73d7280723
* New command line tool for transfering files / still very beta. * add readme * use cli11 for argument parsing * json -> msgpack * stop using base64 and use binary which can be stored in message pack
218 lines
8.0 KiB
C++
218 lines
8.0 KiB
C++
#pragma once
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#include <string>
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#include <vector>
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#include <map>
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#include <memory>
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#include <initializer_list>
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#ifdef _MSC_VER
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#if _MSC_VER <= 1800 // VS 2013
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#ifndef noexcept
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#define noexcept throw()
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#endif
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#ifndef snprintf
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#define snprintf _snprintf_s
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#endif
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#endif
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#endif
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namespace msgpack11 {
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class MsgPackValue;
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class MsgPack final {
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public:
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// Types
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enum Type {
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NUL,
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FLOAT32,
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FLOAT64,
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INT8,
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INT16,
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INT32,
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INT64,
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UINT8,
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UINT16,
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UINT32,
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UINT64,
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BOOL,
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STRING,
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BINARY,
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ARRAY,
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OBJECT,
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EXTENSION
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};
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// Array and object typedefs
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typedef std::vector<MsgPack> array;
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typedef std::map<MsgPack, MsgPack> object;
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// Binary and extension typedefs
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typedef std::vector<uint8_t> binary;
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typedef std::tuple<int8_t, binary> extension;
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// Constructors for the various types of JSON value.
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MsgPack() noexcept; // NUL
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MsgPack(std::nullptr_t) noexcept; // NUL
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MsgPack(float value); // FLOAT32
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MsgPack(double value); // FLOAT64
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MsgPack(int8_t value); // INT8
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MsgPack(int16_t value); // INT16
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MsgPack(int32_t value); // INT32
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MsgPack(int64_t value); // INT64
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MsgPack(uint8_t value); // UINT8
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MsgPack(uint16_t value); // UINT16
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MsgPack(uint32_t value); // UINT32
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MsgPack(uint64_t value); // UINT64
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MsgPack(bool value); // BOOL
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MsgPack(const std::string &value); // STRING
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MsgPack(std::string &&value); // STRING
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MsgPack(const char * value); // STRING
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MsgPack(const array &values); // ARRAY
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MsgPack(array &&values); // ARRAY
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MsgPack(const object &values); // OBJECT
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MsgPack(object &&values); // OBJECT
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MsgPack(const binary &values); // BINARY
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MsgPack(binary &&values); // BINARY
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MsgPack(const extension &values); // EXTENSION
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MsgPack(extension &&values); // EXTENSION
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// Implicit constructor: anything with a to_msgpack() function.
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template <class T, class = decltype(&T::to_msgpack)>
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MsgPack(const T & t) : MsgPack(t.to_msgpack()) {}
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// Implicit constructor: map-like objects (std::map, std::unordered_map, etc)
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template <class M, typename std::enable_if<
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std::is_constructible<MsgPack, typename M::key_type>::value
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&& std::is_constructible<MsgPack, typename M::mapped_type>::value,
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int>::type = 0>
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MsgPack(const M & m) : MsgPack(object(m.begin(), m.end())) {}
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// Implicit constructor: vector-like objects (std::list, std::vector, std::set, etc)
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template <class V, typename std::enable_if<
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std::is_constructible<MsgPack, typename V::value_type>::value &&
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!std::is_same<typename binary::value_type, typename V::value_type>::value,
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int>::type = 0>
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MsgPack(const V & v) : MsgPack(array(v.begin(), v.end())) {}
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template <class V, typename std::enable_if<
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std::is_constructible<MsgPack, typename V::value_type>::value &&
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std::is_same<typename binary::value_type, typename V::value_type>::value,
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int>::type = 0>
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MsgPack(const V & v) : MsgPack(binary(v.begin(), v.end())) {}
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// This prevents MsgPack(some_pointer) from accidentally producing a bool. Use
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// MsgPack(bool(some_pointer)) if that behavior is desired.
