1 /* 2 * Written by Eivind Eklund <eivind@yes.no> 3 * for Yes Interactive 4 * 5 * Copyright (C) 1998, Yes Interactive. All rights reserved. 6 * 7 * Redistribution and use in any form is permitted. Redistribution in 8 * source form should include the above copyright and this set of 9 * conditions, because large sections american law seems to have been 10 * created by a bunch of jerks on drugs that are now illegal, forcing 11 * me to include this copyright-stuff instead of placing this in the 12 * public domain. The name of of 'Yes Interactive' or 'Eivind Eklund' 13 * may not be used to endorse or promote products derived from this 14 * software without specific prior written permission. 15 * THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR 16 * IMPLIED WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED 17 * WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR A PARTICULAR PURPOSE. 18 * 19 * $FreeBSD$ 20 * 21 */ 22 23 #include <sys/param.h> 24 #include <netinet/in.h> 25 #include <netinet/in_systm.h> 26 #include <netinet/ip.h> 27 #include <sys/socket.h> 28 #include <sys/un.h> 29 30 #include <errno.h> 31 #include <fcntl.h> 32 #include <paths.h> 33 #ifdef NOSUID 34 #include <signal.h> 35 #endif 36 #include <stdio.h> 37 #include <stdlib.h> 38 #include <string.h> 39 #include <sys/tty.h> /* TIOCOUTQ */ 40 #include <sys/uio.h> 41 #include <time.h> 42 #include <unistd.h> 43 #include <utmp.h> 44 #if defined(__OpenBSD__) || defined(__NetBSD__) 45 #include <sys/ioctl.h> 46 #include <util.h> 47 #else 48 #include <libutil.h> 49 #endif 50 51 #include "layer.h" 52 #ifndef NONAT 53 #include "nat_cmd.h" 54 #endif 55 #include "proto.h" 56 #include "acf.h" 57 #include "vjcomp.h" 58 #include "defs.h" 59 #include "command.h" 60 #include "mbuf.h" 61 #include "log.h" 62 #include "id.h" 63 #include "timer.h" 64 #include "fsm.h" 65 #include "lqr.h" 66 #include "hdlc.h" 67 #include "lcp.h" 68 #include "throughput.h" 69 #include "sync.h" 70 #include "async.h" 71 #include "iplist.h" 72 #include "slcompress.h" 73 #include "ncpaddr.h" 74 #include "ip.h" 75 #include "ipcp.h" 76 #include "filter.h" 77 #include "descriptor.h" 78 #include "ccp.h" 79 #include "link.h" 80 #include "physical.h" 81 #include "mp.h" 82 #ifndef NORADIUS 83 #include "radius.h" 84 #endif 85 #include "ipv6cp.h" 86 #include "ncp.h" 87 #include "bundle.h" 88 #include "prompt.h" 89 #include "chat.h" 90 #include "auth.h" 91 #include "chap.h" 92 #include "cbcp.h" 93 #include "datalink.h" 94 #include "tcp.h" 95 #include "udp.h" 96 #include "exec.h" 97 #include "tty.h" 98 #ifndef NOI4B 99 #include "i4b.h" 100 #endif 101 #ifndef NONETGRAPH 102 #include "ether.h" 103 #include "netgraph.h" 104 #endif 105 #ifndef NOATM 106 #include "atm.h" 107 #endif 108 #include "tcpmss.h" 109 110 #define PPPOTCPLINE "ppp" 111 112 static int physical_DescriptorWrite(struct fdescriptor *, struct bundle *, 113 const fd_set *); 114 115 static int 116 physical_DeviceSize(void) 117 { 118 return sizeof(struct device); 119 } 120 121 struct { 122 struct device *(*create)(struct physical *); 123 struct device *(*iov2device)(int, struct physical *, struct iovec *, 124 int *, int, int *, int *); 125 int (*DeviceSize)(void); 126 } devices[] = { 127 #ifndef NOI4B 128 /* 129 * This must come before ``tty'' so that the probe routine is 130 * able to identify it as a more specific type of terminal device. 131 */ 132 { i4b_Create, i4b_iov2device, i4b_DeviceSize }, 133 #endif 134 { tty_Create, tty_iov2device, tty_DeviceSize }, 135 #ifndef NONETGRAPH 136 /* 137 * This must come before ``udp'' so that the probe routine is 138 * able to identify it as a more specific type of SOCK_DGRAM. 