420 lines
14 KiB
C++
420 lines
14 KiB
C++
#include "msgpack.h"
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namespace msgpack {
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result<body_info> get_body_info(const uint8_t *p, int size) {
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if (size < 1) return std::unexpected(error_code::empty);
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uint8_t b = p[0];
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using namespace format;
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if (is_positive_fixint(b)) return body_info{1, 0};
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if (is_negative_fixint(b)) return body_info{1, 0};
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if (is_fixmap(b)) return body_info{1, 0};
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if (is_fixarray(b)) return body_info{1, 0};
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if (is_fixstr(b)) return body_info{1, static_cast<uint32_t>(b & 0x1F)};
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switch (b) {
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case NIL: case FALSE: case TRUE:
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return body_info{1, 0};
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case NEVER_USED:
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return std::unexpected(error_code::invalid);
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case BIN8: { auto n = body_number<uint8_t>(p, size); if (!n) return std::unexpected(n.error()); return body_info{1+1, *n}; }
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case BIN16: { auto n = body_number<uint16_t>(p, size); if (!n) return std::unexpected(n.error()); return body_info{1+2, *n}; }
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case BIN32: { auto n = body_number<uint32_t>(p, size); if (!n) return std::unexpected(n.error()); return body_info{1+4, *n}; }
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case EXT8: { auto n = body_number<uint8_t>(p, size); if (!n) return std::unexpected(n.error()); return body_info{1+1+1, *n}; }
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case EXT16: { auto n = body_number<uint16_t>(p, size); if (!n) return std::unexpected(n.error()); return body_info{1+2+1, *n}; }
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case EXT32: { auto n = body_number<uint32_t>(p, size); if (!n) return std::unexpected(n.error()); return body_info{1+4+1, *n}; }
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case FLOAT32: return body_info{1, 4};
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case FLOAT64: return body_info{1, 8};
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case UINT8: return body_info{1, 1};
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case UINT16: return body_info{1, 2};
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case UINT32: return body_info{1, 4};
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case UINT64: return body_info{1, 8};
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case INT8: return body_info{1, 1};
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case INT16: return body_info{1, 2};
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case INT32: return body_info{1, 4};
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case INT64: return body_info{1, 8};
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case FIXEXT1: return body_info{1+1, 1};
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case FIXEXT2: return body_info{1+1, 2};
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case FIXEXT4: return body_info{1+1, 4};
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case FIXEXT8: return body_info{1+1, 8};
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case FIXEXT16: return body_info{1+1, 16};
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case STR8: { auto n = body_number<uint8_t>(p, size); if (!n) return std::unexpected(n.error()); return body_info{1+1, *n}; }
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case STR16: { auto n = body_number<uint16_t>(p, size); if (!n) return std::unexpected(n.error()); return body_info{1+2, *n}; }
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case STR32: { auto n = body_number<uint32_t>(p, size); if (!n) return std::unexpected(n.error()); return body_info{1+4, *n}; }
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case ARRAY16: case ARRAY32:
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case MAP16: case MAP32:
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return body_info{1 + (b == ARRAY16 || b == MAP16 ? 2 : 4), 0};
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default:
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return std::unexpected(error_code::invalid);
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}
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}
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packer::pack_result packer::pack_nil() {
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m_buf.push_back(format::NIL);
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return *this;
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}
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packer::pack_result packer::pack_bool(bool v) {
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m_buf.push_back(v ? format::TRUE : format::FALSE);
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return *this;
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}
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packer::pack_result packer::pack_uint32_fixed(uint32_t n) {
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m_buf.push_back(format::UINT32);
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push_big_endian(n);
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return *this;
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}
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packer::pack_result packer::pack_float(float n) {
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m_buf.push_back(format::FLOAT32);
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push_big_endian(n);
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return *this;
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}
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packer::pack_result packer::pack_double(double n) {
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m_buf.push_back(format::FLOAT64);
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push_big_endian(n);
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return *this;
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}
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packer::pack_result packer::pack_str(const char *s) {
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return pack_str(std::string_view(s));
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}
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packer::pack_result packer::pack_array(size_t n) {
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if (n <= 15) {
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m_buf.push_back(format::FIXARRAY_MIN | static_cast<uint8_t>(n));
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} else if (n <= std::numeric_limits<uint16_t>::max()) {
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m_buf.push_back(format::ARRAY16);
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push_big_endian(static_cast<uint16_t>(n));
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} else if (n <= std::numeric_limits<uint32_t>::max()) {
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m_buf.push_back(format::ARRAY32);
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push_big_endian(static_cast<uint32_t>(n));
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} else {
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return std::unexpected(error_code::overflow);
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}
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return *this;
