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hook_crypto.c
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hook_crypto.c
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/*
Cuckoo Sandbox - Automated Malware Analysis
Copyright (C) 2010-2015 Cuckoo Sandbox Developers, Optiv, Inc. ([email protected])
This program is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#include <stdio.h>
#include "ntapi.h"
#include <wincrypt.h>
#include "hooking.h"
#include "log.h"
HOOKDEF(BOOL, WINAPI, CryptAcquireContextA,
_Out_ HCRYPTPROV *phProv,
_In_ LPCSTR pszContainer,
_In_ LPCSTR pszProvider,
_In_ DWORD dwProvType,
_In_ DWORD dwFlags
) {
BOOL ret = Old_CryptAcquireContextA(phProv, pszContainer, pszProvider, dwProvType, dwFlags);
LOQ_bool("crypto", "ssh", "Container", pszContainer, "Provider", pszProvider, "Flags", dwFlags);
return ret;
}
HOOKDEF(BOOL, WINAPI, CryptAcquireContextW,
_Out_ HCRYPTPROV *phProv,
_In_ LPCWSTR pszContainer,
_In_ LPCWSTR pszProvider,
_In_ DWORD dwProvType,
_In_ DWORD dwFlags
) {
BOOL ret = Old_CryptAcquireContextW(phProv, pszContainer, pszProvider, dwProvType, dwFlags);
LOQ_bool("crypto", "uuh", "Container", pszContainer, "Provider", pszProvider, "Flags", dwFlags);
return ret;
}
HOOKDEF(BOOL, WINAPI, CryptProtectData,
_In_ DATA_BLOB *pDataIn,
_In_ LPCWSTR szDataDescr,
_In_ DATA_BLOB *pOptionalEntropy,
_In_ PVOID pvReserved,
_In_opt_ CRYPTPROTECT_PROMPTSTRUCT *pPromptStruct,
_In_ DWORD dwFlags,
_Out_ DATA_BLOB *pDataOut
) {
BOOL ret;
ENSURE_STRUCT(pDataIn, DATA_BLOB);
ret = 1;
LOQ_bool("crypto", "b", "Buffer", pDataIn->cbData, pDataIn->pbData);
return Old_CryptProtectData(pDataIn, szDataDescr, pOptionalEntropy,
pvReserved, pPromptStruct, dwFlags, pDataOut);
}
HOOKDEF(BOOL, WINAPI, CryptUnprotectData,
_In_ DATA_BLOB *pDataIn,
_Out_opt_ LPWSTR *ppszDataDescr,
_In_opt_ DATA_BLOB *pOptionalEntropy,
_Reserved_ PVOID pvReserved,
_In_opt_ CRYPTPROTECT_PROMPTSTRUCT *pPromptStruct,
_In_ DWORD dwFlags,
_Out_ DATA_BLOB *pDataOut
) {
BOOL ret;
DATA_BLOB _pOptionalEntropy;
ENSURE_STRUCT(pDataOut, DATA_BLOB);
memset(&_pOptionalEntropy, 0, sizeof(_pOptionalEntropy));
if (pOptionalEntropy == NULL)
pOptionalEntropy = &_pOptionalEntropy;
ret = Old_CryptUnprotectData(pDataIn, ppszDataDescr,
pOptionalEntropy, pvReserved, pPromptStruct, dwFlags, pDataOut);
LOQ_bool("crypto", "bb", "Entropy", pOptionalEntropy->cbData, pOptionalEntropy->pbData,
"Buffer", pDataOut->cbData, pDataOut->pbData);
return ret;
