mirror of
https://github.com/donnaskiez/ac.git
synced 2024-11-21 22:24:08 +01:00
pointer encryption
This commit is contained in:
parent
bbcfa50cff
commit
9dd07ceae7
4 changed files with 310 additions and 150 deletions
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@ -11,24 +11,65 @@
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#include <immintrin.h>
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#include <bcrypt.h>
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#define XOR_KEY_1 0x1122334455667788
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#define XOR_KEY_2 0x0011223344556677
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#define XOR_KEY_3 0x5566778899AABBCC
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#define XOR_KEY_4 0x66778899AABBCCDD
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#define XOR_ROTATION_AMT 13
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FORCEINLINE
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STATIC
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UINT64
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CryptGenerateRandomKey64(_In_ PUINT32 Seed)
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{
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return ((UINT64)RtlRandomEx(Seed) << 32 | RtlRandomEx(Seed));
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}
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STATIC
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__m256i
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CryptGenerateSseXorKey()
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CryptXorKeyGenerate_m256i()
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{
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return _mm256_set_epi64x(XOR_KEY_1, XOR_KEY_2, XOR_KEY_3, XOR_KEY_4);
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UINT32 seed = (UINT32)__rdtsc();
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UINT64 key_1 = CryptGenerateRandomKey64(&seed);
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UINT64 key_2 = CryptGenerateRandomKey64(&seed);
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UINT64 key_3 = CryptGenerateRandomKey64(&seed);
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UINT64 key_4 = CryptGenerateRandomKey64(&seed);
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return _mm256_set_epi64x(key_1, key_2, key_3, key_4);
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}
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UINT64
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CryptXorKeyGenerate_uint64()
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{
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UINT32 seed = (UINT32)__rdtsc();
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return CryptGenerateRandomKey64(&seed);
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}
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VOID
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CryptEncryptPointer64(_Inout_ PUINT64 Pointer, _In_ UINT64 Key)
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{
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*Pointer = _rotl64(*Pointer ^ Key, XOR_ROTATION_AMT);
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}
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VOID
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CryptDecryptPointer64(_Inout_ PUINT64 Pointer, _In_ UINT64 Key)
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{
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*Pointer = _rotr64(*Pointer, XOR_ROTATION_AMT) ^ Key;
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}
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UINT64
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CryptDecryptPointerOutOfPlace64(_In_ PUINT64 Pointer, _In_ UINT64 Key)
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{
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volatile UINT64 temp = *Pointer;
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CryptDecryptPointer64(&temp, Key);
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return temp;
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}
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VOID
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CryptEncryptImportsArray(_In_ PUINT64 Array, _In_ UINT32 Entries)
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{
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__m256i* imports_key = GetDriverImportsKey();
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UINT32 block_size = sizeof(__m256i) / sizeof(UINT64);
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UINT32 block_count = Entries / block_size;
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*imports_key = CryptXorKeyGenerate_m256i();
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/*
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* Here we break down the import array into blocks of 32 bytes. Each
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* block is loaded into an SSE register, xored with the key, and then
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@ -43,7 +84,7 @@ CryptEncryptImportsArray(_In_ PUINT64 Array, _In_ UINT32 Entries)
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¤t_block, &Array[block_index * block_size], sizeof(__m256i));
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load_block = _mm256_loadu_si256(¤t_block);
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xored_block = _mm256_xor_si256(load_block, CryptGenerateSseXorKey());
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xored_block = _mm256_xor_si256(load_block, *imports_key);
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RtlCopyMemory(
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&Array[block_index * block_size], &xored_block, sizeof(__m256i));
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@ -56,12 +97,13 @@ __m256i
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CryptDecryptImportBlock(_In_ PUINT64 Array, _In_ UINT32 BlockIndex)
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{
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__m256i load_block = {0};
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__m256i* imports_key = GetDriverImportsKey();
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UINT32 block_size = sizeof(__m256i) / sizeof(UINT64);
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RtlCopyMemory(
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&load_block, &Array[BlockIndex * block_size], sizeof(__m256i));
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return _mm256_xor_si256(load_block, CryptGenerateSseXorKey());
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return _mm256_xor_si256(load_block, *imports_key);
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}
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FORCEINLINE
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@ -448,8 +490,6 @@ TpmGetPtpInterfaceType(_In_ PVOID Register,
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return status;
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}
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NTSTATUS
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TpmExtractEndorsementKey()
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{
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@ -34,4 +34,16 @@ CryptCloseProvider();
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NTSTATUS
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TpmExtractEndorsementKey();
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UINT64
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CryptXorKeyGenerate_uint64();
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VOID
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CryptEncryptPointer64(_Inout_ PUINT64 Pointer, _In_ UINT64 Key);
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VOID
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CryptDecryptPointer64(_Inout_ PUINT64 Pointer, _In_ UINT64 Key);
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UINT64
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CryptDecryptPointerOutOfPlace64(_In_ PUINT64 Pointer, _In_ UINT64 Key);
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#endif
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353
driver/driver.c
353
driver/driver.c
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@ -15,6 +15,8 @@
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#include "session.h"
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#include "hw.h"
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#include <immintrin.h>
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STATIC
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VOID
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DriverUnload(_In_ PDRIVER_OBJECT DriverObject);
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@ -104,12 +106,21 @@ typedef struct _DRIVER_CONFIG {
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BCRYPT_ALG_HANDLE aes_hash;
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BCRYPT_ALG_HANDLE sha256_hash;
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} DRIVER_CONFIG, *PDRIVER_CONFIG;
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UNICODE_STRING g_DeviceName = RTL_CONSTANT_STRING(L"\\Device\\DonnaAC");
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UNICODE_STRING g_DeviceSymbolicLink = RTL_CONSTANT_STRING(L"\\??\\DonnaAC");
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/* xor key generated on driver entry used to encrypt the imports array. Kept in
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* here since imports array is encrypted before the device extension is
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* allocated.*/
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__m256i g_ImportsKey;
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/* xor key generated that encrypts the DeviceObject->DeviceExtension aswell as