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}
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packer::pack_result packer::pack_map(size_t n) {
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if (n <= 15) {
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m_buf.push_back(format::FIXMAP_MIN | static_cast<uint8_t>(n));
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} else if (n <= std::numeric_limits<uint16_t>::max()) {
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m_buf.push_back(format::MAP16);
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push_big_endian(static_cast<uint16_t>(n));
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} else if (n <= std::numeric_limits<uint32_t>::max()) {
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m_buf.push_back(format::MAP32);
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push_big_endian(static_cast<uint32_t>(n));
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} else {
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return std::unexpected(error_code::overflow);
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}
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return *this;
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}
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packer::pack_result packer::pack_ext16_header(char type, uint16_t len) {
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m_buf.push_back(format::EXT16);
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push_big_endian(len);
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m_buf.push_back(static_cast<uint8_t>(type));
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return *this;
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}
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packer::pack_result packer::pack_bin16_header(uint16_t len) {
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m_buf.push_back(format::BIN16);
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push_big_endian(len);
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return *this;
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}
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packer::pack_result packer::pack(bool v) { return pack_bool(v); }
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packer::pack_result packer::pack(float v) { return pack_float(v); }
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packer::pack_result packer::pack(double v) { return pack_double(v); }
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packer::pack_result packer::pack(const char *v) { return pack_str(v); }
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packer::pack_result packer::pack(std::string_view v) { return pack_str(v); }
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packer::pack_result packer::pack(const std::string &v) { return pack_str(v); }
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packer::pack_result packer::pack(const std::vector<uint8_t> &v) { return pack_bin(v); }
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result<parser> parser::next() const {
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auto hdr = header_byte();
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if (!hdr) return std::unexpected(hdr.error());
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if (is_array()) {
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auto info = get_body_info(m_p, m_size);
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if (!info) return std::unexpected(info.error());
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auto cnt = count();
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if (!cnt) return std::unexpected(cnt.error());
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auto cur = advance(info->header);
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if (!cur) return std::unexpected(cur.error());
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for (uint32_t i = 0; i < *cnt; ++i) {
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auto n = cur->next();
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if (!n) return std::unexpected(n.error());
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cur = *n;
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}
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return *cur;
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} else if (is_map()) {
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auto info = get_body_info(m_p, m_size);
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if (!info) return std::unexpected(info.error());
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auto cnt = count();
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if (!cnt) return std::unexpected(cnt.error());
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auto cur = advance(info->header);
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if (!cur) return std::unexpected(cur.error());
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for (uint32_t i = 0; i < *cnt; ++i) {
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auto k = cur->next();
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if (!k) return std::unexpected(k.error());
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cur = *k;
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auto v = cur->next();
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if (!v) return std::unexpected(v.error());
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cur = *v;
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}
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return *cur;
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} else {
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auto info = get_body_info(m_p, m_size);
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if (!info) return std::unexpected(info.error());
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auto total = info->header + static_cast<int>(info->body);
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return advance(total);
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}
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}
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bool parser::is_nil() const {
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auto h = header_byte();
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return h && *h == format::NIL;
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}
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bool parser::is_bool() const {
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auto h = header_byte();
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return h && (*h == format::TRUE || *h == format::FALSE);
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}
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bool parser::is_number() const {
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auto h = header_byte();
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if (!h) return false;
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uint8_t b = *h;
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if (format::is_positive_fixint(b)) return true;
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if (format::is_negative_fixint(b)) return true;
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return b >= format::FLOAT32 && b <= format::INT64;
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}
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bool parser::is_string() const {
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auto h = header_byte();
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if (!h) return false;
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uint8_t b = *h;
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if (format::is_fixstr(b)) return true;
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return b == format::STR8 || b == format::STR16 || b == format::STR32;
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}