}
HOOKDEF(BOOL, WINAPI, CryptProtectMemory,
_Inout_ LPVOID pData,
_In_ DWORD cbData,
_In_ DWORD dwFlags
) {
BOOL ret = 1;
LOQ_bool("crypto", "bi", "Buffer", cbData, pData, "Flags", dwFlags);
ret = Old_CryptProtectMemory(pData, cbData, dwFlags);
disable_tail_call_optimization();
return ret;
}
HOOKDEF(BOOL, WINAPI, CryptUnprotectMemory,
_Inout_ LPVOID pData,
_In_ DWORD cbData,
_In_ DWORD dwFlags
) {
BOOL ret = Old_CryptUnprotectMemory(pData, cbData, dwFlags);
LOQ_bool("crypto", "bi", "Buffer", cbData, pData, "Flags", dwFlags);
return ret;
}
HOOKDEF(BOOL, WINAPI, CryptDecrypt,
_In_ HCRYPTKEY hKey,
_In_ HCRYPTHASH hHash,
_In_ BOOL Final,
_In_ DWORD dwFlags,
_Inout_ BYTE *pbData,
_Inout_ DWORD *pdwDataLen
) {
BOOL ret = Old_CryptDecrypt(hKey, hHash, Final, dwFlags, pbData,
pdwDataLen);
LOQ_bool("crypto", "ppBi", "CryptKey", hKey, "CryptHash", hHash,
"Buffer", pdwDataLen, pbData, "Final", Final);
return ret;
}
HOOKDEF(BOOL, WINAPI, CryptEncrypt,
_In_ HCRYPTKEY hKey,
_In_ HCRYPTHASH hHash,
_In_ BOOL Final,
_In_ DWORD dwFlags,
_Inout_ BYTE *pbData,
_Inout_ DWORD *pdwDataLen,
_In_ DWORD dwBufLen
) {
BOOL ret = 1;
LOQ_bool("crypto", "ppbi", "CryptKey", hKey, "CryptHash", hHash,
"Buffer", dwBufLen, pbData, "Final", Final);
ret = Old_CryptEncrypt(hKey, hHash, Final, dwFlags, pbData, pdwDataLen, dwBufLen);
disable_tail_call_optimization();
return ret;
}
HOOKDEF(BOOL, WINAPI, CryptHashData,
_In_ HCRYPTHASH hHash,
_In_ BYTE *pbData,
_In_ DWORD dwDataLen,
_In_ DWORD dwFlags
) {
BOOL ret = Old_CryptHashData(hHash, pbData, dwDataLen, dwFlags);
LOQ_bool("crypto", "pc", "CryptHash", hHash, "Buffer", dwDataLen, pbData);
return ret;
}
HOOKDEF(BOOL, WINAPI, CryptDecodeMessage,
_In_ DWORD dwMsgTypeFlags,
_In_ PCRYPT_DECRYPT_MESSAGE_PARA pDecryptPara,
_In_ PCRYPT_VERIFY_MESSAGE_PARA pVerifyPara,
_In_ DWORD dwSignerIndex,
_In_ const BYTE *pbEncodedBlob,
_In_ DWORD cbEncodedBlob,
_In_ DWORD dwPrevInnerContentType,
_Out_opt_ DWORD *pdwMsgType,
_Out_opt_ DWORD *pdwInnerContentType,
_Out_opt_ BYTE *pbDecoded,
_Inout_opt_ DWORD *pcbDecoded,
_Out_opt_ PCCERT_CONTEXT *ppXchgCert,
_Out_opt_ PCCERT_CONTEXT *ppSignerCert
) {
BOOL ret = Old_CryptDecodeMessage(dwMsgTypeFlags, pDecryptPara,
pVerifyPara, dwSignerIndex, pbEncodedBlob, cbEncodedBlob,
dwPrevInnerContentType, pdwMsgType, pdwInnerContentType,
pbDecoded, pcbDecoded, ppXchgCert, ppSignerCert);
LOQ_bool("crypto", "B", "Buffer", pcbDecoded, pbDecoded);
return ret;
}
