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@@ -6,122 +6,128 @@
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#include "config.h"
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//TODO: object-like C
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//TODO: refactoring, cleanup
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extern int errno;
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_Noreturn void udpListen(int serverSocket, struct sockaddr * clientAddress, unsigned long addressLength) {
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char clientMessage[MESSAGE_STRING_LENGTH], quote[MESSAGE_STRING_LENGTH];
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_Noreturn void udpListen(void *args[]) {
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struct sockinfo *server = (struct sockinfo *) args[0];
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struct sockinfo *client = (struct sockinfo *) args[1];
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char quote[MESSAGE_STRING_LENGTH] = "", clientMessage[MESSAGE_STRING_LENGTH] = "";
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// create args
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server->handle = socket(server->address->sa_family, SOCK_DGRAM, IPPROTO_UDP);
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if (server->handle == -1) {
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perror("socket not created");
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pthread_exit((void *) 1);
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}
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puts("socket created");
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// bind args
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if (bind(server->handle, server->address, server->addressLength) < 0) {
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perror("bind failed");
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pthread_exit((void *) 2);
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}
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for (;;) {
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// receive data
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if (recvfrom(serverSocket, clientMessage, MESSAGE_STRING_LENGTH, 0, clientAddress, (socklen_t *) &addressLength) >= 0) {
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if (recvfrom(server->handle, clientMessage, MESSAGE_STRING_LENGTH, 0, client->address,
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&client->addressLength) >= 0) {
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printf("received: %s\n", clientMessage);
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// send data
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getRandomQuote(quote);
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printf("sending: %s\n", quote);
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if (sendto(serverSocket, quote, strlen(quote), 0, clientAddress, addressLength) == -1) {
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perror("udp: sendto");
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if (sendto(server->handle, quote, (long) strlen(quote), 0, client->address, client->addressLength) == -1) {
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perror("[UDP: SENDTO]");
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}
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} else {
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perror("udp: recvfrom");
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perror("[UDP: RECVFROM]");
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}
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}
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}
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void tcpListen(int serverSocket, struct sockaddr * clientAddress, unsigned long addressLength) {
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int clientSocket;
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void tcpListen(void *args[]) {
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struct sockinfo *server = (struct sockinfo *) args[0];
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struct sockinfo *client = (struct sockinfo *) args[1];
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char quote[MESSAGE_STRING_LENGTH] = "", clientMessage[MESSAGE_STRING_LENGTH] = "";
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listen(serverSocket, 5);
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// create args
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server->handle = socket(server->address->sa_family, SOCK_STREAM, IPPROTO_TCP);
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if (server->handle == -1) {
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perror("socket not created");
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pthread_exit((void *) 1);
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}
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puts("socket created");
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// bind args
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if (bind(server->handle, server->address, server->addressLength) < 0) {
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perror("bind failed");
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pthread_exit((void *) 2);
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}
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listen(server->handle, 5);
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puts("server listening");
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// accept connections
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//TODO: t h r e a d s
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while ((clientSocket = accept(serverSocket, clientAddress, (socklen_t *) &addressLength)) >= 0) {
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while ((client->handle = accept(server->handle, client->address, &client->addressLength)) >= 0) {
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puts("client connected");
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// receive data
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if (recv(clientSocket, clientMessage, MESSAGE_STRING_LENGTH, 0) >= 0) {
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if (recv(client->handle, clientMessage, MESSAGE_STRING_LENGTH, 0) >= 0) {
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printf("client says: %s\n", clientMessage);
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// send data
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getRandomQuote(quote);
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printf("responding: \"%s\"\n", quote);
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if (send(clientSocket, quote, strlen(quote), 0) == -1) {
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perror("tcp: send");
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if (send(client->handle, quote, (long) strlen(quote), 0) == -1) {
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perror("[TCP: SEND]");
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}
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} else {
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perror("tcp: recv");
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perror("[TCP: RECV]");
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}
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close(clientSocket);
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close(client->handle);
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puts("closed connection");
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}
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if (clientSocket < 0) {
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puts("client connection failed");
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exit(3);
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if (client->handle < 0) {
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perror("client connection failed");
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pthread_exit((void *) 3);
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}
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}
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void server(int tcp, int ipv6) {
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int serverSocket, socketType, socketProtocol;
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unsigned long serverAddressLength, clientAddressLength;
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struct sockaddr *serverAddress, *clientAddress;
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struct sockaddr_in serverAddress4, clientAddress4;
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struct sockaddr_in6 serverAddress6, clientAddress6;
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void server() {
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struct sockinfo client;
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struct sockinfo udp, tcp;
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struct sockaddr_in6 serverAddress, clientAddress;
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if (ipv6) {
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serverAddress6.sin6_family = AF_INET6;
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serverAddress6.sin6_addr = in6addr_any;
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serverAddress6.sin6_port = htons(DEFAULT_LISTEN_PORT);
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serverAddress = (struct sockaddr *) &serverAddress6;
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serverAddressLength = sizeof serverAddress6;
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serverAddress.sin6_family = AF_INET6;
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serverAddress.sin6_addr = in6addr_any;
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serverAddress.sin6_port = htons(DEFAULT_LISTEN_PORT);
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clientAddress6.sin6_family = AF_INET6;
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clientAddress = (struct sockaddr *) &clientAddress6;
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clientAddressLength = sizeof clientAddress6;
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} else {
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serverAddress4.sin_family = AF_INET;
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serverAddress4.sin_addr.s_addr = INADDR_ANY;
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serverAddress4.sin_port = htons(DEFAULT_LISTEN_PORT);
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serverAddress = (struct sockaddr *) &serverAddress4;
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serverAddressLength = sizeof serverAddress4;
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tcp.address = (struct sockaddr *) &serverAddress;
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udp.address = (struct sockaddr *) &serverAddress;
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tcp.addressLength = sizeof serverAddress;
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udp.addressLength = sizeof serverAddress;
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clientAddress4.sin_family = AF_INET;
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clientAddress = (struct sockaddr *) &clientAddress4;
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clientAddressLength = sizeof clientAddress4;
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}
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clientAddress.sin6_family = AF_INET6;
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client.address = (struct sockaddr *) &clientAddress;
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client.addressLength = sizeof clientAddress;
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if (tcp) {
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socketType = SOCK_STREAM;
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socketProtocol = IPPROTO_TCP;
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} else {
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socketType = SOCK_DGRAM;
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socketProtocol = IPPROTO_UDP;
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}
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// create sock
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serverSocket = socket(serverAddress->sa_family, socketType, socketProtocol);
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if (serverSocket == -1) {
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puts("socket not created");
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exit(1);
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}
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puts("socket created");
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// bind sock
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if (bind(serverSocket, serverAddress, serverAddressLength) < 0) {
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puts("bind failed");
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exit(2);
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}
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void *tcpArgs[] = {&tcp, &client};
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void *udpArgs[] = {&udp, &client};
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// TODO: threads to run both at the same time
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if (tcp) {
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tcpListen(serverSocket, clientAddress, clientAddressLength);
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} else {
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udpListen(serverSocket, clientAddress, clientAddressLength);
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}
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pthread_t tcpHandle, udpHandle;
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pthread_attr_t attr;
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pthread_attr_init(&attr);
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pthread_create(&tcpHandle, &attr, (void *(*)(void *)) tcpListen, tcpArgs);
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pthread_create(&udpHandle, &attr, (void *(*)(void *)) udpListen, udpArgs);
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void *tcpReturn, *udpReturn;
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pthread_join(tcpHandle, tcpReturn);
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pthread_join(udpHandle, udpReturn);
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}
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