#include <sys/cdefs.h>
__FBSDID("$FreeBSD: src/bin/ed/cbc.c,v 1.20 2004/04/06 20:06:47 markm Exp $");
#include <sys/types.h>
#include <errno.h>
#include <pwd.h>
#ifdef DES
#include <time.h>
#include <openssl/des.h>
#define ED_DES_INCLUDES
#endif
#include "ed.h"
#define MEMCPY(dest,src,len) memcpy((dest),(src),(len))
#define MEMZERO(dest,len) memset((dest), 0, (len))
#define DES_XFORM(buf) \
DES_ecb_encrypt(buf, buf, &schedule, \
inverse ? DES_DECRYPT : DES_ENCRYPT);
#define READ(buf, n, fp) fread(buf, sizeof(char), n, fp)
#define WRITE(buf, n, fp) fwrite(buf, sizeof(char), n, fp)
enum {
MODE_ENCRYPT, MODE_DECRYPT, MODE_AUTHENTICATE
} mode = MODE_ENCRYPT;
#ifdef DES
DES_cblock ivec;
DES_cblock pvec;
#endif
char bits[] = {
'\200', '\100', '\040', '\020', '\010', '\004', '\002', '\001'
};
int pflag;
#ifdef DES
DES_key_schedule schedule;
#endif
unsigned char des_buf[8];
int des_ct = 0;
int des_n = 0;
void
init_des_cipher(void)
{
#ifdef DES
int i;
des_ct = des_n = 0;
MEMZERO(ivec, 8);
for (i = 0; i < 8; i++)
pvec[i] = (char) (arc4random() % 256);
#endif
}
int
get_des_char(FILE *fp)
{
#ifdef DES
if (des_n >= des_ct) {
des_n = 0;
des_ct = cbc_decode(des_buf, fp);
}
return (des_ct > 0) ? des_buf[des_n++] : EOF;
#else
return (getc(fp));
#endif
}
int
put_des_char(int c, FILE *fp)
{
#ifdef DES
if (des_n == sizeof des_buf) {
des_ct = cbc_encode(des_buf, des_n, fp);
des_n = 0;
}
return (des_ct >= 0) ? (des_buf[des_n++] = c) : EOF;
#else
return (fputc(c, fp));
#endif
}
int
flush_des_file(FILE *fp)
{
#ifdef DES
if (des_n == sizeof des_buf) {
des_ct = cbc_encode(des_buf, des_n, fp);
des_n = 0;
}
return (des_ct >= 0 && cbc_encode(des_buf, des_n, fp) >= 0) ? 0 : EOF;
#else
return (fflush(fp));
#endif
}
#ifdef DES
int
get_keyword(void)
{
char *p;
DES_cblock msgbuf;
if (*(p = getpass("Enter key: "))) {
expand_des_key(msgbuf, p);
MEMZERO(p, _PASSWORD_LEN);
set_des_key(&msgbuf);
MEMZERO(msgbuf, sizeof msgbuf);
return 1;
}
return 0;
}
void
des_error(const char *s)
{
errmsg = s ? s : strerror(errno);
}
int
hex_to_binary(int c, int radix)
{
switch(c) {
case '0': return(0x0);
case '1': return(0x1);
case '2': return(radix > 2 ? 0x2 : -1);
case '3': return(radix > 3 ? 0x3 : -1);
case '4': return(radix > 4 ? 0x4 : -1);
case '5': return(radix > 5 ? 0x5 : -1);
case '6': return(radix > 6 ? 0x6 : -1);
case '7': return(radix > 7 ? 0x7 : -1);
case '8': return(radix > 8 ? 0x8 : -1);
case '9': return(radix > 9 ? 0x9 : -1);
case 'A': case 'a': return(radix > 10 ? 0xa : -1);
case 'B': case 'b': return(radix > 11 ? 0xb : -1);
case 'C': case 'c': return(radix > 12 ? 0xc : -1);
case 'D': case 'd': return(radix > 13 ? 0xd : -1);
case 'E': case 'e': return(radix > 14 ? 0xe : -1);
case 'F': case 'f': return(radix > 15 ? 0xf : -1);
}
return(-1);
}
void
expand_des_key(char *obuf, char *kbuf)
{
int i, j;
int nbuf[64];
if (kbuf[0] == '0' && (kbuf[1] == 'x' || kbuf[1] == 'X')) {
kbuf = &kbuf[2];
for (i = 0; kbuf[i] && i < 16; i++)
if ((nbuf[i] = hex_to_binary((int) kbuf[i], 16)) == -1)
des_error("bad hex digit in key");
while (i < 16)
nbuf[i++] = 0;
for (i = 0; i < 8; i++)
obuf[i] =
((nbuf[2*i]&0xf)<<4) | (nbuf[2*i+1]&0xf);
pflag = 1;
return;
}
if (kbuf[0] == '0' && (kbuf[1] == 'b' || kbuf[1] == 'B')) {
kbuf = &kbuf[2];
for (i = 0; kbuf[i] && i < 16; i++)
if ((nbuf[i] = hex_to_binary((int) kbuf[i], 2)) == -1)
des_error("bad binary digit in key");
while (i < 64)
nbuf[i++] = 0;
for (i = 0; i < 8; i++)
for (j = 0; j < 8; j++)
obuf[i] = (obuf[i]<<1)|nbuf[8*i+j];
pflag = 1;
return;
}
(void)strncpy(obuf, kbuf, 8);
}
void
set_des_key(DES_cblock *buf)
{
int i, j;
int par;
if (!pflag) {
for (i = 0; i < 8; i++) {
par = 0;
for (j = 1; j < 8; j++)
if ((bits[j] & (*buf)[i]) != 0)
par++;
if ((par & 0x01) == 0x01)
(*buf)[i] &= 0x7f;
else
(*buf)[i] = ((*buf)[i] & 0x7f) | 0x80;
}
}
DES_set_odd_parity(buf);
DES_set_key(buf, &schedule);
}
int
cbc_encode(unsigned char *msgbuf, int n, FILE *fp)
{
int inverse = 0;
if (n == 8) {
for (n = 0; n < 8; n++)
msgbuf[n] ^= ivec[n];
DES_XFORM((DES_cblock *)msgbuf);
MEMCPY(ivec, msgbuf, 8);
return WRITE(msgbuf, 8, fp);
}
(void)MEMCPY(msgbuf + n, pvec, 8 - n);
msgbuf[7] = n;
for (n = 0; n < 8; n++)
msgbuf[n] ^= ivec[n];
DES_XFORM((DES_cblock *)msgbuf);
return WRITE(msgbuf, 8, fp);
}
int
cbc_decode(unsigned char *msgbuf, FILE *fp)
{
DES_cblock tbuf;
int n;
int c;
int inverse = 1;
if ((n = READ(msgbuf, 8, fp)) == 8) {
MEMCPY(tbuf, msgbuf, 8);
DES_XFORM((DES_cblock *)msgbuf);
for (c = 0; c < 8; c++)
msgbuf[c] ^= ivec[c];
MEMCPY(ivec, tbuf, 8);
if ((c = fgetc(fp)) == EOF) {
n = msgbuf[7];
if (n < 0 || n > 7) {
des_error("decryption failed (block corrupted)");
return EOF;
}
} else
(void)ungetc(c, fp);
return n;
}
if (n > 0)
des_error("decryption failed (incomplete block)");
else if (n < 0)
des_error("cannot read file");
return EOF;
}
#endif