Clean up error handling in keymat_v2_t
This commit is contained in:
@@ -96,7 +96,7 @@ static bool derive_ike_aead(private_keymat_v2_t *this, u_int16_t alg,
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u_int16_t key_size, prf_plus_t *prf_plus)
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u_int16_t key_size, prf_plus_t *prf_plus)
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{
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{
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aead_t *aead_i, *aead_r;
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aead_t *aead_i, *aead_r;
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chunk_t key;
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chunk_t key = chunk_empty;
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/* SK_ei/SK_er used for encryption */
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/* SK_ei/SK_er used for encryption */
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aead_i = lib->crypto->create_aead(lib->crypto, alg, key_size / 8);
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aead_i = lib->crypto->create_aead(lib->crypto, alg, key_size / 8);
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@@ -106,33 +106,33 @@ static bool derive_ike_aead(private_keymat_v2_t *this, u_int16_t alg,
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DBG1(DBG_IKE, "%N %N (key size %d) not supported!",
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DBG1(DBG_IKE, "%N %N (key size %d) not supported!",
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transform_type_names, ENCRYPTION_ALGORITHM,
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transform_type_names, ENCRYPTION_ALGORITHM,
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encryption_algorithm_names, alg, key_size);
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encryption_algorithm_names, alg, key_size);
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return FALSE;
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goto failure;
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}
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}
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key_size = aead_i->get_key_size(aead_i);
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key_size = aead_i->get_key_size(aead_i);
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if (key_size != aead_r->get_key_size(aead_r))
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{
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goto failure;
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}
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if (!prf_plus->allocate_bytes(prf_plus, key_size, &key))
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if (!prf_plus->allocate_bytes(prf_plus, key_size, &key))
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{
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{
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return FALSE;
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goto failure;
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}
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}
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DBG4(DBG_IKE, "Sk_ei secret %B", &key);
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DBG4(DBG_IKE, "Sk_ei secret %B", &key);
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if (!aead_i->set_key(aead_i, key))
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if (!aead_i->set_key(aead_i, key))
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{
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{
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chunk_clear(&key);
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goto failure;
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return FALSE;
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}
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}
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chunk_clear(&key);
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chunk_clear(&key);
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if (!prf_plus->allocate_bytes(prf_plus, key_size, &key))
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if (!prf_plus->allocate_bytes(prf_plus, key_size, &key))
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{
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{
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return FALSE;
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goto failure;
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}
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}
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DBG4(DBG_IKE, "Sk_er secret %B", &key);
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DBG4(DBG_IKE, "Sk_er secret %B", &key);
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if (!aead_r->set_key(aead_r, key))
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if (!aead_r->set_key(aead_r, key))
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{
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{
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chunk_clear(&key);
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goto failure;
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return FALSE;
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}
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}
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chunk_clear(&key);
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if (this->initiator)
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if (this->initiator)
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{
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{
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@@ -144,7 +144,13 @@ static bool derive_ike_aead(private_keymat_v2_t *this, u_int16_t alg,
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this->aead_in = aead_i;
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this->aead_in = aead_i;
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this->aead_out = aead_r;
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this->aead_out = aead_r;
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}
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}
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return TRUE;
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aead_i = aead_r = NULL;
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failure:
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DESTROY_IF(aead_i);
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DESTROY_IF(aead_r);
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chunk_clear(&key);
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return this->aead_in && this->aead_out;
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}
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}
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/**
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/**
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@@ -153,106 +159,78 @@ static bool derive_ike_aead(private_keymat_v2_t *this, u_int16_t alg,
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static bool derive_ike_traditional(private_keymat_v2_t *this, u_int16_t enc_alg,
