416 lines
9.9 KiB
C++
416 lines
9.9 KiB
C++
/* passwd.cc: getpwnam () and friends
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Copyright 1996, 1997, 1998, 2001, 2002 Red Hat, Inc.
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This file is part of Cygwin.
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This software is a copyrighted work licensed under the terms of the
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Cygwin license. Please consult the file "CYGWIN_LICENSE" for
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details. */
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#include "winsup.h"
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#include <stdlib.h>
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#include <pwd.h>
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#include <stdio.h>
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#include <errno.h>
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#include "cygerrno.h"
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#include "security.h"
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#include "fhandler.h"
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#include "path.h"
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#include "dtable.h"
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#include "pinfo.h"
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#include "cygheap.h"
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#include <sys/termios.h>
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#include "pwdgrp.h"
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/* Read /etc/passwd only once for better performance. This is done
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on the first call that needs information from it. */
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static struct passwd *passwd_buf; /* passwd contents in memory */
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static int curr_lines;
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static int max_lines;
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static pwdgrp_check passwd_state;
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/* Position in the passwd cache */
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#ifdef _MT_SAFE
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#define pw_pos _reent_winsup ()->_pw_pos
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#else
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static int pw_pos = 0;
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#endif
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/* Remove a : teminated string from the buffer, and increment the pointer */
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static char *
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grab_string (char **p)
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{
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char *src = *p;
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char *res = src;
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while (*src && *src != ':')
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src++;
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if (*src == ':')
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{
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*src = 0;
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src++;
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}
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*p = src;
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return res;
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}
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/* same, for ints */
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static unsigned int
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grab_int (char **p)
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{
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char *src = *p;
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unsigned int val = strtoul (src, p, 10);
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*p = (*p == src || **p != ':') ? almost_null : *p + 1;
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return val;
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}
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/* Parse /etc/passwd line into passwd structure. */
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static int
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parse_pwd (struct passwd &res, char *buf)
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{
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/* Allocate enough room for the passwd struct and all the strings
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in it in one go */
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res.pw_name = grab_string (&buf);
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res.pw_passwd = grab_string (&buf);
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res.pw_uid = grab_int (&buf);
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res.pw_gid = grab_int (&buf);
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if (!*buf)
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return 0;
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res.pw_comment = 0;
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res.pw_gecos = grab_string (&buf);
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res.pw_dir = grab_string (&buf);
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res.pw_shell = grab_string (&buf);
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return 1;
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}
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/* Add one line from /etc/passwd into the password cache */
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static void
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add_pwd_line (char *line)
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{
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if (curr_lines >= max_lines)
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{
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max_lines += 10;
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passwd_buf = (struct passwd *) realloc (passwd_buf, max_lines * sizeof (struct passwd));
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}
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if (parse_pwd (passwd_buf[curr_lines], line))
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curr_lines++;
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}
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class passwd_lock
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{
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bool armed;
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static NO_COPY pthread_mutex_t mutex;
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public:
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passwd_lock (bool doit)
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{
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if (doit)
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pthread_mutex_lock (&mutex);
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armed = doit;
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}
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~passwd_lock ()
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{
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if (armed)
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pthread_mutex_unlock (&mutex);
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}
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};
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pthread_mutex_t NO_COPY passwd_lock::mutex = (pthread_mutex_t) PTHREAD_MUTEX_INITIALIZER;
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/* Read in /etc/passwd and save contents in the password cache.
