util.c revision 1.37 1 1.37 lukem /* $NetBSD: util.c,v 1.37 1998/12/29 14:27:59 lukem Exp $ */
2 1.27 thorpej
3 1.27 thorpej /*-
4 1.27 thorpej * Copyright (c) 1998 The NetBSD Foundation, Inc.
5 1.27 thorpej * All rights reserved.
6 1.27 thorpej *
7 1.27 thorpej * This code is derived from software contributed to The NetBSD Foundation
8 1.27 thorpej * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility,
9 1.27 thorpej * NASA Ames Research Center.
10 1.27 thorpej *
11 1.27 thorpej * Redistribution and use in source and binary forms, with or without
12 1.27 thorpej * modification, are permitted provided that the following conditions
13 1.27 thorpej * are met:
14 1.27 thorpej * 1. Redistributions of source code must retain the above copyright
15 1.27 thorpej * notice, this list of conditions and the following disclaimer.
16 1.27 thorpej * 2. Redistributions in binary form must reproduce the above copyright
17 1.27 thorpej * notice, this list of conditions and the following disclaimer in the
18 1.27 thorpej * documentation and/or other materials provided with the distribution.
19 1.27 thorpej * 3. All advertising materials mentioning features or use of this software
20 1.27 thorpej * must display the following acknowledgement:
21 1.27 thorpej * This product includes software developed by the NetBSD
22 1.27 thorpej * Foundation, Inc. and its contributors.
23 1.27 thorpej * 4. Neither the name of The NetBSD Foundation nor the names of its
24 1.27 thorpej * contributors may be used to endorse or promote products derived
25 1.27 thorpej * from this software without specific prior written permission.
26 1.27 thorpej *
27 1.27 thorpej * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
28 1.27 thorpej * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
29 1.27 thorpej * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
30 1.27 thorpej * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
31 1.27 thorpej * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
32 1.27 thorpej * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
33 1.27 thorpej * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
34 1.27 thorpej * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
35 1.27 thorpej * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
36 1.27 thorpej * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
37 1.27 thorpej * POSSIBILITY OF SUCH DAMAGE.
38 1.27 thorpej */
39 1.1 lukem
40 1.1 lukem /*
41 1.1 lukem * Copyright (c) 1985, 1989, 1993, 1994
42 1.1 lukem * The Regents of the University of California. All rights reserved.
43 1.1 lukem *
44 1.1 lukem * Redistribution and use in source and binary forms, with or without
45 1.1 lukem * modification, are permitted provided that the following conditions
46 1.1 lukem * are met:
47 1.1 lukem * 1. Redistributions of source code must retain the above copyright
48 1.1 lukem * notice, this list of conditions and the following disclaimer.
49 1.1 lukem * 2. Redistributions in binary form must reproduce the above copyright
50 1.1 lukem * notice, this list of conditions and the following disclaimer in the
51 1.1 lukem * documentation and/or other materials provided with the distribution.
52 1.1 lukem * 3. All advertising materials mentioning features or use of this software
53 1.1 lukem * must display the following acknowledgement:
54 1.1 lukem * This product includes software developed by the University of
55 1.1 lukem * California, Berkeley and its contributors.
56 1.1 lukem * 4. Neither the name of the University nor the names of its contributors
57 1.1 lukem * may be used to endorse or promote products derived from this software
58 1.1 lukem * without specific prior written permission.
59 1.1 lukem *
60 1.1 lukem * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
61 1.1 lukem * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
62 1.1 lukem * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
63 1.1 lukem * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
64 1.1 lukem * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
65 1.1 lukem * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
66 1.1 lukem * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
67 1.1 lukem * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
68 1.1 lukem * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
69 1.1 lukem * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
70 1.1 lukem * SUCH DAMAGE.
71 1.1 lukem */
72 1.1 lukem
73 1.10 lukem #include <sys/cdefs.h>
74 1.1 lukem #ifndef lint
75 1.37 lukem __RCSID("$NetBSD: util.c,v 1.37 1998/12/29 14:27:59 lukem Exp $");
76 1.1 lukem #endif /* not lint */
77 1.1 lukem
78 1.1 lukem /*
79 1.1 lukem * FTP User Program -- Misc support routines
80 1.1 lukem */
81 1.27 thorpej #include <sys/types.h>
82 1.27 thorpej #include <sys/socket.h>
83 1.1 lukem #include <sys/ioctl.h>
84 1.1 lukem #include <sys/time.h>
85 1.1 lukem #include <arpa/ftp.h>
86 1.1 lukem
87 1.1 lukem #include <ctype.h>
88 1.1 lukem #include <err.h>
89 1.1 lukem #include <fcntl.h>
90 1.1 lukem #include <glob.h>
91 1.23 christos #include <termios.h>
92 1.23 christos #include <signal.h>
93 1.10 lukem #include <limits.h>
94 1.7 lukem #include <pwd.h>
95 1.1 lukem #include <stdio.h>
96 1.10 lukem #include <stdlib.h>
97 1.1 lukem #include <string.h>
98 1.1 lukem #include <time.h>
99 1.17 lukem #include <tzfile.h>
100 1.1 lukem #include <unistd.h>
101 1.1 lukem
102 1.1 lukem #include "ftp_var.h"
103 1.1 lukem #include "pathnames.h"
104 1.1 lukem
105 1.36 itohy #ifndef HAVE_TIMEGM
106 1.36 itohy static time_t sub_mkgmt __P((struct tm *tm));
107 1.36 itohy #endif
108 1.36 itohy
109 1.1 lukem /*
110 1.1 lukem * Connect to peer server and
111 1.1 lukem * auto-login, if possible.
112 1.1 lukem */
113 1.1 lukem void
114 1.1 lukem setpeer(argc, argv)
115 1.1 lukem int argc;
116 1.1 lukem char *argv[];
117 1.1 lukem {
118 1.1 lukem char *host;
119 1.19 lukem in_port_t port;
120 1.1 lukem
121 1.1 lukem if (connected) {
122 1.24 lukem fprintf(ttyout, "Already connected to %s, use close first.\n",
123 1.5 lukem hostname);
124 1.1 lukem code = -1;
125 1.1 lukem return;
126 1.1 lukem }
127 1.1 lukem if (argc < 2)
128 1.5 lukem (void)another(&argc, &argv, "to");
129 1.1 lukem if (argc < 2 || argc > 3) {
130 1.24 lukem fprintf(ttyout, "usage: %s host-name [port]\n", argv[0]);
131 1.1 lukem code = -1;
132 1.1 lukem return;
133 1.1 lukem }
134 1.12 lukem if (gatemode)
135 1.12 lukem port = gateport;
136 1.12 lukem else
137 1.12 lukem port = ftpport;
138 1.1 lukem if (argc > 2) {
139 1.10 lukem char *ep;
140 1.10 lukem long nport;
141 1.10 lukem
142 1.10 lukem nport = strtol(argv[2], &ep, 10);
143 1.20 lukem if (nport < 1 || nport > MAX_IN_PORT_T || *ep != '\0') {
144 1.24 lukem fprintf(ttyout, "%s: bad port number '%s'.\n",
145 1.24 lukem argv[1], argv[2]);
146 1.24 lukem fprintf(ttyout, "usage: %s host-name [port]\n",
147 1.24 lukem argv[0]);
148 1.1 lukem code = -1;
149 1.1 lukem return;
150 1.1 lukem }
151 1.19 lukem port = htons((in_port_t)nport);
152 1.1 lukem }
153 1.12 lukem
154 1.12 lukem if (gatemode) {
155 1.12 lukem if (gateserver == NULL || *gateserver == '\0')
156 1.12 lukem errx(1, "gateserver not defined (shouldn't happen)");
157 1.12 lukem host = hookup(gateserver, port);
158 1.12 lukem } else
159 1.12 lukem host = hookup(argv[1], port);
160 1.12 lukem
161 1.1 lukem if (host) {
162 1.1 lukem int overbose;
163 1.1 lukem
164 1.12 lukem if (gatemode) {
165 1.12 lukem if (command("PASSERVE %s", argv[1]) != COMPLETE)
166 1.12 lukem return;
167 1.12 lukem if (verbose)
168 1.24 lukem fprintf(ttyout,
169 1.24 lukem "Connected via pass-through server %s\n",
170 1.12 lukem gateserver);
171 1.12 lukem }
172 1.12 lukem
173 1.1 lukem connected = 1;
174 1.1 lukem /*
175 1.1 lukem * Set up defaults for FTP.