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* our g_DriverConfig pointer. Probably best not to even use the device
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* extension but whatevs */
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UINT64 g_DeviceExtensionKey;
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/*
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* Rather then getting the driver state from the device object passed to our
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* IOCTL handlers, store a pointer to the device extension here and abstract it
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#define POOL_TAG_CONFIG 'conf'
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STATIC
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VOID
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EncryptDeviceExtensionPointers(_In_ PDEVICE_OBJECT DeviceObject)
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{
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CryptEncryptPointer64(&g_DriverConfig, g_DeviceExtensionKey);
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CryptEncryptPointer64(&DeviceObject->DeviceExtension, g_DeviceExtensionKey);
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}
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STATIC
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VOID
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DecryptDeviceExtensionPointers(_In_ PDEVICE_OBJECT DeviceObject)
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{
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CryptDecryptPointer64(&g_DriverConfig, g_DeviceExtensionKey);
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CryptDecryptPointer64(&DeviceObject->DeviceExtension, g_DeviceExtensionKey);
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}
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PUINT64
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GetDriverDeviceExtensionKey()
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{
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return &g_DeviceExtensionKey;
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}
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__m256i*
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GetDriverImportsKey()
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{
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return &g_ImportsKey;
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}
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STATIC
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VOID
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SetDriverLoadedFlag()
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{
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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cfg->has_driver_loaded = TRUE;
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}
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BCRYPT_ALG_HANDLE*
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GetCryptHandle_Sha256()
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{
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return &g_DriverConfig->sha256_hash;
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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return &cfg->sha256_hash;
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}
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PRTL_HASHMAP
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GetProcessHashmap()
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{
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return &g_DriverConfig->process_hashmap;
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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return &cfg->process_hashmap;
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}
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BCRYPT_ALG_HANDLE*
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GetCryptHandle_AES()
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{
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return &g_DriverConfig->aes_hash;
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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return &cfg->aes_hash;
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}
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BOOLEAN
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HasDriverLoaded()
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{
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return g_DriverConfig->has_driver_loaded;
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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return cfg->has_driver_loaded;
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}
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VOID
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UnsetNmiInProgressFlag()
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{
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InterlockedDecrement(&g_DriverConfig->nmi_status);
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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InterlockedDecrement(&cfg->nmi_status);
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}
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BOOLEAN
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IsNmiInProgress()
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{
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/* if the initial value is true, we dont own the lock hence return false
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*/
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return InterlockedCompareExchange(
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&g_DriverConfig->nmi_status, TRUE, FALSE) == 0
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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return InterlockedCompareExchange(&cfg->nmi_status, TRUE, FALSE) == 0
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? FALSE
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: TRUE;
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}
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PSHARED_MAPPING
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GetSharedMappingConfig()
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{
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return &g_DriverConfig->mapping;
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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return &cfg->mapping;
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}
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VOID
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AcquireDriverConfigLock()
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{
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ImpKeAcquireGuardedMutex(&g_DriverConfig->lock);
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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ImpKeAcquireGuardedMutex(&cfg->lock);
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}
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VOID
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ReleaseDriverConfigLock()
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{
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ImpKeReleaseGuardedMutex(&g_DriverConfig->lock);
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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ImpKeReleaseGuardedMutex(&cfg->lock);
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}
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PUINT64
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GetApcContextArray()
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{
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return (PUINT64)g_DriverConfig->apc_contexts;
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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return (PUINT64)cfg->apc_contexts;
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}
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BOOLEAN
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IsDriverUnloading()
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{
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return InterlockedExchange(&g_DriverConfig->unload_in_progress,
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g_DriverConfig->unload_in_progress);
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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return InterlockedExchange(&cfg->unload_in_progress,
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cfg->unload_in_progress);
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}
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PACTIVE_SESSION
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GetActiveSession()
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{
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return &g_DriverConfig->session_information;
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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return &cfg->session_information;
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}
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LPCSTR
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GetDriverName()
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{
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PAGED_CODE();
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return g_DriverConfig->ansi_driver_name.Buffer;
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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return cfg->ansi_driver_name.Buffer;
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}
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PDEVICE_OBJECT
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GetDriverDeviceObject()