HOOKDEF(BOOL, WINAPI, CryptDecryptMessage,
_In_ PCRYPT_DECRYPT_MESSAGE_PARA pDecryptPara,
_In_ const BYTE *pbEncryptedBlob,
_In_ DWORD cbEncryptedBlob,
_Out_opt_ BYTE *pbDecrypted,
_Inout_opt_ DWORD *pcbDecrypted,
_Out_opt_ PCCERT_CONTEXT *ppXchgCert
) {
BOOL ret = Old_CryptDecryptMessage(pDecryptPara, pbEncryptedBlob,
cbEncryptedBlob, pbDecrypted, pcbDecrypted, ppXchgCert);
LOQ_bool("crypto", "B", "Buffer", pcbDecrypted, pbDecrypted);
return ret;
}
HOOKDEF(BOOL, WINAPI, CryptEncryptMessage,
_In_ PCRYPT_ENCRYPT_MESSAGE_PARA pEncryptPara,
_In_ DWORD cRecipientCert,
_In_ PCCERT_CONTEXT rgpRecipientCert[],
_In_ const BYTE *pbToBeEncrypted,
_In_ DWORD cbToBeEncrypted,
_Out_ BYTE *pbEncryptedBlob,
_Inout_ DWORD *pcbEncryptedBlob
) {
BOOL ret = 1;
LOQ_bool("crypto", "b", "Buffer", cbToBeEncrypted, pbToBeEncrypted);
ret = Old_CryptEncryptMessage(pEncryptPara, cRecipientCert,
rgpRecipientCert, pbToBeEncrypted, cbToBeEncrypted, pbEncryptedBlob,
pcbEncryptedBlob);
disable_tail_call_optimization();
return ret;
}
HOOKDEF(BOOL, WINAPI, CryptHashMessage,
_In_ PCRYPT_HASH_MESSAGE_PARA pHashPara,
_In_ BOOL fDetachedHash,
_In_ DWORD cToBeHashed,
_In_ const BYTE *rgpbToBeHashed[],
_In_ DWORD rgcbToBeHashed[],
_Out_ BYTE *pbHashedBlob,
_Inout_ DWORD *pcbHashedBlob,
_Out_opt_ BYTE *pbComputedHash,
_Inout_opt_ DWORD *pcbComputedHash
) {
DWORD length = 0;
DWORD i;
BOOL ret;
uint8_t *mem;
for (i = 0; i < cToBeHashed; i++) {
length += rgcbToBeHashed[i];
}
mem = malloc(length);
if(mem != NULL) {
unsigned int off = 0;
for (i = 0, off = 0; i < cToBeHashed; i++) {
memcpy(mem + off, rgpbToBeHashed[i], rgcbToBeHashed[i]);
off += rgcbToBeHashed[i];
}
}
ret = Old_CryptHashMessage(pHashPara, fDetachedHash, cToBeHashed,
rgpbToBeHashed, rgcbToBeHashed, pbHashedBlob, pcbHashedBlob,
pbComputedHash, pcbComputedHash);
LOQ_bool("crypto", "b", "Buffer", length, mem);
if(mem != NULL) {
free(mem);
}
return ret;
}
HOOKDEF(BOOL, WINAPI, CryptExportKey,
_In_ HCRYPTKEY hKey,
_In_ HCRYPTKEY hExpKey,
_In_ DWORD dwBlobType,
_In_ DWORD dwFlags,
_Out_ BYTE *pbData,
_Inout_ DWORD *pdwDataLen
) {
BOOL ret = Old_CryptExportKey(hKey, hExpKey, dwBlobType, dwFlags, pbData, pdwDataLen);
if (pbData && pdwDataLen)
LOQ_bool("crypto", "bihi", "Buffer", *pdwDataLen, pbData, "BlobType", dwBlobType, "Flags", dwFlags, "Length", *pdwDataLen);
return ret;
}
HOOKDEF(BOOL, WINAPI, CryptGenKey,
_In_ HCRYPTPROV hProv,
_In_ ALG_ID Algid,
_In_ DWORD dwFlags,
_Out_ HCRYPTKEY *phKey
) {
