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554 lines
16 KiB
554 lines
16 KiB
// Comprehensive stress test for socket-like API |
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#include <unistd.h> |
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#include <sys/socket.h> |
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#include <arpa/inet.h> |
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#include <arpa/inet.h> |
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#include <string.h> |
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#include <netinet/in.h> |
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#include <netdb.h> |
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#include <stdio.h> |
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#include <stdlib.h> |
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#include <string> |
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#include "ZeroTierSDK.h" |
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#define PASSED 0 |
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#define FAILED -1 |
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std::string str = "welcome to the machine"; |
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// [] random |
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// [OK] simple client ipv4 |
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// [OK] simple server ipv4 |
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// [?] simple client ipv6 |
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// [?] simple server ipv6 |
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// [OK] sustained client ipv4 |
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// [OK] sustained server ipv4 |
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// [?] sustained client ipv6 |
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// [?] sustained server ipv6 |
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// [] comprehensive client ipv4 |
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// [] comprehensive server ipv6 |
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// --- |
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// comprehensive client addr port |
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// comprehensive server port |
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// simple [4|6] client addr port |
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// simple [4|6] server port |
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/****************************************************************************/ |
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/* SIMPLE CLIENT */ |
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/****************************************************************************/ |
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// |
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int ipv4_tcp_client_test(char *path, char *nwid, struct sockaddr_in *addr, int port) |
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{ |
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int sockfd, err; |
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if((sockfd = zts_socket(AF_INET, SOCK_STREAM, 0)) < 0) { |
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printf("error creating ZeroTier socket"); |
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exit(0); |
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} |
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if((err = zts_connect(sockfd, (const struct sockaddr *)addr, sizeof(addr))) < 0) { |
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printf("error connecting to remote host (%d)\n", err); |
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exit(0); |
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} |
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int wrote = zts_write(sockfd, str.c_str(), str.length()); |
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err = zts_close(sockfd); |
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return (wrote == str.length() && !err) ? PASSED : FAILED; // if wrote correct number of bytes |
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} |
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// |
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int ipv6_tcp_client_test(char *path, char *nwid, struct sockaddr_in6 *addr, int port) |
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{ |
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int sockfd, err; |
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if((sockfd = zts_socket(AF_INET, SOCK_STREAM, 0)) < 0) { |
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printf("error creating ZeroTier socket"); |
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exit(0); |
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} |
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if((err = zts_connect(sockfd, (const struct sockaddr *)addr, sizeof(addr))) < 0) { |
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printf("error connecting to remote host (%d)\n", err); |
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exit(0); |
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} |
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int wrote = zts_write(sockfd, str.c_str(), str.length()); |
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err = zts_close(sockfd); |
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return (wrote == str.length() && !err) ? PASSED : FAILED; // if wrote correct number of bytes |
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} |
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/****************************************************************************/ |
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/* SIMPLE SERVER */ |
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/****************************************************************************/ |
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// |
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int ipv4_tcp_server_test(char *path, char *nwid, struct sockaddr_in *addr, int port) |
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{ |
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int sockfd, err; |
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if((sockfd = zts_socket(AF_INET, SOCK_STREAM, 0)) < 0) { |
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printf("error creating ZeroTier socket"); |
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exit(0); |
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} |
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if((err = zts_bind(sockfd, (struct sockaddr *)addr, sizeof(struct sockaddr_in)) < 0)) { |
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printf("error binding to interface (%d)\n", err); |
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exit(0); |
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} |
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if((err = zts_listen(sockfd, 1)) < 0) { |
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printf("error placing socket in LISTENING state (%d)\n", err); |
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exit(0); |
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} |
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// TODO: handle new address |
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if((err = zts_accept(sockfd, (struct sockaddr *)&addr, (socklen_t *)sizeof(addr)) < 0)) { |
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printf("error accepting connection (%d)\n", err); |
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exit(0); |
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} |
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int wrote = zts_write(sockfd, str.c_str(), str.length()); |
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err = zts_close(sockfd); |
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return (wrote == str.length() && !err) ? PASSED : FAILED; // if wrote correct number of bytes |
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} |
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// |
