dbwrapper: Pass parent CDBWrapper into CDBBatch and CDBIterator
Pass parent wrapper directly instead of obfuscation key. This makes it possible for other databases which re-use this code to use other properties from the database. Add a namespace dbwrapper_private for private functions to be used only in dbwrapper.h/cpp and dbwrapper_tests.
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878bf480a3
commit
b69836d6ff
4 changed files with 44 additions and 30 deletions
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@ -136,12 +136,16 @@ bool CDBWrapper::IsEmpty()
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return !(it->Valid());
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return !(it->Valid());
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}
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}
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const std::vector<unsigned char>& CDBWrapper::GetObfuscateKey() const
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{
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return obfuscate_key;
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}
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CDBIterator::~CDBIterator() { delete piter; }
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CDBIterator::~CDBIterator() { delete piter; }
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bool CDBIterator::Valid() { return piter->Valid(); }
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bool CDBIterator::Valid() { return piter->Valid(); }
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void CDBIterator::SeekToFirst() { piter->SeekToFirst(); }
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void CDBIterator::SeekToFirst() { piter->SeekToFirst(); }
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void CDBIterator::Next() { piter->Next(); }
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void CDBIterator::Next() { piter->Next(); }
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namespace dbwrapper_private {
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const std::vector<unsigned char>& GetObfuscateKey(const CDBWrapper &w)
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{
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return w.obfuscate_key;
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}
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};
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@ -25,20 +25,34 @@ public:
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void HandleError(const leveldb::Status& status);
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void HandleError(const leveldb::Status& status);
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class CDBWrapper;
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/** These should be considered an implementation detail of the specific database.
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*/
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namespace dbwrapper_private {
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/** Work around circular dependency, as well as for testing in dbwrapper_tests.
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* Database obfuscation should be considered an implementation detail of the
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* specific database.
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*/
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const std::vector<unsigned char>& GetObfuscateKey(const CDBWrapper &w);
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};
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/** Batch of changes queued to be written to a CDBWrapper */
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/** Batch of changes queued to be written to a CDBWrapper */
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class CDBBatch
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class CDBBatch
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{
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{
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friend class CDBWrapper;
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friend class CDBWrapper;
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private:
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private:
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const CDBWrapper &parent;
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leveldb::WriteBatch batch;
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leveldb::WriteBatch batch;
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const std::vector<unsigned char> *obfuscate_key;
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public:
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public:
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/**
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/**
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* @param[in] obfuscate_key If passed, XOR data with this key.
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* @param[in] parent CDBWrapper that this batch is to be submitted to
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*/
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*/
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CDBBatch(const std::vector<unsigned char> *obfuscate_key) : obfuscate_key(obfuscate_key) { };
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CDBBatch(const CDBWrapper &parent) : parent(parent) { };
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template <typename K, typename V>
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template <typename K, typename V>
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void Write(const K& key, const V& value)
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void Write(const K& key, const V& value)
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@ -51,7 +65,7 @@ public:
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CDataStream ssValue(SER_DISK, CLIENT_VERSION);
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CDataStream ssValue(SER_DISK, CLIENT_VERSION);
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ssValue.reserve(ssValue.GetSerializeSize(value));
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ssValue.reserve(ssValue.GetSerializeSize(value));
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ssValue << value;
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ssValue << value;
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ssValue.Xor(*obfuscate_key);
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ssValue.Xor(dbwrapper_private::GetObfuscateKey(parent));
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leveldb::Slice slValue(&ssValue[0], ssValue.size());
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leveldb::Slice slValue(&ssValue[0], ssValue.size());
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batch.Put(slKey, slValue);
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batch.Put(slKey, slValue);
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@ -72,17 +86,17 @@ public:
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class CDBIterator
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class CDBIterator
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{
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{
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private:
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private:
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const CDBWrapper &parent;
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leveldb::Iterator *piter;
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leveldb::Iterator *piter;
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const std::vector<unsigned char> *obfuscate_key;
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public:
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public:
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/**
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/**
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* @param[in] parent Parent CDBWrapper instance.
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* @param[in] piterIn The original leveldb iterator.
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* @param[in] piterIn The original leveldb iterator.
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* @param[in] obfuscate_key If passed, XOR data with this key.
