mirror of
https://github.com/dashpay/dash.git
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c12d3fd2cb
Signed-off-by: pasta <pasta@dashboost.org>
569 lines
18 KiB
C++
569 lines
18 KiB
C++
// Copyright (c) 2014-2020 The Dash Core developers
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// Distributed under the MIT/X11 software license, see the accompanying
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// file COPYING or http://www.opensource.org/licenses/mit-license.php.
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#include <keepass.h>
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#include <wallet/crypter.h>
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#include <clientversion.h>
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#include <protocol.h>
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#include <random.h>
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#include <rpc/protocol.h>
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// Necessary to prevent compile errors due to forward declaration of
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//CScript in serialize.h (included from crypter.h)
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#include <script/script.h>
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#include <script/standard.h>
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#include <util/system.h>
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#include <util/strencodings.h>
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#include <event2/event.h>
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#include <event2/http.h>
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#include <event2/buffer.h>
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#include <event2/keyvalq_struct.h>
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#include <openssl/bio.h>
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#include <openssl/evp.h>
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#include <openssl/buffer.h>
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#include <support/cleanse.h> // for OPENSSL_cleanse()
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const char* CKeePassIntegrator::KEEPASS_HTTP_HOST = "localhost";
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CKeePassIntegrator keePassInt;
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// Base64 decoding with secure memory allocation
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SecureString DecodeBase64Secure(const SecureString& sInput)
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{
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SecureString output;
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// Init openssl BIO with base64 filter and memory input
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BIO *b64, *mem;
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b64 = BIO_new(BIO_f_base64());
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BIO_set_flags(b64, BIO_FLAGS_BASE64_NO_NL); //Do not use newlines to flush buffer
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mem = BIO_new_mem_buf((void *) sInput.data(), sInput.size());
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BIO_push(b64, mem);
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// Prepare buffer to receive decoded data
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if(sInput.size() % 4 != 0) {
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throw std::runtime_error("Input length should be a multiple of 4");
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}
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size_t nMaxLen = sInput.size() / 4 * 3; // upper bound, guaranteed divisible by 4
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output.resize(nMaxLen);
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// Decode the string
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size_t nLen;
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nLen = BIO_read(b64, (void *) output.data(), sInput.size());
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output.resize(nLen);
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// Free memory
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BIO_free_all(b64);
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return output;
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}
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// Base64 encoding with secure memory allocation
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SecureString EncodeBase64Secure(const SecureString& sInput)
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{
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// Init openssl BIO with base64 filter and memory output
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BIO *b64, *mem;
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b64 = BIO_new(BIO_f_base64());
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BIO_set_flags(b64, BIO_FLAGS_BASE64_NO_NL); // No newlines in output
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mem = BIO_new(BIO_s_mem());
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BIO_push(b64, mem);
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// Decode the string
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BIO_write(b64, sInput.data(), sInput.size());
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(void) BIO_flush(b64);
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// Create output variable from buffer mem ptr
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BUF_MEM *bptr;
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BIO_get_mem_ptr(b64, &bptr);
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SecureString output(bptr->data, bptr->length);
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// Cleanse secure data buffer from memory
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memory_cleanse((void *) bptr->data, bptr->length);
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// Free memory
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BIO_free_all(b64);
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return output;
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}
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CKeePassIntegrator::CKeePassIntegrator()
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:sKeyBase64(" "), sKey(" "), sUrl(" ") // Prevent LockedPageManagerBase complaints
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{
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sKeyBase64.clear(); // Prevent LockedPageManagerBase complaints
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sKey.clear(); // Prevent LockedPageManagerBase complaints
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sUrl.clear(); // Prevent LockedPageManagerBase complaints
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bIsActive = false;
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nPort = DEFAULT_KEEPASS_HTTP_PORT;
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}
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// Initialize from application context
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void CKeePassIntegrator::init()
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{
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bIsActive = gArgs.GetBoolArg("-keepass", false);
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nPort = gArgs.GetArg("-keepassport", DEFAULT_KEEPASS_HTTP_PORT);
