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main_select_common.c
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main_select_common.c
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/**
* \file main_select.c
* \author Kirill Scherba <[email protected]>
*
* \example main_select.c
*
* This is example of Teocli library which use select to check that data is
* available ready to read. This application connect to network
* L0 server, initialize (login) at the L0 server, and send and receive data to
* from network peer.
*
* See server example parameters at:
* https://gitlab.ksproject.org/teonet/teocli/blob/master/README.md#basic-teocli-example
*
* ### This application parameters:
*
* **Usage:** ./teocli_s <client_name> <server_address> <server_port> <peer_name> [message]
*
* **Example:** ./teocli_s C3 127.0.0.1 9000 teostream "Story about this world!"
*
* ### This application algorithm:
*
* * Connect to L0 server with server_address and server_port parameters
* * Send ClientLogin request with client_name parameter
* * Send CMD_L_PEERS request to peer_name server
* * Receive peers data from peer_name server
* * Send CMD_L_ECHO request to peer_name server
* * Receive peers data from peer_name server
* * Close connection
*
* Created on October 19, 2015, 3:51 PM
*/
#if defined(_WIN32)
#define _CRT_SECURE_NO_WARNINGS
#endif
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#if !defined(_WIN32)
#include <unistd.h>
#endif
#include <errno.h>
#include <signal.h>
#include "libteol0/teonet_l0_client.h"
#include "libteol0/teonet_l0_client_options.h"
#include "libteol0/teonet_l0_client_crypt.h"
#define TL0CNS_VERSION "0.0.1"
/**
* Application parameters structure
*/
struct app_parameters {
const char *host_name;
const char *addr;
int port;
const char *peer_name;
const char *msg;
};
// global app flags
volatile int quit_flag;
volatile int reconnect_flag;
/**
* Teonet L0 client event callback
*
* @param con
* @param event
* @param data
* @param data_len
* @param user_data
*/
void event_cb(void *con, teoLNullEvents event, void *data,
size_t data_len, void *user_data) {
const struct app_parameters *param = user_data;
// TODO: save crypto key here
switch(event) {
case EV_L_CONNECTED: {
if (data && data_len == sizeof(teoLNullConnectionStatus)) {
teoLNullConnectionStatus status = *(teoLNullConnectionStatus *)data;
if (status == CON_STATUS_CONNECTED) {
printf("Successfully connect to server\n");
// Send (1) Initialization packet to L0 server
ssize_t snd = teoLNullLogin(con, param->host_name);
if (snd == -1) perror(strerror(errno));
printf("Send %d bytes packet to L0 server, Initialization packet\n", (int)snd);
// Send (2) peer list request to peer, command CMD_L_PEERS
snd = teoLNullSend(con, CMD_L_PEERS, param->peer_name, NULL, 0);
printf( "Send %d bytes packet to L0 server to peer %s, "
"cmd = %d (CMD_L_PEERS)\n",
(int)snd, param->peer_name, CMD_L_PEERS);
// Send (3) echo request to peer, command CMD_L_ECHO
//
// Add current time to the end of message (it should be return
// back by server)
// snd = teoLNullSendEcho(con, param->peer_name, param->msg);
// if(snd == -1) perror(strerror(errno));
// printf("Send %d bytes packet to L0 server to peer %s, "
// "cmd = %d (CMD_L_ECHO), "
// "data: %s\n",
// (int)snd, param->peer_name, CMD_L_ECHO, param->msg);
// Show empty line
printf("\n");
} else {
printf("Can't connect to server, status %s\n", STRING_teoLNullConnectionStatus(status));
}
} else {
printf("Invalid EV_L_CONNECTED event, data=%p, data_len=%lu\n", data, data_len);
}
} break;
case EV_L_DISCONNECTED:
printf("Disconnected ...\n");
reconnect_flag = 1;
break;
case EV_L_RECEIVED_UNRELIABLE: // fallthrough
case EV_L_RECEIVED:
{
// Receive answer from server
const size_t rc = data_len;
teoLNullCPacket *cp = (teoLNullCPacket*) data;
printf("Receive %d bytes: %hu bytes data from L0 server, "
"from peer %s, cmd = %hhu\n",
(int)rc, cp->data_length, cp->peer_name, cp->cmd);
// Process commands
