197 lines
6.2 KiB
C
197 lines
6.2 KiB
C
/* This benchmark establishes _connections_ number of WebSocket
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clients, then iteratively performs the following:
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1. Send one message for every client.
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2. Wait for the quadratic (_connections_^2) amount of responses from the server.
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3. Once received all expected bytes, repeat by going to step 1.
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Every 4 seconds we print the current average "iterations per second".
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*/
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#include <libusockets.h>
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int SSL;
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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unsigned char web_socket_request[26] = {130, 128 | 20, 1, 2, 3, 4};
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char request[] = "GET / HTTP/1.1\r\n"
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"Upgrade: websocket\r\n"
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"Connection: Upgrade\r\n"
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"Sec-WebSocket-Key: x3JJHMbDL1EzLkh9GBhXDw==\r\n"
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"Host: server.example.com\r\n"
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"Sec-WebSocket-Version: 13\r\n\r\n";
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char *host;
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int port;
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int connections;
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int satisfied_sockets;
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int iterations;
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struct http_socket {
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/* How far we have streamed our websocket request */
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int offset;
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/* How far we have streamed our upgrade request */
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int upgrade_offset;
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/* Are we upgraded? */
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int is_upgraded;
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/* Bytes received */
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int bytes_received;
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};
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/* We track upgraded websockets */
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void **web_sockets;
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int num_web_sockets;
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/* We don't need any of these */
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void noop(struct us_loop_t *loop) {
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}
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void start_iteration() {
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for (int i = 0; i < num_web_sockets; i++) {
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struct us_socket_t *s = (struct us_socket_t *) web_sockets[i];
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struct http_socket *http_socket = (struct http_socket *) us_socket_ext(SSL, s);
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http_socket->offset = us_socket_write(SSL, s, (char *) web_socket_request, sizeof(web_socket_request), 0);
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}
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}
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void next_connection(struct us_socket_t *s) {
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/* Add this connection to our array */
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web_sockets[num_web_sockets++] = s;
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/* We could wait with this until properly upgraded */
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if (--connections) {
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us_socket_context_connect(SSL, us_socket_context(SSL, s), host, port, 0, sizeof(struct http_socket));
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} else {
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printf("Running benchmark now...\n");
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start_iteration();
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us_socket_timeout(SSL, s, LIBUS_TIMEOUT_GRANULARITY);
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}
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}
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struct us_socket_t *on_http_socket_writable(struct us_socket_t *s) {
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struct http_socket *http_socket = (struct http_socket *) us_socket_ext(SSL, s);
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/* Are we still not upgraded yet? */
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if (http_socket->upgrade_offset < sizeof(request) - 1) {
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http_socket->upgrade_offset += us_socket_write(SSL, s, request + http_socket->upgrade_offset, sizeof(request) - 1 - http_socket->upgrade_offset, 0);
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} else {
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/* Stream whatever is remaining of the request */
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http_socket->offset += us_socket_write(SSL, s, (char *) web_socket_request + http_socket->offset, sizeof(web_socket_request) - http_socket->offset, 0);
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}
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return s;
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}
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struct us_socket_t *on_http_socket_close(struct us_socket_t *s) {
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printf("Client was disconnected, exiting!\n");
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exit(-1);
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return s;
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}
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struct us_socket_t *on_http_socket_end(struct us_socket_t *s) {
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return us_socket_close(SSL, s);
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}
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struct us_socket_t *on_http_socket_data(struct us_socket_t *s, char *data, int length) {
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/* Get socket extension and the socket's context's extension */
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struct http_socket *http_socket = (struct http_socket *) us_socket_ext(SSL, s);
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/* Are we already upgraded? */
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if (http_socket->is_upgraded) {
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http_socket->bytes_received += length;
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if (http_socket->bytes_received == (sizeof(web_socket_request) - 4) * num_web_sockets) {
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satisfied_sockets++;
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http_socket->bytes_received = 0;
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if (satisfied_sockets == num_web_sockets) {
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iterations++;
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satisfied_sockets = 0;
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start_iteration();
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}
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}
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} else {
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/* We assume the server is not sending anything immediately following upgrade and that we get rnrn in one chunk */
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if (length >= 4 && data[length - 1] == '\n' && data[length - 2] == '\r' && data[length - 3] == '\n' && data[length - 4] == '\r') {
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http_socket->is_upgraded = 1;
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next_connection(s);
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}
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}
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return s;
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}
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struct us_socket_t *on_http_socket_open(struct us_socket_t *s, int is_client, char *ip, int ip_length) {
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struct http_socket *http_socket = (struct http_socket *) us_socket_ext(SSL, s);
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/* Reset offsets */
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http_socket->offset = 0;
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http_socket->is_upgraded = 0;
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http_socket->bytes_received = 0;
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/* Send an upgrade request */
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http_socket->upgrade_offset = us_socket_write(SSL, s, request, sizeof(request) - 1, 0);
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return s;
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}
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struct us_socket_t *on_http_socket_timeout(struct us_socket_t *s) {
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/* Print current statistics */
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printf("Iterations/second (%d clients): %f\n", num_web_sockets, ((float)iterations) / LIBUS_TIMEOUT_GRANULARITY);
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iterations = 0;
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us_socket_timeout(SSL, s, LIBUS_TIMEOUT_GRANULARITY);
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return s;
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}
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int main(int argc, char **argv) {
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/* Parse host and port */
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if (argc != 5) {
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printf("Usage: connections host port ssl\n");
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return 0;
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}
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port = atoi(argv[3]);
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host = malloc(strlen(argv[2]) + 1);
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memcpy(host, argv[2], strlen(argv[2]) + 1);
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connections = atoi(argv[1]);
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SSL = atoi(argv[4]);
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/* Allocate room for every socket */
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web_sockets = (void **) malloc(sizeof(void *) * connections);
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/* Create the event loop */
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struct us_loop_t *loop = us_create_loop(0, noop, noop, noop, 0);
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/* Create a socket context for HTTP */
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struct us_socket_context_options_t options = {};
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struct us_socket_context_t *http_context = us_create_socket_context(SSL, loop, 0, options);
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/* Set up event handlers */
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us_socket_context_on_open(SSL, http_context, on_http_socket_open);
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us_socket_context_on_data(SSL, http_context, on_http_socket_data);
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us_socket_context_on_writable(SSL, http_context, on_http_socket_writable);
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us_socket_context_on_close(SSL, http_context, on_http_socket_close);
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us_socket_context_on_timeout(SSL, http_context, on_http_socket_timeout);
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us_socket_context_on_end(SSL, http_context, on_http_socket_end);
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/* Start making HTTP connections */
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us_socket_context_connect(SSL, http_context, host, port, 0, sizeof(struct http_socket));
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us_loop_run(loop);
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}
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