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https://github.com/logos-co/logos-cpp-sdk.git
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* support non-local remote transports * fix LogosResult * allow getting client over specific transport * fix ssl * investiage ssl error * pr comments * allow transport set configuration on any module * pr comments * add docs * pr comments * propagate only non-qt dependencies * restore ABI compatibility
129 lines
4.8 KiB
C++
129 lines
4.8 KiB
C++
#ifndef LOGOS_PLAIN_RPC_VALUE_H
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#define LOGOS_PLAIN_RPC_VALUE_H
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#include <algorithm>
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#include <cstdint>
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#include <stdexcept>
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#include <string>
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#include <utility>
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#include <variant>
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#include <vector>
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namespace logos::plain {
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// -----------------------------------------------------------------------------
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// RpcValue — plain C++ variant carried by the wire RPC layer.
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//
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// Covers the shapes we actually need (null / bool / int / double / string /
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// bytes / list / map). No Qt types. The JSON/CBOR codec converts to/from
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// `nlohmann::json`; Qt-side callers convert to/from `QVariant` at the Qt
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// boundary (see plain_logos_object.cpp, plain_transport_host.cpp).
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//
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// Uses recursive std::variant via wrapper structs so list/map can hold
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// RpcValue children without forward-declaration headaches.
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// -----------------------------------------------------------------------------
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struct RpcValue;
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struct RpcList {
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std::vector<RpcValue> items;
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bool operator==(const RpcList& other) const { return items == other.items; }
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bool operator!=(const RpcList& other) const { return !(*this == other); }
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};
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// std::map<string, RpcValue> would require RpcValue to be complete at this
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// point, which is impossible (RpcValue contains RpcMap as a variant alt).
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// Use a vector of pairs instead — also gives us deterministic encoding
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// order for free, which matters when we move to CBOR.
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//
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// Method bodies that dereference RpcValue are defined out-of-line below,
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// once RpcValue is complete.
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struct RpcMap {
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std::vector<std::pair<std::string, RpcValue>> entries;
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void emplace(std::string key, RpcValue val);
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const RpcValue* find(const std::string& key) const;
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const RpcValue& at(const std::string& key) const;
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bool operator==(const RpcMap& other) const;
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bool operator!=(const RpcMap& other) const { return !(*this == other); }
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};
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struct RpcBytes {
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std::vector<uint8_t> data;
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bool operator==(const RpcBytes& other) const { return data == other.data; }
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bool operator!=(const RpcBytes& other) const { return !(*this == other); }
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};
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struct RpcValue {
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using Variant = std::variant<
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std::monostate, // null
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bool,
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int64_t,
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double,
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std::string,
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RpcBytes,
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RpcList,
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RpcMap
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>;
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Variant value;
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RpcValue() = default;
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RpcValue(std::monostate) : value(std::monostate{}) {}
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RpcValue(bool b) : value(b) {}
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RpcValue(int i) : value(static_cast<int64_t>(i)) {}
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RpcValue(int64_t i) : value(i) {}
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RpcValue(double d) : value(d) {}
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RpcValue(const char* s) : value(std::string(s)) {}
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RpcValue(std::string s) : value(std::move(s)) {}
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RpcValue(RpcBytes b) : value(std::move(b)) {}
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RpcValue(RpcList l) : value(std::move(l)) {}
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RpcValue(RpcMap m) : value(std::move(m)) {}
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bool isNull() const { return std::holds_alternative<std::monostate>(value); }
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bool isBool() const { return std::holds_alternative<bool>(value); }
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bool isInt() const { return std::holds_alternative<int64_t>(value); }
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bool isDouble() const { return std::holds_alternative<double>(value); }
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bool isString() const { return std::holds_alternative<std::string>(value); }
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bool isBytes() const { return std::holds_alternative<RpcBytes>(value); }
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bool isList() const { return std::holds_alternative<RpcList>(value); }
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bool isMap() const { return std::holds_alternative<RpcMap>(value); }
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bool asBool() const { return std::get<bool>(value); }
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int64_t asInt() const { return std::get<int64_t>(value); }
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double asDouble() const { return std::get<double>(value); }
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const std::string& asString() const { return std::get<std::string>(value); }
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const RpcBytes& asBytes() const { return std::get<RpcBytes>(value); }
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const RpcList& asList() const { return std::get<RpcList>(value); }
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const RpcMap& asMap() const { return std::get<RpcMap>(value); }
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bool operator==(const RpcValue& other) const { return value == other.value; }
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bool operator!=(const RpcValue& other) const { return !(*this == other); }
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};
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// ── RpcMap out-of-line methods (need complete RpcValue) ────────────────────
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inline void RpcMap::emplace(std::string key, RpcValue val) {
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entries.emplace_back(std::move(key), std::move(val));
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}
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inline const RpcValue* RpcMap::find(const std::string& key) const {
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for (const auto& kv : entries) if (kv.first == key) return &kv.second;
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return nullptr;
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}
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inline const RpcValue& RpcMap::at(const std::string& key) const {
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const RpcValue* v = find(key);
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if (!v) throw std::out_of_range("RpcMap::at: key not found: " + key);
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return *v;
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}
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inline bool RpcMap::operator==(const RpcMap& other) const {
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return entries == other.entries;
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}
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} // namespace logos::plain
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#endif // LOGOS_PLAIN_RPC_VALUE_H
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