files.c 93.3 KB
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/* $Id$ */
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/**************************************************************************
 *   files.c                                                              *
 *                                                                        *
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 *   Copyright (C) 1999, 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007,  *
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 *   2008, 2009, 2010, 2011, 2013, 2014 Free Software Foundation, Inc.    *
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 *   This program is free software; you can redistribute it and/or modify *
 *   it under the terms of the GNU General Public License as published by *
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 *   the Free Software Foundation; either version 3, or (at your option)  *
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 *   any later version.                                                   *
 *                                                                        *
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 *   This program is distributed in the hope that it will be useful, but  *
 *   WITHOUT ANY WARRANTY; without even the implied warranty of           *
 *   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU    *
 *   General Public License for more details.                             *
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 *                                                                        *
 *   You should have received a copy of the GNU General Public License    *
 *   along with this program; if not, write to the Free Software          *
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 *   Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA            *
 *   02110-1301, USA.                                                     *
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 *                                                                        *
 **************************************************************************/

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#include "proto.h"
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#include <stdio.h>
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#include <string.h>
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#include <unistd.h>
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#include <utime.h>
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#include <fcntl.h>
#include <errno.h>
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#include <ctype.h>
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#include <pwd.h>
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#include <libgen.h>
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/* Add an entry to the openfile openfilestruct.  This should only be
 * called from open_buffer(). */
void make_new_buffer(void)
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{
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    /* If there are no entries in openfile, make the first one and
     * move to it. */
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    if (openfile == NULL) {
	openfile = make_new_opennode();
	splice_opennode(openfile, openfile, openfile);
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    /* Otherwise, make a new entry for openfile, splice it in after
     * the current entry, and move to it. */
    } else {
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	splice_opennode(openfile, make_new_opennode(), openfile->next);
	openfile = openfile->next;
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	/* More than one file open, show Close in help lines. */
	exitfunc->desc = close_tag;
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    }
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    /* Start initializing the new buffer. */
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    openfile->filename = mallocstrcpy(NULL, "");
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    initialize_buffer_text();
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    openfile->current_x = 0;
    openfile->placewewant = 0;
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    openfile->current_y = 0;
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    openfile->modified = FALSE;
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#ifndef NANO_TINY
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    openfile->mark_set = FALSE;
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    openfile->mark_begin = NULL;
    openfile->mark_begin_x = 0;

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    openfile->fmt = NIX_FILE;
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    openfile->undotop = NULL;
    openfile->current_undo = NULL;
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    openfile->last_action = OTHER;
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    openfile->current_stat = NULL;
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    openfile->lock_filename = NULL;
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#endif
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#ifndef DISABLE_COLOR
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    openfile->syntax = NULL;
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    openfile->colorstrings = NULL;
#endif
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}
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/* Initialize the text of the current entry of the openfile
 * openfilestruct. */
void initialize_buffer_text(void)
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{
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    assert(openfile != NULL);
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    openfile->fileage = make_new_node(NULL);
    openfile->fileage->data = mallocstrcpy(NULL, "");
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    openfile->filebot = openfile->fileage;
    openfile->edittop = openfile->fileage;
    openfile->current = openfile->fileage;

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#ifndef DISABLE_COLOR
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    openfile->fileage->multidata = NULL;
#endif

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    openfile->totsize = 0;
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}

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/* Mark the current file as modified if it isn't already, and then
 * update the titlebar to display the file's new status. */
void set_modified(void)
{
    if (openfile->modified)
	return;

    openfile->modified = TRUE;
    titlebar(NULL);

#ifndef NANO_TINY
    if (!ISSET(LOCKING) || openfile->filename[0] == '\0')
	return;

    if (openfile->lock_filename == NULL) {
	/* TRANSLATORS: Try to keep this at most 76 characters. */
	statusbar(_("Warning: Modifying a file which is not locked,"
			" check directory permission?"));
    } else {
	char *fullname = get_full_path(openfile->filename);
	write_lockfile(openfile->lock_filename, fullname, TRUE);
	free(fullname);
    }
#endif
}

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#ifndef NANO_TINY
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/* Actually write the lockfile.  This function will ALWAYS annihilate
 * any previous version of the file.  We'll borrow INSECURE_BACKUP here
 * to decide about lockfile paranoia here as well...
 *
 * Args:
 *     lockfilename: file name for lock
 *     origfilename: name of the file the lock is for
 *     modified: whether to set the modified bit in the file
 *
 * Returns: 1 on success, 0 on failure (but continue loading), -1 on
 * failure and abort. */
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int write_lockfile(const char *lockfilename, const char *origfilename, bool modified)
{
    int cflags, fd;
    FILE *filestream;
    pid_t mypid;
    uid_t myuid;
    struct passwd *mypwuid;
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    struct stat fileinfo;
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    char *lockdata = charalloc(1024);
    char myhostname[32];
    ssize_t lockdatalen = 1024;
    ssize_t wroteamt;

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    /* Run things which might fail first before we try and blow away the
     * old state. */
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    myuid = geteuid();
    if ((mypwuid = getpwuid(myuid)) == NULL) {
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	statusbar(_("Couldn't determine my identity for lock file (getpwuid() failed)"));
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	goto free_and_fail;
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    }
    mypid = getpid();

    if (gethostname(myhostname, 31) < 0) {
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	if (errno == ENAMETOOLONG)
	    myhostname[31] = '\0';
	else {
	    statusbar(_("Couldn't determine hostname for lock file: %s"), strerror(errno));
	    goto free_and_fail;
	}
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    }

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    /* Check if the lock exists before we try to delete it...*/
    if (stat(lockfilename, &fileinfo) != -1)
	if (delete_lockfile(lockfilename) < 0)
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	    goto free_and_fail;
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    if (ISSET(INSECURE_BACKUP))
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	cflags = O_WRONLY | O_CREAT | O_APPEND;
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    else
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	cflags = O_WRONLY | O_CREAT | O_EXCL | O_APPEND;
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    fd = open(lockfilename, cflags,
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		S_IRUSR | S_IWUSR | S_IRGRP | S_IWGRP | S_IROTH | S_IWOTH);
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    /* Maybe we just don't have write access.  Print an error message
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     * and continue. */
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    if (fd < 0) {
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	statusbar(_("Error writing lock file %s: %s"), lockfilename,
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		    strerror(errno));
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	free(lockdata);
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	return 0;
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    }
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    /* Now we've got a safe file stream.  If the previous open() call
     * failed, this will return NULL. */
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    filestream = fdopen(fd, "wb");

    if (fd < 0 || filestream == NULL) {
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	statusbar(_("Error writing lock file %s: %s"), lockfilename,
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		    strerror(errno));
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	goto free_and_fail;
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    }

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    /* Okay, so at the moment we're following this state for how to
     * store the lock data:
     *
     * byte 0        - 0x62
     * byte 1        - 0x30
     * bytes 2-12    - program name which created the lock
     * bytes 24,25   - little endian store of creator program's PID
     *                 (b24 = 256^0 column, b25 = 256^1 column)
     * bytes 28-44   - username of who created the lock
     * bytes 68-100  - hostname of where the lock was created
     * bytes 108-876 - filename the lock is for
     * byte 1007     - 0x55 if file is modified
     *
     * Looks like VIM also stores undo state in this file, so we're
     * gonna have to figure out how to slap a 'OMG don't use recover on
     * our lockfile' message in here...
     *
     * This is likely very wrong, so this is a WIP. */
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    memset(lockdata, 0, lockdatalen);
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    lockdata[0] = 0x62;
    lockdata[1] = 0x30;
    lockdata[24] = mypid % 256;
    lockdata[25] = mypid / 256;
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    snprintf(&lockdata[2], 11, "nano %s", VERSION);
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    strncpy(&lockdata[28], mypwuid->pw_name, 16);
    strncpy(&lockdata[68], myhostname, 31);
    strncpy(&lockdata[108], origfilename, 768);
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    if (modified == TRUE)
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	lockdata[1007] = 0x55;
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    wroteamt = fwrite(lockdata, sizeof(char), lockdatalen, filestream);
    if (wroteamt < lockdatalen) {
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	statusbar(_("Error writing lock file %s: %s"),
		lockfilename, ferror(filestream));
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	goto free_and_fail;
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    }

#ifdef DEBUG
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    fprintf(stderr, "In write_lockfile(), write successful (wrote %lu bytes)\n", (unsigned long)wroteamt);
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#endif
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    if (fclose(filestream) == EOF) {
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	statusbar(_("Error writing lock file %s: %s"),
		lockfilename, strerror(errno));
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	goto free_and_fail;
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    }

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    openfile->lock_filename = (char *) lockfilename;
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    free(lockdata);
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    return 1;
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  free_and_fail:
    free(lockdata);
    return -1;
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}

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/* Less exciting, delete the lockfile.  Return -1 if unsuccessful and
 * complain on the statusbar, 1 otherwise. */
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int delete_lockfile(const char *lockfilename)
{
    if (unlink(lockfilename) < 0 && errno != ENOENT) {
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	statusbar(_("Error deleting lock file %s: %s"), lockfilename,
		  strerror(errno));
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	return -1;
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    }
    return 1;
}

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/* Deal with lockfiles.  Return -1 on refusing to override the lockfile,
 * and 1 on successfully creating it; 0 means we were not successful in
 * creating the lockfile but we should continue to load the file and
 * complain to the user. */
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int do_lockfile(const char *filename)
{
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    char *namecopy1 = (char *) mallocstrcpy(NULL, filename);
    char *namecopy2 = (char *) mallocstrcpy(NULL, filename);
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    size_t locknamesize = strlen(filename) + strlen(locking_prefix)
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		+ strlen(locking_suffix) + 3;
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    char *lockfilename = charalloc(locknamesize);
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    char *lockfiledir = NULL;
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    static char lockprog[11], lockuser[17];
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    struct stat fileinfo;
    int lockfd, lockpid;

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    snprintf(lockfilename, locknamesize, "%s/%s%s%s", dirname(namecopy1),
		locking_prefix, basename(namecopy2), locking_suffix);
    free(namecopy1);
    free(namecopy2);
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#ifdef DEBUG
    fprintf(stderr, "lock file name is %s\n", lockfilename);
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#endif
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    if (stat(lockfilename, &fileinfo) != -1) {
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	ssize_t readtot = 0;
	ssize_t readamt = 0;
	char *lockbuf = charalloc(8192);
	char *promptstr = charalloc(128);
	int ans;
	if ((lockfd = open(lockfilename, O_RDONLY)) < 0) {
	    statusbar(_("Error opening lock file %s: %s"),
			lockfilename, strerror(errno));
	    return -1;
	}
	do {
	    readamt = read(lockfd, &lockbuf[readtot], BUFSIZ);
	    readtot += readamt;
	} while (readtot < 8192 && readamt > 0);

	if (readtot < 48) {
	    statusbar(_("Error reading lock file %s: Not enough data read"),
			lockfilename);
	    return -1;
	}
	strncpy(lockprog, &lockbuf[2], 10);
	lockpid = (unsigned char)lockbuf[25] * 256 + (unsigned char)lockbuf[24];
	strncpy(lockuser, &lockbuf[28], 16);
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#ifdef DEBUG
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	fprintf(stderr, "lockpid = %d\n", lockpid);
	fprintf(stderr, "program name which created this lock file should be %s\n", lockprog);
	fprintf(stderr, "user which created this lock file should be %s\n", lockuser);
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#endif
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	/* TRANSLATORS: The second %s is the name of the user, the third that of the editor. */
	sprintf(promptstr, _("File %s is being edited (by %s with %s, PID %d); continue?"),
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			filename, lockuser, lockprog, lockpid);
	ans = do_yesno_prompt(FALSE, promptstr);
	if (ans < 1) {
	    blank_statusbar();
	    return -1;
	}
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    } else {
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	lockfiledir = mallocstrcpy(NULL, lockfilename);
	lockfiledir = dirname(lockfiledir);
	if (stat(lockfiledir, &fileinfo) == -1) {
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	    statusbar(_("Error writing lock file: Directory \'%s\' doesn't exist"),
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		lockfiledir);
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	    free(lockfiledir);
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	    return 0;
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	}
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	free(lockfiledir);
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    }

    return write_lockfile(lockfilename, filename, FALSE);
}
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#endif /* !NANO_TINY */
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/* If it's not "", filename is a file to open.  We make a new buffer, if
 * necessary, and then open and read the file, if applicable. */
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bool open_buffer(const char *filename, bool undoable)
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{
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    bool quiet = FALSE;
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    bool new_buffer = (openfile == NULL
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#ifndef DISABLE_MULTIBUFFER
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	 || ISSET(MULTIBUFFER)
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#endif
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	);
	/* Whether we load into this buffer or a new one. */
    FILE *f;
    int rc;
	/* rc == -2 means that we have a new file.  -1 means that the
	 * open() failed.  0 means that the open() succeeded. */
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    assert(filename != NULL);

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#ifndef DISABLE_OPERATINGDIR
    if (check_operating_dir(filename, FALSE)) {
	statusbar(_("Can't insert file from outside of %s"),
		operating_dir);
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	return FALSE;
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    }
#endif
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    /* When the specified filename is not empty, and the thing exists,
     * verify that it is a normal file. */
    if (strcmp(filename, "") != 0) {
	struct stat fileinfo;

	if (stat(filename, &fileinfo) == 0 && !S_ISREG(fileinfo.st_mode)) {
	    if (S_ISDIR(fileinfo.st_mode))
		statusbar(_("\"%s\" is a directory"), filename);
	    else
		statusbar(_("\"%s\" is not a normal file"), filename);
	    beep();
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	    return FALSE;
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	}
    }

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    /* If we're going to load into a new buffer, first create the new
     * buffer and lock the corresponding file. */
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    if (new_buffer) {
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	make_new_buffer();
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#ifndef NANO_TINY
	if (ISSET(LOCKING) && filename[0] != '\0') {
	    int lockstatus = do_lockfile(filename);
	    if (lockstatus < 0) {
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#ifndef DISABLE_MULTIBUFFER
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		if (openfile->next) {
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		    close_buffer(TRUE);
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		    return FALSE;
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		}
#endif
	    } else if (lockstatus == 0) {
		quiet = TRUE;
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	    }
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	}
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#endif
    }

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    /* If the filename isn't blank, and we are not in NOREAD_MODE,
     * open the file.  Otherwise, treat it as a new file. */
    rc = (filename[0] != '\0' && !ISSET(NOREAD_MODE)) ?
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		open_file(filename, new_buffer, quiet, &f) : -2;
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    /* If we have a file, and we're loading into a new buffer, update
     * the filename. */
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    if (rc != -1 && new_buffer)
	openfile->filename = mallocstrcpy(openfile->filename, filename);
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    /* If we have a non-new file, read it in.  Then, if the buffer has
     * no stat, update the stat, if applicable. */
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    if (rc > 0) {
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	read_file(f, rc, filename, undoable, new_buffer);
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#ifndef NANO_TINY
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	if (openfile->current_stat == NULL) {
	    openfile->current_stat =
		(struct stat *)nmalloc(sizeof(struct stat));
	    stat(filename, openfile->current_stat);
	}
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#endif
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    }

