agent: implement connection loop with retry
This commit is contained in:
340
agent/agent.c
340
agent/agent.c
@@ -83,10 +83,11 @@ static void signal_handler(int sig)
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static void agent_shutdown(void)
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{
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printf("Shutting down agent...\n");
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SSL_shutdown(ssl);
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SSL_free(ssl);
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SSL_CTX_free(ctx); /* release context */
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if (ssl) SSL_shutdown(ssl);
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if (ssl) SSL_free(ssl);
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if (ctx) SSL_CTX_free(ctx); /* release context */
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close(server); /* close socket */
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_exit(EXIT_SUCCESS);
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}
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static void set_env(void)
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@@ -116,7 +117,7 @@ static void set_env(void)
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int main(int count, char *strings[])
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{
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int bytes, i;
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int bytes, i, err;
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char *hostname, *portnum;
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if (count != 6) {
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@@ -127,158 +128,189 @@ int main(int count, char *strings[])
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portnum=strings[2];
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if ((ctx = init_ctx()) == NULL)
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_exit(EXIT_FAILURE);
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server = connect_to_rmps(hostname, atoi(portnum));
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if (!server) {
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fprintf(stderr, "Failed to connect to RMPS: %s:%d\n", hostname, atoi(portnum));
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_exit(EXIT_FAILURE);
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}
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load_certs(ctx, strings[3], strings[4], strings[5]);
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ssl = SSL_new(ctx); /* create new SSL connection state */
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SSL_set_fd(ssl, server); /* attach the socket descriptor */
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if (SSL_connect(ssl) == FAIL) { /* perform the connection */
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ERR_print_errors_fp(stderr);
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close(server);
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SSL_CTX_free(ctx);
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_exit(EXIT_FAILURE);
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}
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printf("Connected with %s encryption\n", SSL_get_cipher(ssl));
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show_certs(ssl);
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set_env();
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atexit(agent_shutdown);
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if (!(args = calloc(1, sizeof(*args) * MAX_AGENT_JOBS))) {
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fprintf( stderr,
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"Failed to calloc() %d bytes for job_args! Exiting...\n",
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(int)sizeof(struct job_args) * MAX_AGENT_JOBS );
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SSL_shutdown(ssl);
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SSL_free(ssl);
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close(server);
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SSL_CTX_free(ctx);
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_exit(EXIT_FAILURE);
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}
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if (!(job_thread = calloc(1, sizeof(*job_thread) * MAX_AGENT_JOBS))) {
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fprintf( stderr,
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"Failed to calloc() %d bytes for job_threads! Exiting...\n",
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(int)sizeof(pthread_t) * MAX_AGENT_JOBS );
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SSL_shutdown(ssl);
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SSL_free(ssl);
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close(server);
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SSL_CTX_free(ctx);
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free(args);
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_exit(EXIT_FAILURE);
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}
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for (i = 0; i < MAX_AGENT_JOBS; i++) {
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args[i].slot = FREE;
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args[i].ssl = ssl;
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}
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while (1) {
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server = connect_to_rmps(hostname, atoi(portnum));
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if (!server) {
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fprintf(stderr, "Failed to connect to RMPS on %s:%d - %s\n", hostname, atoi(portnum), strerror(errno));
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printf("Retrying...\n");
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sleep(5);
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continue;
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}
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load_certs(ctx, strings[3], strings[4], strings[5]);
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ssl = SSL_new(ctx); /* create new SSL connection state */
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SSL_set_fd(ssl, server); /* attach the socket descriptor */
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do {
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struct msg_t buf;
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memset(&buf, 0, sizeof(struct msg_t));
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bytes = SSL_read(ssl, &buf, sizeof(struct msg_t));
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if (bytes > 0) {
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short index;
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if (bytes != sizeof(struct msg_t)) {
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fprintf( stderr,
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"Received non-standard data from server!\n" );
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continue;
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}
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if (buf.chunk.id == 0) {
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if ((index = get_job_slot()) == FAIL) {
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buf.chunk.id = -1; /* ID -1 means reject (full) */
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sprintf((char*)buf.chunk.data, "The agent's queue is full!");
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SSL_write(ssl, &buf, sizeof(struct msg_t));
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continue;
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}
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args[index].slot = FULL;
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memcpy(&args[index].buf, &buf, sizeof(struct msg_t));
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switch (args[index].buf.meta.type) {
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case UNIX:
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pthread_create( &job_thread[index],
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NULL,
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exec_unix,
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&args[index] );
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continue;
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case INSTALL_PKG:
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pthread_create( &job_thread[index],
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NULL,
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install_pkg,
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&args[index] );
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continue;
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case QUERY_PKG:
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pthread_create( &job_thread[index],
