Packages
hackney
3.0.2
4.7.2
4.7.1
4.7.0
4.6.1
4.6.0
4.5.2
4.5.1
4.5.0
4.4.5
4.4.3
4.4.2
4.4.1
4.4.0
4.3.0
4.2.3
4.2.2
4.2.1
4.2.0
4.1.0
4.0.3
4.0.2
4.0.1
4.0.0
3.2.1
3.2.0
3.1.2
3.1.1
3.1.0
3.0.3
3.0.2
3.0.1
3.0.0
retired
2.0.1
2.0.0
2.0.0-beta.1
1.25.0
1.24.1
1.24.0
1.23.0
1.22.0
1.21.0
1.20.1
1.20.0
1.19.1
1.19.0
1.18.2
1.18.1
1.18.0
1.17.4
1.17.3
1.17.2
1.17.1
1.17.0
1.16.0
1.15.2
1.15.1
1.15.0
1.14.3
1.14.2
1.14.0
1.13.0
1.12.1
1.12.0
1.11.0
1.10.1
1.10.0
1.9.0
1.8.6
1.8.5
1.8.4
1.8.3
1.8.2
1.8.0
1.7.1
1.7.0
1.6.6
retired
1.6.5
1.6.4
retired
1.6.3
1.6.2
1.6.1
1.6.0
1.5.7
1.5.6
1.5.5
1.5.4
1.5.3
1.5.2
1.5.1
1.5.0
1.4.10
1.4.8
1.4.7
1.4.6
1.4.5
1.4.4
1.4.3
1.4.2
1.4.1
1.4.0
1.3.2
1.3.1
1.3.0
1.2.0
1.1.0
1.0.6
1.0.5
1.0.2
1.0.1
0.15.2
0.15.0
0.14.3
0.14.2
0.14.1
0.14.0
0.13.1
Simple HTTP client with HTTP/1.1, HTTP/2, and HTTP/3 support
Security advisory:
This version has known vulnerabilities.
View advisories
Current section
Files
Jump to
Current section
Files
c_src/boringssl/crypto/slhdsa/slhdsa.cc
// Copyright 2024 The BoringSSL Authors
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// https://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
#include <openssl/slhdsa.h>
#include <openssl/obj.h>
#include "../fipsmodule/bcm_interface.h"
static_assert(SLHDSA_SHA2_128S_PUBLIC_KEY_BYTES ==
BCM_SLHDSA_SHA2_128S_PUBLIC_KEY_BYTES);
static_assert(SLHDSA_SHA2_128S_PRIVATE_KEY_BYTES ==
BCM_SLHDSA_SHA2_128S_PRIVATE_KEY_BYTES);
static_assert(SLHDSA_SHA2_128S_SIGNATURE_BYTES ==
BCM_SLHDSA_SHA2_128S_SIGNATURE_BYTES);
static_assert(SLHDSA_SHAKE_256F_PUBLIC_KEY_BYTES ==
BCM_SLHDSA_SHAKE_256F_PUBLIC_KEY_BYTES);
static_assert(SLHDSA_SHAKE_256F_PRIVATE_KEY_BYTES ==
BCM_SLHDSA_SHAKE_256F_PRIVATE_KEY_BYTES);
static_assert(SLHDSA_SHAKE_256F_SIGNATURE_BYTES ==
BCM_SLHDSA_SHAKE_256F_SIGNATURE_BYTES);
void SLHDSA_SHA2_128S_generate_key(
uint8_t out_public_key[SLHDSA_SHA2_128S_PUBLIC_KEY_BYTES],
uint8_t out_private_key[SLHDSA_SHA2_128S_PRIVATE_KEY_BYTES]) {
BCM_slhdsa_sha2_128s_generate_key(out_public_key, out_private_key);
}
void SLHDSA_SHAKE_256F_generate_key(
uint8_t out_public_key[SLHDSA_SHAKE_256F_PUBLIC_KEY_BYTES],
uint8_t out_private_key[SLHDSA_SHAKE_256F_PRIVATE_KEY_BYTES]) {
BCM_slhdsa_shake_256f_generate_key(out_public_key, out_private_key);
}
void SLHDSA_SHA2_128S_public_from_private(
uint8_t out_public_key[SLHDSA_SHA2_128S_PUBLIC_KEY_BYTES],
const uint8_t private_key[SLHDSA_SHA2_128S_PRIVATE_KEY_BYTES]) {
BCM_slhdsa_sha2_128s_public_from_private(out_public_key, private_key);
}
void SLHDSA_SHAKE_256F_public_from_private(
uint8_t out_public_key[SLHDSA_SHAKE_256F_PUBLIC_KEY_BYTES],
const uint8_t private_key[SLHDSA_SHAKE_256F_PRIVATE_KEY_BYTES]) {
BCM_slhdsa_shake_256f_public_from_private(out_public_key, private_key);
}
int SLHDSA_SHA2_128S_sign(
uint8_t out_signature[SLHDSA_SHA2_128S_SIGNATURE_BYTES],
const uint8_t private_key[SLHDSA_SHA2_128S_PRIVATE_KEY_BYTES],
const uint8_t *msg, size_t msg_len, const uint8_t *context,
size_t context_len) {
