1 /* 2 * iperf, Copyright (c) 2014-2017, The Regents of the University of 3 * California, through Lawrence Berkeley National Laboratory (subject 4 * to receipt of any required approvals from the U.S. Dept. of 5 * Energy). All rights reserved. 6 * 7 * If you have questions about your rights to use or distribute this 8 * software, please contact Berkeley Lab's Technology Transfer 9 * Department at [email protected]. 10 * 11 * NOTICE. This software is owned by the U.S. Department of Energy. 12 * As such, the U.S. Government has been granted for itself and others 13 * acting on its behalf a paid-up, nonexclusive, irrevocable, 14 * worldwide license in the Software to reproduce, prepare derivative 15 * works, and perform publicly and display publicly. Beginning five 16 * (5) years after the date permission to assert copyright is obtained 17 * from the U.S. Department of Energy, and subject to any subsequent 18 * five (5) year renewals, the U.S. Government is granted for itself 19 * and others acting on its behalf a paid-up, nonexclusive, 20 * irrevocable, worldwide license in the Software to reproduce, 21 * prepare derivative works, distribute copies to the public, perform 22 * publicly and display publicly, and to permit others to do so. 23 * 24 * This code is distributed under a BSD style license, see the LICENSE file 25 * for complete information. 26 */ 27 #define _GNU_SOURCE 28 #define __USE_GNU 29 30 #include "iperf_config.h" 31 32 #include <stdio.h> 33 #include <stdlib.h> 34 #include <string.h> 35 #include <getopt.h> 36 #include <errno.h> 37 #include <signal.h> 38 #include <unistd.h> 39 #include <assert.h> 40 #include <fcntl.h> 41 #include <sys/socket.h> 42 #include <sys/types.h> 43 #include <netinet/in.h> 44 #include <arpa/inet.h> 45 #include <netdb.h> 46 #include <pthread.h> 47 #ifdef HAVE_STDINT_H 48 #include <stdint.h> 49 #endif 50 #include <netinet/tcp.h> 51 #include <sys/time.h> 52 #include <sys/resource.h> 53 #include <sys/mman.h> 54 #include <sys/stat.h> 55 #include <sched.h> 56 #include <setjmp.h> 57 #include <stdarg.h> 58 59 #if defined(HAVE_CPUSET_SETAFFINITY) 60 #include <sys/param.h> 61 #include <sys/cpuset.h> 62 #endif /* HAVE_CPUSET_SETAFFINITY */ 63 64 #include "net.h" 65 #include "iperf.h" 66 #include "iperf_api.h" 67 #include "iperf_udp.h" 68 #include "iperf_tcp.h" 69 #if defined(HAVE_SCTP) 70 #include "iperf_sctp.h" 71 #endif /* HAVE_SCTP */ 72 #include "timer.h" 73 74 #include "cjson.h" 75 #include "units.h" 76 #include "tcp_window_size.h" 77 #include "iperf_util.h" 78 #include "iperf_locale.h" 79 #include "version.h" 80 #if defined(HAVE_SSL) 81 #include "iperf_auth.h" 82 #endif /* HAVE_SSL */ 83 84 /* Forwards. */ 85 static int send_parameters(struct iperf_test *test); 86 static int get_parameters(struct iperf_test *test); 87 static int send_results(struct iperf_test *test); 88 static int get_results(struct iperf_test *test); 89 static int diskfile_send(struct iperf_stream *sp); 90 static int diskfile_recv(struct iperf_stream *sp); 91 static int JSON_write(int fd, cJSON *json); 92 static void print_interval_results(struct iperf_test *test, struct iperf_stream *sp, cJSON *json_interval_streams); 93 static cJSON *JSON_read(int fd); 94 95 96 /*************************** Print usage functions ****************************/ 97 98 void 99 usage() 100 { 101 fputs(usage_shortstr, stderr); 102 } 103 104 105 void 106 usage_long(FILE *f) 107 { 108 fprintf(f, usage_longstr, UDP_RATE / (1024*1024), DURATION, DEFAULT_TCP_BLKSIZE / 1024, DEFAULT_UDP_BLKSIZE / 1024); 109 } 110 111 112 void warning(char *str) 113 { 114 fprintf(stderr, "warning: %s\n", str); 115 } 116 117 118 /************** Getter routines for some fields inside iperf_test *************/ 119 120 int 121 iperf_get_verbose(struct iperf_test *ipt) 122 { 123 return ipt->verbose; 124 } 125 126 int 127 iperf_get_control_socket(struct iperf_test *ipt) 128 { 129 return ipt->ctrl_sck; 130 } 131 132 int 133 iperf_get_control_socket_mss(struct iperf_test *ipt) 134 { 135 return ipt->ctrl_sck_mss; 136 } 137 138 int 139 iperf_get_test_omit(struct iperf_test *ipt) 140 { 141 return ipt->omit; 142 } 143 144 int 145 iperf_get_test_duration(struct iperf_test *ipt) 146 { 147 return ipt->duration; 148 } 149 150 uint64_t 151 iperf_get_test_rate(struct iperf_test *ipt) 152 { 153 return ipt->settings->rate; 154 } 155 156 uint64_t 157 iperf_get_test_fqrate(struct iperf_test *ipt) 158 { 159 return ipt->settings->fqrate; 160 } 161 162 int 163 iperf_get_test_burst(struct iperf_test *ipt) 164 { 165 return ipt->settings->burst; 166 } 167 168 char 169 iperf_get_test_role(struct iperf_test *ipt) 170 { 171 return ipt->role; 172 } 173 174 int 175 iperf_get_test_reverse(struct iperf_test *ipt) 176 { 177 return ipt->reverse; 178 } 179 180 int 181 iperf_get_test_blksize(struct iperf_test *ipt) 182 { 183 return ipt->settings->blksize; 184 } 185 186 FILE * 187 iperf_get_test_outfile (struct iperf_test *ipt) 188 { 189 return ipt->outfile; 190 } 191 192 int 193 iperf_get_test_socket_bufsize(struct iperf_test *ipt) 194 { 195 return ipt->settings->socket_bufsize; 196 } 197 198 double 199 iperf_get_test_reporter_interval(struct iperf_test *ipt) 200 { 201 return ipt->reporter_interval; 202 } 203 204 double 205 iperf_get_test_stats_interval(struct iperf_test *ipt) 206 { 207 return ipt->stats_interval; 208 } 209 210 int 211 iperf_get_test_num_streams(struct iperf_test *ipt) 212 { 213 return ipt->num_streams; 214 } 215 216 int 217 iperf_get_test_server_port(struct iperf_test *ipt) 218 { 219 return ipt->server_port; 220 } 221 222 char* 223 iperf_get_test_server_hostname(struct iperf_test *ipt) 224 { 225 return ipt->server_hostname; 226 } 227 228 char* 229 iperf_get_test_template(struct iperf_test *ipt) 230 { 231 return ipt->tmp_template; 232 } 233 234 int 235 iperf_get_test_protocol_id(struct iperf_test *ipt) 236 { 237 return ipt->protocol->id; 238 } 239 240 int 241 iperf_get_test_json_output(struct iperf_test *ipt) 242 { 243 return ipt->json_output; 244 } 245 246 char * 247 iperf_get_test_json_output_string(struct iperf_test *ipt) 248 { 249 return ipt->json_output_string; 250 } 251 252 int 253 iperf_get_test_zerocopy(struct iperf_test *ipt) 254 { 255 return ipt->zerocopy; 256 } 257 258 int 259 iperf_get_test_get_server_output(struct iperf_test *ipt) 260 { 261 return ipt->get_server_output; 262 } 263 264 char 265 iperf_get_test_unit_format(struct iperf_test *ipt) 266 { 267 return ipt->settings->unit_format; 268 } 269 270 char * 271 iperf_get_test_bind_address(struct iperf_test *ipt) 272 { 273 return ipt->bind_address; 274 } 275 276 int 277 iperf_get_test_udp_counters_64bit(struct iperf_test *ipt) 278 { 279 return ipt->udp_counters_64bit; 280 } 281 282 int 283 iperf_get_test_one_off(struct iperf_test *ipt) 284 { 285 return ipt->one_off; 286 } 287 288 /************** Setter routines for some fields inside iperf_test *************/ 289 290 void 291 iperf_set_verbose(struct iperf_test *ipt, int verbose) 292 { 293 ipt->verbose = verbose; 294 } 295 296 void 297 iperf_set_control_socket(struct iperf_test *ipt, int ctrl_sck) 298 { 299 ipt->ctrl_sck = ctrl_sck; 300 } 301 302 void 303 iperf_set_test_omit(struct iperf_test *ipt, int omit) 304 { 305 ipt->omit = omit; 306 } 307 308 void 309 iperf_set_test_duration(struct iperf_test *ipt, int duration) 310 { 311 ipt->duration = duration; 312 } 313 314 void 315 iperf_set_test_reporter_interval(struct iperf_test *ipt, double reporter_interval) 316 { 317 ipt->reporter_interval = reporter_interval; 318 } 319 320 void 321 iperf_set_test_stats_interval(struct iperf_test *ipt, double stats_interval) 322 { 323 ipt->stats_interval = stats_interval; 324 } 325 326 void 327 iperf_set_test_state(struct iperf_test *ipt, signed char state) 328 { 329 ipt->state = state; 330 } 331 332 void 333 iperf_set_test_blksize(struct iperf_test *ipt, int blksize) 334 { 335 ipt->settings->blksize = blksize; 336 } 337 338 void 339 iperf_set_test_rate(struct iperf_test *ipt, uint64_t rate) 340 { 341 ipt->settings->rate = rate; 342 } 343 344 void 345 iperf_set_test_fqrate(struct iperf_test *ipt, uint64_t fqrate) 346 { 347 ipt->settings->fqrate = fqrate; 348 } 349 350 void 351 iperf_set_test_burst(struct iperf_test *ipt, int burst) 352 { 353 ipt->settings->burst = burst; 354 } 355 356 void 357 iperf_set_test_server_port(struct iperf_test *ipt, int server_port) 358 { 359 ipt->server_port = server_port; 360 } 361 362 void 363 iperf_set_test_socket_bufsize(struct iperf_test *ipt, int socket_bufsize) 364 { 365 ipt->settings->socket_bufsize = socket_bufsize; 366 } 367 368 void 369 iperf_set_test_num_streams(struct iperf_test *ipt, int num_streams) 370 { 371 ipt->num_streams = num_streams; 372 } 373 374 static void 375 check_sender_has_retransmits(struct iperf_test *ipt) 376 { 377 if (ipt->sender && ipt->protocol->id == Ptcp && has_tcpinfo_retransmits()) 378 ipt->sender_has_retransmits = 1; 379 else 380 ipt->sender_has_retransmits = 0; 381 } 382 383 void 384 iperf_set_test_role(struct iperf_test *ipt, char role) 385 { 386 ipt->role = role; 387 if (role == 'c') 388 ipt->sender = 1; 389 else if (role == 's') 390 ipt->sender = 0; 391 if (ipt->reverse) 392 ipt->sender = ! ipt->sender; 393 check_sender_has_retransmits(ipt); 394 } 395 396 void 397 iperf_set_test_server_hostname(struct iperf_test *ipt, char *server_hostname) 398 { 399 ipt->server_hostname = strdup(server_hostname); 400 } 401 402 void 403 iperf_set_test_template(struct iperf_test *ipt, char *tmp_template) 404 { 405 ipt->tmp_template = strdup(tmp_template); 406 } 407 408 void 409 iperf_set_test_reverse(struct iperf_test *ipt, int reverse) 410 { 411 ipt->reverse = reverse; 412 if (ipt->reverse) 413 ipt->sender = ! ipt->sender; 414 check_sender_has_retransmits(ipt); 415 } 416 417 void 418 iperf_set_test_json_output(struct iperf_test *ipt, int json_output) 419 { 420 ipt->json_output = json_output; 421 } 422 423 int 424 iperf_has_zerocopy( void ) 425 { 426 return has_sendfile(); 427 } 428 429 void 430 iperf_set_test_zerocopy(struct iperf_test *ipt, int zerocopy) 431 { 432 ipt->zerocopy = (zerocopy && has_sendfile()); 433 } 434 435 void 436 iperf_set_test_get_server_output(struct iperf_test *ipt, int get_server_output) 437 { 438 ipt->get_server_output = get_server_output; 439 } 440 441 void 442 iperf_set_test_unit_format(struct iperf_test *ipt, char unit_format) 443 { 444 ipt->settings->unit_format = unit_format; 445 } 446 447 void 448 iperf_set_test_bind_address(struct iperf_test *ipt, char *bind_address) 449 { 450 ipt->bind_address = strdup(bind_address); 451 } 452 453 void 454 iperf_set_test_udp_counters_64bit(struct iperf_test *ipt, int udp_counters_64bit) 455 { 456 ipt->udp_counters_64bit = udp_counters_64bit; 457 } 458 459 void 460 iperf_set_test_one_off(struct iperf_test *ipt, int one_off) 461 { 462 ipt->one_off = one_off; 463 } 464 465 /********************** Get/set test protocol structure ***********************/ 466 467 struct protocol * 468 get_protocol(struct iperf_test *test, int prot_id) 469 { 470 struct protocol *prot; 471 472 SLIST_FOREACH(prot, &test->protocols, protocols) { 473 if (prot->id == prot_id) 474 break; 475 } 476 477 if (prot == NULL) 478 i_errno = IEPROTOCOL; 479 480 return prot; 481 } 482 483 int 484 set_protocol(struct iperf_test *test, int prot_id) 485 { 486 struct protocol *prot = NULL; 487 488 SLIST_FOREACH(prot, &test->protocols, protocols) { 489 if (prot->id == prot_id) { 490 test->protocol = prot; 491 check_sender_has_retransmits(test); 492 return 0; 493 } 494 } 495 496 i_errno = IEPROTOCOL; 497 return -1; 498 } 499 500 501 /************************** Iperf callback functions **************************/ 502 503 void 504 iperf_on_new_stream(struct iperf_stream *sp) 505 { 506 connect_msg(sp); 507 } 508 509 void 510 iperf_on_test_start(struct iperf_test *test) 511 { 512 if (test->json_output) { 513 cJSON_AddItemToObject(test->json_start, "test_start", iperf_json_printf("protocol: %s num_streams: %d blksize: %d omit: %d duration: %d bytes: %d blocks: %d reverse: %d", test->protocol->name, (int64_t) test->num_streams, (int64_t) test->settings->blksize, (int64_t) test->omit, (int64_t) test->duration, (int64_t) test->settings->bytes, (int64_t) test->settings->blocks, test->reverse?(int64_t)1:(int64_t)0)); 514 } else { 515 if (test->verbose) { 516 if (test->settings->bytes) 517 iperf_printf(test, test_start_bytes, test->protocol->name, test->num_streams, test->settings->blksize, test->omit, test->settings->bytes); 518 else if (test->settings->blocks) 519 iperf_printf(test, test_start_blocks, test->protocol->name, test->num_streams, test->settings->blksize, test->omit, test->settings->blocks); 520 else 521 iperf_printf(test, test_start_time, test->protocol->name, test->num_streams, test->settings->blksize, test->omit, test->duration); 522 } 523 } 524 } 525 526 /* This converts an IPv6 string address from IPv4-mapped format into regular 527 ** old IPv4 format, which is easier on the eyes of network veterans. 528 ** 529 ** If the v6 address is not v4-mapped it is left alone. 