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MsgPack(void *) = delete;
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// Accessors
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Type type() const;
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bool is_null() const { return type() == NUL; }
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bool is_bool() const { return type() == BOOL; }
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bool is_number() const { return type() == FLOAT64; }
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bool is_float32() const { return type() == FLOAT32; }
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bool is_float64() const { return type() == FLOAT64; }
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bool is_int() const { return type() == INT32; }
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bool is_int8() const { return type() == INT8; }
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bool is_int16() const { return type() == INT16; }
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bool is_int32() const { return type() == INT32; }
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bool is_int64() const { return type() == INT64; }
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bool is_uint8() const { return type() == UINT8; }
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bool is_uint16() const { return type() == UINT16; }
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bool is_uint32() const { return type() == UINT32; }
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bool is_uint64() const { return type() == UINT64; }
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bool is_string() const { return type() == STRING; }
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bool is_array() const { return type() == ARRAY; }
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bool is_binary() const { return type() == BINARY; }
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bool is_object() const { return type() == OBJECT; }
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bool is_extension() const { return type() == EXTENSION; }
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// Return the enclosed value if this is a number, 0 otherwise. Note that msgpack11 does not
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// distinguish between integer and non-integer numbers - number_value() and int_value()
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// can both be applied to a NUMBER-typed object.
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double number_value() const;
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float float32_value() const;
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double float64_value() const;
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int32_t int_value() const;
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int8_t int8_value() const;
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int16_t int16_value() const;
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int32_t int32_value() const;
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int64_t int64_value() const;
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uint8_t uint8_value() const;
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uint16_t uint16_value() const;
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uint32_t uint32_value() const;
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uint64_t uint64_value() const;
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// Return the enclosed value if this is a boolean, false otherwise.
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bool bool_value() const;
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// Return the enclosed string if this is a string, "" otherwise.
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const std::string &string_value() const;
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// Return the enclosed std::vector if this is an array, or an empty vector otherwise.
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const array &array_items() const;
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// Return the enclosed std::map if this is an object, or an empty map otherwise.
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const object &object_items() const;
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// Return the enclosed std::vector if this is an binary, or an empty map otherwise.
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const binary &binary_items() const;
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// Return the enclosed std::tuple if this is an extension, or an empty map otherwise.
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const extension &extension_items() const;
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// Return a reference to arr[i] if this is an array, MsgPack() otherwise.
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const MsgPack & operator[](size_t i) const;
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// Return a reference to obj[key] if this is an object, MsgPack() otherwise.
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const MsgPack & operator[](const std::string &key) const;
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// Serialize.
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void dump(std::string &out) const;
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std::string dump() const {
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std::string out;
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dump(out);
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return out;
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}
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// Parse. If parse fails, return MsgPack() and assign an error message to err.
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static MsgPack parse(const std::string & in, std::string & err);
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static MsgPack parse(const char * in, size_t len, std::string & err) {
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if (in) {
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return parse(std::string(in,in+len), err);
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} else {
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err = "null input";
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return nullptr;
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}
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}
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// Parse multiple objects, concatenated or separated by whitespace
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static std::vector<MsgPack> parse_multi(
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const std::string & in,
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std::string::size_type & parser_stop_pos,
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std::string & err);
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static inline std::vector<MsgPack> parse_multi(
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const std::string & in,
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std::string & err) {
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std::string::size_type parser_stop_pos;
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return parse_multi(in, parser_stop_pos, err);
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}
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bool operator== (const MsgPack &rhs) const;
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bool operator< (const MsgPack &rhs) const;
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bool operator!= (const MsgPack &rhs) const { return !(*this == rhs); }
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bool operator<= (const MsgPack &rhs) const { return !(rhs < *this); }
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bool operator> (const MsgPack &rhs) const { return (rhs < *this); }
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bool operator>= (const MsgPack &rhs) const { return !(*this < rhs); }
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/* has_shape(types, err)
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*
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* Return true if this is a JSON object and, for each item in types, has a field of
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* the given type. If not, return false and set err to a descriptive message.
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*/
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typedef std::initializer_list<std::pair<std::string, Type>> shape;
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bool has_shape(const shape & types, std::string & err) const;
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private:
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std::shared_ptr<MsgPackValue> m_ptr;
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};
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} // namespace msgpack11
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