switch(cp->cmd) {
case CMD_L_PEERS_ANSWER:
{
// Show peer list
if(cp->data_length > 1) {
ksnet_arp_data_ext_ar *arp_data_ar = (ksnet_arp_data_ext_ar *)
(cp->peer_name + cp->peer_name_length);
const char *ln =
"--------------------------------------------"
"---------\n";
printf("%sPeers (%u): \n%s", ln, arp_data_ar->length, ln);
int i;
for(i = 0; i < (int)arp_data_ar->length; i++) {
printf("%-20s %-20s (%2d) %-15s %d %8.3f ms\n",
arp_data_ar->arp_data[i].name,
arp_data_ar->arp_data[i].data.type,
arp_data_ar->arp_data[i].data.data.mode,
arp_data_ar->arp_data[i].data.data.addr,
arp_data_ar->arp_data[i].data.data.port,
arp_data_ar->arp_data[i].data.data.last_triptime);
}
printf("%s", ln);
}
} break;
case CMD_L_ECHO_ANSWER:
{
printf("Got echo answer command\n");
data = cp->peer_name + cp->peer_name_length;
int trip_time = teoLNullProccessEchoAnswer(data);
// Show data
printf("Data: %s\n", (char*)data);
// Show trip time
printf("Trip time: %d ms\n\n", trip_time);
} break;
case CMD_L_L0_CRYPTO_KEY: {
// \TODO: we receive key answer here
} break;
case CMD_L_AUTH_LOGIN_ANSWER: {
printf("Got answer from authentication server\n");
const char *auth_data = (const char *)
(cp->peer_name + cp->peer_name_length);
// Show data
printf("Data: %s\n\n", auth_data);
}
break;
case CMD_L_ECHO:
{
printf("Got echo command\n");
} break;
default:
printf("Got unknown command\n");
break;
}
} break;
default:
break;
}
}
void INThandler(int sig)
{
printf("Catch CTRL-C SIGNAL !!!\n");
quit_flag = 1;
}
/**
* Main L0 Native client example function
*
* @param argc Number of arguments
* @param argv Arguments array
*
* @return
*/
int main(int argc, char** argv) {
signal(SIGINT, INThandler);
// Welcome message
printf("Teonet L0 client with Select and Event Loop Callback example version " TL0CN_VERSION " (Native TCP Client)\n\n");
// Check application parameters
if(argc < 5) {
printf("Usage: "
"%s <client_name> <server_address> <server_port> <peer_name> "
"[message]\n", argv[0]);
exit(EXIT_SUCCESS);
}
const int send_size = 10;
char *send_msg = malloc(send_size);
int i = 0;
for (i = 0; i<send_size; ++i)
send_msg[i] = 'Q';
// Teonet L0 server parameters
struct app_parameters param;
param.host_name = argv[1]; //"C3";
param.addr = argv[2]; //"127.0.0.1"; //"10.12.35.53"; //
param.port = atoi(argv[3]); //9000;
param.peer_name = argv[4]; //"teostream";
if(argc > 5) param.msg = argv[5];
else param.msg = send_msg;
PROTOCOL transport_proto = getenv("FORCE_TCP") ? TCP : TRUDP;
const char* cypher = getenv("TEO_CYPHER");
if (cypher != NULL && cypher[0] != 0) {
teoLNullEncryptionProtocol cypher_code = ENC_PROTO_DISABLED;
if (strcmp("ECDH_AES_128_V1", cypher) == 0) {
cypher_code = ENC_PROTO_ECDH_AES_128_V1;
}
teoLNUllSetOption_EncryptionProtocol(cypher_code);
}
// Initialize L0 Client library
teoLNullInit();
quit_flag = 0;
while(!quit_flag) {
// Connect to L0 server
teoLNullConnectData *con = teoLNullConnectE(param.addr, param.port,
event_cb, ¶m, transport_proto);
reconnect_flag = 0;
if(con->status >= 0) {
const int timeout = 1000;
uint64_t nextPing = teoGetTimestampFull();
// Event loop
while(teoLNullReadEventLoop(con, timeout)) {
if (quit_flag || reconnect_flag) {
break;
}
switch (con->status) {
case CON_STATUS_NOT_CONNECTED: {
// wait to be connected
} continue;
case CON_STATUS_CONNECTED:{
// run
// Send Echo command every second
uint64_t now = teoGetTimestampFull();
if (now > nextPing) {
teoLNullSendEcho(con, param.peer_name, param.msg);
// teoLNullSendUnreliable(con, CMD_L_PEERS, param.peer_name, NULL, 0);
nextPing = now + 1000000;
}
} continue;
default:{
// Some error condition, go to reconnect
} break;
}
// check if reconnecting
break;
}
}
printf("con->status=%s\n", STRING_teoLNullConnectionStatus(con->status));
if (!quit_flag) {
printf("reconnect cooldown\n");
teoLNullSleep(2000);
}
// Close connection
teoLNullDisconnect(con);
}
// Cleanup L0 Client library
teoLNullCleanup();
free(send_msg);
return (EXIT_SUCCESS);
}