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bool parser::is_binary() const {
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auto h = header_byte();
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if (!h) return false;
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uint8_t b = *h;
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return b == format::BIN8 || b == format::BIN16 || b == format::BIN32;
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}
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bool parser::is_ext() const {
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auto h = header_byte();
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if (!h) return false;
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uint8_t b = *h;
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return (b >= format::FIXEXT1 && b <= format::FIXEXT16) ||
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b == format::EXT8 || b == format::EXT16 || b == format::EXT32;
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}
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bool parser::is_array() const {
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auto h = header_byte();
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if (!h) return false;
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uint8_t b = *h;
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if (format::is_fixarray(b)) return true;
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return b == format::ARRAY16 || b == format::ARRAY32;
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}
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bool parser::is_map() const {
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auto h = header_byte();
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if (!h) return false;
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uint8_t b = *h;
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if (format::is_fixmap(b)) return true;
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return b == format::MAP16 || b == format::MAP32;
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}
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result<bool> parser::get_bool() const {
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auto h = header_byte();
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if (!h) return std::unexpected(h.error());
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if (*h == format::TRUE) return true;
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if (*h == format::FALSE) return false;
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return std::unexpected(error_code::type_error);
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}
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result<std::string_view> parser::get_string() const {
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auto h = header_byte();
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if (!h) return std::unexpected(h.error());
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uint8_t b = *h;
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size_t offset, len;
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if (format::is_fixstr(b)) {
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len = b & 0x1F;
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offset = 1;
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} else if (b == format::STR8) {
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auto n = body_number<uint8_t>(m_p, m_size);
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if (!n) return std::unexpected(n.error());
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len = *n; offset = 1 + 1;
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} else if (b == format::STR16) {
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auto n = body_number<uint16_t>(m_p, m_size);
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if (!n) return std::unexpected(n.error());
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len = *n; offset = 1 + 2;
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} else if (b == format::STR32) {
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auto n = body_number<uint32_t>(m_p, m_size);
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if (!n) return std::unexpected(n.error());
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len = *n; offset = 1 + 4;
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} else {
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return std::unexpected(error_code::type_error);
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}
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if (static_cast<int>(offset + len) > m_size) {
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return std::unexpected(error_code::lack);
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}
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return std::string_view(reinterpret_cast<const char *>(m_p + offset), len);
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}
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result<std::string_view> parser::get_binary_view() const {
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auto h = header_byte();
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if (!h) return std::unexpected(h.error());
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uint8_t b = *h;
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size_t offset, len;
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if (b == format::BIN8) {
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auto n = body_number<uint8_t>(m_p, m_size);
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if (!n) return std::unexpected(n.error());
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len = *n; offset = 1 + 1;
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} else if (b == format::BIN16) {
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auto n = body_number<uint16_t>(m_p, m_size);
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if (!n) return std::unexpected(n.error());
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len = *n; offset = 1 + 2;
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} else if (b == format::BIN32) {
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auto n = body_number<uint32_t>(m_p, m_size);
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if (!n) return std::unexpected(n.error());
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len = *n; offset = 1 + 4;
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} else {
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return std::unexpected(error_code::type_error);
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}
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if (static_cast<int>(offset + len) > m_size) {
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return std::unexpected(error_code::lack);
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}
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return std::string_view(reinterpret_cast<const char *>(m_p + offset), len);
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}
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result<std::tuple<int8_t, std::string_view>> parser::get_ext() const {
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auto h = header_byte();
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if (!h) return std::unexpected(h.error());
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uint8_t b = *h;
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int8_t ext_type;
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size_t data_offset, data_len;
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switch (b) {
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case format::FIXEXT1: ext_type = m_p[1]; data_offset = 2; data_len = 1; break;
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case format::FIXEXT2: ext_type = m_p[1]; data_offset = 2; data_len = 2; break;
