202 lines
5.6 KiB
C++
202 lines
5.6 KiB
C++
/* Copyright 2015 OpenMarket Ltd
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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/* C-compatible crpyto utility functions. At some point all of crypto.hh will
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* move here.
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*/
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#ifndef OLM_CRYPTO_H_
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#define OLM_CRYPTO_H_
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#include <stdint.h>
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#include <stdlib.h>
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#ifdef __cplusplus
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extern "C" {
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#endif
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/** length of a sha256 hash */
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#define SHA256_OUTPUT_LENGTH 32
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/** length of a public or private Curve25519 key */
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#define CURVE25519_KEY_LENGTH 32
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/** length of the shared secret created by a Curve25519 ECDH operation */
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#define CURVE25519_SHARED_SECRET_LENGTH 32
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/** amount of random data required to create a Curve25519 keypair */
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#define CURVE25519_RANDOM_LENGTH CURVE25519_KEY_LENGTH
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/** length of a public Ed25519 key */
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#define ED25519_PUBLIC_KEY_LENGTH 32
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/** length of a private Ed25519 key */
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#define ED25519_PRIVATE_KEY_LENGTH 64
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/** amount of random data required to create a Ed25519 keypair */
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#define ED25519_RANDOM_LENGTH 32
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/** length of an Ed25519 signature */
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#define ED25519_SIGNATURE_LENGTH 64
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/** length of an aes256 key */
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#define AES256_KEY_LENGTH 32
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/** length of an aes256 initialisation vector */
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#define AES256_IV_LENGTH 16
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struct _olm_aes256_key {
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uint8_t key[AES256_KEY_LENGTH];
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};
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struct _olm_aes256_iv {
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uint8_t iv[AES256_IV_LENGTH];
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};
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struct _olm_curve25519_public_key {
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uint8_t public_key[CURVE25519_KEY_LENGTH];
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};
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struct _olm_curve25519_private_key {
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uint8_t private_key[CURVE25519_KEY_LENGTH];
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};
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struct _olm_curve25519_key_pair {
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struct _olm_curve25519_public_key public_key;
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struct _olm_curve25519_private_key private_key;
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};
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struct _olm_ed25519_public_key {
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uint8_t public_key[ED25519_PUBLIC_KEY_LENGTH];
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};
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struct _olm_ed25519_private_key {
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uint8_t private_key[ED25519_PRIVATE_KEY_LENGTH];
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};
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struct _olm_ed25519_key_pair {
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struct _olm_ed25519_public_key public_key;
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struct _olm_ed25519_private_key private_key;
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};
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/** The length of output the aes_encrypt_cbc function will write */
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size_t _olm_crypto_aes_encrypt_cbc_length(
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size_t input_length
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);
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/** Encrypts the input using AES256 in CBC mode with PKCS#7 padding.
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* The output buffer must be big enough to hold the output including padding */
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void _olm_crypto_aes_encrypt_cbc(
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const struct _olm_aes256_key *key,
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const struct _olm_aes256_iv *iv,
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const uint8_t *input, size_t input_length,
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uint8_t *output
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);
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/** Decrypts the input using AES256 in CBC mode. The output buffer must be at
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* least the same size as the input buffer. Returns the length of the plaintext
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* without padding on success or std::size_t(-1) if the padding is invalid.
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*/
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size_t _olm_crypto_aes_decrypt_cbc(
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const struct _olm_aes256_key *key,
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const struct _olm_aes256_iv *iv,
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uint8_t const * input, size_t input_length,
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uint8_t * output
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);
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/** Computes SHA-256 of the input. The output buffer must be a least
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* SHA256_OUTPUT_LENGTH (32) bytes long. */
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void _olm_crypto_sha256(
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uint8_t const * input, size_t input_length,
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uint8_t * output
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);
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/** HMAC: Keyed-Hashing for Message Authentication
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* http://tools.ietf.org/html/rfc2104
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* Computes HMAC-SHA-256 of the input for the key. The output buffer must
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* be at least SHA256_OUTPUT_LENGTH (32) bytes long. */
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void _olm_crypto_hmac_sha256(
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uint8_t const * key, size_t key_length,
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uint8_t const * input, size_t input_length,
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uint8_t * output
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);
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/** HMAC-based Key Derivation Function (HKDF)
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* https://tools.ietf.org/html/rfc5869
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* Derives key material from the input bytes. */
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void _olm_crypto_hkdf_sha256(
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uint8_t const * input, size_t input_length,
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uint8_t const * info, size_t info_length,
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uint8_t const * salt, size_t salt_length,
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uint8_t * output, size_t output_length
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);
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/** Generate a curve25519 key pair
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* random_32_bytes should be CURVE25519_RANDOM_LENGTH (32) bytes long.
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*/
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void _olm_crypto_curve25519_generate_key(
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uint8_t const * random_32_bytes,
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struct _olm_curve25519_key_pair *output
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);
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/** Create a shared secret using our private key and their public key.
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* The output buffer must be at least CURVE25519_SHARED_SECRET_LENGTH (32) bytes long.
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*/
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void _olm_crypto_curve25519_shared_secret(
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const struct _olm_curve25519_key_pair *our_key,
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const struct _olm_curve25519_public_key *their_key,
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uint8_t * output
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);
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/** Generate an ed25519 key pair
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* random_32_bytes should be ED25519_RANDOM_LENGTH (32) bytes long.
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*/
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void _olm_crypto_ed25519_generate_key(
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uint8_t const * random_bytes,
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struct _olm_ed25519_key_pair *output
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);
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/** Signs the message using our private key.
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*
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* The output buffer must be at least ED25519_SIGNATURE_LENGTH (64) bytes
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* long. */
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void _olm_crypto_ed25519_sign(
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const struct _olm_ed25519_key_pair *our_key,
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const uint8_t * message, size_t message_length,
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uint8_t * output
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);
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/** Verify an ed25519 signature
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* The signature input buffer must be ED25519_SIGNATURE_LENGTH (64) bytes long.
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* Returns non-zero if the signature is valid. */
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int _olm_crypto_ed25519_verify(
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const struct _olm_ed25519_public_key *their_key,
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const uint8_t * message, size_t message_length,
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const uint8_t * signature
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);
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#ifdef __cplusplus
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} // extern "C"
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#endif
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#endif /* OLM_CRYPTO_H_ */
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