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    /* If we have a file, and we're loading into a new buffer, move back
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     * to the beginning of the first line of the buffer. */
    if (rc != -1 && new_buffer) {
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	openfile->current = openfile->fileage;
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	openfile->current_x = 0;
	openfile->placewewant = 0;
    }
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#ifndef DISABLE_COLOR
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    /* If we're loading into a new buffer, update the colors to account
     * for it, if applicable. */
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    if (new_buffer)
	color_update();
#endif
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    return TRUE;
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}
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#ifndef DISABLE_SPELLER
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/* Blow away the text of the current buffer, and then open and read
 * the specified file into its place. */
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void replace_buffer(const char *filename)
{
    FILE *f;
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    int descriptor;
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    assert(filename != NULL && filename[0] != '\0');
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    /* Open the file quietly. */
    descriptor = open_file(filename, TRUE, FALSE, &f);
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    /* Reinitialize the text of the current buffer. */
    free_filestruct(openfile->fileage);
    initialize_buffer_text();

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    /* If opening the file succeeded, read it in. */
    if (descriptor > 0)
	read_file(f, descriptor, filename, FALSE, TRUE);
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    /* Put current at a place that is certain to exist. */
    openfile->current = openfile->fileage;
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}
#endif /* !DISABLE_SPELLER */

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/* Update the screen to account for the current buffer. */
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void display_buffer(void)
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{
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    /* Update the titlebar, since the filename may have changed. */
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    titlebar(NULL);
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#ifndef DISABLE_COLOR
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    /* Make sure we're using the buffer's associated colors. */
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    color_init();
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    /* If there are multiline coloring regexes, and there is no
     * multiline cache data yet, precalculate it now. */
    if (openfile->syntax && openfile->syntax->nmultis > 0 &&
		openfile->fileage->multidata == NULL)
	precalc_multicolorinfo();
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#endif

    /* Update the edit window. */
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    edit_refresh();
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}

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#ifndef DISABLE_MULTIBUFFER
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/* Switch to a neighbouring file buffer; to the next if to_next is TRUE;
 * otherwise, to the previous one. */
void switch_to_prevnext_buffer(bool to_next, bool quiet)
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{
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    assert(openfile != NULL);
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    /* If only one file buffer is open, say so and get out. */
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    if (openfile == openfile->next) {
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	if (!quiet)
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	    statusbar(_("No more open file buffers"));
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	return;
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    }
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    /* Switch to the next or previous file buffer. */
    openfile = to_next ? openfile->next : openfile->prev;
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#ifdef DEBUG
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    fprintf(stderr, "filename is %s\n", openfile->filename);
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#endif

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    /* Update the screen to account for the current buffer. */
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    display_buffer();
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    /* Indicate the switch on the statusbar. */
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    if (!quiet)
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	statusbar(_("Switched to %s"),
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		((openfile->filename[0] == '\0') ?
		_("New Buffer") : openfile->filename));
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#ifdef DEBUG
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    dump_filestruct(openfile->current);
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#endif
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    display_main_list();
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}

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/* Switch to the previous entry in the openfile filebuffer. */
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void switch_to_prev_buffer_void(void)
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{
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    switch_to_prevnext_buffer(FALSE, FALSE);
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}
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/* Switch to the next entry in the openfile filebuffer. */
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void switch_to_next_buffer_void(void)
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{
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    switch_to_prevnext_buffer(TRUE, FALSE);
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}
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/* Delete an entry from the openfile filebuffer, and switch to the one
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 * after it.  Return TRUE on success, or FALSE if there are no more open
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 * file buffers.
 * quiet - should we print messages switching bufers
 */
bool close_buffer(bool quiet)
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{
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    assert(openfile != NULL);
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    /* If only one file buffer is open, get out. */
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    if (openfile == openfile->next)
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	return FALSE;
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#ifndef DISABLE_HISTORIES
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    update_poshistory(openfile->filename, openfile->current->lineno, xplustabs() + 1);
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#endif
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    /* Switch to the next file buffer. */
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    switch_to_prevnext_buffer(TRUE, quiet);
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    /* Close the file buffer we had open before. */
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    unlink_opennode(openfile->prev);
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    /* If only one buffer is open now, show Exit in the help lines. */
    if (openfile == openfile->next)
	exitfunc->desc = exit_tag;
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    return TRUE;
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}
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#endif /* !DISABLE_MULTIBUFFER */
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/* A bit of a copy and paste from open_file(), is_file_writable() just
 * checks whether the file is appendable as a quick permissions check,
 * and we tend to err on the side of permissiveness (reporting TRUE when
 * it might be wrong) to not fluster users editing on odd filesystems by
 * printing incorrect warnings. */
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int is_file_writable(const char *filename)
{
    struct stat fileinfo, fileinfo2;
    int fd;
    FILE *f;
    char *full_filename;
    bool ans = TRUE;

    if (ISSET(VIEW_MODE))
	return TRUE;

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    assert(filename != NULL);
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    /* Get the specified file's full path. */
    full_filename = get_full_path(filename);

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    /* Okay, if we can't stat the absolute path due to some component's
     * permissions, just try the relative one. */
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    if (full_filename == NULL ||
		(stat(full_filename, &fileinfo) == -1 && stat(filename, &fileinfo2) != -1))
	full_filename = mallocstrcpy(NULL, filename);
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    if ((fd = open(full_filename, O_WRONLY | O_CREAT | O_APPEND, S_IRUSR |
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		S_IWUSR | S_IRGRP | S_IWGRP | S_IROTH | S_IWOTH)) == -1 ||
		(f = fdopen(fd, "a")) == NULL)
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	ans = FALSE;
    else
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	fclose(f);
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    close(fd);

    free(full_filename);
    return ans;
}

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/* Make a new line of text from the given buf, which is of length buf_len.
 * Then attach this line after prevnode. */
filestruct *read_line(char *buf, size_t buf_len, filestruct *prevnode)
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{
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    filestruct *fileptr = (filestruct *)nmalloc(sizeof(filestruct));
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    /* Convert nulls to newlines.  buf_len is the string's real length. */
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    unsunder(buf, buf_len);
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    assert(openfile->fileage != NULL && strlen(buf) == buf_len);
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    fileptr->data = mallocstrcpy(NULL, buf);
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    /* If it's a DOS file ("\r\n"), and file conversion isn't disabled,
     * strip the '\r' part from fileptr->data. */
    if (!ISSET(NO_CONVERT) && buf_len > 0 && buf[buf_len - 1] == '\r')
	fileptr->data[buf_len - 1] = '\0';
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#endif
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#ifndef DISABLE_COLOR
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    fileptr->multidata = NULL;
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#endif

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    fileptr->prev = prevnode;

    if (prevnode == NULL) {
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	/* Special case: we're inserting into the first line. */
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	fileptr->next = openfile->fileage;
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	openfile->fileage = fileptr;
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	fileptr->lineno = 1;
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	/* Make sure that our edit window stays on the first line. */
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	openfile->edittop = fileptr;
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    } else {
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	prevnode->next = fileptr;
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	fileptr->next = NULL;
	fileptr->lineno = prevnode->lineno + 1;
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    }

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    return fileptr;
}
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/* Read an open file into the current buffer.  f should be set to the
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 * open file, and filename should be set to the name of the file.
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 * undoable means do we want to create undo records to try and undo
 * this.  Will also attempt to check file writability if fd > 0 and
 * checkwritable == TRUE. */
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void read_file(FILE *f, int fd, const char *filename, bool undoable, bool checkwritable)
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{
    size_t num_lines = 0;
	/* The number of lines in the file. */
    size_t len = 0;
	/* The length of the current line of the file. */
    size_t i = 0;
	/* The position in the current line of the file. */
    size_t bufx = MAX_BUF_SIZE;
	/* The size of each chunk of the file that we read. */
    char input = '\0';
	/* The current input character. */
    char *buf;
	/* The buffer where we store chunks of the file. */
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    filestruct *fileptr = openfile->current->prev;
	/* The line after which to start inserting. */
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    int input_int;
	/* The current value we read from the file, whether an input
	 * character or EOF. */
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    bool writable = TRUE;
	/* Is the file writable (if we care) */
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#ifndef NANO_TINY
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    int format = 0;
	/* 0 = *nix, 1 = DOS, 2 = Mac, 3 = both DOS and Mac. */
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#endif
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    assert(openfile->fileage != NULL && openfile->current != NULL);

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    buf = charalloc(bufx);
    buf[0] = '\0';
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#ifndef NANO_TINY
    if (undoable)
	add_undo(INSERT);
#endif

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    /* Read the entire file into the filestruct. */
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    while ((input_int = getc(f)) != EOF) {
	input = (char)input_int;

	/* If it's a *nix file ("\n") or a DOS file ("\r\n"), and file
	 * conversion isn't disabled, handle it! */
	if (input == '\n') {
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	    /* If it's a DOS file or a DOS/Mac file ('\r' before '\n' on
	     * the first line if we think it's a *nix file, or on any
	     * line otherwise), and file conversion isn't disabled,
	     * handle it! */
	    if (!ISSET(NO_CONVERT) && (num_lines == 0 || format != 0) &&
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			i > 0 && buf[i - 1] == '\r') {
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		if (format == 0 || format == 2)
		    format++;
	    }
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#endif
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	    /* Read in the line properly. */
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	    fileptr = read_line(buf, len, fileptr);
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	    /* Reset the line length in preparation for the next line. */
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	    len = 0;
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	    num_lines++;
	    buf[0] = '\0';
	    i = 0;
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	/* If it's a Mac file ('\r' without '\n' on the first line if we
	 * think it's a *nix file, or on any line otherwise), and file
	 * conversion isn't disabled, handle it! */
	} else if (!ISSET(NO_CONVERT) && (num_lines == 0 ||
		format != 0) && i > 0 && buf[i - 1] == '\r') {
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	    /* If we currently think the file is a *nix file, set format
	     * to Mac.  If we currently think the file is a DOS file,
	     * set format to both DOS and Mac. */
	    if (format == 0 || format == 1)
		format += 2;
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	    /* Read in the line properly. */
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	    fileptr = read_line(buf, len, fileptr);
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	    /* Reset the line length in preparation for the next line.
	     * Since we've already read in the next character, reset it
	     * to 1 instead of 0. */
	    len = 1;
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	    num_lines++;
	    buf[0] = input;
	    buf[1] = '\0';
	    i = 1;
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#endif
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	} else {
	    /* Calculate the total length of the line.  It might have
	     * nulls in it, so we can't just use strlen() here. */
	    len++;
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	    /* Now we allocate a bigger buffer MAX_BUF_SIZE characters
	     * at a time.  If we allocate a lot of space for one line,
	     * we may indeed have to use a buffer this big later on, so
	     * we don't decrease it at all.  We do free it at the end,
	     * though. */
	    if (i >= bufx - 1) {
		bufx += MAX_BUF_SIZE;
		buf = charealloc(buf, bufx);
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	    }
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	    buf[i] = input;
	    buf[i + 1] = '\0';
	    i++;
	}
    }

    /* Perhaps this could use some better handling. */
    if (ferror(f))
	nperror(filename);
    fclose(f);
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    if (fd > 0 && checkwritable) {
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	close(fd);
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	writable = is_file_writable(filename);
    }
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    /* If file conversion isn't disabled and the last character in this
     * file is '\r', read it in properly as a Mac format line. */
    if (len == 0 && !ISSET(NO_CONVERT) && input == '\r') {
	len = 1;

	buf[0] = input;
	buf[1] = '\0';
    }
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#endif
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    /* Did we not get a newline and still have stuff to do? */
    if (len > 0) {
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	/* If file conversion isn't disabled and the last character in
	 * this file is '\r', set format to Mac if we currently think
	 * the file is a *nix file, or to both DOS and Mac if we
	 * currently think the file is a DOS file. */
	if (!ISSET(NO_CONVERT) && buf[len - 1] == '\r' &&
		(format == 0 || format == 1))
	    format += 2;
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#endif

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	/* Read in the last line properly. */
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	fileptr = read_line(buf, len, fileptr);
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	num_lines++;
    }
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    free(buf);
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    /* Attach the file we got to the filestruct.  If we got a file of
     * zero bytes, don't do anything. */
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    if (num_lines > 0) {
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	/* If the file we got doesn't end in a newline, tack its last
	 * line onto the beginning of the line at current. */
	if (len > 0) {
	    size_t current_len = strlen(openfile->current->data);

	    /* Adjust the current x-coordinate to compensate for the
	     * change in the current line. */
	    if (num_lines == 1)
		openfile->current_x += len;
	    else
		openfile->current_x = len;

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	    /* Tack the text at fileptr onto the beginning of the text
	     * at current. */
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	    openfile->current->data = charealloc(openfile->current->data,
						len + current_len + 1);
	    charmove(openfile->current->data + len, openfile->current->data,
			current_len + 1);
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	    strncpy(openfile->current->data, fileptr->data, len);

	    /* Don't destroy fileage, edittop, or filebot! */
	    if (fileptr == openfile->fileage)
		openfile->fileage = openfile->current;
	    if (fileptr == openfile->edittop)
		openfile->edittop = openfile->current;
	    if (fileptr == openfile->filebot)
		openfile->filebot = openfile->current;

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	    /* Move fileptr back one line and blow away the old fileptr,
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	     * since its text has been saved. */
	    fileptr = fileptr->prev;
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	    if (fileptr != NULL)
		free(fileptr->next);
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	}

	/* Attach the line at current after the line at fileptr. */
	if (fileptr != NULL) {
	    fileptr->next = openfile->current;
	    openfile->current->prev = fileptr;
	}

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	/* Renumber, starting with the last line of the file we inserted. */
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	renumber(openfile->current);
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    }
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    openfile->totsize += get_totsize(openfile->fileage, openfile->filebot);
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    /* If the NO_NEWLINES flag isn't set, and text has been added to
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     * the magicline (i.e. a file that doesn't end in a newline has been
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     * inserted at the end of the current buffer), add a new magicline,
     * and move the current line down to it. */
    if (!ISSET(NO_NEWLINES) && openfile->filebot->data[0] != '\0') {
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	new_magicline();
	openfile->current = openfile->filebot;
	openfile->current_x = 0;
    }

    /* Set the current place we want to the end of the last line of the
     * file we inserted. */
    openfile->placewewant = xplustabs();

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#ifndef NANO_TINY
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    if (undoable)
	update_undo(INSERT);