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sKeyBase64 = SecureString(gArgs.GetArg("-keepasskey", "").c_str());
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strKeePassId = gArgs.GetArg("-keepassid", "");
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strKeePassEntryName = gArgs.GetArg("-keepassname", "");
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// Convert key if available
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if(sKeyBase64.size() > 0)
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{
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sKey = DecodeBase64Secure(sKeyBase64);
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}
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// Construct url if available
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if(strKeePassEntryName.size() > 0)
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{
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sUrl = SecureString("http://");
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sUrl += SecureString(strKeePassEntryName.c_str());
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sUrl += SecureString("/");
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}
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}
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void CKeePassIntegrator::CKeePassRequest::addStrParameter(const std::string& strName, const std::string& strValue)
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{
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requestObj.pushKV(strName, strValue);
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}
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void CKeePassIntegrator::CKeePassRequest::addStrParameter(const std::string& strName, const SecureString& sValue)
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{
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std::string sCipherValue;
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if(!EncryptAES256(sKey, sValue, strIV, sCipherValue))
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{
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throw std::runtime_error("Unable to encrypt Verifier");
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}
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addStrParameter(strName, EncodeBase64(sCipherValue));
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}
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std::string CKeePassIntegrator::CKeePassRequest::getJson()
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{
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return requestObj.write();
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}
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void CKeePassIntegrator::CKeePassRequest::init()
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{
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SecureString sIVSecure = generateRandomKey(KEEPASS_CRYPTO_BLOCK_SIZE);
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strIV = std::string(sIVSecure.data(), sIVSecure.size());
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// Generate Nonce, Verifier and RequestType
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SecureString sNonceBase64Secure = EncodeBase64Secure(sIVSecure);
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addStrParameter("Nonce", std::string(sNonceBase64Secure.data(), sNonceBase64Secure.size())); // Plain
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addStrParameter("Verifier", sNonceBase64Secure); // Encoded
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addStrParameter("RequestType", strType);
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}
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void CKeePassIntegrator::CKeePassResponse::parseResponse(const std::string& strResponse)
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{
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UniValue responseValue;
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if(!responseValue.read(strResponse))
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{
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throw std::runtime_error("Unable to parse KeePassHttp response");
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}
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responseObj = responseValue;
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// retrieve main values
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bSuccess = responseObj["Success"].get_bool();
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strType = getStr("RequestType");
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strIV = DecodeBase64(getStr("Nonce"));
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}
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std::string CKeePassIntegrator::CKeePassResponse::getStr(const std::string& strName)
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{
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return responseObj[strName].get_str();
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}
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SecureString CKeePassIntegrator::CKeePassResponse::getSecureStr(const std::string& strName)
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{
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std::string strValueBase64Encrypted(responseObj[strName].get_str());
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SecureString sValue;
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try
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{
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sValue = decrypt(strValueBase64Encrypted);
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}
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catch (std::exception &e)
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{
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std::string strError = "Exception occurred while decrypting ";
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strError += strName + ": " + e.what();
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throw std::runtime_error(strError);
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}
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return sValue;
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}
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SecureString CKeePassIntegrator::CKeePassResponse::decrypt(const std::string& strValueBase64Encrypted)
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{
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std::string strValueEncrypted = DecodeBase64(strValueBase64Encrypted);
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SecureString sValue;
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if(!DecryptAES256(sKey, strValueEncrypted, strIV, sValue))
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{
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throw std::runtime_error("Unable to decrypt value.");
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}
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return sValue;
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}
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std::vector<CKeePassIntegrator::CKeePassEntry> CKeePassIntegrator::CKeePassResponse::getEntries()
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{
