278 lines
8.5 KiB
C++
278 lines
8.5 KiB
C++
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/*
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* proto rpc client
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*
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* @build make protorpc
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* @server bin/protorpc_server 1234
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* @client bin/protorpc_client 127.0.0.1 1234 add 1 2
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*
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*/
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#include "TcpClient.h"
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#include <mutex>
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#include <condition_variable>
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using namespace hv;
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#include "protorpc.h"
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#include "generated/base.pb.h"
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#include "generated/calc.pb.h"
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#include "generated/login.pb.h"
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// valgrind --leak-check=full --show-leak-kinds=all
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class ProtobufRAII {
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public:
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ProtobufRAII() {
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}
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~ProtobufRAII() {
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google::protobuf::ShutdownProtobufLibrary();
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}
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};
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static ProtobufRAII s_protobuf;
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namespace protorpc {
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typedef std::shared_ptr<protorpc::Request> RequestPtr;
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typedef std::shared_ptr<protorpc::Response> ResponsePtr;
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enum ProtoRpcResult {
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kRpcSuccess = 0,
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kRpcTimeout = -1,
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kRpcError = -2,
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kRpcNoResult = -3,
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kRpcParseError = -4,
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};
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class ProtoRpcContext {
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public:
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protorpc::RequestPtr req;
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protorpc::ResponsePtr res;
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private:
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std::mutex _mutex;
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std::condition_variable _cond;
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public:
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void wait(int timeout_ms) {
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std::unique_lock<std::mutex> locker(_mutex);
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_cond.wait_for(locker, std::chrono::milliseconds(timeout_ms));
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}
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void notify() {
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_cond.notify_one();
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}
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};
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typedef std::shared_ptr<ProtoRpcContext> ContextPtr;
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class ProtoRpcClient : public TcpClient {
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public:
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ProtoRpcClient() : TcpClient()
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{
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connect_state = kInitialized;
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setConnectTimeout(5000);
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reconn_setting_t reconn;
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reconn_setting_init(&reconn);
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reconn.min_delay = 1000;
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reconn.max_delay = 10000;
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reconn.delay_policy = 2;
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setReconnect(&reconn);
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// init protorpc_unpack_setting
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unpack_setting_t protorpc_unpack_setting;
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memset(&protorpc_unpack_setting, 0, sizeof(unpack_setting_t));
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protorpc_unpack_setting.mode = UNPACK_BY_LENGTH_FIELD;
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protorpc_unpack_setting.package_max_length = DEFAULT_PACKAGE_MAX_LENGTH;
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protorpc_unpack_setting.body_offset = PROTORPC_HEAD_LENGTH;
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protorpc_unpack_setting.length_field_offset = PROTORPC_HEAD_LENGTH_FIELD_OFFSET;
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protorpc_unpack_setting.length_field_bytes = PROTORPC_HEAD_LENGTH_FIELD_BYTES;
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protorpc_unpack_setting.length_field_coding = ENCODE_BY_BIG_ENDIAN;
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setUnpack(&protorpc_unpack_setting);
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onConnection = [this](const SocketChannelPtr& channel) {
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std::string peeraddr = channel->peeraddr();
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if (channel->isConnected()) {
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connect_state = kConnected;
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printf("connected to %s! connfd=%d\n", peeraddr.c_str(), channel->fd());
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} else {
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connect_state = kDisconnectd;
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printf("disconnected to %s! connfd=%d\n", peeraddr.c_str(), channel->fd());
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}
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};
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onMessage = [this](const SocketChannelPtr& channel, Buffer* buf) {
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// protorpc_unpack
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protorpc_message msg;
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memset(&msg, 0, sizeof(msg));
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int packlen = protorpc_unpack(&msg, buf->data(), buf->size());
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if (packlen < 0) {
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printf("protorpc_unpack failed!\n");
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return;
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}
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assert(packlen == buf->size());
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if (protorpc_head_check(&msg.head) != 0) {
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printf("protorpc_head_check failed!\n");
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return;
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}
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// Response::ParseFromArray
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auto res = std::make_shared<protorpc::Response>();
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if (!res->ParseFromArray(msg.body, msg.head.length)) {
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return;
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}
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// id => res
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calls_mutex.lock();
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auto iter = calls.find(res->id());
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if (iter == calls.end()) {
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return;
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}
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auto ctx = iter->second;
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calls_mutex.unlock();
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ctx->res = res;
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ctx->notify();
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};
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}
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int connect(int port, const char* host = "127.0.0.1") {
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createsocket(port, host);
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connect_state = kConnecting;
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start();
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return 0;
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}
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protorpc::ResponsePtr call(protorpc::RequestPtr& req, int timeout_ms = 10000) {
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if (connect_state != kConnected) {
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return NULL;