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{
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PAGED_CODE();
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return g_DriverConfig->device_object;
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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return cfg->device_object;
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}
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PDRIVER_OBJECT
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GetDriverObject()
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{
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PAGED_CODE();
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return g_DriverConfig->driver_object;
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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return cfg->driver_object;
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}
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PIRP_QUEUE_HEAD
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GetIrpQueueHead()
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{
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return &g_DriverConfig->irp_queue;
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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return &cfg->irp_queue;
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}
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PSYS_MODULE_VAL_CONTEXT
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GetSystemModuleValidationContext()
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{
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PAGED_CODE();
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return &g_DriverConfig->sys_val_context;
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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return &cfg->sys_val_context;
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}
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PUNICODE_STRING
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GetDriverPath()
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{
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PAGED_CODE();
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return &g_DriverConfig->driver_path;
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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return &cfg->driver_path;
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}
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PUNICODE_STRING
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GetDriverRegistryPath()
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{
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PAGED_CODE();
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return &g_DriverConfig->registry_path;
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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return &cfg->registry_path;
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}
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PUNICODE_STRING
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GetDriverDeviceName()
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{
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PAGED_CODE();
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return &g_DriverConfig->device_name;
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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return &cfg->device_name;
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}
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PUNICODE_STRING
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GetDriverSymbolicLink()
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{
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PAGED_CODE();
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return &g_DriverConfig->device_symbolic_link;
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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return &cfg->device_symbolic_link;
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}
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PSYSTEM_INFORMATION
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GetDriverConfigSystemInformation()
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{
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PAGED_CODE();
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return &g_DriverConfig->system_information;
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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return &cfg->system_information;
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}
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PRB_TREE
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GetThreadTree()
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{
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PAGED_CODE();
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return &g_DriverConfig->thread_tree;
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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return &cfg->thread_tree;
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}
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PDRIVER_LIST_HEAD
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GetDriverList()
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{
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PAGED_CODE();
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return &g_DriverConfig->driver_list;
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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return &cfg->driver_list;
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}
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/*
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@ -307,24 +400,28 @@ DrvUnloadFreeConfigStrings()
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{
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PAGED_CODE();
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if (g_DriverConfig->unicode_driver_name.Buffer)
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ImpExFreePoolWithTag(g_DriverConfig->unicode_driver_name.Buffer,
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POOL_TAG_STRINGS);
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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if (g_DriverConfig->driver_path.Buffer)
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ImpExFreePoolWithTag(g_DriverConfig->driver_path.Buffer,
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POOL_TAG_STRINGS);
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if (cfg->unicode_driver_name.Buffer)
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ImpExFreePoolWithTag(cfg->unicode_driver_name.Buffer, POOL_TAG_STRINGS);
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if (g_DriverConfig->ansi_driver_name.Buffer)
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ImpRtlFreeAnsiString(&g_DriverConfig->ansi_driver_name);
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if (cfg->driver_path.Buffer)
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ImpExFreePoolWithTag(cfg->driver_path.Buffer, POOL_TAG_STRINGS);
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if (cfg->ansi_driver_name.Buffer)
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ImpRtlFreeAnsiString(&cfg->ansi_driver_name);
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}
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STATIC
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VOID
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DrvUnloadDeleteSymbolicLink()
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{
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if (g_DriverConfig->device_symbolic_link)
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ImpIoDeleteSymbolicLink(g_DriverConfig->device_symbolic_link);
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PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
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(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
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if (cfg->device_symbolic_link)
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ImpIoDeleteSymbolicLink(cfg->device_symbolic_link);
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}
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STATIC
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@ -348,7 +445,9 @@ VOID
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DrvUnloadFreeTimerObject()
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{
|
||||
PAGED_CODE();
|
||||
CleanupDriverTimerObjects(&g_DriverConfig->timer);
|
||||
PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
|
||||
(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
|
||||
CleanupDriverTimerObjects(&cfg->timer);
|
||||
}
|
||||
|
||||
STATIC
|
||||
|
@ -364,7 +463,9 @@ VOID
|
|||
DrvUnloadFreeModuleValidationContext()
|
||||
{
|
||||
PAGED_CODE();
|
||||
CleanupValidationContextOnUnload(&g_DriverConfig->sys_val_context);
|
||||
PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
|
||||
(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
|
||||
CleanupValidationContextOnUnload(&cfg->sys_val_context);
|
||||
}
|
||||
|
||||
STATIC
|
||||
|
@ -381,14 +482,11 @@ DriverUnload(_In_ PDRIVER_OBJECT DriverObject)
|
|||
{
|
||||
DEBUG_VERBOSE("Unloading...");
|
||||
|
||||
InterlockedExchange(&g_DriverConfig->unload_in_progress, TRUE);
|
||||
PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
|
||||
(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
|
||||
|
||||
InterlockedExchange(&cfg->unload_in_progress, TRUE);
|
||||
|
||||
/*
|
||||
* This blocks the thread dispatching the unload routine, which I don't
|
||||
* think is ideal. This is the issue with using APCs, we have very
|
||||
* little safe control over when they complete and thus when we can free
|
||||
* them.. For now, thisl do.