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This sets passwd_state to loaded or emulated so functions in this file can
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tell that /etc/passwd has been read in or will be emulated. */
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static void
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read_etc_passwd ()
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{
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static pwdgrp_read pr;
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/* A mutex is ok for speed here - pthreads will use critical sections not
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* mutexes for non-shared mutexes in the future. Also, this function will
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* at most be called once from each thread, after that the passwd_state
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* test will succeed */
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passwd_lock here (cygwin_finished_initializing);
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/* if we got blocked by the mutex, then etc_passwd may have been processed */
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if (passwd_state.isinitializing ())
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{
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curr_lines = 0;
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if (pr.open ("/etc/passwd"))
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{
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char *line;
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while ((line = pr.gets ()) != NULL)
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add_pwd_line (line);
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passwd_state.set_last_modified (pr.get_fhandle (), pr.get_fname ());
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pr.close ();
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debug_printf ("Read /etc/passwd, %d lines", curr_lines);
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}
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passwd_state = loaded;
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static char linebuf[1024];
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char strbuf[128] = "";
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BOOL searchentry = TRUE;
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__uid32_t default_uid = DEFAULT_UID;
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struct passwd *pw;
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if (wincap.has_security ())
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{
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cygsid tu = cygheap->user.sid ();
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tu.string (strbuf);
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if (myself->uid == ILLEGAL_UID
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&& (searchentry = !internal_getpwsid (tu)))
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default_uid = DEFAULT_UID_NT;
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}
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else if (myself->uid == ILLEGAL_UID)
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searchentry = !internal_getpwuid (DEFAULT_UID);
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if (searchentry &&
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(!(pw = internal_getpwnam (cygheap->user.name ())) ||
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(myself->uid != ILLEGAL_UID &&
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myself->uid != (__uid32_t) pw->pw_uid &&
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!internal_getpwuid (myself->uid))))
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{
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snprintf (linebuf, sizeof (linebuf), "%s:*:%lu:%lu:,%s:%s:/bin/sh",
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cygheap->user.name (),
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myself->uid == ILLEGAL_UID ? default_uid : myself->uid,
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myself->gid,
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strbuf, getenv ("HOME") ?: "/");
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debug_printf ("Completing /etc/passwd: %s", linebuf);
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add_pwd_line (linebuf);
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}
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}
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return;
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}
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struct passwd *
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internal_getpwsid (cygsid &sid)
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{
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struct passwd *pw;
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char *ptr1, *ptr2, *endptr;
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char sid_string[128] = {0,','};
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if (passwd_state.isuninitialized ())
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read_etc_passwd ();
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if (sid.string (sid_string + 2))
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{
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endptr = strchr (sid_string + 2, 0) - 1;
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for (int i = 0; i < curr_lines; i++)
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if ((pw = passwd_buf + i)->pw_dir > pw->pw_gecos + 8)
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for (ptr1 = endptr, ptr2 = pw->pw_dir - 2;
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*ptr1 == *ptr2; ptr2--)
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if (!*--ptr1)
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return pw;
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}
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return NULL;
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}
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struct passwd *
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internal_getpwuid (__uid32_t uid, BOOL check)
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{
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if (passwd_state.isuninitialized ()
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|| (check && passwd_state.isinitializing ()))
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read_etc_passwd ();
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for (int i = 0; i < curr_lines; i++)
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if (uid == (__uid32_t) passwd_buf[i].pw_uid)
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return passwd_buf + i;
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return NULL;
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}
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struct passwd *
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internal_getpwnam (const char *name, BOOL check)
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{
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if (passwd_state.isuninitialized ()
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|| (check && passwd_state.isinitializing ()))
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read_etc_passwd ();
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for (int i = 0; i < curr_lines; i++)
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/* on Windows NT user names are case-insensitive */
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if (strcasematch (name, passwd_buf[i].pw_name))
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return passwd_buf + i;
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return NULL;
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}
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extern "C" struct passwd *
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getpwuid32 (__uid32_t uid)
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{
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struct passwd *temppw = internal_getpwuid (uid, TRUE);
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pthread_testcancel ();
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return temppw;
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}
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extern "C" struct passwd *
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getpwuid (__uid16_t uid)
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{
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return getpwuid32 (uid16touid32 (uid));
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}
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extern "C" int
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getpwuid_r32 (__uid32_t uid, struct passwd *pwd, char *buffer, size_t bufsize, struct passwd **result)
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{
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*result = NULL;
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if (!pwd || !buffer)
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return ERANGE;
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struct passwd *temppw = internal_getpwuid (uid, TRUE);
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pthread_testcancel ();
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if (!temppw)
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return 0;
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/* check needed buffer size. */
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size_t needsize = strlen (temppw->pw_name) + strlen (temppw->pw_dir) +
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strlen (temppw->pw_shell) + strlen (temppw->pw_gecos) +
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strlen (temppw->pw_passwd) + 5;
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if (needsize > bufsize)
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return ERANGE;
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/* make a copy of temppw */
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*result = pwd;
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pwd->pw_uid = temppw->pw_uid;
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pwd->pw_gid = temppw->pw_gid;
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pwd->pw_name = buffer;
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pwd->pw_dir = pwd->pw_name + strlen (temppw->pw_name) + 1;
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pwd->pw_shell = pwd->pw_dir + strlen (temppw->pw_dir) + 1;
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pwd->pw_gecos = pwd->pw_shell + strlen (temppw->pw_shell) + 1;
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pwd->pw_passwd = pwd->pw_gecos + strlen (temppw->pw_gecos) + 1;
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strcpy (pwd->pw_name, temppw->pw_name);
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strcpy (pwd->pw_dir, temppw->pw_dir);
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strcpy (pwd->pw_shell, temppw->pw_shell);
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strcpy (pwd->pw_gecos, temppw->pw_gecos);
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strcpy (pwd->pw_passwd, temppw->pw_passwd);
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return 0;
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}
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extern "C" int
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getpwuid_r (__uid16_t uid, struct passwd *pwd, char *buffer, size_t bufsize, struct passwd **result)
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{
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return getpwuid_r32 (uid16touid32 (uid), pwd, buffer, bufsize, result);
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}
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extern "C" struct passwd *
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getpwnam (const char *name)
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{
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struct passwd *temppw = internal_getpwnam (name, TRUE);
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pthread_testcancel ();
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return temppw;
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}
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/* the max size buffer we can expect to
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* use is returned via sysconf with _SC_GETPW_R_SIZE_MAX.