176 1.1 lukem */
177 1.5 lukem (void)strcpy(typename, "ascii"), type = TYPE_A;
178 1.1 lukem curtype = TYPE_A;
179 1.5 lukem (void)strcpy(formname, "non-print"), form = FORM_N;
180 1.5 lukem (void)strcpy(modename, "stream"), mode = MODE_S;
181 1.5 lukem (void)strcpy(structname, "file"), stru = STRU_F;
182 1.5 lukem (void)strcpy(bytename, "8"), bytesize = 8;
183 1.1 lukem if (autologin)
184 1.28 lukem (void)ftp_login(argv[1], NULL, NULL);
185 1.1 lukem
186 1.1 lukem overbose = verbose;
187 1.1 lukem if (debug == 0)
188 1.1 lukem verbose = -1;
189 1.1 lukem if (command("SYST") == COMPLETE && overbose) {
190 1.1 lukem char *cp, c;
191 1.1 lukem c = 0;
192 1.24 lukem cp = strchr(reply_string + 4, ' ');
193 1.1 lukem if (cp == NULL)
194 1.24 lukem cp = strchr(reply_string + 4, '\r');
195 1.1 lukem if (cp) {
196 1.1 lukem if (cp[-1] == '.')
197 1.1 lukem cp--;
198 1.1 lukem c = *cp;
199 1.1 lukem *cp = '\0';
200 1.1 lukem }
201 1.1 lukem
202 1.24 lukem fprintf(ttyout, "Remote system type is %s.\n",
203 1.24 lukem reply_string + 4);
204 1.1 lukem if (cp)
205 1.1 lukem *cp = c;
206 1.1 lukem }
207 1.1 lukem if (!strncmp(reply_string, "215 UNIX Type: L8", 17)) {
208 1.1 lukem if (proxy)
209 1.1 lukem unix_proxy = 1;
210 1.1 lukem else
211 1.1 lukem unix_server = 1;
212 1.1 lukem /*
213 1.1 lukem * Set type to 0 (not specified by user),
214 1.1 lukem * meaning binary by default, but don't bother
215 1.1 lukem * telling server. We can use binary
216 1.1 lukem * for text files unless changed by the user.
217 1.1 lukem */
218 1.1 lukem type = 0;
219 1.5 lukem (void)strcpy(typename, "binary");
220 1.1 lukem if (overbose)
221 1.24 lukem fprintf(ttyout,
222 1.24 lukem "Using %s mode to transfer files.\n",
223 1.1 lukem typename);
224 1.1 lukem } else {
225 1.1 lukem if (proxy)
226 1.1 lukem unix_proxy = 0;
227 1.1 lukem else
228 1.1 lukem unix_server = 0;
229 1.1 lukem if (overbose &&
230 1.1 lukem !strncmp(reply_string, "215 TOPS20", 10))
231 1.24 lukem fputs(
232 1.24 lukem "Remember to set tenex mode when transferring binary files from this machine.\n",
233 1.24 lukem ttyout);
234 1.1 lukem }
235 1.1 lukem verbose = overbose;
236 1.1 lukem }
237 1.7 lukem }
238 1.7 lukem
239 1.7 lukem /*
240 1.7 lukem * login to remote host, using given username & password if supplied
241 1.7 lukem */
242 1.7 lukem int
243 1.28 lukem ftp_login(host, user, pass)
244 1.7 lukem const char *host;
245 1.29 mycroft const char *user, *pass;
246 1.7 lukem {
247 1.7 lukem char tmp[80];
248 1.29 mycroft const char *acct;
249 1.31 lukem char anonpass[MAXLOGNAME + 2]; /* "user@" */
250 1.14 lukem struct passwd *pw;
251 1.7 lukem int n, aflag = 0;
252 1.7 lukem
253 1.7 lukem acct = NULL;
254 1.7 lukem if (user == NULL) {
255 1.7 lukem if (ruserpass(host, &user, &pass, &acct) < 0) {
256 1.7 lukem code = -1;
257 1.7 lukem return (0);
258 1.7 lukem }
259 1.7 lukem }
260 1.7 lukem
261 1.7 lukem /*
262 1.7 lukem * Set up arguments for an anonymous FTP session, if necessary.
263 1.7 lukem */
264 1.7 lukem if ((user == NULL || pass == NULL) && anonftp) {
265 1.7 lukem memset(anonpass, 0, sizeof(anonpass));
266 1.7 lukem
267 1.7 lukem /*
268 1.7 lukem * Set up anonymous login password.
269 1.7 lukem */
270 1.31 lukem if ((pass = getenv("FTPANONPASS")) == NULL) {
271 1.31 lukem if ((pass = getlogin()) == NULL) {
272 1.31 lukem if ((pw = getpwuid(getuid())) == NULL)
273 1.31 lukem pass = "anonymous";
274 1.31 lukem else
275 1.31 lukem pass = pw->pw_name;
276 1.31 lukem }
277 1.31 lukem /*
278 1.31 lukem * Every anonymous FTP server I've encountered
279 1.31 lukem * will accept the string "username@", and will
280 1.31 lukem * append the hostname itself. We do this by default
281 1.31 lukem * since many servers are picky about not having
282 1.31 lukem * a FQDN in the anonymous password.
283 1.31 lukem * - thorpej (at) netbsd.org
284 1.31 lukem */
285 1.31 lukem snprintf(anonpass, sizeof(anonpass) - 1, "%s@", pass);
286 1.31 lukem pass = anonpass;
287 1.14 lukem }
288 1.9 lukem user = "anonymous"; /* as per RFC 1635 */
289 1.7 lukem }
290 1.7 lukem
291 1.7 lukem while (user == NULL) {
292 1.29 mycroft const char *myname = getlogin();
293 1.7 lukem
294 1.14 lukem if (myname == NULL && (pw = getpwuid(getuid())) != NULL)
295 1.14 lukem myname = pw->pw_name;
296 1.7 lukem if (myname)
297 1.24 lukem fprintf(ttyout, "Name (%s:%s): ", host, myname);
298 1.7 lukem else
299 1.24 lukem fprintf(ttyout, "Name (%s): ", host);
300 1.19 lukem *tmp = '\0';
301 1.7 lukem (void)fgets(tmp, sizeof(tmp) - 1, stdin);
302 1.7 lukem tmp[strlen(tmp) - 1] = '\0';
303 1.7 lukem if (*tmp == '\0')
304 1.7 lukem user = myname;
305 1.7 lukem else
306 1.7 lukem user = tmp;
307 1.7 lukem }
308 1.7 lukem n = command("USER %s", user);
309 1.7 lukem if (n == CONTINUE) {
310 1.7 lukem if (pass == NULL)
311 1.7 lukem pass = getpass("Password:");
312 1.7 lukem n = command("PASS %s", pass);
313 1.7 lukem }
314 1.7 lukem if (n == CONTINUE) {
315 1.7 lukem aflag++;
316 1.7 lukem if (acct == NULL)
317 1.7 lukem acct = getpass("Account:");
318 1.7 lukem n = command("ACCT %s", acct);
319 1.7 lukem }
320 1.7 lukem if ((n != COMPLETE) ||
321 1.7 lukem (!aflag && acct != NULL && command("ACCT %s", acct) != COMPLETE)) {
322 1.7 lukem warnx("Login failed.");
323 1.7 lukem return (0);
324 1.7 lukem }
325 1.7 lukem if (proxy)
326 1.7 lukem return (1);
327 1.7 lukem connected = -1;
328 1.7 lukem for (n = 0; n < macnum; ++n) {
329 1.7 lukem if (!strcmp("init", macros[n].mac_name)) {
330 1.7 lukem (void)strcpy(line, "$init");
331 1.7 lukem makeargv();
332 1.7 lukem domacro(margc, margv);
333 1.7 lukem break;
334 1.7 lukem }
335 1.7 lukem }
336 1.7 lukem return (1);
337 1.1 lukem }
338 1.1 lukem
339 1.1 lukem /*
340 1.5 lukem * `another' gets another argument, and stores the new argc and argv.