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case format::FIXEXT4: ext_type = m_p[1]; data_offset = 2; data_len = 4; break;
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case format::FIXEXT8: ext_type = m_p[1]; data_offset = 2; data_len = 8; break;
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case format::FIXEXT16: ext_type = m_p[1]; data_offset = 2; data_len = 16; break;
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case format::EXT8: {
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auto n = body_number<uint8_t>(m_p, m_size);
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if (!n) return std::unexpected(n.error());
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ext_type = m_p[2]; data_offset = 3; data_len = *n;
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break;
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}
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case format::EXT16: {
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auto n = body_number<uint16_t>(m_p, m_size);
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if (!n) return std::unexpected(n.error());
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ext_type = m_p[3]; data_offset = 4; data_len = *n;
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break;
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}
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case format::EXT32: {
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auto n = body_number<uint32_t>(m_p, m_size);
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if (!n) return std::unexpected(n.error());
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ext_type = m_p[5]; data_offset = 6; data_len = *n;
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break;
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}
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default:
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return std::unexpected(error_code::type_error);
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}
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if (static_cast<int>(data_offset + data_len) > m_size) {
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return std::unexpected(error_code::lack);
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}
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return std::tuple{ext_type,
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std::string_view(reinterpret_cast<const char *>(m_p + data_offset), data_len)};
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}
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result<uint32_t> parser::count() const {
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auto h = header_byte();
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if (!h) return std::unexpected(h.error());
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uint8_t b = *h;
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if (format::is_fixarray(b)) return static_cast<uint32_t>(b & 0x0F);
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if (format::is_fixmap(b)) return static_cast<uint32_t>(b & 0x0F);
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switch (b) {
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case format::ARRAY16: { auto n = body_number<uint16_t>(m_p, m_size); if (!n) return std::unexpected(n.error()); return static_cast<uint32_t>(*n); }
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case format::ARRAY32: { auto n = body_number<uint32_t>(m_p, m_size); if (!n) return std::unexpected(n.error()); return *n; }
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case format::MAP16: { auto n = body_number<uint16_t>(m_p, m_size); if (!n) return std::unexpected(n.error()); return static_cast<uint32_t>(*n); }
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case format::MAP32: { auto n = body_number<uint32_t>(m_p, m_size); if (!n) return std::unexpected(n.error()); return *n; }
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default:
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return std::unexpected(error_code::type_error);
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}
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}
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result<parser> parser::first_item() const {
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if (!is_array() && !is_map()) return std::unexpected(error_code::type_error);
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auto info = get_body_info(m_p, m_size);
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if (!info) return std::unexpected(info.error());
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return advance(info->header);
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}
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parser parser::operator[](int index) const {
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auto cur = first_item();
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if (!cur) return {};
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for (int i = 0; i < index; ++i) {
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auto n = cur->next();
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if (!n) return {};
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cur = *n;
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}
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return *cur;
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}
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result<parser> unpack(const parser &p, bool &out) {
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auto v = p.get_bool();
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if (!v) return std::unexpected(v.error());
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out = *v;
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return p.next();
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}
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result<parser> unpack(const parser &p, std::string_view &out) {
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auto v = p.get_string();
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if (!v) return std::unexpected(v.error());
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out = *v;
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return p.next();
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}
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result<parser> unpack(const parser &p, std::string &out) {
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auto v = p.get_string();
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if (!v) return std::unexpected(v.error());
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out = std::string(v->data(), v->size());
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return p.next();
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}
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result<parser> unpack(const parser &p, std::vector<uint8_t> &out) {
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auto v = p.get_binary_view();
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if (!v) return std::unexpected(v.error());
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out.assign(v->begin(), v->end());
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return p.next();
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}
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result<parser> unpack(const parser &p, std::span<const uint8_t> &out) {
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auto v = p.get_binary_view();
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if (!v) return std::unexpected(v.error());
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out = std::span<const uint8_t>(reinterpret_cast<const uint8_t*>(v->data()), v->size());
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return p.next();
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}
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} // namespace msgpack
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