0400. Do not edit! */ /* including simdjson.h: */ /* begin file simdjson.h */ #ifndef SIMDJSON_H @@ -97,12 +97,31 @@ #endif #endif +#ifndef SIMDJSON_CONSTEXPR_LAMBDA +#if SIMDJSON_CPLUSPLUS17 +#define SIMDJSON_CONSTEXPR_LAMBDA constexpr +#else +#define SIMDJSON_CONSTEXPR_LAMBDA +#endif +#endif + + + #ifdef __has_include #if __has_include() #include #endif #endif +// The current specification is unclear on how we detect +// static reflection, both __cpp_lib_reflection and +// __cpp_impl_reflection are proposed in the draft specification. +// For now, we disable static reflect by default. It must be +// specified at compiler time. +#ifndef SIMDJSON_STATIC_REFLECTION +#define SIMDJSON_STATIC_REFLECTION 0 // disabled by default. +#endif + #if defined(__apple_build_version__) #if __apple_build_version__ < 14000000 #define SIMDJSON_CONCEPT_DISABLED 1 // apple-clang/13 doesn't support std::convertible_to @@ -121,6 +140,14 @@ #define SIMDJSON_SUPPORTS_DESERIALIZATION 0 #endif // defined(__cpp_concepts) && !defined(SIMDJSON_CONCEPT_DISABLED) +#if !defined(SIMDJSON_CONSTEVAL) +#if defined(__cpp_consteval) && __cpp_consteval >= 201811L +#define SIMDJSON_CONSTEVAL 1 +#else +#define SIMDJSON_CONSTEVAL 0 +#endif // defined(__cpp_consteval) && __cpp_consteval >= 201811L +#endif // !defined(SIMDJSON_CONSTEVAL) + #endif // SIMDJSON_COMPILER_CHECK_H /* end file simdjson/compiler_check.h */ /* including simdjson/portability.h: #include "simdjson/portability.h" */ @@ -318,6 +345,7 @@ using std::size_t; #if defined(NDEBUG) || defined(__OPTIMIZE__) || (defined(_MSC_VER) && !defined(_DEBUG)) // If NDEBUG is set, or __OPTIMIZE__ is set, or we are under MSVC in release mode, // then do away with asserts and use __assume. +// We still recommend that our users set NDEBUG in release mode. #if SIMDJSON_VISUAL_STUDIO #define SIMDJSON_UNREACHABLE() __assume(0) #define SIMDJSON_ASSUME(COND) __assume(COND) @@ -2362,16 +2390,25 @@ namespace std { // It could also wrongly set SIMDJSON_DEVELOPMENT_CHECKS (e.g., if the programmer // sets _DEBUG in a release build under Visual Studio, or if some compiler fails to // set the __OPTIMIZE__ macro). +// We make it so that if NDEBUG is defined, then SIMDJSON_DEVELOPMENT_CHECKS +// is not defined, irrespective of the compiler. +// We recommend that users set NDEBUG in release builds, so that +// SIMDJSON_DEVELOPMENT_CHECKS is not defined in release builds by default, +// irrespective of the compiler. #ifndef SIMDJSON_DEVELOPMENT_CHECKS #ifdef _MSC_VER // Visual Studio seems to set _DEBUG for debug builds. -#ifdef _DEBUG +// We set SIMDJSON_DEVELOPMENT_CHECKS to 1 if _DEBUG is defined +// and NDEBUG is not defined. +#if defined(_DEBUG) && !defined(NDEBUG) #define SIMDJSON_DEVELOPMENT_CHECKS 1 #endif // _DEBUG #else // _MSC_VER // All other compilers appear to set __OPTIMIZE__ to a positive integer // when the compiler is optimizing. -#ifndef __OPTIMIZE__ +// We only set SIMDJSON_DEVELOPMENT_CHECKS if both __OPTIMIZE__ +// and NDEBUG are not defined. +#if !defined(__OPTIMIZE__) && !defined(NDEBUG) #define SIMDJSON_DEVELOPMENT_CHECKS 1 #endif // __OPTIMIZE__ #endif // _MSC_VER @@ -2440,18 +2477,18 @@ namespace std { #define SIMDJSON_SIMDJSON_VERSION_H /** The version of simdjson being used (major.minor.revision) */ -#define SIMDJSON_VERSION "3.13.0" +#define SIMDJSON_VERSION "4.0.0" namespace simdjson { enum { /** * The major version (MAJOR.minor.revision) of simdjson being used. */ - SIMDJSON_VERSION_MAJOR = 3, + SIMDJSON_VERSION_MAJOR = 4, /** * The minor version (major.MINOR.revision) of simdjson being used. */ - SIMDJSON_VERSION_MINOR = 13, + SIMDJSON_VERSION_MINOR = 0, /** * The revision (major.minor.REVISION) of simdjson being used. */ @@ -2526,7 +2563,8 @@ enum error_code { SCALAR_DOCUMENT_AS_VALUE, ///< A scalar document is treated as a value. OUT_OF_BOUNDS, ///< Attempted to access location outside of document. TRAILING_CONTENT, ///< Unexpected trailing content in the JSON input - NUM_ERROR_CODES + OUT_OF_CAPACITY, ///< The capacity was exceeded, we cannot allocate enough memory. + NUM_ERROR_CODES ///< Placeholder for end of error code list. }; /** @@ -10623,6 +10661,12 @@ namespace { tmp = vpaddq_u8(tmp, tmp); return vgetq_lane_u16(vreinterpretq_u16_u8(tmp), 0); } + // Returns 4-bit out of each byte, alternating between the high 4 bits and low + // bits result it is 64 bit. + simdjson_inline uint64_t to_bitmask64() const { + return vget_lane_u64( + vreinterpret_u64_u8(vshrn_n_u16(vreinterpretq_u16_u8(*this), 4)), 0); + } simdjson_inline bool any() const { return vmaxvq_u32(vreinterpretq_u32_u8(*this)) != 0; } }; @@ -10699,7 +10743,7 @@ namespace { // Bit-specific operations simdjson_inline simd8 any_bits_set(simd8 bits) const { return vtstq_u8(*this, bits); } - simdjson_inline bool any_bits_set_anywhere() const { return this->max_val() != 0; } + simdjson_inline bool any_bits_set_anywhere() const { return vmaxvq_u32(vreinterpretq_u32_u8(*this)) != 0; } simdjson_inline bool any_bits_set_anywhere(simd8 bits) const { return (*this & bits).any_bits_set_anywhere(); } template simdjson_inline simd8 shr() const { return vshrq_n_u8(*this, N); } @@ -10712,7 +10756,12 @@ namespace { return lookup_table.apply_lookup_16_to(*this); } - + // Returns 4-bit out of each byte, alternating between the high 4 bits and low + // bits result it is 64 bit. + simdjson_inline uint64_t to_bitmask64() const { + return vget_lane_u64( + vreinterpret_u64_u8(vshrn_n_u16(vreinterpretq_u16_u8(*this), 4)), 0); + } // Copies to 'output" all bytes corresponding to a 0 in the mask (interpreted as a bitset). // Passing a 0 value for mask would be equivalent to writing out every byte to output. // Only the first 16 - count_ones(mask) bytes of the result are significant but 16 bytes @@ -11035,6 +11084,32 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 16; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits) / 4; } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + (is_backslash | is_quote | is_control).to_bitmask64() + }; +} + + + } // unnamed namespace } // namespace arm64 } // namespace simdjson @@ -13071,6 +13146,24 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin return { src[0] }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 1; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits; } + simdjson_inline int escape_index() { return 0; } + + bool escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + dst[0] = src[0]; + return { (src[0] == '\\') || (src[0] == '"') || (src[0] < 32) }; +} + } // unnamed namespace } // namespace fallback } // namespace simdjson @@ -15775,6 +15868,31 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 32; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits); } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + uint64_t((is_backslash | is_quote | is_control).to_bitmask()) + }; +} + } // unnamed namespace } // namespace haswell } // namespace simdjson @@ -17984,7 +18102,6 @@ namespace simd { friend simdjson_really_inline uint64_t operator==(const simd8 lhs, const simd8 rhs) { return _mm512_cmpeq_epi8_mask(lhs, rhs); } - static const int SIZE = sizeof(base::value); template @@ -18327,6 +18444,35 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } + + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 64; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(uint64_t(escape_bits)); } + + __mmask64 escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + __mmask64 is_quote = _mm512_cmpeq_epi8_mask(v, _mm512_set1_epi8('"')); + __mmask64 is_backslash = _mm512_cmpeq_epi8_mask(v, _mm512_set1_epi8('\\')); + __mmask64 is_control = _mm512_cmplt_epi8_mask(v, _mm512_set1_epi8(32)); + return { + (is_backslash | is_quote | is_control) + }; +} + + + + } // unnamed namespace } // namespace icelake } // namespace simdjson @@ -21114,6 +21260,32 @@ backslash_and_quote::copy_and_find(const uint8_t *src, uint8_t *dst) { }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 16; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits); } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + // We store it as a 64-bit bitmask even though we only need 16 bits. + uint64_t((is_backslash | is_quote | is_control).to_bitmask()) + }; +} + } // unnamed namespace } // namespace ppc64 } // namespace simdjson @@ -24162,6 +24334,31 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 16; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits); } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + uint64_t((is_backslash | is_quote | is_control).to_bitmask()) + }; +} + } // unnamed namespace } // namespace westmere } // namespace simdjson @@ -26683,6 +26880,31 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 16; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits); } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + (is_backslash | is_quote | is_control).to_bitmask() + }; +} + } // unnamed namespace } // namespace lsx } // namespace simdjson @@ -29219,6 +29441,31 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 16; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits); } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + (is_backslash | is_quote | is_control).to_bitmask() + }; +} + } // unnamed namespace } // namespace lasx } // namespace simdjson @@ -31162,6 +31409,7 @@ simdjson_inline implementation_simdjson_result_base::implementation_simdjson_ // Internal headers needed for ondemand generics. // All includes not under simdjson/generic/ondemand must be here! // Otherwise, amalgamation will fail. +/* skipped duplicate #include "simdjson/concepts.h" */ /* skipped duplicate #include "simdjson/dom/base.h" // for MINIMAL_DOCUMENT_CAPACITY */ /* skipped duplicate #include "simdjson/implementation.h" */ /* skipped duplicate #include "simdjson/padded_string.h" */ @@ -31596,6 +31844,12 @@ namespace { tmp = vpaddq_u8(tmp, tmp); return vgetq_lane_u16(vreinterpretq_u16_u8(tmp), 0); } + // Returns 4-bit out of each byte, alternating between the high 4 bits and low + // bits result it is 64 bit. + simdjson_inline uint64_t to_bitmask64() const { + return vget_lane_u64( + vreinterpret_u64_u8(vshrn_n_u16(vreinterpretq_u16_u8(*this), 4)), 0); + } simdjson_inline bool any() const { return vmaxvq_u32(vreinterpretq_u32_u8(*this)) != 0; } }; @@ -31672,7 +31926,7 @@ namespace { // Bit-specific operations simdjson_inline simd8 any_bits_set(simd8 bits) const { return vtstq_u8(*this, bits); } - simdjson_inline bool any_bits_set_anywhere() const { return this->max_val() != 0; } + simdjson_inline bool any_bits_set_anywhere() const { return vmaxvq_u32(vreinterpretq_u32_u8(*this)) != 0; } simdjson_inline bool any_bits_set_anywhere(simd8 bits) const { return (*this & bits).any_bits_set_anywhere(); } template simdjson_inline simd8 shr() const { return vshrq_n_u8(*this, N); } @@ -31685,7 +31939,12 @@ namespace { return lookup_table.apply_lookup_16_to(*this); } - + // Returns 4-bit out of each byte, alternating between the high 4 bits and low + // bits result it is 64 bit. + simdjson_inline uint64_t to_bitmask64() const { + return vget_lane_u64( + vreinterpret_u64_u8(vshrn_n_u16(vreinterpretq_u16_u8(*this), 4)), 0); + } // Copies to 'output" all bytes corresponding to a 0 in the mask (interpreted as a bitset). // Passing a 0 value for mask would be equivalent to writing out every byte to output. // Only the first 16 - count_ones(mask) bytes of the result are significant but 16 bytes @@ -32008,6 +32267,32 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 16; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits) / 4; } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + (is_backslash | is_quote | is_control).to_bitmask64() + }; +} + + + } // unnamed namespace } // namespace arm64 } // namespace simdjson @@ -32166,10 +32451,26 @@ concept nothrow_deserializable = nothrow_custom_deserializable || is_bu /// Deserialize Tag inline constexpr struct deserialize_tag { + using array_type = arm64::ondemand::array; + using object_type = arm64::ondemand::object; using value_type = arm64::ondemand::value; using document_type = arm64::ondemand::document; using document_reference_type = arm64::ondemand::document_reference; + // Customization Point for array + template + requires custom_deserializable + [[nodiscard]] constexpr /* error_code */ auto operator()(array_type &object, T& output) const noexcept(nothrow_custom_deserializable) { + return tag_invoke(*this, object, output); + } + + // Customization Point for object + template + requires custom_deserializable + [[nodiscard]] constexpr /* error_code */ auto operator()(object_type &object, T& output) const noexcept(nothrow_custom_deserializable) { + return tag_invoke(*this, object, output); + } + // Customization Point for value template requires custom_deserializable @@ -32737,6 +33038,7 @@ public: * * You may use get_double(), get_bool(), get_uint64(), get_int64(), * get_object(), get_array(), get_raw_json_string(), or get_string() instead. + * When SIMDJSON_SUPPORTS_DESERIALIZATION is set, custom types are also supported. * * @returns A value of the given type, parsed from the JSON. * @returns INCORRECT_TYPE If the JSON value is not the given type. @@ -32760,6 +33062,7 @@ public: * Get this value as the given type. * * Supported types: object, array, raw_json_string, string_view, uint64_t, int64_t, double, bool + * If the macro SIMDJSON_SUPPORTS_DESERIALIZATION is set, then custom types are also supported. * * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. * @returns INCORRECT_TYPE If the JSON value is not an object. @@ -35002,6 +35305,37 @@ public: * - INDEX_OUT_OF_BOUNDS if the array index is larger than an array length */ simdjson_inline simdjson_result at(size_t index) noexcept; + +#if SIMDJSON_SUPPORTS_DESERIALIZATION + /** + * Get this array as the given type. + * + * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. + * @returns INCORRECT_TYPE If the JSON array is not of the given type. + * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. + */ + template + simdjson_inline error_code get(T &out) + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) { + static_assert(custom_deserializable); + return deserialize(*this, out); + } + /** + * Get this array as the given type. + * + * @returns A value of the given type, parsed from the JSON. + * @returns INCORRECT_TYPE If the JSON value is not the given type. + */ + template + simdjson_inline simdjson_result get() + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) + { + static_assert(std::is_default_constructible::value, "The specified type is not default constructible."); + T out{}; + SIMDJSON_TRY(get(out)); + return out; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION protected: /** * Go to the end of the array, no matter where you are right now. @@ -35080,7 +35414,28 @@ public: simdjson_inline simdjson_result at_pointer(std::string_view json_pointer) noexcept; simdjson_inline simdjson_result at_path(std::string_view json_path) noexcept; simdjson_inline simdjson_result raw_json() noexcept; +#if SIMDJSON_SUPPORTS_DESERIALIZATION + // TODO: move this code into object-inl.h + template + simdjson_inline simdjson_result get() noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + return first; + } + return first.get(); + } + template + simdjson_inline error_code get(T& out) noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + out = first; + } else { + SIMDJSON_TRY( first.get(out) ); + } + return SUCCESS; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION }; } // namespace simdjson @@ -35414,7 +35769,7 @@ public: * Be mindful that the document instance must remain in scope while you are accessing object, array and value instances. * * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. - * @returns INCORRECT_TYPE If the JSON value is not an object. + * @returns INCORRECT_TYPE If the JSON value is of the given type. * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. */ template @@ -36901,6 +37256,36 @@ public: */ simdjson_inline simdjson_result raw_json() noexcept; +#if SIMDJSON_SUPPORTS_DESERIALIZATION + /** + * Get this object as the given type. + * + * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. + * @returns INCORRECT_TYPE If the JSON object is not of the given type. + * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. + */ + template + simdjson_inline error_code get(T &out) + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) { + static_assert(custom_deserializable); + return deserialize(*this, out); + } + /** + * Get this array as the given type. + * + * @returns A value of the given type, parsed from the JSON. + * @returns INCORRECT_TYPE If the JSON value is not the given type. + */ + template + simdjson_inline simdjson_result get() + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) + { + static_assert(std::is_default_constructible::value, "The specified type is not default constructible."); + T out{}; + SIMDJSON_TRY(get(out)); + return out; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION protected: /** * Go to the end of the object, no matter where you are right now. @@ -36944,12 +37329,32 @@ public: simdjson_inline simdjson_result operator[](std::string_view key) && noexcept; simdjson_inline simdjson_result at_pointer(std::string_view json_pointer) noexcept; simdjson_inline simdjson_result at_path(std::string_view json_path) noexcept; - inline simdjson_result reset() noexcept; inline simdjson_result is_empty() noexcept; inline simdjson_result count_fields() & noexcept; inline simdjson_result raw_json() noexcept; + #if SIMDJSON_SUPPORTS_DESERIALIZATION + // TODO: move this code into object-inl.h + template + simdjson_inline simdjson_result get() noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + return first; + } + return first.get(); + } + template + simdjson_inline error_code get(T& out) noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + out = first; + } else { + SIMDJSON_TRY( first.get(out) ); + } + return SUCCESS; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION }; } // namespace simdjson @@ -37154,12 +37559,17 @@ inline std::ostream& operator<<(std::ostream& out, simdjson::simdjson_result #include +#if SIMDJSON_STATIC_REFLECTION +#include +// #include // for std::define_static_string - header not available yet +#endif namespace simdjson { template @@ -37206,6 +37616,22 @@ error_code tag_invoke(deserialize_tag, auto &val, T &out) noexcept { return SUCCESS; } +////////////////////////////// +// String deserialization +////////////////////////////// + +// just a character! +error_code tag_invoke(deserialize_tag, auto &val, char &out) noexcept { + std::string_view x; + SIMDJSON_TRY(val.get_string().get(x)); + if(x.size() != 1) { + return INCORRECT_TYPE; + } + out = x[0]; + return SUCCESS; +} + +// any string-like type (can be constructed from std::string_view) template requires(!require_custom_serialization) error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(std::is_nothrow_constructible_v) { @@ -37227,15 +37653,20 @@ template requires(!require_custom_serialization) error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(false) { using value_type = typename std::remove_cvref_t::value_type; - static_assert( + /*static_assert( deserializable, - "The specified type inside the container must itself be deserializable"); + "The specified type inside the container must itself be deserializable");*/ static_assert( std::is_default_constructible_v, "The specified type inside the container must default constructible."); arm64::ondemand::array arr; - SIMDJSON_TRY(val.get_array().get(arr)); + if constexpr (std::is_same_v, arm64::ondemand::array>) { + arr = val; + } else { + SIMDJSON_TRY(val.get_array().get(arr)); + } + for (auto v : arr) { if constexpr (concepts::returns_reference) { if (auto const err = v.get().get(concepts::emplace_one(out)); @@ -37292,7 +37723,45 @@ error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(false) { return SUCCESS; } +template +error_code tag_invoke(deserialize_tag, arm64::ondemand::object &obj, T &out) noexcept { + using value_type = typename std::remove_cvref_t::mapped_type; + out.clear(); + for (auto field : obj) { + std::string_view key; + SIMDJSON_TRY(field.unescaped_key().get(key)); + + arm64::ondemand::value value_obj; + SIMDJSON_TRY(field.value().get(value_obj)); + + value_type this_value; + SIMDJSON_TRY(value_obj.get(this_value)); + out.emplace(typename T::key_type(key), std::move(this_value)); + } + return SUCCESS; +} + +template +error_code tag_invoke(deserialize_tag, arm64::ondemand::value &val, T &out) noexcept { + arm64::ondemand::object obj; + SIMDJSON_TRY(val.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} + +template +error_code tag_invoke(deserialize_tag, arm64::ondemand::document &doc, T &out) noexcept { + arm64::ondemand::object obj; + SIMDJSON_TRY(doc.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} + +template +error_code tag_invoke(deserialize_tag, arm64::ondemand::document_reference &doc, T &out) noexcept { + arm64::ondemand::object obj; + SIMDJSON_TRY(doc.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} /** @@ -37354,6 +37823,199 @@ error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(nothrow_deser return SUCCESS; } + +#if SIMDJSON_STATIC_REFLECTION + + +template +constexpr bool user_defined_type = (std::is_class_v +&& !std::is_same_v && !std::is_same_v && !concepts::optional_type && +!concepts::appendable_containers && !require_custom_serialization); + + +// workaround from +// https://www.open-std.org/jtc1/sc22/wg21/docs/papers/2024/p2996r10.html#back-and-forth +// for missing expansion statements +namespace __impl { + template + struct replicator_type { + template + constexpr void operator>>(F body) const { + (body.template operator()(), ...); + } + }; + + template + replicator_type replicator = {}; +} + +template +consteval auto expand(R range) { + std::vector args; + for (auto r : range) { + args.push_back(reflect_value(r)); + } + return substitute(^^__impl::replicator, args); +} +// end of workaround + +template + requires(user_defined_type && std::is_class_v) +error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept { + arm64::ondemand::object obj; + if constexpr (std::is_same_v, arm64::ondemand::object>) { + obj = val; + } else { + SIMDJSON_TRY(val.get_object().get(obj)); + } + error_code e = simdjson::SUCCESS; + + [:expand(std::meta::nonstatic_data_members_of(^^T, std::meta::access_context::unchecked())):] >> [&]() { + if constexpr (!std::meta::is_const(mem) && std::meta::is_public(mem)) { + constexpr std::string_view key = std::define_static_string(std::meta::identifier_of(mem)); + static_assert( + deserializable, + "The specified type inside the class must itself be deserializable"); + // as long we are succesful or the field is not found, we continue + if(e == simdjson::SUCCESS || e == simdjson::NO_SUCH_FIELD) { + obj[key].get(out.[:mem:]); + } + } + }; + return e; +} +template + requires(user_defined_type>) +error_code tag_invoke(deserialize_tag, simdjson_value &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { + return MEMALLOC; + } + } + if (auto err = val.get(*out)) { + out.reset(); + return err; + } + return SUCCESS; +} + +template + requires(user_defined_type>) +error_code tag_invoke(deserialize_tag, simdjson_value &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { + return MEMALLOC; + } + } + if (auto err = val.get(*out)) { + out.reset(); + return err; + } + return SUCCESS; +} + +#endif // SIMDJSON_STATIC_REFLECTION + +//////////////////////////////////////// +// Unique pointers +//////////////////////////////////////// +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_bool().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_int64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_uint64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_double().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_string().get(*out)); + return SUCCESS; +} + + +//////////////////////////////////////// +// Shared pointers +//////////////////////////////////////// +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_bool().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_int64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_uint64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_double().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_string().get(*out)); + return SUCCESS; +} + + } // namespace simdjson #endif // SIMDJSON_ONDEMAND_DESERIALIZE_H @@ -40841,6 +41503,7 @@ simdjson_inline simdjson_result simdjson_result::simdjson_resul #endif // SIMDJSON_GENERIC_ONDEMAND_VALUE_ITERATOR_INL_H /* end file simdjson/generic/ondemand/value_iterator-inl.h for arm64 */ +// JSON builder, ideally they should not be part of the ondemand directory +// but it is convenient for now to have them here. +/* including simdjson/generic/ondemand/json_string_builder.h for arm64: #include "simdjson/generic/ondemand/json_string_builder.h" */ +/* begin file simdjson/generic/ondemand/json_string_builder.h for arm64 */ +/** + * This file is part of the builder API. It is temporarily in the ondemand directory + * but we will move it to a builder directory later. + */ +#ifndef SIMDJSON_GENERIC_STRING_BUILDER_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/implementation_simdjson_result_base.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ + +namespace simdjson { +namespace arm64 { +namespace builder { + +/** + * A builder for JSON strings representing documents. This is a low-level + * builder that is not meant to be used directly by end-users. Though it + * supports atomic types (Booleans, strings), it does not support composed + * types (arrays and objects). + * + * Ultimately, this class should support kernel-specific optimizations. E.g., + * it may make use of SIMD instructions to escape strings faster. + */ +class string_builder { +public: + simdjson_inline string_builder(size_t initial_capacity = 1024); + + /** + * Append number (includes Booleans). Booleans are mapped to the strings + * false and true. Numbers are converted to strings abiding by the JSON standard. + * Floating-point numbers are converted to the shortest string that 'correctly' + * represents the number. + */ + template::value>::type> + simdjson_inline void append(number_type v) noexcept; + + /** + * Append character c. + */ + simdjson_inline void append(char c) noexcept; + + /** + * Append the string 'null'. + */ + simdjson_inline void append_null() noexcept; + + /** + * Clear the content. + */ + simdjson_inline void clear() noexcept; + + /** + * Append the std::string_view, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append(std::string_view input) noexcept; + + /** + * Append the std::string_view surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(std::string_view input) noexcept; + + /** + * Append the character surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(char input) noexcept; + + /** + * Append the character surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(const char* input) noexcept; + + /** + * Append the C string directly, without escaping. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(const char *c) noexcept; + + /** + * Append "{" to the buffer. + */ + simdjson_inline void start_object() noexcept; + + /** + * Append "}" to the buffer. + */ + simdjson_inline void end_object() noexcept; + + /** + * Append "[" to the buffer. + */ + simdjson_inline void start_array() noexcept; + + /** + * Append "]" to the buffer. + */ + simdjson_inline void end_array() noexcept; + + /** + * Append "," to the buffer. + */ + simdjson_inline void append_comma() noexcept; + + /** + * Append ":" to the buffer. + */ + simdjson_inline void append_colon() noexcept; + + /** + * Append a key-value pair to the buffer. + * The key is escaped and surrounded by double quotes. + * The value is escaped if it is a string. + */ + template + simdjson_inline void append_key_value(key_type key, value_type value) noexcept; + /** + * Append the std::string_view directly, without escaping. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(std::string_view input) noexcept; + + /** + * Append len characters from str. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(const char *str, size_t len) noexcept; +#if SIMDJSON_EXCEPTIONS + /** + * Creates an std::string from the written JSON buffer. + * Throws if memory allocation failed + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content if needed. + */ + simdjson_inline operator std::string() const noexcept(false); + + /** + * Creates an std::string_view from the written JSON buffer. + * Throws if memory allocation failed. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content if needed. + */ + simdjson_inline operator std::string_view() const noexcept(false); +#endif + + /** + * Returns a view on the written JSON buffer. Returns an error + * if memory allocation failed. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content. + */ + simdjson_inline simdjson_result view() const noexcept; + + /** + * Appends the null character to the buffer and returns + * a pointer to the beginning of the written JSON buffer. + * Returns an error if memory allocation failed. + * The result is null-terminated. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content. + */ + simdjson_inline simdjson_result c_str() noexcept; + + /** + * Return true if the content is valid UTF-8. + */ + simdjson_inline bool validate_unicode() const noexcept; + + /** + * Returns the current size of the written JSON buffer. + * If an error occurred, returns 0. + */ + simdjson_inline size_t size() const noexcept; + +private: + /** + * Returns true if we can write at least upcoming_bytes bytes. + * The underlying buffer is reallocated if needed. It is designed + * to be called before writing to the buffer. It should be fast. + */ + simdjson_inline bool capacity_check(size_t upcoming_bytes); + + /** + * Grow the buffer to at least desired_capacity bytes. + * If the allocation fails, is_valid is set to false. We expect + * that this function would not be repeatedly called. + */ + simdjson_inline void grow_buffer(size_t desired_capacity); + + /** + * We use this helper function to make sure that is_valid is kept consistent. + */ + simdjson_inline void set_valid(bool valid) noexcept; + + std::unique_ptr buffer{}; + size_t position{0}; + size_t capacity{0}; + bool is_valid{true}; +}; + + + +} +} +} // namespace simdjson + +#endif // SIMDJSON_GENERIC_STRING_BUILDER_H +/* end file simdjson/generic/ondemand/json_string_builder.h for arm64 */ +/* including simdjson/generic/ondemand/json_string_builder-inl.h for arm64: #include "simdjson/generic/ondemand/json_string_builder-inl.h" */ +/* begin file simdjson/generic/ondemand/json_string_builder-inl.h for arm64 */ +/** + * This file is part of the builder API. It is temporarily in the ondemand + * directory but we will move it to a builder directory later. + */ +#include +#include +#include +#ifndef SIMDJSON_GENERIC_STRING_BUILDER_INL_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_INL_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/builder/json_string_builder.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ + +/* + * Empirically, we have found that an inlined optimization is important for + * performance. The following macros are not ideal. We should find a better + * way to inline the code. + */ + +#if defined(__SSE2__) || defined(__x86_64__) || defined(__x86_64) || \ + (defined(_M_AMD64) || defined(_M_X64) || \ + (defined(_M_IX86_FP) && _M_IX86_FP == 2)) +#ifndef SIMDJSON_EXPERIMENTAL_HAS_SSE2 +#define SIMDJSON_EXPERIMENTAL_HAS_SSE2 1 +#endif +#endif + +#if defined(__aarch64__) || defined(_M_ARM64) +#ifndef SIMDJSON_EXPERIMENTAL_HAS_NEON +#define SIMDJSON_EXPERIMENTAL_HAS_NEON 1 +#endif +#endif +#if SIMDJSON_EXPERIMENTAL_HAS_NEON +#include +#endif +#if SIMDJSON_EXPERIMENTAL_HAS_SSE2 +#include +#endif + +namespace simdjson { +namespace arm64 { +namespace builder { + +static SIMDJSON_CONSTEXPR_LAMBDA std::array json_quotable_character = { + 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, + 1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}; + +/** + +A possible SWAR implementation of has_json_escapable_byte. It is not used because +it is slower than the current implementation. It is kept here for reference (to show +that we tried it). + +inline bool has_json_escapable_byte(uint64_t x) { + uint64_t is_ascii = 0x8080808080808080ULL & ~x; + uint64_t xor2 = x ^ 0x0202020202020202ULL; + uint64_t lt32_or_eq34 = xor2 - 0x2121212121212121ULL; + uint64_t sub92 = x ^ 0x5C5C5C5C5C5C5C5CULL; + uint64_t eq92 = (sub92 - 0x0101010101010101ULL); + return ((lt32_or_eq34 | eq92) & is_ascii) != 0; +} + +**/ + +SIMDJSON_CONSTEXPR_LAMBDA simdjson_inline bool +simple_needs_escaping(std::string_view v) { + for (char c : v) { + // a table lookup is faster than a series of comparisons + if(json_quotable_character[static_cast(c)]) { + return true; + } + } + return false; +} + +#if SIMDJSON_EXPERIMENTAL_HAS_NEON +simdjson_inline bool fast_needs_escaping(std::string_view view) { + if (view.size() < 16) { + return simple_needs_escaping(view); + } + size_t i = 0; + uint8x16_t running = vdupq_n_u8(0); + uint8x16_t v34 = vdupq_n_u8(34); + uint8x16_t v92 = vdupq_n_u8(92); + + for (; i + 15 < view.size(); i += 16) { + uint8x16_t word = vld1q_u8((const uint8_t *)view.data() + i); + running = vorrq_u8(running, vceqq_u8(word, v34)); + running = vorrq_u8(running, vceqq_u8(word, v92)); + running = vorrq_u8(running, vcltq_u8(word, vdupq_n_u8(32))); + } + if (i < view.size()) { + uint8x16_t word = + vld1q_u8((const uint8_t *)view.data() + view.length() - 16); + running = vorrq_u8(running, vceqq_u8(word, v34)); + running = vorrq_u8(running, vceqq_u8(word, v92)); + running = vorrq_u8(running, vcltq_u8(word, vdupq_n_u8(32))); + } + return vmaxvq_u32(vreinterpretq_u32_u8(running)) != 0; +} +#elif SIMDJSON_EXPERIMENTAL_HAS_SSE2 +simdjson_inline bool fast_needs_escaping(std::string_view view) { + if (view.size() < 16) { + return simple_needs_escaping(view); + } + size_t i = 0; + __m128i running = _mm_setzero_si128(); + for (; i + 15 < view.size(); i += 16) { + + __m128i word = _mm_loadu_si128(reinterpret_cast(view.data() + i)); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(34))); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(92))); + running = _mm_or_si128( + running, _mm_cmpeq_epi8(_mm_subs_epu8(word, _mm_set1_epi8(31)), + _mm_setzero_si128())); + } + if (i < view.size()) { + __m128i word = + _mm_loadu_si128(reinterpret_cast(view.data() + view.length() - 16)); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(34))); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(92))); + running = _mm_or_si128( + running, _mm_cmpeq_epi8(_mm_subs_epu8(word, _mm_set1_epi8(31)), + _mm_setzero_si128())); + } + return _mm_movemask_epi8(running) != 0; +} +#else +simdjson_inline bool fast_needs_escaping(std::string_view view) { + return simple_needs_escaping(view); +} +#endif + + +SIMDJSON_CONSTEXPR_LAMBDA inline size_t +find_next_json_quotable_character(const std::string_view view, + size_t location) noexcept { + + for (auto pos = view.begin() + location; pos != view.end(); ++pos) { + if (json_quotable_character[static_cast(*pos)]) { + return pos - view.begin(); + } + } + return size_t(view.size()); +} + +SIMDJSON_CONSTEXPR_LAMBDA static std::string_view control_chars[] = { + "\\x0000", "\\x0001", "\\x0002", "\\x0003", "\\x0004", "\\x0005", "\\x0006", + "\\x0007", "\\x0008", "\\t", "\\n", "\\x000b", "\\f", "\\r", + "\\x000e", "\\x000f", "\\x0010", "\\x0011", "\\x0012", "\\x0013", "\\x0014", + "\\x0015", "\\x0016", "\\x0017", "\\x0018", "\\x0019", "\\x001a", "\\x001b", + "\\x001c", "\\x001d", "\\x001e", "\\x001f"}; + +SIMDJSON_CONSTEXPR_LAMBDA void escape_json_char(char c, char *&out) { + if (c == '"') { + memcpy(out, "\\\"", 2); + out += 2; + } else if (c == '\\') { + memcpy(out, "\\\\", 2); + out += 2; + } else { + std::string_view v = control_chars[uint8_t(c)]; + memcpy(out, v.data(), v.size()); + out += v.size(); + } +} + +inline size_t write_string_escaped(const std::string_view input, char *out) { + size_t mysize = input.size(); + if (!fast_needs_escaping(input)) { // fast path! + memcpy(out, input.data(), input.size()); + return input.size(); + } + const char *const initout = out; + size_t location = find_next_json_quotable_character(input, 0); + memcpy(out, input.data(), location); + out += location; + escape_json_char(input[location], out); + location += 1; + while (location < mysize) { + size_t newlocation = find_next_json_quotable_character(input, location); + memcpy(out, input.data() + location, newlocation - location); + out += newlocation - location; + location = newlocation; + if (location == mysize) { + break; + } + escape_json_char(input[location], out); + location += 1; + } + return out - initout; +} + +#if SIMDJSON_CONSTEVAL +// unoptimized, meant for compile-time execution +consteval std::string consteval_to_quoted_escaped(std::string_view input) { + std::string out = "\""; + for (char c : input) { + if (json_quotable_character[uint8_t(c)]) { + if (c == '"') { + out.append("\\\""); + } else if (c == '\\') { + out.append("\\\\"); + } else { + std::string_view v = control_chars[uint8_t(c)]; + out.append(v); + } + } else { + out.push_back(c); + } + } + out.push_back('"'); + return out; +} +#endif // SIMDJSON_CONSTEVAL + +simdjson_inline string_builder::string_builder(size_t initial_capacity) + : buffer(new(std::nothrow) char[initial_capacity]), position(0), + capacity(buffer.get() != nullptr ? initial_capacity : 0), + is_valid(buffer.get() != nullptr) {} + +simdjson_inline bool string_builder::capacity_check(size_t upcoming_bytes) { + // We use the convention that when is_valid is false, then the capacity and + // the position are 0. + // Most of the time, this function will return true. + if (simdjson_likely(upcoming_bytes <= capacity - position)) { + return true; + } + // check for overflow, most of the time there is no overflow + if (simdjson_likely(position + upcoming_bytes < position)) { + return false; + } + // We will rarely get here. + grow_buffer((std::max)(capacity * 2, position + upcoming_bytes)); + // If the buffer allocation failed, we set is_valid to false. + return is_valid; +} + +simdjson_inline void string_builder::grow_buffer(size_t desired_capacity) { + if (!is_valid) { + return; + } + std::unique_ptr new_buffer(new (std::nothrow) char[desired_capacity]); + if (new_buffer.get() == nullptr) { + set_valid(false); + return; + } + std::memcpy(new_buffer.get(), buffer.get(), position); + buffer.swap(new_buffer); + capacity = desired_capacity; +} + +simdjson_inline void string_builder::set_valid(bool valid) noexcept { + if (!valid) { + is_valid = false; + capacity = 0; + position = 0; + buffer.reset(); + } else { + is_valid = true; + } +} + +simdjson_inline size_t string_builder::size() const noexcept { + return position; +} + +simdjson_inline void string_builder::append(char c) noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = c; + } +} + +simdjson_inline void string_builder::append_null() noexcept { + constexpr char null_literal[] = "null"; + constexpr size_t null_len = sizeof(null_literal) - 1; + if (capacity_check(null_len)) { + std::memcpy(buffer.get() + position, null_literal, null_len); + position += null_len; + } +} + +simdjson_inline void string_builder::clear() noexcept { + position = 0; + // if it was invalid, we should try to repair it + if (!is_valid) { + capacity = 0; + buffer.reset(); + is_valid = true; + } +} + +namespace internal { + +// We could specialize further for 32-bit integers. +int int_log2(uint32_t x) { return (63 - leading_zeroes(x | 1)); } + +int fast_digit_count(uint32_t x) { + static uint64_t table[] = { + 4294967296, 8589934582, 8589934582, 8589934582, 12884901788, + 12884901788, 12884901788, 17179868184, 17179868184, 17179868184, + 21474826480, 21474826480, 21474826480, 21474826480, 25769703776, + 25769703776, 25769703776, 30063771072, 30063771072, 30063771072, + 34349738368, 34349738368, 34349738368, 34349738368, 38554705664, + 38554705664, 38554705664, 41949672960, 41949672960, 41949672960, + 42949672960, 42949672960}; + return uint32_t((x + table[int_log2(x)]) >> 32); +} + +int int_log2(uint64_t x) { return 63 - leading_zeroes(x | 1); } + +int fast_digit_count(uint64_t x) { + static uint64_t table[] = {9, + 99, + 999, + 9999, + 99999, + 999999, + 9999999, + 99999999, + 999999999, + 9999999999, + 99999999999, + 999999999999, + 9999999999999, + 99999999999999, + 999999999999999ULL, + 9999999999999999ULL, + 99999999999999999ULL, + 999999999999999999ULL, + 9999999999999999999ULL}; + int y = (19 * int_log2(x) >> 6); + y += x > table[y]; + return y + 1; +} + +template ::value>::type> +simdjson_inline size_t digit_count(number_type v) noexcept { + static_assert(sizeof(number_type) == 8 || sizeof(number_type) == 4 || + sizeof(number_type) == 2 || sizeof(number_type) == 1, + "We only support 8-bit, 16-bit, 32-bit and 64-bit numbers"); + return fast_digit_count(v); +} +static const char decimal_table[200] = { + 0x30, 0x30, 0x30, 0x31, 0x30, 0x32, 0x30, 0x33, 0x30, 0x34, 0x30, 0x35, + 0x30, 0x36, 0x30, 0x37, 0x30, 0x38, 0x30, 0x39, 0x31, 0x30, 0x31, 0x31, + 0x31, 0x32, 0x31, 0x33, 0x31, 0x34, 0x31, 0x35, 0x31, 0x36, 0x31, 0x37, + 0x31, 0x38, 0x31, 0x39, 0x32, 0x30, 0x32, 0x31, 0x32, 0x32, 0x32, 0x33, + 0x32, 0x34, 0x32, 0x35, 0x32, 0x36, 0x32, 0x37, 0x32, 0x38, 0x32, 0x39, + 0x33, 0x30, 0x33, 0x31, 0x33, 0x32, 0x33, 0x33, 0x33, 0x34, 0x33, 0x35, + 0x33, 0x36, 0x33, 0x37, 0x33, 0x38, 0x33, 0x39, 0x34, 0x30, 0x34, 0x31, + 0x34, 0x32, 0x34, 0x33, 0x34, 0x34, 0x34, 0x35, 0x34, 0x36, 0x34, 0x37, + 0x34, 0x38, 0x34, 0x39, 0x35, 0x30, 0x35, 0x31, 0x35, 0x32, 0x35, 0x33, + 0x35, 0x34, 0x35, 0x35, 0x35, 0x36, 0x35, 0x37, 0x35, 0x38, 0x35, 0x39, + 0x36, 0x30, 0x36, 0x31, 0x36, 0x32, 0x36, 0x33, 0x36, 0x34, 0x36, 0x35, + 0x36, 0x36, 0x36, 0x37, 0x36, 0x38, 0x36, 0x39, 0x37, 0x30, 0x37, 0x31, + 0x37, 0x32, 0x37, 0x33, 0x37, 0x34, 0x37, 0x35, 0x37, 0x36, 0x37, 0x37, + 0x37, 0x38, 0x37, 0x39, 0x38, 0x30, 0x38, 0x31, 0x38, 0x32, 0x38, 0x33, + 0x38, 0x34, 0x38, 0x35, 0x38, 0x36, 0x38, 0x37, 0x38, 0x38, 0x38, 0x39, + 0x39, 0x30, 0x39, 0x31, 0x39, 0x32, 0x39, 0x33, 0x39, 0x34, 0x39, 0x35, + 0x39, 0x36, 0x39, 0x37, 0x39, 0x38, 0x39, 0x39, +}; +} // namespace internal + +template +simdjson_inline void string_builder::append(number_type v) noexcept { + static_assert(std::is_same::value || + std::is_integral::value || + std::is_floating_point::value, + "Unsupported number type"); + // If C++17 is available, we can 'if constexpr' here. + SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + if (v) { + constexpr char true_literal[] = "true"; + constexpr size_t true_len = sizeof(true_literal) - 1; + if (capacity_check(true_len)) { + std::memcpy(buffer.get() + position, true_literal, true_len); + position += true_len; + } + } else { + constexpr char false_literal[] = "false"; + constexpr size_t false_len = sizeof(false_literal) - 1; + if (capacity_check(false_len)) { + std::memcpy(buffer.get() + position, false_literal, false_len); + position += false_len; + } + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_unsigned::value) { + constexpr size_t max_number_size = 20; + if (capacity_check(max_number_size)) { + using unsigned_type = typename std::make_unsigned::type; + unsigned_type pv = static_cast(v); + size_t dc = internal::digit_count(pv); + char *write_pointer = buffer.get() + position + dc - 1; + while (pv >= 100) { + memcpy(write_pointer - 1, &internal::decimal_table[(pv % 100)*2], 2); + write_pointer -= 2; + pv /= 100; + } + if (pv >= 10) { + *write_pointer-- = char('0' + (pv % 10)); + pv /= 10; + } + *write_pointer = char('0' + pv); + position += dc; + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_integral::value) { + constexpr size_t max_number_size = 20; + if (capacity_check(max_number_size)) { + using unsigned_type = typename std::make_unsigned::type; + bool negative = v < 0; + unsigned_type pv = static_cast(v); + if (negative) { + pv = 0 - pv; // the 0 is for Microsoft + } + size_t dc = internal::digit_count(pv); + if (negative) { + buffer.get()[position++] = '-'; + } + char *write_pointer = buffer.get() + position + dc - 1; + while (pv >= 100) { + memcpy(write_pointer - 1, &internal::decimal_table[(pv % 100)*2], 2); + write_pointer -= 2; + pv /= 100; + } + if (pv >= 10) { + *write_pointer-- = char('0' + (pv % 10)); + pv /= 10; + } + *write_pointer = char('0' + pv); + position += dc; + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_floating_point::value) { + constexpr size_t max_number_size = 24; + if (capacity_check(max_number_size)) { + // We could specialize for float. + char *end = simdjson::internal::to_chars(buffer.get() + position, nullptr, + double(v)); + position = end - buffer.get(); + } + } +} + +simdjson_inline void +string_builder::escape_and_append(std::string_view input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(6 * input.size())) { + position += write_string_escaped(input, buffer.get() + position); + } +} + +simdjson_inline void +string_builder::escape_and_append_with_quotes(std::string_view input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(2 + 6 * input.size())) { + buffer.get()[position++] = '"'; + position += write_string_escaped(input, buffer.get() + position); + buffer.get()[position++] = '"'; + } +} + +simdjson_inline void +string_builder::escape_and_append_with_quotes(char input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(2 + 6 * 1)) { + buffer.get()[position++] = '"'; + std::string_view cinput(&input, 1); + position += write_string_escaped(cinput, buffer.get() + position); + buffer.get()[position++] = '"'; + } +} + +simdjson_inline void string_builder::escape_and_append_with_quotes(const char* input) noexcept { + std::string_view cinput(input); + escape_and_append_with_quotes(cinput); +} + +simdjson_inline void string_builder::append_raw(const char *c) noexcept { + size_t len = std::strlen(c); + append_raw(c, len); +} + +simdjson_inline void +string_builder::append_raw(std::string_view input) noexcept { + if (capacity_check(input.size())) { + std::memcpy(buffer.get() + position, input.data(), input.size()); + position += input.size(); + } +} + +simdjson_inline void string_builder::append_raw(const char *str, + size_t len) noexcept { + if (capacity_check(len)) { + std::memcpy(buffer.get() + position, str, len); + position += len; + } +} + +#if SIMDJSON_EXCEPTIONS +simdjson_inline string_builder::operator std::string() const noexcept(false) { + return std::string(std::string_view()); +} + +simdjson_inline string_builder::operator std::string_view() const + noexcept(false) { + return view(); +} +#endif + +simdjson_inline simdjson_result +string_builder::view() const noexcept { + if (!is_valid) { + return simdjson::OUT_OF_CAPACITY; + } + return std::string_view(buffer.get(), position); +} + +simdjson_inline simdjson_result string_builder::c_str() noexcept { + if (capacity_check(1)) { + buffer.get()[position] = '\0'; + return buffer.get(); + } + return simdjson::OUT_OF_CAPACITY; +} + +simdjson_inline bool string_builder::validate_unicode() const noexcept { + return simdjson::validate_utf8(buffer.get(), position); +} + +simdjson_inline void string_builder::start_object() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '{'; + } +} + + +simdjson_inline void string_builder::end_object() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '}'; + } +} + + +simdjson_inline void string_builder::start_array() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '['; + } +} + + +simdjson_inline void string_builder::end_array() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ']'; + } +} + + +simdjson_inline void string_builder::append_comma() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ','; + } +} + + +simdjson_inline void string_builder::append_colon() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ':'; + } +} + +template +simdjson_inline void string_builder::append_key_value(key_type key, value_type value) noexcept { + static_assert( + std::is_arithmetic::value || + std::is_same::value || + std::is_same::value || + std::is_convertible::value || + std::is_same::value, + "Unsupported value type"); + static_assert( + std::is_same::value || + std::is_convertible::value, + "Unsupported key type"); + escape_and_append_with_quotes(key); + append_colon(); + SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + append_null(); + } else SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + escape_and_append_with_quotes(value); + } else SIMDJSON_IF_CONSTEXPR(std::is_convertible::value) { + escape_and_append_with_quotes(value); + } else SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + escape_and_append_with_quotes(value); + } else { + append(value); + } +} + +} // namespace builder +} // namespace arm64 +} // namespace simdjson + +#endif // SIMDJSON_GENERIC_STRING_BUILDER_INL_H +/* end file simdjson/generic/ondemand/json_string_builder-inl.h for arm64 */ +/* including simdjson/generic/ondemand/json_builder.h for arm64: #include "simdjson/generic/ondemand/json_builder.h" */ +/* begin file simdjson/generic/ondemand/json_builder.h for arm64 */ +/** + * This file is part of the builder API. It is temporarily in the ondemand directory + * but we will move it to a builder directory later. + */ +#ifndef SIMDJSON_GENERIC_BUILDER_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/builder/json_string_builder.h" */ +/* amalgamation skipped (editor-only): #include "simdjson/concepts.