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authorWladimir J. van der Laan <laanwj@gmail.com>2011-07-15 16:08:38 +0200
committerWladimir J. van der Laan <laanwj@gmail.com>2011-07-15 16:42:44 +0200
commitd4211176208b5e4ae4a699c6ce3239447752cdb2 (patch)
tree2f1c91d534d1571e3a04c000d66590964bbc213e /src/keystore.h
parenta24b23622e504f5134dd8011af5bbe68cb9443f1 (diff)
parent5b0fc31b1c3d25039262ae2043474b35c14bd30b (diff)
Merge branch 'master' of https://github.com/bitcoin/bitcoin
Diffstat (limited to 'src/keystore.h')
-rw-r--r--src/keystore.h95
1 files changed, 90 insertions, 5 deletions
diff --git a/src/keystore.h b/src/keystore.h
index 6080d7d7f5..0dc09f05b8 100644
--- a/src/keystore.h
+++ b/src/keystore.h
@@ -4,27 +4,112 @@
#ifndef BITCOIN_KEYSTORE_H
#define BITCOIN_KEYSTORE_H
+#include "crypter.h"
+
class CKeyStore
{
public:
- std::map<std::vector<unsigned char>, CPrivKey> mapKeys;
- mutable CCriticalSection cs_mapKeys;
- virtual bool AddKey(const CKey& key);
+ mutable CCriticalSection cs_KeyStore;
+
+ virtual bool AddKey(const CKey& key) =0;
+ virtual bool HaveKey(const std::vector<unsigned char> &vchPubKey) const =0;
+ virtual bool GetPrivKey(const std::vector<unsigned char> &vchPubKey, CKey& keyOut) const =0;
+ virtual std::vector<unsigned char> GenerateNewKey();
+};
+
+typedef std::map<std::vector<unsigned char>, CPrivKey> KeyMap;
+
+class CBasicKeyStore : public CKeyStore
+{
+protected:
+ KeyMap mapKeys;
+
+public:
+ bool AddKey(const CKey& key);
bool HaveKey(const std::vector<unsigned char> &vchPubKey) const
{
return (mapKeys.count(vchPubKey) > 0);
}
- bool GetPrivKey(const std::vector<unsigned char> &vchPubKey, CPrivKey& keyOut) const
+ bool GetPrivKey(const std::vector<unsigned char> &vchPubKey, CKey& keyOut) const
{
std::map<std::vector<unsigned char>, CPrivKey>::const_iterator mi = mapKeys.find(vchPubKey);
if (mi != mapKeys.end())
{
- keyOut = (*mi).second;
+ keyOut.SetPrivKey((*mi).second);
return true;
}
return false;
}
+};
+
+class CCryptoKeyStore : public CBasicKeyStore
+{
+private:
+ std::map<std::vector<unsigned char>, std::vector<unsigned char> > mapCryptedKeys;
+
+ CKeyingMaterial vMasterKey;
+
+ // if fUseCrypto is true, mapKeys must be empty
+ // if fUseCrypto is false, vMasterKey must be empty
+ bool fUseCrypto;
+
+protected:
+ bool SetCrypted()
+ {
+ if (fUseCrypto)
+ return true;
+ if (!mapKeys.empty())
+ return false;
+ fUseCrypto = true;
+ return true;
+ }
+
+ // will encrypt previously unencrypted keys
+ bool EncryptKeys(CKeyingMaterial& vMasterKeyIn);
+
+ bool Unlock(const CKeyingMaterial& vMasterKeyIn);
+
+public:
+ mutable CCriticalSection cs_vMasterKey; //No guarantees master key wont get locked before you can use it, so lock this first
+
+ CCryptoKeyStore() : fUseCrypto(false)
+ {
+ }
+
+ bool IsCrypted() const
+ {
+ return fUseCrypto;
+ }
+
+ bool IsLocked() const
+ {
+ if (!IsCrypted())
+ return false;
+ return vMasterKey.empty();
+ }
+
+ bool Lock()
+ {
+ CRITICAL_BLOCK(cs_vMasterKey)
+ {
+ if (!SetCrypted())
+ return false;
+
+ vMasterKey.clear();
+ }
+ return true;
+ }
+
+ virtual bool AddCryptedKey(const std::vector<unsigned char> &vchPubKey, const std::vector<unsigned char> &vchCryptedSecret);
std::vector<unsigned char> GenerateNewKey();
+ bool AddKey(const CKey& key);
+ bool HaveKey(const std::vector<unsigned char> &vchPubKey) const
+ {
+ if (!IsCrypted())
+ return CBasicKeyStore::HaveKey(vchPubKey);
+ return mapCryptedKeys.count(vchPubKey) > 0;
+ }
+ bool GetPrivKey(const std::vector<unsigned char> &vchPubKey, CKey& keyOut) const;
};
#endif