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-rw-r--r--src/wallet/crypter.h26
1 files changed, 12 insertions, 14 deletions
diff --git a/src/wallet/crypter.h b/src/wallet/crypter.h
index 0948de42ef..1416ae7d02 100644
--- a/src/wallet/crypter.h
+++ b/src/wallet/crypter.h
@@ -18,13 +18,13 @@ const unsigned int WALLET_CRYPTO_IV_SIZE = 16;
/**
* Private key encryption is done based on a CMasterKey,
* which holds a salt and random encryption key.
- *
+ *
* CMasterKeys are encrypted using AES-256-CBC using a key
* derived using derivation method nDerivationMethod
* (0 == EVP_sha512()) and derivation iterations nDeriveIterations.
* vchOtherDerivationParameters is provided for alternative algorithms
* which may require more parameters (such as scrypt).
- *
+ *
* Wallet Private Keys are then encrypted using AES-256-CBC
* with the double-sha256 of the public key as the IV, and the
* master key's key as the encryption key (see keystore.[ch]).
@@ -164,28 +164,26 @@ public:
{
{
LOCK(cs_KeyStore);
- if (!IsCrypted())
+ if (!IsCrypted()) {
return CBasicKeyStore::HaveKey(address);
+ }
return mapCryptedKeys.count(address) > 0;
}
return false;
}
bool GetKey(const CKeyID &address, CKey& keyOut) const override;
bool GetPubKey(const CKeyID &address, CPubKey& vchPubKeyOut) const override;
- void GetKeys(std::set<CKeyID> &setAddress) const override
+ std::set<CKeyID> GetKeys() const override
{
- if (!IsCrypted())
- {
- CBasicKeyStore::GetKeys(setAddress);
- return;
+ LOCK(cs_KeyStore);
+ if (!IsCrypted()) {
+ return CBasicKeyStore::GetKeys();
}
- setAddress.clear();
- CryptedKeyMap::const_iterator mi = mapCryptedKeys.begin();
- while (mi != mapCryptedKeys.end())
- {
- setAddress.insert((*mi).first);
- mi++;
+ std::set<CKeyID> set_address;
+ for (const auto& mi : mapCryptedKeys) {
+ set_address.insert(mi.first);
}
+ return set_address;
}
/**