coding style
This commit is contained in:
parent
557fbe2cc3
commit
338c95de41
129
crypto.c
129
crypto.c
@ -37,6 +37,11 @@ struct brandt_ec_pkey {
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gcry_mpi_point_t ec_gen;
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gcry_ctx_t ec_ctx;
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/**
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* brandt_crypto_init
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*
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*
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*/
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void
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brandt_crypto_init ()
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{
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@ -154,29 +159,28 @@ brandt_mpi_scan_unsigned (gcry_mpi_t *result, const void *data, size_t size)
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brandt_assert_gpgerr (rc);
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}
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/*
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gcry_mpi_point_t
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deserialize_point(const struct brandt_point* data, const int len)
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{
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gcry_sexp_t s;
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gcry_ctx_t ctx;
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gcry_mpi_point_t ret;
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gcry_error_t rc;
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//gcry_mpi_point_t
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//deserialize_point(const struct brandt_point* data, const int len)
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//{
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// gcry_sexp_t s;
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// gcry_ctx_t ctx;
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// gcry_mpi_point_t ret;
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// gcry_error_t rc;
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//
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// rc = gcry_sexp_build(&s, NULL, "(public-key(ecc(curve " CURVE ")(q %b)))",
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// len, data);
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// brandt_assert_gpgerr(rc);
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//
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// rc = gcry_mpi_ec_new(&ctx, s, NULL);
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// brandt_assert_gpgerr(rc);
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// gcry_sexp_release(s);
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//
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// ret = gcry_mpi_ec_get_point("q", ctx, 0);
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// brandt_assert(ret);
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// gcry_ctx_release(ctx);
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// return ret;
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//}
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rc = gcry_sexp_build(&s, NULL, "(public-key(ecc(curve " CURVE ")(q %b)))",
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len, data);
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brandt_assert_gpgerr(rc);
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rc = gcry_mpi_ec_new(&ctx, s, NULL);
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brandt_assert_gpgerr(rc);
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gcry_sexp_release(s);
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ret = gcry_mpi_ec_get_point("q", ctx, 0);
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brandt_assert(ret);
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gcry_ctx_release(ctx);
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return ret;
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}
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*/
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/* --- EC --- */
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@ -238,8 +242,13 @@ key_from_sexp (gcry_mpi_t *array, gcry_sexp_t sexp, const char *topname,
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return 0;
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}
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/**
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* brandt_ec_skey_create
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*
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* @param[out] skey where to store the generated secret key
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*/
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void
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brandt_ec_skey_create (gcry_mpi_t* skey)
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brandt_ec_skey_create (gcry_mpi_t *skey)
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{
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gcry_sexp_t s_keyparam;
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gcry_sexp_t priv_sexp;
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@ -259,16 +268,26 @@ brandt_ec_skey_create (gcry_mpi_t* skey)
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gcry_sexp_release (priv_sexp);
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}
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/**
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* brandt_ec_pkey_compute
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*
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* @param pkey TODO
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* @param skey TODO
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*/
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void
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brandt_ec_pkey_compute (gcry_mpi_point_t* pkey, const gcry_mpi_t skey)
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brandt_ec_pkey_compute (gcry_mpi_point_t *pkey, const gcry_mpi_t skey)
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{
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}
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/**
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* brandt_ec_keypair_create
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*
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* @param[out] pkey where to store the generated public key
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* @param[out] skey where to store the generated secret key
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*/
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void
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brandt_ec_keypair_create (gcry_mpi_point_t* pkey, gcry_mpi_t* skey)
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brandt_ec_keypair_create (gcry_mpi_point_t *pkey, gcry_mpi_t *skey)
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{
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gcry_ctx_t ctx;
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gcry_sexp_t s_keyparam;
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@ -290,52 +309,66 @@ brandt_ec_keypair_create (gcry_mpi_point_t* pkey, gcry_mpi_t* skey)
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brandt_assert_gpgerr (rc);
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gcry_sexp_release (priv_sexp);
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*pkey = gcry_mpi_ec_get_point("q", ctx, 0);
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*pkey = gcry_mpi_ec_get_point ("q", ctx, 0);
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brandt_assert (NULL != *pkey);
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gcry_ctx_release (ctx);
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}
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/**
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* brandt_ec_keypair_create_base
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*