341 1.1 lukem * It reverts to the top level (via main.c's intr()) on EOF/error.
342 1.1 lukem *
343 1.1 lukem * Returns false if no new arguments have been added.
344 1.1 lukem */
345 1.1 lukem int
346 1.1 lukem another(pargc, pargv, prompt)
347 1.1 lukem int *pargc;
348 1.1 lukem char ***pargv;
349 1.1 lukem const char *prompt;
350 1.1 lukem {
351 1.1 lukem int len = strlen(line), ret;
352 1.1 lukem
353 1.1 lukem if (len >= sizeof(line) - 3) {
354 1.24 lukem fputs("sorry, arguments too long.\n", ttyout);
355 1.1 lukem intr();
356 1.1 lukem }
357 1.24 lukem fprintf(ttyout, "(%s) ", prompt);
358 1.1 lukem line[len++] = ' ';
359 1.1 lukem if (fgets(&line[len], sizeof(line) - len, stdin) == NULL)
360 1.1 lukem intr();
361 1.1 lukem len += strlen(&line[len]);
362 1.1 lukem if (len > 0 && line[len - 1] == '\n')
363 1.1 lukem line[len - 1] = '\0';
364 1.1 lukem makeargv();
365 1.1 lukem ret = margc > *pargc;
366 1.1 lukem *pargc = margc;
367 1.1 lukem *pargv = margv;
368 1.1 lukem return (ret);
369 1.1 lukem }
370 1.1 lukem
371 1.5 lukem /*
372 1.5 lukem * glob files given in argv[] from the remote server.
373 1.5 lukem * if errbuf isn't NULL, store error messages there instead
374 1.5 lukem * of writing to the screen.
375 1.5 lukem */
376 1.1 lukem char *
377 1.5 lukem remglob(argv, doswitch, errbuf)
378 1.1 lukem char *argv[];
379 1.1 lukem int doswitch;
380 1.5 lukem char **errbuf;
381 1.1 lukem {
382 1.1 lukem char temp[MAXPATHLEN];
383 1.1 lukem static char buf[MAXPATHLEN];
384 1.1 lukem static FILE *ftemp = NULL;
385 1.1 lukem static char **args;
386 1.1 lukem int oldverbose, oldhash, fd;
387 1.1 lukem char *cp, *mode;
388 1.1 lukem
389 1.1 lukem if (!mflag) {
390 1.5 lukem if (!doglob)
391 1.1 lukem args = NULL;
392 1.1 lukem else {
393 1.1 lukem if (ftemp) {
394 1.5 lukem (void)fclose(ftemp);
395 1.1 lukem ftemp = NULL;
396 1.1 lukem }
397 1.1 lukem }
398 1.1 lukem return (NULL);
399 1.1 lukem }
400 1.1 lukem if (!doglob) {
401 1.1 lukem if (args == NULL)
402 1.1 lukem args = argv;
403 1.1 lukem if ((cp = *++args) == NULL)
404 1.1 lukem args = NULL;
405 1.1 lukem return (cp);
406 1.1 lukem }
407 1.1 lukem if (ftemp == NULL) {
408 1.13 lukem (void)snprintf(temp, sizeof(temp), "%s/%s", tmpdir, TMPFILE);
409 1.5 lukem if ((fd = mkstemp(temp)) < 0) {
410 1.1 lukem warn("unable to create temporary file %s", temp);
411 1.1 lukem return (NULL);
412 1.1 lukem }
413 1.1 lukem close(fd);
414 1.5 lukem oldverbose = verbose;
415 1.5 lukem verbose = (errbuf != NULL) ? -1 : 0;
416 1.5 lukem oldhash = hash;
417 1.5 lukem hash = 0;
418 1.5 lukem if (doswitch)
419 1.1 lukem pswitch(!proxy);
420 1.1 lukem for (mode = "w"; *++argv != NULL; mode = "a")
421 1.12 lukem recvrequest("NLST", temp, *argv, mode, 0, 0);
422 1.5 lukem if ((code / 100) != COMPLETE) {
423 1.5 lukem if (errbuf != NULL)
424 1.5 lukem *errbuf = reply_string;
425 1.5 lukem }
426 1.5 lukem if (doswitch)
427 1.1 lukem pswitch(!proxy);
428 1.5 lukem verbose = oldverbose;
429 1.5 lukem hash = oldhash;
430 1.1 lukem ftemp = fopen(temp, "r");
431 1.5 lukem (void)unlink(temp);
432 1.1 lukem if (ftemp == NULL) {
433 1.5 lukem if (errbuf == NULL)
434 1.24 lukem fputs(
435 1.24 lukem "can't find list of remote files, oops.\n",
436 1.24 lukem ttyout);
437 1.5 lukem else
438 1.5 lukem *errbuf =
439 1.5 lukem "can't find list of remote files, oops.";
440 1.1 lukem return (NULL);
441 1.1 lukem }
442 1.1 lukem }
443 1.5 lukem if (fgets(buf, sizeof(buf), ftemp) == NULL) {
444 1.5 lukem (void)fclose(ftemp);
445 1.5 lukem ftemp = NULL;
446 1.1 lukem return (NULL);
447 1.1 lukem }
448 1.1 lukem if ((cp = strchr(buf, '\n')) != NULL)
449 1.1 lukem *cp = '\0';
450 1.1 lukem return (buf);
451 1.1 lukem }
452 1.1 lukem
453 1.1 lukem int
454 1.1 lukem confirm(cmd, file)
455 1.1 lukem const char *cmd, *file;
456 1.1 lukem {
457 1.1 lukem char line[BUFSIZ];
458 1.1 lukem
459 1.1 lukem if (!interactive || confirmrest)
460 1.1 lukem return (1);
461 1.24 lukem fprintf(ttyout, "%s %s? ", cmd, file);
462 1.24 lukem (void)fflush(ttyout);
463 1.1 lukem if (fgets(line, sizeof(line), stdin) == NULL)
464 1.1 lukem return (0);
465 1.1 lukem switch (tolower(*line)) {
466 1.1 lukem case 'n':
467 1.1 lukem return (0);
468 1.1 lukem case 'p':
469 1.1 lukem interactive = 0;
470 1.24 lukem fputs("Interactive mode: off.\n", ttyout);
471 1.1 lukem break;
472 1.1 lukem case 'a':
473 1.1 lukem confirmrest = 1;
474 1.24 lukem fprintf(ttyout, "Prompting off for duration of %s.\n",
475 1.24 lukem cmd);
476 1.1 lukem break;
477 1.1 lukem }
478 1.1 lukem return (1);
479 1.1 lukem }
480 1.1 lukem
481 1.1 lukem /*
482 1.1 lukem * Glob a local file name specification with
483 1.1 lukem * the expectation of a single return value.