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static bool derive_ike_traditional(private_keymat_v2_t *this, u_int16_t enc_alg,
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u_int16_t enc_size, u_int16_t int_alg, prf_plus_t *prf_plus)
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u_int16_t enc_size, u_int16_t int_alg, prf_plus_t *prf_plus)
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{
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{
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crypter_t *crypter_i, *crypter_r;
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crypter_t *crypter_i = NULL, *crypter_r = NULL;
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signer_t *signer_i, *signer_r;
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signer_t *signer_i, *signer_r;
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size_t key_size;
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size_t key_size;
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chunk_t key;
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chunk_t key = chunk_empty;
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/* SK_ai/SK_ar used for integrity protection */
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signer_i = lib->crypto->create_signer(lib->crypto, int_alg);
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signer_i = lib->crypto->create_signer(lib->crypto, int_alg);
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signer_r = lib->crypto->create_signer(lib->crypto, int_alg);
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signer_r = lib->crypto->create_signer(lib->crypto, int_alg);
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crypter_i = lib->crypto->create_crypter(lib->crypto, enc_alg, enc_size / 8);
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crypter_r = lib->crypto->create_crypter(lib->crypto, enc_alg, enc_size / 8);
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if (signer_i == NULL || signer_r == NULL)
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if (signer_i == NULL || signer_r == NULL)
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{
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{
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DBG1(DBG_IKE, "%N %N not supported!",
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DBG1(DBG_IKE, "%N %N not supported!",
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transform_type_names, INTEGRITY_ALGORITHM,
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transform_type_names, INTEGRITY_ALGORITHM,
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integrity_algorithm_names, int_alg);
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integrity_algorithm_names, int_alg);
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return FALSE;
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goto failure;
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}
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}
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key_size = signer_i->get_key_size(signer_i);
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if (!prf_plus->allocate_bytes(prf_plus, key_size, &key))
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{
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signer_i->destroy(signer_i);
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signer_r->destroy(signer_r);
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return FALSE;
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}
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DBG4(DBG_IKE, "Sk_ai secret %B", &key);
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if (!signer_i->set_key(signer_i, key))
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{
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signer_i->destroy(signer_i);
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signer_r->destroy(signer_r);
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chunk_clear(&key);
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return FALSE;
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}
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chunk_clear(&key);
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if (!prf_plus->allocate_bytes(prf_plus, key_size, &key))
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{
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signer_i->destroy(signer_i);
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signer_r->destroy(signer_r);
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return FALSE;
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}
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DBG4(DBG_IKE, "Sk_ar secret %B", &key);
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if (!signer_r->set_key(signer_r, key))
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{
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signer_i->destroy(signer_i);
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signer_r->destroy(signer_r);
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chunk_clear(&key);
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return FALSE;
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}
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chunk_clear(&key);
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/* SK_ei/SK_er used for encryption */
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crypter_i = lib->crypto->create_crypter(lib->crypto, enc_alg, enc_size / 8);
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crypter_r = lib->crypto->create_crypter(lib->crypto, enc_alg, enc_size / 8);
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if (crypter_i == NULL || crypter_r == NULL)
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if (crypter_i == NULL || crypter_r == NULL)
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{
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{
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DBG1(DBG_IKE, "%N %N (key size %d) not supported!",
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DBG1(DBG_IKE, "%N %N (key size %d) not supported!",
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transform_type_names, ENCRYPTION_ALGORITHM,
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transform_type_names, ENCRYPTION_ALGORITHM,
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encryption_algorithm_names, enc_alg, enc_size);
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encryption_algorithm_names, enc_alg, enc_size);
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signer_i->destroy(signer_i);
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goto failure;
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signer_r->destroy(signer_r);
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return FALSE;
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}
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}
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/* SK_ai/SK_ar used for integrity protection */
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key_size = signer_i->get_key_size(signer_i);
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if (!prf_plus->allocate_bytes(prf_plus, key_size, &key))
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{
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goto failure;