530 */ 531 static void 532 mapped_v4_to_regular_v4(char *str) 533 { 534 char *prefix = "::ffff:"; 535 int prefix_len; 536 537 prefix_len = strlen(prefix); 538 if (strncmp(str, prefix, prefix_len) == 0) { 539 int str_len = strlen(str); 540 memmove(str, str + prefix_len, str_len - prefix_len + 1); 541 } 542 } 543 544 void 545 iperf_on_connect(struct iperf_test *test) 546 { 547 time_t now_secs; 548 const char* rfc1123_fmt = "%a, %d %b %Y %H:%M:%S GMT"; 549 char now_str[100]; 550 char ipr[INET6_ADDRSTRLEN]; 551 int port; 552 struct sockaddr_storage sa; 553 struct sockaddr_in *sa_inP; 554 struct sockaddr_in6 *sa_in6P; 555 socklen_t len; 556 557 now_secs = time((time_t*) 0); 558 (void) strftime(now_str, sizeof(now_str), rfc1123_fmt, gmtime(&now_secs)); 559 if (test->json_output) 560 cJSON_AddItemToObject(test->json_start, "timestamp", iperf_json_printf("time: %s timesecs: %d", now_str, (int64_t) now_secs)); 561 else if (test->verbose) 562 iperf_printf(test, report_time, now_str); 563 564 if (test->role == 'c') { 565 if (test->json_output) 566 cJSON_AddItemToObject(test->json_start, "connecting_to", iperf_json_printf("host: %s port: %d", test->server_hostname, (int64_t) test->server_port)); 567 else { 568 iperf_printf(test, report_connecting, test->server_hostname, test->server_port); 569 if (test->reverse) 570 iperf_printf(test, report_reverse, test->server_hostname); 571 } 572 } else { 573 len = sizeof(sa); 574 getpeername(test->ctrl_sck, (struct sockaddr *) &sa, &len); 575 if (getsockdomain(test->ctrl_sck) == AF_INET) { 576 sa_inP = (struct sockaddr_in *) &sa; 577 inet_ntop(AF_INET, &sa_inP->sin_addr, ipr, sizeof(ipr)); 578 port = ntohs(sa_inP->sin_port); 579 } else { 580 sa_in6P = (struct sockaddr_in6 *) &sa; 581 inet_ntop(AF_INET6, &sa_in6P->sin6_addr, ipr, sizeof(ipr)); 582 port = ntohs(sa_in6P->sin6_port); 583 } 584 mapped_v4_to_regular_v4(ipr); 585 if (test->json_output) 586 cJSON_AddItemToObject(test->json_start, "accepted_connection", iperf_json_printf("host: %s port: %d", ipr, (int64_t) port)); 587 else 588 iperf_printf(test, report_accepted, ipr, port); 589 } 590 if (test->json_output) { 591 cJSON_AddStringToObject(test->json_start, "cookie", test->cookie); 592 if (test->protocol->id == SOCK_STREAM) { 593 if (test->settings->mss) 594 cJSON_AddNumberToObject(test->json_start, "tcp_mss", test->settings->mss); 595 else { 596 cJSON_AddNumberToObject(test->json_start, "tcp_mss_default", test->ctrl_sck_mss); 597 } 598 } 599 } else if (test->verbose) { 600 iperf_printf(test, report_cookie, test->cookie); 601 if (test->protocol->id == SOCK_STREAM) { 602 if (test->settings->mss) 603 iperf_printf(test, " TCP MSS: %d\n", test->settings->mss); 604 else { 605 iperf_printf(test, " TCP MSS: %d (default)\n", test->ctrl_sck_mss); 606 } 607 } 608 609 } 610 } 611 612 void 613 iperf_on_test_finish(struct iperf_test *test) 614 { 615 } 616 617 618 /******************************************************************************/ 619 620 int 621 iperf_parse_arguments(struct iperf_test *test, int argc, char **argv) 622 { 623 static struct option longopts[] = 624 { 625 {"port", required_argument, NULL, 'p'}, 626 {"format", required_argument, NULL, 'f'}, 627 {"interval", required_argument, NULL, 'i'}, 628 {"daemon", no_argument, NULL, 'D'}, 629 {"one-off", no_argument, NULL, '1'}, 630 {"verbose", no_argument, NULL, 'V'}, 631 {"json", no_argument, NULL, 'J'}, 632 {"version", no_argument, NULL, 'v'}, 633 {"server", no_argument, NULL, 's'}, 634 {"client", required_argument, NULL, 'c'}, 635 {"udp", no_argument, NULL, 'u'}, 636 {"bandwidth", required_argument, NULL, 'b'}, 637 {"time", required_argument, NULL, 't'}, 638 {"bytes", required_argument, NULL, 'n'}, 639 {"blockcount", required_argument, NULL, 'k'}, 640 {"length", required_argument, NULL, 'l'}, 641 {"parallel", required_argument, NULL, 'P'}, 642 {"reverse", no_argument, NULL, 'R'}, 643 {"window", required_argument, NULL, 'w'}, 644 {"bind", required_argument, NULL, 'B'}, 645 {"cport", required_argument, NULL, OPT_CLIENT_PORT}, 646 {"set-mss", required_argument, NULL, 'M'}, 647 {"no-delay", no_argument, NULL, 'N'}, 648 {"version4", no_argument, NULL, '4'}, 649 {"version6", no_argument, NULL, '6'}, 650 {"tos", required_argument, NULL, 'S'}, 651 {"dscp", required_argument, NULL, OPT_DSCP}, 652 #if defined(HAVE_FLOWLABEL) 653 {"flowlabel", required_argument, NULL, 'L'}, 654 #endif /* HAVE_FLOWLABEL */ 655 {"zerocopy", no_argument, NULL, 'Z'}, 656 {"omit", required_argument, NULL, 'O'}, 657 {"file", required_argument, NULL, 'F'}, 658 #if defined(HAVE_CPU_AFFINITY) 659 {"affinity", required_argument, NULL, 'A'}, 660 #endif /* HAVE_CPU_AFFINITY */ 661 {"title", required_argument, NULL, 'T'}, 662 #if defined(HAVE_TCP_CONGESTION) 663 {"congestion", required_argument, NULL, 'C'}, 664 {"linux-congestion", required_argument, NULL, 'C'}, 665 #endif /* HAVE_TCP_CONGESTION */ 666 #if defined(HAVE_SCTP) 667 {"sctp", no_argument, NULL, OPT_SCTP}, 668 {"nstreams", required_argument, NULL, OPT_NUMSTREAMS}, 669 {"xbind", required_argument, NULL, 'X'}, 670 #endif 671 {"pidfile", required_argument, NULL, 'I'}, 672 {"logfile", required_argument, NULL, OPT_LOGFILE}, 673 {"forceflush", no_argument, NULL, OPT_FORCEFLUSH}, 674 {"get-server-output", no_argument, NULL, OPT_GET_SERVER_OUTPUT}, 675 {"udp-counters-64bit", no_argument, NULL, OPT_UDP_COUNTERS_64BIT}, 676 {"no-fq-socket-pacing", no_argument, NULL, OPT_NO_FQ_SOCKET_PACING}, 677 #if defined(HAVE_SSL) 678 {"username", required_argument, NULL, OPT_CLIENT_USERNAME}, 679 {"rsa-public-key-path", required_argument, NULL, OPT_CLIENT_RSA_PUBLIC_KEY}, 680 {"rsa-private-key-path", required_argument, NULL, OPT_SERVER_RSA_PRIVATE_KEY}, 681 {"authorized-users-path", required_argument, NULL, OPT_SERVER_AUTHORIZED_USERS}, 682 #endif /* HAVE_SSL */ 683 {"fq-rate", required_argument, NULL, OPT_FQ_RATE}, 684 {"debug", no_argument, NULL, 'd'}, 685 {"help", no_argument, NULL, 'h'}, 686 {NULL, 0, NULL, 0} 687 }; 688 int flag; 689 int blksize; 690 int server_flag, client_flag, rate_flag, duration_flag; 691 char *endptr; 692 #if defined(HAVE_CPU_AFFINITY) 693 char* comma; 694 #endif /* HAVE_CPU_AFFINITY */ 695 char* slash; 696 struct xbind_entry *xbe; 697 698 blksize = 0; 699 server_flag = client_flag = rate_flag = duration_flag = 0; 700 #if defined(HAVE_SSL) 701 char *client_username = NULL, *client_rsa_public_key = NULL; 702 #endif /* HAVE_SSL */ 703 704 while ((flag = getopt_long(argc, argv, "p:f:i:D1VJvsc:ub:t:n:k:l:P:Rw:B:M:N46S:L:ZO:F:A:T:C:dI:hX:", longopts, NULL)) != -1) { 705 switch (flag) { 706 case 'p': 707 test->server_port = atoi(optarg); 708 break; 709 case 'f': 710 test->settings->unit_format = *optarg; 711 break; 712 case 'i': 713 /* XXX: could potentially want separate stat collection and reporting intervals, 714 but just set them to be the same for now */ 715 test->stats_interval = test->reporter_interval = atof(optarg); 716 if ((test->stats_interval < MIN_INTERVAL || test->stats_interval > MAX_INTERVAL) && test->stats_interval != 0) { 717 i_errno = IEINTERVAL; 718 return -1; 719 } 720 break; 721 case 'D': 722 test->daemon = 1; 723 server_flag = 1; 724 break; 725 case '1': 726 test->one_off = 1; 727 server_flag = 1; 728 break; 729 case 'V': 730 test->verbose = 1; 731 break; 732 case 'J': 733 test->json_output = 1; 734 break; 735 case 'v': 736 printf("%s\n%s\n%s\n", version, get_system_info(), 737 get_optional_features()); 738 exit(0); 739 case 's': 740 if (test->role == 'c') { 741 i_errno = IESERVCLIENT; 742 return -1; 743 } 744 iperf_set_test_role(test, 's'); 745 break; 746 case 'c': 747 if (test->role == 's') { 748 i_errno = IESERVCLIENT; 749 return -1; 750 } 751 iperf_set_test_role(test, 'c'); 752 iperf_set_test_server_hostname(test, optarg); 753 break; 754 case 'u': 755 set_protocol(test, Pudp); 756 client_flag = 1; 757 break; 758 case OPT_SCTP: 759 #if defined(HAVE_SCTP) 760 set_protocol(test, Psctp); 761 client_flag = 1; 762 #else /* HAVE_SCTP */ 763 i_errno = IEUNIMP; 764 return -1; 765 #endif /* HAVE_SCTP */ 766 break; 767 768 case OPT_NUMSTREAMS: 769 #if defined(linux) || defined(__FreeBSD__) 770 test->settings->num_ostreams = unit_atoi(optarg); 771 client_flag = 1; 772 #else /* linux */ 773 i_errno = IEUNIMP; 774 return -1; 775 #endif /* linux */ 776 case 'b': 777 slash = strchr(optarg, '/'); 778 if (slash) { 779 *slash = '\0'; 780 ++slash; 781 test->settings->burst = atoi(slash); 782 if (test->settings->burst <= 0 || 783 test->settings->burst > MAX_BURST) { 784 i_errno = IEBURST; 785 return -1; 786 } 787 } 788 test->settings->rate = unit_atof_rate(optarg); 789 rate_flag = 1; 790 client_flag = 1; 791 break; 792 case 't': 793 test->duration = atoi(optarg); 794 if (test->duration > MAX_TIME) { 795 i_errno = IEDURATION; 796 return -1; 797 } 798 duration_flag = 1; 799 client_flag = 1; 800 break; 801 case 'n': 802 test->settings->bytes = unit_atoi(optarg); 803 client_flag = 1; 804 break; 805 case 'k': 806 test->settings->blocks = unit_atoi(optarg); 807 client_flag = 1; 808 break; 809 case 'l': 810 blksize = unit_atoi(optarg); 811 client_flag = 1; 812 break; 813 case 'P': 814 test->num_streams = atoi(optarg); 815 if (test->num_streams > MAX_STREAMS) { 816 i_errno = IENUMSTREAMS; 817 return -1; 818 } 819 client_flag = 1; 820 break; 821 case 'R': 822 iperf_set_test_reverse(test, 1); 823 client_flag = 1; 824 break; 825 case 'w': 826 // XXX: This is a socket buffer, not specific to TCP 827 test->settings->socket_bufsize = unit_atof(optarg); 828 if (test->settings->socket_bufsize > MAX_TCP_BUFFER) { 829 i_errno = IEBUFSIZE; 830 return -1; 831 } 832 client_flag = 1; 833 break; 834 case 'B': 835 test->bind_address = strdup(optarg); 836 break; 837 case OPT_CLIENT_PORT: 838 test->bind_port = atoi(optarg); 839 break; 840 case 'M': 841 test->settings->mss = atoi(optarg); 842 if (test->settings->mss > MAX_MSS) { 843 i_errno = IEMSS; 844 return -1; 845 } 846 client_flag = 1; 847 break; 848 case 'N': 849 test->no_delay = 1; 850 client_flag = 1; 851 break; 852 case '4': 853 test->settings->domain = AF_INET; 854 break; 855 case '6': 856 test->settings->domain = AF_INET6; 857 break; 858 case 'S': 859 test->settings->tos = strtol(optarg, &endptr, 0); 860 if (endptr == optarg || 861 test->settings->tos < 0 || 862 test->settings->tos > 255) { 863 i_errno = IEBADTOS; 864 return -1; 865 } 866 client_flag = 1; 867 break; 868 case OPT_DSCP: 869 test->settings->tos = parse_qos(optarg); 870 if(test->settings->tos < 0) { 871 i_errno = IEBADTOS; 872 return -1; 873 } 874 client_flag = 1; 875 break; 876 case 'L': 877 #if defined(HAVE_FLOWLABEL) 878 test->settings->flowlabel = strtol(optarg, &endptr, 0); 879 if (endptr == optarg || 880 test->settings->flowlabel < 1 || test->settings->flowlabel > 0xfffff) { 881 i_errno = IESETFLOW; 882 return -1; 883 } 884 client_flag = 1; 885 #else /* HAVE_FLOWLABEL */ 886 i_errno = IEUNIMP; 887 return -1; 888 #endif /* HAVE_FLOWLABEL */ 889 break; 890 case 'X': 891 xbe = (struct xbind_entry *)malloc(sizeof(struct xbind_entry)); 892 if (!xbe) { 893 i_errno = IESETSCTPBINDX; 894 return -1; 895 } 896 memset(xbe, 0, sizeof(*xbe)); 897 xbe->name = strdup(optarg); 898 if (!xbe->name) { 899 i_errno = IESETSCTPBINDX; 900 return -1; 901 } 902 TAILQ_INSERT_TAIL(&test->xbind_addrs, xbe, link); 903 break; 904 case 'Z': 905 if (!has_sendfile()) { 906 i_errno = IENOSENDFILE; 907 return -1; 908 } 909 test->zerocopy = 1; 910 client_flag = 1; 911 break; 912 case 'O': 913 test->omit = atoi(optarg); 914 if (test->omit < 0 || test->omit > 60) { 915 i_errno = IEOMIT; 916 return -1; 917 } 918 client_flag = 1; 919 break; 920 case 'F': 921 test->diskfile_name = optarg; 922 break; 923 case 'A': 924 #if defined(HAVE_CPU_AFFINITY) 925 test->affinity = strtol(optarg, &endptr, 0); 926 if (endptr == optarg || 927 test->affinity < 0 || test->affinity > 1024) { 928 i_errno = IEAFFINITY; 929 return -1; 930 } 931 comma = strchr(optarg, ','); 932 if (comma != NULL) { 933 test->server_affinity = atoi(comma+1); 934 if (test->server_affinity < 0 || test->server_affinity > 1024) { 935 i_errno = IEAFFINITY; 936 return -1; 937 } 938 client_flag = 1; 939 } 940 #else /* HAVE_CPU_AFFINITY */ 941 i_errno = IEUNIMP; 942 return -1; 943 #endif /* HAVE_CPU_AFFINITY */ 944 break; 945 case 'T': 946 test->title = strdup(optarg); 947 client_flag = 1; 948 break; 949 case 'C': 950 #if defined(HAVE_TCP_CONGESTION) 951 test->congestion = strdup(optarg); 952 client_flag = 1; 953 #else /* HAVE_TCP_CONGESTION */ 954 i_errno = IEUNIMP; 955 return -1; 956 #endif /* HAVE_TCP_CONGESTION */ 957 break; 958 case 'd': 959 test->debug = 1; 960 break; 961 case 'I': 962 test->pidfile = strdup(optarg); 963 server_flag = 1; 964 break; 965 case OPT_LOGFILE: 966 test->logfile = strdup(optarg); 967 break; 968 case OPT_FORCEFLUSH: 969 test->forceflush = 1; 970 break; 971 case OPT_GET_SERVER_OUTPUT: 972 test->get_server_output = 1; 973 client_flag = 1; 974 break; 975 case OPT_UDP_COUNTERS_64BIT: 976 test->udp_counters_64bit = 1; 977 break; 978 case OPT_NO_FQ_SOCKET_PACING: 979 #if defined(HAVE_SO_MAX_PACING_RATE) 980 printf("Warning: --no-fq-socket-pacing is deprecated\n"); 981 test->settings->fqrate = 0; 982 client_flag = 1; 983 #else /* HAVE_SO_MAX_PACING_RATE */ 984 i_errno = IEUNIMP; 985 return -1; 986 #endif 987 break; 988 case OPT_FQ_RATE: 989 #if defined(HAVE_SO_MAX_PACING_RATE) 990 test->settings->fqrate = unit_atof_rate(optarg); 991 client_flag = 1; 992 #else /* HAVE_SO_MAX_PACING_RATE */ 993 i_errno = IEUNIMP; 994 return -1; 995 #endif 996 break; 997 #if defined(HAVE_SSL) 998 case OPT_CLIENT_USERNAME: 999 client_username = strdup(optarg); 1000 break; 1001 case OPT_CLIENT_RSA_PUBLIC_KEY: 1002 client_rsa_public_key = strdup(optarg); 1003 break; 1004 case OPT_SERVER_RSA_PRIVATE_KEY: 1005 test->server_rsa_private_key = strdup(optarg); 1006 break; 1007 case OPT_SERVER_AUTHORIZED_USERS: 1008 test->server_authorized_users = strdup(optarg); 1009 break; 1010 #endif /* HAVE_SSL */ 1011 case 'h': 1012 usage_long(stdout); 1013 exit(0); 1014 default: 1015 usage_long(stderr); 1016 exit(1); 1017 } 1018 } 1019 1020 /* Set logging to a file if specified, otherwise use the default (stdout) */ 1021 if (test->logfile) { 1022 test->outfile = fopen(test->logfile, "a+"); 1023 if (test->outfile == NULL) { 1024 i_errno = IELOGFILE; 1025 return -1; 1026 } 1027 } 1028 1029 /* Check flag / role compatibility. */ 1030 if (test->role == 'c' && server_flag) { 1031 i_errno = IESERVERONLY; 1032 return -1; 1033 } 1034 if (test->role == 's' && client_flag) { 1035 i_errno = IECLIENTONLY; 1036 return -1; 1037 } 1038 1039 #if defined(HAVE_SSL) 1040 1041 if (test->role == 's' && (client_username || client_rsa_public_key)){ 1042 i_errno = IECLIENTONLY; 1043 return -1; 1044 } else if (test->role == 'c' && (client_username || client_rsa_public_key) && 1045 !