139 */ 140 { ether_Create, ether_iov2device, ether_DeviceSize }, 141 #ifdef EXPERIMENTAL_NETGRAPH 142 { ng_Create, ng_iov2device, ng_DeviceSize }, 143 #endif 144 #endif 145 #ifndef NOATM 146 /* Ditto for ATM devices */ 147 { atm_Create, atm_iov2device, atm_DeviceSize }, 148 #endif 149 { tcp_Create, tcp_iov2device, tcp_DeviceSize }, 150 { udp_Create, udp_iov2device, udp_DeviceSize }, 151 { exec_Create, exec_iov2device, exec_DeviceSize } 152 }; 153 154 #define NDEVICES (sizeof devices / sizeof devices[0]) 155 156 static int 157 physical_UpdateSet(struct fdescriptor *d, fd_set *r, fd_set *w, fd_set *e, 158 int *n) 159 { 160 return physical_doUpdateSet(d, r, w, e, n, 0); 161 } 162 163 void 164 physical_SetDescriptor(struct physical *p) 165 { 166 p->desc.type = PHYSICAL_DESCRIPTOR; 167 p->desc.UpdateSet = physical_UpdateSet; 168 p->desc.IsSet = physical_IsSet; 169 p->desc.Read = physical_DescriptorRead; 170 p->desc.Write = physical_DescriptorWrite; 171 } 172 173 struct physical * 174 physical_Create(struct datalink *dl, int type) 175 { 176 struct physical *p; 177 178 p = (struct physical *)malloc(sizeof(struct physical)); 179 if (!p) 180 return NULL; 181 182 p->link.type = PHYSICAL_LINK; 183 p->link.name = dl->name; 184 p->link.len = sizeof *p; 185 186 /* The sample period is fixed - see physical2iov() & iov2physical() */ 187 throughput_init(&p->link.stats.total, SAMPLE_PERIOD); 188 p->link.stats.parent = dl->bundle->ncp.mp.active ? 189 &dl->bundle->ncp.mp.link.stats.total : NULL; 190 p->link.stats.gather = 1; 191 192 memset(p->link.Queue, '\0', sizeof p->link.Queue); 193 memset(p->link.proto_in, '\0', sizeof p->link.proto_in); 194 memset(p->link.proto_out, '\0', sizeof p->link.proto_out); 195 link_EmptyStack(&p->link); 196 197 p->handler = NULL; 198 physical_SetDescriptor(p); 199 p->type = type; 200 201 hdlc_Init(&p->hdlc, &p->link.lcp); 202 async_Init(&p->async); 203 204 p->fd = -1; 205 p->out = NULL; 206 p->connect_count = 0; 207 p->dl = dl; 208 p->input.sz = 0; 209 *p->name.full = '\0'; 210 p->name.base = p->name.full; 211 212 p->Utmp = 0; 213 p->session_owner = (pid_t)-1; 214 215 p->cfg.rts_cts = MODEM_CTSRTS; 216 p->cfg.speed = MODEM_SPEED; 217 p->cfg.parity = CS8; 218 memcpy(p->cfg.devlist, MODEM_LIST, sizeof MODEM_LIST); 219 p->cfg.ndev = NMODEMS; 220 p->cfg.cd.necessity = CD_DEFAULT; 221 p->cfg.cd.delay = 0; /* reconfigured or device specific default */ 222 223 lcp_Init(&p->link.lcp, dl->bundle, &p->link, &dl->fsmp); 224 ccp_Init(&p->link.ccp, dl->bundle, &p->link, &dl->fsmp); 225 226 return p; 227 } 228 229 static const struct parity { 230 const char *name; 231 const char *name1; 232 int set; 233 } validparity[] = { 234 { "even", "P_EVEN", CS7 | PARENB }, 235 { "odd", "P_ODD", CS7 | PARENB | PARODD }, 236 { "none", "P_ZERO", CS8 }, 237 { NULL, 0 }, 238 }; 239 240 static int 241 GetParityValue(const char *str) 242 { 243 const struct parity *pp; 244 245 for (pp = validparity; pp->name; pp++) { 246 if (strcasecmp(pp->name, str) == 0 || 247 strcasecmp(pp->name1, str) == 0) { 248 return pp->set; 249 } 250 } 251 return (-1); 252 } 253 254 int 255 physical_SetParity(struct physical *p, const char *str) 256 { 257 struct termios rstio; 258 int val; 259 260 val = GetParityValue(str); 261 if (val > 0) { 262 p->cfg.parity = val; 263 if (p->fd >= 0) { 264 tcgetattr(p->fd, &rstio); 265 rstio.c_cflag &= ~(CSIZE | PARODD | PARENB); 266 rstio.c_cflag |= val; 267 tcsetattr(p->fd, TCSADRAIN, &rstio); 268 } 269 return 0; 270 } 271 log_Printf(LogWARN, "%s: %s: Invalid parity\n", p->link.name, str); 272 return -1; 273 } 274 275 int 276 physical_GetSpeed(struct physical *p) 277 { 278 if (p->handler && p->handler->speed) 279 return (*p->handler->speed)(p); 280 281 return 0; 282 } 283 284 int 285 physical_SetSpeed(struct physical *p, int speed) 286 { 287 if (IntToSpeed(speed) != B0) { 288 p->cfg.speed = speed; 289 return 1; 290 } 291 292 return 0; 293 } 294 295 int 296 physical_Raw(struct physical *p) 297 { 298 if (p->handler && p->handler->raw) 299 return (*p->handler->raw)(p); 300 301 return 1; 302 } 303 304 void 305 physical_Offline(struct physical *p) 306 { 307 if (p->handler && p->handler->offline) 308 (*p->handler->offline)(p); 309 log_Printf(LogPHASE, "%s: Disconnected!