return bcm_success(BCM_slhdsa_sha2_128s_sign(out_signature, private_key, msg,
msg_len, context, context_len));
}
int SLHDSA_SHAKE_256F_sign(
uint8_t out_signature[SLHDSA_SHAKE_256F_SIGNATURE_BYTES],
const uint8_t private_key[SLHDSA_SHAKE_256F_PRIVATE_KEY_BYTES],
const uint8_t *msg, size_t msg_len, const uint8_t *context,
size_t context_len) {
return bcm_success(BCM_slhdsa_shake_256f_sign(out_signature, private_key, msg,
msg_len, context,
context_len));
}
int SLHDSA_SHA2_128S_verify(
const uint8_t *signature, size_t signature_len,
const uint8_t public_key[SLHDSA_SHA2_128S_PUBLIC_KEY_BYTES],
const uint8_t *msg, size_t msg_len, const uint8_t *context,
size_t context_len) {
return bcm_success(BCM_slhdsa_sha2_128s_verify(signature, signature_len,
public_key, msg, msg_len,
context, context_len));
}
int SLHDSA_SHAKE_256F_verify(
const uint8_t *signature, size_t signature_len,
const uint8_t public_key[SLHDSA_SHAKE_256F_PUBLIC_KEY_BYTES],
const uint8_t *msg, size_t msg_len, const uint8_t *context,
size_t context_len) {
return bcm_success(BCM_slhdsa_shake_256f_verify(signature, signature_len,
public_key, msg, msg_len,
context, context_len));
}
int SLHDSA_SHA2_128S_prehash_sign(
uint8_t out_signature[SLHDSA_SHA2_128S_SIGNATURE_BYTES],
const uint8_t private_key[SLHDSA_SHA2_128S_PRIVATE_KEY_BYTES],
const uint8_t *hashed_msg, size_t hashed_msg_len, int hash_nid,
const uint8_t *context, size_t context_len) {
if (hash_nid != NID_sha256) {
return 0;
}
return bcm_success(BCM_slhdsa_sha2_128s_prehash_sign(
out_signature, private_key, hashed_msg, hashed_msg_len, hash_nid, context,
context_len));
}
int SLHDSA_SHA2_128S_prehash_verify(
const uint8_t *signature, size_t signature_len,
const uint8_t public_key[SLHDSA_SHA2_128S_PUBLIC_KEY_BYTES],
const uint8_t *hashed_msg, size_t hashed_msg_len, int hash_nid,
const uint8_t *context, size_t context_len) {
if (hash_nid != NID_sha256) {
return 0;
}
return bcm_success(BCM_slhdsa_sha2_128s_prehash_verify(
signature, signature_len, public_key, hashed_msg, hashed_msg_len,
hash_nid, context, context_len));
}
int SLHDSA_SHA2_128S_prehash_warning_nonstandard_sign(
uint8_t out_signature[SLHDSA_SHA2_128S_SIGNATURE_BYTES],
const uint8_t private_key[SLHDSA_SHA2_128S_PRIVATE_KEY_BYTES],
const uint8_t *hashed_msg, size_t hashed_msg_len, int hash_nid,
const uint8_t *context, size_t context_len) {
if (hash_nid != NID_sha384) {
return 0;
}
return bcm_success(BCM_slhdsa_sha2_128s_prehash_sign(
out_signature, private_key, hashed_msg, hashed_msg_len, hash_nid, context,
context_len));
}
int SLHDSA_SHA2_128S_prehash_warning_nonstandard_verify(
const uint8_t *signature, size_t signature_len,
const uint8_t public_key[SLHDSA_SHA2_128S_PUBLIC_KEY_BYTES],
const uint8_t *hashed_msg, size_t hashed_msg_len, int hash_nid,
const uint8_t *context, size_t context_len) {
if (hash_nid != NID_sha384) {
return 0;
}
return bcm_success(BCM_slhdsa_sha2_128s_prehash_verify(
signature, signature_len, public_key, hashed_msg, hashed_msg_len,
hash_nid, context, context_len));
}