(client_username && client_rsa_public_key)) { 1046 i_errno = IESETCLIENTAUTH; 1047 return -1; 1048 } else if (test->role == 'c' && (client_username && client_rsa_public_key)){ 1049 1050 char *client_password = NULL; 1051 size_t s; 1052 if (iperf_getpass(&client_password, &s, stdin) < 0){ 1053 return -1; 1054 } 1055 1056 if (strlen(client_username) > 20 || strlen(client_password) > 20){ 1057 i_errno = IESETCLIENTAUTH; 1058 return -1; 1059 } 1060 1061 if (test_load_pubkey(client_rsa_public_key) < 0){ 1062 i_errno = IESETCLIENTAUTH; 1063 return -1; 1064 } 1065 encode_auth_setting(client_username, client_password, client_rsa_public_key, &test->settings->authtoken); 1066 } 1067 1068 if (test->role == 'c' && (test->server_rsa_private_key || test->server_authorized_users)){ 1069 i_errno = IESERVERONLY; 1070 return -1; 1071 } else if (test->role == 's' && (test->server_rsa_private_key || test->server_authorized_users) && 1072 !(test->server_rsa_private_key && test->server_authorized_users)) { 1073 i_errno = IESETSERVERAUTH; 1074 return -1; 1075 } else if (test->role == 's' && test->server_rsa_private_key && test_load_private_key(test->server_rsa_private_key) < 0){ 1076 i_errno = IESETSERVERAUTH; 1077 return -1; 1078 } 1079 #endif //HAVE_SSL 1080 if (!test->bind_address && test->bind_port) { 1081 i_errno = IEBIND; 1082 return -1; 1083 } 1084 if (blksize == 0) { 1085 if (test->protocol->id == Pudp) 1086 blksize = 0; /* try to dynamically determine from MSS */ 1087 else if (test->protocol->id == Psctp) 1088 blksize = DEFAULT_SCTP_BLKSIZE; 1089 else 1090 blksize = DEFAULT_TCP_BLKSIZE; 1091 } 1092 if ((test->protocol->id != Pudp && blksize <= 0) 1093 || blksize > MAX_BLOCKSIZE) { 1094 i_errno = IEBLOCKSIZE; 1095 return -1; 1096 } 1097 if (test->protocol->id == Pudp && 1098 (blksize < MIN_UDP_BLOCKSIZE || blksize > MAX_UDP_BLOCKSIZE)) { 1099 i_errno = IEUDPBLOCKSIZE; 1100 return -1; 1101 } 1102 test->settings->blksize = blksize; 1103 1104 if (!rate_flag) 1105 test->settings->rate = test->protocol->id == Pudp ? UDP_RATE : 0; 1106 1107 if ((test->settings->bytes != 0 || test->settings->blocks != 0) && ! duration_flag) 1108 test->duration = 0; 1109 1110 /* Disallow specifying multiple test end conditions. The code actually 1111 ** works just fine without this prohibition. As soon as any one of the 1112 ** three possible end conditions is met, the test ends. So this check 1113 ** could be removed if desired. 1114 */ 1115 if ((duration_flag && test->settings->bytes != 0) || 1116 (duration_flag && test->settings->blocks != 0) || 1117 (test->settings->bytes != 0 && test->settings->blocks != 0)) { 1118 i_errno = IEENDCONDITIONS; 1119 return -1; 1120 } 1121 1122 /* For subsequent calls to getopt */ 1123 #ifdef __APPLE__ 1124 optreset = 1; 1125 #endif 1126 optind = 0; 1127 1128 if ((test->role != 'c') && (test->role != 's')) { 1129 i_errno = IENOROLE; 1130 return -1; 1131 } 1132 1133 return 0; 1134 } 1135 1136 int 1137 iperf_set_send_state(struct iperf_test *test, signed char state) 1138 { 1139 test->state = state; 1140 if (Nwrite(test->ctrl_sck, (char*) &state, sizeof(state), Ptcp) < 0) { 1141 i_errno = IESENDMESSAGE; 1142 return -1; 1143 } 1144 return 0; 1145 } 1146 1147 void 1148 iperf_check_throttle(struct iperf_stream *sp, struct timeval *nowP) 1149 { 1150 double seconds; 1151 uint64_t bits_per_second; 1152 1153 if (sp->test->done) 1154 return; 1155 seconds = timeval_diff(&sp->result->start_time_fixed, nowP); 1156 bits_per_second = sp->result->bytes_sent * 8 / seconds; 1157 if (bits_per_second < sp->test->settings->rate) { 1158 sp->green_light = 1; 1159 FD_SET(sp->socket, &sp->test->write_set); 1160 } else { 1161 sp->green_light = 0; 1162 FD_CLR(sp->socket, &sp->test->write_set); 1163 } 1164 } 1165 1166 int 1167 iperf_send(struct iperf_test *test, fd_set *write_setP) 1168 { 1169 register int multisend, r, streams_active; 1170 register struct iperf_stream *sp; 1171 struct timeval now; 1172 1173 /* Can we do multisend mode? */ 1174 if (test->settings->burst != 0) 1175 multisend = test->settings->burst; 1176 else if (test->settings->rate == 0) 1177 multisend = test->multisend; 1178 else 1179 multisend = 1; /* nope */ 1180 1181 for (; multisend > 0; --multisend) { 1182 if (test->settings->rate != 0 && test->settings->burst == 0) 1183 gettimeofday(&now, NULL); 1184 streams_active = 0; 1185 SLIST_FOREACH(sp, &test->streams, streams) { 1186 if ((sp->green_light && 1187 (write_setP == NULL || FD_ISSET(sp->socket, write_setP)))) { 1188 if ((r = sp->snd(sp)) < 0) { 1189 if (r == NET_SOFTERROR) 1190 break; 1191 i_errno = IESTREAMWRITE; 1192 return r; 1193 } 1194 streams_active = 1; 1195 test->bytes_sent += r; 1196 ++test->blocks_sent; 1197 if (test->settings->rate != 0 && test->settings->burst == 0) 1198 iperf_check_throttle(sp, &now); 1199 if (multisend > 1 && test->settings->bytes != 0 && test->bytes_sent >= test->settings->bytes) 1200 break; 1201 if (multisend > 1 && test->settings->blocks != 0 && test->blocks_sent >= test->settings->blocks) 1202 break; 1203 } 1204 } 1205 if (!streams_active) 1206 break; 1207 } 1208 if (test->settings->burst != 0) { 1209 gettimeofday(&now, NULL); 1210 SLIST_FOREACH(sp, &test->streams, streams) 1211 iperf_check_throttle(sp, &now); 1212 } 1213 if (write_setP != NULL) 1214 SLIST_FOREACH(sp, &test->streams, streams) 1215 if (FD_ISSET(sp->socket, write_setP)) 1216 FD_CLR(sp->socket, write_setP); 1217 1218 return 0; 1219 } 1220 1221 int 1222 iperf_recv(struct iperf_test *test, fd_set *read_setP) 1223 { 1224 int r; 1225 struct iperf_stream *sp; 1226 1227 SLIST_FOREACH(sp, &test->streams, streams) { 1228 if (FD_ISSET(sp->socket, read_setP)) { 1229 if ((r = sp->rcv(sp)) < 0) { 1230 i_errno = IESTREAMREAD; 1231 return r; 1232 } 1233 test->bytes_sent += r; 1234 ++test->blocks_sent; 1235 FD_CLR(sp->socket, read_setP); 1236 } 1237 } 1238 1239 return 0; 1240 } 1241 1242 int 1243 iperf_init_test(struct iperf_test *test) 1244 { 1245 struct timeval now; 1246 struct iperf_stream *sp; 1247 1248 if (test->protocol->init) { 1249 if (test->protocol->init(test) < 0) 1250 return -1; 1251 } 1252 1253 /* Init each stream. */ 1254 if (gettimeofday(&now, NULL) < 0) { 1255 i_errno = IEINITTEST; 1256 return -1; 1257 } 1258 SLIST_FOREACH(sp, &test->streams, streams) { 1259 sp->result->start_time = sp->result->start_time_fixed = now; 1260 } 1261 1262 if (test->on_test_start) 1263 test->on_test_start(test); 1264 1265 return 0; 1266 } 1267 1268 static void 1269 send_timer_proc(TimerClientData client_data, struct timeval *nowP) 1270 { 1271 struct iperf_stream *sp = client_data.p; 1272 1273 /* All we do here is set or clear the flag saying that this stream may 1274 ** be sent to. The actual sending gets done in the send proc, after 1275 ** checking the flag. 1276 */ 1277 iperf_check_throttle(sp, nowP); 1278 } 1279 1280 int 1281 iperf_create_send_timers(struct iperf_test * test) 1282 { 1283 struct timeval now; 1284 struct iperf_stream *sp; 1285 TimerClientData cd; 1286 1287 if (gettimeofday(&now, NULL) < 0) { 1288 i_errno = IEINITTEST; 1289 return -1; 1290 } 1291 SLIST_FOREACH(sp, &test->streams, streams) { 1292 sp->green_light = 1; 1293 if (test->settings->rate != 0) { 1294 cd.p = sp; 1295 /* (Repeat every millisecond - arbitrary value to provide smooth pacing.) */ 1296 sp->send_timer = tmr_create((struct timeval*) 0, send_timer_proc, cd, 1000L, 1); 1297 if (sp->send_timer == NULL) { 1298 i_errno = IEINITTEST; 1299 return -1; 1300 } 1301 } 1302 } 1303 return 0; 1304 } 1305 1306 #if defined(HAVE_SSL) 1307 int test_is_authorized(struct iperf_test *test){ 1308 if ( !(test->server_rsa_private_key && test->server_authorized_users)) { 1309 return 0; 1310 } 1311 1312 if (test->settings->authtoken){ 1313 char *username = NULL, *password = NULL; 1314 time_t ts; 1315 decode_auth_setting(test->debug, test->settings->authtoken, test->server_rsa_private_key, &username, &password, &ts); 1316 int ret = check_authentication(username, password, ts, test->server_authorized_users); 1317 if (ret == 0){ 1318 iperf_printf(test, report_authetication_successed, username, ts); 1319 return 0; 1320 } else { 1321 iperf_printf(test, report_authetication_failed, username, ts); 1322 return -1; 1323 } 1324 } 1325 return -1; 1326 } 1327 #endif //HAVE_SSL 1328 1329 /** 1330 * iperf_exchange_parameters - handles the param_Exchange part for client 1331 * 1332 */ 1333 1334 int 1335 iperf_exchange_parameters(struct iperf_test *test) 1336 { 1337 int s; 1338 int32_t err; 1339 1340 if (test->role == 'c') { 1341 1342 if (send_parameters(test) < 0) 1343 return -1; 1344 1345 } else { 1346 1347 if (get_parameters(test) < 0) 1348 return -1; 1349 1350 #if defined(HAVE_SSL) 1351 if (test_is_authorized(test) < 0){ 1352 if (iperf_set_send_state(test, SERVER_ERROR) != 0) 1353 return -1; 1354 i_errno = IEAUTHTEST; 1355 err = htonl(i_errno); 1356 if (Nwrite(test->ctrl_sck, (char*) &err, sizeof(err), Ptcp) < 0) { 1357 i_errno = IECTRLWRITE; 1358 return -1; 1359 } 1360 return -1; 1361 } 1362 #endif //HAVE_SSL 1363 1364 if ((s = test->protocol->listen(test)) < 0) { 1365 if (iperf_set_send_state(test, SERVER_ERROR) != 0) 1366 return -1; 1367 err = htonl(i_errno); 1368 if (Nwrite(test->ctrl_sck, (char*) &err, sizeof(err), Ptcp) < 0) { 1369 i_errno = IECTRLWRITE; 1370 return -1; 1371 } 1372 err = htonl(errno); 1373 if (Nwrite(test->ctrl_sck, (char*) &err, sizeof(err), Ptcp) < 0) { 1374 i_errno = IECTRLWRITE; 1375 return -1; 1376 } 1377 return -1; 1378 } 1379 FD_SET(s, &test->read_set); 1380 test->max_fd = (s > test->max_fd) ? s : test->max_fd; 1381 test->prot_listener = s; 1382 1383 // Send the control message to create streams and start the test 1384 if (iperf_set_send_state(test, CREATE_STREAMS) != 0) 1385 return -1; 1386 1387 } 1388 1389 return 0; 1390 } 1391 1392 /*************************************************************/ 1393 1394 int 1395 iperf_exchange_results(struct iperf_test *test) 1396 { 1397 if (test->role == 'c') { 1398 /* Send results to server. */ 1399 if (send_results(test) < 0) 1400 return -1; 1401 /* Get server results. */ 1402 if (get_results(test) < 0) 1403 return -1; 1404 } else { 1405 /* Get client results. */ 1406 if (get_results(test) < 0) 1407 return -1; 1408 /* Send results to client. */ 1409 if (send_results(test) < 0) 1410 return -1; 1411 } 1412 return 0; 1413 } 1414 1415 /*************************************************************/ 1416 1417 static int 1418 send_parameters(struct iperf_test *test) 1419 { 1420 int r = 0; 1421 cJSON *j; 1422 1423 j = cJSON_CreateObject(); 1424 if (j == NULL) { 1425 i_errno = IESENDPARAMS; 1426 r = -1; 1427 } else { 1428 if (test->protocol->id == Ptcp) 1429 cJSON_AddTrueToObject(j, "tcp"); 1430 else if (test->protocol->id == Pudp) 1431 cJSON_AddTrueToObject(j, "udp"); 1432 else if (test->protocol->id == Psctp) 1433 cJSON_AddTrueToObject(j, "sctp"); 1434 cJSON_AddNumberToObject(j, "omit", test->omit); 1435 if (test->server_affinity != -1) 1436 cJSON_AddNumberToObject(j, "server_affinity", test->server_affinity); 1437 if (test->duration) 1438 cJSON_AddNumberToObject(j, "time", test->duration); 1439 if (test->settings->bytes) 1440 cJSON_AddNumberToObject(j, "num", test->settings->bytes); 1441 if (test->settings->blocks) 1442 cJSON_AddNumberToObject(j, "blockcount", test->settings->blocks); 1443 if (test->settings->mss) 1444 cJSON_AddNumberToObject(j, "MSS", test->settings->mss); 1445 if (test->no_delay) 1446 cJSON_AddTrueToObject(j, "nodelay"); 1447 cJSON_AddNumberToObject(j, "parallel", test->num_streams); 1448 if (test->reverse) 1449 cJSON_AddTrueToObject(j, "reverse"); 1450 if (test->settings->socket_bufsize) 1451 cJSON_AddNumberToObject(j, "window", test->settings->socket_bufsize); 1452 if (test->settings->blksize) 1453 cJSON_AddNumberToObject(j, "len", test->settings->blksize); 1454 if (test->settings->rate) 1455 cJSON_AddNumberToObject(j, "bandwidth", test->settings->rate); 1456 if (test->settings->fqrate) 1457 cJSON_AddNumberToObject(j, "fqrate", test->settings->fqrate); 1458 if (test->settings->burst) 1459 cJSON_AddNumberToObject(j, "burst", test->settings->burst); 