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    if (format == 3) {
	if (writable)
	    statusbar(
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		P_("Read %lu line (Converted from DOS and Mac format)",
		"Read %lu lines (Converted from DOS and Mac format)",
		(unsigned long)num_lines), (unsigned long)num_lines);
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	else
	    statusbar(
		P_("Read %lu line (Converted from DOS and Mac format - Warning: No write permission)",
		"Read %lu lines (Converted from DOS and Mac format - Warning: No write permission)",
		(unsigned long)num_lines), (unsigned long)num_lines);
    } else if (format == 2) {
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	openfile->fmt = MAC_FILE;
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	if (writable)
	    statusbar(P_("Read %lu line (Converted from Mac format)",
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		"Read %lu lines (Converted from Mac format)",
		(unsigned long)num_lines), (unsigned long)num_lines);
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	else
	    statusbar(P_("Read %lu line (Converted from Mac format - Warning: No write permission)",
		"Read %lu lines (Converted from Mac format - Warning: No write permission)",
		(unsigned long)num_lines), (unsigned long)num_lines);
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    } else if (format == 1) {
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	openfile->fmt = DOS_FILE;
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	if (writable)
	    statusbar(P_("Read %lu line (Converted from DOS format)",
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		"Read %lu lines (Converted from DOS format)",
		(unsigned long)num_lines), (unsigned long)num_lines);
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	else
	    statusbar(P_("Read %lu line (Converted from DOS format - Warning: No write permission)",
		"Read %lu lines (Converted from DOS format - Warning: No write permission)",
		(unsigned long)num_lines), (unsigned long)num_lines);
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    } else
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#endif
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	if (writable)
	    statusbar(P_("Read %lu line", "Read %lu lines",
		(unsigned long)num_lines), (unsigned long)num_lines);
	else
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	    statusbar(P_("Read %lu line (Warning: No write permission)",
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		"Read %lu lines (Warning: No write permission)",
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		(unsigned long)num_lines), (unsigned long)num_lines);
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923
#ifndef NANO_TINY
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    if (ISSET(MAKE_IT_UNIX))
	openfile->fmt = NIX_FILE;
926
#endif
927
}
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/* Open the file (and decide if it exists).  If newfie is TRUE, display
 * "New File" if the file is missing.  Otherwise, say "[filename] not
 * found".
 *
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 * Return -2 if we say "New File", -1 if the file isn't opened, and the
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 * fd opened otherwise.  The file might still have an error while reading
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 * with a 0 return value.  *f is set to the opened file. */
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int open_file(const char *filename, bool newfie, bool quiet, FILE **f)
937
{
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    struct stat fileinfo, fileinfo2;
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    int fd;
940
    char *full_filename;
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942
    assert(filename != NULL && f != NULL);
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    /* Get the specified file's full path. */
    full_filename = get_full_path(filename);

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    /* Okay, if we can't stat the path due to a component's
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     * permissions, just try the relative one. */
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    if (full_filename == NULL || (stat(full_filename, &fileinfo) == -1 &&
		stat(filename, &fileinfo2) != -1))
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	full_filename = mallocstrcpy(full_filename, filename);
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    if (stat(full_filename, &fileinfo) == -1) {
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	/* All cases below return. */
	free(full_filename);

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	/* Well, maybe we can open the file even if the OS says it's
	 * not there. */
959
	if ((fd = open(filename, O_RDONLY)) != -1) {
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	    if (!quiet)
		statusbar(_("Reading File"));
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	    return fd;
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	}

965
	if (newfie) {
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	    if (!quiet)
		statusbar(_("New File"));
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	    return -2;
	}
	statusbar(_("\"%s\" not found"), filename);
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	beep();
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	return -1;
    } else if (S_ISDIR(fileinfo.st_mode) || S_ISCHR(fileinfo.st_mode) ||
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		S_ISBLK(fileinfo.st_mode)) {
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	free(full_filename);

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	/* Don't open directories, character files, or block files.
	 * Sorry, /dev/sndstat! */
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	statusbar(S_ISDIR(fileinfo.st_mode) ?
		_("\"%s\" is a directory") :
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		_("\"%s\" is a device file"), filename);
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	beep();
983
	return -1;
984
    } else if ((fd = open(full_filename, O_RDONLY)) == -1) {
985
	free(full_filename);
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	statusbar(_("Error reading %s: %s"), filename, strerror(errno));
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	beep();
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	return -1;
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    } else {
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	/* The file is A-OK.  Open it. */
991
	*f = fdopen(fd, "rb");
992

993
	if (*f == NULL) {
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	    statusbar(_("Error reading %s: %s"), filename, strerror(errno));
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	    beep();
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	    close(fd);
	} else
	    statusbar(_("Reading File"));
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    }
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    free(full_filename);

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    return fd;
}

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/* This function will return the name of the first available extension
 * of a filename (starting with [name][suffix], then [name][suffix].1,
 * etc.).  Memory is allocated for the return value.  If no writable
 * extension exists, we return "". */
char *get_next_filename(const char *name, const char *suffix)
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{
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    unsigned long i = 0;
    char *buf;
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    size_t wholenamelen;
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1016
    assert(name != NULL && suffix != NULL);
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1018
    wholenamelen = strlen(name) + strlen(suffix);
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    /* Reserve space for: the name plus the suffix plus a dot plus
     * possibly five digits plus a null byte. */
    buf = charalloc(wholenamelen + 7);
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    sprintf(buf, "%s%s", name, suffix);
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    while (TRUE) {
	struct stat fs;
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	if (stat(buf, &fs) == -1)
	    return buf;
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	/* Limit the number of backup files to a hundred thousand. */
	if (++i == 100000)
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	    break;
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	sprintf(buf + wholenamelen, ".%lu", i);
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    }
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    /* We get here only if there is no possible save file.  Blank out
     * the filename to indicate this. */
    null_at(&buf, 0);
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1042
    return buf;
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}

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/* Insert a file into a new buffer if the MULTIBUFFER flag is set, or
 * into the current buffer if it isn't.  If execute is TRUE, insert the
 * output of an executed command instead of a file. */
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void do_insertfile(
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#ifndef NANO_TINY
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	bool execute
#else
	void
#endif
	)
{
    int i;
    const char *msg;
    char *ans = mallocstrcpy(NULL, "");
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	/* The last answer the user typed at the statusbar prompt. */
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    filestruct *edittop_save = openfile->edittop;
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    ssize_t was_current_lineno = openfile->current->lineno;
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    size_t was_current_x = openfile->current_x;
    ssize_t was_current_y = openfile->current_y;
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    bool edittop_inside = FALSE;
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#ifndef NANO_TINY
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    bool right_side_up = FALSE, single_line = FALSE;
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#endif
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    while (TRUE) {
1070
#ifndef NANO_TINY
1071
	if (execute) {
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	    msg =
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#ifndef DISABLE_MULTIBUFFER
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		ISSET(MULTIBUFFER) ?
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		_("Command to execute in new buffer [from %s] ") :
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#endif
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		_("Command to execute [from %s] ");
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	} else
#endif /* NANO_TINY */
	{
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	    msg =
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#ifndef DISABLE_MULTIBUFFER
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		ISSET(MULTIBUFFER) ?
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		_("File to insert into new buffer [from %s] ") :
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#endif
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		_("File to insert [from %s] ");
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	}
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	i = do_prompt(TRUE,
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#ifndef DISABLE_TABCOMP
		TRUE,
#endif
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#ifndef NANO_TINY
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		execute ? MEXTCMD :
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#endif
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		MINSERTFILE, ans,
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#ifndef DISABLE_HISTORIES
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		NULL,
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#endif
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		edit_refresh, msg,
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#ifndef DISABLE_OPERATINGDIR
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		operating_dir != NULL && strcmp(operating_dir,
		".") != 0 ? operating_dir :
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#endif
		"./");
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	/* If we're in multibuffer mode and the filename or command is
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	 * blank, open a new buffer instead of canceling.  If the
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	 * filename or command begins with a newline (i.e. an encoded
	 * null), treat it as though it's blank. */
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	if (i == -1 || ((i == -2 || *answer == '\n')
1112
#ifndef DISABLE_MULTIBUFFER
1113
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		&& !ISSET(MULTIBUFFER)
#endif
		)) {
	    statusbar(_("Cancelled"));
	    break;
	} else {
1119
	    size_t pww_save = openfile->placewewant;
1120
#if !defined(NANO_TINY) || !defined(DISABLE_BROWSER)
1121
	    functionptrtype func = func_from_key(&i);
1122
#endif
1123
	    ans = mallocstrcpy(ans, answer);
1124

1125
#ifndef NANO_TINY
1126
#ifndef DISABLE_MULTIBUFFER
1127
	    if (func == new_buffer_void) {
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1130
		/* Don't allow toggling if we're in view mode. */
		if (!ISSET(VIEW_MODE))
		    TOGGLE(MULTIBUFFER);
1131
1132
		else
		    beep();
1133
		continue;
1134
	    }
1135
#endif
1136
	    if (func == flip_execute_void) {
1137
1138
1139
		execute = !execute;
		continue;
	    }
1140
#endif /* !NANO_TINY */
1141

1142
#ifndef DISABLE_BROWSER
1143
	    if (func == to_files_void) {
1144
		char *tmp = do_browse_from(answer);
1145

1146
1147
		if (tmp == NULL)
		    continue;
1148

1149
		/* We have a file now.  Indicate this. */
1150
1151
		free(answer);
		answer = tmp;
1152

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		i = 0;
	    }
#endif
1156

1157
	    /* If we don't have a file yet, go back to the statusbar prompt. */
1158
	    if (i != 0
1159
#ifndef DISABLE_MULTIBUFFER
1160
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		&& (i != -2 || !ISSET(MULTIBUFFER))
#endif
		)
		continue;
1164

1165
#ifndef NANO_TINY
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	    /* Keep track of whether the mark begins inside the
	     * partition and will need adjustment. */
	    if (openfile->mark_set) {
		filestruct *top, *bot;
		size_t top_x, bot_x;
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1172
		mark_order((const filestruct **)&top, &top_x,
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			(const filestruct **)&bot, &bot_x,
			&right_side_up);

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		single_line = (top == bot);
	    }
1178
1179
#endif

1180
#ifndef DISABLE_MULTIBUFFER
1181
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	    if (!ISSET(MULTIBUFFER)) {
#endif
		/* If we're not inserting into a new buffer, partition
		 * the filestruct so that it contains no text and hence
1185
		 * looks like a new buffer, and keep track of whether
1186
		 * the top of the edit window is inside the partition. */
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		filepart = partition_filestruct(openfile->current,
			openfile->current_x, openfile->current,
			openfile->current_x);
1190
		edittop_inside = (openfile->edittop == openfile->fileage);
1191
#ifndef DISABLE_MULTIBUFFER
1192
1193
	    }
#endif
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1194

1195
	    /* Convert newlines to nulls in the given filename. */
1196
	    sunder(answer);
1197
	    align(&answer);
1198

1199
#ifndef NANO_TINY
1200
	    if (execute) {
1201
#ifndef DISABLE_MULTIBUFFER
1202
		if (ISSET(MULTIBUFFER))
1203
		    /* Open a blank buffer. */
1204
		    open_buffer("", FALSE);
1205
1206
1207
#endif

		/* Save the command's output in the current buffer. */
1208
		execute_command(answer);
1209

1210
#ifndef DISABLE_MULTIBUFFER
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		if (ISSET(MULTIBUFFER)) {
		    /* Move back to the beginning of the first line of
		     * the buffer. */
		    openfile->current = openfile->fileage;
		    openfile->current_x = 0;
		    openfile->placewewant = 0;
		}
1218
#endif
1219
	    } else
1220
#endif /* !NANO_TINY */
1221
	    {
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		/* Make sure the path to the file specified in answer is
		 * tilde-expanded. */
1224
		answer = mallocstrassn(answer, real_dir_from_tilde(answer));
1225

1226
		/* Save the file specified in answer in the current buffer. */
1227
		open_buffer(answer, TRUE);
1228
	    }
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#if !defined(DISABLE_MULTIBUFFER) && !defined(DISABLE_HISTORIES)
1231
	    if (ISSET(MULTIBUFFER)) {
1232
		/* Update the screen to account for the current buffer. */
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		display_buffer();
1234
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		ssize_t savedposline, savedposcol;
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		if (ISSET(POS_HISTORY) &&
#ifndef NANO_TINY
			!execute &&
#endif
			check_poshistory(answer, &savedposline, &savedposcol))
1241
		    do_gotolinecolumn(savedposline, savedposcol, FALSE, FALSE);
1242
	    } else
1243
#endif /* !DISABLE_MULTIBUFFER && !DISABLE_HISTORIES */
1244
	    {
1245
		filestruct *top_save = openfile->fileage;
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		/* If we were at the top of the edit window before, set
		 * the saved value of edittop to the new top of the edit
		 * window. */
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1250
		if (edittop_inside)
1251
		    edittop_save = openfile->fileage;
1252
1253

		/* Update the current x-coordinate to account for the
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		 * number of characters inserted on the current line.
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		 * If the mark was positioned after the cursor and on the
		 * same line, adjust the mark's coordinates to compensate
		 * for the change in this line. */
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		openfile->current_x = strlen(openfile->filebot->data);
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		if (openfile->fileage == openfile->filebot) {
#ifndef NANO_TINY
		    if (openfile->mark_set) {
			openfile->mark_begin = openfile->current;
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			if (!right_side_up)
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			    openfile->mark_begin_x += openfile->current_x;
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1266
		    }
#endif
1267
		    openfile->current_x += was_current_x;
1268
		}
1269
#ifndef NANO_TINY
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		else if (openfile->mark_set) {
		    if (!right_side_up) {
			if (single_line) {
			    openfile->mark_begin = openfile->current;
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			    openfile->mark_begin_x -= was_current_x;
1275
			} else
1276
			    openfile->mark_begin_x -= openfile->current_x;
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		    }
		}
1279
#endif
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		/* Update the current y-coordinate to account for the
		 * number of lines inserted. */
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		openfile->current_y += was_current_y;
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		/* Unpartition the filestruct so that it contains all
		 * the text again.  Note that we've replaced the
		 * non-text originally in the partition with the text in
		 * the inserted file/executed command output. */
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		unpartition_filestruct(&filepart);
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		/* Renumber starting with the beginning line of the old
		 * partition. */
		renumber(top_save);
1294

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		/* Restore the old edittop. */
1296
		openfile->edittop = edittop_save;
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		/* Restore the old place we want. */
		openfile->placewewant = pww_save;

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		/* Mark the file as modified if it changed. */
		if (openfile->current->lineno != was_current_lineno ||
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			openfile->current_x != was_current_x)
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		    set_modified();
1305

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		/* Update the screen. */
		edit_refresh();
1308
	    }
1309

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	    break;
	}
    }
    free(ans);
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}

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/* Insert a file into a new buffer or the current buffer, depending on
 * whether the MULTIBUFFER flag is set.  If we're in view mode, only
 * allow inserting a file into a new buffer. */
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void do_insertfile_void(void)
1320
{
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    if (ISSET(RESTRICTED)) {
1322
	show_restricted_warning();
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	return;
    }