484 1.1 lukem * Can't control multiple values being expanded
485 1.1 lukem * from the expression, we return only the first.
486 1.1 lukem */
487 1.1 lukem int
488 1.1 lukem globulize(cpp)
489 1.1 lukem char **cpp;
490 1.1 lukem {
491 1.1 lukem glob_t gl;
492 1.1 lukem int flags;
493 1.1 lukem
494 1.1 lukem if (!doglob)
495 1.1 lukem return (1);
496 1.1 lukem
497 1.25 kleink flags = GLOB_BRACE|GLOB_NOCHECK|GLOB_TILDE;
498 1.1 lukem memset(&gl, 0, sizeof(gl));
499 1.1 lukem if (glob(*cpp, flags, NULL, &gl) ||
500 1.1 lukem gl.gl_pathc == 0) {
501 1.1 lukem warnx("%s: not found", *cpp);
502 1.1 lukem globfree(&gl);
503 1.1 lukem return (0);
504 1.1 lukem }
505 1.12 lukem /* XXX: caller should check if *cpp changed, and
506 1.12 lukem * free(*cpp) if that is the case
507 1.12 lukem */
508 1.31 lukem *cpp = xstrdup(gl.gl_pathv[0]);
509 1.1 lukem globfree(&gl);
510 1.1 lukem return (1);
511 1.1 lukem }
512 1.1 lukem
513 1.1 lukem /*
514 1.1 lukem * determine size of remote file
515 1.1 lukem */
516 1.1 lukem off_t
517 1.1 lukem remotesize(file, noisy)
518 1.1 lukem const char *file;
519 1.1 lukem int noisy;
520 1.1 lukem {
521 1.1 lukem int overbose;
522 1.1 lukem off_t size;
523 1.1 lukem
524 1.1 lukem overbose = verbose;
525 1.1 lukem size = -1;
526 1.1 lukem if (debug == 0)
527 1.1 lukem verbose = -1;
528 1.11 lukem if (command("SIZE %s", file) == COMPLETE) {
529 1.11 lukem char *cp, *ep;
530 1.11 lukem
531 1.11 lukem cp = strchr(reply_string, ' ');
532 1.11 lukem if (cp != NULL) {
533 1.11 lukem cp++;
534 1.32 lukem #ifndef NO_QUAD
535 1.32 lukem size = strtoq(cp, &ep, 10);
536 1.32 lukem #else
537 1.23 christos size = strtol(cp, &ep, 10);
538 1.23 christos #endif
539 1.23 christos if (*ep != '\0' && !isspace((unsigned char)*ep))
540 1.11 lukem size = -1;
541 1.11 lukem }
542 1.24 lukem } else if (noisy && debug == 0) {
543 1.24 lukem fputs(reply_string, ttyout);
544 1.24 lukem putc('\n', ttyout);
545 1.24 lukem }
546 1.1 lukem verbose = overbose;
547 1.1 lukem return (size);
548 1.1 lukem }
549 1.1 lukem
550 1.1 lukem /*
551 1.1 lukem * determine last modification time (in GMT) of remote file
552 1.1 lukem */
553 1.1 lukem time_t
554 1.1 lukem remotemodtime(file, noisy)
555 1.1 lukem const char *file;
556 1.1 lukem int noisy;
557 1.1 lukem {
558 1.1 lukem int overbose;
559 1.1 lukem time_t rtime;
560 1.14 lukem int ocode;
561 1.1 lukem
562 1.1 lukem overbose = verbose;
563 1.14 lukem ocode = code;
564 1.1 lukem rtime = -1;
565 1.1 lukem if (debug == 0)
566 1.1 lukem verbose = -1;
567 1.1 lukem if (command("MDTM %s", file) == COMPLETE) {
568 1.1 lukem struct tm timebuf;
569 1.1 lukem int yy, mo, day, hour, min, sec;
570 1.1 lukem sscanf(reply_string, "%*s %04d%02d%02d%02d%02d%02d", &yy, &mo,
571 1.1 lukem &day, &hour, &min, &sec);
572 1.1 lukem memset(&timebuf, 0, sizeof(timebuf));
573 1.1 lukem timebuf.tm_sec = sec;
574 1.1 lukem timebuf.tm_min = min;
575 1.1 lukem timebuf.tm_hour = hour;
576 1.1 lukem timebuf.tm_mday = day;
577 1.1 lukem timebuf.tm_mon = mo - 1;
578 1.22 christos timebuf.tm_year = yy - TM_YEAR_BASE;
579 1.1 lukem timebuf.tm_isdst = -1;
580 1.36 itohy rtime = mkgmtime(&timebuf);
581 1.1 lukem if (rtime == -1 && (noisy || debug != 0))
582 1.24 lukem fprintf(ttyout, "Can't convert %s to a time.\n",
583 1.24 lukem reply_string);
584 1.24 lukem } else if (noisy && debug == 0) {
585 1.24 lukem fputs(reply_string, ttyout);
586 1.24 lukem putc('\n', ttyout);
587 1.24 lukem }
588 1.1 lukem verbose = overbose;
589 1.14 lukem if (rtime == -1)
590 1.14 lukem code = ocode;
591 1.1 lukem return (rtime);
592 1.1 lukem }
593 1.36 itohy
594 1.36 itohy /*
595 1.36 itohy * UTC version of mktime(3)
596 1.36 itohy */
597 1.36 itohy #ifdef HAVE_TIMEGM
598 1.36 itohy time_t
599 1.36 itohy mkgmtime(tm)
600 1.36 itohy struct tm *tm;
601 1.36 itohy {
602 1.36 itohy
603 1.36 itohy /* This is very clean, but not portable at all. */
604 1.37 lukem return (timegm(tm));
605 1.36 itohy }
606 1.36 itohy
607 1.36 itohy #else /* not HAVE_TIMEGM */
608 1.36 itohy
609 1.36 itohy /*
610 1.36 itohy * This code is not portable, but works on most Unix-like systems.
611 1.36 itohy * If the local timezone has no summer time, using mktime(3) function
612 1.36 itohy * and adjusting offset would be usable (adjusting leap seconds
613 1.36 itohy * is still required, though), but the assumption is not always true.
614 1.36 itohy *
615 1.36 itohy * Anyway, no portable and correct implementation of UTC to time_t
616 1.36 itohy * conversion exists....
617 1.36 itohy */
618 1.36 itohy
619 1.36 itohy static time_t
620 1.36 itohy sub_mkgmt(tm)
621 1.36 itohy struct tm *tm;
622 1.36 itohy {
623 1.36 itohy int y, nleapdays;
624 1.36 itohy time_t t;
625 1.36 itohy /* days before the month */
626 1.36 itohy static const unsigned short moff[12] = {
627 1.36 itohy 0, 31, 59, 90, 120, 151, 181, 212, 243, 273, 304, 334
628 1.36 itohy };
629 1.36 itohy
630 1.36 itohy /*
631 1.36 itohy * XXX This code assumes the given time to be normalized.
632 1.36 itohy * Normalizing here is impossible in case the given time is a leap
633 1.36 itohy * second but the local time library is ignorant of leap seconds.