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* @param[out] pkey where to store the generated public key
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* @param[out] skey where to store the generated secret key
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* @param[in] base which base point should be used to calculate the public key
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*/
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void
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brandt_ec_keypair_create_base (gcry_mpi_point_t* pkey, gcry_mpi_t* skey, const gcry_mpi_point_t base)
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brandt_ec_keypair_create_base (gcry_mpi_point_t *pkey, gcry_mpi_t *skey,
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const gcry_mpi_point_t base)
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{
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brandt_ec_skey_create(skey);
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brandt_assert(*skey);
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*pkey = gcry_mpi_point_new(0);
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brandt_assert(*pkey);
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gcry_mpi_ec_mul(*pkey, *skey, base, ec_ctx);
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brandt_ec_skey_create (skey);
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brandt_assert (*skey);
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*pkey = gcry_mpi_point_new (0);
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brandt_assert (*pkey);
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gcry_mpi_ec_mul (*pkey, *skey, base, ec_ctx);
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}
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/**
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* brandt_ec_point_cmp compares two curve points
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*
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* @param[in] a the first point
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* @param[in] b the second point
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* @return 0 if @a a and @a b represent the same point on the curve, something
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* else otherwise
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*/
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int
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brandt_ec_point_cmp (const gcry_mpi_point_t a, const gcry_mpi_point_t b)
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{
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int ret = 1;
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gcry_mpi_t ax = gcry_mpi_new(0);
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gcry_mpi_t bx = gcry_mpi_new(0);
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gcry_mpi_t ay = gcry_mpi_new(0);
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gcry_mpi_t by = gcry_mpi_new(0);
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gcry_mpi_t ax = gcry_mpi_new (0);
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gcry_mpi_t bx = gcry_mpi_new (0);
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gcry_mpi_t ay = gcry_mpi_new (0);
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gcry_mpi_t by = gcry_mpi_new (0);
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brandt_assert (a && b);
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if (!ax || !bx || !ay || !by)
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{
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weprintf("could not init point in point_cmp");
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weprintf ("could not init point in point_cmp");
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return 1;
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}
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if (!gcry_mpi_ec_get_affine(ax, ay, a, ec_ctx) && !gcry_mpi_ec_get_affine(bx, by, b, ec_ctx))
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if (!gcry_mpi_ec_get_affine (ax, ay, a, ec_ctx)
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&& !gcry_mpi_ec_get_affine (bx, by, b, ec_ctx))
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{
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ret = gcry_mpi_cmp(ax, bx) || gcry_mpi_cmp(ay, by);
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ret = gcry_mpi_cmp (ax, bx) || gcry_mpi_cmp (ay, by);
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}
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gcry_mpi_release(ax);
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gcry_mpi_release(bx);
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gcry_mpi_release(ay);
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gcry_mpi_release(by);
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gcry_mpi_release (ax);
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gcry_mpi_release (bx);
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gcry_mpi_release (ay);
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gcry_mpi_release (by);
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return ret;
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}
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/**
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* Convert the given private key from the network format to the
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* S-expression that can be used by libgcrypt.
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8
crypto.h
8
crypto.h
@ -50,10 +50,10 @@ void brandt_mpi_scan_unsigned (gcry_mpi_t *result, const void *data, size_t size
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/* --- EC --- */
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void brandt_ec_skey_create (gcry_mpi_t* skey);
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void brandt_ec_pkey_compute (gcry_mpi_point_t* pkey, const gcry_mpi_t skey);
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void brandt_ec_keypair_create (gcry_mpi_point_t* pkey, gcry_mpi_t* skey);
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void brandt_ec_keypair_create_base (gcry_mpi_point_t* pkey, gcry_mpi_t* skey, const gcry_mpi_point_t base);
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void brandt_ec_skey_create (gcry_mpi_t *skey);
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void brandt_ec_pkey_compute (gcry_mpi_point_t *pkey, const gcry_mpi_t skey);
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void brandt_ec_keypair_create (gcry_mpi_point_t *pkey, gcry_mpi_t *skey);
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void brandt_ec_keypair_create_base (gcry_mpi_point_t *pkey, gcry_mpi_t *skey, const gcry_mpi_point_t base);
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int brandt_ec_point_cmp (const gcry_mpi_point_t a, const gcry_mpi_point_t b);
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#endif /* ifndef _BRANDT_CRYPTO_H */
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102
smc.c
102
smc.c
@ -22,63 +22,85 @@
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#include <gcrypt.h>
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#include "crypto.h"
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#include "util.h"
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#include "smc.h"
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#include "util.h"
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extern gcry_ctx_t ec_ctx;
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/**
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* smc_zkp_dl
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*
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* @param v TODO
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* @param g TODO
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* @param x TODO
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* @param a TODO
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* @param c TODO
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* @param r TODO
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*/
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void