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ +#if SIMDJSON_STATIC_REFLECTION + +#include +#include +#include +#include +#include +#include +// #include // for std::define_static_string - header not available yet + +namespace simdjson { +namespace arm64 { +namespace builder { + +// Concept that checks if a type is a container but not a string (because +// strings handling must be handled differently) +template +concept container_but_not_string = + requires(T a) { + { a.size() } -> std::convertible_to; + { + a[std::declval()] + }; // check if elements are accessible for the subscript operator + } && !std::is_same_v && + !std::is_same_v && !std::is_same_v; + +template + requires(container_but_not_string) +constexpr void atom(string_builder &b, const T &t) { + if (t.size() == 0) { + b.append_raw("[]"); + return; + } + b.append('['); + atom(b, t[0]); + for (size_t i = 1; i < t.size(); ++i) { + b.append(','); + atom(b, t[i]); + } + b.append(']'); +} + +template + requires(std::is_same_v || + std::is_same_v || + std::is_same_v || + std::is_same_v) +constexpr void atom(string_builder &b, const T &t) { + b.escape_and_append_with_quotes(t); +} + +template +constexpr void atom(string_builder &b, const T &m) { + if (m.empty()) { + b.append_raw("{}"); + return; + } + b.append('{'); + bool first = true; + for (const auto& [key, value] : m) { + if (!first) { + b.append(','); + } + first = false; + // Keys must be convertible to string_view per the concept + b.escape_and_append_with_quotes(key); + b.append(':'); + atom(b, value); + } + b.append('}'); +} + + +template::value && !std::is_same_v>::type> +constexpr void atom(string_builder &b, const number_type t) { + b.append(t); +} +#if SIMDJSON_CONSTEVAL +consteval std::string consteval_to_quoted_escaped(std::string_view input); +#endif + +template + requires(std::is_class_v && !container_but_not_string && + !concepts::string_view_keyed_map && + !std::is_same_v && + !std::is_same_v) +constexpr void atom(string_builder &b, const T &t) { + int i = 0; + b.append('{'); + [:expand(std::meta::nonstatic_data_members_of(^^T, std::meta::access_context::unchecked())):] >> [&]() { + if (i != 0) + b.append(','); + constexpr auto key = std::define_static_string(consteval_to_quoted_escaped(std::meta::identifier_of(dm))); + b.append_raw(key); + b.append(':'); + atom(b, t.[:dm:]); + i++; + }; + b.append('}'); +} + +// works for struct +template void append(string_builder &b, const Z &z) { + int i = 0; + b.append('{'); + [:expand(std::meta::nonstatic_data_members_of(^^Z, std::meta::access_context::unchecked())):] >> [&]() { + if (i != 0) + b.append(','); + constexpr auto key = std::define_static_string(consteval_to_quoted_escaped(std::meta::identifier_of(dm))); + b.append_raw(key); + b.append(':'); + atom(b, z.[:dm:]); + i++; + }; + b.append('}'); +} + +// works for container +template + requires(container_but_not_string) +void append(string_builder &b, const Z &z) { + if (z.size() == 0) { + b.append_raw("[]"); + return; + } + b.append('['); + atom(b, z[0]); + for (size_t i = 1; i < z.size(); ++i) { + b.append(','); + atom(b, z[i]); + } + b.append(']'); +} + +template +simdjson_result to_json_string(const Z &z) { + string_builder b; + append(b, z); + std::string_view s; + if(auto e = b.view().get(s); e) { return e; } + return std::string(s); +} + +template +simdjson_error to_json(const Z &z, std::string &s) { + string_builder b; + append(b, z); + std::string_view view; + if(auto e = b.view().get(view); e) { return e; } + s.assign(view); + return SUCCESS; +} +} // namespace json_builder +} // namespace arm64 +} // namespace simdjson +#endif // SIMDJSON_STATIC_REFLECTION + +#endif +/* end file simdjson/generic/ondemand/json_builder.h for arm64 */ /* end file simdjson/generic/ondemand/amalgamated.h for arm64 */ /* including simdjson/arm64/end.h: #include "simdjson/arm64/end.h" */ @@ -42968,6 +44644,24 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin return { src[0] }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 1; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits; } + simdjson_inline int escape_index() { return 0; } + + bool escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + dst[0] = src[0]; + return { (src[0] == '\\') || (src[0] == '"') || (src[0] < 32) }; +} + } // unnamed namespace } // namespace fallback } // namespace simdjson @@ -43213,10 +44907,26 @@ concept nothrow_deserializable = nothrow_custom_deserializable || is_bu /// Deserialize Tag inline constexpr struct deserialize_tag { + using array_type = fallback::ondemand::array; + using object_type = fallback::ondemand::object; using value_type = fallback::ondemand::value; using document_type = fallback::ondemand::document; using document_reference_type = fallback::ondemand::document_reference; + // Customization Point for array + template + requires custom_deserializable + [[nodiscard]] constexpr /* error_code */ auto operator()(array_type &object, T& output) const noexcept(nothrow_custom_deserializable) { + return tag_invoke(*this, object, output); + } + + // Customization Point for object + template + requires custom_deserializable + [[nodiscard]] constexpr /* error_code */ auto operator()(object_type &object, T& output) const noexcept(nothrow_custom_deserializable) { + return tag_invoke(*this, object, output); + } + // Customization Point for value template requires custom_deserializable @@ -43784,6 +45494,7 @@ public: * * You may use get_double(), get_bool(), get_uint64(), get_int64(), * get_object(), get_array(), get_raw_json_string(), or get_string() instead. + * When SIMDJSON_SUPPORTS_DESERIALIZATION is set, custom types are also supported. * * @returns A value of the given type, parsed from the JSON. * @returns INCORRECT_TYPE If the JSON value is not the given type. @@ -43807,6 +45518,7 @@ public: * Get this value as the given type. * * Supported types: object, array, raw_json_string, string_view, uint64_t, int64_t, double, bool + * If the macro SIMDJSON_SUPPORTS_DESERIALIZATION is set, then custom types are also supported. * * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. * @returns INCORRECT_TYPE If the JSON value is not an object. @@ -46049,6 +47761,37 @@ public: * - INDEX_OUT_OF_BOUNDS if the array index is larger than an array length */ simdjson_inline simdjson_result at(size_t index) noexcept; + +#if SIMDJSON_SUPPORTS_DESERIALIZATION + /** + * Get this array as the given type. + * + * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. + * @returns INCORRECT_TYPE If the JSON array is not of the given type. + * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. + */ + template + simdjson_inline error_code get(T &out) + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) { + static_assert(custom_deserializable); + return deserialize(*this, out); + } + /** + * Get this array as the given type. + * + * @returns A value of the given type, parsed from the JSON. + * @returns INCORRECT_TYPE If the JSON value is not the given type. + */ + template + simdjson_inline simdjson_result get() + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) + { + static_assert(std::is_default_constructible::value, "The specified type is not default constructible."); + T out{}; + SIMDJSON_TRY(get(out)); + return out; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION protected: /** * Go to the end of the array, no matter where you are right now. @@ -46127,7 +47870,28 @@ public: simdjson_inline simdjson_result at_pointer(std::string_view json_pointer) noexcept; simdjson_inline simdjson_result at_path(std::string_view json_path) noexcept; simdjson_inline simdjson_result raw_json() noexcept; +#if SIMDJSON_SUPPORTS_DESERIALIZATION + // TODO: move this code into object-inl.h + template + simdjson_inline simdjson_result get() noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + return first; + } + return first.get(); + } + template + simdjson_inline error_code get(T& out) noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + out = first; + } else { + SIMDJSON_TRY( first.get(out) ); + } + return SUCCESS; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION }; } // namespace simdjson @@ -46461,7 +48225,7 @@ public: * Be mindful that the document instance must remain in scope while you are accessing object, array and value instances. * * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. - * @returns INCORRECT_TYPE If the JSON value is not an object. + * @returns INCORRECT_TYPE If the JSON value is of the given type. * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. */ template @@ -47948,6 +49712,36 @@ public: */ simdjson_inline simdjson_result raw_json() noexcept; +#if SIMDJSON_SUPPORTS_DESERIALIZATION + /** + * Get this object as the given type. + * + * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. + * @returns INCORRECT_TYPE If the JSON object is not of the given type. + * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. + */ + template + simdjson_inline error_code get(T &out) + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) { + static_assert(custom_deserializable); + return deserialize(*this, out); + } + /** + * Get this array as the given type. + * + * @returns A value of the given type, parsed from the JSON. + * @returns INCORRECT_TYPE If the JSON value is not the given type. + */ + template + simdjson_inline simdjson_result get() + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) + { + static_assert(std::is_default_constructible::value, "The specified type is not default constructible."); + T out{}; + SIMDJSON_TRY(get(out)); + return out; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION protected: /** * Go to the end of the object, no matter where you are right now. @@ -47991,12 +49785,32 @@ public: simdjson_inline simdjson_result operator[](std::string_view key) && noexcept; simdjson_inline simdjson_result at_pointer(std::string_view json_pointer) noexcept; simdjson_inline simdjson_result at_path(std::string_view json_path) noexcept; - inline simdjson_result reset() noexcept; inline simdjson_result is_empty() noexcept; inline simdjson_result count_fields() & noexcept; inline simdjson_result raw_json() noexcept; + #if SIMDJSON_SUPPORTS_DESERIALIZATION + // TODO: move this code into object-inl.h + template + simdjson_inline simdjson_result get() noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + return first; + } + return first.get(); + } + template + simdjson_inline error_code get(T& out) noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + out = first; + } else { + SIMDJSON_TRY( first.get(out) ); + } + return SUCCESS; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION }; } // namespace simdjson @@ -48201,12 +50015,17 @@ inline std::ostream& operator<<(std::ostream& out, simdjson::simdjson_result #include +#if SIMDJSON_STATIC_REFLECTION +#include +// #include // for std::define_static_string - header not available yet +#endif namespace simdjson { template @@ -48253,6 +50072,22 @@ error_code tag_invoke(deserialize_tag, auto &val, T &out) noexcept { return SUCCESS; } +////////////////////////////// +// String deserialization +////////////////////////////// + +// just a character! +error_code tag_invoke(deserialize_tag, auto &val, char &out) noexcept { + std::string_view x; + SIMDJSON_TRY(val.get_string().get(x)); + if(x.size() != 1) { + return INCORRECT_TYPE; + } + out = x[0]; + return SUCCESS; +} + +// any string-like type (can be constructed from std::string_view) template requires(!require_custom_serialization) error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(std::is_nothrow_constructible_v) { @@ -48274,15 +50109,20 @@ template requires(!require_custom_serialization) error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(false) { using value_type = typename std::remove_cvref_t::value_type; - static_assert( + /*static_assert( deserializable, - "The specified type inside the container must itself be deserializable"); + "The specified type inside the container must itself be deserializable");*/ static_assert( std::is_default_constructible_v, "The specified type inside the container must default constructible."); fallback::ondemand::array arr; - SIMDJSON_TRY(val.get_array().get(arr)); + if constexpr (std::is_same_v, fallback::ondemand::array>) { + arr = val; + } else { + SIMDJSON_TRY(val.get_array().get(arr)); + } + for (auto v : arr) { if constexpr (concepts::returns_reference) { if (auto const err = v.get().get(concepts::emplace_one(out)); @@ -48339,7 +50179,45 @@ error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(false) { return SUCCESS; } +template +error_code tag_invoke(deserialize_tag, fallback::ondemand::object &obj, T &out) noexcept { + using value_type = typename std::remove_cvref_t::mapped_type; + out.clear(); + for (auto field : obj) { + std::string_view key; + SIMDJSON_TRY(field.unescaped_key().get(key)); + + fallback::ondemand::value value_obj; + SIMDJSON_TRY(field.value().get(value_obj)); + + value_type this_value; + SIMDJSON_TRY(value_obj.get(this_value)); + out.emplace(typename T::key_type(key), std::move(this_value)); + } + return SUCCESS; +} + +template +error_code tag_invoke(deserialize_tag, fallback::ondemand::value &val, T &out) noexcept { + fallback::ondemand::object obj; + SIMDJSON_TRY(val.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} + +template +error_code tag_invoke(deserialize_tag, fallback::ondemand::document &doc, T &out) noexcept { + fallback::ondemand::object obj; + SIMDJSON_TRY(doc.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} + +template +error_code tag_invoke(deserialize_tag, fallback::ondemand::document_reference &doc, T &out) noexcept { + fallback::ondemand::object obj; + SIMDJSON_TRY(doc.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} /** @@ -48401,6 +50279,199 @@ error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(nothrow_deser return SUCCESS; } + +#if SIMDJSON_STATIC_REFLECTION + + +template +constexpr bool user_defined_type = (std::is_class_v +&& !std::is_same_v && !std::is_same_v && !concepts::optional_type && +!concepts::appendable_containers && !require_custom_serialization); + + +// workaround from +// https://www.open-std.org/jtc1/sc22/wg21/docs/papers/2024/p2996r10.html#back-and-forth +// for missing expansion statements +namespace __impl { + template + struct replicator_type { + template + constexpr void operator>>(F body) const { + (body.template operator()(), ...); + } + }; + + template + replicator_type replicator = {}; +} + +template +consteval auto expand(R range) { + std::vector args; + for (auto r : range) { + args.push_back(reflect_value(r)); + } + return substitute(^^__impl::replicator, args); +} +// end of workaround + +template + requires(user_defined_type && std::is_class_v) +error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept { + fallback::ondemand::object obj; + if constexpr (std::is_same_v, fallback::ondemand::object>) { + obj = val; + } else { + SIMDJSON_TRY(val.get_object().get(obj)); + } + error_code e = simdjson::SUCCESS; + + [:expand(std::meta::nonstatic_data_members_of(^^T, std::meta::access_context::unchecked())):] >> [&]() { + if constexpr (!std::meta::is_const(mem) && std::meta::is_public(mem)) { + constexpr std::string_view key = std::define_static_string(std::meta::identifier_of(mem)); + static_assert( + deserializable, + "The specified type inside the class must itself be deserializable"); + // as long we are succesful or the field is not found, we continue + if(e == simdjson::SUCCESS || e == simdjson::NO_SUCH_FIELD) { + obj[key].get(out.[:mem:]); + } + } + }; + return e; +} +template + requires(user_defined_type>) +error_code tag_invoke(deserialize_tag, simdjson_value &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { + return MEMALLOC; + } + } + if (auto err = val.get(*out)) { + out.reset(); + return err; + } + return SUCCESS; +} + +template + requires(user_defined_type>) +error_code tag_invoke(deserialize_tag, simdjson_value &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { + return MEMALLOC; + } + } + if (auto err = val.get(*out)) { + out.reset(); + return err; + } + return SUCCESS; +} + +#endif // SIMDJSON_STATIC_REFLECTION + +//////////////////////////////////////// +// Unique pointers +//////////////////////////////////////// +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_bool().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_int64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_uint64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_double().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_string().get(*out)); + return SUCCESS; +} + + +//////////////////////////////////////// +// Shared pointers +//////////////////////////////////////// +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_bool().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_int64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_uint64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_double().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_string().get(*out)); + return SUCCESS; +} + + } // namespace simdjson #endif // SIMDJSON_ONDEMAND_DESERIALIZE_H @@ -51888,6 +53959,7 @@ simdjson_inline simdjson_result simdjson_result::simdjson_re #endif // SIMDJSON_GENERIC_ONDEMAND_VALUE_ITERATOR_INL_H /* end file simdjson/generic/ondemand/value_iterator-inl.h for fallback */ +// JSON builder, ideally they should not be part of the ondemand directory +// but it is convenient for now to have them here. +/* including simdjson/generic/ondemand/json_string_builder.h for fallback: #include "simdjson/generic/ondemand/json_string_builder.h" */ +/* begin file simdjson/generic/ondemand/json_string_builder.h for fallback */ +/** + * This file is part of the builder API. It is temporarily in the ondemand directory + * but we will move it to a builder directory later. + */ +#ifndef SIMDJSON_GENERIC_STRING_BUILDER_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/implementation_simdjson_result_base.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ + +namespace simdjson { +namespace fallback { +namespace builder { + +/** + * A builder for JSON strings representing documents. This is a low-level + * builder that is not meant to be used directly by end-users. Though it + * supports atomic types (Booleans, strings), it does not support composed + * types (arrays and objects). + * + * Ultimately, this class should support kernel-specific optimizations. E.g., + * it may make use of SIMD instructions to escape strings faster. + */ +class string_builder { +public: + simdjson_inline string_builder(size_t initial_capacity = 1024); + + /** + * Append number (includes Booleans). Booleans are mapped to the strings + * false and true. Numbers are converted to strings abiding by the JSON standard. + * Floating-point numbers are converted to the shortest string that 'correctly' + * represents the number. + */ + template::value>::type> + simdjson_inline void append(number_type v) noexcept; + + /** + * Append character c. + */ + simdjson_inline void append(char c) noexcept; + + /** + * Append the string 'null'. + */ + simdjson_inline void append_null() noexcept; + + /** + * Clear the content. + */ + simdjson_inline void clear() noexcept; + + /** + * Append the std::string_view, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append(std::string_view input) noexcept; + + /** + * Append the std::string_view surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(std::string_view input) noexcept; + + /** + * Append the character surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(char input) noexcept; + + /** + * Append the character surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(const char* input) noexcept; + + /** + * Append the C string directly, without escaping. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(const char *c) noexcept; + + /** + * Append "{" to the buffer. + */ + simdjson_inline void start_object() noexcept; + + /** + * Append "}" to the buffer. + */ + simdjson_inline void end_object() noexcept; + + /** + * Append "[" to the buffer. + */ + simdjson_inline void start_array() noexcept; + + /** + * Append "]" to the buffer. + */ + simdjson_inline void end_array() noexcept; + + /** + * Append "," to the buffer. + */ + simdjson_inline void append_comma() noexcept; + + /** + * Append ":" to the buffer. + */ + simdjson_inline void append_colon() noexcept; + + /** + * Append a key-value pair to the buffer. + * The key is escaped and surrounded by double quotes. + * The value is escaped if it is a string. + */ + template + simdjson_inline void append_key_value(key_type key, value_type value) noexcept; + /** + * Append the std::string_view directly, without escaping. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(std::string_view input) noexcept; + + /** + * Append len characters from str. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(const char *str, size_t len) noexcept; +#if SIMDJSON_EXCEPTIONS + /** + * Creates an std::string from the written JSON buffer. + * Throws if memory allocation failed + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content if needed. + */ + simdjson_inline operator std::string() const noexcept(false); + + /** + * Creates an std::string_view from the written JSON buffer. + * Throws if memory allocation failed. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content if needed. + */ + simdjson_inline operator std::string_view() const noexcept(false); +#endif + + /** + * Returns a view on the written JSON buffer. Returns an error + * if memory allocation failed. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content. + */ + simdjson_inline simdjson_result view() const noexcept; + + /** + * Appends the null character to the buffer and returns + * a pointer to the beginning of the written JSON buffer. + * Returns an error if memory allocation failed. + * The result is null-terminated. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content. + */ + simdjson_inline simdjson_result c_str() noexcept; + + /** + * Return true if the content is valid UTF-8. + */ + simdjson_inline bool validate_unicode() const noexcept; + + /** + * Returns the current size of the written JSON buffer. + * If an error occurred, returns 0. + */ + simdjson_inline size_t size() const noexcept; + +private: + /** + * Returns true if we can write at least upcoming_bytes bytes. + * The underlying buffer is reallocated if needed. It is designed + * to be called before writing to the buffer. It should be fast. + */ + simdjson_inline bool capacity_check(size_t upcoming_bytes); + + /** + * Grow the buffer to at least desired_capacity bytes. + * If the allocation fails, is_valid is set to false. We expect + * that this function would not be repeatedly called. + */ + simdjson_inline void grow_buffer(size_t desired_capacity); + + /** + * We use this helper function to make sure that is_valid is kept consistent. + */ + simdjson_inline void set_valid(bool valid) noexcept; + + std::unique_ptr buffer{}; + size_t position{0}; + size_t capacity{0}; + bool is_valid{true}; +}; + + + +} +} +} // namespace simdjson + +#endif // SIMDJSON_GENERIC_STRING_BUILDER_H +/* end file simdjson/generic/ondemand/json_string_builder.h for fallback */ +/* including simdjson/generic/ondemand/json_string_builder-inl.h for fallback: #include "simdjson/generic/ondemand/json_string_builder-inl.h" */ +/* begin file simdjson/generic/ondemand/json_string_builder-inl.h for fallback */ +/** + * This file is part of the builder API. It is temporarily in the ondemand + * directory but we will move it to a builder directory later. + */ +#include +#include +#include +#ifndef SIMDJSON_GENERIC_STRING_BUILDER_INL_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_INL_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/builder/json_string_builder.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ + +/* + * Empirically, we have found that an inlined optimization is important for + * performance. The following macros are not ideal. We should find a better + * way to inline the code. + */ + +#if defined(__SSE2__) || defined(__x86_64__) || defined(__x86_64) || \ + (defined(_M_AMD64) || defined(_M_X64) || \ + (defined(_M_IX86_FP) && _M_IX86_FP == 2)) +#ifndef SIMDJSON_EXPERIMENTAL_HAS_SSE2 +#define SIMDJSON_EXPERIMENTAL_HAS_SSE2 1 +#endif +#endif + +#if defined(__aarch64__) || defined(_M_ARM64) +#ifndef SIMDJSON_EXPERIMENTAL_HAS_NEON +#define SIMDJSON_EXPERIMENTAL_HAS_NEON 1 +#endif +#endif +#if SIMDJSON_EXPERIMENTAL_HAS_NEON +#include +#endif +#if SIMDJSON_EXPERIMENTAL_HAS_SSE2 +#include +#endif + +namespace simdjson { +namespace fallback { +namespace builder { + +static SIMDJSON_CONSTEXPR_LAMBDA std::array json_quotable_character = { + 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, + 1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}; + +/** + +A possible SWAR implementation of has_json_escapable_byte. It is not used because +it is slower than the current implementation. It is kept here for reference (to show +that we tried it). + +inline bool has_json_escapable_byte(uint64_t x) { + uint64_t is_ascii = 0x8080808080808080ULL & ~x; + uint64_t xor2 = x ^ 0x0202020202020202ULL; + uint64_t lt32_or_eq34 = xor2 - 0x2121212121212121ULL; + uint64_t sub92 = x ^ 0x5C5C5C5C5C5C5C5CULL; + uint64_t eq92 = (sub92 - 0x0101010101010101ULL); + return ((lt32_or_eq34 | eq92) & is_ascii) != 0; +} + +**/ + +SIMDJSON_CONSTEXPR_LAMBDA simdjson_inline bool +simple_needs_escaping(std::string_view v) { + for (char c : v) { + // a table lookup is faster than a series of comparisons + if(json_quotable_character[static_cast(c)]) { + return true; + } + } + return false; +} + +#if SIMDJSON_EXPERIMENTAL_HAS_NEON +simdjson_inline bool fast_needs_escaping(std::string_view view) { + if (view.size() < 16) { + return simple_needs_escaping(view); + } + size_t i = 0; + uint8x16_t running = vdupq_n_u8(0); + uint8x16_t v34 = vdupq_n_u8(34); + uint8x16_t v92 = vdupq_n_u8(92); + + for (; i + 15 < view.size(); i += 16) { + uint8x16_t word = vld1q_u8((const uint8_t *)view.data() + i); + running = vorrq_u8(running, vceqq_u8(word, v34)); + running = vorrq_u8(running, vceqq_u8(word, v92)); + running = vorrq_u8(running, vcltq_u8(word, vdupq_n_u8(32))); + } + if (i < view.size()) { + uint8x16_t word = + vld1q_u8((const uint8_t *)view.data() + view.length() - 16); + running = vorrq_u8(running, vceqq_u8(word, v34)); + running = vorrq_u8(running, vceqq_u8(word, v92)); + running = vorrq_u8(running, vcltq_u8(word, vdupq_n_u8(32))); + } + return vmaxvq_u32(vreinterpretq_u32_u8(running)) != 0; +} +#elif SIMDJSON_EXPERIMENTAL_HAS_SSE2 +simdjson_inline bool fast_needs_escaping(std::string_view view) { + if (view.size() < 16) { + return simple_needs_escaping(view); + } + size_t i = 0; + __m128i running = _mm_setzero_si128(); + for (; i + 15 < view.size(); i += 16) { + + __m128i word = _mm_loadu_si128(reinterpret_cast(view.data() + i)); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(34))); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(92))); + running = _mm_or_si128( + running, _mm_cmpeq_epi8(_mm_subs_epu8(word, _mm_set1_epi8(31)), + _mm_setzero_si128())); + } + if (i < view.size()) { + __m128i word = + _mm_loadu_si128(reinterpret_cast(view.data() + view.length() - 16)); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(34))); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(92))); + running = _mm_or_si128( + running, _mm_cmpeq_epi8(_mm_subs_epu8(word, _mm_set1_epi8(31)), + _mm_setzero_si128())); + } + return _mm_movemask_epi8(running) != 0; +} +#else +simdjson_inline bool fast_needs_escaping(std::string_view view) { + return simple_needs_escaping(view); +} +#endif + + +SIMDJSON_CONSTEXPR_LAMBDA inline size_t +find_next_json_quotable_character(const std::string_view view, + size_t location) noexcept { + + for (auto pos = view.begin() + location; pos != view.end(); ++pos) { + if (json_quotable_character[static_cast(*pos)]) { + return pos - view.begin(); + } + } + return size_t(view.size()); +} + +SIMDJSON_CONSTEXPR_LAMBDA static std::string_view control_chars[] = { + "\\x0000", "\\x0001", "\\x0002", "\\x0003", "\\x0004", "\\x0005", "\\x0006", + "\\x0007", "\\x0008", "\\t", "\\n", "\\x000b", "\\f", "\\r", + "\\x000e", "\\x000f", "\\x0010", "\\x0011", "\\x0012", "\\x0013", "\\x0014", + "\\x0015", "\\x0016", "\\x0017", "\\x0018", "\\x0019", "\\x001a", "\\x001b", + "\\x001c", "\\x001d", "\\x001e", "\\x001f"}; + +SIMDJSON_CONSTEXPR_LAMBDA void escape_json_char(char c, char *&out) { + if (c == '"') { + memcpy(out, "\\\"", 2); + out += 2; + } else if (c == '\\') { + memcpy(out, "\\\\", 2); + out += 2; + } else { + std::string_view v = control_chars[uint8_t(c)]; + memcpy(out, v.data(), v.size()); + out += v.size(); + } +} + +inline size_t write_string_escaped(const std::string_view input, char *out) { + size_t mysize = input.size(); + if (!fast_needs_escaping(input)) { // fast path! + memcpy(out, input.data(), input.size()); + return input.size(); + } + const char *const initout = out; + size_t location = find_next_json_quotable_character(input, 0); + memcpy(out, input.data(), location); + out += location; + escape_json_char(input[location], out); + location += 1; + while (location < mysize) { + size_t newlocation = find_next_json_quotable_character(input, location); + memcpy(out, input.data() + location, newlocation - location); + out += newlocation - location; + location = newlocation; + if (location == mysize) { + break; + } + escape_json_char(input[location], out); + location += 1; + } + return out - initout; +} + +#if SIMDJSON_CONSTEVAL +// unoptimized, meant for compile-time execution +consteval std::string consteval_to_quoted_escaped(std::string_view input) { + std::string out = "\""; + for (char c : input) { + if (json_quotable_character[uint8_t(c)]) { + if (c == '"') { + out.append("\\\""); + } else if (c == '\\') { + out.append("\\\\"); + } else { + std::string_view v = control_chars[uint8_t(c)]; + out.append(v); + } + } else { + out.push_back(c); + } + } + out.push_back('"'); + return out; +} +#endif // SIMDJSON_CONSTEVAL + +simdjson_inline string_builder::string_builder(size_t initial_capacity) + : buffer(new(std::nothrow) char[initial_capacity]), position(0), + capacity(buffer.get() != nullptr ? initial_capacity : 0), + is_valid(buffer.get() != nullptr) {} + +simdjson_inline bool string_builder::capacity_check(size_t upcoming_bytes) { + // We use the convention that when is_valid is false, then the capacity and + // the position are 0. + // Most of the time, this function will return true. + if (simdjson_likely(upcoming_bytes <= capacity - position)) { + return true; + } + // check for overflow, most of the time there is no overflow + if (simdjson_likely(position + upcoming_bytes < position)) { + return false; + } + // We will rarely get here. + grow_buffer((std::max)(capacity * 2, position + upcoming_bytes)); + // If the buffer allocation failed, we set is_valid to false. + return is_valid; +} + +simdjson_inline void string_builder::grow_buffer(size_t desired_capacity) { + if (!is_valid) { + return; + } + std::unique_ptr new_buffer(new (std::nothrow) char[desired_capacity]); + if (new_buffer.get() == nullptr) { + set_valid(false); + return; + } + std::memcpy(new_buffer.get(), buffer.get(), position); + buffer.swap(new_buffer); + capacity = desired_capacity; +} + +simdjson_inline void string_builder::set_valid(bool valid) noexcept { + if (!valid) { + is_valid = false; + capacity = 0; + position = 0; + buffer.reset(); + } else { + is_valid = true; + } +} + +simdjson_inline size_t string_builder::size() const noexcept { + return position; +} + +simdjson_inline void string_builder::append(char c) noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = c; + } +} + +simdjson_inline void string_builder::append_null() noexcept { + constexpr char null_literal[] = "null"; + constexpr size_t null_len = sizeof(null_literal) - 1; + if (capacity_check(null_len)) { + std::memcpy(buffer.get() + position, null_literal, null_len); + position += null_len; + } +} + +simdjson_inline void string_builder::clear() noexcept { + position = 0; + // if it was invalid, we should try to repair it + if (!is_valid) { + capacity = 0; + buffer.reset(); + is_valid = true; + } +} + +namespace internal { + +// We could specialize further for 32-bit integers. +int int_log2(uint32_t x) { return (63 - leading_zeroes(x | 1)); } + +int fast_digit_count(uint32_t x) { + static uint64_t table[] = { + 4294967296, 8589934582, 8589934582, 8589934582, 12884901788, + 12884901788, 12884901788, 17179868184, 17179868184, 17179868184, + 21474826480, 21474826480, 21474826480, 21474826480, 25769703776, + 25769703776, 25769703776, 30063771072, 30063771072, 30063771072, + 34349738368, 34349738368, 34349738368, 34349738368, 38554705664, + 38554705664, 38554705664, 41949672960, 41949672960, 41949672960, + 42949672960, 42949672960}; + return uint32_t((x + table[int_log2(x)]) >> 32); +} + +int int_log2(uint64_t x) { return 63 - leading_zeroes(x | 1); } + +int fast_digit_count(uint64_t x) { + static uint64_t table[] = {9, + 99, + 999, + 9999, + 99999, + 999999, + 9999999, + 99999999, + 999999999, + 9999999999, + 99999999999, + 999999999999, + 9999999999999, + 99999999999999, + 999999999999999ULL, + 9999999999999999ULL, + 99999999999999999ULL, + 999999999999999999ULL, + 9999999999999999999ULL}; + int y = (19 * int_log2(x) >> 6); + y += x > table[y]; + return y + 1; +} + +template ::value>::type> +simdjson_inline size_t digit_count(number_type v) noexcept { + static_assert(sizeof(number_type) == 8 || sizeof(number_type) == 4 || + sizeof(number_type) == 2 || sizeof(number_type) == 1, + "We only support 8-bit, 16-bit, 32-bit and 64-bit numbers"); + return fast_digit_count(v); +} +static const char decimal_table[200] = { + 0x30, 0x30, 0x30, 0x31, 0x30, 0x32, 0x30, 0x33, 0x30, 0x34, 0x30, 0x35, + 0x30, 0x36, 0x30, 0x37, 0x30, 0x38, 0x30, 0x39, 0x31, 0x30, 0x31, 0x31, + 0x31, 0x32, 0x31, 0x33, 0x31, 0x34, 0x31, 0x35, 0x31, 0x36, 0x31, 0x37, + 0x31, 0x38, 0x31, 0x39, 0x32, 0x30, 0x32, 0x31, 0x32, 0x32, 0x32, 0x33, + 0x32, 0x34, 0x32, 0x35, 0x32, 0x36, 0x32, 0x37, 0x32, 0x38, 0x32, 0x39, + 0x33, 0x30, 0x33, 0x31, 0x33, 0x32, 0x33, 0x33, 0x33, 0x34, 0x33, 0x35, + 0x33, 0x36, 0x33, 0x37, 0x33, 0x38, 0x33, 0x39, 0x34, 0x30, 0x34, 0x31, + 0x34, 0x32, 0x34, 0x33, 0x34, 0x34, 0x34, 0x35, 0x34, 0x36, 0x34, 0x37, + 0x34, 0x38, 0x34, 0x39, 0x35, 0x30, 0x35, 0x31, 0x35, 0x32, 0x35, 0x33, + 0x35, 0x34, 0x35, 0x35, 0x35, 0x36, 0x35, 0x37, 0x35, 0x38, 0x35, 0x39, + 0x36, 0x30, 0x36, 0x31, 0x36, 0x32, 0x36, 0x33, 0x36, 0x34, 0x36, 0x35, + 0x36, 0x36, 0x36, 0x37, 0x36, 0x38, 0x36, 0x39, 0x37, 0x30, 0x37, 0x31, + 0x37, 0x32, 0x37, 0x33, 0x37, 0x34, 0x37, 0x35, 0x37, 0x36, 0x37, 0x37, + 0x37, 0x38, 0x37, 0x39, 0x38, 0x30, 0x38, 0x31, 0x38, 0x32, 0x38, 0x33, + 0x38, 0x34, 0x38, 0x35, 0x38, 0x36, 0x38, 0x37, 0x38, 0x38, 0x38, 0x39, + 0x39, 0x30, 0x39, 0x31, 0x39, 0x32, 0x39, 0x33, 0x39, 0x34, 0x39, 0x35, + 0x39, 0x36, 0x39, 0x37, 0x39, 0x38, 0x39, 0x39, +}; +} // namespace internal + +template +simdjson_inline void string_builder::append(number_type v) noexcept { + static_assert(std::is_same::value || + std::is_integral::value || + std::is_floating_point::value, + "Unsupported number type"); + // If C++17 is available, we can 'if constexpr' here. + SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + if (v) { + constexpr char true_literal[] = "true"; + constexpr size_t true_len = sizeof(true_literal) - 1; + if (capacity_check(true_len)) { + std::memcpy(buffer.get() + position, true_literal, true_len); + position += true_len; + } + } else { + constexpr char false_literal[] = "false"; + constexpr size_t false_len = sizeof(false_literal) - 1; + if (capacity_check(false_len)) { + std::memcpy(buffer.get() + position, false_literal, false_len); + position += false_len; + } + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_unsigned::value) { + constexpr size_t max_number_size = 20; + if (capacity_check(max_number_size)) { + using unsigned_type = typename std::make_unsigned::type; + unsigned_type pv = static_cast(v); + size_t dc = internal::digit_count(pv); + char *write_pointer = buffer.get() + position + dc - 1; + while (pv >= 100) { + memcpy(write_pointer - 1, &internal::decimal_table[(pv % 100)*2], 2); + write_pointer -= 2; + pv /= 100; + } + if (pv >= 10) { + *write_pointer-- = char('0' + (pv % 10)); + pv /= 10; + } + *write_pointer = char('0' + pv); + position += dc; + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_integral::value) { + constexpr size_t max_number_size = 20; + if (capacity_check(max_number_size)) { + using unsigned_type = typename std::make_unsigned::type; + bool negative = v < 0; + unsigned_type pv = static_cast(v); + if (negative) { + pv = 0 - pv; // the 0 is for Microsoft + } + size_t dc = internal::digit_count(pv); + if (negative) { + buffer.get()[position++] = '-'; + } + char *write_pointer = buffer.get() + position + dc - 1; + while (pv >= 100) { + memcpy(write_pointer - 1, &internal::decimal_table[(pv % 100)*2], 2); + write_pointer -= 2; + pv /= 100; + } + if (pv >= 10) { + *write_pointer-- = char('0' + (pv % 10)); + pv /= 10; + } + *write_pointer = char('0' + pv); + position += dc; + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_floating_point::value) { + constexpr size_t max_number_size = 24; + if (capacity_check(max_number_size)) { + // We could specialize for float. + char *end = simdjson::internal::to_chars(buffer.get() + position, nullptr, + double(v)); + position = end - buffer.get(); + } + } +} + +simdjson_inline void +string_builder::escape_and_append(std::string_view input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(6 * input.size())) { + position += write_string_escaped(input, buffer.get() + position); + } +} + +simdjson_inline void +string_builder::escape_and_append_with_quotes(std::string_view input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(2 + 6 * input.size())) { + buffer.get()[position++] = '"'; + position += write_string_escaped(input, buffer.get() + position); + buffer.get()[position++] = '"'; + } +} + +simdjson_inline void +string_builder::escape_and_append_with_quotes(char input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(2 + 6 * 1)) { + buffer.get()[position++] = '"'; + std::string_view cinput(&input, 1); + position += write_string_escaped(cinput, buffer.get() + position); + buffer.get()[position++] = '"'; + } +} + +simdjson_inline void string_builder::escape_and_append_with_quotes(const char* input) noexcept { + std::string_view cinput(input); + escape_and_append_with_quotes(cinput); +} + +simdjson_inline void string_builder::append_raw(const char *c) noexcept { + size_t len = std::strlen(c); + append_raw(c, len); +} + +simdjson_inline void +string_builder::append_raw(std::string_view input) noexcept { + if (capacity_check(input.size())) { + std::memcpy(buffer.get() + position, input.data(), input.size()); + position += input.size(); + } +} + +simdjson_inline void string_builder::append_raw(const char *str, + size_t len) noexcept { + if (capacity_check(len)) { + std::memcpy(buffer.get() + position, str, len); + position += len; + } +} + +#if SIMDJSON_EXCEPTIONS +simdjson_inline string_builder::operator std::string() const noexcept(false) { + return std::string(std::string_view()); +} + +simdjson_inline string_builder::operator std::string_view() const + noexcept(false) { + return view(); +} +#endif + +simdjson_inline simdjson_result +string_builder::view() const noexcept { + if (!is_valid) { + return simdjson::OUT_OF_CAPACITY; + } + return std::string_view(buffer.get(), position); +} + +simdjson_inline simdjson_result string_builder::c_str() noexcept { + if (capacity_check(1)) { + buffer.get()[position] = '\0'; + return buffer.get(); + } + return simdjson::OUT_OF_CAPACITY; +} + +simdjson_inline bool string_builder::validate_unicode() const noexcept { + return simdjson::validate_utf8(buffer.get(), position); +} + +simdjson_inline void string_builder::start_object() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '{'; + } +} + + +simdjson_inline void string_builder::end_object() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '}'; + } +} + + +simdjson_inline void string_builder::start_array() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '['; + } +} + + +simdjson_inline void string_builder::end_array() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ']'; + } +} + + +simdjson_inline void string_builder::append_comma() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ','; + } +} + + +simdjson_inline void string_builder::append_colon() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ':'; + } +} + +template +simdjson_inline void string_builder::append_key_value(key_type key, value_type value) noexcept { + static_assert( + std::is_arithmetic::value || + std::is_same::value || + std::is_same::value || + std::is_convertible::value || + std::is_same::value, + "Unsupported value type"); + static_assert( + std::is_same::value || + std::is_convertible::value, + "Unsupported key type"); + escape_and_append_with_quotes(key); + append_colon(); + SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + append_null(); + } else SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + escape_and_append_with_quotes(value); + } else SIMDJSON_IF_CONSTEXPR(std::is_convertible::value) { + escape_and_append_with_quotes(value); + } else SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + escape_and_append_with_quotes(value); + } else { + append(value); + } +} + +} // namespace builder +} // namespace fallback +} // namespace simdjson + +#endif // SIMDJSON_GENERIC_STRING_BUILDER_INL_H +/* end file simdjson/generic/ondemand/json_string_builder-inl.h for fallback */ +/* including simdjson/generic/ondemand/json_builder.h for fallback: #include "simdjson/generic/ondemand/json_builder.h" */ +/* begin file simdjson/generic/ondemand/json_builder.h for fallback */ +/** + * This file is part of the builder API. It is temporarily in the ondemand directory + * but we will move it to a builder directory later. + */ +#ifndef SIMDJSON_GENERIC_BUILDER_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/builder/json_string_builder.h" */ +/* amalgamation skipped (editor-only): #include "simdjson/concepts.