BOOL ret = Old_CryptGenKey(hProv, Algid, dwFlags, phKey);
LOQ_bool("crypto", "h", "Algid", Algid);
return ret;
}
HOOKDEF(BOOL, WINAPI, CryptCreateHash,
_In_ HCRYPTPROV hProv,
_In_ ALG_ID Algid,
_In_ HCRYPTKEY hKey,
_In_ DWORD dwFlags,
_Out_ HCRYPTHASH *phHash
) {
BOOL ret = Old_CryptCreateHash(hProv, Algid, hKey, dwFlags, phHash);
LOQ_bool("crypto", "h", "Algid", Algid);
return ret;
}
HOOKDEF(HRESULT, WINAPI, HTTPSCertificateTrust,
PVOID data // PCRYPT_PROVIDER_DATA
) {
BOOL ret = Old_HTTPSCertificateTrust(data);
LOQ_hresult("crypto", "");
return ret;
}
HOOKDEF(HRESULT, WINAPI, HTTPSFinalProv,
PVOID data // PCRYPT_PROVIDER_DATA
) {
BOOL ret = Old_HTTPSFinalProv(data);
LOQ_hresult("crypto", "");
return ret;
}
HOOKDEF(BOOL, WINAPI, CryptDecodeObjectEx,
_In_ DWORD dwCertEncodingType,
_In_ LPCSTR lpszStructType,
_In_ const BYTE *pbEncoded,
_In_ DWORD cbEncoded,
_In_ DWORD dwFlags,
_In_ PCRYPT_DECODE_PARA pDecodePara,
_Out_ void *pvStructInfo,
_Inout_ DWORD *pcbStructInfo
) {
BOOL ret = Old_CryptDecodeObjectEx(dwCertEncodingType, lpszStructType, pbEncoded, cbEncoded, dwFlags, pDecodePara, pvStructInfo, pcbStructInfo);
LOQ_bool("crypto", "hbh", "CertEncodingType", dwCertEncodingType, "Encoded", cbEncoded, pbEncoded, "Flags", dwFlags);
return ret;
}
HOOKDEF(BOOL, WINAPI, CryptImportPublicKeyInfo,
_In_ HCRYPTPROV hCryptProv,
_In_ DWORD dwCertEncodingType,
_In_ PCERT_PUBLIC_KEY_INFO pInfo,
_Out_ HCRYPTKEY *phKey
) {
BOOL ret = Old_CryptImportPublicKeyInfo(hCryptProv, dwCertEncodingType, pInfo, phKey);
LOQ_bool("crypto", "hsb", "CertEncodingType", dwCertEncodingType, "AlgOID", pInfo->Algorithm.pszObjId, "Blob", pInfo->PublicKey.cbData, pInfo->PublicKey.pbData);
return ret;
}
HOOKDEF(BOOL, WINAPI, CryptEnumProvidersA,
_In_ DWORD dwIndex,
_In_ DWORD *pdwReserved,
_In_ DWORD dwFlags,
_Out_ DWORD *pdwProvType,
_Out_ LPSTR pszProvName,
_Inout_ DWORD *pcbProvName
) {
BOOL ret = Old_CryptEnumProvidersA(dwIndex, pdwReserved, dwFlags, pdwProvType, pszProvName, pcbProvName);
LOQ_bool("crypto", "is", "Index", dwIndex, "ProviderName", pszProvName);
return ret;
}
HOOKDEF(BOOL, WINAPI, CryptEnumProvidersW,
_In_ DWORD dwIndex,
_In_ DWORD *pdwReserved,
_In_ DWORD dwFlags,
_Out_ DWORD *pdwProvType,
_Out_ LPWSTR pszProvName,
_Inout_ DWORD *pcbProvName
) {
BOOL ret = Old_CryptEnumProvidersW(dwIndex, pdwReserved, dwFlags, pdwProvType, pszProvName, pcbProvName);
LOQ_bool("crypto", "iu", "Index", dwIndex, "ProviderName", pszProvName);
return ret;
}