362 lines
7.5 KiB
C++
362 lines
7.5 KiB
C++
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#include "stdafx.h"
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LPCWSTR g_CredentialBlobDescription = L"BITS job credentials";
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//------------------------------------------------------------------------
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CEncryptedBlob::CEncryptedBlob(
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void * Buffer,
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size_t Length,
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LPCWSTR Description
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)
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: m_Length( Length )
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{
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m_Blob.pbData = 0;
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m_Blob.cbData = 0;
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DATA_BLOB blobIn;
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blobIn.pbData = reinterpret_cast<BYTE *>( Buffer );
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blobIn.cbData = Length;
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// Encrypt the data.
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if (!CryptProtectData( &blobIn,
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Description,
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NULL,
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NULL,
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NULL,
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CRYPTPROTECT_UI_FORBIDDEN,
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&m_Blob))
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{
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ThrowLastError();
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}
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}
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CEncryptedBlob::CEncryptedBlob()
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{
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m_Length = 0;
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m_Blob.cbData = 0;
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m_Blob.pbData = 0;
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}
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CEncryptedBlob::~CEncryptedBlob()
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{
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if (m_Blob.pbData)
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{
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LocalFree( m_Blob.pbData );
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}
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}
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void
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CEncryptedBlob::Decrypt(
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void * Buffer,
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size_t Length
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)
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{
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if (Length < m_Length)
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{
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THROW_HRESULT( E_INVALIDARG );
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}
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DATA_BLOB blobOut;
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// Decrypt the data.
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if (!CryptUnprotectData( &m_Blob,
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NULL,
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NULL,
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NULL,
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NULL,
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CRYPTPROTECT_UI_FORBIDDEN,
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&blobOut))
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{
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ThrowLastError();
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}
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ASSERT( blobOut.cbData == Length );
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memcpy( Buffer, blobOut.pbData, Length );
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LocalFree( blobOut.pbData );
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}
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void CEncryptedBlob::Serialize( HANDLE hFile )
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{
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SafeWriteFile( hFile, m_Length );
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SafeWriteFile( hFile, m_Blob.cbData );
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SafeWriteFile( hFile, m_Blob.pbData, m_Blob.cbData );
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}
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void CEncryptedBlob::Unserialize( HANDLE hFile )
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{
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SafeReadFile( hFile, &m_Length );
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SafeReadFile( hFile, &m_Blob.cbData );
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m_Blob.pbData = static_cast<BYTE *> (LocalAlloc( LMEM_FIXED, m_Blob.cbData ));
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if (m_Blob.pbData == NULL)
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{
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throw ComError( E_OUTOFMEMORY );
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}
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SafeReadFile( hFile, m_Blob.pbData, m_Blob.cbData );
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}
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//------------------------------------------------------------------------
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CEncryptedCredentials::CEncryptedCredentials( const BG_AUTH_CREDENTIALS & cred )
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{
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size_t Length = CAuthCredentialsMarshaller::Size( &cred );
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auto_ptr<char> Buffer( new char[ Length ] );
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CMarshalCursor Cursor( Buffer.get(), Length );
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CAuthCredentialsMarshaller m1( Cursor, &cred );
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m_Blob = new CEncryptedBlob( Buffer.get(), Length, g_CredentialBlobDescription );
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}
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CEncryptedCredentials::~CEncryptedCredentials()
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{
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delete m_Blob;
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}
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BG_AUTH_CREDENTIALS * CEncryptedCredentials::Decrypt()
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{
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BG_AUTH_CREDENTIALS * cred = 0;
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size_t Length = m_Blob->GetLength();
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auto_ptr<char> Buffer( new char[ Length ] );
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m_Blob->Decrypt( Buffer.get(), Length );
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CMarshalCursor Cursor( Buffer.get(), Length );
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CAuthCredentialsUnmarshaller m1( Cursor, &cred );
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return cred;
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}
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//------------------------------------------------------------------------
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CCredentialsContainer::CCredentialsContainer()
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{
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}
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CCredentialsContainer::~CCredentialsContainer()
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{
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Clear();
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}
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void
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CCredentialsContainer::Clear()
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{
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Dictionary::iterator iter;
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//
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// Keep deleting the first element until the map is empty.