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smc_zkp_dl (gcry_mpi_point_t v, gcry_mpi_point_t g, gcry_mpi_t x, gcry_mpi_point_t *a, gcry_mpi_t *c, gcry_mpi_t *r)
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smc_zkp_dl (gcry_mpi_point_t v, gcry_mpi_point_t g, gcry_mpi_t x,
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gcry_mpi_point_t *a, gcry_mpi_t *c,
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gcry_mpi_t *r)
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{
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gcry_mpi_t z = gcry_mpi_new(0);
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gcry_mpi_t z = gcry_mpi_new (0);
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brandt_ec_keypair_create_base(a, &z, g);
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brandt_ec_keypair_create_base (a, &z, g);
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/**TODO: generate c from HASH(g,v,a) and don't output it */
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brandt_ec_skey_create(c);
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*r = gcry_mpi_new(0);
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gcry_mpi_mul(*r, *c, x);
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gcry_mpi_add(*r, *r, z);
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brandt_ec_skey_create (c);
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*r = gcry_mpi_new (0);
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gcry_mpi_mul (*r, *c, x);
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gcry_mpi_add (*r, *r, z);
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gcry_mpi_release(z);
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gcry_mpi_release (z);
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}
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/**
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* smc_zkp_dl_check
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*
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* @param v TODO
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* @param g TODO
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* @param a TODO
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* @param c TODO
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* @param r TODO
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* @return 0 if the proof is correct, something else otherwise
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*/
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int
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smc_zkp_dl_check (gcry_mpi_point_t v, gcry_mpi_point_t g, gcry_mpi_point_t a, gcry_mpi_t c, gcry_mpi_t r)
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smc_zkp_dl_check (gcry_mpi_point_t v, gcry_mpi_point_t g, gcry_mpi_point_t a,
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gcry_mpi_t c,
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gcry_mpi_t r)
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{
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int ret;
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gcry_mpi_point_t left = gcry_mpi_point_new(0);
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gcry_mpi_point_t right = gcry_mpi_point_new(0);
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gcry_mpi_point_t left = gcry_mpi_point_new (0);
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gcry_mpi_point_t right = gcry_mpi_point_new (0);
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gcry_mpi_ec_mul(left, r, g, ec_ctx);
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gcry_mpi_ec_mul(right, c, v, ec_ctx);
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gcry_mpi_ec_add(right, a, right, ec_ctx);
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gcry_mpi_ec_mul (left, r, g, ec_ctx);
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gcry_mpi_ec_mul (right, c, v, ec_ctx);
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gcry_mpi_ec_add (right, a, right, ec_ctx);
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ret = brandt_ec_point_cmp(left, right);
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gcry_mpi_point_release(left);
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gcry_mpi_point_release(right);
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ret = brandt_ec_point_cmp (left, right);
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gcry_mpi_point_release (left);
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gcry_mpi_point_release (right);
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return ret;
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}
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/*
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GEN
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smc_hextodec (const char *s)
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{
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size_t i;
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char c;
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pari_sp ltop = avma;
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GEN ret = gen_0;
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for (i = 0; i < strlen (s); i++)
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{
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errno = 0;
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if (1 != sscanf (&s[i], "%1hhx", &c))
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{
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brandt_eprintf ("failed to parse hex (\"%s\") to decimal:", s);
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return NULL;
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}
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ret = addis (shifti (ret, 4), c);
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}
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return gerepilecopy (ltop, ret);
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}
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*/
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//GEN
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//smc_hextodec (const char *s)
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//{
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// size_t i;
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// char c;
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// pari_sp ltop = avma;
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// GEN ret = gen_0;
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//
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// for (i = 0; i < strlen (s); i++)
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// {
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// errno = 0;
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// if (1 != sscanf (&s[i], "%1hhx", &c))
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// {
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// brandt_eprintf ("failed to parse hex (\"%s\") to decimal:", s);
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// return NULL;
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// }
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// ret = addis (shifti (ret, 4), c);
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// }
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// return gerepilecopy (ltop, ret);
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//}
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22
smc.h
22
smc.h
@ -1,3 +1,23 @@
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/* This file is part of libbrandt.
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* Copyright (C) 2016 GNUnet e.V.
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*
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* libbrandt is free software: you can redistribute it and/or modify it under
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* the terms of the GNU General Public License as published by the Free Software
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* Foundation, either version 3 of the License, or (at your option) any later
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* version.