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ +#if SIMDJSON_STATIC_REFLECTION + +#include +#include +#include +#include +#include +#include +// #include // for std::define_static_string - header not available yet + +namespace simdjson { +namespace fallback { +namespace builder { + +// Concept that checks if a type is a container but not a string (because +// strings handling must be handled differently) +template +concept container_but_not_string = + requires(T a) { + { a.size() } -> std::convertible_to; + { + a[std::declval()] + }; // check if elements are accessible for the subscript operator + } && !std::is_same_v && + !std::is_same_v && !std::is_same_v; + +template + requires(container_but_not_string) +constexpr void atom(string_builder &b, const T &t) { + if (t.size() == 0) { + b.append_raw("[]"); + return; + } + b.append('['); + atom(b, t[0]); + for (size_t i = 1; i < t.size(); ++i) { + b.append(','); + atom(b, t[i]); + } + b.append(']'); +} + +template + requires(std::is_same_v || + std::is_same_v || + std::is_same_v || + std::is_same_v) +constexpr void atom(string_builder &b, const T &t) { + b.escape_and_append_with_quotes(t); +} + +template +constexpr void atom(string_builder &b, const T &m) { + if (m.empty()) { + b.append_raw("{}"); + return; + } + b.append('{'); + bool first = true; + for (const auto& [key, value] : m) { + if (!first) { + b.append(','); + } + first = false; + // Keys must be convertible to string_view per the concept + b.escape_and_append_with_quotes(key); + b.append(':'); + atom(b, value); + } + b.append('}'); +} + + +template::value && !std::is_same_v>::type> +constexpr void atom(string_builder &b, const number_type t) { + b.append(t); +} +#if SIMDJSON_CONSTEVAL +consteval std::string consteval_to_quoted_escaped(std::string_view input); +#endif + +template + requires(std::is_class_v && !container_but_not_string && + !concepts::string_view_keyed_map && + !std::is_same_v && + !std::is_same_v) +constexpr void atom(string_builder &b, const T &t) { + int i = 0; + b.append('{'); + [:expand(std::meta::nonstatic_data_members_of(^^T, std::meta::access_context::unchecked())):] >> [&]() { + if (i != 0) + b.append(','); + constexpr auto key = std::define_static_string(consteval_to_quoted_escaped(std::meta::identifier_of(dm))); + b.append_raw(key); + b.append(':'); + atom(b, t.[:dm:]); + i++; + }; + b.append('}'); +} + +// works for struct +template void append(string_builder &b, const Z &z) { + int i = 0; + b.append('{'); + [:expand(std::meta::nonstatic_data_members_of(^^Z, std::meta::access_context::unchecked())):] >> [&]() { + if (i != 0) + b.append(','); + constexpr auto key = std::define_static_string(consteval_to_quoted_escaped(std::meta::identifier_of(dm))); + b.append_raw(key); + b.append(':'); + atom(b, z.[:dm:]); + i++; + }; + b.append('}'); +} + +// works for container +template + requires(container_but_not_string) +void append(string_builder &b, const Z &z) { + if (z.size() == 0) { + b.append_raw("[]"); + return; + } + b.append('['); + atom(b, z[0]); + for (size_t i = 1; i < z.size(); ++i) { + b.append(','); + atom(b, z[i]); + } + b.append(']'); +} + +template +simdjson_result to_json_string(const Z &z) { + string_builder b; + append(b, z); + std::string_view s; + if(auto e = b.view().get(s); e) { return e; } + return std::string(s); +} + +template +simdjson_error to_json(const Z &z, std::string &s) { + string_builder b; + append(b, z); + std::string_view view; + if(auto e = b.view().get(view); e) { return e; } + s.assign(view); + return SUCCESS; +} +} // namespace json_builder +} // namespace fallback +} // namespace simdjson +#endif // SIMDJSON_STATIC_REFLECTION + +#endif +/* end file simdjson/generic/ondemand/json_builder.h for fallback */ /* end file simdjson/generic/ondemand/amalgamated.h for fallback */ /* including simdjson/fallback/end.h: #include "simdjson/fallback/end.h" */ @@ -54596,6 +57681,31 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 32; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits); } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + uint64_t((is_backslash | is_quote | is_control).to_bitmask()) + }; +} + } // unnamed namespace } // namespace haswell } // namespace simdjson @@ -54752,10 +57862,26 @@ concept nothrow_deserializable = nothrow_custom_deserializable || is_bu /// Deserialize Tag inline constexpr struct deserialize_tag { + using array_type = haswell::ondemand::array; + using object_type = haswell::ondemand::object; using value_type = haswell::ondemand::value; using document_type = haswell::ondemand::document; using document_reference_type = haswell::ondemand::document_reference; + // Customization Point for array + template + requires custom_deserializable + [[nodiscard]] constexpr /* error_code */ auto operator()(array_type &object, T& output) const noexcept(nothrow_custom_deserializable) { + return tag_invoke(*this, object, output); + } + + // Customization Point for object + template + requires custom_deserializable + [[nodiscard]] constexpr /* error_code */ auto operator()(object_type &object, T& output) const noexcept(nothrow_custom_deserializable) { + return tag_invoke(*this, object, output); + } + // Customization Point for value template requires custom_deserializable @@ -55323,6 +58449,7 @@ public: * * You may use get_double(), get_bool(), get_uint64(), get_int64(), * get_object(), get_array(), get_raw_json_string(), or get_string() instead. + * When SIMDJSON_SUPPORTS_DESERIALIZATION is set, custom types are also supported. * * @returns A value of the given type, parsed from the JSON. * @returns INCORRECT_TYPE If the JSON value is not the given type. @@ -55346,6 +58473,7 @@ public: * Get this value as the given type. * * Supported types: object, array, raw_json_string, string_view, uint64_t, int64_t, double, bool + * If the macro SIMDJSON_SUPPORTS_DESERIALIZATION is set, then custom types are also supported. * * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. * @returns INCORRECT_TYPE If the JSON value is not an object. @@ -57588,6 +60716,37 @@ public: * - INDEX_OUT_OF_BOUNDS if the array index is larger than an array length */ simdjson_inline simdjson_result at(size_t index) noexcept; + +#if SIMDJSON_SUPPORTS_DESERIALIZATION + /** + * Get this array as the given type. + * + * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. + * @returns INCORRECT_TYPE If the JSON array is not of the given type. + * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. + */ + template + simdjson_inline error_code get(T &out) + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) { + static_assert(custom_deserializable); + return deserialize(*this, out); + } + /** + * Get this array as the given type. + * + * @returns A value of the given type, parsed from the JSON. + * @returns INCORRECT_TYPE If the JSON value is not the given type. + */ + template + simdjson_inline simdjson_result get() + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) + { + static_assert(std::is_default_constructible::value, "The specified type is not default constructible."); + T out{}; + SIMDJSON_TRY(get(out)); + return out; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION protected: /** * Go to the end of the array, no matter where you are right now. @@ -57666,7 +60825,28 @@ public: simdjson_inline simdjson_result at_pointer(std::string_view json_pointer) noexcept; simdjson_inline simdjson_result at_path(std::string_view json_path) noexcept; simdjson_inline simdjson_result raw_json() noexcept; +#if SIMDJSON_SUPPORTS_DESERIALIZATION + // TODO: move this code into object-inl.h + template + simdjson_inline simdjson_result get() noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + return first; + } + return first.get(); + } + template + simdjson_inline error_code get(T& out) noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + out = first; + } else { + SIMDJSON_TRY( first.get(out) ); + } + return SUCCESS; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION }; } // namespace simdjson @@ -58000,7 +61180,7 @@ public: * Be mindful that the document instance must remain in scope while you are accessing object, array and value instances. * * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. - * @returns INCORRECT_TYPE If the JSON value is not an object. + * @returns INCORRECT_TYPE If the JSON value is of the given type. * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. */ template @@ -59487,6 +62667,36 @@ public: */ simdjson_inline simdjson_result raw_json() noexcept; +#if SIMDJSON_SUPPORTS_DESERIALIZATION + /** + * Get this object as the given type. + * + * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. + * @returns INCORRECT_TYPE If the JSON object is not of the given type. + * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. + */ + template + simdjson_inline error_code get(T &out) + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) { + static_assert(custom_deserializable); + return deserialize(*this, out); + } + /** + * Get this array as the given type. + * + * @returns A value of the given type, parsed from the JSON. + * @returns INCORRECT_TYPE If the JSON value is not the given type. + */ + template + simdjson_inline simdjson_result get() + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) + { + static_assert(std::is_default_constructible::value, "The specified type is not default constructible."); + T out{}; + SIMDJSON_TRY(get(out)); + return out; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION protected: /** * Go to the end of the object, no matter where you are right now. @@ -59530,12 +62740,32 @@ public: simdjson_inline simdjson_result operator[](std::string_view key) && noexcept; simdjson_inline simdjson_result at_pointer(std::string_view json_pointer) noexcept; simdjson_inline simdjson_result at_path(std::string_view json_path) noexcept; - inline simdjson_result reset() noexcept; inline simdjson_result is_empty() noexcept; inline simdjson_result count_fields() & noexcept; inline simdjson_result raw_json() noexcept; + #if SIMDJSON_SUPPORTS_DESERIALIZATION + // TODO: move this code into object-inl.h + template + simdjson_inline simdjson_result get() noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + return first; + } + return first.get(); + } + template + simdjson_inline error_code get(T& out) noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + out = first; + } else { + SIMDJSON_TRY( first.get(out) ); + } + return SUCCESS; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION }; } // namespace simdjson @@ -59740,12 +62970,17 @@ inline std::ostream& operator<<(std::ostream& out, simdjson::simdjson_result #include +#if SIMDJSON_STATIC_REFLECTION +#include +// #include // for std::define_static_string - header not available yet +#endif namespace simdjson { template @@ -59792,6 +63027,22 @@ error_code tag_invoke(deserialize_tag, auto &val, T &out) noexcept { return SUCCESS; } +////////////////////////////// +// String deserialization +////////////////////////////// + +// just a character! +error_code tag_invoke(deserialize_tag, auto &val, char &out) noexcept { + std::string_view x; + SIMDJSON_TRY(val.get_string().get(x)); + if(x.size() != 1) { + return INCORRECT_TYPE; + } + out = x[0]; + return SUCCESS; +} + +// any string-like type (can be constructed from std::string_view) template requires(!require_custom_serialization) error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(std::is_nothrow_constructible_v) { @@ -59813,15 +63064,20 @@ template requires(!require_custom_serialization) error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(false) { using value_type = typename std::remove_cvref_t::value_type; - static_assert( + /*static_assert( deserializable, - "The specified type inside the container must itself be deserializable"); + "The specified type inside the container must itself be deserializable");*/ static_assert( std::is_default_constructible_v, "The specified type inside the container must default constructible."); haswell::ondemand::array arr; - SIMDJSON_TRY(val.get_array().get(arr)); + if constexpr (std::is_same_v, haswell::ondemand::array>) { + arr = val; + } else { + SIMDJSON_TRY(val.get_array().get(arr)); + } + for (auto v : arr) { if constexpr (concepts::returns_reference) { if (auto const err = v.get().get(concepts::emplace_one(out)); @@ -59878,7 +63134,45 @@ error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(false) { return SUCCESS; } +template +error_code tag_invoke(deserialize_tag, haswell::ondemand::object &obj, T &out) noexcept { + using value_type = typename std::remove_cvref_t::mapped_type; + out.clear(); + for (auto field : obj) { + std::string_view key; + SIMDJSON_TRY(field.unescaped_key().get(key)); + + haswell::ondemand::value value_obj; + SIMDJSON_TRY(field.value().get(value_obj)); + + value_type this_value; + SIMDJSON_TRY(value_obj.get(this_value)); + out.emplace(typename T::key_type(key), std::move(this_value)); + } + return SUCCESS; +} + +template +error_code tag_invoke(deserialize_tag, haswell::ondemand::value &val, T &out) noexcept { + haswell::ondemand::object obj; + SIMDJSON_TRY(val.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} + +template +error_code tag_invoke(deserialize_tag, haswell::ondemand::document &doc, T &out) noexcept { + haswell::ondemand::object obj; + SIMDJSON_TRY(doc.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} + +template +error_code tag_invoke(deserialize_tag, haswell::ondemand::document_reference &doc, T &out) noexcept { + haswell::ondemand::object obj; + SIMDJSON_TRY(doc.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} /** @@ -59940,6 +63234,199 @@ error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(nothrow_deser return SUCCESS; } + +#if SIMDJSON_STATIC_REFLECTION + + +template +constexpr bool user_defined_type = (std::is_class_v +&& !std::is_same_v && !std::is_same_v && !concepts::optional_type && +!concepts::appendable_containers && !require_custom_serialization); + + +// workaround from +// https://www.open-std.org/jtc1/sc22/wg21/docs/papers/2024/p2996r10.html#back-and-forth +// for missing expansion statements +namespace __impl { + template + struct replicator_type { + template + constexpr void operator>>(F body) const { + (body.template operator()(), ...); + } + }; + + template + replicator_type replicator = {}; +} + +template +consteval auto expand(R range) { + std::vector args; + for (auto r : range) { + args.push_back(reflect_value(r)); + } + return substitute(^^__impl::replicator, args); +} +// end of workaround + +template + requires(user_defined_type && std::is_class_v) +error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept { + haswell::ondemand::object obj; + if constexpr (std::is_same_v, haswell::ondemand::object>) { + obj = val; + } else { + SIMDJSON_TRY(val.get_object().get(obj)); + } + error_code e = simdjson::SUCCESS; + + [:expand(std::meta::nonstatic_data_members_of(^^T, std::meta::access_context::unchecked())):] >> [&]() { + if constexpr (!std::meta::is_const(mem) && std::meta::is_public(mem)) { + constexpr std::string_view key = std::define_static_string(std::meta::identifier_of(mem)); + static_assert( + deserializable, + "The specified type inside the class must itself be deserializable"); + // as long we are succesful or the field is not found, we continue + if(e == simdjson::SUCCESS || e == simdjson::NO_SUCH_FIELD) { + obj[key].get(out.[:mem:]); + } + } + }; + return e; +} +template + requires(user_defined_type>) +error_code tag_invoke(deserialize_tag, simdjson_value &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { + return MEMALLOC; + } + } + if (auto err = val.get(*out)) { + out.reset(); + return err; + } + return SUCCESS; +} + +template + requires(user_defined_type>) +error_code tag_invoke(deserialize_tag, simdjson_value &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { + return MEMALLOC; + } + } + if (auto err = val.get(*out)) { + out.reset(); + return err; + } + return SUCCESS; +} + +#endif // SIMDJSON_STATIC_REFLECTION + +//////////////////////////////////////// +// Unique pointers +//////////////////////////////////////// +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_bool().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_int64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_uint64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_double().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_string().get(*out)); + return SUCCESS; +} + + +//////////////////////////////////////// +// Shared pointers +//////////////////////////////////////// +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_bool().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_int64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_uint64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_double().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_string().get(*out)); + return SUCCESS; +} + + } // namespace simdjson #endif // SIMDJSON_ONDEMAND_DESERIALIZE_H @@ -63427,6 +66914,7 @@ simdjson_inline simdjson_result simdjson_result::simdjson_res #endif // SIMDJSON_GENERIC_ONDEMAND_VALUE_ITERATOR_INL_H /* end file simdjson/generic/ondemand/value_iterator-inl.h for haswell */ +// JSON builder, ideally they should not be part of the ondemand directory +// but it is convenient for now to have them here. +/* including simdjson/generic/ondemand/json_string_builder.h for haswell: #include "simdjson/generic/ondemand/json_string_builder.h" */ +/* begin file simdjson/generic/ondemand/json_string_builder.h for haswell */ +/** + * This file is part of the builder API. It is temporarily in the ondemand directory + * but we will move it to a builder directory later. + */ +#ifndef SIMDJSON_GENERIC_STRING_BUILDER_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/implementation_simdjson_result_base.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ + +namespace simdjson { +namespace haswell { +namespace builder { + +/** + * A builder for JSON strings representing documents. This is a low-level + * builder that is not meant to be used directly by end-users. Though it + * supports atomic types (Booleans, strings), it does not support composed + * types (arrays and objects). + * + * Ultimately, this class should support kernel-specific optimizations. E.g., + * it may make use of SIMD instructions to escape strings faster. + */ +class string_builder { +public: + simdjson_inline string_builder(size_t initial_capacity = 1024); + + /** + * Append number (includes Booleans). Booleans are mapped to the strings + * false and true. Numbers are converted to strings abiding by the JSON standard. + * Floating-point numbers are converted to the shortest string that 'correctly' + * represents the number. + */ + template::value>::type> + simdjson_inline void append(number_type v) noexcept; + + /** + * Append character c. + */ + simdjson_inline void append(char c) noexcept; + + /** + * Append the string 'null'. + */ + simdjson_inline void append_null() noexcept; + + /** + * Clear the content. + */ + simdjson_inline void clear() noexcept; + + /** + * Append the std::string_view, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append(std::string_view input) noexcept; + + /** + * Append the std::string_view surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(std::string_view input) noexcept; + + /** + * Append the character surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(char input) noexcept; + + /** + * Append the character surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(const char* input) noexcept; + + /** + * Append the C string directly, without escaping. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(const char *c) noexcept; + + /** + * Append "{" to the buffer. + */ + simdjson_inline void start_object() noexcept; + + /** + * Append "}" to the buffer. + */ + simdjson_inline void end_object() noexcept; + + /** + * Append "[" to the buffer. + */ + simdjson_inline void start_array() noexcept; + + /** + * Append "]" to the buffer. + */ + simdjson_inline void end_array() noexcept; + + /** + * Append "," to the buffer. + */ + simdjson_inline void append_comma() noexcept; + + /** + * Append ":" to the buffer. + */ + simdjson_inline void append_colon() noexcept; + + /** + * Append a key-value pair to the buffer. + * The key is escaped and surrounded by double quotes. + * The value is escaped if it is a string. + */ + template + simdjson_inline void append_key_value(key_type key, value_type value) noexcept; + /** + * Append the std::string_view directly, without escaping. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(std::string_view input) noexcept; + + /** + * Append len characters from str. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(const char *str, size_t len) noexcept; +#if SIMDJSON_EXCEPTIONS + /** + * Creates an std::string from the written JSON buffer. + * Throws if memory allocation failed + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content if needed. + */ + simdjson_inline operator std::string() const noexcept(false); + + /** + * Creates an std::string_view from the written JSON buffer. + * Throws if memory allocation failed. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content if needed. + */ + simdjson_inline operator std::string_view() const noexcept(false); +#endif + + /** + * Returns a view on the written JSON buffer. Returns an error + * if memory allocation failed. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content. + */ + simdjson_inline simdjson_result view() const noexcept; + + /** + * Appends the null character to the buffer and returns + * a pointer to the beginning of the written JSON buffer. + * Returns an error if memory allocation failed. + * The result is null-terminated. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content. + */ + simdjson_inline simdjson_result c_str() noexcept; + + /** + * Return true if the content is valid UTF-8. + */ + simdjson_inline bool validate_unicode() const noexcept; + + /** + * Returns the current size of the written JSON buffer. + * If an error occurred, returns 0. + */ + simdjson_inline size_t size() const noexcept; + +private: + /** + * Returns true if we can write at least upcoming_bytes bytes. + * The underlying buffer is reallocated if needed. It is designed + * to be called before writing to the buffer. It should be fast. + */ + simdjson_inline bool capacity_check(size_t upcoming_bytes); + + /** + * Grow the buffer to at least desired_capacity bytes. + * If the allocation fails, is_valid is set to false. We expect + * that this function would not be repeatedly called. + */ + simdjson_inline void grow_buffer(size_t desired_capacity); + + /** + * We use this helper function to make sure that is_valid is kept consistent. + */ + simdjson_inline void set_valid(bool valid) noexcept; + + std::unique_ptr buffer{}; + size_t position{0}; + size_t capacity{0}; + bool is_valid{true}; +}; + + + +} +} +} // namespace simdjson + +#endif // SIMDJSON_GENERIC_STRING_BUILDER_H +/* end file simdjson/generic/ondemand/json_string_builder.h for haswell */ +/* including simdjson/generic/ondemand/json_string_builder-inl.h for haswell: #include "simdjson/generic/ondemand/json_string_builder-inl.h" */ +/* begin file simdjson/generic/ondemand/json_string_builder-inl.h for haswell */ +/** + * This file is part of the builder API. It is temporarily in the ondemand + * directory but we will move it to a builder directory later. + */ +#include +#include +#include +#ifndef SIMDJSON_GENERIC_STRING_BUILDER_INL_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_INL_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/builder/json_string_builder.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ + +/* + * Empirically, we have found that an inlined optimization is important for + * performance. The following macros are not ideal. We should find a better + * way to inline the code. + */ + +#if defined(__SSE2__) || defined(__x86_64__) || defined(__x86_64) || \ + (defined(_M_AMD64) || defined(_M_X64) || \ + (defined(_M_IX86_FP) && _M_IX86_FP == 2)) +#ifndef SIMDJSON_EXPERIMENTAL_HAS_SSE2 +#define SIMDJSON_EXPERIMENTAL_HAS_SSE2 1 +#endif +#endif + +#if defined(__aarch64__) || defined(_M_ARM64) +#ifndef SIMDJSON_EXPERIMENTAL_HAS_NEON +#define SIMDJSON_EXPERIMENTAL_HAS_NEON 1 +#endif +#endif +#if SIMDJSON_EXPERIMENTAL_HAS_NEON +#include +#endif +#if SIMDJSON_EXPERIMENTAL_HAS_SSE2 +#include +#endif + +namespace simdjson { +namespace haswell { +namespace builder { + +static SIMDJSON_CONSTEXPR_LAMBDA std::array json_quotable_character = { + 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, + 1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}; + +/** + +A possible SWAR implementation of has_json_escapable_byte. It is not used because +it is slower than the current implementation. It is kept here for reference (to show +that we tried it). + +inline bool has_json_escapable_byte(uint64_t x) { + uint64_t is_ascii = 0x8080808080808080ULL & ~x; + uint64_t xor2 = x ^ 0x0202020202020202ULL; + uint64_t lt32_or_eq34 = xor2 - 0x2121212121212121ULL; + uint64_t sub92 = x ^ 0x5C5C5C5C5C5C5C5CULL; + uint64_t eq92 = (sub92 - 0x0101010101010101ULL); + return ((lt32_or_eq34 | eq92) & is_ascii) != 0; +} + +**/ + +SIMDJSON_CONSTEXPR_LAMBDA simdjson_inline bool +simple_needs_escaping(std::string_view v) { + for (char c : v) { + // a table lookup is faster than a series of comparisons + if(json_quotable_character[static_cast(c)]) { + return true; + } + } + return false; +} + +#if SIMDJSON_EXPERIMENTAL_HAS_NEON +simdjson_inline bool fast_needs_escaping(std::string_view view) { + if (view.size() < 16) { + return simple_needs_escaping(view); + } + size_t i = 0; + uint8x16_t running = vdupq_n_u8(0); + uint8x16_t v34 = vdupq_n_u8(34); + uint8x16_t v92 = vdupq_n_u8(92); + + for (; i + 15 < view.size(); i += 16) { + uint8x16_t word = vld1q_u8((const uint8_t *)view.data() + i); + running = vorrq_u8(running, vceqq_u8(word, v34)); + running = vorrq_u8(running, vceqq_u8(word, v92)); + running = vorrq_u8(running, vcltq_u8(word, vdupq_n_u8(32))); + } + if (i < view.size()) { + uint8x16_t word = + vld1q_u8((const uint8_t *)view.data() + view.length() - 16); + running = vorrq_u8(running, vceqq_u8(word, v34)); + running = vorrq_u8(running, vceqq_u8(word, v92)); + running = vorrq_u8(running, vcltq_u8(word, vdupq_n_u8(32))); + } + return vmaxvq_u32(vreinterpretq_u32_u8(running)) != 0; +} +#elif SIMDJSON_EXPERIMENTAL_HAS_SSE2 +simdjson_inline bool fast_needs_escaping(std::string_view view) { + if (view.size() < 16) { + return simple_needs_escaping(view); + } + size_t i = 0; + __m128i running = _mm_setzero_si128(); + for (; i + 15 < view.size(); i += 16) { + + __m128i word = _mm_loadu_si128(reinterpret_cast(view.data() + i)); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(34))); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(92))); + running = _mm_or_si128( + running, _mm_cmpeq_epi8(_mm_subs_epu8(word, _mm_set1_epi8(31)), + _mm_setzero_si128())); + } + if (i < view.size()) { + __m128i word = + _mm_loadu_si128(reinterpret_cast(view.data() + view.length() - 16)); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(34))); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(92))); + running = _mm_or_si128( + running, _mm_cmpeq_epi8(_mm_subs_epu8(word, _mm_set1_epi8(31)), + _mm_setzero_si128())); + } + return _mm_movemask_epi8(running) != 0; +} +#else +simdjson_inline bool fast_needs_escaping(std::string_view view) { + return simple_needs_escaping(view); +} +#endif + + +SIMDJSON_CONSTEXPR_LAMBDA inline size_t +find_next_json_quotable_character(const std::string_view view, + size_t location) noexcept { + + for (auto pos = view.begin() + location; pos != view.end(); ++pos) { + if (json_quotable_character[static_cast(*pos)]) { + return pos - view.begin(); + } + } + return size_t(view.size()); +} + +SIMDJSON_CONSTEXPR_LAMBDA static std::string_view control_chars[] = { + "\\x0000", "\\x0001", "\\x0002", "\\x0003", "\\x0004", "\\x0005", "\\x0006", + "\\x0007", "\\x0008", "\\t", "\\n", "\\x000b", "\\f", "\\r", + "\\x000e", "\\x000f", "\\x0010", "\\x0011", "\\x0012", "\\x0013", "\\x0014", + "\\x0015", "\\x0016", "\\x0017", "\\x0018", "\\x0019", "\\x001a", "\\x001b", + "\\x001c", "\\x001d", "\\x001e", "\\x001f"}; + +SIMDJSON_CONSTEXPR_LAMBDA void escape_json_char(char c, char *&out) { + if (c == '"') { + memcpy(out, "\\\"", 2); + out += 2; + } else if (c == '\\') { + memcpy(out, "\\\\", 2); + out += 2; + } else { + std::string_view v = control_chars[uint8_t(c)]; + memcpy(out, v.data(), v.size()); + out += v.size(); + } +} + +inline size_t write_string_escaped(const std::string_view input, char *out) { + size_t mysize = input.size(); + if (!fast_needs_escaping(input)) { // fast path! + memcpy(out, input.data(), input.size()); + return input.size(); + } + const char *const initout = out; + size_t location = find_next_json_quotable_character(input, 0); + memcpy(out, input.data(), location); + out += location; + escape_json_char(input[location], out); + location += 1; + while (location < mysize) { + size_t newlocation = find_next_json_quotable_character(input, location); + memcpy(out, input.data() + location, newlocation - location); + out += newlocation - location; + location = newlocation; + if (location == mysize) { + break; + } + escape_json_char(input[location], out); + location += 1; + } + return out - initout; +} + +#if SIMDJSON_CONSTEVAL +// unoptimized, meant for compile-time execution +consteval std::string consteval_to_quoted_escaped(std::string_view input) { + std::string out = "\""; + for (char c : input) { + if (json_quotable_character[uint8_t(c)]) { + if (c == '"') { + out.append("\\\""); + } else if (c == '\\') { + out.append("\\\\"); + } else { + std::string_view v = control_chars[uint8_t(c)]; + out.append(v); + } + } else { + out.push_back(c); + } + } + out.push_back('"'); + return out; +} +#endif // SIMDJSON_CONSTEVAL + +simdjson_inline string_builder::string_builder(size_t initial_capacity) + : buffer(new(std::nothrow) char[initial_capacity]), position(0), + capacity(buffer.get() != nullptr ? initial_capacity : 0), + is_valid(buffer.get() != nullptr) {} + +simdjson_inline bool string_builder::capacity_check(size_t upcoming_bytes) { + // We use the convention that when is_valid is false, then the capacity and + // the position are 0. + // Most of the time, this function will return true. + if (simdjson_likely(upcoming_bytes <= capacity - position)) { + return true; + } + // check for overflow, most of the time there is no overflow + if (simdjson_likely(position + upcoming_bytes < position)) { + return false; + } + // We will rarely get here. + grow_buffer((std::max)(capacity * 2, position + upcoming_bytes)); + // If the buffer allocation failed, we set is_valid to false. + return is_valid; +} + +simdjson_inline void string_builder::grow_buffer(size_t desired_capacity) { + if (!is_valid) { + return; + } + std::unique_ptr new_buffer(new (std::nothrow) char[desired_capacity]); + if (new_buffer.get() == nullptr) { + set_valid(false); + return; + } + std::memcpy(new_buffer.get(), buffer.get(), position); + buffer.swap(new_buffer); + capacity = desired_capacity; +} + +simdjson_inline void string_builder::set_valid(bool valid) noexcept { + if (!valid) { + is_valid = false; + capacity = 0; + position = 0; + buffer.reset(); + } else { + is_valid = true; + } +} + +simdjson_inline size_t string_builder::size() const noexcept { + return position; +} + +simdjson_inline void string_builder::append(char c) noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = c; + } +} + +simdjson_inline void string_builder::append_null() noexcept { + constexpr char null_literal[] = "null"; + constexpr size_t null_len = sizeof(null_literal) - 1; + if (capacity_check(null_len)) { + std::memcpy(buffer.get() + position, null_literal, null_len); + position += null_len; + } +} + +simdjson_inline void string_builder::clear() noexcept { + position = 0; + // if it was invalid, we should try to repair it + if (!is_valid) { + capacity = 0; + buffer.reset(); + is_valid = true; + } +} + +namespace internal { + +// We could specialize further for 32-bit integers. +int int_log2(uint32_t x) { return (63 - leading_zeroes(x | 1)); } + +int fast_digit_count(uint32_t x) { + static uint64_t table[] = { + 4294967296, 8589934582, 8589934582, 8589934582, 12884901788, + 12884901788, 12884901788, 17179868184, 17179868184, 17179868184, + 21474826480, 21474826480, 21474826480, 21474826480, 25769703776, + 25769703776, 25769703776, 30063771072, 30063771072, 30063771072, + 34349738368, 34349738368, 34349738368, 34349738368, 38554705664, + 38554705664, 38554705664, 41949672960, 41949672960, 41949672960, + 42949672960, 42949672960}; + return uint32_t((x + table[int_log2(x)]) >> 32); +} + +int int_log2(uint64_t x) { return 63 - leading_zeroes(x | 1); } + +int fast_digit_count(uint64_t x) { + static uint64_t table[] = {9, + 99, + 999, + 9999, + 99999, + 999999, + 9999999, + 99999999, + 999999999, + 9999999999, + 99999999999, + 999999999999, + 9999999999999, + 99999999999999, + 999999999999999ULL, + 9999999999999999ULL, + 99999999999999999ULL, + 999999999999999999ULL, + 9999999999999999999ULL}; + int y = (19 * int_log2(x) >> 6); + y += x > table[y]; + return y + 1; +} + +template ::value>::type> +simdjson_inline size_t digit_count(number_type v) noexcept { + static_assert(sizeof(number_type) == 8 || sizeof(number_type) == 4 || + sizeof(number_type) == 2 || sizeof(number_type) == 1, + "We only support 8-bit, 16-bit, 32-bit and 64-bit numbers"); + return fast_digit_count(v); +} +static const char decimal_table[200] = { + 0x30, 0x30, 0x30, 0x31, 0x30, 0x32, 0x30, 0x33, 0x30, 0x34, 0x30, 0x35, + 0x30, 0x36, 0x30, 0x37, 0x30, 0x38, 0x30, 0x39, 0x31, 0x30, 0x31, 0x31, + 0x31, 0x32, 0x31, 0x33, 0x31, 0x34, 0x31, 0x35, 0x31, 0x36, 0x31, 0x37, + 0x31, 0x38, 0x31, 0x39, 0x32, 0x30, 0x32, 0x31, 0x32, 0x32, 0x32, 0x33, + 0x32, 0x34, 0x32, 0x35, 0x32, 0x36, 0x32, 0x37, 0x32, 0x38, 0x32, 0x39, + 0x33, 0x30, 0x33, 0x31, 0x33, 0x32, 0x33, 0x33, 0x33, 0x34, 0x33, 0x35, + 0x33, 0x36, 0x33, 0x37, 0x33, 0x38, 0x33, 0x39, 0x34, 0x30, 0x34, 0x31, + 0x34, 0x32, 0x34, 0x33, 0x34, 0x34, 0x34, 0x35, 0x34, 0x36, 0x34, 0x37, + 0x34, 0x38, 0x34, 0x39, 0x35, 0x30, 0x35, 0x31, 0x35, 0x32, 0x35, 0x33, + 0x35, 0x34, 0x35, 0x35, 0x35, 0x36, 0x35, 0x37, 0x35, 0x38, 0x35, 0x39, + 0x36, 0x30, 0x36, 0x31, 0x36, 0x32, 0x36, 0x33, 0x36, 0x34, 0x36, 0x35, + 0x36, 0x36, 0x36, 0x37, 0x36, 0x38, 0x36, 0x39, 0x37, 0x30, 0x37, 0x31, + 0x37, 0x32, 0x37, 0x33, 0x37, 0x34, 0x37, 0x35, 0x37, 0x36, 0x37, 0x37, + 0x37, 0x38, 0x37, 0x39, 0x38, 0x30, 0x38, 0x31, 0x38, 0x32, 0x38, 0x33, + 0x38, 0x34, 0x38, 0x35, 0x38, 0x36, 0x38, 0x37, 0x38, 0x38, 0x38, 0x39, + 0x39, 0x30, 0x39, 0x31, 0x39, 0x32, 0x39, 0x33, 0x39, 0x34, 0x39, 0x35, + 0x39, 0x36, 0x39, 0x37, 0x39, 0x38, 0x39, 0x39, +}; +} // namespace internal + +template +simdjson_inline void string_builder::append(number_type v) noexcept { + static_assert(std::is_same::value || + std::is_integral::value || + std::is_floating_point::value, + "Unsupported number type"); + // If C++17 is available, we can 'if constexpr' here. + SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + if (v) { + constexpr char true_literal[] = "true"; + constexpr size_t true_len = sizeof(true_literal) - 1; + if (capacity_check(true_len)) { + std::memcpy(buffer.get() + position, true_literal, true_len); + position += true_len; + } + } else { + constexpr char false_literal[] = "false"; + constexpr size_t false_len = sizeof(false_literal) - 1; + if (capacity_check(false_len)) { + std::memcpy(buffer.get() + position, false_literal, false_len); + position += false_len; + } + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_unsigned::value) { + constexpr size_t max_number_size = 20; + if (capacity_check(max_number_size)) { + using unsigned_type = typename std::make_unsigned::type; + unsigned_type pv = static_cast(v); + size_t dc = internal::digit_count(pv); + char *write_pointer = buffer.get() + position + dc - 1; + while (pv >= 100) { + memcpy(write_pointer - 1, &internal::decimal_table[(pv % 100)*2], 2); + write_pointer -= 2; + pv /= 100; + } + if (pv >= 10) { + *write_pointer-- = char('0' + (pv % 10)); + pv /= 10; + } + *write_pointer = char('0' + pv); + position += dc; + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_integral::value) { + constexpr size_t max_number_size = 20; + if (capacity_check(max_number_size)) { + using unsigned_type = typename std::make_unsigned::type; + bool negative = v < 0; + unsigned_type pv = static_cast(v); + if (negative) { + pv = 0 - pv; // the 0 is for Microsoft + } + size_t dc = internal::digit_count(pv); + if (negative) { + buffer.get()[position++] = '-'; + } + char *write_pointer = buffer.get() + position + dc - 1; + while (pv >= 100) { + memcpy(write_pointer - 1, &internal::decimal_table[(pv % 100)*2], 2); + write_pointer -= 2; + pv /= 100; + } + if (pv >= 10) { + *write_pointer-- = char('0' + (pv % 10)); + pv /= 10; + } + *write_pointer = char('0' + pv); + position += dc; + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_floating_point::value) { + constexpr size_t max_number_size = 24; + if (capacity_check(max_number_size)) { + // We could specialize for float. + char *end = simdjson::internal::to_chars(buffer.get() + position, nullptr, + double(v)); + position = end - buffer.get(); + } + } +} + +simdjson_inline void +string_builder::escape_and_append(std::string_view input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(6 * input.size())) { + position += write_string_escaped(input, buffer.get() + position); + } +} + +simdjson_inline void +string_builder::escape_and_append_with_quotes(std::string_view input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(2 + 6 * input.size())) { + buffer.get()[position++] = '"'; + position += write_string_escaped(input, buffer.get() + position); + buffer.get()[position++] = '"'; + } +} + +simdjson_inline void +string_builder::escape_and_append_with_quotes(char input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(2 + 6 * 1)) { + buffer.get()[position++] = '"'; + std::string_view cinput(&input, 1); + position += write_string_escaped(cinput, buffer.get() + position); + buffer.get()[position++] = '"'; + } +} + +simdjson_inline void string_builder::escape_and_append_with_quotes(const char* input) noexcept { + std::string_view cinput(input); + escape_and_append_with_quotes(cinput); +} + +simdjson_inline void string_builder::append_raw(const char *c) noexcept { + size_t len = std::strlen(c); + append_raw(c, len); +} + +simdjson_inline void +string_builder::append_raw(std::string_view input) noexcept { + if (capacity_check(input.size())) { + std::memcpy(buffer.get() + position, input.data(), input.size()); + position += input.size(); + } +} + +simdjson_inline void string_builder::append_raw(const char *str, + size_t len) noexcept { + if (capacity_check(len)) { + std::memcpy(buffer.get() + position, str, len); + position += len; + } +} + +#if SIMDJSON_EXCEPTIONS +simdjson_inline string_builder::operator std::string() const noexcept(false) { + return std::string(std::string_view()); +} + +simdjson_inline string_builder::operator std::string_view() const + noexcept(false) { + return view(); +} +#endif + +simdjson_inline simdjson_result +string_builder::view() const noexcept { + if (!is_valid) { + return simdjson::OUT_OF_CAPACITY; + } + return std::string_view(buffer.get(), position); +} + +simdjson_inline simdjson_result string_builder::c_str() noexcept { + if (capacity_check(1)) { + buffer.get()[position] = '\0'; + return buffer.get(); + } + return simdjson::OUT_OF_CAPACITY; +} + +simdjson_inline bool string_builder::validate_unicode() const noexcept { + return simdjson::validate_utf8(buffer.get(), position); +} + +simdjson_inline void string_builder::start_object() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '{'; + } +} + + +simdjson_inline void string_builder::end_object() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '}'; + } +} + + +simdjson_inline void string_builder::start_array() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '['; + } +} + + +simdjson_inline void string_builder::end_array() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ']'; + } +} + + +simdjson_inline void string_builder::append_comma() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ','; + } +} + + +simdjson_inline void string_builder::append_colon() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ':'; + } +} + +template +simdjson_inline void string_builder::append_key_value(key_type key, value_type value) noexcept { + static_assert( + std::is_arithmetic::value || + std::is_same::value || + std::is_same::value || + std::is_convertible::value || + std::is_same::value, + "Unsupported value type"); + static_assert( + std::is_same::value || + std::is_convertible::value, + "Unsupported key type"); + escape_and_append_with_quotes(key); + append_colon(); + SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + append_null(); + } else SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + escape_and_append_with_quotes(value); + } else SIMDJSON_IF_CONSTEXPR(std::is_convertible::value) { + escape_and_append_with_quotes(value); + } else SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + escape_and_append_with_quotes(value); + } else { + append(value); + } +} + +} // namespace builder +} // namespace haswell +} // namespace simdjson + +#endif // SIMDJSON_GENERIC_STRING_BUILDER_INL_H +/* end file simdjson/generic/ondemand/json_string_builder-inl.h for haswell */ +/* including simdjson/generic/ondemand/json_builder.h for haswell: #include "simdjson/generic/ondemand/json_builder.h" */ +/* begin file simdjson/generic/ondemand/json_builder.h for haswell */ +/** + * This file is part of the builder API. It is temporarily in the ondemand directory + * but we will move it to a builder directory later. + */ +#ifndef SIMDJSON_GENERIC_BUILDER_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/builder/json_string_builder.h" */ +/* amalgamation skipped (editor-only): #include "simdjson/concepts.