1326
#ifndef DISABLE_MULTIBUFFER
1327
    if (ISSET(VIEW_MODE) && !ISSET(MULTIBUFFER))
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	statusbar(_("Key invalid in non-multibuffer mode"));
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    else
#endif
	do_insertfile(
1332
#ifndef NANO_TINY
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		FALSE
#endif
		);
1336
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    display_main_list();
}

1340
/* When passed "[relative path]" or "[relative path][filename]" in
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 * origpath, return "[full path]" or "[full path][filename]" on success,
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 * or NULL on error.  Do this if the file doesn't exist but the relative
 * path does, since the file could exist in memory but not yet on disk).
 * Don't do this if the relative path doesn't exist, since we won't be
 * able to go there. */
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char *get_full_path(const char *origpath)
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{
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    struct stat fileinfo;
    char *d_here, *d_there, *d_there_file = NULL;
    const char *last_slash;
    bool path_only;
1352

1353
    if (origpath == NULL)
1354
	return NULL;
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    /* Get the current directory.  If it doesn't exist, back up and try
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     * again until we get a directory that does, and use that as the
     * current directory. */
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    d_here = charalloc(PATH_MAX + 1);
    d_here = getcwd(d_here, PATH_MAX + 1);
1361

1362
    while (d_here == NULL) {
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	if (chdir("..") == -1)
	    break;

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	d_here = getcwd(d_here, PATH_MAX + 1);
    }

    /* If we succeeded, canonicalize it in d_here. */
    if (d_here != NULL) {
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	align(&d_here);

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	/* If the current directory isn't "/", tack a slash onto the end
	 * of it. */
1375
	if (strcmp(d_here, "/") != 0) {
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1376
	    d_here = charealloc(d_here, strlen(d_here) + 2);
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	    strcat(d_here, "/");
	}
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    /* Otherwise, set d_here to "". */
    } else
	d_here = mallocstrcpy(NULL, "");
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1383
    d_there = real_dir_from_tilde(origpath);
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    /* If stat()ing d_there fails, assume that d_there refers to a new
     * file that hasn't been saved to disk yet.  Set path_only to TRUE
     * if d_there refers to a directory, and FALSE otherwise. */
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    path_only = (stat(d_there, &fileinfo) != -1 && S_ISDIR(fileinfo.st_mode));
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    /* If path_only is TRUE, make sure d_there ends in a slash. */
    if (path_only) {
	size_t d_there_len = strlen(d_there);
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	if (d_there[d_there_len - 1] != '/') {
	    d_there = charealloc(d_there, d_there_len + 2);
	    strcat(d_there, "/");
1397
	}
1398
    }
1399

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1401
    /* Search for the last slash in d_there. */
    last_slash = strrchr(d_there, '/');
1402

1403
1404
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    /* If we didn't find one, then make sure the answer is in the format
     * "d_here/d_there". */
    if (last_slash == NULL) {
	assert(!path_only);
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1408
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	d_there_file = d_there;
	d_there = d_here;
    } else {
	/* If path_only is FALSE, then save the filename portion of the
	 * answer (everything after the last slash) in d_there_file. */
	if (!path_only)
	    d_there_file = mallocstrcpy(NULL, last_slash + 1);

1416
	/* Remove the filename portion of the answer from d_there. */
1417
1418
	null_at(&d_there, last_slash - d_there + 1);

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1419
	/* Go to the path specified in d_there. */
1420
1421
1422
	if (chdir(d_there) == -1) {
	    free(d_there);
	    d_there = NULL;
1423
	} else {
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	    free(d_there);

	    /* Get the full path. */
	    d_there = charalloc(PATH_MAX + 1);
	    d_there = getcwd(d_there, PATH_MAX + 1);

	    /* If we succeeded, canonicalize it in d_there. */
	    if (d_there != NULL) {
		align(&d_there);

		/* If the current directory isn't "/", tack a slash onto
		 * the end of it. */
		if (strcmp(d_there, "/") != 0) {
		    d_there = charealloc(d_there, strlen(d_there) + 2);
		    strcat(d_there, "/");
		}
	    } else
		/* Otherwise, set path_only to TRUE, so that we clean up
		 * correctly, free all allocated memory, and return
		 * NULL. */
		path_only = TRUE;

	    /* Finally, go back to the path specified in d_here,
	     * where we were before.  We don't check for a chdir()
1448
	     * error, since we can do nothing if we get one. */
1449
	    IGNORE_CALL_RESULT(chdir(d_here));
1450

1451
1452
	    /* Free d_here, since we're done using it. */
	    free(d_here);
1453
	}
1454
    }
1455

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1457
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    /* At this point, if path_only is FALSE and d_there isn't NULL,
     * d_there contains the path portion of the answer and d_there_file
     * contains the filename portion of the answer.  If this is the
     * case, tack the latter onto the end of the former.  d_there will
     * then contain the complete answer. */
    if (!path_only && d_there != NULL) {
	d_there = charealloc(d_there, strlen(d_there) +
1463
		strlen(d_there_file) + 1);
1464
1465
	strcat(d_there, d_there_file);
    }
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1467
    /* Free d_there_file, since we're done using it. */
1468
    free(d_there_file);
1469

1470
    return d_there;
1471
}
1472

1473
/* Return the full version of path, as returned by get_full_path().  On
1474
 * error, or if path doesn't reference a directory, or if the directory
1475
 * isn't writable, return NULL. */
1476
char *check_writable_directory(const char *path)
1477
{
1478
1479
    char *full_path = get_full_path(path);

1480
    /* If get_full_path() fails, return NULL. */
1481
    if (full_path == NULL)
1482
	return NULL;
1483

1484
    /* If we can't write to path or path isn't a directory, return NULL. */
1485
    if (access(full_path, W_OK) != 0 ||
1486
		full_path[strlen(full_path) - 1] != '/') {
1487
	free(full_path);
1488
	return NULL;
1489
    }
1490

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1491
    /* Otherwise, return the full path. */
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1494
    return full_path;
}

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/* This function calls mkstemp(($TMPDIR|P_tmpdir|/tmp/)"nano.XXXXXX").
 * On success, it returns the malloc()ed filename and corresponding FILE
1497
 * stream, opened in "r+b" mode.  On error, it returns NULL for the
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1499
 * filename and leaves the FILE stream unchanged. */
char *safe_tempfile(FILE **f)
1500
{
1501
    char *full_tempdir = NULL;
1502
1503
1504
    const char *tmpdir_env;
    int fd;
    mode_t original_umask = 0;
1505

1506
1507
    assert(f != NULL);

1508
1509
1510
    /* If $TMPDIR is set, set tempdir to it, run it through
     * get_full_path(), and save the result in full_tempdir.  Otherwise,
     * leave full_tempdir set to NULL. */
1511
    tmpdir_env = getenv("TMPDIR");
1512
    if (tmpdir_env != NULL)
1513
	full_tempdir = check_writable_directory(tmpdir_env);
1514

1515
1516
    /* If $TMPDIR is unset, empty, or not a writable directory, and
     * full_tempdir is NULL, try P_tmpdir instead. */
1517
    if (full_tempdir == NULL)
1518
	full_tempdir = check_writable_directory(P_tmpdir);
1519

1520
1521
    /* if P_tmpdir is NULL, use /tmp. */
    if (full_tempdir == NULL)
1522
	full_tempdir = mallocstrcpy(NULL, "/tmp/");
1523

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1524
    full_tempdir = charealloc(full_tempdir, strlen(full_tempdir) + 12);
1525
    strcat(full_tempdir, "nano.XXXXXX");
1526

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    original_umask = umask(0);
    umask(S_IRWXG | S_IRWXO);

    fd = mkstemp(full_tempdir);

    if (fd != -1)
	*f = fdopen(fd, "r+b");
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1535
1536
    else {
	free(full_tempdir);
	full_tempdir = NULL;
1537
    }
1538

1539
1540
    umask(original_umask);

1541
    return full_tempdir;
1542
}
1543
1544

#ifndef DISABLE_OPERATINGDIR
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/* Initialize full_operating_dir based on operating_dir. */
void init_operating_dir(void)
{
    assert(full_operating_dir == NULL);

1550
    if (operating_dir == NULL)
1551
	return;
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1552

1553
1554
1555
    full_operating_dir = get_full_path(operating_dir);

    /* If get_full_path() failed or the operating directory is
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1556
     * inaccessible, unset operating_dir. */
1557
    if (full_operating_dir == NULL || chdir(full_operating_dir) == -1) {
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	free(full_operating_dir);
	full_operating_dir = NULL;
	free(operating_dir);
	operating_dir = NULL;
    }
}

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/* Check to see if we're inside the operating directory.  Return FALSE
 * if we are, or TRUE otherwise.  If allow_tabcomp is TRUE, allow
 * incomplete names that would be matches for the operating directory,
 * so that tab completion will work. */
bool check_operating_dir(const char *currpath, bool allow_tabcomp)
1570
{
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    /* full_operating_dir is global for memory cleanup.  It should have
     * already been initialized by init_operating_dir().  Also, a
     * relative operating directory path will only be handled properly
     * if this is done. */
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1576
    char *fullpath;
1577
    bool retval = FALSE;
1578
    const char *whereami1, *whereami2 = NULL;
1579

1580
    /* If no operating directory is set, don't bother doing anything. */
1581
    if (operating_dir == NULL)
1582
	return FALSE;
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1583

1584
    assert(full_operating_dir != NULL);
1585
1586

    fullpath = get_full_path(currpath);
1587

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    /* If fullpath is NULL, it means some directory in the path doesn't
     * exist or is unreadable.  If allow_tabcomp is FALSE, then currpath
     * is what the user typed somewhere.  We don't want to report a
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     * non-existent directory as being outside the operating directory,
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     * so we return FALSE.  If allow_tabcomp is TRUE, then currpath
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     * exists, but is not executable.  So we say it isn't in the
     * operating directory. */
1595
    if (fullpath == NULL)
1596
	return allow_tabcomp;
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1600
1601

    whereami1 = strstr(fullpath, full_operating_dir);
    if (allow_tabcomp)
	whereami2 = strstr(full_operating_dir, fullpath);

1602
    /* If both searches failed, we're outside the operating directory.
1603
     * Otherwise, check the search results.  If the full operating
1604
1605
1606
     * directory path is not at the beginning of the full current path
     * (for normal usage) and vice versa (for tab completion, if we're
     * allowing it), we're outside the operating directory. */
1607
    if (whereami1 != fullpath && whereami2 != full_operating_dir)
1608
1609
	retval = TRUE;
    free(fullpath);
1610
1611

    /* Otherwise, we're still inside it. */
1612
    return retval;
1613
}
1614
1615
#endif

1616
#ifndef NANO_TINY
1617
1618
/* Although this sucks, it sucks less than having a single 'my system is
 * messed up and I'm blanket allowing insecure file writing operations'. */
1619
1620
1621
int prompt_failed_backupwrite(const char *filename)
{
    static int i;
1622
    static char *prevfile = NULL; /* What was the last file we were
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1624
				   * passed so we don't keep asking
				   * this?  Though maybe we should... */
1625
1626
    if (prevfile == NULL || strcmp(filename, prevfile)) {
	i = do_yesno_prompt(FALSE,
1627
		_("Failed to write backup file, continue saving? (Say N if unsure) "));
1628
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1630
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1632
	prevfile = mallocstrcpy(prevfile, filename);
    }
    return i;
}

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1653
void init_backup_dir(void)
{
    char *full_backup_dir;

    if (backup_dir == NULL)
	return;

    full_backup_dir = get_full_path(backup_dir);

    /* If get_full_path() failed or the backup directory is
     * inaccessible, unset backup_dir. */
    if (full_backup_dir == NULL ||
	full_backup_dir[strlen(full_backup_dir) - 1] != '/') {
	free(full_backup_dir);
	free(backup_dir);
	backup_dir = NULL;
    } else {
	free(backup_dir);
	backup_dir = full_backup_dir;
    }
}
1654
#endif /* !NANO_TINY */
1655

1656
/* Read from inn, write to out.  We assume inn is opened for reading,
1657
1658
 * and out for writing.  We return 0 on success, -1 on read error, or -2
 * on write error. */
1659
1660
int copy_file(FILE *inn, FILE *out)
{
1661
    int retval = 0;
1662
    char buf[BUFSIZ];
1663
1664
    size_t charsread;

1665
    assert(inn != NULL && out != NULL && inn != out);
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1666

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    do {
	charsread = fread(buf, sizeof(char), BUFSIZ, inn);
	if (charsread == 0 && ferror(inn)) {
	    retval = -1;
	    break;
	}
	if (fwrite(buf, sizeof(char), charsread, out) < charsread) {
	    retval = -2;
	    break;
	}
    } while (charsread > 0);
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1678

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1682
    if (fclose(inn) == EOF)
	retval = -1;
    if (fclose(out) == EOF)
	retval = -2;
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1683

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    return retval;
}

1687
1688
/* Write a file out to disk.  If f_open isn't NULL, we assume that it is
 * a stream associated with the file, and we don't try to open it
1689
 * ourselves.  If tmp is TRUE, we set the umask to disallow anyone else
1690
1691
 * from accessing the file, we don't set the filename to its name, and
 * we don't print out how many lines we wrote on the statusbar.
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1692
 *
1693
 * tmp means we are writing a temporary file in a secure fashion.  We
1694
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 * use it when spell checking or dumping the file on an error.  If
 * append is APPEND, it means we are appending instead of overwriting.
 * If append is PREPEND, it means we are prepending instead of
 * overwriting.  If nonamechange is TRUE, we don't change the current
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1699
 * filename.  nonamechange is ignored if tmp is FALSE, we're appending,
 * or we're prepending.
1700
 *
1701
1702
 * Return TRUE on success or FALSE on error. */
bool write_file(const char *name, FILE *f_open, bool tmp, append_type
1703
	append, bool nonamechange)
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1704
{
1705
    bool retval = FALSE;
1706
	/* Instead of returning in this function, you should always
1707
	 * set retval and then goto cleanup_and_exit. */
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1708
    size_t lineswritten = 0;
1709
    const filestruct *fileptr = openfile->fileage;
1710
    int fd;
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1711
	/* The file descriptor we use. */
1712
    mode_t original_umask = 0;
1713
	/* Our umask, from when nano started. */
1714
#ifndef NANO_TINY
1715
    bool realexists;
1716
	/* The result of stat().  TRUE if the file exists, FALSE
1717
	 * otherwise.  If name is a link that points nowhere, realexists
1718
	 * is FALSE. */
1719
1720
    struct stat st;
	/* The status fields filled in by stat(). */
1721
#endif
1722
    bool anyexists;
1723
1724
	/* The result of lstat().  The same as realexists, unless name
	 * is a link. */
1725
1726
1727
    struct stat lst;
	/* The status fields filled in by lstat(). */
    char *realname;
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1728
	/* name after tilde expansion. */
1729
    FILE *f = NULL;
1730
1731
	/* The actual file, realname, we are writing to. */
    char *tempname = NULL;
1732
	/* The name of the temporary file we write to on prepend. */
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1733