1460 if (test->settings->tos) 1461 cJSON_AddNumberToObject(j, "TOS", test->settings->tos); 1462 if (test->settings->flowlabel) 1463 cJSON_AddNumberToObject(j, "flowlabel", test->settings->flowlabel); 1464 if (test->title) 1465 cJSON_AddStringToObject(j, "title", test->title); 1466 if (test->congestion) 1467 cJSON_AddStringToObject(j, "congestion", test->congestion); 1468 if (test->congestion_used) 1469 cJSON_AddStringToObject(j, "congestion_used", test->congestion_used); 1470 if (test->get_server_output) 1471 cJSON_AddNumberToObject(j, "get_server_output", iperf_get_test_get_server_output(test)); 1472 if (test->udp_counters_64bit) 1473 cJSON_AddNumberToObject(j, "udp_counters_64bit", iperf_get_test_udp_counters_64bit(test)); 1474 #if defined(HAVE_SSL) 1475 if (test->settings->authtoken) 1476 cJSON_AddStringToObject(j, "authtoken", test->settings->authtoken); 1477 #endif // HAVE_SSL 1478 cJSON_AddStringToObject(j, "client_version", IPERF_VERSION); 1479 1480 if (test->debug) { 1481 printf("send_parameters:\n%s\n", cJSON_Print(j)); 1482 } 1483 1484 if (JSON_write(test->ctrl_sck, j) < 0) { 1485 i_errno = IESENDPARAMS; 1486 r = -1; 1487 } 1488 cJSON_Delete(j); 1489 } 1490 return r; 1491 } 1492 1493 /*************************************************************/ 1494 1495 static int 1496 get_parameters(struct iperf_test *test) 1497 { 1498 int r = 0; 1499 cJSON *j; 1500 cJSON *j_p; 1501 1502 j = JSON_read(test->ctrl_sck); 1503 if (j == NULL) { 1504 i_errno = IERECVPARAMS; 1505 r = -1; 1506 } else { 1507 if (test->debug) { 1508 printf("get_parameters:\n%s\n", cJSON_Print(j)); 1509 } 1510 1511 if ((j_p = cJSON_GetObjectItem(j, "tcp")) != NULL) 1512 set_protocol(test, Ptcp); 1513 if ((j_p = cJSON_GetObjectItem(j, "udp")) != NULL) 1514 set_protocol(test, Pudp); 1515 if ((j_p = cJSON_GetObjectItem(j, "sctp")) != NULL) 1516 set_protocol(test, Psctp); 1517 if ((j_p = cJSON_GetObjectItem(j, "omit")) != NULL) 1518 test->omit = j_p->valueint; 1519 if ((j_p = cJSON_GetObjectItem(j, "server_affinity")) != NULL) 1520 test->server_affinity = j_p->valueint; 1521 if ((j_p = cJSON_GetObjectItem(j, "time")) != NULL) 1522 test->duration = j_p->valueint; 1523 if ((j_p = cJSON_GetObjectItem(j, "num")) != NULL) 1524 test->settings->bytes = j_p->valueint; 1525 if ((j_p = cJSON_GetObjectItem(j, "blockcount")) != NULL) 1526 test->settings->blocks = j_p->valueint; 1527 if ((j_p = cJSON_GetObjectItem(j, "MSS")) != NULL) 1528 test->settings->mss = j_p->valueint; 1529 if ((j_p = cJSON_GetObjectItem(j, "nodelay")) != NULL) 1530 test->no_delay = 1; 1531 if ((j_p = cJSON_GetObjectItem(j, "parallel")) != NULL) 1532 test->num_streams = j_p->valueint; 1533 if ((j_p = cJSON_GetObjectItem(j, "reverse")) != NULL) 1534 iperf_set_test_reverse(test, 1); 1535 if ((j_p = cJSON_GetObjectItem(j, "window")) != NULL) 1536 test->settings->socket_bufsize = j_p->valueint; 1537 if ((j_p = cJSON_GetObjectItem(j, "len")) != NULL) 1538 test->settings->blksize = j_p->valueint; 1539 if ((j_p = cJSON_GetObjectItem(j, "bandwidth")) != NULL) 1540 test->settings->rate = j_p->valueint; 1541 if ((j_p = cJSON_GetObjectItem(j, "fqrate")) != NULL) 1542 test->settings->fqrate = j_p->valueint; 1543 if ((j_p = cJSON_GetObjectItem(j, "burst")) != NULL) 1544 test->settings->burst = j_p->valueint; 1545 if ((j_p = cJSON_GetObjectItem(j, "TOS")) != NULL) 1546 test->settings->tos = j_p->valueint; 1547 if ((j_p = cJSON_GetObjectItem(j, "flowlabel")) != NULL) 1548 test->settings->flowlabel = j_p->valueint; 1549 if ((j_p = cJSON_GetObjectItem(j, "title")) != NULL) 1550 test->title = strdup(j_p->valuestring); 1551 if ((j_p = cJSON_GetObjectItem(j, "congestion")) != NULL) 1552 test->congestion = strdup(j_p->valuestring); 1553 if ((j_p = cJSON_GetObjectItem(j, "congestion_used")) != NULL) 1554 test->congestion_used = strdup(j_p->valuestring); 1555 if ((j_p = cJSON_GetObjectItem(j, "get_server_output")) != NULL) 1556 iperf_set_test_get_server_output(test, 1); 1557 if ((j_p = cJSON_GetObjectItem(j, "udp_counters_64bit")) != NULL) 1558 iperf_set_test_udp_counters_64bit(test, 1); 1559 #if defined(HAVE_SSL) 1560 if ((j_p = cJSON_GetObjectItem(j, "authtoken")) != NULL) 1561 test->settings->authtoken = strdup(j_p->valuestring); 1562 #endif //HAVE_SSL 1563 if (test->sender && test->protocol->id == Ptcp && has_tcpinfo_retransmits()) 1564 test->sender_has_retransmits = 1; 1565 cJSON_Delete(j); 1566 } 1567 return r; 1568 } 1569 1570 /*************************************************************/ 1571 1572 static int 1573 send_results(struct iperf_test *test) 1574 { 1575 int r = 0; 1576 cJSON *j; 1577 cJSON *j_streams; 1578 struct iperf_stream *sp; 1579 cJSON *j_stream; 1580 int sender_has_retransmits; 1581 iperf_size_t bytes_transferred; 1582 int retransmits; 1583 1584 j = cJSON_CreateObject(); 1585 if (j == NULL) { 1586 i_errno = IEPACKAGERESULTS; 1587 r = -1; 1588 } else { 1589 cJSON_AddNumberToObject(j, "cpu_util_total", test->cpu_util[0]); 1590 cJSON_AddNumberToObject(j, "cpu_util_user", test->cpu_util[1]); 1591 cJSON_AddNumberToObject(j, "cpu_util_system", test->cpu_util[2]); 1592 if ( ! test->sender ) 1593 sender_has_retransmits = -1; 1594 else 1595 sender_has_retransmits = test->sender_has_retransmits; 1596 cJSON_AddNumberToObject(j, "sender_has_retransmits", sender_has_retransmits); 1597 if ( test->congestion_used ) { 1598 cJSON_AddStringToObject(j, "congestion_used", test->congestion_used); 1599 } 1600 1601 /* If on the server and sending server output, then do this */ 1602 if (test->role == 's' && test->get_server_output) { 1603 if (test->json_output) { 1604 /* Add JSON output */ 1605 cJSON_AddItemReferenceToObject(j, "server_output_json", test->json_top); 1606 } 1607 else { 1608 /* Add textual output */ 1609 size_t buflen = 0; 1610 1611 /* Figure out how much room we need to hold the complete output string */ 1612 struct iperf_textline *t; 1613 TAILQ_FOREACH(t, &(test->server_output_list), textlineentries) { 1614 buflen += strlen(t->line); 1615 } 1616 1617 /* Allocate and build it up from the component lines */ 1618 char *output = calloc(buflen + 1, 1); 1619 TAILQ_FOREACH(t, &(test->server_output_list), textlineentries) { 1620 strncat(output, t->line, buflen); 1621 buflen -= strlen(t->line); 1622 } 1623 1624 cJSON_AddStringToObject(j, "server_output_text", output); 1625 } 1626 } 1627 1628 j_streams = cJSON_CreateArray(); 1629 if (j_streams == NULL) { 1630 i_errno = IEPACKAGERESULTS; 1631 r = -1; 1632 } else { 1633 cJSON_AddItemToObject(j, "streams", j_streams); 1634 SLIST_FOREACH(sp, &test->streams, streams) { 1635 j_stream = cJSON_CreateObject(); 1636 if (j_stream == NULL) { 1637 i_errno = IEPACKAGERESULTS; 1638 r = -1; 1639 } else { 1640 cJSON_AddItemToArray(j_streams, j_stream); 1641 bytes_transferred = test->sender ? (sp->result->bytes_sent - sp->result->bytes_sent_omit) : sp->result->bytes_received; 1642 retransmits = (test->sender && test->sender_has_retransmits) ? sp->result->stream_retrans : -1; 1643 cJSON_AddNumberToObject(j_stream, "id", sp->id); 1644 cJSON_AddNumberToObject(j_stream, "bytes", bytes_transferred); 1645 cJSON_AddNumberToObject(j_stream, "retransmits", retransmits); 1646 cJSON_AddNumberToObject(j_stream, "jitter", sp->jitter); 1647 cJSON_AddNumberToObject(j_stream, "errors", sp->cnt_error); 1648 cJSON_AddNumberToObject(j_stream, "packets", sp->packet_count); 1649 } 1650 } 1651 if (r == 0 && test->debug) { 1652 printf("send_results\n%s\n", cJSON_Print(j)); 1653 } 1654 if (r == 0 && JSON_write(test->ctrl_sck, j) < 0) { 1655 i_errno = IESENDRESULTS; 1656 r = -1; 1657 } 1658 } 1659 cJSON_Delete(j); 1660 } 1661 return r; 1662 } 1663 1664 /*************************************************************/ 1665 1666 static int 1667 get_results(struct iperf_test *test) 1668 { 1669 int r = 0; 1670 cJSON *j; 1671 cJSON *j_cpu_util_total; 1672 cJSON *j_cpu_util_user; 1673 cJSON *j_cpu_util_system; 1674 cJSON *j_remote_congestion_used; 1675 cJSON *j_sender_has_retransmits; 1676 int result_has_retransmits; 1677 cJSON *j_streams; 1678 int n, i; 1679 cJSON *j_stream; 1680 cJSON *j_id; 1681 cJSON *j_bytes; 1682 cJSON *j_retransmits; 1683 cJSON *j_jitter; 1684 cJSON *j_errors; 1685 cJSON *j_packets; 1686 cJSON *j_server_output; 1687 int sid, cerror, pcount; 1688 double jitter; 1689 iperf_size_t bytes_transferred; 1690 int retransmits; 1691 struct iperf_stream *sp; 1692 1693 j = JSON_read(test->ctrl_sck); 1694 if (j == NULL) { 1695 i_errno = IERECVRESULTS; 1696 r = -1; 1697 } else { 1698 j_cpu_util_total = cJSON_GetObjectItem(j, "cpu_util_total"); 1699 j_cpu_util_user = cJSON_GetObjectItem(j, "cpu_util_user"); 1700 j_cpu_util_system = cJSON_GetObjectItem(j, "cpu_util_system"); 1701 j_sender_has_retransmits = cJSON_GetObjectItem(j, "sender_has_retransmits"); 1702 if (j_cpu_util_total == NULL || j_cpu_util_user == NULL || j_cpu_util_system == NULL || j_sender_has_retransmits == NULL) { 1703 i_errno = IERECVRESULTS; 1704 r = -1; 1705 } else { 1706 if (test->debug) { 1707 printf("get_results\n%s\n", cJSON_Print(j)); 1708 } 1709 1710 test->remote_cpu_util[0] = j_cpu_util_total->valuedouble; 1711 test->remote_cpu_util[1] = j_cpu_util_user->valuedouble; 1712 test->remote_cpu_util[2] = j_cpu_util_system->valuedouble; 1713 result_has_retransmits = j_sender_has_retransmits->valueint; 1714 if (! test->sender) 1715 test->sender_has_retransmits = result_has_retransmits; 1716 j_streams = cJSON_GetObjectItem(j, "streams"); 1717 if (j_streams == NULL) { 1718 i_errno = IERECVRESULTS; 1719 r = -1; 1720 } else { 1721 n = cJSON_GetArraySize(j_streams); 1722 for (i=0; i<n; ++i) { 1723 j_stream = cJSON_GetArrayItem(j_streams, i); 1724 if (j_stream == NULL) { 1725 i_errno = IERECVRESULTS; 1726 r = -1; 1727 } else { 1728 j_id = cJSON_GetObjectItem(j_stream, "id"); 1729 j_bytes = cJSON_GetObjectItem(j_stream, "bytes"); 1730 j_retransmits = cJSON_GetObjectItem(j_stream, "retransmits"); 1731 j_jitter = cJSON_GetObjectItem(j_stream, "jitter"); 1732 j_errors = cJSON_GetObjectItem(j_stream, "errors"); 1733 j_packets = cJSON_GetObjectItem(j_stream, "packets"); 1734 if (j_id == NULL || j_bytes == NULL || j_retransmits == NULL || j_jitter == NULL || j_errors == NULL || j_packets == NULL) { 1735 i_errno = IERECVRESULTS; 1736 r = -1; 1737 } else { 1738 sid = j_id->valueint; 1739 bytes_transferred = j_bytes->valueint; 1740 retransmits = j_retransmits->valueint; 1741 jitter = j_jitter->valuedouble; 1742 cerror = j_errors->valueint; 1743 pcount = j_packets->valueint; 1744 SLIST_FOREACH(sp, &test->streams, streams) 1745 if (sp->id == sid) break; 1746 if (sp == NULL) { 1747 i_errno = IESTREAMID; 1748 r = -1; 1749 } else { 1750 if (test->sender) { 1751 sp->jitter = jitter; 1752 sp->cnt_error = cerror; 1753 sp->packet_count = pcount; 1754 sp->result->bytes_received = bytes_transferred; 1755 } else { 1756 sp->result->bytes_sent = bytes_transferred; 1757 sp->result->stream_retrans = retransmits; 1758 } 1759 } 1760 } 1761 } 1762 } 1763 /* 1764 * If we're the client and we're supposed to get remote results, 1765 * look them up and process accordingly. 1766 */ 1767 if (test->role == 'c' && iperf_get_test_get_server_output(test)) { 1768 /* Look for JSON. If we find it, grab the object so it doesn't get deleted. */ 1769 j_server_output = cJSON_DetachItemFromObject(j, "server_output_json"); 1770 if (j_server_output != NULL) { 1771 test->json_server_output = j_server_output; 1772 } 1773 else { 1774 /* No JSON, look for textual output. Make a copy of the text for later. */ 1775 j_server_output = cJSON_GetObjectItem(j, "server_output_text"); 1776 if (j_server_output != NULL) { 1777 test->server_output_text = strdup(j_server_output->valuestring); 1778 } 1779 } 1780 } 1781 } 1782 } 1783 1784 j_remote_congestion_used = cJSON_GetObjectItem(j, "congestion_used"); 1785 if (j_remote_congestion_used != NULL) { 1786 test->remote_congestion_used = strdup(j_remote_congestion_used->valuestring); 1787 } 1788 1789 cJSON_Delete(j); 1790 } 1791 return r; 1792 } 1793 1794 /*************************************************************/ 1795 1796 static int 1797 JSON_write(int fd, cJSON *json) 1798 { 1799 uint32_t hsize, nsize; 1800 char *str; 1801 int r = 0; 1802 1803 str = cJSON_PrintUnformatted(json); 1804 if (str == NULL) 1805 r = -1; 1806 else { 1807 hsize = strlen(str); 1808 nsize = htonl(hsize); 1809 if (Nwrite(fd, (char*) &nsize, sizeof(nsize), Ptcp) < 0) 1810 r = -1; 1811 else { 1812 if (Nwrite(fd, str, hsize, Ptcp) < 0) 1813 r = -1; 1814 } 1815 free(str); 1816 } 1817 return r; 1818 } 1819 1820 /*************************************************************/ 1821 1822 static cJSON * 1823 JSON_read(int fd) 1824 { 1825 uint32_t hsize, nsize; 1826 char *str; 1827 cJSON *json = NULL; 1828 int rc; 1829 1830 /* 1831 * Read a four-byte integer, which is the length of the JSON to follow. 1832 * Then read the JSON into a buffer and parse it. Return a parsed JSON 1833 * structure, NULL if there was an error. 1834 */ 1835 if (Nread(fd, (char*) &nsize, sizeof(nsize), Ptcp) >= 0) { 1836 hsize = ntohl(nsize); 1837 /* Allocate a buffer to hold the JSON */ 1838 str = (char *) calloc(sizeof(char), hsize+1); /* +1 for trailing null */ 1839 if (str != NULL) { 1840 rc = Nread(fd, str, hsize, Ptcp); 1841 if (rc >= 0) { 1842 /* 1843 * We should be reading in the number of bytes corresponding to the 1844 * length in that 4-byte integer. If we don't the socket might have 1845 * prematurely closed. Only do the JSON parsing if we got the 1846 * correct number of bytes. 