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std::vector<CKeePassEntry> vEntries;
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UniValue aEntries = responseObj["Entries"].get_array();
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for(size_t i = 0; i < aEntries.size(); i++)
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{
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SecureString sEntryUuid(decrypt(aEntries[i]["Uuid"].get_str().c_str()));
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SecureString sEntryName(decrypt(aEntries[i]["Name"].get_str().c_str()));
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SecureString sEntryLogin(decrypt(aEntries[i]["Login"].get_str().c_str()));
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SecureString sEntryPassword(decrypt(aEntries[i]["Password"].get_str().c_str()));
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CKeePassEntry entry(sEntryUuid, sEntryName, sEntryLogin, sEntryPassword);
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vEntries.push_back(entry);
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}
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return vEntries;
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}
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SecureString CKeePassIntegrator::generateRandomKey(size_t nSize)
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{
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// Generates random key
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SecureString sKey;
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sKey.resize(nSize);
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GetStrongRandBytes((unsigned char *) sKey.data(), nSize);
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return sKey;
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}
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// Construct POST body for RPC JSON call
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std::string CKeePassIntegrator::constructHTTPPost(const std::string& strMsg, const std::map<std::string,std::string>& mapRequestHeaders)
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{
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std::ostringstream streamOut;
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streamOut << "POST / HTTP/1.1\r\n"
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<< "User-Agent: dash-json-rpc/" << FormatFullVersion() << "\r\n"
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<< "Host: localhost\r\n"
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<< "Content-Type: application/json\r\n"
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<< "Content-Length: " << strMsg.size() << "\r\n"
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<< "Connection: close\r\n"
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<< "Accept: application/json\r\n";
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for (const auto& item : mapRequestHeaders)
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streamOut << item.first << ": " << item.second << "\r\n";
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streamOut << "\r\n" << strMsg;
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return streamOut.str();
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}
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/** Reply structure for request_done to fill in */
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struct HTTPReply
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{
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int nStatus;
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std::string strBody;
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};
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static void http_request_done(struct evhttp_request *req, void *ctx)
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{
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HTTPReply *reply = static_cast<HTTPReply*>(ctx);
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if (req == nullptr) {
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/* If req is nullptr, it means an error occurred while connecting, but
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* I'm not sure how to find out which one. We also don't really care.
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*/
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reply->nStatus = 0;
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return;
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}
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reply->nStatus = evhttp_request_get_response_code(req);
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struct evbuffer *buf = evhttp_request_get_input_buffer(req);
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if (buf)
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{
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size_t size = evbuffer_get_length(buf);
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const char *data = (const char*)evbuffer_pullup(buf, size);
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if (data)
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reply->strBody = std::string(data, size);
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evbuffer_drain(buf, size);
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}
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}
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// Send RPC message to KeePassHttp
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void CKeePassIntegrator::doHTTPPost(const std::string& sRequest, int& nStatusRet, std::string& strResponseRet)
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{
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// Create event base
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struct event_base *base = event_base_new(); // TODO RAII
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if (!base)
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throw std::runtime_error("cannot create event_base");
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// Synchronously look up hostname
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struct evhttp_connection *evcon = evhttp_connection_base_new(base, nullptr, KEEPASS_HTTP_HOST, DEFAULT_KEEPASS_HTTP_PORT); // TODO RAII
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if (evcon == nullptr)
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throw std::runtime_error("create connection failed");
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evhttp_connection_set_timeout(evcon, KEEPASS_HTTP_CONNECT_TIMEOUT);
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HTTPReply response;
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struct evhttp_request *req = evhttp_request_new(http_request_done, (void*)&response); // TODO RAII
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if (req == nullptr)
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throw std::runtime_error("create http request failed");
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struct evkeyvalq *output_headers = evhttp_request_get_output_headers(req);
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assert(output_headers);
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evhttp_add_header(output_headers, "User-Agent", ("dash-json-rpc/" + FormatFullVersion()).c_str());
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evhttp_add_header(output_headers, "Host", KEEPASS_HTTP_HOST);