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NULL,
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query_pkg,
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&args[index] );
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continue;
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case DELETE_PKG:
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pthread_create( &job_thread[index],
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NULL,
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delete_pkg,
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&args[index] );
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continue;
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case LIST_PKGS:
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pthread_create( &job_thread[index],
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NULL,
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list_pkgs,
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&args[index] );
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continue;
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case UPDATE_PKG:
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pthread_create( &job_thread[index],
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NULL,
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update_pkg,
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&args[index] );
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continue;
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case UPDATE_PKGS:
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pthread_create( &job_thread[index],
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NULL,
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update_pkgs,
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&args[index] );
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continue;
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case GET_OS:
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pthread_create( &job_thread[index],
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NULL,
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get_os,
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&args[index] );
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continue;
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case GET_KERNEL:
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pthread_create( &job_thread[index],
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NULL,
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get_kernel,
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&args[index] );
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continue;
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case GET_UPTIME:
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pthread_create( &job_thread[index],
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NULL,
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get_uptime,
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&args[index] );
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continue;
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case GET_MEMORY:
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pthread_create( &job_thread[index],
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NULL,
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get_memory,
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&args[index] );
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continue;
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default:
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buf.chunk.id = -1;
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sprintf( (char*)buf.chunk.data,
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"Unsupported job type with ID: %d",
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buf.meta.type );
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SSL_write(ssl, &buf, sizeof(struct msg_t));
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continue;
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}
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} else {
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index = find_job(buf.meta.id);
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if (index == FAIL) {
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sprintf( (char*)buf.chunk.data,
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"Data was sent for an invalid job ID" );
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SSL_write(ssl, &buf, sizeof(struct msg_t));
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} else
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memcpy(&args[index].buf, &buf, sizeof(struct msg_t));
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}
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if (SSL_connect(ssl) == FAIL) { /* perform the connection */
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ERR_print_errors_fp(stderr);
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close(server);
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SSL_CTX_free(ctx);
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_exit(EXIT_FAILURE);
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}
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printf("Connected with %s encryption\n", SSL_get_cipher(ssl));
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show_certs(ssl);
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set_env();
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atexit(agent_shutdown);
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if (!(args = calloc(1, sizeof(*args) * MAX_AGENT_JOBS))) {
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fprintf( stderr,
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"Failed to calloc() %d bytes for job_args! Exiting...\n",
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(int)sizeof(struct job_args) * MAX_AGENT_JOBS );
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SSL_shutdown(ssl);
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SSL_free(ssl);
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close(server);
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SSL_CTX_free(ctx);
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_exit(EXIT_FAILURE);
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}
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if (!(job_thread = calloc(1, sizeof(*job_thread) * MAX_AGENT_JOBS))) {
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fprintf( stderr,
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"Failed to calloc() %d bytes for job_threads! Exiting...\n",
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(int)sizeof(pthread_t) * MAX_AGENT_JOBS );
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SSL_shutdown(ssl);
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SSL_free(ssl);
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close(server);
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SSL_CTX_free(ctx);
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free(args);
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_exit(EXIT_FAILURE);
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}
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for (i = 0; i < MAX_AGENT_JOBS; i++) {
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args[i].slot = FREE;
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args[i].ssl = ssl;
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}
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SSL_shutdown(ssl);
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SSL_free(ssl); /* release connection state */
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} while (bytes);
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do {
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struct msg_t buf;
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memset(&buf, 0, sizeof(struct msg_t));
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bytes = SSL_read(ssl, &buf, sizeof(struct msg_t));
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if (bytes > 0) {
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short index;
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if (bytes != sizeof(struct msg_t)) {
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fprintf( stderr,
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"Received non-standard data from server!\n" );
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//conntinue;
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return 1;
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}
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if (buf.chunk.id == 0) {
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if ((index = get_job_slot()) == FAIL) {
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buf.chunk.id = -1; /* ID -1 means reject (full) */
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sprintf((char*)buf.chunk.data, "The agent's queue is full!");