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ +#if SIMDJSON_STATIC_REFLECTION + +#include +#include +#include +#include +#include +#include +// #include // for std::define_static_string - header not available yet + +namespace simdjson { +namespace haswell { +namespace builder { + +// Concept that checks if a type is a container but not a string (because +// strings handling must be handled differently) +template +concept container_but_not_string = + requires(T a) { + { a.size() } -> std::convertible_to; + { + a[std::declval()] + }; // check if elements are accessible for the subscript operator + } && !std::is_same_v && + !std::is_same_v && !std::is_same_v; + +template + requires(container_but_not_string) +constexpr void atom(string_builder &b, const T &t) { + if (t.size() == 0) { + b.append_raw("[]"); + return; + } + b.append('['); + atom(b, t[0]); + for (size_t i = 1; i < t.size(); ++i) { + b.append(','); + atom(b, t[i]); + } + b.append(']'); +} + +template + requires(std::is_same_v || + std::is_same_v || + std::is_same_v || + std::is_same_v) +constexpr void atom(string_builder &b, const T &t) { + b.escape_and_append_with_quotes(t); +} + +template +constexpr void atom(string_builder &b, const T &m) { + if (m.empty()) { + b.append_raw("{}"); + return; + } + b.append('{'); + bool first = true; + for (const auto& [key, value] : m) { + if (!first) { + b.append(','); + } + first = false; + // Keys must be convertible to string_view per the concept + b.escape_and_append_with_quotes(key); + b.append(':'); + atom(b, value); + } + b.append('}'); +} + + +template::value && !std::is_same_v>::type> +constexpr void atom(string_builder &b, const number_type t) { + b.append(t); +} +#if SIMDJSON_CONSTEVAL +consteval std::string consteval_to_quoted_escaped(std::string_view input); +#endif + +template + requires(std::is_class_v && !container_but_not_string && + !concepts::string_view_keyed_map && + !std::is_same_v && + !std::is_same_v) +constexpr void atom(string_builder &b, const T &t) { + int i = 0; + b.append('{'); + [:expand(std::meta::nonstatic_data_members_of(^^T, std::meta::access_context::unchecked())):] >> [&]() { + if (i != 0) + b.append(','); + constexpr auto key = std::define_static_string(consteval_to_quoted_escaped(std::meta::identifier_of(dm))); + b.append_raw(key); + b.append(':'); + atom(b, t.[:dm:]); + i++; + }; + b.append('}'); +} + +// works for struct +template void append(string_builder &b, const Z &z) { + int i = 0; + b.append('{'); + [:expand(std::meta::nonstatic_data_members_of(^^Z, std::meta::access_context::unchecked())):] >> [&]() { + if (i != 0) + b.append(','); + constexpr auto key = std::define_static_string(consteval_to_quoted_escaped(std::meta::identifier_of(dm))); + b.append_raw(key); + b.append(':'); + atom(b, z.[:dm:]); + i++; + }; + b.append('}'); +} + +// works for container +template + requires(container_but_not_string) +void append(string_builder &b, const Z &z) { + if (z.size() == 0) { + b.append_raw("[]"); + return; + } + b.append('['); + atom(b, z[0]); + for (size_t i = 1; i < z.size(); ++i) { + b.append(','); + atom(b, z[i]); + } + b.append(']'); +} + +template +simdjson_result to_json_string(const Z &z) { + string_builder b; + append(b, z); + std::string_view s; + if(auto e = b.view().get(s); e) { return e; } + return std::string(s); +} + +template +simdjson_error to_json(const Z &z, std::string &s) { + string_builder b; + append(b, z); + std::string_view view; + if(auto e = b.view().get(view); e) { return e; } + s.assign(view); + return SUCCESS; +} +} // namespace json_builder +} // namespace haswell +} // namespace simdjson +#endif // SIMDJSON_STATIC_REFLECTION + +#endif +/* end file simdjson/generic/ondemand/json_builder.h for haswell */ /* end file simdjson/generic/ondemand/amalgamated.h for haswell */ /* including simdjson/haswell/end.h: #include "simdjson/haswell/end.h" */ @@ -65729,7 +70230,6 @@ namespace simd { friend simdjson_really_inline uint64_t operator==(const simd8 lhs, const simd8 rhs) { return _mm512_cmpeq_epi8_mask(lhs, rhs); } - static const int SIZE = sizeof(base::value); template @@ -66072,6 +70572,35 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } + + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 64; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(uint64_t(escape_bits)); } + + __mmask64 escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + __mmask64 is_quote = _mm512_cmpeq_epi8_mask(v, _mm512_set1_epi8('"')); + __mmask64 is_backslash = _mm512_cmpeq_epi8_mask(v, _mm512_set1_epi8('\\')); + __mmask64 is_control = _mm512_cmplt_epi8_mask(v, _mm512_set1_epi8(32)); + return { + (is_backslash | is_quote | is_control) + }; +} + + + + } // unnamed namespace } // namespace icelake } // namespace simdjson @@ -66288,10 +70817,26 @@ concept nothrow_deserializable = nothrow_custom_deserializable || is_bu /// Deserialize Tag inline constexpr struct deserialize_tag { + using array_type = icelake::ondemand::array; + using object_type = icelake::ondemand::object; using value_type = icelake::ondemand::value; using document_type = icelake::ondemand::document; using document_reference_type = icelake::ondemand::document_reference; + // Customization Point for array + template + requires custom_deserializable + [[nodiscard]] constexpr /* error_code */ auto operator()(array_type &object, T& output) const noexcept(nothrow_custom_deserializable) { + return tag_invoke(*this, object, output); + } + + // Customization Point for object + template + requires custom_deserializable + [[nodiscard]] constexpr /* error_code */ auto operator()(object_type &object, T& output) const noexcept(nothrow_custom_deserializable) { + return tag_invoke(*this, object, output); + } + // Customization Point for value template requires custom_deserializable @@ -66859,6 +71404,7 @@ public: * * You may use get_double(), get_bool(), get_uint64(), get_int64(), * get_object(), get_array(), get_raw_json_string(), or get_string() instead. + * When SIMDJSON_SUPPORTS_DESERIALIZATION is set, custom types are also supported. * * @returns A value of the given type, parsed from the JSON. * @returns INCORRECT_TYPE If the JSON value is not the given type. @@ -66882,6 +71428,7 @@ public: * Get this value as the given type. * * Supported types: object, array, raw_json_string, string_view, uint64_t, int64_t, double, bool + * If the macro SIMDJSON_SUPPORTS_DESERIALIZATION is set, then custom types are also supported. * * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. * @returns INCORRECT_TYPE If the JSON value is not an object. @@ -69124,6 +73671,37 @@ public: * - INDEX_OUT_OF_BOUNDS if the array index is larger than an array length */ simdjson_inline simdjson_result at(size_t index) noexcept; + +#if SIMDJSON_SUPPORTS_DESERIALIZATION + /** + * Get this array as the given type. + * + * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. + * @returns INCORRECT_TYPE If the JSON array is not of the given type. + * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. + */ + template + simdjson_inline error_code get(T &out) + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) { + static_assert(custom_deserializable); + return deserialize(*this, out); + } + /** + * Get this array as the given type. + * + * @returns A value of the given type, parsed from the JSON. + * @returns INCORRECT_TYPE If the JSON value is not the given type. + */ + template + simdjson_inline simdjson_result get() + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) + { + static_assert(std::is_default_constructible::value, "The specified type is not default constructible."); + T out{}; + SIMDJSON_TRY(get(out)); + return out; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION protected: /** * Go to the end of the array, no matter where you are right now. @@ -69202,7 +73780,28 @@ public: simdjson_inline simdjson_result at_pointer(std::string_view json_pointer) noexcept; simdjson_inline simdjson_result at_path(std::string_view json_path) noexcept; simdjson_inline simdjson_result raw_json() noexcept; +#if SIMDJSON_SUPPORTS_DESERIALIZATION + // TODO: move this code into object-inl.h + template + simdjson_inline simdjson_result get() noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + return first; + } + return first.get(); + } + template + simdjson_inline error_code get(T& out) noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + out = first; + } else { + SIMDJSON_TRY( first.get(out) ); + } + return SUCCESS; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION }; } // namespace simdjson @@ -69536,7 +74135,7 @@ public: * Be mindful that the document instance must remain in scope while you are accessing object, array and value instances. * * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. - * @returns INCORRECT_TYPE If the JSON value is not an object. + * @returns INCORRECT_TYPE If the JSON value is of the given type. * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. */ template @@ -71023,6 +75622,36 @@ public: */ simdjson_inline simdjson_result raw_json() noexcept; +#if SIMDJSON_SUPPORTS_DESERIALIZATION + /** + * Get this object as the given type. + * + * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. + * @returns INCORRECT_TYPE If the JSON object is not of the given type. + * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. + */ + template + simdjson_inline error_code get(T &out) + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) { + static_assert(custom_deserializable); + return deserialize(*this, out); + } + /** + * Get this array as the given type. + * + * @returns A value of the given type, parsed from the JSON. + * @returns INCORRECT_TYPE If the JSON value is not the given type. + */ + template + simdjson_inline simdjson_result get() + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) + { + static_assert(std::is_default_constructible::value, "The specified type is not default constructible."); + T out{}; + SIMDJSON_TRY(get(out)); + return out; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION protected: /** * Go to the end of the object, no matter where you are right now. @@ -71066,12 +75695,32 @@ public: simdjson_inline simdjson_result operator[](std::string_view key) && noexcept; simdjson_inline simdjson_result at_pointer(std::string_view json_pointer) noexcept; simdjson_inline simdjson_result at_path(std::string_view json_path) noexcept; - inline simdjson_result reset() noexcept; inline simdjson_result is_empty() noexcept; inline simdjson_result count_fields() & noexcept; inline simdjson_result raw_json() noexcept; + #if SIMDJSON_SUPPORTS_DESERIALIZATION + // TODO: move this code into object-inl.h + template + simdjson_inline simdjson_result get() noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + return first; + } + return first.get(); + } + template + simdjson_inline error_code get(T& out) noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + out = first; + } else { + SIMDJSON_TRY( first.get(out) ); + } + return SUCCESS; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION }; } // namespace simdjson @@ -71276,12 +75925,17 @@ inline std::ostream& operator<<(std::ostream& out, simdjson::simdjson_result #include +#if SIMDJSON_STATIC_REFLECTION +#include +// #include // for std::define_static_string - header not available yet +#endif namespace simdjson { template @@ -71328,6 +75982,22 @@ error_code tag_invoke(deserialize_tag, auto &val, T &out) noexcept { return SUCCESS; } +////////////////////////////// +// String deserialization +////////////////////////////// + +// just a character! +error_code tag_invoke(deserialize_tag, auto &val, char &out) noexcept { + std::string_view x; + SIMDJSON_TRY(val.get_string().get(x)); + if(x.size() != 1) { + return INCORRECT_TYPE; + } + out = x[0]; + return SUCCESS; +} + +// any string-like type (can be constructed from std::string_view) template requires(!require_custom_serialization) error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(std::is_nothrow_constructible_v) { @@ -71349,15 +76019,20 @@ template requires(!require_custom_serialization) error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(false) { using value_type = typename std::remove_cvref_t::value_type; - static_assert( + /*static_assert( deserializable, - "The specified type inside the container must itself be deserializable"); + "The specified type inside the container must itself be deserializable");*/ static_assert( std::is_default_constructible_v, "The specified type inside the container must default constructible."); icelake::ondemand::array arr; - SIMDJSON_TRY(val.get_array().get(arr)); + if constexpr (std::is_same_v, icelake::ondemand::array>) { + arr = val; + } else { + SIMDJSON_TRY(val.get_array().get(arr)); + } + for (auto v : arr) { if constexpr (concepts::returns_reference) { if (auto const err = v.get().get(concepts::emplace_one(out)); @@ -71414,7 +76089,45 @@ error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(false) { return SUCCESS; } +template +error_code tag_invoke(deserialize_tag, icelake::ondemand::object &obj, T &out) noexcept { + using value_type = typename std::remove_cvref_t::mapped_type; + out.clear(); + for (auto field : obj) { + std::string_view key; + SIMDJSON_TRY(field.unescaped_key().get(key)); + + icelake::ondemand::value value_obj; + SIMDJSON_TRY(field.value().get(value_obj)); + + value_type this_value; + SIMDJSON_TRY(value_obj.get(this_value)); + out.emplace(typename T::key_type(key), std::move(this_value)); + } + return SUCCESS; +} + +template +error_code tag_invoke(deserialize_tag, icelake::ondemand::value &val, T &out) noexcept { + icelake::ondemand::object obj; + SIMDJSON_TRY(val.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} + +template +error_code tag_invoke(deserialize_tag, icelake::ondemand::document &doc, T &out) noexcept { + icelake::ondemand::object obj; + SIMDJSON_TRY(doc.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} + +template +error_code tag_invoke(deserialize_tag, icelake::ondemand::document_reference &doc, T &out) noexcept { + icelake::ondemand::object obj; + SIMDJSON_TRY(doc.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} /** @@ -71476,6 +76189,199 @@ error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(nothrow_deser return SUCCESS; } + +#if SIMDJSON_STATIC_REFLECTION + + +template +constexpr bool user_defined_type = (std::is_class_v +&& !std::is_same_v && !std::is_same_v && !concepts::optional_type && +!concepts::appendable_containers && !require_custom_serialization); + + +// workaround from +// https://www.open-std.org/jtc1/sc22/wg21/docs/papers/2024/p2996r10.html#back-and-forth +// for missing expansion statements +namespace __impl { + template + struct replicator_type { + template + constexpr void operator>>(F body) const { + (body.template operator()(), ...); + } + }; + + template + replicator_type replicator = {}; +} + +template +consteval auto expand(R range) { + std::vector args; + for (auto r : range) { + args.push_back(reflect_value(r)); + } + return substitute(^^__impl::replicator, args); +} +// end of workaround + +template + requires(user_defined_type && std::is_class_v) +error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept { + icelake::ondemand::object obj; + if constexpr (std::is_same_v, icelake::ondemand::object>) { + obj = val; + } else { + SIMDJSON_TRY(val.get_object().get(obj)); + } + error_code e = simdjson::SUCCESS; + + [:expand(std::meta::nonstatic_data_members_of(^^T, std::meta::access_context::unchecked())):] >> [&]() { + if constexpr (!std::meta::is_const(mem) && std::meta::is_public(mem)) { + constexpr std::string_view key = std::define_static_string(std::meta::identifier_of(mem)); + static_assert( + deserializable, + "The specified type inside the class must itself be deserializable"); + // as long we are succesful or the field is not found, we continue + if(e == simdjson::SUCCESS || e == simdjson::NO_SUCH_FIELD) { + obj[key].get(out.[:mem:]); + } + } + }; + return e; +} +template + requires(user_defined_type>) +error_code tag_invoke(deserialize_tag, simdjson_value &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { + return MEMALLOC; + } + } + if (auto err = val.get(*out)) { + out.reset(); + return err; + } + return SUCCESS; +} + +template + requires(user_defined_type>) +error_code tag_invoke(deserialize_tag, simdjson_value &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { + return MEMALLOC; + } + } + if (auto err = val.get(*out)) { + out.reset(); + return err; + } + return SUCCESS; +} + +#endif // SIMDJSON_STATIC_REFLECTION + +//////////////////////////////////////// +// Unique pointers +//////////////////////////////////////// +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_bool().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_int64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_uint64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_double().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_string().get(*out)); + return SUCCESS; +} + + +//////////////////////////////////////// +// Shared pointers +//////////////////////////////////////// +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_bool().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_int64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_uint64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_double().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_string().get(*out)); + return SUCCESS; +} + + } // namespace simdjson #endif // SIMDJSON_ONDEMAND_DESERIALIZE_H @@ -74963,6 +79869,7 @@ simdjson_inline simdjson_result simdjson_result::simdjson_res #endif // SIMDJSON_GENERIC_ONDEMAND_VALUE_ITERATOR_INL_H /* end file simdjson/generic/ondemand/value_iterator-inl.h for icelake */ +// JSON builder, ideally they should not be part of the ondemand directory +// but it is convenient for now to have them here. +/* including simdjson/generic/ondemand/json_string_builder.h for icelake: #include "simdjson/generic/ondemand/json_string_builder.h" */ +/* begin file simdjson/generic/ondemand/json_string_builder.h for icelake */ +/** + * This file is part of the builder API. It is temporarily in the ondemand directory + * but we will move it to a builder directory later. + */ +#ifndef SIMDJSON_GENERIC_STRING_BUILDER_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/implementation_simdjson_result_base.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ + +namespace simdjson { +namespace icelake { +namespace builder { + +/** + * A builder for JSON strings representing documents. This is a low-level + * builder that is not meant to be used directly by end-users. Though it + * supports atomic types (Booleans, strings), it does not support composed + * types (arrays and objects). + * + * Ultimately, this class should support kernel-specific optimizations. E.g., + * it may make use of SIMD instructions to escape strings faster. + */ +class string_builder { +public: + simdjson_inline string_builder(size_t initial_capacity = 1024); + + /** + * Append number (includes Booleans). Booleans are mapped to the strings + * false and true. Numbers are converted to strings abiding by the JSON standard. + * Floating-point numbers are converted to the shortest string that 'correctly' + * represents the number. + */ + template::value>::type> + simdjson_inline void append(number_type v) noexcept; + + /** + * Append character c. + */ + simdjson_inline void append(char c) noexcept; + + /** + * Append the string 'null'. + */ + simdjson_inline void append_null() noexcept; + + /** + * Clear the content. + */ + simdjson_inline void clear() noexcept; + + /** + * Append the std::string_view, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append(std::string_view input) noexcept; + + /** + * Append the std::string_view surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(std::string_view input) noexcept; + + /** + * Append the character surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(char input) noexcept; + + /** + * Append the character surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(const char* input) noexcept; + + /** + * Append the C string directly, without escaping. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(const char *c) noexcept; + + /** + * Append "{" to the buffer. + */ + simdjson_inline void start_object() noexcept; + + /** + * Append "}" to the buffer. + */ + simdjson_inline void end_object() noexcept; + + /** + * Append "[" to the buffer. + */ + simdjson_inline void start_array() noexcept; + + /** + * Append "]" to the buffer. + */ + simdjson_inline void end_array() noexcept; + + /** + * Append "," to the buffer. + */ + simdjson_inline void append_comma() noexcept; + + /** + * Append ":" to the buffer. + */ + simdjson_inline void append_colon() noexcept; + + /** + * Append a key-value pair to the buffer. + * The key is escaped and surrounded by double quotes. + * The value is escaped if it is a string. + */ + template + simdjson_inline void append_key_value(key_type key, value_type value) noexcept; + /** + * Append the std::string_view directly, without escaping. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(std::string_view input) noexcept; + + /** + * Append len characters from str. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(const char *str, size_t len) noexcept; +#if SIMDJSON_EXCEPTIONS + /** + * Creates an std::string from the written JSON buffer. + * Throws if memory allocation failed + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content if needed. + */ + simdjson_inline operator std::string() const noexcept(false); + + /** + * Creates an std::string_view from the written JSON buffer. + * Throws if memory allocation failed. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content if needed. + */ + simdjson_inline operator std::string_view() const noexcept(false); +#endif + + /** + * Returns a view on the written JSON buffer. Returns an error + * if memory allocation failed. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content. + */ + simdjson_inline simdjson_result view() const noexcept; + + /** + * Appends the null character to the buffer and returns + * a pointer to the beginning of the written JSON buffer. + * Returns an error if memory allocation failed. + * The result is null-terminated. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content. + */ + simdjson_inline simdjson_result c_str() noexcept; + + /** + * Return true if the content is valid UTF-8. + */ + simdjson_inline bool validate_unicode() const noexcept; + + /** + * Returns the current size of the written JSON buffer. + * If an error occurred, returns 0. + */ + simdjson_inline size_t size() const noexcept; + +private: + /** + * Returns true if we can write at least upcoming_bytes bytes. + * The underlying buffer is reallocated if needed. It is designed + * to be called before writing to the buffer. It should be fast. + */ + simdjson_inline bool capacity_check(size_t upcoming_bytes); + + /** + * Grow the buffer to at least desired_capacity bytes. + * If the allocation fails, is_valid is set to false. We expect + * that this function would not be repeatedly called. + */ + simdjson_inline void grow_buffer(size_t desired_capacity); + + /** + * We use this helper function to make sure that is_valid is kept consistent. + */ + simdjson_inline void set_valid(bool valid) noexcept; + + std::unique_ptr buffer{}; + size_t position{0}; + size_t capacity{0}; + bool is_valid{true}; +}; + + + +} +} +} // namespace simdjson + +#endif // SIMDJSON_GENERIC_STRING_BUILDER_H +/* end file simdjson/generic/ondemand/json_string_builder.h for icelake */ +/* including simdjson/generic/ondemand/json_string_builder-inl.h for icelake: #include "simdjson/generic/ondemand/json_string_builder-inl.h" */ +/* begin file simdjson/generic/ondemand/json_string_builder-inl.h for icelake */ +/** + * This file is part of the builder API. It is temporarily in the ondemand + * directory but we will move it to a builder directory later. + */ +#include +#include +#include +#ifndef SIMDJSON_GENERIC_STRING_BUILDER_INL_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_INL_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/builder/json_string_builder.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ + +/* + * Empirically, we have found that an inlined optimization is important for + * performance. The following macros are not ideal. We should find a better + * way to inline the code. + */ + +#if defined(__SSE2__) || defined(__x86_64__) || defined(__x86_64) || \ + (defined(_M_AMD64) || defined(_M_X64) || \ + (defined(_M_IX86_FP) && _M_IX86_FP == 2)) +#ifndef SIMDJSON_EXPERIMENTAL_HAS_SSE2 +#define SIMDJSON_EXPERIMENTAL_HAS_SSE2 1 +#endif +#endif + +#if defined(__aarch64__) || defined(_M_ARM64) +#ifndef SIMDJSON_EXPERIMENTAL_HAS_NEON +#define SIMDJSON_EXPERIMENTAL_HAS_NEON 1 +#endif +#endif +#if SIMDJSON_EXPERIMENTAL_HAS_NEON +#include +#endif +#if SIMDJSON_EXPERIMENTAL_HAS_SSE2 +#include +#endif + +namespace simdjson { +namespace icelake { +namespace builder { + +static SIMDJSON_CONSTEXPR_LAMBDA std::array json_quotable_character = { + 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, + 1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}; + +/** + +A possible SWAR implementation of has_json_escapable_byte. It is not used because +it is slower than the current implementation. It is kept here for reference (to show +that we tried it). + +inline bool has_json_escapable_byte(uint64_t x) { + uint64_t is_ascii = 0x8080808080808080ULL & ~x; + uint64_t xor2 = x ^ 0x0202020202020202ULL; + uint64_t lt32_or_eq34 = xor2 - 0x2121212121212121ULL; + uint64_t sub92 = x ^ 0x5C5C5C5C5C5C5C5CULL; + uint64_t eq92 = (sub92 - 0x0101010101010101ULL); + return ((lt32_or_eq34 | eq92) & is_ascii) != 0; +} + +**/ + +SIMDJSON_CONSTEXPR_LAMBDA simdjson_inline bool +simple_needs_escaping(std::string_view v) { + for (char c : v) { + // a table lookup is faster than a series of comparisons + if(json_quotable_character[static_cast(c)]) { + return true; + } + } + return false; +} + +#if SIMDJSON_EXPERIMENTAL_HAS_NEON +simdjson_inline bool fast_needs_escaping(std::string_view view) { + if (view.size() < 16) { + return simple_needs_escaping(view); + } + size_t i = 0; + uint8x16_t running = vdupq_n_u8(0); + uint8x16_t v34 = vdupq_n_u8(34); + uint8x16_t v92 = vdupq_n_u8(92); + + for (; i + 15 < view.size(); i += 16) { + uint8x16_t word = vld1q_u8((const uint8_t *)view.data() + i); + running = vorrq_u8(running, vceqq_u8(word, v34)); + running = vorrq_u8(running, vceqq_u8(word, v92)); + running = vorrq_u8(running, vcltq_u8(word, vdupq_n_u8(32))); + } + if (i < view.size()) { + uint8x16_t word = + vld1q_u8((const uint8_t *)view.data() + view.length() - 16); + running = vorrq_u8(running, vceqq_u8(word, v34)); + running = vorrq_u8(running, vceqq_u8(word, v92)); + running = vorrq_u8(running, vcltq_u8(word, vdupq_n_u8(32))); + } + return vmaxvq_u32(vreinterpretq_u32_u8(running)) != 0; +} +#elif SIMDJSON_EXPERIMENTAL_HAS_SSE2 +simdjson_inline bool fast_needs_escaping(std::string_view view) { + if (view.size() < 16) { + return simple_needs_escaping(view); + } + size_t i = 0; + __m128i running = _mm_setzero_si128(); + for (; i + 15 < view.size(); i += 16) { + + __m128i word = _mm_loadu_si128(reinterpret_cast(view.data() + i)); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(34))); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(92))); + running = _mm_or_si128( + running, _mm_cmpeq_epi8(_mm_subs_epu8(word, _mm_set1_epi8(31)), + _mm_setzero_si128())); + } + if (i < view.size()) { + __m128i word = + _mm_loadu_si128(reinterpret_cast(view.data() + view.length() - 16)); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(34))); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(92))); + running = _mm_or_si128( + running, _mm_cmpeq_epi8(_mm_subs_epu8(word, _mm_set1_epi8(31)), + _mm_setzero_si128())); + } + return _mm_movemask_epi8(running) != 0; +} +#else +simdjson_inline bool fast_needs_escaping(std::string_view view) { + return simple_needs_escaping(view); +} +#endif + + +SIMDJSON_CONSTEXPR_LAMBDA inline size_t +find_next_json_quotable_character(const std::string_view view, + size_t location) noexcept { + + for (auto pos = view.begin() + location; pos != view.end(); ++pos) { + if (json_quotable_character[static_cast(*pos)]) { + return pos - view.begin(); + } + } + return size_t(view.size()); +} + +SIMDJSON_CONSTEXPR_LAMBDA static std::string_view control_chars[] = { + "\\x0000", "\\x0001", "\\x0002", "\\x0003", "\\x0004", "\\x0005", "\\x0006", + "\\x0007", "\\x0008", "\\t", "\\n", "\\x000b", "\\f", "\\r", + "\\x000e", "\\x000f", "\\x0010", "\\x0011", "\\x0012", "\\x0013", "\\x0014", + "\\x0015", "\\x0016", "\\x0017", "\\x0018", "\\x0019", "\\x001a", "\\x001b", + "\\x001c", "\\x001d", "\\x001e", "\\x001f"}; + +SIMDJSON_CONSTEXPR_LAMBDA void escape_json_char(char c, char *&out) { + if (c == '"') { + memcpy(out, "\\\"", 2); + out += 2; + } else if (c == '\\') { + memcpy(out, "\\\\", 2); + out += 2; + } else { + std::string_view v = control_chars[uint8_t(c)]; + memcpy(out, v.data(), v.size()); + out += v.size(); + } +} + +inline size_t write_string_escaped(const std::string_view input, char *out) { + size_t mysize = input.size(); + if (!fast_needs_escaping(input)) { // fast path! + memcpy(out, input.data(), input.size()); + return input.size(); + } + const char *const initout = out; + size_t location = find_next_json_quotable_character(input, 0); + memcpy(out, input.data(), location); + out += location; + escape_json_char(input[location], out); + location += 1; + while (location < mysize) { + size_t newlocation = find_next_json_quotable_character(input, location); + memcpy(out, input.data() + location, newlocation - location); + out += newlocation - location; + location = newlocation; + if (location == mysize) { + break; + } + escape_json_char(input[location], out); + location += 1; + } + return out - initout; +} + +#if SIMDJSON_CONSTEVAL +// unoptimized, meant for compile-time execution +consteval std::string consteval_to_quoted_escaped(std::string_view input) { + std::string out = "\""; + for (char c : input) { + if (json_quotable_character[uint8_t(c)]) { + if (c == '"') { + out.append("\\\""); + } else if (c == '\\') { + out.append("\\\\"); + } else { + std::string_view v = control_chars[uint8_t(c)]; + out.append(v); + } + } else { + out.push_back(c); + } + } + out.push_back('"'); + return out; +} +#endif // SIMDJSON_CONSTEVAL + +simdjson_inline string_builder::string_builder(size_t initial_capacity) + : buffer(new(std::nothrow) char[initial_capacity]), position(0), + capacity(buffer.get() != nullptr ? initial_capacity : 0), + is_valid(buffer.get() != nullptr) {} + +simdjson_inline bool string_builder::capacity_check(size_t upcoming_bytes) { + // We use the convention that when is_valid is false, then the capacity and + // the position are 0. + // Most of the time, this function will return true. + if (simdjson_likely(upcoming_bytes <= capacity - position)) { + return true; + } + // check for overflow, most of the time there is no overflow + if (simdjson_likely(position + upcoming_bytes < position)) { + return false; + } + // We will rarely get here. + grow_buffer((std::max)(capacity * 2, position + upcoming_bytes)); + // If the buffer allocation failed, we set is_valid to false. + return is_valid; +} + +simdjson_inline void string_builder::grow_buffer(size_t desired_capacity) { + if (!is_valid) { + return; + } + std::unique_ptr new_buffer(new (std::nothrow) char[desired_capacity]); + if (new_buffer.get() == nullptr) { + set_valid(false); + return; + } + std::memcpy(new_buffer.get(), buffer.get(), position); + buffer.swap(new_buffer); + capacity = desired_capacity; +} + +simdjson_inline void string_builder::set_valid(bool valid) noexcept { + if (!valid) { + is_valid = false; + capacity = 0; + position = 0; + buffer.reset(); + } else { + is_valid = true; + } +} + +simdjson_inline size_t string_builder::size() const noexcept { + return position; +} + +simdjson_inline void string_builder::append(char c) noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = c; + } +} + +simdjson_inline void string_builder::append_null() noexcept { + constexpr char null_literal[] = "null"; + constexpr size_t null_len = sizeof(null_literal) - 1; + if (capacity_check(null_len)) { + std::memcpy(buffer.get() + position, null_literal, null_len); + position += null_len; + } +} + +simdjson_inline void string_builder::clear() noexcept { + position = 0; + // if it was invalid, we should try to repair it + if (!is_valid) { + capacity = 0; + buffer.reset(); + is_valid = true; + } +} + +namespace internal { + +// We could specialize further for 32-bit integers. +int int_log2(uint32_t x) { return (63 - leading_zeroes(x | 1)); } + +int fast_digit_count(uint32_t x) { + static uint64_t table[] = { + 4294967296, 8589934582, 8589934582, 8589934582, 12884901788, + 12884901788, 12884901788, 17179868184, 17179868184, 17179868184, + 21474826480, 21474826480, 21474826480, 21474826480, 25769703776, + 25769703776, 25769703776, 30063771072, 30063771072, 30063771072, + 34349738368, 34349738368, 34349738368, 34349738368, 38554705664, + 38554705664, 38554705664, 41949672960, 41949672960, 41949672960, + 42949672960, 42949672960}; + return uint32_t((x + table[int_log2(x)]) >> 32); +} + +int int_log2(uint64_t x) { return 63 - leading_zeroes(x | 1); } + +int fast_digit_count(uint64_t x) { + static uint64_t table[] = {9, + 99, + 999, + 9999, + 99999, + 999999, + 9999999, + 99999999, + 999999999, + 9999999999, + 99999999999, + 999999999999, + 9999999999999, + 99999999999999, + 999999999999999ULL, + 9999999999999999ULL, + 99999999999999999ULL, + 999999999999999999ULL, + 9999999999999999999ULL}; + int y = (19 * int_log2(x) >> 6); + y += x > table[y]; + return y + 1; +} + +template ::value>::type> +simdjson_inline size_t digit_count(number_type v) noexcept { + static_assert(sizeof(number_type) == 8 || sizeof(number_type) == 4 || + sizeof(number_type) == 2 || sizeof(number_type) == 1, + "We only support 8-bit, 16-bit, 32-bit and 64-bit numbers"); + return fast_digit_count(v); +} +static const char decimal_table[200] = { + 0x30, 0x30, 0x30, 0x31, 0x30, 0x32, 0x30, 0x33, 0x30, 0x34, 0x30, 0x35, + 0x30, 0x36, 0x30, 0x37, 0x30, 0x38, 0x30, 0x39, 0x31, 0x30, 0x31, 0x31, + 0x31, 0x32, 0x31, 0x33, 0x31, 0x34, 0x31, 0x35, 0x31, 0x36, 0x31, 0x37, + 0x31, 0x38, 0x31, 0x39, 0x32, 0x30, 0x32, 0x31, 0x32, 0x32, 0x32, 0x33, + 0x32, 0x34, 0x32, 0x35, 0x32, 0x36, 0x32, 0x37, 0x32, 0x38, 0x32, 0x39, + 0x33, 0x30, 0x33, 0x31, 0x33, 0x32, 0x33, 0x33, 0x33, 0x34, 0x33, 0x35, + 0x33, 0x36, 0x33, 0x37, 0x33, 0x38, 0x33, 0x39, 0x34, 0x30, 0x34, 0x31, + 0x34, 0x32, 0x34, 0x33, 0x34, 0x34, 0x34, 0x35, 0x34, 0x36, 0x34, 0x37, + 0x34, 0x38, 0x34, 0x39, 0x35, 0x30, 0x35, 0x31, 0x35, 0x32, 0x35, 0x33, + 0x35, 0x34, 0x35, 0x35, 0x35, 0x36, 0x35, 0x37, 0x35, 0x38, 0x35, 0x39, + 0x36, 0x30, 0x36, 0x31, 0x36, 0x32, 0x36, 0x33, 0x36, 0x34, 0x36, 0x35, + 0x36, 0x36, 0x36, 0x37, 0x36, 0x38, 0x36, 0x39, 0x37, 0x30, 0x37, 0x31, + 0x37, 0x32, 0x37, 0x33, 0x37, 0x34, 0x37, 0x35, 0x37, 0x36, 0x37, 0x37, + 0x37, 0x38, 0x37, 0x39, 0x38, 0x30, 0x38, 0x31, 0x38, 0x32, 0x38, 0x33, + 0x38, 0x34, 0x38, 0x35, 0x38, 0x36, 0x38, 0x37, 0x38, 0x38, 0x38, 0x39, + 0x39, 0x30, 0x39, 0x31, 0x39, 0x32, 0x39, 0x33, 0x39, 0x34, 0x39, 0x35, + 0x39, 0x36, 0x39, 0x37, 0x39, 0x38, 0x39, 0x39, +}; +} // namespace internal + +template +simdjson_inline void string_builder::append(number_type v) noexcept { + static_assert(std::is_same::value || + std::is_integral::value || + std::is_floating_point::value, + "Unsupported number type"); + // If C++17 is available, we can 'if constexpr' here. + SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + if (v) { + constexpr char true_literal[] = "true"; + constexpr size_t true_len = sizeof(true_literal) - 1; + if (capacity_check(true_len)) { + std::memcpy(buffer.get() + position, true_literal, true_len); + position += true_len; + } + } else { + constexpr char false_literal[] = "false"; + constexpr size_t false_len = sizeof(false_literal) - 1; + if (capacity_check(false_len)) { + std::memcpy(buffer.get() + position, false_literal, false_len); + position += false_len; + } + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_unsigned::value) { + constexpr size_t max_number_size = 20; + if (capacity_check(max_number_size)) { + using unsigned_type = typename std::make_unsigned::type; + unsigned_type pv = static_cast(v); + size_t dc = internal::digit_count(pv); + char *write_pointer = buffer.get() + position + dc - 1; + while (pv >= 100) { + memcpy(write_pointer - 1, &internal::decimal_table[(pv % 100)*2], 2); + write_pointer -= 2; + pv /= 100; + } + if (pv >= 10) { + *write_pointer-- = char('0' + (pv % 10)); + pv /= 10; + } + *write_pointer = char('0' + pv); + position += dc; + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_integral::value) { + constexpr size_t max_number_size = 20; + if (capacity_check(max_number_size)) { + using unsigned_type = typename std::make_unsigned::type; + bool negative = v < 0; + unsigned_type pv = static_cast(v); + if (negative) { + pv = 0 - pv; // the 0 is for Microsoft + } + size_t dc = internal::digit_count(pv); + if (negative) { + buffer.get()[position++] = '-'; + } + char *write_pointer = buffer.get() + position + dc - 1; + while (pv >= 100) { + memcpy(write_pointer - 1, &internal::decimal_table[(pv % 100)*2], 2); + write_pointer -= 2; + pv /= 100; + } + if (pv >= 10) { + *write_pointer-- = char('0' + (pv % 10)); + pv /= 10; + } + *write_pointer = char('0' + pv); + position += dc; + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_floating_point::value) { + constexpr size_t max_number_size = 24; + if (capacity_check(max_number_size)) { + // We could specialize for float. + char *end = simdjson::internal::to_chars(buffer.get() + position, nullptr, + double(v)); + position = end - buffer.get(); + } + } +} + +simdjson_inline void +string_builder::escape_and_append(std::string_view input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(6 * input.size())) { + position += write_string_escaped(input, buffer.get() + position); + } +} + +simdjson_inline void +string_builder::escape_and_append_with_quotes(std::string_view input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(2 + 6 * input.size())) { + buffer.get()[position++] = '"'; + position += write_string_escaped(input, buffer.get() + position); + buffer.get()[position++] = '"'; + } +} + +simdjson_inline void +string_builder::escape_and_append_with_quotes(char input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(2 + 6 * 1)) { + buffer.get()[position++] = '"'; + std::string_view cinput(&input, 1); + position += write_string_escaped(cinput, buffer.get() + position); + buffer.get()[position++] = '"'; + } +} + +simdjson_inline void string_builder::escape_and_append_with_quotes(const char* input) noexcept { + std::string_view cinput(input); + escape_and_append_with_quotes(cinput); +} + +simdjson_inline void string_builder::append_raw(const char *c) noexcept { + size_t len = std::strlen(c); + append_raw(c, len); +} + +simdjson_inline void +string_builder::append_raw(std::string_view input) noexcept { + if (capacity_check(input.size())) { + std::memcpy(buffer.get() + position, input.data(), input.size()); + position += input.size(); + } +} + +simdjson_inline void string_builder::append_raw(const char *str, + size_t len) noexcept { + if (capacity_check(len)) { + std::memcpy(buffer.get() + position, str, len); + position += len; + } +} + +#if SIMDJSON_EXCEPTIONS +simdjson_inline string_builder::operator std::string() const noexcept(false) { + return std::string(std::string_view()); +} + +simdjson_inline string_builder::operator std::string_view() const + noexcept(false) { + return view(); +} +#endif + +simdjson_inline simdjson_result +string_builder::view() const noexcept { + if (!is_valid) { + return simdjson::OUT_OF_CAPACITY; + } + return std::string_view(buffer.get(), position); +} + +simdjson_inline simdjson_result string_builder::c_str() noexcept { + if (capacity_check(1)) { + buffer.get()[position] = '\0'; + return buffer.get(); + } + return simdjson::OUT_OF_CAPACITY; +} + +simdjson_inline bool string_builder::validate_unicode() const noexcept { + return simdjson::validate_utf8(buffer.get(), position); +} + +simdjson_inline void string_builder::start_object() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '{'; + } +} + + +simdjson_inline void string_builder::end_object() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '}'; + } +} + + +simdjson_inline void string_builder::start_array() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '['; + } +} + + +simdjson_inline void string_builder::end_array() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ']'; + } +} + + +simdjson_inline void string_builder::append_comma() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ','; + } +} + + +simdjson_inline void string_builder::append_colon() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ':'; + } +} + +template +simdjson_inline void string_builder::append_key_value(key_type key, value_type value) noexcept { + static_assert( + std::is_arithmetic::value || + std::is_same::value || + std::is_same::value || + std::is_convertible::value || + std::is_same::value, + "Unsupported value type"); + static_assert( + std::is_same::value || + std::is_convertible::value, + "Unsupported key type"); + escape_and_append_with_quotes(key); + append_colon(); + SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + append_null(); + } else SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + escape_and_append_with_quotes(value); + } else SIMDJSON_IF_CONSTEXPR(std::is_convertible::value) { + escape_and_append_with_quotes(value); + } else SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + escape_and_append_with_quotes(value); + } else { + append(value); + } +} + +} // namespace builder +} // namespace icelake +} // namespace simdjson + +#endif // SIMDJSON_GENERIC_STRING_BUILDER_INL_H +/* end file simdjson/generic/ondemand/json_string_builder-inl.h for icelake */ +/* including simdjson/generic/ondemand/json_builder.h for icelake: #include "simdjson/generic/ondemand/json_builder.h" */ +/* begin file simdjson/generic/ondemand/json_builder.h for icelake */ +/** + * This file is part of the builder API. It is temporarily in the ondemand directory + * but we will move it to a builder directory later. + */ +#ifndef SIMDJSON_GENERIC_BUILDER_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/builder/json_string_builder.h" */ +/* amalgamation skipped (editor-only): #include "simdjson/concepts.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ +#if SIMDJSON_STATIC_REFLECTION + +#include +#include +#include +#include +#include +#include +// #include // for std::define_static_string - header not available yet + +namespace simdjson { +namespace icelake { +namespace builder { + +// Concept that checks if a type is a container but not a string (because +// strings handling must be handled differently) +template +concept container_but_not_string = + requires(T a) { + { a.size() } -> std::convertible_to; + { + a[std::declval()] + }; // check if elements are accessible for the subscript operator + } && !std::is_same_v && + !std::is_same_v && !std::is_same_v; + +template + requires(container_but_not_string) +constexpr void atom(string_builder &b, const T &t) { + if (t.size() == 0) { + b.append_raw("[]"); + return; + } + b.append('['); + atom(b, t[0]); + for (size_t i = 1; i < t.size(); ++i) { + b.append(','); + atom(b, t[i]); + } + b.append(']'); +} + +template + requires(std::is_same_v || + std::is_same_v || + std::is_same_v || + std::is_same_v) +constexpr void atom(string_builder &b, const T &t) { + b.escape_and_append_with_quotes(t); +} + +template +constexpr void atom(string_builder &b, const T &m) { + if (m.empty()) { + b.append_raw("{}"); + return; + } + b.append('{'); + bool first = true; + for (const auto& [key, value] : m) { + if (!first) { + b.append(','); + } + first = false; + // Keys must be convertible to string_view per the concept + b.escape_and_append_with_quotes(key); + b.append(':'); + atom(b, value); + } + b.append('}'); +} + + +template::value && !std::is_same_v>::type> +constexpr void atom(string_builder &b, const number_type t) { + b.append(t); +} +#if SIMDJSON_CONSTEVAL +consteval std::string consteval_to_quoted_escaped(std::string_view input); +#endif + +template + requires(std::is_class_v && !container_but_not_string && + !concepts::string_view_keyed_map && + !std::is_same_v && + !std::is_same_v) +constexpr void atom(string_builder &b, const T &t) { + int i = 0; + b.append('{'); + [:expand(std::meta::nonstatic_data_members_of(^^T, std::meta::access_context::unchecked())):] >> [&]() { + if (i != 0) + b.append(','); + constexpr auto key = std::define_static_string(consteval_to_quoted_escaped(std::meta::identifier_of(dm))); + b.append_raw(key); + b.append(':'); + atom(b, t.[:dm:]); + i++; + }; + b.append('}'); +} + +// works for struct +template void append(string_builder &b, const Z &z) { + int i = 0; + b.append('{'); + [:expand(std::meta::nonstatic_data_members_of(^^Z, std::meta::access_context::unchecked())):] >> [&]() { + if (i != 0) + b.append(','); + constexpr auto key = std::define_static_string(consteval_to_quoted_escaped(std::meta::identifier_of(dm))); + b.append_raw(key); + b.append(':'); + atom(b, z.