\n", p->link.name); 310 } 311 312 static int 313 physical_Lock(struct physical *p) 314 { 315 int res; 316 317 if (*p->name.full == '/' && p->type != PHYS_DIRECT && 318 (res = ID0uu_lock(p->name.base)) != UU_LOCK_OK) { 319 if (res == UU_LOCK_INUSE) 320 log_Printf(LogPHASE, "%s: %s is in use\n", p->link.name, p->name.full); 321 else 322 log_Printf(LogPHASE, "%s: %s is in use: uu_lock: %s\n", 323 p->link.name, p->name.full, uu_lockerr(res)); 324 return 0; 325 } 326 327 return 1; 328 } 329 330 static void 331 physical_Unlock(struct physical *p) 332 { 333 if (*p->name.full == '/' && p->type != PHYS_DIRECT && 334 ID0uu_unlock(p->name.base) == -1) 335 log_Printf(LogALERT, "%s: Can't uu_unlock %s\n", p->link.name, 336 p->name.base); 337 } 338 339 void 340 physical_Close(struct physical *p) 341 { 342 int newsid; 343 char fn[PATH_MAX]; 344 345 if (p->fd < 0) 346 return; 347 348 log_Printf(LogDEBUG, "%s: Close\n", p->link.name); 349 350 if (p->handler && p->handler->cooked) 351 (*p->handler->cooked)(p); 352 353 physical_StopDeviceTimer(p); 354 if (p->Utmp) { 355 if (p->handler && (p->handler->type == TCP_DEVICE || 356 p->handler->type == UDP_DEVICE)) 357 /* Careful - we logged in on line ``ppp'' with IP as our host */ 358 ID0logout(PPPOTCPLINE, 1); 359 else 360 ID0logout(p->name.base, 0); 361 p->Utmp = 0; 362 } 363 newsid = tcgetpgrp(p->fd) == getpgrp(); 364 close(p->fd); 365 p->fd = -1; 366 log_SetTtyCommandMode(p->dl); 367 368 throughput_stop(&p->link.stats.total); 369 throughput_log(&p->link.stats.total, LogPHASE, p->link.name); 370 371 if (p->session_owner != (pid_t)-1) { 372 log_Printf(LogPHASE, "%s: HUPing %d\n", p->link.name, 373 (int)p->session_owner); 374 ID0kill(p->session_owner, SIGHUP); 375 p->session_owner = (pid_t)-1; 376 } 377 378 if (newsid) 379 bundle_setsid(p->dl->bundle, 0); 380 381 if (*p->name.full == '/') { 382 snprintf(fn, sizeof fn, "%s%s.if", _PATH_VARRUN, p->name.base); 383 #ifndef RELEASE_CRUNCH 384 if (ID0unlink(fn) == -1) 385 log_Printf(LogALERT, "%s: Can't remove %s: %s\n", 386 p->link.name, fn, strerror(errno)); 387 #else 388 ID0unlink(fn); 389 #endif 390 } 391 physical_Unlock(p); 392 if (p->handler && p->handler->destroy) 393 (*p->handler->destroy)(p); 394 p->handler = NULL; 395 p->name.base = p->name.full; 396 *p->name.full = '\0'; 397 } 398 399 void 400 physical_Destroy(struct physical *p) 401 { 402 physical_Close(p); 403 throughput_destroy(&p->link.stats.total); 404 free(p); 405 } 406 407 static int 408 physical_DescriptorWrite(struct fdescriptor *d, struct bundle *bundle, 409 const fd_set *fdset) 410 { 411 struct physical *p = descriptor2physical(d); 412 int nw, result = 0; 413 414 if (p->out == NULL) 415 p->out = link_Dequeue(&p->link); 416 417 if (p->out) { 418 nw = physical_Write(p, MBUF_CTOP(p->out), p->out->m_len); 419 log_Printf(LogDEBUG, "%s: DescriptorWrite: wrote %d(%lu) to %d\n", 420 p->link.name, nw, (unsigned long)p->out->m_len, p->fd); 421 if (nw > 0) { 422 p->out->m_len -= nw; 423 p->out->m_offset += nw; 424 if (p->out->m_len == 0) 425 p->out = m_free(p->out); 426 result = 1; 427 } else if (nw < 0) { 428 if (errno == EAGAIN) 429 result = 1; 430 else if (errno != ENOBUFS) { 431 log_Printf(LogPHASE, "%s: write (%d): %s\n", p->link.name, 432 p->fd, strerror(errno)); 433 datalink_Down(p->dl, CLOSE_NORMAL); 434 } 435 } 436 /* else we shouldn't really have been called ! select() is broken ! */ 437 } 438 439 return result; 440 } 441 442 int 443 physical_ShowStatus(struct cmdargs const *arg) 444 { 445 struct physical *p = arg->cx->physical; 446 struct cd *cd; 447 const char *dev; 448 int n; 449 