634 1.36 itohy */
635 1.36 itohy
636 1.36 itohy /* minimal sanity checking not to access outside of the array */
637 1.36 itohy if ((unsigned) tm->tm_mon >= 12)
638 1.36 itohy return (time_t) -1;
639 1.36 itohy if (tm->tm_year < EPOCH_YEAR - TM_YEAR_BASE)
640 1.36 itohy return (time_t) -1;
641 1.36 itohy
642 1.36 itohy y = tm->tm_year + TM_YEAR_BASE - (tm->tm_mon < 2);
643 1.36 itohy nleapdays = y / 4 - y / 100 + y / 400 -
644 1.36 itohy ((EPOCH_YEAR-1) / 4 - (EPOCH_YEAR-1) / 100 + (EPOCH_YEAR-1) / 400);
645 1.36 itohy t = ((((time_t) (tm->tm_year - (EPOCH_YEAR - TM_YEAR_BASE)) * 365 +
646 1.36 itohy moff[tm->tm_mon] + tm->tm_mday - 1 + nleapdays) * 24 +
647 1.36 itohy tm->tm_hour) * 60 + tm->tm_min) * 60 + tm->tm_sec;
648 1.36 itohy
649 1.37 lukem return (t < 0 ? (time_t) -1 : t);
650 1.36 itohy }
651 1.36 itohy
652 1.36 itohy time_t
653 1.36 itohy mkgmtime(tm)
654 1.36 itohy struct tm *tm;
655 1.36 itohy {
656 1.36 itohy time_t t, t2;
657 1.36 itohy struct tm *tm2;
658 1.36 itohy int sec;
659 1.36 itohy
660 1.36 itohy /* Do the first guess. */
661 1.36 itohy if ((t = sub_mkgmt(tm)) == (time_t) -1)
662 1.36 itohy return (time_t) -1;
663 1.36 itohy
664 1.36 itohy /* save value in case *tm is overwritten by gmtime() */
665 1.36 itohy sec = tm->tm_sec;
666 1.36 itohy
667 1.36 itohy tm2 = gmtime(&t);
668 1.36 itohy if ((t2 = sub_mkgmt(tm2)) == (time_t) -1)
669 1.36 itohy return (time_t) -1;
670 1.36 itohy
671 1.36 itohy if (t2 < t || tm2->tm_sec != sec) {
672 1.36 itohy /*
673 1.36 itohy * Adjust for leap seconds.
674 1.36 itohy *
675 1.36 itohy * real time_t time
676 1.36 itohy * |
677 1.36 itohy * tm
678 1.36 itohy * / ... (a) first sub_mkgmt() conversion
679 1.36 itohy * t
680 1.36 itohy * |
681 1.36 itohy * tm2
682 1.36 itohy * / ... (b) second sub_mkgmt() conversion
683 1.36 itohy * t2
684 1.36 itohy * --->time
685 1.36 itohy */
686 1.36 itohy /*
687 1.36 itohy * Do the second guess, assuming (a) and (b) are almost equal.
688 1.36 itohy */
689 1.36 itohy t += t - t2;
690 1.36 itohy tm2 = gmtime(&t);
691 1.36 itohy
692 1.36 itohy /*
693 1.36 itohy * Either (a) or (b), may include one or two extra
694 1.36 itohy * leap seconds. Try t, t + 2, t - 2, t + 1, and t - 1.
695 1.36 itohy */
696 1.36 itohy if (tm2->tm_sec == sec
697 1.36 itohy || (t += 2, tm2 = gmtime(&t), tm2->tm_sec == sec)
698 1.36 itohy || (t -= 4, tm2 = gmtime(&t), tm2->tm_sec == sec)
699 1.36 itohy || (t += 3, tm2 = gmtime(&t), tm2->tm_sec == sec)
700 1.36 itohy || (t -= 2, tm2 = gmtime(&t), tm2->tm_sec == sec))
701 1.36 itohy ; /* found */
702 1.36 itohy else {
703 1.36 itohy /*
704 1.36 itohy * Not found.
705 1.36 itohy */
706 1.36 itohy if (sec >= 60)
707 1.36 itohy /*
708 1.36 itohy * The given time is a leap second
709 1.36 itohy * (sec 60 or 61), but the time library
710 1.36 itohy * is ignorant of the leap second.
711 1.36 itohy */
712 1.36 itohy ; /* treat sec 60 as 59,
713 1.36 itohy sec 61 as 0 of the next minute */
714 1.36 itohy else
715 1.36 itohy /* The given time may not be normalized. */
716 1.36 itohy t++; /* restore t */
717 1.36 itohy }
718 1.36 itohy }
719 1.36 itohy
720 1.37 lukem return (t < 0 ? (time_t) -1 : t);
721 1.36 itohy }
722 1.36 itohy #endif /* not HAVE_TIMEGM */
723 1.1 lukem
724 1.18 gwr #ifndef SMALL
725 1.10 lukem
726 1.24 lukem /*
727 1.24 lukem * return non-zero if we're the current foreground process
728 1.24 lukem */
729 1.24 lukem int
730 1.24 lukem foregroundproc()
731 1.3 lukem {
732 1.9 lukem static pid_t pgrp = -1;
733 1.9 lukem int ctty_pgrp;
734 1.3 lukem
735 1.9 lukem if (pgrp == -1)
736 1.9 lukem pgrp = getpgrp();
737 1.9 lukem
738 1.24 lukem return ((ioctl(fileno(ttyout), TIOCGPGRP, &ctty_pgrp) != -1 &&
739 1.24 lukem ctty_pgrp == (int)pgrp));
740 1.24 lukem }
741 1.24 lukem
742 1.24 lukem
743 1.24 lukem static void updateprogressmeter __P((int));
744 1.24 lukem
745 1.24 lukem static void
746 1.24 lukem updateprogressmeter(dummy)
747 1.24 lukem int dummy;
748 1.24 lukem {
749 1.24 lukem
750 1.9 lukem /*
751 1.9 lukem * print progress bar only if we are foreground process.
752 1.9 lukem */
753 1.24 lukem if (foregroundproc())
754 1.9 lukem progressmeter(0);
755 1.3 lukem }
756 1.18 gwr #endif /* SMALL */
757 1.3 lukem
758 1.1 lukem /*
759 1.1 lukem * Display a transfer progress bar if progress is non-zero.
760 1.3 lukem * SIGALRM is hijacked for use by this function.
761 1.3 lukem * - Before the transfer, set filesize to size of file (or -1 if unknown),
762 1.3 lukem * and call with flag = -1. This starts the once per second timer,
763 1.3 lukem * and a call to updateprogressmeter() upon SIGALRM.
764 1.3 lukem * - During the transfer, updateprogressmeter will call progressmeter
765 1.3 lukem * with flag = 0
766 1.3 lukem * - After the transfer, call with flag = 1
767 1.1 lukem */
768 1.1 lukem static struct timeval start;
769 1.21 lukem static struct timeval lastupdate;
770 1.1 lukem
771 1.1 lukem void
772 1.1 lukem progressmeter(flag)
773 1.1 lukem int flag;
774 1.1 lukem {
775 1.18 gwr #ifndef SMALL
776 1.3 lukem /*
777 1.3 lukem * List of order of magnitude prefixes.