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SSL_write(ssl, &buf, sizeof(struct msg_t));
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continue;
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}
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args[index].slot = FULL;
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memcpy(&args[index].buf, &buf, sizeof(struct msg_t));
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switch (args[index].buf.meta.type) {
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case UNIX:
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pthread_create( &job_thread[index],
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NULL,
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exec_unix,
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&args[index] );
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continue;
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case INSTALL_PKG:
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pthread_create( &job_thread[index],
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NULL,
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install_pkg,
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&args[index] );
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continue;
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case QUERY_PKG:
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pthread_create( &job_thread[index],
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NULL,
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query_pkg,
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&args[index] );
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continue;
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case DELETE_PKG:
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pthread_create( &job_thread[index],
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NULL,
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delete_pkg,
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&args[index] );
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continue;
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case LIST_PKGS:
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pthread_create( &job_thread[index],
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NULL,
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list_pkgs,
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&args[index] );
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continue;
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case UPDATE_PKG:
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pthread_create( &job_thread[index],
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NULL,
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update_pkg,
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&args[index] );
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continue;
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case UPDATE_PKGS:
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pthread_create( &job_thread[index],
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NULL,
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update_pkgs,
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&args[index] );
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continue;
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case GET_OS:
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pthread_create( &job_thread[index],
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NULL,
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get_os,
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&args[index] );
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continue;
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case GET_KERNEL:
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pthread_create( &job_thread[index],
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NULL,
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get_kernel,
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&args[index] );
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continue;
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case GET_UPTIME:
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pthread_create( &job_thread[index],
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NULL,
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get_uptime,
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&args[index] );
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continue;
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case GET_MEMORY:
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pthread_create( &job_thread[index],
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NULL,
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get_memory,
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&args[index] );
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continue;
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default:
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buf.chunk.id = -1;
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sprintf( (char*)buf.chunk.data,
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"Unsupported job type with ID: %d",
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buf.meta.type );
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SSL_write(ssl, &buf, sizeof(struct msg_t));
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continue;
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}
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} else {
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index = find_job(buf.meta.id);
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if (index == FAIL) {
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sprintf( (char*)buf.chunk.data,
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"Data was sent for an invalid job ID" );
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SSL_write(ssl, &buf, sizeof(struct msg_t));
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} else
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memcpy(&args[index].buf, &buf, sizeof(struct msg_t));
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}
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}
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SSL_shutdown(ssl);
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SSL_free(ssl); /* release connection state */
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} while (bytes);
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if (SSL_get_shutdown(ssl)) {
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printf("RMPS server has shutdown, trying to reconnect...\n");
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sleep(5);
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} else {
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err = SSL_get_error(ssl, bytes);
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switch (err) {
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case SSL_ERROR_WANT_WRITE:
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printf("want_write\n");
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return 0;
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case SSL_ERROR_WANT_READ:
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printf("want_read\n");
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return 0;
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case SSL_ERROR_ZERO_RETURN:
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printf("zero_return\n");
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return -1;
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case SSL_ERROR_SYSCALL:
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printf("syscall\n");
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return -1;
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case SSL_ERROR_SSL:
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printf("ssl\n");
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return -1;
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default:
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return -1;
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}
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}
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}
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}
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@@ -49,7 +49,6 @@ int connect_to_rmps(const char *hostname, int port)
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addr.sin_addr.s_addr = *(long*)(host->h_addr);
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if (connect(sd, (struct sockaddr*)&addr, sizeof(addr)) == FAIL) {
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close(sd);
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perror(hostname);
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return 0;
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}
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return sd;
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