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546 lines
14 KiB
C
546 lines
14 KiB
C
/* histfile.c - functions to manipulate the history file. */
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/* Copyright (C) 1989-2003 Free Software Foundation, Inc.
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This file contains the GNU History Library (the Library), a set of
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routines for managing the text of previously typed lines.
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The Library is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2, or (at your option)
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any later version.
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The Library is distributed in the hope that it will be useful, but
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WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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General Public License for more details.
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The GNU General Public License is often shipped with GNU software, and
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is generally kept in a file called COPYING or LICENSE. If you do not
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have a copy of the license, write to the Free Software Foundation,
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59 Temple Place, Suite 330, Boston, MA 02111 USA. */
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/* The goal is to make the implementation transparent, so that you
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don't have to know what data types are used, just what functions
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you can call. I think I have done that. */
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#define READLINE_LIBRARY
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#if defined (__TANDEM)
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# include <floss.h>
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#endif
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#if defined (HAVE_CONFIG_H)
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# include <config.h>
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#endif
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#include <stdio.h>
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#include <sys/types.h>
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#if ! defined (_MINIX) && defined (HAVE_SYS_FILE_H)
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# include <sys/file.h>
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#endif
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#include "posixstat.h"
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#include <fcntl.h>
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#if defined (HAVE_STDLIB_H)
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# include <stdlib.h>
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#else
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# include "ansi_stdlib.h"
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#endif /* HAVE_STDLIB_H */
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#if defined (HAVE_UNISTD_H)
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# include <unistd.h>
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#endif
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#if defined (__EMX__) || defined (__CYGWIN__)
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# undef HAVE_MMAP
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#endif
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#ifdef HISTORY_USE_MMAP
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# include <sys/mman.h>
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# ifdef MAP_FILE
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# define MAP_RFLAGS (MAP_FILE|MAP_PRIVATE)
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# define MAP_WFLAGS (MAP_FILE|MAP_SHARED)
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# else
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# define MAP_RFLAGS MAP_PRIVATE
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# define MAP_WFLAGS MAP_SHARED
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# endif
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# ifndef MAP_FAILED
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# define MAP_FAILED ((void *)-1)
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# endif
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#endif /* HISTORY_USE_MMAP */
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/* If we're compiling for __EMX__ (OS/2) or __CYGWIN__ (cygwin32 environment
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on win 95/98/nt), we want to open files with O_BINARY mode so that there
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is no \n -> \r\n conversion performed. On other systems, we don't want to
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mess around with O_BINARY at all, so we ensure that it's defined to 0. */
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#if defined (__EMX__) || defined (__CYGWIN__)
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# ifndef O_BINARY
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# define O_BINARY 0
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# endif
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#else /* !__EMX__ && !__CYGWIN__ */
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# undef O_BINARY
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# define O_BINARY 0
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#endif /* !__EMX__ && !__CYGWIN__ */
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#include <errno.h>
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#if !defined (errno)
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extern int errno;
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#endif /* !errno */
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#include "history.h"
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#include "histlib.h"
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#include "rlshell.h"
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#include "xmalloc.h"
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/* If non-zero, we write timestamps to the history file in history_do_write() */
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int history_write_timestamps = 0;
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/* Does S look like the beginning of a history timestamp entry? Placeholder
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for more extensive tests. */
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#define HIST_TIMESTAMP_START(s) (*(s) == history_comment_char)
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/* Return the string that should be used in the place of this
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filename. This only matters when you don't specify the
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filename to read_history (), or write_history (). */
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static char *
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history_filename (filename)
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const char *filename;
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{
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char *return_val;
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const char *home;
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int home_len;
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return_val = filename ? savestring (filename) : (char *)NULL;
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if (return_val)
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return (return_val);
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home = sh_get_env_value ("HOME");
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if (home == 0)
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{
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home = ".";
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home_len = 1;
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}
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else
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home_len = strlen (home);
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return_val = (char *)xmalloc (2 + home_len + 8); /* strlen(".history") == 8 */
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strcpy (return_val, home);
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return_val[home_len] = '/';
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#if defined (__MSDOS__)
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strcpy (return_val + home_len + 1, "_history");
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#else
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strcpy (return_val + home_len + 1, ".history");
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#endif
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return (return_val);
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}
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/* Add the contents of FILENAME to the history list, a line at a time.