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}
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DBG4(DBG_IKE, "Sk_ai secret %B", &key);
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if (!signer_i->set_key(signer_i, key))
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{
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goto failure;
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}
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chunk_clear(&key);
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if (!prf_plus->allocate_bytes(prf_plus, key_size, &key))
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{
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goto failure;
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}
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DBG4(DBG_IKE, "Sk_ar secret %B", &key);
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if (!signer_r->set_key(signer_r, key))
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{
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goto failure;
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}
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chunk_clear(&key);
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/* SK_ei/SK_er used for encryption */
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key_size = crypter_i->get_key_size(crypter_i);
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key_size = crypter_i->get_key_size(crypter_i);
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if (!prf_plus->allocate_bytes(prf_plus, key_size, &key))
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if (!prf_plus->allocate_bytes(prf_plus, key_size, &key))
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{
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{
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crypter_i->destroy(crypter_i);
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goto failure;
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crypter_r->destroy(crypter_r);
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signer_i->destroy(signer_i);
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signer_r->destroy(signer_r);
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return FALSE;
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}
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}
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DBG4(DBG_IKE, "Sk_ei secret %B", &key);
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DBG4(DBG_IKE, "Sk_ei secret %B", &key);
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if (!crypter_i->set_key(crypter_i, key))
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if (!crypter_i->set_key(crypter_i, key))
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{
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{
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crypter_i->destroy(crypter_i);
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goto failure;
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crypter_r->destroy(crypter_r);
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signer_i->destroy(signer_i);
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signer_r->destroy(signer_r);
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return FALSE;
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}
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}
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chunk_clear(&key);
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chunk_clear(&key);
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if (!prf_plus->allocate_bytes(prf_plus, key_size, &key))
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if (!prf_plus->allocate_bytes(prf_plus, key_size, &key))
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{
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{
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crypter_i->destroy(crypter_i);
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goto failure;
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crypter_r->destroy(crypter_r);
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signer_i->destroy(signer_i);
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signer_r->destroy(signer_r);
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return FALSE;
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}
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}
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DBG4(DBG_IKE, "Sk_er secret %B", &key);
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DBG4(DBG_IKE, "Sk_er secret %B", &key);
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if (!crypter_r->set_key(crypter_r, key))
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if (!crypter_r->set_key(crypter_r, key))
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{
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{
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crypter_i->destroy(crypter_i);
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goto failure;
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crypter_r->destroy(crypter_r);
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signer_i->destroy(signer_i);
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signer_r->destroy(signer_r);
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return FALSE;
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}
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}
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chunk_clear(&key);
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if (this->initiator)
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if (this->initiator)
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{
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{
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@@ -264,7 +242,16 @@ static bool derive_ike_traditional(private_keymat_v2_t *this, u_int16_t enc_alg,
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this->aead_in = aead_create(crypter_i, signer_i);
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this->aead_in = aead_create(crypter_i, signer_i);
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this->aead_out = aead_create(crypter_r, signer_r);
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this->aead_out = aead_create(crypter_r, signer_r);
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}
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}
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return TRUE;
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signer_i = signer_r = NULL;
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crypter_i = crypter_r = NULL;
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failure:
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chunk_clear(&key);
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DESTROY_IF(signer_i);
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DESTROY_IF(signer_r);
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DESTROY_IF(crypter_i);
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DESTROY_IF(crypter_r);
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return this->aead_in && this->aead_out;
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}
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}