778 1.3 lukem * The last is `P', as 2^64 = 16384 Petabytes
779 1.3 lukem */
780 1.34 lukem static const char prefixes[] = "BKMGTP";
781 1.3 lukem
782 1.3 lukem static off_t lastsize;
783 1.3 lukem struct timeval now, td, wait;
784 1.34 lukem off_t cursize, abbrevsize, bytespersec;
785 1.17 lukem double elapsed;
786 1.17 lukem int ratio, barlength, i, len, remaining;
787 1.3 lukem char buf[256];
788 1.1 lukem
789 1.15 mycroft len = 0;
790 1.15 mycroft
791 1.3 lukem if (flag == -1) {
792 1.19 lukem (void)gettimeofday(&start, NULL);
793 1.3 lukem lastupdate = start;
794 1.3 lukem lastsize = restart_point;
795 1.3 lukem }
796 1.19 lukem (void)gettimeofday(&now, NULL);
797 1.2 thorpej if (!progress || filesize <= 0)
798 1.1 lukem return;
799 1.1 lukem cursize = bytes + restart_point;
800 1.1 lukem
801 1.34 lukem ratio = (int)((double)cursize * 100.0 / (double)filesize);
802 1.1 lukem ratio = MAX(ratio, 0);
803 1.1 lukem ratio = MIN(ratio, 100);
804 1.15 mycroft len += snprintf(buf + len, sizeof(buf) - len, "\r%3d%% ", ratio);
805 1.1 lukem
806 1.34 lukem barlength = ttywidth - 42;
807 1.1 lukem if (barlength > 0) {
808 1.1 lukem i = barlength * ratio / 100;
809 1.15 mycroft len += snprintf(buf + len, sizeof(buf) - len,
810 1.3 lukem "|%.*s%*s|", i,
811 1.1 lukem "*****************************************************************************"
812 1.1 lukem "*****************************************************************************",
813 1.1 lukem barlength - i, "");
814 1.1 lukem }
815 1.1 lukem
816 1.1 lukem abbrevsize = cursize;
817 1.34 lukem for (i = 0; abbrevsize >= 100000 && i < sizeof(prefixes); i++)
818 1.1 lukem abbrevsize >>= 10;
819 1.15 mycroft len += snprintf(buf + len, sizeof(buf) - len,
820 1.32 lukem #ifndef NO_QUAD
821 1.32 lukem " %5qd %c%c ", (long long)abbrevsize,
822 1.32 lukem #else
823 1.32 lukem " %5ld %c%c ", (long)abbrevsize,
824 1.32 lukem #endif
825 1.34 lukem i == 0 ? ' ' : prefixes[i],
826 1.34 lukem i == 0 ? ' ' : 'B');
827 1.1 lukem
828 1.3 lukem timersub(&now, &lastupdate, &wait);
829 1.3 lukem if (cursize > lastsize) {
830 1.3 lukem lastupdate = now;
831 1.3 lukem lastsize = cursize;
832 1.3 lukem if (wait.tv_sec >= STALLTIME) { /* fudge out stalled time */
833 1.3 lukem start.tv_sec += wait.tv_sec;
834 1.3 lukem start.tv_usec += wait.tv_usec;
835 1.3 lukem }
836 1.3 lukem wait.tv_sec = 0;
837 1.3 lukem }
838 1.3 lukem
839 1.1 lukem timersub(&now, &start, &td);
840 1.1 lukem elapsed = td.tv_sec + (td.tv_usec / 1000000.0);
841 1.3 lukem
842 1.34 lukem bytespersec = 0;
843 1.34 lukem if (bytes > 0) {
844 1.34 lukem bytespersec = bytes;
845 1.34 lukem if (elapsed > 0.0)
846 1.34 lukem bytespersec /= elapsed;
847 1.34 lukem }
848 1.34 lukem for (i = 0; bytespersec >= 100000 && i < sizeof(prefixes); i++)
849 1.34 lukem bytespersec >>= 10;
850 1.34 lukem len += snprintf(buf + len, sizeof(buf) - len,
851 1.34 lukem #ifndef NO_QUAD
852 1.34 lukem " %5qd %c%s ", (long long)bytespersec,
853 1.34 lukem #else
854 1.34 lukem " %5ld %c%s ", (long)bytespersec,
855 1.34 lukem #endif
856 1.34 lukem prefixes[i],
857 1.34 lukem i == 0 ? "/s " : "B/s");
858 1.34 lukem
859 1.8 lukem if (bytes <= 0 || elapsed <= 0.0 || cursize > filesize) {
860 1.15 mycroft len += snprintf(buf + len, sizeof(buf) - len,
861 1.3 lukem " --:-- ETA");
862 1.3 lukem } else if (wait.tv_sec >= STALLTIME) {
863 1.15 mycroft len += snprintf(buf + len, sizeof(buf) - len,
864 1.3 lukem " - stalled -");
865 1.1 lukem } else {
866 1.17 lukem remaining = (int)
867 1.17 lukem ((filesize - restart_point) / (bytes / elapsed) - elapsed);
868 1.17 lukem if (remaining >= 100 * SECSPERHOUR)
869 1.15 mycroft len += snprintf(buf + len, sizeof(buf) - len,
870 1.15 mycroft " --:-- ETA");
871 1.15 mycroft else {
872 1.17 lukem i = remaining / SECSPERHOUR;
873 1.15 mycroft if (i)
874 1.15 mycroft len += snprintf(buf + len, sizeof(buf) - len,
875 1.15 mycroft "%2d:", i);
876 1.15 mycroft else
877 1.15 mycroft len += snprintf(buf + len, sizeof(buf) - len,
878 1.15 mycroft " ");
879 1.17 lukem i = remaining % SECSPERHOUR;
880 1.15 mycroft len += snprintf(buf + len, sizeof(buf) - len,
881 1.15 mycroft "%02d:%02d ETA", i / 60, i % 60);
882 1.15 mycroft }
883 1.1 lukem }
884 1.24 lukem (void)write(fileno(ttyout), buf, len);
885 1.1 lukem
886 1.3 lukem if (flag == -1) {
887 1.33 lukem (void)xsignal(SIGALRM, updateprogressmeter);
888 1.3 lukem alarmtimer(1); /* set alarm timer for 1 Hz */
889 1.3 lukem } else if (flag == 1) {
890 1.33 lukem (void)xsignal(SIGALRM, SIG_DFL);
891 1.3 lukem alarmtimer(0);
892 1.24 lukem (void)putc('\n', ttyout);
893 1.3 lukem }
894 1.24 lukem fflush(ttyout);
895 1.18 gwr #endif /* SMALL */
896 1.1 lukem }
897 1.1 lukem
898 1.1 lukem /*
899 1.1 lukem * Display transfer statistics.
900 1.1 lukem * Requires start to be initialised by progressmeter(-1),
901 1.1 lukem * direction to be defined by xfer routines, and filesize and bytes
902 1.1 lukem * to be updated by xfer routines
903 1.24 lukem * If siginfo is nonzero, an ETA is displayed, and the output goes to stderr
904 1.24 lukem * instead of ttyout.