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If FILENAME is NULL, then read from ~/.history. Returns 0 if
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successful, or errno if not. */
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int
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read_history (filename)
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const char *filename;
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{
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return (read_history_range (filename, 0, -1));
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}
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/* Read a range of lines from FILENAME, adding them to the history list.
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Start reading at the FROM'th line and end at the TO'th. If FROM
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is zero, start at the beginning. If TO is less than FROM, read
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until the end of the file. If FILENAME is NULL, then read from
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~/.history. Returns 0 if successful, or errno if not. */
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int
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read_history_range (filename, from, to)
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const char *filename;
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int from, to;
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{
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register char *line_start, *line_end, *p;
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char *input, *buffer, *bufend, *last_ts;
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int file, current_line, chars_read;
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struct stat finfo;
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size_t file_size;
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#if defined (EFBIG)
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int overflow_errno = EFBIG;
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#elif defined (EOVERFLOW)
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int overflow_errno = EOVERFLOW;
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#else
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int overflow_errno = EIO;
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#endif
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buffer = last_ts = (char *)NULL;
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input = history_filename (filename);
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file = open (input, O_RDONLY|O_BINARY, 0666);
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if ((file < 0) || (fstat (file, &finfo) == -1))
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goto error_and_exit;
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file_size = (size_t)finfo.st_size;
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/* check for overflow on very large files */
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if (file_size != finfo.st_size || file_size + 1 < file_size)
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{
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errno = overflow_errno;
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goto error_and_exit;
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}
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#ifdef HISTORY_USE_MMAP
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/* We map read/write and private so we can change newlines to NULs without
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affecting the underlying object. */
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buffer = (char *)mmap (0, file_size, PROT_READ|PROT_WRITE, MAP_RFLAGS, file, 0);
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if ((void *)buffer == MAP_FAILED)
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{
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errno = overflow_errno;
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goto error_and_exit;
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}
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chars_read = file_size;
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#else
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buffer = (char *)malloc (file_size + 1);
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if (buffer == 0)
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{
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errno = overflow_errno;
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goto error_and_exit;
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}
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chars_read = read (file, buffer, file_size);
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#endif
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if (chars_read < 0)
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{
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error_and_exit:
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if (errno != 0)
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chars_read = errno;
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else
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chars_read = EIO;
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if (file >= 0)
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close (file);
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FREE (input);
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#ifndef HISTORY_USE_MMAP
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FREE (buffer);
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#endif
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return (chars_read);
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}
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close (file);
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/* Set TO to larger than end of file if negative. */
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if (to < 0)
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to = chars_read;
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/* Start at beginning of file, work to end. */
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bufend = buffer + chars_read;
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current_line = 0;
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/* Skip lines until we are at FROM. */
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for (line_start = line_end = buffer; line_end < bufend && current_line < from; line_end++)
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if (*line_end == '\n')
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{
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p = line_end + 1;
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/* If we see something we think is a timestamp, continue with this
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line. We should check more extensively here... */
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if (HIST_TIMESTAMP_START(p) == 0)
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current_line++;
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line_start = p;
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}
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/* If there are lines left to gobble, then gobble them now. */
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for (line_end = line_start; line_end < bufend; line_end++)
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if (*line_end == '\n')
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{
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if (line_end - 1 >= line_start && *(line_end - 1) == '\r')
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*(line_end - 1) = '\0';
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else
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*line_end = '\0';
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if (*line_start)
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{
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if (HIST_TIMESTAMP_START(line_start) == 0)
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{
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add_history (line_start);
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if (last_ts)
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{
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add_history_time (last_ts);
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last_ts = NULL;
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}
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}
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else
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{
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last_ts = line_start;
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current_line--;
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}
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}
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current_line++;
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if (current_line >= to)
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break;
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line_start = line_end + 1;
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}
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FREE (input);
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#ifndef HISTORY_USE_MMAP
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FREE (buffer);
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#else
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munmap (buffer, file_size);
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#endif
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return (0);
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}
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/* Truncate the history file FNAME, leaving only LINES trailing lines.