1847 */ 1848 if (rc == hsize) { 1849 json = cJSON_Parse(str); 1850 } 1851 else { 1852 printf("WARNING: Size of data read does not correspond to offered length\n"); 1853 } 1854 } 1855 } 1856 free(str); 1857 } 1858 return json; 1859 } 1860 1861 /*************************************************************/ 1862 /** 1863 * add_to_interval_list -- adds new interval to the interval_list 1864 */ 1865 1866 void 1867 add_to_interval_list(struct iperf_stream_result * rp, struct iperf_interval_results * new) 1868 { 1869 struct iperf_interval_results *irp; 1870 1871 irp = (struct iperf_interval_results *) malloc(sizeof(struct iperf_interval_results)); 1872 memcpy(irp, new, sizeof(struct iperf_interval_results)); 1873 TAILQ_INSERT_TAIL(&rp->interval_results, irp, irlistentries); 1874 } 1875 1876 1877 /************************************************************/ 1878 1879 /** 1880 * connect_msg -- displays connection message 1881 * denoting sender/receiver details 1882 * 1883 */ 1884 1885 void 1886 connect_msg(struct iperf_stream *sp) 1887 { 1888 char ipl[INET6_ADDRSTRLEN], ipr[INET6_ADDRSTRLEN]; 1889 int lport, rport; 1890 1891 if (getsockdomain(sp->socket) == AF_INET) { 1892 inet_ntop(AF_INET, (void *) &((struct sockaddr_in *) &sp->local_addr)->sin_addr, ipl, sizeof(ipl)); 1893 mapped_v4_to_regular_v4(ipl); 1894 inet_ntop(AF_INET, (void *) &((struct sockaddr_in *) &sp->remote_addr)->sin_addr, ipr, sizeof(ipr)); 1895 mapped_v4_to_regular_v4(ipr); 1896 lport = ntohs(((struct sockaddr_in *) &sp->local_addr)->sin_port); 1897 rport = ntohs(((struct sockaddr_in *) &sp->remote_addr)->sin_port); 1898 } else { 1899 inet_ntop(AF_INET6, (void *) &((struct sockaddr_in6 *) &sp->local_addr)->sin6_addr, ipl, sizeof(ipl)); 1900 mapped_v4_to_regular_v4(ipl); 1901 inet_ntop(AF_INET6, (void *) &((struct sockaddr_in6 *) &sp->remote_addr)->sin6_addr, ipr, sizeof(ipr)); 1902 mapped_v4_to_regular_v4(ipr); 1903 lport = ntohs(((struct sockaddr_in6 *) &sp->local_addr)->sin6_port); 1904 rport = ntohs(((struct sockaddr_in6 *) &sp->remote_addr)->sin6_port); 1905 } 1906 1907 if (sp->test->json_output) 1908 cJSON_AddItemToArray(sp->test->json_connected, iperf_json_printf("socket: %d local_host: %s local_port: %d remote_host: %s remote_port: %d", (int64_t) sp->socket, ipl, (int64_t) lport, ipr, (int64_t) rport)); 1909 else 1910 iperf_printf(sp->test, report_connected, sp->socket, ipl, lport, ipr, rport); 1911 } 1912 1913 1914 /**************************************************************************/ 1915 1916 struct iperf_test * 1917 iperf_new_test() 1918 { 1919 struct iperf_test *test; 1920 1921 test = (struct iperf_test *) malloc(sizeof(struct iperf_test)); 1922 if (!test) { 1923 i_errno = IENEWTEST; 1924 return NULL; 1925 } 1926 /* initialize everything to zero */ 1927 memset(test, 0, sizeof(struct iperf_test)); 1928 1929 test->settings = (struct iperf_settings *) malloc(sizeof(struct iperf_settings)); 1930 if (!test->settings) { 1931 free(test); 1932 i_errno = IENEWTEST; 1933 return NULL; 1934 } 1935 memset(test->settings, 0, sizeof(struct iperf_settings)); 1936 1937 /* By default all output goes to stdout */ 1938 test->outfile = stdout; 1939 1940 return test; 1941 } 1942 1943 /**************************************************************************/ 1944 1945 struct protocol * 1946 protocol_new(void) 1947 { 1948 struct protocol *proto; 1949 1950 proto = malloc(sizeof(struct protocol)); 1951 if(!proto) { 1952 return NULL; 1953 } 1954 memset(proto, 0, sizeof(struct protocol)); 1955 1956 return proto; 1957 } 1958 1959 void 1960 protocol_free(struct protocol *proto) 1961 { 1962 free(proto); 1963 } 1964 1965 /**************************************************************************/ 1966 int 1967 iperf_defaults(struct iperf_test *testp) 1968 { 1969 struct protocol *tcp, *udp; 1970 #if defined(HAVE_SCTP) 1971 struct protocol *sctp; 1972 #endif /* HAVE_SCTP */ 1973 1974 testp->omit = OMIT; 1975 testp->duration = DURATION; 1976 testp->diskfile_name = (char*) 0; 1977 testp->affinity = -1; 1978 testp->server_affinity = -1; 1979 TAILQ_INIT(&testp->xbind_addrs); 1980 #if defined(HAVE_CPUSET_SETAFFINITY) 1981 CPU_ZERO(&testp->cpumask); 1982 #endif /* HAVE_CPUSET_SETAFFINITY */ 1983 testp->title = NULL; 1984 testp->congestion = NULL; 1985 testp->congestion_used = NULL; 1986 testp->remote_congestion_used = NULL; 1987 testp->server_port = PORT; 1988 testp->ctrl_sck = -1; 1989 testp->prot_listener = -1; 1990 1991 testp->stats_callback = iperf_stats_callback; 1992 testp->reporter_callback = iperf_reporter_callback; 1993 1994 testp->stats_interval = testp->reporter_interval = 1; 1995 testp->num_streams = 1; 1996 1997 testp->settings->domain = AF_UNSPEC; 1998 testp->settings->unit_format = 'a'; 1999 testp->settings->socket_bufsize = 0; /* use autotuning */ 2000 testp->settings->blksize = DEFAULT_TCP_BLKSIZE; 2001 testp->settings->rate = 0; 2002 testp->settings->fqrate = 0; 2003 testp->settings->burst = 0; 2004 testp->settings->mss = 0; 2005 testp->settings->bytes = 0; 2006 testp->settings->blocks = 0; 2007 memset(testp->cookie, 0, COOKIE_SIZE); 2008 2009 testp->multisend = 10; /* arbitrary */ 2010 2011 /* Set up protocol list */ 2012 SLIST_INIT(&testp->streams); 2013 SLIST_INIT(&testp->protocols); 2014 2015 tcp = protocol_new(); 2016 if (!tcp) 2017 return -1; 2018 2019 tcp->id = Ptcp; 2020 tcp->name = "TCP"; 2021 tcp->accept = iperf_tcp_accept; 2022 tcp->listen = iperf_tcp_listen; 2023 tcp->connect = iperf_tcp_connect; 2024 tcp->send = iperf_tcp_send; 2025 tcp->recv = iperf_tcp_recv; 2026 tcp->init = NULL; 2027 SLIST_INSERT_HEAD(&testp->protocols, tcp, protocols); 2028 2029 udp = protocol_new(); 2030 if (!udp) { 2031 protocol_free(tcp); 2032 return -1; 2033 } 2034 2035 udp->id = Pudp; 2036 udp->name = "UDP"; 2037 udp->accept = iperf_udp_accept; 2038 udp->listen = iperf_udp_listen; 2039 udp->connect = iperf_udp_connect; 2040 udp->send = iperf_udp_send; 2041 udp->recv = iperf_udp_recv; 2042 udp->init = iperf_udp_init; 2043 SLIST_INSERT_AFTER(tcp, udp, protocols); 2044 2045 set_protocol(testp, Ptcp); 2046 2047 #if defined(HAVE_SCTP) 2048 sctp = protocol_new(); 2049 if (!sctp) { 2050 protocol_free(tcp); 2051 protocol_free(udp); 2052 return -1; 2053 } 2054 2055 sctp->id = Psctp; 2056 sctp->name = "SCTP"; 2057 sctp->accept = iperf_sctp_accept; 2058 sctp->listen = iperf_sctp_listen; 2059 sctp->connect = iperf_sctp_connect; 2060 sctp->send = iperf_sctp_send; 2061 sctp->recv = iperf_sctp_recv; 2062 sctp->init = iperf_sctp_init; 2063 2064 SLIST_INSERT_AFTER(udp, sctp, protocols); 2065 #endif /* HAVE_SCTP */ 2066 2067 testp->on_new_stream = iperf_on_new_stream; 2068 testp->on_test_start = iperf_on_test_start; 2069 testp->on_connect = iperf_on_connect; 2070 testp->on_test_finish = iperf_on_test_finish; 2071 2072 TAILQ_INIT(&testp->server_output_list); 2073 2074 return 0; 2075 } 2076 2077 2078 /**************************************************************************/ 2079 void 2080 iperf_free_test(struct iperf_test *test) 2081 { 2082 struct protocol *prot; 2083 struct iperf_stream *sp; 2084 2085 /* Free streams */ 2086 while (!SLIST_EMPTY(&test->streams)) { 2087 sp = SLIST_FIRST(&test->streams); 2088 SLIST_REMOVE_HEAD(&test->streams, streams); 2089 iperf_free_stream(sp); 2090 } 2091 2092 if (test->server_hostname) 2093 free(test->server_hostname); 2094 if (test->tmp_template) 2095 free(test->tmp_template); 2096 if (test->bind_address) 2097 free(test->bind_address); 2098 if (!TAILQ_EMPTY(&test->xbind_addrs)) { 2099 struct xbind_entry *xbe; 2100 2101 while (!TAILQ_EMPTY(&test->xbind_addrs)) { 2102 xbe = TAILQ_FIRST(&test->xbind_addrs); 2103 TAILQ_REMOVE(&test->xbind_addrs, xbe, link); 2104 if (xbe->ai) 2105 freeaddrinfo(xbe->ai); 2106 free(xbe->name); 2107 free(xbe); 2108 } 2109 } 2110 if (test->settings) 2111 free(test->settings); 2112 if (test->title) 2113 free(test->title); 2114 if (test->congestion) 2115 free(test->congestion); 2116 if (test->congestion_used) 2117 free(test->congestion_used); 2118 if (test->remote_congestion_used) 2119 free(test->remote_congestion_used); 2120 if (test->omit_timer != NULL) 2121 tmr_cancel(test->omit_timer); 2122 if (test->timer != NULL) 2123 tmr_cancel(test->timer); 2124 if (test->stats_timer != NULL) 2125 tmr_cancel(test->stats_timer); 2126 if (test->reporter_timer != NULL) 2127 tmr_cancel(test->reporter_timer); 2128 2129 /* Free protocol list */ 2130 while (!SLIST_EMPTY(&test->protocols)) { 2131 prot = SLIST_FIRST(&test->protocols); 2132 SLIST_REMOVE_HEAD(&test->protocols, protocols); 2133 free(prot); 2134 } 2135 2136 if (test->server_output_text) { 2137 free(test->server_output_text); 2138 test->server_output_text = NULL; 2139 } 2140 2141 if (test->json_output_string) { 2142 free(test->json_output_string); 2143 test->json_output_string = NULL; 2144 } 2145 2146 /* Free output line buffers, if any (on the server only) */ 2147 struct iperf_textline *t; 2148 while (!TAILQ_EMPTY(&test->server_output_list)) { 2149 t = TAILQ_FIRST(&test->server_output_list); 2150 TAILQ_REMOVE(&test->server_output_list, t, textlineentries); 2151 free(t->line); 2152 free(t); 2153 } 2154 2155 /* sctp_bindx: do not free the arguments, only the resolver results */ 2156 if (!TAILQ_EMPTY(&test->xbind_addrs)) { 2157 struct xbind_entry *xbe; 2158 2159 TAILQ_FOREACH(xbe, &test->xbind_addrs, link) { 2160 if (xbe->ai) { 2161 freeaddrinfo(xbe->ai); 2162 xbe->ai = NULL; 2163 } 2164 } 2165 } 2166 2167 /* XXX: Why are we setting these values to NULL? */ 2168 // test->streams = NULL; 2169 test->stats_callback = NULL; 2170 test->reporter_callback = NULL; 2171 free(test); 2172 } 2173 2174 2175 void 2176 iperf_reset_test(struct iperf_test *test) 2177 { 2178 struct iperf_stream *sp; 2179 2180 /* Free streams */ 2181 while (!SLIST_EMPTY(&test->streams)) { 2182 sp = SLIST_FIRST(&test->streams); 2183 SLIST_REMOVE_HEAD(&test->streams, streams); 2184 iperf_free_stream(sp); 2185 } 2186 if (test->omit_timer != NULL) { 2187 tmr_cancel(test->omit_timer); 2188 test->omit_timer = NULL; 2189 } 2190 if (test->timer != NULL) { 2191 tmr_cancel(test->timer); 2192 test->timer = NULL; 2193 } 2194 if (test->stats_timer != NULL) { 2195 tmr_cancel(test->stats_timer); 2196 test->stats_timer = NULL; 2197 } 2198 if (test->reporter_timer != NULL) { 2199 tmr_cancel(test->reporter_timer); 2200 test->reporter_timer = NULL; 2201 } 2202 test->done = 0; 2203 2204 SLIST_INIT(&test->streams); 2205 2206 test->role = 's'; 2207 test->sender = 0; 2208 test->sender_has_retransmits = 0; 2209 set_protocol(test, Ptcp); 2210 test->omit = OMIT; 2211 test->duration = DURATION; 2212 test->server_affinity = -1; 2213 #if defined(HAVE_CPUSET_SETAFFINITY) 2214 CPU_ZERO(&test->cpumask); 2215 #endif /* HAVE_CPUSET_SETAFFINITY */ 2216 test->state = 0; 2217 2218 test->ctrl_sck = -1; 2219 test->prot_listener = -1; 2220 2221 test->bytes_sent = 0; 2222 test->blocks_sent = 0; 2223 2224 test->reverse = 0; 2225 test->no_delay = 0; 2226 2227 FD_ZERO(&test->read_set); 2228 FD_ZERO(&test->write_set); 2229 2230 test->num_streams = 1; 2231 test->settings->socket_bufsize = 0; 2232 test->settings->blksize = DEFAULT_TCP_BLKSIZE; 2233 test->settings->rate = 0; 2234 test->settings->burst = 0; 2235 test->settings->mss = 0; 2236 memset(test->cookie, 0, COOKIE_SIZE); 2237 test->multisend = 10; /* arbitrary */ 2238 test->udp_counters_64bit = 0; 2239 if (test->title) { 2240 free(test->title); 2241 test->title = NULL; 2242 } 2243 2244 /* Free output line buffers, if any (on the server only) */ 2245 struct iperf_textline *t; 2246 while (!TAILQ_EMPTY(&test->server_output_list)) { 2247 t = TAILQ_FIRST(&test->server_output_list); 2248 TAILQ_REMOVE(&test->server_output_list, t, textlineentries); 2249 free(t->line); 2250 free(t); 2251 } 2252 } 2253 2254 2255 /* Reset all of a test's stats back to zero. Called when the omitting 2256 ** period is over. 2257 */ 2258 void 2259 iperf_reset_stats(struct iperf_test *test) 2260 { 2261 struct timeval now; 2262 struct iperf_stream *sp; 2263 struct iperf_stream_result *rp; 2264 2265 test->bytes_sent = 0; 2266 test->blocks_sent = 0; 2267 gettimeofday(&now, NULL); 2268 SLIST_FOREACH(sp, &test->streams, streams) { 2269 sp->omitted_packet_count = sp->packet_count; 2270 sp->omitted_cnt_error = sp->cnt_error; 2271 sp->omitted_outoforder_packets = sp->outoforder_packets; 2272 sp->jitter = 0; 2273 rp = sp->result; 2274 rp->bytes_sent_omit = rp->bytes_sent; 2275 rp->bytes_received = 0; 2276 rp->bytes_sent_this_interval = rp->bytes_received_this_interval = 0; 2277 if (test->sender && test->sender_has_retransmits) { 2278 struct iperf_interval_results ir; /* temporary results structure */ 2279 save_tcpinfo(sp, &ir); 2280 rp->stream_prev_total_retrans = get_total_retransmits(&ir); 2281 } 2282 rp->stream_retrans = 0; 2283 rp->start_time = now; 2284 } 2285 } 2286 2287 2288 /**************************************************************************/ 2289 2290 /** 2291 * Gather statistics during a test. 2292 * This function works for both the client and server side. 2293 */ 2294 void 2295 iperf_stats_callback(struct iperf_test *test) 2296 { 2297 struct iperf_stream *sp; 2298 struct