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int ipv6_tcp_server_test(char *path, char *nwid, struct sockaddr_in6 *addr, int port) |
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{ |
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int sockfd, err; |
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if((sockfd = zts_socket(AF_INET, SOCK_STREAM, 0)) < 0) { |
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printf("error creating ZeroTier socket"); |
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exit(0); |
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} |
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if((err = zts_bind(sockfd, (struct sockaddr *)addr, sizeof(struct sockaddr_in6)) < 0)) { |
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printf("error binding to interface (%d)\n", err); |
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exit(0); |
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} |
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if((err = zts_listen(sockfd, 1)) < 0) { |
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printf("error placing socket in LISTENING state (%d)\n", err); |
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exit(0); |
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} |
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// TODO: handle new address |
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if((err = zts_accept(sockfd, (struct sockaddr *)&addr, (socklen_t *)sizeof(addr)) < 0)) { |
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printf("error accepting connection (%d)\n", err); |
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exit(0); |
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} |
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int wrote = zts_write(sockfd, str.c_str(), str.length()); |
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err = zts_close(sockfd); |
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return (wrote == str.length() && !err) ? PASSED : FAILED; // if wrote correct number of bytes |
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} |
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/****************************************************************************/ |
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/* SUSTAINED CLIENT */ |
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/****************************************************************************/ |
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// Maintain transfer for n_seconds OR n_times |
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int ipv4_tcp_client_sustained_test(char *path, char *nwid, struct sockaddr_in *addr, int port, int n_seconds, int n_times) |
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{ |
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int sockfd, err; |
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int msg_len = str.length(); |
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int wrote = 0; |
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if((sockfd = zts_socket(AF_INET, SOCK_STREAM, 0)) < 0) { |
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printf("error creating ZeroTier socket"); |
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exit(0); |
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} |
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if((err = zts_connect(sockfd, (const struct sockaddr *)addr, sizeof(addr))) < 0) { |
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printf("error connecting to remote host (%d)\n", err); |
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exit(0); |
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} |
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if(n_seconds) { |
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/* |
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printf("testing for (%d) seconds\n", n_seconds); |
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int wrote; |
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for(int i=0; i<n_seconds; i++) { |
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wrote = zts_write(sockfd, str.c_str(), str.length()); |
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printf("wrote = %d\n", wrote); |
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} |
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*/ |
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} |
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if(n_times) { |
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printf("testing (%d) times\n", n_seconds); |
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for(int i=0; i<n_times; i++) { |
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wrote += zts_write(sockfd, str.c_str(), str.length()); |
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printf("[%d] wrote = %d\n", i, wrote); |
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} |
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} |
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err = zts_close(sockfd); |
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return (wrote == (str.length()*n_times) && !err) ? PASSED : FAILED; // if wrote correct number of bytes |
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} |
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// Maintain transfer for n_seconds OR n_times |
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int ipv6_tcp_client_sustained_test(char *path, char *nwid, struct sockaddr_in6 *addr, int port, int n_seconds, int n_times) |
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{ |
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int sockfd, err; |
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int msg_len = str.length(); |
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int wrote = 0; |
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if((sockfd = zts_socket(AF_INET, SOCK_STREAM, 0)) < 0) { |
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printf("error creating ZeroTier socket"); |
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exit(0); |
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} |
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if((err = zts_connect(sockfd, (const struct sockaddr *)addr, sizeof(addr))) < 0) { |
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printf("error connecting to remote host (%d)\n", err); |
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exit(0); |
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} |
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if(n_seconds) { |
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/* |
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printf("testing for (%d) seconds\n", n_seconds); |
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int wrote; |
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for(int i=0; i<n_seconds; i++) { |
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wrote = zts_write(sockfd, str.c_str(), str.length()); |
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printf("wrote = %d\n", wrote); |
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} |
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*/ |
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} |
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if(n_times) { |
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printf("testing (%d) times\n", n_seconds); |
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for(int i=0; i<n_times; i++) { |
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wrote += zts_write(sockfd, str.c_str(), str.length()); |
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printf("[%d] wrote = %d\n", i, wrote); |
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} |
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} |
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err = zts_close(sockfd); |
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return (wrote == (str.length()*n_times) && !err) ? PASSED : FAILED; // if wrote correct number of bytes |
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} |
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/****************************************************************************/ |
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/* SUSTAINED SERVER */ |