|
||||
*/
|
||||
while (DrvUnloadFreeAllApcContextStructures() == FALSE)
|
||||
YieldProcessor();
|
||||
|
||||
|
@ -409,6 +507,8 @@ DriverUnload(_In_ PDRIVER_OBJECT DriverObject)
|
|||
|
||||
DrvUnloadFreeConfigStrings();
|
||||
DrvUnloadDeleteSymbolicLink();
|
||||
|
||||
DecryptDeviceExtensionPointers(DriverObject->DeviceObject);
|
||||
ImpIoDeleteDevice(DriverObject->DeviceObject);
|
||||
|
||||
DEBUG_INFO("Driver successfully unloaded.");
|
||||
|
@ -523,6 +623,9 @@ RegistryPathQueryCallbackRoutine(IN PWSTR ValueName,
|
|||
|
||||
ImpRtlInitUnicodeString(&value_name, ValueName);
|
||||
|
||||
PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
|
||||
(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
|
||||
|
||||
if (ImpRtlCompareUnicodeString(&value_name, &image_path, FALSE) == FALSE) {
|
||||
temp_buffer =
|
||||
ImpExAllocatePool2(POOL_FLAG_PAGED, ValueLength, POOL_TAG_STRINGS);
|
||||
|
@ -532,9 +635,9 @@ RegistryPathQueryCallbackRoutine(IN PWSTR ValueName,
|
|||
|
||||
RtlCopyMemory(temp_buffer, ValueData, ValueLength);
|
||||
|
||||
g_DriverConfig->driver_path.Buffer = (PWCH)temp_buffer;
|
||||
g_DriverConfig->driver_path.Length = ValueLength;
|
||||
g_DriverConfig->driver_path.MaximumLength = ValueLength;
|
||||
cfg->driver_path.Buffer = (PWCH)temp_buffer;
|
||||
cfg->driver_path.Length = ValueLength;
|
||||
cfg->driver_path.MaximumLength = ValueLength;
|
||||
}
|
||||
|
||||
if (ImpRtlCompareUnicodeString(&value_name, &display_name, FALSE) ==
|
||||
|
@ -545,19 +648,12 @@ RegistryPathQueryCallbackRoutine(IN PWSTR ValueName,
|
|||
if (!temp_buffer)
|
||||
return STATUS_MEMORY_NOT_ALLOCATED;
|
||||
|
||||
/*
|
||||
* The registry path driver name does not contain the .sys
|
||||
* extension which is required for us since when we enumerate
|
||||
* the system modules we are comparing the entire path including
|
||||
* the .sys extension. Hence we add it to the end of the buffer
|
||||
* here.
