#ifndef SIMDJSON_RVV_VLS_STRINGPARSING_DEFS_H #define SIMDJSON_RVV_VLS_STRINGPARSING_DEFS_H #ifndef SIMDJSON_CONDITIONAL_INCLUDE #include "simdjson/rvv-vls/base.h" #endif // SIMDJSON_CONDITIONAL_INCLUDE namespace simdjson { namespace rvv_vls { namespace { using namespace simd; // Holds backslashes and quotes locations. struct backslash_and_quote { public: static constexpr uint64_t BYTES_PROCESSED = sizeof(simd8); simdjson_inline backslash_and_quote copy_and_find(const uint8_t *src, uint8_t *dst); simdjson_inline bool has_quote_first() { return ((bs_bits - 1) & quote_bits) != 0; } simdjson_inline bool has_backslash() { return ((quote_bits - 1) & bs_bits) != 0; } simdjson_inline int quote_index() { return trailing_zeroes(quote_bits); } simdjson_inline int backslash_index() { return trailing_zeroes(bs_bits); } uint64_t bs_bits; uint64_t quote_bits; }; // struct backslash_and_quote simdjson_inline backslash_and_quote backslash_and_quote::copy_and_find(const uint8_t *src, uint8_t *dst) { static_assert(SIMDJSON_PADDING >= (BYTES_PROCESSED - 1), "backslash and quote finder must process fewer than SIMDJSON_PADDING bytes"); simd8 v(src); v.store(dst); return { (v == '\\').to_bitmask(), (v == '"').to_bitmask() }; } struct escaping { static constexpr uint64_t BYTES_PROCESSED = sizeof(simd8); 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); return { ((v == '"') | (v == '\\') | (v == 32)).to_bitmask() }; } } // unnamed namespace } // namespace rvv_vls } // namespace simdjson #endif // SIMDJSON_RVV_VLS_STRINGPARSING_DEFS_H