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If FNAME is NULL, then use ~/.history. Returns 0 on success, errno
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on failure. */
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int
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history_truncate_file (fname, lines)
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const char *fname;
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int lines;
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{
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char *buffer, *filename, *bp, *bp1; /* bp1 == bp+1 */
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int file, chars_read, rv;
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struct stat finfo;
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size_t file_size;
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buffer = (char *)NULL;
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filename = history_filename (fname);
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file = open (filename, O_RDONLY|O_BINARY, 0666);
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rv = 0;
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/* Don't try to truncate non-regular files. */
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if (file == -1 || fstat (file, &finfo) == -1)
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{
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rv = errno;
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if (file != -1)
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close (file);
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goto truncate_exit;
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}
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if (S_ISREG (finfo.st_mode) == 0)
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{
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close (file);
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#ifdef EFTYPE
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rv = EFTYPE;
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#else
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rv = EINVAL;
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#endif
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goto truncate_exit;
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}
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file_size = (size_t)finfo.st_size;
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/* check for overflow on very large files */
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if (file_size != finfo.st_size || file_size + 1 < file_size)
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{
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close (file);
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#if defined (EFBIG)
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rv = errno = EFBIG;
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#elif defined (EOVERFLOW)
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rv = errno = EOVERFLOW;
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#else
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rv = errno = EINVAL;
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#endif
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goto truncate_exit;
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}
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buffer = (char *)malloc (file_size + 1);
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if (buffer == 0)
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{
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close (file);
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goto truncate_exit;
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}
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chars_read = read (file, buffer, file_size);
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close (file);
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if (chars_read <= 0)
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{
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rv = (chars_read < 0) ? errno : 0;
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goto truncate_exit;
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}
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/* Count backwards from the end of buffer until we have passed
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LINES lines. bp1 is set funny initially. But since bp[1] can't
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be a comment character (since it's off the end) and *bp can't be
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both a newline and the history comment character, it should be OK. */
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for (bp1 = bp = buffer + chars_read - 1; lines && bp > buffer; bp--)
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{
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if (*bp == '\n' && HIST_TIMESTAMP_START(bp1) == 0)
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lines--;
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bp1 = bp;
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}
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/* If this is the first line, then the file contains exactly the
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number of lines we want to truncate to, so we don't need to do
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anything. It's the first line if we don't find a newline between
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the current value of i and 0. Otherwise, write from the start of
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this line until the end of the buffer. */
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for ( ; bp > buffer; bp--)
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{
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if (*bp == '\n' && HIST_TIMESTAMP_START(bp1) == 0)
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{
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bp++;
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break;
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}
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bp1 = bp;
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}
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/* Write only if there are more lines in the file than we want to
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truncate to. */
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if (bp > buffer && ((file = open (filename, O_WRONLY|O_TRUNC|O_BINARY, 0600)) != -1))
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{
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write (file, bp, chars_read - (bp - buffer));
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#if defined (__BEOS__)
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/* BeOS ignores O_TRUNC. */
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ftruncate (file, chars_read - (bp - buffer));
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#endif
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close (file);
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}
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truncate_exit:
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FREE (buffer);
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free (filename);
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return rv;
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}
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/* Workhorse function for writing history. Writes NELEMENT entries
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from the history list to FILENAME. OVERWRITE is non-zero if you
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wish to replace FILENAME with the entries. */
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static int
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history_do_write (filename, nelements, overwrite)
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const char *filename;
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int nelements, overwrite;
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{
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register int i;
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char *output;
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int file, mode, rv;
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#ifdef HISTORY_USE_MMAP
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size_t cursize;
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mode = overwrite ? O_RDWR|O_CREAT|O_TRUNC|O_BINARY : O_RDWR|O_APPEND|O_BINARY;
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#else
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mode = overwrite ? O_WRONLY|O_CREAT|O_TRUNC|O_BINARY : O_WRONLY|O_APPEND|O_BINARY;
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#endif
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output = history_filename (filename);
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rv = 0;
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if ((file = open (output, mode, 0600)) == -1)
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{
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FREE (output);
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return (errno);
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}
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#ifdef HISTORY_USE_MMAP
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cursize = overwrite ? 0 : lseek (file, 0, SEEK_END);
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#endif
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if (nelements > history_length)
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nelements = history_length;
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/* Build a buffer of all the lines to write, and write them in one syscall.
