Mercurial > dropbear
view libtomcrypt/src/math/rand_bn.c @ 1855:35d504d59c05
Implement server-side support for sk-ecdsa U2F-backed keys (#142)
* Implement server-side support for sk-ecdsa U2F-backed keys
* Fix out-of-bounds read on normal ecdsa-sha2-[identifier] keys
* Fix one more potential out-of-bounds read
* Check if nistp256 curve is used in sk-ecdsa-sha2- key
It's the only allowed curve per PROTOCOL.u2f specification
* Implement server-side support for sk-ed25519 FIDO2-backed keys
* Keys with type sk-* make no sense as host keys, so they should be
disabled
* fix typo
* Make sk-ecdsa call buf_ecdsa_verify
This reduces code duplication, the SK code just handles the
different message format.
* Reduce sk specific code
The application id can be stored in signkey, then we don't need
to call sk-specific functions from svr-authpubkey
* Remove debugging output, which causes compilation errors with DEBUG_TRACE disabled
* Proper cleanup of sk_app
Co-authored-by: Matt Johnston <[email protected]>
author | egor-duda <egor-duda@users.noreply.github.com> |
---|---|
date | Sat, 22 Jan 2022 16:53:04 +0300 |
parents | e9dba7abd939 |
children |
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/* LibTomCrypt, modular cryptographic library -- Tom St Denis * * LibTomCrypt is a library that provides various cryptographic * algorithms in a highly modular and flexible manner. * * The library is free for all purposes without any express * guarantee it works. */ #include "tomcrypt.h" #if defined(LTC_MDSA) || defined(LTC_MECC) /** Generate a random number N with given bitlength (note: MSB can be 0) */ int rand_bn_bits(void *N, int bits, prng_state *prng, int wprng) { int res, bytes; unsigned char *buf, mask; LTC_ARGCHK(N != NULL); LTC_ARGCHK(bits > 1); /* check PRNG */ if ((res = prng_is_valid(wprng)) != CRYPT_OK) return res; bytes = (bits+7) >> 3; mask = 0xff << (8 - bits % 8); /* allocate buffer */ if ((buf = XCALLOC(1, bytes)) == NULL) return CRYPT_MEM; /* generate random bytes */ if (prng_descriptor[wprng].read(buf, bytes, prng) != (unsigned long)bytes) { res = CRYPT_ERROR_READPRNG; goto cleanup; } /* mask bits */ buf[0] &= ~mask; /* load value */ if ((res = mp_read_unsigned_bin(N, buf, bytes)) != CRYPT_OK) goto cleanup; res = CRYPT_OK; cleanup: #ifdef LTC_CLEAN_STACK zeromem(buf, bytes); #endif XFREE(buf); return res; } /** Generate a random number N in a range: 1 <= N < limit */ int rand_bn_upto(void *N, void *limit, prng_state *prng, int wprng) { int res, bits; LTC_ARGCHK(N != NULL); LTC_ARGCHK(limit != NULL); bits = mp_count_bits(limit); do { res = rand_bn_bits(N, bits, prng, wprng); if (res != CRYPT_OK) return res; } while (mp_cmp_d(N, 0) != LTC_MP_GT || mp_cmp(N, limit) != LTC_MP_LT); return CRYPT_OK; } #endif /* ref: $Format:%D$ */ /* git commit: $Format:%H$ */ /* commit time: $Format:%ai$ */