1734
    assert(name != NULL);
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1735

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1736
    if (*name == '\0')
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1737
	return -1;
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1738

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1741
    if (f_open != NULL)
	f = f_open;

1742
1743
    if (!tmp)
	titlebar(NULL);
1744

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1745
    realname = real_dir_from_tilde(name);
1746

1747
#ifndef DISABLE_OPERATINGDIR
1748
    /* If we're writing a temporary file, we're probably going outside
1749
     * the operating directory, so skip the operating directory test. */
1750
    if (!tmp && check_operating_dir(realname, FALSE)) {
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1752
	statusbar(_("Can't write outside of %s"), operating_dir);
	goto cleanup_and_exit;
1753
1754
1755
    }
#endif

1756
    anyexists = (lstat(realname, &lst) != -1);
1757

1758
1759
    /* If the temp file exists and isn't already open, give up. */
    if (tmp && anyexists && f_open == NULL)
1760
	goto cleanup_and_exit;
1761

1762
1763
1764
    /* If NOFOLLOW_SYMLINKS is set, it doesn't make sense to prepend or
     * append to a symlink.  Here we warn about the contradiction. */
    if (ISSET(NOFOLLOW_SYMLINKS) && anyexists && S_ISLNK(lst.st_mode)) {
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1766
	statusbar(
		_("Cannot prepend or append to a symlink with --nofollow set"));
1767
1768
1769
	goto cleanup_and_exit;
    }

1770
#ifndef NANO_TINY
1771
    /* Check whether the file (at the end of the symlink) exists. */
1772
    realexists = (stat(realname, &st) != -1);
1773

1774
1775
1776
1777
    /* If we haven't stat()d this file before (say, the user just
     * specified it interactively), stat and save the value now,
     * or else we will chase null pointers when we do modtime checks,
     * preserve file times, and so on, during backup. */
1778
1779
    if (openfile->current_stat == NULL && !tmp && realexists) {
	openfile->current_stat = (struct stat *)nmalloc(sizeof(struct stat));
1780
	stat(realname, openfile->current_stat);
1781
    }
1782

1783
    /* We backup only if the backup toggle is set, the file isn't
1784
1785
1786
1787
     * temporary, and the file already exists.  Furthermore, if we
     * aren't appending, prepending, or writing a selection, we backup
     * only if the file has not been modified by someone else since nano
     * opened it. */
1788
1789
1790
    if (ISSET(BACKUP_FILE) && !tmp && realexists && ((append != OVERWRITE ||
		openfile->mark_set) || (openfile->current_stat &&
		openfile->current_stat->st_mtime == st.st_mtime))) {
1791
	int backup_fd;
1792
	FILE *backup_file;
1793
	char *backupname;
1794
	struct utimbuf filetime;
1795
	int copy_status;
1796
	int backup_cflags;
1797

1798
	/* Save the original file's access and modification times. */
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1799
1800
	filetime.actime = openfile->current_stat->st_atime;
	filetime.modtime = openfile->current_stat->st_mtime;
1801

1802
1803
1804
	if (f_open == NULL) {
	    /* Open the original file to copy to the backup. */
	    f = fopen(realname, "rb");
1805

1806
1807
1808
	    if (f == NULL) {
		statusbar(_("Error reading %s: %s"), realname,
			strerror(errno));
1809
		beep();
1810
1811
1812
1813
		/* If we can't read from the original file, go on, since
		 * only saving the original file is better than saving
		 * nothing. */
		goto skip_backup;
1814
	    }
1815
1816
	}

1817
	/* If backup_dir is set, we set backupname to
1818
1819
1820
1821
	 * backup_dir/backupname~[.number], where backupname is the
	 * canonicalized absolute pathname of realname with every '/'
	 * replaced with a '!'.  This means that /home/foo/file is
	 * backed up in backup_dir/!home!foo!file~[.number]. */
1822
	if (backup_dir != NULL) {
1823
	    char *backuptemp = get_full_path(realname);
1824

1825
	    if (backuptemp == NULL)
1826
1827
1828
1829
1830
1831
		/* If get_full_path() failed, we don't have a
		 * canonicalized absolute pathname, so just use the
		 * filename portion of the pathname.  We use tail() so
		 * that e.g. ../backupname will be backed up in
		 * backupdir/backupname~ instead of
		 * backupdir/../backupname~. */
1832
		backuptemp = mallocstrcpy(NULL, tail(realname));
1833
	    else {
1834
1835
		size_t i = 0;

1836
1837
1838
		for (; backuptemp[i] != '\0'; i++) {
		    if (backuptemp[i] == '/')
			backuptemp[i] = '!';
1839
1840
1841
1842
		}
	    }

	    backupname = charalloc(strlen(backup_dir) +
1843
1844
1845
1846
		strlen(backuptemp) + 1);
	    sprintf(backupname, "%s%s", backup_dir, backuptemp);
	    free(backuptemp);
	    backuptemp = get_next_filename(backupname, "~");
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1847
	    if (*backuptemp == '\0') {
1848
		statusbar(_("Error writing backup file %s: %s"), backupname,
1849
1850
1851
		    _("Too many backup files?"));
		free(backuptemp);
		free(backupname);
1852
1853
1854
1855
1856
		/* If we can't write to the backup, DON'T go on, since
		 * whatever caused the backup file to fail (e.g. disk
		 * full may well cause the real file write to fail,
		 * which means we could lose both the backup and the
		 * original! */
1857
		goto cleanup_and_exit;
1858
1859
1860
1861
	    } else {
		free(backupname);
		backupname = backuptemp;
	    }
1862
1863
1864
1865
	} else {
	    backupname = charalloc(strlen(realname) + 2);
	    sprintf(backupname, "%s~", realname);
	}
1866

1867
	/* First, unlink any existing backups.  Next, open the backup
1868
1869
	 * file with O_CREAT and O_EXCL.  If it succeeds, we have a file
	 * descriptor to a new backup file. */
1870
	if (unlink(backupname) < 0 && errno != ENOENT && !ISSET(INSECURE_BACKUP)) {
1871
1872
	    if (prompt_failed_backupwrite(backupname))
		goto skip_backup;
1873
1874
	    statusbar(_("Error writing backup file %s: %s"), backupname,
			strerror(errno));
1875
1876
1877
1878
	    free(backupname);
	    goto cleanup_and_exit;
	}

1879
1880
	if (ISSET(INSECURE_BACKUP))
	    backup_cflags = O_WRONLY | O_CREAT | O_APPEND;
1881
	else
1882
1883
1884
	    backup_cflags = O_WRONLY | O_CREAT | O_EXCL | O_APPEND;

	backup_fd = open(backupname, backup_cflags,
1885
1886
		S_IRUSR | S_IWUSR | S_IRGRP | S_IWGRP | S_IROTH | S_IWOTH);
	/* Now we've got a safe file stream.  If the previous open()
1887
	 * call failed, this will return NULL. */
1888
	backup_file = fdopen(backup_fd, "wb");
1889

1890
1891
1892
1893
1894
1895
	if (backup_fd < 0 || backup_file == NULL) {
	    statusbar(_("Error writing backup file %s: %s"), backupname,
			strerror(errno));
	    free(backupname);
	    goto cleanup_and_exit;
	}
1896

1897
1898
	/* We shouldn't worry about chown()ing something if we're not
	 * root, since it's likely to fail! */
1899
	if (geteuid() == NANO_ROOT_UID && fchown(backup_fd,
1900
		openfile->current_stat->st_uid, openfile->current_stat->st_gid) == -1
1901
1902
1903
		&& !ISSET(INSECURE_BACKUP)) {
	    if (prompt_failed_backupwrite(backupname))
		goto skip_backup;
1904
1905
1906
1907
1908
1909
1910
	    statusbar(_("Error writing backup file %s: %s"), backupname,
		strerror(errno));
	    free(backupname);
	    fclose(backup_file);
	    goto cleanup_and_exit;
	}

1911
1912
1913
1914
	if (fchmod(backup_fd, openfile->current_stat->st_mode) == -1
		&& !ISSET(INSECURE_BACKUP)) {
	    if (prompt_failed_backupwrite(backupname))
		goto skip_backup;
1915
	    statusbar(_("Error writing backup file %s: %s"), backupname,
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David Lawrence Ramsey committed
1916
		strerror(errno));
1917
	    free(backupname);
1918
	    fclose(backup_file);
1919
	    /* If we can't write to the backup, DONT go on, since
1920
	     * whatever caused the backup file to fail (e.g. disk
1921
	     * full) may well cause the real file write to fail, which
1922
	     * means we could lose both the backup and the original! */
1923
	    goto cleanup_and_exit;
1924
1925
1926
	}

#ifdef DEBUG
1927
	fprintf(stderr, "Backing up %s to %s\n", realname, backupname);
1928
1929
#endif

1930
1931
	/* Copy the file. */
	copy_status = copy_file(f, backup_file);
1932

1933
1934
	if (copy_status != 0) {
	    statusbar(_("Error reading %s: %s"), realname,
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1935
			strerror(errno));
1936
1937
1938
1939
1940
1941
	    beep();
	    goto cleanup_and_exit;
	}

	/* And set its metadata. */
	if (utime(backupname, &filetime) == -1 && !ISSET(INSECURE_BACKUP)) {
1942
1943
	    if (prompt_failed_backupwrite(backupname))
		goto skip_backup;
1944
	    statusbar(_("Error writing backup file %s: %s"), backupname,
1945
			strerror(errno));
1946
1947
1948
1949
	    /* If we can't write to the backup, DON'T go on, since
	     * whatever caused the backup file to fail (e.g. disk full
	     * may well cause the real file write to fail, which means
	     * we could lose both the backup and the original! */
1950
	    goto cleanup_and_exit;
1951
	}
1952

1953
1954
	free(backupname);
    }
1955

1956
    skip_backup:
1957
#endif /* !NANO_TINY */
1958

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1959
1960
    /* If NOFOLLOW_SYMLINKS is set and the file is a link, we aren't
     * doing prepend or append.  So we delete the link first, and just
1961
1962
     * overwrite. */
    if (ISSET(NOFOLLOW_SYMLINKS) && anyexists && S_ISLNK(lst.st_mode) &&
1963
		unlink(realname) == -1) {
1964
	statusbar(_("Error writing %s: %s"), realname, strerror(errno));
1965
	goto cleanup_and_exit;
1966
    }
1967

1968
1969
    if (f_open == NULL) {
	original_umask = umask(0);
1970

1971
	/* If we create a temp file, we don't let anyone else access it.
1972
1973
	 * We create a temp file if tmp is TRUE. */
	if (tmp)
1974
	    umask(S_IRWXG | S_IRWXO);
1975
1976
	else
	    umask(original_umask);
1977
    }
1978

1979
    /* If we're prepending, copy the file to a temp file. */
1980
    if (append == PREPEND) {
1981
1982
1983
	int fd_source;
	FILE *f_source = NULL;

1984
1985
1986
1987
1988
1989
1990
1991
1992
1993
1994
	if (f == NULL) {
	    f = fopen(realname, "rb");

	    if (f == NULL) {
		statusbar(_("Error reading %s: %s"), realname,
			strerror(errno));
		beep();
		goto cleanup_and_exit;
	    }
	}

1995
	tempname = safe_tempfile(&f);
1996

1997
	if (tempname == NULL) {
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1998
	    statusbar(_("Error writing temp file: %s"),
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1999
		strerror(errno));
2000
	    goto cleanup_and_exit;
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2001
	}
2002

2003
	if (f_open == NULL) {
2004
	    fd_source = open(realname, O_RDONLY | O_CREAT, S_IRUSR | S_IWUSR);
2005

2006
2007
2008
2009
2010
	    if (fd_source != -1) {
		f_source = fdopen(fd_source, "rb");
		if (f_source == NULL) {
		    statusbar(_("Error reading %s: %s"), realname,
			strerror(errno));
2011
		    beep();
2012
2013
2014
2015
2016
2017
		    close(fd_source);
		    fclose(f);
		    unlink(tempname);
		    goto cleanup_and_exit;
		}
	    }
2018
2019
	}

2020
	if (f_source == NULL || copy_file(f_source, f) != 0) {
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2021
2022
	    statusbar(_("Error writing %s: %s"), tempname,
		strerror(errno));
2023
	    unlink(tempname);
2024
	    goto cleanup_and_exit;
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2025
2026
2027
	}
    }

2028
2029
2030
    if (f_open == NULL) {
	/* Now open the file in place.  Use O_EXCL if tmp is TRUE.  This
	 * is copied from joe, because wiggy says so *shrug*. */
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2031
2032
2033
	fd = open(realname, O_WRONLY | O_CREAT | ((append == APPEND) ?
		O_APPEND : (tmp ? O_EXCL : O_TRUNC)), S_IRUSR |
		S_IWUSR | S_IRGRP | S_IWGRP | S_IROTH | S_IWOTH);
2034

2035
2036
	/* Set the umask back to the user's original value. */
	umask(original_umask);
2037

2038
2039
2040
2041
	/* If we couldn't open the file, give up. */
	if (fd == -1) {
	    statusbar(_("Error writing %s: %s"), realname,
		strerror(errno));
2042

2043
2044
2045
2046
2047
	    /* tempname has been set only if we're prepending. */
	    if (tempname != NULL)
		unlink(tempname);
	    goto cleanup_and_exit;
	}
2048

2049
	f = fdopen(fd, (append == APPEND) ? "ab" : "wb");
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2050

2051
2052
2053
2054
2055
2056
	if (f == NULL) {
	    statusbar(_("Error writing %s: %s"), realname,
		strerror(errno));
	    close(fd);
	    goto cleanup_and_exit;
	}
2057
2058
    }

2059
    /* There might not be a magicline.  There won't be when writing out
2060
     * a selection. */
2061
    assert(openfile->fileage != NULL && openfile->filebot != NULL);
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2062

2063
    while (fileptr != NULL) {
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2064
	size_t data_len = strlen(fileptr->data), size;
2065

2066
	/* Convert newlines to nulls, just before we write to disk. */
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2067
2068
	sunder(fileptr->data);

2069
	size = fwrite(fileptr->data, sizeof(char), data_len, f);
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2070

2071
2072
	/* Convert nulls to newlines.  data_len is the string's real
	 * length. */
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2073
2074
	unsunder(fileptr->data, data_len);

2075
	if (size < data_len) {
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2076
2077
	    statusbar(_("Error writing %s: %s"), realname,
		strerror(errno));
2078
	    fclose(f);
2079
	    goto cleanup_and_exit;
2080
	}
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David Lawrence Ramsey committed
2081