450 prompt_Printf(arg->prompt, "Name: %s\n", p->link.name); 451 prompt_Printf(arg->prompt, " State: "); 452 if (p->fd < 0) 453 prompt_Printf(arg->prompt, "closed\n"); 454 else if (p->handler && p->handler->openinfo) 455 prompt_Printf(arg->prompt, "open (%s)\n", (*p->handler->openinfo)(p)); 456 else 457 prompt_Printf(arg->prompt, "open\n"); 458 459 prompt_Printf(arg->prompt, " Device: %s", 460 *p->name.full ? p->name.full : 461 p->type == PHYS_DIRECT ? "unknown" : "N/A"); 462 if (p->session_owner != (pid_t)-1) 463 prompt_Printf(arg->prompt, " (session owner: %d)", (int)p->session_owner); 464 465 prompt_Printf(arg->prompt, "\n Link Type: %s\n", mode2Nam(p->type)); 466 prompt_Printf(arg->prompt, " Connect Count: %d\n", p->connect_count); 467 #ifdef TIOCOUTQ 468 if (p->fd >= 0 && ioctl(p->fd, TIOCOUTQ, &n) >= 0) 469 prompt_Printf(arg->prompt, " Physical outq: %d\n", n); 470 #endif 471 472 prompt_Printf(arg->prompt, " Queued Packets: %lu\n", 473 (u_long)link_QueueLen(&p->link)); 474 prompt_Printf(arg->prompt, " Phone Number: %s\n", arg->cx->phone.chosen); 475 476 prompt_Printf(arg->prompt, "\nDefaults:\n"); 477 478 prompt_Printf(arg->prompt, " Device List: "); 479 dev = p->cfg.devlist; 480 for (n = 0; n < p->cfg.ndev; n++) { 481 if (n) 482 prompt_Printf(arg->prompt, ", "); 483 prompt_Printf(arg->prompt, "\"%s\"", dev); 484 dev += strlen(dev) + 1; 485 } 486 487 prompt_Printf(arg->prompt, "\n Characteristics: "); 488 if (physical_IsSync(arg->cx->physical)) 489 prompt_Printf(arg->prompt, "sync"); 490 else 491 prompt_Printf(arg->prompt, "%dbps", p->cfg.speed); 492 493 switch (p->cfg.parity & CSIZE) { 494 case CS7: 495 prompt_Printf(arg->prompt, ", cs7"); 496 break; 497 case CS8: 498 prompt_Printf(arg->prompt, ", cs8"); 499 break; 500 } 501 if (p->cfg.parity & PARENB) { 502 if (p->cfg.parity & PARODD) 503 prompt_Printf(arg->prompt, ", odd parity"); 504 else 505 prompt_Printf(arg->prompt, ", even parity"); 506 } else 507 prompt_Printf(arg->prompt, ", no parity"); 508 509 prompt_Printf(arg->prompt, ", CTS/RTS %s\n", (p->cfg.rts_cts ? "on" : "off")); 510 511 prompt_Printf(arg->prompt, " CD check delay: "); 512 cd = p->handler ? &p->handler->cd : &p->cfg.cd; 513 if (cd->necessity == CD_NOTREQUIRED) 514 prompt_Printf(arg->prompt, "no cd"); 515 else if (p->cfg.cd.necessity == CD_DEFAULT) { 516 prompt_Printf(arg->prompt, "device specific"); 517 } else { 518 prompt_Printf(arg->prompt, "%d second%s", p->cfg.cd.delay, 519 p->cfg.cd.delay == 1 ? "" : "s"); 520 if (p->cfg.cd.necessity == CD_REQUIRED) 521 prompt_Printf(arg->prompt, " (required!)"); 522 } 523 prompt_Printf(arg->prompt, "\n\n"); 524 525 throughput_disp(&p->link.stats.total, arg->prompt); 526 527 return 0; 528 } 529 530 void 531 physical_DescriptorRead(struct fdescriptor *d, struct bundle *bundle, 532 const fd_set *fdset) 533 { 534 struct physical *p = descriptor2physical(d); 535 u_char *rbuff; 536 int n, found; 537 538 rbuff = p->input.buf + p->input.sz; 539 540 /* something to read */ 541 n = physical_Read(p, rbuff, sizeof p->input.buf - p->input.sz); 542 log_Printf(LogDEBUG, "%s: DescriptorRead: read %d/%d from %d\n", 543 p->link.name, n, (int)(sizeof p->input.buf - p->input.sz), p->fd); 544 if (n <= 0) { 545 if (n < 0) 546 log_Printf(LogPHASE, "%s: read (%d): %s\n", p->link.name, p->fd, 547 strerror(errno)); 548 else 549 log_Printf(LogPHASE, "%s: read (%d): Got zero bytes\n", 550 p->link.name, p->fd); 551 datalink_Down(p->dl, CLOSE_NORMAL); 552 return; 553 } 554 555 rbuff -= p->input.sz; 556 n += p->input.sz; 557 558 if (p->link.lcp.fsm.state <= ST_CLOSED) { 559 if (p->type != PHYS_DEDICATED) { 560 found = hdlc_Detect((u_char const **)&rbuff, n, physical_IsSync(p)); 561 if (rbuff != p->input.buf) 562 log_WritePrompts(p->dl, "%.