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*
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* libbrandt is distributed in the hope that it will be useful, but WITHOUT ANY
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* WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR
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* A PARTICULAR PURPOSE. See the GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License along with
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* libbrandt. If not, see <http://www.gnu.org/licenses/>.
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*/
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/**
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* @file smc.h
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* @brief describes the secure multiparty computation interface.
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*/
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#ifndef _BRANDT_SMC_H
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#define _BRANDT_SMC_H
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@ -7,4 +27,4 @@
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void smc_zkp_dl (gcry_mpi_point_t v, gcry_mpi_point_t g, gcry_mpi_t x, gcry_mpi_point_t *a, gcry_mpi_t *c, gcry_mpi_t *r);
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int smc_zkp_dl_check (gcry_mpi_point_t v, gcry_mpi_point_t g, gcry_mpi_point_t a, gcry_mpi_t c, gcry_mpi_t r);
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#endif
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#endif // ifndef _BRANDT_SMC_H
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26
test.h
26
test.h
@ -1,3 +1,23 @@
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/* This file is part of libbrandt.
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* Copyright (C) 2016 GNUnet e.V.
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*
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* libbrandt is free software: you can redistribute it and/or modify it under
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* the terms of the GNU General Public License as published by the Free Software
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* Foundation, either version 3 of the License, or (at your option) any later
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* version.
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*
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* libbrandt is distributed in the hope that it will be useful, but WITHOUT ANY
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* WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR
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* A PARTICULAR PURPOSE. See the GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License along with
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* libbrandt. If not, see <http://www.gnu.org/licenses/>.
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*/
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/**
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* @file test.h
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* @brief Some helpers for running tests
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*/
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#ifndef _BRANDT_TEST_H
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#define _BRANDT_TEST_H
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@ -6,7 +26,7 @@
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int tests_run = 0;
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int ret = 0;
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#define check(cond, message) do { if (!(cond)) { fputs(message, stderr); fputc('\n', stderr); return 0; } } while (0)
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#define run(test) do { tests_run++; if (!test()) ret = 1; } while (0)
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#define check(cond, message) do { if (!(cond)) { fputs (message, stderr); fputc ('\n', stderr); return 0; } } while (0)
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#define run(test) do { tests_run++; if (!test ()) { ret = 1; } } while (0)
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#endif
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#endif // ifndef _BRANDT_TEST_H
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@ -1,4 +1,23 @@
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/* This file is part of libbrandt.
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* Copyright (C) 2016 GNUnet e.V.
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*
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* libbrandt is free software: you can redistribute it and/or modify it under
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* the terms of the GNU General Public License as published by the Free Software
|
||||