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//
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while (iter = m_Dictionary.begin(), (iter != m_Dictionary.end()))
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{
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CEncryptedCredentials * cred = iter->second;
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m_Dictionary.erase( iter );
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delete cred;
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}
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}
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HRESULT
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CCredentialsContainer::Update(
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const BG_AUTH_CREDENTIALS * Credentials
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)
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{
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try
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{
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KEY Key = MakeKey( Credentials->Target, Credentials->Scheme );
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CEncryptedCredentials * OldCredentials = m_Dictionary[ Key ];
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auto_ptr<CEncryptedCredentials> NewCredentials(new CEncryptedCredentials( *Credentials ));
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m_Dictionary[ Key ] = NewCredentials.get();
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NewCredentials.release();
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delete OldCredentials;
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return S_OK;
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}
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catch( ComError err )
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{
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return err.Error();
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}
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}
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HRESULT
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CCredentialsContainer::Remove(
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BG_AUTH_TARGET Target,
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BG_AUTH_SCHEME Scheme
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)
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{
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try
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{
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KEY Key = MakeKey( Target, Scheme );
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CEncryptedCredentials * OldCredentials = m_Dictionary[ Key ];
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m_Dictionary[ Key ] = 0;
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delete OldCredentials;
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if (OldCredentials == NULL)
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{
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return S_FALSE;
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}
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return S_OK;
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}
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catch( ComError err )
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{
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return err.Error();
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}
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}
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size_t CCredentialsContainer::GetSizeEstimate(
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const BG_AUTH_CREDENTIALS * Credentials
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) const
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{
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const Overhead = 1000;
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//
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// accurate sizing is expensive, so do something cheap and conservative.
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//
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size_t Size = Overhead;
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Size += CUnicodeStringMarshaller::Size( Credentials->Credentials.Basic.UserName );
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Size += CUnicodeStringMarshaller::Size( Credentials->Credentials.Basic.Password );
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return Size;
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}
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HRESULT CCredentialsContainer::Find(
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BG_AUTH_TARGET Target,
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BG_AUTH_SCHEME Scheme,
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BG_AUTH_CREDENTIALS ** pCredentials
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) const
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{
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*pCredentials = 0;
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KEY Key = MakeKey( Target, Scheme );
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try
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{
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// This is what we want, except that it doesn't work on a const container:
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// CEncryptedCredentials * cred = m_Dictionary[ Key ];
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CEncryptedCredentials * cred = 0;
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Dictionary::iterator iter = m_Dictionary.find( Key );
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if (iter != m_Dictionary.end())
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{
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cred = iter->second;
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}
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if (!cred)
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{
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return S_FALSE;
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}
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*pCredentials = cred->Decrypt();
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return S_OK;
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}
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catch( ComError err )
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{
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return err.Error();
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}
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}
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BG_AUTH_CREDENTIALS * CCredentialsContainer::FindFirst( Cookie & cookie ) const
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{
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cookie = m_Dictionary.begin();
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return FindNext( cookie );
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}
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BG_AUTH_CREDENTIALS * CCredentialsContainer::FindNext( Cookie & cookie ) const
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{
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while (cookie != m_Dictionary.end() && cookie->second == NULL)
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{
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++cookie;
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}
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if (cookie == m_Dictionary.end())
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{
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return NULL;
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}
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CEncryptedCredentials * EncryptedCredentials = cookie->second;
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BG_AUTH_CREDENTIALS * Credentials = EncryptedCredentials->Decrypt();
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++cookie;
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return Credentials;
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}
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void
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CCredentialsContainer::Serialize( HANDLE hFile )
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{
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Dictionary::iterator iter;
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long count = 0;
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for ( iter = m_Dictionary.begin(); iter != m_Dictionary.end(); ++iter)
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{
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KEY Key = iter->first;
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CEncryptedCredentials * cred = iter->second;
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if (cred)
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{
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count++;
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}
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}
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SafeWriteFile( hFile, count );
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for ( iter = m_Dictionary.begin(); iter != m_Dictionary.end(); ++iter)
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{
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KEY Key = iter->first;
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CEncryptedCredentials * cred = iter->second;
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if (!cred)
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{
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continue;
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}
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SafeWriteFile( hFile, Key );
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cred->Serialize( hFile );
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}
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}
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void
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CCredentialsContainer::Unserialize( HANDLE hFile )
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{
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long count;
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SafeReadFile( hFile, &count );
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while (count-- > 0)
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{
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KEY Key;
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auto_ptr<CEncryptedCredentials> cred( new CEncryptedCredentials );
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SafeReadFile( hFile, &Key );
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cred->Unserialize( hFile );
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m_Dictionary[ Key ] = cred.get();
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cred.release();
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}
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}
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