|
||||
*/
|
||||
RtlCopyMemory(temp_buffer, ValueData, ValueLength);
|
||||
wcscpy((UINT64)temp_buffer + ValueLength - 2, L".sys");
|
||||
wcscpy((PWCH)((UINT64)temp_buffer + ValueLength - 2), L".sys");
|
||||
|
||||
g_DriverConfig->unicode_driver_name.Buffer = (PWCH)temp_buffer;
|
||||
g_DriverConfig->unicode_driver_name.Length = ValueLength + 20;
|
||||
g_DriverConfig->unicode_driver_name.MaximumLength = ValueLength + 20;
|
||||
cfg->unicode_driver_name.Buffer = (PWCH)temp_buffer;
|
||||
cfg->unicode_driver_name.Length = ValueLength + 20;
|
||||
cfg->unicode_driver_name.MaximumLength = ValueLength + 20;
|
||||
}
|
||||
|
||||
return STATUS_SUCCESS;
|
||||
|
@ -583,6 +679,8 @@ NTSTATUS
|
|||
GetSystemProcessorType()
|
||||
{
|
||||
UINT32 cpuid[4] = {0};
|
||||
PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
|
||||
(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
|
||||
|
||||
__cpuid(cpuid, 0);
|
||||
|
||||
|
@ -592,17 +690,17 @@ GetSystemProcessorType()
|
|||
if (cpuid[EBX_REGISTER] == CPUID_AUTHENTIC_AMD_EBX &&
|
||||
cpuid[ECX_REGISTER] == CPUID_AUTHENTIC_AMD_ECX &&
|
||||
cpuid[EDX_REGISTER] == CPUID_AUTHENTIC_AMD_EDX) {
|
||||
g_DriverConfig->system_information.processor = AuthenticAmd;
|
||||
cfg->system_information.processor = AuthenticAmd;
|
||||
return STATUS_SUCCESS;
|
||||
}
|
||||
else if (cpuid[EBX_REGISTER] == CPUID_GENUINE_INTEL_EBX &&
|
||||
cpuid[ECX_REGISTER] == CPUID_GENUINE_INTEL_ECX &&
|
||||
cpuid[EDX_REGISTER] == CPUID_GENUINE_INTEL_EDX) {
|
||||
g_DriverConfig->system_information.processor = GenuineIntel;
|
||||
cfg->system_information.processor = GenuineIntel;
|
||||
return STATUS_SUCCESS;
|
||||
}
|
||||
else {
|
||||
g_DriverConfig->system_information.processor = Unknown;
|
||||
cfg->system_information.processor = Unknown;
|
||||
return STATUS_UNSUCCESSFUL;
|
||||
}
|
||||
}
|
||||
|
@ -617,8 +715,10 @@ NTSTATUS
|
|||
ParseSmbiosForGivenSystemEnvironment()
|
||||
{
|
||||
NTSTATUS status = STATUS_UNSUCCESSFUL;
|
||||
PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
|
||||
(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
|
||||
|
||||
status = ParseSMBIOSTable(&g_DriverConfig->system_information.vendor,
|
||||
status = ParseSMBIOSTable(&cfg->system_information.vendor,
|
||||
VENDOR_STRING_MAX_LENGTH,
|
||||
SmbiosInformation,
|
||||
SMBIOS_VENDOR_STRING_SUB_INDEX);
|
||||
|
@ -628,34 +728,26 @@ ParseSmbiosForGivenSystemEnvironment()
|
|||
return status;
|
||||
}
|
||||
|
||||
if (strstr(&g_DriverConfig->system_information.vendor, "VMware, Inc"))
|
||||
g_DriverConfig->system_information.environment = Vmware;
|
||||
else if (strstr(&g_DriverConfig->system_information.vendor, "innotek GmbH"))
|
||||
g_DriverConfig->system_information.environment = VirtualBox;
|
||||
if (strstr(&cfg->system_information.vendor, "VMware, Inc"))
|
||||
cfg->system_information.environment = Vmware;
|
||||
else if (strstr(&cfg->system_information.vendor, "innotek GmbH"))
|
||||
cfg->system_information.environment = VirtualBox;
|
||||
else
|
||||
g_DriverConfig->system_information.environment = NativeWindows;
|
||||
cfg->system_information.environment = NativeWindows;
|
||||
|
||||
switch (g_DriverConfig->system_information.environment) {
|
||||
switch (cfg->system_information.environment) {
|
||||
case NativeWindows: {
|
||||
/*
|
||||
* TODO: double check that amd indexes are the same should be,
|
||||
* but should check just in case
|
||||
*/
|
||||
status = ParseSMBIOSTable(
|
||||
&g_DriverConfig->system_information.motherboard_serial,
|
||||
status = ParseSMBIOSTable(&cfg->system_information.motherboard_serial,
|
||||
MOTHERBOARD_SERIAL_CODE_LENGTH,
|
||||
VendorSpecificInformation,
|
||||
SMBIOS_NATIVE_SERIAL_NUMBER_SUB_INDEX);
|
||||
|
||||
break;
|
||||
}
|
||||
case Vmware: {
|
||||
status = ParseSMBIOSTable(
|
||||
&g_DriverConfig->system_information.motherboard_serial,
|
||||
status = ParseSMBIOSTable(&cfg->system_information.motherboard_serial,
|
||||
MOTHERBOARD_SERIAL_CODE_LENGTH,
|
||||
SystemInformation,
|
||||
SMBIOS_VMWARE_SERIAL_NUMBER_SUB_INDEX);
|
||||
|
||||
break;
|
||||
}
|
||||
case VirtualBox:
|
||||
|
@ -677,15 +769,13 @@ NTSTATUS
|
|||
DrvLoadGatherSystemEnvironmentSettings()
|
||||
{
|
||||
NTSTATUS status = STATUS_UNSUCCESSFUL;
|
||||
PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
|
||||
(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
|
||||
|
||||
/*
|
||||
* On Vmware, the APERF_MSR is not emulated hence this will return TRUE.