* Foundation, either version 3 of the License, or (at your option) any later
|
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* version.
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*
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* libbrandt 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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*
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* You should have received a copy of the GNU General Public License along with
|
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* libbrandt. If not, see <http://www.gnu.org/licenses/>.
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*/
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/**
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* @file test_crypto.c
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* @brief testing crypto and smc functions.
|
||||
*/
|
||||
#include "brandt.h"
|
||||
#include "crypto.h"
|
||||
#include "smc.h"
|
||||
@ -12,19 +31,19 @@ test_brandt_ec_keypair_create ()
|
||||
{
|
||||
gcry_mpi_t skey;
|
||||
gcry_mpi_point_t pkey1;
|
||||
gcry_mpi_point_t pkey2 = gcry_mpi_point_new(0);
|
||||
gcry_mpi_point_t pkey2 = gcry_mpi_point_new (0);
|
||||
|
||||
brandt_ec_keypair_create (&pkey1, &skey);
|
||||
check(skey, "no sec key created");
|
||||
check(pkey1, "no pub key created");
|
||||
check(pkey2, "could not init pkey2");
|
||||
check (skey, "no sec key created");
|
||||
check (pkey1, "no pub key created");
|
||||
check (pkey2, "could not init pkey2");
|
||||
|
||||
gcry_mpi_ec_mul(pkey2, skey, ec_gen, ec_ctx);
|
||||
check(!brandt_ec_point_cmp(pkey1, pkey2), "pkeys do not match");
|
||||
gcry_mpi_ec_mul (pkey2, skey, ec_gen, ec_ctx);
|
||||
check (!brandt_ec_point_cmp (pkey1, pkey2), "pkeys do not match");
|
||||
|
||||
gcry_mpi_release(skey);
|
||||
gcry_mpi_point_release(pkey1);
|
||||
gcry_mpi_point_release(pkey2);
|
||||
gcry_mpi_release (skey);
|
||||
gcry_mpi_point_release (pkey1);
|
||||
gcry_mpi_point_release (pkey2);
|
||||
}
|
||||
|
||||
int
|
||||
@ -37,33 +56,33 @@ test_smc_zkp_dl ()
|
||||
gcry_mpi_t x;
|
||||
gcry_mpi_point_t a;
|
||||
gcry_mpi_point_t g;
|
||||
gcry_mpi_point_t v = gcry_mpi_point_new(0);
|
||||
gcry_mpi_point_t v = gcry_mpi_point_new (0);
|
||||
|
||||
check(v, "no pub key initialized");
|
||||
check (v, "no pub key initialized");
|
||||
brandt_ec_keypair_create (&g, &s);
|
||||
check(g, "no gen created");
|
||||
check (g, "no gen created");
|
||||
|
||||
if (first)
|
||||
{
|
||||
gcry_mpi_ec_mul(g, GCRYMPI_CONST_ONE, ec_gen, ec_ctx);
|
||||
gcry_mpi_ec_mul (g, GCRYMPI_CONST_ONE, ec_gen, ec_ctx);
|
||||
first = 0;
|
||||
}
|
||||
|
||||
brandt_ec_skey_create(&x);
|
||||
check(x, "no sec key created");
|
||||
gcry_mpi_ec_mul(v, x, g, ec_ctx);
|
||||
check(v, "no pub key created");
|
||||
brandt_ec_skey_create (&x);
|
||||
check (x, "no sec key created");
|
||||
gcry_mpi_ec_mul (v, x, g, ec_ctx);
|
||||
check (v, "no pub key created");
|
||||
|
||||
smc_zkp_dl(v, g, x, &a, &c, &r);
|
||||
check(!smc_zkp_dl_check(v, g, a, c, r), "zkp was false, should be true");
|
||||
smc_zkp_dl (v, g, x, &a, &c, &r);
|
||||
check (!smc_zkp_dl_check (v, g, a, c, r), "zkp was false, should be true");
|
||||
|
||||
gcry_mpi_release(c);
|
||||
gcry_mpi_release(r);
|
||||
gcry_mpi_release(s);
|
||||
gcry_mpi_release(x);
|
||||
gcry_mpi_point_release(a);
|
||||
gcry_mpi_point_release(g);
|
||||
gcry_mpi_point_release(v);
|
||||
gcry_mpi_release (c);
|
||||
gcry_mpi_release (r);
|
||||
gcry_mpi_release (s);
|
||||
gcry_mpi_release (x);
|
||||
gcry_mpi_point_release (a);
|
||||
gcry_mpi_point_release (g);
|
||||
gcry_mpi_point_release (v);
|
||||
}
|
||||
|
||||
int
|
||||
@ -72,12 +91,12 @@ main (int argc, char *argv[])
|
||||
int repeat = 50;
|
||||
int i;
|
||||
|
||||
BRANDT_init();
|
||||
BRANDT_init ();
|
||||
|
||||
for (i = 0; i < repeat; i++)
|
||||
{
|
||||
run(test_brandt_ec_keypair_create);
|
||||
run(test_smc_zkp_dl);
|
||||
run (test_brandt_ec_keypair_create);
|
||||
run (test_smc_zkp_dl);
|
||||
}
|
||||
|
||||
return ret;
|
||||
|
@ -1154,7 +1154,7 @@ nl_after_func_body_one_liner = 0 # number
|
||||
|
||||
# The minimum number of newlines before a multi-line comment.
|
||||
# Doesn't apply if after a brace open or another multi-line comment.
|
||||
nl_before_block_comment = 0 # number
|
||||
nl_before_block_comment = 1 # number
|
||||
|
||||
# The minimum number of newlines before a single-line C comment.
|
||||
# Doesn't apply if after a brace open or other single-line C comments.
|
||||
@ -1320,7 +1320,7 @@ cmt_cpp_nl_start = false # false/true
|
||||
cmt_cpp_nl_end = false # false/true
|
||||
|
||||
# Whether to change cpp-comments into c-comments
|
||||
cmt_cpp_to_c = true # false/true
|
||||
cmt_cpp_to_c = false # false/true
|
||||
|
||||
# Whether to put a star on subsequent comment lines
|
||||
cmt_star_cont = true # false/true
|
||||
|
Loading…
Reference in New Issue
Block a user