iperf_stream_result *rp = NULL; 2299 struct iperf_interval_results *irp, temp; 2300 2301 temp.omitted = test->omitting; 2302 SLIST_FOREACH(sp, &test->streams, streams) { 2303 rp = sp->result; 2304 2305 temp.bytes_transferred = test->sender ? rp->bytes_sent_this_interval : rp->bytes_received_this_interval; 2306 2307 irp = TAILQ_LAST(&rp->interval_results, irlisthead); 2308 /* result->end_time contains timestamp of previous interval */ 2309 if ( irp != NULL ) /* not the 1st interval */ 2310 memcpy(&temp.interval_start_time, &rp->end_time, sizeof(struct timeval)); 2311 else /* or use timestamp from beginning */ 2312 memcpy(&temp.interval_start_time, &rp->start_time, sizeof(struct timeval)); 2313 /* now save time of end of this interval */ 2314 gettimeofday(&rp->end_time, NULL); 2315 memcpy(&temp.interval_end_time, &rp->end_time, sizeof(struct timeval)); 2316 temp.interval_duration = timeval_diff(&temp.interval_start_time, &temp.interval_end_time); 2317 //temp.interval_duration = timeval_diff(&temp.interval_start_time, &temp.interval_end_time); 2318 if (test->protocol->id == Ptcp) { 2319 if ( has_tcpinfo()) { 2320 save_tcpinfo(sp, &temp); 2321 if (test->sender && test->sender_has_retransmits) { 2322 long total_retrans = get_total_retransmits(&temp); 2323 temp.interval_retrans = total_retrans - rp->stream_prev_total_retrans; 2324 rp->stream_retrans += temp.interval_retrans; 2325 rp->stream_prev_total_retrans = total_retrans; 2326 2327 temp.snd_cwnd = get_snd_cwnd(&temp); 2328 if (temp.snd_cwnd > rp->stream_max_snd_cwnd) { 2329 rp->stream_max_snd_cwnd = temp.snd_cwnd; 2330 } 2331 2332 temp.rtt = get_rtt(&temp); 2333 if (temp.rtt > rp->stream_max_rtt) { 2334 rp->stream_max_rtt = temp.rtt; 2335 } 2336 if (rp->stream_min_rtt == 0 || 2337 temp.rtt < rp->stream_min_rtt) { 2338 rp->stream_min_rtt = temp.rtt; 2339 } 2340 rp->stream_sum_rtt += temp.rtt; 2341 rp->stream_count_rtt++; 2342 2343 temp.rttvar = get_rttvar(&temp); 2344 } 2345 } 2346 } else { 2347 if (irp == NULL) { 2348 temp.interval_packet_count = sp->packet_count; 2349 temp.interval_outoforder_packets = sp->outoforder_packets; 2350 temp.interval_cnt_error = sp->cnt_error; 2351 } else { 2352 temp.interval_packet_count = sp->packet_count - irp->packet_count; 2353 temp.interval_outoforder_packets = sp->outoforder_packets - irp->outoforder_packets; 2354 temp.interval_cnt_error = sp->cnt_error - irp->cnt_error; 2355 } 2356 temp.packet_count = sp->packet_count; 2357 temp.jitter = sp->jitter; 2358 temp.outoforder_packets = sp->outoforder_packets; 2359 temp.cnt_error = sp->cnt_error; 2360 } 2361 add_to_interval_list(rp, &temp); 2362 rp->bytes_sent_this_interval = rp->bytes_received_this_interval = 0; 2363 } 2364 } 2365 2366 /** 2367 * Print intermediate results during a test (interval report). 2368 * Uses print_interval_results to print the results for each stream, 2369 * then prints an interval summary for all streams in this 2370 * interval. 2371 */ 2372 static void 2373 iperf_print_intermediate(struct iperf_test *test) 2374 { 2375 char ubuf[UNIT_LEN]; 2376 char nbuf[UNIT_LEN]; 2377 struct iperf_stream *sp = NULL; 2378 struct iperf_interval_results *irp; 2379 iperf_size_t bytes = 0; 2380 double bandwidth; 2381 int retransmits = 0; 2382 double start_time, end_time; 2383 cJSON *json_interval; 2384 cJSON *json_interval_streams; 2385 int total_packets = 0, lost_packets = 0; 2386 double avg_jitter = 0.0, lost_percent; 2387 2388 if (test->json_output) { 2389 json_interval = cJSON_CreateObject(); 2390 if (json_interval == NULL) 2391 return; 2392 cJSON_AddItemToArray(test->json_intervals, json_interval); 2393 json_interval_streams = cJSON_CreateArray(); 2394 if (json_interval_streams == NULL) 2395 return; 2396 cJSON_AddItemToObject(json_interval, "streams", json_interval_streams); 2397 } else { 2398 json_interval = NULL; 2399 json_interval_streams = NULL; 2400 } 2401 2402 SLIST_FOREACH(sp, &test->streams, streams) { 2403 print_interval_results(test, sp, json_interval_streams); 2404 /* sum up all streams */ 2405 irp = TAILQ_LAST(&sp->result->interval_results, irlisthead); 2406 if (irp == NULL) { 2407 iperf_err(test, "iperf_print_intermediate error: interval_results is NULL"); 2408 return; 2409 } 2410 bytes += irp->bytes_transferred; 2411 if (test->protocol->id == Ptcp) { 2412 if (test->sender && test->sender_has_retransmits) { 2413 retransmits += irp->interval_retrans; 2414 } 2415 } else { 2416 total_packets += irp->interval_packet_count; 2417 lost_packets += irp->interval_cnt_error; 2418 avg_jitter += irp->jitter; 2419 } 2420 } 2421 2422 /* next build string with sum of all streams */ 2423 if (test->num_streams > 1 || test->json_output) { 2424 sp = SLIST_FIRST(&test->streams); /* reset back to 1st stream */ 2425 /* Only do this of course if there was a first stream */ 2426 if (sp) { 2427 irp = TAILQ_LAST(&sp->result->interval_results, irlisthead); /* use 1st stream for timing info */ 2428 2429 unit_snprintf(ubuf, UNIT_LEN, (double) bytes, 'A'); 2430 bandwidth = (double) bytes / (double) irp->interval_duration; 2431 unit_snprintf(nbuf, UNIT_LEN, bandwidth, test->settings->unit_format); 2432 2433 start_time = timeval_diff(&sp->result->start_time,&irp->interval_start_time); 2434 end_time = timeval_diff(&sp->result->start_time,&irp->interval_end_time); 2435 if (test->protocol->id == Ptcp || test->protocol->id == Psctp) { 2436 if (test->sender && test->sender_has_retransmits) { 2437 /* Interval sum, TCP with retransmits. */ 2438 if (test->json_output) 2439 cJSON_AddItemToObject(json_interval, "sum", iperf_json_printf("start: %f end: %f seconds: %f bytes: %d bits_per_second: %f retransmits: %d omitted: %b", (double) start_time, (double) end_time, (double) irp->interval_duration, (int64_t) bytes, bandwidth * 8, (int64_t) retransmits, irp->omitted)); /* XXX irp->omitted or test->omitting? */ 2440 else 2441 iperf_printf(test, report_sum_bw_retrans_format, start_time, end_time, ubuf, nbuf, retransmits, irp->omitted?report_omitted:""); /* XXX irp->omitted or test->omitting? */ 2442 } else { 2443 /* Interval sum, TCP without retransmits. */ 2444 if (test->json_output) 2445 cJSON_AddItemToObject(json_interval, "sum", iperf_json_printf("start: %f end: %f seconds: %f bytes: %d bits_per_second: %f omitted: %b", (double) start_time, (double) end_time, (double) irp->interval_duration, (int64_t) bytes, bandwidth * 8, test->omitting)); 2446 else 2447 iperf_printf(test, report_sum_bw_format, start_time, end_time, ubuf, nbuf, test->omitting?report_omitted:""); 2448 } 2449 } else { 2450 /* Interval sum, UDP. */ 2451 if (test->sender) { 2452 if (test->json_output) 2453 cJSON_AddItemToObject(json_interval, "sum", iperf_json_printf("start: %f end: %f seconds: %f bytes: %d bits_per_second: %f packets: %d omitted: %b", (double) start_time, (double) end_time, (double) irp->interval_duration, (int64_t) bytes, bandwidth * 8, (int64_t) total_packets, test->omitting)); 2454 else 2455 iperf_printf(test, report_sum_bw_udp_sender_format, start_time, end_time, ubuf, nbuf, total_packets, test->omitting?report_omitted:""); 2456 } else { 2457 avg_jitter /= test->num_streams; 2458 if (total_packets > 0) { 2459 lost_percent = 100.0 * lost_packets / total_packets; 2460 } 2461 else { 2462 lost_percent = 0.0; 2463 } 2464 if (test->json_output) 2465 cJSON_AddItemToObject(json_interval, "sum", iperf_json_printf("start: %f end: %f seconds: %f bytes: %d bits_per_second: %f jitter_ms: %f lost_packets: %d packets: %d lost_percent: %f omitted: %b", (double) start_time, (double) end_time, (double) irp->interval_duration, (int64_t) bytes, bandwidth * 8, (double) avg_jitter * 1000.0, (int64_t) lost_packets, (int64_t) total_packets, (double) lost_percent, test->omitting)); 2466 else 2467 iperf_printf(test, report_sum_bw_udp_format, start_time, end_time, ubuf, nbuf, avg_jitter * 1000.0, lost_packets, total_packets, lost_percent, test->omitting?report_omitted:""); 2468 } 2469 } 2470 } 2471 } 2472 } 2473 2474 /** 2475 * Print overall summary statistics at the end of a test. 2476 */ 2477 static void 2478 iperf_print_results(struct iperf_test *test) 2479 { 2480 2481 cJSON *json_summary_streams = NULL; 2482 cJSON *json_summary_stream = NULL; 2483 int total_retransmits = 0; 2484 int total_packets = 0, lost_packets = 0; 2485 char ubuf[UNIT_LEN]; 2486 char nbuf[UNIT_LEN]; 2487 struct stat sb; 2488 char sbuf[UNIT_LEN]; 2489 struct iperf_stream *sp = NULL; 2490 iperf_size_t bytes_sent, total_sent = 0; 2491 iperf_size_t bytes_received, total_received = 0; 2492 double start_time, end_time, avg_jitter = 0.0, lost_percent; 2493 double bandwidth; 2494 2495 /* print final summary for all intervals */ 2496 2497 if (test->json_output) { 2498 json_summary_streams = cJSON_CreateArray(); 2499 if (json_summary_streams == NULL) 2500 return; 2501 cJSON_AddItemToObject(test->json_end, "streams", json_summary_streams); 2502 } else { 2503 iperf_printf(test, "%s", report_bw_separator); 2504 if (test->verbose) 2505 iperf_printf(test, "%s", report_summary); 2506 if (test->protocol->id == Ptcp || test->protocol->id == Psctp) { 2507 if (test->sender_has_retransmits) 2508 iperf_printf(test, "%s", report_bw_retrans_header); 2509 else 2510 iperf_printf(test, "%s", report_bw_header); 2511 } else 2512 iperf_printf(test, "%s", report_bw_udp_header); 2513 } 2514 2515 start_time = 0.; 2516 sp = SLIST_FIRST(&test->streams); 2517 /* 2518 * If there is at least one stream, then figure out the length of time 2519 * we were running the tests and print out some statistics about 2520 * the streams. It's possible to not have any streams at all 2521 * if the client got interrupted before it got to do anything. 2522 */ 2523 if (sp) { 2524 end_time = timeval_diff(&sp->result->start_time, &sp->result->end_time); 2525 SLIST_FOREACH(sp, &test->streams, streams) { 2526 if (test->json_output) { 2527 json_summary_stream = cJSON_CreateObject(); 2528 if (json_summary_stream == NULL) 2529 return; 2530 cJSON_AddItemToArray(json_summary_streams, json_summary_stream); 2531 } 2532 2533 bytes_sent = sp->result->bytes_sent - sp->result->bytes_sent_omit; 2534 bytes_received = sp->result->bytes_received; 2535 total_sent += bytes_sent; 2536 total_received += bytes_received; 2537 2538 if (test->protocol->id == Ptcp || test->protocol->id == Psctp) { 2539 if (test->sender_has_retransmits) { 2540 total_retransmits += sp->result->stream_retrans; 2541 } 2542 } else { 2543 total_packets += (sp->packet_count - sp->omitted_packet_count); 2544 lost_packets += (sp->cnt_error - sp->omitted_cnt_error); 2545 avg_jitter += sp->jitter; 2546 } 2547 2548 unit_snprintf(ubuf, UNIT_LEN, (double) bytes_sent, 'A'); 2549 bandwidth = (double) bytes_sent / (double) end_time; 2550 unit_snprintf(nbuf, UNIT_LEN, bandwidth, test->settings->unit_format); 2551 if (test->protocol->id == Ptcp || test->protocol->id == Psctp) { 2552 if (test->sender_has_retransmits) { 2553 /* Summary, TCP with retransmits. */ 2554 if (test->json_output) 2555 cJSON_AddItemToObject(json_summary_stream, "sender", iperf_json_printf("socket: %d start: %f end: %f seconds: %f bytes: %d bits_per_second: %f retransmits: %d max_snd_cwnd: %d max_rtt: %d min_rtt: %d mean_rtt: %d", (int64_t) sp->socket, (double) start_time, (double) end_time, (double) end_time, (int64_t) bytes_sent, bandwidth * 8, (int64_t) sp->result->stream_retrans, (int64_t) sp->result->stream_max_snd_cwnd, (int64_t) sp->result->stream_max_rtt, (int64_t) sp->result->stream_min_rtt, (int64_t) ((sp->result->stream_count_rtt == 0) ? 