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METHOD(keymat_v2_t, derive_ike_keys, bool,
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METHOD(keymat_v2_t, derive_ike_keys, bool,
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@@ -375,8 +362,7 @@ METHOD(keymat_v2_t, derive_ike_keys, bool,
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if (!prf_plus)
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if (!prf_plus)
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{
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{
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DESTROY_IF(rekey_prf);
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goto failure;
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return FALSE;
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}
|
}
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/* KEYMAT = SK_d | SK_ai | SK_ar | SK_ei | SK_er | SK_pi | SK_pr */
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/* KEYMAT = SK_d | SK_ai | SK_ar | SK_ei | SK_er | SK_pi | SK_pr */
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@@ -385,9 +371,7 @@ METHOD(keymat_v2_t, derive_ike_keys, bool,
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key_size = this->prf->get_key_size(this->prf);
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key_size = this->prf->get_key_size(this->prf);
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if (!prf_plus->allocate_bytes(prf_plus, key_size, &this->skd))
|
if (!prf_plus->allocate_bytes(prf_plus, key_size, &this->skd))
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{
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{
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prf_plus->destroy(prf_plus);
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goto failure;
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DESTROY_IF(rekey_prf);
|
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return FALSE;
|
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}
|
}
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DBG4(DBG_IKE, "Sk_d secret %B", &this->skd);
|
DBG4(DBG_IKE, "Sk_d secret %B", &this->skd);
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@@ -395,18 +379,14 @@ METHOD(keymat_v2_t, derive_ike_keys, bool,
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{
|
{
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DBG1(DBG_IKE, "no %N selected",
|
DBG1(DBG_IKE, "no %N selected",
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transform_type_names, ENCRYPTION_ALGORITHM);
|
transform_type_names, ENCRYPTION_ALGORITHM);
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prf_plus->destroy(prf_plus);
|
goto failure;
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DESTROY_IF(rekey_prf);
|
|
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return FALSE;
|
|
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}
|
}
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|
|
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if (encryption_algorithm_is_aead(alg))
|
if (encryption_algorithm_is_aead(alg))
|
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{
|
{
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if (!derive_ike_aead(this, alg, key_size, prf_plus))
|
if (!derive_ike_aead(this, alg, key_size, prf_plus))
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{
|
{
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prf_plus->destroy(prf_plus);
|
goto failure;
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DESTROY_IF(rekey_prf);
|
|
||||||
return FALSE;
|
|
||||||
}
|
}
|
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}
|
}
|
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else
|
else
|
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@@ -416,15 +396,11 @@ METHOD(keymat_v2_t, derive_ike_keys, bool,
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|||||||
{
|
{
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DBG1(DBG_IKE, "no %N selected",
|
DBG1(DBG_IKE, "no %N selected",
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transform_type_names, INTEGRITY_ALGORITHM);
|
transform_type_names, INTEGRITY_ALGORITHM);
|
||||||
prf_plus->destroy(prf_plus);
|
goto failure;
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DESTROY_IF(rekey_prf);
|
|
||||||
return FALSE;
|
|
||||||
}
|
}
|
||||||
if (!derive_ike_traditional(this, alg, key_size, int_alg, prf_plus))
|
if (!derive_ike_traditional(this, alg, key_size, int_alg, prf_plus))
|
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{
|
{
|
||||||
prf_plus->destroy(prf_plus);
|
goto failure;
|
||||||
DESTROY_IF(rekey_prf);
|
|
||||||
return FALSE;
|
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
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@@ -432,9 +408,7 @@ METHOD(keymat_v2_t, derive_ike_keys, bool,
|
|||||||
key_size = this->prf->get_key_size(this->prf);
|
key_size = this->prf->get_key_size(this->prf);
|
||||||
if (!prf_plus->allocate_bytes(prf_plus, key_size, &key))
|
if (!prf_plus->allocate_bytes(prf_plus, key_size, &key))
|
||||||
{
|
{
|
||||||
prf_plus->destroy(prf_plus);
|
goto failure;
|
||||||
DESTROY_IF(rekey_prf);
|
|
||||||
return FALSE;
|
|
||||||
}
|
}
|
||||||
DBG4(DBG_IKE, "Sk_pi secret %B", &key);
|
DBG4(DBG_IKE, "Sk_pi secret %B", &key);
|
||||||
if (this->initiator)
|
if (this->initiator)
|
||||||
@@ -447,9 +421,7 @@ METHOD(keymat_v2_t, derive_ike_keys, bool,
|
|||||||
}
|
}
|
||||||
if (!prf_plus->allocate_bytes(prf_plus, key_size, &key))
|
if (!prf_plus->allocate_bytes(prf_plus, key_size, &key))
|
||||||
{
|
{
|
||||||
prf_plus->destroy(prf_plus);
|
goto failure;
|
||||||
DESTROY_IF(rekey_prf);
|
|
||||||
return FALSE;
|
|
||||||
}
|
}
|
||||||
DBG4(DBG_IKE, "Sk_pr secret %B", &key);
|
DBG4(DBG_IKE, "Sk_pr secret %B", &key);
|
||||||
if (this->initiator)
|
if (this->initiator)
|
||||||
@@ -462,10 +434,11 @@ METHOD(keymat_v2_t, derive_ike_keys, bool,
|
|||||||
}
|
}
|
||||||
|
|
||||||
/* all done, prf_plus not needed anymore */
|
/* all done, prf_plus not needed anymore */
|
||||||
prf_plus->destroy(prf_plus);
|
failure:
|
||||||
|
DESTROY_IF(prf_plus);
|
||||||
DESTROY_IF(rekey_prf);
|
DESTROY_IF(rekey_prf);
|
||||||
|
|
||||||
return TRUE;
|
return this->skp_build.len && this->skp_verify.len;
|
||||||
}
|
}
|
||||||
|
|
||||||
METHOD(keymat_v2_t, derive_child_keys, bool,
|
METHOD(keymat_v2_t, derive_child_keys, bool,
|
||||||
@@ -560,11 +533,16 @@ METHOD(keymat_v2_t, derive_child_keys, bool,
|
|||||||
return FALSE;
|
return FALSE;
|
||||||
}
|
}
|
||||||
|
|
||||||
|
*encr_i = *integ_i = *encr_r = *integ_r = chunk_empty;
|
||||||
if (!prf_plus->allocate_bytes(prf_plus, enc_size, encr_i) ||
|
if (!prf_plus->allocate_bytes(prf_plus, enc_size, encr_i) ||
|
||||||
!prf_plus->allocate_bytes(prf_plus, int_size, integ_i) ||
|
!prf_plus->allocate_bytes(prf_plus, int_size, integ_i) ||
|
||||||
!prf_plus->allocate_bytes(prf_plus, enc_size, encr_r) ||
|
!prf_plus->allocate_bytes(prf_plus, enc_size, encr_r) ||
|
||||||
!prf_plus->allocate_bytes(prf_plus, int_size, integ_r))
|
!prf_plus->allocate_bytes(prf_plus, int_size, integ_r))
|
||||||
{
|
{
|
||||||
|
chunk_free(encr_i);
|
||||||
|
chunk_free(integ_i);
|
||||||
|
chunk_free(encr_r);
|
||||||
|
chunk_free(integ_r);
|
||||||
prf_plus->destroy(prf_plus);
|
prf_plus->destroy(prf_plus);
|
||||||
return FALSE;
|
return FALSE;
|
||||||
}
|
}
|
||||||
|
|||||||
Reference in New Issue
Block a user