905 1.1 lukem */
906 1.1 lukem void
907 1.1 lukem ptransfer(siginfo)
908 1.1 lukem int siginfo;
909 1.1 lukem {
910 1.18 gwr #ifndef SMALL
911 1.21 lukem struct timeval now, td, wait;
912 1.1 lukem double elapsed;
913 1.34 lukem off_t bytespersec;
914 1.17 lukem int meg, remaining, hh, len;
915 1.1 lukem char buf[100];
916 1.1 lukem
917 1.1 lukem if (!verbose && !siginfo)
918 1.1 lukem return;
919 1.1 lukem
920 1.19 lukem (void)gettimeofday(&now, NULL);
921 1.1 lukem timersub(&now, &start, &td);
922 1.1 lukem elapsed = td.tv_sec + (td.tv_usec / 1000000.0);
923 1.34 lukem bytespersec = 0;
924 1.1 lukem meg = 0;
925 1.34 lukem if (bytes > 0) {
926 1.34 lukem bytespersec = bytes;
927 1.34 lukem if (elapsed > 0.0)
928 1.34 lukem bytespersec /= elapsed;
929 1.34 lukem if (bytespersec > (1024 * 1024))
930 1.34 lukem meg = 1;
931 1.34 lukem }
932 1.17 lukem len = 0;
933 1.17 lukem len += snprintf(buf + len, sizeof(buf) - len,
934 1.23 christos #ifndef NO_QUAD
935 1.23 christos "%qd byte%s %s in ", (long long)bytes,
936 1.23 christos #else
937 1.23 christos "%ld byte%s %s in ", (long)bytes,
938 1.23 christos #endif
939 1.23 christos bytes == 1 ? "" : "s", direction);
940 1.21 lukem remaining = (int)elapsed;
941 1.21 lukem if (remaining > SECSPERDAY) {
942 1.21 lukem int days;
943 1.21 lukem
944 1.21 lukem days = remaining / SECSPERDAY;
945 1.21 lukem remaining %= SECSPERDAY;
946 1.21 lukem len += snprintf(buf + len, sizeof(buf) - len,
947 1.21 lukem "%d day%s ", days, days == 1 ? "" : "s");
948 1.21 lukem }
949 1.21 lukem hh = remaining / SECSPERHOUR;
950 1.21 lukem remaining %= SECSPERHOUR;
951 1.21 lukem if (hh)
952 1.21 lukem len += snprintf(buf + len, sizeof(buf) - len, "%2d:", hh);
953 1.21 lukem len += snprintf(buf + len, sizeof(buf) - len,
954 1.21 lukem "%02d:%02d (%.2f %sB/s)", remaining / 60, remaining % 60,
955 1.34 lukem bytespersec / (1024.0 * (meg ? 1024.0 : 1.0)),
956 1.21 lukem meg ? "M" : "K");
957 1.21 lukem
958 1.8 lukem if (siginfo && bytes > 0 && elapsed > 0.0 && filesize >= 0
959 1.8 lukem && bytes + restart_point <= filesize) {
960 1.1 lukem remaining = (int)((filesize - restart_point) /
961 1.1 lukem (bytes / elapsed) - elapsed);
962 1.17 lukem hh = remaining / SECSPERHOUR;
963 1.17 lukem remaining %= SECSPERHOUR;
964 1.21 lukem len += snprintf(buf + len, sizeof(buf) - len, " ETA: ");
965 1.21 lukem if (hh)
966 1.21 lukem len += snprintf(buf + len, sizeof(buf) - len, "%2d:",
967 1.21 lukem hh);
968 1.17 lukem len += snprintf(buf + len, sizeof(buf) - len,
969 1.21 lukem "%02d:%02d", remaining / 60, remaining % 60);
970 1.21 lukem timersub(&now, &lastupdate, &wait);
971 1.21 lukem if (wait.tv_sec >= STALLTIME)
972 1.21 lukem len += snprintf(buf + len, sizeof(buf) - len,
973 1.21 lukem " (stalled)");
974 1.1 lukem }
975 1.21 lukem len += snprintf(buf + len, sizeof(buf) - len, "\n");
976 1.24 lukem (void)write(siginfo ? STDERR_FILENO : fileno(ttyout), buf, len);
977 1.18 gwr #endif /* SMALL */
978 1.1 lukem }
979 1.1 lukem
980 1.1 lukem /*
981 1.1 lukem * List words in stringlist, vertically arranged
982 1.1 lukem */
983 1.1 lukem void
984 1.1 lukem list_vertical(sl)
985 1.1 lukem StringList *sl;
986 1.1 lukem {
987 1.1 lukem int i, j, w;
988 1.1 lukem int columns, width, lines, items;
989 1.1 lukem char *p;
990 1.1 lukem
991 1.1 lukem width = items = 0;
992 1.1 lukem
993 1.1 lukem for (i = 0 ; i < sl->sl_cur ; i++) {
994 1.1 lukem w = strlen(sl->sl_str[i]);
995 1.1 lukem if (w > width)
996 1.1 lukem width = w;
997 1.1 lukem }
998 1.1 lukem width = (width + 8) &~ 7;
999 1.1 lukem
1000 1.1 lukem columns = ttywidth / width;
1001 1.1 lukem if (columns == 0)
1002 1.1 lukem columns = 1;
1003 1.1 lukem lines = (sl->sl_cur + columns - 1) / columns;
1004 1.1 lukem for (i = 0; i < lines; i++) {
1005 1.1 lukem for (j = 0; j < columns; j++) {
1006 1.1 lukem p = sl->sl_str[j * lines + i];
1007 1.1 lukem if (p)
1008 1.24 lukem fputs(p, ttyout);
1009 1.1 lukem if (j * lines + i + lines >= sl->sl_cur) {
1010 1.24 lukem putc('\n', ttyout);
1011 1.1 lukem break;
1012 1.1 lukem }
1013 1.1 lukem w = strlen(p);
1014 1.1 lukem while (w < width) {
1015 1.1 lukem w = (w + 8) &~ 7;
1016 1.24 lukem (void)putc('\t', ttyout);
1017 1.1 lukem }
1018 1.1 lukem }
1019 1.1 lukem }
1020 1.3 lukem }
1021 1.3 lukem
1022 1.3 lukem /*
1023 1.3 lukem * Update the global ttywidth value, using TIOCGWINSZ.
1024 1.3 lukem */
1025 1.3 lukem void
1026 1.3 lukem setttywidth(a)
1027 1.3 lukem int a;
1028 1.3 lukem {
1029 1.3 lukem struct winsize winsize;
1030 1.3 lukem
1031 1.34 lukem if (ioctl(fileno(ttyout), TIOCGWINSZ, &winsize) != -1 &&
1032 1.34 lukem winsize.ws_col != 0)
1033 1.3 lukem ttywidth = winsize.ws_col;
1034 1.3 lukem else
1035 1.3 lukem ttywidth = 80;
1036 1.3 lukem }
1037 1.3 lukem
1038 1.3 lukem /*
1039 1.3 lukem * Set the SIGALRM interval timer for wait seconds, 0 to disable.
1040 1.3 lukem */
1041 1.3 lukem void
1042 1.3 lukem alarmtimer(wait)
1043 1.3 lukem int wait;
1044 1.3 lukem {
1045 1.3 lukem struct itimerval itv;
1046 1.3 lukem
1047 1.3 lukem itv.it_value.tv_sec = wait;
1048 1.3 lukem itv.it_value.tv_usec = 0;
1049 1.3 lukem itv.it_interval = itv.it_value;
1050 1.3 lukem setitimer(ITIMER_REAL, &itv, NULL);
1051 1.1 lukem }
1052 1.6 lukem
1053 1.6 lukem /*
1054 1.6 lukem * Setup or cleanup EditLine structures
1055 1.6 lukem */
1056 1.6 lukem #ifndef SMALL
1057 1.6 lukem void
1058 1.6 lukem controlediting()
1059 1.6 lukem {
1060 1.6 lukem if (editing && el == NULL && hist == NULL) {
1061 1.16 christos HistEvent ev;
1062 1.30 lukem int editmode;
1063 1.16 christos
1064 1.24 lukem el = el_init(__progname, stdin, ttyout, stderr);
1065 1.23 christos /* init editline */
1066 1.6 lukem hist = history_init(); /* init the builtin history */
1067 1.23 christos history(hist, &ev, H_SETSIZE, 100);/* remember 100 events */
1068 1.6 lukem el_set(el, EL_HIST, history, hist); /* use history */
1069 1.6 lukem
1070 1.6 lukem el_set(el, EL_EDITOR, "emacs"); /* default editor is emacs */
1071 1.6 lukem el_set(el, EL_PROMPT, prompt); /* set the prompt function */
1072 1.6 lukem
1073 1.6 lukem /* add local file completion, bind to TAB */
1074 1.6 lukem el_set(el, EL_ADDFN, "ftp-complete",
1075 1.6 lukem "Context sensitive argument completion",
1076 1.6 lukem complete);
1077 1.6 lukem el_set(el, EL_BIND, "^I", "ftp-complete", NULL);
1078 1.6 lukem el_source(el, NULL); /* read ~/.editrc */
1079 1.30 lukem if ((el_get(el, EL_EDITMODE, &editmode) != -1) && editmode == 0)
1080 1.30 lukem editing = 0; /* the user doesn't want editing,
1081 1.30 lukem * so disable, and let statement
1082 1.30 lukem * below cleanup */
1083 1.30 lukem else
1084 1.30 lukem el_set(el, EL_SIGNAL, 1);
1085 1.30 lukem }
1086 1.30 lukem if (!editing) {
1087 1.6 lukem if (hist) {
1088 1.6 lukem history_end(hist);
1089 1.6 lukem hist = NULL;
1090 1.6 lukem }
1091 1.6 lukem if (el) {
1092 1.6 lukem el_end(el);
1093 1.6 lukem el = NULL;
1094 1.6 lukem }
1095 1.6 lukem }
1096 1.6 lukem }
1097 1.6 lukem #endif /* !SMALL */
1098 1.27 thorpej
1099 1.27 thorpej /*
1100 1.27 thorpej * Parse the specified socket buffer size.