*s", (int)(rbuff - p->input.buf), 563 p->input.buf); 564 p->input.sz = n - (rbuff - p->input.buf); 565 566 if (found) { 567 /* LCP packet is detected. Turn ourselves into packet mode */ 568 log_Printf(LogPHASE, "%s: PPP packet detected, coming up\n", 569 p->link.name); 570 log_SetTtyCommandMode(p->dl); 571 datalink_Up(p->dl, 0, 1); 572 link_PullPacket(&p->link, rbuff, p->input.sz, bundle); 573 p->input.sz = 0; 574 } else 575 bcopy(rbuff, p->input.buf, p->input.sz); 576 } else 577 /* In -dedicated mode, we just discard input until LCP is started */ 578 p->input.sz = 0; 579 } else if (n > 0) 580 link_PullPacket(&p->link, rbuff, n, bundle); 581 } 582 583 struct physical * 584 iov2physical(struct datalink *dl, struct iovec *iov, int *niov, int maxiov, 585 int fd, int *auxfd, int *nauxfd) 586 { 587 struct physical *p; 588 int len, h, type; 589 590 p = (struct physical *)iov[(*niov)++].iov_base; 591 p->link.name = dl->name; 592 memset(p->link.Queue, '\0', sizeof p->link.Queue); 593 594 p->desc.UpdateSet = physical_UpdateSet; 595 p->desc.IsSet = physical_IsSet; 596 p->desc.Read = physical_DescriptorRead; 597 p->desc.Write = physical_DescriptorWrite; 598 p->type = PHYS_DIRECT; 599 p->dl = dl; 600 len = strlen(_PATH_DEV); 601 p->out = NULL; 602 p->connect_count = 1; 603 604 physical_SetDevice(p, p->name.full); 605 606 p->link.lcp.fsm.bundle = dl->bundle; 607 p->link.lcp.fsm.link = &p->link; 608 memset(&p->link.lcp.fsm.FsmTimer, '\0', sizeof p->link.lcp.fsm.FsmTimer); 609 memset(&p->link.lcp.fsm.OpenTimer, '\0', sizeof p->link.lcp.fsm.OpenTimer); 610 memset(&p->link.lcp.fsm.StoppedTimer, '\0', 611 sizeof p->link.lcp.fsm.StoppedTimer); 612 p->link.lcp.fsm.parent = &dl->fsmp; 613 lcp_SetupCallbacks(&p->link.lcp); 614 615 p->link.ccp.fsm.bundle = dl->bundle; 616 p->link.ccp.fsm.link = &p->link; 617 /* Our in.state & out.state are NULL (no link-level ccp yet) */ 618 memset(&p->link.ccp.fsm.FsmTimer, '\0', sizeof p->link.ccp.fsm.FsmTimer); 619 memset(&p->link.ccp.fsm.OpenTimer, '\0', sizeof p->link.ccp.fsm.OpenTimer); 620 memset(&p->link.ccp.fsm.StoppedTimer, '\0', 621 sizeof p->link.ccp.fsm.StoppedTimer); 622 p->link.ccp.fsm.parent = &dl->fsmp; 623 ccp_SetupCallbacks(&p->link.ccp); 624 625 p->hdlc.lqm.owner = &p->link.lcp; 626 p->hdlc.ReportTimer.state = TIMER_STOPPED; 627 p->hdlc.lqm.timer.state = TIMER_STOPPED; 628 629 p->fd = fd; 630 p->link.stats.total.in.SampleOctets = (long long *)iov[(*niov)++].iov_base; 631 p->link.stats.total.out.SampleOctets = (long long *)iov[(*niov)++].iov_base; 632 p->link.stats.parent = dl->bundle->ncp.mp.active ? 633 &dl->bundle->ncp.mp.link.stats.total : NULL; 634 p->link.stats.gather = 1; 635 636 type = (long)p->handler; 637 p->handler = NULL; 638 for (h = 0; h < NDEVICES && p->handler == NULL; h++) 639 p->handler = (*devices[h].iov2device)(type, p, iov, niov, maxiov, 640 auxfd, nauxfd); 641 if (p->handler == NULL) { 642 log_Printf(LogPHASE, "%s: Unknown link type\n", p->link.name); 643 free(iov[(*niov)++].iov_base); 644 physical_SetupStack(p, "unknown", PHYSICAL_NOFORCE); 645 } else 646 log_Printf(LogPHASE, "%s: Device %s, link type is %s\n", 647 p->link.name, p->name.full, p->handler->name); 648 649 if (p->hdlc.lqm.method && p->hdlc.lqm.timer.load) 650 lqr_reStart(&p->link.lcp); 651 hdlc_StartTimer(&p->hdlc); 652 653 throughput_restart(&p->link.stats.total, "physical throughput", 654 Enabled(dl->bundle, OPT_THROUGHPUT)); 655 656 return p; 657 } 658 659 int 660 physical_MaxDeviceSize() 661 { 662 int biggest, sz, n; 663 664 biggest = sizeof(struct device); 665 for (sz = n = 0; n < NDEVICES; n++) 666 if (devices[n].DeviceSize) { 667 sz = (*devices[n].DeviceSize)(); 668 if (biggest < sz) 669 biggest = sz; 670 } 671 672 return biggest; 673 } 674 675 int 676 physical2iov(struct physical *p, struct iovec *iov, int *niov, int maxiov, 677 int *auxfd, int *nauxfd) 678 { 679 struct device *h; 680 int sz; 681 682 h = NULL; 683 if (p) { 