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/****************************************************************************/ |
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// Maintain transfer for n_seconds OR n_times |
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int ipv4_tcp_server_sustained_test(char *path, char *nwid, struct sockaddr_in *addr, int port, int n_seconds, int n_times) |
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{ |
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int sockfd, err; |
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int msg_len = str.length(); |
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int wrote = 0; |
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if((sockfd = zts_socket(AF_INET, SOCK_STREAM, 0)) < 0) { |
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printf("error creating ZeroTier socket"); |
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exit(0); |
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} |
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if((err = zts_bind(sockfd, (struct sockaddr *)addr, (socklen_t)sizeof(struct sockaddr_in)) < 0)) { |
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printf("error binding to interface (%d)\n", err); |
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exit(0); |
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} |
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if((err = zts_listen(sockfd, 1)) < 0) { |
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printf("error placing socket in LISTENING state (%d)\n", err); |
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exit(0); |
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} |
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// TODO: handle new address |
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if((err = zts_accept(sockfd, (struct sockaddr *)&addr, (socklen_t *)sizeof(addr)) < 0)) { |
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printf("error accepting connection (%d)\n", err); |
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exit(0); |
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} |
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if(n_seconds) { |
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/* |
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printf("testing for (%d) seconds\n", n_seconds); |
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int wrote; |
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for(int i=0; i<n_seconds; i++) { |
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wrote = zts_write(sockfd, str.c_str(), str.length()); |
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printf("wrote = %d\n", wrote); |
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} |
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*/ |
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} |
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if(n_times) { |
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printf("testing (%d) times\n", n_seconds); |
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for(int i=0; i<n_times; i++) { |
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wrote += zts_write(sockfd, str.c_str(), str.length()); |
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printf("[%d] wrote = %d\n", i, wrote); |
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} |
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} |
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err = zts_close(sockfd); |
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return (wrote == (str.length()*n_times) && !err) ? PASSED : FAILED; // if wrote correct number of bytes |
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} |
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// Maintain transfer for n_seconds OR n_times |
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int ipv6_tcp_server_sustained_test(char *path, char *nwid, struct sockaddr_in6 *addr, int port, int n_seconds, int n_times) |
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{ |
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int sockfd, err; |
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int msg_len = str.length(); |
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int wrote = 0; |
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if((sockfd = zts_socket(AF_INET, SOCK_STREAM, 0)) < 0) { |
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printf("error creating ZeroTier socket"); |
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exit(0); |
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} |
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if((err = zts_bind(sockfd, (struct sockaddr *)addr, (socklen_t)sizeof(struct sockaddr_in6)) < 0)) { |
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printf("error binding to interface (%d)\n", err); |
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exit(0); |
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} |
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if((err = zts_listen(sockfd, 1)) < 0) { |
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printf("error placing socket in LISTENING state (%d)\n", err); |
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exit(0); |
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} |
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// TODO: handle new address |
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if((err = zts_accept(sockfd, (struct sockaddr *)&addr, (socklen_t *)sizeof(addr)) < 0)) { |
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printf("error accepting connection (%d)\n", err); |
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exit(0); |
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} |
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if(n_seconds) { |
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/* |
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printf("testing for (%d) seconds\n", n_seconds); |
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int wrote; |
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for(int i=0; i<n_seconds; i++) { |
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wrote = zts_write(sockfd, str.c_str(), str.length()); |
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printf("wrote = %d\n", wrote); |
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} |
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*/ |
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} |
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if(n_times) { |
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printf("testing (%d) times\n", n_seconds); |
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for(int i=0; i<n_times; i++) { |
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wrote += zts_write(sockfd, str.c_str(), str.length()); |
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printf("[%d] wrote = %d\n", i, wrote); |
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} |
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} |
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err = zts_close(sockfd); |
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return (wrote == (str.length()*n_times) && !err) ? PASSED : FAILED; // if wrote correct number of bytes |
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} |
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/****************************************************************************/ |
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/* main */ |
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/****************************************************************************/ |
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int main(int argc , char *argv[]) |
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{ |
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if(argc < 3) { |
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printf("invalid arguments\n"); |
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return 1; |
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} |
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int port; |
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struct hostent *server; |
