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Fix all compiler warnings found using -Wall -W -pedantic.
[utcp] / test.c
1 #define _GNU_SOURCE
2
3 #include <stdio.h>
4 #include <stdlib.h>
5 #include <stdarg.h>
6 #include <string.h>
7 #include <time.h>
8 #include <errno.h>
9 #include <sys/types.h>
10 #include <sys/socket.h>
11 #include <netdb.h>
12 #include <poll.h>
13
14
15 #include "utcp.h"
16
17 #define DIR_READ 1
18 #define DIR_WRITE 2
19
20 struct utcp_connection *c;
21 int dir = DIR_READ | DIR_WRITE;
22 bool running = true;
23 long inpktno;
24 long outpktno;
25 long dropfrom;
26 long dropto;
27 double reorder;
28 long reorder_dist = 10;
29 double dropin;
30 double dropout;
31 long total_out;
32 long total_in;
33 FILE *reference;
34
35 char *reorder_data;
36 size_t reorder_len;
37 int reorder_countdown;
38
39 #if UTCP_DEBUG
40 void debug(const char *format, ...) {
41         struct timeval now;
42         gettimeofday(&now, NULL);
43         fprintf(stderr, "%lu.%lu ", now.tv_sec, now.tv_usec / 1000);
44         va_list ap;
45         va_start(ap, format);
46         vfprintf(stderr, format, ap);
47         va_end(ap);
48 }
49 #else
50 #define debug(...) do {} while(0)
51 #endif
52
53 ssize_t do_recv(struct utcp_connection *c, const void *data, size_t len) {
54         (void)c;
55
56         if(!data || !len) {
57                 if(errno) {
58                         debug("Error: %s\n", strerror(errno));
59                         dir = 0;
60                 } else {
61                         dir &= ~DIR_WRITE;
62                         debug("Connection closed by peer\n");
63                 }
64
65                 return -1;
66         }
67
68         if(reference) {
69                 char buf[len];
70
71                 if(fread(buf, len, 1, reference) != 1) {
72                         debug("Error reading reference\n");
73                         abort();
74                 }
75
76                 if(memcmp(buf, data, len)) {
77                         debug("Received data differs from reference\n");
78                         abort();
79                 }
80         }
81
82         return write(1, data, len);
83 }
84
85 void do_accept(struct utcp_connection *nc, uint16_t port) {
86         (void)port;
87         utcp_accept(nc, do_recv, NULL);
88         c = nc;
89         utcp_set_accept_cb(c->utcp, NULL, NULL);
90 }
91
92 ssize_t do_send(struct utcp *utcp, const void *data, size_t len) {
93         int s = *(int *)utcp->priv;
94         outpktno++;
95
96         if(outpktno >= dropfrom && outpktno < dropto) {
97                 if(drand48() < dropout) {
98                         debug("Dropped outgoing packet\n");
99                         return len;
100                 }
101
102                 if(!reorder_data && drand48() < reorder) {
103                         reorder_data = malloc(len);
104
105                         if(!reorder_data) {
106                                 debug("Out of memory\n");
107                                 return len;
108                         }
109
110                         reorder_len = len;
111                         memcpy(reorder_data, data, len);
112                         reorder_countdown = 1 + drand48() * reorder_dist;
113                         return len;
114                 }
115         }
116
117         if(reorder_data) {
118                 if(--reorder_countdown < 0) {
119                         total_out += reorder_len;
120                         send(s, reorder_data, reorder_len, MSG_DONTWAIT);
121                         free(reorder_data);
122                         reorder_data = NULL;
123                 }
124         }
125
126         total_out += len;
127         ssize_t result = send(s, data, len, MSG_DONTWAIT);
128
129         if(result <= 0) {
130                 debug("Error sending UDP packet: %s\n", strerror(errno));
131         }
132
133         return result;
134 }
135
136 int main(int argc, char *argv[]) {
137         srand(time(NULL));
138         srand48(time(NULL));
139
140         if(argc < 2 || argc > 3) {
141                 return 1;
142         }
143
144         bool server = argc == 2;
145         bool connected = false;
146         uint32_t flags = UTCP_TCP;
147         size_t read_size = 102400;
148
149         if(getenv("DROPIN")) {
150                 dropin = atof(getenv("DROPIN"));
151         }
152
153         if(getenv("DROPOUT")) {
154                 dropout = atof(getenv("DROPOUT"));
155         }
156
157         if(getenv("DROPFROM")) {
158                 dropfrom = atoi(getenv("DROPFROM"));
159         }
160
161         if(getenv("DROPTO")) {
162                 dropto = atoi(getenv("DROPTO"));
163         }
164
165         if(getenv("REORDER")) {
166                 reorder = atof(getenv("REORDER"));
167         }
168
169         if(getenv("REORDER_DIST")) {
170                 reorder_dist = atoi(getenv("REORDER_DIST"));
171         }
172
173         if(getenv("FLAGS")) {
174                 flags = atoi(getenv("FLAGS"));
175         }
176
177         if(getenv("READ_SIZE")) {
178                 read_size = atoi(getenv("READ_SIZE"));
179         }
180
181         char *reference_filename = getenv("REFERENCE");
182
183         if(reference_filename) {