684 hdlc_StopTimer(&p->hdlc); 685 lqr_StopTimer(p); 686 timer_Stop(&p->link.lcp.fsm.FsmTimer); 687 timer_Stop(&p->link.ccp.fsm.FsmTimer); 688 timer_Stop(&p->link.lcp.fsm.OpenTimer); 689 timer_Stop(&p->link.ccp.fsm.OpenTimer); 690 timer_Stop(&p->link.lcp.fsm.StoppedTimer); 691 timer_Stop(&p->link.ccp.fsm.StoppedTimer); 692 if (p->handler) { 693 h = p->handler; 694 p->handler = (struct device *)(long)p->handler->type; 695 } 696 697 if (Enabled(p->dl->bundle, OPT_KEEPSESSION) || 698 tcgetpgrp(p->fd) == getpgrp()) 699 p->session_owner = getpid(); /* So I'll eventually get HUP'd */ 700 else 701 p->session_owner = (pid_t)-1; 702 timer_Stop(&p->link.stats.total.Timer); 703 } 704 705 if (*niov + 2 >= maxiov) { 706 log_Printf(LogERROR, "physical2iov: No room for physical + throughput" 707 " + device !\n"); 708 if (p) 709 free(p); 710 return -1; 711 } 712 713 iov[*niov].iov_base = (void *)p; 714 iov[*niov].iov_len = sizeof *p; 715 (*niov)++; 716 717 iov[*niov].iov_base = p ? (void *)p->link.stats.total.in.SampleOctets : NULL; 718 iov[*niov].iov_len = SAMPLE_PERIOD * sizeof(long long); 719 (*niov)++; 720 iov[*niov].iov_base = p ? (void *)p->link.stats.total.out.SampleOctets : NULL; 721 iov[*niov].iov_len = SAMPLE_PERIOD * sizeof(long long); 722 (*niov)++; 723 724 sz = physical_MaxDeviceSize(); 725 if (p) { 726 if (h && h->device2iov) 727 (*h->device2iov)(h, iov, niov, maxiov, auxfd, nauxfd); 728 else { 729 iov[*niov].iov_base = malloc(sz); 730 if (h) 731 memcpy(iov[*niov].iov_base, h, sizeof *h); 732 iov[*niov].iov_len = sz; 733 (*niov)++; 734 } 735 } else { 736 iov[*niov].iov_base = NULL; 737 iov[*niov].iov_len = sz; 738 (*niov)++; 739 } 740 741 return p ? p->fd : 0; 742 } 743 744 const char * 745 physical_LockedDevice(struct physical *p) 746 { 747 if (p->fd >= 0 && *p->name.full == '/' && p->type != PHYS_DIRECT) 748 return p->name.base; 749 750 return NULL; 751 } 752 753 void 754 physical_ChangedPid(struct physical *p, pid_t newpid) 755 { 756 if (physical_LockedDevice(p)) { 757 int res; 758 759 if ((res = ID0uu_lock_txfr(p->name.base, newpid)) != UU_LOCK_OK) 760 log_Printf(LogPHASE, "uu_lock_txfr: %s\n", uu_lockerr(res)); 761 } 762 } 763 764 int 765 physical_IsSync(struct physical *p) 766 { 767 return p->cfg.speed == 0; 768 } 769 770 u_short 771 physical_DeviceMTU(struct physical *p) 772 { 773 return p->handler ? p->handler->mtu : 0; 774 } 775 776 const char *physical_GetDevice(struct physical *p) 777 { 778 return p->name.full; 779 } 780 781 void 782 physical_SetDeviceList(struct physical *p, int argc, const char *const *argv) 783 { 784 int f, pos; 785 786 p->cfg.devlist[sizeof p->cfg.devlist - 1] = '\0'; 787 for (f = 0, pos = 0; f < argc && pos < sizeof p->cfg.devlist - 1; f++) { 788 if (pos) 789 p->cfg.devlist[pos++] = '\0'; 790 strncpy(p->cfg.devlist + pos, argv[f], sizeof p->cfg.devlist - pos - 1); 791 pos += strlen(p->cfg.devlist + pos); 792 } 793 p->cfg.ndev = f; 794 } 795 796 void 797 physical_SetSync(struct physical *p) 798 { 799 p->cfg.speed = 0; 800 } 801 802 int 803 physical_SetRtsCts(struct physical *p, int enable) 804 { 805 p->cfg.rts_cts = enable ? 1 : 0; 806 return 1; 807 } 808 809 ssize_t 810 physical_Read(struct physical *p, void *buf, size_t nbytes) 811 { 812 ssize_t ret; 813 814 if (p->handler && p->handler->read) 815 ret = (*p->handler->read)(p, buf, nbytes); 816 else 817 ret = read(p->fd, buf, nbytes); 818 819 log_DumpBuff(LogPHYSICAL, "read", buf, ret); 820 821 return ret; 822 } 823 824 ssize_t 825 physical_Write(struct physical *p, const void *buf, size_t nbytes) 826 { 827 log_DumpBuff(LogPHYSICAL, "write", buf, nbytes); 828 829 if (p->handler && p->handler->write) 830 return (*p->handler->write)(p, buf, nbytes); 831 832 return write(p->fd, buf, nbytes); 833 } 834 835 int 836 physical_doUpdateSet(struct fdescriptor *d, fd_set *r, fd_set *w, fd_set *e, 837 int *n, int force) 838 { 839 struct physical *p = descriptor2physical(d); 840 int sets; 841 842 sets = 0; 843 if (p->fd >= 0) { 844 if (r) { 845 FD_SET(p->fd, r); 846 log_Printf(LogTIMER, "%s: fdset(r) %d\n", p->link.name, p->fd); 847 sets++; 848 } 849 if (e) { 850 FD_SET(p->fd, e); 851 log_Printf(LogTIMER, "%s: fdset(e) %d\n", p->link.name, p->fd); 852 sets++; 853 } 854 if (w && (force || link_QueueLen(&p->link) || p->out)) { 855 FD_SET(p->fd, w); 856 log_Printf(LogTIMER, "%s: fdset(w) %d\n", p->link.name, p->fd); 857 sets++; 858 } 859 if (sets && *n < p->fd + 1) 860 *n = p->fd + 1; 861 } 862 863 return sets; 864 } 865 866 int 867 physical_RemoveFromSet(struct physical *p, fd_set *r, fd_set *w, fd_set *e) 868 { 869 if (p->handler && p->handler->removefromset) 870 return (*p->handler->removefromset)(p, r, w, e); 871 else { 872 int sets; 873 874 sets = 0; 875 if (p->fd >= 0) { 876 if (r && FD_ISSET(p->fd, r)) { 877 FD_CLR(p->fd, r); 878 log_Printf(LogTIMER, "%s: fdunset(r) %d\n", p->link.name, p->fd); 879 sets++; 880 } 881 if (e && FD_ISSET(p->fd, e)) { 882 FD_CLR(p->fd, e); 883 log_Printf(LogTIMER, "%s: fdunset(e) %d\n", p->link.name, p->fd); 884 sets++; 885 } 886 if (w && FD_ISSET(p->fd, w)) { 887 FD_CLR(p->fd, w); 888 log_Printf(LogTIMER, "%s: fdunset(w) %d\n", p->link.name, p->fd); 889 sets++; 890 } 891 } 892 893 return sets; 894 } 895 } 896 897 int 898 physical_IsSet(struct fdescriptor *d, const fd_set *fdset) 899 { 900 struct physical *p = descriptor2physical(d); 901 return p->fd >= 0 && FD_ISSET(p->fd, fdset); 902 } 903 904 void 905 physical_Login(struct physical *p, const char *name) 906 { 907 if (p->type == PHYS_DIRECT && *p->name.base && !p->Utmp) { 908 struct utmp ut; 909 const char *connstr; 910 char *colon; 911 912 memset(&ut, 0, sizeof ut); 913 time(&ut.ut_time); 914 strncpy(ut.ut_name, name, sizeof ut.ut_name); 915 if (p->handler && (p->handler->type == TCP_DEVICE || 916 p->handler->type == UDP_DEVICE)) { 917 strncpy(ut.ut_line, PPPOTCPLINE, sizeof ut.ut_line); 918 strncpy(ut.ut_host, p->name.base, sizeof ut.ut_host); 919 colon = memchr(ut.ut_host, ':', sizeof ut.ut_host); 920 if (colon) 921 *colon = '\0'; 922 } else 923 strncpy(ut.ut_line, p->name.base, sizeof ut.ut_line); 924 if ((connstr = getenv("CONNECT"))) 925 /* mgetty sets this to the connection speed */ 926 strncpy(ut.ut_host, connstr, sizeof ut.ut_host); 927 ID0login(&ut); 928 p->Utmp = ut.ut_time; 929 } 930 } 931 932 int 933 physical_SetMode(struct physical *p, int mode) 934 { 935 if ((p->type & (PHYS_DIRECT|PHYS_DEDICATED) || 936 mode & (PHYS_DIRECT|PHYS_DEDICATED)) && 937 (!(p->type & PHYS_DIRECT) || !(mode & PHYS_BACKGROUND))) { 938 /* Note: The -direct -> -background is for callback ! */ 939 log_Printf(LogWARN, "%s: Cannot change mode %s to %s\n", p->link.name, 940 mode2Nam(p->type), mode2Nam(mode)); 941 return 0; 942 } 943 p->type = mode; 944 return 1; 945 } 946 947 void 948 physical_DeleteQueue(struct physical *p) 949 { 950 if (p->out) { 951 m_freem(p->out); 952 p->out = NULL; 953 } 954 link_DeleteQueue(&p->link); 955 } 956 957 void 958 physical_SetDevice(struct physical *p, const char *name) 959 { 960 int len = strlen(_PATH_DEV); 961 962 if (name != p->name.full) { 963 strncpy(p->name.full, name, sizeof p->name.full - 1); 964 p->name.full[sizeof p->name.full - 1] = '\0'; 965 } 966 p->name.base = *p->name.full == '!' ? p->name.full + 1 : 967 strncmp(p->name.full, _PATH_DEV, len) ? 968 p->name.full : p->name.full + len; 969 } 970 971 static void 972 physical_Found(struct physical *p) 973 { 974 FILE *lockfile; 975 char fn[PATH_MAX]; 976 977 if (*p->name.full == '/') { 978 snprintf(fn, sizeof fn, "%s%s.if", _PATH_VARRUN, p->name.base); 979 lockfile = ID0fopen(fn, "w"); 980 if (lockfile != NULL) { 981 fprintf(lockfile, "%s%d\n", TUN_NAME, p->dl->bundle->unit); 982 fclose(lockfile); 983 } 984 #ifndef RELEASE_CRUNCH 985 else 986 log_Printf(LogALERT, "%s: Can't create %s: %s\n", 987 p->link.name, fn, strerror(errno)); 988 #endif 989 } 990 991 throughput_start(&p->link.stats.total, "physical throughput", 992 Enabled(p->dl->bundle, OPT_THROUGHPUT)); 993 p->connect_count++; 994 p->input.sz = 0; 995 996 log_Printf(LogPHASE, "%s: Connected!