mirror of
https://github.com/wangyu-/UDPspeeder.git
synced 2025-01-18 22:09:35 +08:00
530 lines
12 KiB
C++
530 lines
12 KiB
C++
/*
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* common.h
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*
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* Created on: Jul 29, 2017
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* Author: wangyu
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*/
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#ifndef COMMON_H_
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#define COMMON_H_
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//#define __STDC_FORMAT_MACROS 1
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#include <inttypes.h>
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#include <stdio.h>
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#include <string.h>
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#include <stdlib.h>
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#include <getopt.h>
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#include <unistd.h>
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#include <errno.h>
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <stdlib.h> //for exit(0);
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#include <errno.h> //For errno - the error number
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//#include <netinet/tcp.h> //Provides declarations for tcp header
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//#include <netinet/udp.h>
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//#include <netinet/ip.h> //Provides declarations for ip header
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//#include <netinet/if_ether.h>
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#include <fcntl.h>
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#include <sys/time.h>
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#include <time.h>
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//#include <netinet/in.h>
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//#include <net/if.h>
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#include <stdarg.h>
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#include <assert.h>
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#if !defined(NO_LIBEV_EMBED)
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#include <my_ev.h>
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#else
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#include "ev.h"
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#endif
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#if defined(__MINGW32__)
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#include <winsock2.h>
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#include <ws2tcpip.h>
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typedef int socklen_t;
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#else
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#include <sys/socket.h>
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#include <sys/types.h>
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#include <sys/ioctl.h>
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#include <arpa/inet.h>
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#include <netinet/in.h>
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#endif
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#include <unordered_map>
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#include <unordered_set>
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#include <map>
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#include <list>
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#include <string>
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#include <vector>
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using namespace std;
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typedef unsigned long long u64_t; // this works on most platform,avoid using the PRId64
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typedef long long i64_t;
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typedef unsigned int u32_t;
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typedef int i32_t;
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typedef unsigned short u16_t;
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typedef short i16_t;
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#if defined(__MINGW32__)
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int inet_pton(int af, const char *src, void *dst);
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const char *inet_ntop(int af, const void *src, char *dst, socklen_t size);
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#define setsockopt(a, b, c, d, e) setsockopt(a, b, c, (const char *)(d), e)
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#endif
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char *get_sock_error();
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int get_sock_errno();
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int init_ws();
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#if defined(__MINGW32__)
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typedef SOCKET my_fd_t;
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inline int sock_close(my_fd_t fd) {
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return closesocket(fd);
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}
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#else
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typedef int my_fd_t;
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inline int sock_close(my_fd_t fd) {
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return close(fd);
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}
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#endif
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struct my_itimerspec {
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struct timespec it_interval; /* Timer interval */
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struct timespec it_value; /* Initial expiration */
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};
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typedef u64_t my_time_t;
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const int max_addr_len = 100;
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const int max_data_len = 3600;
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const int buf_len = max_data_len + 200;
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const int default_mtu = 1250;
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// const u32_t timer_interval=400;
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////const u32_t conv_timeout=180000;
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// const u32_t conv_timeout=40000;//for test
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const u32_t conv_timeout = 180000;
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const int max_conv_num = 10000;
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const int max_conn_num = 200;
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/*
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const u32_t max_handshake_conn_num=10000;
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const u32_t max_ready_conn_num=1000;
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//const u32_t anti_replay_window_size=1000;
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const u32_t client_handshake_timeout=5000;
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const u32_t client_retry_interval=1000;
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const u32_t server_handshake_timeout=10000;// this should be much longer than clients. client retry initially ,server retry passtively*/
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const int conv_clear_ratio = 30; // conv grabage collecter check 1/30 of all conv one time
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const int conn_clear_ratio = 50;
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const int conv_clear_min = 1;
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const int conn_clear_min = 1;
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const u32_t conv_clear_interval = 1000;
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const u32_t conn_clear_interval = 1000;
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const i32_t max_fail_time = 0; // disable
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const u32_t heartbeat_interval = 1000;
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const u32_t timer_interval = 400; // this should be smaller than heartbeat_interval and retry interval;
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// const uint32_t conv_timeout=120000; //120 second
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// const u32_t conv_timeout=120000; //for test
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const u32_t client_conn_timeout = 10000;
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const u32_t client_conn_uplink_timeout = client_conn_timeout + 2000;
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// const uint32_t server_conn_timeout=conv_timeout+60000;//this should be 60s+ longer than conv_timeout,so that conv_manager can destruct convs gradually,to avoid latency glicth
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const u32_t server_conn_timeout = conv_timeout + 20000; // for test
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extern int about_to_exit;
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enum raw_mode_t { mode_faketcp = 0,
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mode_udp,
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mode_icmp,
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mode_end };
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extern raw_mode_t raw_mode;
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enum program_mode_t { unset_mode = 0,
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client_mode,
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server_mode };
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extern program_mode_t program_mode;
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extern unordered_map<int, const char *> raw_mode_tostring;
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enum working_mode_t { unset_working_mode = 0,
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tunnel_mode,
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tun_dev_mode };
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extern working_mode_t working_mode;
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extern int socket_buf_size;
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// typedef u32_t id_t;
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typedef u64_t iv_t;
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typedef u64_t padding_t;
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typedef u64_t anti_replay_seq_t;
