/* * generate printable key IDs * Copyright (C) 2002 Henry Spencer. * * This library is free software; you can redistribute it and/or modify it * under the terms of the GNU Library General Public License as published by * the Free Software Foundation; either version 2 of the License, or (at your * option) any later version. See . * * This library 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 Library General Public * License for more details. */ #include "internal.h" #include "libreswan.h" /* * keyblobtoid - generate a printable key ID from an RFC 2537/3110 key blob * * Current algorithm is just to use first nine base64 digits. */ size_t keyblobtoid(src, srclen, dst, dstlen) const unsigned char *src; size_t srclen; char *dst; /* need not be valid if dstlen is 0 */ size_t dstlen; { char buf[KEYID_BUF]; size_t ret; # define NDIG 9 if (srclen < (NDIG * 6 + 7) / 8) { strcpy(buf, "?len= ?"); buf[5] = '0' + srclen; ret = 0; } else { (void) datatot(src, srclen, 64, buf, NDIG + 1); ret = NDIG + 1; } if (dstlen > 0) { if (strlen(buf) + 1 > dstlen) *(buf + dstlen - 1) = '\0'; strcpy(dst, buf); } return ret; } /* * splitkeytoid - generate a printable key ID from exponent/modulus pair * * Just constructs the beginnings of a key blob and calls keyblobtoid(). */ size_t splitkeytoid(e, elen, m, mlen, dst, dstlen) const unsigned char *e; size_t elen; const unsigned char *m; size_t mlen; char *dst; /* need not be valid if dstlen is 0 */ size_t dstlen; { unsigned char buf[KEYID_BUF]; /* ample room */ unsigned char *bufend = buf + sizeof(buf); unsigned char *p; size_t n; p = buf; if (elen <= 255) { *p++ = elen; } else if ((elen & ~0xffff) == 0) { *p++ = 0; *p++ = (elen >> 8) & 0xff; *p++ = elen & 0xff; } else { return 0; /* unrepresentable exponent length */ } n = bufend - p; if (elen < n) n = elen; memcpy(p, e, n); p += n; n = bufend - p; if (n > 0) { if (mlen < n) n = mlen; memcpy(p, m, n); p += n; } return keyblobtoid(buf, p - buf, dst, dstlen); } #ifdef KEYBLOBTOID_MAIN #include void regress(); int main(argc, argv) int argc; char *argv[]; { typedef unsigned char uc; uc hexblob[] = "\x01\x03\x85\xf2\xd6\x76\x9b\x03\x59\xb6\x21\x52"; uc hexe[] = "\x03"; uc hexm[] = "\x85\xf2\xd6\x76\x9b\x03\x59\xb6\x21\x52\xef\x85"; char b64nine[] = "AQOF8tZ2m"; char b64six[] = "AQOF8t"; char buf[100]; size_t n; char *b = b64nine; size_t bl = strlen(b) + 1; int st = 0; n = keyblobtoid(hexblob, strlen(hexblob), buf, sizeof(buf)); if (n != bl) { fprintf(stderr, "%s: keyblobtoid returned %d not %d\n", argv[0], n, bl); st = 1; } if (!streq(buf, b)) { fprintf(stderr, "%s: keyblobtoid generated `%s' not `%s'\n", argv[0], buf, b); st = 1; } n = splitkeytoid(hexe, strlen(hexe), hexm, strlen(hexm), buf, sizeof(buf)); if (n != bl) { fprintf(stderr, "%s: splitkeytoid returned %d not %d\n", argv[0], n, bl); st = 1; } if (!streq(buf, b)) { fprintf(stderr, "%s: splitkeytoid generated `%s' not `%s'\n", argv[0], buf, b); st = 1; } exit(st); } #endif /* KEYBLOBTOID_MAIN */