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std::string protocol; |
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std::string mode; |
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struct sockaddr_in6 addr6; |
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struct sockaddr_in addr; |
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char *path = (char*)"./zt"; |
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int n_seconds = 10; |
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int n_times = 10000; |
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std::string nwid = argv[1]; // "ebcd7a7e120f4492" |
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std::string type = argv[2]; // simple, sustained, comprehensive |
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// If we're performing a non-random test, join the network we want to test on |
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// and wait until the service initializes the SocketTap and provides an address |
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if(type == "simple" || type == "sustained" || type == "comprehensive") { |
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zts_start(path); |
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while(!zts_service_running()) |
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sleep(1); |
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zts_join_network(nwid.c_str()); |
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while(!zts_has_address(nwid.c_str())) |
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sleep(1); |
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} |
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/****************************************************************************/ |
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/* SIMPLE */ |
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/****************************************************************************/ |
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// SIMPLE |
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// performs a one-off test of a particular subset of the API |
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// For instance (ipv4 client, ipv6 server, etc) |
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if(type == "simple") |
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{ |
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protocol = argv[3]; // 4, 6 |
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mode = argv[4]; // client, server |
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// SIMPLE CLIENT |
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if(mode == "client") |
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{ |
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port = atoi(argv[6]); |
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printf("connecting to %s on port %s\n", argv[5], argv[6]); |
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// IPv4 |
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if(protocol == "4") { |
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addr.sin_addr.s_addr = inet_addr(argv[5]); |
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addr.sin_family = AF_INET; |
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addr.sin_port = htons(port); |
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printf(" running (%s) test as ipv=%s\n", mode.c_str(), protocol.c_str()); |
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if(ipv4_tcp_client_test(path, (char*)nwid.c_str(), &addr, port) == PASSED) |
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printf("PASSED\n"); |
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else |
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printf("FAILED\n"); |
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return 0; |
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} |
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// IPv6 |
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if(protocol == "6") { |
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server = gethostbyname2(argv[1],AF_INET6); |
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memset((char *) &addr6, 0, sizeof(addr6)); |
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addr6.sin6_flowinfo = 0; |
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addr6.sin6_family = AF_INET6; |
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memmove((char *) &addr6.sin6_addr.s6_addr, (char *) server->h_addr, server->h_length); |
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addr6.sin6_port = htons(port); |
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printf(" running (%s) test as ipv=%s\n", mode.c_str(), protocol.c_str()); |
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if(ipv6_tcp_client_test(path, (char*)nwid.c_str(), &addr6, port) == PASSED) |
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printf("PASSED\n"); |
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else |
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printf("FAILED\n"); |
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return 0; |
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} |
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} |
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// SIMPLE SERVER |
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if(mode == "server") |
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{ |
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port = atoi(argv[5]); |
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printf("serving on port %s\n", argv[6]); |
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// IPv4 |
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if(protocol == "4") { |
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addr.sin_port = htons(port); |
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addr.sin_addr.s_addr = inet_addr("10.9.9.40"); |
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// addr.sin_addr.s_addr = htons(INADDR_ANY); |
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addr.sin_family = AF_INET; |
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printf(" running (%s) test as ipv=%s\n", mode.c_str(), protocol.c_str()); |
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if(ipv4_tcp_server_test(path, (char*)nwid.c_str(), &addr, port) == PASSED) |
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printf("PASSED\n"); |
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else |
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printf("FAILED\n"); |
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return 0; |
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} |
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// IPv6 |
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if(protocol == "6") { |
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server = gethostbyname2(argv[1],AF_INET6); |
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memset((char *) &addr6, 0, sizeof(addr6)); |
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addr6.sin6_flowinfo = 0; |
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addr6.sin6_family = AF_INET6; |
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addr6.sin6_port = htons(port); |
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addr6.sin6_addr = in6addr_any; |
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//memmove((char *) &addr6.sin6_addr.s6_addr, (char *) server->h_addr, server->h_length); |
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printf(" running (%s) test as ipv=%s\n", mode.c_str(), protocol.c_str()); |
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if(ipv6_tcp_server_test(path, (char*)nwid.c_str(), &addr6, port) == PASSED) |
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printf("PASSED\n"); |
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else |
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printf("FAILED\n"); |
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return 0; |
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} |
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} |
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} |