1101 1.27 thorpej */
1102 1.27 thorpej int
1103 1.27 thorpej getsockbufsize(arg)
1104 1.27 thorpej const char *arg;
1105 1.27 thorpej {
1106 1.27 thorpej char *cp;
1107 1.27 thorpej int val;
1108 1.27 thorpej
1109 1.35 christos if (!isdigit((unsigned char)arg[0]))
1110 1.27 thorpej return (-1);
1111 1.27 thorpej
1112 1.27 thorpej val = strtol(arg, &cp, 10);
1113 1.27 thorpej if (cp != NULL) {
1114 1.27 thorpej if (cp[1] != '\0')
1115 1.27 thorpej return (-1);
1116 1.27 thorpej if (cp[0] == 'k')
1117 1.27 thorpej val *= 1024;
1118 1.27 thorpej if (cp[0] == 'm')
1119 1.27 thorpej val *= 1024 * 1024;
1120 1.27 thorpej }
1121 1.27 thorpej
1122 1.27 thorpej if (val < 0)
1123 1.27 thorpej return (-1);
1124 1.27 thorpej
1125 1.27 thorpej return (val);
1126 1.27 thorpej }
1127 1.27 thorpej
1128 1.27 thorpej /*
1129 1.27 thorpej * Set up socket buffer sizes before a connection is made.
1130 1.27 thorpej */
1131 1.27 thorpej void
1132 1.27 thorpej setupsockbufsize(sock)
1133 1.27 thorpej int sock;
1134 1.27 thorpej {
1135 1.27 thorpej static int sndbuf_default, rcvbuf_default;
1136 1.27 thorpej int len, size;
1137 1.27 thorpej
1138 1.27 thorpej /*
1139 1.27 thorpej * Get the default socket buffer sizes if we don't already
1140 1.27 thorpej * have them. It doesn't matter which socket we do this
1141 1.27 thorpej * to, because on the first call no socket buffer sizes
1142 1.27 thorpej * will have been modified, so we are guaranteed to get
1143 1.27 thorpej * the system defaults.
1144 1.27 thorpej */
1145 1.27 thorpej if (sndbuf_default == 0) {
1146 1.27 thorpej len = sizeof(sndbuf_default);
1147 1.27 thorpej if (getsockopt(sock, SOL_SOCKET, SO_SNDBUF, &sndbuf_default,
1148 1.27 thorpej &len) < 0)
1149 1.27 thorpej err(1, "unable to get default sndbuf size");
1150 1.27 thorpej len = sizeof(rcvbuf_default);
1151 1.27 thorpej if (getsockopt(sock, SOL_SOCKET, SO_RCVBUF, &rcvbuf_default,
1152 1.27 thorpej &len) < 0)
1153 1.27 thorpej err(1, "unable to get default rcvbuf size");
1154 1.27 thorpej
1155 1.27 thorpej }
1156 1.27 thorpej
1157 1.27 thorpej size = sndbuf_size ? sndbuf_size : sndbuf_default;
1158 1.27 thorpej if (setsockopt(sock, SOL_SOCKET, SO_SNDBUF, &size, sizeof(size)) < 0)
1159 1.27 thorpej warn("unable to set sndbuf size %d", size);
1160 1.27 thorpej
1161 1.27 thorpej size = rcvbuf_size ? rcvbuf_size : rcvbuf_default;
1162 1.27 thorpej if (setsockopt(sock, SOL_SOCKET, SO_RCVBUF, &size, sizeof(size)) < 0)
1163 1.27 thorpej warn("unable to set rcvbuf size %d", size);
1164 1.27 thorpej }
1165 1.27 thorpej
1166 1.27 thorpej /*
1167 1.27 thorpej * If the socket buffer sizes were not set manually (i.e. came from a
1168 1.27 thorpej * configuration file), reset them so the right thing will happen on
1169 1.27 thorpej * subsequent connections.
1170 1.27 thorpej */
1171 1.27 thorpej void
1172 1.27 thorpej resetsockbufsize()
1173 1.27 thorpej {
1174 1.27 thorpej
1175 1.27 thorpej if (sndbuf_manual == 0)
1176 1.27 thorpej sndbuf_size = 0;
1177 1.27 thorpej if (rcvbuf_manual == 0)
1178 1.27 thorpej rcvbuf_size = 0;
1179 1.27 thorpej }
1180 1.27 thorpej
1181 1.27 thorpej /*
1182 1.27 thorpej * Internal version of connect(2); sets socket buffer sizes first.
1183 1.27 thorpej */
1184 1.27 thorpej int
1185 1.27 thorpej xconnect(sock, name, namelen)
1186 1.27 thorpej int sock;
1187 1.27 thorpej const struct sockaddr *name;
1188 1.27 thorpej int namelen;
1189 1.27 thorpej {
1190 1.27 thorpej
1191 1.27 thorpej setupsockbufsize(sock);
1192 1.27 thorpej return (connect(sock, name, namelen));
1193 1.27 thorpej }
1194 1.27 thorpej
1195 1.27 thorpej /*
1196 1.27 thorpej * Internal version of listen(2); sets socket buffer sizes first.
1197 1.27 thorpej */
1198 1.27 thorpej int
1199 1.27 thorpej xlisten(sock, backlog)
1200 1.27 thorpej int sock, backlog;
1201 1.27 thorpej {
1202 1.27 thorpej
1203 1.27 thorpej setupsockbufsize(sock);
1204 1.27 thorpej return (listen(sock, backlog));
1205 1.31 lukem }
1206 1.31 lukem
1207 1.31 lukem void *
1208 1.31 lukem xmalloc(size)
1209 1.31 lukem size_t size;
1210 1.31 lukem {
1211 1.31 lukem void *p;
1212 1.31 lukem
1213 1.31 lukem p = malloc(size);
1214 1.31 lukem if (p == NULL)
1215 1.31 lukem err(1, "Unable to allocate %ld bytes of memory", (long)size);
1216 1.31 lukem return (p);
1217 1.31 lukem }
1218 1.31 lukem
1219 1.31 lukem char *
1220 1.31 lukem xstrdup(str)
1221 1.31 lukem const char *str;
1222 1.31 lukem {
1223 1.31 lukem char *s;
1224 1.31 lukem
1225 1.31 lukem if (str == NULL)
1226 1.31 lukem errx(1, "xstrdup() called with NULL argument");
1227 1.31 lukem s = strdup(str);
1228 1.31 lukem if (s == NULL)
1229 1.31 lukem err(1, "Unable to allocate memory for string copy");
1230 1.31 lukem return (s);
1231 1.33 lukem }
1232 1.33 lukem
1233 1.33 lukem sig_t
1234 1.33 lukem xsignal(sig, func)
1235 1.33 lukem int sig;
1236 1.33 lukem void (*func) __P((int));
1237 1.33 lukem {
1238 1.33 lukem struct sigaction act, oact;
1239 1.33 lukem
1240 1.33 lukem act.sa_handler = func;
1241 1.33 lukem sigemptyset(&act.sa_mask);
1242 1.33 lukem act.sa_flags = SA_RESTART;
1243 1.33 lukem if (sigaction(sig, &act, &oact) < 0)
1244 1.33 lukem return (SIG_ERR);
1245 1.33 lukem return (oact.sa_handler);
1246 1.27 thorpej }
1247