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https://github.com/irungentoo/toxcore.git
synced 2024-03-22 13:30:51 +08:00
Added encrypted save to toxcore, if sodium is used
Note, this is untested
This commit is contained in:
parent
1069b85ec4
commit
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116
toxcore/tox.c
116
toxcore/tox.c
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@ -854,3 +854,119 @@ int tox_load(Tox *tox, const uint8_t *data, uint32_t length)
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Messenger *m = tox;
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Messenger *m = tox;
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return messenger_load(m, data, length);
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return messenger_load(m, data, length);
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}
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}
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#ifndef VANILLA_NACL
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/* Only sodium has the necessary functions for this
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* Clients should consider alerting their users that, unlike plain data, if even one bit
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* becomes corrupted, the data will be entirely unrecoverable.
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* Ditto if they forget their password, there is no way to recover the data.
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*/
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/* return size of the messenger data (for encrypted saving). */
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uint32_t tox_encrypted_size(const Tox *tox)
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{
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return tox_size(tox) + crypto_box_MACBYTES + crypto_box_NONCEBYTES
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+ crypto_pwhash_scryptsalsa208sha256_SALTBYTES;
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}
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/* Save the messenger data encrypted with the given password.
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* data must be at least tox_encrypted_size().
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*
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* returns 0 on success
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* returns -1 on failure
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*/
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int tox_encrypted_save(const Tox *tox, uint8_t *data, uint8_t *passphrase, uint32_t pplength)
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{
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if (pplength == 0)
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return -1;
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/* First derive a key from the password */
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/* http://doc.libsodium.org/key_derivation/README.html */
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/* note that, according to the documentation, a generic pwhash interface will be created
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* once the pwhash competition (https://password-hashing.net/) is over */
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uint8_t salt[crypto_pwhash_scryptsalsa208sha256_SALTBYTES];
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uint8_t key[crypto_box_KEYBYTES];
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randombytes_buf(salt, sizeof salt);
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if (crypto_pwhash_scryptsalsa208sha256(
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key, sizeof(key), passphrase, pplength, salt,
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crypto_pwhash_scryptsalsa208sha256_OPSLIMIT_INTERACTIVE * 2, /* slightly stronger */
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crypto_pwhash_scryptsalsa208sha256_MEMLIMIT_INTERACTIVE) != 0)
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{ /* out of memory most likely */
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return -1;
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}
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randombytes_buf(passphrase, pplength); /* wipe plaintext pw */
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/* next get plain save data */
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uint32_t temp_size = tox_size(tox);
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uint8_t temp_data[temp_size];
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tox_save(tox, temp_data);
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/* now encrypt.
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* the output data consists of, in order:
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* salt, nonce, mac, enc_data
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* where the mac is automatically prepended by the encrypt()
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* the salt+nonce is called the prefix
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* I'm not sure what else I'm supposed to do with the salt and nonce, since we
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* need them to decrypt the data
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*/
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uint32_t prefix_size = crypto_box_NONCEBYTES+crypto_pwhash_scryptsalsa208sha256_SALTBYTES;
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uint8_t nonce[crypto_box_NONCEBYTES];
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random_nonce(nonce);
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if (encrypt_data_symmetric(key, nonce, temp_data, temp_size, data + prefix_size)
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!= temp_size + crypto_box_MACBYTES)
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{
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return -1;
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}
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/* add the prefix */
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memcpy(data, salt, crypto_pwhash_scryptsalsa208sha256_SALTBYTES);
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memcpy(data + crypto_pwhash_scryptsalsa208sha256_SALTBYTES, nonce, crypto_box_NONCEBYTES);
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return 0;
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}
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/* Load the messenger from encrypted data of size length.
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*
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* returns 0 on success
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* returns -1 on failure
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*/
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int tox_encrypted_load(Tox *tox, const uint8_t *data, uint32_t length, uint8_t *passphrase, uint32_t pplength)
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{
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if (length <= crypto_box_MACBYTES + crypto_box_NONCEBYTES + crypto_pwhash_scryptsalsa208sha256_SALTBYTES)
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return -1;
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uint32_t decrypt_length = length - crypto_box_MACBYTES - crypto_box_NONCEBYTES
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- crypto_pwhash_scryptsalsa208sha256_SALTBYTES;
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uint8_t salt[crypto_pwhash_scryptsalsa208sha256_SALTBYTES];
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uint8_t nonce[crypto_box_NONCEBYTES];
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memcpy(salt, data, crypto_pwhash_scryptsalsa208sha256_SALTBYTES);
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memcpy(nonce, data + crypto_pwhash_scryptsalsa208sha256_SALTBYTES, crypto_box_NONCEBYTES);
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/* derive the key */
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uint8_t key[crypto_box_KEYBYTES];
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if (crypto_pwhash_scryptsalsa208sha256(
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key, sizeof(key), passphrase, pplength, salt,
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crypto_pwhash_scryptsalsa208sha256_OPSLIMIT_INTERACTIVE * 2, /* slightly stronger */
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crypto_pwhash_scryptsalsa208sha256_MEMLIMIT_INTERACTIVE) != 0)
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{ /* out of memory most likely */
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return -1;
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}
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randombytes_buf(passphrase, pplength); /* wipe plaintext pw */
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/* decrypt the data */
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uint8_t temp_data[decrypt_length];
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if (decrypt_data_symmetric(key, nonce, data+crypto_pwhash_scryptsalsa208sha256_SALTBYTES+crypto_box_NONCEBYTES,
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decrypt_length + crypto_box_MACBYTES, temp_data)
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!= decrypt_length)
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{
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return -1;
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}
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return tox_load(tox, temp_data, decrypt_length);
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}
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#endif /* #ifndef VANILLA_NACL */
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@ -669,6 +669,34 @@ void tox_save(const Tox *tox, uint8_t *data);
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*/
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*/
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int tox_load(Tox *tox, const uint8_t *data, uint32_t length);
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int tox_load(Tox *tox, const uint8_t *data, uint32_t length);
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#ifndef VANILLA_NACL
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/* Only sodium has the necessary functions for this
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* Clients should consider alerting their users that, unlike plain data, if even one bit
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* becomes corrupted, the data will be entirely unrecoverable.
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* Ditto if they forget their password, there is no way to recover the data.
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*/
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/* return size of the messenger data (for encrypted saving). */
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uint32_t tox_encrypted_size(const Tox *tox);
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/* Save the messenger data encrypted with the given password.
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* data must be at least tox_encrypted_size().
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*
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* returns 0 on success
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* returns -1 on failure
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*/
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int tox_encrypted_save(const Tox *tox, uint8_t *data, uint8_t *passphrase, uint32_t pplength);
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/* Load the messenger from encrypted data of size length.
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*
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* returns 0 on success
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* returns -1 on failure
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*/
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int tox_encrypted_load(Tox *tox, const uint8_t *data, uint32_t length, uint8_t *passphrase, uint32_t pplength);
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#endif /* #ifndef VANILLA_NACL */
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#ifdef __cplusplus
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#ifdef __cplusplus
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}
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}
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#endif
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#endif
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