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evhttp_add_header(output_headers, "Accept", "application/json");
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evhttp_add_header(output_headers, "Content-Type", "application/json");
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evhttp_add_header(output_headers, "Connection", "close");
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LogPrint(BCLog::KEEPASS, "CKeePassIntegrator::doHTTPPost -- send POST data\n");
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struct evbuffer * output_buffer = evhttp_request_get_output_buffer(req);
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assert(output_buffer);
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evbuffer_add(output_buffer, sRequest.data(), sRequest.size());
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int r = evhttp_make_request(evcon, req, EVHTTP_REQ_POST, "/");
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if (r != 0) {
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evhttp_connection_free(evcon);
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event_base_free(base);
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throw std::runtime_error("send http request failed");
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}
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event_base_dispatch(base);
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evhttp_connection_free(evcon);
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event_base_free(base);
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nStatusRet = response.nStatus;
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if (response.nStatus == 0)
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throw std::runtime_error("couldn't connect to server");
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else if (response.nStatus >= 400 && response.nStatus != HTTP_BAD_REQUEST && response.nStatus != HTTP_NOT_FOUND && response.nStatus != HTTP_INTERNAL_SERVER_ERROR)
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throw std::runtime_error(strprintf("server returned HTTP error %d", response.nStatus));
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else if (response.strBody.empty())
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throw std::runtime_error("no response from server");
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// Parse reply
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UniValue valReply(UniValue::VSTR);
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if (!valReply.read(response.strBody))
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throw std::runtime_error("couldn't parse reply from server");
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const UniValue& reply = valReply.get_obj();
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if (reply.empty())
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throw std::runtime_error("expected reply to have result, error and id properties");
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strResponseRet = valReply.get_str();
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}
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void CKeePassIntegrator::rpcTestAssociation(bool bTriggerUnlock)
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{
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CKeePassRequest request(sKey, "test-associate");
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request.addStrParameter("TriggerUnlock", std::string(bTriggerUnlock ? "true" : "false"));
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int nStatus;
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std::string strResponse;
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doHTTPPost(request.getJson(), nStatus, strResponse);
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LogPrint(BCLog::KEEPASS, "CKeePassIntegrator::rpcTestAssociation -- send result: status: %d response: %s\n", nStatus, strResponse);
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}
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std::vector<CKeePassIntegrator::CKeePassEntry> CKeePassIntegrator::rpcGetLogins()
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{
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// Convert key format
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SecureString sKey = DecodeBase64Secure(sKeyBase64);
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CKeePassRequest request(sKey, "get-logins");
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request.addStrParameter("addStrParameter", std::string("true"));
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request.addStrParameter("TriggerUnlock", std::string("true"));
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request.addStrParameter("Id", strKeePassId);
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request.addStrParameter("Url", sUrl);
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int nStatus;
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std::string strResponse;
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doHTTPPost(request.getJson(), nStatus, strResponse);
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LogPrint(BCLog::KEEPASS, "CKeePassIntegrator::rpcGetLogins -- send result: status: %d\n", nStatus);
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if(nStatus != 200)
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{
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std::string strError = "Error returned by KeePassHttp: HTTP code ";
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strError += itostr(nStatus);
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strError += " - Response: ";
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strError += " response: [";
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strError += strResponse;
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strError += "]";
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throw std::runtime_error(strError);
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}
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// Parse the response
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CKeePassResponse response(sKey, strResponse);
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if(!response.getSuccess())
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{
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std::string strError = "KeePassHttp returned failure status";
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throw std::runtime_error(strError);
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}
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return response.getEntries();
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}
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void CKeePassIntegrator::rpcSetLogin(const SecureString& sWalletPass, const SecureString& sEntryId)
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{
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// Convert key format
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SecureString sKey = DecodeBase64Secure(sKeyBase64);
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CKeePassRequest request(sKey, "set-login");
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request.addStrParameter("Id", strKeePassId);
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request.addStrParameter("Url", sUrl);