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David Lawrence Ramsey committed
2082
	/* If we're on the last line of the file, don't write a newline
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2083
2084
2085
2086
2087
2088
2089
	 * character after it.  If the last line of the file is blank,
	 * this means that zero bytes are written, in which case we
	 * don't count the last line in the total lines written. */
	if (fileptr == openfile->filebot) {
	    if (fileptr->data[0] == '\0')
		lineswritten--;
	} else {
2090
#ifndef NANO_TINY
2091
	    if (openfile->fmt == DOS_FILE || openfile->fmt == MAC_FILE) {
2092
2093
		if (putc('\r', f) == EOF) {
		    statusbar(_("Error writing %s: %s"), realname,
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David Lawrence Ramsey committed
2094
			strerror(errno));
2095
2096
2097
		    fclose(f);
		    goto cleanup_and_exit;
		}
2098
	    }
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Chris Allegretta committed
2099

2100
	    if (openfile->fmt != MAC_FILE)
2101
#endif
2102
2103
		if (putc('\n', f) == EOF) {
		    statusbar(_("Error writing %s: %s"), realname,
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2104
			strerror(errno));
2105
2106
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2108
		    fclose(f);
		    goto cleanup_and_exit;
		}
	}
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2109
2110
2111
2112
2113

	fileptr = fileptr->next;
	lineswritten++;
    }

2114
    /* If we're prepending, open the temp file, and append it to f. */
2115
    if (append == PREPEND) {
2116
2117
2118
	int fd_source;
	FILE *f_source = NULL;

2119
	fd_source = open(tempname, O_RDONLY | O_CREAT, S_IRUSR | S_IWUSR);
2120

2121
2122
2123
2124
	if (fd_source != -1) {
	    f_source = fdopen(fd_source, "rb");
	    if (f_source == NULL)
		close(fd_source);
2125
	}
2126

2127
	if (f_source == NULL) {
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2128
2129
	    statusbar(_("Error reading %s: %s"), tempname,
		strerror(errno));
2130
	    beep();
2131
	    fclose(f);
2132
	    goto cleanup_and_exit;
2133
2134
	}

2135
	if (copy_file(f_source, f) == -1) {
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2136
2137
	    statusbar(_("Error writing %s: %s"), realname,
		strerror(errno));
2138
	    goto cleanup_and_exit;
2139
	}
2140
2141

	unlink(tempname);
2142
2143
2144
2145
2146
    } else if (fclose(f) != 0) {
	    statusbar(_("Error writing %s: %s"), realname,
		strerror(errno));
	    goto cleanup_and_exit;
    }
2147

2148
    if (!tmp && append == OVERWRITE) {
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2149
	if (!nonamechange) {
2150
2151
	    openfile->filename = mallocstrcpy(openfile->filename,
		realname);
2152
#ifndef DISABLE_COLOR
2153
	    /* We might have changed the filename, so update the colors
2154
2155
	     * to account for it, and then make sure we're using
	     * them. */
2156
	    color_update();
2157
	    color_init();
2158
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2160

	    /* If color syntaxes are available and turned on, we need to
	     * call edit_refresh(). */
2161
	    if (openfile->colorstrings != NULL && !ISSET(NO_COLOR_SYNTAX))
2162
		edit_refresh();
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#endif
	}
2165

2166
#ifndef NANO_TINY
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	/* Update current_stat to reference the file as it is now. */
	if (openfile->current_stat == NULL)
	    openfile->current_stat =
		(struct stat *)nmalloc(sizeof(struct stat));
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2172
	if (!openfile->mark_set)
	    stat(realname, openfile->current_stat);
2173
#endif
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2174

2175
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	statusbar(P_("Wrote %lu line", "Wrote %lu lines",
		(unsigned long)lineswritten),
2177
		(unsigned long)lineswritten);
2178
	openfile->modified = FALSE;
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2179
	titlebar(NULL);
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    }
2181

2182
    retval = TRUE;
2183
2184
2185

  cleanup_and_exit:
    free(realname);
2186
    free(tempname);
2187

2188
    return retval;
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2190
}

2191
#ifndef NANO_TINY
2192
2193
/* Write a marked selection from a file out to disk.  Return TRUE on
 * success or FALSE on error. */
2194
bool write_marked_file(const char *name, FILE *f_open, bool tmp,
2195
	append_type append)
2196
{
2197
    bool retval;
2198
2199
    bool old_modified = openfile->modified;
	/* write_file() unsets the modified flag. */
2200
    bool added_magicline = FALSE;
2201
2202
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	/* Whether we added a magicline after filebot. */
    filestruct *top, *bot;
    size_t top_x, bot_x;

2205
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    assert(openfile->mark_set);

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    /* Partition the filestruct so that it contains only the marked
     * text. */
    mark_order((const filestruct **)&top, &top_x,
2210
	(const filestruct **)&bot, &bot_x, NULL);
2211
    filepart = partition_filestruct(top, top_x, bot, bot_x);
2212

2213
2214
2215
2216
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    /* Handle the magicline if the NO_NEWLINES flag isn't set.  If the
     * line at filebot is blank, treat it as the magicline and hence the
     * end of the file.  Otherwise, add a magicline and treat it as the
     * end of the file. */
    if (!ISSET(NO_NEWLINES) &&
2218
		(added_magicline = (openfile->filebot->data[0] != '\0')))
2219
	new_magicline();
2220

2221
    retval = write_file(name, f_open, tmp, append, TRUE);
2222

2223
2224
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    /* If the NO_NEWLINES flag isn't set, and we added a magicline,
     * remove it now. */
    if (!ISSET(NO_NEWLINES) && added_magicline)
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	remove_magicline();

    /* Unpartition the filestruct so that it contains all the text
     * again. */
2230
    unpartition_filestruct(&filepart);
2231

2232
    if (old_modified)
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	set_modified();

    return retval;
}
2237

2238
#endif /* !NANO_TINY */
2239

2240
/* Write the current file to disk.  If the mark is on, write the current
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 * marked selection to disk.  If exiting is TRUE, write the entire file
 * to disk regardless of whether the mark is on, and without prompting if
 * the TEMP_FILE flag is set and the current file has a name.  Return 0
 * on error, 1 on success, and 2 when the buffer is to be discarded. */
int do_writeout(bool exiting)
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2246
{
2247
    int i;
2248
    append_type append = OVERWRITE;
2249
    char *ans;
2250
	/* The last answer the user typed at the statusbar prompt. */
2251
#ifndef DISABLE_EXTRA
2252
    static bool did_credits = FALSE;
2253
#endif
2254
    bool result = FALSE;
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2255

2256
    if (exiting && openfile->filename[0] != '\0' && ISSET(TEMP_FILE)) {
2257
	result = write_file(openfile->filename, NULL, FALSE, OVERWRITE, FALSE);
2258

2259
2260
	if (result)
	    return 1;	/* The write succeeded. */
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    }

2263
    ans = mallocstrcpy(NULL,
2264
#ifndef NANO_TINY
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2265
	(!exiting && openfile->mark_set) ? "" :
2266
#endif
2267
	openfile->filename);
2268
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2270

    while (TRUE) {
	const char *msg;
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#ifndef NANO_TINY
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	const char *formatstr, *backupstr;

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	formatstr = (openfile->fmt == DOS_FILE) ? _(" [DOS Format]") :
		    (openfile->fmt == MAC_FILE) ? _(" [Mac Format]") : "";
2276

2277
	backupstr = ISSET(BACKUP_FILE) ? _(" [Backup]") : "";
2278

2279
	/* If we're using restricted mode, don't display the "Write
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	 * Selection to File" prompt.  This function is disabled, since
	 * it allows reading from or writing to files not specified on
	 * the command line. */
2283
	if (!ISSET(RESTRICTED) && !exiting && openfile->mark_set)
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2285
2286
	    msg = (append == PREPEND) ? _("Prepend Selection to File") :
		  (append == APPEND) ? _("Append Selection to File") :
		  _("Write Selection to File");
2287
	else
2288
#endif /* !NANO_TINY */
2289
	    msg = (append == PREPEND) ? _("File Name to Prepend to") :
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2291
		  (append == APPEND) ? _("File Name to Append to") :
		  _("File Name to Write");
2292

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	/* If we're using restricted mode, and the filename isn't blank,
	 * disable tab completion. */
2295
	i = do_prompt(!ISSET(RESTRICTED) ||
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		openfile->filename[0] == '\0',
#ifndef DISABLE_TABCOMP
		TRUE,
#endif
2300
		MWRITEFILE, ans,
2301
#ifndef DISABLE_HISTORIES
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		NULL,
#endif
2304
		edit_refresh, "%s%s%s", msg,
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#ifndef NANO_TINY
		formatstr, backupstr
2307
#else
2308
		"", ""
2309
2310
2311
#endif
		);

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	/* If the filename or command begins with a newline (i.e. an
	 * encoded null), treat it as though it's blank. */
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2314
	if (i < 0 || *answer == '\n') {
2315
	    statusbar(_("Cancelled"));
2316
2317
	    break;
	} else {
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	    functionptrtype func = func_from_key(&i);

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	    /* Upon request, abandon the buffer, if user is sure. */
	    if (func == discard_buffer) {
		if (openfile->modified)
		    i = do_yesno_prompt(FALSE,
				_("Save modified buffer anyway ? "));
		else
		    i = 0;

		if (i == 0) {
		    free(ans);
		    return 2;	/* Yes, discard the buffer. */
2331
2332
		} else
		    continue;	/* Go back to the filename prompt. */
2333
2334
	    }

2335
	    ans = mallocstrcpy(ans, answer);
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2336

2337
#ifndef DISABLE_BROWSER
2338
	    if (func == to_files_void) {
2339
		char *tmp = do_browse_from(answer);
2340

2341
2342
		if (tmp == NULL)
		    continue;
2343

2344
		/* We have a file now.  Indicate this. */
2345
2346
2347
		free(answer);
		answer = tmp;
	    } else
2348
#endif /* !DISABLE_BROWSER */
2349
#ifndef NANO_TINY
2350
	    if (func == dos_format_void) {
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2352
		openfile->fmt = (openfile->fmt == DOS_FILE) ? NIX_FILE :
			DOS_FILE;
2353
		continue;
2354
	    } else if (func == mac_format_void) {
2355
2356
		openfile->fmt = (openfile->fmt == MAC_FILE) ? NIX_FILE :
			MAC_FILE;
2357
		continue;
2358
	    } else if (func == backup_file_void) {
2359
2360
2361
		TOGGLE(BACKUP_FILE);
		continue;
	    } else
2362
#endif /* !NANO_TINY */
2363
	    if (func == prepend_void) {
2364
		append = (append == PREPEND) ? OVERWRITE : PREPEND;
2365
		continue;
2366
	    } else if (func == append_void) {
2367
		append = (append == APPEND) ? OVERWRITE : APPEND;
2368
		continue;
2369
	    } else if (func == do_help_void) {
2370
		continue;
2371
	    }
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2372

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2373
#ifdef DEBUG
2374
	    fprintf(stderr, "filename is %s\n", answer);
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#endif
2376

2377
#ifndef DISABLE_EXTRA
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	    /* If the current file has been modified, we've pressed
	     * Ctrl-X at the edit window to exit, we've pressed "y" at
	     * the "Save modified buffer" prompt to save, we've entered
	     * "zzy" as the filename to save under (hence "xyzzy"), and
	     * this is the first time we've done this, show an Easter
	     * egg.  Display the credits. */
	    if (!did_credits && exiting && !ISSET(TEMP_FILE) &&
2385
			strcasecmp(answer, "zzy") == 0) {
2386
		do_credits();
2387
		did_credits = TRUE;
2388
2389
		break;
	    }
2390
#endif
2391

2392
	    if (append == OVERWRITE) {
2393
		size_t answer_len = strlen(answer);
2394
		bool name_exists, do_warning;
2395
		char *full_answer, *full_filename;
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2397
		struct stat st;

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2400
		/* Convert newlines to nulls, just before we get the
		 * full path. */
		sunder(answer);
2401

2402
2403
		full_answer = get_full_path(answer);
		full_filename = get_full_path(openfile->filename);
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		name_exists = (stat((full_answer == NULL) ? answer :
			full_answer, &st) != -1);
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2407
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		if (openfile->filename[0] == '\0')
		    do_warning = name_exists;
		else
		    do_warning = (strcmp((full_answer == NULL) ?
			answer : full_answer, (full_filename == NULL) ?
			openfile->filename : full_filename) != 0);
2412

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		/* Convert nulls to newlines.  answer_len is the
		 * string's real length. */
		unsunder(answer, answer_len);

2417
2418
		free(full_filename);
		free(full_answer);
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2419

2420
		if (do_warning) {
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2422
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		    /* If we're using restricted mode, we aren't allowed
		     * to overwrite an existing file with the current
		     * file.  We also aren't allowed to change the name
		     * of the current file if it has one, because that
		     * would allow reading from or writing to files not
		     * specified on the command line. */
		    if (ISSET(RESTRICTED))
			continue;
2429

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2430
		    if (name_exists) {
2431
2432
2433
2434
			i = do_yesno_prompt(FALSE,
				_("File exists, OVERWRITE ? "));
			if (i == 0 || i == -1)
			    continue;
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2435
		    } else
2436
#ifndef NANO_TINY
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2437
		    if (exiting || !openfile->mark_set)
2438
#endif
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2439
		    {
2440
2441
2442
2443
2444
			i = do_yesno_prompt(FALSE,
				_("Save file under DIFFERENT NAME ? "));
			if (i == 0 || i == -1)
			    continue;
		    }
2445
		}
2446
#ifndef NANO_TINY
2447
2448
2449
		/* Complain if the file exists, the name hasn't changed,
		 * and the stat information we had before does not match
		 * what we have now. */
2450
2451
2452
2453
		else if (name_exists && openfile->current_stat &&
			(openfile->current_stat->st_mtime < st.st_mtime ||
			openfile->current_stat->st_dev != st.st_dev ||
			openfile->current_stat->st_ino != st.st_ino)) {
2454
2455
2456
2457
2458
		    i = do_yesno_prompt(FALSE,
			_("File was modified since you opened it, continue saving ? "));
		    if (i == 0 || i == -1)
			continue;
		}
2459
#endif
2460

2461
	    }
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2462

2463
	    /* Convert newlines to nulls, just before we save the file. */
2464
2465
2466
	    sunder(answer);
	    align(&answer);

2467
	    /* Here's where we allow the selected text to be written to
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2469
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	     * a separate file.  If we're using restricted mode, this
	     * function is disabled, since it allows reading from or
	     * writing to files not specified on the command line. */
2471
	    result =
2472
2473
2474
#ifndef NANO_TINY
		(!ISSET(RESTRICTED) && !exiting && openfile->mark_set) ?
		write_marked_file(answer, NULL, FALSE, append) :
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2475
#endif
2476
		write_file(answer, NULL, FALSE, append, FALSE);
2477