[:dm:]); + i++; + }; + b.append('}'); +} + +// works for container +template + requires(container_but_not_string) +void append(string_builder &b, const Z &z) { + if (z.size() == 0) { + b.append_raw("[]"); + return; + } + b.append('['); + atom(b, z[0]); + for (size_t i = 1; i < z.size(); ++i) { + b.append(','); + atom(b, z[i]); + } + b.append(']'); +} + +template +simdjson_result to_json_string(const Z &z) { + string_builder b; + append(b, z); + std::string_view s; + if(auto e = b.view().get(s); e) { return e; } + return std::string(s); +} + +template +simdjson_error to_json(const Z &z, std::string &s) { + string_builder b; + append(b, z); + std::string_view view; + if(auto e = b.view().get(view); e) { return e; } + s.assign(view); + return SUCCESS; +} +} // namespace json_builder +} // namespace icelake +} // namespace simdjson +#endif // SIMDJSON_STATIC_REFLECTION + +#endif +/* end file simdjson/generic/ondemand/json_builder.h for icelake */ /* end file simdjson/generic/ondemand/amalgamated.h for icelake */ /* including simdjson/icelake/end.h: #include "simdjson/icelake/end.h" */ @@ -77783,6 +83703,32 @@ backslash_and_quote::copy_and_find(const uint8_t *src, uint8_t *dst) { }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 16; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits); } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + // We store it as a 64-bit bitmask even though we only need 16 bits. + uint64_t((is_backslash | is_quote | is_control).to_bitmask()) + }; +} + } // unnamed namespace } // namespace ppc64 } // namespace simdjson @@ -77941,10 +83887,26 @@ concept nothrow_deserializable = nothrow_custom_deserializable || is_bu /// Deserialize Tag inline constexpr struct deserialize_tag { + using array_type = ppc64::ondemand::array; + using object_type = ppc64::ondemand::object; using value_type = ppc64::ondemand::value; using document_type = ppc64::ondemand::document; using document_reference_type = ppc64::ondemand::document_reference; + // Customization Point for array + template + requires custom_deserializable + [[nodiscard]] constexpr /* error_code */ auto operator()(array_type &object, T& output) const noexcept(nothrow_custom_deserializable) { + return tag_invoke(*this, object, output); + } + + // Customization Point for object + template + requires custom_deserializable + [[nodiscard]] constexpr /* error_code */ auto operator()(object_type &object, T& output) const noexcept(nothrow_custom_deserializable) { + return tag_invoke(*this, object, output); + } + // Customization Point for value template requires custom_deserializable @@ -78512,6 +84474,7 @@ public: * * You may use get_double(), get_bool(), get_uint64(), get_int64(), * get_object(), get_array(), get_raw_json_string(), or get_string() instead. + * When SIMDJSON_SUPPORTS_DESERIALIZATION is set, custom types are also supported. * * @returns A value of the given type, parsed from the JSON. * @returns INCORRECT_TYPE If the JSON value is not the given type. @@ -78535,6 +84498,7 @@ public: * Get this value as the given type. * * Supported types: object, array, raw_json_string, string_view, uint64_t, int64_t, double, bool + * If the macro SIMDJSON_SUPPORTS_DESERIALIZATION is set, then custom types are also supported. * * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. * @returns INCORRECT_TYPE If the JSON value is not an object. @@ -80777,6 +86741,37 @@ public: * - INDEX_OUT_OF_BOUNDS if the array index is larger than an array length */ simdjson_inline simdjson_result at(size_t index) noexcept; + +#if SIMDJSON_SUPPORTS_DESERIALIZATION + /** + * Get this array as the given type. + * + * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. + * @returns INCORRECT_TYPE If the JSON array is not of the given type. + * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. + */ + template + simdjson_inline error_code get(T &out) + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) { + static_assert(custom_deserializable); + return deserialize(*this, out); + } + /** + * Get this array as the given type. + * + * @returns A value of the given type, parsed from the JSON. + * @returns INCORRECT_TYPE If the JSON value is not the given type. + */ + template + simdjson_inline simdjson_result get() + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) + { + static_assert(std::is_default_constructible::value, "The specified type is not default constructible."); + T out{}; + SIMDJSON_TRY(get(out)); + return out; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION protected: /** * Go to the end of the array, no matter where you are right now. @@ -80855,7 +86850,28 @@ public: simdjson_inline simdjson_result at_pointer(std::string_view json_pointer) noexcept; simdjson_inline simdjson_result at_path(std::string_view json_path) noexcept; simdjson_inline simdjson_result raw_json() noexcept; +#if SIMDJSON_SUPPORTS_DESERIALIZATION + // TODO: move this code into object-inl.h + template + simdjson_inline simdjson_result get() noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + return first; + } + return first.get(); + } + template + simdjson_inline error_code get(T& out) noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + out = first; + } else { + SIMDJSON_TRY( first.get(out) ); + } + return SUCCESS; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION }; } // namespace simdjson @@ -81189,7 +87205,7 @@ public: * Be mindful that the document instance must remain in scope while you are accessing object, array and value instances. * * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. - * @returns INCORRECT_TYPE If the JSON value is not an object. + * @returns INCORRECT_TYPE If the JSON value is of the given type. * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. */ template @@ -82676,6 +88692,36 @@ public: */ simdjson_inline simdjson_result raw_json() noexcept; +#if SIMDJSON_SUPPORTS_DESERIALIZATION + /** + * Get this object as the given type. + * + * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. + * @returns INCORRECT_TYPE If the JSON object is not of the given type. + * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. + */ + template + simdjson_inline error_code get(T &out) + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) { + static_assert(custom_deserializable); + return deserialize(*this, out); + } + /** + * Get this array as the given type. + * + * @returns A value of the given type, parsed from the JSON. + * @returns INCORRECT_TYPE If the JSON value is not the given type. + */ + template + simdjson_inline simdjson_result get() + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) + { + static_assert(std::is_default_constructible::value, "The specified type is not default constructible."); + T out{}; + SIMDJSON_TRY(get(out)); + return out; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION protected: /** * Go to the end of the object, no matter where you are right now. @@ -82719,12 +88765,32 @@ public: simdjson_inline simdjson_result operator[](std::string_view key) && noexcept; simdjson_inline simdjson_result at_pointer(std::string_view json_pointer) noexcept; simdjson_inline simdjson_result at_path(std::string_view json_path) noexcept; - inline simdjson_result reset() noexcept; inline simdjson_result is_empty() noexcept; inline simdjson_result count_fields() & noexcept; inline simdjson_result raw_json() noexcept; + #if SIMDJSON_SUPPORTS_DESERIALIZATION + // TODO: move this code into object-inl.h + template + simdjson_inline simdjson_result get() noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + return first; + } + return first.get(); + } + template + simdjson_inline error_code get(T& out) noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + out = first; + } else { + SIMDJSON_TRY( first.get(out) ); + } + return SUCCESS; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION }; } // namespace simdjson @@ -82929,12 +88995,17 @@ inline std::ostream& operator<<(std::ostream& out, simdjson::simdjson_result #include +#if SIMDJSON_STATIC_REFLECTION +#include +// #include // for std::define_static_string - header not available yet +#endif namespace simdjson { template @@ -82981,6 +89052,22 @@ error_code tag_invoke(deserialize_tag, auto &val, T &out) noexcept { return SUCCESS; } +////////////////////////////// +// String deserialization +////////////////////////////// + +// just a character! +error_code tag_invoke(deserialize_tag, auto &val, char &out) noexcept { + std::string_view x; + SIMDJSON_TRY(val.get_string().get(x)); + if(x.size() != 1) { + return INCORRECT_TYPE; + } + out = x[0]; + return SUCCESS; +} + +// any string-like type (can be constructed from std::string_view) template requires(!require_custom_serialization) error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(std::is_nothrow_constructible_v) { @@ -83002,15 +89089,20 @@ template requires(!require_custom_serialization) error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(false) { using value_type = typename std::remove_cvref_t::value_type; - static_assert( + /*static_assert( deserializable, - "The specified type inside the container must itself be deserializable"); + "The specified type inside the container must itself be deserializable");*/ static_assert( std::is_default_constructible_v, "The specified type inside the container must default constructible."); ppc64::ondemand::array arr; - SIMDJSON_TRY(val.get_array().get(arr)); + if constexpr (std::is_same_v, ppc64::ondemand::array>) { + arr = val; + } else { + SIMDJSON_TRY(val.get_array().get(arr)); + } + for (auto v : arr) { if constexpr (concepts::returns_reference) { if (auto const err = v.get().get(concepts::emplace_one(out)); @@ -83067,7 +89159,45 @@ error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(false) { return SUCCESS; } +template +error_code tag_invoke(deserialize_tag, ppc64::ondemand::object &obj, T &out) noexcept { + using value_type = typename std::remove_cvref_t::mapped_type; + out.clear(); + for (auto field : obj) { + std::string_view key; + SIMDJSON_TRY(field.unescaped_key().get(key)); + + ppc64::ondemand::value value_obj; + SIMDJSON_TRY(field.value().get(value_obj)); + + value_type this_value; + SIMDJSON_TRY(value_obj.get(this_value)); + out.emplace(typename T::key_type(key), std::move(this_value)); + } + return SUCCESS; +} + +template +error_code tag_invoke(deserialize_tag, ppc64::ondemand::value &val, T &out) noexcept { + ppc64::ondemand::object obj; + SIMDJSON_TRY(val.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} + +template +error_code tag_invoke(deserialize_tag, ppc64::ondemand::document &doc, T &out) noexcept { + ppc64::ondemand::object obj; + SIMDJSON_TRY(doc.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} + +template +error_code tag_invoke(deserialize_tag, ppc64::ondemand::document_reference &doc, T &out) noexcept { + ppc64::ondemand::object obj; + SIMDJSON_TRY(doc.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} /** @@ -83129,6 +89259,199 @@ error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(nothrow_deser return SUCCESS; } + +#if SIMDJSON_STATIC_REFLECTION + + +template +constexpr bool user_defined_type = (std::is_class_v +&& !std::is_same_v && !std::is_same_v && !concepts::optional_type && +!concepts::appendable_containers && !require_custom_serialization); + + +// workaround from +// https://www.open-std.org/jtc1/sc22/wg21/docs/papers/2024/p2996r10.html#back-and-forth +// for missing expansion statements +namespace __impl { + template + struct replicator_type { + template + constexpr void operator>>(F body) const { + (body.template operator()(), ...); + } + }; + + template + replicator_type replicator = {}; +} + +template +consteval auto expand(R range) { + std::vector args; + for (auto r : range) { + args.push_back(reflect_value(r)); + } + return substitute(^^__impl::replicator, args); +} +// end of workaround + +template + requires(user_defined_type && std::is_class_v) +error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept { + ppc64::ondemand::object obj; + if constexpr (std::is_same_v, ppc64::ondemand::object>) { + obj = val; + } else { + SIMDJSON_TRY(val.get_object().get(obj)); + } + error_code e = simdjson::SUCCESS; + + [:expand(std::meta::nonstatic_data_members_of(^^T, std::meta::access_context::unchecked())):] >> [&]() { + if constexpr (!std::meta::is_const(mem) && std::meta::is_public(mem)) { + constexpr std::string_view key = std::define_static_string(std::meta::identifier_of(mem)); + static_assert( + deserializable, + "The specified type inside the class must itself be deserializable"); + // as long we are succesful or the field is not found, we continue + if(e == simdjson::SUCCESS || e == simdjson::NO_SUCH_FIELD) { + obj[key].get(out.[:mem:]); + } + } + }; + return e; +} +template + requires(user_defined_type>) +error_code tag_invoke(deserialize_tag, simdjson_value &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { + return MEMALLOC; + } + } + if (auto err = val.get(*out)) { + out.reset(); + return err; + } + return SUCCESS; +} + +template + requires(user_defined_type>) +error_code tag_invoke(deserialize_tag, simdjson_value &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { + return MEMALLOC; + } + } + if (auto err = val.get(*out)) { + out.reset(); + return err; + } + return SUCCESS; +} + +#endif // SIMDJSON_STATIC_REFLECTION + +//////////////////////////////////////// +// Unique pointers +//////////////////////////////////////// +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_bool().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_int64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_uint64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_double().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_string().get(*out)); + return SUCCESS; +} + + +//////////////////////////////////////// +// Shared pointers +//////////////////////////////////////// +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_bool().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_int64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_uint64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_double().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_string().get(*out)); + return SUCCESS; +} + + } // namespace simdjson #endif // SIMDJSON_ONDEMAND_DESERIALIZE_H @@ -86616,6 +92939,7 @@ simdjson_inline simdjson_result simdjson_result::simdjson_resul #endif // SIMDJSON_GENERIC_ONDEMAND_VALUE_ITERATOR_INL_H /* end file simdjson/generic/ondemand/value_iterator-inl.h for ppc64 */ +// JSON builder, ideally they should not be part of the ondemand directory +// but it is convenient for now to have them here. +/* including simdjson/generic/ondemand/json_string_builder.h for ppc64: #include "simdjson/generic/ondemand/json_string_builder.h" */ +/* begin file simdjson/generic/ondemand/json_string_builder.h for ppc64 */ +/** + * This file is part of the builder API. It is temporarily in the ondemand directory + * but we will move it to a builder directory later. + */ +#ifndef SIMDJSON_GENERIC_STRING_BUILDER_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/implementation_simdjson_result_base.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ + +namespace simdjson { +namespace ppc64 { +namespace builder { + +/** + * A builder for JSON strings representing documents. This is a low-level + * builder that is not meant to be used directly by end-users. Though it + * supports atomic types (Booleans, strings), it does not support composed + * types (arrays and objects). + * + * Ultimately, this class should support kernel-specific optimizations. E.g., + * it may make use of SIMD instructions to escape strings faster. + */ +class string_builder { +public: + simdjson_inline string_builder(size_t initial_capacity = 1024); + + /** + * Append number (includes Booleans). Booleans are mapped to the strings + * false and true. Numbers are converted to strings abiding by the JSON standard. + * Floating-point numbers are converted to the shortest string that 'correctly' + * represents the number. + */ + template::value>::type> + simdjson_inline void append(number_type v) noexcept; + + /** + * Append character c. + */ + simdjson_inline void append(char c) noexcept; + + /** + * Append the string 'null'. + */ + simdjson_inline void append_null() noexcept; + + /** + * Clear the content. + */ + simdjson_inline void clear() noexcept; + + /** + * Append the std::string_view, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append(std::string_view input) noexcept; + + /** + * Append the std::string_view surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(std::string_view input) noexcept; + + /** + * Append the character surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(char input) noexcept; + + /** + * Append the character surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(const char* input) noexcept; + + /** + * Append the C string directly, without escaping. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(const char *c) noexcept; + + /** + * Append "{" to the buffer. + */ + simdjson_inline void start_object() noexcept; + + /** + * Append "}" to the buffer. + */ + simdjson_inline void end_object() noexcept; + + /** + * Append "[" to the buffer. + */ + simdjson_inline void start_array() noexcept; + + /** + * Append "]" to the buffer. + */ + simdjson_inline void end_array() noexcept; + + /** + * Append "," to the buffer. + */ + simdjson_inline void append_comma() noexcept; + + /** + * Append ":" to the buffer. + */ + simdjson_inline void append_colon() noexcept; + + /** + * Append a key-value pair to the buffer. + * The key is escaped and surrounded by double quotes. + * The value is escaped if it is a string. + */ + template + simdjson_inline void append_key_value(key_type key, value_type value) noexcept; + /** + * Append the std::string_view directly, without escaping. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(std::string_view input) noexcept; + + /** + * Append len characters from str. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(const char *str, size_t len) noexcept; +#if SIMDJSON_EXCEPTIONS + /** + * Creates an std::string from the written JSON buffer. + * Throws if memory allocation failed + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content if needed. + */ + simdjson_inline operator std::string() const noexcept(false); + + /** + * Creates an std::string_view from the written JSON buffer. + * Throws if memory allocation failed. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content if needed. + */ + simdjson_inline operator std::string_view() const noexcept(false); +#endif + + /** + * Returns a view on the written JSON buffer. Returns an error + * if memory allocation failed. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content. + */ + simdjson_inline simdjson_result view() const noexcept; + + /** + * Appends the null character to the buffer and returns + * a pointer to the beginning of the written JSON buffer. + * Returns an error if memory allocation failed. + * The result is null-terminated. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content. + */ + simdjson_inline simdjson_result c_str() noexcept; + + /** + * Return true if the content is valid UTF-8. + */ + simdjson_inline bool validate_unicode() const noexcept; + + /** + * Returns the current size of the written JSON buffer. + * If an error occurred, returns 0. + */ + simdjson_inline size_t size() const noexcept; + +private: + /** + * Returns true if we can write at least upcoming_bytes bytes. + * The underlying buffer is reallocated if needed. It is designed + * to be called before writing to the buffer. It should be fast. + */ + simdjson_inline bool capacity_check(size_t upcoming_bytes); + + /** + * Grow the buffer to at least desired_capacity bytes. + * If the allocation fails, is_valid is set to false. We expect + * that this function would not be repeatedly called. + */ + simdjson_inline void grow_buffer(size_t desired_capacity); + + /** + * We use this helper function to make sure that is_valid is kept consistent. + */ + simdjson_inline void set_valid(bool valid) noexcept; + + std::unique_ptr buffer{}; + size_t position{0}; + size_t capacity{0}; + bool is_valid{true}; +}; + + + +} +} +} // namespace simdjson + +#endif // SIMDJSON_GENERIC_STRING_BUILDER_H +/* end file simdjson/generic/ondemand/json_string_builder.h for ppc64 */ +/* including simdjson/generic/ondemand/json_string_builder-inl.h for ppc64: #include "simdjson/generic/ondemand/json_string_builder-inl.h" */ +/* begin file simdjson/generic/ondemand/json_string_builder-inl.h for ppc64 */ +/** + * This file is part of the builder API. It is temporarily in the ondemand + * directory but we will move it to a builder directory later. + */ +#include +#include +#include +#ifndef SIMDJSON_GENERIC_STRING_BUILDER_INL_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_INL_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/builder/json_string_builder.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ + +/* + * Empirically, we have found that an inlined optimization is important for + * performance. The following macros are not ideal. We should find a better + * way to inline the code. + */ + +#if defined(__SSE2__) || defined(__x86_64__) || defined(__x86_64) || \ + (defined(_M_AMD64) || defined(_M_X64) || \ + (defined(_M_IX86_FP) && _M_IX86_FP == 2)) +#ifndef SIMDJSON_EXPERIMENTAL_HAS_SSE2 +#define SIMDJSON_EXPERIMENTAL_HAS_SSE2 1 +#endif +#endif + +#if defined(__aarch64__) || defined(_M_ARM64) +#ifndef SIMDJSON_EXPERIMENTAL_HAS_NEON +#define SIMDJSON_EXPERIMENTAL_HAS_NEON 1 +#endif +#endif +#if SIMDJSON_EXPERIMENTAL_HAS_NEON +#include +#endif +#if SIMDJSON_EXPERIMENTAL_HAS_SSE2 +#include +#endif + +namespace simdjson { +namespace ppc64 { +namespace builder { + +static SIMDJSON_CONSTEXPR_LAMBDA std::array json_quotable_character = { + 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, + 1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}; + +/** + +A possible SWAR implementation of has_json_escapable_byte. It is not used because +it is slower than the current implementation. It is kept here for reference (to show +that we tried it). + +inline bool has_json_escapable_byte(uint64_t x) { + uint64_t is_ascii = 0x8080808080808080ULL & ~x; + uint64_t xor2 = x ^ 0x0202020202020202ULL; + uint64_t lt32_or_eq34 = xor2 - 0x2121212121212121ULL; + uint64_t sub92 = x ^ 0x5C5C5C5C5C5C5C5CULL; + uint64_t eq92 = (sub92 - 0x0101010101010101ULL); + return ((lt32_or_eq34 | eq92) & is_ascii) != 0; +} + +**/ + +SIMDJSON_CONSTEXPR_LAMBDA simdjson_inline bool +simple_needs_escaping(std::string_view v) { + for (char c : v) { + // a table lookup is faster than a series of comparisons + if(json_quotable_character[static_cast(c)]) { + return true; + } + } + return false; +} + +#if SIMDJSON_EXPERIMENTAL_HAS_NEON +simdjson_inline bool fast_needs_escaping(std::string_view view) { + if (view.size() < 16) { + return simple_needs_escaping(view); + } + size_t i = 0; + uint8x16_t running = vdupq_n_u8(0); + uint8x16_t v34 = vdupq_n_u8(34); + uint8x16_t v92 = vdupq_n_u8(92); + + for (; i + 15 < view.size(); i += 16) { + uint8x16_t word = vld1q_u8((const uint8_t *)view.data() + i); + running = vorrq_u8(running, vceqq_u8(word, v34)); + running = vorrq_u8(running, vceqq_u8(word, v92)); + running = vorrq_u8(running, vcltq_u8(word, vdupq_n_u8(32))); + } + if (i < view.size()) { + uint8x16_t word = + vld1q_u8((const uint8_t *)view.data() + view.length() - 16); + running = vorrq_u8(running, vceqq_u8(word, v34)); + running = vorrq_u8(running, vceqq_u8(word, v92)); + running = vorrq_u8(running, vcltq_u8(word, vdupq_n_u8(32))); + } + return vmaxvq_u32(vreinterpretq_u32_u8(running)) != 0; +} +#elif SIMDJSON_EXPERIMENTAL_HAS_SSE2 +simdjson_inline bool fast_needs_escaping(std::string_view view) { + if (view.size() < 16) { + return simple_needs_escaping(view); + } + size_t i = 0; + __m128i running = _mm_setzero_si128(); + for (; i + 15 < view.size(); i += 16) { + + __m128i word = _mm_loadu_si128(reinterpret_cast(view.data() + i)); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(34))); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(92))); + running = _mm_or_si128( + running, _mm_cmpeq_epi8(_mm_subs_epu8(word, _mm_set1_epi8(31)), + _mm_setzero_si128())); + } + if (i < view.size()) { + __m128i word = + _mm_loadu_si128(reinterpret_cast(view.data() + view.length() - 16)); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(34))); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(92))); + running = _mm_or_si128( + running, _mm_cmpeq_epi8(_mm_subs_epu8(word, _mm_set1_epi8(31)), + _mm_setzero_si128())); + } + return _mm_movemask_epi8(running) != 0; +} +#else +simdjson_inline bool fast_needs_escaping(std::string_view view) { + return simple_needs_escaping(view); +} +#endif + + +SIMDJSON_CONSTEXPR_LAMBDA inline size_t +find_next_json_quotable_character(const std::string_view view, + size_t location) noexcept { + + for (auto pos = view.begin() + location; pos != view.end(); ++pos) { + if (json_quotable_character[static_cast(*pos)]) { + return pos - view.begin(); + } + } + return size_t(view.size()); +} + +SIMDJSON_CONSTEXPR_LAMBDA static std::string_view control_chars[] = { + "\\x0000", "\\x0001", "\\x0002", "\\x0003", "\\x0004", "\\x0005", "\\x0006", + "\\x0007", "\\x0008", "\\t", "\\n", "\\x000b", "\\f", "\\r", + "\\x000e", "\\x000f", "\\x0010", "\\x0011", "\\x0012", "\\x0013", "\\x0014", + "\\x0015", "\\x0016", "\\x0017", "\\x0018", "\\x0019", "\\x001a", "\\x001b", + "\\x001c", "\\x001d", "\\x001e", "\\x001f"}; + +SIMDJSON_CONSTEXPR_LAMBDA void escape_json_char(char c, char *&out) { + if (c == '"') { + memcpy(out, "\\\"", 2); + out += 2; + } else if (c == '\\') { + memcpy(out, "\\\\", 2); + out += 2; + } else { + std::string_view v = control_chars[uint8_t(c)]; + memcpy(out, v.data(), v.size()); + out += v.size(); + } +} + +inline size_t write_string_escaped(const std::string_view input, char *out) { + size_t mysize = input.size(); + if (!fast_needs_escaping(input)) { // fast path! + memcpy(out, input.data(), input.size()); + return input.size(); + } + const char *const initout = out; + size_t location = find_next_json_quotable_character(input, 0); + memcpy(out, input.data(), location); + out += location; + escape_json_char(input[location], out); + location += 1; + while (location < mysize) { + size_t newlocation = find_next_json_quotable_character(input, location); + memcpy(out, input.data() + location, newlocation - location); + out += newlocation - location; + location = newlocation; + if (location == mysize) { + break; + } + escape_json_char(input[location], out); + location += 1; + } + return out - initout; +} + +#if SIMDJSON_CONSTEVAL +// unoptimized, meant for compile-time execution +consteval std::string consteval_to_quoted_escaped(std::string_view input) { + std::string out = "\""; + for (char c : input) { + if (json_quotable_character[uint8_t(c)]) { + if (c == '"') { + out.append("\\\""); + } else if (c == '\\') { + out.append("\\\\"); + } else { + std::string_view v = control_chars[uint8_t(c)]; + out.append(v); + } + } else { + out.push_back(c); + } + } + out.push_back('"'); + return out; +} +#endif // SIMDJSON_CONSTEVAL + +simdjson_inline string_builder::string_builder(size_t initial_capacity) + : buffer(new(std::nothrow) char[initial_capacity]), position(0), + capacity(buffer.get() != nullptr ? initial_capacity : 0), + is_valid(buffer.get() != nullptr) {} + +simdjson_inline bool string_builder::capacity_check(size_t upcoming_bytes) { + // We use the convention that when is_valid is false, then the capacity and + // the position are 0. + // Most of the time, this function will return true. + if (simdjson_likely(upcoming_bytes <= capacity - position)) { + return true; + } + // check for overflow, most of the time there is no overflow + if (simdjson_likely(position + upcoming_bytes < position)) { + return false; + } + // We will rarely get here. + grow_buffer((std::max)(capacity * 2, position + upcoming_bytes)); + // If the buffer allocation failed, we set is_valid to false. + return is_valid; +} + +simdjson_inline void string_builder::grow_buffer(size_t desired_capacity) { + if (!is_valid) { + return; + } + std::unique_ptr new_buffer(new (std::nothrow) char[desired_capacity]); + if (new_buffer.get() == nullptr) { + set_valid(false); + return; + } + std::memcpy(new_buffer.get(), buffer.get(), position); + buffer.swap(new_buffer); + capacity = desired_capacity; +} + +simdjson_inline void string_builder::set_valid(bool valid) noexcept { + if (!valid) { + is_valid = false; + capacity = 0; + position = 0; + buffer.reset(); + } else { + is_valid = true; + } +} + +simdjson_inline size_t string_builder::size() const noexcept { + return position; +} + +simdjson_inline void string_builder::append(char c) noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = c; + } +} + +simdjson_inline void string_builder::append_null() noexcept { + constexpr char null_literal[] = "null"; + constexpr size_t null_len = sizeof(null_literal) - 1; + if (capacity_check(null_len)) { + std::memcpy(buffer.get() + position, null_literal, null_len); + position += null_len; + } +} + +simdjson_inline void string_builder::clear() noexcept { + position = 0; + // if it was invalid, we should try to repair it + if (!is_valid) { + capacity = 0; + buffer.reset(); + is_valid = true; + } +} + +namespace internal { + +// We could specialize further for 32-bit integers. +int int_log2(uint32_t x) { return (63 - leading_zeroes(x | 1)); } + +int fast_digit_count(uint32_t x) { + static uint64_t table[] = { + 4294967296, 8589934582, 8589934582, 8589934582, 12884901788, + 12884901788, 12884901788, 17179868184, 17179868184, 17179868184, + 21474826480, 21474826480, 21474826480, 21474826480, 25769703776, + 25769703776, 25769703776, 30063771072, 30063771072, 30063771072, + 34349738368, 34349738368, 34349738368, 34349738368, 38554705664, + 38554705664, 38554705664, 41949672960, 41949672960, 41949672960, + 42949672960, 42949672960}; + return uint32_t((x + table[int_log2(x)]) >> 32); +} + +int int_log2(uint64_t x) { return 63 - leading_zeroes(x | 1); } + +int fast_digit_count(uint64_t x) { + static uint64_t table[] = {9, + 99, + 999, + 9999, + 99999, + 999999, + 9999999, + 99999999, + 999999999, + 9999999999, + 99999999999, + 999999999999, + 9999999999999, + 99999999999999, + 999999999999999ULL, + 9999999999999999ULL, + 99999999999999999ULL, + 999999999999999999ULL, + 9999999999999999999ULL}; + int y = (19 * int_log2(x) >> 6); + y += x > table[y]; + return y + 1; +} + +template ::value>::type> +simdjson_inline size_t digit_count(number_type v) noexcept { + static_assert(sizeof(number_type) == 8 || sizeof(number_type) == 4 || + sizeof(number_type) == 2 || sizeof(number_type) == 1, + "We only support 8-bit, 16-bit, 32-bit and 64-bit numbers"); + return fast_digit_count(v); +} +static const char decimal_table[200] = { + 0x30, 0x30, 0x30, 0x31, 0x30, 0x32, 0x30, 0x33, 0x30, 0x34, 0x30, 0x35, + 0x30, 0x36, 0x30, 0x37, 0x30, 0x38, 0x30, 0x39, 0x31, 0x30, 0x31, 0x31, + 0x31, 0x32, 0x31, 0x33, 0x31, 0x34, 0x31, 0x35, 0x31, 0x36, 0x31, 0x37, + 0x31, 0x38, 0x31, 0x39, 0x32, 0x30, 0x32, 0x31, 0x32, 0x32, 0x32, 0x33, + 0x32, 0x34, 0x32, 0x35, 0x32, 0x36, 0x32, 0x37, 0x32, 0x38, 0x32, 0x39, + 0x33, 0x30, 0x33, 0x31, 0x33, 0x32, 0x33, 0x33, 0x33, 0x34, 0x33, 0x35, + 0x33, 0x36, 0x33, 0x37, 0x33, 0x38, 0x33, 0x39, 0x34, 0x30, 0x34, 0x31, + 0x34, 0x32, 0x34, 0x33, 0x34, 0x34, 0x34, 0x35, 0x34, 0x36, 0x34, 0x37, + 0x34, 0x38, 0x34, 0x39, 0x35, 0x30, 0x35, 0x31, 0x35, 0x32, 0x35, 0x33, + 0x35, 0x34, 0x35, 0x35, 0x35, 0x36, 0x35, 0x37, 0x35, 0x38, 0x35, 0x39, + 0x36, 0x30, 0x36, 0x31, 0x36, 0x32, 0x36, 0x33, 0x36, 0x34, 0x36, 0x35, + 0x36, 0x36, 0x36, 0x37, 0x36, 0x38, 0x36, 0x39, 0x37, 0x30, 0x37, 0x31, + 0x37, 0x32, 0x37, 0x33, 0x37, 0x34, 0x37, 0x35, 0x37, 0x36, 0x37, 0x37, + 0x37, 0x38, 0x37, 0x39, 0x38, 0x30, 0x38, 0x31, 0x38, 0x32, 0x38, 0x33, + 0x38, 0x34, 0x38, 0x35, 0x38, 0x36, 0x38, 0x37, 0x38, 0x38, 0x38, 0x39, + 0x39, 0x30, 0x39, 0x31, 0x39, 0x32, 0x39, 0x33, 0x39, 0x34, 0x39, 0x35, + 0x39, 0x36, 0x39, 0x37, 0x39, 0x38, 0x39, 0x39, +}; +} // namespace internal + +template +simdjson_inline void string_builder::append(number_type v) noexcept { + static_assert(std::is_same::value || + std::is_integral::value || + std::is_floating_point::value, + "Unsupported number type"); + // If C++17 is available, we can 'if constexpr' here. + SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + if (v) { + constexpr char true_literal[] = "true"; + constexpr size_t true_len = sizeof(true_literal) - 1; + if (capacity_check(true_len)) { + std::memcpy(buffer.get() + position, true_literal, true_len); + position += true_len; + } + } else { + constexpr char false_literal[] = "false"; + constexpr size_t false_len = sizeof(false_literal) - 1; + if (capacity_check(false_len)) { + std::memcpy(buffer.get() + position, false_literal, false_len); + position += false_len; + } + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_unsigned::value) { + constexpr size_t max_number_size = 20; + if (capacity_check(max_number_size)) { + using unsigned_type = typename std::make_unsigned::type; + unsigned_type pv = static_cast(v); + size_t dc = internal::digit_count(pv); + char *write_pointer = buffer.get() + position + dc - 1; + while (pv >= 100) { + memcpy(write_pointer - 1, &internal::decimal_table[(pv % 100)*2], 2); + write_pointer -= 2; + pv /= 100; + } + if (pv >= 10) { + *write_pointer-- = char('0' + (pv % 10)); + pv /= 10; + } + *write_pointer = char('0' + pv); + position += dc; + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_integral::value) { + constexpr size_t max_number_size = 20; + if (capacity_check(max_number_size)) { + using unsigned_type = typename std::make_unsigned::type; + bool negative = v < 0; + unsigned_type pv = static_cast(v); + if (negative) { + pv = 0 - pv; // the 0 is for Microsoft + } + size_t dc = internal::digit_count(pv); + if (negative) { + buffer.get()[position++] = '-'; + } + char *write_pointer = buffer.get() + position + dc - 1; + while (pv >= 100) { + memcpy(write_pointer - 1, &internal::decimal_table[(pv % 100)*2], 2); + write_pointer -= 2; + pv /= 100; + } + if (pv >= 10) { + *write_pointer-- = char('0' + (pv % 10)); + pv /= 10; + } + *write_pointer = char('0' + pv); + position += dc; + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_floating_point::value) { + constexpr size_t max_number_size = 24; + if (capacity_check(max_number_size)) { + // We could specialize for float. + char *end = simdjson::internal::to_chars(buffer.get() + position, nullptr, + double(v)); + position = end - buffer.get(); + } + } +} + +simdjson_inline void +string_builder::escape_and_append(std::string_view input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(6 * input.size())) { + position += write_string_escaped(input, buffer.get() + position); + } +} + +simdjson_inline void +string_builder::escape_and_append_with_quotes(std::string_view input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(2 + 6 * input.size())) { + buffer.get()[position++] = '"'; + position += write_string_escaped(input, buffer.get() + position); + buffer.get()[position++] = '"'; + } +} + +simdjson_inline void +string_builder::escape_and_append_with_quotes(char input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(2 + 6 * 1)) { + buffer.get()[position++] = '"'; + std::string_view cinput(&input, 1); + position += write_string_escaped(cinput, buffer.get() + position); + buffer.get()[position++] = '"'; + } +} + +simdjson_inline void string_builder::escape_and_append_with_quotes(const char* input) noexcept { + std::string_view cinput(input); + escape_and_append_with_quotes(cinput); +} + +simdjson_inline void string_builder::append_raw(const char *c) noexcept { + size_t len = std::strlen(c); + append_raw(c, len); +} + +simdjson_inline void +string_builder::append_raw(std::string_view input) noexcept { + if (capacity_check(input.size())) { + std::memcpy(buffer.get() + position, input.data(), input.size()); + position += input.size(); + } +} + +simdjson_inline void string_builder::append_raw(const char *str, + size_t len) noexcept { + if (capacity_check(len)) { + std::memcpy(buffer.get() + position, str, len); + position += len; + } +} + +#if SIMDJSON_EXCEPTIONS +simdjson_inline string_builder::operator std::string() const noexcept(false) { + return std::string(std::string_view()); +} + +simdjson_inline string_builder::operator std::string_view() const + noexcept(false) { + return view(); +} +#endif + +simdjson_inline simdjson_result +string_builder::view() const noexcept { + if (!is_valid) { + return simdjson::OUT_OF_CAPACITY; + } + return std::string_view(buffer.get(), position); +} + +simdjson_inline simdjson_result string_builder::c_str() noexcept { + if (capacity_check(1)) { + buffer.get()[position] = '\0'; + return buffer.get(); + } + return simdjson::OUT_OF_CAPACITY; +} + +simdjson_inline bool string_builder::validate_unicode() const noexcept { + return simdjson::validate_utf8(buffer.get(), position); +} + +simdjson_inline void string_builder::start_object() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '{'; + } +} + + +simdjson_inline void string_builder::end_object() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '}'; + } +} + + +simdjson_inline void string_builder::start_array() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '['; + } +} + + +simdjson_inline void string_builder::end_array() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ']'; + } +} + + +simdjson_inline void string_builder::append_comma() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ','; + } +} + + +simdjson_inline void string_builder::append_colon() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ':'; + } +} + +template +simdjson_inline void string_builder::append_key_value(key_type key, value_type value) noexcept { + static_assert( + std::is_arithmetic::value || + std::is_same::value || + std::is_same::value || + std::is_convertible::value || + std::is_same::value, + "Unsupported value type"); + static_assert( + std::is_same::value || + std::is_convertible::value, + "Unsupported key type"); + escape_and_append_with_quotes(key); + append_colon(); + SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + append_null(); + } else SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + escape_and_append_with_quotes(value); + } else SIMDJSON_IF_CONSTEXPR(std::is_convertible::value) { + escape_and_append_with_quotes(value); + } else SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + escape_and_append_with_quotes(value); + } else { + append(value); + } +} + +} // namespace builder +} // namespace ppc64 +} // namespace simdjson + +#endif // SIMDJSON_GENERIC_STRING_BUILDER_INL_H +/* end file simdjson/generic/ondemand/json_string_builder-inl.h for ppc64 */ +/* including simdjson/generic/ondemand/json_builder.h for ppc64: #include "simdjson/generic/ondemand/json_builder.h" */ +/* begin file simdjson/generic/ondemand/json_builder.h for ppc64 */ +/** + * This file is part of the builder API. It is temporarily in the ondemand directory + * but we will move it to a builder directory later. + */ +#ifndef SIMDJSON_GENERIC_BUILDER_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/builder/json_string_builder.h" */ +/* amalgamation skipped (editor-only): #include "simdjson/concepts.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ +#if SIMDJSON_STATIC_REFLECTION + +#include +#include +#include +#include +#include +#include +// #include // for std::define_static_string - header not available yet + +namespace simdjson { +namespace ppc64 { +namespace builder { + +// Concept that checks if a type is a container but not a string (because +// strings handling must be handled differently) +template +concept container_but_not_string = + requires(T a) { + { a.size() } -> std::convertible_to; + { + a[std::declval()] + }; // check if elements are accessible for the subscript operator + } && !std::is_same_v && + !std::is_same_v && !std::is_same_v; + +template + requires(container_but_not_string) +constexpr void atom(string_builder &b, const T &t) { + if (t.size() == 0) { + b.append_raw("[]"); + return; + } + b.append('['); + atom(b, t[0]); + for (size_t i = 1; i < t.size(); ++i) { + b.append(','); + atom(b, t[i]); + } + b.append(']'); +} + +template + requires(std::is_same_v || + std::is_same_v || + std::is_same_v || + std::is_same_v) +constexpr void atom(string_builder &b, const T &t) { + b.escape_and_append_with_quotes(t); +} + +template +constexpr void atom(string_builder &b, const T &m) { + if (m.empty()) { + b.append_raw("{}"); + return; + } + b.append('{'); + bool first = true; + for (const auto& [key, value] : m) { + if (!first) { + b.append(','); + } + first = false; + // Keys must be convertible to string_view per the concept + b.escape_and_append_with_quotes(key); + b.append(':'); + atom(b, value); + } + b.append('}'); +} + + +template::value && !std::is_same_v>::type> +constexpr void atom(string_builder &b, const number_type t) { + b.append(t); +} +#if SIMDJSON_CONSTEVAL +consteval std::string consteval_to_quoted_escaped(std::string_view input); +#endif + +template + requires(std::is_class_v && !container_but_not_string && + !concepts::string_view_keyed_map && + !std::is_same_v && + !std::is_same_v) +constexpr void atom(string_builder &b, const T &t) { + int i = 0; + b.append('{'); + [:expand(std::meta::nonstatic_data_members_of(^^T, std::meta::access_context::unchecked())):] >> [&]() { + if (i != 0) + b.append(','); + constexpr auto key = std::define_static_string(consteval_to_quoted_escaped(std::meta::identifier_of(dm))); + b.append_raw(key); + b.append(':'); + atom(b, t.[:dm:]); + i++; + }; + b.append('}'); +} + +// works for struct +template void append(string_builder &b, const Z &z) { + int i = 0; + b.append('{'); + [:expand(std::meta::nonstatic_data_members_of(^^Z, std::meta::access_context::unchecked())):] >> [&]() { + if (i != 0) + b.append(','); + constexpr auto key = std::define_static_string(consteval_to_quoted_escaped(std::meta::identifier_of(dm))); + b.append_raw(key); + b.append(':'); + atom(b, z.