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Suggested by Peter Ho (peter@robosts.oxford.ac.uk). */
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{
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HIST_ENTRY **the_history; /* local */
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register int j;
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int buffer_size;
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char *buffer;
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the_history = history_list ();
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/* Calculate the total number of bytes to write. */
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for (buffer_size = 0, i = history_length - nelements; i < history_length; i++)
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#if 0
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buffer_size += 2 + HISTENT_BYTES (the_history[i]);
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#else
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{
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if (history_write_timestamps && the_history[i]->timestamp && the_history[i]->timestamp[0])
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buffer_size += strlen (the_history[i]->timestamp) + 1;
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buffer_size += strlen (the_history[i]->line) + 1;
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}
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#endif
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/* Allocate the buffer, and fill it. */
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#ifdef HISTORY_USE_MMAP
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if (ftruncate (file, buffer_size+cursize) == -1)
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goto mmap_error;
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buffer = (char *)mmap (0, buffer_size, PROT_READ|PROT_WRITE, MAP_WFLAGS, file, cursize);
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if ((void *)buffer == MAP_FAILED)
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{
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mmap_error:
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rv = errno;
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FREE (output);
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close (file);
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return rv;
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}
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#else
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buffer = (char *)malloc (buffer_size);
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if (buffer == 0)
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{
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rv = errno;
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FREE (output);
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close (file);
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return rv;
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}
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#endif
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for (j = 0, i = history_length - nelements; i < history_length; i++)
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{
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if (history_write_timestamps && the_history[i]->timestamp && the_history[i]->timestamp[0])
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{
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strcpy (buffer + j, the_history[i]->timestamp);
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j += strlen (the_history[i]->timestamp);
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buffer[j++] = '\n';
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}
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strcpy (buffer + j, the_history[i]->line);
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j += strlen (the_history[i]->line);
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buffer[j++] = '\n';
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}
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#ifdef HISTORY_USE_MMAP
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if (msync (buffer, buffer_size, 0) != 0 || munmap (buffer, buffer_size) != 0)
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rv = errno;
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#else
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if (write (file, buffer, buffer_size) < 0)
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rv = errno;
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free (buffer);
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#endif
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}
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close (file);
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FREE (output);
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return (rv);
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}
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/* Append NELEMENT entries to FILENAME. The entries appended are from
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the end of the list minus NELEMENTs up to the end of the list. */
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int
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append_history (nelements, filename)
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int nelements;
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const char *filename;
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{
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return (history_do_write (filename, nelements, HISTORY_APPEND));
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}
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/* Overwrite FILENAME with the current history. If FILENAME is NULL,
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then write the history list to ~/.history. Values returned
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are as in read_history ().*/
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int
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write_history (filename)
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const char *filename;
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{
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return (history_do_write (filename, history_length, HISTORY_OVERWRITE));
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}
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