Use byte_slice for sending zmq messages - removes data copy within zmq
This commit is contained in:
parent
378cdeaeae
commit
da99157462
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@ -42,7 +42,12 @@ namespace epee
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struct release_byte_slice
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{
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void operator()(byte_slice_data*) const noexcept;
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//! For use with `zmq_message_init_data`, use second arg for buffer pointer.
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static void call(void*, void* ptr) noexcept;
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void operator()(byte_slice_data* ptr) const noexcept
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{
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call(nullptr, ptr);
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}
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};
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/*! Inspired by slices in golang. Storage is thread-safe reference counted,
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@ -140,6 +145,9 @@ namespace epee
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\throw std::out_of_range If `size() < end`.
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\return Slice starting at `data() + begin` of size `end - begin`. */
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byte_slice get_slice(std::size_t begin, std::size_t end) const;
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//! \post `empty()` \return Ownership of ref-counted buffer.
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std::unique_ptr<byte_slice_data, release_byte_slice> take_buffer() noexcept;
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};
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} // epee
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@ -49,12 +49,16 @@ namespace epee
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std::atomic<std::size_t> ref_count;
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};
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void release_byte_slice::operator()(byte_slice_data* ptr) const noexcept
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void release_byte_slice::call(void*, void* ptr) noexcept
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{
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if (ptr && --(ptr->ref_count) == 0)
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if (ptr)
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{
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ptr->~byte_slice_data();
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free(ptr);
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byte_slice_data* self = static_cast<byte_slice_data*>(ptr);
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if (--(self->ref_count) == 0)
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{
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self->~byte_slice_data();
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free(self);
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}
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}
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}
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@ -206,4 +210,11 @@ namespace epee
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return {};
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return {storage_.get(), {portion_.begin() + begin, end - begin}};
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}
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std::unique_ptr<byte_slice_data, release_byte_slice> byte_slice::take_buffer() noexcept
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{
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std::unique_ptr<byte_slice_data, release_byte_slice> out{std::move(storage_)};
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portion_ = nullptr;
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return out;
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}
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} // epee
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@ -33,6 +33,8 @@
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#include <limits>
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#include <utility>
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#include "byte_slice.h"
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namespace net
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{
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namespace zmq
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@ -183,6 +185,22 @@ namespace zmq
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{
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return retry_op(zmq_send, socket, payload.data(), payload.size(), flags);
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}
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expect<void> send(epee::byte_slice&& payload, void* socket, int flags) noexcept
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{
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void* const data = const_cast<std::uint8_t*>(payload.data());
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const std::size_t size = payload.size();
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auto buffer = payload.take_buffer(); // clears `payload` from callee
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zmq_msg_t msg{};
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MONERO_ZMQ_CHECK(zmq_msg_init_data(std::addressof(msg), data, size, epee::release_byte_slice::call, buffer.get()));
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buffer.release(); // zmq will now decrement byte_slice ref-count
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expect<void> sent = retry_op(zmq_msg_send, std::addressof(msg), socket, flags);
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if (!sent) // beware if removing `noexcept` from this function - possible leak here
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zmq_msg_close(std::addressof(msg));
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return sent;
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}
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} // zmq
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} // net
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@ -53,6 +53,11 @@
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#define MONERO_ZMQ_THROW(msg) \
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MONERO_THROW( ::net::zmq::get_error_code(), msg )
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namespace epee
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{
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class byte_slice;
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}
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namespace net
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{
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namespace zmq
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@ -132,5 +137,24 @@ namespace zmq
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\param flags See `zmq_send` for possible flags.
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\return `success()` if sent, otherwise ZMQ error. */
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expect<void> send(epee::span<const std::uint8_t> payload, void* socket, int flags = 0) noexcept;
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/*! Sends `payload` on `socket`. Blocks until the entire message is queued
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for sending, or until `zmq_term` is called on the `zmq_context`
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associated with `socket`. If the context is terminated,
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`make_error_code(ETERM)` is returned.
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\note This will automatically retry on `EINTR`, so exiting on
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interrupts requires context termination.
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\note If non-blocking behavior is requested on `socket` or by `flags`,
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then `net::zmq::make_error_code(EAGAIN)` will be returned if this
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would block.
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\param payload sent as one message on `socket`.
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\param socket Handle created with `zmq_socket`.
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\param flags See `zmq_msg_send` for possible flags.
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\post `payload.emtpy()` - ownership is transferred to zmq.