[:dm:]); + i++; + }; + b.append('}'); +} + +// works for container +template + requires(container_but_not_string) +void append(string_builder &b, const Z &z) { + if (z.size() == 0) { + b.append_raw("[]"); + return; + } + b.append('['); + atom(b, z[0]); + for (size_t i = 1; i < z.size(); ++i) { + b.append(','); + atom(b, z[i]); + } + b.append(']'); +} + +template +simdjson_result to_json_string(const Z &z) { + string_builder b; + append(b, z); + std::string_view s; + if(auto e = b.view().get(s); e) { return e; } + return std::string(s); +} + +template +simdjson_error to_json(const Z &z, std::string &s) { + string_builder b; + append(b, z); + std::string_view view; + if(auto e = b.view().get(view); e) { return e; } + s.assign(view); + return SUCCESS; +} +} // namespace json_builder +} // namespace ppc64 +} // namespace simdjson +#endif // SIMDJSON_STATIC_REFLECTION + +#endif +/* end file simdjson/generic/ondemand/json_builder.h for ppc64 */ /* end file simdjson/generic/ondemand/amalgamated.h for ppc64 */ /* including simdjson/ppc64/end.h: #include "simdjson/ppc64/end.h" */ @@ -89755,6 +97092,31 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 16; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits); } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + uint64_t((is_backslash | is_quote | is_control).to_bitmask()) + }; +} + } // unnamed namespace } // namespace westmere } // namespace simdjson @@ -89911,10 +97273,26 @@ concept nothrow_deserializable = nothrow_custom_deserializable || is_bu /// Deserialize Tag inline constexpr struct deserialize_tag { + using array_type = westmere::ondemand::array; + using object_type = westmere::ondemand::object; using value_type = westmere::ondemand::value; using document_type = westmere::ondemand::document; using document_reference_type = westmere::ondemand::document_reference; + // Customization Point for array + template + requires custom_deserializable + [[nodiscard]] constexpr /* error_code */ auto operator()(array_type &object, T& output) const noexcept(nothrow_custom_deserializable) { + return tag_invoke(*this, object, output); + } + + // Customization Point for object + template + requires custom_deserializable + [[nodiscard]] constexpr /* error_code */ auto operator()(object_type &object, T& output) const noexcept(nothrow_custom_deserializable) { + return tag_invoke(*this, object, output); + } + // Customization Point for value template requires custom_deserializable @@ -90482,6 +97860,7 @@ public: * * You may use get_double(), get_bool(), get_uint64(), get_int64(), * get_object(), get_array(), get_raw_json_string(), or get_string() instead. + * When SIMDJSON_SUPPORTS_DESERIALIZATION is set, custom types are also supported. * * @returns A value of the given type, parsed from the JSON. * @returns INCORRECT_TYPE If the JSON value is not the given type. @@ -90505,6 +97884,7 @@ public: * Get this value as the given type. * * Supported types: object, array, raw_json_string, string_view, uint64_t, int64_t, double, bool + * If the macro SIMDJSON_SUPPORTS_DESERIALIZATION is set, then custom types are also supported. * * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. * @returns INCORRECT_TYPE If the JSON value is not an object. @@ -92747,6 +100127,37 @@ public: * - INDEX_OUT_OF_BOUNDS if the array index is larger than an array length */ simdjson_inline simdjson_result at(size_t index) noexcept; + +#if SIMDJSON_SUPPORTS_DESERIALIZATION + /** + * Get this array as the given type. + * + * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. + * @returns INCORRECT_TYPE If the JSON array is not of the given type. + * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. + */ + template + simdjson_inline error_code get(T &out) + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) { + static_assert(custom_deserializable); + return deserialize(*this, out); + } + /** + * Get this array as the given type. + * + * @returns A value of the given type, parsed from the JSON. + * @returns INCORRECT_TYPE If the JSON value is not the given type. + */ + template + simdjson_inline simdjson_result get() + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) + { + static_assert(std::is_default_constructible::value, "The specified type is not default constructible."); + T out{}; + SIMDJSON_TRY(get(out)); + return out; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION protected: /** * Go to the end of the array, no matter where you are right now. @@ -92825,7 +100236,28 @@ public: simdjson_inline simdjson_result at_pointer(std::string_view json_pointer) noexcept; simdjson_inline simdjson_result at_path(std::string_view json_path) noexcept; simdjson_inline simdjson_result raw_json() noexcept; +#if SIMDJSON_SUPPORTS_DESERIALIZATION + // TODO: move this code into object-inl.h + template + simdjson_inline simdjson_result get() noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + return first; + } + return first.get(); + } + template + simdjson_inline error_code get(T& out) noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + out = first; + } else { + SIMDJSON_TRY( first.get(out) ); + } + return SUCCESS; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION }; } // namespace simdjson @@ -93159,7 +100591,7 @@ public: * Be mindful that the document instance must remain in scope while you are accessing object, array and value instances. * * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. - * @returns INCORRECT_TYPE If the JSON value is not an object. + * @returns INCORRECT_TYPE If the JSON value is of the given type. * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. */ template @@ -94646,6 +102078,36 @@ public: */ simdjson_inline simdjson_result raw_json() noexcept; +#if SIMDJSON_SUPPORTS_DESERIALIZATION + /** + * Get this object as the given type. + * + * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. + * @returns INCORRECT_TYPE If the JSON object is not of the given type. + * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. + */ + template + simdjson_inline error_code get(T &out) + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) { + static_assert(custom_deserializable); + return deserialize(*this, out); + } + /** + * Get this array as the given type. + * + * @returns A value of the given type, parsed from the JSON. + * @returns INCORRECT_TYPE If the JSON value is not the given type. + */ + template + simdjson_inline simdjson_result get() + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) + { + static_assert(std::is_default_constructible::value, "The specified type is not default constructible."); + T out{}; + SIMDJSON_TRY(get(out)); + return out; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION protected: /** * Go to the end of the object, no matter where you are right now. @@ -94689,12 +102151,32 @@ public: simdjson_inline simdjson_result operator[](std::string_view key) && noexcept; simdjson_inline simdjson_result at_pointer(std::string_view json_pointer) noexcept; simdjson_inline simdjson_result at_path(std::string_view json_path) noexcept; - inline simdjson_result reset() noexcept; inline simdjson_result is_empty() noexcept; inline simdjson_result count_fields() & noexcept; inline simdjson_result raw_json() noexcept; + #if SIMDJSON_SUPPORTS_DESERIALIZATION + // TODO: move this code into object-inl.h + template + simdjson_inline simdjson_result get() noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + return first; + } + return first.get(); + } + template + simdjson_inline error_code get(T& out) noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + out = first; + } else { + SIMDJSON_TRY( first.get(out) ); + } + return SUCCESS; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION }; } // namespace simdjson @@ -94899,12 +102381,17 @@ inline std::ostream& operator<<(std::ostream& out, simdjson::simdjson_result #include +#if SIMDJSON_STATIC_REFLECTION +#include +// #include // for std::define_static_string - header not available yet +#endif namespace simdjson { template @@ -94951,6 +102438,22 @@ error_code tag_invoke(deserialize_tag, auto &val, T &out) noexcept { return SUCCESS; } +////////////////////////////// +// String deserialization +////////////////////////////// + +// just a character! +error_code tag_invoke(deserialize_tag, auto &val, char &out) noexcept { + std::string_view x; + SIMDJSON_TRY(val.get_string().get(x)); + if(x.size() != 1) { + return INCORRECT_TYPE; + } + out = x[0]; + return SUCCESS; +} + +// any string-like type (can be constructed from std::string_view) template requires(!require_custom_serialization) error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(std::is_nothrow_constructible_v) { @@ -94972,15 +102475,20 @@ template requires(!require_custom_serialization) error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(false) { using value_type = typename std::remove_cvref_t::value_type; - static_assert( + /*static_assert( deserializable, - "The specified type inside the container must itself be deserializable"); + "The specified type inside the container must itself be deserializable");*/ static_assert( std::is_default_constructible_v, "The specified type inside the container must default constructible."); westmere::ondemand::array arr; - SIMDJSON_TRY(val.get_array().get(arr)); + if constexpr (std::is_same_v, westmere::ondemand::array>) { + arr = val; + } else { + SIMDJSON_TRY(val.get_array().get(arr)); + } + for (auto v : arr) { if constexpr (concepts::returns_reference) { if (auto const err = v.get().get(concepts::emplace_one(out)); @@ -95037,7 +102545,45 @@ error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(false) { return SUCCESS; } +template +error_code tag_invoke(deserialize_tag, westmere::ondemand::object &obj, T &out) noexcept { + using value_type = typename std::remove_cvref_t::mapped_type; + out.clear(); + for (auto field : obj) { + std::string_view key; + SIMDJSON_TRY(field.unescaped_key().get(key)); + + westmere::ondemand::value value_obj; + SIMDJSON_TRY(field.value().get(value_obj)); + + value_type this_value; + SIMDJSON_TRY(value_obj.get(this_value)); + out.emplace(typename T::key_type(key), std::move(this_value)); + } + return SUCCESS; +} + +template +error_code tag_invoke(deserialize_tag, westmere::ondemand::value &val, T &out) noexcept { + westmere::ondemand::object obj; + SIMDJSON_TRY(val.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} + +template +error_code tag_invoke(deserialize_tag, westmere::ondemand::document &doc, T &out) noexcept { + westmere::ondemand::object obj; + SIMDJSON_TRY(doc.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} + +template +error_code tag_invoke(deserialize_tag, westmere::ondemand::document_reference &doc, T &out) noexcept { + westmere::ondemand::object obj; + SIMDJSON_TRY(doc.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} /** @@ -95099,6 +102645,199 @@ error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(nothrow_deser return SUCCESS; } + +#if SIMDJSON_STATIC_REFLECTION + + +template +constexpr bool user_defined_type = (std::is_class_v +&& !std::is_same_v && !std::is_same_v && !concepts::optional_type && +!concepts::appendable_containers && !require_custom_serialization); + + +// workaround from +// https://www.open-std.org/jtc1/sc22/wg21/docs/papers/2024/p2996r10.html#back-and-forth +// for missing expansion statements +namespace __impl { + template + struct replicator_type { + template + constexpr void operator>>(F body) const { + (body.template operator()(), ...); + } + }; + + template + replicator_type replicator = {}; +} + +template +consteval auto expand(R range) { + std::vector args; + for (auto r : range) { + args.push_back(reflect_value(r)); + } + return substitute(^^__impl::replicator, args); +} +// end of workaround + +template + requires(user_defined_type && std::is_class_v) +error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept { + westmere::ondemand::object obj; + if constexpr (std::is_same_v, westmere::ondemand::object>) { + obj = val; + } else { + SIMDJSON_TRY(val.get_object().get(obj)); + } + error_code e = simdjson::SUCCESS; + + [:expand(std::meta::nonstatic_data_members_of(^^T, std::meta::access_context::unchecked())):] >> [&]() { + if constexpr (!std::meta::is_const(mem) && std::meta::is_public(mem)) { + constexpr std::string_view key = std::define_static_string(std::meta::identifier_of(mem)); + static_assert( + deserializable, + "The specified type inside the class must itself be deserializable"); + // as long we are succesful or the field is not found, we continue + if(e == simdjson::SUCCESS || e == simdjson::NO_SUCH_FIELD) { + obj[key].get(out.[:mem:]); + } + } + }; + return e; +} +template + requires(user_defined_type>) +error_code tag_invoke(deserialize_tag, simdjson_value &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { + return MEMALLOC; + } + } + if (auto err = val.get(*out)) { + out.reset(); + return err; + } + return SUCCESS; +} + +template + requires(user_defined_type>) +error_code tag_invoke(deserialize_tag, simdjson_value &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { + return MEMALLOC; + } + } + if (auto err = val.get(*out)) { + out.reset(); + return err; + } + return SUCCESS; +} + +#endif // SIMDJSON_STATIC_REFLECTION + +//////////////////////////////////////// +// Unique pointers +//////////////////////////////////////// +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_bool().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_int64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_uint64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_double().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_string().get(*out)); + return SUCCESS; +} + + +//////////////////////////////////////// +// Shared pointers +//////////////////////////////////////// +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_bool().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_int64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_uint64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_double().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_string().get(*out)); + return SUCCESS; +} + + } // namespace simdjson #endif // SIMDJSON_ONDEMAND_DESERIALIZE_H @@ -98586,6 +106325,7 @@ simdjson_inline simdjson_result simdjson_result::simdjson_re #endif // SIMDJSON_GENERIC_ONDEMAND_VALUE_ITERATOR_INL_H /* end file simdjson/generic/ondemand/value_iterator-inl.h for westmere */ +// JSON builder, ideally they should not be part of the ondemand directory +// but it is convenient for now to have them here. +/* including simdjson/generic/ondemand/json_string_builder.h for westmere: #include "simdjson/generic/ondemand/json_string_builder.h" */ +/* begin file simdjson/generic/ondemand/json_string_builder.h for westmere */ +/** + * This file is part of the builder API. It is temporarily in the ondemand directory + * but we will move it to a builder directory later. + */ +#ifndef SIMDJSON_GENERIC_STRING_BUILDER_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/implementation_simdjson_result_base.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ + +namespace simdjson { +namespace westmere { +namespace builder { + +/** + * A builder for JSON strings representing documents. This is a low-level + * builder that is not meant to be used directly by end-users. Though it + * supports atomic types (Booleans, strings), it does not support composed + * types (arrays and objects). + * + * Ultimately, this class should support kernel-specific optimizations. E.g., + * it may make use of SIMD instructions to escape strings faster. + */ +class string_builder { +public: + simdjson_inline string_builder(size_t initial_capacity = 1024); + + /** + * Append number (includes Booleans). Booleans are mapped to the strings + * false and true. Numbers are converted to strings abiding by the JSON standard. + * Floating-point numbers are converted to the shortest string that 'correctly' + * represents the number. + */ + template::value>::type> + simdjson_inline void append(number_type v) noexcept; + + /** + * Append character c. + */ + simdjson_inline void append(char c) noexcept; + + /** + * Append the string 'null'. + */ + simdjson_inline void append_null() noexcept; + + /** + * Clear the content. + */ + simdjson_inline void clear() noexcept; + + /** + * Append the std::string_view, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append(std::string_view input) noexcept; + + /** + * Append the std::string_view surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(std::string_view input) noexcept; + + /** + * Append the character surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(char input) noexcept; + + /** + * Append the character surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(const char* input) noexcept; + + /** + * Append the C string directly, without escaping. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(const char *c) noexcept; + + /** + * Append "{" to the buffer. + */ + simdjson_inline void start_object() noexcept; + + /** + * Append "}" to the buffer. + */ + simdjson_inline void end_object() noexcept; + + /** + * Append "[" to the buffer. + */ + simdjson_inline void start_array() noexcept; + + /** + * Append "]" to the buffer. + */ + simdjson_inline void end_array() noexcept; + + /** + * Append "," to the buffer. + */ + simdjson_inline void append_comma() noexcept; + + /** + * Append ":" to the buffer. + */ + simdjson_inline void append_colon() noexcept; + + /** + * Append a key-value pair to the buffer. + * The key is escaped and surrounded by double quotes. + * The value is escaped if it is a string. + */ + template + simdjson_inline void append_key_value(key_type key, value_type value) noexcept; + /** + * Append the std::string_view directly, without escaping. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(std::string_view input) noexcept; + + /** + * Append len characters from str. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(const char *str, size_t len) noexcept; +#if SIMDJSON_EXCEPTIONS + /** + * Creates an std::string from the written JSON buffer. + * Throws if memory allocation failed + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content if needed. + */ + simdjson_inline operator std::string() const noexcept(false); + + /** + * Creates an std::string_view from the written JSON buffer. + * Throws if memory allocation failed. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content if needed. + */ + simdjson_inline operator std::string_view() const noexcept(false); +#endif + + /** + * Returns a view on the written JSON buffer. Returns an error + * if memory allocation failed. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content. + */ + simdjson_inline simdjson_result view() const noexcept; + + /** + * Appends the null character to the buffer and returns + * a pointer to the beginning of the written JSON buffer. + * Returns an error if memory allocation failed. + * The result is null-terminated. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content. + */ + simdjson_inline simdjson_result c_str() noexcept; + + /** + * Return true if the content is valid UTF-8. + */ + simdjson_inline bool validate_unicode() const noexcept; + + /** + * Returns the current size of the written JSON buffer. + * If an error occurred, returns 0. + */ + simdjson_inline size_t size() const noexcept; + +private: + /** + * Returns true if we can write at least upcoming_bytes bytes. + * The underlying buffer is reallocated if needed. It is designed + * to be called before writing to the buffer. It should be fast. + */ + simdjson_inline bool capacity_check(size_t upcoming_bytes); + + /** + * Grow the buffer to at least desired_capacity bytes. + * If the allocation fails, is_valid is set to false. We expect + * that this function would not be repeatedly called. + */ + simdjson_inline void grow_buffer(size_t desired_capacity); + + /** + * We use this helper function to make sure that is_valid is kept consistent. + */ + simdjson_inline void set_valid(bool valid) noexcept; + + std::unique_ptr buffer{}; + size_t position{0}; + size_t capacity{0}; + bool is_valid{true}; +}; + + + +} +} +} // namespace simdjson + +#endif // SIMDJSON_GENERIC_STRING_BUILDER_H +/* end file simdjson/generic/ondemand/json_string_builder.h for westmere */ +/* including simdjson/generic/ondemand/json_string_builder-inl.h for westmere: #include "simdjson/generic/ondemand/json_string_builder-inl.h" */ +/* begin file simdjson/generic/ondemand/json_string_builder-inl.h for westmere */ +/** + * This file is part of the builder API. It is temporarily in the ondemand + * directory but we will move it to a builder directory later. + */ +#include +#include +#include +#ifndef SIMDJSON_GENERIC_STRING_BUILDER_INL_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_INL_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/builder/json_string_builder.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ + +/* + * Empirically, we have found that an inlined optimization is important for + * performance. The following macros are not ideal. We should find a better + * way to inline the code. + */ + +#if defined(__SSE2__) || defined(__x86_64__) || defined(__x86_64) || \ + (defined(_M_AMD64) || defined(_M_X64) || \ + (defined(_M_IX86_FP) && _M_IX86_FP == 2)) +#ifndef SIMDJSON_EXPERIMENTAL_HAS_SSE2 +#define SIMDJSON_EXPERIMENTAL_HAS_SSE2 1 +#endif +#endif + +#if defined(__aarch64__) || defined(_M_ARM64) +#ifndef SIMDJSON_EXPERIMENTAL_HAS_NEON +#define SIMDJSON_EXPERIMENTAL_HAS_NEON 1 +#endif +#endif +#if SIMDJSON_EXPERIMENTAL_HAS_NEON +#include +#endif +#if SIMDJSON_EXPERIMENTAL_HAS_SSE2 +#include +#endif + +namespace simdjson { +namespace westmere { +namespace builder { + +static SIMDJSON_CONSTEXPR_LAMBDA std::array json_quotable_character = { + 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, + 1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}; + +/** + +A possible SWAR implementation of has_json_escapable_byte. It is not used because +it is slower than the current implementation. It is kept here for reference (to show +that we tried it). + +inline bool has_json_escapable_byte(uint64_t x) { + uint64_t is_ascii = 0x8080808080808080ULL & ~x; + uint64_t xor2 = x ^ 0x0202020202020202ULL; + uint64_t lt32_or_eq34 = xor2 - 0x2121212121212121ULL; + uint64_t sub92 = x ^ 0x5C5C5C5C5C5C5C5CULL; + uint64_t eq92 = (sub92 - 0x0101010101010101ULL); + return ((lt32_or_eq34 | eq92) & is_ascii) != 0; +} + +**/ + +SIMDJSON_CONSTEXPR_LAMBDA simdjson_inline bool +simple_needs_escaping(std::string_view v) { + for (char c : v) { + // a table lookup is faster than a series of comparisons + if(json_quotable_character[static_cast(c)]) { + return true; + } + } + return false; +} + +#if SIMDJSON_EXPERIMENTAL_HAS_NEON +simdjson_inline bool fast_needs_escaping(std::string_view view) { + if (view.size() < 16) { + return simple_needs_escaping(view); + } + size_t i = 0; + uint8x16_t running = vdupq_n_u8(0); + uint8x16_t v34 = vdupq_n_u8(34); + uint8x16_t v92 = vdupq_n_u8(92); + + for (; i + 15 < view.size(); i += 16) { + uint8x16_t word = vld1q_u8((const uint8_t *)view.data() + i); + running = vorrq_u8(running, vceqq_u8(word, v34)); + running = vorrq_u8(running, vceqq_u8(word, v92)); + running = vorrq_u8(running, vcltq_u8(word, vdupq_n_u8(32))); + } + if (i < view.size()) { + uint8x16_t word = + vld1q_u8((const uint8_t *)view.data() + view.length() - 16); + running = vorrq_u8(running, vceqq_u8(word, v34)); + running = vorrq_u8(running, vceqq_u8(word, v92)); + running = vorrq_u8(running, vcltq_u8(word, vdupq_n_u8(32))); + } + return vmaxvq_u32(vreinterpretq_u32_u8(running)) != 0; +} +#elif SIMDJSON_EXPERIMENTAL_HAS_SSE2 +simdjson_inline bool fast_needs_escaping(std::string_view view) { + if (view.size() < 16) { + return simple_needs_escaping(view); + } + size_t i = 0; + __m128i running = _mm_setzero_si128(); + for (; i + 15 < view.size(); i += 16) { + + __m128i word = _mm_loadu_si128(reinterpret_cast(view.data() + i)); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(34))); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(92))); + running = _mm_or_si128( + running, _mm_cmpeq_epi8(_mm_subs_epu8(word, _mm_set1_epi8(31)), + _mm_setzero_si128())); + } + if (i < view.size()) { + __m128i word = + _mm_loadu_si128(reinterpret_cast(view.data() + view.length() - 16)); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(34))); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(92))); + running = _mm_or_si128( + running, _mm_cmpeq_epi8(_mm_subs_epu8(word, _mm_set1_epi8(31)), + _mm_setzero_si128())); + } + return _mm_movemask_epi8(running) != 0; +} +#else +simdjson_inline bool fast_needs_escaping(std::string_view view) { + return simple_needs_escaping(view); +} +#endif + + +SIMDJSON_CONSTEXPR_LAMBDA inline size_t +find_next_json_quotable_character(const std::string_view view, + size_t location) noexcept { + + for (auto pos = view.begin() + location; pos != view.end(); ++pos) { + if (json_quotable_character[static_cast(*pos)]) { + return pos - view.begin(); + } + } + return size_t(view.size()); +} + +SIMDJSON_CONSTEXPR_LAMBDA static std::string_view control_chars[] = { + "\\x0000", "\\x0001", "\\x0002", "\\x0003", "\\x0004", "\\x0005", "\\x0006", + "\\x0007", "\\x0008", "\\t", "\\n", "\\x000b", "\\f", "\\r", + "\\x000e", "\\x000f", "\\x0010", "\\x0011", "\\x0012", "\\x0013", "\\x0014", + "\\x0015", "\\x0016", "\\x0017", "\\x0018", "\\x0019", "\\x001a", "\\x001b", + "\\x001c", "\\x001d", "\\x001e", "\\x001f"}; + +SIMDJSON_CONSTEXPR_LAMBDA void escape_json_char(char c, char *&out) { + if (c == '"') { + memcpy(out, "\\\"", 2); + out += 2; + } else if (c == '\\') { + memcpy(out, "\\\\", 2); + out += 2; + } else { + std::string_view v = control_chars[uint8_t(c)]; + memcpy(out, v.data(), v.size()); + out += v.size(); + } +} + +inline size_t write_string_escaped(const std::string_view input, char *out) { + size_t mysize = input.size(); + if (!fast_needs_escaping(input)) { // fast path! + memcpy(out, input.data(), input.size()); + return input.size(); + } + const char *const initout = out; + size_t location = find_next_json_quotable_character(input, 0); + memcpy(out, input.data(), location); + out += location; + escape_json_char(input[location], out); + location += 1; + while (location < mysize) { + size_t newlocation = find_next_json_quotable_character(input, location); + memcpy(out, input.data() + location, newlocation - location); + out += newlocation - location; + location = newlocation; + if (location == mysize) { + break; + } + escape_json_char(input[location], out); + location += 1; + } + return out - initout; +} + +#if SIMDJSON_CONSTEVAL +// unoptimized, meant for compile-time execution +consteval std::string consteval_to_quoted_escaped(std::string_view input) { + std::string out = "\""; + for (char c : input) { + if (json_quotable_character[uint8_t(c)]) { + if (c == '"') { + out.append("\\\""); + } else if (c == '\\') { + out.append("\\\\"); + } else { + std::string_view v = control_chars[uint8_t(c)]; + out.append(v); + } + } else { + out.push_back(c); + } + } + out.push_back('"'); + return out; +} +#endif // SIMDJSON_CONSTEVAL + +simdjson_inline string_builder::string_builder(size_t initial_capacity) + : buffer(new(std::nothrow) char[initial_capacity]), position(0), + capacity(buffer.get() != nullptr ? initial_capacity : 0), + is_valid(buffer.get() != nullptr) {} + +simdjson_inline bool string_builder::capacity_check(size_t upcoming_bytes) { + // We use the convention that when is_valid is false, then the capacity and + // the position are 0. + // Most of the time, this function will return true. + if (simdjson_likely(upcoming_bytes <= capacity - position)) { + return true; + } + // check for overflow, most of the time there is no overflow + if (simdjson_likely(position + upcoming_bytes < position)) { + return false; + } + // We will rarely get here. + grow_buffer((std::max)(capacity * 2, position + upcoming_bytes)); + // If the buffer allocation failed, we set is_valid to false. + return is_valid; +} + +simdjson_inline void string_builder::grow_buffer(size_t desired_capacity) { + if (!is_valid) { + return; + } + std::unique_ptr new_buffer(new (std::nothrow) char[desired_capacity]); + if (new_buffer.get() == nullptr) { + set_valid(false); + return; + } + std::memcpy(new_buffer.get(), buffer.get(), position); + buffer.swap(new_buffer); + capacity = desired_capacity; +} + +simdjson_inline void string_builder::set_valid(bool valid) noexcept { + if (!valid) { + is_valid = false; + capacity = 0; + position = 0; + buffer.reset(); + } else { + is_valid = true; + } +} + +simdjson_inline size_t string_builder::size() const noexcept { + return position; +} + +simdjson_inline void string_builder::append(char c) noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = c; + } +} + +simdjson_inline void string_builder::append_null() noexcept { + constexpr char null_literal[] = "null"; + constexpr size_t null_len = sizeof(null_literal) - 1; + if (capacity_check(null_len)) { + std::memcpy(buffer.get() + position, null_literal, null_len); + position += null_len; + } +} + +simdjson_inline void string_builder::clear() noexcept { + position = 0; + // if it was invalid, we should try to repair it + if (!is_valid) { + capacity = 0; + buffer.reset(); + is_valid = true; + } +} + +namespace internal { + +// We could specialize further for 32-bit integers. +int int_log2(uint32_t x) { return (63 - leading_zeroes(x | 1)); } + +int fast_digit_count(uint32_t x) { + static uint64_t table[] = { + 4294967296, 8589934582, 8589934582, 8589934582, 12884901788, + 12884901788, 12884901788, 17179868184, 17179868184, 17179868184, + 21474826480, 21474826480, 21474826480, 21474826480, 25769703776, + 25769703776, 25769703776, 30063771072, 30063771072, 30063771072, + 34349738368, 34349738368, 34349738368, 34349738368, 38554705664, + 38554705664, 38554705664, 41949672960, 41949672960, 41949672960, + 42949672960, 42949672960}; + return uint32_t((x + table[int_log2(x)]) >> 32); +} + +int int_log2(uint64_t x) { return 63 - leading_zeroes(x | 1); } + +int fast_digit_count(uint64_t x) { + static uint64_t table[] = {9, + 99, + 999, + 9999, + 99999, + 999999, + 9999999, + 99999999, + 999999999, + 9999999999, + 99999999999, + 999999999999, + 9999999999999, + 99999999999999, + 999999999999999ULL, + 9999999999999999ULL, + 99999999999999999ULL, + 999999999999999999ULL, + 9999999999999999999ULL}; + int y = (19 * int_log2(x) >> 6); + y += x > table[y]; + return y + 1; +} + +template ::value>::type> +simdjson_inline size_t digit_count(number_type v) noexcept { + static_assert(sizeof(number_type) == 8 || sizeof(number_type) == 4 || + sizeof(number_type) == 2 || sizeof(number_type) == 1, + "We only support 8-bit, 16-bit, 32-bit and 64-bit numbers"); + return fast_digit_count(v); +} +static const char decimal_table[200] = { + 0x30, 0x30, 0x30, 0x31, 0x30, 0x32, 0x30, 0x33, 0x30, 0x34, 0x30, 0x35, + 0x30, 0x36, 0x30, 0x37, 0x30, 0x38, 0x30, 0x39, 0x31, 0x30, 0x31, 0x31, + 0x31, 0x32, 0x31, 0x33, 0x31, 0x34, 0x31, 0x35, 0x31, 0x36, 0x31, 0x37, + 0x31, 0x38, 0x31, 0x39, 0x32, 0x30, 0x32, 0x31, 0x32, 0x32, 0x32, 0x33, + 0x32, 0x34, 0x32, 0x35, 0x32, 0x36, 0x32, 0x37, 0x32, 0x38, 0x32, 0x39, + 0x33, 0x30, 0x33, 0x31, 0x33, 0x32, 0x33, 0x33, 0x33, 0x34, 0x33, 0x35, + 0x33, 0x36, 0x33, 0x37, 0x33, 0x38, 0x33, 0x39, 0x34, 0x30, 0x34, 0x31, + 0x34, 0x32, 0x34, 0x33, 0x34, 0x34, 0x34, 0x35, 0x34, 0x36, 0x34, 0x37, + 0x34, 0x38, 0x34, 0x39, 0x35, 0x30, 0x35, 0x31, 0x35, 0x32, 0x35, 0x33, + 0x35, 0x34, 0x35, 0x35, 0x35, 0x36, 0x35, 0x37, 0x35, 0x38, 0x35, 0x39, + 0x36, 0x30, 0x36, 0x31, 0x36, 0x32, 0x36, 0x33, 0x36, 0x34, 0x36, 0x35, + 0x36, 0x36, 0x36, 0x37, 0x36, 0x38, 0x36, 0x39, 0x37, 0x30, 0x37, 0x31, + 0x37, 0x32, 0x37, 0x33, 0x37, 0x34, 0x37, 0x35, 0x37, 0x36, 0x37, 0x37, + 0x37, 0x38, 0x37, 0x39, 0x38, 0x30, 0x38, 0x31, 0x38, 0x32, 0x38, 0x33, + 0x38, 0x34, 0x38, 0x35, 0x38, 0x36, 0x38, 0x37, 0x38, 0x38, 0x38, 0x39, + 0x39, 0x30, 0x39, 0x31, 0x39, 0x32, 0x39, 0x33, 0x39, 0x34, 0x39, 0x35, + 0x39, 0x36, 0x39, 0x37, 0x39, 0x38, 0x39, 0x39, +}; +} // namespace internal + +template +simdjson_inline void string_builder::append(number_type v) noexcept { + static_assert(std::is_same::value || + std::is_integral::value || + std::is_floating_point::value, + "Unsupported number type"); + // If C++17 is available, we can 'if constexpr' here. + SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + if (v) { + constexpr char true_literal[] = "true"; + constexpr size_t true_len = sizeof(true_literal) - 1; + if (capacity_check(true_len)) { + std::memcpy(buffer.get() + position, true_literal, true_len); + position += true_len; + } + } else { + constexpr char false_literal[] = "false"; + constexpr size_t false_len = sizeof(false_literal) - 1; + if (capacity_check(false_len)) { + std::memcpy(buffer.get() + position, false_literal, false_len); + position += false_len; + } + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_unsigned::value) { + constexpr size_t max_number_size = 20; + if (capacity_check(max_number_size)) { + using unsigned_type = typename std::make_unsigned::type; + unsigned_type pv = static_cast(v); + size_t dc = internal::digit_count(pv); + char *write_pointer = buffer.get() + position + dc - 1; + while (pv >= 100) { + memcpy(write_pointer - 1, &internal::decimal_table[(pv % 100)*2], 2); + write_pointer -= 2; + pv /= 100; + } + if (pv >= 10) { + *write_pointer-- = char('0' + (pv % 10)); + pv /= 10; + } + *write_pointer = char('0' + pv); + position += dc; + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_integral::value) { + constexpr size_t max_number_size = 20; + if (capacity_check(max_number_size)) { + using unsigned_type = typename std::make_unsigned::type; + bool negative = v < 0; + unsigned_type pv = static_cast(v); + if (negative) { + pv = 0 - pv; // the 0 is for Microsoft + } + size_t dc = internal::digit_count(pv); + if (negative) { + buffer.get()[position++] = '-'; + } + char *write_pointer = buffer.get() + position + dc - 1; + while (pv >= 100) { + memcpy(write_pointer - 1, &internal::decimal_table[(pv % 100)*2], 2); + write_pointer -= 2; + pv /= 100; + } + if (pv >= 10) { + *write_pointer-- = char('0' + (pv % 10)); + pv /= 10; + } + *write_pointer = char('0' + pv); + position += dc; + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_floating_point::value) { + constexpr size_t max_number_size = 24; + if (capacity_check(max_number_size)) { + // We could specialize for float. + char *end = simdjson::internal::to_chars(buffer.get() + position, nullptr, + double(v)); + position = end - buffer.get(); + } + } +} + +simdjson_inline void +string_builder::escape_and_append(std::string_view input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(6 * input.size())) { + position += write_string_escaped(input, buffer.get() + position); + } +} + +simdjson_inline void +string_builder::escape_and_append_with_quotes(std::string_view input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(2 + 6 * input.size())) { + buffer.get()[position++] = '"'; + position += write_string_escaped(input, buffer.get() + position); + buffer.get()[position++] = '"'; + } +} + +simdjson_inline void +string_builder::escape_and_append_with_quotes(char input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(2 + 6 * 1)) { + buffer.get()[position++] = '"'; + std::string_view cinput(&input, 1); + position += write_string_escaped(cinput, buffer.get() + position); + buffer.get()[position++] = '"'; + } +} + +simdjson_inline void string_builder::escape_and_append_with_quotes(const char* input) noexcept { + std::string_view cinput(input); + escape_and_append_with_quotes(cinput); +} + +simdjson_inline void string_builder::append_raw(const char *c) noexcept { + size_t len = std::strlen(c); + append_raw(c, len); +} + +simdjson_inline void +string_builder::append_raw(std::string_view input) noexcept { + if (capacity_check(input.size())) { + std::memcpy(buffer.get() + position, input.data(), input.size()); + position += input.size(); + } +} + +simdjson_inline void string_builder::append_raw(const char *str, + size_t len) noexcept { + if (capacity_check(len)) { + std::memcpy(buffer.get() + position, str, len); + position += len; + } +} + +#if SIMDJSON_EXCEPTIONS +simdjson_inline string_builder::operator std::string() const noexcept(false) { + return std::string(std::string_view()); +} + +simdjson_inline string_builder::operator std::string_view() const + noexcept(false) { + return view(); +} +#endif + +simdjson_inline simdjson_result +string_builder::view() const noexcept { + if (!is_valid) { + return simdjson::OUT_OF_CAPACITY; + } + return std::string_view(buffer.get(), position); +} + +simdjson_inline simdjson_result string_builder::c_str() noexcept { + if (capacity_check(1)) { + buffer.get()[position] = '\0'; + return buffer.get(); + } + return simdjson::OUT_OF_CAPACITY; +} + +simdjson_inline bool string_builder::validate_unicode() const noexcept { + return simdjson::validate_utf8(buffer.get(), position); +} + +simdjson_inline void string_builder::start_object() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '{'; + } +} + + +simdjson_inline void string_builder::end_object() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '}'; + } +} + + +simdjson_inline void string_builder::start_array() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '['; + } +} + + +simdjson_inline void string_builder::end_array() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ']'; + } +} + + +simdjson_inline void string_builder::append_comma() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ','; + } +} + + +simdjson_inline void string_builder::append_colon() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ':'; + } +} + +template +simdjson_inline void string_builder::append_key_value(key_type key, value_type value) noexcept { + static_assert( + std::is_arithmetic::value || + std::is_same::value || + std::is_same::value || + std::is_convertible::value || + std::is_same::value, + "Unsupported value type"); + static_assert( + std::is_same::value || + std::is_convertible::value, + "Unsupported key type"); + escape_and_append_with_quotes(key); + append_colon(); + SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + append_null(); + } else SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + escape_and_append_with_quotes(value); + } else SIMDJSON_IF_CONSTEXPR(std::is_convertible::value) { + escape_and_append_with_quotes(value); + } else SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + escape_and_append_with_quotes(value); + } else { + append(value); + } +} + +} // namespace builder +} // namespace westmere +} // namespace simdjson + +#endif // SIMDJSON_GENERIC_STRING_BUILDER_INL_H +/* end file simdjson/generic/ondemand/json_string_builder-inl.h for westmere */ +/* including simdjson/generic/ondemand/json_builder.h for westmere: #include "simdjson/generic/ondemand/json_builder.h" */ +/* begin file simdjson/generic/ondemand/json_builder.h for westmere */ +/** + * This file is part of the builder API. It is temporarily in the ondemand directory + * but we will move it to a builder directory later. + */ +#ifndef SIMDJSON_GENERIC_BUILDER_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/builder/json_string_builder.h" */ +/* amalgamation skipped (editor-only): #include "simdjson/concepts.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ +#if SIMDJSON_STATIC_REFLECTION + +#include +#include +#include +#include +#include +#include +// #include // for std::define_static_string - header not available yet + +namespace simdjson { +namespace westmere { +namespace builder { + +// Concept that checks if a type is a container but not a string (because +// strings handling must be handled differently) +template +concept container_but_not_string = + requires(T a) { + { a.size() } -> std::convertible_to; + { + a[std::declval()] + }; // check if elements are accessible for the subscript operator + } && !std::is_same_v && + !std::is_same_v && !std::is_same_v; + +template + requires(container_but_not_string) +constexpr void atom(string_builder &b, const T &t) { + if (t.size() == 0) { + b.append_raw("[]"); + return; + } + b.append('['); + atom(b, t[0]); + for (size_t i = 1; i < t.size(); ++i) { + b.append(','); + atom(b, t[i]); + } + b.append(']'); +} + +template + requires(std::is_same_v || + std::is_same_v || + std::is_same_v || + std::is_same_v) +constexpr void atom(string_builder &b, const T &t) { + b.escape_and_append_with_quotes(t); +} + +template +constexpr void atom(string_builder &b, const T &m) { + if (m.empty()) { + b.append_raw("{}"); + return; + } + b.append('{'); + bool first = true; + for (const auto& [key, value] : m) { + if (!first) { + b.append(','); + } + first = false; + // Keys must be convertible to string_view per the concept + b.escape_and_append_with_quotes(key); + b.append(':'); + atom(b, value); + } + b.append('}'); +} + + +template::value && !std::is_same_v>::type> +constexpr void atom(string_builder &b, const number_type t) { + b.append(t); +} +#if SIMDJSON_CONSTEVAL +consteval std::string consteval_to_quoted_escaped(std::string_view input); +#endif + +template + requires(std::is_class_v && !container_but_not_string && + !concepts::string_view_keyed_map && + !std::is_same_v && + !std::is_same_v) +constexpr void atom(string_builder &b, const T &t) { + int i = 0; + b.append('{'); + [:expand(std::meta::nonstatic_data_members_of(^^T, std::meta::access_context::unchecked())):] >> [&]() { + if (i != 0) + b.append(','); + constexpr auto key = std::define_static_string(consteval_to_quoted_escaped(std::meta::identifier_of(dm))); + b.append_raw(key); + b.append(':'); + atom(b, t.[:dm:]); + i++; + }; + b.append('}'); +} + +// works for struct +template void append(string_builder &b, const Z &z) { + int i = 0; + b.append('{'); + [:expand(std::meta::nonstatic_data_members_of(^^Z, std::meta::access_context::unchecked())):] >> [&]() { + if (i != 0) + b.append(','); + constexpr auto key = std::define_static_string(consteval_to_quoted_escaped(std::meta::identifier_of(dm))); + b.append_raw(key); + b.append(':'); + atom(b, z.[:dm:]); + i++; + }; + b.append('}'); +} + +// works for container +template + requires(container_but_not_string) +void append(string_builder &b, const Z &z) { + if (z.size() == 0) { + b.append_raw("[]"); + return; + } + b.append('['); + atom(b, z[0]); + for (size_t i = 1; i < z.size(); ++i) { + b.append(','); + atom(b, z[i]); + } + b.append(']'); +} + +template +simdjson_result to_json_string(const Z &z) { + string_builder b; + append(b, z); + std::string_view s; + if(auto e = b.view().get(s); e) { return e; } + return std::string(s); +} + +template +simdjson_error to_json(const Z &z, std::string &s) { + string_builder b; + append(b, z); + std::string_view view; + if(auto e = b.view().get(view); e) { return e; } + s.assign(view); + return SUCCESS; +} +} // namespace json_builder +} // namespace westmere +} // namespace simdjson +#endif // SIMDJSON_STATIC_REFLECTION + +#endif +/* end file simdjson/generic/ondemand/json_builder.h for westmere */ /* end file simdjson/generic/ondemand/amalgamated.h for westmere */ /* including simdjson/westmere/end.h: #include "simdjson/westmere/end.h" */ @@ -101200,6 +109953,31 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 16; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits); } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + (is_backslash | is_quote | is_control).to_bitmask() + }; +} + } // unnamed namespace } // namespace lsx } // namespace simdjson @@ -101358,10 +110136,26 @@ concept nothrow_deserializable = nothrow_custom_deserializable || is_bu /// Deserialize Tag inline constexpr struct deserialize_tag { + using array_type = lsx::ondemand::array; + using object_type = lsx::ondemand::object; using value_type = lsx::ondemand::value; using document_type = lsx::ondemand::document; using document_reference_type = lsx::ondemand::document_reference; + // Customization Point for array + template + requires custom_deserializable + [[nodiscard]] constexpr /* error_code */ auto operator()(array_type &object, T& output) const noexcept(nothrow_custom_deserializable) { + return tag_invoke(*this, object, output); + } + + // Customization Point for object + template + requires custom_deserializable + [[nodiscard]] constexpr /* error_code */ auto operator()(object_type &object, T& output) const noexcept(nothrow_custom_deserializable) { + return tag_invoke(*this, object, output); + } + // Customization Point for value template requires custom_deserializable @@ -101929,6 +110723,7 @@ public: * * You may use get_double(), get_bool(), get_uint64(), get_int64(), * get_object(), get_array(), get_raw_json_string(), or get_string() instead. + * When SIMDJSON_SUPPORTS_DESERIALIZATION is set, custom types are also supported. * * @returns A value of the given type, parsed from the JSON. * @returns INCORRECT_TYPE If the JSON value is not the given type. @@ -101952,6 +110747,7 @@ public: * Get this value as the given type. * * Supported types: object, array, raw_json_string, string_view, uint64_t, int64_t, double, bool + * If the macro SIMDJSON_SUPPORTS_DESERIALIZATION is set, then custom types are also supported. * * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. * @returns INCORRECT_TYPE If the JSON value is not an object. @@ -104194,6 +112990,37 @@ public: * - INDEX_OUT_OF_BOUNDS if the array index is larger than an array length */ simdjson_inline simdjson_result at(size_t index) noexcept; + +#if SIMDJSON_SUPPORTS_DESERIALIZATION + /** + * Get this array as the given type. + * + * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. + * @returns INCORRECT_TYPE If the JSON array is not of the given type. + * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. + */ + template + simdjson_inline error_code get(T &out) + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) { + static_assert(custom_deserializable); + return deserialize(*this, out); + } + /** + * Get this array as the given type. + * + * @returns A value of the given type, parsed from the JSON. + * @returns INCORRECT_TYPE If the JSON value is not the given type. + */ + template + simdjson_inline simdjson_result get() + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) + { + static_assert(std::is_default_constructible::value, "The specified type is not default constructible."); + T out{}; + SIMDJSON_TRY(get(out)); + return out; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION protected: /** * Go to the end of the array, no matter where you are right now. @@ -104272,7 +113099,28 @@ public: simdjson_inline simdjson_result at_pointer(std::string_view json_pointer) noexcept; simdjson_inline simdjson_result at_path(std::string_view json_path) noexcept; simdjson_inline simdjson_result raw_json() noexcept; +#if SIMDJSON_SUPPORTS_DESERIALIZATION + // TODO: move this code into object-inl.h + template + simdjson_inline simdjson_result get() noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + return first; + } + return first.get(); + } + template + simdjson_inline error_code get(T& out) noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + out = first; + } else { + SIMDJSON_TRY( first.get(out) ); + } + return SUCCESS; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION }; } // namespace simdjson @@ -104606,7 +113454,7 @@ public: * Be mindful that the document instance must remain in scope while you are accessing object, array and value instances. * * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. - * @returns INCORRECT_TYPE If the JSON value is not an object. + * @returns INCORRECT_TYPE If the JSON value is of the given type. * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. */ template @@ -106093,6 +114941,36 @@ public: */ simdjson_inline simdjson_result raw_json() noexcept; +#if SIMDJSON_SUPPORTS_DESERIALIZATION + /** + * Get this object as the given type. + * + * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. + * @returns INCORRECT_TYPE If the JSON object is not of the given type. + * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. + */ + template + simdjson_inline error_code get(T &out) + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) { + static_assert(custom_deserializable); + return deserialize(*this, out); + } + /** + * Get this array as the given type. + * + * @returns A value of the given type, parsed from the JSON. + * @returns INCORRECT_TYPE If the JSON value is not the given type. + */ + template + simdjson_inline simdjson_result get() + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) + { + static_assert(std::is_default_constructible::value, "The specified type is not default constructible."); + T out{}; + SIMDJSON_TRY(get(out)); + return out; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION protected: /** * Go to the end of the object, no matter where you are right now. @@ -106136,12 +115014,32 @@ public: simdjson_inline simdjson_result operator[](std::string_view key) && noexcept; simdjson_inline simdjson_result at_pointer(std::string_view json_pointer) noexcept; simdjson_inline simdjson_result at_path(std::string_view json_path) noexcept; - inline simdjson_result reset() noexcept; inline simdjson_result is_empty() noexcept; inline simdjson_result count_fields() & noexcept; inline simdjson_result raw_json() noexcept; + #if SIMDJSON_SUPPORTS_DESERIALIZATION + // TODO: move this code into object-inl.h + template + simdjson_inline simdjson_result get() noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + return first; + } + return first.get(); + } + template + simdjson_inline error_code get(T& out) noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + out = first; + } else { + SIMDJSON_TRY( first.get(out) ); + } + return SUCCESS; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION }; } // namespace simdjson @@ -106346,12 +115244,17 @@ inline std::ostream& operator<<(std::ostream& out, simdjson::simdjson_result #include +#if SIMDJSON_STATIC_REFLECTION +#include +// #include // for std::define_static_string - header not available yet +#endif namespace simdjson { template @@ -106398,6 +115301,22 @@ error_code tag_invoke(deserialize_tag, auto &val, T &out) noexcept { return SUCCESS; } +////////////////////////////// +// String deserialization +////////////////////////////// + +// just a character! +error_code tag_invoke(deserialize_tag, auto &val, char &out) noexcept { + std::string_view x; + SIMDJSON_TRY(val.get_string().get(x)); + if(x.size() != 1) { + return INCORRECT_TYPE; + } + out = x[0]; + return SUCCESS; +} + +// any string-like type (can be constructed from std::string_view) template requires(!require_custom_serialization) error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(std::is_nothrow_constructible_v) { @@ -106419,15 +115338,20 @@ template requires(!require_custom_serialization) error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(false) { using value_type = typename std::remove_cvref_t::value_type; - static_assert( + /*static_assert( deserializable, - "The specified type inside the container must itself be deserializable"); + "The specified type inside the container must itself be deserializable");*/ static_assert( std::is_default_constructible_v, "The specified type inside the container must default constructible."); lsx::ondemand::array arr; - SIMDJSON_TRY(val.get_array().get(arr)); + if constexpr (std::is_same_v, lsx::ondemand::array>) { + arr = val; + } else { + SIMDJSON_TRY(val.get_array().get(arr)); + } + for (auto v : arr) { if constexpr (concepts::returns_reference) { if (auto const err = v.get().get(concepts::emplace_one(out)); @@ -106484,7 +115408,45 @@ error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(false) { return SUCCESS; } +template +error_code tag_invoke(deserialize_tag, lsx::ondemand::object &obj, T &out) noexcept { + using value_type = typename std::remove_cvref_t::mapped_type; + out.clear(); + for (auto field : obj) { + std::string_view key; + SIMDJSON_TRY(field.unescaped_key().get(key)); + + lsx::ondemand::value value_obj; + SIMDJSON_TRY(field.value().get(value_obj)); + + value_type this_value; + SIMDJSON_TRY(value_obj.get(this_value)); + out.emplace(typename T::key_type(key), std::move(this_value)); + } + return SUCCESS; +} + +template +error_code tag_invoke(deserialize_tag, lsx::ondemand::value &val, T &out) noexcept { + lsx::ondemand::object obj; + SIMDJSON_TRY(val.