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			326 lines
		
	
	
		
			9.9 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			326 lines
		
	
	
		
			9.9 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
/*
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 * connection.h
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 *
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 *  Created on: Sep 23, 2017
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 *      Author: root
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 */
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#ifndef CONNECTION_H_
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#define CONNECTION_H_
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extern int disable_anti_replay;
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#include "connection.h"
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#include "common.h"
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#include "log.h"
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#include "delay_manager.h"
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#include "fd_manager.h"
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#include "fec_manager.h"
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extern int report_interval;
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const int disable_conv_clear = 0;
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void server_clear_function(u64_t u64);
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template <class T>
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struct conv_manager_t  // manage the udp connections
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{
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    // typedef hash_map map;
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    unordered_map<T, u32_t> data_to_conv;  // conv and u64 are both supposed to be uniq
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    unordered_map<u32_t, T> conv_to_data;
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    lru_collector_t<u32_t> lru;
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    // unordered_map<u32_t,u64_t> conv_last_active_time;
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    // unordered_map<u32_t,u64_t>::iterator clear_it;
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    void (*additional_clear_function)(T data) = 0;
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    long long last_clear_time;
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    conv_manager_t() {
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        // clear_it=conv_last_active_time.begin();
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        long long last_clear_time = 0;
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        additional_clear_function = 0;
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    }
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    ~conv_manager_t() {
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        clear();
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    }
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    int get_size() {
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        return conv_to_data.size();
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    }
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    void reserve() {
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        data_to_conv.reserve(10007);
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        conv_to_data.reserve(10007);
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        // conv_last_active_time.reserve(10007);
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        lru.mp.reserve(10007);
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    }
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    void clear() {
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        if (disable_conv_clear) return;
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        if (additional_clear_function != 0) {
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            for (auto it = conv_to_data.begin(); it != conv_to_data.end(); it++) {
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                // int fd=int((it->second<<32u)>>32u);
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                additional_clear_function(it->second);
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            }
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        }
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        data_to_conv.clear();
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        conv_to_data.clear();
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        lru.clear();
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        // conv_last_active_time.clear();
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        // clear_it=conv_last_active_time.begin();
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    }
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    u32_t get_new_conv() {
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        u32_t conv = get_fake_random_number_nz();
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        while (conv_to_data.find(conv) != conv_to_data.end()) {
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            conv = get_fake_random_number_nz();
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        }
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        return conv;
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    }
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    int is_conv_used(u32_t conv) {
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        return conv_to_data.find(conv) != conv_to_data.end();
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    }
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    int is_data_used(T data) {
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        return data_to_conv.find(data) != data_to_conv.end();
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    }
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    u32_t find_conv_by_data(T data) {
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        return data_to_conv[data];
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    }
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    T find_data_by_conv(u32_t conv) {
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        return conv_to_data[conv];
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    }
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    int update_active_time(u32_t conv) {
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        // return conv_last_active_time[conv]=get_current_time();
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        lru.update(conv);
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        return 0;
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    }
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    int insert_conv(u32_t conv, T data) {
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        data_to_conv[data] = conv;
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        conv_to_data[conv] = data;
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        // conv_last_active_time[conv]=get_current_time();
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        lru.new_key(conv);
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        return 0;
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    }
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    int erase_conv(u32_t conv) {
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        if (disable_conv_clear) return 0;
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        T data = conv_to_data[conv];
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        if (additional_clear_function != 0) {
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            additional_clear_function(data);
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        }
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        conv_to_data.erase(conv);
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        data_to_conv.erase(data);
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        // conv_last_active_time.erase(conv);
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        lru.erase(conv);
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        return 0;
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    }
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    int clear_inactive(char *info = 0) {
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        if (get_current_time() - last_clear_time > conv_clear_interval) {
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            last_clear_time = get_current_time();
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            return clear_inactive0(info);
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        }
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        return 0;
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    }
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    int clear_inactive0(char *info) {
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        if (disable_conv_clear) return 0;
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        unordered_map<u32_t, u64_t>::iterator it;
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        unordered_map<u32_t, u64_t>::iterator old_it;
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        // map<uint32_t,uint64_t>::iterator it;
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        int cnt = 0;
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        // it=clear_it;
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        int size = lru.size();
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        int num_to_clean = size / conv_clear_ratio + conv_clear_min;  // clear 1/10 each time,to avoid latency glitch
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        num_to_clean = min(num_to_clean, size);
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        my_time_t current_time = get_current_time();
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        for (;;) {
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            if (cnt >= num_to_clean) break;
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            if (lru.empty()) break;
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            u32_t conv;
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            my_time_t ts = lru.peek_back(conv);
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            if (current_time - ts < conv_timeout) break;
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            erase_conv(conv);
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            if (info == 0) {
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                mylog(log_info, "conv %x cleared\n", conv);
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            } else {
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                mylog(log_info, "[%s]conv %x cleared\n", info, conv);
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            }
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            cnt++;
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        }
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        return 0;
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    }
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    /*
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conv_manager_t();
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~conv_manager_t();
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int get_size();
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void reserve();
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void clear();
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u32_t get_new_conv();
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int is_conv_used(u32_t conv);
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int is_u64_used(T u64);
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u32_t find_conv_by_u64(T u64);
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T find_u64_by_conv(u32_t conv);