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\return `success()` if sent, otherwise ZMQ error. */
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expect<void> send(epee::byte_slice&& payload, void* socket, int flags = 0) noexcept;
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} // zmq
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} // net
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@ -33,6 +33,7 @@
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#include <stdexcept>
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#include <boost/uuid/nil_generator.hpp>
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#include <boost/utility/string_ref.hpp>
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// likely included by daemon_handler.h's includes,
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// but including here for clarity
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#include "cryptonote_core/cryptonote_core.h"
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@ -48,7 +49,7 @@ namespace rpc
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{
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namespace
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{
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using handler_function = std::string(DaemonHandler& handler, const rapidjson::Value& id, const rapidjson::Value& msg);
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using handler_function = epee::byte_slice(DaemonHandler& handler, const rapidjson::Value& id, const rapidjson::Value& msg);
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struct handler_map
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{
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const char* method_name;
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@ -66,7 +67,7 @@ namespace rpc
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}
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template<typename Message>
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std::string handle_message(DaemonHandler& handler, const rapidjson::Value& id, const rapidjson::Value& parameters)
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epee::byte_slice handle_message(DaemonHandler& handler, const rapidjson::Value& id, const rapidjson::Value& parameters)
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{
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typename Message::Request request{};
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request.fromJson(parameters);
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@ -903,7 +904,7 @@ namespace rpc
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return true;
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}
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std::string DaemonHandler::handle(const std::string& request)
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epee::byte_slice DaemonHandler::handle(const std::string& request)
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{
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MDEBUG("Handling RPC request: " << request);
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@ -916,8 +917,11 @@ namespace rpc
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if (matched_handler == std::end(handlers) || matched_handler->method_name != request_type)
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return BAD_REQUEST(request_type, req_full.getID());
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std::string response = matched_handler->call(*this, req_full.getID(), req_full.getMessage());
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MDEBUG("Returning RPC response: " << response);
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epee::byte_slice response = matched_handler->call(*this, req_full.getID(), req_full.getMessage());
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const boost::string_ref response_view{reinterpret_cast<const char*>(response.data()), response.size()};
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MDEBUG("Returning RPC response: " << response_view);
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return response;
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}
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catch (const std::exception& e)
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@ -28,6 +28,7 @@
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#pragma once
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#include "byte_slice.h"
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#include "daemon_messages.h"
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#include "daemon_rpc_version.h"
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#include "rpc_handler.h"
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@ -132,7 +133,7 @@ class DaemonHandler : public RpcHandler
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void handle(const GetOutputDistribution::Request& req, GetOutputDistribution::Response& res);
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std::string handle(const std::string& request);
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epee::byte_slice handle(const std::string& request) override final;
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private:
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@ -149,7 +149,7 @@ cryptonote::rpc::error FullMessage::getError()
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return err;
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}
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std::string FullMessage::getRequest(const std::string& request, const Message& message, const unsigned id)
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epee::byte_slice FullMessage::getRequest(const std::string& request, const Message& message, const unsigned id)
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{
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rapidjson::StringBuffer buffer;
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{
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@ -172,11 +172,11 @@ std::string FullMessage::getRequest(const std::string& request, const Message& m
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if (!dest.IsComplete())
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throw std::logic_error{"Invalid JSON tree generated"};
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}
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return std::string{buffer.GetString(), buffer.GetSize()};
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return epee::byte_slice{{buffer.GetString(), buffer.GetSize()}};
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}
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std::string FullMessage::getResponse(const Message& message, const rapidjson::Value& id)
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epee::byte_slice FullMessage::getResponse(const Message& message, const rapidjson::Value& id)
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{
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rapidjson::StringBuffer buffer;
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{
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@ -207,17 +207,17 @@ std::string FullMessage::getResponse(const Message& message, const rapidjson::Va
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if (!dest.IsComplete())
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throw std::logic_error{"Invalid JSON tree generated"};
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}
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return std::string{buffer.GetString(), buffer.GetSize()};
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return epee::byte_slice{{buffer.GetString(), buffer.GetSize()}};
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}
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// convenience functions for bad input
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std::string BAD_REQUEST(const std::string& request)
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epee::byte_slice BAD_REQUEST(const std::string& request)
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{
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rapidjson::Value invalid;
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return BAD_REQUEST(request, invalid);
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}
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std::string BAD_REQUEST(const std::string& request, const rapidjson::Value& id)
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epee::byte_slice BAD_REQUEST(const std::string& request, const rapidjson::Value& id)
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{
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Message fail;
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fail.status = Message::STATUS_BAD_REQUEST;
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@ -225,7 +225,7 @@ std::string BAD_REQUEST(const std::string& request, const rapidjson::Value& id)
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return FullMessage::getResponse(fail, id);
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}
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std::string BAD_JSON(const std::string& error_details)