2478
2479
	    break;
	}
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2480
    }
2481
2482

    free(ans);
2483

2484
    return result ? 1 : 0;
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2485
2486
}

2487
/* Write the current buffer to disk, or discard it. */
2488
void do_writeout_void(void)
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Chris Allegretta committed
2489
{
2490
2491
2492
2493
    /* If the user chose to discard the buffer, close it. */
    if (do_writeout(FALSE) == 2)
	close_and_go();

2494
    display_main_list();
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2495
}
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2496

2497
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2500
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#ifndef NANO_TINY
/* If it has a name, write the current file to disk without prompting. */
void do_savefile(void)
{
    if (openfile->filename[0] != '\0')
	write_file(openfile->filename, NULL, FALSE, OVERWRITE, FALSE);
    else
	do_writeout_void();
}
#endif

2508
2509
/* Return a malloc()ed string containing the actual directory, used to
 * convert ~user/ and ~/ notation. */
2510
char *real_dir_from_tilde(const char *buf)
2511
{
2512
    char *retval;
2513

2514
    assert(buf != NULL);
2515

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2516
    if (*buf == '~') {
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2517
	size_t i = 1;
2518
	char *tilde_dir;
2519

2520
	/* Figure out how much of the string we need to compare. */
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2521
	for (; buf[i] != '/' && buf[i] != '\0'; i++)
2522
2523
	    ;

2524
2525
2526
	/* Get the home directory. */
	if (i == 1) {
	    get_homedir();
2527
	    tilde_dir = mallocstrcpy(NULL, homedir);
2528
2529
2530
	} else {
	    const struct passwd *userdata;

2531
2532
2533
	    tilde_dir = mallocstrncpy(NULL, buf, i + 1);
	    tilde_dir[i] = '\0';

2534
2535
	    do {
		userdata = getpwent();
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David Lawrence Ramsey committed
2536
2537
	    } while (userdata != NULL && strcmp(userdata->pw_name,
		tilde_dir + 1) != 0);
2538
	    endpwent();
2539
	    if (userdata != NULL)
2540
		tilde_dir = mallocstrcpy(tilde_dir, userdata->pw_dir);
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Chris Allegretta committed
2541
	}
2542

2543
2544
	retval = charalloc(strlen(tilde_dir) + strlen(buf + i) + 1);
	sprintf(retval, "%s%s", tilde_dir, buf + i);
2545

2546
2547
2548
	free(tilde_dir);
    } else
	retval = mallocstrcpy(NULL, buf);
2549

2550
    return retval;
2551
2552
}

2553
#if !defined(DISABLE_TABCOMP) || !defined(DISABLE_BROWSER)
2554
/* Our sort routine for file listings.  Sort alphabetically and
2555
 * case-insensitively, and sort directories before filenames. */
2556
2557
2558
2559
2560
2561
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2564
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2566
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int diralphasort(const void *va, const void *vb)
{
    struct stat fileinfo;
    const char *a = *(const char *const *)va;
    const char *b = *(const char *const *)vb;
    bool aisdir = stat(a, &fileinfo) != -1 && S_ISDIR(fileinfo.st_mode);
    bool bisdir = stat(b, &fileinfo) != -1 && S_ISDIR(fileinfo.st_mode);

    if (aisdir && !bisdir)
	return -1;
    if (!aisdir && bisdir)
	return 1;

2569
2570
2571
    /* Standard function brain damage: We should be sorting
     * alphabetically and case-insensitively according to the current
     * locale, but there's no standard strcasecoll() function, so we
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Benno Schulenberg committed
2572
     * have to use multibyte strcasecmp() instead. */
2573
    return mbstrcasecmp(a, b);
2574
}
2575
2576
2577
2578
2579

/* Free the memory allocated for array, which should contain len
 * elements. */
void free_chararray(char **array, size_t len)
{
2580
2581
    if (array == NULL)
	return;
2582

2583
2584
2585
2586
    for (; len > 0; len--)
	free(array[len - 1]);
    free(array);
}
2587
2588
#endif

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2589
#ifndef DISABLE_TABCOMP
2590
/* Is the given path a directory? */
2591
bool is_dir(const char *buf)
2592
{
2593
    char *dirptr;
2594
    struct stat fileinfo;
2595
2596
2597
    bool retval;

    assert(buf != NULL);
2598

2599
2600
    dirptr = real_dir_from_tilde(buf);

2601
    retval = (stat(dirptr, &fileinfo) != -1 && S_ISDIR(fileinfo.st_mode));
2602

2603
    free(dirptr);
2604

2605
    return retval;
2606
}
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2607

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2608
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2610
/* These functions, username_tab_completion(), cwd_tab_completion()
 * (originally exe_n_cwd_tab_completion()), and input_tab(), were
 * adapted from busybox 0.46 (cmdedit.c).  Here is the notice from that
2611
 * file, with the copyright years updated:
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Chris Allegretta committed
2612
2613
2614
 *
 * Termios command line History and Editting, originally
 * intended for NetBSD sh (ash)
2615
 * Copyright (C) 1999, 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007
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2623
 *      Main code:            Adam Rogoyski <rogoyski@cs.utexas.edu>
 *      Etc:                  Dave Cinege <dcinege@psychosis.com>
 *  Majorly adjusted/re-written for busybox:
 *                            Erik Andersen <andersee@debian.org>
 *
 * You may use this code as you wish, so long as the original author(s)
 * are attributed in any redistributions of the source code.
 * This code is 'as is' with no warranty.
2624
 * This code may safely be consumed by a BSD or GPL license. */
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Chris Allegretta committed
2625

2626
/* We consider the first buf_len characters of buf for ~username tab
2627
2628
 * completion. */
char **username_tab_completion(const char *buf, size_t *num_matches,
2629
	size_t buf_len)
Chris Allegretta's avatar
Chris Allegretta committed
2630
{
2631
2632
    char **matches = NULL;
    const struct passwd *userdata;
2633

2634
    assert(buf != NULL && num_matches != NULL && buf_len > 0);
2635

2636
    *num_matches = 0;
2637

2638
    while ((userdata = getpwent()) != NULL) {
2639
	if (strncmp(userdata->pw_name, buf + 1, buf_len - 1) == 0) {
2640
2641
	    /* Cool, found a match.  Add it to the list.  This makes a
	     * lot more sense to me (Chris) this way... */
2642

2643
2644
#ifndef DISABLE_OPERATINGDIR
	    /* ...unless the match exists outside the operating
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2646
2647
	     * directory, in which case just go to the next match. */
	    if (check_operating_dir(userdata->pw_dir, TRUE))
		continue;
2648
2649
#endif

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2650
2651
	    matches = (char **)nrealloc(matches, (*num_matches + 1) *
		sizeof(char *));
2652
2653
2654
	    matches[*num_matches] =
		charalloc(strlen(userdata->pw_name) + 2);
	    sprintf(matches[*num_matches], "~%s", userdata->pw_name);
2655
	    ++(*num_matches);
2656
	}
2657
2658
    }
    endpwent();
2659

2660
    return matches;
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2662
}

2663
/* We consider the first buf_len characters of buf for filename tab
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2664
 * completion. */
2665
char **cwd_tab_completion(const char *buf, bool allow_files, size_t
2666
	*num_matches, size_t buf_len)
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2667
{
2668
    char *dirname = mallocstrcpy(NULL, buf), *filename;
2669
2670
    size_t filenamelen;
    char **matches = NULL;
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2671
    DIR *dir;
2672
    const struct dirent *nextdir;
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2673

2674
    assert(dirname != NULL && num_matches != NULL);
2675

2676
    *num_matches = 0;
2677
    null_at(&dirname, buf_len);
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2685

    /* Okie, if there's a / in the buffer, strip out the directory
     * part. */
    filename = strrchr(dirname, '/');
    if (filename != NULL) {
	char *tmpdirname = filename + 1;

	filename = mallocstrcpy(NULL, tmpdirname);
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2686
	*tmpdirname = '\0';
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	tmpdirname = dirname;
	dirname = real_dir_from_tilde(dirname);
	free(tmpdirname);
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2690
    } else {
2691
2692
	filename = dirname;
	dirname = mallocstrcpy(NULL, "./");
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2693
2694
    }

2695
    assert(dirname[strlen(dirname) - 1] == '/');
2696

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2697
    dir = opendir(dirname);
2698

2699
    if (dir == NULL) {
2700
	/* Don't print an error, just shut up and return. */
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2701
	beep();
2702
2703
2704
	free(filename);
	free(dirname);
	return NULL;
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2705
    }
2706
2707
2708

    filenamelen = strlen(filename);

2709
    while ((nextdir = readdir(dir)) != NULL) {
2710
2711
	bool skip_match = FALSE;

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2712
#ifdef DEBUG
2713
	fprintf(stderr, "Comparing \'%s\'\n", nextdir->d_name);
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2714
#endif
2715
	/* See if this matches. */
2716
	if (strncmp(nextdir->d_name, filename, filenamelen) == 0 &&
2717
2718
		(*filename == '.' || (strcmp(nextdir->d_name, ".") != 0 &&
		strcmp(nextdir->d_name, "..") != 0))) {
2719
2720
	    /* Cool, found a match.  Add it to the list.  This makes a
	     * lot more sense to me (Chris) this way... */
2721

2722
2723
2724
2725
	    char *tmp = charalloc(strlen(dirname) +
		strlen(nextdir->d_name) + 1);
	    sprintf(tmp, "%s%s", dirname, nextdir->d_name);

2726
2727
#ifndef DISABLE_OPERATINGDIR
	    /* ...unless the match exists outside the operating
2728
2729
2730
2731
2732
2733
2734
	     * directory, in which case just go to the next match. */
	    if (check_operating_dir(tmp, TRUE))
		skip_match = TRUE;
#endif

	    /* ...or unless the match isn't a directory and allow_files
	     * isn't set, in which case just go to the next match. */
2735
	    if (!allow_files && !is_dir(tmp))
2736
2737
2738
		skip_match = TRUE;

	    free(tmp);
2739

2740
	    if (skip_match)
2741
		continue;
2742

2743
2744
	    matches = (char **)nrealloc(matches, (*num_matches + 1) *
		sizeof(char *));
2745
	    matches[*num_matches] = mallocstrcpy(NULL, nextdir->d_name);
2746
	    ++(*num_matches);
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2748
	}
    }
2749

2750
2751
    closedir(dir);
    free(dirname);
2752
    free(filename);
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2753

2754
    return matches;
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2755
2756
}

2757
/* Do tab completion.  place refers to how much the statusbar cursor
2758
2759
 * position should be advanced.  refresh_func is the function we will
 * call to refresh the edit window. */
2760
char *input_tab(char *buf, bool allow_files, size_t *place, bool
2761
	*lastwastab, void (*refresh_func)(void), bool *list)
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2762
{
2763
    size_t num_matches = 0, buf_len;
2764
    char **matches = NULL;
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2765

2766
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    assert(buf != NULL && place != NULL && *place <= strlen(buf) &&
		lastwastab != NULL && refresh_func != NULL && list != NULL);
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2768

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2769
    *list = FALSE;
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2770

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    /* If the word starts with `~' and there is no slash in the word,
     * then try completing this word as a username. */
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2773
    if (*place > 0 && *buf == '~') {
2774
	const char *bob = strchr(buf, '/');
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2775

2776
2777
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2779
	if (bob == NULL || bob >= buf + *place)
	    matches = username_tab_completion(buf, &num_matches,
		*place);
    }
2780

2781
2782
    /* Match against files relative to the current working directory. */
    if (matches == NULL)
2783
	matches = cwd_tab_completion(buf, allow_files, &num_matches, *place);
2784

2785
2786
2787
    buf_len = strlen(buf);

    if (num_matches == 0 || *place != buf_len)
2788
2789
2790
2791
	beep();
    else {
	size_t match, common_len = 0;
	char *mzero;
2792
2793
2794
	const char *lastslash = revstrstr(buf, "/", buf + *place);
	size_t lastslash_len = (lastslash == NULL) ? 0 :
		lastslash - buf + 1;
2795
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2797
	char *match1_mb = charalloc(mb_cur_max() + 1);
	char *match2_mb = charalloc(mb_cur_max() + 1);
	int match1_mb_len, match2_mb_len;
2798
2799
2800

	while (TRUE) {
	    for (match = 1; match < num_matches; match++) {
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2802
		/* Get the number of single-byte characters that all the
		 * matches have in common. */
2803
		match1_mb_len = parse_mbchar(matches[0] + common_len,
2804
			match1_mb, NULL);
2805
		match2_mb_len = parse_mbchar(matches[match] +
2806
			common_len, match2_mb, NULL);
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2809
		match1_mb[match1_mb_len] = '\0';
		match2_mb[match2_mb_len] = '\0';
		if (strcmp(match1_mb, match2_mb) != 0)
2810
2811
		    break;
	    }
2812

2813
	    if (match < num_matches || matches[0][common_len] == '\0')
2814
		break;
2815

2816
	    common_len += parse_mbchar(buf + common_len, NULL, NULL);
2817
	}
2818

2819
2820
2821
	free(match1_mb);
	free(match2_mb);

2822
	mzero = charalloc(lastslash_len + common_len + 1);
2823
2824
2825

	strncpy(mzero, buf, lastslash_len);
	strncpy(mzero + lastslash_len, matches[0], common_len);
2826

2827
	common_len += lastslash_len;
2828
	mzero[common_len] = '\0';
2829

2830
	assert(common_len >= *place);
2831

2832
	if (num_matches == 1 && is_dir(mzero)) {
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2833
	    mzero[common_len++] = '/';
2834

2835
2836
	    assert(common_len > *place);
	}
2837

2838
	if (num_matches > 1 && (common_len != *place || !*lastwastab))
2839
	    beep();
2840

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2841
	/* If there is more of a match to display on the statusbar, show
2842
	 * it.  We reset lastwastab to FALSE: it requires pressing Tab
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2843
	 * twice in succession with no statusbar changes to see a match
2844
2845
2846
	 * list. */
	if (common_len != *place) {
	    *lastwastab = FALSE;
2847
	    buf = charealloc(buf, common_len + buf_len - *place + 1);
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2848
2849
	    charmove(buf + common_len, buf + *place, buf_len -
		*place + 1);
2850
	    strncpy(buf, mzero, common_len);
2851
	    *place = common_len;
2852
	} else if (!*lastwastab || num_matches < 2)
2853
2854
	    *lastwastab = TRUE;
	else {
2855
	    int longest_name = 0, ncols, editline = 0;
2856

2857
2858
2859
2860
2861
2862
2863
2864
	    /* Now we show a list of the available choices. */
	    assert(num_matches > 1);

	    /* Sort the list. */
	    qsort(matches, num_matches, sizeof(char *), diralphasort);

	    for (match = 0; match < num_matches; match++) {
		common_len = strnlenpt(matches[match], COLS - 1);
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2865