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int update_active_time(u32_t conv);
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int insert_conv(u32_t conv,T u64);
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int erase_conv(u32_t conv);
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int clear_inactive(char * ip_port=0);
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int clear_inactive0(char * ip_port);*/
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};  // g_conv_manager;
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struct inner_stat_t {
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    u64_t input_packet_num;
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    u64_t input_packet_size;
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    u64_t output_packet_num;
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    u64_t output_packet_size;
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};
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struct stat_t {
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    u64_t last_report_time;
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    inner_stat_t normal_to_fec;
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    inner_stat_t fec_to_normal;
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    stat_t() {
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        clear();
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    }
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    void clear(){
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        memset(this, 0, sizeof(stat_t));
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    }
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    void report_as_client() {
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        if (report_interval != 0 && get_current_time() - last_report_time > u64_t(report_interval) * 1000) {
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            last_report_time = get_current_time();
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            inner_stat_t &a = normal_to_fec;
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            inner_stat_t &b = fec_to_normal;
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            mylog(log_info, "[report]client-->server:(original:%llu pkt;%llu byte) (fec:%llu pkt,%llu byte)  server-->client:(original:%llu pkt;%llu byte) (fec:%llu pkt;%llu byte)\n",
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                  a.input_packet_num, a.input_packet_size, a.output_packet_num, a.output_packet_size,
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                  b.output_packet_num, b.output_packet_size, b.input_packet_num, b.input_packet_size);
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        }
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    }
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    void report_as_server(address_t &addr) {
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        if (report_interval != 0 && get_current_time() - last_report_time > u64_t(report_interval) * 1000) {
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            last_report_time = get_current_time();
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            inner_stat_t &a = fec_to_normal;
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            inner_stat_t &b = normal_to_fec;
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            mylog(log_info, "[report][%s]client-->server:(original:%llu pkt;%llu byte) (fec:%llu pkt;%llu byte)  server-->client:(original:%llu pkt;%llu byte) (fec:%llu pkt;%llu byte)\n",
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                  addr.get_str(),
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                  a.output_packet_num, a.output_packet_size, a.input_packet_num, a.input_packet_size,
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                  b.input_packet_num, b.input_packet_size, b.output_packet_num, b.output_packet_size);
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        }
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    }
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};
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struct conn_info_t : not_copy_able_t  // stores info for a raw connection.for client ,there is only one connection,for server there can be thousand of connection since server can
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// handle multiple clients
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{
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    union tmp_union_t {
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        conv_manager_t<address_t> c;
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        conv_manager_t<u64_t> s;
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        // avoid templates here and there, avoid pointer and type cast
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        tmp_union_t() {
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            if (program_mode == client_mode) {
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                new (&c) conv_manager_t<address_t>();
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            } else {
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                assert(program_mode == server_mode);
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                new (&s) conv_manager_t<u64_t>();
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            }
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        }
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        ~tmp_union_t() {
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            if (program_mode == client_mode) {
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                c.~conv_manager_t<address_t>();
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            } else {
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                assert(program_mode == server_mode);
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                s.~conv_manager_t<u64_t>();
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            }
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        }
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    } conv_manager;
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    fec_encode_manager_t fec_encode_manager;
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    fec_decode_manager_t fec_decode_manager;
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    ev_timer timer;
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    // my_timer_t timer;
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    u64_t last_active_time;
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    stat_t stat;
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    struct ev_loop *loop = 0;
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    int local_listen_fd;
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    int remote_fd;       // only used for client
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    fd64_t remote_fd64;  // only used for client
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    // ip_port_t ip_port;
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    address_t addr;  // only used for server
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    conn_info_t() {
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        if (program_mode == server_mode) {
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            conv_manager.s.additional_clear_function = server_clear_function;
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        } else {
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            assert(program_mode == client_mode);
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        }
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    }
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    ~conn_info_t() {
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        if (loop)
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            ev_timer_stop(loop, &timer);
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    }
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    void update_active_time() {
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        last_active_time = get_current_time();
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    }
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    /*
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    conn_info_t(const conn_info_t &b)
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    {
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            assert(0==1);
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    }*/
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};
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/*
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struct conn_manager_t  //manager for connections. for client,we dont need conn_manager since there is only one connection.for server we use one conn_manager for all connections
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{
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        unordered_map<u64_t,conn_info_t*> mp;//<ip,port> to conn_info_t;
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        unordered_map<u64_t,conn_info_t*>::iterator clear_it;
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        long long last_clear_time;
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        conn_manager_t();
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        conn_manager_t(const conn_info_t &b)
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        {
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                assert(0==1);
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        }
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        int exist(ip_port_t);
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        conn_info_t *& find_p(ip_port_t);  //be aware,the adress may change after rehash
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        conn_info_t & find(ip_port_t) ; //be aware,the adress may change after rehash
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        int insert(ip_port_t);
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        int erase(unordered_map<u64_t,conn_info_t*>::iterator erase_it);
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        int clear_inactive();
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        int clear_inactive0();
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};*/
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struct conn_manager_t  // manager for connections. for client,we dont need conn_manager since there is only one connection.for server we use one conn_manager for all connections
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{
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    unordered_map<address_t, conn_info_t *> mp;  // put it at end so that it de-consturcts first
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    unordered_map<address_t, conn_info_t *>::iterator clear_it;
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    long long last_clear_time;
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    conn_manager_t();
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    int exist(address_t addr);
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    conn_info_t *&find_insert_p(address_t addr);  // be aware,the adress may change after rehash //not true?
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    conn_info_t &find_insert(address_t addr);     // be aware,the adress may change after rehash
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    int erase(unordered_map<address_t, conn_info_t *>::iterator erase_it);
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    int clear_inactive();
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    int clear_inactive0();
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};
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extern conn_manager_t conn_manager;
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#endif /* CONNECTION_H_ */
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