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epee::byte_slice BAD_JSON(const std::string& error_details)
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{
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rapidjson::Value invalid;
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Message fail;
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@ -33,6 +33,7 @@
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#include <rapidjson/writer.h>
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#include <string>
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#include "byte_slice.h"
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#include "rpc/message_data_structs.h"
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namespace cryptonote
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@ -85,8 +86,8 @@ namespace rpc
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cryptonote::rpc::error getError();
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static std::string getRequest(const std::string& request, const Message& message, unsigned id);
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static std::string getResponse(const Message& message, const rapidjson::Value& id);
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static epee::byte_slice getRequest(const std::string& request, const Message& message, unsigned id);
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static epee::byte_slice getResponse(const Message& message, const rapidjson::Value& id);
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private:
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FullMessage() = default;
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@ -99,10 +100,10 @@ namespace rpc
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// convenience functions for bad input
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std::string BAD_REQUEST(const std::string& request);
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std::string BAD_REQUEST(const std::string& request, const rapidjson::Value& id);
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epee::byte_slice BAD_REQUEST(const std::string& request);
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epee::byte_slice BAD_REQUEST(const std::string& request, const rapidjson::Value& id);
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std::string BAD_JSON(const std::string& error_details);
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epee::byte_slice BAD_JSON(const std::string& error_details);
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} // namespace rpc
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#include <cstdint>
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#include <string>
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#include <vector>
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#include "byte_slice.h"
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#include "crypto/hash.h"
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namespace cryptonote
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RpcHandler() { }
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virtual ~RpcHandler() { }
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virtual std::string handle(const std::string& request) = 0;
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virtual epee::byte_slice handle(const std::string& request) = 0;
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static boost::optional<output_distribution_data>
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get_output_distribution(const std::function<bool(uint64_t, uint64_t, uint64_t, uint64_t&, std::vector<uint64_t>&, uint64_t&)> &f, uint64_t amount, uint64_t from_height, uint64_t to_height, const std::function<crypto::hash(uint64_t)> &get_hash, bool cumulative, uint64_t blockchain_height);
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@ -28,10 +28,13 @@
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#include "zmq_server.h"
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#include <boost/utility/string_ref.hpp>
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#include <chrono>
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#include <cstdint>
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#include <system_error>
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#include "byte_slice.h"
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namespace cryptonote
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{
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@ -73,10 +76,11 @@ void ZmqServer::serve()
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{
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const std::string message = MONERO_UNWRAP(net::zmq::receive(socket.get()));
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MDEBUG("Received RPC request: \"" << message << "\"");
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const std::string& response = handler.handle(message);
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epee::byte_slice response = handler.handle(message);
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MONERO_UNWRAP(net::zmq::send(epee::strspan<std::uint8_t>(response), socket.get()));
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MDEBUG("Sent RPC reply: \"" << response << "\"");
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const boost::string_ref response_view{reinterpret_cast<const char*>(response.data()), response.size()};
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MDEBUG("Sending RPC reply: \"" << response_view << "\"");
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MONERO_UNWRAP(net::zmq::send(std::move(response), socket.get()));
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}
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}
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catch (const std::system_error& e)
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@ -1702,6 +1702,45 @@ TEST(zmq, read_write)
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EXPECT_EQ(message, *received);
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}
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TEST(zmq, read_write_slice)
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{
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net::zmq::context context{zmq_init(1)};
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ASSERT_NE(nullptr, context);
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net::zmq::socket send_socket{zmq_socket(context.get(), ZMQ_REQ)};
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net::zmq::socket recv_socket{zmq_socket(context.get(), ZMQ_REP)};
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ASSERT_NE(nullptr, send_socket);
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ASSERT_NE(nullptr, recv_socket);
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ASSERT_EQ(0u, zmq_bind(recv_socket.get(), "inproc://testing"));
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ASSERT_EQ(0u, zmq_connect(send_socket.get(), "inproc://testing"));
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std::string message;
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message.resize(1024);
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crypto::rand(message.size(), reinterpret_cast<std::uint8_t*>(std::addressof(message[0])));
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{
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epee::byte_slice slice_message{{epee::strspan<std::uint8_t>(message)}};
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ASSERT_TRUE(bool(net::zmq::send(std::move(slice_message), send_socket.get())));
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EXPECT_TRUE(slice_message.empty());
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}
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const expect<std::string> received = net::zmq::receive(recv_socket.get());
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ASSERT_TRUE(bool(received));
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EXPECT_EQ(message, *received);
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}
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TEST(zmq, write_slice_fail)
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{
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std::string message;
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message.resize(1024);
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crypto::rand(message.size(), reinterpret_cast<std::uint8_t*>(std::addressof(message[0])));
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epee::byte_slice slice_message{std::move(message)};
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EXPECT_FALSE(bool(net::zmq::send(std::move(slice_message), nullptr)));
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EXPECT_TRUE(slice_message.empty());
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}
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TEST(zmq, read_write_multipart)
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{
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net::zmq::context context{zmq_init(1)};
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