//+------------------------------------------------------------------+ //| JsonNode.mqh | //| Copyright 2026, Niquel Mendoza. | //| https://www.mql5.com/ | //+------------------------------------------------------------------+ #property copyright "Copyright 2026, Niquel Mendoza." #property link "https://www.mql5.com/" #property strict #ifndef JSONPARSERBYLEO_SRC_JSONNODE_MQH #define JSONPARSERBYLEO_SRC_JSONNODE_MQH //+------------------------------------------------------------------+ //| | //+------------------------------------------------------------------+ #include "JsonAsm.mqh" #include "JsonDomSerializer.mqh" //--- #include //+------------------------------------------------------------------+ //| | //+------------------------------------------------------------------+ namespace TSN { // Layour de los demas en repo base // Layout cinta: // NULL 1 pos [tipo(4)] //+------------------------------------------------------------------+ //| | //+------------------------------------------------------------------+ #define CJsonIteratorArray TSN::CNodeBaseIteradorArray #define CJsonIteratorArrayFast TSN::CNodeBaseIteradorArrayFast #define CJsonIteratorObj TSN::CNodeBaseIteratorObj //+------------------------------------------------------------------+ //| | //+------------------------------------------------------------------+ struct CJsonNode : CNodeSFLBase { public: //--- CJsonNode() : CNodeSFLBase(NULL, -1, -1, -1) {} //--- Resuelve m_node_pos una unica vez aqui (igual que YML_NODE_RPOS en YAML) CJsonNode(CJsonParser* _ctx, const int _idx, const int _end) : CNodeSFLBase(_ctx, _idx, _end, NODEBASEF_RES_BASE(_ctx, _idx)) {} CJsonNode(CJsonParser* _ctx, const int _idx) : CNodeSFLBase(_ctx, _idx, _idx + _ctx.GetStep(_idx), NODEBASEF_RES_BASE(_ctx, _idx)) {} // Exclusivo de copia (Aqui NO RESUELVE NADA NI GET STE NI NADA) (constructor de clonacion) CJsonNode(CJsonParser* _ctx, const int _idx, const int _end, const int _node_pos) : CNodeSFLBase(_ctx, _idx, _end, _node_pos) {} //--- Acceso CJsonNode operator[](const string& key); //CJsonNode At(const int index) const; //--- Array template int ToArray(T& out_arr[]) const; // Exist? template bool ExistInArray(const uint flags, const T val) const; bool ExistInArrayStr(const string& val) const; //--- String string ToString(const string def = "") const; int ToStringUArray(uchar& data[]) const; string ToStringNoEscape(const string def = "") const; int ToStringUArrayNoEscape(uchar& data[]) const; int StrLenRaw() const; __forceinline bool CompareStrWith(const string& str) const; // Compara sin pagar el costo de copias.. directo al buffer. //-- to bytes (asume hex string) int HexToBytes(uchar& buf[]) const; // Interpolacion template string Interpolate(const TInterpolate& cs, const string def) const; //--- string ComplexToString(bool clean) const; int ComplexToData(uchar& data[], bool clean, int dst_start = 0, bool ajustar_arr = true) const; //--- Int long ToInt(const long def) const; bool ToIntSafe(long& val) const; //--- Double double ToDouble(const double def) const; bool ToDoubleSafe(double& val) const; //--- MqlParam bool ToMqlParam(MqlParam& param, const string stype) const; bool ToMqlParam(MqlParam& param, const ENUM_DATATYPE type) const; //--- Is __forceinline bool IsNull() const; //--- Navegacion raw static const CJsonNode EMPTY_NODE; static void OnMute(CNodeSFLBase& node); }; //+------------------------------------------------------------------+ //| | //+------------------------------------------------------------------+ const CJsonNode CJsonNode::EMPTY_NODE; //+------------------------------------------------------------------+ //| | //+------------------------------------------------------------------+ static void CJsonNode::OnMute(CNodeSFLBase &node) { node.RecalcNodePos(); // Posicion... node.m_end = node.m_idx + node.m_ctx.GetStep(node.m_idx); // Calculamos el fin... } //+------------------------------------------------------------------+ //| To MqlParam | //+------------------------------------------------------------------+ __forceinline bool CJsonNode::ToMqlParam(MqlParam& param, const string stype) const { const ENUM_DATATYPE type = CEnumRegBasis::GetVal(stype, WRONG_VALUE); return type == WRONG_VALUE ? false : ToMqlParam(param, type); } //+------------------------------------------------------------------+ bool CJsonNode::ToMqlParam(MqlParam& param, const ENUM_DATATYPE type) const { //--- // Si no es un tipo de data valido salimos if(NODEBASE_IS_NOT_VALID_F || !CJsonParser::s_dtype_is_valid[uchar(m_ctx.m_cinta[m_idx] & TSN_SBL_BIT_MASK_TYPE)]) return false; //--- param.type = type; //--- switch(type) { case TYPE_BOOL: param.integer_value = ToBool(false); break; case TYPE_CHAR: param.integer_value = char(ToInt(0)); break; case TYPE_UCHAR: param.integer_value = uchar(ToInt(0)); break; case TYPE_SHORT: param.integer_value = short(ToInt(0)); break; case TYPE_USHORT: param.integer_value = ushort(ToInt(0)); break; case TYPE_COLOR: param.integer_value = long(color(ToString(""))); break; case TYPE_INT: param.integer_value = int(ToInt(0)); break; case TYPE_UINT: param.integer_value = uint(ToInt(0)); break; case TYPE_DATETIME: param.integer_value = long(datetime(ToString(""))); break; case TYPE_LONG: case TYPE_ULONG: param.integer_value = long(ToInt(0)); break; case TYPE_FLOAT: param.double_value = float(ToInt(0)); break; case TYPE_DOUBLE: param.double_value = double(ToInt(0)); break; case TYPE_STRING: param.string_value = ToString(""); break; default: param.string_value = ToString(""); break; } //--- return true; } //+------------------------------------------------------------------+ //| | //+------------------------------------------------------------------+ string CJsonNode::ComplexToString(bool clean) const { if(NODEBASE_IS_NOT_VALID_F || ((1 << int(m_ctx.m_cinta[m_idx] & TSN_SBL_BIT_MASK_TYPE)) & (TSN_SBL_BASE_F_OBJ | TSN_SBL_BASE_F_ARR)) == 0) return ""; //--- const int start = int(m_ctx.m_cinta[m_idx + 1] & 0xFFFFFFFF); const int end = int(m_ctx.m_cinta[m_idx + 1] >> TSN_JSON_BIT_END_T); return clean ? m_ctx.CleanNode(start, end) : CharArrayToString(m_ctx.m_raw, start, (end - start) + 1); } //+------------------------------------------------------------------+ //| | //+------------------------------------------------------------------+ int CJsonNode::ComplexToData(uchar &data[], bool clean, int dst_start = 0, bool ajustar_arr = true) const { if(NODEBASE_IS_NOT_VALID_F || ((1 << int(m_ctx.m_cinta[m_idx] & TSN_SBL_BIT_MASK_TYPE)) & (TSN_SBL_BASE_F_OBJ | TSN_SBL_BASE_F_ARR)) == 0) return 0; //--- const int start = int(m_ctx.m_cinta[m_idx + 1] & 0xFFFFFFFF); const int end = int(m_ctx.m_cinta[m_idx + 1] >> TSN_JSON_BIT_END_T); return clean ? m_ctx.CleanNode(start, end, data, dst_start, ajustar_arr) : ArrayCopy(data, m_ctx.m_raw, dst_start, start, (end - start) + 1); } //+------------------------------------------------------------------+ //| | //+------------------------------------------------------------------+ CJsonNode CJsonNode::operator[](const