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*/
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*/
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CDBIterator(leveldb::Iterator *piterIn, const std::vector<unsigned char>* obfuscate_key) :
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CDBIterator(const CDBWrapper &parent, leveldb::Iterator *piterIn) :
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piter(piterIn), obfuscate_key(obfuscate_key) { };
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parent(parent), piter(piterIn) { };
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~CDBIterator();
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~CDBIterator();
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bool Valid();
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bool Valid();
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@ -118,7 +132,7 @@ public:
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leveldb::Slice slValue = piter->value();
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leveldb::Slice slValue = piter->value();
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try {
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try {
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CDataStream ssValue(slValue.data(), slValue.data() + slValue.size(), SER_DISK, CLIENT_VERSION);
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CDataStream ssValue(slValue.data(), slValue.data() + slValue.size(), SER_DISK, CLIENT_VERSION);
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ssValue.Xor(*obfuscate_key);
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ssValue.Xor(dbwrapper_private::GetObfuscateKey(parent));
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ssValue >> value;
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ssValue >> value;
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} catch (const std::exception&) {
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} catch (const std::exception&) {
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return false;
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return false;
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@ -134,6 +148,7 @@ public:
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class CDBWrapper
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class CDBWrapper
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{
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{
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friend const std::vector<unsigned char>& dbwrapper_private::GetObfuscateKey(const CDBWrapper &w);
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private:
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private:
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//! custom environment this database is using (may be NULL in case of default environment)
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//! custom environment this database is using (may be NULL in case of default environment)
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leveldb::Env* penv;
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leveldb::Env* penv;
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@ -208,7 +223,7 @@ public:
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template <typename K, typename V>
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template <typename K, typename V>
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bool Write(const K& key, const V& value, bool fSync = false)
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bool Write(const K& key, const V& value, bool fSync = false)
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{
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{
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CDBBatch batch(&obfuscate_key);
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CDBBatch batch(*this);
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batch.Write(key, value);
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batch.Write(key, value);
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return WriteBatch(batch, fSync);
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return WriteBatch(batch, fSync);
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}
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}
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@ -235,7 +250,7 @@ public:
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template <typename K>
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template <typename K>
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bool Erase(const K& key, bool fSync = false)
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bool Erase(const K& key, bool fSync = false)
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{
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{
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CDBBatch batch(&obfuscate_key);
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CDBBatch batch(*this);
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batch.Erase(key);
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batch.Erase(key);
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return WriteBatch(batch, fSync);
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return WriteBatch(batch, fSync);
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}
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}
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@ -250,24 +265,19 @@ public:
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bool Sync()
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bool Sync()
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{
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{
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CDBBatch batch(&obfuscate_key);
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CDBBatch batch(*this);
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return WriteBatch(batch, true);
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return WriteBatch(batch, true);
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}
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}
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CDBIterator *NewIterator()
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CDBIterator *NewIterator()
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{
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{
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return new CDBIterator(pdb->NewIterator(iteroptions), &obfuscate_key);
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return new CDBIterator(*this, pdb->NewIterator(iteroptions));
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}
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}
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/**
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/**
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* Return true if the database managed by this class contains no entries.
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* Return true if the database managed by this class contains no entries.
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*/
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*/
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bool IsEmpty();
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bool IsEmpty();
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/**
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* Accessor for obfuscate_key.
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*/
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const std::vector<unsigned char>& GetObfuscateKey() const;
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};
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};
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#endif // BITCOIN_DBWRAPPER_H
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#endif // BITCOIN_DBWRAPPER_H
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@ -39,7 +39,7 @@ BOOST_AUTO_TEST_CASE(dbwrapper)
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uint256 res;