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} + +template +error_code tag_invoke(deserialize_tag, lsx::ondemand::document &doc, T &out) noexcept { + lsx::ondemand::object obj; + SIMDJSON_TRY(doc.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} + +template +error_code tag_invoke(deserialize_tag, lsx::ondemand::document_reference &doc, T &out) noexcept { + lsx::ondemand::object obj; + SIMDJSON_TRY(doc.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} /** @@ -106546,6 +115508,199 @@ error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(nothrow_deser return SUCCESS; } + +#if SIMDJSON_STATIC_REFLECTION + + +template +constexpr bool user_defined_type = (std::is_class_v +&& !std::is_same_v && !std::is_same_v && !concepts::optional_type && +!concepts::appendable_containers && !require_custom_serialization); + + +// workaround from +// https://www.open-std.org/jtc1/sc22/wg21/docs/papers/2024/p2996r10.html#back-and-forth +// for missing expansion statements +namespace __impl { + template + struct replicator_type { + template + constexpr void operator>>(F body) const { + (body.template operator()(), ...); + } + }; + + template + replicator_type replicator = {}; +} + +template +consteval auto expand(R range) { + std::vector args; + for (auto r : range) { + args.push_back(reflect_value(r)); + } + return substitute(^^__impl::replicator, args); +} +// end of workaround + +template + requires(user_defined_type && std::is_class_v) +error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept { + lsx::ondemand::object obj; + if constexpr (std::is_same_v, lsx::ondemand::object>) { + obj = val; + } else { + SIMDJSON_TRY(val.get_object().get(obj)); + } + error_code e = simdjson::SUCCESS; + + [:expand(std::meta::nonstatic_data_members_of(^^T, std::meta::access_context::unchecked())):] >> [&]() { + if constexpr (!std::meta::is_const(mem) && std::meta::is_public(mem)) { + constexpr std::string_view key = std::define_static_string(std::meta::identifier_of(mem)); + static_assert( + deserializable, + "The specified type inside the class must itself be deserializable"); + // as long we are succesful or the field is not found, we continue + if(e == simdjson::SUCCESS || e == simdjson::NO_SUCH_FIELD) { + obj[key].get(out.[:mem:]); + } + } + }; + return e; +} +template + requires(user_defined_type>) +error_code tag_invoke(deserialize_tag, simdjson_value &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { + return MEMALLOC; + } + } + if (auto err = val.get(*out)) { + out.reset(); + return err; + } + return SUCCESS; +} + +template + requires(user_defined_type>) +error_code tag_invoke(deserialize_tag, simdjson_value &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { + return MEMALLOC; + } + } + if (auto err = val.get(*out)) { + out.reset(); + return err; + } + return SUCCESS; +} + +#endif // SIMDJSON_STATIC_REFLECTION + +//////////////////////////////////////// +// Unique pointers +//////////////////////////////////////// +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_bool().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_int64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_uint64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_double().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_string().get(*out)); + return SUCCESS; +} + + +//////////////////////////////////////// +// Shared pointers +//////////////////////////////////////// +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_bool().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_int64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_uint64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_double().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_string().get(*out)); + return SUCCESS; +} + + } // namespace simdjson #endif // SIMDJSON_ONDEMAND_DESERIALIZE_H @@ -110033,6 +119188,7 @@ simdjson_inline simdjson_result simdjson_result::simdjson_result( #endif // SIMDJSON_GENERIC_ONDEMAND_VALUE_ITERATOR_INL_H /* end file simdjson/generic/ondemand/value_iterator-inl.h for lsx */ +// JSON builder, ideally they should not be part of the ondemand directory +// but it is convenient for now to have them here. +/* including simdjson/generic/ondemand/json_string_builder.h for lsx: #include "simdjson/generic/ondemand/json_string_builder.h" */ +/* begin file simdjson/generic/ondemand/json_string_builder.h for lsx */ +/** + * This file is part of the builder API. It is temporarily in the ondemand directory + * but we will move it to a builder directory later. + */ +#ifndef SIMDJSON_GENERIC_STRING_BUILDER_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/implementation_simdjson_result_base.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ + +namespace simdjson { +namespace lsx { +namespace builder { + +/** + * A builder for JSON strings representing documents. This is a low-level + * builder that is not meant to be used directly by end-users. Though it + * supports atomic types (Booleans, strings), it does not support composed + * types (arrays and objects). + * + * Ultimately, this class should support kernel-specific optimizations. E.g., + * it may make use of SIMD instructions to escape strings faster. + */ +class string_builder { +public: + simdjson_inline string_builder(size_t initial_capacity = 1024); + + /** + * Append number (includes Booleans). Booleans are mapped to the strings + * false and true. Numbers are converted to strings abiding by the JSON standard. + * Floating-point numbers are converted to the shortest string that 'correctly' + * represents the number. + */ + template::value>::type> + simdjson_inline void append(number_type v) noexcept; + + /** + * Append character c. + */ + simdjson_inline void append(char c) noexcept; + + /** + * Append the string 'null'. + */ + simdjson_inline void append_null() noexcept; + + /** + * Clear the content. + */ + simdjson_inline void clear() noexcept; + + /** + * Append the std::string_view, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append(std::string_view input) noexcept; + + /** + * Append the std::string_view surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(std::string_view input) noexcept; + + /** + * Append the character surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(char input) noexcept; + + /** + * Append the character surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(const char* input) noexcept; + + /** + * Append the C string directly, without escaping. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(const char *c) noexcept; + + /** + * Append "{" to the buffer. + */ + simdjson_inline void start_object() noexcept; + + /** + * Append "}" to the buffer. + */ + simdjson_inline void end_object() noexcept; + + /** + * Append "[" to the buffer. + */ + simdjson_inline void start_array() noexcept; + + /** + * Append "]" to the buffer. + */ + simdjson_inline void end_array() noexcept; + + /** + * Append "," to the buffer. + */ + simdjson_inline void append_comma() noexcept; + + /** + * Append ":" to the buffer. + */ + simdjson_inline void append_colon() noexcept; + + /** + * Append a key-value pair to the buffer. + * The key is escaped and surrounded by double quotes. + * The value is escaped if it is a string. + */ + template + simdjson_inline void append_key_value(key_type key, value_type value) noexcept; + /** + * Append the std::string_view directly, without escaping. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(std::string_view input) noexcept; + + /** + * Append len characters from str. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(const char *str, size_t len) noexcept; +#if SIMDJSON_EXCEPTIONS + /** + * Creates an std::string from the written JSON buffer. + * Throws if memory allocation failed + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content if needed. + */ + simdjson_inline operator std::string() const noexcept(false); + + /** + * Creates an std::string_view from the written JSON buffer. + * Throws if memory allocation failed. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content if needed. + */ + simdjson_inline operator std::string_view() const noexcept(false); +#endif + + /** + * Returns a view on the written JSON buffer. Returns an error + * if memory allocation failed. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content. + */ + simdjson_inline simdjson_result view() const noexcept; + + /** + * Appends the null character to the buffer and returns + * a pointer to the beginning of the written JSON buffer. + * Returns an error if memory allocation failed. + * The result is null-terminated. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content. + */ + simdjson_inline simdjson_result c_str() noexcept; + + /** + * Return true if the content is valid UTF-8. + */ + simdjson_inline bool validate_unicode() const noexcept; + + /** + * Returns the current size of the written JSON buffer. + * If an error occurred, returns 0. + */ + simdjson_inline size_t size() const noexcept; + +private: + /** + * Returns true if we can write at least upcoming_bytes bytes. + * The underlying buffer is reallocated if needed. It is designed + * to be called before writing to the buffer. It should be fast. + */ + simdjson_inline bool capacity_check(size_t upcoming_bytes); + + /** + * Grow the buffer to at least desired_capacity bytes. + * If the allocation fails, is_valid is set to false. We expect + * that this function would not be repeatedly called. + */ + simdjson_inline void grow_buffer(size_t desired_capacity); + + /** + * We use this helper function to make sure that is_valid is kept consistent. + */ + simdjson_inline void set_valid(bool valid) noexcept; + + std::unique_ptr buffer{}; + size_t position{0}; + size_t capacity{0}; + bool is_valid{true}; +}; + + + +} +} +} // namespace simdjson + +#endif // SIMDJSON_GENERIC_STRING_BUILDER_H +/* end file simdjson/generic/ondemand/json_string_builder.h for lsx */ +/* including simdjson/generic/ondemand/json_string_builder-inl.h for lsx: #include "simdjson/generic/ondemand/json_string_builder-inl.h" */ +/* begin file simdjson/generic/ondemand/json_string_builder-inl.h for lsx */ +/** + * This file is part of the builder API. It is temporarily in the ondemand + * directory but we will move it to a builder directory later. + */ +#include +#include +#include +#ifndef SIMDJSON_GENERIC_STRING_BUILDER_INL_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_INL_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/builder/json_string_builder.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ + +/* + * Empirically, we have found that an inlined optimization is important for + * performance. The following macros are not ideal. We should find a better + * way to inline the code. + */ + +#if defined(__SSE2__) || defined(__x86_64__) || defined(__x86_64) || \ + (defined(_M_AMD64) || defined(_M_X64) || \ + (defined(_M_IX86_FP) && _M_IX86_FP == 2)) +#ifndef SIMDJSON_EXPERIMENTAL_HAS_SSE2 +#define SIMDJSON_EXPERIMENTAL_HAS_SSE2 1 +#endif +#endif + +#if defined(__aarch64__) || defined(_M_ARM64) +#ifndef SIMDJSON_EXPERIMENTAL_HAS_NEON +#define SIMDJSON_EXPERIMENTAL_HAS_NEON 1 +#endif +#endif +#if SIMDJSON_EXPERIMENTAL_HAS_NEON +#include +#endif +#if SIMDJSON_EXPERIMENTAL_HAS_SSE2 +#include +#endif + +namespace simdjson { +namespace lsx { +namespace builder { + +static SIMDJSON_CONSTEXPR_LAMBDA std::array json_quotable_character = { + 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, + 1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}; + +/** + +A possible SWAR implementation of has_json_escapable_byte. It is not used because +it is slower than the current implementation. It is kept here for reference (to show +that we tried it). + +inline bool has_json_escapable_byte(uint64_t x) { + uint64_t is_ascii = 0x8080808080808080ULL & ~x; + uint64_t xor2 = x ^ 0x0202020202020202ULL; + uint64_t lt32_or_eq34 = xor2 - 0x2121212121212121ULL; + uint64_t sub92 = x ^ 0x5C5C5C5C5C5C5C5CULL; + uint64_t eq92 = (sub92 - 0x0101010101010101ULL); + return ((lt32_or_eq34 | eq92) & is_ascii) != 0; +} + +**/ + +SIMDJSON_CONSTEXPR_LAMBDA simdjson_inline bool +simple_needs_escaping(std::string_view v) { + for (char c : v) { + // a table lookup is faster than a series of comparisons + if(json_quotable_character[static_cast(c)]) { + return true; + } + } + return false; +} + +#if SIMDJSON_EXPERIMENTAL_HAS_NEON +simdjson_inline bool fast_needs_escaping(std::string_view view) { + if (view.size() < 16) { + return simple_needs_escaping(view); + } + size_t i = 0; + uint8x16_t running = vdupq_n_u8(0); + uint8x16_t v34 = vdupq_n_u8(34); + uint8x16_t v92 = vdupq_n_u8(92); + + for (; i + 15 < view.size(); i += 16) { + uint8x16_t word = vld1q_u8((const uint8_t *)view.data() + i); + running = vorrq_u8(running, vceqq_u8(word, v34)); + running = vorrq_u8(running, vceqq_u8(word, v92)); + running = vorrq_u8(running, vcltq_u8(word, vdupq_n_u8(32))); + } + if (i < view.size()) { + uint8x16_t word = + vld1q_u8((const uint8_t *)view.data() + view.length() - 16); + running = vorrq_u8(running, vceqq_u8(word, v34)); + running = vorrq_u8(running, vceqq_u8(word, v92)); + running = vorrq_u8(running, vcltq_u8(word, vdupq_n_u8(32))); + } + return vmaxvq_u32(vreinterpretq_u32_u8(running)) != 0; +} +#elif SIMDJSON_EXPERIMENTAL_HAS_SSE2 +simdjson_inline bool fast_needs_escaping(std::string_view view) { + if (view.size() < 16) { + return simple_needs_escaping(view); + } + size_t i = 0; + __m128i running = _mm_setzero_si128(); + for (; i + 15 < view.size(); i += 16) { + + __m128i word = _mm_loadu_si128(reinterpret_cast(view.data() + i)); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(34))); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(92))); + running = _mm_or_si128( + running, _mm_cmpeq_epi8(_mm_subs_epu8(word, _mm_set1_epi8(31)), + _mm_setzero_si128())); + } + if (i < view.size()) { + __m128i word = + _mm_loadu_si128(reinterpret_cast(view.data() + view.length() - 16)); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(34))); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(92))); + running = _mm_or_si128( + running, _mm_cmpeq_epi8(_mm_subs_epu8(word, _mm_set1_epi8(31)), + _mm_setzero_si128())); + } + return _mm_movemask_epi8(running) != 0; +} +#else +simdjson_inline bool fast_needs_escaping(std::string_view view) { + return simple_needs_escaping(view); +} +#endif + + +SIMDJSON_CONSTEXPR_LAMBDA inline size_t +find_next_json_quotable_character(const std::string_view view, + size_t location) noexcept { + + for (auto pos = view.begin() + location; pos != view.end(); ++pos) { + if (json_quotable_character[static_cast(*pos)]) { + return pos - view.begin(); + } + } + return size_t(view.size()); +} + +SIMDJSON_CONSTEXPR_LAMBDA static std::string_view control_chars[] = { + "\\x0000", "\\x0001", "\\x0002", "\\x0003", "\\x0004", "\\x0005", "\\x0006", + "\\x0007", "\\x0008", "\\t", "\\n", "\\x000b", "\\f", "\\r", + "\\x000e", "\\x000f", "\\x0010", "\\x0011", "\\x0012", "\\x0013", "\\x0014", + "\\x0015", "\\x0016", "\\x0017", "\\x0018", "\\x0019", "\\x001a", "\\x001b", + "\\x001c", "\\x001d", "\\x001e", "\\x001f"}; + +SIMDJSON_CONSTEXPR_LAMBDA void escape_json_char(char c, char *&out) { + if (c == '"') { + memcpy(out, "\\\"", 2); + out += 2; + } else if (c == '\\') { + memcpy(out, "\\\\", 2); + out += 2; + } else { + std::string_view v = control_chars[uint8_t(c)]; + memcpy(out, v.data(), v.size()); + out += v.size(); + } +} + +inline size_t write_string_escaped(const std::string_view input, char *out) { + size_t mysize = input.size(); + if (!fast_needs_escaping(input)) { // fast path! + memcpy(out, input.data(), input.size()); + return input.size(); + } + const char *const initout = out; + size_t location = find_next_json_quotable_character(input, 0); + memcpy(out, input.data(), location); + out += location; + escape_json_char(input[location], out); + location += 1; + while (location < mysize) { + size_t newlocation = find_next_json_quotable_character(input, location); + memcpy(out, input.data() + location, newlocation - location); + out += newlocation - location; + location = newlocation; + if (location == mysize) { + break; + } + escape_json_char(input[location], out); + location += 1; + } + return out - initout; +} + +#if SIMDJSON_CONSTEVAL +// unoptimized, meant for compile-time execution +consteval std::string consteval_to_quoted_escaped(std::string_view input) { + std::string out = "\""; + for (char c : input) { + if (json_quotable_character[uint8_t(c)]) { + if (c == '"') { + out.append("\\\""); + } else if (c == '\\') { + out.append("\\\\"); + } else { + std::string_view v = control_chars[uint8_t(c)]; + out.append(v); + } + } else { + out.push_back(c); + } + } + out.push_back('"'); + return out; +} +#endif // SIMDJSON_CONSTEVAL + +simdjson_inline string_builder::string_builder(size_t initial_capacity) + : buffer(new(std::nothrow) char[initial_capacity]), position(0), + capacity(buffer.get() != nullptr ? initial_capacity : 0), + is_valid(buffer.get() != nullptr) {} + +simdjson_inline bool string_builder::capacity_check(size_t upcoming_bytes) { + // We use the convention that when is_valid is false, then the capacity and + // the position are 0. + // Most of the time, this function will return true. + if (simdjson_likely(upcoming_bytes <= capacity - position)) { + return true; + } + // check for overflow, most of the time there is no overflow + if (simdjson_likely(position + upcoming_bytes < position)) { + return false; + } + // We will rarely get here. + grow_buffer((std::max)(capacity * 2, position + upcoming_bytes)); + // If the buffer allocation failed, we set is_valid to false. + return is_valid; +} + +simdjson_inline void string_builder::grow_buffer(size_t desired_capacity) { + if (!is_valid) { + return; + } + std::unique_ptr new_buffer(new (std::nothrow) char[desired_capacity]); + if (new_buffer.get() == nullptr) { + set_valid(false); + return; + } + std::memcpy(new_buffer.get(), buffer.get(), position); + buffer.swap(new_buffer); + capacity = desired_capacity; +} + +simdjson_inline void string_builder::set_valid(bool valid) noexcept { + if (!valid) { + is_valid = false; + capacity = 0; + position = 0; + buffer.reset(); + } else { + is_valid = true; + } +} + +simdjson_inline size_t string_builder::size() const noexcept { + return position; +} + +simdjson_inline void string_builder::append(char c) noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = c; + } +} + +simdjson_inline void string_builder::append_null() noexcept { + constexpr char null_literal[] = "null"; + constexpr size_t null_len = sizeof(null_literal) - 1; + if (capacity_check(null_len)) { + std::memcpy(buffer.get() + position, null_literal, null_len); + position += null_len; + } +} + +simdjson_inline void string_builder::clear() noexcept { + position = 0; + // if it was invalid, we should try to repair it + if (!is_valid) { + capacity = 0; + buffer.reset(); + is_valid = true; + } +} + +namespace internal { + +// We could specialize further for 32-bit integers. +int int_log2(uint32_t x) { return (63 - leading_zeroes(x | 1)); } + +int fast_digit_count(uint32_t x) { + static uint64_t table[] = { + 4294967296, 8589934582, 8589934582, 8589934582, 12884901788, + 12884901788, 12884901788, 17179868184, 17179868184, 17179868184, + 21474826480, 21474826480, 21474826480, 21474826480, 25769703776, + 25769703776, 25769703776, 30063771072, 30063771072, 30063771072, + 34349738368, 34349738368, 34349738368, 34349738368, 38554705664, + 38554705664, 38554705664, 41949672960, 41949672960, 41949672960, + 42949672960, 42949672960}; + return uint32_t((x + table[int_log2(x)]) >> 32); +} + +int int_log2(uint64_t x) { return 63 - leading_zeroes(x | 1); } + +int fast_digit_count(uint64_t x) { + static uint64_t table[] = {9, + 99, + 999, + 9999, + 99999, + 999999, + 9999999, + 99999999, + 999999999, + 9999999999, + 99999999999, + 999999999999, + 9999999999999, + 99999999999999, + 999999999999999ULL, + 9999999999999999ULL, + 99999999999999999ULL, + 999999999999999999ULL, + 9999999999999999999ULL}; + int y = (19 * int_log2(x) >> 6); + y += x > table[y]; + return y + 1; +} + +template ::value>::type> +simdjson_inline size_t digit_count(number_type v) noexcept { + static_assert(sizeof(number_type) == 8 || sizeof(number_type) == 4 || + sizeof(number_type) == 2 || sizeof(number_type) == 1, + "We only support 8-bit, 16-bit, 32-bit and 64-bit numbers"); + return fast_digit_count(v); +} +static const char decimal_table[200] = { + 0x30, 0x30, 0x30, 0x31, 0x30, 0x32, 0x30, 0x33, 0x30, 0x34, 0x30, 0x35, + 0x30, 0x36, 0x30, 0x37, 0x30, 0x38, 0x30, 0x39, 0x31, 0x30, 0x31, 0x31, + 0x31, 0x32, 0x31, 0x33, 0x31, 0x34, 0x31, 0x35, 0x31, 0x36, 0x31, 0x37, + 0x31, 0x38, 0x31, 0x39, 0x32, 0x30, 0x32, 0x31, 0x32, 0x32, 0x32, 0x33, + 0x32, 0x34, 0x32, 0x35, 0x32, 0x36, 0x32, 0x37, 0x32, 0x38, 0x32, 0x39, + 0x33, 0x30, 0x33, 0x31, 0x33, 0x32, 0x33, 0x33, 0x33, 0x34, 0x33, 0x35, + 0x33, 0x36, 0x33, 0x37, 0x33, 0x38, 0x33, 0x39, 0x34, 0x30, 0x34, 0x31, + 0x34, 0x32, 0x34, 0x33, 0x34, 0x34, 0x34, 0x35, 0x34, 0x36, 0x34, 0x37, + 0x34, 0x38, 0x34, 0x39, 0x35, 0x30, 0x35, 0x31, 0x35, 0x32, 0x35, 0x33, + 0x35, 0x34, 0x35, 0x35, 0x35, 0x36, 0x35, 0x37, 0x35, 0x38, 0x35, 0x39, + 0x36, 0x30, 0x36, 0x31, 0x36, 0x32, 0x36, 0x33, 0x36, 0x34, 0x36, 0x35, + 0x36, 0x36, 0x36, 0x37, 0x36, 0x38, 0x36, 0x39, 0x37, 0x30, 0x37, 0x31, + 0x37, 0x32, 0x37, 0x33, 0x37, 0x34, 0x37, 0x35, 0x37, 0x36, 0x37, 0x37, + 0x37, 0x38, 0x37, 0x39, 0x38, 0x30, 0x38, 0x31, 0x38, 0x32, 0x38, 0x33, + 0x38, 0x34, 0x38, 0x35, 0x38, 0x36, 0x38, 0x37, 0x38, 0x38, 0x38, 0x39, + 0x39, 0x30, 0x39, 0x31, 0x39, 0x32, 0x39, 0x33, 0x39, 0x34, 0x39, 0x35, + 0x39, 0x36, 0x39, 0x37, 0x39, 0x38, 0x39, 0x39, +}; +} // namespace internal + +template +simdjson_inline void string_builder::append(number_type v) noexcept { + static_assert(std::is_same::value || + std::is_integral::value || + std::is_floating_point::value, + "Unsupported number type"); + // If C++17 is available, we can 'if constexpr' here. + SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + if (v) { + constexpr char true_literal[] = "true"; + constexpr size_t true_len = sizeof(true_literal) - 1; + if (capacity_check(true_len)) { + std::memcpy(buffer.get() + position, true_literal, true_len); + position += true_len; + } + } else { + constexpr char false_literal[] = "false"; + constexpr size_t false_len = sizeof(false_literal) - 1; + if (capacity_check(false_len)) { + std::memcpy(buffer.get() + position, false_literal, false_len); + position += false_len; + } + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_unsigned::value) { + constexpr size_t max_number_size = 20; + if (capacity_check(max_number_size)) { + using unsigned_type = typename std::make_unsigned::type; + unsigned_type pv = static_cast(v); + size_t dc = internal::digit_count(pv); + char *write_pointer = buffer.get() + position + dc - 1; + while (pv >= 100) { + memcpy(write_pointer - 1, &internal::decimal_table[(pv % 100)*2], 2); + write_pointer -= 2; + pv /= 100; + } + if (pv >= 10) { + *write_pointer-- = char('0' + (pv % 10)); + pv /= 10; + } + *write_pointer = char('0' + pv); + position += dc; + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_integral::value) { + constexpr size_t max_number_size = 20; + if (capacity_check(max_number_size)) { + using unsigned_type = typename std::make_unsigned::type; + bool negative = v < 0; + unsigned_type pv = static_cast(v); + if (negative) { + pv = 0 - pv; // the 0 is for Microsoft + } + size_t dc = internal::digit_count(pv); + if (negative) { + buffer.get()[position++] = '-'; + } + char *write_pointer = buffer.get() + position + dc - 1; + while (pv >= 100) { + memcpy(write_pointer - 1, &internal::decimal_table[(pv % 100)*2], 2); + write_pointer -= 2; + pv /= 100; + } + if (pv >= 10) { + *write_pointer-- = char('0' + (pv % 10)); + pv /= 10; + } + *write_pointer = char('0' + pv); + position += dc; + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_floating_point::value) { + constexpr size_t max_number_size = 24; + if (capacity_check(max_number_size)) { + // We could specialize for float. + char *end = simdjson::internal::to_chars(buffer.get() + position, nullptr, + double(v)); + position = end - buffer.get(); + } + } +} + +simdjson_inline void +string_builder::escape_and_append(std::string_view input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(6 * input.size())) { + position += write_string_escaped(input, buffer.get() + position); + } +} + +simdjson_inline void +string_builder::escape_and_append_with_quotes(std::string_view input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(2 + 6 * input.size())) { + buffer.get()[position++] = '"'; + position += write_string_escaped(input, buffer.get() + position); + buffer.get()[position++] = '"'; + } +} + +simdjson_inline void +string_builder::escape_and_append_with_quotes(char input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(2 + 6 * 1)) { + buffer.get()[position++] = '"'; + std::string_view cinput(&input, 1); + position += write_string_escaped(cinput, buffer.get() + position); + buffer.get()[position++] = '"'; + } +} + +simdjson_inline void string_builder::escape_and_append_with_quotes(const char* input) noexcept { + std::string_view cinput(input); + escape_and_append_with_quotes(cinput); +} + +simdjson_inline void string_builder::append_raw(const char *c) noexcept { + size_t len = std::strlen(c); + append_raw(c, len); +} + +simdjson_inline void +string_builder::append_raw(std::string_view input) noexcept { + if (capacity_check(input.size())) { + std::memcpy(buffer.get() + position, input.data(), input.size()); + position += input.size(); + } +} + +simdjson_inline void string_builder::append_raw(const char *str, + size_t len) noexcept { + if (capacity_check(len)) { + std::memcpy(buffer.get() + position, str, len); + position += len; + } +} + +#if SIMDJSON_EXCEPTIONS +simdjson_inline string_builder::operator std::string() const noexcept(false) { + return std::string(std::string_view()); +} + +simdjson_inline string_builder::operator std::string_view() const + noexcept(false) { + return view(); +} +#endif + +simdjson_inline simdjson_result +string_builder::view() const noexcept { + if (!is_valid) { + return simdjson::OUT_OF_CAPACITY; + } + return std::string_view(buffer.get(), position); +} + +simdjson_inline simdjson_result string_builder::c_str() noexcept { + if (capacity_check(1)) { + buffer.get()[position] = '\0'; + return buffer.get(); + } + return simdjson::OUT_OF_CAPACITY; +} + +simdjson_inline bool string_builder::validate_unicode() const noexcept { + return simdjson::validate_utf8(buffer.get(), position); +} + +simdjson_inline void string_builder::start_object() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '{'; + } +} + + +simdjson_inline void string_builder::end_object() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '}'; + } +} + + +simdjson_inline void string_builder::start_array() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '['; + } +} + + +simdjson_inline void string_builder::end_array() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ']'; + } +} + + +simdjson_inline void string_builder::append_comma() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ','; + } +} + + +simdjson_inline void string_builder::append_colon() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ':'; + } +} + +template +simdjson_inline void string_builder::append_key_value(key_type key, value_type value) noexcept { + static_assert( + std::is_arithmetic::value || + std::is_same::value || + std::is_same::value || + std::is_convertible::value || + std::is_same::value, + "Unsupported value type"); + static_assert( + std::is_same::value || + std::is_convertible::value, + "Unsupported key type"); + escape_and_append_with_quotes(key); + append_colon(); + SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + append_null(); + } else SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + escape_and_append_with_quotes(value); + } else SIMDJSON_IF_CONSTEXPR(std::is_convertible::value) { + escape_and_append_with_quotes(value); + } else SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + escape_and_append_with_quotes(value); + } else { + append(value); + } +} + +} // namespace builder +} // namespace lsx +} // namespace simdjson + +#endif // SIMDJSON_GENERIC_STRING_BUILDER_INL_H +/* end file simdjson/generic/ondemand/json_string_builder-inl.h for lsx */ +/* including simdjson/generic/ondemand/json_builder.h for lsx: #include "simdjson/generic/ondemand/json_builder.h" */ +/* begin file simdjson/generic/ondemand/json_builder.h for lsx */ +/** + * This file is part of the builder API. It is temporarily in the ondemand directory + * but we will move it to a builder directory later. + */ +#ifndef SIMDJSON_GENERIC_BUILDER_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/builder/json_string_builder.h" */ +/* amalgamation skipped (editor-only): #include "simdjson/concepts.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ +#if SIMDJSON_STATIC_REFLECTION + +#include +#include +#include +#include +#include +#include +// #include // for std::define_static_string - header not available yet + +namespace simdjson { +namespace lsx { +namespace builder { + +// Concept that checks if a type is a container but not a string (because +// strings handling must be handled differently) +template +concept container_but_not_string = + requires(T a) { + { a.size() } -> std::convertible_to; + { + a[std::declval()] + }; // check if elements are accessible for the subscript operator + } && !std::is_same_v && + !std::is_same_v && !std::is_same_v; + +template + requires(container_but_not_string) +constexpr void atom(string_builder &b, const T &t) { + if (t.size() == 0) { + b.append_raw("[]"); + return; + } + b.append('['); + atom(b, t[0]); + for (size_t i = 1; i < t.size(); ++i) { + b.append(','); + atom(b, t[i]); + } + b.append(']'); +} + +template + requires(std::is_same_v || + std::is_same_v || + std::is_same_v || + std::is_same_v) +constexpr void atom(string_builder &b, const T &t) { + b.escape_and_append_with_quotes(t); +} + +template +constexpr void atom(string_builder &b, const T &m) { + if (m.empty()) { + b.append_raw("{}"); + return; + } + b.append('{'); + bool first = true; + for (const auto& [key, value] : m) { + if (!first) { + b.append(','); + } + first = false; + // Keys must be convertible to string_view per the concept + b.escape_and_append_with_quotes(key); + b.append(':'); + atom(b, value); + } + b.append('}'); +} + + +template::value && !std::is_same_v>::type> +constexpr void atom(string_builder &b, const number_type t) { + b.append(t); +} +#if SIMDJSON_CONSTEVAL +consteval std::string consteval_to_quoted_escaped(std::string_view input); +#endif + +template + requires(std::is_class_v && !container_but_not_string && + !concepts::string_view_keyed_map && + !std::is_same_v && + !std::is_same_v) +constexpr void atom(string_builder &b, const T &t) { + int i = 0; + b.append('{'); + [:expand(std::meta::nonstatic_data_members_of(^^T, std::meta::access_context::unchecked())):] >> [&]() { + if (i != 0) + b.append(','); + constexpr auto key = std::define_static_string(consteval_to_quoted_escaped(std::meta::identifier_of(dm))); + b.append_raw(key); + b.append(':'); + atom(b, t.[:dm:]); + i++; + }; + b.append('}'); +} + +// works for struct +template void append(string_builder &b, const Z &z) { + int i = 0; + b.append('{'); + [:expand(std::meta::nonstatic_data_members_of(^^Z, std::meta::access_context::unchecked())):] >> [&]() { + if (i != 0) + b.append(','); + constexpr auto key = std::define_static_string(consteval_to_quoted_escaped(std::meta::identifier_of(dm))); + b.append_raw(key); + b.append(':'); + atom(b, z.[:dm:]); + i++; + }; + b.append('}'); +} + +// works for container +template + requires(container_but_not_string) +void append(string_builder &b, const Z &z) { + if (z.size() == 0) { + b.append_raw("[]"); + return; + } + b.append('['); + atom(b, z[0]); + for (size_t i = 1; i < z.size(); ++i) { + b.append(','); + atom(b, z[i]); + } + b.append(']'); +} + +template +simdjson_result to_json_string(const Z &z) { + string_builder b; + append(b, z); + std::string_view s; + if(auto e = b.view().get(s); e) { return e; } + return std::string(s); +} + +template +simdjson_error to_json(const Z &z, std::string &s) { + string_builder b; + append(b, z); + std::string_view view; + if(auto e = b.view().get(view); e) { return e; } + s.assign(view); + return SUCCESS; +} +} // namespace json_builder +} // namespace lsx +} // namespace simdjson +#endif // SIMDJSON_STATIC_REFLECTION + +#endif +/* end file simdjson/generic/ondemand/json_builder.h for lsx */ /* end file simdjson/generic/ondemand/amalgamated.h for lsx */ /* including simdjson/lsx/end.h: #include "simdjson/lsx/end.h" */ @@ -112660,6 +122829,31 @@ simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uin }; } + +struct escaping { + static constexpr uint32_t BYTES_PROCESSED = 16; + simdjson_inline static escaping copy_and_find(const uint8_t *src, uint8_t *dst); + + simdjson_inline bool has_escape() { return escape_bits != 0; } + simdjson_inline int escape_index() { return trailing_zeroes(escape_bits); } + + uint64_t escape_bits; +}; // struct escaping + + + +simdjson_inline escaping escaping::copy_and_find(const uint8_t *src, uint8_t *dst) { + static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "escaping finder must process fewer than SIMDJSON_PADDING bytes"); + simd8 v(src); + v.store(dst); + simd8 is_quote = (v == '"'); + simd8 is_backslash = (v == '\\'); + simd8 is_control = (v < 32); + return { + (is_backslash | is_quote | is_control).to_bitmask() + }; +} + } // unnamed namespace } // namespace lasx } // namespace simdjson @@ -112818,10 +123012,26 @@ concept nothrow_deserializable = nothrow_custom_deserializable || is_bu /// Deserialize Tag inline constexpr struct deserialize_tag { + using array_type = lasx::ondemand::array; + using object_type = lasx::ondemand::object; using value_type = lasx::ondemand::value; using document_type = lasx::ondemand::document; using document_reference_type = lasx::ondemand::document_reference; + // Customization Point for array + template + requires custom_deserializable + [[nodiscard]] constexpr /* error_code */ auto operator()(array_type &object, T& output) const noexcept(nothrow_custom_deserializable) { + return tag_invoke(*this, object, output); + } + + // Customization Point for object + template + requires custom_deserializable + [[nodiscard]] constexpr /* error_code */ auto operator()(object_type &object, T& output) const noexcept(nothrow_custom_deserializable) { + return tag_invoke(*this, object, output); + } + // Customization Point for value template requires custom_deserializable @@ -113389,6 +123599,7 @@ public: * * You may use get_double(), get_bool(), get_uint64(), get_int64(), * get_object(), get_array(), get_raw_json_string(), or get_string() instead. + * When SIMDJSON_SUPPORTS_DESERIALIZATION is set, custom types are also supported. * * @returns A value of the given type, parsed from the JSON. * @returns INCORRECT_TYPE If the JSON value is not the given type. @@ -113412,6 +123623,7 @@ public: * Get this value as the given type. * * Supported types: object, array, raw_json_string, string_view, uint64_t, int64_t, double, bool + * If the macro SIMDJSON_SUPPORTS_DESERIALIZATION is set, then custom types are also supported. * * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. * @returns INCORRECT_TYPE If the JSON value is not an object. @@ -115654,6 +125866,37 @@ public: * - INDEX_OUT_OF_BOUNDS if the array index is larger than an array length */ simdjson_inline simdjson_result at(size_t index) noexcept; + +#if SIMDJSON_SUPPORTS_DESERIALIZATION + /** + * Get this array as the given type. + * + * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. + * @returns INCORRECT_TYPE If the JSON array is not of the given type. + * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. + */ + template + simdjson_inline error_code get(T &out) + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) { + static_assert(custom_deserializable); + return deserialize(*this, out); + } + /** + * Get this array as the given type. + * + * @returns A value of the given type, parsed from the JSON. + * @returns INCORRECT_TYPE If the JSON value is not the given type. + */ + template + simdjson_inline simdjson_result get() + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) + { + static_assert(std::is_default_constructible::value, "The specified type is not default constructible."); + T out{}; + SIMDJSON_TRY(get(out)); + return out; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION protected: /** * Go to the end of the array, no matter where you are right now. @@ -115732,7 +125975,28 @@ public: simdjson_inline simdjson_result at_pointer(std::string_view json_pointer) noexcept; simdjson_inline simdjson_result at_path(std::string_view json_path) noexcept; simdjson_inline simdjson_result raw_json() noexcept; +#if SIMDJSON_SUPPORTS_DESERIALIZATION + // TODO: move this code into object-inl.h + template + simdjson_inline simdjson_result get() noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + return first; + } + return first.get(); + } + template + simdjson_inline error_code get(T& out) noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + out = first; + } else { + SIMDJSON_TRY( first.get(out) ); + } + return SUCCESS; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION }; } // namespace simdjson @@ -116066,7 +126330,7 @@ public: * Be mindful that the document instance must remain in scope while you are accessing object, array and value instances. * * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. - * @returns INCORRECT_TYPE If the JSON value is not an object. + * @returns INCORRECT_TYPE If the JSON value is of the given type. * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. */ template @@ -117553,6 +127817,36 @@ public: */ simdjson_inline simdjson_result raw_json() noexcept; +#if SIMDJSON_SUPPORTS_DESERIALIZATION + /** + * Get this object as the given type. + * + * @param out This is set to a value of the given type, parsed from the JSON. If there is an error, this may not be initialized. + * @returns INCORRECT_TYPE If the JSON object is not of the given type. + * @returns SUCCESS If the parse succeeded and the out parameter was set to the value. + */ + template + simdjson_inline error_code get(T &out) + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) { + static_assert(custom_deserializable); + return deserialize(*this, out); + } + /** + * Get this array as the given type. + * + * @returns A value of the given type, parsed from the JSON. + * @returns INCORRECT_TYPE If the JSON value is not the given type. + */ + template + simdjson_inline simdjson_result get() + noexcept(custom_deserializable ? nothrow_custom_deserializable : true) + { + static_assert(std::is_default_constructible::value, "The specified type is not default constructible."); + T out{}; + SIMDJSON_TRY(get(out)); + return out; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION protected: /** * Go to the end of the object, no matter where you are right now. @@ -117596,12 +127890,32 @@ public: simdjson_inline simdjson_result operator[](std::string_view key) && noexcept; simdjson_inline simdjson_result at_pointer(std::string_view json_pointer) noexcept; simdjson_inline simdjson_result at_path(std::string_view json_path) noexcept; - inline simdjson_result reset() noexcept; inline simdjson_result is_empty() noexcept; inline simdjson_result count_fields() & noexcept; inline simdjson_result raw_json() noexcept; + #if SIMDJSON_SUPPORTS_DESERIALIZATION + // TODO: move this code into object-inl.h + template + simdjson_inline simdjson_result get() noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + return first; + } + return first.get(); + } + template + simdjson_inline error_code get(T& out) noexcept { + if (error()) { return error(); } + if constexpr (std::is_same_v) { + out = first; + } else { + SIMDJSON_TRY( first.get(out) ); + } + return SUCCESS; + } +#endif // SIMDJSON_SUPPORTS_DESERIALIZATION }; } // namespace simdjson @@ -117806,12 +128120,17 @@ inline std::ostream& operator<<(std::ostream& out, simdjson::simdjson_result #include +#if SIMDJSON_STATIC_REFLECTION +#include +// #include // for std::define_static_string - header not available yet +#endif namespace simdjson { template @@ -117858,6 +128177,22 @@ error_code tag_invoke(deserialize_tag, auto &val, T &out) noexcept { return SUCCESS; } +////////////////////////////// +// String deserialization +////////////////////////////// + +// just a character! +error_code tag_invoke(deserialize_tag, auto &val, char &out) noexcept { + std::string_view x; + SIMDJSON_TRY(val.get_string().get(x)); + if(x.size() != 1) { + return INCORRECT_TYPE; + } + out = x[0]; + return SUCCESS; +} + +// any string-like type (can be constructed from std::string_view) template requires(!require_custom_serialization) error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(std::is_nothrow_constructible_v) { @@ -117879,15 +128214,20 @@ template requires(!require_custom_serialization) error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(false) { using value_type = typename std::remove_cvref_t::value_type; - static_assert( + /*static_assert( deserializable, - "The specified type inside the container must itself be deserializable"); + "The specified type inside the container must itself be deserializable");*/ static_assert( std::is_default_constructible_v, "The specified type inside the container must default constructible."); lasx::ondemand::array arr; - SIMDJSON_TRY(val.get_array().get(arr)); + if constexpr (std::is_same_v, lasx::ondemand::array>) { + arr = val; + } else { + SIMDJSON_TRY(val.get_array().get(arr)); + } + for (auto v : arr) { if constexpr (concepts::returns_reference) { if (auto const err = v.get().get(concepts::emplace_one(out)); @@ -117944,7 +128284,45 @@ error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(false) { return SUCCESS; } +template +error_code tag_invoke(deserialize_tag, lasx::ondemand::object &obj, T &out) noexcept { + using value_type = typename std::remove_cvref_t::mapped_type; + out.clear(); + for (auto field : obj) { + std::string_view key; + SIMDJSON_TRY(field.unescaped_key().get(key)); + + lasx::ondemand::value value_obj; + SIMDJSON_TRY(field.value().get(value_obj)); + + value_type this_value; + SIMDJSON_TRY(value_obj.get(this_value)); + out.emplace(typename T::key_type(key), std::move(this_value)); + } + return SUCCESS; +} + +template +error_code tag_invoke(deserialize_tag, lasx::ondemand::value &val, T &out) noexcept { + lasx::ondemand::object obj; + SIMDJSON_TRY(val.