2866
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		if (common_len > COLS - 1) {
		    longest_name = COLS - 1;
2868
2869
		    break;
		}
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2870

2871
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		if (common_len > longest_name)
		    longest_name = common_len;
2873
	    }
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2874

2875
	    assert(longest_name <= COLS - 1);
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2876

2877
	    /* Each column will be (longest_name + 2) columns wide, i.e.
2878
2879
	     * two spaces between columns, except that there will be
	     * only one space after the last column. */
2880
	    ncols = (COLS + 1) / (longest_name + 2);
2881

2882
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2884
2885
	    /* Blank the edit window, and print the matches out
	     * there. */
	    blank_edit();
	    wmove(edit, 0, 0);
2886

2887
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	    /* Disable el cursor. */
	    curs_set(0);
2889

2890
2891
	    for (match = 0; match < num_matches; match++) {
		char *disp;
2892

2893
		wmove(edit, editline, (longest_name + 2) *
2894
			(match % ncols));
2895

2896
		if (match % ncols == 0 &&
2897
			editline == editwinrows - 1 &&
2898
			num_matches - match > ncols) {
2899
2900
2901
		    waddstr(edit, _("(more)"));
		    break;
		}
2902

2903
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2906
		disp = display_string(matches[match], 0, longest_name,
			FALSE);
		waddstr(edit, disp);
		free(disp);
2907

2908
		if ((match + 1) % ncols == 0)
2909
		    editline++;
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2910
	    }
2911

2912
	    wnoutrefresh(edit);
2913
	    *list = TRUE;
2914
2915
2916
	}

	free(mzero);
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2917
2918
    }

2919
    free_chararray(matches, num_matches);
2920

2921
    /* Only refresh the edit window if we don't have a list of filename
2922
     * matches on it. */
2923
    if (!*list)
2924
	refresh_func();
2925
2926

    /* Enable el cursor. */
2927
    curs_set(1);
2928

2929
    return buf;
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2930
}
2931
#endif /* !DISABLE_TABCOMP */
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2932

2933
2934
/* Only print the last part of a path.  Isn't there a shell command for
 * this? */
2935
2936
const char *tail(const char *foo)
{
2937
    const char *tmp = strrchr(foo, '/');
2938

2939
2940
    if (tmp == NULL)
	tmp = foo;
2941
    else
2942
2943
2944
2945
2946
	tmp++;

    return tmp;
}

2947
2948
#ifndef DISABLE_HISTORIES
/* Return the constructed dirfile path, or NULL if we can't find the home
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2949
2950
 * directory.  The string is dynamically allocated, and should be
 * freed. */
2951
char *construct_filename(const char *str)
2952
{
2953
    char *newstr = NULL;
2954

2955
2956
    if (homedir != NULL) {
	size_t homelen = strlen(homedir);
2957

2958
2959
2960
	newstr = charalloc(homelen + strlen(str) + 1);
	strcpy(newstr, homedir);
	strcpy(newstr + homelen, str);
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2961
    }
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2962

2963
2964
2965
2966
2967
    return newstr;
}

char *histfilename(void)
{
2968
    return construct_filename("/.nano/search_history");
2969
2970
}

2971
2972
/* Construct the legacy history filename.
 * (Deprecate in 2.5, delete later.) */
2973
2974
2975
2976
2977
2978
2979
char *legacyhistfilename(void)
{
    return construct_filename("/.nano_history");
}

char *poshistfilename(void)
{
2980
    return construct_filename("/.nano/filepos_history");
2981
2982
2983
2984
}

void history_error(const char *msg, ...)
{
2985
    va_list ap;
2986
2987
2988
2989
2990
2991
2992
2993
2994
2995

    va_start(ap, msg);
    vfprintf(stderr, _(msg), ap);
    va_end(ap);

    fprintf(stderr, _("\nPress Enter to continue\n"));
    while (getchar() != '\n')
	;
}

2996
2997
2998
/* Now that we have more than one history file, let's just rely on a
 * .nano dir for this stuff.  Return 1 if the dir exists or was
 * successfully created, and return 0 otherwise. */
2999
3000
int check_dotnano(void)
{
3001
    int ret = 1;
3002
3003
3004
3005
3006
    struct stat dirstat;
    char *nanodir = construct_filename("/.nano");

    if (stat(nanodir, &dirstat) == -1) {
	if (mkdir(nanodir, S_IRWXU | S_IRWXG | S_IRWXO) == -1) {
3007
3008
3009
	    history_error(N_("Unable to create directory %s: %s\n"
			     "It is required for saving/loading search history or cursor positions.\n"),
				nanodir, strerror(errno));
3010
	    ret = 0;
3011
3012
	}
    } else if (!S_ISDIR(dirstat.st_mode)) {
3013
3014
3015
	history_error(N_("Path %s is not a directory and needs to be.\n"
			 "Nano will be unable to load or save search history or cursor positions.\n"),
				nanodir);
3016
	ret = 0;
3017
    }
3018
3019
3020

    free(nanodir);
    return ret;
3021
3022
}

3023
/* Load the search and replace histories from ~/.nano/search_history. */
3024
3025
3026
void load_history(void)
{
    char *nanohist = histfilename();
3027
3028
3029
    char *legacyhist = legacyhistfilename();
    struct stat hstat;

3030
    if (stat(legacyhist, &hstat) != -1 && stat(nanohist, &hstat) == -1) {
3031
	if (rename(legacyhist, nanohist) == -1)
3032
3033
3034
	    history_error(N_("Detected a legacy nano history file (%s) which I tried to move\n"
			     "to the preferred location (%s) but encountered an error: %s"),
				legacyhist, nanohist, strerror(errno));
3035
	else
3036
3037
3038
	    history_error(N_("Detected a legacy nano history file (%s) which I moved\n"
			     "to the preferred location (%s)\n(see the nano FAQ about this change)"),
				legacyhist, nanohist);
3039
3040
    }

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David Lawrence Ramsey committed
3041
    /* Assume do_rcfile() has reported a missing home directory. */
3042
    if (nanohist != NULL) {
3043
	FILE *hist = fopen(nanohist, "rb");
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Chris Allegretta committed
3044

3045
	if (hist == NULL) {
3046
	    if (errno != ENOENT) {
3047
3048
		/* Don't save history when we quit. */
		UNSET(HISTORYLOG);
3049
		history_error(N_("Error reading %s: %s"), nanohist,
3050
			strerror(errno));
3051
	    }
3052
	} else {
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3053
3054
3055
	    /* Load a history list (first the search history, then the
	     * replace history) from the oldest entry to the newest.
	     * Assume the last history entry is a blank line. */
3056
	    filestruct **history = &search_history;
3057
	    char *line = NULL;
3058
	    size_t buf_len = 0;
3059
3060
	    ssize_t read;

3061
	    while ((read = getline(&line, &buf_len, hist)) >= 0) {
3062
3063
3064
3065
3066
3067
		if (read > 0 && line[read - 1] == '\n') {
		    read--;
		    line[read] = '\0';
		}
		if (read > 0) {
		    unsunder(line, read);
3068
3069
		    update_history(history, line);
		} else
3070
3071
		    history = &replace_history;
	    }
3072

3073
	    fclose(hist);
3074
	    free(line);
3075
	}
3076
	free(nanohist);
3077
	free(legacyhist);
3078
3079
3080
    }
}

3081
3082
3083
/* Write the lines of a history list, starting with the line at h, to
 * the open file at hist.  Return TRUE if the write succeeded, and FALSE
 * otherwise. */
3084
bool writehist(FILE *hist, filestruct *h)
3085
{
3086
    filestruct *p;
3087

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3088
3089
    /* Write a history list from the oldest entry to the newest.  Assume
     * the last history entry is a blank line. */
3090
    for (p = h; p != NULL; p = p->next) {
3091
	size_t p_len = strlen(p->data);
3092

3093
	sunder(p->data);
3094

3095
	if (fwrite(p->data, sizeof(char), p_len, hist) < p_len ||
3096
3097
		putc('\n', hist) == EOF)
	    return FALSE;
3098
    }
3099

3100
    return TRUE;
3101
3102
}

3103
/* Save the search and replace histories to ~/.nano/search_history. */
3104
3105
void save_history(void)
{
3106
    char *nanohist;
3107

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David Lawrence Ramsey committed
3108
    /* Don't save unchanged or empty histories. */
3109
    if (!history_has_changed() || (searchbot->lineno == 1 &&
3110
		replacebot->lineno == 1))
3111
3112
	return;

3113
3114
3115
3116
    nanohist = histfilename();

    if (nanohist != NULL) {
	FILE *hist = fopen(nanohist, "wb");
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Chris Allegretta committed
3117

3118
	if (hist == NULL)
3119
3120
	    fprintf(stderr, _("Error writing %s: %s\n"), nanohist,
			strerror(errno));
3121
	else {
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3122
3123
	    /* Make sure no one else can read from or write to the
	     * history file. */
3124
	    chmod(nanohist, S_IRUSR | S_IWUSR);
3125

3126
	    if (!writehist(hist, searchage) || !writehist(hist, replaceage))
3127
		fprintf(stderr, _("Error writing %s: %s\n"), nanohist,
3128
			strerror(errno));
3129

3130
3131
	    fclose(hist);
	}
3132

3133
3134
3135
	free(nanohist);
    }
}
3136

3137
/* Save the recorded last file positions to ~/.nano/filepos_history. */
3138
3139
void save_poshistory(void)
{
3140
    char *poshist = poshistfilename();
3141
3142
    char *statusstr = NULL;
    poshiststruct *posptr;
3143
    FILE *hist;
3144

3145
3146
    if (poshist == NULL)
	return;
3147

3148
    hist = fopen(poshist, "wb");
3149

3150
3151
3152
3153
3154
    if (hist == NULL)
	fprintf(stderr, _("Error writing %s: %s\n"), poshist, strerror(errno));
    else {
	/* Don't allow others to read or write the history file. */
	chmod(poshist, S_IRUSR | S_IWUSR);
3155

3156
3157
3158
	for (posptr = position_history; posptr != NULL; posptr = posptr->next) {
	    statusstr = charalloc(strlen(posptr->filename) + 2 * sizeof(ssize_t) + 4);
	    sprintf(statusstr, "%s %ld %ld\n", posptr->filename, (long)posptr->lineno,
3159
			(long)posptr->xno);
3160
3161
3162
	    if (fwrite(statusstr, sizeof(char), strlen(statusstr), hist) < strlen(statusstr))
		fprintf(stderr, _("Error writing %s: %s\n"), poshist, strerror(errno));
	    free(statusstr);
3163
	}
3164
	fclose(hist);
3165
    }
3166
    free(poshist);
3167
3168
}

3169
3170
/* Update the recorded last file positions, given a filename, a line
 * and a column.  If no entry is found, add a new one at the end. */
3171
3172
void update_poshistory(char *filename, ssize_t lineno, ssize_t xpos)
{
3173
3174
    poshiststruct *posptr, *posprev = NULL;
    char *fullpath = get_full_path(filename);
3175
3176

    if (fullpath == NULL)
3177
	return;
3178

3179
    for (posptr = position_history; posptr != NULL; posptr = posptr->next) {
3180
	if (!strcmp(posptr->filename, fullpath)) {
3181
3182
	    posptr->lineno = lineno;
	    posptr->xno = xpos;
3183
	    free(fullpath);
3184
3185
	    return;
	}
3186
3187
3188
3189
	posprev = posptr;
    }

    /* Didn't find it, make a new node yo! */
3190
    posptr = (poshiststruct *)nmalloc(sizeof(poshiststruct));
3191
3192
3193
3194
3195
    posptr->filename = mallocstrcpy(NULL, fullpath);
    posptr->lineno = lineno;
    posptr->xno = xpos;
    posptr->next = NULL;

3196
3197
    if (position_history == NULL)
	position_history = posptr;
3198
3199
3200
3201
3202
3203
    else
	posprev->next = posptr;

    free(fullpath);
}

3204
3205
3206
/* Check the recorded last file positions to see if the given file
 * matches an existing entry.  If so, return 1 and set line and column
 * to the retrieved values.  Otherwise, return 0. */
3207
3208
3209
3210
3211
3212
int check_poshistory(const char *file, ssize_t *line, ssize_t *column)
{
    poshiststruct *posptr;
    char *fullpath = get_full_path(file);

    if (fullpath == NULL)
3213
	return 0;
3214

3215
    for (posptr = position_history; posptr != NULL; posptr = posptr->next) {
3216
3217
3218
	if (!strcmp(posptr->filename, fullpath)) {
	    *line = posptr->lineno;
	    *column = posptr->xno;
3219
	    free(fullpath);
3220
3221
3222
	    return 1;
	}
    }
3223
    free(fullpath);
3224
3225
3226
    return 0;
}

3227
/* Load the recorded file positions from ~/.nano/filepos_history. */
3228
3229
void load_poshistory(void)
{
3230
    char *poshist = poshistfilename();
3231
    FILE *hist;
3232

3233
3234
3235
    /* If the home directory is missing, do_rcfile() will have reported it. */
    if (poshist == NULL)
	return;
3236

3237
    hist = fopen(poshist, "rb");
3238

3239
3240
    if (hist == NULL) {
	if (errno != ENOENT) {
3241
	    /* When reading failed, don't save history when we quit. */
3242
3243
	    UNSET(POS_HISTORY);
	    history_error(N_("Error reading %s: %s"), poshist, strerror(errno));
3244
	}
3245
3246
3247
    } else {
	char *line = NULL, *lineptr, *xptr;
	size_t buf_len = 0;
3248
	ssize_t read, count = 0;
3249
3250
3251
3252
3253
3254
3255
3256
3257
3258
3259
3260
3261
3262
3263
3264
3265
3266
3267
3268
3269
3270
3271
3272
3273
	poshiststruct *record_ptr = NULL, *newrecord;

	/* Read and parse each line, and store the extracted data. */
	while ((read = getline(&line, &buf_len, hist)) > 2) {
	    if (line[read - 1] == '\n')
		line[--read] = '\0';
	    unsunder(line, read);

	    lineptr = parse_next_word(line);
	    xptr = parse_next_word(lineptr);

	    /* Create a new position record. */
	    newrecord = (poshiststruct *)nmalloc(sizeof(poshiststruct));
	    newrecord->filename = mallocstrcpy(NULL, line);
	    newrecord->lineno = atoi(lineptr);
	    newrecord->xno = atoi(xptr);
	    newrecord->next = NULL;

	    /* Add the record to the list. */
	    if (position_history == NULL)
		position_history = newrecord;
	    else
		record_ptr->next = newrecord;

	    record_ptr = newrecord;
3274
3275
3276
3277

	    /* Impose a limit, so the file will not grow indefinitely. */
	    if (++count > 200)
		position_history = position_history->next;
3278
3279
3280
	}
	fclose(hist);
	free(line);
3281
    }
3282
    free(poshist);
3283
}
3284
#endif /* !DISABLE_HISTORIES */