184                 reference = fopen(reference_filename, "r");
185         }
186
187         if(dropto < dropfrom) {
188                 dropto = 1 << 30;
189         }
190
191         struct addrinfo *ai;
192
193         struct addrinfo hint = {
194                 .ai_flags = server ? AI_PASSIVE : 0,
195                 .ai_socktype = SOCK_DGRAM,
196         };
197
198         getaddrinfo(server ? NULL : argv[1], server ? argv[1] : argv[2], &hint, &ai);
199
200         if(!ai) {
201                 return 1;
202         }
203
204         int s = socket(ai->ai_family, ai->ai_socktype, ai->ai_protocol);
205
206         if(s == -1) {
207                 return 1;
208         }
209
210         if(server) {
211                 if(bind(s, ai->ai_addr, ai->ai_addrlen)) {
212                         return 1;
213                 }
214         } else {
215                 if(connect(s, ai->ai_addr, ai->ai_addrlen)) {
216                         return 1;
217                 }
218
219                 connected = true;
220         }
221
222         freeaddrinfo(ai);
223
224         struct utcp *u = utcp_init(server ? do_accept : NULL, NULL, do_send, &s);
225
226         if(!u) {
227                 return 1;
228         }
229
230         utcp_set_mtu(u, 1300);
231         utcp_set_user_timeout(u, 10);
232
233         if(!server) {
234                 c = utcp_connect_ex(u, 1, do_recv, NULL, flags);
235         }
236
237         struct pollfd fds[2] = {
238                 {.fd = 0, .events = POLLIN | POLLERR | POLLHUP},
239                 {.fd = s, .events = POLLIN | POLLERR | POLLHUP},
240         };
241
242         char buf[102400];
243
244         struct timeval timeout = utcp_timeout(u);
245
246         while(!connected || utcp_is_active(u)) {
247                 size_t max = c ? utcp_get_sndbuf_free(c) : 0;
248
249                 if(max > sizeof(buf)) {
250                         max = sizeof(buf);
251                 }
252
253                 if(max > read_size) {
254                         max = read_size;
255                 }
256
257                 int timeout_ms = timeout.tv_sec * 1000 + timeout.tv_usec / 1000 + 1;
258
259                 debug("polling, dir = %d, timeout = %d\n", dir, timeout_ms);
260
261                 if((dir & DIR_READ) && max) {
262                         poll(fds, 2, timeout_ms);
263                 } else {
264                         poll(fds + 1, 1, timeout_ms);
265                 }
266
267                 if(fds[0].revents) {
268                         fds[0].revents = 0;
269                         debug("stdin\n");
270                         ssize_t len = read(0, buf, max);
271
272                         if(len <= 0) {
273                                 fds[0].fd = -1;
274                                 dir &= ~DIR_READ;
275
276                                 if(c) {
277                                         utcp_shutdown(c, SHUT_WR);
278                                 }
279
280                                 if(len == -1) {
281                                         break;
282                                 } else {
283                                         continue;
284                                 }
285                         }
286
287                         if(c) {
288                                 ssize_t sent = utcp_send(c, buf, len);
289
290                                 if(sent != len) {
291                                         debug("Short send: %zd != %zd\n", sent, len);
292                                 }
293                         }
294                 }
295
296                 if(fds[1].revents) {
297                         fds[1].revents = 0;
298                         debug("netin\n");
299                         struct sockaddr_storage ss;
300                         socklen_t sl = sizeof(ss);
301                         int len = recvfrom(s, buf, sizeof(buf), MSG_DONTWAIT, (struct sockaddr *)&ss, &sl);
302
303                         if(len <= 0) {
304                                 debug("Error receiving UDP packet: %s\n", strerror(errno));
305                                 break;
306                         }
307
308                         if(!connected)
309                                 if(!connect(s, (struct sockaddr *)&ss, sl)) {
310                                         connected = true;
311                                 }
312
313                         inpktno++;
314
315                         if(inpktno >= dropto || inpktno < dropfrom || drand48() >= dropin) {
316                                 total_in += len;
317
318                                 if(utcp_recv(u, buf, len) == -1) {
319                                         debug("Error receiving UTCP packet: %s\n", strerror(errno));
320                                 }
321                         } else {
322                                 debug("Dropped incoming packet\n");
323                         }
324                 }
325
326                 timeout = utcp_timeout(u);
327         };
328
329         utcp_close(c);
330
331         utcp_exit(u);
332
333         free(reorder_data);
334
335         debug("Total bytes in: %ld, out: %ld\n", total_in, total_out);
336
337         return 0;
338 }