|
||||
*/
|
||||
if (APERFMsrTimingCheck())
|
||||
g_DriverConfig->system_information.virtualised_environment = TRUE;
|
||||
cfg->system_information.virtualised_environment = TRUE;
|
||||
|
||||
status = GetOsVersionInformation(
|
||||
&g_DriverConfig->system_information.os_information);
|
||||
status = GetOsVersionInformation(&cfg->system_information.os_information);
|
||||
|
||||
if (!NT_SUCCESS(status)) {
|
||||
DEBUG_ERROR("GetOsVersionInformation failed with status %x", status);
|
||||
|
@ -709,8 +799,8 @@ DrvLoadGatherSystemEnvironmentSettings()
|
|||
}
|
||||
|
||||
status = GetHardDiskDriveSerialNumber(
|
||||
&g_DriverConfig->system_information.drive_0_serial,
|
||||
sizeof(g_DriverConfig->system_information.drive_0_serial));
|
||||
&cfg->system_information.drive_0_serial,
|
||||
sizeof(cfg->system_information.drive_0_serial));
|
||||
|
||||
if (!NT_SUCCESS(status)) {
|
||||
DEBUG_ERROR("GetHardDiskDriverSerialNumber failed with status %x",
|
||||
|
@ -720,17 +810,14 @@ DrvLoadGatherSystemEnvironmentSettings()
|
|||
|
||||
DEBUG_VERBOSE(
|
||||
"OS Major Version: %lx, Minor Version: %lx, Build Number: %lx",
|
||||
g_DriverConfig->system_information.os_information.dwMajorVersion,
|
||||
g_DriverConfig->system_information.os_information.dwMinorVersion,
|
||||
g_DriverConfig->system_information.os_information.dwBuildNumber);
|
||||
DEBUG_VERBOSE("Environment type: %lx",
|
||||
g_DriverConfig->system_information.environment);
|
||||
DEBUG_VERBOSE("Processor type: %lx",
|
||||
g_DriverConfig->system_information.processor);
|
||||
cfg->system_information.os_information.dwMajorVersion,
|
||||
cfg->system_information.os_information.dwMinorVersion,
|
||||
cfg->system_information.os_information.dwBuildNumber);
|
||||
DEBUG_VERBOSE("Environment type: %lx", cfg->system_information.environment);
|
||||
DEBUG_VERBOSE("Processor type: %lx", cfg->system_information.processor);
|
||||
DEBUG_VERBOSE("Motherboard serial: %s",
|
||||
g_DriverConfig->system_information.motherboard_serial);
|
||||
DEBUG_VERBOSE("Drive 0 serial: %s",
|
||||
g_DriverConfig->system_information.drive_0_serial);
|
||||
cfg->system_information.motherboard_serial);
|
||||
DEBUG_VERBOSE("Drive 0 serial: %s", cfg->system_information.drive_0_serial);
|
||||
|
||||
return status;
|
||||
}
|
||||
|
@ -741,6 +828,8 @@ DrvLoadRetrieveDriverNameFromRegistry(_In_ PUNICODE_STRING RegistryPath)
|
|||
{
|
||||
NTSTATUS status = STATUS_UNSUCCESSFUL;
|
||||
RTL_QUERY_REGISTRY_TABLE query_table[3] = {0};
|
||||
PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
|
||||
(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
|
||||
|
||||
query_table[0].Flags = RTL_QUERY_REGISTRY_NOEXPAND;
|
||||
query_table[0].Name = L"ImagePath";
|
||||
|
@ -772,15 +861,13 @@ DrvLoadRetrieveDriverNameFromRegistry(_In_ PUNICODE_STRING RegistryPath)
|
|||
* name since we need the .sys extension when querying the system
|
||||
* modules for our driver.