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LogPrint(BCLog::KEEPASS, "CKeePassIntegrator::rpcSetLogin -- send Url: %s\n", sUrl);
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//request.addStrParameter("SubmitUrl", sSubmitUrl); // Is used to construct the entry title
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request.addStrParameter("Login", SecureString("dash"));
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request.addStrParameter("Password", sWalletPass);
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if(sEntryId.size() != 0)
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{
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request.addStrParameter("Uuid", sEntryId); // Update existing
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}
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int nStatus;
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std::string strResponse;
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doHTTPPost(request.getJson(), nStatus, strResponse);
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LogPrint(BCLog::KEEPASS, "CKeePassIntegrator::rpcSetLogin -- send result: status: %d response: %s\n", nStatus, strResponse);
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if(nStatus != 200)
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{
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std::string strError = "Error returned: HTTP code ";
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strError += itostr(nStatus);
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strError += " - Response: ";
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strError += " response: [";
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strError += strResponse;
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strError += "]";
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throw std::runtime_error(strError);
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}
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// Parse the response
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CKeePassResponse response(sKey, strResponse);
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if(!response.getSuccess())
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{
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throw std::runtime_error("KeePassHttp returned failure status");
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}
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}
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SecureString CKeePassIntegrator::generateKeePassKey()
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{
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SecureString sKey = generateRandomKey(KEEPASS_CRYPTO_KEY_SIZE);
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SecureString sKeyBase64 = EncodeBase64Secure(sKey);
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return sKeyBase64;
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}
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void CKeePassIntegrator::rpcAssociate(std::string& strIdRet, SecureString& sKeyBase64Ret)
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{
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sKey = generateRandomKey(KEEPASS_CRYPTO_KEY_SIZE);
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CKeePassRequest request(sKey, "associate");
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sKeyBase64Ret = EncodeBase64Secure(sKey);
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request.addStrParameter("Key", std::string(sKeyBase64Ret.data(), sKeyBase64Ret.size()));
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int nStatus;
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std::string strResponse;
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doHTTPPost(request.getJson(), nStatus, strResponse);
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LogPrint(BCLog::KEEPASS, "CKeePassIntegrator::rpcAssociate -- send result: status: %d response: %s\n", nStatus, strResponse);
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if(nStatus != 200)
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{
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std::string strError = "Error returned: HTTP code ";
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strError += itostr(nStatus);
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strError += " - Response: ";
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strError += " response: [";
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strError += strResponse;
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strError += "]";
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throw std::runtime_error(strError);
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}
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// Parse the response
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CKeePassResponse response(sKey, strResponse);
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if(!response.getSuccess())
|
|
{
|
|
throw std::runtime_error("KeePassHttp returned failure status");
|
|
}
|
|
|
|
// If we got here, we were successful. Return the information
|
|
strIdRet = response.getStr("Id");
|
|
}
|
|
|
|
// Retrieve wallet passphrase from KeePass
|
|
SecureString CKeePassIntegrator::retrievePassphrase()
|
|
{
|
|
|
|
// Check we have all required information
|
|
if(sKey.size() == 0)
|
|
{
|
|
throw std::runtime_error("keepasskey parameter is not defined. Please specify the configuration parameter.");
|
|
}
|
|
if(strKeePassId.size() == 0)
|
|
{
|
|
throw std::runtime_error("keepassid parameter is not defined. Please specify the configuration parameter.");
|
|
}
|
|
if(strKeePassEntryName == "")
|
|
{
|
|
throw std::runtime_error("keepassname parameter is not defined. Please specify the configuration parameter.");
|
|
}
|
|
|
|
// Retrieve matching logins from KeePass
|
|
std::vector<CKeePassIntegrator::CKeePassEntry> vecEntries = rpcGetLogins();
|
|
|
|
// Only accept one unique match
|
|
if(vecEntries.size() == 0)
|
|
{
|
|
throw std::runtime_error("KeePassHttp returned 0 matches, please verify the keepassurl setting.");
|
|
}
|
|
if(vecEntries.size() > 1)
|
|
{
|
|
throw std::runtime_error("KeePassHttp returned multiple matches, bailing out.");
|
|
}
|
|
|
|
return vecEntries[0].getPassword();
|
|
}
|
|
|
|
// Update wallet passphrase in keepass
|
|
void CKeePassIntegrator::updatePassphrase(const SecureString& sWalletPassphrase)
|
|
{
|
|
// Check we have all required information
|
|
if(sKey.size() == 0)
|
|
{
|
|
throw std::runtime_error("keepasskey parameter is not defined. Please specify the configuration parameter.");
|
|
}
|
|
if(strKeePassId.size() == 0)
|
|
{
|
|
throw std::runtime_error("keepassid parameter is not defined. Please specify the configuration parameter.");
|
|
}
|
|
if(strKeePassEntryName == "")
|
|
{
|
|
throw std::runtime_error("keepassname parameter is not defined. Please specify the configuration parameter.");
|
|
}
|
|
|
|
SecureString sEntryId("");
|
|
|
|
std::string strError;
|
|
|
|
// Lookup existing entry
|
|
std::vector<CKeePassIntegrator::CKeePassEntry> vecEntries = rpcGetLogins();
|
|
|
|
if(vecEntries.size() > 1)
|
|
{
|
|
throw std::runtime_error("KeePassHttp returned multiple matches, bailing out.");
|
|
}
|
|
|
|
if(vecEntries.size() == 1)
|
|
{
|
|
sEntryId = vecEntries[0].getUuid();
|
|
}
|
|
|
|
// Update wallet passphrase in KeePass
|
|
rpcSetLogin(sWalletPassphrase, sEntryId);
|
|
}
|