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} + +template +error_code tag_invoke(deserialize_tag, lasx::ondemand::document &doc, T &out) noexcept { + lasx::ondemand::object obj; + SIMDJSON_TRY(doc.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} + +template +error_code tag_invoke(deserialize_tag, lasx::ondemand::document_reference &doc, T &out) noexcept { + lasx::ondemand::object obj; + SIMDJSON_TRY(doc.get_object().get(obj)); + return simdjson::deserialize(obj, out); +} /** @@ -118006,6 +128384,199 @@ error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept(nothrow_deser return SUCCESS; } + +#if SIMDJSON_STATIC_REFLECTION + + +template +constexpr bool user_defined_type = (std::is_class_v +&& !std::is_same_v && !std::is_same_v && !concepts::optional_type && +!concepts::appendable_containers && !require_custom_serialization); + + +// workaround from +// https://www.open-std.org/jtc1/sc22/wg21/docs/papers/2024/p2996r10.html#back-and-forth +// for missing expansion statements +namespace __impl { + template + struct replicator_type { + template + constexpr void operator>>(F body) const { + (body.template operator()(), ...); + } + }; + + template + replicator_type replicator = {}; +} + +template +consteval auto expand(R range) { + std::vector args; + for (auto r : range) { + args.push_back(reflect_value(r)); + } + return substitute(^^__impl::replicator, args); +} +// end of workaround + +template + requires(user_defined_type && std::is_class_v) +error_code tag_invoke(deserialize_tag, ValT &val, T &out) noexcept { + lasx::ondemand::object obj; + if constexpr (std::is_same_v, lasx::ondemand::object>) { + obj = val; + } else { + SIMDJSON_TRY(val.get_object().get(obj)); + } + error_code e = simdjson::SUCCESS; + + [:expand(std::meta::nonstatic_data_members_of(^^T, std::meta::access_context::unchecked())):] >> [&]() { + if constexpr (!std::meta::is_const(mem) && std::meta::is_public(mem)) { + constexpr std::string_view key = std::define_static_string(std::meta::identifier_of(mem)); + static_assert( + deserializable, + "The specified type inside the class must itself be deserializable"); + // as long we are succesful or the field is not found, we continue + if(e == simdjson::SUCCESS || e == simdjson::NO_SUCH_FIELD) { + obj[key].get(out.[:mem:]); + } + } + }; + return e; +} +template + requires(user_defined_type>) +error_code tag_invoke(deserialize_tag, simdjson_value &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { + return MEMALLOC; + } + } + if (auto err = val.get(*out)) { + out.reset(); + return err; + } + return SUCCESS; +} + +template + requires(user_defined_type>) +error_code tag_invoke(deserialize_tag, simdjson_value &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { + return MEMALLOC; + } + } + if (auto err = val.get(*out)) { + out.reset(); + return err; + } + return SUCCESS; +} + +#endif // SIMDJSON_STATIC_REFLECTION + +//////////////////////////////////////// +// Unique pointers +//////////////////////////////////////// +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_bool().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_int64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_uint64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_double().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::unique_ptr &out) noexcept { + if (!out) { + out = std::make_unique(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_string().get(*out)); + return SUCCESS; +} + + +//////////////////////////////////////// +// Shared pointers +//////////////////////////////////////// +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_bool().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_int64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_uint64().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_double().get(*out)); + return SUCCESS; +} + +error_code tag_invoke(deserialize_tag, auto &val, std::shared_ptr &out) noexcept { + if (!out) { + out = std::make_shared(); + if (!out) { return MEMALLOC; } + } + SIMDJSON_TRY(val.get_string().get(*out)); + return SUCCESS; +} + + } // namespace simdjson #endif // SIMDJSON_ONDEMAND_DESERIALIZE_H @@ -121493,6 +132064,7 @@ simdjson_inline simdjson_result simdjson_result::simdjson_result #endif // SIMDJSON_GENERIC_ONDEMAND_VALUE_ITERATOR_INL_H /* end file simdjson/generic/ondemand/value_iterator-inl.h for lasx */ +// JSON builder, ideally they should not be part of the ondemand directory +// but it is convenient for now to have them here. +/* including simdjson/generic/ondemand/json_string_builder.h for lasx: #include "simdjson/generic/ondemand/json_string_builder.h" */ +/* begin file simdjson/generic/ondemand/json_string_builder.h for lasx */ +/** + * This file is part of the builder API. It is temporarily in the ondemand directory + * but we will move it to a builder directory later. + */ +#ifndef SIMDJSON_GENERIC_STRING_BUILDER_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/implementation_simdjson_result_base.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ + +namespace simdjson { +namespace lasx { +namespace builder { + +/** + * A builder for JSON strings representing documents. This is a low-level + * builder that is not meant to be used directly by end-users. Though it + * supports atomic types (Booleans, strings), it does not support composed + * types (arrays and objects). + * + * Ultimately, this class should support kernel-specific optimizations. E.g., + * it may make use of SIMD instructions to escape strings faster. + */ +class string_builder { +public: + simdjson_inline string_builder(size_t initial_capacity = 1024); + + /** + * Append number (includes Booleans). Booleans are mapped to the strings + * false and true. Numbers are converted to strings abiding by the JSON standard. + * Floating-point numbers are converted to the shortest string that 'correctly' + * represents the number. + */ + template::value>::type> + simdjson_inline void append(number_type v) noexcept; + + /** + * Append character c. + */ + simdjson_inline void append(char c) noexcept; + + /** + * Append the string 'null'. + */ + simdjson_inline void append_null() noexcept; + + /** + * Clear the content. + */ + simdjson_inline void clear() noexcept; + + /** + * Append the std::string_view, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append(std::string_view input) noexcept; + + /** + * Append the std::string_view surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(std::string_view input) noexcept; + + /** + * Append the character surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(char input) noexcept; + + /** + * Append the character surrounded by double quotes, after escaping it. + * There is no UTF-8 validation. + */ + simdjson_inline void escape_and_append_with_quotes(const char* input) noexcept; + + /** + * Append the C string directly, without escaping. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(const char *c) noexcept; + + /** + * Append "{" to the buffer. + */ + simdjson_inline void start_object() noexcept; + + /** + * Append "}" to the buffer. + */ + simdjson_inline void end_object() noexcept; + + /** + * Append "[" to the buffer. + */ + simdjson_inline void start_array() noexcept; + + /** + * Append "]" to the buffer. + */ + simdjson_inline void end_array() noexcept; + + /** + * Append "," to the buffer. + */ + simdjson_inline void append_comma() noexcept; + + /** + * Append ":" to the buffer. + */ + simdjson_inline void append_colon() noexcept; + + /** + * Append a key-value pair to the buffer. + * The key is escaped and surrounded by double quotes. + * The value is escaped if it is a string. + */ + template + simdjson_inline void append_key_value(key_type key, value_type value) noexcept; + /** + * Append the std::string_view directly, without escaping. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(std::string_view input) noexcept; + + /** + * Append len characters from str. + * There is no UTF-8 validation. + */ + simdjson_inline void append_raw(const char *str, size_t len) noexcept; +#if SIMDJSON_EXCEPTIONS + /** + * Creates an std::string from the written JSON buffer. + * Throws if memory allocation failed + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content if needed. + */ + simdjson_inline operator std::string() const noexcept(false); + + /** + * Creates an std::string_view from the written JSON buffer. + * Throws if memory allocation failed. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content if needed. + */ + simdjson_inline operator std::string_view() const noexcept(false); +#endif + + /** + * Returns a view on the written JSON buffer. Returns an error + * if memory allocation failed. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content. + */ + simdjson_inline simdjson_result view() const noexcept; + + /** + * Appends the null character to the buffer and returns + * a pointer to the beginning of the written JSON buffer. + * Returns an error if memory allocation failed. + * The result is null-terminated. + * + * The result may not be valid UTF-8 if some of your content was not valid UTF-8. + * Use validate_unicode() to check the content. + */ + simdjson_inline simdjson_result c_str() noexcept; + + /** + * Return true if the content is valid UTF-8. + */ + simdjson_inline bool validate_unicode() const noexcept; + + /** + * Returns the current size of the written JSON buffer. + * If an error occurred, returns 0. + */ + simdjson_inline size_t size() const noexcept; + +private: + /** + * Returns true if we can write at least upcoming_bytes bytes. + * The underlying buffer is reallocated if needed. It is designed + * to be called before writing to the buffer. It should be fast. + */ + simdjson_inline bool capacity_check(size_t upcoming_bytes); + + /** + * Grow the buffer to at least desired_capacity bytes. + * If the allocation fails, is_valid is set to false. We expect + * that this function would not be repeatedly called. + */ + simdjson_inline void grow_buffer(size_t desired_capacity); + + /** + * We use this helper function to make sure that is_valid is kept consistent. + */ + simdjson_inline void set_valid(bool valid) noexcept; + + std::unique_ptr buffer{}; + size_t position{0}; + size_t capacity{0}; + bool is_valid{true}; +}; + + + +} +} +} // namespace simdjson + +#endif // SIMDJSON_GENERIC_STRING_BUILDER_H +/* end file simdjson/generic/ondemand/json_string_builder.h for lasx */ +/* including simdjson/generic/ondemand/json_string_builder-inl.h for lasx: #include "simdjson/generic/ondemand/json_string_builder-inl.h" */ +/* begin file simdjson/generic/ondemand/json_string_builder-inl.h for lasx */ +/** + * This file is part of the builder API. It is temporarily in the ondemand + * directory but we will move it to a builder directory later. + */ +#include +#include +#include +#ifndef SIMDJSON_GENERIC_STRING_BUILDER_INL_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_INL_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/builder/json_string_builder.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ + +/* + * Empirically, we have found that an inlined optimization is important for + * performance. The following macros are not ideal. We should find a better + * way to inline the code. + */ + +#if defined(__SSE2__) || defined(__x86_64__) || defined(__x86_64) || \ + (defined(_M_AMD64) || defined(_M_X64) || \ + (defined(_M_IX86_FP) && _M_IX86_FP == 2)) +#ifndef SIMDJSON_EXPERIMENTAL_HAS_SSE2 +#define SIMDJSON_EXPERIMENTAL_HAS_SSE2 1 +#endif +#endif + +#if defined(__aarch64__) || defined(_M_ARM64) +#ifndef SIMDJSON_EXPERIMENTAL_HAS_NEON +#define SIMDJSON_EXPERIMENTAL_HAS_NEON 1 +#endif +#endif +#if SIMDJSON_EXPERIMENTAL_HAS_NEON +#include +#endif +#if SIMDJSON_EXPERIMENTAL_HAS_SSE2 +#include +#endif + +namespace simdjson { +namespace lasx { +namespace builder { + +static SIMDJSON_CONSTEXPR_LAMBDA std::array json_quotable_character = { + 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, + 1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, + 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}; + +/** + +A possible SWAR implementation of has_json_escapable_byte. It is not used because +it is slower than the current implementation. It is kept here for reference (to show +that we tried it). + +inline bool has_json_escapable_byte(uint64_t x) { + uint64_t is_ascii = 0x8080808080808080ULL & ~x; + uint64_t xor2 = x ^ 0x0202020202020202ULL; + uint64_t lt32_or_eq34 = xor2 - 0x2121212121212121ULL; + uint64_t sub92 = x ^ 0x5C5C5C5C5C5C5C5CULL; + uint64_t eq92 = (sub92 - 0x0101010101010101ULL); + return ((lt32_or_eq34 | eq92) & is_ascii) != 0; +} + +**/ + +SIMDJSON_CONSTEXPR_LAMBDA simdjson_inline bool +simple_needs_escaping(std::string_view v) { + for (char c : v) { + // a table lookup is faster than a series of comparisons + if(json_quotable_character[static_cast(c)]) { + return true; + } + } + return false; +} + +#if SIMDJSON_EXPERIMENTAL_HAS_NEON +simdjson_inline bool fast_needs_escaping(std::string_view view) { + if (view.size() < 16) { + return simple_needs_escaping(view); + } + size_t i = 0; + uint8x16_t running = vdupq_n_u8(0); + uint8x16_t v34 = vdupq_n_u8(34); + uint8x16_t v92 = vdupq_n_u8(92); + + for (; i + 15 < view.size(); i += 16) { + uint8x16_t word = vld1q_u8((const uint8_t *)view.data() + i); + running = vorrq_u8(running, vceqq_u8(word, v34)); + running = vorrq_u8(running, vceqq_u8(word, v92)); + running = vorrq_u8(running, vcltq_u8(word, vdupq_n_u8(32))); + } + if (i < view.size()) { + uint8x16_t word = + vld1q_u8((const uint8_t *)view.data() + view.length() - 16); + running = vorrq_u8(running, vceqq_u8(word, v34)); + running = vorrq_u8(running, vceqq_u8(word, v92)); + running = vorrq_u8(running, vcltq_u8(word, vdupq_n_u8(32))); + } + return vmaxvq_u32(vreinterpretq_u32_u8(running)) != 0; +} +#elif SIMDJSON_EXPERIMENTAL_HAS_SSE2 +simdjson_inline bool fast_needs_escaping(std::string_view view) { + if (view.size() < 16) { + return simple_needs_escaping(view); + } + size_t i = 0; + __m128i running = _mm_setzero_si128(); + for (; i + 15 < view.size(); i += 16) { + + __m128i word = _mm_loadu_si128(reinterpret_cast(view.data() + i)); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(34))); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(92))); + running = _mm_or_si128( + running, _mm_cmpeq_epi8(_mm_subs_epu8(word, _mm_set1_epi8(31)), + _mm_setzero_si128())); + } + if (i < view.size()) { + __m128i word = + _mm_loadu_si128(reinterpret_cast(view.data() + view.length() - 16)); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(34))); + running = _mm_or_si128(running, _mm_cmpeq_epi8(word, _mm_set1_epi8(92))); + running = _mm_or_si128( + running, _mm_cmpeq_epi8(_mm_subs_epu8(word, _mm_set1_epi8(31)), + _mm_setzero_si128())); + } + return _mm_movemask_epi8(running) != 0; +} +#else +simdjson_inline bool fast_needs_escaping(std::string_view view) { + return simple_needs_escaping(view); +} +#endif + + +SIMDJSON_CONSTEXPR_LAMBDA inline size_t +find_next_json_quotable_character(const std::string_view view, + size_t location) noexcept { + + for (auto pos = view.begin() + location; pos != view.end(); ++pos) { + if (json_quotable_character[static_cast(*pos)]) { + return pos - view.begin(); + } + } + return size_t(view.size()); +} + +SIMDJSON_CONSTEXPR_LAMBDA static std::string_view control_chars[] = { + "\\x0000", "\\x0001", "\\x0002", "\\x0003", "\\x0004", "\\x0005", "\\x0006", + "\\x0007", "\\x0008", "\\t", "\\n", "\\x000b", "\\f", "\\r", + "\\x000e", "\\x000f", "\\x0010", "\\x0011", "\\x0012", "\\x0013", "\\x0014", + "\\x0015", "\\x0016", "\\x0017", "\\x0018", "\\x0019", "\\x001a", "\\x001b", + "\\x001c", "\\x001d", "\\x001e", "\\x001f"}; + +SIMDJSON_CONSTEXPR_LAMBDA void escape_json_char(char c, char *&out) { + if (c == '"') { + memcpy(out, "\\\"", 2); + out += 2; + } else if (c == '\\') { + memcpy(out, "\\\\", 2); + out += 2; + } else { + std::string_view v = control_chars[uint8_t(c)]; + memcpy(out, v.data(), v.size()); + out += v.size(); + } +} + +inline size_t write_string_escaped(const std::string_view input, char *out) { + size_t mysize = input.size(); + if (!fast_needs_escaping(input)) { // fast path! + memcpy(out, input.data(), input.size()); + return input.size(); + } + const char *const initout = out; + size_t location = find_next_json_quotable_character(input, 0); + memcpy(out, input.data(), location); + out += location; + escape_json_char(input[location], out); + location += 1; + while (location < mysize) { + size_t newlocation = find_next_json_quotable_character(input, location); + memcpy(out, input.data() + location, newlocation - location); + out += newlocation - location; + location = newlocation; + if (location == mysize) { + break; + } + escape_json_char(input[location], out); + location += 1; + } + return out - initout; +} + +#if SIMDJSON_CONSTEVAL +// unoptimized, meant for compile-time execution +consteval std::string consteval_to_quoted_escaped(std::string_view input) { + std::string out = "\""; + for (char c : input) { + if (json_quotable_character[uint8_t(c)]) { + if (c == '"') { + out.append("\\\""); + } else if (c == '\\') { + out.append("\\\\"); + } else { + std::string_view v = control_chars[uint8_t(c)]; + out.append(v); + } + } else { + out.push_back(c); + } + } + out.push_back('"'); + return out; +} +#endif // SIMDJSON_CONSTEVAL + +simdjson_inline string_builder::string_builder(size_t initial_capacity) + : buffer(new(std::nothrow) char[initial_capacity]), position(0), + capacity(buffer.get() != nullptr ? initial_capacity : 0), + is_valid(buffer.get() != nullptr) {} + +simdjson_inline bool string_builder::capacity_check(size_t upcoming_bytes) { + // We use the convention that when is_valid is false, then the capacity and + // the position are 0. + // Most of the time, this function will return true. + if (simdjson_likely(upcoming_bytes <= capacity - position)) { + return true; + } + // check for overflow, most of the time there is no overflow + if (simdjson_likely(position + upcoming_bytes < position)) { + return false; + } + // We will rarely get here. + grow_buffer((std::max)(capacity * 2, position + upcoming_bytes)); + // If the buffer allocation failed, we set is_valid to false. + return is_valid; +} + +simdjson_inline void string_builder::grow_buffer(size_t desired_capacity) { + if (!is_valid) { + return; + } + std::unique_ptr new_buffer(new (std::nothrow) char[desired_capacity]); + if (new_buffer.get() == nullptr) { + set_valid(false); + return; + } + std::memcpy(new_buffer.get(), buffer.get(), position); + buffer.swap(new_buffer); + capacity = desired_capacity; +} + +simdjson_inline void string_builder::set_valid(bool valid) noexcept { + if (!valid) { + is_valid = false; + capacity = 0; + position = 0; + buffer.reset(); + } else { + is_valid = true; + } +} + +simdjson_inline size_t string_builder::size() const noexcept { + return position; +} + +simdjson_inline void string_builder::append(char c) noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = c; + } +} + +simdjson_inline void string_builder::append_null() noexcept { + constexpr char null_literal[] = "null"; + constexpr size_t null_len = sizeof(null_literal) - 1; + if (capacity_check(null_len)) { + std::memcpy(buffer.get() + position, null_literal, null_len); + position += null_len; + } +} + +simdjson_inline void string_builder::clear() noexcept { + position = 0; + // if it was invalid, we should try to repair it + if (!is_valid) { + capacity = 0; + buffer.reset(); + is_valid = true; + } +} + +namespace internal { + +// We could specialize further for 32-bit integers. +int int_log2(uint32_t x) { return (63 - leading_zeroes(x | 1)); } + +int fast_digit_count(uint32_t x) { + static uint64_t table[] = { + 4294967296, 8589934582, 8589934582, 8589934582, 12884901788, + 12884901788, 12884901788, 17179868184, 17179868184, 17179868184, + 21474826480, 21474826480, 21474826480, 21474826480, 25769703776, + 25769703776, 25769703776, 30063771072, 30063771072, 30063771072, + 34349738368, 34349738368, 34349738368, 34349738368, 38554705664, + 38554705664, 38554705664, 41949672960, 41949672960, 41949672960, + 42949672960, 42949672960}; + return uint32_t((x + table[int_log2(x)]) >> 32); +} + +int int_log2(uint64_t x) { return 63 - leading_zeroes(x | 1); } + +int fast_digit_count(uint64_t x) { + static uint64_t table[] = {9, + 99, + 999, + 9999, + 99999, + 999999, + 9999999, + 99999999, + 999999999, + 9999999999, + 99999999999, + 999999999999, + 9999999999999, + 99999999999999, + 999999999999999ULL, + 9999999999999999ULL, + 99999999999999999ULL, + 999999999999999999ULL, + 9999999999999999999ULL}; + int y = (19 * int_log2(x) >> 6); + y += x > table[y]; + return y + 1; +} + +template ::value>::type> +simdjson_inline size_t digit_count(number_type v) noexcept { + static_assert(sizeof(number_type) == 8 || sizeof(number_type) == 4 || + sizeof(number_type) == 2 || sizeof(number_type) == 1, + "We only support 8-bit, 16-bit, 32-bit and 64-bit numbers"); + return fast_digit_count(v); +} +static const char decimal_table[200] = { + 0x30, 0x30, 0x30, 0x31, 0x30, 0x32, 0x30, 0x33, 0x30, 0x34, 0x30, 0x35, + 0x30, 0x36, 0x30, 0x37, 0x30, 0x38, 0x30, 0x39, 0x31, 0x30, 0x31, 0x31, + 0x31, 0x32, 0x31, 0x33, 0x31, 0x34, 0x31, 0x35, 0x31, 0x36, 0x31, 0x37, + 0x31, 0x38, 0x31, 0x39, 0x32, 0x30, 0x32, 0x31, 0x32, 0x32, 0x32, 0x33, + 0x32, 0x34, 0x32, 0x35, 0x32, 0x36, 0x32, 0x37, 0x32, 0x38, 0x32, 0x39, + 0x33, 0x30, 0x33, 0x31, 0x33, 0x32, 0x33, 0x33, 0x33, 0x34, 0x33, 0x35, + 0x33, 0x36, 0x33, 0x37, 0x33, 0x38, 0x33, 0x39, 0x34, 0x30, 0x34, 0x31, + 0x34, 0x32, 0x34, 0x33, 0x34, 0x34, 0x34, 0x35, 0x34, 0x36, 0x34, 0x37, + 0x34, 0x38, 0x34, 0x39, 0x35, 0x30, 0x35, 0x31, 0x35, 0x32, 0x35, 0x33, + 0x35, 0x34, 0x35, 0x35, 0x35, 0x36, 0x35, 0x37, 0x35, 0x38, 0x35, 0x39, + 0x36, 0x30, 0x36, 0x31, 0x36, 0x32, 0x36, 0x33, 0x36, 0x34, 0x36, 0x35, + 0x36, 0x36, 0x36, 0x37, 0x36, 0x38, 0x36, 0x39, 0x37, 0x30, 0x37, 0x31, + 0x37, 0x32, 0x37, 0x33, 0x37, 0x34, 0x37, 0x35, 0x37, 0x36, 0x37, 0x37, + 0x37, 0x38, 0x37, 0x39, 0x38, 0x30, 0x38, 0x31, 0x38, 0x32, 0x38, 0x33, + 0x38, 0x34, 0x38, 0x35, 0x38, 0x36, 0x38, 0x37, 0x38, 0x38, 0x38, 0x39, + 0x39, 0x30, 0x39, 0x31, 0x39, 0x32, 0x39, 0x33, 0x39, 0x34, 0x39, 0x35, + 0x39, 0x36, 0x39, 0x37, 0x39, 0x38, 0x39, 0x39, +}; +} // namespace internal + +template +simdjson_inline void string_builder::append(number_type v) noexcept { + static_assert(std::is_same::value || + std::is_integral::value || + std::is_floating_point::value, + "Unsupported number type"); + // If C++17 is available, we can 'if constexpr' here. + SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + if (v) { + constexpr char true_literal[] = "true"; + constexpr size_t true_len = sizeof(true_literal) - 1; + if (capacity_check(true_len)) { + std::memcpy(buffer.get() + position, true_literal, true_len); + position += true_len; + } + } else { + constexpr char false_literal[] = "false"; + constexpr size_t false_len = sizeof(false_literal) - 1; + if (capacity_check(false_len)) { + std::memcpy(buffer.get() + position, false_literal, false_len); + position += false_len; + } + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_unsigned::value) { + constexpr size_t max_number_size = 20; + if (capacity_check(max_number_size)) { + using unsigned_type = typename std::make_unsigned::type; + unsigned_type pv = static_cast(v); + size_t dc = internal::digit_count(pv); + char *write_pointer = buffer.get() + position + dc - 1; + while (pv >= 100) { + memcpy(write_pointer - 1, &internal::decimal_table[(pv % 100)*2], 2); + write_pointer -= 2; + pv /= 100; + } + if (pv >= 10) { + *write_pointer-- = char('0' + (pv % 10)); + pv /= 10; + } + *write_pointer = char('0' + pv); + position += dc; + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_integral::value) { + constexpr size_t max_number_size = 20; + if (capacity_check(max_number_size)) { + using unsigned_type = typename std::make_unsigned::type; + bool negative = v < 0; + unsigned_type pv = static_cast(v); + if (negative) { + pv = 0 - pv; // the 0 is for Microsoft + } + size_t dc = internal::digit_count(pv); + if (negative) { + buffer.get()[position++] = '-'; + } + char *write_pointer = buffer.get() + position + dc - 1; + while (pv >= 100) { + memcpy(write_pointer - 1, &internal::decimal_table[(pv % 100)*2], 2); + write_pointer -= 2; + pv /= 100; + } + if (pv >= 10) { + *write_pointer-- = char('0' + (pv % 10)); + pv /= 10; + } + *write_pointer = char('0' + pv); + position += dc; + } + } + else SIMDJSON_IF_CONSTEXPR(std::is_floating_point::value) { + constexpr size_t max_number_size = 24; + if (capacity_check(max_number_size)) { + // We could specialize for float. + char *end = simdjson::internal::to_chars(buffer.get() + position, nullptr, + double(v)); + position = end - buffer.get(); + } + } +} + +simdjson_inline void +string_builder::escape_and_append(std::string_view input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(6 * input.size())) { + position += write_string_escaped(input, buffer.get() + position); + } +} + +simdjson_inline void +string_builder::escape_and_append_with_quotes(std::string_view input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(2 + 6 * input.size())) { + buffer.get()[position++] = '"'; + position += write_string_escaped(input, buffer.get() + position); + buffer.get()[position++] = '"'; + } +} + +simdjson_inline void +string_builder::escape_and_append_with_quotes(char input) noexcept { + // escaping might turn a control character into \x00xx so 6 characters. + if (capacity_check(2 + 6 * 1)) { + buffer.get()[position++] = '"'; + std::string_view cinput(&input, 1); + position += write_string_escaped(cinput, buffer.get() + position); + buffer.get()[position++] = '"'; + } +} + +simdjson_inline void string_builder::escape_and_append_with_quotes(const char* input) noexcept { + std::string_view cinput(input); + escape_and_append_with_quotes(cinput); +} + +simdjson_inline void string_builder::append_raw(const char *c) noexcept { + size_t len = std::strlen(c); + append_raw(c, len); +} + +simdjson_inline void +string_builder::append_raw(std::string_view input) noexcept { + if (capacity_check(input.size())) { + std::memcpy(buffer.get() + position, input.data(), input.size()); + position += input.size(); + } +} + +simdjson_inline void string_builder::append_raw(const char *str, + size_t len) noexcept { + if (capacity_check(len)) { + std::memcpy(buffer.get() + position, str, len); + position += len; + } +} + +#if SIMDJSON_EXCEPTIONS +simdjson_inline string_builder::operator std::string() const noexcept(false) { + return std::string(std::string_view()); +} + +simdjson_inline string_builder::operator std::string_view() const + noexcept(false) { + return view(); +} +#endif + +simdjson_inline simdjson_result +string_builder::view() const noexcept { + if (!is_valid) { + return simdjson::OUT_OF_CAPACITY; + } + return std::string_view(buffer.get(), position); +} + +simdjson_inline simdjson_result string_builder::c_str() noexcept { + if (capacity_check(1)) { + buffer.get()[position] = '\0'; + return buffer.get(); + } + return simdjson::OUT_OF_CAPACITY; +} + +simdjson_inline bool string_builder::validate_unicode() const noexcept { + return simdjson::validate_utf8(buffer.get(), position); +} + +simdjson_inline void string_builder::start_object() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '{'; + } +} + + +simdjson_inline void string_builder::end_object() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '}'; + } +} + + +simdjson_inline void string_builder::start_array() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = '['; + } +} + + +simdjson_inline void string_builder::end_array() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ']'; + } +} + + +simdjson_inline void string_builder::append_comma() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ','; + } +} + + +simdjson_inline void string_builder::append_colon() noexcept { + if (capacity_check(1)) { + buffer.get()[position++] = ':'; + } +} + +template +simdjson_inline void string_builder::append_key_value(key_type key, value_type value) noexcept { + static_assert( + std::is_arithmetic::value || + std::is_same::value || + std::is_same::value || + std::is_convertible::value || + std::is_same::value, + "Unsupported value type"); + static_assert( + std::is_same::value || + std::is_convertible::value, + "Unsupported key type"); + escape_and_append_with_quotes(key); + append_colon(); + SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + append_null(); + } else SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + escape_and_append_with_quotes(value); + } else SIMDJSON_IF_CONSTEXPR(std::is_convertible::value) { + escape_and_append_with_quotes(value); + } else SIMDJSON_IF_CONSTEXPR(std::is_same::value) { + escape_and_append_with_quotes(value); + } else { + append(value); + } +} + +} // namespace builder +} // namespace lasx +} // namespace simdjson + +#endif // SIMDJSON_GENERIC_STRING_BUILDER_INL_H +/* end file simdjson/generic/ondemand/json_string_builder-inl.h for lasx */ +/* including simdjson/generic/ondemand/json_builder.h for lasx: #include "simdjson/generic/ondemand/json_builder.h" */ +/* begin file simdjson/generic/ondemand/json_builder.h for lasx */ +/** + * This file is part of the builder API. It is temporarily in the ondemand directory + * but we will move it to a builder directory later. + */ +#ifndef SIMDJSON_GENERIC_BUILDER_H + +/* amalgamation skipped (editor-only): #ifndef SIMDJSON_CONDITIONAL_INCLUDE */ +/* amalgamation skipped (editor-only): #define SIMDJSON_GENERIC_STRING_BUILDER_H */ +/* amalgamation skipped (editor-only): #include "simdjson/generic/builder/json_string_builder.h" */ +/* amalgamation skipped (editor-only): #include "simdjson/concepts.h" */ +/* amalgamation skipped (editor-only): #endif // SIMDJSON_CONDITIONAL_INCLUDE */ +#if SIMDJSON_STATIC_REFLECTION + +#include +#include +#include +#include +#include +#include +// #include // for std::define_static_string - header not available yet + +namespace simdjson { +namespace lasx { +namespace builder { + +// Concept that checks if a type is a container but not a string (because +// strings handling must be handled differently) +template +concept container_but_not_string = + requires(T a) { + { a.size() } -> std::convertible_to; + { + a[std::declval()] + }; // check if elements are accessible for the subscript operator + } && !std::is_same_v && + !std::is_same_v && !std::is_same_v; + +template + requires(container_but_not_string) +constexpr void atom(string_builder &b, const T &t) { + if (t.size() == 0) { + b.append_raw("[]"); + return; + } + b.append('['); + atom(b, t[0]); + for (size_t i = 1; i < t.size(); ++i) { + b.append(','); + atom(b, t[i]); + } + b.append(']'); +} + +template + requires(std::is_same_v || + std::is_same_v || + std::is_same_v || + std::is_same_v) +constexpr void atom(string_builder &b, const T &t) { + b.escape_and_append_with_quotes(t); +} + +template +constexpr void atom(string_builder &b, const T &m) { + if (m.empty()) { + b.append_raw("{}"); + return; + } + b.append('{'); + bool first = true; + for (const auto& [key, value] : m) { + if (!first) { + b.append(','); + } + first = false; + // Keys must be convertible to string_view per the concept + b.escape_and_append_with_quotes(key); + b.append(':'); + atom(b, value); + } + b.append('}'); +} + + +template::value && !std::is_same_v>::type> +constexpr void atom(string_builder &b, const number_type t) { + b.append(t); +} +#if SIMDJSON_CONSTEVAL +consteval std::string consteval_to_quoted_escaped(std::string_view input); +#endif + +template + requires(std::is_class_v && !container_but_not_string && + !concepts::string_view_keyed_map && + !std::is_same_v && + !std::is_same_v) +constexpr void atom(string_builder &b, const T &t) { + int i = 0; + b.append('{'); + [:expand(std::meta::nonstatic_data_members_of(^^T, std::meta::access_context::unchecked())):] >> [&]() { + if (i != 0) + b.append(','); + constexpr auto key = std::define_static_string(consteval_to_quoted_escaped(std::meta::identifier_of(dm))); + b.append_raw(key); + b.append(':'); + atom(b, t.[:dm:]); + i++; + }; + b.append('}'); +} + +// works for struct +template void append(string_builder &b, const Z &z) { + int i = 0; + b.append('{'); + [:expand(std::meta::nonstatic_data_members_of(^^Z, std::meta::access_context::unchecked())):] >> [&]() { + if (i != 0) + b.append(','); + constexpr auto key = std::define_static_string(consteval_to_quoted_escaped(std::meta::identifier_of(dm))); + b.append_raw(key); + b.append(':'); + atom(b, z.[:dm:]); + i++; + }; + b.append('}'); +} + +// works for container +template + requires(container_but_not_string) +void append(string_builder &b, const Z &z) { + if (z.size() == 0) { + b.append_raw("[]"); + return; + } + b.append('['); + atom(b, z[0]); + for (size_t i = 1; i < z.size(); ++i) { + b.append(','); + atom(b, z[i]); + } + b.append(']'); +} + +template +simdjson_result to_json_string(const Z &z) { + string_builder b; + append(b, z); + std::string_view s; + if(auto e = b.view().get(s); e) { return e; } + return std::string(s); +} + +template +simdjson_error to_json(const Z &z, std::string &s) { + string_builder b; + append(b, z); + std::string_view view; + if(auto e = b.view().get(view); e) { return e; } + s.assign(view); + return SUCCESS; +} +} // namespace json_builder +} // namespace lasx +} // namespace simdjson +#endif // SIMDJSON_STATIC_REFLECTION + +#endif +/* end file simdjson/generic/ondemand/json_builder.h for lasx */ /* end file simdjson/generic/ondemand/amalgamated.h for lasx */ /* including simdjson/lasx/end.h: #include "simdjson/lasx/end.h" */ @@ -123526,6 +135111,10 @@ namespace simdjson { * @copydoc simdjson::builtin::ondemand */ namespace ondemand = builtin::ondemand; + /** + * @copydoc simdjson::builtin::builder + */ + namespace builder = builtin::builder; } // namespace simdjson #endif // SIMDJSON_ONDEMAND_H diff --git a/singleheader/singleheader.zip b/singleheader/singleheader.zip index a34d0971d721b338432a033676ae5ed765bbae54..f6c110e28bb9907b1978ed509b48ee7324f255e2 100644 GIT binary patch delta 4764 zcmeI0eRNah9mh?3^U|bEZrY>`=}Vr5CQV|R+(MwVDKsrbEQL~}1%a|QG`DSPnuH{+ zrYPcW)@IKn49 zYRScdIIk7suJLdrlyqN-Mh&wUZB;P;ViVJm<2E-dX$9G}M~Epn9!a?cuh$CepiEr? 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It is not clear if it is needed. -///////////// -simdjson_warn_unused size_t write_string_escaped(const std::string_view input, char *out) noexcept { - // We are making the following assumption: most strings will either be very short or they will not - // need escaping. - size_t i = 0; - size_t pos = 0; - /*if(input.size() >= escaping::BYTES_PROCESSED) { - auto vec_processing = [input,out]() -> size_t { - size_t index = 0; - size_t position = 0; - for(;input.size() - index >= escaping::BYTES_PROCESSED; index += escaping::BYTES_PROCESSED) { - escaping vinput = escaping::copy_and_find(reinterpret_cast(input.data()) + index, reinterpret_cast(out) + position); - if(vinput.has_escape()) { - return index + vinput.escape_index(); // We have a character that needs escaping - } - position += escaping::BYTES_PROCESSED; - } - if(index == input.size()) { return input.size(); } - // We virtually backtrack so we can load a full vector register - index = input.size() - escaping::BYTES_PROCESSED; - position = index; - escaping vinput = escaping::copy_and_find(reinterpret_cast(input.data()) + index, reinterpret_cast(out) + position); - if(vinput.has_escape()) { - return index + vinput.escape_index(); // We have a character that needs escaping - } - return input.size(); - }; - i = vec_processing(); - pos = i; - if(i == input.size()) { return pos; } - // Here we only continue if there was a character that needed escaping. - }*/ - static std::string_view control_chars[] = { - "\\x0000", "\\x0001", "\\x0002", "\\x0003", "\\x0004", "\\x0005", "\\x0006", - "\\x0007", "\\x0008", "\\t", "\\n", "\\x000b", "\\f", "\\r", - "\\x000e", "\\x000f", "\\x0010", "\\x0011", "\\x0012", "\\x0013", "\\x0014", - "\\x0015", "\\x0016", "\\x0017", "\\x0018", "\\x0019", "\\x001a", "\\x001b", - "\\x001c", "\\x001d", "\\x001e", "\\x001f"}; - static std::array json_quotable_character = - []() SIMDJSON_CONSTEXPR_LAMBDA { - std::array result{}; - for (int index = 0; index < 32; index++) { - result[index] = 1; - } - for (int index : {'"', '\\'}) { - result[index] = 1; - } - return result; - }(); - // The rest could possibly be vectorized, but consider that we expect most strings - // to be short or not to require escaping. - for (; i < input.size(); i++) { - uint8_t c = static_cast(input[i]); - if(json_quotable_character[c]) { - switch (c) { - case '"': - out[pos++] = '\\'; - out[pos++] = '"'; - break; - case '\\': - out[pos++] = '\\'; - out[pos++] = '\\'; - break; - case '\b': - out[pos++] = '\\'; - out[pos++] = 'b'; - break; - case '\f': - out[pos++] = '\\'; - out[pos++] = 'f'; - break; - case '\n': - out[pos++] = '\\'; - out[pos++] = 'n'; - break; - case '\r': - out[pos++] = '\\'; - out[pos++] = 'r'; - break; - case '\t': - out[pos++] = '\\'; - out[pos++] = 't'; - break; - default: - control_chars[c].copy(out + pos, 6); - pos += 6; - } - } else { - out[pos++] = c; - } - } - return pos; -} - - - } // namespace stringparsing } // unnamed namespace diff --git a/src/haswell.cpp b/src/haswell.cpp index 1eac5f91d..d369a11fa 100644 --- a/src/haswell.cpp +++ b/src/haswell.cpp @@ -162,10 +162,6 @@ simdjson_warn_unused error_code dom_parser_implementation::parse(const uint8_t * return stage2(_doc); } -simdjson_warn_unused size_t implementation::write_string_escaped(const std::string_view input, char *out) const noexcept { - return haswell::stringparsing::write_string_escaped(input, out); -} - } // namespace SIMDJSON_IMPLEMENTATION } // namespace simdjson diff --git a/src/icelake.cpp b/src/icelake.cpp index 2febab916..c057d4278 100644 --- a/src/icelake.cpp +++ b/src/icelake.cpp @@ -208,10 +208,6 @@ simdjson_warn_unused error_code dom_parser_implementation::parse(const uint8_t * return stage2(_doc); } -simdjson_warn_unused size_t implementation::write_string_escaped(const std::string_view input, char *out) const noexcept { - return icelake::stringparsing::write_string_escaped(input, out); -} - } // namespace icelake } // namespace simdjson diff --git a/src/implementation.cpp b/src/implementation.cpp index 32d1f43de..3dba4b605 100644 --- a/src/implementation.cpp +++ b/src/implementation.cpp @@ -186,9 +186,6 @@ public: simdjson_warn_unused bool validate_utf8(const char * buf, size_t len) const noexcept final override { return set_best()->validate_utf8(buf, len); } - simdjson_warn_unused size_t write_string_escaped(const std::string_view input, char *out) const noexcept final { - return set_best()->write_string_escaped(input, out); - } simdjson_inline detect_best_supported_implementation_on_first_use() noexcept : implementation("best_supported_detector", "Detects the best supported implementation and sets it", 0) {} private: const implementation *set_best() const noexcept; @@ -239,9 +236,6 @@ public: simdjson_warn_unused error_code minify(const uint8_t *, size_t, uint8_t *, size_t &) const noexcept final override { return UNSUPPORTED_ARCHITECTURE; } - simdjson_warn_unused size_t write_string_escaped(const std::string_view, char *) const noexcept final override { - return 0; // TODO: Evaluate whether this is the right thing to do for unsupported architecture. - } simdjson_warn_unused bool validate_utf8(const char *, size_t) const noexcept final override { return false; // Just refuse to validate. Given that we have a fallback implementation // it seems unlikely that unsupported_implementation will ever be used. If it is used, @@ -325,9 +319,6 @@ simdjson_warn_unused error_code minify(const char *buf, size_t len, char *dst, s simdjson_warn_unused bool validate_utf8(const char *buf, size_t len) noexcept { return get_active_implementation()->validate_utf8(buf, len); } -simdjson_warn_unused size_t write_string_escaped(const std::string_view input, char *out) noexcept { - return get_active_implementation()->write_string_escaped(input, out); -} const implementation * builtin_implementation() { static const implementation * builtin_impl = get_available_implementations()[SIMDJSON_STRINGIFY(SIMDJSON_BUILTIN_IMPLEMENTATION)]; assert(builtin_impl); diff --git a/src/lasx.cpp b/src/lasx.cpp index b77d87694..09b945f59 100644 --- a/src/lasx.cpp +++ b/src/lasx.cpp @@ -125,10 +125,6 @@ simdjson_warn_unused error_code dom_parser_implementation::parse(const uint8_t * return stage2(_doc); } -simdjson_warn_unused size_t implementation::write_string_escaped(const std::string_view input, char *out) const noexcept { - return lasx::stringparsing::write_string_escaped(input, out); -} - } // namespace lasx } // namespace simdjson diff --git a/src/lsx.cpp b/src/lsx.cpp index e283faf79..e68aada87 100644 --- a/src/lsx.cpp +++ b/src/lsx.cpp @@ -129,10 +129,6 @@ simdjson_warn_unused error_code dom_parser_implementation::parse(const uint8_t * return stage2(_doc); } -simdjson_warn_unused size_t implementation::write_string_escaped(const std::string_view input, char *out) const noexcept { - return lsx::stringparsing::write_string_escaped(input, out); -} - } // namespace lsx } // namespace simdjson diff --git a/src/ppc64.cpp b/src/ppc64.cpp index a54f0f231..f7dee707e 100644 --- a/src/ppc64.cpp +++ b/src/ppc64.cpp @@ -135,10 +135,6 @@ simdjson_warn_unused error_code dom_parser_implementation::parse(const uint8_t * return stage2(_doc); } -simdjson_warn_unused size_t implementation::write_string_escaped(const std::string_view input, char *out) const noexcept { - return ppc64::stringparsing::write_string_escaped(input, out); -} - } // namespace ppc64 } // namespace simdjson diff --git a/src/westmere.cpp b/src/westmere.cpp index 2acfaecac..7157ac491 100644 --- a/src/westmere.cpp +++ b/src/westmere.cpp @@ -166,11 +166,6 @@ simdjson_warn_unused error_code dom_parser_implementation::parse(const uint8_t * if (error) { return error; } return stage2(_doc); } - -simdjson_warn_unused size_t implementation::write_string_escaped(const std::string_view input, char *out) const noexcept { - return westmere::stringparsing::write_string_escaped(input, out); -} - } // namespace westmere } // namespace simdjson