|
||||
*/
|
||||
status = ImpRtlUnicodeStringToAnsiString(
|
||||
&cfg->ansi_driver_name, &cfg->unicode_driver_name, TRUE);
|
||||
|
||||
status =
|
||||
ImpRtlUnicodeStringToAnsiString(&g_DriverConfig->ansi_driver_name,
|
||||
&g_DriverConfig->unicode_driver_name,
|
||||
TRUE);
|
||||
|
||||
if (!NT_SUCCESS(status))
|
||||
if (!NT_SUCCESS(status)) {
|
||||
DEBUG_ERROR("RtlUnicodeStringToAnsiString failed with status %x",
|
||||
status);
|
||||
}
|
||||
|
||||
return status;
|
||||
}
|
||||
|
@ -794,15 +881,17 @@ DrvLoadInitialiseDriverConfig(_In_ PDRIVER_OBJECT DriverObject,
|
|||
DEBUG_VERBOSE("Initialising driver configuration");
|
||||
|
||||
NTSTATUS status = STATUS_UNSUCCESSFUL;
|
||||
PDRIVER_CONFIG cfg = (PDRIVER_CONFIG)CryptDecryptPointerOutOfPlace64(
|
||||
(PUINT64)&g_DriverConfig, g_DeviceExtensionKey);
|
||||
|
||||
ImpKeInitializeGuardedMutex(&g_DriverConfig->lock);
|
||||
ImpKeInitializeGuardedMutex(&cfg->lock);
|
||||
|
||||
IrpQueueInitialise();
|
||||
SessionInitialiseCallbackConfiguration();
|
||||
|
||||
g_DriverConfig->unload_in_progress = FALSE;
|
||||
g_DriverConfig->system_information.virtualised_environment = FALSE;
|
||||
g_DriverConfig->sys_val_context.active = FALSE;
|
||||
cfg->unload_in_progress = FALSE;
|
||||
cfg->system_information.virtualised_environment = FALSE;
|
||||
cfg->sys_val_context.active = FALSE;
|
||||
|
||||
status = DrvLoadRetrieveDriverNameFromRegistry(RegistryPath);
|
||||
|
||||
|
@ -813,8 +902,7 @@ DrvLoadInitialiseDriverConfig(_In_ PDRIVER_OBJECT DriverObject,
|
|||
return status;
|
||||
}
|
||||
|
||||
/* when this function failed, we bugcheck in freeconfigstrings todo: fix
|
||||
*/
|
||||
/* when this function failed, we bugcheck in freeconfigstrings todo: fix */
|
||||
status = DrvLoadGatherSystemEnvironmentSettings();
|
||||
|
||||
if (!NT_SUCCESS(status)) {
|
||||
|
@ -823,7 +911,7 @@ DrvLoadInitialiseDriverConfig(_In_ PDRIVER_OBJECT DriverObject,
|
|||
return status;
|
||||
}
|
||||
|
||||
status = InitialiseTimerObject(&g_DriverConfig->timer);
|
||||
status = InitialiseTimerObject(&cfg->timer);
|
||||
|
||||
if (!NT_SUCCESS(status)) {
|
||||
DEBUG_ERROR("InitialiseTimerObject failed with status %x", status);
|
||||
|
@ -837,7 +925,7 @@ DrvLoadInitialiseDriverConfig(_In_ PDRIVER_OBJECT DriverObject,
|
|||
return status;
|
||||
}
|
||||
|
||||
DEBUG_VERBOSE("driver name: %s", g_DriverConfig->ansi_driver_name.Buffer);
|
||||
DEBUG_VERBOSE("driver name: %s", cfg->ansi_driver_name.Buffer);
|
||||
return status;
|
||||
}
|
||||
|
||||
|
@ -862,12 +950,15 @@ DriverEntry(_In_ PDRIVER_OBJECT DriverObject, _In_ PUNICODE_STRING RegistryPath)
|
|||
{
|
||||
BOOLEAN flag = FALSE;
|
||||
NTSTATUS status = STATUS_UNSUCCESSFUL;
|
||||
UINT64 temp = 0;
|
||||
|
||||
DriverObject->MajorFunction[IRP_MJ_CREATE] = DeviceCreate;
|
||||
DriverObject->MajorFunction[IRP_MJ_CLOSE] = DeviceClose;
|
||||
DriverObject->MajorFunction[IRP_MJ_DEVICE_CONTROL] = DeviceControl;
|
||||
DriverObject->DriverUnload = DriverUnload;
|
||||
|
||||
g_DeviceExtensionKey = CryptXorKeyGenerate_uint64();
|
||||
|
||||
status = ImpResolveDynamicImports(DriverObject);
|
||||
|
||||
if (!NT_SUCCESS(status))
|
||||
|
@ -894,13 +985,17 @@ DriverEntry(_In_ PDRIVER_OBJECT DriverObject, _In_ PUNICODE_STRING RegistryPath)
|
|||
g_DriverConfig->device_name = &g_DeviceName;
|
||||
g_DriverConfig->device_symbolic_link = &g_DeviceSymbolicLink;
|
||||
|
||||
EncryptDeviceExtensionPointers(DriverObject->DeviceObject);
|
||||
|
||||
status = DrvLoadInitialiseDriverConfig(DriverObject, RegistryPath);
|
||||