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}
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static std::atomic<uint64_t> s_id = ATOMIC_VAR_INIT(0);
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req->set_id(++s_id);
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req->id();
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auto ctx = std::make_shared<protorpc::ProtoRpcContext>();
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ctx->req = req;
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calls[req->id()] = ctx;
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// Request::SerializeToArray + protorpc_pack
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protorpc_message msg;
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protorpc_message_init(&msg);
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msg.head.length = req->ByteSize();
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int packlen = protorpc_package_length(&msg.head);
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unsigned char* writebuf = NULL;
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HV_STACK_ALLOC(writebuf, packlen);
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packlen = protorpc_pack(&msg, writebuf, packlen);
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if (packlen > 0) {
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printf("%s\n", req->DebugString().c_str());
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req->SerializeToArray(writebuf + PROTORPC_HEAD_LENGTH, msg.head.length);
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channel->write(writebuf, packlen);
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}
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HV_STACK_FREE(writebuf);
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// wait until response come or timeout
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ctx->wait(timeout_ms);
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auto res = ctx->res;
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calls_mutex.lock();
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calls.erase(req->id());
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calls_mutex.unlock();
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if (res == NULL) {
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printf("RPC timeout!\n");
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} else if (res->has_error()) {
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printf("RPC error:\n%s\n", res->error().DebugString().c_str());
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}
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return res;
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}
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int calc(const char* method, int num1, int num2, int& out) {
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auto req = std::make_shared<protorpc::Request>();
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// method
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req->set_method(method);
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// params
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protorpc::CalcParam param1, param2;
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param1.set_num(num1);
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param2.set_num(num2);
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req->add_params()->assign(param1.SerializeAsString());
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req->add_params()->assign(param2.SerializeAsString());
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auto res = call(req);
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if (res == NULL) return kRpcTimeout;
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if (res->has_error()) return kRpcError;
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if (res->result().empty()) return kRpcNoResult;
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protorpc::CalcResult result;
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if (!result.ParseFromString(res->result())) return kRpcParseError;
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out = result.num();
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return kRpcSuccess;
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}
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int login(const protorpc::LoginParam& param, protorpc::LoginResult* result) {
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auto req = std::make_shared<protorpc::Request>();
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// method
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req->set_method("login");
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// params
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req->add_params()->assign(param.SerializeAsString());
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auto res = call(req);
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if (res == NULL) return kRpcTimeout;
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if (res->has_error()) return kRpcError;
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if (res->result().empty()) return kRpcNoResult;
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if (!result->ParseFromString(res->result())) return kRpcParseError;
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return kRpcSuccess;
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}
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enum {
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kInitialized,
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kConnecting,
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kConnected,
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kDisconnectd,
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} connect_state;
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std::map<uint64_t, protorpc::ContextPtr> calls;
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std::mutex calls_mutex;
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};
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}
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int main(int argc, char** argv) {
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if (argc < 6) {
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printf("Usage: %s host port method param1 param2\n", argv[0]);
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printf("method = [add, sub, mul, div]\n");
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printf("Examples:\n");
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printf(" %s 127.0.0.1 1234 add 1 2\n", argv[0]);
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printf(" %s 127.0.0.1 1234 div 1 0\n", argv[0]);
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return -10;
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}
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const char* host = argv[1];
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int port = atoi(argv[2]);
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const char* method = argv[3];
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const char* param1 = argv[4];
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const char* param2 = argv[5];
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protorpc::ProtoRpcClient cli;
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cli.connect(port, host);
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while (cli.connect_state == protorpc::ProtoRpcClient::kConnecting) hv_msleep(1);
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if (cli.connect_state == protorpc::ProtoRpcClient::kDisconnectd) {
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return -20;
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}
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// test login
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{
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protorpc::LoginParam param;
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param.set_username("admin");
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param.set_password("123456");
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protorpc::LoginResult result;
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if (cli.login(param, &result) == protorpc::kRpcSuccess) {
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printf("login success!\n");
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printf("%s\n", result.DebugString().c_str());
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} else {
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printf("login failed!\n");
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}
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}
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// test calc
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{
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int num1 = atoi(param1);
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int num2 = atoi(param2);
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int result = 0;
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if (cli.calc(method, num1, num2, result) == protorpc::kRpcSuccess) {
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printf("calc success!\n");
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printf("%d %s %d = %d\n", num1, method, num2, result);
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} else {
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printf("calc failed!\n");
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}
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}
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return 0;
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}
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