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/****************************************************************************/ |
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/* SUSTAINED */ |
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/****************************************************************************/ |
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// SUSTAINED |
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// Performs a stress test for benchmarking performance |
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if(type == "sustained") |
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{ |
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protocol = argv[3]; // 4, 6 |
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mode = argv[4]; // client, server |
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// SUSTAINED CLIENT |
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if(mode == "client") |
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{ |
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port = atoi(argv[6]); |
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printf("connecting to %s on port %s\n", argv[5], argv[6]); |
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// IPv4 |
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if(protocol == "4") { |
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addr.sin_port = htons(port); |
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addr.sin_addr.s_addr = inet_addr(argv[5]); |
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addr.sin_family = AF_INET; |
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printf(" running (%s) test as ipv=%s\n", mode.c_str(), protocol.c_str()); |
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if(ipv4_tcp_client_sustained_test(path, (char*)nwid.c_str(), &addr, port, n_seconds, n_times) == PASSED) |
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printf("PASSED\n"); |
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else |
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printf("FAILED\n"); |
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return 0; |
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} |
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// IPv6 |
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if(protocol == "6") { |
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server = gethostbyname2(argv[1],AF_INET6); |
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memset((char *) &addr6, 0, sizeof(addr6)); |
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addr6.sin6_flowinfo = 0; |
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addr6.sin6_family = AF_INET6; |
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memmove((char *) &addr6.sin6_addr.s6_addr, (char *) server->h_addr, server->h_length); |
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addr6.sin6_port = htons(port); |
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printf(" running (%s) test as ipv=%s\n", mode.c_str(), protocol.c_str()); |
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if(ipv6_tcp_client_sustained_test(path, (char*)nwid.c_str(), &addr6, port, n_seconds, n_times) == PASSED) |
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printf("PASSED\n"); |
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else |
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printf("FAILED\n"); |
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return 0; |
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} |
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} |
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// SUSTAINED SERVER |
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if(mode == "server") |
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{ |
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port = atoi(argv[5]); |
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printf("serving on port %s\n", argv[6]); |
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// IPv4 |
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if(protocol == "4") { |
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addr.sin_port = htons(port); |
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addr.sin_addr.s_addr = inet_addr("10.9.9.0"); |
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// addr.sin_addr.s_addr = htons(INADDR_ANY); |
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addr.sin_family = AF_INET; |
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printf(" running (%s) test as ipv=%s\n", mode.c_str(), protocol.c_str()); |
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if(ipv4_tcp_server_sustained_test(path, (char*)nwid.c_str(), &addr, port, n_seconds, n_times) == PASSED) |
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printf("PASSED\n"); |
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else |
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printf("FAILED\n"); |
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return 0; |
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} |
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// IPv6 |
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if(protocol == "6") { |
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server = gethostbyname2(argv[1],AF_INET6); |
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memset((char *) &addr6, 0, sizeof(addr6)); |
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addr6.sin6_flowinfo = 0; |
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addr6.sin6_family = AF_INET6; |
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addr6.sin6_port = htons(port); |
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addr6.sin6_addr = in6addr_any; |
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//memmove((char *) &addr6.sin6_addr.s6_addr, (char *) server->h_addr, server->h_length); |
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printf(" running (%s) test as ipv=%s\n", mode.c_str(), protocol.c_str()); |
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if(ipv6_tcp_server_sustained_test(path, (char*)nwid.c_str(), &addr6, port, n_seconds, n_times) == PASSED) |
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printf("PASSED\n"); |
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else |
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printf("FAILED\n"); |
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return 0; |
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} |
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} |
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} |
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/****************************************************************************/ |
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/* COMPREHENSIVE */ |
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/****************************************************************************/ |
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// COMPREHENSIVE |
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// Tests ALL API calls |
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if(type == "comprehensive") |
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{ |
|
|
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} |
|
|
|
|
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/****************************************************************************/ |
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/* RANDOM */ |
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/****************************************************************************/ |
|
|
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// RANDOM |
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// performs random API calls with plausible (and random) arguments/data |
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if(type == "random") |
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{ |
|
|
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} |
|
|
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printf("invalid configuration. exiting.\n"); |
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return 0; |
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} |