string& key) { //--- if(NODEBASE_IS_NOT_VALID_F || int(m_ctx.m_cinta[m_idx] & TSN_SBL_BIT_MASK_TYPE) != JSON_VTYPE_OBJ) return EMPTY_NODE; //--- Iterar pares KEY+VAL // Print("Call"); if(((m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_START_IS_HASING) & TSN_SBL_BIT_MASK_IS_HASHSING) == 0) { //Print("No esta hasheado buscando o(n)"); //--- int c = int(m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_START_NUM_C_HASH) & TSN_SBL_BIT_MASK_NUM_C_HASH; //Print("Contador actual: ", c); if(c >= TSN_NODEBASEREAD_MIN_JIT_ATTEMPS_TO_PHASH) // Veriricamos si supero { if(NodeHashing()) { //Print("Hasheado"); //--- Obtenemos posicion int val_pos = m_ctx.PerfectHashComputeHash(key, m_node_pos); if(val_pos == -1) { return EMPTY_NODE; } else { val_pos++; // Luego de key return CJsonNode(m_ctx, val_pos, val_pos + m_ctx.GetStep(val_pos)); } } //Print("No se pudo hashear"); // Si llega aqui es por que fallo.. en ese caso reiniciamos los intetnos.. //--- c = 0; const long mask = long(TSN_SBL_BIT_MASK_NUM_C_HASH) << TSN_SBL_BIT_START_NUM_C_HASH; // máscara de 3 bits en pos 5 m_ctx.m_cinta[m_idx] = (m_ctx.m_cinta[m_idx] & ~mask) | (c << TSN_SBL_BIT_START_NUM_C_HASH); } else { // Aun no.. solo aumentamos y modificamos.. c++; const long mask = long(TSN_SBL_BIT_MASK_NUM_C_HASH) << TSN_SBL_BIT_START_NUM_C_HASH; // máscara de 3 bits en pos 5 m_ctx.m_cinta[m_idx] = (m_ctx.m_cinta[m_idx] & ~mask) | (c << TSN_SBL_BIT_START_NUM_C_HASH); } //--- Linear probing.. de siempre... int cur = m_idx + 2; while(cur < m_end) { if(int(m_ctx.m_cinta[cur] & TSN_SBL_BIT_MASK_TYPE) != JSON_VTYPE_KEY) { cur += m_ctx.GetStep(cur); continue; } if(m_ctx.KeysEqual(key, cur)) { const int val_pos = cur + 1; return CJsonNode(m_ctx, val_pos, val_pos + m_ctx.GetStep(val_pos)); } //--- cur++; // salta KEY cur += m_ctx.GetStep(cur); // salta VAL } return EMPTY_NODE; } //--- m_node_pos ya viene resuelto desde el constructor int val_pos = m_ctx.PerfectHashComputeHash(key, m_node_pos); if(val_pos == -1) { return EMPTY_NODE; } else { val_pos++; // Luego de key return CJsonNode(m_ctx, val_pos, val_pos + m_ctx.GetStep(val_pos)); } } //+------------------------------------------------------------------+ //| String | //+------------------------------------------------------------------+ string CJsonNode::ToString(const string def = "") const { //--- if(NODEBASE_IS_NOT_VALID_F) return def; //--- switch(int(m_ctx.m_cinta[m_idx] & TSN_SBL_BIT_MASK_TYPE)) { case JSON_VTYPE_INTEGER: return string(m_ctx.m_cinta[m_idx + 1]); case JSON_VTYPE_REAL: { TsnBitInterprete un; un.long_value = m_ctx.m_cinta[m_idx + 1]; return string(un.double_value); } case JSON_VTYPE_BOOLEAN: return ((m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_START_ENDTYPE) & 1) != 0 ? "true" : "false"; case JSON_VTYPE_STRING: { const int start = int(m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_STR_START); const int slen = int((m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_STR_LEN) & TSN_SBL_BIT_STR_MASK_LEN); return m_ctx.Unescape(start, start + slen - 1); } } return def; } //+------------------------------------------------------------------+ template string CJsonNode::Interpolate(const TInterpolate& cs, const string def) const { //--- if(NODEBASE_IS_NOT_VALID_F || int(m_ctx.m_cinta[m_idx] & TSN_SBL_BIT_MASK_TYPE) != JSON_VTYPE_STRING) return def; //--- const int start = int(m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_STR_START); const int slen = int((m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_STR_LEN) & TSN_SBL_BIT_STR_MASK_LEN); return