0 : sp->result->stream_sum_rtt / sp->result->stream_count_rtt))); 2556 else 2557 iperf_printf(test, report_bw_retrans_format, sp->socket, start_time, end_time, ubuf, nbuf, sp->result->stream_retrans, report_sender); 2558 } else { 2559 /* Summary, TCP without retransmits. */ 2560 if (test->json_output) 2561 cJSON_AddItemToObject(json_summary_stream, "sender", iperf_json_printf("socket: %d start: %f end: %f seconds: %f bytes: %d bits_per_second: %f", (int64_t) sp->socket, (double) start_time, (double) end_time, (double) end_time, (int64_t) bytes_sent, bandwidth * 8)); 2562 else 2563 iperf_printf(test, report_bw_format, sp->socket, start_time, end_time, ubuf, nbuf, report_sender); 2564 } 2565 } else { 2566 /* Summary, UDP. */ 2567 if (sp->packet_count - sp->omitted_packet_count > 0) { 2568 lost_percent = 100.0 * (sp->cnt_error - sp->omitted_cnt_error) / (sp->packet_count - sp->omitted_packet_count); 2569 } 2570 else { 2571 lost_percent = 0.0; 2572 } 2573 if (test->json_output) 2574 cJSON_AddItemToObject(json_summary_stream, "udp", iperf_json_printf("socket: %d start: %f end: %f seconds: %f bytes: %d bits_per_second: %f jitter_ms: %f lost_packets: %d packets: %d lost_percent: %f out_of_order: %d", (int64_t) sp->socket, (double) start_time, (double) end_time, (double) end_time, (int64_t) bytes_sent, bandwidth * 8, (double) sp->jitter * 1000.0, (int64_t) (sp->cnt_error - sp->omitted_cnt_error), (int64_t) (sp->packet_count - sp->omitted_packet_count), (double) lost_percent, (int64_t) (sp->outoforder_packets - sp->omitted_outoforder_packets))); 2575 else { 2576 iperf_printf(test, report_bw_udp_format, sp->socket, start_time, end_time, ubuf, nbuf, sp->jitter * 1000.0, (sp->cnt_error - sp->omitted_cnt_error), (sp->packet_count - sp->omitted_packet_count), lost_percent, ""); 2577 if (test->role == 'c') 2578 iperf_printf(test, report_datagrams, sp->socket, (sp->packet_count - sp->omitted_packet_count)); 2579 if ((sp->outoforder_packets - sp->omitted_outoforder_packets) > 0) 2580 iperf_printf(test, report_sum_outoforder, start_time, end_time, (sp->outoforder_packets - sp->omitted_outoforder_packets)); 2581 } 2582 } 2583 2584 if (sp->diskfile_fd >= 0) { 2585 if (fstat(sp->diskfile_fd, &sb) == 0) { 2586 /* In the odd case that it's a zero-sized file, say it was all transferred. */ 2587 int percent = 100; 2588 if (sb.st_size > 0) { 2589 percent = (int) ( ( (double) bytes_sent / (double) sb.st_size ) * 100.0 ); 2590 } 2591 unit_snprintf(sbuf, UNIT_LEN, (double) sb.st_size, 'A'); 2592 if (test->json_output) 2593 cJSON_AddItemToObject(json_summary_stream, "diskfile", iperf_json_printf("sent: %d size: %d percent: %d filename: %s", (int64_t) bytes_sent, (int64_t) sb.st_size, (int64_t) percent, test->diskfile_name)); 2594 else 2595 iperf_printf(test, report_diskfile, ubuf, sbuf, percent, test->diskfile_name); 2596 } 2597 } 2598 2599 unit_snprintf(ubuf, UNIT_LEN, (double) bytes_received, 'A'); 2600 bandwidth = (double) bytes_received / (double) end_time; 2601 unit_snprintf(nbuf, UNIT_LEN, bandwidth, test->settings->unit_format); 2602 if (test->protocol->id == Ptcp || test->protocol->id == Psctp) { 2603 if (test->json_output) 2604 cJSON_AddItemToObject(json_summary_stream, "receiver", iperf_json_printf("socket: %d start: %f end: %f seconds: %f bytes: %d bits_per_second: %f", (int64_t) sp->socket, (double) start_time, (double) end_time, (double) end_time, (int64_t) bytes_received, bandwidth * 8)); 2605 else 2606 iperf_printf(test, report_bw_format, sp->socket, start_time, end_time, ubuf, nbuf, report_receiver); 2607 } 2608 } 2609 } 2610 2611 if (test->num_streams > 1 || test->json_output) { 2612 unit_snprintf(ubuf, UNIT_LEN, (double) total_sent, 'A'); 2613 /* If no tests were run, arbitrariliy set bandwidth to 0. */ 2614 if (end_time > 0.0) { 2615 bandwidth = (double) total_sent / (double) end_time; 2616 } 2617 else { 2618 bandwidth = 0.0; 2619 } 2620 unit_snprintf(nbuf, UNIT_LEN, bandwidth, test->settings->unit_format); 2621 if (test->protocol->id == Ptcp || test->protocol->id == Psctp) { 2622 if (test->sender_has_retransmits) { 2623 /* Summary sum, TCP with retransmits. */ 2624 if (test->json_output) 2625 cJSON_AddItemToObject(test->json_end, "sum_sent", iperf_json_printf("start: %f end: %f seconds: %f bytes: %d bits_per_second: %f retransmits: %d", (double) start_time, (double) end_time, (double) end_time, (int64_t) total_sent, bandwidth * 8, (int64_t) total_retransmits)); 2626 else 2627 iperf_printf(test, report_sum_bw_retrans_format, start_time, end_time, ubuf, nbuf, total_retransmits, report_sender); 2628 } else { 2629 /* Summary sum, TCP without retransmits. */ 2630 if (test->json_output) 2631 cJSON_AddItemToObject(test->json_end, "sum_sent", iperf_json_printf("start: %f end: %f seconds: %f bytes: %d bits_per_second: %f", (double) start_time, (double) end_time, (double) end_time, (int64_t) total_sent, bandwidth * 8)); 2632 else 2633 iperf_printf(test, report_sum_bw_format, start_time, end_time, ubuf, nbuf, report_sender); 2634 } 2635 unit_snprintf(ubuf, UNIT_LEN, (double) total_received, 'A'); 2636 /* If no tests were run, set received bandwidth to 0 */ 2637 if (end_time > 0.0) { 2638 bandwidth = (double) total_received / (double) end_time; 2639 } 2640 else { 2641 bandwidth = 0.0; 2642 } 2643 unit_snprintf(nbuf, UNIT_LEN, bandwidth, test->settings->unit_format); 2644 if (test->json_output) 2645 cJSON_AddItemToObject(test->json_end, "sum_received", iperf_json_printf("start: %f end: %f seconds: %f bytes: %d bits_per_second: %f", (double) start_time, (double) end_time, (double) end_time, (int64_t) total_received, bandwidth * 8)); 2646 else 2647 iperf_printf(test, report_sum_bw_format, start_time, end_time, ubuf, nbuf, report_receiver); 2648 } else { 2649 /* Summary sum, UDP. */ 2650 avg_jitter /= test->num_streams; 2651 /* If no packets were sent, arbitrarily set loss percentage to 0. */ 2652 if (total_packets > 0) { 2653 lost_percent = 100.0 * lost_packets / total_packets; 2654 } 2655 else { 2656 lost_percent = 0.0; 2657 } 2658 if (test->json_output) 2659 cJSON_AddItemToObject(test->json_end, "sum", iperf_json_printf("start: %f end: %f seconds: %f bytes: %d bits_per_second: %f jitter_ms: %f lost_packets: %d packets: %d lost_percent: %f", (double) start_time, (double) end_time, (double) end_time, (int64_t) total_sent, bandwidth * 8, (double) avg_jitter * 1000.0, (int64_t) lost_packets, (int64_t) total_packets, (double) lost_percent)); 2660 else 2661 iperf_printf(test, report_sum_bw_udp_format, start_time, end_time, ubuf, nbuf, avg_jitter * 1000.0, lost_packets, total_packets, lost_percent, ""); 2662 } 2663 } 2664 2665 if (test->json_output) { 2666 cJSON_AddItemToObject(test->json_end, "cpu_utilization_percent", iperf_json_printf("host_total: %f host_user: %f host_system: %f remote_total: %f remote_user: %f remote_system: %f", (double) test->cpu_util[0], (double) test->cpu_util[1], (double) test->cpu_util[2], (double) test->remote_cpu_util[0], (double) test->remote_cpu_util[1], (double) test->remote_cpu_util[2])); 2667 if (test->protocol->id == Ptcp) { 2668 char *snd_congestion = NULL, *rcv_congestion = NULL; 2669 if (test->sender) { 2670 snd_congestion = test->congestion_used; 2671 rcv_congestion = test->remote_congestion_used; 2672 } 2673 else { 2674 snd_congestion = test->remote_congestion_used; 2675 rcv_congestion = test->congestion_used; 2676 } 2677 if (snd_congestion) { 2678 cJSON_AddStringToObject(test->json_end, "sender_tcp_congestion", snd_congestion); 2679 } 2680 if (rcv_congestion) { 2681 cJSON_AddStringToObject(test->json_end, "receiver_tcp_congestion", rcv_congestion); 2682 } 2683 } 2684 } 2685 else { 2686 if (test->verbose) { 2687 iperf_printf(test, report_cpu, report_local, test->sender?report_sender:report_receiver, test->cpu_util[0], test->cpu_util[1], test->cpu_util[2], report_remote, test->sender?report_receiver:report_sender, test->remote_cpu_util[0], test->remote_cpu_util[1], test->remote_cpu_util[2]); 2688 2689 if (test->protocol->id == Ptcp) { 2690 char *snd_congestion = NULL, *rcv_congestion = NULL; 2691 if (test->sender) { 2692 snd_congestion = test->congestion_used; 2693 rcv_congestion = test->remote_congestion_used; 2694 } 2695 else { 2696 snd_congestion = test->remote_congestion_used; 2697 rcv_congestion = test->congestion_used; 2698 } 2699 if (snd_congestion) { 2700 iperf_printf(test, "snd_tcp_congestion %s\n", snd_congestion); 2701 } 2702 if (rcv_congestion) { 2703 iperf_printf(test, "rcv_tcp_congestion %s\n", rcv_congestion); 2704 } 2705 } 2706 } 2707 2708 /* Print server output if we're on the client and it was requested/provided */ 2709 if (test->role == 'c' && iperf_get_test_get_server_output(test)) { 2710 if (test->json_server_output) { 2711 iperf_printf(test, "\nServer JSON output:\n%s\n", cJSON_Print(test->json_server_output)); 2712 cJSON_Delete(test->json_server_output); 2713 test->json_server_output = NULL; 2714 } 2715 if (test->server_output_text) { 2716 iperf_printf(test, "\nServer output:\n%s\n", test->server_output_text); 2717 test->server_output_text = NULL; 2718 } 2719 } 2720 } 2721 } 2722 2723 /**************************************************************************/ 2724 2725 /** 2726 * Main report-printing callback. 2727 * Prints results either during a test (interval report only) or 2728 * after the entire test has been run (last interval report plus 2729 * overall summary). 2730 */ 2731 void 2732 iperf_reporter_callback(struct iperf_test *test) 2733 { 2734 switch (test->state) { 2735 case TEST_RUNNING: 2736 case STREAM_RUNNING: 2737 /* print interval results for each stream */ 2738 iperf_print_intermediate(test); 2739 break; 2740 case TEST_END: 2741 case DISPLAY_RESULTS: 2742 iperf_print_intermediate(test); 2743 iperf_print_results(test); 2744 break; 2745 } 2746 2747 } 2748 2749 /** 2750 * Print the interval results for one stream. 2751 * This function needs to know about the overall test so it can determine the 2752 * context for printing headers, separators, etc. 2753 */ 2754 static void 2755 print_interval_results(struct iperf_test *test, struct iperf_stream *sp, cJSON *json_interval_streams) 2756 { 2757 char ubuf[UNIT_LEN]; 2758 char nbuf[UNIT_LEN]; 2759 char cbuf[UNIT_LEN]; 2760 double st = 0., et = 0.; 2761 struct iperf_interval_results *irp = NULL; 2762 double bandwidth, lost_percent; 2763 2764 irp = TAILQ_LAST(&sp->result->interval_results, irlisthead); /* get last entry in linked list */ 2765 if (irp == NULL) { 2766 iperf_err(test, "print_interval_results error: interval_results is NULL"); 2767 return; 2768 } 2769 if (!test->json_output) { 2770 /* First stream? */ 2771 if (sp == SLIST_FIRST(&test->streams)) { 2772 /* It it's the first interval, print the header; 2773 ** else if there's more than one stream, print the separator; 2774 ** else nothing. 2775 */ 2776 if (timeval_equals(&sp->result->start_time, &irp->interval_start_time)) { 2777 if (test->protocol->id == Ptcp || test->protocol->id == Psctp) { 2778 if (test->sender && test->sender_has_retransmits) 2779 iperf_printf(test, "%s", report_bw_retrans_cwnd_header); 2780 else 2781 iperf_printf(test, "%s", report_bw_header); 2782 } else { 2783 if (test->sender) 2784 iperf_printf(test, "%s", report_bw_udp_sender_header); 2785 else 2786 iperf_printf(test, "%s", report_bw_udp_header); 2787 } 2788 } else if (test->num_streams > 1) 2789 iperf_printf(test, "%s", report_bw_separator); 2790 } 2791 } 2792 2793 unit_snprintf(ubuf, UNIT_LEN, (double) (irp->bytes_transferred), 'A'); 2794 if (irp->interval_duration > 0.0) { 2795 bandwidth = (double) irp->bytes_transferred / (double) irp->interval_duration; 2796 } 2797 else { 2798 bandwidth = 0.0; 2799 } 2800 unit_snprintf(nbuf, UNIT_LEN, bandwidth, test->settings->unit_format); 2801 2802 st = timeval_diff(&sp->result->start_time, &irp->interval_start_time); 2803 et = timeval_diff(&sp->result->start_time, &irp->interval_end_time); 2804 2805 if (test->protocol->id == Ptcp || test->protocol->id == Psctp) { 2806 if (test->sender && test->sender_has_retransmits) { 2807 /* Interval, TCP with retransmits. */ 2808 if (test->json_output) 2809 cJSON_AddItemToArray(json_interval_streams, iperf_json_printf("socket: %d start: %f end: %f seconds: %f bytes: %d bits_per_second: %f retransmits: %d snd_cwnd: %d rtt: %d rttvar: %d omitted: %b", (int64_t) sp->socket, (double) st, (double) et, (double) irp->interval_duration, (int64_t) irp->bytes_transferred, bandwidth * 8, (int64_t) irp->interval_retrans, (int64_t) irp->snd_cwnd, (int64_t) irp->rtt, (int64_t) irp->rttvar, irp->omitted)); 2810 else { 2811 unit_snprintf(cbuf, UNIT_LEN, irp->snd_cwnd, 'A'); 2812 iperf_printf(test, report_bw_retrans_cwnd_format, sp->socket, st, et, ubuf, nbuf, irp->interval_retrans, cbuf, irp->omitted?report_omitted:""); 2813 } 2814 } else { 2815 /* Interval, TCP without retransmits. */ 2816 if (test->json_output) 2817 cJSON_AddItemToArray(json_interval_streams, iperf_json_printf("socket: %d start: %f end: %f seconds: %f bytes: %d bits_per_second: %f omitted: %b", (int64_t) sp->socket, (double) st, (double) et, (double) irp->interval_duration, (int64_t) irp->bytes_transferred, bandwidth * 8, irp->omitted)); 2818 else 2819 iperf_printf(test, report_bw_format, sp->socket, st, et, ubuf, nbuf, irp->omitted?report_omitted:""); 2820 } 2821 } else { 2822 /* Interval, UDP. */ 2823 if (test->sender) { 2824 if (test->json_output) 2825 cJSON_AddItemToArray(json_interval_streams, iperf_json_printf("socket: %d start: %f end: %f seconds: %f bytes: %d bits_per_second: %f packets: %d omitted: %b", (int64_t) sp->socket, (double) st, (double) et, (double) irp->interval_duration, (int64_t) irp->bytes_transferred, bandwidth * 8, (int64_t) irp->interval_packet_count, irp->omitted)); 2826 else 2827 iperf_printf(test, report_bw_udp_sender_format, sp->socket, st, et, ubuf, nbuf, irp->interval_packet_count, irp->omitted?report_omitted:""); 2828 } else { 2829 if (irp->interval_packet_count > 0) { 2830 lost_percent = 100.0 * irp->interval_cnt_error / irp->interval_packet_count; 2831 } 2832 else { 2833 lost_percent = 0.0; 2834 } 2835 if (test->json_output) 2836 cJSON_AddItemToArray(json_interval_streams, iperf_json_printf("socket: %d start: %f end: %f seconds: %f bytes: %d bits_per_second: %f jitter_ms: %f lost_packets: %d packets: %d lost_percent: %f omitted: %b", (int64_t) sp->socket, (double) st, (double) et, (double) irp->interval_duration, (int64_t) irp->bytes_transferred, bandwidth * 8, (double) irp->jitter * 1000.0, (int64_t) irp->interval_cnt_error, (int64_t) irp->interval_packet_count, (double) lost_percent, irp->omitted)); 2837 else 2838 iperf_printf(test, report_bw_udp_format, sp->socket, st, et, ubuf, nbuf, irp->jitter * 1000.0, irp->interval_cnt_error, irp->interval_packet_count, lost_percent, irp->omitted?report_omitted:""); 2839 } 2840 } 2841 2842 if (test->logfile || test->forceflush) 2843 iflush(test); 2844 } 2845 2846 /**************************************************************************/ 2847 void 2848 iperf_free_stream(struct iperf_stream *sp) 2849 { 2850 struct iperf_interval_results *irp, *nirp; 2851 2852 /* XXX: need to free interval list too! */ 2853 