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* This may need updating! - Rob Collins April 2001.
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*/
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extern "C" int
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getpwnam_r (const char *nam, struct passwd *pwd, char *buffer, size_t bufsize, struct passwd **result)
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{
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*result = NULL;
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if (!pwd || !buffer || !nam)
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return ERANGE;
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struct passwd *temppw = internal_getpwnam (nam, TRUE);
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pthread_testcancel ();
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if (!temppw)
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return 0;
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/* check needed buffer size. */
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size_t needsize = strlen (temppw->pw_name) + strlen (temppw->pw_dir) +
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strlen (temppw->pw_shell) + strlen (temppw->pw_gecos) +
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strlen (temppw->pw_passwd) + 5;
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if (needsize > bufsize)
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return ERANGE;
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/* make a copy of temppw */
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*result = pwd;
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pwd->pw_uid = temppw->pw_uid;
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pwd->pw_gid = temppw->pw_gid;
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pwd->pw_name = buffer;
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pwd->pw_dir = pwd->pw_name + strlen (temppw->pw_name) + 1;
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pwd->pw_shell = pwd->pw_dir + strlen (temppw->pw_dir) + 1;
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pwd->pw_gecos = pwd->pw_shell + strlen (temppw->pw_shell) + 1;
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pwd->pw_passwd = pwd->pw_gecos + strlen (temppw->pw_gecos) + 1;
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strcpy (pwd->pw_name, temppw->pw_name);
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strcpy (pwd->pw_dir, temppw->pw_dir);
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strcpy (pwd->pw_shell, temppw->pw_shell);
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strcpy (pwd->pw_gecos, temppw->pw_gecos);
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strcpy (pwd->pw_passwd, temppw->pw_passwd);
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return 0;
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}
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extern "C" struct passwd *
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getpwent (void)
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{
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if (passwd_state.isinitializing ())
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read_etc_passwd ();
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if (pw_pos < curr_lines)
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return passwd_buf + pw_pos++;
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return NULL;
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}
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extern "C" struct passwd *
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getpwduid (__uid16_t)
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{
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return NULL;
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}
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extern "C" void
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setpwent (void)
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{
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pw_pos = 0;
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}
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extern "C" void
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endpwent (void)
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{
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pw_pos = 0;
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}
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extern "C" int
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setpassent ()
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{
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return 0;
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}
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extern "C" char *
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getpass (const char * prompt)
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{
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#ifdef _MT_SAFE
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char *pass=_reent_winsup ()->_pass;
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#else
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static char pass[_PASSWORD_LEN];
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#endif
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struct termios ti, newti;
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if (passwd_state.isinitializing ())
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read_etc_passwd ();
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cygheap_fdget fhstdin (0);
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if (fhstdin < 0)
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pass[0] = '\0';
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else
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{
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fhstdin->tcgetattr (&ti);
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newti = ti;
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newti.c_lflag &= ~ECHO;
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fhstdin->tcsetattr (TCSANOW, &newti);
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fputs (prompt, stderr);
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fgets (pass, _PASSWORD_LEN, stdin);
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fprintf (stderr, "\n");
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for (int i=0; pass[i]; i++)
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if (pass[i] == '\r' || pass[i] == '\n')
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pass[i] = '\0';
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fhstdin->tcsetattr (TCSANOW, &ti);
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}
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return pass;
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}
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