cs.Interpolate(m_ctx.m_raw, start, start + slen - 1, def); } //+------------------------------------------------------------------+ string CJsonNode::ToStringNoEscape(const string def = "") const { //--- if(NODEBASE_IS_NOT_VALID_F || int(m_ctx.m_cinta[m_idx] & TSN_SBL_BIT_MASK_TYPE) != JSON_VTYPE_STRING) return def; //--- const int start = int(m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_STR_START); const int slen = int((m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_STR_LEN) & TSN_SBL_BIT_STR_MASK_LEN); return CharArrayToString(m_ctx.m_raw, start, slen); //--- return def; } //+------------------------------------------------------------------+ int CJsonNode::ToStringUArray(uchar & data[]) const { //--- if(NODEBASE_IS_NOT_VALID_F || int(m_ctx.m_cinta[m_idx] & TSN_SBL_BIT_MASK_TYPE) != JSON_VTYPE_STRING) return 0; //--- const int start = int(m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_STR_START); const int slen = int((m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_STR_LEN) & TSN_SBL_BIT_STR_MASK_LEN); return m_ctx.Unescape(start, start + slen - 1, data); } //+------------------------------------------------------------------+ int CJsonNode::ToStringUArrayNoEscape(uchar &data[]) const { //--- if(NODEBASE_IS_NOT_VALID_F || int(m_ctx.m_cinta[m_idx] & TSN_SBL_BIT_MASK_TYPE) != JSON_VTYPE_STRING) return 0; //--- const int start = int(m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_STR_START); const int slen = int((m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_STR_LEN) & TSN_SBL_BIT_STR_MASK_LEN); return ArrayCopy(data, m_ctx.m_raw, 0, start, slen); } //+------------------------------------------------------------------+ int CJsonNode::StrLenRaw(void) const { //--- if(NODEBASE_IS_NOT_VALID_F || int(m_ctx.m_cinta[m_idx] & TSN_SBL_BIT_MASK_TYPE) != JSON_VTYPE_STRING) return 0; //--- return int((m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_STR_LEN) & TSN_SBL_BIT_STR_MASK_LEN); } //+------------------------------------------------------------------+ __forceinline bool CJsonNode::CompareStrWith(const string &str) const { if(NODEBASE_IS_NOT_VALID_F || int(m_ctx.m_cinta[m_idx] & TSN_SBL_BIT_MASK_TYPE) != JSON_VTYPE_STRING) return false; return m_ctx.StrEquals(str, m_idx); } //+------------------------------------------------------------------+ int CJsonNode::HexToBytes(uchar &buf[]) const { if(NODEBASE_IS_NOT_VALID_F || (m_ctx.m_cinta[m_idx]&TSN_SBL_BIT_MASK_TYPE) != JSON_VTYPE_STRING) return 0; // ahora si en value // tenemos que recortar por la parte alta //--- const int start = int(m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_STR_START); const int slen = int((m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_START_ENDTYPE) & TSN_SBL_BIT_STR_MASK_LEN); //--- const int sob = slen & 1; // % 2 (vemos si hay sobrante o si es multiplo de dos exacto) int exact_len = slen - sob; ArrayResize(buf, (slen >> 1) + (sob << 1)); int w = 0; //--- exact_len += start; // para que peuda empzar bien.. int i = start; //--- for(i; i < exact_len; i += 2) buf[w++] = g_arr_valid_hex_chars[m_ctx.m_raw[i]] | g_arr_valid_hex_chars[m_ctx.m_raw[i + 1]] << 4; if(sob) // solo rellenmaso alto (la parte alta la inteprntamos como 0) buf[w++] = m_ctx.m_raw[i]; //--- return w; } //+------------------------------------------------------------------+ //| Arrays | //+------------------------------------------------------------------+ template int CJsonNode::ToArray(T &out_arr[]) const { //--- if(NODEBASE_IS_NOT_VALID_F || int(m_ctx.m_cinta[m_idx] & TSN_SBL_BIT_MASK_TYPE) != JSON_VTYPE_ARR) return 0; //--- const int count = int((m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_START_NUM_EL) & TSN_SBL_BIT_MASK_NUM_EL); ArrayResize(out_arr, count); //--- int cur = m_idx + 2; int k = 0; //--- switch(int(m_ctx.m_cinta[cur] & TSN_SBL_BIT_MASK_TYPE)) { case JSON_VTYPE_INTEGER: { while(cur < m_end) { out_arr[k++] = T(m_ctx.m_cinta[cur + 1]); cur += 2; } return count; } case JSON_VTYPE_REAL: { while(cur < m_end) { TsnBitInterprete bit; bit.long_value = m_ctx.m_cinta[cur + 1]; out_arr[k++] = T(bit.double_value); cur += 2; } return count; } case JSON_VTYPE_BOOLEAN: { while(cur < m_end) { out_arr[k++] = T((m_ctx.m_cinta[cur] >> TSN_SBL_BIT_START_ENDTYPE) & 1); cur++; } return count; } case JSON_VTYPE_STRING: { while(cur < m_end) { const int start = int(m_ctx.m_cinta[cur] >> TSN_SBL_BIT_STR_START); const int slen = int((m_ctx.m_cinta[cur] >> TSN_SBL_BIT_STR_LEN) & TSN_SBL_BIT_STR_MASK_LEN); out_arr[k++] = T(m_ctx.Unescape(start, start + slen - 1)); cur++; } return count; } } //--- return 0; } //+------------------------------------------------------------------+ template bool CJsonNode::ExistInArray(const uint flags, const T val) const { //--- if(NODEBASE_IS_NOT_VALID_F || int(m_ctx.m_cinta[m_idx] & TSN_SBL_BIT_MASK_TYPE) != JSON_VTYPE_ARR) return false; //--- int cur = m_idx + 2; while(cur < m_end) { //--- const uint ct = 1U << uint(m_ctx.m_cinta[cur] & TSN_SBL_BIT_MASK_TYPE); if((ct & flags) == 0) { cur += m_ctx.GetStep(cur); continue; } //--- switch(ct) { case JSON_VTYPE_INTEGER: { if(m_ctx.m_cinta[cur + 1] == T(val)) return true; break; } case JSON_VTYPE_REAL: { bit.long_value = m_ctx.m_cinta[cur + 1]; if(bit.double_value == T(val)) return true; break; } case JSON_VTYPE_BOOLEAN: { if(val == T((m_ctx.m_cinta[cur] >> TSN_SBL_BIT_START_ENDTYPE) & 1)) return true; break; } case JSON_VTYPE_STRING: { const int start = int(m_ctx.m_cinta[cur] >> TSN_SBL_BIT_STR_START); const int slen = int((m_ctx.m_cinta[cur] >> TSN_SBL_BIT_STR_LEN) & TSN_SBL_BIT_STR_MASK_LEN); if(val == T(m_ctx.Unescape(start, start + slen - 1))) return true; break; } case JSON_VTYPE_NULL: { return true; } } //--- cur += m_ctx.GetStep(cur); } //--- return false; } //+------------------------------------------------------------------+ bool CJsonNode::ExistInArrayStr(const string& val) const { //--- if(NODEBASE_IS_NOT_VALID_F || int(m_ctx.m_cinta[m_idx] & TSN_SBL_BIT_MASK_TYPE) != JSON_VTYPE_ARR) return false; //--- int cur = m_idx + 2; while(cur < m_end) { //--- const int ct = int(m_ctx.m_cinta[cur] & TSN_SBL_BIT_MASK_TYPE); if(ct != JSON_VTYPE_STRING) { cur += m_ctx.GetStep(cur); continue; } //--- const int start = int(m_ctx.m_cinta[cur] >> TSN_SBL_BIT_STR_START); const int slen = int((m_ctx.m_cinta[cur] >> TSN_SBL_BIT_STR_LEN) & TSN_SBL_BIT_STR_MASK_LEN); if(val == m_ctx.Unescape(start, start + slen - 1)) return true; //--- cur += m_ctx.GetStep(cur); } //--- return false; } //+------------------------------------------------------------------+ //| ToInt | //+------------------------------------------------------------------+ long CJsonNode::ToInt(const long def) const { //--- if(NODEBASE_IS_NOT_VALID_F) return def; //--- switch(int(m_ctx.m_cinta[m_idx] & TSN_SBL_BIT_MASK_TYPE)) { case TSN_SBL_BASE_TYPE_INT: return m_ctx.m_cinta[m_idx + 1]; case TSN_SBL_BASE_TYPE_FLT: { TsnBitInterprete un; un.long_value = m_ctx.m_cinta[m_idx + 1]; return long(un.double_value); } case TSN_SBL_BASE_TYPE_BOL: return