|
||||
if (!NT_SUCCESS(status)) {
|
||||
DEBUG_ERROR("InitialiseDriverConfigOnDriverEntry failed with status %x",
|
||||
status);
|
||||
DrvUnloadFreeConfigStrings();
|
||||
ImpIoDeleteDevice(DriverObject->DeviceObject);
|
||||
UINT64 temp = CryptDecryptPointerOutOfPlace64((PUINT64)&g_DriverConfig,
|
||||
g_DeviceExtensionKey);
|
||||
ImpIoDeleteDevice(((PDRIVER_CONFIG)temp)->device_object);
|
||||
return status;
|
||||
}
|
||||
|
||||
|
@ -910,18 +1005,23 @@ DriverEntry(_In_ PDRIVER_OBJECT DriverObject, _In_ PUNICODE_STRING RegistryPath)
|
|||
DEBUG_ERROR("SessionInitialiseStructure failed with status %x", status);
|
||||
DrvUnloadFreeConfigStrings();
|
||||
DrvUnloadFreeTimerObject();
|
||||
ImpIoDeleteDevice(DriverObject->DeviceObject);
|
||||
UINT64 temp = CryptDecryptPointerOutOfPlace64((PUINT64)&g_DriverConfig,
|
||||
g_DeviceExtensionKey);
|
||||
ImpIoDeleteDevice(((PDRIVER_CONFIG)temp)->device_object);
|
||||
return status;
|
||||
}
|
||||
|
||||
status = IoCreateSymbolicLink(g_DriverConfig->device_symbolic_link,
|
||||
g_DriverConfig->device_name);
|
||||
temp = CryptDecryptPointerOutOfPlace64((PUINT64)&g_DriverConfig,
|
||||
g_DeviceExtensionKey);
|
||||
|
||||
status = IoCreateSymbolicLink(((PDRIVER_CONFIG)temp)->device_symbolic_link,
|
||||
((PDRIVER_CONFIG)temp)->device_name);
|
||||
|
||||
if (!NT_SUCCESS(status)) {
|
||||
DEBUG_ERROR("IoCreateSymbolicLink failed with status %x", status);
|
||||
DrvUnloadFreeConfigStrings();
|
||||
DrvUnloadFreeTimerObject();
|
||||
ImpIoDeleteDevice(DriverObject->DeviceObject);
|
||||
ImpIoDeleteDevice(((PDRIVER_CONFIG)temp)->device_object);
|
||||
return status;
|
||||
}
|
||||
|
||||
|
@ -932,7 +1032,9 @@ DriverEntry(_In_ PDRIVER_OBJECT DriverObject, _In_ PUNICODE_STRING RegistryPath)
|
|||
DrvUnloadFreeConfigStrings();
|
||||
DrvUnloadFreeTimerObject();
|
||||
DrvUnloadDeleteSymbolicLink();
|
||||
ImpIoDeleteDevice(DriverObject->DeviceObject);
|
||||
temp = CryptDecryptPointerOutOfPlace64((PUINT64)&g_DriverConfig,
|
||||
g_DeviceExtensionKey);
|
||||
ImpIoDeleteDevice(((PDRIVER_CONFIG)temp)->device_object);
|
||||
return status;
|
||||
}
|
||||
|
||||
|
@ -944,7 +1046,9 @@ DriverEntry(_In_ PDRIVER_OBJECT DriverObject, _In_ PUNICODE_STRING RegistryPath)
|
|||
DrvUnloadFreeConfigStrings();
|
||||
DrvUnloadFreeTimerObject();
|
||||
DrvUnloadDeleteSymbolicLink();
|
||||
ImpIoDeleteDevice(DriverObject->DeviceObject);
|
||||
temp = CryptDecryptPointerOutOfPlace64((PUINT64)&g_DriverConfig,
|
||||
g_DeviceExtensionKey);
|
||||
ImpIoDeleteDevice(((PDRIVER_CONFIG)temp)->device_object);
|
||||
return status;
|
||||
}
|
||||
|
||||
|
@ -956,12 +1060,13 @@ DriverEntry(_In_ PDRIVER_OBJECT DriverObject, _In_ PUNICODE_STRING RegistryPath)
|
|||
DrvUnloadFreeConfigStrings();
|
||||
DrvUnloadFreeTimerObject();
|
||||
DrvUnloadDeleteSymbolicLink();
|
||||
ImpIoDeleteDevice(DriverObject->DeviceObject);
|
||||
temp = CryptDecryptPointerOutOfPlace64((PUINT64)&g_DriverConfig,
|
||||
g_DeviceExtensionKey);
|
||||
ImpIoDeleteDevice(((PDRIVER_CONFIG)temp)->device_object);
|
||||
return status;
|
||||
}
|
||||
|
||||
g_DriverConfig->has_driver_loaded = TRUE;
|
||||
|
||||
SetDriverLoadedFlag();
|
||||
TpmExtractEndorsementKey();
|
||||
|
||||
DEBUG_INFO("Driver Entry Complete.");
|
||||
|
|
|
@ -87,7 +87,10 @@ HasDriverLoaded();
|
|||
PRTL_HASHMAP
|
||||
GetProcessHashmap();
|
||||
|
||||
VOID
|
||||
CleanupProcessTree();
|
||||
__m256i*
|
||||
GetDriverImportsKey();
|
||||
|
||||
PUINT64
|
||||
GetDriverDeviceExtensionKey();
|
||||
|
||||
#endif
|
Loading…
Reference in a new issue