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uint256 res;
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// Ensure that we're doing real obfuscation when obfuscate=true
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// Ensure that we're doing real obfuscation when obfuscate=true
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BOOST_CHECK(obfuscate != is_null_key(dbw.GetObfuscateKey()));
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BOOST_CHECK(obfuscate != is_null_key(dbwrapper_private::GetObfuscateKey(dbw)));
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BOOST_CHECK(dbw.Write(key, in));
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BOOST_CHECK(dbw.Write(key, in));
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BOOST_CHECK(dbw.Read(key, res));
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BOOST_CHECK(dbw.Read(key, res));
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@ -64,7 +64,7 @@ BOOST_AUTO_TEST_CASE(dbwrapper_batch)
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uint256 in3 = GetRandHash();
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uint256 in3 = GetRandHash();
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uint256 res;
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uint256 res;
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CDBBatch batch(&dbw.GetObfuscateKey());
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CDBBatch batch(dbw);
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batch.Write(key, in);
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batch.Write(key, in);
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batch.Write(key2, in2);
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batch.Write(key2, in2);
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@ -156,7 +156,7 @@ BOOST_AUTO_TEST_CASE(existing_data_no_obfuscate)
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BOOST_CHECK_EQUAL(res2.ToString(), in.ToString());
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BOOST_CHECK_EQUAL(res2.ToString(), in.ToString());
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BOOST_CHECK(!odbw.IsEmpty()); // There should be existing data
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BOOST_CHECK(!odbw.IsEmpty()); // There should be existing data
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BOOST_CHECK(is_null_key(odbw.GetObfuscateKey())); // The key should be an empty string
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BOOST_CHECK(is_null_key(dbwrapper_private::GetObfuscateKey(odbw))); // The key should be an empty string
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uint256 in2 = GetRandHash();
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uint256 in2 = GetRandHash();
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uint256 res3;
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uint256 res3;
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@ -193,7 +193,7 @@ BOOST_AUTO_TEST_CASE(existing_data_reindex)
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// Check that the key/val we wrote with unobfuscated wrapper doesn't exist
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// Check that the key/val we wrote with unobfuscated wrapper doesn't exist
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uint256 res2;
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uint256 res2;
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BOOST_CHECK(!odbw.Read(key, res2));
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BOOST_CHECK(!odbw.Read(key, res2));
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BOOST_CHECK(!is_null_key(odbw.GetObfuscateKey()));
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BOOST_CHECK(!is_null_key(dbwrapper_private::GetObfuscateKey(odbw)));
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uint256 in2 = GetRandHash();
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uint256 in2 = GetRandHash();
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uint256 res3;
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uint256 res3;
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@ -49,7 +49,7 @@ uint256 CCoinsViewDB::GetBestBlock() const {
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}
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}
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bool CCoinsViewDB::BatchWrite(CCoinsMap &mapCoins, const uint256 &hashBlock) {
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bool CCoinsViewDB::BatchWrite(CCoinsMap &mapCoins, const uint256 &hashBlock) {
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CDBBatch batch(&db.GetObfuscateKey());
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CDBBatch batch(db);
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size_t count = 0;
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size_t count = 0;
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size_t changed = 0;
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size_t changed = 0;
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for (CCoinsMap::iterator it = mapCoins.begin(); it != mapCoins.end();) {
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for (CCoinsMap::iterator it = mapCoins.begin(); it != mapCoins.end();) {
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@ -139,7 +139,7 @@ void CCoinsViewDBCursor::Next()
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}
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}
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bool CBlockTreeDB::WriteBatchSync(const std::vector<std::pair<int, const CBlockFileInfo*> >& fileInfo, int nLastFile, const std::vector<const CBlockIndex*>& blockinfo) {
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bool CBlockTreeDB::WriteBatchSync(const std::vector<std::pair<int, const CBlockFileInfo*> >& fileInfo, int nLastFile, const std::vector<const CBlockIndex*>& blockinfo) {
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CDBBatch batch(&GetObfuscateKey());
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CDBBatch batch(*this);
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for (std::vector<std::pair<int, const CBlockFileInfo*> >::const_iterator it=fileInfo.begin(); it != fileInfo.end(); it++) {
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for (std::vector<std::pair<int, const CBlockFileInfo*> >::const_iterator it=fileInfo.begin(); it != fileInfo.end(); it++) {
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batch.Write(make_pair(DB_BLOCK_FILES, it->first), *it->second);
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batch.Write(make_pair(DB_BLOCK_FILES, it->first), *it->second);
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}
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}
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@ -155,7 +155,7 @@ bool CBlockTreeDB::ReadTxIndex(const uint256 &txid, CDiskTxPos &pos) {
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}
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}
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bool CBlockTreeDB::WriteTxIndex(const std::vector<std::pair<uint256, CDiskTxPos> >&vect) {
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bool CBlockTreeDB::WriteTxIndex(const std::vector<std::pair<uint256, CDiskTxPos> >&vect) {
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CDBBatch batch(&GetObfuscateKey());
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CDBBatch batch(*this);
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for (std::vector<std::pair<uint256,CDiskTxPos> >::const_iterator it=vect.begin(); it!=vect.end(); it++)
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for (std::vector<std::pair<uint256,CDiskTxPos> >::const_iterator it=vect.begin(); it!=vect.end(); it++)
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batch.Write(make_pair(DB_TXINDEX, it->first), it->second);
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batch.Write(make_pair(DB_TXINDEX, it->first), it->second);
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return WriteBatch(batch);
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return WriteBatch(batch);
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