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typedef u64_t fd64_t;
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// enum dest_type{none=0,type_fd64_ip_port,type_fd64,type_fd64_ip_port_conv,type_fd64_conv/*,type_fd*/};
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enum dest_type { none = 0,
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type_fd64_addr,
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type_fd64,
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type_fd,
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type_write_fd,
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type_fd_addr /*,type_fd*/ };
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/*
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struct ip_port_t
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{
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u32_t ip;
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int port;
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void from_u64(u64_t u64);
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u64_t to_u64();
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char * to_s();
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};
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struct fd64_ip_port_t
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{
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fd64_t fd64;
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ip_port_t ip_port;
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};
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struct fd_ip_port_t
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{
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int fd;
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ip_port_t ip_port;
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};*/
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struct pseudo_header {
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u32_t source_address;
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u32_t dest_address;
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unsigned char placeholder;
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unsigned char protocol;
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unsigned short tcp_length;
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};
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u32_t djb2(unsigned char *str, int len);
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u32_t sdbm(unsigned char *str, int len);
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struct address_t // TODO scope id
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{
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struct hash_function {
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u32_t operator()(const address_t &key) const {
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return sdbm((unsigned char *)&key.inner, sizeof(key.inner));
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}
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};
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union storage_t // sockaddr_storage is too huge, we dont use it.
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{
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sockaddr_in ipv4;
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sockaddr_in6 ipv6;
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};
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storage_t inner;
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/*address_t()
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{
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clear();
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}*/
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void clear() {
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memset(&inner, 0, sizeof(inner));
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}
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/*
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int from_ip_port(u32_t ip, int port)
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{
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clear();
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inner.ipv4.sin_family=AF_INET;
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inner.ipv4.sin_port=htons(port);
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inner.ipv4.sin_addr.s_addr=ip;
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return 0;
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}*/
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int from_ip_port_new(int type, void *ip, int port) {
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clear();
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if (type == AF_INET) {
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inner.ipv4.sin_family = AF_INET;
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inner.ipv4.sin_port = htons(port);
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inner.ipv4.sin_addr.s_addr = *((u32_t *)ip);
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} else if (type == AF_INET6) {
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inner.ipv6.sin6_family = AF_INET6;
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inner.ipv6.sin6_port = htons(port);
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inner.ipv6.sin6_addr = *((in6_addr *)ip);
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}
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return 0;
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}
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int from_str(char *str);
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int from_str_ip_only(char *str);
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int from_sockaddr(sockaddr *, socklen_t);
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char *get_str();
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void to_str(char *);
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inline int is_vaild() {
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u32_t ret = ((sockaddr *)&inner)->sa_family;
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return (ret == AF_INET || ret == AF_INET6);
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}
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inline u32_t get_type() {
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assert(is_vaild());
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u32_t ret = ((sockaddr *)&inner)->sa_family;
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return ret;
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}
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inline u32_t get_len() {
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u32_t type = get_type();
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switch (type) {
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case AF_INET:
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return sizeof(sockaddr_in);
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case AF_INET6:
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return sizeof(sockaddr_in6);
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default:
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assert(0 == 1);
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}
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return -1;
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}
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inline u32_t get_port() {
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u32_t type = get_type();
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switch (type) {
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case AF_INET:
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return ntohs(inner.ipv4.sin_port);
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case AF_INET6:
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return ntohs(inner.ipv6.sin6_port);
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default:
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assert(0 == 1);
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}
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return -1;
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}
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inline void set_port(int port) {
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u32_t type = get_type();
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switch (type) {
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case AF_INET:
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inner.ipv4.sin_port = htons(port);
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break;
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case AF_INET6:
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inner.ipv6.sin6_port = htons(port);
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break;
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default:
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assert(0 == 1);
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}
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return;
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}
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bool operator==(const address_t &b) const {
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// return this->data==b.data;
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return memcmp(&this->inner, &b.inner, sizeof(this->inner)) == 0;
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}
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int new_connected_udp_fd();
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char *get_ip();
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};
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namespace std {
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template <>
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struct hash<address_t> {
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std::size_t operator()(const address_t &key) const {
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// return address_t::hash_function(k);
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return sdbm((unsigned char *)&key.inner, sizeof(key.inner));
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}
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};
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} // namespace std
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struct fd64_addr_t {
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fd64_t fd64;
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address_t addr;
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};
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struct fd_addr_t {
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int fd;
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address_t addr;
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};