\n", p->link.name); 997 } 998 999 int 1000 physical_Open(struct physical *p, struct bundle *bundle) 1001 { 1002 int devno, h, wasfd, err; 1003 char *dev; 1004 1005 if (p->fd >= 0) 1006 log_Printf(LogDEBUG, "%s: Open: Modem is already open!\n", p->link.name); 1007 /* We're going back into "term" mode */ 1008 else if (p->type == PHYS_DIRECT) { 1009 physical_SetDevice(p, ""); 1010 p->fd = STDIN_FILENO; 1011 for (h = 0; h < NDEVICES && p->handler == NULL && p->fd >= 0; h++) 1012 p->handler = (*devices[h].create)(p); 1013 if (p->fd >= 0) { 1014 if (p->handler == NULL) { 1015 physical_SetupStack(p, "unknown", PHYSICAL_NOFORCE); 1016 log_Printf(LogDEBUG, "%s: stdin is unidentified\n", p->link.name); 1017 } 1018 physical_Found(p); 1019 } 1020 } else { 1021 dev = p->cfg.devlist; 1022 devno = 0; 1023 while (devno < p->cfg.ndev && p->fd < 0) { 1024 physical_SetDevice(p, dev); 1025 if (physical_Lock(p)) { 1026 err = 0; 1027 1028 if (*p->name.full == '/') { 1029 p->fd = ID0open(p->name.full, O_RDWR | O_NONBLOCK); 1030 if (p->fd < 0) 1031 err = errno; 1032 } 1033 1034 wasfd = p->fd; 1035 for (h = 0; h < NDEVICES && p->handler == NULL; h++) 1036 if ((p->handler = (*devices[h].create)(p)) == NULL && wasfd != p->fd) 1037 break; 1038 1039 if (p->fd < 0) { 1040 if (h == NDEVICES) { 1041 if (err) 1042 log_Printf(LogWARN, "%s: %s: %s\n", p->link.name, p->name.full, 1043 strerror(errno)); 1044 else 1045 log_Printf(LogWARN, "%s: Device (%s) must begin with a '/'," 1046 " a '!' or contain at least one ':'\n", p->link.name, 1047 p->name.full); 1048 } 1049 physical_Unlock(p); 1050 } else 1051 physical_Found(p); 1052 } 1053 dev += strlen(dev) + 1; 1054 devno++; 1055 } 1056 } 1057 1058 return p->fd; 1059 } 1060 1061 void 1062 physical_SetupStack(struct physical *p, const char *who, int how) 1063 { 1064 link_EmptyStack(&p->link); 1065 if (how == PHYSICAL_FORCE_SYNC || how == PHYSICAL_FORCE_SYNCNOACF || 1066 (how == PHYSICAL_NOFORCE && physical_IsSync(p))) 1067 link_Stack(&p->link, &synclayer); 1068 else { 1069 link_Stack(&p->link, &asynclayer); 1070 link_Stack(&p->link, &hdlclayer); 1071 } 1072 if (how != PHYSICAL_FORCE_SYNCNOACF) 1073 link_Stack(&p->link, &acflayer); 1074 link_Stack(&p->link, &protolayer); 1075 link_Stack(&p->link, &lqrlayer); 1076 link_Stack(&p->link, &ccplayer); 1077 link_Stack(&p->link, &vjlayer); 1078 link_Stack(&p->link, &tcpmsslayer); 1079 #ifndef NONAT 1080 link_Stack(&p->link, &natlayer); 1081 #endif 1082 if (how == PHYSICAL_FORCE_ASYNC && physical_IsSync(p)) { 1083 log_Printf(LogWARN, "Sync device setting ignored for ``%s'' device\n", who); 1084 p->cfg.speed = MODEM_SPEED; 1085 } else if (how == PHYSICAL_FORCE_SYNC && !physical_IsSync(p)) { 1086 log_Printf(LogWARN, "Async device setting ignored for ``%s'' device\n", 1087 who); 1088 physical_SetSync(p); 1089 } 1090 } 1091 1092 void 1093 physical_StopDeviceTimer(struct physical *p) 1094 { 1095 if (p->handler && p->handler->stoptimer) 1096 (*p->handler->stoptimer)(p); 1097 } 1098 1099 int 1100 physical_AwaitCarrier(struct physical *p) 1101 { 1102 if (p->handler && p->handler->awaitcarrier) 1103 return (*p->handler->awaitcarrier)(p); 1104 1105 return CARRIER_OK; 1106 } 1107 1108 1109 void 1110 physical_SetAsyncParams(struct physical *p, u_int32_t mymap, u_int32_t hismap) 1111 { 1112 if (p->handler && p->handler->setasyncparams) 1113 return (*p->handler->setasyncparams)(p, mymap, hismap); 1114 1115 async_SetLinkParams(&p->async, mymap, hismap); 1116 } 1117