long((m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_START_ENDTYPE) & 1); case TSN_SBL_BASE_TYPE_STR: { const int start = int(m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_STR_START); const int slen = int((m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_STR_LEN) & TSN_SBL_BIT_STR_MASK_LEN); return long(CharArrayToString(m_ctx.m_raw, start, slen)); } } return def; } //+------------------------------------------------------------------+ bool CJsonNode::ToIntSafe(long & val) const { //--- if(NODEBASE_IS_NOT_VALID_F) return false; //--- switch(int(m_ctx.m_cinta[m_idx] & TSN_SBL_BIT_MASK_TYPE)) { case TSN_SBL_BASE_TYPE_INT: val = m_ctx.m_cinta[m_idx + 1]; return true; case TSN_SBL_BASE_TYPE_FLT: { TsnBitInterprete un; un.long_value = m_ctx.m_cinta[m_idx + 1]; val = long(un.double_value); return true; } case TSN_SBL_BASE_TYPE_BOL: val = long((m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_START_ENDTYPE) & 1); return true; case TSN_SBL_BASE_TYPE_STR: { const int start = int(m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_STR_START); const int slen = int((m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_STR_LEN) & TSN_SBL_BIT_STR_MASK_LEN); val = long(CharArrayToString(m_ctx.m_raw, start, slen)); return true; } } return false; } //+------------------------------------------------------------------+ //| ToDouble | //+------------------------------------------------------------------+ double CJsonNode::ToDouble(const double def) const { //--- if(NODEBASE_IS_NOT_VALID_F) return def; //--- switch(int(m_ctx.m_cinta[m_idx] & TSN_SBL_BIT_MASK_TYPE)) { case TSN_SBL_BASE_TYPE_INT: return double(m_ctx.m_cinta[m_idx + 1]); case TSN_SBL_BASE_TYPE_FLT: { TsnBitInterprete un; un.long_value = m_ctx.m_cinta[m_idx + 1]; return un.double_value; } case TSN_SBL_BASE_TYPE_BOL: return double((m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_START_ENDTYPE) & 1); case TSN_SBL_BASE_TYPE_STR: { const int start = int(m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_STR_START); const int slen = int((m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_STR_LEN) & TSN_SBL_BIT_STR_MASK_LEN); return double(CharArrayToString(m_ctx.m_raw, start, slen)); } } return def; } //+------------------------------------------------------------------+ bool CJsonNode::ToDoubleSafe(double & val) const { //--- if(NODEBASE_IS_NOT_VALID_F) return false; //--- switch(int(m_ctx.m_cinta[m_idx] & TSN_SBL_BIT_MASK_TYPE)) { case TSN_SBL_BASE_TYPE_INT: val = double(m_ctx.m_cinta[m_idx + 1]); return true; case TSN_SBL_BASE_TYPE_FLT: { TsnBitInterprete un; un.long_value = m_ctx.m_cinta[m_idx + 1]; val = un.double_value; return true; } case TSN_SBL_BASE_TYPE_BOL: val = double((m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_START_ENDTYPE) & 1); return true; case TSN_SBL_BASE_TYPE_STR: { const int start = int(m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_STR_START); const int slen = int((m_ctx.m_cinta[m_idx] >> TSN_SBL_BIT_STR_LEN) & TSN_SBL_BIT_STR_MASK_LEN); val = double(CharArrayToString(m_ctx.m_raw, start, slen)); return true; } } return false; } //+------------------------------------------------------------------+ //| Is | //+------------------------------------------------------------------+ __forceinline bool CJsonNode::IsNull() const { return NODEBASE_IS_VALID && int(m_ctx.m_cinta[m_idx] & TSN_SBL_BIT_MASK_TYPE) == JSON_VTYPE_NULL; } } //+------------------------------------------------------------------+ #endif // JSONPARSERBYLEO_SRC_JSONNODE_MQH