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union inner_t {
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fd64_t fd64;
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int fd;
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fd64_addr_t fd64_addr;
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fd_addr_t fd_addr;
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};
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struct dest_t {
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dest_type type;
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inner_t inner;
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u32_t conv;
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int cook = 0;
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};
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struct fd_info_t {
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address_t addr;
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ev_io io_watcher;
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};
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u64_t get_current_time();
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// u64_t get_current_time_rough();
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u64_t get_current_time_us();
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u64_t pack_u64(u32_t a, u32_t b);
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u32_t get_u64_h(u64_t a);
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u32_t get_u64_l(u64_t a);
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void write_u16(char *, u16_t a);
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u16_t read_u16(char *);
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void write_u32(char *, u32_t a);
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u32_t read_u32(char *);
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void write_u64(char *, u64_t a);
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u64_t read_uu64(char *);
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char *my_ntoa(u32_t ip);
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void myexit(int a);
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void init_random_number_fd();
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u64_t get_fake_random_number_64();
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u32_t get_fake_random_number();
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u32_t get_fake_random_number_nz();
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u64_t ntoh64(u64_t a);
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u64_t hton64(u64_t a);
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bool larger_than_u16(uint16_t a, uint16_t b);
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bool larger_than_u32(u32_t a, u32_t b);
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void setnonblocking(int sock);
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int set_buf_size(int fd, int socket_buf_size);
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unsigned short csum(const unsigned short *ptr, int nbytes);
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unsigned short tcp_csum(const pseudo_header &ph, const unsigned short *ptr, int nbytes);
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void signal_handler(int sig);
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// int numbers_to_char(id_t id1,id_t id2,id_t id3,char * &data,int &len);
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// int char_to_numbers(const char * data,int len,id_t &id1,id_t &id2,id_t &id3);
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void myexit(int a);
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int add_iptables_rule(char *);
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int clear_iptables_rule();
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void get_fake_random_chars(char *s, int len);
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int random_between(u32_t a, u32_t b);
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int set_timer_ms(int epollfd, int &timer_fd, u32_t timer_interval);
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int round_up_div(int a, int b);
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int create_fifo(char *file);
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/*
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int create_new_udp(int &new_udp_fd,int remote_address_uint32,int remote_port);
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*/
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int new_listen_socket(int &fd, u32_t ip, int port);
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int new_connected_socket(int &fd, u32_t ip, int port);
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int new_listen_socket2(int &fd, address_t &addr);
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int new_connected_socket2(int &fd, address_t &addr, address_t *bind_addr, char *out_interface);
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struct not_copy_able_t {
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not_copy_able_t() {
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}
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not_copy_able_t(const not_copy_able_t &other) {
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assert(0 == 1);
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}
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const not_copy_able_t &operator=(const not_copy_able_t &other) {
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assert(0 == 1);
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return other;
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}
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};
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template <class key_t>
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struct lru_collector_t : not_copy_able_t {
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// typedef void* key_t;
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//#define key_t void*
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struct lru_pair_t {
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key_t key;
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my_time_t ts;
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};
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unordered_map<key_t, typename list<lru_pair_t>::iterator> mp;
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list<lru_pair_t> q;
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int update(key_t key) {
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assert(mp.find(key) != mp.end());
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auto it = mp[key];
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q.erase(it);
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my_time_t value = get_current_time();
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if (!q.empty()) {
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assert(value >= q.front().ts);
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}
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lru_pair_t tmp;
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tmp.key = key;
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tmp.ts = value;
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q.push_front(tmp);
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mp[key] = q.begin();
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return 0;
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}
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int new_key(key_t key) {
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assert(mp.find(key) == mp.end());
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my_time_t value = get_current_time();
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if (!q.empty()) {
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assert(value >= q.front().ts);
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}
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lru_pair_t tmp;
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tmp.key = key;
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tmp.ts = value;
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q.push_front(tmp);
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mp[key] = q.begin();
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return 0;
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}
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int size() {
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return q.size();
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}
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int empty() {
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return q.empty();
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}
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void clear() {
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mp.clear();
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q.clear();
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}
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my_time_t ts_of(key_t key) {
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assert(mp.find(key) != mp.end());
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return mp[key]->ts;
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}
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my_time_t peek_back(key_t &key) {
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assert(!q.empty());
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auto it = q.end();
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it--;
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key = it->key;
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return it->ts;
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}
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void erase(key_t key) {
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assert(mp.find(key) != mp.end());
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q.erase(mp[key]);
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mp.erase(key);
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}
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/*
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void erase_back()
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{
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assert(!q.empty());
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auto it=q.end(); it--;
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key_t key=it->key;
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erase(key);
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}*/
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};
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vector<string> string_to_vec(const char *s, const char *sp);
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#endif /* COMMON_H_ */
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