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https://github.com/sheumann/hush.git
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4774179cb9
init: more robust signal handling
249 lines
5.4 KiB
C
249 lines
5.4 KiB
C
/* vi: set sw=4 ts=4: */
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/*
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* helper routines
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*
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* Copyright (C) 2008 by Vladimir Dronnikov <dronnikov@gmail.com>
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*
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* Licensed under GPLv2, see file LICENSE in this tarball for details.
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*/
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#include "libbb.h"
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#include "mail.h"
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static void kill_helper(void)
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{
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if (G.helper_pid > 0) {
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kill(G.helper_pid, SIGTERM);
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G.helper_pid = 0;
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}
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}
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// generic signal handler
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static void signal_handler(int signo)
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{
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#define err signo
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if (SIGALRM == signo) {
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kill_helper();
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bb_error_msg_and_die("timed out");
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}
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// SIGCHLD. reap zombies
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if (safe_waitpid(G.helper_pid, &err, WNOHANG) > 0) {
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if (WIFSIGNALED(err))
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bb_error_msg_and_die("helper killed by signal %u", WTERMSIG(err));
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if (WIFEXITED(err)) {
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G.helper_pid = 0;
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if (WEXITSTATUS(err))
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bb_error_msg_and_die("helper exited (%u)", WEXITSTATUS(err));
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}
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}
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#undef err
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}
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void FAST_FUNC launch_helper(const char **argv)
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{
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// setup vanilla unidirectional pipes interchange
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int i;
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int pipes[4];
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xpipe(pipes);
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xpipe(pipes + 2);
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// NB: handler must be installed before vfork
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bb_signals(0
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+ (1 << SIGCHLD)
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+ (1 << SIGALRM)
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, signal_handler);
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G.helper_pid = vfork();
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if (G.helper_pid < 0)
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bb_perror_msg_and_die("vfork");
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i = (!G.helper_pid) * 2; // for parent:0, for child:2
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close(pipes[i + 1]); // 1 or 3 - closing one write end
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close(pipes[2 - i]); // 2 or 0 - closing one read end
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xmove_fd(pipes[i], STDIN_FILENO); // 0 or 2 - using other read end
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xmove_fd(pipes[3 - i], STDOUT_FILENO); // 3 or 1 - other write end
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if (!G.helper_pid) {
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// child: try to execute connection helper
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// NB: SIGCHLD & SIGALRM revert to SIG_DFL on exec
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BB_EXECVP(*argv, (char **)argv);
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_exit(127);
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}
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// parent
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// check whether child is alive
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//redundant:signal_handler(SIGCHLD);
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// child seems OK -> parent goes on
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atexit(kill_helper);
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}
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const FAST_FUNC char *command(const char *fmt, const char *param)
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{
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const char *msg = fmt;
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if (timeout)
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alarm(timeout);
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if (msg) {
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msg = xasprintf(fmt, param);
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printf("%s\r\n", msg);
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}
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fflush(stdout);
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return msg;
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}
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// NB: parse_url can modify url[] (despite const), but only if '@' is there
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/*
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static char FAST_FUNC *parse_url(char *url, char **user, char **pass)
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{
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// parse [user[:pass]@]host
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// return host
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char *s = strchr(url, '@');
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*user = *pass = NULL;
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if (s) {
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*s++ = '\0';
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*user = url;
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url = s;
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s = strchr(*user, ':');
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if (s) {
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*s++ = '\0';
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*pass = s;
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}
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}
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return url;
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}
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*/
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void FAST_FUNC encode_base64(char *fname, const char *text, const char *eol)
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{
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enum {
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SRC_BUF_SIZE = 45, /* This *MUST* be a multiple of 3 */
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DST_BUF_SIZE = 4 * ((SRC_BUF_SIZE + 2) / 3),
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};
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#define src_buf text
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FILE *fp = fp;
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ssize_t len = len;
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char dst_buf[DST_BUF_SIZE + 1];
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if (fname) {
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fp = (NOT_LONE_DASH(fname)) ? xfopen_for_read(fname) : (FILE *)text;
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src_buf = bb_common_bufsiz1;
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// N.B. strlen(NULL) segfaults!
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} else if (text) {
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// though we do not call uuencode(NULL, NULL) explicitly
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// still we do not want to break things suddenly
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len = strlen(text);
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} else
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return;
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while (1) {
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size_t size;
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if (fname) {
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size = fread((char *)src_buf, 1, SRC_BUF_SIZE, fp);
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if ((ssize_t)size < 0)
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bb_perror_msg_and_die(bb_msg_read_error);
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} else {
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size = len;
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if (len > SRC_BUF_SIZE)
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size = SRC_BUF_SIZE;
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}
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if (!size)
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break;
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// encode the buffer we just read in
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bb_uuencode(dst_buf, src_buf, size, bb_uuenc_tbl_base64);
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if (fname) {
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printf("%s\n", eol);
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} else {
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src_buf += size;
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len -= size;
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}
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fwrite(dst_buf, 1, 4 * ((size + 2) / 3), stdout);
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}
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if (fname && NOT_LONE_DASH(fname))
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fclose(fp);
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#undef src_buf
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}
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void FAST_FUNC decode_base64(FILE *src_stream, FILE *dst_stream)
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{
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int term_count = 1;
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while (1) {
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char translated[4];
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int count = 0;
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while (count < 4) {
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char *table_ptr;
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int ch;
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/* Get next _valid_ character.
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* global vector bb_uuenc_tbl_base64[] contains this string:
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* "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/=\n"
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*/
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do {
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ch = fgetc(src_stream);
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if (ch == EOF) {
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bb_error_msg_and_die(bb_msg_read_error);
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}
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// - means end of MIME section
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if ('-' == ch) {
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// push it back
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ungetc(ch, src_stream);
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return;
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}
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table_ptr = strchr(bb_uuenc_tbl_base64, ch);
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} while (table_ptr == NULL);
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/* Convert encoded character to decimal */
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ch = table_ptr - bb_uuenc_tbl_base64;
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if (*table_ptr == '=') {
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if (term_count == 0) {
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translated[count] = '\0';
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break;
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}
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term_count++;
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} else if (*table_ptr == '\n') {
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/* Check for terminating line */
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if (term_count == 5) {
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return;
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}
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term_count = 1;
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continue;
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} else {
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translated[count] = ch;
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count++;
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term_count = 0;
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}
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}
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/* Merge 6 bit chars to 8 bit */
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if (count > 1) {
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fputc(translated[0] << 2 | translated[1] >> 4, dst_stream);
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}
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if (count > 2) {
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fputc(translated[1] << 4 | translated[2] >> 2, dst_stream);
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}
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if (count > 3) {
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fputc(translated[2] << 6 | translated[3], dst_stream);
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}
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}
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}
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/*
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* get username and password from a file descriptor
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*/
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void FAST_FUNC get_cred_or_die(int fd)
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{
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if (isatty(fd)) {
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G.user = xstrdup(bb_ask(fd, /* timeout: */ 0, "User: "));
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G.pass = xstrdup(bb_ask(fd, /* timeout: */ 0, "Password: "));
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} else {
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G.user = xmalloc_reads(fd, /* pfx: */ NULL, /* maxsize: */ NULL);
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G.pass = xmalloc_reads(fd, /* pfx: */ NULL, /* maxsize: */ NULL);
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}
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if (!G.user || !*G.user || !G.pass)
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bb_error_msg_and_die("no username or password");
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}
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