munmap(sp->buffer, sp->test->settings->blksize); 2854 close(sp->buffer_fd); 2855 if (sp->diskfile_fd >= 0) 2856 close(sp->diskfile_fd); 2857 for (irp = TAILQ_FIRST(&sp->result->interval_results); irp != NULL; irp = nirp) { 2858 nirp = TAILQ_NEXT(irp, irlistentries); 2859 free(irp); 2860 } 2861 free(sp->result); 2862 if (sp->send_timer != NULL) 2863 tmr_cancel(sp->send_timer); 2864 free(sp); 2865 } 2866 2867 /**************************************************************************/ 2868 struct iperf_stream * 2869 iperf_new_stream(struct iperf_test *test, int s) 2870 { 2871 int i; 2872 struct iperf_stream *sp; 2873 2874 char template[1024]; 2875 if (test->tmp_template) { 2876 snprintf(template, sizeof(template) / sizeof(char), "%s", test->tmp_template); 2877 } else { 2878 //find the system temporary dir *unix, windows, cygwin support 2879 char* tempdir = getenv("TMPDIR"); 2880 if (tempdir == 0){ 2881 tempdir = getenv("TEMP"); 2882 } 2883 if (tempdir == 0){ 2884 tempdir = getenv("TMP"); 2885 } 2886 if (tempdir == 0){ 2887 tempdir = "/tmp"; 2888 } 2889 snprintf(template, sizeof(template) / sizeof(char), "%s/iperf3.XXXXXX", tempdir); 2890 } 2891 2892 sp = (struct iperf_stream *) malloc(sizeof(struct iperf_stream)); 2893 if (!sp) { 2894 i_errno = IECREATESTREAM; 2895 return NULL; 2896 } 2897 2898 memset(sp, 0, sizeof(struct iperf_stream)); 2899 2900 sp->test = test; 2901 sp->settings = test->settings; 2902 sp->result = (struct iperf_stream_result *) malloc(sizeof(struct iperf_stream_result)); 2903 if (!sp->result) { 2904 free(sp); 2905 i_errno = IECREATESTREAM; 2906 return NULL; 2907 } 2908 2909 memset(sp->result, 0, sizeof(struct iperf_stream_result)); 2910 TAILQ_INIT(&sp->result->interval_results); 2911 2912 /* Create and randomize the buffer */ 2913 sp->buffer_fd = mkstemp(template); 2914 if (sp->buffer_fd == -1) { 2915 i_errno = IECREATESTREAM; 2916 free(sp->result); 2917 free(sp); 2918 return NULL; 2919 } 2920 if (unlink(template) < 0) { 2921 i_errno = IECREATESTREAM; 2922 free(sp->result); 2923 free(sp); 2924 return NULL; 2925 } 2926 if (ftruncate(sp->buffer_fd, test->settings->blksize) < 0) { 2927 i_errno = IECREATESTREAM; 2928 free(sp->result); 2929 free(sp); 2930 return NULL; 2931 } 2932 sp->buffer = (char *) mmap(NULL, test->settings->blksize, PROT_READ|PROT_WRITE, MAP_PRIVATE, sp->buffer_fd, 0); 2933 if (sp->buffer == MAP_FAILED) { 2934 i_errno = IECREATESTREAM; 2935 free(sp->result); 2936 free(sp); 2937 return NULL; 2938 } 2939 srandom(time(NULL)); 2940 for (i = 0; i < test->settings->blksize; ++i) 2941 sp->buffer[i] = random(); 2942 2943 /* Set socket */ 2944 sp->socket = s; 2945 2946 sp->snd = test->protocol->send; 2947 sp->rcv = test->protocol->recv; 2948 2949 if (test->diskfile_name != (char*) 0) { 2950 sp->diskfile_fd = open(test->diskfile_name, test->sender ? O_RDONLY : (O_WRONLY|O_CREAT|O_TRUNC), S_IRUSR|S_IWUSR); 2951 if (sp->diskfile_fd == -1) { 2952 i_errno = IEFILE; 2953 munmap(sp->buffer, sp->test->settings->blksize); 2954 free(sp->result); 2955 free(sp); 2956 return NULL; 2957 } 2958 sp->snd2 = sp->snd; 2959 sp->snd = diskfile_send; 2960 sp->rcv2 = sp->rcv; 2961 sp->rcv = diskfile_recv; 2962 } else 2963 sp->diskfile_fd = -1; 2964 2965 /* Initialize stream */ 2966 if (iperf_init_stream(sp, test) < 0) { 2967 close(sp->buffer_fd); 2968 munmap(sp->buffer, sp->test->settings->blksize); 2969 free(sp->result); 2970 free(sp); 2971 return NULL; 2972 } 2973 iperf_add_stream(test, sp); 2974 2975 return sp; 2976 } 2977 2978 /**************************************************************************/ 2979 int 2980 iperf_init_stream(struct iperf_stream *sp, struct iperf_test *test) 2981 { 2982 socklen_t len; 2983 int opt; 2984 2985 len = sizeof(struct sockaddr_storage); 2986 if (getsockname(sp->socket, (struct sockaddr *) &sp->local_addr, &len) < 0) { 2987 i_errno = IEINITSTREAM; 2988 return -1; 2989 } 2990 len = sizeof(struct sockaddr_storage); 2991 if (getpeername(sp->socket, (struct sockaddr *) &sp->remote_addr, &len) < 0) { 2992 i_errno = IEINITSTREAM; 2993 return -1; 2994 } 2995 2996 /* Set IP TOS */ 2997 if ((opt = test->settings->tos)) { 2998 if (getsockdomain(sp->socket) == AF_INET6) { 2999 #ifdef IPV6_TCLASS 3000 if (setsockopt(sp->socket, IPPROTO_IPV6, IPV6_TCLASS, &opt, sizeof(opt)) < 0) { 3001 i_errno = IESETCOS; 3002 return -1; 3003 } 3004 #else 3005 i_errno = IESETCOS; 3006 return -1; 3007 #endif 3008 } else { 3009 if (setsockopt(sp->socket, IPPROTO_IP, IP_TOS, &opt, sizeof(opt)) < 0) { 3010 i_errno = IESETTOS; 3011 return -1; 3012 } 3013 } 3014 } 3015 3016 return 0; 3017 } 3018 3019 /**************************************************************************/ 3020 void 3021 iperf_add_stream(struct iperf_test *test, struct iperf_stream *sp) 3022 { 3023 int i; 3024 struct iperf_stream *n, *prev; 3025 3026 if (SLIST_EMPTY(&test->streams)) { 3027 SLIST_INSERT_HEAD(&test->streams, sp, streams); 3028 sp->id = 1; 3029 } else { 3030 // for (n = test->streams, i = 2; n->next; n = n->next, ++i); 3031 i = 2; 3032 SLIST_FOREACH(n, &test->streams, streams) { 3033 prev = n; 3034 ++i; 3035 } 3036 SLIST_INSERT_AFTER(prev, sp, streams); 3037 sp->id = i; 3038 } 3039 } 3040 3041 /* This pair of routines gets inserted into the snd/rcv function pointers 3042 ** when there's a -F flag. They handle the file stuff and call the real 3043 ** snd/rcv functions, which have been saved in snd2/rcv2. 3044 ** 3045 ** The advantage of doing it this way is that in the much more common 3046 ** case of no -F flag, there is zero extra overhead. 3047 */ 3048 3049 static int 3050 diskfile_send(struct iperf_stream *sp) 3051 { 3052 int r; 3053 3054 r = read(sp->diskfile_fd, sp->buffer, sp->test->settings->blksize); 3055 if (r == 0) 3056 sp->test->done = 1; 3057 else 3058 r = sp->snd2(sp); 3059 return r; 3060 } 3061 3062 static int 3063 diskfile_recv(struct iperf_stream *sp) 3064 { 3065 int r; 3066 3067 r = sp->rcv2(sp); 3068 if (r > 0) { 3069 (void) write(sp->diskfile_fd, sp->buffer, r); 3070 (void) fsync(sp->diskfile_fd); 3071 } 3072 return r; 3073 } 3074 3075 3076 void 3077 iperf_catch_sigend(void (*handler)(int)) 3078 { 3079 signal(SIGINT, handler); 3080 signal(SIGTERM, handler); 3081 signal(SIGHUP, handler); 3082 } 3083 3084 /** 3085 * Called as a result of getting a signal. 3086 * Depending on the current state of the test (and the role of this 3087 * process) compute and report one more set of ending statistics 3088 * before cleaning up and exiting. 3089 */ 3090 void 3091 iperf_got_sigend(struct iperf_test *test) 3092 { 3093 /* 3094 * If we're the client, or if we're a server and running a test, 3095 * then dump out the accumulated stats so far. 3096 */ 3097 if (test->role == 'c' || 3098 (test->role == 's' && test->state == TEST_RUNNING)) { 3099 3100 test->done = 1; 3101 cpu_util(test->cpu_util); 3102 test->stats_callback(test); 3103 test->state = DISPLAY_RESULTS; /* change local state only */ 3104 if (test->on_test_finish) 3105 test->on_test_finish(test); 3106 test->reporter_callback(test); 3107 } 3108 3109 if (test->ctrl_sck >= 0) { 3110 test->state = (test->role == 'c') ? CLIENT_TERMINATE : SERVER_TERMINATE; 3111 (void) Nwrite(test->ctrl_sck, (char*) &test->state, sizeof(signed char), Ptcp); 3112 } 3113 i_errno = (test->role == 'c') ? IECLIENTTERM : IESERVERTERM; 3114 iperf_errexit(test, "interrupt - %s", iperf_strerror(i_errno)); 3115 } 3116 3117 /* Try to write a PID file if requested, return -1 on an error. */ 3118 int 3119 iperf_create_pidfile(struct iperf_test *test) 3120 { 3121 if (test->pidfile) { 3122 int fd; 3123 char buf[8]; 3124 fd = open(test->pidfile, O_WRONLY | O_CREAT | O_TRUNC, S_IRUSR|S_IWUSR); 3125 if (fd < 0) { 3126 return -1; 3127 } 3128 snprintf(buf, sizeof(buf), "%d", getpid()); /* no trailing newline */ 3129 if (write(fd, buf, strlen(buf) + 1) < 0) { 3130 return -1; 3131 } 3132 if (close(fd) < 0) { 3133 return -1; 3134 }; 3135 } 3136 return 0; 3137 } 3138 3139 /* Get rid of a PID file, return -1 on error. */ 3140 int 3141 iperf_delete_pidfile(struct iperf_test *test) 3142 { 3143 if (test->pidfile) { 3144 if (unlink(test->pidfile) < 0) { 3145 return -1; 3146 } 3147 } 3148 return 0; 3149 } 3150 3151 int 3152 iperf_json_start(struct iperf_test *test) 3153 { 3154 test->json_top = cJSON_CreateObject(); 3155 if (test->json_top == NULL) 3156 return -1; 3157 test->json_start = cJSON_CreateObject(); 3158 if (test->json_start == NULL) 3159 return -1; 3160 cJSON_AddItemToObject(test->json_top, "start", test->json_start); 3161 test->json_connected = cJSON_CreateArray(); 3162 if (test->json_connected == NULL) 3163 return -1; 3164 cJSON_AddItemToObject(test->json_start, "connected", test->json_connected); 3165 test->json_intervals = cJSON_CreateArray(); 3166 if (test->json_intervals == NULL) 3167 return -1; 3168 cJSON_AddItemToObject(test->json_top, "intervals", test->json_intervals); 3169 test->json_end = cJSON_CreateObject(); 3170 if (test->json_end == NULL) 3171 return -1; 3172 cJSON_AddItemToObject(test->json_top, "end", test->json_end); 3173 return 0; 3174 } 3175 3176 int 3177 iperf_json_finish(struct iperf_test *test) 3178 { 3179 if (test->title) 3180 cJSON_AddStringToObject(test->json_top, "title", test->title); 3181 /* Include server output */ 3182 if (test->json_server_output) { 3183 cJSON_AddItemToObject(test->json_top, "server_output_json", test->json_server_output); 3184 } 3185 if (test->server_output_text) { 3186 cJSON_AddStringToObject(test->json_top, "server_output_text", test->server_output_text); 3187 } 3188 test->json_output_string = cJSON_Print(test->json_top); 3189 if (test->json_output_string == NULL) 3190 return -1; 3191 fprintf(test->outfile, "%s\n", test->json_output_string); 3192 iflush(test); 3193 cJSON_Delete(test->json_top); 3194 test->json_top = test->json_start = test->json_connected = test->json_intervals = test->json_server_output = test->json_end = NULL; 3195 return 0; 3196 } 3197 3198 3199 /* CPU affinity stuff - Linux and FreeBSD only. */ 3200 3201 int 3202 iperf_setaffinity(struct iperf_test *test, int affinity) 3203 { 3204 #if defined(HAVE_SCHED_SETAFFINITY) 3205 cpu_set_t cpu_set; 3206 3207 CPU_ZERO(&cpu_set); 3208 CPU_SET(affinity, &cpu_set); 3209 if (sched_setaffinity(0, sizeof(cpu_set_t), &cpu_set) != 0) { 3210 i_errno = IEAFFINITY; 3211 return -1; 3212 } 3213 return 0; 3214 #elif defined(HAVE_CPUSET_SETAFFINITY) 3215 cpuset_t cpumask; 3216 3217 if(cpuset_getaffinity(CPU_LEVEL_WHICH, CPU_WHICH_PID, -1, 3218 sizeof(cpuset_t), &test->cpumask) != 0) { 3219 i_errno = IEAFFINITY; 3220 return -1; 3221 } 3222 3223 CPU_ZERO(&cpumask); 3224 CPU_SET(affinity, &cpumask); 3225 3226 if(cpuset_setaffinity(CPU_LEVEL_WHICH,CPU_WHICH_PID, -1, 3227 sizeof(cpuset_t), &cpumask) != 0) { 3228 i_errno = IEAFFINITY; 3229 return -1; 3230 } 3231 return 0; 3232 #else /* neither HAVE_SCHED_SETAFFINITY nor HAVE_CPUSET_SETAFFINITY */ 3233 i_errno = IEAFFINITY; 3234 return -1; 3235 #endif /* neither HAVE_SCHED_SETAFFINITY nor HAVE_CPUSET_SETAFFINITY */ 3236 } 3237 3238 int 3239 iperf_clearaffinity(struct iperf_test *test) 3240 { 3241 #if defined(HAVE_SCHED_SETAFFINITY) 3242 cpu_set_t cpu_set; 3243 int i; 3244 3245 CPU_ZERO(&cpu_set); 3246 for (i = 0; i < CPU_SETSIZE; ++i) 3247 CPU_SET(i, &cpu_set); 3248 if (sched_setaffinity(0, sizeof(cpu_set_t), &cpu_set) != 0) { 3249 i_errno = IEAFFINITY; 3250 return -1; 3251 } 3252 return 0; 3253 #elif defined(HAVE_CPUSET_SETAFFINITY) 3254 if(cpuset_setaffinity(CPU_LEVEL_WHICH,CPU_WHICH_PID, -1, 3255 sizeof(cpuset_t), &test->cpumask) != 0) { 3256 i_errno = IEAFFINITY; 3257 return -1; 3258 } 3259 return 0; 3260 #else /* neither HAVE_SCHED_SETAFFINITY nor HAVE_CPUSET_SETAFFINITY */ 3261 i_errno = IEAFFINITY; 3262 return -1; 3263 #endif /* neither HAVE_SCHED_SETAFFINITY nor HAVE_CPUSET_SETAFFINITY */ 3264 } 3265 3266 int 3267 iperf_printf(struct iperf_test *test, const char* format, ...) 3268 { 3269 va_list argp; 3270 int r = -1; 3271 3272 /* 3273 * There are roughly two use cases here. If we're the client, 3274 * want to print stuff directly to the output stream. 3275 * If we're the sender we might need to buffer up output to send 3276 * to the client. 3277 * 3278 * This doesn't make a whole lot of difference except there are 3279 * some chunks of output on the client (on particular the whole 3280 * of the server output with --get-server-output) that could 3281 * easily exceed the size of the line buffer, but which don't need 3282 * to be buffered up anyway. 3283 */ 3284 if (test->role == 'c') { 3285 if (test->title) 3286 fprintf(test->outfile, "%s: ", test->title); 3287 va_start(argp, format); 3288 r = vfprintf(test->outfile, format, argp); 3289 va_end(argp); 3290 } 3291 else if (test->role == 's') { 3292 char linebuffer[1024]; 3293 va_start(argp, format); 3294 r = vsnprintf(linebuffer, sizeof(linebuffer), format, argp); 3295 va_end(argp); 3296 fprintf(test->outfile, "%s", linebuffer); 3297 3298 if (test->role == 's' && iperf_get_test_get_server_output(test)) { 3299 struct iperf_textline *l = (struct iperf_textline *) malloc(sizeof(struct iperf_textline)); 3300 l->line = strdup(linebuffer); 3301 TAILQ_INSERT_TAIL(&(test->server_output_list), l, textlineentries); 3302 } 3303 } 3304 return r; 3305 } 3306 3307 int 3308 iflush(struct iperf_test *test) 3309 { 3310 return fflush(test->outfile); 3311 } 3312